main.c 22 KB

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  1. /*
  2. * Copyright (c) 2006, 2007 Cisco Systems, Inc. All rights reserved.
  3. * Copyright (c) 2007, 2008 Mellanox Technologies. All rights reserved.
  4. *
  5. * This software is available to you under a choice of one of two
  6. * licenses. You may choose to be licensed under the terms of the GNU
  7. * General Public License (GPL) Version 2, available from the file
  8. * COPYING in the main directory of this source tree, or the
  9. * OpenIB.org BSD license below:
  10. *
  11. * Redistribution and use in source and binary forms, with or
  12. * without modification, are permitted provided that the following
  13. * conditions are met:
  14. *
  15. * - Redistributions of source code must retain the above
  16. * copyright notice, this list of conditions and the following
  17. * disclaimer.
  18. *
  19. * - Redistributions in binary form must reproduce the above
  20. * copyright notice, this list of conditions and the following
  21. * disclaimer in the documentation and/or other materials
  22. * provided with the distribution.
  23. *
  24. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  25. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  26. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  27. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  28. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  29. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  30. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  31. * SOFTWARE.
  32. */
  33. #include <linux/module.h>
  34. #include <linux/init.h>
  35. #include <linux/slab.h>
  36. #include <linux/errno.h>
  37. #include <rdma/ib_smi.h>
  38. #include <rdma/ib_user_verbs.h>
  39. #include <linux/mlx4/driver.h>
  40. #include <linux/mlx4/cmd.h>
  41. #include "mlx4_ib.h"
  42. #include "user.h"
  43. #define DRV_NAME "mlx4_ib"
  44. #define DRV_VERSION "1.0"
  45. #define DRV_RELDATE "April 4, 2008"
  46. MODULE_AUTHOR("Roland Dreier");
  47. MODULE_DESCRIPTION("Mellanox ConnectX HCA InfiniBand driver");
  48. MODULE_LICENSE("Dual BSD/GPL");
  49. MODULE_VERSION(DRV_VERSION);
  50. static const char mlx4_ib_version[] =
  51. DRV_NAME ": Mellanox ConnectX InfiniBand driver v"
  52. DRV_VERSION " (" DRV_RELDATE ")\n";
  53. static void init_query_mad(struct ib_smp *mad)
  54. {
  55. mad->base_version = 1;
  56. mad->mgmt_class = IB_MGMT_CLASS_SUBN_LID_ROUTED;
  57. mad->class_version = 1;
  58. mad->method = IB_MGMT_METHOD_GET;
  59. }
  60. static int mlx4_ib_query_device(struct ib_device *ibdev,
  61. struct ib_device_attr *props)
  62. {
  63. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  64. struct ib_smp *in_mad = NULL;
  65. struct ib_smp *out_mad = NULL;
  66. int err = -ENOMEM;
  67. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  68. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  69. if (!in_mad || !out_mad)
  70. goto out;
  71. init_query_mad(in_mad);
  72. in_mad->attr_id = IB_SMP_ATTR_NODE_INFO;
  73. err = mlx4_MAD_IFC(to_mdev(ibdev), 1, 1, 1, NULL, NULL, in_mad, out_mad);
  74. if (err)
  75. goto out;
  76. memset(props, 0, sizeof *props);
  77. props->fw_ver = dev->dev->caps.fw_ver;
  78. props->device_cap_flags = IB_DEVICE_CHANGE_PHY_PORT |
  79. IB_DEVICE_PORT_ACTIVE_EVENT |
  80. IB_DEVICE_SYS_IMAGE_GUID |
  81. IB_DEVICE_RC_RNR_NAK_GEN |
  82. IB_DEVICE_BLOCK_MULTICAST_LOOPBACK;
  83. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BAD_PKEY_CNTR)
  84. props->device_cap_flags |= IB_DEVICE_BAD_PKEY_CNTR;
  85. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BAD_QKEY_CNTR)
  86. props->device_cap_flags |= IB_DEVICE_BAD_QKEY_CNTR;
  87. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_APM)
  88. props->device_cap_flags |= IB_DEVICE_AUTO_PATH_MIG;
  89. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_UD_AV_PORT)
  90. props->device_cap_flags |= IB_DEVICE_UD_AV_PORT_ENFORCE;
  91. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_IPOIB_CSUM)
  92. props->device_cap_flags |= IB_DEVICE_UD_IP_CSUM;
  93. if (dev->dev->caps.max_gso_sz && dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BLH)
  94. props->device_cap_flags |= IB_DEVICE_UD_TSO;
  95. if (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_RESERVED_LKEY)
  96. props->device_cap_flags |= IB_DEVICE_LOCAL_DMA_LKEY;
  97. if ((dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_LOCAL_INV) &&
  98. (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_REMOTE_INV) &&
  99. (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_FAST_REG_WR))
  100. props->device_cap_flags |= IB_DEVICE_MEM_MGT_EXTENSIONS;
  101. props->vendor_id = be32_to_cpup((__be32 *) (out_mad->data + 36)) &
  102. 0xffffff;
  103. props->vendor_part_id = be16_to_cpup((__be16 *) (out_mad->data + 30));
  104. props->hw_ver = be32_to_cpup((__be32 *) (out_mad->data + 32));
  105. memcpy(&props->sys_image_guid, out_mad->data + 4, 8);
  106. props->max_mr_size = ~0ull;
  107. props->page_size_cap = dev->dev->caps.page_size_cap;
  108. props->max_qp = dev->dev->caps.num_qps - dev->dev->caps.reserved_qps;
  109. props->max_qp_wr = dev->dev->caps.max_wqes;
  110. props->max_sge = min(dev->dev->caps.max_sq_sg,
  111. dev->dev->caps.max_rq_sg);
  112. props->max_cq = dev->dev->caps.num_cqs - dev->dev->caps.reserved_cqs;
  113. props->max_cqe = dev->dev->caps.max_cqes;
  114. props->max_mr = dev->dev->caps.num_mpts - dev->dev->caps.reserved_mrws;
  115. props->max_pd = dev->dev->caps.num_pds - dev->dev->caps.reserved_pds;
  116. props->max_qp_rd_atom = dev->dev->caps.max_qp_dest_rdma;
  117. props->max_qp_init_rd_atom = dev->dev->caps.max_qp_init_rdma;
  118. props->max_res_rd_atom = props->max_qp_rd_atom * props->max_qp;
  119. props->max_srq = dev->dev->caps.num_srqs - dev->dev->caps.reserved_srqs;
  120. props->max_srq_wr = dev->dev->caps.max_srq_wqes - 1;
  121. props->max_srq_sge = dev->dev->caps.max_srq_sge;
  122. props->max_fast_reg_page_list_len = PAGE_SIZE / sizeof (u64);
  123. props->local_ca_ack_delay = dev->dev->caps.local_ca_ack_delay;
  124. props->atomic_cap = dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_ATOMIC ?
  125. IB_ATOMIC_HCA : IB_ATOMIC_NONE;
  126. props->masked_atomic_cap = IB_ATOMIC_HCA;
  127. props->max_pkeys = dev->dev->caps.pkey_table_len[1];
  128. props->max_mcast_grp = dev->dev->caps.num_mgms + dev->dev->caps.num_amgms;
  129. props->max_mcast_qp_attach = dev->dev->caps.num_qp_per_mgm;
  130. props->max_total_mcast_qp_attach = props->max_mcast_qp_attach *
  131. props->max_mcast_grp;
  132. props->max_map_per_fmr = (1 << (32 - ilog2(dev->dev->caps.num_mpts))) - 1;
  133. out:
  134. kfree(in_mad);
  135. kfree(out_mad);
  136. return err;
  137. }
  138. static int mlx4_ib_query_port(struct ib_device *ibdev, u8 port,
  139. struct ib_port_attr *props)
  140. {
  141. struct ib_smp *in_mad = NULL;
  142. struct ib_smp *out_mad = NULL;
  143. int err = -ENOMEM;
  144. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  145. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  146. if (!in_mad || !out_mad)
  147. goto out;
  148. memset(props, 0, sizeof *props);
  149. init_query_mad(in_mad);
  150. in_mad->attr_id = IB_SMP_ATTR_PORT_INFO;
  151. in_mad->attr_mod = cpu_to_be32(port);
  152. err = mlx4_MAD_IFC(to_mdev(ibdev), 1, 1, port, NULL, NULL, in_mad, out_mad);
  153. if (err)
  154. goto out;
  155. props->lid = be16_to_cpup((__be16 *) (out_mad->data + 16));
  156. props->lmc = out_mad->data[34] & 0x7;
  157. props->sm_lid = be16_to_cpup((__be16 *) (out_mad->data + 18));
  158. props->sm_sl = out_mad->data[36] & 0xf;
  159. props->state = out_mad->data[32] & 0xf;
  160. props->phys_state = out_mad->data[33] >> 4;
  161. props->port_cap_flags = be32_to_cpup((__be32 *) (out_mad->data + 20));
  162. props->gid_tbl_len = to_mdev(ibdev)->dev->caps.gid_table_len[port];
  163. props->max_msg_sz = to_mdev(ibdev)->dev->caps.max_msg_sz;
  164. props->pkey_tbl_len = to_mdev(ibdev)->dev->caps.pkey_table_len[port];
  165. props->bad_pkey_cntr = be16_to_cpup((__be16 *) (out_mad->data + 46));
  166. props->qkey_viol_cntr = be16_to_cpup((__be16 *) (out_mad->data + 48));
  167. props->active_width = out_mad->data[31] & 0xf;
  168. props->active_speed = out_mad->data[35] >> 4;
  169. props->max_mtu = out_mad->data[41] & 0xf;
  170. props->active_mtu = out_mad->data[36] >> 4;
  171. props->subnet_timeout = out_mad->data[51] & 0x1f;
  172. props->max_vl_num = out_mad->data[37] >> 4;
  173. props->init_type_reply = out_mad->data[41] >> 4;
  174. out:
  175. kfree(in_mad);
  176. kfree(out_mad);
  177. return err;
  178. }
  179. static int mlx4_ib_query_gid(struct ib_device *ibdev, u8 port, int index,
  180. union ib_gid *gid)
  181. {
  182. struct ib_smp *in_mad = NULL;
  183. struct ib_smp *out_mad = NULL;
  184. int err = -ENOMEM;
  185. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  186. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  187. if (!in_mad || !out_mad)
  188. goto out;
  189. init_query_mad(in_mad);
  190. in_mad->attr_id = IB_SMP_ATTR_PORT_INFO;
  191. in_mad->attr_mod = cpu_to_be32(port);
  192. err = mlx4_MAD_IFC(to_mdev(ibdev), 1, 1, port, NULL, NULL, in_mad, out_mad);
  193. if (err)
  194. goto out;
  195. memcpy(gid->raw, out_mad->data + 8, 8);
  196. init_query_mad(in_mad);
  197. in_mad->attr_id = IB_SMP_ATTR_GUID_INFO;
  198. in_mad->attr_mod = cpu_to_be32(index / 8);
  199. err = mlx4_MAD_IFC(to_mdev(ibdev), 1, 1, port, NULL, NULL, in_mad, out_mad);
  200. if (err)
  201. goto out;
  202. memcpy(gid->raw + 8, out_mad->data + (index % 8) * 8, 8);
  203. out:
  204. kfree(in_mad);
  205. kfree(out_mad);
  206. return err;
  207. }
  208. static int mlx4_ib_query_pkey(struct ib_device *ibdev, u8 port, u16 index,
  209. u16 *pkey)
  210. {
  211. struct ib_smp *in_mad = NULL;
  212. struct ib_smp *out_mad = NULL;
  213. int err = -ENOMEM;
  214. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  215. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  216. if (!in_mad || !out_mad)
  217. goto out;
  218. init_query_mad(in_mad);
  219. in_mad->attr_id = IB_SMP_ATTR_PKEY_TABLE;
  220. in_mad->attr_mod = cpu_to_be32(index / 32);
  221. err = mlx4_MAD_IFC(to_mdev(ibdev), 1, 1, port, NULL, NULL, in_mad, out_mad);
  222. if (err)
  223. goto out;
  224. *pkey = be16_to_cpu(((__be16 *) out_mad->data)[index % 32]);
  225. out:
  226. kfree(in_mad);
  227. kfree(out_mad);
  228. return err;
  229. }
  230. static int mlx4_ib_modify_device(struct ib_device *ibdev, int mask,
  231. struct ib_device_modify *props)
  232. {
  233. if (mask & ~IB_DEVICE_MODIFY_NODE_DESC)
  234. return -EOPNOTSUPP;
  235. if (mask & IB_DEVICE_MODIFY_NODE_DESC) {
  236. spin_lock(&to_mdev(ibdev)->sm_lock);
  237. memcpy(ibdev->node_desc, props->node_desc, 64);
  238. spin_unlock(&to_mdev(ibdev)->sm_lock);
  239. }
  240. return 0;
  241. }
  242. static int mlx4_SET_PORT(struct mlx4_ib_dev *dev, u8 port, int reset_qkey_viols,
  243. u32 cap_mask)
  244. {
  245. struct mlx4_cmd_mailbox *mailbox;
  246. int err;
  247. mailbox = mlx4_alloc_cmd_mailbox(dev->dev);
  248. if (IS_ERR(mailbox))
  249. return PTR_ERR(mailbox);
  250. memset(mailbox->buf, 0, 256);
  251. if (dev->dev->flags & MLX4_FLAG_OLD_PORT_CMDS) {
  252. *(u8 *) mailbox->buf = !!reset_qkey_viols << 6;
  253. ((__be32 *) mailbox->buf)[2] = cpu_to_be32(cap_mask);
  254. } else {
  255. ((u8 *) mailbox->buf)[3] = !!reset_qkey_viols;
  256. ((__be32 *) mailbox->buf)[1] = cpu_to_be32(cap_mask);
  257. }
  258. err = mlx4_cmd(dev->dev, mailbox->dma, port, 0, MLX4_CMD_SET_PORT,
  259. MLX4_CMD_TIME_CLASS_B);
  260. mlx4_free_cmd_mailbox(dev->dev, mailbox);
  261. return err;
  262. }
  263. static int mlx4_ib_modify_port(struct ib_device *ibdev, u8 port, int mask,
  264. struct ib_port_modify *props)
  265. {
  266. struct ib_port_attr attr;
  267. u32 cap_mask;
  268. int err;
  269. mutex_lock(&to_mdev(ibdev)->cap_mask_mutex);
  270. err = mlx4_ib_query_port(ibdev, port, &attr);
  271. if (err)
  272. goto out;
  273. cap_mask = (attr.port_cap_flags | props->set_port_cap_mask) &
  274. ~props->clr_port_cap_mask;
  275. err = mlx4_SET_PORT(to_mdev(ibdev), port,
  276. !!(mask & IB_PORT_RESET_QKEY_CNTR),
  277. cap_mask);
  278. out:
  279. mutex_unlock(&to_mdev(ibdev)->cap_mask_mutex);
  280. return err;
  281. }
  282. static struct ib_ucontext *mlx4_ib_alloc_ucontext(struct ib_device *ibdev,
  283. struct ib_udata *udata)
  284. {
  285. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  286. struct mlx4_ib_ucontext *context;
  287. struct mlx4_ib_alloc_ucontext_resp resp;
  288. int err;
  289. if (!dev->ib_active)
  290. return ERR_PTR(-EAGAIN);
  291. resp.qp_tab_size = dev->dev->caps.num_qps;
  292. resp.bf_reg_size = dev->dev->caps.bf_reg_size;
  293. resp.bf_regs_per_page = dev->dev->caps.bf_regs_per_page;
  294. context = kmalloc(sizeof *context, GFP_KERNEL);
  295. if (!context)
  296. return ERR_PTR(-ENOMEM);
  297. err = mlx4_uar_alloc(to_mdev(ibdev)->dev, &context->uar);
  298. if (err) {
  299. kfree(context);
  300. return ERR_PTR(err);
  301. }
  302. INIT_LIST_HEAD(&context->db_page_list);
  303. mutex_init(&context->db_page_mutex);
  304. err = ib_copy_to_udata(udata, &resp, sizeof resp);
  305. if (err) {
  306. mlx4_uar_free(to_mdev(ibdev)->dev, &context->uar);
  307. kfree(context);
  308. return ERR_PTR(-EFAULT);
  309. }
  310. return &context->ibucontext;
  311. }
  312. static int mlx4_ib_dealloc_ucontext(struct ib_ucontext *ibcontext)
  313. {
  314. struct mlx4_ib_ucontext *context = to_mucontext(ibcontext);
  315. mlx4_uar_free(to_mdev(ibcontext->device)->dev, &context->uar);
  316. kfree(context);
  317. return 0;
  318. }
  319. static int mlx4_ib_mmap(struct ib_ucontext *context, struct vm_area_struct *vma)
  320. {
  321. struct mlx4_ib_dev *dev = to_mdev(context->device);
  322. if (vma->vm_end - vma->vm_start != PAGE_SIZE)
  323. return -EINVAL;
  324. if (vma->vm_pgoff == 0) {
  325. vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
  326. if (io_remap_pfn_range(vma, vma->vm_start,
  327. to_mucontext(context)->uar.pfn,
  328. PAGE_SIZE, vma->vm_page_prot))
  329. return -EAGAIN;
  330. } else if (vma->vm_pgoff == 1 && dev->dev->caps.bf_reg_size != 0) {
  331. vma->vm_page_prot = pgprot_writecombine(vma->vm_page_prot);
  332. if (io_remap_pfn_range(vma, vma->vm_start,
  333. to_mucontext(context)->uar.pfn +
  334. dev->dev->caps.num_uars,
  335. PAGE_SIZE, vma->vm_page_prot))
  336. return -EAGAIN;
  337. } else
  338. return -EINVAL;
  339. return 0;
  340. }
  341. static struct ib_pd *mlx4_ib_alloc_pd(struct ib_device *ibdev,
  342. struct ib_ucontext *context,
  343. struct ib_udata *udata)
  344. {
  345. struct mlx4_ib_pd *pd;
  346. int err;
  347. pd = kmalloc(sizeof *pd, GFP_KERNEL);
  348. if (!pd)
  349. return ERR_PTR(-ENOMEM);
  350. err = mlx4_pd_alloc(to_mdev(ibdev)->dev, &pd->pdn);
  351. if (err) {
  352. kfree(pd);
  353. return ERR_PTR(err);
  354. }
  355. if (context)
  356. if (ib_copy_to_udata(udata, &pd->pdn, sizeof (__u32))) {
  357. mlx4_pd_free(to_mdev(ibdev)->dev, pd->pdn);
  358. kfree(pd);
  359. return ERR_PTR(-EFAULT);
  360. }
  361. return &pd->ibpd;
  362. }
  363. static int mlx4_ib_dealloc_pd(struct ib_pd *pd)
  364. {
  365. mlx4_pd_free(to_mdev(pd->device)->dev, to_mpd(pd)->pdn);
  366. kfree(pd);
  367. return 0;
  368. }
  369. static int mlx4_ib_mcg_attach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid)
  370. {
  371. return mlx4_multicast_attach(to_mdev(ibqp->device)->dev,
  372. &to_mqp(ibqp)->mqp, gid->raw,
  373. !!(to_mqp(ibqp)->flags &
  374. MLX4_IB_QP_BLOCK_MULTICAST_LOOPBACK));
  375. }
  376. static int mlx4_ib_mcg_detach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid)
  377. {
  378. return mlx4_multicast_detach(to_mdev(ibqp->device)->dev,
  379. &to_mqp(ibqp)->mqp, gid->raw);
  380. }
  381. static int init_node_data(struct mlx4_ib_dev *dev)
  382. {
  383. struct ib_smp *in_mad = NULL;
  384. struct ib_smp *out_mad = NULL;
  385. int err = -ENOMEM;
  386. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  387. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  388. if (!in_mad || !out_mad)
  389. goto out;
  390. init_query_mad(in_mad);
  391. in_mad->attr_id = IB_SMP_ATTR_NODE_DESC;
  392. err = mlx4_MAD_IFC(dev, 1, 1, 1, NULL, NULL, in_mad, out_mad);
  393. if (err)
  394. goto out;
  395. memcpy(dev->ib_dev.node_desc, out_mad->data, 64);
  396. in_mad->attr_id = IB_SMP_ATTR_NODE_INFO;
  397. err = mlx4_MAD_IFC(dev, 1, 1, 1, NULL, NULL, in_mad, out_mad);
  398. if (err)
  399. goto out;
  400. dev->dev->rev_id = be32_to_cpup((__be32 *) (out_mad->data + 32));
  401. memcpy(&dev->ib_dev.node_guid, out_mad->data + 12, 8);
  402. out:
  403. kfree(in_mad);
  404. kfree(out_mad);
  405. return err;
  406. }
  407. static ssize_t show_hca(struct device *device, struct device_attribute *attr,
  408. char *buf)
  409. {
  410. struct mlx4_ib_dev *dev =
  411. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  412. return sprintf(buf, "MT%d\n", dev->dev->pdev->device);
  413. }
  414. static ssize_t show_fw_ver(struct device *device, struct device_attribute *attr,
  415. char *buf)
  416. {
  417. struct mlx4_ib_dev *dev =
  418. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  419. return sprintf(buf, "%d.%d.%d\n", (int) (dev->dev->caps.fw_ver >> 32),
  420. (int) (dev->dev->caps.fw_ver >> 16) & 0xffff,
  421. (int) dev->dev->caps.fw_ver & 0xffff);
  422. }
  423. static ssize_t show_rev(struct device *device, struct device_attribute *attr,
  424. char *buf)
  425. {
  426. struct mlx4_ib_dev *dev =
  427. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  428. return sprintf(buf, "%x\n", dev->dev->rev_id);
  429. }
  430. static ssize_t show_board(struct device *device, struct device_attribute *attr,
  431. char *buf)
  432. {
  433. struct mlx4_ib_dev *dev =
  434. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  435. return sprintf(buf, "%.*s\n", MLX4_BOARD_ID_LEN,
  436. dev->dev->board_id);
  437. }
  438. static DEVICE_ATTR(hw_rev, S_IRUGO, show_rev, NULL);
  439. static DEVICE_ATTR(fw_ver, S_IRUGO, show_fw_ver, NULL);
  440. static DEVICE_ATTR(hca_type, S_IRUGO, show_hca, NULL);
  441. static DEVICE_ATTR(board_id, S_IRUGO, show_board, NULL);
  442. static struct device_attribute *mlx4_class_attributes[] = {
  443. &dev_attr_hw_rev,
  444. &dev_attr_fw_ver,
  445. &dev_attr_hca_type,
  446. &dev_attr_board_id
  447. };
  448. static void *mlx4_ib_add(struct mlx4_dev *dev)
  449. {
  450. struct mlx4_ib_dev *ibdev;
  451. int num_ports = 0;
  452. int i;
  453. printk_once(KERN_INFO "%s", mlx4_ib_version);
  454. mlx4_foreach_port(i, dev, MLX4_PORT_TYPE_IB)
  455. num_ports++;
  456. /* No point in registering a device with no ports... */
  457. if (num_ports == 0)
  458. return NULL;
  459. ibdev = (struct mlx4_ib_dev *) ib_alloc_device(sizeof *ibdev);
  460. if (!ibdev) {
  461. dev_err(&dev->pdev->dev, "Device struct alloc failed\n");
  462. return NULL;
  463. }
  464. if (mlx4_pd_alloc(dev, &ibdev->priv_pdn))
  465. goto err_dealloc;
  466. if (mlx4_uar_alloc(dev, &ibdev->priv_uar))
  467. goto err_pd;
  468. ibdev->uar_map = ioremap(ibdev->priv_uar.pfn << PAGE_SHIFT, PAGE_SIZE);
  469. if (!ibdev->uar_map)
  470. goto err_uar;
  471. MLX4_INIT_DOORBELL_LOCK(&ibdev->uar_lock);
  472. ibdev->dev = dev;
  473. strlcpy(ibdev->ib_dev.name, "mlx4_%d", IB_DEVICE_NAME_MAX);
  474. ibdev->ib_dev.owner = THIS_MODULE;
  475. ibdev->ib_dev.node_type = RDMA_NODE_IB_CA;
  476. ibdev->ib_dev.local_dma_lkey = dev->caps.reserved_lkey;
  477. ibdev->num_ports = num_ports;
  478. ibdev->ib_dev.phys_port_cnt = ibdev->num_ports;
  479. ibdev->ib_dev.num_comp_vectors = dev->caps.num_comp_vectors;
  480. ibdev->ib_dev.dma_device = &dev->pdev->dev;
  481. ibdev->ib_dev.uverbs_abi_ver = MLX4_IB_UVERBS_ABI_VERSION;
  482. ibdev->ib_dev.uverbs_cmd_mask =
  483. (1ull << IB_USER_VERBS_CMD_GET_CONTEXT) |
  484. (1ull << IB_USER_VERBS_CMD_QUERY_DEVICE) |
  485. (1ull << IB_USER_VERBS_CMD_QUERY_PORT) |
  486. (1ull << IB_USER_VERBS_CMD_ALLOC_PD) |
  487. (1ull << IB_USER_VERBS_CMD_DEALLOC_PD) |
  488. (1ull << IB_USER_VERBS_CMD_REG_MR) |
  489. (1ull << IB_USER_VERBS_CMD_DEREG_MR) |
  490. (1ull << IB_USER_VERBS_CMD_CREATE_COMP_CHANNEL) |
  491. (1ull << IB_USER_VERBS_CMD_CREATE_CQ) |
  492. (1ull << IB_USER_VERBS_CMD_RESIZE_CQ) |
  493. (1ull << IB_USER_VERBS_CMD_DESTROY_CQ) |
  494. (1ull << IB_USER_VERBS_CMD_CREATE_QP) |
  495. (1ull << IB_USER_VERBS_CMD_MODIFY_QP) |
  496. (1ull << IB_USER_VERBS_CMD_QUERY_QP) |
  497. (1ull << IB_USER_VERBS_CMD_DESTROY_QP) |
  498. (1ull << IB_USER_VERBS_CMD_ATTACH_MCAST) |
  499. (1ull << IB_USER_VERBS_CMD_DETACH_MCAST) |
  500. (1ull << IB_USER_VERBS_CMD_CREATE_SRQ) |
  501. (1ull << IB_USER_VERBS_CMD_MODIFY_SRQ) |
  502. (1ull << IB_USER_VERBS_CMD_QUERY_SRQ) |
  503. (1ull << IB_USER_VERBS_CMD_DESTROY_SRQ);
  504. ibdev->ib_dev.query_device = mlx4_ib_query_device;
  505. ibdev->ib_dev.query_port = mlx4_ib_query_port;
  506. ibdev->ib_dev.query_gid = mlx4_ib_query_gid;
  507. ibdev->ib_dev.query_pkey = mlx4_ib_query_pkey;
  508. ibdev->ib_dev.modify_device = mlx4_ib_modify_device;
  509. ibdev->ib_dev.modify_port = mlx4_ib_modify_port;
  510. ibdev->ib_dev.alloc_ucontext = mlx4_ib_alloc_ucontext;
  511. ibdev->ib_dev.dealloc_ucontext = mlx4_ib_dealloc_ucontext;
  512. ibdev->ib_dev.mmap = mlx4_ib_mmap;
  513. ibdev->ib_dev.alloc_pd = mlx4_ib_alloc_pd;
  514. ibdev->ib_dev.dealloc_pd = mlx4_ib_dealloc_pd;
  515. ibdev->ib_dev.create_ah = mlx4_ib_create_ah;
  516. ibdev->ib_dev.query_ah = mlx4_ib_query_ah;
  517. ibdev->ib_dev.destroy_ah = mlx4_ib_destroy_ah;
  518. ibdev->ib_dev.create_srq = mlx4_ib_create_srq;
  519. ibdev->ib_dev.modify_srq = mlx4_ib_modify_srq;
  520. ibdev->ib_dev.query_srq = mlx4_ib_query_srq;
  521. ibdev->ib_dev.destroy_srq = mlx4_ib_destroy_srq;
  522. ibdev->ib_dev.post_srq_recv = mlx4_ib_post_srq_recv;
  523. ibdev->ib_dev.create_qp = mlx4_ib_create_qp;
  524. ibdev->ib_dev.modify_qp = mlx4_ib_modify_qp;
  525. ibdev->ib_dev.query_qp = mlx4_ib_query_qp;
  526. ibdev->ib_dev.destroy_qp = mlx4_ib_destroy_qp;
  527. ibdev->ib_dev.post_send = mlx4_ib_post_send;
  528. ibdev->ib_dev.post_recv = mlx4_ib_post_recv;
  529. ibdev->ib_dev.create_cq = mlx4_ib_create_cq;
  530. ibdev->ib_dev.modify_cq = mlx4_ib_modify_cq;
  531. ibdev->ib_dev.resize_cq = mlx4_ib_resize_cq;
  532. ibdev->ib_dev.destroy_cq = mlx4_ib_destroy_cq;
  533. ibdev->ib_dev.poll_cq = mlx4_ib_poll_cq;
  534. ibdev->ib_dev.req_notify_cq = mlx4_ib_arm_cq;
  535. ibdev->ib_dev.get_dma_mr = mlx4_ib_get_dma_mr;
  536. ibdev->ib_dev.reg_user_mr = mlx4_ib_reg_user_mr;
  537. ibdev->ib_dev.dereg_mr = mlx4_ib_dereg_mr;
  538. ibdev->ib_dev.alloc_fast_reg_mr = mlx4_ib_alloc_fast_reg_mr;
  539. ibdev->ib_dev.alloc_fast_reg_page_list = mlx4_ib_alloc_fast_reg_page_list;
  540. ibdev->ib_dev.free_fast_reg_page_list = mlx4_ib_free_fast_reg_page_list;
  541. ibdev->ib_dev.attach_mcast = mlx4_ib_mcg_attach;
  542. ibdev->ib_dev.detach_mcast = mlx4_ib_mcg_detach;
  543. ibdev->ib_dev.process_mad = mlx4_ib_process_mad;
  544. ibdev->ib_dev.alloc_fmr = mlx4_ib_fmr_alloc;
  545. ibdev->ib_dev.map_phys_fmr = mlx4_ib_map_phys_fmr;
  546. ibdev->ib_dev.unmap_fmr = mlx4_ib_unmap_fmr;
  547. ibdev->ib_dev.dealloc_fmr = mlx4_ib_fmr_dealloc;
  548. if (init_node_data(ibdev))
  549. goto err_map;
  550. spin_lock_init(&ibdev->sm_lock);
  551. mutex_init(&ibdev->cap_mask_mutex);
  552. if (ib_register_device(&ibdev->ib_dev, NULL))
  553. goto err_map;
  554. if (mlx4_ib_mad_init(ibdev))
  555. goto err_reg;
  556. for (i = 0; i < ARRAY_SIZE(mlx4_class_attributes); ++i) {
  557. if (device_create_file(&ibdev->ib_dev.dev,
  558. mlx4_class_attributes[i]))
  559. goto err_reg;
  560. }
  561. ibdev->ib_active = true;
  562. return ibdev;
  563. err_reg:
  564. ib_unregister_device(&ibdev->ib_dev);
  565. err_map:
  566. iounmap(ibdev->uar_map);
  567. err_uar:
  568. mlx4_uar_free(dev, &ibdev->priv_uar);
  569. err_pd:
  570. mlx4_pd_free(dev, ibdev->priv_pdn);
  571. err_dealloc:
  572. ib_dealloc_device(&ibdev->ib_dev);
  573. return NULL;
  574. }
  575. static void mlx4_ib_remove(struct mlx4_dev *dev, void *ibdev_ptr)
  576. {
  577. struct mlx4_ib_dev *ibdev = ibdev_ptr;
  578. int p;
  579. mlx4_ib_mad_cleanup(ibdev);
  580. ib_unregister_device(&ibdev->ib_dev);
  581. for (p = 1; p <= ibdev->num_ports; ++p)
  582. mlx4_CLOSE_PORT(dev, p);
  583. iounmap(ibdev->uar_map);
  584. mlx4_uar_free(dev, &ibdev->priv_uar);
  585. mlx4_pd_free(dev, ibdev->priv_pdn);
  586. ib_dealloc_device(&ibdev->ib_dev);
  587. }
  588. static void mlx4_ib_event(struct mlx4_dev *dev, void *ibdev_ptr,
  589. enum mlx4_dev_event event, int port)
  590. {
  591. struct ib_event ibev;
  592. struct mlx4_ib_dev *ibdev = to_mdev((struct ib_device *) ibdev_ptr);
  593. if (port > ibdev->num_ports)
  594. return;
  595. switch (event) {
  596. case MLX4_DEV_EVENT_PORT_UP:
  597. ibev.event = IB_EVENT_PORT_ACTIVE;
  598. break;
  599. case MLX4_DEV_EVENT_PORT_DOWN:
  600. ibev.event = IB_EVENT_PORT_ERR;
  601. break;
  602. case MLX4_DEV_EVENT_CATASTROPHIC_ERROR:
  603. ibdev->ib_active = false;
  604. ibev.event = IB_EVENT_DEVICE_FATAL;
  605. break;
  606. default:
  607. return;
  608. }
  609. ibev.device = ibdev_ptr;
  610. ibev.element.port_num = port;
  611. ib_dispatch_event(&ibev);
  612. }
  613. static struct mlx4_interface mlx4_ib_interface = {
  614. .add = mlx4_ib_add,
  615. .remove = mlx4_ib_remove,
  616. .event = mlx4_ib_event
  617. };
  618. static int __init mlx4_ib_init(void)
  619. {
  620. return mlx4_register_interface(&mlx4_ib_interface);
  621. }
  622. static void __exit mlx4_ib_cleanup(void)
  623. {
  624. mlx4_unregister_interface(&mlx4_ib_interface);
  625. }
  626. module_init(mlx4_ib_init);
  627. module_exit(mlx4_ib_cleanup);