main.c 46 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 <linux/netdevice.h>
  38. #include <linux/inetdevice.h>
  39. #include <linux/rtnetlink.h>
  40. #include <linux/if_vlan.h>
  41. #include <rdma/ib_smi.h>
  42. #include <rdma/ib_user_verbs.h>
  43. #include <rdma/ib_addr.h>
  44. #include <linux/mlx4/driver.h>
  45. #include <linux/mlx4/cmd.h>
  46. #include "mlx4_ib.h"
  47. #include "user.h"
  48. #define DRV_NAME MLX4_IB_DRV_NAME
  49. #define DRV_VERSION "1.0"
  50. #define DRV_RELDATE "April 4, 2008"
  51. MODULE_AUTHOR("Roland Dreier");
  52. MODULE_DESCRIPTION("Mellanox ConnectX HCA InfiniBand driver");
  53. MODULE_LICENSE("Dual BSD/GPL");
  54. MODULE_VERSION(DRV_VERSION);
  55. int mlx4_ib_sm_guid_assign = 1;
  56. module_param_named(sm_guid_assign, mlx4_ib_sm_guid_assign, int, 0444);
  57. MODULE_PARM_DESC(sm_guid_assign, "Enable SM alias_GUID assignment if sm_guid_assign > 0 (Default: 1)");
  58. static const char mlx4_ib_version[] =
  59. DRV_NAME ": Mellanox ConnectX InfiniBand driver v"
  60. DRV_VERSION " (" DRV_RELDATE ")\n";
  61. struct update_gid_work {
  62. struct work_struct work;
  63. union ib_gid gids[128];
  64. struct mlx4_ib_dev *dev;
  65. int port;
  66. };
  67. static void do_slave_init(struct mlx4_ib_dev *ibdev, int slave, int do_init);
  68. static struct workqueue_struct *wq;
  69. static void init_query_mad(struct ib_smp *mad)
  70. {
  71. mad->base_version = 1;
  72. mad->mgmt_class = IB_MGMT_CLASS_SUBN_LID_ROUTED;
  73. mad->class_version = 1;
  74. mad->method = IB_MGMT_METHOD_GET;
  75. }
  76. static union ib_gid zgid;
  77. static int mlx4_ib_query_device(struct ib_device *ibdev,
  78. struct ib_device_attr *props)
  79. {
  80. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  81. struct ib_smp *in_mad = NULL;
  82. struct ib_smp *out_mad = NULL;
  83. int err = -ENOMEM;
  84. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  85. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  86. if (!in_mad || !out_mad)
  87. goto out;
  88. init_query_mad(in_mad);
  89. in_mad->attr_id = IB_SMP_ATTR_NODE_INFO;
  90. err = mlx4_MAD_IFC(to_mdev(ibdev), MLX4_MAD_IFC_IGNORE_KEYS,
  91. 1, NULL, NULL, in_mad, out_mad);
  92. if (err)
  93. goto out;
  94. memset(props, 0, sizeof *props);
  95. props->fw_ver = dev->dev->caps.fw_ver;
  96. props->device_cap_flags = IB_DEVICE_CHANGE_PHY_PORT |
  97. IB_DEVICE_PORT_ACTIVE_EVENT |
  98. IB_DEVICE_SYS_IMAGE_GUID |
  99. IB_DEVICE_RC_RNR_NAK_GEN |
  100. IB_DEVICE_BLOCK_MULTICAST_LOOPBACK;
  101. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BAD_PKEY_CNTR)
  102. props->device_cap_flags |= IB_DEVICE_BAD_PKEY_CNTR;
  103. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BAD_QKEY_CNTR)
  104. props->device_cap_flags |= IB_DEVICE_BAD_QKEY_CNTR;
  105. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_APM)
  106. props->device_cap_flags |= IB_DEVICE_AUTO_PATH_MIG;
  107. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_UD_AV_PORT)
  108. props->device_cap_flags |= IB_DEVICE_UD_AV_PORT_ENFORCE;
  109. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_IPOIB_CSUM)
  110. props->device_cap_flags |= IB_DEVICE_UD_IP_CSUM;
  111. if (dev->dev->caps.max_gso_sz && dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_BLH)
  112. props->device_cap_flags |= IB_DEVICE_UD_TSO;
  113. if (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_RESERVED_LKEY)
  114. props->device_cap_flags |= IB_DEVICE_LOCAL_DMA_LKEY;
  115. if ((dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_LOCAL_INV) &&
  116. (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_REMOTE_INV) &&
  117. (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_FAST_REG_WR))
  118. props->device_cap_flags |= IB_DEVICE_MEM_MGT_EXTENSIONS;
  119. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_XRC)
  120. props->device_cap_flags |= IB_DEVICE_XRC;
  121. if (dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_MEM_WINDOW)
  122. props->device_cap_flags |= IB_DEVICE_MEM_WINDOW;
  123. if (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_TYPE_2_WIN) {
  124. if (dev->dev->caps.bmme_flags & MLX4_BMME_FLAG_WIN_TYPE_2B)
  125. props->device_cap_flags |= IB_DEVICE_MEM_WINDOW_TYPE_2B;
  126. else
  127. props->device_cap_flags |= IB_DEVICE_MEM_WINDOW_TYPE_2A;
  128. }
  129. props->vendor_id = be32_to_cpup((__be32 *) (out_mad->data + 36)) &
  130. 0xffffff;
  131. props->vendor_part_id = dev->dev->pdev->device;
  132. props->hw_ver = be32_to_cpup((__be32 *) (out_mad->data + 32));
  133. memcpy(&props->sys_image_guid, out_mad->data + 4, 8);
  134. props->max_mr_size = ~0ull;
  135. props->page_size_cap = dev->dev->caps.page_size_cap;
  136. props->max_qp = dev->dev->caps.num_qps - dev->dev->caps.reserved_qps;
  137. props->max_qp_wr = dev->dev->caps.max_wqes - MLX4_IB_SQ_MAX_SPARE;
  138. props->max_sge = min(dev->dev->caps.max_sq_sg,
  139. dev->dev->caps.max_rq_sg);
  140. props->max_cq = dev->dev->caps.num_cqs - dev->dev->caps.reserved_cqs;
  141. props->max_cqe = dev->dev->caps.max_cqes;
  142. props->max_mr = dev->dev->caps.num_mpts - dev->dev->caps.reserved_mrws;
  143. props->max_pd = dev->dev->caps.num_pds - dev->dev->caps.reserved_pds;
  144. props->max_qp_rd_atom = dev->dev->caps.max_qp_dest_rdma;
  145. props->max_qp_init_rd_atom = dev->dev->caps.max_qp_init_rdma;
  146. props->max_res_rd_atom = props->max_qp_rd_atom * props->max_qp;
  147. props->max_srq = dev->dev->caps.num_srqs - dev->dev->caps.reserved_srqs;
  148. props->max_srq_wr = dev->dev->caps.max_srq_wqes - 1;
  149. props->max_srq_sge = dev->dev->caps.max_srq_sge;
  150. props->max_fast_reg_page_list_len = MLX4_MAX_FAST_REG_PAGES;
  151. props->local_ca_ack_delay = dev->dev->caps.local_ca_ack_delay;
  152. props->atomic_cap = dev->dev->caps.flags & MLX4_DEV_CAP_FLAG_ATOMIC ?
  153. IB_ATOMIC_HCA : IB_ATOMIC_NONE;
  154. props->masked_atomic_cap = props->atomic_cap;
  155. props->max_pkeys = dev->dev->caps.pkey_table_len[1];
  156. props->max_mcast_grp = dev->dev->caps.num_mgms + dev->dev->caps.num_amgms;
  157. props->max_mcast_qp_attach = dev->dev->caps.num_qp_per_mgm;
  158. props->max_total_mcast_qp_attach = props->max_mcast_qp_attach *
  159. props->max_mcast_grp;
  160. props->max_map_per_fmr = dev->dev->caps.max_fmr_maps;
  161. out:
  162. kfree(in_mad);
  163. kfree(out_mad);
  164. return err;
  165. }
  166. static enum rdma_link_layer
  167. mlx4_ib_port_link_layer(struct ib_device *device, u8 port_num)
  168. {
  169. struct mlx4_dev *dev = to_mdev(device)->dev;
  170. return dev->caps.port_mask[port_num] == MLX4_PORT_TYPE_IB ?
  171. IB_LINK_LAYER_INFINIBAND : IB_LINK_LAYER_ETHERNET;
  172. }
  173. static int ib_link_query_port(struct ib_device *ibdev, u8 port,
  174. struct ib_port_attr *props, int netw_view)
  175. {
  176. struct ib_smp *in_mad = NULL;
  177. struct ib_smp *out_mad = NULL;
  178. int ext_active_speed;
  179. int mad_ifc_flags = MLX4_MAD_IFC_IGNORE_KEYS;
  180. int err = -ENOMEM;
  181. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  182. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  183. if (!in_mad || !out_mad)
  184. goto out;
  185. init_query_mad(in_mad);
  186. in_mad->attr_id = IB_SMP_ATTR_PORT_INFO;
  187. in_mad->attr_mod = cpu_to_be32(port);
  188. if (mlx4_is_mfunc(to_mdev(ibdev)->dev) && netw_view)
  189. mad_ifc_flags |= MLX4_MAD_IFC_NET_VIEW;
  190. err = mlx4_MAD_IFC(to_mdev(ibdev), mad_ifc_flags, port, NULL, NULL,
  191. in_mad, out_mad);
  192. if (err)
  193. goto out;
  194. props->lid = be16_to_cpup((__be16 *) (out_mad->data + 16));
  195. props->lmc = out_mad->data[34] & 0x7;
  196. props->sm_lid = be16_to_cpup((__be16 *) (out_mad->data + 18));
  197. props->sm_sl = out_mad->data[36] & 0xf;
  198. props->state = out_mad->data[32] & 0xf;
  199. props->phys_state = out_mad->data[33] >> 4;
  200. props->port_cap_flags = be32_to_cpup((__be32 *) (out_mad->data + 20));
  201. if (netw_view)
  202. props->gid_tbl_len = out_mad->data[50];
  203. else
  204. props->gid_tbl_len = to_mdev(ibdev)->dev->caps.gid_table_len[port];
  205. props->max_msg_sz = to_mdev(ibdev)->dev->caps.max_msg_sz;
  206. props->pkey_tbl_len = to_mdev(ibdev)->dev->caps.pkey_table_len[port];
  207. props->bad_pkey_cntr = be16_to_cpup((__be16 *) (out_mad->data + 46));
  208. props->qkey_viol_cntr = be16_to_cpup((__be16 *) (out_mad->data + 48));
  209. props->active_width = out_mad->data[31] & 0xf;
  210. props->active_speed = out_mad->data[35] >> 4;
  211. props->max_mtu = out_mad->data[41] & 0xf;
  212. props->active_mtu = out_mad->data[36] >> 4;
  213. props->subnet_timeout = out_mad->data[51] & 0x1f;
  214. props->max_vl_num = out_mad->data[37] >> 4;
  215. props->init_type_reply = out_mad->data[41] >> 4;
  216. /* Check if extended speeds (EDR/FDR/...) are supported */
  217. if (props->port_cap_flags & IB_PORT_EXTENDED_SPEEDS_SUP) {
  218. ext_active_speed = out_mad->data[62] >> 4;
  219. switch (ext_active_speed) {
  220. case 1:
  221. props->active_speed = IB_SPEED_FDR;
  222. break;
  223. case 2:
  224. props->active_speed = IB_SPEED_EDR;
  225. break;
  226. }
  227. }
  228. /* If reported active speed is QDR, check if is FDR-10 */
  229. if (props->active_speed == IB_SPEED_QDR) {
  230. init_query_mad(in_mad);
  231. in_mad->attr_id = MLX4_ATTR_EXTENDED_PORT_INFO;
  232. in_mad->attr_mod = cpu_to_be32(port);
  233. err = mlx4_MAD_IFC(to_mdev(ibdev), mad_ifc_flags, port,
  234. NULL, NULL, in_mad, out_mad);
  235. if (err)
  236. goto out;
  237. /* Checking LinkSpeedActive for FDR-10 */
  238. if (out_mad->data[15] & 0x1)
  239. props->active_speed = IB_SPEED_FDR10;
  240. }
  241. /* Avoid wrong speed value returned by FW if the IB link is down. */
  242. if (props->state == IB_PORT_DOWN)
  243. props->active_speed = IB_SPEED_SDR;
  244. out:
  245. kfree(in_mad);
  246. kfree(out_mad);
  247. return err;
  248. }
  249. static u8 state_to_phys_state(enum ib_port_state state)
  250. {
  251. return state == IB_PORT_ACTIVE ? 5 : 3;
  252. }
  253. static int eth_link_query_port(struct ib_device *ibdev, u8 port,
  254. struct ib_port_attr *props, int netw_view)
  255. {
  256. struct mlx4_ib_dev *mdev = to_mdev(ibdev);
  257. struct mlx4_ib_iboe *iboe = &mdev->iboe;
  258. struct net_device *ndev;
  259. enum ib_mtu tmp;
  260. struct mlx4_cmd_mailbox *mailbox;
  261. int err = 0;
  262. mailbox = mlx4_alloc_cmd_mailbox(mdev->dev);
  263. if (IS_ERR(mailbox))
  264. return PTR_ERR(mailbox);
  265. err = mlx4_cmd_box(mdev->dev, 0, mailbox->dma, port, 0,
  266. MLX4_CMD_QUERY_PORT, MLX4_CMD_TIME_CLASS_B,
  267. MLX4_CMD_WRAPPED);
  268. if (err)
  269. goto out;
  270. props->active_width = (((u8 *)mailbox->buf)[5] == 0x40) ?
  271. IB_WIDTH_4X : IB_WIDTH_1X;
  272. props->active_speed = IB_SPEED_QDR;
  273. props->port_cap_flags = IB_PORT_CM_SUP;
  274. props->gid_tbl_len = mdev->dev->caps.gid_table_len[port];
  275. props->max_msg_sz = mdev->dev->caps.max_msg_sz;
  276. props->pkey_tbl_len = 1;
  277. props->max_mtu = IB_MTU_4096;
  278. props->max_vl_num = 2;
  279. props->state = IB_PORT_DOWN;
  280. props->phys_state = state_to_phys_state(props->state);
  281. props->active_mtu = IB_MTU_256;
  282. spin_lock(&iboe->lock);
  283. ndev = iboe->netdevs[port - 1];
  284. if (!ndev)
  285. goto out_unlock;
  286. tmp = iboe_get_mtu(ndev->mtu);
  287. props->active_mtu = tmp ? min(props->max_mtu, tmp) : IB_MTU_256;
  288. props->state = (netif_running(ndev) && netif_carrier_ok(ndev)) ?
  289. IB_PORT_ACTIVE : IB_PORT_DOWN;
  290. props->phys_state = state_to_phys_state(props->state);
  291. out_unlock:
  292. spin_unlock(&iboe->lock);
  293. out:
  294. mlx4_free_cmd_mailbox(mdev->dev, mailbox);
  295. return err;
  296. }
  297. int __mlx4_ib_query_port(struct ib_device *ibdev, u8 port,
  298. struct ib_port_attr *props, int netw_view)
  299. {
  300. int err;
  301. memset(props, 0, sizeof *props);
  302. err = mlx4_ib_port_link_layer(ibdev, port) == IB_LINK_LAYER_INFINIBAND ?
  303. ib_link_query_port(ibdev, port, props, netw_view) :
  304. eth_link_query_port(ibdev, port, props, netw_view);
  305. return err;
  306. }
  307. static int mlx4_ib_query_port(struct ib_device *ibdev, u8 port,
  308. struct ib_port_attr *props)
  309. {
  310. /* returns host view */
  311. return __mlx4_ib_query_port(ibdev, port, props, 0);
  312. }
  313. int __mlx4_ib_query_gid(struct ib_device *ibdev, u8 port, int index,
  314. union ib_gid *gid, int netw_view)
  315. {
  316. struct ib_smp *in_mad = NULL;
  317. struct ib_smp *out_mad = NULL;
  318. int err = -ENOMEM;
  319. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  320. int clear = 0;
  321. int mad_ifc_flags = MLX4_MAD_IFC_IGNORE_KEYS;
  322. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  323. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  324. if (!in_mad || !out_mad)
  325. goto out;
  326. init_query_mad(in_mad);
  327. in_mad->attr_id = IB_SMP_ATTR_PORT_INFO;
  328. in_mad->attr_mod = cpu_to_be32(port);
  329. if (mlx4_is_mfunc(dev->dev) && netw_view)
  330. mad_ifc_flags |= MLX4_MAD_IFC_NET_VIEW;
  331. err = mlx4_MAD_IFC(dev, mad_ifc_flags, port, NULL, NULL, in_mad, out_mad);
  332. if (err)
  333. goto out;
  334. memcpy(gid->raw, out_mad->data + 8, 8);
  335. if (mlx4_is_mfunc(dev->dev) && !netw_view) {
  336. if (index) {
  337. /* For any index > 0, return the null guid */
  338. err = 0;
  339. clear = 1;
  340. goto out;
  341. }
  342. }
  343. init_query_mad(in_mad);
  344. in_mad->attr_id = IB_SMP_ATTR_GUID_INFO;
  345. in_mad->attr_mod = cpu_to_be32(index / 8);
  346. err = mlx4_MAD_IFC(dev, mad_ifc_flags, port,
  347. NULL, NULL, in_mad, out_mad);
  348. if (err)
  349. goto out;
  350. memcpy(gid->raw + 8, out_mad->data + (index % 8) * 8, 8);
  351. out:
  352. if (clear)
  353. memset(gid->raw + 8, 0, 8);
  354. kfree(in_mad);
  355. kfree(out_mad);
  356. return err;
  357. }
  358. static int iboe_query_gid(struct ib_device *ibdev, u8 port, int index,
  359. union ib_gid *gid)
  360. {
  361. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  362. *gid = dev->iboe.gid_table[port - 1][index];
  363. return 0;
  364. }
  365. static int mlx4_ib_query_gid(struct ib_device *ibdev, u8 port, int index,
  366. union ib_gid *gid)
  367. {
  368. if (rdma_port_get_link_layer(ibdev, port) == IB_LINK_LAYER_INFINIBAND)
  369. return __mlx4_ib_query_gid(ibdev, port, index, gid, 0);
  370. else
  371. return iboe_query_gid(ibdev, port, index, gid);
  372. }
  373. int __mlx4_ib_query_pkey(struct ib_device *ibdev, u8 port, u16 index,
  374. u16 *pkey, int netw_view)
  375. {
  376. struct ib_smp *in_mad = NULL;
  377. struct ib_smp *out_mad = NULL;
  378. int mad_ifc_flags = MLX4_MAD_IFC_IGNORE_KEYS;
  379. int err = -ENOMEM;
  380. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  381. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  382. if (!in_mad || !out_mad)
  383. goto out;
  384. init_query_mad(in_mad);
  385. in_mad->attr_id = IB_SMP_ATTR_PKEY_TABLE;
  386. in_mad->attr_mod = cpu_to_be32(index / 32);
  387. if (mlx4_is_mfunc(to_mdev(ibdev)->dev) && netw_view)
  388. mad_ifc_flags |= MLX4_MAD_IFC_NET_VIEW;
  389. err = mlx4_MAD_IFC(to_mdev(ibdev), mad_ifc_flags, port, NULL, NULL,
  390. in_mad, out_mad);
  391. if (err)
  392. goto out;
  393. *pkey = be16_to_cpu(((__be16 *) out_mad->data)[index % 32]);
  394. out:
  395. kfree(in_mad);
  396. kfree(out_mad);
  397. return err;
  398. }
  399. static int mlx4_ib_query_pkey(struct ib_device *ibdev, u8 port, u16 index, u16 *pkey)
  400. {
  401. return __mlx4_ib_query_pkey(ibdev, port, index, pkey, 0);
  402. }
  403. static int mlx4_ib_modify_device(struct ib_device *ibdev, int mask,
  404. struct ib_device_modify *props)
  405. {
  406. struct mlx4_cmd_mailbox *mailbox;
  407. unsigned long flags;
  408. if (mask & ~IB_DEVICE_MODIFY_NODE_DESC)
  409. return -EOPNOTSUPP;
  410. if (!(mask & IB_DEVICE_MODIFY_NODE_DESC))
  411. return 0;
  412. if (mlx4_is_slave(to_mdev(ibdev)->dev))
  413. return -EOPNOTSUPP;
  414. spin_lock_irqsave(&to_mdev(ibdev)->sm_lock, flags);
  415. memcpy(ibdev->node_desc, props->node_desc, 64);
  416. spin_unlock_irqrestore(&to_mdev(ibdev)->sm_lock, flags);
  417. /*
  418. * If possible, pass node desc to FW, so it can generate
  419. * a 144 trap. If cmd fails, just ignore.
  420. */
  421. mailbox = mlx4_alloc_cmd_mailbox(to_mdev(ibdev)->dev);
  422. if (IS_ERR(mailbox))
  423. return 0;
  424. memset(mailbox->buf, 0, 256);
  425. memcpy(mailbox->buf, props->node_desc, 64);
  426. mlx4_cmd(to_mdev(ibdev)->dev, mailbox->dma, 1, 0,
  427. MLX4_CMD_SET_NODE, MLX4_CMD_TIME_CLASS_A, MLX4_CMD_NATIVE);
  428. mlx4_free_cmd_mailbox(to_mdev(ibdev)->dev, mailbox);
  429. return 0;
  430. }
  431. static int mlx4_SET_PORT(struct mlx4_ib_dev *dev, u8 port, int reset_qkey_viols,
  432. u32 cap_mask)
  433. {
  434. struct mlx4_cmd_mailbox *mailbox;
  435. int err;
  436. u8 is_eth = dev->dev->caps.port_type[port] == MLX4_PORT_TYPE_ETH;
  437. mailbox = mlx4_alloc_cmd_mailbox(dev->dev);
  438. if (IS_ERR(mailbox))
  439. return PTR_ERR(mailbox);
  440. memset(mailbox->buf, 0, 256);
  441. if (dev->dev->flags & MLX4_FLAG_OLD_PORT_CMDS) {
  442. *(u8 *) mailbox->buf = !!reset_qkey_viols << 6;
  443. ((__be32 *) mailbox->buf)[2] = cpu_to_be32(cap_mask);
  444. } else {
  445. ((u8 *) mailbox->buf)[3] = !!reset_qkey_viols;
  446. ((__be32 *) mailbox->buf)[1] = cpu_to_be32(cap_mask);
  447. }
  448. err = mlx4_cmd(dev->dev, mailbox->dma, port, is_eth, MLX4_CMD_SET_PORT,
  449. MLX4_CMD_TIME_CLASS_B, MLX4_CMD_NATIVE);
  450. mlx4_free_cmd_mailbox(dev->dev, mailbox);
  451. return err;
  452. }
  453. static int mlx4_ib_modify_port(struct ib_device *ibdev, u8 port, int mask,
  454. struct ib_port_modify *props)
  455. {
  456. struct ib_port_attr attr;
  457. u32 cap_mask;
  458. int err;
  459. mutex_lock(&to_mdev(ibdev)->cap_mask_mutex);
  460. err = mlx4_ib_query_port(ibdev, port, &attr);
  461. if (err)
  462. goto out;
  463. cap_mask = (attr.port_cap_flags | props->set_port_cap_mask) &
  464. ~props->clr_port_cap_mask;
  465. err = mlx4_SET_PORT(to_mdev(ibdev), port,
  466. !!(mask & IB_PORT_RESET_QKEY_CNTR),
  467. cap_mask);
  468. out:
  469. mutex_unlock(&to_mdev(ibdev)->cap_mask_mutex);
  470. return err;
  471. }
  472. static struct ib_ucontext *mlx4_ib_alloc_ucontext(struct ib_device *ibdev,
  473. struct ib_udata *udata)
  474. {
  475. struct mlx4_ib_dev *dev = to_mdev(ibdev);
  476. struct mlx4_ib_ucontext *context;
  477. struct mlx4_ib_alloc_ucontext_resp_v3 resp_v3;
  478. struct mlx4_ib_alloc_ucontext_resp resp;
  479. int err;
  480. if (!dev->ib_active)
  481. return ERR_PTR(-EAGAIN);
  482. if (ibdev->uverbs_abi_ver == MLX4_IB_UVERBS_NO_DEV_CAPS_ABI_VERSION) {
  483. resp_v3.qp_tab_size = dev->dev->caps.num_qps;
  484. resp_v3.bf_reg_size = dev->dev->caps.bf_reg_size;
  485. resp_v3.bf_regs_per_page = dev->dev->caps.bf_regs_per_page;
  486. } else {
  487. resp.dev_caps = dev->dev->caps.userspace_caps;
  488. resp.qp_tab_size = dev->dev->caps.num_qps;
  489. resp.bf_reg_size = dev->dev->caps.bf_reg_size;
  490. resp.bf_regs_per_page = dev->dev->caps.bf_regs_per_page;
  491. resp.cqe_size = dev->dev->caps.cqe_size;
  492. }
  493. context = kmalloc(sizeof *context, GFP_KERNEL);
  494. if (!context)
  495. return ERR_PTR(-ENOMEM);
  496. err = mlx4_uar_alloc(to_mdev(ibdev)->dev, &context->uar);
  497. if (err) {
  498. kfree(context);
  499. return ERR_PTR(err);
  500. }
  501. INIT_LIST_HEAD(&context->db_page_list);
  502. mutex_init(&context->db_page_mutex);
  503. if (ibdev->uverbs_abi_ver == MLX4_IB_UVERBS_NO_DEV_CAPS_ABI_VERSION)
  504. err = ib_copy_to_udata(udata, &resp_v3, sizeof(resp_v3));
  505. else
  506. err = ib_copy_to_udata(udata, &resp, sizeof(resp));
  507. if (err) {
  508. mlx4_uar_free(to_mdev(ibdev)->dev, &context->uar);
  509. kfree(context);
  510. return ERR_PTR(-EFAULT);
  511. }
  512. return &context->ibucontext;
  513. }
  514. static int mlx4_ib_dealloc_ucontext(struct ib_ucontext *ibcontext)
  515. {
  516. struct mlx4_ib_ucontext *context = to_mucontext(ibcontext);
  517. mlx4_uar_free(to_mdev(ibcontext->device)->dev, &context->uar);
  518. kfree(context);
  519. return 0;
  520. }
  521. static int mlx4_ib_mmap(struct ib_ucontext *context, struct vm_area_struct *vma)
  522. {
  523. struct mlx4_ib_dev *dev = to_mdev(context->device);
  524. if (vma->vm_end - vma->vm_start != PAGE_SIZE)
  525. return -EINVAL;
  526. if (vma->vm_pgoff == 0) {
  527. vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
  528. if (io_remap_pfn_range(vma, vma->vm_start,
  529. to_mucontext(context)->uar.pfn,
  530. PAGE_SIZE, vma->vm_page_prot))
  531. return -EAGAIN;
  532. } else if (vma->vm_pgoff == 1 && dev->dev->caps.bf_reg_size != 0) {
  533. vma->vm_page_prot = pgprot_writecombine(vma->vm_page_prot);
  534. if (io_remap_pfn_range(vma, vma->vm_start,
  535. to_mucontext(context)->uar.pfn +
  536. dev->dev->caps.num_uars,
  537. PAGE_SIZE, vma->vm_page_prot))
  538. return -EAGAIN;
  539. } else
  540. return -EINVAL;
  541. return 0;
  542. }
  543. static struct ib_pd *mlx4_ib_alloc_pd(struct ib_device *ibdev,
  544. struct ib_ucontext *context,
  545. struct ib_udata *udata)
  546. {
  547. struct mlx4_ib_pd *pd;
  548. int err;
  549. pd = kmalloc(sizeof *pd, GFP_KERNEL);
  550. if (!pd)
  551. return ERR_PTR(-ENOMEM);
  552. err = mlx4_pd_alloc(to_mdev(ibdev)->dev, &pd->pdn);
  553. if (err) {
  554. kfree(pd);
  555. return ERR_PTR(err);
  556. }
  557. if (context)
  558. if (ib_copy_to_udata(udata, &pd->pdn, sizeof (__u32))) {
  559. mlx4_pd_free(to_mdev(ibdev)->dev, pd->pdn);
  560. kfree(pd);
  561. return ERR_PTR(-EFAULT);
  562. }
  563. return &pd->ibpd;
  564. }
  565. static int mlx4_ib_dealloc_pd(struct ib_pd *pd)
  566. {
  567. mlx4_pd_free(to_mdev(pd->device)->dev, to_mpd(pd)->pdn);
  568. kfree(pd);
  569. return 0;
  570. }
  571. static struct ib_xrcd *mlx4_ib_alloc_xrcd(struct ib_device *ibdev,
  572. struct ib_ucontext *context,
  573. struct ib_udata *udata)
  574. {
  575. struct mlx4_ib_xrcd *xrcd;
  576. int err;
  577. if (!(to_mdev(ibdev)->dev->caps.flags & MLX4_DEV_CAP_FLAG_XRC))
  578. return ERR_PTR(-ENOSYS);
  579. xrcd = kmalloc(sizeof *xrcd, GFP_KERNEL);
  580. if (!xrcd)
  581. return ERR_PTR(-ENOMEM);
  582. err = mlx4_xrcd_alloc(to_mdev(ibdev)->dev, &xrcd->xrcdn);
  583. if (err)
  584. goto err1;
  585. xrcd->pd = ib_alloc_pd(ibdev);
  586. if (IS_ERR(xrcd->pd)) {
  587. err = PTR_ERR(xrcd->pd);
  588. goto err2;
  589. }
  590. xrcd->cq = ib_create_cq(ibdev, NULL, NULL, xrcd, 1, 0);
  591. if (IS_ERR(xrcd->cq)) {
  592. err = PTR_ERR(xrcd->cq);
  593. goto err3;
  594. }
  595. return &xrcd->ibxrcd;
  596. err3:
  597. ib_dealloc_pd(xrcd->pd);
  598. err2:
  599. mlx4_xrcd_free(to_mdev(ibdev)->dev, xrcd->xrcdn);
  600. err1:
  601. kfree(xrcd);
  602. return ERR_PTR(err);
  603. }
  604. static int mlx4_ib_dealloc_xrcd(struct ib_xrcd *xrcd)
  605. {
  606. ib_destroy_cq(to_mxrcd(xrcd)->cq);
  607. ib_dealloc_pd(to_mxrcd(xrcd)->pd);
  608. mlx4_xrcd_free(to_mdev(xrcd->device)->dev, to_mxrcd(xrcd)->xrcdn);
  609. kfree(xrcd);
  610. return 0;
  611. }
  612. static int add_gid_entry(struct ib_qp *ibqp, union ib_gid *gid)
  613. {
  614. struct mlx4_ib_qp *mqp = to_mqp(ibqp);
  615. struct mlx4_ib_dev *mdev = to_mdev(ibqp->device);
  616. struct mlx4_ib_gid_entry *ge;
  617. ge = kzalloc(sizeof *ge, GFP_KERNEL);
  618. if (!ge)
  619. return -ENOMEM;
  620. ge->gid = *gid;
  621. if (mlx4_ib_add_mc(mdev, mqp, gid)) {
  622. ge->port = mqp->port;
  623. ge->added = 1;
  624. }
  625. mutex_lock(&mqp->mutex);
  626. list_add_tail(&ge->list, &mqp->gid_list);
  627. mutex_unlock(&mqp->mutex);
  628. return 0;
  629. }
  630. int mlx4_ib_add_mc(struct mlx4_ib_dev *mdev, struct mlx4_ib_qp *mqp,
  631. union ib_gid *gid)
  632. {
  633. u8 mac[6];
  634. struct net_device *ndev;
  635. int ret = 0;
  636. if (!mqp->port)
  637. return 0;
  638. spin_lock(&mdev->iboe.lock);
  639. ndev = mdev->iboe.netdevs[mqp->port - 1];
  640. if (ndev)
  641. dev_hold(ndev);
  642. spin_unlock(&mdev->iboe.lock);
  643. if (ndev) {
  644. rdma_get_mcast_mac((struct in6_addr *)gid, mac);
  645. rtnl_lock();
  646. dev_mc_add(mdev->iboe.netdevs[mqp->port - 1], mac);
  647. ret = 1;
  648. rtnl_unlock();
  649. dev_put(ndev);
  650. }
  651. return ret;
  652. }
  653. struct mlx4_ib_steering {
  654. struct list_head list;
  655. u64 reg_id;
  656. union ib_gid gid;
  657. };
  658. static int mlx4_ib_mcg_attach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid)
  659. {
  660. int err;
  661. struct mlx4_ib_dev *mdev = to_mdev(ibqp->device);
  662. struct mlx4_ib_qp *mqp = to_mqp(ibqp);
  663. u64 reg_id;
  664. struct mlx4_ib_steering *ib_steering = NULL;
  665. if (mdev->dev->caps.steering_mode ==
  666. MLX4_STEERING_MODE_DEVICE_MANAGED) {
  667. ib_steering = kmalloc(sizeof(*ib_steering), GFP_KERNEL);
  668. if (!ib_steering)
  669. return -ENOMEM;
  670. }
  671. err = mlx4_multicast_attach(mdev->dev, &mqp->mqp, gid->raw, mqp->port,
  672. !!(mqp->flags &
  673. MLX4_IB_QP_BLOCK_MULTICAST_LOOPBACK),
  674. MLX4_PROT_IB_IPV6, &reg_id);
  675. if (err)
  676. goto err_malloc;
  677. err = add_gid_entry(ibqp, gid);
  678. if (err)
  679. goto err_add;
  680. if (ib_steering) {
  681. memcpy(ib_steering->gid.raw, gid->raw, 16);
  682. ib_steering->reg_id = reg_id;
  683. mutex_lock(&mqp->mutex);
  684. list_add(&ib_steering->list, &mqp->steering_rules);
  685. mutex_unlock(&mqp->mutex);
  686. }
  687. return 0;
  688. err_add:
  689. mlx4_multicast_detach(mdev->dev, &mqp->mqp, gid->raw,
  690. MLX4_PROT_IB_IPV6, reg_id);
  691. err_malloc:
  692. kfree(ib_steering);
  693. return err;
  694. }
  695. static struct mlx4_ib_gid_entry *find_gid_entry(struct mlx4_ib_qp *qp, u8 *raw)
  696. {
  697. struct mlx4_ib_gid_entry *ge;
  698. struct mlx4_ib_gid_entry *tmp;
  699. struct mlx4_ib_gid_entry *ret = NULL;
  700. list_for_each_entry_safe(ge, tmp, &qp->gid_list, list) {
  701. if (!memcmp(raw, ge->gid.raw, 16)) {
  702. ret = ge;
  703. break;
  704. }
  705. }
  706. return ret;
  707. }
  708. static int mlx4_ib_mcg_detach(struct ib_qp *ibqp, union ib_gid *gid, u16 lid)
  709. {
  710. int err;
  711. struct mlx4_ib_dev *mdev = to_mdev(ibqp->device);
  712. struct mlx4_ib_qp *mqp = to_mqp(ibqp);
  713. u8 mac[6];
  714. struct net_device *ndev;
  715. struct mlx4_ib_gid_entry *ge;
  716. u64 reg_id = 0;
  717. if (mdev->dev->caps.steering_mode ==
  718. MLX4_STEERING_MODE_DEVICE_MANAGED) {
  719. struct mlx4_ib_steering *ib_steering;
  720. mutex_lock(&mqp->mutex);
  721. list_for_each_entry(ib_steering, &mqp->steering_rules, list) {
  722. if (!memcmp(ib_steering->gid.raw, gid->raw, 16)) {
  723. list_del(&ib_steering->list);
  724. break;
  725. }
  726. }
  727. mutex_unlock(&mqp->mutex);
  728. if (&ib_steering->list == &mqp->steering_rules) {
  729. pr_err("Couldn't find reg_id for mgid. Steering rule is left attached\n");
  730. return -EINVAL;
  731. }
  732. reg_id = ib_steering->reg_id;
  733. kfree(ib_steering);
  734. }
  735. err = mlx4_multicast_detach(mdev->dev, &mqp->mqp, gid->raw,
  736. MLX4_PROT_IB_IPV6, reg_id);
  737. if (err)
  738. return err;
  739. mutex_lock(&mqp->mutex);
  740. ge = find_gid_entry(mqp, gid->raw);
  741. if (ge) {
  742. spin_lock(&mdev->iboe.lock);
  743. ndev = ge->added ? mdev->iboe.netdevs[ge->port - 1] : NULL;
  744. if (ndev)
  745. dev_hold(ndev);
  746. spin_unlock(&mdev->iboe.lock);
  747. rdma_get_mcast_mac((struct in6_addr *)gid, mac);
  748. if (ndev) {
  749. rtnl_lock();
  750. dev_mc_del(mdev->iboe.netdevs[ge->port - 1], mac);
  751. rtnl_unlock();
  752. dev_put(ndev);
  753. }
  754. list_del(&ge->list);
  755. kfree(ge);
  756. } else
  757. pr_warn("could not find mgid entry\n");
  758. mutex_unlock(&mqp->mutex);
  759. return 0;
  760. }
  761. static int init_node_data(struct mlx4_ib_dev *dev)
  762. {
  763. struct ib_smp *in_mad = NULL;
  764. struct ib_smp *out_mad = NULL;
  765. int mad_ifc_flags = MLX4_MAD_IFC_IGNORE_KEYS;
  766. int err = -ENOMEM;
  767. in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL);
  768. out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL);
  769. if (!in_mad || !out_mad)
  770. goto out;
  771. init_query_mad(in_mad);
  772. in_mad->attr_id = IB_SMP_ATTR_NODE_DESC;
  773. if (mlx4_is_master(dev->dev))
  774. mad_ifc_flags |= MLX4_MAD_IFC_NET_VIEW;
  775. err = mlx4_MAD_IFC(dev, mad_ifc_flags, 1, NULL, NULL, in_mad, out_mad);
  776. if (err)
  777. goto out;
  778. memcpy(dev->ib_dev.node_desc, out_mad->data, 64);
  779. in_mad->attr_id = IB_SMP_ATTR_NODE_INFO;
  780. err = mlx4_MAD_IFC(dev, mad_ifc_flags, 1, NULL, NULL, in_mad, out_mad);
  781. if (err)
  782. goto out;
  783. dev->dev->rev_id = be32_to_cpup((__be32 *) (out_mad->data + 32));
  784. memcpy(&dev->ib_dev.node_guid, out_mad->data + 12, 8);
  785. out:
  786. kfree(in_mad);
  787. kfree(out_mad);
  788. return err;
  789. }
  790. static ssize_t show_hca(struct device *device, struct device_attribute *attr,
  791. char *buf)
  792. {
  793. struct mlx4_ib_dev *dev =
  794. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  795. return sprintf(buf, "MT%d\n", dev->dev->pdev->device);
  796. }
  797. static ssize_t show_fw_ver(struct device *device, struct device_attribute *attr,
  798. char *buf)
  799. {
  800. struct mlx4_ib_dev *dev =
  801. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  802. return sprintf(buf, "%d.%d.%d\n", (int) (dev->dev->caps.fw_ver >> 32),
  803. (int) (dev->dev->caps.fw_ver >> 16) & 0xffff,
  804. (int) dev->dev->caps.fw_ver & 0xffff);
  805. }
  806. static ssize_t show_rev(struct device *device, struct device_attribute *attr,
  807. char *buf)
  808. {
  809. struct mlx4_ib_dev *dev =
  810. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  811. return sprintf(buf, "%x\n", dev->dev->rev_id);
  812. }
  813. static ssize_t show_board(struct device *device, struct device_attribute *attr,
  814. char *buf)
  815. {
  816. struct mlx4_ib_dev *dev =
  817. container_of(device, struct mlx4_ib_dev, ib_dev.dev);
  818. return sprintf(buf, "%.*s\n", MLX4_BOARD_ID_LEN,
  819. dev->dev->board_id);
  820. }
  821. static DEVICE_ATTR(hw_rev, S_IRUGO, show_rev, NULL);
  822. static DEVICE_ATTR(fw_ver, S_IRUGO, show_fw_ver, NULL);
  823. static DEVICE_ATTR(hca_type, S_IRUGO, show_hca, NULL);
  824. static DEVICE_ATTR(board_id, S_IRUGO, show_board, NULL);
  825. static struct device_attribute *mlx4_class_attributes[] = {
  826. &dev_attr_hw_rev,
  827. &dev_attr_fw_ver,
  828. &dev_attr_hca_type,
  829. &dev_attr_board_id
  830. };
  831. static void mlx4_addrconf_ifid_eui48(u8 *eui, u16 vlan_id, struct net_device *dev)
  832. {
  833. memcpy(eui, dev->dev_addr, 3);
  834. memcpy(eui + 5, dev->dev_addr + 3, 3);
  835. if (vlan_id < 0x1000) {
  836. eui[3] = vlan_id >> 8;
  837. eui[4] = vlan_id & 0xff;
  838. } else {
  839. eui[3] = 0xff;
  840. eui[4] = 0xfe;
  841. }
  842. eui[0] ^= 2;
  843. }
  844. static void update_gids_task(struct work_struct *work)
  845. {
  846. struct update_gid_work *gw = container_of(work, struct update_gid_work, work);
  847. struct mlx4_cmd_mailbox *mailbox;
  848. union ib_gid *gids;
  849. int err;
  850. struct mlx4_dev *dev = gw->dev->dev;
  851. mailbox = mlx4_alloc_cmd_mailbox(dev);
  852. if (IS_ERR(mailbox)) {
  853. pr_warn("update gid table failed %ld\n", PTR_ERR(mailbox));
  854. return;
  855. }
  856. gids = mailbox->buf;
  857. memcpy(gids, gw->gids, sizeof gw->gids);
  858. err = mlx4_cmd(dev, mailbox->dma, MLX4_SET_PORT_GID_TABLE << 8 | gw->port,
  859. 1, MLX4_CMD_SET_PORT, MLX4_CMD_TIME_CLASS_B,
  860. MLX4_CMD_WRAPPED);
  861. if (err)
  862. pr_warn("set port command failed\n");
  863. else {
  864. memcpy(gw->dev->iboe.gid_table[gw->port - 1], gw->gids, sizeof gw->gids);
  865. mlx4_ib_dispatch_event(gw->dev, gw->port, IB_EVENT_GID_CHANGE);
  866. }
  867. mlx4_free_cmd_mailbox(dev, mailbox);
  868. kfree(gw);
  869. }
  870. static int update_ipv6_gids(struct mlx4_ib_dev *dev, int port, int clear)
  871. {
  872. struct net_device *ndev = dev->iboe.netdevs[port - 1];
  873. struct update_gid_work *work;
  874. struct net_device *tmp;
  875. int i;
  876. u8 *hits;
  877. int ret;
  878. union ib_gid gid;
  879. int free;
  880. int found;
  881. int need_update = 0;
  882. u16 vid;
  883. work = kzalloc(sizeof *work, GFP_ATOMIC);
  884. if (!work)
  885. return -ENOMEM;
  886. hits = kzalloc(128, GFP_ATOMIC);
  887. if (!hits) {
  888. ret = -ENOMEM;
  889. goto out;
  890. }
  891. rcu_read_lock();
  892. for_each_netdev_rcu(&init_net, tmp) {
  893. if (ndev && (tmp == ndev || rdma_vlan_dev_real_dev(tmp) == ndev)) {
  894. gid.global.subnet_prefix = cpu_to_be64(0xfe80000000000000LL);
  895. vid = rdma_vlan_dev_vlan_id(tmp);
  896. mlx4_addrconf_ifid_eui48(&gid.raw[8], vid, ndev);
  897. found = 0;
  898. free = -1;
  899. for (i = 0; i < 128; ++i) {
  900. if (free < 0 &&
  901. !memcmp(&dev->iboe.gid_table[port - 1][i], &zgid, sizeof zgid))
  902. free = i;
  903. if (!memcmp(&dev->iboe.gid_table[port - 1][i], &gid, sizeof gid)) {
  904. hits[i] = 1;
  905. found = 1;
  906. break;
  907. }
  908. }
  909. if (!found) {
  910. if (tmp == ndev &&
  911. (memcmp(&dev->iboe.gid_table[port - 1][0],
  912. &gid, sizeof gid) ||
  913. !memcmp(&dev->iboe.gid_table[port - 1][0],
  914. &zgid, sizeof gid))) {
  915. dev->iboe.gid_table[port - 1][0] = gid;
  916. ++need_update;
  917. hits[0] = 1;
  918. } else if (free >= 0) {
  919. dev->iboe.gid_table[port - 1][free] = gid;
  920. hits[free] = 1;
  921. ++need_update;
  922. }
  923. }
  924. }
  925. }
  926. rcu_read_unlock();
  927. for (i = 0; i < 128; ++i)
  928. if (!hits[i]) {
  929. if (memcmp(&dev->iboe.gid_table[port - 1][i], &zgid, sizeof zgid))
  930. ++need_update;
  931. dev->iboe.gid_table[port - 1][i] = zgid;
  932. }
  933. if (need_update) {
  934. memcpy(work->gids, dev->iboe.gid_table[port - 1], sizeof work->gids);
  935. INIT_WORK(&work->work, update_gids_task);
  936. work->port = port;
  937. work->dev = dev;
  938. queue_work(wq, &work->work);
  939. } else
  940. kfree(work);
  941. kfree(hits);
  942. return 0;
  943. out:
  944. kfree(work);
  945. return ret;
  946. }
  947. static void handle_en_event(struct mlx4_ib_dev *dev, int port, unsigned long event)
  948. {
  949. switch (event) {
  950. case NETDEV_UP:
  951. case NETDEV_CHANGEADDR:
  952. update_ipv6_gids(dev, port, 0);
  953. break;
  954. case NETDEV_DOWN:
  955. update_ipv6_gids(dev, port, 1);
  956. dev->iboe.netdevs[port - 1] = NULL;
  957. }
  958. }
  959. static void netdev_added(struct mlx4_ib_dev *dev, int port)
  960. {
  961. update_ipv6_gids(dev, port, 0);
  962. }
  963. static void netdev_removed(struct mlx4_ib_dev *dev, int port)
  964. {
  965. update_ipv6_gids(dev, port, 1);
  966. }
  967. static int mlx4_ib_netdev_event(struct notifier_block *this, unsigned long event,
  968. void *ptr)
  969. {
  970. struct net_device *dev = ptr;
  971. struct mlx4_ib_dev *ibdev;
  972. struct net_device *oldnd;
  973. struct mlx4_ib_iboe *iboe;
  974. int port;
  975. if (!net_eq(dev_net(dev), &init_net))
  976. return NOTIFY_DONE;
  977. ibdev = container_of(this, struct mlx4_ib_dev, iboe.nb);
  978. iboe = &ibdev->iboe;
  979. spin_lock(&iboe->lock);
  980. mlx4_foreach_ib_transport_port(port, ibdev->dev) {
  981. oldnd = iboe->netdevs[port - 1];
  982. iboe->netdevs[port - 1] =
  983. mlx4_get_protocol_dev(ibdev->dev, MLX4_PROT_ETH, port);
  984. if (oldnd != iboe->netdevs[port - 1]) {
  985. if (iboe->netdevs[port - 1])
  986. netdev_added(ibdev, port);
  987. else
  988. netdev_removed(ibdev, port);
  989. }
  990. }
  991. if (dev == iboe->netdevs[0] ||
  992. (iboe->netdevs[0] && rdma_vlan_dev_real_dev(dev) == iboe->netdevs[0]))
  993. handle_en_event(ibdev, 1, event);
  994. else if (dev == iboe->netdevs[1]
  995. || (iboe->netdevs[1] && rdma_vlan_dev_real_dev(dev) == iboe->netdevs[1]))
  996. handle_en_event(ibdev, 2, event);
  997. spin_unlock(&iboe->lock);
  998. return NOTIFY_DONE;
  999. }
  1000. static void init_pkeys(struct mlx4_ib_dev *ibdev)
  1001. {
  1002. int port;
  1003. int slave;
  1004. int i;
  1005. if (mlx4_is_master(ibdev->dev)) {
  1006. for (slave = 0; slave <= ibdev->dev->num_vfs; ++slave) {
  1007. for (port = 1; port <= ibdev->dev->caps.num_ports; ++port) {
  1008. for (i = 0;
  1009. i < ibdev->dev->phys_caps.pkey_phys_table_len[port];
  1010. ++i) {
  1011. ibdev->pkeys.virt2phys_pkey[slave][port - 1][i] =
  1012. /* master has the identity virt2phys pkey mapping */
  1013. (slave == mlx4_master_func_num(ibdev->dev) || !i) ? i :
  1014. ibdev->dev->phys_caps.pkey_phys_table_len[port] - 1;
  1015. mlx4_sync_pkey_table(ibdev->dev, slave, port, i,
  1016. ibdev->pkeys.virt2phys_pkey[slave][port - 1][i]);
  1017. }
  1018. }
  1019. }
  1020. /* initialize pkey cache */
  1021. for (port = 1; port <= ibdev->dev->caps.num_ports; ++port) {
  1022. for (i = 0;
  1023. i < ibdev->dev->phys_caps.pkey_phys_table_len[port];
  1024. ++i)
  1025. ibdev->pkeys.phys_pkey_cache[port-1][i] =
  1026. (i) ? 0 : 0xFFFF;
  1027. }
  1028. }
  1029. }
  1030. static void mlx4_ib_alloc_eqs(struct mlx4_dev *dev, struct mlx4_ib_dev *ibdev)
  1031. {
  1032. char name[32];
  1033. int eq_per_port = 0;
  1034. int added_eqs = 0;
  1035. int total_eqs = 0;
  1036. int i, j, eq;
  1037. /* Legacy mode or comp_pool is not large enough */
  1038. if (dev->caps.comp_pool == 0 ||
  1039. dev->caps.num_ports > dev->caps.comp_pool)
  1040. return;
  1041. eq_per_port = rounddown_pow_of_two(dev->caps.comp_pool/
  1042. dev->caps.num_ports);
  1043. /* Init eq table */
  1044. added_eqs = 0;
  1045. mlx4_foreach_port(i, dev, MLX4_PORT_TYPE_IB)
  1046. added_eqs += eq_per_port;
  1047. total_eqs = dev->caps.num_comp_vectors + added_eqs;
  1048. ibdev->eq_table = kzalloc(total_eqs * sizeof(int), GFP_KERNEL);
  1049. if (!ibdev->eq_table)
  1050. return;
  1051. ibdev->eq_added = added_eqs;
  1052. eq = 0;
  1053. mlx4_foreach_port(i, dev, MLX4_PORT_TYPE_IB) {
  1054. for (j = 0; j < eq_per_port; j++) {
  1055. sprintf(name, "mlx4-ib-%d-%d@%s",
  1056. i, j, dev->pdev->bus->name);
  1057. /* Set IRQ for specific name (per ring) */
  1058. if (mlx4_assign_eq(dev, name, NULL,
  1059. &ibdev->eq_table[eq])) {
  1060. /* Use legacy (same as mlx4_en driver) */
  1061. pr_warn("Can't allocate EQ %d; reverting to legacy\n", eq);
  1062. ibdev->eq_table[eq] =
  1063. (eq % dev->caps.num_comp_vectors);
  1064. }
  1065. eq++;
  1066. }
  1067. }
  1068. /* Fill the reset of the vector with legacy EQ */
  1069. for (i = 0, eq = added_eqs; i < dev->caps.num_comp_vectors; i++)
  1070. ibdev->eq_table[eq++] = i;
  1071. /* Advertise the new number of EQs to clients */
  1072. ibdev->ib_dev.num_comp_vectors = total_eqs;
  1073. }
  1074. static void mlx4_ib_free_eqs(struct mlx4_dev *dev, struct mlx4_ib_dev *ibdev)
  1075. {
  1076. int i;
  1077. /* no additional eqs were added */
  1078. if (!ibdev->eq_table)
  1079. return;
  1080. /* Reset the advertised EQ number */
  1081. ibdev->ib_dev.num_comp_vectors = dev->caps.num_comp_vectors;
  1082. /* Free only the added eqs */
  1083. for (i = 0; i < ibdev->eq_added; i++) {
  1084. /* Don't free legacy eqs if used */
  1085. if (ibdev->eq_table[i] <= dev->caps.num_comp_vectors)
  1086. continue;
  1087. mlx4_release_eq(dev, ibdev->eq_table[i]);
  1088. }
  1089. kfree(ibdev->eq_table);
  1090. }
  1091. static void *mlx4_ib_add(struct mlx4_dev *dev)
  1092. {
  1093. struct mlx4_ib_dev *ibdev;
  1094. int num_ports = 0;
  1095. int i, j;
  1096. int err;
  1097. struct mlx4_ib_iboe *iboe;
  1098. pr_info_once("%s", mlx4_ib_version);
  1099. mlx4_foreach_non_ib_transport_port(i, dev)
  1100. num_ports++;
  1101. if (mlx4_is_mfunc(dev) && num_ports) {
  1102. dev_err(&dev->pdev->dev, "RoCE is not supported over SRIOV as yet\n");
  1103. return NULL;
  1104. }
  1105. num_ports = 0;
  1106. mlx4_foreach_ib_transport_port(i, dev)
  1107. num_ports++;
  1108. /* No point in registering a device with no ports... */
  1109. if (num_ports == 0)
  1110. return NULL;
  1111. ibdev = (struct mlx4_ib_dev *) ib_alloc_device(sizeof *ibdev);
  1112. if (!ibdev) {
  1113. dev_err(&dev->pdev->dev, "Device struct alloc failed\n");
  1114. return NULL;
  1115. }
  1116. iboe = &ibdev->iboe;
  1117. if (mlx4_pd_alloc(dev, &ibdev->priv_pdn))
  1118. goto err_dealloc;
  1119. if (mlx4_uar_alloc(dev, &ibdev->priv_uar))
  1120. goto err_pd;
  1121. ibdev->uar_map = ioremap((phys_addr_t) ibdev->priv_uar.pfn << PAGE_SHIFT,
  1122. PAGE_SIZE);
  1123. if (!ibdev->uar_map)
  1124. goto err_uar;
  1125. MLX4_INIT_DOORBELL_LOCK(&ibdev->uar_lock);
  1126. ibdev->dev = dev;
  1127. strlcpy(ibdev->ib_dev.name, "mlx4_%d", IB_DEVICE_NAME_MAX);
  1128. ibdev->ib_dev.owner = THIS_MODULE;
  1129. ibdev->ib_dev.node_type = RDMA_NODE_IB_CA;
  1130. ibdev->ib_dev.local_dma_lkey = dev->caps.reserved_lkey;
  1131. ibdev->num_ports = num_ports;
  1132. ibdev->ib_dev.phys_port_cnt = ibdev->num_ports;
  1133. ibdev->ib_dev.num_comp_vectors = dev->caps.num_comp_vectors;
  1134. ibdev->ib_dev.dma_device = &dev->pdev->dev;
  1135. if (dev->caps.userspace_caps)
  1136. ibdev->ib_dev.uverbs_abi_ver = MLX4_IB_UVERBS_ABI_VERSION;
  1137. else
  1138. ibdev->ib_dev.uverbs_abi_ver = MLX4_IB_UVERBS_NO_DEV_CAPS_ABI_VERSION;
  1139. ibdev->ib_dev.uverbs_cmd_mask =
  1140. (1ull << IB_USER_VERBS_CMD_GET_CONTEXT) |
  1141. (1ull << IB_USER_VERBS_CMD_QUERY_DEVICE) |
  1142. (1ull << IB_USER_VERBS_CMD_QUERY_PORT) |
  1143. (1ull << IB_USER_VERBS_CMD_ALLOC_PD) |
  1144. (1ull << IB_USER_VERBS_CMD_DEALLOC_PD) |
  1145. (1ull << IB_USER_VERBS_CMD_REG_MR) |
  1146. (1ull << IB_USER_VERBS_CMD_DEREG_MR) |
  1147. (1ull << IB_USER_VERBS_CMD_CREATE_COMP_CHANNEL) |
  1148. (1ull << IB_USER_VERBS_CMD_CREATE_CQ) |
  1149. (1ull << IB_USER_VERBS_CMD_RESIZE_CQ) |
  1150. (1ull << IB_USER_VERBS_CMD_DESTROY_CQ) |
  1151. (1ull << IB_USER_VERBS_CMD_CREATE_QP) |
  1152. (1ull << IB_USER_VERBS_CMD_MODIFY_QP) |
  1153. (1ull << IB_USER_VERBS_CMD_QUERY_QP) |
  1154. (1ull << IB_USER_VERBS_CMD_DESTROY_QP) |
  1155. (1ull << IB_USER_VERBS_CMD_ATTACH_MCAST) |
  1156. (1ull << IB_USER_VERBS_CMD_DETACH_MCAST) |
  1157. (1ull << IB_USER_VERBS_CMD_CREATE_SRQ) |
  1158. (1ull << IB_USER_VERBS_CMD_MODIFY_SRQ) |
  1159. (1ull << IB_USER_VERBS_CMD_QUERY_SRQ) |
  1160. (1ull << IB_USER_VERBS_CMD_DESTROY_SRQ) |
  1161. (1ull << IB_USER_VERBS_CMD_CREATE_XSRQ) |
  1162. (1ull << IB_USER_VERBS_CMD_OPEN_QP);
  1163. ibdev->ib_dev.query_device = mlx4_ib_query_device;
  1164. ibdev->ib_dev.query_port = mlx4_ib_query_port;
  1165. ibdev->ib_dev.get_link_layer = mlx4_ib_port_link_layer;
  1166. ibdev->ib_dev.query_gid = mlx4_ib_query_gid;
  1167. ibdev->ib_dev.query_pkey = mlx4_ib_query_pkey;
  1168. ibdev->ib_dev.modify_device = mlx4_ib_modify_device;
  1169. ibdev->ib_dev.modify_port = mlx4_ib_modify_port;
  1170. ibdev->ib_dev.alloc_ucontext = mlx4_ib_alloc_ucontext;
  1171. ibdev->ib_dev.dealloc_ucontext = mlx4_ib_dealloc_ucontext;
  1172. ibdev->ib_dev.mmap = mlx4_ib_mmap;
  1173. ibdev->ib_dev.alloc_pd = mlx4_ib_alloc_pd;
  1174. ibdev->ib_dev.dealloc_pd = mlx4_ib_dealloc_pd;
  1175. ibdev->ib_dev.create_ah = mlx4_ib_create_ah;
  1176. ibdev->ib_dev.query_ah = mlx4_ib_query_ah;
  1177. ibdev->ib_dev.destroy_ah = mlx4_ib_destroy_ah;
  1178. ibdev->ib_dev.create_srq = mlx4_ib_create_srq;
  1179. ibdev->ib_dev.modify_srq = mlx4_ib_modify_srq;
  1180. ibdev->ib_dev.query_srq = mlx4_ib_query_srq;
  1181. ibdev->ib_dev.destroy_srq = mlx4_ib_destroy_srq;
  1182. ibdev->ib_dev.post_srq_recv = mlx4_ib_post_srq_recv;
  1183. ibdev->ib_dev.create_qp = mlx4_ib_create_qp;
  1184. ibdev->ib_dev.modify_qp = mlx4_ib_modify_qp;
  1185. ibdev->ib_dev.query_qp = mlx4_ib_query_qp;
  1186. ibdev->ib_dev.destroy_qp = mlx4_ib_destroy_qp;
  1187. ibdev->ib_dev.post_send = mlx4_ib_post_send;
  1188. ibdev->ib_dev.post_recv = mlx4_ib_post_recv;
  1189. ibdev->ib_dev.create_cq = mlx4_ib_create_cq;
  1190. ibdev->ib_dev.modify_cq = mlx4_ib_modify_cq;
  1191. ibdev->ib_dev.resize_cq = mlx4_ib_resize_cq;
  1192. ibdev->ib_dev.destroy_cq = mlx4_ib_destroy_cq;
  1193. ibdev->ib_dev.poll_cq = mlx4_ib_poll_cq;
  1194. ibdev->ib_dev.req_notify_cq = mlx4_ib_arm_cq;
  1195. ibdev->ib_dev.get_dma_mr = mlx4_ib_get_dma_mr;
  1196. ibdev->ib_dev.reg_user_mr = mlx4_ib_reg_user_mr;
  1197. ibdev->ib_dev.dereg_mr = mlx4_ib_dereg_mr;
  1198. ibdev->ib_dev.alloc_fast_reg_mr = mlx4_ib_alloc_fast_reg_mr;
  1199. ibdev->ib_dev.alloc_fast_reg_page_list = mlx4_ib_alloc_fast_reg_page_list;
  1200. ibdev->ib_dev.free_fast_reg_page_list = mlx4_ib_free_fast_reg_page_list;
  1201. ibdev->ib_dev.attach_mcast = mlx4_ib_mcg_attach;
  1202. ibdev->ib_dev.detach_mcast = mlx4_ib_mcg_detach;
  1203. ibdev->ib_dev.process_mad = mlx4_ib_process_mad;
  1204. if (!mlx4_is_slave(ibdev->dev)) {
  1205. ibdev->ib_dev.alloc_fmr = mlx4_ib_fmr_alloc;
  1206. ibdev->ib_dev.map_phys_fmr = mlx4_ib_map_phys_fmr;
  1207. ibdev->ib_dev.unmap_fmr = mlx4_ib_unmap_fmr;
  1208. ibdev->ib_dev.dealloc_fmr = mlx4_ib_fmr_dealloc;
  1209. }
  1210. if (dev->caps.flags & MLX4_DEV_CAP_FLAG_MEM_WINDOW ||
  1211. dev->caps.bmme_flags & MLX4_BMME_FLAG_TYPE_2_WIN) {
  1212. ibdev->ib_dev.alloc_mw = mlx4_ib_alloc_mw;
  1213. ibdev->ib_dev.bind_mw = mlx4_ib_bind_mw;
  1214. ibdev->ib_dev.dealloc_mw = mlx4_ib_dealloc_mw;
  1215. ibdev->ib_dev.uverbs_cmd_mask |=
  1216. (1ull << IB_USER_VERBS_CMD_ALLOC_MW) |
  1217. (1ull << IB_USER_VERBS_CMD_DEALLOC_MW);
  1218. }
  1219. if (dev->caps.flags & MLX4_DEV_CAP_FLAG_XRC) {
  1220. ibdev->ib_dev.alloc_xrcd = mlx4_ib_alloc_xrcd;
  1221. ibdev->ib_dev.dealloc_xrcd = mlx4_ib_dealloc_xrcd;
  1222. ibdev->ib_dev.uverbs_cmd_mask |=
  1223. (1ull << IB_USER_VERBS_CMD_OPEN_XRCD) |
  1224. (1ull << IB_USER_VERBS_CMD_CLOSE_XRCD);
  1225. }
  1226. mlx4_ib_alloc_eqs(dev, ibdev);
  1227. spin_lock_init(&iboe->lock);
  1228. if (init_node_data(ibdev))
  1229. goto err_map;
  1230. for (i = 0; i < ibdev->num_ports; ++i) {
  1231. if (mlx4_ib_port_link_layer(&ibdev->ib_dev, i + 1) ==
  1232. IB_LINK_LAYER_ETHERNET) {
  1233. err = mlx4_counter_alloc(ibdev->dev, &ibdev->counters[i]);
  1234. if (err)
  1235. ibdev->counters[i] = -1;
  1236. } else
  1237. ibdev->counters[i] = -1;
  1238. }
  1239. spin_lock_init(&ibdev->sm_lock);
  1240. mutex_init(&ibdev->cap_mask_mutex);
  1241. if (ib_register_device(&ibdev->ib_dev, NULL))
  1242. goto err_counter;
  1243. if (mlx4_ib_mad_init(ibdev))
  1244. goto err_reg;
  1245. if (mlx4_ib_init_sriov(ibdev))
  1246. goto err_mad;
  1247. if (dev->caps.flags & MLX4_DEV_CAP_FLAG_IBOE && !iboe->nb.notifier_call) {
  1248. iboe->nb.notifier_call = mlx4_ib_netdev_event;
  1249. err = register_netdevice_notifier(&iboe->nb);
  1250. if (err)
  1251. goto err_sriov;
  1252. }
  1253. for (j = 0; j < ARRAY_SIZE(mlx4_class_attributes); ++j) {
  1254. if (device_create_file(&ibdev->ib_dev.dev,
  1255. mlx4_class_attributes[j]))
  1256. goto err_notif;
  1257. }
  1258. ibdev->ib_active = true;
  1259. if (mlx4_is_mfunc(ibdev->dev))
  1260. init_pkeys(ibdev);
  1261. /* create paravirt contexts for any VFs which are active */
  1262. if (mlx4_is_master(ibdev->dev)) {
  1263. for (j = 0; j < MLX4_MFUNC_MAX; j++) {
  1264. if (j == mlx4_master_func_num(ibdev->dev))
  1265. continue;
  1266. if (mlx4_is_slave_active(ibdev->dev, j))
  1267. do_slave_init(ibdev, j, 1);
  1268. }
  1269. }
  1270. return ibdev;
  1271. err_notif:
  1272. if (unregister_netdevice_notifier(&ibdev->iboe.nb))
  1273. pr_warn("failure unregistering notifier\n");
  1274. flush_workqueue(wq);
  1275. err_sriov:
  1276. mlx4_ib_close_sriov(ibdev);
  1277. err_mad:
  1278. mlx4_ib_mad_cleanup(ibdev);
  1279. err_reg:
  1280. ib_unregister_device(&ibdev->ib_dev);
  1281. err_counter:
  1282. for (; i; --i)
  1283. if (ibdev->counters[i - 1] != -1)
  1284. mlx4_counter_free(ibdev->dev, ibdev->counters[i - 1]);
  1285. err_map:
  1286. iounmap(ibdev->uar_map);
  1287. err_uar:
  1288. mlx4_uar_free(dev, &ibdev->priv_uar);
  1289. err_pd:
  1290. mlx4_pd_free(dev, ibdev->priv_pdn);
  1291. err_dealloc:
  1292. ib_dealloc_device(&ibdev->ib_dev);
  1293. return NULL;
  1294. }
  1295. static void mlx4_ib_remove(struct mlx4_dev *dev, void *ibdev_ptr)
  1296. {
  1297. struct mlx4_ib_dev *ibdev = ibdev_ptr;
  1298. int p;
  1299. mlx4_ib_close_sriov(ibdev);
  1300. mlx4_ib_mad_cleanup(ibdev);
  1301. ib_unregister_device(&ibdev->ib_dev);
  1302. if (ibdev->iboe.nb.notifier_call) {
  1303. if (unregister_netdevice_notifier(&ibdev->iboe.nb))
  1304. pr_warn("failure unregistering notifier\n");
  1305. ibdev->iboe.nb.notifier_call = NULL;
  1306. }
  1307. iounmap(ibdev->uar_map);
  1308. for (p = 0; p < ibdev->num_ports; ++p)
  1309. if (ibdev->counters[p] != -1)
  1310. mlx4_counter_free(ibdev->dev, ibdev->counters[p]);
  1311. mlx4_foreach_port(p, dev, MLX4_PORT_TYPE_IB)
  1312. mlx4_CLOSE_PORT(dev, p);
  1313. mlx4_ib_free_eqs(dev, ibdev);
  1314. mlx4_uar_free(dev, &ibdev->priv_uar);
  1315. mlx4_pd_free(dev, ibdev->priv_pdn);
  1316. ib_dealloc_device(&ibdev->ib_dev);
  1317. }
  1318. static void do_slave_init(struct mlx4_ib_dev *ibdev, int slave, int do_init)
  1319. {
  1320. struct mlx4_ib_demux_work **dm = NULL;
  1321. struct mlx4_dev *dev = ibdev->dev;
  1322. int i;
  1323. unsigned long flags;
  1324. if (!mlx4_is_master(dev))
  1325. return;
  1326. dm = kcalloc(dev->caps.num_ports, sizeof *dm, GFP_ATOMIC);
  1327. if (!dm) {
  1328. pr_err("failed to allocate memory for tunneling qp update\n");
  1329. goto out;
  1330. }
  1331. for (i = 0; i < dev->caps.num_ports; i++) {
  1332. dm[i] = kmalloc(sizeof (struct mlx4_ib_demux_work), GFP_ATOMIC);
  1333. if (!dm[i]) {
  1334. pr_err("failed to allocate memory for tunneling qp update work struct\n");
  1335. for (i = 0; i < dev->caps.num_ports; i++) {
  1336. if (dm[i])
  1337. kfree(dm[i]);
  1338. }
  1339. goto out;
  1340. }
  1341. }
  1342. /* initialize or tear down tunnel QPs for the slave */
  1343. for (i = 0; i < dev->caps.num_ports; i++) {
  1344. INIT_WORK(&dm[i]->work, mlx4_ib_tunnels_update_work);
  1345. dm[i]->port = i + 1;
  1346. dm[i]->slave = slave;
  1347. dm[i]->do_init = do_init;
  1348. dm[i]->dev = ibdev;
  1349. spin_lock_irqsave(&ibdev->sriov.going_down_lock, flags);
  1350. if (!ibdev->sriov.is_going_down)
  1351. queue_work(ibdev->sriov.demux[i].ud_wq, &dm[i]->work);
  1352. spin_unlock_irqrestore(&ibdev->sriov.going_down_lock, flags);
  1353. }
  1354. out:
  1355. kfree(dm);
  1356. return;
  1357. }
  1358. static void mlx4_ib_event(struct mlx4_dev *dev, void *ibdev_ptr,
  1359. enum mlx4_dev_event event, unsigned long param)
  1360. {
  1361. struct ib_event ibev;
  1362. struct mlx4_ib_dev *ibdev = to_mdev((struct ib_device *) ibdev_ptr);
  1363. struct mlx4_eqe *eqe = NULL;
  1364. struct ib_event_work *ew;
  1365. int p = 0;
  1366. if (event == MLX4_DEV_EVENT_PORT_MGMT_CHANGE)
  1367. eqe = (struct mlx4_eqe *)param;
  1368. else
  1369. p = (int) param;
  1370. switch (event) {
  1371. case MLX4_DEV_EVENT_PORT_UP:
  1372. if (p > ibdev->num_ports)
  1373. return;
  1374. if (mlx4_is_master(dev) &&
  1375. rdma_port_get_link_layer(&ibdev->ib_dev, p) ==
  1376. IB_LINK_LAYER_INFINIBAND) {
  1377. mlx4_ib_invalidate_all_guid_record(ibdev, p);
  1378. }
  1379. ibev.event = IB_EVENT_PORT_ACTIVE;
  1380. break;
  1381. case MLX4_DEV_EVENT_PORT_DOWN:
  1382. if (p > ibdev->num_ports)
  1383. return;
  1384. ibev.event = IB_EVENT_PORT_ERR;
  1385. break;
  1386. case MLX4_DEV_EVENT_CATASTROPHIC_ERROR:
  1387. ibdev->ib_active = false;
  1388. ibev.event = IB_EVENT_DEVICE_FATAL;
  1389. break;
  1390. case MLX4_DEV_EVENT_PORT_MGMT_CHANGE:
  1391. ew = kmalloc(sizeof *ew, GFP_ATOMIC);
  1392. if (!ew) {
  1393. pr_err("failed to allocate memory for events work\n");
  1394. break;
  1395. }
  1396. INIT_WORK(&ew->work, handle_port_mgmt_change_event);
  1397. memcpy(&ew->ib_eqe, eqe, sizeof *eqe);
  1398. ew->ib_dev = ibdev;
  1399. /* need to queue only for port owner, which uses GEN_EQE */
  1400. if (mlx4_is_master(dev))
  1401. queue_work(wq, &ew->work);
  1402. else
  1403. handle_port_mgmt_change_event(&ew->work);
  1404. return;
  1405. case MLX4_DEV_EVENT_SLAVE_INIT:
  1406. /* here, p is the slave id */
  1407. do_slave_init(ibdev, p, 1);
  1408. return;
  1409. case MLX4_DEV_EVENT_SLAVE_SHUTDOWN:
  1410. /* here, p is the slave id */
  1411. do_slave_init(ibdev, p, 0);
  1412. return;
  1413. default:
  1414. return;
  1415. }
  1416. ibev.device = ibdev_ptr;
  1417. ibev.element.port_num = (u8) p;
  1418. ib_dispatch_event(&ibev);
  1419. }
  1420. static struct mlx4_interface mlx4_ib_interface = {
  1421. .add = mlx4_ib_add,
  1422. .remove = mlx4_ib_remove,
  1423. .event = mlx4_ib_event,
  1424. .protocol = MLX4_PROT_IB_IPV6
  1425. };
  1426. static int __init mlx4_ib_init(void)
  1427. {
  1428. int err;
  1429. wq = create_singlethread_workqueue("mlx4_ib");
  1430. if (!wq)
  1431. return -ENOMEM;
  1432. err = mlx4_ib_mcg_init();
  1433. if (err)
  1434. goto clean_wq;
  1435. err = mlx4_register_interface(&mlx4_ib_interface);
  1436. if (err)
  1437. goto clean_mcg;
  1438. return 0;
  1439. clean_mcg:
  1440. mlx4_ib_mcg_destroy();
  1441. clean_wq:
  1442. destroy_workqueue(wq);
  1443. return err;
  1444. }
  1445. static void __exit mlx4_ib_cleanup(void)
  1446. {
  1447. mlx4_unregister_interface(&mlx4_ib_interface);
  1448. mlx4_ib_mcg_destroy();
  1449. destroy_workqueue(wq);
  1450. }
  1451. module_init(mlx4_ib_init);
  1452. module_exit(mlx4_ib_cleanup);