ql4_os.c 119 KB

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  1. /*
  2. * QLogic iSCSI HBA Driver
  3. * Copyright (c) 2003-2010 QLogic Corporation
  4. *
  5. * See LICENSE.qla4xxx for copyright and licensing details.
  6. */
  7. #include <linux/moduleparam.h>
  8. #include <linux/slab.h>
  9. #include <linux/blkdev.h>
  10. #include <linux/iscsi_boot_sysfs.h>
  11. #include <scsi/scsi_tcq.h>
  12. #include <scsi/scsicam.h>
  13. #include "ql4_def.h"
  14. #include "ql4_version.h"
  15. #include "ql4_glbl.h"
  16. #include "ql4_dbg.h"
  17. #include "ql4_inline.h"
  18. /*
  19. * Driver version
  20. */
  21. static char qla4xxx_version_str[40];
  22. /*
  23. * SRB allocation cache
  24. */
  25. static struct kmem_cache *srb_cachep;
  26. /*
  27. * Module parameter information and variables
  28. */
  29. int ql4xdontresethba = 0;
  30. module_param(ql4xdontresethba, int, S_IRUGO | S_IWUSR);
  31. MODULE_PARM_DESC(ql4xdontresethba,
  32. "Don't reset the HBA for driver recovery \n"
  33. " 0 - It will reset HBA (Default)\n"
  34. " 1 - It will NOT reset HBA");
  35. int ql4xextended_error_logging = 0; /* 0 = off, 1 = log errors */
  36. module_param(ql4xextended_error_logging, int, S_IRUGO | S_IWUSR);
  37. MODULE_PARM_DESC(ql4xextended_error_logging,
  38. "Option to enable extended error logging, "
  39. "Default is 0 - no logging, 1 - debug logging");
  40. int ql4xenablemsix = 1;
  41. module_param(ql4xenablemsix, int, S_IRUGO|S_IWUSR);
  42. MODULE_PARM_DESC(ql4xenablemsix,
  43. "Set to enable MSI or MSI-X interrupt mechanism.\n"
  44. " 0 = enable INTx interrupt mechanism.\n"
  45. " 1 = enable MSI-X interrupt mechanism (Default).\n"
  46. " 2 = enable MSI interrupt mechanism.");
  47. #define QL4_DEF_QDEPTH 32
  48. static int ql4xmaxqdepth = QL4_DEF_QDEPTH;
  49. module_param(ql4xmaxqdepth, int, S_IRUGO | S_IWUSR);
  50. MODULE_PARM_DESC(ql4xmaxqdepth,
  51. "Maximum queue depth to report for target devices.\n"
  52. " Default: 32.");
  53. static int ql4xsess_recovery_tmo = QL4_SESS_RECOVERY_TMO;
  54. module_param(ql4xsess_recovery_tmo, int, S_IRUGO);
  55. MODULE_PARM_DESC(ql4xsess_recovery_tmo,
  56. "Target Session Recovery Timeout.\n"
  57. " Default: 30 sec.");
  58. static int qla4xxx_wait_for_hba_online(struct scsi_qla_host *ha);
  59. /*
  60. * SCSI host template entry points
  61. */
  62. static void qla4xxx_config_dma_addressing(struct scsi_qla_host *ha);
  63. /*
  64. * iSCSI template entry points
  65. */
  66. static int qla4xxx_conn_get_param(struct iscsi_cls_conn *conn,
  67. enum iscsi_param param, char *buf);
  68. static int qla4xxx_host_get_param(struct Scsi_Host *shost,
  69. enum iscsi_host_param param, char *buf);
  70. static int qla4xxx_iface_set_param(struct Scsi_Host *shost, char *data,
  71. int count);
  72. static int qla4xxx_get_iface_param(struct iscsi_iface *iface,
  73. enum iscsi_param_type param_type,
  74. int param, char *buf);
  75. static enum blk_eh_timer_return qla4xxx_eh_cmd_timed_out(struct scsi_cmnd *sc);
  76. static struct iscsi_endpoint *qla4xxx_ep_connect(struct Scsi_Host *shost,
  77. struct sockaddr *dst_addr,
  78. int non_blocking);
  79. static int qla4xxx_ep_poll(struct iscsi_endpoint *ep, int timeout_ms);
  80. static void qla4xxx_ep_disconnect(struct iscsi_endpoint *ep);
  81. static int qla4xxx_get_ep_param(struct iscsi_endpoint *ep,
  82. enum iscsi_param param, char *buf);
  83. static int qla4xxx_conn_start(struct iscsi_cls_conn *conn);
  84. static struct iscsi_cls_conn *
  85. qla4xxx_conn_create(struct iscsi_cls_session *cls_sess, uint32_t conn_idx);
  86. static int qla4xxx_conn_bind(struct iscsi_cls_session *cls_session,
  87. struct iscsi_cls_conn *cls_conn,
  88. uint64_t transport_fd, int is_leading);
  89. static void qla4xxx_conn_destroy(struct iscsi_cls_conn *conn);
  90. static struct iscsi_cls_session *
  91. qla4xxx_session_create(struct iscsi_endpoint *ep, uint16_t cmds_max,
  92. uint16_t qdepth, uint32_t initial_cmdsn);
  93. static void qla4xxx_session_destroy(struct iscsi_cls_session *sess);
  94. static void qla4xxx_task_work(struct work_struct *wdata);
  95. static int qla4xxx_alloc_pdu(struct iscsi_task *, uint8_t);
  96. static int qla4xxx_task_xmit(struct iscsi_task *);
  97. static void qla4xxx_task_cleanup(struct iscsi_task *);
  98. static void qla4xxx_fail_session(struct iscsi_cls_session *cls_session);
  99. static void qla4xxx_conn_get_stats(struct iscsi_cls_conn *cls_conn,
  100. struct iscsi_stats *stats);
  101. /*
  102. * SCSI host template entry points
  103. */
  104. static int qla4xxx_queuecommand(struct Scsi_Host *h, struct scsi_cmnd *cmd);
  105. static int qla4xxx_eh_abort(struct scsi_cmnd *cmd);
  106. static int qla4xxx_eh_device_reset(struct scsi_cmnd *cmd);
  107. static int qla4xxx_eh_target_reset(struct scsi_cmnd *cmd);
  108. static int qla4xxx_eh_host_reset(struct scsi_cmnd *cmd);
  109. static int qla4xxx_slave_alloc(struct scsi_device *device);
  110. static int qla4xxx_slave_configure(struct scsi_device *device);
  111. static void qla4xxx_slave_destroy(struct scsi_device *sdev);
  112. static mode_t ql4_attr_is_visible(int param_type, int param);
  113. static int qla4xxx_host_reset(struct Scsi_Host *shost, int reset_type);
  114. static struct qla4_8xxx_legacy_intr_set legacy_intr[] =
  115. QLA82XX_LEGACY_INTR_CONFIG;
  116. static struct scsi_host_template qla4xxx_driver_template = {
  117. .module = THIS_MODULE,
  118. .name = DRIVER_NAME,
  119. .proc_name = DRIVER_NAME,
  120. .queuecommand = qla4xxx_queuecommand,
  121. .eh_abort_handler = qla4xxx_eh_abort,
  122. .eh_device_reset_handler = qla4xxx_eh_device_reset,
  123. .eh_target_reset_handler = qla4xxx_eh_target_reset,
  124. .eh_host_reset_handler = qla4xxx_eh_host_reset,
  125. .eh_timed_out = qla4xxx_eh_cmd_timed_out,
  126. .slave_configure = qla4xxx_slave_configure,
  127. .slave_alloc = qla4xxx_slave_alloc,
  128. .slave_destroy = qla4xxx_slave_destroy,
  129. .this_id = -1,
  130. .cmd_per_lun = 3,
  131. .use_clustering = ENABLE_CLUSTERING,
  132. .sg_tablesize = SG_ALL,
  133. .max_sectors = 0xFFFF,
  134. .shost_attrs = qla4xxx_host_attrs,
  135. .host_reset = qla4xxx_host_reset,
  136. .vendor_id = SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_QLOGIC,
  137. };
  138. static struct iscsi_transport qla4xxx_iscsi_transport = {
  139. .owner = THIS_MODULE,
  140. .name = DRIVER_NAME,
  141. .caps = CAP_TEXT_NEGO |
  142. CAP_DATA_PATH_OFFLOAD | CAP_HDRDGST |
  143. CAP_DATADGST | CAP_LOGIN_OFFLOAD |
  144. CAP_MULTI_R2T,
  145. .attr_is_visible = ql4_attr_is_visible,
  146. .create_session = qla4xxx_session_create,
  147. .destroy_session = qla4xxx_session_destroy,
  148. .start_conn = qla4xxx_conn_start,
  149. .create_conn = qla4xxx_conn_create,
  150. .bind_conn = qla4xxx_conn_bind,
  151. .stop_conn = iscsi_conn_stop,
  152. .destroy_conn = qla4xxx_conn_destroy,
  153. .set_param = iscsi_set_param,
  154. .get_conn_param = qla4xxx_conn_get_param,
  155. .get_session_param = iscsi_session_get_param,
  156. .get_ep_param = qla4xxx_get_ep_param,
  157. .ep_connect = qla4xxx_ep_connect,
  158. .ep_poll = qla4xxx_ep_poll,
  159. .ep_disconnect = qla4xxx_ep_disconnect,
  160. .get_stats = qla4xxx_conn_get_stats,
  161. .send_pdu = iscsi_conn_send_pdu,
  162. .xmit_task = qla4xxx_task_xmit,
  163. .cleanup_task = qla4xxx_task_cleanup,
  164. .alloc_pdu = qla4xxx_alloc_pdu,
  165. .get_host_param = qla4xxx_host_get_param,
  166. .set_iface_param = qla4xxx_iface_set_param,
  167. .get_iface_param = qla4xxx_get_iface_param,
  168. .bsg_request = qla4xxx_bsg_request,
  169. };
  170. static struct scsi_transport_template *qla4xxx_scsi_transport;
  171. static mode_t ql4_attr_is_visible(int param_type, int param)
  172. {
  173. switch (param_type) {
  174. case ISCSI_HOST_PARAM:
  175. switch (param) {
  176. case ISCSI_HOST_PARAM_HWADDRESS:
  177. case ISCSI_HOST_PARAM_IPADDRESS:
  178. case ISCSI_HOST_PARAM_INITIATOR_NAME:
  179. return S_IRUGO;
  180. default:
  181. return 0;
  182. }
  183. case ISCSI_PARAM:
  184. switch (param) {
  185. case ISCSI_PARAM_CONN_ADDRESS:
  186. case ISCSI_PARAM_CONN_PORT:
  187. case ISCSI_PARAM_TARGET_NAME:
  188. case ISCSI_PARAM_TPGT:
  189. case ISCSI_PARAM_TARGET_ALIAS:
  190. case ISCSI_PARAM_MAX_BURST:
  191. case ISCSI_PARAM_MAX_R2T:
  192. case ISCSI_PARAM_FIRST_BURST:
  193. case ISCSI_PARAM_MAX_RECV_DLENGTH:
  194. case ISCSI_PARAM_MAX_XMIT_DLENGTH:
  195. case ISCSI_PARAM_IFACE_NAME:
  196. return S_IRUGO;
  197. default:
  198. return 0;
  199. }
  200. case ISCSI_NET_PARAM:
  201. switch (param) {
  202. case ISCSI_NET_PARAM_IPV4_ADDR:
  203. case ISCSI_NET_PARAM_IPV4_SUBNET:
  204. case ISCSI_NET_PARAM_IPV4_GW:
  205. case ISCSI_NET_PARAM_IPV4_BOOTPROTO:
  206. case ISCSI_NET_PARAM_IFACE_ENABLE:
  207. case ISCSI_NET_PARAM_IPV6_LINKLOCAL:
  208. case ISCSI_NET_PARAM_IPV6_ADDR:
  209. case ISCSI_NET_PARAM_IPV6_ROUTER:
  210. case ISCSI_NET_PARAM_IPV6_ADDR_AUTOCFG:
  211. case ISCSI_NET_PARAM_IPV6_LINKLOCAL_AUTOCFG:
  212. case ISCSI_NET_PARAM_VLAN_ID:
  213. case ISCSI_NET_PARAM_VLAN_PRIORITY:
  214. case ISCSI_NET_PARAM_VLAN_ENABLED:
  215. case ISCSI_NET_PARAM_MTU:
  216. case ISCSI_NET_PARAM_PORT:
  217. return S_IRUGO;
  218. default:
  219. return 0;
  220. }
  221. }
  222. return 0;
  223. }
  224. static int qla4xxx_get_iface_param(struct iscsi_iface *iface,
  225. enum iscsi_param_type param_type,
  226. int param, char *buf)
  227. {
  228. struct Scsi_Host *shost = iscsi_iface_to_shost(iface);
  229. struct scsi_qla_host *ha = to_qla_host(shost);
  230. int len = -ENOSYS;
  231. if (param_type != ISCSI_NET_PARAM)
  232. return -ENOSYS;
  233. switch (param) {
  234. case ISCSI_NET_PARAM_IPV4_ADDR:
  235. len = sprintf(buf, "%pI4\n", &ha->ip_config.ip_address);
  236. break;
  237. case ISCSI_NET_PARAM_IPV4_SUBNET:
  238. len = sprintf(buf, "%pI4\n", &ha->ip_config.subnet_mask);
  239. break;
  240. case ISCSI_NET_PARAM_IPV4_GW:
  241. len = sprintf(buf, "%pI4\n", &ha->ip_config.gateway);
  242. break;
  243. case ISCSI_NET_PARAM_IFACE_ENABLE:
  244. if (iface->iface_type == ISCSI_IFACE_TYPE_IPV4)
  245. len = sprintf(buf, "%s\n",
  246. (ha->ip_config.ipv4_options &
  247. IPOPT_IPV4_PROTOCOL_ENABLE) ?
  248. "enabled" : "disabled");
  249. else if (iface->iface_type == ISCSI_IFACE_TYPE_IPV6)
  250. len = sprintf(buf, "%s\n",
  251. (ha->ip_config.ipv6_options &
  252. IPV6_OPT_IPV6_PROTOCOL_ENABLE) ?
  253. "enabled" : "disabled");
  254. break;
  255. case ISCSI_NET_PARAM_IPV4_BOOTPROTO:
  256. len = sprintf(buf, "%s\n",
  257. (ha->ip_config.tcp_options & TCPOPT_DHCP_ENABLE) ?
  258. "dhcp" : "static");
  259. break;
  260. case ISCSI_NET_PARAM_IPV6_ADDR:
  261. if (iface->iface_num == 0)
  262. len = sprintf(buf, "%pI6\n", &ha->ip_config.ipv6_addr0);
  263. if (iface->iface_num == 1)
  264. len = sprintf(buf, "%pI6\n", &ha->ip_config.ipv6_addr1);
  265. break;
  266. case ISCSI_NET_PARAM_IPV6_LINKLOCAL:
  267. len = sprintf(buf, "%pI6\n",
  268. &ha->ip_config.ipv6_link_local_addr);
  269. break;
  270. case ISCSI_NET_PARAM_IPV6_ROUTER:
  271. len = sprintf(buf, "%pI6\n",
  272. &ha->ip_config.ipv6_default_router_addr);
  273. break;
  274. case ISCSI_NET_PARAM_IPV6_ADDR_AUTOCFG:
  275. len = sprintf(buf, "%s\n",
  276. (ha->ip_config.ipv6_addl_options &
  277. IPV6_ADDOPT_NEIGHBOR_DISCOVERY_ADDR_ENABLE) ?
  278. "nd" : "static");
  279. break;
  280. case ISCSI_NET_PARAM_IPV6_LINKLOCAL_AUTOCFG:
  281. len = sprintf(buf, "%s\n",
  282. (ha->ip_config.ipv6_addl_options &
  283. IPV6_ADDOPT_AUTOCONFIG_LINK_LOCAL_ADDR) ?
  284. "auto" : "static");
  285. break;
  286. case ISCSI_NET_PARAM_VLAN_ID:
  287. if (iface->iface_type == ISCSI_IFACE_TYPE_IPV4)
  288. len = sprintf(buf, "%d\n",
  289. (ha->ip_config.ipv4_vlan_tag &
  290. ISCSI_MAX_VLAN_ID));
  291. else if (iface->iface_type == ISCSI_IFACE_TYPE_IPV6)
  292. len = sprintf(buf, "%d\n",
  293. (ha->ip_config.ipv6_vlan_tag &
  294. ISCSI_MAX_VLAN_ID));
  295. break;
  296. case ISCSI_NET_PARAM_VLAN_PRIORITY:
  297. if (iface->iface_type == ISCSI_IFACE_TYPE_IPV4)
  298. len = sprintf(buf, "%d\n",
  299. ((ha->ip_config.ipv4_vlan_tag >> 13) &
  300. ISCSI_MAX_VLAN_PRIORITY));
  301. else if (iface->iface_type == ISCSI_IFACE_TYPE_IPV6)
  302. len = sprintf(buf, "%d\n",
  303. ((ha->ip_config.ipv6_vlan_tag >> 13) &
  304. ISCSI_MAX_VLAN_PRIORITY));
  305. break;
  306. case ISCSI_NET_PARAM_VLAN_ENABLED:
  307. if (iface->iface_type == ISCSI_IFACE_TYPE_IPV4)
  308. len = sprintf(buf, "%s\n",
  309. (ha->ip_config.ipv4_options &
  310. IPOPT_VLAN_TAGGING_ENABLE) ?
  311. "enabled" : "disabled");
  312. else if (iface->iface_type == ISCSI_IFACE_TYPE_IPV6)
  313. len = sprintf(buf, "%s\n",
  314. (ha->ip_config.ipv6_options &
  315. IPV6_OPT_VLAN_TAGGING_ENABLE) ?
  316. "enabled" : "disabled");
  317. break;
  318. case ISCSI_NET_PARAM_MTU:
  319. len = sprintf(buf, "%d\n", ha->ip_config.eth_mtu_size);
  320. break;
  321. case ISCSI_NET_PARAM_PORT:
  322. if (iface->iface_type == ISCSI_IFACE_TYPE_IPV4)
  323. len = sprintf(buf, "%d\n", ha->ip_config.ipv4_port);
  324. else if (iface->iface_type == ISCSI_IFACE_TYPE_IPV6)
  325. len = sprintf(buf, "%d\n", ha->ip_config.ipv6_port);
  326. break;
  327. default:
  328. len = -ENOSYS;
  329. }
  330. return len;
  331. }
  332. static struct iscsi_endpoint *
  333. qla4xxx_ep_connect(struct Scsi_Host *shost, struct sockaddr *dst_addr,
  334. int non_blocking)
  335. {
  336. int ret;
  337. struct iscsi_endpoint *ep;
  338. struct qla_endpoint *qla_ep;
  339. struct scsi_qla_host *ha;
  340. struct sockaddr_in *addr;
  341. struct sockaddr_in6 *addr6;
  342. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  343. if (!shost) {
  344. ret = -ENXIO;
  345. printk(KERN_ERR "%s: shost is NULL\n",
  346. __func__);
  347. return ERR_PTR(ret);
  348. }
  349. ha = iscsi_host_priv(shost);
  350. ep = iscsi_create_endpoint(sizeof(struct qla_endpoint));
  351. if (!ep) {
  352. ret = -ENOMEM;
  353. return ERR_PTR(ret);
  354. }
  355. qla_ep = ep->dd_data;
  356. memset(qla_ep, 0, sizeof(struct qla_endpoint));
  357. if (dst_addr->sa_family == AF_INET) {
  358. memcpy(&qla_ep->dst_addr, dst_addr, sizeof(struct sockaddr_in));
  359. addr = (struct sockaddr_in *)&qla_ep->dst_addr;
  360. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: %pI4\n", __func__,
  361. (char *)&addr->sin_addr));
  362. } else if (dst_addr->sa_family == AF_INET6) {
  363. memcpy(&qla_ep->dst_addr, dst_addr,
  364. sizeof(struct sockaddr_in6));
  365. addr6 = (struct sockaddr_in6 *)&qla_ep->dst_addr;
  366. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: %pI6\n", __func__,
  367. (char *)&addr6->sin6_addr));
  368. }
  369. qla_ep->host = shost;
  370. return ep;
  371. }
  372. static int qla4xxx_ep_poll(struct iscsi_endpoint *ep, int timeout_ms)
  373. {
  374. struct qla_endpoint *qla_ep;
  375. struct scsi_qla_host *ha;
  376. int ret = 0;
  377. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  378. qla_ep = ep->dd_data;
  379. ha = to_qla_host(qla_ep->host);
  380. if (adapter_up(ha))
  381. ret = 1;
  382. return ret;
  383. }
  384. static void qla4xxx_ep_disconnect(struct iscsi_endpoint *ep)
  385. {
  386. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  387. iscsi_destroy_endpoint(ep);
  388. }
  389. static int qla4xxx_get_ep_param(struct iscsi_endpoint *ep,
  390. enum iscsi_param param,
  391. char *buf)
  392. {
  393. struct qla_endpoint *qla_ep = ep->dd_data;
  394. struct sockaddr *dst_addr;
  395. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  396. switch (param) {
  397. case ISCSI_PARAM_CONN_PORT:
  398. case ISCSI_PARAM_CONN_ADDRESS:
  399. if (!qla_ep)
  400. return -ENOTCONN;
  401. dst_addr = (struct sockaddr *)&qla_ep->dst_addr;
  402. if (!dst_addr)
  403. return -ENOTCONN;
  404. return iscsi_conn_get_addr_param((struct sockaddr_storage *)
  405. &qla_ep->dst_addr, param, buf);
  406. default:
  407. return -ENOSYS;
  408. }
  409. }
  410. static void qla4xxx_conn_get_stats(struct iscsi_cls_conn *cls_conn,
  411. struct iscsi_stats *stats)
  412. {
  413. struct iscsi_session *sess;
  414. struct iscsi_cls_session *cls_sess;
  415. struct ddb_entry *ddb_entry;
  416. struct scsi_qla_host *ha;
  417. struct ql_iscsi_stats *ql_iscsi_stats;
  418. int stats_size;
  419. int ret;
  420. dma_addr_t iscsi_stats_dma;
  421. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  422. cls_sess = iscsi_conn_to_session(cls_conn);
  423. sess = cls_sess->dd_data;
  424. ddb_entry = sess->dd_data;
  425. ha = ddb_entry->ha;
  426. stats_size = PAGE_ALIGN(sizeof(struct ql_iscsi_stats));
  427. /* Allocate memory */
  428. ql_iscsi_stats = dma_alloc_coherent(&ha->pdev->dev, stats_size,
  429. &iscsi_stats_dma, GFP_KERNEL);
  430. if (!ql_iscsi_stats) {
  431. ql4_printk(KERN_ERR, ha,
  432. "Unable to allocate memory for iscsi stats\n");
  433. goto exit_get_stats;
  434. }
  435. ret = qla4xxx_get_mgmt_data(ha, ddb_entry->fw_ddb_index, stats_size,
  436. iscsi_stats_dma);
  437. if (ret != QLA_SUCCESS) {
  438. ql4_printk(KERN_ERR, ha,
  439. "Unable to retreive iscsi stats\n");
  440. goto free_stats;
  441. }
  442. /* octets */
  443. stats->txdata_octets = le64_to_cpu(ql_iscsi_stats->tx_data_octets);
  444. stats->rxdata_octets = le64_to_cpu(ql_iscsi_stats->rx_data_octets);
  445. /* xmit pdus */
  446. stats->noptx_pdus = le32_to_cpu(ql_iscsi_stats->tx_nopout_pdus);
  447. stats->scsicmd_pdus = le32_to_cpu(ql_iscsi_stats->tx_scsi_cmd_pdus);
  448. stats->tmfcmd_pdus = le32_to_cpu(ql_iscsi_stats->tx_tmf_cmd_pdus);
  449. stats->login_pdus = le32_to_cpu(ql_iscsi_stats->tx_login_cmd_pdus);
  450. stats->text_pdus = le32_to_cpu(ql_iscsi_stats->tx_text_cmd_pdus);
  451. stats->dataout_pdus = le32_to_cpu(ql_iscsi_stats->tx_scsi_write_pdus);
  452. stats->logout_pdus = le32_to_cpu(ql_iscsi_stats->tx_logout_cmd_pdus);
  453. stats->snack_pdus = le32_to_cpu(ql_iscsi_stats->tx_snack_req_pdus);
  454. /* recv pdus */
  455. stats->noprx_pdus = le32_to_cpu(ql_iscsi_stats->rx_nopin_pdus);
  456. stats->scsirsp_pdus = le32_to_cpu(ql_iscsi_stats->rx_scsi_resp_pdus);
  457. stats->tmfrsp_pdus = le32_to_cpu(ql_iscsi_stats->rx_tmf_resp_pdus);
  458. stats->textrsp_pdus = le32_to_cpu(ql_iscsi_stats->rx_text_resp_pdus);
  459. stats->datain_pdus = le32_to_cpu(ql_iscsi_stats->rx_scsi_read_pdus);
  460. stats->logoutrsp_pdus =
  461. le32_to_cpu(ql_iscsi_stats->rx_logout_resp_pdus);
  462. stats->r2t_pdus = le32_to_cpu(ql_iscsi_stats->rx_r2t_pdus);
  463. stats->async_pdus = le32_to_cpu(ql_iscsi_stats->rx_async_pdus);
  464. stats->rjt_pdus = le32_to_cpu(ql_iscsi_stats->rx_reject_pdus);
  465. free_stats:
  466. dma_free_coherent(&ha->pdev->dev, stats_size, ql_iscsi_stats,
  467. iscsi_stats_dma);
  468. exit_get_stats:
  469. return;
  470. }
  471. static enum blk_eh_timer_return qla4xxx_eh_cmd_timed_out(struct scsi_cmnd *sc)
  472. {
  473. struct iscsi_cls_session *session;
  474. struct iscsi_session *sess;
  475. unsigned long flags;
  476. enum blk_eh_timer_return ret = BLK_EH_NOT_HANDLED;
  477. session = starget_to_session(scsi_target(sc->device));
  478. sess = session->dd_data;
  479. spin_lock_irqsave(&session->lock, flags);
  480. if (session->state == ISCSI_SESSION_FAILED)
  481. ret = BLK_EH_RESET_TIMER;
  482. spin_unlock_irqrestore(&session->lock, flags);
  483. return ret;
  484. }
  485. static int qla4xxx_host_get_param(struct Scsi_Host *shost,
  486. enum iscsi_host_param param, char *buf)
  487. {
  488. struct scsi_qla_host *ha = to_qla_host(shost);
  489. int len;
  490. switch (param) {
  491. case ISCSI_HOST_PARAM_HWADDRESS:
  492. len = sysfs_format_mac(buf, ha->my_mac, MAC_ADDR_LEN);
  493. break;
  494. case ISCSI_HOST_PARAM_IPADDRESS:
  495. len = sprintf(buf, "%pI4\n", &ha->ip_config.ip_address);
  496. break;
  497. case ISCSI_HOST_PARAM_INITIATOR_NAME:
  498. len = sprintf(buf, "%s\n", ha->name_string);
  499. break;
  500. default:
  501. return -ENOSYS;
  502. }
  503. return len;
  504. }
  505. static void qla4xxx_create_ipv4_iface(struct scsi_qla_host *ha)
  506. {
  507. if (ha->iface_ipv4)
  508. return;
  509. /* IPv4 */
  510. ha->iface_ipv4 = iscsi_create_iface(ha->host,
  511. &qla4xxx_iscsi_transport,
  512. ISCSI_IFACE_TYPE_IPV4, 0, 0);
  513. if (!ha->iface_ipv4)
  514. ql4_printk(KERN_ERR, ha, "Could not create IPv4 iSCSI "
  515. "iface0.\n");
  516. }
  517. static void qla4xxx_create_ipv6_iface(struct scsi_qla_host *ha)
  518. {
  519. if (!ha->iface_ipv6_0)
  520. /* IPv6 iface-0 */
  521. ha->iface_ipv6_0 = iscsi_create_iface(ha->host,
  522. &qla4xxx_iscsi_transport,
  523. ISCSI_IFACE_TYPE_IPV6, 0,
  524. 0);
  525. if (!ha->iface_ipv6_0)
  526. ql4_printk(KERN_ERR, ha, "Could not create IPv6 iSCSI "
  527. "iface0.\n");
  528. if (!ha->iface_ipv6_1)
  529. /* IPv6 iface-1 */
  530. ha->iface_ipv6_1 = iscsi_create_iface(ha->host,
  531. &qla4xxx_iscsi_transport,
  532. ISCSI_IFACE_TYPE_IPV6, 1,
  533. 0);
  534. if (!ha->iface_ipv6_1)
  535. ql4_printk(KERN_ERR, ha, "Could not create IPv6 iSCSI "
  536. "iface1.\n");
  537. }
  538. static void qla4xxx_create_ifaces(struct scsi_qla_host *ha)
  539. {
  540. if (ha->ip_config.ipv4_options & IPOPT_IPV4_PROTOCOL_ENABLE)
  541. qla4xxx_create_ipv4_iface(ha);
  542. if (ha->ip_config.ipv6_options & IPV6_OPT_IPV6_PROTOCOL_ENABLE)
  543. qla4xxx_create_ipv6_iface(ha);
  544. }
  545. static void qla4xxx_destroy_ipv4_iface(struct scsi_qla_host *ha)
  546. {
  547. if (ha->iface_ipv4) {
  548. iscsi_destroy_iface(ha->iface_ipv4);
  549. ha->iface_ipv4 = NULL;
  550. }
  551. }
  552. static void qla4xxx_destroy_ipv6_iface(struct scsi_qla_host *ha)
  553. {
  554. if (ha->iface_ipv6_0) {
  555. iscsi_destroy_iface(ha->iface_ipv6_0);
  556. ha->iface_ipv6_0 = NULL;
  557. }
  558. if (ha->iface_ipv6_1) {
  559. iscsi_destroy_iface(ha->iface_ipv6_1);
  560. ha->iface_ipv6_1 = NULL;
  561. }
  562. }
  563. static void qla4xxx_destroy_ifaces(struct scsi_qla_host *ha)
  564. {
  565. qla4xxx_destroy_ipv4_iface(ha);
  566. qla4xxx_destroy_ipv6_iface(ha);
  567. }
  568. static void qla4xxx_set_ipv6(struct scsi_qla_host *ha,
  569. struct iscsi_iface_param_info *iface_param,
  570. struct addr_ctrl_blk *init_fw_cb)
  571. {
  572. /*
  573. * iface_num 0 is valid for IPv6 Addr, linklocal, router, autocfg.
  574. * iface_num 1 is valid only for IPv6 Addr.
  575. */
  576. switch (iface_param->param) {
  577. case ISCSI_NET_PARAM_IPV6_ADDR:
  578. if (iface_param->iface_num & 0x1)
  579. /* IPv6 Addr 1 */
  580. memcpy(init_fw_cb->ipv6_addr1, iface_param->value,
  581. sizeof(init_fw_cb->ipv6_addr1));
  582. else
  583. /* IPv6 Addr 0 */
  584. memcpy(init_fw_cb->ipv6_addr0, iface_param->value,
  585. sizeof(init_fw_cb->ipv6_addr0));
  586. break;
  587. case ISCSI_NET_PARAM_IPV6_LINKLOCAL:
  588. if (iface_param->iface_num & 0x1)
  589. break;
  590. memcpy(init_fw_cb->ipv6_if_id, &iface_param->value[8],
  591. sizeof(init_fw_cb->ipv6_if_id));
  592. break;
  593. case ISCSI_NET_PARAM_IPV6_ROUTER:
  594. if (iface_param->iface_num & 0x1)
  595. break;
  596. memcpy(init_fw_cb->ipv6_dflt_rtr_addr, iface_param->value,
  597. sizeof(init_fw_cb->ipv6_dflt_rtr_addr));
  598. break;
  599. case ISCSI_NET_PARAM_IPV6_ADDR_AUTOCFG:
  600. /* Autocfg applies to even interface */
  601. if (iface_param->iface_num & 0x1)
  602. break;
  603. if (iface_param->value[0] == ISCSI_IPV6_AUTOCFG_DISABLE)
  604. init_fw_cb->ipv6_addtl_opts &=
  605. cpu_to_le16(
  606. ~IPV6_ADDOPT_NEIGHBOR_DISCOVERY_ADDR_ENABLE);
  607. else if (iface_param->value[0] == ISCSI_IPV6_AUTOCFG_ND_ENABLE)
  608. init_fw_cb->ipv6_addtl_opts |=
  609. cpu_to_le16(
  610. IPV6_ADDOPT_NEIGHBOR_DISCOVERY_ADDR_ENABLE);
  611. else
  612. ql4_printk(KERN_ERR, ha, "Invalid autocfg setting for "
  613. "IPv6 addr\n");
  614. break;
  615. case ISCSI_NET_PARAM_IPV6_LINKLOCAL_AUTOCFG:
  616. /* Autocfg applies to even interface */
  617. if (iface_param->iface_num & 0x1)
  618. break;
  619. if (iface_param->value[0] ==
  620. ISCSI_IPV6_LINKLOCAL_AUTOCFG_ENABLE)
  621. init_fw_cb->ipv6_addtl_opts |= cpu_to_le16(
  622. IPV6_ADDOPT_AUTOCONFIG_LINK_LOCAL_ADDR);
  623. else if (iface_param->value[0] ==
  624. ISCSI_IPV6_LINKLOCAL_AUTOCFG_DISABLE)
  625. init_fw_cb->ipv6_addtl_opts &= cpu_to_le16(
  626. ~IPV6_ADDOPT_AUTOCONFIG_LINK_LOCAL_ADDR);
  627. else
  628. ql4_printk(KERN_ERR, ha, "Invalid autocfg setting for "
  629. "IPv6 linklocal addr\n");
  630. break;
  631. case ISCSI_NET_PARAM_IPV6_ROUTER_AUTOCFG:
  632. /* Autocfg applies to even interface */
  633. if (iface_param->iface_num & 0x1)
  634. break;
  635. if (iface_param->value[0] == ISCSI_IPV6_ROUTER_AUTOCFG_ENABLE)
  636. memset(init_fw_cb->ipv6_dflt_rtr_addr, 0,
  637. sizeof(init_fw_cb->ipv6_dflt_rtr_addr));
  638. break;
  639. case ISCSI_NET_PARAM_IFACE_ENABLE:
  640. if (iface_param->value[0] == ISCSI_IFACE_ENABLE) {
  641. init_fw_cb->ipv6_opts |=
  642. cpu_to_le16(IPV6_OPT_IPV6_PROTOCOL_ENABLE);
  643. qla4xxx_create_ipv6_iface(ha);
  644. } else {
  645. init_fw_cb->ipv6_opts &=
  646. cpu_to_le16(~IPV6_OPT_IPV6_PROTOCOL_ENABLE &
  647. 0xFFFF);
  648. qla4xxx_destroy_ipv6_iface(ha);
  649. }
  650. break;
  651. case ISCSI_NET_PARAM_VLAN_ID:
  652. if (iface_param->len != sizeof(init_fw_cb->ipv6_vlan_tag))
  653. break;
  654. init_fw_cb->ipv6_vlan_tag =
  655. cpu_to_be16(*(uint16_t *)iface_param->value);
  656. break;
  657. case ISCSI_NET_PARAM_VLAN_ENABLED:
  658. if (iface_param->value[0] == ISCSI_VLAN_ENABLE)
  659. init_fw_cb->ipv6_opts |=
  660. cpu_to_le16(IPV6_OPT_VLAN_TAGGING_ENABLE);
  661. else
  662. init_fw_cb->ipv6_opts &=
  663. cpu_to_le16(~IPV6_OPT_VLAN_TAGGING_ENABLE);
  664. break;
  665. case ISCSI_NET_PARAM_MTU:
  666. init_fw_cb->eth_mtu_size =
  667. cpu_to_le16(*(uint16_t *)iface_param->value);
  668. break;
  669. case ISCSI_NET_PARAM_PORT:
  670. /* Autocfg applies to even interface */
  671. if (iface_param->iface_num & 0x1)
  672. break;
  673. init_fw_cb->ipv6_port =
  674. cpu_to_le16(*(uint16_t *)iface_param->value);
  675. break;
  676. default:
  677. ql4_printk(KERN_ERR, ha, "Unknown IPv6 param = %d\n",
  678. iface_param->param);
  679. break;
  680. }
  681. }
  682. static void qla4xxx_set_ipv4(struct scsi_qla_host *ha,
  683. struct iscsi_iface_param_info *iface_param,
  684. struct addr_ctrl_blk *init_fw_cb)
  685. {
  686. switch (iface_param->param) {
  687. case ISCSI_NET_PARAM_IPV4_ADDR:
  688. memcpy(init_fw_cb->ipv4_addr, iface_param->value,
  689. sizeof(init_fw_cb->ipv4_addr));
  690. break;
  691. case ISCSI_NET_PARAM_IPV4_SUBNET:
  692. memcpy(init_fw_cb->ipv4_subnet, iface_param->value,
  693. sizeof(init_fw_cb->ipv4_subnet));
  694. break;
  695. case ISCSI_NET_PARAM_IPV4_GW:
  696. memcpy(init_fw_cb->ipv4_gw_addr, iface_param->value,
  697. sizeof(init_fw_cb->ipv4_gw_addr));
  698. break;
  699. case ISCSI_NET_PARAM_IPV4_BOOTPROTO:
  700. if (iface_param->value[0] == ISCSI_BOOTPROTO_DHCP)
  701. init_fw_cb->ipv4_tcp_opts |=
  702. cpu_to_le16(TCPOPT_DHCP_ENABLE);
  703. else if (iface_param->value[0] == ISCSI_BOOTPROTO_STATIC)
  704. init_fw_cb->ipv4_tcp_opts &=
  705. cpu_to_le16(~TCPOPT_DHCP_ENABLE);
  706. else
  707. ql4_printk(KERN_ERR, ha, "Invalid IPv4 bootproto\n");
  708. break;
  709. case ISCSI_NET_PARAM_IFACE_ENABLE:
  710. if (iface_param->value[0] == ISCSI_IFACE_ENABLE) {
  711. init_fw_cb->ipv4_ip_opts |=
  712. cpu_to_le16(IPOPT_IPV4_PROTOCOL_ENABLE);
  713. qla4xxx_create_ipv4_iface(ha);
  714. } else {
  715. init_fw_cb->ipv4_ip_opts &=
  716. cpu_to_le16(~IPOPT_IPV4_PROTOCOL_ENABLE &
  717. 0xFFFF);
  718. qla4xxx_destroy_ipv4_iface(ha);
  719. }
  720. break;
  721. case ISCSI_NET_PARAM_VLAN_ID:
  722. if (iface_param->len != sizeof(init_fw_cb->ipv4_vlan_tag))
  723. break;
  724. init_fw_cb->ipv4_vlan_tag =
  725. cpu_to_be16(*(uint16_t *)iface_param->value);
  726. break;
  727. case ISCSI_NET_PARAM_VLAN_ENABLED:
  728. if (iface_param->value[0] == ISCSI_VLAN_ENABLE)
  729. init_fw_cb->ipv4_ip_opts |=
  730. cpu_to_le16(IPOPT_VLAN_TAGGING_ENABLE);
  731. else
  732. init_fw_cb->ipv4_ip_opts &=
  733. cpu_to_le16(~IPOPT_VLAN_TAGGING_ENABLE);
  734. break;
  735. case ISCSI_NET_PARAM_MTU:
  736. init_fw_cb->eth_mtu_size =
  737. cpu_to_le16(*(uint16_t *)iface_param->value);
  738. break;
  739. case ISCSI_NET_PARAM_PORT:
  740. init_fw_cb->ipv4_port =
  741. cpu_to_le16(*(uint16_t *)iface_param->value);
  742. break;
  743. default:
  744. ql4_printk(KERN_ERR, ha, "Unknown IPv4 param = %d\n",
  745. iface_param->param);
  746. break;
  747. }
  748. }
  749. static void
  750. qla4xxx_initcb_to_acb(struct addr_ctrl_blk *init_fw_cb)
  751. {
  752. struct addr_ctrl_blk_def *acb;
  753. acb = (struct addr_ctrl_blk_def *)init_fw_cb;
  754. memset(acb->reserved1, 0, sizeof(acb->reserved1));
  755. memset(acb->reserved2, 0, sizeof(acb->reserved2));
  756. memset(acb->reserved3, 0, sizeof(acb->reserved3));
  757. memset(acb->reserved4, 0, sizeof(acb->reserved4));
  758. memset(acb->reserved5, 0, sizeof(acb->reserved5));
  759. memset(acb->reserved6, 0, sizeof(acb->reserved6));
  760. memset(acb->reserved7, 0, sizeof(acb->reserved7));
  761. memset(acb->reserved8, 0, sizeof(acb->reserved8));
  762. memset(acb->reserved9, 0, sizeof(acb->reserved9));
  763. memset(acb->reserved10, 0, sizeof(acb->reserved10));
  764. memset(acb->reserved11, 0, sizeof(acb->reserved11));
  765. memset(acb->reserved12, 0, sizeof(acb->reserved12));
  766. memset(acb->reserved13, 0, sizeof(acb->reserved13));
  767. memset(acb->reserved14, 0, sizeof(acb->reserved14));
  768. memset(acb->reserved15, 0, sizeof(acb->reserved15));
  769. }
  770. static int
  771. qla4xxx_iface_set_param(struct Scsi_Host *shost, char *data, int count)
  772. {
  773. struct scsi_qla_host *ha = to_qla_host(shost);
  774. int rval = 0;
  775. struct iscsi_iface_param_info *iface_param = NULL;
  776. struct addr_ctrl_blk *init_fw_cb = NULL;
  777. dma_addr_t init_fw_cb_dma;
  778. uint32_t mbox_cmd[MBOX_REG_COUNT];
  779. uint32_t mbox_sts[MBOX_REG_COUNT];
  780. uint32_t total_param_count;
  781. uint32_t length;
  782. init_fw_cb = dma_alloc_coherent(&ha->pdev->dev,
  783. sizeof(struct addr_ctrl_blk),
  784. &init_fw_cb_dma, GFP_KERNEL);
  785. if (!init_fw_cb) {
  786. ql4_printk(KERN_ERR, ha, "%s: Unable to alloc init_cb\n",
  787. __func__);
  788. return -ENOMEM;
  789. }
  790. memset(init_fw_cb, 0, sizeof(struct addr_ctrl_blk));
  791. memset(&mbox_cmd, 0, sizeof(mbox_cmd));
  792. memset(&mbox_sts, 0, sizeof(mbox_sts));
  793. if (qla4xxx_get_ifcb(ha, &mbox_cmd[0], &mbox_sts[0], init_fw_cb_dma)) {
  794. ql4_printk(KERN_ERR, ha, "%s: get ifcb failed\n", __func__);
  795. rval = -EIO;
  796. goto exit_init_fw_cb;
  797. }
  798. total_param_count = count;
  799. iface_param = (struct iscsi_iface_param_info *)data;
  800. for ( ; total_param_count != 0; total_param_count--) {
  801. length = iface_param->len;
  802. if (iface_param->param_type != ISCSI_NET_PARAM)
  803. continue;
  804. switch (iface_param->iface_type) {
  805. case ISCSI_IFACE_TYPE_IPV4:
  806. switch (iface_param->iface_num) {
  807. case 0:
  808. qla4xxx_set_ipv4(ha, iface_param, init_fw_cb);
  809. break;
  810. default:
  811. /* Cannot have more than one IPv4 interface */
  812. ql4_printk(KERN_ERR, ha, "Invalid IPv4 iface "
  813. "number = %d\n",
  814. iface_param->iface_num);
  815. break;
  816. }
  817. break;
  818. case ISCSI_IFACE_TYPE_IPV6:
  819. switch (iface_param->iface_num) {
  820. case 0:
  821. case 1:
  822. qla4xxx_set_ipv6(ha, iface_param, init_fw_cb);
  823. break;
  824. default:
  825. /* Cannot have more than two IPv6 interface */
  826. ql4_printk(KERN_ERR, ha, "Invalid IPv6 iface "
  827. "number = %d\n",
  828. iface_param->iface_num);
  829. break;
  830. }
  831. break;
  832. default:
  833. ql4_printk(KERN_ERR, ha, "Invalid iface type\n");
  834. break;
  835. }
  836. iface_param = (struct iscsi_iface_param_info *)
  837. ((uint8_t *)iface_param +
  838. sizeof(struct iscsi_iface_param_info) + length);
  839. }
  840. init_fw_cb->cookie = cpu_to_le32(0x11BEAD5A);
  841. rval = qla4xxx_set_flash(ha, init_fw_cb_dma, FLASH_SEGMENT_IFCB,
  842. sizeof(struct addr_ctrl_blk),
  843. FLASH_OPT_RMW_COMMIT);
  844. if (rval != QLA_SUCCESS) {
  845. ql4_printk(KERN_ERR, ha, "%s: set flash mbx failed\n",
  846. __func__);
  847. rval = -EIO;
  848. goto exit_init_fw_cb;
  849. }
  850. qla4xxx_disable_acb(ha);
  851. qla4xxx_initcb_to_acb(init_fw_cb);
  852. rval = qla4xxx_set_acb(ha, &mbox_cmd[0], &mbox_sts[0], init_fw_cb_dma);
  853. if (rval != QLA_SUCCESS) {
  854. ql4_printk(KERN_ERR, ha, "%s: set acb mbx failed\n",
  855. __func__);
  856. rval = -EIO;
  857. goto exit_init_fw_cb;
  858. }
  859. memset(init_fw_cb, 0, sizeof(struct addr_ctrl_blk));
  860. qla4xxx_update_local_ifcb(ha, &mbox_cmd[0], &mbox_sts[0], init_fw_cb,
  861. init_fw_cb_dma);
  862. exit_init_fw_cb:
  863. dma_free_coherent(&ha->pdev->dev, sizeof(struct addr_ctrl_blk),
  864. init_fw_cb, init_fw_cb_dma);
  865. return rval;
  866. }
  867. static int qla4xxx_conn_get_param(struct iscsi_cls_conn *cls_conn,
  868. enum iscsi_param param, char *buf)
  869. {
  870. struct iscsi_conn *conn;
  871. struct qla_conn *qla_conn;
  872. struct sockaddr *dst_addr;
  873. int len = 0;
  874. conn = cls_conn->dd_data;
  875. qla_conn = conn->dd_data;
  876. dst_addr = &qla_conn->qla_ep->dst_addr;
  877. switch (param) {
  878. case ISCSI_PARAM_CONN_PORT:
  879. case ISCSI_PARAM_CONN_ADDRESS:
  880. return iscsi_conn_get_addr_param((struct sockaddr_storage *)
  881. dst_addr, param, buf);
  882. default:
  883. return iscsi_conn_get_param(cls_conn, param, buf);
  884. }
  885. return len;
  886. }
  887. static struct iscsi_cls_session *
  888. qla4xxx_session_create(struct iscsi_endpoint *ep,
  889. uint16_t cmds_max, uint16_t qdepth,
  890. uint32_t initial_cmdsn)
  891. {
  892. struct iscsi_cls_session *cls_sess;
  893. struct scsi_qla_host *ha;
  894. struct qla_endpoint *qla_ep;
  895. struct ddb_entry *ddb_entry;
  896. uint32_t ddb_index;
  897. uint32_t mbx_sts = 0;
  898. struct iscsi_session *sess;
  899. struct sockaddr *dst_addr;
  900. int ret;
  901. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  902. if (!ep) {
  903. printk(KERN_ERR "qla4xxx: missing ep.\n");
  904. return NULL;
  905. }
  906. qla_ep = ep->dd_data;
  907. dst_addr = (struct sockaddr *)&qla_ep->dst_addr;
  908. ha = to_qla_host(qla_ep->host);
  909. get_ddb_index:
  910. ddb_index = find_first_zero_bit(ha->ddb_idx_map, MAX_DDB_ENTRIES);
  911. if (ddb_index >= MAX_DDB_ENTRIES) {
  912. DEBUG2(ql4_printk(KERN_INFO, ha,
  913. "Free DDB index not available\n"));
  914. return NULL;
  915. }
  916. if (test_and_set_bit(ddb_index, ha->ddb_idx_map))
  917. goto get_ddb_index;
  918. DEBUG2(ql4_printk(KERN_INFO, ha,
  919. "Found a free DDB index at %d\n", ddb_index));
  920. ret = qla4xxx_req_ddb_entry(ha, ddb_index, &mbx_sts);
  921. if (ret == QLA_ERROR) {
  922. if (mbx_sts == MBOX_STS_COMMAND_ERROR) {
  923. ql4_printk(KERN_INFO, ha,
  924. "DDB index = %d not available trying next\n",
  925. ddb_index);
  926. goto get_ddb_index;
  927. }
  928. DEBUG2(ql4_printk(KERN_INFO, ha,
  929. "Free FW DDB not available\n"));
  930. return NULL;
  931. }
  932. cls_sess = iscsi_session_setup(&qla4xxx_iscsi_transport, qla_ep->host,
  933. cmds_max, sizeof(struct ddb_entry),
  934. sizeof(struct ql4_task_data),
  935. initial_cmdsn, ddb_index);
  936. if (!cls_sess)
  937. return NULL;
  938. sess = cls_sess->dd_data;
  939. ddb_entry = sess->dd_data;
  940. ddb_entry->fw_ddb_index = ddb_index;
  941. ddb_entry->fw_ddb_device_state = DDB_DS_NO_CONNECTION_ACTIVE;
  942. ddb_entry->ha = ha;
  943. ddb_entry->sess = cls_sess;
  944. cls_sess->recovery_tmo = ql4xsess_recovery_tmo;
  945. ha->fw_ddb_index_map[ddb_entry->fw_ddb_index] = ddb_entry;
  946. ha->tot_ddbs++;
  947. return cls_sess;
  948. }
  949. static void qla4xxx_session_destroy(struct iscsi_cls_session *cls_sess)
  950. {
  951. struct iscsi_session *sess;
  952. struct ddb_entry *ddb_entry;
  953. struct scsi_qla_host *ha;
  954. unsigned long flags;
  955. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  956. sess = cls_sess->dd_data;
  957. ddb_entry = sess->dd_data;
  958. ha = ddb_entry->ha;
  959. spin_lock_irqsave(&ha->hardware_lock, flags);
  960. qla4xxx_free_ddb(ha, ddb_entry);
  961. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  962. iscsi_session_teardown(cls_sess);
  963. }
  964. static struct iscsi_cls_conn *
  965. qla4xxx_conn_create(struct iscsi_cls_session *cls_sess, uint32_t conn_idx)
  966. {
  967. struct iscsi_cls_conn *cls_conn;
  968. struct iscsi_session *sess;
  969. struct ddb_entry *ddb_entry;
  970. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  971. cls_conn = iscsi_conn_setup(cls_sess, sizeof(struct qla_conn),
  972. conn_idx);
  973. sess = cls_sess->dd_data;
  974. ddb_entry = sess->dd_data;
  975. ddb_entry->conn = cls_conn;
  976. return cls_conn;
  977. }
  978. static int qla4xxx_conn_bind(struct iscsi_cls_session *cls_session,
  979. struct iscsi_cls_conn *cls_conn,
  980. uint64_t transport_fd, int is_leading)
  981. {
  982. struct iscsi_conn *conn;
  983. struct qla_conn *qla_conn;
  984. struct iscsi_endpoint *ep;
  985. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  986. if (iscsi_conn_bind(cls_session, cls_conn, is_leading))
  987. return -EINVAL;
  988. ep = iscsi_lookup_endpoint(transport_fd);
  989. conn = cls_conn->dd_data;
  990. qla_conn = conn->dd_data;
  991. qla_conn->qla_ep = ep->dd_data;
  992. return 0;
  993. }
  994. static int qla4xxx_conn_start(struct iscsi_cls_conn *cls_conn)
  995. {
  996. struct iscsi_cls_session *cls_sess = iscsi_conn_to_session(cls_conn);
  997. struct iscsi_session *sess;
  998. struct ddb_entry *ddb_entry;
  999. struct scsi_qla_host *ha;
  1000. struct dev_db_entry *fw_ddb_entry;
  1001. dma_addr_t fw_ddb_entry_dma;
  1002. uint32_t mbx_sts = 0;
  1003. int ret = 0;
  1004. int status = QLA_SUCCESS;
  1005. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  1006. sess = cls_sess->dd_data;
  1007. ddb_entry = sess->dd_data;
  1008. ha = ddb_entry->ha;
  1009. fw_ddb_entry = dma_alloc_coherent(&ha->pdev->dev, sizeof(*fw_ddb_entry),
  1010. &fw_ddb_entry_dma, GFP_KERNEL);
  1011. if (!fw_ddb_entry) {
  1012. ql4_printk(KERN_ERR, ha,
  1013. "%s: Unable to allocate dma buffer\n", __func__);
  1014. return -ENOMEM;
  1015. }
  1016. ret = qla4xxx_set_param_ddbentry(ha, ddb_entry, cls_conn, &mbx_sts);
  1017. if (ret) {
  1018. /* If iscsid is stopped and started then no need to do
  1019. * set param again since ddb state will be already
  1020. * active and FW does not allow set ddb to an
  1021. * active session.
  1022. */
  1023. if (mbx_sts)
  1024. if (ddb_entry->fw_ddb_device_state ==
  1025. DDB_DS_SESSION_ACTIVE)
  1026. goto exit_set_param;
  1027. ql4_printk(KERN_ERR, ha, "%s: Failed set param for index[%d]\n",
  1028. __func__, ddb_entry->fw_ddb_index);
  1029. goto exit_conn_start;
  1030. }
  1031. status = qla4xxx_conn_open(ha, ddb_entry->fw_ddb_index);
  1032. if (status == QLA_ERROR) {
  1033. ql4_printk(KERN_ERR, ha, "%s: Login failed: %s\n", __func__,
  1034. sess->targetname);
  1035. ret = -EINVAL;
  1036. goto exit_conn_start;
  1037. }
  1038. ddb_entry->fw_ddb_device_state = DDB_DS_LOGIN_IN_PROCESS;
  1039. exit_set_param:
  1040. iscsi_conn_start(cls_conn);
  1041. ret = 0;
  1042. exit_conn_start:
  1043. dma_free_coherent(&ha->pdev->dev, sizeof(*fw_ddb_entry),
  1044. fw_ddb_entry, fw_ddb_entry_dma);
  1045. return ret;
  1046. }
  1047. static void qla4xxx_conn_destroy(struct iscsi_cls_conn *cls_conn)
  1048. {
  1049. struct iscsi_cls_session *cls_sess = iscsi_conn_to_session(cls_conn);
  1050. struct iscsi_session *sess;
  1051. struct scsi_qla_host *ha;
  1052. struct ddb_entry *ddb_entry;
  1053. int options;
  1054. DEBUG2(printk(KERN_INFO "Func: %s\n", __func__));
  1055. sess = cls_sess->dd_data;
  1056. ddb_entry = sess->dd_data;
  1057. ha = ddb_entry->ha;
  1058. options = LOGOUT_OPTION_CLOSE_SESSION;
  1059. if (qla4xxx_session_logout_ddb(ha, ddb_entry, options) == QLA_ERROR)
  1060. ql4_printk(KERN_ERR, ha, "%s: Logout failed\n", __func__);
  1061. else
  1062. qla4xxx_clear_ddb_entry(ha, ddb_entry->fw_ddb_index);
  1063. /*
  1064. * Clear the DDB bit so that next login can use the bit
  1065. * if FW is not clearing the DDB entry then set DDB will fail anyways
  1066. */
  1067. clear_bit(ddb_entry->fw_ddb_index, ha->ddb_idx_map);
  1068. }
  1069. static void qla4xxx_task_work(struct work_struct *wdata)
  1070. {
  1071. struct ql4_task_data *task_data;
  1072. struct scsi_qla_host *ha;
  1073. struct passthru_status *sts;
  1074. struct iscsi_task *task;
  1075. struct iscsi_hdr *hdr;
  1076. uint8_t *data;
  1077. uint32_t data_len;
  1078. struct iscsi_conn *conn;
  1079. int hdr_len;
  1080. itt_t itt;
  1081. task_data = container_of(wdata, struct ql4_task_data, task_work);
  1082. ha = task_data->ha;
  1083. task = task_data->task;
  1084. sts = &task_data->sts;
  1085. hdr_len = sizeof(struct iscsi_hdr);
  1086. DEBUG3(printk(KERN_INFO "Status returned\n"));
  1087. DEBUG3(qla4xxx_dump_buffer(sts, 64));
  1088. DEBUG3(printk(KERN_INFO "Response buffer"));
  1089. DEBUG3(qla4xxx_dump_buffer(task_data->resp_buffer, 64));
  1090. conn = task->conn;
  1091. switch (sts->completionStatus) {
  1092. case PASSTHRU_STATUS_COMPLETE:
  1093. hdr = (struct iscsi_hdr *)task_data->resp_buffer;
  1094. /* Assign back the itt in hdr, until we use the PREASSIGN_TAG */
  1095. itt = sts->handle;
  1096. hdr->itt = itt;
  1097. data = task_data->resp_buffer + hdr_len;
  1098. data_len = task_data->resp_len - hdr_len;
  1099. iscsi_complete_pdu(conn, hdr, data, data_len);
  1100. break;
  1101. default:
  1102. ql4_printk(KERN_ERR, ha, "Passthru failed status = 0x%x\n",
  1103. sts->completionStatus);
  1104. break;
  1105. }
  1106. return;
  1107. }
  1108. static int qla4xxx_alloc_pdu(struct iscsi_task *task, uint8_t opcode)
  1109. {
  1110. struct ql4_task_data *task_data;
  1111. struct iscsi_session *sess;
  1112. struct ddb_entry *ddb_entry;
  1113. struct scsi_qla_host *ha;
  1114. int hdr_len;
  1115. sess = task->conn->session;
  1116. ddb_entry = sess->dd_data;
  1117. ha = ddb_entry->ha;
  1118. task_data = task->dd_data;
  1119. memset(task_data, 0, sizeof(struct ql4_task_data));
  1120. if (task->sc) {
  1121. ql4_printk(KERN_INFO, ha,
  1122. "%s: SCSI Commands not implemented\n", __func__);
  1123. return -EINVAL;
  1124. }
  1125. hdr_len = sizeof(struct iscsi_hdr);
  1126. task_data->ha = ha;
  1127. task_data->task = task;
  1128. if (task->data_count) {
  1129. task_data->data_dma = dma_map_single(&ha->pdev->dev, task->data,
  1130. task->data_count,
  1131. PCI_DMA_TODEVICE);
  1132. }
  1133. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: MaxRecvLen %u, iscsi hrd %d\n",
  1134. __func__, task->conn->max_recv_dlength, hdr_len));
  1135. task_data->resp_len = task->conn->max_recv_dlength;
  1136. task_data->resp_buffer = dma_alloc_coherent(&ha->pdev->dev,
  1137. task_data->resp_len,
  1138. &task_data->resp_dma,
  1139. GFP_ATOMIC);
  1140. if (!task_data->resp_buffer)
  1141. goto exit_alloc_pdu;
  1142. task_data->req_buffer = dma_alloc_coherent(&ha->pdev->dev,
  1143. task->data_count + hdr_len,
  1144. &task_data->req_dma,
  1145. GFP_ATOMIC);
  1146. if (!task_data->req_buffer)
  1147. goto exit_alloc_pdu;
  1148. task->hdr = task_data->req_buffer;
  1149. INIT_WORK(&task_data->task_work, qla4xxx_task_work);
  1150. return 0;
  1151. exit_alloc_pdu:
  1152. if (task_data->resp_buffer)
  1153. dma_free_coherent(&ha->pdev->dev, task_data->resp_len,
  1154. task_data->resp_buffer, task_data->resp_dma);
  1155. if (task_data->req_buffer)
  1156. dma_free_coherent(&ha->pdev->dev, task->data_count + hdr_len,
  1157. task_data->req_buffer, task_data->req_dma);
  1158. return -ENOMEM;
  1159. }
  1160. static void qla4xxx_task_cleanup(struct iscsi_task *task)
  1161. {
  1162. struct ql4_task_data *task_data;
  1163. struct iscsi_session *sess;
  1164. struct ddb_entry *ddb_entry;
  1165. struct scsi_qla_host *ha;
  1166. int hdr_len;
  1167. hdr_len = sizeof(struct iscsi_hdr);
  1168. sess = task->conn->session;
  1169. ddb_entry = sess->dd_data;
  1170. ha = ddb_entry->ha;
  1171. task_data = task->dd_data;
  1172. if (task->data_count) {
  1173. dma_unmap_single(&ha->pdev->dev, task_data->data_dma,
  1174. task->data_count, PCI_DMA_TODEVICE);
  1175. }
  1176. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: MaxRecvLen %u, iscsi hrd %d\n",
  1177. __func__, task->conn->max_recv_dlength, hdr_len));
  1178. dma_free_coherent(&ha->pdev->dev, task_data->resp_len,
  1179. task_data->resp_buffer, task_data->resp_dma);
  1180. dma_free_coherent(&ha->pdev->dev, task->data_count + hdr_len,
  1181. task_data->req_buffer, task_data->req_dma);
  1182. return;
  1183. }
  1184. static int qla4xxx_task_xmit(struct iscsi_task *task)
  1185. {
  1186. struct scsi_cmnd *sc = task->sc;
  1187. struct iscsi_session *sess = task->conn->session;
  1188. struct ddb_entry *ddb_entry = sess->dd_data;
  1189. struct scsi_qla_host *ha = ddb_entry->ha;
  1190. if (!sc)
  1191. return qla4xxx_send_passthru0(task);
  1192. ql4_printk(KERN_INFO, ha, "%s: scsi cmd xmit not implemented\n",
  1193. __func__);
  1194. return -ENOSYS;
  1195. }
  1196. void qla4xxx_update_session_conn_param(struct scsi_qla_host *ha,
  1197. struct ddb_entry *ddb_entry)
  1198. {
  1199. struct iscsi_cls_session *cls_sess;
  1200. struct iscsi_cls_conn *cls_conn;
  1201. struct iscsi_session *sess;
  1202. struct iscsi_conn *conn;
  1203. uint32_t ddb_state;
  1204. dma_addr_t fw_ddb_entry_dma;
  1205. struct dev_db_entry *fw_ddb_entry;
  1206. fw_ddb_entry = dma_alloc_coherent(&ha->pdev->dev, sizeof(*fw_ddb_entry),
  1207. &fw_ddb_entry_dma, GFP_KERNEL);
  1208. if (!fw_ddb_entry) {
  1209. ql4_printk(KERN_ERR, ha,
  1210. "%s: Unable to allocate dma buffer\n", __func__);
  1211. return;
  1212. }
  1213. if (qla4xxx_get_fwddb_entry(ha, ddb_entry->fw_ddb_index, fw_ddb_entry,
  1214. fw_ddb_entry_dma, NULL, NULL, &ddb_state,
  1215. NULL, NULL, NULL) == QLA_ERROR) {
  1216. DEBUG2(ql4_printk(KERN_ERR, ha, "scsi%ld: %s: failed "
  1217. "get_ddb_entry for fw_ddb_index %d\n",
  1218. ha->host_no, __func__,
  1219. ddb_entry->fw_ddb_index));
  1220. return;
  1221. }
  1222. cls_sess = ddb_entry->sess;
  1223. sess = cls_sess->dd_data;
  1224. cls_conn = ddb_entry->conn;
  1225. conn = cls_conn->dd_data;
  1226. /* Update params */
  1227. conn->max_recv_dlength = BYTE_UNITS *
  1228. le16_to_cpu(fw_ddb_entry->iscsi_max_rcv_data_seg_len);
  1229. conn->max_xmit_dlength = BYTE_UNITS *
  1230. le16_to_cpu(fw_ddb_entry->iscsi_max_snd_data_seg_len);
  1231. sess->initial_r2t_en =
  1232. (BIT_10 & le16_to_cpu(fw_ddb_entry->iscsi_options));
  1233. sess->max_r2t = le16_to_cpu(fw_ddb_entry->iscsi_max_outsnd_r2t);
  1234. sess->imm_data_en = (BIT_11 & le16_to_cpu(fw_ddb_entry->iscsi_options));
  1235. sess->first_burst = BYTE_UNITS *
  1236. le16_to_cpu(fw_ddb_entry->iscsi_first_burst_len);
  1237. sess->max_burst = BYTE_UNITS *
  1238. le16_to_cpu(fw_ddb_entry->iscsi_max_burst_len);
  1239. sess->time2wait = le16_to_cpu(fw_ddb_entry->iscsi_def_time2wait);
  1240. sess->time2retain = le16_to_cpu(fw_ddb_entry->iscsi_def_time2retain);
  1241. sess->tpgt = le32_to_cpu(fw_ddb_entry->tgt_portal_grp);
  1242. memcpy(sess->initiatorname, ha->name_string,
  1243. min(sizeof(ha->name_string), sizeof(sess->initiatorname)));
  1244. }
  1245. /*
  1246. * Timer routines
  1247. */
  1248. static void qla4xxx_start_timer(struct scsi_qla_host *ha, void *func,
  1249. unsigned long interval)
  1250. {
  1251. DEBUG(printk("scsi: %s: Starting timer thread for adapter %d\n",
  1252. __func__, ha->host->host_no));
  1253. init_timer(&ha->timer);
  1254. ha->timer.expires = jiffies + interval * HZ;
  1255. ha->timer.data = (unsigned long)ha;
  1256. ha->timer.function = (void (*)(unsigned long))func;
  1257. add_timer(&ha->timer);
  1258. ha->timer_active = 1;
  1259. }
  1260. static void qla4xxx_stop_timer(struct scsi_qla_host *ha)
  1261. {
  1262. del_timer_sync(&ha->timer);
  1263. ha->timer_active = 0;
  1264. }
  1265. /***
  1266. * qla4xxx_mark_device_missing - blocks the session
  1267. * @cls_session: Pointer to the session to be blocked
  1268. * @ddb_entry: Pointer to device database entry
  1269. *
  1270. * This routine marks a device missing and close connection.
  1271. **/
  1272. void qla4xxx_mark_device_missing(struct iscsi_cls_session *cls_session)
  1273. {
  1274. iscsi_block_session(cls_session);
  1275. }
  1276. /**
  1277. * qla4xxx_mark_all_devices_missing - mark all devices as missing.
  1278. * @ha: Pointer to host adapter structure.
  1279. *
  1280. * This routine marks a device missing and resets the relogin retry count.
  1281. **/
  1282. void qla4xxx_mark_all_devices_missing(struct scsi_qla_host *ha)
  1283. {
  1284. iscsi_host_for_each_session(ha->host, qla4xxx_mark_device_missing);
  1285. }
  1286. static struct srb* qla4xxx_get_new_srb(struct scsi_qla_host *ha,
  1287. struct ddb_entry *ddb_entry,
  1288. struct scsi_cmnd *cmd)
  1289. {
  1290. struct srb *srb;
  1291. srb = mempool_alloc(ha->srb_mempool, GFP_ATOMIC);
  1292. if (!srb)
  1293. return srb;
  1294. kref_init(&srb->srb_ref);
  1295. srb->ha = ha;
  1296. srb->ddb = ddb_entry;
  1297. srb->cmd = cmd;
  1298. srb->flags = 0;
  1299. CMD_SP(cmd) = (void *)srb;
  1300. return srb;
  1301. }
  1302. static void qla4xxx_srb_free_dma(struct scsi_qla_host *ha, struct srb *srb)
  1303. {
  1304. struct scsi_cmnd *cmd = srb->cmd;
  1305. if (srb->flags & SRB_DMA_VALID) {
  1306. scsi_dma_unmap(cmd);
  1307. srb->flags &= ~SRB_DMA_VALID;
  1308. }
  1309. CMD_SP(cmd) = NULL;
  1310. }
  1311. void qla4xxx_srb_compl(struct kref *ref)
  1312. {
  1313. struct srb *srb = container_of(ref, struct srb, srb_ref);
  1314. struct scsi_cmnd *cmd = srb->cmd;
  1315. struct scsi_qla_host *ha = srb->ha;
  1316. qla4xxx_srb_free_dma(ha, srb);
  1317. mempool_free(srb, ha->srb_mempool);
  1318. cmd->scsi_done(cmd);
  1319. }
  1320. /**
  1321. * qla4xxx_queuecommand - scsi layer issues scsi command to driver.
  1322. * @host: scsi host
  1323. * @cmd: Pointer to Linux's SCSI command structure
  1324. *
  1325. * Remarks:
  1326. * This routine is invoked by Linux to send a SCSI command to the driver.
  1327. * The mid-level driver tries to ensure that queuecommand never gets
  1328. * invoked concurrently with itself or the interrupt handler (although
  1329. * the interrupt handler may call this routine as part of request-
  1330. * completion handling). Unfortunely, it sometimes calls the scheduler
  1331. * in interrupt context which is a big NO! NO!.
  1332. **/
  1333. static int qla4xxx_queuecommand(struct Scsi_Host *host, struct scsi_cmnd *cmd)
  1334. {
  1335. struct scsi_qla_host *ha = to_qla_host(host);
  1336. struct ddb_entry *ddb_entry = cmd->device->hostdata;
  1337. struct iscsi_cls_session *sess = ddb_entry->sess;
  1338. struct srb *srb;
  1339. int rval;
  1340. if (test_bit(AF_EEH_BUSY, &ha->flags)) {
  1341. if (test_bit(AF_PCI_CHANNEL_IO_PERM_FAILURE, &ha->flags))
  1342. cmd->result = DID_NO_CONNECT << 16;
  1343. else
  1344. cmd->result = DID_REQUEUE << 16;
  1345. goto qc_fail_command;
  1346. }
  1347. if (!sess) {
  1348. cmd->result = DID_IMM_RETRY << 16;
  1349. goto qc_fail_command;
  1350. }
  1351. rval = iscsi_session_chkready(sess);
  1352. if (rval) {
  1353. cmd->result = rval;
  1354. goto qc_fail_command;
  1355. }
  1356. if (test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags) ||
  1357. test_bit(DPC_RESET_ACTIVE, &ha->dpc_flags) ||
  1358. test_bit(DPC_RESET_HA, &ha->dpc_flags) ||
  1359. test_bit(DPC_HA_UNRECOVERABLE, &ha->dpc_flags) ||
  1360. test_bit(DPC_HA_NEED_QUIESCENT, &ha->dpc_flags) ||
  1361. !test_bit(AF_ONLINE, &ha->flags) ||
  1362. !test_bit(AF_LINK_UP, &ha->flags) ||
  1363. test_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags))
  1364. goto qc_host_busy;
  1365. srb = qla4xxx_get_new_srb(ha, ddb_entry, cmd);
  1366. if (!srb)
  1367. goto qc_host_busy;
  1368. rval = qla4xxx_send_command_to_isp(ha, srb);
  1369. if (rval != QLA_SUCCESS)
  1370. goto qc_host_busy_free_sp;
  1371. return 0;
  1372. qc_host_busy_free_sp:
  1373. qla4xxx_srb_free_dma(ha, srb);
  1374. mempool_free(srb, ha->srb_mempool);
  1375. qc_host_busy:
  1376. return SCSI_MLQUEUE_HOST_BUSY;
  1377. qc_fail_command:
  1378. cmd->scsi_done(cmd);
  1379. return 0;
  1380. }
  1381. /**
  1382. * qla4xxx_mem_free - frees memory allocated to adapter
  1383. * @ha: Pointer to host adapter structure.
  1384. *
  1385. * Frees memory previously allocated by qla4xxx_mem_alloc
  1386. **/
  1387. static void qla4xxx_mem_free(struct scsi_qla_host *ha)
  1388. {
  1389. if (ha->queues)
  1390. dma_free_coherent(&ha->pdev->dev, ha->queues_len, ha->queues,
  1391. ha->queues_dma);
  1392. ha->queues_len = 0;
  1393. ha->queues = NULL;
  1394. ha->queues_dma = 0;
  1395. ha->request_ring = NULL;
  1396. ha->request_dma = 0;
  1397. ha->response_ring = NULL;
  1398. ha->response_dma = 0;
  1399. ha->shadow_regs = NULL;
  1400. ha->shadow_regs_dma = 0;
  1401. /* Free srb pool. */
  1402. if (ha->srb_mempool)
  1403. mempool_destroy(ha->srb_mempool);
  1404. ha->srb_mempool = NULL;
  1405. if (ha->chap_dma_pool)
  1406. dma_pool_destroy(ha->chap_dma_pool);
  1407. if (ha->chap_list)
  1408. vfree(ha->chap_list);
  1409. ha->chap_list = NULL;
  1410. /* release io space registers */
  1411. if (is_qla8022(ha)) {
  1412. if (ha->nx_pcibase)
  1413. iounmap(
  1414. (struct device_reg_82xx __iomem *)ha->nx_pcibase);
  1415. } else if (ha->reg)
  1416. iounmap(ha->reg);
  1417. pci_release_regions(ha->pdev);
  1418. }
  1419. /**
  1420. * qla4xxx_mem_alloc - allocates memory for use by adapter.
  1421. * @ha: Pointer to host adapter structure
  1422. *
  1423. * Allocates DMA memory for request and response queues. Also allocates memory
  1424. * for srbs.
  1425. **/
  1426. static int qla4xxx_mem_alloc(struct scsi_qla_host *ha)
  1427. {
  1428. unsigned long align;
  1429. /* Allocate contiguous block of DMA memory for queues. */
  1430. ha->queues_len = ((REQUEST_QUEUE_DEPTH * QUEUE_SIZE) +
  1431. (RESPONSE_QUEUE_DEPTH * QUEUE_SIZE) +
  1432. sizeof(struct shadow_regs) +
  1433. MEM_ALIGN_VALUE +
  1434. (PAGE_SIZE - 1)) & ~(PAGE_SIZE - 1);
  1435. ha->queues = dma_alloc_coherent(&ha->pdev->dev, ha->queues_len,
  1436. &ha->queues_dma, GFP_KERNEL);
  1437. if (ha->queues == NULL) {
  1438. ql4_printk(KERN_WARNING, ha,
  1439. "Memory Allocation failed - queues.\n");
  1440. goto mem_alloc_error_exit;
  1441. }
  1442. memset(ha->queues, 0, ha->queues_len);
  1443. /*
  1444. * As per RISC alignment requirements -- the bus-address must be a
  1445. * multiple of the request-ring size (in bytes).
  1446. */
  1447. align = 0;
  1448. if ((unsigned long)ha->queues_dma & (MEM_ALIGN_VALUE - 1))
  1449. align = MEM_ALIGN_VALUE - ((unsigned long)ha->queues_dma &
  1450. (MEM_ALIGN_VALUE - 1));
  1451. /* Update request and response queue pointers. */
  1452. ha->request_dma = ha->queues_dma + align;
  1453. ha->request_ring = (struct queue_entry *) (ha->queues + align);
  1454. ha->response_dma = ha->queues_dma + align +
  1455. (REQUEST_QUEUE_DEPTH * QUEUE_SIZE);
  1456. ha->response_ring = (struct queue_entry *) (ha->queues + align +
  1457. (REQUEST_QUEUE_DEPTH *
  1458. QUEUE_SIZE));
  1459. ha->shadow_regs_dma = ha->queues_dma + align +
  1460. (REQUEST_QUEUE_DEPTH * QUEUE_SIZE) +
  1461. (RESPONSE_QUEUE_DEPTH * QUEUE_SIZE);
  1462. ha->shadow_regs = (struct shadow_regs *) (ha->queues + align +
  1463. (REQUEST_QUEUE_DEPTH *
  1464. QUEUE_SIZE) +
  1465. (RESPONSE_QUEUE_DEPTH *
  1466. QUEUE_SIZE));
  1467. /* Allocate memory for srb pool. */
  1468. ha->srb_mempool = mempool_create(SRB_MIN_REQ, mempool_alloc_slab,
  1469. mempool_free_slab, srb_cachep);
  1470. if (ha->srb_mempool == NULL) {
  1471. ql4_printk(KERN_WARNING, ha,
  1472. "Memory Allocation failed - SRB Pool.\n");
  1473. goto mem_alloc_error_exit;
  1474. }
  1475. ha->chap_dma_pool = dma_pool_create("ql4_chap", &ha->pdev->dev,
  1476. CHAP_DMA_BLOCK_SIZE, 8, 0);
  1477. if (ha->chap_dma_pool == NULL) {
  1478. ql4_printk(KERN_WARNING, ha,
  1479. "%s: chap_dma_pool allocation failed..\n", __func__);
  1480. goto mem_alloc_error_exit;
  1481. }
  1482. return QLA_SUCCESS;
  1483. mem_alloc_error_exit:
  1484. qla4xxx_mem_free(ha);
  1485. return QLA_ERROR;
  1486. }
  1487. /**
  1488. * qla4_8xxx_check_fw_alive - Check firmware health
  1489. * @ha: Pointer to host adapter structure.
  1490. *
  1491. * Context: Interrupt
  1492. **/
  1493. static void qla4_8xxx_check_fw_alive(struct scsi_qla_host *ha)
  1494. {
  1495. uint32_t fw_heartbeat_counter, halt_status;
  1496. fw_heartbeat_counter = qla4_8xxx_rd_32(ha, QLA82XX_PEG_ALIVE_COUNTER);
  1497. /* If PEG_ALIVE_COUNTER is 0xffffffff, AER/EEH is in progress, ignore */
  1498. if (fw_heartbeat_counter == 0xffffffff) {
  1499. DEBUG2(printk(KERN_WARNING "scsi%ld: %s: Device in frozen "
  1500. "state, QLA82XX_PEG_ALIVE_COUNTER is 0xffffffff\n",
  1501. ha->host_no, __func__));
  1502. return;
  1503. }
  1504. if (ha->fw_heartbeat_counter == fw_heartbeat_counter) {
  1505. ha->seconds_since_last_heartbeat++;
  1506. /* FW not alive after 2 seconds */
  1507. if (ha->seconds_since_last_heartbeat == 2) {
  1508. ha->seconds_since_last_heartbeat = 0;
  1509. halt_status = qla4_8xxx_rd_32(ha,
  1510. QLA82XX_PEG_HALT_STATUS1);
  1511. ql4_printk(KERN_INFO, ha,
  1512. "scsi(%ld): %s, Dumping hw/fw registers:\n "
  1513. " PEG_HALT_STATUS1: 0x%x, PEG_HALT_STATUS2:"
  1514. " 0x%x,\n PEG_NET_0_PC: 0x%x, PEG_NET_1_PC:"
  1515. " 0x%x,\n PEG_NET_2_PC: 0x%x, PEG_NET_3_PC:"
  1516. " 0x%x,\n PEG_NET_4_PC: 0x%x\n",
  1517. ha->host_no, __func__, halt_status,
  1518. qla4_8xxx_rd_32(ha,
  1519. QLA82XX_PEG_HALT_STATUS2),
  1520. qla4_8xxx_rd_32(ha, QLA82XX_CRB_PEG_NET_0 +
  1521. 0x3c),
  1522. qla4_8xxx_rd_32(ha, QLA82XX_CRB_PEG_NET_1 +
  1523. 0x3c),
  1524. qla4_8xxx_rd_32(ha, QLA82XX_CRB_PEG_NET_2 +
  1525. 0x3c),
  1526. qla4_8xxx_rd_32(ha, QLA82XX_CRB_PEG_NET_3 +
  1527. 0x3c),
  1528. qla4_8xxx_rd_32(ha, QLA82XX_CRB_PEG_NET_4 +
  1529. 0x3c));
  1530. /* Since we cannot change dev_state in interrupt
  1531. * context, set appropriate DPC flag then wakeup
  1532. * DPC */
  1533. if (halt_status & HALT_STATUS_UNRECOVERABLE)
  1534. set_bit(DPC_HA_UNRECOVERABLE, &ha->dpc_flags);
  1535. else {
  1536. printk("scsi%ld: %s: detect abort needed!\n",
  1537. ha->host_no, __func__);
  1538. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  1539. }
  1540. qla4xxx_wake_dpc(ha);
  1541. qla4xxx_mailbox_premature_completion(ha);
  1542. }
  1543. } else
  1544. ha->seconds_since_last_heartbeat = 0;
  1545. ha->fw_heartbeat_counter = fw_heartbeat_counter;
  1546. }
  1547. /**
  1548. * qla4_8xxx_watchdog - Poll dev state
  1549. * @ha: Pointer to host adapter structure.
  1550. *
  1551. * Context: Interrupt
  1552. **/
  1553. void qla4_8xxx_watchdog(struct scsi_qla_host *ha)
  1554. {
  1555. uint32_t dev_state;
  1556. dev_state = qla4_8xxx_rd_32(ha, QLA82XX_CRB_DEV_STATE);
  1557. /* don't poll if reset is going on */
  1558. if (!(test_bit(DPC_RESET_ACTIVE, &ha->dpc_flags) ||
  1559. test_bit(DPC_RESET_HA, &ha->dpc_flags) ||
  1560. test_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags))) {
  1561. if (dev_state == QLA82XX_DEV_NEED_RESET &&
  1562. !test_bit(DPC_RESET_HA, &ha->dpc_flags)) {
  1563. if (!ql4xdontresethba) {
  1564. ql4_printk(KERN_INFO, ha, "%s: HW State: "
  1565. "NEED RESET!\n", __func__);
  1566. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  1567. qla4xxx_wake_dpc(ha);
  1568. qla4xxx_mailbox_premature_completion(ha);
  1569. }
  1570. } else if (dev_state == QLA82XX_DEV_NEED_QUIESCENT &&
  1571. !test_bit(DPC_HA_NEED_QUIESCENT, &ha->dpc_flags)) {
  1572. ql4_printk(KERN_INFO, ha, "%s: HW State: NEED QUIES!\n",
  1573. __func__);
  1574. set_bit(DPC_HA_NEED_QUIESCENT, &ha->dpc_flags);
  1575. qla4xxx_wake_dpc(ha);
  1576. } else {
  1577. /* Check firmware health */
  1578. qla4_8xxx_check_fw_alive(ha);
  1579. }
  1580. }
  1581. }
  1582. /**
  1583. * qla4xxx_timer - checks every second for work to do.
  1584. * @ha: Pointer to host adapter structure.
  1585. **/
  1586. static void qla4xxx_timer(struct scsi_qla_host *ha)
  1587. {
  1588. int start_dpc = 0;
  1589. uint16_t w;
  1590. /* If we are in the middle of AER/EEH processing
  1591. * skip any processing and reschedule the timer
  1592. */
  1593. if (test_bit(AF_EEH_BUSY, &ha->flags)) {
  1594. mod_timer(&ha->timer, jiffies + HZ);
  1595. return;
  1596. }
  1597. /* Hardware read to trigger an EEH error during mailbox waits. */
  1598. if (!pci_channel_offline(ha->pdev))
  1599. pci_read_config_word(ha->pdev, PCI_VENDOR_ID, &w);
  1600. if (is_qla8022(ha)) {
  1601. qla4_8xxx_watchdog(ha);
  1602. }
  1603. if (!is_qla8022(ha)) {
  1604. /* Check for heartbeat interval. */
  1605. if (ha->firmware_options & FWOPT_HEARTBEAT_ENABLE &&
  1606. ha->heartbeat_interval != 0) {
  1607. ha->seconds_since_last_heartbeat++;
  1608. if (ha->seconds_since_last_heartbeat >
  1609. ha->heartbeat_interval + 2)
  1610. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  1611. }
  1612. }
  1613. /* Wakeup the dpc routine for this adapter, if needed. */
  1614. if (start_dpc ||
  1615. test_bit(DPC_RESET_HA, &ha->dpc_flags) ||
  1616. test_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags) ||
  1617. test_bit(DPC_RELOGIN_DEVICE, &ha->dpc_flags) ||
  1618. test_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags) ||
  1619. test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags) ||
  1620. test_bit(DPC_GET_DHCP_IP_ADDR, &ha->dpc_flags) ||
  1621. test_bit(DPC_LINK_CHANGED, &ha->dpc_flags) ||
  1622. test_bit(DPC_HA_UNRECOVERABLE, &ha->dpc_flags) ||
  1623. test_bit(DPC_HA_NEED_QUIESCENT, &ha->dpc_flags) ||
  1624. test_bit(DPC_AEN, &ha->dpc_flags)) {
  1625. DEBUG2(printk("scsi%ld: %s: scheduling dpc routine"
  1626. " - dpc flags = 0x%lx\n",
  1627. ha->host_no, __func__, ha->dpc_flags));
  1628. qla4xxx_wake_dpc(ha);
  1629. }
  1630. /* Reschedule timer thread to call us back in one second */
  1631. mod_timer(&ha->timer, jiffies + HZ);
  1632. DEBUG2(ha->seconds_since_last_intr++);
  1633. }
  1634. /**
  1635. * qla4xxx_cmd_wait - waits for all outstanding commands to complete
  1636. * @ha: Pointer to host adapter structure.
  1637. *
  1638. * This routine stalls the driver until all outstanding commands are returned.
  1639. * Caller must release the Hardware Lock prior to calling this routine.
  1640. **/
  1641. static int qla4xxx_cmd_wait(struct scsi_qla_host *ha)
  1642. {
  1643. uint32_t index = 0;
  1644. unsigned long flags;
  1645. struct scsi_cmnd *cmd;
  1646. unsigned long wtime = jiffies + (WAIT_CMD_TOV * HZ);
  1647. DEBUG2(ql4_printk(KERN_INFO, ha, "Wait up to %d seconds for cmds to "
  1648. "complete\n", WAIT_CMD_TOV));
  1649. while (!time_after_eq(jiffies, wtime)) {
  1650. spin_lock_irqsave(&ha->hardware_lock, flags);
  1651. /* Find a command that hasn't completed. */
  1652. for (index = 0; index < ha->host->can_queue; index++) {
  1653. cmd = scsi_host_find_tag(ha->host, index);
  1654. /*
  1655. * We cannot just check if the index is valid,
  1656. * becase if we are run from the scsi eh, then
  1657. * the scsi/block layer is going to prevent
  1658. * the tag from being released.
  1659. */
  1660. if (cmd != NULL && CMD_SP(cmd))
  1661. break;
  1662. }
  1663. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1664. /* If No Commands are pending, wait is complete */
  1665. if (index == ha->host->can_queue)
  1666. return QLA_SUCCESS;
  1667. msleep(1000);
  1668. }
  1669. /* If we timed out on waiting for commands to come back
  1670. * return ERROR. */
  1671. return QLA_ERROR;
  1672. }
  1673. int qla4xxx_hw_reset(struct scsi_qla_host *ha)
  1674. {
  1675. uint32_t ctrl_status;
  1676. unsigned long flags = 0;
  1677. DEBUG2(printk(KERN_ERR "scsi%ld: %s\n", ha->host_no, __func__));
  1678. if (ql4xxx_lock_drvr_wait(ha) != QLA_SUCCESS)
  1679. return QLA_ERROR;
  1680. spin_lock_irqsave(&ha->hardware_lock, flags);
  1681. /*
  1682. * If the SCSI Reset Interrupt bit is set, clear it.
  1683. * Otherwise, the Soft Reset won't work.
  1684. */
  1685. ctrl_status = readw(&ha->reg->ctrl_status);
  1686. if ((ctrl_status & CSR_SCSI_RESET_INTR) != 0)
  1687. writel(set_rmask(CSR_SCSI_RESET_INTR), &ha->reg->ctrl_status);
  1688. /* Issue Soft Reset */
  1689. writel(set_rmask(CSR_SOFT_RESET), &ha->reg->ctrl_status);
  1690. readl(&ha->reg->ctrl_status);
  1691. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1692. return QLA_SUCCESS;
  1693. }
  1694. /**
  1695. * qla4xxx_soft_reset - performs soft reset.
  1696. * @ha: Pointer to host adapter structure.
  1697. **/
  1698. int qla4xxx_soft_reset(struct scsi_qla_host *ha)
  1699. {
  1700. uint32_t max_wait_time;
  1701. unsigned long flags = 0;
  1702. int status;
  1703. uint32_t ctrl_status;
  1704. status = qla4xxx_hw_reset(ha);
  1705. if (status != QLA_SUCCESS)
  1706. return status;
  1707. status = QLA_ERROR;
  1708. /* Wait until the Network Reset Intr bit is cleared */
  1709. max_wait_time = RESET_INTR_TOV;
  1710. do {
  1711. spin_lock_irqsave(&ha->hardware_lock, flags);
  1712. ctrl_status = readw(&ha->reg->ctrl_status);
  1713. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1714. if ((ctrl_status & CSR_NET_RESET_INTR) == 0)
  1715. break;
  1716. msleep(1000);
  1717. } while ((--max_wait_time));
  1718. if ((ctrl_status & CSR_NET_RESET_INTR) != 0) {
  1719. DEBUG2(printk(KERN_WARNING
  1720. "scsi%ld: Network Reset Intr not cleared by "
  1721. "Network function, clearing it now!\n",
  1722. ha->host_no));
  1723. spin_lock_irqsave(&ha->hardware_lock, flags);
  1724. writel(set_rmask(CSR_NET_RESET_INTR), &ha->reg->ctrl_status);
  1725. readl(&ha->reg->ctrl_status);
  1726. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1727. }
  1728. /* Wait until the firmware tells us the Soft Reset is done */
  1729. max_wait_time = SOFT_RESET_TOV;
  1730. do {
  1731. spin_lock_irqsave(&ha->hardware_lock, flags);
  1732. ctrl_status = readw(&ha->reg->ctrl_status);
  1733. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1734. if ((ctrl_status & CSR_SOFT_RESET) == 0) {
  1735. status = QLA_SUCCESS;
  1736. break;
  1737. }
  1738. msleep(1000);
  1739. } while ((--max_wait_time));
  1740. /*
  1741. * Also, make sure that the SCSI Reset Interrupt bit has been cleared
  1742. * after the soft reset has taken place.
  1743. */
  1744. spin_lock_irqsave(&ha->hardware_lock, flags);
  1745. ctrl_status = readw(&ha->reg->ctrl_status);
  1746. if ((ctrl_status & CSR_SCSI_RESET_INTR) != 0) {
  1747. writel(set_rmask(CSR_SCSI_RESET_INTR), &ha->reg->ctrl_status);
  1748. readl(&ha->reg->ctrl_status);
  1749. }
  1750. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1751. /* If soft reset fails then most probably the bios on other
  1752. * function is also enabled.
  1753. * Since the initialization is sequential the other fn
  1754. * wont be able to acknowledge the soft reset.
  1755. * Issue a force soft reset to workaround this scenario.
  1756. */
  1757. if (max_wait_time == 0) {
  1758. /* Issue Force Soft Reset */
  1759. spin_lock_irqsave(&ha->hardware_lock, flags);
  1760. writel(set_rmask(CSR_FORCE_SOFT_RESET), &ha->reg->ctrl_status);
  1761. readl(&ha->reg->ctrl_status);
  1762. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1763. /* Wait until the firmware tells us the Soft Reset is done */
  1764. max_wait_time = SOFT_RESET_TOV;
  1765. do {
  1766. spin_lock_irqsave(&ha->hardware_lock, flags);
  1767. ctrl_status = readw(&ha->reg->ctrl_status);
  1768. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1769. if ((ctrl_status & CSR_FORCE_SOFT_RESET) == 0) {
  1770. status = QLA_SUCCESS;
  1771. break;
  1772. }
  1773. msleep(1000);
  1774. } while ((--max_wait_time));
  1775. }
  1776. return status;
  1777. }
  1778. /**
  1779. * qla4xxx_abort_active_cmds - returns all outstanding i/o requests to O.S.
  1780. * @ha: Pointer to host adapter structure.
  1781. * @res: returned scsi status
  1782. *
  1783. * This routine is called just prior to a HARD RESET to return all
  1784. * outstanding commands back to the Operating System.
  1785. * Caller should make sure that the following locks are released
  1786. * before this calling routine: Hardware lock, and io_request_lock.
  1787. **/
  1788. static void qla4xxx_abort_active_cmds(struct scsi_qla_host *ha, int res)
  1789. {
  1790. struct srb *srb;
  1791. int i;
  1792. unsigned long flags;
  1793. spin_lock_irqsave(&ha->hardware_lock, flags);
  1794. for (i = 0; i < ha->host->can_queue; i++) {
  1795. srb = qla4xxx_del_from_active_array(ha, i);
  1796. if (srb != NULL) {
  1797. srb->cmd->result = res;
  1798. kref_put(&srb->srb_ref, qla4xxx_srb_compl);
  1799. }
  1800. }
  1801. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1802. }
  1803. void qla4xxx_dead_adapter_cleanup(struct scsi_qla_host *ha)
  1804. {
  1805. clear_bit(AF_ONLINE, &ha->flags);
  1806. /* Disable the board */
  1807. ql4_printk(KERN_INFO, ha, "Disabling the board\n");
  1808. qla4xxx_abort_active_cmds(ha, DID_NO_CONNECT << 16);
  1809. qla4xxx_mark_all_devices_missing(ha);
  1810. clear_bit(AF_INIT_DONE, &ha->flags);
  1811. }
  1812. static void qla4xxx_fail_session(struct iscsi_cls_session *cls_session)
  1813. {
  1814. struct iscsi_session *sess;
  1815. struct ddb_entry *ddb_entry;
  1816. sess = cls_session->dd_data;
  1817. ddb_entry = sess->dd_data;
  1818. ddb_entry->fw_ddb_device_state = DDB_DS_SESSION_FAILED;
  1819. iscsi_session_failure(cls_session->dd_data, ISCSI_ERR_CONN_FAILED);
  1820. }
  1821. /**
  1822. * qla4xxx_recover_adapter - recovers adapter after a fatal error
  1823. * @ha: Pointer to host adapter structure.
  1824. **/
  1825. static int qla4xxx_recover_adapter(struct scsi_qla_host *ha)
  1826. {
  1827. int status = QLA_ERROR;
  1828. uint8_t reset_chip = 0;
  1829. /* Stall incoming I/O until we are done */
  1830. scsi_block_requests(ha->host);
  1831. clear_bit(AF_ONLINE, &ha->flags);
  1832. clear_bit(AF_LINK_UP, &ha->flags);
  1833. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: adapter OFFLINE\n", __func__));
  1834. set_bit(DPC_RESET_ACTIVE, &ha->dpc_flags);
  1835. iscsi_host_for_each_session(ha->host, qla4xxx_fail_session);
  1836. if (test_bit(DPC_RESET_HA, &ha->dpc_flags))
  1837. reset_chip = 1;
  1838. /* For the DPC_RESET_HA_INTR case (ISP-4xxx specific)
  1839. * do not reset adapter, jump to initialize_adapter */
  1840. if (test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags)) {
  1841. status = QLA_SUCCESS;
  1842. goto recover_ha_init_adapter;
  1843. }
  1844. /* For the ISP-82xx adapter, issue a stop_firmware if invoked
  1845. * from eh_host_reset or ioctl module */
  1846. if (is_qla8022(ha) && !reset_chip &&
  1847. test_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags)) {
  1848. DEBUG2(ql4_printk(KERN_INFO, ha,
  1849. "scsi%ld: %s - Performing stop_firmware...\n",
  1850. ha->host_no, __func__));
  1851. status = ha->isp_ops->reset_firmware(ha);
  1852. if (status == QLA_SUCCESS) {
  1853. if (!test_bit(AF_FW_RECOVERY, &ha->flags))
  1854. qla4xxx_cmd_wait(ha);
  1855. ha->isp_ops->disable_intrs(ha);
  1856. qla4xxx_process_aen(ha, FLUSH_DDB_CHANGED_AENS);
  1857. qla4xxx_abort_active_cmds(ha, DID_RESET << 16);
  1858. } else {
  1859. /* If the stop_firmware fails then
  1860. * reset the entire chip */
  1861. reset_chip = 1;
  1862. clear_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags);
  1863. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  1864. }
  1865. }
  1866. /* Issue full chip reset if recovering from a catastrophic error,
  1867. * or if stop_firmware fails for ISP-82xx.
  1868. * This is the default case for ISP-4xxx */
  1869. if (!is_qla8022(ha) || reset_chip) {
  1870. if (!test_bit(AF_FW_RECOVERY, &ha->flags))
  1871. qla4xxx_cmd_wait(ha);
  1872. qla4xxx_process_aen(ha, FLUSH_DDB_CHANGED_AENS);
  1873. qla4xxx_abort_active_cmds(ha, DID_RESET << 16);
  1874. DEBUG2(ql4_printk(KERN_INFO, ha,
  1875. "scsi%ld: %s - Performing chip reset..\n",
  1876. ha->host_no, __func__));
  1877. status = ha->isp_ops->reset_chip(ha);
  1878. }
  1879. /* Flush any pending ddb changed AENs */
  1880. qla4xxx_process_aen(ha, FLUSH_DDB_CHANGED_AENS);
  1881. recover_ha_init_adapter:
  1882. /* Upon successful firmware/chip reset, re-initialize the adapter */
  1883. if (status == QLA_SUCCESS) {
  1884. /* For ISP-4xxx, force function 1 to always initialize
  1885. * before function 3 to prevent both funcions from
  1886. * stepping on top of the other */
  1887. if (!is_qla8022(ha) && (ha->mac_index == 3))
  1888. ssleep(6);
  1889. /* NOTE: AF_ONLINE flag set upon successful completion of
  1890. * qla4xxx_initialize_adapter */
  1891. status = qla4xxx_initialize_adapter(ha);
  1892. }
  1893. /* Retry failed adapter initialization, if necessary
  1894. * Do not retry initialize_adapter for RESET_HA_INTR (ISP-4xxx specific)
  1895. * case to prevent ping-pong resets between functions */
  1896. if (!test_bit(AF_ONLINE, &ha->flags) &&
  1897. !test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags)) {
  1898. /* Adapter initialization failed, see if we can retry
  1899. * resetting the ha.
  1900. * Since we don't want to block the DPC for too long
  1901. * with multiple resets in the same thread,
  1902. * utilize DPC to retry */
  1903. if (!test_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags)) {
  1904. ha->retry_reset_ha_cnt = MAX_RESET_HA_RETRIES;
  1905. DEBUG2(printk("scsi%ld: recover adapter - retrying "
  1906. "(%d) more times\n", ha->host_no,
  1907. ha->retry_reset_ha_cnt));
  1908. set_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags);
  1909. status = QLA_ERROR;
  1910. } else {
  1911. if (ha->retry_reset_ha_cnt > 0) {
  1912. /* Schedule another Reset HA--DPC will retry */
  1913. ha->retry_reset_ha_cnt--;
  1914. DEBUG2(printk("scsi%ld: recover adapter - "
  1915. "retry remaining %d\n",
  1916. ha->host_no,
  1917. ha->retry_reset_ha_cnt));
  1918. status = QLA_ERROR;
  1919. }
  1920. if (ha->retry_reset_ha_cnt == 0) {
  1921. /* Recover adapter retries have been exhausted.
  1922. * Adapter DEAD */
  1923. DEBUG2(printk("scsi%ld: recover adapter "
  1924. "failed - board disabled\n",
  1925. ha->host_no));
  1926. qla4xxx_dead_adapter_cleanup(ha);
  1927. clear_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags);
  1928. clear_bit(DPC_RESET_HA, &ha->dpc_flags);
  1929. clear_bit(DPC_RESET_HA_FW_CONTEXT,
  1930. &ha->dpc_flags);
  1931. status = QLA_ERROR;
  1932. }
  1933. }
  1934. } else {
  1935. clear_bit(DPC_RESET_HA, &ha->dpc_flags);
  1936. clear_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags);
  1937. clear_bit(DPC_RETRY_RESET_HA, &ha->dpc_flags);
  1938. }
  1939. ha->adapter_error_count++;
  1940. if (test_bit(AF_ONLINE, &ha->flags))
  1941. ha->isp_ops->enable_intrs(ha);
  1942. scsi_unblock_requests(ha->host);
  1943. clear_bit(DPC_RESET_ACTIVE, &ha->dpc_flags);
  1944. DEBUG2(printk("scsi%ld: recover adapter: %s\n", ha->host_no,
  1945. status == QLA_ERROR ? "FAILED" : "SUCCEEDED"));
  1946. return status;
  1947. }
  1948. static void qla4xxx_relogin_devices(struct iscsi_cls_session *cls_session)
  1949. {
  1950. struct iscsi_session *sess;
  1951. struct ddb_entry *ddb_entry;
  1952. struct scsi_qla_host *ha;
  1953. sess = cls_session->dd_data;
  1954. ddb_entry = sess->dd_data;
  1955. ha = ddb_entry->ha;
  1956. if (!iscsi_is_session_online(cls_session)) {
  1957. if (ddb_entry->fw_ddb_device_state == DDB_DS_SESSION_ACTIVE) {
  1958. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: ddb[%d]"
  1959. " unblock session\n", ha->host_no, __func__,
  1960. ddb_entry->fw_ddb_index);
  1961. iscsi_unblock_session(ddb_entry->sess);
  1962. } else {
  1963. /* Trigger relogin */
  1964. iscsi_session_failure(cls_session->dd_data,
  1965. ISCSI_ERR_CONN_FAILED);
  1966. }
  1967. }
  1968. }
  1969. static void qla4xxx_relogin_all_devices(struct scsi_qla_host *ha)
  1970. {
  1971. iscsi_host_for_each_session(ha->host, qla4xxx_relogin_devices);
  1972. }
  1973. void qla4xxx_wake_dpc(struct scsi_qla_host *ha)
  1974. {
  1975. if (ha->dpc_thread)
  1976. queue_work(ha->dpc_thread, &ha->dpc_work);
  1977. }
  1978. /**
  1979. * qla4xxx_do_dpc - dpc routine
  1980. * @data: in our case pointer to adapter structure
  1981. *
  1982. * This routine is a task that is schedule by the interrupt handler
  1983. * to perform the background processing for interrupts. We put it
  1984. * on a task queue that is consumed whenever the scheduler runs; that's
  1985. * so you can do anything (i.e. put the process to sleep etc). In fact,
  1986. * the mid-level tries to sleep when it reaches the driver threshold
  1987. * "host->can_queue". This can cause a panic if we were in our interrupt code.
  1988. **/
  1989. static void qla4xxx_do_dpc(struct work_struct *work)
  1990. {
  1991. struct scsi_qla_host *ha =
  1992. container_of(work, struct scsi_qla_host, dpc_work);
  1993. int status = QLA_ERROR;
  1994. DEBUG2(printk("scsi%ld: %s: DPC handler waking up."
  1995. "flags = 0x%08lx, dpc_flags = 0x%08lx\n",
  1996. ha->host_no, __func__, ha->flags, ha->dpc_flags))
  1997. /* Initialization not yet finished. Don't do anything yet. */
  1998. if (!test_bit(AF_INIT_DONE, &ha->flags))
  1999. return;
  2000. if (test_bit(AF_EEH_BUSY, &ha->flags)) {
  2001. DEBUG2(printk(KERN_INFO "scsi%ld: %s: flags = %lx\n",
  2002. ha->host_no, __func__, ha->flags));
  2003. return;
  2004. }
  2005. if (is_qla8022(ha)) {
  2006. if (test_bit(DPC_HA_UNRECOVERABLE, &ha->dpc_flags)) {
  2007. qla4_8xxx_idc_lock(ha);
  2008. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DEV_STATE,
  2009. QLA82XX_DEV_FAILED);
  2010. qla4_8xxx_idc_unlock(ha);
  2011. ql4_printk(KERN_INFO, ha, "HW State: FAILED\n");
  2012. qla4_8xxx_device_state_handler(ha);
  2013. }
  2014. if (test_and_clear_bit(DPC_HA_NEED_QUIESCENT, &ha->dpc_flags)) {
  2015. qla4_8xxx_need_qsnt_handler(ha);
  2016. }
  2017. }
  2018. if (!test_bit(DPC_RESET_ACTIVE, &ha->dpc_flags) &&
  2019. (test_bit(DPC_RESET_HA, &ha->dpc_flags) ||
  2020. test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags) ||
  2021. test_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags))) {
  2022. if (ql4xdontresethba) {
  2023. DEBUG2(printk("scsi%ld: %s: Don't Reset HBA\n",
  2024. ha->host_no, __func__));
  2025. clear_bit(DPC_RESET_HA, &ha->dpc_flags);
  2026. clear_bit(DPC_RESET_HA_INTR, &ha->dpc_flags);
  2027. clear_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags);
  2028. goto dpc_post_reset_ha;
  2029. }
  2030. if (test_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags) ||
  2031. test_bit(DPC_RESET_HA, &ha->dpc_flags))
  2032. qla4xxx_recover_adapter(ha);
  2033. if (test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags)) {
  2034. uint8_t wait_time = RESET_INTR_TOV;
  2035. while ((readw(&ha->reg->ctrl_status) &
  2036. (CSR_SOFT_RESET | CSR_FORCE_SOFT_RESET)) != 0) {
  2037. if (--wait_time == 0)
  2038. break;
  2039. msleep(1000);
  2040. }
  2041. if (wait_time == 0)
  2042. DEBUG2(printk("scsi%ld: %s: SR|FSR "
  2043. "bit not cleared-- resetting\n",
  2044. ha->host_no, __func__));
  2045. qla4xxx_abort_active_cmds(ha, DID_RESET << 16);
  2046. if (ql4xxx_lock_drvr_wait(ha) == QLA_SUCCESS) {
  2047. qla4xxx_process_aen(ha, FLUSH_DDB_CHANGED_AENS);
  2048. status = qla4xxx_recover_adapter(ha);
  2049. }
  2050. clear_bit(DPC_RESET_HA_INTR, &ha->dpc_flags);
  2051. if (status == QLA_SUCCESS)
  2052. ha->isp_ops->enable_intrs(ha);
  2053. }
  2054. }
  2055. dpc_post_reset_ha:
  2056. /* ---- process AEN? --- */
  2057. if (test_and_clear_bit(DPC_AEN, &ha->dpc_flags))
  2058. qla4xxx_process_aen(ha, PROCESS_ALL_AENS);
  2059. /* ---- Get DHCP IP Address? --- */
  2060. if (test_and_clear_bit(DPC_GET_DHCP_IP_ADDR, &ha->dpc_flags))
  2061. qla4xxx_get_dhcp_ip_address(ha);
  2062. /* ---- link change? --- */
  2063. if (test_and_clear_bit(DPC_LINK_CHANGED, &ha->dpc_flags)) {
  2064. if (!test_bit(AF_LINK_UP, &ha->flags)) {
  2065. /* ---- link down? --- */
  2066. qla4xxx_mark_all_devices_missing(ha);
  2067. } else {
  2068. /* ---- link up? --- *
  2069. * F/W will auto login to all devices ONLY ONCE after
  2070. * link up during driver initialization and runtime
  2071. * fatal error recovery. Therefore, the driver must
  2072. * manually relogin to devices when recovering from
  2073. * connection failures, logouts, expired KATO, etc. */
  2074. qla4xxx_relogin_all_devices(ha);
  2075. }
  2076. }
  2077. }
  2078. /**
  2079. * qla4xxx_free_adapter - release the adapter
  2080. * @ha: pointer to adapter structure
  2081. **/
  2082. static void qla4xxx_free_adapter(struct scsi_qla_host *ha)
  2083. {
  2084. if (test_bit(AF_INTERRUPTS_ON, &ha->flags)) {
  2085. /* Turn-off interrupts on the card. */
  2086. ha->isp_ops->disable_intrs(ha);
  2087. }
  2088. /* Remove timer thread, if present */
  2089. if (ha->timer_active)
  2090. qla4xxx_stop_timer(ha);
  2091. /* Kill the kernel thread for this host */
  2092. if (ha->dpc_thread)
  2093. destroy_workqueue(ha->dpc_thread);
  2094. /* Kill the kernel thread for this host */
  2095. if (ha->task_wq)
  2096. destroy_workqueue(ha->task_wq);
  2097. /* Put firmware in known state */
  2098. ha->isp_ops->reset_firmware(ha);
  2099. if (is_qla8022(ha)) {
  2100. qla4_8xxx_idc_lock(ha);
  2101. qla4_8xxx_clear_drv_active(ha);
  2102. qla4_8xxx_idc_unlock(ha);
  2103. }
  2104. /* Detach interrupts */
  2105. if (test_and_clear_bit(AF_IRQ_ATTACHED, &ha->flags))
  2106. qla4xxx_free_irqs(ha);
  2107. /* free extra memory */
  2108. qla4xxx_mem_free(ha);
  2109. }
  2110. int qla4_8xxx_iospace_config(struct scsi_qla_host *ha)
  2111. {
  2112. int status = 0;
  2113. uint8_t revision_id;
  2114. unsigned long mem_base, mem_len, db_base, db_len;
  2115. struct pci_dev *pdev = ha->pdev;
  2116. status = pci_request_regions(pdev, DRIVER_NAME);
  2117. if (status) {
  2118. printk(KERN_WARNING
  2119. "scsi(%ld) Failed to reserve PIO regions (%s) "
  2120. "status=%d\n", ha->host_no, pci_name(pdev), status);
  2121. goto iospace_error_exit;
  2122. }
  2123. pci_read_config_byte(pdev, PCI_REVISION_ID, &revision_id);
  2124. DEBUG2(printk(KERN_INFO "%s: revision-id=%d\n",
  2125. __func__, revision_id));
  2126. ha->revision_id = revision_id;
  2127. /* remap phys address */
  2128. mem_base = pci_resource_start(pdev, 0); /* 0 is for BAR 0 */
  2129. mem_len = pci_resource_len(pdev, 0);
  2130. DEBUG2(printk(KERN_INFO "%s: ioremap from %lx a size of %lx\n",
  2131. __func__, mem_base, mem_len));
  2132. /* mapping of pcibase pointer */
  2133. ha->nx_pcibase = (unsigned long)ioremap(mem_base, mem_len);
  2134. if (!ha->nx_pcibase) {
  2135. printk(KERN_ERR
  2136. "cannot remap MMIO (%s), aborting\n", pci_name(pdev));
  2137. pci_release_regions(ha->pdev);
  2138. goto iospace_error_exit;
  2139. }
  2140. /* Mapping of IO base pointer, door bell read and write pointer */
  2141. /* mapping of IO base pointer */
  2142. ha->qla4_8xxx_reg =
  2143. (struct device_reg_82xx __iomem *)((uint8_t *)ha->nx_pcibase +
  2144. 0xbc000 + (ha->pdev->devfn << 11));
  2145. db_base = pci_resource_start(pdev, 4); /* doorbell is on bar 4 */
  2146. db_len = pci_resource_len(pdev, 4);
  2147. ha->nx_db_wr_ptr = (ha->pdev->devfn == 4 ? QLA82XX_CAM_RAM_DB1 :
  2148. QLA82XX_CAM_RAM_DB2);
  2149. return 0;
  2150. iospace_error_exit:
  2151. return -ENOMEM;
  2152. }
  2153. /***
  2154. * qla4xxx_iospace_config - maps registers
  2155. * @ha: pointer to adapter structure
  2156. *
  2157. * This routines maps HBA's registers from the pci address space
  2158. * into the kernel virtual address space for memory mapped i/o.
  2159. **/
  2160. int qla4xxx_iospace_config(struct scsi_qla_host *ha)
  2161. {
  2162. unsigned long pio, pio_len, pio_flags;
  2163. unsigned long mmio, mmio_len, mmio_flags;
  2164. pio = pci_resource_start(ha->pdev, 0);
  2165. pio_len = pci_resource_len(ha->pdev, 0);
  2166. pio_flags = pci_resource_flags(ha->pdev, 0);
  2167. if (pio_flags & IORESOURCE_IO) {
  2168. if (pio_len < MIN_IOBASE_LEN) {
  2169. ql4_printk(KERN_WARNING, ha,
  2170. "Invalid PCI I/O region size\n");
  2171. pio = 0;
  2172. }
  2173. } else {
  2174. ql4_printk(KERN_WARNING, ha, "region #0 not a PIO resource\n");
  2175. pio = 0;
  2176. }
  2177. /* Use MMIO operations for all accesses. */
  2178. mmio = pci_resource_start(ha->pdev, 1);
  2179. mmio_len = pci_resource_len(ha->pdev, 1);
  2180. mmio_flags = pci_resource_flags(ha->pdev, 1);
  2181. if (!(mmio_flags & IORESOURCE_MEM)) {
  2182. ql4_printk(KERN_ERR, ha,
  2183. "region #0 not an MMIO resource, aborting\n");
  2184. goto iospace_error_exit;
  2185. }
  2186. if (mmio_len < MIN_IOBASE_LEN) {
  2187. ql4_printk(KERN_ERR, ha,
  2188. "Invalid PCI mem region size, aborting\n");
  2189. goto iospace_error_exit;
  2190. }
  2191. if (pci_request_regions(ha->pdev, DRIVER_NAME)) {
  2192. ql4_printk(KERN_WARNING, ha,
  2193. "Failed to reserve PIO/MMIO regions\n");
  2194. goto iospace_error_exit;
  2195. }
  2196. ha->pio_address = pio;
  2197. ha->pio_length = pio_len;
  2198. ha->reg = ioremap(mmio, MIN_IOBASE_LEN);
  2199. if (!ha->reg) {
  2200. ql4_printk(KERN_ERR, ha,
  2201. "cannot remap MMIO, aborting\n");
  2202. goto iospace_error_exit;
  2203. }
  2204. return 0;
  2205. iospace_error_exit:
  2206. return -ENOMEM;
  2207. }
  2208. static struct isp_operations qla4xxx_isp_ops = {
  2209. .iospace_config = qla4xxx_iospace_config,
  2210. .pci_config = qla4xxx_pci_config,
  2211. .disable_intrs = qla4xxx_disable_intrs,
  2212. .enable_intrs = qla4xxx_enable_intrs,
  2213. .start_firmware = qla4xxx_start_firmware,
  2214. .intr_handler = qla4xxx_intr_handler,
  2215. .interrupt_service_routine = qla4xxx_interrupt_service_routine,
  2216. .reset_chip = qla4xxx_soft_reset,
  2217. .reset_firmware = qla4xxx_hw_reset,
  2218. .queue_iocb = qla4xxx_queue_iocb,
  2219. .complete_iocb = qla4xxx_complete_iocb,
  2220. .rd_shdw_req_q_out = qla4xxx_rd_shdw_req_q_out,
  2221. .rd_shdw_rsp_q_in = qla4xxx_rd_shdw_rsp_q_in,
  2222. .get_sys_info = qla4xxx_get_sys_info,
  2223. };
  2224. static struct isp_operations qla4_8xxx_isp_ops = {
  2225. .iospace_config = qla4_8xxx_iospace_config,
  2226. .pci_config = qla4_8xxx_pci_config,
  2227. .disable_intrs = qla4_8xxx_disable_intrs,
  2228. .enable_intrs = qla4_8xxx_enable_intrs,
  2229. .start_firmware = qla4_8xxx_load_risc,
  2230. .intr_handler = qla4_8xxx_intr_handler,
  2231. .interrupt_service_routine = qla4_8xxx_interrupt_service_routine,
  2232. .reset_chip = qla4_8xxx_isp_reset,
  2233. .reset_firmware = qla4_8xxx_stop_firmware,
  2234. .queue_iocb = qla4_8xxx_queue_iocb,
  2235. .complete_iocb = qla4_8xxx_complete_iocb,
  2236. .rd_shdw_req_q_out = qla4_8xxx_rd_shdw_req_q_out,
  2237. .rd_shdw_rsp_q_in = qla4_8xxx_rd_shdw_rsp_q_in,
  2238. .get_sys_info = qla4_8xxx_get_sys_info,
  2239. };
  2240. uint16_t qla4xxx_rd_shdw_req_q_out(struct scsi_qla_host *ha)
  2241. {
  2242. return (uint16_t)le32_to_cpu(ha->shadow_regs->req_q_out);
  2243. }
  2244. uint16_t qla4_8xxx_rd_shdw_req_q_out(struct scsi_qla_host *ha)
  2245. {
  2246. return (uint16_t)le32_to_cpu(readl(&ha->qla4_8xxx_reg->req_q_out));
  2247. }
  2248. uint16_t qla4xxx_rd_shdw_rsp_q_in(struct scsi_qla_host *ha)
  2249. {
  2250. return (uint16_t)le32_to_cpu(ha->shadow_regs->rsp_q_in);
  2251. }
  2252. uint16_t qla4_8xxx_rd_shdw_rsp_q_in(struct scsi_qla_host *ha)
  2253. {
  2254. return (uint16_t)le32_to_cpu(readl(&ha->qla4_8xxx_reg->rsp_q_in));
  2255. }
  2256. static ssize_t qla4xxx_show_boot_eth_info(void *data, int type, char *buf)
  2257. {
  2258. struct scsi_qla_host *ha = data;
  2259. char *str = buf;
  2260. int rc;
  2261. switch (type) {
  2262. case ISCSI_BOOT_ETH_FLAGS:
  2263. rc = sprintf(str, "%d\n", SYSFS_FLAG_FW_SEL_BOOT);
  2264. break;
  2265. case ISCSI_BOOT_ETH_INDEX:
  2266. rc = sprintf(str, "0\n");
  2267. break;
  2268. case ISCSI_BOOT_ETH_MAC:
  2269. rc = sysfs_format_mac(str, ha->my_mac,
  2270. MAC_ADDR_LEN);
  2271. break;
  2272. default:
  2273. rc = -ENOSYS;
  2274. break;
  2275. }
  2276. return rc;
  2277. }
  2278. static mode_t qla4xxx_eth_get_attr_visibility(void *data, int type)
  2279. {
  2280. int rc;
  2281. switch (type) {
  2282. case ISCSI_BOOT_ETH_FLAGS:
  2283. case ISCSI_BOOT_ETH_MAC:
  2284. case ISCSI_BOOT_ETH_INDEX:
  2285. rc = S_IRUGO;
  2286. break;
  2287. default:
  2288. rc = 0;
  2289. break;
  2290. }
  2291. return rc;
  2292. }
  2293. static ssize_t qla4xxx_show_boot_ini_info(void *data, int type, char *buf)
  2294. {
  2295. struct scsi_qla_host *ha = data;
  2296. char *str = buf;
  2297. int rc;
  2298. switch (type) {
  2299. case ISCSI_BOOT_INI_INITIATOR_NAME:
  2300. rc = sprintf(str, "%s\n", ha->name_string);
  2301. break;
  2302. default:
  2303. rc = -ENOSYS;
  2304. break;
  2305. }
  2306. return rc;
  2307. }
  2308. static mode_t qla4xxx_ini_get_attr_visibility(void *data, int type)
  2309. {
  2310. int rc;
  2311. switch (type) {
  2312. case ISCSI_BOOT_INI_INITIATOR_NAME:
  2313. rc = S_IRUGO;
  2314. break;
  2315. default:
  2316. rc = 0;
  2317. break;
  2318. }
  2319. return rc;
  2320. }
  2321. static ssize_t
  2322. qla4xxx_show_boot_tgt_info(struct ql4_boot_session_info *boot_sess, int type,
  2323. char *buf)
  2324. {
  2325. struct ql4_conn_info *boot_conn = &boot_sess->conn_list[0];
  2326. char *str = buf;
  2327. int rc;
  2328. switch (type) {
  2329. case ISCSI_BOOT_TGT_NAME:
  2330. rc = sprintf(buf, "%s\n", (char *)&boot_sess->target_name);
  2331. break;
  2332. case ISCSI_BOOT_TGT_IP_ADDR:
  2333. if (boot_sess->conn_list[0].dest_ipaddr.ip_type == 0x1)
  2334. rc = sprintf(buf, "%pI4\n",
  2335. &boot_conn->dest_ipaddr.ip_address);
  2336. else
  2337. rc = sprintf(str, "%pI6\n",
  2338. &boot_conn->dest_ipaddr.ip_address);
  2339. break;
  2340. case ISCSI_BOOT_TGT_PORT:
  2341. rc = sprintf(str, "%d\n", boot_conn->dest_port);
  2342. break;
  2343. case ISCSI_BOOT_TGT_CHAP_NAME:
  2344. rc = sprintf(str, "%.*s\n",
  2345. boot_conn->chap.target_chap_name_length,
  2346. (char *)&boot_conn->chap.target_chap_name);
  2347. break;
  2348. case ISCSI_BOOT_TGT_CHAP_SECRET:
  2349. rc = sprintf(str, "%.*s\n",
  2350. boot_conn->chap.target_secret_length,
  2351. (char *)&boot_conn->chap.target_secret);
  2352. break;
  2353. case ISCSI_BOOT_TGT_REV_CHAP_NAME:
  2354. rc = sprintf(str, "%.*s\n",
  2355. boot_conn->chap.intr_chap_name_length,
  2356. (char *)&boot_conn->chap.intr_chap_name);
  2357. break;
  2358. case ISCSI_BOOT_TGT_REV_CHAP_SECRET:
  2359. rc = sprintf(str, "%.*s\n",
  2360. boot_conn->chap.intr_secret_length,
  2361. (char *)&boot_conn->chap.intr_secret);
  2362. break;
  2363. case ISCSI_BOOT_TGT_FLAGS:
  2364. rc = sprintf(str, "%d\n", SYSFS_FLAG_FW_SEL_BOOT);
  2365. break;
  2366. case ISCSI_BOOT_TGT_NIC_ASSOC:
  2367. rc = sprintf(str, "0\n");
  2368. break;
  2369. default:
  2370. rc = -ENOSYS;
  2371. break;
  2372. }
  2373. return rc;
  2374. }
  2375. static ssize_t qla4xxx_show_boot_tgt_pri_info(void *data, int type, char *buf)
  2376. {
  2377. struct scsi_qla_host *ha = data;
  2378. struct ql4_boot_session_info *boot_sess = &(ha->boot_tgt.boot_pri_sess);
  2379. return qla4xxx_show_boot_tgt_info(boot_sess, type, buf);
  2380. }
  2381. static ssize_t qla4xxx_show_boot_tgt_sec_info(void *data, int type, char *buf)
  2382. {
  2383. struct scsi_qla_host *ha = data;
  2384. struct ql4_boot_session_info *boot_sess = &(ha->boot_tgt.boot_sec_sess);
  2385. return qla4xxx_show_boot_tgt_info(boot_sess, type, buf);
  2386. }
  2387. static mode_t qla4xxx_tgt_get_attr_visibility(void *data, int type)
  2388. {
  2389. int rc;
  2390. switch (type) {
  2391. case ISCSI_BOOT_TGT_NAME:
  2392. case ISCSI_BOOT_TGT_IP_ADDR:
  2393. case ISCSI_BOOT_TGT_PORT:
  2394. case ISCSI_BOOT_TGT_CHAP_NAME:
  2395. case ISCSI_BOOT_TGT_CHAP_SECRET:
  2396. case ISCSI_BOOT_TGT_REV_CHAP_NAME:
  2397. case ISCSI_BOOT_TGT_REV_CHAP_SECRET:
  2398. case ISCSI_BOOT_TGT_NIC_ASSOC:
  2399. case ISCSI_BOOT_TGT_FLAGS:
  2400. rc = S_IRUGO;
  2401. break;
  2402. default:
  2403. rc = 0;
  2404. break;
  2405. }
  2406. return rc;
  2407. }
  2408. static void qla4xxx_boot_release(void *data)
  2409. {
  2410. struct scsi_qla_host *ha = data;
  2411. scsi_host_put(ha->host);
  2412. }
  2413. static int get_fw_boot_info(struct scsi_qla_host *ha, uint16_t ddb_index[])
  2414. {
  2415. dma_addr_t buf_dma;
  2416. uint32_t addr, pri_addr, sec_addr;
  2417. uint32_t offset;
  2418. uint16_t func_num;
  2419. uint8_t val;
  2420. uint8_t *buf = NULL;
  2421. size_t size = 13 * sizeof(uint8_t);
  2422. int ret = QLA_SUCCESS;
  2423. func_num = PCI_FUNC(ha->pdev->devfn);
  2424. DEBUG2(ql4_printk(KERN_INFO, ha,
  2425. "%s: Get FW boot info for 0x%x func %d\n", __func__,
  2426. (is_qla4032(ha) ? PCI_DEVICE_ID_QLOGIC_ISP4032 :
  2427. PCI_DEVICE_ID_QLOGIC_ISP8022), func_num));
  2428. if (is_qla4032(ha)) {
  2429. if (func_num == 1) {
  2430. addr = NVRAM_PORT0_BOOT_MODE;
  2431. pri_addr = NVRAM_PORT0_BOOT_PRI_TGT;
  2432. sec_addr = NVRAM_PORT0_BOOT_SEC_TGT;
  2433. } else if (func_num == 3) {
  2434. addr = NVRAM_PORT1_BOOT_MODE;
  2435. pri_addr = NVRAM_PORT1_BOOT_PRI_TGT;
  2436. sec_addr = NVRAM_PORT1_BOOT_SEC_TGT;
  2437. } else {
  2438. ret = QLA_ERROR;
  2439. goto exit_boot_info;
  2440. }
  2441. /* Check Boot Mode */
  2442. val = rd_nvram_byte(ha, addr);
  2443. if (!(val & 0x07)) {
  2444. DEBUG2(ql4_printk(KERN_ERR, ha,
  2445. "%s: Failed Boot options : 0x%x\n",
  2446. __func__, val));
  2447. ret = QLA_ERROR;
  2448. goto exit_boot_info;
  2449. }
  2450. /* get primary valid target index */
  2451. val = rd_nvram_byte(ha, pri_addr);
  2452. if (val & BIT_7)
  2453. ddb_index[0] = (val & 0x7f);
  2454. /* get secondary valid target index */
  2455. val = rd_nvram_byte(ha, sec_addr);
  2456. if (val & BIT_7)
  2457. ddb_index[1] = (val & 0x7f);
  2458. } else if (is_qla8022(ha)) {
  2459. buf = dma_alloc_coherent(&ha->pdev->dev, size,
  2460. &buf_dma, GFP_KERNEL);
  2461. if (!buf) {
  2462. DEBUG2(ql4_printk(KERN_ERR, ha,
  2463. "%s: Unable to allocate dma buffer\n",
  2464. __func__));
  2465. ret = QLA_ERROR;
  2466. goto exit_boot_info;
  2467. }
  2468. if (ha->port_num == 0)
  2469. offset = BOOT_PARAM_OFFSET_PORT0;
  2470. else if (ha->port_num == 1)
  2471. offset = BOOT_PARAM_OFFSET_PORT1;
  2472. else {
  2473. ret = QLA_ERROR;
  2474. goto exit_boot_info_free;
  2475. }
  2476. addr = FLASH_RAW_ACCESS_ADDR + (ha->hw.flt_iscsi_param * 4) +
  2477. offset;
  2478. if (qla4xxx_get_flash(ha, buf_dma, addr,
  2479. 13 * sizeof(uint8_t)) != QLA_SUCCESS) {
  2480. DEBUG2(ql4_printk(KERN_ERR, ha, "scsi%ld: %s: Get Flash"
  2481. "failed\n", ha->host_no, __func__));
  2482. ret = QLA_ERROR;
  2483. goto exit_boot_info_free;
  2484. }
  2485. /* Check Boot Mode */
  2486. if (!(buf[1] & 0x07)) {
  2487. DEBUG2(ql4_printk(KERN_INFO, ha,
  2488. "Failed: Boot options : 0x%x\n",
  2489. buf[1]));
  2490. ret = QLA_ERROR;
  2491. goto exit_boot_info_free;
  2492. }
  2493. /* get primary valid target index */
  2494. if (buf[2] & BIT_7)
  2495. ddb_index[0] = buf[2] & 0x7f;
  2496. /* get secondary valid target index */
  2497. if (buf[11] & BIT_7)
  2498. ddb_index[1] = buf[11] & 0x7f;
  2499. } else {
  2500. ret = QLA_ERROR;
  2501. goto exit_boot_info;
  2502. }
  2503. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: Primary target ID %d, Secondary"
  2504. " target ID %d\n", __func__, ddb_index[0],
  2505. ddb_index[1]));
  2506. exit_boot_info_free:
  2507. dma_free_coherent(&ha->pdev->dev, size, buf, buf_dma);
  2508. exit_boot_info:
  2509. return ret;
  2510. }
  2511. /**
  2512. * qla4xxx_get_bidi_chap - Get a BIDI CHAP user and password
  2513. * @ha: pointer to adapter structure
  2514. * @username: CHAP username to be returned
  2515. * @password: CHAP password to be returned
  2516. *
  2517. * If a boot entry has BIDI CHAP enabled then we need to set the BIDI CHAP
  2518. * user and password in the sysfs entry in /sys/firmware/iscsi_boot#/.
  2519. * So from the CHAP cache find the first BIDI CHAP entry and set it
  2520. * to the boot record in sysfs.
  2521. **/
  2522. static int qla4xxx_get_bidi_chap(struct scsi_qla_host *ha, char *username,
  2523. char *password)
  2524. {
  2525. int i, ret = -EINVAL;
  2526. int max_chap_entries = 0;
  2527. struct ql4_chap_table *chap_table;
  2528. if (is_qla8022(ha))
  2529. max_chap_entries = (ha->hw.flt_chap_size / 2) /
  2530. sizeof(struct ql4_chap_table);
  2531. else
  2532. max_chap_entries = MAX_CHAP_ENTRIES_40XX;
  2533. if (!ha->chap_list) {
  2534. ql4_printk(KERN_ERR, ha, "Do not have CHAP table cache\n");
  2535. return ret;
  2536. }
  2537. mutex_lock(&ha->chap_sem);
  2538. for (i = 0; i < max_chap_entries; i++) {
  2539. chap_table = (struct ql4_chap_table *)ha->chap_list + i;
  2540. if (chap_table->cookie !=
  2541. __constant_cpu_to_le16(CHAP_VALID_COOKIE)) {
  2542. continue;
  2543. }
  2544. if (chap_table->flags & BIT_7) /* local */
  2545. continue;
  2546. if (!(chap_table->flags & BIT_6)) /* Not BIDI */
  2547. continue;
  2548. strncpy(password, chap_table->secret, QL4_CHAP_MAX_SECRET_LEN);
  2549. strncpy(username, chap_table->name, QL4_CHAP_MAX_NAME_LEN);
  2550. ret = 0;
  2551. break;
  2552. }
  2553. mutex_unlock(&ha->chap_sem);
  2554. return ret;
  2555. }
  2556. static int qla4xxx_get_boot_target(struct scsi_qla_host *ha,
  2557. struct ql4_boot_session_info *boot_sess,
  2558. uint16_t ddb_index)
  2559. {
  2560. struct ql4_conn_info *boot_conn = &boot_sess->conn_list[0];
  2561. struct dev_db_entry *fw_ddb_entry;
  2562. dma_addr_t fw_ddb_entry_dma;
  2563. uint16_t idx;
  2564. uint16_t options;
  2565. int ret = QLA_SUCCESS;
  2566. fw_ddb_entry = dma_alloc_coherent(&ha->pdev->dev, sizeof(*fw_ddb_entry),
  2567. &fw_ddb_entry_dma, GFP_KERNEL);
  2568. if (!fw_ddb_entry) {
  2569. DEBUG2(ql4_printk(KERN_ERR, ha,
  2570. "%s: Unable to allocate dma buffer.\n",
  2571. __func__));
  2572. ret = QLA_ERROR;
  2573. return ret;
  2574. }
  2575. if (qla4xxx_bootdb_by_index(ha, fw_ddb_entry,
  2576. fw_ddb_entry_dma, ddb_index)) {
  2577. DEBUG2(ql4_printk(KERN_ERR, ha,
  2578. "%s: Flash DDB read Failed\n", __func__));
  2579. ret = QLA_ERROR;
  2580. goto exit_boot_target;
  2581. }
  2582. /* Update target name and IP from DDB */
  2583. memcpy(boot_sess->target_name, fw_ddb_entry->iscsi_name,
  2584. min(sizeof(boot_sess->target_name),
  2585. sizeof(fw_ddb_entry->iscsi_name)));
  2586. options = le16_to_cpu(fw_ddb_entry->options);
  2587. if (options & DDB_OPT_IPV6_DEVICE) {
  2588. memcpy(&boot_conn->dest_ipaddr.ip_address,
  2589. &fw_ddb_entry->ip_addr[0], IPv6_ADDR_LEN);
  2590. } else {
  2591. boot_conn->dest_ipaddr.ip_type = 0x1;
  2592. memcpy(&boot_conn->dest_ipaddr.ip_address,
  2593. &fw_ddb_entry->ip_addr[0], IP_ADDR_LEN);
  2594. }
  2595. boot_conn->dest_port = le16_to_cpu(fw_ddb_entry->port);
  2596. /* update chap information */
  2597. idx = __le16_to_cpu(fw_ddb_entry->chap_tbl_idx);
  2598. if (BIT_7 & le16_to_cpu(fw_ddb_entry->iscsi_options)) {
  2599. DEBUG2(ql4_printk(KERN_INFO, ha, "Setting chap\n"));
  2600. ret = qla4xxx_get_chap(ha, (char *)&boot_conn->chap.
  2601. target_chap_name,
  2602. (char *)&boot_conn->chap.target_secret,
  2603. idx);
  2604. if (ret) {
  2605. ql4_printk(KERN_ERR, ha, "Failed to set chap\n");
  2606. ret = QLA_ERROR;
  2607. goto exit_boot_target;
  2608. }
  2609. boot_conn->chap.target_chap_name_length = QL4_CHAP_MAX_NAME_LEN;
  2610. boot_conn->chap.target_secret_length = QL4_CHAP_MAX_SECRET_LEN;
  2611. }
  2612. if (BIT_4 & le16_to_cpu(fw_ddb_entry->iscsi_options)) {
  2613. DEBUG2(ql4_printk(KERN_INFO, ha, "Setting BIDI chap\n"));
  2614. ret = qla4xxx_get_bidi_chap(ha,
  2615. (char *)&boot_conn->chap.intr_chap_name,
  2616. (char *)&boot_conn->chap.intr_secret);
  2617. if (ret) {
  2618. ql4_printk(KERN_ERR, ha, "Failed to set BIDI chap\n");
  2619. ret = QLA_ERROR;
  2620. goto exit_boot_target;
  2621. }
  2622. boot_conn->chap.intr_chap_name_length = QL4_CHAP_MAX_NAME_LEN;
  2623. boot_conn->chap.intr_secret_length = QL4_CHAP_MAX_SECRET_LEN;
  2624. }
  2625. exit_boot_target:
  2626. dma_free_coherent(&ha->pdev->dev, sizeof(*fw_ddb_entry),
  2627. fw_ddb_entry, fw_ddb_entry_dma);
  2628. return ret;
  2629. }
  2630. static int qla4xxx_get_boot_info(struct scsi_qla_host *ha)
  2631. {
  2632. uint16_t ddb_index[2];
  2633. int ret = QLA_ERROR;
  2634. int rval;
  2635. memset(ddb_index, 0, sizeof(ddb_index));
  2636. ddb_index[0] = 0xffff;
  2637. ddb_index[1] = 0xffff;
  2638. ret = get_fw_boot_info(ha, ddb_index);
  2639. if (ret != QLA_SUCCESS) {
  2640. DEBUG2(ql4_printk(KERN_ERR, ha,
  2641. "%s: Failed to set boot info.\n", __func__));
  2642. return ret;
  2643. }
  2644. if (ddb_index[0] == 0xffff)
  2645. goto sec_target;
  2646. rval = qla4xxx_get_boot_target(ha, &(ha->boot_tgt.boot_pri_sess),
  2647. ddb_index[0]);
  2648. if (rval != QLA_SUCCESS) {
  2649. DEBUG2(ql4_printk(KERN_ERR, ha, "%s: Failed to get "
  2650. "primary target\n", __func__));
  2651. } else
  2652. ret = QLA_SUCCESS;
  2653. sec_target:
  2654. if (ddb_index[1] == 0xffff)
  2655. goto exit_get_boot_info;
  2656. rval = qla4xxx_get_boot_target(ha, &(ha->boot_tgt.boot_sec_sess),
  2657. ddb_index[1]);
  2658. if (rval != QLA_SUCCESS) {
  2659. DEBUG2(ql4_printk(KERN_ERR, ha, "%s: Failed to get "
  2660. "secondary target\n", __func__));
  2661. } else
  2662. ret = QLA_SUCCESS;
  2663. exit_get_boot_info:
  2664. return ret;
  2665. }
  2666. static int qla4xxx_setup_boot_info(struct scsi_qla_host *ha)
  2667. {
  2668. struct iscsi_boot_kobj *boot_kobj;
  2669. if (qla4xxx_get_boot_info(ha) != QLA_SUCCESS)
  2670. return 0;
  2671. ha->boot_kset = iscsi_boot_create_host_kset(ha->host->host_no);
  2672. if (!ha->boot_kset)
  2673. goto kset_free;
  2674. if (!scsi_host_get(ha->host))
  2675. goto kset_free;
  2676. boot_kobj = iscsi_boot_create_target(ha->boot_kset, 0, ha,
  2677. qla4xxx_show_boot_tgt_pri_info,
  2678. qla4xxx_tgt_get_attr_visibility,
  2679. qla4xxx_boot_release);
  2680. if (!boot_kobj)
  2681. goto put_host;
  2682. if (!scsi_host_get(ha->host))
  2683. goto kset_free;
  2684. boot_kobj = iscsi_boot_create_target(ha->boot_kset, 1, ha,
  2685. qla4xxx_show_boot_tgt_sec_info,
  2686. qla4xxx_tgt_get_attr_visibility,
  2687. qla4xxx_boot_release);
  2688. if (!boot_kobj)
  2689. goto put_host;
  2690. if (!scsi_host_get(ha->host))
  2691. goto kset_free;
  2692. boot_kobj = iscsi_boot_create_initiator(ha->boot_kset, 0, ha,
  2693. qla4xxx_show_boot_ini_info,
  2694. qla4xxx_ini_get_attr_visibility,
  2695. qla4xxx_boot_release);
  2696. if (!boot_kobj)
  2697. goto put_host;
  2698. if (!scsi_host_get(ha->host))
  2699. goto kset_free;
  2700. boot_kobj = iscsi_boot_create_ethernet(ha->boot_kset, 0, ha,
  2701. qla4xxx_show_boot_eth_info,
  2702. qla4xxx_eth_get_attr_visibility,
  2703. qla4xxx_boot_release);
  2704. if (!boot_kobj)
  2705. goto put_host;
  2706. return 0;
  2707. put_host:
  2708. scsi_host_put(ha->host);
  2709. kset_free:
  2710. iscsi_boot_destroy_kset(ha->boot_kset);
  2711. return -ENOMEM;
  2712. }
  2713. /**
  2714. * qla4xxx_create chap_list - Create CHAP list from FLASH
  2715. * @ha: pointer to adapter structure
  2716. *
  2717. * Read flash and make a list of CHAP entries, during login when a CHAP entry
  2718. * is received, it will be checked in this list. If entry exist then the CHAP
  2719. * entry index is set in the DDB. If CHAP entry does not exist in this list
  2720. * then a new entry is added in FLASH in CHAP table and the index obtained is
  2721. * used in the DDB.
  2722. **/
  2723. static void qla4xxx_create_chap_list(struct scsi_qla_host *ha)
  2724. {
  2725. int rval = 0;
  2726. uint8_t *chap_flash_data = NULL;
  2727. uint32_t offset;
  2728. dma_addr_t chap_dma;
  2729. uint32_t chap_size = 0;
  2730. if (is_qla40XX(ha))
  2731. chap_size = MAX_CHAP_ENTRIES_40XX *
  2732. sizeof(struct ql4_chap_table);
  2733. else /* Single region contains CHAP info for both
  2734. * ports which is divided into half for each port.
  2735. */
  2736. chap_size = ha->hw.flt_chap_size / 2;
  2737. chap_flash_data = dma_alloc_coherent(&ha->pdev->dev, chap_size,
  2738. &chap_dma, GFP_KERNEL);
  2739. if (!chap_flash_data) {
  2740. ql4_printk(KERN_ERR, ha, "No memory for chap_flash_data\n");
  2741. return;
  2742. }
  2743. if (is_qla40XX(ha))
  2744. offset = FLASH_CHAP_OFFSET;
  2745. else {
  2746. offset = FLASH_RAW_ACCESS_ADDR + (ha->hw.flt_region_chap << 2);
  2747. if (ha->port_num == 1)
  2748. offset += chap_size;
  2749. }
  2750. rval = qla4xxx_get_flash(ha, chap_dma, offset, chap_size);
  2751. if (rval != QLA_SUCCESS)
  2752. goto exit_chap_list;
  2753. if (ha->chap_list == NULL)
  2754. ha->chap_list = vmalloc(chap_size);
  2755. if (ha->chap_list == NULL) {
  2756. ql4_printk(KERN_ERR, ha, "No memory for ha->chap_list\n");
  2757. goto exit_chap_list;
  2758. }
  2759. memcpy(ha->chap_list, chap_flash_data, chap_size);
  2760. exit_chap_list:
  2761. dma_free_coherent(&ha->pdev->dev, chap_size,
  2762. chap_flash_data, chap_dma);
  2763. return;
  2764. }
  2765. /**
  2766. * qla4xxx_probe_adapter - callback function to probe HBA
  2767. * @pdev: pointer to pci_dev structure
  2768. * @pci_device_id: pointer to pci_device entry
  2769. *
  2770. * This routine will probe for Qlogic 4xxx iSCSI host adapters.
  2771. * It returns zero if successful. It also initializes all data necessary for
  2772. * the driver.
  2773. **/
  2774. static int __devinit qla4xxx_probe_adapter(struct pci_dev *pdev,
  2775. const struct pci_device_id *ent)
  2776. {
  2777. int ret = -ENODEV, status;
  2778. struct Scsi_Host *host;
  2779. struct scsi_qla_host *ha;
  2780. uint8_t init_retry_count = 0;
  2781. char buf[34];
  2782. struct qla4_8xxx_legacy_intr_set *nx_legacy_intr;
  2783. uint32_t dev_state;
  2784. if (pci_enable_device(pdev))
  2785. return -1;
  2786. host = iscsi_host_alloc(&qla4xxx_driver_template, sizeof(*ha), 0);
  2787. if (host == NULL) {
  2788. printk(KERN_WARNING
  2789. "qla4xxx: Couldn't allocate host from scsi layer!\n");
  2790. goto probe_disable_device;
  2791. }
  2792. /* Clear our data area */
  2793. ha = to_qla_host(host);
  2794. memset(ha, 0, sizeof(*ha));
  2795. /* Save the information from PCI BIOS. */
  2796. ha->pdev = pdev;
  2797. ha->host = host;
  2798. ha->host_no = host->host_no;
  2799. pci_enable_pcie_error_reporting(pdev);
  2800. /* Setup Runtime configurable options */
  2801. if (is_qla8022(ha)) {
  2802. ha->isp_ops = &qla4_8xxx_isp_ops;
  2803. rwlock_init(&ha->hw_lock);
  2804. ha->qdr_sn_window = -1;
  2805. ha->ddr_mn_window = -1;
  2806. ha->curr_window = 255;
  2807. ha->func_num = PCI_FUNC(ha->pdev->devfn);
  2808. nx_legacy_intr = &legacy_intr[ha->func_num];
  2809. ha->nx_legacy_intr.int_vec_bit = nx_legacy_intr->int_vec_bit;
  2810. ha->nx_legacy_intr.tgt_status_reg =
  2811. nx_legacy_intr->tgt_status_reg;
  2812. ha->nx_legacy_intr.tgt_mask_reg = nx_legacy_intr->tgt_mask_reg;
  2813. ha->nx_legacy_intr.pci_int_reg = nx_legacy_intr->pci_int_reg;
  2814. } else {
  2815. ha->isp_ops = &qla4xxx_isp_ops;
  2816. }
  2817. /* Set EEH reset type to fundamental if required by hba */
  2818. if (is_qla8022(ha))
  2819. pdev->needs_freset = 1;
  2820. /* Configure PCI I/O space. */
  2821. ret = ha->isp_ops->iospace_config(ha);
  2822. if (ret)
  2823. goto probe_failed_ioconfig;
  2824. ql4_printk(KERN_INFO, ha, "Found an ISP%04x, irq %d, iobase 0x%p\n",
  2825. pdev->device, pdev->irq, ha->reg);
  2826. qla4xxx_config_dma_addressing(ha);
  2827. /* Initialize lists and spinlocks. */
  2828. INIT_LIST_HEAD(&ha->free_srb_q);
  2829. mutex_init(&ha->mbox_sem);
  2830. mutex_init(&ha->chap_sem);
  2831. init_completion(&ha->mbx_intr_comp);
  2832. init_completion(&ha->disable_acb_comp);
  2833. spin_lock_init(&ha->hardware_lock);
  2834. /* Allocate dma buffers */
  2835. if (qla4xxx_mem_alloc(ha)) {
  2836. ql4_printk(KERN_WARNING, ha,
  2837. "[ERROR] Failed to allocate memory for adapter\n");
  2838. ret = -ENOMEM;
  2839. goto probe_failed;
  2840. }
  2841. host->cmd_per_lun = 3;
  2842. host->max_channel = 0;
  2843. host->max_lun = MAX_LUNS - 1;
  2844. host->max_id = MAX_TARGETS;
  2845. host->max_cmd_len = IOCB_MAX_CDB_LEN;
  2846. host->can_queue = MAX_SRBS ;
  2847. host->transportt = qla4xxx_scsi_transport;
  2848. ret = scsi_init_shared_tag_map(host, MAX_SRBS);
  2849. if (ret) {
  2850. ql4_printk(KERN_WARNING, ha,
  2851. "%s: scsi_init_shared_tag_map failed\n", __func__);
  2852. goto probe_failed;
  2853. }
  2854. pci_set_drvdata(pdev, ha);
  2855. ret = scsi_add_host(host, &pdev->dev);
  2856. if (ret)
  2857. goto probe_failed;
  2858. if (is_qla8022(ha))
  2859. (void) qla4_8xxx_get_flash_info(ha);
  2860. /*
  2861. * Initialize the Host adapter request/response queues and
  2862. * firmware
  2863. * NOTE: interrupts enabled upon successful completion
  2864. */
  2865. status = qla4xxx_initialize_adapter(ha);
  2866. while ((!test_bit(AF_ONLINE, &ha->flags)) &&
  2867. init_retry_count++ < MAX_INIT_RETRIES) {
  2868. if (is_qla8022(ha)) {
  2869. qla4_8xxx_idc_lock(ha);
  2870. dev_state = qla4_8xxx_rd_32(ha, QLA82XX_CRB_DEV_STATE);
  2871. qla4_8xxx_idc_unlock(ha);
  2872. if (dev_state == QLA82XX_DEV_FAILED) {
  2873. ql4_printk(KERN_WARNING, ha, "%s: don't retry "
  2874. "initialize adapter. H/W is in failed state\n",
  2875. __func__);
  2876. break;
  2877. }
  2878. }
  2879. DEBUG2(printk("scsi: %s: retrying adapter initialization "
  2880. "(%d)\n", __func__, init_retry_count));
  2881. if (ha->isp_ops->reset_chip(ha) == QLA_ERROR)
  2882. continue;
  2883. status = qla4xxx_initialize_adapter(ha);
  2884. }
  2885. if (!test_bit(AF_ONLINE, &ha->flags)) {
  2886. ql4_printk(KERN_WARNING, ha, "Failed to initialize adapter\n");
  2887. if (is_qla8022(ha) && ql4xdontresethba) {
  2888. /* Put the device in failed state. */
  2889. DEBUG2(printk(KERN_ERR "HW STATE: FAILED\n"));
  2890. qla4_8xxx_idc_lock(ha);
  2891. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DEV_STATE,
  2892. QLA82XX_DEV_FAILED);
  2893. qla4_8xxx_idc_unlock(ha);
  2894. }
  2895. ret = -ENODEV;
  2896. goto remove_host;
  2897. }
  2898. /* Startup the kernel thread for this host adapter. */
  2899. DEBUG2(printk("scsi: %s: Starting kernel thread for "
  2900. "qla4xxx_dpc\n", __func__));
  2901. sprintf(buf, "qla4xxx_%lu_dpc", ha->host_no);
  2902. ha->dpc_thread = create_singlethread_workqueue(buf);
  2903. if (!ha->dpc_thread) {
  2904. ql4_printk(KERN_WARNING, ha, "Unable to start DPC thread!\n");
  2905. ret = -ENODEV;
  2906. goto remove_host;
  2907. }
  2908. INIT_WORK(&ha->dpc_work, qla4xxx_do_dpc);
  2909. sprintf(buf, "qla4xxx_%lu_task", ha->host_no);
  2910. ha->task_wq = alloc_workqueue(buf, WQ_MEM_RECLAIM, 1);
  2911. if (!ha->task_wq) {
  2912. ql4_printk(KERN_WARNING, ha, "Unable to start task thread!\n");
  2913. ret = -ENODEV;
  2914. goto remove_host;
  2915. }
  2916. /* For ISP-82XX, request_irqs is called in qla4_8xxx_load_risc
  2917. * (which is called indirectly by qla4xxx_initialize_adapter),
  2918. * so that irqs will be registered after crbinit but before
  2919. * mbx_intr_enable.
  2920. */
  2921. if (!is_qla8022(ha)) {
  2922. ret = qla4xxx_request_irqs(ha);
  2923. if (ret) {
  2924. ql4_printk(KERN_WARNING, ha, "Failed to reserve "
  2925. "interrupt %d already in use.\n", pdev->irq);
  2926. goto remove_host;
  2927. }
  2928. }
  2929. pci_save_state(ha->pdev);
  2930. ha->isp_ops->enable_intrs(ha);
  2931. /* Start timer thread. */
  2932. qla4xxx_start_timer(ha, qla4xxx_timer, 1);
  2933. set_bit(AF_INIT_DONE, &ha->flags);
  2934. printk(KERN_INFO
  2935. " QLogic iSCSI HBA Driver version: %s\n"
  2936. " QLogic ISP%04x @ %s, host#=%ld, fw=%02d.%02d.%02d.%02d\n",
  2937. qla4xxx_version_str, ha->pdev->device, pci_name(ha->pdev),
  2938. ha->host_no, ha->firmware_version[0], ha->firmware_version[1],
  2939. ha->patch_number, ha->build_number);
  2940. qla4xxx_create_chap_list(ha);
  2941. if (qla4xxx_setup_boot_info(ha))
  2942. ql4_printk(KERN_ERR, ha, "%s:ISCSI boot info setup failed\n",
  2943. __func__);
  2944. qla4xxx_create_ifaces(ha);
  2945. return 0;
  2946. remove_host:
  2947. scsi_remove_host(ha->host);
  2948. probe_failed:
  2949. qla4xxx_free_adapter(ha);
  2950. probe_failed_ioconfig:
  2951. pci_disable_pcie_error_reporting(pdev);
  2952. scsi_host_put(ha->host);
  2953. probe_disable_device:
  2954. pci_disable_device(pdev);
  2955. return ret;
  2956. }
  2957. /**
  2958. * qla4xxx_prevent_other_port_reinit - prevent other port from re-initialize
  2959. * @ha: pointer to adapter structure
  2960. *
  2961. * Mark the other ISP-4xxx port to indicate that the driver is being removed,
  2962. * so that the other port will not re-initialize while in the process of
  2963. * removing the ha due to driver unload or hba hotplug.
  2964. **/
  2965. static void qla4xxx_prevent_other_port_reinit(struct scsi_qla_host *ha)
  2966. {
  2967. struct scsi_qla_host *other_ha = NULL;
  2968. struct pci_dev *other_pdev = NULL;
  2969. int fn = ISP4XXX_PCI_FN_2;
  2970. /*iscsi function numbers for ISP4xxx is 1 and 3*/
  2971. if (PCI_FUNC(ha->pdev->devfn) & BIT_1)
  2972. fn = ISP4XXX_PCI_FN_1;
  2973. other_pdev =
  2974. pci_get_domain_bus_and_slot(pci_domain_nr(ha->pdev->bus),
  2975. ha->pdev->bus->number, PCI_DEVFN(PCI_SLOT(ha->pdev->devfn),
  2976. fn));
  2977. /* Get other_ha if other_pdev is valid and state is enable*/
  2978. if (other_pdev) {
  2979. if (atomic_read(&other_pdev->enable_cnt)) {
  2980. other_ha = pci_get_drvdata(other_pdev);
  2981. if (other_ha) {
  2982. set_bit(AF_HA_REMOVAL, &other_ha->flags);
  2983. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: "
  2984. "Prevent %s reinit\n", __func__,
  2985. dev_name(&other_ha->pdev->dev)));
  2986. }
  2987. }
  2988. pci_dev_put(other_pdev);
  2989. }
  2990. }
  2991. /**
  2992. * qla4xxx_remove_adapter - calback function to remove adapter.
  2993. * @pci_dev: PCI device pointer
  2994. **/
  2995. static void __devexit qla4xxx_remove_adapter(struct pci_dev *pdev)
  2996. {
  2997. struct scsi_qla_host *ha;
  2998. ha = pci_get_drvdata(pdev);
  2999. if (!is_qla8022(ha))
  3000. qla4xxx_prevent_other_port_reinit(ha);
  3001. /* destroy iface from sysfs */
  3002. qla4xxx_destroy_ifaces(ha);
  3003. if (ha->boot_kset)
  3004. iscsi_boot_destroy_kset(ha->boot_kset);
  3005. scsi_remove_host(ha->host);
  3006. qla4xxx_free_adapter(ha);
  3007. scsi_host_put(ha->host);
  3008. pci_disable_pcie_error_reporting(pdev);
  3009. pci_disable_device(pdev);
  3010. pci_set_drvdata(pdev, NULL);
  3011. }
  3012. /**
  3013. * qla4xxx_config_dma_addressing() - Configure OS DMA addressing method.
  3014. * @ha: HA context
  3015. *
  3016. * At exit, the @ha's flags.enable_64bit_addressing set to indicated
  3017. * supported addressing method.
  3018. */
  3019. static void qla4xxx_config_dma_addressing(struct scsi_qla_host *ha)
  3020. {
  3021. int retval;
  3022. /* Update our PCI device dma_mask for full 64 bit mask */
  3023. if (pci_set_dma_mask(ha->pdev, DMA_BIT_MASK(64)) == 0) {
  3024. if (pci_set_consistent_dma_mask(ha->pdev, DMA_BIT_MASK(64))) {
  3025. dev_dbg(&ha->pdev->dev,
  3026. "Failed to set 64 bit PCI consistent mask; "
  3027. "using 32 bit.\n");
  3028. retval = pci_set_consistent_dma_mask(ha->pdev,
  3029. DMA_BIT_MASK(32));
  3030. }
  3031. } else
  3032. retval = pci_set_dma_mask(ha->pdev, DMA_BIT_MASK(32));
  3033. }
  3034. static int qla4xxx_slave_alloc(struct scsi_device *sdev)
  3035. {
  3036. struct iscsi_cls_session *cls_sess;
  3037. struct iscsi_session *sess;
  3038. struct ddb_entry *ddb;
  3039. int queue_depth = QL4_DEF_QDEPTH;
  3040. cls_sess = starget_to_session(sdev->sdev_target);
  3041. sess = cls_sess->dd_data;
  3042. ddb = sess->dd_data;
  3043. sdev->hostdata = ddb;
  3044. sdev->tagged_supported = 1;
  3045. if (ql4xmaxqdepth != 0 && ql4xmaxqdepth <= 0xffffU)
  3046. queue_depth = ql4xmaxqdepth;
  3047. scsi_activate_tcq(sdev, queue_depth);
  3048. return 0;
  3049. }
  3050. static int qla4xxx_slave_configure(struct scsi_device *sdev)
  3051. {
  3052. sdev->tagged_supported = 1;
  3053. return 0;
  3054. }
  3055. static void qla4xxx_slave_destroy(struct scsi_device *sdev)
  3056. {
  3057. scsi_deactivate_tcq(sdev, 1);
  3058. }
  3059. /**
  3060. * qla4xxx_del_from_active_array - returns an active srb
  3061. * @ha: Pointer to host adapter structure.
  3062. * @index: index into the active_array
  3063. *
  3064. * This routine removes and returns the srb at the specified index
  3065. **/
  3066. struct srb *qla4xxx_del_from_active_array(struct scsi_qla_host *ha,
  3067. uint32_t index)
  3068. {
  3069. struct srb *srb = NULL;
  3070. struct scsi_cmnd *cmd = NULL;
  3071. cmd = scsi_host_find_tag(ha->host, index);
  3072. if (!cmd)
  3073. return srb;
  3074. srb = (struct srb *)CMD_SP(cmd);
  3075. if (!srb)
  3076. return srb;
  3077. /* update counters */
  3078. if (srb->flags & SRB_DMA_VALID) {
  3079. ha->req_q_count += srb->iocb_cnt;
  3080. ha->iocb_cnt -= srb->iocb_cnt;
  3081. if (srb->cmd)
  3082. srb->cmd->host_scribble =
  3083. (unsigned char *)(unsigned long) MAX_SRBS;
  3084. }
  3085. return srb;
  3086. }
  3087. /**
  3088. * qla4xxx_eh_wait_on_command - waits for command to be returned by firmware
  3089. * @ha: Pointer to host adapter structure.
  3090. * @cmd: Scsi Command to wait on.
  3091. *
  3092. * This routine waits for the command to be returned by the Firmware
  3093. * for some max time.
  3094. **/
  3095. static int qla4xxx_eh_wait_on_command(struct scsi_qla_host *ha,
  3096. struct scsi_cmnd *cmd)
  3097. {
  3098. int done = 0;
  3099. struct srb *rp;
  3100. uint32_t max_wait_time = EH_WAIT_CMD_TOV;
  3101. int ret = SUCCESS;
  3102. /* Dont wait on command if PCI error is being handled
  3103. * by PCI AER driver
  3104. */
  3105. if (unlikely(pci_channel_offline(ha->pdev)) ||
  3106. (test_bit(AF_EEH_BUSY, &ha->flags))) {
  3107. ql4_printk(KERN_WARNING, ha, "scsi%ld: Return from %s\n",
  3108. ha->host_no, __func__);
  3109. return ret;
  3110. }
  3111. do {
  3112. /* Checking to see if its returned to OS */
  3113. rp = (struct srb *) CMD_SP(cmd);
  3114. if (rp == NULL) {
  3115. done++;
  3116. break;
  3117. }
  3118. msleep(2000);
  3119. } while (max_wait_time--);
  3120. return done;
  3121. }
  3122. /**
  3123. * qla4xxx_wait_for_hba_online - waits for HBA to come online
  3124. * @ha: Pointer to host adapter structure
  3125. **/
  3126. static int qla4xxx_wait_for_hba_online(struct scsi_qla_host *ha)
  3127. {
  3128. unsigned long wait_online;
  3129. wait_online = jiffies + (HBA_ONLINE_TOV * HZ);
  3130. while (time_before(jiffies, wait_online)) {
  3131. if (adapter_up(ha))
  3132. return QLA_SUCCESS;
  3133. msleep(2000);
  3134. }
  3135. return QLA_ERROR;
  3136. }
  3137. /**
  3138. * qla4xxx_eh_wait_for_commands - wait for active cmds to finish.
  3139. * @ha: pointer to HBA
  3140. * @t: target id
  3141. * @l: lun id
  3142. *
  3143. * This function waits for all outstanding commands to a lun to complete. It
  3144. * returns 0 if all pending commands are returned and 1 otherwise.
  3145. **/
  3146. static int qla4xxx_eh_wait_for_commands(struct scsi_qla_host *ha,
  3147. struct scsi_target *stgt,
  3148. struct scsi_device *sdev)
  3149. {
  3150. int cnt;
  3151. int status = 0;
  3152. struct scsi_cmnd *cmd;
  3153. /*
  3154. * Waiting for all commands for the designated target or dev
  3155. * in the active array
  3156. */
  3157. for (cnt = 0; cnt < ha->host->can_queue; cnt++) {
  3158. cmd = scsi_host_find_tag(ha->host, cnt);
  3159. if (cmd && stgt == scsi_target(cmd->device) &&
  3160. (!sdev || sdev == cmd->device)) {
  3161. if (!qla4xxx_eh_wait_on_command(ha, cmd)) {
  3162. status++;
  3163. break;
  3164. }
  3165. }
  3166. }
  3167. return status;
  3168. }
  3169. /**
  3170. * qla4xxx_eh_abort - callback for abort task.
  3171. * @cmd: Pointer to Linux's SCSI command structure
  3172. *
  3173. * This routine is called by the Linux OS to abort the specified
  3174. * command.
  3175. **/
  3176. static int qla4xxx_eh_abort(struct scsi_cmnd *cmd)
  3177. {
  3178. struct scsi_qla_host *ha = to_qla_host(cmd->device->host);
  3179. unsigned int id = cmd->device->id;
  3180. unsigned int lun = cmd->device->lun;
  3181. unsigned long flags;
  3182. struct srb *srb = NULL;
  3183. int ret = SUCCESS;
  3184. int wait = 0;
  3185. ql4_printk(KERN_INFO, ha,
  3186. "scsi%ld:%d:%d: Abort command issued cmd=%p\n",
  3187. ha->host_no, id, lun, cmd);
  3188. spin_lock_irqsave(&ha->hardware_lock, flags);
  3189. srb = (struct srb *) CMD_SP(cmd);
  3190. if (!srb) {
  3191. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  3192. return SUCCESS;
  3193. }
  3194. kref_get(&srb->srb_ref);
  3195. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  3196. if (qla4xxx_abort_task(ha, srb) != QLA_SUCCESS) {
  3197. DEBUG3(printk("scsi%ld:%d:%d: Abort_task mbx failed.\n",
  3198. ha->host_no, id, lun));
  3199. ret = FAILED;
  3200. } else {
  3201. DEBUG3(printk("scsi%ld:%d:%d: Abort_task mbx success.\n",
  3202. ha->host_no, id, lun));
  3203. wait = 1;
  3204. }
  3205. kref_put(&srb->srb_ref, qla4xxx_srb_compl);
  3206. /* Wait for command to complete */
  3207. if (wait) {
  3208. if (!qla4xxx_eh_wait_on_command(ha, cmd)) {
  3209. DEBUG2(printk("scsi%ld:%d:%d: Abort handler timed out\n",
  3210. ha->host_no, id, lun));
  3211. ret = FAILED;
  3212. }
  3213. }
  3214. ql4_printk(KERN_INFO, ha,
  3215. "scsi%ld:%d:%d: Abort command - %s\n",
  3216. ha->host_no, id, lun, (ret == SUCCESS) ? "succeeded" : "failed");
  3217. return ret;
  3218. }
  3219. /**
  3220. * qla4xxx_eh_device_reset - callback for target reset.
  3221. * @cmd: Pointer to Linux's SCSI command structure
  3222. *
  3223. * This routine is called by the Linux OS to reset all luns on the
  3224. * specified target.
  3225. **/
  3226. static int qla4xxx_eh_device_reset(struct scsi_cmnd *cmd)
  3227. {
  3228. struct scsi_qla_host *ha = to_qla_host(cmd->device->host);
  3229. struct ddb_entry *ddb_entry = cmd->device->hostdata;
  3230. int ret = FAILED, stat;
  3231. if (!ddb_entry)
  3232. return ret;
  3233. ret = iscsi_block_scsi_eh(cmd);
  3234. if (ret)
  3235. return ret;
  3236. ret = FAILED;
  3237. ql4_printk(KERN_INFO, ha,
  3238. "scsi%ld:%d:%d:%d: DEVICE RESET ISSUED.\n", ha->host_no,
  3239. cmd->device->channel, cmd->device->id, cmd->device->lun);
  3240. DEBUG2(printk(KERN_INFO
  3241. "scsi%ld: DEVICE_RESET cmd=%p jiffies = 0x%lx, to=%x,"
  3242. "dpc_flags=%lx, status=%x allowed=%d\n", ha->host_no,
  3243. cmd, jiffies, cmd->request->timeout / HZ,
  3244. ha->dpc_flags, cmd->result, cmd->allowed));
  3245. /* FIXME: wait for hba to go online */
  3246. stat = qla4xxx_reset_lun(ha, ddb_entry, cmd->device->lun);
  3247. if (stat != QLA_SUCCESS) {
  3248. ql4_printk(KERN_INFO, ha, "DEVICE RESET FAILED. %d\n", stat);
  3249. goto eh_dev_reset_done;
  3250. }
  3251. if (qla4xxx_eh_wait_for_commands(ha, scsi_target(cmd->device),
  3252. cmd->device)) {
  3253. ql4_printk(KERN_INFO, ha,
  3254. "DEVICE RESET FAILED - waiting for "
  3255. "commands.\n");
  3256. goto eh_dev_reset_done;
  3257. }
  3258. /* Send marker. */
  3259. if (qla4xxx_send_marker_iocb(ha, ddb_entry, cmd->device->lun,
  3260. MM_LUN_RESET) != QLA_SUCCESS)
  3261. goto eh_dev_reset_done;
  3262. ql4_printk(KERN_INFO, ha,
  3263. "scsi(%ld:%d:%d:%d): DEVICE RESET SUCCEEDED.\n",
  3264. ha->host_no, cmd->device->channel, cmd->device->id,
  3265. cmd->device->lun);
  3266. ret = SUCCESS;
  3267. eh_dev_reset_done:
  3268. return ret;
  3269. }
  3270. /**
  3271. * qla4xxx_eh_target_reset - callback for target reset.
  3272. * @cmd: Pointer to Linux's SCSI command structure
  3273. *
  3274. * This routine is called by the Linux OS to reset the target.
  3275. **/
  3276. static int qla4xxx_eh_target_reset(struct scsi_cmnd *cmd)
  3277. {
  3278. struct scsi_qla_host *ha = to_qla_host(cmd->device->host);
  3279. struct ddb_entry *ddb_entry = cmd->device->hostdata;
  3280. int stat, ret;
  3281. if (!ddb_entry)
  3282. return FAILED;
  3283. ret = iscsi_block_scsi_eh(cmd);
  3284. if (ret)
  3285. return ret;
  3286. starget_printk(KERN_INFO, scsi_target(cmd->device),
  3287. "WARM TARGET RESET ISSUED.\n");
  3288. DEBUG2(printk(KERN_INFO
  3289. "scsi%ld: TARGET_DEVICE_RESET cmd=%p jiffies = 0x%lx, "
  3290. "to=%x,dpc_flags=%lx, status=%x allowed=%d\n",
  3291. ha->host_no, cmd, jiffies, cmd->request->timeout / HZ,
  3292. ha->dpc_flags, cmd->result, cmd->allowed));
  3293. stat = qla4xxx_reset_target(ha, ddb_entry);
  3294. if (stat != QLA_SUCCESS) {
  3295. starget_printk(KERN_INFO, scsi_target(cmd->device),
  3296. "WARM TARGET RESET FAILED.\n");
  3297. return FAILED;
  3298. }
  3299. if (qla4xxx_eh_wait_for_commands(ha, scsi_target(cmd->device),
  3300. NULL)) {
  3301. starget_printk(KERN_INFO, scsi_target(cmd->device),
  3302. "WARM TARGET DEVICE RESET FAILED - "
  3303. "waiting for commands.\n");
  3304. return FAILED;
  3305. }
  3306. /* Send marker. */
  3307. if (qla4xxx_send_marker_iocb(ha, ddb_entry, cmd->device->lun,
  3308. MM_TGT_WARM_RESET) != QLA_SUCCESS) {
  3309. starget_printk(KERN_INFO, scsi_target(cmd->device),
  3310. "WARM TARGET DEVICE RESET FAILED - "
  3311. "marker iocb failed.\n");
  3312. return FAILED;
  3313. }
  3314. starget_printk(KERN_INFO, scsi_target(cmd->device),
  3315. "WARM TARGET RESET SUCCEEDED.\n");
  3316. return SUCCESS;
  3317. }
  3318. /**
  3319. * qla4xxx_eh_host_reset - kernel callback
  3320. * @cmd: Pointer to Linux's SCSI command structure
  3321. *
  3322. * This routine is invoked by the Linux kernel to perform fatal error
  3323. * recovery on the specified adapter.
  3324. **/
  3325. static int qla4xxx_eh_host_reset(struct scsi_cmnd *cmd)
  3326. {
  3327. int return_status = FAILED;
  3328. struct scsi_qla_host *ha;
  3329. ha = to_qla_host(cmd->device->host);
  3330. if (ql4xdontresethba) {
  3331. DEBUG2(printk("scsi%ld: %s: Don't Reset HBA\n",
  3332. ha->host_no, __func__));
  3333. return FAILED;
  3334. }
  3335. ql4_printk(KERN_INFO, ha,
  3336. "scsi(%ld:%d:%d:%d): HOST RESET ISSUED.\n", ha->host_no,
  3337. cmd->device->channel, cmd->device->id, cmd->device->lun);
  3338. if (qla4xxx_wait_for_hba_online(ha) != QLA_SUCCESS) {
  3339. DEBUG2(printk("scsi%ld:%d: %s: Unable to reset host. Adapter "
  3340. "DEAD.\n", ha->host_no, cmd->device->channel,
  3341. __func__));
  3342. return FAILED;
  3343. }
  3344. if (!test_bit(DPC_RESET_HA, &ha->dpc_flags)) {
  3345. if (is_qla8022(ha))
  3346. set_bit(DPC_RESET_HA_FW_CONTEXT, &ha->dpc_flags);
  3347. else
  3348. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  3349. }
  3350. if (qla4xxx_recover_adapter(ha) == QLA_SUCCESS)
  3351. return_status = SUCCESS;
  3352. ql4_printk(KERN_INFO, ha, "HOST RESET %s.\n",
  3353. return_status == FAILED ? "FAILED" : "SUCCEEDED");
  3354. return return_status;
  3355. }
  3356. static int qla4xxx_context_reset(struct scsi_qla_host *ha)
  3357. {
  3358. uint32_t mbox_cmd[MBOX_REG_COUNT];
  3359. uint32_t mbox_sts[MBOX_REG_COUNT];
  3360. struct addr_ctrl_blk_def *acb = NULL;
  3361. uint32_t acb_len = sizeof(struct addr_ctrl_blk_def);
  3362. int rval = QLA_SUCCESS;
  3363. dma_addr_t acb_dma;
  3364. acb = dma_alloc_coherent(&ha->pdev->dev,
  3365. sizeof(struct addr_ctrl_blk_def),
  3366. &acb_dma, GFP_KERNEL);
  3367. if (!acb) {
  3368. ql4_printk(KERN_ERR, ha, "%s: Unable to alloc acb\n",
  3369. __func__);
  3370. rval = -ENOMEM;
  3371. goto exit_port_reset;
  3372. }
  3373. memset(acb, 0, acb_len);
  3374. rval = qla4xxx_get_acb(ha, acb_dma, PRIMARI_ACB, acb_len);
  3375. if (rval != QLA_SUCCESS) {
  3376. rval = -EIO;
  3377. goto exit_free_acb;
  3378. }
  3379. rval = qla4xxx_disable_acb(ha);
  3380. if (rval != QLA_SUCCESS) {
  3381. rval = -EIO;
  3382. goto exit_free_acb;
  3383. }
  3384. wait_for_completion_timeout(&ha->disable_acb_comp,
  3385. DISABLE_ACB_TOV * HZ);
  3386. rval = qla4xxx_set_acb(ha, &mbox_cmd[0], &mbox_sts[0], acb_dma);
  3387. if (rval != QLA_SUCCESS) {
  3388. rval = -EIO;
  3389. goto exit_free_acb;
  3390. }
  3391. exit_free_acb:
  3392. dma_free_coherent(&ha->pdev->dev, sizeof(struct addr_ctrl_blk_def),
  3393. acb, acb_dma);
  3394. exit_port_reset:
  3395. DEBUG2(ql4_printk(KERN_INFO, ha, "%s %s\n", __func__,
  3396. rval == QLA_SUCCESS ? "SUCCEEDED" : "FAILED"));
  3397. return rval;
  3398. }
  3399. static int qla4xxx_host_reset(struct Scsi_Host *shost, int reset_type)
  3400. {
  3401. struct scsi_qla_host *ha = to_qla_host(shost);
  3402. int rval = QLA_SUCCESS;
  3403. if (ql4xdontresethba) {
  3404. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: Don't Reset HBA\n",
  3405. __func__));
  3406. rval = -EPERM;
  3407. goto exit_host_reset;
  3408. }
  3409. rval = qla4xxx_wait_for_hba_online(ha);
  3410. if (rval != QLA_SUCCESS) {
  3411. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: Unable to reset host "
  3412. "adapter\n", __func__));
  3413. rval = -EIO;
  3414. goto exit_host_reset;
  3415. }
  3416. if (test_bit(DPC_RESET_HA, &ha->dpc_flags))
  3417. goto recover_adapter;
  3418. switch (reset_type) {
  3419. case SCSI_ADAPTER_RESET:
  3420. set_bit(DPC_RESET_HA, &ha->dpc_flags);
  3421. break;
  3422. case SCSI_FIRMWARE_RESET:
  3423. if (!test_bit(DPC_RESET_HA, &ha->dpc_flags)) {
  3424. if (is_qla8022(ha))
  3425. /* set firmware context reset */
  3426. set_bit(DPC_RESET_HA_FW_CONTEXT,
  3427. &ha->dpc_flags);
  3428. else {
  3429. rval = qla4xxx_context_reset(ha);
  3430. goto exit_host_reset;
  3431. }
  3432. }
  3433. break;
  3434. }
  3435. recover_adapter:
  3436. rval = qla4xxx_recover_adapter(ha);
  3437. if (rval != QLA_SUCCESS) {
  3438. DEBUG2(ql4_printk(KERN_INFO, ha, "%s: recover adapter fail\n",
  3439. __func__));
  3440. rval = -EIO;
  3441. }
  3442. exit_host_reset:
  3443. return rval;
  3444. }
  3445. /* PCI AER driver recovers from all correctable errors w/o
  3446. * driver intervention. For uncorrectable errors PCI AER
  3447. * driver calls the following device driver's callbacks
  3448. *
  3449. * - Fatal Errors - link_reset
  3450. * - Non-Fatal Errors - driver's pci_error_detected() which
  3451. * returns CAN_RECOVER, NEED_RESET or DISCONNECT.
  3452. *
  3453. * PCI AER driver calls
  3454. * CAN_RECOVER - driver's pci_mmio_enabled(), mmio_enabled
  3455. * returns RECOVERED or NEED_RESET if fw_hung
  3456. * NEED_RESET - driver's slot_reset()
  3457. * DISCONNECT - device is dead & cannot recover
  3458. * RECOVERED - driver's pci_resume()
  3459. */
  3460. static pci_ers_result_t
  3461. qla4xxx_pci_error_detected(struct pci_dev *pdev, pci_channel_state_t state)
  3462. {
  3463. struct scsi_qla_host *ha = pci_get_drvdata(pdev);
  3464. ql4_printk(KERN_WARNING, ha, "scsi%ld: %s: error detected:state %x\n",
  3465. ha->host_no, __func__, state);
  3466. if (!is_aer_supported(ha))
  3467. return PCI_ERS_RESULT_NONE;
  3468. switch (state) {
  3469. case pci_channel_io_normal:
  3470. clear_bit(AF_EEH_BUSY, &ha->flags);
  3471. return PCI_ERS_RESULT_CAN_RECOVER;
  3472. case pci_channel_io_frozen:
  3473. set_bit(AF_EEH_BUSY, &ha->flags);
  3474. qla4xxx_mailbox_premature_completion(ha);
  3475. qla4xxx_free_irqs(ha);
  3476. pci_disable_device(pdev);
  3477. /* Return back all IOs */
  3478. qla4xxx_abort_active_cmds(ha, DID_RESET << 16);
  3479. return PCI_ERS_RESULT_NEED_RESET;
  3480. case pci_channel_io_perm_failure:
  3481. set_bit(AF_EEH_BUSY, &ha->flags);
  3482. set_bit(AF_PCI_CHANNEL_IO_PERM_FAILURE, &ha->flags);
  3483. qla4xxx_abort_active_cmds(ha, DID_NO_CONNECT << 16);
  3484. return PCI_ERS_RESULT_DISCONNECT;
  3485. }
  3486. return PCI_ERS_RESULT_NEED_RESET;
  3487. }
  3488. /**
  3489. * qla4xxx_pci_mmio_enabled() gets called if
  3490. * qla4xxx_pci_error_detected() returns PCI_ERS_RESULT_CAN_RECOVER
  3491. * and read/write to the device still works.
  3492. **/
  3493. static pci_ers_result_t
  3494. qla4xxx_pci_mmio_enabled(struct pci_dev *pdev)
  3495. {
  3496. struct scsi_qla_host *ha = pci_get_drvdata(pdev);
  3497. if (!is_aer_supported(ha))
  3498. return PCI_ERS_RESULT_NONE;
  3499. return PCI_ERS_RESULT_RECOVERED;
  3500. }
  3501. static uint32_t qla4_8xxx_error_recovery(struct scsi_qla_host *ha)
  3502. {
  3503. uint32_t rval = QLA_ERROR;
  3504. uint32_t ret = 0;
  3505. int fn;
  3506. struct pci_dev *other_pdev = NULL;
  3507. ql4_printk(KERN_WARNING, ha, "scsi%ld: In %s\n", ha->host_no, __func__);
  3508. set_bit(DPC_RESET_ACTIVE, &ha->dpc_flags);
  3509. if (test_bit(AF_ONLINE, &ha->flags)) {
  3510. clear_bit(AF_ONLINE, &ha->flags);
  3511. clear_bit(AF_LINK_UP, &ha->flags);
  3512. iscsi_host_for_each_session(ha->host, qla4xxx_fail_session);
  3513. qla4xxx_process_aen(ha, FLUSH_DDB_CHANGED_AENS);
  3514. }
  3515. fn = PCI_FUNC(ha->pdev->devfn);
  3516. while (fn > 0) {
  3517. fn--;
  3518. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: Finding PCI device at "
  3519. "func %x\n", ha->host_no, __func__, fn);
  3520. /* Get the pci device given the domain, bus,
  3521. * slot/function number */
  3522. other_pdev =
  3523. pci_get_domain_bus_and_slot(pci_domain_nr(ha->pdev->bus),
  3524. ha->pdev->bus->number, PCI_DEVFN(PCI_SLOT(ha->pdev->devfn),
  3525. fn));
  3526. if (!other_pdev)
  3527. continue;
  3528. if (atomic_read(&other_pdev->enable_cnt)) {
  3529. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: Found PCI "
  3530. "func in enabled state%x\n", ha->host_no,
  3531. __func__, fn);
  3532. pci_dev_put(other_pdev);
  3533. break;
  3534. }
  3535. pci_dev_put(other_pdev);
  3536. }
  3537. /* The first function on the card, the reset owner will
  3538. * start & initialize the firmware. The other functions
  3539. * on the card will reset the firmware context
  3540. */
  3541. if (!fn) {
  3542. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: devfn being reset "
  3543. "0x%x is the owner\n", ha->host_no, __func__,
  3544. ha->pdev->devfn);
  3545. qla4_8xxx_idc_lock(ha);
  3546. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DEV_STATE,
  3547. QLA82XX_DEV_COLD);
  3548. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DRV_IDC_VERSION,
  3549. QLA82XX_IDC_VERSION);
  3550. qla4_8xxx_idc_unlock(ha);
  3551. clear_bit(AF_FW_RECOVERY, &ha->flags);
  3552. rval = qla4xxx_initialize_adapter(ha);
  3553. qla4_8xxx_idc_lock(ha);
  3554. if (rval != QLA_SUCCESS) {
  3555. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: HW State: "
  3556. "FAILED\n", ha->host_no, __func__);
  3557. qla4_8xxx_clear_drv_active(ha);
  3558. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DEV_STATE,
  3559. QLA82XX_DEV_FAILED);
  3560. } else {
  3561. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: HW State: "
  3562. "READY\n", ha->host_no, __func__);
  3563. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DEV_STATE,
  3564. QLA82XX_DEV_READY);
  3565. /* Clear driver state register */
  3566. qla4_8xxx_wr_32(ha, QLA82XX_CRB_DRV_STATE, 0);
  3567. qla4_8xxx_set_drv_active(ha);
  3568. ret = qla4xxx_request_irqs(ha);
  3569. if (ret) {
  3570. ql4_printk(KERN_WARNING, ha, "Failed to "
  3571. "reserve interrupt %d already in use.\n",
  3572. ha->pdev->irq);
  3573. rval = QLA_ERROR;
  3574. } else {
  3575. ha->isp_ops->enable_intrs(ha);
  3576. rval = QLA_SUCCESS;
  3577. }
  3578. }
  3579. qla4_8xxx_idc_unlock(ha);
  3580. } else {
  3581. ql4_printk(KERN_INFO, ha, "scsi%ld: %s: devfn 0x%x is not "
  3582. "the reset owner\n", ha->host_no, __func__,
  3583. ha->pdev->devfn);
  3584. if ((qla4_8xxx_rd_32(ha, QLA82XX_CRB_DEV_STATE) ==
  3585. QLA82XX_DEV_READY)) {
  3586. clear_bit(AF_FW_RECOVERY, &ha->flags);
  3587. rval = qla4xxx_initialize_adapter(ha);
  3588. if (rval == QLA_SUCCESS) {
  3589. ret = qla4xxx_request_irqs(ha);
  3590. if (ret) {
  3591. ql4_printk(KERN_WARNING, ha, "Failed to"
  3592. " reserve interrupt %d already in"
  3593. " use.\n", ha->pdev->irq);
  3594. rval = QLA_ERROR;
  3595. } else {
  3596. ha->isp_ops->enable_intrs(ha);
  3597. rval = QLA_SUCCESS;
  3598. }
  3599. }
  3600. qla4_8xxx_idc_lock(ha);
  3601. qla4_8xxx_set_drv_active(ha);
  3602. qla4_8xxx_idc_unlock(ha);
  3603. }
  3604. }
  3605. clear_bit(DPC_RESET_ACTIVE, &ha->dpc_flags);
  3606. return rval;
  3607. }
  3608. static pci_ers_result_t
  3609. qla4xxx_pci_slot_reset(struct pci_dev *pdev)
  3610. {
  3611. pci_ers_result_t ret = PCI_ERS_RESULT_DISCONNECT;
  3612. struct scsi_qla_host *ha = pci_get_drvdata(pdev);
  3613. int rc;
  3614. ql4_printk(KERN_WARNING, ha, "scsi%ld: %s: slot_reset\n",
  3615. ha->host_no, __func__);
  3616. if (!is_aer_supported(ha))
  3617. return PCI_ERS_RESULT_NONE;
  3618. /* Restore the saved state of PCIe device -
  3619. * BAR registers, PCI Config space, PCIX, MSI,
  3620. * IOV states
  3621. */
  3622. pci_restore_state(pdev);
  3623. /* pci_restore_state() clears the saved_state flag of the device
  3624. * save restored state which resets saved_state flag
  3625. */
  3626. pci_save_state(pdev);
  3627. /* Initialize device or resume if in suspended state */
  3628. rc = pci_enable_device(pdev);
  3629. if (rc) {
  3630. ql4_printk(KERN_WARNING, ha, "scsi%ld: %s: Can't re-enable "
  3631. "device after reset\n", ha->host_no, __func__);
  3632. goto exit_slot_reset;
  3633. }
  3634. ha->isp_ops->disable_intrs(ha);
  3635. if (is_qla8022(ha)) {
  3636. if (qla4_8xxx_error_recovery(ha) == QLA_SUCCESS) {
  3637. ret = PCI_ERS_RESULT_RECOVERED;
  3638. goto exit_slot_reset;
  3639. } else
  3640. goto exit_slot_reset;
  3641. }
  3642. exit_slot_reset:
  3643. ql4_printk(KERN_WARNING, ha, "scsi%ld: %s: Return=%x\n"
  3644. "device after reset\n", ha->host_no, __func__, ret);
  3645. return ret;
  3646. }
  3647. static void
  3648. qla4xxx_pci_resume(struct pci_dev *pdev)
  3649. {
  3650. struct scsi_qla_host *ha = pci_get_drvdata(pdev);
  3651. int ret;
  3652. ql4_printk(KERN_WARNING, ha, "scsi%ld: %s: pci_resume\n",
  3653. ha->host_no, __func__);
  3654. ret = qla4xxx_wait_for_hba_online(ha);
  3655. if (ret != QLA_SUCCESS) {
  3656. ql4_printk(KERN_ERR, ha, "scsi%ld: %s: the device failed to "
  3657. "resume I/O from slot/link_reset\n", ha->host_no,
  3658. __func__);
  3659. }
  3660. pci_cleanup_aer_uncorrect_error_status(pdev);
  3661. clear_bit(AF_EEH_BUSY, &ha->flags);
  3662. }
  3663. static struct pci_error_handlers qla4xxx_err_handler = {
  3664. .error_detected = qla4xxx_pci_error_detected,
  3665. .mmio_enabled = qla4xxx_pci_mmio_enabled,
  3666. .slot_reset = qla4xxx_pci_slot_reset,
  3667. .resume = qla4xxx_pci_resume,
  3668. };
  3669. static struct pci_device_id qla4xxx_pci_tbl[] = {
  3670. {
  3671. .vendor = PCI_VENDOR_ID_QLOGIC,
  3672. .device = PCI_DEVICE_ID_QLOGIC_ISP4010,
  3673. .subvendor = PCI_ANY_ID,
  3674. .subdevice = PCI_ANY_ID,
  3675. },
  3676. {
  3677. .vendor = PCI_VENDOR_ID_QLOGIC,
  3678. .device = PCI_DEVICE_ID_QLOGIC_ISP4022,
  3679. .subvendor = PCI_ANY_ID,
  3680. .subdevice = PCI_ANY_ID,
  3681. },
  3682. {
  3683. .vendor = PCI_VENDOR_ID_QLOGIC,
  3684. .device = PCI_DEVICE_ID_QLOGIC_ISP4032,
  3685. .subvendor = PCI_ANY_ID,
  3686. .subdevice = PCI_ANY_ID,
  3687. },
  3688. {
  3689. .vendor = PCI_VENDOR_ID_QLOGIC,
  3690. .device = PCI_DEVICE_ID_QLOGIC_ISP8022,
  3691. .subvendor = PCI_ANY_ID,
  3692. .subdevice = PCI_ANY_ID,
  3693. },
  3694. {0, 0},
  3695. };
  3696. MODULE_DEVICE_TABLE(pci, qla4xxx_pci_tbl);
  3697. static struct pci_driver qla4xxx_pci_driver = {
  3698. .name = DRIVER_NAME,
  3699. .id_table = qla4xxx_pci_tbl,
  3700. .probe = qla4xxx_probe_adapter,
  3701. .remove = qla4xxx_remove_adapter,
  3702. .err_handler = &qla4xxx_err_handler,
  3703. };
  3704. static int __init qla4xxx_module_init(void)
  3705. {
  3706. int ret;
  3707. /* Allocate cache for SRBs. */
  3708. srb_cachep = kmem_cache_create("qla4xxx_srbs", sizeof(struct srb), 0,
  3709. SLAB_HWCACHE_ALIGN, NULL);
  3710. if (srb_cachep == NULL) {
  3711. printk(KERN_ERR
  3712. "%s: Unable to allocate SRB cache..."
  3713. "Failing load!\n", DRIVER_NAME);
  3714. ret = -ENOMEM;
  3715. goto no_srp_cache;
  3716. }
  3717. /* Derive version string. */
  3718. strcpy(qla4xxx_version_str, QLA4XXX_DRIVER_VERSION);
  3719. if (ql4xextended_error_logging)
  3720. strcat(qla4xxx_version_str, "-debug");
  3721. qla4xxx_scsi_transport =
  3722. iscsi_register_transport(&qla4xxx_iscsi_transport);
  3723. if (!qla4xxx_scsi_transport){
  3724. ret = -ENODEV;
  3725. goto release_srb_cache;
  3726. }
  3727. ret = pci_register_driver(&qla4xxx_pci_driver);
  3728. if (ret)
  3729. goto unregister_transport;
  3730. printk(KERN_INFO "QLogic iSCSI HBA Driver\n");
  3731. return 0;
  3732. unregister_transport:
  3733. iscsi_unregister_transport(&qla4xxx_iscsi_transport);
  3734. release_srb_cache:
  3735. kmem_cache_destroy(srb_cachep);
  3736. no_srp_cache:
  3737. return ret;
  3738. }
  3739. static void __exit qla4xxx_module_exit(void)
  3740. {
  3741. pci_unregister_driver(&qla4xxx_pci_driver);
  3742. iscsi_unregister_transport(&qla4xxx_iscsi_transport);
  3743. kmem_cache_destroy(srb_cachep);
  3744. }
  3745. module_init(qla4xxx_module_init);
  3746. module_exit(qla4xxx_module_exit);
  3747. MODULE_AUTHOR("QLogic Corporation");
  3748. MODULE_DESCRIPTION("QLogic iSCSI HBA Driver");
  3749. MODULE_LICENSE("GPL");
  3750. MODULE_VERSION(QLA4XXX_DRIVER_VERSION);