ehea_qmr.h 9.0 KB

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  1. /*
  2. * linux/drivers/net/ehea/ehea_qmr.h
  3. *
  4. * eHEA ethernet device driver for IBM eServer System p
  5. *
  6. * (C) Copyright IBM Corp. 2006
  7. *
  8. * Authors:
  9. * Christoph Raisch <raisch@de.ibm.com>
  10. * Jan-Bernd Themann <themann@de.ibm.com>
  11. * Thomas Klein <tklein@de.ibm.com>
  12. *
  13. *
  14. * This program is free software; you can redistribute it and/or modify
  15. * it under the terms of the GNU General Public License as published by
  16. * the Free Software Foundation; either version 2, or (at your option)
  17. * any later version.
  18. *
  19. * This program is distributed in the hope that it will be useful,
  20. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  21. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  22. * GNU General Public License for more details.
  23. *
  24. * You should have received a copy of the GNU General Public License
  25. * along with this program; if not, write to the Free Software
  26. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  27. */
  28. #ifndef __EHEA_QMR_H__
  29. #define __EHEA_QMR_H__
  30. #include "ehea.h"
  31. #include "ehea_hw.h"
  32. /*
  33. * page size of ehea hardware queues
  34. */
  35. #define EHEA_PAGESHIFT 12
  36. #define EHEA_PAGESIZE 4096UL
  37. /* Some abbreviations used here:
  38. *
  39. * WQE - Work Queue Entry
  40. * SWQE - Send Work Queue Entry
  41. * RWQE - Receive Work Queue Entry
  42. * CQE - Completion Queue Entry
  43. * EQE - Event Queue Entry
  44. * MR - Memory Region
  45. */
  46. /* Use of WR_ID field for EHEA */
  47. #define EHEA_WR_ID_COUNT EHEA_BMASK_IBM(0, 19)
  48. #define EHEA_WR_ID_TYPE EHEA_BMASK_IBM(20, 23)
  49. #define EHEA_SWQE2_TYPE 0x1
  50. #define EHEA_SWQE3_TYPE 0x2
  51. #define EHEA_RWQE2_TYPE 0x3
  52. #define EHEA_RWQE3_TYPE 0x4
  53. #define EHEA_WR_ID_INDEX EHEA_BMASK_IBM(24, 47)
  54. #define EHEA_WR_ID_REFILL EHEA_BMASK_IBM(48, 63)
  55. struct ehea_vsgentry {
  56. u64 vaddr;
  57. u32 l_key;
  58. u32 len;
  59. };
  60. /* maximum number of sg entries allowed in a WQE */
  61. #define EHEA_MAX_WQE_SG_ENTRIES 252
  62. #define SWQE2_MAX_IMM (0xD0 - 0x30)
  63. #define SWQE3_MAX_IMM 224
  64. /* tx control flags for swqe */
  65. #define EHEA_SWQE_CRC 0x8000
  66. #define EHEA_SWQE_IP_CHECKSUM 0x4000
  67. #define EHEA_SWQE_TCP_CHECKSUM 0x2000
  68. #define EHEA_SWQE_TSO 0x1000
  69. #define EHEA_SWQE_SIGNALLED_COMPLETION 0x0800
  70. #define EHEA_SWQE_VLAN_INSERT 0x0400
  71. #define EHEA_SWQE_IMM_DATA_PRESENT 0x0200
  72. #define EHEA_SWQE_DESCRIPTORS_PRESENT 0x0100
  73. #define EHEA_SWQE_WRAP_CTL_REC 0x0080
  74. #define EHEA_SWQE_WRAP_CTL_FORCE 0x0040
  75. #define EHEA_SWQE_BIND 0x0020
  76. #define EHEA_SWQE_PURGE 0x0010
  77. /* sizeof(struct ehea_swqe) less the union */
  78. #define SWQE_HEADER_SIZE 32
  79. struct ehea_swqe {
  80. u64 wr_id;
  81. u16 tx_control;
  82. u16 vlan_tag;
  83. u8 reserved1;
  84. u8 ip_start;
  85. u8 ip_end;
  86. u8 immediate_data_length;
  87. u8 tcp_offset;
  88. u8 reserved2;
  89. u16 tcp_end;
  90. u8 wrap_tag;
  91. u8 descriptors; /* number of valid descriptors in WQE */
  92. u16 reserved3;
  93. u16 reserved4;
  94. u16 mss;
  95. u32 reserved5;
  96. union {
  97. /* Send WQE Format 1 */
  98. struct {
  99. struct ehea_vsgentry sg_list[EHEA_MAX_WQE_SG_ENTRIES];
  100. } no_immediate_data;
  101. /* Send WQE Format 2 */
  102. struct {
  103. struct ehea_vsgentry sg_entry;
  104. /* 0x30 */
  105. u8 immediate_data[SWQE2_MAX_IMM];
  106. /* 0xd0 */
  107. struct ehea_vsgentry sg_list[EHEA_MAX_WQE_SG_ENTRIES-1];
  108. } immdata_desc __attribute__ ((packed));
  109. /* Send WQE Format 3 */
  110. struct {
  111. u8 immediate_data[SWQE3_MAX_IMM];
  112. } immdata_nodesc;
  113. } u;
  114. };
  115. struct ehea_rwqe {
  116. u64 wr_id; /* work request ID */
  117. u8 reserved1[5];
  118. u8 data_segments;
  119. u16 reserved2;
  120. u64 reserved3;
  121. u64 reserved4;
  122. struct ehea_vsgentry sg_list[EHEA_MAX_WQE_SG_ENTRIES];
  123. };
  124. #define EHEA_CQE_VLAN_TAG_XTRACT 0x0400
  125. #define EHEA_CQE_TYPE_RQ 0x60
  126. #define EHEA_CQE_STAT_ERR_MASK 0x721F
  127. #define EHEA_CQE_STAT_FAT_ERR_MASK 0x1F
  128. #define EHEA_CQE_STAT_ERR_TCP 0x4000
  129. struct ehea_cqe {
  130. u64 wr_id; /* work request ID from WQE */
  131. u8 type;
  132. u8 valid;
  133. u16 status;
  134. u16 reserved1;
  135. u16 num_bytes_transfered;
  136. u16 vlan_tag;
  137. u16 inet_checksum_value;
  138. u8 reserved2;
  139. u8 header_length;
  140. u16 reserved3;
  141. u16 page_offset;
  142. u16 wqe_count;
  143. u32 qp_token;
  144. u32 timestamp;
  145. u32 reserved4;
  146. u64 reserved5[3];
  147. };
  148. #define EHEA_EQE_VALID EHEA_BMASK_IBM(0, 0)
  149. #define EHEA_EQE_IS_CQE EHEA_BMASK_IBM(1, 1)
  150. #define EHEA_EQE_IDENTIFIER EHEA_BMASK_IBM(2, 7)
  151. #define EHEA_EQE_QP_CQ_NUMBER EHEA_BMASK_IBM(8, 31)
  152. #define EHEA_EQE_QP_TOKEN EHEA_BMASK_IBM(32, 63)
  153. #define EHEA_EQE_CQ_TOKEN EHEA_BMASK_IBM(32, 63)
  154. #define EHEA_EQE_KEY EHEA_BMASK_IBM(32, 63)
  155. #define EHEA_EQE_PORT_NUMBER EHEA_BMASK_IBM(56, 63)
  156. #define EHEA_EQE_EQ_NUMBER EHEA_BMASK_IBM(48, 63)
  157. #define EHEA_EQE_SM_ID EHEA_BMASK_IBM(48, 63)
  158. #define EHEA_EQE_SM_MECH_NUMBER EHEA_BMASK_IBM(48, 55)
  159. #define EHEA_EQE_SM_PORT_NUMBER EHEA_BMASK_IBM(56, 63)
  160. struct ehea_eqe {
  161. u64 entry;
  162. };
  163. static inline void *hw_qeit_calc(struct hw_queue *queue, u64 q_offset)
  164. {
  165. struct ehea_page *current_page;
  166. if (q_offset >= queue->queue_length)
  167. q_offset -= queue->queue_length;
  168. current_page = (queue->queue_pages)[q_offset >> EHEA_PAGESHIFT];
  169. return &current_page->entries[q_offset & (EHEA_PAGESIZE - 1)];
  170. }
  171. static inline void *hw_qeit_get(struct hw_queue *queue)
  172. {
  173. return hw_qeit_calc(queue, queue->current_q_offset);
  174. }
  175. static inline void hw_qeit_inc(struct hw_queue *queue)
  176. {
  177. queue->current_q_offset += queue->qe_size;
  178. if (queue->current_q_offset >= queue->queue_length) {
  179. queue->current_q_offset = 0;
  180. /* toggle the valid flag */
  181. queue->toggle_state = (~queue->toggle_state) & 1;
  182. }
  183. }
  184. static inline void *hw_qeit_get_inc(struct hw_queue *queue)
  185. {
  186. void *retvalue = hw_qeit_get(queue);
  187. hw_qeit_inc(queue);
  188. return retvalue;
  189. }
  190. static inline void *hw_qeit_get_inc_valid(struct hw_queue *queue)
  191. {
  192. struct ehea_cqe *retvalue = hw_qeit_get(queue);
  193. u8 valid = retvalue->valid;
  194. void *pref;
  195. if ((valid >> 7) == (queue->toggle_state & 1)) {
  196. /* this is a good one */
  197. hw_qeit_inc(queue);
  198. pref = hw_qeit_calc(queue, queue->current_q_offset);
  199. prefetch(pref);
  200. prefetch(pref + 128);
  201. } else
  202. retvalue = NULL;
  203. return retvalue;
  204. }
  205. static inline void *hw_qeit_get_valid(struct hw_queue *queue)
  206. {
  207. struct ehea_cqe *retvalue = hw_qeit_get(queue);
  208. void *pref;
  209. u8 valid;
  210. pref = hw_qeit_calc(queue, queue->current_q_offset);
  211. prefetch(pref);
  212. prefetch(pref + 128);
  213. prefetch(pref + 256);
  214. valid = retvalue->valid;
  215. if (!((valid >> 7) == (queue->toggle_state & 1)))
  216. retvalue = NULL;
  217. return retvalue;
  218. }
  219. static inline void *hw_qeit_reset(struct hw_queue *queue)
  220. {
  221. queue->current_q_offset = 0;
  222. return hw_qeit_get(queue);
  223. }
  224. static inline void *hw_qeit_eq_get_inc(struct hw_queue *queue)
  225. {
  226. u64 last_entry_in_q = queue->queue_length - queue->qe_size;
  227. void *retvalue;
  228. retvalue = hw_qeit_get(queue);
  229. queue->current_q_offset += queue->qe_size;
  230. if (queue->current_q_offset > last_entry_in_q) {
  231. queue->current_q_offset = 0;
  232. queue->toggle_state = (~queue->toggle_state) & 1;
  233. }
  234. return retvalue;
  235. }
  236. static inline void *hw_eqit_eq_get_inc_valid(struct hw_queue *queue)
  237. {
  238. void *retvalue = hw_qeit_get(queue);
  239. u32 qe = *(u8*)retvalue;
  240. if ((qe >> 7) == (queue->toggle_state & 1))
  241. hw_qeit_eq_get_inc(queue);
  242. else
  243. retvalue = NULL;
  244. return retvalue;
  245. }
  246. static inline struct ehea_rwqe *ehea_get_next_rwqe(struct ehea_qp *qp,
  247. int rq_nr)
  248. {
  249. struct hw_queue *queue;
  250. if (rq_nr == 1)
  251. queue = &qp->hw_rqueue1;
  252. else if (rq_nr == 2)
  253. queue = &qp->hw_rqueue2;
  254. else
  255. queue = &qp->hw_rqueue3;
  256. return hw_qeit_get_inc(queue);
  257. }
  258. static inline struct ehea_swqe *ehea_get_swqe(struct ehea_qp *my_qp,
  259. int *wqe_index)
  260. {
  261. struct hw_queue *queue = &my_qp->hw_squeue;
  262. struct ehea_swqe *wqe_p;
  263. *wqe_index = (queue->current_q_offset) >> (7 + EHEA_SG_SQ);
  264. wqe_p = hw_qeit_get_inc(&my_qp->hw_squeue);
  265. return wqe_p;
  266. }
  267. static inline void ehea_post_swqe(struct ehea_qp *my_qp, struct ehea_swqe *swqe)
  268. {
  269. iosync();
  270. ehea_update_sqa(my_qp, 1);
  271. }
  272. static inline struct ehea_cqe *ehea_poll_rq1(struct ehea_qp *qp, int *wqe_index)
  273. {
  274. struct hw_queue *queue = &qp->hw_rqueue1;
  275. *wqe_index = (queue->current_q_offset) >> (7 + EHEA_SG_RQ1);
  276. return hw_qeit_get_valid(queue);
  277. }
  278. static inline void ehea_inc_rq1(struct ehea_qp *qp)
  279. {
  280. hw_qeit_inc(&qp->hw_rqueue1);
  281. }
  282. static inline struct ehea_cqe *ehea_poll_cq(struct ehea_cq *my_cq)
  283. {
  284. return hw_qeit_get_inc_valid(&my_cq->hw_queue);
  285. }
  286. #define EHEA_CQ_REGISTER_ORIG 0
  287. #define EHEA_EQ_REGISTER_ORIG 0
  288. enum ehea_eq_type {
  289. EHEA_EQ = 0, /* event queue */
  290. EHEA_NEQ /* notification event queue */
  291. };
  292. struct ehea_eq *ehea_create_eq(struct ehea_adapter *adapter,
  293. enum ehea_eq_type type,
  294. const u32 length, const u8 eqe_gen);
  295. int ehea_destroy_eq(struct ehea_eq *eq);
  296. struct ehea_eqe *ehea_poll_eq(struct ehea_eq *eq);
  297. struct ehea_cq *ehea_create_cq(struct ehea_adapter *adapter, int cqe,
  298. u64 eq_handle, u32 cq_token);
  299. int ehea_destroy_cq(struct ehea_cq *cq);
  300. struct ehea_qp *ehea_create_qp(struct ehea_adapter * adapter, u32 pd,
  301. struct ehea_qp_init_attr *init_attr);
  302. int ehea_destroy_qp(struct ehea_qp *qp);
  303. int ehea_reg_mr_adapter(struct ehea_adapter *adapter);
  304. #endif /* __EHEA_QMR_H__ */