ehca_classes.h 11 KB

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  1. /*
  2. * IBM eServer eHCA Infiniband device driver for Linux on POWER
  3. *
  4. * Struct definition for eHCA internal structures
  5. *
  6. * Authors: Heiko J Schick <schickhj@de.ibm.com>
  7. * Christoph Raisch <raisch@de.ibm.com>
  8. * Joachim Fenkes <fenkes@de.ibm.com>
  9. *
  10. * Copyright (c) 2005 IBM Corporation
  11. *
  12. * All rights reserved.
  13. *
  14. * This source code is distributed under a dual license of GPL v2.0 and OpenIB
  15. * BSD.
  16. *
  17. * OpenIB BSD License
  18. *
  19. * Redistribution and use in source and binary forms, with or without
  20. * modification, are permitted provided that the following conditions are met:
  21. *
  22. * Redistributions of source code must retain the above copyright notice, this
  23. * list of conditions and the following disclaimer.
  24. *
  25. * Redistributions in binary form must reproduce the above copyright notice,
  26. * this list of conditions and the following disclaimer in the documentation
  27. * and/or other materials
  28. * provided with the distribution.
  29. *
  30. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  31. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  32. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  33. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  34. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  35. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  36. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  37. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
  38. * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  39. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  40. * POSSIBILITY OF SUCH DAMAGE.
  41. */
  42. #ifndef __EHCA_CLASSES_H__
  43. #define __EHCA_CLASSES_H__
  44. struct ehca_module;
  45. struct ehca_qp;
  46. struct ehca_cq;
  47. struct ehca_eq;
  48. struct ehca_mr;
  49. struct ehca_mw;
  50. struct ehca_pd;
  51. struct ehca_av;
  52. #include <linux/wait.h>
  53. #include <linux/mutex.h>
  54. #include <rdma/ib_verbs.h>
  55. #include <rdma/ib_user_verbs.h>
  56. #ifdef CONFIG_PPC64
  57. #include "ehca_classes_pSeries.h"
  58. #endif
  59. #include "ipz_pt_fn.h"
  60. #include "ehca_qes.h"
  61. #include "ehca_irq.h"
  62. #define EHCA_EQE_CACHE_SIZE 20
  63. struct ehca_eqe_cache_entry {
  64. struct ehca_eqe *eqe;
  65. struct ehca_cq *cq;
  66. };
  67. struct ehca_eq {
  68. u32 length;
  69. struct ipz_queue ipz_queue;
  70. struct ipz_eq_handle ipz_eq_handle;
  71. struct work_struct work;
  72. struct h_galpas galpas;
  73. int is_initialized;
  74. struct ehca_pfeq pf;
  75. spinlock_t spinlock;
  76. struct tasklet_struct interrupt_task;
  77. u32 ist;
  78. spinlock_t irq_spinlock;
  79. struct ehca_eqe_cache_entry eqe_cache[EHCA_EQE_CACHE_SIZE];
  80. };
  81. struct ehca_sma_attr {
  82. u16 lid, lmc, sm_sl, sm_lid;
  83. u16 pkey_tbl_len, pkeys[16];
  84. };
  85. struct ehca_sport {
  86. struct ib_cq *ibcq_aqp1;
  87. struct ib_qp *ibqp_sqp[2];
  88. /* lock to serialze modify_qp() calls for sqp in normal
  89. * and irq path (when event PORT_ACTIVE is received first time)
  90. */
  91. spinlock_t mod_sqp_lock;
  92. enum ib_port_state port_state;
  93. struct ehca_sma_attr saved_attr;
  94. };
  95. #define HCA_CAP_MR_PGSIZE_4K 0x80000000
  96. #define HCA_CAP_MR_PGSIZE_64K 0x40000000
  97. #define HCA_CAP_MR_PGSIZE_1M 0x20000000
  98. #define HCA_CAP_MR_PGSIZE_16M 0x10000000
  99. struct ehca_shca {
  100. struct ib_device ib_device;
  101. struct of_device *ofdev;
  102. u8 num_ports;
  103. int hw_level;
  104. struct list_head shca_list;
  105. struct ipz_adapter_handle ipz_hca_handle;
  106. struct ehca_sport sport[2];
  107. struct ehca_eq eq;
  108. struct ehca_eq neq;
  109. struct ehca_mr *maxmr;
  110. struct ehca_pd *pd;
  111. struct h_galpas galpas;
  112. struct mutex modify_mutex;
  113. u64 hca_cap;
  114. /* MR pgsize: bit 0-3 means 4K, 64K, 1M, 16M respectively */
  115. u32 hca_cap_mr_pgsize;
  116. int max_mtu;
  117. };
  118. struct ehca_pd {
  119. struct ib_pd ib_pd;
  120. struct ipz_pd fw_pd;
  121. u32 ownpid;
  122. /* small queue mgmt */
  123. struct mutex lock;
  124. struct list_head free[2];
  125. struct list_head full[2];
  126. };
  127. enum ehca_ext_qp_type {
  128. EQPT_NORMAL = 0,
  129. EQPT_LLQP = 1,
  130. EQPT_SRQBASE = 2,
  131. EQPT_SRQ = 3,
  132. };
  133. /* struct to cache modify_qp()'s parms for GSI/SMI qp */
  134. struct ehca_mod_qp_parm {
  135. int mask;
  136. struct ib_qp_attr attr;
  137. };
  138. #define EHCA_MOD_QP_PARM_MAX 4
  139. struct ehca_qp {
  140. union {
  141. struct ib_qp ib_qp;
  142. struct ib_srq ib_srq;
  143. };
  144. u32 qp_type;
  145. enum ehca_ext_qp_type ext_type;
  146. struct ipz_queue ipz_squeue;
  147. struct ipz_queue ipz_rqueue;
  148. struct h_galpas galpas;
  149. u32 qkey;
  150. u32 real_qp_num;
  151. u32 token;
  152. spinlock_t spinlock_s;
  153. spinlock_t spinlock_r;
  154. u32 sq_max_inline_data_size;
  155. struct ipz_qp_handle ipz_qp_handle;
  156. struct ehca_pfqp pf;
  157. struct ib_qp_init_attr init_attr;
  158. struct ehca_cq *send_cq;
  159. struct ehca_cq *recv_cq;
  160. unsigned int sqerr_purgeflag;
  161. struct hlist_node list_entries;
  162. /* array to cache modify_qp()'s parms for GSI/SMI qp */
  163. struct ehca_mod_qp_parm *mod_qp_parm;
  164. int mod_qp_parm_idx;
  165. /* mmap counter for resources mapped into user space */
  166. u32 mm_count_squeue;
  167. u32 mm_count_rqueue;
  168. u32 mm_count_galpa;
  169. /* unsolicited ack circumvention */
  170. int unsol_ack_circ;
  171. int mtu_shift;
  172. u32 message_count;
  173. u32 packet_count;
  174. };
  175. #define IS_SRQ(qp) (qp->ext_type == EQPT_SRQ)
  176. #define HAS_SQ(qp) (qp->ext_type != EQPT_SRQ)
  177. #define HAS_RQ(qp) (qp->ext_type != EQPT_SRQBASE)
  178. /* must be power of 2 */
  179. #define QP_HASHTAB_LEN 8
  180. struct ehca_cq {
  181. struct ib_cq ib_cq;
  182. struct ipz_queue ipz_queue;
  183. struct h_galpas galpas;
  184. spinlock_t spinlock;
  185. u32 cq_number;
  186. u32 token;
  187. u32 nr_of_entries;
  188. struct ipz_cq_handle ipz_cq_handle;
  189. struct ehca_pfcq pf;
  190. spinlock_t cb_lock;
  191. struct hlist_head qp_hashtab[QP_HASHTAB_LEN];
  192. struct list_head entry;
  193. u32 nr_callbacks; /* #events assigned to cpu by scaling code */
  194. atomic_t nr_events; /* #events seen */
  195. wait_queue_head_t wait_completion;
  196. spinlock_t task_lock;
  197. u32 ownpid;
  198. /* mmap counter for resources mapped into user space */
  199. u32 mm_count_queue;
  200. u32 mm_count_galpa;
  201. };
  202. enum ehca_mr_flag {
  203. EHCA_MR_FLAG_FMR = 0x80000000, /* FMR, created with ehca_alloc_fmr */
  204. EHCA_MR_FLAG_MAXMR = 0x40000000, /* max-MR */
  205. };
  206. struct ehca_mr {
  207. union {
  208. struct ib_mr ib_mr; /* must always be first in ehca_mr */
  209. struct ib_fmr ib_fmr; /* must always be first in ehca_mr */
  210. } ib;
  211. struct ib_umem *umem;
  212. spinlock_t mrlock;
  213. enum ehca_mr_flag flags;
  214. u32 num_kpages; /* number of kernel pages */
  215. u32 num_hwpages; /* number of hw pages to form MR */
  216. u64 hwpage_size; /* hw page size used for this MR */
  217. int acl; /* ACL (stored here for usage in reregister) */
  218. u64 *start; /* virtual start address (stored here for */
  219. /* usage in reregister) */
  220. u64 size; /* size (stored here for usage in reregister) */
  221. u32 fmr_page_size; /* page size for FMR */
  222. u32 fmr_max_pages; /* max pages for FMR */
  223. u32 fmr_max_maps; /* max outstanding maps for FMR */
  224. u32 fmr_map_cnt; /* map counter for FMR */
  225. /* fw specific data */
  226. struct ipz_mrmw_handle ipz_mr_handle; /* MR handle for h-calls */
  227. struct h_galpas galpas;
  228. };
  229. struct ehca_mw {
  230. struct ib_mw ib_mw; /* gen2 mw, must always be first in ehca_mw */
  231. spinlock_t mwlock;
  232. u8 never_bound; /* indication MW was never bound */
  233. struct ipz_mrmw_handle ipz_mw_handle; /* MW handle for h-calls */
  234. struct h_galpas galpas;
  235. };
  236. enum ehca_mr_pgi_type {
  237. EHCA_MR_PGI_PHYS = 1, /* type of ehca_reg_phys_mr,
  238. * ehca_rereg_phys_mr,
  239. * ehca_reg_internal_maxmr */
  240. EHCA_MR_PGI_USER = 2, /* type of ehca_reg_user_mr */
  241. EHCA_MR_PGI_FMR = 3 /* type of ehca_map_phys_fmr */
  242. };
  243. struct ehca_mr_pginfo {
  244. enum ehca_mr_pgi_type type;
  245. u64 num_kpages;
  246. u64 kpage_cnt;
  247. u64 hwpage_size; /* hw page size used for this MR */
  248. u64 num_hwpages; /* number of hw pages */
  249. u64 hwpage_cnt; /* counter for hw pages */
  250. u64 next_hwpage; /* next hw page in buffer/chunk/listelem */
  251. union {
  252. struct { /* type EHCA_MR_PGI_PHYS section */
  253. int num_phys_buf;
  254. struct ib_phys_buf *phys_buf_array;
  255. u64 next_buf;
  256. } phy;
  257. struct { /* type EHCA_MR_PGI_USER section */
  258. struct ib_umem *region;
  259. struct ib_umem_chunk *next_chunk;
  260. u64 next_nmap;
  261. } usr;
  262. struct { /* type EHCA_MR_PGI_FMR section */
  263. u64 fmr_pgsize;
  264. u64 *page_list;
  265. u64 next_listelem;
  266. } fmr;
  267. } u;
  268. };
  269. /* output parameters for MR/FMR hipz calls */
  270. struct ehca_mr_hipzout_parms {
  271. struct ipz_mrmw_handle handle;
  272. u32 lkey;
  273. u32 rkey;
  274. u64 len;
  275. u64 vaddr;
  276. u32 acl;
  277. };
  278. /* output parameters for MW hipz calls */
  279. struct ehca_mw_hipzout_parms {
  280. struct ipz_mrmw_handle handle;
  281. u32 rkey;
  282. };
  283. struct ehca_av {
  284. struct ib_ah ib_ah;
  285. struct ehca_ud_av av;
  286. };
  287. struct ehca_ucontext {
  288. struct ib_ucontext ib_ucontext;
  289. };
  290. int ehca_init_pd_cache(void);
  291. void ehca_cleanup_pd_cache(void);
  292. int ehca_init_cq_cache(void);
  293. void ehca_cleanup_cq_cache(void);
  294. int ehca_init_qp_cache(void);
  295. void ehca_cleanup_qp_cache(void);
  296. int ehca_init_av_cache(void);
  297. void ehca_cleanup_av_cache(void);
  298. int ehca_init_mrmw_cache(void);
  299. void ehca_cleanup_mrmw_cache(void);
  300. int ehca_init_small_qp_cache(void);
  301. void ehca_cleanup_small_qp_cache(void);
  302. extern rwlock_t ehca_qp_idr_lock;
  303. extern rwlock_t ehca_cq_idr_lock;
  304. extern struct idr ehca_qp_idr;
  305. extern struct idr ehca_cq_idr;
  306. extern int ehca_static_rate;
  307. extern int ehca_port_act_time;
  308. extern int ehca_use_hp_mr;
  309. extern int ehca_scaling_code;
  310. extern int ehca_lock_hcalls;
  311. extern int ehca_nr_ports;
  312. struct ipzu_queue_resp {
  313. u32 qe_size; /* queue entry size */
  314. u32 act_nr_of_sg;
  315. u32 queue_length; /* queue length allocated in bytes */
  316. u32 pagesize;
  317. u32 toggle_state;
  318. u32 offset; /* save offset within a page for small_qp */
  319. };
  320. struct ehca_create_cq_resp {
  321. u32 cq_number;
  322. u32 token;
  323. struct ipzu_queue_resp ipz_queue;
  324. u32 fw_handle_ofs;
  325. u32 dummy;
  326. };
  327. struct ehca_create_qp_resp {
  328. u32 qp_num;
  329. u32 token;
  330. u32 qp_type;
  331. u32 ext_type;
  332. u32 qkey;
  333. /* qp_num assigned by ehca: sqp0/1 may have got different numbers */
  334. u32 real_qp_num;
  335. u32 fw_handle_ofs;
  336. u32 dummy;
  337. struct ipzu_queue_resp ipz_squeue;
  338. struct ipzu_queue_resp ipz_rqueue;
  339. };
  340. struct ehca_alloc_cq_parms {
  341. u32 nr_cqe;
  342. u32 act_nr_of_entries;
  343. u32 act_pages;
  344. struct ipz_eq_handle eq_handle;
  345. };
  346. enum ehca_service_type {
  347. ST_RC = 0,
  348. ST_UC = 1,
  349. ST_RD = 2,
  350. ST_UD = 3,
  351. };
  352. enum ehca_ll_comp_flags {
  353. LLQP_SEND_COMP = 0x20,
  354. LLQP_RECV_COMP = 0x40,
  355. LLQP_COMP_MASK = 0x60,
  356. };
  357. struct ehca_alloc_queue_parms {
  358. /* input parameters */
  359. int max_wr;
  360. int max_sge;
  361. int page_size;
  362. int is_small;
  363. /* output parameters */
  364. u16 act_nr_wqes;
  365. u8 act_nr_sges;
  366. u32 queue_size; /* bytes for small queues, pages otherwise */
  367. };
  368. struct ehca_alloc_qp_parms {
  369. struct ehca_alloc_queue_parms squeue;
  370. struct ehca_alloc_queue_parms rqueue;
  371. /* input parameters */
  372. enum ehca_service_type servicetype;
  373. int qp_storage;
  374. int sigtype;
  375. enum ehca_ext_qp_type ext_type;
  376. enum ehca_ll_comp_flags ll_comp_flags;
  377. int ud_av_l_key_ctl;
  378. u32 token;
  379. struct ipz_eq_handle eq_handle;
  380. struct ipz_pd pd;
  381. struct ipz_cq_handle send_cq_handle, recv_cq_handle;
  382. u32 srq_qpn, srq_token, srq_limit;
  383. /* output parameters */
  384. u32 real_qp_num;
  385. struct ipz_qp_handle qp_handle;
  386. struct h_galpas galpas;
  387. };
  388. int ehca_cq_assign_qp(struct ehca_cq *cq, struct ehca_qp *qp);
  389. int ehca_cq_unassign_qp(struct ehca_cq *cq, unsigned int qp_num);
  390. struct ehca_qp *ehca_cq_get_qp(struct ehca_cq *cq, int qp_num);
  391. #endif