t4_msg.h 17 KB

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  1. /*
  2. * This file is part of the Chelsio T4 Ethernet driver for Linux.
  3. *
  4. * Copyright (c) 2003-2010 Chelsio Communications, Inc. All rights reserved.
  5. *
  6. * This software is available to you under a choice of one of two
  7. * licenses. You may choose to be licensed under the terms of the GNU
  8. * General Public License (GPL) Version 2, available from the file
  9. * COPYING in the main directory of this source tree, or the
  10. * OpenIB.org BSD license below:
  11. *
  12. * Redistribution and use in source and binary forms, with or
  13. * without modification, are permitted provided that the following
  14. * conditions are met:
  15. *
  16. * - Redistributions of source code must retain the above
  17. * copyright notice, this list of conditions and the following
  18. * disclaimer.
  19. *
  20. * - Redistributions in binary form must reproduce the above
  21. * copyright notice, this list of conditions and the following
  22. * disclaimer in the documentation and/or other materials
  23. * provided with the distribution.
  24. *
  25. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  26. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  27. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  28. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  29. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  30. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  31. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  32. * SOFTWARE.
  33. */
  34. #ifndef __T4_MSG_H
  35. #define __T4_MSG_H
  36. #include <linux/types.h>
  37. enum {
  38. CPL_PASS_OPEN_REQ = 0x1,
  39. CPL_PASS_ACCEPT_RPL = 0x2,
  40. CPL_ACT_OPEN_REQ = 0x3,
  41. CPL_SET_TCB_FIELD = 0x5,
  42. CPL_GET_TCB = 0x6,
  43. CPL_CLOSE_CON_REQ = 0x8,
  44. CPL_CLOSE_LISTSRV_REQ = 0x9,
  45. CPL_ABORT_REQ = 0xA,
  46. CPL_ABORT_RPL = 0xB,
  47. CPL_RX_DATA_ACK = 0xD,
  48. CPL_TX_PKT = 0xE,
  49. CPL_L2T_WRITE_REQ = 0x12,
  50. CPL_TID_RELEASE = 0x1A,
  51. CPL_CLOSE_LISTSRV_RPL = 0x20,
  52. CPL_L2T_WRITE_RPL = 0x23,
  53. CPL_PASS_OPEN_RPL = 0x24,
  54. CPL_ACT_OPEN_RPL = 0x25,
  55. CPL_PEER_CLOSE = 0x26,
  56. CPL_ABORT_REQ_RSS = 0x2B,
  57. CPL_ABORT_RPL_RSS = 0x2D,
  58. CPL_CLOSE_CON_RPL = 0x32,
  59. CPL_ISCSI_HDR = 0x33,
  60. CPL_RDMA_CQE = 0x35,
  61. CPL_RDMA_CQE_READ_RSP = 0x36,
  62. CPL_RDMA_CQE_ERR = 0x37,
  63. CPL_RX_DATA = 0x39,
  64. CPL_SET_TCB_RPL = 0x3A,
  65. CPL_RX_PKT = 0x3B,
  66. CPL_RX_DDP_COMPLETE = 0x3F,
  67. CPL_ACT_ESTABLISH = 0x40,
  68. CPL_PASS_ESTABLISH = 0x41,
  69. CPL_RX_DATA_DDP = 0x42,
  70. CPL_PASS_ACCEPT_REQ = 0x44,
  71. CPL_TRACE_PKT_T5 = 0x48,
  72. CPL_RDMA_READ_REQ = 0x60,
  73. CPL_PASS_OPEN_REQ6 = 0x81,
  74. CPL_ACT_OPEN_REQ6 = 0x83,
  75. CPL_RDMA_TERMINATE = 0xA2,
  76. CPL_RDMA_WRITE = 0xA4,
  77. CPL_SGE_EGR_UPDATE = 0xA5,
  78. CPL_TRACE_PKT = 0xB0,
  79. CPL_FW4_MSG = 0xC0,
  80. CPL_FW4_PLD = 0xC1,
  81. CPL_FW4_ACK = 0xC3,
  82. CPL_FW6_MSG = 0xE0,
  83. CPL_FW6_PLD = 0xE1,
  84. CPL_TX_PKT_LSO = 0xED,
  85. CPL_TX_PKT_XT = 0xEE,
  86. NUM_CPL_CMDS
  87. };
  88. enum CPL_error {
  89. CPL_ERR_NONE = 0,
  90. CPL_ERR_TCAM_FULL = 3,
  91. CPL_ERR_BAD_LENGTH = 15,
  92. CPL_ERR_BAD_ROUTE = 18,
  93. CPL_ERR_CONN_RESET = 20,
  94. CPL_ERR_CONN_EXIST_SYNRECV = 21,
  95. CPL_ERR_CONN_EXIST = 22,
  96. CPL_ERR_ARP_MISS = 23,
  97. CPL_ERR_BAD_SYN = 24,
  98. CPL_ERR_CONN_TIMEDOUT = 30,
  99. CPL_ERR_XMIT_TIMEDOUT = 31,
  100. CPL_ERR_PERSIST_TIMEDOUT = 32,
  101. CPL_ERR_FINWAIT2_TIMEDOUT = 33,
  102. CPL_ERR_KEEPALIVE_TIMEDOUT = 34,
  103. CPL_ERR_RTX_NEG_ADVICE = 35,
  104. CPL_ERR_PERSIST_NEG_ADVICE = 36,
  105. CPL_ERR_KEEPALV_NEG_ADVICE = 37,
  106. CPL_ERR_ABORT_FAILED = 42,
  107. CPL_ERR_IWARP_FLM = 50,
  108. };
  109. enum {
  110. ULP_MODE_NONE = 0,
  111. ULP_MODE_ISCSI = 2,
  112. ULP_MODE_RDMA = 4,
  113. ULP_MODE_TCPDDP = 5,
  114. ULP_MODE_FCOE = 6,
  115. };
  116. enum {
  117. ULP_CRC_HEADER = 1 << 0,
  118. ULP_CRC_DATA = 1 << 1
  119. };
  120. enum {
  121. CPL_ABORT_SEND_RST = 0,
  122. CPL_ABORT_NO_RST,
  123. };
  124. enum { /* TX_PKT_XT checksum types */
  125. TX_CSUM_TCP = 0,
  126. TX_CSUM_UDP = 1,
  127. TX_CSUM_CRC16 = 4,
  128. TX_CSUM_CRC32 = 5,
  129. TX_CSUM_CRC32C = 6,
  130. TX_CSUM_FCOE = 7,
  131. TX_CSUM_TCPIP = 8,
  132. TX_CSUM_UDPIP = 9,
  133. TX_CSUM_TCPIP6 = 10,
  134. TX_CSUM_UDPIP6 = 11,
  135. TX_CSUM_IP = 12,
  136. };
  137. union opcode_tid {
  138. __be32 opcode_tid;
  139. u8 opcode;
  140. };
  141. #define CPL_OPCODE(x) ((x) << 24)
  142. #define G_CPL_OPCODE(x) (((x) >> 24) & 0xFF)
  143. #define MK_OPCODE_TID(opcode, tid) (CPL_OPCODE(opcode) | (tid))
  144. #define OPCODE_TID(cmd) ((cmd)->ot.opcode_tid)
  145. #define GET_TID(cmd) (ntohl(OPCODE_TID(cmd)) & 0xFFFFFF)
  146. /* partitioning of TID fields that also carry a queue id */
  147. #define GET_TID_TID(x) ((x) & 0x3fff)
  148. #define GET_TID_QID(x) (((x) >> 14) & 0x3ff)
  149. #define TID_QID(x) ((x) << 14)
  150. struct rss_header {
  151. u8 opcode;
  152. #if defined(__LITTLE_ENDIAN_BITFIELD)
  153. u8 channel:2;
  154. u8 filter_hit:1;
  155. u8 filter_tid:1;
  156. u8 hash_type:2;
  157. u8 ipv6:1;
  158. u8 send2fw:1;
  159. #else
  160. u8 send2fw:1;
  161. u8 ipv6:1;
  162. u8 hash_type:2;
  163. u8 filter_tid:1;
  164. u8 filter_hit:1;
  165. u8 channel:2;
  166. #endif
  167. __be16 qid;
  168. __be32 hash_val;
  169. };
  170. struct work_request_hdr {
  171. __be32 wr_hi;
  172. __be32 wr_mid;
  173. __be64 wr_lo;
  174. };
  175. /* wr_hi fields */
  176. #define S_WR_OP 24
  177. #define V_WR_OP(x) ((__u64)(x) << S_WR_OP)
  178. #define WR_HDR struct work_request_hdr wr
  179. /* option 0 fields */
  180. #define S_MSS_IDX 60
  181. #define M_MSS_IDX 0xF
  182. #define V_MSS_IDX(x) ((__u64)(x) << S_MSS_IDX)
  183. #define G_MSS_IDX(x) (((x) >> S_MSS_IDX) & M_MSS_IDX)
  184. /* option 2 fields */
  185. #define S_RSS_QUEUE 0
  186. #define M_RSS_QUEUE 0x3FF
  187. #define V_RSS_QUEUE(x) ((x) << S_RSS_QUEUE)
  188. #define G_RSS_QUEUE(x) (((x) >> S_RSS_QUEUE) & M_RSS_QUEUE)
  189. struct cpl_pass_open_req {
  190. WR_HDR;
  191. union opcode_tid ot;
  192. __be16 local_port;
  193. __be16 peer_port;
  194. __be32 local_ip;
  195. __be32 peer_ip;
  196. __be64 opt0;
  197. #define TX_CHAN(x) ((x) << 2)
  198. #define NO_CONG(x) ((x) << 4)
  199. #define DELACK(x) ((x) << 5)
  200. #define ULP_MODE(x) ((x) << 8)
  201. #define RCV_BUFSIZ(x) ((x) << 12)
  202. #define RCV_BUFSIZ_MASK 0x3FFU
  203. #define DSCP(x) ((x) << 22)
  204. #define SMAC_SEL(x) ((u64)(x) << 28)
  205. #define L2T_IDX(x) ((u64)(x) << 36)
  206. #define TCAM_BYPASS(x) ((u64)(x) << 48)
  207. #define NAGLE(x) ((u64)(x) << 49)
  208. #define WND_SCALE(x) ((u64)(x) << 50)
  209. #define KEEP_ALIVE(x) ((u64)(x) << 54)
  210. #define MSS_IDX(x) ((u64)(x) << 60)
  211. __be64 opt1;
  212. #define SYN_RSS_ENABLE (1 << 0)
  213. #define SYN_RSS_QUEUE(x) ((x) << 2)
  214. #define CONN_POLICY_ASK (1 << 22)
  215. };
  216. struct cpl_pass_open_req6 {
  217. WR_HDR;
  218. union opcode_tid ot;
  219. __be16 local_port;
  220. __be16 peer_port;
  221. __be64 local_ip_hi;
  222. __be64 local_ip_lo;
  223. __be64 peer_ip_hi;
  224. __be64 peer_ip_lo;
  225. __be64 opt0;
  226. __be64 opt1;
  227. };
  228. struct cpl_pass_open_rpl {
  229. union opcode_tid ot;
  230. u8 rsvd[3];
  231. u8 status;
  232. };
  233. struct cpl_pass_accept_rpl {
  234. WR_HDR;
  235. union opcode_tid ot;
  236. __be32 opt2;
  237. #define RSS_QUEUE(x) ((x) << 0)
  238. #define RSS_QUEUE_VALID (1 << 10)
  239. #define RX_COALESCE_VALID(x) ((x) << 11)
  240. #define RX_COALESCE(x) ((x) << 12)
  241. #define PACE(x) ((x) << 16)
  242. #define TX_QUEUE(x) ((x) << 23)
  243. #define RX_CHANNEL(x) ((x) << 26)
  244. #define CCTRL_ECN(x) ((x) << 27)
  245. #define WND_SCALE_EN(x) ((x) << 28)
  246. #define TSTAMPS_EN(x) ((x) << 29)
  247. #define SACK_EN(x) ((x) << 30)
  248. __be64 opt0;
  249. };
  250. struct cpl_t5_pass_accept_rpl {
  251. WR_HDR;
  252. union opcode_tid ot;
  253. __be32 opt2;
  254. __be64 opt0;
  255. __be32 iss;
  256. __be32 rsvd;
  257. };
  258. struct cpl_act_open_req {
  259. WR_HDR;
  260. union opcode_tid ot;
  261. __be16 local_port;
  262. __be16 peer_port;
  263. __be32 local_ip;
  264. __be32 peer_ip;
  265. __be64 opt0;
  266. __be32 params;
  267. __be32 opt2;
  268. };
  269. #define S_FILTER_TUPLE 24
  270. #define M_FILTER_TUPLE 0xFFFFFFFFFF
  271. #define V_FILTER_TUPLE(x) ((x) << S_FILTER_TUPLE)
  272. #define G_FILTER_TUPLE(x) (((x) >> S_FILTER_TUPLE) & M_FILTER_TUPLE)
  273. struct cpl_t5_act_open_req {
  274. WR_HDR;
  275. union opcode_tid ot;
  276. __be16 local_port;
  277. __be16 peer_port;
  278. __be32 local_ip;
  279. __be32 peer_ip;
  280. __be64 opt0;
  281. __be32 rsvd;
  282. __be32 opt2;
  283. __be64 params;
  284. };
  285. struct cpl_act_open_req6 {
  286. WR_HDR;
  287. union opcode_tid ot;
  288. __be16 local_port;
  289. __be16 peer_port;
  290. __be64 local_ip_hi;
  291. __be64 local_ip_lo;
  292. __be64 peer_ip_hi;
  293. __be64 peer_ip_lo;
  294. __be64 opt0;
  295. __be32 params;
  296. __be32 opt2;
  297. };
  298. struct cpl_t5_act_open_req6 {
  299. WR_HDR;
  300. union opcode_tid ot;
  301. __be16 local_port;
  302. __be16 peer_port;
  303. __be64 local_ip_hi;
  304. __be64 local_ip_lo;
  305. __be64 peer_ip_hi;
  306. __be64 peer_ip_lo;
  307. __be64 opt0;
  308. __be32 rsvd;
  309. __be32 opt2;
  310. __be64 params;
  311. };
  312. struct cpl_act_open_rpl {
  313. union opcode_tid ot;
  314. __be32 atid_status;
  315. #define GET_AOPEN_STATUS(x) ((x) & 0xff)
  316. #define GET_AOPEN_ATID(x) (((x) >> 8) & 0xffffff)
  317. };
  318. struct cpl_pass_establish {
  319. union opcode_tid ot;
  320. __be32 rsvd;
  321. __be32 tos_stid;
  322. #define PASS_OPEN_TID(x) ((x) << 0)
  323. #define PASS_OPEN_TOS(x) ((x) << 24)
  324. #define GET_PASS_OPEN_TID(x) (((x) >> 0) & 0xFFFFFF)
  325. #define GET_POPEN_TID(x) ((x) & 0xffffff)
  326. #define GET_POPEN_TOS(x) (((x) >> 24) & 0xff)
  327. __be16 mac_idx;
  328. __be16 tcp_opt;
  329. #define GET_TCPOPT_WSCALE_OK(x) (((x) >> 5) & 1)
  330. #define GET_TCPOPT_SACK(x) (((x) >> 6) & 1)
  331. #define GET_TCPOPT_TSTAMP(x) (((x) >> 7) & 1)
  332. #define GET_TCPOPT_SND_WSCALE(x) (((x) >> 8) & 0xf)
  333. #define GET_TCPOPT_MSS(x) (((x) >> 12) & 0xf)
  334. __be32 snd_isn;
  335. __be32 rcv_isn;
  336. };
  337. struct cpl_act_establish {
  338. union opcode_tid ot;
  339. __be32 rsvd;
  340. __be32 tos_atid;
  341. __be16 mac_idx;
  342. __be16 tcp_opt;
  343. __be32 snd_isn;
  344. __be32 rcv_isn;
  345. };
  346. struct cpl_get_tcb {
  347. WR_HDR;
  348. union opcode_tid ot;
  349. __be16 reply_ctrl;
  350. #define QUEUENO(x) ((x) << 0)
  351. #define REPLY_CHAN(x) ((x) << 14)
  352. #define NO_REPLY(x) ((x) << 15)
  353. __be16 cookie;
  354. };
  355. struct cpl_set_tcb_field {
  356. WR_HDR;
  357. union opcode_tid ot;
  358. __be16 reply_ctrl;
  359. __be16 word_cookie;
  360. #define TCB_WORD(x) ((x) << 0)
  361. #define TCB_COOKIE(x) ((x) << 5)
  362. #define GET_TCB_COOKIE(x) (((x) >> 5) & 7)
  363. __be64 mask;
  364. __be64 val;
  365. };
  366. struct cpl_set_tcb_rpl {
  367. union opcode_tid ot;
  368. __be16 rsvd;
  369. u8 cookie;
  370. u8 status;
  371. __be64 oldval;
  372. };
  373. struct cpl_close_con_req {
  374. WR_HDR;
  375. union opcode_tid ot;
  376. __be32 rsvd;
  377. };
  378. struct cpl_close_con_rpl {
  379. union opcode_tid ot;
  380. u8 rsvd[3];
  381. u8 status;
  382. __be32 snd_nxt;
  383. __be32 rcv_nxt;
  384. };
  385. struct cpl_close_listsvr_req {
  386. WR_HDR;
  387. union opcode_tid ot;
  388. __be16 reply_ctrl;
  389. #define LISTSVR_IPV6(x) ((x) << 14)
  390. __be16 rsvd;
  391. };
  392. struct cpl_close_listsvr_rpl {
  393. union opcode_tid ot;
  394. u8 rsvd[3];
  395. u8 status;
  396. };
  397. struct cpl_abort_req_rss {
  398. union opcode_tid ot;
  399. u8 rsvd[3];
  400. u8 status;
  401. };
  402. struct cpl_abort_req {
  403. WR_HDR;
  404. union opcode_tid ot;
  405. __be32 rsvd0;
  406. u8 rsvd1;
  407. u8 cmd;
  408. u8 rsvd2[6];
  409. };
  410. struct cpl_abort_rpl_rss {
  411. union opcode_tid ot;
  412. u8 rsvd[3];
  413. u8 status;
  414. };
  415. struct cpl_abort_rpl {
  416. WR_HDR;
  417. union opcode_tid ot;
  418. __be32 rsvd0;
  419. u8 rsvd1;
  420. u8 cmd;
  421. u8 rsvd2[6];
  422. };
  423. struct cpl_peer_close {
  424. union opcode_tid ot;
  425. __be32 rcv_nxt;
  426. };
  427. struct cpl_tid_release {
  428. WR_HDR;
  429. union opcode_tid ot;
  430. __be32 rsvd;
  431. };
  432. struct cpl_tx_pkt_core {
  433. __be32 ctrl0;
  434. #define TXPKT_VF(x) ((x) << 0)
  435. #define TXPKT_PF(x) ((x) << 8)
  436. #define TXPKT_VF_VLD (1 << 11)
  437. #define TXPKT_OVLAN_IDX(x) ((x) << 12)
  438. #define TXPKT_INTF(x) ((x) << 16)
  439. #define TXPKT_INS_OVLAN (1 << 21)
  440. #define TXPKT_OPCODE(x) ((x) << 24)
  441. __be16 pack;
  442. __be16 len;
  443. __be64 ctrl1;
  444. #define TXPKT_CSUM_END(x) ((x) << 12)
  445. #define TXPKT_CSUM_START(x) ((x) << 20)
  446. #define TXPKT_IPHDR_LEN(x) ((u64)(x) << 20)
  447. #define TXPKT_CSUM_LOC(x) ((u64)(x) << 30)
  448. #define TXPKT_ETHHDR_LEN(x) ((u64)(x) << 34)
  449. #define TXPKT_CSUM_TYPE(x) ((u64)(x) << 40)
  450. #define TXPKT_VLAN(x) ((u64)(x) << 44)
  451. #define TXPKT_VLAN_VLD (1ULL << 60)
  452. #define TXPKT_IPCSUM_DIS (1ULL << 62)
  453. #define TXPKT_L4CSUM_DIS (1ULL << 63)
  454. };
  455. struct cpl_tx_pkt {
  456. WR_HDR;
  457. struct cpl_tx_pkt_core c;
  458. };
  459. #define cpl_tx_pkt_xt cpl_tx_pkt
  460. struct cpl_tx_pkt_lso_core {
  461. __be32 lso_ctrl;
  462. #define LSO_TCPHDR_LEN(x) ((x) << 0)
  463. #define LSO_IPHDR_LEN(x) ((x) << 4)
  464. #define LSO_ETHHDR_LEN(x) ((x) << 16)
  465. #define LSO_IPV6(x) ((x) << 20)
  466. #define LSO_LAST_SLICE (1 << 22)
  467. #define LSO_FIRST_SLICE (1 << 23)
  468. #define LSO_OPCODE(x) ((x) << 24)
  469. __be16 ipid_ofst;
  470. __be16 mss;
  471. __be32 seqno_offset;
  472. __be32 len;
  473. /* encapsulated CPL (TX_PKT, TX_PKT_XT or TX_DATA) follows here */
  474. };
  475. struct cpl_tx_pkt_lso {
  476. WR_HDR;
  477. struct cpl_tx_pkt_lso_core c;
  478. /* encapsulated CPL (TX_PKT, TX_PKT_XT or TX_DATA) follows here */
  479. };
  480. struct cpl_iscsi_hdr {
  481. union opcode_tid ot;
  482. __be16 pdu_len_ddp;
  483. #define ISCSI_PDU_LEN(x) ((x) & 0x7FFF)
  484. #define ISCSI_DDP (1 << 15)
  485. __be16 len;
  486. __be32 seq;
  487. __be16 urg;
  488. u8 rsvd;
  489. u8 status;
  490. };
  491. struct cpl_rx_data {
  492. union opcode_tid ot;
  493. __be16 rsvd;
  494. __be16 len;
  495. __be32 seq;
  496. __be16 urg;
  497. #if defined(__LITTLE_ENDIAN_BITFIELD)
  498. u8 dack_mode:2;
  499. u8 psh:1;
  500. u8 heartbeat:1;
  501. u8 ddp_off:1;
  502. u8 :3;
  503. #else
  504. u8 :3;
  505. u8 ddp_off:1;
  506. u8 heartbeat:1;
  507. u8 psh:1;
  508. u8 dack_mode:2;
  509. #endif
  510. u8 status;
  511. };
  512. struct cpl_rx_data_ack {
  513. WR_HDR;
  514. union opcode_tid ot;
  515. __be32 credit_dack;
  516. #define RX_CREDITS(x) ((x) << 0)
  517. #define RX_FORCE_ACK(x) ((x) << 28)
  518. };
  519. struct cpl_rx_pkt {
  520. struct rss_header rsshdr;
  521. u8 opcode;
  522. #if defined(__LITTLE_ENDIAN_BITFIELD)
  523. u8 iff:4;
  524. u8 csum_calc:1;
  525. u8 ipmi_pkt:1;
  526. u8 vlan_ex:1;
  527. u8 ip_frag:1;
  528. #else
  529. u8 ip_frag:1;
  530. u8 vlan_ex:1;
  531. u8 ipmi_pkt:1;
  532. u8 csum_calc:1;
  533. u8 iff:4;
  534. #endif
  535. __be16 csum;
  536. __be16 vlan;
  537. __be16 len;
  538. __be32 l2info;
  539. #define RXF_UDP (1 << 22)
  540. #define RXF_TCP (1 << 23)
  541. #define RXF_IP (1 << 24)
  542. #define RXF_IP6 (1 << 25)
  543. __be16 hdr_len;
  544. __be16 err_vec;
  545. };
  546. /* rx_pkt.l2info fields */
  547. #define S_RX_ETHHDR_LEN 0
  548. #define M_RX_ETHHDR_LEN 0x1F
  549. #define V_RX_ETHHDR_LEN(x) ((x) << S_RX_ETHHDR_LEN)
  550. #define G_RX_ETHHDR_LEN(x) (((x) >> S_RX_ETHHDR_LEN) & M_RX_ETHHDR_LEN)
  551. #define S_RX_T5_ETHHDR_LEN 0
  552. #define M_RX_T5_ETHHDR_LEN 0x3F
  553. #define V_RX_T5_ETHHDR_LEN(x) ((x) << S_RX_T5_ETHHDR_LEN)
  554. #define G_RX_T5_ETHHDR_LEN(x) (((x) >> S_RX_T5_ETHHDR_LEN) & M_RX_T5_ETHHDR_LEN)
  555. #define S_RX_MACIDX 8
  556. #define M_RX_MACIDX 0x1FF
  557. #define V_RX_MACIDX(x) ((x) << S_RX_MACIDX)
  558. #define G_RX_MACIDX(x) (((x) >> S_RX_MACIDX) & M_RX_MACIDX)
  559. #define S_RXF_SYN 21
  560. #define V_RXF_SYN(x) ((x) << S_RXF_SYN)
  561. #define F_RXF_SYN V_RXF_SYN(1U)
  562. #define S_RX_CHAN 28
  563. #define M_RX_CHAN 0xF
  564. #define V_RX_CHAN(x) ((x) << S_RX_CHAN)
  565. #define G_RX_CHAN(x) (((x) >> S_RX_CHAN) & M_RX_CHAN)
  566. /* rx_pkt.hdr_len fields */
  567. #define S_RX_TCPHDR_LEN 0
  568. #define M_RX_TCPHDR_LEN 0x3F
  569. #define V_RX_TCPHDR_LEN(x) ((x) << S_RX_TCPHDR_LEN)
  570. #define G_RX_TCPHDR_LEN(x) (((x) >> S_RX_TCPHDR_LEN) & M_RX_TCPHDR_LEN)
  571. #define S_RX_IPHDR_LEN 6
  572. #define M_RX_IPHDR_LEN 0x3FF
  573. #define V_RX_IPHDR_LEN(x) ((x) << S_RX_IPHDR_LEN)
  574. #define G_RX_IPHDR_LEN(x) (((x) >> S_RX_IPHDR_LEN) & M_RX_IPHDR_LEN)
  575. struct cpl_trace_pkt {
  576. u8 opcode;
  577. u8 intf;
  578. #if defined(__LITTLE_ENDIAN_BITFIELD)
  579. u8 runt:4;
  580. u8 filter_hit:4;
  581. u8 :6;
  582. u8 err:1;
  583. u8 trunc:1;
  584. #else
  585. u8 filter_hit:4;
  586. u8 runt:4;
  587. u8 trunc:1;
  588. u8 err:1;
  589. u8 :6;
  590. #endif
  591. __be16 rsvd;
  592. __be16 len;
  593. __be64 tstamp;
  594. };
  595. struct cpl_t5_trace_pkt {
  596. __u8 opcode;
  597. __u8 intf;
  598. #if defined(__LITTLE_ENDIAN_BITFIELD)
  599. __u8 runt:4;
  600. __u8 filter_hit:4;
  601. __u8:6;
  602. __u8 err:1;
  603. __u8 trunc:1;
  604. #else
  605. __u8 filter_hit:4;
  606. __u8 runt:4;
  607. __u8 trunc:1;
  608. __u8 err:1;
  609. __u8:6;
  610. #endif
  611. __be16 rsvd;
  612. __be16 len;
  613. __be64 tstamp;
  614. __be64 rsvd1;
  615. };
  616. struct cpl_l2t_write_req {
  617. WR_HDR;
  618. union opcode_tid ot;
  619. __be16 params;
  620. #define L2T_W_INFO(x) ((x) << 2)
  621. #define L2T_W_PORT(x) ((x) << 8)
  622. #define L2T_W_NOREPLY(x) ((x) << 15)
  623. __be16 l2t_idx;
  624. __be16 vlan;
  625. u8 dst_mac[6];
  626. };
  627. struct cpl_l2t_write_rpl {
  628. union opcode_tid ot;
  629. u8 status;
  630. u8 rsvd[3];
  631. };
  632. struct cpl_rdma_terminate {
  633. union opcode_tid ot;
  634. __be16 rsvd;
  635. __be16 len;
  636. };
  637. struct cpl_sge_egr_update {
  638. __be32 opcode_qid;
  639. #define EGR_QID(x) ((x) & 0x1FFFF)
  640. __be16 cidx;
  641. __be16 pidx;
  642. };
  643. /* cpl_fw*.type values */
  644. enum {
  645. FW_TYPE_CMD_RPL = 0,
  646. FW_TYPE_WR_RPL = 1,
  647. FW_TYPE_CQE = 2,
  648. FW_TYPE_OFLD_CONNECTION_WR_RPL = 3,
  649. FW_TYPE_RSSCPL = 4,
  650. };
  651. struct cpl_fw4_pld {
  652. u8 opcode;
  653. u8 rsvd0[3];
  654. u8 type;
  655. u8 rsvd1;
  656. __be16 len;
  657. __be64 data;
  658. __be64 rsvd2;
  659. };
  660. struct cpl_fw6_pld {
  661. u8 opcode;
  662. u8 rsvd[5];
  663. __be16 len;
  664. __be64 data[4];
  665. };
  666. struct cpl_fw4_msg {
  667. u8 opcode;
  668. u8 type;
  669. __be16 rsvd0;
  670. __be32 rsvd1;
  671. __be64 data[2];
  672. };
  673. struct cpl_fw4_ack {
  674. union opcode_tid ot;
  675. u8 credits;
  676. u8 rsvd0[2];
  677. u8 seq_vld;
  678. __be32 snd_nxt;
  679. __be32 snd_una;
  680. __be64 rsvd1;
  681. };
  682. struct cpl_fw6_msg {
  683. u8 opcode;
  684. u8 type;
  685. __be16 rsvd0;
  686. __be32 rsvd1;
  687. __be64 data[4];
  688. };
  689. /* cpl_fw6_msg.type values */
  690. enum {
  691. FW6_TYPE_CMD_RPL = 0,
  692. FW6_TYPE_WR_RPL = 1,
  693. FW6_TYPE_CQE = 2,
  694. FW6_TYPE_OFLD_CONNECTION_WR_RPL = 3,
  695. FW6_TYPE_RSSCPL = FW_TYPE_RSSCPL,
  696. };
  697. struct cpl_fw6_msg_ofld_connection_wr_rpl {
  698. __u64 cookie;
  699. __be32 tid; /* or atid in case of active failure */
  700. __u8 t_state;
  701. __u8 retval;
  702. __u8 rsvd[2];
  703. };
  704. enum {
  705. ULP_TX_MEM_READ = 2,
  706. ULP_TX_MEM_WRITE = 3,
  707. ULP_TX_PKT = 4
  708. };
  709. enum {
  710. ULP_TX_SC_NOOP = 0x80,
  711. ULP_TX_SC_IMM = 0x81,
  712. ULP_TX_SC_DSGL = 0x82,
  713. ULP_TX_SC_ISGL = 0x83
  714. };
  715. struct ulptx_sge_pair {
  716. __be32 len[2];
  717. __be64 addr[2];
  718. };
  719. struct ulptx_sgl {
  720. __be32 cmd_nsge;
  721. #define ULPTX_CMD(x) ((x) << 24)
  722. #define ULPTX_NSGE(x) ((x) << 0)
  723. #define ULPTX_MORE (1U << 23)
  724. __be32 len0;
  725. __be64 addr0;
  726. struct ulptx_sge_pair sge[0];
  727. };
  728. struct ulp_mem_io {
  729. WR_HDR;
  730. __be32 cmd;
  731. #define ULP_MEMIO_ORDER(x) ((x) << 23)
  732. __be32 len16; /* command length */
  733. __be32 dlen; /* data length in 32-byte units */
  734. #define ULP_MEMIO_DATA_LEN(x) ((x) << 0)
  735. __be32 lock_addr;
  736. #define ULP_MEMIO_ADDR(x) ((x) << 0)
  737. #define ULP_MEMIO_LOCK(x) ((x) << 31)
  738. };
  739. #define S_T5_ULP_MEMIO_IMM 23
  740. #define V_T5_ULP_MEMIO_IMM(x) ((x) << S_T5_ULP_MEMIO_IMM)
  741. #define F_T5_ULP_MEMIO_IMM V_T5_ULP_MEMIO_IMM(1U)
  742. #define S_T5_ULP_MEMIO_ORDER 22
  743. #define V_T5_ULP_MEMIO_ORDER(x) ((x) << S_T5_ULP_MEMIO_ORDER)
  744. #define F_T5_ULP_MEMIO_ORDER V_T5_ULP_MEMIO_ORDER(1U)
  745. #endif /* __T4_MSG_H */