sbp_target.c 60 KB

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  1. /*
  2. * SBP2 target driver (SCSI over IEEE1394 in target mode)
  3. *
  4. * Copyright (C) 2011 Chris Boot <bootc@bootc.net>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software Foundation,
  18. * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  19. */
  20. #define KMSG_COMPONENT "sbp_target"
  21. #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
  22. #include <linux/kernel.h>
  23. #include <linux/module.h>
  24. #include <linux/init.h>
  25. #include <linux/types.h>
  26. #include <linux/string.h>
  27. #include <linux/configfs.h>
  28. #include <linux/ctype.h>
  29. #include <linux/delay.h>
  30. #include <linux/firewire.h>
  31. #include <linux/firewire-constants.h>
  32. #include <scsi/scsi_proto.h>
  33. #include <scsi/scsi_tcq.h>
  34. #include <target/target_core_base.h>
  35. #include <target/target_core_backend.h>
  36. #include <target/target_core_fabric.h>
  37. #include <asm/unaligned.h>
  38. #include "sbp_target.h"
  39. /* FireWire address region for management and command block address handlers */
  40. static const struct fw_address_region sbp_register_region = {
  41. .start = CSR_REGISTER_BASE + 0x10000,
  42. .end = 0x1000000000000ULL,
  43. };
  44. static const u32 sbp_unit_directory_template[] = {
  45. 0x1200609e, /* unit_specifier_id: NCITS/T10 */
  46. 0x13010483, /* unit_sw_version: 1155D Rev 4 */
  47. 0x3800609e, /* command_set_specifier_id: NCITS/T10 */
  48. 0x390104d8, /* command_set: SPC-2 */
  49. 0x3b000000, /* command_set_revision: 0 */
  50. 0x3c000001, /* firmware_revision: 1 */
  51. };
  52. #define SESSION_MAINTENANCE_INTERVAL HZ
  53. static atomic_t login_id = ATOMIC_INIT(0);
  54. static void session_maintenance_work(struct work_struct *);
  55. static int sbp_run_transaction(struct fw_card *, int, int, int, int,
  56. unsigned long long, void *, size_t);
  57. static int read_peer_guid(u64 *guid, const struct sbp_management_request *req)
  58. {
  59. int ret;
  60. __be32 high, low;
  61. ret = sbp_run_transaction(req->card, TCODE_READ_QUADLET_REQUEST,
  62. req->node_addr, req->generation, req->speed,
  63. (CSR_REGISTER_BASE | CSR_CONFIG_ROM) + 3 * 4,
  64. &high, sizeof(high));
  65. if (ret != RCODE_COMPLETE)
  66. return ret;
  67. ret = sbp_run_transaction(req->card, TCODE_READ_QUADLET_REQUEST,
  68. req->node_addr, req->generation, req->speed,
  69. (CSR_REGISTER_BASE | CSR_CONFIG_ROM) + 4 * 4,
  70. &low, sizeof(low));
  71. if (ret != RCODE_COMPLETE)
  72. return ret;
  73. *guid = (u64)be32_to_cpu(high) << 32 | be32_to_cpu(low);
  74. return RCODE_COMPLETE;
  75. }
  76. static struct sbp_session *sbp_session_find_by_guid(
  77. struct sbp_tpg *tpg, u64 guid)
  78. {
  79. struct se_session *se_sess;
  80. struct sbp_session *sess, *found = NULL;
  81. spin_lock_bh(&tpg->se_tpg.session_lock);
  82. list_for_each_entry(se_sess, &tpg->se_tpg.tpg_sess_list, sess_list) {
  83. sess = se_sess->fabric_sess_ptr;
  84. if (sess->guid == guid)
  85. found = sess;
  86. }
  87. spin_unlock_bh(&tpg->se_tpg.session_lock);
  88. return found;
  89. }
  90. static struct sbp_login_descriptor *sbp_login_find_by_lun(
  91. struct sbp_session *session, u32 unpacked_lun)
  92. {
  93. struct sbp_login_descriptor *login, *found = NULL;
  94. spin_lock_bh(&session->lock);
  95. list_for_each_entry(login, &session->login_list, link) {
  96. if (login->login_lun == unpacked_lun)
  97. found = login;
  98. }
  99. spin_unlock_bh(&session->lock);
  100. return found;
  101. }
  102. static int sbp_login_count_all_by_lun(
  103. struct sbp_tpg *tpg,
  104. u32 unpacked_lun,
  105. int exclusive)
  106. {
  107. struct se_session *se_sess;
  108. struct sbp_session *sess;
  109. struct sbp_login_descriptor *login;
  110. int count = 0;
  111. spin_lock_bh(&tpg->se_tpg.session_lock);
  112. list_for_each_entry(se_sess, &tpg->se_tpg.tpg_sess_list, sess_list) {
  113. sess = se_sess->fabric_sess_ptr;
  114. spin_lock_bh(&sess->lock);
  115. list_for_each_entry(login, &sess->login_list, link) {
  116. if (login->login_lun != unpacked_lun)
  117. continue;
  118. if (!exclusive || login->exclusive)
  119. count++;
  120. }
  121. spin_unlock_bh(&sess->lock);
  122. }
  123. spin_unlock_bh(&tpg->se_tpg.session_lock);
  124. return count;
  125. }
  126. static struct sbp_login_descriptor *sbp_login_find_by_id(
  127. struct sbp_tpg *tpg, int login_id)
  128. {
  129. struct se_session *se_sess;
  130. struct sbp_session *sess;
  131. struct sbp_login_descriptor *login, *found = NULL;
  132. spin_lock_bh(&tpg->se_tpg.session_lock);
  133. list_for_each_entry(se_sess, &tpg->se_tpg.tpg_sess_list, sess_list) {
  134. sess = se_sess->fabric_sess_ptr;
  135. spin_lock_bh(&sess->lock);
  136. list_for_each_entry(login, &sess->login_list, link) {
  137. if (login->login_id == login_id)
  138. found = login;
  139. }
  140. spin_unlock_bh(&sess->lock);
  141. }
  142. spin_unlock_bh(&tpg->se_tpg.session_lock);
  143. return found;
  144. }
  145. static u32 sbp_get_lun_from_tpg(struct sbp_tpg *tpg, u32 login_lun, int *err)
  146. {
  147. struct se_portal_group *se_tpg = &tpg->se_tpg;
  148. struct se_lun *se_lun;
  149. rcu_read_lock();
  150. hlist_for_each_entry_rcu(se_lun, &se_tpg->tpg_lun_hlist, link) {
  151. if (se_lun->unpacked_lun == login_lun) {
  152. rcu_read_unlock();
  153. *err = 0;
  154. return login_lun;
  155. }
  156. }
  157. rcu_read_unlock();
  158. *err = -ENODEV;
  159. return login_lun;
  160. }
  161. static struct sbp_session *sbp_session_create(
  162. struct sbp_tpg *tpg,
  163. u64 guid)
  164. {
  165. struct sbp_session *sess;
  166. int ret;
  167. char guid_str[17];
  168. snprintf(guid_str, sizeof(guid_str), "%016llx", guid);
  169. sess = kmalloc(sizeof(*sess), GFP_KERNEL);
  170. if (!sess)
  171. return ERR_PTR(-ENOMEM);
  172. spin_lock_init(&sess->lock);
  173. INIT_LIST_HEAD(&sess->login_list);
  174. INIT_DELAYED_WORK(&sess->maint_work, session_maintenance_work);
  175. sess->guid = guid;
  176. sess->se_sess = target_setup_session(&tpg->se_tpg, 128,
  177. sizeof(struct sbp_target_request),
  178. TARGET_PROT_NORMAL, guid_str,
  179. sess, NULL);
  180. if (IS_ERR(sess->se_sess)) {
  181. pr_err("failed to init se_session\n");
  182. ret = PTR_ERR(sess->se_sess);
  183. kfree(sess);
  184. return ERR_PTR(ret);
  185. }
  186. return sess;
  187. }
  188. static void sbp_session_release(struct sbp_session *sess, bool cancel_work)
  189. {
  190. spin_lock_bh(&sess->lock);
  191. if (!list_empty(&sess->login_list)) {
  192. spin_unlock_bh(&sess->lock);
  193. return;
  194. }
  195. spin_unlock_bh(&sess->lock);
  196. if (cancel_work)
  197. cancel_delayed_work_sync(&sess->maint_work);
  198. target_remove_session(sess->se_sess);
  199. if (sess->card)
  200. fw_card_put(sess->card);
  201. kfree(sess);
  202. }
  203. static void sbp_target_agent_unregister(struct sbp_target_agent *);
  204. static void sbp_login_release(struct sbp_login_descriptor *login,
  205. bool cancel_work)
  206. {
  207. struct sbp_session *sess = login->sess;
  208. /* FIXME: abort/wait on tasks */
  209. sbp_target_agent_unregister(login->tgt_agt);
  210. if (sess) {
  211. spin_lock_bh(&sess->lock);
  212. list_del(&login->link);
  213. spin_unlock_bh(&sess->lock);
  214. sbp_session_release(sess, cancel_work);
  215. }
  216. kfree(login);
  217. }
  218. static struct sbp_target_agent *sbp_target_agent_register(
  219. struct sbp_login_descriptor *);
  220. static void sbp_management_request_login(
  221. struct sbp_management_agent *agent, struct sbp_management_request *req,
  222. int *status_data_size)
  223. {
  224. struct sbp_tport *tport = agent->tport;
  225. struct sbp_tpg *tpg = tport->tpg;
  226. struct sbp_session *sess;
  227. struct sbp_login_descriptor *login;
  228. struct sbp_login_response_block *response;
  229. u64 guid;
  230. u32 unpacked_lun;
  231. int login_response_len, ret;
  232. unpacked_lun = sbp_get_lun_from_tpg(tpg,
  233. LOGIN_ORB_LUN(be32_to_cpu(req->orb.misc)), &ret);
  234. if (ret) {
  235. pr_notice("login to unknown LUN: %d\n",
  236. LOGIN_ORB_LUN(be32_to_cpu(req->orb.misc)));
  237. req->status.status = cpu_to_be32(
  238. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  239. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_LUN_NOTSUPP));
  240. return;
  241. }
  242. ret = read_peer_guid(&guid, req);
  243. if (ret != RCODE_COMPLETE) {
  244. pr_warn("failed to read peer GUID: %d\n", ret);
  245. req->status.status = cpu_to_be32(
  246. STATUS_BLOCK_RESP(STATUS_RESP_TRANSPORT_FAILURE) |
  247. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_UNSPECIFIED_ERROR));
  248. return;
  249. }
  250. pr_notice("mgt_agent LOGIN to LUN %d from %016llx\n",
  251. unpacked_lun, guid);
  252. sess = sbp_session_find_by_guid(tpg, guid);
  253. if (sess) {
  254. login = sbp_login_find_by_lun(sess, unpacked_lun);
  255. if (login) {
  256. pr_notice("initiator already logged-in\n");
  257. /*
  258. * SBP-2 R4 says we should return access denied, but
  259. * that can confuse initiators. Instead we need to
  260. * treat this like a reconnect, but send the login
  261. * response block like a fresh login.
  262. *
  263. * This is required particularly in the case of Apple
  264. * devices booting off the FireWire target, where
  265. * the firmware has an active login to the target. When
  266. * the OS takes control of the session it issues its own
  267. * LOGIN rather than a RECONNECT. To avoid the machine
  268. * waiting until the reconnect_hold expires, we can skip
  269. * the ACCESS_DENIED errors to speed things up.
  270. */
  271. goto already_logged_in;
  272. }
  273. }
  274. /*
  275. * check exclusive bit in login request
  276. * reject with access_denied if any logins present
  277. */
  278. if (LOGIN_ORB_EXCLUSIVE(be32_to_cpu(req->orb.misc)) &&
  279. sbp_login_count_all_by_lun(tpg, unpacked_lun, 0)) {
  280. pr_warn("refusing exclusive login with other active logins\n");
  281. req->status.status = cpu_to_be32(
  282. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  283. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_ACCESS_DENIED));
  284. return;
  285. }
  286. /*
  287. * check exclusive bit in any existing login descriptor
  288. * reject with access_denied if any exclusive logins present
  289. */
  290. if (sbp_login_count_all_by_lun(tpg, unpacked_lun, 1)) {
  291. pr_warn("refusing login while another exclusive login present\n");
  292. req->status.status = cpu_to_be32(
  293. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  294. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_ACCESS_DENIED));
  295. return;
  296. }
  297. /*
  298. * check we haven't exceeded the number of allowed logins
  299. * reject with resources_unavailable if we have
  300. */
  301. if (sbp_login_count_all_by_lun(tpg, unpacked_lun, 0) >=
  302. tport->max_logins_per_lun) {
  303. pr_warn("max number of logins reached\n");
  304. req->status.status = cpu_to_be32(
  305. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  306. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_RESOURCES_UNAVAIL));
  307. return;
  308. }
  309. if (!sess) {
  310. sess = sbp_session_create(tpg, guid);
  311. if (IS_ERR(sess)) {
  312. switch (PTR_ERR(sess)) {
  313. case -EPERM:
  314. ret = SBP_STATUS_ACCESS_DENIED;
  315. break;
  316. default:
  317. ret = SBP_STATUS_RESOURCES_UNAVAIL;
  318. break;
  319. }
  320. req->status.status = cpu_to_be32(
  321. STATUS_BLOCK_RESP(
  322. STATUS_RESP_REQUEST_COMPLETE) |
  323. STATUS_BLOCK_SBP_STATUS(ret));
  324. return;
  325. }
  326. sess->node_id = req->node_addr;
  327. sess->card = fw_card_get(req->card);
  328. sess->generation = req->generation;
  329. sess->speed = req->speed;
  330. schedule_delayed_work(&sess->maint_work,
  331. SESSION_MAINTENANCE_INTERVAL);
  332. }
  333. /* only take the latest reconnect_hold into account */
  334. sess->reconnect_hold = min(
  335. 1 << LOGIN_ORB_RECONNECT(be32_to_cpu(req->orb.misc)),
  336. tport->max_reconnect_timeout) - 1;
  337. login = kmalloc(sizeof(*login), GFP_KERNEL);
  338. if (!login) {
  339. pr_err("failed to allocate login descriptor\n");
  340. sbp_session_release(sess, true);
  341. req->status.status = cpu_to_be32(
  342. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  343. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_RESOURCES_UNAVAIL));
  344. return;
  345. }
  346. login->sess = sess;
  347. login->login_lun = unpacked_lun;
  348. login->status_fifo_addr = sbp2_pointer_to_addr(&req->orb.status_fifo);
  349. login->exclusive = LOGIN_ORB_EXCLUSIVE(be32_to_cpu(req->orb.misc));
  350. login->login_id = atomic_inc_return(&login_id);
  351. login->tgt_agt = sbp_target_agent_register(login);
  352. if (IS_ERR(login->tgt_agt)) {
  353. ret = PTR_ERR(login->tgt_agt);
  354. pr_err("failed to map command block handler: %d\n", ret);
  355. sbp_session_release(sess, true);
  356. kfree(login);
  357. req->status.status = cpu_to_be32(
  358. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  359. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_RESOURCES_UNAVAIL));
  360. return;
  361. }
  362. spin_lock_bh(&sess->lock);
  363. list_add_tail(&login->link, &sess->login_list);
  364. spin_unlock_bh(&sess->lock);
  365. already_logged_in:
  366. response = kzalloc(sizeof(*response), GFP_KERNEL);
  367. if (!response) {
  368. pr_err("failed to allocate login response block\n");
  369. sbp_login_release(login, true);
  370. req->status.status = cpu_to_be32(
  371. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  372. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_RESOURCES_UNAVAIL));
  373. return;
  374. }
  375. login_response_len = clamp_val(
  376. LOGIN_ORB_RESPONSE_LENGTH(be32_to_cpu(req->orb.length)),
  377. 12, sizeof(*response));
  378. response->misc = cpu_to_be32(
  379. ((login_response_len & 0xffff) << 16) |
  380. (login->login_id & 0xffff));
  381. response->reconnect_hold = cpu_to_be32(sess->reconnect_hold & 0xffff);
  382. addr_to_sbp2_pointer(login->tgt_agt->handler.offset,
  383. &response->command_block_agent);
  384. ret = sbp_run_transaction(sess->card, TCODE_WRITE_BLOCK_REQUEST,
  385. sess->node_id, sess->generation, sess->speed,
  386. sbp2_pointer_to_addr(&req->orb.ptr2), response,
  387. login_response_len);
  388. if (ret != RCODE_COMPLETE) {
  389. pr_debug("failed to write login response block: %x\n", ret);
  390. kfree(response);
  391. sbp_login_release(login, true);
  392. req->status.status = cpu_to_be32(
  393. STATUS_BLOCK_RESP(STATUS_RESP_TRANSPORT_FAILURE) |
  394. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_UNSPECIFIED_ERROR));
  395. return;
  396. }
  397. kfree(response);
  398. req->status.status = cpu_to_be32(
  399. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  400. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_OK));
  401. }
  402. static void sbp_management_request_query_logins(
  403. struct sbp_management_agent *agent, struct sbp_management_request *req,
  404. int *status_data_size)
  405. {
  406. pr_notice("QUERY LOGINS not implemented\n");
  407. /* FIXME: implement */
  408. req->status.status = cpu_to_be32(
  409. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  410. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  411. }
  412. static void sbp_management_request_reconnect(
  413. struct sbp_management_agent *agent, struct sbp_management_request *req,
  414. int *status_data_size)
  415. {
  416. struct sbp_tport *tport = agent->tport;
  417. struct sbp_tpg *tpg = tport->tpg;
  418. int ret;
  419. u64 guid;
  420. struct sbp_login_descriptor *login;
  421. ret = read_peer_guid(&guid, req);
  422. if (ret != RCODE_COMPLETE) {
  423. pr_warn("failed to read peer GUID: %d\n", ret);
  424. req->status.status = cpu_to_be32(
  425. STATUS_BLOCK_RESP(STATUS_RESP_TRANSPORT_FAILURE) |
  426. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_UNSPECIFIED_ERROR));
  427. return;
  428. }
  429. pr_notice("mgt_agent RECONNECT from %016llx\n", guid);
  430. login = sbp_login_find_by_id(tpg,
  431. RECONNECT_ORB_LOGIN_ID(be32_to_cpu(req->orb.misc)));
  432. if (!login) {
  433. pr_err("mgt_agent RECONNECT unknown login ID\n");
  434. req->status.status = cpu_to_be32(
  435. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  436. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_ACCESS_DENIED));
  437. return;
  438. }
  439. if (login->sess->guid != guid) {
  440. pr_err("mgt_agent RECONNECT login GUID doesn't match\n");
  441. req->status.status = cpu_to_be32(
  442. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  443. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_ACCESS_DENIED));
  444. return;
  445. }
  446. spin_lock_bh(&login->sess->lock);
  447. if (login->sess->card)
  448. fw_card_put(login->sess->card);
  449. /* update the node details */
  450. login->sess->generation = req->generation;
  451. login->sess->node_id = req->node_addr;
  452. login->sess->card = fw_card_get(req->card);
  453. login->sess->speed = req->speed;
  454. spin_unlock_bh(&login->sess->lock);
  455. req->status.status = cpu_to_be32(
  456. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  457. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_OK));
  458. }
  459. static void sbp_management_request_logout(
  460. struct sbp_management_agent *agent, struct sbp_management_request *req,
  461. int *status_data_size)
  462. {
  463. struct sbp_tport *tport = agent->tport;
  464. struct sbp_tpg *tpg = tport->tpg;
  465. int id;
  466. struct sbp_login_descriptor *login;
  467. id = LOGOUT_ORB_LOGIN_ID(be32_to_cpu(req->orb.misc));
  468. login = sbp_login_find_by_id(tpg, id);
  469. if (!login) {
  470. pr_warn("cannot find login: %d\n", id);
  471. req->status.status = cpu_to_be32(
  472. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  473. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_LOGIN_ID_UNKNOWN));
  474. return;
  475. }
  476. pr_info("mgt_agent LOGOUT from LUN %d session %d\n",
  477. login->login_lun, login->login_id);
  478. if (req->node_addr != login->sess->node_id) {
  479. pr_warn("logout from different node ID\n");
  480. req->status.status = cpu_to_be32(
  481. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  482. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_ACCESS_DENIED));
  483. return;
  484. }
  485. sbp_login_release(login, true);
  486. req->status.status = cpu_to_be32(
  487. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  488. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_OK));
  489. }
  490. static void session_check_for_reset(struct sbp_session *sess)
  491. {
  492. bool card_valid = false;
  493. spin_lock_bh(&sess->lock);
  494. if (sess->card) {
  495. spin_lock_irq(&sess->card->lock);
  496. card_valid = (sess->card->local_node != NULL);
  497. spin_unlock_irq(&sess->card->lock);
  498. if (!card_valid) {
  499. fw_card_put(sess->card);
  500. sess->card = NULL;
  501. }
  502. }
  503. if (!card_valid || (sess->generation != sess->card->generation)) {
  504. pr_info("Waiting for reconnect from node: %016llx\n",
  505. sess->guid);
  506. sess->node_id = -1;
  507. sess->reconnect_expires = get_jiffies_64() +
  508. ((sess->reconnect_hold + 1) * HZ);
  509. }
  510. spin_unlock_bh(&sess->lock);
  511. }
  512. static void session_reconnect_expired(struct sbp_session *sess)
  513. {
  514. struct sbp_login_descriptor *login, *temp;
  515. LIST_HEAD(login_list);
  516. pr_info("Reconnect timer expired for node: %016llx\n", sess->guid);
  517. spin_lock_bh(&sess->lock);
  518. list_for_each_entry_safe(login, temp, &sess->login_list, link) {
  519. login->sess = NULL;
  520. list_move_tail(&login->link, &login_list);
  521. }
  522. spin_unlock_bh(&sess->lock);
  523. list_for_each_entry_safe(login, temp, &login_list, link) {
  524. list_del(&login->link);
  525. sbp_login_release(login, false);
  526. }
  527. sbp_session_release(sess, false);
  528. }
  529. static void session_maintenance_work(struct work_struct *work)
  530. {
  531. struct sbp_session *sess = container_of(work, struct sbp_session,
  532. maint_work.work);
  533. /* could be called while tearing down the session */
  534. spin_lock_bh(&sess->lock);
  535. if (list_empty(&sess->login_list)) {
  536. spin_unlock_bh(&sess->lock);
  537. return;
  538. }
  539. spin_unlock_bh(&sess->lock);
  540. if (sess->node_id != -1) {
  541. /* check for bus reset and make node_id invalid */
  542. session_check_for_reset(sess);
  543. schedule_delayed_work(&sess->maint_work,
  544. SESSION_MAINTENANCE_INTERVAL);
  545. } else if (!time_after64(get_jiffies_64(), sess->reconnect_expires)) {
  546. /* still waiting for reconnect */
  547. schedule_delayed_work(&sess->maint_work,
  548. SESSION_MAINTENANCE_INTERVAL);
  549. } else {
  550. /* reconnect timeout has expired */
  551. session_reconnect_expired(sess);
  552. }
  553. }
  554. static int tgt_agent_rw_agent_state(struct fw_card *card, int tcode, void *data,
  555. struct sbp_target_agent *agent)
  556. {
  557. int state;
  558. switch (tcode) {
  559. case TCODE_READ_QUADLET_REQUEST:
  560. pr_debug("tgt_agent AGENT_STATE READ\n");
  561. spin_lock_bh(&agent->lock);
  562. state = agent->state;
  563. spin_unlock_bh(&agent->lock);
  564. *(__be32 *)data = cpu_to_be32(state);
  565. return RCODE_COMPLETE;
  566. case TCODE_WRITE_QUADLET_REQUEST:
  567. /* ignored */
  568. return RCODE_COMPLETE;
  569. default:
  570. return RCODE_TYPE_ERROR;
  571. }
  572. }
  573. static int tgt_agent_rw_agent_reset(struct fw_card *card, int tcode, void *data,
  574. struct sbp_target_agent *agent)
  575. {
  576. switch (tcode) {
  577. case TCODE_WRITE_QUADLET_REQUEST:
  578. pr_debug("tgt_agent AGENT_RESET\n");
  579. spin_lock_bh(&agent->lock);
  580. agent->state = AGENT_STATE_RESET;
  581. spin_unlock_bh(&agent->lock);
  582. return RCODE_COMPLETE;
  583. default:
  584. return RCODE_TYPE_ERROR;
  585. }
  586. }
  587. static int tgt_agent_rw_orb_pointer(struct fw_card *card, int tcode, void *data,
  588. struct sbp_target_agent *agent)
  589. {
  590. struct sbp2_pointer *ptr = data;
  591. switch (tcode) {
  592. case TCODE_WRITE_BLOCK_REQUEST:
  593. spin_lock_bh(&agent->lock);
  594. if (agent->state != AGENT_STATE_SUSPENDED &&
  595. agent->state != AGENT_STATE_RESET) {
  596. spin_unlock_bh(&agent->lock);
  597. pr_notice("Ignoring ORB_POINTER write while active.\n");
  598. return RCODE_CONFLICT_ERROR;
  599. }
  600. agent->state = AGENT_STATE_ACTIVE;
  601. spin_unlock_bh(&agent->lock);
  602. agent->orb_pointer = sbp2_pointer_to_addr(ptr);
  603. agent->doorbell = false;
  604. pr_debug("tgt_agent ORB_POINTER write: 0x%llx\n",
  605. agent->orb_pointer);
  606. queue_work(system_unbound_wq, &agent->work);
  607. return RCODE_COMPLETE;
  608. case TCODE_READ_BLOCK_REQUEST:
  609. pr_debug("tgt_agent ORB_POINTER READ\n");
  610. spin_lock_bh(&agent->lock);
  611. addr_to_sbp2_pointer(agent->orb_pointer, ptr);
  612. spin_unlock_bh(&agent->lock);
  613. return RCODE_COMPLETE;
  614. default:
  615. return RCODE_TYPE_ERROR;
  616. }
  617. }
  618. static int tgt_agent_rw_doorbell(struct fw_card *card, int tcode, void *data,
  619. struct sbp_target_agent *agent)
  620. {
  621. switch (tcode) {
  622. case TCODE_WRITE_QUADLET_REQUEST:
  623. spin_lock_bh(&agent->lock);
  624. if (agent->state != AGENT_STATE_SUSPENDED) {
  625. spin_unlock_bh(&agent->lock);
  626. pr_debug("Ignoring DOORBELL while active.\n");
  627. return RCODE_CONFLICT_ERROR;
  628. }
  629. agent->state = AGENT_STATE_ACTIVE;
  630. spin_unlock_bh(&agent->lock);
  631. agent->doorbell = true;
  632. pr_debug("tgt_agent DOORBELL\n");
  633. queue_work(system_unbound_wq, &agent->work);
  634. return RCODE_COMPLETE;
  635. case TCODE_READ_QUADLET_REQUEST:
  636. return RCODE_COMPLETE;
  637. default:
  638. return RCODE_TYPE_ERROR;
  639. }
  640. }
  641. static int tgt_agent_rw_unsolicited_status_enable(struct fw_card *card,
  642. int tcode, void *data, struct sbp_target_agent *agent)
  643. {
  644. switch (tcode) {
  645. case TCODE_WRITE_QUADLET_REQUEST:
  646. pr_debug("tgt_agent UNSOLICITED_STATUS_ENABLE\n");
  647. /* ignored as we don't send unsolicited status */
  648. return RCODE_COMPLETE;
  649. case TCODE_READ_QUADLET_REQUEST:
  650. return RCODE_COMPLETE;
  651. default:
  652. return RCODE_TYPE_ERROR;
  653. }
  654. }
  655. static void tgt_agent_rw(struct fw_card *card, struct fw_request *request,
  656. int tcode, int destination, int source, int generation,
  657. unsigned long long offset, void *data, size_t length,
  658. void *callback_data)
  659. {
  660. struct sbp_target_agent *agent = callback_data;
  661. struct sbp_session *sess = agent->login->sess;
  662. int sess_gen, sess_node, rcode;
  663. spin_lock_bh(&sess->lock);
  664. sess_gen = sess->generation;
  665. sess_node = sess->node_id;
  666. spin_unlock_bh(&sess->lock);
  667. if (generation != sess_gen) {
  668. pr_notice("ignoring request with wrong generation\n");
  669. rcode = RCODE_TYPE_ERROR;
  670. goto out;
  671. }
  672. if (source != sess_node) {
  673. pr_notice("ignoring request from foreign node (%x != %x)\n",
  674. source, sess_node);
  675. rcode = RCODE_TYPE_ERROR;
  676. goto out;
  677. }
  678. /* turn offset into the offset from the start of the block */
  679. offset -= agent->handler.offset;
  680. if (offset == 0x00 && length == 4) {
  681. /* AGENT_STATE */
  682. rcode = tgt_agent_rw_agent_state(card, tcode, data, agent);
  683. } else if (offset == 0x04 && length == 4) {
  684. /* AGENT_RESET */
  685. rcode = tgt_agent_rw_agent_reset(card, tcode, data, agent);
  686. } else if (offset == 0x08 && length == 8) {
  687. /* ORB_POINTER */
  688. rcode = tgt_agent_rw_orb_pointer(card, tcode, data, agent);
  689. } else if (offset == 0x10 && length == 4) {
  690. /* DOORBELL */
  691. rcode = tgt_agent_rw_doorbell(card, tcode, data, agent);
  692. } else if (offset == 0x14 && length == 4) {
  693. /* UNSOLICITED_STATUS_ENABLE */
  694. rcode = tgt_agent_rw_unsolicited_status_enable(card, tcode,
  695. data, agent);
  696. } else {
  697. rcode = RCODE_ADDRESS_ERROR;
  698. }
  699. out:
  700. fw_send_response(card, request, rcode);
  701. }
  702. static void sbp_handle_command(struct sbp_target_request *);
  703. static int sbp_send_status(struct sbp_target_request *);
  704. static void sbp_free_request(struct sbp_target_request *);
  705. static void tgt_agent_process_work(struct work_struct *work)
  706. {
  707. struct sbp_target_request *req =
  708. container_of(work, struct sbp_target_request, work);
  709. pr_debug("tgt_orb ptr:0x%llx next_ORB:0x%llx data_descriptor:0x%llx misc:0x%x\n",
  710. req->orb_pointer,
  711. sbp2_pointer_to_addr(&req->orb.next_orb),
  712. sbp2_pointer_to_addr(&req->orb.data_descriptor),
  713. be32_to_cpu(req->orb.misc));
  714. if (req->orb_pointer >> 32)
  715. pr_debug("ORB with high bits set\n");
  716. switch (ORB_REQUEST_FORMAT(be32_to_cpu(req->orb.misc))) {
  717. case 0:/* Format specified by this standard */
  718. sbp_handle_command(req);
  719. return;
  720. case 1: /* Reserved for future standardization */
  721. case 2: /* Vendor-dependent */
  722. req->status.status |= cpu_to_be32(
  723. STATUS_BLOCK_RESP(
  724. STATUS_RESP_REQUEST_COMPLETE) |
  725. STATUS_BLOCK_DEAD(0) |
  726. STATUS_BLOCK_LEN(1) |
  727. STATUS_BLOCK_SBP_STATUS(
  728. SBP_STATUS_REQ_TYPE_NOTSUPP));
  729. sbp_send_status(req);
  730. return;
  731. case 3: /* Dummy ORB */
  732. req->status.status |= cpu_to_be32(
  733. STATUS_BLOCK_RESP(
  734. STATUS_RESP_REQUEST_COMPLETE) |
  735. STATUS_BLOCK_DEAD(0) |
  736. STATUS_BLOCK_LEN(1) |
  737. STATUS_BLOCK_SBP_STATUS(
  738. SBP_STATUS_DUMMY_ORB_COMPLETE));
  739. sbp_send_status(req);
  740. return;
  741. default:
  742. BUG();
  743. }
  744. }
  745. /* used to double-check we haven't been issued an AGENT_RESET */
  746. static inline bool tgt_agent_check_active(struct sbp_target_agent *agent)
  747. {
  748. bool active;
  749. spin_lock_bh(&agent->lock);
  750. active = (agent->state == AGENT_STATE_ACTIVE);
  751. spin_unlock_bh(&agent->lock);
  752. return active;
  753. }
  754. static struct sbp_target_request *sbp_mgt_get_req(struct sbp_session *sess,
  755. struct fw_card *card, u64 next_orb)
  756. {
  757. struct se_session *se_sess = sess->se_sess;
  758. struct sbp_target_request *req;
  759. int tag, cpu;
  760. tag = sbitmap_queue_get(&se_sess->sess_tag_pool, &cpu);
  761. if (tag < 0)
  762. return ERR_PTR(-ENOMEM);
  763. req = &((struct sbp_target_request *)se_sess->sess_cmd_map)[tag];
  764. memset(req, 0, sizeof(*req));
  765. req->se_cmd.map_tag = tag;
  766. req->se_cmd.map_cpu = cpu;
  767. req->se_cmd.tag = next_orb;
  768. return req;
  769. }
  770. static void tgt_agent_fetch_work(struct work_struct *work)
  771. {
  772. struct sbp_target_agent *agent =
  773. container_of(work, struct sbp_target_agent, work);
  774. struct sbp_session *sess = agent->login->sess;
  775. struct sbp_target_request *req;
  776. int ret;
  777. bool doorbell = agent->doorbell;
  778. u64 next_orb = agent->orb_pointer;
  779. while (next_orb && tgt_agent_check_active(agent)) {
  780. req = sbp_mgt_get_req(sess, sess->card, next_orb);
  781. if (IS_ERR(req)) {
  782. spin_lock_bh(&agent->lock);
  783. agent->state = AGENT_STATE_DEAD;
  784. spin_unlock_bh(&agent->lock);
  785. return;
  786. }
  787. req->login = agent->login;
  788. req->orb_pointer = next_orb;
  789. req->status.status = cpu_to_be32(STATUS_BLOCK_ORB_OFFSET_HIGH(
  790. req->orb_pointer >> 32));
  791. req->status.orb_low = cpu_to_be32(
  792. req->orb_pointer & 0xfffffffc);
  793. /* read in the ORB */
  794. ret = sbp_run_transaction(sess->card, TCODE_READ_BLOCK_REQUEST,
  795. sess->node_id, sess->generation, sess->speed,
  796. req->orb_pointer, &req->orb, sizeof(req->orb));
  797. if (ret != RCODE_COMPLETE) {
  798. pr_debug("tgt_orb fetch failed: %x\n", ret);
  799. req->status.status |= cpu_to_be32(
  800. STATUS_BLOCK_SRC(
  801. STATUS_SRC_ORB_FINISHED) |
  802. STATUS_BLOCK_RESP(
  803. STATUS_RESP_TRANSPORT_FAILURE) |
  804. STATUS_BLOCK_DEAD(1) |
  805. STATUS_BLOCK_LEN(1) |
  806. STATUS_BLOCK_SBP_STATUS(
  807. SBP_STATUS_UNSPECIFIED_ERROR));
  808. spin_lock_bh(&agent->lock);
  809. agent->state = AGENT_STATE_DEAD;
  810. spin_unlock_bh(&agent->lock);
  811. sbp_send_status(req);
  812. return;
  813. }
  814. /* check the next_ORB field */
  815. if (be32_to_cpu(req->orb.next_orb.high) & 0x80000000) {
  816. next_orb = 0;
  817. req->status.status |= cpu_to_be32(STATUS_BLOCK_SRC(
  818. STATUS_SRC_ORB_FINISHED));
  819. } else {
  820. next_orb = sbp2_pointer_to_addr(&req->orb.next_orb);
  821. req->status.status |= cpu_to_be32(STATUS_BLOCK_SRC(
  822. STATUS_SRC_ORB_CONTINUING));
  823. }
  824. if (tgt_agent_check_active(agent) && !doorbell) {
  825. INIT_WORK(&req->work, tgt_agent_process_work);
  826. queue_work(system_unbound_wq, &req->work);
  827. } else {
  828. /* don't process this request, just check next_ORB */
  829. sbp_free_request(req);
  830. }
  831. spin_lock_bh(&agent->lock);
  832. doorbell = agent->doorbell = false;
  833. /* check if we should carry on processing */
  834. if (next_orb)
  835. agent->orb_pointer = next_orb;
  836. else
  837. agent->state = AGENT_STATE_SUSPENDED;
  838. spin_unlock_bh(&agent->lock);
  839. };
  840. }
  841. static struct sbp_target_agent *sbp_target_agent_register(
  842. struct sbp_login_descriptor *login)
  843. {
  844. struct sbp_target_agent *agent;
  845. int ret;
  846. agent = kmalloc(sizeof(*agent), GFP_KERNEL);
  847. if (!agent)
  848. return ERR_PTR(-ENOMEM);
  849. spin_lock_init(&agent->lock);
  850. agent->handler.length = 0x20;
  851. agent->handler.address_callback = tgt_agent_rw;
  852. agent->handler.callback_data = agent;
  853. agent->login = login;
  854. agent->state = AGENT_STATE_RESET;
  855. INIT_WORK(&agent->work, tgt_agent_fetch_work);
  856. agent->orb_pointer = 0;
  857. agent->doorbell = false;
  858. ret = fw_core_add_address_handler(&agent->handler,
  859. &sbp_register_region);
  860. if (ret < 0) {
  861. kfree(agent);
  862. return ERR_PTR(ret);
  863. }
  864. return agent;
  865. }
  866. static void sbp_target_agent_unregister(struct sbp_target_agent *agent)
  867. {
  868. fw_core_remove_address_handler(&agent->handler);
  869. cancel_work_sync(&agent->work);
  870. kfree(agent);
  871. }
  872. /*
  873. * Simple wrapper around fw_run_transaction that retries the transaction several
  874. * times in case of failure, with an exponential backoff.
  875. */
  876. static int sbp_run_transaction(struct fw_card *card, int tcode, int destination_id,
  877. int generation, int speed, unsigned long long offset,
  878. void *payload, size_t length)
  879. {
  880. int attempt, ret, delay;
  881. for (attempt = 1; attempt <= 5; attempt++) {
  882. ret = fw_run_transaction(card, tcode, destination_id,
  883. generation, speed, offset, payload, length);
  884. switch (ret) {
  885. case RCODE_COMPLETE:
  886. case RCODE_TYPE_ERROR:
  887. case RCODE_ADDRESS_ERROR:
  888. case RCODE_GENERATION:
  889. return ret;
  890. default:
  891. delay = 5 * attempt * attempt;
  892. usleep_range(delay, delay * 2);
  893. }
  894. }
  895. return ret;
  896. }
  897. /*
  898. * Wrapper around sbp_run_transaction that gets the card, destination,
  899. * generation and speed out of the request's session.
  900. */
  901. static int sbp_run_request_transaction(struct sbp_target_request *req,
  902. int tcode, unsigned long long offset, void *payload,
  903. size_t length)
  904. {
  905. struct sbp_login_descriptor *login = req->login;
  906. struct sbp_session *sess = login->sess;
  907. struct fw_card *card;
  908. int node_id, generation, speed, ret;
  909. spin_lock_bh(&sess->lock);
  910. card = fw_card_get(sess->card);
  911. node_id = sess->node_id;
  912. generation = sess->generation;
  913. speed = sess->speed;
  914. spin_unlock_bh(&sess->lock);
  915. ret = sbp_run_transaction(card, tcode, node_id, generation, speed,
  916. offset, payload, length);
  917. fw_card_put(card);
  918. return ret;
  919. }
  920. static int sbp_fetch_command(struct sbp_target_request *req)
  921. {
  922. int ret, cmd_len, copy_len;
  923. cmd_len = scsi_command_size(req->orb.command_block);
  924. req->cmd_buf = kmalloc(cmd_len, GFP_KERNEL);
  925. if (!req->cmd_buf)
  926. return -ENOMEM;
  927. memcpy(req->cmd_buf, req->orb.command_block,
  928. min_t(int, cmd_len, sizeof(req->orb.command_block)));
  929. if (cmd_len > sizeof(req->orb.command_block)) {
  930. pr_debug("sbp_fetch_command: filling in long command\n");
  931. copy_len = cmd_len - sizeof(req->orb.command_block);
  932. ret = sbp_run_request_transaction(req,
  933. TCODE_READ_BLOCK_REQUEST,
  934. req->orb_pointer + sizeof(req->orb),
  935. req->cmd_buf + sizeof(req->orb.command_block),
  936. copy_len);
  937. if (ret != RCODE_COMPLETE)
  938. return -EIO;
  939. }
  940. return 0;
  941. }
  942. static int sbp_fetch_page_table(struct sbp_target_request *req)
  943. {
  944. int pg_tbl_sz, ret;
  945. struct sbp_page_table_entry *pg_tbl;
  946. if (!CMDBLK_ORB_PG_TBL_PRESENT(be32_to_cpu(req->orb.misc)))
  947. return 0;
  948. pg_tbl_sz = CMDBLK_ORB_DATA_SIZE(be32_to_cpu(req->orb.misc)) *
  949. sizeof(struct sbp_page_table_entry);
  950. pg_tbl = kmalloc(pg_tbl_sz, GFP_KERNEL);
  951. if (!pg_tbl)
  952. return -ENOMEM;
  953. ret = sbp_run_request_transaction(req, TCODE_READ_BLOCK_REQUEST,
  954. sbp2_pointer_to_addr(&req->orb.data_descriptor),
  955. pg_tbl, pg_tbl_sz);
  956. if (ret != RCODE_COMPLETE) {
  957. kfree(pg_tbl);
  958. return -EIO;
  959. }
  960. req->pg_tbl = pg_tbl;
  961. return 0;
  962. }
  963. static void sbp_calc_data_length_direction(struct sbp_target_request *req,
  964. u32 *data_len, enum dma_data_direction *data_dir)
  965. {
  966. int data_size, direction, idx;
  967. data_size = CMDBLK_ORB_DATA_SIZE(be32_to_cpu(req->orb.misc));
  968. direction = CMDBLK_ORB_DIRECTION(be32_to_cpu(req->orb.misc));
  969. if (!data_size) {
  970. *data_len = 0;
  971. *data_dir = DMA_NONE;
  972. return;
  973. }
  974. *data_dir = direction ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
  975. if (req->pg_tbl) {
  976. *data_len = 0;
  977. for (idx = 0; idx < data_size; idx++) {
  978. *data_len += be16_to_cpu(
  979. req->pg_tbl[idx].segment_length);
  980. }
  981. } else {
  982. *data_len = data_size;
  983. }
  984. }
  985. static void sbp_handle_command(struct sbp_target_request *req)
  986. {
  987. struct sbp_login_descriptor *login = req->login;
  988. struct sbp_session *sess = login->sess;
  989. int ret, unpacked_lun;
  990. u32 data_length;
  991. enum dma_data_direction data_dir;
  992. ret = sbp_fetch_command(req);
  993. if (ret) {
  994. pr_debug("sbp_handle_command: fetch command failed: %d\n", ret);
  995. goto err;
  996. }
  997. ret = sbp_fetch_page_table(req);
  998. if (ret) {
  999. pr_debug("sbp_handle_command: fetch page table failed: %d\n",
  1000. ret);
  1001. goto err;
  1002. }
  1003. unpacked_lun = req->login->login_lun;
  1004. sbp_calc_data_length_direction(req, &data_length, &data_dir);
  1005. pr_debug("sbp_handle_command ORB:0x%llx unpacked_lun:%d data_len:%d data_dir:%d\n",
  1006. req->orb_pointer, unpacked_lun, data_length, data_dir);
  1007. /* only used for printk until we do TMRs */
  1008. req->se_cmd.tag = req->orb_pointer;
  1009. if (target_submit_cmd(&req->se_cmd, sess->se_sess, req->cmd_buf,
  1010. req->sense_buf, unpacked_lun, data_length,
  1011. TCM_SIMPLE_TAG, data_dir, TARGET_SCF_ACK_KREF))
  1012. goto err;
  1013. return;
  1014. err:
  1015. req->status.status |= cpu_to_be32(
  1016. STATUS_BLOCK_RESP(STATUS_RESP_TRANSPORT_FAILURE) |
  1017. STATUS_BLOCK_DEAD(0) |
  1018. STATUS_BLOCK_LEN(1) |
  1019. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_UNSPECIFIED_ERROR));
  1020. sbp_send_status(req);
  1021. }
  1022. /*
  1023. * DMA_TO_DEVICE = read from initiator (SCSI WRITE)
  1024. * DMA_FROM_DEVICE = write to initiator (SCSI READ)
  1025. */
  1026. static int sbp_rw_data(struct sbp_target_request *req)
  1027. {
  1028. struct sbp_session *sess = req->login->sess;
  1029. int tcode, sg_miter_flags, max_payload, pg_size, speed, node_id,
  1030. generation, num_pte, length, tfr_length,
  1031. rcode = RCODE_COMPLETE;
  1032. struct sbp_page_table_entry *pte;
  1033. unsigned long long offset;
  1034. struct fw_card *card;
  1035. struct sg_mapping_iter iter;
  1036. if (req->se_cmd.data_direction == DMA_FROM_DEVICE) {
  1037. tcode = TCODE_WRITE_BLOCK_REQUEST;
  1038. sg_miter_flags = SG_MITER_FROM_SG;
  1039. } else {
  1040. tcode = TCODE_READ_BLOCK_REQUEST;
  1041. sg_miter_flags = SG_MITER_TO_SG;
  1042. }
  1043. max_payload = 4 << CMDBLK_ORB_MAX_PAYLOAD(be32_to_cpu(req->orb.misc));
  1044. speed = CMDBLK_ORB_SPEED(be32_to_cpu(req->orb.misc));
  1045. pg_size = CMDBLK_ORB_PG_SIZE(be32_to_cpu(req->orb.misc));
  1046. if (pg_size) {
  1047. pr_err("sbp_run_transaction: page size ignored\n");
  1048. pg_size = 0x100 << pg_size;
  1049. }
  1050. spin_lock_bh(&sess->lock);
  1051. card = fw_card_get(sess->card);
  1052. node_id = sess->node_id;
  1053. generation = sess->generation;
  1054. spin_unlock_bh(&sess->lock);
  1055. if (req->pg_tbl) {
  1056. pte = req->pg_tbl;
  1057. num_pte = CMDBLK_ORB_DATA_SIZE(be32_to_cpu(req->orb.misc));
  1058. offset = 0;
  1059. length = 0;
  1060. } else {
  1061. pte = NULL;
  1062. num_pte = 0;
  1063. offset = sbp2_pointer_to_addr(&req->orb.data_descriptor);
  1064. length = req->se_cmd.data_length;
  1065. }
  1066. sg_miter_start(&iter, req->se_cmd.t_data_sg, req->se_cmd.t_data_nents,
  1067. sg_miter_flags);
  1068. while (length || num_pte) {
  1069. if (!length) {
  1070. offset = (u64)be16_to_cpu(pte->segment_base_hi) << 32 |
  1071. be32_to_cpu(pte->segment_base_lo);
  1072. length = be16_to_cpu(pte->segment_length);
  1073. pte++;
  1074. num_pte--;
  1075. }
  1076. sg_miter_next(&iter);
  1077. tfr_length = min3(length, max_payload, (int)iter.length);
  1078. /* FIXME: take page_size into account */
  1079. rcode = sbp_run_transaction(card, tcode, node_id,
  1080. generation, speed,
  1081. offset, iter.addr, tfr_length);
  1082. if (rcode != RCODE_COMPLETE)
  1083. break;
  1084. length -= tfr_length;
  1085. offset += tfr_length;
  1086. iter.consumed = tfr_length;
  1087. }
  1088. sg_miter_stop(&iter);
  1089. fw_card_put(card);
  1090. if (rcode == RCODE_COMPLETE) {
  1091. WARN_ON(length != 0);
  1092. return 0;
  1093. } else {
  1094. return -EIO;
  1095. }
  1096. }
  1097. static int sbp_send_status(struct sbp_target_request *req)
  1098. {
  1099. int rc, ret = 0, length;
  1100. struct sbp_login_descriptor *login = req->login;
  1101. length = (((be32_to_cpu(req->status.status) >> 24) & 0x07) + 1) * 4;
  1102. rc = sbp_run_request_transaction(req, TCODE_WRITE_BLOCK_REQUEST,
  1103. login->status_fifo_addr, &req->status, length);
  1104. if (rc != RCODE_COMPLETE) {
  1105. pr_debug("sbp_send_status: write failed: 0x%x\n", rc);
  1106. ret = -EIO;
  1107. goto put_ref;
  1108. }
  1109. pr_debug("sbp_send_status: status write complete for ORB: 0x%llx\n",
  1110. req->orb_pointer);
  1111. /*
  1112. * Drop the extra ACK_KREF reference taken by target_submit_cmd()
  1113. * ahead of sbp_check_stop_free() -> transport_generic_free_cmd()
  1114. * final se_cmd->cmd_kref put.
  1115. */
  1116. put_ref:
  1117. target_put_sess_cmd(&req->se_cmd);
  1118. return ret;
  1119. }
  1120. static void sbp_sense_mangle(struct sbp_target_request *req)
  1121. {
  1122. struct se_cmd *se_cmd = &req->se_cmd;
  1123. u8 *sense = req->sense_buf;
  1124. u8 *status = req->status.data;
  1125. WARN_ON(se_cmd->scsi_sense_length < 18);
  1126. switch (sense[0] & 0x7f) { /* sfmt */
  1127. case 0x70: /* current, fixed */
  1128. status[0] = 0 << 6;
  1129. break;
  1130. case 0x71: /* deferred, fixed */
  1131. status[0] = 1 << 6;
  1132. break;
  1133. case 0x72: /* current, descriptor */
  1134. case 0x73: /* deferred, descriptor */
  1135. default:
  1136. /*
  1137. * TODO: SBP-3 specifies what we should do with descriptor
  1138. * format sense data
  1139. */
  1140. pr_err("sbp_send_sense: unknown sense format: 0x%x\n",
  1141. sense[0]);
  1142. req->status.status |= cpu_to_be32(
  1143. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1144. STATUS_BLOCK_DEAD(0) |
  1145. STATUS_BLOCK_LEN(1) |
  1146. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQUEST_ABORTED));
  1147. return;
  1148. }
  1149. status[0] |= se_cmd->scsi_status & 0x3f;/* status */
  1150. status[1] =
  1151. (sense[0] & 0x80) | /* valid */
  1152. ((sense[2] & 0xe0) >> 1) | /* mark, eom, ili */
  1153. (sense[2] & 0x0f); /* sense_key */
  1154. status[2] = se_cmd->scsi_asc; /* sense_code */
  1155. status[3] = se_cmd->scsi_ascq; /* sense_qualifier */
  1156. /* information */
  1157. status[4] = sense[3];
  1158. status[5] = sense[4];
  1159. status[6] = sense[5];
  1160. status[7] = sense[6];
  1161. /* CDB-dependent */
  1162. status[8] = sense[8];
  1163. status[9] = sense[9];
  1164. status[10] = sense[10];
  1165. status[11] = sense[11];
  1166. /* fru */
  1167. status[12] = sense[14];
  1168. /* sense_key-dependent */
  1169. status[13] = sense[15];
  1170. status[14] = sense[16];
  1171. status[15] = sense[17];
  1172. req->status.status |= cpu_to_be32(
  1173. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1174. STATUS_BLOCK_DEAD(0) |
  1175. STATUS_BLOCK_LEN(5) |
  1176. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_OK));
  1177. }
  1178. static int sbp_send_sense(struct sbp_target_request *req)
  1179. {
  1180. struct se_cmd *se_cmd = &req->se_cmd;
  1181. if (se_cmd->scsi_sense_length) {
  1182. sbp_sense_mangle(req);
  1183. } else {
  1184. req->status.status |= cpu_to_be32(
  1185. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1186. STATUS_BLOCK_DEAD(0) |
  1187. STATUS_BLOCK_LEN(1) |
  1188. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_OK));
  1189. }
  1190. return sbp_send_status(req);
  1191. }
  1192. static void sbp_free_request(struct sbp_target_request *req)
  1193. {
  1194. struct se_cmd *se_cmd = &req->se_cmd;
  1195. struct se_session *se_sess = se_cmd->se_sess;
  1196. kfree(req->pg_tbl);
  1197. kfree(req->cmd_buf);
  1198. target_free_tag(se_sess, se_cmd);
  1199. }
  1200. static void sbp_mgt_agent_process(struct work_struct *work)
  1201. {
  1202. struct sbp_management_agent *agent =
  1203. container_of(work, struct sbp_management_agent, work);
  1204. struct sbp_management_request *req = agent->request;
  1205. int ret;
  1206. int status_data_len = 0;
  1207. /* fetch the ORB from the initiator */
  1208. ret = sbp_run_transaction(req->card, TCODE_READ_BLOCK_REQUEST,
  1209. req->node_addr, req->generation, req->speed,
  1210. agent->orb_offset, &req->orb, sizeof(req->orb));
  1211. if (ret != RCODE_COMPLETE) {
  1212. pr_debug("mgt_orb fetch failed: %x\n", ret);
  1213. goto out;
  1214. }
  1215. pr_debug("mgt_orb ptr1:0x%llx ptr2:0x%llx misc:0x%x len:0x%x status_fifo:0x%llx\n",
  1216. sbp2_pointer_to_addr(&req->orb.ptr1),
  1217. sbp2_pointer_to_addr(&req->orb.ptr2),
  1218. be32_to_cpu(req->orb.misc), be32_to_cpu(req->orb.length),
  1219. sbp2_pointer_to_addr(&req->orb.status_fifo));
  1220. if (!ORB_NOTIFY(be32_to_cpu(req->orb.misc)) ||
  1221. ORB_REQUEST_FORMAT(be32_to_cpu(req->orb.misc)) != 0) {
  1222. pr_err("mgt_orb bad request\n");
  1223. goto out;
  1224. }
  1225. switch (MANAGEMENT_ORB_FUNCTION(be32_to_cpu(req->orb.misc))) {
  1226. case MANAGEMENT_ORB_FUNCTION_LOGIN:
  1227. sbp_management_request_login(agent, req, &status_data_len);
  1228. break;
  1229. case MANAGEMENT_ORB_FUNCTION_QUERY_LOGINS:
  1230. sbp_management_request_query_logins(agent, req,
  1231. &status_data_len);
  1232. break;
  1233. case MANAGEMENT_ORB_FUNCTION_RECONNECT:
  1234. sbp_management_request_reconnect(agent, req, &status_data_len);
  1235. break;
  1236. case MANAGEMENT_ORB_FUNCTION_SET_PASSWORD:
  1237. pr_notice("SET PASSWORD not implemented\n");
  1238. req->status.status = cpu_to_be32(
  1239. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1240. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1241. break;
  1242. case MANAGEMENT_ORB_FUNCTION_LOGOUT:
  1243. sbp_management_request_logout(agent, req, &status_data_len);
  1244. break;
  1245. case MANAGEMENT_ORB_FUNCTION_ABORT_TASK:
  1246. pr_notice("ABORT TASK not implemented\n");
  1247. req->status.status = cpu_to_be32(
  1248. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1249. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1250. break;
  1251. case MANAGEMENT_ORB_FUNCTION_ABORT_TASK_SET:
  1252. pr_notice("ABORT TASK SET not implemented\n");
  1253. req->status.status = cpu_to_be32(
  1254. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1255. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1256. break;
  1257. case MANAGEMENT_ORB_FUNCTION_LOGICAL_UNIT_RESET:
  1258. pr_notice("LOGICAL UNIT RESET not implemented\n");
  1259. req->status.status = cpu_to_be32(
  1260. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1261. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1262. break;
  1263. case MANAGEMENT_ORB_FUNCTION_TARGET_RESET:
  1264. pr_notice("TARGET RESET not implemented\n");
  1265. req->status.status = cpu_to_be32(
  1266. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1267. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1268. break;
  1269. default:
  1270. pr_notice("unknown management function 0x%x\n",
  1271. MANAGEMENT_ORB_FUNCTION(be32_to_cpu(req->orb.misc)));
  1272. req->status.status = cpu_to_be32(
  1273. STATUS_BLOCK_RESP(STATUS_RESP_REQUEST_COMPLETE) |
  1274. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_REQ_TYPE_NOTSUPP));
  1275. break;
  1276. }
  1277. req->status.status |= cpu_to_be32(
  1278. STATUS_BLOCK_SRC(1) | /* Response to ORB, next_ORB absent */
  1279. STATUS_BLOCK_LEN(DIV_ROUND_UP(status_data_len, 4) + 1) |
  1280. STATUS_BLOCK_ORB_OFFSET_HIGH(agent->orb_offset >> 32));
  1281. req->status.orb_low = cpu_to_be32(agent->orb_offset);
  1282. /* write the status block back to the initiator */
  1283. ret = sbp_run_transaction(req->card, TCODE_WRITE_BLOCK_REQUEST,
  1284. req->node_addr, req->generation, req->speed,
  1285. sbp2_pointer_to_addr(&req->orb.status_fifo),
  1286. &req->status, 8 + status_data_len);
  1287. if (ret != RCODE_COMPLETE) {
  1288. pr_debug("mgt_orb status write failed: %x\n", ret);
  1289. goto out;
  1290. }
  1291. out:
  1292. fw_card_put(req->card);
  1293. kfree(req);
  1294. spin_lock_bh(&agent->lock);
  1295. agent->state = MANAGEMENT_AGENT_STATE_IDLE;
  1296. spin_unlock_bh(&agent->lock);
  1297. }
  1298. static void sbp_mgt_agent_rw(struct fw_card *card,
  1299. struct fw_request *request, int tcode, int destination, int source,
  1300. int generation, unsigned long long offset, void *data, size_t length,
  1301. void *callback_data)
  1302. {
  1303. struct sbp_management_agent *agent = callback_data;
  1304. struct sbp2_pointer *ptr = data;
  1305. int rcode = RCODE_ADDRESS_ERROR;
  1306. if (!agent->tport->enable)
  1307. goto out;
  1308. if ((offset != agent->handler.offset) || (length != 8))
  1309. goto out;
  1310. if (tcode == TCODE_WRITE_BLOCK_REQUEST) {
  1311. struct sbp_management_request *req;
  1312. int prev_state;
  1313. spin_lock_bh(&agent->lock);
  1314. prev_state = agent->state;
  1315. agent->state = MANAGEMENT_AGENT_STATE_BUSY;
  1316. spin_unlock_bh(&agent->lock);
  1317. if (prev_state == MANAGEMENT_AGENT_STATE_BUSY) {
  1318. pr_notice("ignoring management request while busy\n");
  1319. rcode = RCODE_CONFLICT_ERROR;
  1320. goto out;
  1321. }
  1322. req = kzalloc(sizeof(*req), GFP_ATOMIC);
  1323. if (!req) {
  1324. rcode = RCODE_CONFLICT_ERROR;
  1325. goto out;
  1326. }
  1327. req->card = fw_card_get(card);
  1328. req->generation = generation;
  1329. req->node_addr = source;
  1330. req->speed = fw_get_request_speed(request);
  1331. agent->orb_offset = sbp2_pointer_to_addr(ptr);
  1332. agent->request = req;
  1333. queue_work(system_unbound_wq, &agent->work);
  1334. rcode = RCODE_COMPLETE;
  1335. } else if (tcode == TCODE_READ_BLOCK_REQUEST) {
  1336. addr_to_sbp2_pointer(agent->orb_offset, ptr);
  1337. rcode = RCODE_COMPLETE;
  1338. } else {
  1339. rcode = RCODE_TYPE_ERROR;
  1340. }
  1341. out:
  1342. fw_send_response(card, request, rcode);
  1343. }
  1344. static struct sbp_management_agent *sbp_management_agent_register(
  1345. struct sbp_tport *tport)
  1346. {
  1347. int ret;
  1348. struct sbp_management_agent *agent;
  1349. agent = kmalloc(sizeof(*agent), GFP_KERNEL);
  1350. if (!agent)
  1351. return ERR_PTR(-ENOMEM);
  1352. spin_lock_init(&agent->lock);
  1353. agent->tport = tport;
  1354. agent->handler.length = 0x08;
  1355. agent->handler.address_callback = sbp_mgt_agent_rw;
  1356. agent->handler.callback_data = agent;
  1357. agent->state = MANAGEMENT_AGENT_STATE_IDLE;
  1358. INIT_WORK(&agent->work, sbp_mgt_agent_process);
  1359. agent->orb_offset = 0;
  1360. agent->request = NULL;
  1361. ret = fw_core_add_address_handler(&agent->handler,
  1362. &sbp_register_region);
  1363. if (ret < 0) {
  1364. kfree(agent);
  1365. return ERR_PTR(ret);
  1366. }
  1367. return agent;
  1368. }
  1369. static void sbp_management_agent_unregister(struct sbp_management_agent *agent)
  1370. {
  1371. fw_core_remove_address_handler(&agent->handler);
  1372. cancel_work_sync(&agent->work);
  1373. kfree(agent);
  1374. }
  1375. static int sbp_check_true(struct se_portal_group *se_tpg)
  1376. {
  1377. return 1;
  1378. }
  1379. static int sbp_check_false(struct se_portal_group *se_tpg)
  1380. {
  1381. return 0;
  1382. }
  1383. static char *sbp_get_fabric_name(void)
  1384. {
  1385. return "sbp";
  1386. }
  1387. static char *sbp_get_fabric_wwn(struct se_portal_group *se_tpg)
  1388. {
  1389. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1390. struct sbp_tport *tport = tpg->tport;
  1391. return &tport->tport_name[0];
  1392. }
  1393. static u16 sbp_get_tag(struct se_portal_group *se_tpg)
  1394. {
  1395. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1396. return tpg->tport_tpgt;
  1397. }
  1398. static u32 sbp_tpg_get_inst_index(struct se_portal_group *se_tpg)
  1399. {
  1400. return 1;
  1401. }
  1402. static void sbp_release_cmd(struct se_cmd *se_cmd)
  1403. {
  1404. struct sbp_target_request *req = container_of(se_cmd,
  1405. struct sbp_target_request, se_cmd);
  1406. sbp_free_request(req);
  1407. }
  1408. static u32 sbp_sess_get_index(struct se_session *se_sess)
  1409. {
  1410. return 0;
  1411. }
  1412. static int sbp_write_pending(struct se_cmd *se_cmd)
  1413. {
  1414. struct sbp_target_request *req = container_of(se_cmd,
  1415. struct sbp_target_request, se_cmd);
  1416. int ret;
  1417. ret = sbp_rw_data(req);
  1418. if (ret) {
  1419. req->status.status |= cpu_to_be32(
  1420. STATUS_BLOCK_RESP(
  1421. STATUS_RESP_TRANSPORT_FAILURE) |
  1422. STATUS_BLOCK_DEAD(0) |
  1423. STATUS_BLOCK_LEN(1) |
  1424. STATUS_BLOCK_SBP_STATUS(
  1425. SBP_STATUS_UNSPECIFIED_ERROR));
  1426. sbp_send_status(req);
  1427. return ret;
  1428. }
  1429. target_execute_cmd(se_cmd);
  1430. return 0;
  1431. }
  1432. static int sbp_write_pending_status(struct se_cmd *se_cmd)
  1433. {
  1434. return 0;
  1435. }
  1436. static void sbp_set_default_node_attrs(struct se_node_acl *nacl)
  1437. {
  1438. return;
  1439. }
  1440. static int sbp_get_cmd_state(struct se_cmd *se_cmd)
  1441. {
  1442. return 0;
  1443. }
  1444. static int sbp_queue_data_in(struct se_cmd *se_cmd)
  1445. {
  1446. struct sbp_target_request *req = container_of(se_cmd,
  1447. struct sbp_target_request, se_cmd);
  1448. int ret;
  1449. ret = sbp_rw_data(req);
  1450. if (ret) {
  1451. req->status.status |= cpu_to_be32(
  1452. STATUS_BLOCK_RESP(STATUS_RESP_TRANSPORT_FAILURE) |
  1453. STATUS_BLOCK_DEAD(0) |
  1454. STATUS_BLOCK_LEN(1) |
  1455. STATUS_BLOCK_SBP_STATUS(SBP_STATUS_UNSPECIFIED_ERROR));
  1456. sbp_send_status(req);
  1457. return ret;
  1458. }
  1459. return sbp_send_sense(req);
  1460. }
  1461. /*
  1462. * Called after command (no data transfer) or after the write (to device)
  1463. * operation is completed
  1464. */
  1465. static int sbp_queue_status(struct se_cmd *se_cmd)
  1466. {
  1467. struct sbp_target_request *req = container_of(se_cmd,
  1468. struct sbp_target_request, se_cmd);
  1469. return sbp_send_sense(req);
  1470. }
  1471. static void sbp_queue_tm_rsp(struct se_cmd *se_cmd)
  1472. {
  1473. }
  1474. static void sbp_aborted_task(struct se_cmd *se_cmd)
  1475. {
  1476. return;
  1477. }
  1478. static int sbp_check_stop_free(struct se_cmd *se_cmd)
  1479. {
  1480. struct sbp_target_request *req = container_of(se_cmd,
  1481. struct sbp_target_request, se_cmd);
  1482. return transport_generic_free_cmd(&req->se_cmd, 0);
  1483. }
  1484. static int sbp_count_se_tpg_luns(struct se_portal_group *tpg)
  1485. {
  1486. struct se_lun *lun;
  1487. int count = 0;
  1488. rcu_read_lock();
  1489. hlist_for_each_entry_rcu(lun, &tpg->tpg_lun_hlist, link)
  1490. count++;
  1491. rcu_read_unlock();
  1492. return count;
  1493. }
  1494. static int sbp_update_unit_directory(struct sbp_tport *tport)
  1495. {
  1496. struct se_lun *lun;
  1497. int num_luns, num_entries, idx = 0, mgt_agt_addr, ret;
  1498. u32 *data;
  1499. if (tport->unit_directory.data) {
  1500. fw_core_remove_descriptor(&tport->unit_directory);
  1501. kfree(tport->unit_directory.data);
  1502. tport->unit_directory.data = NULL;
  1503. }
  1504. if (!tport->enable || !tport->tpg)
  1505. return 0;
  1506. num_luns = sbp_count_se_tpg_luns(&tport->tpg->se_tpg);
  1507. /*
  1508. * Number of entries in the final unit directory:
  1509. * - all of those in the template
  1510. * - management_agent
  1511. * - unit_characteristics
  1512. * - reconnect_timeout
  1513. * - unit unique ID
  1514. * - one for each LUN
  1515. *
  1516. * MUST NOT include leaf or sub-directory entries
  1517. */
  1518. num_entries = ARRAY_SIZE(sbp_unit_directory_template) + 4 + num_luns;
  1519. if (tport->directory_id != -1)
  1520. num_entries++;
  1521. /* allocate num_entries + 4 for the header and unique ID leaf */
  1522. data = kcalloc((num_entries + 4), sizeof(u32), GFP_KERNEL);
  1523. if (!data)
  1524. return -ENOMEM;
  1525. /* directory_length */
  1526. data[idx++] = num_entries << 16;
  1527. /* directory_id */
  1528. if (tport->directory_id != -1)
  1529. data[idx++] = (CSR_DIRECTORY_ID << 24) | tport->directory_id;
  1530. /* unit directory template */
  1531. memcpy(&data[idx], sbp_unit_directory_template,
  1532. sizeof(sbp_unit_directory_template));
  1533. idx += ARRAY_SIZE(sbp_unit_directory_template);
  1534. /* management_agent */
  1535. mgt_agt_addr = (tport->mgt_agt->handler.offset - CSR_REGISTER_BASE) / 4;
  1536. data[idx++] = 0x54000000 | (mgt_agt_addr & 0x00ffffff);
  1537. /* unit_characteristics */
  1538. data[idx++] = 0x3a000000 |
  1539. (((tport->mgt_orb_timeout * 2) << 8) & 0xff00) |
  1540. SBP_ORB_FETCH_SIZE;
  1541. /* reconnect_timeout */
  1542. data[idx++] = 0x3d000000 | (tport->max_reconnect_timeout & 0xffff);
  1543. /* unit unique ID (leaf is just after LUNs) */
  1544. data[idx++] = 0x8d000000 | (num_luns + 1);
  1545. rcu_read_lock();
  1546. hlist_for_each_entry_rcu(lun, &tport->tpg->se_tpg.tpg_lun_hlist, link) {
  1547. struct se_device *dev;
  1548. int type;
  1549. /*
  1550. * rcu_dereference_raw protected by se_lun->lun_group symlink
  1551. * reference to se_device->dev_group.
  1552. */
  1553. dev = rcu_dereference_raw(lun->lun_se_dev);
  1554. type = dev->transport->get_device_type(dev);
  1555. /* logical_unit_number */
  1556. data[idx++] = 0x14000000 |
  1557. ((type << 16) & 0x1f0000) |
  1558. (lun->unpacked_lun & 0xffff);
  1559. }
  1560. rcu_read_unlock();
  1561. /* unit unique ID leaf */
  1562. data[idx++] = 2 << 16;
  1563. data[idx++] = tport->guid >> 32;
  1564. data[idx++] = tport->guid;
  1565. tport->unit_directory.length = idx;
  1566. tport->unit_directory.key = (CSR_DIRECTORY | CSR_UNIT) << 24;
  1567. tport->unit_directory.data = data;
  1568. ret = fw_core_add_descriptor(&tport->unit_directory);
  1569. if (ret < 0) {
  1570. kfree(tport->unit_directory.data);
  1571. tport->unit_directory.data = NULL;
  1572. }
  1573. return ret;
  1574. }
  1575. static ssize_t sbp_parse_wwn(const char *name, u64 *wwn)
  1576. {
  1577. const char *cp;
  1578. char c, nibble;
  1579. int pos = 0, err;
  1580. *wwn = 0;
  1581. for (cp = name; cp < &name[SBP_NAMELEN - 1]; cp++) {
  1582. c = *cp;
  1583. if (c == '\n' && cp[1] == '\0')
  1584. continue;
  1585. if (c == '\0') {
  1586. err = 2;
  1587. if (pos != 16)
  1588. goto fail;
  1589. return cp - name;
  1590. }
  1591. err = 3;
  1592. if (isdigit(c))
  1593. nibble = c - '0';
  1594. else if (isxdigit(c))
  1595. nibble = tolower(c) - 'a' + 10;
  1596. else
  1597. goto fail;
  1598. *wwn = (*wwn << 4) | nibble;
  1599. pos++;
  1600. }
  1601. err = 4;
  1602. fail:
  1603. printk(KERN_INFO "err %u len %zu pos %u\n",
  1604. err, cp - name, pos);
  1605. return -1;
  1606. }
  1607. static ssize_t sbp_format_wwn(char *buf, size_t len, u64 wwn)
  1608. {
  1609. return snprintf(buf, len, "%016llx", wwn);
  1610. }
  1611. static int sbp_init_nodeacl(struct se_node_acl *se_nacl, const char *name)
  1612. {
  1613. u64 guid = 0;
  1614. if (sbp_parse_wwn(name, &guid) < 0)
  1615. return -EINVAL;
  1616. return 0;
  1617. }
  1618. static int sbp_post_link_lun(
  1619. struct se_portal_group *se_tpg,
  1620. struct se_lun *se_lun)
  1621. {
  1622. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1623. return sbp_update_unit_directory(tpg->tport);
  1624. }
  1625. static void sbp_pre_unlink_lun(
  1626. struct se_portal_group *se_tpg,
  1627. struct se_lun *se_lun)
  1628. {
  1629. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1630. struct sbp_tport *tport = tpg->tport;
  1631. int ret;
  1632. if (sbp_count_se_tpg_luns(&tpg->se_tpg) == 0)
  1633. tport->enable = 0;
  1634. ret = sbp_update_unit_directory(tport);
  1635. if (ret < 0)
  1636. pr_err("unlink LUN: failed to update unit directory\n");
  1637. }
  1638. static struct se_portal_group *sbp_make_tpg(struct se_wwn *wwn,
  1639. const char *name)
  1640. {
  1641. struct sbp_tport *tport =
  1642. container_of(wwn, struct sbp_tport, tport_wwn);
  1643. struct sbp_tpg *tpg;
  1644. unsigned long tpgt;
  1645. int ret;
  1646. if (strstr(name, "tpgt_") != name)
  1647. return ERR_PTR(-EINVAL);
  1648. if (kstrtoul(name + 5, 10, &tpgt) || tpgt > UINT_MAX)
  1649. return ERR_PTR(-EINVAL);
  1650. if (tport->tpg) {
  1651. pr_err("Only one TPG per Unit is possible.\n");
  1652. return ERR_PTR(-EBUSY);
  1653. }
  1654. tpg = kzalloc(sizeof(*tpg), GFP_KERNEL);
  1655. if (!tpg)
  1656. return ERR_PTR(-ENOMEM);
  1657. tpg->tport = tport;
  1658. tpg->tport_tpgt = tpgt;
  1659. tport->tpg = tpg;
  1660. /* default attribute values */
  1661. tport->enable = 0;
  1662. tport->directory_id = -1;
  1663. tport->mgt_orb_timeout = 15;
  1664. tport->max_reconnect_timeout = 5;
  1665. tport->max_logins_per_lun = 1;
  1666. tport->mgt_agt = sbp_management_agent_register(tport);
  1667. if (IS_ERR(tport->mgt_agt)) {
  1668. ret = PTR_ERR(tport->mgt_agt);
  1669. goto out_free_tpg;
  1670. }
  1671. ret = core_tpg_register(wwn, &tpg->se_tpg, SCSI_PROTOCOL_SBP);
  1672. if (ret < 0)
  1673. goto out_unreg_mgt_agt;
  1674. return &tpg->se_tpg;
  1675. out_unreg_mgt_agt:
  1676. sbp_management_agent_unregister(tport->mgt_agt);
  1677. out_free_tpg:
  1678. tport->tpg = NULL;
  1679. kfree(tpg);
  1680. return ERR_PTR(ret);
  1681. }
  1682. static void sbp_drop_tpg(struct se_portal_group *se_tpg)
  1683. {
  1684. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1685. struct sbp_tport *tport = tpg->tport;
  1686. core_tpg_deregister(se_tpg);
  1687. sbp_management_agent_unregister(tport->mgt_agt);
  1688. tport->tpg = NULL;
  1689. kfree(tpg);
  1690. }
  1691. static struct se_wwn *sbp_make_tport(
  1692. struct target_fabric_configfs *tf,
  1693. struct config_group *group,
  1694. const char *name)
  1695. {
  1696. struct sbp_tport *tport;
  1697. u64 guid = 0;
  1698. if (sbp_parse_wwn(name, &guid) < 0)
  1699. return ERR_PTR(-EINVAL);
  1700. tport = kzalloc(sizeof(*tport), GFP_KERNEL);
  1701. if (!tport)
  1702. return ERR_PTR(-ENOMEM);
  1703. tport->guid = guid;
  1704. sbp_format_wwn(tport->tport_name, SBP_NAMELEN, guid);
  1705. return &tport->tport_wwn;
  1706. }
  1707. static void sbp_drop_tport(struct se_wwn *wwn)
  1708. {
  1709. struct sbp_tport *tport =
  1710. container_of(wwn, struct sbp_tport, tport_wwn);
  1711. kfree(tport);
  1712. }
  1713. static ssize_t sbp_wwn_version_show(struct config_item *item, char *page)
  1714. {
  1715. return sprintf(page, "FireWire SBP fabric module %s\n", SBP_VERSION);
  1716. }
  1717. CONFIGFS_ATTR_RO(sbp_wwn_, version);
  1718. static struct configfs_attribute *sbp_wwn_attrs[] = {
  1719. &sbp_wwn_attr_version,
  1720. NULL,
  1721. };
  1722. static ssize_t sbp_tpg_directory_id_show(struct config_item *item, char *page)
  1723. {
  1724. struct se_portal_group *se_tpg = to_tpg(item);
  1725. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1726. struct sbp_tport *tport = tpg->tport;
  1727. if (tport->directory_id == -1)
  1728. return sprintf(page, "implicit\n");
  1729. else
  1730. return sprintf(page, "%06x\n", tport->directory_id);
  1731. }
  1732. static ssize_t sbp_tpg_directory_id_store(struct config_item *item,
  1733. const char *page, size_t count)
  1734. {
  1735. struct se_portal_group *se_tpg = to_tpg(item);
  1736. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1737. struct sbp_tport *tport = tpg->tport;
  1738. unsigned long val;
  1739. if (tport->enable) {
  1740. pr_err("Cannot change the directory_id on an active target.\n");
  1741. return -EBUSY;
  1742. }
  1743. if (strstr(page, "implicit") == page) {
  1744. tport->directory_id = -1;
  1745. } else {
  1746. if (kstrtoul(page, 16, &val) < 0)
  1747. return -EINVAL;
  1748. if (val > 0xffffff)
  1749. return -EINVAL;
  1750. tport->directory_id = val;
  1751. }
  1752. return count;
  1753. }
  1754. static ssize_t sbp_tpg_enable_show(struct config_item *item, char *page)
  1755. {
  1756. struct se_portal_group *se_tpg = to_tpg(item);
  1757. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1758. struct sbp_tport *tport = tpg->tport;
  1759. return sprintf(page, "%d\n", tport->enable);
  1760. }
  1761. static ssize_t sbp_tpg_enable_store(struct config_item *item,
  1762. const char *page, size_t count)
  1763. {
  1764. struct se_portal_group *se_tpg = to_tpg(item);
  1765. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1766. struct sbp_tport *tport = tpg->tport;
  1767. unsigned long val;
  1768. int ret;
  1769. if (kstrtoul(page, 0, &val) < 0)
  1770. return -EINVAL;
  1771. if ((val != 0) && (val != 1))
  1772. return -EINVAL;
  1773. if (tport->enable == val)
  1774. return count;
  1775. if (val) {
  1776. if (sbp_count_se_tpg_luns(&tpg->se_tpg) == 0) {
  1777. pr_err("Cannot enable a target with no LUNs!\n");
  1778. return -EINVAL;
  1779. }
  1780. } else {
  1781. /* XXX: force-shutdown sessions instead? */
  1782. spin_lock_bh(&se_tpg->session_lock);
  1783. if (!list_empty(&se_tpg->tpg_sess_list)) {
  1784. spin_unlock_bh(&se_tpg->session_lock);
  1785. return -EBUSY;
  1786. }
  1787. spin_unlock_bh(&se_tpg->session_lock);
  1788. }
  1789. tport->enable = val;
  1790. ret = sbp_update_unit_directory(tport);
  1791. if (ret < 0) {
  1792. pr_err("Could not update Config ROM\n");
  1793. return ret;
  1794. }
  1795. return count;
  1796. }
  1797. CONFIGFS_ATTR(sbp_tpg_, directory_id);
  1798. CONFIGFS_ATTR(sbp_tpg_, enable);
  1799. static struct configfs_attribute *sbp_tpg_base_attrs[] = {
  1800. &sbp_tpg_attr_directory_id,
  1801. &sbp_tpg_attr_enable,
  1802. NULL,
  1803. };
  1804. static ssize_t sbp_tpg_attrib_mgt_orb_timeout_show(struct config_item *item,
  1805. char *page)
  1806. {
  1807. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1808. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1809. struct sbp_tport *tport = tpg->tport;
  1810. return sprintf(page, "%d\n", tport->mgt_orb_timeout);
  1811. }
  1812. static ssize_t sbp_tpg_attrib_mgt_orb_timeout_store(struct config_item *item,
  1813. const char *page, size_t count)
  1814. {
  1815. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1816. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1817. struct sbp_tport *tport = tpg->tport;
  1818. unsigned long val;
  1819. int ret;
  1820. if (kstrtoul(page, 0, &val) < 0)
  1821. return -EINVAL;
  1822. if ((val < 1) || (val > 127))
  1823. return -EINVAL;
  1824. if (tport->mgt_orb_timeout == val)
  1825. return count;
  1826. tport->mgt_orb_timeout = val;
  1827. ret = sbp_update_unit_directory(tport);
  1828. if (ret < 0)
  1829. return ret;
  1830. return count;
  1831. }
  1832. static ssize_t sbp_tpg_attrib_max_reconnect_timeout_show(struct config_item *item,
  1833. char *page)
  1834. {
  1835. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1836. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1837. struct sbp_tport *tport = tpg->tport;
  1838. return sprintf(page, "%d\n", tport->max_reconnect_timeout);
  1839. }
  1840. static ssize_t sbp_tpg_attrib_max_reconnect_timeout_store(struct config_item *item,
  1841. const char *page, size_t count)
  1842. {
  1843. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1844. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1845. struct sbp_tport *tport = tpg->tport;
  1846. unsigned long val;
  1847. int ret;
  1848. if (kstrtoul(page, 0, &val) < 0)
  1849. return -EINVAL;
  1850. if ((val < 1) || (val > 32767))
  1851. return -EINVAL;
  1852. if (tport->max_reconnect_timeout == val)
  1853. return count;
  1854. tport->max_reconnect_timeout = val;
  1855. ret = sbp_update_unit_directory(tport);
  1856. if (ret < 0)
  1857. return ret;
  1858. return count;
  1859. }
  1860. static ssize_t sbp_tpg_attrib_max_logins_per_lun_show(struct config_item *item,
  1861. char *page)
  1862. {
  1863. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1864. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1865. struct sbp_tport *tport = tpg->tport;
  1866. return sprintf(page, "%d\n", tport->max_logins_per_lun);
  1867. }
  1868. static ssize_t sbp_tpg_attrib_max_logins_per_lun_store(struct config_item *item,
  1869. const char *page, size_t count)
  1870. {
  1871. struct se_portal_group *se_tpg = attrib_to_tpg(item);
  1872. struct sbp_tpg *tpg = container_of(se_tpg, struct sbp_tpg, se_tpg);
  1873. struct sbp_tport *tport = tpg->tport;
  1874. unsigned long val;
  1875. if (kstrtoul(page, 0, &val) < 0)
  1876. return -EINVAL;
  1877. if ((val < 1) || (val > 127))
  1878. return -EINVAL;
  1879. /* XXX: also check against current count? */
  1880. tport->max_logins_per_lun = val;
  1881. return count;
  1882. }
  1883. CONFIGFS_ATTR(sbp_tpg_attrib_, mgt_orb_timeout);
  1884. CONFIGFS_ATTR(sbp_tpg_attrib_, max_reconnect_timeout);
  1885. CONFIGFS_ATTR(sbp_tpg_attrib_, max_logins_per_lun);
  1886. static struct configfs_attribute *sbp_tpg_attrib_attrs[] = {
  1887. &sbp_tpg_attrib_attr_mgt_orb_timeout,
  1888. &sbp_tpg_attrib_attr_max_reconnect_timeout,
  1889. &sbp_tpg_attrib_attr_max_logins_per_lun,
  1890. NULL,
  1891. };
  1892. static const struct target_core_fabric_ops sbp_ops = {
  1893. .module = THIS_MODULE,
  1894. .name = "sbp",
  1895. .get_fabric_name = sbp_get_fabric_name,
  1896. .tpg_get_wwn = sbp_get_fabric_wwn,
  1897. .tpg_get_tag = sbp_get_tag,
  1898. .tpg_check_demo_mode = sbp_check_true,
  1899. .tpg_check_demo_mode_cache = sbp_check_true,
  1900. .tpg_check_demo_mode_write_protect = sbp_check_false,
  1901. .tpg_check_prod_mode_write_protect = sbp_check_false,
  1902. .tpg_get_inst_index = sbp_tpg_get_inst_index,
  1903. .release_cmd = sbp_release_cmd,
  1904. .sess_get_index = sbp_sess_get_index,
  1905. .write_pending = sbp_write_pending,
  1906. .write_pending_status = sbp_write_pending_status,
  1907. .set_default_node_attributes = sbp_set_default_node_attrs,
  1908. .get_cmd_state = sbp_get_cmd_state,
  1909. .queue_data_in = sbp_queue_data_in,
  1910. .queue_status = sbp_queue_status,
  1911. .queue_tm_rsp = sbp_queue_tm_rsp,
  1912. .aborted_task = sbp_aborted_task,
  1913. .check_stop_free = sbp_check_stop_free,
  1914. .fabric_make_wwn = sbp_make_tport,
  1915. .fabric_drop_wwn = sbp_drop_tport,
  1916. .fabric_make_tpg = sbp_make_tpg,
  1917. .fabric_drop_tpg = sbp_drop_tpg,
  1918. .fabric_post_link = sbp_post_link_lun,
  1919. .fabric_pre_unlink = sbp_pre_unlink_lun,
  1920. .fabric_make_np = NULL,
  1921. .fabric_drop_np = NULL,
  1922. .fabric_init_nodeacl = sbp_init_nodeacl,
  1923. .tfc_wwn_attrs = sbp_wwn_attrs,
  1924. .tfc_tpg_base_attrs = sbp_tpg_base_attrs,
  1925. .tfc_tpg_attrib_attrs = sbp_tpg_attrib_attrs,
  1926. };
  1927. static int __init sbp_init(void)
  1928. {
  1929. return target_register_template(&sbp_ops);
  1930. };
  1931. static void __exit sbp_exit(void)
  1932. {
  1933. target_unregister_template(&sbp_ops);
  1934. };
  1935. MODULE_DESCRIPTION("FireWire SBP fabric driver");
  1936. MODULE_LICENSE("GPL");
  1937. module_init(sbp_init);
  1938. module_exit(sbp_exit);