2 * Copyright (C) STRATO AG 2012. All rights reserved.
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public
6 * License v2 as published by the Free Software Foundation.
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
13 * You should have received a copy of the GNU General Public
14 * License along with this program; if not, write to the
15 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
16 * Boston, MA 021110-1307, USA.
18 #include <linux/sched.h>
19 #include <linux/bio.h>
20 #include <linux/slab.h>
21 #include <linux/buffer_head.h>
22 #include <linux/blkdev.h>
23 #include <linux/random.h>
24 #include <linux/iocontext.h>
25 #include <linux/capability.h>
26 #include <linux/kthread.h>
27 #include <linux/math64.h>
28 #include <asm/div64.h>
30 #include "extent_map.h"
32 #include "transaction.h"
33 #include "print-tree.h"
35 #include "async-thread.h"
36 #include "check-integrity.h"
37 #include "rcu-string.h"
38 #include "dev-replace.h"
40 static int btrfs_dev_replace_finishing(struct btrfs_fs_info
*fs_info
,
42 static void btrfs_dev_replace_update_device_in_mapping_tree(
43 struct btrfs_fs_info
*fs_info
,
44 struct btrfs_device
*srcdev
,
45 struct btrfs_device
*tgtdev
);
46 static int btrfs_dev_replace_find_srcdev(struct btrfs_root
*root
, u64 srcdevid
,
48 struct btrfs_device
**device
);
49 static u64
__btrfs_dev_replace_cancel(struct btrfs_fs_info
*fs_info
);
50 static int btrfs_dev_replace_kthread(void *data
);
51 static int btrfs_dev_replace_continue_on_mount(struct btrfs_fs_info
*fs_info
);
54 int btrfs_init_dev_replace(struct btrfs_fs_info
*fs_info
)
57 struct btrfs_root
*dev_root
= fs_info
->dev_root
;
58 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
59 struct extent_buffer
*eb
;
62 struct btrfs_path
*path
= NULL
;
64 struct btrfs_dev_replace_item
*ptr
;
67 path
= btrfs_alloc_path();
74 key
.type
= BTRFS_DEV_REPLACE_KEY
;
76 ret
= btrfs_search_slot(NULL
, dev_root
, &key
, path
, 0, 0);
78 no_valid_dev_replace_entry_found
:
80 dev_replace
->replace_state
=
81 BTRFS_DEV_REPLACE_ITEM_STATE_NEVER_STARTED
;
82 dev_replace
->cont_reading_from_srcdev_mode
=
83 BTRFS_DEV_REPLACE_ITEM_CONT_READING_FROM_SRCDEV_MODE_ALWAYS
;
84 dev_replace
->replace_state
= 0;
85 dev_replace
->time_started
= 0;
86 dev_replace
->time_stopped
= 0;
87 atomic64_set(&dev_replace
->num_write_errors
, 0);
88 atomic64_set(&dev_replace
->num_uncorrectable_read_errors
, 0);
89 dev_replace
->cursor_left
= 0;
90 dev_replace
->committed_cursor_left
= 0;
91 dev_replace
->cursor_left_last_write_of_item
= 0;
92 dev_replace
->cursor_right
= 0;
93 dev_replace
->srcdev
= NULL
;
94 dev_replace
->tgtdev
= NULL
;
95 dev_replace
->is_valid
= 0;
96 dev_replace
->item_needs_writeback
= 0;
99 slot
= path
->slots
[0];
101 item_size
= btrfs_item_size_nr(eb
, slot
);
102 ptr
= btrfs_item_ptr(eb
, slot
, struct btrfs_dev_replace_item
);
104 if (item_size
!= sizeof(struct btrfs_dev_replace_item
)) {
106 "dev_replace entry found has unexpected size, ignore entry");
107 goto no_valid_dev_replace_entry_found
;
110 src_devid
= btrfs_dev_replace_src_devid(eb
, ptr
);
111 dev_replace
->cont_reading_from_srcdev_mode
=
112 btrfs_dev_replace_cont_reading_from_srcdev_mode(eb
, ptr
);
113 dev_replace
->replace_state
= btrfs_dev_replace_replace_state(eb
, ptr
);
114 dev_replace
->time_started
= btrfs_dev_replace_time_started(eb
, ptr
);
115 dev_replace
->time_stopped
=
116 btrfs_dev_replace_time_stopped(eb
, ptr
);
117 atomic64_set(&dev_replace
->num_write_errors
,
118 btrfs_dev_replace_num_write_errors(eb
, ptr
));
119 atomic64_set(&dev_replace
->num_uncorrectable_read_errors
,
120 btrfs_dev_replace_num_uncorrectable_read_errors(eb
, ptr
));
121 dev_replace
->cursor_left
= btrfs_dev_replace_cursor_left(eb
, ptr
);
122 dev_replace
->committed_cursor_left
= dev_replace
->cursor_left
;
123 dev_replace
->cursor_left_last_write_of_item
= dev_replace
->cursor_left
;
124 dev_replace
->cursor_right
= btrfs_dev_replace_cursor_right(eb
, ptr
);
125 dev_replace
->is_valid
= 1;
127 dev_replace
->item_needs_writeback
= 0;
128 switch (dev_replace
->replace_state
) {
129 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
130 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
131 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
132 dev_replace
->srcdev
= NULL
;
133 dev_replace
->tgtdev
= NULL
;
135 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
136 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
137 dev_replace
->srcdev
= btrfs_find_device(fs_info
, src_devid
,
139 dev_replace
->tgtdev
= btrfs_find_device(fs_info
,
140 BTRFS_DEV_REPLACE_DEVID
,
143 * allow 'btrfs dev replace_cancel' if src/tgt device is
146 if (!dev_replace
->srcdev
&&
147 !btrfs_test_opt(dev_root
, DEGRADED
)) {
150 "cannot mount because device replace operation is ongoing and");
152 "srcdev (devid %llu) is missing, need to run 'btrfs dev scan'?",
155 if (!dev_replace
->tgtdev
&&
156 !btrfs_test_opt(dev_root
, DEGRADED
)) {
159 "cannot mount because device replace operation is ongoing and");
161 "tgtdev (devid %llu) is missing, need to run 'btrfs dev scan'?",
162 BTRFS_DEV_REPLACE_DEVID
);
164 if (dev_replace
->tgtdev
) {
165 if (dev_replace
->srcdev
) {
166 dev_replace
->tgtdev
->total_bytes
=
167 dev_replace
->srcdev
->total_bytes
;
168 dev_replace
->tgtdev
->disk_total_bytes
=
169 dev_replace
->srcdev
->disk_total_bytes
;
170 dev_replace
->tgtdev
->bytes_used
=
171 dev_replace
->srcdev
->bytes_used
;
173 dev_replace
->tgtdev
->is_tgtdev_for_dev_replace
= 1;
174 btrfs_init_dev_replace_tgtdev_for_resume(fs_info
,
175 dev_replace
->tgtdev
);
182 btrfs_free_path(path
);
187 * called from commit_transaction. Writes changed device replace state to
190 int btrfs_run_dev_replace(struct btrfs_trans_handle
*trans
,
191 struct btrfs_fs_info
*fs_info
)
194 struct btrfs_root
*dev_root
= fs_info
->dev_root
;
195 struct btrfs_path
*path
;
196 struct btrfs_key key
;
197 struct extent_buffer
*eb
;
198 struct btrfs_dev_replace_item
*ptr
;
199 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
201 btrfs_dev_replace_lock(dev_replace
);
202 if (!dev_replace
->is_valid
||
203 !dev_replace
->item_needs_writeback
) {
204 btrfs_dev_replace_unlock(dev_replace
);
207 btrfs_dev_replace_unlock(dev_replace
);
210 key
.type
= BTRFS_DEV_REPLACE_KEY
;
213 path
= btrfs_alloc_path();
218 ret
= btrfs_search_slot(trans
, dev_root
, &key
, path
, -1, 1);
220 btrfs_warn(fs_info
, "error %d while searching for dev_replace item!",
226 btrfs_item_size_nr(path
->nodes
[0], path
->slots
[0]) < sizeof(*ptr
)) {
228 * need to delete old one and insert a new one.
229 * Since no attempt is made to recover any old state, if the
230 * dev_replace state is 'running', the data on the target
232 * It would be possible to recover the state: just make sure
233 * that the beginning of the item is never changed and always
234 * contains all the essential information. Then read this
235 * minimal set of information and use it as a base for the
238 ret
= btrfs_del_item(trans
, dev_root
, path
);
240 btrfs_warn(fs_info
, "delete too small dev_replace item failed %d!",
248 /* need to insert a new item */
249 btrfs_release_path(path
);
250 ret
= btrfs_insert_empty_item(trans
, dev_root
, path
,
253 btrfs_warn(fs_info
, "insert dev_replace item failed %d!",
260 ptr
= btrfs_item_ptr(eb
, path
->slots
[0],
261 struct btrfs_dev_replace_item
);
263 btrfs_dev_replace_lock(dev_replace
);
264 if (dev_replace
->srcdev
)
265 btrfs_set_dev_replace_src_devid(eb
, ptr
,
266 dev_replace
->srcdev
->devid
);
268 btrfs_set_dev_replace_src_devid(eb
, ptr
, (u64
)-1);
269 btrfs_set_dev_replace_cont_reading_from_srcdev_mode(eb
, ptr
,
270 dev_replace
->cont_reading_from_srcdev_mode
);
271 btrfs_set_dev_replace_replace_state(eb
, ptr
,
272 dev_replace
->replace_state
);
273 btrfs_set_dev_replace_time_started(eb
, ptr
, dev_replace
->time_started
);
274 btrfs_set_dev_replace_time_stopped(eb
, ptr
, dev_replace
->time_stopped
);
275 btrfs_set_dev_replace_num_write_errors(eb
, ptr
,
276 atomic64_read(&dev_replace
->num_write_errors
));
277 btrfs_set_dev_replace_num_uncorrectable_read_errors(eb
, ptr
,
278 atomic64_read(&dev_replace
->num_uncorrectable_read_errors
));
279 dev_replace
->cursor_left_last_write_of_item
=
280 dev_replace
->cursor_left
;
281 btrfs_set_dev_replace_cursor_left(eb
, ptr
,
282 dev_replace
->cursor_left_last_write_of_item
);
283 btrfs_set_dev_replace_cursor_right(eb
, ptr
,
284 dev_replace
->cursor_right
);
285 dev_replace
->item_needs_writeback
= 0;
286 btrfs_dev_replace_unlock(dev_replace
);
288 btrfs_mark_buffer_dirty(eb
);
291 btrfs_free_path(path
);
296 void btrfs_after_dev_replace_commit(struct btrfs_fs_info
*fs_info
)
298 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
300 dev_replace
->committed_cursor_left
=
301 dev_replace
->cursor_left_last_write_of_item
;
304 int btrfs_dev_replace_start(struct btrfs_root
*root
,
305 struct btrfs_ioctl_dev_replace_args
*args
)
307 struct btrfs_trans_handle
*trans
;
308 struct btrfs_fs_info
*fs_info
= root
->fs_info
;
309 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
311 struct btrfs_device
*tgt_device
= NULL
;
312 struct btrfs_device
*src_device
= NULL
;
314 if (btrfs_fs_incompat(fs_info
, RAID56
)) {
315 btrfs_warn(fs_info
, "dev_replace cannot yet handle RAID5/RAID6");
319 switch (args
->start
.cont_reading_from_srcdev_mode
) {
320 case BTRFS_IOCTL_DEV_REPLACE_CONT_READING_FROM_SRCDEV_MODE_ALWAYS
:
321 case BTRFS_IOCTL_DEV_REPLACE_CONT_READING_FROM_SRCDEV_MODE_AVOID
:
327 if ((args
->start
.srcdevid
== 0 && args
->start
.srcdev_name
[0] == '\0') ||
328 args
->start
.tgtdev_name
[0] == '\0')
331 mutex_lock(&fs_info
->volume_mutex
);
332 ret
= btrfs_init_dev_replace_tgtdev(root
, args
->start
.tgtdev_name
,
335 btrfs_err(fs_info
, "target device %s is invalid!",
336 args
->start
.tgtdev_name
);
337 mutex_unlock(&fs_info
->volume_mutex
);
341 ret
= btrfs_dev_replace_find_srcdev(root
, args
->start
.srcdevid
,
342 args
->start
.srcdev_name
,
344 mutex_unlock(&fs_info
->volume_mutex
);
350 if (tgt_device
->total_bytes
< src_device
->total_bytes
) {
351 btrfs_err(fs_info
, "target device is smaller than source device!");
356 btrfs_dev_replace_lock(dev_replace
);
357 switch (dev_replace
->replace_state
) {
358 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
359 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
360 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
362 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
363 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
364 args
->result
= BTRFS_IOCTL_DEV_REPLACE_RESULT_ALREADY_STARTED
;
368 dev_replace
->cont_reading_from_srcdev_mode
=
369 args
->start
.cont_reading_from_srcdev_mode
;
370 WARN_ON(!src_device
);
371 dev_replace
->srcdev
= src_device
;
372 WARN_ON(!tgt_device
);
373 dev_replace
->tgtdev
= tgt_device
;
375 printk_in_rcu(KERN_INFO
376 "BTRFS: dev_replace from %s (devid %llu) to %s started\n",
377 src_device
->missing
? "<missing disk>" :
378 rcu_str_deref(src_device
->name
),
380 rcu_str_deref(tgt_device
->name
));
382 tgt_device
->total_bytes
= src_device
->total_bytes
;
383 tgt_device
->disk_total_bytes
= src_device
->disk_total_bytes
;
384 tgt_device
->bytes_used
= src_device
->bytes_used
;
387 * from now on, the writes to the srcdev are all duplicated to
388 * go to the tgtdev as well (refer to btrfs_map_block()).
390 dev_replace
->replace_state
= BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
;
391 dev_replace
->time_started
= get_seconds();
392 dev_replace
->cursor_left
= 0;
393 dev_replace
->committed_cursor_left
= 0;
394 dev_replace
->cursor_left_last_write_of_item
= 0;
395 dev_replace
->cursor_right
= 0;
396 dev_replace
->is_valid
= 1;
397 dev_replace
->item_needs_writeback
= 1;
398 args
->result
= BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR
;
399 btrfs_dev_replace_unlock(dev_replace
);
401 btrfs_wait_ordered_roots(root
->fs_info
, -1);
403 /* force writing the updated state information to disk */
404 trans
= btrfs_start_transaction(root
, 0);
406 ret
= PTR_ERR(trans
);
407 btrfs_dev_replace_lock(dev_replace
);
411 ret
= btrfs_commit_transaction(trans
, root
);
414 /* the disk copy procedure reuses the scrub code */
415 ret
= btrfs_scrub_dev(fs_info
, src_device
->devid
, 0,
416 src_device
->total_bytes
,
417 &dev_replace
->scrub_progress
, 0, 1);
419 ret
= btrfs_dev_replace_finishing(root
->fs_info
, ret
);
425 dev_replace
->srcdev
= NULL
;
426 dev_replace
->tgtdev
= NULL
;
427 btrfs_dev_replace_unlock(dev_replace
);
430 btrfs_destroy_dev_replace_tgtdev(fs_info
, tgt_device
);
435 * blocked until all flighting bios are finished.
437 static void btrfs_rm_dev_replace_blocked(struct btrfs_fs_info
*fs_info
)
442 set_bit(BTRFS_FS_STATE_DEV_REPLACING
, &fs_info
->fs_state
);
444 prepare_to_wait(&fs_info
->replace_wait
, &wait
,
445 TASK_UNINTERRUPTIBLE
);
446 writers
= percpu_counter_sum(&fs_info
->bio_counter
);
449 finish_wait(&fs_info
->replace_wait
, &wait
);
454 * we have removed target device, it is safe to allow new bios request.
456 static void btrfs_rm_dev_replace_unblocked(struct btrfs_fs_info
*fs_info
)
458 clear_bit(BTRFS_FS_STATE_DEV_REPLACING
, &fs_info
->fs_state
);
459 if (waitqueue_active(&fs_info
->replace_wait
))
460 wake_up(&fs_info
->replace_wait
);
463 static int btrfs_dev_replace_finishing(struct btrfs_fs_info
*fs_info
,
466 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
467 struct btrfs_device
*tgt_device
;
468 struct btrfs_device
*src_device
;
469 struct btrfs_root
*root
= fs_info
->tree_root
;
470 u8 uuid_tmp
[BTRFS_UUID_SIZE
];
471 struct btrfs_trans_handle
*trans
;
474 /* don't allow cancel or unmount to disturb the finishing procedure */
475 mutex_lock(&dev_replace
->lock_finishing_cancel_unmount
);
477 btrfs_dev_replace_lock(dev_replace
);
478 /* was the operation canceled, or is it finished? */
479 if (dev_replace
->replace_state
!=
480 BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
) {
481 btrfs_dev_replace_unlock(dev_replace
);
482 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
486 tgt_device
= dev_replace
->tgtdev
;
487 src_device
= dev_replace
->srcdev
;
488 btrfs_dev_replace_unlock(dev_replace
);
491 * flush all outstanding I/O and inode extent mappings before the
492 * copy operation is declared as being finished
494 ret
= btrfs_start_delalloc_roots(root
->fs_info
, 0, -1);
496 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
499 btrfs_wait_ordered_roots(root
->fs_info
, -1);
501 trans
= btrfs_start_transaction(root
, 0);
503 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
504 return PTR_ERR(trans
);
506 ret
= btrfs_commit_transaction(trans
, root
);
509 /* keep away write_all_supers() during the finishing procedure */
510 mutex_lock(&root
->fs_info
->chunk_mutex
);
511 mutex_lock(&root
->fs_info
->fs_devices
->device_list_mutex
);
512 btrfs_dev_replace_lock(dev_replace
);
513 dev_replace
->replace_state
=
514 scrub_ret
? BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
515 : BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
;
516 dev_replace
->tgtdev
= NULL
;
517 dev_replace
->srcdev
= NULL
;
518 dev_replace
->time_stopped
= get_seconds();
519 dev_replace
->item_needs_writeback
= 1;
521 /* replace old device with new one in mapping tree */
523 btrfs_dev_replace_update_device_in_mapping_tree(fs_info
,
527 printk_in_rcu(KERN_ERR
528 "BTRFS: btrfs_scrub_dev(%s, %llu, %s) failed %d\n",
529 src_device
->missing
? "<missing disk>" :
530 rcu_str_deref(src_device
->name
),
532 rcu_str_deref(tgt_device
->name
), scrub_ret
);
533 btrfs_dev_replace_unlock(dev_replace
);
534 mutex_unlock(&root
->fs_info
->fs_devices
->device_list_mutex
);
535 mutex_unlock(&root
->fs_info
->chunk_mutex
);
537 btrfs_destroy_dev_replace_tgtdev(fs_info
, tgt_device
);
538 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
543 printk_in_rcu(KERN_INFO
544 "BTRFS: dev_replace from %s (devid %llu) to %s) finished\n",
545 src_device
->missing
? "<missing disk>" :
546 rcu_str_deref(src_device
->name
),
548 rcu_str_deref(tgt_device
->name
));
549 tgt_device
->is_tgtdev_for_dev_replace
= 0;
550 tgt_device
->devid
= src_device
->devid
;
551 src_device
->devid
= BTRFS_DEV_REPLACE_DEVID
;
552 tgt_device
->bytes_used
= src_device
->bytes_used
;
553 memcpy(uuid_tmp
, tgt_device
->uuid
, sizeof(uuid_tmp
));
554 memcpy(tgt_device
->uuid
, src_device
->uuid
, sizeof(tgt_device
->uuid
));
555 memcpy(src_device
->uuid
, uuid_tmp
, sizeof(src_device
->uuid
));
556 tgt_device
->total_bytes
= src_device
->total_bytes
;
557 tgt_device
->disk_total_bytes
= src_device
->disk_total_bytes
;
558 tgt_device
->bytes_used
= src_device
->bytes_used
;
559 if (fs_info
->sb
->s_bdev
== src_device
->bdev
)
560 fs_info
->sb
->s_bdev
= tgt_device
->bdev
;
561 if (fs_info
->fs_devices
->latest_bdev
== src_device
->bdev
)
562 fs_info
->fs_devices
->latest_bdev
= tgt_device
->bdev
;
563 list_add(&tgt_device
->dev_alloc_list
, &fs_info
->fs_devices
->alloc_list
);
565 btrfs_rm_dev_replace_blocked(fs_info
);
567 btrfs_rm_dev_replace_srcdev(fs_info
, src_device
);
569 btrfs_rm_dev_replace_unblocked(fs_info
);
572 * this is again a consistent state where no dev_replace procedure
573 * is running, the target device is part of the filesystem, the
574 * source device is not part of the filesystem anymore and its 1st
575 * superblock is scratched out so that it is no longer marked to
576 * belong to this filesystem.
578 btrfs_dev_replace_unlock(dev_replace
);
579 mutex_unlock(&root
->fs_info
->fs_devices
->device_list_mutex
);
580 mutex_unlock(&root
->fs_info
->chunk_mutex
);
582 /* write back the superblocks */
583 trans
= btrfs_start_transaction(root
, 0);
585 btrfs_commit_transaction(trans
, root
);
587 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
592 static void btrfs_dev_replace_update_device_in_mapping_tree(
593 struct btrfs_fs_info
*fs_info
,
594 struct btrfs_device
*srcdev
,
595 struct btrfs_device
*tgtdev
)
597 struct extent_map_tree
*em_tree
= &fs_info
->mapping_tree
.map_tree
;
598 struct extent_map
*em
;
599 struct map_lookup
*map
;
603 write_lock(&em_tree
->lock
);
605 em
= lookup_extent_mapping(em_tree
, start
, (u64
)-1);
608 map
= (struct map_lookup
*)em
->bdev
;
609 for (i
= 0; i
< map
->num_stripes
; i
++)
610 if (srcdev
== map
->stripes
[i
].dev
)
611 map
->stripes
[i
].dev
= tgtdev
;
612 start
= em
->start
+ em
->len
;
615 write_unlock(&em_tree
->lock
);
618 static int btrfs_dev_replace_find_srcdev(struct btrfs_root
*root
, u64 srcdevid
,
620 struct btrfs_device
**device
)
626 *device
= btrfs_find_device(root
->fs_info
, srcdevid
, NULL
,
631 ret
= btrfs_find_device_missing_or_by_path(root
, srcdev_name
,
637 void btrfs_dev_replace_status(struct btrfs_fs_info
*fs_info
,
638 struct btrfs_ioctl_dev_replace_args
*args
)
640 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
642 btrfs_dev_replace_lock(dev_replace
);
643 /* even if !dev_replace_is_valid, the values are good enough for
644 * the replace_status ioctl */
645 args
->result
= BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR
;
646 args
->status
.replace_state
= dev_replace
->replace_state
;
647 args
->status
.time_started
= dev_replace
->time_started
;
648 args
->status
.time_stopped
= dev_replace
->time_stopped
;
649 args
->status
.num_write_errors
=
650 atomic64_read(&dev_replace
->num_write_errors
);
651 args
->status
.num_uncorrectable_read_errors
=
652 atomic64_read(&dev_replace
->num_uncorrectable_read_errors
);
653 switch (dev_replace
->replace_state
) {
654 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
655 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
656 args
->status
.progress_1000
= 0;
658 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
659 args
->status
.progress_1000
= 1000;
661 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
662 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
663 args
->status
.progress_1000
= div64_u64(dev_replace
->cursor_left
,
664 div64_u64(dev_replace
->srcdev
->total_bytes
, 1000));
667 btrfs_dev_replace_unlock(dev_replace
);
670 int btrfs_dev_replace_cancel(struct btrfs_fs_info
*fs_info
,
671 struct btrfs_ioctl_dev_replace_args
*args
)
673 args
->result
= __btrfs_dev_replace_cancel(fs_info
);
677 static u64
__btrfs_dev_replace_cancel(struct btrfs_fs_info
*fs_info
)
679 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
680 struct btrfs_device
*tgt_device
= NULL
;
681 struct btrfs_trans_handle
*trans
;
682 struct btrfs_root
*root
= fs_info
->tree_root
;
686 if (fs_info
->sb
->s_flags
& MS_RDONLY
)
689 mutex_lock(&dev_replace
->lock_finishing_cancel_unmount
);
690 btrfs_dev_replace_lock(dev_replace
);
691 switch (dev_replace
->replace_state
) {
692 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
693 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
694 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
695 result
= BTRFS_IOCTL_DEV_REPLACE_RESULT_NOT_STARTED
;
696 btrfs_dev_replace_unlock(dev_replace
);
698 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
699 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
700 result
= BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR
;
701 tgt_device
= dev_replace
->tgtdev
;
702 dev_replace
->tgtdev
= NULL
;
703 dev_replace
->srcdev
= NULL
;
706 dev_replace
->replace_state
= BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
;
707 dev_replace
->time_stopped
= get_seconds();
708 dev_replace
->item_needs_writeback
= 1;
709 btrfs_dev_replace_unlock(dev_replace
);
710 btrfs_scrub_cancel(fs_info
);
712 trans
= btrfs_start_transaction(root
, 0);
714 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
715 return PTR_ERR(trans
);
717 ret
= btrfs_commit_transaction(trans
, root
);
720 btrfs_destroy_dev_replace_tgtdev(fs_info
, tgt_device
);
723 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
727 void btrfs_dev_replace_suspend_for_unmount(struct btrfs_fs_info
*fs_info
)
729 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
731 mutex_lock(&dev_replace
->lock_finishing_cancel_unmount
);
732 btrfs_dev_replace_lock(dev_replace
);
733 switch (dev_replace
->replace_state
) {
734 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
735 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
736 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
737 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
739 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
740 dev_replace
->replace_state
=
741 BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
;
742 dev_replace
->time_stopped
= get_seconds();
743 dev_replace
->item_needs_writeback
= 1;
744 btrfs_info(fs_info
, "suspending dev_replace for unmount");
748 btrfs_dev_replace_unlock(dev_replace
);
749 mutex_unlock(&dev_replace
->lock_finishing_cancel_unmount
);
752 /* resume dev_replace procedure that was interrupted by unmount */
753 int btrfs_resume_dev_replace_async(struct btrfs_fs_info
*fs_info
)
755 struct task_struct
*task
;
756 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
758 btrfs_dev_replace_lock(dev_replace
);
759 switch (dev_replace
->replace_state
) {
760 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
761 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
762 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
763 btrfs_dev_replace_unlock(dev_replace
);
765 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
767 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
768 dev_replace
->replace_state
=
769 BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
;
772 if (!dev_replace
->tgtdev
|| !dev_replace
->tgtdev
->bdev
) {
773 btrfs_info(fs_info
, "cannot continue dev_replace, tgtdev is missing");
775 "you may cancel the operation after 'mount -o degraded'");
776 btrfs_dev_replace_unlock(dev_replace
);
779 btrfs_dev_replace_unlock(dev_replace
);
782 &fs_info
->mutually_exclusive_operation_running
, 1));
783 task
= kthread_run(btrfs_dev_replace_kthread
, fs_info
, "btrfs-devrepl");
784 return PTR_ERR_OR_ZERO(task
);
787 static int btrfs_dev_replace_kthread(void *data
)
789 struct btrfs_fs_info
*fs_info
= data
;
790 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
791 struct btrfs_ioctl_dev_replace_args
*status_args
;
794 status_args
= kzalloc(sizeof(*status_args
), GFP_NOFS
);
796 btrfs_dev_replace_status(fs_info
, status_args
);
797 progress
= status_args
->status
.progress_1000
;
799 do_div(progress
, 10);
800 printk_in_rcu(KERN_INFO
801 "BTRFS: continuing dev_replace from %s (devid %llu) to %s @%u%%\n",
802 dev_replace
->srcdev
->missing
? "<missing disk>" :
803 rcu_str_deref(dev_replace
->srcdev
->name
),
804 dev_replace
->srcdev
->devid
,
805 dev_replace
->tgtdev
?
806 rcu_str_deref(dev_replace
->tgtdev
->name
) :
807 "<missing target disk>",
808 (unsigned int)progress
);
810 btrfs_dev_replace_continue_on_mount(fs_info
);
811 atomic_set(&fs_info
->mutually_exclusive_operation_running
, 0);
816 static int btrfs_dev_replace_continue_on_mount(struct btrfs_fs_info
*fs_info
)
818 struct btrfs_dev_replace
*dev_replace
= &fs_info
->dev_replace
;
821 ret
= btrfs_scrub_dev(fs_info
, dev_replace
->srcdev
->devid
,
822 dev_replace
->committed_cursor_left
,
823 dev_replace
->srcdev
->total_bytes
,
824 &dev_replace
->scrub_progress
, 0, 1);
825 ret
= btrfs_dev_replace_finishing(fs_info
, ret
);
830 int btrfs_dev_replace_is_ongoing(struct btrfs_dev_replace
*dev_replace
)
832 if (!dev_replace
->is_valid
)
835 switch (dev_replace
->replace_state
) {
836 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED
:
837 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED
:
838 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
:
840 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED
:
841 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED
:
843 * return true even if tgtdev is missing (this is
844 * something that can happen if the dev_replace
845 * procedure is suspended by an umount and then
846 * the tgtdev is missing (or "btrfs dev scan") was
847 * not called and the the filesystem is remounted
848 * in degraded state. This does not stop the
849 * dev_replace procedure. It needs to be canceled
850 * manually if the cancelation is wanted.
857 void btrfs_dev_replace_lock(struct btrfs_dev_replace
*dev_replace
)
859 /* the beginning is just an optimization for the typical case */
860 if (atomic_read(&dev_replace
->nesting_level
) == 0) {
862 /* this is not a nested case where the same thread
863 * is trying to acqurire the same lock twice */
864 mutex_lock(&dev_replace
->lock
);
865 mutex_lock(&dev_replace
->lock_management_lock
);
866 dev_replace
->lock_owner
= current
->pid
;
867 atomic_inc(&dev_replace
->nesting_level
);
868 mutex_unlock(&dev_replace
->lock_management_lock
);
872 mutex_lock(&dev_replace
->lock_management_lock
);
873 if (atomic_read(&dev_replace
->nesting_level
) > 0 &&
874 dev_replace
->lock_owner
== current
->pid
) {
875 WARN_ON(!mutex_is_locked(&dev_replace
->lock
));
876 atomic_inc(&dev_replace
->nesting_level
);
877 mutex_unlock(&dev_replace
->lock_management_lock
);
881 mutex_unlock(&dev_replace
->lock_management_lock
);
885 void btrfs_dev_replace_unlock(struct btrfs_dev_replace
*dev_replace
)
887 WARN_ON(!mutex_is_locked(&dev_replace
->lock
));
888 mutex_lock(&dev_replace
->lock_management_lock
);
889 WARN_ON(atomic_read(&dev_replace
->nesting_level
) < 1);
890 WARN_ON(dev_replace
->lock_owner
!= current
->pid
);
891 atomic_dec(&dev_replace
->nesting_level
);
892 if (atomic_read(&dev_replace
->nesting_level
) == 0) {
893 dev_replace
->lock_owner
= 0;
894 mutex_unlock(&dev_replace
->lock_management_lock
);
895 mutex_unlock(&dev_replace
->lock
);
897 mutex_unlock(&dev_replace
->lock_management_lock
);
901 void btrfs_bio_counter_inc_noblocked(struct btrfs_fs_info
*fs_info
)
903 percpu_counter_inc(&fs_info
->bio_counter
);
906 void btrfs_bio_counter_dec(struct btrfs_fs_info
*fs_info
)
908 percpu_counter_dec(&fs_info
->bio_counter
);
910 if (waitqueue_active(&fs_info
->replace_wait
))
911 wake_up(&fs_info
->replace_wait
);
914 void btrfs_bio_counter_inc_blocked(struct btrfs_fs_info
*fs_info
)
918 percpu_counter_inc(&fs_info
->bio_counter
);
919 if (test_bit(BTRFS_FS_STATE_DEV_REPLACING
, &fs_info
->fs_state
)) {
920 btrfs_bio_counter_dec(fs_info
);
921 wait_event(fs_info
->replace_wait
,
922 !test_bit(BTRFS_FS_STATE_DEV_REPLACING
,
923 &fs_info
->fs_state
));