thermal: fair_share: use the weight from the thermal instance
[deliverable/linux.git] / drivers / md / dm-raid1.c
CommitLineData
1da177e4
LT
1/*
2 * Copyright (C) 2003 Sistina Software Limited.
1f965b19 3 * Copyright (C) 2005-2008 Red Hat, Inc. All rights reserved.
1da177e4
LT
4 *
5 * This file is released under the GPL.
6 */
7
06386bbf 8#include "dm-bio-record.h"
1da177e4 9
1da177e4
LT
10#include <linux/init.h>
11#include <linux/mempool.h>
12#include <linux/module.h>
13#include <linux/pagemap.h>
14#include <linux/slab.h>
1da177e4 15#include <linux/workqueue.h>
1f965b19 16#include <linux/device-mapper.h>
a765e20e
AK
17#include <linux/dm-io.h>
18#include <linux/dm-dirty-log.h>
19#include <linux/dm-kcopyd.h>
1f965b19 20#include <linux/dm-region-hash.h>
1da177e4 21
72d94861 22#define DM_MSG_PREFIX "raid1"
1f965b19
HM
23
24#define MAX_RECOVERY 1 /* Maximum number of regions recovered in parallel. */
72d94861 25
a8e6afa2 26#define DM_RAID1_HANDLE_ERRORS 0x01
f44db678 27#define errors_handled(p) ((p)->features & DM_RAID1_HANDLE_ERRORS)
a8e6afa2 28
33184048 29static DECLARE_WAIT_QUEUE_HEAD(_kmirrord_recovery_stopped);
1da177e4 30
e4c8b3ba
NB
31/*-----------------------------------------------------------------
32 * Mirror set structures.
33 *---------------------------------------------------------------*/
72f4b314
JB
34enum dm_raid1_error {
35 DM_RAID1_WRITE_ERROR,
64b30c46 36 DM_RAID1_FLUSH_ERROR,
72f4b314
JB
37 DM_RAID1_SYNC_ERROR,
38 DM_RAID1_READ_ERROR
39};
40
e4c8b3ba 41struct mirror {
aa5617c5 42 struct mirror_set *ms;
e4c8b3ba 43 atomic_t error_count;
39ed7adb 44 unsigned long error_type;
e4c8b3ba
NB
45 struct dm_dev *dev;
46 sector_t offset;
47};
48
49struct mirror_set {
50 struct dm_target *ti;
51 struct list_head list;
1f965b19 52
a8e6afa2 53 uint64_t features;
e4c8b3ba 54
72f4b314 55 spinlock_t lock; /* protects the lists */
e4c8b3ba
NB
56 struct bio_list reads;
57 struct bio_list writes;
72f4b314 58 struct bio_list failures;
04788507 59 struct bio_list holds; /* bios are waiting until suspend */
e4c8b3ba 60
1f965b19
HM
61 struct dm_region_hash *rh;
62 struct dm_kcopyd_client *kcopyd_client;
88be163a
MB
63 struct dm_io_client *io_client;
64
e4c8b3ba
NB
65 /* recovery */
66 region_t nr_regions;
67 int in_sync;
fc1ff958 68 int log_failure;
929be8fc 69 int leg_failure;
b80aa7a0 70 atomic_t suspend;
e4c8b3ba 71
72f4b314 72 atomic_t default_mirror; /* Default mirror */
e4c8b3ba 73
6ad36fe2
HS
74 struct workqueue_struct *kmirrord_wq;
75 struct work_struct kmirrord_work;
a2aebe03
MP
76 struct timer_list timer;
77 unsigned long timer_pending;
78
72f4b314 79 struct work_struct trigger_event;
6ad36fe2 80
1f965b19 81 unsigned nr_mirrors;
e4c8b3ba
NB
82 struct mirror mirror[0];
83};
84
df5d2e90
MP
85DECLARE_DM_KCOPYD_THROTTLE_WITH_MODULE_PARM(raid1_resync_throttle,
86 "A percentage of time allocated for raid resynchronization");
87
1f965b19 88static void wakeup_mirrord(void *context)
1da177e4 89{
1f965b19 90 struct mirror_set *ms = context;
1da177e4 91
6ad36fe2
HS
92 queue_work(ms->kmirrord_wq, &ms->kmirrord_work);
93}
94
a2aebe03
MP
95static void delayed_wake_fn(unsigned long data)
96{
97 struct mirror_set *ms = (struct mirror_set *) data;
98
99 clear_bit(0, &ms->timer_pending);
1f965b19 100 wakeup_mirrord(ms);
a2aebe03
MP
101}
102
103static void delayed_wake(struct mirror_set *ms)
104{
105 if (test_and_set_bit(0, &ms->timer_pending))
106 return;
107
108 ms->timer.expires = jiffies + HZ / 5;
109 ms->timer.data = (unsigned long) ms;
110 ms->timer.function = delayed_wake_fn;
111 add_timer(&ms->timer);
112}
113
1f965b19 114static void wakeup_all_recovery_waiters(void *context)
1da177e4 115{
1f965b19 116 wake_up_all(&_kmirrord_recovery_stopped);
1da177e4
LT
117}
118
1f965b19 119static void queue_bio(struct mirror_set *ms, struct bio *bio, int rw)
1da177e4
LT
120{
121 unsigned long flags;
1da177e4 122 int should_wake = 0;
1f965b19 123 struct bio_list *bl;
1da177e4 124
1f965b19
HM
125 bl = (rw == WRITE) ? &ms->writes : &ms->reads;
126 spin_lock_irqsave(&ms->lock, flags);
127 should_wake = !(bl->head);
128 bio_list_add(bl, bio);
129 spin_unlock_irqrestore(&ms->lock, flags);
1da177e4
LT
130
131 if (should_wake)
1f965b19 132 wakeup_mirrord(ms);
1da177e4
LT
133}
134
1f965b19 135static void dispatch_bios(void *context, struct bio_list *bio_list)
1da177e4 136{
1f965b19
HM
137 struct mirror_set *ms = context;
138 struct bio *bio;
1da177e4 139
1f965b19
HM
140 while ((bio = bio_list_pop(bio_list)))
141 queue_bio(ms, bio, WRITE);
1da177e4
LT
142}
143
89c7cd89 144struct dm_raid1_bio_record {
06386bbf 145 struct mirror *m;
0045d61b 146 /* if details->bi_bdev == NULL, details were not saved */
06386bbf 147 struct dm_bio_details details;
0045d61b 148 region_t write_region;
06386bbf
JB
149};
150
1da177e4
LT
151/*
152 * Every mirror should look like this one.
153 */
154#define DEFAULT_MIRROR 0
155
156/*
06386bbf
JB
157 * This is yucky. We squirrel the mirror struct away inside
158 * bi_next for read/write buffers. This is safe since the bh
1da177e4
LT
159 * doesn't get submitted to the lower levels of block layer.
160 */
06386bbf 161static struct mirror *bio_get_m(struct bio *bio)
1da177e4 162{
06386bbf 163 return (struct mirror *) bio->bi_next;
1da177e4
LT
164}
165
06386bbf 166static void bio_set_m(struct bio *bio, struct mirror *m)
1da177e4 167{
06386bbf 168 bio->bi_next = (struct bio *) m;
1da177e4
LT
169}
170
72f4b314
JB
171static struct mirror *get_default_mirror(struct mirror_set *ms)
172{
173 return &ms->mirror[atomic_read(&ms->default_mirror)];
174}
175
176static void set_default_mirror(struct mirror *m)
177{
178 struct mirror_set *ms = m->ms;
179 struct mirror *m0 = &(ms->mirror[0]);
180
181 atomic_set(&ms->default_mirror, m - m0);
182}
183
87968ddd
MP
184static struct mirror *get_valid_mirror(struct mirror_set *ms)
185{
186 struct mirror *m;
187
188 for (m = ms->mirror; m < ms->mirror + ms->nr_mirrors; m++)
189 if (!atomic_read(&m->error_count))
190 return m;
191
192 return NULL;
193}
194
72f4b314
JB
195/* fail_mirror
196 * @m: mirror device to fail
197 * @error_type: one of the enum's, DM_RAID1_*_ERROR
198 *
199 * If errors are being handled, record the type of
200 * error encountered for this device. If this type
201 * of error has already been recorded, we can return;
202 * otherwise, we must signal userspace by triggering
203 * an event. Additionally, if the device is the
204 * primary device, we must choose a new primary, but
205 * only if the mirror is in-sync.
206 *
207 * This function must not block.
208 */
209static void fail_mirror(struct mirror *m, enum dm_raid1_error error_type)
210{
211 struct mirror_set *ms = m->ms;
212 struct mirror *new;
213
929be8fc
MP
214 ms->leg_failure = 1;
215
72f4b314
JB
216 /*
217 * error_count is used for nothing more than a
218 * simple way to tell if a device has encountered
219 * errors.
220 */
221 atomic_inc(&m->error_count);
222
223 if (test_and_set_bit(error_type, &m->error_type))
224 return;
225
d460c65a
JB
226 if (!errors_handled(ms))
227 return;
228
72f4b314
JB
229 if (m != get_default_mirror(ms))
230 goto out;
231
232 if (!ms->in_sync) {
233 /*
234 * Better to issue requests to same failing device
235 * than to risk returning corrupt data.
236 */
237 DMERR("Primary mirror (%s) failed while out-of-sync: "
238 "Reads may fail.", m->dev->name);
239 goto out;
240 }
241
87968ddd
MP
242 new = get_valid_mirror(ms);
243 if (new)
244 set_default_mirror(new);
245 else
72f4b314
JB
246 DMWARN("All sides of mirror have failed.");
247
248out:
249 schedule_work(&ms->trigger_event);
250}
251
c0da3748
MP
252static int mirror_flush(struct dm_target *ti)
253{
254 struct mirror_set *ms = ti->private;
255 unsigned long error_bits;
256
257 unsigned int i;
258 struct dm_io_region io[ms->nr_mirrors];
259 struct mirror *m;
260 struct dm_io_request io_req = {
d87f4c14 261 .bi_rw = WRITE_FLUSH,
c0da3748 262 .mem.type = DM_IO_KMEM,
5fc2ffea 263 .mem.ptr.addr = NULL,
c0da3748
MP
264 .client = ms->io_client,
265 };
266
267 for (i = 0, m = ms->mirror; i < ms->nr_mirrors; i++, m++) {
268 io[i].bdev = m->dev->bdev;
269 io[i].sector = 0;
270 io[i].count = 0;
271 }
272
273 error_bits = -1;
274 dm_io(&io_req, ms->nr_mirrors, io, &error_bits);
275 if (unlikely(error_bits != 0)) {
276 for (i = 0; i < ms->nr_mirrors; i++)
277 if (test_bit(i, &error_bits))
278 fail_mirror(ms->mirror + i,
64b30c46 279 DM_RAID1_FLUSH_ERROR);
c0da3748
MP
280 return -EIO;
281 }
282
283 return 0;
284}
285
1da177e4
LT
286/*-----------------------------------------------------------------
287 * Recovery.
288 *
289 * When a mirror is first activated we may find that some regions
290 * are in the no-sync state. We have to recover these by
291 * recopying from the default mirror to all the others.
292 *---------------------------------------------------------------*/
4cdc1d1f 293static void recovery_complete(int read_err, unsigned long write_err,
1da177e4
LT
294 void *context)
295{
1f965b19
HM
296 struct dm_region *reg = context;
297 struct mirror_set *ms = dm_rh_region_context(reg);
8f0205b7 298 int m, bit = 0;
1da177e4 299
8f0205b7 300 if (read_err) {
f44db678
JB
301 /* Read error means the failure of default mirror. */
302 DMERR_LIMIT("Unable to read primary mirror during recovery");
8f0205b7
JB
303 fail_mirror(get_default_mirror(ms), DM_RAID1_SYNC_ERROR);
304 }
f44db678 305
8f0205b7 306 if (write_err) {
4cdc1d1f 307 DMERR_LIMIT("Write error during recovery (error = 0x%lx)",
f44db678 308 write_err);
8f0205b7
JB
309 /*
310 * Bits correspond to devices (excluding default mirror).
311 * The default mirror cannot change during recovery.
312 */
313 for (m = 0; m < ms->nr_mirrors; m++) {
314 if (&ms->mirror[m] == get_default_mirror(ms))
315 continue;
316 if (test_bit(bit, &write_err))
317 fail_mirror(ms->mirror + m,
318 DM_RAID1_SYNC_ERROR);
319 bit++;
320 }
321 }
f44db678 322
1f965b19 323 dm_rh_recovery_end(reg, !(read_err || write_err));
1da177e4
LT
324}
325
1f965b19 326static int recover(struct mirror_set *ms, struct dm_region *reg)
1da177e4
LT
327{
328 int r;
1f965b19 329 unsigned i;
eb69aca5 330 struct dm_io_region from, to[DM_KCOPYD_MAX_REGIONS], *dest;
1da177e4
LT
331 struct mirror *m;
332 unsigned long flags = 0;
1f965b19
HM
333 region_t key = dm_rh_get_region_key(reg);
334 sector_t region_size = dm_rh_get_region_size(ms->rh);
1da177e4
LT
335
336 /* fill in the source */
72f4b314 337 m = get_default_mirror(ms);
1da177e4 338 from.bdev = m->dev->bdev;
1f965b19
HM
339 from.sector = m->offset + dm_rh_region_to_sector(ms->rh, key);
340 if (key == (ms->nr_regions - 1)) {
1da177e4
LT
341 /*
342 * The final region may be smaller than
343 * region_size.
344 */
1f965b19 345 from.count = ms->ti->len & (region_size - 1);
1da177e4 346 if (!from.count)
1f965b19 347 from.count = region_size;
1da177e4 348 } else
1f965b19 349 from.count = region_size;
1da177e4
LT
350
351 /* fill in the destinations */
352 for (i = 0, dest = to; i < ms->nr_mirrors; i++) {
72f4b314 353 if (&ms->mirror[i] == get_default_mirror(ms))
1da177e4
LT
354 continue;
355
356 m = ms->mirror + i;
357 dest->bdev = m->dev->bdev;
1f965b19 358 dest->sector = m->offset + dm_rh_region_to_sector(ms->rh, key);
1da177e4
LT
359 dest->count = from.count;
360 dest++;
361 }
362
363 /* hand to kcopyd */
f7c83e2e
JB
364 if (!errors_handled(ms))
365 set_bit(DM_KCOPYD_IGNORE_ERROR, &flags);
366
eb69aca5
HM
367 r = dm_kcopyd_copy(ms->kcopyd_client, &from, ms->nr_mirrors - 1, to,
368 flags, recovery_complete, reg);
1da177e4
LT
369
370 return r;
371}
372
373static void do_recovery(struct mirror_set *ms)
374{
1f965b19
HM
375 struct dm_region *reg;
376 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
1da177e4 377 int r;
1da177e4
LT
378
379 /*
380 * Start quiescing some regions.
381 */
1f965b19 382 dm_rh_recovery_prepare(ms->rh);
1da177e4
LT
383
384 /*
385 * Copy any already quiesced regions.
386 */
1f965b19 387 while ((reg = dm_rh_recovery_start(ms->rh))) {
1da177e4
LT
388 r = recover(ms, reg);
389 if (r)
1f965b19 390 dm_rh_recovery_end(reg, 0);
1da177e4
LT
391 }
392
393 /*
394 * Update the in sync flag.
395 */
396 if (!ms->in_sync &&
397 (log->type->get_sync_count(log) == ms->nr_regions)) {
398 /* the sync is complete */
399 dm_table_event(ms->ti->table);
400 ms->in_sync = 1;
401 }
402}
403
404/*-----------------------------------------------------------------
405 * Reads
406 *---------------------------------------------------------------*/
407static struct mirror *choose_mirror(struct mirror_set *ms, sector_t sector)
408{
06386bbf
JB
409 struct mirror *m = get_default_mirror(ms);
410
411 do {
412 if (likely(!atomic_read(&m->error_count)))
413 return m;
414
415 if (m-- == ms->mirror)
416 m += ms->nr_mirrors;
417 } while (m != get_default_mirror(ms));
418
419 return NULL;
420}
421
422static int default_ok(struct mirror *m)
423{
424 struct mirror *default_mirror = get_default_mirror(m->ms);
425
426 return !atomic_read(&default_mirror->error_count);
427}
428
429static int mirror_available(struct mirror_set *ms, struct bio *bio)
430{
1f965b19
HM
431 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
432 region_t region = dm_rh_bio_to_region(ms->rh, bio);
06386bbf 433
1f965b19 434 if (log->type->in_sync(log, region, 0))
4f024f37 435 return choose_mirror(ms, bio->bi_iter.bi_sector) ? 1 : 0;
06386bbf
JB
436
437 return 0;
1da177e4
LT
438}
439
440/*
441 * remap a buffer to a particular mirror.
442 */
06386bbf
JB
443static sector_t map_sector(struct mirror *m, struct bio *bio)
444{
4f024f37 445 if (unlikely(!bio->bi_iter.bi_size))
4184153f 446 return 0;
4f024f37 447 return m->offset + dm_target_offset(m->ms->ti, bio->bi_iter.bi_sector);
06386bbf
JB
448}
449
450static void map_bio(struct mirror *m, struct bio *bio)
1da177e4
LT
451{
452 bio->bi_bdev = m->dev->bdev;
4f024f37 453 bio->bi_iter.bi_sector = map_sector(m, bio);
06386bbf
JB
454}
455
22a1ceb1 456static void map_region(struct dm_io_region *io, struct mirror *m,
06386bbf
JB
457 struct bio *bio)
458{
459 io->bdev = m->dev->bdev;
460 io->sector = map_sector(m, bio);
aa8b57aa 461 io->count = bio_sectors(bio);
06386bbf
JB
462}
463
04788507
MP
464static void hold_bio(struct mirror_set *ms, struct bio *bio)
465{
466 /*
f0703040
TY
467 * Lock is required to avoid race condition during suspend
468 * process.
04788507 469 */
f0703040
TY
470 spin_lock_irq(&ms->lock);
471
04788507 472 if (atomic_read(&ms->suspend)) {
f0703040
TY
473 spin_unlock_irq(&ms->lock);
474
475 /*
476 * If device is suspended, complete the bio.
477 */
04788507
MP
478 if (dm_noflush_suspending(ms->ti))
479 bio_endio(bio, DM_ENDIO_REQUEUE);
480 else
481 bio_endio(bio, -EIO);
482 return;
483 }
484
485 /*
486 * Hold bio until the suspend is complete.
487 */
04788507
MP
488 bio_list_add(&ms->holds, bio);
489 spin_unlock_irq(&ms->lock);
490}
491
06386bbf
JB
492/*-----------------------------------------------------------------
493 * Reads
494 *---------------------------------------------------------------*/
495static void read_callback(unsigned long error, void *context)
496{
497 struct bio *bio = context;
498 struct mirror *m;
499
500 m = bio_get_m(bio);
501 bio_set_m(bio, NULL);
502
503 if (likely(!error)) {
504 bio_endio(bio, 0);
505 return;
506 }
507
508 fail_mirror(m, DM_RAID1_READ_ERROR);
509
510 if (likely(default_ok(m)) || mirror_available(m->ms, bio)) {
511 DMWARN_LIMIT("Read failure on mirror device %s. "
512 "Trying alternative device.",
513 m->dev->name);
514 queue_bio(m->ms, bio, bio_rw(bio));
515 return;
516 }
517
518 DMERR_LIMIT("Read failure on mirror device %s. Failing I/O.",
519 m->dev->name);
520 bio_endio(bio, -EIO);
521}
522
523/* Asynchronous read. */
524static void read_async_bio(struct mirror *m, struct bio *bio)
525{
22a1ceb1 526 struct dm_io_region io;
06386bbf
JB
527 struct dm_io_request io_req = {
528 .bi_rw = READ,
003b5c57
KO
529 .mem.type = DM_IO_BIO,
530 .mem.ptr.bio = bio,
06386bbf
JB
531 .notify.fn = read_callback,
532 .notify.context = bio,
533 .client = m->ms->io_client,
534 };
535
536 map_region(&io, m, bio);
537 bio_set_m(bio, m);
1f965b19
HM
538 BUG_ON(dm_io(&io_req, 1, &io, NULL));
539}
540
541static inline int region_in_sync(struct mirror_set *ms, region_t region,
542 int may_block)
543{
544 int state = dm_rh_get_state(ms->rh, region, may_block);
545 return state == DM_RH_CLEAN || state == DM_RH_DIRTY;
1da177e4
LT
546}
547
548static void do_reads(struct mirror_set *ms, struct bio_list *reads)
549{
550 region_t region;
551 struct bio *bio;
552 struct mirror *m;
553
554 while ((bio = bio_list_pop(reads))) {
1f965b19 555 region = dm_rh_bio_to_region(ms->rh, bio);
06386bbf 556 m = get_default_mirror(ms);
1da177e4
LT
557
558 /*
559 * We can only read balance if the region is in sync.
560 */
1f965b19 561 if (likely(region_in_sync(ms, region, 1)))
4f024f37 562 m = choose_mirror(ms, bio->bi_iter.bi_sector);
06386bbf
JB
563 else if (m && atomic_read(&m->error_count))
564 m = NULL;
1da177e4 565
06386bbf
JB
566 if (likely(m))
567 read_async_bio(m, bio);
568 else
569 bio_endio(bio, -EIO);
1da177e4
LT
570 }
571}
572
573/*-----------------------------------------------------------------
574 * Writes.
575 *
576 * We do different things with the write io depending on the
577 * state of the region that it's in:
578 *
579 * SYNC: increment pending, use kcopyd to write to *all* mirrors
580 * RECOVERING: delay the io until recovery completes
581 * NOSYNC: increment pending, just write to the default mirror
582 *---------------------------------------------------------------*/
72f4b314 583
72f4b314 584
1da177e4
LT
585static void write_callback(unsigned long error, void *context)
586{
72f4b314 587 unsigned i, ret = 0;
1da177e4
LT
588 struct bio *bio = (struct bio *) context;
589 struct mirror_set *ms;
72f4b314
JB
590 int should_wake = 0;
591 unsigned long flags;
1da177e4 592
06386bbf
JB
593 ms = bio_get_m(bio)->ms;
594 bio_set_m(bio, NULL);
1da177e4
LT
595
596 /*
597 * NOTE: We don't decrement the pending count here,
598 * instead it is done by the targets endio function.
599 * This way we handle both writes to SYNC and NOSYNC
600 * regions with the same code.
601 */
60f355ea
MP
602 if (likely(!error)) {
603 bio_endio(bio, ret);
604 return;
605 }
1da177e4 606
f2ed51ac
MP
607 /*
608 * If the bio is discard, return an error, but do not
609 * degrade the array.
610 */
611 if (bio->bi_rw & REQ_DISCARD) {
612 bio_endio(bio, -EOPNOTSUPP);
613 return;
614 }
615
72f4b314
JB
616 for (i = 0; i < ms->nr_mirrors; i++)
617 if (test_bit(i, &error))
618 fail_mirror(ms->mirror + i, DM_RAID1_WRITE_ERROR);
72f4b314 619
60f355ea
MP
620 /*
621 * Need to raise event. Since raising
622 * events can block, we need to do it in
623 * the main thread.
624 */
625 spin_lock_irqsave(&ms->lock, flags);
626 if (!ms->failures.head)
627 should_wake = 1;
628 bio_list_add(&ms->failures, bio);
629 spin_unlock_irqrestore(&ms->lock, flags);
630 if (should_wake)
631 wakeup_mirrord(ms);
1da177e4
LT
632}
633
634static void do_write(struct mirror_set *ms, struct bio *bio)
635{
636 unsigned int i;
22a1ceb1 637 struct dm_io_region io[ms->nr_mirrors], *dest = io;
1da177e4 638 struct mirror *m;
88be163a 639 struct dm_io_request io_req = {
d87f4c14 640 .bi_rw = WRITE | (bio->bi_rw & WRITE_FLUSH_FUA),
003b5c57
KO
641 .mem.type = DM_IO_BIO,
642 .mem.ptr.bio = bio,
88be163a
MB
643 .notify.fn = write_callback,
644 .notify.context = bio,
645 .client = ms->io_client,
646 };
1da177e4 647
5fc2ffea
MS
648 if (bio->bi_rw & REQ_DISCARD) {
649 io_req.bi_rw |= REQ_DISCARD;
650 io_req.mem.type = DM_IO_KMEM;
651 io_req.mem.ptr.addr = NULL;
652 }
653
06386bbf
JB
654 for (i = 0, m = ms->mirror; i < ms->nr_mirrors; i++, m++)
655 map_region(dest++, m, bio);
1da177e4 656
06386bbf
JB
657 /*
658 * Use default mirror because we only need it to retrieve the reference
659 * to the mirror set in write_callback().
660 */
661 bio_set_m(bio, get_default_mirror(ms));
88be163a 662
1f965b19 663 BUG_ON(dm_io(&io_req, ms->nr_mirrors, io, NULL));
1da177e4
LT
664}
665
666static void do_writes(struct mirror_set *ms, struct bio_list *writes)
667{
668 int state;
669 struct bio *bio;
670 struct bio_list sync, nosync, recover, *this_list = NULL;
7513c2a7
JB
671 struct bio_list requeue;
672 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
673 region_t region;
1da177e4
LT
674
675 if (!writes->head)
676 return;
677
678 /*
679 * Classify each write.
680 */
681 bio_list_init(&sync);
682 bio_list_init(&nosync);
683 bio_list_init(&recover);
7513c2a7 684 bio_list_init(&requeue);
1da177e4
LT
685
686 while ((bio = bio_list_pop(writes))) {
5fc2ffea
MS
687 if ((bio->bi_rw & REQ_FLUSH) ||
688 (bio->bi_rw & REQ_DISCARD)) {
4184153f
MP
689 bio_list_add(&sync, bio);
690 continue;
691 }
692
7513c2a7
JB
693 region = dm_rh_bio_to_region(ms->rh, bio);
694
695 if (log->type->is_remote_recovering &&
696 log->type->is_remote_recovering(log, region)) {
697 bio_list_add(&requeue, bio);
698 continue;
699 }
700
701 state = dm_rh_get_state(ms->rh, region, 1);
1da177e4 702 switch (state) {
1f965b19
HM
703 case DM_RH_CLEAN:
704 case DM_RH_DIRTY:
1da177e4
LT
705 this_list = &sync;
706 break;
707
1f965b19 708 case DM_RH_NOSYNC:
1da177e4
LT
709 this_list = &nosync;
710 break;
711
1f965b19 712 case DM_RH_RECOVERING:
1da177e4
LT
713 this_list = &recover;
714 break;
715 }
716
717 bio_list_add(this_list, bio);
718 }
719
7513c2a7
JB
720 /*
721 * Add bios that are delayed due to remote recovery
722 * back on to the write queue
723 */
724 if (unlikely(requeue.head)) {
725 spin_lock_irq(&ms->lock);
726 bio_list_merge(&ms->writes, &requeue);
727 spin_unlock_irq(&ms->lock);
69885683 728 delayed_wake(ms);
7513c2a7
JB
729 }
730
1da177e4
LT
731 /*
732 * Increment the pending counts for any regions that will
733 * be written to (writes to recover regions are going to
734 * be delayed).
735 */
1f965b19
HM
736 dm_rh_inc_pending(ms->rh, &sync);
737 dm_rh_inc_pending(ms->rh, &nosync);
d2b69864
JB
738
739 /*
740 * If the flush fails on a previous call and succeeds here,
741 * we must not reset the log_failure variable. We need
742 * userspace interaction to do that.
743 */
744 ms->log_failure = dm_rh_flush(ms->rh) ? 1 : ms->log_failure;
1da177e4
LT
745
746 /*
747 * Dispatch io.
748 */
5528d17d 749 if (unlikely(ms->log_failure) && errors_handled(ms)) {
b80aa7a0
JB
750 spin_lock_irq(&ms->lock);
751 bio_list_merge(&ms->failures, &sync);
752 spin_unlock_irq(&ms->lock);
1f965b19 753 wakeup_mirrord(ms);
b80aa7a0 754 } else
fc1ff958 755 while ((bio = bio_list_pop(&sync)))
b80aa7a0 756 do_write(ms, bio);
1da177e4
LT
757
758 while ((bio = bio_list_pop(&recover)))
1f965b19 759 dm_rh_delay(ms->rh, bio);
1da177e4
LT
760
761 while ((bio = bio_list_pop(&nosync))) {
ede5ea0b
MP
762 if (unlikely(ms->leg_failure) && errors_handled(ms)) {
763 spin_lock_irq(&ms->lock);
764 bio_list_add(&ms->failures, bio);
765 spin_unlock_irq(&ms->lock);
766 wakeup_mirrord(ms);
767 } else {
929be8fc
MP
768 map_bio(get_default_mirror(ms), bio);
769 generic_make_request(bio);
770 }
1da177e4
LT
771 }
772}
773
72f4b314
JB
774static void do_failures(struct mirror_set *ms, struct bio_list *failures)
775{
776 struct bio *bio;
777
0f398a84 778 if (likely(!failures->head))
72f4b314
JB
779 return;
780
b80aa7a0
JB
781 /*
782 * If the log has failed, unattempted writes are being
0f398a84 783 * put on the holds list. We can't issue those writes
b80aa7a0
JB
784 * until a log has been marked, so we must store them.
785 *
786 * If a 'noflush' suspend is in progress, we can requeue
787 * the I/O's to the core. This give userspace a chance
788 * to reconfigure the mirror, at which point the core
789 * will reissue the writes. If the 'noflush' flag is
790 * not set, we have no choice but to return errors.
791 *
792 * Some writes on the failures list may have been
793 * submitted before the log failure and represent a
794 * failure to write to one of the devices. It is ok
795 * for us to treat them the same and requeue them
796 * as well.
797 */
0f398a84 798 while ((bio = bio_list_pop(failures))) {
60f355ea 799 if (!ms->log_failure) {
0f398a84 800 ms->in_sync = 0;
c58098be 801 dm_rh_mark_nosync(ms->rh, bio);
0f398a84 802 }
60f355ea
MP
803
804 /*
805 * If all the legs are dead, fail the I/O.
806 * If we have been told to handle errors, hold the bio
807 * and wait for userspace to deal with the problem.
808 * Otherwise pretend that the I/O succeeded. (This would
809 * be wrong if the failed leg returned after reboot and
810 * got replicated back to the good legs.)
811 */
812 if (!get_valid_mirror(ms))
813 bio_endio(bio, -EIO);
814 else if (errors_handled(ms))
815 hold_bio(ms, bio);
816 else
817 bio_endio(bio, 0);
b80aa7a0 818 }
72f4b314
JB
819}
820
821static void trigger_event(struct work_struct *work)
822{
823 struct mirror_set *ms =
824 container_of(work, struct mirror_set, trigger_event);
825
826 dm_table_event(ms->ti->table);
827}
828
1da177e4
LT
829/*-----------------------------------------------------------------
830 * kmirrord
831 *---------------------------------------------------------------*/
a2aebe03 832static void do_mirror(struct work_struct *work)
1da177e4 833{
1f965b19
HM
834 struct mirror_set *ms = container_of(work, struct mirror_set,
835 kmirrord_work);
72f4b314
JB
836 struct bio_list reads, writes, failures;
837 unsigned long flags;
1da177e4 838
72f4b314 839 spin_lock_irqsave(&ms->lock, flags);
1da177e4
LT
840 reads = ms->reads;
841 writes = ms->writes;
72f4b314 842 failures = ms->failures;
1da177e4
LT
843 bio_list_init(&ms->reads);
844 bio_list_init(&ms->writes);
72f4b314
JB
845 bio_list_init(&ms->failures);
846 spin_unlock_irqrestore(&ms->lock, flags);
1da177e4 847
1f965b19 848 dm_rh_update_states(ms->rh, errors_handled(ms));
1da177e4
LT
849 do_recovery(ms);
850 do_reads(ms, &reads);
851 do_writes(ms, &writes);
72f4b314 852 do_failures(ms, &failures);
1da177e4
LT
853}
854
1da177e4
LT
855/*-----------------------------------------------------------------
856 * Target functions
857 *---------------------------------------------------------------*/
858static struct mirror_set *alloc_context(unsigned int nr_mirrors,
859 uint32_t region_size,
860 struct dm_target *ti,
416cd17b 861 struct dm_dirty_log *dl)
1da177e4
LT
862{
863 size_t len;
864 struct mirror_set *ms = NULL;
865
1da177e4
LT
866 len = sizeof(*ms) + (sizeof(ms->mirror[0]) * nr_mirrors);
867
dd00cc48 868 ms = kzalloc(len, GFP_KERNEL);
1da177e4 869 if (!ms) {
72d94861 870 ti->error = "Cannot allocate mirror context";
1da177e4
LT
871 return NULL;
872 }
873
1da177e4 874 spin_lock_init(&ms->lock);
5339fc2d
MP
875 bio_list_init(&ms->reads);
876 bio_list_init(&ms->writes);
877 bio_list_init(&ms->failures);
878 bio_list_init(&ms->holds);
1da177e4
LT
879
880 ms->ti = ti;
881 ms->nr_mirrors = nr_mirrors;
882 ms->nr_regions = dm_sector_div_up(ti->len, region_size);
883 ms->in_sync = 0;
b80aa7a0 884 ms->log_failure = 0;
929be8fc 885 ms->leg_failure = 0;
b80aa7a0 886 atomic_set(&ms->suspend, 0);
72f4b314 887 atomic_set(&ms->default_mirror, DEFAULT_MIRROR);
1da177e4 888
bda8efec 889 ms->io_client = dm_io_client_create();
88be163a
MB
890 if (IS_ERR(ms->io_client)) {
891 ti->error = "Error creating dm_io client";
892 kfree(ms);
893 return NULL;
894 }
895
1f965b19
HM
896 ms->rh = dm_region_hash_create(ms, dispatch_bios, wakeup_mirrord,
897 wakeup_all_recovery_waiters,
898 ms->ti->begin, MAX_RECOVERY,
899 dl, region_size, ms->nr_regions);
900 if (IS_ERR(ms->rh)) {
72d94861 901 ti->error = "Error creating dirty region hash";
a72cf737 902 dm_io_client_destroy(ms->io_client);
1da177e4
LT
903 kfree(ms);
904 return NULL;
905 }
906
907 return ms;
908}
909
910static void free_context(struct mirror_set *ms, struct dm_target *ti,
911 unsigned int m)
912{
913 while (m--)
914 dm_put_device(ti, ms->mirror[m].dev);
915
88be163a 916 dm_io_client_destroy(ms->io_client);
1f965b19 917 dm_region_hash_destroy(ms->rh);
1da177e4
LT
918 kfree(ms);
919}
920
1da177e4
LT
921static int get_mirror(struct mirror_set *ms, struct dm_target *ti,
922 unsigned int mirror, char **argv)
923{
4ee218cd 924 unsigned long long offset;
31998ef1 925 char dummy;
1da177e4 926
31998ef1 927 if (sscanf(argv[1], "%llu%c", &offset, &dummy) != 1) {
72d94861 928 ti->error = "Invalid offset";
1da177e4
LT
929 return -EINVAL;
930 }
931
8215d6ec 932 if (dm_get_device(ti, argv[0], dm_table_get_mode(ti->table),
1da177e4 933 &ms->mirror[mirror].dev)) {
72d94861 934 ti->error = "Device lookup failure";
1da177e4
LT
935 return -ENXIO;
936 }
937
aa5617c5 938 ms->mirror[mirror].ms = ms;
72f4b314
JB
939 atomic_set(&(ms->mirror[mirror].error_count), 0);
940 ms->mirror[mirror].error_type = 0;
1da177e4
LT
941 ms->mirror[mirror].offset = offset;
942
943 return 0;
944}
945
1da177e4
LT
946/*
947 * Create dirty log: log_type #log_params <log_params>
948 */
416cd17b 949static struct dm_dirty_log *create_dirty_log(struct dm_target *ti,
1f965b19
HM
950 unsigned argc, char **argv,
951 unsigned *args_used)
1da177e4 952{
1f965b19 953 unsigned param_count;
416cd17b 954 struct dm_dirty_log *dl;
31998ef1 955 char dummy;
1da177e4
LT
956
957 if (argc < 2) {
72d94861 958 ti->error = "Insufficient mirror log arguments";
1da177e4
LT
959 return NULL;
960 }
961
31998ef1 962 if (sscanf(argv[1], "%u%c", &param_count, &dummy) != 1) {
72d94861 963 ti->error = "Invalid mirror log argument count";
1da177e4
LT
964 return NULL;
965 }
966
967 *args_used = 2 + param_count;
968
969 if (argc < *args_used) {
72d94861 970 ti->error = "Insufficient mirror log arguments";
1da177e4
LT
971 return NULL;
972 }
973
c0da3748
MP
974 dl = dm_dirty_log_create(argv[0], ti, mirror_flush, param_count,
975 argv + 2);
1da177e4 976 if (!dl) {
72d94861 977 ti->error = "Error creating mirror dirty log";
1da177e4
LT
978 return NULL;
979 }
980
1da177e4
LT
981 return dl;
982}
983
a8e6afa2
JB
984static int parse_features(struct mirror_set *ms, unsigned argc, char **argv,
985 unsigned *args_used)
986{
987 unsigned num_features;
988 struct dm_target *ti = ms->ti;
31998ef1 989 char dummy;
a8e6afa2
JB
990
991 *args_used = 0;
992
993 if (!argc)
994 return 0;
995
31998ef1 996 if (sscanf(argv[0], "%u%c", &num_features, &dummy) != 1) {
a8e6afa2
JB
997 ti->error = "Invalid number of features";
998 return -EINVAL;
999 }
1000
1001 argc--;
1002 argv++;
1003 (*args_used)++;
1004
1005 if (num_features > argc) {
1006 ti->error = "Not enough arguments to support feature count";
1007 return -EINVAL;
1008 }
1009
1010 if (!strcmp("handle_errors", argv[0]))
1011 ms->features |= DM_RAID1_HANDLE_ERRORS;
1012 else {
1013 ti->error = "Unrecognised feature requested";
1014 return -EINVAL;
1015 }
1016
1017 (*args_used)++;
1018
1019 return 0;
1020}
1021
1da177e4
LT
1022/*
1023 * Construct a mirror mapping:
1024 *
1025 * log_type #log_params <log_params>
1026 * #mirrors [mirror_path offset]{2,}
a8e6afa2 1027 * [#features <features>]
1da177e4
LT
1028 *
1029 * log_type is "core" or "disk"
1030 * #log_params is between 1 and 3
a8e6afa2
JB
1031 *
1032 * If present, features must be "handle_errors".
1da177e4 1033 */
1da177e4
LT
1034static int mirror_ctr(struct dm_target *ti, unsigned int argc, char **argv)
1035{
1036 int r;
1037 unsigned int nr_mirrors, m, args_used;
1038 struct mirror_set *ms;
416cd17b 1039 struct dm_dirty_log *dl;
31998ef1 1040 char dummy;
1da177e4
LT
1041
1042 dl = create_dirty_log(ti, argc, argv, &args_used);
1043 if (!dl)
1044 return -EINVAL;
1045
1046 argv += args_used;
1047 argc -= args_used;
1048
31998ef1 1049 if (!argc || sscanf(argv[0], "%u%c", &nr_mirrors, &dummy) != 1 ||
eb69aca5 1050 nr_mirrors < 2 || nr_mirrors > DM_KCOPYD_MAX_REGIONS + 1) {
72d94861 1051 ti->error = "Invalid number of mirrors";
416cd17b 1052 dm_dirty_log_destroy(dl);
1da177e4
LT
1053 return -EINVAL;
1054 }
1055
1056 argv++, argc--;
1057
a8e6afa2
JB
1058 if (argc < nr_mirrors * 2) {
1059 ti->error = "Too few mirror arguments";
416cd17b 1060 dm_dirty_log_destroy(dl);
1da177e4
LT
1061 return -EINVAL;
1062 }
1063
1064 ms = alloc_context(nr_mirrors, dl->type->get_region_size(dl), ti, dl);
1065 if (!ms) {
416cd17b 1066 dm_dirty_log_destroy(dl);
1da177e4
LT
1067 return -ENOMEM;
1068 }
1069
1070 /* Get the mirror parameter sets */
1071 for (m = 0; m < nr_mirrors; m++) {
1072 r = get_mirror(ms, ti, m, argv);
1073 if (r) {
1074 free_context(ms, ti, m);
1075 return r;
1076 }
1077 argv += 2;
1078 argc -= 2;
1079 }
1080
1081 ti->private = ms;
542f9038
MS
1082
1083 r = dm_set_target_max_io_len(ti, dm_rh_get_region_size(ms->rh));
1084 if (r)
1085 goto err_free_context;
1086
55a62eef
AK
1087 ti->num_flush_bios = 1;
1088 ti->num_discard_bios = 1;
89c7cd89 1089 ti->per_bio_data_size = sizeof(struct dm_raid1_bio_record);
0ac55489 1090 ti->discard_zeroes_data_unsupported = true;
1da177e4 1091
670368a8 1092 ms->kmirrord_wq = alloc_workqueue("kmirrord", WQ_MEM_RECLAIM, 0);
6ad36fe2
HS
1093 if (!ms->kmirrord_wq) {
1094 DMERR("couldn't start kmirrord");
a72cf737
DM
1095 r = -ENOMEM;
1096 goto err_free_context;
6ad36fe2
HS
1097 }
1098 INIT_WORK(&ms->kmirrord_work, do_mirror);
a2aebe03
MP
1099 init_timer(&ms->timer);
1100 ms->timer_pending = 0;
72f4b314 1101 INIT_WORK(&ms->trigger_event, trigger_event);
6ad36fe2 1102
a8e6afa2 1103 r = parse_features(ms, argc, argv, &args_used);
a72cf737
DM
1104 if (r)
1105 goto err_destroy_wq;
a8e6afa2
JB
1106
1107 argv += args_used;
1108 argc -= args_used;
1109
f44db678
JB
1110 /*
1111 * Any read-balancing addition depends on the
1112 * DM_RAID1_HANDLE_ERRORS flag being present.
1113 * This is because the decision to balance depends
1114 * on the sync state of a region. If the above
1115 * flag is not present, we ignore errors; and
1116 * the sync state may be inaccurate.
1117 */
1118
a8e6afa2
JB
1119 if (argc) {
1120 ti->error = "Too many mirror arguments";
a72cf737
DM
1121 r = -EINVAL;
1122 goto err_destroy_wq;
a8e6afa2
JB
1123 }
1124
df5d2e90 1125 ms->kcopyd_client = dm_kcopyd_client_create(&dm_kcopyd_throttle);
fa34ce73
MP
1126 if (IS_ERR(ms->kcopyd_client)) {
1127 r = PTR_ERR(ms->kcopyd_client);
a72cf737 1128 goto err_destroy_wq;
fa34ce73 1129 }
1da177e4 1130
1f965b19 1131 wakeup_mirrord(ms);
1da177e4 1132 return 0;
a72cf737
DM
1133
1134err_destroy_wq:
1135 destroy_workqueue(ms->kmirrord_wq);
1136err_free_context:
1137 free_context(ms, ti, ms->nr_mirrors);
1138 return r;
1da177e4
LT
1139}
1140
1141static void mirror_dtr(struct dm_target *ti)
1142{
1143 struct mirror_set *ms = (struct mirror_set *) ti->private;
1144
a2aebe03 1145 del_timer_sync(&ms->timer);
6ad36fe2 1146 flush_workqueue(ms->kmirrord_wq);
43829731 1147 flush_work(&ms->trigger_event);
eb69aca5 1148 dm_kcopyd_client_destroy(ms->kcopyd_client);
6ad36fe2 1149 destroy_workqueue(ms->kmirrord_wq);
1da177e4
LT
1150 free_context(ms, ti, ms->nr_mirrors);
1151}
1152
1da177e4
LT
1153/*
1154 * Mirror mapping function
1155 */
7de3ee57 1156static int mirror_map(struct dm_target *ti, struct bio *bio)
1da177e4
LT
1157{
1158 int r, rw = bio_rw(bio);
1159 struct mirror *m;
1160 struct mirror_set *ms = ti->private;
1f965b19 1161 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
0045d61b
MP
1162 struct dm_raid1_bio_record *bio_record =
1163 dm_per_bio_data(bio, sizeof(struct dm_raid1_bio_record));
1164
1165 bio_record->details.bi_bdev = NULL;
1da177e4
LT
1166
1167 if (rw == WRITE) {
06386bbf 1168 /* Save region for mirror_end_io() handler */
0045d61b 1169 bio_record->write_region = dm_rh_bio_to_region(ms->rh, bio);
1da177e4 1170 queue_bio(ms, bio, rw);
d2a7ad29 1171 return DM_MAPIO_SUBMITTED;
1da177e4
LT
1172 }
1173
1f965b19 1174 r = log->type->in_sync(log, dm_rh_bio_to_region(ms->rh, bio), 0);
1da177e4
LT
1175 if (r < 0 && r != -EWOULDBLOCK)
1176 return r;
1177
1da177e4 1178 /*
06386bbf 1179 * If region is not in-sync queue the bio.
1da177e4 1180 */
06386bbf
JB
1181 if (!r || (r == -EWOULDBLOCK)) {
1182 if (rw == READA)
1183 return -EWOULDBLOCK;
1da177e4 1184
1da177e4 1185 queue_bio(ms, bio, rw);
d2a7ad29 1186 return DM_MAPIO_SUBMITTED;
1da177e4
LT
1187 }
1188
06386bbf
JB
1189 /*
1190 * The region is in-sync and we can perform reads directly.
1191 * Store enough information so we can retry if it fails.
1192 */
4f024f37 1193 m = choose_mirror(ms, bio->bi_iter.bi_sector);
06386bbf 1194 if (unlikely(!m))
1da177e4
LT
1195 return -EIO;
1196
89c7cd89 1197 dm_bio_record(&bio_record->details, bio);
89c7cd89 1198 bio_record->m = m;
06386bbf
JB
1199
1200 map_bio(m, bio);
1201
d2a7ad29 1202 return DM_MAPIO_REMAPPED;
1da177e4
LT
1203}
1204
7de3ee57 1205static int mirror_end_io(struct dm_target *ti, struct bio *bio, int error)
1da177e4
LT
1206{
1207 int rw = bio_rw(bio);
1208 struct mirror_set *ms = (struct mirror_set *) ti->private;
06386bbf
JB
1209 struct mirror *m = NULL;
1210 struct dm_bio_details *bd = NULL;
0045d61b
MP
1211 struct dm_raid1_bio_record *bio_record =
1212 dm_per_bio_data(bio, sizeof(struct dm_raid1_bio_record));
1da177e4
LT
1213
1214 /*
1215 * We need to dec pending if this was a write.
1216 */
06386bbf 1217 if (rw == WRITE) {
751f188d 1218 if (!(bio->bi_rw & (REQ_FLUSH | REQ_DISCARD)))
0045d61b 1219 dm_rh_dec(ms->rh, bio_record->write_region);
06386bbf
JB
1220 return error;
1221 }
1da177e4 1222
06386bbf
JB
1223 if (error == -EOPNOTSUPP)
1224 goto out;
1225
7b6d91da 1226 if ((error == -EWOULDBLOCK) && (bio->bi_rw & REQ_RAHEAD))
06386bbf
JB
1227 goto out;
1228
1229 if (unlikely(error)) {
0045d61b 1230 if (!bio_record->details.bi_bdev) {
06386bbf
JB
1231 /*
1232 * There wasn't enough memory to record necessary
1233 * information for a retry or there was no other
1234 * mirror in-sync.
1235 */
e03f1a84 1236 DMERR_LIMIT("Mirror read failed.");
06386bbf
JB
1237 return -EIO;
1238 }
e03f1a84 1239
89c7cd89 1240 m = bio_record->m;
e03f1a84 1241
06386bbf
JB
1242 DMERR("Mirror read failed from %s. Trying alternative device.",
1243 m->dev->name);
1244
06386bbf
JB
1245 fail_mirror(m, DM_RAID1_READ_ERROR);
1246
1247 /*
1248 * A failed read is requeued for another attempt using an intact
1249 * mirror.
1250 */
1251 if (default_ok(m) || mirror_available(ms, bio)) {
89c7cd89 1252 bd = &bio_record->details;
06386bbf
JB
1253
1254 dm_bio_restore(bd, bio);
0045d61b 1255 bio_record->details.bi_bdev = NULL;
f3a44fe0
MP
1256
1257 atomic_inc(&bio->bi_remaining);
1258
06386bbf 1259 queue_bio(ms, bio, rw);
19cbbc60 1260 return DM_ENDIO_INCOMPLETE;
06386bbf
JB
1261 }
1262 DMERR("All replicated volumes dead, failing I/O");
1263 }
1264
1265out:
0045d61b 1266 bio_record->details.bi_bdev = NULL;
06386bbf
JB
1267
1268 return error;
1da177e4
LT
1269}
1270
b80aa7a0 1271static void mirror_presuspend(struct dm_target *ti)
1da177e4
LT
1272{
1273 struct mirror_set *ms = (struct mirror_set *) ti->private;
1f965b19 1274 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
1da177e4 1275
04788507
MP
1276 struct bio_list holds;
1277 struct bio *bio;
1278
b80aa7a0
JB
1279 atomic_set(&ms->suspend, 1);
1280
f0703040
TY
1281 /*
1282 * Process bios in the hold list to start recovery waiting
1283 * for bios in the hold list. After the process, no bio has
1284 * a chance to be added in the hold list because ms->suspend
1285 * is set.
1286 */
1287 spin_lock_irq(&ms->lock);
1288 holds = ms->holds;
1289 bio_list_init(&ms->holds);
1290 spin_unlock_irq(&ms->lock);
1291
1292 while ((bio = bio_list_pop(&holds)))
1293 hold_bio(ms, bio);
1294
b80aa7a0
JB
1295 /*
1296 * We must finish up all the work that we've
1297 * generated (i.e. recovery work).
1298 */
1f965b19 1299 dm_rh_stop_recovery(ms->rh);
33184048 1300
33184048 1301 wait_event(_kmirrord_recovery_stopped,
1f965b19 1302 !dm_rh_recovery_in_flight(ms->rh));
33184048 1303
b80aa7a0
JB
1304 if (log->type->presuspend && log->type->presuspend(log))
1305 /* FIXME: need better error handling */
1306 DMWARN("log presuspend failed");
1307
1308 /*
1309 * Now that recovery is complete/stopped and the
1310 * delayed bios are queued, we need to wait for
1311 * the worker thread to complete. This way,
1312 * we know that all of our I/O has been pushed.
1313 */
1314 flush_workqueue(ms->kmirrord_wq);
1315}
1316
1317static void mirror_postsuspend(struct dm_target *ti)
1318{
1319 struct mirror_set *ms = ti->private;
1f965b19 1320 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
b80aa7a0 1321
6b3df0d7 1322 if (log->type->postsuspend && log->type->postsuspend(log))
1da177e4 1323 /* FIXME: need better error handling */
b80aa7a0 1324 DMWARN("log postsuspend failed");
1da177e4
LT
1325}
1326
1327static void mirror_resume(struct dm_target *ti)
1328{
b80aa7a0 1329 struct mirror_set *ms = ti->private;
1f965b19 1330 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
b80aa7a0
JB
1331
1332 atomic_set(&ms->suspend, 0);
1da177e4
LT
1333 if (log->type->resume && log->type->resume(log))
1334 /* FIXME: need better error handling */
1335 DMWARN("log resume failed");
1f965b19 1336 dm_rh_start_recovery(ms->rh);
1da177e4
LT
1337}
1338
af195ac8
JB
1339/*
1340 * device_status_char
1341 * @m: mirror device/leg we want the status of
1342 *
1343 * We return one character representing the most severe error
1344 * we have encountered.
1345 * A => Alive - No failures
1346 * D => Dead - A write failure occurred leaving mirror out-of-sync
1347 * S => Sync - A sychronization failure occurred, mirror out-of-sync
1348 * R => Read - A read failure occurred, mirror data unaffected
1349 *
1350 * Returns: <char>
1351 */
1352static char device_status_char(struct mirror *m)
1353{
1354 if (!atomic_read(&(m->error_count)))
1355 return 'A';
1356
64b30c46
MP
1357 return (test_bit(DM_RAID1_FLUSH_ERROR, &(m->error_type))) ? 'F' :
1358 (test_bit(DM_RAID1_WRITE_ERROR, &(m->error_type))) ? 'D' :
af195ac8
JB
1359 (test_bit(DM_RAID1_SYNC_ERROR, &(m->error_type))) ? 'S' :
1360 (test_bit(DM_RAID1_READ_ERROR, &(m->error_type))) ? 'R' : 'U';
1361}
1362
1363
fd7c092e
MP
1364static void mirror_status(struct dm_target *ti, status_type_t type,
1365 unsigned status_flags, char *result, unsigned maxlen)
1da177e4 1366{
315dcc22 1367 unsigned int m, sz = 0;
1da177e4 1368 struct mirror_set *ms = (struct mirror_set *) ti->private;
1f965b19 1369 struct dm_dirty_log *log = dm_rh_dirty_log(ms->rh);
af195ac8 1370 char buffer[ms->nr_mirrors + 1];
1da177e4 1371
1da177e4
LT
1372 switch (type) {
1373 case STATUSTYPE_INFO:
1374 DMEMIT("%d ", ms->nr_mirrors);
af195ac8 1375 for (m = 0; m < ms->nr_mirrors; m++) {
1da177e4 1376 DMEMIT("%s ", ms->mirror[m].dev->name);
af195ac8
JB
1377 buffer[m] = device_status_char(&(ms->mirror[m]));
1378 }
1379 buffer[m] = '\0';
1da177e4 1380
af195ac8 1381 DMEMIT("%llu/%llu 1 %s ",
1f965b19 1382 (unsigned long long)log->type->get_sync_count(log),
af195ac8 1383 (unsigned long long)ms->nr_regions, buffer);
315dcc22 1384
1f965b19 1385 sz += log->type->status(log, type, result+sz, maxlen-sz);
315dcc22 1386
1da177e4
LT
1387 break;
1388
1389 case STATUSTYPE_TABLE:
1f965b19 1390 sz = log->type->status(log, type, result, maxlen);
315dcc22 1391
e52b8f6d 1392 DMEMIT("%d", ms->nr_mirrors);
1da177e4 1393 for (m = 0; m < ms->nr_mirrors; m++)
e52b8f6d 1394 DMEMIT(" %s %llu", ms->mirror[m].dev->name,
b80aa7a0 1395 (unsigned long long)ms->mirror[m].offset);
a8e6afa2
JB
1396
1397 if (ms->features & DM_RAID1_HANDLE_ERRORS)
1398 DMEMIT(" 1 handle_errors");
1da177e4 1399 }
1da177e4
LT
1400}
1401
af4874e0
MS
1402static int mirror_iterate_devices(struct dm_target *ti,
1403 iterate_devices_callout_fn fn, void *data)
1404{
1405 struct mirror_set *ms = ti->private;
1406 int ret = 0;
1407 unsigned i;
1408
1409 for (i = 0; !ret && i < ms->nr_mirrors; i++)
1410 ret = fn(ti, ms->mirror[i].dev,
5dea271b 1411 ms->mirror[i].offset, ti->len, data);
af4874e0
MS
1412
1413 return ret;
1414}
1415
1da177e4
LT
1416static struct target_type mirror_target = {
1417 .name = "mirror",
fd7c092e 1418 .version = {1, 13, 2},
1da177e4
LT
1419 .module = THIS_MODULE,
1420 .ctr = mirror_ctr,
1421 .dtr = mirror_dtr,
1422 .map = mirror_map,
1423 .end_io = mirror_end_io,
b80aa7a0 1424 .presuspend = mirror_presuspend,
1da177e4
LT
1425 .postsuspend = mirror_postsuspend,
1426 .resume = mirror_resume,
1427 .status = mirror_status,
af4874e0 1428 .iterate_devices = mirror_iterate_devices,
1da177e4
LT
1429};
1430
1431static int __init dm_mirror_init(void)
1432{
1433 int r;
1434
1da177e4 1435 r = dm_register_target(&mirror_target);
95f8fac8 1436 if (r < 0) {
0cd33124 1437 DMERR("Failed to register mirror target");
95f8fac8
MP
1438 goto bad_target;
1439 }
1440
1441 return 0;
1da177e4 1442
95f8fac8 1443bad_target:
1da177e4
LT
1444 return r;
1445}
1446
1447static void __exit dm_mirror_exit(void)
1448{
10d3bd09 1449 dm_unregister_target(&mirror_target);
1da177e4
LT
1450}
1451
1452/* Module hooks */
1453module_init(dm_mirror_init);
1454module_exit(dm_mirror_exit);
1455
1456MODULE_DESCRIPTION(DM_NAME " mirror target");
1457MODULE_AUTHOR("Joe Thornber");
1458MODULE_LICENSE("GPL");
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