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ece1d636
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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
ece1d636 35#include <linux/kernel.h>
242f9dcb 36#include <linux/blkdev.h>
38789fda 37#include <linux/export.h>
2855568b 38#include <linux/pci.h>
ece1d636
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39#include <scsi/scsi.h>
40#include <scsi/scsi_host.h>
41#include <scsi/scsi_eh.h>
42#include <scsi/scsi_device.h>
43#include <scsi/scsi_cmnd.h>
6521148c 44#include <scsi/scsi_dbg.h>
c6fd2807 45#include "../scsi/scsi_transport_api.h"
ece1d636
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46
47#include <linux/libata.h>
48
49#include "libata.h"
50
7d47e8d4 51enum {
3884f7b0 52 /* speed down verdicts */
7d47e8d4
TH
53 ATA_EH_SPDN_NCQ_OFF = (1 << 0),
54 ATA_EH_SPDN_SPEED_DOWN = (1 << 1),
55 ATA_EH_SPDN_FALLBACK_TO_PIO = (1 << 2),
76326ac1 56 ATA_EH_SPDN_KEEP_ERRORS = (1 << 3),
3884f7b0
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57
58 /* error flags */
59 ATA_EFLAG_IS_IO = (1 << 0),
76326ac1 60 ATA_EFLAG_DUBIOUS_XFER = (1 << 1),
d9027470 61 ATA_EFLAG_OLD_ER = (1 << 31),
3884f7b0
TH
62
63 /* error categories */
64 ATA_ECAT_NONE = 0,
65 ATA_ECAT_ATA_BUS = 1,
66 ATA_ECAT_TOUT_HSM = 2,
67 ATA_ECAT_UNK_DEV = 3,
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68 ATA_ECAT_DUBIOUS_NONE = 4,
69 ATA_ECAT_DUBIOUS_ATA_BUS = 5,
70 ATA_ECAT_DUBIOUS_TOUT_HSM = 6,
71 ATA_ECAT_DUBIOUS_UNK_DEV = 7,
72 ATA_ECAT_NR = 8,
7d47e8d4 73
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TH
74 ATA_EH_CMD_DFL_TIMEOUT = 5000,
75
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TH
76 /* always put at least this amount of time between resets */
77 ATA_EH_RESET_COOL_DOWN = 5000,
78
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TH
79 /* Waiting in ->prereset can never be reliable. It's
80 * sometimes nice to wait there but it can't be depended upon;
81 * otherwise, we wouldn't be resetting. Just give it enough
82 * time for most drives to spin up.
83 */
84 ATA_EH_PRERESET_TIMEOUT = 10000,
85 ATA_EH_FASTDRAIN_INTERVAL = 3000,
11fc33da
TH
86
87 ATA_EH_UA_TRIES = 5,
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TH
88
89 /* probe speed down parameters, see ata_eh_schedule_probe() */
90 ATA_EH_PROBE_TRIAL_INTERVAL = 60000, /* 1 min */
91 ATA_EH_PROBE_TRIALS = 2,
31daabda
TH
92};
93
94/* The following table determines how we sequence resets. Each entry
95 * represents timeout for that try. The first try can be soft or
96 * hardreset. All others are hardreset if available. In most cases
97 * the first reset w/ 10sec timeout should succeed. Following entries
98 * are mostly for error handling, hotplug and retarded devices.
99 */
100static const unsigned long ata_eh_reset_timeouts[] = {
341c2c95
TH
101 10000, /* most drives spin up by 10sec */
102 10000, /* > 99% working drives spin up before 20sec */
103 35000, /* give > 30 secs of idleness for retarded devices */
104 5000, /* and sweet one last chance */
d8af0eb6 105 ULONG_MAX, /* > 1 min has elapsed, give up */
31daabda
TH
106};
107
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108static const unsigned long ata_eh_identify_timeouts[] = {
109 5000, /* covers > 99% of successes and not too boring on failures */
110 10000, /* combined time till here is enough even for media access */
111 30000, /* for true idiots */
112 ULONG_MAX,
113};
114
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TH
115static const unsigned long ata_eh_flush_timeouts[] = {
116 15000, /* be generous with flush */
117 15000, /* ditto */
118 30000, /* and even more generous */
119 ULONG_MAX,
120};
121
87fbc5a0
TH
122static const unsigned long ata_eh_other_timeouts[] = {
123 5000, /* same rationale as identify timeout */
124 10000, /* ditto */
125 /* but no merciful 30sec for other commands, it just isn't worth it */
126 ULONG_MAX,
127};
128
129struct ata_eh_cmd_timeout_ent {
130 const u8 *commands;
131 const unsigned long *timeouts;
132};
133
134/* The following table determines timeouts to use for EH internal
135 * commands. Each table entry is a command class and matches the
136 * commands the entry applies to and the timeout table to use.
137 *
138 * On the retry after a command timed out, the next timeout value from
139 * the table is used. If the table doesn't contain further entries,
140 * the last value is used.
141 *
142 * ehc->cmd_timeout_idx keeps track of which timeout to use per
143 * command class, so if SET_FEATURES times out on the first try, the
144 * next try will use the second timeout value only for that class.
145 */
146#define CMDS(cmds...) (const u8 []){ cmds, 0 }
147static const struct ata_eh_cmd_timeout_ent
148ata_eh_cmd_timeout_table[ATA_EH_CMD_TIMEOUT_TABLE_SIZE] = {
149 { .commands = CMDS(ATA_CMD_ID_ATA, ATA_CMD_ID_ATAPI),
150 .timeouts = ata_eh_identify_timeouts, },
151 { .commands = CMDS(ATA_CMD_READ_NATIVE_MAX, ATA_CMD_READ_NATIVE_MAX_EXT),
152 .timeouts = ata_eh_other_timeouts, },
153 { .commands = CMDS(ATA_CMD_SET_MAX, ATA_CMD_SET_MAX_EXT),
154 .timeouts = ata_eh_other_timeouts, },
155 { .commands = CMDS(ATA_CMD_SET_FEATURES),
156 .timeouts = ata_eh_other_timeouts, },
157 { .commands = CMDS(ATA_CMD_INIT_DEV_PARAMS),
158 .timeouts = ata_eh_other_timeouts, },
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TH
159 { .commands = CMDS(ATA_CMD_FLUSH, ATA_CMD_FLUSH_EXT),
160 .timeouts = ata_eh_flush_timeouts },
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161};
162#undef CMDS
163
ad9e2762 164static void __ata_port_freeze(struct ata_port *ap);
6ffa01d8 165#ifdef CONFIG_PM
500530f6
TH
166static void ata_eh_handle_port_suspend(struct ata_port *ap);
167static void ata_eh_handle_port_resume(struct ata_port *ap);
6ffa01d8
TH
168#else /* CONFIG_PM */
169static void ata_eh_handle_port_suspend(struct ata_port *ap)
170{ }
171
172static void ata_eh_handle_port_resume(struct ata_port *ap)
173{ }
6ffa01d8 174#endif /* CONFIG_PM */
ad9e2762 175
b64bbc39
TH
176static void __ata_ehi_pushv_desc(struct ata_eh_info *ehi, const char *fmt,
177 va_list args)
178{
179 ehi->desc_len += vscnprintf(ehi->desc + ehi->desc_len,
180 ATA_EH_DESC_LEN - ehi->desc_len,
181 fmt, args);
182}
183
184/**
185 * __ata_ehi_push_desc - push error description without adding separator
186 * @ehi: target EHI
187 * @fmt: printf format string
188 *
189 * Format string according to @fmt and append it to @ehi->desc.
190 *
191 * LOCKING:
192 * spin_lock_irqsave(host lock)
193 */
194void __ata_ehi_push_desc(struct ata_eh_info *ehi, const char *fmt, ...)
195{
196 va_list args;
197
198 va_start(args, fmt);
199 __ata_ehi_pushv_desc(ehi, fmt, args);
200 va_end(args);
201}
202
203/**
204 * ata_ehi_push_desc - push error description with separator
205 * @ehi: target EHI
206 * @fmt: printf format string
207 *
208 * Format string according to @fmt and append it to @ehi->desc.
209 * If @ehi->desc is not empty, ", " is added in-between.
210 *
211 * LOCKING:
212 * spin_lock_irqsave(host lock)
213 */
214void ata_ehi_push_desc(struct ata_eh_info *ehi, const char *fmt, ...)
215{
216 va_list args;
217
218 if (ehi->desc_len)
219 __ata_ehi_push_desc(ehi, ", ");
220
221 va_start(args, fmt);
222 __ata_ehi_pushv_desc(ehi, fmt, args);
223 va_end(args);
224}
225
226/**
227 * ata_ehi_clear_desc - clean error description
228 * @ehi: target EHI
229 *
230 * Clear @ehi->desc.
231 *
232 * LOCKING:
233 * spin_lock_irqsave(host lock)
234 */
235void ata_ehi_clear_desc(struct ata_eh_info *ehi)
236{
237 ehi->desc[0] = '\0';
238 ehi->desc_len = 0;
239}
240
cbcdd875
TH
241/**
242 * ata_port_desc - append port description
243 * @ap: target ATA port
244 * @fmt: printf format string
245 *
246 * Format string according to @fmt and append it to port
247 * description. If port description is not empty, " " is added
248 * in-between. This function is to be used while initializing
249 * ata_host. The description is printed on host registration.
250 *
251 * LOCKING:
252 * None.
253 */
254void ata_port_desc(struct ata_port *ap, const char *fmt, ...)
255{
256 va_list args;
257
258 WARN_ON(!(ap->pflags & ATA_PFLAG_INITIALIZING));
259
260 if (ap->link.eh_info.desc_len)
261 __ata_ehi_push_desc(&ap->link.eh_info, " ");
262
263 va_start(args, fmt);
264 __ata_ehi_pushv_desc(&ap->link.eh_info, fmt, args);
265 va_end(args);
266}
267
268#ifdef CONFIG_PCI
269
270/**
271 * ata_port_pbar_desc - append PCI BAR description
272 * @ap: target ATA port
273 * @bar: target PCI BAR
274 * @offset: offset into PCI BAR
275 * @name: name of the area
276 *
277 * If @offset is negative, this function formats a string which
278 * contains the name, address, size and type of the BAR and
279 * appends it to the port description. If @offset is zero or
280 * positive, only name and offsetted address is appended.
281 *
282 * LOCKING:
283 * None.
284 */
285void ata_port_pbar_desc(struct ata_port *ap, int bar, ssize_t offset,
286 const char *name)
287{
288 struct pci_dev *pdev = to_pci_dev(ap->host->dev);
289 char *type = "";
290 unsigned long long start, len;
291
292 if (pci_resource_flags(pdev, bar) & IORESOURCE_MEM)
293 type = "m";
294 else if (pci_resource_flags(pdev, bar) & IORESOURCE_IO)
295 type = "i";
296
297 start = (unsigned long long)pci_resource_start(pdev, bar);
298 len = (unsigned long long)pci_resource_len(pdev, bar);
299
300 if (offset < 0)
301 ata_port_desc(ap, "%s %s%llu@0x%llx", name, type, len, start);
302 else
e6a73ab1
AM
303 ata_port_desc(ap, "%s 0x%llx", name,
304 start + (unsigned long long)offset);
cbcdd875
TH
305}
306
307#endif /* CONFIG_PCI */
308
87fbc5a0
TH
309static int ata_lookup_timeout_table(u8 cmd)
310{
311 int i;
312
313 for (i = 0; i < ATA_EH_CMD_TIMEOUT_TABLE_SIZE; i++) {
314 const u8 *cur;
315
316 for (cur = ata_eh_cmd_timeout_table[i].commands; *cur; cur++)
317 if (*cur == cmd)
318 return i;
319 }
320
321 return -1;
322}
323
324/**
325 * ata_internal_cmd_timeout - determine timeout for an internal command
326 * @dev: target device
327 * @cmd: internal command to be issued
328 *
329 * Determine timeout for internal command @cmd for @dev.
330 *
331 * LOCKING:
332 * EH context.
333 *
334 * RETURNS:
335 * Determined timeout.
336 */
337unsigned long ata_internal_cmd_timeout(struct ata_device *dev, u8 cmd)
338{
339 struct ata_eh_context *ehc = &dev->link->eh_context;
340 int ent = ata_lookup_timeout_table(cmd);
341 int idx;
342
343 if (ent < 0)
344 return ATA_EH_CMD_DFL_TIMEOUT;
345
346 idx = ehc->cmd_timeout_idx[dev->devno][ent];
347 return ata_eh_cmd_timeout_table[ent].timeouts[idx];
348}
349
350/**
351 * ata_internal_cmd_timed_out - notification for internal command timeout
352 * @dev: target device
353 * @cmd: internal command which timed out
354 *
355 * Notify EH that internal command @cmd for @dev timed out. This
356 * function should be called only for commands whose timeouts are
357 * determined using ata_internal_cmd_timeout().
358 *
359 * LOCKING:
360 * EH context.
361 */
362void ata_internal_cmd_timed_out(struct ata_device *dev, u8 cmd)
363{
364 struct ata_eh_context *ehc = &dev->link->eh_context;
365 int ent = ata_lookup_timeout_table(cmd);
366 int idx;
367
368 if (ent < 0)
369 return;
370
371 idx = ehc->cmd_timeout_idx[dev->devno][ent];
372 if (ata_eh_cmd_timeout_table[ent].timeouts[idx + 1] != ULONG_MAX)
373 ehc->cmd_timeout_idx[dev->devno][ent]++;
374}
375
3884f7b0 376static void ata_ering_record(struct ata_ering *ering, unsigned int eflags,
0c247c55
TH
377 unsigned int err_mask)
378{
379 struct ata_ering_entry *ent;
380
381 WARN_ON(!err_mask);
382
383 ering->cursor++;
384 ering->cursor %= ATA_ERING_SIZE;
385
386 ent = &ering->ring[ering->cursor];
3884f7b0 387 ent->eflags = eflags;
0c247c55
TH
388 ent->err_mask = err_mask;
389 ent->timestamp = get_jiffies_64();
390}
391
76326ac1
TH
392static struct ata_ering_entry *ata_ering_top(struct ata_ering *ering)
393{
394 struct ata_ering_entry *ent = &ering->ring[ering->cursor];
395
396 if (ent->err_mask)
397 return ent;
398 return NULL;
399}
400
d9027470
GG
401int ata_ering_map(struct ata_ering *ering,
402 int (*map_fn)(struct ata_ering_entry *, void *),
403 void *arg)
0c247c55
TH
404{
405 int idx, rc = 0;
406 struct ata_ering_entry *ent;
407
408 idx = ering->cursor;
409 do {
410 ent = &ering->ring[idx];
411 if (!ent->err_mask)
412 break;
413 rc = map_fn(ent, arg);
414 if (rc)
415 break;
416 idx = (idx - 1 + ATA_ERING_SIZE) % ATA_ERING_SIZE;
417 } while (idx != ering->cursor);
418
419 return rc;
420}
421
60428407 422static int ata_ering_clear_cb(struct ata_ering_entry *ent, void *void_arg)
d9027470
GG
423{
424 ent->eflags |= ATA_EFLAG_OLD_ER;
425 return 0;
426}
427
428static void ata_ering_clear(struct ata_ering *ering)
429{
430 ata_ering_map(ering, ata_ering_clear_cb, NULL);
431}
432
64f65ca6
TH
433static unsigned int ata_eh_dev_action(struct ata_device *dev)
434{
9af5c9c9 435 struct ata_eh_context *ehc = &dev->link->eh_context;
64f65ca6
TH
436
437 return ehc->i.action | ehc->i.dev_action[dev->devno];
438}
439
f58229f8 440static void ata_eh_clear_action(struct ata_link *link, struct ata_device *dev,
af181c2d
TH
441 struct ata_eh_info *ehi, unsigned int action)
442{
f58229f8 443 struct ata_device *tdev;
af181c2d
TH
444
445 if (!dev) {
446 ehi->action &= ~action;
1eca4365 447 ata_for_each_dev(tdev, link, ALL)
f58229f8 448 ehi->dev_action[tdev->devno] &= ~action;
af181c2d
TH
449 } else {
450 /* doesn't make sense for port-wide EH actions */
451 WARN_ON(!(action & ATA_EH_PERDEV_MASK));
452
453 /* break ehi->action into ehi->dev_action */
454 if (ehi->action & action) {
1eca4365 455 ata_for_each_dev(tdev, link, ALL)
f58229f8
TH
456 ehi->dev_action[tdev->devno] |=
457 ehi->action & action;
af181c2d
TH
458 ehi->action &= ~action;
459 }
460
461 /* turn off the specified per-dev action */
462 ehi->dev_action[dev->devno] &= ~action;
463 }
464}
465
c0c362b6
TH
466/**
467 * ata_eh_acquire - acquire EH ownership
468 * @ap: ATA port to acquire EH ownership for
469 *
470 * Acquire EH ownership for @ap. This is the basic exclusion
471 * mechanism for ports sharing a host. Only one port hanging off
472 * the same host can claim the ownership of EH.
473 *
474 * LOCKING:
475 * EH context.
476 */
477void ata_eh_acquire(struct ata_port *ap)
478{
479 mutex_lock(&ap->host->eh_mutex);
480 WARN_ON_ONCE(ap->host->eh_owner);
481 ap->host->eh_owner = current;
482}
483
484/**
485 * ata_eh_release - release EH ownership
486 * @ap: ATA port to release EH ownership for
487 *
488 * Release EH ownership for @ap if the caller. The caller must
489 * have acquired EH ownership using ata_eh_acquire() previously.
490 *
491 * LOCKING:
492 * EH context.
493 */
494void ata_eh_release(struct ata_port *ap)
495{
496 WARN_ON_ONCE(ap->host->eh_owner != current);
497 ap->host->eh_owner = NULL;
498 mutex_unlock(&ap->host->eh_mutex);
499}
500
ece1d636
TH
501/**
502 * ata_scsi_timed_out - SCSI layer time out callback
503 * @cmd: timed out SCSI command
504 *
505 * Handles SCSI layer timeout. We race with normal completion of
506 * the qc for @cmd. If the qc is already gone, we lose and let
507 * the scsi command finish (EH_HANDLED). Otherwise, the qc has
508 * timed out and EH should be invoked. Prevent ata_qc_complete()
509 * from finishing it by setting EH_SCHEDULED and return
510 * EH_NOT_HANDLED.
511 *
ad9e2762
TH
512 * TODO: kill this function once old EH is gone.
513 *
ece1d636
TH
514 * LOCKING:
515 * Called from timer context
516 *
517 * RETURNS:
518 * EH_HANDLED or EH_NOT_HANDLED
519 */
242f9dcb 520enum blk_eh_timer_return ata_scsi_timed_out(struct scsi_cmnd *cmd)
ece1d636
TH
521{
522 struct Scsi_Host *host = cmd->device->host;
35bb94b1 523 struct ata_port *ap = ata_shost_to_port(host);
ece1d636
TH
524 unsigned long flags;
525 struct ata_queued_cmd *qc;
242f9dcb 526 enum blk_eh_timer_return ret;
ece1d636
TH
527
528 DPRINTK("ENTER\n");
529
ad9e2762 530 if (ap->ops->error_handler) {
242f9dcb 531 ret = BLK_EH_NOT_HANDLED;
ad9e2762
TH
532 goto out;
533 }
534
242f9dcb 535 ret = BLK_EH_HANDLED;
ba6a1308 536 spin_lock_irqsave(ap->lock, flags);
9af5c9c9 537 qc = ata_qc_from_tag(ap, ap->link.active_tag);
ece1d636
TH
538 if (qc) {
539 WARN_ON(qc->scsicmd != cmd);
540 qc->flags |= ATA_QCFLAG_EH_SCHEDULED;
541 qc->err_mask |= AC_ERR_TIMEOUT;
242f9dcb 542 ret = BLK_EH_NOT_HANDLED;
ece1d636 543 }
ba6a1308 544 spin_unlock_irqrestore(ap->lock, flags);
ece1d636 545
ad9e2762 546 out:
ece1d636
TH
547 DPRINTK("EXIT, ret=%d\n", ret);
548 return ret;
549}
550
ece180d1
TH
551static void ata_eh_unload(struct ata_port *ap)
552{
553 struct ata_link *link;
554 struct ata_device *dev;
555 unsigned long flags;
556
557 /* Restore SControl IPM and SPD for the next driver and
558 * disable attached devices.
559 */
560 ata_for_each_link(link, ap, PMP_FIRST) {
561 sata_scr_write(link, SCR_CONTROL, link->saved_scontrol & 0xff0);
562 ata_for_each_dev(dev, link, ALL)
563 ata_dev_disable(dev);
564 }
565
566 /* freeze and set UNLOADED */
567 spin_lock_irqsave(ap->lock, flags);
568
569 ata_port_freeze(ap); /* won't be thawed */
570 ap->pflags &= ~ATA_PFLAG_EH_PENDING; /* clear pending from freeze */
571 ap->pflags |= ATA_PFLAG_UNLOADED;
572
573 spin_unlock_irqrestore(ap->lock, flags);
574}
575
ece1d636
TH
576/**
577 * ata_scsi_error - SCSI layer error handler callback
578 * @host: SCSI host on which error occurred
579 *
580 * Handles SCSI-layer-thrown error events.
581 *
582 * LOCKING:
583 * Inherited from SCSI layer (none, can sleep)
584 *
585 * RETURNS:
586 * Zero.
587 */
381544bb 588void ata_scsi_error(struct Scsi_Host *host)
ece1d636 589{
35bb94b1 590 struct ata_port *ap = ata_shost_to_port(host);
ad9e2762 591 unsigned long flags;
c34aeebc 592 LIST_HEAD(eh_work_q);
ece1d636
TH
593
594 DPRINTK("ENTER\n");
595
c34aeebc
JB
596 spin_lock_irqsave(host->host_lock, flags);
597 list_splice_init(&host->eh_cmd_q, &eh_work_q);
598 spin_unlock_irqrestore(host->host_lock, flags);
599
0e0b494c
JB
600 ata_scsi_cmd_error_handler(host, ap, &eh_work_q);
601
602 /* If we timed raced normal completion and there is nothing to
603 recover nr_timedout == 0 why exactly are we doing error recovery ? */
604 ata_scsi_port_error_handler(host, ap);
605
606 /* finish or retry handled scmd's and clean up */
607 WARN_ON(host->host_failed || !list_empty(&eh_work_q));
608
609 DPRINTK("EXIT\n");
610}
611
612/**
613 * ata_scsi_cmd_error_handler - error callback for a list of commands
614 * @host: scsi host containing the port
615 * @ap: ATA port within the host
616 * @eh_work_q: list of commands to process
617 *
618 * process the given list of commands and return those finished to the
619 * ap->eh_done_q. This function is the first part of the libata error
620 * handler which processes a given list of failed commands.
621 */
622void ata_scsi_cmd_error_handler(struct Scsi_Host *host, struct ata_port *ap,
623 struct list_head *eh_work_q)
624{
625 int i;
626 unsigned long flags;
627
c429137a
TH
628 /* make sure sff pio task is not running */
629 ata_sff_flush_pio_task(ap);
ece1d636 630
cca3974e 631 /* synchronize with host lock and sort out timeouts */
ad9e2762
TH
632
633 /* For new EH, all qcs are finished in one of three ways -
634 * normal completion, error completion, and SCSI timeout.
c96f1732 635 * Both completions can race against SCSI timeout. When normal
ad9e2762
TH
636 * completion wins, the qc never reaches EH. When error
637 * completion wins, the qc has ATA_QCFLAG_FAILED set.
638 *
639 * When SCSI timeout wins, things are a bit more complex.
640 * Normal or error completion can occur after the timeout but
641 * before this point. In such cases, both types of
642 * completions are honored. A scmd is determined to have
643 * timed out iff its associated qc is active and not failed.
644 */
645 if (ap->ops->error_handler) {
646 struct scsi_cmnd *scmd, *tmp;
647 int nr_timedout = 0;
648
e30349d2 649 spin_lock_irqsave(ap->lock, flags);
d9027470 650
c96f1732
AC
651 /* This must occur under the ap->lock as we don't want
652 a polled recovery to race the real interrupt handler
d9027470 653
c96f1732
AC
654 The lost_interrupt handler checks for any completed but
655 non-notified command and completes much like an IRQ handler.
d9027470 656
c96f1732
AC
657 We then fall into the error recovery code which will treat
658 this as if normal completion won the race */
659
660 if (ap->ops->lost_interrupt)
661 ap->ops->lost_interrupt(ap);
d9027470 662
0e0b494c 663 list_for_each_entry_safe(scmd, tmp, eh_work_q, eh_entry) {
ad9e2762
TH
664 struct ata_queued_cmd *qc;
665
666 for (i = 0; i < ATA_MAX_QUEUE; i++) {
667 qc = __ata_qc_from_tag(ap, i);
668 if (qc->flags & ATA_QCFLAG_ACTIVE &&
669 qc->scsicmd == scmd)
670 break;
671 }
672
673 if (i < ATA_MAX_QUEUE) {
674 /* the scmd has an associated qc */
675 if (!(qc->flags & ATA_QCFLAG_FAILED)) {
676 /* which hasn't failed yet, timeout */
677 qc->err_mask |= AC_ERR_TIMEOUT;
678 qc->flags |= ATA_QCFLAG_FAILED;
679 nr_timedout++;
680 }
681 } else {
682 /* Normal completion occurred after
683 * SCSI timeout but before this point.
684 * Successfully complete it.
685 */
686 scmd->retries = scmd->allowed;
687 scsi_eh_finish_cmd(scmd, &ap->eh_done_q);
688 }
689 }
690
691 /* If we have timed out qcs. They belong to EH from
692 * this point but the state of the controller is
693 * unknown. Freeze the port to make sure the IRQ
694 * handler doesn't diddle with those qcs. This must
695 * be done atomically w.r.t. setting QCFLAG_FAILED.
696 */
697 if (nr_timedout)
698 __ata_port_freeze(ap);
699
e30349d2 700 spin_unlock_irqrestore(ap->lock, flags);
a1e10f7e
TH
701
702 /* initialize eh_tries */
703 ap->eh_tries = ATA_EH_MAX_TRIES;
ad9e2762 704 } else
e30349d2 705 spin_unlock_wait(ap->lock);
d9027470 706
0e0b494c
JB
707}
708EXPORT_SYMBOL(ata_scsi_cmd_error_handler);
709
710/**
711 * ata_scsi_port_error_handler - recover the port after the commands
712 * @host: SCSI host containing the port
713 * @ap: the ATA port
714 *
715 * Handle the recovery of the port @ap after all the commands
716 * have been recovered.
717 */
718void ata_scsi_port_error_handler(struct Scsi_Host *host, struct ata_port *ap)
719{
720 unsigned long flags;
ad9e2762 721
ad9e2762
TH
722 /* invoke error handler */
723 if (ap->ops->error_handler) {
cf1b86c8
TH
724 struct ata_link *link;
725
c0c362b6
TH
726 /* acquire EH ownership */
727 ata_eh_acquire(ap);
728 repeat:
5ddf24c5
TH
729 /* kill fast drain timer */
730 del_timer_sync(&ap->fastdrain_timer);
731
500530f6
TH
732 /* process port resume request */
733 ata_eh_handle_port_resume(ap);
734
f3e81b19 735 /* fetch & clear EH info */
e30349d2 736 spin_lock_irqsave(ap->lock, flags);
f3e81b19 737
1eca4365 738 ata_for_each_link(link, ap, HOST_FIRST) {
00115e0f
TH
739 struct ata_eh_context *ehc = &link->eh_context;
740 struct ata_device *dev;
741
cf1b86c8
TH
742 memset(&link->eh_context, 0, sizeof(link->eh_context));
743 link->eh_context.i = link->eh_info;
744 memset(&link->eh_info, 0, sizeof(link->eh_info));
00115e0f 745
1eca4365 746 ata_for_each_dev(dev, link, ENABLED) {
00115e0f
TH
747 int devno = dev->devno;
748
749 ehc->saved_xfer_mode[devno] = dev->xfer_mode;
750 if (ata_ncq_enabled(dev))
751 ehc->saved_ncq_enabled |= 1 << devno;
752 }
cf1b86c8 753 }
f3e81b19 754
b51e9e5d
TH
755 ap->pflags |= ATA_PFLAG_EH_IN_PROGRESS;
756 ap->pflags &= ~ATA_PFLAG_EH_PENDING;
da917d69 757 ap->excl_link = NULL; /* don't maintain exclusion over EH */
f3e81b19 758
e30349d2 759 spin_unlock_irqrestore(ap->lock, flags);
ad9e2762 760
500530f6
TH
761 /* invoke EH, skip if unloading or suspended */
762 if (!(ap->pflags & (ATA_PFLAG_UNLOADING | ATA_PFLAG_SUSPENDED)))
720ba126 763 ap->ops->error_handler(ap);
ece180d1
TH
764 else {
765 /* if unloading, commence suicide */
766 if ((ap->pflags & ATA_PFLAG_UNLOADING) &&
767 !(ap->pflags & ATA_PFLAG_UNLOADED))
768 ata_eh_unload(ap);
720ba126 769 ata_eh_finish(ap);
ece180d1 770 }
ad9e2762 771
500530f6
TH
772 /* process port suspend request */
773 ata_eh_handle_port_suspend(ap);
774
25985edc 775 /* Exception might have happened after ->error_handler
ad9e2762
TH
776 * recovered the port but before this point. Repeat
777 * EH in such case.
778 */
e30349d2 779 spin_lock_irqsave(ap->lock, flags);
ad9e2762 780
b51e9e5d 781 if (ap->pflags & ATA_PFLAG_EH_PENDING) {
a1e10f7e 782 if (--ap->eh_tries) {
e30349d2 783 spin_unlock_irqrestore(ap->lock, flags);
ad9e2762
TH
784 goto repeat;
785 }
a9a79dfe
JP
786 ata_port_err(ap,
787 "EH pending after %d tries, giving up\n",
788 ATA_EH_MAX_TRIES);
914616a3 789 ap->pflags &= ~ATA_PFLAG_EH_PENDING;
ad9e2762
TH
790 }
791
f3e81b19 792 /* this run is complete, make sure EH info is clear */
1eca4365 793 ata_for_each_link(link, ap, HOST_FIRST)
cf1b86c8 794 memset(&link->eh_info, 0, sizeof(link->eh_info));
f3e81b19 795
e4a9c373
DW
796 /* end eh (clear host_eh_scheduled) while holding
797 * ap->lock such that if exception occurs after this
798 * point but before EH completion, SCSI midlayer will
ad9e2762
TH
799 * re-initiate EH.
800 */
e4a9c373 801 ap->ops->end_eh(ap);
ad9e2762 802
e30349d2 803 spin_unlock_irqrestore(ap->lock, flags);
c0c362b6 804 ata_eh_release(ap);
ad9e2762 805 } else {
9af5c9c9 806 WARN_ON(ata_qc_from_tag(ap, ap->link.active_tag) == NULL);
ad9e2762
TH
807 ap->ops->eng_timeout(ap);
808 }
ece1d636 809
ece1d636
TH
810 scsi_eh_flush_done_q(&ap->eh_done_q);
811
ad9e2762 812 /* clean up */
e30349d2 813 spin_lock_irqsave(ap->lock, flags);
ad9e2762 814
1cdaf534 815 if (ap->pflags & ATA_PFLAG_LOADING)
b51e9e5d 816 ap->pflags &= ~ATA_PFLAG_LOADING;
1cdaf534 817 else if (ap->pflags & ATA_PFLAG_SCSI_HOTPLUG)
ad72cf98 818 schedule_delayed_work(&ap->hotplug_task, 0);
1cdaf534
TH
819
820 if (ap->pflags & ATA_PFLAG_RECOVERED)
a9a79dfe 821 ata_port_info(ap, "EH complete\n");
580b2102 822
b51e9e5d 823 ap->pflags &= ~(ATA_PFLAG_SCSI_HOTPLUG | ATA_PFLAG_RECOVERED);
ad9e2762 824
c6cf9e99 825 /* tell wait_eh that we're done */
b51e9e5d 826 ap->pflags &= ~ATA_PFLAG_EH_IN_PROGRESS;
c6cf9e99
TH
827 wake_up_all(&ap->eh_wait_q);
828
e30349d2 829 spin_unlock_irqrestore(ap->lock, flags);
ece1d636 830}
0e0b494c 831EXPORT_SYMBOL_GPL(ata_scsi_port_error_handler);
ece1d636 832
c6cf9e99
TH
833/**
834 * ata_port_wait_eh - Wait for the currently pending EH to complete
835 * @ap: Port to wait EH for
836 *
837 * Wait until the currently pending EH is complete.
838 *
839 * LOCKING:
840 * Kernel thread context (may sleep).
841 */
842void ata_port_wait_eh(struct ata_port *ap)
843{
844 unsigned long flags;
845 DEFINE_WAIT(wait);
846
847 retry:
ba6a1308 848 spin_lock_irqsave(ap->lock, flags);
c6cf9e99 849
b51e9e5d 850 while (ap->pflags & (ATA_PFLAG_EH_PENDING | ATA_PFLAG_EH_IN_PROGRESS)) {
c6cf9e99 851 prepare_to_wait(&ap->eh_wait_q, &wait, TASK_UNINTERRUPTIBLE);
ba6a1308 852 spin_unlock_irqrestore(ap->lock, flags);
c6cf9e99 853 schedule();
ba6a1308 854 spin_lock_irqsave(ap->lock, flags);
c6cf9e99 855 }
0a1b622e 856 finish_wait(&ap->eh_wait_q, &wait);
c6cf9e99 857
ba6a1308 858 spin_unlock_irqrestore(ap->lock, flags);
c6cf9e99
TH
859
860 /* make sure SCSI EH is complete */
cca3974e 861 if (scsi_host_in_recovery(ap->scsi_host)) {
97750ceb 862 ata_msleep(ap, 10);
c6cf9e99
TH
863 goto retry;
864 }
865}
81c757bc 866EXPORT_SYMBOL_GPL(ata_port_wait_eh);
c6cf9e99 867
5ddf24c5
TH
868static int ata_eh_nr_in_flight(struct ata_port *ap)
869{
870 unsigned int tag;
871 int nr = 0;
872
873 /* count only non-internal commands */
874 for (tag = 0; tag < ATA_MAX_QUEUE - 1; tag++)
875 if (ata_qc_from_tag(ap, tag))
876 nr++;
877
878 return nr;
879}
880
881void ata_eh_fastdrain_timerfn(unsigned long arg)
882{
883 struct ata_port *ap = (void *)arg;
884 unsigned long flags;
885 int cnt;
886
887 spin_lock_irqsave(ap->lock, flags);
888
889 cnt = ata_eh_nr_in_flight(ap);
890
891 /* are we done? */
892 if (!cnt)
893 goto out_unlock;
894
895 if (cnt == ap->fastdrain_cnt) {
896 unsigned int tag;
897
898 /* No progress during the last interval, tag all
899 * in-flight qcs as timed out and freeze the port.
900 */
901 for (tag = 0; tag < ATA_MAX_QUEUE - 1; tag++) {
902 struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag);
903 if (qc)
904 qc->err_mask |= AC_ERR_TIMEOUT;
905 }
906
907 ata_port_freeze(ap);
908 } else {
909 /* some qcs have finished, give it another chance */
910 ap->fastdrain_cnt = cnt;
911 ap->fastdrain_timer.expires =
341c2c95 912 ata_deadline(jiffies, ATA_EH_FASTDRAIN_INTERVAL);
5ddf24c5
TH
913 add_timer(&ap->fastdrain_timer);
914 }
915
916 out_unlock:
917 spin_unlock_irqrestore(ap->lock, flags);
918}
919
920/**
921 * ata_eh_set_pending - set ATA_PFLAG_EH_PENDING and activate fast drain
922 * @ap: target ATA port
923 * @fastdrain: activate fast drain
924 *
925 * Set ATA_PFLAG_EH_PENDING and activate fast drain if @fastdrain
926 * is non-zero and EH wasn't pending before. Fast drain ensures
927 * that EH kicks in in timely manner.
928 *
929 * LOCKING:
930 * spin_lock_irqsave(host lock)
931 */
932static void ata_eh_set_pending(struct ata_port *ap, int fastdrain)
933{
934 int cnt;
935
936 /* already scheduled? */
937 if (ap->pflags & ATA_PFLAG_EH_PENDING)
938 return;
939
940 ap->pflags |= ATA_PFLAG_EH_PENDING;
941
942 if (!fastdrain)
943 return;
944
945 /* do we have in-flight qcs? */
946 cnt = ata_eh_nr_in_flight(ap);
947 if (!cnt)
948 return;
949
950 /* activate fast drain */
951 ap->fastdrain_cnt = cnt;
341c2c95
TH
952 ap->fastdrain_timer.expires =
953 ata_deadline(jiffies, ATA_EH_FASTDRAIN_INTERVAL);
5ddf24c5
TH
954 add_timer(&ap->fastdrain_timer);
955}
956
f686bcb8
TH
957/**
958 * ata_qc_schedule_eh - schedule qc for error handling
959 * @qc: command to schedule error handling for
960 *
961 * Schedule error handling for @qc. EH will kick in as soon as
962 * other commands are drained.
963 *
964 * LOCKING:
cca3974e 965 * spin_lock_irqsave(host lock)
f686bcb8
TH
966 */
967void ata_qc_schedule_eh(struct ata_queued_cmd *qc)
968{
969 struct ata_port *ap = qc->ap;
fa41efda
TH
970 struct request_queue *q = qc->scsicmd->device->request_queue;
971 unsigned long flags;
f686bcb8
TH
972
973 WARN_ON(!ap->ops->error_handler);
974
975 qc->flags |= ATA_QCFLAG_FAILED;
5ddf24c5 976 ata_eh_set_pending(ap, 1);
f686bcb8
TH
977
978 /* The following will fail if timeout has already expired.
979 * ata_scsi_error() takes care of such scmds on EH entry.
980 * Note that ATA_QCFLAG_FAILED is unconditionally set after
981 * this function completes.
982 */
fa41efda 983 spin_lock_irqsave(q->queue_lock, flags);
242f9dcb 984 blk_abort_request(qc->scsicmd->request);
fa41efda 985 spin_unlock_irqrestore(q->queue_lock, flags);
f686bcb8
TH
986}
987
7b70fc03 988/**
e4a9c373
DW
989 * ata_std_sched_eh - non-libsas ata_ports issue eh with this common routine
990 * @ap: ATA port to schedule EH for
7b70fc03 991 *
e4a9c373 992 * LOCKING: inherited from ata_port_schedule_eh
cca3974e 993 * spin_lock_irqsave(host lock)
7b70fc03 994 */
e4a9c373 995void ata_std_sched_eh(struct ata_port *ap)
7b70fc03
TH
996{
997 WARN_ON(!ap->ops->error_handler);
998
f4d6d004
TH
999 if (ap->pflags & ATA_PFLAG_INITIALIZING)
1000 return;
1001
5ddf24c5 1002 ata_eh_set_pending(ap, 1);
cca3974e 1003 scsi_schedule_eh(ap->scsi_host);
7b70fc03
TH
1004
1005 DPRINTK("port EH scheduled\n");
1006}
e4a9c373
DW
1007EXPORT_SYMBOL_GPL(ata_std_sched_eh);
1008
1009/**
1010 * ata_std_end_eh - non-libsas ata_ports complete eh with this common routine
1011 * @ap: ATA port to end EH for
1012 *
1013 * In the libata object model there is a 1:1 mapping of ata_port to
1014 * shost, so host fields can be directly manipulated under ap->lock, in
1015 * the libsas case we need to hold a lock at the ha->level to coordinate
1016 * these events.
1017 *
1018 * LOCKING:
1019 * spin_lock_irqsave(host lock)
1020 */
1021void ata_std_end_eh(struct ata_port *ap)
1022{
1023 struct Scsi_Host *host = ap->scsi_host;
1024
1025 host->host_eh_scheduled = 0;
1026}
1027EXPORT_SYMBOL(ata_std_end_eh);
1028
1029
1030/**
1031 * ata_port_schedule_eh - schedule error handling without a qc
1032 * @ap: ATA port to schedule EH for
1033 *
1034 * Schedule error handling for @ap. EH will kick in as soon as
1035 * all commands are drained.
1036 *
1037 * LOCKING:
1038 * spin_lock_irqsave(host lock)
1039 */
1040void ata_port_schedule_eh(struct ata_port *ap)
1041{
1042 /* see: ata_std_sched_eh, unless you know better */
1043 ap->ops->sched_eh(ap);
1044}
7b70fc03 1045
dbd82616 1046static int ata_do_link_abort(struct ata_port *ap, struct ata_link *link)
7b70fc03
TH
1047{
1048 int tag, nr_aborted = 0;
1049
1050 WARN_ON(!ap->ops->error_handler);
1051
5ddf24c5
TH
1052 /* we're gonna abort all commands, no need for fast drain */
1053 ata_eh_set_pending(ap, 0);
1054
7b70fc03
TH
1055 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
1056 struct ata_queued_cmd *qc = ata_qc_from_tag(ap, tag);
1057
dbd82616 1058 if (qc && (!link || qc->dev->link == link)) {
7b70fc03
TH
1059 qc->flags |= ATA_QCFLAG_FAILED;
1060 ata_qc_complete(qc);
1061 nr_aborted++;
1062 }
1063 }
1064
1065 if (!nr_aborted)
1066 ata_port_schedule_eh(ap);
1067
1068 return nr_aborted;
1069}
1070
dbd82616
TH
1071/**
1072 * ata_link_abort - abort all qc's on the link
1073 * @link: ATA link to abort qc's for
1074 *
1075 * Abort all active qc's active on @link and schedule EH.
1076 *
1077 * LOCKING:
1078 * spin_lock_irqsave(host lock)
1079 *
1080 * RETURNS:
1081 * Number of aborted qc's.
1082 */
1083int ata_link_abort(struct ata_link *link)
1084{
1085 return ata_do_link_abort(link->ap, link);
1086}
1087
1088/**
1089 * ata_port_abort - abort all qc's on the port
1090 * @ap: ATA port to abort qc's for
1091 *
1092 * Abort all active qc's of @ap and schedule EH.
1093 *
1094 * LOCKING:
1095 * spin_lock_irqsave(host_set lock)
1096 *
1097 * RETURNS:
1098 * Number of aborted qc's.
1099 */
1100int ata_port_abort(struct ata_port *ap)
1101{
1102 return ata_do_link_abort(ap, NULL);
1103}
1104
e3180499
TH
1105/**
1106 * __ata_port_freeze - freeze port
1107 * @ap: ATA port to freeze
1108 *
1109 * This function is called when HSM violation or some other
1110 * condition disrupts normal operation of the port. Frozen port
1111 * is not allowed to perform any operation until the port is
1112 * thawed, which usually follows a successful reset.
1113 *
1114 * ap->ops->freeze() callback can be used for freezing the port
1115 * hardware-wise (e.g. mask interrupt and stop DMA engine). If a
1116 * port cannot be frozen hardware-wise, the interrupt handler
1117 * must ack and clear interrupts unconditionally while the port
1118 * is frozen.
1119 *
1120 * LOCKING:
cca3974e 1121 * spin_lock_irqsave(host lock)
e3180499
TH
1122 */
1123static void __ata_port_freeze(struct ata_port *ap)
1124{
1125 WARN_ON(!ap->ops->error_handler);
1126
1127 if (ap->ops->freeze)
1128 ap->ops->freeze(ap);
1129
b51e9e5d 1130 ap->pflags |= ATA_PFLAG_FROZEN;
e3180499 1131
44877b4e 1132 DPRINTK("ata%u port frozen\n", ap->print_id);
e3180499
TH
1133}
1134
1135/**
1136 * ata_port_freeze - abort & freeze port
1137 * @ap: ATA port to freeze
1138 *
54c38444
JG
1139 * Abort and freeze @ap. The freeze operation must be called
1140 * first, because some hardware requires special operations
1141 * before the taskfile registers are accessible.
e3180499
TH
1142 *
1143 * LOCKING:
cca3974e 1144 * spin_lock_irqsave(host lock)
e3180499
TH
1145 *
1146 * RETURNS:
1147 * Number of aborted commands.
1148 */
1149int ata_port_freeze(struct ata_port *ap)
1150{
1151 int nr_aborted;
1152
1153 WARN_ON(!ap->ops->error_handler);
1154
e3180499 1155 __ata_port_freeze(ap);
54c38444 1156 nr_aborted = ata_port_abort(ap);
e3180499
TH
1157
1158 return nr_aborted;
1159}
1160
7d77b247
TH
1161/**
1162 * sata_async_notification - SATA async notification handler
1163 * @ap: ATA port where async notification is received
1164 *
1165 * Handler to be called when async notification via SDB FIS is
1166 * received. This function schedules EH if necessary.
1167 *
1168 * LOCKING:
1169 * spin_lock_irqsave(host lock)
1170 *
1171 * RETURNS:
1172 * 1 if EH is scheduled, 0 otherwise.
1173 */
1174int sata_async_notification(struct ata_port *ap)
1175{
1176 u32 sntf;
1177 int rc;
1178
1179 if (!(ap->flags & ATA_FLAG_AN))
1180 return 0;
1181
1182 rc = sata_scr_read(&ap->link, SCR_NOTIFICATION, &sntf);
1183 if (rc == 0)
1184 sata_scr_write(&ap->link, SCR_NOTIFICATION, sntf);
1185
071f44b1 1186 if (!sata_pmp_attached(ap) || rc) {
7d77b247 1187 /* PMP is not attached or SNTF is not available */
071f44b1 1188 if (!sata_pmp_attached(ap)) {
7d77b247
TH
1189 /* PMP is not attached. Check whether ATAPI
1190 * AN is configured. If so, notify media
1191 * change.
1192 */
1193 struct ata_device *dev = ap->link.device;
1194
1195 if ((dev->class == ATA_DEV_ATAPI) &&
1196 (dev->flags & ATA_DFLAG_AN))
1197 ata_scsi_media_change_notify(dev);
1198 return 0;
1199 } else {
1200 /* PMP is attached but SNTF is not available.
1201 * ATAPI async media change notification is
1202 * not used. The PMP must be reporting PHY
1203 * status change, schedule EH.
1204 */
1205 ata_port_schedule_eh(ap);
1206 return 1;
1207 }
1208 } else {
1209 /* PMP is attached and SNTF is available */
1210 struct ata_link *link;
1211
1212 /* check and notify ATAPI AN */
1eca4365 1213 ata_for_each_link(link, ap, EDGE) {
7d77b247
TH
1214 if (!(sntf & (1 << link->pmp)))
1215 continue;
1216
1217 if ((link->device->class == ATA_DEV_ATAPI) &&
1218 (link->device->flags & ATA_DFLAG_AN))
1219 ata_scsi_media_change_notify(link->device);
1220 }
1221
1222 /* If PMP is reporting that PHY status of some
1223 * downstream ports has changed, schedule EH.
1224 */
1225 if (sntf & (1 << SATA_PMP_CTRL_PORT)) {
1226 ata_port_schedule_eh(ap);
1227 return 1;
1228 }
1229
1230 return 0;
1231 }
1232}
1233
e3180499
TH
1234/**
1235 * ata_eh_freeze_port - EH helper to freeze port
1236 * @ap: ATA port to freeze
1237 *
1238 * Freeze @ap.
1239 *
1240 * LOCKING:
1241 * None.
1242 */
1243void ata_eh_freeze_port(struct ata_port *ap)
1244{
1245 unsigned long flags;
1246
1247 if (!ap->ops->error_handler)
1248 return;
1249
ba6a1308 1250 spin_lock_irqsave(ap->lock, flags);
e3180499 1251 __ata_port_freeze(ap);
ba6a1308 1252 spin_unlock_irqrestore(ap->lock, flags);
e3180499
TH
1253}
1254
1255/**
1256 * ata_port_thaw_port - EH helper to thaw port
1257 * @ap: ATA port to thaw
1258 *
1259 * Thaw frozen port @ap.
1260 *
1261 * LOCKING:
1262 * None.
1263 */
1264void ata_eh_thaw_port(struct ata_port *ap)
1265{
1266 unsigned long flags;
1267
1268 if (!ap->ops->error_handler)
1269 return;
1270
ba6a1308 1271 spin_lock_irqsave(ap->lock, flags);
e3180499 1272
b51e9e5d 1273 ap->pflags &= ~ATA_PFLAG_FROZEN;
e3180499
TH
1274
1275 if (ap->ops->thaw)
1276 ap->ops->thaw(ap);
1277
ba6a1308 1278 spin_unlock_irqrestore(ap->lock, flags);
e3180499 1279
44877b4e 1280 DPRINTK("ata%u port thawed\n", ap->print_id);
e3180499
TH
1281}
1282
ece1d636
TH
1283static void ata_eh_scsidone(struct scsi_cmnd *scmd)
1284{
1285 /* nada */
1286}
1287
1288static void __ata_eh_qc_complete(struct ata_queued_cmd *qc)
1289{
1290 struct ata_port *ap = qc->ap;
1291 struct scsi_cmnd *scmd = qc->scsicmd;
1292 unsigned long flags;
1293
ba6a1308 1294 spin_lock_irqsave(ap->lock, flags);
ece1d636
TH
1295 qc->scsidone = ata_eh_scsidone;
1296 __ata_qc_complete(qc);
1297 WARN_ON(ata_tag_valid(qc->tag));
ba6a1308 1298 spin_unlock_irqrestore(ap->lock, flags);
ece1d636
TH
1299
1300 scsi_eh_finish_cmd(scmd, &ap->eh_done_q);
1301}
1302
1303/**
1304 * ata_eh_qc_complete - Complete an active ATA command from EH
1305 * @qc: Command to complete
1306 *
1307 * Indicate to the mid and upper layers that an ATA command has
1308 * completed. To be used from EH.
1309 */
1310void ata_eh_qc_complete(struct ata_queued_cmd *qc)
1311{
1312 struct scsi_cmnd *scmd = qc->scsicmd;
1313 scmd->retries = scmd->allowed;
1314 __ata_eh_qc_complete(qc);
1315}
1316
1317/**
1318 * ata_eh_qc_retry - Tell midlayer to retry an ATA command after EH
1319 * @qc: Command to retry
1320 *
1321 * Indicate to the mid and upper layers that an ATA command
1322 * should be retried. To be used from EH.
1323 *
1324 * SCSI midlayer limits the number of retries to scmd->allowed.
1325 * scmd->retries is decremented for commands which get retried
1326 * due to unrelated failures (qc->err_mask is zero).
1327 */
1328void ata_eh_qc_retry(struct ata_queued_cmd *qc)
1329{
1330 struct scsi_cmnd *scmd = qc->scsicmd;
1331 if (!qc->err_mask && scmd->retries)
1332 scmd->retries--;
1333 __ata_eh_qc_complete(qc);
1334}
022bdb07 1335
678afac6
TH
1336/**
1337 * ata_dev_disable - disable ATA device
1338 * @dev: ATA device to disable
1339 *
1340 * Disable @dev.
1341 *
1342 * Locking:
1343 * EH context.
1344 */
1345void ata_dev_disable(struct ata_device *dev)
1346{
1347 if (!ata_dev_enabled(dev))
1348 return;
1349
1350 if (ata_msg_drv(dev->link->ap))
a9a79dfe 1351 ata_dev_warn(dev, "disabled\n");
678afac6
TH
1352 ata_acpi_on_disable(dev);
1353 ata_down_xfermask_limit(dev, ATA_DNXFER_FORCE_PIO0 | ATA_DNXFER_QUIET);
1354 dev->class++;
99cf610a
TH
1355
1356 /* From now till the next successful probe, ering is used to
1357 * track probe failures. Clear accumulated device error info.
1358 */
1359 ata_ering_clear(&dev->ering);
678afac6
TH
1360}
1361
0ea035a3
TH
1362/**
1363 * ata_eh_detach_dev - detach ATA device
1364 * @dev: ATA device to detach
1365 *
1366 * Detach @dev.
1367 *
1368 * LOCKING:
1369 * None.
1370 */
fb7fd614 1371void ata_eh_detach_dev(struct ata_device *dev)
0ea035a3 1372{
f58229f8
TH
1373 struct ata_link *link = dev->link;
1374 struct ata_port *ap = link->ap;
90484ebf 1375 struct ata_eh_context *ehc = &link->eh_context;
0ea035a3
TH
1376 unsigned long flags;
1377
1378 ata_dev_disable(dev);
1379
ba6a1308 1380 spin_lock_irqsave(ap->lock, flags);
0ea035a3
TH
1381
1382 dev->flags &= ~ATA_DFLAG_DETACH;
1383
1384 if (ata_scsi_offline_dev(dev)) {
1385 dev->flags |= ATA_DFLAG_DETACHED;
b51e9e5d 1386 ap->pflags |= ATA_PFLAG_SCSI_HOTPLUG;
0ea035a3
TH
1387 }
1388
90484ebf 1389 /* clear per-dev EH info */
f58229f8
TH
1390 ata_eh_clear_action(link, dev, &link->eh_info, ATA_EH_PERDEV_MASK);
1391 ata_eh_clear_action(link, dev, &link->eh_context.i, ATA_EH_PERDEV_MASK);
90484ebf
TH
1392 ehc->saved_xfer_mode[dev->devno] = 0;
1393 ehc->saved_ncq_enabled &= ~(1 << dev->devno);
beb07c1a 1394
ba6a1308 1395 spin_unlock_irqrestore(ap->lock, flags);
0ea035a3
TH
1396}
1397
022bdb07
TH
1398/**
1399 * ata_eh_about_to_do - about to perform eh_action
955e57df 1400 * @link: target ATA link
47005f25 1401 * @dev: target ATA dev for per-dev action (can be NULL)
022bdb07
TH
1402 * @action: action about to be performed
1403 *
1404 * Called just before performing EH actions to clear related bits
955e57df
TH
1405 * in @link->eh_info such that eh actions are not unnecessarily
1406 * repeated.
022bdb07
TH
1407 *
1408 * LOCKING:
1409 * None.
1410 */
fb7fd614
TH
1411void ata_eh_about_to_do(struct ata_link *link, struct ata_device *dev,
1412 unsigned int action)
022bdb07 1413{
955e57df
TH
1414 struct ata_port *ap = link->ap;
1415 struct ata_eh_info *ehi = &link->eh_info;
1416 struct ata_eh_context *ehc = &link->eh_context;
022bdb07
TH
1417 unsigned long flags;
1418
ba6a1308 1419 spin_lock_irqsave(ap->lock, flags);
1cdaf534 1420
955e57df 1421 ata_eh_clear_action(link, dev, ehi, action);
1cdaf534 1422
a568d1d2
TH
1423 /* About to take EH action, set RECOVERED. Ignore actions on
1424 * slave links as master will do them again.
1425 */
1426 if (!(ehc->i.flags & ATA_EHI_QUIET) && link != ap->slave_link)
1cdaf534
TH
1427 ap->pflags |= ATA_PFLAG_RECOVERED;
1428
ba6a1308 1429 spin_unlock_irqrestore(ap->lock, flags);
022bdb07
TH
1430}
1431
47005f25
TH
1432/**
1433 * ata_eh_done - EH action complete
955e57df 1434* @ap: target ATA port
47005f25
TH
1435 * @dev: target ATA dev for per-dev action (can be NULL)
1436 * @action: action just completed
1437 *
1438 * Called right after performing EH actions to clear related bits
955e57df 1439 * in @link->eh_context.
47005f25
TH
1440 *
1441 * LOCKING:
1442 * None.
1443 */
fb7fd614
TH
1444void ata_eh_done(struct ata_link *link, struct ata_device *dev,
1445 unsigned int action)
47005f25 1446{
955e57df 1447 struct ata_eh_context *ehc = &link->eh_context;
9af5c9c9 1448
955e57df 1449 ata_eh_clear_action(link, dev, &ehc->i, action);
47005f25
TH
1450}
1451
022bdb07
TH
1452/**
1453 * ata_err_string - convert err_mask to descriptive string
1454 * @err_mask: error mask to convert to string
1455 *
1456 * Convert @err_mask to descriptive string. Errors are
1457 * prioritized according to severity and only the most severe
1458 * error is reported.
1459 *
1460 * LOCKING:
1461 * None.
1462 *
1463 * RETURNS:
1464 * Descriptive string for @err_mask
1465 */
2dcb407e 1466static const char *ata_err_string(unsigned int err_mask)
022bdb07
TH
1467{
1468 if (err_mask & AC_ERR_HOST_BUS)
1469 return "host bus error";
1470 if (err_mask & AC_ERR_ATA_BUS)
1471 return "ATA bus error";
1472 if (err_mask & AC_ERR_TIMEOUT)
1473 return "timeout";
1474 if (err_mask & AC_ERR_HSM)
1475 return "HSM violation";
1476 if (err_mask & AC_ERR_SYSTEM)
1477 return "internal error";
1478 if (err_mask & AC_ERR_MEDIA)
1479 return "media error";
1480 if (err_mask & AC_ERR_INVALID)
1481 return "invalid argument";
1482 if (err_mask & AC_ERR_DEV)
1483 return "device error";
1484 return "unknown error";
1485}
1486
e8ee8451
TH
1487/**
1488 * ata_read_log_page - read a specific log page
1489 * @dev: target device
65fe1f0f 1490 * @log: log to read
e8ee8451
TH
1491 * @page: page to read
1492 * @buf: buffer to store read page
1493 * @sectors: number of sectors to read
1494 *
1495 * Read log page using READ_LOG_EXT command.
1496 *
1497 * LOCKING:
1498 * Kernel thread context (may sleep).
1499 *
1500 * RETURNS:
1501 * 0 on success, AC_ERR_* mask otherwise.
1502 */
65fe1f0f
SH
1503unsigned int ata_read_log_page(struct ata_device *dev, u8 log,
1504 u8 page, void *buf, unsigned int sectors)
e8ee8451
TH
1505{
1506 struct ata_taskfile tf;
1507 unsigned int err_mask;
1508
65fe1f0f 1509 DPRINTK("read log page - log 0x%x, page 0x%x\n", log, page);
e8ee8451
TH
1510
1511 ata_tf_init(dev, &tf);
1512 tf.command = ATA_CMD_READ_LOG_EXT;
65fe1f0f
SH
1513 tf.lbal = log;
1514 tf.lbam = page;
e8ee8451
TH
1515 tf.nsect = sectors;
1516 tf.hob_nsect = sectors >> 8;
1517 tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_LBA48 | ATA_TFLAG_DEVICE;
1518 tf.protocol = ATA_PROT_PIO;
1519
1520 err_mask = ata_exec_internal(dev, &tf, NULL, DMA_FROM_DEVICE,
2b789108 1521 buf, sectors * ATA_SECT_SIZE, 0);
e8ee8451
TH
1522
1523 DPRINTK("EXIT, err_mask=%x\n", err_mask);
1524 return err_mask;
1525}
1526
1527/**
1528 * ata_eh_read_log_10h - Read log page 10h for NCQ error details
1529 * @dev: Device to read log page 10h from
1530 * @tag: Resulting tag of the failed command
1531 * @tf: Resulting taskfile registers of the failed command
1532 *
1533 * Read log page 10h to obtain NCQ error details and clear error
1534 * condition.
1535 *
1536 * LOCKING:
1537 * Kernel thread context (may sleep).
1538 *
1539 * RETURNS:
1540 * 0 on success, -errno otherwise.
1541 */
1542static int ata_eh_read_log_10h(struct ata_device *dev,
1543 int *tag, struct ata_taskfile *tf)
1544{
9af5c9c9 1545 u8 *buf = dev->link->ap->sector_buf;
e8ee8451
TH
1546 unsigned int err_mask;
1547 u8 csum;
1548 int i;
1549
65fe1f0f 1550 err_mask = ata_read_log_page(dev, ATA_LOG_SATA_NCQ, 0, buf, 1);
e8ee8451
TH
1551 if (err_mask)
1552 return -EIO;
1553
1554 csum = 0;
1555 for (i = 0; i < ATA_SECT_SIZE; i++)
1556 csum += buf[i];
1557 if (csum)
a9a79dfe
JP
1558 ata_dev_warn(dev, "invalid checksum 0x%x on log page 10h\n",
1559 csum);
e8ee8451
TH
1560
1561 if (buf[0] & 0x80)
1562 return -ENOENT;
1563
1564 *tag = buf[0] & 0x1f;
1565
1566 tf->command = buf[2];
1567 tf->feature = buf[3];
1568 tf->lbal = buf[4];
1569 tf->lbam = buf[5];
1570 tf->lbah = buf[6];
1571 tf->device = buf[7];
1572 tf->hob_lbal = buf[8];
1573 tf->hob_lbam = buf[9];
1574 tf->hob_lbah = buf[10];
1575 tf->nsect = buf[12];
1576 tf->hob_nsect = buf[13];
1577
1578 return 0;
1579}
1580
11fc33da
TH
1581/**
1582 * atapi_eh_tur - perform ATAPI TEST_UNIT_READY
1583 * @dev: target ATAPI device
1584 * @r_sense_key: out parameter for sense_key
1585 *
1586 * Perform ATAPI TEST_UNIT_READY.
1587 *
1588 * LOCKING:
1589 * EH context (may sleep).
1590 *
1591 * RETURNS:
1592 * 0 on success, AC_ERR_* mask on failure.
1593 */
1594static unsigned int atapi_eh_tur(struct ata_device *dev, u8 *r_sense_key)
1595{
1596 u8 cdb[ATAPI_CDB_LEN] = { TEST_UNIT_READY, 0, 0, 0, 0, 0 };
1597 struct ata_taskfile tf;
1598 unsigned int err_mask;
1599
1600 ata_tf_init(dev, &tf);
1601
1602 tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
1603 tf.command = ATA_CMD_PACKET;
1604 tf.protocol = ATAPI_PROT_NODATA;
1605
1606 err_mask = ata_exec_internal(dev, &tf, cdb, DMA_NONE, NULL, 0, 0);
1607 if (err_mask == AC_ERR_DEV)
1608 *r_sense_key = tf.feature >> 4;
1609 return err_mask;
1610}
1611
022bdb07
TH
1612/**
1613 * atapi_eh_request_sense - perform ATAPI REQUEST_SENSE
1614 * @dev: device to perform REQUEST_SENSE to
1615 * @sense_buf: result sense data buffer (SCSI_SENSE_BUFFERSIZE bytes long)
3eabddb8 1616 * @dfl_sense_key: default sense key to use
022bdb07
TH
1617 *
1618 * Perform ATAPI REQUEST_SENSE after the device reported CHECK
1619 * SENSE. This function is EH helper.
1620 *
1621 * LOCKING:
1622 * Kernel thread context (may sleep).
1623 *
1624 * RETURNS:
1625 * 0 on success, AC_ERR_* mask on failure
1626 */
3eabddb8
TH
1627static unsigned int atapi_eh_request_sense(struct ata_device *dev,
1628 u8 *sense_buf, u8 dfl_sense_key)
022bdb07 1629{
3eabddb8
TH
1630 u8 cdb[ATAPI_CDB_LEN] =
1631 { REQUEST_SENSE, 0, 0, 0, SCSI_SENSE_BUFFERSIZE, 0 };
9af5c9c9 1632 struct ata_port *ap = dev->link->ap;
022bdb07 1633 struct ata_taskfile tf;
022bdb07
TH
1634
1635 DPRINTK("ATAPI request sense\n");
1636
022bdb07
TH
1637 /* FIXME: is this needed? */
1638 memset(sense_buf, 0, SCSI_SENSE_BUFFERSIZE);
1639
56287768
AL
1640 /* initialize sense_buf with the error register,
1641 * for the case where they are -not- overwritten
1642 */
022bdb07 1643 sense_buf[0] = 0x70;
3eabddb8 1644 sense_buf[2] = dfl_sense_key;
56287768 1645
a617c09f 1646 /* some devices time out if garbage left in tf */
56287768 1647 ata_tf_init(dev, &tf);
022bdb07 1648
022bdb07
TH
1649 tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
1650 tf.command = ATA_CMD_PACKET;
1651
1652 /* is it pointless to prefer PIO for "safety reasons"? */
1653 if (ap->flags & ATA_FLAG_PIO_DMA) {
0dc36888 1654 tf.protocol = ATAPI_PROT_DMA;
022bdb07
TH
1655 tf.feature |= ATAPI_PKT_DMA;
1656 } else {
0dc36888 1657 tf.protocol = ATAPI_PROT_PIO;
f2dfc1a1
TH
1658 tf.lbam = SCSI_SENSE_BUFFERSIZE;
1659 tf.lbah = 0;
022bdb07
TH
1660 }
1661
1662 return ata_exec_internal(dev, &tf, cdb, DMA_FROM_DEVICE,
2b789108 1663 sense_buf, SCSI_SENSE_BUFFERSIZE, 0);
022bdb07
TH
1664}
1665
1666/**
1667 * ata_eh_analyze_serror - analyze SError for a failed port
0260731f 1668 * @link: ATA link to analyze SError for
022bdb07
TH
1669 *
1670 * Analyze SError if available and further determine cause of
1671 * failure.
1672 *
1673 * LOCKING:
1674 * None.
1675 */
0260731f 1676static void ata_eh_analyze_serror(struct ata_link *link)
022bdb07 1677{
0260731f 1678 struct ata_eh_context *ehc = &link->eh_context;
022bdb07
TH
1679 u32 serror = ehc->i.serror;
1680 unsigned int err_mask = 0, action = 0;
f9df58cb 1681 u32 hotplug_mask;
022bdb07 1682
e0614db2 1683 if (serror & (SERR_PERSISTENT | SERR_DATA)) {
022bdb07 1684 err_mask |= AC_ERR_ATA_BUS;
cf480626 1685 action |= ATA_EH_RESET;
022bdb07
TH
1686 }
1687 if (serror & SERR_PROTOCOL) {
1688 err_mask |= AC_ERR_HSM;
cf480626 1689 action |= ATA_EH_RESET;
022bdb07
TH
1690 }
1691 if (serror & SERR_INTERNAL) {
1692 err_mask |= AC_ERR_SYSTEM;
cf480626 1693 action |= ATA_EH_RESET;
022bdb07 1694 }
f9df58cb
TH
1695
1696 /* Determine whether a hotplug event has occurred. Both
1697 * SError.N/X are considered hotplug events for enabled or
1698 * host links. For disabled PMP links, only N bit is
1699 * considered as X bit is left at 1 for link plugging.
1700 */
eb0e85e3 1701 if (link->lpm_policy > ATA_LPM_MAX_POWER)
6b7ae954
TH
1702 hotplug_mask = 0; /* hotplug doesn't work w/ LPM */
1703 else if (!(link->flags & ATA_LFLAG_DISABLED) || ata_is_host_link(link))
f9df58cb
TH
1704 hotplug_mask = SERR_PHYRDY_CHG | SERR_DEV_XCHG;
1705 else
1706 hotplug_mask = SERR_PHYRDY_CHG;
1707
1708 if (serror & hotplug_mask)
084fe639 1709 ata_ehi_hotplugged(&ehc->i);
022bdb07
TH
1710
1711 ehc->i.err_mask |= err_mask;
1712 ehc->i.action |= action;
1713}
1714
e8ee8451
TH
1715/**
1716 * ata_eh_analyze_ncq_error - analyze NCQ error
0260731f 1717 * @link: ATA link to analyze NCQ error for
e8ee8451
TH
1718 *
1719 * Read log page 10h, determine the offending qc and acquire
1720 * error status TF. For NCQ device errors, all LLDDs have to do
1721 * is setting AC_ERR_DEV in ehi->err_mask. This function takes
1722 * care of the rest.
1723 *
1724 * LOCKING:
1725 * Kernel thread context (may sleep).
1726 */
10acf3b0 1727void ata_eh_analyze_ncq_error(struct ata_link *link)
e8ee8451 1728{
0260731f
TH
1729 struct ata_port *ap = link->ap;
1730 struct ata_eh_context *ehc = &link->eh_context;
1731 struct ata_device *dev = link->device;
e8ee8451
TH
1732 struct ata_queued_cmd *qc;
1733 struct ata_taskfile tf;
1734 int tag, rc;
1735
1736 /* if frozen, we can't do much */
b51e9e5d 1737 if (ap->pflags & ATA_PFLAG_FROZEN)
e8ee8451
TH
1738 return;
1739
1740 /* is it NCQ device error? */
0260731f 1741 if (!link->sactive || !(ehc->i.err_mask & AC_ERR_DEV))
e8ee8451
TH
1742 return;
1743
1744 /* has LLDD analyzed already? */
1745 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
1746 qc = __ata_qc_from_tag(ap, tag);
1747
1748 if (!(qc->flags & ATA_QCFLAG_FAILED))
1749 continue;
1750
1751 if (qc->err_mask)
1752 return;
1753 }
1754
1755 /* okay, this error is ours */
a09bf4cd 1756 memset(&tf, 0, sizeof(tf));
e8ee8451
TH
1757 rc = ata_eh_read_log_10h(dev, &tag, &tf);
1758 if (rc) {
a9a79dfe
JP
1759 ata_link_err(link, "failed to read log page 10h (errno=%d)\n",
1760 rc);
e8ee8451
TH
1761 return;
1762 }
1763
0260731f 1764 if (!(link->sactive & (1 << tag))) {
a9a79dfe
JP
1765 ata_link_err(link, "log page 10h reported inactive tag %d\n",
1766 tag);
e8ee8451
TH
1767 return;
1768 }
1769
1770 /* we've got the perpetrator, condemn it */
1771 qc = __ata_qc_from_tag(ap, tag);
1772 memcpy(&qc->result_tf, &tf, sizeof(tf));
a6116c9e 1773 qc->result_tf.flags = ATA_TFLAG_ISADDR | ATA_TFLAG_LBA | ATA_TFLAG_LBA48;
5335b729 1774 qc->err_mask |= AC_ERR_DEV | AC_ERR_NCQ;
e8ee8451
TH
1775 ehc->i.err_mask &= ~AC_ERR_DEV;
1776}
1777
022bdb07
TH
1778/**
1779 * ata_eh_analyze_tf - analyze taskfile of a failed qc
1780 * @qc: qc to analyze
1781 * @tf: Taskfile registers to analyze
1782 *
1783 * Analyze taskfile of @qc and further determine cause of
1784 * failure. This function also requests ATAPI sense data if
25985edc 1785 * available.
022bdb07
TH
1786 *
1787 * LOCKING:
1788 * Kernel thread context (may sleep).
1789 *
1790 * RETURNS:
1791 * Determined recovery action
1792 */
1793static unsigned int ata_eh_analyze_tf(struct ata_queued_cmd *qc,
1794 const struct ata_taskfile *tf)
1795{
1796 unsigned int tmp, action = 0;
1797 u8 stat = tf->command, err = tf->feature;
1798
1799 if ((stat & (ATA_BUSY | ATA_DRQ | ATA_DRDY)) != ATA_DRDY) {
1800 qc->err_mask |= AC_ERR_HSM;
cf480626 1801 return ATA_EH_RESET;
022bdb07
TH
1802 }
1803
a51d644a
TH
1804 if (stat & (ATA_ERR | ATA_DF))
1805 qc->err_mask |= AC_ERR_DEV;
1806 else
022bdb07
TH
1807 return 0;
1808
1809 switch (qc->dev->class) {
1810 case ATA_DEV_ATA:
1811 if (err & ATA_ICRC)
1812 qc->err_mask |= AC_ERR_ATA_BUS;
1813 if (err & ATA_UNC)
1814 qc->err_mask |= AC_ERR_MEDIA;
1815 if (err & ATA_IDNF)
1816 qc->err_mask |= AC_ERR_INVALID;
1817 break;
1818
1819 case ATA_DEV_ATAPI:
a569a30d 1820 if (!(qc->ap->pflags & ATA_PFLAG_FROZEN)) {
3eabddb8
TH
1821 tmp = atapi_eh_request_sense(qc->dev,
1822 qc->scsicmd->sense_buffer,
1823 qc->result_tf.feature >> 4);
a569a30d
TH
1824 if (!tmp) {
1825 /* ATA_QCFLAG_SENSE_VALID is used to
1826 * tell atapi_qc_complete() that sense
1827 * data is already valid.
1828 *
1829 * TODO: interpret sense data and set
1830 * appropriate err_mask.
1831 */
1832 qc->flags |= ATA_QCFLAG_SENSE_VALID;
1833 } else
1834 qc->err_mask |= tmp;
1835 }
022bdb07
TH
1836 }
1837
1838 if (qc->err_mask & (AC_ERR_HSM | AC_ERR_TIMEOUT | AC_ERR_ATA_BUS))
cf480626 1839 action |= ATA_EH_RESET;
022bdb07
TH
1840
1841 return action;
1842}
1843
76326ac1
TH
1844static int ata_eh_categorize_error(unsigned int eflags, unsigned int err_mask,
1845 int *xfer_ok)
022bdb07 1846{
76326ac1
TH
1847 int base = 0;
1848
1849 if (!(eflags & ATA_EFLAG_DUBIOUS_XFER))
1850 *xfer_ok = 1;
1851
1852 if (!*xfer_ok)
75f9cafc 1853 base = ATA_ECAT_DUBIOUS_NONE;
76326ac1 1854
7d47e8d4 1855 if (err_mask & AC_ERR_ATA_BUS)
76326ac1 1856 return base + ATA_ECAT_ATA_BUS;
022bdb07 1857
7d47e8d4 1858 if (err_mask & AC_ERR_TIMEOUT)
76326ac1 1859 return base + ATA_ECAT_TOUT_HSM;
7d47e8d4 1860
3884f7b0 1861 if (eflags & ATA_EFLAG_IS_IO) {
7d47e8d4 1862 if (err_mask & AC_ERR_HSM)
76326ac1 1863 return base + ATA_ECAT_TOUT_HSM;
7d47e8d4
TH
1864 if ((err_mask &
1865 (AC_ERR_DEV|AC_ERR_MEDIA|AC_ERR_INVALID)) == AC_ERR_DEV)
76326ac1 1866 return base + ATA_ECAT_UNK_DEV;
022bdb07
TH
1867 }
1868
1869 return 0;
1870}
1871
7d47e8d4 1872struct speed_down_verdict_arg {
022bdb07 1873 u64 since;
76326ac1 1874 int xfer_ok;
3884f7b0 1875 int nr_errors[ATA_ECAT_NR];
022bdb07
TH
1876};
1877
7d47e8d4 1878static int speed_down_verdict_cb(struct ata_ering_entry *ent, void *void_arg)
022bdb07 1879{
7d47e8d4 1880 struct speed_down_verdict_arg *arg = void_arg;
76326ac1 1881 int cat;
022bdb07 1882
d9027470 1883 if ((ent->eflags & ATA_EFLAG_OLD_ER) || (ent->timestamp < arg->since))
022bdb07
TH
1884 return -1;
1885
76326ac1
TH
1886 cat = ata_eh_categorize_error(ent->eflags, ent->err_mask,
1887 &arg->xfer_ok);
7d47e8d4 1888 arg->nr_errors[cat]++;
76326ac1 1889
022bdb07
TH
1890 return 0;
1891}
1892
1893/**
7d47e8d4 1894 * ata_eh_speed_down_verdict - Determine speed down verdict
022bdb07
TH
1895 * @dev: Device of interest
1896 *
1897 * This function examines error ring of @dev and determines
7d47e8d4
TH
1898 * whether NCQ needs to be turned off, transfer speed should be
1899 * stepped down, or falling back to PIO is necessary.
022bdb07 1900 *
3884f7b0
TH
1901 * ECAT_ATA_BUS : ATA_BUS error for any command
1902 *
1903 * ECAT_TOUT_HSM : TIMEOUT for any command or HSM violation for
1904 * IO commands
1905 *
1906 * ECAT_UNK_DEV : Unknown DEV error for IO commands
1907 *
76326ac1
TH
1908 * ECAT_DUBIOUS_* : Identical to above three but occurred while
1909 * data transfer hasn't been verified.
1910 *
3884f7b0
TH
1911 * Verdicts are
1912 *
1913 * NCQ_OFF : Turn off NCQ.
022bdb07 1914 *
3884f7b0
TH
1915 * SPEED_DOWN : Speed down transfer speed but don't fall back
1916 * to PIO.
7d47e8d4 1917 *
3884f7b0 1918 * FALLBACK_TO_PIO : Fall back to PIO.
022bdb07 1919 *
3884f7b0 1920 * Even if multiple verdicts are returned, only one action is
76326ac1
TH
1921 * taken per error. An action triggered by non-DUBIOUS errors
1922 * clears ering, while one triggered by DUBIOUS_* errors doesn't.
1923 * This is to expedite speed down decisions right after device is
1924 * initially configured.
1925 *
1926 * The followings are speed down rules. #1 and #2 deal with
1927 * DUBIOUS errors.
7d47e8d4 1928 *
76326ac1
TH
1929 * 1. If more than one DUBIOUS_ATA_BUS or DUBIOUS_TOUT_HSM errors
1930 * occurred during last 5 mins, SPEED_DOWN and FALLBACK_TO_PIO.
1931 *
1932 * 2. If more than one DUBIOUS_TOUT_HSM or DUBIOUS_UNK_DEV errors
1933 * occurred during last 5 mins, NCQ_OFF.
1934 *
1935 * 3. If more than 8 ATA_BUS, TOUT_HSM or UNK_DEV errors
25985edc 1936 * occurred during last 5 mins, FALLBACK_TO_PIO
7d47e8d4 1937 *
76326ac1 1938 * 4. If more than 3 TOUT_HSM or UNK_DEV errors occurred
3884f7b0
TH
1939 * during last 10 mins, NCQ_OFF.
1940 *
76326ac1 1941 * 5. If more than 3 ATA_BUS or TOUT_HSM errors, or more than 6
3884f7b0 1942 * UNK_DEV errors occurred during last 10 mins, SPEED_DOWN.
7d47e8d4 1943 *
022bdb07
TH
1944 * LOCKING:
1945 * Inherited from caller.
1946 *
1947 * RETURNS:
7d47e8d4 1948 * OR of ATA_EH_SPDN_* flags.
022bdb07 1949 */
7d47e8d4 1950static unsigned int ata_eh_speed_down_verdict(struct ata_device *dev)
022bdb07 1951{
7d47e8d4
TH
1952 const u64 j5mins = 5LLU * 60 * HZ, j10mins = 10LLU * 60 * HZ;
1953 u64 j64 = get_jiffies_64();
1954 struct speed_down_verdict_arg arg;
1955 unsigned int verdict = 0;
022bdb07 1956
3884f7b0 1957 /* scan past 5 mins of error history */
7d47e8d4 1958 memset(&arg, 0, sizeof(arg));
3884f7b0 1959 arg.since = j64 - min(j64, j5mins);
7d47e8d4 1960 ata_ering_map(&dev->ering, speed_down_verdict_cb, &arg);
022bdb07 1961
76326ac1
TH
1962 if (arg.nr_errors[ATA_ECAT_DUBIOUS_ATA_BUS] +
1963 arg.nr_errors[ATA_ECAT_DUBIOUS_TOUT_HSM] > 1)
1964 verdict |= ATA_EH_SPDN_SPEED_DOWN |
1965 ATA_EH_SPDN_FALLBACK_TO_PIO | ATA_EH_SPDN_KEEP_ERRORS;
1966
1967 if (arg.nr_errors[ATA_ECAT_DUBIOUS_TOUT_HSM] +
1968 arg.nr_errors[ATA_ECAT_DUBIOUS_UNK_DEV] > 1)
1969 verdict |= ATA_EH_SPDN_NCQ_OFF | ATA_EH_SPDN_KEEP_ERRORS;
1970
3884f7b0
TH
1971 if (arg.nr_errors[ATA_ECAT_ATA_BUS] +
1972 arg.nr_errors[ATA_ECAT_TOUT_HSM] +
663f99b8 1973 arg.nr_errors[ATA_ECAT_UNK_DEV] > 6)
3884f7b0 1974 verdict |= ATA_EH_SPDN_FALLBACK_TO_PIO;
022bdb07 1975
3884f7b0 1976 /* scan past 10 mins of error history */
022bdb07 1977 memset(&arg, 0, sizeof(arg));
3884f7b0 1978 arg.since = j64 - min(j64, j10mins);
7d47e8d4 1979 ata_ering_map(&dev->ering, speed_down_verdict_cb, &arg);
022bdb07 1980
3884f7b0
TH
1981 if (arg.nr_errors[ATA_ECAT_TOUT_HSM] +
1982 arg.nr_errors[ATA_ECAT_UNK_DEV] > 3)
1983 verdict |= ATA_EH_SPDN_NCQ_OFF;
1984
1985 if (arg.nr_errors[ATA_ECAT_ATA_BUS] +
1986 arg.nr_errors[ATA_ECAT_TOUT_HSM] > 3 ||
663f99b8 1987 arg.nr_errors[ATA_ECAT_UNK_DEV] > 6)
3884f7b0 1988 verdict |= ATA_EH_SPDN_SPEED_DOWN;
022bdb07 1989
7d47e8d4 1990 return verdict;
022bdb07
TH
1991}
1992
1993/**
1994 * ata_eh_speed_down - record error and speed down if necessary
1995 * @dev: Failed device
3884f7b0 1996 * @eflags: mask of ATA_EFLAG_* flags
022bdb07
TH
1997 * @err_mask: err_mask of the error
1998 *
1999 * Record error and examine error history to determine whether
2000 * adjusting transmission speed is necessary. It also sets
2001 * transmission limits appropriately if such adjustment is
2002 * necessary.
2003 *
2004 * LOCKING:
2005 * Kernel thread context (may sleep).
2006 *
2007 * RETURNS:
7d47e8d4 2008 * Determined recovery action.
022bdb07 2009 */
3884f7b0
TH
2010static unsigned int ata_eh_speed_down(struct ata_device *dev,
2011 unsigned int eflags, unsigned int err_mask)
022bdb07 2012{
b1c72916 2013 struct ata_link *link = ata_dev_phys_link(dev);
76326ac1 2014 int xfer_ok = 0;
7d47e8d4
TH
2015 unsigned int verdict;
2016 unsigned int action = 0;
2017
2018 /* don't bother if Cat-0 error */
76326ac1 2019 if (ata_eh_categorize_error(eflags, err_mask, &xfer_ok) == 0)
022bdb07
TH
2020 return 0;
2021
2022 /* record error and determine whether speed down is necessary */
3884f7b0 2023 ata_ering_record(&dev->ering, eflags, err_mask);
7d47e8d4 2024 verdict = ata_eh_speed_down_verdict(dev);
022bdb07 2025
7d47e8d4
TH
2026 /* turn off NCQ? */
2027 if ((verdict & ATA_EH_SPDN_NCQ_OFF) &&
2028 (dev->flags & (ATA_DFLAG_PIO | ATA_DFLAG_NCQ |
2029 ATA_DFLAG_NCQ_OFF)) == ATA_DFLAG_NCQ) {
2030 dev->flags |= ATA_DFLAG_NCQ_OFF;
a9a79dfe 2031 ata_dev_warn(dev, "NCQ disabled due to excessive errors\n");
7d47e8d4
TH
2032 goto done;
2033 }
022bdb07 2034
7d47e8d4
TH
2035 /* speed down? */
2036 if (verdict & ATA_EH_SPDN_SPEED_DOWN) {
2037 /* speed down SATA link speed if possible */
a07d499b 2038 if (sata_down_spd_limit(link, 0) == 0) {
cf480626 2039 action |= ATA_EH_RESET;
7d47e8d4
TH
2040 goto done;
2041 }
022bdb07 2042
7d47e8d4
TH
2043 /* lower transfer mode */
2044 if (dev->spdn_cnt < 2) {
2045 static const int dma_dnxfer_sel[] =
2046 { ATA_DNXFER_DMA, ATA_DNXFER_40C };
2047 static const int pio_dnxfer_sel[] =
2048 { ATA_DNXFER_PIO, ATA_DNXFER_FORCE_PIO0 };
2049 int sel;
2050
2051 if (dev->xfer_shift != ATA_SHIFT_PIO)
2052 sel = dma_dnxfer_sel[dev->spdn_cnt];
2053 else
2054 sel = pio_dnxfer_sel[dev->spdn_cnt];
2055
2056 dev->spdn_cnt++;
2057
2058 if (ata_down_xfermask_limit(dev, sel) == 0) {
cf480626 2059 action |= ATA_EH_RESET;
7d47e8d4
TH
2060 goto done;
2061 }
2062 }
2063 }
2064
2065 /* Fall back to PIO? Slowing down to PIO is meaningless for
663f99b8 2066 * SATA ATA devices. Consider it only for PATA and SATAPI.
7d47e8d4
TH
2067 */
2068 if ((verdict & ATA_EH_SPDN_FALLBACK_TO_PIO) && (dev->spdn_cnt >= 2) &&
663f99b8 2069 (link->ap->cbl != ATA_CBL_SATA || dev->class == ATA_DEV_ATAPI) &&
7d47e8d4
TH
2070 (dev->xfer_shift != ATA_SHIFT_PIO)) {
2071 if (ata_down_xfermask_limit(dev, ATA_DNXFER_FORCE_PIO) == 0) {
2072 dev->spdn_cnt = 0;
cf480626 2073 action |= ATA_EH_RESET;
7d47e8d4
TH
2074 goto done;
2075 }
2076 }
022bdb07 2077
022bdb07 2078 return 0;
7d47e8d4
TH
2079 done:
2080 /* device has been slowed down, blow error history */
76326ac1
TH
2081 if (!(verdict & ATA_EH_SPDN_KEEP_ERRORS))
2082 ata_ering_clear(&dev->ering);
7d47e8d4 2083 return action;
022bdb07
TH
2084}
2085
8d899e70
ML
2086/**
2087 * ata_eh_worth_retry - analyze error and decide whether to retry
2088 * @qc: qc to possibly retry
2089 *
2090 * Look at the cause of the error and decide if a retry
2091 * might be useful or not. We don't want to retry media errors
2092 * because the drive itself has probably already taken 10-30 seconds
2093 * doing its own internal retries before reporting the failure.
2094 */
2095static inline int ata_eh_worth_retry(struct ata_queued_cmd *qc)
2096{
2097 if (qc->flags & AC_ERR_MEDIA)
2098 return 0; /* don't retry media errors */
2099 if (qc->flags & ATA_QCFLAG_IO)
2100 return 1; /* otherwise retry anything from fs stack */
2101 if (qc->err_mask & AC_ERR_INVALID)
2102 return 0; /* don't retry these */
2103 return qc->err_mask != AC_ERR_DEV; /* retry if not dev error */
2104}
2105
022bdb07 2106/**
9b1e2658
TH
2107 * ata_eh_link_autopsy - analyze error and determine recovery action
2108 * @link: host link to perform autopsy on
022bdb07 2109 *
0260731f
TH
2110 * Analyze why @link failed and determine which recovery actions
2111 * are needed. This function also sets more detailed AC_ERR_*
2112 * values and fills sense data for ATAPI CHECK SENSE.
022bdb07
TH
2113 *
2114 * LOCKING:
2115 * Kernel thread context (may sleep).
2116 */
9b1e2658 2117static void ata_eh_link_autopsy(struct ata_link *link)
022bdb07 2118{
0260731f 2119 struct ata_port *ap = link->ap;
936fd732 2120 struct ata_eh_context *ehc = &link->eh_context;
dfcc173d 2121 struct ata_device *dev;
3884f7b0
TH
2122 unsigned int all_err_mask = 0, eflags = 0;
2123 int tag;
022bdb07
TH
2124 u32 serror;
2125 int rc;
2126
2127 DPRINTK("ENTER\n");
2128
1cdaf534
TH
2129 if (ehc->i.flags & ATA_EHI_NO_AUTOPSY)
2130 return;
2131
022bdb07 2132 /* obtain and analyze SError */
936fd732 2133 rc = sata_scr_read(link, SCR_ERROR, &serror);
022bdb07
TH
2134 if (rc == 0) {
2135 ehc->i.serror |= serror;
0260731f 2136 ata_eh_analyze_serror(link);
4e57c517 2137 } else if (rc != -EOPNOTSUPP) {
cf480626 2138 /* SError read failed, force reset and probing */
b558eddd 2139 ehc->i.probe_mask |= ATA_ALL_DEVICES;
cf480626 2140 ehc->i.action |= ATA_EH_RESET;
4e57c517
TH
2141 ehc->i.err_mask |= AC_ERR_OTHER;
2142 }
022bdb07 2143
e8ee8451 2144 /* analyze NCQ failure */
0260731f 2145 ata_eh_analyze_ncq_error(link);
e8ee8451 2146
022bdb07
TH
2147 /* any real error trumps AC_ERR_OTHER */
2148 if (ehc->i.err_mask & ~AC_ERR_OTHER)
2149 ehc->i.err_mask &= ~AC_ERR_OTHER;
2150
2151 all_err_mask |= ehc->i.err_mask;
2152
2153 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
2154 struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
2155
b1c72916
TH
2156 if (!(qc->flags & ATA_QCFLAG_FAILED) ||
2157 ata_dev_phys_link(qc->dev) != link)
022bdb07
TH
2158 continue;
2159
2160 /* inherit upper level err_mask */
2161 qc->err_mask |= ehc->i.err_mask;
2162
022bdb07 2163 /* analyze TF */
4528e4da 2164 ehc->i.action |= ata_eh_analyze_tf(qc, &qc->result_tf);
022bdb07
TH
2165
2166 /* DEV errors are probably spurious in case of ATA_BUS error */
2167 if (qc->err_mask & AC_ERR_ATA_BUS)
2168 qc->err_mask &= ~(AC_ERR_DEV | AC_ERR_MEDIA |
2169 AC_ERR_INVALID);
2170
2171 /* any real error trumps unknown error */
2172 if (qc->err_mask & ~AC_ERR_OTHER)
2173 qc->err_mask &= ~AC_ERR_OTHER;
2174
2175 /* SENSE_VALID trumps dev/unknown error and revalidation */
f90f0828 2176 if (qc->flags & ATA_QCFLAG_SENSE_VALID)
022bdb07 2177 qc->err_mask &= ~(AC_ERR_DEV | AC_ERR_OTHER);
022bdb07 2178
03faab78 2179 /* determine whether the command is worth retrying */
8d899e70 2180 if (ata_eh_worth_retry(qc))
03faab78
TH
2181 qc->flags |= ATA_QCFLAG_RETRY;
2182
022bdb07 2183 /* accumulate error info */
4528e4da 2184 ehc->i.dev = qc->dev;
022bdb07
TH
2185 all_err_mask |= qc->err_mask;
2186 if (qc->flags & ATA_QCFLAG_IO)
3884f7b0 2187 eflags |= ATA_EFLAG_IS_IO;
022bdb07
TH
2188 }
2189
a20f33ff 2190 /* enforce default EH actions */
b51e9e5d 2191 if (ap->pflags & ATA_PFLAG_FROZEN ||
a20f33ff 2192 all_err_mask & (AC_ERR_HSM | AC_ERR_TIMEOUT))
cf480626 2193 ehc->i.action |= ATA_EH_RESET;
3884f7b0
TH
2194 else if (((eflags & ATA_EFLAG_IS_IO) && all_err_mask) ||
2195 (!(eflags & ATA_EFLAG_IS_IO) && (all_err_mask & ~AC_ERR_DEV)))
4528e4da 2196 ehc->i.action |= ATA_EH_REVALIDATE;
022bdb07 2197
dfcc173d
TH
2198 /* If we have offending qcs and the associated failed device,
2199 * perform per-dev EH action only on the offending device.
2200 */
4528e4da 2201 if (ehc->i.dev) {
4528e4da
TH
2202 ehc->i.dev_action[ehc->i.dev->devno] |=
2203 ehc->i.action & ATA_EH_PERDEV_MASK;
2204 ehc->i.action &= ~ATA_EH_PERDEV_MASK;
47005f25
TH
2205 }
2206
2695e366
TH
2207 /* propagate timeout to host link */
2208 if ((all_err_mask & AC_ERR_TIMEOUT) && !ata_is_host_link(link))
2209 ap->link.eh_context.i.err_mask |= AC_ERR_TIMEOUT;
2210
2211 /* record error and consider speeding down */
dfcc173d 2212 dev = ehc->i.dev;
2695e366
TH
2213 if (!dev && ((ata_link_max_devices(link) == 1 &&
2214 ata_dev_enabled(link->device))))
2215 dev = link->device;
dfcc173d 2216
76326ac1
TH
2217 if (dev) {
2218 if (dev->flags & ATA_DFLAG_DUBIOUS_XFER)
2219 eflags |= ATA_EFLAG_DUBIOUS_XFER;
3884f7b0 2220 ehc->i.action |= ata_eh_speed_down(dev, eflags, all_err_mask);
76326ac1 2221 }
dfcc173d 2222
022bdb07
TH
2223 DPRINTK("EXIT\n");
2224}
2225
2226/**
9b1e2658
TH
2227 * ata_eh_autopsy - analyze error and determine recovery action
2228 * @ap: host port to perform autopsy on
2229 *
2230 * Analyze all links of @ap and determine why they failed and
2231 * which recovery actions are needed.
2232 *
2233 * LOCKING:
2234 * Kernel thread context (may sleep).
2235 */
fb7fd614 2236void ata_eh_autopsy(struct ata_port *ap)
9b1e2658
TH
2237{
2238 struct ata_link *link;
2239
1eca4365 2240 ata_for_each_link(link, ap, EDGE)
9b1e2658 2241 ata_eh_link_autopsy(link);
2695e366 2242
b1c72916
TH
2243 /* Handle the frigging slave link. Autopsy is done similarly
2244 * but actions and flags are transferred over to the master
2245 * link and handled from there.
2246 */
2247 if (ap->slave_link) {
2248 struct ata_eh_context *mehc = &ap->link.eh_context;
2249 struct ata_eh_context *sehc = &ap->slave_link->eh_context;
2250
848e4c68
TH
2251 /* transfer control flags from master to slave */
2252 sehc->i.flags |= mehc->i.flags & ATA_EHI_TO_SLAVE_MASK;
2253
2254 /* perform autopsy on the slave link */
b1c72916
TH
2255 ata_eh_link_autopsy(ap->slave_link);
2256
848e4c68 2257 /* transfer actions from slave to master and clear slave */
b1c72916
TH
2258 ata_eh_about_to_do(ap->slave_link, NULL, ATA_EH_ALL_ACTIONS);
2259 mehc->i.action |= sehc->i.action;
2260 mehc->i.dev_action[1] |= sehc->i.dev_action[1];
2261 mehc->i.flags |= sehc->i.flags;
2262 ata_eh_done(ap->slave_link, NULL, ATA_EH_ALL_ACTIONS);
2263 }
2264
2695e366
TH
2265 /* Autopsy of fanout ports can affect host link autopsy.
2266 * Perform host link autopsy last.
2267 */
071f44b1 2268 if (sata_pmp_attached(ap))
2695e366 2269 ata_eh_link_autopsy(&ap->link);
9b1e2658
TH
2270}
2271
6521148c
RH
2272/**
2273 * ata_get_cmd_descript - get description for ATA command
2274 * @command: ATA command code to get description for
2275 *
2276 * Return a textual description of the given command, or NULL if the
2277 * command is not known.
2278 *
2279 * LOCKING:
2280 * None
2281 */
2282const char *ata_get_cmd_descript(u8 command)
2283{
2284#ifdef CONFIG_ATA_VERBOSE_ERROR
2285 static const struct
2286 {
2287 u8 command;
2288 const char *text;
2289 } cmd_descr[] = {
2290 { ATA_CMD_DEV_RESET, "DEVICE RESET" },
2291 { ATA_CMD_CHK_POWER, "CHECK POWER MODE" },
2292 { ATA_CMD_STANDBY, "STANDBY" },
2293 { ATA_CMD_IDLE, "IDLE" },
2294 { ATA_CMD_EDD, "EXECUTE DEVICE DIAGNOSTIC" },
2295 { ATA_CMD_DOWNLOAD_MICRO, "DOWNLOAD MICROCODE" },
2296 { ATA_CMD_NOP, "NOP" },
2297 { ATA_CMD_FLUSH, "FLUSH CACHE" },
2298 { ATA_CMD_FLUSH_EXT, "FLUSH CACHE EXT" },
2299 { ATA_CMD_ID_ATA, "IDENTIFY DEVICE" },
2300 { ATA_CMD_ID_ATAPI, "IDENTIFY PACKET DEVICE" },
2301 { ATA_CMD_SERVICE, "SERVICE" },
2302 { ATA_CMD_READ, "READ DMA" },
2303 { ATA_CMD_READ_EXT, "READ DMA EXT" },
2304 { ATA_CMD_READ_QUEUED, "READ DMA QUEUED" },
2305 { ATA_CMD_READ_STREAM_EXT, "READ STREAM EXT" },
2306 { ATA_CMD_READ_STREAM_DMA_EXT, "READ STREAM DMA EXT" },
2307 { ATA_CMD_WRITE, "WRITE DMA" },
2308 { ATA_CMD_WRITE_EXT, "WRITE DMA EXT" },
2309 { ATA_CMD_WRITE_QUEUED, "WRITE DMA QUEUED EXT" },
2310 { ATA_CMD_WRITE_STREAM_EXT, "WRITE STREAM EXT" },
2311 { ATA_CMD_WRITE_STREAM_DMA_EXT, "WRITE STREAM DMA EXT" },
2312 { ATA_CMD_WRITE_FUA_EXT, "WRITE DMA FUA EXT" },
2313 { ATA_CMD_WRITE_QUEUED_FUA_EXT, "WRITE DMA QUEUED FUA EXT" },
2314 { ATA_CMD_FPDMA_READ, "READ FPDMA QUEUED" },
2315 { ATA_CMD_FPDMA_WRITE, "WRITE FPDMA QUEUED" },
2316 { ATA_CMD_PIO_READ, "READ SECTOR(S)" },
2317 { ATA_CMD_PIO_READ_EXT, "READ SECTOR(S) EXT" },
2318 { ATA_CMD_PIO_WRITE, "WRITE SECTOR(S)" },
2319 { ATA_CMD_PIO_WRITE_EXT, "WRITE SECTOR(S) EXT" },
2320 { ATA_CMD_READ_MULTI, "READ MULTIPLE" },
2321 { ATA_CMD_READ_MULTI_EXT, "READ MULTIPLE EXT" },
2322 { ATA_CMD_WRITE_MULTI, "WRITE MULTIPLE" },
2323 { ATA_CMD_WRITE_MULTI_EXT, "WRITE MULTIPLE EXT" },
2324 { ATA_CMD_WRITE_MULTI_FUA_EXT, "WRITE MULTIPLE FUA EXT" },
2325 { ATA_CMD_SET_FEATURES, "SET FEATURES" },
2326 { ATA_CMD_SET_MULTI, "SET MULTIPLE MODE" },
2327 { ATA_CMD_VERIFY, "READ VERIFY SECTOR(S)" },
2328 { ATA_CMD_VERIFY_EXT, "READ VERIFY SECTOR(S) EXT" },
2329 { ATA_CMD_WRITE_UNCORR_EXT, "WRITE UNCORRECTABLE EXT" },
2330 { ATA_CMD_STANDBYNOW1, "STANDBY IMMEDIATE" },
2331 { ATA_CMD_IDLEIMMEDIATE, "IDLE IMMEDIATE" },
2332 { ATA_CMD_SLEEP, "SLEEP" },
2333 { ATA_CMD_INIT_DEV_PARAMS, "INITIALIZE DEVICE PARAMETERS" },
2334 { ATA_CMD_READ_NATIVE_MAX, "READ NATIVE MAX ADDRESS" },
2335 { ATA_CMD_READ_NATIVE_MAX_EXT, "READ NATIVE MAX ADDRESS EXT" },
2336 { ATA_CMD_SET_MAX, "SET MAX ADDRESS" },
2337 { ATA_CMD_SET_MAX_EXT, "SET MAX ADDRESS EXT" },
2338 { ATA_CMD_READ_LOG_EXT, "READ LOG EXT" },
2339 { ATA_CMD_WRITE_LOG_EXT, "WRITE LOG EXT" },
2340 { ATA_CMD_READ_LOG_DMA_EXT, "READ LOG DMA EXT" },
2341 { ATA_CMD_WRITE_LOG_DMA_EXT, "WRITE LOG DMA EXT" },
2342 { ATA_CMD_TRUSTED_RCV, "TRUSTED RECEIVE" },
2343 { ATA_CMD_TRUSTED_RCV_DMA, "TRUSTED RECEIVE DMA" },
2344 { ATA_CMD_TRUSTED_SND, "TRUSTED SEND" },
2345 { ATA_CMD_TRUSTED_SND_DMA, "TRUSTED SEND DMA" },
2346 { ATA_CMD_PMP_READ, "READ BUFFER" },
2347 { ATA_CMD_PMP_WRITE, "WRITE BUFFER" },
2348 { ATA_CMD_CONF_OVERLAY, "DEVICE CONFIGURATION OVERLAY" },
2349 { ATA_CMD_SEC_SET_PASS, "SECURITY SET PASSWORD" },
2350 { ATA_CMD_SEC_UNLOCK, "SECURITY UNLOCK" },
2351 { ATA_CMD_SEC_ERASE_PREP, "SECURITY ERASE PREPARE" },
2352 { ATA_CMD_SEC_ERASE_UNIT, "SECURITY ERASE UNIT" },
2353 { ATA_CMD_SEC_FREEZE_LOCK, "SECURITY FREEZE LOCK" },
2354 { ATA_CMD_SEC_DISABLE_PASS, "SECURITY DISABLE PASSWORD" },
2355 { ATA_CMD_CONFIG_STREAM, "CONFIGURE STREAM" },
2356 { ATA_CMD_SMART, "SMART" },
2357 { ATA_CMD_MEDIA_LOCK, "DOOR LOCK" },
2358 { ATA_CMD_MEDIA_UNLOCK, "DOOR UNLOCK" },
acad7627 2359 { ATA_CMD_DSM, "DATA SET MANAGEMENT" },
6521148c
RH
2360 { ATA_CMD_CHK_MED_CRD_TYP, "CHECK MEDIA CARD TYPE" },
2361 { ATA_CMD_CFA_REQ_EXT_ERR, "CFA REQUEST EXTENDED ERROR" },
2362 { ATA_CMD_CFA_WRITE_NE, "CFA WRITE SECTORS WITHOUT ERASE" },
2363 { ATA_CMD_CFA_TRANS_SECT, "CFA TRANSLATE SECTOR" },
2364 { ATA_CMD_CFA_ERASE, "CFA ERASE SECTORS" },
2365 { ATA_CMD_CFA_WRITE_MULT_NE, "CFA WRITE MULTIPLE WITHOUT ERASE" },
2366 { ATA_CMD_READ_LONG, "READ LONG (with retries)" },
2367 { ATA_CMD_READ_LONG_ONCE, "READ LONG (without retries)" },
2368 { ATA_CMD_WRITE_LONG, "WRITE LONG (with retries)" },
2369 { ATA_CMD_WRITE_LONG_ONCE, "WRITE LONG (without retries)" },
2370 { ATA_CMD_RESTORE, "RECALIBRATE" },
2371 { 0, NULL } /* terminate list */
2372 };
2373
2374 unsigned int i;
2375 for (i = 0; cmd_descr[i].text; i++)
2376 if (cmd_descr[i].command == command)
2377 return cmd_descr[i].text;
2378#endif
2379
2380 return NULL;
2381}
2382
9b1e2658
TH
2383/**
2384 * ata_eh_link_report - report error handling to user
0260731f 2385 * @link: ATA link EH is going on
022bdb07
TH
2386 *
2387 * Report EH to user.
2388 *
2389 * LOCKING:
2390 * None.
2391 */
9b1e2658 2392static void ata_eh_link_report(struct ata_link *link)
022bdb07 2393{
0260731f
TH
2394 struct ata_port *ap = link->ap;
2395 struct ata_eh_context *ehc = &link->eh_context;
022bdb07 2396 const char *frozen, *desc;
a1e10f7e 2397 char tries_buf[6];
022bdb07
TH
2398 int tag, nr_failed = 0;
2399
94ff3d54
TH
2400 if (ehc->i.flags & ATA_EHI_QUIET)
2401 return;
2402
022bdb07
TH
2403 desc = NULL;
2404 if (ehc->i.desc[0] != '\0')
2405 desc = ehc->i.desc;
2406
2407 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
2408 struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
2409
b1c72916
TH
2410 if (!(qc->flags & ATA_QCFLAG_FAILED) ||
2411 ata_dev_phys_link(qc->dev) != link ||
e027bd36
TH
2412 ((qc->flags & ATA_QCFLAG_QUIET) &&
2413 qc->err_mask == AC_ERR_DEV))
022bdb07
TH
2414 continue;
2415 if (qc->flags & ATA_QCFLAG_SENSE_VALID && !qc->err_mask)
2416 continue;
2417
2418 nr_failed++;
2419 }
2420
2421 if (!nr_failed && !ehc->i.err_mask)
2422 return;
2423
2424 frozen = "";
b51e9e5d 2425 if (ap->pflags & ATA_PFLAG_FROZEN)
022bdb07
TH
2426 frozen = " frozen";
2427
a1e10f7e
TH
2428 memset(tries_buf, 0, sizeof(tries_buf));
2429 if (ap->eh_tries < ATA_EH_MAX_TRIES)
2430 snprintf(tries_buf, sizeof(tries_buf) - 1, " t%d",
2431 ap->eh_tries);
2432
022bdb07 2433 if (ehc->i.dev) {
a9a79dfe
JP
2434 ata_dev_err(ehc->i.dev, "exception Emask 0x%x "
2435 "SAct 0x%x SErr 0x%x action 0x%x%s%s\n",
2436 ehc->i.err_mask, link->sactive, ehc->i.serror,
2437 ehc->i.action, frozen, tries_buf);
022bdb07 2438 if (desc)
a9a79dfe 2439 ata_dev_err(ehc->i.dev, "%s\n", desc);
022bdb07 2440 } else {
a9a79dfe
JP
2441 ata_link_err(link, "exception Emask 0x%x "
2442 "SAct 0x%x SErr 0x%x action 0x%x%s%s\n",
2443 ehc->i.err_mask, link->sactive, ehc->i.serror,
2444 ehc->i.action, frozen, tries_buf);
022bdb07 2445 if (desc)
a9a79dfe 2446 ata_link_err(link, "%s\n", desc);
022bdb07
TH
2447 }
2448
6521148c 2449#ifdef CONFIG_ATA_VERBOSE_ERROR
1333e194 2450 if (ehc->i.serror)
a9a79dfe 2451 ata_link_err(link,
1333e194
RH
2452 "SError: { %s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s}\n",
2453 ehc->i.serror & SERR_DATA_RECOVERED ? "RecovData " : "",
2454 ehc->i.serror & SERR_COMM_RECOVERED ? "RecovComm " : "",
2455 ehc->i.serror & SERR_DATA ? "UnrecovData " : "",
2456 ehc->i.serror & SERR_PERSISTENT ? "Persist " : "",
2457 ehc->i.serror & SERR_PROTOCOL ? "Proto " : "",
2458 ehc->i.serror & SERR_INTERNAL ? "HostInt " : "",
2459 ehc->i.serror & SERR_PHYRDY_CHG ? "PHYRdyChg " : "",
2460 ehc->i.serror & SERR_PHY_INT_ERR ? "PHYInt " : "",
2461 ehc->i.serror & SERR_COMM_WAKE ? "CommWake " : "",
2462 ehc->i.serror & SERR_10B_8B_ERR ? "10B8B " : "",
2463 ehc->i.serror & SERR_DISPARITY ? "Dispar " : "",
2464 ehc->i.serror & SERR_CRC ? "BadCRC " : "",
2465 ehc->i.serror & SERR_HANDSHAKE ? "Handshk " : "",
2466 ehc->i.serror & SERR_LINK_SEQ_ERR ? "LinkSeq " : "",
2467 ehc->i.serror & SERR_TRANS_ST_ERROR ? "TrStaTrns " : "",
2468 ehc->i.serror & SERR_UNRECOG_FIS ? "UnrecFIS " : "",
2dcb407e 2469 ehc->i.serror & SERR_DEV_XCHG ? "DevExch " : "");
6521148c 2470#endif
1333e194 2471
022bdb07
TH
2472 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
2473 struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
8a937581 2474 struct ata_taskfile *cmd = &qc->tf, *res = &qc->result_tf;
abb6a889
TH
2475 const u8 *cdb = qc->cdb;
2476 char data_buf[20] = "";
2477 char cdb_buf[70] = "";
022bdb07 2478
0260731f 2479 if (!(qc->flags & ATA_QCFLAG_FAILED) ||
b1c72916 2480 ata_dev_phys_link(qc->dev) != link || !qc->err_mask)
022bdb07
TH
2481 continue;
2482
abb6a889
TH
2483 if (qc->dma_dir != DMA_NONE) {
2484 static const char *dma_str[] = {
2485 [DMA_BIDIRECTIONAL] = "bidi",
2486 [DMA_TO_DEVICE] = "out",
2487 [DMA_FROM_DEVICE] = "in",
2488 };
2489 static const char *prot_str[] = {
2490 [ATA_PROT_PIO] = "pio",
2491 [ATA_PROT_DMA] = "dma",
2492 [ATA_PROT_NCQ] = "ncq",
0dc36888
TH
2493 [ATAPI_PROT_PIO] = "pio",
2494 [ATAPI_PROT_DMA] = "dma",
abb6a889
TH
2495 };
2496
2497 snprintf(data_buf, sizeof(data_buf), " %s %u %s",
2498 prot_str[qc->tf.protocol], qc->nbytes,
2499 dma_str[qc->dma_dir]);
2500 }
2501
6521148c
RH
2502 if (ata_is_atapi(qc->tf.protocol)) {
2503 if (qc->scsicmd)
2504 scsi_print_command(qc->scsicmd);
2505 else
2506 snprintf(cdb_buf, sizeof(cdb_buf),
abb6a889
TH
2507 "cdb %02x %02x %02x %02x %02x %02x %02x %02x "
2508 "%02x %02x %02x %02x %02x %02x %02x %02x\n ",
2509 cdb[0], cdb[1], cdb[2], cdb[3],
2510 cdb[4], cdb[5], cdb[6], cdb[7],
2511 cdb[8], cdb[9], cdb[10], cdb[11],
2512 cdb[12], cdb[13], cdb[14], cdb[15]);
6521148c
RH
2513 } else {
2514 const char *descr = ata_get_cmd_descript(cmd->command);
2515 if (descr)
a9a79dfe
JP
2516 ata_dev_err(qc->dev, "failed command: %s\n",
2517 descr);
6521148c 2518 }
abb6a889 2519
a9a79dfe 2520 ata_dev_err(qc->dev,
8a937581 2521 "cmd %02x/%02x:%02x:%02x:%02x:%02x/%02x:%02x:%02x:%02x:%02x/%02x "
abb6a889 2522 "tag %d%s\n %s"
8a937581 2523 "res %02x/%02x:%02x:%02x:%02x:%02x/%02x:%02x:%02x:%02x:%02x/%02x "
5335b729 2524 "Emask 0x%x (%s)%s\n",
8a937581
TH
2525 cmd->command, cmd->feature, cmd->nsect,
2526 cmd->lbal, cmd->lbam, cmd->lbah,
2527 cmd->hob_feature, cmd->hob_nsect,
2528 cmd->hob_lbal, cmd->hob_lbam, cmd->hob_lbah,
abb6a889 2529 cmd->device, qc->tag, data_buf, cdb_buf,
8a937581
TH
2530 res->command, res->feature, res->nsect,
2531 res->lbal, res->lbam, res->lbah,
2532 res->hob_feature, res->hob_nsect,
2533 res->hob_lbal, res->hob_lbam, res->hob_lbah,
5335b729
TH
2534 res->device, qc->err_mask, ata_err_string(qc->err_mask),
2535 qc->err_mask & AC_ERR_NCQ ? " <F>" : "");
1333e194 2536
6521148c 2537#ifdef CONFIG_ATA_VERBOSE_ERROR
1333e194 2538 if (res->command & (ATA_BUSY | ATA_DRDY | ATA_DF | ATA_DRQ |
2dcb407e 2539 ATA_ERR)) {
1333e194 2540 if (res->command & ATA_BUSY)
a9a79dfe 2541 ata_dev_err(qc->dev, "status: { Busy }\n");
1333e194 2542 else
a9a79dfe 2543 ata_dev_err(qc->dev, "status: { %s%s%s%s}\n",
1333e194
RH
2544 res->command & ATA_DRDY ? "DRDY " : "",
2545 res->command & ATA_DF ? "DF " : "",
2546 res->command & ATA_DRQ ? "DRQ " : "",
2dcb407e 2547 res->command & ATA_ERR ? "ERR " : "");
1333e194
RH
2548 }
2549
2550 if (cmd->command != ATA_CMD_PACKET &&
2551 (res->feature & (ATA_ICRC | ATA_UNC | ATA_IDNF |
2552 ATA_ABORTED)))
a9a79dfe 2553 ata_dev_err(qc->dev, "error: { %s%s%s%s}\n",
1333e194
RH
2554 res->feature & ATA_ICRC ? "ICRC " : "",
2555 res->feature & ATA_UNC ? "UNC " : "",
2556 res->feature & ATA_IDNF ? "IDNF " : "",
2dcb407e 2557 res->feature & ATA_ABORTED ? "ABRT " : "");
6521148c 2558#endif
022bdb07
TH
2559 }
2560}
2561
9b1e2658
TH
2562/**
2563 * ata_eh_report - report error handling to user
2564 * @ap: ATA port to report EH about
2565 *
2566 * Report EH to user.
2567 *
2568 * LOCKING:
2569 * None.
2570 */
fb7fd614 2571void ata_eh_report(struct ata_port *ap)
9b1e2658
TH
2572{
2573 struct ata_link *link;
2574
1eca4365 2575 ata_for_each_link(link, ap, HOST_FIRST)
9b1e2658
TH
2576 ata_eh_link_report(link);
2577}
2578
cc0680a5 2579static int ata_do_reset(struct ata_link *link, ata_reset_fn_t reset,
b1c72916
TH
2580 unsigned int *classes, unsigned long deadline,
2581 bool clear_classes)
d87fa38e 2582{
f58229f8 2583 struct ata_device *dev;
d87fa38e 2584
b1c72916 2585 if (clear_classes)
1eca4365 2586 ata_for_each_dev(dev, link, ALL)
b1c72916 2587 classes[dev->devno] = ATA_DEV_UNKNOWN;
d87fa38e 2588
f046519f 2589 return reset(link, classes, deadline);
d87fa38e
TH
2590}
2591
e8411fba 2592static int ata_eh_followup_srst_needed(struct ata_link *link, int rc)
664faf09 2593{
45db2f6c 2594 if ((link->flags & ATA_LFLAG_NO_SRST) || ata_link_offline(link))
ae791c05 2595 return 0;
5dbfc9cb
TH
2596 if (rc == -EAGAIN)
2597 return 1;
071f44b1 2598 if (sata_pmp_supported(link->ap) && ata_is_host_link(link))
3495de73 2599 return 1;
664faf09
TH
2600 return 0;
2601}
2602
fb7fd614
TH
2603int ata_eh_reset(struct ata_link *link, int classify,
2604 ata_prereset_fn_t prereset, ata_reset_fn_t softreset,
2605 ata_reset_fn_t hardreset, ata_postreset_fn_t postreset)
022bdb07 2606{
afaa5c37 2607 struct ata_port *ap = link->ap;
b1c72916 2608 struct ata_link *slave = ap->slave_link;
936fd732 2609 struct ata_eh_context *ehc = &link->eh_context;
705d2014 2610 struct ata_eh_context *sehc = slave ? &slave->eh_context : NULL;
664faf09 2611 unsigned int *classes = ehc->classes;
416dc9ed 2612 unsigned int lflags = link->flags;
1cdaf534 2613 int verbose = !(ehc->i.flags & ATA_EHI_QUIET);
d8af0eb6 2614 int max_tries = 0, try = 0;
b1c72916 2615 struct ata_link *failed_link;
f58229f8 2616 struct ata_device *dev;
416dc9ed 2617 unsigned long deadline, now;
022bdb07 2618 ata_reset_fn_t reset;
afaa5c37 2619 unsigned long flags;
416dc9ed 2620 u32 sstatus;
b1c72916 2621 int nr_unknown, rc;
022bdb07 2622
932648b0
TH
2623 /*
2624 * Prepare to reset
2625 */
d8af0eb6
TH
2626 while (ata_eh_reset_timeouts[max_tries] != ULONG_MAX)
2627 max_tries++;
ca6d43b0
DW
2628 if (link->flags & ATA_LFLAG_RST_ONCE)
2629 max_tries = 1;
05944bdf
TH
2630 if (link->flags & ATA_LFLAG_NO_HRST)
2631 hardreset = NULL;
2632 if (link->flags & ATA_LFLAG_NO_SRST)
2633 softreset = NULL;
d8af0eb6 2634
25985edc 2635 /* make sure each reset attempt is at least COOL_DOWN apart */
19b72321
TH
2636 if (ehc->i.flags & ATA_EHI_DID_RESET) {
2637 now = jiffies;
2638 WARN_ON(time_after(ehc->last_reset, now));
2639 deadline = ata_deadline(ehc->last_reset,
2640 ATA_EH_RESET_COOL_DOWN);
2641 if (time_before(now, deadline))
2642 schedule_timeout_uninterruptible(deadline - now);
2643 }
0a2c0f56 2644
afaa5c37
TH
2645 spin_lock_irqsave(ap->lock, flags);
2646 ap->pflags |= ATA_PFLAG_RESETTING;
2647 spin_unlock_irqrestore(ap->lock, flags);
2648
cf480626 2649 ata_eh_about_to_do(link, NULL, ATA_EH_RESET);
13abf50d 2650
1eca4365 2651 ata_for_each_dev(dev, link, ALL) {
cdeab114
TH
2652 /* If we issue an SRST then an ATA drive (not ATAPI)
2653 * may change configuration and be in PIO0 timing. If
2654 * we do a hard reset (or are coming from power on)
2655 * this is true for ATA or ATAPI. Until we've set a
2656 * suitable controller mode we should not touch the
2657 * bus as we may be talking too fast.
2658 */
2659 dev->pio_mode = XFER_PIO_0;
2660
2661 /* If the controller has a pio mode setup function
2662 * then use it to set the chipset to rights. Don't
2663 * touch the DMA setup as that will be dealt with when
2664 * configuring devices.
2665 */
2666 if (ap->ops->set_piomode)
2667 ap->ops->set_piomode(ap, dev);
2668 }
2669
cf480626 2670 /* prefer hardreset */
932648b0 2671 reset = NULL;
cf480626
TH
2672 ehc->i.action &= ~ATA_EH_RESET;
2673 if (hardreset) {
2674 reset = hardreset;
a674050e 2675 ehc->i.action |= ATA_EH_HARDRESET;
4f7faa3f 2676 } else if (softreset) {
cf480626 2677 reset = softreset;
a674050e 2678 ehc->i.action |= ATA_EH_SOFTRESET;
cf480626 2679 }
f5914a46
TH
2680
2681 if (prereset) {
b1c72916
TH
2682 unsigned long deadline = ata_deadline(jiffies,
2683 ATA_EH_PRERESET_TIMEOUT);
2684
2685 if (slave) {
2686 sehc->i.action &= ~ATA_EH_RESET;
2687 sehc->i.action |= ehc->i.action;
2688 }
2689
2690 rc = prereset(link, deadline);
2691
2692 /* If present, do prereset on slave link too. Reset
2693 * is skipped iff both master and slave links report
2694 * -ENOENT or clear ATA_EH_RESET.
2695 */
2696 if (slave && (rc == 0 || rc == -ENOENT)) {
2697 int tmp;
2698
2699 tmp = prereset(slave, deadline);
2700 if (tmp != -ENOENT)
2701 rc = tmp;
2702
2703 ehc->i.action |= sehc->i.action;
2704 }
2705
f5914a46 2706 if (rc) {
c961922b 2707 if (rc == -ENOENT) {
a9a79dfe 2708 ata_link_dbg(link, "port disabled--ignoring\n");
cf480626 2709 ehc->i.action &= ~ATA_EH_RESET;
4aa9ab67 2710
1eca4365 2711 ata_for_each_dev(dev, link, ALL)
f58229f8 2712 classes[dev->devno] = ATA_DEV_NONE;
4aa9ab67
TH
2713
2714 rc = 0;
c961922b 2715 } else
a9a79dfe
JP
2716 ata_link_err(link,
2717 "prereset failed (errno=%d)\n",
2718 rc);
fccb6ea5 2719 goto out;
f5914a46 2720 }
f5914a46 2721
932648b0 2722 /* prereset() might have cleared ATA_EH_RESET. If so,
d6515e6f 2723 * bang classes, thaw and return.
932648b0
TH
2724 */
2725 if (reset && !(ehc->i.action & ATA_EH_RESET)) {
1eca4365 2726 ata_for_each_dev(dev, link, ALL)
932648b0 2727 classes[dev->devno] = ATA_DEV_NONE;
d6515e6f
TH
2728 if ((ap->pflags & ATA_PFLAG_FROZEN) &&
2729 ata_is_host_link(link))
2730 ata_eh_thaw_port(ap);
932648b0
TH
2731 rc = 0;
2732 goto out;
2733 }
f5914a46
TH
2734 }
2735
022bdb07 2736 retry:
932648b0
TH
2737 /*
2738 * Perform reset
2739 */
dc98c32c
TH
2740 if (ata_is_host_link(link))
2741 ata_eh_freeze_port(ap);
2742
341c2c95 2743 deadline = ata_deadline(jiffies, ata_eh_reset_timeouts[try++]);
31daabda 2744
932648b0
TH
2745 if (reset) {
2746 if (verbose)
a9a79dfe
JP
2747 ata_link_info(link, "%s resetting link\n",
2748 reset == softreset ? "soft" : "hard");
932648b0
TH
2749
2750 /* mark that this EH session started with reset */
19b72321 2751 ehc->last_reset = jiffies;
932648b0
TH
2752 if (reset == hardreset)
2753 ehc->i.flags |= ATA_EHI_DID_HARDRESET;
2754 else
2755 ehc->i.flags |= ATA_EHI_DID_SOFTRESET;
022bdb07 2756
b1c72916
TH
2757 rc = ata_do_reset(link, reset, classes, deadline, true);
2758 if (rc && rc != -EAGAIN) {
2759 failed_link = link;
5dbfc9cb 2760 goto fail;
b1c72916
TH
2761 }
2762
2763 /* hardreset slave link if existent */
2764 if (slave && reset == hardreset) {
2765 int tmp;
2766
2767 if (verbose)
a9a79dfe 2768 ata_link_info(slave, "hard resetting link\n");
b1c72916
TH
2769
2770 ata_eh_about_to_do(slave, NULL, ATA_EH_RESET);
2771 tmp = ata_do_reset(slave, reset, classes, deadline,
2772 false);
2773 switch (tmp) {
2774 case -EAGAIN:
2775 rc = -EAGAIN;
2776 case 0:
2777 break;
2778 default:
2779 failed_link = slave;
2780 rc = tmp;
2781 goto fail;
2782 }
2783 }
022bdb07 2784
b1c72916 2785 /* perform follow-up SRST if necessary */
932648b0 2786 if (reset == hardreset &&
e8411fba 2787 ata_eh_followup_srst_needed(link, rc)) {
932648b0 2788 reset = softreset;
022bdb07 2789
932648b0 2790 if (!reset) {
a9a79dfe
JP
2791 ata_link_err(link,
2792 "follow-up softreset required but no softreset available\n");
b1c72916 2793 failed_link = link;
932648b0
TH
2794 rc = -EINVAL;
2795 goto fail;
2796 }
664faf09 2797
932648b0 2798 ata_eh_about_to_do(link, NULL, ATA_EH_RESET);
b1c72916 2799 rc = ata_do_reset(link, reset, classes, deadline, true);
fe2c4d01
TH
2800 if (rc) {
2801 failed_link = link;
2802 goto fail;
2803 }
664faf09 2804 }
932648b0
TH
2805 } else {
2806 if (verbose)
a9a79dfe
JP
2807 ata_link_info(link,
2808 "no reset method available, skipping reset\n");
932648b0
TH
2809 if (!(lflags & ATA_LFLAG_ASSUME_CLASS))
2810 lflags |= ATA_LFLAG_ASSUME_ATA;
664faf09
TH
2811 }
2812
932648b0
TH
2813 /*
2814 * Post-reset processing
2815 */
1eca4365 2816 ata_for_each_dev(dev, link, ALL) {
416dc9ed
TH
2817 /* After the reset, the device state is PIO 0 and the
2818 * controller state is undefined. Reset also wakes up
2819 * drives from sleeping mode.
2820 */
2821 dev->pio_mode = XFER_PIO_0;
2822 dev->flags &= ~ATA_DFLAG_SLEEPING;
31daabda 2823
3b761d3d
TH
2824 if (ata_phys_link_offline(ata_dev_phys_link(dev)))
2825 continue;
2826
2827 /* apply class override */
2828 if (lflags & ATA_LFLAG_ASSUME_ATA)
2829 classes[dev->devno] = ATA_DEV_ATA;
2830 else if (lflags & ATA_LFLAG_ASSUME_SEMB)
2831 classes[dev->devno] = ATA_DEV_SEMB_UNSUP;
022bdb07
TH
2832 }
2833
416dc9ed
TH
2834 /* record current link speed */
2835 if (sata_scr_read(link, SCR_STATUS, &sstatus) == 0)
2836 link->sata_spd = (sstatus >> 4) & 0xf;
b1c72916
TH
2837 if (slave && sata_scr_read(slave, SCR_STATUS, &sstatus) == 0)
2838 slave->sata_spd = (sstatus >> 4) & 0xf;
008a7896 2839
dc98c32c
TH
2840 /* thaw the port */
2841 if (ata_is_host_link(link))
2842 ata_eh_thaw_port(ap);
2843
f046519f
TH
2844 /* postreset() should clear hardware SError. Although SError
2845 * is cleared during link resume, clearing SError here is
2846 * necessary as some PHYs raise hotplug events after SRST.
2847 * This introduces race condition where hotplug occurs between
2848 * reset and here. This race is mediated by cross checking
2849 * link onlineness and classification result later.
2850 */
b1c72916 2851 if (postreset) {
416dc9ed 2852 postreset(link, classes);
b1c72916
TH
2853 if (slave)
2854 postreset(slave, classes);
2855 }
20952b69 2856
1e641060 2857 /*
8c56cacc
TH
2858 * Some controllers can't be frozen very well and may set spurious
2859 * error conditions during reset. Clear accumulated error
2860 * information and re-thaw the port if frozen. As reset is the
2861 * final recovery action and we cross check link onlineness against
2862 * device classification later, no hotplug event is lost by this.
1e641060 2863 */
f046519f 2864 spin_lock_irqsave(link->ap->lock, flags);
1e641060 2865 memset(&link->eh_info, 0, sizeof(link->eh_info));
b1c72916 2866 if (slave)
1e641060
TH
2867 memset(&slave->eh_info, 0, sizeof(link->eh_info));
2868 ap->pflags &= ~ATA_PFLAG_EH_PENDING;
f046519f
TH
2869 spin_unlock_irqrestore(link->ap->lock, flags);
2870
8c56cacc
TH
2871 if (ap->pflags & ATA_PFLAG_FROZEN)
2872 ata_eh_thaw_port(ap);
2873
3b761d3d
TH
2874 /*
2875 * Make sure onlineness and classification result correspond.
f046519f
TH
2876 * Hotplug could have happened during reset and some
2877 * controllers fail to wait while a drive is spinning up after
2878 * being hotplugged causing misdetection. By cross checking
3b761d3d
TH
2879 * link on/offlineness and classification result, those
2880 * conditions can be reliably detected and retried.
f046519f 2881 */
b1c72916 2882 nr_unknown = 0;
1eca4365 2883 ata_for_each_dev(dev, link, ALL) {
3b761d3d
TH
2884 if (ata_phys_link_online(ata_dev_phys_link(dev))) {
2885 if (classes[dev->devno] == ATA_DEV_UNKNOWN) {
a9a79dfe 2886 ata_dev_dbg(dev, "link online but device misclassified\n");
3b761d3d 2887 classes[dev->devno] = ATA_DEV_NONE;
b1c72916 2888 nr_unknown++;
3b761d3d
TH
2889 }
2890 } else if (ata_phys_link_offline(ata_dev_phys_link(dev))) {
2891 if (ata_class_enabled(classes[dev->devno]))
a9a79dfe
JP
2892 ata_dev_dbg(dev,
2893 "link offline, clearing class %d to NONE\n",
2894 classes[dev->devno]);
3b761d3d
TH
2895 classes[dev->devno] = ATA_DEV_NONE;
2896 } else if (classes[dev->devno] == ATA_DEV_UNKNOWN) {
a9a79dfe
JP
2897 ata_dev_dbg(dev,
2898 "link status unknown, clearing UNKNOWN to NONE\n");
3b761d3d 2899 classes[dev->devno] = ATA_DEV_NONE;
b1c72916 2900 }
f046519f
TH
2901 }
2902
b1c72916 2903 if (classify && nr_unknown) {
f046519f 2904 if (try < max_tries) {
a9a79dfe
JP
2905 ata_link_warn(link,
2906 "link online but %d devices misclassified, retrying\n",
2907 nr_unknown);
b1c72916 2908 failed_link = link;
f046519f
TH
2909 rc = -EAGAIN;
2910 goto fail;
2911 }
a9a79dfe
JP
2912 ata_link_warn(link,
2913 "link online but %d devices misclassified, "
2914 "device detection might fail\n", nr_unknown);
f046519f
TH
2915 }
2916
416dc9ed 2917 /* reset successful, schedule revalidation */
cf480626 2918 ata_eh_done(link, NULL, ATA_EH_RESET);
b1c72916
TH
2919 if (slave)
2920 ata_eh_done(slave, NULL, ATA_EH_RESET);
6b7ae954 2921 ehc->last_reset = jiffies; /* update to completion time */
416dc9ed 2922 ehc->i.action |= ATA_EH_REVALIDATE;
6b7ae954 2923 link->lpm_policy = ATA_LPM_UNKNOWN; /* reset LPM state */
ae791c05 2924
416dc9ed 2925 rc = 0;
fccb6ea5
TH
2926 out:
2927 /* clear hotplug flag */
2928 ehc->i.flags &= ~ATA_EHI_HOTPLUGGED;
b1c72916
TH
2929 if (slave)
2930 sehc->i.flags &= ~ATA_EHI_HOTPLUGGED;
afaa5c37
TH
2931
2932 spin_lock_irqsave(ap->lock, flags);
2933 ap->pflags &= ~ATA_PFLAG_RESETTING;
2934 spin_unlock_irqrestore(ap->lock, flags);
2935
022bdb07 2936 return rc;
416dc9ed
TH
2937
2938 fail:
5958e302
TH
2939 /* if SCR isn't accessible on a fan-out port, PMP needs to be reset */
2940 if (!ata_is_host_link(link) &&
2941 sata_scr_read(link, SCR_STATUS, &sstatus))
2942 rc = -ERESTART;
2943
7a46c078 2944 if (try >= max_tries) {
8ea7645c
TH
2945 /*
2946 * Thaw host port even if reset failed, so that the port
2947 * can be retried on the next phy event. This risks
2948 * repeated EH runs but seems to be a better tradeoff than
2949 * shutting down a port after a botched hotplug attempt.
2950 */
2951 if (ata_is_host_link(link))
2952 ata_eh_thaw_port(ap);
416dc9ed 2953 goto out;
8ea7645c 2954 }
416dc9ed
TH
2955
2956 now = jiffies;
2957 if (time_before(now, deadline)) {
2958 unsigned long delta = deadline - now;
2959
a9a79dfe 2960 ata_link_warn(failed_link,
0a2c0f56
TH
2961 "reset failed (errno=%d), retrying in %u secs\n",
2962 rc, DIV_ROUND_UP(jiffies_to_msecs(delta), 1000));
416dc9ed 2963
c0c362b6 2964 ata_eh_release(ap);
416dc9ed
TH
2965 while (delta)
2966 delta = schedule_timeout_uninterruptible(delta);
c0c362b6 2967 ata_eh_acquire(ap);
416dc9ed
TH
2968 }
2969
7a46c078
GG
2970 /*
2971 * While disks spinup behind PMP, some controllers fail sending SRST.
2972 * They need to be reset - as well as the PMP - before retrying.
2973 */
2974 if (rc == -ERESTART) {
2975 if (ata_is_host_link(link))
2976 ata_eh_thaw_port(ap);
2977 goto out;
2978 }
2979
b1c72916 2980 if (try == max_tries - 1) {
a07d499b 2981 sata_down_spd_limit(link, 0);
b1c72916 2982 if (slave)
a07d499b 2983 sata_down_spd_limit(slave, 0);
b1c72916 2984 } else if (rc == -EPIPE)
a07d499b 2985 sata_down_spd_limit(failed_link, 0);
b1c72916 2986
416dc9ed
TH
2987 if (hardreset)
2988 reset = hardreset;
2989 goto retry;
022bdb07
TH
2990}
2991
45fabbb7
EO
2992static inline void ata_eh_pull_park_action(struct ata_port *ap)
2993{
2994 struct ata_link *link;
2995 struct ata_device *dev;
2996 unsigned long flags;
2997
2998 /*
2999 * This function can be thought of as an extended version of
3000 * ata_eh_about_to_do() specially crafted to accommodate the
3001 * requirements of ATA_EH_PARK handling. Since the EH thread
3002 * does not leave the do {} while () loop in ata_eh_recover as
3003 * long as the timeout for a park request to *one* device on
3004 * the port has not expired, and since we still want to pick
3005 * up park requests to other devices on the same port or
3006 * timeout updates for the same device, we have to pull
3007 * ATA_EH_PARK actions from eh_info into eh_context.i
3008 * ourselves at the beginning of each pass over the loop.
3009 *
3010 * Additionally, all write accesses to &ap->park_req_pending
3011 * through INIT_COMPLETION() (see below) or complete_all()
3012 * (see ata_scsi_park_store()) are protected by the host lock.
3013 * As a result we have that park_req_pending.done is zero on
3014 * exit from this function, i.e. when ATA_EH_PARK actions for
3015 * *all* devices on port ap have been pulled into the
3016 * respective eh_context structs. If, and only if,
3017 * park_req_pending.done is non-zero by the time we reach
3018 * wait_for_completion_timeout(), another ATA_EH_PARK action
3019 * has been scheduled for at least one of the devices on port
3020 * ap and we have to cycle over the do {} while () loop in
3021 * ata_eh_recover() again.
3022 */
3023
3024 spin_lock_irqsave(ap->lock, flags);
3025 INIT_COMPLETION(ap->park_req_pending);
1eca4365
TH
3026 ata_for_each_link(link, ap, EDGE) {
3027 ata_for_each_dev(dev, link, ALL) {
45fabbb7
EO
3028 struct ata_eh_info *ehi = &link->eh_info;
3029
3030 link->eh_context.i.dev_action[dev->devno] |=
3031 ehi->dev_action[dev->devno] & ATA_EH_PARK;
3032 ata_eh_clear_action(link, dev, ehi, ATA_EH_PARK);
3033 }
3034 }
3035 spin_unlock_irqrestore(ap->lock, flags);
3036}
3037
3038static void ata_eh_park_issue_cmd(struct ata_device *dev, int park)
3039{
3040 struct ata_eh_context *ehc = &dev->link->eh_context;
3041 struct ata_taskfile tf;
3042 unsigned int err_mask;
3043
3044 ata_tf_init(dev, &tf);
3045 if (park) {
3046 ehc->unloaded_mask |= 1 << dev->devno;
3047 tf.command = ATA_CMD_IDLEIMMEDIATE;
3048 tf.feature = 0x44;
3049 tf.lbal = 0x4c;
3050 tf.lbam = 0x4e;
3051 tf.lbah = 0x55;
3052 } else {
3053 ehc->unloaded_mask &= ~(1 << dev->devno);
3054 tf.command = ATA_CMD_CHK_POWER;
3055 }
3056
3057 tf.flags |= ATA_TFLAG_DEVICE | ATA_TFLAG_ISADDR;
3058 tf.protocol |= ATA_PROT_NODATA;
3059 err_mask = ata_exec_internal(dev, &tf, NULL, DMA_NONE, NULL, 0, 0);
3060 if (park && (err_mask || tf.lbal != 0xc4)) {
a9a79dfe 3061 ata_dev_err(dev, "head unload failed!\n");
45fabbb7
EO
3062 ehc->unloaded_mask &= ~(1 << dev->devno);
3063 }
3064}
3065
0260731f 3066static int ata_eh_revalidate_and_attach(struct ata_link *link,
084fe639 3067 struct ata_device **r_failed_dev)
022bdb07 3068{
0260731f
TH
3069 struct ata_port *ap = link->ap;
3070 struct ata_eh_context *ehc = &link->eh_context;
022bdb07 3071 struct ata_device *dev;
8c3c52a8 3072 unsigned int new_mask = 0;
084fe639 3073 unsigned long flags;
f58229f8 3074 int rc = 0;
022bdb07
TH
3075
3076 DPRINTK("ENTER\n");
3077
8c3c52a8
TH
3078 /* For PATA drive side cable detection to work, IDENTIFY must
3079 * be done backwards such that PDIAG- is released by the slave
3080 * device before the master device is identified.
3081 */
1eca4365 3082 ata_for_each_dev(dev, link, ALL_REVERSE) {
f58229f8
TH
3083 unsigned int action = ata_eh_dev_action(dev);
3084 unsigned int readid_flags = 0;
022bdb07 3085
bff04647
TH
3086 if (ehc->i.flags & ATA_EHI_DID_RESET)
3087 readid_flags |= ATA_READID_POSTRESET;
3088
9666f400 3089 if ((action & ATA_EH_REVALIDATE) && ata_dev_enabled(dev)) {
633273a3
TH
3090 WARN_ON(dev->class == ATA_DEV_PMP);
3091
b1c72916 3092 if (ata_phys_link_offline(ata_dev_phys_link(dev))) {
022bdb07 3093 rc = -EIO;
8c3c52a8 3094 goto err;
022bdb07
TH
3095 }
3096
0260731f 3097 ata_eh_about_to_do(link, dev, ATA_EH_REVALIDATE);
422c9daa
TH
3098 rc = ata_dev_revalidate(dev, ehc->classes[dev->devno],
3099 readid_flags);
022bdb07 3100 if (rc)
8c3c52a8 3101 goto err;
022bdb07 3102
0260731f 3103 ata_eh_done(link, dev, ATA_EH_REVALIDATE);
47005f25 3104
baa1e78a
TH
3105 /* Configuration may have changed, reconfigure
3106 * transfer mode.
3107 */
3108 ehc->i.flags |= ATA_EHI_SETMODE;
3109
3057ac3c 3110 /* schedule the scsi_rescan_device() here */
ad72cf98 3111 schedule_work(&(ap->scsi_rescan_task));
084fe639
TH
3112 } else if (dev->class == ATA_DEV_UNKNOWN &&
3113 ehc->tries[dev->devno] &&
3114 ata_class_enabled(ehc->classes[dev->devno])) {
842faa6c
TH
3115 /* Temporarily set dev->class, it will be
3116 * permanently set once all configurations are
3117 * complete. This is necessary because new
3118 * device configuration is done in two
3119 * separate loops.
3120 */
084fe639
TH
3121 dev->class = ehc->classes[dev->devno];
3122
633273a3
TH
3123 if (dev->class == ATA_DEV_PMP)
3124 rc = sata_pmp_attach(dev);
3125 else
3126 rc = ata_dev_read_id(dev, &dev->class,
3127 readid_flags, dev->id);
842faa6c
TH
3128
3129 /* read_id might have changed class, store and reset */
3130 ehc->classes[dev->devno] = dev->class;
3131 dev->class = ATA_DEV_UNKNOWN;
3132
8c3c52a8
TH
3133 switch (rc) {
3134 case 0:
99cf610a
TH
3135 /* clear error info accumulated during probe */
3136 ata_ering_clear(&dev->ering);
f58229f8 3137 new_mask |= 1 << dev->devno;
8c3c52a8
TH
3138 break;
3139 case -ENOENT:
55a8e2c8
TH
3140 /* IDENTIFY was issued to non-existent
3141 * device. No need to reset. Just
842faa6c 3142 * thaw and ignore the device.
55a8e2c8
TH
3143 */
3144 ata_eh_thaw_port(ap);
084fe639 3145 break;
8c3c52a8 3146 default:
8c3c52a8 3147 goto err;
084fe639 3148 }
8c3c52a8
TH
3149 }
3150 }
084fe639 3151
c1c4e8d5 3152 /* PDIAG- should have been released, ask cable type if post-reset */
33267325
TH
3153 if ((ehc->i.flags & ATA_EHI_DID_RESET) && ata_is_host_link(link)) {
3154 if (ap->ops->cable_detect)
3155 ap->cbl = ap->ops->cable_detect(ap);
3156 ata_force_cbl(ap);
3157 }
c1c4e8d5 3158
8c3c52a8
TH
3159 /* Configure new devices forward such that user doesn't see
3160 * device detection messages backwards.
3161 */
1eca4365 3162 ata_for_each_dev(dev, link, ALL) {
4f7c2874 3163 if (!(new_mask & (1 << dev->devno)))
8c3c52a8
TH
3164 continue;
3165
842faa6c
TH
3166 dev->class = ehc->classes[dev->devno];
3167
4f7c2874
TH
3168 if (dev->class == ATA_DEV_PMP)
3169 continue;
3170
8c3c52a8
TH
3171 ehc->i.flags |= ATA_EHI_PRINTINFO;
3172 rc = ata_dev_configure(dev);
3173 ehc->i.flags &= ~ATA_EHI_PRINTINFO;
842faa6c
TH
3174 if (rc) {
3175 dev->class = ATA_DEV_UNKNOWN;
8c3c52a8 3176 goto err;
842faa6c 3177 }
8c3c52a8
TH
3178
3179 spin_lock_irqsave(ap->lock, flags);
3180 ap->pflags |= ATA_PFLAG_SCSI_HOTPLUG;
3181 spin_unlock_irqrestore(ap->lock, flags);
3182
3183 /* new device discovered, configure xfermode */
3184 ehc->i.flags |= ATA_EHI_SETMODE;
022bdb07
TH
3185 }
3186
8c3c52a8 3187 return 0;
022bdb07 3188
8c3c52a8
TH
3189 err:
3190 *r_failed_dev = dev;
3191 DPRINTK("EXIT rc=%d\n", rc);
022bdb07
TH
3192 return rc;
3193}
3194
6f1d1e3a
TH
3195/**
3196 * ata_set_mode - Program timings and issue SET FEATURES - XFER
3197 * @link: link on which timings will be programmed
98a1708d 3198 * @r_failed_dev: out parameter for failed device
6f1d1e3a
TH
3199 *
3200 * Set ATA device disk transfer mode (PIO3, UDMA6, etc.). If
3201 * ata_set_mode() fails, pointer to the failing device is
3202 * returned in @r_failed_dev.
3203 *
3204 * LOCKING:
3205 * PCI/etc. bus probe sem.
3206 *
3207 * RETURNS:
3208 * 0 on success, negative errno otherwise
3209 */
3210int ata_set_mode(struct ata_link *link, struct ata_device **r_failed_dev)
3211{
3212 struct ata_port *ap = link->ap;
00115e0f
TH
3213 struct ata_device *dev;
3214 int rc;
6f1d1e3a 3215
76326ac1 3216 /* if data transfer is verified, clear DUBIOUS_XFER on ering top */
1eca4365 3217 ata_for_each_dev(dev, link, ENABLED) {
76326ac1
TH
3218 if (!(dev->flags & ATA_DFLAG_DUBIOUS_XFER)) {
3219 struct ata_ering_entry *ent;
3220
3221 ent = ata_ering_top(&dev->ering);
3222 if (ent)
3223 ent->eflags &= ~ATA_EFLAG_DUBIOUS_XFER;
3224 }
3225 }
3226
6f1d1e3a
TH
3227 /* has private set_mode? */
3228 if (ap->ops->set_mode)
00115e0f
TH
3229 rc = ap->ops->set_mode(link, r_failed_dev);
3230 else
3231 rc = ata_do_set_mode(link, r_failed_dev);
3232
3233 /* if transfer mode has changed, set DUBIOUS_XFER on device */
1eca4365 3234 ata_for_each_dev(dev, link, ENABLED) {
00115e0f
TH
3235 struct ata_eh_context *ehc = &link->eh_context;
3236 u8 saved_xfer_mode = ehc->saved_xfer_mode[dev->devno];
3237 u8 saved_ncq = !!(ehc->saved_ncq_enabled & (1 << dev->devno));
3238
3239 if (dev->xfer_mode != saved_xfer_mode ||
3240 ata_ncq_enabled(dev) != saved_ncq)
3241 dev->flags |= ATA_DFLAG_DUBIOUS_XFER;
3242 }
3243
3244 return rc;
6f1d1e3a
TH
3245}
3246
11fc33da
TH
3247/**
3248 * atapi_eh_clear_ua - Clear ATAPI UNIT ATTENTION after reset
3249 * @dev: ATAPI device to clear UA for
3250 *
3251 * Resets and other operations can make an ATAPI device raise
3252 * UNIT ATTENTION which causes the next operation to fail. This
3253 * function clears UA.
3254 *
3255 * LOCKING:
3256 * EH context (may sleep).
3257 *
3258 * RETURNS:
3259 * 0 on success, -errno on failure.
3260 */
3261static int atapi_eh_clear_ua(struct ata_device *dev)
3262{
3263 int i;
3264
3265 for (i = 0; i < ATA_EH_UA_TRIES; i++) {
b5357081 3266 u8 *sense_buffer = dev->link->ap->sector_buf;
11fc33da
TH
3267 u8 sense_key = 0;
3268 unsigned int err_mask;
3269
3270 err_mask = atapi_eh_tur(dev, &sense_key);
3271 if (err_mask != 0 && err_mask != AC_ERR_DEV) {
a9a79dfe
JP
3272 ata_dev_warn(dev,
3273 "TEST_UNIT_READY failed (err_mask=0x%x)\n",
3274 err_mask);
11fc33da
TH
3275 return -EIO;
3276 }
3277
3278 if (!err_mask || sense_key != UNIT_ATTENTION)
3279 return 0;
3280
3281 err_mask = atapi_eh_request_sense(dev, sense_buffer, sense_key);
3282 if (err_mask) {
a9a79dfe 3283 ata_dev_warn(dev, "failed to clear "
11fc33da
TH
3284 "UNIT ATTENTION (err_mask=0x%x)\n", err_mask);
3285 return -EIO;
3286 }
3287 }
3288
a9a79dfe
JP
3289 ata_dev_warn(dev, "UNIT ATTENTION persists after %d tries\n",
3290 ATA_EH_UA_TRIES);
11fc33da
TH
3291
3292 return 0;
3293}
3294
6013efd8
TH
3295/**
3296 * ata_eh_maybe_retry_flush - Retry FLUSH if necessary
3297 * @dev: ATA device which may need FLUSH retry
3298 *
3299 * If @dev failed FLUSH, it needs to be reported upper layer
3300 * immediately as it means that @dev failed to remap and already
3301 * lost at least a sector and further FLUSH retrials won't make
3302 * any difference to the lost sector. However, if FLUSH failed
3303 * for other reasons, for example transmission error, FLUSH needs
3304 * to be retried.
3305 *
3306 * This function determines whether FLUSH failure retry is
3307 * necessary and performs it if so.
3308 *
3309 * RETURNS:
3310 * 0 if EH can continue, -errno if EH needs to be repeated.
3311 */
3312static int ata_eh_maybe_retry_flush(struct ata_device *dev)
3313{
3314 struct ata_link *link = dev->link;
3315 struct ata_port *ap = link->ap;
3316 struct ata_queued_cmd *qc;
3317 struct ata_taskfile tf;
3318 unsigned int err_mask;
3319 int rc = 0;
3320
3321 /* did flush fail for this device? */
3322 if (!ata_tag_valid(link->active_tag))
3323 return 0;
3324
3325 qc = __ata_qc_from_tag(ap, link->active_tag);
3326 if (qc->dev != dev || (qc->tf.command != ATA_CMD_FLUSH_EXT &&
3327 qc->tf.command != ATA_CMD_FLUSH))
3328 return 0;
3329
3330 /* if the device failed it, it should be reported to upper layers */
3331 if (qc->err_mask & AC_ERR_DEV)
3332 return 0;
3333
3334 /* flush failed for some other reason, give it another shot */
3335 ata_tf_init(dev, &tf);
3336
3337 tf.command = qc->tf.command;
3338 tf.flags |= ATA_TFLAG_DEVICE;
3339 tf.protocol = ATA_PROT_NODATA;
3340
a9a79dfe 3341 ata_dev_warn(dev, "retrying FLUSH 0x%x Emask 0x%x\n",
6013efd8
TH
3342 tf.command, qc->err_mask);
3343
3344 err_mask = ata_exec_internal(dev, &tf, NULL, DMA_NONE, NULL, 0, 0);
3345 if (!err_mask) {
3346 /*
3347 * FLUSH is complete but there's no way to
3348 * successfully complete a failed command from EH.
3349 * Making sure retry is allowed at least once and
3350 * retrying it should do the trick - whatever was in
3351 * the cache is already on the platter and this won't
3352 * cause infinite loop.
3353 */
3354 qc->scsicmd->allowed = max(qc->scsicmd->allowed, 1);
3355 } else {
a9a79dfe 3356 ata_dev_warn(dev, "FLUSH failed Emask 0x%x\n",
6013efd8
TH
3357 err_mask);
3358 rc = -EIO;
3359
3360 /* if device failed it, report it to upper layers */
3361 if (err_mask & AC_ERR_DEV) {
3362 qc->err_mask |= AC_ERR_DEV;
3363 qc->result_tf = tf;
3364 if (!(ap->pflags & ATA_PFLAG_FROZEN))
3365 rc = 0;
3366 }
3367 }
3368 return rc;
3369}
3370
6b7ae954
TH
3371/**
3372 * ata_eh_set_lpm - configure SATA interface power management
3373 * @link: link to configure power management
3374 * @policy: the link power management policy
3375 * @r_failed_dev: out parameter for failed device
3376 *
3377 * Enable SATA Interface power management. This will enable
3378 * Device Interface Power Management (DIPM) for min_power
3379 * policy, and then call driver specific callbacks for
3380 * enabling Host Initiated Power management.
3381 *
3382 * LOCKING:
3383 * EH context.
3384 *
3385 * RETURNS:
3386 * 0 on success, -errno on failure.
3387 */
3388static int ata_eh_set_lpm(struct ata_link *link, enum ata_lpm_policy policy,
3389 struct ata_device **r_failed_dev)
3390{
6c8ea89c 3391 struct ata_port *ap = ata_is_host_link(link) ? link->ap : NULL;
6b7ae954
TH
3392 struct ata_eh_context *ehc = &link->eh_context;
3393 struct ata_device *dev, *link_dev = NULL, *lpm_dev = NULL;
e5005b15 3394 enum ata_lpm_policy old_policy = link->lpm_policy;
5f6f12cc 3395 bool no_dipm = link->ap->flags & ATA_FLAG_NO_DIPM;
6b7ae954
TH
3396 unsigned int hints = ATA_LPM_EMPTY | ATA_LPM_HIPM;
3397 unsigned int err_mask;
3398 int rc;
3399
3400 /* if the link or host doesn't do LPM, noop */
3401 if ((link->flags & ATA_LFLAG_NO_LPM) || (ap && !ap->ops->set_lpm))
3402 return 0;
3403
3404 /*
3405 * DIPM is enabled only for MIN_POWER as some devices
3406 * misbehave when the host NACKs transition to SLUMBER. Order
3407 * device and link configurations such that the host always
3408 * allows DIPM requests.
3409 */
3410 ata_for_each_dev(dev, link, ENABLED) {
3411 bool hipm = ata_id_has_hipm(dev->id);
ae01b249 3412 bool dipm = ata_id_has_dipm(dev->id) && !no_dipm;
6b7ae954
TH
3413
3414 /* find the first enabled and LPM enabled devices */
3415 if (!link_dev)
3416 link_dev = dev;
3417
3418 if (!lpm_dev && (hipm || dipm))
3419 lpm_dev = dev;
3420
3421 hints &= ~ATA_LPM_EMPTY;
3422 if (!hipm)
3423 hints &= ~ATA_LPM_HIPM;
3424
3425 /* disable DIPM before changing link config */
3426 if (policy != ATA_LPM_MIN_POWER && dipm) {
3427 err_mask = ata_dev_set_feature(dev,
3428 SETFEATURES_SATA_DISABLE, SATA_DIPM);
3429 if (err_mask && err_mask != AC_ERR_DEV) {
a9a79dfe
JP
3430 ata_dev_warn(dev,
3431 "failed to disable DIPM, Emask 0x%x\n",
3432 err_mask);
6b7ae954
TH
3433 rc = -EIO;
3434 goto fail;
3435 }
3436 }
3437 }
3438
6c8ea89c
TH
3439 if (ap) {
3440 rc = ap->ops->set_lpm(link, policy, hints);
3441 if (!rc && ap->slave_link)
3442 rc = ap->ops->set_lpm(ap->slave_link, policy, hints);
3443 } else
3444 rc = sata_pmp_set_lpm(link, policy, hints);
6b7ae954
TH
3445
3446 /*
3447 * Attribute link config failure to the first (LPM) enabled
3448 * device on the link.
3449 */
3450 if (rc) {
3451 if (rc == -EOPNOTSUPP) {
3452 link->flags |= ATA_LFLAG_NO_LPM;
3453 return 0;
3454 }
3455 dev = lpm_dev ? lpm_dev : link_dev;
3456 goto fail;
3457 }
3458
e5005b15
TH
3459 /*
3460 * Low level driver acked the transition. Issue DIPM command
3461 * with the new policy set.
3462 */
3463 link->lpm_policy = policy;
3464 if (ap && ap->slave_link)
3465 ap->slave_link->lpm_policy = policy;
3466
6b7ae954
TH
3467 /* host config updated, enable DIPM if transitioning to MIN_POWER */
3468 ata_for_each_dev(dev, link, ENABLED) {
ae01b249
TH
3469 if (policy == ATA_LPM_MIN_POWER && !no_dipm &&
3470 ata_id_has_dipm(dev->id)) {
6b7ae954
TH
3471 err_mask = ata_dev_set_feature(dev,
3472 SETFEATURES_SATA_ENABLE, SATA_DIPM);
3473 if (err_mask && err_mask != AC_ERR_DEV) {
a9a79dfe 3474 ata_dev_warn(dev,
6b7ae954
TH
3475 "failed to enable DIPM, Emask 0x%x\n",
3476 err_mask);
3477 rc = -EIO;
3478 goto fail;
3479 }
3480 }
3481 }
3482
6b7ae954
TH
3483 return 0;
3484
3485fail:
e5005b15
TH
3486 /* restore the old policy */
3487 link->lpm_policy = old_policy;
3488 if (ap && ap->slave_link)
3489 ap->slave_link->lpm_policy = old_policy;
3490
6b7ae954
TH
3491 /* if no device or only one more chance is left, disable LPM */
3492 if (!dev || ehc->tries[dev->devno] <= 2) {
a9a79dfe 3493 ata_link_warn(link, "disabling LPM on the link\n");
6b7ae954
TH
3494 link->flags |= ATA_LFLAG_NO_LPM;
3495 }
3496 if (r_failed_dev)
3497 *r_failed_dev = dev;
3498 return rc;
3499}
3500
8a745f1f 3501int ata_link_nr_enabled(struct ata_link *link)
022bdb07 3502{
f58229f8
TH
3503 struct ata_device *dev;
3504 int cnt = 0;
022bdb07 3505
1eca4365
TH
3506 ata_for_each_dev(dev, link, ENABLED)
3507 cnt++;
022bdb07
TH
3508 return cnt;
3509}
3510
0260731f 3511static int ata_link_nr_vacant(struct ata_link *link)
084fe639 3512{
f58229f8
TH
3513 struct ata_device *dev;
3514 int cnt = 0;
084fe639 3515
1eca4365 3516 ata_for_each_dev(dev, link, ALL)
f58229f8 3517 if (dev->class == ATA_DEV_UNKNOWN)
084fe639
TH
3518 cnt++;
3519 return cnt;
3520}
3521
0260731f 3522static int ata_eh_skip_recovery(struct ata_link *link)
084fe639 3523{
672b2d65 3524 struct ata_port *ap = link->ap;
0260731f 3525 struct ata_eh_context *ehc = &link->eh_context;
f58229f8 3526 struct ata_device *dev;
084fe639 3527
f9df58cb
TH
3528 /* skip disabled links */
3529 if (link->flags & ATA_LFLAG_DISABLED)
3530 return 1;
3531
e2f3d75f
TH
3532 /* skip if explicitly requested */
3533 if (ehc->i.flags & ATA_EHI_NO_RECOVERY)
3534 return 1;
3535
672b2d65
TH
3536 /* thaw frozen port and recover failed devices */
3537 if ((ap->pflags & ATA_PFLAG_FROZEN) || ata_link_nr_enabled(link))
3538 return 0;
3539
3540 /* reset at least once if reset is requested */
3541 if ((ehc->i.action & ATA_EH_RESET) &&
3542 !(ehc->i.flags & ATA_EHI_DID_RESET))
084fe639
TH
3543 return 0;
3544
3545 /* skip if class codes for all vacant slots are ATA_DEV_NONE */
1eca4365 3546 ata_for_each_dev(dev, link, ALL) {
084fe639
TH
3547 if (dev->class == ATA_DEV_UNKNOWN &&
3548 ehc->classes[dev->devno] != ATA_DEV_NONE)
3549 return 0;
3550 }
3551
3552 return 1;
3553}
3554
c2c7a89c
TH
3555static int ata_count_probe_trials_cb(struct ata_ering_entry *ent, void *void_arg)
3556{
3557 u64 interval = msecs_to_jiffies(ATA_EH_PROBE_TRIAL_INTERVAL);
3558 u64 now = get_jiffies_64();
3559 int *trials = void_arg;
3560
6868225e
LM
3561 if ((ent->eflags & ATA_EFLAG_OLD_ER) ||
3562 (ent->timestamp < now - min(now, interval)))
c2c7a89c
TH
3563 return -1;
3564
3565 (*trials)++;
3566 return 0;
3567}
3568
02c05a27
TH
3569static int ata_eh_schedule_probe(struct ata_device *dev)
3570{
3571 struct ata_eh_context *ehc = &dev->link->eh_context;
c2c7a89c
TH
3572 struct ata_link *link = ata_dev_phys_link(dev);
3573 int trials = 0;
02c05a27
TH
3574
3575 if (!(ehc->i.probe_mask & (1 << dev->devno)) ||
3576 (ehc->did_probe_mask & (1 << dev->devno)))
3577 return 0;
3578
3579 ata_eh_detach_dev(dev);
3580 ata_dev_init(dev);
3581 ehc->did_probe_mask |= (1 << dev->devno);
cf480626 3582 ehc->i.action |= ATA_EH_RESET;
00115e0f
TH
3583 ehc->saved_xfer_mode[dev->devno] = 0;
3584 ehc->saved_ncq_enabled &= ~(1 << dev->devno);
02c05a27 3585
6b7ae954 3586 /* the link maybe in a deep sleep, wake it up */
6c8ea89c
TH
3587 if (link->lpm_policy > ATA_LPM_MAX_POWER) {
3588 if (ata_is_host_link(link))
3589 link->ap->ops->set_lpm(link, ATA_LPM_MAX_POWER,
3590 ATA_LPM_EMPTY);
3591 else
3592 sata_pmp_set_lpm(link, ATA_LPM_MAX_POWER,
3593 ATA_LPM_EMPTY);
3594 }
6b7ae954 3595
c2c7a89c
TH
3596 /* Record and count probe trials on the ering. The specific
3597 * error mask used is irrelevant. Because a successful device
3598 * detection clears the ering, this count accumulates only if
3599 * there are consecutive failed probes.
3600 *
3601 * If the count is equal to or higher than ATA_EH_PROBE_TRIALS
3602 * in the last ATA_EH_PROBE_TRIAL_INTERVAL, link speed is
3603 * forced to 1.5Gbps.
3604 *
3605 * This is to work around cases where failed link speed
3606 * negotiation results in device misdetection leading to
3607 * infinite DEVXCHG or PHRDY CHG events.
3608 */
3609 ata_ering_record(&dev->ering, 0, AC_ERR_OTHER);
3610 ata_ering_map(&dev->ering, ata_count_probe_trials_cb, &trials);
3611
3612 if (trials > ATA_EH_PROBE_TRIALS)
3613 sata_down_spd_limit(link, 1);
3614
02c05a27
TH
3615 return 1;
3616}
3617
9b1e2658 3618static int ata_eh_handle_dev_fail(struct ata_device *dev, int err)
fee7ca72 3619{
9af5c9c9 3620 struct ata_eh_context *ehc = &dev->link->eh_context;
fee7ca72 3621
cf9a590a
TH
3622 /* -EAGAIN from EH routine indicates retry without prejudice.
3623 * The requester is responsible for ensuring forward progress.
3624 */
3625 if (err != -EAGAIN)
3626 ehc->tries[dev->devno]--;
fee7ca72
TH
3627
3628 switch (err) {
3629 case -ENODEV:
3630 /* device missing or wrong IDENTIFY data, schedule probing */
3631 ehc->i.probe_mask |= (1 << dev->devno);
3632 case -EINVAL:
3633 /* give it just one more chance */
3634 ehc->tries[dev->devno] = min(ehc->tries[dev->devno], 1);
3635 case -EIO:
d89293ab 3636 if (ehc->tries[dev->devno] == 1) {
fee7ca72
TH
3637 /* This is the last chance, better to slow
3638 * down than lose it.
3639 */
a07d499b 3640 sata_down_spd_limit(ata_dev_phys_link(dev), 0);
d89293ab
TH
3641 if (dev->pio_mode > XFER_PIO_0)
3642 ata_down_xfermask_limit(dev, ATA_DNXFER_PIO);
fee7ca72
TH
3643 }
3644 }
3645
3646 if (ata_dev_enabled(dev) && !ehc->tries[dev->devno]) {
3647 /* disable device if it has used up all its chances */
3648 ata_dev_disable(dev);
3649
3650 /* detach if offline */
b1c72916 3651 if (ata_phys_link_offline(ata_dev_phys_link(dev)))
fee7ca72
TH
3652 ata_eh_detach_dev(dev);
3653
02c05a27 3654 /* schedule probe if necessary */
87fbc5a0 3655 if (ata_eh_schedule_probe(dev)) {
fee7ca72 3656 ehc->tries[dev->devno] = ATA_EH_DEV_TRIES;
87fbc5a0
TH
3657 memset(ehc->cmd_timeout_idx[dev->devno], 0,
3658 sizeof(ehc->cmd_timeout_idx[dev->devno]));
3659 }
9b1e2658
TH
3660
3661 return 1;
fee7ca72 3662 } else {
cf480626 3663 ehc->i.action |= ATA_EH_RESET;
9b1e2658 3664 return 0;
fee7ca72
TH
3665 }
3666}
3667
022bdb07
TH
3668/**
3669 * ata_eh_recover - recover host port after error
3670 * @ap: host port to recover
f5914a46 3671 * @prereset: prereset method (can be NULL)
022bdb07
TH
3672 * @softreset: softreset method (can be NULL)
3673 * @hardreset: hardreset method (can be NULL)
3674 * @postreset: postreset method (can be NULL)
9b1e2658 3675 * @r_failed_link: out parameter for failed link
022bdb07
TH
3676 *
3677 * This is the alpha and omega, eum and yang, heart and soul of
3678 * libata exception handling. On entry, actions required to
9b1e2658
TH
3679 * recover each link and hotplug requests are recorded in the
3680 * link's eh_context. This function executes all the operations
3681 * with appropriate retrials and fallbacks to resurrect failed
084fe639 3682 * devices, detach goners and greet newcomers.
022bdb07
TH
3683 *
3684 * LOCKING:
3685 * Kernel thread context (may sleep).
3686 *
3687 * RETURNS:
3688 * 0 on success, -errno on failure.
3689 */
fb7fd614
TH
3690int ata_eh_recover(struct ata_port *ap, ata_prereset_fn_t prereset,
3691 ata_reset_fn_t softreset, ata_reset_fn_t hardreset,
3692 ata_postreset_fn_t postreset,
3693 struct ata_link **r_failed_link)
022bdb07 3694{
9b1e2658 3695 struct ata_link *link;
022bdb07 3696 struct ata_device *dev;
6b7ae954 3697 int rc, nr_fails;
45fabbb7 3698 unsigned long flags, deadline;
022bdb07
TH
3699
3700 DPRINTK("ENTER\n");
3701
3702 /* prep for recovery */
1eca4365 3703 ata_for_each_link(link, ap, EDGE) {
9b1e2658 3704 struct ata_eh_context *ehc = &link->eh_context;
084fe639 3705
f9df58cb
TH
3706 /* re-enable link? */
3707 if (ehc->i.action & ATA_EH_ENABLE_LINK) {
3708 ata_eh_about_to_do(link, NULL, ATA_EH_ENABLE_LINK);
3709 spin_lock_irqsave(ap->lock, flags);
3710 link->flags &= ~ATA_LFLAG_DISABLED;
3711 spin_unlock_irqrestore(ap->lock, flags);
3712 ata_eh_done(link, NULL, ATA_EH_ENABLE_LINK);
3713 }
3714
1eca4365 3715 ata_for_each_dev(dev, link, ALL) {
fd995f70
TH
3716 if (link->flags & ATA_LFLAG_NO_RETRY)
3717 ehc->tries[dev->devno] = 1;
3718 else
3719 ehc->tries[dev->devno] = ATA_EH_DEV_TRIES;
084fe639 3720
9b1e2658
TH
3721 /* collect port action mask recorded in dev actions */
3722 ehc->i.action |= ehc->i.dev_action[dev->devno] &
3723 ~ATA_EH_PERDEV_MASK;
3724 ehc->i.dev_action[dev->devno] &= ATA_EH_PERDEV_MASK;
3725
3726 /* process hotplug request */
3727 if (dev->flags & ATA_DFLAG_DETACH)
3728 ata_eh_detach_dev(dev);
3729
02c05a27
TH
3730 /* schedule probe if necessary */
3731 if (!ata_dev_enabled(dev))
3732 ata_eh_schedule_probe(dev);
084fe639 3733 }
022bdb07
TH
3734 }
3735
3736 retry:
022bdb07
TH
3737 rc = 0;
3738
aeb2ecd6 3739 /* if UNLOADING, finish immediately */
b51e9e5d 3740 if (ap->pflags & ATA_PFLAG_UNLOADING)
aeb2ecd6
TH
3741 goto out;
3742
9b1e2658 3743 /* prep for EH */
1eca4365 3744 ata_for_each_link(link, ap, EDGE) {
9b1e2658 3745 struct ata_eh_context *ehc = &link->eh_context;
022bdb07 3746
9b1e2658
TH
3747 /* skip EH if possible. */
3748 if (ata_eh_skip_recovery(link))
3749 ehc->i.action = 0;
3750
1eca4365 3751 ata_for_each_dev(dev, link, ALL)
9b1e2658
TH
3752 ehc->classes[dev->devno] = ATA_DEV_UNKNOWN;
3753 }
084fe639 3754
022bdb07 3755 /* reset */
1eca4365 3756 ata_for_each_link(link, ap, EDGE) {
dc98c32c 3757 struct ata_eh_context *ehc = &link->eh_context;
9b1e2658 3758
dc98c32c
TH
3759 if (!(ehc->i.action & ATA_EH_RESET))
3760 continue;
9b1e2658 3761
dc98c32c
TH
3762 rc = ata_eh_reset(link, ata_link_nr_vacant(link),
3763 prereset, softreset, hardreset, postreset);
3764 if (rc) {
a9a79dfe 3765 ata_link_err(link, "reset failed, giving up\n");
dc98c32c 3766 goto out;
022bdb07 3767 }
022bdb07
TH
3768 }
3769
45fabbb7
EO
3770 do {
3771 unsigned long now;
3772
3773 /*
3774 * clears ATA_EH_PARK in eh_info and resets
3775 * ap->park_req_pending
3776 */
3777 ata_eh_pull_park_action(ap);
3778
3779 deadline = jiffies;
1eca4365
TH
3780 ata_for_each_link(link, ap, EDGE) {
3781 ata_for_each_dev(dev, link, ALL) {
45fabbb7
EO
3782 struct ata_eh_context *ehc = &link->eh_context;
3783 unsigned long tmp;
3784
3785 if (dev->class != ATA_DEV_ATA)
3786 continue;
3787 if (!(ehc->i.dev_action[dev->devno] &
3788 ATA_EH_PARK))
3789 continue;
3790 tmp = dev->unpark_deadline;
3791 if (time_before(deadline, tmp))
3792 deadline = tmp;
3793 else if (time_before_eq(tmp, jiffies))
3794 continue;
3795 if (ehc->unloaded_mask & (1 << dev->devno))
3796 continue;
3797
3798 ata_eh_park_issue_cmd(dev, 1);
3799 }
3800 }
3801
3802 now = jiffies;
3803 if (time_before_eq(deadline, now))
3804 break;
3805
c0c362b6 3806 ata_eh_release(ap);
45fabbb7
EO
3807 deadline = wait_for_completion_timeout(&ap->park_req_pending,
3808 deadline - now);
c0c362b6 3809 ata_eh_acquire(ap);
45fabbb7 3810 } while (deadline);
1eca4365
TH
3811 ata_for_each_link(link, ap, EDGE) {
3812 ata_for_each_dev(dev, link, ALL) {
45fabbb7
EO
3813 if (!(link->eh_context.unloaded_mask &
3814 (1 << dev->devno)))
3815 continue;
3816
3817 ata_eh_park_issue_cmd(dev, 0);
3818 ata_eh_done(link, dev, ATA_EH_PARK);
3819 }
3820 }
3821
9b1e2658 3822 /* the rest */
6b7ae954
TH
3823 nr_fails = 0;
3824 ata_for_each_link(link, ap, PMP_FIRST) {
9b1e2658 3825 struct ata_eh_context *ehc = &link->eh_context;
022bdb07 3826
6b7ae954
TH
3827 if (sata_pmp_attached(ap) && ata_is_host_link(link))
3828 goto config_lpm;
3829
9b1e2658
TH
3830 /* revalidate existing devices and attach new ones */
3831 rc = ata_eh_revalidate_and_attach(link, &dev);
4ae72a1e 3832 if (rc)
6b7ae954 3833 goto rest_fail;
022bdb07 3834
633273a3
TH
3835 /* if PMP got attached, return, pmp EH will take care of it */
3836 if (link->device->class == ATA_DEV_PMP) {
3837 ehc->i.action = 0;
3838 return 0;
3839 }
3840
9b1e2658
TH
3841 /* configure transfer mode if necessary */
3842 if (ehc->i.flags & ATA_EHI_SETMODE) {
3843 rc = ata_set_mode(link, &dev);
3844 if (rc)
6b7ae954 3845 goto rest_fail;
9b1e2658
TH
3846 ehc->i.flags &= ~ATA_EHI_SETMODE;
3847 }
3848
11fc33da
TH
3849 /* If reset has been issued, clear UA to avoid
3850 * disrupting the current users of the device.
3851 */
3852 if (ehc->i.flags & ATA_EHI_DID_RESET) {
1eca4365 3853 ata_for_each_dev(dev, link, ALL) {
11fc33da
TH
3854 if (dev->class != ATA_DEV_ATAPI)
3855 continue;
3856 rc = atapi_eh_clear_ua(dev);
3857 if (rc)
6b7ae954 3858 goto rest_fail;
11fc33da
TH
3859 }
3860 }
3861
6013efd8
TH
3862 /* retry flush if necessary */
3863 ata_for_each_dev(dev, link, ALL) {
3864 if (dev->class != ATA_DEV_ATA)
3865 continue;
3866 rc = ata_eh_maybe_retry_flush(dev);
3867 if (rc)
6b7ae954 3868 goto rest_fail;
6013efd8
TH
3869 }
3870
6b7ae954 3871 config_lpm:
11fc33da 3872 /* configure link power saving */
6b7ae954
TH
3873 if (link->lpm_policy != ap->target_lpm_policy) {
3874 rc = ata_eh_set_lpm(link, ap->target_lpm_policy, &dev);
3875 if (rc)
3876 goto rest_fail;
3877 }
ca77329f 3878
9b1e2658
TH
3879 /* this link is okay now */
3880 ehc->i.flags = 0;
3881 continue;
022bdb07 3882
6b7ae954
TH
3883 rest_fail:
3884 nr_fails++;
3885 if (dev)
3886 ata_eh_handle_dev_fail(dev, rc);
022bdb07 3887
b06ce3e5
TH
3888 if (ap->pflags & ATA_PFLAG_FROZEN) {
3889 /* PMP reset requires working host port.
3890 * Can't retry if it's frozen.
3891 */
071f44b1 3892 if (sata_pmp_attached(ap))
b06ce3e5 3893 goto out;
9b1e2658 3894 break;
b06ce3e5 3895 }
022bdb07
TH
3896 }
3897
6b7ae954 3898 if (nr_fails)
9b1e2658 3899 goto retry;
022bdb07 3900
9b1e2658
TH
3901 out:
3902 if (rc && r_failed_link)
3903 *r_failed_link = link;
3904
022bdb07
TH
3905 DPRINTK("EXIT, rc=%d\n", rc);
3906 return rc;
3907}
3908
3909/**
3910 * ata_eh_finish - finish up EH
3911 * @ap: host port to finish EH for
3912 *
3913 * Recovery is complete. Clean up EH states and retry or finish
3914 * failed qcs.
3915 *
3916 * LOCKING:
3917 * None.
3918 */
fb7fd614 3919void ata_eh_finish(struct ata_port *ap)
022bdb07
TH
3920{
3921 int tag;
3922
3923 /* retry or finish qcs */
3924 for (tag = 0; tag < ATA_MAX_QUEUE; tag++) {
3925 struct ata_queued_cmd *qc = __ata_qc_from_tag(ap, tag);
3926
3927 if (!(qc->flags & ATA_QCFLAG_FAILED))
3928 continue;
3929
3930 if (qc->err_mask) {
3931 /* FIXME: Once EH migration is complete,
3932 * generate sense data in this function,
3933 * considering both err_mask and tf.
3934 */
03faab78 3935 if (qc->flags & ATA_QCFLAG_RETRY)
022bdb07 3936 ata_eh_qc_retry(qc);
03faab78
TH
3937 else
3938 ata_eh_qc_complete(qc);
022bdb07
TH
3939 } else {
3940 if (qc->flags & ATA_QCFLAG_SENSE_VALID) {
3941 ata_eh_qc_complete(qc);
3942 } else {
3943 /* feed zero TF to sense generation */
3944 memset(&qc->result_tf, 0, sizeof(qc->result_tf));
3945 ata_eh_qc_retry(qc);
3946 }
3947 }
3948 }
da917d69
TH
3949
3950 /* make sure nr_active_links is zero after EH */
3951 WARN_ON(ap->nr_active_links);
3952 ap->nr_active_links = 0;
022bdb07
TH
3953}
3954
3955/**
3956 * ata_do_eh - do standard error handling
3957 * @ap: host port to handle error for
a1efdaba 3958 *
f5914a46 3959 * @prereset: prereset method (can be NULL)
022bdb07
TH
3960 * @softreset: softreset method (can be NULL)
3961 * @hardreset: hardreset method (can be NULL)
3962 * @postreset: postreset method (can be NULL)
3963 *
3964 * Perform standard error handling sequence.
3965 *
3966 * LOCKING:
3967 * Kernel thread context (may sleep).
3968 */
f5914a46
TH
3969void ata_do_eh(struct ata_port *ap, ata_prereset_fn_t prereset,
3970 ata_reset_fn_t softreset, ata_reset_fn_t hardreset,
3971 ata_postreset_fn_t postreset)
022bdb07 3972{
9b1e2658
TH
3973 struct ata_device *dev;
3974 int rc;
3975
3976 ata_eh_autopsy(ap);
3977 ata_eh_report(ap);
3978
3979 rc = ata_eh_recover(ap, prereset, softreset, hardreset, postreset,
3980 NULL);
3981 if (rc) {
1eca4365 3982 ata_for_each_dev(dev, &ap->link, ALL)
9b1e2658
TH
3983 ata_dev_disable(dev);
3984 }
3985
022bdb07
TH
3986 ata_eh_finish(ap);
3987}
500530f6 3988
a1efdaba
TH
3989/**
3990 * ata_std_error_handler - standard error handler
3991 * @ap: host port to handle error for
3992 *
3993 * Standard error handler
3994 *
3995 * LOCKING:
3996 * Kernel thread context (may sleep).
3997 */
3998void ata_std_error_handler(struct ata_port *ap)
3999{
4000 struct ata_port_operations *ops = ap->ops;
4001 ata_reset_fn_t hardreset = ops->hardreset;
4002
57c9efdf 4003 /* ignore built-in hardreset if SCR access is not available */
fe06e5f9 4004 if (hardreset == sata_std_hardreset && !sata_scr_valid(&ap->link))
a1efdaba
TH
4005 hardreset = NULL;
4006
4007 ata_do_eh(ap, ops->prereset, ops->softreset, hardreset, ops->postreset);
4008}
4009
6ffa01d8 4010#ifdef CONFIG_PM
500530f6
TH
4011/**
4012 * ata_eh_handle_port_suspend - perform port suspend operation
4013 * @ap: port to suspend
4014 *
4015 * Suspend @ap.
4016 *
4017 * LOCKING:
4018 * Kernel thread context (may sleep).
4019 */
4020static void ata_eh_handle_port_suspend(struct ata_port *ap)
4021{
4022 unsigned long flags;
4023 int rc = 0;
4024
4025 /* are we suspending? */
4026 spin_lock_irqsave(ap->lock, flags);
4027 if (!(ap->pflags & ATA_PFLAG_PM_PENDING) ||
4028 ap->pm_mesg.event == PM_EVENT_ON) {
4029 spin_unlock_irqrestore(ap->lock, flags);
4030 return;
4031 }
4032 spin_unlock_irqrestore(ap->lock, flags);
4033
4034 WARN_ON(ap->pflags & ATA_PFLAG_SUSPENDED);
4035
64578a3d
TH
4036 /* tell ACPI we're suspending */
4037 rc = ata_acpi_on_suspend(ap);
4038 if (rc)
4039 goto out;
4040
500530f6
TH
4041 /* suspend */
4042 ata_eh_freeze_port(ap);
4043
4044 if (ap->ops->port_suspend)
4045 rc = ap->ops->port_suspend(ap, ap->pm_mesg);
4046
bd3adca5 4047 ata_acpi_set_state(ap, PMSG_SUSPEND);
64578a3d 4048 out:
500530f6
TH
4049 /* report result */
4050 spin_lock_irqsave(ap->lock, flags);
4051
4052 ap->pflags &= ~ATA_PFLAG_PM_PENDING;
4053 if (rc == 0)
4054 ap->pflags |= ATA_PFLAG_SUSPENDED;
64578a3d 4055 else if (ap->pflags & ATA_PFLAG_FROZEN)
500530f6
TH
4056 ata_port_schedule_eh(ap);
4057
4058 if (ap->pm_result) {
4059 *ap->pm_result = rc;
4060 ap->pm_result = NULL;
4061 }
4062
4063 spin_unlock_irqrestore(ap->lock, flags);
4064
4065 return;
4066}
4067
4068/**
4069 * ata_eh_handle_port_resume - perform port resume operation
4070 * @ap: port to resume
4071 *
4072 * Resume @ap.
4073 *
500530f6
TH
4074 * LOCKING:
4075 * Kernel thread context (may sleep).
4076 */
4077static void ata_eh_handle_port_resume(struct ata_port *ap)
4078{
6f9c1ea2
TH
4079 struct ata_link *link;
4080 struct ata_device *dev;
500530f6 4081 unsigned long flags;
9666f400 4082 int rc = 0;
500530f6
TH
4083
4084 /* are we resuming? */
4085 spin_lock_irqsave(ap->lock, flags);
4086 if (!(ap->pflags & ATA_PFLAG_PM_PENDING) ||
4087 ap->pm_mesg.event != PM_EVENT_ON) {
4088 spin_unlock_irqrestore(ap->lock, flags);
4089 return;
4090 }
4091 spin_unlock_irqrestore(ap->lock, flags);
4092
9666f400 4093 WARN_ON(!(ap->pflags & ATA_PFLAG_SUSPENDED));
500530f6 4094
6f9c1ea2
TH
4095 /*
4096 * Error timestamps are in jiffies which doesn't run while
4097 * suspended and PHY events during resume isn't too uncommon.
4098 * When the two are combined, it can lead to unnecessary speed
4099 * downs if the machine is suspended and resumed repeatedly.
4100 * Clear error history.
4101 */
4102 ata_for_each_link(link, ap, HOST_FIRST)
4103 ata_for_each_dev(dev, link, ALL)
4104 ata_ering_clear(&dev->ering);
4105
bd3adca5
SL
4106 ata_acpi_set_state(ap, PMSG_ON);
4107
500530f6
TH
4108 if (ap->ops->port_resume)
4109 rc = ap->ops->port_resume(ap);
4110
6746544c
TH
4111 /* tell ACPI that we're resuming */
4112 ata_acpi_on_resume(ap);
4113
9666f400 4114 /* report result */
500530f6
TH
4115 spin_lock_irqsave(ap->lock, flags);
4116 ap->pflags &= ~(ATA_PFLAG_PM_PENDING | ATA_PFLAG_SUSPENDED);
4117 if (ap->pm_result) {
4118 *ap->pm_result = rc;
4119 ap->pm_result = NULL;
4120 }
4121 spin_unlock_irqrestore(ap->lock, flags);
4122}
6ffa01d8 4123#endif /* CONFIG_PM */