ehca_hca.c 12 KB

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  1. /*
  2. * IBM eServer eHCA Infiniband device driver for Linux on POWER
  3. *
  4. * HCA query functions
  5. *
  6. * Authors: Heiko J Schick <schickhj@de.ibm.com>
  7. * Christoph Raisch <raisch@de.ibm.com>
  8. *
  9. * Copyright (c) 2005 IBM Corporation
  10. *
  11. * All rights reserved.
  12. *
  13. * This source code is distributed under a dual license of GPL v2.0 and OpenIB
  14. * BSD.
  15. *
  16. * OpenIB BSD License
  17. *
  18. * Redistribution and use in source and binary forms, with or without
  19. * modification, are permitted provided that the following conditions are met:
  20. *
  21. * Redistributions of source code must retain the above copyright notice, this
  22. * list of conditions and the following disclaimer.
  23. *
  24. * Redistributions in binary form must reproduce the above copyright notice,
  25. * this list of conditions and the following disclaimer in the documentation
  26. * and/or other materials
  27. * provided with the distribution.
  28. *
  29. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  30. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  31. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  32. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  33. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  34. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  35. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  36. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
  37. * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  38. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  39. * POSSIBILITY OF SUCH DAMAGE.
  40. */
  41. #include "ehca_tools.h"
  42. #include "ehca_iverbs.h"
  43. #include "hcp_if.h"
  44. static unsigned int limit_uint(unsigned int value)
  45. {
  46. return min_t(unsigned int, value, INT_MAX);
  47. }
  48. int ehca_query_device(struct ib_device *ibdev, struct ib_device_attr *props)
  49. {
  50. int i, ret = 0;
  51. struct ehca_shca *shca = container_of(ibdev, struct ehca_shca,
  52. ib_device);
  53. struct hipz_query_hca *rblock;
  54. static const u32 cap_mapping[] = {
  55. IB_DEVICE_RESIZE_MAX_WR, HCA_CAP_WQE_RESIZE,
  56. IB_DEVICE_BAD_PKEY_CNTR, HCA_CAP_BAD_P_KEY_CTR,
  57. IB_DEVICE_BAD_QKEY_CNTR, HCA_CAP_Q_KEY_VIOL_CTR,
  58. IB_DEVICE_RAW_MULTI, HCA_CAP_RAW_PACKET_MCAST,
  59. IB_DEVICE_AUTO_PATH_MIG, HCA_CAP_AUTO_PATH_MIG,
  60. IB_DEVICE_CHANGE_PHY_PORT, HCA_CAP_SQD_RTS_PORT_CHANGE,
  61. IB_DEVICE_UD_AV_PORT_ENFORCE, HCA_CAP_AH_PORT_NR_CHECK,
  62. IB_DEVICE_CURR_QP_STATE_MOD, HCA_CAP_CUR_QP_STATE_MOD,
  63. IB_DEVICE_SHUTDOWN_PORT, HCA_CAP_SHUTDOWN_PORT,
  64. IB_DEVICE_INIT_TYPE, HCA_CAP_INIT_TYPE,
  65. IB_DEVICE_PORT_ACTIVE_EVENT, HCA_CAP_PORT_ACTIVE_EVENT,
  66. };
  67. rblock = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  68. if (!rblock) {
  69. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  70. return -ENOMEM;
  71. }
  72. if (hipz_h_query_hca(shca->ipz_hca_handle, rblock) != H_SUCCESS) {
  73. ehca_err(&shca->ib_device, "Can't query device properties");
  74. ret = -EINVAL;
  75. goto query_device1;
  76. }
  77. memset(props, 0, sizeof(struct ib_device_attr));
  78. props->page_size_cap = shca->hca_cap_mr_pgsize;
  79. props->fw_ver = rblock->hw_ver;
  80. props->max_mr_size = rblock->max_mr_size;
  81. props->vendor_id = rblock->vendor_id >> 8;
  82. props->vendor_part_id = rblock->vendor_part_id >> 16;
  83. props->hw_ver = rblock->hw_ver;
  84. props->max_qp = limit_uint(rblock->max_qp);
  85. props->max_qp_wr = limit_uint(rblock->max_wqes_wq);
  86. props->max_sge = limit_uint(rblock->max_sge);
  87. props->max_sge_rd = limit_uint(rblock->max_sge_rd);
  88. props->max_cq = limit_uint(rblock->max_cq);
  89. props->max_cqe = limit_uint(rblock->max_cqe);
  90. props->max_mr = limit_uint(rblock->max_mr);
  91. props->max_mw = limit_uint(rblock->max_mw);
  92. props->max_pd = limit_uint(rblock->max_pd);
  93. props->max_ah = limit_uint(rblock->max_ah);
  94. props->max_ee = limit_uint(rblock->max_rd_ee_context);
  95. props->max_rdd = limit_uint(rblock->max_rd_domain);
  96. props->max_fmr = limit_uint(rblock->max_mr);
  97. props->max_qp_rd_atom = limit_uint(rblock->max_rr_qp);
  98. props->max_ee_rd_atom = limit_uint(rblock->max_rr_ee_context);
  99. props->max_res_rd_atom = limit_uint(rblock->max_rr_hca);
  100. props->max_qp_init_rd_atom = limit_uint(rblock->max_act_wqs_qp);
  101. props->max_ee_init_rd_atom = limit_uint(rblock->max_act_wqs_ee_context);
  102. if (EHCA_BMASK_GET(HCA_CAP_SRQ, shca->hca_cap)) {
  103. props->max_srq = limit_uint(props->max_qp);
  104. props->max_srq_wr = limit_uint(props->max_qp_wr);
  105. props->max_srq_sge = 3;
  106. }
  107. props->max_pkeys = 16;
  108. /* Some FW versions say 0 here; insert sensible value in that case */
  109. props->local_ca_ack_delay = rblock->local_ca_ack_delay ?
  110. min_t(u8, rblock->local_ca_ack_delay, 255) : 12;
  111. props->max_raw_ipv6_qp = limit_uint(rblock->max_raw_ipv6_qp);
  112. props->max_raw_ethy_qp = limit_uint(rblock->max_raw_ethy_qp);
  113. props->max_mcast_grp = limit_uint(rblock->max_mcast_grp);
  114. props->max_mcast_qp_attach = limit_uint(rblock->max_mcast_qp_attach);
  115. props->max_total_mcast_qp_attach
  116. = limit_uint(rblock->max_total_mcast_qp_attach);
  117. /* translate device capabilities */
  118. props->device_cap_flags = IB_DEVICE_SYS_IMAGE_GUID |
  119. IB_DEVICE_RC_RNR_NAK_GEN | IB_DEVICE_N_NOTIFY_CQ;
  120. for (i = 0; i < ARRAY_SIZE(cap_mapping); i += 2)
  121. if (rblock->hca_cap_indicators & cap_mapping[i + 1])
  122. props->device_cap_flags |= cap_mapping[i];
  123. query_device1:
  124. ehca_free_fw_ctrlblock(rblock);
  125. return ret;
  126. }
  127. static enum ib_mtu map_mtu(struct ehca_shca *shca, u32 fw_mtu)
  128. {
  129. switch (fw_mtu) {
  130. case 0x1:
  131. return IB_MTU_256;
  132. case 0x2:
  133. return IB_MTU_512;
  134. case 0x3:
  135. return IB_MTU_1024;
  136. case 0x4:
  137. return IB_MTU_2048;
  138. case 0x5:
  139. return IB_MTU_4096;
  140. default:
  141. ehca_err(&shca->ib_device, "Unknown MTU size: %x.",
  142. fw_mtu);
  143. return 0;
  144. }
  145. }
  146. static u8 map_number_of_vls(struct ehca_shca *shca, u32 vl_cap)
  147. {
  148. switch (vl_cap) {
  149. case 0x1:
  150. return 1;
  151. case 0x2:
  152. return 2;
  153. case 0x3:
  154. return 4;
  155. case 0x4:
  156. return 8;
  157. case 0x5:
  158. return 15;
  159. default:
  160. ehca_err(&shca->ib_device, "invalid Vl Capability: %x.",
  161. vl_cap);
  162. return 0;
  163. }
  164. }
  165. int ehca_query_port(struct ib_device *ibdev,
  166. u8 port, struct ib_port_attr *props)
  167. {
  168. int ret = 0;
  169. u64 h_ret;
  170. struct ehca_shca *shca = container_of(ibdev, struct ehca_shca,
  171. ib_device);
  172. struct hipz_query_port *rblock;
  173. rblock = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  174. if (!rblock) {
  175. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  176. return -ENOMEM;
  177. }
  178. h_ret = hipz_h_query_port(shca->ipz_hca_handle, port, rblock);
  179. if (h_ret != H_SUCCESS) {
  180. ehca_err(&shca->ib_device, "Can't query port properties");
  181. ret = -EINVAL;
  182. goto query_port1;
  183. }
  184. memset(props, 0, sizeof(struct ib_port_attr));
  185. props->active_mtu = props->max_mtu = map_mtu(shca, rblock->max_mtu);
  186. props->port_cap_flags = rblock->capability_mask;
  187. props->gid_tbl_len = rblock->gid_tbl_len;
  188. if (rblock->max_msg_sz)
  189. props->max_msg_sz = rblock->max_msg_sz;
  190. else
  191. props->max_msg_sz = 0x1 << 31;
  192. props->bad_pkey_cntr = rblock->bad_pkey_cntr;
  193. props->qkey_viol_cntr = rblock->qkey_viol_cntr;
  194. props->pkey_tbl_len = rblock->pkey_tbl_len;
  195. props->lid = rblock->lid;
  196. props->sm_lid = rblock->sm_lid;
  197. props->lmc = rblock->lmc;
  198. props->sm_sl = rblock->sm_sl;
  199. props->subnet_timeout = rblock->subnet_timeout;
  200. props->init_type_reply = rblock->init_type_reply;
  201. props->max_vl_num = map_number_of_vls(shca, rblock->vl_cap);
  202. if (rblock->state && rblock->phys_width) {
  203. props->phys_state = rblock->phys_pstate;
  204. props->state = rblock->phys_state;
  205. props->active_width = rblock->phys_width;
  206. props->active_speed = rblock->phys_speed;
  207. } else {
  208. /* old firmware releases don't report physical
  209. * port info, so use default values
  210. */
  211. props->phys_state = 5;
  212. props->state = rblock->state;
  213. props->active_width = IB_WIDTH_12X;
  214. props->active_speed = 0x1;
  215. }
  216. query_port1:
  217. ehca_free_fw_ctrlblock(rblock);
  218. return ret;
  219. }
  220. int ehca_query_sma_attr(struct ehca_shca *shca,
  221. u8 port, struct ehca_sma_attr *attr)
  222. {
  223. int ret = 0;
  224. u64 h_ret;
  225. struct hipz_query_port *rblock;
  226. rblock = ehca_alloc_fw_ctrlblock(GFP_ATOMIC);
  227. if (!rblock) {
  228. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  229. return -ENOMEM;
  230. }
  231. h_ret = hipz_h_query_port(shca->ipz_hca_handle, port, rblock);
  232. if (h_ret != H_SUCCESS) {
  233. ehca_err(&shca->ib_device, "Can't query port properties");
  234. ret = -EINVAL;
  235. goto query_sma_attr1;
  236. }
  237. memset(attr, 0, sizeof(struct ehca_sma_attr));
  238. attr->lid = rblock->lid;
  239. attr->lmc = rblock->lmc;
  240. attr->sm_sl = rblock->sm_sl;
  241. attr->sm_lid = rblock->sm_lid;
  242. attr->pkey_tbl_len = rblock->pkey_tbl_len;
  243. memcpy(attr->pkeys, rblock->pkey_entries, sizeof(attr->pkeys));
  244. query_sma_attr1:
  245. ehca_free_fw_ctrlblock(rblock);
  246. return ret;
  247. }
  248. int ehca_query_pkey(struct ib_device *ibdev, u8 port, u16 index, u16 *pkey)
  249. {
  250. int ret = 0;
  251. u64 h_ret;
  252. struct ehca_shca *shca;
  253. struct hipz_query_port *rblock;
  254. shca = container_of(ibdev, struct ehca_shca, ib_device);
  255. if (index > 16) {
  256. ehca_err(&shca->ib_device, "Invalid index: %x.", index);
  257. return -EINVAL;
  258. }
  259. rblock = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  260. if (!rblock) {
  261. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  262. return -ENOMEM;
  263. }
  264. h_ret = hipz_h_query_port(shca->ipz_hca_handle, port, rblock);
  265. if (h_ret != H_SUCCESS) {
  266. ehca_err(&shca->ib_device, "Can't query port properties");
  267. ret = -EINVAL;
  268. goto query_pkey1;
  269. }
  270. memcpy(pkey, &rblock->pkey_entries + index, sizeof(u16));
  271. query_pkey1:
  272. ehca_free_fw_ctrlblock(rblock);
  273. return ret;
  274. }
  275. int ehca_query_gid(struct ib_device *ibdev, u8 port,
  276. int index, union ib_gid *gid)
  277. {
  278. int ret = 0;
  279. u64 h_ret;
  280. struct ehca_shca *shca = container_of(ibdev, struct ehca_shca,
  281. ib_device);
  282. struct hipz_query_port *rblock;
  283. if (index > 255) {
  284. ehca_err(&shca->ib_device, "Invalid index: %x.", index);
  285. return -EINVAL;
  286. }
  287. rblock = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  288. if (!rblock) {
  289. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  290. return -ENOMEM;
  291. }
  292. h_ret = hipz_h_query_port(shca->ipz_hca_handle, port, rblock);
  293. if (h_ret != H_SUCCESS) {
  294. ehca_err(&shca->ib_device, "Can't query port properties");
  295. ret = -EINVAL;
  296. goto query_gid1;
  297. }
  298. memcpy(&gid->raw[0], &rblock->gid_prefix, sizeof(u64));
  299. memcpy(&gid->raw[8], &rblock->guid_entries[index], sizeof(u64));
  300. query_gid1:
  301. ehca_free_fw_ctrlblock(rblock);
  302. return ret;
  303. }
  304. static const u32 allowed_port_caps = (
  305. IB_PORT_SM | IB_PORT_LED_INFO_SUP | IB_PORT_CM_SUP |
  306. IB_PORT_SNMP_TUNNEL_SUP | IB_PORT_DEVICE_MGMT_SUP |
  307. IB_PORT_VENDOR_CLASS_SUP);
  308. int ehca_modify_port(struct ib_device *ibdev,
  309. u8 port, int port_modify_mask,
  310. struct ib_port_modify *props)
  311. {
  312. int ret = 0;
  313. struct ehca_shca *shca;
  314. struct hipz_query_port *rblock;
  315. u32 cap;
  316. u64 hret;
  317. shca = container_of(ibdev, struct ehca_shca, ib_device);
  318. if ((props->set_port_cap_mask | props->clr_port_cap_mask)
  319. & ~allowed_port_caps) {
  320. ehca_err(&shca->ib_device, "Non-changeable bits set in masks "
  321. "set=%x clr=%x allowed=%x", props->set_port_cap_mask,
  322. props->clr_port_cap_mask, allowed_port_caps);
  323. return -EINVAL;
  324. }
  325. if (mutex_lock_interruptible(&shca->modify_mutex))
  326. return -ERESTARTSYS;
  327. rblock = ehca_alloc_fw_ctrlblock(GFP_KERNEL);
  328. if (!rblock) {
  329. ehca_err(&shca->ib_device, "Can't allocate rblock memory.");
  330. ret = -ENOMEM;
  331. goto modify_port1;
  332. }
  333. hret = hipz_h_query_port(shca->ipz_hca_handle, port, rblock);
  334. if (hret != H_SUCCESS) {
  335. ehca_err(&shca->ib_device, "Can't query port properties");
  336. ret = -EINVAL;
  337. goto modify_port2;
  338. }
  339. cap = (rblock->capability_mask | props->set_port_cap_mask)
  340. & ~props->clr_port_cap_mask;
  341. hret = hipz_h_modify_port(shca->ipz_hca_handle, port,
  342. cap, props->init_type, port_modify_mask);
  343. if (hret != H_SUCCESS) {
  344. ehca_err(&shca->ib_device, "Modify port failed h_ret=%li",
  345. hret);
  346. ret = -EINVAL;
  347. }
  348. modify_port2:
  349. ehca_free_fw_ctrlblock(rblock);
  350. modify_port1:
  351. mutex_unlock(&shca->modify_mutex);
  352. return ret;
  353. }