bnx2x.h 67 KB

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  1. /* bnx2x.h: Broadcom Everest network driver.
  2. *
  3. * Copyright (c) 2007-2012 Broadcom Corporation
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation.
  8. *
  9. * Maintained by: Eilon Greenstein <eilong@broadcom.com>
  10. * Written by: Eliezer Tamir
  11. * Based on code from Michael Chan's bnx2 driver
  12. */
  13. #ifndef BNX2X_H
  14. #define BNX2X_H
  15. #include <linux/netdevice.h>
  16. #include <linux/dma-mapping.h>
  17. #include <linux/types.h>
  18. /* compilation time flags */
  19. /* define this to make the driver freeze on error to allow getting debug info
  20. * (you will need to reboot afterwards) */
  21. /* #define BNX2X_STOP_ON_ERROR */
  22. #define DRV_MODULE_VERSION "1.78.00-0"
  23. #define DRV_MODULE_RELDATE "2012/09/27"
  24. #define BNX2X_BC_VER 0x040200
  25. #if defined(CONFIG_DCB)
  26. #define BCM_DCBNL
  27. #endif
  28. #include "bnx2x_hsi.h"
  29. #include "../cnic_if.h"
  30. #define BNX2X_MIN_MSIX_VEC_CNT(bp) ((bp)->min_msix_vec_cnt)
  31. #include <linux/mdio.h>
  32. #include "bnx2x_reg.h"
  33. #include "bnx2x_fw_defs.h"
  34. #include "bnx2x_mfw_req.h"
  35. #include "bnx2x_link.h"
  36. #include "bnx2x_sp.h"
  37. #include "bnx2x_dcb.h"
  38. #include "bnx2x_stats.h"
  39. enum bnx2x_int_mode {
  40. BNX2X_INT_MODE_MSIX,
  41. BNX2X_INT_MODE_INTX,
  42. BNX2X_INT_MODE_MSI
  43. };
  44. /* error/debug prints */
  45. #define DRV_MODULE_NAME "bnx2x"
  46. /* for messages that are currently off */
  47. #define BNX2X_MSG_OFF 0x0
  48. #define BNX2X_MSG_MCP 0x0010000 /* was: NETIF_MSG_HW */
  49. #define BNX2X_MSG_STATS 0x0020000 /* was: NETIF_MSG_TIMER */
  50. #define BNX2X_MSG_NVM 0x0040000 /* was: NETIF_MSG_HW */
  51. #define BNX2X_MSG_DMAE 0x0080000 /* was: NETIF_MSG_HW */
  52. #define BNX2X_MSG_SP 0x0100000 /* was: NETIF_MSG_INTR */
  53. #define BNX2X_MSG_FP 0x0200000 /* was: NETIF_MSG_INTR */
  54. #define BNX2X_MSG_IOV 0x0800000
  55. #define BNX2X_MSG_IDLE 0x2000000 /* used for idle check*/
  56. #define BNX2X_MSG_ETHTOOL 0x4000000
  57. #define BNX2X_MSG_DCB 0x8000000
  58. /* regular debug print */
  59. #define DP(__mask, fmt, ...) \
  60. do { \
  61. if (unlikely(bp->msg_enable & (__mask))) \
  62. pr_notice("[%s:%d(%s)]" fmt, \
  63. __func__, __LINE__, \
  64. bp->dev ? (bp->dev->name) : "?", \
  65. ##__VA_ARGS__); \
  66. } while (0)
  67. #define DP_CONT(__mask, fmt, ...) \
  68. do { \
  69. if (unlikely(bp->msg_enable & (__mask))) \
  70. pr_cont(fmt, ##__VA_ARGS__); \
  71. } while (0)
  72. /* errors debug print */
  73. #define BNX2X_DBG_ERR(fmt, ...) \
  74. do { \
  75. if (unlikely(netif_msg_probe(bp))) \
  76. pr_err("[%s:%d(%s)]" fmt, \
  77. __func__, __LINE__, \
  78. bp->dev ? (bp->dev->name) : "?", \
  79. ##__VA_ARGS__); \
  80. } while (0)
  81. /* for errors (never masked) */
  82. #define BNX2X_ERR(fmt, ...) \
  83. do { \
  84. pr_err("[%s:%d(%s)]" fmt, \
  85. __func__, __LINE__, \
  86. bp->dev ? (bp->dev->name) : "?", \
  87. ##__VA_ARGS__); \
  88. } while (0)
  89. #define BNX2X_ERROR(fmt, ...) \
  90. pr_err("[%s:%d]" fmt, __func__, __LINE__, ##__VA_ARGS__)
  91. /* before we have a dev->name use dev_info() */
  92. #define BNX2X_DEV_INFO(fmt, ...) \
  93. do { \
  94. if (unlikely(netif_msg_probe(bp))) \
  95. dev_info(&bp->pdev->dev, fmt, ##__VA_ARGS__); \
  96. } while (0)
  97. #ifdef BNX2X_STOP_ON_ERROR
  98. void bnx2x_int_disable(struct bnx2x *bp);
  99. #define bnx2x_panic() \
  100. do { \
  101. bp->panic = 1; \
  102. BNX2X_ERR("driver assert\n"); \
  103. bnx2x_int_disable(bp); \
  104. bnx2x_panic_dump(bp); \
  105. } while (0)
  106. #else
  107. #define bnx2x_panic() \
  108. do { \
  109. bp->panic = 1; \
  110. BNX2X_ERR("driver assert\n"); \
  111. bnx2x_panic_dump(bp); \
  112. } while (0)
  113. #endif
  114. #define bnx2x_mc_addr(ha) ((ha)->addr)
  115. #define bnx2x_uc_addr(ha) ((ha)->addr)
  116. #define U64_LO(x) (u32)(((u64)(x)) & 0xffffffff)
  117. #define U64_HI(x) (u32)(((u64)(x)) >> 32)
  118. #define HILO_U64(hi, lo) ((((u64)(hi)) << 32) + (lo))
  119. #define REG_ADDR(bp, offset) ((bp->regview) + (offset))
  120. #define REG_RD(bp, offset) readl(REG_ADDR(bp, offset))
  121. #define REG_RD8(bp, offset) readb(REG_ADDR(bp, offset))
  122. #define REG_RD16(bp, offset) readw(REG_ADDR(bp, offset))
  123. #define REG_WR(bp, offset, val) writel((u32)val, REG_ADDR(bp, offset))
  124. #define REG_WR8(bp, offset, val) writeb((u8)val, REG_ADDR(bp, offset))
  125. #define REG_WR16(bp, offset, val) writew((u16)val, REG_ADDR(bp, offset))
  126. #define REG_RD_IND(bp, offset) bnx2x_reg_rd_ind(bp, offset)
  127. #define REG_WR_IND(bp, offset, val) bnx2x_reg_wr_ind(bp, offset, val)
  128. #define REG_RD_DMAE(bp, offset, valp, len32) \
  129. do { \
  130. bnx2x_read_dmae(bp, offset, len32);\
  131. memcpy(valp, bnx2x_sp(bp, wb_data[0]), (len32) * 4); \
  132. } while (0)
  133. #define REG_WR_DMAE(bp, offset, valp, len32) \
  134. do { \
  135. memcpy(bnx2x_sp(bp, wb_data[0]), valp, (len32) * 4); \
  136. bnx2x_write_dmae(bp, bnx2x_sp_mapping(bp, wb_data), \
  137. offset, len32); \
  138. } while (0)
  139. #define REG_WR_DMAE_LEN(bp, offset, valp, len32) \
  140. REG_WR_DMAE(bp, offset, valp, len32)
  141. #define VIRT_WR_DMAE_LEN(bp, data, addr, len32, le32_swap) \
  142. do { \
  143. memcpy(GUNZIP_BUF(bp), data, (len32) * 4); \
  144. bnx2x_write_big_buf_wb(bp, addr, len32); \
  145. } while (0)
  146. #define SHMEM_ADDR(bp, field) (bp->common.shmem_base + \
  147. offsetof(struct shmem_region, field))
  148. #define SHMEM_RD(bp, field) REG_RD(bp, SHMEM_ADDR(bp, field))
  149. #define SHMEM_WR(bp, field, val) REG_WR(bp, SHMEM_ADDR(bp, field), val)
  150. #define SHMEM2_ADDR(bp, field) (bp->common.shmem2_base + \
  151. offsetof(struct shmem2_region, field))
  152. #define SHMEM2_RD(bp, field) REG_RD(bp, SHMEM2_ADDR(bp, field))
  153. #define SHMEM2_WR(bp, field, val) REG_WR(bp, SHMEM2_ADDR(bp, field), val)
  154. #define MF_CFG_ADDR(bp, field) (bp->common.mf_cfg_base + \
  155. offsetof(struct mf_cfg, field))
  156. #define MF2_CFG_ADDR(bp, field) (bp->common.mf2_cfg_base + \
  157. offsetof(struct mf2_cfg, field))
  158. #define MF_CFG_RD(bp, field) REG_RD(bp, MF_CFG_ADDR(bp, field))
  159. #define MF_CFG_WR(bp, field, val) REG_WR(bp,\
  160. MF_CFG_ADDR(bp, field), (val))
  161. #define MF2_CFG_RD(bp, field) REG_RD(bp, MF2_CFG_ADDR(bp, field))
  162. #define SHMEM2_HAS(bp, field) ((bp)->common.shmem2_base && \
  163. (SHMEM2_RD((bp), size) > \
  164. offsetof(struct shmem2_region, field)))
  165. #define EMAC_RD(bp, reg) REG_RD(bp, emac_base + reg)
  166. #define EMAC_WR(bp, reg, val) REG_WR(bp, emac_base + reg, val)
  167. /* SP SB indices */
  168. /* General SP events - stats query, cfc delete, etc */
  169. #define HC_SP_INDEX_ETH_DEF_CONS 3
  170. /* EQ completions */
  171. #define HC_SP_INDEX_EQ_CONS 7
  172. /* FCoE L2 connection completions */
  173. #define HC_SP_INDEX_ETH_FCOE_TX_CQ_CONS 6
  174. #define HC_SP_INDEX_ETH_FCOE_RX_CQ_CONS 4
  175. /* iSCSI L2 */
  176. #define HC_SP_INDEX_ETH_ISCSI_CQ_CONS 5
  177. #define HC_SP_INDEX_ETH_ISCSI_RX_CQ_CONS 1
  178. /* Special clients parameters */
  179. /* SB indices */
  180. /* FCoE L2 */
  181. #define BNX2X_FCOE_L2_RX_INDEX \
  182. (&bp->def_status_blk->sp_sb.\
  183. index_values[HC_SP_INDEX_ETH_FCOE_RX_CQ_CONS])
  184. #define BNX2X_FCOE_L2_TX_INDEX \
  185. (&bp->def_status_blk->sp_sb.\
  186. index_values[HC_SP_INDEX_ETH_FCOE_TX_CQ_CONS])
  187. /**
  188. * CIDs and CLIDs:
  189. * CLIDs below is a CLID for func 0, then the CLID for other
  190. * functions will be calculated by the formula:
  191. *
  192. * FUNC_N_CLID_X = N * NUM_SPECIAL_CLIENTS + FUNC_0_CLID_X
  193. *
  194. */
  195. enum {
  196. BNX2X_ISCSI_ETH_CL_ID_IDX,
  197. BNX2X_FCOE_ETH_CL_ID_IDX,
  198. BNX2X_MAX_CNIC_ETH_CL_ID_IDX,
  199. };
  200. #define BNX2X_CNIC_START_ETH_CID(bp) (BNX2X_NUM_NON_CNIC_QUEUES(bp) *\
  201. (bp)->max_cos)
  202. /* iSCSI L2 */
  203. #define BNX2X_ISCSI_ETH_CID(bp) (BNX2X_CNIC_START_ETH_CID(bp))
  204. /* FCoE L2 */
  205. #define BNX2X_FCOE_ETH_CID(bp) (BNX2X_CNIC_START_ETH_CID(bp) + 1)
  206. #define CNIC_SUPPORT(bp) ((bp)->cnic_support)
  207. #define CNIC_ENABLED(bp) ((bp)->cnic_enabled)
  208. #define CNIC_LOADED(bp) ((bp)->cnic_loaded)
  209. #define FCOE_INIT(bp) ((bp)->fcoe_init)
  210. #define AEU_IN_ATTN_BITS_PXPPCICLOCKCLIENT_PARITY_ERROR \
  211. AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_PARITY_ERROR
  212. #define SM_RX_ID 0
  213. #define SM_TX_ID 1
  214. /* defines for multiple tx priority indices */
  215. #define FIRST_TX_ONLY_COS_INDEX 1
  216. #define FIRST_TX_COS_INDEX 0
  217. /* rules for calculating the cids of tx-only connections */
  218. #define CID_TO_FP(cid, bp) ((cid) % BNX2X_NUM_NON_CNIC_QUEUES(bp))
  219. #define CID_COS_TO_TX_ONLY_CID(cid, cos, bp) \
  220. (cid + cos * BNX2X_NUM_NON_CNIC_QUEUES(bp))
  221. /* fp index inside class of service range */
  222. #define FP_COS_TO_TXQ(fp, cos, bp) \
  223. ((fp)->index + cos * BNX2X_NUM_NON_CNIC_QUEUES(bp))
  224. /* Indexes for transmission queues array:
  225. * txdata for RSS i CoS j is at location i + (j * num of RSS)
  226. * txdata for FCoE (if exist) is at location max cos * num of RSS
  227. * txdata for FWD (if exist) is one location after FCoE
  228. * txdata for OOO (if exist) is one location after FWD
  229. */
  230. enum {
  231. FCOE_TXQ_IDX_OFFSET,
  232. FWD_TXQ_IDX_OFFSET,
  233. OOO_TXQ_IDX_OFFSET,
  234. };
  235. #define MAX_ETH_TXQ_IDX(bp) (BNX2X_NUM_NON_CNIC_QUEUES(bp) * (bp)->max_cos)
  236. #define FCOE_TXQ_IDX(bp) (MAX_ETH_TXQ_IDX(bp) + FCOE_TXQ_IDX_OFFSET)
  237. /* fast path */
  238. /*
  239. * This driver uses new build_skb() API :
  240. * RX ring buffer contains pointer to kmalloc() data only,
  241. * skb are built only after Hardware filled the frame.
  242. */
  243. struct sw_rx_bd {
  244. u8 *data;
  245. DEFINE_DMA_UNMAP_ADDR(mapping);
  246. };
  247. struct sw_tx_bd {
  248. struct sk_buff *skb;
  249. u16 first_bd;
  250. u8 flags;
  251. /* Set on the first BD descriptor when there is a split BD */
  252. #define BNX2X_TSO_SPLIT_BD (1<<0)
  253. };
  254. struct sw_rx_page {
  255. struct page *page;
  256. DEFINE_DMA_UNMAP_ADDR(mapping);
  257. };
  258. union db_prod {
  259. struct doorbell_set_prod data;
  260. u32 raw;
  261. };
  262. /* dropless fc FW/HW related params */
  263. #define BRB_SIZE(bp) (CHIP_IS_E3(bp) ? 1024 : 512)
  264. #define MAX_AGG_QS(bp) (CHIP_IS_E1(bp) ? \
  265. ETH_MAX_AGGREGATION_QUEUES_E1 :\
  266. ETH_MAX_AGGREGATION_QUEUES_E1H_E2)
  267. #define FW_DROP_LEVEL(bp) (3 + MAX_SPQ_PENDING + MAX_AGG_QS(bp))
  268. #define FW_PREFETCH_CNT 16
  269. #define DROPLESS_FC_HEADROOM 100
  270. /* MC hsi */
  271. #define BCM_PAGE_SHIFT 12
  272. #define BCM_PAGE_SIZE (1 << BCM_PAGE_SHIFT)
  273. #define BCM_PAGE_MASK (~(BCM_PAGE_SIZE - 1))
  274. #define BCM_PAGE_ALIGN(addr) (((addr) + BCM_PAGE_SIZE - 1) & BCM_PAGE_MASK)
  275. #define PAGES_PER_SGE_SHIFT 0
  276. #define PAGES_PER_SGE (1 << PAGES_PER_SGE_SHIFT)
  277. #define SGE_PAGE_SIZE PAGE_SIZE
  278. #define SGE_PAGE_SHIFT PAGE_SHIFT
  279. #define SGE_PAGE_ALIGN(addr) PAGE_ALIGN((typeof(PAGE_SIZE))(addr))
  280. /* SGE ring related macros */
  281. #define NUM_RX_SGE_PAGES 2
  282. #define RX_SGE_CNT (BCM_PAGE_SIZE / sizeof(struct eth_rx_sge))
  283. #define NEXT_PAGE_SGE_DESC_CNT 2
  284. #define MAX_RX_SGE_CNT (RX_SGE_CNT - NEXT_PAGE_SGE_DESC_CNT)
  285. /* RX_SGE_CNT is promised to be a power of 2 */
  286. #define RX_SGE_MASK (RX_SGE_CNT - 1)
  287. #define NUM_RX_SGE (RX_SGE_CNT * NUM_RX_SGE_PAGES)
  288. #define MAX_RX_SGE (NUM_RX_SGE - 1)
  289. #define NEXT_SGE_IDX(x) ((((x) & RX_SGE_MASK) == \
  290. (MAX_RX_SGE_CNT - 1)) ? \
  291. (x) + 1 + NEXT_PAGE_SGE_DESC_CNT : \
  292. (x) + 1)
  293. #define RX_SGE(x) ((x) & MAX_RX_SGE)
  294. /*
  295. * Number of required SGEs is the sum of two:
  296. * 1. Number of possible opened aggregations (next packet for
  297. * these aggregations will probably consume SGE immidiatelly)
  298. * 2. Rest of BRB blocks divided by 2 (block will consume new SGE only
  299. * after placement on BD for new TPA aggregation)
  300. *
  301. * Takes into account NEXT_PAGE_SGE_DESC_CNT "next" elements on each page
  302. */
  303. #define NUM_SGE_REQ (MAX_AGG_QS(bp) + \
  304. (BRB_SIZE(bp) - MAX_AGG_QS(bp)) / 2)
  305. #define NUM_SGE_PG_REQ ((NUM_SGE_REQ + MAX_RX_SGE_CNT - 1) / \
  306. MAX_RX_SGE_CNT)
  307. #define SGE_TH_LO(bp) (NUM_SGE_REQ + \
  308. NUM_SGE_PG_REQ * NEXT_PAGE_SGE_DESC_CNT)
  309. #define SGE_TH_HI(bp) (SGE_TH_LO(bp) + DROPLESS_FC_HEADROOM)
  310. /* Manipulate a bit vector defined as an array of u64 */
  311. /* Number of bits in one sge_mask array element */
  312. #define BIT_VEC64_ELEM_SZ 64
  313. #define BIT_VEC64_ELEM_SHIFT 6
  314. #define BIT_VEC64_ELEM_MASK ((u64)BIT_VEC64_ELEM_SZ - 1)
  315. #define __BIT_VEC64_SET_BIT(el, bit) \
  316. do { \
  317. el = ((el) | ((u64)0x1 << (bit))); \
  318. } while (0)
  319. #define __BIT_VEC64_CLEAR_BIT(el, bit) \
  320. do { \
  321. el = ((el) & (~((u64)0x1 << (bit)))); \
  322. } while (0)
  323. #define BIT_VEC64_SET_BIT(vec64, idx) \
  324. __BIT_VEC64_SET_BIT((vec64)[(idx) >> BIT_VEC64_ELEM_SHIFT], \
  325. (idx) & BIT_VEC64_ELEM_MASK)
  326. #define BIT_VEC64_CLEAR_BIT(vec64, idx) \
  327. __BIT_VEC64_CLEAR_BIT((vec64)[(idx) >> BIT_VEC64_ELEM_SHIFT], \
  328. (idx) & BIT_VEC64_ELEM_MASK)
  329. #define BIT_VEC64_TEST_BIT(vec64, idx) \
  330. (((vec64)[(idx) >> BIT_VEC64_ELEM_SHIFT] >> \
  331. ((idx) & BIT_VEC64_ELEM_MASK)) & 0x1)
  332. /* Creates a bitmask of all ones in less significant bits.
  333. idx - index of the most significant bit in the created mask */
  334. #define BIT_VEC64_ONES_MASK(idx) \
  335. (((u64)0x1 << (((idx) & BIT_VEC64_ELEM_MASK) + 1)) - 1)
  336. #define BIT_VEC64_ELEM_ONE_MASK ((u64)(~0))
  337. /*******************************************************/
  338. /* Number of u64 elements in SGE mask array */
  339. #define RX_SGE_MASK_LEN (NUM_RX_SGE / BIT_VEC64_ELEM_SZ)
  340. #define RX_SGE_MASK_LEN_MASK (RX_SGE_MASK_LEN - 1)
  341. #define NEXT_SGE_MASK_ELEM(el) (((el) + 1) & RX_SGE_MASK_LEN_MASK)
  342. union host_hc_status_block {
  343. /* pointer to fp status block e1x */
  344. struct host_hc_status_block_e1x *e1x_sb;
  345. /* pointer to fp status block e2 */
  346. struct host_hc_status_block_e2 *e2_sb;
  347. };
  348. struct bnx2x_agg_info {
  349. /*
  350. * First aggregation buffer is a data buffer, the following - are pages.
  351. * We will preallocate the data buffer for each aggregation when
  352. * we open the interface and will replace the BD at the consumer
  353. * with this one when we receive the TPA_START CQE in order to
  354. * keep the Rx BD ring consistent.
  355. */
  356. struct sw_rx_bd first_buf;
  357. u8 tpa_state;
  358. #define BNX2X_TPA_START 1
  359. #define BNX2X_TPA_STOP 2
  360. #define BNX2X_TPA_ERROR 3
  361. u8 placement_offset;
  362. u16 parsing_flags;
  363. u16 vlan_tag;
  364. u16 len_on_bd;
  365. u32 rxhash;
  366. bool l4_rxhash;
  367. u16 gro_size;
  368. u16 full_page;
  369. };
  370. #define Q_STATS_OFFSET32(stat_name) \
  371. (offsetof(struct bnx2x_eth_q_stats, stat_name) / 4)
  372. struct bnx2x_fp_txdata {
  373. struct sw_tx_bd *tx_buf_ring;
  374. union eth_tx_bd_types *tx_desc_ring;
  375. dma_addr_t tx_desc_mapping;
  376. u32 cid;
  377. union db_prod tx_db;
  378. u16 tx_pkt_prod;
  379. u16 tx_pkt_cons;
  380. u16 tx_bd_prod;
  381. u16 tx_bd_cons;
  382. unsigned long tx_pkt;
  383. __le16 *tx_cons_sb;
  384. int txq_index;
  385. struct bnx2x_fastpath *parent_fp;
  386. int tx_ring_size;
  387. };
  388. enum bnx2x_tpa_mode_t {
  389. TPA_MODE_LRO,
  390. TPA_MODE_GRO
  391. };
  392. struct bnx2x_fastpath {
  393. struct bnx2x *bp; /* parent */
  394. #define BNX2X_NAPI_WEIGHT 128
  395. struct napi_struct napi;
  396. union host_hc_status_block status_blk;
  397. /* chip independed shortcuts into sb structure */
  398. __le16 *sb_index_values;
  399. __le16 *sb_running_index;
  400. /* chip independed shortcut into rx_prods_offset memory */
  401. u32 ustorm_rx_prods_offset;
  402. u32 rx_buf_size;
  403. u32 rx_frag_size; /* 0 if kmalloced(), or rx_buf_size + NET_SKB_PAD */
  404. dma_addr_t status_blk_mapping;
  405. enum bnx2x_tpa_mode_t mode;
  406. u8 max_cos; /* actual number of active tx coses */
  407. struct bnx2x_fp_txdata *txdata_ptr[BNX2X_MULTI_TX_COS];
  408. struct sw_rx_bd *rx_buf_ring; /* BDs mappings ring */
  409. struct sw_rx_page *rx_page_ring; /* SGE pages mappings ring */
  410. struct eth_rx_bd *rx_desc_ring;
  411. dma_addr_t rx_desc_mapping;
  412. union eth_rx_cqe *rx_comp_ring;
  413. dma_addr_t rx_comp_mapping;
  414. /* SGE ring */
  415. struct eth_rx_sge *rx_sge_ring;
  416. dma_addr_t rx_sge_mapping;
  417. u64 sge_mask[RX_SGE_MASK_LEN];
  418. u32 cid;
  419. __le16 fp_hc_idx;
  420. u8 index; /* number in fp array */
  421. u8 rx_queue; /* index for skb_record */
  422. u8 cl_id; /* eth client id */
  423. u8 cl_qzone_id;
  424. u8 fw_sb_id; /* status block number in FW */
  425. u8 igu_sb_id; /* status block number in HW */
  426. u16 rx_bd_prod;
  427. u16 rx_bd_cons;
  428. u16 rx_comp_prod;
  429. u16 rx_comp_cons;
  430. u16 rx_sge_prod;
  431. /* The last maximal completed SGE */
  432. u16 last_max_sge;
  433. __le16 *rx_cons_sb;
  434. unsigned long rx_pkt,
  435. rx_calls;
  436. /* TPA related */
  437. struct bnx2x_agg_info *tpa_info;
  438. u8 disable_tpa;
  439. #ifdef BNX2X_STOP_ON_ERROR
  440. u64 tpa_queue_used;
  441. #endif
  442. /* The size is calculated using the following:
  443. sizeof name field from netdev structure +
  444. 4 ('-Xx-' string) +
  445. 4 (for the digits and to make it DWORD aligned) */
  446. #define FP_NAME_SIZE (sizeof(((struct net_device *)0)->name) + 8)
  447. char name[FP_NAME_SIZE];
  448. };
  449. #define bnx2x_fp(bp, nr, var) ((bp)->fp[(nr)].var)
  450. #define bnx2x_sp_obj(bp, fp) ((bp)->sp_objs[(fp)->index])
  451. #define bnx2x_fp_stats(bp, fp) (&((bp)->fp_stats[(fp)->index]))
  452. #define bnx2x_fp_qstats(bp, fp) (&((bp)->fp_stats[(fp)->index].eth_q_stats))
  453. /* Use 2500 as a mini-jumbo MTU for FCoE */
  454. #define BNX2X_FCOE_MINI_JUMBO_MTU 2500
  455. #define FCOE_IDX_OFFSET 0
  456. #define FCOE_IDX(bp) (BNX2X_NUM_NON_CNIC_QUEUES(bp) + \
  457. FCOE_IDX_OFFSET)
  458. #define bnx2x_fcoe_fp(bp) (&bp->fp[FCOE_IDX(bp)])
  459. #define bnx2x_fcoe(bp, var) (bnx2x_fcoe_fp(bp)->var)
  460. #define bnx2x_fcoe_inner_sp_obj(bp) (&bp->sp_objs[FCOE_IDX(bp)])
  461. #define bnx2x_fcoe_sp_obj(bp, var) (bnx2x_fcoe_inner_sp_obj(bp)->var)
  462. #define bnx2x_fcoe_tx(bp, var) (bnx2x_fcoe_fp(bp)-> \
  463. txdata_ptr[FIRST_TX_COS_INDEX] \
  464. ->var)
  465. #define IS_ETH_FP(fp) ((fp)->index < BNX2X_NUM_ETH_QUEUES((fp)->bp))
  466. #define IS_FCOE_FP(fp) ((fp)->index == FCOE_IDX((fp)->bp))
  467. #define IS_FCOE_IDX(idx) ((idx) == FCOE_IDX(bp))
  468. /* MC hsi */
  469. #define MAX_FETCH_BD 13 /* HW max BDs per packet */
  470. #define RX_COPY_THRESH 92
  471. #define NUM_TX_RINGS 16
  472. #define TX_DESC_CNT (BCM_PAGE_SIZE / sizeof(union eth_tx_bd_types))
  473. #define NEXT_PAGE_TX_DESC_CNT 1
  474. #define MAX_TX_DESC_CNT (TX_DESC_CNT - NEXT_PAGE_TX_DESC_CNT)
  475. #define NUM_TX_BD (TX_DESC_CNT * NUM_TX_RINGS)
  476. #define MAX_TX_BD (NUM_TX_BD - 1)
  477. #define MAX_TX_AVAIL (MAX_TX_DESC_CNT * NUM_TX_RINGS - 2)
  478. #define NEXT_TX_IDX(x) ((((x) & MAX_TX_DESC_CNT) == \
  479. (MAX_TX_DESC_CNT - 1)) ? \
  480. (x) + 1 + NEXT_PAGE_TX_DESC_CNT : \
  481. (x) + 1)
  482. #define TX_BD(x) ((x) & MAX_TX_BD)
  483. #define TX_BD_POFF(x) ((x) & MAX_TX_DESC_CNT)
  484. /* number of NEXT_PAGE descriptors may be required during placement */
  485. #define NEXT_CNT_PER_TX_PKT(bds) \
  486. (((bds) + MAX_TX_DESC_CNT - 1) / \
  487. MAX_TX_DESC_CNT * NEXT_PAGE_TX_DESC_CNT)
  488. /* max BDs per tx packet w/o next_pages:
  489. * START_BD - describes packed
  490. * START_BD(splitted) - includes unpaged data segment for GSO
  491. * PARSING_BD - for TSO and CSUM data
  492. * Frag BDs - decribes pages for frags
  493. */
  494. #define BDS_PER_TX_PKT 3
  495. #define MAX_BDS_PER_TX_PKT (MAX_SKB_FRAGS + BDS_PER_TX_PKT)
  496. /* max BDs per tx packet including next pages */
  497. #define MAX_DESC_PER_TX_PKT (MAX_BDS_PER_TX_PKT + \
  498. NEXT_CNT_PER_TX_PKT(MAX_BDS_PER_TX_PKT))
  499. /* The RX BD ring is special, each bd is 8 bytes but the last one is 16 */
  500. #define NUM_RX_RINGS 8
  501. #define RX_DESC_CNT (BCM_PAGE_SIZE / sizeof(struct eth_rx_bd))
  502. #define NEXT_PAGE_RX_DESC_CNT 2
  503. #define MAX_RX_DESC_CNT (RX_DESC_CNT - NEXT_PAGE_RX_DESC_CNT)
  504. #define RX_DESC_MASK (RX_DESC_CNT - 1)
  505. #define NUM_RX_BD (RX_DESC_CNT * NUM_RX_RINGS)
  506. #define MAX_RX_BD (NUM_RX_BD - 1)
  507. #define MAX_RX_AVAIL (MAX_RX_DESC_CNT * NUM_RX_RINGS - 2)
  508. /* dropless fc calculations for BDs
  509. *
  510. * Number of BDs should as number of buffers in BRB:
  511. * Low threshold takes into account NEXT_PAGE_RX_DESC_CNT
  512. * "next" elements on each page
  513. */
  514. #define NUM_BD_REQ BRB_SIZE(bp)
  515. #define NUM_BD_PG_REQ ((NUM_BD_REQ + MAX_RX_DESC_CNT - 1) / \
  516. MAX_RX_DESC_CNT)
  517. #define BD_TH_LO(bp) (NUM_BD_REQ + \
  518. NUM_BD_PG_REQ * NEXT_PAGE_RX_DESC_CNT + \
  519. FW_DROP_LEVEL(bp))
  520. #define BD_TH_HI(bp) (BD_TH_LO(bp) + DROPLESS_FC_HEADROOM)
  521. #define MIN_RX_AVAIL ((bp)->dropless_fc ? BD_TH_HI(bp) + 128 : 128)
  522. #define MIN_RX_SIZE_TPA_HW (CHIP_IS_E1(bp) ? \
  523. ETH_MIN_RX_CQES_WITH_TPA_E1 : \
  524. ETH_MIN_RX_CQES_WITH_TPA_E1H_E2)
  525. #define MIN_RX_SIZE_NONTPA_HW ETH_MIN_RX_CQES_WITHOUT_TPA
  526. #define MIN_RX_SIZE_TPA (max_t(u32, MIN_RX_SIZE_TPA_HW, MIN_RX_AVAIL))
  527. #define MIN_RX_SIZE_NONTPA (max_t(u32, MIN_RX_SIZE_NONTPA_HW,\
  528. MIN_RX_AVAIL))
  529. #define NEXT_RX_IDX(x) ((((x) & RX_DESC_MASK) == \
  530. (MAX_RX_DESC_CNT - 1)) ? \
  531. (x) + 1 + NEXT_PAGE_RX_DESC_CNT : \
  532. (x) + 1)
  533. #define RX_BD(x) ((x) & MAX_RX_BD)
  534. /*
  535. * As long as CQE is X times bigger than BD entry we have to allocate X times
  536. * more pages for CQ ring in order to keep it balanced with BD ring
  537. */
  538. #define CQE_BD_REL (sizeof(union eth_rx_cqe) / sizeof(struct eth_rx_bd))
  539. #define NUM_RCQ_RINGS (NUM_RX_RINGS * CQE_BD_REL)
  540. #define RCQ_DESC_CNT (BCM_PAGE_SIZE / sizeof(union eth_rx_cqe))
  541. #define NEXT_PAGE_RCQ_DESC_CNT 1
  542. #define MAX_RCQ_DESC_CNT (RCQ_DESC_CNT - NEXT_PAGE_RCQ_DESC_CNT)
  543. #define NUM_RCQ_BD (RCQ_DESC_CNT * NUM_RCQ_RINGS)
  544. #define MAX_RCQ_BD (NUM_RCQ_BD - 1)
  545. #define MAX_RCQ_AVAIL (MAX_RCQ_DESC_CNT * NUM_RCQ_RINGS - 2)
  546. #define NEXT_RCQ_IDX(x) ((((x) & MAX_RCQ_DESC_CNT) == \
  547. (MAX_RCQ_DESC_CNT - 1)) ? \
  548. (x) + 1 + NEXT_PAGE_RCQ_DESC_CNT : \
  549. (x) + 1)
  550. #define RCQ_BD(x) ((x) & MAX_RCQ_BD)
  551. /* dropless fc calculations for RCQs
  552. *
  553. * Number of RCQs should be as number of buffers in BRB:
  554. * Low threshold takes into account NEXT_PAGE_RCQ_DESC_CNT
  555. * "next" elements on each page
  556. */
  557. #define NUM_RCQ_REQ BRB_SIZE(bp)
  558. #define NUM_RCQ_PG_REQ ((NUM_BD_REQ + MAX_RCQ_DESC_CNT - 1) / \
  559. MAX_RCQ_DESC_CNT)
  560. #define RCQ_TH_LO(bp) (NUM_RCQ_REQ + \
  561. NUM_RCQ_PG_REQ * NEXT_PAGE_RCQ_DESC_CNT + \
  562. FW_DROP_LEVEL(bp))
  563. #define RCQ_TH_HI(bp) (RCQ_TH_LO(bp) + DROPLESS_FC_HEADROOM)
  564. /* This is needed for determining of last_max */
  565. #define SUB_S16(a, b) (s16)((s16)(a) - (s16)(b))
  566. #define SUB_S32(a, b) (s32)((s32)(a) - (s32)(b))
  567. #define BNX2X_SWCID_SHIFT 17
  568. #define BNX2X_SWCID_MASK ((0x1 << BNX2X_SWCID_SHIFT) - 1)
  569. /* used on a CID received from the HW */
  570. #define SW_CID(x) (le32_to_cpu(x) & BNX2X_SWCID_MASK)
  571. #define CQE_CMD(x) (le32_to_cpu(x) >> \
  572. COMMON_RAMROD_ETH_RX_CQE_CMD_ID_SHIFT)
  573. #define BD_UNMAP_ADDR(bd) HILO_U64(le32_to_cpu((bd)->addr_hi), \
  574. le32_to_cpu((bd)->addr_lo))
  575. #define BD_UNMAP_LEN(bd) (le16_to_cpu((bd)->nbytes))
  576. #define BNX2X_DB_MIN_SHIFT 3 /* 8 bytes */
  577. #define BNX2X_DB_SHIFT 7 /* 128 bytes*/
  578. #if (BNX2X_DB_SHIFT < BNX2X_DB_MIN_SHIFT)
  579. #error "Min DB doorbell stride is 8"
  580. #endif
  581. #define DPM_TRIGER_TYPE 0x40
  582. #define DOORBELL(bp, cid, val) \
  583. do { \
  584. writel((u32)(val), bp->doorbells + (bp->db_size * (cid)) + \
  585. DPM_TRIGER_TYPE); \
  586. } while (0)
  587. /* TX CSUM helpers */
  588. #define SKB_CS_OFF(skb) (offsetof(struct tcphdr, check) - \
  589. skb->csum_offset)
  590. #define SKB_CS(skb) (*(u16 *)(skb_transport_header(skb) + \
  591. skb->csum_offset))
  592. #define pbd_tcp_flags(skb) (ntohl(tcp_flag_word(tcp_hdr(skb)))>>16 & 0xff)
  593. #define XMIT_PLAIN 0
  594. #define XMIT_CSUM_V4 0x1
  595. #define XMIT_CSUM_V6 0x2
  596. #define XMIT_CSUM_TCP 0x4
  597. #define XMIT_GSO_V4 0x8
  598. #define XMIT_GSO_V6 0x10
  599. #define XMIT_CSUM (XMIT_CSUM_V4 | XMIT_CSUM_V6)
  600. #define XMIT_GSO (XMIT_GSO_V4 | XMIT_GSO_V6)
  601. /* stuff added to make the code fit 80Col */
  602. #define CQE_TYPE(cqe_fp_flags) ((cqe_fp_flags) & ETH_FAST_PATH_RX_CQE_TYPE)
  603. #define CQE_TYPE_START(cqe_type) ((cqe_type) == RX_ETH_CQE_TYPE_ETH_START_AGG)
  604. #define CQE_TYPE_STOP(cqe_type) ((cqe_type) == RX_ETH_CQE_TYPE_ETH_STOP_AGG)
  605. #define CQE_TYPE_SLOW(cqe_type) ((cqe_type) == RX_ETH_CQE_TYPE_ETH_RAMROD)
  606. #define CQE_TYPE_FAST(cqe_type) ((cqe_type) == RX_ETH_CQE_TYPE_ETH_FASTPATH)
  607. #define ETH_RX_ERROR_FALGS ETH_FAST_PATH_RX_CQE_PHY_DECODE_ERR_FLG
  608. #define BNX2X_PRS_FLAG_OVERETH_IPV4(flags) \
  609. (((le16_to_cpu(flags) & \
  610. PARSING_FLAGS_OVER_ETHERNET_PROTOCOL) >> \
  611. PARSING_FLAGS_OVER_ETHERNET_PROTOCOL_SHIFT) \
  612. == PRS_FLAG_OVERETH_IPV4)
  613. #define BNX2X_RX_SUM_FIX(cqe) \
  614. BNX2X_PRS_FLAG_OVERETH_IPV4(cqe->fast_path_cqe.pars_flags.flags)
  615. #define FP_USB_FUNC_OFF \
  616. offsetof(struct cstorm_status_block_u, func)
  617. #define FP_CSB_FUNC_OFF \
  618. offsetof(struct cstorm_status_block_c, func)
  619. #define HC_INDEX_ETH_RX_CQ_CONS 1
  620. #define HC_INDEX_OOO_TX_CQ_CONS 4
  621. #define HC_INDEX_ETH_TX_CQ_CONS_COS0 5
  622. #define HC_INDEX_ETH_TX_CQ_CONS_COS1 6
  623. #define HC_INDEX_ETH_TX_CQ_CONS_COS2 7
  624. #define HC_INDEX_ETH_FIRST_TX_CQ_CONS HC_INDEX_ETH_TX_CQ_CONS_COS0
  625. #define BNX2X_RX_SB_INDEX \
  626. (&fp->sb_index_values[HC_INDEX_ETH_RX_CQ_CONS])
  627. #define BNX2X_TX_SB_INDEX_BASE BNX2X_TX_SB_INDEX_COS0
  628. #define BNX2X_TX_SB_INDEX_COS0 \
  629. (&fp->sb_index_values[HC_INDEX_ETH_TX_CQ_CONS_COS0])
  630. /* end of fast path */
  631. /* common */
  632. struct bnx2x_common {
  633. u32 chip_id;
  634. /* chip num:16-31, rev:12-15, metal:4-11, bond_id:0-3 */
  635. #define CHIP_ID(bp) (bp->common.chip_id & 0xfffffff0)
  636. #define CHIP_NUM(bp) (bp->common.chip_id >> 16)
  637. #define CHIP_NUM_57710 0x164e
  638. #define CHIP_NUM_57711 0x164f
  639. #define CHIP_NUM_57711E 0x1650
  640. #define CHIP_NUM_57712 0x1662
  641. #define CHIP_NUM_57712_MF 0x1663
  642. #define CHIP_NUM_57713 0x1651
  643. #define CHIP_NUM_57713E 0x1652
  644. #define CHIP_NUM_57800 0x168a
  645. #define CHIP_NUM_57800_MF 0x16a5
  646. #define CHIP_NUM_57810 0x168e
  647. #define CHIP_NUM_57810_MF 0x16ae
  648. #define CHIP_NUM_57811 0x163d
  649. #define CHIP_NUM_57811_MF 0x163e
  650. #define CHIP_NUM_57840_OBSOLETE 0x168d
  651. #define CHIP_NUM_57840_MF_OBSOLETE 0x16ab
  652. #define CHIP_NUM_57840_4_10 0x16a1
  653. #define CHIP_NUM_57840_2_20 0x16a2
  654. #define CHIP_NUM_57840_MF 0x16a4
  655. #define CHIP_IS_E1(bp) (CHIP_NUM(bp) == CHIP_NUM_57710)
  656. #define CHIP_IS_57711(bp) (CHIP_NUM(bp) == CHIP_NUM_57711)
  657. #define CHIP_IS_57711E(bp) (CHIP_NUM(bp) == CHIP_NUM_57711E)
  658. #define CHIP_IS_57712(bp) (CHIP_NUM(bp) == CHIP_NUM_57712)
  659. #define CHIP_IS_57712_MF(bp) (CHIP_NUM(bp) == CHIP_NUM_57712_MF)
  660. #define CHIP_IS_57800(bp) (CHIP_NUM(bp) == CHIP_NUM_57800)
  661. #define CHIP_IS_57800_MF(bp) (CHIP_NUM(bp) == CHIP_NUM_57800_MF)
  662. #define CHIP_IS_57810(bp) (CHIP_NUM(bp) == CHIP_NUM_57810)
  663. #define CHIP_IS_57810_MF(bp) (CHIP_NUM(bp) == CHIP_NUM_57810_MF)
  664. #define CHIP_IS_57811(bp) (CHIP_NUM(bp) == CHIP_NUM_57811)
  665. #define CHIP_IS_57811_MF(bp) (CHIP_NUM(bp) == CHIP_NUM_57811_MF)
  666. #define CHIP_IS_57840(bp) \
  667. ((CHIP_NUM(bp) == CHIP_NUM_57840_4_10) || \
  668. (CHIP_NUM(bp) == CHIP_NUM_57840_2_20) || \
  669. (CHIP_NUM(bp) == CHIP_NUM_57840_OBSOLETE))
  670. #define CHIP_IS_57840_MF(bp) ((CHIP_NUM(bp) == CHIP_NUM_57840_MF) || \
  671. (CHIP_NUM(bp) == CHIP_NUM_57840_MF_OBSOLETE))
  672. #define CHIP_IS_E1H(bp) (CHIP_IS_57711(bp) || \
  673. CHIP_IS_57711E(bp))
  674. #define CHIP_IS_E2(bp) (CHIP_IS_57712(bp) || \
  675. CHIP_IS_57712_MF(bp))
  676. #define CHIP_IS_E3(bp) (CHIP_IS_57800(bp) || \
  677. CHIP_IS_57800_MF(bp) || \
  678. CHIP_IS_57810(bp) || \
  679. CHIP_IS_57810_MF(bp) || \
  680. CHIP_IS_57811(bp) || \
  681. CHIP_IS_57811_MF(bp) || \
  682. CHIP_IS_57840(bp) || \
  683. CHIP_IS_57840_MF(bp))
  684. #define CHIP_IS_E1x(bp) (CHIP_IS_E1((bp)) || CHIP_IS_E1H((bp)))
  685. #define USES_WARPCORE(bp) (CHIP_IS_E3(bp))
  686. #define IS_E1H_OFFSET (!CHIP_IS_E1(bp))
  687. #define CHIP_REV_SHIFT 12
  688. #define CHIP_REV_MASK (0xF << CHIP_REV_SHIFT)
  689. #define CHIP_REV_VAL(bp) (bp->common.chip_id & CHIP_REV_MASK)
  690. #define CHIP_REV_Ax (0x0 << CHIP_REV_SHIFT)
  691. #define CHIP_REV_Bx (0x1 << CHIP_REV_SHIFT)
  692. /* assume maximum 5 revisions */
  693. #define CHIP_REV_IS_SLOW(bp) (CHIP_REV_VAL(bp) > 0x00005000)
  694. /* Emul versions are A=>0xe, B=>0xc, C=>0xa, D=>8, E=>6 */
  695. #define CHIP_REV_IS_EMUL(bp) ((CHIP_REV_IS_SLOW(bp)) && \
  696. !(CHIP_REV_VAL(bp) & 0x00001000))
  697. /* FPGA versions are A=>0xf, B=>0xd, C=>0xb, D=>9, E=>7 */
  698. #define CHIP_REV_IS_FPGA(bp) ((CHIP_REV_IS_SLOW(bp)) && \
  699. (CHIP_REV_VAL(bp) & 0x00001000))
  700. #define CHIP_TIME(bp) ((CHIP_REV_IS_EMUL(bp)) ? 2000 : \
  701. ((CHIP_REV_IS_FPGA(bp)) ? 200 : 1))
  702. #define CHIP_METAL(bp) (bp->common.chip_id & 0x00000ff0)
  703. #define CHIP_BOND_ID(bp) (bp->common.chip_id & 0x0000000f)
  704. #define CHIP_REV_SIM(bp) (((CHIP_REV_MASK - CHIP_REV_VAL(bp)) >>\
  705. (CHIP_REV_SHIFT + 1)) \
  706. << CHIP_REV_SHIFT)
  707. #define CHIP_REV(bp) (CHIP_REV_IS_SLOW(bp) ? \
  708. CHIP_REV_SIM(bp) :\
  709. CHIP_REV_VAL(bp))
  710. #define CHIP_IS_E3B0(bp) (CHIP_IS_E3(bp) && \
  711. (CHIP_REV(bp) == CHIP_REV_Bx))
  712. #define CHIP_IS_E3A0(bp) (CHIP_IS_E3(bp) && \
  713. (CHIP_REV(bp) == CHIP_REV_Ax))
  714. /* This define is used in two main places:
  715. * 1. In the early stages of nic_load, to know if to configrue Parser / Searcher
  716. * to nic-only mode or to offload mode. Offload mode is configured if either the
  717. * chip is E1x (where MIC_MODE register is not applicable), or if cnic already
  718. * registered for this port (which means that the user wants storage services).
  719. * 2. During cnic-related load, to know if offload mode is already configured in
  720. * the HW or needs to be configrued.
  721. * Since the transition from nic-mode to offload-mode in HW causes traffic
  722. * coruption, nic-mode is configured only in ports on which storage services
  723. * where never requested.
  724. */
  725. #define CONFIGURE_NIC_MODE(bp) (!CHIP_IS_E1x(bp) && !CNIC_ENABLED(bp))
  726. int flash_size;
  727. #define BNX2X_NVRAM_1MB_SIZE 0x20000 /* 1M bit in bytes */
  728. #define BNX2X_NVRAM_TIMEOUT_COUNT 30000
  729. #define BNX2X_NVRAM_PAGE_SIZE 256
  730. u32 shmem_base;
  731. u32 shmem2_base;
  732. u32 mf_cfg_base;
  733. u32 mf2_cfg_base;
  734. u32 hw_config;
  735. u32 bc_ver;
  736. u8 int_block;
  737. #define INT_BLOCK_HC 0
  738. #define INT_BLOCK_IGU 1
  739. #define INT_BLOCK_MODE_NORMAL 0
  740. #define INT_BLOCK_MODE_BW_COMP 2
  741. #define CHIP_INT_MODE_IS_NBC(bp) \
  742. (!CHIP_IS_E1x(bp) && \
  743. !((bp)->common.int_block & INT_BLOCK_MODE_BW_COMP))
  744. #define CHIP_INT_MODE_IS_BC(bp) (!CHIP_INT_MODE_IS_NBC(bp))
  745. u8 chip_port_mode;
  746. #define CHIP_4_PORT_MODE 0x0
  747. #define CHIP_2_PORT_MODE 0x1
  748. #define CHIP_PORT_MODE_NONE 0x2
  749. #define CHIP_MODE(bp) (bp->common.chip_port_mode)
  750. #define CHIP_MODE_IS_4_PORT(bp) (CHIP_MODE(bp) == CHIP_4_PORT_MODE)
  751. u32 boot_mode;
  752. };
  753. /* IGU MSIX STATISTICS on 57712: 64 for VFs; 4 for PFs; 4 for Attentions */
  754. #define BNX2X_IGU_STAS_MSG_VF_CNT 64
  755. #define BNX2X_IGU_STAS_MSG_PF_CNT 4
  756. #define MAX_IGU_ATTN_ACK_TO 100
  757. /* end of common */
  758. /* port */
  759. struct bnx2x_port {
  760. u32 pmf;
  761. u32 link_config[LINK_CONFIG_SIZE];
  762. u32 supported[LINK_CONFIG_SIZE];
  763. /* link settings - missing defines */
  764. #define SUPPORTED_2500baseX_Full (1 << 15)
  765. u32 advertising[LINK_CONFIG_SIZE];
  766. /* link settings - missing defines */
  767. #define ADVERTISED_2500baseX_Full (1 << 15)
  768. u32 phy_addr;
  769. /* used to synchronize phy accesses */
  770. struct mutex phy_mutex;
  771. u32 port_stx;
  772. struct nig_stats old_nig_stats;
  773. };
  774. /* end of port */
  775. #define STATS_OFFSET32(stat_name) \
  776. (offsetof(struct bnx2x_eth_stats, stat_name) / 4)
  777. /* slow path */
  778. /* slow path work-queue */
  779. extern struct workqueue_struct *bnx2x_wq;
  780. #define BNX2X_MAX_NUM_OF_VFS 64
  781. #define BNX2X_VF_CID_WND 0
  782. #define BNX2X_CIDS_PER_VF (1 << BNX2X_VF_CID_WND)
  783. #define BNX2X_VF_CIDS (BNX2X_MAX_NUM_OF_VFS * BNX2X_CIDS_PER_VF)
  784. #define BNX2X_VF_ID_INVALID 0xFF
  785. /*
  786. * The total number of L2 queues, MSIX vectors and HW contexts (CIDs) is
  787. * control by the number of fast-path status blocks supported by the
  788. * device (HW/FW). Each fast-path status block (FP-SB) aka non-default
  789. * status block represents an independent interrupts context that can
  790. * serve a regular L2 networking queue. However special L2 queues such
  791. * as the FCoE queue do not require a FP-SB and other components like
  792. * the CNIC may consume FP-SB reducing the number of possible L2 queues
  793. *
  794. * If the maximum number of FP-SB available is X then:
  795. * a. If CNIC is supported it consumes 1 FP-SB thus the max number of
  796. * regular L2 queues is Y=X-1
  797. * b. in MF mode the actual number of L2 queues is Y= (X-1/MF_factor)
  798. * c. If the FCoE L2 queue is supported the actual number of L2 queues
  799. * is Y+1
  800. * d. The number of irqs (MSIX vectors) is either Y+1 (one extra for
  801. * slow-path interrupts) or Y+2 if CNIC is supported (one additional
  802. * FP interrupt context for the CNIC).
  803. * e. The number of HW context (CID count) is always X or X+1 if FCoE
  804. * L2 queue is supported. the cid for the FCoE L2 queue is always X.
  805. */
  806. /* fast-path interrupt contexts E1x */
  807. #define FP_SB_MAX_E1x 16
  808. /* fast-path interrupt contexts E2 */
  809. #define FP_SB_MAX_E2 HC_SB_MAX_SB_E2
  810. union cdu_context {
  811. struct eth_context eth;
  812. char pad[1024];
  813. };
  814. /* CDU host DB constants */
  815. #define CDU_ILT_PAGE_SZ_HW 2
  816. #define CDU_ILT_PAGE_SZ (8192 << CDU_ILT_PAGE_SZ_HW) /* 32K */
  817. #define ILT_PAGE_CIDS (CDU_ILT_PAGE_SZ / sizeof(union cdu_context))
  818. #define CNIC_ISCSI_CID_MAX 256
  819. #define CNIC_FCOE_CID_MAX 2048
  820. #define CNIC_CID_MAX (CNIC_ISCSI_CID_MAX + CNIC_FCOE_CID_MAX)
  821. #define CNIC_ILT_LINES DIV_ROUND_UP(CNIC_CID_MAX, ILT_PAGE_CIDS)
  822. #define QM_ILT_PAGE_SZ_HW 0
  823. #define QM_ILT_PAGE_SZ (4096 << QM_ILT_PAGE_SZ_HW) /* 4K */
  824. #define QM_CID_ROUND 1024
  825. /* TM (timers) host DB constants */
  826. #define TM_ILT_PAGE_SZ_HW 0
  827. #define TM_ILT_PAGE_SZ (4096 << TM_ILT_PAGE_SZ_HW) /* 4K */
  828. /* #define TM_CONN_NUM (CNIC_STARTING_CID+CNIC_ISCSI_CXT_MAX) */
  829. #define TM_CONN_NUM 1024
  830. #define TM_ILT_SZ (8 * TM_CONN_NUM)
  831. #define TM_ILT_LINES DIV_ROUND_UP(TM_ILT_SZ, TM_ILT_PAGE_SZ)
  832. /* SRC (Searcher) host DB constants */
  833. #define SRC_ILT_PAGE_SZ_HW 0
  834. #define SRC_ILT_PAGE_SZ (4096 << SRC_ILT_PAGE_SZ_HW) /* 4K */
  835. #define SRC_HASH_BITS 10
  836. #define SRC_CONN_NUM (1 << SRC_HASH_BITS) /* 1024 */
  837. #define SRC_ILT_SZ (sizeof(struct src_ent) * SRC_CONN_NUM)
  838. #define SRC_T2_SZ SRC_ILT_SZ
  839. #define SRC_ILT_LINES DIV_ROUND_UP(SRC_ILT_SZ, SRC_ILT_PAGE_SZ)
  840. #define MAX_DMAE_C 8
  841. /* DMA memory not used in fastpath */
  842. struct bnx2x_slowpath {
  843. union {
  844. struct mac_configuration_cmd e1x;
  845. struct eth_classify_rules_ramrod_data e2;
  846. } mac_rdata;
  847. union {
  848. struct tstorm_eth_mac_filter_config e1x;
  849. struct eth_filter_rules_ramrod_data e2;
  850. } rx_mode_rdata;
  851. union {
  852. struct mac_configuration_cmd e1;
  853. struct eth_multicast_rules_ramrod_data e2;
  854. } mcast_rdata;
  855. struct eth_rss_update_ramrod_data rss_rdata;
  856. /* Queue State related ramrods are always sent under rtnl_lock */
  857. union {
  858. struct client_init_ramrod_data init_data;
  859. struct client_update_ramrod_data update_data;
  860. } q_rdata;
  861. union {
  862. struct function_start_data func_start;
  863. /* pfc configuration for DCBX ramrod */
  864. struct flow_control_configuration pfc_config;
  865. } func_rdata;
  866. /* afex ramrod can not be a part of func_rdata union because these
  867. * events might arrive in parallel to other events from func_rdata.
  868. * Therefore, if they would have been defined in the same union,
  869. * data can get corrupted.
  870. */
  871. struct afex_vif_list_ramrod_data func_afex_rdata;
  872. /* used by dmae command executer */
  873. struct dmae_command dmae[MAX_DMAE_C];
  874. u32 stats_comp;
  875. union mac_stats mac_stats;
  876. struct nig_stats nig_stats;
  877. struct host_port_stats port_stats;
  878. struct host_func_stats func_stats;
  879. u32 wb_comp;
  880. u32 wb_data[4];
  881. union drv_info_to_mcp drv_info_to_mcp;
  882. };
  883. #define bnx2x_sp(bp, var) (&bp->slowpath->var)
  884. #define bnx2x_sp_mapping(bp, var) \
  885. (bp->slowpath_mapping + offsetof(struct bnx2x_slowpath, var))
  886. /* attn group wiring */
  887. #define MAX_DYNAMIC_ATTN_GRPS 8
  888. struct attn_route {
  889. u32 sig[5];
  890. };
  891. struct iro {
  892. u32 base;
  893. u16 m1;
  894. u16 m2;
  895. u16 m3;
  896. u16 size;
  897. };
  898. struct hw_context {
  899. union cdu_context *vcxt;
  900. dma_addr_t cxt_mapping;
  901. size_t size;
  902. };
  903. /* forward */
  904. struct bnx2x_ilt;
  905. enum bnx2x_recovery_state {
  906. BNX2X_RECOVERY_DONE,
  907. BNX2X_RECOVERY_INIT,
  908. BNX2X_RECOVERY_WAIT,
  909. BNX2X_RECOVERY_FAILED,
  910. BNX2X_RECOVERY_NIC_LOADING
  911. };
  912. /*
  913. * Event queue (EQ or event ring) MC hsi
  914. * NUM_EQ_PAGES and EQ_DESC_CNT_PAGE must be power of 2
  915. */
  916. #define NUM_EQ_PAGES 1
  917. #define EQ_DESC_CNT_PAGE (BCM_PAGE_SIZE / sizeof(union event_ring_elem))
  918. #define EQ_DESC_MAX_PAGE (EQ_DESC_CNT_PAGE - 1)
  919. #define NUM_EQ_DESC (EQ_DESC_CNT_PAGE * NUM_EQ_PAGES)
  920. #define EQ_DESC_MASK (NUM_EQ_DESC - 1)
  921. #define MAX_EQ_AVAIL (EQ_DESC_MAX_PAGE * NUM_EQ_PAGES - 2)
  922. /* depends on EQ_DESC_CNT_PAGE being a power of 2 */
  923. #define NEXT_EQ_IDX(x) ((((x) & EQ_DESC_MAX_PAGE) == \
  924. (EQ_DESC_MAX_PAGE - 1)) ? (x) + 2 : (x) + 1)
  925. /* depends on the above and on NUM_EQ_PAGES being a power of 2 */
  926. #define EQ_DESC(x) ((x) & EQ_DESC_MASK)
  927. #define BNX2X_EQ_INDEX \
  928. (&bp->def_status_blk->sp_sb.\
  929. index_values[HC_SP_INDEX_EQ_CONS])
  930. /* This is a data that will be used to create a link report message.
  931. * We will keep the data used for the last link report in order
  932. * to prevent reporting the same link parameters twice.
  933. */
  934. struct bnx2x_link_report_data {
  935. u16 line_speed; /* Effective line speed */
  936. unsigned long link_report_flags;/* BNX2X_LINK_REPORT_XXX flags */
  937. };
  938. enum {
  939. BNX2X_LINK_REPORT_FD, /* Full DUPLEX */
  940. BNX2X_LINK_REPORT_LINK_DOWN,
  941. BNX2X_LINK_REPORT_RX_FC_ON,
  942. BNX2X_LINK_REPORT_TX_FC_ON,
  943. };
  944. enum {
  945. BNX2X_PORT_QUERY_IDX,
  946. BNX2X_PF_QUERY_IDX,
  947. BNX2X_FCOE_QUERY_IDX,
  948. BNX2X_FIRST_QUEUE_QUERY_IDX,
  949. };
  950. struct bnx2x_fw_stats_req {
  951. struct stats_query_header hdr;
  952. struct stats_query_entry query[FP_SB_MAX_E1x+
  953. BNX2X_FIRST_QUEUE_QUERY_IDX];
  954. };
  955. struct bnx2x_fw_stats_data {
  956. struct stats_counter storm_counters;
  957. struct per_port_stats port;
  958. struct per_pf_stats pf;
  959. struct fcoe_statistics_params fcoe;
  960. struct per_queue_stats queue_stats[1];
  961. };
  962. /* Public slow path states */
  963. enum {
  964. BNX2X_SP_RTNL_SETUP_TC,
  965. BNX2X_SP_RTNL_TX_TIMEOUT,
  966. BNX2X_SP_RTNL_AFEX_F_UPDATE,
  967. BNX2X_SP_RTNL_FAN_FAILURE,
  968. };
  969. struct bnx2x_prev_path_list {
  970. u8 bus;
  971. u8 slot;
  972. u8 path;
  973. struct list_head list;
  974. u8 undi;
  975. };
  976. struct bnx2x_sp_objs {
  977. /* MACs object */
  978. struct bnx2x_vlan_mac_obj mac_obj;
  979. /* Queue State object */
  980. struct bnx2x_queue_sp_obj q_obj;
  981. };
  982. struct bnx2x_fp_stats {
  983. struct tstorm_per_queue_stats old_tclient;
  984. struct ustorm_per_queue_stats old_uclient;
  985. struct xstorm_per_queue_stats old_xclient;
  986. struct bnx2x_eth_q_stats eth_q_stats;
  987. struct bnx2x_eth_q_stats_old eth_q_stats_old;
  988. };
  989. struct bnx2x {
  990. /* Fields used in the tx and intr/napi performance paths
  991. * are grouped together in the beginning of the structure
  992. */
  993. struct bnx2x_fastpath *fp;
  994. struct bnx2x_sp_objs *sp_objs;
  995. struct bnx2x_fp_stats *fp_stats;
  996. struct bnx2x_fp_txdata *bnx2x_txq;
  997. void __iomem *regview;
  998. void __iomem *doorbells;
  999. u16 db_size;
  1000. u8 pf_num; /* absolute PF number */
  1001. u8 pfid; /* per-path PF number */
  1002. int base_fw_ndsb; /**/
  1003. #define BP_PATH(bp) (CHIP_IS_E1x(bp) ? 0 : (bp->pf_num & 1))
  1004. #define BP_PORT(bp) (bp->pfid & 1)
  1005. #define BP_FUNC(bp) (bp->pfid)
  1006. #define BP_ABS_FUNC(bp) (bp->pf_num)
  1007. #define BP_VN(bp) ((bp)->pfid >> 1)
  1008. #define BP_MAX_VN_NUM(bp) (CHIP_MODE_IS_4_PORT(bp) ? 2 : 4)
  1009. #define BP_L_ID(bp) (BP_VN(bp) << 2)
  1010. #define BP_FW_MB_IDX_VN(bp, vn) (BP_PORT(bp) +\
  1011. (vn) * ((CHIP_IS_E1x(bp) || (CHIP_MODE_IS_4_PORT(bp))) ? 2 : 1))
  1012. #define BP_FW_MB_IDX(bp) BP_FW_MB_IDX_VN(bp, BP_VN(bp))
  1013. /* vf pf channel mailbox contains request and response buffers */
  1014. struct bnx2x_vf_mbx_msg *vf2pf_mbox;
  1015. dma_addr_t vf2pf_mbox_mapping;
  1016. struct net_device *dev;
  1017. struct pci_dev *pdev;
  1018. const struct iro *iro_arr;
  1019. #define IRO (bp->iro_arr)
  1020. enum bnx2x_recovery_state recovery_state;
  1021. int is_leader;
  1022. struct msix_entry *msix_table;
  1023. int tx_ring_size;
  1024. /* L2 header size + 2*VLANs (8 bytes) + LLC SNAP (8 bytes) */
  1025. #define ETH_OVREHEAD (ETH_HLEN + 8 + 8)
  1026. #define ETH_MIN_PACKET_SIZE 60
  1027. #define ETH_MAX_PACKET_SIZE 1500
  1028. #define ETH_MAX_JUMBO_PACKET_SIZE 9600
  1029. /* TCP with Timestamp Option (32) + IPv6 (40) */
  1030. #define ETH_MAX_TPA_HEADER_SIZE 72
  1031. /* Max supported alignment is 256 (8 shift) */
  1032. #define BNX2X_RX_ALIGN_SHIFT min(8, L1_CACHE_SHIFT)
  1033. /* FW uses 2 Cache lines Alignment for start packet and size
  1034. *
  1035. * We assume skb_build() uses sizeof(struct skb_shared_info) bytes
  1036. * at the end of skb->data, to avoid wasting a full cache line.
  1037. * This reduces memory use (skb->truesize).
  1038. */
  1039. #define BNX2X_FW_RX_ALIGN_START (1UL << BNX2X_RX_ALIGN_SHIFT)
  1040. #define BNX2X_FW_RX_ALIGN_END \
  1041. max_t(u64, 1UL << BNX2X_RX_ALIGN_SHIFT, \
  1042. SKB_DATA_ALIGN(sizeof(struct skb_shared_info)))
  1043. #define BNX2X_PXP_DRAM_ALIGN (BNX2X_RX_ALIGN_SHIFT - 5)
  1044. struct host_sp_status_block *def_status_blk;
  1045. #define DEF_SB_IGU_ID 16
  1046. #define DEF_SB_ID HC_SP_SB_ID
  1047. __le16 def_idx;
  1048. __le16 def_att_idx;
  1049. u32 attn_state;
  1050. struct attn_route attn_group[MAX_DYNAMIC_ATTN_GRPS];
  1051. /* slow path ring */
  1052. struct eth_spe *spq;
  1053. dma_addr_t spq_mapping;
  1054. u16 spq_prod_idx;
  1055. struct eth_spe *spq_prod_bd;
  1056. struct eth_spe *spq_last_bd;
  1057. __le16 *dsb_sp_prod;
  1058. atomic_t cq_spq_left; /* ETH_XXX ramrods credit */
  1059. /* used to synchronize spq accesses */
  1060. spinlock_t spq_lock;
  1061. /* event queue */
  1062. union event_ring_elem *eq_ring;
  1063. dma_addr_t eq_mapping;
  1064. u16 eq_prod;
  1065. u16 eq_cons;
  1066. __le16 *eq_cons_sb;
  1067. atomic_t eq_spq_left; /* COMMON_XXX ramrods credit */
  1068. /* Counter for marking that there is a STAT_QUERY ramrod pending */
  1069. u16 stats_pending;
  1070. /* Counter for completed statistics ramrods */
  1071. u16 stats_comp;
  1072. /* End of fields used in the performance code paths */
  1073. int panic;
  1074. int msg_enable;
  1075. u32 flags;
  1076. #define PCIX_FLAG (1 << 0)
  1077. #define PCI_32BIT_FLAG (1 << 1)
  1078. #define ONE_PORT_FLAG (1 << 2)
  1079. #define NO_WOL_FLAG (1 << 3)
  1080. #define USING_DAC_FLAG (1 << 4)
  1081. #define USING_MSIX_FLAG (1 << 5)
  1082. #define USING_MSI_FLAG (1 << 6)
  1083. #define DISABLE_MSI_FLAG (1 << 7)
  1084. #define TPA_ENABLE_FLAG (1 << 8)
  1085. #define NO_MCP_FLAG (1 << 9)
  1086. #define GRO_ENABLE_FLAG (1 << 10)
  1087. #define MF_FUNC_DIS (1 << 11)
  1088. #define OWN_CNIC_IRQ (1 << 12)
  1089. #define NO_ISCSI_OOO_FLAG (1 << 13)
  1090. #define NO_ISCSI_FLAG (1 << 14)
  1091. #define NO_FCOE_FLAG (1 << 15)
  1092. #define BC_SUPPORTS_PFC_STATS (1 << 17)
  1093. #define BC_SUPPORTS_FCOE_FEATURES (1 << 19)
  1094. #define USING_SINGLE_MSIX_FLAG (1 << 20)
  1095. #define BC_SUPPORTS_DCBX_MSG_NON_PMF (1 << 21)
  1096. #define IS_VF_FLAG (1 << 22)
  1097. #define BP_NOMCP(bp) ((bp)->flags & NO_MCP_FLAG)
  1098. #define IS_VF(bp) ((bp)->flags & IS_VF_FLAG)
  1099. #define IS_PF(bp) (!((bp)->flags & IS_VF_FLAG))
  1100. #define NO_ISCSI(bp) ((bp)->flags & NO_ISCSI_FLAG)
  1101. #define NO_ISCSI_OOO(bp) ((bp)->flags & NO_ISCSI_OOO_FLAG)
  1102. #define NO_FCOE(bp) ((bp)->flags & NO_FCOE_FLAG)
  1103. u8 cnic_support;
  1104. bool cnic_enabled;
  1105. bool cnic_loaded;
  1106. struct cnic_eth_dev *(*cnic_probe)(struct net_device *);
  1107. /* Flag that indicates that we can start looking for FCoE L2 queue
  1108. * completions in the default status block.
  1109. */
  1110. bool fcoe_init;
  1111. int pm_cap;
  1112. int mrrs;
  1113. struct delayed_work sp_task;
  1114. struct delayed_work sp_rtnl_task;
  1115. struct delayed_work period_task;
  1116. struct timer_list timer;
  1117. int current_interval;
  1118. u16 fw_seq;
  1119. u16 fw_drv_pulse_wr_seq;
  1120. u32 func_stx;
  1121. struct link_params link_params;
  1122. struct link_vars link_vars;
  1123. u32 link_cnt;
  1124. struct bnx2x_link_report_data last_reported_link;
  1125. struct mdio_if_info mdio;
  1126. struct bnx2x_common common;
  1127. struct bnx2x_port port;
  1128. struct cmng_init cmng;
  1129. u32 mf_config[E1HVN_MAX];
  1130. u32 mf_ext_config;
  1131. u32 path_has_ovlan; /* E3 */
  1132. u16 mf_ov;
  1133. u8 mf_mode;
  1134. #define IS_MF(bp) (bp->mf_mode != 0)
  1135. #define IS_MF_SI(bp) (bp->mf_mode == MULTI_FUNCTION_SI)
  1136. #define IS_MF_SD(bp) (bp->mf_mode == MULTI_FUNCTION_SD)
  1137. #define IS_MF_AFEX(bp) (bp->mf_mode == MULTI_FUNCTION_AFEX)
  1138. u8 wol;
  1139. int rx_ring_size;
  1140. u16 tx_quick_cons_trip_int;
  1141. u16 tx_quick_cons_trip;
  1142. u16 tx_ticks_int;
  1143. u16 tx_ticks;
  1144. u16 rx_quick_cons_trip_int;
  1145. u16 rx_quick_cons_trip;
  1146. u16 rx_ticks_int;
  1147. u16 rx_ticks;
  1148. /* Maximal coalescing timeout in us */
  1149. #define BNX2X_MAX_COALESCE_TOUT (0xf0*12)
  1150. u32 lin_cnt;
  1151. u16 state;
  1152. #define BNX2X_STATE_CLOSED 0
  1153. #define BNX2X_STATE_OPENING_WAIT4_LOAD 0x1000
  1154. #define BNX2X_STATE_OPENING_WAIT4_PORT 0x2000
  1155. #define BNX2X_STATE_OPEN 0x3000
  1156. #define BNX2X_STATE_CLOSING_WAIT4_HALT 0x4000
  1157. #define BNX2X_STATE_CLOSING_WAIT4_DELETE 0x5000
  1158. #define BNX2X_STATE_DIAG 0xe000
  1159. #define BNX2X_STATE_ERROR 0xf000
  1160. #define BNX2X_MAX_PRIORITY 8
  1161. #define BNX2X_MAX_ENTRIES_PER_PRI 16
  1162. #define BNX2X_MAX_COS 3
  1163. #define BNX2X_MAX_TX_COS 2
  1164. int num_queues;
  1165. uint num_ethernet_queues;
  1166. uint num_cnic_queues;
  1167. int num_napi_queues;
  1168. int disable_tpa;
  1169. u32 rx_mode;
  1170. #define BNX2X_RX_MODE_NONE 0
  1171. #define BNX2X_RX_MODE_NORMAL 1
  1172. #define BNX2X_RX_MODE_ALLMULTI 2
  1173. #define BNX2X_RX_MODE_PROMISC 3
  1174. #define BNX2X_MAX_MULTICAST 64
  1175. u8 igu_dsb_id;
  1176. u8 igu_base_sb;
  1177. u8 igu_sb_cnt;
  1178. u8 min_msix_vec_cnt;
  1179. u32 igu_base_addr;
  1180. dma_addr_t def_status_blk_mapping;
  1181. struct bnx2x_slowpath *slowpath;
  1182. dma_addr_t slowpath_mapping;
  1183. /* Total number of FW statistics requests */
  1184. u8 fw_stats_num;
  1185. /*
  1186. * This is a memory buffer that will contain both statistics
  1187. * ramrod request and data.
  1188. */
  1189. void *fw_stats;
  1190. dma_addr_t fw_stats_mapping;
  1191. /*
  1192. * FW statistics request shortcut (points at the
  1193. * beginning of fw_stats buffer).
  1194. */
  1195. struct bnx2x_fw_stats_req *fw_stats_req;
  1196. dma_addr_t fw_stats_req_mapping;
  1197. int fw_stats_req_sz;
  1198. /*
  1199. * FW statistics data shortcut (points at the beginning of
  1200. * fw_stats buffer + fw_stats_req_sz).
  1201. */
  1202. struct bnx2x_fw_stats_data *fw_stats_data;
  1203. dma_addr_t fw_stats_data_mapping;
  1204. int fw_stats_data_sz;
  1205. /* For max 196 cids (64*3 + non-eth), 32KB ILT page size and 1KB
  1206. * context size we need 8 ILT entries.
  1207. */
  1208. #define ILT_MAX_L2_LINES 8
  1209. struct hw_context context[ILT_MAX_L2_LINES];
  1210. struct bnx2x_ilt *ilt;
  1211. #define BP_ILT(bp) ((bp)->ilt)
  1212. #define ILT_MAX_LINES 256
  1213. /*
  1214. * Maximum supported number of RSS queues: number of IGU SBs minus one that goes
  1215. * to CNIC.
  1216. */
  1217. #define BNX2X_MAX_RSS_COUNT(bp) ((bp)->igu_sb_cnt - CNIC_SUPPORT(bp))
  1218. /*
  1219. * Maximum CID count that might be required by the bnx2x:
  1220. * Max RSS * Max_Tx_Multi_Cos + FCoE + iSCSI
  1221. */
  1222. #define BNX2X_L2_CID_COUNT(bp) (BNX2X_NUM_ETH_QUEUES(bp) * BNX2X_MULTI_TX_COS \
  1223. + 2 * CNIC_SUPPORT(bp))
  1224. #define BNX2X_L2_MAX_CID(bp) (BNX2X_MAX_RSS_COUNT(bp) * BNX2X_MULTI_TX_COS \
  1225. + 2 * CNIC_SUPPORT(bp))
  1226. #define L2_ILT_LINES(bp) (DIV_ROUND_UP(BNX2X_L2_CID_COUNT(bp),\
  1227. ILT_PAGE_CIDS))
  1228. int qm_cid_count;
  1229. bool dropless_fc;
  1230. void *t2;
  1231. dma_addr_t t2_mapping;
  1232. struct cnic_ops __rcu *cnic_ops;
  1233. void *cnic_data;
  1234. u32 cnic_tag;
  1235. struct cnic_eth_dev cnic_eth_dev;
  1236. union host_hc_status_block cnic_sb;
  1237. dma_addr_t cnic_sb_mapping;
  1238. struct eth_spe *cnic_kwq;
  1239. struct eth_spe *cnic_kwq_prod;
  1240. struct eth_spe *cnic_kwq_cons;
  1241. struct eth_spe *cnic_kwq_last;
  1242. u16 cnic_kwq_pending;
  1243. u16 cnic_spq_pending;
  1244. u8 fip_mac[ETH_ALEN];
  1245. struct mutex cnic_mutex;
  1246. struct bnx2x_vlan_mac_obj iscsi_l2_mac_obj;
  1247. /* Start index of the "special" (CNIC related) L2 cleints */
  1248. u8 cnic_base_cl_id;
  1249. int dmae_ready;
  1250. /* used to synchronize dmae accesses */
  1251. spinlock_t dmae_lock;
  1252. /* used to protect the FW mail box */
  1253. struct mutex fw_mb_mutex;
  1254. /* used to synchronize stats collecting */
  1255. int stats_state;
  1256. /* used for synchronization of concurrent threads statistics handling */
  1257. spinlock_t stats_lock;
  1258. /* used by dmae command loader */
  1259. struct dmae_command stats_dmae;
  1260. int executer_idx;
  1261. u16 stats_counter;
  1262. struct bnx2x_eth_stats eth_stats;
  1263. struct host_func_stats func_stats;
  1264. struct bnx2x_eth_stats_old eth_stats_old;
  1265. struct bnx2x_net_stats_old net_stats_old;
  1266. struct bnx2x_fw_port_stats_old fw_stats_old;
  1267. bool stats_init;
  1268. struct z_stream_s *strm;
  1269. void *gunzip_buf;
  1270. dma_addr_t gunzip_mapping;
  1271. int gunzip_outlen;
  1272. #define FW_BUF_SIZE 0x8000
  1273. #define GUNZIP_BUF(bp) (bp->gunzip_buf)
  1274. #define GUNZIP_PHYS(bp) (bp->gunzip_mapping)
  1275. #define GUNZIP_OUTLEN(bp) (bp->gunzip_outlen)
  1276. struct raw_op *init_ops;
  1277. /* Init blocks offsets inside init_ops */
  1278. u16 *init_ops_offsets;
  1279. /* Data blob - has 32 bit granularity */
  1280. u32 *init_data;
  1281. u32 init_mode_flags;
  1282. #define INIT_MODE_FLAGS(bp) (bp->init_mode_flags)
  1283. /* Zipped PRAM blobs - raw data */
  1284. const u8 *tsem_int_table_data;
  1285. const u8 *tsem_pram_data;
  1286. const u8 *usem_int_table_data;
  1287. const u8 *usem_pram_data;
  1288. const u8 *xsem_int_table_data;
  1289. const u8 *xsem_pram_data;
  1290. const u8 *csem_int_table_data;
  1291. const u8 *csem_pram_data;
  1292. #define INIT_OPS(bp) (bp->init_ops)
  1293. #define INIT_OPS_OFFSETS(bp) (bp->init_ops_offsets)
  1294. #define INIT_DATA(bp) (bp->init_data)
  1295. #define INIT_TSEM_INT_TABLE_DATA(bp) (bp->tsem_int_table_data)
  1296. #define INIT_TSEM_PRAM_DATA(bp) (bp->tsem_pram_data)
  1297. #define INIT_USEM_INT_TABLE_DATA(bp) (bp->usem_int_table_data)
  1298. #define INIT_USEM_PRAM_DATA(bp) (bp->usem_pram_data)
  1299. #define INIT_XSEM_INT_TABLE_DATA(bp) (bp->xsem_int_table_data)
  1300. #define INIT_XSEM_PRAM_DATA(bp) (bp->xsem_pram_data)
  1301. #define INIT_CSEM_INT_TABLE_DATA(bp) (bp->csem_int_table_data)
  1302. #define INIT_CSEM_PRAM_DATA(bp) (bp->csem_pram_data)
  1303. #define PHY_FW_VER_LEN 20
  1304. char fw_ver[32];
  1305. const struct firmware *firmware;
  1306. /* DCB support on/off */
  1307. u16 dcb_state;
  1308. #define BNX2X_DCB_STATE_OFF 0
  1309. #define BNX2X_DCB_STATE_ON 1
  1310. /* DCBX engine mode */
  1311. int dcbx_enabled;
  1312. #define BNX2X_DCBX_ENABLED_OFF 0
  1313. #define BNX2X_DCBX_ENABLED_ON_NEG_OFF 1
  1314. #define BNX2X_DCBX_ENABLED_ON_NEG_ON 2
  1315. #define BNX2X_DCBX_ENABLED_INVALID (-1)
  1316. bool dcbx_mode_uset;
  1317. struct bnx2x_config_dcbx_params dcbx_config_params;
  1318. struct bnx2x_dcbx_port_params dcbx_port_params;
  1319. int dcb_version;
  1320. /* CAM credit pools */
  1321. struct bnx2x_credit_pool_obj macs_pool;
  1322. /* RX_MODE object */
  1323. struct bnx2x_rx_mode_obj rx_mode_obj;
  1324. /* MCAST object */
  1325. struct bnx2x_mcast_obj mcast_obj;
  1326. /* RSS configuration object */
  1327. struct bnx2x_rss_config_obj rss_conf_obj;
  1328. /* Function State controlling object */
  1329. struct bnx2x_func_sp_obj func_obj;
  1330. unsigned long sp_state;
  1331. /* operation indication for the sp_rtnl task */
  1332. unsigned long sp_rtnl_state;
  1333. /* DCBX Negotation results */
  1334. struct dcbx_features dcbx_local_feat;
  1335. u32 dcbx_error;
  1336. #ifdef BCM_DCBNL
  1337. struct dcbx_features dcbx_remote_feat;
  1338. u32 dcbx_remote_flags;
  1339. #endif
  1340. /* AFEX: store default vlan used */
  1341. int afex_def_vlan_tag;
  1342. enum mf_cfg_afex_vlan_mode afex_vlan_mode;
  1343. u32 pending_max;
  1344. /* multiple tx classes of service */
  1345. u8 max_cos;
  1346. /* priority to cos mapping */
  1347. u8 prio_to_cos[8];
  1348. };
  1349. /* Tx queues may be less or equal to Rx queues */
  1350. extern int num_queues;
  1351. #define BNX2X_NUM_QUEUES(bp) (bp->num_queues)
  1352. #define BNX2X_NUM_ETH_QUEUES(bp) ((bp)->num_ethernet_queues)
  1353. #define BNX2X_NUM_NON_CNIC_QUEUES(bp) (BNX2X_NUM_QUEUES(bp) - \
  1354. (bp)->num_cnic_queues)
  1355. #define BNX2X_NUM_RX_QUEUES(bp) BNX2X_NUM_QUEUES(bp)
  1356. #define is_multi(bp) (BNX2X_NUM_QUEUES(bp) > 1)
  1357. #define BNX2X_MAX_QUEUES(bp) BNX2X_MAX_RSS_COUNT(bp)
  1358. /* #define is_eth_multi(bp) (BNX2X_NUM_ETH_QUEUES(bp) > 1) */
  1359. #define RSS_IPV4_CAP_MASK \
  1360. TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_CAPABILITY
  1361. #define RSS_IPV4_TCP_CAP_MASK \
  1362. TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_TCP_CAPABILITY
  1363. #define RSS_IPV6_CAP_MASK \
  1364. TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_CAPABILITY
  1365. #define RSS_IPV6_TCP_CAP_MASK \
  1366. TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_TCP_CAPABILITY
  1367. /* func init flags */
  1368. #define FUNC_FLG_RSS 0x0001
  1369. #define FUNC_FLG_STATS 0x0002
  1370. /* removed FUNC_FLG_UNMATCHED 0x0004 */
  1371. #define FUNC_FLG_TPA 0x0008
  1372. #define FUNC_FLG_SPQ 0x0010
  1373. #define FUNC_FLG_LEADING 0x0020 /* PF only */
  1374. struct bnx2x_func_init_params {
  1375. /* dma */
  1376. dma_addr_t fw_stat_map; /* valid iff FUNC_FLG_STATS */
  1377. dma_addr_t spq_map; /* valid iff FUNC_FLG_SPQ */
  1378. u16 func_flgs;
  1379. u16 func_id; /* abs fid */
  1380. u16 pf_id;
  1381. u16 spq_prod; /* valid iff FUNC_FLG_SPQ */
  1382. };
  1383. #define for_each_cnic_queue(bp, var) \
  1384. for ((var) = BNX2X_NUM_ETH_QUEUES(bp); (var) < BNX2X_NUM_QUEUES(bp); \
  1385. (var)++) \
  1386. if (skip_queue(bp, var)) \
  1387. continue; \
  1388. else
  1389. #define for_each_eth_queue(bp, var) \
  1390. for ((var) = 0; (var) < BNX2X_NUM_ETH_QUEUES(bp); (var)++)
  1391. #define for_each_nondefault_eth_queue(bp, var) \
  1392. for ((var) = 1; (var) < BNX2X_NUM_ETH_QUEUES(bp); (var)++)
  1393. #define for_each_queue(bp, var) \
  1394. for ((var) = 0; (var) < BNX2X_NUM_QUEUES(bp); (var)++) \
  1395. if (skip_queue(bp, var)) \
  1396. continue; \
  1397. else
  1398. /* Skip forwarding FP */
  1399. #define for_each_valid_rx_queue(bp, var) \
  1400. for ((var) = 0; \
  1401. (var) < (CNIC_LOADED(bp) ? BNX2X_NUM_QUEUES(bp) : \
  1402. BNX2X_NUM_ETH_QUEUES(bp)); \
  1403. (var)++) \
  1404. if (skip_rx_queue(bp, var)) \
  1405. continue; \
  1406. else
  1407. #define for_each_rx_queue_cnic(bp, var) \
  1408. for ((var) = BNX2X_NUM_ETH_QUEUES(bp); (var) < BNX2X_NUM_QUEUES(bp); \
  1409. (var)++) \
  1410. if (skip_rx_queue(bp, var)) \
  1411. continue; \
  1412. else
  1413. #define for_each_rx_queue(bp, var) \
  1414. for ((var) = 0; (var) < BNX2X_NUM_QUEUES(bp); (var)++) \
  1415. if (skip_rx_queue(bp, var)) \
  1416. continue; \
  1417. else
  1418. /* Skip OOO FP */
  1419. #define for_each_valid_tx_queue(bp, var) \
  1420. for ((var) = 0; \
  1421. (var) < (CNIC_LOADED(bp) ? BNX2X_NUM_QUEUES(bp) : \
  1422. BNX2X_NUM_ETH_QUEUES(bp)); \
  1423. (var)++) \
  1424. if (skip_tx_queue(bp, var)) \
  1425. continue; \
  1426. else
  1427. #define for_each_tx_queue_cnic(bp, var) \
  1428. for ((var) = BNX2X_NUM_ETH_QUEUES(bp); (var) < BNX2X_NUM_QUEUES(bp); \
  1429. (var)++) \
  1430. if (skip_tx_queue(bp, var)) \
  1431. continue; \
  1432. else
  1433. #define for_each_tx_queue(bp, var) \
  1434. for ((var) = 0; (var) < BNX2X_NUM_QUEUES(bp); (var)++) \
  1435. if (skip_tx_queue(bp, var)) \
  1436. continue; \
  1437. else
  1438. #define for_each_nondefault_queue(bp, var) \
  1439. for ((var) = 1; (var) < BNX2X_NUM_QUEUES(bp); (var)++) \
  1440. if (skip_queue(bp, var)) \
  1441. continue; \
  1442. else
  1443. #define for_each_cos_in_tx_queue(fp, var) \
  1444. for ((var) = 0; (var) < (fp)->max_cos; (var)++)
  1445. /* skip rx queue
  1446. * if FCOE l2 support is disabled and this is the fcoe L2 queue
  1447. */
  1448. #define skip_rx_queue(bp, idx) (NO_FCOE(bp) && IS_FCOE_IDX(idx))
  1449. /* skip tx queue
  1450. * if FCOE l2 support is disabled and this is the fcoe L2 queue
  1451. */
  1452. #define skip_tx_queue(bp, idx) (NO_FCOE(bp) && IS_FCOE_IDX(idx))
  1453. #define skip_queue(bp, idx) (NO_FCOE(bp) && IS_FCOE_IDX(idx))
  1454. /**
  1455. * bnx2x_set_mac_one - configure a single MAC address
  1456. *
  1457. * @bp: driver handle
  1458. * @mac: MAC to configure
  1459. * @obj: MAC object handle
  1460. * @set: if 'true' add a new MAC, otherwise - delete
  1461. * @mac_type: the type of the MAC to configure (e.g. ETH, UC list)
  1462. * @ramrod_flags: RAMROD_XXX flags (e.g. RAMROD_CONT, RAMROD_COMP_WAIT)
  1463. *
  1464. * Configures one MAC according to provided parameters or continues the
  1465. * execution of previously scheduled commands if RAMROD_CONT is set in
  1466. * ramrod_flags.
  1467. *
  1468. * Returns zero if operation has successfully completed, a positive value if the
  1469. * operation has been successfully scheduled and a negative - if a requested
  1470. * operations has failed.
  1471. */
  1472. int bnx2x_set_mac_one(struct bnx2x *bp, u8 *mac,
  1473. struct bnx2x_vlan_mac_obj *obj, bool set,
  1474. int mac_type, unsigned long *ramrod_flags);
  1475. /**
  1476. * bnx2x_del_all_macs - delete all MACs configured for the specific MAC object
  1477. *
  1478. * @bp: driver handle
  1479. * @mac_obj: MAC object handle
  1480. * @mac_type: type of the MACs to clear (BNX2X_XXX_MAC)
  1481. * @wait_for_comp: if 'true' block until completion
  1482. *
  1483. * Deletes all MACs of the specific type (e.g. ETH, UC list).
  1484. *
  1485. * Returns zero if operation has successfully completed, a positive value if the
  1486. * operation has been successfully scheduled and a negative - if a requested
  1487. * operations has failed.
  1488. */
  1489. int bnx2x_del_all_macs(struct bnx2x *bp,
  1490. struct bnx2x_vlan_mac_obj *mac_obj,
  1491. int mac_type, bool wait_for_comp);
  1492. /* Init Function API */
  1493. void bnx2x_func_init(struct bnx2x *bp, struct bnx2x_func_init_params *p);
  1494. int bnx2x_get_gpio(struct bnx2x *bp, int gpio_num, u8 port);
  1495. int bnx2x_set_gpio(struct bnx2x *bp, int gpio_num, u32 mode, u8 port);
  1496. int bnx2x_set_mult_gpio(struct bnx2x *bp, u8 pins, u32 mode);
  1497. int bnx2x_set_gpio_int(struct bnx2x *bp, int gpio_num, u32 mode, u8 port);
  1498. void bnx2x_read_mf_cfg(struct bnx2x *bp);
  1499. /* dmae */
  1500. void bnx2x_read_dmae(struct bnx2x *bp, u32 src_addr, u32 len32);
  1501. void bnx2x_write_dmae(struct bnx2x *bp, dma_addr_t dma_addr, u32 dst_addr,
  1502. u32 len32);
  1503. void bnx2x_post_dmae(struct bnx2x *bp, struct dmae_command *dmae, int idx);
  1504. u32 bnx2x_dmae_opcode_add_comp(u32 opcode, u8 comp_type);
  1505. u32 bnx2x_dmae_opcode_clr_src_reset(u32 opcode);
  1506. u32 bnx2x_dmae_opcode(struct bnx2x *bp, u8 src_type, u8 dst_type,
  1507. bool with_comp, u8 comp_type);
  1508. void bnx2x_calc_fc_adv(struct bnx2x *bp);
  1509. int bnx2x_sp_post(struct bnx2x *bp, int command, int cid,
  1510. u32 data_hi, u32 data_lo, int cmd_type);
  1511. void bnx2x_update_coalesce(struct bnx2x *bp);
  1512. int bnx2x_get_cur_phy_idx(struct bnx2x *bp);
  1513. static inline u32 reg_poll(struct bnx2x *bp, u32 reg, u32 expected, int ms,
  1514. int wait)
  1515. {
  1516. u32 val;
  1517. do {
  1518. val = REG_RD(bp, reg);
  1519. if (val == expected)
  1520. break;
  1521. ms -= wait;
  1522. msleep(wait);
  1523. } while (ms > 0);
  1524. return val;
  1525. }
  1526. #define BNX2X_ILT_ZALLOC(x, y, size) \
  1527. do { \
  1528. x = dma_alloc_coherent(&bp->pdev->dev, size, y, GFP_KERNEL); \
  1529. if (x) \
  1530. memset(x, 0, size); \
  1531. } while (0)
  1532. #define BNX2X_ILT_FREE(x, y, size) \
  1533. do { \
  1534. if (x) { \
  1535. dma_free_coherent(&bp->pdev->dev, size, x, y); \
  1536. x = NULL; \
  1537. y = 0; \
  1538. } \
  1539. } while (0)
  1540. #define ILOG2(x) (ilog2((x)))
  1541. #define ILT_NUM_PAGE_ENTRIES (3072)
  1542. /* In 57710/11 we use whole table since we have 8 func
  1543. * In 57712 we have only 4 func, but use same size per func, then only half of
  1544. * the table in use
  1545. */
  1546. #define ILT_PER_FUNC (ILT_NUM_PAGE_ENTRIES/8)
  1547. #define FUNC_ILT_BASE(func) (func * ILT_PER_FUNC)
  1548. /*
  1549. * the phys address is shifted right 12 bits and has an added
  1550. * 1=valid bit added to the 53rd bit
  1551. * then since this is a wide register(TM)
  1552. * we split it into two 32 bit writes
  1553. */
  1554. #define ONCHIP_ADDR1(x) ((u32)(((u64)x >> 12) & 0xFFFFFFFF))
  1555. #define ONCHIP_ADDR2(x) ((u32)((1 << 20) | ((u64)x >> 44)))
  1556. /* load/unload mode */
  1557. #define LOAD_NORMAL 0
  1558. #define LOAD_OPEN 1
  1559. #define LOAD_DIAG 2
  1560. #define LOAD_LOOPBACK_EXT 3
  1561. #define UNLOAD_NORMAL 0
  1562. #define UNLOAD_CLOSE 1
  1563. #define UNLOAD_RECOVERY 2
  1564. /* DMAE command defines */
  1565. #define DMAE_TIMEOUT -1
  1566. #define DMAE_PCI_ERROR -2 /* E2 and onward */
  1567. #define DMAE_NOT_RDY -3
  1568. #define DMAE_PCI_ERR_FLAG 0x80000000
  1569. #define DMAE_SRC_PCI 0
  1570. #define DMAE_SRC_GRC 1
  1571. #define DMAE_DST_NONE 0
  1572. #define DMAE_DST_PCI 1
  1573. #define DMAE_DST_GRC 2
  1574. #define DMAE_COMP_PCI 0
  1575. #define DMAE_COMP_GRC 1
  1576. /* E2 and onward - PCI error handling in the completion */
  1577. #define DMAE_COMP_REGULAR 0
  1578. #define DMAE_COM_SET_ERR 1
  1579. #define DMAE_CMD_SRC_PCI (DMAE_SRC_PCI << \
  1580. DMAE_COMMAND_SRC_SHIFT)
  1581. #define DMAE_CMD_SRC_GRC (DMAE_SRC_GRC << \
  1582. DMAE_COMMAND_SRC_SHIFT)
  1583. #define DMAE_CMD_DST_PCI (DMAE_DST_PCI << \
  1584. DMAE_COMMAND_DST_SHIFT)
  1585. #define DMAE_CMD_DST_GRC (DMAE_DST_GRC << \
  1586. DMAE_COMMAND_DST_SHIFT)
  1587. #define DMAE_CMD_C_DST_PCI (DMAE_COMP_PCI << \
  1588. DMAE_COMMAND_C_DST_SHIFT)
  1589. #define DMAE_CMD_C_DST_GRC (DMAE_COMP_GRC << \
  1590. DMAE_COMMAND_C_DST_SHIFT)
  1591. #define DMAE_CMD_C_ENABLE DMAE_COMMAND_C_TYPE_ENABLE
  1592. #define DMAE_CMD_ENDIANITY_NO_SWAP (0 << DMAE_COMMAND_ENDIANITY_SHIFT)
  1593. #define DMAE_CMD_ENDIANITY_B_SWAP (1 << DMAE_COMMAND_ENDIANITY_SHIFT)
  1594. #define DMAE_CMD_ENDIANITY_DW_SWAP (2 << DMAE_COMMAND_ENDIANITY_SHIFT)
  1595. #define DMAE_CMD_ENDIANITY_B_DW_SWAP (3 << DMAE_COMMAND_ENDIANITY_SHIFT)
  1596. #define DMAE_CMD_PORT_0 0
  1597. #define DMAE_CMD_PORT_1 DMAE_COMMAND_PORT
  1598. #define DMAE_CMD_SRC_RESET DMAE_COMMAND_SRC_RESET
  1599. #define DMAE_CMD_DST_RESET DMAE_COMMAND_DST_RESET
  1600. #define DMAE_CMD_E1HVN_SHIFT DMAE_COMMAND_E1HVN_SHIFT
  1601. #define DMAE_SRC_PF 0
  1602. #define DMAE_SRC_VF 1
  1603. #define DMAE_DST_PF 0
  1604. #define DMAE_DST_VF 1
  1605. #define DMAE_C_SRC 0
  1606. #define DMAE_C_DST 1
  1607. #define DMAE_LEN32_RD_MAX 0x80
  1608. #define DMAE_LEN32_WR_MAX(bp) (CHIP_IS_E1(bp) ? 0x400 : 0x2000)
  1609. #define DMAE_COMP_VAL 0x60d0d0ae /* E2 and on - upper bit
  1610. indicates eror */
  1611. #define MAX_DMAE_C_PER_PORT 8
  1612. #define INIT_DMAE_C(bp) (BP_PORT(bp) * MAX_DMAE_C_PER_PORT + \
  1613. BP_VN(bp))
  1614. #define PMF_DMAE_C(bp) (BP_PORT(bp) * MAX_DMAE_C_PER_PORT + \
  1615. E1HVN_MAX)
  1616. /* PCIE link and speed */
  1617. #define PCICFG_LINK_WIDTH 0x1f00000
  1618. #define PCICFG_LINK_WIDTH_SHIFT 20
  1619. #define PCICFG_LINK_SPEED 0xf0000
  1620. #define PCICFG_LINK_SPEED_SHIFT 16
  1621. #define BNX2X_NUM_TESTS_SF 7
  1622. #define BNX2X_NUM_TESTS_MF 3
  1623. #define BNX2X_NUM_TESTS(bp) (IS_MF(bp) ? BNX2X_NUM_TESTS_MF : \
  1624. BNX2X_NUM_TESTS_SF)
  1625. #define BNX2X_PHY_LOOPBACK 0
  1626. #define BNX2X_MAC_LOOPBACK 1
  1627. #define BNX2X_EXT_LOOPBACK 2
  1628. #define BNX2X_PHY_LOOPBACK_FAILED 1
  1629. #define BNX2X_MAC_LOOPBACK_FAILED 2
  1630. #define BNX2X_EXT_LOOPBACK_FAILED 3
  1631. #define BNX2X_LOOPBACK_FAILED (BNX2X_MAC_LOOPBACK_FAILED | \
  1632. BNX2X_PHY_LOOPBACK_FAILED)
  1633. #define STROM_ASSERT_ARRAY_SIZE 50
  1634. /* must be used on a CID before placing it on a HW ring */
  1635. #define HW_CID(bp, x) ((BP_PORT(bp) << 23) | \
  1636. (BP_VN(bp) << BNX2X_SWCID_SHIFT) | \
  1637. (x))
  1638. #define SP_DESC_CNT (BCM_PAGE_SIZE / sizeof(struct eth_spe))
  1639. #define MAX_SP_DESC_CNT (SP_DESC_CNT - 1)
  1640. #define BNX2X_BTR 4
  1641. #define MAX_SPQ_PENDING 8
  1642. /* CMNG constants, as derived from system spec calculations */
  1643. /* default MIN rate in case VNIC min rate is configured to zero - 100Mbps */
  1644. #define DEF_MIN_RATE 100
  1645. /* resolution of the rate shaping timer - 400 usec */
  1646. #define RS_PERIODIC_TIMEOUT_USEC 400
  1647. /* number of bytes in single QM arbitration cycle -
  1648. * coefficient for calculating the fairness timer */
  1649. #define QM_ARB_BYTES 160000
  1650. /* resolution of Min algorithm 1:100 */
  1651. #define MIN_RES 100
  1652. /* how many bytes above threshold for the minimal credit of Min algorithm*/
  1653. #define MIN_ABOVE_THRESH 32768
  1654. /* Fairness algorithm integration time coefficient -
  1655. * for calculating the actual Tfair */
  1656. #define T_FAIR_COEF ((MIN_ABOVE_THRESH + QM_ARB_BYTES) * 8 * MIN_RES)
  1657. /* Memory of fairness algorithm . 2 cycles */
  1658. #define FAIR_MEM 2
  1659. #define ATTN_NIG_FOR_FUNC (1L << 8)
  1660. #define ATTN_SW_TIMER_4_FUNC (1L << 9)
  1661. #define GPIO_2_FUNC (1L << 10)
  1662. #define GPIO_3_FUNC (1L << 11)
  1663. #define GPIO_4_FUNC (1L << 12)
  1664. #define ATTN_GENERAL_ATTN_1 (1L << 13)
  1665. #define ATTN_GENERAL_ATTN_2 (1L << 14)
  1666. #define ATTN_GENERAL_ATTN_3 (1L << 15)
  1667. #define ATTN_GENERAL_ATTN_4 (1L << 13)
  1668. #define ATTN_GENERAL_ATTN_5 (1L << 14)
  1669. #define ATTN_GENERAL_ATTN_6 (1L << 15)
  1670. #define ATTN_HARD_WIRED_MASK 0xff00
  1671. #define ATTENTION_ID 4
  1672. /* stuff added to make the code fit 80Col */
  1673. #define BNX2X_PMF_LINK_ASSERT \
  1674. GENERAL_ATTEN_OFFSET(LINK_SYNC_ATTENTION_BIT_FUNC_0 + BP_FUNC(bp))
  1675. #define BNX2X_MC_ASSERT_BITS \
  1676. (GENERAL_ATTEN_OFFSET(TSTORM_FATAL_ASSERT_ATTENTION_BIT) | \
  1677. GENERAL_ATTEN_OFFSET(USTORM_FATAL_ASSERT_ATTENTION_BIT) | \
  1678. GENERAL_ATTEN_OFFSET(CSTORM_FATAL_ASSERT_ATTENTION_BIT) | \
  1679. GENERAL_ATTEN_OFFSET(XSTORM_FATAL_ASSERT_ATTENTION_BIT))
  1680. #define BNX2X_MCP_ASSERT \
  1681. GENERAL_ATTEN_OFFSET(MCP_FATAL_ASSERT_ATTENTION_BIT)
  1682. #define BNX2X_GRC_TIMEOUT GENERAL_ATTEN_OFFSET(LATCHED_ATTN_TIMEOUT_GRC)
  1683. #define BNX2X_GRC_RSV (GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RBCR) | \
  1684. GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RBCT) | \
  1685. GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RBCN) | \
  1686. GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RBCU) | \
  1687. GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RBCP) | \
  1688. GENERAL_ATTEN_OFFSET(LATCHED_ATTN_RSVD_GRC))
  1689. #define HW_INTERRUT_ASSERT_SET_0 \
  1690. (AEU_INPUTS_ATTN_BITS_TSDM_HW_INTERRUPT | \
  1691. AEU_INPUTS_ATTN_BITS_TCM_HW_INTERRUPT | \
  1692. AEU_INPUTS_ATTN_BITS_TSEMI_HW_INTERRUPT | \
  1693. AEU_INPUTS_ATTN_BITS_PBCLIENT_HW_INTERRUPT)
  1694. #define HW_PRTY_ASSERT_SET_0 (AEU_INPUTS_ATTN_BITS_BRB_PARITY_ERROR | \
  1695. AEU_INPUTS_ATTN_BITS_PARSER_PARITY_ERROR | \
  1696. AEU_INPUTS_ATTN_BITS_TSDM_PARITY_ERROR | \
  1697. AEU_INPUTS_ATTN_BITS_SEARCHER_PARITY_ERROR |\
  1698. AEU_INPUTS_ATTN_BITS_TSEMI_PARITY_ERROR |\
  1699. AEU_INPUTS_ATTN_BITS_TCM_PARITY_ERROR |\
  1700. AEU_INPUTS_ATTN_BITS_PBCLIENT_PARITY_ERROR)
  1701. #define HW_INTERRUT_ASSERT_SET_1 \
  1702. (AEU_INPUTS_ATTN_BITS_QM_HW_INTERRUPT | \
  1703. AEU_INPUTS_ATTN_BITS_TIMERS_HW_INTERRUPT | \
  1704. AEU_INPUTS_ATTN_BITS_XSDM_HW_INTERRUPT | \
  1705. AEU_INPUTS_ATTN_BITS_XCM_HW_INTERRUPT | \
  1706. AEU_INPUTS_ATTN_BITS_XSEMI_HW_INTERRUPT | \
  1707. AEU_INPUTS_ATTN_BITS_USDM_HW_INTERRUPT | \
  1708. AEU_INPUTS_ATTN_BITS_UCM_HW_INTERRUPT | \
  1709. AEU_INPUTS_ATTN_BITS_USEMI_HW_INTERRUPT | \
  1710. AEU_INPUTS_ATTN_BITS_UPB_HW_INTERRUPT | \
  1711. AEU_INPUTS_ATTN_BITS_CSDM_HW_INTERRUPT | \
  1712. AEU_INPUTS_ATTN_BITS_CCM_HW_INTERRUPT)
  1713. #define HW_PRTY_ASSERT_SET_1 (AEU_INPUTS_ATTN_BITS_PBF_PARITY_ERROR |\
  1714. AEU_INPUTS_ATTN_BITS_QM_PARITY_ERROR | \
  1715. AEU_INPUTS_ATTN_BITS_TIMERS_PARITY_ERROR |\
  1716. AEU_INPUTS_ATTN_BITS_XSDM_PARITY_ERROR | \
  1717. AEU_INPUTS_ATTN_BITS_XCM_PARITY_ERROR |\
  1718. AEU_INPUTS_ATTN_BITS_XSEMI_PARITY_ERROR | \
  1719. AEU_INPUTS_ATTN_BITS_DOORBELLQ_PARITY_ERROR |\
  1720. AEU_INPUTS_ATTN_BITS_NIG_PARITY_ERROR |\
  1721. AEU_INPUTS_ATTN_BITS_VAUX_PCI_CORE_PARITY_ERROR |\
  1722. AEU_INPUTS_ATTN_BITS_DEBUG_PARITY_ERROR | \
  1723. AEU_INPUTS_ATTN_BITS_USDM_PARITY_ERROR | \
  1724. AEU_INPUTS_ATTN_BITS_UCM_PARITY_ERROR |\
  1725. AEU_INPUTS_ATTN_BITS_USEMI_PARITY_ERROR | \
  1726. AEU_INPUTS_ATTN_BITS_UPB_PARITY_ERROR | \
  1727. AEU_INPUTS_ATTN_BITS_CSDM_PARITY_ERROR |\
  1728. AEU_INPUTS_ATTN_BITS_CCM_PARITY_ERROR)
  1729. #define HW_INTERRUT_ASSERT_SET_2 \
  1730. (AEU_INPUTS_ATTN_BITS_CSEMI_HW_INTERRUPT | \
  1731. AEU_INPUTS_ATTN_BITS_CDU_HW_INTERRUPT | \
  1732. AEU_INPUTS_ATTN_BITS_DMAE_HW_INTERRUPT | \
  1733. AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_HW_INTERRUPT |\
  1734. AEU_INPUTS_ATTN_BITS_MISC_HW_INTERRUPT)
  1735. #define HW_PRTY_ASSERT_SET_2 (AEU_INPUTS_ATTN_BITS_CSEMI_PARITY_ERROR | \
  1736. AEU_INPUTS_ATTN_BITS_PXP_PARITY_ERROR | \
  1737. AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_PARITY_ERROR |\
  1738. AEU_INPUTS_ATTN_BITS_CFC_PARITY_ERROR | \
  1739. AEU_INPUTS_ATTN_BITS_CDU_PARITY_ERROR | \
  1740. AEU_INPUTS_ATTN_BITS_DMAE_PARITY_ERROR |\
  1741. AEU_INPUTS_ATTN_BITS_IGU_PARITY_ERROR | \
  1742. AEU_INPUTS_ATTN_BITS_MISC_PARITY_ERROR)
  1743. #define HW_PRTY_ASSERT_SET_3 (AEU_INPUTS_ATTN_BITS_MCP_LATCHED_ROM_PARITY | \
  1744. AEU_INPUTS_ATTN_BITS_MCP_LATCHED_UMP_RX_PARITY | \
  1745. AEU_INPUTS_ATTN_BITS_MCP_LATCHED_UMP_TX_PARITY | \
  1746. AEU_INPUTS_ATTN_BITS_MCP_LATCHED_SCPAD_PARITY)
  1747. #define HW_PRTY_ASSERT_SET_4 (AEU_INPUTS_ATTN_BITS_PGLUE_PARITY_ERROR | \
  1748. AEU_INPUTS_ATTN_BITS_ATC_PARITY_ERROR)
  1749. #define MULTI_MASK 0x7f
  1750. #define DEF_USB_FUNC_OFF offsetof(struct cstorm_def_status_block_u, func)
  1751. #define DEF_CSB_FUNC_OFF offsetof(struct cstorm_def_status_block_c, func)
  1752. #define DEF_XSB_FUNC_OFF offsetof(struct xstorm_def_status_block, func)
  1753. #define DEF_TSB_FUNC_OFF offsetof(struct tstorm_def_status_block, func)
  1754. #define DEF_USB_IGU_INDEX_OFF \
  1755. offsetof(struct cstorm_def_status_block_u, igu_index)
  1756. #define DEF_CSB_IGU_INDEX_OFF \
  1757. offsetof(struct cstorm_def_status_block_c, igu_index)
  1758. #define DEF_XSB_IGU_INDEX_OFF \
  1759. offsetof(struct xstorm_def_status_block, igu_index)
  1760. #define DEF_TSB_IGU_INDEX_OFF \
  1761. offsetof(struct tstorm_def_status_block, igu_index)
  1762. #define DEF_USB_SEGMENT_OFF \
  1763. offsetof(struct cstorm_def_status_block_u, segment)
  1764. #define DEF_CSB_SEGMENT_OFF \
  1765. offsetof(struct cstorm_def_status_block_c, segment)
  1766. #define DEF_XSB_SEGMENT_OFF \
  1767. offsetof(struct xstorm_def_status_block, segment)
  1768. #define DEF_TSB_SEGMENT_OFF \
  1769. offsetof(struct tstorm_def_status_block, segment)
  1770. #define BNX2X_SP_DSB_INDEX \
  1771. (&bp->def_status_blk->sp_sb.\
  1772. index_values[HC_SP_INDEX_ETH_DEF_CONS])
  1773. #define SET_FLAG(value, mask, flag) \
  1774. do {\
  1775. (value) &= ~(mask);\
  1776. (value) |= ((flag) << (mask##_SHIFT));\
  1777. } while (0)
  1778. #define GET_FLAG(value, mask) \
  1779. (((value) & (mask)) >> (mask##_SHIFT))
  1780. #define GET_FIELD(value, fname) \
  1781. (((value) & (fname##_MASK)) >> (fname##_SHIFT))
  1782. #define CAM_IS_INVALID(x) \
  1783. (GET_FLAG(x.flags, \
  1784. MAC_CONFIGURATION_ENTRY_ACTION_TYPE) == \
  1785. (T_ETH_MAC_COMMAND_INVALIDATE))
  1786. /* Number of u32 elements in MC hash array */
  1787. #define MC_HASH_SIZE 8
  1788. #define MC_HASH_OFFSET(bp, i) (BAR_TSTRORM_INTMEM + \
  1789. TSTORM_APPROXIMATE_MATCH_MULTICAST_FILTERING_OFFSET(BP_FUNC(bp)) + i*4)
  1790. #ifndef PXP2_REG_PXP2_INT_STS
  1791. #define PXP2_REG_PXP2_INT_STS PXP2_REG_PXP2_INT_STS_0
  1792. #endif
  1793. #ifndef ETH_MAX_RX_CLIENTS_E2
  1794. #define ETH_MAX_RX_CLIENTS_E2 ETH_MAX_RX_CLIENTS_E1H
  1795. #endif
  1796. #define BNX2X_VPD_LEN 128
  1797. #define VENDOR_ID_LEN 4
  1798. /* Congestion management fairness mode */
  1799. #define CMNG_FNS_NONE 0
  1800. #define CMNG_FNS_MINMAX 1
  1801. #define HC_SEG_ACCESS_DEF 0 /*Driver decision 0-3*/
  1802. #define HC_SEG_ACCESS_ATTN 4
  1803. #define HC_SEG_ACCESS_NORM 0 /*Driver decision 0-1*/
  1804. static const u32 dmae_reg_go_c[] = {
  1805. DMAE_REG_GO_C0, DMAE_REG_GO_C1, DMAE_REG_GO_C2, DMAE_REG_GO_C3,
  1806. DMAE_REG_GO_C4, DMAE_REG_GO_C5, DMAE_REG_GO_C6, DMAE_REG_GO_C7,
  1807. DMAE_REG_GO_C8, DMAE_REG_GO_C9, DMAE_REG_GO_C10, DMAE_REG_GO_C11,
  1808. DMAE_REG_GO_C12, DMAE_REG_GO_C13, DMAE_REG_GO_C14, DMAE_REG_GO_C15
  1809. };
  1810. void bnx2x_set_ethtool_ops(struct net_device *netdev);
  1811. void bnx2x_notify_link_changed(struct bnx2x *bp);
  1812. #define BNX2X_MF_SD_PROTOCOL(bp) \
  1813. ((bp)->mf_config[BP_VN(bp)] & FUNC_MF_CFG_PROTOCOL_MASK)
  1814. #define BNX2X_IS_MF_SD_PROTOCOL_ISCSI(bp) \
  1815. (BNX2X_MF_SD_PROTOCOL(bp) == FUNC_MF_CFG_PROTOCOL_ISCSI)
  1816. #define BNX2X_IS_MF_SD_PROTOCOL_FCOE(bp) \
  1817. (BNX2X_MF_SD_PROTOCOL(bp) == FUNC_MF_CFG_PROTOCOL_FCOE)
  1818. #define IS_MF_ISCSI_SD(bp) (IS_MF_SD(bp) && BNX2X_IS_MF_SD_PROTOCOL_ISCSI(bp))
  1819. #define IS_MF_FCOE_SD(bp) (IS_MF_SD(bp) && BNX2X_IS_MF_SD_PROTOCOL_FCOE(bp))
  1820. #define BNX2X_MF_EXT_PROTOCOL_FCOE(bp) ((bp)->mf_ext_config & \
  1821. MACP_FUNC_CFG_FLAGS_FCOE_OFFLOAD)
  1822. #define IS_MF_FCOE_AFEX(bp) (IS_MF_AFEX(bp) && BNX2X_MF_EXT_PROTOCOL_FCOE(bp))
  1823. #define IS_MF_STORAGE_SD(bp) (IS_MF_SD(bp) && \
  1824. (BNX2X_IS_MF_SD_PROTOCOL_ISCSI(bp) || \
  1825. BNX2X_IS_MF_SD_PROTOCOL_FCOE(bp)))
  1826. enum {
  1827. SWITCH_UPDATE,
  1828. AFEX_UPDATE,
  1829. };
  1830. #define NUM_MACS 8
  1831. #endif /* bnx2x.h */