mcdi.h 13 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325
  1. /****************************************************************************
  2. * Driver for Solarflare network controllers and boards
  3. * Copyright 2008-2013 Solarflare Communications Inc.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License version 2 as published
  7. * by the Free Software Foundation, incorporated herein by reference.
  8. */
  9. #ifndef EFX_MCDI_H
  10. #define EFX_MCDI_H
  11. /**
  12. * enum efx_mcdi_state - MCDI request handling state
  13. * @MCDI_STATE_QUIESCENT: No pending MCDI requests. If the caller holds the
  14. * mcdi @iface_lock then they are able to move to %MCDI_STATE_RUNNING
  15. * @MCDI_STATE_RUNNING_SYNC: There is a synchronous MCDI request pending.
  16. * Only the thread that moved into this state is allowed to move out of it.
  17. * @MCDI_STATE_RUNNING_ASYNC: There is an asynchronous MCDI request pending.
  18. * @MCDI_STATE_COMPLETED: An MCDI request has completed, but the owning thread
  19. * has not yet consumed the result. For all other threads, equivalent to
  20. * %MCDI_STATE_RUNNING.
  21. */
  22. enum efx_mcdi_state {
  23. MCDI_STATE_QUIESCENT,
  24. MCDI_STATE_RUNNING_SYNC,
  25. MCDI_STATE_RUNNING_ASYNC,
  26. MCDI_STATE_COMPLETED,
  27. };
  28. enum efx_mcdi_mode {
  29. MCDI_MODE_POLL,
  30. MCDI_MODE_EVENTS,
  31. };
  32. /**
  33. * struct efx_mcdi_iface - MCDI protocol context
  34. * @efx: The associated NIC.
  35. * @state: Request handling state. Waited for by @wq.
  36. * @mode: Poll for mcdi completion, or wait for an mcdi_event.
  37. * @wq: Wait queue for threads waiting for @state != %MCDI_STATE_RUNNING
  38. * @new_epoch: Indicates start of day or start of MC reboot recovery
  39. * @iface_lock: Serialises access to @seqno, @credits and response metadata
  40. * @seqno: The next sequence number to use for mcdi requests.
  41. * @credits: Number of spurious MCDI completion events allowed before we
  42. * trigger a fatal error
  43. * @resprc: Response error/success code (Linux numbering)
  44. * @resp_hdr_len: Response header length
  45. * @resp_data_len: Response data (SDU or error) length
  46. * @async_lock: Serialises access to @async_list while event processing is
  47. * enabled
  48. * @async_list: Queue of asynchronous requests
  49. * @async_timer: Timer for asynchronous request timeout
  50. */
  51. struct efx_mcdi_iface {
  52. struct efx_nic *efx;
  53. enum efx_mcdi_state state;
  54. enum efx_mcdi_mode mode;
  55. wait_queue_head_t wq;
  56. spinlock_t iface_lock;
  57. bool new_epoch;
  58. unsigned int credits;
  59. unsigned int seqno;
  60. int resprc;
  61. size_t resp_hdr_len;
  62. size_t resp_data_len;
  63. spinlock_t async_lock;
  64. struct list_head async_list;
  65. struct timer_list async_timer;
  66. };
  67. struct efx_mcdi_mon {
  68. struct efx_buffer dma_buf;
  69. struct mutex update_lock;
  70. unsigned long last_update;
  71. struct device *device;
  72. struct efx_mcdi_mon_attribute *attrs;
  73. unsigned int n_attrs;
  74. };
  75. struct efx_mcdi_mtd_partition {
  76. struct efx_mtd_partition common;
  77. bool updating;
  78. u16 nvram_type;
  79. u16 fw_subtype;
  80. };
  81. #define to_efx_mcdi_mtd_partition(mtd) \
  82. container_of(mtd, struct efx_mcdi_mtd_partition, common.mtd)
  83. /**
  84. * struct efx_mcdi_data - extra state for NICs that implement MCDI
  85. * @iface: Interface/protocol state
  86. * @hwmon: Hardware monitor state
  87. */
  88. struct efx_mcdi_data {
  89. struct efx_mcdi_iface iface;
  90. #ifdef CONFIG_SFC_MCDI_MON
  91. struct efx_mcdi_mon hwmon;
  92. #endif
  93. };
  94. #ifdef CONFIG_SFC_MCDI_MON
  95. static inline struct efx_mcdi_mon *efx_mcdi_mon(struct efx_nic *efx)
  96. {
  97. EFX_BUG_ON_PARANOID(!efx->mcdi);
  98. return &efx->mcdi->hwmon;
  99. }
  100. #endif
  101. int efx_mcdi_init(struct efx_nic *efx);
  102. void efx_mcdi_fini(struct efx_nic *efx);
  103. int efx_mcdi_rpc(struct efx_nic *efx, unsigned cmd, const efx_dword_t *inbuf,
  104. size_t inlen, efx_dword_t *outbuf, size_t outlen,
  105. size_t *outlen_actual);
  106. int efx_mcdi_rpc_start(struct efx_nic *efx, unsigned cmd,
  107. const efx_dword_t *inbuf, size_t inlen);
  108. int efx_mcdi_rpc_finish(struct efx_nic *efx, unsigned cmd, size_t inlen,
  109. efx_dword_t *outbuf, size_t outlen,
  110. size_t *outlen_actual);
  111. typedef void efx_mcdi_async_completer(struct efx_nic *efx,
  112. unsigned long cookie, int rc,
  113. efx_dword_t *outbuf,
  114. size_t outlen_actual);
  115. int efx_mcdi_rpc_async(struct efx_nic *efx, unsigned int cmd,
  116. const efx_dword_t *inbuf, size_t inlen, size_t outlen,
  117. efx_mcdi_async_completer *complete,
  118. unsigned long cookie);
  119. int efx_mcdi_poll_reboot(struct efx_nic *efx);
  120. void efx_mcdi_mode_poll(struct efx_nic *efx);
  121. void efx_mcdi_mode_event(struct efx_nic *efx);
  122. void efx_mcdi_flush_async(struct efx_nic *efx);
  123. void efx_mcdi_process_event(struct efx_channel *channel, efx_qword_t *event);
  124. void efx_mcdi_sensor_event(struct efx_nic *efx, efx_qword_t *ev);
  125. /* We expect that 16- and 32-bit fields in MCDI requests and responses
  126. * are appropriately aligned, but 64-bit fields are only
  127. * 32-bit-aligned. Also, on Siena we must copy to the MC shared
  128. * memory strictly 32 bits at a time, so add any necessary padding.
  129. */
  130. #define MCDI_DECLARE_BUF(_name, _len) \
  131. efx_dword_t _name[DIV_ROUND_UP(_len, 4)]
  132. #define _MCDI_PTR(_buf, _offset) \
  133. ((u8 *)(_buf) + (_offset))
  134. #define MCDI_PTR(_buf, _field) \
  135. _MCDI_PTR(_buf, MC_CMD_ ## _field ## _OFST)
  136. #define _MCDI_CHECK_ALIGN(_ofst, _align) \
  137. ((_ofst) + BUILD_BUG_ON_ZERO((_ofst) & (_align - 1)))
  138. #define _MCDI_DWORD(_buf, _field) \
  139. ((_buf) + (_MCDI_CHECK_ALIGN(MC_CMD_ ## _field ## _OFST, 4) >> 2))
  140. #define MCDI_WORD(_buf, _field) \
  141. ((u16)BUILD_BUG_ON_ZERO(MC_CMD_ ## _field ## _LEN != 2) + \
  142. le16_to_cpu(*(__force const __le16 *)MCDI_PTR(_buf, _field)))
  143. #define MCDI_SET_DWORD(_buf, _field, _value) \
  144. EFX_POPULATE_DWORD_1(*_MCDI_DWORD(_buf, _field), EFX_DWORD_0, _value)
  145. #define MCDI_DWORD(_buf, _field) \
  146. EFX_DWORD_FIELD(*_MCDI_DWORD(_buf, _field), EFX_DWORD_0)
  147. #define MCDI_POPULATE_DWORD_1(_buf, _field, _name1, _value1) \
  148. EFX_POPULATE_DWORD_1(*_MCDI_DWORD(_buf, _field), \
  149. MC_CMD_ ## _name1, _value1)
  150. #define MCDI_POPULATE_DWORD_2(_buf, _field, _name1, _value1, \
  151. _name2, _value2) \
  152. EFX_POPULATE_DWORD_2(*_MCDI_DWORD(_buf, _field), \
  153. MC_CMD_ ## _name1, _value1, \
  154. MC_CMD_ ## _name2, _value2)
  155. #define MCDI_POPULATE_DWORD_3(_buf, _field, _name1, _value1, \
  156. _name2, _value2, _name3, _value3) \
  157. EFX_POPULATE_DWORD_3(*_MCDI_DWORD(_buf, _field), \
  158. MC_CMD_ ## _name1, _value1, \
  159. MC_CMD_ ## _name2, _value2, \
  160. MC_CMD_ ## _name3, _value3)
  161. #define MCDI_POPULATE_DWORD_4(_buf, _field, _name1, _value1, \
  162. _name2, _value2, _name3, _value3, \
  163. _name4, _value4) \
  164. EFX_POPULATE_DWORD_4(*_MCDI_DWORD(_buf, _field), \
  165. MC_CMD_ ## _name1, _value1, \
  166. MC_CMD_ ## _name2, _value2, \
  167. MC_CMD_ ## _name3, _value3, \
  168. MC_CMD_ ## _name4, _value4)
  169. #define MCDI_POPULATE_DWORD_5(_buf, _field, _name1, _value1, \
  170. _name2, _value2, _name3, _value3, \
  171. _name4, _value4, _name5, _value5) \
  172. EFX_POPULATE_DWORD_5(*_MCDI_DWORD(_buf, _field), \
  173. MC_CMD_ ## _name1, _value1, \
  174. MC_CMD_ ## _name2, _value2, \
  175. MC_CMD_ ## _name3, _value3, \
  176. MC_CMD_ ## _name4, _value4, \
  177. MC_CMD_ ## _name5, _value5)
  178. #define MCDI_POPULATE_DWORD_6(_buf, _field, _name1, _value1, \
  179. _name2, _value2, _name3, _value3, \
  180. _name4, _value4, _name5, _value5, \
  181. _name6, _value6) \
  182. EFX_POPULATE_DWORD_6(*_MCDI_DWORD(_buf, _field), \
  183. MC_CMD_ ## _name1, _value1, \
  184. MC_CMD_ ## _name2, _value2, \
  185. MC_CMD_ ## _name3, _value3, \
  186. MC_CMD_ ## _name4, _value4, \
  187. MC_CMD_ ## _name5, _value5, \
  188. MC_CMD_ ## _name6, _value6)
  189. #define MCDI_POPULATE_DWORD_7(_buf, _field, _name1, _value1, \
  190. _name2, _value2, _name3, _value3, \
  191. _name4, _value4, _name5, _value5, \
  192. _name6, _value6, _name7, _value7) \
  193. EFX_POPULATE_DWORD_7(*_MCDI_DWORD(_buf, _field), \
  194. MC_CMD_ ## _name1, _value1, \
  195. MC_CMD_ ## _name2, _value2, \
  196. MC_CMD_ ## _name3, _value3, \
  197. MC_CMD_ ## _name4, _value4, \
  198. MC_CMD_ ## _name5, _value5, \
  199. MC_CMD_ ## _name6, _value6, \
  200. MC_CMD_ ## _name7, _value7)
  201. #define MCDI_SET_QWORD(_buf, _field, _value) \
  202. do { \
  203. EFX_POPULATE_DWORD_1(_MCDI_DWORD(_buf, _field)[0], \
  204. EFX_DWORD_0, (u32)(_value)); \
  205. EFX_POPULATE_DWORD_1(_MCDI_DWORD(_buf, _field)[1], \
  206. EFX_DWORD_0, (u64)(_value) >> 32); \
  207. } while (0)
  208. #define MCDI_QWORD(_buf, _field) \
  209. (EFX_DWORD_FIELD(_MCDI_DWORD(_buf, _field)[0], EFX_DWORD_0) | \
  210. (u64)EFX_DWORD_FIELD(_MCDI_DWORD(_buf, _field)[1], EFX_DWORD_0) << 32)
  211. #define MCDI_FIELD(_ptr, _type, _field) \
  212. EFX_EXTRACT_DWORD( \
  213. *(efx_dword_t *) \
  214. _MCDI_PTR(_ptr, MC_CMD_ ## _type ## _ ## _field ## _OFST & ~3),\
  215. MC_CMD_ ## _type ## _ ## _field ## _LBN & 0x1f, \
  216. (MC_CMD_ ## _type ## _ ## _field ## _LBN & 0x1f) + \
  217. MC_CMD_ ## _type ## _ ## _field ## _WIDTH - 1)
  218. #define _MCDI_ARRAY_PTR(_buf, _field, _index, _align) \
  219. (_MCDI_PTR(_buf, _MCDI_CHECK_ALIGN(MC_CMD_ ## _field ## _OFST, _align))\
  220. + (_index) * _MCDI_CHECK_ALIGN(MC_CMD_ ## _field ## _LEN, _align))
  221. #define MCDI_DECLARE_STRUCT_PTR(_name) \
  222. efx_dword_t *_name
  223. #define MCDI_ARRAY_STRUCT_PTR(_buf, _field, _index) \
  224. ((efx_dword_t *)_MCDI_ARRAY_PTR(_buf, _field, _index, 4))
  225. #define MCDI_VAR_ARRAY_LEN(_len, _field) \
  226. min_t(size_t, MC_CMD_ ## _field ## _MAXNUM, \
  227. ((_len) - MC_CMD_ ## _field ## _OFST) / MC_CMD_ ## _field ## _LEN)
  228. #define MCDI_ARRAY_WORD(_buf, _field, _index) \
  229. (BUILD_BUG_ON_ZERO(MC_CMD_ ## _field ## _LEN != 2) + \
  230. le16_to_cpu(*(__force const __le16 *) \
  231. _MCDI_ARRAY_PTR(_buf, _field, _index, 2)))
  232. #define _MCDI_ARRAY_DWORD(_buf, _field, _index) \
  233. (BUILD_BUG_ON_ZERO(MC_CMD_ ## _field ## _LEN != 4) + \
  234. (efx_dword_t *)_MCDI_ARRAY_PTR(_buf, _field, _index, 4))
  235. #define MCDI_SET_ARRAY_DWORD(_buf, _field, _index, _value) \
  236. EFX_SET_DWORD_FIELD(*_MCDI_ARRAY_DWORD(_buf, _field, _index), \
  237. EFX_DWORD_0, _value)
  238. #define MCDI_ARRAY_DWORD(_buf, _field, _index) \
  239. EFX_DWORD_FIELD(*_MCDI_ARRAY_DWORD(_buf, _field, _index), EFX_DWORD_0)
  240. #define _MCDI_ARRAY_QWORD(_buf, _field, _index) \
  241. (BUILD_BUG_ON_ZERO(MC_CMD_ ## _field ## _LEN != 8) + \
  242. (efx_dword_t *)_MCDI_ARRAY_PTR(_buf, _field, _index, 4))
  243. #define MCDI_SET_ARRAY_QWORD(_buf, _field, _index, _value) \
  244. do { \
  245. EFX_SET_DWORD_FIELD(_MCDI_ARRAY_QWORD(_buf, _field, _index)[0],\
  246. EFX_DWORD_0, (u32)(_value)); \
  247. EFX_SET_DWORD_FIELD(_MCDI_ARRAY_QWORD(_buf, _field, _index)[1],\
  248. EFX_DWORD_0, (u64)(_value) >> 32); \
  249. } while (0)
  250. #define MCDI_ARRAY_FIELD(_buf, _field1, _type, _index, _field2) \
  251. MCDI_FIELD(MCDI_ARRAY_STRUCT_PTR(_buf, _field1, _index), \
  252. _type ## _TYPEDEF, _field2)
  253. #define MCDI_EVENT_FIELD(_ev, _field) \
  254. EFX_QWORD_FIELD(_ev, MCDI_EVENT_ ## _field)
  255. void efx_mcdi_print_fwver(struct efx_nic *efx, char *buf, size_t len);
  256. int efx_mcdi_get_board_cfg(struct efx_nic *efx, u8 *mac_address,
  257. u16 *fw_subtype_list, u32 *capabilities);
  258. int efx_mcdi_log_ctrl(struct efx_nic *efx, bool evq, bool uart, u32 dest_evq);
  259. int efx_mcdi_nvram_types(struct efx_nic *efx, u32 *nvram_types_out);
  260. int efx_mcdi_nvram_info(struct efx_nic *efx, unsigned int type,
  261. size_t *size_out, size_t *erase_size_out,
  262. bool *protected_out);
  263. int efx_mcdi_nvram_test_all(struct efx_nic *efx);
  264. int efx_mcdi_handle_assertion(struct efx_nic *efx);
  265. void efx_mcdi_set_id_led(struct efx_nic *efx, enum efx_led_mode mode);
  266. int efx_mcdi_wol_filter_set_magic(struct efx_nic *efx, const u8 *mac,
  267. int *id_out);
  268. int efx_mcdi_wol_filter_get_magic(struct efx_nic *efx, int *id_out);
  269. int efx_mcdi_wol_filter_remove(struct efx_nic *efx, int id);
  270. int efx_mcdi_wol_filter_reset(struct efx_nic *efx);
  271. int efx_mcdi_flush_rxqs(struct efx_nic *efx);
  272. int efx_mcdi_port_probe(struct efx_nic *efx);
  273. void efx_mcdi_port_remove(struct efx_nic *efx);
  274. int efx_mcdi_port_reconfigure(struct efx_nic *efx);
  275. int efx_mcdi_port_get_number(struct efx_nic *efx);
  276. u32 efx_mcdi_phy_get_caps(struct efx_nic *efx);
  277. void efx_mcdi_process_link_change(struct efx_nic *efx, efx_qword_t *ev);
  278. int efx_mcdi_set_mac(struct efx_nic *efx);
  279. #define EFX_MC_STATS_GENERATION_INVALID ((__force __le64)(-1))
  280. void efx_mcdi_mac_start_stats(struct efx_nic *efx);
  281. void efx_mcdi_mac_stop_stats(struct efx_nic *efx);
  282. bool efx_mcdi_mac_check_fault(struct efx_nic *efx);
  283. enum reset_type efx_mcdi_map_reset_reason(enum reset_type reason);
  284. int efx_mcdi_reset(struct efx_nic *efx, enum reset_type method);
  285. int efx_mcdi_set_workaround(struct efx_nic *efx, u32 type, bool enabled);
  286. #ifdef CONFIG_SFC_MCDI_MON
  287. int efx_mcdi_mon_probe(struct efx_nic *efx);
  288. void efx_mcdi_mon_remove(struct efx_nic *efx);
  289. #else
  290. static inline int efx_mcdi_mon_probe(struct efx_nic *efx) { return 0; }
  291. static inline void efx_mcdi_mon_remove(struct efx_nic *efx) {}
  292. #endif
  293. #ifdef CONFIG_SFC_MTD
  294. int efx_mcdi_mtd_read(struct mtd_info *mtd, loff_t start, size_t len,
  295. size_t *retlen, u8 *buffer);
  296. int efx_mcdi_mtd_erase(struct mtd_info *mtd, loff_t start, size_t len);
  297. int efx_mcdi_mtd_write(struct mtd_info *mtd, loff_t start, size_t len,
  298. size_t *retlen, const u8 *buffer);
  299. int efx_mcdi_mtd_sync(struct mtd_info *mtd);
  300. void efx_mcdi_mtd_rename(struct efx_mtd_partition *part);
  301. #endif
  302. #endif /* EFX_MCDI_H */