bna.h 13 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Linux network driver for QLogic BR-series Converged Network Adapter.
  4. */
  5. /*
  6. * Copyright (c) 2005-2014 Brocade Communications Systems, Inc.
  7. * Copyright (c) 2014-2015 QLogic Corporation
  8. * All rights reserved
  9. * www.qlogic.com
  10. */
  11. #ifndef __BNA_H__
  12. #define __BNA_H__
  13. #include "bfa_defs.h"
  14. #include "bfa_ioc.h"
  15. #include "bfi_enet.h"
  16. #include "bna_types.h"
  17. extern const u32 bna_napi_dim_vector[][BNA_BIAS_T_MAX];
  18. /* Macros and constants */
  19. #define bna_is_small_rxq(_id) ((_id) & 0x1)
  20. /*
  21. * input : _addr-> os dma addr in host endian format,
  22. * output : _bna_dma_addr-> pointer to hw dma addr
  23. */
  24. #define BNA_SET_DMA_ADDR(_addr, _bna_dma_addr) \
  25. do { \
  26. u64 tmp_addr = \
  27. cpu_to_be64((u64)(_addr)); \
  28. (_bna_dma_addr)->msb = ((struct bna_dma_addr *)&tmp_addr)->msb; \
  29. (_bna_dma_addr)->lsb = ((struct bna_dma_addr *)&tmp_addr)->lsb; \
  30. } while (0)
  31. /*
  32. * input : _bna_dma_addr-> pointer to hw dma addr
  33. * output : _addr-> os dma addr in host endian format
  34. */
  35. #define BNA_GET_DMA_ADDR(_bna_dma_addr, _addr) \
  36. do { \
  37. (_addr) = ((((u64)ntohl((_bna_dma_addr)->msb))) << 32) \
  38. | ((ntohl((_bna_dma_addr)->lsb) & 0xffffffff)); \
  39. } while (0)
  40. #define BNA_TXQ_WI_NEEDED(_vectors) (((_vectors) + 3) >> 2)
  41. #define BNA_QE_INDX_ADD(_qe_idx, _qe_num, _q_depth) \
  42. ((_qe_idx) = ((_qe_idx) + (_qe_num)) & ((_q_depth) - 1))
  43. #define BNA_QE_INDX_INC(_idx, _q_depth) BNA_QE_INDX_ADD(_idx, 1, _q_depth)
  44. #define BNA_Q_INDEX_CHANGE(_old_idx, _updated_idx, _q_depth) \
  45. (((_updated_idx) - (_old_idx)) & ((_q_depth) - 1))
  46. #define BNA_QE_FREE_CNT(_q_ptr, _q_depth) \
  47. (((_q_ptr)->consumer_index - (_q_ptr)->producer_index - 1) & \
  48. ((_q_depth) - 1))
  49. #define BNA_QE_IN_USE_CNT(_q_ptr, _q_depth) \
  50. ((((_q_ptr)->producer_index - (_q_ptr)->consumer_index)) & \
  51. (_q_depth - 1))
  52. #define BNA_LARGE_PKT_SIZE 1000
  53. #define BNA_UPDATE_PKT_CNT(_pkt, _len) \
  54. do { \
  55. if ((_len) > BNA_LARGE_PKT_SIZE) { \
  56. (_pkt)->large_pkt_cnt++; \
  57. } else { \
  58. (_pkt)->small_pkt_cnt++; \
  59. } \
  60. } while (0)
  61. #define call_rxf_stop_cbfn(rxf) \
  62. do { \
  63. if ((rxf)->stop_cbfn) { \
  64. void (*cbfn)(struct bna_rx *); \
  65. struct bna_rx *cbarg; \
  66. cbfn = (rxf)->stop_cbfn; \
  67. cbarg = (rxf)->stop_cbarg; \
  68. (rxf)->stop_cbfn = NULL; \
  69. (rxf)->stop_cbarg = NULL; \
  70. cbfn(cbarg); \
  71. } \
  72. } while (0)
  73. #define call_rxf_start_cbfn(rxf) \
  74. do { \
  75. if ((rxf)->start_cbfn) { \
  76. void (*cbfn)(struct bna_rx *); \
  77. struct bna_rx *cbarg; \
  78. cbfn = (rxf)->start_cbfn; \
  79. cbarg = (rxf)->start_cbarg; \
  80. (rxf)->start_cbfn = NULL; \
  81. (rxf)->start_cbarg = NULL; \
  82. cbfn(cbarg); \
  83. } \
  84. } while (0)
  85. #define call_rxf_cam_fltr_cbfn(rxf) \
  86. do { \
  87. if ((rxf)->cam_fltr_cbfn) { \
  88. void (*cbfn)(struct bnad *, struct bna_rx *); \
  89. struct bnad *cbarg; \
  90. cbfn = (rxf)->cam_fltr_cbfn; \
  91. cbarg = (rxf)->cam_fltr_cbarg; \
  92. (rxf)->cam_fltr_cbfn = NULL; \
  93. (rxf)->cam_fltr_cbarg = NULL; \
  94. cbfn(cbarg, rxf->rx); \
  95. } \
  96. } while (0)
  97. #define is_xxx_enable(mode, bitmask, xxx) ((bitmask & xxx) && (mode & xxx))
  98. #define is_xxx_disable(mode, bitmask, xxx) ((bitmask & xxx) && !(mode & xxx))
  99. #define xxx_enable(mode, bitmask, xxx) \
  100. do { \
  101. bitmask |= xxx; \
  102. mode |= xxx; \
  103. } while (0)
  104. #define xxx_disable(mode, bitmask, xxx) \
  105. do { \
  106. bitmask |= xxx; \
  107. mode &= ~xxx; \
  108. } while (0)
  109. #define xxx_inactive(mode, bitmask, xxx) \
  110. do { \
  111. bitmask &= ~xxx; \
  112. mode &= ~xxx; \
  113. } while (0)
  114. #define is_promisc_enable(mode, bitmask) \
  115. is_xxx_enable(mode, bitmask, BNA_RXMODE_PROMISC)
  116. #define is_promisc_disable(mode, bitmask) \
  117. is_xxx_disable(mode, bitmask, BNA_RXMODE_PROMISC)
  118. #define promisc_enable(mode, bitmask) \
  119. xxx_enable(mode, bitmask, BNA_RXMODE_PROMISC)
  120. #define promisc_disable(mode, bitmask) \
  121. xxx_disable(mode, bitmask, BNA_RXMODE_PROMISC)
  122. #define promisc_inactive(mode, bitmask) \
  123. xxx_inactive(mode, bitmask, BNA_RXMODE_PROMISC)
  124. #define is_default_enable(mode, bitmask) \
  125. is_xxx_enable(mode, bitmask, BNA_RXMODE_DEFAULT)
  126. #define is_default_disable(mode, bitmask) \
  127. is_xxx_disable(mode, bitmask, BNA_RXMODE_DEFAULT)
  128. #define default_enable(mode, bitmask) \
  129. xxx_enable(mode, bitmask, BNA_RXMODE_DEFAULT)
  130. #define default_disable(mode, bitmask) \
  131. xxx_disable(mode, bitmask, BNA_RXMODE_DEFAULT)
  132. #define default_inactive(mode, bitmask) \
  133. xxx_inactive(mode, bitmask, BNA_RXMODE_DEFAULT)
  134. #define is_allmulti_enable(mode, bitmask) \
  135. is_xxx_enable(mode, bitmask, BNA_RXMODE_ALLMULTI)
  136. #define is_allmulti_disable(mode, bitmask) \
  137. is_xxx_disable(mode, bitmask, BNA_RXMODE_ALLMULTI)
  138. #define allmulti_enable(mode, bitmask) \
  139. xxx_enable(mode, bitmask, BNA_RXMODE_ALLMULTI)
  140. #define allmulti_disable(mode, bitmask) \
  141. xxx_disable(mode, bitmask, BNA_RXMODE_ALLMULTI)
  142. #define allmulti_inactive(mode, bitmask) \
  143. xxx_inactive(mode, bitmask, BNA_RXMODE_ALLMULTI)
  144. #define GET_RXQS(rxp, q0, q1) do { \
  145. switch ((rxp)->type) { \
  146. case BNA_RXP_SINGLE: \
  147. (q0) = rxp->rxq.single.only; \
  148. (q1) = NULL; \
  149. break; \
  150. case BNA_RXP_SLR: \
  151. (q0) = rxp->rxq.slr.large; \
  152. (q1) = rxp->rxq.slr.small; \
  153. break; \
  154. case BNA_RXP_HDS: \
  155. (q0) = rxp->rxq.hds.data; \
  156. (q1) = rxp->rxq.hds.hdr; \
  157. break; \
  158. } \
  159. } while (0)
  160. #define bna_tx_rid_mask(_bna) ((_bna)->tx_mod.rid_mask)
  161. #define bna_rx_rid_mask(_bna) ((_bna)->rx_mod.rid_mask)
  162. #define bna_tx_from_rid(_bna, _rid, _tx) \
  163. do { \
  164. struct bna_tx_mod *__tx_mod = &(_bna)->tx_mod; \
  165. struct bna_tx *__tx; \
  166. _tx = NULL; \
  167. list_for_each_entry(__tx, &__tx_mod->tx_active_q, qe) { \
  168. if (__tx->rid == (_rid)) { \
  169. (_tx) = __tx; \
  170. break; \
  171. } \
  172. } \
  173. } while (0)
  174. #define bna_rx_from_rid(_bna, _rid, _rx) \
  175. do { \
  176. struct bna_rx_mod *__rx_mod = &(_bna)->rx_mod; \
  177. struct bna_rx *__rx; \
  178. _rx = NULL; \
  179. list_for_each_entry(__rx, &__rx_mod->rx_active_q, qe) { \
  180. if (__rx->rid == (_rid)) { \
  181. (_rx) = __rx; \
  182. break; \
  183. } \
  184. } \
  185. } while (0)
  186. #define bna_mcam_mod_free_q(_bna) (&(_bna)->mcam_mod.free_q)
  187. #define bna_mcam_mod_del_q(_bna) (&(_bna)->mcam_mod.del_q)
  188. #define bna_ucam_mod_free_q(_bna) (&(_bna)->ucam_mod.free_q)
  189. #define bna_ucam_mod_del_q(_bna) (&(_bna)->ucam_mod.del_q)
  190. /* Inline functions */
  191. static inline struct bna_mac *bna_mac_find(struct list_head *q, const u8 *addr)
  192. {
  193. struct bna_mac *mac;
  194. list_for_each_entry(mac, q, qe)
  195. if (ether_addr_equal(mac->addr, addr))
  196. return mac;
  197. return NULL;
  198. }
  199. #define bna_attr(_bna) (&(_bna)->ioceth.attr)
  200. /* Function prototypes */
  201. /* BNA */
  202. /* FW response handlers */
  203. void bna_bfi_stats_clr_rsp(struct bna *bna, struct bfi_msgq_mhdr *msghdr);
  204. /* APIs for BNAD */
  205. void bna_res_req(struct bna_res_info *res_info);
  206. void bna_mod_res_req(struct bna *bna, struct bna_res_info *res_info);
  207. void bna_init(struct bna *bna, struct bnad *bnad,
  208. struct bfa_pcidev *pcidev,
  209. struct bna_res_info *res_info);
  210. void bna_mod_init(struct bna *bna, struct bna_res_info *res_info);
  211. void bna_uninit(struct bna *bna);
  212. int bna_num_txq_set(struct bna *bna, int num_txq);
  213. int bna_num_rxp_set(struct bna *bna, int num_rxp);
  214. void bna_hw_stats_get(struct bna *bna);
  215. /* APIs for RxF */
  216. struct bna_mac *bna_cam_mod_mac_get(struct list_head *head);
  217. struct bna_mcam_handle *bna_mcam_mod_handle_get(struct bna_mcam_mod *mod);
  218. void bna_mcam_mod_handle_put(struct bna_mcam_mod *mcam_mod,
  219. struct bna_mcam_handle *handle);
  220. /* MBOX */
  221. /* API for BNAD */
  222. void bna_mbox_handler(struct bna *bna, u32 intr_status);
  223. /* ETHPORT */
  224. /* Callbacks for RX */
  225. void bna_ethport_cb_rx_started(struct bna_ethport *ethport);
  226. void bna_ethport_cb_rx_stopped(struct bna_ethport *ethport);
  227. /* TX MODULE AND TX */
  228. /* FW response handelrs */
  229. void bna_bfi_tx_enet_start_rsp(struct bna_tx *tx,
  230. struct bfi_msgq_mhdr *msghdr);
  231. void bna_bfi_tx_enet_stop_rsp(struct bna_tx *tx,
  232. struct bfi_msgq_mhdr *msghdr);
  233. void bna_bfi_bw_update_aen(struct bna_tx_mod *tx_mod);
  234. /* APIs for BNA */
  235. void bna_tx_mod_init(struct bna_tx_mod *tx_mod, struct bna *bna,
  236. struct bna_res_info *res_info);
  237. void bna_tx_mod_uninit(struct bna_tx_mod *tx_mod);
  238. /* APIs for ENET */
  239. void bna_tx_mod_start(struct bna_tx_mod *tx_mod, enum bna_tx_type type);
  240. void bna_tx_mod_stop(struct bna_tx_mod *tx_mod, enum bna_tx_type type);
  241. void bna_tx_mod_fail(struct bna_tx_mod *tx_mod);
  242. /* APIs for BNAD */
  243. void bna_tx_res_req(int num_txq, int txq_depth,
  244. struct bna_res_info *res_info);
  245. struct bna_tx *bna_tx_create(struct bna *bna, struct bnad *bnad,
  246. struct bna_tx_config *tx_cfg,
  247. const struct bna_tx_event_cbfn *tx_cbfn,
  248. struct bna_res_info *res_info, void *priv);
  249. void bna_tx_destroy(struct bna_tx *tx);
  250. void bna_tx_enable(struct bna_tx *tx);
  251. void bna_tx_disable(struct bna_tx *tx, enum bna_cleanup_type type,
  252. void (*cbfn)(void *, struct bna_tx *));
  253. void bna_tx_cleanup_complete(struct bna_tx *tx);
  254. void bna_tx_coalescing_timeo_set(struct bna_tx *tx, int coalescing_timeo);
  255. /* RX MODULE, RX, RXF */
  256. /* FW response handlers */
  257. void bna_bfi_rx_enet_start_rsp(struct bna_rx *rx,
  258. struct bfi_msgq_mhdr *msghdr);
  259. void bna_bfi_rx_enet_stop_rsp(struct bna_rx *rx,
  260. struct bfi_msgq_mhdr *msghdr);
  261. void bna_bfi_rxf_cfg_rsp(struct bna_rxf *rxf, struct bfi_msgq_mhdr *msghdr);
  262. void bna_bfi_rxf_mcast_add_rsp(struct bna_rxf *rxf,
  263. struct bfi_msgq_mhdr *msghdr);
  264. void bna_bfi_rxf_ucast_set_rsp(struct bna_rxf *rxf,
  265. struct bfi_msgq_mhdr *msghdr);
  266. /* APIs for BNA */
  267. void bna_rx_mod_init(struct bna_rx_mod *rx_mod, struct bna *bna,
  268. struct bna_res_info *res_info);
  269. void bna_rx_mod_uninit(struct bna_rx_mod *rx_mod);
  270. /* APIs for ENET */
  271. void bna_rx_mod_start(struct bna_rx_mod *rx_mod, enum bna_rx_type type);
  272. void bna_rx_mod_stop(struct bna_rx_mod *rx_mod, enum bna_rx_type type);
  273. void bna_rx_mod_fail(struct bna_rx_mod *rx_mod);
  274. /* APIs for BNAD */
  275. void bna_rx_res_req(struct bna_rx_config *rx_config,
  276. struct bna_res_info *res_info);
  277. struct bna_rx *bna_rx_create(struct bna *bna, struct bnad *bnad,
  278. struct bna_rx_config *rx_cfg,
  279. const struct bna_rx_event_cbfn *rx_cbfn,
  280. struct bna_res_info *res_info, void *priv);
  281. void bna_rx_destroy(struct bna_rx *rx);
  282. void bna_rx_enable(struct bna_rx *rx);
  283. void bna_rx_disable(struct bna_rx *rx, enum bna_cleanup_type type,
  284. void (*cbfn)(void *, struct bna_rx *));
  285. void bna_rx_cleanup_complete(struct bna_rx *rx);
  286. void bna_rx_coalescing_timeo_set(struct bna_rx *rx, int coalescing_timeo);
  287. void bna_rx_dim_reconfig(struct bna *bna, const u32 vector[][BNA_BIAS_T_MAX]);
  288. void bna_rx_dim_update(struct bna_ccb *ccb);
  289. enum bna_cb_status bna_rx_ucast_set(struct bna_rx *rx, const u8 *ucmac);
  290. enum bna_cb_status bna_rx_ucast_listset(struct bna_rx *rx, int count,
  291. const u8 *uclist);
  292. enum bna_cb_status bna_rx_mcast_add(struct bna_rx *rx, const u8 *mcmac,
  293. void (*cbfn)(struct bnad *,
  294. struct bna_rx *));
  295. enum bna_cb_status bna_rx_mcast_listset(struct bna_rx *rx, int count,
  296. const u8 *mcmac);
  297. void
  298. bna_rx_mcast_delall(struct bna_rx *rx);
  299. enum bna_cb_status
  300. bna_rx_mode_set(struct bna_rx *rx, enum bna_rxmode rxmode,
  301. enum bna_rxmode bitmask);
  302. void bna_rx_vlan_add(struct bna_rx *rx, int vlan_id);
  303. void bna_rx_vlan_del(struct bna_rx *rx, int vlan_id);
  304. void bna_rx_vlanfilter_enable(struct bna_rx *rx);
  305. void bna_rx_vlan_strip_enable(struct bna_rx *rx);
  306. void bna_rx_vlan_strip_disable(struct bna_rx *rx);
  307. /* ENET */
  308. /* API for RX */
  309. int bna_enet_mtu_get(struct bna_enet *enet);
  310. /* Callbacks for TX, RX */
  311. void bna_enet_cb_tx_stopped(struct bna_enet *enet);
  312. void bna_enet_cb_rx_stopped(struct bna_enet *enet);
  313. /* API for BNAD */
  314. void bna_enet_enable(struct bna_enet *enet);
  315. void bna_enet_disable(struct bna_enet *enet, enum bna_cleanup_type type,
  316. void (*cbfn)(void *));
  317. void bna_enet_pause_config(struct bna_enet *enet,
  318. struct bna_pause_config *pause_config);
  319. void bna_enet_mtu_set(struct bna_enet *enet, int mtu,
  320. void (*cbfn)(struct bnad *));
  321. void bna_enet_perm_mac_get(struct bna_enet *enet, u8 *mac);
  322. /* IOCETH */
  323. /* APIs for BNAD */
  324. void bna_ioceth_enable(struct bna_ioceth *ioceth);
  325. void bna_ioceth_disable(struct bna_ioceth *ioceth,
  326. enum bna_cleanup_type type);
  327. /* BNAD */
  328. /* Callbacks for ENET */
  329. void bnad_cb_ethport_link_status(struct bnad *bnad,
  330. enum bna_link_status status);
  331. /* Callbacks for IOCETH */
  332. void bnad_cb_ioceth_ready(struct bnad *bnad);
  333. void bnad_cb_ioceth_failed(struct bnad *bnad);
  334. void bnad_cb_ioceth_disabled(struct bnad *bnad);
  335. void bnad_cb_mbox_intr_enable(struct bnad *bnad);
  336. void bnad_cb_mbox_intr_disable(struct bnad *bnad);
  337. /* Callbacks for BNA */
  338. void bnad_cb_stats_get(struct bnad *bnad, enum bna_cb_status status,
  339. struct bna_stats *stats);
  340. #endif /* __BNA_H__ */