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1da177e4
LT
1/*
2 md.c : Multiple Devices driver for Linux
f72ffdd6 3 Copyright (C) 1998, 1999, 2000 Ingo Molnar
1da177e4
LT
4
5 completely rewritten, based on the MD driver code from Marc Zyngier
6
7 Changes:
8
9 - RAID-1/RAID-5 extensions by Miguel de Icaza, Gadi Oxman, Ingo Molnar
10 - RAID-6 extensions by H. Peter Anvin <hpa@zytor.com>
11 - boot support for linear and striped mode by Harald Hoyer <HarryH@Royal.Net>
12 - kerneld support by Boris Tobotras <boris@xtalk.msk.su>
13 - kmod support by: Cyrus Durgin
14 - RAID0 bugfixes: Mark Anthony Lisher <markal@iname.com>
15 - Devfs support by Richard Gooch <rgooch@atnf.csiro.au>
16
17 - lots of fixes and improvements to the RAID1/RAID5 and generic
18 RAID code (such as request based resynchronization):
19
20 Neil Brown <neilb@cse.unsw.edu.au>.
21
32a7627c
N
22 - persistent bitmap code
23 Copyright (C) 2003-2004, Paul Clements, SteelEye Technology, Inc.
24
1da177e4
LT
25 This program is free software; you can redistribute it and/or modify
26 it under the terms of the GNU General Public License as published by
27 the Free Software Foundation; either version 2, or (at your option)
28 any later version.
29
30 You should have received a copy of the GNU General Public License
31 (for example /usr/src/linux/COPYING); if not, write to the Free
32 Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
9d48739e
N
33
34 Errors, Warnings, etc.
35 Please use:
36 pr_crit() for error conditions that risk data loss
37 pr_err() for error conditions that are unexpected, like an IO error
38 or internal inconsistency
39 pr_warn() for error conditions that could have been predicated, like
40 adding a device to an array when it has incompatible metadata
41 pr_info() for every interesting, very rare events, like an array starting
42 or stopping, or resync starting or stopping
43 pr_debug() for everything else.
44
1da177e4
LT
45*/
46
3f07c014 47#include <linux/sched/signal.h>
a6fb0934 48#include <linux/kthread.h>
bff61975 49#include <linux/blkdev.h>
fc974ee2 50#include <linux/badblocks.h>
1da177e4 51#include <linux/sysctl.h>
bff61975 52#include <linux/seq_file.h>
ff01bb48 53#include <linux/fs.h>
d7603b7e 54#include <linux/poll.h>
16f17b39 55#include <linux/ctype.h>
e7d2860b 56#include <linux/string.h>
fb4d8c76
N
57#include <linux/hdreg.h>
58#include <linux/proc_fs.h>
59#include <linux/random.h>
056075c7 60#include <linux/module.h>
fb4d8c76 61#include <linux/reboot.h>
32a7627c 62#include <linux/file.h>
aa98aa31 63#include <linux/compat.h>
25570727 64#include <linux/delay.h>
bff61975
N
65#include <linux/raid/md_p.h>
66#include <linux/raid/md_u.h>
5a0e3ad6 67#include <linux/slab.h>
504634f6 68#include <trace/events/block.h>
43b2e5d8 69#include "md.h"
ef740c37 70#include "bitmap.h"
edb39c9d 71#include "md-cluster.h"
1da177e4 72
1da177e4 73#ifndef MODULE
d710e138 74static void autostart_arrays(int part);
1da177e4
LT
75#endif
76
01f96c0a
N
77/* pers_list is a list of registered personalities protected
78 * by pers_lock.
79 * pers_lock does extra service to protect accesses to
80 * mddev->thread when the mutex cannot be held.
81 */
2604b703 82static LIST_HEAD(pers_list);
1da177e4
LT
83static DEFINE_SPINLOCK(pers_lock);
84
edb39c9d 85struct md_cluster_operations *md_cluster_ops;
589a1c49 86EXPORT_SYMBOL(md_cluster_ops);
edb39c9d
GR
87struct module *md_cluster_mod;
88EXPORT_SYMBOL(md_cluster_mod);
89
90b08710 90static DECLARE_WAIT_QUEUE_HEAD(resync_wait);
e804ac78
TH
91static struct workqueue_struct *md_wq;
92static struct workqueue_struct *md_misc_wq;
90b08710 93
746d3207
N
94static int remove_and_add_spares(struct mddev *mddev,
95 struct md_rdev *this);
5aa61f42 96static void mddev_detach(struct mddev *mddev);
746d3207 97
1e50915f
RB
98/*
99 * Default number of read corrections we'll attempt on an rdev
100 * before ejecting it from the array. We divide the read error
101 * count by 2 for every hour elapsed between read errors.
102 */
103#define MD_DEFAULT_MAX_CORRECTED_READ_ERRORS 20
1da177e4
LT
104/*
105 * Current RAID-1,4,5 parallel reconstruction 'guaranteed speed limit'
106 * is 1000 KB/sec, so the extra system load does not show up that much.
107 * Increase it if you want to have more _guaranteed_ speed. Note that
338cec32 108 * the RAID driver will use the maximum available bandwidth if the IO
1da177e4
LT
109 * subsystem is idle. There is also an 'absolute maximum' reconstruction
110 * speed limit - in case reconstruction slows down your system despite
111 * idle IO detection.
112 *
113 * you can change it via /proc/sys/dev/raid/speed_limit_min and _max.
88202a0c 114 * or /sys/block/mdX/md/sync_speed_{min,max}
1da177e4
LT
115 */
116
117static int sysctl_speed_limit_min = 1000;
118static int sysctl_speed_limit_max = 200000;
fd01b88c 119static inline int speed_min(struct mddev *mddev)
88202a0c
N
120{
121 return mddev->sync_speed_min ?
122 mddev->sync_speed_min : sysctl_speed_limit_min;
123}
124
fd01b88c 125static inline int speed_max(struct mddev *mddev)
88202a0c
N
126{
127 return mddev->sync_speed_max ?
128 mddev->sync_speed_max : sysctl_speed_limit_max;
129}
1da177e4
LT
130
131static struct ctl_table_header *raid_table_header;
132
82592c38 133static struct ctl_table raid_table[] = {
1da177e4 134 {
1da177e4
LT
135 .procname = "speed_limit_min",
136 .data = &sysctl_speed_limit_min,
137 .maxlen = sizeof(int),
80ca3a44 138 .mode = S_IRUGO|S_IWUSR,
6d456111 139 .proc_handler = proc_dointvec,
1da177e4
LT
140 },
141 {
1da177e4
LT
142 .procname = "speed_limit_max",
143 .data = &sysctl_speed_limit_max,
144 .maxlen = sizeof(int),
80ca3a44 145 .mode = S_IRUGO|S_IWUSR,
6d456111 146 .proc_handler = proc_dointvec,
1da177e4 147 },
894d2491 148 { }
1da177e4
LT
149};
150
82592c38 151static struct ctl_table raid_dir_table[] = {
1da177e4 152 {
1da177e4
LT
153 .procname = "raid",
154 .maxlen = 0,
80ca3a44 155 .mode = S_IRUGO|S_IXUGO,
1da177e4
LT
156 .child = raid_table,
157 },
894d2491 158 { }
1da177e4
LT
159};
160
82592c38 161static struct ctl_table raid_root_table[] = {
1da177e4 162 {
1da177e4
LT
163 .procname = "dev",
164 .maxlen = 0,
165 .mode = 0555,
166 .child = raid_dir_table,
167 },
894d2491 168 { }
1da177e4
LT
169};
170
83d5cde4 171static const struct block_device_operations md_fops;
1da177e4 172
f91de92e
N
173static int start_readonly;
174
a167f663
N
175/* bio_clone_mddev
176 * like bio_clone, but with a local bio set
177 */
178
a167f663 179struct bio *bio_alloc_mddev(gfp_t gfp_mask, int nr_iovecs,
fd01b88c 180 struct mddev *mddev)
a167f663
N
181{
182 struct bio *b;
a167f663
N
183
184 if (!mddev || !mddev->bio_set)
185 return bio_alloc(gfp_mask, nr_iovecs);
186
395c72a7 187 b = bio_alloc_bioset(gfp_mask, nr_iovecs, mddev->bio_set);
a167f663
N
188 if (!b)
189 return NULL;
a167f663
N
190 return b;
191}
192EXPORT_SYMBOL_GPL(bio_alloc_mddev);
193
d7603b7e
N
194/*
195 * We have a system wide 'event count' that is incremented
196 * on any 'interesting' event, and readers of /proc/mdstat
197 * can use 'poll' or 'select' to find out when the event
198 * count increases.
199 *
200 * Events are:
201 * start array, stop array, error, add device, remove device,
202 * start build, activate spare
203 */
2989ddbd 204static DECLARE_WAIT_QUEUE_HEAD(md_event_waiters);
d7603b7e 205static atomic_t md_event_count;
fd01b88c 206void md_new_event(struct mddev *mddev)
d7603b7e
N
207{
208 atomic_inc(&md_event_count);
209 wake_up(&md_event_waiters);
210}
29269553 211EXPORT_SYMBOL_GPL(md_new_event);
d7603b7e 212
1da177e4
LT
213/*
214 * Enables to iterate over all existing md arrays
215 * all_mddevs_lock protects this list.
216 */
217static LIST_HEAD(all_mddevs);
218static DEFINE_SPINLOCK(all_mddevs_lock);
219
1da177e4
LT
220/*
221 * iterates through all used mddevs in the system.
222 * We take care to grab the all_mddevs_lock whenever navigating
223 * the list, and to always hold a refcount when unlocked.
224 * Any code which breaks out of this loop while own
225 * a reference to the current mddev and must mddev_put it.
226 */
fd01b88c 227#define for_each_mddev(_mddev,_tmp) \
1da177e4 228 \
f72ffdd6 229 for (({ spin_lock(&all_mddevs_lock); \
fd01b88c
N
230 _tmp = all_mddevs.next; \
231 _mddev = NULL;}); \
232 ({ if (_tmp != &all_mddevs) \
233 mddev_get(list_entry(_tmp, struct mddev, all_mddevs));\
1da177e4 234 spin_unlock(&all_mddevs_lock); \
fd01b88c
N
235 if (_mddev) mddev_put(_mddev); \
236 _mddev = list_entry(_tmp, struct mddev, all_mddevs); \
237 _tmp != &all_mddevs;}); \
1da177e4 238 ({ spin_lock(&all_mddevs_lock); \
fd01b88c 239 _tmp = _tmp->next;}) \
1da177e4
LT
240 )
241
409c57f3
N
242/* Rather than calling directly into the personality make_request function,
243 * IO requests come here first so that we can check if the device is
244 * being suspended pending a reconfiguration.
245 * We hold a refcount over the call to ->make_request. By the time that
246 * call has finished, the bio has been linked into some internal structure
247 * and so is visible to ->quiesce(), so we don't need the refcount any more.
248 */
dece1635 249static blk_qc_t md_make_request(struct request_queue *q, struct bio *bio)
1da177e4 250{
49077326 251 const int rw = bio_data_dir(bio);
fd01b88c 252 struct mddev *mddev = q->queuedata;
e91ece55 253 unsigned int sectors;
74672d06 254 int cpu;
49077326 255
54efd50b
KO
256 blk_queue_split(q, &bio, q->bio_split);
257
274d8cbd 258 if (mddev == NULL || mddev->pers == NULL) {
409c57f3 259 bio_io_error(bio);
dece1635 260 return BLK_QC_T_NONE;
409c57f3 261 }
bbfa57c0 262 if (mddev->ro == 1 && unlikely(rw == WRITE)) {
4246a0b6
CH
263 if (bio_sectors(bio) != 0)
264 bio->bi_error = -EROFS;
265 bio_endio(bio);
dece1635 266 return BLK_QC_T_NONE;
bbfa57c0 267 }
0ca69886 268 smp_rmb(); /* Ensure implications of 'active' are visible */
409c57f3 269 rcu_read_lock();
e9c7469b 270 if (mddev->suspended) {
409c57f3
N
271 DEFINE_WAIT(__wait);
272 for (;;) {
273 prepare_to_wait(&mddev->sb_wait, &__wait,
274 TASK_UNINTERRUPTIBLE);
e9c7469b 275 if (!mddev->suspended)
409c57f3
N
276 break;
277 rcu_read_unlock();
278 schedule();
279 rcu_read_lock();
280 }
281 finish_wait(&mddev->sb_wait, &__wait);
282 }
283 atomic_inc(&mddev->active_io);
284 rcu_read_unlock();
49077326 285
e91ece55
CM
286 /*
287 * save the sectors now since our bio can
288 * go away inside make_request
289 */
290 sectors = bio_sectors(bio);
9c573de3 291 /* bio could be mergeable after passing to underlayer */
1eff9d32 292 bio->bi_opf &= ~REQ_NOMERGE;
5a7bbad2 293 mddev->pers->make_request(mddev, bio);
49077326 294
74672d06
GZ
295 cpu = part_stat_lock();
296 part_stat_inc(cpu, &mddev->gendisk->part0, ios[rw]);
297 part_stat_add(cpu, &mddev->gendisk->part0, sectors[rw], sectors);
298 part_stat_unlock();
49077326 299
409c57f3
N
300 if (atomic_dec_and_test(&mddev->active_io) && mddev->suspended)
301 wake_up(&mddev->sb_wait);
dece1635
JA
302
303 return BLK_QC_T_NONE;
409c57f3
N
304}
305
9e35b99c
N
306/* mddev_suspend makes sure no new requests are submitted
307 * to the device, and that any requests that have been submitted
308 * are completely handled.
afa0f557
N
309 * Once mddev_detach() is called and completes, the module will be
310 * completely unused.
9e35b99c 311 */
fd01b88c 312void mddev_suspend(struct mddev *mddev)
409c57f3 313{
092398dc 314 WARN_ON_ONCE(mddev->thread && current == mddev->thread->tsk);
0dc10e50
MP
315 if (mddev->suspended++)
316 return;
409c57f3
N
317 synchronize_rcu();
318 wait_event(mddev->sb_wait, atomic_read(&mddev->active_io) == 0);
319 mddev->pers->quiesce(mddev, 1);
0d9f4f13
JB
320
321 del_timer_sync(&mddev->safemode_timer);
409c57f3 322}
390ee602 323EXPORT_SYMBOL_GPL(mddev_suspend);
409c57f3 324
fd01b88c 325void mddev_resume(struct mddev *mddev)
409c57f3 326{
0dc10e50
MP
327 if (--mddev->suspended)
328 return;
409c57f3
N
329 wake_up(&mddev->sb_wait);
330 mddev->pers->quiesce(mddev, 0);
0fd018af 331
47525e59 332 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
0fd018af
JB
333 md_wakeup_thread(mddev->thread);
334 md_wakeup_thread(mddev->sync_thread); /* possibly kick off a reshape */
1da177e4 335}
390ee602 336EXPORT_SYMBOL_GPL(mddev_resume);
1da177e4 337
fd01b88c 338int mddev_congested(struct mddev *mddev, int bits)
3fa841d7 339{
5c675f83
N
340 struct md_personality *pers = mddev->pers;
341 int ret = 0;
342
343 rcu_read_lock();
344 if (mddev->suspended)
345 ret = 1;
346 else if (pers && pers->congested)
347 ret = pers->congested(mddev, bits);
348 rcu_read_unlock();
349 return ret;
350}
351EXPORT_SYMBOL_GPL(mddev_congested);
352static int md_congested(void *data, int bits)
353{
354 struct mddev *mddev = data;
355 return mddev_congested(mddev, bits);
3fa841d7 356}
3fa841d7 357
a2826aa9 358/*
e9c7469b 359 * Generic flush handling for md
a2826aa9
N
360 */
361
4246a0b6 362static void md_end_flush(struct bio *bio)
a2826aa9 363{
3cb03002 364 struct md_rdev *rdev = bio->bi_private;
fd01b88c 365 struct mddev *mddev = rdev->mddev;
a2826aa9
N
366
367 rdev_dec_pending(rdev, mddev);
368
369 if (atomic_dec_and_test(&mddev->flush_pending)) {
e9c7469b 370 /* The pre-request flush has finished */
e804ac78 371 queue_work(md_wq, &mddev->flush_work);
a2826aa9
N
372 }
373 bio_put(bio);
374}
375
a7a07e69
N
376static void md_submit_flush_data(struct work_struct *ws);
377
a035fc3e 378static void submit_flushes(struct work_struct *ws)
a2826aa9 379{
fd01b88c 380 struct mddev *mddev = container_of(ws, struct mddev, flush_work);
3cb03002 381 struct md_rdev *rdev;
a2826aa9 382
a7a07e69
N
383 INIT_WORK(&mddev->flush_work, md_submit_flush_data);
384 atomic_set(&mddev->flush_pending, 1);
a2826aa9 385 rcu_read_lock();
dafb20fa 386 rdev_for_each_rcu(rdev, mddev)
a2826aa9
N
387 if (rdev->raid_disk >= 0 &&
388 !test_bit(Faulty, &rdev->flags)) {
389 /* Take two references, one is dropped
390 * when request finishes, one after
391 * we reclaim rcu_read_lock
392 */
393 struct bio *bi;
394 atomic_inc(&rdev->nr_pending);
395 atomic_inc(&rdev->nr_pending);
396 rcu_read_unlock();
b5e1b8ce 397 bi = bio_alloc_mddev(GFP_NOIO, 0, mddev);
e9c7469b 398 bi->bi_end_io = md_end_flush;
a2826aa9
N
399 bi->bi_private = rdev;
400 bi->bi_bdev = rdev->bdev;
70fd7614 401 bi->bi_opf = REQ_OP_WRITE | REQ_PREFLUSH;
a2826aa9 402 atomic_inc(&mddev->flush_pending);
4e49ea4a 403 submit_bio(bi);
a2826aa9
N
404 rcu_read_lock();
405 rdev_dec_pending(rdev, mddev);
406 }
407 rcu_read_unlock();
a7a07e69
N
408 if (atomic_dec_and_test(&mddev->flush_pending))
409 queue_work(md_wq, &mddev->flush_work);
a2826aa9
N
410}
411
e9c7469b 412static void md_submit_flush_data(struct work_struct *ws)
a2826aa9 413{
fd01b88c 414 struct mddev *mddev = container_of(ws, struct mddev, flush_work);
e9c7469b 415 struct bio *bio = mddev->flush_bio;
a2826aa9 416
4f024f37 417 if (bio->bi_iter.bi_size == 0)
a2826aa9 418 /* an empty barrier - all done */
4246a0b6 419 bio_endio(bio);
a2826aa9 420 else {
1eff9d32 421 bio->bi_opf &= ~REQ_PREFLUSH;
5a7bbad2 422 mddev->pers->make_request(mddev, bio);
a2826aa9 423 }
2b74e12e
N
424
425 mddev->flush_bio = NULL;
426 wake_up(&mddev->sb_wait);
a2826aa9
N
427}
428
fd01b88c 429void md_flush_request(struct mddev *mddev, struct bio *bio)
a2826aa9 430{
85572d7c 431 spin_lock_irq(&mddev->lock);
a2826aa9 432 wait_event_lock_irq(mddev->sb_wait,
e9c7469b 433 !mddev->flush_bio,
85572d7c 434 mddev->lock);
e9c7469b 435 mddev->flush_bio = bio;
85572d7c 436 spin_unlock_irq(&mddev->lock);
a2826aa9 437
a035fc3e
N
438 INIT_WORK(&mddev->flush_work, submit_flushes);
439 queue_work(md_wq, &mddev->flush_work);
a2826aa9 440}
e9c7469b 441EXPORT_SYMBOL(md_flush_request);
409c57f3 442
fd01b88c 443static inline struct mddev *mddev_get(struct mddev *mddev)
1da177e4
LT
444{
445 atomic_inc(&mddev->active);
446 return mddev;
447}
448
5fd3a17e 449static void mddev_delayed_delete(struct work_struct *ws);
d3374825 450
fd01b88c 451static void mddev_put(struct mddev *mddev)
1da177e4 452{
a167f663
N
453 struct bio_set *bs = NULL;
454
1da177e4
LT
455 if (!atomic_dec_and_lock(&mddev->active, &all_mddevs_lock))
456 return;
d3374825 457 if (!mddev->raid_disks && list_empty(&mddev->disks) &&
cbd19983
N
458 mddev->ctime == 0 && !mddev->hold_active) {
459 /* Array is not configured at all, and not held active,
460 * so destroy it */
af8a2434 461 list_del_init(&mddev->all_mddevs);
a167f663
N
462 bs = mddev->bio_set;
463 mddev->bio_set = NULL;
d3374825 464 if (mddev->gendisk) {
e804ac78
TH
465 /* We did a probe so need to clean up. Call
466 * queue_work inside the spinlock so that
467 * flush_workqueue() after mddev_find will
468 * succeed in waiting for the work to be done.
d3374825
N
469 */
470 INIT_WORK(&mddev->del_work, mddev_delayed_delete);
e804ac78 471 queue_work(md_misc_wq, &mddev->del_work);
d3374825
N
472 } else
473 kfree(mddev);
474 }
475 spin_unlock(&all_mddevs_lock);
a167f663
N
476 if (bs)
477 bioset_free(bs);
1da177e4
LT
478}
479
25b2edfa
SL
480static void md_safemode_timeout(unsigned long data);
481
fd01b88c 482void mddev_init(struct mddev *mddev)
fafd7fb0
N
483{
484 mutex_init(&mddev->open_mutex);
485 mutex_init(&mddev->reconfig_mutex);
486 mutex_init(&mddev->bitmap_info.mutex);
487 INIT_LIST_HEAD(&mddev->disks);
488 INIT_LIST_HEAD(&mddev->all_mddevs);
25b2edfa
SL
489 setup_timer(&mddev->safemode_timer, md_safemode_timeout,
490 (unsigned long) mddev);
fafd7fb0
N
491 atomic_set(&mddev->active, 1);
492 atomic_set(&mddev->openers, 0);
493 atomic_set(&mddev->active_io, 0);
85572d7c 494 spin_lock_init(&mddev->lock);
fafd7fb0
N
495 atomic_set(&mddev->flush_pending, 0);
496 init_waitqueue_head(&mddev->sb_wait);
497 init_waitqueue_head(&mddev->recovery_wait);
498 mddev->reshape_position = MaxSector;
2c810cdd 499 mddev->reshape_backwards = 0;
c4a39551 500 mddev->last_sync_action = "none";
fafd7fb0
N
501 mddev->resync_min = 0;
502 mddev->resync_max = MaxSector;
503 mddev->level = LEVEL_NONE;
504}
390ee602 505EXPORT_SYMBOL_GPL(mddev_init);
fafd7fb0 506
f72ffdd6 507static struct mddev *mddev_find(dev_t unit)
1da177e4 508{
fd01b88c 509 struct mddev *mddev, *new = NULL;
1da177e4 510
8f5f02c4
N
511 if (unit && MAJOR(unit) != MD_MAJOR)
512 unit &= ~((1<<MdpMinorShift)-1);
513
1da177e4
LT
514 retry:
515 spin_lock(&all_mddevs_lock);
efeb53c0
N
516
517 if (unit) {
518 list_for_each_entry(mddev, &all_mddevs, all_mddevs)
519 if (mddev->unit == unit) {
520 mddev_get(mddev);
521 spin_unlock(&all_mddevs_lock);
522 kfree(new);
523 return mddev;
524 }
525
526 if (new) {
527 list_add(&new->all_mddevs, &all_mddevs);
1da177e4 528 spin_unlock(&all_mddevs_lock);
efeb53c0
N
529 new->hold_active = UNTIL_IOCTL;
530 return new;
1da177e4 531 }
efeb53c0
N
532 } else if (new) {
533 /* find an unused unit number */
534 static int next_minor = 512;
535 int start = next_minor;
536 int is_free = 0;
537 int dev = 0;
538 while (!is_free) {
539 dev = MKDEV(MD_MAJOR, next_minor);
540 next_minor++;
541 if (next_minor > MINORMASK)
542 next_minor = 0;
543 if (next_minor == start) {
544 /* Oh dear, all in use. */
545 spin_unlock(&all_mddevs_lock);
546 kfree(new);
547 return NULL;
548 }
f72ffdd6 549
efeb53c0
N
550 is_free = 1;
551 list_for_each_entry(mddev, &all_mddevs, all_mddevs)
552 if (mddev->unit == dev) {
553 is_free = 0;
554 break;
555 }
556 }
557 new->unit = dev;
558 new->md_minor = MINOR(dev);
559 new->hold_active = UNTIL_STOP;
1da177e4
LT
560 list_add(&new->all_mddevs, &all_mddevs);
561 spin_unlock(&all_mddevs_lock);
562 return new;
563 }
564 spin_unlock(&all_mddevs_lock);
565
9ffae0cf 566 new = kzalloc(sizeof(*new), GFP_KERNEL);
1da177e4
LT
567 if (!new)
568 return NULL;
569
1da177e4
LT
570 new->unit = unit;
571 if (MAJOR(unit) == MD_MAJOR)
572 new->md_minor = MINOR(unit);
573 else
574 new->md_minor = MINOR(unit) >> MdpMinorShift;
575
fafd7fb0 576 mddev_init(new);
1da177e4 577
1da177e4
LT
578 goto retry;
579}
580
b6eb127d
N
581static struct attribute_group md_redundancy_group;
582
5c47daf6 583void mddev_unlock(struct mddev *mddev)
1da177e4 584{
a64c876f 585 if (mddev->to_remove) {
b6eb127d
N
586 /* These cannot be removed under reconfig_mutex as
587 * an access to the files will try to take reconfig_mutex
588 * while holding the file unremovable, which leads to
589 * a deadlock.
bb4f1e9d
N
590 * So hold set sysfs_active while the remove in happeing,
591 * and anything else which might set ->to_remove or my
592 * otherwise change the sysfs namespace will fail with
593 * -EBUSY if sysfs_active is still set.
594 * We set sysfs_active under reconfig_mutex and elsewhere
595 * test it under the same mutex to ensure its correct value
596 * is seen.
b6eb127d 597 */
a64c876f
N
598 struct attribute_group *to_remove = mddev->to_remove;
599 mddev->to_remove = NULL;
bb4f1e9d 600 mddev->sysfs_active = 1;
b6eb127d
N
601 mutex_unlock(&mddev->reconfig_mutex);
602
00bcb4ac
N
603 if (mddev->kobj.sd) {
604 if (to_remove != &md_redundancy_group)
605 sysfs_remove_group(&mddev->kobj, to_remove);
606 if (mddev->pers == NULL ||
607 mddev->pers->sync_request == NULL) {
608 sysfs_remove_group(&mddev->kobj, &md_redundancy_group);
609 if (mddev->sysfs_action)
610 sysfs_put(mddev->sysfs_action);
611 mddev->sysfs_action = NULL;
612 }
a64c876f 613 }
bb4f1e9d 614 mddev->sysfs_active = 0;
b6eb127d
N
615 } else
616 mutex_unlock(&mddev->reconfig_mutex);
1da177e4 617
751e67ca
CD
618 /* As we've dropped the mutex we need a spinlock to
619 * make sure the thread doesn't disappear
01f96c0a
N
620 */
621 spin_lock(&pers_lock);
005eca5e 622 md_wakeup_thread(mddev->thread);
01f96c0a 623 spin_unlock(&pers_lock);
1da177e4 624}
5c47daf6 625EXPORT_SYMBOL_GPL(mddev_unlock);
1da177e4 626
57d051dc 627struct md_rdev *md_find_rdev_nr_rcu(struct mddev *mddev, int nr)
1ca69c4b
N
628{
629 struct md_rdev *rdev;
630
631 rdev_for_each_rcu(rdev, mddev)
632 if (rdev->desc_nr == nr)
633 return rdev;
634
635 return NULL;
636}
57d051dc 637EXPORT_SYMBOL_GPL(md_find_rdev_nr_rcu);
1ca69c4b
N
638
639static struct md_rdev *find_rdev(struct mddev *mddev, dev_t dev)
1da177e4 640{
3cb03002 641 struct md_rdev *rdev;
1da177e4 642
dafb20fa 643 rdev_for_each(rdev, mddev)
1da177e4
LT
644 if (rdev->bdev->bd_dev == dev)
645 return rdev;
159ec1fc 646
1da177e4
LT
647 return NULL;
648}
649
1ca69c4b
N
650static struct md_rdev *find_rdev_rcu(struct mddev *mddev, dev_t dev)
651{
652 struct md_rdev *rdev;
653
654 rdev_for_each_rcu(rdev, mddev)
655 if (rdev->bdev->bd_dev == dev)
656 return rdev;
657
658 return NULL;
659}
660
84fc4b56 661static struct md_personality *find_pers(int level, char *clevel)
2604b703 662{
84fc4b56 663 struct md_personality *pers;
d9d166c2
N
664 list_for_each_entry(pers, &pers_list, list) {
665 if (level != LEVEL_NONE && pers->level == level)
2604b703 666 return pers;
d9d166c2
N
667 if (strcmp(pers->name, clevel)==0)
668 return pers;
669 }
2604b703
N
670 return NULL;
671}
672
b73df2d3 673/* return the offset of the super block in 512byte sectors */
3cb03002 674static inline sector_t calc_dev_sboffset(struct md_rdev *rdev)
1da177e4 675{
57b2caa3 676 sector_t num_sectors = i_size_read(rdev->bdev->bd_inode) / 512;
b73df2d3 677 return MD_NEW_SIZE_SECTORS(num_sectors);
1da177e4
LT
678}
679
f72ffdd6 680static int alloc_disk_sb(struct md_rdev *rdev)
1da177e4 681{
1da177e4 682 rdev->sb_page = alloc_page(GFP_KERNEL);
7f0f0d87 683 if (!rdev->sb_page)
ebc24337 684 return -ENOMEM;
1da177e4
LT
685 return 0;
686}
687
545c8795 688void md_rdev_clear(struct md_rdev *rdev)
1da177e4
LT
689{
690 if (rdev->sb_page) {
2d1f3b5d 691 put_page(rdev->sb_page);
1da177e4
LT
692 rdev->sb_loaded = 0;
693 rdev->sb_page = NULL;
0f420358 694 rdev->sb_start = 0;
dd8ac336 695 rdev->sectors = 0;
1da177e4 696 }
2699b672
N
697 if (rdev->bb_page) {
698 put_page(rdev->bb_page);
699 rdev->bb_page = NULL;
700 }
d3b407fb 701 badblocks_exit(&rdev->badblocks);
1da177e4 702}
545c8795 703EXPORT_SYMBOL_GPL(md_rdev_clear);
1da177e4 704
4246a0b6 705static void super_written(struct bio *bio)
7bfa19f2 706{
3cb03002 707 struct md_rdev *rdev = bio->bi_private;
fd01b88c 708 struct mddev *mddev = rdev->mddev;
7bfa19f2 709
4246a0b6 710 if (bio->bi_error) {
9d48739e 711 pr_err("md: super_written gets error=%d\n", bio->bi_error);
a9701a30 712 md_error(mddev, rdev);
46533ff7
N
713 if (!test_bit(Faulty, &rdev->flags)
714 && (bio->bi_opf & MD_FAILFAST)) {
2953079c 715 set_bit(MD_SB_NEED_REWRITE, &mddev->sb_flags);
46533ff7
N
716 set_bit(LastDev, &rdev->flags);
717 }
718 } else
719 clear_bit(LastDev, &rdev->flags);
7bfa19f2 720
a9701a30
N
721 if (atomic_dec_and_test(&mddev->pending_writes))
722 wake_up(&mddev->sb_wait);
ed3b98c7 723 rdev_dec_pending(rdev, mddev);
f8b58edf 724 bio_put(bio);
7bfa19f2
N
725}
726
fd01b88c 727void md_super_write(struct mddev *mddev, struct md_rdev *rdev,
7bfa19f2
N
728 sector_t sector, int size, struct page *page)
729{
730 /* write first size bytes of page to sector of rdev
731 * Increment mddev->pending_writes before returning
732 * and decrement it on completion, waking up sb_wait
733 * if zero is reached.
734 * If an error occurred, call md_error
735 */
46533ff7
N
736 struct bio *bio;
737 int ff = 0;
738
739 if (test_bit(Faulty, &rdev->flags))
740 return;
741
742 bio = bio_alloc_mddev(GFP_NOIO, 1, mddev);
7bfa19f2 743
ed3b98c7
SL
744 atomic_inc(&rdev->nr_pending);
745
a6ff7e08 746 bio->bi_bdev = rdev->meta_bdev ? rdev->meta_bdev : rdev->bdev;
4f024f37 747 bio->bi_iter.bi_sector = sector;
7bfa19f2
N
748 bio_add_page(bio, page, size, 0);
749 bio->bi_private = rdev;
750 bio->bi_end_io = super_written;
46533ff7
N
751
752 if (test_bit(MD_FAILFAST_SUPPORTED, &mddev->flags) &&
753 test_bit(FailFast, &rdev->flags) &&
754 !test_bit(LastDev, &rdev->flags))
755 ff = MD_FAILFAST;
20737738 756 bio->bi_opf = REQ_OP_WRITE | REQ_PREFLUSH | REQ_FUA | ff;
a9701a30 757
7bfa19f2 758 atomic_inc(&mddev->pending_writes);
4e49ea4a 759 submit_bio(bio);
a9701a30
N
760}
761
46533ff7 762int md_super_wait(struct mddev *mddev)
a9701a30 763{
e9c7469b 764 /* wait for all superblock writes that were scheduled to complete */
1967cd56 765 wait_event(mddev->sb_wait, atomic_read(&mddev->pending_writes)==0);
2953079c 766 if (test_and_clear_bit(MD_SB_NEED_REWRITE, &mddev->sb_flags))
46533ff7
N
767 return -EAGAIN;
768 return 0;
7bfa19f2
N
769}
770
3cb03002 771int sync_page_io(struct md_rdev *rdev, sector_t sector, int size,
796a5cf0 772 struct page *page, int op, int op_flags, bool metadata_op)
1da177e4 773{
a167f663 774 struct bio *bio = bio_alloc_mddev(GFP_NOIO, 1, rdev->mddev);
1da177e4
LT
775 int ret;
776
a6ff7e08
JB
777 bio->bi_bdev = (metadata_op && rdev->meta_bdev) ?
778 rdev->meta_bdev : rdev->bdev;
796a5cf0 779 bio_set_op_attrs(bio, op, op_flags);
ccebd4c4 780 if (metadata_op)
4f024f37 781 bio->bi_iter.bi_sector = sector + rdev->sb_start;
1fdd6fc9
N
782 else if (rdev->mddev->reshape_position != MaxSector &&
783 (rdev->mddev->reshape_backwards ==
784 (sector >= rdev->mddev->reshape_position)))
4f024f37 785 bio->bi_iter.bi_sector = sector + rdev->new_data_offset;
ccebd4c4 786 else
4f024f37 787 bio->bi_iter.bi_sector = sector + rdev->data_offset;
1da177e4 788 bio_add_page(bio, page, size, 0);
4e49ea4a
MC
789
790 submit_bio_wait(bio);
1da177e4 791
4246a0b6 792 ret = !bio->bi_error;
1da177e4
LT
793 bio_put(bio);
794 return ret;
795}
a8745db2 796EXPORT_SYMBOL_GPL(sync_page_io);
1da177e4 797
f72ffdd6 798static int read_disk_sb(struct md_rdev *rdev, int size)
1da177e4
LT
799{
800 char b[BDEVNAME_SIZE];
403df478 801
1da177e4
LT
802 if (rdev->sb_loaded)
803 return 0;
804
796a5cf0 805 if (!sync_page_io(rdev, 0, size, rdev->sb_page, REQ_OP_READ, 0, true))
1da177e4
LT
806 goto fail;
807 rdev->sb_loaded = 1;
808 return 0;
809
810fail:
9d48739e
N
811 pr_err("md: disabled device %s, could not read superblock.\n",
812 bdevname(rdev->bdev,b));
1da177e4
LT
813 return -EINVAL;
814}
815
816static int uuid_equal(mdp_super_t *sb1, mdp_super_t *sb2)
817{
f72ffdd6 818 return sb1->set_uuid0 == sb2->set_uuid0 &&
05710466
AN
819 sb1->set_uuid1 == sb2->set_uuid1 &&
820 sb1->set_uuid2 == sb2->set_uuid2 &&
821 sb1->set_uuid3 == sb2->set_uuid3;
1da177e4
LT
822}
823
1da177e4
LT
824static int sb_equal(mdp_super_t *sb1, mdp_super_t *sb2)
825{
826 int ret;
827 mdp_super_t *tmp1, *tmp2;
828
829 tmp1 = kmalloc(sizeof(*tmp1),GFP_KERNEL);
830 tmp2 = kmalloc(sizeof(*tmp2),GFP_KERNEL);
831
832 if (!tmp1 || !tmp2) {
833 ret = 0;
1da177e4
LT
834 goto abort;
835 }
836
837 *tmp1 = *sb1;
838 *tmp2 = *sb2;
839
840 /*
841 * nr_disks is not constant
842 */
843 tmp1->nr_disks = 0;
844 tmp2->nr_disks = 0;
845
ce0c8e05 846 ret = (memcmp(tmp1, tmp2, MD_SB_GENERIC_CONSTANT_WORDS * 4) == 0);
1da177e4 847abort:
990a8baf
JJ
848 kfree(tmp1);
849 kfree(tmp2);
1da177e4
LT
850 return ret;
851}
852
4d167f09
N
853static u32 md_csum_fold(u32 csum)
854{
855 csum = (csum & 0xffff) + (csum >> 16);
856 return (csum & 0xffff) + (csum >> 16);
857}
858
f72ffdd6 859static unsigned int calc_sb_csum(mdp_super_t *sb)
1da177e4 860{
4d167f09
N
861 u64 newcsum = 0;
862 u32 *sb32 = (u32*)sb;
863 int i;
1da177e4
LT
864 unsigned int disk_csum, csum;
865
866 disk_csum = sb->sb_csum;
867 sb->sb_csum = 0;
4d167f09
N
868
869 for (i = 0; i < MD_SB_BYTES/4 ; i++)
870 newcsum += sb32[i];
871 csum = (newcsum & 0xffffffff) + (newcsum>>32);
872
4d167f09
N
873#ifdef CONFIG_ALPHA
874 /* This used to use csum_partial, which was wrong for several
875 * reasons including that different results are returned on
876 * different architectures. It isn't critical that we get exactly
877 * the same return value as before (we always csum_fold before
878 * testing, and that removes any differences). However as we
879 * know that csum_partial always returned a 16bit value on
880 * alphas, do a fold to maximise conformity to previous behaviour.
881 */
882 sb->sb_csum = md_csum_fold(disk_csum);
883#else
1da177e4 884 sb->sb_csum = disk_csum;
4d167f09 885#endif
1da177e4
LT
886 return csum;
887}
888
1da177e4
LT
889/*
890 * Handle superblock details.
891 * We want to be able to handle multiple superblock formats
892 * so we have a common interface to them all, and an array of
893 * different handlers.
894 * We rely on user-space to write the initial superblock, and support
895 * reading and updating of superblocks.
896 * Interface methods are:
3cb03002 897 * int load_super(struct md_rdev *dev, struct md_rdev *refdev, int minor_version)
1da177e4
LT
898 * loads and validates a superblock on dev.
899 * if refdev != NULL, compare superblocks on both devices
900 * Return:
901 * 0 - dev has a superblock that is compatible with refdev
902 * 1 - dev has a superblock that is compatible and newer than refdev
903 * so dev should be used as the refdev in future
904 * -EINVAL superblock incompatible or invalid
905 * -othererror e.g. -EIO
906 *
fd01b88c 907 * int validate_super(struct mddev *mddev, struct md_rdev *dev)
1da177e4
LT
908 * Verify that dev is acceptable into mddev.
909 * The first time, mddev->raid_disks will be 0, and data from
910 * dev should be merged in. Subsequent calls check that dev
911 * is new enough. Return 0 or -EINVAL
912 *
fd01b88c 913 * void sync_super(struct mddev *mddev, struct md_rdev *dev)
1da177e4
LT
914 * Update the superblock for rdev with data in mddev
915 * This does not write to disc.
916 *
917 */
918
919struct super_type {
0cd17fec
CW
920 char *name;
921 struct module *owner;
c6563a8c
N
922 int (*load_super)(struct md_rdev *rdev,
923 struct md_rdev *refdev,
0cd17fec 924 int minor_version);
c6563a8c
N
925 int (*validate_super)(struct mddev *mddev,
926 struct md_rdev *rdev);
927 void (*sync_super)(struct mddev *mddev,
928 struct md_rdev *rdev);
3cb03002 929 unsigned long long (*rdev_size_change)(struct md_rdev *rdev,
15f4a5fd 930 sector_t num_sectors);
c6563a8c
N
931 int (*allow_new_offset)(struct md_rdev *rdev,
932 unsigned long long new_offset);
1da177e4
LT
933};
934
0894cc30
AN
935/*
936 * Check that the given mddev has no bitmap.
937 *
938 * This function is called from the run method of all personalities that do not
939 * support bitmaps. It prints an error message and returns non-zero if mddev
940 * has a bitmap. Otherwise, it returns 0.
941 *
942 */
fd01b88c 943int md_check_no_bitmap(struct mddev *mddev)
0894cc30 944{
c3d9714e 945 if (!mddev->bitmap_info.file && !mddev->bitmap_info.offset)
0894cc30 946 return 0;
9d48739e 947 pr_warn("%s: bitmaps are not supported for %s\n",
0894cc30
AN
948 mdname(mddev), mddev->pers->name);
949 return 1;
950}
951EXPORT_SYMBOL(md_check_no_bitmap);
952
1da177e4 953/*
f72ffdd6 954 * load_super for 0.90.0
1da177e4 955 */
3cb03002 956static int super_90_load(struct md_rdev *rdev, struct md_rdev *refdev, int minor_version)
1da177e4
LT
957{
958 char b[BDEVNAME_SIZE], b2[BDEVNAME_SIZE];
959 mdp_super_t *sb;
960 int ret;
1da177e4
LT
961
962 /*
0f420358 963 * Calculate the position of the superblock (512byte sectors),
1da177e4
LT
964 * it's at the end of the disk.
965 *
966 * It also happens to be a multiple of 4Kb.
967 */
57b2caa3 968 rdev->sb_start = calc_dev_sboffset(rdev);
1da177e4 969
0002b271 970 ret = read_disk_sb(rdev, MD_SB_BYTES);
9d48739e
N
971 if (ret)
972 return ret;
1da177e4
LT
973
974 ret = -EINVAL;
975
976 bdevname(rdev->bdev, b);
65a06f06 977 sb = page_address(rdev->sb_page);
1da177e4
LT
978
979 if (sb->md_magic != MD_SB_MAGIC) {
9d48739e 980 pr_warn("md: invalid raid superblock magic on %s\n", b);
1da177e4
LT
981 goto abort;
982 }
983
984 if (sb->major_version != 0 ||
f6705578
N
985 sb->minor_version < 90 ||
986 sb->minor_version > 91) {
9d48739e
N
987 pr_warn("Bad version number %d.%d on %s\n",
988 sb->major_version, sb->minor_version, b);
1da177e4
LT
989 goto abort;
990 }
991
992 if (sb->raid_disks <= 0)
993 goto abort;
994
4d167f09 995 if (md_csum_fold(calc_sb_csum(sb)) != md_csum_fold(sb->sb_csum)) {
9d48739e 996 pr_warn("md: invalid superblock checksum on %s\n", b);
1da177e4
LT
997 goto abort;
998 }
999
1000 rdev->preferred_minor = sb->md_minor;
1001 rdev->data_offset = 0;
c6563a8c 1002 rdev->new_data_offset = 0;
0002b271 1003 rdev->sb_size = MD_SB_BYTES;
9f2f3830 1004 rdev->badblocks.shift = -1;
1da177e4
LT
1005
1006 if (sb->level == LEVEL_MULTIPATH)
1007 rdev->desc_nr = -1;
1008 else
1009 rdev->desc_nr = sb->this_disk.number;
1010
9a7b2b0f 1011 if (!refdev) {
1da177e4 1012 ret = 1;
9a7b2b0f 1013 } else {
1da177e4 1014 __u64 ev1, ev2;
65a06f06 1015 mdp_super_t *refsb = page_address(refdev->sb_page);
1da177e4 1016 if (!uuid_equal(refsb, sb)) {
9d48739e 1017 pr_warn("md: %s has different UUID to %s\n",
1da177e4
LT
1018 b, bdevname(refdev->bdev,b2));
1019 goto abort;
1020 }
1021 if (!sb_equal(refsb, sb)) {
9d48739e
N
1022 pr_warn("md: %s has same UUID but different superblock to %s\n",
1023 b, bdevname(refdev->bdev, b2));
1da177e4
LT
1024 goto abort;
1025 }
1026 ev1 = md_event(sb);
1027 ev2 = md_event(refsb);
1028 if (ev1 > ev2)
1029 ret = 1;
f72ffdd6 1030 else
1da177e4
LT
1031 ret = 0;
1032 }
8190e754 1033 rdev->sectors = rdev->sb_start;
667a5313
N
1034 /* Limit to 4TB as metadata cannot record more than that.
1035 * (not needed for Linear and RAID0 as metadata doesn't
1036 * record this size)
1037 */
3312c951
AB
1038 if (IS_ENABLED(CONFIG_LBDAF) && (u64)rdev->sectors >= (2ULL << 32) &&
1039 sb->level >= 1)
1040 rdev->sectors = (sector_t)(2ULL << 32) - 2;
1da177e4 1041
27a7b260 1042 if (rdev->sectors < ((sector_t)sb->size) * 2 && sb->level >= 1)
2bf071bf
N
1043 /* "this cannot possibly happen" ... */
1044 ret = -EINVAL;
1045
1da177e4
LT
1046 abort:
1047 return ret;
1048}
1049
1050/*
1051 * validate_super for 0.90.0
1052 */
fd01b88c 1053static int super_90_validate(struct mddev *mddev, struct md_rdev *rdev)
1da177e4
LT
1054{
1055 mdp_disk_t *desc;
65a06f06 1056 mdp_super_t *sb = page_address(rdev->sb_page);
07d84d10 1057 __u64 ev1 = md_event(sb);
1da177e4 1058
41158c7e 1059 rdev->raid_disk = -1;
c5d79adb
N
1060 clear_bit(Faulty, &rdev->flags);
1061 clear_bit(In_sync, &rdev->flags);
8313b8e5 1062 clear_bit(Bitmap_sync, &rdev->flags);
c5d79adb 1063 clear_bit(WriteMostly, &rdev->flags);
c5d79adb 1064
1da177e4
LT
1065 if (mddev->raid_disks == 0) {
1066 mddev->major_version = 0;
1067 mddev->minor_version = sb->minor_version;
1068 mddev->patch_version = sb->patch_version;
e691063a 1069 mddev->external = 0;
9d8f0363 1070 mddev->chunk_sectors = sb->chunk_size >> 9;
1da177e4
LT
1071 mddev->ctime = sb->ctime;
1072 mddev->utime = sb->utime;
1073 mddev->level = sb->level;
d9d166c2 1074 mddev->clevel[0] = 0;
1da177e4
LT
1075 mddev->layout = sb->layout;
1076 mddev->raid_disks = sb->raid_disks;
27a7b260 1077 mddev->dev_sectors = ((sector_t)sb->size) * 2;
07d84d10 1078 mddev->events = ev1;
c3d9714e 1079 mddev->bitmap_info.offset = 0;
6409bb05
N
1080 mddev->bitmap_info.space = 0;
1081 /* bitmap can use 60 K after the 4K superblocks */
c3d9714e 1082 mddev->bitmap_info.default_offset = MD_SB_BYTES >> 9;
6409bb05 1083 mddev->bitmap_info.default_space = 64*2 - (MD_SB_BYTES >> 9);
2c810cdd 1084 mddev->reshape_backwards = 0;
1da177e4 1085
f6705578
N
1086 if (mddev->minor_version >= 91) {
1087 mddev->reshape_position = sb->reshape_position;
1088 mddev->delta_disks = sb->delta_disks;
1089 mddev->new_level = sb->new_level;
1090 mddev->new_layout = sb->new_layout;
664e7c41 1091 mddev->new_chunk_sectors = sb->new_chunk >> 9;
2c810cdd
N
1092 if (mddev->delta_disks < 0)
1093 mddev->reshape_backwards = 1;
f6705578
N
1094 } else {
1095 mddev->reshape_position = MaxSector;
1096 mddev->delta_disks = 0;
1097 mddev->new_level = mddev->level;
1098 mddev->new_layout = mddev->layout;
664e7c41 1099 mddev->new_chunk_sectors = mddev->chunk_sectors;
f6705578
N
1100 }
1101
1da177e4
LT
1102 if (sb->state & (1<<MD_SB_CLEAN))
1103 mddev->recovery_cp = MaxSector;
1104 else {
f72ffdd6 1105 if (sb->events_hi == sb->cp_events_hi &&
1da177e4
LT
1106 sb->events_lo == sb->cp_events_lo) {
1107 mddev->recovery_cp = sb->recovery_cp;
1108 } else
1109 mddev->recovery_cp = 0;
1110 }
1111
1112 memcpy(mddev->uuid+0, &sb->set_uuid0, 4);
1113 memcpy(mddev->uuid+4, &sb->set_uuid1, 4);
1114 memcpy(mddev->uuid+8, &sb->set_uuid2, 4);
1115 memcpy(mddev->uuid+12,&sb->set_uuid3, 4);
1116
1117 mddev->max_disks = MD_SB_DISKS;
a654b9d8
N
1118
1119 if (sb->state & (1<<MD_SB_BITMAP_PRESENT) &&
6409bb05 1120 mddev->bitmap_info.file == NULL) {
c3d9714e
N
1121 mddev->bitmap_info.offset =
1122 mddev->bitmap_info.default_offset;
6409bb05 1123 mddev->bitmap_info.space =
c9ad020f 1124 mddev->bitmap_info.default_space;
6409bb05 1125 }
a654b9d8 1126
41158c7e 1127 } else if (mddev->pers == NULL) {
be6800a7
N
1128 /* Insist on good event counter while assembling, except
1129 * for spares (which don't need an event count) */
1da177e4 1130 ++ev1;
be6800a7
N
1131 if (sb->disks[rdev->desc_nr].state & (
1132 (1<<MD_DISK_SYNC) | (1 << MD_DISK_ACTIVE)))
f72ffdd6 1133 if (ev1 < mddev->events)
be6800a7 1134 return -EINVAL;
41158c7e
N
1135 } else if (mddev->bitmap) {
1136 /* if adding to array with a bitmap, then we can accept an
1137 * older device ... but not too old.
1138 */
41158c7e
N
1139 if (ev1 < mddev->bitmap->events_cleared)
1140 return 0;
8313b8e5
N
1141 if (ev1 < mddev->events)
1142 set_bit(Bitmap_sync, &rdev->flags);
07d84d10
N
1143 } else {
1144 if (ev1 < mddev->events)
1145 /* just a hot-add of a new device, leave raid_disk at -1 */
1146 return 0;
1147 }
41158c7e 1148
1da177e4 1149 if (mddev->level != LEVEL_MULTIPATH) {
1da177e4
LT
1150 desc = sb->disks + rdev->desc_nr;
1151
1152 if (desc->state & (1<<MD_DISK_FAULTY))
b2d444d7 1153 set_bit(Faulty, &rdev->flags);
7c7546cc
N
1154 else if (desc->state & (1<<MD_DISK_SYNC) /* &&
1155 desc->raid_disk < mddev->raid_disks */) {
b2d444d7 1156 set_bit(In_sync, &rdev->flags);
1da177e4 1157 rdev->raid_disk = desc->raid_disk;
f466722c 1158 rdev->saved_raid_disk = desc->raid_disk;
0261cd9f
N
1159 } else if (desc->state & (1<<MD_DISK_ACTIVE)) {
1160 /* active but not in sync implies recovery up to
1161 * reshape position. We don't know exactly where
1162 * that is, so set to zero for now */
1163 if (mddev->minor_version >= 91) {
1164 rdev->recovery_offset = 0;
1165 rdev->raid_disk = desc->raid_disk;
1166 }
1da177e4 1167 }
8ddf9efe
N
1168 if (desc->state & (1<<MD_DISK_WRITEMOSTLY))
1169 set_bit(WriteMostly, &rdev->flags);
688834e6
N
1170 if (desc->state & (1<<MD_DISK_FAILFAST))
1171 set_bit(FailFast, &rdev->flags);
41158c7e 1172 } else /* MULTIPATH are always insync */
b2d444d7 1173 set_bit(In_sync, &rdev->flags);
1da177e4
LT
1174 return 0;
1175}
1176
1177/*
1178 * sync_super for 0.90.0
1179 */
fd01b88c 1180static void super_90_sync(struct mddev *mddev, struct md_rdev *rdev)
1da177e4
LT
1181{
1182 mdp_super_t *sb;
3cb03002 1183 struct md_rdev *rdev2;
1da177e4 1184 int next_spare = mddev->raid_disks;
19133a42 1185
1da177e4
LT
1186 /* make rdev->sb match mddev data..
1187 *
1188 * 1/ zero out disks
1189 * 2/ Add info for each disk, keeping track of highest desc_nr (next_spare);
1190 * 3/ any empty disks < next_spare become removed
1191 *
1192 * disks[0] gets initialised to REMOVED because
1193 * we cannot be sure from other fields if it has
1194 * been initialised or not.
1195 */
1196 int i;
1197 int active=0, working=0,failed=0,spare=0,nr_disks=0;
1198
61181565
N
1199 rdev->sb_size = MD_SB_BYTES;
1200
65a06f06 1201 sb = page_address(rdev->sb_page);
1da177e4
LT
1202
1203 memset(sb, 0, sizeof(*sb));
1204
1205 sb->md_magic = MD_SB_MAGIC;
1206 sb->major_version = mddev->major_version;
1da177e4
LT
1207 sb->patch_version = mddev->patch_version;
1208 sb->gvalid_words = 0; /* ignored */
1209 memcpy(&sb->set_uuid0, mddev->uuid+0, 4);
1210 memcpy(&sb->set_uuid1, mddev->uuid+4, 4);
1211 memcpy(&sb->set_uuid2, mddev->uuid+8, 4);
1212 memcpy(&sb->set_uuid3, mddev->uuid+12,4);
1213
9ebc6ef1 1214 sb->ctime = clamp_t(time64_t, mddev->ctime, 0, U32_MAX);
1da177e4 1215 sb->level = mddev->level;
58c0fed4 1216 sb->size = mddev->dev_sectors / 2;
1da177e4
LT
1217 sb->raid_disks = mddev->raid_disks;
1218 sb->md_minor = mddev->md_minor;
e691063a 1219 sb->not_persistent = 0;
9ebc6ef1 1220 sb->utime = clamp_t(time64_t, mddev->utime, 0, U32_MAX);
1da177e4
LT
1221 sb->state = 0;
1222 sb->events_hi = (mddev->events>>32);
1223 sb->events_lo = (u32)mddev->events;
1224
f6705578
N
1225 if (mddev->reshape_position == MaxSector)
1226 sb->minor_version = 90;
1227 else {
1228 sb->minor_version = 91;
1229 sb->reshape_position = mddev->reshape_position;
1230 sb->new_level = mddev->new_level;
1231 sb->delta_disks = mddev->delta_disks;
1232 sb->new_layout = mddev->new_layout;
664e7c41 1233 sb->new_chunk = mddev->new_chunk_sectors << 9;
f6705578
N
1234 }
1235 mddev->minor_version = sb->minor_version;
1da177e4
LT
1236 if (mddev->in_sync)
1237 {
1238 sb->recovery_cp = mddev->recovery_cp;
1239 sb->cp_events_hi = (mddev->events>>32);
1240 sb->cp_events_lo = (u32)mddev->events;
1241 if (mddev->recovery_cp == MaxSector)
1242 sb->state = (1<< MD_SB_CLEAN);
1243 } else
1244 sb->recovery_cp = 0;
1245
1246 sb->layout = mddev->layout;
9d8f0363 1247 sb->chunk_size = mddev->chunk_sectors << 9;
1da177e4 1248
c3d9714e 1249 if (mddev->bitmap && mddev->bitmap_info.file == NULL)
a654b9d8
N
1250 sb->state |= (1<<MD_SB_BITMAP_PRESENT);
1251
1da177e4 1252 sb->disks[0].state = (1<<MD_DISK_REMOVED);
dafb20fa 1253 rdev_for_each(rdev2, mddev) {
1da177e4 1254 mdp_disk_t *d;
86e6ffdd 1255 int desc_nr;
0261cd9f
N
1256 int is_active = test_bit(In_sync, &rdev2->flags);
1257
1258 if (rdev2->raid_disk >= 0 &&
1259 sb->minor_version >= 91)
1260 /* we have nowhere to store the recovery_offset,
1261 * but if it is not below the reshape_position,
1262 * we can piggy-back on that.
1263 */
1264 is_active = 1;
1265 if (rdev2->raid_disk < 0 ||
1266 test_bit(Faulty, &rdev2->flags))
1267 is_active = 0;
1268 if (is_active)
86e6ffdd 1269 desc_nr = rdev2->raid_disk;
1da177e4 1270 else
86e6ffdd 1271 desc_nr = next_spare++;
19133a42 1272 rdev2->desc_nr = desc_nr;
1da177e4
LT
1273 d = &sb->disks[rdev2->desc_nr];
1274 nr_disks++;
1275 d->number = rdev2->desc_nr;
1276 d->major = MAJOR(rdev2->bdev->bd_dev);
1277 d->minor = MINOR(rdev2->bdev->bd_dev);
0261cd9f 1278 if (is_active)
1da177e4
LT
1279 d->raid_disk = rdev2->raid_disk;
1280 else
1281 d->raid_disk = rdev2->desc_nr; /* compatibility */
1be7892f 1282 if (test_bit(Faulty, &rdev2->flags))
1da177e4 1283 d->state = (1<<MD_DISK_FAULTY);
0261cd9f 1284 else if (is_active) {
1da177e4 1285 d->state = (1<<MD_DISK_ACTIVE);
0261cd9f
N
1286 if (test_bit(In_sync, &rdev2->flags))
1287 d->state |= (1<<MD_DISK_SYNC);
1da177e4
LT
1288 active++;
1289 working++;
1290 } else {
1291 d->state = 0;
1292 spare++;
1293 working++;
1294 }
8ddf9efe
N
1295 if (test_bit(WriteMostly, &rdev2->flags))
1296 d->state |= (1<<MD_DISK_WRITEMOSTLY);
688834e6
N
1297 if (test_bit(FailFast, &rdev2->flags))
1298 d->state |= (1<<MD_DISK_FAILFAST);
1da177e4 1299 }
1da177e4
LT
1300 /* now set the "removed" and "faulty" bits on any missing devices */
1301 for (i=0 ; i < mddev->raid_disks ; i++) {
1302 mdp_disk_t *d = &sb->disks[i];
1303 if (d->state == 0 && d->number == 0) {
1304 d->number = i;
1305 d->raid_disk = i;
1306 d->state = (1<<MD_DISK_REMOVED);
1307 d->state |= (1<<MD_DISK_FAULTY);
1308 failed++;
1309 }
1310 }
1311 sb->nr_disks = nr_disks;
1312 sb->active_disks = active;
1313 sb->working_disks = working;
1314 sb->failed_disks = failed;
1315 sb->spare_disks = spare;
1316
1317 sb->this_disk = sb->disks[rdev->desc_nr];
1318 sb->sb_csum = calc_sb_csum(sb);
1319}
1320
0cd17fec
CW
1321/*
1322 * rdev_size_change for 0.90.0
1323 */
1324static unsigned long long
3cb03002 1325super_90_rdev_size_change(struct md_rdev *rdev, sector_t num_sectors)
0cd17fec 1326{
58c0fed4 1327 if (num_sectors && num_sectors < rdev->mddev->dev_sectors)
0cd17fec 1328 return 0; /* component must fit device */
c3d9714e 1329 if (rdev->mddev->bitmap_info.offset)
0cd17fec 1330 return 0; /* can't move bitmap */
57b2caa3 1331 rdev->sb_start = calc_dev_sboffset(rdev);
15f4a5fd
AN
1332 if (!num_sectors || num_sectors > rdev->sb_start)
1333 num_sectors = rdev->sb_start;
27a7b260
N
1334 /* Limit to 4TB as metadata cannot record more than that.
1335 * 4TB == 2^32 KB, or 2*2^32 sectors.
1336 */
3312c951
AB
1337 if (IS_ENABLED(CONFIG_LBDAF) && (u64)num_sectors >= (2ULL << 32) &&
1338 rdev->mddev->level >= 1)
1339 num_sectors = (sector_t)(2ULL << 32) - 2;
46533ff7
N
1340 do {
1341 md_super_write(rdev->mddev, rdev, rdev->sb_start, rdev->sb_size,
0cd17fec 1342 rdev->sb_page);
46533ff7 1343 } while (md_super_wait(rdev->mddev) < 0);
c26a44ed 1344 return num_sectors;
0cd17fec
CW
1345}
1346
c6563a8c
N
1347static int
1348super_90_allow_new_offset(struct md_rdev *rdev, unsigned long long new_offset)
1349{
1350 /* non-zero offset changes not possible with v0.90 */
1351 return new_offset == 0;
1352}
0cd17fec 1353
1da177e4
LT
1354/*
1355 * version 1 superblock
1356 */
1357
f72ffdd6 1358static __le32 calc_sb_1_csum(struct mdp_superblock_1 *sb)
1da177e4 1359{
1c05b4bc
N
1360 __le32 disk_csum;
1361 u32 csum;
1da177e4
LT
1362 unsigned long long newcsum;
1363 int size = 256 + le32_to_cpu(sb->max_dev)*2;
1c05b4bc 1364 __le32 *isuper = (__le32*)sb;
1da177e4
LT
1365
1366 disk_csum = sb->sb_csum;
1367 sb->sb_csum = 0;
1368 newcsum = 0;
1f3c9907 1369 for (; size >= 4; size -= 4)
1da177e4
LT
1370 newcsum += le32_to_cpu(*isuper++);
1371
1372 if (size == 2)
1c05b4bc 1373 newcsum += le16_to_cpu(*(__le16*) isuper);
1da177e4
LT
1374
1375 csum = (newcsum & 0xffffffff) + (newcsum >> 32);
1376 sb->sb_csum = disk_csum;
1377 return cpu_to_le32(csum);
1378}
1379
3cb03002 1380static int super_1_load(struct md_rdev *rdev, struct md_rdev *refdev, int minor_version)
1da177e4
LT
1381{
1382 struct mdp_superblock_1 *sb;
1383 int ret;
0f420358 1384 sector_t sb_start;
c6563a8c 1385 sector_t sectors;
1da177e4 1386 char b[BDEVNAME_SIZE], b2[BDEVNAME_SIZE];
0002b271 1387 int bmask;
1da177e4
LT
1388
1389 /*
0f420358 1390 * Calculate the position of the superblock in 512byte sectors.
1da177e4
LT
1391 * It is always aligned to a 4K boundary and
1392 * depeding on minor_version, it can be:
1393 * 0: At least 8K, but less than 12K, from end of device
1394 * 1: At start of device
1395 * 2: 4K from start of device.
1396 */
1397 switch(minor_version) {
1398 case 0:
77304d2a 1399 sb_start = i_size_read(rdev->bdev->bd_inode) >> 9;
0f420358
AN
1400 sb_start -= 8*2;
1401 sb_start &= ~(sector_t)(4*2-1);
1da177e4
LT
1402 break;
1403 case 1:
0f420358 1404 sb_start = 0;
1da177e4
LT
1405 break;
1406 case 2:
0f420358 1407 sb_start = 8;
1da177e4
LT
1408 break;
1409 default:
1410 return -EINVAL;
1411 }
0f420358 1412 rdev->sb_start = sb_start;
1da177e4 1413
0002b271
N
1414 /* superblock is rarely larger than 1K, but it can be larger,
1415 * and it is safe to read 4k, so we do that
1416 */
1417 ret = read_disk_sb(rdev, 4096);
1da177e4
LT
1418 if (ret) return ret;
1419
65a06f06 1420 sb = page_address(rdev->sb_page);
1da177e4
LT
1421
1422 if (sb->magic != cpu_to_le32(MD_SB_MAGIC) ||
1423 sb->major_version != cpu_to_le32(1) ||
1424 le32_to_cpu(sb->max_dev) > (4096-256)/2 ||
0f420358 1425 le64_to_cpu(sb->super_offset) != rdev->sb_start ||
71c0805c 1426 (le32_to_cpu(sb->feature_map) & ~MD_FEATURE_ALL) != 0)
1da177e4
LT
1427 return -EINVAL;
1428
1429 if (calc_sb_1_csum(sb) != sb->sb_csum) {
9d48739e 1430 pr_warn("md: invalid superblock checksum on %s\n",
1da177e4
LT
1431 bdevname(rdev->bdev,b));
1432 return -EINVAL;
1433 }
1434 if (le64_to_cpu(sb->data_size) < 10) {
9d48739e
N
1435 pr_warn("md: data_size too small on %s\n",
1436 bdevname(rdev->bdev,b));
1da177e4
LT
1437 return -EINVAL;
1438 }
c6563a8c
N
1439 if (sb->pad0 ||
1440 sb->pad3[0] ||
1441 memcmp(sb->pad3, sb->pad3+1, sizeof(sb->pad3) - sizeof(sb->pad3[1])))
1442 /* Some padding is non-zero, might be a new feature */
1443 return -EINVAL;
e11e93fa 1444
1da177e4
LT
1445 rdev->preferred_minor = 0xffff;
1446 rdev->data_offset = le64_to_cpu(sb->data_offset);
c6563a8c
N
1447 rdev->new_data_offset = rdev->data_offset;
1448 if ((le32_to_cpu(sb->feature_map) & MD_FEATURE_RESHAPE_ACTIVE) &&
1449 (le32_to_cpu(sb->feature_map) & MD_FEATURE_NEW_OFFSET))
1450 rdev->new_data_offset += (s32)le32_to_cpu(sb->new_offset);
4dbcdc75 1451 atomic_set(&rdev->corrected_errors, le32_to_cpu(sb->cnt_corrected_read));
1da177e4 1452
0002b271 1453 rdev->sb_size = le32_to_cpu(sb->max_dev) * 2 + 256;
e1defc4f 1454 bmask = queue_logical_block_size(rdev->bdev->bd_disk->queue)-1;
0002b271 1455 if (rdev->sb_size & bmask)
a1801f85
N
1456 rdev->sb_size = (rdev->sb_size | bmask) + 1;
1457
1458 if (minor_version
0f420358 1459 && rdev->data_offset < sb_start + (rdev->sb_size/512))
a1801f85 1460 return -EINVAL;
c6563a8c
N
1461 if (minor_version
1462 && rdev->new_data_offset < sb_start + (rdev->sb_size/512))
1463 return -EINVAL;
0002b271 1464
31b65a0d
N
1465 if (sb->level == cpu_to_le32(LEVEL_MULTIPATH))
1466 rdev->desc_nr = -1;
1467 else
1468 rdev->desc_nr = le32_to_cpu(sb->dev_number);
1469
2699b672
N
1470 if (!rdev->bb_page) {
1471 rdev->bb_page = alloc_page(GFP_KERNEL);
1472 if (!rdev->bb_page)
1473 return -ENOMEM;
1474 }
1475 if ((le32_to_cpu(sb->feature_map) & MD_FEATURE_BAD_BLOCKS) &&
1476 rdev->badblocks.count == 0) {
1477 /* need to load the bad block list.
1478 * Currently we limit it to one page.
1479 */
1480 s32 offset;
1481 sector_t bb_sector;
1482 u64 *bbp;
1483 int i;
1484 int sectors = le16_to_cpu(sb->bblog_size);
1485 if (sectors > (PAGE_SIZE / 512))
1486 return -EINVAL;
1487 offset = le32_to_cpu(sb->bblog_offset);
1488 if (offset == 0)
1489 return -EINVAL;
1490 bb_sector = (long long)offset;
1491 if (!sync_page_io(rdev, bb_sector, sectors << 9,
796a5cf0 1492 rdev->bb_page, REQ_OP_READ, 0, true))
2699b672
N
1493 return -EIO;
1494 bbp = (u64 *)page_address(rdev->bb_page);
1495 rdev->badblocks.shift = sb->bblog_shift;
1496 for (i = 0 ; i < (sectors << (9-3)) ; i++, bbp++) {
1497 u64 bb = le64_to_cpu(*bbp);
1498 int count = bb & (0x3ff);
1499 u64 sector = bb >> 10;
1500 sector <<= sb->bblog_shift;
1501 count <<= sb->bblog_shift;
1502 if (bb + 1 == 0)
1503 break;
fc974ee2 1504 if (badblocks_set(&rdev->badblocks, sector, count, 1))
2699b672
N
1505 return -EINVAL;
1506 }
486adf72
N
1507 } else if (sb->bblog_offset != 0)
1508 rdev->badblocks.shift = 0;
2699b672 1509
ea0213e0
AP
1510 if (le32_to_cpu(sb->feature_map) & MD_FEATURE_PPL) {
1511 rdev->ppl.offset = (__s16)le16_to_cpu(sb->ppl.offset);
1512 rdev->ppl.size = le16_to_cpu(sb->ppl.size);
1513 rdev->ppl.sector = rdev->sb_start + rdev->ppl.offset;
1514 }
1515
9a7b2b0f 1516 if (!refdev) {
8ed75463 1517 ret = 1;
9a7b2b0f 1518 } else {
1da177e4 1519 __u64 ev1, ev2;
65a06f06 1520 struct mdp_superblock_1 *refsb = page_address(refdev->sb_page);
1da177e4
LT
1521
1522 if (memcmp(sb->set_uuid, refsb->set_uuid, 16) != 0 ||
1523 sb->level != refsb->level ||
1524 sb->layout != refsb->layout ||
1525 sb->chunksize != refsb->chunksize) {
9d48739e 1526 pr_warn("md: %s has strangely different superblock to %s\n",
1da177e4
LT
1527 bdevname(rdev->bdev,b),
1528 bdevname(refdev->bdev,b2));
1529 return -EINVAL;
1530 }
1531 ev1 = le64_to_cpu(sb->events);
1532 ev2 = le64_to_cpu(refsb->events);
1533
1534 if (ev1 > ev2)
8ed75463
N
1535 ret = 1;
1536 else
1537 ret = 0;
1da177e4 1538 }
c6563a8c
N
1539 if (minor_version) {
1540 sectors = (i_size_read(rdev->bdev->bd_inode) >> 9);
1541 sectors -= rdev->data_offset;
1542 } else
1543 sectors = rdev->sb_start;
1544 if (sectors < le64_to_cpu(sb->data_size))
1da177e4 1545 return -EINVAL;
dd8ac336 1546 rdev->sectors = le64_to_cpu(sb->data_size);
8ed75463 1547 return ret;
1da177e4
LT
1548}
1549
fd01b88c 1550static int super_1_validate(struct mddev *mddev, struct md_rdev *rdev)
1da177e4 1551{
65a06f06 1552 struct mdp_superblock_1 *sb = page_address(rdev->sb_page);
07d84d10 1553 __u64 ev1 = le64_to_cpu(sb->events);
1da177e4 1554
41158c7e 1555 rdev->raid_disk = -1;
c5d79adb
N
1556 clear_bit(Faulty, &rdev->flags);
1557 clear_bit(In_sync, &rdev->flags);
8313b8e5 1558 clear_bit(Bitmap_sync, &rdev->flags);
c5d79adb 1559 clear_bit(WriteMostly, &rdev->flags);
c5d79adb 1560
1da177e4
LT
1561 if (mddev->raid_disks == 0) {
1562 mddev->major_version = 1;
1563 mddev->patch_version = 0;
e691063a 1564 mddev->external = 0;
9d8f0363 1565 mddev->chunk_sectors = le32_to_cpu(sb->chunksize);
9ebc6ef1
DD
1566 mddev->ctime = le64_to_cpu(sb->ctime);
1567 mddev->utime = le64_to_cpu(sb->utime);
1da177e4 1568 mddev->level = le32_to_cpu(sb->level);
d9d166c2 1569 mddev->clevel[0] = 0;
1da177e4
LT
1570 mddev->layout = le32_to_cpu(sb->layout);
1571 mddev->raid_disks = le32_to_cpu(sb->raid_disks);
58c0fed4 1572 mddev->dev_sectors = le64_to_cpu(sb->size);
07d84d10 1573 mddev->events = ev1;
c3d9714e 1574 mddev->bitmap_info.offset = 0;
6409bb05
N
1575 mddev->bitmap_info.space = 0;
1576 /* Default location for bitmap is 1K after superblock
1577 * using 3K - total of 4K
1578 */
c3d9714e 1579 mddev->bitmap_info.default_offset = 1024 >> 9;
6409bb05 1580 mddev->bitmap_info.default_space = (4096-1024) >> 9;
2c810cdd
N
1581 mddev->reshape_backwards = 0;
1582
1da177e4
LT
1583 mddev->recovery_cp = le64_to_cpu(sb->resync_offset);
1584 memcpy(mddev->uuid, sb->set_uuid, 16);
1585
1586 mddev->max_disks = (4096-256)/2;
a654b9d8 1587
71c0805c 1588 if ((le32_to_cpu(sb->feature_map) & MD_FEATURE_BITMAP_OFFSET) &&
6409bb05 1589 mddev->bitmap_info.file == NULL) {
c3d9714e
N
1590 mddev->bitmap_info.offset =
1591 (__s32)le32_to_cpu(sb->bitmap_offset);
6409bb05
N
1592 /* Metadata doesn't record how much space is available.
1593 * For 1.0, we assume we can use up to the superblock
1594 * if before, else to 4K beyond superblock.
1595 * For others, assume no change is possible.
1596 */
1597 if (mddev->minor_version > 0)
1598 mddev->bitmap_info.space = 0;
1599 else if (mddev->bitmap_info.offset > 0)
1600 mddev->bitmap_info.space =
1601 8 - mddev->bitmap_info.offset;
1602 else
1603 mddev->bitmap_info.space =
1604 -mddev->bitmap_info.offset;
1605 }
e11e93fa 1606
f6705578
N
1607 if ((le32_to_cpu(sb->feature_map) & MD_FEATURE_RESHAPE_ACTIVE)) {
1608 mddev->reshape_position = le64_to_cpu(sb->reshape_position);
1609 mddev->delta_disks = le32_to_cpu(sb->delta_disks);
1610 mddev->new_level = le32_to_cpu(sb->new_level);
1611 mddev->new_layout = le32_to_cpu(sb->new_layout);
664e7c41 1612 mddev->new_chunk_sectors = le32_to_cpu(sb->new_chunk);
2c810cdd
N
1613 if (mddev->delta_disks < 0 ||
1614 (mddev->delta_disks == 0 &&
1615 (le32_to_cpu(sb->feature_map)
1616 & MD_FEATURE_RESHAPE_BACKWARDS)))
1617 mddev->reshape_backwards = 1;
f6705578
N
1618 } else {
1619 mddev->reshape_position = MaxSector;
1620 mddev->delta_disks = 0;
1621 mddev->new_level = mddev->level;
1622 mddev->new_layout = mddev->layout;
664e7c41 1623 mddev->new_chunk_sectors = mddev->chunk_sectors;
f6705578
N
1624 }
1625
486b0f7b 1626 if (le32_to_cpu(sb->feature_map) & MD_FEATURE_JOURNAL)
a62ab49e 1627 set_bit(MD_HAS_JOURNAL, &mddev->flags);
ea0213e0
AP
1628
1629 if (le32_to_cpu(sb->feature_map) & MD_FEATURE_PPL) {
1630 if (le32_to_cpu(sb->feature_map) &
1631 (MD_FEATURE_BITMAP_OFFSET | MD_FEATURE_JOURNAL))
1632 return -EINVAL;
1633 set_bit(MD_HAS_PPL, &mddev->flags);
1634 }
41158c7e 1635 } else if (mddev->pers == NULL) {
be6800a7
N
1636 /* Insist of good event counter while assembling, except for
1637 * spares (which don't need an event count) */
1da177e4 1638 ++ev1;
be6800a7
N
1639 if (rdev->desc_nr >= 0 &&
1640 rdev->desc_nr < le32_to_cpu(sb->max_dev) &&
a3dfbdaa
SL
1641 (le16_to_cpu(sb->dev_roles[rdev->desc_nr]) < MD_DISK_ROLE_MAX ||
1642 le16_to_cpu(sb->dev_roles[rdev->desc_nr]) == MD_DISK_ROLE_JOURNAL))
be6800a7
N
1643 if (ev1 < mddev->events)
1644 return -EINVAL;
41158c7e
N
1645 } else if (mddev->bitmap) {
1646 /* If adding to array with a bitmap, then we can accept an
1647 * older device, but not too old.
1648 */
41158c7e
N
1649 if (ev1 < mddev->bitmap->events_cleared)
1650 return 0;
8313b8e5
N
1651 if (ev1 < mddev->events)
1652 set_bit(Bitmap_sync, &rdev->flags);
07d84d10
N
1653 } else {
1654 if (ev1 < mddev->events)
1655 /* just a hot-add of a new device, leave raid_disk at -1 */
1656 return 0;
1657 }
1da177e4
LT
1658 if (mddev->level != LEVEL_MULTIPATH) {
1659 int role;
3673f305
N
1660 if (rdev->desc_nr < 0 ||
1661 rdev->desc_nr >= le32_to_cpu(sb->max_dev)) {
c4d4c91b 1662 role = MD_DISK_ROLE_SPARE;
3673f305
N
1663 rdev->desc_nr = -1;
1664 } else
1665 role = le16_to_cpu(sb->dev_roles[rdev->desc_nr]);
1da177e4 1666 switch(role) {
c4d4c91b 1667 case MD_DISK_ROLE_SPARE: /* spare */
1da177e4 1668 break;
c4d4c91b 1669 case MD_DISK_ROLE_FAULTY: /* faulty */
b2d444d7 1670 set_bit(Faulty, &rdev->flags);
1da177e4 1671 break;
bac624f3
SL
1672 case MD_DISK_ROLE_JOURNAL: /* journal device */
1673 if (!(le32_to_cpu(sb->feature_map) & MD_FEATURE_JOURNAL)) {
1674 /* journal device without journal feature */
9d48739e 1675 pr_warn("md: journal device provided without journal feature, ignoring the device\n");
bac624f3
SL
1676 return -EINVAL;
1677 }
1678 set_bit(Journal, &rdev->flags);
3069aa8d 1679 rdev->journal_tail = le64_to_cpu(sb->journal_tail);
9b15603d 1680 rdev->raid_disk = 0;
bac624f3 1681 break;
1da177e4 1682 default:
f466722c 1683 rdev->saved_raid_disk = role;
5fd6c1dc 1684 if ((le32_to_cpu(sb->feature_map) &
f466722c 1685 MD_FEATURE_RECOVERY_OFFSET)) {
5fd6c1dc 1686 rdev->recovery_offset = le64_to_cpu(sb->recovery_offset);
f466722c
N
1687 if (!(le32_to_cpu(sb->feature_map) &
1688 MD_FEATURE_RECOVERY_BITMAP))
1689 rdev->saved_raid_disk = -1;
1690 } else
5fd6c1dc 1691 set_bit(In_sync, &rdev->flags);
1da177e4
LT
1692 rdev->raid_disk = role;
1693 break;
1694 }
8ddf9efe
N
1695 if (sb->devflags & WriteMostly1)
1696 set_bit(WriteMostly, &rdev->flags);
688834e6
N
1697 if (sb->devflags & FailFast1)
1698 set_bit(FailFast, &rdev->flags);
2d78f8c4
N
1699 if (le32_to_cpu(sb->feature_map) & MD_FEATURE_REPLACEMENT)
1700 set_bit(Replacement, &rdev->flags);
41158c7e 1701 } else /* MULTIPATH are always insync */
b2d444d7 1702 set_bit(In_sync, &rdev->flags);
41158c7e 1703
1da177e4
LT
1704 return 0;
1705}
1706
fd01b88c 1707static void super_1_sync(struct mddev *mddev, struct md_rdev *rdev)
1da177e4
LT
1708{
1709 struct mdp_superblock_1 *sb;
3cb03002 1710 struct md_rdev *rdev2;
1da177e4
LT
1711 int max_dev, i;
1712 /* make rdev->sb match mddev and rdev data. */
1713
65a06f06 1714 sb = page_address(rdev->sb_page);
1da177e4
LT
1715
1716 sb->feature_map = 0;
1717 sb->pad0 = 0;
5fd6c1dc 1718 sb->recovery_offset = cpu_to_le64(0);
1da177e4
LT
1719 memset(sb->pad3, 0, sizeof(sb->pad3));
1720
1721 sb->utime = cpu_to_le64((__u64)mddev->utime);
1722 sb->events = cpu_to_le64(mddev->events);
1723 if (mddev->in_sync)
1724 sb->resync_offset = cpu_to_le64(mddev->recovery_cp);
bd18f646
SL
1725 else if (test_bit(MD_JOURNAL_CLEAN, &mddev->flags))
1726 sb->resync_offset = cpu_to_le64(MaxSector);
1da177e4
LT
1727 else
1728 sb->resync_offset = cpu_to_le64(0);
1729
1c05b4bc 1730 sb->cnt_corrected_read = cpu_to_le32(atomic_read(&rdev->corrected_errors));
4dbcdc75 1731
f0ca340c 1732 sb->raid_disks = cpu_to_le32(mddev->raid_disks);
58c0fed4 1733 sb->size = cpu_to_le64(mddev->dev_sectors);
9d8f0363 1734 sb->chunksize = cpu_to_le32(mddev->chunk_sectors);
62e1e389
N
1735 sb->level = cpu_to_le32(mddev->level);
1736 sb->layout = cpu_to_le32(mddev->layout);
688834e6
N
1737 if (test_bit(FailFast, &rdev->flags))
1738 sb->devflags |= FailFast1;
1739 else
1740 sb->devflags &= ~FailFast1;
f0ca340c 1741
aeb9b211
N
1742 if (test_bit(WriteMostly, &rdev->flags))
1743 sb->devflags |= WriteMostly1;
1744 else
1745 sb->devflags &= ~WriteMostly1;
c6563a8c
N
1746 sb->data_offset = cpu_to_le64(rdev->data_offset);
1747 sb->data_size = cpu_to_le64(rdev->sectors);
aeb9b211 1748
c3d9714e
N
1749 if (mddev->bitmap && mddev->bitmap_info.file == NULL) {
1750 sb->bitmap_offset = cpu_to_le32((__u32)mddev->bitmap_info.offset);
71c0805c 1751 sb->feature_map = cpu_to_le32(MD_FEATURE_BITMAP_OFFSET);
a654b9d8 1752 }
5fd6c1dc 1753
f2076e7d 1754 if (rdev->raid_disk >= 0 && !test_bit(Journal, &rdev->flags) &&
97e4f42d 1755 !test_bit(In_sync, &rdev->flags)) {
93be75ff
N
1756 sb->feature_map |=
1757 cpu_to_le32(MD_FEATURE_RECOVERY_OFFSET);
1758 sb->recovery_offset =
1759 cpu_to_le64(rdev->recovery_offset);
f466722c
N
1760 if (rdev->saved_raid_disk >= 0 && mddev->bitmap)
1761 sb->feature_map |=
1762 cpu_to_le32(MD_FEATURE_RECOVERY_BITMAP);
5fd6c1dc 1763 }
3069aa8d
SL
1764 /* Note: recovery_offset and journal_tail share space */
1765 if (test_bit(Journal, &rdev->flags))
1766 sb->journal_tail = cpu_to_le64(rdev->journal_tail);
2d78f8c4
N
1767 if (test_bit(Replacement, &rdev->flags))
1768 sb->feature_map |=
1769 cpu_to_le32(MD_FEATURE_REPLACEMENT);
5fd6c1dc 1770
f6705578
N
1771 if (mddev->reshape_position != MaxSector) {
1772 sb->feature_map |= cpu_to_le32(MD_FEATURE_RESHAPE_ACTIVE);
1773 sb->reshape_position = cpu_to_le64(mddev->reshape_position);
1774 sb->new_layout = cpu_to_le32(mddev->new_layout);
1775 sb->delta_disks = cpu_to_le32(mddev->delta_disks);
1776 sb->new_level = cpu_to_le32(mddev->new_level);
664e7c41 1777 sb->new_chunk = cpu_to_le32(mddev->new_chunk_sectors);
2c810cdd
N
1778 if (mddev->delta_disks == 0 &&
1779 mddev->reshape_backwards)
1780 sb->feature_map
1781 |= cpu_to_le32(MD_FEATURE_RESHAPE_BACKWARDS);
c6563a8c
N
1782 if (rdev->new_data_offset != rdev->data_offset) {
1783 sb->feature_map
1784 |= cpu_to_le32(MD_FEATURE_NEW_OFFSET);
1785 sb->new_offset = cpu_to_le32((__u32)(rdev->new_data_offset
1786 - rdev->data_offset));
1787 }
f6705578 1788 }
a654b9d8 1789
3c462c88
GR
1790 if (mddev_is_clustered(mddev))
1791 sb->feature_map |= cpu_to_le32(MD_FEATURE_CLUSTERED);
1792
2699b672
N
1793 if (rdev->badblocks.count == 0)
1794 /* Nothing to do for bad blocks*/ ;
1795 else if (sb->bblog_offset == 0)
1796 /* Cannot record bad blocks on this device */
1797 md_error(mddev, rdev);
1798 else {
1799 struct badblocks *bb = &rdev->badblocks;
1800 u64 *bbp = (u64 *)page_address(rdev->bb_page);
1801 u64 *p = bb->page;
1802 sb->feature_map |= cpu_to_le32(MD_FEATURE_BAD_BLOCKS);
1803 if (bb->changed) {
1804 unsigned seq;
1805
1806retry:
1807 seq = read_seqbegin(&bb->lock);
1808
1809 memset(bbp, 0xff, PAGE_SIZE);
1810
1811 for (i = 0 ; i < bb->count ; i++) {
35f9ac2d 1812 u64 internal_bb = p[i];
2699b672
N
1813 u64 store_bb = ((BB_OFFSET(internal_bb) << 10)
1814 | BB_LEN(internal_bb));
35f9ac2d 1815 bbp[i] = cpu_to_le64(store_bb);
2699b672 1816 }
d0962936 1817 bb->changed = 0;
2699b672
N
1818 if (read_seqretry(&bb->lock, seq))
1819 goto retry;
1820
1821 bb->sector = (rdev->sb_start +
1822 (int)le32_to_cpu(sb->bblog_offset));
1823 bb->size = le16_to_cpu(sb->bblog_size);
2699b672
N
1824 }
1825 }
1826
1da177e4 1827 max_dev = 0;
dafb20fa 1828 rdev_for_each(rdev2, mddev)
1da177e4
LT
1829 if (rdev2->desc_nr+1 > max_dev)
1830 max_dev = rdev2->desc_nr+1;
a778b73f 1831
70471daf
N
1832 if (max_dev > le32_to_cpu(sb->max_dev)) {
1833 int bmask;
a778b73f 1834 sb->max_dev = cpu_to_le32(max_dev);
70471daf
N
1835 rdev->sb_size = max_dev * 2 + 256;
1836 bmask = queue_logical_block_size(rdev->bdev->bd_disk->queue)-1;
1837 if (rdev->sb_size & bmask)
1838 rdev->sb_size = (rdev->sb_size | bmask) + 1;
ddcf3522
N
1839 } else
1840 max_dev = le32_to_cpu(sb->max_dev);
1841
1da177e4 1842 for (i=0; i<max_dev;i++)
c4d4c91b 1843 sb->dev_roles[i] = cpu_to_le16(MD_DISK_ROLE_FAULTY);
f72ffdd6 1844
a97b7896
SL
1845 if (test_bit(MD_HAS_JOURNAL, &mddev->flags))
1846 sb->feature_map |= cpu_to_le32(MD_FEATURE_JOURNAL);
f72ffdd6 1847
ea0213e0
AP
1848 if (test_bit(MD_HAS_PPL, &mddev->flags)) {
1849 sb->feature_map |= cpu_to_le32(MD_FEATURE_PPL);
1850 sb->ppl.offset = cpu_to_le16(rdev->ppl.offset);
1851 sb->ppl.size = cpu_to_le16(rdev->ppl.size);
1852 }
1853
dafb20fa 1854 rdev_for_each(rdev2, mddev) {
1da177e4 1855 i = rdev2->desc_nr;
b2d444d7 1856 if (test_bit(Faulty, &rdev2->flags))
c4d4c91b 1857 sb->dev_roles[i] = cpu_to_le16(MD_DISK_ROLE_FAULTY);
b2d444d7 1858 else if (test_bit(In_sync, &rdev2->flags))
1da177e4 1859 sb->dev_roles[i] = cpu_to_le16(rdev2->raid_disk);
a97b7896 1860 else if (test_bit(Journal, &rdev2->flags))
bac624f3 1861 sb->dev_roles[i] = cpu_to_le16(MD_DISK_ROLE_JOURNAL);
93be75ff 1862 else if (rdev2->raid_disk >= 0)
5fd6c1dc 1863 sb->dev_roles[i] = cpu_to_le16(rdev2->raid_disk);
1da177e4 1864 else
c4d4c91b 1865 sb->dev_roles[i] = cpu_to_le16(MD_DISK_ROLE_SPARE);
1da177e4
LT
1866 }
1867
1da177e4
LT
1868 sb->sb_csum = calc_sb_1_csum(sb);
1869}
1870
0cd17fec 1871static unsigned long long
3cb03002 1872super_1_rdev_size_change(struct md_rdev *rdev, sector_t num_sectors)
0cd17fec
CW
1873{
1874 struct mdp_superblock_1 *sb;
15f4a5fd 1875 sector_t max_sectors;
58c0fed4 1876 if (num_sectors && num_sectors < rdev->mddev->dev_sectors)
0cd17fec 1877 return 0; /* component must fit device */
c6563a8c
N
1878 if (rdev->data_offset != rdev->new_data_offset)
1879 return 0; /* too confusing */
0f420358 1880 if (rdev->sb_start < rdev->data_offset) {
0cd17fec 1881 /* minor versions 1 and 2; superblock before data */
77304d2a 1882 max_sectors = i_size_read(rdev->bdev->bd_inode) >> 9;
15f4a5fd
AN
1883 max_sectors -= rdev->data_offset;
1884 if (!num_sectors || num_sectors > max_sectors)
1885 num_sectors = max_sectors;
c3d9714e 1886 } else if (rdev->mddev->bitmap_info.offset) {
0cd17fec
CW
1887 /* minor version 0 with bitmap we can't move */
1888 return 0;
1889 } else {
1890 /* minor version 0; superblock after data */
0f420358 1891 sector_t sb_start;
77304d2a 1892 sb_start = (i_size_read(rdev->bdev->bd_inode) >> 9) - 8*2;
0f420358 1893 sb_start &= ~(sector_t)(4*2 - 1);
dd8ac336 1894 max_sectors = rdev->sectors + sb_start - rdev->sb_start;
15f4a5fd
AN
1895 if (!num_sectors || num_sectors > max_sectors)
1896 num_sectors = max_sectors;
0f420358 1897 rdev->sb_start = sb_start;
0cd17fec 1898 }
65a06f06 1899 sb = page_address(rdev->sb_page);
15f4a5fd 1900 sb->data_size = cpu_to_le64(num_sectors);
3fb632e4 1901 sb->super_offset = cpu_to_le64(rdev->sb_start);
0cd17fec 1902 sb->sb_csum = calc_sb_1_csum(sb);
46533ff7
N
1903 do {
1904 md_super_write(rdev->mddev, rdev, rdev->sb_start, rdev->sb_size,
1905 rdev->sb_page);
1906 } while (md_super_wait(rdev->mddev) < 0);
c26a44ed 1907 return num_sectors;
c6563a8c
N
1908
1909}
1910
1911static int
1912super_1_allow_new_offset(struct md_rdev *rdev,
1913 unsigned long long new_offset)
1914{
1915 /* All necessary checks on new >= old have been done */
1916 struct bitmap *bitmap;
1917 if (new_offset >= rdev->data_offset)
1918 return 1;
1919
1920 /* with 1.0 metadata, there is no metadata to tread on
1921 * so we can always move back */
1922 if (rdev->mddev->minor_version == 0)
1923 return 1;
1924
1925 /* otherwise we must be sure not to step on
1926 * any metadata, so stay:
1927 * 36K beyond start of superblock
1928 * beyond end of badblocks
1929 * beyond write-intent bitmap
1930 */
1931 if (rdev->sb_start + (32+4)*2 > new_offset)
1932 return 0;
1933 bitmap = rdev->mddev->bitmap;
1934 if (bitmap && !rdev->mddev->bitmap_info.file &&
1935 rdev->sb_start + rdev->mddev->bitmap_info.offset +
1ec885cd 1936 bitmap->storage.file_pages * (PAGE_SIZE>>9) > new_offset)
c6563a8c
N
1937 return 0;
1938 if (rdev->badblocks.sector + rdev->badblocks.size > new_offset)
1939 return 0;
1940
1941 return 1;
0cd17fec 1942}
1da177e4 1943
75c96f85 1944static struct super_type super_types[] = {
1da177e4
LT
1945 [0] = {
1946 .name = "0.90.0",
1947 .owner = THIS_MODULE,
0cd17fec
CW
1948 .load_super = super_90_load,
1949 .validate_super = super_90_validate,
1950 .sync_super = super_90_sync,
1951 .rdev_size_change = super_90_rdev_size_change,
c6563a8c 1952 .allow_new_offset = super_90_allow_new_offset,
1da177e4
LT
1953 },
1954 [1] = {
1955 .name = "md-1",
1956 .owner = THIS_MODULE,
0cd17fec
CW
1957 .load_super = super_1_load,
1958 .validate_super = super_1_validate,
1959 .sync_super = super_1_sync,
1960 .rdev_size_change = super_1_rdev_size_change,
c6563a8c 1961 .allow_new_offset = super_1_allow_new_offset,
1da177e4
LT
1962 },
1963};
1da177e4 1964
fd01b88c 1965static void sync_super(struct mddev *mddev, struct md_rdev *rdev)
076f968b
JB
1966{
1967 if (mddev->sync_super) {
1968 mddev->sync_super(mddev, rdev);
1969 return;
1970 }
1971
1972 BUG_ON(mddev->major_version >= ARRAY_SIZE(super_types));
1973
1974 super_types[mddev->major_version].sync_super(mddev, rdev);
1975}
1976
fd01b88c 1977static int match_mddev_units(struct mddev *mddev1, struct mddev *mddev2)
1da177e4 1978{
3cb03002 1979 struct md_rdev *rdev, *rdev2;
1da177e4 1980
4b80991c 1981 rcu_read_lock();
0b020e85
SL
1982 rdev_for_each_rcu(rdev, mddev1) {
1983 if (test_bit(Faulty, &rdev->flags) ||
1984 test_bit(Journal, &rdev->flags) ||
1985 rdev->raid_disk == -1)
1986 continue;
1987 rdev_for_each_rcu(rdev2, mddev2) {
1988 if (test_bit(Faulty, &rdev2->flags) ||
1989 test_bit(Journal, &rdev2->flags) ||
1990 rdev2->raid_disk == -1)
1991 continue;
7dd5e7c3 1992 if (rdev->bdev->bd_contains ==
4b80991c
N
1993 rdev2->bdev->bd_contains) {
1994 rcu_read_unlock();
7dd5e7c3 1995 return 1;
4b80991c 1996 }
0b020e85
SL
1997 }
1998 }
4b80991c 1999 rcu_read_unlock();
1da177e4
LT
2000 return 0;
2001}
2002
2003static LIST_HEAD(pending_raid_disks);
2004
ac5e7113
AN
2005/*
2006 * Try to register data integrity profile for an mddev
2007 *
2008 * This is called when an array is started and after a disk has been kicked
2009 * from the array. It only succeeds if all working and active component devices
2010 * are integrity capable with matching profiles.
2011 */
fd01b88c 2012int md_integrity_register(struct mddev *mddev)
ac5e7113 2013{
3cb03002 2014 struct md_rdev *rdev, *reference = NULL;
ac5e7113
AN
2015
2016 if (list_empty(&mddev->disks))
2017 return 0; /* nothing to do */
629acb6a
JB
2018 if (!mddev->gendisk || blk_get_integrity(mddev->gendisk))
2019 return 0; /* shouldn't register, or already is */
dafb20fa 2020 rdev_for_each(rdev, mddev) {
ac5e7113
AN
2021 /* skip spares and non-functional disks */
2022 if (test_bit(Faulty, &rdev->flags))
2023 continue;
2024 if (rdev->raid_disk < 0)
2025 continue;
ac5e7113
AN
2026 if (!reference) {
2027 /* Use the first rdev as the reference */
2028 reference = rdev;
2029 continue;
2030 }
2031 /* does this rdev's profile match the reference profile? */
2032 if (blk_integrity_compare(reference->bdev->bd_disk,
2033 rdev->bdev->bd_disk) < 0)
2034 return -EINVAL;
2035 }
89078d57
MP
2036 if (!reference || !bdev_get_integrity(reference->bdev))
2037 return 0;
ac5e7113
AN
2038 /*
2039 * All component devices are integrity capable and have matching
2040 * profiles, register the common profile for the md device.
2041 */
25520d55
MP
2042 blk_integrity_register(mddev->gendisk,
2043 bdev_get_integrity(reference->bdev));
2044
9d48739e 2045 pr_debug("md: data integrity enabled on %s\n", mdname(mddev));
a91a2785 2046 if (bioset_integrity_create(mddev->bio_set, BIO_POOL_SIZE)) {
9d48739e 2047 pr_err("md: failed to create integrity pool for %s\n",
a91a2785
MP
2048 mdname(mddev));
2049 return -EINVAL;
2050 }
ac5e7113
AN
2051 return 0;
2052}
2053EXPORT_SYMBOL(md_integrity_register);
2054
1501efad
DW
2055/*
2056 * Attempt to add an rdev, but only if it is consistent with the current
2057 * integrity profile
2058 */
2059int md_integrity_add_rdev(struct md_rdev *rdev, struct mddev *mddev)
3f9d99c1 2060{
2863b9eb
JB
2061 struct blk_integrity *bi_rdev;
2062 struct blk_integrity *bi_mddev;
1501efad 2063 char name[BDEVNAME_SIZE];
2863b9eb
JB
2064
2065 if (!mddev->gendisk)
1501efad 2066 return 0;
2863b9eb
JB
2067
2068 bi_rdev = bdev_get_integrity(rdev->bdev);
2069 bi_mddev = blk_get_integrity(mddev->gendisk);
3f9d99c1 2070
ac5e7113 2071 if (!bi_mddev) /* nothing to do */
1501efad
DW
2072 return 0;
2073
2074 if (blk_integrity_compare(mddev->gendisk, rdev->bdev->bd_disk) != 0) {
9d48739e
N
2075 pr_err("%s: incompatible integrity profile for %s\n",
2076 mdname(mddev), bdevname(rdev->bdev, name));
1501efad
DW
2077 return -ENXIO;
2078 }
2079
2080 return 0;
3f9d99c1 2081}
ac5e7113 2082EXPORT_SYMBOL(md_integrity_add_rdev);
3f9d99c1 2083
f72ffdd6 2084static int bind_rdev_to_array(struct md_rdev *rdev, struct mddev *mddev)
1da177e4 2085{
7dd5e7c3 2086 char b[BDEVNAME_SIZE];
f637b9f9 2087 struct kobject *ko;
5e55e2f5 2088 int err;
1da177e4 2089
11e2ede0
DW
2090 /* prevent duplicates */
2091 if (find_rdev(mddev, rdev->bdev->bd_dev))
2092 return -EEXIST;
2093
dd8ac336 2094 /* make sure rdev->sectors exceeds mddev->dev_sectors */
f6b6ec5c
SL
2095 if (!test_bit(Journal, &rdev->flags) &&
2096 rdev->sectors &&
2097 (mddev->dev_sectors == 0 || rdev->sectors < mddev->dev_sectors)) {
a778b73f
N
2098 if (mddev->pers) {
2099 /* Cannot change size, so fail
2100 * If mddev->level <= 0, then we don't care
2101 * about aligning sizes (e.g. linear)
2102 */
2103 if (mddev->level > 0)
2104 return -ENOSPC;
2105 } else
dd8ac336 2106 mddev->dev_sectors = rdev->sectors;
2bf071bf 2107 }
1da177e4
LT
2108
2109 /* Verify rdev->desc_nr is unique.
2110 * If it is -1, assign a free number, else
2111 * check number is not in use
2112 */
4878e9eb 2113 rcu_read_lock();
1da177e4
LT
2114 if (rdev->desc_nr < 0) {
2115 int choice = 0;
4878e9eb
N
2116 if (mddev->pers)
2117 choice = mddev->raid_disks;
57d051dc 2118 while (md_find_rdev_nr_rcu(mddev, choice))
1da177e4
LT
2119 choice++;
2120 rdev->desc_nr = choice;
2121 } else {
57d051dc 2122 if (md_find_rdev_nr_rcu(mddev, rdev->desc_nr)) {
4878e9eb 2123 rcu_read_unlock();
1da177e4 2124 return -EBUSY;
4878e9eb 2125 }
1da177e4 2126 }
4878e9eb 2127 rcu_read_unlock();
f6b6ec5c
SL
2128 if (!test_bit(Journal, &rdev->flags) &&
2129 mddev->max_disks && rdev->desc_nr >= mddev->max_disks) {
9d48739e
N
2130 pr_warn("md: %s: array is limited to %d devices\n",
2131 mdname(mddev), mddev->max_disks);
de01dfad
N
2132 return -EBUSY;
2133 }
19133a42 2134 bdevname(rdev->bdev,b);
90a9befb 2135 strreplace(b, '/', '!');
649316b2 2136
1da177e4 2137 rdev->mddev = mddev;
9d48739e 2138 pr_debug("md: bind<%s>\n", b);
86e6ffdd 2139
b2d6db58 2140 if ((err = kobject_add(&rdev->kobj, &mddev->kobj, "dev-%s", b)))
5e55e2f5 2141 goto fail;
86e6ffdd 2142
0762b8bd 2143 ko = &part_to_dev(rdev->bdev->bd_part)->kobj;
00bcb4ac
N
2144 if (sysfs_create_link(&rdev->kobj, ko, "block"))
2145 /* failure here is OK */;
2146 rdev->sysfs_state = sysfs_get_dirent_safe(rdev->kobj.sd, "state");
3c0ee63a 2147
4b80991c 2148 list_add_rcu(&rdev->same_set, &mddev->disks);
e09b457b 2149 bd_link_disk_holder(rdev->bdev, mddev->gendisk);
4044ba58
N
2150
2151 /* May as well allow recovery to be retried once */
5389042f 2152 mddev->recovery_disabled++;
3f9d99c1 2153
1da177e4 2154 return 0;
5e55e2f5
N
2155
2156 fail:
9d48739e
N
2157 pr_warn("md: failed to register dev-%s for %s\n",
2158 b, mdname(mddev));
5e55e2f5 2159 return err;
1da177e4
LT
2160}
2161
177a99b2 2162static void md_delayed_delete(struct work_struct *ws)
5792a285 2163{
3cb03002 2164 struct md_rdev *rdev = container_of(ws, struct md_rdev, del_work);
5792a285 2165 kobject_del(&rdev->kobj);
177a99b2 2166 kobject_put(&rdev->kobj);
5792a285
N
2167}
2168
f72ffdd6 2169static void unbind_rdev_from_array(struct md_rdev *rdev)
1da177e4
LT
2170{
2171 char b[BDEVNAME_SIZE];
403df478 2172
49731baa 2173 bd_unlink_disk_holder(rdev->bdev, rdev->mddev->gendisk);
4b80991c 2174 list_del_rcu(&rdev->same_set);
9d48739e 2175 pr_debug("md: unbind<%s>\n", bdevname(rdev->bdev,b));
1da177e4 2176 rdev->mddev = NULL;
86e6ffdd 2177 sysfs_remove_link(&rdev->kobj, "block");
3c0ee63a
N
2178 sysfs_put(rdev->sysfs_state);
2179 rdev->sysfs_state = NULL;
2230dfe4 2180 rdev->badblocks.count = 0;
5792a285 2181 /* We need to delay this, otherwise we can deadlock when
4b80991c
N
2182 * writing to 'remove' to "dev/state". We also need
2183 * to delay it due to rcu usage.
5792a285 2184 */
4b80991c 2185 synchronize_rcu();
177a99b2
N
2186 INIT_WORK(&rdev->del_work, md_delayed_delete);
2187 kobject_get(&rdev->kobj);
e804ac78 2188 queue_work(md_misc_wq, &rdev->del_work);
1da177e4
LT
2189}
2190
2191/*
2192 * prevent the device from being mounted, repartitioned or
2193 * otherwise reused by a RAID array (or any other kernel
2194 * subsystem), by bd_claiming the device.
2195 */
3cb03002 2196static int lock_rdev(struct md_rdev *rdev, dev_t dev, int shared)
1da177e4
LT
2197{
2198 int err = 0;
2199 struct block_device *bdev;
2200 char b[BDEVNAME_SIZE];
2201
d4d77629 2202 bdev = blkdev_get_by_dev(dev, FMODE_READ|FMODE_WRITE|FMODE_EXCL,
3cb03002 2203 shared ? (struct md_rdev *)lock_rdev : rdev);
1da177e4 2204 if (IS_ERR(bdev)) {
9d48739e 2205 pr_warn("md: could not open %s.\n", __bdevname(dev, b));
1da177e4
LT
2206 return PTR_ERR(bdev);
2207 }
1da177e4
LT
2208 rdev->bdev = bdev;
2209 return err;
2210}
2211
3cb03002 2212static void unlock_rdev(struct md_rdev *rdev)
1da177e4
LT
2213{
2214 struct block_device *bdev = rdev->bdev;
2215 rdev->bdev = NULL;
e525fd89 2216 blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
1da177e4
LT
2217}
2218
2219void md_autodetect_dev(dev_t dev);
2220
f72ffdd6 2221static void export_rdev(struct md_rdev *rdev)
1da177e4
LT
2222{
2223 char b[BDEVNAME_SIZE];
403df478 2224
9d48739e 2225 pr_debug("md: export_rdev(%s)\n", bdevname(rdev->bdev,b));
545c8795 2226 md_rdev_clear(rdev);
1da177e4 2227#ifndef MODULE
d0fae18f
N
2228 if (test_bit(AutoDetected, &rdev->flags))
2229 md_autodetect_dev(rdev->bdev->bd_dev);
1da177e4
LT
2230#endif
2231 unlock_rdev(rdev);
86e6ffdd 2232 kobject_put(&rdev->kobj);
1da177e4
LT
2233}
2234
fb56dfef 2235void md_kick_rdev_from_array(struct md_rdev *rdev)
1da177e4
LT
2236{
2237 unbind_rdev_from_array(rdev);
2238 export_rdev(rdev);
2239}
fb56dfef 2240EXPORT_SYMBOL_GPL(md_kick_rdev_from_array);
1da177e4 2241
fd01b88c 2242static void export_array(struct mddev *mddev)
1da177e4 2243{
0638bb0e 2244 struct md_rdev *rdev;
1da177e4 2245
0638bb0e
N
2246 while (!list_empty(&mddev->disks)) {
2247 rdev = list_first_entry(&mddev->disks, struct md_rdev,
2248 same_set);
fb56dfef 2249 md_kick_rdev_from_array(rdev);
1da177e4 2250 }
1da177e4
LT
2251 mddev->raid_disks = 0;
2252 mddev->major_version = 0;
2253}
2254
f72ffdd6 2255static void sync_sbs(struct mddev *mddev, int nospares)
1da177e4 2256{
42543769
N
2257 /* Update each superblock (in-memory image), but
2258 * if we are allowed to, skip spares which already
2259 * have the right event counter, or have one earlier
2260 * (which would mean they aren't being marked as dirty
2261 * with the rest of the array)
2262 */
3cb03002 2263 struct md_rdev *rdev;
dafb20fa 2264 rdev_for_each(rdev, mddev) {
42543769
N
2265 if (rdev->sb_events == mddev->events ||
2266 (nospares &&
2267 rdev->raid_disk < 0 &&
42543769
N
2268 rdev->sb_events+1 == mddev->events)) {
2269 /* Don't update this superblock */
2270 rdev->sb_loaded = 2;
2271 } else {
076f968b 2272 sync_super(mddev, rdev);
42543769
N
2273 rdev->sb_loaded = 1;
2274 }
1da177e4
LT
2275 }
2276}
2277
2aa82191
GR
2278static bool does_sb_need_changing(struct mddev *mddev)
2279{
2280 struct md_rdev *rdev;
2281 struct mdp_superblock_1 *sb;
2282 int role;
2283
2284 /* Find a good rdev */
2285 rdev_for_each(rdev, mddev)
2286 if ((rdev->raid_disk >= 0) && !test_bit(Faulty, &rdev->flags))
2287 break;
2288
2289 /* No good device found. */
2290 if (!rdev)
2291 return false;
2292
2293 sb = page_address(rdev->sb_page);
2294 /* Check if a device has become faulty or a spare become active */
2295 rdev_for_each(rdev, mddev) {
2296 role = le16_to_cpu(sb->dev_roles[rdev->desc_nr]);
2297 /* Device activated? */
2298 if (role == 0xffff && rdev->raid_disk >=0 &&
2299 !test_bit(Faulty, &rdev->flags))
2300 return true;
2301 /* Device turned faulty? */
2302 if (test_bit(Faulty, &rdev->flags) && (role < 0xfffd))
2303 return true;
2304 }
2305
2306 /* Check if any mddev parameters have changed */
2307 if ((mddev->dev_sectors != le64_to_cpu(sb->size)) ||
2308 (mddev->reshape_position != le64_to_cpu(sb->reshape_position)) ||
13459213 2309 (mddev->layout != le32_to_cpu(sb->layout)) ||
2aa82191
GR
2310 (mddev->raid_disks != le32_to_cpu(sb->raid_disks)) ||
2311 (mddev->chunk_sectors != le32_to_cpu(sb->chunksize)))
2312 return true;
2313
2314 return false;
2315}
2316
1aee41f6 2317void md_update_sb(struct mddev *mddev, int force_change)
1da177e4 2318{
3cb03002 2319 struct md_rdev *rdev;
06d91a5f 2320 int sync_req;
42543769 2321 int nospares = 0;
2699b672 2322 int any_badblocks_changed = 0;
23b63f9f 2323 int ret = -1;
1da177e4 2324
d87f064f
N
2325 if (mddev->ro) {
2326 if (force_change)
2953079c 2327 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
d87f064f
N
2328 return;
2329 }
2aa82191 2330
2c97cf13 2331repeat:
2aa82191 2332 if (mddev_is_clustered(mddev)) {
2953079c 2333 if (test_and_clear_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags))
2aa82191 2334 force_change = 1;
2953079c 2335 if (test_and_clear_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags))
85ad1d13 2336 nospares = 1;
23b63f9f 2337 ret = md_cluster_ops->metadata_update_start(mddev);
2aa82191
GR
2338 /* Has someone else has updated the sb */
2339 if (!does_sb_need_changing(mddev)) {
23b63f9f
GJ
2340 if (ret == 0)
2341 md_cluster_ops->metadata_update_cancel(mddev);
2953079c
SL
2342 bit_clear_unless(&mddev->sb_flags, BIT(MD_SB_CHANGE_PENDING),
2343 BIT(MD_SB_CHANGE_DEVS) |
2344 BIT(MD_SB_CHANGE_CLEAN));
2aa82191
GR
2345 return;
2346 }
2347 }
2c97cf13 2348
3a3a5ddb 2349 /* First make sure individual recovery_offsets are correct */
dafb20fa 2350 rdev_for_each(rdev, mddev) {
3a3a5ddb
N
2351 if (rdev->raid_disk >= 0 &&
2352 mddev->delta_disks >= 0 &&
f2076e7d 2353 !test_bit(Journal, &rdev->flags) &&
3a3a5ddb
N
2354 !test_bit(In_sync, &rdev->flags) &&
2355 mddev->curr_resync_completed > rdev->recovery_offset)
2356 rdev->recovery_offset = mddev->curr_resync_completed;
2357
f72ffdd6 2358 }
bd52b746 2359 if (!mddev->persistent) {
2953079c
SL
2360 clear_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
2361 clear_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
de393cde 2362 if (!mddev->external) {
2953079c 2363 clear_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
dafb20fa 2364 rdev_for_each(rdev, mddev) {
de393cde 2365 if (rdev->badblocks.changed) {
d0962936 2366 rdev->badblocks.changed = 0;
fc974ee2 2367 ack_all_badblocks(&rdev->badblocks);
de393cde
N
2368 md_error(mddev, rdev);
2369 }
2370 clear_bit(Blocked, &rdev->flags);
2371 clear_bit(BlockedBadBlocks, &rdev->flags);
2372 wake_up(&rdev->blocked_wait);
2373 }
2374 }
3a3a5ddb
N
2375 wake_up(&mddev->sb_wait);
2376 return;
2377 }
2378
85572d7c 2379 spin_lock(&mddev->lock);
84692195 2380
9ebc6ef1 2381 mddev->utime = ktime_get_real_seconds();
3a3a5ddb 2382
2953079c 2383 if (test_and_clear_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags))
850b2b42 2384 force_change = 1;
2953079c 2385 if (test_and_clear_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags))
850b2b42
N
2386 /* just a clean<-> dirty transition, possibly leave spares alone,
2387 * though if events isn't the right even/odd, we will have to do
2388 * spares after all
2389 */
2390 nospares = 1;
2391 if (force_change)
2392 nospares = 0;
2393 if (mddev->degraded)
84692195
N
2394 /* If the array is degraded, then skipping spares is both
2395 * dangerous and fairly pointless.
2396 * Dangerous because a device that was removed from the array
2397 * might have a event_count that still looks up-to-date,
2398 * so it can be re-added without a resync.
2399 * Pointless because if there are any spares to skip,
2400 * then a recovery will happen and soon that array won't
2401 * be degraded any more and the spare can go back to sleep then.
2402 */
850b2b42 2403 nospares = 0;
84692195 2404
06d91a5f 2405 sync_req = mddev->in_sync;
42543769
N
2406
2407 /* If this is just a dirty<->clean transition, and the array is clean
2408 * and 'events' is odd, we can roll back to the previous clean state */
850b2b42 2409 if (nospares
42543769 2410 && (mddev->in_sync && mddev->recovery_cp == MaxSector)
a8707c08
N
2411 && mddev->can_decrease_events
2412 && mddev->events != 1) {
42543769 2413 mddev->events--;
a8707c08
N
2414 mddev->can_decrease_events = 0;
2415 } else {
42543769
N
2416 /* otherwise we have to go forward and ... */
2417 mddev->events ++;
a8707c08 2418 mddev->can_decrease_events = nospares;
42543769 2419 }
1da177e4 2420
403df478
N
2421 /*
2422 * This 64-bit counter should never wrap.
2423 * Either we are in around ~1 trillion A.C., assuming
2424 * 1 reboot per second, or we have a bug...
2425 */
2426 WARN_ON(mddev->events == 0);
2699b672 2427
dafb20fa 2428 rdev_for_each(rdev, mddev) {
2699b672
N
2429 if (rdev->badblocks.changed)
2430 any_badblocks_changed++;
de393cde
N
2431 if (test_bit(Faulty, &rdev->flags))
2432 set_bit(FaultRecorded, &rdev->flags);
2433 }
2699b672 2434
e691063a 2435 sync_sbs(mddev, nospares);
85572d7c 2436 spin_unlock(&mddev->lock);
1da177e4 2437
36a4e1fe
N
2438 pr_debug("md: updating %s RAID superblock on device (in sync %d)\n",
2439 mdname(mddev), mddev->in_sync);
1da177e4 2440
504634f6
SL
2441 if (mddev->queue)
2442 blk_add_trace_msg(mddev->queue, "md md_update_sb");
46533ff7 2443rewrite:
4ad13663 2444 bitmap_update_sb(mddev->bitmap);
dafb20fa 2445 rdev_for_each(rdev, mddev) {
1da177e4 2446 char b[BDEVNAME_SIZE];
36a4e1fe 2447
42543769
N
2448 if (rdev->sb_loaded != 1)
2449 continue; /* no noise on spare devices */
1da177e4 2450
f466722c 2451 if (!test_bit(Faulty, &rdev->flags)) {
7bfa19f2 2452 md_super_write(mddev,rdev,
0f420358 2453 rdev->sb_start, rdev->sb_size,
7bfa19f2 2454 rdev->sb_page);
36a4e1fe
N
2455 pr_debug("md: (write) %s's sb offset: %llu\n",
2456 bdevname(rdev->bdev, b),
2457 (unsigned long long)rdev->sb_start);
42543769 2458 rdev->sb_events = mddev->events;
2699b672
N
2459 if (rdev->badblocks.size) {
2460 md_super_write(mddev, rdev,
2461 rdev->badblocks.sector,
2462 rdev->badblocks.size << 9,
2463 rdev->bb_page);
2464 rdev->badblocks.size = 0;
2465 }
7bfa19f2 2466
f466722c 2467 } else
36a4e1fe
N
2468 pr_debug("md: %s (skipping faulty)\n",
2469 bdevname(rdev->bdev, b));
d70ed2e4 2470
7bfa19f2 2471 if (mddev->level == LEVEL_MULTIPATH)
1da177e4
LT
2472 /* only need to write one superblock... */
2473 break;
2474 }
46533ff7
N
2475 if (md_super_wait(mddev) < 0)
2476 goto rewrite;
2953079c 2477 /* if there was a failure, MD_SB_CHANGE_DEVS was set, and we re-write super */
7bfa19f2 2478
2c97cf13
GJ
2479 if (mddev_is_clustered(mddev) && ret == 0)
2480 md_cluster_ops->metadata_update_finish(mddev);
2481
850b2b42 2482 if (mddev->in_sync != sync_req ||
2953079c
SL
2483 !bit_clear_unless(&mddev->sb_flags, BIT(MD_SB_CHANGE_PENDING),
2484 BIT(MD_SB_CHANGE_DEVS) | BIT(MD_SB_CHANGE_CLEAN)))
06d91a5f 2485 /* have to write it out again */
06d91a5f 2486 goto repeat;
3d310eb7 2487 wake_up(&mddev->sb_wait);
acb180b0
N
2488 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
2489 sysfs_notify(&mddev->kobj, NULL, "sync_completed");
06d91a5f 2490
dafb20fa 2491 rdev_for_each(rdev, mddev) {
de393cde
N
2492 if (test_and_clear_bit(FaultRecorded, &rdev->flags))
2493 clear_bit(Blocked, &rdev->flags);
2494
2495 if (any_badblocks_changed)
fc974ee2 2496 ack_all_badblocks(&rdev->badblocks);
de393cde
N
2497 clear_bit(BlockedBadBlocks, &rdev->flags);
2498 wake_up(&rdev->blocked_wait);
2499 }
1da177e4 2500}
1aee41f6 2501EXPORT_SYMBOL(md_update_sb);
1da177e4 2502
a6da4ef8
GR
2503static int add_bound_rdev(struct md_rdev *rdev)
2504{
2505 struct mddev *mddev = rdev->mddev;
2506 int err = 0;
87d4d916 2507 bool add_journal = test_bit(Journal, &rdev->flags);
a6da4ef8 2508
87d4d916 2509 if (!mddev->pers->hot_remove_disk || add_journal) {
a6da4ef8
GR
2510 /* If there is hot_add_disk but no hot_remove_disk
2511 * then added disks for geometry changes,
2512 * and should be added immediately.
2513 */
2514 super_types[mddev->major_version].
2515 validate_super(mddev, rdev);
87d4d916
SL
2516 if (add_journal)
2517 mddev_suspend(mddev);
a6da4ef8 2518 err = mddev->pers->hot_add_disk(mddev, rdev);
87d4d916
SL
2519 if (add_journal)
2520 mddev_resume(mddev);
a6da4ef8 2521 if (err) {
db767672 2522 md_kick_rdev_from_array(rdev);
a6da4ef8
GR
2523 return err;
2524 }
2525 }
2526 sysfs_notify_dirent_safe(rdev->sysfs_state);
2527
2953079c 2528 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
a6da4ef8
GR
2529 if (mddev->degraded)
2530 set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
2531 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
2532 md_new_event(mddev);
2533 md_wakeup_thread(mddev->thread);
2534 return 0;
2535}
1da177e4 2536
7f6ce769 2537/* words written to sysfs files may, or may not, be \n terminated.
bce74dac
N
2538 * We want to accept with case. For this we use cmd_match.
2539 */
2540static int cmd_match(const char *cmd, const char *str)
2541{
2542 /* See if cmd, written into a sysfs file, matches
2543 * str. They must either be the same, or cmd can
2544 * have a trailing newline
2545 */
2546 while (*cmd && *str && *cmd == *str) {
2547 cmd++;
2548 str++;
2549 }
2550 if (*cmd == '\n')
2551 cmd++;
2552 if (*str || *cmd)
2553 return 0;
2554 return 1;
2555}
2556
86e6ffdd
N
2557struct rdev_sysfs_entry {
2558 struct attribute attr;
3cb03002
N
2559 ssize_t (*show)(struct md_rdev *, char *);
2560 ssize_t (*store)(struct md_rdev *, const char *, size_t);
86e6ffdd
N
2561};
2562
2563static ssize_t
3cb03002 2564state_show(struct md_rdev *rdev, char *page)
86e6ffdd 2565{
35b785f7 2566 char *sep = ",";
20a49ff6 2567 size_t len = 0;
758bfc8a 2568 unsigned long flags = ACCESS_ONCE(rdev->flags);
86e6ffdd 2569
758bfc8a 2570 if (test_bit(Faulty, &flags) ||
dcbcb486
TM
2571 (!test_bit(ExternalBbl, &flags) &&
2572 rdev->badblocks.unacked_exist))
35b785f7
TM
2573 len += sprintf(page+len, "faulty%s", sep);
2574 if (test_bit(In_sync, &flags))
2575 len += sprintf(page+len, "in_sync%s", sep);
2576 if (test_bit(Journal, &flags))
2577 len += sprintf(page+len, "journal%s", sep);
2578 if (test_bit(WriteMostly, &flags))
2579 len += sprintf(page+len, "write_mostly%s", sep);
758bfc8a 2580 if (test_bit(Blocked, &flags) ||
52c64152 2581 (rdev->badblocks.unacked_exist
35b785f7
TM
2582 && !test_bit(Faulty, &flags)))
2583 len += sprintf(page+len, "blocked%s", sep);
758bfc8a 2584 if (!test_bit(Faulty, &flags) &&
f2076e7d 2585 !test_bit(Journal, &flags) &&
35b785f7
TM
2586 !test_bit(In_sync, &flags))
2587 len += sprintf(page+len, "spare%s", sep);
2588 if (test_bit(WriteErrorSeen, &flags))
2589 len += sprintf(page+len, "write_error%s", sep);
2590 if (test_bit(WantReplacement, &flags))
2591 len += sprintf(page+len, "want_replacement%s", sep);
2592 if (test_bit(Replacement, &flags))
2593 len += sprintf(page+len, "replacement%s", sep);
2594 if (test_bit(ExternalBbl, &flags))
2595 len += sprintf(page+len, "external_bbl%s", sep);
688834e6
N
2596 if (test_bit(FailFast, &flags))
2597 len += sprintf(page+len, "failfast%s", sep);
35b785f7
TM
2598
2599 if (len)
2600 len -= strlen(sep);
2d78f8c4 2601
86e6ffdd
N
2602 return len+sprintf(page+len, "\n");
2603}
2604
45dc2de1 2605static ssize_t
3cb03002 2606state_store(struct md_rdev *rdev, const char *buf, size_t len)
45dc2de1
N
2607{
2608 /* can write
de393cde 2609 * faulty - simulates an error
45dc2de1 2610 * remove - disconnects the device
f655675b
N
2611 * writemostly - sets write_mostly
2612 * -writemostly - clears write_mostly
de393cde
N
2613 * blocked - sets the Blocked flags
2614 * -blocked - clears the Blocked and possibly simulates an error
6d56e278 2615 * insync - sets Insync providing device isn't active
f466722c
N
2616 * -insync - clear Insync for a device with a slot assigned,
2617 * so that it gets rebuilt based on bitmap
d7a9d443
N
2618 * write_error - sets WriteErrorSeen
2619 * -write_error - clears WriteErrorSeen
688834e6 2620 * {,-}failfast - set/clear FailFast
45dc2de1
N
2621 */
2622 int err = -EINVAL;
2623 if (cmd_match(buf, "faulty") && rdev->mddev->pers) {
2624 md_error(rdev->mddev, rdev);
5ef56c8f
N
2625 if (test_bit(Faulty, &rdev->flags))
2626 err = 0;
2627 else
2628 err = -EBUSY;
45dc2de1 2629 } else if (cmd_match(buf, "remove")) {
5d881783
SL
2630 if (rdev->mddev->pers) {
2631 clear_bit(Blocked, &rdev->flags);
2632 remove_and_add_spares(rdev->mddev, rdev);
2633 }
45dc2de1
N
2634 if (rdev->raid_disk >= 0)
2635 err = -EBUSY;
2636 else {
fd01b88c 2637 struct mddev *mddev = rdev->mddev;
45dc2de1 2638 err = 0;
a9720903
GJ
2639 if (mddev_is_clustered(mddev))
2640 err = md_cluster_ops->remove_disk(mddev, rdev);
2641
2642 if (err == 0) {
2643 md_kick_rdev_from_array(rdev);
060b0689 2644 if (mddev->pers) {
2953079c 2645 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
060b0689
N
2646 md_wakeup_thread(mddev->thread);
2647 }
a9720903
GJ
2648 md_new_event(mddev);
2649 }
45dc2de1 2650 }
f655675b
N
2651 } else if (cmd_match(buf, "writemostly")) {
2652 set_bit(WriteMostly, &rdev->flags);
2653 err = 0;
2654 } else if (cmd_match(buf, "-writemostly")) {
2655 clear_bit(WriteMostly, &rdev->flags);
6bfe0b49
DW
2656 err = 0;
2657 } else if (cmd_match(buf, "blocked")) {
2658 set_bit(Blocked, &rdev->flags);
2659 err = 0;
2660 } else if (cmd_match(buf, "-blocked")) {
de393cde 2661 if (!test_bit(Faulty, &rdev->flags) &&
dcbcb486 2662 !test_bit(ExternalBbl, &rdev->flags) &&
7da64a0a 2663 rdev->badblocks.unacked_exist) {
de393cde
N
2664 /* metadata handler doesn't understand badblocks,
2665 * so we need to fail the device
2666 */
2667 md_error(rdev->mddev, rdev);
2668 }
6bfe0b49 2669 clear_bit(Blocked, &rdev->flags);
de393cde 2670 clear_bit(BlockedBadBlocks, &rdev->flags);
6bfe0b49
DW
2671 wake_up(&rdev->blocked_wait);
2672 set_bit(MD_RECOVERY_NEEDED, &rdev->mddev->recovery);
2673 md_wakeup_thread(rdev->mddev->thread);
2674
6d56e278
N
2675 err = 0;
2676 } else if (cmd_match(buf, "insync") && rdev->raid_disk == -1) {
2677 set_bit(In_sync, &rdev->flags);
f655675b 2678 err = 0;
688834e6
N
2679 } else if (cmd_match(buf, "failfast")) {
2680 set_bit(FailFast, &rdev->flags);
2681 err = 0;
2682 } else if (cmd_match(buf, "-failfast")) {
2683 clear_bit(FailFast, &rdev->flags);
2684 err = 0;
f2076e7d
SL
2685 } else if (cmd_match(buf, "-insync") && rdev->raid_disk >= 0 &&
2686 !test_bit(Journal, &rdev->flags)) {
e1960f8c
N
2687 if (rdev->mddev->pers == NULL) {
2688 clear_bit(In_sync, &rdev->flags);
2689 rdev->saved_raid_disk = rdev->raid_disk;
2690 rdev->raid_disk = -1;
2691 err = 0;
2692 }
d7a9d443
N
2693 } else if (cmd_match(buf, "write_error")) {
2694 set_bit(WriteErrorSeen, &rdev->flags);
2695 err = 0;
2696 } else if (cmd_match(buf, "-write_error")) {
2697 clear_bit(WriteErrorSeen, &rdev->flags);
2698 err = 0;
2d78f8c4
N
2699 } else if (cmd_match(buf, "want_replacement")) {
2700 /* Any non-spare device that is not a replacement can
2701 * become want_replacement at any time, but we then need to
2702 * check if recovery is needed.
2703 */
2704 if (rdev->raid_disk >= 0 &&
f2076e7d 2705 !test_bit(Journal, &rdev->flags) &&
2d78f8c4
N
2706 !test_bit(Replacement, &rdev->flags))
2707 set_bit(WantReplacement, &rdev->flags);
2708 set_bit(MD_RECOVERY_NEEDED, &rdev->mddev->recovery);
2709 md_wakeup_thread(rdev->mddev->thread);
2710 err = 0;
2711 } else if (cmd_match(buf, "-want_replacement")) {
2712 /* Clearing 'want_replacement' is always allowed.
2713 * Once replacements starts it is too late though.
2714 */
2715 err = 0;
2716 clear_bit(WantReplacement, &rdev->flags);
2717 } else if (cmd_match(buf, "replacement")) {
2718 /* Can only set a device as a replacement when array has not
2719 * yet been started. Once running, replacement is automatic
2720 * from spares, or by assigning 'slot'.
2721 */
2722 if (rdev->mddev->pers)
2723 err = -EBUSY;
2724 else {
2725 set_bit(Replacement, &rdev->flags);
2726 err = 0;
2727 }
2728 } else if (cmd_match(buf, "-replacement")) {
2729 /* Similarly, can only clear Replacement before start */
2730 if (rdev->mddev->pers)
2731 err = -EBUSY;
2732 else {
2733 clear_bit(Replacement, &rdev->flags);
2734 err = 0;
2735 }
a6da4ef8
GR
2736 } else if (cmd_match(buf, "re-add")) {
2737 if (test_bit(Faulty, &rdev->flags) && (rdev->raid_disk == -1)) {
97f6cd39
GR
2738 /* clear_bit is performed _after_ all the devices
2739 * have their local Faulty bit cleared. If any writes
2740 * happen in the meantime in the local node, they
2741 * will land in the local bitmap, which will be synced
2742 * by this node eventually
2743 */
2744 if (!mddev_is_clustered(rdev->mddev) ||
2745 (err = md_cluster_ops->gather_bitmaps(rdev)) == 0) {
2746 clear_bit(Faulty, &rdev->flags);
2747 err = add_bound_rdev(rdev);
2748 }
a6da4ef8
GR
2749 } else
2750 err = -EBUSY;
35b785f7
TM
2751 } else if (cmd_match(buf, "external_bbl") && (rdev->mddev->external)) {
2752 set_bit(ExternalBbl, &rdev->flags);
2753 rdev->badblocks.shift = 0;
2754 err = 0;
2755 } else if (cmd_match(buf, "-external_bbl") && (rdev->mddev->external)) {
2756 clear_bit(ExternalBbl, &rdev->flags);
2757 err = 0;
45dc2de1 2758 }
00bcb4ac
N
2759 if (!err)
2760 sysfs_notify_dirent_safe(rdev->sysfs_state);
45dc2de1
N
2761 return err ? err : len;
2762}
80ca3a44 2763static struct rdev_sysfs_entry rdev_state =
750f199e 2764__ATTR_PREALLOC(state, S_IRUGO|S_IWUSR, state_show, state_store);
86e6ffdd 2765
4dbcdc75 2766static ssize_t
3cb03002 2767errors_show(struct md_rdev *rdev, char *page)
4dbcdc75
N
2768{
2769 return sprintf(page, "%d\n", atomic_read(&rdev->corrected_errors));
2770}
2771
2772static ssize_t
3cb03002 2773errors_store(struct md_rdev *rdev, const char *buf, size_t len)
4dbcdc75 2774{
4c9309c0
AD
2775 unsigned int n;
2776 int rv;
2777
2778 rv = kstrtouint(buf, 10, &n);
2779 if (rv < 0)
2780 return rv;
2781 atomic_set(&rdev->corrected_errors, n);
2782 return len;
4dbcdc75
N
2783}
2784static struct rdev_sysfs_entry rdev_errors =
80ca3a44 2785__ATTR(errors, S_IRUGO|S_IWUSR, errors_show, errors_store);
4dbcdc75 2786
014236d2 2787static ssize_t
3cb03002 2788slot_show(struct md_rdev *rdev, char *page)
014236d2 2789{
f2076e7d
SL
2790 if (test_bit(Journal, &rdev->flags))
2791 return sprintf(page, "journal\n");
2792 else if (rdev->raid_disk < 0)
014236d2
N
2793 return sprintf(page, "none\n");
2794 else
2795 return sprintf(page, "%d\n", rdev->raid_disk);
2796}
2797
2798static ssize_t
3cb03002 2799slot_store(struct md_rdev *rdev, const char *buf, size_t len)
014236d2 2800{
4c9309c0 2801 int slot;
c303da6d 2802 int err;
4c9309c0 2803
f2076e7d
SL
2804 if (test_bit(Journal, &rdev->flags))
2805 return -EBUSY;
014236d2
N
2806 if (strncmp(buf, "none", 4)==0)
2807 slot = -1;
4c9309c0
AD
2808 else {
2809 err = kstrtouint(buf, 10, (unsigned int *)&slot);
2810 if (err < 0)
2811 return err;
2812 }
6c2fce2e 2813 if (rdev->mddev->pers && slot == -1) {
c303da6d
N
2814 /* Setting 'slot' on an active array requires also
2815 * updating the 'rd%d' link, and communicating
2816 * with the personality with ->hot_*_disk.
2817 * For now we only support removing
2818 * failed/spare devices. This normally happens automatically,
2819 * but not when the metadata is externally managed.
2820 */
c303da6d
N
2821 if (rdev->raid_disk == -1)
2822 return -EEXIST;
2823 /* personality does all needed checks */
01393f3d 2824 if (rdev->mddev->pers->hot_remove_disk == NULL)
c303da6d 2825 return -EINVAL;
746d3207
N
2826 clear_bit(Blocked, &rdev->flags);
2827 remove_and_add_spares(rdev->mddev, rdev);
2828 if (rdev->raid_disk >= 0)
2829 return -EBUSY;
c303da6d
N
2830 set_bit(MD_RECOVERY_NEEDED, &rdev->mddev->recovery);
2831 md_wakeup_thread(rdev->mddev->thread);
6c2fce2e 2832 } else if (rdev->mddev->pers) {
6c2fce2e 2833 /* Activating a spare .. or possibly reactivating
6d56e278 2834 * if we ever get bitmaps working here.
6c2fce2e 2835 */
cb01c549 2836 int err;
6c2fce2e
NB
2837
2838 if (rdev->raid_disk != -1)
2839 return -EBUSY;
2840
c6751b2b
N
2841 if (test_bit(MD_RECOVERY_RUNNING, &rdev->mddev->recovery))
2842 return -EBUSY;
2843
6c2fce2e
NB
2844 if (rdev->mddev->pers->hot_add_disk == NULL)
2845 return -EINVAL;
2846
ba1b41b6
N
2847 if (slot >= rdev->mddev->raid_disks &&
2848 slot >= rdev->mddev->raid_disks + rdev->mddev->delta_disks)
2849 return -ENOSPC;
2850
6c2fce2e
NB
2851 rdev->raid_disk = slot;
2852 if (test_bit(In_sync, &rdev->flags))
2853 rdev->saved_raid_disk = slot;
2854 else
2855 rdev->saved_raid_disk = -1;
d30519fc 2856 clear_bit(In_sync, &rdev->flags);
8313b8e5 2857 clear_bit(Bitmap_sync, &rdev->flags);
cb01c549
GR
2858 err = rdev->mddev->pers->
2859 hot_add_disk(rdev->mddev, rdev);
2860 if (err) {
2861 rdev->raid_disk = -1;
2862 return err;
2863 } else
2864 sysfs_notify_dirent_safe(rdev->sysfs_state);
2865 if (sysfs_link_rdev(rdev->mddev, rdev))
2866 /* failure here is OK */;
6c2fce2e 2867 /* don't wakeup anyone, leave that to userspace. */
c303da6d 2868 } else {
ba1b41b6
N
2869 if (slot >= rdev->mddev->raid_disks &&
2870 slot >= rdev->mddev->raid_disks + rdev->mddev->delta_disks)
c303da6d
N
2871 return -ENOSPC;
2872 rdev->raid_disk = slot;
2873 /* assume it is working */
c5d79adb
N
2874 clear_bit(Faulty, &rdev->flags);
2875 clear_bit(WriteMostly, &rdev->flags);
c303da6d 2876 set_bit(In_sync, &rdev->flags);
00bcb4ac 2877 sysfs_notify_dirent_safe(rdev->sysfs_state);
c303da6d 2878 }
014236d2
N
2879 return len;
2880}
2881
014236d2 2882static struct rdev_sysfs_entry rdev_slot =
80ca3a44 2883__ATTR(slot, S_IRUGO|S_IWUSR, slot_show, slot_store);
014236d2 2884
93c8cad0 2885static ssize_t
3cb03002 2886offset_show(struct md_rdev *rdev, char *page)
93c8cad0 2887{
6961ece4 2888 return sprintf(page, "%llu\n", (unsigned long long)rdev->data_offset);
93c8cad0
N
2889}
2890
2891static ssize_t
3cb03002 2892offset_store(struct md_rdev *rdev, const char *buf, size_t len)
93c8cad0 2893{
c6563a8c 2894 unsigned long long offset;
b29bebd6 2895 if (kstrtoull(buf, 10, &offset) < 0)
93c8cad0 2896 return -EINVAL;
8ed0a521 2897 if (rdev->mddev->pers && rdev->raid_disk >= 0)
93c8cad0 2898 return -EBUSY;
dd8ac336 2899 if (rdev->sectors && rdev->mddev->external)
c5d79adb
N
2900 /* Must set offset before size, so overlap checks
2901 * can be sane */
2902 return -EBUSY;
93c8cad0 2903 rdev->data_offset = offset;
25f7fd47 2904 rdev->new_data_offset = offset;
93c8cad0
N
2905 return len;
2906}
2907
2908static struct rdev_sysfs_entry rdev_offset =
80ca3a44 2909__ATTR(offset, S_IRUGO|S_IWUSR, offset_show, offset_store);
93c8cad0 2910
c6563a8c
N
2911static ssize_t new_offset_show(struct md_rdev *rdev, char *page)
2912{
2913 return sprintf(page, "%llu\n",
2914 (unsigned long long)rdev->new_data_offset);
2915}
2916
2917static ssize_t new_offset_store(struct md_rdev *rdev,
2918 const char *buf, size_t len)
2919{
2920 unsigned long long new_offset;
2921 struct mddev *mddev = rdev->mddev;
2922
b29bebd6 2923 if (kstrtoull(buf, 10, &new_offset) < 0)
c6563a8c
N
2924 return -EINVAL;
2925
f851b60d
N
2926 if (mddev->sync_thread ||
2927 test_bit(MD_RECOVERY_RUNNING,&mddev->recovery))
c6563a8c
N
2928 return -EBUSY;
2929 if (new_offset == rdev->data_offset)
2930 /* reset is always permitted */
2931 ;
2932 else if (new_offset > rdev->data_offset) {
2933 /* must not push array size beyond rdev_sectors */
2934 if (new_offset - rdev->data_offset
2935 + mddev->dev_sectors > rdev->sectors)
2936 return -E2BIG;
2937 }
2938 /* Metadata worries about other space details. */
2939
2940 /* decreasing the offset is inconsistent with a backwards
2941 * reshape.
2942 */
2943 if (new_offset < rdev->data_offset &&
2944 mddev->reshape_backwards)
2945 return -EINVAL;
2946 /* Increasing offset is inconsistent with forwards
2947 * reshape. reshape_direction should be set to
2948 * 'backwards' first.
2949 */
2950 if (new_offset > rdev->data_offset &&
2951 !mddev->reshape_backwards)
2952 return -EINVAL;
2953
2954 if (mddev->pers && mddev->persistent &&
2955 !super_types[mddev->major_version]
2956 .allow_new_offset(rdev, new_offset))
2957 return -E2BIG;
2958 rdev->new_data_offset = new_offset;
2959 if (new_offset > rdev->data_offset)
2960 mddev->reshape_backwards = 1;
2961 else if (new_offset < rdev->data_offset)
2962 mddev->reshape_backwards = 0;
2963
2964 return len;
2965}
2966static struct rdev_sysfs_entry rdev_new_offset =
2967__ATTR(new_offset, S_IRUGO|S_IWUSR, new_offset_show, new_offset_store);
2968
83303b61 2969static ssize_t
3cb03002 2970rdev_size_show(struct md_rdev *rdev, char *page)
83303b61 2971{
dd8ac336 2972 return sprintf(page, "%llu\n", (unsigned long long)rdev->sectors / 2);
83303b61
N
2973}
2974
c5d79adb
N
2975static int overlaps(sector_t s1, sector_t l1, sector_t s2, sector_t l2)
2976{
2977 /* check if two start/length pairs overlap */
2978 if (s1+l1 <= s2)
2979 return 0;
2980 if (s2+l2 <= s1)
2981 return 0;
2982 return 1;
2983}
2984
b522adcd
DW
2985static int strict_blocks_to_sectors(const char *buf, sector_t *sectors)
2986{
2987 unsigned long long blocks;
2988 sector_t new;
2989
b29bebd6 2990 if (kstrtoull(buf, 10, &blocks) < 0)
b522adcd
DW
2991 return -EINVAL;
2992
2993 if (blocks & 1ULL << (8 * sizeof(blocks) - 1))
2994 return -EINVAL; /* sector conversion overflow */
2995
2996 new = blocks * 2;
2997 if (new != blocks * 2)
2998 return -EINVAL; /* unsigned long long to sector_t overflow */
2999
3000 *sectors = new;
3001 return 0;
3002}
3003
83303b61 3004static ssize_t
3cb03002 3005rdev_size_store(struct md_rdev *rdev, const char *buf, size_t len)
83303b61 3006{
fd01b88c 3007 struct mddev *my_mddev = rdev->mddev;
dd8ac336 3008 sector_t oldsectors = rdev->sectors;
b522adcd 3009 sector_t sectors;
27c529bb 3010
f2076e7d
SL
3011 if (test_bit(Journal, &rdev->flags))
3012 return -EBUSY;
b522adcd 3013 if (strict_blocks_to_sectors(buf, &sectors) < 0)
d7027458 3014 return -EINVAL;
c6563a8c
N
3015 if (rdev->data_offset != rdev->new_data_offset)
3016 return -EINVAL; /* too confusing */
0cd17fec 3017 if (my_mddev->pers && rdev->raid_disk >= 0) {
d7027458 3018 if (my_mddev->persistent) {
dd8ac336
AN
3019 sectors = super_types[my_mddev->major_version].
3020 rdev_size_change(rdev, sectors);
3021 if (!sectors)
0cd17fec 3022 return -EBUSY;
dd8ac336 3023 } else if (!sectors)
77304d2a 3024 sectors = (i_size_read(rdev->bdev->bd_inode) >> 9) -
dd8ac336 3025 rdev->data_offset;
a6468539
N
3026 if (!my_mddev->pers->resize)
3027 /* Cannot change size for RAID0 or Linear etc */
3028 return -EINVAL;
0cd17fec 3029 }
dd8ac336 3030 if (sectors < my_mddev->dev_sectors)
7d3c6f87 3031 return -EINVAL; /* component must fit device */
0cd17fec 3032
dd8ac336
AN
3033 rdev->sectors = sectors;
3034 if (sectors > oldsectors && my_mddev->external) {
8b1afc3d
N
3035 /* Need to check that all other rdevs with the same
3036 * ->bdev do not overlap. 'rcu' is sufficient to walk
3037 * the rdev lists safely.
3038 * This check does not provide a hard guarantee, it
3039 * just helps avoid dangerous mistakes.
c5d79adb 3040 */
fd01b88c 3041 struct mddev *mddev;
c5d79adb 3042 int overlap = 0;
159ec1fc 3043 struct list_head *tmp;
c5d79adb 3044
8b1afc3d 3045 rcu_read_lock();
29ac4aa3 3046 for_each_mddev(mddev, tmp) {
3cb03002 3047 struct md_rdev *rdev2;
c5d79adb 3048
dafb20fa 3049 rdev_for_each(rdev2, mddev)
f21e9ff7
N
3050 if (rdev->bdev == rdev2->bdev &&
3051 rdev != rdev2 &&
3052 overlaps(rdev->data_offset, rdev->sectors,
3053 rdev2->data_offset,
3054 rdev2->sectors)) {
c5d79adb
N
3055 overlap = 1;
3056 break;
3057 }
c5d79adb
N
3058 if (overlap) {
3059 mddev_put(mddev);
3060 break;
3061 }
3062 }
8b1afc3d 3063 rcu_read_unlock();
c5d79adb
N
3064 if (overlap) {
3065 /* Someone else could have slipped in a size
3066 * change here, but doing so is just silly.
dd8ac336 3067 * We put oldsectors back because we *know* it is
c5d79adb
N
3068 * safe, and trust userspace not to race with
3069 * itself
3070 */
dd8ac336 3071 rdev->sectors = oldsectors;
c5d79adb
N
3072 return -EBUSY;
3073 }
3074 }
83303b61
N
3075 return len;
3076}
3077
3078static struct rdev_sysfs_entry rdev_size =
80ca3a44 3079__ATTR(size, S_IRUGO|S_IWUSR, rdev_size_show, rdev_size_store);
83303b61 3080
3cb03002 3081static ssize_t recovery_start_show(struct md_rdev *rdev, char *page)
06e3c817
DW
3082{
3083 unsigned long long recovery_start = rdev->recovery_offset;
3084
3085 if (test_bit(In_sync, &rdev->flags) ||
3086 recovery_start == MaxSector)
3087 return sprintf(page, "none\n");
3088
3089 return sprintf(page, "%llu\n", recovery_start);
3090}
3091
3cb03002 3092static ssize_t recovery_start_store(struct md_rdev *rdev, const char *buf, size_t len)
06e3c817
DW
3093{
3094 unsigned long long recovery_start;
3095
3096 if (cmd_match(buf, "none"))
3097 recovery_start = MaxSector;
b29bebd6 3098 else if (kstrtoull(buf, 10, &recovery_start))
06e3c817
DW
3099 return -EINVAL;
3100
3101 if (rdev->mddev->pers &&
3102 rdev->raid_disk >= 0)
3103 return -EBUSY;
3104
3105 rdev->recovery_offset = recovery_start;
3106 if (recovery_start == MaxSector)
3107 set_bit(In_sync, &rdev->flags);
3108 else
3109 clear_bit(In_sync, &rdev->flags);
3110 return len;
3111}
3112
3113static struct rdev_sysfs_entry rdev_recovery_start =
3114__ATTR(recovery_start, S_IRUGO|S_IWUSR, recovery_start_show, recovery_start_store);
3115
fc974ee2
VV
3116/* sysfs access to bad-blocks list.
3117 * We present two files.
3118 * 'bad-blocks' lists sector numbers and lengths of ranges that
3119 * are recorded as bad. The list is truncated to fit within
3120 * the one-page limit of sysfs.
3121 * Writing "sector length" to this file adds an acknowledged
3122 * bad block list.
3123 * 'unacknowledged-bad-blocks' lists bad blocks that have not yet
3124 * been acknowledged. Writing to this file adds bad blocks
3125 * without acknowledging them. This is largely for testing.
3126 */
3cb03002 3127static ssize_t bb_show(struct md_rdev *rdev, char *page)
16c791a5
N
3128{
3129 return badblocks_show(&rdev->badblocks, page, 0);
3130}
3cb03002 3131static ssize_t bb_store(struct md_rdev *rdev, const char *page, size_t len)
16c791a5 3132{
de393cde
N
3133 int rv = badblocks_store(&rdev->badblocks, page, len, 0);
3134 /* Maybe that ack was all we needed */
3135 if (test_and_clear_bit(BlockedBadBlocks, &rdev->flags))
3136 wake_up(&rdev->blocked_wait);
3137 return rv;
16c791a5
N
3138}
3139static struct rdev_sysfs_entry rdev_bad_blocks =
3140__ATTR(bad_blocks, S_IRUGO|S_IWUSR, bb_show, bb_store);
3141
3cb03002 3142static ssize_t ubb_show(struct md_rdev *rdev, char *page)
16c791a5
N
3143{
3144 return badblocks_show(&rdev->badblocks, page, 1);
3145}
3cb03002 3146static ssize_t ubb_store(struct md_rdev *rdev, const char *page, size_t len)
16c791a5
N
3147{
3148 return badblocks_store(&rdev->badblocks, page, len, 1);
3149}
3150static struct rdev_sysfs_entry rdev_unack_bad_blocks =
3151__ATTR(unacknowledged_bad_blocks, S_IRUGO|S_IWUSR, ubb_show, ubb_store);
3152
664aed04
AP
3153static ssize_t
3154ppl_sector_show(struct md_rdev *rdev, char *page)
3155{
3156 return sprintf(page, "%llu\n", (unsigned long long)rdev->ppl.sector);
3157}
3158
3159static ssize_t
3160ppl_sector_store(struct md_rdev *rdev, const char *buf, size_t len)
3161{
3162 unsigned long long sector;
3163
3164 if (kstrtoull(buf, 10, &sector) < 0)
3165 return -EINVAL;
3166 if (sector != (sector_t)sector)
3167 return -EINVAL;
3168
3169 if (rdev->mddev->pers && test_bit(MD_HAS_PPL, &rdev->mddev->flags) &&
3170 rdev->raid_disk >= 0)
3171 return -EBUSY;
3172
3173 if (rdev->mddev->persistent) {
3174 if (rdev->mddev->major_version == 0)
3175 return -EINVAL;
3176 if ((sector > rdev->sb_start &&
3177 sector - rdev->sb_start > S16_MAX) ||
3178 (sector < rdev->sb_start &&
3179 rdev->sb_start - sector > -S16_MIN))
3180 return -EINVAL;
3181 rdev->ppl.offset = sector - rdev->sb_start;
3182 } else if (!rdev->mddev->external) {
3183 return -EBUSY;
3184 }
3185 rdev->ppl.sector = sector;
3186 return len;
3187}
3188
3189static struct rdev_sysfs_entry rdev_ppl_sector =
3190__ATTR(ppl_sector, S_IRUGO|S_IWUSR, ppl_sector_show, ppl_sector_store);
3191
3192static ssize_t
3193ppl_size_show(struct md_rdev *rdev, char *page)
3194{
3195 return sprintf(page, "%u\n", rdev->ppl.size);
3196}
3197
3198static ssize_t
3199ppl_size_store(struct md_rdev *rdev, const char *buf, size_t len)
3200{
3201 unsigned int size;
3202
3203 if (kstrtouint(buf, 10, &size) < 0)
3204 return -EINVAL;
3205
3206 if (rdev->mddev->pers && test_bit(MD_HAS_PPL, &rdev->mddev->flags) &&
3207 rdev->raid_disk >= 0)
3208 return -EBUSY;
3209
3210 if (rdev->mddev->persistent) {
3211 if (rdev->mddev->major_version == 0)
3212 return -EINVAL;
3213 if (size > U16_MAX)
3214 return -EINVAL;
3215 } else if (!rdev->mddev->external) {
3216 return -EBUSY;
3217 }
3218 rdev->ppl.size = size;
3219 return len;
3220}
3221
3222static struct rdev_sysfs_entry rdev_ppl_size =
3223__ATTR(ppl_size, S_IRUGO|S_IWUSR, ppl_size_show, ppl_size_store);
3224
86e6ffdd
N
3225static struct attribute *rdev_default_attrs[] = {
3226 &rdev_state.attr,
4dbcdc75 3227 &rdev_errors.attr,
014236d2 3228 &rdev_slot.attr,
93c8cad0 3229 &rdev_offset.attr,
c6563a8c 3230 &rdev_new_offset.attr,
83303b61 3231 &rdev_size.attr,
06e3c817 3232 &rdev_recovery_start.attr,
16c791a5
N
3233 &rdev_bad_blocks.attr,
3234 &rdev_unack_bad_blocks.attr,
664aed04
AP
3235 &rdev_ppl_sector.attr,
3236 &rdev_ppl_size.attr,
86e6ffdd
N
3237 NULL,
3238};
3239static ssize_t
3240rdev_attr_show(struct kobject *kobj, struct attribute *attr, char *page)
3241{
3242 struct rdev_sysfs_entry *entry = container_of(attr, struct rdev_sysfs_entry, attr);
3cb03002 3243 struct md_rdev *rdev = container_of(kobj, struct md_rdev, kobj);
86e6ffdd
N
3244
3245 if (!entry->show)
3246 return -EIO;
758bfc8a
N
3247 if (!rdev->mddev)
3248 return -EBUSY;
3249 return entry->show(rdev, page);
86e6ffdd
N
3250}
3251
3252static ssize_t
3253rdev_attr_store(struct kobject *kobj, struct attribute *attr,
3254 const char *page, size_t length)
3255{
3256 struct rdev_sysfs_entry *entry = container_of(attr, struct rdev_sysfs_entry, attr);
3cb03002 3257 struct md_rdev *rdev = container_of(kobj, struct md_rdev, kobj);
27c529bb 3258 ssize_t rv;
fd01b88c 3259 struct mddev *mddev = rdev->mddev;
86e6ffdd
N
3260
3261 if (!entry->store)
3262 return -EIO;
67463acb
N
3263 if (!capable(CAP_SYS_ADMIN))
3264 return -EACCES;
27c529bb 3265 rv = mddev ? mddev_lock(mddev): -EBUSY;
ca388059 3266 if (!rv) {
27c529bb
N
3267 if (rdev->mddev == NULL)
3268 rv = -EBUSY;
3269 else
3270 rv = entry->store(rdev, page, length);
6a51830e 3271 mddev_unlock(mddev);
ca388059
N
3272 }
3273 return rv;
86e6ffdd
N
3274}
3275
3276static void rdev_free(struct kobject *ko)
3277{
3cb03002 3278 struct md_rdev *rdev = container_of(ko, struct md_rdev, kobj);
86e6ffdd
N
3279 kfree(rdev);
3280}
52cf25d0 3281static const struct sysfs_ops rdev_sysfs_ops = {
86e6ffdd
N
3282 .show = rdev_attr_show,
3283 .store = rdev_attr_store,
3284};
3285static struct kobj_type rdev_ktype = {
3286 .release = rdev_free,
3287 .sysfs_ops = &rdev_sysfs_ops,
3288 .default_attrs = rdev_default_attrs,
3289};
3290
3cb03002 3291int md_rdev_init(struct md_rdev *rdev)
e8bb9a83
N
3292{
3293 rdev->desc_nr = -1;
3294 rdev->saved_raid_disk = -1;
3295 rdev->raid_disk = -1;
3296 rdev->flags = 0;
3297 rdev->data_offset = 0;
c6563a8c 3298 rdev->new_data_offset = 0;
e8bb9a83 3299 rdev->sb_events = 0;
0e3ef49e 3300 rdev->last_read_error = 0;
2699b672
N
3301 rdev->sb_loaded = 0;
3302 rdev->bb_page = NULL;
e8bb9a83
N
3303 atomic_set(&rdev->nr_pending, 0);
3304 atomic_set(&rdev->read_errors, 0);
3305 atomic_set(&rdev->corrected_errors, 0);
3306
3307 INIT_LIST_HEAD(&rdev->same_set);
3308 init_waitqueue_head(&rdev->blocked_wait);
2230dfe4
N
3309
3310 /* Add space to store bad block list.
3311 * This reserves the space even on arrays where it cannot
3312 * be used - I wonder if that matters
3313 */
fc974ee2 3314 return badblocks_init(&rdev->badblocks, 0);
e8bb9a83
N
3315}
3316EXPORT_SYMBOL_GPL(md_rdev_init);
1da177e4
LT
3317/*
3318 * Import a device. If 'super_format' >= 0, then sanity check the superblock
3319 *
3320 * mark the device faulty if:
3321 *
3322 * - the device is nonexistent (zero size)
3323 * - the device has no valid superblock
3324 *
3325 * a faulty rdev _never_ has rdev->sb set.
3326 */
3cb03002 3327static struct md_rdev *md_import_device(dev_t newdev, int super_format, int super_minor)
1da177e4
LT
3328{
3329 char b[BDEVNAME_SIZE];
3330 int err;
3cb03002 3331 struct md_rdev *rdev;
1da177e4
LT
3332 sector_t size;
3333
9ffae0cf 3334 rdev = kzalloc(sizeof(*rdev), GFP_KERNEL);
9d48739e 3335 if (!rdev)
1da177e4 3336 return ERR_PTR(-ENOMEM);
1da177e4 3337
2230dfe4
N
3338 err = md_rdev_init(rdev);
3339 if (err)
3340 goto abort_free;
3341 err = alloc_disk_sb(rdev);
3342 if (err)
1da177e4
LT
3343 goto abort_free;
3344
c5d79adb 3345 err = lock_rdev(rdev, newdev, super_format == -2);
1da177e4
LT
3346 if (err)
3347 goto abort_free;
3348
f9cb074b 3349 kobject_init(&rdev->kobj, &rdev_ktype);
86e6ffdd 3350
77304d2a 3351 size = i_size_read(rdev->bdev->bd_inode) >> BLOCK_SIZE_BITS;
1da177e4 3352 if (!size) {
9d48739e 3353 pr_warn("md: %s has zero or unknown size, marking faulty!\n",
1da177e4
LT
3354 bdevname(rdev->bdev,b));
3355 err = -EINVAL;
3356 goto abort_free;
3357 }
3358
3359 if (super_format >= 0) {
3360 err = super_types[super_format].
3361 load_super(rdev, NULL, super_minor);
3362 if (err == -EINVAL) {
9d48739e 3363 pr_warn("md: %s does not have a valid v%d.%d superblock, not importing!\n",
df968c4e 3364 bdevname(rdev->bdev,b),
9d48739e 3365 super_format, super_minor);
1da177e4
LT
3366 goto abort_free;
3367 }
3368 if (err < 0) {
9d48739e 3369 pr_warn("md: could not read %s's sb, not importing!\n",
1da177e4
LT
3370 bdevname(rdev->bdev,b));
3371 goto abort_free;
3372 }
3373 }
6bfe0b49 3374
1da177e4
LT
3375 return rdev;
3376
3377abort_free:
2699b672
N
3378 if (rdev->bdev)
3379 unlock_rdev(rdev);
545c8795 3380 md_rdev_clear(rdev);
1da177e4
LT
3381 kfree(rdev);
3382 return ERR_PTR(err);
3383}
3384
3385/*
3386 * Check a full RAID array for plausibility
3387 */
3388
f72ffdd6 3389static void analyze_sbs(struct mddev *mddev)
1da177e4
LT
3390{
3391 int i;
3cb03002 3392 struct md_rdev *rdev, *freshest, *tmp;
1da177e4
LT
3393 char b[BDEVNAME_SIZE];
3394
3395 freshest = NULL;
dafb20fa 3396 rdev_for_each_safe(rdev, tmp, mddev)
1da177e4
LT
3397 switch (super_types[mddev->major_version].
3398 load_super(rdev, freshest, mddev->minor_version)) {
3399 case 1:
3400 freshest = rdev;
3401 break;
3402 case 0:
3403 break;
3404 default:
9d48739e 3405 pr_warn("md: fatal superblock inconsistency in %s -- removing from array\n",
1da177e4 3406 bdevname(rdev->bdev,b));
fb56dfef 3407 md_kick_rdev_from_array(rdev);
1da177e4
LT
3408 }
3409
1da177e4
LT
3410 super_types[mddev->major_version].
3411 validate_super(mddev, freshest);
3412
3413 i = 0;
dafb20fa 3414 rdev_for_each_safe(rdev, tmp, mddev) {
233fca36
N
3415 if (mddev->max_disks &&
3416 (rdev->desc_nr >= mddev->max_disks ||
3417 i > mddev->max_disks)) {
9d48739e
N
3418 pr_warn("md: %s: %s: only %d devices permitted\n",
3419 mdname(mddev), bdevname(rdev->bdev, b),
3420 mddev->max_disks);
fb56dfef 3421 md_kick_rdev_from_array(rdev);
de01dfad
N
3422 continue;
3423 }
1aee41f6 3424 if (rdev != freshest) {
1da177e4
LT
3425 if (super_types[mddev->major_version].
3426 validate_super(mddev, rdev)) {
9d48739e 3427 pr_warn("md: kicking non-fresh %s from array!\n",
1da177e4 3428 bdevname(rdev->bdev,b));
fb56dfef 3429 md_kick_rdev_from_array(rdev);
1da177e4
LT
3430 continue;
3431 }
1aee41f6 3432 }
1da177e4
LT
3433 if (mddev->level == LEVEL_MULTIPATH) {
3434 rdev->desc_nr = i++;
3435 rdev->raid_disk = rdev->desc_nr;
b2d444d7 3436 set_bit(In_sync, &rdev->flags);
f2076e7d
SL
3437 } else if (rdev->raid_disk >=
3438 (mddev->raid_disks - min(0, mddev->delta_disks)) &&
3439 !test_bit(Journal, &rdev->flags)) {
a778b73f
N
3440 rdev->raid_disk = -1;
3441 clear_bit(In_sync, &rdev->flags);
1da177e4
LT
3442 }
3443 }
1da177e4
LT
3444}
3445
72e02075
N
3446/* Read a fixed-point number.
3447 * Numbers in sysfs attributes should be in "standard" units where
3448 * possible, so time should be in seconds.
f72ffdd6 3449 * However we internally use a a much smaller unit such as
72e02075
N
3450 * milliseconds or jiffies.
3451 * This function takes a decimal number with a possible fractional
3452 * component, and produces an integer which is the result of
3453 * multiplying that number by 10^'scale'.
3454 * all without any floating-point arithmetic.
3455 */
3456int strict_strtoul_scaled(const char *cp, unsigned long *res, int scale)
3457{
3458 unsigned long result = 0;
3459 long decimals = -1;
3460 while (isdigit(*cp) || (*cp == '.' && decimals < 0)) {
3461 if (*cp == '.')
3462 decimals = 0;
3463 else if (decimals < scale) {
3464 unsigned int value;
3465 value = *cp - '0';
3466 result = result * 10 + value;
3467 if (decimals >= 0)
3468 decimals++;
3469 }
3470 cp++;
3471 }
3472 if (*cp == '\n')
3473 cp++;
3474 if (*cp)
3475 return -EINVAL;
3476 if (decimals < 0)
3477 decimals = 0;
3478 while (decimals < scale) {
3479 result *= 10;
3480 decimals ++;
3481 }
3482 *res = result;
3483 return 0;
3484}
3485
16f17b39 3486static ssize_t
fd01b88c 3487safe_delay_show(struct mddev *mddev, char *page)
16f17b39
N
3488{
3489 int msec = (mddev->safemode_delay*1000)/HZ;
3490 return sprintf(page, "%d.%03d\n", msec/1000, msec%1000);
3491}
3492static ssize_t
fd01b88c 3493safe_delay_store(struct mddev *mddev, const char *cbuf, size_t len)
16f17b39 3494{
16f17b39 3495 unsigned long msec;
97ce0a7f 3496
28c1b9fd 3497 if (mddev_is_clustered(mddev)) {
9d48739e 3498 pr_warn("md: Safemode is disabled for clustered mode\n");
28c1b9fd
GR
3499 return -EINVAL;
3500 }
3501
72e02075 3502 if (strict_strtoul_scaled(cbuf, &msec, 3) < 0)
16f17b39 3503 return -EINVAL;
16f17b39
N
3504 if (msec == 0)
3505 mddev->safemode_delay = 0;
3506 else {
19052c0e 3507 unsigned long old_delay = mddev->safemode_delay;
1b30e66f
N
3508 unsigned long new_delay = (msec*HZ)/1000;
3509
3510 if (new_delay == 0)
3511 new_delay = 1;
3512 mddev->safemode_delay = new_delay;
3513 if (new_delay < old_delay || old_delay == 0)
3514 mod_timer(&mddev->safemode_timer, jiffies+1);
16f17b39
N
3515 }
3516 return len;
3517}
3518static struct md_sysfs_entry md_safe_delay =
80ca3a44 3519__ATTR(safe_mode_delay, S_IRUGO|S_IWUSR,safe_delay_show, safe_delay_store);
16f17b39 3520
eae1701f 3521static ssize_t
fd01b88c 3522level_show(struct mddev *mddev, char *page)
eae1701f 3523{
36d091f4
N
3524 struct md_personality *p;
3525 int ret;
3526 spin_lock(&mddev->lock);
3527 p = mddev->pers;
d9d166c2 3528 if (p)
36d091f4 3529 ret = sprintf(page, "%s\n", p->name);
d9d166c2 3530 else if (mddev->clevel[0])
36d091f4 3531 ret = sprintf(page, "%s\n", mddev->clevel);
d9d166c2 3532 else if (mddev->level != LEVEL_NONE)
36d091f4 3533 ret = sprintf(page, "%d\n", mddev->level);
d9d166c2 3534 else
36d091f4
N
3535 ret = 0;
3536 spin_unlock(&mddev->lock);
3537 return ret;
eae1701f
N
3538}
3539
d9d166c2 3540static ssize_t
fd01b88c 3541level_store(struct mddev *mddev, const char *buf, size_t len)
d9d166c2 3542{
f2859af6 3543 char clevel[16];
6791875e
N
3544 ssize_t rv;
3545 size_t slen = len;
db721d32 3546 struct md_personality *pers, *oldpers;
f2859af6 3547 long level;
db721d32 3548 void *priv, *oldpriv;
3cb03002 3549 struct md_rdev *rdev;
245f46c2 3550
6791875e
N
3551 if (slen == 0 || slen >= sizeof(clevel))
3552 return -EINVAL;
3553
3554 rv = mddev_lock(mddev);
3555 if (rv)
3556 return rv;
3557
245f46c2 3558 if (mddev->pers == NULL) {
6791875e
N
3559 strncpy(mddev->clevel, buf, slen);
3560 if (mddev->clevel[slen-1] == '\n')
3561 slen--;
3562 mddev->clevel[slen] = 0;
245f46c2 3563 mddev->level = LEVEL_NONE;
6791875e
N
3564 rv = len;
3565 goto out_unlock;
245f46c2 3566 }
6791875e 3567 rv = -EROFS;
bd8839e0 3568 if (mddev->ro)
6791875e 3569 goto out_unlock;
245f46c2
N
3570
3571 /* request to change the personality. Need to ensure:
3572 * - array is not engaged in resync/recovery/reshape
3573 * - old personality can be suspended
3574 * - new personality will access other array.
3575 */
3576
6791875e 3577 rv = -EBUSY;
bb4f1e9d 3578 if (mddev->sync_thread ||
f851b60d 3579 test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) ||
bb4f1e9d
N
3580 mddev->reshape_position != MaxSector ||
3581 mddev->sysfs_active)
6791875e 3582 goto out_unlock;
245f46c2 3583
6791875e 3584 rv = -EINVAL;
245f46c2 3585 if (!mddev->pers->quiesce) {
9d48739e
N
3586 pr_warn("md: %s: %s does not support online personality change\n",
3587 mdname(mddev), mddev->pers->name);
6791875e 3588 goto out_unlock;
245f46c2
N
3589 }
3590
3591 /* Now find the new personality */
6791875e
N
3592 strncpy(clevel, buf, slen);
3593 if (clevel[slen-1] == '\n')
3594 slen--;
3595 clevel[slen] = 0;
b29bebd6 3596 if (kstrtol(clevel, 10, &level))
f2859af6 3597 level = LEVEL_NONE;
245f46c2 3598
f2859af6
DW
3599 if (request_module("md-%s", clevel) != 0)
3600 request_module("md-level-%s", clevel);
245f46c2 3601 spin_lock(&pers_lock);
f2859af6 3602 pers = find_pers(level, clevel);
245f46c2
N
3603 if (!pers || !try_module_get(pers->owner)) {
3604 spin_unlock(&pers_lock);
9d48739e 3605 pr_warn("md: personality %s not loaded\n", clevel);
6791875e
N
3606 rv = -EINVAL;
3607 goto out_unlock;
245f46c2
N
3608 }
3609 spin_unlock(&pers_lock);
3610
3611 if (pers == mddev->pers) {
3612 /* Nothing to do! */
3613 module_put(pers->owner);
6791875e
N
3614 rv = len;
3615 goto out_unlock;
245f46c2
N
3616 }
3617 if (!pers->takeover) {
3618 module_put(pers->owner);
9d48739e
N
3619 pr_warn("md: %s: %s does not support personality takeover\n",
3620 mdname(mddev), clevel);
6791875e
N
3621 rv = -EINVAL;
3622 goto out_unlock;
245f46c2
N
3623 }
3624
dafb20fa 3625 rdev_for_each(rdev, mddev)
e93f68a1
N
3626 rdev->new_raid_disk = rdev->raid_disk;
3627
245f46c2
N
3628 /* ->takeover must set new_* and/or delta_disks
3629 * if it succeeds, and may set them when it fails.
3630 */
3631 priv = pers->takeover(mddev);
3632 if (IS_ERR(priv)) {
3633 mddev->new_level = mddev->level;
3634 mddev->new_layout = mddev->layout;
664e7c41 3635 mddev->new_chunk_sectors = mddev->chunk_sectors;
245f46c2
N
3636 mddev->raid_disks -= mddev->delta_disks;
3637 mddev->delta_disks = 0;
2c810cdd 3638 mddev->reshape_backwards = 0;
245f46c2 3639 module_put(pers->owner);
9d48739e
N
3640 pr_warn("md: %s: %s would not accept array\n",
3641 mdname(mddev), clevel);
6791875e
N
3642 rv = PTR_ERR(priv);
3643 goto out_unlock;
245f46c2
N
3644 }
3645
3646 /* Looks like we have a winner */
3647 mddev_suspend(mddev);
5aa61f42 3648 mddev_detach(mddev);
36d091f4
N
3649
3650 spin_lock(&mddev->lock);
db721d32
N
3651 oldpers = mddev->pers;
3652 oldpriv = mddev->private;
3653 mddev->pers = pers;
3654 mddev->private = priv;
3655 strlcpy(mddev->clevel, pers->name, sizeof(mddev->clevel));
3656 mddev->level = mddev->new_level;
3657 mddev->layout = mddev->new_layout;
3658 mddev->chunk_sectors = mddev->new_chunk_sectors;
3659 mddev->delta_disks = 0;
3660 mddev->reshape_backwards = 0;
3661 mddev->degraded = 0;
36d091f4 3662 spin_unlock(&mddev->lock);
db721d32
N
3663
3664 if (oldpers->sync_request == NULL &&
3665 mddev->external) {
3666 /* We are converting from a no-redundancy array
3667 * to a redundancy array and metadata is managed
3668 * externally so we need to be sure that writes
3669 * won't block due to a need to transition
3670 * clean->dirty
3671 * until external management is started.
3672 */
3673 mddev->in_sync = 0;
3674 mddev->safemode_delay = 0;
3675 mddev->safemode = 0;
3676 }
f72ffdd6 3677
db721d32
N
3678 oldpers->free(mddev, oldpriv);
3679
3680 if (oldpers->sync_request == NULL &&
a64c876f
N
3681 pers->sync_request != NULL) {
3682 /* need to add the md_redundancy_group */
3683 if (sysfs_create_group(&mddev->kobj, &md_redundancy_group))
9d48739e
N
3684 pr_warn("md: cannot register extra attributes for %s\n",
3685 mdname(mddev));
388975cc 3686 mddev->sysfs_action = sysfs_get_dirent(mddev->kobj.sd, "sync_action");
f72ffdd6 3687 }
db721d32 3688 if (oldpers->sync_request != NULL &&
a64c876f
N
3689 pers->sync_request == NULL) {
3690 /* need to remove the md_redundancy_group */
3691 if (mddev->to_remove == NULL)
3692 mddev->to_remove = &md_redundancy_group;
3693 }
3694
4cb9da7d
AO
3695 module_put(oldpers->owner);
3696
dafb20fa 3697 rdev_for_each(rdev, mddev) {
e93f68a1
N
3698 if (rdev->raid_disk < 0)
3699 continue;
bf2cb0da 3700 if (rdev->new_raid_disk >= mddev->raid_disks)
e93f68a1
N
3701 rdev->new_raid_disk = -1;
3702 if (rdev->new_raid_disk == rdev->raid_disk)
3703 continue;
36fad858 3704 sysfs_unlink_rdev(mddev, rdev);
e93f68a1 3705 }
dafb20fa 3706 rdev_for_each(rdev, mddev) {
e93f68a1
N
3707 if (rdev->raid_disk < 0)
3708 continue;
3709 if (rdev->new_raid_disk == rdev->raid_disk)
3710 continue;
3711 rdev->raid_disk = rdev->new_raid_disk;
3712 if (rdev->raid_disk < 0)
3a981b03 3713 clear_bit(In_sync, &rdev->flags);
e93f68a1 3714 else {
36fad858 3715 if (sysfs_link_rdev(mddev, rdev))
9d48739e
N
3716 pr_warn("md: cannot register rd%d for %s after level change\n",
3717 rdev->raid_disk, mdname(mddev));
3a981b03 3718 }
e93f68a1
N
3719 }
3720
db721d32 3721 if (pers->sync_request == NULL) {
9af204cf
TM
3722 /* this is now an array without redundancy, so
3723 * it must always be in_sync
3724 */
3725 mddev->in_sync = 1;
3726 del_timer_sync(&mddev->safemode_timer);
3727 }
02e5f5c0 3728 blk_set_stacking_limits(&mddev->queue->limits);
245f46c2 3729 pers->run(mddev);
2953079c 3730 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
47525e59 3731 mddev_resume(mddev);
830778a1
N
3732 if (!mddev->thread)
3733 md_update_sb(mddev, 1);
5cac7861 3734 sysfs_notify(&mddev->kobj, NULL, "level");
bb7f8d22 3735 md_new_event(mddev);
6791875e
N
3736 rv = len;
3737out_unlock:
3738 mddev_unlock(mddev);
d9d166c2
N
3739 return rv;
3740}
3741
3742static struct md_sysfs_entry md_level =
80ca3a44 3743__ATTR(level, S_IRUGO|S_IWUSR, level_show, level_store);
eae1701f 3744
d4dbd025 3745static ssize_t
fd01b88c 3746layout_show(struct mddev *mddev, char *page)
d4dbd025
N
3747{
3748 /* just a number, not meaningful for all levels */
08a02ecd
N
3749 if (mddev->reshape_position != MaxSector &&
3750 mddev->layout != mddev->new_layout)
3751 return sprintf(page, "%d (%d)\n",
3752 mddev->new_layout, mddev->layout);
d4dbd025
N
3753 return sprintf(page, "%d\n", mddev->layout);
3754}
3755
3756static ssize_t
fd01b88c 3757layout_store(struct mddev *mddev, const char *buf, size_t len)
d4dbd025 3758{
4c9309c0 3759 unsigned int n;
6791875e 3760 int err;
d4dbd025 3761
4c9309c0
AD
3762 err = kstrtouint(buf, 10, &n);
3763 if (err < 0)
3764 return err;
6791875e
N
3765 err = mddev_lock(mddev);
3766 if (err)
3767 return err;
d4dbd025 3768
b3546035 3769 if (mddev->pers) {
50ac168a 3770 if (mddev->pers->check_reshape == NULL)
6791875e
N
3771 err = -EBUSY;
3772 else if (mddev->ro)
3773 err = -EROFS;
3774 else {
3775 mddev->new_layout = n;
3776 err = mddev->pers->check_reshape(mddev);
3777 if (err)
3778 mddev->new_layout = mddev->layout;
597a711b 3779 }
b3546035 3780 } else {
08a02ecd 3781 mddev->new_layout = n;
b3546035
N
3782 if (mddev->reshape_position == MaxSector)
3783 mddev->layout = n;
3784 }
6791875e
N
3785 mddev_unlock(mddev);
3786 return err ?: len;
d4dbd025
N
3787}
3788static struct md_sysfs_entry md_layout =
80ca3a44 3789__ATTR(layout, S_IRUGO|S_IWUSR, layout_show, layout_store);
d4dbd025 3790
eae1701f 3791static ssize_t
fd01b88c 3792raid_disks_show(struct mddev *mddev, char *page)
eae1701f 3793{
bb636547
N
3794 if (mddev->raid_disks == 0)
3795 return 0;
08a02ecd
N
3796 if (mddev->reshape_position != MaxSector &&
3797 mddev->delta_disks != 0)
3798 return sprintf(page, "%d (%d)\n", mddev->raid_disks,
3799 mddev->raid_disks - mddev->delta_disks);
eae1701f
N
3800 return sprintf(page, "%d\n", mddev->raid_disks);
3801}
3802
fd01b88c 3803static int update_raid_disks(struct mddev *mddev, int raid_disks);
da943b99
N
3804
3805static ssize_t
fd01b88c 3806raid_disks_store(struct mddev *mddev, const char *buf, size_t len)
da943b99 3807{
4c9309c0 3808 unsigned int n;
6791875e 3809 int err;
da943b99 3810
4c9309c0
AD
3811 err = kstrtouint(buf, 10, &n);
3812 if (err < 0)
3813 return err;
da943b99 3814
6791875e
N
3815 err = mddev_lock(mddev);
3816 if (err)
3817 return err;
da943b99 3818 if (mddev->pers)
6791875e 3819 err = update_raid_disks(mddev, n);
08a02ecd 3820 else if (mddev->reshape_position != MaxSector) {
c6563a8c 3821 struct md_rdev *rdev;
08a02ecd 3822 int olddisks = mddev->raid_disks - mddev->delta_disks;
c6563a8c 3823
6791875e 3824 err = -EINVAL;
c6563a8c
N
3825 rdev_for_each(rdev, mddev) {
3826 if (olddisks < n &&
3827 rdev->data_offset < rdev->new_data_offset)
6791875e 3828 goto out_unlock;
c6563a8c
N
3829 if (olddisks > n &&
3830 rdev->data_offset > rdev->new_data_offset)
6791875e 3831 goto out_unlock;
c6563a8c 3832 }
6791875e 3833 err = 0;
08a02ecd
N
3834 mddev->delta_disks = n - olddisks;
3835 mddev->raid_disks = n;
2c810cdd 3836 mddev->reshape_backwards = (mddev->delta_disks < 0);
08a02ecd 3837 } else
da943b99 3838 mddev->raid_disks = n;
6791875e
N
3839out_unlock:
3840 mddev_unlock(mddev);
3841 return err ? err : len;
da943b99
N
3842}
3843static struct md_sysfs_entry md_raid_disks =
80ca3a44 3844__ATTR(raid_disks, S_IRUGO|S_IWUSR, raid_disks_show, raid_disks_store);
eae1701f 3845
3b34380a 3846static ssize_t
fd01b88c 3847chunk_size_show(struct mddev *mddev, char *page)
3b34380a 3848{
08a02ecd 3849 if (mddev->reshape_position != MaxSector &&
664e7c41
AN
3850 mddev->chunk_sectors != mddev->new_chunk_sectors)
3851 return sprintf(page, "%d (%d)\n",
3852 mddev->new_chunk_sectors << 9,
9d8f0363
AN
3853 mddev->chunk_sectors << 9);
3854 return sprintf(page, "%d\n", mddev->chunk_sectors << 9);
3b34380a
N
3855}
3856
3857static ssize_t
fd01b88c 3858chunk_size_store(struct mddev *mddev, const char *buf, size_t len)
3b34380a 3859{
4c9309c0 3860 unsigned long n;
6791875e 3861 int err;
3b34380a 3862
4c9309c0
AD
3863 err = kstrtoul(buf, 10, &n);
3864 if (err < 0)
3865 return err;
3b34380a 3866
6791875e
N
3867 err = mddev_lock(mddev);
3868 if (err)
3869 return err;
b3546035 3870 if (mddev->pers) {
50ac168a 3871 if (mddev->pers->check_reshape == NULL)
6791875e
N
3872 err = -EBUSY;
3873 else if (mddev->ro)
3874 err = -EROFS;
3875 else {
3876 mddev->new_chunk_sectors = n >> 9;
3877 err = mddev->pers->check_reshape(mddev);
3878 if (err)
3879 mddev->new_chunk_sectors = mddev->chunk_sectors;
597a711b 3880 }
b3546035 3881 } else {
664e7c41 3882 mddev->new_chunk_sectors = n >> 9;
b3546035 3883 if (mddev->reshape_position == MaxSector)
9d8f0363 3884 mddev->chunk_sectors = n >> 9;
b3546035 3885 }
6791875e
N
3886 mddev_unlock(mddev);
3887 return err ?: len;
3b34380a
N
3888}
3889static struct md_sysfs_entry md_chunk_size =
80ca3a44 3890__ATTR(chunk_size, S_IRUGO|S_IWUSR, chunk_size_show, chunk_size_store);
3b34380a 3891
a94213b1 3892static ssize_t
fd01b88c 3893resync_start_show(struct mddev *mddev, char *page)
a94213b1 3894{
d1a7c503
N
3895 if (mddev->recovery_cp == MaxSector)
3896 return sprintf(page, "none\n");
a94213b1
N
3897 return sprintf(page, "%llu\n", (unsigned long long)mddev->recovery_cp);
3898}
3899
3900static ssize_t
fd01b88c 3901resync_start_store(struct mddev *mddev, const char *buf, size_t len)
a94213b1 3902{
4c9309c0 3903 unsigned long long n;
6791875e 3904 int err;
4c9309c0
AD
3905
3906 if (cmd_match(buf, "none"))
3907 n = MaxSector;
3908 else {
3909 err = kstrtoull(buf, 10, &n);
3910 if (err < 0)
3911 return err;
3912 if (n != (sector_t)n)
3913 return -EINVAL;
3914 }
a94213b1 3915
6791875e
N
3916 err = mddev_lock(mddev);
3917 if (err)
3918 return err;
b098636c 3919 if (mddev->pers && !test_bit(MD_RECOVERY_FROZEN, &mddev->recovery))
6791875e 3920 err = -EBUSY;
a94213b1 3921
6791875e
N
3922 if (!err) {
3923 mddev->recovery_cp = n;
3924 if (mddev->pers)
2953079c 3925 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
6791875e
N
3926 }
3927 mddev_unlock(mddev);
3928 return err ?: len;
a94213b1
N
3929}
3930static struct md_sysfs_entry md_resync_start =
750f199e
N
3931__ATTR_PREALLOC(resync_start, S_IRUGO|S_IWUSR,
3932 resync_start_show, resync_start_store);
a94213b1 3933
9e653b63
N
3934/*
3935 * The array state can be:
3936 *
3937 * clear
3938 * No devices, no size, no level
3939 * Equivalent to STOP_ARRAY ioctl
3940 * inactive
3941 * May have some settings, but array is not active
3942 * all IO results in error
3943 * When written, doesn't tear down array, but just stops it
3944 * suspended (not supported yet)
3945 * All IO requests will block. The array can be reconfigured.
910d8cb3 3946 * Writing this, if accepted, will block until array is quiescent
9e653b63
N
3947 * readonly
3948 * no resync can happen. no superblocks get written.
3949 * write requests fail
3950 * read-auto
3951 * like readonly, but behaves like 'clean' on a write request.
3952 *
3953 * clean - no pending writes, but otherwise active.
3954 * When written to inactive array, starts without resync
3955 * If a write request arrives then
3956 * if metadata is known, mark 'dirty' and switch to 'active'.
3957 * if not known, block and switch to write-pending
3958 * If written to an active array that has pending writes, then fails.
3959 * active
3960 * fully active: IO and resync can be happening.
3961 * When written to inactive array, starts with resync
3962 *
3963 * write-pending
3964 * clean, but writes are blocked waiting for 'active' to be written.
3965 *
3966 * active-idle
3967 * like active, but no writes have been seen for a while (100msec).
3968 *
3969 */
3970enum array_state { clear, inactive, suspended, readonly, read_auto, clean, active,
3971 write_pending, active_idle, bad_word};
05381954 3972static char *array_states[] = {
9e653b63
N
3973 "clear", "inactive", "suspended", "readonly", "read-auto", "clean", "active",
3974 "write-pending", "active-idle", NULL };
3975
3976static int match_word(const char *word, char **list)
3977{
3978 int n;
3979 for (n=0; list[n]; n++)
3980 if (cmd_match(word, list[n]))
3981 break;
3982 return n;
3983}
3984
3985static ssize_t
fd01b88c 3986array_state_show(struct mddev *mddev, char *page)
9e653b63
N
3987{
3988 enum array_state st = inactive;
3989
3990 if (mddev->pers)
3991 switch(mddev->ro) {
3992 case 1:
3993 st = readonly;
3994 break;
3995 case 2:
3996 st = read_auto;
3997 break;
3998 case 0:
2953079c 3999 if (test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags))
e691063a 4000 st = write_pending;
16f88949
TM
4001 else if (mddev->in_sync)
4002 st = clean;
9e653b63
N
4003 else if (mddev->safemode)
4004 st = active_idle;
4005 else
4006 st = active;
4007 }
4008 else {
4009 if (list_empty(&mddev->disks) &&
4010 mddev->raid_disks == 0 &&
58c0fed4 4011 mddev->dev_sectors == 0)
9e653b63
N
4012 st = clear;
4013 else
4014 st = inactive;
4015 }
4016 return sprintf(page, "%s\n", array_states[st]);
4017}
4018
f72ffdd6
N
4019static int do_md_stop(struct mddev *mddev, int ro, struct block_device *bdev);
4020static int md_set_readonly(struct mddev *mddev, struct block_device *bdev);
4021static int do_md_run(struct mddev *mddev);
fd01b88c 4022static int restart_array(struct mddev *mddev);
9e653b63
N
4023
4024static ssize_t
fd01b88c 4025array_state_store(struct mddev *mddev, const char *buf, size_t len)
9e653b63 4026{
6791875e 4027 int err;
9e653b63 4028 enum array_state st = match_word(buf, array_states);
6791875e
N
4029
4030 if (mddev->pers && (st == active || st == clean) && mddev->ro != 1) {
4031 /* don't take reconfig_mutex when toggling between
4032 * clean and active
4033 */
4034 spin_lock(&mddev->lock);
4035 if (st == active) {
4036 restart_array(mddev);
2953079c 4037 clear_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
91a6c4ad 4038 md_wakeup_thread(mddev->thread);
6791875e
N
4039 wake_up(&mddev->sb_wait);
4040 err = 0;
4041 } else /* st == clean */ {
4042 restart_array(mddev);
4043 if (atomic_read(&mddev->writes_pending) == 0) {
4044 if (mddev->in_sync == 0) {
4045 mddev->in_sync = 1;
4046 if (mddev->safemode == 1)
4047 mddev->safemode = 0;
2953079c 4048 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
6791875e
N
4049 }
4050 err = 0;
4051 } else
4052 err = -EBUSY;
4053 }
573275b5
TM
4054 if (!err)
4055 sysfs_notify_dirent_safe(mddev->sysfs_state);
6791875e 4056 spin_unlock(&mddev->lock);
c008f1d3 4057 return err ?: len;
6791875e
N
4058 }
4059 err = mddev_lock(mddev);
4060 if (err)
4061 return err;
4062 err = -EINVAL;
9e653b63
N
4063 switch(st) {
4064 case bad_word:
4065 break;
4066 case clear:
4067 /* stopping an active array */
a05b7ea0 4068 err = do_md_stop(mddev, 0, NULL);
9e653b63
N
4069 break;
4070 case inactive:
4071 /* stopping an active array */
90cf195d 4072 if (mddev->pers)
a05b7ea0 4073 err = do_md_stop(mddev, 2, NULL);
90cf195d 4074 else
e691063a 4075 err = 0; /* already inactive */
9e653b63
N
4076 break;
4077 case suspended:
4078 break; /* not supported yet */
4079 case readonly:
4080 if (mddev->pers)
a05b7ea0 4081 err = md_set_readonly(mddev, NULL);
9e653b63
N
4082 else {
4083 mddev->ro = 1;
648b629e 4084 set_disk_ro(mddev->gendisk, 1);
9e653b63
N
4085 err = do_md_run(mddev);
4086 }
4087 break;
4088 case read_auto:
9e653b63 4089 if (mddev->pers) {
80268ee9 4090 if (mddev->ro == 0)
a05b7ea0 4091 err = md_set_readonly(mddev, NULL);
80268ee9 4092 else if (mddev->ro == 1)
648b629e
N
4093 err = restart_array(mddev);
4094 if (err == 0) {
4095 mddev->ro = 2;
4096 set_disk_ro(mddev->gendisk, 0);
4097 }
9e653b63
N
4098 } else {
4099 mddev->ro = 2;
4100 err = do_md_run(mddev);
4101 }
4102 break;
4103 case clean:
4104 if (mddev->pers) {
339421de
SL
4105 err = restart_array(mddev);
4106 if (err)
4107 break;
85572d7c 4108 spin_lock(&mddev->lock);
9e653b63 4109 if (atomic_read(&mddev->writes_pending) == 0) {
e691063a
N
4110 if (mddev->in_sync == 0) {
4111 mddev->in_sync = 1;
31a59e34
N
4112 if (mddev->safemode == 1)
4113 mddev->safemode = 0;
2953079c 4114 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
e691063a
N
4115 }
4116 err = 0;
4117 } else
4118 err = -EBUSY;
85572d7c 4119 spin_unlock(&mddev->lock);
5bf29597
N
4120 } else
4121 err = -EINVAL;
9e653b63
N
4122 break;
4123 case active:
4124 if (mddev->pers) {
339421de
SL
4125 err = restart_array(mddev);
4126 if (err)
4127 break;
2953079c 4128 clear_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
9e653b63
N
4129 wake_up(&mddev->sb_wait);
4130 err = 0;
4131 } else {
4132 mddev->ro = 0;
648b629e 4133 set_disk_ro(mddev->gendisk, 0);
9e653b63
N
4134 err = do_md_run(mddev);
4135 }
4136 break;
4137 case write_pending:
4138 case active_idle:
4139 /* these cannot be set */
4140 break;
4141 }
6791875e
N
4142
4143 if (!err) {
1d23f178
N
4144 if (mddev->hold_active == UNTIL_IOCTL)
4145 mddev->hold_active = 0;
00bcb4ac 4146 sysfs_notify_dirent_safe(mddev->sysfs_state);
0fd62b86 4147 }
6791875e
N
4148 mddev_unlock(mddev);
4149 return err ?: len;
9e653b63 4150}
80ca3a44 4151static struct md_sysfs_entry md_array_state =
750f199e 4152__ATTR_PREALLOC(array_state, S_IRUGO|S_IWUSR, array_state_show, array_state_store);
9e653b63 4153
1e50915f 4154static ssize_t
fd01b88c 4155max_corrected_read_errors_show(struct mddev *mddev, char *page) {
1e50915f
RB
4156 return sprintf(page, "%d\n",
4157 atomic_read(&mddev->max_corr_read_errors));
4158}
4159
4160static ssize_t
fd01b88c 4161max_corrected_read_errors_store(struct mddev *mddev, const char *buf, size_t len)
1e50915f 4162{
4c9309c0
AD
4163 unsigned int n;
4164 int rv;
1e50915f 4165
4c9309c0
AD
4166 rv = kstrtouint(buf, 10, &n);
4167 if (rv < 0)
4168 return rv;
4169 atomic_set(&mddev->max_corr_read_errors, n);
4170 return len;
1e50915f
RB
4171}
4172
4173static struct md_sysfs_entry max_corr_read_errors =
4174__ATTR(max_read_errors, S_IRUGO|S_IWUSR, max_corrected_read_errors_show,
4175 max_corrected_read_errors_store);
4176
6d7ff738 4177static ssize_t
fd01b88c 4178null_show(struct mddev *mddev, char *page)
6d7ff738
N
4179{
4180 return -EINVAL;
4181}
4182
4183static ssize_t
fd01b88c 4184new_dev_store(struct mddev *mddev, const char *buf, size_t len)
6d7ff738
N
4185{
4186 /* buf must be %d:%d\n? giving major and minor numbers */
4187 /* The new device is added to the array.
4188 * If the array has a persistent superblock, we read the
4189 * superblock to initialise info and check validity.
4190 * Otherwise, only checking done is that in bind_rdev_to_array,
4191 * which mainly checks size.
4192 */
4193 char *e;
4194 int major = simple_strtoul(buf, &e, 10);
4195 int minor;
4196 dev_t dev;
3cb03002 4197 struct md_rdev *rdev;
6d7ff738
N
4198 int err;
4199
4200 if (!*buf || *e != ':' || !e[1] || e[1] == '\n')
4201 return -EINVAL;
4202 minor = simple_strtoul(e+1, &e, 10);
4203 if (*e && *e != '\n')
4204 return -EINVAL;
4205 dev = MKDEV(major, minor);
4206 if (major != MAJOR(dev) ||
4207 minor != MINOR(dev))
4208 return -EOVERFLOW;
4209
6791875e
N
4210 flush_workqueue(md_misc_wq);
4211
4212 err = mddev_lock(mddev);
4213 if (err)
4214 return err;
6d7ff738
N
4215 if (mddev->persistent) {
4216 rdev = md_import_device(dev, mddev->major_version,
4217 mddev->minor_version);
4218 if (!IS_ERR(rdev) && !list_empty(&mddev->disks)) {
3cb03002
N
4219 struct md_rdev *rdev0
4220 = list_entry(mddev->disks.next,
4221 struct md_rdev, same_set);
6d7ff738
N
4222 err = super_types[mddev->major_version]
4223 .load_super(rdev, rdev0, mddev->minor_version);
4224 if (err < 0)
4225 goto out;
4226 }
c5d79adb
N
4227 } else if (mddev->external)
4228 rdev = md_import_device(dev, -2, -1);
4229 else
6d7ff738
N
4230 rdev = md_import_device(dev, -1, -1);
4231
9a8c0fa8
N
4232 if (IS_ERR(rdev)) {
4233 mddev_unlock(mddev);
6d7ff738 4234 return PTR_ERR(rdev);
9a8c0fa8 4235 }
6d7ff738
N
4236 err = bind_rdev_to_array(rdev, mddev);
4237 out:
4238 if (err)
4239 export_rdev(rdev);
6791875e 4240 mddev_unlock(mddev);
6d7ff738
N
4241 return err ? err : len;
4242}
4243
4244static struct md_sysfs_entry md_new_device =
80ca3a44 4245__ATTR(new_dev, S_IWUSR, null_show, new_dev_store);
3b34380a 4246
9b1d1dac 4247static ssize_t
fd01b88c 4248bitmap_store(struct mddev *mddev, const char *buf, size_t len)
9b1d1dac
PC
4249{
4250 char *end;
4251 unsigned long chunk, end_chunk;
6791875e 4252 int err;
9b1d1dac 4253
6791875e
N
4254 err = mddev_lock(mddev);
4255 if (err)
4256 return err;
9b1d1dac
PC
4257 if (!mddev->bitmap)
4258 goto out;
4259 /* buf should be <chunk> <chunk> ... or <chunk>-<chunk> ... (range) */
4260 while (*buf) {
4261 chunk = end_chunk = simple_strtoul(buf, &end, 0);
4262 if (buf == end) break;
4263 if (*end == '-') { /* range */
4264 buf = end + 1;
4265 end_chunk = simple_strtoul(buf, &end, 0);
4266 if (buf == end) break;
4267 }
4268 if (*end && !isspace(*end)) break;
4269 bitmap_dirty_bits(mddev->bitmap, chunk, end_chunk);
e7d2860b 4270 buf = skip_spaces(end);
9b1d1dac
PC
4271 }
4272 bitmap_unplug(mddev->bitmap); /* flush the bits to disk */
4273out:
6791875e 4274 mddev_unlock(mddev);
9b1d1dac
PC
4275 return len;
4276}
4277
4278static struct md_sysfs_entry md_bitmap =
4279__ATTR(bitmap_set_bits, S_IWUSR, null_show, bitmap_store);
4280
a35b0d69 4281static ssize_t
fd01b88c 4282size_show(struct mddev *mddev, char *page)
a35b0d69 4283{
58c0fed4
AN
4284 return sprintf(page, "%llu\n",
4285 (unsigned long long)mddev->dev_sectors / 2);
a35b0d69
N
4286}
4287
fd01b88c 4288static int update_size(struct mddev *mddev, sector_t num_sectors);
a35b0d69
N
4289
4290static ssize_t
fd01b88c 4291size_store(struct mddev *mddev, const char *buf, size_t len)
a35b0d69
N
4292{
4293 /* If array is inactive, we can reduce the component size, but
4294 * not increase it (except from 0).
4295 * If array is active, we can try an on-line resize
4296 */
b522adcd
DW
4297 sector_t sectors;
4298 int err = strict_blocks_to_sectors(buf, &sectors);
a35b0d69 4299
58c0fed4
AN
4300 if (err < 0)
4301 return err;
6791875e
N
4302 err = mddev_lock(mddev);
4303 if (err)
4304 return err;
a35b0d69 4305 if (mddev->pers) {
58c0fed4 4306 err = update_size(mddev, sectors);
4ba1e788
XN
4307 if (err == 0)
4308 md_update_sb(mddev, 1);
a35b0d69 4309 } else {
58c0fed4
AN
4310 if (mddev->dev_sectors == 0 ||
4311 mddev->dev_sectors > sectors)
4312 mddev->dev_sectors = sectors;
a35b0d69
N
4313 else
4314 err = -ENOSPC;
4315 }
6791875e 4316 mddev_unlock(mddev);
a35b0d69
N
4317 return err ? err : len;
4318}
4319
4320static struct md_sysfs_entry md_size =
80ca3a44 4321__ATTR(component_size, S_IRUGO|S_IWUSR, size_show, size_store);
a35b0d69 4322
83f0d77a 4323/* Metadata version.
e691063a
N
4324 * This is one of
4325 * 'none' for arrays with no metadata (good luck...)
4326 * 'external' for arrays with externally managed metadata,
8bb93aac
N
4327 * or N.M for internally known formats
4328 */
4329static ssize_t
fd01b88c 4330metadata_show(struct mddev *mddev, char *page)
8bb93aac
N
4331{
4332 if (mddev->persistent)
4333 return sprintf(page, "%d.%d\n",
4334 mddev->major_version, mddev->minor_version);
e691063a
N
4335 else if (mddev->external)
4336 return sprintf(page, "external:%s\n", mddev->metadata_type);
8bb93aac
N
4337 else
4338 return sprintf(page, "none\n");
4339}
4340
4341static ssize_t
fd01b88c 4342metadata_store(struct mddev *mddev, const char *buf, size_t len)
8bb93aac
N
4343{
4344 int major, minor;
4345 char *e;
6791875e 4346 int err;
ea43ddd8
N
4347 /* Changing the details of 'external' metadata is
4348 * always permitted. Otherwise there must be
4349 * no devices attached to the array.
4350 */
6791875e
N
4351
4352 err = mddev_lock(mddev);
4353 if (err)
4354 return err;
4355 err = -EBUSY;
ea43ddd8
N
4356 if (mddev->external && strncmp(buf, "external:", 9) == 0)
4357 ;
4358 else if (!list_empty(&mddev->disks))
6791875e 4359 goto out_unlock;
8bb93aac 4360
6791875e 4361 err = 0;
8bb93aac
N
4362 if (cmd_match(buf, "none")) {
4363 mddev->persistent = 0;
e691063a
N
4364 mddev->external = 0;
4365 mddev->major_version = 0;
4366 mddev->minor_version = 90;
6791875e 4367 goto out_unlock;
e691063a
N
4368 }
4369 if (strncmp(buf, "external:", 9) == 0) {
20a49ff6 4370 size_t namelen = len-9;
e691063a
N
4371 if (namelen >= sizeof(mddev->metadata_type))
4372 namelen = sizeof(mddev->metadata_type)-1;
4373 strncpy(mddev->metadata_type, buf+9, namelen);
4374 mddev->metadata_type[namelen] = 0;
4375 if (namelen && mddev->metadata_type[namelen-1] == '\n')
4376 mddev->metadata_type[--namelen] = 0;
4377 mddev->persistent = 0;
4378 mddev->external = 1;
8bb93aac
N
4379 mddev->major_version = 0;
4380 mddev->minor_version = 90;
6791875e 4381 goto out_unlock;
8bb93aac
N
4382 }
4383 major = simple_strtoul(buf, &e, 10);
6791875e 4384 err = -EINVAL;
8bb93aac 4385 if (e==buf || *e != '.')
6791875e 4386 goto out_unlock;
8bb93aac
N
4387 buf = e+1;
4388 minor = simple_strtoul(buf, &e, 10);
3f9d7b0d 4389 if (e==buf || (*e && *e != '\n') )
6791875e
N
4390 goto out_unlock;
4391 err = -ENOENT;
50511da3 4392 if (major >= ARRAY_SIZE(super_types) || super_types[major].name == NULL)
6791875e 4393 goto out_unlock;
8bb93aac
N
4394 mddev->major_version = major;
4395 mddev->minor_version = minor;
4396 mddev->persistent = 1;
e691063a 4397 mddev->external = 0;
6791875e
N
4398 err = 0;
4399out_unlock:
4400 mddev_unlock(mddev);
4401 return err ?: len;
8bb93aac
N
4402}
4403
4404static struct md_sysfs_entry md_metadata =
750f199e 4405__ATTR_PREALLOC(metadata_version, S_IRUGO|S_IWUSR, metadata_show, metadata_store);
8bb93aac 4406
24dd469d 4407static ssize_t
fd01b88c 4408action_show(struct mddev *mddev, char *page)
24dd469d 4409{
7eec314d 4410 char *type = "idle";
b7b17c9b
N
4411 unsigned long recovery = mddev->recovery;
4412 if (test_bit(MD_RECOVERY_FROZEN, &recovery))
b6a9ce68 4413 type = "frozen";
b7b17c9b
N
4414 else if (test_bit(MD_RECOVERY_RUNNING, &recovery) ||
4415 (!mddev->ro && test_bit(MD_RECOVERY_NEEDED, &recovery))) {
4416 if (test_bit(MD_RECOVERY_RESHAPE, &recovery))
ccfcc3c1 4417 type = "reshape";
b7b17c9b
N
4418 else if (test_bit(MD_RECOVERY_SYNC, &recovery)) {
4419 if (!test_bit(MD_RECOVERY_REQUESTED, &recovery))
24dd469d 4420 type = "resync";
b7b17c9b 4421 else if (test_bit(MD_RECOVERY_CHECK, &recovery))
24dd469d
N
4422 type = "check";
4423 else
4424 type = "repair";
b7b17c9b 4425 } else if (test_bit(MD_RECOVERY_RECOVER, &recovery))
24dd469d 4426 type = "recover";
985ca973
N
4427 else if (mddev->reshape_position != MaxSector)
4428 type = "reshape";
24dd469d
N
4429 }
4430 return sprintf(page, "%s\n", type);
4431}
4432
4433static ssize_t
fd01b88c 4434action_store(struct mddev *mddev, const char *page, size_t len)
24dd469d 4435{
7eec314d
N
4436 if (!mddev->pers || !mddev->pers->sync_request)
4437 return -EINVAL;
4438
b6a9ce68
N
4439
4440 if (cmd_match(page, "idle") || cmd_match(page, "frozen")) {
56ccc112
N
4441 if (cmd_match(page, "frozen"))
4442 set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
4443 else
4444 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
8e8e2518
N
4445 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) &&
4446 mddev_lock(mddev) == 0) {
4447 flush_workqueue(md_misc_wq);
4448 if (mddev->sync_thread) {
4449 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
6791875e 4450 md_reap_sync_thread(mddev);
6791875e 4451 }
8e8e2518 4452 mddev_unlock(mddev);
7eec314d 4453 }
312045ee 4454 } else if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
24dd469d 4455 return -EBUSY;
72a23c21 4456 else if (cmd_match(page, "resync"))
56ccc112 4457 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
72a23c21 4458 else if (cmd_match(page, "recover")) {
56ccc112 4459 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
72a23c21 4460 set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
72a23c21 4461 } else if (cmd_match(page, "reshape")) {
16484bf5
N
4462 int err;
4463 if (mddev->pers->start_reshape == NULL)
4464 return -EINVAL;
6791875e
N
4465 err = mddev_lock(mddev);
4466 if (!err) {
312045ee
N
4467 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
4468 err = -EBUSY;
4469 else {
4470 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
4471 err = mddev->pers->start_reshape(mddev);
4472 }
6791875e
N
4473 mddev_unlock(mddev);
4474 }
16484bf5
N
4475 if (err)
4476 return err;
a99ac971 4477 sysfs_notify(&mddev->kobj, NULL, "degraded");
16484bf5 4478 } else {
bce74dac 4479 if (cmd_match(page, "check"))
7eec314d 4480 set_bit(MD_RECOVERY_CHECK, &mddev->recovery);
2adc7d47 4481 else if (!cmd_match(page, "repair"))
7eec314d 4482 return -EINVAL;
56ccc112 4483 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
7eec314d
N
4484 set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
4485 set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
7eec314d 4486 }
48c26ddc
N
4487 if (mddev->ro == 2) {
4488 /* A write to sync_action is enough to justify
4489 * canceling read-auto mode
4490 */
4491 mddev->ro = 0;
4492 md_wakeup_thread(mddev->sync_thread);
4493 }
03c902e1 4494 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
24dd469d 4495 md_wakeup_thread(mddev->thread);
00bcb4ac 4496 sysfs_notify_dirent_safe(mddev->sysfs_action);
24dd469d
N
4497 return len;
4498}
4499
c4a39551 4500static struct md_sysfs_entry md_scan_mode =
750f199e 4501__ATTR_PREALLOC(sync_action, S_IRUGO|S_IWUSR, action_show, action_store);
c4a39551
JB
4502
4503static ssize_t
4504last_sync_action_show(struct mddev *mddev, char *page)
4505{
4506 return sprintf(page, "%s\n", mddev->last_sync_action);
4507}
4508
4509static struct md_sysfs_entry md_last_scan_mode = __ATTR_RO(last_sync_action);
4510
9d88883e 4511static ssize_t
fd01b88c 4512mismatch_cnt_show(struct mddev *mddev, char *page)
9d88883e
N
4513{
4514 return sprintf(page, "%llu\n",
7f7583d4
JM
4515 (unsigned long long)
4516 atomic64_read(&mddev->resync_mismatches));
9d88883e
N
4517}
4518
80ca3a44 4519static struct md_sysfs_entry md_mismatches = __ATTR_RO(mismatch_cnt);
9d88883e 4520
88202a0c 4521static ssize_t
fd01b88c 4522sync_min_show(struct mddev *mddev, char *page)
88202a0c
N
4523{
4524 return sprintf(page, "%d (%s)\n", speed_min(mddev),
4525 mddev->sync_speed_min ? "local": "system");
4526}
4527
4528static ssize_t
fd01b88c 4529sync_min_store(struct mddev *mddev, const char *buf, size_t len)
88202a0c 4530{
4c9309c0
AD
4531 unsigned int min;
4532 int rv;
4533
88202a0c 4534 if (strncmp(buf, "system", 6)==0) {
4c9309c0
AD
4535 min = 0;
4536 } else {
4537 rv = kstrtouint(buf, 10, &min);
4538 if (rv < 0)
4539 return rv;
4540 if (min == 0)
4541 return -EINVAL;
88202a0c 4542 }
88202a0c
N
4543 mddev->sync_speed_min = min;
4544 return len;
4545}
4546
4547static struct md_sysfs_entry md_sync_min =
4548__ATTR(sync_speed_min, S_IRUGO|S_IWUSR, sync_min_show, sync_min_store);
4549
4550static ssize_t
fd01b88c 4551sync_max_show(struct mddev *mddev, char *page)
88202a0c
N
4552{
4553 return sprintf(page, "%d (%s)\n", speed_max(mddev),
4554 mddev->sync_speed_max ? "local": "system");
4555}
4556
4557static ssize_t
fd01b88c 4558sync_max_store(struct mddev *mddev, const char *buf, size_t len)
88202a0c 4559{
4c9309c0
AD
4560 unsigned int max;
4561 int rv;
4562
88202a0c 4563 if (strncmp(buf, "system", 6)==0) {
4c9309c0
AD
4564 max = 0;
4565 } else {
4566 rv = kstrtouint(buf, 10, &max);
4567 if (rv < 0)
4568 return rv;
4569 if (max == 0)
4570 return -EINVAL;
88202a0c 4571 }
88202a0c
N
4572 mddev->sync_speed_max = max;
4573 return len;
4574}
4575
4576static struct md_sysfs_entry md_sync_max =
4577__ATTR(sync_speed_max, S_IRUGO|S_IWUSR, sync_max_show, sync_max_store);
4578
d7f3d291 4579static ssize_t
fd01b88c 4580degraded_show(struct mddev *mddev, char *page)
d7f3d291
IP
4581{
4582 return sprintf(page, "%d\n", mddev->degraded);
4583}
4584static struct md_sysfs_entry md_degraded = __ATTR_RO(degraded);
88202a0c 4585
90b08710 4586static ssize_t
fd01b88c 4587sync_force_parallel_show(struct mddev *mddev, char *page)
90b08710
BS
4588{
4589 return sprintf(page, "%d\n", mddev->parallel_resync);
4590}
4591
4592static ssize_t
fd01b88c 4593sync_force_parallel_store(struct mddev *mddev, const char *buf, size_t len)
90b08710
BS
4594{
4595 long n;
4596
b29bebd6 4597 if (kstrtol(buf, 10, &n))
90b08710
BS
4598 return -EINVAL;
4599
4600 if (n != 0 && n != 1)
4601 return -EINVAL;
4602
4603 mddev->parallel_resync = n;
4604
4605 if (mddev->sync_thread)
4606 wake_up(&resync_wait);
4607
4608 return len;
4609}
4610
4611/* force parallel resync, even with shared block devices */
4612static struct md_sysfs_entry md_sync_force_parallel =
4613__ATTR(sync_force_parallel, S_IRUGO|S_IWUSR,
4614 sync_force_parallel_show, sync_force_parallel_store);
4615
88202a0c 4616static ssize_t
fd01b88c 4617sync_speed_show(struct mddev *mddev, char *page)
88202a0c
N
4618{
4619 unsigned long resync, dt, db;
d1a7c503
N
4620 if (mddev->curr_resync == 0)
4621 return sprintf(page, "none\n");
9687a60c
AN
4622 resync = mddev->curr_mark_cnt - atomic_read(&mddev->recovery_active);
4623 dt = (jiffies - mddev->resync_mark) / HZ;
88202a0c 4624 if (!dt) dt++;
9687a60c
AN
4625 db = resync - mddev->resync_mark_cnt;
4626 return sprintf(page, "%lu\n", db/dt/2); /* K/sec */
88202a0c
N
4627}
4628
80ca3a44 4629static struct md_sysfs_entry md_sync_speed = __ATTR_RO(sync_speed);
88202a0c
N
4630
4631static ssize_t
fd01b88c 4632sync_completed_show(struct mddev *mddev, char *page)
88202a0c 4633{
13ae864b 4634 unsigned long long max_sectors, resync;
88202a0c 4635
acb180b0
N
4636 if (!test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
4637 return sprintf(page, "none\n");
4638
72f36d59
N
4639 if (mddev->curr_resync == 1 ||
4640 mddev->curr_resync == 2)
4641 return sprintf(page, "delayed\n");
4642
c804cdec
N
4643 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery) ||
4644 test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
58c0fed4 4645 max_sectors = mddev->resync_max_sectors;
88202a0c 4646 else
58c0fed4 4647 max_sectors = mddev->dev_sectors;
88202a0c 4648
acb180b0 4649 resync = mddev->curr_resync_completed;
13ae864b 4650 return sprintf(page, "%llu / %llu\n", resync, max_sectors);
88202a0c
N
4651}
4652
750f199e
N
4653static struct md_sysfs_entry md_sync_completed =
4654 __ATTR_PREALLOC(sync_completed, S_IRUGO, sync_completed_show, NULL);
88202a0c 4655
5e96ee65 4656static ssize_t
fd01b88c 4657min_sync_show(struct mddev *mddev, char *page)
5e96ee65
NB
4658{
4659 return sprintf(page, "%llu\n",
4660 (unsigned long long)mddev->resync_min);
4661}
4662static ssize_t
fd01b88c 4663min_sync_store(struct mddev *mddev, const char *buf, size_t len)
5e96ee65
NB
4664{
4665 unsigned long long min;
23da422b 4666 int err;
23da422b 4667
b29bebd6 4668 if (kstrtoull(buf, 10, &min))
5e96ee65 4669 return -EINVAL;
23da422b
N
4670
4671 spin_lock(&mddev->lock);
4672 err = -EINVAL;
5e96ee65 4673 if (min > mddev->resync_max)
23da422b
N
4674 goto out_unlock;
4675
4676 err = -EBUSY;
5e96ee65 4677 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
23da422b 4678 goto out_unlock;
5e96ee65 4679
50c37b13
N
4680 /* Round down to multiple of 4K for safety */
4681 mddev->resync_min = round_down(min, 8);
23da422b 4682 err = 0;
5e96ee65 4683
23da422b
N
4684out_unlock:
4685 spin_unlock(&mddev->lock);
4686 return err ?: len;
5e96ee65
NB
4687}
4688
4689static struct md_sysfs_entry md_min_sync =
4690__ATTR(sync_min, S_IRUGO|S_IWUSR, min_sync_show, min_sync_store);
4691
c6207277 4692static ssize_t
fd01b88c 4693max_sync_show(struct mddev *mddev, char *page)
c6207277
N
4694{
4695 if (mddev->resync_max == MaxSector)
4696 return sprintf(page, "max\n");
4697 else
4698 return sprintf(page, "%llu\n",
4699 (unsigned long long)mddev->resync_max);
4700}
4701static ssize_t
fd01b88c 4702max_sync_store(struct mddev *mddev, const char *buf, size_t len)
c6207277 4703{
23da422b
N
4704 int err;
4705 spin_lock(&mddev->lock);
c6207277
N
4706 if (strncmp(buf, "max", 3) == 0)
4707 mddev->resync_max = MaxSector;
4708 else {
5e96ee65 4709 unsigned long long max;
23da422b
N
4710 int chunk;
4711
4712 err = -EINVAL;
b29bebd6 4713 if (kstrtoull(buf, 10, &max))
23da422b 4714 goto out_unlock;
5e96ee65 4715 if (max < mddev->resync_min)
23da422b
N
4716 goto out_unlock;
4717
4718 err = -EBUSY;
c6207277 4719 if (max < mddev->resync_max &&
4d484a4a 4720 mddev->ro == 0 &&
c6207277 4721 test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
23da422b 4722 goto out_unlock;
c6207277
N
4723
4724 /* Must be a multiple of chunk_size */
23da422b
N
4725 chunk = mddev->chunk_sectors;
4726 if (chunk) {
2ac06c33 4727 sector_t temp = max;
23da422b
N
4728
4729 err = -EINVAL;
4730 if (sector_div(temp, chunk))
4731 goto out_unlock;
c6207277
N
4732 }
4733 mddev->resync_max = max;
4734 }
4735 wake_up(&mddev->recovery_wait);
23da422b
N
4736 err = 0;
4737out_unlock:
4738 spin_unlock(&mddev->lock);
4739 return err ?: len;
c6207277
N
4740}
4741
4742static struct md_sysfs_entry md_max_sync =
4743__ATTR(sync_max, S_IRUGO|S_IWUSR, max_sync_show, max_sync_store);
4744
e464eafd 4745static ssize_t
fd01b88c 4746suspend_lo_show(struct mddev *mddev, char *page)
e464eafd
N
4747{
4748 return sprintf(page, "%llu\n", (unsigned long long)mddev->suspend_lo);
4749}
4750
4751static ssize_t
fd01b88c 4752suspend_lo_store(struct mddev *mddev, const char *buf, size_t len)
e464eafd 4753{
4c9309c0 4754 unsigned long long old, new;
6791875e 4755 int err;
e464eafd 4756
4c9309c0
AD
4757 err = kstrtoull(buf, 10, &new);
4758 if (err < 0)
4759 return err;
4760 if (new != (sector_t)new)
e464eafd 4761 return -EINVAL;
23ddff37 4762
6791875e
N
4763 err = mddev_lock(mddev);
4764 if (err)
4765 return err;
4766 err = -EINVAL;
4767 if (mddev->pers == NULL ||
4768 mddev->pers->quiesce == NULL)
4769 goto unlock;
4770 old = mddev->suspend_lo;
23ddff37
N
4771 mddev->suspend_lo = new;
4772 if (new >= old)
4773 /* Shrinking suspended region */
e464eafd 4774 mddev->pers->quiesce(mddev, 2);
23ddff37
N
4775 else {
4776 /* Expanding suspended region - need to wait */
4777 mddev->pers->quiesce(mddev, 1);
4778 mddev->pers->quiesce(mddev, 0);
4779 }
6791875e
N
4780 err = 0;
4781unlock:
4782 mddev_unlock(mddev);
4783 return err ?: len;
e464eafd
N
4784}
4785static struct md_sysfs_entry md_suspend_lo =
4786__ATTR(suspend_lo, S_IRUGO|S_IWUSR, suspend_lo_show, suspend_lo_store);
4787
e464eafd 4788static ssize_t
fd01b88c 4789suspend_hi_show(struct mddev *mddev, char *page)
e464eafd
N
4790{
4791 return sprintf(page, "%llu\n", (unsigned long long)mddev->suspend_hi);
4792}
4793
4794static ssize_t
fd01b88c 4795suspend_hi_store(struct mddev *mddev, const char *buf, size_t len)
e464eafd 4796{
4c9309c0 4797 unsigned long long old, new;
6791875e 4798 int err;
e464eafd 4799
4c9309c0
AD
4800 err = kstrtoull(buf, 10, &new);
4801 if (err < 0)
4802 return err;
4803 if (new != (sector_t)new)
e464eafd 4804 return -EINVAL;
23ddff37 4805
6791875e
N
4806 err = mddev_lock(mddev);
4807 if (err)
4808 return err;
4809 err = -EINVAL;
4810 if (mddev->pers == NULL ||
4811 mddev->pers->quiesce == NULL)
4812 goto unlock;
4813 old = mddev->suspend_hi;
23ddff37
N
4814 mddev->suspend_hi = new;
4815 if (new <= old)
4816 /* Shrinking suspended region */
4817 mddev->pers->quiesce(mddev, 2);
4818 else {
4819 /* Expanding suspended region - need to wait */
e464eafd
N
4820 mddev->pers->quiesce(mddev, 1);
4821 mddev->pers->quiesce(mddev, 0);
23ddff37 4822 }
6791875e
N
4823 err = 0;
4824unlock:
4825 mddev_unlock(mddev);
4826 return err ?: len;
e464eafd
N
4827}
4828static struct md_sysfs_entry md_suspend_hi =
4829__ATTR(suspend_hi, S_IRUGO|S_IWUSR, suspend_hi_show, suspend_hi_store);
4830
08a02ecd 4831static ssize_t
fd01b88c 4832reshape_position_show(struct mddev *mddev, char *page)
08a02ecd
N
4833{
4834 if (mddev->reshape_position != MaxSector)
4835 return sprintf(page, "%llu\n",
4836 (unsigned long long)mddev->reshape_position);
4837 strcpy(page, "none\n");
4838 return 5;
4839}
4840
4841static ssize_t
fd01b88c 4842reshape_position_store(struct mddev *mddev, const char *buf, size_t len)
08a02ecd 4843{
c6563a8c 4844 struct md_rdev *rdev;
4c9309c0 4845 unsigned long long new;
6791875e 4846 int err;
6791875e 4847
4c9309c0
AD
4848 err = kstrtoull(buf, 10, &new);
4849 if (err < 0)
4850 return err;
4851 if (new != (sector_t)new)
08a02ecd 4852 return -EINVAL;
6791875e
N
4853 err = mddev_lock(mddev);
4854 if (err)
4855 return err;
4856 err = -EBUSY;
4857 if (mddev->pers)
4858 goto unlock;
08a02ecd
N
4859 mddev->reshape_position = new;
4860 mddev->delta_disks = 0;
2c810cdd 4861 mddev->reshape_backwards = 0;
08a02ecd
N
4862 mddev->new_level = mddev->level;
4863 mddev->new_layout = mddev->layout;
664e7c41 4864 mddev->new_chunk_sectors = mddev->chunk_sectors;
c6563a8c
N
4865 rdev_for_each(rdev, mddev)
4866 rdev->new_data_offset = rdev->data_offset;
6791875e
N
4867 err = 0;
4868unlock:
4869 mddev_unlock(mddev);
4870 return err ?: len;
08a02ecd
N
4871}
4872
4873static struct md_sysfs_entry md_reshape_position =
4874__ATTR(reshape_position, S_IRUGO|S_IWUSR, reshape_position_show,
4875 reshape_position_store);
4876
2c810cdd
N
4877static ssize_t
4878reshape_direction_show(struct mddev *mddev, char *page)
4879{
4880 return sprintf(page, "%s\n",
4881 mddev->reshape_backwards ? "backwards" : "forwards");
4882}
4883
4884static ssize_t
4885reshape_direction_store(struct mddev *mddev, const char *buf, size_t len)
4886{
4887 int backwards = 0;
6791875e
N
4888 int err;
4889
2c810cdd
N
4890 if (cmd_match(buf, "forwards"))
4891 backwards = 0;
4892 else if (cmd_match(buf, "backwards"))
4893 backwards = 1;
4894 else
4895 return -EINVAL;
4896 if (mddev->reshape_backwards == backwards)
4897 return len;
4898
6791875e
N
4899 err = mddev_lock(mddev);
4900 if (err)
4901 return err;
2c810cdd
N
4902 /* check if we are allowed to change */
4903 if (mddev->delta_disks)
6791875e
N
4904 err = -EBUSY;
4905 else if (mddev->persistent &&
2c810cdd 4906 mddev->major_version == 0)
6791875e
N
4907 err = -EINVAL;
4908 else
4909 mddev->reshape_backwards = backwards;
4910 mddev_unlock(mddev);
4911 return err ?: len;
2c810cdd
N
4912}
4913
4914static struct md_sysfs_entry md_reshape_direction =
4915__ATTR(reshape_direction, S_IRUGO|S_IWUSR, reshape_direction_show,
4916 reshape_direction_store);
4917
b522adcd 4918static ssize_t
fd01b88c 4919array_size_show(struct mddev *mddev, char *page)
b522adcd
DW
4920{
4921 if (mddev->external_size)
4922 return sprintf(page, "%llu\n",
4923 (unsigned long long)mddev->array_sectors/2);
4924 else
4925 return sprintf(page, "default\n");
4926}
4927
4928static ssize_t
fd01b88c 4929array_size_store(struct mddev *mddev, const char *buf, size_t len)
b522adcd
DW
4930{
4931 sector_t sectors;
6791875e
N
4932 int err;
4933
4934 err = mddev_lock(mddev);
4935 if (err)
4936 return err;
b522adcd 4937
ab5a98b1
GJ
4938 /* cluster raid doesn't support change array_sectors */
4939 if (mddev_is_clustered(mddev))
4940 return -EINVAL;
4941
b522adcd
DW
4942 if (strncmp(buf, "default", 7) == 0) {
4943 if (mddev->pers)
4944 sectors = mddev->pers->size(mddev, 0, 0);
4945 else
4946 sectors = mddev->array_sectors;
4947
4948 mddev->external_size = 0;
4949 } else {
4950 if (strict_blocks_to_sectors(buf, &sectors) < 0)
6791875e
N
4951 err = -EINVAL;
4952 else if (mddev->pers && mddev->pers->size(mddev, 0, 0) < sectors)
4953 err = -E2BIG;
4954 else
4955 mddev->external_size = 1;
b522adcd
DW
4956 }
4957
6791875e
N
4958 if (!err) {
4959 mddev->array_sectors = sectors;
4960 if (mddev->pers) {
4961 set_capacity(mddev->gendisk, mddev->array_sectors);
4962 revalidate_disk(mddev->gendisk);
4963 }
cbe6ef1d 4964 }
6791875e
N
4965 mddev_unlock(mddev);
4966 return err ?: len;
b522adcd
DW
4967}
4968
4969static struct md_sysfs_entry md_array_size =
4970__ATTR(array_size, S_IRUGO|S_IWUSR, array_size_show,
4971 array_size_store);
e464eafd 4972
664aed04
AP
4973static ssize_t
4974consistency_policy_show(struct mddev *mddev, char *page)
4975{
4976 int ret;
4977
4978 if (test_bit(MD_HAS_JOURNAL, &mddev->flags)) {
4979 ret = sprintf(page, "journal\n");
4980 } else if (test_bit(MD_HAS_PPL, &mddev->flags)) {
4981 ret = sprintf(page, "ppl\n");
4982 } else if (mddev->bitmap) {
4983 ret = sprintf(page, "bitmap\n");
4984 } else if (mddev->pers) {
4985 if (mddev->pers->sync_request)
4986 ret = sprintf(page, "resync\n");
4987 else
4988 ret = sprintf(page, "none\n");
4989 } else {
4990 ret = sprintf(page, "unknown\n");
4991 }
4992
4993 return ret;
4994}
4995
4996static ssize_t
4997consistency_policy_store(struct mddev *mddev, const char *buf, size_t len)
4998{
4999 if (mddev->pers) {
5000 return -EBUSY;
5001 } else if (mddev->external && strncmp(buf, "ppl", 3) == 0) {
5002 set_bit(MD_HAS_PPL, &mddev->flags);
5003 return len;
5004 } else {
5005 return -EINVAL;
5006 }
5007}
5008
5009static struct md_sysfs_entry md_consistency_policy =
5010__ATTR(consistency_policy, S_IRUGO | S_IWUSR, consistency_policy_show,
5011 consistency_policy_store);
5012
eae1701f
N
5013static struct attribute *md_default_attrs[] = {
5014 &md_level.attr,
d4dbd025 5015 &md_layout.attr,
eae1701f 5016 &md_raid_disks.attr,
3b34380a 5017 &md_chunk_size.attr,
a35b0d69 5018 &md_size.attr,
a94213b1 5019 &md_resync_start.attr,
8bb93aac 5020 &md_metadata.attr,
6d7ff738 5021 &md_new_device.attr,
16f17b39 5022 &md_safe_delay.attr,
9e653b63 5023 &md_array_state.attr,
08a02ecd 5024 &md_reshape_position.attr,
2c810cdd 5025 &md_reshape_direction.attr,
b522adcd 5026 &md_array_size.attr,
1e50915f 5027 &max_corr_read_errors.attr,
664aed04 5028 &md_consistency_policy.attr,
411036fa
N
5029 NULL,
5030};
5031
5032static struct attribute *md_redundancy_attrs[] = {
24dd469d 5033 &md_scan_mode.attr,
c4a39551 5034 &md_last_scan_mode.attr,
9d88883e 5035 &md_mismatches.attr,
88202a0c
N
5036 &md_sync_min.attr,
5037 &md_sync_max.attr,
5038 &md_sync_speed.attr,
90b08710 5039 &md_sync_force_parallel.attr,
88202a0c 5040 &md_sync_completed.attr,
5e96ee65 5041 &md_min_sync.attr,
c6207277 5042 &md_max_sync.attr,
e464eafd
N
5043 &md_suspend_lo.attr,
5044 &md_suspend_hi.attr,
9b1d1dac 5045 &md_bitmap.attr,
d7f3d291 5046 &md_degraded.attr,
eae1701f
N
5047 NULL,
5048};
411036fa
N
5049static struct attribute_group md_redundancy_group = {
5050 .name = NULL,
5051 .attrs = md_redundancy_attrs,
5052};
5053
eae1701f
N
5054static ssize_t
5055md_attr_show(struct kobject *kobj, struct attribute *attr, char *page)
5056{
5057 struct md_sysfs_entry *entry = container_of(attr, struct md_sysfs_entry, attr);
fd01b88c 5058 struct mddev *mddev = container_of(kobj, struct mddev, kobj);
96de1e66 5059 ssize_t rv;
eae1701f
N
5060
5061 if (!entry->show)
5062 return -EIO;
af8a2434
N
5063 spin_lock(&all_mddevs_lock);
5064 if (list_empty(&mddev->all_mddevs)) {
5065 spin_unlock(&all_mddevs_lock);
5066 return -EBUSY;
5067 }
5068 mddev_get(mddev);
5069 spin_unlock(&all_mddevs_lock);
5070
b7b17c9b 5071 rv = entry->show(mddev, page);
af8a2434 5072 mddev_put(mddev);
96de1e66 5073 return rv;
eae1701f
N
5074}
5075
5076static ssize_t
5077md_attr_store(struct kobject *kobj, struct attribute *attr,
5078 const char *page, size_t length)
5079{
5080 struct md_sysfs_entry *entry = container_of(attr, struct md_sysfs_entry, attr);
fd01b88c 5081 struct mddev *mddev = container_of(kobj, struct mddev, kobj);
96de1e66 5082 ssize_t rv;
eae1701f
N
5083
5084 if (!entry->store)
5085 return -EIO;
67463acb
N
5086 if (!capable(CAP_SYS_ADMIN))
5087 return -EACCES;
af8a2434
N
5088 spin_lock(&all_mddevs_lock);
5089 if (list_empty(&mddev->all_mddevs)) {
5090 spin_unlock(&all_mddevs_lock);
5091 return -EBUSY;
5092 }
5093 mddev_get(mddev);
5094 spin_unlock(&all_mddevs_lock);
6791875e 5095 rv = entry->store(mddev, page, length);
af8a2434 5096 mddev_put(mddev);
96de1e66 5097 return rv;
eae1701f
N
5098}
5099
5100static void md_free(struct kobject *ko)
5101{
fd01b88c 5102 struct mddev *mddev = container_of(ko, struct mddev, kobj);
a21d1504
N
5103
5104 if (mddev->sysfs_state)
5105 sysfs_put(mddev->sysfs_state);
5106
6cd18e71
N
5107 if (mddev->queue)
5108 blk_cleanup_queue(mddev->queue);
a21d1504
N
5109 if (mddev->gendisk) {
5110 del_gendisk(mddev->gendisk);
5111 put_disk(mddev->gendisk);
5112 }
a21d1504 5113
eae1701f
N
5114 kfree(mddev);
5115}
5116
52cf25d0 5117static const struct sysfs_ops md_sysfs_ops = {
eae1701f
N
5118 .show = md_attr_show,
5119 .store = md_attr_store,
5120};
5121static struct kobj_type md_ktype = {
5122 .release = md_free,
5123 .sysfs_ops = &md_sysfs_ops,
5124 .default_attrs = md_default_attrs,
5125};
5126
1da177e4
LT
5127int mdp_major = 0;
5128
5fd3a17e
DW
5129static void mddev_delayed_delete(struct work_struct *ws)
5130{
fd01b88c 5131 struct mddev *mddev = container_of(ws, struct mddev, del_work);
5fd3a17e 5132
43a70507 5133 sysfs_remove_group(&mddev->kobj, &md_bitmap_group);
5fd3a17e
DW
5134 kobject_del(&mddev->kobj);
5135 kobject_put(&mddev->kobj);
5136}
5137
efeb53c0 5138static int md_alloc(dev_t dev, char *name)
1da177e4 5139{
48c9c27b 5140 static DEFINE_MUTEX(disks_mutex);
fd01b88c 5141 struct mddev *mddev = mddev_find(dev);
1da177e4 5142 struct gendisk *disk;
efeb53c0
N
5143 int partitioned;
5144 int shift;
5145 int unit;
3830c62f 5146 int error;
1da177e4
LT
5147
5148 if (!mddev)
efeb53c0
N
5149 return -ENODEV;
5150
5151 partitioned = (MAJOR(mddev->unit) != MD_MAJOR);
5152 shift = partitioned ? MdpMinorShift : 0;
5153 unit = MINOR(mddev->unit) >> shift;
1da177e4 5154
e804ac78
TH
5155 /* wait for any previous instance of this device to be
5156 * completely removed (mddev_delayed_delete).
d3374825 5157 */
e804ac78 5158 flush_workqueue(md_misc_wq);
d3374825 5159
48c9c27b 5160 mutex_lock(&disks_mutex);
0909dc44
N
5161 error = -EEXIST;
5162 if (mddev->gendisk)
5163 goto abort;
efeb53c0
N
5164
5165 if (name) {
5166 /* Need to ensure that 'name' is not a duplicate.
5167 */
fd01b88c 5168 struct mddev *mddev2;
efeb53c0
N
5169 spin_lock(&all_mddevs_lock);
5170
5171 list_for_each_entry(mddev2, &all_mddevs, all_mddevs)
5172 if (mddev2->gendisk &&
5173 strcmp(mddev2->gendisk->disk_name, name) == 0) {
5174 spin_unlock(&all_mddevs_lock);
0909dc44 5175 goto abort;
efeb53c0
N
5176 }
5177 spin_unlock(&all_mddevs_lock);
1da177e4 5178 }
8b765398 5179
0909dc44 5180 error = -ENOMEM;
8b765398 5181 mddev->queue = blk_alloc_queue(GFP_KERNEL);
0909dc44
N
5182 if (!mddev->queue)
5183 goto abort;
409c57f3
N
5184 mddev->queue->queuedata = mddev;
5185
409c57f3 5186 blk_queue_make_request(mddev->queue, md_make_request);
b1bd055d 5187 blk_set_stacking_limits(&mddev->queue->limits);
8b765398 5188
1da177e4
LT
5189 disk = alloc_disk(1 << shift);
5190 if (!disk) {
8b765398
N
5191 blk_cleanup_queue(mddev->queue);
5192 mddev->queue = NULL;
0909dc44 5193 goto abort;
1da177e4 5194 }
efeb53c0 5195 disk->major = MAJOR(mddev->unit);
1da177e4 5196 disk->first_minor = unit << shift;
efeb53c0
N
5197 if (name)
5198 strcpy(disk->disk_name, name);
5199 else if (partitioned)
1da177e4 5200 sprintf(disk->disk_name, "md_d%d", unit);
ce7b0f46 5201 else
1da177e4 5202 sprintf(disk->disk_name, "md%d", unit);
1da177e4
LT
5203 disk->fops = &md_fops;
5204 disk->private_data = mddev;
5205 disk->queue = mddev->queue;
56883a7e 5206 blk_queue_write_cache(mddev->queue, true, true);
92850bbd 5207 /* Allow extended partitions. This makes the
d3374825 5208 * 'mdp' device redundant, but we can't really
92850bbd
N
5209 * remove it now.
5210 */
5211 disk->flags |= GENHD_FL_EXT_DEVT;
1da177e4 5212 mddev->gendisk = disk;
b0140891
N
5213 /* As soon as we call add_disk(), another thread could get
5214 * through to md_open, so make sure it doesn't get too far
5215 */
5216 mutex_lock(&mddev->open_mutex);
5217 add_disk(disk);
5218
ed9e1982
TH
5219 error = kobject_init_and_add(&mddev->kobj, &md_ktype,
5220 &disk_to_dev(disk)->kobj, "%s", "md");
0909dc44
N
5221 if (error) {
5222 /* This isn't possible, but as kobject_init_and_add is marked
5223 * __must_check, we must do something with the result
5224 */
9d48739e
N
5225 pr_debug("md: cannot register %s/md - name in use\n",
5226 disk->disk_name);
0909dc44
N
5227 error = 0;
5228 }
00bcb4ac
N
5229 if (mddev->kobj.sd &&
5230 sysfs_create_group(&mddev->kobj, &md_bitmap_group))
9d48739e 5231 pr_debug("pointless warning\n");
b0140891 5232 mutex_unlock(&mddev->open_mutex);
0909dc44
N
5233 abort:
5234 mutex_unlock(&disks_mutex);
00bcb4ac 5235 if (!error && mddev->kobj.sd) {
3830c62f 5236 kobject_uevent(&mddev->kobj, KOBJ_ADD);
00bcb4ac 5237 mddev->sysfs_state = sysfs_get_dirent_safe(mddev->kobj.sd, "array_state");
b62b7590 5238 }
d3374825 5239 mddev_put(mddev);
0909dc44 5240 return error;
efeb53c0
N
5241}
5242
5243static struct kobject *md_probe(dev_t dev, int *part, void *data)
5244{
5245 md_alloc(dev, NULL);
1da177e4
LT
5246 return NULL;
5247}
5248
efeb53c0
N
5249static int add_named_array(const char *val, struct kernel_param *kp)
5250{
5251 /* val must be "md_*" where * is not all digits.
5252 * We allocate an array with a large free minor number, and
5253 * set the name to val. val must not already be an active name.
5254 */
5255 int len = strlen(val);
5256 char buf[DISK_NAME_LEN];
5257
5258 while (len && val[len-1] == '\n')
5259 len--;
5260 if (len >= DISK_NAME_LEN)
5261 return -E2BIG;
5262 strlcpy(buf, val, len+1);
5263 if (strncmp(buf, "md_", 3) != 0)
5264 return -EINVAL;
5265 return md_alloc(0, buf);
5266}
5267
1da177e4
LT
5268static void md_safemode_timeout(unsigned long data)
5269{
fd01b88c 5270 struct mddev *mddev = (struct mddev *) data;
1da177e4 5271
0fd62b86
NB
5272 if (!atomic_read(&mddev->writes_pending)) {
5273 mddev->safemode = 1;
5274 if (mddev->external)
00bcb4ac 5275 sysfs_notify_dirent_safe(mddev->sysfs_state);
0fd62b86 5276 }
1da177e4
LT
5277 md_wakeup_thread(mddev->thread);
5278}
5279
6ff8d8ec 5280static int start_dirty_degraded;
1da177e4 5281
fd01b88c 5282int md_run(struct mddev *mddev)
1da177e4 5283{
2604b703 5284 int err;
3cb03002 5285 struct md_rdev *rdev;
84fc4b56 5286 struct md_personality *pers;
1da177e4 5287
a757e64c
N
5288 if (list_empty(&mddev->disks))
5289 /* cannot run an array with no devices.. */
1da177e4 5290 return -EINVAL;
1da177e4
LT
5291
5292 if (mddev->pers)
5293 return -EBUSY;
bb4f1e9d
N
5294 /* Cannot run until previous stop completes properly */
5295 if (mddev->sysfs_active)
5296 return -EBUSY;
b6eb127d 5297
1da177e4
LT
5298 /*
5299 * Analyze all RAID superblock(s)
5300 */
1ec4a939
N
5301 if (!mddev->raid_disks) {
5302 if (!mddev->persistent)
5303 return -EINVAL;
a757e64c 5304 analyze_sbs(mddev);
1ec4a939 5305 }
1da177e4 5306
d9d166c2
N
5307 if (mddev->level != LEVEL_NONE)
5308 request_module("md-level-%d", mddev->level);
5309 else if (mddev->clevel[0])
5310 request_module("md-%s", mddev->clevel);
1da177e4
LT
5311
5312 /*
5313 * Drop all container device buffers, from now on
5314 * the only valid external interface is through the md
5315 * device.
1da177e4 5316 */
dafb20fa 5317 rdev_for_each(rdev, mddev) {
b2d444d7 5318 if (test_bit(Faulty, &rdev->flags))
1da177e4
LT
5319 continue;
5320 sync_blockdev(rdev->bdev);
f98393a6 5321 invalidate_bdev(rdev->bdev);
f0d76d70
N
5322
5323 /* perform some consistency tests on the device.
5324 * We don't want the data to overlap the metadata,
58c0fed4 5325 * Internal Bitmap issues have been handled elsewhere.
f0d76d70 5326 */
a6ff7e08
JB
5327 if (rdev->meta_bdev) {
5328 /* Nothing to check */;
5329 } else if (rdev->data_offset < rdev->sb_start) {
58c0fed4
AN
5330 if (mddev->dev_sectors &&
5331 rdev->data_offset + mddev->dev_sectors
0f420358 5332 > rdev->sb_start) {
9d48739e
N
5333 pr_warn("md: %s: data overlaps metadata\n",
5334 mdname(mddev));
f0d76d70
N
5335 return -EINVAL;
5336 }
5337 } else {
0f420358 5338 if (rdev->sb_start + rdev->sb_size/512
f0d76d70 5339 > rdev->data_offset) {
9d48739e
N
5340 pr_warn("md: %s: metadata overlaps data\n",
5341 mdname(mddev));
f0d76d70
N
5342 return -EINVAL;
5343 }
5344 }
00bcb4ac 5345 sysfs_notify_dirent_safe(rdev->sysfs_state);
1da177e4
LT
5346 }
5347
10273170 5348 if (mddev->bio_set == NULL) {
395c72a7 5349 mddev->bio_set = bioset_create(BIO_POOL_SIZE, 0);
10273170
ML
5350 if (!mddev->bio_set)
5351 return -ENOMEM;
5352 }
a167f663 5353
1da177e4 5354 spin_lock(&pers_lock);
d9d166c2 5355 pers = find_pers(mddev->level, mddev->clevel);
2604b703 5356 if (!pers || !try_module_get(pers->owner)) {
1da177e4 5357 spin_unlock(&pers_lock);
d9d166c2 5358 if (mddev->level != LEVEL_NONE)
9d48739e
N
5359 pr_warn("md: personality for level %d is not loaded!\n",
5360 mddev->level);
d9d166c2 5361 else
9d48739e
N
5362 pr_warn("md: personality for level %s is not loaded!\n",
5363 mddev->clevel);
1da177e4
LT
5364 return -EINVAL;
5365 }
1da177e4 5366 spin_unlock(&pers_lock);
34817e8c
N
5367 if (mddev->level != pers->level) {
5368 mddev->level = pers->level;
5369 mddev->new_level = pers->level;
5370 }
d9d166c2 5371 strlcpy(mddev->clevel, pers->name, sizeof(mddev->clevel));
1da177e4 5372
f6705578 5373 if (mddev->reshape_position != MaxSector &&
63c70c4f 5374 pers->start_reshape == NULL) {
f6705578 5375 /* This personality cannot handle reshaping... */
f6705578
N
5376 module_put(pers->owner);
5377 return -EINVAL;
5378 }
5379
7dd5e7c3
N
5380 if (pers->sync_request) {
5381 /* Warn if this is a potentially silly
5382 * configuration.
5383 */
5384 char b[BDEVNAME_SIZE], b2[BDEVNAME_SIZE];
3cb03002 5385 struct md_rdev *rdev2;
7dd5e7c3 5386 int warned = 0;
159ec1fc 5387
dafb20fa
N
5388 rdev_for_each(rdev, mddev)
5389 rdev_for_each(rdev2, mddev) {
7dd5e7c3
N
5390 if (rdev < rdev2 &&
5391 rdev->bdev->bd_contains ==
5392 rdev2->bdev->bd_contains) {
9d48739e
N
5393 pr_warn("%s: WARNING: %s appears to be on the same physical disk as %s.\n",
5394 mdname(mddev),
5395 bdevname(rdev->bdev,b),
5396 bdevname(rdev2->bdev,b2));
7dd5e7c3
N
5397 warned = 1;
5398 }
5399 }
159ec1fc 5400
7dd5e7c3 5401 if (warned)
9d48739e 5402 pr_warn("True protection against single-disk failure might be compromised.\n");
7dd5e7c3
N
5403 }
5404
657390d2 5405 mddev->recovery = 0;
58c0fed4
AN
5406 /* may be over-ridden by personality */
5407 mddev->resync_max_sectors = mddev->dev_sectors;
5408
6ff8d8ec 5409 mddev->ok_start_degraded = start_dirty_degraded;
1da177e4 5410
0f9552b5 5411 if (start_readonly && mddev->ro == 0)
f91de92e
N
5412 mddev->ro = 2; /* read-only, but switch on first write */
5413
a85dd7b8
SL
5414 /*
5415 * NOTE: some pers->run(), for example r5l_recovery_log(), wakes
5416 * up mddev->thread. It is important to initialize critical
5417 * resources for mddev->thread BEFORE calling pers->run().
5418 */
36d091f4 5419 err = pers->run(mddev);
13e53df3 5420 if (err)
9d48739e 5421 pr_warn("md: pers->run() failed ...\n");
36d091f4 5422 else if (pers->size(mddev, 0, 0) < mddev->array_sectors) {
9d48739e
N
5423 WARN_ONCE(!mddev->external_size,
5424 "%s: default size too small, but 'external_size' not in effect?\n",
5425 __func__);
5426 pr_warn("md: invalid array_size %llu > default size %llu\n",
5427 (unsigned long long)mddev->array_sectors / 2,
5428 (unsigned long long)pers->size(mddev, 0, 0) / 2);
b522adcd 5429 err = -EINVAL;
b522adcd 5430 }
36d091f4 5431 if (err == 0 && pers->sync_request &&
ef99bf48 5432 (mddev->bitmap_info.file || mddev->bitmap_info.offset)) {
f9209a32
GR
5433 struct bitmap *bitmap;
5434
5435 bitmap = bitmap_create(mddev, -1);
5436 if (IS_ERR(bitmap)) {
5437 err = PTR_ERR(bitmap);
9d48739e
N
5438 pr_warn("%s: failed to create bitmap (%d)\n",
5439 mdname(mddev), err);
f9209a32
GR
5440 } else
5441 mddev->bitmap = bitmap;
5442
b15c2e57 5443 }
1da177e4 5444 if (err) {
5aa61f42 5445 mddev_detach(mddev);
0c35bd47
N
5446 if (mddev->private)
5447 pers->free(mddev, mddev->private);
bd691922 5448 mddev->private = NULL;
36d091f4 5449 module_put(pers->owner);
32a7627c
N
5450 bitmap_destroy(mddev);
5451 return err;
1da177e4 5452 }
5c675f83 5453 if (mddev->queue) {
bb086a89
SL
5454 bool nonrot = true;
5455
5456 rdev_for_each(rdev, mddev) {
5457 if (rdev->raid_disk >= 0 &&
5458 !blk_queue_nonrot(bdev_get_queue(rdev->bdev))) {
5459 nonrot = false;
5460 break;
5461 }
5462 }
5463 if (mddev->degraded)
5464 nonrot = false;
5465 if (nonrot)
5466 queue_flag_set_unlocked(QUEUE_FLAG_NONROT, mddev->queue);
5467 else
5468 queue_flag_clear_unlocked(QUEUE_FLAG_NONROT, mddev->queue);
dc3b17cc
JK
5469 mddev->queue->backing_dev_info->congested_data = mddev;
5470 mddev->queue->backing_dev_info->congested_fn = md_congested;
5c675f83 5471 }
36d091f4 5472 if (pers->sync_request) {
00bcb4ac
N
5473 if (mddev->kobj.sd &&
5474 sysfs_create_group(&mddev->kobj, &md_redundancy_group))
9d48739e
N
5475 pr_warn("md: cannot register extra attributes for %s\n",
5476 mdname(mddev));
00bcb4ac 5477 mddev->sysfs_action = sysfs_get_dirent_safe(mddev->kobj.sd, "sync_action");
5e55e2f5 5478 } else if (mddev->ro == 2) /* auto-readonly not meaningful */
fd9d49ca
N
5479 mddev->ro = 0;
5480
f72ffdd6 5481 atomic_set(&mddev->writes_pending,0);
1e50915f
RB
5482 atomic_set(&mddev->max_corr_read_errors,
5483 MD_DEFAULT_MAX_CORRECTED_READ_ERRORS);
1da177e4 5484 mddev->safemode = 0;
28c1b9fd
GR
5485 if (mddev_is_clustered(mddev))
5486 mddev->safemode_delay = 0;
5487 else
5488 mddev->safemode_delay = (200 * HZ)/1000 +1; /* 200 msec delay */
1da177e4 5489 mddev->in_sync = 1;
0ca69886 5490 smp_wmb();
36d091f4
N
5491 spin_lock(&mddev->lock);
5492 mddev->pers = pers;
36d091f4 5493 spin_unlock(&mddev->lock);
dafb20fa 5494 rdev_for_each(rdev, mddev)
36fad858
NK
5495 if (rdev->raid_disk >= 0)
5496 if (sysfs_link_rdev(mddev, rdev))
00bcb4ac 5497 /* failure here is OK */;
f72ffdd6 5498
a4a3d26d
N
5499 if (mddev->degraded && !mddev->ro)
5500 /* This ensures that recovering status is reported immediately
5501 * via sysfs - until a lack of spares is confirmed.
5502 */
5503 set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
1da177e4 5504 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
f72ffdd6 5505
2953079c 5506 if (mddev->sb_flags)
850b2b42 5507 md_update_sb(mddev, 0);
1da177e4 5508
d7603b7e 5509 md_new_event(mddev);
00bcb4ac
N
5510 sysfs_notify_dirent_safe(mddev->sysfs_state);
5511 sysfs_notify_dirent_safe(mddev->sysfs_action);
a99ac971 5512 sysfs_notify(&mddev->kobj, NULL, "degraded");
1da177e4
LT
5513 return 0;
5514}
390ee602 5515EXPORT_SYMBOL_GPL(md_run);
1da177e4 5516
fd01b88c 5517static int do_md_run(struct mddev *mddev)
fe60b014
N
5518{
5519 int err;
5520
5521 err = md_run(mddev);
5522 if (err)
5523 goto out;
69e51b44
N
5524 err = bitmap_load(mddev);
5525 if (err) {
5526 bitmap_destroy(mddev);
5527 goto out;
5528 }
0fd018af 5529
28c1b9fd
GR
5530 if (mddev_is_clustered(mddev))
5531 md_allow_write(mddev);
5532
0fd018af
JB
5533 md_wakeup_thread(mddev->thread);
5534 md_wakeup_thread(mddev->sync_thread); /* possibly kick off a reshape */
5535
fe60b014
N
5536 set_capacity(mddev->gendisk, mddev->array_sectors);
5537 revalidate_disk(mddev->gendisk);
f0b4f7e2 5538 mddev->changed = 1;
fe60b014
N
5539 kobject_uevent(&disk_to_dev(mddev->gendisk)->kobj, KOBJ_CHANGE);
5540out:
5541 return err;
5542}
5543
fd01b88c 5544static int restart_array(struct mddev *mddev)
1da177e4
LT
5545{
5546 struct gendisk *disk = mddev->gendisk;
1da177e4 5547
80fab1d7 5548 /* Complain if it has no devices */
1da177e4 5549 if (list_empty(&mddev->disks))
80fab1d7
AN
5550 return -ENXIO;
5551 if (!mddev->pers)
5552 return -EINVAL;
5553 if (!mddev->ro)
5554 return -EBUSY;
339421de
SL
5555 if (test_bit(MD_HAS_JOURNAL, &mddev->flags)) {
5556 struct md_rdev *rdev;
5557 bool has_journal = false;
5558
5559 rcu_read_lock();
5560 rdev_for_each_rcu(rdev, mddev) {
5561 if (test_bit(Journal, &rdev->flags) &&
5562 !test_bit(Faulty, &rdev->flags)) {
5563 has_journal = true;
5564 break;
5565 }
5566 }
5567 rcu_read_unlock();
5568
5569 /* Don't restart rw with journal missing/faulty */
5570 if (!has_journal)
5571 return -EINVAL;
5572 }
5573
80fab1d7
AN
5574 mddev->safemode = 0;
5575 mddev->ro = 0;
5576 set_disk_ro(disk, 0);
9d48739e 5577 pr_debug("md: %s switched to read-write mode.\n", mdname(mddev));
80fab1d7
AN
5578 /* Kick recovery or resync if necessary */
5579 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
5580 md_wakeup_thread(mddev->thread);
5581 md_wakeup_thread(mddev->sync_thread);
00bcb4ac 5582 sysfs_notify_dirent_safe(mddev->sysfs_state);
80fab1d7 5583 return 0;
1da177e4
LT
5584}
5585
fd01b88c 5586static void md_clean(struct mddev *mddev)
6177b472
N
5587{
5588 mddev->array_sectors = 0;
5589 mddev->external_size = 0;
5590 mddev->dev_sectors = 0;
5591 mddev->raid_disks = 0;
5592 mddev->recovery_cp = 0;
5593 mddev->resync_min = 0;
5594 mddev->resync_max = MaxSector;
5595 mddev->reshape_position = MaxSector;
5596 mddev->external = 0;
5597 mddev->persistent = 0;
5598 mddev->level = LEVEL_NONE;
5599 mddev->clevel[0] = 0;
5600 mddev->flags = 0;
2953079c 5601 mddev->sb_flags = 0;
6177b472
N
5602 mddev->ro = 0;
5603 mddev->metadata_type[0] = 0;
5604 mddev->chunk_sectors = 0;
5605 mddev->ctime = mddev->utime = 0;
5606 mddev->layout = 0;
5607 mddev->max_disks = 0;
5608 mddev->events = 0;
a8707c08 5609 mddev->can_decrease_events = 0;
6177b472 5610 mddev->delta_disks = 0;
2c810cdd 5611 mddev->reshape_backwards = 0;
6177b472
N
5612 mddev->new_level = LEVEL_NONE;
5613 mddev->new_layout = 0;
5614 mddev->new_chunk_sectors = 0;
5615 mddev->curr_resync = 0;
7f7583d4 5616 atomic64_set(&mddev->resync_mismatches, 0);
6177b472
N
5617 mddev->suspend_lo = mddev->suspend_hi = 0;
5618 mddev->sync_speed_min = mddev->sync_speed_max = 0;
5619 mddev->recovery = 0;
5620 mddev->in_sync = 0;
f0b4f7e2 5621 mddev->changed = 0;
6177b472 5622 mddev->degraded = 0;
6177b472 5623 mddev->safemode = 0;
bd691922 5624 mddev->private = NULL;
c20c33f0 5625 mddev->cluster_info = NULL;
6177b472
N
5626 mddev->bitmap_info.offset = 0;
5627 mddev->bitmap_info.default_offset = 0;
6409bb05 5628 mddev->bitmap_info.default_space = 0;
6177b472
N
5629 mddev->bitmap_info.chunksize = 0;
5630 mddev->bitmap_info.daemon_sleep = 0;
5631 mddev->bitmap_info.max_write_behind = 0;
c20c33f0 5632 mddev->bitmap_info.nodes = 0;
6177b472
N
5633}
5634
fd01b88c 5635static void __md_stop_writes(struct mddev *mddev)
a047e125 5636{
6b6204ee 5637 set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
f851b60d 5638 flush_workqueue(md_misc_wq);
a047e125 5639 if (mddev->sync_thread) {
a047e125 5640 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
a91d5ac0 5641 md_reap_sync_thread(mddev);
a047e125
N
5642 }
5643
5644 del_timer_sync(&mddev->safemode_timer);
5645
034e33f5
SL
5646 if (mddev->pers && mddev->pers->quiesce) {
5647 mddev->pers->quiesce(mddev, 1);
5648 mddev->pers->quiesce(mddev, 0);
5649 }
a047e125 5650 bitmap_flush(mddev);
a047e125 5651
b6d428c6 5652 if (mddev->ro == 0 &&
28c1b9fd 5653 ((!mddev->in_sync && !mddev_is_clustered(mddev)) ||
2953079c 5654 mddev->sb_flags)) {
a047e125 5655 /* mark array as shutdown cleanly */
28c1b9fd
GR
5656 if (!mddev_is_clustered(mddev))
5657 mddev->in_sync = 1;
a047e125
N
5658 md_update_sb(mddev, 1);
5659 }
5660}
defad61a 5661
fd01b88c 5662void md_stop_writes(struct mddev *mddev)
defad61a 5663{
29f097c4 5664 mddev_lock_nointr(mddev);
defad61a
N
5665 __md_stop_writes(mddev);
5666 mddev_unlock(mddev);
5667}
390ee602 5668EXPORT_SYMBOL_GPL(md_stop_writes);
a047e125 5669
5aa61f42
N
5670static void mddev_detach(struct mddev *mddev)
5671{
5672 struct bitmap *bitmap = mddev->bitmap;
5673 /* wait for behind writes to complete */
5674 if (bitmap && atomic_read(&bitmap->behind_writes) > 0) {
9d48739e
N
5675 pr_debug("md:%s: behind writes in progress - waiting to stop.\n",
5676 mdname(mddev));
5aa61f42
N
5677 /* need to kick something here to make sure I/O goes? */
5678 wait_event(bitmap->behind_wait,
5679 atomic_read(&bitmap->behind_writes) == 0);
5680 }
36d091f4 5681 if (mddev->pers && mddev->pers->quiesce) {
5aa61f42
N
5682 mddev->pers->quiesce(mddev, 1);
5683 mddev->pers->quiesce(mddev, 0);
5684 }
5685 md_unregister_thread(&mddev->thread);
5686 if (mddev->queue)
5687 blk_sync_queue(mddev->queue); /* the unplug fn references 'conf'*/
5688}
5689
5eff3c43 5690static void __md_stop(struct mddev *mddev)
6177b472 5691{
36d091f4 5692 struct md_personality *pers = mddev->pers;
5aa61f42 5693 mddev_detach(mddev);
ee5d004f
N
5694 /* Ensure ->event_work is done */
5695 flush_workqueue(md_misc_wq);
36d091f4 5696 spin_lock(&mddev->lock);
6177b472 5697 mddev->pers = NULL;
36d091f4
N
5698 spin_unlock(&mddev->lock);
5699 pers->free(mddev, mddev->private);
bd691922 5700 mddev->private = NULL;
36d091f4
N
5701 if (pers->sync_request && mddev->to_remove == NULL)
5702 mddev->to_remove = &md_redundancy_group;
5703 module_put(pers->owner);
cca9cf90 5704 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
6177b472 5705}
5eff3c43
N
5706
5707void md_stop(struct mddev *mddev)
5708{
5709 /* stop the array and free an attached data structures.
5710 * This is called from dm-raid
5711 */
5712 __md_stop(mddev);
5713 bitmap_destroy(mddev);
5714 if (mddev->bio_set)
5715 bioset_free(mddev->bio_set);
5716}
5717
390ee602 5718EXPORT_SYMBOL_GPL(md_stop);
6177b472 5719
a05b7ea0 5720static int md_set_readonly(struct mddev *mddev, struct block_device *bdev)
a4bd82d0
N
5721{
5722 int err = 0;
30b8feb7
N
5723 int did_freeze = 0;
5724
5725 if (!test_bit(MD_RECOVERY_FROZEN, &mddev->recovery)) {
5726 did_freeze = 1;
5727 set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
5728 md_wakeup_thread(mddev->thread);
5729 }
f851b60d 5730 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
30b8feb7 5731 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
f851b60d 5732 if (mddev->sync_thread)
30b8feb7
N
5733 /* Thread might be blocked waiting for metadata update
5734 * which will now never happen */
5735 wake_up_process(mddev->sync_thread->tsk);
f851b60d 5736
2953079c 5737 if (mddev->external && test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags))
88724bfa 5738 return -EBUSY;
30b8feb7 5739 mddev_unlock(mddev);
f851b60d
N
5740 wait_event(resync_wait, !test_bit(MD_RECOVERY_RUNNING,
5741 &mddev->recovery));
88724bfa 5742 wait_event(mddev->sb_wait,
2953079c 5743 !test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags));
30b8feb7
N
5744 mddev_lock_nointr(mddev);
5745
a4bd82d0 5746 mutex_lock(&mddev->open_mutex);
9ba3b7f5 5747 if ((mddev->pers && atomic_read(&mddev->openers) > !!bdev) ||
30b8feb7 5748 mddev->sync_thread ||
af8d8e6f 5749 test_bit(MD_RECOVERY_RUNNING, &mddev->recovery)) {
9d48739e 5750 pr_warn("md: %s still in use.\n",mdname(mddev));
30b8feb7
N
5751 if (did_freeze) {
5752 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
45eaf45d 5753 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
30b8feb7
N
5754 md_wakeup_thread(mddev->thread);
5755 }
a4bd82d0
N
5756 err = -EBUSY;
5757 goto out;
5758 }
5759 if (mddev->pers) {
defad61a 5760 __md_stop_writes(mddev);
a4bd82d0
N
5761
5762 err = -ENXIO;
5763 if (mddev->ro==1)
5764 goto out;
5765 mddev->ro = 1;
5766 set_disk_ro(mddev->gendisk, 1);
5767 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
45eaf45d
N
5768 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
5769 md_wakeup_thread(mddev->thread);
00bcb4ac 5770 sysfs_notify_dirent_safe(mddev->sysfs_state);
30b8feb7 5771 err = 0;
a4bd82d0
N
5772 }
5773out:
5774 mutex_unlock(&mddev->open_mutex);
5775 return err;
5776}
5777
9e653b63
N
5778/* mode:
5779 * 0 - completely stop and dis-assemble array
9e653b63
N
5780 * 2 - stop but do not disassemble array
5781 */
f72ffdd6 5782static int do_md_stop(struct mddev *mddev, int mode,
a05b7ea0 5783 struct block_device *bdev)
1da177e4 5784{
1da177e4 5785 struct gendisk *disk = mddev->gendisk;
3cb03002 5786 struct md_rdev *rdev;
30b8feb7
N
5787 int did_freeze = 0;
5788
5789 if (!test_bit(MD_RECOVERY_FROZEN, &mddev->recovery)) {
5790 did_freeze = 1;
5791 set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
5792 md_wakeup_thread(mddev->thread);
5793 }
f851b60d 5794 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery))
30b8feb7 5795 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
f851b60d 5796 if (mddev->sync_thread)
30b8feb7
N
5797 /* Thread might be blocked waiting for metadata update
5798 * which will now never happen */
5799 wake_up_process(mddev->sync_thread->tsk);
f851b60d 5800
30b8feb7 5801 mddev_unlock(mddev);
f851b60d
N
5802 wait_event(resync_wait, (mddev->sync_thread == NULL &&
5803 !test_bit(MD_RECOVERY_RUNNING,
5804 &mddev->recovery)));
30b8feb7 5805 mddev_lock_nointr(mddev);
1da177e4 5806
c8c00a69 5807 mutex_lock(&mddev->open_mutex);
9ba3b7f5 5808 if ((mddev->pers && atomic_read(&mddev->openers) > !!bdev) ||
30b8feb7
N
5809 mddev->sysfs_active ||
5810 mddev->sync_thread ||
af8d8e6f 5811 test_bit(MD_RECOVERY_RUNNING, &mddev->recovery)) {
9d48739e 5812 pr_warn("md: %s still in use.\n",mdname(mddev));
6e17b027 5813 mutex_unlock(&mddev->open_mutex);
30b8feb7
N
5814 if (did_freeze) {
5815 clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
45eaf45d 5816 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
30b8feb7
N
5817 md_wakeup_thread(mddev->thread);
5818 }
260fa034
N
5819 return -EBUSY;
5820 }
6e17b027 5821 if (mddev->pers) {
a4bd82d0
N
5822 if (mddev->ro)
5823 set_disk_ro(disk, 0);
409c57f3 5824
defad61a 5825 __md_stop_writes(mddev);
5eff3c43 5826 __md_stop(mddev);
dc3b17cc 5827 mddev->queue->backing_dev_info->congested_fn = NULL;
6177b472 5828
a4bd82d0 5829 /* tell userspace to handle 'inactive' */
00bcb4ac 5830 sysfs_notify_dirent_safe(mddev->sysfs_state);
0d4ca600 5831
dafb20fa 5832 rdev_for_each(rdev, mddev)
36fad858
NK
5833 if (rdev->raid_disk >= 0)
5834 sysfs_unlink_rdev(mddev, rdev);
c4647292 5835
a4bd82d0 5836 set_capacity(disk, 0);
6e17b027 5837 mutex_unlock(&mddev->open_mutex);
f0b4f7e2 5838 mddev->changed = 1;
a4bd82d0 5839 revalidate_disk(disk);
0d4ca600 5840
a4bd82d0
N
5841 if (mddev->ro)
5842 mddev->ro = 0;
6e17b027
N
5843 } else
5844 mutex_unlock(&mddev->open_mutex);
1da177e4
LT
5845 /*
5846 * Free resources if final stop
5847 */
9e653b63 5848 if (mode == 0) {
9d48739e 5849 pr_info("md: %s stopped.\n", mdname(mddev));
1da177e4 5850
978f946b 5851 bitmap_destroy(mddev);
c3d9714e 5852 if (mddev->bitmap_info.file) {
4af1a041
N
5853 struct file *f = mddev->bitmap_info.file;
5854 spin_lock(&mddev->lock);
c3d9714e 5855 mddev->bitmap_info.file = NULL;
4af1a041
N
5856 spin_unlock(&mddev->lock);
5857 fput(f);
978f946b 5858 }
c3d9714e 5859 mddev->bitmap_info.offset = 0;
978f946b 5860
1da177e4
LT
5861 export_array(mddev);
5862
6177b472 5863 md_clean(mddev);
efeb53c0
N
5864 if (mddev->hold_active == UNTIL_STOP)
5865 mddev->hold_active = 0;
a4bd82d0 5866 }
d7603b7e 5867 md_new_event(mddev);
00bcb4ac 5868 sysfs_notify_dirent_safe(mddev->sysfs_state);
6e17b027 5869 return 0;
1da177e4
LT
5870}
5871
fdee8ae4 5872#ifndef MODULE
fd01b88c 5873static void autorun_array(struct mddev *mddev)
1da177e4 5874{
3cb03002 5875 struct md_rdev *rdev;
1da177e4
LT
5876 int err;
5877
a757e64c 5878 if (list_empty(&mddev->disks))
1da177e4 5879 return;
1da177e4 5880
9d48739e 5881 pr_info("md: running: ");
1da177e4 5882
dafb20fa 5883 rdev_for_each(rdev, mddev) {
1da177e4 5884 char b[BDEVNAME_SIZE];
9d48739e 5885 pr_cont("<%s>", bdevname(rdev->bdev,b));
1da177e4 5886 }
9d48739e 5887 pr_cont("\n");
1da177e4 5888
d710e138 5889 err = do_md_run(mddev);
1da177e4 5890 if (err) {
9d48739e 5891 pr_warn("md: do_md_run() returned %d\n", err);
a05b7ea0 5892 do_md_stop(mddev, 0, NULL);
1da177e4
LT
5893 }
5894}
5895
5896/*
5897 * lets try to run arrays based on all disks that have arrived
5898 * until now. (those are in pending_raid_disks)
5899 *
5900 * the method: pick the first pending disk, collect all disks with
5901 * the same UUID, remove all from the pending list and put them into
5902 * the 'same_array' list. Then order this list based on superblock
5903 * update time (freshest comes first), kick out 'old' disks and
5904 * compare superblocks. If everything's fine then run it.
5905 *
5906 * If "unit" is allocated, then bump its reference count
5907 */
5908static void autorun_devices(int part)
5909{
3cb03002 5910 struct md_rdev *rdev0, *rdev, *tmp;
fd01b88c 5911 struct mddev *mddev;
1da177e4
LT
5912 char b[BDEVNAME_SIZE];
5913
9d48739e 5914 pr_info("md: autorun ...\n");
1da177e4 5915 while (!list_empty(&pending_raid_disks)) {
e8703fe1 5916 int unit;
1da177e4 5917 dev_t dev;
ad01c9e3 5918 LIST_HEAD(candidates);
1da177e4 5919 rdev0 = list_entry(pending_raid_disks.next,
3cb03002 5920 struct md_rdev, same_set);
1da177e4 5921
9d48739e 5922 pr_debug("md: considering %s ...\n", bdevname(rdev0->bdev,b));
1da177e4 5923 INIT_LIST_HEAD(&candidates);
159ec1fc 5924 rdev_for_each_list(rdev, tmp, &pending_raid_disks)
1da177e4 5925 if (super_90_load(rdev, rdev0, 0) >= 0) {
9d48739e
N
5926 pr_debug("md: adding %s ...\n",
5927 bdevname(rdev->bdev,b));
1da177e4
LT
5928 list_move(&rdev->same_set, &candidates);
5929 }
5930 /*
5931 * now we have a set of devices, with all of them having
5932 * mostly sane superblocks. It's time to allocate the
5933 * mddev.
5934 */
e8703fe1
N
5935 if (part) {
5936 dev = MKDEV(mdp_major,
5937 rdev0->preferred_minor << MdpMinorShift);
5938 unit = MINOR(dev) >> MdpMinorShift;
5939 } else {
5940 dev = MKDEV(MD_MAJOR, rdev0->preferred_minor);
5941 unit = MINOR(dev);
5942 }
5943 if (rdev0->preferred_minor != unit) {
9d48739e
N
5944 pr_warn("md: unit number in %s is bad: %d\n",
5945 bdevname(rdev0->bdev, b), rdev0->preferred_minor);
1da177e4
LT
5946 break;
5947 }
1da177e4
LT
5948
5949 md_probe(dev, NULL, NULL);
5950 mddev = mddev_find(dev);
9bbbca3a
NB
5951 if (!mddev || !mddev->gendisk) {
5952 if (mddev)
5953 mddev_put(mddev);
1da177e4
LT
5954 break;
5955 }
f72ffdd6 5956 if (mddev_lock(mddev))
9d48739e 5957 pr_warn("md: %s locked, cannot run\n", mdname(mddev));
1da177e4
LT
5958 else if (mddev->raid_disks || mddev->major_version
5959 || !list_empty(&mddev->disks)) {
9d48739e 5960 pr_warn("md: %s already running, cannot run %s\n",
1da177e4
LT
5961 mdname(mddev), bdevname(rdev0->bdev,b));
5962 mddev_unlock(mddev);
5963 } else {
9d48739e 5964 pr_debug("md: created %s\n", mdname(mddev));
1ec4a939 5965 mddev->persistent = 1;
159ec1fc 5966 rdev_for_each_list(rdev, tmp, &candidates) {
1da177e4
LT
5967 list_del_init(&rdev->same_set);
5968 if (bind_rdev_to_array(rdev, mddev))
5969 export_rdev(rdev);
5970 }
5971 autorun_array(mddev);
5972 mddev_unlock(mddev);
5973 }
5974 /* on success, candidates will be empty, on error
5975 * it won't...
5976 */
159ec1fc 5977 rdev_for_each_list(rdev, tmp, &candidates) {
4b80991c 5978 list_del_init(&rdev->same_set);
1da177e4 5979 export_rdev(rdev);
4b80991c 5980 }
1da177e4
LT
5981 mddev_put(mddev);
5982 }
9d48739e 5983 pr_info("md: ... autorun DONE.\n");
1da177e4 5984}
fdee8ae4 5985#endif /* !MODULE */
1da177e4 5986
f72ffdd6 5987static int get_version(void __user *arg)
1da177e4
LT
5988{
5989 mdu_version_t ver;
5990
5991 ver.major = MD_MAJOR_VERSION;
5992 ver.minor = MD_MINOR_VERSION;
5993 ver.patchlevel = MD_PATCHLEVEL_VERSION;
5994
5995 if (copy_to_user(arg, &ver, sizeof(ver)))
5996 return -EFAULT;
5997
5998 return 0;
5999}
6000
f72ffdd6 6001static int get_array_info(struct mddev *mddev, void __user *arg)
1da177e4
LT
6002{
6003 mdu_array_info_t info;
a9f326eb 6004 int nr,working,insync,failed,spare;
3cb03002 6005 struct md_rdev *rdev;
1da177e4 6006
1ca69c4b
N
6007 nr = working = insync = failed = spare = 0;
6008 rcu_read_lock();
6009 rdev_for_each_rcu(rdev, mddev) {
1da177e4 6010 nr++;
b2d444d7 6011 if (test_bit(Faulty, &rdev->flags))
1da177e4
LT
6012 failed++;
6013 else {
6014 working++;
b2d444d7 6015 if (test_bit(In_sync, &rdev->flags))
f72ffdd6 6016 insync++;
b347af81
SL
6017 else if (test_bit(Journal, &rdev->flags))
6018 /* TODO: add journal count to md_u.h */
6019 ;
1da177e4
LT
6020 else
6021 spare++;
6022 }
6023 }
1ca69c4b 6024 rcu_read_unlock();
1da177e4
LT
6025
6026 info.major_version = mddev->major_version;
6027 info.minor_version = mddev->minor_version;
6028 info.patch_version = MD_PATCHLEVEL_VERSION;
9ebc6ef1 6029 info.ctime = clamp_t(time64_t, mddev->ctime, 0, U32_MAX);
1da177e4 6030 info.level = mddev->level;
58c0fed4
AN
6031 info.size = mddev->dev_sectors / 2;
6032 if (info.size != mddev->dev_sectors / 2) /* overflow */
284ae7ca 6033 info.size = -1;
1da177e4
LT
6034 info.nr_disks = nr;
6035 info.raid_disks = mddev->raid_disks;
6036 info.md_minor = mddev->md_minor;
6037 info.not_persistent= !mddev->persistent;
6038
9ebc6ef1 6039 info.utime = clamp_t(time64_t, mddev->utime, 0, U32_MAX);
1da177e4
LT
6040 info.state = 0;
6041 if (mddev->in_sync)
6042 info.state = (1<<MD_SB_CLEAN);
c3d9714e 6043 if (mddev->bitmap && mddev->bitmap_info.offset)
9bd35920 6044 info.state |= (1<<MD_SB_BITMAP_PRESENT);
ca8895d9
GR
6045 if (mddev_is_clustered(mddev))
6046 info.state |= (1<<MD_SB_CLUSTERED);
a9f326eb 6047 info.active_disks = insync;
1da177e4
LT
6048 info.working_disks = working;
6049 info.failed_disks = failed;
6050 info.spare_disks = spare;
6051
6052 info.layout = mddev->layout;
9d8f0363 6053 info.chunk_size = mddev->chunk_sectors << 9;
1da177e4
LT
6054
6055 if (copy_to_user(arg, &info, sizeof(info)))
6056 return -EFAULT;
6057
6058 return 0;
6059}
6060
f72ffdd6 6061static int get_bitmap_file(struct mddev *mddev, void __user * arg)
32a7627c
N
6062{
6063 mdu_bitmap_file_t *file = NULL; /* too big for stack allocation */
f4ad3d38 6064 char *ptr;
4af1a041 6065 int err;
32a7627c 6066
b6878d9e 6067 file = kzalloc(sizeof(*file), GFP_NOIO);
32a7627c 6068 if (!file)
4af1a041 6069 return -ENOMEM;
32a7627c 6070
4af1a041
N
6071 err = 0;
6072 spin_lock(&mddev->lock);
25eafe1a
BR
6073 /* bitmap enabled */
6074 if (mddev->bitmap_info.file) {
6075 ptr = file_path(mddev->bitmap_info.file, file->pathname,
6076 sizeof(file->pathname));
6077 if (IS_ERR(ptr))
6078 err = PTR_ERR(ptr);
6079 else
6080 memmove(file->pathname, ptr,
6081 sizeof(file->pathname)-(ptr-file->pathname));
6082 }
4af1a041 6083 spin_unlock(&mddev->lock);
32a7627c 6084
4af1a041
N
6085 if (err == 0 &&
6086 copy_to_user(arg, file, sizeof(*file)))
32a7627c 6087 err = -EFAULT;
4af1a041 6088
32a7627c
N
6089 kfree(file);
6090 return err;
6091}
6092
f72ffdd6 6093static int get_disk_info(struct mddev *mddev, void __user * arg)
1da177e4
LT
6094{
6095 mdu_disk_info_t info;
3cb03002 6096 struct md_rdev *rdev;
1da177e4
LT
6097
6098 if (copy_from_user(&info, arg, sizeof(info)))
6099 return -EFAULT;
6100
1ca69c4b 6101 rcu_read_lock();
57d051dc 6102 rdev = md_find_rdev_nr_rcu(mddev, info.number);
1da177e4
LT
6103 if (rdev) {
6104 info.major = MAJOR(rdev->bdev->bd_dev);
6105 info.minor = MINOR(rdev->bdev->bd_dev);
6106 info.raid_disk = rdev->raid_disk;
6107 info.state = 0;
b2d444d7 6108 if (test_bit(Faulty, &rdev->flags))
1da177e4 6109 info.state |= (1<<MD_DISK_FAULTY);
b2d444d7 6110 else if (test_bit(In_sync, &rdev->flags)) {
1da177e4
LT
6111 info.state |= (1<<MD_DISK_ACTIVE);
6112 info.state |= (1<<MD_DISK_SYNC);
6113 }
9efdca16 6114 if (test_bit(Journal, &rdev->flags))
bac624f3 6115 info.state |= (1<<MD_DISK_JOURNAL);
8ddf9efe
N
6116 if (test_bit(WriteMostly, &rdev->flags))
6117 info.state |= (1<<MD_DISK_WRITEMOSTLY);
688834e6
N
6118 if (test_bit(FailFast, &rdev->flags))
6119 info.state |= (1<<MD_DISK_FAILFAST);
1da177e4
LT
6120 } else {
6121 info.major = info.minor = 0;
6122 info.raid_disk = -1;
6123 info.state = (1<<MD_DISK_REMOVED);
6124 }
1ca69c4b 6125 rcu_read_unlock();
1da177e4
LT
6126
6127 if (copy_to_user(arg, &info, sizeof(info)))
6128 return -EFAULT;
6129
6130 return 0;
6131}
6132
f72ffdd6 6133static int add_new_disk(struct mddev *mddev, mdu_disk_info_t *info)
1da177e4
LT
6134{
6135 char b[BDEVNAME_SIZE], b2[BDEVNAME_SIZE];
3cb03002 6136 struct md_rdev *rdev;
1da177e4
LT
6137 dev_t dev = MKDEV(info->major,info->minor);
6138
1aee41f6
GR
6139 if (mddev_is_clustered(mddev) &&
6140 !(info->state & ((1 << MD_DISK_CLUSTER_ADD) | (1 << MD_DISK_CANDIDATE)))) {
9d48739e
N
6141 pr_warn("%s: Cannot add to clustered mddev.\n",
6142 mdname(mddev));
1aee41f6
GR
6143 return -EINVAL;
6144 }
6145
1da177e4
LT
6146 if (info->major != MAJOR(dev) || info->minor != MINOR(dev))
6147 return -EOVERFLOW;
6148
6149 if (!mddev->raid_disks) {
6150 int err;
6151 /* expecting a device which has a superblock */
6152 rdev = md_import_device(dev, mddev->major_version, mddev->minor_version);
6153 if (IS_ERR(rdev)) {
9d48739e 6154 pr_warn("md: md_import_device returned %ld\n",
1da177e4
LT
6155 PTR_ERR(rdev));
6156 return PTR_ERR(rdev);
6157 }
6158 if (!list_empty(&mddev->disks)) {
3cb03002
N
6159 struct md_rdev *rdev0
6160 = list_entry(mddev->disks.next,
6161 struct md_rdev, same_set);
a9f326eb 6162 err = super_types[mddev->major_version]
1da177e4
LT
6163 .load_super(rdev, rdev0, mddev->minor_version);
6164 if (err < 0) {
9d48739e 6165 pr_warn("md: %s has different UUID to %s\n",
f72ffdd6 6166 bdevname(rdev->bdev,b),
1da177e4
LT
6167 bdevname(rdev0->bdev,b2));
6168 export_rdev(rdev);
6169 return -EINVAL;
6170 }
6171 }
6172 err = bind_rdev_to_array(rdev, mddev);
6173 if (err)
6174 export_rdev(rdev);
6175 return err;
6176 }
6177
6178 /*
6179 * add_new_disk can be used once the array is assembled
6180 * to add "hot spares". They must already have a superblock
6181 * written
6182 */
6183 if (mddev->pers) {
6184 int err;
6185 if (!mddev->pers->hot_add_disk) {
9d48739e
N
6186 pr_warn("%s: personality does not support diskops!\n",
6187 mdname(mddev));
1da177e4
LT
6188 return -EINVAL;
6189 }
7b1e35f6
N
6190 if (mddev->persistent)
6191 rdev = md_import_device(dev, mddev->major_version,
6192 mddev->minor_version);
6193 else
6194 rdev = md_import_device(dev, -1, -1);
1da177e4 6195 if (IS_ERR(rdev)) {
9d48739e 6196 pr_warn("md: md_import_device returned %ld\n",
1da177e4
LT
6197 PTR_ERR(rdev));
6198 return PTR_ERR(rdev);
6199 }
1a855a06 6200 /* set saved_raid_disk if appropriate */
41158c7e
N
6201 if (!mddev->persistent) {
6202 if (info->state & (1<<MD_DISK_SYNC) &&
bf572541 6203 info->raid_disk < mddev->raid_disks) {
41158c7e 6204 rdev->raid_disk = info->raid_disk;
bf572541 6205 set_bit(In_sync, &rdev->flags);
8313b8e5 6206 clear_bit(Bitmap_sync, &rdev->flags);
bf572541 6207 } else
41158c7e 6208 rdev->raid_disk = -1;
f466722c 6209 rdev->saved_raid_disk = rdev->raid_disk;
41158c7e
N
6210 } else
6211 super_types[mddev->major_version].
6212 validate_super(mddev, rdev);
bedd86b7 6213 if ((info->state & (1<<MD_DISK_SYNC)) &&
f4563091 6214 rdev->raid_disk != info->raid_disk) {
bedd86b7
N
6215 /* This was a hot-add request, but events doesn't
6216 * match, so reject it.
6217 */
6218 export_rdev(rdev);
6219 return -EINVAL;
6220 }
6221
b2d444d7 6222 clear_bit(In_sync, &rdev->flags); /* just to be sure */
8ddf9efe
N
6223 if (info->state & (1<<MD_DISK_WRITEMOSTLY))
6224 set_bit(WriteMostly, &rdev->flags);
575a80fa
N
6225 else
6226 clear_bit(WriteMostly, &rdev->flags);
688834e6
N
6227 if (info->state & (1<<MD_DISK_FAILFAST))
6228 set_bit(FailFast, &rdev->flags);
6229 else
6230 clear_bit(FailFast, &rdev->flags);
8ddf9efe 6231
f6b6ec5c
SL
6232 if (info->state & (1<<MD_DISK_JOURNAL)) {
6233 struct md_rdev *rdev2;
6234 bool has_journal = false;
6235
6236 /* make sure no existing journal disk */
6237 rdev_for_each(rdev2, mddev) {
6238 if (test_bit(Journal, &rdev2->flags)) {
6239 has_journal = true;
6240 break;
6241 }
6242 }
6243 if (has_journal) {
6244 export_rdev(rdev);
6245 return -EBUSY;
6246 }
bac624f3 6247 set_bit(Journal, &rdev->flags);
f6b6ec5c 6248 }
1aee41f6
GR
6249 /*
6250 * check whether the device shows up in other nodes
6251 */
6252 if (mddev_is_clustered(mddev)) {
dbb64f86 6253 if (info->state & (1 << MD_DISK_CANDIDATE))
1aee41f6 6254 set_bit(Candidate, &rdev->flags);
dbb64f86 6255 else if (info->state & (1 << MD_DISK_CLUSTER_ADD)) {
1aee41f6 6256 /* --add initiated by this node */
dbb64f86 6257 err = md_cluster_ops->add_new_disk(mddev, rdev);
1aee41f6 6258 if (err) {
1aee41f6
GR
6259 export_rdev(rdev);
6260 return err;
6261 }
6262 }
6263 }
6264
1da177e4
LT
6265 rdev->raid_disk = -1;
6266 err = bind_rdev_to_array(rdev, mddev);
dbb64f86 6267
1da177e4
LT
6268 if (err)
6269 export_rdev(rdev);
dbb64f86
GR
6270
6271 if (mddev_is_clustered(mddev)) {
e566aef1
GJ
6272 if (info->state & (1 << MD_DISK_CANDIDATE)) {
6273 if (!err) {
6274 err = md_cluster_ops->new_disk_ack(mddev,
6275 err == 0);
6276 if (err)
6277 md_kick_rdev_from_array(rdev);
6278 }
6279 } else {
dbb64f86
GR
6280 if (err)
6281 md_cluster_ops->add_new_disk_cancel(mddev);
6282 else
6283 err = add_bound_rdev(rdev);
6284 }
6285
6286 } else if (!err)
a6da4ef8 6287 err = add_bound_rdev(rdev);
dbb64f86 6288
1da177e4
LT
6289 return err;
6290 }
6291
6292 /* otherwise, add_new_disk is only allowed
6293 * for major_version==0 superblocks
6294 */
6295 if (mddev->major_version != 0) {
9d48739e 6296 pr_warn("%s: ADD_NEW_DISK not supported\n", mdname(mddev));
1da177e4
LT
6297 return -EINVAL;
6298 }
6299
6300 if (!(info->state & (1<<MD_DISK_FAULTY))) {
6301 int err;
d710e138 6302 rdev = md_import_device(dev, -1, 0);
1da177e4 6303 if (IS_ERR(rdev)) {
9d48739e 6304 pr_warn("md: error, md_import_device() returned %ld\n",
1da177e4
LT
6305 PTR_ERR(rdev));
6306 return PTR_ERR(rdev);
6307 }
6308 rdev->desc_nr = info->number;
6309 if (info->raid_disk < mddev->raid_disks)
6310 rdev->raid_disk = info->raid_disk;
6311 else
6312 rdev->raid_disk = -1;
6313
1da177e4 6314 if (rdev->raid_disk < mddev->raid_disks)
b2d444d7
N
6315 if (info->state & (1<<MD_DISK_SYNC))
6316 set_bit(In_sync, &rdev->flags);
1da177e4 6317
8ddf9efe
N
6318 if (info->state & (1<<MD_DISK_WRITEMOSTLY))
6319 set_bit(WriteMostly, &rdev->flags);
688834e6
N
6320 if (info->state & (1<<MD_DISK_FAILFAST))
6321 set_bit(FailFast, &rdev->flags);
8ddf9efe 6322
1da177e4 6323 if (!mddev->persistent) {
9d48739e 6324 pr_debug("md: nonpersistent superblock ...\n");
77304d2a
MS
6325 rdev->sb_start = i_size_read(rdev->bdev->bd_inode) / 512;
6326 } else
57b2caa3 6327 rdev->sb_start = calc_dev_sboffset(rdev);
8190e754 6328 rdev->sectors = rdev->sb_start;
1da177e4 6329
2bf071bf
N
6330 err = bind_rdev_to_array(rdev, mddev);
6331 if (err) {
6332 export_rdev(rdev);
6333 return err;
6334 }
1da177e4
LT
6335 }
6336
6337 return 0;
6338}
6339
f72ffdd6 6340static int hot_remove_disk(struct mddev *mddev, dev_t dev)
1da177e4
LT
6341{
6342 char b[BDEVNAME_SIZE];
3cb03002 6343 struct md_rdev *rdev;
1da177e4 6344
1da177e4
LT
6345 rdev = find_rdev(mddev, dev);
6346 if (!rdev)
6347 return -ENXIO;
6348
2910ff17
GR
6349 if (rdev->raid_disk < 0)
6350 goto kick_rdev;
293467aa 6351
3ea8929d
N
6352 clear_bit(Blocked, &rdev->flags);
6353 remove_and_add_spares(mddev, rdev);
6354
1da177e4
LT
6355 if (rdev->raid_disk >= 0)
6356 goto busy;
6357
2910ff17 6358kick_rdev:
54a88392 6359 if (mddev_is_clustered(mddev))
88bcfef7
GR
6360 md_cluster_ops->remove_disk(mddev, rdev);
6361
fb56dfef 6362 md_kick_rdev_from_array(rdev);
2953079c 6363 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
060b0689
N
6364 if (mddev->thread)
6365 md_wakeup_thread(mddev->thread);
6366 else
6367 md_update_sb(mddev, 1);
d7603b7e 6368 md_new_event(mddev);
1da177e4
LT
6369
6370 return 0;
6371busy:
9d48739e
N
6372 pr_debug("md: cannot remove active disk %s from %s ...\n",
6373 bdevname(rdev->bdev,b), mdname(mddev));
1da177e4
LT
6374 return -EBUSY;
6375}
6376
f72ffdd6 6377static int hot_add_disk(struct mddev *mddev, dev_t dev)
1da177e4
LT
6378{
6379 char b[BDEVNAME_SIZE];
6380 int err;
3cb03002 6381 struct md_rdev *rdev;
1da177e4
LT
6382
6383 if (!mddev->pers)
6384 return -ENODEV;
6385
6386 if (mddev->major_version != 0) {
9d48739e 6387 pr_warn("%s: HOT_ADD may only be used with version-0 superblocks.\n",
1da177e4
LT
6388 mdname(mddev));
6389 return -EINVAL;
6390 }
6391 if (!mddev->pers->hot_add_disk) {
9d48739e 6392 pr_warn("%s: personality does not support diskops!\n",
1da177e4
LT
6393 mdname(mddev));
6394 return -EINVAL;
6395 }
6396
d710e138 6397 rdev = md_import_device(dev, -1, 0);
1da177e4 6398 if (IS_ERR(rdev)) {
9d48739e 6399 pr_warn("md: error, md_import_device() returned %ld\n",
1da177e4
LT
6400 PTR_ERR(rdev));
6401 return -EINVAL;
6402 }
6403
6404 if (mddev->persistent)
57b2caa3 6405 rdev->sb_start = calc_dev_sboffset(rdev);
1da177e4 6406 else
77304d2a 6407 rdev->sb_start = i_size_read(rdev->bdev->bd_inode) / 512;
1da177e4 6408
8190e754 6409 rdev->sectors = rdev->sb_start;
1da177e4 6410
b2d444d7 6411 if (test_bit(Faulty, &rdev->flags)) {
9d48739e 6412 pr_warn("md: can not hot-add faulty %s disk to %s!\n",
1da177e4
LT
6413 bdevname(rdev->bdev,b), mdname(mddev));
6414 err = -EINVAL;
6415 goto abort_export;
6416 }
293467aa 6417
b2d444d7 6418 clear_bit(In_sync, &rdev->flags);
1da177e4 6419 rdev->desc_nr = -1;
5842730d 6420 rdev->saved_raid_disk = -1;
2bf071bf
N
6421 err = bind_rdev_to_array(rdev, mddev);
6422 if (err)
2aa82191 6423 goto abort_export;
1da177e4
LT
6424
6425 /*
6426 * The rest should better be atomic, we can have disk failures
6427 * noticed in interrupt contexts ...
6428 */
6429
1da177e4
LT
6430 rdev->raid_disk = -1;
6431
2953079c 6432 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
060b0689
N
6433 if (!mddev->thread)
6434 md_update_sb(mddev, 1);
1da177e4
LT
6435 /*
6436 * Kick recovery, maybe this spare has to be added to the
6437 * array immediately.
6438 */
6439 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
6440 md_wakeup_thread(mddev->thread);
d7603b7e 6441 md_new_event(mddev);
1da177e4
LT
6442 return 0;
6443
1da177e4
LT
6444abort_export:
6445 export_rdev(rdev);
6446 return err;
6447}
6448
fd01b88c 6449static int set_bitmap_file(struct mddev *mddev, int fd)
32a7627c 6450{
035328c2 6451 int err = 0;
32a7627c 6452
36fa3063 6453 if (mddev->pers) {
d66b1b39 6454 if (!mddev->pers->quiesce || !mddev->thread)
36fa3063
N
6455 return -EBUSY;
6456 if (mddev->recovery || mddev->sync_thread)
6457 return -EBUSY;
6458 /* we should be able to change the bitmap.. */
6459 }
32a7627c 6460
36fa3063 6461 if (fd >= 0) {
035328c2 6462 struct inode *inode;
1e594bb2
N
6463 struct file *f;
6464
6465 if (mddev->bitmap || mddev->bitmap_info.file)
36fa3063 6466 return -EEXIST; /* cannot add when bitmap is present */
1e594bb2 6467 f = fget(fd);
32a7627c 6468
1e594bb2 6469 if (f == NULL) {
9d48739e
N
6470 pr_warn("%s: error: failed to get bitmap file\n",
6471 mdname(mddev));
36fa3063
N
6472 return -EBADF;
6473 }
6474
1e594bb2 6475 inode = f->f_mapping->host;
035328c2 6476 if (!S_ISREG(inode->i_mode)) {
9d48739e
N
6477 pr_warn("%s: error: bitmap file must be a regular file\n",
6478 mdname(mddev));
035328c2 6479 err = -EBADF;
1e594bb2 6480 } else if (!(f->f_mode & FMODE_WRITE)) {
9d48739e
N
6481 pr_warn("%s: error: bitmap file must open for write\n",
6482 mdname(mddev));
035328c2
N
6483 err = -EBADF;
6484 } else if (atomic_read(&inode->i_writecount) != 1) {
9d48739e
N
6485 pr_warn("%s: error: bitmap file is already in use\n",
6486 mdname(mddev));
035328c2
N
6487 err = -EBUSY;
6488 }
6489 if (err) {
1e594bb2 6490 fput(f);
36fa3063
N
6491 return err;
6492 }
1e594bb2 6493 mddev->bitmap_info.file = f;
c3d9714e 6494 mddev->bitmap_info.offset = 0; /* file overrides offset */
36fa3063
N
6495 } else if (mddev->bitmap == NULL)
6496 return -ENOENT; /* cannot remove what isn't there */
6497 err = 0;
6498 if (mddev->pers) {
6499 mddev->pers->quiesce(mddev, 1);
69e51b44 6500 if (fd >= 0) {
f9209a32
GR
6501 struct bitmap *bitmap;
6502
6503 bitmap = bitmap_create(mddev, -1);
6504 if (!IS_ERR(bitmap)) {
6505 mddev->bitmap = bitmap;
69e51b44 6506 err = bitmap_load(mddev);
ba599aca
N
6507 } else
6508 err = PTR_ERR(bitmap);
69e51b44 6509 }
d7375ab3 6510 if (fd < 0 || err) {
36fa3063 6511 bitmap_destroy(mddev);
d7375ab3
N
6512 fd = -1; /* make sure to put the file */
6513 }
36fa3063 6514 mddev->pers->quiesce(mddev, 0);
d7375ab3
N
6515 }
6516 if (fd < 0) {
4af1a041
N
6517 struct file *f = mddev->bitmap_info.file;
6518 if (f) {
6519 spin_lock(&mddev->lock);
6520 mddev->bitmap_info.file = NULL;
6521 spin_unlock(&mddev->lock);
6522 fput(f);
6523 }
36fa3063
N
6524 }
6525
32a7627c
N
6526 return err;
6527}
6528
1da177e4
LT
6529/*
6530 * set_array_info is used two different ways
6531 * The original usage is when creating a new array.
6532 * In this usage, raid_disks is > 0 and it together with
6533 * level, size, not_persistent,layout,chunksize determine the
6534 * shape of the array.
6535 * This will always create an array with a type-0.90.0 superblock.
6536 * The newer usage is when assembling an array.
6537 * In this case raid_disks will be 0, and the major_version field is
6538 * use to determine which style super-blocks are to be found on the devices.
6539 * The minor and patch _version numbers are also kept incase the
6540 * super_block handler wishes to interpret them.
6541 */
f72ffdd6 6542static int set_array_info(struct mddev *mddev, mdu_array_info_t *info)
1da177e4
LT
6543{
6544
6545 if (info->raid_disks == 0) {
6546 /* just setting version number for superblock loading */
6547 if (info->major_version < 0 ||
50511da3 6548 info->major_version >= ARRAY_SIZE(super_types) ||
1da177e4
LT
6549 super_types[info->major_version].name == NULL) {
6550 /* maybe try to auto-load a module? */
9d48739e 6551 pr_warn("md: superblock version %d not known\n",
1da177e4
LT
6552 info->major_version);
6553 return -EINVAL;
6554 }
6555 mddev->major_version = info->major_version;
6556 mddev->minor_version = info->minor_version;
6557 mddev->patch_version = info->patch_version;
3f9d7b0d 6558 mddev->persistent = !info->not_persistent;
cbd19983
N
6559 /* ensure mddev_put doesn't delete this now that there
6560 * is some minimal configuration.
6561 */
9ebc6ef1 6562 mddev->ctime = ktime_get_real_seconds();
1da177e4
LT
6563 return 0;
6564 }
6565 mddev->major_version = MD_MAJOR_VERSION;
6566 mddev->minor_version = MD_MINOR_VERSION;
6567 mddev->patch_version = MD_PATCHLEVEL_VERSION;
9ebc6ef1 6568 mddev->ctime = ktime_get_real_seconds();
1da177e4
LT
6569
6570 mddev->level = info->level;
17115e03 6571 mddev->clevel[0] = 0;
58c0fed4 6572 mddev->dev_sectors = 2 * (sector_t)info->size;
1da177e4
LT
6573 mddev->raid_disks = info->raid_disks;
6574 /* don't set md_minor, it is determined by which /dev/md* was
6575 * openned
6576 */
6577 if (info->state & (1<<MD_SB_CLEAN))
6578 mddev->recovery_cp = MaxSector;
6579 else
6580 mddev->recovery_cp = 0;
6581 mddev->persistent = ! info->not_persistent;
e691063a 6582 mddev->external = 0;
1da177e4
LT
6583
6584 mddev->layout = info->layout;
9d8f0363 6585 mddev->chunk_sectors = info->chunk_size >> 9;
1da177e4 6586
2953079c 6587 if (mddev->persistent) {
1b3bae49
N
6588 mddev->max_disks = MD_SB_DISKS;
6589 mddev->flags = 0;
6590 mddev->sb_flags = 0;
2953079c
SL
6591 }
6592 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
1da177e4 6593
c3d9714e 6594 mddev->bitmap_info.default_offset = MD_SB_BYTES >> 9;
6409bb05 6595 mddev->bitmap_info.default_space = 64*2 - (MD_SB_BYTES >> 9);
c3d9714e 6596 mddev->bitmap_info.offset = 0;
b2a2703c 6597
f6705578
N
6598 mddev->reshape_position = MaxSector;
6599
1da177e4
LT
6600 /*
6601 * Generate a 128 bit UUID
6602 */
6603 get_random_bytes(mddev->uuid, 16);
6604
f6705578 6605 mddev->new_level = mddev->level;
664e7c41 6606 mddev->new_chunk_sectors = mddev->chunk_sectors;
f6705578
N
6607 mddev->new_layout = mddev->layout;
6608 mddev->delta_disks = 0;
2c810cdd 6609 mddev->reshape_backwards = 0;
f6705578 6610
1da177e4
LT
6611 return 0;
6612}
6613
fd01b88c 6614void md_set_array_sectors(struct mddev *mddev, sector_t array_sectors)
1f403624 6615{
b522adcd
DW
6616 WARN(!mddev_is_locked(mddev), "%s: unlocked mddev!\n", __func__);
6617
6618 if (mddev->external_size)
6619 return;
6620
1f403624
DW
6621 mddev->array_sectors = array_sectors;
6622}
6623EXPORT_SYMBOL(md_set_array_sectors);
6624
fd01b88c 6625static int update_size(struct mddev *mddev, sector_t num_sectors)
a35b0d69 6626{
3cb03002 6627 struct md_rdev *rdev;
a35b0d69 6628 int rv;
d71f9f88 6629 int fit = (num_sectors == 0);
818da59f 6630 sector_t old_dev_sectors = mddev->dev_sectors;
ab5a98b1 6631
a35b0d69
N
6632 if (mddev->pers->resize == NULL)
6633 return -EINVAL;
d71f9f88
AN
6634 /* The "num_sectors" is the number of sectors of each device that
6635 * is used. This can only make sense for arrays with redundancy.
6636 * linear and raid0 always use whatever space is available. We can only
6637 * consider changing this number if no resync or reconstruction is
6638 * happening, and if the new size is acceptable. It must fit before the
0f420358 6639 * sb_start or, if that is <data_offset, it must fit before the size
d71f9f88
AN
6640 * of each device. If num_sectors is zero, we find the largest size
6641 * that fits.
a35b0d69 6642 */
f851b60d
N
6643 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) ||
6644 mddev->sync_thread)
a35b0d69 6645 return -EBUSY;
bd8839e0
N
6646 if (mddev->ro)
6647 return -EROFS;
a4a6125a 6648
dafb20fa 6649 rdev_for_each(rdev, mddev) {
dd8ac336 6650 sector_t avail = rdev->sectors;
01ab5662 6651
d71f9f88
AN
6652 if (fit && (num_sectors == 0 || num_sectors > avail))
6653 num_sectors = avail;
6654 if (avail < num_sectors)
a35b0d69
N
6655 return -ENOSPC;
6656 }
d71f9f88 6657 rv = mddev->pers->resize(mddev, num_sectors);
c9483634 6658 if (!rv) {
818da59f
GJ
6659 if (mddev_is_clustered(mddev))
6660 md_cluster_ops->update_size(mddev, old_dev_sectors);
6661 else if (mddev->queue) {
c9483634
GJ
6662 set_capacity(mddev->gendisk, mddev->array_sectors);
6663 revalidate_disk(mddev->gendisk);
6664 }
6665 }
a35b0d69
N
6666 return rv;
6667}
6668
fd01b88c 6669static int update_raid_disks(struct mddev *mddev, int raid_disks)
da943b99
N
6670{
6671 int rv;
c6563a8c 6672 struct md_rdev *rdev;
da943b99 6673 /* change the number of raid disks */
63c70c4f 6674 if (mddev->pers->check_reshape == NULL)
da943b99 6675 return -EINVAL;
bd8839e0
N
6676 if (mddev->ro)
6677 return -EROFS;
da943b99 6678 if (raid_disks <= 0 ||
233fca36 6679 (mddev->max_disks && raid_disks >= mddev->max_disks))
da943b99 6680 return -EINVAL;
f851b60d
N
6681 if (mddev->sync_thread ||
6682 test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) ||
6683 mddev->reshape_position != MaxSector)
da943b99 6684 return -EBUSY;
c6563a8c
N
6685
6686 rdev_for_each(rdev, mddev) {
6687 if (mddev->raid_disks < raid_disks &&
6688 rdev->data_offset < rdev->new_data_offset)
6689 return -EINVAL;
6690 if (mddev->raid_disks > raid_disks &&
6691 rdev->data_offset > rdev->new_data_offset)
6692 return -EINVAL;
6693 }
6694
63c70c4f 6695 mddev->delta_disks = raid_disks - mddev->raid_disks;
2c810cdd
N
6696 if (mddev->delta_disks < 0)
6697 mddev->reshape_backwards = 1;
6698 else if (mddev->delta_disks > 0)
6699 mddev->reshape_backwards = 0;
63c70c4f
N
6700
6701 rv = mddev->pers->check_reshape(mddev);
2c810cdd 6702 if (rv < 0) {
de171cb9 6703 mddev->delta_disks = 0;
2c810cdd
N
6704 mddev->reshape_backwards = 0;
6705 }
da943b99
N
6706 return rv;
6707}
6708
1da177e4
LT
6709/*
6710 * update_array_info is used to change the configuration of an
6711 * on-line array.
6712 * The version, ctime,level,size,raid_disks,not_persistent, layout,chunk_size
6713 * fields in the info are checked against the array.
6714 * Any differences that cannot be handled will cause an error.
6715 * Normally, only one change can be managed at a time.
6716 */
fd01b88c 6717static int update_array_info(struct mddev *mddev, mdu_array_info_t *info)
1da177e4
LT
6718{
6719 int rv = 0;
6720 int cnt = 0;
36fa3063
N
6721 int state = 0;
6722
6723 /* calculate expected state,ignoring low bits */
c3d9714e 6724 if (mddev->bitmap && mddev->bitmap_info.offset)
36fa3063 6725 state |= (1 << MD_SB_BITMAP_PRESENT);
1da177e4
LT
6726
6727 if (mddev->major_version != info->major_version ||
6728 mddev->minor_version != info->minor_version ||
6729/* mddev->patch_version != info->patch_version || */
6730 mddev->ctime != info->ctime ||
6731 mddev->level != info->level ||
6732/* mddev->layout != info->layout || */
4e023612 6733 mddev->persistent != !info->not_persistent ||
9d8f0363 6734 mddev->chunk_sectors != info->chunk_size >> 9 ||
36fa3063
N
6735 /* ignore bottom 8 bits of state, and allow SB_BITMAP_PRESENT to change */
6736 ((state^info->state) & 0xfffffe00)
6737 )
1da177e4
LT
6738 return -EINVAL;
6739 /* Check there is only one change */
58c0fed4
AN
6740 if (info->size >= 0 && mddev->dev_sectors / 2 != info->size)
6741 cnt++;
6742 if (mddev->raid_disks != info->raid_disks)
6743 cnt++;
6744 if (mddev->layout != info->layout)
6745 cnt++;
6746 if ((state ^ info->state) & (1<<MD_SB_BITMAP_PRESENT))
6747 cnt++;
6748 if (cnt == 0)
6749 return 0;
6750 if (cnt > 1)
6751 return -EINVAL;
1da177e4
LT
6752
6753 if (mddev->layout != info->layout) {
6754 /* Change layout
6755 * we don't need to do anything at the md level, the
6756 * personality will take care of it all.
6757 */
50ac168a 6758 if (mddev->pers->check_reshape == NULL)
1da177e4 6759 return -EINVAL;
597a711b
N
6760 else {
6761 mddev->new_layout = info->layout;
50ac168a 6762 rv = mddev->pers->check_reshape(mddev);
597a711b
N
6763 if (rv)
6764 mddev->new_layout = mddev->layout;
6765 return rv;
6766 }
1da177e4 6767 }
58c0fed4 6768 if (info->size >= 0 && mddev->dev_sectors / 2 != info->size)
d71f9f88 6769 rv = update_size(mddev, (sector_t)info->size * 2);
a35b0d69 6770
da943b99
N
6771 if (mddev->raid_disks != info->raid_disks)
6772 rv = update_raid_disks(mddev, info->raid_disks);
6773
36fa3063 6774 if ((state ^ info->state) & (1<<MD_SB_BITMAP_PRESENT)) {
293467aa
GR
6775 if (mddev->pers->quiesce == NULL || mddev->thread == NULL) {
6776 rv = -EINVAL;
6777 goto err;
6778 }
6779 if (mddev->recovery || mddev->sync_thread) {
6780 rv = -EBUSY;
6781 goto err;
6782 }
36fa3063 6783 if (info->state & (1<<MD_SB_BITMAP_PRESENT)) {
f9209a32 6784 struct bitmap *bitmap;
36fa3063 6785 /* add the bitmap */
293467aa
GR
6786 if (mddev->bitmap) {
6787 rv = -EEXIST;
6788 goto err;
6789 }
6790 if (mddev->bitmap_info.default_offset == 0) {
6791 rv = -EINVAL;
6792 goto err;
6793 }
c3d9714e
N
6794 mddev->bitmap_info.offset =
6795 mddev->bitmap_info.default_offset;
6409bb05
N
6796 mddev->bitmap_info.space =
6797 mddev->bitmap_info.default_space;
36fa3063 6798 mddev->pers->quiesce(mddev, 1);
f9209a32
GR
6799 bitmap = bitmap_create(mddev, -1);
6800 if (!IS_ERR(bitmap)) {
6801 mddev->bitmap = bitmap;
69e51b44 6802 rv = bitmap_load(mddev);
ba599aca
N
6803 } else
6804 rv = PTR_ERR(bitmap);
36fa3063
N
6805 if (rv)
6806 bitmap_destroy(mddev);
6807 mddev->pers->quiesce(mddev, 0);
6808 } else {
6809 /* remove the bitmap */
293467aa
GR
6810 if (!mddev->bitmap) {
6811 rv = -ENOENT;
6812 goto err;
6813 }
6814 if (mddev->bitmap->storage.file) {
6815 rv = -EINVAL;
6816 goto err;
6817 }
f6a2dc64
GJ
6818 if (mddev->bitmap_info.nodes) {
6819 /* hold PW on all the bitmap lock */
6820 if (md_cluster_ops->lock_all_bitmaps(mddev) <= 0) {
9d48739e 6821 pr_warn("md: can't change bitmap to none since the array is in use by more than one node\n");
f6a2dc64
GJ
6822 rv = -EPERM;
6823 md_cluster_ops->unlock_all_bitmaps(mddev);
6824 goto err;
6825 }
6826
6827 mddev->bitmap_info.nodes = 0;
6828 md_cluster_ops->leave(mddev);
6829 }
36fa3063
N
6830 mddev->pers->quiesce(mddev, 1);
6831 bitmap_destroy(mddev);
6832 mddev->pers->quiesce(mddev, 0);
c3d9714e 6833 mddev->bitmap_info.offset = 0;
36fa3063
N
6834 }
6835 }
850b2b42 6836 md_update_sb(mddev, 1);
293467aa
GR
6837 return rv;
6838err:
1da177e4
LT
6839 return rv;
6840}
6841
fd01b88c 6842static int set_disk_faulty(struct mddev *mddev, dev_t dev)
1da177e4 6843{
3cb03002 6844 struct md_rdev *rdev;
1ca69c4b 6845 int err = 0;
1da177e4
LT
6846
6847 if (mddev->pers == NULL)
6848 return -ENODEV;
6849
1ca69c4b
N
6850 rcu_read_lock();
6851 rdev = find_rdev_rcu(mddev, dev);
1da177e4 6852 if (!rdev)
1ca69c4b
N
6853 err = -ENODEV;
6854 else {
6855 md_error(mddev, rdev);
6856 if (!test_bit(Faulty, &rdev->flags))
6857 err = -EBUSY;
6858 }
6859 rcu_read_unlock();
6860 return err;
1da177e4
LT
6861}
6862
2f9618ce
AN
6863/*
6864 * We have a problem here : there is no easy way to give a CHS
6865 * virtual geometry. We currently pretend that we have a 2 heads
6866 * 4 sectors (with a BIG number of cylinders...). This drives
6867 * dosfs just mad... ;-)
6868 */
a885c8c4
CH
6869static int md_getgeo(struct block_device *bdev, struct hd_geometry *geo)
6870{
fd01b88c 6871 struct mddev *mddev = bdev->bd_disk->private_data;
a885c8c4
CH
6872
6873 geo->heads = 2;
6874 geo->sectors = 4;
49ce6cea 6875 geo->cylinders = mddev->array_sectors / 8;
a885c8c4
CH
6876 return 0;
6877}
6878
cb335f88
NS
6879static inline bool md_ioctl_valid(unsigned int cmd)
6880{
6881 switch (cmd) {
6882 case ADD_NEW_DISK:
6883 case BLKROSET:
6884 case GET_ARRAY_INFO:
6885 case GET_BITMAP_FILE:
6886 case GET_DISK_INFO:
6887 case HOT_ADD_DISK:
6888 case HOT_REMOVE_DISK:
cb335f88
NS
6889 case RAID_AUTORUN:
6890 case RAID_VERSION:
6891 case RESTART_ARRAY_RW:
6892 case RUN_ARRAY:
6893 case SET_ARRAY_INFO:
6894 case SET_BITMAP_FILE:
6895 case SET_DISK_FAULTY:
6896 case STOP_ARRAY:
6897 case STOP_ARRAY_RO:
1aee41f6 6898 case CLUSTERED_DISK_NACK:
cb335f88
NS
6899 return true;
6900 default:
6901 return false;
6902 }
6903}
6904
a39907fa 6905static int md_ioctl(struct block_device *bdev, fmode_t mode,
1da177e4
LT
6906 unsigned int cmd, unsigned long arg)
6907{
6908 int err = 0;
6909 void __user *argp = (void __user *)arg;
fd01b88c 6910 struct mddev *mddev = NULL;
e2218350 6911 int ro;
1da177e4 6912
cb335f88
NS
6913 if (!md_ioctl_valid(cmd))
6914 return -ENOTTY;
6915
506c9e44
N
6916 switch (cmd) {
6917 case RAID_VERSION:
6918 case GET_ARRAY_INFO:
6919 case GET_DISK_INFO:
6920 break;
6921 default:
6922 if (!capable(CAP_SYS_ADMIN))
6923 return -EACCES;
6924 }
1da177e4
LT
6925
6926 /*
6927 * Commands dealing with the RAID driver but not any
6928 * particular array:
6929 */
c02c0aeb
N
6930 switch (cmd) {
6931 case RAID_VERSION:
6932 err = get_version(argp);
3adc28d8 6933 goto out;
1da177e4 6934
1da177e4 6935#ifndef MODULE
c02c0aeb
N
6936 case RAID_AUTORUN:
6937 err = 0;
6938 autostart_arrays(arg);
3adc28d8 6939 goto out;
1da177e4 6940#endif
c02c0aeb 6941 default:;
1da177e4
LT
6942 }
6943
6944 /*
6945 * Commands creating/starting a new array:
6946 */
6947
a39907fa 6948 mddev = bdev->bd_disk->private_data;
1da177e4
LT
6949
6950 if (!mddev) {
6951 BUG();
3adc28d8 6952 goto out;
1da177e4
LT
6953 }
6954
1ca69c4b
N
6955 /* Some actions do not requires the mutex */
6956 switch (cmd) {
6957 case GET_ARRAY_INFO:
6958 if (!mddev->raid_disks && !mddev->external)
6959 err = -ENODEV;
6960 else
6961 err = get_array_info(mddev, argp);
3adc28d8 6962 goto out;
1ca69c4b
N
6963
6964 case GET_DISK_INFO:
6965 if (!mddev->raid_disks && !mddev->external)
6966 err = -ENODEV;
6967 else
6968 err = get_disk_info(mddev, argp);
3adc28d8 6969 goto out;
1ca69c4b
N
6970
6971 case SET_DISK_FAULTY:
6972 err = set_disk_faulty(mddev, new_decode_dev(arg));
3adc28d8 6973 goto out;
4af1a041
N
6974
6975 case GET_BITMAP_FILE:
6976 err = get_bitmap_file(mddev, argp);
6977 goto out;
6978
1ca69c4b
N
6979 }
6980
a7a3f08d
N
6981 if (cmd == ADD_NEW_DISK)
6982 /* need to ensure md_delayed_delete() has completed */
6983 flush_workqueue(md_misc_wq);
6984
90f5f7ad
HR
6985 if (cmd == HOT_REMOVE_DISK)
6986 /* need to ensure recovery thread has run */
6987 wait_event_interruptible_timeout(mddev->sb_wait,
6988 !test_bit(MD_RECOVERY_NEEDED,
82a301cb 6989 &mddev->recovery),
90f5f7ad 6990 msecs_to_jiffies(5000));
260fa034
N
6991 if (cmd == STOP_ARRAY || cmd == STOP_ARRAY_RO) {
6992 /* Need to flush page cache, and ensure no-one else opens
6993 * and writes
6994 */
6995 mutex_lock(&mddev->open_mutex);
9ba3b7f5 6996 if (mddev->pers && atomic_read(&mddev->openers) > 1) {
260fa034
N
6997 mutex_unlock(&mddev->open_mutex);
6998 err = -EBUSY;
3adc28d8 6999 goto out;
260fa034 7000 }
af8d8e6f 7001 set_bit(MD_CLOSING, &mddev->flags);
260fa034
N
7002 mutex_unlock(&mddev->open_mutex);
7003 sync_blockdev(bdev);
7004 }
1da177e4
LT
7005 err = mddev_lock(mddev);
7006 if (err) {
9d48739e
N
7007 pr_debug("md: ioctl lock interrupted, reason %d, cmd %d\n",
7008 err, cmd);
3adc28d8 7009 goto out;
1da177e4
LT
7010 }
7011
c02c0aeb
N
7012 if (cmd == SET_ARRAY_INFO) {
7013 mdu_array_info_t info;
7014 if (!arg)
7015 memset(&info, 0, sizeof(info));
7016 else if (copy_from_user(&info, argp, sizeof(info))) {
7017 err = -EFAULT;
3adc28d8 7018 goto unlock;
c02c0aeb
N
7019 }
7020 if (mddev->pers) {
7021 err = update_array_info(mddev, &info);
7022 if (err) {
9d48739e 7023 pr_warn("md: couldn't update array info. %d\n", err);
3adc28d8 7024 goto unlock;
1da177e4 7025 }
3adc28d8 7026 goto unlock;
c02c0aeb
N
7027 }
7028 if (!list_empty(&mddev->disks)) {
9d48739e 7029 pr_warn("md: array %s already has disks!\n", mdname(mddev));
c02c0aeb 7030 err = -EBUSY;
3adc28d8 7031 goto unlock;
c02c0aeb
N
7032 }
7033 if (mddev->raid_disks) {
9d48739e 7034 pr_warn("md: array %s already initialised!\n", mdname(mddev));
c02c0aeb 7035 err = -EBUSY;
3adc28d8 7036 goto unlock;
c02c0aeb
N
7037 }
7038 err = set_array_info(mddev, &info);
7039 if (err) {
9d48739e 7040 pr_warn("md: couldn't set array info. %d\n", err);
3adc28d8 7041 goto unlock;
c02c0aeb 7042 }
3adc28d8 7043 goto unlock;
1da177e4
LT
7044 }
7045
7046 /*
7047 * Commands querying/configuring an existing array:
7048 */
32a7627c 7049 /* if we are not initialised yet, only ADD_NEW_DISK, STOP_ARRAY,
3f9d7b0d 7050 * RUN_ARRAY, and GET_ and SET_BITMAP_FILE are allowed */
a17184a9
N
7051 if ((!mddev->raid_disks && !mddev->external)
7052 && cmd != ADD_NEW_DISK && cmd != STOP_ARRAY
7053 && cmd != RUN_ARRAY && cmd != SET_BITMAP_FILE
7054 && cmd != GET_BITMAP_FILE) {
1da177e4 7055 err = -ENODEV;
3adc28d8 7056 goto unlock;
1da177e4
LT
7057 }
7058
7059 /*
7060 * Commands even a read-only array can execute:
7061 */
c02c0aeb 7062 switch (cmd) {
c02c0aeb
N
7063 case RESTART_ARRAY_RW:
7064 err = restart_array(mddev);
3adc28d8 7065 goto unlock;
1da177e4 7066
c02c0aeb
N
7067 case STOP_ARRAY:
7068 err = do_md_stop(mddev, 0, bdev);
3adc28d8 7069 goto unlock;
1da177e4 7070
c02c0aeb
N
7071 case STOP_ARRAY_RO:
7072 err = md_set_readonly(mddev, bdev);
3adc28d8 7073 goto unlock;
1da177e4 7074
3ea8929d
N
7075 case HOT_REMOVE_DISK:
7076 err = hot_remove_disk(mddev, new_decode_dev(arg));
3adc28d8 7077 goto unlock;
3ea8929d 7078
7ceb17e8
N
7079 case ADD_NEW_DISK:
7080 /* We can support ADD_NEW_DISK on read-only arrays
466ad292 7081 * only if we are re-adding a preexisting device.
7ceb17e8
N
7082 * So require mddev->pers and MD_DISK_SYNC.
7083 */
7084 if (mddev->pers) {
7085 mdu_disk_info_t info;
7086 if (copy_from_user(&info, argp, sizeof(info)))
7087 err = -EFAULT;
7088 else if (!(info.state & (1<<MD_DISK_SYNC)))
7089 /* Need to clear read-only for this */
7090 break;
7091 else
7092 err = add_new_disk(mddev, &info);
3adc28d8 7093 goto unlock;
7ceb17e8
N
7094 }
7095 break;
7096
c02c0aeb
N
7097 case BLKROSET:
7098 if (get_user(ro, (int __user *)(arg))) {
7099 err = -EFAULT;
3adc28d8 7100 goto unlock;
c02c0aeb
N
7101 }
7102 err = -EINVAL;
e2218350 7103
c02c0aeb
N
7104 /* if the bdev is going readonly the value of mddev->ro
7105 * does not matter, no writes are coming
7106 */
7107 if (ro)
3adc28d8 7108 goto unlock;
e2218350 7109
c02c0aeb
N
7110 /* are we are already prepared for writes? */
7111 if (mddev->ro != 1)
3adc28d8 7112 goto unlock;
e2218350 7113
c02c0aeb
N
7114 /* transitioning to readauto need only happen for
7115 * arrays that call md_write_start
7116 */
7117 if (mddev->pers) {
7118 err = restart_array(mddev);
7119 if (err == 0) {
7120 mddev->ro = 2;
7121 set_disk_ro(mddev->gendisk, 0);
e2218350 7122 }
c02c0aeb 7123 }
3adc28d8 7124 goto unlock;
1da177e4
LT
7125 }
7126
7127 /*
7128 * The remaining ioctls are changing the state of the
f91de92e 7129 * superblock, so we do not allow them on read-only arrays.
1da177e4 7130 */
326eb17d 7131 if (mddev->ro && mddev->pers) {
f91de92e
N
7132 if (mddev->ro == 2) {
7133 mddev->ro = 0;
00bcb4ac 7134 sysfs_notify_dirent_safe(mddev->sysfs_state);
0fd62b86 7135 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
f3378b48
N
7136 /* mddev_unlock will wake thread */
7137 /* If a device failed while we were read-only, we
7138 * need to make sure the metadata is updated now.
7139 */
2953079c 7140 if (test_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags)) {
f3378b48
N
7141 mddev_unlock(mddev);
7142 wait_event(mddev->sb_wait,
2953079c
SL
7143 !test_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags) &&
7144 !test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags));
29f097c4 7145 mddev_lock_nointr(mddev);
f3378b48 7146 }
f91de92e
N
7147 } else {
7148 err = -EROFS;
3adc28d8 7149 goto unlock;
f91de92e 7150 }
1da177e4
LT
7151 }
7152
c02c0aeb
N
7153 switch (cmd) {
7154 case ADD_NEW_DISK:
1da177e4 7155 {
c02c0aeb
N
7156 mdu_disk_info_t info;
7157 if (copy_from_user(&info, argp, sizeof(info)))
7158 err = -EFAULT;
7159 else
7160 err = add_new_disk(mddev, &info);
3adc28d8 7161 goto unlock;
c02c0aeb 7162 }
1da177e4 7163
1aee41f6
GR
7164 case CLUSTERED_DISK_NACK:
7165 if (mddev_is_clustered(mddev))
7166 md_cluster_ops->new_disk_ack(mddev, false);
7167 else
7168 err = -EINVAL;
7169 goto unlock;
7170
c02c0aeb
N
7171 case HOT_ADD_DISK:
7172 err = hot_add_disk(mddev, new_decode_dev(arg));
3adc28d8 7173 goto unlock;
1da177e4 7174
c02c0aeb
N
7175 case RUN_ARRAY:
7176 err = do_md_run(mddev);
3adc28d8 7177 goto unlock;
1da177e4 7178
c02c0aeb
N
7179 case SET_BITMAP_FILE:
7180 err = set_bitmap_file(mddev, (int)arg);
3adc28d8 7181 goto unlock;
32a7627c 7182
c02c0aeb
N
7183 default:
7184 err = -EINVAL;
3adc28d8 7185 goto unlock;
1da177e4
LT
7186 }
7187
3adc28d8 7188unlock:
d3374825
N
7189 if (mddev->hold_active == UNTIL_IOCTL &&
7190 err != -EINVAL)
7191 mddev->hold_active = 0;
1da177e4 7192 mddev_unlock(mddev);
3adc28d8 7193out:
1da177e4
LT
7194 return err;
7195}
aa98aa31
AB
7196#ifdef CONFIG_COMPAT
7197static int md_compat_ioctl(struct block_device *bdev, fmode_t mode,
7198 unsigned int cmd, unsigned long arg)
7199{
7200 switch (cmd) {
7201 case HOT_REMOVE_DISK:
7202 case HOT_ADD_DISK:
7203 case SET_DISK_FAULTY:
7204 case SET_BITMAP_FILE:
7205 /* These take in integer arg, do not convert */
7206 break;
7207 default:
7208 arg = (unsigned long)compat_ptr(arg);
7209 break;
7210 }
7211
7212 return md_ioctl(bdev, mode, cmd, arg);
7213}
7214#endif /* CONFIG_COMPAT */
1da177e4 7215
a39907fa 7216static int md_open(struct block_device *bdev, fmode_t mode)
1da177e4
LT
7217{
7218 /*
7219 * Succeed if we can lock the mddev, which confirms that
7220 * it isn't being stopped right now.
7221 */
fd01b88c 7222 struct mddev *mddev = mddev_find(bdev->bd_dev);
1da177e4
LT
7223 int err;
7224
0c098220
YL
7225 if (!mddev)
7226 return -ENODEV;
7227
d3374825
N
7228 if (mddev->gendisk != bdev->bd_disk) {
7229 /* we are racing with mddev_put which is discarding this
7230 * bd_disk.
7231 */
7232 mddev_put(mddev);
7233 /* Wait until bdev->bd_disk is definitely gone */
e804ac78 7234 flush_workqueue(md_misc_wq);
d3374825
N
7235 /* Then retry the open from the top */
7236 return -ERESTARTSYS;
7237 }
7238 BUG_ON(mddev != bdev->bd_disk->private_data);
7239
c8c00a69 7240 if ((err = mutex_lock_interruptible(&mddev->open_mutex)))
1da177e4
LT
7241 goto out;
7242
af8d8e6f
GJ
7243 if (test_bit(MD_CLOSING, &mddev->flags)) {
7244 mutex_unlock(&mddev->open_mutex);
e2342ca8
N
7245 err = -ENODEV;
7246 goto out;
af8d8e6f
GJ
7247 }
7248
1da177e4 7249 err = 0;
f2ea68cf 7250 atomic_inc(&mddev->openers);
c8c00a69 7251 mutex_unlock(&mddev->open_mutex);
1da177e4 7252
f0b4f7e2 7253 check_disk_change(bdev);
1da177e4 7254 out:
e2342ca8
N
7255 if (err)
7256 mddev_put(mddev);
1da177e4
LT
7257 return err;
7258}
7259
db2a144b 7260static void md_release(struct gendisk *disk, fmode_t mode)
1da177e4 7261{
f72ffdd6 7262 struct mddev *mddev = disk->private_data;
1da177e4 7263
52e5f9d1 7264 BUG_ON(!mddev);
f2ea68cf 7265 atomic_dec(&mddev->openers);
1da177e4 7266 mddev_put(mddev);
1da177e4 7267}
f0b4f7e2
N
7268
7269static int md_media_changed(struct gendisk *disk)
7270{
fd01b88c 7271 struct mddev *mddev = disk->private_data;
f0b4f7e2
N
7272
7273 return mddev->changed;
7274}
7275
7276static int md_revalidate(struct gendisk *disk)
7277{
fd01b88c 7278 struct mddev *mddev = disk->private_data;
f0b4f7e2
N
7279
7280 mddev->changed = 0;
7281 return 0;
7282}
83d5cde4 7283static const struct block_device_operations md_fops =
1da177e4
LT
7284{
7285 .owner = THIS_MODULE,
a39907fa
AV
7286 .open = md_open,
7287 .release = md_release,
b492b852 7288 .ioctl = md_ioctl,
aa98aa31
AB
7289#ifdef CONFIG_COMPAT
7290 .compat_ioctl = md_compat_ioctl,
7291#endif
a885c8c4 7292 .getgeo = md_getgeo,
f0b4f7e2
N
7293 .media_changed = md_media_changed,
7294 .revalidate_disk= md_revalidate,
1da177e4
LT
7295};
7296
f72ffdd6 7297static int md_thread(void *arg)
1da177e4 7298{
2b8bf345 7299 struct md_thread *thread = arg;
1da177e4 7300
1da177e4
LT
7301 /*
7302 * md_thread is a 'system-thread', it's priority should be very
7303 * high. We avoid resource deadlocks individually in each
7304 * raid personality. (RAID5 does preallocation) We also use RR and
7305 * the very same RT priority as kswapd, thus we will never get
7306 * into a priority inversion deadlock.
7307 *
7308 * we definitely have to have equal or higher priority than
7309 * bdflush, otherwise bdflush will deadlock if there are too
7310 * many dirty RAID5 blocks.
7311 */
1da177e4 7312
6985c43f 7313 allow_signal(SIGKILL);
a6fb0934 7314 while (!kthread_should_stop()) {
1da177e4 7315
93588e22
N
7316 /* We need to wait INTERRUPTIBLE so that
7317 * we don't add to the load-average.
7318 * That means we need to be sure no signals are
7319 * pending
7320 */
7321 if (signal_pending(current))
7322 flush_signals(current);
7323
7324 wait_event_interruptible_timeout
7325 (thread->wqueue,
7326 test_bit(THREAD_WAKEUP, &thread->flags)
ce1ccd07 7327 || kthread_should_stop() || kthread_should_park(),
93588e22 7328 thread->timeout);
1da177e4 7329
6c987910 7330 clear_bit(THREAD_WAKEUP, &thread->flags);
ce1ccd07
SL
7331 if (kthread_should_park())
7332 kthread_parkme();
6c987910 7333 if (!kthread_should_stop())
4ed8731d 7334 thread->run(thread);
1da177e4 7335 }
a6fb0934 7336
1da177e4
LT
7337 return 0;
7338}
7339
2b8bf345 7340void md_wakeup_thread(struct md_thread *thread)
1da177e4
LT
7341{
7342 if (thread) {
36a4e1fe 7343 pr_debug("md: waking up MD thread %s.\n", thread->tsk->comm);
1da177e4
LT
7344 set_bit(THREAD_WAKEUP, &thread->flags);
7345 wake_up(&thread->wqueue);
7346 }
7347}
6c144d31 7348EXPORT_SYMBOL(md_wakeup_thread);
1da177e4 7349
4ed8731d
SL
7350struct md_thread *md_register_thread(void (*run) (struct md_thread *),
7351 struct mddev *mddev, const char *name)
1da177e4 7352{
2b8bf345 7353 struct md_thread *thread;
1da177e4 7354
2b8bf345 7355 thread = kzalloc(sizeof(struct md_thread), GFP_KERNEL);
1da177e4
LT
7356 if (!thread)
7357 return NULL;
7358
1da177e4
LT
7359 init_waitqueue_head(&thread->wqueue);
7360
1da177e4
LT
7361 thread->run = run;
7362 thread->mddev = mddev;
32a7627c 7363 thread->timeout = MAX_SCHEDULE_TIMEOUT;
0da3c619
N
7364 thread->tsk = kthread_run(md_thread, thread,
7365 "%s_%s",
7366 mdname(thread->mddev),
0232605d 7367 name);
a6fb0934 7368 if (IS_ERR(thread->tsk)) {
1da177e4
LT
7369 kfree(thread);
7370 return NULL;
7371 }
1da177e4
LT
7372 return thread;
7373}
6c144d31 7374EXPORT_SYMBOL(md_register_thread);
1da177e4 7375
2b8bf345 7376void md_unregister_thread(struct md_thread **threadp)
1da177e4 7377{
2b8bf345 7378 struct md_thread *thread = *threadp;
e0cf8f04
N
7379 if (!thread)
7380 return;
36a4e1fe 7381 pr_debug("interrupting MD-thread pid %d\n", task_pid_nr(thread->tsk));
01f96c0a
N
7382 /* Locking ensures that mddev_unlock does not wake_up a
7383 * non-existent thread
7384 */
7385 spin_lock(&pers_lock);
7386 *threadp = NULL;
7387 spin_unlock(&pers_lock);
a6fb0934
N
7388
7389 kthread_stop(thread->tsk);
1da177e4
LT
7390 kfree(thread);
7391}
6c144d31 7392EXPORT_SYMBOL(md_unregister_thread);
1da177e4 7393
fd01b88c 7394void md_error(struct mddev *mddev, struct md_rdev *rdev)
1da177e4 7395{
b2d444d7 7396 if (!rdev || test_bit(Faulty, &rdev->flags))
1da177e4 7397 return;
6bfe0b49 7398
de393cde 7399 if (!mddev->pers || !mddev->pers->error_handler)
1da177e4
LT
7400 return;
7401 mddev->pers->error_handler(mddev,rdev);
72a23c21
NB
7402 if (mddev->degraded)
7403 set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
00bcb4ac 7404 sysfs_notify_dirent_safe(rdev->sysfs_state);
1da177e4
LT
7405 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
7406 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
7407 md_wakeup_thread(mddev->thread);
768a418d 7408 if (mddev->event_work.func)
e804ac78 7409 queue_work(md_misc_wq, &mddev->event_work);
bb9ef716 7410 md_new_event(mddev);
1da177e4 7411}
6c144d31 7412EXPORT_SYMBOL(md_error);
1da177e4
LT
7413
7414/* seq_file implementation /proc/mdstat */
7415
7416static void status_unused(struct seq_file *seq)
7417{
7418 int i = 0;
3cb03002 7419 struct md_rdev *rdev;
1da177e4
LT
7420
7421 seq_printf(seq, "unused devices: ");
7422
159ec1fc 7423 list_for_each_entry(rdev, &pending_raid_disks, same_set) {
1da177e4
LT
7424 char b[BDEVNAME_SIZE];
7425 i++;
7426 seq_printf(seq, "%s ",
7427 bdevname(rdev->bdev,b));
7428 }
7429 if (!i)
7430 seq_printf(seq, "<none>");
7431
7432 seq_printf(seq, "\n");
7433}
7434
f7851be7 7435static int status_resync(struct seq_file *seq, struct mddev *mddev)
1da177e4 7436{
dd71cf6b
N
7437 sector_t max_sectors, resync, res;
7438 unsigned long dt, db;
7439 sector_t rt;
4588b42e
N
7440 int scale;
7441 unsigned int per_milli;
1da177e4 7442
c804cdec
N
7443 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery) ||
7444 test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
dd71cf6b 7445 max_sectors = mddev->resync_max_sectors;
1da177e4 7446 else
dd71cf6b 7447 max_sectors = mddev->dev_sectors;
1da177e4 7448
f7851be7
N
7449 resync = mddev->curr_resync;
7450 if (resync <= 3) {
7451 if (test_bit(MD_RECOVERY_DONE, &mddev->recovery))
7452 /* Still cleaning up */
7453 resync = max_sectors;
7454 } else
7455 resync -= atomic_read(&mddev->recovery_active);
7456
7457 if (resync == 0) {
7458 if (mddev->recovery_cp < MaxSector) {
7459 seq_printf(seq, "\tresync=PENDING");
7460 return 1;
7461 }
7462 return 0;
7463 }
7464 if (resync < 3) {
7465 seq_printf(seq, "\tresync=DELAYED");
7466 return 1;
7467 }
7468
403df478 7469 WARN_ON(max_sectors == 0);
4588b42e 7470 /* Pick 'scale' such that (resync>>scale)*1000 will fit
dd71cf6b 7471 * in a sector_t, and (max_sectors>>scale) will fit in a
4588b42e
N
7472 * u32, as those are the requirements for sector_div.
7473 * Thus 'scale' must be at least 10
7474 */
7475 scale = 10;
7476 if (sizeof(sector_t) > sizeof(unsigned long)) {
dd71cf6b 7477 while ( max_sectors/2 > (1ULL<<(scale+32)))
4588b42e
N
7478 scale++;
7479 }
7480 res = (resync>>scale)*1000;
dd71cf6b 7481 sector_div(res, (u32)((max_sectors>>scale)+1));
4588b42e
N
7482
7483 per_milli = res;
1da177e4 7484 {
4588b42e 7485 int i, x = per_milli/50, y = 20-x;
1da177e4
LT
7486 seq_printf(seq, "[");
7487 for (i = 0; i < x; i++)
7488 seq_printf(seq, "=");
7489 seq_printf(seq, ">");
7490 for (i = 0; i < y; i++)
7491 seq_printf(seq, ".");
7492 seq_printf(seq, "] ");
7493 }
4588b42e 7494 seq_printf(seq, " %s =%3u.%u%% (%llu/%llu)",
ccfcc3c1
N
7495 (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery)?
7496 "reshape" :
61df9d91
N
7497 (test_bit(MD_RECOVERY_CHECK, &mddev->recovery)?
7498 "check" :
7499 (test_bit(MD_RECOVERY_SYNC, &mddev->recovery) ?
7500 "resync" : "recovery"))),
7501 per_milli/10, per_milli % 10,
dd71cf6b
N
7502 (unsigned long long) resync/2,
7503 (unsigned long long) max_sectors/2);
1da177e4
LT
7504
7505 /*
1da177e4
LT
7506 * dt: time from mark until now
7507 * db: blocks written from mark until now
7508 * rt: remaining time
dd71cf6b
N
7509 *
7510 * rt is a sector_t, so could be 32bit or 64bit.
7511 * So we divide before multiply in case it is 32bit and close
7512 * to the limit.
25985edc 7513 * We scale the divisor (db) by 32 to avoid losing precision
dd71cf6b
N
7514 * near the end of resync when the number of remaining sectors
7515 * is close to 'db'.
7516 * We then divide rt by 32 after multiplying by db to compensate.
7517 * The '+1' avoids division by zero if db is very small.
1da177e4
LT
7518 */
7519 dt = ((jiffies - mddev->resync_mark) / HZ);
7520 if (!dt) dt++;
ff4e8d9a
N
7521 db = (mddev->curr_mark_cnt - atomic_read(&mddev->recovery_active))
7522 - mddev->resync_mark_cnt;
1da177e4 7523
dd71cf6b
N
7524 rt = max_sectors - resync; /* number of remaining sectors */
7525 sector_div(rt, db/32+1);
7526 rt *= dt;
7527 rt >>= 5;
7528
7529 seq_printf(seq, " finish=%lu.%lumin", (unsigned long)rt / 60,
7530 ((unsigned long)rt % 60)/6);
1da177e4 7531
ff4e8d9a 7532 seq_printf(seq, " speed=%ldK/sec", db/2/dt);
f7851be7 7533 return 1;
1da177e4
LT
7534}
7535
7536static void *md_seq_start(struct seq_file *seq, loff_t *pos)
7537{
7538 struct list_head *tmp;
7539 loff_t l = *pos;
fd01b88c 7540 struct mddev *mddev;
1da177e4
LT
7541
7542 if (l >= 0x10000)
7543 return NULL;
7544 if (!l--)
7545 /* header */
7546 return (void*)1;
7547
7548 spin_lock(&all_mddevs_lock);
7549 list_for_each(tmp,&all_mddevs)
7550 if (!l--) {
fd01b88c 7551 mddev = list_entry(tmp, struct mddev, all_mddevs);
1da177e4
LT
7552 mddev_get(mddev);
7553 spin_unlock(&all_mddevs_lock);
7554 return mddev;
7555 }
7556 spin_unlock(&all_mddevs_lock);
7557 if (!l--)
7558 return (void*)2;/* tail */
7559 return NULL;
7560}
7561
7562static void *md_seq_next(struct seq_file *seq, void *v, loff_t *pos)
7563{
7564 struct list_head *tmp;
fd01b88c 7565 struct mddev *next_mddev, *mddev = v;
f72ffdd6 7566
1da177e4
LT
7567 ++*pos;
7568 if (v == (void*)2)
7569 return NULL;
7570
7571 spin_lock(&all_mddevs_lock);
7572 if (v == (void*)1)
7573 tmp = all_mddevs.next;
7574 else
7575 tmp = mddev->all_mddevs.next;
7576 if (tmp != &all_mddevs)
fd01b88c 7577 next_mddev = mddev_get(list_entry(tmp,struct mddev,all_mddevs));
1da177e4
LT
7578 else {
7579 next_mddev = (void*)2;
7580 *pos = 0x10000;
f72ffdd6 7581 }
1da177e4
LT
7582 spin_unlock(&all_mddevs_lock);
7583
7584 if (v != (void*)1)
7585 mddev_put(mddev);
7586 return next_mddev;
7587
7588}
7589
7590static void md_seq_stop(struct seq_file *seq, void *v)
7591{
fd01b88c 7592 struct mddev *mddev = v;
1da177e4
LT
7593
7594 if (mddev && v != (void*)1 && v != (void*)2)
7595 mddev_put(mddev);
7596}
7597
7598static int md_seq_show(struct seq_file *seq, void *v)
7599{
fd01b88c 7600 struct mddev *mddev = v;
dd8ac336 7601 sector_t sectors;
3cb03002 7602 struct md_rdev *rdev;
1da177e4
LT
7603
7604 if (v == (void*)1) {
84fc4b56 7605 struct md_personality *pers;
1da177e4
LT
7606 seq_printf(seq, "Personalities : ");
7607 spin_lock(&pers_lock);
2604b703
N
7608 list_for_each_entry(pers, &pers_list, list)
7609 seq_printf(seq, "[%s] ", pers->name);
1da177e4
LT
7610
7611 spin_unlock(&pers_lock);
7612 seq_printf(seq, "\n");
f1514638 7613 seq->poll_event = atomic_read(&md_event_count);
1da177e4
LT
7614 return 0;
7615 }
7616 if (v == (void*)2) {
7617 status_unused(seq);
7618 return 0;
7619 }
7620
36d091f4 7621 spin_lock(&mddev->lock);
1da177e4
LT
7622 if (mddev->pers || mddev->raid_disks || !list_empty(&mddev->disks)) {
7623 seq_printf(seq, "%s : %sactive", mdname(mddev),
7624 mddev->pers ? "" : "in");
7625 if (mddev->pers) {
f91de92e 7626 if (mddev->ro==1)
1da177e4 7627 seq_printf(seq, " (read-only)");
f91de92e 7628 if (mddev->ro==2)
52720ae7 7629 seq_printf(seq, " (auto-read-only)");
1da177e4
LT
7630 seq_printf(seq, " %s", mddev->pers->name);
7631 }
7632
dd8ac336 7633 sectors = 0;
f97fcad3
N
7634 rcu_read_lock();
7635 rdev_for_each_rcu(rdev, mddev) {
1da177e4
LT
7636 char b[BDEVNAME_SIZE];
7637 seq_printf(seq, " %s[%d]",
7638 bdevname(rdev->bdev,b), rdev->desc_nr);
8ddf9efe
N
7639 if (test_bit(WriteMostly, &rdev->flags))
7640 seq_printf(seq, "(W)");
9efdca16
SL
7641 if (test_bit(Journal, &rdev->flags))
7642 seq_printf(seq, "(J)");
b2d444d7 7643 if (test_bit(Faulty, &rdev->flags)) {
1da177e4
LT
7644 seq_printf(seq, "(F)");
7645 continue;
2d78f8c4
N
7646 }
7647 if (rdev->raid_disk < 0)
b325a32e 7648 seq_printf(seq, "(S)"); /* spare */
2d78f8c4
N
7649 if (test_bit(Replacement, &rdev->flags))
7650 seq_printf(seq, "(R)");
dd8ac336 7651 sectors += rdev->sectors;
1da177e4 7652 }
f97fcad3 7653 rcu_read_unlock();
1da177e4
LT
7654
7655 if (!list_empty(&mddev->disks)) {
7656 if (mddev->pers)
7657 seq_printf(seq, "\n %llu blocks",
f233ea5c
AN
7658 (unsigned long long)
7659 mddev->array_sectors / 2);
1da177e4
LT
7660 else
7661 seq_printf(seq, "\n %llu blocks",
dd8ac336 7662 (unsigned long long)sectors / 2);
1da177e4 7663 }
1cd6bf19
N
7664 if (mddev->persistent) {
7665 if (mddev->major_version != 0 ||
7666 mddev->minor_version != 90) {
7667 seq_printf(seq," super %d.%d",
7668 mddev->major_version,
7669 mddev->minor_version);
7670 }
e691063a
N
7671 } else if (mddev->external)
7672 seq_printf(seq, " super external:%s",
7673 mddev->metadata_type);
7674 else
1cd6bf19 7675 seq_printf(seq, " super non-persistent");
1da177e4
LT
7676
7677 if (mddev->pers) {
d710e138 7678 mddev->pers->status(seq, mddev);
f72ffdd6 7679 seq_printf(seq, "\n ");
8e1b39d6 7680 if (mddev->pers->sync_request) {
f7851be7 7681 if (status_resync(seq, mddev))
8e1b39d6 7682 seq_printf(seq, "\n ");
8e1b39d6 7683 }
32a7627c
N
7684 } else
7685 seq_printf(seq, "\n ");
7686
57148964 7687 bitmap_status(seq, mddev->bitmap);
1da177e4
LT
7688
7689 seq_printf(seq, "\n");
7690 }
36d091f4 7691 spin_unlock(&mddev->lock);
f72ffdd6 7692
1da177e4
LT
7693 return 0;
7694}
7695
110518bc 7696static const struct seq_operations md_seq_ops = {
1da177e4
LT
7697 .start = md_seq_start,
7698 .next = md_seq_next,
7699 .stop = md_seq_stop,
7700 .show = md_seq_show,
7701};
7702
7703static int md_seq_open(struct inode *inode, struct file *file)
7704{
f1514638 7705 struct seq_file *seq;
1da177e4
LT
7706 int error;
7707
7708 error = seq_open(file, &md_seq_ops);
d7603b7e 7709 if (error)
f1514638
KS
7710 return error;
7711
7712 seq = file->private_data;
7713 seq->poll_event = atomic_read(&md_event_count);
1da177e4
LT
7714 return error;
7715}
7716
e2f23b60 7717static int md_unloading;
d7603b7e
N
7718static unsigned int mdstat_poll(struct file *filp, poll_table *wait)
7719{
f1514638 7720 struct seq_file *seq = filp->private_data;
d7603b7e
N
7721 int mask;
7722
e2f23b60 7723 if (md_unloading)
7d7e64f2 7724 return POLLIN|POLLRDNORM|POLLERR|POLLPRI;
d7603b7e
N
7725 poll_wait(filp, &md_event_waiters, wait);
7726
7727 /* always allow read */
7728 mask = POLLIN | POLLRDNORM;
7729
f1514638 7730 if (seq->poll_event != atomic_read(&md_event_count))
d7603b7e
N
7731 mask |= POLLERR | POLLPRI;
7732 return mask;
7733}
7734
fa027c2a 7735static const struct file_operations md_seq_fops = {
e24650c2 7736 .owner = THIS_MODULE,
1da177e4
LT
7737 .open = md_seq_open,
7738 .read = seq_read,
7739 .llseek = seq_lseek,
c3f94b40 7740 .release = seq_release_private,
d7603b7e 7741 .poll = mdstat_poll,
1da177e4
LT
7742};
7743
84fc4b56 7744int register_md_personality(struct md_personality *p)
1da177e4 7745{
9d48739e
N
7746 pr_debug("md: %s personality registered for level %d\n",
7747 p->name, p->level);
1da177e4 7748 spin_lock(&pers_lock);
2604b703 7749 list_add_tail(&p->list, &pers_list);
1da177e4
LT
7750 spin_unlock(&pers_lock);
7751 return 0;
7752}
6c144d31 7753EXPORT_SYMBOL(register_md_personality);
1da177e4 7754
84fc4b56 7755int unregister_md_personality(struct md_personality *p)
1da177e4 7756{
9d48739e 7757 pr_debug("md: %s personality unregistered\n", p->name);
1da177e4 7758 spin_lock(&pers_lock);
2604b703 7759 list_del_init(&p->list);
1da177e4
LT
7760 spin_unlock(&pers_lock);
7761 return 0;
7762}
6c144d31 7763EXPORT_SYMBOL(unregister_md_personality);
1da177e4 7764
6022e75b
N
7765int register_md_cluster_operations(struct md_cluster_operations *ops,
7766 struct module *module)
edb39c9d 7767{
6022e75b 7768 int ret = 0;
edb39c9d 7769 spin_lock(&pers_lock);
6022e75b
N
7770 if (md_cluster_ops != NULL)
7771 ret = -EALREADY;
7772 else {
7773 md_cluster_ops = ops;
7774 md_cluster_mod = module;
7775 }
edb39c9d 7776 spin_unlock(&pers_lock);
6022e75b 7777 return ret;
edb39c9d
GR
7778}
7779EXPORT_SYMBOL(register_md_cluster_operations);
7780
7781int unregister_md_cluster_operations(void)
7782{
7783 spin_lock(&pers_lock);
7784 md_cluster_ops = NULL;
7785 spin_unlock(&pers_lock);
7786 return 0;
7787}
7788EXPORT_SYMBOL(unregister_md_cluster_operations);
7789
7790int md_setup_cluster(struct mddev *mddev, int nodes)
7791{
47a7b0d8
GJ
7792 if (!md_cluster_ops)
7793 request_module("md-cluster");
edb39c9d 7794 spin_lock(&pers_lock);
47a7b0d8 7795 /* ensure module won't be unloaded */
edb39c9d 7796 if (!md_cluster_ops || !try_module_get(md_cluster_mod)) {
9d48739e 7797 pr_warn("can't find md-cluster module or get it's reference.\n");
edb39c9d
GR
7798 spin_unlock(&pers_lock);
7799 return -ENOENT;
7800 }
7801 spin_unlock(&pers_lock);
7802
cf921cc1 7803 return md_cluster_ops->join(mddev, nodes);
edb39c9d
GR
7804}
7805
7806void md_cluster_stop(struct mddev *mddev)
7807{
c4ce867f
GR
7808 if (!md_cluster_ops)
7809 return;
edb39c9d
GR
7810 md_cluster_ops->leave(mddev);
7811 module_put(md_cluster_mod);
7812}
7813
fd01b88c 7814static int is_mddev_idle(struct mddev *mddev, int init)
1da177e4 7815{
f72ffdd6 7816 struct md_rdev *rdev;
1da177e4 7817 int idle;
eea1bf38 7818 int curr_events;
1da177e4
LT
7819
7820 idle = 1;
4b80991c
N
7821 rcu_read_lock();
7822 rdev_for_each_rcu(rdev, mddev) {
1da177e4 7823 struct gendisk *disk = rdev->bdev->bd_contains->bd_disk;
eea1bf38
N
7824 curr_events = (int)part_stat_read(&disk->part0, sectors[0]) +
7825 (int)part_stat_read(&disk->part0, sectors[1]) -
7826 atomic_read(&disk->sync_io);
713f6ab1
N
7827 /* sync IO will cause sync_io to increase before the disk_stats
7828 * as sync_io is counted when a request starts, and
7829 * disk_stats is counted when it completes.
7830 * So resync activity will cause curr_events to be smaller than
7831 * when there was no such activity.
7832 * non-sync IO will cause disk_stat to increase without
7833 * increasing sync_io so curr_events will (eventually)
7834 * be larger than it was before. Once it becomes
7835 * substantially larger, the test below will cause
7836 * the array to appear non-idle, and resync will slow
7837 * down.
7838 * If there is a lot of outstanding resync activity when
7839 * we set last_event to curr_events, then all that activity
7840 * completing might cause the array to appear non-idle
7841 * and resync will be slowed down even though there might
7842 * not have been non-resync activity. This will only
7843 * happen once though. 'last_events' will soon reflect
7844 * the state where there is little or no outstanding
7845 * resync requests, and further resync activity will
7846 * always make curr_events less than last_events.
c0e48521 7847 *
1da177e4 7848 */
eea1bf38 7849 if (init || curr_events - rdev->last_events > 64) {
1da177e4
LT
7850 rdev->last_events = curr_events;
7851 idle = 0;
7852 }
7853 }
4b80991c 7854 rcu_read_unlock();
1da177e4
LT
7855 return idle;
7856}
7857
fd01b88c 7858void md_done_sync(struct mddev *mddev, int blocks, int ok)
1da177e4
LT
7859{
7860 /* another "blocks" (512byte) blocks have been synced */
7861 atomic_sub(blocks, &mddev->recovery_active);
7862 wake_up(&mddev->recovery_wait);
7863 if (!ok) {
dfc70645 7864 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
0a19caab 7865 set_bit(MD_RECOVERY_ERROR, &mddev->recovery);
1da177e4
LT
7866 md_wakeup_thread(mddev->thread);
7867 // stop recovery, signal do_sync ....
7868 }
7869}
6c144d31 7870EXPORT_SYMBOL(md_done_sync);
1da177e4 7871
06d91a5f
N
7872/* md_write_start(mddev, bi)
7873 * If we need to update some array metadata (e.g. 'active' flag
3d310eb7
N
7874 * in superblock) before writing, schedule a superblock update
7875 * and wait for it to complete.
06d91a5f 7876 */
fd01b88c 7877void md_write_start(struct mddev *mddev, struct bio *bi)
1da177e4 7878{
0fd62b86 7879 int did_change = 0;
06d91a5f 7880 if (bio_data_dir(bi) != WRITE)
3d310eb7 7881 return;
06d91a5f 7882
f91de92e
N
7883 BUG_ON(mddev->ro == 1);
7884 if (mddev->ro == 2) {
7885 /* need to switch to read/write */
7886 mddev->ro = 0;
7887 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
7888 md_wakeup_thread(mddev->thread);
25156198 7889 md_wakeup_thread(mddev->sync_thread);
0fd62b86 7890 did_change = 1;
f91de92e 7891 }
06d91a5f 7892 atomic_inc(&mddev->writes_pending);
31a59e34
N
7893 if (mddev->safemode == 1)
7894 mddev->safemode = 0;
06d91a5f 7895 if (mddev->in_sync) {
85572d7c 7896 spin_lock(&mddev->lock);
3d310eb7
N
7897 if (mddev->in_sync) {
7898 mddev->in_sync = 0;
2953079c
SL
7899 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
7900 set_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
3d310eb7 7901 md_wakeup_thread(mddev->thread);
0fd62b86 7902 did_change = 1;
3d310eb7 7903 }
85572d7c 7904 spin_unlock(&mddev->lock);
06d91a5f 7905 }
0fd62b86 7906 if (did_change)
00bcb4ac 7907 sysfs_notify_dirent_safe(mddev->sysfs_state);
09a44cc1 7908 wait_event(mddev->sb_wait,
2953079c 7909 !test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags));
1da177e4 7910}
6c144d31 7911EXPORT_SYMBOL(md_write_start);
1da177e4 7912
fd01b88c 7913void md_write_end(struct mddev *mddev)
1da177e4
LT
7914{
7915 if (atomic_dec_and_test(&mddev->writes_pending)) {
7916 if (mddev->safemode == 2)
7917 md_wakeup_thread(mddev->thread);
16f17b39 7918 else if (mddev->safemode_delay)
1da177e4
LT
7919 mod_timer(&mddev->safemode_timer, jiffies + mddev->safemode_delay);
7920 }
7921}
6c144d31 7922EXPORT_SYMBOL(md_write_end);
1da177e4 7923
2a2275d6
N
7924/* md_allow_write(mddev)
7925 * Calling this ensures that the array is marked 'active' so that writes
7926 * may proceed without blocking. It is important to call this before
7927 * attempting a GFP_KERNEL allocation while holding the mddev lock.
7928 * Must be called with mddev_lock held.
b5470dc5 7929 *
2953079c 7930 * In the ->external case MD_SB_CHANGE_PENDING can not be cleared until mddev->lock
b5470dc5 7931 * is dropped, so return -EAGAIN after notifying userspace.
2a2275d6 7932 */
fd01b88c 7933int md_allow_write(struct mddev *mddev)
2a2275d6
N
7934{
7935 if (!mddev->pers)
b5470dc5 7936 return 0;
2a2275d6 7937 if (mddev->ro)
b5470dc5 7938 return 0;
1a0fd497 7939 if (!mddev->pers->sync_request)
b5470dc5 7940 return 0;
2a2275d6 7941
85572d7c 7942 spin_lock(&mddev->lock);
2a2275d6
N
7943 if (mddev->in_sync) {
7944 mddev->in_sync = 0;
2953079c
SL
7945 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
7946 set_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
2a2275d6
N
7947 if (mddev->safemode_delay &&
7948 mddev->safemode == 0)
7949 mddev->safemode = 1;
85572d7c 7950 spin_unlock(&mddev->lock);
2a2275d6 7951 md_update_sb(mddev, 0);
00bcb4ac 7952 sysfs_notify_dirent_safe(mddev->sysfs_state);
2a2275d6 7953 } else
85572d7c 7954 spin_unlock(&mddev->lock);
b5470dc5 7955
2953079c 7956 if (test_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags))
b5470dc5
DW
7957 return -EAGAIN;
7958 else
7959 return 0;
2a2275d6
N
7960}
7961EXPORT_SYMBOL_GPL(md_allow_write);
7962
1da177e4
LT
7963#define SYNC_MARKS 10
7964#define SYNC_MARK_STEP (3*HZ)
54f89341 7965#define UPDATE_FREQUENCY (5*60*HZ)
4ed8731d 7966void md_do_sync(struct md_thread *thread)
1da177e4 7967{
4ed8731d 7968 struct mddev *mddev = thread->mddev;
fd01b88c 7969 struct mddev *mddev2;
1da177e4
LT
7970 unsigned int currspeed = 0,
7971 window;
ac7e50a3 7972 sector_t max_sectors,j, io_sectors, recovery_done;
1da177e4 7973 unsigned long mark[SYNC_MARKS];
54f89341 7974 unsigned long update_time;
1da177e4
LT
7975 sector_t mark_cnt[SYNC_MARKS];
7976 int last_mark,m;
7977 struct list_head *tmp;
7978 sector_t last_check;
57afd89f 7979 int skipped = 0;
3cb03002 7980 struct md_rdev *rdev;
c4a39551 7981 char *desc, *action = NULL;
7c2c57c9 7982 struct blk_plug plug;
41a9a0dc 7983 int ret;
1da177e4
LT
7984
7985 /* just incase thread restarts... */
7986 if (test_bit(MD_RECOVERY_DONE, &mddev->recovery))
7987 return;
3991b31e
N
7988 if (mddev->ro) {/* never try to sync a read-only array */
7989 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
5fd6c1dc 7990 return;
3991b31e 7991 }
1da177e4 7992
41a9a0dc
GJ
7993 if (mddev_is_clustered(mddev)) {
7994 ret = md_cluster_ops->resync_start(mddev);
7995 if (ret)
7996 goto skip;
7997
bb8bf15b 7998 set_bit(MD_CLUSTER_RESYNC_LOCKED, &mddev->flags);
41a9a0dc
GJ
7999 if (!(test_bit(MD_RECOVERY_SYNC, &mddev->recovery) ||
8000 test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) ||
8001 test_bit(MD_RECOVERY_RECOVER, &mddev->recovery))
8002 && ((unsigned long long)mddev->curr_resync_completed
8003 < (unsigned long long)mddev->resync_max_sectors))
8004 goto skip;
8005 }
8006
61df9d91 8007 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery)) {
c4a39551 8008 if (test_bit(MD_RECOVERY_CHECK, &mddev->recovery)) {
61df9d91 8009 desc = "data-check";
c4a39551
JB
8010 action = "check";
8011 } else if (test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery)) {
61df9d91 8012 desc = "requested-resync";
c4a39551
JB
8013 action = "repair";
8014 } else
61df9d91
N
8015 desc = "resync";
8016 } else if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
8017 desc = "reshape";
8018 else
8019 desc = "recovery";
8020
c4a39551
JB
8021 mddev->last_sync_action = action ?: desc;
8022
1da177e4
LT
8023 /* we overload curr_resync somewhat here.
8024 * 0 == not engaged in resync at all
8025 * 2 == checking that there is no conflict with another sync
8026 * 1 == like 2, but have yielded to allow conflicting resync to
8027 * commense
8028 * other == active in resync - this many blocks
8029 *
8030 * Before starting a resync we must have set curr_resync to
8031 * 2, and then checked that every "conflicting" array has curr_resync
8032 * less than ours. When we find one that is the same or higher
8033 * we wait on resync_wait. To avoid deadlock, we reduce curr_resync
8034 * to 1 if we choose to yield (based arbitrarily on address of mddev structure).
8035 * This will mean we have to start checking from the beginning again.
8036 *
8037 */
8038
8039 do {
c622ca54 8040 int mddev2_minor = -1;
1da177e4
LT
8041 mddev->curr_resync = 2;
8042
8043 try_again:
404e4b43 8044 if (test_bit(MD_RECOVERY_INTR, &mddev->recovery))
1da177e4 8045 goto skip;
29ac4aa3 8046 for_each_mddev(mddev2, tmp) {
1da177e4
LT
8047 if (mddev2 == mddev)
8048 continue;
90b08710
BS
8049 if (!mddev->parallel_resync
8050 && mddev2->curr_resync
8051 && match_mddev_units(mddev, mddev2)) {
1da177e4
LT
8052 DEFINE_WAIT(wq);
8053 if (mddev < mddev2 && mddev->curr_resync == 2) {
8054 /* arbitrarily yield */
8055 mddev->curr_resync = 1;
8056 wake_up(&resync_wait);
8057 }
8058 if (mddev > mddev2 && mddev->curr_resync == 1)
8059 /* no need to wait here, we can wait the next
8060 * time 'round when curr_resync == 2
8061 */
8062 continue;
9744197c
N
8063 /* We need to wait 'interruptible' so as not to
8064 * contribute to the load average, and not to
8065 * be caught by 'softlockup'
8066 */
8067 prepare_to_wait(&resync_wait, &wq, TASK_INTERRUPTIBLE);
c91abf5a 8068 if (!test_bit(MD_RECOVERY_INTR, &mddev->recovery) &&
8712e553 8069 mddev2->curr_resync >= mddev->curr_resync) {
c622ca54
AP
8070 if (mddev2_minor != mddev2->md_minor) {
8071 mddev2_minor = mddev2->md_minor;
9d48739e
N
8072 pr_info("md: delaying %s of %s until %s has finished (they share one or more physical units)\n",
8073 desc, mdname(mddev),
8074 mdname(mddev2));
c622ca54 8075 }
1da177e4 8076 mddev_put(mddev2);
9744197c
N
8077 if (signal_pending(current))
8078 flush_signals(current);
1da177e4
LT
8079 schedule();
8080 finish_wait(&resync_wait, &wq);
8081 goto try_again;
8082 }
8083 finish_wait(&resync_wait, &wq);
8084 }
8085 }
8086 } while (mddev->curr_resync < 2);
8087
5fd6c1dc 8088 j = 0;
9d88883e 8089 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery)) {
1da177e4 8090 /* resync follows the size requested by the personality,
57afd89f 8091 * which defaults to physical size, but can be virtual size
1da177e4
LT
8092 */
8093 max_sectors = mddev->resync_max_sectors;
7f7583d4 8094 atomic64_set(&mddev->resync_mismatches, 0);
5fd6c1dc 8095 /* we don't use the checkpoint if there's a bitmap */
5e96ee65
NB
8096 if (test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery))
8097 j = mddev->resync_min;
8098 else if (!mddev->bitmap)
5fd6c1dc 8099 j = mddev->recovery_cp;
5e96ee65 8100
ccfcc3c1 8101 } else if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery))
c804cdec 8102 max_sectors = mddev->resync_max_sectors;
5fd6c1dc 8103 else {
1da177e4 8104 /* recovery follows the physical size of devices */
58c0fed4 8105 max_sectors = mddev->dev_sectors;
5fd6c1dc 8106 j = MaxSector;
4e59ca7d 8107 rcu_read_lock();
dafb20fa 8108 rdev_for_each_rcu(rdev, mddev)
5fd6c1dc 8109 if (rdev->raid_disk >= 0 &&
f2076e7d 8110 !test_bit(Journal, &rdev->flags) &&
5fd6c1dc
N
8111 !test_bit(Faulty, &rdev->flags) &&
8112 !test_bit(In_sync, &rdev->flags) &&
8113 rdev->recovery_offset < j)
8114 j = rdev->recovery_offset;
4e59ca7d 8115 rcu_read_unlock();
133d4527
N
8116
8117 /* If there is a bitmap, we need to make sure all
8118 * writes that started before we added a spare
8119 * complete before we start doing a recovery.
8120 * Otherwise the write might complete and (via
8121 * bitmap_endwrite) set a bit in the bitmap after the
8122 * recovery has checked that bit and skipped that
8123 * region.
8124 */
8125 if (mddev->bitmap) {
8126 mddev->pers->quiesce(mddev, 1);
8127 mddev->pers->quiesce(mddev, 0);
8128 }
5fd6c1dc 8129 }
1da177e4 8130
9d48739e
N
8131 pr_info("md: %s of RAID array %s\n", desc, mdname(mddev));
8132 pr_debug("md: minimum _guaranteed_ speed: %d KB/sec/disk.\n", speed_min(mddev));
8133 pr_debug("md: using maximum available idle IO bandwidth (but not more than %d KB/sec) for %s.\n",
8134 speed_max(mddev), desc);
1da177e4 8135
eea1bf38 8136 is_mddev_idle(mddev, 1); /* this initializes IO event counters */
5fd6c1dc 8137
57afd89f 8138 io_sectors = 0;
1da177e4
LT
8139 for (m = 0; m < SYNC_MARKS; m++) {
8140 mark[m] = jiffies;
57afd89f 8141 mark_cnt[m] = io_sectors;
1da177e4
LT
8142 }
8143 last_mark = 0;
8144 mddev->resync_mark = mark[last_mark];
8145 mddev->resync_mark_cnt = mark_cnt[last_mark];
8146
8147 /*
8148 * Tune reconstruction:
8149 */
8150 window = 32*(PAGE_SIZE/512);
9d48739e
N
8151 pr_debug("md: using %dk window, over a total of %lluk.\n",
8152 window/2, (unsigned long long)max_sectors/2);
1da177e4
LT
8153
8154 atomic_set(&mddev->recovery_active, 0);
1da177e4
LT
8155 last_check = 0;
8156
8157 if (j>2) {
9d48739e
N
8158 pr_debug("md: resuming %s of %s from checkpoint.\n",
8159 desc, mdname(mddev));
1da177e4 8160 mddev->curr_resync = j;
72f36d59
N
8161 } else
8162 mddev->curr_resync = 3; /* no longer delayed */
75d3da43 8163 mddev->curr_resync_completed = j;
72f36d59
N
8164 sysfs_notify(&mddev->kobj, NULL, "sync_completed");
8165 md_new_event(mddev);
54f89341 8166 update_time = jiffies;
1da177e4 8167
7c2c57c9 8168 blk_start_plug(&plug);
1da177e4 8169 while (j < max_sectors) {
57afd89f 8170 sector_t sectors;
1da177e4 8171
57afd89f 8172 skipped = 0;
97e4f42d 8173
7a91ee1f
N
8174 if (!test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
8175 ((mddev->curr_resync > mddev->curr_resync_completed &&
8176 (mddev->curr_resync - mddev->curr_resync_completed)
8177 > (max_sectors >> 4)) ||
54f89341 8178 time_after_eq(jiffies, update_time + UPDATE_FREQUENCY) ||
7a91ee1f 8179 (j - mddev->curr_resync_completed)*2
c5e19d90
N
8180 >= mddev->resync_max - mddev->curr_resync_completed ||
8181 mddev->curr_resync_completed > mddev->resync_max
7a91ee1f 8182 )) {
97e4f42d 8183 /* time to update curr_resync_completed */
97e4f42d
N
8184 wait_event(mddev->recovery_wait,
8185 atomic_read(&mddev->recovery_active) == 0);
75d3da43 8186 mddev->curr_resync_completed = j;
35d78c66 8187 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery) &&
8188 j > mddev->recovery_cp)
8189 mddev->recovery_cp = j;
54f89341 8190 update_time = jiffies;
2953079c 8191 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
acb180b0 8192 sysfs_notify(&mddev->kobj, NULL, "sync_completed");
97e4f42d 8193 }
acb180b0 8194
c91abf5a
N
8195 while (j >= mddev->resync_max &&
8196 !test_bit(MD_RECOVERY_INTR, &mddev->recovery)) {
e62e58a5
N
8197 /* As this condition is controlled by user-space,
8198 * we can block indefinitely, so use '_interruptible'
8199 * to avoid triggering warnings.
8200 */
8201 flush_signals(current); /* just in case */
8202 wait_event_interruptible(mddev->recovery_wait,
8203 mddev->resync_max > j
c91abf5a
N
8204 || test_bit(MD_RECOVERY_INTR,
8205 &mddev->recovery));
e62e58a5 8206 }
acb180b0 8207
c91abf5a
N
8208 if (test_bit(MD_RECOVERY_INTR, &mddev->recovery))
8209 break;
acb180b0 8210
09314799 8211 sectors = mddev->pers->sync_request(mddev, j, &skipped);
57afd89f 8212 if (sectors == 0) {
dfc70645 8213 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
c91abf5a 8214 break;
1da177e4 8215 }
57afd89f
N
8216
8217 if (!skipped) { /* actual IO requested */
8218 io_sectors += sectors;
8219 atomic_add(sectors, &mddev->recovery_active);
8220 }
8221
e875ecea
N
8222 if (test_bit(MD_RECOVERY_INTR, &mddev->recovery))
8223 break;
8224
1da177e4 8225 j += sectors;
5ed1df2e
N
8226 if (j > max_sectors)
8227 /* when skipping, extra large numbers can be returned. */
8228 j = max_sectors;
72f36d59
N
8229 if (j > 2)
8230 mddev->curr_resync = j;
ff4e8d9a 8231 mddev->curr_mark_cnt = io_sectors;
d7603b7e 8232 if (last_check == 0)
e875ecea 8233 /* this is the earliest that rebuild will be
d7603b7e
N
8234 * visible in /proc/mdstat
8235 */
8236 md_new_event(mddev);
57afd89f
N
8237
8238 if (last_check + window > io_sectors || j == max_sectors)
1da177e4
LT
8239 continue;
8240
57afd89f 8241 last_check = io_sectors;
1da177e4
LT
8242 repeat:
8243 if (time_after_eq(jiffies, mark[last_mark] + SYNC_MARK_STEP )) {
8244 /* step marks */
8245 int next = (last_mark+1) % SYNC_MARKS;
8246
8247 mddev->resync_mark = mark[next];
8248 mddev->resync_mark_cnt = mark_cnt[next];
8249 mark[next] = jiffies;
57afd89f 8250 mark_cnt[next] = io_sectors - atomic_read(&mddev->recovery_active);
1da177e4
LT
8251 last_mark = next;
8252 }
8253
c91abf5a
N
8254 if (test_bit(MD_RECOVERY_INTR, &mddev->recovery))
8255 break;
1da177e4
LT
8256
8257 /*
8258 * this loop exits only if either when we are slower than
8259 * the 'hard' speed limit, or the system was IO-idle for
8260 * a jiffy.
8261 * the system might be non-idle CPU-wise, but we only care
8262 * about not overloading the IO subsystem. (things like an
8263 * e2fsck being done on the RAID array should execute fast)
8264 */
1da177e4
LT
8265 cond_resched();
8266
ac7e50a3
XN
8267 recovery_done = io_sectors - atomic_read(&mddev->recovery_active);
8268 currspeed = ((unsigned long)(recovery_done - mddev->resync_mark_cnt))/2
57afd89f 8269 /((jiffies-mddev->resync_mark)/HZ +1) +1;
1da177e4 8270
88202a0c 8271 if (currspeed > speed_min(mddev)) {
ac8fa419 8272 if (currspeed > speed_max(mddev)) {
c0e48521 8273 msleep(500);
1da177e4
LT
8274 goto repeat;
8275 }
ac8fa419
N
8276 if (!is_mddev_idle(mddev, 0)) {
8277 /*
8278 * Give other IO more of a chance.
8279 * The faster the devices, the less we wait.
8280 */
8281 wait_event(mddev->recovery_wait,
8282 !atomic_read(&mddev->recovery_active));
8283 }
1da177e4
LT
8284 }
8285 }
9d48739e
N
8286 pr_info("md: %s: %s %s.\n",mdname(mddev), desc,
8287 test_bit(MD_RECOVERY_INTR, &mddev->recovery)
8288 ? "interrupted" : "done");
1da177e4
LT
8289 /*
8290 * this also signals 'finished resyncing' to md_stop
8291 */
7c2c57c9 8292 blk_finish_plug(&plug);
1da177e4
LT
8293 wait_event(mddev->recovery_wait, !atomic_read(&mddev->recovery_active));
8294
5ed1df2e
N
8295 if (!test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
8296 !test_bit(MD_RECOVERY_INTR, &mddev->recovery) &&
1217e1d1 8297 mddev->curr_resync > 3) {
5ed1df2e
N
8298 mddev->curr_resync_completed = mddev->curr_resync;
8299 sysfs_notify(&mddev->kobj, NULL, "sync_completed");
8300 }
09314799 8301 mddev->pers->sync_request(mddev, max_sectors, &skipped);
1da177e4 8302
dfc70645 8303 if (!test_bit(MD_RECOVERY_CHECK, &mddev->recovery) &&
1217e1d1 8304 mddev->curr_resync > 3) {
5fd6c1dc
N
8305 if (test_bit(MD_RECOVERY_SYNC, &mddev->recovery)) {
8306 if (test_bit(MD_RECOVERY_INTR, &mddev->recovery)) {
8307 if (mddev->curr_resync >= mddev->recovery_cp) {
9d48739e
N
8308 pr_debug("md: checkpointing %s of %s.\n",
8309 desc, mdname(mddev));
0a19caab 8310 if (test_bit(MD_RECOVERY_ERROR,
8311 &mddev->recovery))
8312 mddev->recovery_cp =
8313 mddev->curr_resync_completed;
8314 else
8315 mddev->recovery_cp =
8316 mddev->curr_resync;
5fd6c1dc
N
8317 }
8318 } else
8319 mddev->recovery_cp = MaxSector;
8320 } else {
8321 if (!test_bit(MD_RECOVERY_INTR, &mddev->recovery))
8322 mddev->curr_resync = MaxSector;
4e59ca7d 8323 rcu_read_lock();
dafb20fa 8324 rdev_for_each_rcu(rdev, mddev)
5fd6c1dc 8325 if (rdev->raid_disk >= 0 &&
70fffd0b 8326 mddev->delta_disks >= 0 &&
f2076e7d 8327 !test_bit(Journal, &rdev->flags) &&
5fd6c1dc
N
8328 !test_bit(Faulty, &rdev->flags) &&
8329 !test_bit(In_sync, &rdev->flags) &&
8330 rdev->recovery_offset < mddev->curr_resync)
8331 rdev->recovery_offset = mddev->curr_resync;
4e59ca7d 8332 rcu_read_unlock();
5fd6c1dc 8333 }
1da177e4 8334 }
db91ff55 8335 skip:
bb8bf15b
GJ
8336 /* set CHANGE_PENDING here since maybe another update is needed,
8337 * so other nodes are informed. It should be harmless for normal
8338 * raid */
2953079c
SL
8339 set_mask_bits(&mddev->sb_flags, 0,
8340 BIT(MD_SB_CHANGE_PENDING) | BIT(MD_SB_CHANGE_DEVS));
c186b128 8341
23da422b 8342 spin_lock(&mddev->lock);
c07b70ad
N
8343 if (!test_bit(MD_RECOVERY_INTR, &mddev->recovery)) {
8344 /* We completed so min/max setting can be forgotten if used. */
8345 if (test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery))
8346 mddev->resync_min = 0;
8347 mddev->resync_max = MaxSector;
8348 } else if (test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery))
8349 mddev->resync_min = mddev->curr_resync_completed;
f7851be7 8350 set_bit(MD_RECOVERY_DONE, &mddev->recovery);
1da177e4 8351 mddev->curr_resync = 0;
23da422b
N
8352 spin_unlock(&mddev->lock);
8353
1da177e4 8354 wake_up(&resync_wait);
1da177e4 8355 md_wakeup_thread(mddev->thread);
c6207277 8356 return;
1da177e4 8357}
29269553 8358EXPORT_SYMBOL_GPL(md_do_sync);
1da177e4 8359
746d3207
N
8360static int remove_and_add_spares(struct mddev *mddev,
8361 struct md_rdev *this)
b4c4c7b8 8362{
3cb03002 8363 struct md_rdev *rdev;
b4c4c7b8 8364 int spares = 0;
f2a371c5 8365 int removed = 0;
d787be40 8366 bool remove_some = false;
b4c4c7b8 8367
d787be40
N
8368 rdev_for_each(rdev, mddev) {
8369 if ((this == NULL || rdev == this) &&
8370 rdev->raid_disk >= 0 &&
8371 !test_bit(Blocked, &rdev->flags) &&
8372 test_bit(Faulty, &rdev->flags) &&
8373 atomic_read(&rdev->nr_pending)==0) {
8374 /* Faulty non-Blocked devices with nr_pending == 0
8375 * never get nr_pending incremented,
8376 * never get Faulty cleared, and never get Blocked set.
8377 * So we can synchronize_rcu now rather than once per device
8378 */
8379 remove_some = true;
8380 set_bit(RemoveSynchronized, &rdev->flags);
8381 }
8382 }
8383
8384 if (remove_some)
8385 synchronize_rcu();
8386 rdev_for_each(rdev, mddev) {
746d3207
N
8387 if ((this == NULL || rdev == this) &&
8388 rdev->raid_disk >= 0 &&
6bfe0b49 8389 !test_bit(Blocked, &rdev->flags) &&
d787be40 8390 ((test_bit(RemoveSynchronized, &rdev->flags) ||
f2076e7d
SL
8391 (!test_bit(In_sync, &rdev->flags) &&
8392 !test_bit(Journal, &rdev->flags))) &&
d787be40 8393 atomic_read(&rdev->nr_pending)==0)) {
b4c4c7b8 8394 if (mddev->pers->hot_remove_disk(
b8321b68 8395 mddev, rdev) == 0) {
36fad858 8396 sysfs_unlink_rdev(mddev, rdev);
b4c4c7b8 8397 rdev->raid_disk = -1;
f2a371c5 8398 removed++;
b4c4c7b8
N
8399 }
8400 }
d787be40
N
8401 if (remove_some && test_bit(RemoveSynchronized, &rdev->flags))
8402 clear_bit(RemoveSynchronized, &rdev->flags);
8403 }
8404
90584fc9
JB
8405 if (removed && mddev->kobj.sd)
8406 sysfs_notify(&mddev->kobj, NULL, "degraded");
b4c4c7b8 8407
2910ff17 8408 if (this && removed)
746d3207
N
8409 goto no_add;
8410
dafb20fa 8411 rdev_for_each(rdev, mddev) {
2910ff17
GR
8412 if (this && this != rdev)
8413 continue;
dbb64f86
GR
8414 if (test_bit(Candidate, &rdev->flags))
8415 continue;
7bfec5f3
N
8416 if (rdev->raid_disk >= 0 &&
8417 !test_bit(In_sync, &rdev->flags) &&
f2076e7d 8418 !test_bit(Journal, &rdev->flags) &&
7bfec5f3
N
8419 !test_bit(Faulty, &rdev->flags))
8420 spares++;
7ceb17e8
N
8421 if (rdev->raid_disk >= 0)
8422 continue;
8423 if (test_bit(Faulty, &rdev->flags))
8424 continue;
f6b6ec5c
SL
8425 if (!test_bit(Journal, &rdev->flags)) {
8426 if (mddev->ro &&
8427 ! (rdev->saved_raid_disk >= 0 &&
8428 !test_bit(Bitmap_sync, &rdev->flags)))
8429 continue;
7ceb17e8 8430
f6b6ec5c
SL
8431 rdev->recovery_offset = 0;
8432 }
7ceb17e8
N
8433 if (mddev->pers->
8434 hot_add_disk(mddev, rdev) == 0) {
8435 if (sysfs_link_rdev(mddev, rdev))
8436 /* failure here is OK */;
f6b6ec5c
SL
8437 if (!test_bit(Journal, &rdev->flags))
8438 spares++;
7ceb17e8 8439 md_new_event(mddev);
2953079c 8440 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
dfc70645 8441 }
b4c4c7b8 8442 }
746d3207 8443no_add:
6dafab6b 8444 if (removed)
2953079c 8445 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
b4c4c7b8
N
8446 return spares;
8447}
7ebc0be7 8448
ac05f256
N
8449static void md_start_sync(struct work_struct *ws)
8450{
8451 struct mddev *mddev = container_of(ws, struct mddev, del_work);
c186b128 8452
ac05f256
N
8453 mddev->sync_thread = md_register_thread(md_do_sync,
8454 mddev,
8455 "resync");
8456 if (!mddev->sync_thread) {
9d48739e
N
8457 pr_warn("%s: could not start resync thread...\n",
8458 mdname(mddev));
ac05f256
N
8459 /* leave the spares where they are, it shouldn't hurt */
8460 clear_bit(MD_RECOVERY_SYNC, &mddev->recovery);
8461 clear_bit(MD_RECOVERY_RESHAPE, &mddev->recovery);
8462 clear_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
8463 clear_bit(MD_RECOVERY_CHECK, &mddev->recovery);
8464 clear_bit(MD_RECOVERY_RUNNING, &mddev->recovery);
f851b60d 8465 wake_up(&resync_wait);
ac05f256
N
8466 if (test_and_clear_bit(MD_RECOVERY_RECOVER,
8467 &mddev->recovery))
8468 if (mddev->sysfs_action)
8469 sysfs_notify_dirent_safe(mddev->sysfs_action);
8470 } else
8471 md_wakeup_thread(mddev->sync_thread);
8472 sysfs_notify_dirent_safe(mddev->sysfs_action);
8473 md_new_event(mddev);
8474}
8475
1da177e4
LT
8476/*
8477 * This routine is regularly called by all per-raid-array threads to
8478 * deal with generic issues like resync and super-block update.
8479 * Raid personalities that don't have a thread (linear/raid0) do not
8480 * need this as they never do any recovery or update the superblock.
8481 *
8482 * It does not do any resync itself, but rather "forks" off other threads
8483 * to do that as needed.
8484 * When it is determined that resync is needed, we set MD_RECOVERY_RUNNING in
8485 * "->recovery" and create a thread at ->sync_thread.
dfc70645 8486 * When the thread finishes it sets MD_RECOVERY_DONE
1da177e4
LT
8487 * and wakeups up this thread which will reap the thread and finish up.
8488 * This thread also removes any faulty devices (with nr_pending == 0).
8489 *
8490 * The overall approach is:
8491 * 1/ if the superblock needs updating, update it.
8492 * 2/ If a recovery thread is running, don't do anything else.
8493 * 3/ If recovery has finished, clean up, possibly marking spares active.
8494 * 4/ If there are any faulty devices, remove them.
8495 * 5/ If array is degraded, try to add spares devices
8496 * 6/ If array has spares or is not in-sync, start a resync thread.
8497 */
fd01b88c 8498void md_check_recovery(struct mddev *mddev)
1da177e4 8499{
68866e42
JB
8500 if (mddev->suspended)
8501 return;
8502
5f40402d 8503 if (mddev->bitmap)
aa5cbd10 8504 bitmap_daemon_work(mddev);
1da177e4 8505
fca4d848 8506 if (signal_pending(current)) {
31a59e34 8507 if (mddev->pers->sync_request && !mddev->external) {
9d48739e
N
8508 pr_debug("md: %s in immediate safe mode\n",
8509 mdname(mddev));
fca4d848
N
8510 mddev->safemode = 2;
8511 }
8512 flush_signals(current);
8513 }
8514
c89a8eee
N
8515 if (mddev->ro && !test_bit(MD_RECOVERY_NEEDED, &mddev->recovery))
8516 return;
1da177e4 8517 if ( ! (
2953079c 8518 (mddev->sb_flags & ~ (1<<MD_SB_CHANGE_PENDING)) ||
1da177e4 8519 test_bit(MD_RECOVERY_NEEDED, &mddev->recovery) ||
fca4d848 8520 test_bit(MD_RECOVERY_DONE, &mddev->recovery) ||
31a59e34 8521 (mddev->external == 0 && mddev->safemode == 1) ||
fca4d848
N
8522 (mddev->safemode == 2 && ! atomic_read(&mddev->writes_pending)
8523 && !mddev->in_sync && mddev->recovery_cp == MaxSector)
1da177e4
LT
8524 ))
8525 return;
fca4d848 8526
df5b89b3 8527 if (mddev_trylock(mddev)) {
b4c4c7b8 8528 int spares = 0;
fca4d848 8529
c89a8eee 8530 if (mddev->ro) {
ab16bfc7
NB
8531 struct md_rdev *rdev;
8532 if (!mddev->external && mddev->in_sync)
8533 /* 'Blocked' flag not needed as failed devices
8534 * will be recorded if array switched to read/write.
8535 * Leaving it set will prevent the device
8536 * from being removed.
8537 */
8538 rdev_for_each(rdev, mddev)
8539 clear_bit(Blocked, &rdev->flags);
7ceb17e8
N
8540 /* On a read-only array we can:
8541 * - remove failed devices
8542 * - add already-in_sync devices if the array itself
8543 * is in-sync.
8544 * As we only add devices that are already in-sync,
8545 * we can activate the spares immediately.
c89a8eee 8546 */
7ceb17e8 8547 remove_and_add_spares(mddev, NULL);
8313b8e5
N
8548 /* There is no thread, but we need to call
8549 * ->spare_active and clear saved_raid_disk
8550 */
2ac295a5 8551 set_bit(MD_RECOVERY_INTR, &mddev->recovery);
8313b8e5 8552 md_reap_sync_thread(mddev);
a4a3d26d 8553 clear_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
8313b8e5 8554 clear_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
2953079c 8555 clear_bit(MD_SB_CHANGE_PENDING, &mddev->sb_flags);
c89a8eee
N
8556 goto unlock;
8557 }
8558
659b254f
GJ
8559 if (mddev_is_clustered(mddev)) {
8560 struct md_rdev *rdev;
8561 /* kick the device if another node issued a
8562 * remove disk.
8563 */
8564 rdev_for_each(rdev, mddev) {
8565 if (test_and_clear_bit(ClusterRemove, &rdev->flags) &&
8566 rdev->raid_disk < 0)
8567 md_kick_rdev_from_array(rdev);
8568 }
8569 }
8570
31a59e34 8571 if (!mddev->external) {
0fd62b86 8572 int did_change = 0;
85572d7c 8573 spin_lock(&mddev->lock);
31a59e34
N
8574 if (mddev->safemode &&
8575 !atomic_read(&mddev->writes_pending) &&
8576 !mddev->in_sync &&
8577 mddev->recovery_cp == MaxSector) {
8578 mddev->in_sync = 1;
0fd62b86 8579 did_change = 1;
2953079c 8580 set_bit(MD_SB_CHANGE_CLEAN, &mddev->sb_flags);
31a59e34
N
8581 }
8582 if (mddev->safemode == 1)
8583 mddev->safemode = 0;
85572d7c 8584 spin_unlock(&mddev->lock);
0fd62b86 8585 if (did_change)
00bcb4ac 8586 sysfs_notify_dirent_safe(mddev->sysfs_state);
fca4d848 8587 }
fca4d848 8588
2953079c 8589 if (mddev->sb_flags)
850b2b42 8590 md_update_sb(mddev, 0);
06d91a5f 8591
1da177e4
LT
8592 if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) &&
8593 !test_bit(MD_RECOVERY_DONE, &mddev->recovery)) {
8594 /* resync/recovery still happening */
8595 clear_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
8596 goto unlock;
8597 }
8598 if (mddev->sync_thread) {
a91d5ac0 8599 md_reap_sync_thread(mddev);
1da177e4
LT
8600 goto unlock;
8601 }
72a23c21
NB
8602 /* Set RUNNING before clearing NEEDED to avoid
8603 * any transients in the value of "sync_action".
8604 */
72f36d59 8605 mddev->curr_resync_completed = 0;
23da422b 8606 spin_lock(&mddev->lock);
72a23c21 8607 set_bit(MD_RECOVERY_RUNNING, &mddev->recovery);
23da422b 8608 spin_unlock(&mddev->lock);
24dd469d
N
8609 /* Clear some bits that don't mean anything, but
8610 * might be left set
8611 */
24dd469d
N
8612 clear_bit(MD_RECOVERY_INTR, &mddev->recovery);
8613 clear_bit(MD_RECOVERY_DONE, &mddev->recovery);
1da177e4 8614
ed209584
N
8615 if (!test_and_clear_bit(MD_RECOVERY_NEEDED, &mddev->recovery) ||
8616 test_bit(MD_RECOVERY_FROZEN, &mddev->recovery))
ac05f256 8617 goto not_running;
1da177e4
LT
8618 /* no recovery is running.
8619 * remove any failed drives, then
8620 * add spares if possible.
72f36d59 8621 * Spares are also removed and re-added, to allow
1da177e4
LT
8622 * the personality to fail the re-add.
8623 */
1da177e4 8624
b4c4c7b8 8625 if (mddev->reshape_position != MaxSector) {
50ac168a
N
8626 if (mddev->pers->check_reshape == NULL ||
8627 mddev->pers->check_reshape(mddev) != 0)
b4c4c7b8 8628 /* Cannot proceed */
ac05f256 8629 goto not_running;
b4c4c7b8 8630 set_bit(MD_RECOVERY_RESHAPE, &mddev->recovery);
72a23c21 8631 clear_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
746d3207 8632 } else if ((spares = remove_and_add_spares(mddev, NULL))) {
24dd469d
N
8633 clear_bit(MD_RECOVERY_SYNC, &mddev->recovery);
8634 clear_bit(MD_RECOVERY_CHECK, &mddev->recovery);
56ac36d7 8635 clear_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
72a23c21 8636 set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
24dd469d
N
8637 } else if (mddev->recovery_cp < MaxSector) {
8638 set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
72a23c21 8639 clear_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
24dd469d
N
8640 } else if (!test_bit(MD_RECOVERY_SYNC, &mddev->recovery))
8641 /* nothing to be done ... */
ac05f256 8642 goto not_running;
24dd469d 8643
1da177e4 8644 if (mddev->pers->sync_request) {
ef99bf48 8645 if (spares) {
a654b9d8
N
8646 /* We are adding a device or devices to an array
8647 * which has the bitmap stored on all devices.
8648 * So make sure all bitmap pages get written
8649 */
8650 bitmap_write_all(mddev->bitmap);
8651 }
ac05f256
N
8652 INIT_WORK(&mddev->del_work, md_start_sync);
8653 queue_work(md_misc_wq, &mddev->del_work);
8654 goto unlock;
1da177e4 8655 }
ac05f256 8656 not_running:
72a23c21
NB
8657 if (!mddev->sync_thread) {
8658 clear_bit(MD_RECOVERY_RUNNING, &mddev->recovery);
f851b60d 8659 wake_up(&resync_wait);
72a23c21
NB
8660 if (test_and_clear_bit(MD_RECOVERY_RECOVER,
8661 &mddev->recovery))
0c3573f1 8662 if (mddev->sysfs_action)
00bcb4ac 8663 sysfs_notify_dirent_safe(mddev->sysfs_action);
72a23c21 8664 }
ac05f256
N
8665 unlock:
8666 wake_up(&mddev->sb_wait);
1da177e4
LT
8667 mddev_unlock(mddev);
8668 }
8669}
6c144d31 8670EXPORT_SYMBOL(md_check_recovery);
1da177e4 8671
a91d5ac0
JB
8672void md_reap_sync_thread(struct mddev *mddev)
8673{
8674 struct md_rdev *rdev;
8675
8676 /* resync has finished, collect result */
8677 md_unregister_thread(&mddev->sync_thread);
8678 if (!test_bit(MD_RECOVERY_INTR, &mddev->recovery) &&
8679 !test_bit(MD_RECOVERY_REQUESTED, &mddev->recovery)) {
8680 /* success...*/
8681 /* activate any spares */
8682 if (mddev->pers->spare_active(mddev)) {
8683 sysfs_notify(&mddev->kobj, NULL,
8684 "degraded");
2953079c 8685 set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
a91d5ac0
JB
8686 }
8687 }
8688 if (test_bit(MD_RECOVERY_RESHAPE, &mddev->recovery) &&
8689 mddev->pers->finish_reshape)
8690 mddev->pers->finish_reshape(mddev);
8691
8692 /* If array is no-longer degraded, then any saved_raid_disk
f466722c 8693 * information must be scrapped.
a91d5ac0 8694 */
f466722c
N
8695 if (!mddev->degraded)
8696 rdev_for_each(rdev, mddev)
a91d5ac0
JB
8697 rdev->saved_raid_disk = -1;
8698
8699 md_update_sb(mddev, 1);
2953079c 8700 /* MD_SB_CHANGE_PENDING should be cleared by md_update_sb, so we can
bb8bf15b
GJ
8701 * call resync_finish here if MD_CLUSTER_RESYNC_LOCKED is set by
8702 * clustered raid */
8703 if (test_and_clear_bit(MD_CLUSTER_RESYNC_LOCKED, &mddev->flags))
8704 md_cluster_ops->resync_finish(mddev);
a91d5ac0 8705 clear_bit(MD_RECOVERY_RUNNING, &mddev->recovery);
ea358cd0 8706 clear_bit(MD_RECOVERY_DONE, &mddev->recovery);
a91d5ac0
JB
8707 clear_bit(MD_RECOVERY_SYNC, &mddev->recovery);
8708 clear_bit(MD_RECOVERY_RESHAPE, &mddev->recovery);
8709 clear_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
8710 clear_bit(MD_RECOVERY_CHECK, &mddev->recovery);
f851b60d 8711 wake_up(&resync_wait);
a91d5ac0
JB
8712 /* flag recovery needed just to double check */
8713 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
8714 sysfs_notify_dirent_safe(mddev->sysfs_action);
8715 md_new_event(mddev);
8716 if (mddev->event_work.func)
8717 queue_work(md_misc_wq, &mddev->event_work);
8718}
6c144d31 8719EXPORT_SYMBOL(md_reap_sync_thread);
a91d5ac0 8720
fd01b88c 8721void md_wait_for_blocked_rdev(struct md_rdev *rdev, struct mddev *mddev)
6bfe0b49 8722{
00bcb4ac 8723 sysfs_notify_dirent_safe(rdev->sysfs_state);
6bfe0b49 8724 wait_event_timeout(rdev->blocked_wait,
de393cde
N
8725 !test_bit(Blocked, &rdev->flags) &&
8726 !test_bit(BlockedBadBlocks, &rdev->flags),
6bfe0b49
DW
8727 msecs_to_jiffies(5000));
8728 rdev_dec_pending(rdev, mddev);
8729}
8730EXPORT_SYMBOL(md_wait_for_blocked_rdev);
8731
c6563a8c
N
8732void md_finish_reshape(struct mddev *mddev)
8733{
8734 /* called be personality module when reshape completes. */
8735 struct md_rdev *rdev;
8736
8737 rdev_for_each(rdev, mddev) {
8738 if (rdev->data_offset > rdev->new_data_offset)
8739 rdev->sectors += rdev->data_offset - rdev->new_data_offset;
8740 else
8741 rdev->sectors -= rdev->new_data_offset - rdev->data_offset;
8742 rdev->data_offset = rdev->new_data_offset;
8743 }
8744}
8745EXPORT_SYMBOL(md_finish_reshape);
2230dfe4 8746
fc974ee2 8747/* Bad block management */
2230dfe4 8748
fc974ee2 8749/* Returns 1 on success, 0 on failure */
3cb03002 8750int rdev_set_badblocks(struct md_rdev *rdev, sector_t s, int sectors,
c6563a8c 8751 int is_new)
2230dfe4 8752{
85ad1d13 8753 struct mddev *mddev = rdev->mddev;
c6563a8c
N
8754 int rv;
8755 if (is_new)
8756 s += rdev->new_data_offset;
8757 else
8758 s += rdev->data_offset;
fc974ee2
VV
8759 rv = badblocks_set(&rdev->badblocks, s, sectors, 0);
8760 if (rv == 0) {
2230dfe4 8761 /* Make sure they get written out promptly */
35b785f7
TM
8762 if (test_bit(ExternalBbl, &rdev->flags))
8763 sysfs_notify(&rdev->kobj, NULL,
8764 "unacknowledged_bad_blocks");
8bd2f0a0 8765 sysfs_notify_dirent_safe(rdev->sysfs_state);
2953079c
SL
8766 set_mask_bits(&mddev->sb_flags, 0,
8767 BIT(MD_SB_CHANGE_CLEAN) | BIT(MD_SB_CHANGE_PENDING));
2230dfe4 8768 md_wakeup_thread(rdev->mddev->thread);
fc974ee2
VV
8769 return 1;
8770 } else
8771 return 0;
2230dfe4
N
8772}
8773EXPORT_SYMBOL_GPL(rdev_set_badblocks);
8774
c6563a8c
N
8775int rdev_clear_badblocks(struct md_rdev *rdev, sector_t s, int sectors,
8776 int is_new)
2230dfe4 8777{
35b785f7 8778 int rv;
c6563a8c
N
8779 if (is_new)
8780 s += rdev->new_data_offset;
8781 else
8782 s += rdev->data_offset;
35b785f7
TM
8783 rv = badblocks_clear(&rdev->badblocks, s, sectors);
8784 if ((rv == 0) && test_bit(ExternalBbl, &rdev->flags))
8785 sysfs_notify(&rdev->kobj, NULL, "bad_blocks");
8786 return rv;
2230dfe4
N
8787}
8788EXPORT_SYMBOL_GPL(rdev_clear_badblocks);
8789
75c96f85
AB
8790static int md_notify_reboot(struct notifier_block *this,
8791 unsigned long code, void *x)
1da177e4
LT
8792{
8793 struct list_head *tmp;
fd01b88c 8794 struct mddev *mddev;
2dba6a91 8795 int need_delay = 0;
1da177e4 8796
c744a65c
N
8797 for_each_mddev(mddev, tmp) {
8798 if (mddev_trylock(mddev)) {
30b8aa91
N
8799 if (mddev->pers)
8800 __md_stop_writes(mddev);
0f62fb22
N
8801 if (mddev->persistent)
8802 mddev->safemode = 2;
c744a65c 8803 mddev_unlock(mddev);
2dba6a91 8804 }
c744a65c 8805 need_delay = 1;
1da177e4 8806 }
c744a65c
N
8807 /*
8808 * certain more exotic SCSI devices are known to be
8809 * volatile wrt too early system reboots. While the
8810 * right place to handle this issue is the given
8811 * driver, we do want to have a safe RAID driver ...
8812 */
8813 if (need_delay)
8814 mdelay(1000*1);
8815
1da177e4
LT
8816 return NOTIFY_DONE;
8817}
8818
75c96f85 8819static struct notifier_block md_notifier = {
1da177e4
LT
8820 .notifier_call = md_notify_reboot,
8821 .next = NULL,
8822 .priority = INT_MAX, /* before any real devices */
8823};
8824
8825static void md_geninit(void)
8826{
36a4e1fe 8827 pr_debug("md: sizeof(mdp_super_t) = %d\n", (int)sizeof(mdp_super_t));
1da177e4 8828
c7705f34 8829 proc_create("mdstat", S_IRUGO, NULL, &md_seq_fops);
1da177e4
LT
8830}
8831
75c96f85 8832static int __init md_init(void)
1da177e4 8833{
e804ac78
TH
8834 int ret = -ENOMEM;
8835
ada609ee 8836 md_wq = alloc_workqueue("md", WQ_MEM_RECLAIM, 0);
e804ac78
TH
8837 if (!md_wq)
8838 goto err_wq;
8839
8840 md_misc_wq = alloc_workqueue("md_misc", 0, 0);
8841 if (!md_misc_wq)
8842 goto err_misc_wq;
8843
8844 if ((ret = register_blkdev(MD_MAJOR, "md")) < 0)
8845 goto err_md;
8846
8847 if ((ret = register_blkdev(0, "mdp")) < 0)
8848 goto err_mdp;
8849 mdp_major = ret;
8850
af5628f0 8851 blk_register_region(MKDEV(MD_MAJOR, 0), 512, THIS_MODULE,
e8703fe1
N
8852 md_probe, NULL, NULL);
8853 blk_register_region(MKDEV(mdp_major, 0), 1UL<<MINORBITS, THIS_MODULE,
1da177e4
LT
8854 md_probe, NULL, NULL);
8855
1da177e4 8856 register_reboot_notifier(&md_notifier);
0b4d4147 8857 raid_table_header = register_sysctl_table(raid_root_table);
1da177e4
LT
8858
8859 md_geninit();
d710e138 8860 return 0;
1da177e4 8861
e804ac78
TH
8862err_mdp:
8863 unregister_blkdev(MD_MAJOR, "md");
8864err_md:
8865 destroy_workqueue(md_misc_wq);
8866err_misc_wq:
8867 destroy_workqueue(md_wq);
8868err_wq:
8869 return ret;
8870}
1da177e4 8871
70bcecdb 8872static void check_sb_changes(struct mddev *mddev, struct md_rdev *rdev)
1d7e3e96 8873{
70bcecdb
GR
8874 struct mdp_superblock_1 *sb = page_address(rdev->sb_page);
8875 struct md_rdev *rdev2;
8876 int role, ret;
8877 char b[BDEVNAME_SIZE];
1d7e3e96 8878
818da59f
GJ
8879 /*
8880 * If size is changed in another node then we need to
8881 * do resize as well.
8882 */
8883 if (mddev->dev_sectors != le64_to_cpu(sb->size)) {
8884 ret = mddev->pers->resize(mddev, le64_to_cpu(sb->size));
8885 if (ret)
8886 pr_info("md-cluster: resize failed\n");
8887 else
8888 bitmap_update_sb(mddev->bitmap);
8889 }
8890
70bcecdb
GR
8891 /* Check for change of roles in the active devices */
8892 rdev_for_each(rdev2, mddev) {
8893 if (test_bit(Faulty, &rdev2->flags))
8894 continue;
8895
8896 /* Check if the roles changed */
8897 role = le16_to_cpu(sb->dev_roles[rdev2->desc_nr]);
dbb64f86
GR
8898
8899 if (test_bit(Candidate, &rdev2->flags)) {
8900 if (role == 0xfffe) {
8901 pr_info("md: Removing Candidate device %s because add failed\n", bdevname(rdev2->bdev,b));
8902 md_kick_rdev_from_array(rdev2);
8903 continue;
8904 }
8905 else
8906 clear_bit(Candidate, &rdev2->flags);
8907 }
8908
70bcecdb
GR
8909 if (role != rdev2->raid_disk) {
8910 /* got activated */
8911 if (rdev2->raid_disk == -1 && role != 0xffff) {
8912 rdev2->saved_raid_disk = role;
8913 ret = remove_and_add_spares(mddev, rdev2);
8914 pr_info("Activated spare: %s\n",
9d48739e 8915 bdevname(rdev2->bdev,b));
a578183e
GJ
8916 /* wakeup mddev->thread here, so array could
8917 * perform resync with the new activated disk */
8918 set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
8919 md_wakeup_thread(mddev->thread);
8920
70bcecdb
GR
8921 }
8922 /* device faulty
8923 * We just want to do the minimum to mark the disk
8924 * as faulty. The recovery is performed by the
8925 * one who initiated the error.
8926 */
8927 if ((role == 0xfffe) || (role == 0xfffd)) {
8928 md_error(mddev, rdev2);
8929 clear_bit(Blocked, &rdev2->flags);
8930 }
8931 }
1d7e3e96 8932 }
70bcecdb 8933
28c1b9fd
GR
8934 if (mddev->raid_disks != le32_to_cpu(sb->raid_disks))
8935 update_raid_disks(mddev, le32_to_cpu(sb->raid_disks));
70bcecdb
GR
8936
8937 /* Finally set the event to be up to date */
8938 mddev->events = le64_to_cpu(sb->events);
8939}
8940
8941static int read_rdev(struct mddev *mddev, struct md_rdev *rdev)
8942{
8943 int err;
8944 struct page *swapout = rdev->sb_page;
8945 struct mdp_superblock_1 *sb;
8946
8947 /* Store the sb page of the rdev in the swapout temporary
8948 * variable in case we err in the future
8949 */
8950 rdev->sb_page = NULL;
7f0f0d87
N
8951 err = alloc_disk_sb(rdev);
8952 if (err == 0) {
8953 ClearPageUptodate(rdev->sb_page);
8954 rdev->sb_loaded = 0;
8955 err = super_types[mddev->major_version].
8956 load_super(rdev, NULL, mddev->minor_version);
8957 }
70bcecdb
GR
8958 if (err < 0) {
8959 pr_warn("%s: %d Could not reload rdev(%d) err: %d. Restoring old values\n",
8960 __func__, __LINE__, rdev->desc_nr, err);
7f0f0d87
N
8961 if (rdev->sb_page)
8962 put_page(rdev->sb_page);
70bcecdb
GR
8963 rdev->sb_page = swapout;
8964 rdev->sb_loaded = 1;
8965 return err;
1d7e3e96
GR
8966 }
8967
70bcecdb
GR
8968 sb = page_address(rdev->sb_page);
8969 /* Read the offset unconditionally, even if MD_FEATURE_RECOVERY_OFFSET
8970 * is not set
8971 */
8972
8973 if ((le32_to_cpu(sb->feature_map) & MD_FEATURE_RECOVERY_OFFSET))
8974 rdev->recovery_offset = le64_to_cpu(sb->recovery_offset);
8975
8976 /* The other node finished recovery, call spare_active to set
8977 * device In_sync and mddev->degraded
8978 */
8979 if (rdev->recovery_offset == MaxSector &&
8980 !test_bit(In_sync, &rdev->flags) &&
8981 mddev->pers->spare_active(mddev))
8982 sysfs_notify(&mddev->kobj, NULL, "degraded");
8983
8984 put_page(swapout);
8985 return 0;
8986}
8987
8988void md_reload_sb(struct mddev *mddev, int nr)
8989{
8990 struct md_rdev *rdev;
8991 int err;
8992
8993 /* Find the rdev */
8994 rdev_for_each_rcu(rdev, mddev) {
8995 if (rdev->desc_nr == nr)
8996 break;
8997 }
8998
8999 if (!rdev || rdev->desc_nr != nr) {
9000 pr_warn("%s: %d Could not find rdev with nr %d\n", __func__, __LINE__, nr);
9001 return;
9002 }
9003
9004 err = read_rdev(mddev, rdev);
9005 if (err < 0)
9006 return;
9007
9008 check_sb_changes(mddev, rdev);
9009
9010 /* Read all rdev's to update recovery_offset */
9011 rdev_for_each_rcu(rdev, mddev)
9012 read_rdev(mddev, rdev);
1d7e3e96
GR
9013}
9014EXPORT_SYMBOL(md_reload_sb);
9015
1da177e4
LT
9016#ifndef MODULE
9017
9018/*
9019 * Searches all registered partitions for autorun RAID arrays
9020 * at boot time.
9021 */
4d936ec1 9022
5b1f5bc3 9023static DEFINE_MUTEX(detected_devices_mutex);
4d936ec1
ME
9024static LIST_HEAD(all_detected_devices);
9025struct detected_devices_node {
9026 struct list_head list;
9027 dev_t dev;
9028};
1da177e4
LT
9029
9030void md_autodetect_dev(dev_t dev)
9031{
4d936ec1
ME
9032 struct detected_devices_node *node_detected_dev;
9033
9034 node_detected_dev = kzalloc(sizeof(*node_detected_dev), GFP_KERNEL);
9035 if (node_detected_dev) {
9036 node_detected_dev->dev = dev;
5b1f5bc3 9037 mutex_lock(&detected_devices_mutex);
4d936ec1 9038 list_add_tail(&node_detected_dev->list, &all_detected_devices);
5b1f5bc3 9039 mutex_unlock(&detected_devices_mutex);
4d936ec1 9040 }
1da177e4
LT
9041}
9042
1da177e4
LT
9043static void autostart_arrays(int part)
9044{
3cb03002 9045 struct md_rdev *rdev;
4d936ec1
ME
9046 struct detected_devices_node *node_detected_dev;
9047 dev_t dev;
9048 int i_scanned, i_passed;
1da177e4 9049
4d936ec1
ME
9050 i_scanned = 0;
9051 i_passed = 0;
1da177e4 9052
9d48739e 9053 pr_info("md: Autodetecting RAID arrays.\n");
1da177e4 9054
5b1f5bc3 9055 mutex_lock(&detected_devices_mutex);
4d936ec1
ME
9056 while (!list_empty(&all_detected_devices) && i_scanned < INT_MAX) {
9057 i_scanned++;
9058 node_detected_dev = list_entry(all_detected_devices.next,
9059 struct detected_devices_node, list);
9060 list_del(&node_detected_dev->list);
9061 dev = node_detected_dev->dev;
9062 kfree(node_detected_dev);
90bcf133 9063 mutex_unlock(&detected_devices_mutex);
df968c4e 9064 rdev = md_import_device(dev,0, 90);
90bcf133 9065 mutex_lock(&detected_devices_mutex);
1da177e4
LT
9066 if (IS_ERR(rdev))
9067 continue;
9068
403df478 9069 if (test_bit(Faulty, &rdev->flags))
1da177e4 9070 continue;
403df478 9071
d0fae18f 9072 set_bit(AutoDetected, &rdev->flags);
1da177e4 9073 list_add(&rdev->same_set, &pending_raid_disks);
4d936ec1 9074 i_passed++;
1da177e4 9075 }
5b1f5bc3 9076 mutex_unlock(&detected_devices_mutex);
4d936ec1 9077
9d48739e 9078 pr_debug("md: Scanned %d and added %d devices.\n", i_scanned, i_passed);
1da177e4
LT
9079
9080 autorun_devices(part);
9081}
9082
fdee8ae4 9083#endif /* !MODULE */
1da177e4
LT
9084
9085static __exit void md_exit(void)
9086{
fd01b88c 9087 struct mddev *mddev;
1da177e4 9088 struct list_head *tmp;
e2f23b60 9089 int delay = 1;
8ab5e4c1 9090
af5628f0 9091 blk_unregister_region(MKDEV(MD_MAJOR,0), 512);
e8703fe1 9092 blk_unregister_region(MKDEV(mdp_major,0), 1U << MINORBITS);
1da177e4 9093
3dbd8c2e 9094 unregister_blkdev(MD_MAJOR,"md");
1da177e4
LT
9095 unregister_blkdev(mdp_major, "mdp");
9096 unregister_reboot_notifier(&md_notifier);
9097 unregister_sysctl_table(raid_table_header);
e2f23b60
N
9098
9099 /* We cannot unload the modules while some process is
9100 * waiting for us in select() or poll() - wake them up
9101 */
9102 md_unloading = 1;
9103 while (waitqueue_active(&md_event_waiters)) {
9104 /* not safe to leave yet */
9105 wake_up(&md_event_waiters);
9106 msleep(delay);
9107 delay += delay;
9108 }
1da177e4 9109 remove_proc_entry("mdstat", NULL);
e2f23b60 9110
29ac4aa3 9111 for_each_mddev(mddev, tmp) {
1da177e4 9112 export_array(mddev);
9356863c 9113 mddev->ctime = 0;
d3374825 9114 mddev->hold_active = 0;
9356863c
N
9115 /*
9116 * for_each_mddev() will call mddev_put() at the end of each
9117 * iteration. As the mddev is now fully clear, this will
9118 * schedule the mddev for destruction by a workqueue, and the
9119 * destroy_workqueue() below will wait for that to complete.
9120 */
1da177e4 9121 }
e804ac78
TH
9122 destroy_workqueue(md_misc_wq);
9123 destroy_workqueue(md_wq);
1da177e4
LT
9124}
9125
685784aa 9126subsys_initcall(md_init);
1da177e4
LT
9127module_exit(md_exit)
9128
f91de92e
N
9129static int get_ro(char *buffer, struct kernel_param *kp)
9130{
9131 return sprintf(buffer, "%d", start_readonly);
9132}
9133static int set_ro(const char *val, struct kernel_param *kp)
9134{
4c9309c0 9135 return kstrtouint(val, 10, (unsigned int *)&start_readonly);
f91de92e
N
9136}
9137
80ca3a44
N
9138module_param_call(start_ro, set_ro, get_ro, NULL, S_IRUSR|S_IWUSR);
9139module_param(start_dirty_degraded, int, S_IRUGO|S_IWUSR);
efeb53c0 9140module_param_call(new_array, add_named_array, NULL, NULL, S_IWUSR);
f91de92e 9141
1da177e4 9142MODULE_LICENSE("GPL");
0efb9e61 9143MODULE_DESCRIPTION("MD RAID framework");
aa1595e9 9144MODULE_ALIAS("md");
72008652 9145MODULE_ALIAS_BLOCKDEV_MAJOR(MD_MAJOR);