libata-eh.c 106 KB

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  1. /*
  2. * libata-eh.c - libata error handling
  3. *
  4. * Maintained by: Jeff Garzik <jgarzik@pobox.com>
  5. * Please ALWAYS copy linux-ide@vger.kernel.org
  6. * on emails.
  7. *
  8. * Copyright 2006 Tejun Heo <htejun@gmail.com>
  9. *
  10. *
  11. * This program is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU General Public License as
  13. * published by the Free Software Foundation; either version 2, or
  14. * (at your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License
  22. * along with this program; see the file COPYING. If not, write to
  23. * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139,
  24. * USA.
  25. *
  26. *
  27. * libata documentation is available via 'make {ps|pdf}docs',
  28. * as Documentation/DocBook/libata.*
  29. *
  30. * Hardware documentation available from http://www.t13.org/ and
  31. * http://www.sata-io.org/
  32. *
  33. */
  34. #include <linux/kernel.h>
  35. #include <linux/blkdev.h>
  36. #include <linux/export.h>
  37. #include <linux/pci.h>
  38. #include <scsi/scsi.h>
  39. #include <scsi/scsi_host.h>
  40. #include <scsi/scsi_eh.h>
  41. #include <scsi/scsi_device.h>
  42. #include <scsi/scsi_cmnd.h>
  43. #include <scsi/scsi_dbg.h>
  44. #include "../scsi/scsi_transport_api.h"
  45. #include <linux/libata.h>
  46. #include "libata.h"
  47. enum {
  48. /* speed down verdicts */
  49. ATA_EH_SPDN_NCQ_OFF = (1 << 0),
  50. ATA_EH_SPDN_SPEED_DOWN = (1 << 1),
  51. ATA_EH_SPDN_FALLBACK_TO_PIO = (1 << 2),
  52. ATA_EH_SPDN_KEEP_ERRORS = (1 << 3),
  53. /* error flags */
  54. ATA_EFLAG_IS_IO = (1 << 0),
  55. ATA_EFLAG_DUBIOUS_XFER = (1 << 1),
  56. ATA_EFLAG_OLD_ER = (1 << 31),
  57. /* error categories */
  58. ATA_ECAT_NONE = 0,
  59. ATA_ECAT_ATA_BUS = 1,
  60. ATA_ECAT_TOUT_HSM = 2,
  61. ATA_ECAT_UNK_DEV = 3,
  62. ATA_ECAT_DUBIOUS_NONE = 4,
  63. ATA_ECAT_DUBIOUS_ATA_BUS = 5,
  64. ATA_ECAT_DUBIOUS_TOUT_HSM = 6,
  65. ATA_ECAT_DUBIOUS_UNK_DEV = 7,
  66. ATA_ECAT_NR = 8,
  67. ATA_EH_CMD_DFL_TIMEOUT = 5000,
  68. /* always put at least this amount of time between resets */
  69. ATA_EH_RESET_COOL_DOWN = 5000,
  70. /* Waiting in ->prereset can never be reliable. It's
  71. * sometimes nice to wait there but it can't be depended upon;
  72. * otherwise, we wouldn't be resetting. Just give it enough
  73. * time for most drives to spin up.
  74. */
  75. ATA_EH_PRERESET_TIMEOUT = 10000,
  76. ATA_EH_FASTDRAIN_INTERVAL = 3000,
  77. ATA_EH_UA_TRIES = 5,
  78. /* probe speed down parameters, see ata_eh_schedule_probe() */
  79. ATA_EH_PROBE_TRIAL_INTERVAL = 60000, /* 1 min */
  80. ATA_EH_PROBE_TRIALS = 2,
  81. };
  82. /* The following table determines how we sequence resets. Each entry
  83. * represents timeout for that try. The first try can be soft or
  84. * hardreset. All others are hardreset if available. In most cases
  85. * the first reset w/ 10sec timeout should succeed. Following entries
  86. * are mostly for error handling, hotplug and retarded devices.
  87. */
  88. static const unsigned long ata_eh_reset_timeouts[] = {
  89. 10000, /* most drives spin up by 10sec */
  90. 10000, /* > 99% working drives spin up before 20sec */
  91. 35000, /* give > 30 secs of idleness for retarded devices */
  92. 5000, /* and sweet one last chance */
  93. ULONG_MAX, /* > 1 min has elapsed, give up */
  94. };
  95. static const unsigned long ata_eh_identify_timeouts[] = {
  96. 5000, /* covers > 99% of successes and not too boring on failures */
  97. 10000, /* combined time till here is enough even for media access */
  98. 30000, /* for true idiots */
  99. ULONG_MAX,
  100. };
  101. static const unsigned long ata_eh_flush_timeouts[] = {
  102. 15000, /* be generous with flush */
  103. 15000, /* ditto */
  104. 30000, /* and even more generous */
  105. ULONG_MAX,
  106. };
  107. static const unsigned long ata_eh_other_timeouts[] = {
  108. 5000, /* same rationale as identify timeout */
  109. 10000, /* ditto */
  110. /* but no merciful 30sec for other commands, it just isn't worth it */
  111. ULONG_MAX,
  112. };
  113. struct ata_eh_cmd_timeout_ent {
  114. const u8 *commands;
  115. const unsigned long *timeouts;
  116. };
  117. /* The following table determines timeouts to use for EH internal
  118. * commands. Each table entry is a command class and matches the
  119. * commands the entry applies to and the timeout table to use.
  120. *
  121. * On the retry after a command timed out, the next timeout value from
  122. * the table is used. If the table doesn't contain further entries,
  123. * the last value is used.
  124. *
  125. * ehc->cmd_timeout_idx keeps track of which timeout to use per
  126. * command class, so if SET_FEATURES times out on the first try, the
  127. * next try will use the second timeout value only for that class.
  128. */
  129. #define CMDS(cmds...) (const u8 []){ cmds, 0 }
  130. static const struct ata_eh_cmd_timeout_ent
  131. ata_eh_cmd_timeout_table[ATA_EH_CMD_TIMEOUT_TABLE_SIZE] = {
  132. { .commands = CMDS(ATA_CMD_ID_ATA, ATA_CMD_ID_ATAPI),
  133. .timeouts = ata_eh_identify_timeouts, },
  134. { .commands = CMDS(ATA_CMD_READ_NATIVE_MAX, ATA_CMD_READ_NATIVE_MAX_EXT),
  135. .timeouts = ata_eh_other_timeouts, },
  136. { .commands = CMDS(ATA_CMD_SET_MAX, ATA_CMD_SET_MAX_EXT),
  137. .timeouts = ata_eh_other_timeouts, },
  138. { .commands = CMDS(ATA_CMD_SET_FEATURES),
  139. .timeouts = ata_eh_other_timeouts, },
  140. { .commands = CMDS(ATA_CMD_INIT_DEV_PARAMS),
  141. .timeouts = ata_eh_other_timeouts, },
  142. { .commands = CMDS(ATA_CMD_FLUSH, ATA_CMD_FLUSH_EXT),
  143. .timeouts = ata_eh_flush_timeouts },
  144. };
  145. #undef CMDS
  146. static void __ata_port_freeze(struct ata_port *ap);
  147. #ifdef CONFIG_PM
  148. static void ata_eh_handle_port_suspend(struct ata_port *ap);
  149. static void ata_eh_handle_port_resume(struct ata_port *ap);
  150. #else /* CONFIG_PM */
  151. static void ata_eh_handle_port_suspend(struct ata_port *ap)
  152. { }
  153. static void ata_eh_handle_port_resume(struct ata_port *ap)
  154. { }
  155. #endif /* CONFIG_PM */
  156. static void __ata_ehi_pushv_desc(struct ata_eh_info *ehi, const char *fmt,
  157. va_list args)
  158. {
  159. ehi->desc_len += vscnprintf(ehi->desc + ehi->desc_len,
  160. ATA_EH_DESC_LEN - ehi->desc_len,
  161. fmt, args);
  162. }
  163. /**
  164. * __ata_ehi_push_desc - push error description without adding separator
  165. * @ehi: target EHI
  166. * @fmt: printf format string
  167. *
  168. * Format string according to @fmt and append it to @ehi->desc.
  169. *
  170. * LOCKING:
  171. * spin_lock_irqsave(host lock)
  172. */
  173. void __ata_ehi_push_desc(struct ata_eh_info *ehi, const char *fmt, ...)
  174. {
  175. va_list args;
  176. va_start(args, fmt);
  177. __ata_ehi_pushv_desc(ehi, fmt, args);
  178. va_end(args);
  179. }
  180. /**
  181. * ata_ehi_push_desc - push error description with separator
  182. * @ehi: target EHI
  183. * @fmt: printf format string
  184. *
  185. * Format string according to @fmt and append it to @ehi->desc.
  186. * If @ehi->desc is not empty, ", " is added in-between.
  187. *
  188. * LOCKING:
  189. * spin_lock_irqsave(host lock)
  190. */
  191. void ata_ehi_push_desc(struct ata_eh_info *ehi, const char *fmt, ...)
  192. {
  193. va_list args;
  194. if (ehi->desc_len)
  195. __ata_ehi_push_desc(ehi, ", ");
  196. va_start(args, fmt);
  197. __ata_ehi_pushv_desc(ehi, fmt, args);
  198. va_end(args);
  199. }
  200. /**
  201. * ata_ehi_clear_desc - clean error description
  202. * @ehi: target EHI
  203. *
  204. * Clear @ehi->desc.
  205. *
  206. * LOCKING:
  207. * spin_lock_irqsave(host lock)
  208. */
  209. void ata_ehi_clear_desc(struct ata_eh_info *ehi)
  210. {
  211. ehi->desc[0] = '\0';
  212. ehi->desc_len = 0;
  213. }
  214. /**
  215. * ata_port_desc - append port description
  216. * @ap: target ATA port
  217. * @fmt: printf format string
  218. *
  219. * Format string according to @fmt and append it to port
  220. * description. If port description is not empty, " " is added
  221. * in-between. This function is to be used while initializing
  222. * ata_host. The description is printed on host registration.
  223. *
  224. * LOCKING:
  225. * None.
  226. */
  227. void ata_port_desc(struct ata_port *ap, const char *fmt, ...)
  228. {
  229. va_list args;
  230. WARN_ON(!(ap->pflags & ATA_PFLAG_INITIALIZING));
  231. if (ap->link.eh_info.desc_len)
  232. __ata_ehi_push_desc(&ap->link.eh_info, " ");
  233. va_start(args, fmt);
  234. __ata_ehi_pushv_desc(&ap->link.eh_info, fmt, args);
  235. va_end(args);
  236. }
  237. #ifdef CONFIG_PCI
  238. /**
  239. * ata_port_pbar_desc - append PCI BAR description
  240. * @ap: target ATA port
  241. * @bar: target PCI BAR
  242. * @offset: offset into PCI BAR
  243. * @name: name of the area
  244. *
  245. * If @offset is negative, this function formats a string which
  246. * contains the name, address, size and type of the BAR and
  247. * appends it to the port description. If @offset is zero or
  248. * positive, only name and offsetted address is appended.
  249. *
  250. * LOCKING:
  251. * None.
  252. */
  253. void ata_port_pbar_desc(struct ata_port *ap, int bar, ssize_t offset,
  254. const char *name)
  255. {
  256. struct pci_dev *pdev = to_pci_dev(ap->host->dev);
  257. char *type = "";
  258. unsigned long long start, len;
  259. if (pci_resource_flags(pdev, bar) & IORESOURCE_MEM)
  260. type = "m";
  261. else if (pci_resource_flags(pdev, bar) & IORESOURCE_IO)
  262. type = "i";
  263. start = (unsigned long long)pci_resource_start(pdev, bar);
  264. len = (unsigned long long)pci_resource_len(pdev, bar);
  265. if (offset < 0)
  266. ata_port_desc(ap, "%s %s%llu@0x%llx", name, type, len, start);
  267. else
  268. ata_port_desc(ap, "%s 0x%llx", name,
  269. start + (unsigned long long)offset);
  270. }
  271. #endif /* CONFIG_PCI */
  272. static int ata_lookup_timeout_table(u8 cmd)
  273. {
  274. int i;
  275. for (i = 0; i < ATA_EH_CMD_TIMEOUT_TABLE_SIZE; i++) {
  276. const u8 *cur;
  277. for (cur = ata_eh_cmd_timeout_table[i].commands; *cur; cur++)
  278. if (*cur == cmd)
  279. return i;
  280. }
  281. return -1;
  282. }
  283. /**
  284. * ata_internal_cmd_timeout - determine timeout for an internal command
  285. * @dev: target device
  286. * @cmd: internal command to be issued
  287. *
  288. * Determine timeout for internal command @cmd for @dev.
  289. *
  290. * LOCKING:
  291. * EH context.
  292. *
  293. * RETURNS:
  294. * Determined timeout.
  295. */
  296. unsigned long ata_internal_cmd_timeout(struct ata_device *dev, u8 cmd)
  297. {
  298. struct ata_eh_context *ehc = &dev->link->eh_context;
  299. int ent = ata_lookup_timeout_table(cmd);
  300. int idx;
  301. if (ent < 0)
  302. return ATA_EH_CMD_DFL_TIMEOUT;
  303. idx = ehc->cmd_timeout_idx[dev->devno][ent];
  304. return ata_eh_cmd_timeout_table[ent].timeouts[idx];
  305. }
  306. /**
  307. * ata_internal_cmd_timed_out - notification for internal command timeout
  308. * @dev: target device
  309. * @cmd: internal command which timed out
  310. *
  311. * Notify EH that internal command @cmd for @dev timed out. This
  312. * function should be called only for commands whose timeouts are
  313. * determined using ata_internal_cmd_timeout().
  314. *
  315. * LOCKING:
  316. * EH context.
  317. */
  318. void ata_internal_cmd_timed_out(struct ata_device *dev, u8 cmd)
  319. {
  320. struct ata_eh_context *ehc = &dev->link->eh_context;
  321. int ent = ata_lookup_timeout_table(cmd);
  322. int idx;
  323. if (ent < 0)
  324. return;
  325. idx = ehc->cmd_timeout_idx[dev->devno][ent];
  326. if (ata_eh_cmd_timeout_table[ent].timeouts[idx + 1] != ULONG_MAX)
  327. ehc->cmd_timeout_idx[dev->devno][ent]++;
  328. }
  329. static void ata_ering_record(struct ata_ering *ering, unsigned int eflags,
  330. unsigned int err_mask)
  331. {
  332. struct ata_ering_entry *ent;
  333. WARN_ON(!err_mask);
  334. ering->cursor++;
  335. ering->cursor %= ATA_ERING_SIZE;
  336. ent = &ering->ring[ering->cursor];
  337. ent->eflags = eflags;
  338. ent->err_mask = err_mask;
  339. ent->timestamp = get_jiffies_64();
  340. }
  341. static struct ata_ering_entry *ata_ering_top(struct ata_ering *ering)
  342. {
  343. struct ata_ering_entry *ent = &ering->ring[ering->cursor];
  344. if (ent->err_mask)
  345. return ent;
  346. return NULL;
  347. }
  348. int ata_ering_map(struct ata_ering *ering,
  349. int (*map_fn)(struct ata_ering_entry *, void *),
  350. void *arg)
  351. {
  352. int idx, rc = 0;
  353. struct ata_ering_entry *ent;
  354. idx = ering->cursor;
  355. do {
  356. ent = &ering->ring[idx];
  357. if (!ent->err_mask)
  358. break;
  359. rc = map_fn(ent, arg);
  360. if (rc)
  361. break;
  362. idx = (idx - 1 + ATA_ERING_SIZE) % ATA_ERING_SIZE;
  363. } while (idx != ering->cursor);
  364. return rc;
  365. }
  366. int ata_ering_clear_cb(struct ata_ering_entry *ent, void *void_arg)
  367. {
  368. ent->eflags |= ATA_EFLAG_OLD_ER;
  369. return 0;
  370. }
  371. static void ata_ering_clear(struct ata_ering *ering)
  372. {
  373. ata_ering_map(ering, ata_ering_clear_cb, NULL);
  374. }
  375. static unsigned int ata_eh_dev_action(struct ata_device *dev)
  376. {
  377. struct ata_eh_context *ehc = &dev->link->eh_context;
  378. return ehc->i.action | ehc->i.dev_action[dev->devno];
  379. }
  380. static void ata_eh_clear_action(struct ata_link *link, struct ata_device *dev,
  381. struct ata_eh_info *ehi, unsigned int action)
  382. {
  383. struct ata_device *tdev;
  384. if (!dev) {
  385. ehi->action &= ~action;
  386. ata_for_each_dev(tdev, link, ALL)
  387. ehi->dev_action[tdev->devno] &= ~action;
  388. } else {
  389. /* doesn't make sense for port-wide EH actions */
  390. WARN_ON(!(action & ATA_EH_PERDEV_MASK));
  391. /* break ehi->action into ehi->dev_action */
  392. if (ehi->action & action) {
  393. ata_for_each_dev(tdev, link, ALL)
  394. ehi->dev_action[tdev->devno] |=
  395. ehi->action & action;
  396. ehi->action &= ~action;
  397. }
  398. /* turn off the specified per-dev action */
  399. ehi->dev_action[dev->devno] &= ~action;
  400. }
  401. }
  402. /**
  403. * ata_eh_acquire - acquire EH ownership
  404. * @ap: ATA port to acquire EH ownership for
  405. *
  406. * Acquire EH ownership for @ap. This is the basic exclusion
  407. * mechanism for ports sharing a host. Only one port hanging off
  408. * the same host can claim the ownership of EH.
  409. *
  410. * LOCKING:
  411. * EH context.
  412. */
  413. void ata_eh_acquire(struct ata_port *ap)
  414. {
  415. mutex_lock(&ap->host->eh_mutex);
  416. WARN_ON_ONCE(ap->host->eh_owner);
  417. ap->host->eh_owner = current;
  418. }
  419. /**
  420. * ata_eh_release - release EH ownership
  421. * @ap: ATA port to release EH ownership for
  422. *
  423. * Release EH ownership for @ap if the caller. The caller must
  424. * have acquired EH ownership using ata_eh_acquire() previously.
  425. *
  426. * LOCKING:
  427. * EH context.
  428. */
  429. void ata_eh_release(struct ata_port *ap)
  430. {
  431. WARN_ON_ONCE(ap->host->eh_owner != current);
  432. ap->host->eh_owner = NULL;
  433. mutex_unlock(&ap->host->eh_mutex);
  434. }
  435. /**
  436. * ata_scsi_timed_out - SCSI layer time out callback
  437. * @cmd: timed out SCSI command
  438. *
  439. * Handles SCSI layer timeout. We race with normal completion of
  440. * the qc for @cmd. If the qc is already gone, we lose and let
  441. * the scsi command finish (EH_HANDLED). Otherwise, the qc has
  442. * timed out and EH should be invoked. Prevent ata_qc_complete()
  443. * from finishing it by setting EH_SCHEDULED and return
  444. * EH_NOT_HANDLED.
  445. *
  446. * TODO: kill this function once old EH is gone.
  447. *
  448. * LOCKING:
  449. * Called from timer context
  450. *
  451. * RETURNS:
  452. * EH_HANDLED or EH_NOT_HANDLED
  453. */
  454. enum blk_eh_timer_return ata_scsi_timed_out(struct scsi_cmnd *cmd)
  455. {
  456. struct Scsi_Host *host = cmd->device->host;
  457. struct ata_port *ap = ata_shost_to_port(host);
  458. unsigned long flags;
  459. struct ata_queued_cmd *qc;
  460. enum blk_eh_timer_return ret;
  461. DPRINTK("ENTER\n");
  462. if (ap->ops->error_handler) {
  463. ret = BLK_EH_NOT_HANDLED;
  464. goto out;
  465. }
  466. ret = BLK_EH_HANDLED;
  467. spin_lock_irqsave(ap->lock, flags);
  468. qc = ata_qc_from_tag(ap, ap->link.active_tag);
  469. if (qc) {
  470. WARN_ON(qc->scsicmd != cmd);
  471. qc->flags |= ATA_QCFLAG_EH_SCHEDULED;
  472. qc->err_mask |= AC_ERR_TIMEOUT;
  473. ret = BLK_EH_NOT_HANDLED;
  474. }
  475. spin_unlock_irqrestore(ap->lock, flags);
  476. out:
  477. DPRINTK("EXIT, ret=%d\n", ret);
  478. return ret;
  479. }
  480. static void ata_eh_unload(struct ata_port *ap)
  481. {
  482. struct ata_link *link;
  483. struct ata_device *dev;
  484. unsigned long flags;
  485. /* Restore SControl IPM and SPD for the next driver and
  486. * disable attached devices.
  487. */
  488. ata_for_each_link(link, ap, PMP_FIRST) {
  489. sata_scr_write(link, SCR_CONTROL, link->saved_scontrol & 0xff0);
  490. ata_for_each_dev(dev, link, ALL)
  491. ata_dev_disable(dev);
  492. }
  493. /* freeze and set UNLOADED */
  494. spin_lock_irqsave(ap->lock, flags);
  495. ata_port_freeze(ap); /* won't be thawed */
  496. ap->pflags &= ~ATA_PFLAG_EH_PENDING; /* clear pending from freeze */
  497. ap->pflags |= ATA_PFLAG_UNLOADED;
  498. spin_unlock_irqrestore(ap->lock, flags);
  499. }
  500. /**
  501. * ata_scsi_error - SCSI layer error handler callback
  502. * @host: SCSI host on which error occurred
  503. *
  504. * Handles SCSI-layer-thrown error events.
  505. *
  506. * LOCKING:
  507. * Inherited from SCSI layer (none, can sleep)
  508. *
  509. * RETURNS:
  510. * Zero.
  511. */
  512. void ata_scsi_error(struct Scsi_Host *host)
  513. {
  514. struct ata_port *ap = ata_shost_to_port(host);
  515. unsigned long flags;
  516. LIST_HEAD(eh_work_q);
  517. DPRINTK("ENTER\n");
  518. spin_lock_irqsave(host->host_lock, flags);
  519. list_splice_init(&host->eh_cmd_q, &eh_work_q);
  520. spin_unlock_irqrestore(host->host_lock, flags);
  521. ata_scsi_cmd_error_handler(host, ap, &eh_work_q);
  522. /* If we timed raced normal completion and there is nothing to
  523. recover nr_timedout == 0 why exactly are we doing error recovery ? */
  524. ata_scsi_port_error_handler(host, ap);
  525. /* finish or retry handled scmd's and clean up */
  526. WARN_ON(host->host_failed || !list_empty(&eh_work_q));
  527. DPRINTK("EXIT\n");
  528. }
  529. /**
  530. * ata_scsi_cmd_error_handler - error callback for a list of commands
  531. * @host: scsi host containing the port
  532. * @ap: ATA port within the host
  533. * @eh_work_q: list of commands to process
  534. *
  535. * process the given list of commands and return those finished to the
  536. * ap->eh_done_q. This function is the first part of the libata error
  537. * handler which processes a given list of failed commands.
  538. */
  539. void ata_scsi_cmd_error_handler(struct Scsi_Host *host, struct ata_port *ap,
  540. struct list_head *eh_work_q)
  541. {
  542. int i;
  543. unsigned long flags;
  544. /* make sure sff pio task is not running */
  545. ata_sff_flush_pio_task(ap);
  546. /* synchronize with host lock and sort out timeouts */
  547. /* For new EH, all qcs are finished in one of three ways -
  548. * normal completion, error completion, and SCSI timeout.
  549. * Both completions can race against SCSI timeout. When normal
  550. * completion wins, the qc never reaches EH. When error
  551. * completion wins, the qc has ATA_QCFLAG_FAILED set.
  552. *
  553. * When SCSI timeout wins, things are a bit more complex.
  554. * Normal or error completion can occur after the timeout but
  555. * before this point. In such cases, both types of
  556. * completions are honored. A scmd is determined to have
  557. * timed out iff its associated qc is active and not failed.
  558. */
  559. if (ap->ops->error_handler) {
  560. struct scsi_cmnd *scmd, *tmp;
  561. int nr_timedout = 0;
  562. spin_lock_irqsave(ap->lock, flags);
  563. /* This must occur under the ap->lock as we don't want
  564. a polled recovery to race the real interrupt handler
  565. The lost_interrupt handler checks for any completed but
  566. non-notified command and completes much like an IRQ handler.
  567. We then fall into the error recovery code which will treat
  568. this as if normal completion won the race */
  569. if (ap->ops->lost_interrupt)
  570. ap->ops->lost_interrupt(ap);
  571. list_for_each_entry_safe(scmd, tmp, eh_work_q, eh_entry) {
  572. struct ata_queued_cmd *qc;
  573. for (i = 0; i < ATA_MAX_QUEUE; i++) {
  574. qc = __ata_qc_from_tag(ap, i);
  575. if (qc->flags & ATA_QCFLAG_ACTIVE &&
  576. qc->scsicmd == scmd)
  577. break;
  578. }
  579. if (i < ATA_MAX_QUEUE) {
  580. /* the scmd has an associated qc */
  581. if (!(qc->flags & ATA_QCFLAG_FAILED)) {
  582. /* which hasn't failed yet, timeout */
  583. qc->err_mask |= AC_ERR_TIMEOUT;
  584. qc->flags |= ATA_QCFLAG_FAILED;
  585. nr_timedout++;
  586. }
  587. } else {
  588. /* Normal completion occurred after
  589. * SCSI timeout but before this point.
  590. * Successfully complete it.
  591. */
  592. scmd->retries = scmd->allowed;
  593. scsi_eh_finish_cmd(scmd, &ap->eh_done_q);
  594. }
  595. }
  596. /* If we have timed out qcs. They belong to EH from
  597. * this point but the state of the controller is
  598. * unknown. Freeze the port to make sure the IRQ
  599. * handler doesn't diddle with those qcs. This must
  600. * be done atomically w.r.t. setting QCFLAG_FAILED.
  601. */
  602. if (nr_timedout)
  603. __ata_port_freeze(ap);
  604. spin_unlock_irqrestore(ap->lock, flags);
  605. /* initialize eh_tries */
  606. ap->eh_tries = ATA_EH_MAX_TRIES;
  607. } else
  608. spin_unlock_wait(ap->lock);
  609. }
  610. EXPORT_SYMBOL(ata_scsi_cmd_error_handler);
  611. /**
  612. * ata_scsi_port_error_handler - recover the port after the commands
  613. * @host: SCSI host containing the port
  614. * @ap: the ATA port
  615. *
  616. * Handle the recovery of the port @ap after all the commands
  617. * have been recovered.
  618. */
  619. void ata_scsi_port_error_handler(struct Scsi_Host *host, struct ata_port *ap)
  620. {
  621. unsigned long flags;
  622. /* invoke error handler */
  623. if (ap->ops->error_handler) {
  624. struct ata_link *link;
  625. /* acquire EH ownership */
  626. ata_eh_acquire(ap);
  627. repeat:
  628. /* kill fast drain timer */
  629. del_timer_sync(&ap->fastdrain_timer);
  630. /* process port resume request */
  631. ata_eh_handle_port_resume(ap);
  632. /* fetch & clear EH info */
  633. spin_lock_irqsave(ap->lock, flags);
  634. ata_for_each_link(link, ap, HOST_FIRST) {
  635. struct ata_eh_context *ehc = &link->eh_context;
  636. struct ata_device *dev;
  637. memset(&link->eh_context, 0, sizeof(link->eh_context));
  638. link->eh_context.i = link->eh_info;
  639. memset(&link->eh_info, 0, sizeof(link->eh_info));
  640. ata_for_each_dev(dev, link, ENABLED) {
  641. int devno = dev->devno;
  642. ehc->saved_xfer_mode[devno] = dev->xfer_mode;
  643. if (ata_ncq_enabled(dev))
  644. ehc->saved_ncq_enabled |= 1 << devno;
  645. }
  646. }
  647. ap->pflags |= ATA_PFLAG_EH_IN_PROGRESS;
  648. ap->pflags &= ~ATA_PFLAG_EH_PENDING;
  649. ap->excl_link = NULL; /* don't maintain exclusion over EH */
  650. spin_unlock_irqrestore(ap->lock, flags);
  651. /* invoke EH, skip if unloading or suspended */
  652. if (!(ap->pflags & (ATA_PFLAG_UNLOADING | ATA_PFLAG_SUSPENDED)))
  653. ap->ops->error_handler(ap);
  654. else {
  655. /* if unloading, commence suicide */
  656. if ((ap->pflags & ATA_PFLAG_UNLOADING) &&
  657. !(ap->pflags & ATA_PFLAG_UNLOADED))
  658. ata_eh_unload(ap);
  659. ata_eh_finish(ap);
  660. }
  661. /* process port suspend request */
  662. ata_eh_handle_port_suspend(ap);
  663. /* Exception might have happened after ->error_handler
  664. * recovered the port but before this point. Repeat
  665. * EH in such case.
  666. */
  667. spin_lock_irqsave(ap->lock, flags);
  668. if (ap->pflags & ATA_PFLAG_EH_PENDING) {
  669. if (--ap->eh_tries) {
  670. spin_unlock_irqrestore(ap->lock, flags);
  671. goto repeat;
  672. }
  673. ata_port_err(ap,
  674. "EH pending after %d tries, giving up\n",
  675. ATA_EH_MAX_TRIES);
  676. ap->pflags &= ~ATA_PFLAG_EH_PENDING;
  677. }
  678. /* this run is complete, make sure EH info is clear */
  679. ata_for_each_link(link, ap, HOST_FIRST)
  680. memset(&link->eh_info, 0, sizeof(link->eh_info));
  681. /* Clear host_eh_scheduled while holding ap->lock such
  682. * that if exception occurs after this point but
  683. * before EH completion, SCSI midlayer will
  684. * re-initiate EH.
  685. */
  686. host->host_eh_scheduled = 0;
  687. spin_unlock_irqrestore(ap->lock, flags);
  688. ata_eh_release(ap);
  689. } else {
  690. WARN_ON(ata_qc_from_tag(ap, ap->link.active_tag) == NULL);
  691. ap->ops->eng_timeout(ap);
  692. }
  693. scsi_eh_flush_done_q(&ap->eh_done_q);
  694. /* clean up */
  695. spin_lock_irqsave(ap->lock, flags);
  696. if (ap->pflags & ATA_PFLAG_LOADING)
  697. ap->pflags &= ~ATA_PFLAG_LOADING;
  698. else if (ap->pflags & ATA_PFLAG_SCSI_HOTPLUG)
  699. schedule_delayed_work(&ap->hotplug_task, 0);
  700. if (ap->pflags & ATA_PFLAG_RECOVERED)
  701. ata_port_info(ap, "EH complete\n");
  702. ap->pflags &= ~(ATA_PFLAG_SCSI_HOTPLUG | ATA_PFLAG_RECOVERED);
  703. /* tell wait_eh that we're done */
  704. ap->pflags &= ~ATA_PFLAG_EH_IN_PROGRESS;
  705. wake_up_all(&ap->eh_wait_q);
  706. spin_unlock_irqrestore(ap->lock, flags);
  707. }
  708. EXPORT_SYMBOL_GPL(ata_scsi_port_error_handler);
  709. /**
  710. * ata_port_wait_eh - Wait for the currently pending EH to complete
  711. * @ap: Port to wait EH for
  712. *
  713. * Wait until the currently pending EH is complete.
  714. *
  715. * LOCKING:
  716. * Kernel thread context (may sleep).
  717. */
  718. void ata_port_wait_eh(struct ata_port *ap)
  719. {
  720. unsigned long flags;
  721. DEFINE_WAIT(wait);
  722. retry:
  723. spin_lock_irqsave(ap->lock, flags);
  724. while (ap->pflags & (ATA_PFLAG_EH_PENDING | ATA_PFLAG_EH_IN_PROGRESS)) {
  725. prepare_to_wait(&ap->eh_wait_q, &wait, TASK_UNINTERRUPTIBLE);
  726. spin_unlock_irqrestore(ap->lock, flags);
  727. schedule();
  728. spin_lock_irqsave(ap->lock, flags);
  729. }
  730. finish_wait(&ap->eh_wait_q, &wait);
  731. spin_unlock_irqrestore(ap->lock, flags);
  732. /* make sure SCSI EH is complete */
  733. if (scsi_host_in_recovery(ap->scsi_host)) {
  734. ata_msleep(ap, 10);
  735. goto retry;
  736. }
  737. }
  738. EXPORT_SYMBOL_GPL(ata_port_wait_eh);
  739. static int ata_eh_nr_in_flight(struct ata_port *ap)
  740. {
  741. unsigned int tag;
  742. int nr = 0;
  743. /* count only non-internal commands */
  744. for (tag = 0; tag < ATA_MAX_QUEUE - 1; tag++)
  745. if (ata_qc_from_tag(ap, tag))
  746. nr++;
  747. return nr;
  748. }
  749. void ata_eh_fastdrain_timerfn(unsigned long arg)
  750. {
  751. struct ata_port *ap = (void *)arg;
  752. unsigned long flags;
  753. int cnt;
  754. spin_lock_irqsave(ap->lock, flags);
  755. cnt = ata_eh_nr_in_flight(ap);
  756. /* are we done? */
  757. if (!cnt)
  758. goto out_unlock;
  759. if (cnt == ap->fastdrain_cnt) {
  760. unsigned int tag;
  761. /* No progress during the last interval, tag all
  762. * in-flight qcs as timed out and freeze the port.
  763. */
  764. for (tag = 0; tag < ATA_MAX_QUEUE - 1; tag++) {
  765. struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag);
  766. if (qc)
  767. qc->err_mask |= AC_ERR_TIMEOUT;
  768. }
  769. ata_port_freeze(ap);
  770. } else {
  771. /* some qcs have finished, give it another chance */
  772. ap->fastdrain_cnt = cnt;
  773. ap->fastdrain_timer.expires =
  774. ata_deadline(jiffies, ATA_EH_FASTDRAIN_INTERVAL);
  775. add_timer(&ap->fastdrain_timer);
  776. }
  777. out_unlock:
  778. spin_unlock_irqrestore(ap->lock, flags);
  779. }
  780. /**
  781. * ata_eh_set_pending - set ATA_PFLAG_EH_PENDING and activate fast drain
  782. * @ap: target ATA port
  783. * @fastdrain: activate fast drain
  784. *
  785. * Set ATA_PFLAG_EH_PENDING and activate fast drain if @fastdrain
  786. * is non-zero and EH wasn't pending before. Fast drain ensures
  787. * that EH kicks in in timely manner.
  788. *
  789. * LOCKING:
  790. * spin_lock_irqsave(host lock)
  791. */
  792. static void ata_eh_set_pending(struct ata_port *ap, int fastdrain)
  793. {
  794. int cnt;
  795. /* already scheduled? */
  796. if (ap->pflags & ATA_PFLAG_EH_PENDING)
  797. return;
  798. ap->pflags |= ATA_PFLAG_EH_PENDING;
  799. if (!fastdrain)
  800. return;
  801. /* do we have in-flight qcs? */
  802. cnt = ata_eh_nr_in_flight(ap);
  803. if (!cnt)
  804. return;
  805. /* activate fast drain */
  806. ap->fastdrain_cnt = cnt;
  807. ap->fastdrain_timer.expires =
  808. ata_deadline(jiffies, ATA_EH_FASTDRAIN_INTERVAL);
  809. add_timer(&ap->fastdrain_timer);
  810. }
  811. /**
  812. * ata_qc_schedule_eh - schedule qc for error handling
  813. * @qc: command to schedule error handling for
  814. *
  815. * Schedule error handling for @qc. EH will kick in as soon as
  816. * other commands are drained.
  817. *
  818. * LOCKING:
  819. * spin_lock_irqsave(host lock)
  820. */
  821. void ata_qc_schedule_eh(struct ata_queued_cmd *qc)
  822. {
  823. struct ata_port *ap = qc->ap;
  824. struct request_queue *q = qc->scsicmd->device->request_queue;
  825. unsigned long flags;
  826. WARN_ON(!ap->ops->error_handler);
  827. qc->flags |= ATA_QCFLAG_FAILED;
  828. ata_eh_set_pending(ap, 1);
  829. /* The following will fail if timeout has already expired.
  830. * ata_scsi_error() takes care of such scmds on EH entry.
  831. * Note that ATA_QCFLAG_FAILED is unconditionally set after
  832. * this function completes.
  833. */
  834. spin_lock_irqsave(q->queue_lock, flags);
  835. blk_abort_request(qc->scsicmd->request);
  836. spin_unlock_irqrestore(q->queue_lock, flags);
  837. }
  838. /**
  839. * ata_port_schedule_eh - schedule error handling without a qc
  840. * @ap: ATA port to schedule EH for
  841. *
  842. * Schedule error handling for @ap. EH will kick in as soon as
  843. * all commands are drained.
  844. *
  845. * LOCKING:
  846. * spin_lock_irqsave(host lock)
  847. */
  848. void ata_port_schedule_eh(struct ata_port *ap)
  849. {
  850. WARN_ON(!ap->ops->error_handler);
  851. if (ap->pflags & ATA_PFLAG_INITIALIZING)
  852. return;
  853. ata_eh_set_pending(ap, 1);
  854. scsi_schedule_eh(ap->scsi_host);
  855. DPRINTK("port EH scheduled\n");
  856. }
  857. static int ata_do_link_abort(struct ata_port *ap, struct ata_link *link)
  858. {
  859. int tag, nr_aborted = 0;
  860. WARN_ON(!ap->ops->error_handler);
  861. /* we're gonna abort all commands, no need for fast drain */
  862. ata_eh_set_pending(ap, 0);
  863. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  864. struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag);
  865. if (qc && (!link || qc->dev->link == link)) {
  866. qc->flags |= ATA_QCFLAG_FAILED;
  867. ata_qc_complete(qc);
  868. nr_aborted++;
  869. }
  870. }
  871. if (!nr_aborted)
  872. ata_port_schedule_eh(ap);
  873. return nr_aborted;
  874. }
  875. /**
  876. * ata_link_abort - abort all qc's on the link
  877. * @link: ATA link to abort qc's for
  878. *
  879. * Abort all active qc's active on @link and schedule EH.
  880. *
  881. * LOCKING:
  882. * spin_lock_irqsave(host lock)
  883. *
  884. * RETURNS:
  885. * Number of aborted qc's.
  886. */
  887. int ata_link_abort(struct ata_link *link)
  888. {
  889. return ata_do_link_abort(link->ap, link);
  890. }
  891. /**
  892. * ata_port_abort - abort all qc's on the port
  893. * @ap: ATA port to abort qc's for
  894. *
  895. * Abort all active qc's of @ap and schedule EH.
  896. *
  897. * LOCKING:
  898. * spin_lock_irqsave(host_set lock)
  899. *
  900. * RETURNS:
  901. * Number of aborted qc's.
  902. */
  903. int ata_port_abort(struct ata_port *ap)
  904. {
  905. return ata_do_link_abort(ap, NULL);
  906. }
  907. /**
  908. * __ata_port_freeze - freeze port
  909. * @ap: ATA port to freeze
  910. *
  911. * This function is called when HSM violation or some other
  912. * condition disrupts normal operation of the port. Frozen port
  913. * is not allowed to perform any operation until the port is
  914. * thawed, which usually follows a successful reset.
  915. *
  916. * ap->ops->freeze() callback can be used for freezing the port
  917. * hardware-wise (e.g. mask interrupt and stop DMA engine). If a
  918. * port cannot be frozen hardware-wise, the interrupt handler
  919. * must ack and clear interrupts unconditionally while the port
  920. * is frozen.
  921. *
  922. * LOCKING:
  923. * spin_lock_irqsave(host lock)
  924. */
  925. static void __ata_port_freeze(struct ata_port *ap)
  926. {
  927. WARN_ON(!ap->ops->error_handler);
  928. if (ap->ops->freeze)
  929. ap->ops->freeze(ap);
  930. ap->pflags |= ATA_PFLAG_FROZEN;
  931. DPRINTK("ata%u port frozen\n", ap->print_id);
  932. }
  933. /**
  934. * ata_port_freeze - abort & freeze port
  935. * @ap: ATA port to freeze
  936. *
  937. * Abort and freeze @ap. The freeze operation must be called
  938. * first, because some hardware requires special operations
  939. * before the taskfile registers are accessible.
  940. *
  941. * LOCKING:
  942. * spin_lock_irqsave(host lock)
  943. *
  944. * RETURNS:
  945. * Number of aborted commands.
  946. */
  947. int ata_port_freeze(struct ata_port *ap)
  948. {
  949. int nr_aborted;
  950. WARN_ON(!ap->ops->error_handler);
  951. __ata_port_freeze(ap);
  952. nr_aborted = ata_port_abort(ap);
  953. return nr_aborted;
  954. }
  955. /**
  956. * sata_async_notification - SATA async notification handler
  957. * @ap: ATA port where async notification is received
  958. *
  959. * Handler to be called when async notification via SDB FIS is
  960. * received. This function schedules EH if necessary.
  961. *
  962. * LOCKING:
  963. * spin_lock_irqsave(host lock)
  964. *
  965. * RETURNS:
  966. * 1 if EH is scheduled, 0 otherwise.
  967. */
  968. int sata_async_notification(struct ata_port *ap)
  969. {
  970. u32 sntf;
  971. int rc;
  972. if (!(ap->flags & ATA_FLAG_AN))
  973. return 0;
  974. rc = sata_scr_read(&ap->link, SCR_NOTIFICATION, &sntf);
  975. if (rc == 0)
  976. sata_scr_write(&ap->link, SCR_NOTIFICATION, sntf);
  977. if (!sata_pmp_attached(ap) || rc) {
  978. /* PMP is not attached or SNTF is not available */
  979. if (!sata_pmp_attached(ap)) {
  980. /* PMP is not attached. Check whether ATAPI
  981. * AN is configured. If so, notify media
  982. * change.
  983. */
  984. struct ata_device *dev = ap->link.device;
  985. if ((dev->class == ATA_DEV_ATAPI) &&
  986. (dev->flags & ATA_DFLAG_AN))
  987. ata_scsi_media_change_notify(dev);
  988. return 0;
  989. } else {
  990. /* PMP is attached but SNTF is not available.
  991. * ATAPI async media change notification is
  992. * not used. The PMP must be reporting PHY
  993. * status change, schedule EH.
  994. */
  995. ata_port_schedule_eh(ap);
  996. return 1;
  997. }
  998. } else {
  999. /* PMP is attached and SNTF is available */
  1000. struct ata_link *link;
  1001. /* check and notify ATAPI AN */
  1002. ata_for_each_link(link, ap, EDGE) {
  1003. if (!(sntf & (1 << link->pmp)))
  1004. continue;
  1005. if ((link->device->class == ATA_DEV_ATAPI) &&
  1006. (link->device->flags & ATA_DFLAG_AN))
  1007. ata_scsi_media_change_notify(link->device);
  1008. }
  1009. /* If PMP is reporting that PHY status of some
  1010. * downstream ports has changed, schedule EH.
  1011. */
  1012. if (sntf & (1 << SATA_PMP_CTRL_PORT)) {
  1013. ata_port_schedule_eh(ap);
  1014. return 1;
  1015. }
  1016. return 0;
  1017. }
  1018. }
  1019. /**
  1020. * ata_eh_freeze_port - EH helper to freeze port
  1021. * @ap: ATA port to freeze
  1022. *
  1023. * Freeze @ap.
  1024. *
  1025. * LOCKING:
  1026. * None.
  1027. */
  1028. void ata_eh_freeze_port(struct ata_port *ap)
  1029. {
  1030. unsigned long flags;
  1031. if (!ap->ops->error_handler)
  1032. return;
  1033. spin_lock_irqsave(ap->lock, flags);
  1034. __ata_port_freeze(ap);
  1035. spin_unlock_irqrestore(ap->lock, flags);
  1036. }
  1037. /**
  1038. * ata_port_thaw_port - EH helper to thaw port
  1039. * @ap: ATA port to thaw
  1040. *
  1041. * Thaw frozen port @ap.
  1042. *
  1043. * LOCKING:
  1044. * None.
  1045. */
  1046. void ata_eh_thaw_port(struct ata_port *ap)
  1047. {
  1048. unsigned long flags;
  1049. if (!ap->ops->error_handler)
  1050. return;
  1051. spin_lock_irqsave(ap->lock, flags);
  1052. ap->pflags &= ~ATA_PFLAG_FROZEN;
  1053. if (ap->ops->thaw)
  1054. ap->ops->thaw(ap);
  1055. spin_unlock_irqrestore(ap->lock, flags);
  1056. DPRINTK("ata%u port thawed\n", ap->print_id);
  1057. }
  1058. static void ata_eh_scsidone(struct scsi_cmnd *scmd)
  1059. {
  1060. /* nada */
  1061. }
  1062. static void __ata_eh_qc_complete(struct ata_queued_cmd *qc)
  1063. {
  1064. struct ata_port *ap = qc->ap;
  1065. struct scsi_cmnd *scmd = qc->scsicmd;
  1066. unsigned long flags;
  1067. spin_lock_irqsave(ap->lock, flags);
  1068. qc->scsidone = ata_eh_scsidone;
  1069. __ata_qc_complete(qc);
  1070. WARN_ON(ata_tag_valid(qc->tag));
  1071. spin_unlock_irqrestore(ap->lock, flags);
  1072. scsi_eh_finish_cmd(scmd, &ap->eh_done_q);
  1073. }
  1074. /**
  1075. * ata_eh_qc_complete - Complete an active ATA command from EH
  1076. * @qc: Command to complete
  1077. *
  1078. * Indicate to the mid and upper layers that an ATA command has
  1079. * completed. To be used from EH.
  1080. */
  1081. void ata_eh_qc_complete(struct ata_queued_cmd *qc)
  1082. {
  1083. struct scsi_cmnd *scmd = qc->scsicmd;
  1084. scmd->retries = scmd->allowed;
  1085. __ata_eh_qc_complete(qc);
  1086. }
  1087. /**
  1088. * ata_eh_qc_retry - Tell midlayer to retry an ATA command after EH
  1089. * @qc: Command to retry
  1090. *
  1091. * Indicate to the mid and upper layers that an ATA command
  1092. * should be retried. To be used from EH.
  1093. *
  1094. * SCSI midlayer limits the number of retries to scmd->allowed.
  1095. * scmd->allowed is incremented for commands which get retried
  1096. * due to unrelated failures (qc->err_mask is zero).
  1097. */
  1098. void ata_eh_qc_retry(struct ata_queued_cmd *qc)
  1099. {
  1100. struct scsi_cmnd *scmd = qc->scsicmd;
  1101. if (!qc->err_mask)
  1102. scmd->allowed++;
  1103. __ata_eh_qc_complete(qc);
  1104. }
  1105. /**
  1106. * ata_dev_disable - disable ATA device
  1107. * @dev: ATA device to disable
  1108. *
  1109. * Disable @dev.
  1110. *
  1111. * Locking:
  1112. * EH context.
  1113. */
  1114. void ata_dev_disable(struct ata_device *dev)
  1115. {
  1116. if (!ata_dev_enabled(dev))
  1117. return;
  1118. if (ata_msg_drv(dev->link->ap))
  1119. ata_dev_warn(dev, "disabled\n");
  1120. ata_acpi_on_disable(dev);
  1121. ata_down_xfermask_limit(dev, ATA_DNXFER_FORCE_PIO0 | ATA_DNXFER_QUIET);
  1122. dev->class++;
  1123. /* From now till the next successful probe, ering is used to
  1124. * track probe failures. Clear accumulated device error info.
  1125. */
  1126. ata_ering_clear(&dev->ering);
  1127. }
  1128. /**
  1129. * ata_eh_detach_dev - detach ATA device
  1130. * @dev: ATA device to detach
  1131. *
  1132. * Detach @dev.
  1133. *
  1134. * LOCKING:
  1135. * None.
  1136. */
  1137. void ata_eh_detach_dev(struct ata_device *dev)
  1138. {
  1139. struct ata_link *link = dev->link;
  1140. struct ata_port *ap = link->ap;
  1141. struct ata_eh_context *ehc = &link->eh_context;
  1142. unsigned long flags;
  1143. ata_dev_disable(dev);
  1144. spin_lock_irqsave(ap->lock, flags);
  1145. dev->flags &= ~ATA_DFLAG_DETACH;
  1146. if (ata_scsi_offline_dev(dev)) {
  1147. dev->flags |= ATA_DFLAG_DETACHED;
  1148. ap->pflags |= ATA_PFLAG_SCSI_HOTPLUG;
  1149. }
  1150. /* clear per-dev EH info */
  1151. ata_eh_clear_action(link, dev, &link->eh_info, ATA_EH_PERDEV_MASK);
  1152. ata_eh_clear_action(link, dev, &link->eh_context.i, ATA_EH_PERDEV_MASK);
  1153. ehc->saved_xfer_mode[dev->devno] = 0;
  1154. ehc->saved_ncq_enabled &= ~(1 << dev->devno);
  1155. spin_unlock_irqrestore(ap->lock, flags);
  1156. }
  1157. /**
  1158. * ata_eh_about_to_do - about to perform eh_action
  1159. * @link: target ATA link
  1160. * @dev: target ATA dev for per-dev action (can be NULL)
  1161. * @action: action about to be performed
  1162. *
  1163. * Called just before performing EH actions to clear related bits
  1164. * in @link->eh_info such that eh actions are not unnecessarily
  1165. * repeated.
  1166. *
  1167. * LOCKING:
  1168. * None.
  1169. */
  1170. void ata_eh_about_to_do(struct ata_link *link, struct ata_device *dev,
  1171. unsigned int action)
  1172. {
  1173. struct ata_port *ap = link->ap;
  1174. struct ata_eh_info *ehi = &link->eh_info;
  1175. struct ata_eh_context *ehc = &link->eh_context;
  1176. unsigned long flags;
  1177. spin_lock_irqsave(ap->lock, flags);
  1178. ata_eh_clear_action(link, dev, ehi, action);
  1179. /* About to take EH action, set RECOVERED. Ignore actions on
  1180. * slave links as master will do them again.
  1181. */
  1182. if (!(ehc->i.flags & ATA_EHI_QUIET) && link != ap->slave_link)
  1183. ap->pflags |= ATA_PFLAG_RECOVERED;
  1184. spin_unlock_irqrestore(ap->lock, flags);
  1185. }
  1186. /**
  1187. * ata_eh_done - EH action complete
  1188. * @ap: target ATA port
  1189. * @dev: target ATA dev for per-dev action (can be NULL)
  1190. * @action: action just completed
  1191. *
  1192. * Called right after performing EH actions to clear related bits
  1193. * in @link->eh_context.
  1194. *
  1195. * LOCKING:
  1196. * None.
  1197. */
  1198. void ata_eh_done(struct ata_link *link, struct ata_device *dev,
  1199. unsigned int action)
  1200. {
  1201. struct ata_eh_context *ehc = &link->eh_context;
  1202. ata_eh_clear_action(link, dev, &ehc->i, action);
  1203. }
  1204. /**
  1205. * ata_err_string - convert err_mask to descriptive string
  1206. * @err_mask: error mask to convert to string
  1207. *
  1208. * Convert @err_mask to descriptive string. Errors are
  1209. * prioritized according to severity and only the most severe
  1210. * error is reported.
  1211. *
  1212. * LOCKING:
  1213. * None.
  1214. *
  1215. * RETURNS:
  1216. * Descriptive string for @err_mask
  1217. */
  1218. static const char *ata_err_string(unsigned int err_mask)
  1219. {
  1220. if (err_mask & AC_ERR_HOST_BUS)
  1221. return "host bus error";
  1222. if (err_mask & AC_ERR_ATA_BUS)
  1223. return "ATA bus error";
  1224. if (err_mask & AC_ERR_TIMEOUT)
  1225. return "timeout";
  1226. if (err_mask & AC_ERR_HSM)
  1227. return "HSM violation";
  1228. if (err_mask & AC_ERR_SYSTEM)
  1229. return "internal error";
  1230. if (err_mask & AC_ERR_MEDIA)
  1231. return "media error";
  1232. if (err_mask & AC_ERR_INVALID)
  1233. return "invalid argument";
  1234. if (err_mask & AC_ERR_DEV)
  1235. return "device error";
  1236. return "unknown error";
  1237. }
  1238. /**
  1239. * ata_read_log_page - read a specific log page
  1240. * @dev: target device
  1241. * @page: page to read
  1242. * @buf: buffer to store read page
  1243. * @sectors: number of sectors to read
  1244. *
  1245. * Read log page using READ_LOG_EXT command.
  1246. *
  1247. * LOCKING:
  1248. * Kernel thread context (may sleep).
  1249. *
  1250. * RETURNS:
  1251. * 0 on success, AC_ERR_* mask otherwise.
  1252. */
  1253. static unsigned int ata_read_log_page(struct ata_device *dev,
  1254. u8 page, void *buf, unsigned int sectors)
  1255. {
  1256. struct ata_taskfile tf;
  1257. unsigned int err_mask;
  1258. DPRINTK("read log page - page %d\n", page);
  1259. ata_tf_init(dev, &tf);
  1260. tf.command = ATA_CMD_READ_LOG_EXT;
  1261. tf.lbal = page;
  1262. tf.nsect = sectors;
  1263. tf.hob_nsect = sectors >> 8;
  1264. tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_LBA48 | ATA_TFLAG_DEVICE;
  1265. tf.protocol = ATA_PROT_PIO;
  1266. err_mask = ata_exec_internal(dev, &tf, NULL, DMA_FROM_DEVICE,
  1267. buf, sectors * ATA_SECT_SIZE, 0);
  1268. DPRINTK("EXIT, err_mask=%x\n", err_mask);
  1269. return err_mask;
  1270. }
  1271. /**
  1272. * ata_eh_read_log_10h - Read log page 10h for NCQ error details
  1273. * @dev: Device to read log page 10h from
  1274. * @tag: Resulting tag of the failed command
  1275. * @tf: Resulting taskfile registers of the failed command
  1276. *
  1277. * Read log page 10h to obtain NCQ error details and clear error
  1278. * condition.
  1279. *
  1280. * LOCKING:
  1281. * Kernel thread context (may sleep).
  1282. *
  1283. * RETURNS:
  1284. * 0 on success, -errno otherwise.
  1285. */
  1286. static int ata_eh_read_log_10h(struct ata_device *dev,
  1287. int *tag, struct ata_taskfile *tf)
  1288. {
  1289. u8 *buf = dev->link->ap->sector_buf;
  1290. unsigned int err_mask;
  1291. u8 csum;
  1292. int i;
  1293. err_mask = ata_read_log_page(dev, ATA_LOG_SATA_NCQ, buf, 1);
  1294. if (err_mask)
  1295. return -EIO;
  1296. csum = 0;
  1297. for (i = 0; i < ATA_SECT_SIZE; i++)
  1298. csum += buf[i];
  1299. if (csum)
  1300. ata_dev_warn(dev, "invalid checksum 0x%x on log page 10h\n",
  1301. csum);
  1302. if (buf[0] & 0x80)
  1303. return -ENOENT;
  1304. *tag = buf[0] & 0x1f;
  1305. tf->command = buf[2];
  1306. tf->feature = buf[3];
  1307. tf->lbal = buf[4];
  1308. tf->lbam = buf[5];
  1309. tf->lbah = buf[6];
  1310. tf->device = buf[7];
  1311. tf->hob_lbal = buf[8];
  1312. tf->hob_lbam = buf[9];
  1313. tf->hob_lbah = buf[10];
  1314. tf->nsect = buf[12];
  1315. tf->hob_nsect = buf[13];
  1316. return 0;
  1317. }
  1318. /**
  1319. * atapi_eh_tur - perform ATAPI TEST_UNIT_READY
  1320. * @dev: target ATAPI device
  1321. * @r_sense_key: out parameter for sense_key
  1322. *
  1323. * Perform ATAPI TEST_UNIT_READY.
  1324. *
  1325. * LOCKING:
  1326. * EH context (may sleep).
  1327. *
  1328. * RETURNS:
  1329. * 0 on success, AC_ERR_* mask on failure.
  1330. */
  1331. static unsigned int atapi_eh_tur(struct ata_device *dev, u8 *r_sense_key)
  1332. {
  1333. u8 cdb[ATAPI_CDB_LEN] = { TEST_UNIT_READY, 0, 0, 0, 0, 0 };
  1334. struct ata_taskfile tf;
  1335. unsigned int err_mask;
  1336. ata_tf_init(dev, &tf);
  1337. tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
  1338. tf.command = ATA_CMD_PACKET;
  1339. tf.protocol = ATAPI_PROT_NODATA;
  1340. err_mask = ata_exec_internal(dev, &tf, cdb, DMA_NONE, NULL, 0, 0);
  1341. if (err_mask == AC_ERR_DEV)
  1342. *r_sense_key = tf.feature >> 4;
  1343. return err_mask;
  1344. }
  1345. /**
  1346. * atapi_eh_request_sense - perform ATAPI REQUEST_SENSE
  1347. * @dev: device to perform REQUEST_SENSE to
  1348. * @sense_buf: result sense data buffer (SCSI_SENSE_BUFFERSIZE bytes long)
  1349. * @dfl_sense_key: default sense key to use
  1350. *
  1351. * Perform ATAPI REQUEST_SENSE after the device reported CHECK
  1352. * SENSE. This function is EH helper.
  1353. *
  1354. * LOCKING:
  1355. * Kernel thread context (may sleep).
  1356. *
  1357. * RETURNS:
  1358. * 0 on success, AC_ERR_* mask on failure
  1359. */
  1360. static unsigned int atapi_eh_request_sense(struct ata_device *dev,
  1361. u8 *sense_buf, u8 dfl_sense_key)
  1362. {
  1363. u8 cdb[ATAPI_CDB_LEN] =
  1364. { REQUEST_SENSE, 0, 0, 0, SCSI_SENSE_BUFFERSIZE, 0 };
  1365. struct ata_port *ap = dev->link->ap;
  1366. struct ata_taskfile tf;
  1367. DPRINTK("ATAPI request sense\n");
  1368. /* FIXME: is this needed? */
  1369. memset(sense_buf, 0, SCSI_SENSE_BUFFERSIZE);
  1370. /* initialize sense_buf with the error register,
  1371. * for the case where they are -not- overwritten
  1372. */
  1373. sense_buf[0] = 0x70;
  1374. sense_buf[2] = dfl_sense_key;
  1375. /* some devices time out if garbage left in tf */
  1376. ata_tf_init(dev, &tf);
  1377. tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
  1378. tf.command = ATA_CMD_PACKET;
  1379. /* is it pointless to prefer PIO for "safety reasons"? */
  1380. if (ap->flags & ATA_FLAG_PIO_DMA) {
  1381. tf.protocol = ATAPI_PROT_DMA;
  1382. tf.feature |= ATAPI_PKT_DMA;
  1383. } else {
  1384. tf.protocol = ATAPI_PROT_PIO;
  1385. tf.lbam = SCSI_SENSE_BUFFERSIZE;
  1386. tf.lbah = 0;
  1387. }
  1388. return ata_exec_internal(dev, &tf, cdb, DMA_FROM_DEVICE,
  1389. sense_buf, SCSI_SENSE_BUFFERSIZE, 0);
  1390. }
  1391. /**
  1392. * ata_eh_analyze_serror - analyze SError for a failed port
  1393. * @link: ATA link to analyze SError for
  1394. *
  1395. * Analyze SError if available and further determine cause of
  1396. * failure.
  1397. *
  1398. * LOCKING:
  1399. * None.
  1400. */
  1401. static void ata_eh_analyze_serror(struct ata_link *link)
  1402. {
  1403. struct ata_eh_context *ehc = &link->eh_context;
  1404. u32 serror = ehc->i.serror;
  1405. unsigned int err_mask = 0, action = 0;
  1406. u32 hotplug_mask;
  1407. if (serror & (SERR_PERSISTENT | SERR_DATA)) {
  1408. err_mask |= AC_ERR_ATA_BUS;
  1409. action |= ATA_EH_RESET;
  1410. }
  1411. if (serror & SERR_PROTOCOL) {
  1412. err_mask |= AC_ERR_HSM;
  1413. action |= ATA_EH_RESET;
  1414. }
  1415. if (serror & SERR_INTERNAL) {
  1416. err_mask |= AC_ERR_SYSTEM;
  1417. action |= ATA_EH_RESET;
  1418. }
  1419. /* Determine whether a hotplug event has occurred. Both
  1420. * SError.N/X are considered hotplug events for enabled or
  1421. * host links. For disabled PMP links, only N bit is
  1422. * considered as X bit is left at 1 for link plugging.
  1423. */
  1424. if (link->lpm_policy > ATA_LPM_MAX_POWER)
  1425. hotplug_mask = 0; /* hotplug doesn't work w/ LPM */
  1426. else if (!(link->flags & ATA_LFLAG_DISABLED) || ata_is_host_link(link))
  1427. hotplug_mask = SERR_PHYRDY_CHG | SERR_DEV_XCHG;
  1428. else
  1429. hotplug_mask = SERR_PHYRDY_CHG;
  1430. if (serror & hotplug_mask)
  1431. ata_ehi_hotplugged(&ehc->i);
  1432. ehc->i.err_mask |= err_mask;
  1433. ehc->i.action |= action;
  1434. }
  1435. /**
  1436. * ata_eh_analyze_ncq_error - analyze NCQ error
  1437. * @link: ATA link to analyze NCQ error for
  1438. *
  1439. * Read log page 10h, determine the offending qc and acquire
  1440. * error status TF. For NCQ device errors, all LLDDs have to do
  1441. * is setting AC_ERR_DEV in ehi->err_mask. This function takes
  1442. * care of the rest.
  1443. *
  1444. * LOCKING:
  1445. * Kernel thread context (may sleep).
  1446. */
  1447. void ata_eh_analyze_ncq_error(struct ata_link *link)
  1448. {
  1449. struct ata_port *ap = link->ap;
  1450. struct ata_eh_context *ehc = &link->eh_context;
  1451. struct ata_device *dev = link->device;
  1452. struct ata_queued_cmd *qc;
  1453. struct ata_taskfile tf;
  1454. int tag, rc;
  1455. /* if frozen, we can't do much */
  1456. if (ap->pflags & ATA_PFLAG_FROZEN)
  1457. return;
  1458. /* is it NCQ device error? */
  1459. if (!link->sactive || !(ehc->i.err_mask & AC_ERR_DEV))
  1460. return;
  1461. /* has LLDD analyzed already? */
  1462. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  1463. qc = __ata_qc_from_tag(ap, tag);
  1464. if (!(qc->flags & ATA_QCFLAG_FAILED))
  1465. continue;
  1466. if (qc->err_mask)
  1467. return;
  1468. }
  1469. /* okay, this error is ours */
  1470. memset(&tf, 0, sizeof(tf));
  1471. rc = ata_eh_read_log_10h(dev, &tag, &tf);
  1472. if (rc) {
  1473. ata_link_err(link, "failed to read log page 10h (errno=%d)\n",
  1474. rc);
  1475. return;
  1476. }
  1477. if (!(link->sactive & (1 << tag))) {
  1478. ata_link_err(link, "log page 10h reported inactive tag %d\n",
  1479. tag);
  1480. return;
  1481. }
  1482. /* we've got the perpetrator, condemn it */
  1483. qc = __ata_qc_from_tag(ap, tag);
  1484. memcpy(&qc->result_tf, &tf, sizeof(tf));
  1485. qc->result_tf.flags = ATA_TFLAG_ISADDR | ATA_TFLAG_LBA | ATA_TFLAG_LBA48;
  1486. qc->err_mask |= AC_ERR_DEV | AC_ERR_NCQ;
  1487. ehc->i.err_mask &= ~AC_ERR_DEV;
  1488. }
  1489. /**
  1490. * ata_eh_analyze_tf - analyze taskfile of a failed qc
  1491. * @qc: qc to analyze
  1492. * @tf: Taskfile registers to analyze
  1493. *
  1494. * Analyze taskfile of @qc and further determine cause of
  1495. * failure. This function also requests ATAPI sense data if
  1496. * available.
  1497. *
  1498. * LOCKING:
  1499. * Kernel thread context (may sleep).
  1500. *
  1501. * RETURNS:
  1502. * Determined recovery action
  1503. */
  1504. static unsigned int ata_eh_analyze_tf(struct ata_queued_cmd *qc,
  1505. const struct ata_taskfile *tf)
  1506. {
  1507. unsigned int tmp, action = 0;
  1508. u8 stat = tf->command, err = tf->feature;
  1509. if ((stat & (ATA_BUSY | ATA_DRQ | ATA_DRDY)) != ATA_DRDY) {
  1510. qc->err_mask |= AC_ERR_HSM;
  1511. return ATA_EH_RESET;
  1512. }
  1513. if (stat & (ATA_ERR | ATA_DF))
  1514. qc->err_mask |= AC_ERR_DEV;
  1515. else
  1516. return 0;
  1517. switch (qc->dev->class) {
  1518. case ATA_DEV_ATA:
  1519. if (err & ATA_ICRC)
  1520. qc->err_mask |= AC_ERR_ATA_BUS;
  1521. if (err & ATA_UNC)
  1522. qc->err_mask |= AC_ERR_MEDIA;
  1523. if (err & ATA_IDNF)
  1524. qc->err_mask |= AC_ERR_INVALID;
  1525. break;
  1526. case ATA_DEV_ATAPI:
  1527. if (!(qc->ap->pflags & ATA_PFLAG_FROZEN)) {
  1528. tmp = atapi_eh_request_sense(qc->dev,
  1529. qc->scsicmd->sense_buffer,
  1530. qc->result_tf.feature >> 4);
  1531. if (!tmp) {
  1532. /* ATA_QCFLAG_SENSE_VALID is used to
  1533. * tell atapi_qc_complete() that sense
  1534. * data is already valid.
  1535. *
  1536. * TODO: interpret sense data and set
  1537. * appropriate err_mask.
  1538. */
  1539. qc->flags |= ATA_QCFLAG_SENSE_VALID;
  1540. } else
  1541. qc->err_mask |= tmp;
  1542. }
  1543. }
  1544. if (qc->err_mask & (AC_ERR_HSM | AC_ERR_TIMEOUT | AC_ERR_ATA_BUS))
  1545. action |= ATA_EH_RESET;
  1546. return action;
  1547. }
  1548. static int ata_eh_categorize_error(unsigned int eflags, unsigned int err_mask,
  1549. int *xfer_ok)
  1550. {
  1551. int base = 0;
  1552. if (!(eflags & ATA_EFLAG_DUBIOUS_XFER))
  1553. *xfer_ok = 1;
  1554. if (!*xfer_ok)
  1555. base = ATA_ECAT_DUBIOUS_NONE;
  1556. if (err_mask & AC_ERR_ATA_BUS)
  1557. return base + ATA_ECAT_ATA_BUS;
  1558. if (err_mask & AC_ERR_TIMEOUT)
  1559. return base + ATA_ECAT_TOUT_HSM;
  1560. if (eflags & ATA_EFLAG_IS_IO) {
  1561. if (err_mask & AC_ERR_HSM)
  1562. return base + ATA_ECAT_TOUT_HSM;
  1563. if ((err_mask &
  1564. (AC_ERR_DEV|AC_ERR_MEDIA|AC_ERR_INVALID)) == AC_ERR_DEV)
  1565. return base + ATA_ECAT_UNK_DEV;
  1566. }
  1567. return 0;
  1568. }
  1569. struct speed_down_verdict_arg {
  1570. u64 since;
  1571. int xfer_ok;
  1572. int nr_errors[ATA_ECAT_NR];
  1573. };
  1574. static int speed_down_verdict_cb(struct ata_ering_entry *ent, void *void_arg)
  1575. {
  1576. struct speed_down_verdict_arg *arg = void_arg;
  1577. int cat;
  1578. if ((ent->eflags & ATA_EFLAG_OLD_ER) || (ent->timestamp < arg->since))
  1579. return -1;
  1580. cat = ata_eh_categorize_error(ent->eflags, ent->err_mask,
  1581. &arg->xfer_ok);
  1582. arg->nr_errors[cat]++;
  1583. return 0;
  1584. }
  1585. /**
  1586. * ata_eh_speed_down_verdict - Determine speed down verdict
  1587. * @dev: Device of interest
  1588. *
  1589. * This function examines error ring of @dev and determines
  1590. * whether NCQ needs to be turned off, transfer speed should be
  1591. * stepped down, or falling back to PIO is necessary.
  1592. *
  1593. * ECAT_ATA_BUS : ATA_BUS error for any command
  1594. *
  1595. * ECAT_TOUT_HSM : TIMEOUT for any command or HSM violation for
  1596. * IO commands
  1597. *
  1598. * ECAT_UNK_DEV : Unknown DEV error for IO commands
  1599. *
  1600. * ECAT_DUBIOUS_* : Identical to above three but occurred while
  1601. * data transfer hasn't been verified.
  1602. *
  1603. * Verdicts are
  1604. *
  1605. * NCQ_OFF : Turn off NCQ.
  1606. *
  1607. * SPEED_DOWN : Speed down transfer speed but don't fall back
  1608. * to PIO.
  1609. *
  1610. * FALLBACK_TO_PIO : Fall back to PIO.
  1611. *
  1612. * Even if multiple verdicts are returned, only one action is
  1613. * taken per error. An action triggered by non-DUBIOUS errors
  1614. * clears ering, while one triggered by DUBIOUS_* errors doesn't.
  1615. * This is to expedite speed down decisions right after device is
  1616. * initially configured.
  1617. *
  1618. * The followings are speed down rules. #1 and #2 deal with
  1619. * DUBIOUS errors.
  1620. *
  1621. * 1. If more than one DUBIOUS_ATA_BUS or DUBIOUS_TOUT_HSM errors
  1622. * occurred during last 5 mins, SPEED_DOWN and FALLBACK_TO_PIO.
  1623. *
  1624. * 2. If more than one DUBIOUS_TOUT_HSM or DUBIOUS_UNK_DEV errors
  1625. * occurred during last 5 mins, NCQ_OFF.
  1626. *
  1627. * 3. If more than 8 ATA_BUS, TOUT_HSM or UNK_DEV errors
  1628. * occurred during last 5 mins, FALLBACK_TO_PIO
  1629. *
  1630. * 4. If more than 3 TOUT_HSM or UNK_DEV errors occurred
  1631. * during last 10 mins, NCQ_OFF.
  1632. *
  1633. * 5. If more than 3 ATA_BUS or TOUT_HSM errors, or more than 6
  1634. * UNK_DEV errors occurred during last 10 mins, SPEED_DOWN.
  1635. *
  1636. * LOCKING:
  1637. * Inherited from caller.
  1638. *
  1639. * RETURNS:
  1640. * OR of ATA_EH_SPDN_* flags.
  1641. */
  1642. static unsigned int ata_eh_speed_down_verdict(struct ata_device *dev)
  1643. {
  1644. const u64 j5mins = 5LLU * 60 * HZ, j10mins = 10LLU * 60 * HZ;
  1645. u64 j64 = get_jiffies_64();
  1646. struct speed_down_verdict_arg arg;
  1647. unsigned int verdict = 0;
  1648. /* scan past 5 mins of error history */
  1649. memset(&arg, 0, sizeof(arg));
  1650. arg.since = j64 - min(j64, j5mins);
  1651. ata_ering_map(&dev->ering, speed_down_verdict_cb, &arg);
  1652. if (arg.nr_errors[ATA_ECAT_DUBIOUS_ATA_BUS] +
  1653. arg.nr_errors[ATA_ECAT_DUBIOUS_TOUT_HSM] > 1)
  1654. verdict |= ATA_EH_SPDN_SPEED_DOWN |
  1655. ATA_EH_SPDN_FALLBACK_TO_PIO | ATA_EH_SPDN_KEEP_ERRORS;
  1656. if (arg.nr_errors[ATA_ECAT_DUBIOUS_TOUT_HSM] +
  1657. arg.nr_errors[ATA_ECAT_DUBIOUS_UNK_DEV] > 1)
  1658. verdict |= ATA_EH_SPDN_NCQ_OFF | ATA_EH_SPDN_KEEP_ERRORS;
  1659. if (arg.nr_errors[ATA_ECAT_ATA_BUS] +
  1660. arg.nr_errors[ATA_ECAT_TOUT_HSM] +
  1661. arg.nr_errors[ATA_ECAT_UNK_DEV] > 6)
  1662. verdict |= ATA_EH_SPDN_FALLBACK_TO_PIO;
  1663. /* scan past 10 mins of error history */
  1664. memset(&arg, 0, sizeof(arg));
  1665. arg.since = j64 - min(j64, j10mins);
  1666. ata_ering_map(&dev->ering, speed_down_verdict_cb, &arg);
  1667. if (arg.nr_errors[ATA_ECAT_TOUT_HSM] +
  1668. arg.nr_errors[ATA_ECAT_UNK_DEV] > 3)
  1669. verdict |= ATA_EH_SPDN_NCQ_OFF;
  1670. if (arg.nr_errors[ATA_ECAT_ATA_BUS] +
  1671. arg.nr_errors[ATA_ECAT_TOUT_HSM] > 3 ||
  1672. arg.nr_errors[ATA_ECAT_UNK_DEV] > 6)
  1673. verdict |= ATA_EH_SPDN_SPEED_DOWN;
  1674. return verdict;
  1675. }
  1676. /**
  1677. * ata_eh_speed_down - record error and speed down if necessary
  1678. * @dev: Failed device
  1679. * @eflags: mask of ATA_EFLAG_* flags
  1680. * @err_mask: err_mask of the error
  1681. *
  1682. * Record error and examine error history to determine whether
  1683. * adjusting transmission speed is necessary. It also sets
  1684. * transmission limits appropriately if such adjustment is
  1685. * necessary.
  1686. *
  1687. * LOCKING:
  1688. * Kernel thread context (may sleep).
  1689. *
  1690. * RETURNS:
  1691. * Determined recovery action.
  1692. */
  1693. static unsigned int ata_eh_speed_down(struct ata_device *dev,
  1694. unsigned int eflags, unsigned int err_mask)
  1695. {
  1696. struct ata_link *link = ata_dev_phys_link(dev);
  1697. int xfer_ok = 0;
  1698. unsigned int verdict;
  1699. unsigned int action = 0;
  1700. /* don't bother if Cat-0 error */
  1701. if (ata_eh_categorize_error(eflags, err_mask, &xfer_ok) == 0)
  1702. return 0;
  1703. /* record error and determine whether speed down is necessary */
  1704. ata_ering_record(&dev->ering, eflags, err_mask);
  1705. verdict = ata_eh_speed_down_verdict(dev);
  1706. /* turn off NCQ? */
  1707. if ((verdict & ATA_EH_SPDN_NCQ_OFF) &&
  1708. (dev->flags & (ATA_DFLAG_PIO | ATA_DFLAG_NCQ |
  1709. ATA_DFLAG_NCQ_OFF)) == ATA_DFLAG_NCQ) {
  1710. dev->flags |= ATA_DFLAG_NCQ_OFF;
  1711. ata_dev_warn(dev, "NCQ disabled due to excessive errors\n");
  1712. goto done;
  1713. }
  1714. /* speed down? */
  1715. if (verdict & ATA_EH_SPDN_SPEED_DOWN) {
  1716. /* speed down SATA link speed if possible */
  1717. if (sata_down_spd_limit(link, 0) == 0) {
  1718. action |= ATA_EH_RESET;
  1719. goto done;
  1720. }
  1721. /* lower transfer mode */
  1722. if (dev->spdn_cnt < 2) {
  1723. static const int dma_dnxfer_sel[] =
  1724. { ATA_DNXFER_DMA, ATA_DNXFER_40C };
  1725. static const int pio_dnxfer_sel[] =
  1726. { ATA_DNXFER_PIO, ATA_DNXFER_FORCE_PIO0 };
  1727. int sel;
  1728. if (dev->xfer_shift != ATA_SHIFT_PIO)
  1729. sel = dma_dnxfer_sel[dev->spdn_cnt];
  1730. else
  1731. sel = pio_dnxfer_sel[dev->spdn_cnt];
  1732. dev->spdn_cnt++;
  1733. if (ata_down_xfermask_limit(dev, sel) == 0) {
  1734. action |= ATA_EH_RESET;
  1735. goto done;
  1736. }
  1737. }
  1738. }
  1739. /* Fall back to PIO? Slowing down to PIO is meaningless for
  1740. * SATA ATA devices. Consider it only for PATA and SATAPI.
  1741. */
  1742. if ((verdict & ATA_EH_SPDN_FALLBACK_TO_PIO) && (dev->spdn_cnt >= 2) &&
  1743. (link->ap->cbl != ATA_CBL_SATA || dev->class == ATA_DEV_ATAPI) &&
  1744. (dev->xfer_shift != ATA_SHIFT_PIO)) {
  1745. if (ata_down_xfermask_limit(dev, ATA_DNXFER_FORCE_PIO) == 0) {
  1746. dev->spdn_cnt = 0;
  1747. action |= ATA_EH_RESET;
  1748. goto done;
  1749. }
  1750. }
  1751. return 0;
  1752. done:
  1753. /* device has been slowed down, blow error history */
  1754. if (!(verdict & ATA_EH_SPDN_KEEP_ERRORS))
  1755. ata_ering_clear(&dev->ering);
  1756. return action;
  1757. }
  1758. /**
  1759. * ata_eh_link_autopsy - analyze error and determine recovery action
  1760. * @link: host link to perform autopsy on
  1761. *
  1762. * Analyze why @link failed and determine which recovery actions
  1763. * are needed. This function also sets more detailed AC_ERR_*
  1764. * values and fills sense data for ATAPI CHECK SENSE.
  1765. *
  1766. * LOCKING:
  1767. * Kernel thread context (may sleep).
  1768. */
  1769. static void ata_eh_link_autopsy(struct ata_link *link)
  1770. {
  1771. struct ata_port *ap = link->ap;
  1772. struct ata_eh_context *ehc = &link->eh_context;
  1773. struct ata_device *dev;
  1774. unsigned int all_err_mask = 0, eflags = 0;
  1775. int tag;
  1776. u32 serror;
  1777. int rc;
  1778. DPRINTK("ENTER\n");
  1779. if (ehc->i.flags & ATA_EHI_NO_AUTOPSY)
  1780. return;
  1781. /* obtain and analyze SError */
  1782. rc = sata_scr_read(link, SCR_ERROR, &serror);
  1783. if (rc == 0) {
  1784. ehc->i.serror |= serror;
  1785. ata_eh_analyze_serror(link);
  1786. } else if (rc != -EOPNOTSUPP) {
  1787. /* SError read failed, force reset and probing */
  1788. ehc->i.probe_mask |= ATA_ALL_DEVICES;
  1789. ehc->i.action |= ATA_EH_RESET;
  1790. ehc->i.err_mask |= AC_ERR_OTHER;
  1791. }
  1792. /* analyze NCQ failure */
  1793. ata_eh_analyze_ncq_error(link);
  1794. /* any real error trumps AC_ERR_OTHER */
  1795. if (ehc->i.err_mask & ~AC_ERR_OTHER)
  1796. ehc->i.err_mask &= ~AC_ERR_OTHER;
  1797. all_err_mask |= ehc->i.err_mask;
  1798. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  1799. struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
  1800. if (!(qc->flags & ATA_QCFLAG_FAILED) ||
  1801. ata_dev_phys_link(qc->dev) != link)
  1802. continue;
  1803. /* inherit upper level err_mask */
  1804. qc->err_mask |= ehc->i.err_mask;
  1805. /* analyze TF */
  1806. ehc->i.action |= ata_eh_analyze_tf(qc, &qc->result_tf);
  1807. /* DEV errors are probably spurious in case of ATA_BUS error */
  1808. if (qc->err_mask & AC_ERR_ATA_BUS)
  1809. qc->err_mask &= ~(AC_ERR_DEV | AC_ERR_MEDIA |
  1810. AC_ERR_INVALID);
  1811. /* any real error trumps unknown error */
  1812. if (qc->err_mask & ~AC_ERR_OTHER)
  1813. qc->err_mask &= ~AC_ERR_OTHER;
  1814. /* SENSE_VALID trumps dev/unknown error and revalidation */
  1815. if (qc->flags & ATA_QCFLAG_SENSE_VALID)
  1816. qc->err_mask &= ~(AC_ERR_DEV | AC_ERR_OTHER);
  1817. /* determine whether the command is worth retrying */
  1818. if (qc->flags & ATA_QCFLAG_IO ||
  1819. (!(qc->err_mask & AC_ERR_INVALID) &&
  1820. qc->err_mask != AC_ERR_DEV))
  1821. qc->flags |= ATA_QCFLAG_RETRY;
  1822. /* accumulate error info */
  1823. ehc->i.dev = qc->dev;
  1824. all_err_mask |= qc->err_mask;
  1825. if (qc->flags & ATA_QCFLAG_IO)
  1826. eflags |= ATA_EFLAG_IS_IO;
  1827. }
  1828. /* enforce default EH actions */
  1829. if (ap->pflags & ATA_PFLAG_FROZEN ||
  1830. all_err_mask & (AC_ERR_HSM | AC_ERR_TIMEOUT))
  1831. ehc->i.action |= ATA_EH_RESET;
  1832. else if (((eflags & ATA_EFLAG_IS_IO) && all_err_mask) ||
  1833. (!(eflags & ATA_EFLAG_IS_IO) && (all_err_mask & ~AC_ERR_DEV)))
  1834. ehc->i.action |= ATA_EH_REVALIDATE;
  1835. /* If we have offending qcs and the associated failed device,
  1836. * perform per-dev EH action only on the offending device.
  1837. */
  1838. if (ehc->i.dev) {
  1839. ehc->i.dev_action[ehc->i.dev->devno] |=
  1840. ehc->i.action & ATA_EH_PERDEV_MASK;
  1841. ehc->i.action &= ~ATA_EH_PERDEV_MASK;
  1842. }
  1843. /* propagate timeout to host link */
  1844. if ((all_err_mask & AC_ERR_TIMEOUT) && !ata_is_host_link(link))
  1845. ap->link.eh_context.i.err_mask |= AC_ERR_TIMEOUT;
  1846. /* record error and consider speeding down */
  1847. dev = ehc->i.dev;
  1848. if (!dev && ((ata_link_max_devices(link) == 1 &&
  1849. ata_dev_enabled(link->device))))
  1850. dev = link->device;
  1851. if (dev) {
  1852. if (dev->flags & ATA_DFLAG_DUBIOUS_XFER)
  1853. eflags |= ATA_EFLAG_DUBIOUS_XFER;
  1854. ehc->i.action |= ata_eh_speed_down(dev, eflags, all_err_mask);
  1855. }
  1856. DPRINTK("EXIT\n");
  1857. }
  1858. /**
  1859. * ata_eh_autopsy - analyze error and determine recovery action
  1860. * @ap: host port to perform autopsy on
  1861. *
  1862. * Analyze all links of @ap and determine why they failed and
  1863. * which recovery actions are needed.
  1864. *
  1865. * LOCKING:
  1866. * Kernel thread context (may sleep).
  1867. */
  1868. void ata_eh_autopsy(struct ata_port *ap)
  1869. {
  1870. struct ata_link *link;
  1871. ata_for_each_link(link, ap, EDGE)
  1872. ata_eh_link_autopsy(link);
  1873. /* Handle the frigging slave link. Autopsy is done similarly
  1874. * but actions and flags are transferred over to the master
  1875. * link and handled from there.
  1876. */
  1877. if (ap->slave_link) {
  1878. struct ata_eh_context *mehc = &ap->link.eh_context;
  1879. struct ata_eh_context *sehc = &ap->slave_link->eh_context;
  1880. /* transfer control flags from master to slave */
  1881. sehc->i.flags |= mehc->i.flags & ATA_EHI_TO_SLAVE_MASK;
  1882. /* perform autopsy on the slave link */
  1883. ata_eh_link_autopsy(ap->slave_link);
  1884. /* transfer actions from slave to master and clear slave */
  1885. ata_eh_about_to_do(ap->slave_link, NULL, ATA_EH_ALL_ACTIONS);
  1886. mehc->i.action |= sehc->i.action;
  1887. mehc->i.dev_action[1] |= sehc->i.dev_action[1];
  1888. mehc->i.flags |= sehc->i.flags;
  1889. ata_eh_done(ap->slave_link, NULL, ATA_EH_ALL_ACTIONS);
  1890. }
  1891. /* Autopsy of fanout ports can affect host link autopsy.
  1892. * Perform host link autopsy last.
  1893. */
  1894. if (sata_pmp_attached(ap))
  1895. ata_eh_link_autopsy(&ap->link);
  1896. }
  1897. /**
  1898. * ata_get_cmd_descript - get description for ATA command
  1899. * @command: ATA command code to get description for
  1900. *
  1901. * Return a textual description of the given command, or NULL if the
  1902. * command is not known.
  1903. *
  1904. * LOCKING:
  1905. * None
  1906. */
  1907. const char *ata_get_cmd_descript(u8 command)
  1908. {
  1909. #ifdef CONFIG_ATA_VERBOSE_ERROR
  1910. static const struct
  1911. {
  1912. u8 command;
  1913. const char *text;
  1914. } cmd_descr[] = {
  1915. { ATA_CMD_DEV_RESET, "DEVICE RESET" },
  1916. { ATA_CMD_CHK_POWER, "CHECK POWER MODE" },
  1917. { ATA_CMD_STANDBY, "STANDBY" },
  1918. { ATA_CMD_IDLE, "IDLE" },
  1919. { ATA_CMD_EDD, "EXECUTE DEVICE DIAGNOSTIC" },
  1920. { ATA_CMD_DOWNLOAD_MICRO, "DOWNLOAD MICROCODE" },
  1921. { ATA_CMD_NOP, "NOP" },
  1922. { ATA_CMD_FLUSH, "FLUSH CACHE" },
  1923. { ATA_CMD_FLUSH_EXT, "FLUSH CACHE EXT" },
  1924. { ATA_CMD_ID_ATA, "IDENTIFY DEVICE" },
  1925. { ATA_CMD_ID_ATAPI, "IDENTIFY PACKET DEVICE" },
  1926. { ATA_CMD_SERVICE, "SERVICE" },
  1927. { ATA_CMD_READ, "READ DMA" },
  1928. { ATA_CMD_READ_EXT, "READ DMA EXT" },
  1929. { ATA_CMD_READ_QUEUED, "READ DMA QUEUED" },
  1930. { ATA_CMD_READ_STREAM_EXT, "READ STREAM EXT" },
  1931. { ATA_CMD_READ_STREAM_DMA_EXT, "READ STREAM DMA EXT" },
  1932. { ATA_CMD_WRITE, "WRITE DMA" },
  1933. { ATA_CMD_WRITE_EXT, "WRITE DMA EXT" },
  1934. { ATA_CMD_WRITE_QUEUED, "WRITE DMA QUEUED EXT" },
  1935. { ATA_CMD_WRITE_STREAM_EXT, "WRITE STREAM EXT" },
  1936. { ATA_CMD_WRITE_STREAM_DMA_EXT, "WRITE STREAM DMA EXT" },
  1937. { ATA_CMD_WRITE_FUA_EXT, "WRITE DMA FUA EXT" },
  1938. { ATA_CMD_WRITE_QUEUED_FUA_EXT, "WRITE DMA QUEUED FUA EXT" },
  1939. { ATA_CMD_FPDMA_READ, "READ FPDMA QUEUED" },
  1940. { ATA_CMD_FPDMA_WRITE, "WRITE FPDMA QUEUED" },
  1941. { ATA_CMD_PIO_READ, "READ SECTOR(S)" },
  1942. { ATA_CMD_PIO_READ_EXT, "READ SECTOR(S) EXT" },
  1943. { ATA_CMD_PIO_WRITE, "WRITE SECTOR(S)" },
  1944. { ATA_CMD_PIO_WRITE_EXT, "WRITE SECTOR(S) EXT" },
  1945. { ATA_CMD_READ_MULTI, "READ MULTIPLE" },
  1946. { ATA_CMD_READ_MULTI_EXT, "READ MULTIPLE EXT" },
  1947. { ATA_CMD_WRITE_MULTI, "WRITE MULTIPLE" },
  1948. { ATA_CMD_WRITE_MULTI_EXT, "WRITE MULTIPLE EXT" },
  1949. { ATA_CMD_WRITE_MULTI_FUA_EXT, "WRITE MULTIPLE FUA EXT" },
  1950. { ATA_CMD_SET_FEATURES, "SET FEATURES" },
  1951. { ATA_CMD_SET_MULTI, "SET MULTIPLE MODE" },
  1952. { ATA_CMD_VERIFY, "READ VERIFY SECTOR(S)" },
  1953. { ATA_CMD_VERIFY_EXT, "READ VERIFY SECTOR(S) EXT" },
  1954. { ATA_CMD_WRITE_UNCORR_EXT, "WRITE UNCORRECTABLE EXT" },
  1955. { ATA_CMD_STANDBYNOW1, "STANDBY IMMEDIATE" },
  1956. { ATA_CMD_IDLEIMMEDIATE, "IDLE IMMEDIATE" },
  1957. { ATA_CMD_SLEEP, "SLEEP" },
  1958. { ATA_CMD_INIT_DEV_PARAMS, "INITIALIZE DEVICE PARAMETERS" },
  1959. { ATA_CMD_READ_NATIVE_MAX, "READ NATIVE MAX ADDRESS" },
  1960. { ATA_CMD_READ_NATIVE_MAX_EXT, "READ NATIVE MAX ADDRESS EXT" },
  1961. { ATA_CMD_SET_MAX, "SET MAX ADDRESS" },
  1962. { ATA_CMD_SET_MAX_EXT, "SET MAX ADDRESS EXT" },
  1963. { ATA_CMD_READ_LOG_EXT, "READ LOG EXT" },
  1964. { ATA_CMD_WRITE_LOG_EXT, "WRITE LOG EXT" },
  1965. { ATA_CMD_READ_LOG_DMA_EXT, "READ LOG DMA EXT" },
  1966. { ATA_CMD_WRITE_LOG_DMA_EXT, "WRITE LOG DMA EXT" },
  1967. { ATA_CMD_TRUSTED_RCV, "TRUSTED RECEIVE" },
  1968. { ATA_CMD_TRUSTED_RCV_DMA, "TRUSTED RECEIVE DMA" },
  1969. { ATA_CMD_TRUSTED_SND, "TRUSTED SEND" },
  1970. { ATA_CMD_TRUSTED_SND_DMA, "TRUSTED SEND DMA" },
  1971. { ATA_CMD_PMP_READ, "READ BUFFER" },
  1972. { ATA_CMD_PMP_WRITE, "WRITE BUFFER" },
  1973. { ATA_CMD_CONF_OVERLAY, "DEVICE CONFIGURATION OVERLAY" },
  1974. { ATA_CMD_SEC_SET_PASS, "SECURITY SET PASSWORD" },
  1975. { ATA_CMD_SEC_UNLOCK, "SECURITY UNLOCK" },
  1976. { ATA_CMD_SEC_ERASE_PREP, "SECURITY ERASE PREPARE" },
  1977. { ATA_CMD_SEC_ERASE_UNIT, "SECURITY ERASE UNIT" },
  1978. { ATA_CMD_SEC_FREEZE_LOCK, "SECURITY FREEZE LOCK" },
  1979. { ATA_CMD_SEC_DISABLE_PASS, "SECURITY DISABLE PASSWORD" },
  1980. { ATA_CMD_CONFIG_STREAM, "CONFIGURE STREAM" },
  1981. { ATA_CMD_SMART, "SMART" },
  1982. { ATA_CMD_MEDIA_LOCK, "DOOR LOCK" },
  1983. { ATA_CMD_MEDIA_UNLOCK, "DOOR UNLOCK" },
  1984. { ATA_CMD_DSM, "DATA SET MANAGEMENT" },
  1985. { ATA_CMD_CHK_MED_CRD_TYP, "CHECK MEDIA CARD TYPE" },
  1986. { ATA_CMD_CFA_REQ_EXT_ERR, "CFA REQUEST EXTENDED ERROR" },
  1987. { ATA_CMD_CFA_WRITE_NE, "CFA WRITE SECTORS WITHOUT ERASE" },
  1988. { ATA_CMD_CFA_TRANS_SECT, "CFA TRANSLATE SECTOR" },
  1989. { ATA_CMD_CFA_ERASE, "CFA ERASE SECTORS" },
  1990. { ATA_CMD_CFA_WRITE_MULT_NE, "CFA WRITE MULTIPLE WITHOUT ERASE" },
  1991. { ATA_CMD_READ_LONG, "READ LONG (with retries)" },
  1992. { ATA_CMD_READ_LONG_ONCE, "READ LONG (without retries)" },
  1993. { ATA_CMD_WRITE_LONG, "WRITE LONG (with retries)" },
  1994. { ATA_CMD_WRITE_LONG_ONCE, "WRITE LONG (without retries)" },
  1995. { ATA_CMD_RESTORE, "RECALIBRATE" },
  1996. { 0, NULL } /* terminate list */
  1997. };
  1998. unsigned int i;
  1999. for (i = 0; cmd_descr[i].text; i++)
  2000. if (cmd_descr[i].command == command)
  2001. return cmd_descr[i].text;
  2002. #endif
  2003. return NULL;
  2004. }
  2005. /**
  2006. * ata_eh_link_report - report error handling to user
  2007. * @link: ATA link EH is going on
  2008. *
  2009. * Report EH to user.
  2010. *
  2011. * LOCKING:
  2012. * None.
  2013. */
  2014. static void ata_eh_link_report(struct ata_link *link)
  2015. {
  2016. struct ata_port *ap = link->ap;
  2017. struct ata_eh_context *ehc = &link->eh_context;
  2018. const char *frozen, *desc;
  2019. char tries_buf[6];
  2020. int tag, nr_failed = 0;
  2021. if (ehc->i.flags & ATA_EHI_QUIET)
  2022. return;
  2023. desc = NULL;
  2024. if (ehc->i.desc[0] != '\0')
  2025. desc = ehc->i.desc;
  2026. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  2027. struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
  2028. if (!(qc->flags & ATA_QCFLAG_FAILED) ||
  2029. ata_dev_phys_link(qc->dev) != link ||
  2030. ((qc->flags & ATA_QCFLAG_QUIET) &&
  2031. qc->err_mask == AC_ERR_DEV))
  2032. continue;
  2033. if (qc->flags & ATA_QCFLAG_SENSE_VALID && !qc->err_mask)
  2034. continue;
  2035. nr_failed++;
  2036. }
  2037. if (!nr_failed && !ehc->i.err_mask)
  2038. return;
  2039. frozen = "";
  2040. if (ap->pflags & ATA_PFLAG_FROZEN)
  2041. frozen = " frozen";
  2042. memset(tries_buf, 0, sizeof(tries_buf));
  2043. if (ap->eh_tries < ATA_EH_MAX_TRIES)
  2044. snprintf(tries_buf, sizeof(tries_buf) - 1, " t%d",
  2045. ap->eh_tries);
  2046. if (ehc->i.dev) {
  2047. ata_dev_err(ehc->i.dev, "exception Emask 0x%x "
  2048. "SAct 0x%x SErr 0x%x action 0x%x%s%s\n",
  2049. ehc->i.err_mask, link->sactive, ehc->i.serror,
  2050. ehc->i.action, frozen, tries_buf);
  2051. if (desc)
  2052. ata_dev_err(ehc->i.dev, "%s\n", desc);
  2053. } else {
  2054. ata_link_err(link, "exception Emask 0x%x "
  2055. "SAct 0x%x SErr 0x%x action 0x%x%s%s\n",
  2056. ehc->i.err_mask, link->sactive, ehc->i.serror,
  2057. ehc->i.action, frozen, tries_buf);
  2058. if (desc)
  2059. ata_link_err(link, "%s\n", desc);
  2060. }
  2061. #ifdef CONFIG_ATA_VERBOSE_ERROR
  2062. if (ehc->i.serror)
  2063. ata_link_err(link,
  2064. "SError: { %s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s}\n",
  2065. ehc->i.serror & SERR_DATA_RECOVERED ? "RecovData " : "",
  2066. ehc->i.serror & SERR_COMM_RECOVERED ? "RecovComm " : "",
  2067. ehc->i.serror & SERR_DATA ? "UnrecovData " : "",
  2068. ehc->i.serror & SERR_PERSISTENT ? "Persist " : "",
  2069. ehc->i.serror & SERR_PROTOCOL ? "Proto " : "",
  2070. ehc->i.serror & SERR_INTERNAL ? "HostInt " : "",
  2071. ehc->i.serror & SERR_PHYRDY_CHG ? "PHYRdyChg " : "",
  2072. ehc->i.serror & SERR_PHY_INT_ERR ? "PHYInt " : "",
  2073. ehc->i.serror & SERR_COMM_WAKE ? "CommWake " : "",
  2074. ehc->i.serror & SERR_10B_8B_ERR ? "10B8B " : "",
  2075. ehc->i.serror & SERR_DISPARITY ? "Dispar " : "",
  2076. ehc->i.serror & SERR_CRC ? "BadCRC " : "",
  2077. ehc->i.serror & SERR_HANDSHAKE ? "Handshk " : "",
  2078. ehc->i.serror & SERR_LINK_SEQ_ERR ? "LinkSeq " : "",
  2079. ehc->i.serror & SERR_TRANS_ST_ERROR ? "TrStaTrns " : "",
  2080. ehc->i.serror & SERR_UNRECOG_FIS ? "UnrecFIS " : "",
  2081. ehc->i.serror & SERR_DEV_XCHG ? "DevExch " : "");
  2082. #endif
  2083. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  2084. struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
  2085. struct ata_taskfile *cmd = &qc->tf, *res = &qc->result_tf;
  2086. const u8 *cdb = qc->cdb;
  2087. char data_buf[20] = "";
  2088. char cdb_buf[70] = "";
  2089. if (!(qc->flags & ATA_QCFLAG_FAILED) ||
  2090. ata_dev_phys_link(qc->dev) != link || !qc->err_mask)
  2091. continue;
  2092. if (qc->dma_dir != DMA_NONE) {
  2093. static const char *dma_str[] = {
  2094. [DMA_BIDIRECTIONAL] = "bidi",
  2095. [DMA_TO_DEVICE] = "out",
  2096. [DMA_FROM_DEVICE] = "in",
  2097. };
  2098. static const char *prot_str[] = {
  2099. [ATA_PROT_PIO] = "pio",
  2100. [ATA_PROT_DMA] = "dma",
  2101. [ATA_PROT_NCQ] = "ncq",
  2102. [ATAPI_PROT_PIO] = "pio",
  2103. [ATAPI_PROT_DMA] = "dma",
  2104. };
  2105. snprintf(data_buf, sizeof(data_buf), " %s %u %s",
  2106. prot_str[qc->tf.protocol], qc->nbytes,
  2107. dma_str[qc->dma_dir]);
  2108. }
  2109. if (ata_is_atapi(qc->tf.protocol)) {
  2110. if (qc->scsicmd)
  2111. scsi_print_command(qc->scsicmd);
  2112. else
  2113. snprintf(cdb_buf, sizeof(cdb_buf),
  2114. "cdb %02x %02x %02x %02x %02x %02x %02x %02x "
  2115. "%02x %02x %02x %02x %02x %02x %02x %02x\n ",
  2116. cdb[0], cdb[1], cdb[2], cdb[3],
  2117. cdb[4], cdb[5], cdb[6], cdb[7],
  2118. cdb[8], cdb[9], cdb[10], cdb[11],
  2119. cdb[12], cdb[13], cdb[14], cdb[15]);
  2120. } else {
  2121. const char *descr = ata_get_cmd_descript(cmd->command);
  2122. if (descr)
  2123. ata_dev_err(qc->dev, "failed command: %s\n",
  2124. descr);
  2125. }
  2126. ata_dev_err(qc->dev,
  2127. "cmd %02x/%02x:%02x:%02x:%02x:%02x/%02x:%02x:%02x:%02x:%02x/%02x "
  2128. "tag %d%s\n %s"
  2129. "res %02x/%02x:%02x:%02x:%02x:%02x/%02x:%02x:%02x:%02x:%02x/%02x "
  2130. "Emask 0x%x (%s)%s\n",
  2131. cmd->command, cmd->feature, cmd->nsect,
  2132. cmd->lbal, cmd->lbam, cmd->lbah,
  2133. cmd->hob_feature, cmd->hob_nsect,
  2134. cmd->hob_lbal, cmd->hob_lbam, cmd->hob_lbah,
  2135. cmd->device, qc->tag, data_buf, cdb_buf,
  2136. res->command, res->feature, res->nsect,
  2137. res->lbal, res->lbam, res->lbah,
  2138. res->hob_feature, res->hob_nsect,
  2139. res->hob_lbal, res->hob_lbam, res->hob_lbah,
  2140. res->device, qc->err_mask, ata_err_string(qc->err_mask),
  2141. qc->err_mask & AC_ERR_NCQ ? " <F>" : "");
  2142. #ifdef CONFIG_ATA_VERBOSE_ERROR
  2143. if (res->command & (ATA_BUSY | ATA_DRDY | ATA_DF | ATA_DRQ |
  2144. ATA_ERR)) {
  2145. if (res->command & ATA_BUSY)
  2146. ata_dev_err(qc->dev, "status: { Busy }\n");
  2147. else
  2148. ata_dev_err(qc->dev, "status: { %s%s%s%s}\n",
  2149. res->command & ATA_DRDY ? "DRDY " : "",
  2150. res->command & ATA_DF ? "DF " : "",
  2151. res->command & ATA_DRQ ? "DRQ " : "",
  2152. res->command & ATA_ERR ? "ERR " : "");
  2153. }
  2154. if (cmd->command != ATA_CMD_PACKET &&
  2155. (res->feature & (ATA_ICRC | ATA_UNC | ATA_IDNF |
  2156. ATA_ABORTED)))
  2157. ata_dev_err(qc->dev, "error: { %s%s%s%s}\n",
  2158. res->feature & ATA_ICRC ? "ICRC " : "",
  2159. res->feature & ATA_UNC ? "UNC " : "",
  2160. res->feature & ATA_IDNF ? "IDNF " : "",
  2161. res->feature & ATA_ABORTED ? "ABRT " : "");
  2162. #endif
  2163. }
  2164. }
  2165. /**
  2166. * ata_eh_report - report error handling to user
  2167. * @ap: ATA port to report EH about
  2168. *
  2169. * Report EH to user.
  2170. *
  2171. * LOCKING:
  2172. * None.
  2173. */
  2174. void ata_eh_report(struct ata_port *ap)
  2175. {
  2176. struct ata_link *link;
  2177. ata_for_each_link(link, ap, HOST_FIRST)
  2178. ata_eh_link_report(link);
  2179. }
  2180. static int ata_do_reset(struct ata_link *link, ata_reset_fn_t reset,
  2181. unsigned int *classes, unsigned long deadline,
  2182. bool clear_classes)
  2183. {
  2184. struct ata_device *dev;
  2185. if (clear_classes)
  2186. ata_for_each_dev(dev, link, ALL)
  2187. classes[dev->devno] = ATA_DEV_UNKNOWN;
  2188. return reset(link, classes, deadline);
  2189. }
  2190. static int ata_eh_followup_srst_needed(struct ata_link *link, int rc)
  2191. {
  2192. if ((link->flags & ATA_LFLAG_NO_SRST) || ata_link_offline(link))
  2193. return 0;
  2194. if (rc == -EAGAIN)
  2195. return 1;
  2196. if (sata_pmp_supported(link->ap) && ata_is_host_link(link))
  2197. return 1;
  2198. return 0;
  2199. }
  2200. int ata_eh_reset(struct ata_link *link, int classify,
  2201. ata_prereset_fn_t prereset, ata_reset_fn_t softreset,
  2202. ata_reset_fn_t hardreset, ata_postreset_fn_t postreset)
  2203. {
  2204. struct ata_port *ap = link->ap;
  2205. struct ata_link *slave = ap->slave_link;
  2206. struct ata_eh_context *ehc = &link->eh_context;
  2207. struct ata_eh_context *sehc = slave ? &slave->eh_context : NULL;
  2208. unsigned int *classes = ehc->classes;
  2209. unsigned int lflags = link->flags;
  2210. int verbose = !(ehc->i.flags & ATA_EHI_QUIET);
  2211. int max_tries = 0, try = 0;
  2212. struct ata_link *failed_link;
  2213. struct ata_device *dev;
  2214. unsigned long deadline, now;
  2215. ata_reset_fn_t reset;
  2216. unsigned long flags;
  2217. u32 sstatus;
  2218. int nr_unknown, rc;
  2219. /*
  2220. * Prepare to reset
  2221. */
  2222. while (ata_eh_reset_timeouts[max_tries] != ULONG_MAX)
  2223. max_tries++;
  2224. if (link->flags & ATA_LFLAG_NO_HRST)
  2225. hardreset = NULL;
  2226. if (link->flags & ATA_LFLAG_NO_SRST)
  2227. softreset = NULL;
  2228. /* make sure each reset attempt is at least COOL_DOWN apart */
  2229. if (ehc->i.flags & ATA_EHI_DID_RESET) {
  2230. now = jiffies;
  2231. WARN_ON(time_after(ehc->last_reset, now));
  2232. deadline = ata_deadline(ehc->last_reset,
  2233. ATA_EH_RESET_COOL_DOWN);
  2234. if (time_before(now, deadline))
  2235. schedule_timeout_uninterruptible(deadline - now);
  2236. }
  2237. spin_lock_irqsave(ap->lock, flags);
  2238. ap->pflags |= ATA_PFLAG_RESETTING;
  2239. spin_unlock_irqrestore(ap->lock, flags);
  2240. ata_eh_about_to_do(link, NULL, ATA_EH_RESET);
  2241. ata_for_each_dev(dev, link, ALL) {
  2242. /* If we issue an SRST then an ATA drive (not ATAPI)
  2243. * may change configuration and be in PIO0 timing. If
  2244. * we do a hard reset (or are coming from power on)
  2245. * this is true for ATA or ATAPI. Until we've set a
  2246. * suitable controller mode we should not touch the
  2247. * bus as we may be talking too fast.
  2248. */
  2249. dev->pio_mode = XFER_PIO_0;
  2250. dev->dma_mode = 0xff;
  2251. /* If the controller has a pio mode setup function
  2252. * then use it to set the chipset to rights. Don't
  2253. * touch the DMA setup as that will be dealt with when
  2254. * configuring devices.
  2255. */
  2256. if (ap->ops->set_piomode)
  2257. ap->ops->set_piomode(ap, dev);
  2258. }
  2259. /* prefer hardreset */
  2260. reset = NULL;
  2261. ehc->i.action &= ~ATA_EH_RESET;
  2262. if (hardreset) {
  2263. reset = hardreset;
  2264. ehc->i.action |= ATA_EH_HARDRESET;
  2265. } else if (softreset) {
  2266. reset = softreset;
  2267. ehc->i.action |= ATA_EH_SOFTRESET;
  2268. }
  2269. if (prereset) {
  2270. unsigned long deadline = ata_deadline(jiffies,
  2271. ATA_EH_PRERESET_TIMEOUT);
  2272. if (slave) {
  2273. sehc->i.action &= ~ATA_EH_RESET;
  2274. sehc->i.action |= ehc->i.action;
  2275. }
  2276. rc = prereset(link, deadline);
  2277. /* If present, do prereset on slave link too. Reset
  2278. * is skipped iff both master and slave links report
  2279. * -ENOENT or clear ATA_EH_RESET.
  2280. */
  2281. if (slave && (rc == 0 || rc == -ENOENT)) {
  2282. int tmp;
  2283. tmp = prereset(slave, deadline);
  2284. if (tmp != -ENOENT)
  2285. rc = tmp;
  2286. ehc->i.action |= sehc->i.action;
  2287. }
  2288. if (rc) {
  2289. if (rc == -ENOENT) {
  2290. ata_link_dbg(link, "port disabled--ignoring\n");
  2291. ehc->i.action &= ~ATA_EH_RESET;
  2292. ata_for_each_dev(dev, link, ALL)
  2293. classes[dev->devno] = ATA_DEV_NONE;
  2294. rc = 0;
  2295. } else
  2296. ata_link_err(link,
  2297. "prereset failed (errno=%d)\n",
  2298. rc);
  2299. goto out;
  2300. }
  2301. /* prereset() might have cleared ATA_EH_RESET. If so,
  2302. * bang classes, thaw and return.
  2303. */
  2304. if (reset && !(ehc->i.action & ATA_EH_RESET)) {
  2305. ata_for_each_dev(dev, link, ALL)
  2306. classes[dev->devno] = ATA_DEV_NONE;
  2307. if ((ap->pflags & ATA_PFLAG_FROZEN) &&
  2308. ata_is_host_link(link))
  2309. ata_eh_thaw_port(ap);
  2310. rc = 0;
  2311. goto out;
  2312. }
  2313. }
  2314. retry:
  2315. /*
  2316. * Perform reset
  2317. */
  2318. if (ata_is_host_link(link))
  2319. ata_eh_freeze_port(ap);
  2320. deadline = ata_deadline(jiffies, ata_eh_reset_timeouts[try++]);
  2321. if (reset) {
  2322. if (verbose)
  2323. ata_link_info(link, "%s resetting link\n",
  2324. reset == softreset ? "soft" : "hard");
  2325. /* mark that this EH session started with reset */
  2326. ehc->last_reset = jiffies;
  2327. if (reset == hardreset)
  2328. ehc->i.flags |= ATA_EHI_DID_HARDRESET;
  2329. else
  2330. ehc->i.flags |= ATA_EHI_DID_SOFTRESET;
  2331. rc = ata_do_reset(link, reset, classes, deadline, true);
  2332. if (rc && rc != -EAGAIN) {
  2333. failed_link = link;
  2334. goto fail;
  2335. }
  2336. /* hardreset slave link if existent */
  2337. if (slave && reset == hardreset) {
  2338. int tmp;
  2339. if (verbose)
  2340. ata_link_info(slave, "hard resetting link\n");
  2341. ata_eh_about_to_do(slave, NULL, ATA_EH_RESET);
  2342. tmp = ata_do_reset(slave, reset, classes, deadline,
  2343. false);
  2344. switch (tmp) {
  2345. case -EAGAIN:
  2346. rc = -EAGAIN;
  2347. case 0:
  2348. break;
  2349. default:
  2350. failed_link = slave;
  2351. rc = tmp;
  2352. goto fail;
  2353. }
  2354. }
  2355. /* perform follow-up SRST if necessary */
  2356. if (reset == hardreset &&
  2357. ata_eh_followup_srst_needed(link, rc)) {
  2358. reset = softreset;
  2359. if (!reset) {
  2360. ata_link_err(link,
  2361. "follow-up softreset required but no softreset available\n");
  2362. failed_link = link;
  2363. rc = -EINVAL;
  2364. goto fail;
  2365. }
  2366. ata_eh_about_to_do(link, NULL, ATA_EH_RESET);
  2367. rc = ata_do_reset(link, reset, classes, deadline, true);
  2368. if (rc) {
  2369. failed_link = link;
  2370. goto fail;
  2371. }
  2372. }
  2373. } else {
  2374. if (verbose)
  2375. ata_link_info(link,
  2376. "no reset method available, skipping reset\n");
  2377. if (!(lflags & ATA_LFLAG_ASSUME_CLASS))
  2378. lflags |= ATA_LFLAG_ASSUME_ATA;
  2379. }
  2380. /*
  2381. * Post-reset processing
  2382. */
  2383. ata_for_each_dev(dev, link, ALL) {
  2384. /* After the reset, the device state is PIO 0 and the
  2385. * controller state is undefined. Reset also wakes up
  2386. * drives from sleeping mode.
  2387. */
  2388. dev->pio_mode = XFER_PIO_0;
  2389. dev->flags &= ~ATA_DFLAG_SLEEPING;
  2390. if (ata_phys_link_offline(ata_dev_phys_link(dev)))
  2391. continue;
  2392. /* apply class override */
  2393. if (lflags & ATA_LFLAG_ASSUME_ATA)
  2394. classes[dev->devno] = ATA_DEV_ATA;
  2395. else if (lflags & ATA_LFLAG_ASSUME_SEMB)
  2396. classes[dev->devno] = ATA_DEV_SEMB_UNSUP;
  2397. }
  2398. /* record current link speed */
  2399. if (sata_scr_read(link, SCR_STATUS, &sstatus) == 0)
  2400. link->sata_spd = (sstatus >> 4) & 0xf;
  2401. if (slave && sata_scr_read(slave, SCR_STATUS, &sstatus) == 0)
  2402. slave->sata_spd = (sstatus >> 4) & 0xf;
  2403. /* thaw the port */
  2404. if (ata_is_host_link(link))
  2405. ata_eh_thaw_port(ap);
  2406. /* postreset() should clear hardware SError. Although SError
  2407. * is cleared during link resume, clearing SError here is
  2408. * necessary as some PHYs raise hotplug events after SRST.
  2409. * This introduces race condition where hotplug occurs between
  2410. * reset and here. This race is mediated by cross checking
  2411. * link onlineness and classification result later.
  2412. */
  2413. if (postreset) {
  2414. postreset(link, classes);
  2415. if (slave)
  2416. postreset(slave, classes);
  2417. }
  2418. /*
  2419. * Some controllers can't be frozen very well and may set spurious
  2420. * error conditions during reset. Clear accumulated error
  2421. * information and re-thaw the port if frozen. As reset is the
  2422. * final recovery action and we cross check link onlineness against
  2423. * device classification later, no hotplug event is lost by this.
  2424. */
  2425. spin_lock_irqsave(link->ap->lock, flags);
  2426. memset(&link->eh_info, 0, sizeof(link->eh_info));
  2427. if (slave)
  2428. memset(&slave->eh_info, 0, sizeof(link->eh_info));
  2429. ap->pflags &= ~ATA_PFLAG_EH_PENDING;
  2430. spin_unlock_irqrestore(link->ap->lock, flags);
  2431. if (ap->pflags & ATA_PFLAG_FROZEN)
  2432. ata_eh_thaw_port(ap);
  2433. /*
  2434. * Make sure onlineness and classification result correspond.
  2435. * Hotplug could have happened during reset and some
  2436. * controllers fail to wait while a drive is spinning up after
  2437. * being hotplugged causing misdetection. By cross checking
  2438. * link on/offlineness and classification result, those
  2439. * conditions can be reliably detected and retried.
  2440. */
  2441. nr_unknown = 0;
  2442. ata_for_each_dev(dev, link, ALL) {
  2443. if (ata_phys_link_online(ata_dev_phys_link(dev))) {
  2444. if (classes[dev->devno] == ATA_DEV_UNKNOWN) {
  2445. ata_dev_dbg(dev, "link online but device misclassified\n");
  2446. classes[dev->devno] = ATA_DEV_NONE;
  2447. nr_unknown++;
  2448. }
  2449. } else if (ata_phys_link_offline(ata_dev_phys_link(dev))) {
  2450. if (ata_class_enabled(classes[dev->devno]))
  2451. ata_dev_dbg(dev,
  2452. "link offline, clearing class %d to NONE\n",
  2453. classes[dev->devno]);
  2454. classes[dev->devno] = ATA_DEV_NONE;
  2455. } else if (classes[dev->devno] == ATA_DEV_UNKNOWN) {
  2456. ata_dev_dbg(dev,
  2457. "link status unknown, clearing UNKNOWN to NONE\n");
  2458. classes[dev->devno] = ATA_DEV_NONE;
  2459. }
  2460. }
  2461. if (classify && nr_unknown) {
  2462. if (try < max_tries) {
  2463. ata_link_warn(link,
  2464. "link online but %d devices misclassified, retrying\n",
  2465. nr_unknown);
  2466. failed_link = link;
  2467. rc = -EAGAIN;
  2468. goto fail;
  2469. }
  2470. ata_link_warn(link,
  2471. "link online but %d devices misclassified, "
  2472. "device detection might fail\n", nr_unknown);
  2473. }
  2474. /* reset successful, schedule revalidation */
  2475. ata_eh_done(link, NULL, ATA_EH_RESET);
  2476. if (slave)
  2477. ata_eh_done(slave, NULL, ATA_EH_RESET);
  2478. ehc->last_reset = jiffies; /* update to completion time */
  2479. ehc->i.action |= ATA_EH_REVALIDATE;
  2480. link->lpm_policy = ATA_LPM_UNKNOWN; /* reset LPM state */
  2481. rc = 0;
  2482. out:
  2483. /* clear hotplug flag */
  2484. ehc->i.flags &= ~ATA_EHI_HOTPLUGGED;
  2485. if (slave)
  2486. sehc->i.flags &= ~ATA_EHI_HOTPLUGGED;
  2487. spin_lock_irqsave(ap->lock, flags);
  2488. ap->pflags &= ~ATA_PFLAG_RESETTING;
  2489. spin_unlock_irqrestore(ap->lock, flags);
  2490. return rc;
  2491. fail:
  2492. /* if SCR isn't accessible on a fan-out port, PMP needs to be reset */
  2493. if (!ata_is_host_link(link) &&
  2494. sata_scr_read(link, SCR_STATUS, &sstatus))
  2495. rc = -ERESTART;
  2496. if (try >= max_tries) {
  2497. /*
  2498. * Thaw host port even if reset failed, so that the port
  2499. * can be retried on the next phy event. This risks
  2500. * repeated EH runs but seems to be a better tradeoff than
  2501. * shutting down a port after a botched hotplug attempt.
  2502. */
  2503. if (ata_is_host_link(link))
  2504. ata_eh_thaw_port(ap);
  2505. goto out;
  2506. }
  2507. now = jiffies;
  2508. if (time_before(now, deadline)) {
  2509. unsigned long delta = deadline - now;
  2510. ata_link_warn(failed_link,
  2511. "reset failed (errno=%d), retrying in %u secs\n",
  2512. rc, DIV_ROUND_UP(jiffies_to_msecs(delta), 1000));
  2513. ata_eh_release(ap);
  2514. while (delta)
  2515. delta = schedule_timeout_uninterruptible(delta);
  2516. ata_eh_acquire(ap);
  2517. }
  2518. /*
  2519. * While disks spinup behind PMP, some controllers fail sending SRST.
  2520. * They need to be reset - as well as the PMP - before retrying.
  2521. */
  2522. if (rc == -ERESTART) {
  2523. if (ata_is_host_link(link))
  2524. ata_eh_thaw_port(ap);
  2525. goto out;
  2526. }
  2527. if (try == max_tries - 1) {
  2528. sata_down_spd_limit(link, 0);
  2529. if (slave)
  2530. sata_down_spd_limit(slave, 0);
  2531. } else if (rc == -EPIPE)
  2532. sata_down_spd_limit(failed_link, 0);
  2533. if (hardreset)
  2534. reset = hardreset;
  2535. goto retry;
  2536. }
  2537. static inline void ata_eh_pull_park_action(struct ata_port *ap)
  2538. {
  2539. struct ata_link *link;
  2540. struct ata_device *dev;
  2541. unsigned long flags;
  2542. /*
  2543. * This function can be thought of as an extended version of
  2544. * ata_eh_about_to_do() specially crafted to accommodate the
  2545. * requirements of ATA_EH_PARK handling. Since the EH thread
  2546. * does not leave the do {} while () loop in ata_eh_recover as
  2547. * long as the timeout for a park request to *one* device on
  2548. * the port has not expired, and since we still want to pick
  2549. * up park requests to other devices on the same port or
  2550. * timeout updates for the same device, we have to pull
  2551. * ATA_EH_PARK actions from eh_info into eh_context.i
  2552. * ourselves at the beginning of each pass over the loop.
  2553. *
  2554. * Additionally, all write accesses to &ap->park_req_pending
  2555. * through INIT_COMPLETION() (see below) or complete_all()
  2556. * (see ata_scsi_park_store()) are protected by the host lock.
  2557. * As a result we have that park_req_pending.done is zero on
  2558. * exit from this function, i.e. when ATA_EH_PARK actions for
  2559. * *all* devices on port ap have been pulled into the
  2560. * respective eh_context structs. If, and only if,
  2561. * park_req_pending.done is non-zero by the time we reach
  2562. * wait_for_completion_timeout(), another ATA_EH_PARK action
  2563. * has been scheduled for at least one of the devices on port
  2564. * ap and we have to cycle over the do {} while () loop in
  2565. * ata_eh_recover() again.
  2566. */
  2567. spin_lock_irqsave(ap->lock, flags);
  2568. INIT_COMPLETION(ap->park_req_pending);
  2569. ata_for_each_link(link, ap, EDGE) {
  2570. ata_for_each_dev(dev, link, ALL) {
  2571. struct ata_eh_info *ehi = &link->eh_info;
  2572. link->eh_context.i.dev_action[dev->devno] |=
  2573. ehi->dev_action[dev->devno] & ATA_EH_PARK;
  2574. ata_eh_clear_action(link, dev, ehi, ATA_EH_PARK);
  2575. }
  2576. }
  2577. spin_unlock_irqrestore(ap->lock, flags);
  2578. }
  2579. static void ata_eh_park_issue_cmd(struct ata_device *dev, int park)
  2580. {
  2581. struct ata_eh_context *ehc = &dev->link->eh_context;
  2582. struct ata_taskfile tf;
  2583. unsigned int err_mask;
  2584. ata_tf_init(dev, &tf);
  2585. if (park) {
  2586. ehc->unloaded_mask |= 1 << dev->devno;
  2587. tf.command = ATA_CMD_IDLEIMMEDIATE;
  2588. tf.feature = 0x44;
  2589. tf.lbal = 0x4c;
  2590. tf.lbam = 0x4e;
  2591. tf.lbah = 0x55;
  2592. } else {
  2593. ehc->unloaded_mask &= ~(1 << dev->devno);
  2594. tf.command = ATA_CMD_CHK_POWER;
  2595. }
  2596. tf.flags |= ATA_TFLAG_DEVICE | ATA_TFLAG_ISADDR;
  2597. tf.protocol |= ATA_PROT_NODATA;
  2598. err_mask = ata_exec_internal(dev, &tf, NULL, DMA_NONE, NULL, 0, 0);
  2599. if (park && (err_mask || tf.lbal != 0xc4)) {
  2600. ata_dev_err(dev, "head unload failed!\n");
  2601. ehc->unloaded_mask &= ~(1 << dev->devno);
  2602. }
  2603. }
  2604. static int ata_eh_revalidate_and_attach(struct ata_link *link,
  2605. struct ata_device **r_failed_dev)
  2606. {
  2607. struct ata_port *ap = link->ap;
  2608. struct ata_eh_context *ehc = &link->eh_context;
  2609. struct ata_device *dev;
  2610. unsigned int new_mask = 0;
  2611. unsigned long flags;
  2612. int rc = 0;
  2613. DPRINTK("ENTER\n");
  2614. /* For PATA drive side cable detection to work, IDENTIFY must
  2615. * be done backwards such that PDIAG- is released by the slave
  2616. * device before the master device is identified.
  2617. */
  2618. ata_for_each_dev(dev, link, ALL_REVERSE) {
  2619. unsigned int action = ata_eh_dev_action(dev);
  2620. unsigned int readid_flags = 0;
  2621. if (ehc->i.flags & ATA_EHI_DID_RESET)
  2622. readid_flags |= ATA_READID_POSTRESET;
  2623. if ((action & ATA_EH_REVALIDATE) && ata_dev_enabled(dev)) {
  2624. WARN_ON(dev->class == ATA_DEV_PMP);
  2625. if (ata_phys_link_offline(ata_dev_phys_link(dev))) {
  2626. rc = -EIO;
  2627. goto err;
  2628. }
  2629. ata_eh_about_to_do(link, dev, ATA_EH_REVALIDATE);
  2630. rc = ata_dev_revalidate(dev, ehc->classes[dev->devno],
  2631. readid_flags);
  2632. if (rc)
  2633. goto err;
  2634. ata_eh_done(link, dev, ATA_EH_REVALIDATE);
  2635. /* Configuration may have changed, reconfigure
  2636. * transfer mode.
  2637. */
  2638. ehc->i.flags |= ATA_EHI_SETMODE;
  2639. /* schedule the scsi_rescan_device() here */
  2640. schedule_work(&(ap->scsi_rescan_task));
  2641. } else if (dev->class == ATA_DEV_UNKNOWN &&
  2642. ehc->tries[dev->devno] &&
  2643. ata_class_enabled(ehc->classes[dev->devno])) {
  2644. /* Temporarily set dev->class, it will be
  2645. * permanently set once all configurations are
  2646. * complete. This is necessary because new
  2647. * device configuration is done in two
  2648. * separate loops.
  2649. */
  2650. dev->class = ehc->classes[dev->devno];
  2651. if (dev->class == ATA_DEV_PMP)
  2652. rc = sata_pmp_attach(dev);
  2653. else
  2654. rc = ata_dev_read_id(dev, &dev->class,
  2655. readid_flags, dev->id);
  2656. /* read_id might have changed class, store and reset */
  2657. ehc->classes[dev->devno] = dev->class;
  2658. dev->class = ATA_DEV_UNKNOWN;
  2659. switch (rc) {
  2660. case 0:
  2661. /* clear error info accumulated during probe */
  2662. ata_ering_clear(&dev->ering);
  2663. new_mask |= 1 << dev->devno;
  2664. break;
  2665. case -ENOENT:
  2666. /* IDENTIFY was issued to non-existent
  2667. * device. No need to reset. Just
  2668. * thaw and ignore the device.
  2669. */
  2670. ata_eh_thaw_port(ap);
  2671. break;
  2672. default:
  2673. goto err;
  2674. }
  2675. }
  2676. }
  2677. /* PDIAG- should have been released, ask cable type if post-reset */
  2678. if ((ehc->i.flags & ATA_EHI_DID_RESET) && ata_is_host_link(link)) {
  2679. if (ap->ops->cable_detect)
  2680. ap->cbl = ap->ops->cable_detect(ap);
  2681. ata_force_cbl(ap);
  2682. }
  2683. /* Configure new devices forward such that user doesn't see
  2684. * device detection messages backwards.
  2685. */
  2686. ata_for_each_dev(dev, link, ALL) {
  2687. if (!(new_mask & (1 << dev->devno)))
  2688. continue;
  2689. dev->class = ehc->classes[dev->devno];
  2690. if (dev->class == ATA_DEV_PMP)
  2691. continue;
  2692. ehc->i.flags |= ATA_EHI_PRINTINFO;
  2693. rc = ata_dev_configure(dev);
  2694. ehc->i.flags &= ~ATA_EHI_PRINTINFO;
  2695. if (rc) {
  2696. dev->class = ATA_DEV_UNKNOWN;
  2697. goto err;
  2698. }
  2699. spin_lock_irqsave(ap->lock, flags);
  2700. ap->pflags |= ATA_PFLAG_SCSI_HOTPLUG;
  2701. spin_unlock_irqrestore(ap->lock, flags);
  2702. /* new device discovered, configure xfermode */
  2703. ehc->i.flags |= ATA_EHI_SETMODE;
  2704. }
  2705. return 0;
  2706. err:
  2707. *r_failed_dev = dev;
  2708. DPRINTK("EXIT rc=%d\n", rc);
  2709. return rc;
  2710. }
  2711. /**
  2712. * ata_set_mode - Program timings and issue SET FEATURES - XFER
  2713. * @link: link on which timings will be programmed
  2714. * @r_failed_dev: out parameter for failed device
  2715. *
  2716. * Set ATA device disk transfer mode (PIO3, UDMA6, etc.). If
  2717. * ata_set_mode() fails, pointer to the failing device is
  2718. * returned in @r_failed_dev.
  2719. *
  2720. * LOCKING:
  2721. * PCI/etc. bus probe sem.
  2722. *
  2723. * RETURNS:
  2724. * 0 on success, negative errno otherwise
  2725. */
  2726. int ata_set_mode(struct ata_link *link, struct ata_device **r_failed_dev)
  2727. {
  2728. struct ata_port *ap = link->ap;
  2729. struct ata_device *dev;
  2730. int rc;
  2731. /* if data transfer is verified, clear DUBIOUS_XFER on ering top */
  2732. ata_for_each_dev(dev, link, ENABLED) {
  2733. if (!(dev->flags & ATA_DFLAG_DUBIOUS_XFER)) {
  2734. struct ata_ering_entry *ent;
  2735. ent = ata_ering_top(&dev->ering);
  2736. if (ent)
  2737. ent->eflags &= ~ATA_EFLAG_DUBIOUS_XFER;
  2738. }
  2739. }
  2740. /* has private set_mode? */
  2741. if (ap->ops->set_mode)
  2742. rc = ap->ops->set_mode(link, r_failed_dev);
  2743. else
  2744. rc = ata_do_set_mode(link, r_failed_dev);
  2745. /* if transfer mode has changed, set DUBIOUS_XFER on device */
  2746. ata_for_each_dev(dev, link, ENABLED) {
  2747. struct ata_eh_context *ehc = &link->eh_context;
  2748. u8 saved_xfer_mode = ehc->saved_xfer_mode[dev->devno];
  2749. u8 saved_ncq = !!(ehc->saved_ncq_enabled & (1 << dev->devno));
  2750. if (dev->xfer_mode != saved_xfer_mode ||
  2751. ata_ncq_enabled(dev) != saved_ncq)
  2752. dev->flags |= ATA_DFLAG_DUBIOUS_XFER;
  2753. }
  2754. return rc;
  2755. }
  2756. /**
  2757. * atapi_eh_clear_ua - Clear ATAPI UNIT ATTENTION after reset
  2758. * @dev: ATAPI device to clear UA for
  2759. *
  2760. * Resets and other operations can make an ATAPI device raise
  2761. * UNIT ATTENTION which causes the next operation to fail. This
  2762. * function clears UA.
  2763. *
  2764. * LOCKING:
  2765. * EH context (may sleep).
  2766. *
  2767. * RETURNS:
  2768. * 0 on success, -errno on failure.
  2769. */
  2770. static int atapi_eh_clear_ua(struct ata_device *dev)
  2771. {
  2772. int i;
  2773. for (i = 0; i < ATA_EH_UA_TRIES; i++) {
  2774. u8 *sense_buffer = dev->link->ap->sector_buf;
  2775. u8 sense_key = 0;
  2776. unsigned int err_mask;
  2777. err_mask = atapi_eh_tur(dev, &sense_key);
  2778. if (err_mask != 0 && err_mask != AC_ERR_DEV) {
  2779. ata_dev_warn(dev,
  2780. "TEST_UNIT_READY failed (err_mask=0x%x)\n",
  2781. err_mask);
  2782. return -EIO;
  2783. }
  2784. if (!err_mask || sense_key != UNIT_ATTENTION)
  2785. return 0;
  2786. err_mask = atapi_eh_request_sense(dev, sense_buffer, sense_key);
  2787. if (err_mask) {
  2788. ata_dev_warn(dev, "failed to clear "
  2789. "UNIT ATTENTION (err_mask=0x%x)\n", err_mask);
  2790. return -EIO;
  2791. }
  2792. }
  2793. ata_dev_warn(dev, "UNIT ATTENTION persists after %d tries\n",
  2794. ATA_EH_UA_TRIES);
  2795. return 0;
  2796. }
  2797. /**
  2798. * ata_eh_maybe_retry_flush - Retry FLUSH if necessary
  2799. * @dev: ATA device which may need FLUSH retry
  2800. *
  2801. * If @dev failed FLUSH, it needs to be reported upper layer
  2802. * immediately as it means that @dev failed to remap and already
  2803. * lost at least a sector and further FLUSH retrials won't make
  2804. * any difference to the lost sector. However, if FLUSH failed
  2805. * for other reasons, for example transmission error, FLUSH needs
  2806. * to be retried.
  2807. *
  2808. * This function determines whether FLUSH failure retry is
  2809. * necessary and performs it if so.
  2810. *
  2811. * RETURNS:
  2812. * 0 if EH can continue, -errno if EH needs to be repeated.
  2813. */
  2814. static int ata_eh_maybe_retry_flush(struct ata_device *dev)
  2815. {
  2816. struct ata_link *link = dev->link;
  2817. struct ata_port *ap = link->ap;
  2818. struct ata_queued_cmd *qc;
  2819. struct ata_taskfile tf;
  2820. unsigned int err_mask;
  2821. int rc = 0;
  2822. /* did flush fail for this device? */
  2823. if (!ata_tag_valid(link->active_tag))
  2824. return 0;
  2825. qc = __ata_qc_from_tag(ap, link->active_tag);
  2826. if (qc->dev != dev || (qc->tf.command != ATA_CMD_FLUSH_EXT &&
  2827. qc->tf.command != ATA_CMD_FLUSH))
  2828. return 0;
  2829. /* if the device failed it, it should be reported to upper layers */
  2830. if (qc->err_mask & AC_ERR_DEV)
  2831. return 0;
  2832. /* flush failed for some other reason, give it another shot */
  2833. ata_tf_init(dev, &tf);
  2834. tf.command = qc->tf.command;
  2835. tf.flags |= ATA_TFLAG_DEVICE;
  2836. tf.protocol = ATA_PROT_NODATA;
  2837. ata_dev_warn(dev, "retrying FLUSH 0x%x Emask 0x%x\n",
  2838. tf.command, qc->err_mask);
  2839. err_mask = ata_exec_internal(dev, &tf, NULL, DMA_NONE, NULL, 0, 0);
  2840. if (!err_mask) {
  2841. /*
  2842. * FLUSH is complete but there's no way to
  2843. * successfully complete a failed command from EH.
  2844. * Making sure retry is allowed at least once and
  2845. * retrying it should do the trick - whatever was in
  2846. * the cache is already on the platter and this won't
  2847. * cause infinite loop.
  2848. */
  2849. qc->scsicmd->allowed = max(qc->scsicmd->allowed, 1);
  2850. } else {
  2851. ata_dev_warn(dev, "FLUSH failed Emask 0x%x\n",
  2852. err_mask);
  2853. rc = -EIO;
  2854. /* if device failed it, report it to upper layers */
  2855. if (err_mask & AC_ERR_DEV) {
  2856. qc->err_mask |= AC_ERR_DEV;
  2857. qc->result_tf = tf;
  2858. if (!(ap->pflags & ATA_PFLAG_FROZEN))
  2859. rc = 0;
  2860. }
  2861. }
  2862. return rc;
  2863. }
  2864. /**
  2865. * ata_eh_set_lpm - configure SATA interface power management
  2866. * @link: link to configure power management
  2867. * @policy: the link power management policy
  2868. * @r_failed_dev: out parameter for failed device
  2869. *
  2870. * Enable SATA Interface power management. This will enable
  2871. * Device Interface Power Management (DIPM) for min_power
  2872. * policy, and then call driver specific callbacks for
  2873. * enabling Host Initiated Power management.
  2874. *
  2875. * LOCKING:
  2876. * EH context.
  2877. *
  2878. * RETURNS:
  2879. * 0 on success, -errno on failure.
  2880. */
  2881. static int ata_eh_set_lpm(struct ata_link *link, enum ata_lpm_policy policy,
  2882. struct ata_device **r_failed_dev)
  2883. {
  2884. struct ata_port *ap = ata_is_host_link(link) ? link->ap : NULL;
  2885. struct ata_eh_context *ehc = &link->eh_context;
  2886. struct ata_device *dev, *link_dev = NULL, *lpm_dev = NULL;
  2887. enum ata_lpm_policy old_policy = link->lpm_policy;
  2888. bool no_dipm = link->ap->flags & ATA_FLAG_NO_DIPM;
  2889. unsigned int hints = ATA_LPM_EMPTY | ATA_LPM_HIPM;
  2890. unsigned int err_mask;
  2891. int rc;
  2892. /* if the link or host doesn't do LPM, noop */
  2893. if ((link->flags & ATA_LFLAG_NO_LPM) || (ap && !ap->ops->set_lpm))
  2894. return 0;
  2895. /*
  2896. * DIPM is enabled only for MIN_POWER as some devices
  2897. * misbehave when the host NACKs transition to SLUMBER. Order
  2898. * device and link configurations such that the host always
  2899. * allows DIPM requests.
  2900. */
  2901. ata_for_each_dev(dev, link, ENABLED) {
  2902. bool hipm = ata_id_has_hipm(dev->id);
  2903. bool dipm = ata_id_has_dipm(dev->id) && !no_dipm;
  2904. /* find the first enabled and LPM enabled devices */
  2905. if (!link_dev)
  2906. link_dev = dev;
  2907. if (!lpm_dev && (hipm || dipm))
  2908. lpm_dev = dev;
  2909. hints &= ~ATA_LPM_EMPTY;
  2910. if (!hipm)
  2911. hints &= ~ATA_LPM_HIPM;
  2912. /* disable DIPM before changing link config */
  2913. if (policy != ATA_LPM_MIN_POWER && dipm) {
  2914. err_mask = ata_dev_set_feature(dev,
  2915. SETFEATURES_SATA_DISABLE, SATA_DIPM);
  2916. if (err_mask && err_mask != AC_ERR_DEV) {
  2917. ata_dev_warn(dev,
  2918. "failed to disable DIPM, Emask 0x%x\n",
  2919. err_mask);
  2920. rc = -EIO;
  2921. goto fail;
  2922. }
  2923. }
  2924. }
  2925. if (ap) {
  2926. rc = ap->ops->set_lpm(link, policy, hints);
  2927. if (!rc && ap->slave_link)
  2928. rc = ap->ops->set_lpm(ap->slave_link, policy, hints);
  2929. } else
  2930. rc = sata_pmp_set_lpm(link, policy, hints);
  2931. /*
  2932. * Attribute link config failure to the first (LPM) enabled
  2933. * device on the link.
  2934. */
  2935. if (rc) {
  2936. if (rc == -EOPNOTSUPP) {
  2937. link->flags |= ATA_LFLAG_NO_LPM;
  2938. return 0;
  2939. }
  2940. dev = lpm_dev ? lpm_dev : link_dev;
  2941. goto fail;
  2942. }
  2943. /*
  2944. * Low level driver acked the transition. Issue DIPM command
  2945. * with the new policy set.
  2946. */
  2947. link->lpm_policy = policy;
  2948. if (ap && ap->slave_link)
  2949. ap->slave_link->lpm_policy = policy;
  2950. /* host config updated, enable DIPM if transitioning to MIN_POWER */
  2951. ata_for_each_dev(dev, link, ENABLED) {
  2952. if (policy == ATA_LPM_MIN_POWER && !no_dipm &&
  2953. ata_id_has_dipm(dev->id)) {
  2954. err_mask = ata_dev_set_feature(dev,
  2955. SETFEATURES_SATA_ENABLE, SATA_DIPM);
  2956. if (err_mask && err_mask != AC_ERR_DEV) {
  2957. ata_dev_warn(dev,
  2958. "failed to enable DIPM, Emask 0x%x\n",
  2959. err_mask);
  2960. rc = -EIO;
  2961. goto fail;
  2962. }
  2963. }
  2964. }
  2965. link->last_lpm_change = jiffies;
  2966. link->flags |= ATA_LFLAG_CHANGED;
  2967. return 0;
  2968. fail:
  2969. /* restore the old policy */
  2970. link->lpm_policy = old_policy;
  2971. if (ap && ap->slave_link)
  2972. ap->slave_link->lpm_policy = old_policy;
  2973. /* if no device or only one more chance is left, disable LPM */
  2974. if (!dev || ehc->tries[dev->devno] <= 2) {
  2975. ata_link_warn(link, "disabling LPM on the link\n");
  2976. link->flags |= ATA_LFLAG_NO_LPM;
  2977. }
  2978. if (r_failed_dev)
  2979. *r_failed_dev = dev;
  2980. return rc;
  2981. }
  2982. int ata_link_nr_enabled(struct ata_link *link)
  2983. {
  2984. struct ata_device *dev;
  2985. int cnt = 0;
  2986. ata_for_each_dev(dev, link, ENABLED)
  2987. cnt++;
  2988. return cnt;
  2989. }
  2990. static int ata_link_nr_vacant(struct ata_link *link)
  2991. {
  2992. struct ata_device *dev;
  2993. int cnt = 0;
  2994. ata_for_each_dev(dev, link, ALL)
  2995. if (dev->class == ATA_DEV_UNKNOWN)
  2996. cnt++;
  2997. return cnt;
  2998. }
  2999. static int ata_eh_skip_recovery(struct ata_link *link)
  3000. {
  3001. struct ata_port *ap = link->ap;
  3002. struct ata_eh_context *ehc = &link->eh_context;
  3003. struct ata_device *dev;
  3004. /* skip disabled links */
  3005. if (link->flags & ATA_LFLAG_DISABLED)
  3006. return 1;
  3007. /* skip if explicitly requested */
  3008. if (ehc->i.flags & ATA_EHI_NO_RECOVERY)
  3009. return 1;
  3010. /* thaw frozen port and recover failed devices */
  3011. if ((ap->pflags & ATA_PFLAG_FROZEN) || ata_link_nr_enabled(link))
  3012. return 0;
  3013. /* reset at least once if reset is requested */
  3014. if ((ehc->i.action & ATA_EH_RESET) &&
  3015. !(ehc->i.flags & ATA_EHI_DID_RESET))
  3016. return 0;
  3017. /* skip if class codes for all vacant slots are ATA_DEV_NONE */
  3018. ata_for_each_dev(dev, link, ALL) {
  3019. if (dev->class == ATA_DEV_UNKNOWN &&
  3020. ehc->classes[dev->devno] != ATA_DEV_NONE)
  3021. return 0;
  3022. }
  3023. return 1;
  3024. }
  3025. static int ata_count_probe_trials_cb(struct ata_ering_entry *ent, void *void_arg)
  3026. {
  3027. u64 interval = msecs_to_jiffies(ATA_EH_PROBE_TRIAL_INTERVAL);
  3028. u64 now = get_jiffies_64();
  3029. int *trials = void_arg;
  3030. if ((ent->eflags & ATA_EFLAG_OLD_ER) ||
  3031. (ent->timestamp < now - min(now, interval)))
  3032. return -1;
  3033. (*trials)++;
  3034. return 0;
  3035. }
  3036. static int ata_eh_schedule_probe(struct ata_device *dev)
  3037. {
  3038. struct ata_eh_context *ehc = &dev->link->eh_context;
  3039. struct ata_link *link = ata_dev_phys_link(dev);
  3040. int trials = 0;
  3041. if (!(ehc->i.probe_mask & (1 << dev->devno)) ||
  3042. (ehc->did_probe_mask & (1 << dev->devno)))
  3043. return 0;
  3044. ata_eh_detach_dev(dev);
  3045. ata_dev_init(dev);
  3046. ehc->did_probe_mask |= (1 << dev->devno);
  3047. ehc->i.action |= ATA_EH_RESET;
  3048. ehc->saved_xfer_mode[dev->devno] = 0;
  3049. ehc->saved_ncq_enabled &= ~(1 << dev->devno);
  3050. /* the link maybe in a deep sleep, wake it up */
  3051. if (link->lpm_policy > ATA_LPM_MAX_POWER) {
  3052. if (ata_is_host_link(link))
  3053. link->ap->ops->set_lpm(link, ATA_LPM_MAX_POWER,
  3054. ATA_LPM_EMPTY);
  3055. else
  3056. sata_pmp_set_lpm(link, ATA_LPM_MAX_POWER,
  3057. ATA_LPM_EMPTY);
  3058. }
  3059. /* Record and count probe trials on the ering. The specific
  3060. * error mask used is irrelevant. Because a successful device
  3061. * detection clears the ering, this count accumulates only if
  3062. * there are consecutive failed probes.
  3063. *
  3064. * If the count is equal to or higher than ATA_EH_PROBE_TRIALS
  3065. * in the last ATA_EH_PROBE_TRIAL_INTERVAL, link speed is
  3066. * forced to 1.5Gbps.
  3067. *
  3068. * This is to work around cases where failed link speed
  3069. * negotiation results in device misdetection leading to
  3070. * infinite DEVXCHG or PHRDY CHG events.
  3071. */
  3072. ata_ering_record(&dev->ering, 0, AC_ERR_OTHER);
  3073. ata_ering_map(&dev->ering, ata_count_probe_trials_cb, &trials);
  3074. if (trials > ATA_EH_PROBE_TRIALS)
  3075. sata_down_spd_limit(link, 1);
  3076. return 1;
  3077. }
  3078. static int ata_eh_handle_dev_fail(struct ata_device *dev, int err)
  3079. {
  3080. struct ata_eh_context *ehc = &dev->link->eh_context;
  3081. /* -EAGAIN from EH routine indicates retry without prejudice.
  3082. * The requester is responsible for ensuring forward progress.
  3083. */
  3084. if (err != -EAGAIN)
  3085. ehc->tries[dev->devno]--;
  3086. switch (err) {
  3087. case -ENODEV:
  3088. /* device missing or wrong IDENTIFY data, schedule probing */
  3089. ehc->i.probe_mask |= (1 << dev->devno);
  3090. case -EINVAL:
  3091. /* give it just one more chance */
  3092. ehc->tries[dev->devno] = min(ehc->tries[dev->devno], 1);
  3093. case -EIO:
  3094. if (ehc->tries[dev->devno] == 1) {
  3095. /* This is the last chance, better to slow
  3096. * down than lose it.
  3097. */
  3098. sata_down_spd_limit(ata_dev_phys_link(dev), 0);
  3099. if (dev->pio_mode > XFER_PIO_0)
  3100. ata_down_xfermask_limit(dev, ATA_DNXFER_PIO);
  3101. }
  3102. }
  3103. if (ata_dev_enabled(dev) && !ehc->tries[dev->devno]) {
  3104. /* disable device if it has used up all its chances */
  3105. ata_dev_disable(dev);
  3106. /* detach if offline */
  3107. if (ata_phys_link_offline(ata_dev_phys_link(dev)))
  3108. ata_eh_detach_dev(dev);
  3109. /* schedule probe if necessary */
  3110. if (ata_eh_schedule_probe(dev)) {
  3111. ehc->tries[dev->devno] = ATA_EH_DEV_TRIES;
  3112. memset(ehc->cmd_timeout_idx[dev->devno], 0,
  3113. sizeof(ehc->cmd_timeout_idx[dev->devno]));
  3114. }
  3115. return 1;
  3116. } else {
  3117. ehc->i.action |= ATA_EH_RESET;
  3118. return 0;
  3119. }
  3120. }
  3121. /**
  3122. * ata_eh_recover - recover host port after error
  3123. * @ap: host port to recover
  3124. * @prereset: prereset method (can be NULL)
  3125. * @softreset: softreset method (can be NULL)
  3126. * @hardreset: hardreset method (can be NULL)
  3127. * @postreset: postreset method (can be NULL)
  3128. * @r_failed_link: out parameter for failed link
  3129. *
  3130. * This is the alpha and omega, eum and yang, heart and soul of
  3131. * libata exception handling. On entry, actions required to
  3132. * recover each link and hotplug requests are recorded in the
  3133. * link's eh_context. This function executes all the operations
  3134. * with appropriate retrials and fallbacks to resurrect failed
  3135. * devices, detach goners and greet newcomers.
  3136. *
  3137. * LOCKING:
  3138. * Kernel thread context (may sleep).
  3139. *
  3140. * RETURNS:
  3141. * 0 on success, -errno on failure.
  3142. */
  3143. int ata_eh_recover(struct ata_port *ap, ata_prereset_fn_t prereset,
  3144. ata_reset_fn_t softreset, ata_reset_fn_t hardreset,
  3145. ata_postreset_fn_t postreset,
  3146. struct ata_link **r_failed_link)
  3147. {
  3148. struct ata_link *link;
  3149. struct ata_device *dev;
  3150. int rc, nr_fails;
  3151. unsigned long flags, deadline;
  3152. DPRINTK("ENTER\n");
  3153. /* prep for recovery */
  3154. ata_for_each_link(link, ap, EDGE) {
  3155. struct ata_eh_context *ehc = &link->eh_context;
  3156. /* re-enable link? */
  3157. if (ehc->i.action & ATA_EH_ENABLE_LINK) {
  3158. ata_eh_about_to_do(link, NULL, ATA_EH_ENABLE_LINK);
  3159. spin_lock_irqsave(ap->lock, flags);
  3160. link->flags &= ~ATA_LFLAG_DISABLED;
  3161. spin_unlock_irqrestore(ap->lock, flags);
  3162. ata_eh_done(link, NULL, ATA_EH_ENABLE_LINK);
  3163. }
  3164. ata_for_each_dev(dev, link, ALL) {
  3165. if (link->flags & ATA_LFLAG_NO_RETRY)
  3166. ehc->tries[dev->devno] = 1;
  3167. else
  3168. ehc->tries[dev->devno] = ATA_EH_DEV_TRIES;
  3169. /* collect port action mask recorded in dev actions */
  3170. ehc->i.action |= ehc->i.dev_action[dev->devno] &
  3171. ~ATA_EH_PERDEV_MASK;
  3172. ehc->i.dev_action[dev->devno] &= ATA_EH_PERDEV_MASK;
  3173. /* process hotplug request */
  3174. if (dev->flags & ATA_DFLAG_DETACH)
  3175. ata_eh_detach_dev(dev);
  3176. /* schedule probe if necessary */
  3177. if (!ata_dev_enabled(dev))
  3178. ata_eh_schedule_probe(dev);
  3179. }
  3180. }
  3181. retry:
  3182. rc = 0;
  3183. /* if UNLOADING, finish immediately */
  3184. if (ap->pflags & ATA_PFLAG_UNLOADING)
  3185. goto out;
  3186. /* prep for EH */
  3187. ata_for_each_link(link, ap, EDGE) {
  3188. struct ata_eh_context *ehc = &link->eh_context;
  3189. /* skip EH if possible. */
  3190. if (ata_eh_skip_recovery(link))
  3191. ehc->i.action = 0;
  3192. ata_for_each_dev(dev, link, ALL)
  3193. ehc->classes[dev->devno] = ATA_DEV_UNKNOWN;
  3194. }
  3195. /* reset */
  3196. ata_for_each_link(link, ap, EDGE) {
  3197. struct ata_eh_context *ehc = &link->eh_context;
  3198. if (!(ehc->i.action & ATA_EH_RESET))
  3199. continue;
  3200. rc = ata_eh_reset(link, ata_link_nr_vacant(link),
  3201. prereset, softreset, hardreset, postreset);
  3202. if (rc) {
  3203. ata_link_err(link, "reset failed, giving up\n");
  3204. goto out;
  3205. }
  3206. }
  3207. do {
  3208. unsigned long now;
  3209. /*
  3210. * clears ATA_EH_PARK in eh_info and resets
  3211. * ap->park_req_pending
  3212. */
  3213. ata_eh_pull_park_action(ap);
  3214. deadline = jiffies;
  3215. ata_for_each_link(link, ap, EDGE) {
  3216. ata_for_each_dev(dev, link, ALL) {
  3217. struct ata_eh_context *ehc = &link->eh_context;
  3218. unsigned long tmp;
  3219. if (dev->class != ATA_DEV_ATA)
  3220. continue;
  3221. if (!(ehc->i.dev_action[dev->devno] &
  3222. ATA_EH_PARK))
  3223. continue;
  3224. tmp = dev->unpark_deadline;
  3225. if (time_before(deadline, tmp))
  3226. deadline = tmp;
  3227. else if (time_before_eq(tmp, jiffies))
  3228. continue;
  3229. if (ehc->unloaded_mask & (1 << dev->devno))
  3230. continue;
  3231. ata_eh_park_issue_cmd(dev, 1);
  3232. }
  3233. }
  3234. now = jiffies;
  3235. if (time_before_eq(deadline, now))
  3236. break;
  3237. ata_eh_release(ap);
  3238. deadline = wait_for_completion_timeout(&ap->park_req_pending,
  3239. deadline - now);
  3240. ata_eh_acquire(ap);
  3241. } while (deadline);
  3242. ata_for_each_link(link, ap, EDGE) {
  3243. ata_for_each_dev(dev, link, ALL) {
  3244. if (!(link->eh_context.unloaded_mask &
  3245. (1 << dev->devno)))
  3246. continue;
  3247. ata_eh_park_issue_cmd(dev, 0);
  3248. ata_eh_done(link, dev, ATA_EH_PARK);
  3249. }
  3250. }
  3251. /* the rest */
  3252. nr_fails = 0;
  3253. ata_for_each_link(link, ap, PMP_FIRST) {
  3254. struct ata_eh_context *ehc = &link->eh_context;
  3255. if (sata_pmp_attached(ap) && ata_is_host_link(link))
  3256. goto config_lpm;
  3257. /* revalidate existing devices and attach new ones */
  3258. rc = ata_eh_revalidate_and_attach(link, &dev);
  3259. if (rc)
  3260. goto rest_fail;
  3261. /* if PMP got attached, return, pmp EH will take care of it */
  3262. if (link->device->class == ATA_DEV_PMP) {
  3263. ehc->i.action = 0;
  3264. return 0;
  3265. }
  3266. /* configure transfer mode if necessary */
  3267. if (ehc->i.flags & ATA_EHI_SETMODE) {
  3268. rc = ata_set_mode(link, &dev);
  3269. if (rc)
  3270. goto rest_fail;
  3271. ehc->i.flags &= ~ATA_EHI_SETMODE;
  3272. }
  3273. /* If reset has been issued, clear UA to avoid
  3274. * disrupting the current users of the device.
  3275. */
  3276. if (ehc->i.flags & ATA_EHI_DID_RESET) {
  3277. ata_for_each_dev(dev, link, ALL) {
  3278. if (dev->class != ATA_DEV_ATAPI)
  3279. continue;
  3280. rc = atapi_eh_clear_ua(dev);
  3281. if (rc)
  3282. goto rest_fail;
  3283. }
  3284. }
  3285. /* retry flush if necessary */
  3286. ata_for_each_dev(dev, link, ALL) {
  3287. if (dev->class != ATA_DEV_ATA)
  3288. continue;
  3289. rc = ata_eh_maybe_retry_flush(dev);
  3290. if (rc)
  3291. goto rest_fail;
  3292. }
  3293. config_lpm:
  3294. /* configure link power saving */
  3295. if (link->lpm_policy != ap->target_lpm_policy) {
  3296. rc = ata_eh_set_lpm(link, ap->target_lpm_policy, &dev);
  3297. if (rc)
  3298. goto rest_fail;
  3299. }
  3300. /* this link is okay now */
  3301. ehc->i.flags = 0;
  3302. continue;
  3303. rest_fail:
  3304. nr_fails++;
  3305. if (dev)
  3306. ata_eh_handle_dev_fail(dev, rc);
  3307. if (ap->pflags & ATA_PFLAG_FROZEN) {
  3308. /* PMP reset requires working host port.
  3309. * Can't retry if it's frozen.
  3310. */
  3311. if (sata_pmp_attached(ap))
  3312. goto out;
  3313. break;
  3314. }
  3315. }
  3316. if (nr_fails)
  3317. goto retry;
  3318. out:
  3319. if (rc && r_failed_link)
  3320. *r_failed_link = link;
  3321. DPRINTK("EXIT, rc=%d\n", rc);
  3322. return rc;
  3323. }
  3324. /**
  3325. * ata_eh_finish - finish up EH
  3326. * @ap: host port to finish EH for
  3327. *
  3328. * Recovery is complete. Clean up EH states and retry or finish
  3329. * failed qcs.
  3330. *
  3331. * LOCKING:
  3332. * None.
  3333. */
  3334. void ata_eh_finish(struct ata_port *ap)
  3335. {
  3336. int tag;
  3337. /* retry or finish qcs */
  3338. for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
  3339. struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
  3340. if (!(qc->flags & ATA_QCFLAG_FAILED))
  3341. continue;
  3342. if (qc->err_mask) {
  3343. /* FIXME: Once EH migration is complete,
  3344. * generate sense data in this function,
  3345. * considering both err_mask and tf.
  3346. */
  3347. if (qc->flags & ATA_QCFLAG_RETRY)
  3348. ata_eh_qc_retry(qc);
  3349. else
  3350. ata_eh_qc_complete(qc);
  3351. } else {
  3352. if (qc->flags & ATA_QCFLAG_SENSE_VALID) {
  3353. ata_eh_qc_complete(qc);
  3354. } else {
  3355. /* feed zero TF to sense generation */
  3356. memset(&qc->result_tf, 0, sizeof(qc->result_tf));
  3357. ata_eh_qc_retry(qc);
  3358. }
  3359. }
  3360. }
  3361. /* make sure nr_active_links is zero after EH */
  3362. WARN_ON(ap->nr_active_links);
  3363. ap->nr_active_links = 0;
  3364. }
  3365. /**
  3366. * ata_do_eh - do standard error handling
  3367. * @ap: host port to handle error for
  3368. *
  3369. * @prereset: prereset method (can be NULL)
  3370. * @softreset: softreset method (can be NULL)
  3371. * @hardreset: hardreset method (can be NULL)
  3372. * @postreset: postreset method (can be NULL)
  3373. *
  3374. * Perform standard error handling sequence.
  3375. *
  3376. * LOCKING:
  3377. * Kernel thread context (may sleep).
  3378. */
  3379. void ata_do_eh(struct ata_port *ap, ata_prereset_fn_t prereset,
  3380. ata_reset_fn_t softreset, ata_reset_fn_t hardreset,
  3381. ata_postreset_fn_t postreset)
  3382. {
  3383. struct ata_device *dev;
  3384. int rc;
  3385. ata_eh_autopsy(ap);
  3386. ata_eh_report(ap);
  3387. rc = ata_eh_recover(ap, prereset, softreset, hardreset, postreset,
  3388. NULL);
  3389. if (rc) {
  3390. ata_for_each_dev(dev, &ap->link, ALL)
  3391. ata_dev_disable(dev);
  3392. }
  3393. ata_eh_finish(ap);
  3394. }
  3395. /**
  3396. * ata_std_error_handler - standard error handler
  3397. * @ap: host port to handle error for
  3398. *
  3399. * Standard error handler
  3400. *
  3401. * LOCKING:
  3402. * Kernel thread context (may sleep).
  3403. */
  3404. void ata_std_error_handler(struct ata_port *ap)
  3405. {
  3406. struct ata_port_operations *ops = ap->ops;
  3407. ata_reset_fn_t hardreset = ops->hardreset;
  3408. /* ignore built-in hardreset if SCR access is not available */
  3409. if (hardreset == sata_std_hardreset && !sata_scr_valid(&ap->link))
  3410. hardreset = NULL;
  3411. ata_do_eh(ap, ops->prereset, ops->softreset, hardreset, ops->postreset);
  3412. }
  3413. #ifdef CONFIG_PM
  3414. /**
  3415. * ata_eh_handle_port_suspend - perform port suspend operation
  3416. * @ap: port to suspend
  3417. *
  3418. * Suspend @ap.
  3419. *
  3420. * LOCKING:
  3421. * Kernel thread context (may sleep).
  3422. */
  3423. static void ata_eh_handle_port_suspend(struct ata_port *ap)
  3424. {
  3425. unsigned long flags;
  3426. int rc = 0;
  3427. /* are we suspending? */
  3428. spin_lock_irqsave(ap->lock, flags);
  3429. if (!(ap->pflags & ATA_PFLAG_PM_PENDING) ||
  3430. ap->pm_mesg.event == PM_EVENT_ON) {
  3431. spin_unlock_irqrestore(ap->lock, flags);
  3432. return;
  3433. }
  3434. spin_unlock_irqrestore(ap->lock, flags);
  3435. WARN_ON(ap->pflags & ATA_PFLAG_SUSPENDED);
  3436. /* tell ACPI we're suspending */
  3437. rc = ata_acpi_on_suspend(ap);
  3438. if (rc)
  3439. goto out;
  3440. /* suspend */
  3441. ata_eh_freeze_port(ap);
  3442. if (ap->ops->port_suspend)
  3443. rc = ap->ops->port_suspend(ap, ap->pm_mesg);
  3444. ata_acpi_set_state(ap, PMSG_SUSPEND);
  3445. out:
  3446. /* report result */
  3447. spin_lock_irqsave(ap->lock, flags);
  3448. ap->pflags &= ~ATA_PFLAG_PM_PENDING;
  3449. if (rc == 0)
  3450. ap->pflags |= ATA_PFLAG_SUSPENDED;
  3451. else if (ap->pflags & ATA_PFLAG_FROZEN)
  3452. ata_port_schedule_eh(ap);
  3453. if (ap->pm_result) {
  3454. *ap->pm_result = rc;
  3455. ap->pm_result = NULL;
  3456. }
  3457. spin_unlock_irqrestore(ap->lock, flags);
  3458. return;
  3459. }
  3460. /**
  3461. * ata_eh_handle_port_resume - perform port resume operation
  3462. * @ap: port to resume
  3463. *
  3464. * Resume @ap.
  3465. *
  3466. * LOCKING:
  3467. * Kernel thread context (may sleep).
  3468. */
  3469. static void ata_eh_handle_port_resume(struct ata_port *ap)
  3470. {
  3471. struct ata_link *link;
  3472. struct ata_device *dev;
  3473. unsigned long flags;
  3474. int rc = 0;
  3475. /* are we resuming? */
  3476. spin_lock_irqsave(ap->lock, flags);
  3477. if (!(ap->pflags & ATA_PFLAG_PM_PENDING) ||
  3478. ap->pm_mesg.event != PM_EVENT_ON) {
  3479. spin_unlock_irqrestore(ap->lock, flags);
  3480. return;
  3481. }
  3482. spin_unlock_irqrestore(ap->lock, flags);
  3483. WARN_ON(!(ap->pflags & ATA_PFLAG_SUSPENDED));
  3484. /*
  3485. * Error timestamps are in jiffies which doesn't run while
  3486. * suspended and PHY events during resume isn't too uncommon.
  3487. * When the two are combined, it can lead to unnecessary speed
  3488. * downs if the machine is suspended and resumed repeatedly.
  3489. * Clear error history.
  3490. */
  3491. ata_for_each_link(link, ap, HOST_FIRST)
  3492. ata_for_each_dev(dev, link, ALL)
  3493. ata_ering_clear(&dev->ering);
  3494. ata_acpi_set_state(ap, PMSG_ON);
  3495. if (ap->ops->port_resume)
  3496. rc = ap->ops->port_resume(ap);
  3497. /* tell ACPI that we're resuming */
  3498. ata_acpi_on_resume(ap);
  3499. /* report result */
  3500. spin_lock_irqsave(ap->lock, flags);
  3501. ap->pflags &= ~(ATA_PFLAG_PM_PENDING | ATA_PFLAG_SUSPENDED);
  3502. if (ap->pm_result) {
  3503. *ap->pm_result = rc;
  3504. ap->pm_result = NULL;
  3505. }
  3506. spin_unlock_irqrestore(ap->lock, flags);
  3507. }
  3508. #endif /* CONFIG_PM */