be_mgmt.c 45 KB

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  1. /*
  2. * This file is part of the Emulex Linux Device Driver for Enterprise iSCSI
  3. * Host Bus Adapters. Refer to the README file included with this package
  4. * for driver version and adapter compatibility.
  5. *
  6. * Copyright (c) 2018 Broadcom. All Rights Reserved.
  7. * The term “Broadcom” refers to Broadcom Inc. and/or its subsidiaries.
  8. *
  9. * This program is free software; you can redistribute it and/or modify it
  10. * under the terms of version 2 of the GNU General Public License as published
  11. * by the Free Software Foundation.
  12. *
  13. * This program is distributed in the hope that it will be useful. ALL EXPRESS
  14. * OR IMPLIED CONDITIONS, REPRESENTATIONS AND WARRANTIES, INCLUDING ANY
  15. * IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE,
  16. * OR NON-INFRINGEMENT, ARE DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH
  17. * DISCLAIMERS ARE HELD TO BE LEGALLY INVALID.
  18. * See the GNU General Public License for more details, a copy of which
  19. * can be found in the file COPYING included with this package.
  20. *
  21. * Contact Information:
  22. * [email protected]
  23. *
  24. */
  25. #include <linux/bsg-lib.h>
  26. #include <scsi/scsi_transport_iscsi.h>
  27. #include <scsi/scsi_bsg_iscsi.h>
  28. #include "be_mgmt.h"
  29. #include "be_iscsi.h"
  30. #include "be_main.h"
  31. unsigned int mgmt_vendor_specific_fw_cmd(struct be_ctrl_info *ctrl,
  32. struct beiscsi_hba *phba,
  33. struct bsg_job *job,
  34. struct be_dma_mem *nonemb_cmd)
  35. {
  36. struct be_mcc_wrb *wrb;
  37. struct be_sge *mcc_sge;
  38. unsigned int tag = 0;
  39. struct iscsi_bsg_request *bsg_req = job->request;
  40. struct be_bsg_vendor_cmd *req = nonemb_cmd->va;
  41. unsigned short region, sector_size, sector, offset;
  42. nonemb_cmd->size = job->request_payload.payload_len;
  43. memset(nonemb_cmd->va, 0, nonemb_cmd->size);
  44. region = bsg_req->rqst_data.h_vendor.vendor_cmd[1];
  45. sector_size = bsg_req->rqst_data.h_vendor.vendor_cmd[2];
  46. sector = bsg_req->rqst_data.h_vendor.vendor_cmd[3];
  47. offset = bsg_req->rqst_data.h_vendor.vendor_cmd[4];
  48. req->region = region;
  49. req->sector = sector;
  50. req->offset = offset;
  51. if (mutex_lock_interruptible(&ctrl->mbox_lock))
  52. return 0;
  53. switch (bsg_req->rqst_data.h_vendor.vendor_cmd[0]) {
  54. case BEISCSI_WRITE_FLASH:
  55. offset = sector * sector_size + offset;
  56. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI,
  57. OPCODE_COMMON_WRITE_FLASH, sizeof(*req));
  58. sg_copy_to_buffer(job->request_payload.sg_list,
  59. job->request_payload.sg_cnt,
  60. nonemb_cmd->va + offset, job->request_len);
  61. break;
  62. case BEISCSI_READ_FLASH:
  63. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI,
  64. OPCODE_COMMON_READ_FLASH, sizeof(*req));
  65. break;
  66. default:
  67. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  68. "BG_%d : Unsupported cmd = 0x%x\n\n",
  69. bsg_req->rqst_data.h_vendor.vendor_cmd[0]);
  70. mutex_unlock(&ctrl->mbox_lock);
  71. return -EPERM;
  72. }
  73. wrb = alloc_mcc_wrb(phba, &tag);
  74. if (!wrb) {
  75. mutex_unlock(&ctrl->mbox_lock);
  76. return 0;
  77. }
  78. mcc_sge = nonembedded_sgl(wrb);
  79. be_wrb_hdr_prepare(wrb, nonemb_cmd->size, false,
  80. job->request_payload.sg_cnt);
  81. mcc_sge->pa_hi = cpu_to_le32(upper_32_bits(nonemb_cmd->dma));
  82. mcc_sge->pa_lo = cpu_to_le32(nonemb_cmd->dma & 0xFFFFFFFF);
  83. mcc_sge->len = cpu_to_le32(nonemb_cmd->size);
  84. be_mcc_notify(phba, tag);
  85. mutex_unlock(&ctrl->mbox_lock);
  86. return tag;
  87. }
  88. /**
  89. * mgmt_open_connection()- Establish a TCP CXN
  90. * @phba: driver priv structure
  91. * @dst_addr: Destination Address
  92. * @beiscsi_ep: ptr to device endpoint struct
  93. * @nonemb_cmd: ptr to memory allocated for command
  94. *
  95. * return
  96. * Success: Tag number of the MBX Command issued
  97. * Failure: Error code
  98. **/
  99. int mgmt_open_connection(struct beiscsi_hba *phba,
  100. struct sockaddr *dst_addr,
  101. struct beiscsi_endpoint *beiscsi_ep,
  102. struct be_dma_mem *nonemb_cmd)
  103. {
  104. struct hwi_controller *phwi_ctrlr;
  105. struct hwi_context_memory *phwi_context;
  106. struct sockaddr_in *daddr_in = (struct sockaddr_in *)dst_addr;
  107. struct sockaddr_in6 *daddr_in6 = (struct sockaddr_in6 *)dst_addr;
  108. struct be_ctrl_info *ctrl = &phba->ctrl;
  109. struct be_mcc_wrb *wrb;
  110. struct tcp_connect_and_offload_in_v1 *req;
  111. unsigned short def_hdr_id;
  112. unsigned short def_data_id;
  113. struct phys_addr template_address = { 0, 0 };
  114. struct phys_addr *ptemplate_address;
  115. unsigned int tag = 0;
  116. unsigned int i, ulp_num;
  117. unsigned short cid = beiscsi_ep->ep_cid;
  118. struct be_sge *sge;
  119. if (dst_addr->sa_family != PF_INET && dst_addr->sa_family != PF_INET6) {
  120. beiscsi_log(phba, KERN_ERR, BEISCSI_LOG_CONFIG,
  121. "BG_%d : unknown addr family %d\n",
  122. dst_addr->sa_family);
  123. return 0;
  124. }
  125. phwi_ctrlr = phba->phwi_ctrlr;
  126. phwi_context = phwi_ctrlr->phwi_ctxt;
  127. ulp_num = phwi_ctrlr->wrb_context[BE_GET_CRI_FROM_CID(cid)].ulp_num;
  128. def_hdr_id = (unsigned short)HWI_GET_DEF_HDRQ_ID(phba, ulp_num);
  129. def_data_id = (unsigned short)HWI_GET_DEF_BUFQ_ID(phba, ulp_num);
  130. ptemplate_address = &template_address;
  131. ISCSI_GET_PDU_TEMPLATE_ADDRESS(phba, ptemplate_address);
  132. if (mutex_lock_interruptible(&ctrl->mbox_lock))
  133. return 0;
  134. wrb = alloc_mcc_wrb(phba, &tag);
  135. if (!wrb) {
  136. mutex_unlock(&ctrl->mbox_lock);
  137. return 0;
  138. }
  139. sge = nonembedded_sgl(wrb);
  140. req = nonemb_cmd->va;
  141. memset(req, 0, sizeof(*req));
  142. be_wrb_hdr_prepare(wrb, nonemb_cmd->size, false, 1);
  143. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI,
  144. OPCODE_COMMON_ISCSI_TCP_CONNECT_AND_OFFLOAD,
  145. nonemb_cmd->size);
  146. if (dst_addr->sa_family == PF_INET) {
  147. __be32 s_addr = daddr_in->sin_addr.s_addr;
  148. req->ip_address.ip_type = BEISCSI_IP_TYPE_V4;
  149. req->ip_address.addr[0] = s_addr & 0x000000ff;
  150. req->ip_address.addr[1] = (s_addr & 0x0000ff00) >> 8;
  151. req->ip_address.addr[2] = (s_addr & 0x00ff0000) >> 16;
  152. req->ip_address.addr[3] = (s_addr & 0xff000000) >> 24;
  153. req->tcp_port = ntohs(daddr_in->sin_port);
  154. beiscsi_ep->dst_addr = daddr_in->sin_addr.s_addr;
  155. beiscsi_ep->dst_tcpport = ntohs(daddr_in->sin_port);
  156. beiscsi_ep->ip_type = BEISCSI_IP_TYPE_V4;
  157. } else {
  158. /* else its PF_INET6 family */
  159. req->ip_address.ip_type = BEISCSI_IP_TYPE_V6;
  160. memcpy(&req->ip_address.addr,
  161. &daddr_in6->sin6_addr.in6_u.u6_addr8, 16);
  162. req->tcp_port = ntohs(daddr_in6->sin6_port);
  163. beiscsi_ep->dst_tcpport = ntohs(daddr_in6->sin6_port);
  164. memcpy(&beiscsi_ep->dst6_addr,
  165. &daddr_in6->sin6_addr.in6_u.u6_addr8, 16);
  166. beiscsi_ep->ip_type = BEISCSI_IP_TYPE_V6;
  167. }
  168. req->cid = cid;
  169. i = phba->nxt_cqid++;
  170. if (phba->nxt_cqid == phba->num_cpus)
  171. phba->nxt_cqid = 0;
  172. req->cq_id = phwi_context->be_cq[i].id;
  173. beiscsi_log(phba, KERN_INFO, BEISCSI_LOG_CONFIG,
  174. "BG_%d : i=%d cq_id=%d\n", i, req->cq_id);
  175. req->defq_id = def_hdr_id;
  176. req->hdr_ring_id = def_hdr_id;
  177. req->data_ring_id = def_data_id;
  178. req->do_offload = 1;
  179. req->dataout_template_pa.lo = ptemplate_address->lo;
  180. req->dataout_template_pa.hi = ptemplate_address->hi;
  181. sge->pa_hi = cpu_to_le32(upper_32_bits(nonemb_cmd->dma));
  182. sge->pa_lo = cpu_to_le32(nonemb_cmd->dma & 0xFFFFFFFF);
  183. sge->len = cpu_to_le32(nonemb_cmd->size);
  184. if (!is_chip_be2_be3r(phba)) {
  185. req->hdr.version = MBX_CMD_VER1;
  186. req->tcp_window_size = 0x8000;
  187. req->tcp_window_scale_count = 2;
  188. }
  189. be_mcc_notify(phba, tag);
  190. mutex_unlock(&ctrl->mbox_lock);
  191. return tag;
  192. }
  193. /**
  194. * beiscsi_exec_nemb_cmd()- execute non-embedded MBX cmd
  195. * @phba: driver priv structure
  196. * @nonemb_cmd: DMA address of the MBX command to be issued
  197. * @cbfn: callback func on MCC completion
  198. * @resp_buf: buffer to copy the MBX cmd response
  199. * @resp_buf_len: response length to be copied
  200. *
  201. **/
  202. static int beiscsi_exec_nemb_cmd(struct beiscsi_hba *phba,
  203. struct be_dma_mem *nonemb_cmd,
  204. void (*cbfn)(struct beiscsi_hba *,
  205. unsigned int),
  206. void *resp_buf, u32 resp_buf_len)
  207. {
  208. struct be_ctrl_info *ctrl = &phba->ctrl;
  209. struct be_mcc_wrb *wrb;
  210. struct be_sge *sge;
  211. unsigned int tag;
  212. int rc = 0;
  213. mutex_lock(&ctrl->mbox_lock);
  214. wrb = alloc_mcc_wrb(phba, &tag);
  215. if (!wrb) {
  216. mutex_unlock(&ctrl->mbox_lock);
  217. return -ENOMEM;
  218. }
  219. sge = nonembedded_sgl(wrb);
  220. be_wrb_hdr_prepare(wrb, nonemb_cmd->size, false, 1);
  221. sge->pa_hi = cpu_to_le32(upper_32_bits(nonemb_cmd->dma));
  222. sge->pa_lo = cpu_to_le32(lower_32_bits(nonemb_cmd->dma));
  223. sge->len = cpu_to_le32(nonemb_cmd->size);
  224. if (cbfn) {
  225. struct be_dma_mem *tag_mem;
  226. set_bit(MCC_TAG_STATE_ASYNC, &ctrl->ptag_state[tag].tag_state);
  227. ctrl->ptag_state[tag].cbfn = cbfn;
  228. tag_mem = &phba->ctrl.ptag_state[tag].tag_mem_state;
  229. /* store DMA mem to be freed in callback */
  230. tag_mem->size = nonemb_cmd->size;
  231. tag_mem->va = nonemb_cmd->va;
  232. tag_mem->dma = nonemb_cmd->dma;
  233. }
  234. be_mcc_notify(phba, tag);
  235. mutex_unlock(&ctrl->mbox_lock);
  236. /* with cbfn set, its async cmd, don't wait */
  237. if (cbfn)
  238. return 0;
  239. rc = beiscsi_mccq_compl_wait(phba, tag, NULL, nonemb_cmd);
  240. /* copy the response, if any */
  241. if (resp_buf)
  242. memcpy(resp_buf, nonemb_cmd->va, resp_buf_len);
  243. return rc;
  244. }
  245. static int beiscsi_prep_nemb_cmd(struct beiscsi_hba *phba,
  246. struct be_dma_mem *cmd,
  247. u8 subsystem, u8 opcode, u32 size)
  248. {
  249. cmd->va = dma_alloc_coherent(&phba->ctrl.pdev->dev, size, &cmd->dma,
  250. GFP_KERNEL);
  251. if (!cmd->va) {
  252. beiscsi_log(phba, KERN_ERR, BEISCSI_LOG_CONFIG,
  253. "BG_%d : Failed to allocate memory for if info\n");
  254. return -ENOMEM;
  255. }
  256. cmd->size = size;
  257. be_cmd_hdr_prepare(cmd->va, subsystem, opcode, size);
  258. beiscsi_log(phba, KERN_INFO, BEISCSI_LOG_CONFIG,
  259. "BG_%d : subsystem %u cmd %u size %u\n",
  260. subsystem, opcode, size);
  261. return 0;
  262. }
  263. static void beiscsi_free_nemb_cmd(struct beiscsi_hba *phba,
  264. struct be_dma_mem *cmd, int rc)
  265. {
  266. /*
  267. * If FW is busy the DMA buffer is saved with the tag. When the cmd
  268. * completes this buffer is freed.
  269. */
  270. if (rc == -EBUSY)
  271. return;
  272. dma_free_coherent(&phba->ctrl.pdev->dev, cmd->size, cmd->va, cmd->dma);
  273. }
  274. static void __beiscsi_eq_delay_compl(struct beiscsi_hba *phba, unsigned int tag)
  275. {
  276. struct be_dma_mem *tag_mem;
  277. /* status is ignored */
  278. __beiscsi_mcc_compl_status(phba, tag, NULL, NULL);
  279. tag_mem = &phba->ctrl.ptag_state[tag].tag_mem_state;
  280. if (tag_mem->size) {
  281. dma_free_coherent(&phba->pcidev->dev, tag_mem->size,
  282. tag_mem->va, tag_mem->dma);
  283. tag_mem->size = 0;
  284. }
  285. }
  286. int beiscsi_modify_eq_delay(struct beiscsi_hba *phba,
  287. struct be_set_eqd *set_eqd, int num)
  288. {
  289. struct be_cmd_req_modify_eq_delay *req;
  290. struct be_dma_mem nonemb_cmd;
  291. int i, rc;
  292. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_COMMON,
  293. OPCODE_COMMON_MODIFY_EQ_DELAY, sizeof(*req));
  294. if (rc)
  295. return rc;
  296. req = nonemb_cmd.va;
  297. req->num_eq = cpu_to_le32(num);
  298. for (i = 0; i < num; i++) {
  299. req->delay[i].eq_id = cpu_to_le32(set_eqd[i].eq_id);
  300. req->delay[i].phase = 0;
  301. req->delay[i].delay_multiplier =
  302. cpu_to_le32(set_eqd[i].delay_multiplier);
  303. }
  304. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, __beiscsi_eq_delay_compl,
  305. NULL, 0);
  306. if (rc) {
  307. /*
  308. * Only free on failure. Async cmds are handled like -EBUSY
  309. * where it's handled for us.
  310. */
  311. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  312. }
  313. return rc;
  314. }
  315. /**
  316. * beiscsi_get_initiator_name - read initiator name from flash
  317. * @phba: device priv structure
  318. * @name: buffer pointer
  319. * @cfg: fetch user configured
  320. *
  321. */
  322. int beiscsi_get_initiator_name(struct beiscsi_hba *phba, char *name, bool cfg)
  323. {
  324. struct be_dma_mem nonemb_cmd;
  325. struct be_cmd_hba_name resp;
  326. struct be_cmd_hba_name *req;
  327. int rc;
  328. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI_INI,
  329. OPCODE_ISCSI_INI_CFG_GET_HBA_NAME, sizeof(resp));
  330. if (rc)
  331. return rc;
  332. req = nonemb_cmd.va;
  333. if (cfg)
  334. req->hdr.version = 1;
  335. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL,
  336. &resp, sizeof(resp));
  337. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  338. if (rc) {
  339. beiscsi_log(phba, KERN_ERR,
  340. BEISCSI_LOG_CONFIG | BEISCSI_LOG_MBOX,
  341. "BS_%d : Initiator Name MBX Failed\n");
  342. return rc;
  343. }
  344. rc = sprintf(name, "%s\n", resp.initiator_name);
  345. return rc;
  346. }
  347. unsigned int beiscsi_if_get_handle(struct beiscsi_hba *phba)
  348. {
  349. struct be_ctrl_info *ctrl = &phba->ctrl;
  350. struct be_mcc_wrb *wrb;
  351. struct be_cmd_get_all_if_id_req *req;
  352. struct be_cmd_get_all_if_id_req *pbe_allid;
  353. unsigned int tag;
  354. int status = 0;
  355. if (mutex_lock_interruptible(&ctrl->mbox_lock))
  356. return -EINTR;
  357. wrb = alloc_mcc_wrb(phba, &tag);
  358. if (!wrb) {
  359. mutex_unlock(&ctrl->mbox_lock);
  360. return -ENOMEM;
  361. }
  362. req = embedded_payload(wrb);
  363. be_wrb_hdr_prepare(wrb, sizeof(*req), true, 0);
  364. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI,
  365. OPCODE_COMMON_ISCSI_NTWK_GET_ALL_IF_ID,
  366. sizeof(*req));
  367. be_mcc_notify(phba, tag);
  368. mutex_unlock(&ctrl->mbox_lock);
  369. status = beiscsi_mccq_compl_wait(phba, tag, &wrb, NULL);
  370. if (status) {
  371. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  372. "BG_%d : %s failed: %d\n", __func__, status);
  373. return -EBUSY;
  374. }
  375. pbe_allid = embedded_payload(wrb);
  376. /* we now support only one interface per function */
  377. phba->interface_handle = pbe_allid->if_hndl_list[0];
  378. return status;
  379. }
  380. static inline bool beiscsi_if_zero_ip(u8 *ip, u32 ip_type)
  381. {
  382. u32 len;
  383. len = (ip_type < BEISCSI_IP_TYPE_V6) ? IP_V4_LEN : IP_V6_LEN;
  384. while (len && !ip[len - 1])
  385. len--;
  386. return (len == 0);
  387. }
  388. static int beiscsi_if_mod_gw(struct beiscsi_hba *phba,
  389. u32 action, u32 ip_type, u8 *gw)
  390. {
  391. struct be_cmd_set_def_gateway_req *req;
  392. struct be_dma_mem nonemb_cmd;
  393. int rt_val;
  394. rt_val = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  395. OPCODE_COMMON_ISCSI_NTWK_MODIFY_DEFAULT_GATEWAY,
  396. sizeof(*req));
  397. if (rt_val)
  398. return rt_val;
  399. req = nonemb_cmd.va;
  400. req->action = action;
  401. req->ip_addr.ip_type = ip_type;
  402. memcpy(req->ip_addr.addr, gw,
  403. (ip_type < BEISCSI_IP_TYPE_V6) ? IP_V4_LEN : IP_V6_LEN);
  404. rt_val = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, NULL, 0);
  405. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rt_val);
  406. return rt_val;
  407. }
  408. int beiscsi_if_set_gw(struct beiscsi_hba *phba, u32 ip_type, u8 *gw)
  409. {
  410. struct be_cmd_get_def_gateway_resp gw_resp;
  411. int rt_val;
  412. memset(&gw_resp, 0, sizeof(gw_resp));
  413. rt_val = beiscsi_if_get_gw(phba, ip_type, &gw_resp);
  414. if (rt_val) {
  415. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  416. "BG_%d : Failed to Get Gateway Addr\n");
  417. return rt_val;
  418. }
  419. if (!beiscsi_if_zero_ip(gw_resp.ip_addr.addr, ip_type)) {
  420. rt_val = beiscsi_if_mod_gw(phba, IP_ACTION_DEL, ip_type,
  421. gw_resp.ip_addr.addr);
  422. if (rt_val) {
  423. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  424. "BG_%d : Failed to clear Gateway Addr Set\n");
  425. return rt_val;
  426. }
  427. }
  428. rt_val = beiscsi_if_mod_gw(phba, IP_ACTION_ADD, ip_type, gw);
  429. if (rt_val)
  430. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  431. "BG_%d : Failed to Set Gateway Addr\n");
  432. return rt_val;
  433. }
  434. int beiscsi_if_get_gw(struct beiscsi_hba *phba, u32 ip_type,
  435. struct be_cmd_get_def_gateway_resp *resp)
  436. {
  437. struct be_cmd_get_def_gateway_req *req;
  438. struct be_dma_mem nonemb_cmd;
  439. int rc;
  440. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  441. OPCODE_COMMON_ISCSI_NTWK_GET_DEFAULT_GATEWAY,
  442. sizeof(*resp));
  443. if (rc)
  444. return rc;
  445. req = nonemb_cmd.va;
  446. req->ip_type = ip_type;
  447. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, resp,
  448. sizeof(*resp));
  449. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  450. return rc;
  451. }
  452. static int
  453. beiscsi_if_clr_ip(struct beiscsi_hba *phba,
  454. struct be_cmd_get_if_info_resp *if_info)
  455. {
  456. struct be_cmd_set_ip_addr_req *req;
  457. struct be_dma_mem nonemb_cmd;
  458. int rc;
  459. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  460. OPCODE_COMMON_ISCSI_NTWK_MODIFY_IP_ADDR,
  461. sizeof(*req));
  462. if (rc)
  463. return rc;
  464. req = nonemb_cmd.va;
  465. req->ip_params.record_entry_count = 1;
  466. req->ip_params.ip_record.action = IP_ACTION_DEL;
  467. req->ip_params.ip_record.interface_hndl =
  468. phba->interface_handle;
  469. req->ip_params.ip_record.ip_addr.size_of_structure =
  470. sizeof(struct be_ip_addr_subnet_format);
  471. req->ip_params.ip_record.ip_addr.ip_type = if_info->ip_addr.ip_type;
  472. memcpy(req->ip_params.ip_record.ip_addr.addr,
  473. if_info->ip_addr.addr,
  474. sizeof(if_info->ip_addr.addr));
  475. memcpy(req->ip_params.ip_record.ip_addr.subnet_mask,
  476. if_info->ip_addr.subnet_mask,
  477. sizeof(if_info->ip_addr.subnet_mask));
  478. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, NULL, 0);
  479. if (rc < 0 || req->ip_params.ip_record.status) {
  480. beiscsi_log(phba, KERN_INFO, BEISCSI_LOG_CONFIG,
  481. "BG_%d : failed to clear IP: rc %d status %d\n",
  482. rc, req->ip_params.ip_record.status);
  483. }
  484. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  485. return rc;
  486. }
  487. static int
  488. beiscsi_if_set_ip(struct beiscsi_hba *phba, u8 *ip,
  489. u8 *subnet, u32 ip_type)
  490. {
  491. struct be_cmd_set_ip_addr_req *req;
  492. struct be_dma_mem nonemb_cmd;
  493. uint32_t ip_len;
  494. int rc;
  495. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  496. OPCODE_COMMON_ISCSI_NTWK_MODIFY_IP_ADDR,
  497. sizeof(*req));
  498. if (rc)
  499. return rc;
  500. req = nonemb_cmd.va;
  501. req->ip_params.record_entry_count = 1;
  502. req->ip_params.ip_record.action = IP_ACTION_ADD;
  503. req->ip_params.ip_record.interface_hndl =
  504. phba->interface_handle;
  505. req->ip_params.ip_record.ip_addr.size_of_structure =
  506. sizeof(struct be_ip_addr_subnet_format);
  507. req->ip_params.ip_record.ip_addr.ip_type = ip_type;
  508. ip_len = (ip_type < BEISCSI_IP_TYPE_V6) ? IP_V4_LEN : IP_V6_LEN;
  509. memcpy(req->ip_params.ip_record.ip_addr.addr, ip, ip_len);
  510. if (subnet)
  511. memcpy(req->ip_params.ip_record.ip_addr.subnet_mask,
  512. subnet, ip_len);
  513. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, NULL, 0);
  514. /**
  515. * In some cases, host needs to look into individual record status
  516. * even though FW reported success for that IOCTL.
  517. */
  518. if (rc < 0 || req->ip_params.ip_record.status) {
  519. __beiscsi_log(phba, KERN_ERR,
  520. "BG_%d : failed to set IP: rc %d status %d\n",
  521. rc, req->ip_params.ip_record.status);
  522. if (req->ip_params.ip_record.status)
  523. rc = -EINVAL;
  524. }
  525. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  526. return rc;
  527. }
  528. int beiscsi_if_en_static(struct beiscsi_hba *phba, u32 ip_type,
  529. u8 *ip, u8 *subnet)
  530. {
  531. struct be_cmd_get_if_info_resp *if_info;
  532. struct be_cmd_rel_dhcp_req *reldhcp;
  533. struct be_dma_mem nonemb_cmd;
  534. int rc;
  535. rc = beiscsi_if_get_info(phba, ip_type, &if_info);
  536. if (rc)
  537. return rc;
  538. if (if_info->dhcp_state) {
  539. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd,
  540. CMD_SUBSYSTEM_ISCSI,
  541. OPCODE_COMMON_ISCSI_NTWK_REL_STATELESS_IP_ADDR,
  542. sizeof(*reldhcp));
  543. if (rc)
  544. goto exit;
  545. reldhcp = nonemb_cmd.va;
  546. reldhcp->interface_hndl = phba->interface_handle;
  547. reldhcp->ip_type = ip_type;
  548. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, NULL, 0);
  549. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  550. if (rc < 0) {
  551. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  552. "BG_%d : failed to release existing DHCP: %d\n",
  553. rc);
  554. goto exit;
  555. }
  556. }
  557. /* first delete any IP set */
  558. if (!beiscsi_if_zero_ip(if_info->ip_addr.addr, ip_type)) {
  559. rc = beiscsi_if_clr_ip(phba, if_info);
  560. if (rc)
  561. goto exit;
  562. }
  563. /* if ip == NULL then this is called just to release DHCP IP */
  564. if (ip)
  565. rc = beiscsi_if_set_ip(phba, ip, subnet, ip_type);
  566. exit:
  567. kfree(if_info);
  568. return rc;
  569. }
  570. int beiscsi_if_en_dhcp(struct beiscsi_hba *phba, u32 ip_type)
  571. {
  572. struct be_cmd_get_def_gateway_resp gw_resp;
  573. struct be_cmd_get_if_info_resp *if_info;
  574. struct be_cmd_set_dhcp_req *dhcpreq;
  575. struct be_dma_mem nonemb_cmd;
  576. u8 *gw;
  577. int rc;
  578. rc = beiscsi_if_get_info(phba, ip_type, &if_info);
  579. if (rc)
  580. return rc;
  581. if (if_info->dhcp_state) {
  582. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  583. "BG_%d : DHCP Already Enabled\n");
  584. goto exit;
  585. }
  586. /* first delete any IP set */
  587. if (!beiscsi_if_zero_ip(if_info->ip_addr.addr, ip_type)) {
  588. rc = beiscsi_if_clr_ip(phba, if_info);
  589. if (rc)
  590. goto exit;
  591. }
  592. /* delete gateway settings if mode change is to DHCP */
  593. memset(&gw_resp, 0, sizeof(gw_resp));
  594. /* use ip_type provided in if_info */
  595. rc = beiscsi_if_get_gw(phba, if_info->ip_addr.ip_type, &gw_resp);
  596. if (rc) {
  597. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  598. "BG_%d : Failed to Get Gateway Addr\n");
  599. goto exit;
  600. }
  601. gw = (u8 *)&gw_resp.ip_addr.addr;
  602. if (!beiscsi_if_zero_ip(gw, if_info->ip_addr.ip_type)) {
  603. rc = beiscsi_if_mod_gw(phba, IP_ACTION_DEL,
  604. if_info->ip_addr.ip_type, gw);
  605. if (rc) {
  606. beiscsi_log(phba, KERN_WARNING, BEISCSI_LOG_CONFIG,
  607. "BG_%d : Failed to clear Gateway Addr Set\n");
  608. goto exit;
  609. }
  610. }
  611. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  612. OPCODE_COMMON_ISCSI_NTWK_CONFIG_STATELESS_IP_ADDR,
  613. sizeof(*dhcpreq));
  614. if (rc)
  615. goto exit;
  616. dhcpreq = nonemb_cmd.va;
  617. dhcpreq->flags = 1; /* 1 - blocking; 0 - non-blocking */
  618. dhcpreq->retry_count = 1;
  619. dhcpreq->interface_hndl = phba->interface_handle;
  620. dhcpreq->ip_type = ip_type;
  621. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, NULL, 0);
  622. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  623. exit:
  624. kfree(if_info);
  625. return rc;
  626. }
  627. /**
  628. * beiscsi_if_set_vlan()- Issue and wait for CMD completion
  629. * @phba: device private structure instance
  630. * @vlan_tag: VLAN tag
  631. *
  632. * Issue the MBX Cmd and wait for the completion of the
  633. * command.
  634. *
  635. * returns
  636. * Success: 0
  637. * Failure: Non-Xero Value
  638. **/
  639. int beiscsi_if_set_vlan(struct beiscsi_hba *phba, uint16_t vlan_tag)
  640. {
  641. int rc;
  642. unsigned int tag;
  643. tag = be_cmd_set_vlan(phba, vlan_tag);
  644. if (!tag) {
  645. beiscsi_log(phba, KERN_ERR,
  646. (BEISCSI_LOG_CONFIG | BEISCSI_LOG_MBOX),
  647. "BG_%d : VLAN Setting Failed\n");
  648. return -EBUSY;
  649. }
  650. rc = beiscsi_mccq_compl_wait(phba, tag, NULL, NULL);
  651. if (rc) {
  652. beiscsi_log(phba, KERN_ERR,
  653. (BEISCSI_LOG_CONFIG | BEISCSI_LOG_MBOX),
  654. "BS_%d : VLAN MBX Cmd Failed\n");
  655. return rc;
  656. }
  657. return rc;
  658. }
  659. int beiscsi_if_get_info(struct beiscsi_hba *phba, int ip_type,
  660. struct be_cmd_get_if_info_resp **if_info)
  661. {
  662. struct be_cmd_get_if_info_req *req;
  663. struct be_dma_mem nonemb_cmd;
  664. uint32_t ioctl_size = sizeof(struct be_cmd_get_if_info_resp);
  665. int rc;
  666. rc = beiscsi_if_get_handle(phba);
  667. if (rc)
  668. return rc;
  669. do {
  670. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd,
  671. CMD_SUBSYSTEM_ISCSI,
  672. OPCODE_COMMON_ISCSI_NTWK_GET_IF_INFO,
  673. ioctl_size);
  674. if (rc)
  675. return rc;
  676. req = nonemb_cmd.va;
  677. req->interface_hndl = phba->interface_handle;
  678. req->ip_type = ip_type;
  679. /* Allocate memory for if_info */
  680. *if_info = kzalloc(ioctl_size, GFP_KERNEL);
  681. if (!*if_info) {
  682. beiscsi_log(phba, KERN_ERR,
  683. BEISCSI_LOG_INIT | BEISCSI_LOG_CONFIG,
  684. "BG_%d : Memory Allocation Failure\n");
  685. beiscsi_free_nemb_cmd(phba, &nonemb_cmd,
  686. -ENOMEM);
  687. return -ENOMEM;
  688. }
  689. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, *if_info,
  690. ioctl_size);
  691. /* Check if the error is because of Insufficent_Buffer */
  692. if (rc == -EAGAIN) {
  693. /* Get the new memory size */
  694. ioctl_size = ((struct be_cmd_resp_hdr *)
  695. nonemb_cmd.va)->actual_resp_len;
  696. ioctl_size += sizeof(struct be_cmd_req_hdr);
  697. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  698. /* Free the virtual memory */
  699. kfree(*if_info);
  700. } else {
  701. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  702. break;
  703. }
  704. } while (true);
  705. return rc;
  706. }
  707. int mgmt_get_nic_conf(struct beiscsi_hba *phba,
  708. struct be_cmd_get_nic_conf_resp *nic)
  709. {
  710. struct be_dma_mem nonemb_cmd;
  711. int rc;
  712. rc = beiscsi_prep_nemb_cmd(phba, &nonemb_cmd, CMD_SUBSYSTEM_ISCSI,
  713. OPCODE_COMMON_ISCSI_NTWK_GET_NIC_CONFIG,
  714. sizeof(*nic));
  715. if (rc)
  716. return rc;
  717. rc = beiscsi_exec_nemb_cmd(phba, &nonemb_cmd, NULL, nic, sizeof(*nic));
  718. beiscsi_free_nemb_cmd(phba, &nonemb_cmd, rc);
  719. return rc;
  720. }
  721. static void beiscsi_boot_process_compl(struct beiscsi_hba *phba,
  722. unsigned int tag)
  723. {
  724. struct be_cmd_get_boot_target_resp *boot_resp;
  725. struct be_cmd_resp_logout_fw_sess *logo_resp;
  726. struct be_cmd_get_session_resp *sess_resp;
  727. struct be_mcc_wrb *wrb;
  728. struct boot_struct *bs;
  729. int boot_work, status;
  730. if (!test_bit(BEISCSI_HBA_BOOT_WORK, &phba->state)) {
  731. __beiscsi_log(phba, KERN_ERR,
  732. "BG_%d : %s no boot work %lx\n",
  733. __func__, phba->state);
  734. return;
  735. }
  736. if (phba->boot_struct.tag != tag) {
  737. __beiscsi_log(phba, KERN_ERR,
  738. "BG_%d : %s tag mismatch %d:%d\n",
  739. __func__, tag, phba->boot_struct.tag);
  740. return;
  741. }
  742. bs = &phba->boot_struct;
  743. boot_work = 1;
  744. status = 0;
  745. switch (bs->action) {
  746. case BEISCSI_BOOT_REOPEN_SESS:
  747. status = __beiscsi_mcc_compl_status(phba, tag, NULL, NULL);
  748. if (!status)
  749. bs->action = BEISCSI_BOOT_GET_SHANDLE;
  750. else
  751. bs->retry--;
  752. break;
  753. case BEISCSI_BOOT_GET_SHANDLE:
  754. status = __beiscsi_mcc_compl_status(phba, tag, &wrb, NULL);
  755. if (!status) {
  756. boot_resp = embedded_payload(wrb);
  757. bs->s_handle = boot_resp->boot_session_handle;
  758. }
  759. if (bs->s_handle == BE_BOOT_INVALID_SHANDLE) {
  760. bs->action = BEISCSI_BOOT_REOPEN_SESS;
  761. bs->retry--;
  762. } else {
  763. bs->action = BEISCSI_BOOT_GET_SINFO;
  764. }
  765. break;
  766. case BEISCSI_BOOT_GET_SINFO:
  767. status = __beiscsi_mcc_compl_status(phba, tag, NULL,
  768. &bs->nonemb_cmd);
  769. if (!status) {
  770. sess_resp = bs->nonemb_cmd.va;
  771. memcpy(&bs->boot_sess, &sess_resp->session_info,
  772. sizeof(struct mgmt_session_info));
  773. bs->action = BEISCSI_BOOT_LOGOUT_SESS;
  774. } else {
  775. __beiscsi_log(phba, KERN_ERR,
  776. "BG_%d : get boot session info error : 0x%x\n",
  777. status);
  778. boot_work = 0;
  779. }
  780. dma_free_coherent(&phba->ctrl.pdev->dev, bs->nonemb_cmd.size,
  781. bs->nonemb_cmd.va, bs->nonemb_cmd.dma);
  782. bs->nonemb_cmd.va = NULL;
  783. break;
  784. case BEISCSI_BOOT_LOGOUT_SESS:
  785. status = __beiscsi_mcc_compl_status(phba, tag, &wrb, NULL);
  786. if (!status) {
  787. logo_resp = embedded_payload(wrb);
  788. if (logo_resp->session_status != BE_SESS_STATUS_CLOSE) {
  789. __beiscsi_log(phba, KERN_ERR,
  790. "BG_%d : FW boot session logout error : 0x%x\n",
  791. logo_resp->session_status);
  792. }
  793. }
  794. /* continue to create boot_kset even if logout failed? */
  795. bs->action = BEISCSI_BOOT_CREATE_KSET;
  796. break;
  797. default:
  798. break;
  799. }
  800. /* clear the tag so no other completion matches this tag */
  801. bs->tag = 0;
  802. if (!bs->retry) {
  803. boot_work = 0;
  804. __beiscsi_log(phba, KERN_ERR,
  805. "BG_%d : failed to setup boot target: status %d action %d\n",
  806. status, bs->action);
  807. }
  808. if (!boot_work) {
  809. /* wait for next event to start boot_work */
  810. clear_bit(BEISCSI_HBA_BOOT_WORK, &phba->state);
  811. return;
  812. }
  813. schedule_work(&phba->boot_work);
  814. }
  815. /**
  816. * beiscsi_boot_logout_sess()- Logout from boot FW session
  817. * @phba: Device priv structure instance
  818. *
  819. * return
  820. * the TAG used for MBOX Command
  821. *
  822. */
  823. unsigned int beiscsi_boot_logout_sess(struct beiscsi_hba *phba)
  824. {
  825. struct be_ctrl_info *ctrl = &phba->ctrl;
  826. struct be_mcc_wrb *wrb;
  827. struct be_cmd_req_logout_fw_sess *req;
  828. unsigned int tag;
  829. mutex_lock(&ctrl->mbox_lock);
  830. wrb = alloc_mcc_wrb(phba, &tag);
  831. if (!wrb) {
  832. mutex_unlock(&ctrl->mbox_lock);
  833. return 0;
  834. }
  835. req = embedded_payload(wrb);
  836. be_wrb_hdr_prepare(wrb, sizeof(*req), true, 0);
  837. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI_INI,
  838. OPCODE_ISCSI_INI_SESSION_LOGOUT_TARGET,
  839. sizeof(struct be_cmd_req_logout_fw_sess));
  840. /* Use the session handle copied into boot_sess */
  841. req->session_handle = phba->boot_struct.boot_sess.session_handle;
  842. phba->boot_struct.tag = tag;
  843. set_bit(MCC_TAG_STATE_ASYNC, &ctrl->ptag_state[tag].tag_state);
  844. ctrl->ptag_state[tag].cbfn = beiscsi_boot_process_compl;
  845. be_mcc_notify(phba, tag);
  846. mutex_unlock(&ctrl->mbox_lock);
  847. return tag;
  848. }
  849. /**
  850. * beiscsi_boot_reopen_sess()- Reopen boot session
  851. * @phba: Device priv structure instance
  852. *
  853. * return
  854. * the TAG used for MBOX Command
  855. *
  856. **/
  857. unsigned int beiscsi_boot_reopen_sess(struct beiscsi_hba *phba)
  858. {
  859. struct be_ctrl_info *ctrl = &phba->ctrl;
  860. struct be_mcc_wrb *wrb;
  861. struct be_cmd_reopen_session_req *req;
  862. unsigned int tag;
  863. mutex_lock(&ctrl->mbox_lock);
  864. wrb = alloc_mcc_wrb(phba, &tag);
  865. if (!wrb) {
  866. mutex_unlock(&ctrl->mbox_lock);
  867. return 0;
  868. }
  869. req = embedded_payload(wrb);
  870. be_wrb_hdr_prepare(wrb, sizeof(*req), true, 0);
  871. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI_INI,
  872. OPCODE_ISCSI_INI_DRIVER_REOPEN_ALL_SESSIONS,
  873. sizeof(struct be_cmd_reopen_session_resp));
  874. req->reopen_type = BE_REOPEN_BOOT_SESSIONS;
  875. req->session_handle = BE_BOOT_INVALID_SHANDLE;
  876. phba->boot_struct.tag = tag;
  877. set_bit(MCC_TAG_STATE_ASYNC, &ctrl->ptag_state[tag].tag_state);
  878. ctrl->ptag_state[tag].cbfn = beiscsi_boot_process_compl;
  879. be_mcc_notify(phba, tag);
  880. mutex_unlock(&ctrl->mbox_lock);
  881. return tag;
  882. }
  883. /**
  884. * beiscsi_boot_get_sinfo()- Get boot session info
  885. * @phba: device priv structure instance
  886. *
  887. * Fetches the boot_struct.s_handle info from FW.
  888. * return
  889. * the TAG used for MBOX Command
  890. *
  891. **/
  892. unsigned int beiscsi_boot_get_sinfo(struct beiscsi_hba *phba)
  893. {
  894. struct be_ctrl_info *ctrl = &phba->ctrl;
  895. struct be_cmd_get_session_req *req;
  896. struct be_dma_mem *nonemb_cmd;
  897. struct be_mcc_wrb *wrb;
  898. struct be_sge *sge;
  899. unsigned int tag;
  900. mutex_lock(&ctrl->mbox_lock);
  901. wrb = alloc_mcc_wrb(phba, &tag);
  902. if (!wrb) {
  903. mutex_unlock(&ctrl->mbox_lock);
  904. return 0;
  905. }
  906. nonemb_cmd = &phba->boot_struct.nonemb_cmd;
  907. nonemb_cmd->size = sizeof(struct be_cmd_get_session_resp);
  908. nonemb_cmd->va = dma_alloc_coherent(&phba->ctrl.pdev->dev,
  909. nonemb_cmd->size,
  910. &nonemb_cmd->dma,
  911. GFP_KERNEL);
  912. if (!nonemb_cmd->va) {
  913. mutex_unlock(&ctrl->mbox_lock);
  914. return 0;
  915. }
  916. req = nonemb_cmd->va;
  917. memset(req, 0, sizeof(*req));
  918. sge = nonembedded_sgl(wrb);
  919. be_wrb_hdr_prepare(wrb, sizeof(*req), false, 1);
  920. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI_INI,
  921. OPCODE_ISCSI_INI_SESSION_GET_A_SESSION,
  922. sizeof(struct be_cmd_get_session_resp));
  923. req->session_handle = phba->boot_struct.s_handle;
  924. sge->pa_hi = cpu_to_le32(upper_32_bits(nonemb_cmd->dma));
  925. sge->pa_lo = cpu_to_le32(nonemb_cmd->dma & 0xFFFFFFFF);
  926. sge->len = cpu_to_le32(nonemb_cmd->size);
  927. phba->boot_struct.tag = tag;
  928. set_bit(MCC_TAG_STATE_ASYNC, &ctrl->ptag_state[tag].tag_state);
  929. ctrl->ptag_state[tag].cbfn = beiscsi_boot_process_compl;
  930. be_mcc_notify(phba, tag);
  931. mutex_unlock(&ctrl->mbox_lock);
  932. return tag;
  933. }
  934. unsigned int __beiscsi_boot_get_shandle(struct beiscsi_hba *phba, int async)
  935. {
  936. struct be_ctrl_info *ctrl = &phba->ctrl;
  937. struct be_mcc_wrb *wrb;
  938. struct be_cmd_get_boot_target_req *req;
  939. unsigned int tag;
  940. mutex_lock(&ctrl->mbox_lock);
  941. wrb = alloc_mcc_wrb(phba, &tag);
  942. if (!wrb) {
  943. mutex_unlock(&ctrl->mbox_lock);
  944. return 0;
  945. }
  946. req = embedded_payload(wrb);
  947. be_wrb_hdr_prepare(wrb, sizeof(*req), true, 0);
  948. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI_INI,
  949. OPCODE_ISCSI_INI_BOOT_GET_BOOT_TARGET,
  950. sizeof(struct be_cmd_get_boot_target_resp));
  951. if (async) {
  952. phba->boot_struct.tag = tag;
  953. set_bit(MCC_TAG_STATE_ASYNC, &ctrl->ptag_state[tag].tag_state);
  954. ctrl->ptag_state[tag].cbfn = beiscsi_boot_process_compl;
  955. }
  956. be_mcc_notify(phba, tag);
  957. mutex_unlock(&ctrl->mbox_lock);
  958. return tag;
  959. }
  960. /**
  961. * beiscsi_boot_get_shandle()- Get boot session handle
  962. * @phba: device priv structure instance
  963. * @s_handle: session handle returned for boot session.
  964. *
  965. * return
  966. * Success: 1
  967. * Failure: negative
  968. *
  969. **/
  970. int beiscsi_boot_get_shandle(struct beiscsi_hba *phba, unsigned int *s_handle)
  971. {
  972. struct be_cmd_get_boot_target_resp *boot_resp;
  973. struct be_mcc_wrb *wrb;
  974. unsigned int tag;
  975. int rc;
  976. *s_handle = BE_BOOT_INVALID_SHANDLE;
  977. /* get configured boot session count and handle */
  978. tag = __beiscsi_boot_get_shandle(phba, 0);
  979. if (!tag) {
  980. beiscsi_log(phba, KERN_ERR,
  981. BEISCSI_LOG_CONFIG | BEISCSI_LOG_INIT,
  982. "BG_%d : Getting Boot Target Info Failed\n");
  983. return -EAGAIN;
  984. }
  985. rc = beiscsi_mccq_compl_wait(phba, tag, &wrb, NULL);
  986. if (rc) {
  987. beiscsi_log(phba, KERN_ERR,
  988. BEISCSI_LOG_INIT | BEISCSI_LOG_CONFIG,
  989. "BG_%d : MBX CMD get_boot_target Failed\n");
  990. return -EBUSY;
  991. }
  992. boot_resp = embedded_payload(wrb);
  993. /* check if there are any boot targets configured */
  994. if (!boot_resp->boot_session_count) {
  995. __beiscsi_log(phba, KERN_INFO,
  996. "BG_%d : No boot targets configured\n");
  997. return -ENXIO;
  998. }
  999. /* only if FW has logged in to the boot target, s_handle is valid */
  1000. *s_handle = boot_resp->boot_session_handle;
  1001. return 1;
  1002. }
  1003. /**
  1004. * beiscsi_drvr_ver_disp()- Display the driver Name and Version
  1005. * @dev: ptr to device not used.
  1006. * @attr: device attribute, not used.
  1007. * @buf: contains formatted text driver name and version
  1008. *
  1009. * return
  1010. * size of the formatted string
  1011. **/
  1012. ssize_t
  1013. beiscsi_drvr_ver_disp(struct device *dev, struct device_attribute *attr,
  1014. char *buf)
  1015. {
  1016. return snprintf(buf, PAGE_SIZE, BE_NAME "\n");
  1017. }
  1018. /**
  1019. * beiscsi_fw_ver_disp()- Display Firmware Version
  1020. * @dev: ptr to device not used.
  1021. * @attr: device attribute, not used.
  1022. * @buf: contains formatted text Firmware version
  1023. *
  1024. * return
  1025. * size of the formatted string
  1026. **/
  1027. ssize_t
  1028. beiscsi_fw_ver_disp(struct device *dev, struct device_attribute *attr,
  1029. char *buf)
  1030. {
  1031. struct Scsi_Host *shost = class_to_shost(dev);
  1032. struct beiscsi_hba *phba = iscsi_host_priv(shost);
  1033. return snprintf(buf, PAGE_SIZE, "%s\n", phba->fw_ver_str);
  1034. }
  1035. /**
  1036. * beiscsi_active_session_disp()- Display Sessions Active
  1037. * @dev: ptr to device not used.
  1038. * @attr: device attribute, not used.
  1039. * @buf: contains formatted text Session Count
  1040. *
  1041. * return
  1042. * size of the formatted string
  1043. **/
  1044. ssize_t
  1045. beiscsi_active_session_disp(struct device *dev, struct device_attribute *attr,
  1046. char *buf)
  1047. {
  1048. struct Scsi_Host *shost = class_to_shost(dev);
  1049. struct beiscsi_hba *phba = iscsi_host_priv(shost);
  1050. uint16_t avlbl_cids = 0, ulp_num, len = 0, total_cids = 0;
  1051. for (ulp_num = 0; ulp_num < BEISCSI_ULP_COUNT; ulp_num++) {
  1052. if (test_bit(ulp_num, (void *)&phba->fw_config.ulp_supported)) {
  1053. avlbl_cids = BEISCSI_ULP_AVLBL_CID(phba, ulp_num);
  1054. total_cids = BEISCSI_GET_CID_COUNT(phba, ulp_num);
  1055. len += scnprintf(buf+len, PAGE_SIZE - len,
  1056. "ULP%d : %d\n", ulp_num,
  1057. (total_cids - avlbl_cids));
  1058. } else
  1059. len += scnprintf(buf+len, PAGE_SIZE - len,
  1060. "ULP%d : %d\n", ulp_num, 0);
  1061. }
  1062. return len;
  1063. }
  1064. /**
  1065. * beiscsi_free_session_disp()- Display Avaliable Session
  1066. * @dev: ptr to device not used.
  1067. * @attr: device attribute, not used.
  1068. * @buf: contains formatted text Session Count
  1069. *
  1070. * return
  1071. * size of the formatted string
  1072. **/
  1073. ssize_t
  1074. beiscsi_free_session_disp(struct device *dev, struct device_attribute *attr,
  1075. char *buf)
  1076. {
  1077. struct Scsi_Host *shost = class_to_shost(dev);
  1078. struct beiscsi_hba *phba = iscsi_host_priv(shost);
  1079. uint16_t ulp_num, len = 0;
  1080. for (ulp_num = 0; ulp_num < BEISCSI_ULP_COUNT; ulp_num++) {
  1081. if (test_bit(ulp_num, (void *)&phba->fw_config.ulp_supported))
  1082. len += scnprintf(buf+len, PAGE_SIZE - len,
  1083. "ULP%d : %d\n", ulp_num,
  1084. BEISCSI_ULP_AVLBL_CID(phba, ulp_num));
  1085. else
  1086. len += scnprintf(buf+len, PAGE_SIZE - len,
  1087. "ULP%d : %d\n", ulp_num, 0);
  1088. }
  1089. return len;
  1090. }
  1091. /**
  1092. * beiscsi_adap_family_disp()- Display adapter family.
  1093. * @dev: ptr to device to get priv structure
  1094. * @attr: device attribute, not used.
  1095. * @buf: contains formatted text driver name and version
  1096. *
  1097. * return
  1098. * size of the formatted string
  1099. **/
  1100. ssize_t
  1101. beiscsi_adap_family_disp(struct device *dev, struct device_attribute *attr,
  1102. char *buf)
  1103. {
  1104. uint16_t dev_id = 0;
  1105. struct Scsi_Host *shost = class_to_shost(dev);
  1106. struct beiscsi_hba *phba = iscsi_host_priv(shost);
  1107. dev_id = phba->pcidev->device;
  1108. switch (dev_id) {
  1109. case BE_DEVICE_ID1:
  1110. case OC_DEVICE_ID1:
  1111. case OC_DEVICE_ID2:
  1112. return snprintf(buf, PAGE_SIZE,
  1113. "Obsolete/Unsupported BE2 Adapter Family\n");
  1114. case BE_DEVICE_ID2:
  1115. case OC_DEVICE_ID3:
  1116. return snprintf(buf, PAGE_SIZE, "BE3-R Adapter Family\n");
  1117. case OC_SKH_ID1:
  1118. return snprintf(buf, PAGE_SIZE, "Skyhawk-R Adapter Family\n");
  1119. default:
  1120. return snprintf(buf, PAGE_SIZE,
  1121. "Unknown Adapter Family: 0x%x\n", dev_id);
  1122. }
  1123. }
  1124. /**
  1125. * beiscsi_phys_port_disp()- Display Physical Port Identifier
  1126. * @dev: ptr to device not used.
  1127. * @attr: device attribute, not used.
  1128. * @buf: contains formatted text port identifier
  1129. *
  1130. * return
  1131. * size of the formatted string
  1132. **/
  1133. ssize_t
  1134. beiscsi_phys_port_disp(struct device *dev, struct device_attribute *attr,
  1135. char *buf)
  1136. {
  1137. struct Scsi_Host *shost = class_to_shost(dev);
  1138. struct beiscsi_hba *phba = iscsi_host_priv(shost);
  1139. return snprintf(buf, PAGE_SIZE, "Port Identifier : %u\n",
  1140. phba->fw_config.phys_port);
  1141. }
  1142. void beiscsi_offload_cxn_v0(struct beiscsi_offload_params *params,
  1143. struct wrb_handle *pwrb_handle,
  1144. struct be_mem_descriptor *mem_descr,
  1145. struct hwi_wrb_context *pwrb_context)
  1146. {
  1147. struct iscsi_wrb *pwrb = pwrb_handle->pwrb;
  1148. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1149. max_send_data_segment_length, pwrb,
  1150. params->dw[offsetof(struct amap_beiscsi_offload_params,
  1151. max_send_data_segment_length) / 32]);
  1152. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, type, pwrb,
  1153. BE_TGT_CTX_UPDT_CMD);
  1154. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1155. first_burst_length,
  1156. pwrb,
  1157. params->dw[offsetof(struct amap_beiscsi_offload_params,
  1158. first_burst_length) / 32]);
  1159. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, erl, pwrb,
  1160. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1161. erl) / 32] & OFFLD_PARAMS_ERL));
  1162. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, dde, pwrb,
  1163. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1164. dde) / 32] & OFFLD_PARAMS_DDE) >> 2);
  1165. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, hde, pwrb,
  1166. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1167. hde) / 32] & OFFLD_PARAMS_HDE) >> 3);
  1168. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, ir2t, pwrb,
  1169. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1170. ir2t) / 32] & OFFLD_PARAMS_IR2T) >> 4);
  1171. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, imd, pwrb,
  1172. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1173. imd) / 32] & OFFLD_PARAMS_IMD) >> 5);
  1174. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, stat_sn,
  1175. pwrb,
  1176. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1177. exp_statsn) / 32] + 1));
  1178. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, wrb_idx,
  1179. pwrb, pwrb_handle->wrb_index);
  1180. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1181. max_burst_length, pwrb, params->dw[offsetof
  1182. (struct amap_beiscsi_offload_params,
  1183. max_burst_length) / 32]);
  1184. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, ptr2nextwrb,
  1185. pwrb, pwrb_handle->wrb_index);
  1186. if (pwrb_context->plast_wrb)
  1187. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1188. ptr2nextwrb,
  1189. pwrb_context->plast_wrb,
  1190. pwrb_handle->wrb_index);
  1191. pwrb_context->plast_wrb = pwrb;
  1192. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1193. session_state, pwrb, 0);
  1194. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, compltonack,
  1195. pwrb, 1);
  1196. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, notpredblq,
  1197. pwrb, 0);
  1198. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb, mode, pwrb,
  1199. 0);
  1200. mem_descr += ISCSI_MEM_GLOBAL_HEADER;
  1201. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1202. pad_buffer_addr_hi, pwrb,
  1203. mem_descr->mem_array[0].bus_address.u.a32.address_hi);
  1204. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb,
  1205. pad_buffer_addr_lo, pwrb,
  1206. mem_descr->mem_array[0].bus_address.u.a32.address_lo);
  1207. }
  1208. void beiscsi_offload_cxn_v2(struct beiscsi_offload_params *params,
  1209. struct wrb_handle *pwrb_handle,
  1210. struct hwi_wrb_context *pwrb_context)
  1211. {
  1212. struct iscsi_wrb *pwrb = pwrb_handle->pwrb;
  1213. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1214. max_burst_length, pwrb, params->dw[offsetof
  1215. (struct amap_beiscsi_offload_params,
  1216. max_burst_length) / 32]);
  1217. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1218. type, pwrb,
  1219. BE_TGT_CTX_UPDT_CMD);
  1220. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1221. ptr2nextwrb,
  1222. pwrb, pwrb_handle->wrb_index);
  1223. if (pwrb_context->plast_wrb)
  1224. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1225. ptr2nextwrb,
  1226. pwrb_context->plast_wrb,
  1227. pwrb_handle->wrb_index);
  1228. pwrb_context->plast_wrb = pwrb;
  1229. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, wrb_idx,
  1230. pwrb, pwrb_handle->wrb_index);
  1231. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1232. max_send_data_segment_length, pwrb,
  1233. params->dw[offsetof(struct amap_beiscsi_offload_params,
  1234. max_send_data_segment_length) / 32]);
  1235. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1236. first_burst_length, pwrb,
  1237. params->dw[offsetof(struct amap_beiscsi_offload_params,
  1238. first_burst_length) / 32]);
  1239. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1240. max_recv_dataseg_len, pwrb,
  1241. params->dw[offsetof(struct amap_beiscsi_offload_params,
  1242. max_recv_data_segment_length) / 32]);
  1243. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1244. max_cxns, pwrb, BEISCSI_MAX_CXNS);
  1245. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, erl, pwrb,
  1246. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1247. erl) / 32] & OFFLD_PARAMS_ERL));
  1248. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, dde, pwrb,
  1249. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1250. dde) / 32] & OFFLD_PARAMS_DDE) >> 2);
  1251. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, hde, pwrb,
  1252. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1253. hde) / 32] & OFFLD_PARAMS_HDE) >> 3);
  1254. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1255. ir2t, pwrb,
  1256. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1257. ir2t) / 32] & OFFLD_PARAMS_IR2T) >> 4);
  1258. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, imd, pwrb,
  1259. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1260. imd) / 32] & OFFLD_PARAMS_IMD) >> 5);
  1261. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1262. data_seq_inorder,
  1263. pwrb,
  1264. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1265. data_seq_inorder) / 32] &
  1266. OFFLD_PARAMS_DATA_SEQ_INORDER) >> 6);
  1267. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2,
  1268. pdu_seq_inorder,
  1269. pwrb,
  1270. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1271. pdu_seq_inorder) / 32] &
  1272. OFFLD_PARAMS_PDU_SEQ_INORDER) >> 7);
  1273. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, max_r2t,
  1274. pwrb,
  1275. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1276. max_r2t) / 32] &
  1277. OFFLD_PARAMS_MAX_R2T) >> 8);
  1278. AMAP_SET_BITS(struct amap_iscsi_target_context_update_wrb_v2, stat_sn,
  1279. pwrb,
  1280. (params->dw[offsetof(struct amap_beiscsi_offload_params,
  1281. exp_statsn) / 32] + 1));
  1282. }
  1283. unsigned int beiscsi_invalidate_cxn(struct beiscsi_hba *phba,
  1284. struct beiscsi_endpoint *beiscsi_ep)
  1285. {
  1286. struct be_invalidate_connection_params_in *req;
  1287. struct be_ctrl_info *ctrl = &phba->ctrl;
  1288. struct be_mcc_wrb *wrb;
  1289. unsigned int tag = 0;
  1290. mutex_lock(&ctrl->mbox_lock);
  1291. wrb = alloc_mcc_wrb(phba, &tag);
  1292. if (!wrb) {
  1293. mutex_unlock(&ctrl->mbox_lock);
  1294. return 0;
  1295. }
  1296. req = embedded_payload(wrb);
  1297. be_wrb_hdr_prepare(wrb, sizeof(union be_invalidate_connection_params),
  1298. true, 0);
  1299. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI_INI,
  1300. OPCODE_ISCSI_INI_DRIVER_INVALIDATE_CONNECTION,
  1301. sizeof(*req));
  1302. req->session_handle = beiscsi_ep->fw_handle;
  1303. req->cid = beiscsi_ep->ep_cid;
  1304. if (beiscsi_ep->conn)
  1305. req->cleanup_type = BE_CLEANUP_TYPE_INVALIDATE;
  1306. else
  1307. req->cleanup_type = BE_CLEANUP_TYPE_ISSUE_TCP_RST;
  1308. /**
  1309. * 0 - non-persistent targets
  1310. * 1 - save session info on flash
  1311. */
  1312. req->save_cfg = 0;
  1313. be_mcc_notify(phba, tag);
  1314. mutex_unlock(&ctrl->mbox_lock);
  1315. return tag;
  1316. }
  1317. unsigned int beiscsi_upload_cxn(struct beiscsi_hba *phba,
  1318. struct beiscsi_endpoint *beiscsi_ep)
  1319. {
  1320. struct be_ctrl_info *ctrl = &phba->ctrl;
  1321. struct be_mcc_wrb *wrb;
  1322. struct be_tcp_upload_params_in *req;
  1323. unsigned int tag;
  1324. mutex_lock(&ctrl->mbox_lock);
  1325. wrb = alloc_mcc_wrb(phba, &tag);
  1326. if (!wrb) {
  1327. mutex_unlock(&ctrl->mbox_lock);
  1328. return 0;
  1329. }
  1330. req = embedded_payload(wrb);
  1331. be_wrb_hdr_prepare(wrb, sizeof(union be_tcp_upload_params), true, 0);
  1332. be_cmd_hdr_prepare(&req->hdr, CMD_COMMON_TCP_UPLOAD,
  1333. OPCODE_COMMON_TCP_UPLOAD, sizeof(*req));
  1334. req->id = beiscsi_ep->ep_cid;
  1335. if (beiscsi_ep->conn)
  1336. req->upload_type = BE_UPLOAD_TYPE_GRACEFUL;
  1337. else
  1338. req->upload_type = BE_UPLOAD_TYPE_ABORT;
  1339. be_mcc_notify(phba, tag);
  1340. mutex_unlock(&ctrl->mbox_lock);
  1341. return tag;
  1342. }
  1343. int beiscsi_mgmt_invalidate_icds(struct beiscsi_hba *phba,
  1344. struct invldt_cmd_tbl *inv_tbl,
  1345. unsigned int nents)
  1346. {
  1347. struct be_ctrl_info *ctrl = &phba->ctrl;
  1348. struct invldt_cmds_params_in *req;
  1349. struct be_dma_mem nonemb_cmd;
  1350. struct be_mcc_wrb *wrb;
  1351. unsigned int i, tag;
  1352. struct be_sge *sge;
  1353. int rc;
  1354. if (!nents || nents > BE_INVLDT_CMD_TBL_SZ)
  1355. return -EINVAL;
  1356. nonemb_cmd.size = sizeof(union be_invldt_cmds_params);
  1357. nonemb_cmd.va = dma_alloc_coherent(&phba->ctrl.pdev->dev,
  1358. nonemb_cmd.size, &nonemb_cmd.dma,
  1359. GFP_KERNEL);
  1360. if (!nonemb_cmd.va) {
  1361. beiscsi_log(phba, KERN_ERR, BEISCSI_LOG_EH,
  1362. "BM_%d : invldt_cmds_params alloc failed\n");
  1363. return -ENOMEM;
  1364. }
  1365. mutex_lock(&ctrl->mbox_lock);
  1366. wrb = alloc_mcc_wrb(phba, &tag);
  1367. if (!wrb) {
  1368. mutex_unlock(&ctrl->mbox_lock);
  1369. dma_free_coherent(&phba->ctrl.pdev->dev, nonemb_cmd.size,
  1370. nonemb_cmd.va, nonemb_cmd.dma);
  1371. return -ENOMEM;
  1372. }
  1373. req = nonemb_cmd.va;
  1374. be_wrb_hdr_prepare(wrb, nonemb_cmd.size, false, 1);
  1375. be_cmd_hdr_prepare(&req->hdr, CMD_SUBSYSTEM_ISCSI,
  1376. OPCODE_COMMON_ISCSI_ERROR_RECOVERY_INVALIDATE_COMMANDS,
  1377. sizeof(*req));
  1378. req->ref_handle = 0;
  1379. req->cleanup_type = CMD_ISCSI_COMMAND_INVALIDATE;
  1380. for (i = 0; i < nents; i++) {
  1381. req->table[i].icd = inv_tbl[i].icd;
  1382. req->table[i].cid = inv_tbl[i].cid;
  1383. req->icd_count++;
  1384. }
  1385. sge = nonembedded_sgl(wrb);
  1386. sge->pa_hi = cpu_to_le32(upper_32_bits(nonemb_cmd.dma));
  1387. sge->pa_lo = cpu_to_le32(lower_32_bits(nonemb_cmd.dma));
  1388. sge->len = cpu_to_le32(nonemb_cmd.size);
  1389. be_mcc_notify(phba, tag);
  1390. mutex_unlock(&ctrl->mbox_lock);
  1391. rc = beiscsi_mccq_compl_wait(phba, tag, NULL, &nonemb_cmd);
  1392. if (rc != -EBUSY)
  1393. dma_free_coherent(&phba->ctrl.pdev->dev, nonemb_cmd.size,
  1394. nonemb_cmd.va, nonemb_cmd.dma);
  1395. return rc;
  1396. }