1 // SPDX-License-Identifier: GPL-2.0
3 * Copyright (C) STRATO AG 2012. All rights reserved.
6 #include <linux/sched.h>
8 #include <linux/slab.h>
9 #include <linux/blkdev.h>
10 #include <linux/kthread.h>
11 #include <linux/math64.h>
14 #include "extent_map.h"
16 #include "transaction.h"
17 #include "print-tree.h"
19 #include "async-thread.h"
20 #include "check-integrity.h"
21 #include "rcu-string.h"
22 #include "dev-replace.h"
26 * Device replace overview
29 * To copy all extents (both new and on-disk) from source device to target
30 * device, while still keeping the filesystem read-write.
33 * There are two main methods involved:
37 * All new writes will be written to both target and source devices, so even
38 * if replace gets canceled, sources device still contans up-to-date data.
40 * Location: handle_ops_on_dev_replace() from __btrfs_map_block()
41 * Start: btrfs_dev_replace_start()
42 * End: btrfs_dev_replace_finishing()
43 * Content: Latest data/metadata
45 * - Copy existing extents
47 * This happens by re-using scrub facility, as scrub also iterates through
48 * existing extents from commit root.
50 * Location: scrub_write_block_to_dev_replace() from
51 * scrub_block_complete()
52 * Content: Data/meta from commit root.
54 * Due to the content difference, we need to avoid nocow write when dev-replace
55 * is happening. This is done by marking the block group read-only and waiting
58 * After replace is done, the finishing part is done by swapping the target and
61 * Location: btrfs_dev_replace_update_device_in_mapping_tree() from
62 * btrfs_dev_replace_finishing()
65 static int btrfs_dev_replace_finishing(struct btrfs_fs_info *fs_info,
67 static int btrfs_dev_replace_kthread(void *data);
69 int btrfs_init_dev_replace(struct btrfs_fs_info *fs_info)
72 struct btrfs_root *dev_root = fs_info->dev_root;
73 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
74 struct extent_buffer *eb;
77 struct btrfs_path *path = NULL;
79 struct btrfs_dev_replace_item *ptr;
82 path = btrfs_alloc_path();
89 key.type = BTRFS_DEV_REPLACE_KEY;
91 ret = btrfs_search_slot(NULL, dev_root, &key, path, 0, 0);
93 no_valid_dev_replace_entry_found:
95 dev_replace->replace_state =
96 BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED;
97 dev_replace->cont_reading_from_srcdev_mode =
98 BTRFS_DEV_REPLACE_ITEM_CONT_READING_FROM_SRCDEV_MODE_ALWAYS;
99 dev_replace->time_started = 0;
100 dev_replace->time_stopped = 0;
101 atomic64_set(&dev_replace->num_write_errors, 0);
102 atomic64_set(&dev_replace->num_uncorrectable_read_errors, 0);
103 dev_replace->cursor_left = 0;
104 dev_replace->committed_cursor_left = 0;
105 dev_replace->cursor_left_last_write_of_item = 0;
106 dev_replace->cursor_right = 0;
107 dev_replace->srcdev = NULL;
108 dev_replace->tgtdev = NULL;
109 dev_replace->is_valid = 0;
110 dev_replace->item_needs_writeback = 0;
113 slot = path->slots[0];
115 item_size = btrfs_item_size_nr(eb, slot);
116 ptr = btrfs_item_ptr(eb, slot, struct btrfs_dev_replace_item);
118 if (item_size != sizeof(struct btrfs_dev_replace_item)) {
120 "dev_replace entry found has unexpected size, ignore entry");
121 goto no_valid_dev_replace_entry_found;
124 src_devid = btrfs_dev_replace_src_devid(eb, ptr);
125 dev_replace->cont_reading_from_srcdev_mode =
126 btrfs_dev_replace_cont_reading_from_srcdev_mode(eb, ptr);
127 dev_replace->replace_state = btrfs_dev_replace_replace_state(eb, ptr);
128 dev_replace->time_started = btrfs_dev_replace_time_started(eb, ptr);
129 dev_replace->time_stopped =
130 btrfs_dev_replace_time_stopped(eb, ptr);
131 atomic64_set(&dev_replace->num_write_errors,
132 btrfs_dev_replace_num_write_errors(eb, ptr));
133 atomic64_set(&dev_replace->num_uncorrectable_read_errors,
134 btrfs_dev_replace_num_uncorrectable_read_errors(eb, ptr));
135 dev_replace->cursor_left = btrfs_dev_replace_cursor_left(eb, ptr);
136 dev_replace->committed_cursor_left = dev_replace->cursor_left;
137 dev_replace->cursor_left_last_write_of_item = dev_replace->cursor_left;
138 dev_replace->cursor_right = btrfs_dev_replace_cursor_right(eb, ptr);
139 dev_replace->is_valid = 1;
141 dev_replace->item_needs_writeback = 0;
142 switch (dev_replace->replace_state) {
143 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
144 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
145 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
146 dev_replace->srcdev = NULL;
147 dev_replace->tgtdev = NULL;
149 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
150 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
151 dev_replace->srcdev = btrfs_find_device(fs_info->fs_devices,
152 src_devid, NULL, NULL, true);
153 dev_replace->tgtdev = btrfs_find_device(fs_info->fs_devices,
154 BTRFS_DEV_REPLACE_DEVID,
157 * allow 'btrfs dev replace_cancel' if src/tgt device is
160 if (!dev_replace->srcdev &&
161 !btrfs_test_opt(fs_info, DEGRADED)) {
164 "cannot mount because device replace operation is ongoing and");
166 "srcdev (devid %llu) is missing, need to run 'btrfs dev scan'?",
169 if (!dev_replace->tgtdev &&
170 !btrfs_test_opt(fs_info, DEGRADED)) {
173 "cannot mount because device replace operation is ongoing and");
175 "tgtdev (devid %llu) is missing, need to run 'btrfs dev scan'?",
176 BTRFS_DEV_REPLACE_DEVID);
178 if (dev_replace->tgtdev) {
179 if (dev_replace->srcdev) {
180 dev_replace->tgtdev->total_bytes =
181 dev_replace->srcdev->total_bytes;
182 dev_replace->tgtdev->disk_total_bytes =
183 dev_replace->srcdev->disk_total_bytes;
184 dev_replace->tgtdev->commit_total_bytes =
185 dev_replace->srcdev->commit_total_bytes;
186 dev_replace->tgtdev->bytes_used =
187 dev_replace->srcdev->bytes_used;
188 dev_replace->tgtdev->commit_bytes_used =
189 dev_replace->srcdev->commit_bytes_used;
191 set_bit(BTRFS_DEV_STATE_REPLACE_TGT,
192 &dev_replace->tgtdev->dev_state);
194 WARN_ON(fs_info->fs_devices->rw_devices == 0);
195 dev_replace->tgtdev->io_width = fs_info->sectorsize;
196 dev_replace->tgtdev->io_align = fs_info->sectorsize;
197 dev_replace->tgtdev->sector_size = fs_info->sectorsize;
198 dev_replace->tgtdev->fs_info = fs_info;
199 set_bit(BTRFS_DEV_STATE_IN_FS_METADATA,
200 &dev_replace->tgtdev->dev_state);
206 btrfs_free_path(path);
211 * Initialize a new device for device replace target from a given source dev
214 * Return 0 and new device in @device_out, otherwise return < 0
216 static int btrfs_init_dev_replace_tgtdev(struct btrfs_fs_info *fs_info,
217 const char *device_path,
218 struct btrfs_device *srcdev,
219 struct btrfs_device **device_out)
221 struct btrfs_device *device;
222 struct block_device *bdev;
223 struct rcu_string *name;
224 u64 devid = BTRFS_DEV_REPLACE_DEVID;
228 if (srcdev->fs_devices->seeding) {
229 btrfs_err(fs_info, "the filesystem is a seed filesystem!");
233 bdev = blkdev_get_by_path(device_path, FMODE_WRITE | FMODE_EXCL,
234 fs_info->bdev_holder);
236 btrfs_err(fs_info, "target device %s is invalid!", device_path);
237 return PTR_ERR(bdev);
242 list_for_each_entry(device, &fs_info->fs_devices->devices, dev_list) {
243 if (device->bdev == bdev) {
245 "target device is in the filesystem!");
252 if (i_size_read(bdev->bd_inode) <
253 btrfs_device_get_total_bytes(srcdev)) {
255 "target device is smaller than source device!");
261 device = btrfs_alloc_device(NULL, &devid, NULL);
262 if (IS_ERR(device)) {
263 ret = PTR_ERR(device);
267 name = rcu_string_strdup(device_path, GFP_KERNEL);
269 btrfs_free_device(device);
273 rcu_assign_pointer(device->name, name);
275 set_bit(BTRFS_DEV_STATE_WRITEABLE, &device->dev_state);
276 device->generation = 0;
277 device->io_width = fs_info->sectorsize;
278 device->io_align = fs_info->sectorsize;
279 device->sector_size = fs_info->sectorsize;
280 device->total_bytes = btrfs_device_get_total_bytes(srcdev);
281 device->disk_total_bytes = btrfs_device_get_disk_total_bytes(srcdev);
282 device->bytes_used = btrfs_device_get_bytes_used(srcdev);
283 device->commit_total_bytes = srcdev->commit_total_bytes;
284 device->commit_bytes_used = device->bytes_used;
285 device->fs_info = fs_info;
287 set_bit(BTRFS_DEV_STATE_IN_FS_METADATA, &device->dev_state);
288 set_bit(BTRFS_DEV_STATE_REPLACE_TGT, &device->dev_state);
289 device->mode = FMODE_EXCL;
290 device->dev_stats_valid = 1;
291 set_blocksize(device->bdev, BTRFS_BDEV_BLOCKSIZE);
292 device->fs_devices = fs_info->fs_devices;
294 mutex_lock(&fs_info->fs_devices->device_list_mutex);
295 list_add(&device->dev_list, &fs_info->fs_devices->devices);
296 fs_info->fs_devices->num_devices++;
297 fs_info->fs_devices->open_devices++;
298 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
300 *device_out = device;
304 blkdev_put(bdev, FMODE_EXCL);
309 * called from commit_transaction. Writes changed device replace state to
312 int btrfs_run_dev_replace(struct btrfs_trans_handle *trans)
314 struct btrfs_fs_info *fs_info = trans->fs_info;
316 struct btrfs_root *dev_root = fs_info->dev_root;
317 struct btrfs_path *path;
318 struct btrfs_key key;
319 struct extent_buffer *eb;
320 struct btrfs_dev_replace_item *ptr;
321 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
323 down_read(&dev_replace->rwsem);
324 if (!dev_replace->is_valid ||
325 !dev_replace->item_needs_writeback) {
326 up_read(&dev_replace->rwsem);
329 up_read(&dev_replace->rwsem);
332 key.type = BTRFS_DEV_REPLACE_KEY;
335 path = btrfs_alloc_path();
340 ret = btrfs_search_slot(trans, dev_root, &key, path, -1, 1);
343 "error %d while searching for dev_replace item!",
349 btrfs_item_size_nr(path->nodes[0], path->slots[0]) < sizeof(*ptr)) {
351 * need to delete old one and insert a new one.
352 * Since no attempt is made to recover any old state, if the
353 * dev_replace state is 'running', the data on the target
355 * It would be possible to recover the state: just make sure
356 * that the beginning of the item is never changed and always
357 * contains all the essential information. Then read this
358 * minimal set of information and use it as a base for the
361 ret = btrfs_del_item(trans, dev_root, path);
364 "delete too small dev_replace item failed %d!",
372 /* need to insert a new item */
373 btrfs_release_path(path);
374 ret = btrfs_insert_empty_item(trans, dev_root, path,
378 "insert dev_replace item failed %d!", ret);
384 ptr = btrfs_item_ptr(eb, path->slots[0],
385 struct btrfs_dev_replace_item);
387 down_write(&dev_replace->rwsem);
388 if (dev_replace->srcdev)
389 btrfs_set_dev_replace_src_devid(eb, ptr,
390 dev_replace->srcdev->devid);
392 btrfs_set_dev_replace_src_devid(eb, ptr, (u64)-1);
393 btrfs_set_dev_replace_cont_reading_from_srcdev_mode(eb, ptr,
394 dev_replace->cont_reading_from_srcdev_mode);
395 btrfs_set_dev_replace_replace_state(eb, ptr,
396 dev_replace->replace_state);
397 btrfs_set_dev_replace_time_started(eb, ptr, dev_replace->time_started);
398 btrfs_set_dev_replace_time_stopped(eb, ptr, dev_replace->time_stopped);
399 btrfs_set_dev_replace_num_write_errors(eb, ptr,
400 atomic64_read(&dev_replace->num_write_errors));
401 btrfs_set_dev_replace_num_uncorrectable_read_errors(eb, ptr,
402 atomic64_read(&dev_replace->num_uncorrectable_read_errors));
403 dev_replace->cursor_left_last_write_of_item =
404 dev_replace->cursor_left;
405 btrfs_set_dev_replace_cursor_left(eb, ptr,
406 dev_replace->cursor_left_last_write_of_item);
407 btrfs_set_dev_replace_cursor_right(eb, ptr,
408 dev_replace->cursor_right);
409 dev_replace->item_needs_writeback = 0;
410 up_write(&dev_replace->rwsem);
412 btrfs_mark_buffer_dirty(eb);
415 btrfs_free_path(path);
420 static char* btrfs_dev_name(struct btrfs_device *device)
422 if (!device || test_bit(BTRFS_DEV_STATE_MISSING, &device->dev_state))
423 return "<missing disk>";
425 return rcu_str_deref(device->name);
428 static int btrfs_dev_replace_start(struct btrfs_fs_info *fs_info,
429 const char *tgtdev_name, u64 srcdevid, const char *srcdev_name,
432 struct btrfs_root *root = fs_info->dev_root;
433 struct btrfs_trans_handle *trans;
434 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
436 struct btrfs_device *tgt_device = NULL;
437 struct btrfs_device *src_device = NULL;
439 src_device = btrfs_find_device_by_devspec(fs_info, srcdevid,
441 if (IS_ERR(src_device))
442 return PTR_ERR(src_device);
444 if (btrfs_pinned_by_swapfile(fs_info, src_device)) {
445 btrfs_warn_in_rcu(fs_info,
446 "cannot replace device %s (devid %llu) due to active swapfile",
447 btrfs_dev_name(src_device), src_device->devid);
452 * Here we commit the transaction to make sure commit_total_bytes
453 * of all the devices are updated.
455 trans = btrfs_attach_transaction(root);
456 if (!IS_ERR(trans)) {
457 ret = btrfs_commit_transaction(trans);
460 } else if (PTR_ERR(trans) != -ENOENT) {
461 return PTR_ERR(trans);
464 ret = btrfs_init_dev_replace_tgtdev(fs_info, tgtdev_name,
465 src_device, &tgt_device);
469 down_write(&dev_replace->rwsem);
470 switch (dev_replace->replace_state) {
471 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
472 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
473 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
475 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
476 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
478 ret = BTRFS_IOCTL_DEV_REPLACE_RESULT_ALREADY_STARTED;
479 up_write(&dev_replace->rwsem);
483 dev_replace->cont_reading_from_srcdev_mode = read_src;
484 dev_replace->srcdev = src_device;
485 dev_replace->tgtdev = tgt_device;
487 btrfs_info_in_rcu(fs_info,
488 "dev_replace from %s (devid %llu) to %s started",
489 btrfs_dev_name(src_device),
491 rcu_str_deref(tgt_device->name));
494 * from now on, the writes to the srcdev are all duplicated to
495 * go to the tgtdev as well (refer to btrfs_map_block()).
497 dev_replace->replace_state = BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED;
498 dev_replace->time_started = ktime_get_real_seconds();
499 dev_replace->cursor_left = 0;
500 dev_replace->committed_cursor_left = 0;
501 dev_replace->cursor_left_last_write_of_item = 0;
502 dev_replace->cursor_right = 0;
503 dev_replace->is_valid = 1;
504 dev_replace->item_needs_writeback = 1;
505 atomic64_set(&dev_replace->num_write_errors, 0);
506 atomic64_set(&dev_replace->num_uncorrectable_read_errors, 0);
507 up_write(&dev_replace->rwsem);
509 ret = btrfs_sysfs_add_device(tgt_device);
511 btrfs_err(fs_info, "kobj add dev failed %d", ret);
513 btrfs_wait_ordered_roots(fs_info, U64_MAX, 0, (u64)-1);
515 /* Commit dev_replace state and reserve 1 item for it. */
516 trans = btrfs_start_transaction(root, 1);
518 ret = PTR_ERR(trans);
519 down_write(&dev_replace->rwsem);
520 dev_replace->replace_state =
521 BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED;
522 dev_replace->srcdev = NULL;
523 dev_replace->tgtdev = NULL;
524 up_write(&dev_replace->rwsem);
528 ret = btrfs_commit_transaction(trans);
531 /* the disk copy procedure reuses the scrub code */
532 ret = btrfs_scrub_dev(fs_info, src_device->devid, 0,
533 btrfs_device_get_total_bytes(src_device),
534 &dev_replace->scrub_progress, 0, 1);
536 ret = btrfs_dev_replace_finishing(fs_info, ret);
537 if (ret == -EINPROGRESS)
538 ret = BTRFS_IOCTL_DEV_REPLACE_RESULT_SCRUB_INPROGRESS;
543 btrfs_destroy_dev_replace_tgtdev(tgt_device);
547 int btrfs_dev_replace_by_ioctl(struct btrfs_fs_info *fs_info,
548 struct btrfs_ioctl_dev_replace_args *args)
552 switch (args->start.cont_reading_from_srcdev_mode) {
553 case BTRFS_IOCTL_DEV_REPLACE_CONT_READING_FROM_SRCDEV_MODE_ALWAYS:
554 case BTRFS_IOCTL_DEV_REPLACE_CONT_READING_FROM_SRCDEV_MODE_AVOID:
560 if ((args->start.srcdevid == 0 && args->start.srcdev_name[0] == '\0') ||
561 args->start.tgtdev_name[0] == '\0')
564 ret = btrfs_dev_replace_start(fs_info, args->start.tgtdev_name,
565 args->start.srcdevid,
566 args->start.srcdev_name,
567 args->start.cont_reading_from_srcdev_mode);
569 /* don't warn if EINPROGRESS, someone else might be running scrub */
570 if (ret == BTRFS_IOCTL_DEV_REPLACE_RESULT_SCRUB_INPROGRESS ||
571 ret == BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR)
578 * blocked until all in-flight bios operations are finished.
580 static void btrfs_rm_dev_replace_blocked(struct btrfs_fs_info *fs_info)
582 set_bit(BTRFS_FS_STATE_DEV_REPLACING, &fs_info->fs_state);
583 wait_event(fs_info->dev_replace.replace_wait, !percpu_counter_sum(
584 &fs_info->dev_replace.bio_counter));
588 * we have removed target device, it is safe to allow new bios request.
590 static void btrfs_rm_dev_replace_unblocked(struct btrfs_fs_info *fs_info)
592 clear_bit(BTRFS_FS_STATE_DEV_REPLACING, &fs_info->fs_state);
593 wake_up(&fs_info->dev_replace.replace_wait);
597 * When finishing the device replace, before swapping the source device with the
598 * target device we must update the chunk allocation state in the target device,
599 * as it is empty because replace works by directly copying the chunks and not
600 * through the normal chunk allocation path.
602 static int btrfs_set_target_alloc_state(struct btrfs_device *srcdev,
603 struct btrfs_device *tgtdev)
605 struct extent_state *cached_state = NULL;
611 lockdep_assert_held(&srcdev->fs_info->chunk_mutex);
613 while (!find_first_extent_bit(&srcdev->alloc_state, start,
614 &found_start, &found_end,
615 CHUNK_ALLOCATED, &cached_state)) {
616 ret = set_extent_bits(&tgtdev->alloc_state, found_start,
617 found_end, CHUNK_ALLOCATED);
620 start = found_end + 1;
623 free_extent_state(cached_state);
627 static void btrfs_dev_replace_update_device_in_mapping_tree(
628 struct btrfs_fs_info *fs_info,
629 struct btrfs_device *srcdev,
630 struct btrfs_device *tgtdev)
632 struct extent_map_tree *em_tree = &fs_info->mapping_tree;
633 struct extent_map *em;
634 struct map_lookup *map;
638 write_lock(&em_tree->lock);
640 em = lookup_extent_mapping(em_tree, start, (u64)-1);
643 map = em->map_lookup;
644 for (i = 0; i < map->num_stripes; i++)
645 if (srcdev == map->stripes[i].dev)
646 map->stripes[i].dev = tgtdev;
647 start = em->start + em->len;
650 write_unlock(&em_tree->lock);
653 static int btrfs_dev_replace_finishing(struct btrfs_fs_info *fs_info,
656 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
657 struct btrfs_device *tgt_device;
658 struct btrfs_device *src_device;
659 struct btrfs_root *root = fs_info->tree_root;
660 u8 uuid_tmp[BTRFS_UUID_SIZE];
661 struct btrfs_trans_handle *trans;
664 /* don't allow cancel or unmount to disturb the finishing procedure */
665 mutex_lock(&dev_replace->lock_finishing_cancel_unmount);
667 down_read(&dev_replace->rwsem);
668 /* was the operation canceled, or is it finished? */
669 if (dev_replace->replace_state !=
670 BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED) {
671 up_read(&dev_replace->rwsem);
672 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
676 tgt_device = dev_replace->tgtdev;
677 src_device = dev_replace->srcdev;
678 up_read(&dev_replace->rwsem);
681 * flush all outstanding I/O and inode extent mappings before the
682 * copy operation is declared as being finished
684 ret = btrfs_start_delalloc_roots(fs_info, U64_MAX);
686 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
689 btrfs_wait_ordered_roots(fs_info, U64_MAX, 0, (u64)-1);
692 * We have to use this loop approach because at this point src_device
693 * has to be available for transaction commit to complete, yet new
694 * chunks shouldn't be allocated on the device.
697 trans = btrfs_start_transaction(root, 0);
699 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
700 return PTR_ERR(trans);
702 ret = btrfs_commit_transaction(trans);
705 /* Prevent write_all_supers() during the finishing procedure */
706 mutex_lock(&fs_info->fs_devices->device_list_mutex);
707 /* Prevent new chunks being allocated on the source device */
708 mutex_lock(&fs_info->chunk_mutex);
710 if (!list_empty(&src_device->post_commit_list)) {
711 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
712 mutex_unlock(&fs_info->chunk_mutex);
718 down_write(&dev_replace->rwsem);
719 dev_replace->replace_state =
720 scrub_ret ? BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED
721 : BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED;
722 dev_replace->tgtdev = NULL;
723 dev_replace->srcdev = NULL;
724 dev_replace->time_stopped = ktime_get_real_seconds();
725 dev_replace->item_needs_writeback = 1;
728 * Update allocation state in the new device and replace the old device
729 * with the new one in the mapping tree.
732 scrub_ret = btrfs_set_target_alloc_state(src_device, tgt_device);
735 btrfs_dev_replace_update_device_in_mapping_tree(fs_info,
739 if (scrub_ret != -ECANCELED)
740 btrfs_err_in_rcu(fs_info,
741 "btrfs_scrub_dev(%s, %llu, %s) failed %d",
742 btrfs_dev_name(src_device),
744 rcu_str_deref(tgt_device->name), scrub_ret);
746 up_write(&dev_replace->rwsem);
747 mutex_unlock(&fs_info->chunk_mutex);
748 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
749 btrfs_rm_dev_replace_blocked(fs_info);
751 btrfs_destroy_dev_replace_tgtdev(tgt_device);
752 btrfs_rm_dev_replace_unblocked(fs_info);
753 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
758 btrfs_info_in_rcu(fs_info,
759 "dev_replace from %s (devid %llu) to %s finished",
760 btrfs_dev_name(src_device),
762 rcu_str_deref(tgt_device->name));
763 clear_bit(BTRFS_DEV_STATE_REPLACE_TGT, &tgt_device->dev_state);
764 tgt_device->devid = src_device->devid;
765 src_device->devid = BTRFS_DEV_REPLACE_DEVID;
766 memcpy(uuid_tmp, tgt_device->uuid, sizeof(uuid_tmp));
767 memcpy(tgt_device->uuid, src_device->uuid, sizeof(tgt_device->uuid));
768 memcpy(src_device->uuid, uuid_tmp, sizeof(src_device->uuid));
769 btrfs_device_set_total_bytes(tgt_device, src_device->total_bytes);
770 btrfs_device_set_disk_total_bytes(tgt_device,
771 src_device->disk_total_bytes);
772 btrfs_device_set_bytes_used(tgt_device, src_device->bytes_used);
773 tgt_device->commit_bytes_used = src_device->bytes_used;
775 btrfs_assign_next_active_device(src_device, tgt_device);
777 list_add(&tgt_device->dev_alloc_list, &fs_info->fs_devices->alloc_list);
778 fs_info->fs_devices->rw_devices++;
780 up_write(&dev_replace->rwsem);
781 btrfs_rm_dev_replace_blocked(fs_info);
783 btrfs_rm_dev_replace_remove_srcdev(src_device);
785 btrfs_rm_dev_replace_unblocked(fs_info);
788 * Increment dev_stats_ccnt so that btrfs_run_dev_stats() will
789 * update on-disk dev stats value during commit transaction
791 atomic_inc(&tgt_device->dev_stats_ccnt);
794 * this is again a consistent state where no dev_replace procedure
795 * is running, the target device is part of the filesystem, the
796 * source device is not part of the filesystem anymore and its 1st
797 * superblock is scratched out so that it is no longer marked to
798 * belong to this filesystem.
800 mutex_unlock(&fs_info->chunk_mutex);
801 mutex_unlock(&fs_info->fs_devices->device_list_mutex);
803 /* replace the sysfs entry */
804 btrfs_sysfs_remove_device(src_device);
805 btrfs_sysfs_update_devid(tgt_device);
806 if (test_bit(BTRFS_DEV_STATE_WRITEABLE, &src_device->dev_state))
807 btrfs_scratch_superblocks(fs_info, src_device->bdev,
808 src_device->name->str);
810 /* write back the superblocks */
811 trans = btrfs_start_transaction(root, 0);
813 btrfs_commit_transaction(trans);
815 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
817 btrfs_rm_dev_replace_free_srcdev(src_device);
823 * Read progress of device replace status according to the state and last
824 * stored position. The value format is the same as for
825 * btrfs_dev_replace::progress_1000
827 static u64 btrfs_dev_replace_progress(struct btrfs_fs_info *fs_info)
829 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
832 switch (dev_replace->replace_state) {
833 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
834 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
837 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
840 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
841 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
842 ret = div64_u64(dev_replace->cursor_left,
843 div_u64(btrfs_device_get_total_bytes(
844 dev_replace->srcdev), 1000));
851 void btrfs_dev_replace_status(struct btrfs_fs_info *fs_info,
852 struct btrfs_ioctl_dev_replace_args *args)
854 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
856 down_read(&dev_replace->rwsem);
857 /* even if !dev_replace_is_valid, the values are good enough for
858 * the replace_status ioctl */
859 args->result = BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR;
860 args->status.replace_state = dev_replace->replace_state;
861 args->status.time_started = dev_replace->time_started;
862 args->status.time_stopped = dev_replace->time_stopped;
863 args->status.num_write_errors =
864 atomic64_read(&dev_replace->num_write_errors);
865 args->status.num_uncorrectable_read_errors =
866 atomic64_read(&dev_replace->num_uncorrectable_read_errors);
867 args->status.progress_1000 = btrfs_dev_replace_progress(fs_info);
868 up_read(&dev_replace->rwsem);
871 int btrfs_dev_replace_cancel(struct btrfs_fs_info *fs_info)
873 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
874 struct btrfs_device *tgt_device = NULL;
875 struct btrfs_device *src_device = NULL;
876 struct btrfs_trans_handle *trans;
877 struct btrfs_root *root = fs_info->tree_root;
881 if (sb_rdonly(fs_info->sb))
884 mutex_lock(&dev_replace->lock_finishing_cancel_unmount);
885 down_write(&dev_replace->rwsem);
886 switch (dev_replace->replace_state) {
887 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
888 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
889 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
890 result = BTRFS_IOCTL_DEV_REPLACE_RESULT_NOT_STARTED;
891 up_write(&dev_replace->rwsem);
893 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
894 tgt_device = dev_replace->tgtdev;
895 src_device = dev_replace->srcdev;
896 up_write(&dev_replace->rwsem);
897 ret = btrfs_scrub_cancel(fs_info);
899 result = BTRFS_IOCTL_DEV_REPLACE_RESULT_NOT_STARTED;
901 result = BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR;
903 * btrfs_dev_replace_finishing() will handle the
906 btrfs_info_in_rcu(fs_info,
907 "dev_replace from %s (devid %llu) to %s canceled",
908 btrfs_dev_name(src_device), src_device->devid,
909 btrfs_dev_name(tgt_device));
912 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
914 * Scrub doing the replace isn't running so we need to do the
915 * cleanup step of btrfs_dev_replace_finishing() here
917 result = BTRFS_IOCTL_DEV_REPLACE_RESULT_NO_ERROR;
918 tgt_device = dev_replace->tgtdev;
919 src_device = dev_replace->srcdev;
920 dev_replace->tgtdev = NULL;
921 dev_replace->srcdev = NULL;
922 dev_replace->replace_state =
923 BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED;
924 dev_replace->time_stopped = ktime_get_real_seconds();
925 dev_replace->item_needs_writeback = 1;
927 up_write(&dev_replace->rwsem);
929 /* Scrub for replace must not be running in suspended state */
930 ret = btrfs_scrub_cancel(fs_info);
931 ASSERT(ret != -ENOTCONN);
933 trans = btrfs_start_transaction(root, 0);
935 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
936 return PTR_ERR(trans);
938 ret = btrfs_commit_transaction(trans);
941 btrfs_info_in_rcu(fs_info,
942 "suspended dev_replace from %s (devid %llu) to %s canceled",
943 btrfs_dev_name(src_device), src_device->devid,
944 btrfs_dev_name(tgt_device));
947 btrfs_destroy_dev_replace_tgtdev(tgt_device);
950 up_write(&dev_replace->rwsem);
954 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
958 void btrfs_dev_replace_suspend_for_unmount(struct btrfs_fs_info *fs_info)
960 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
962 mutex_lock(&dev_replace->lock_finishing_cancel_unmount);
963 down_write(&dev_replace->rwsem);
965 switch (dev_replace->replace_state) {
966 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
967 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
968 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
969 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
971 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
972 dev_replace->replace_state =
973 BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED;
974 dev_replace->time_stopped = ktime_get_real_seconds();
975 dev_replace->item_needs_writeback = 1;
976 btrfs_info(fs_info, "suspending dev_replace for unmount");
980 up_write(&dev_replace->rwsem);
981 mutex_unlock(&dev_replace->lock_finishing_cancel_unmount);
984 /* resume dev_replace procedure that was interrupted by unmount */
985 int btrfs_resume_dev_replace_async(struct btrfs_fs_info *fs_info)
987 struct task_struct *task;
988 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
990 down_write(&dev_replace->rwsem);
992 switch (dev_replace->replace_state) {
993 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
994 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
995 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
996 up_write(&dev_replace->rwsem);
998 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
1000 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
1001 dev_replace->replace_state =
1002 BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED;
1005 if (!dev_replace->tgtdev || !dev_replace->tgtdev->bdev) {
1007 "cannot continue dev_replace, tgtdev is missing");
1009 "you may cancel the operation after 'mount -o degraded'");
1010 dev_replace->replace_state =
1011 BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED;
1012 up_write(&dev_replace->rwsem);
1015 up_write(&dev_replace->rwsem);
1018 * This could collide with a paused balance, but the exclusive op logic
1019 * should never allow both to start and pause. We don't want to allow
1020 * dev-replace to start anyway.
1022 if (!btrfs_exclop_start(fs_info, BTRFS_EXCLOP_DEV_REPLACE)) {
1023 down_write(&dev_replace->rwsem);
1024 dev_replace->replace_state =
1025 BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED;
1026 up_write(&dev_replace->rwsem);
1028 "cannot resume dev-replace, other exclusive operation running");
1032 task = kthread_run(btrfs_dev_replace_kthread, fs_info, "btrfs-devrepl");
1033 return PTR_ERR_OR_ZERO(task);
1036 static int btrfs_dev_replace_kthread(void *data)
1038 struct btrfs_fs_info *fs_info = data;
1039 struct btrfs_dev_replace *dev_replace = &fs_info->dev_replace;
1043 progress = btrfs_dev_replace_progress(fs_info);
1044 progress = div_u64(progress, 10);
1045 btrfs_info_in_rcu(fs_info,
1046 "continuing dev_replace from %s (devid %llu) to target %s @%u%%",
1047 btrfs_dev_name(dev_replace->srcdev),
1048 dev_replace->srcdev->devid,
1049 btrfs_dev_name(dev_replace->tgtdev),
1050 (unsigned int)progress);
1052 ret = btrfs_scrub_dev(fs_info, dev_replace->srcdev->devid,
1053 dev_replace->committed_cursor_left,
1054 btrfs_device_get_total_bytes(dev_replace->srcdev),
1055 &dev_replace->scrub_progress, 0, 1);
1056 ret = btrfs_dev_replace_finishing(fs_info, ret);
1057 WARN_ON(ret && ret != -ECANCELED);
1059 btrfs_exclop_finish(fs_info);
1063 int __pure btrfs_dev_replace_is_ongoing(struct btrfs_dev_replace *dev_replace)
1065 if (!dev_replace->is_valid)
1068 switch (dev_replace->replace_state) {
1069 case BTRFS_IOCTL_DEV_REPLACE_STATE_NEVER_STARTED:
1070 case BTRFS_IOCTL_DEV_REPLACE_STATE_FINISHED:
1071 case BTRFS_IOCTL_DEV_REPLACE_STATE_CANCELED:
1073 case BTRFS_IOCTL_DEV_REPLACE_STATE_STARTED:
1074 case BTRFS_IOCTL_DEV_REPLACE_STATE_SUSPENDED:
1076 * return true even if tgtdev is missing (this is
1077 * something that can happen if the dev_replace
1078 * procedure is suspended by an umount and then
1079 * the tgtdev is missing (or "btrfs dev scan") was
1080 * not called and the filesystem is remounted
1081 * in degraded state. This does not stop the
1082 * dev_replace procedure. It needs to be canceled
1083 * manually if the cancellation is wanted.
1090 void btrfs_bio_counter_inc_noblocked(struct btrfs_fs_info *fs_info)
1092 percpu_counter_inc(&fs_info->dev_replace.bio_counter);
1095 void btrfs_bio_counter_sub(struct btrfs_fs_info *fs_info, s64 amount)
1097 percpu_counter_sub(&fs_info->dev_replace.bio_counter, amount);
1098 cond_wake_up_nomb(&fs_info->dev_replace.replace_wait);
1101 void btrfs_bio_counter_inc_blocked(struct btrfs_fs_info *fs_info)
1104 percpu_counter_inc(&fs_info->dev_replace.bio_counter);
1105 if (likely(!test_bit(BTRFS_FS_STATE_DEV_REPLACING,
1106 &fs_info->fs_state)))
1109 btrfs_bio_counter_dec(fs_info);
1110 wait_event(fs_info->dev_replace.replace_wait,
1111 !test_bit(BTRFS_FS_STATE_DEV_REPLACING,
1112 &fs_info->fs_state));