ocrdma_ah.c 8.6 KB

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  1. /* This file is part of the Emulex RoCE Device Driver for
  2. * RoCE (RDMA over Converged Ethernet) adapters.
  3. * Copyright (C) 2012-2015 Emulex. All rights reserved.
  4. * EMULEX and SLI are trademarks of Emulex.
  5. * www.emulex.com
  6. *
  7. * This software is available to you under a choice of one of two licenses.
  8. * You may choose to be licensed under the terms of the GNU General Public
  9. * License (GPL) Version 2, available from the file COPYING in the main
  10. * directory of this source tree, or the BSD license below:
  11. *
  12. * Redistribution and use in source and binary forms, with or without
  13. * modification, are permitted provided that the following conditions
  14. * are met:
  15. *
  16. * - Redistributions of source code must retain the above copyright notice,
  17. * this list of conditions and the following disclaimer.
  18. *
  19. * - Redistributions in binary form must reproduce the above copyright
  20. * notice, this list of conditions and the following disclaimer in
  21. * the documentation and/or other materials provided with the distribution.
  22. *
  23. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  24. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,THE
  25. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  26. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
  27. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  28. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  29. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  30. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
  31. * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
  32. * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
  33. * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  34. *
  35. * Contact Information:
  36. * linux-drivers@emulex.com
  37. *
  38. * Emulex
  39. * 3333 Susan Street
  40. * Costa Mesa, CA 92626
  41. */
  42. #include <net/neighbour.h>
  43. #include <net/netevent.h>
  44. #include <rdma/ib_addr.h>
  45. #include <rdma/ib_mad.h>
  46. #include <rdma/ib_cache.h>
  47. #include "ocrdma.h"
  48. #include "ocrdma_verbs.h"
  49. #include "ocrdma_ah.h"
  50. #include "ocrdma_hw.h"
  51. #include "ocrdma_stats.h"
  52. #define OCRDMA_VID_PCP_SHIFT 0xD
  53. static u16 ocrdma_hdr_type_to_proto_num(int devid, u8 hdr_type)
  54. {
  55. switch (hdr_type) {
  56. case OCRDMA_L3_TYPE_IB_GRH:
  57. return (u16)ETH_P_IBOE;
  58. case OCRDMA_L3_TYPE_IPV4:
  59. return (u16)0x0800;
  60. case OCRDMA_L3_TYPE_IPV6:
  61. return (u16)0x86dd;
  62. default:
  63. pr_err("ocrdma%d: Invalid network header\n", devid);
  64. return 0;
  65. }
  66. }
  67. static inline int set_av_attr(struct ocrdma_dev *dev, struct ocrdma_ah *ah,
  68. struct rdma_ah_attr *attr, const union ib_gid *sgid,
  69. int pdid, bool *isvlan, u16 vlan_tag)
  70. {
  71. int status;
  72. struct ocrdma_eth_vlan eth;
  73. struct ocrdma_grh grh;
  74. int eth_sz;
  75. u16 proto_num = 0;
  76. u8 nxthdr = 0x11;
  77. struct iphdr ipv4;
  78. const struct ib_global_route *ib_grh;
  79. union {
  80. struct sockaddr_in _sockaddr_in;
  81. struct sockaddr_in6 _sockaddr_in6;
  82. } sgid_addr, dgid_addr;
  83. memset(&eth, 0, sizeof(eth));
  84. memset(&grh, 0, sizeof(grh));
  85. /* Protocol Number */
  86. proto_num = ocrdma_hdr_type_to_proto_num(dev->id, ah->hdr_type);
  87. if (!proto_num)
  88. return -EINVAL;
  89. nxthdr = (proto_num == ETH_P_IBOE) ? 0x1b : 0x11;
  90. /* VLAN */
  91. if (!vlan_tag || (vlan_tag > 0xFFF))
  92. vlan_tag = dev->pvid;
  93. if (vlan_tag || dev->pfc_state) {
  94. if (!vlan_tag) {
  95. pr_err("ocrdma%d:Using VLAN with PFC is recommended\n",
  96. dev->id);
  97. pr_err("ocrdma%d:Using VLAN 0 for this connection\n",
  98. dev->id);
  99. }
  100. eth.eth_type = cpu_to_be16(0x8100);
  101. eth.roce_eth_type = cpu_to_be16(proto_num);
  102. vlan_tag |= (dev->sl & 0x07) << OCRDMA_VID_PCP_SHIFT;
  103. eth.vlan_tag = cpu_to_be16(vlan_tag);
  104. eth_sz = sizeof(struct ocrdma_eth_vlan);
  105. *isvlan = true;
  106. } else {
  107. eth.eth_type = cpu_to_be16(proto_num);
  108. eth_sz = sizeof(struct ocrdma_eth_basic);
  109. }
  110. /* MAC */
  111. memcpy(&eth.smac[0], &dev->nic_info.mac_addr[0], ETH_ALEN);
  112. status = ocrdma_resolve_dmac(dev, attr, &eth.dmac[0]);
  113. if (status)
  114. return status;
  115. ib_grh = rdma_ah_read_grh(attr);
  116. ah->sgid_index = ib_grh->sgid_index;
  117. /* Eth HDR */
  118. memcpy(&ah->av->eth_hdr, &eth, eth_sz);
  119. if (ah->hdr_type == RDMA_NETWORK_IPV4) {
  120. *((__be16 *)&ipv4) = htons((4 << 12) | (5 << 8) |
  121. ib_grh->traffic_class);
  122. ipv4.id = cpu_to_be16(pdid);
  123. ipv4.frag_off = htons(IP_DF);
  124. ipv4.tot_len = htons(0);
  125. ipv4.ttl = ib_grh->hop_limit;
  126. ipv4.protocol = nxthdr;
  127. rdma_gid2ip((struct sockaddr *)&sgid_addr, sgid);
  128. ipv4.saddr = sgid_addr._sockaddr_in.sin_addr.s_addr;
  129. rdma_gid2ip((struct sockaddr*)&dgid_addr, &ib_grh->dgid);
  130. ipv4.daddr = dgid_addr._sockaddr_in.sin_addr.s_addr;
  131. memcpy((u8 *)ah->av + eth_sz, &ipv4, sizeof(struct iphdr));
  132. } else {
  133. memcpy(&grh.sgid[0], sgid->raw, sizeof(union ib_gid));
  134. grh.tclass_flow = cpu_to_be32((6 << 28) |
  135. (ib_grh->traffic_class << 24) |
  136. ib_grh->flow_label);
  137. memcpy(&grh.dgid[0], ib_grh->dgid.raw,
  138. sizeof(ib_grh->dgid.raw));
  139. grh.pdid_hoplimit = cpu_to_be32((pdid << 16) |
  140. (nxthdr << 8) |
  141. ib_grh->hop_limit);
  142. memcpy((u8 *)ah->av + eth_sz, &grh, sizeof(struct ocrdma_grh));
  143. }
  144. if (*isvlan)
  145. ah->av->valid |= OCRDMA_AV_VLAN_VALID;
  146. ah->av->valid = cpu_to_le32(ah->av->valid);
  147. return status;
  148. }
  149. struct ib_ah *ocrdma_create_ah(struct ib_pd *ibpd, struct rdma_ah_attr *attr,
  150. struct ib_udata *udata)
  151. {
  152. u32 *ahid_addr;
  153. int status;
  154. struct ocrdma_ah *ah;
  155. bool isvlan = false;
  156. u16 vlan_tag = 0xffff;
  157. const struct ib_gid_attr *sgid_attr;
  158. struct ocrdma_pd *pd = get_ocrdma_pd(ibpd);
  159. struct ocrdma_dev *dev = get_ocrdma_dev(ibpd->device);
  160. if ((attr->type != RDMA_AH_ATTR_TYPE_ROCE) ||
  161. !(rdma_ah_get_ah_flags(attr) & IB_AH_GRH))
  162. return ERR_PTR(-EINVAL);
  163. if (atomic_cmpxchg(&dev->update_sl, 1, 0))
  164. ocrdma_init_service_level(dev);
  165. ah = kzalloc(sizeof(*ah), GFP_ATOMIC);
  166. if (!ah)
  167. return ERR_PTR(-ENOMEM);
  168. status = ocrdma_alloc_av(dev, ah);
  169. if (status)
  170. goto av_err;
  171. sgid_attr = attr->grh.sgid_attr;
  172. if (is_vlan_dev(sgid_attr->ndev))
  173. vlan_tag = vlan_dev_vlan_id(sgid_attr->ndev);
  174. /* Get network header type for this GID */
  175. ah->hdr_type = rdma_gid_attr_network_type(sgid_attr);
  176. status = set_av_attr(dev, ah, attr, &sgid_attr->gid, pd->id,
  177. &isvlan, vlan_tag);
  178. if (status)
  179. goto av_conf_err;
  180. /* if pd is for the user process, pass the ah_id to user space */
  181. if ((pd->uctx) && (pd->uctx->ah_tbl.va)) {
  182. ahid_addr = pd->uctx->ah_tbl.va + rdma_ah_get_dlid(attr);
  183. *ahid_addr = 0;
  184. *ahid_addr |= ah->id & OCRDMA_AH_ID_MASK;
  185. if (ocrdma_is_udp_encap_supported(dev)) {
  186. *ahid_addr |= ((u32)ah->hdr_type &
  187. OCRDMA_AH_L3_TYPE_MASK) <<
  188. OCRDMA_AH_L3_TYPE_SHIFT;
  189. }
  190. if (isvlan)
  191. *ahid_addr |= (OCRDMA_AH_VLAN_VALID_MASK <<
  192. OCRDMA_AH_VLAN_VALID_SHIFT);
  193. }
  194. return &ah->ibah;
  195. av_conf_err:
  196. ocrdma_free_av(dev, ah);
  197. av_err:
  198. kfree(ah);
  199. return ERR_PTR(status);
  200. }
  201. int ocrdma_destroy_ah(struct ib_ah *ibah)
  202. {
  203. struct ocrdma_ah *ah = get_ocrdma_ah(ibah);
  204. struct ocrdma_dev *dev = get_ocrdma_dev(ibah->device);
  205. ocrdma_free_av(dev, ah);
  206. kfree(ah);
  207. return 0;
  208. }
  209. int ocrdma_query_ah(struct ib_ah *ibah, struct rdma_ah_attr *attr)
  210. {
  211. struct ocrdma_ah *ah = get_ocrdma_ah(ibah);
  212. struct ocrdma_av *av = ah->av;
  213. struct ocrdma_grh *grh;
  214. attr->type = ibah->type;
  215. if (ah->av->valid & OCRDMA_AV_VALID) {
  216. grh = (struct ocrdma_grh *)((u8 *)ah->av +
  217. sizeof(struct ocrdma_eth_vlan));
  218. rdma_ah_set_sl(attr, be16_to_cpu(av->eth_hdr.vlan_tag) >> 13);
  219. } else {
  220. grh = (struct ocrdma_grh *)((u8 *)ah->av +
  221. sizeof(struct ocrdma_eth_basic));
  222. rdma_ah_set_sl(attr, 0);
  223. }
  224. rdma_ah_set_grh(attr, NULL,
  225. be32_to_cpu(grh->tclass_flow) & 0xffffffff,
  226. ah->sgid_index,
  227. be32_to_cpu(grh->pdid_hoplimit) & 0xff,
  228. be32_to_cpu(grh->tclass_flow) >> 24);
  229. rdma_ah_set_dgid_raw(attr, &grh->dgid[0]);
  230. return 0;
  231. }
  232. int ocrdma_process_mad(struct ib_device *ibdev,
  233. int process_mad_flags,
  234. u8 port_num,
  235. const struct ib_wc *in_wc,
  236. const struct ib_grh *in_grh,
  237. const struct ib_mad_hdr *in, size_t in_mad_size,
  238. struct ib_mad_hdr *out, size_t *out_mad_size,
  239. u16 *out_mad_pkey_index)
  240. {
  241. int status;
  242. struct ocrdma_dev *dev;
  243. const struct ib_mad *in_mad = (const struct ib_mad *)in;
  244. struct ib_mad *out_mad = (struct ib_mad *)out;
  245. if (WARN_ON_ONCE(in_mad_size != sizeof(*in_mad) ||
  246. *out_mad_size != sizeof(*out_mad)))
  247. return IB_MAD_RESULT_FAILURE;
  248. switch (in_mad->mad_hdr.mgmt_class) {
  249. case IB_MGMT_CLASS_PERF_MGMT:
  250. dev = get_ocrdma_dev(ibdev);
  251. if (!ocrdma_pma_counters(dev, out_mad))
  252. status = IB_MAD_RESULT_SUCCESS | IB_MAD_RESULT_REPLY;
  253. else
  254. status = IB_MAD_RESULT_SUCCESS;
  255. break;
  256. default:
  257. status = IB_MAD_RESULT_SUCCESS;
  258. break;
  259. }
  260. return status;
  261. }