sas_scsi_host.c 23 KB

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  1. /*
  2. * Serial Attached SCSI (SAS) class SCSI Host glue.
  3. *
  4. * Copyright (C) 2005 Adaptec, Inc. All rights reserved.
  5. * Copyright (C) 2005 Luben Tuikov <luben_tuikov@adaptec.com>
  6. *
  7. * This file is licensed under GPLv2.
  8. *
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License as
  11. * published by the Free Software Foundation; either version 2 of the
  12. * License, or (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful, but
  15. * WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  17. * General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
  22. * USA
  23. *
  24. */
  25. #include "sas_internal.h"
  26. #include <scsi/scsi_host.h>
  27. #include <scsi/scsi_device.h>
  28. #include <scsi/scsi_tcq.h>
  29. #include <scsi/scsi.h>
  30. #include <scsi/scsi_eh.h>
  31. #include <scsi/scsi_transport.h>
  32. #include <scsi/scsi_transport_sas.h>
  33. #include "../scsi_sas_internal.h"
  34. #include "../scsi_transport_api.h"
  35. #include <linux/err.h>
  36. #include <linux/blkdev.h>
  37. #include <linux/scatterlist.h>
  38. /* ---------- SCSI Host glue ---------- */
  39. #define TO_SAS_TASK(_scsi_cmd) ((void *)(_scsi_cmd)->host_scribble)
  40. #define ASSIGN_SAS_TASK(_sc, _t) do { (_sc)->host_scribble = (void *) _t; } while (0)
  41. static void sas_scsi_task_done(struct sas_task *task)
  42. {
  43. struct task_status_struct *ts = &task->task_status;
  44. struct scsi_cmnd *sc = task->uldd_task;
  45. struct sas_ha_struct *sas_ha = SHOST_TO_SAS_HA(sc->device->host);
  46. unsigned ts_flags = task->task_state_flags;
  47. int hs = 0, stat = 0;
  48. if (unlikely(!sc)) {
  49. SAS_DPRINTK("task_done called with non existing SCSI cmnd!\n");
  50. list_del_init(&task->list);
  51. sas_free_task(task);
  52. return;
  53. }
  54. if (ts->resp == SAS_TASK_UNDELIVERED) {
  55. /* transport error */
  56. hs = DID_NO_CONNECT;
  57. } else { /* ts->resp == SAS_TASK_COMPLETE */
  58. /* task delivered, what happened afterwards? */
  59. switch (ts->stat) {
  60. case SAS_DEV_NO_RESPONSE:
  61. case SAS_INTERRUPTED:
  62. case SAS_PHY_DOWN:
  63. case SAS_NAK_R_ERR:
  64. case SAS_OPEN_TO:
  65. hs = DID_NO_CONNECT;
  66. break;
  67. case SAS_DATA_UNDERRUN:
  68. sc->resid = ts->residual;
  69. if (sc->request_bufflen - sc->resid < sc->underflow)
  70. hs = DID_ERROR;
  71. break;
  72. case SAS_DATA_OVERRUN:
  73. hs = DID_ERROR;
  74. break;
  75. case SAS_QUEUE_FULL:
  76. hs = DID_SOFT_ERROR; /* retry */
  77. break;
  78. case SAS_DEVICE_UNKNOWN:
  79. hs = DID_BAD_TARGET;
  80. break;
  81. case SAS_SG_ERR:
  82. hs = DID_PARITY;
  83. break;
  84. case SAS_OPEN_REJECT:
  85. if (ts->open_rej_reason == SAS_OREJ_RSVD_RETRY)
  86. hs = DID_SOFT_ERROR; /* retry */
  87. else
  88. hs = DID_ERROR;
  89. break;
  90. case SAS_PROTO_RESPONSE:
  91. SAS_DPRINTK("LLDD:%s sent SAS_PROTO_RESP for an SSP "
  92. "task; please report this\n",
  93. task->dev->port->ha->sas_ha_name);
  94. break;
  95. case SAS_ABORTED_TASK:
  96. hs = DID_ABORT;
  97. break;
  98. case SAM_CHECK_COND:
  99. memcpy(sc->sense_buffer, ts->buf,
  100. max(SCSI_SENSE_BUFFERSIZE, ts->buf_valid_size));
  101. stat = SAM_CHECK_COND;
  102. break;
  103. default:
  104. stat = ts->stat;
  105. break;
  106. }
  107. }
  108. ASSIGN_SAS_TASK(sc, NULL);
  109. sc->result = (hs << 16) | stat;
  110. list_del_init(&task->list);
  111. sas_free_task(task);
  112. /* This is very ugly but this is how SCSI Core works. */
  113. if (ts_flags & SAS_TASK_STATE_ABORTED)
  114. scsi_eh_finish_cmd(sc, &sas_ha->eh_done_q);
  115. else
  116. sc->scsi_done(sc);
  117. }
  118. static enum task_attribute sas_scsi_get_task_attr(struct scsi_cmnd *cmd)
  119. {
  120. enum task_attribute ta = TASK_ATTR_SIMPLE;
  121. if (cmd->request && blk_rq_tagged(cmd->request)) {
  122. if (cmd->device->ordered_tags &&
  123. (cmd->request->cmd_flags & REQ_HARDBARRIER))
  124. ta = TASK_ATTR_HOQ;
  125. }
  126. return ta;
  127. }
  128. static struct sas_task *sas_create_task(struct scsi_cmnd *cmd,
  129. struct domain_device *dev,
  130. gfp_t gfp_flags)
  131. {
  132. struct sas_task *task = sas_alloc_task(gfp_flags);
  133. struct scsi_lun lun;
  134. if (!task)
  135. return NULL;
  136. *(u32 *)cmd->sense_buffer = 0;
  137. task->uldd_task = cmd;
  138. ASSIGN_SAS_TASK(cmd, task);
  139. task->dev = dev;
  140. task->task_proto = task->dev->tproto; /* BUG_ON(!SSP) */
  141. task->ssp_task.retry_count = 1;
  142. int_to_scsilun(cmd->device->lun, &lun);
  143. memcpy(task->ssp_task.LUN, &lun.scsi_lun, 8);
  144. task->ssp_task.task_attr = sas_scsi_get_task_attr(cmd);
  145. memcpy(task->ssp_task.cdb, cmd->cmnd, 16);
  146. task->scatter = cmd->request_buffer;
  147. task->num_scatter = cmd->use_sg;
  148. task->total_xfer_len = cmd->request_bufflen;
  149. task->data_dir = cmd->sc_data_direction;
  150. task->task_done = sas_scsi_task_done;
  151. return task;
  152. }
  153. static int sas_queue_up(struct sas_task *task)
  154. {
  155. struct sas_ha_struct *sas_ha = task->dev->port->ha;
  156. struct scsi_core *core = &sas_ha->core;
  157. unsigned long flags;
  158. LIST_HEAD(list);
  159. spin_lock_irqsave(&core->task_queue_lock, flags);
  160. if (sas_ha->lldd_queue_size < core->task_queue_size + 1) {
  161. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  162. return -SAS_QUEUE_FULL;
  163. }
  164. list_add_tail(&task->list, &core->task_queue);
  165. core->task_queue_size += 1;
  166. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  167. up(&core->queue_thread_sema);
  168. return 0;
  169. }
  170. /**
  171. * sas_queuecommand -- Enqueue a command for processing
  172. * @parameters: See SCSI Core documentation
  173. *
  174. * Note: XXX: Remove the host unlock/lock pair when SCSI Core can
  175. * call us without holding an IRQ spinlock...
  176. */
  177. int sas_queuecommand(struct scsi_cmnd *cmd,
  178. void (*scsi_done)(struct scsi_cmnd *))
  179. {
  180. int res = 0;
  181. struct domain_device *dev = cmd_to_domain_dev(cmd);
  182. struct Scsi_Host *host = cmd->device->host;
  183. struct sas_internal *i = to_sas_internal(host->transportt);
  184. spin_unlock_irq(host->host_lock);
  185. {
  186. struct sas_ha_struct *sas_ha = dev->port->ha;
  187. struct sas_task *task;
  188. res = -ENOMEM;
  189. task = sas_create_task(cmd, dev, GFP_ATOMIC);
  190. if (!task)
  191. goto out;
  192. cmd->scsi_done = scsi_done;
  193. /* Queue up, Direct Mode or Task Collector Mode. */
  194. if (sas_ha->lldd_max_execute_num < 2)
  195. res = i->dft->lldd_execute_task(task, 1, GFP_ATOMIC);
  196. else
  197. res = sas_queue_up(task);
  198. /* Examine */
  199. if (res) {
  200. SAS_DPRINTK("lldd_execute_task returned: %d\n", res);
  201. ASSIGN_SAS_TASK(cmd, NULL);
  202. sas_free_task(task);
  203. if (res == -SAS_QUEUE_FULL) {
  204. cmd->result = DID_SOFT_ERROR << 16; /* retry */
  205. res = 0;
  206. scsi_done(cmd);
  207. }
  208. goto out;
  209. }
  210. }
  211. out:
  212. spin_lock_irq(host->host_lock);
  213. return res;
  214. }
  215. static void sas_scsi_clear_queue_lu(struct list_head *error_q, struct scsi_cmnd *my_cmd)
  216. {
  217. struct scsi_cmnd *cmd, *n;
  218. list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
  219. if (cmd == my_cmd)
  220. list_del_init(&cmd->eh_entry);
  221. }
  222. }
  223. static void sas_scsi_clear_queue_I_T(struct list_head *error_q,
  224. struct domain_device *dev)
  225. {
  226. struct scsi_cmnd *cmd, *n;
  227. list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
  228. struct domain_device *x = cmd_to_domain_dev(cmd);
  229. if (x == dev)
  230. list_del_init(&cmd->eh_entry);
  231. }
  232. }
  233. static void sas_scsi_clear_queue_port(struct list_head *error_q,
  234. struct asd_sas_port *port)
  235. {
  236. struct scsi_cmnd *cmd, *n;
  237. list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
  238. struct domain_device *dev = cmd_to_domain_dev(cmd);
  239. struct asd_sas_port *x = dev->port;
  240. if (x == port)
  241. list_del_init(&cmd->eh_entry);
  242. }
  243. }
  244. enum task_disposition {
  245. TASK_IS_DONE,
  246. TASK_IS_ABORTED,
  247. TASK_IS_AT_LU,
  248. TASK_IS_NOT_AT_LU,
  249. };
  250. static enum task_disposition sas_scsi_find_task(struct sas_task *task)
  251. {
  252. struct sas_ha_struct *ha = task->dev->port->ha;
  253. unsigned long flags;
  254. int i, res;
  255. struct sas_internal *si =
  256. to_sas_internal(task->dev->port->ha->core.shost->transportt);
  257. if (ha->lldd_max_execute_num > 1) {
  258. struct scsi_core *core = &ha->core;
  259. struct sas_task *t, *n;
  260. spin_lock_irqsave(&core->task_queue_lock, flags);
  261. list_for_each_entry_safe(t, n, &core->task_queue, list) {
  262. if (task == t) {
  263. list_del_init(&t->list);
  264. spin_unlock_irqrestore(&core->task_queue_lock,
  265. flags);
  266. SAS_DPRINTK("%s: task 0x%p aborted from "
  267. "task_queue\n",
  268. __FUNCTION__, task);
  269. return TASK_IS_ABORTED;
  270. }
  271. }
  272. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  273. }
  274. for (i = 0; i < 5; i++) {
  275. SAS_DPRINTK("%s: aborting task 0x%p\n", __FUNCTION__, task);
  276. res = si->dft->lldd_abort_task(task);
  277. spin_lock_irqsave(&task->task_state_lock, flags);
  278. if (task->task_state_flags & SAS_TASK_STATE_DONE) {
  279. spin_unlock_irqrestore(&task->task_state_lock, flags);
  280. SAS_DPRINTK("%s: task 0x%p is done\n", __FUNCTION__,
  281. task);
  282. return TASK_IS_DONE;
  283. }
  284. spin_unlock_irqrestore(&task->task_state_lock, flags);
  285. if (res == TMF_RESP_FUNC_COMPLETE) {
  286. SAS_DPRINTK("%s: task 0x%p is aborted\n",
  287. __FUNCTION__, task);
  288. return TASK_IS_ABORTED;
  289. } else if (si->dft->lldd_query_task) {
  290. SAS_DPRINTK("%s: querying task 0x%p\n",
  291. __FUNCTION__, task);
  292. res = si->dft->lldd_query_task(task);
  293. if (res == TMF_RESP_FUNC_SUCC) {
  294. SAS_DPRINTK("%s: task 0x%p at LU\n",
  295. __FUNCTION__, task);
  296. return TASK_IS_AT_LU;
  297. } else if (res == TMF_RESP_FUNC_COMPLETE) {
  298. SAS_DPRINTK("%s: task 0x%p not at LU\n",
  299. __FUNCTION__, task);
  300. return TASK_IS_NOT_AT_LU;
  301. }
  302. }
  303. }
  304. return res;
  305. }
  306. static int sas_recover_lu(struct domain_device *dev, struct scsi_cmnd *cmd)
  307. {
  308. int res = TMF_RESP_FUNC_FAILED;
  309. struct scsi_lun lun;
  310. struct sas_internal *i =
  311. to_sas_internal(dev->port->ha->core.shost->transportt);
  312. int_to_scsilun(cmd->device->lun, &lun);
  313. SAS_DPRINTK("eh: device %llx LUN %x has the task\n",
  314. SAS_ADDR(dev->sas_addr),
  315. cmd->device->lun);
  316. if (i->dft->lldd_abort_task_set)
  317. res = i->dft->lldd_abort_task_set(dev, lun.scsi_lun);
  318. if (res == TMF_RESP_FUNC_FAILED) {
  319. if (i->dft->lldd_clear_task_set)
  320. res = i->dft->lldd_clear_task_set(dev, lun.scsi_lun);
  321. }
  322. if (res == TMF_RESP_FUNC_FAILED) {
  323. if (i->dft->lldd_lu_reset)
  324. res = i->dft->lldd_lu_reset(dev, lun.scsi_lun);
  325. }
  326. return res;
  327. }
  328. static int sas_recover_I_T(struct domain_device *dev)
  329. {
  330. int res = TMF_RESP_FUNC_FAILED;
  331. struct sas_internal *i =
  332. to_sas_internal(dev->port->ha->core.shost->transportt);
  333. SAS_DPRINTK("I_T nexus reset for dev %016llx\n",
  334. SAS_ADDR(dev->sas_addr));
  335. if (i->dft->lldd_I_T_nexus_reset)
  336. res = i->dft->lldd_I_T_nexus_reset(dev);
  337. return res;
  338. }
  339. static int eh_reset_phy_helper(struct sas_phy *phy)
  340. {
  341. int tmf_resp;
  342. tmf_resp = sas_phy_reset(phy, 1);
  343. if (tmf_resp)
  344. SAS_DPRINTK("Hard reset of phy %d failed 0x%x\n",
  345. phy->identify.phy_identifier,
  346. tmf_resp);
  347. return tmf_resp;
  348. }
  349. void sas_scsi_recover_host(struct Scsi_Host *shost)
  350. {
  351. struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
  352. unsigned long flags;
  353. LIST_HEAD(error_q);
  354. struct scsi_cmnd *cmd, *n;
  355. enum task_disposition res = TASK_IS_DONE;
  356. int tmf_resp, need_reset;
  357. struct sas_internal *i = to_sas_internal(shost->transportt);
  358. struct sas_phy *task_sas_phy = NULL;
  359. spin_lock_irqsave(shost->host_lock, flags);
  360. list_splice_init(&shost->eh_cmd_q, &error_q);
  361. spin_unlock_irqrestore(shost->host_lock, flags);
  362. SAS_DPRINTK("Enter %s\n", __FUNCTION__);
  363. /* All tasks on this list were marked SAS_TASK_STATE_ABORTED
  364. * by sas_scsi_timed_out() callback.
  365. */
  366. Again:
  367. SAS_DPRINTK("going over list...\n");
  368. list_for_each_entry_safe(cmd, n, &error_q, eh_entry) {
  369. struct sas_task *task = TO_SAS_TASK(cmd);
  370. list_del_init(&cmd->eh_entry);
  371. if (!task) {
  372. SAS_DPRINTK("%s: taskless cmd?!\n", __FUNCTION__);
  373. continue;
  374. }
  375. spin_lock_irqsave(&task->task_state_lock, flags);
  376. need_reset = task->task_state_flags & SAS_TASK_NEED_DEV_RESET;
  377. if (need_reset)
  378. task_sas_phy = task->dev->port->phy;
  379. spin_unlock_irqrestore(&task->task_state_lock, flags);
  380. SAS_DPRINTK("trying to find task 0x%p\n", task);
  381. res = sas_scsi_find_task(task);
  382. cmd->eh_eflags = 0;
  383. switch (res) {
  384. case TASK_IS_DONE:
  385. SAS_DPRINTK("%s: task 0x%p is done\n", __FUNCTION__,
  386. task);
  387. task->task_done(task);
  388. if (need_reset)
  389. eh_reset_phy_helper(task_sas_phy);
  390. continue;
  391. case TASK_IS_ABORTED:
  392. SAS_DPRINTK("%s: task 0x%p is aborted\n",
  393. __FUNCTION__, task);
  394. task->task_done(task);
  395. if (need_reset)
  396. eh_reset_phy_helper(task_sas_phy);
  397. continue;
  398. case TASK_IS_AT_LU:
  399. SAS_DPRINTK("task 0x%p is at LU: lu recover\n", task);
  400. tmf_resp = sas_recover_lu(task->dev, cmd);
  401. if (tmf_resp == TMF_RESP_FUNC_COMPLETE) {
  402. SAS_DPRINTK("dev %016llx LU %x is "
  403. "recovered\n",
  404. SAS_ADDR(task->dev),
  405. cmd->device->lun);
  406. task->task_done(task);
  407. if (need_reset)
  408. eh_reset_phy_helper(task_sas_phy);
  409. sas_scsi_clear_queue_lu(&error_q, cmd);
  410. goto Again;
  411. }
  412. /* fallthrough */
  413. case TASK_IS_NOT_AT_LU:
  414. SAS_DPRINTK("task 0x%p is not at LU: I_T recover\n",
  415. task);
  416. tmf_resp = sas_recover_I_T(task->dev);
  417. if (tmf_resp == TMF_RESP_FUNC_COMPLETE) {
  418. SAS_DPRINTK("I_T %016llx recovered\n",
  419. SAS_ADDR(task->dev->sas_addr));
  420. task->task_done(task);
  421. if (need_reset)
  422. eh_reset_phy_helper(task_sas_phy);
  423. sas_scsi_clear_queue_I_T(&error_q, task->dev);
  424. goto Again;
  425. }
  426. /* Hammer time :-) */
  427. if (i->dft->lldd_clear_nexus_port) {
  428. struct asd_sas_port *port = task->dev->port;
  429. SAS_DPRINTK("clearing nexus for port:%d\n",
  430. port->id);
  431. res = i->dft->lldd_clear_nexus_port(port);
  432. if (res == TMF_RESP_FUNC_COMPLETE) {
  433. SAS_DPRINTK("clear nexus port:%d "
  434. "succeeded\n", port->id);
  435. task->task_done(task);
  436. if (need_reset)
  437. eh_reset_phy_helper(task_sas_phy);
  438. sas_scsi_clear_queue_port(&error_q,
  439. port);
  440. goto Again;
  441. }
  442. }
  443. if (i->dft->lldd_clear_nexus_ha) {
  444. SAS_DPRINTK("clear nexus ha\n");
  445. res = i->dft->lldd_clear_nexus_ha(ha);
  446. if (res == TMF_RESP_FUNC_COMPLETE) {
  447. SAS_DPRINTK("clear nexus ha "
  448. "succeeded\n");
  449. task->task_done(task);
  450. if (need_reset)
  451. eh_reset_phy_helper(task_sas_phy);
  452. goto out;
  453. }
  454. }
  455. /* If we are here -- this means that no amount
  456. * of effort could recover from errors. Quite
  457. * possibly the HA just disappeared.
  458. */
  459. SAS_DPRINTK("error from device %llx, LUN %x "
  460. "couldn't be recovered in any way\n",
  461. SAS_ADDR(task->dev->sas_addr),
  462. cmd->device->lun);
  463. task->task_done(task);
  464. if (need_reset)
  465. eh_reset_phy_helper(task_sas_phy);
  466. goto clear_q;
  467. }
  468. }
  469. out:
  470. scsi_eh_flush_done_q(&ha->eh_done_q);
  471. SAS_DPRINTK("--- Exit %s\n", __FUNCTION__);
  472. return;
  473. clear_q:
  474. SAS_DPRINTK("--- Exit %s -- clear_q\n", __FUNCTION__);
  475. list_for_each_entry_safe(cmd, n, &error_q, eh_entry) {
  476. struct sas_task *task = TO_SAS_TASK(cmd);
  477. list_del_init(&cmd->eh_entry);
  478. task->task_done(task);
  479. }
  480. }
  481. enum scsi_eh_timer_return sas_scsi_timed_out(struct scsi_cmnd *cmd)
  482. {
  483. struct sas_task *task = TO_SAS_TASK(cmd);
  484. unsigned long flags;
  485. if (!task) {
  486. cmd->timeout_per_command /= 2;
  487. SAS_DPRINTK("command 0x%p, task 0x%p, gone: %s\n",
  488. cmd, task, (cmd->timeout_per_command ?
  489. "EH_RESET_TIMER" : "EH_NOT_HANDLED"));
  490. if (!cmd->timeout_per_command)
  491. return EH_NOT_HANDLED;
  492. return EH_RESET_TIMER;
  493. }
  494. spin_lock_irqsave(&task->task_state_lock, flags);
  495. if (task->task_state_flags & SAS_TASK_STATE_DONE) {
  496. spin_unlock_irqrestore(&task->task_state_lock, flags);
  497. SAS_DPRINTK("command 0x%p, task 0x%p, timed out: EH_HANDLED\n",
  498. cmd, task);
  499. return EH_HANDLED;
  500. }
  501. if (!(task->task_state_flags & SAS_TASK_AT_INITIATOR)) {
  502. spin_unlock_irqrestore(&task->task_state_lock, flags);
  503. SAS_DPRINTK("command 0x%p, task 0x%p, not at initiator: "
  504. "EH_RESET_TIMER\n",
  505. cmd, task);
  506. return EH_RESET_TIMER;
  507. }
  508. task->task_state_flags |= SAS_TASK_STATE_ABORTED;
  509. spin_unlock_irqrestore(&task->task_state_lock, flags);
  510. SAS_DPRINTK("command 0x%p, task 0x%p, timed out: EH_NOT_HANDLED\n",
  511. cmd, task);
  512. return EH_NOT_HANDLED;
  513. }
  514. struct domain_device *sas_find_dev_by_rphy(struct sas_rphy *rphy)
  515. {
  516. struct Scsi_Host *shost = dev_to_shost(rphy->dev.parent);
  517. struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
  518. struct domain_device *found_dev = NULL;
  519. int i;
  520. spin_lock(&ha->phy_port_lock);
  521. for (i = 0; i < ha->num_phys; i++) {
  522. struct asd_sas_port *port = ha->sas_port[i];
  523. struct domain_device *dev;
  524. spin_lock(&port->dev_list_lock);
  525. list_for_each_entry(dev, &port->dev_list, dev_list_node) {
  526. if (rphy == dev->rphy) {
  527. found_dev = dev;
  528. spin_unlock(&port->dev_list_lock);
  529. goto found;
  530. }
  531. }
  532. spin_unlock(&port->dev_list_lock);
  533. }
  534. found:
  535. spin_unlock(&ha->phy_port_lock);
  536. return found_dev;
  537. }
  538. static inline struct domain_device *sas_find_target(struct scsi_target *starget)
  539. {
  540. struct sas_rphy *rphy = dev_to_rphy(starget->dev.parent);
  541. return sas_find_dev_by_rphy(rphy);
  542. }
  543. int sas_target_alloc(struct scsi_target *starget)
  544. {
  545. struct domain_device *found_dev = sas_find_target(starget);
  546. if (!found_dev)
  547. return -ENODEV;
  548. starget->hostdata = found_dev;
  549. return 0;
  550. }
  551. #define SAS_DEF_QD 32
  552. #define SAS_MAX_QD 64
  553. int sas_slave_configure(struct scsi_device *scsi_dev)
  554. {
  555. struct domain_device *dev = sdev_to_domain_dev(scsi_dev);
  556. struct sas_ha_struct *sas_ha;
  557. BUG_ON(dev->rphy->identify.device_type != SAS_END_DEVICE);
  558. sas_ha = dev->port->ha;
  559. sas_read_port_mode_page(scsi_dev);
  560. if (scsi_dev->tagged_supported) {
  561. scsi_set_tag_type(scsi_dev, MSG_SIMPLE_TAG);
  562. scsi_activate_tcq(scsi_dev, SAS_DEF_QD);
  563. } else {
  564. SAS_DPRINTK("device %llx, LUN %x doesn't support "
  565. "TCQ\n", SAS_ADDR(dev->sas_addr),
  566. scsi_dev->lun);
  567. scsi_dev->tagged_supported = 0;
  568. scsi_set_tag_type(scsi_dev, 0);
  569. scsi_deactivate_tcq(scsi_dev, 1);
  570. }
  571. return 0;
  572. }
  573. void sas_slave_destroy(struct scsi_device *scsi_dev)
  574. {
  575. }
  576. int sas_change_queue_depth(struct scsi_device *scsi_dev, int new_depth)
  577. {
  578. int res = min(new_depth, SAS_MAX_QD);
  579. if (scsi_dev->tagged_supported)
  580. scsi_adjust_queue_depth(scsi_dev, scsi_get_tag_type(scsi_dev),
  581. res);
  582. else {
  583. struct domain_device *dev = sdev_to_domain_dev(scsi_dev);
  584. sas_printk("device %llx LUN %x queue depth changed to 1\n",
  585. SAS_ADDR(dev->sas_addr),
  586. scsi_dev->lun);
  587. scsi_adjust_queue_depth(scsi_dev, 0, 1);
  588. res = 1;
  589. }
  590. return res;
  591. }
  592. int sas_change_queue_type(struct scsi_device *scsi_dev, int qt)
  593. {
  594. if (!scsi_dev->tagged_supported)
  595. return 0;
  596. scsi_deactivate_tcq(scsi_dev, 1);
  597. scsi_set_tag_type(scsi_dev, qt);
  598. scsi_activate_tcq(scsi_dev, scsi_dev->queue_depth);
  599. return qt;
  600. }
  601. int sas_bios_param(struct scsi_device *scsi_dev,
  602. struct block_device *bdev,
  603. sector_t capacity, int *hsc)
  604. {
  605. hsc[0] = 255;
  606. hsc[1] = 63;
  607. sector_div(capacity, 255*63);
  608. hsc[2] = capacity;
  609. return 0;
  610. }
  611. /* ---------- Task Collector Thread implementation ---------- */
  612. static void sas_queue(struct sas_ha_struct *sas_ha)
  613. {
  614. struct scsi_core *core = &sas_ha->core;
  615. unsigned long flags;
  616. LIST_HEAD(q);
  617. int can_queue;
  618. int res;
  619. struct sas_internal *i = to_sas_internal(core->shost->transportt);
  620. spin_lock_irqsave(&core->task_queue_lock, flags);
  621. while (!core->queue_thread_kill &&
  622. !list_empty(&core->task_queue)) {
  623. can_queue = sas_ha->lldd_queue_size - core->task_queue_size;
  624. if (can_queue >= 0) {
  625. can_queue = core->task_queue_size;
  626. list_splice_init(&core->task_queue, &q);
  627. } else {
  628. struct list_head *a, *n;
  629. can_queue = sas_ha->lldd_queue_size;
  630. list_for_each_safe(a, n, &core->task_queue) {
  631. list_move_tail(a, &q);
  632. if (--can_queue == 0)
  633. break;
  634. }
  635. can_queue = sas_ha->lldd_queue_size;
  636. }
  637. core->task_queue_size -= can_queue;
  638. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  639. {
  640. struct sas_task *task = list_entry(q.next,
  641. struct sas_task,
  642. list);
  643. list_del_init(&q);
  644. res = i->dft->lldd_execute_task(task, can_queue,
  645. GFP_KERNEL);
  646. if (unlikely(res))
  647. __list_add(&q, task->list.prev, &task->list);
  648. }
  649. spin_lock_irqsave(&core->task_queue_lock, flags);
  650. if (res) {
  651. list_splice_init(&q, &core->task_queue); /*at head*/
  652. core->task_queue_size += can_queue;
  653. }
  654. }
  655. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  656. }
  657. static DECLARE_COMPLETION(queue_th_comp);
  658. /**
  659. * sas_queue_thread -- The Task Collector thread
  660. * @_sas_ha: pointer to struct sas_ha
  661. */
  662. static int sas_queue_thread(void *_sas_ha)
  663. {
  664. struct sas_ha_struct *sas_ha = _sas_ha;
  665. struct scsi_core *core = &sas_ha->core;
  666. daemonize("sas_queue_%d", core->shost->host_no);
  667. current->flags |= PF_NOFREEZE;
  668. complete(&queue_th_comp);
  669. while (1) {
  670. down_interruptible(&core->queue_thread_sema);
  671. sas_queue(sas_ha);
  672. if (core->queue_thread_kill)
  673. break;
  674. }
  675. complete(&queue_th_comp);
  676. return 0;
  677. }
  678. int sas_init_queue(struct sas_ha_struct *sas_ha)
  679. {
  680. int res;
  681. struct scsi_core *core = &sas_ha->core;
  682. spin_lock_init(&core->task_queue_lock);
  683. core->task_queue_size = 0;
  684. INIT_LIST_HEAD(&core->task_queue);
  685. init_MUTEX_LOCKED(&core->queue_thread_sema);
  686. res = kernel_thread(sas_queue_thread, sas_ha, 0);
  687. if (res >= 0)
  688. wait_for_completion(&queue_th_comp);
  689. return res < 0 ? res : 0;
  690. }
  691. void sas_shutdown_queue(struct sas_ha_struct *sas_ha)
  692. {
  693. unsigned long flags;
  694. struct scsi_core *core = &sas_ha->core;
  695. struct sas_task *task, *n;
  696. init_completion(&queue_th_comp);
  697. core->queue_thread_kill = 1;
  698. up(&core->queue_thread_sema);
  699. wait_for_completion(&queue_th_comp);
  700. if (!list_empty(&core->task_queue))
  701. SAS_DPRINTK("HA: %llx: scsi core task queue is NOT empty!?\n",
  702. SAS_ADDR(sas_ha->sas_addr));
  703. spin_lock_irqsave(&core->task_queue_lock, flags);
  704. list_for_each_entry_safe(task, n, &core->task_queue, list) {
  705. struct scsi_cmnd *cmd = task->uldd_task;
  706. list_del_init(&task->list);
  707. ASSIGN_SAS_TASK(cmd, NULL);
  708. sas_free_task(task);
  709. cmd->result = DID_ABORT << 16;
  710. cmd->scsi_done(cmd);
  711. }
  712. spin_unlock_irqrestore(&core->task_queue_lock, flags);
  713. }
  714. static int do_sas_task_abort(struct sas_task *task)
  715. {
  716. struct scsi_cmnd *sc = task->uldd_task;
  717. struct sas_internal *si =
  718. to_sas_internal(task->dev->port->ha->core.shost->transportt);
  719. unsigned long flags;
  720. int res;
  721. spin_lock_irqsave(&task->task_state_lock, flags);
  722. if (task->task_state_flags & SAS_TASK_STATE_ABORTED) {
  723. spin_unlock_irqrestore(&task->task_state_lock, flags);
  724. SAS_DPRINTK("%s: Task %p already aborted.\n", __FUNCTION__,
  725. task);
  726. return 0;
  727. }
  728. if (!(task->task_state_flags & SAS_TASK_STATE_DONE))
  729. task->task_state_flags |= SAS_TASK_STATE_ABORTED;
  730. spin_unlock_irqrestore(&task->task_state_lock, flags);
  731. if (!si->dft->lldd_abort_task)
  732. return -ENODEV;
  733. res = si->dft->lldd_abort_task(task);
  734. if ((task->task_state_flags & SAS_TASK_STATE_DONE) ||
  735. (res == TMF_RESP_FUNC_COMPLETE))
  736. {
  737. /* SMP commands don't have scsi_cmds(?) */
  738. if (!sc) {
  739. task->task_done(task);
  740. return 0;
  741. }
  742. scsi_req_abort_cmd(sc);
  743. scsi_schedule_eh(sc->device->host);
  744. return 0;
  745. }
  746. spin_lock_irqsave(&task->task_state_lock, flags);
  747. if (!(task->task_state_flags & SAS_TASK_STATE_DONE))
  748. task->task_state_flags &= ~SAS_TASK_STATE_ABORTED;
  749. spin_unlock_irqrestore(&task->task_state_lock, flags);
  750. return -EAGAIN;
  751. }
  752. void sas_task_abort(struct work_struct *work)
  753. {
  754. struct sas_task *task =
  755. container_of(work, struct sas_task, abort_work);
  756. int i;
  757. for (i = 0; i < 5; i++)
  758. if (!do_sas_task_abort(task))
  759. return;
  760. SAS_DPRINTK("%s: Could not kill task!\n", __FUNCTION__);
  761. }
  762. EXPORT_SYMBOL_GPL(sas_queuecommand);
  763. EXPORT_SYMBOL_GPL(sas_target_alloc);
  764. EXPORT_SYMBOL_GPL(sas_slave_configure);
  765. EXPORT_SYMBOL_GPL(sas_slave_destroy);
  766. EXPORT_SYMBOL_GPL(sas_change_queue_depth);
  767. EXPORT_SYMBOL_GPL(sas_change_queue_type);
  768. EXPORT_SYMBOL_GPL(sas_bios_param);
  769. EXPORT_SYMBOL_GPL(sas_task_abort);
  770. EXPORT_SYMBOL_GPL(sas_phy_reset);
  771. EXPORT_SYMBOL_GPL(sas_phy_enable);