xref: /linux/fs/btrfs/block-group.c (revision 08dddb2951c96b53413cf1982e9358fa4c123183)
12e405ad8SJosef Bacik // SPDX-License-Identifier: GPL-2.0
22e405ad8SJosef Bacik 
32ca0ec77SJohannes Thumshirn #include <linux/list_sort.h>
4784352feSDavid Sterba #include "misc.h"
52e405ad8SJosef Bacik #include "ctree.h"
62e405ad8SJosef Bacik #include "block-group.h"
73eeb3226SJosef Bacik #include "space-info.h"
89f21246dSJosef Bacik #include "disk-io.h"
99f21246dSJosef Bacik #include "free-space-cache.h"
109f21246dSJosef Bacik #include "free-space-tree.h"
11e3e0520bSJosef Bacik #include "volumes.h"
12e3e0520bSJosef Bacik #include "transaction.h"
13e3e0520bSJosef Bacik #include "ref-verify.h"
144358d963SJosef Bacik #include "sysfs.h"
154358d963SJosef Bacik #include "tree-log.h"
1677745c05SJosef Bacik #include "delalloc-space.h"
17b0643e59SDennis Zhou #include "discard.h"
1896a14336SNikolay Borisov #include "raid56.h"
1908e11a3dSNaohiro Aota #include "zoned.h"
202e405ad8SJosef Bacik 
21878d7b67SJosef Bacik /*
22878d7b67SJosef Bacik  * Return target flags in extended format or 0 if restripe for this chunk_type
23878d7b67SJosef Bacik  * is not in progress
24878d7b67SJosef Bacik  *
25878d7b67SJosef Bacik  * Should be called with balance_lock held
26878d7b67SJosef Bacik  */
27e11c0406SJosef Bacik static u64 get_restripe_target(struct btrfs_fs_info *fs_info, u64 flags)
28878d7b67SJosef Bacik {
29878d7b67SJosef Bacik 	struct btrfs_balance_control *bctl = fs_info->balance_ctl;
30878d7b67SJosef Bacik 	u64 target = 0;
31878d7b67SJosef Bacik 
32878d7b67SJosef Bacik 	if (!bctl)
33878d7b67SJosef Bacik 		return 0;
34878d7b67SJosef Bacik 
35878d7b67SJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_DATA &&
36878d7b67SJosef Bacik 	    bctl->data.flags & BTRFS_BALANCE_ARGS_CONVERT) {
37878d7b67SJosef Bacik 		target = BTRFS_BLOCK_GROUP_DATA | bctl->data.target;
38878d7b67SJosef Bacik 	} else if (flags & BTRFS_BLOCK_GROUP_SYSTEM &&
39878d7b67SJosef Bacik 		   bctl->sys.flags & BTRFS_BALANCE_ARGS_CONVERT) {
40878d7b67SJosef Bacik 		target = BTRFS_BLOCK_GROUP_SYSTEM | bctl->sys.target;
41878d7b67SJosef Bacik 	} else if (flags & BTRFS_BLOCK_GROUP_METADATA &&
42878d7b67SJosef Bacik 		   bctl->meta.flags & BTRFS_BALANCE_ARGS_CONVERT) {
43878d7b67SJosef Bacik 		target = BTRFS_BLOCK_GROUP_METADATA | bctl->meta.target;
44878d7b67SJosef Bacik 	}
45878d7b67SJosef Bacik 
46878d7b67SJosef Bacik 	return target;
47878d7b67SJosef Bacik }
48878d7b67SJosef Bacik 
49878d7b67SJosef Bacik /*
50878d7b67SJosef Bacik  * @flags: available profiles in extended format (see ctree.h)
51878d7b67SJosef Bacik  *
52878d7b67SJosef Bacik  * Return reduced profile in chunk format.  If profile changing is in progress
53878d7b67SJosef Bacik  * (either running or paused) picks the target profile (if it's already
54878d7b67SJosef Bacik  * available), otherwise falls back to plain reducing.
55878d7b67SJosef Bacik  */
56878d7b67SJosef Bacik static u64 btrfs_reduce_alloc_profile(struct btrfs_fs_info *fs_info, u64 flags)
57878d7b67SJosef Bacik {
58878d7b67SJosef Bacik 	u64 num_devices = fs_info->fs_devices->rw_devices;
59878d7b67SJosef Bacik 	u64 target;
60878d7b67SJosef Bacik 	u64 raid_type;
61878d7b67SJosef Bacik 	u64 allowed = 0;
62878d7b67SJosef Bacik 
63878d7b67SJosef Bacik 	/*
64878d7b67SJosef Bacik 	 * See if restripe for this chunk_type is in progress, if so try to
65878d7b67SJosef Bacik 	 * reduce to the target profile
66878d7b67SJosef Bacik 	 */
67878d7b67SJosef Bacik 	spin_lock(&fs_info->balance_lock);
68e11c0406SJosef Bacik 	target = get_restripe_target(fs_info, flags);
69878d7b67SJosef Bacik 	if (target) {
70878d7b67SJosef Bacik 		spin_unlock(&fs_info->balance_lock);
71878d7b67SJosef Bacik 		return extended_to_chunk(target);
72878d7b67SJosef Bacik 	}
73878d7b67SJosef Bacik 	spin_unlock(&fs_info->balance_lock);
74878d7b67SJosef Bacik 
75878d7b67SJosef Bacik 	/* First, mask out the RAID levels which aren't possible */
76878d7b67SJosef Bacik 	for (raid_type = 0; raid_type < BTRFS_NR_RAID_TYPES; raid_type++) {
77878d7b67SJosef Bacik 		if (num_devices >= btrfs_raid_array[raid_type].devs_min)
78878d7b67SJosef Bacik 			allowed |= btrfs_raid_array[raid_type].bg_flag;
79878d7b67SJosef Bacik 	}
80878d7b67SJosef Bacik 	allowed &= flags;
81878d7b67SJosef Bacik 
82878d7b67SJosef Bacik 	if (allowed & BTRFS_BLOCK_GROUP_RAID6)
83878d7b67SJosef Bacik 		allowed = BTRFS_BLOCK_GROUP_RAID6;
84878d7b67SJosef Bacik 	else if (allowed & BTRFS_BLOCK_GROUP_RAID5)
85878d7b67SJosef Bacik 		allowed = BTRFS_BLOCK_GROUP_RAID5;
86878d7b67SJosef Bacik 	else if (allowed & BTRFS_BLOCK_GROUP_RAID10)
87878d7b67SJosef Bacik 		allowed = BTRFS_BLOCK_GROUP_RAID10;
88878d7b67SJosef Bacik 	else if (allowed & BTRFS_BLOCK_GROUP_RAID1)
89878d7b67SJosef Bacik 		allowed = BTRFS_BLOCK_GROUP_RAID1;
90878d7b67SJosef Bacik 	else if (allowed & BTRFS_BLOCK_GROUP_RAID0)
91878d7b67SJosef Bacik 		allowed = BTRFS_BLOCK_GROUP_RAID0;
92878d7b67SJosef Bacik 
93878d7b67SJosef Bacik 	flags &= ~BTRFS_BLOCK_GROUP_PROFILE_MASK;
94878d7b67SJosef Bacik 
95878d7b67SJosef Bacik 	return extended_to_chunk(flags | allowed);
96878d7b67SJosef Bacik }
97878d7b67SJosef Bacik 
98ef0a82daSJohannes Thumshirn u64 btrfs_get_alloc_profile(struct btrfs_fs_info *fs_info, u64 orig_flags)
99878d7b67SJosef Bacik {
100878d7b67SJosef Bacik 	unsigned seq;
101878d7b67SJosef Bacik 	u64 flags;
102878d7b67SJosef Bacik 
103878d7b67SJosef Bacik 	do {
104878d7b67SJosef Bacik 		flags = orig_flags;
105878d7b67SJosef Bacik 		seq = read_seqbegin(&fs_info->profiles_lock);
106878d7b67SJosef Bacik 
107878d7b67SJosef Bacik 		if (flags & BTRFS_BLOCK_GROUP_DATA)
108878d7b67SJosef Bacik 			flags |= fs_info->avail_data_alloc_bits;
109878d7b67SJosef Bacik 		else if (flags & BTRFS_BLOCK_GROUP_SYSTEM)
110878d7b67SJosef Bacik 			flags |= fs_info->avail_system_alloc_bits;
111878d7b67SJosef Bacik 		else if (flags & BTRFS_BLOCK_GROUP_METADATA)
112878d7b67SJosef Bacik 			flags |= fs_info->avail_metadata_alloc_bits;
113878d7b67SJosef Bacik 	} while (read_seqretry(&fs_info->profiles_lock, seq));
114878d7b67SJosef Bacik 
115878d7b67SJosef Bacik 	return btrfs_reduce_alloc_profile(fs_info, flags);
116878d7b67SJosef Bacik }
117878d7b67SJosef Bacik 
11832da5386SDavid Sterba void btrfs_get_block_group(struct btrfs_block_group *cache)
1193cad1284SJosef Bacik {
12048aaeebeSJosef Bacik 	refcount_inc(&cache->refs);
1213cad1284SJosef Bacik }
1223cad1284SJosef Bacik 
12332da5386SDavid Sterba void btrfs_put_block_group(struct btrfs_block_group *cache)
1243cad1284SJosef Bacik {
12548aaeebeSJosef Bacik 	if (refcount_dec_and_test(&cache->refs)) {
1263cad1284SJosef Bacik 		WARN_ON(cache->pinned > 0);
12740cdc509SFilipe Manana 		/*
12840cdc509SFilipe Manana 		 * If there was a failure to cleanup a log tree, very likely due
12940cdc509SFilipe Manana 		 * to an IO failure on a writeback attempt of one or more of its
13040cdc509SFilipe Manana 		 * extent buffers, we could not do proper (and cheap) unaccounting
13140cdc509SFilipe Manana 		 * of their reserved space, so don't warn on reserved > 0 in that
13240cdc509SFilipe Manana 		 * case.
13340cdc509SFilipe Manana 		 */
13440cdc509SFilipe Manana 		if (!(cache->flags & BTRFS_BLOCK_GROUP_METADATA) ||
13540cdc509SFilipe Manana 		    !BTRFS_FS_LOG_CLEANUP_ERROR(cache->fs_info))
1363cad1284SJosef Bacik 			WARN_ON(cache->reserved > 0);
1373cad1284SJosef Bacik 
1383cad1284SJosef Bacik 		/*
139b0643e59SDennis Zhou 		 * A block_group shouldn't be on the discard_list anymore.
140b0643e59SDennis Zhou 		 * Remove the block_group from the discard_list to prevent us
141b0643e59SDennis Zhou 		 * from causing a panic due to NULL pointer dereference.
142b0643e59SDennis Zhou 		 */
143b0643e59SDennis Zhou 		if (WARN_ON(!list_empty(&cache->discard_list)))
144b0643e59SDennis Zhou 			btrfs_discard_cancel_work(&cache->fs_info->discard_ctl,
145b0643e59SDennis Zhou 						  cache);
146b0643e59SDennis Zhou 
147b0643e59SDennis Zhou 		/*
1483cad1284SJosef Bacik 		 * If not empty, someone is still holding mutex of
1493cad1284SJosef Bacik 		 * full_stripe_lock, which can only be released by caller.
1503cad1284SJosef Bacik 		 * And it will definitely cause use-after-free when caller
1513cad1284SJosef Bacik 		 * tries to release full stripe lock.
1523cad1284SJosef Bacik 		 *
1533cad1284SJosef Bacik 		 * No better way to resolve, but only to warn.
1543cad1284SJosef Bacik 		 */
1553cad1284SJosef Bacik 		WARN_ON(!RB_EMPTY_ROOT(&cache->full_stripe_locks_root.root));
1563cad1284SJosef Bacik 		kfree(cache->free_space_ctl);
157dafc340dSNaohiro Aota 		kfree(cache->physical_map);
1583cad1284SJosef Bacik 		kfree(cache);
1593cad1284SJosef Bacik 	}
1603cad1284SJosef Bacik }
1613cad1284SJosef Bacik 
1622e405ad8SJosef Bacik /*
1634358d963SJosef Bacik  * This adds the block group to the fs_info rb tree for the block group cache
1644358d963SJosef Bacik  */
1654358d963SJosef Bacik static int btrfs_add_block_group_cache(struct btrfs_fs_info *info,
16632da5386SDavid Sterba 				       struct btrfs_block_group *block_group)
1674358d963SJosef Bacik {
1684358d963SJosef Bacik 	struct rb_node **p;
1694358d963SJosef Bacik 	struct rb_node *parent = NULL;
17032da5386SDavid Sterba 	struct btrfs_block_group *cache;
171*08dddb29SFilipe Manana 	bool leftmost = true;
1724358d963SJosef Bacik 
1739afc6649SQu Wenruo 	ASSERT(block_group->length != 0);
1749afc6649SQu Wenruo 
1754358d963SJosef Bacik 	spin_lock(&info->block_group_cache_lock);
176*08dddb29SFilipe Manana 	p = &info->block_group_cache_tree.rb_root.rb_node;
1774358d963SJosef Bacik 
1784358d963SJosef Bacik 	while (*p) {
1794358d963SJosef Bacik 		parent = *p;
18032da5386SDavid Sterba 		cache = rb_entry(parent, struct btrfs_block_group, cache_node);
181b3470b5dSDavid Sterba 		if (block_group->start < cache->start) {
1824358d963SJosef Bacik 			p = &(*p)->rb_left;
183b3470b5dSDavid Sterba 		} else if (block_group->start > cache->start) {
1844358d963SJosef Bacik 			p = &(*p)->rb_right;
185*08dddb29SFilipe Manana 			leftmost = false;
1864358d963SJosef Bacik 		} else {
1874358d963SJosef Bacik 			spin_unlock(&info->block_group_cache_lock);
1884358d963SJosef Bacik 			return -EEXIST;
1894358d963SJosef Bacik 		}
1904358d963SJosef Bacik 	}
1914358d963SJosef Bacik 
1924358d963SJosef Bacik 	rb_link_node(&block_group->cache_node, parent, p);
193*08dddb29SFilipe Manana 	rb_insert_color_cached(&block_group->cache_node,
194*08dddb29SFilipe Manana 			       &info->block_group_cache_tree, leftmost);
1954358d963SJosef Bacik 
1964358d963SJosef Bacik 	spin_unlock(&info->block_group_cache_lock);
1974358d963SJosef Bacik 
1984358d963SJosef Bacik 	return 0;
1994358d963SJosef Bacik }
2004358d963SJosef Bacik 
2014358d963SJosef Bacik /*
2022e405ad8SJosef Bacik  * This will return the block group at or after bytenr if contains is 0, else
2032e405ad8SJosef Bacik  * it will return the block group that contains the bytenr
2042e405ad8SJosef Bacik  */
20532da5386SDavid Sterba static struct btrfs_block_group *block_group_cache_tree_search(
2062e405ad8SJosef Bacik 		struct btrfs_fs_info *info, u64 bytenr, int contains)
2072e405ad8SJosef Bacik {
20832da5386SDavid Sterba 	struct btrfs_block_group *cache, *ret = NULL;
2092e405ad8SJosef Bacik 	struct rb_node *n;
2102e405ad8SJosef Bacik 	u64 end, start;
2112e405ad8SJosef Bacik 
2122e405ad8SJosef Bacik 	spin_lock(&info->block_group_cache_lock);
213*08dddb29SFilipe Manana 	n = info->block_group_cache_tree.rb_root.rb_node;
2142e405ad8SJosef Bacik 
2152e405ad8SJosef Bacik 	while (n) {
21632da5386SDavid Sterba 		cache = rb_entry(n, struct btrfs_block_group, cache_node);
217b3470b5dSDavid Sterba 		end = cache->start + cache->length - 1;
218b3470b5dSDavid Sterba 		start = cache->start;
2192e405ad8SJosef Bacik 
2202e405ad8SJosef Bacik 		if (bytenr < start) {
221b3470b5dSDavid Sterba 			if (!contains && (!ret || start < ret->start))
2222e405ad8SJosef Bacik 				ret = cache;
2232e405ad8SJosef Bacik 			n = n->rb_left;
2242e405ad8SJosef Bacik 		} else if (bytenr > start) {
2252e405ad8SJosef Bacik 			if (contains && bytenr <= end) {
2262e405ad8SJosef Bacik 				ret = cache;
2272e405ad8SJosef Bacik 				break;
2282e405ad8SJosef Bacik 			}
2292e405ad8SJosef Bacik 			n = n->rb_right;
2302e405ad8SJosef Bacik 		} else {
2312e405ad8SJosef Bacik 			ret = cache;
2322e405ad8SJosef Bacik 			break;
2332e405ad8SJosef Bacik 		}
2342e405ad8SJosef Bacik 	}
235*08dddb29SFilipe Manana 	if (ret)
2362e405ad8SJosef Bacik 		btrfs_get_block_group(ret);
2372e405ad8SJosef Bacik 	spin_unlock(&info->block_group_cache_lock);
2382e405ad8SJosef Bacik 
2392e405ad8SJosef Bacik 	return ret;
2402e405ad8SJosef Bacik }
2412e405ad8SJosef Bacik 
2422e405ad8SJosef Bacik /*
2432e405ad8SJosef Bacik  * Return the block group that starts at or after bytenr
2442e405ad8SJosef Bacik  */
24532da5386SDavid Sterba struct btrfs_block_group *btrfs_lookup_first_block_group(
2462e405ad8SJosef Bacik 		struct btrfs_fs_info *info, u64 bytenr)
2472e405ad8SJosef Bacik {
2482e405ad8SJosef Bacik 	return block_group_cache_tree_search(info, bytenr, 0);
2492e405ad8SJosef Bacik }
2502e405ad8SJosef Bacik 
2512e405ad8SJosef Bacik /*
2522e405ad8SJosef Bacik  * Return the block group that contains the given bytenr
2532e405ad8SJosef Bacik  */
25432da5386SDavid Sterba struct btrfs_block_group *btrfs_lookup_block_group(
2552e405ad8SJosef Bacik 		struct btrfs_fs_info *info, u64 bytenr)
2562e405ad8SJosef Bacik {
2572e405ad8SJosef Bacik 	return block_group_cache_tree_search(info, bytenr, 1);
2582e405ad8SJosef Bacik }
2592e405ad8SJosef Bacik 
26032da5386SDavid Sterba struct btrfs_block_group *btrfs_next_block_group(
26132da5386SDavid Sterba 		struct btrfs_block_group *cache)
2622e405ad8SJosef Bacik {
2632e405ad8SJosef Bacik 	struct btrfs_fs_info *fs_info = cache->fs_info;
2642e405ad8SJosef Bacik 	struct rb_node *node;
2652e405ad8SJosef Bacik 
2662e405ad8SJosef Bacik 	spin_lock(&fs_info->block_group_cache_lock);
2672e405ad8SJosef Bacik 
2682e405ad8SJosef Bacik 	/* If our block group was removed, we need a full search. */
2692e405ad8SJosef Bacik 	if (RB_EMPTY_NODE(&cache->cache_node)) {
270b3470b5dSDavid Sterba 		const u64 next_bytenr = cache->start + cache->length;
2712e405ad8SJosef Bacik 
2722e405ad8SJosef Bacik 		spin_unlock(&fs_info->block_group_cache_lock);
2732e405ad8SJosef Bacik 		btrfs_put_block_group(cache);
2742e405ad8SJosef Bacik 		cache = btrfs_lookup_first_block_group(fs_info, next_bytenr); return cache;
2752e405ad8SJosef Bacik 	}
2762e405ad8SJosef Bacik 	node = rb_next(&cache->cache_node);
2772e405ad8SJosef Bacik 	btrfs_put_block_group(cache);
2782e405ad8SJosef Bacik 	if (node) {
27932da5386SDavid Sterba 		cache = rb_entry(node, struct btrfs_block_group, cache_node);
2802e405ad8SJosef Bacik 		btrfs_get_block_group(cache);
2812e405ad8SJosef Bacik 	} else
2822e405ad8SJosef Bacik 		cache = NULL;
2832e405ad8SJosef Bacik 	spin_unlock(&fs_info->block_group_cache_lock);
2842e405ad8SJosef Bacik 	return cache;
2852e405ad8SJosef Bacik }
2863eeb3226SJosef Bacik 
2873eeb3226SJosef Bacik bool btrfs_inc_nocow_writers(struct btrfs_fs_info *fs_info, u64 bytenr)
2883eeb3226SJosef Bacik {
28932da5386SDavid Sterba 	struct btrfs_block_group *bg;
2903eeb3226SJosef Bacik 	bool ret = true;
2913eeb3226SJosef Bacik 
2923eeb3226SJosef Bacik 	bg = btrfs_lookup_block_group(fs_info, bytenr);
2933eeb3226SJosef Bacik 	if (!bg)
2943eeb3226SJosef Bacik 		return false;
2953eeb3226SJosef Bacik 
2963eeb3226SJosef Bacik 	spin_lock(&bg->lock);
2973eeb3226SJosef Bacik 	if (bg->ro)
2983eeb3226SJosef Bacik 		ret = false;
2993eeb3226SJosef Bacik 	else
3003eeb3226SJosef Bacik 		atomic_inc(&bg->nocow_writers);
3013eeb3226SJosef Bacik 	spin_unlock(&bg->lock);
3023eeb3226SJosef Bacik 
3033eeb3226SJosef Bacik 	/* No put on block group, done by btrfs_dec_nocow_writers */
3043eeb3226SJosef Bacik 	if (!ret)
3053eeb3226SJosef Bacik 		btrfs_put_block_group(bg);
3063eeb3226SJosef Bacik 
3073eeb3226SJosef Bacik 	return ret;
3083eeb3226SJosef Bacik }
3093eeb3226SJosef Bacik 
3103eeb3226SJosef Bacik void btrfs_dec_nocow_writers(struct btrfs_fs_info *fs_info, u64 bytenr)
3113eeb3226SJosef Bacik {
31232da5386SDavid Sterba 	struct btrfs_block_group *bg;
3133eeb3226SJosef Bacik 
3143eeb3226SJosef Bacik 	bg = btrfs_lookup_block_group(fs_info, bytenr);
3153eeb3226SJosef Bacik 	ASSERT(bg);
3163eeb3226SJosef Bacik 	if (atomic_dec_and_test(&bg->nocow_writers))
3173eeb3226SJosef Bacik 		wake_up_var(&bg->nocow_writers);
3183eeb3226SJosef Bacik 	/*
3193eeb3226SJosef Bacik 	 * Once for our lookup and once for the lookup done by a previous call
3203eeb3226SJosef Bacik 	 * to btrfs_inc_nocow_writers()
3213eeb3226SJosef Bacik 	 */
3223eeb3226SJosef Bacik 	btrfs_put_block_group(bg);
3233eeb3226SJosef Bacik 	btrfs_put_block_group(bg);
3243eeb3226SJosef Bacik }
3253eeb3226SJosef Bacik 
32632da5386SDavid Sterba void btrfs_wait_nocow_writers(struct btrfs_block_group *bg)
3273eeb3226SJosef Bacik {
3283eeb3226SJosef Bacik 	wait_var_event(&bg->nocow_writers, !atomic_read(&bg->nocow_writers));
3293eeb3226SJosef Bacik }
3303eeb3226SJosef Bacik 
3313eeb3226SJosef Bacik void btrfs_dec_block_group_reservations(struct btrfs_fs_info *fs_info,
3323eeb3226SJosef Bacik 					const u64 start)
3333eeb3226SJosef Bacik {
33432da5386SDavid Sterba 	struct btrfs_block_group *bg;
3353eeb3226SJosef Bacik 
3363eeb3226SJosef Bacik 	bg = btrfs_lookup_block_group(fs_info, start);
3373eeb3226SJosef Bacik 	ASSERT(bg);
3383eeb3226SJosef Bacik 	if (atomic_dec_and_test(&bg->reservations))
3393eeb3226SJosef Bacik 		wake_up_var(&bg->reservations);
3403eeb3226SJosef Bacik 	btrfs_put_block_group(bg);
3413eeb3226SJosef Bacik }
3423eeb3226SJosef Bacik 
34332da5386SDavid Sterba void btrfs_wait_block_group_reservations(struct btrfs_block_group *bg)
3443eeb3226SJosef Bacik {
3453eeb3226SJosef Bacik 	struct btrfs_space_info *space_info = bg->space_info;
3463eeb3226SJosef Bacik 
3473eeb3226SJosef Bacik 	ASSERT(bg->ro);
3483eeb3226SJosef Bacik 
3493eeb3226SJosef Bacik 	if (!(bg->flags & BTRFS_BLOCK_GROUP_DATA))
3503eeb3226SJosef Bacik 		return;
3513eeb3226SJosef Bacik 
3523eeb3226SJosef Bacik 	/*
3533eeb3226SJosef Bacik 	 * Our block group is read only but before we set it to read only,
3543eeb3226SJosef Bacik 	 * some task might have had allocated an extent from it already, but it
3553eeb3226SJosef Bacik 	 * has not yet created a respective ordered extent (and added it to a
3563eeb3226SJosef Bacik 	 * root's list of ordered extents).
3573eeb3226SJosef Bacik 	 * Therefore wait for any task currently allocating extents, since the
3583eeb3226SJosef Bacik 	 * block group's reservations counter is incremented while a read lock
3593eeb3226SJosef Bacik 	 * on the groups' semaphore is held and decremented after releasing
3603eeb3226SJosef Bacik 	 * the read access on that semaphore and creating the ordered extent.
3613eeb3226SJosef Bacik 	 */
3623eeb3226SJosef Bacik 	down_write(&space_info->groups_sem);
3633eeb3226SJosef Bacik 	up_write(&space_info->groups_sem);
3643eeb3226SJosef Bacik 
3653eeb3226SJosef Bacik 	wait_var_event(&bg->reservations, !atomic_read(&bg->reservations));
3663eeb3226SJosef Bacik }
3679f21246dSJosef Bacik 
3689f21246dSJosef Bacik struct btrfs_caching_control *btrfs_get_caching_control(
36932da5386SDavid Sterba 		struct btrfs_block_group *cache)
3709f21246dSJosef Bacik {
3719f21246dSJosef Bacik 	struct btrfs_caching_control *ctl;
3729f21246dSJosef Bacik 
3739f21246dSJosef Bacik 	spin_lock(&cache->lock);
3749f21246dSJosef Bacik 	if (!cache->caching_ctl) {
3759f21246dSJosef Bacik 		spin_unlock(&cache->lock);
3769f21246dSJosef Bacik 		return NULL;
3779f21246dSJosef Bacik 	}
3789f21246dSJosef Bacik 
3799f21246dSJosef Bacik 	ctl = cache->caching_ctl;
3809f21246dSJosef Bacik 	refcount_inc(&ctl->count);
3819f21246dSJosef Bacik 	spin_unlock(&cache->lock);
3829f21246dSJosef Bacik 	return ctl;
3839f21246dSJosef Bacik }
3849f21246dSJosef Bacik 
3859f21246dSJosef Bacik void btrfs_put_caching_control(struct btrfs_caching_control *ctl)
3869f21246dSJosef Bacik {
3879f21246dSJosef Bacik 	if (refcount_dec_and_test(&ctl->count))
3889f21246dSJosef Bacik 		kfree(ctl);
3899f21246dSJosef Bacik }
3909f21246dSJosef Bacik 
3919f21246dSJosef Bacik /*
3929f21246dSJosef Bacik  * When we wait for progress in the block group caching, its because our
3939f21246dSJosef Bacik  * allocation attempt failed at least once.  So, we must sleep and let some
3949f21246dSJosef Bacik  * progress happen before we try again.
3959f21246dSJosef Bacik  *
3969f21246dSJosef Bacik  * This function will sleep at least once waiting for new free space to show
3979f21246dSJosef Bacik  * up, and then it will check the block group free space numbers for our min
3989f21246dSJosef Bacik  * num_bytes.  Another option is to have it go ahead and look in the rbtree for
3999f21246dSJosef Bacik  * a free extent of a given size, but this is a good start.
4009f21246dSJosef Bacik  *
4019f21246dSJosef Bacik  * Callers of this must check if cache->cached == BTRFS_CACHE_ERROR before using
4029f21246dSJosef Bacik  * any of the information in this block group.
4039f21246dSJosef Bacik  */
40432da5386SDavid Sterba void btrfs_wait_block_group_cache_progress(struct btrfs_block_group *cache,
4059f21246dSJosef Bacik 					   u64 num_bytes)
4069f21246dSJosef Bacik {
4079f21246dSJosef Bacik 	struct btrfs_caching_control *caching_ctl;
4089f21246dSJosef Bacik 
4099f21246dSJosef Bacik 	caching_ctl = btrfs_get_caching_control(cache);
4109f21246dSJosef Bacik 	if (!caching_ctl)
4119f21246dSJosef Bacik 		return;
4129f21246dSJosef Bacik 
41332da5386SDavid Sterba 	wait_event(caching_ctl->wait, btrfs_block_group_done(cache) ||
4149f21246dSJosef Bacik 		   (cache->free_space_ctl->free_space >= num_bytes));
4159f21246dSJosef Bacik 
4169f21246dSJosef Bacik 	btrfs_put_caching_control(caching_ctl);
4179f21246dSJosef Bacik }
4189f21246dSJosef Bacik 
41932da5386SDavid Sterba int btrfs_wait_block_group_cache_done(struct btrfs_block_group *cache)
4209f21246dSJosef Bacik {
4219f21246dSJosef Bacik 	struct btrfs_caching_control *caching_ctl;
4229f21246dSJosef Bacik 	int ret = 0;
4239f21246dSJosef Bacik 
4249f21246dSJosef Bacik 	caching_ctl = btrfs_get_caching_control(cache);
4259f21246dSJosef Bacik 	if (!caching_ctl)
4269f21246dSJosef Bacik 		return (cache->cached == BTRFS_CACHE_ERROR) ? -EIO : 0;
4279f21246dSJosef Bacik 
42832da5386SDavid Sterba 	wait_event(caching_ctl->wait, btrfs_block_group_done(cache));
4299f21246dSJosef Bacik 	if (cache->cached == BTRFS_CACHE_ERROR)
4309f21246dSJosef Bacik 		ret = -EIO;
4319f21246dSJosef Bacik 	btrfs_put_caching_control(caching_ctl);
4329f21246dSJosef Bacik 	return ret;
4339f21246dSJosef Bacik }
4349f21246dSJosef Bacik 
435e747853cSJosef Bacik static bool space_cache_v1_done(struct btrfs_block_group *cache)
436e747853cSJosef Bacik {
437e747853cSJosef Bacik 	bool ret;
438e747853cSJosef Bacik 
439e747853cSJosef Bacik 	spin_lock(&cache->lock);
440e747853cSJosef Bacik 	ret = cache->cached != BTRFS_CACHE_FAST;
441e747853cSJosef Bacik 	spin_unlock(&cache->lock);
442e747853cSJosef Bacik 
443e747853cSJosef Bacik 	return ret;
444e747853cSJosef Bacik }
445e747853cSJosef Bacik 
446e747853cSJosef Bacik void btrfs_wait_space_cache_v1_finished(struct btrfs_block_group *cache,
447e747853cSJosef Bacik 				struct btrfs_caching_control *caching_ctl)
448e747853cSJosef Bacik {
449e747853cSJosef Bacik 	wait_event(caching_ctl->wait, space_cache_v1_done(cache));
450e747853cSJosef Bacik }
451e747853cSJosef Bacik 
4529f21246dSJosef Bacik #ifdef CONFIG_BTRFS_DEBUG
45332da5386SDavid Sterba static void fragment_free_space(struct btrfs_block_group *block_group)
4549f21246dSJosef Bacik {
4559f21246dSJosef Bacik 	struct btrfs_fs_info *fs_info = block_group->fs_info;
456b3470b5dSDavid Sterba 	u64 start = block_group->start;
457b3470b5dSDavid Sterba 	u64 len = block_group->length;
4589f21246dSJosef Bacik 	u64 chunk = block_group->flags & BTRFS_BLOCK_GROUP_METADATA ?
4599f21246dSJosef Bacik 		fs_info->nodesize : fs_info->sectorsize;
4609f21246dSJosef Bacik 	u64 step = chunk << 1;
4619f21246dSJosef Bacik 
4629f21246dSJosef Bacik 	while (len > chunk) {
4639f21246dSJosef Bacik 		btrfs_remove_free_space(block_group, start, chunk);
4649f21246dSJosef Bacik 		start += step;
4659f21246dSJosef Bacik 		if (len < step)
4669f21246dSJosef Bacik 			len = 0;
4679f21246dSJosef Bacik 		else
4689f21246dSJosef Bacik 			len -= step;
4699f21246dSJosef Bacik 	}
4709f21246dSJosef Bacik }
4719f21246dSJosef Bacik #endif
4729f21246dSJosef Bacik 
4739f21246dSJosef Bacik /*
4749f21246dSJosef Bacik  * This is only called by btrfs_cache_block_group, since we could have freed
4759f21246dSJosef Bacik  * extents we need to check the pinned_extents for any extents that can't be
4769f21246dSJosef Bacik  * used yet since their free space will be released as soon as the transaction
4779f21246dSJosef Bacik  * commits.
4789f21246dSJosef Bacik  */
47932da5386SDavid Sterba u64 add_new_free_space(struct btrfs_block_group *block_group, u64 start, u64 end)
4809f21246dSJosef Bacik {
4819f21246dSJosef Bacik 	struct btrfs_fs_info *info = block_group->fs_info;
4829f21246dSJosef Bacik 	u64 extent_start, extent_end, size, total_added = 0;
4839f21246dSJosef Bacik 	int ret;
4849f21246dSJosef Bacik 
4859f21246dSJosef Bacik 	while (start < end) {
486fe119a6eSNikolay Borisov 		ret = find_first_extent_bit(&info->excluded_extents, start,
4879f21246dSJosef Bacik 					    &extent_start, &extent_end,
4889f21246dSJosef Bacik 					    EXTENT_DIRTY | EXTENT_UPTODATE,
4899f21246dSJosef Bacik 					    NULL);
4909f21246dSJosef Bacik 		if (ret)
4919f21246dSJosef Bacik 			break;
4929f21246dSJosef Bacik 
4939f21246dSJosef Bacik 		if (extent_start <= start) {
4949f21246dSJosef Bacik 			start = extent_end + 1;
4959f21246dSJosef Bacik 		} else if (extent_start > start && extent_start < end) {
4969f21246dSJosef Bacik 			size = extent_start - start;
4979f21246dSJosef Bacik 			total_added += size;
498b0643e59SDennis Zhou 			ret = btrfs_add_free_space_async_trimmed(block_group,
499b0643e59SDennis Zhou 								 start, size);
5009f21246dSJosef Bacik 			BUG_ON(ret); /* -ENOMEM or logic error */
5019f21246dSJosef Bacik 			start = extent_end + 1;
5029f21246dSJosef Bacik 		} else {
5039f21246dSJosef Bacik 			break;
5049f21246dSJosef Bacik 		}
5059f21246dSJosef Bacik 	}
5069f21246dSJosef Bacik 
5079f21246dSJosef Bacik 	if (start < end) {
5089f21246dSJosef Bacik 		size = end - start;
5099f21246dSJosef Bacik 		total_added += size;
510b0643e59SDennis Zhou 		ret = btrfs_add_free_space_async_trimmed(block_group, start,
511b0643e59SDennis Zhou 							 size);
5129f21246dSJosef Bacik 		BUG_ON(ret); /* -ENOMEM or logic error */
5139f21246dSJosef Bacik 	}
5149f21246dSJosef Bacik 
5159f21246dSJosef Bacik 	return total_added;
5169f21246dSJosef Bacik }
5179f21246dSJosef Bacik 
5189f21246dSJosef Bacik static int load_extent_tree_free(struct btrfs_caching_control *caching_ctl)
5199f21246dSJosef Bacik {
52032da5386SDavid Sterba 	struct btrfs_block_group *block_group = caching_ctl->block_group;
5219f21246dSJosef Bacik 	struct btrfs_fs_info *fs_info = block_group->fs_info;
52229cbcf40SJosef Bacik 	struct btrfs_root *extent_root;
5239f21246dSJosef Bacik 	struct btrfs_path *path;
5249f21246dSJosef Bacik 	struct extent_buffer *leaf;
5259f21246dSJosef Bacik 	struct btrfs_key key;
5269f21246dSJosef Bacik 	u64 total_found = 0;
5279f21246dSJosef Bacik 	u64 last = 0;
5289f21246dSJosef Bacik 	u32 nritems;
5299f21246dSJosef Bacik 	int ret;
5309f21246dSJosef Bacik 	bool wakeup = true;
5319f21246dSJosef Bacik 
5329f21246dSJosef Bacik 	path = btrfs_alloc_path();
5339f21246dSJosef Bacik 	if (!path)
5349f21246dSJosef Bacik 		return -ENOMEM;
5359f21246dSJosef Bacik 
536b3470b5dSDavid Sterba 	last = max_t(u64, block_group->start, BTRFS_SUPER_INFO_OFFSET);
53729cbcf40SJosef Bacik 	extent_root = btrfs_extent_root(fs_info, last);
5389f21246dSJosef Bacik 
5399f21246dSJosef Bacik #ifdef CONFIG_BTRFS_DEBUG
5409f21246dSJosef Bacik 	/*
5419f21246dSJosef Bacik 	 * If we're fragmenting we don't want to make anybody think we can
5429f21246dSJosef Bacik 	 * allocate from this block group until we've had a chance to fragment
5439f21246dSJosef Bacik 	 * the free space.
5449f21246dSJosef Bacik 	 */
5459f21246dSJosef Bacik 	if (btrfs_should_fragment_free_space(block_group))
5469f21246dSJosef Bacik 		wakeup = false;
5479f21246dSJosef Bacik #endif
5489f21246dSJosef Bacik 	/*
5499f21246dSJosef Bacik 	 * We don't want to deadlock with somebody trying to allocate a new
5509f21246dSJosef Bacik 	 * extent for the extent root while also trying to search the extent
5519f21246dSJosef Bacik 	 * root to add free space.  So we skip locking and search the commit
5529f21246dSJosef Bacik 	 * root, since its read-only
5539f21246dSJosef Bacik 	 */
5549f21246dSJosef Bacik 	path->skip_locking = 1;
5559f21246dSJosef Bacik 	path->search_commit_root = 1;
5569f21246dSJosef Bacik 	path->reada = READA_FORWARD;
5579f21246dSJosef Bacik 
5589f21246dSJosef Bacik 	key.objectid = last;
5599f21246dSJosef Bacik 	key.offset = 0;
5609f21246dSJosef Bacik 	key.type = BTRFS_EXTENT_ITEM_KEY;
5619f21246dSJosef Bacik 
5629f21246dSJosef Bacik next:
5639f21246dSJosef Bacik 	ret = btrfs_search_slot(NULL, extent_root, &key, path, 0, 0);
5649f21246dSJosef Bacik 	if (ret < 0)
5659f21246dSJosef Bacik 		goto out;
5669f21246dSJosef Bacik 
5679f21246dSJosef Bacik 	leaf = path->nodes[0];
5689f21246dSJosef Bacik 	nritems = btrfs_header_nritems(leaf);
5699f21246dSJosef Bacik 
5709f21246dSJosef Bacik 	while (1) {
5719f21246dSJosef Bacik 		if (btrfs_fs_closing(fs_info) > 1) {
5729f21246dSJosef Bacik 			last = (u64)-1;
5739f21246dSJosef Bacik 			break;
5749f21246dSJosef Bacik 		}
5759f21246dSJosef Bacik 
5769f21246dSJosef Bacik 		if (path->slots[0] < nritems) {
5779f21246dSJosef Bacik 			btrfs_item_key_to_cpu(leaf, &key, path->slots[0]);
5789f21246dSJosef Bacik 		} else {
5799f21246dSJosef Bacik 			ret = btrfs_find_next_key(extent_root, path, &key, 0, 0);
5809f21246dSJosef Bacik 			if (ret)
5819f21246dSJosef Bacik 				break;
5829f21246dSJosef Bacik 
5839f21246dSJosef Bacik 			if (need_resched() ||
5849f21246dSJosef Bacik 			    rwsem_is_contended(&fs_info->commit_root_sem)) {
5859f21246dSJosef Bacik 				if (wakeup)
5869f21246dSJosef Bacik 					caching_ctl->progress = last;
5879f21246dSJosef Bacik 				btrfs_release_path(path);
5889f21246dSJosef Bacik 				up_read(&fs_info->commit_root_sem);
5899f21246dSJosef Bacik 				mutex_unlock(&caching_ctl->mutex);
5909f21246dSJosef Bacik 				cond_resched();
5919f21246dSJosef Bacik 				mutex_lock(&caching_ctl->mutex);
5929f21246dSJosef Bacik 				down_read(&fs_info->commit_root_sem);
5939f21246dSJosef Bacik 				goto next;
5949f21246dSJosef Bacik 			}
5959f21246dSJosef Bacik 
5969f21246dSJosef Bacik 			ret = btrfs_next_leaf(extent_root, path);
5979f21246dSJosef Bacik 			if (ret < 0)
5989f21246dSJosef Bacik 				goto out;
5999f21246dSJosef Bacik 			if (ret)
6009f21246dSJosef Bacik 				break;
6019f21246dSJosef Bacik 			leaf = path->nodes[0];
6029f21246dSJosef Bacik 			nritems = btrfs_header_nritems(leaf);
6039f21246dSJosef Bacik 			continue;
6049f21246dSJosef Bacik 		}
6059f21246dSJosef Bacik 
6069f21246dSJosef Bacik 		if (key.objectid < last) {
6079f21246dSJosef Bacik 			key.objectid = last;
6089f21246dSJosef Bacik 			key.offset = 0;
6099f21246dSJosef Bacik 			key.type = BTRFS_EXTENT_ITEM_KEY;
6109f21246dSJosef Bacik 
6119f21246dSJosef Bacik 			if (wakeup)
6129f21246dSJosef Bacik 				caching_ctl->progress = last;
6139f21246dSJosef Bacik 			btrfs_release_path(path);
6149f21246dSJosef Bacik 			goto next;
6159f21246dSJosef Bacik 		}
6169f21246dSJosef Bacik 
617b3470b5dSDavid Sterba 		if (key.objectid < block_group->start) {
6189f21246dSJosef Bacik 			path->slots[0]++;
6199f21246dSJosef Bacik 			continue;
6209f21246dSJosef Bacik 		}
6219f21246dSJosef Bacik 
622b3470b5dSDavid Sterba 		if (key.objectid >= block_group->start + block_group->length)
6239f21246dSJosef Bacik 			break;
6249f21246dSJosef Bacik 
6259f21246dSJosef Bacik 		if (key.type == BTRFS_EXTENT_ITEM_KEY ||
6269f21246dSJosef Bacik 		    key.type == BTRFS_METADATA_ITEM_KEY) {
6279f21246dSJosef Bacik 			total_found += add_new_free_space(block_group, last,
6289f21246dSJosef Bacik 							  key.objectid);
6299f21246dSJosef Bacik 			if (key.type == BTRFS_METADATA_ITEM_KEY)
6309f21246dSJosef Bacik 				last = key.objectid +
6319f21246dSJosef Bacik 					fs_info->nodesize;
6329f21246dSJosef Bacik 			else
6339f21246dSJosef Bacik 				last = key.objectid + key.offset;
6349f21246dSJosef Bacik 
6359f21246dSJosef Bacik 			if (total_found > CACHING_CTL_WAKE_UP) {
6369f21246dSJosef Bacik 				total_found = 0;
6379f21246dSJosef Bacik 				if (wakeup)
6389f21246dSJosef Bacik 					wake_up(&caching_ctl->wait);
6399f21246dSJosef Bacik 			}
6409f21246dSJosef Bacik 		}
6419f21246dSJosef Bacik 		path->slots[0]++;
6429f21246dSJosef Bacik 	}
6439f21246dSJosef Bacik 	ret = 0;
6449f21246dSJosef Bacik 
6459f21246dSJosef Bacik 	total_found += add_new_free_space(block_group, last,
646b3470b5dSDavid Sterba 				block_group->start + block_group->length);
6479f21246dSJosef Bacik 	caching_ctl->progress = (u64)-1;
6489f21246dSJosef Bacik 
6499f21246dSJosef Bacik out:
6509f21246dSJosef Bacik 	btrfs_free_path(path);
6519f21246dSJosef Bacik 	return ret;
6529f21246dSJosef Bacik }
6539f21246dSJosef Bacik 
6549f21246dSJosef Bacik static noinline void caching_thread(struct btrfs_work *work)
6559f21246dSJosef Bacik {
65632da5386SDavid Sterba 	struct btrfs_block_group *block_group;
6579f21246dSJosef Bacik 	struct btrfs_fs_info *fs_info;
6589f21246dSJosef Bacik 	struct btrfs_caching_control *caching_ctl;
6599f21246dSJosef Bacik 	int ret;
6609f21246dSJosef Bacik 
6619f21246dSJosef Bacik 	caching_ctl = container_of(work, struct btrfs_caching_control, work);
6629f21246dSJosef Bacik 	block_group = caching_ctl->block_group;
6639f21246dSJosef Bacik 	fs_info = block_group->fs_info;
6649f21246dSJosef Bacik 
6659f21246dSJosef Bacik 	mutex_lock(&caching_ctl->mutex);
6669f21246dSJosef Bacik 	down_read(&fs_info->commit_root_sem);
6679f21246dSJosef Bacik 
668e747853cSJosef Bacik 	if (btrfs_test_opt(fs_info, SPACE_CACHE)) {
669e747853cSJosef Bacik 		ret = load_free_space_cache(block_group);
670e747853cSJosef Bacik 		if (ret == 1) {
671e747853cSJosef Bacik 			ret = 0;
672e747853cSJosef Bacik 			goto done;
673e747853cSJosef Bacik 		}
674e747853cSJosef Bacik 
675e747853cSJosef Bacik 		/*
676e747853cSJosef Bacik 		 * We failed to load the space cache, set ourselves to
677e747853cSJosef Bacik 		 * CACHE_STARTED and carry on.
678e747853cSJosef Bacik 		 */
679e747853cSJosef Bacik 		spin_lock(&block_group->lock);
680e747853cSJosef Bacik 		block_group->cached = BTRFS_CACHE_STARTED;
681e747853cSJosef Bacik 		spin_unlock(&block_group->lock);
682e747853cSJosef Bacik 		wake_up(&caching_ctl->wait);
683e747853cSJosef Bacik 	}
684e747853cSJosef Bacik 
6852f96e402SJosef Bacik 	/*
6862f96e402SJosef Bacik 	 * If we are in the transaction that populated the free space tree we
6872f96e402SJosef Bacik 	 * can't actually cache from the free space tree as our commit root and
6882f96e402SJosef Bacik 	 * real root are the same, so we could change the contents of the blocks
6892f96e402SJosef Bacik 	 * while caching.  Instead do the slow caching in this case, and after
6902f96e402SJosef Bacik 	 * the transaction has committed we will be safe.
6912f96e402SJosef Bacik 	 */
6922f96e402SJosef Bacik 	if (btrfs_fs_compat_ro(fs_info, FREE_SPACE_TREE) &&
6932f96e402SJosef Bacik 	    !(test_bit(BTRFS_FS_FREE_SPACE_TREE_UNTRUSTED, &fs_info->flags)))
6949f21246dSJosef Bacik 		ret = load_free_space_tree(caching_ctl);
6959f21246dSJosef Bacik 	else
6969f21246dSJosef Bacik 		ret = load_extent_tree_free(caching_ctl);
697e747853cSJosef Bacik done:
6989f21246dSJosef Bacik 	spin_lock(&block_group->lock);
6999f21246dSJosef Bacik 	block_group->caching_ctl = NULL;
7009f21246dSJosef Bacik 	block_group->cached = ret ? BTRFS_CACHE_ERROR : BTRFS_CACHE_FINISHED;
7019f21246dSJosef Bacik 	spin_unlock(&block_group->lock);
7029f21246dSJosef Bacik 
7039f21246dSJosef Bacik #ifdef CONFIG_BTRFS_DEBUG
7049f21246dSJosef Bacik 	if (btrfs_should_fragment_free_space(block_group)) {
7059f21246dSJosef Bacik 		u64 bytes_used;
7069f21246dSJosef Bacik 
7079f21246dSJosef Bacik 		spin_lock(&block_group->space_info->lock);
7089f21246dSJosef Bacik 		spin_lock(&block_group->lock);
709b3470b5dSDavid Sterba 		bytes_used = block_group->length - block_group->used;
7109f21246dSJosef Bacik 		block_group->space_info->bytes_used += bytes_used >> 1;
7119f21246dSJosef Bacik 		spin_unlock(&block_group->lock);
7129f21246dSJosef Bacik 		spin_unlock(&block_group->space_info->lock);
713e11c0406SJosef Bacik 		fragment_free_space(block_group);
7149f21246dSJosef Bacik 	}
7159f21246dSJosef Bacik #endif
7169f21246dSJosef Bacik 
7179f21246dSJosef Bacik 	caching_ctl->progress = (u64)-1;
7189f21246dSJosef Bacik 
7199f21246dSJosef Bacik 	up_read(&fs_info->commit_root_sem);
7209f21246dSJosef Bacik 	btrfs_free_excluded_extents(block_group);
7219f21246dSJosef Bacik 	mutex_unlock(&caching_ctl->mutex);
7229f21246dSJosef Bacik 
7239f21246dSJosef Bacik 	wake_up(&caching_ctl->wait);
7249f21246dSJosef Bacik 
7259f21246dSJosef Bacik 	btrfs_put_caching_control(caching_ctl);
7269f21246dSJosef Bacik 	btrfs_put_block_group(block_group);
7279f21246dSJosef Bacik }
7289f21246dSJosef Bacik 
72932da5386SDavid Sterba int btrfs_cache_block_group(struct btrfs_block_group *cache, int load_cache_only)
7309f21246dSJosef Bacik {
7319f21246dSJosef Bacik 	DEFINE_WAIT(wait);
7329f21246dSJosef Bacik 	struct btrfs_fs_info *fs_info = cache->fs_info;
733e747853cSJosef Bacik 	struct btrfs_caching_control *caching_ctl = NULL;
7349f21246dSJosef Bacik 	int ret = 0;
7359f21246dSJosef Bacik 
7362eda5708SNaohiro Aota 	/* Allocator for zoned filesystems does not use the cache at all */
7372eda5708SNaohiro Aota 	if (btrfs_is_zoned(fs_info))
7382eda5708SNaohiro Aota 		return 0;
7392eda5708SNaohiro Aota 
7409f21246dSJosef Bacik 	caching_ctl = kzalloc(sizeof(*caching_ctl), GFP_NOFS);
7419f21246dSJosef Bacik 	if (!caching_ctl)
7429f21246dSJosef Bacik 		return -ENOMEM;
7439f21246dSJosef Bacik 
7449f21246dSJosef Bacik 	INIT_LIST_HEAD(&caching_ctl->list);
7459f21246dSJosef Bacik 	mutex_init(&caching_ctl->mutex);
7469f21246dSJosef Bacik 	init_waitqueue_head(&caching_ctl->wait);
7479f21246dSJosef Bacik 	caching_ctl->block_group = cache;
748b3470b5dSDavid Sterba 	caching_ctl->progress = cache->start;
749e747853cSJosef Bacik 	refcount_set(&caching_ctl->count, 2);
750a0cac0ecSOmar Sandoval 	btrfs_init_work(&caching_ctl->work, caching_thread, NULL, NULL);
7519f21246dSJosef Bacik 
7529f21246dSJosef Bacik 	spin_lock(&cache->lock);
7539f21246dSJosef Bacik 	if (cache->cached != BTRFS_CACHE_NO) {
7549f21246dSJosef Bacik 		kfree(caching_ctl);
755e747853cSJosef Bacik 
756e747853cSJosef Bacik 		caching_ctl = cache->caching_ctl;
757e747853cSJosef Bacik 		if (caching_ctl)
758e747853cSJosef Bacik 			refcount_inc(&caching_ctl->count);
759e747853cSJosef Bacik 		spin_unlock(&cache->lock);
760e747853cSJosef Bacik 		goto out;
7619f21246dSJosef Bacik 	}
7629f21246dSJosef Bacik 	WARN_ON(cache->caching_ctl);
7639f21246dSJosef Bacik 	cache->caching_ctl = caching_ctl;
764e747853cSJosef Bacik 	if (btrfs_test_opt(fs_info, SPACE_CACHE))
7659f21246dSJosef Bacik 		cache->cached = BTRFS_CACHE_FAST;
766e747853cSJosef Bacik 	else
7679f21246dSJosef Bacik 		cache->cached = BTRFS_CACHE_STARTED;
7689f21246dSJosef Bacik 	cache->has_caching_ctl = 1;
7699f21246dSJosef Bacik 	spin_unlock(&cache->lock);
7709f21246dSJosef Bacik 
771bbb86a37SJosef Bacik 	spin_lock(&fs_info->block_group_cache_lock);
7729f21246dSJosef Bacik 	refcount_inc(&caching_ctl->count);
7739f21246dSJosef Bacik 	list_add_tail(&caching_ctl->list, &fs_info->caching_block_groups);
774bbb86a37SJosef Bacik 	spin_unlock(&fs_info->block_group_cache_lock);
7759f21246dSJosef Bacik 
7769f21246dSJosef Bacik 	btrfs_get_block_group(cache);
7779f21246dSJosef Bacik 
7789f21246dSJosef Bacik 	btrfs_queue_work(fs_info->caching_workers, &caching_ctl->work);
779e747853cSJosef Bacik out:
780e747853cSJosef Bacik 	if (load_cache_only && caching_ctl)
781e747853cSJosef Bacik 		btrfs_wait_space_cache_v1_finished(cache, caching_ctl);
782e747853cSJosef Bacik 	if (caching_ctl)
783e747853cSJosef Bacik 		btrfs_put_caching_control(caching_ctl);
7849f21246dSJosef Bacik 
7859f21246dSJosef Bacik 	return ret;
7869f21246dSJosef Bacik }
787e3e0520bSJosef Bacik 
788e3e0520bSJosef Bacik static void clear_avail_alloc_bits(struct btrfs_fs_info *fs_info, u64 flags)
789e3e0520bSJosef Bacik {
790e3e0520bSJosef Bacik 	u64 extra_flags = chunk_to_extended(flags) &
791e3e0520bSJosef Bacik 				BTRFS_EXTENDED_PROFILE_MASK;
792e3e0520bSJosef Bacik 
793e3e0520bSJosef Bacik 	write_seqlock(&fs_info->profiles_lock);
794e3e0520bSJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_DATA)
795e3e0520bSJosef Bacik 		fs_info->avail_data_alloc_bits &= ~extra_flags;
796e3e0520bSJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_METADATA)
797e3e0520bSJosef Bacik 		fs_info->avail_metadata_alloc_bits &= ~extra_flags;
798e3e0520bSJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_SYSTEM)
799e3e0520bSJosef Bacik 		fs_info->avail_system_alloc_bits &= ~extra_flags;
800e3e0520bSJosef Bacik 	write_sequnlock(&fs_info->profiles_lock);
801e3e0520bSJosef Bacik }
802e3e0520bSJosef Bacik 
803e3e0520bSJosef Bacik /*
804e3e0520bSJosef Bacik  * Clear incompat bits for the following feature(s):
805e3e0520bSJosef Bacik  *
806e3e0520bSJosef Bacik  * - RAID56 - in case there's neither RAID5 nor RAID6 profile block group
807e3e0520bSJosef Bacik  *            in the whole filesystem
8089c907446SDavid Sterba  *
8099c907446SDavid Sterba  * - RAID1C34 - same as above for RAID1C3 and RAID1C4 block groups
810e3e0520bSJosef Bacik  */
811e3e0520bSJosef Bacik static void clear_incompat_bg_bits(struct btrfs_fs_info *fs_info, u64 flags)
812e3e0520bSJosef Bacik {
8139c907446SDavid Sterba 	bool found_raid56 = false;
8149c907446SDavid Sterba 	bool found_raid1c34 = false;
8159c907446SDavid Sterba 
8169c907446SDavid Sterba 	if ((flags & BTRFS_BLOCK_GROUP_RAID56_MASK) ||
8179c907446SDavid Sterba 	    (flags & BTRFS_BLOCK_GROUP_RAID1C3) ||
8189c907446SDavid Sterba 	    (flags & BTRFS_BLOCK_GROUP_RAID1C4)) {
819e3e0520bSJosef Bacik 		struct list_head *head = &fs_info->space_info;
820e3e0520bSJosef Bacik 		struct btrfs_space_info *sinfo;
821e3e0520bSJosef Bacik 
822e3e0520bSJosef Bacik 		list_for_each_entry_rcu(sinfo, head, list) {
823e3e0520bSJosef Bacik 			down_read(&sinfo->groups_sem);
824e3e0520bSJosef Bacik 			if (!list_empty(&sinfo->block_groups[BTRFS_RAID_RAID5]))
8259c907446SDavid Sterba 				found_raid56 = true;
826e3e0520bSJosef Bacik 			if (!list_empty(&sinfo->block_groups[BTRFS_RAID_RAID6]))
8279c907446SDavid Sterba 				found_raid56 = true;
8289c907446SDavid Sterba 			if (!list_empty(&sinfo->block_groups[BTRFS_RAID_RAID1C3]))
8299c907446SDavid Sterba 				found_raid1c34 = true;
8309c907446SDavid Sterba 			if (!list_empty(&sinfo->block_groups[BTRFS_RAID_RAID1C4]))
8319c907446SDavid Sterba 				found_raid1c34 = true;
832e3e0520bSJosef Bacik 			up_read(&sinfo->groups_sem);
833e3e0520bSJosef Bacik 		}
834d8e6fd5cSFilipe Manana 		if (!found_raid56)
835e3e0520bSJosef Bacik 			btrfs_clear_fs_incompat(fs_info, RAID56);
836d8e6fd5cSFilipe Manana 		if (!found_raid1c34)
8379c907446SDavid Sterba 			btrfs_clear_fs_incompat(fs_info, RAID1C34);
838e3e0520bSJosef Bacik 	}
839e3e0520bSJosef Bacik }
840e3e0520bSJosef Bacik 
8417357623aSQu Wenruo static int remove_block_group_item(struct btrfs_trans_handle *trans,
8427357623aSQu Wenruo 				   struct btrfs_path *path,
8437357623aSQu Wenruo 				   struct btrfs_block_group *block_group)
8447357623aSQu Wenruo {
8457357623aSQu Wenruo 	struct btrfs_fs_info *fs_info = trans->fs_info;
8467357623aSQu Wenruo 	struct btrfs_root *root;
8477357623aSQu Wenruo 	struct btrfs_key key;
8487357623aSQu Wenruo 	int ret;
8497357623aSQu Wenruo 
850dfe8aec4SJosef Bacik 	root = btrfs_block_group_root(fs_info);
8517357623aSQu Wenruo 	key.objectid = block_group->start;
8527357623aSQu Wenruo 	key.type = BTRFS_BLOCK_GROUP_ITEM_KEY;
8537357623aSQu Wenruo 	key.offset = block_group->length;
8547357623aSQu Wenruo 
8557357623aSQu Wenruo 	ret = btrfs_search_slot(trans, root, &key, path, -1, 1);
8567357623aSQu Wenruo 	if (ret > 0)
8577357623aSQu Wenruo 		ret = -ENOENT;
8587357623aSQu Wenruo 	if (ret < 0)
8597357623aSQu Wenruo 		return ret;
8607357623aSQu Wenruo 
8617357623aSQu Wenruo 	ret = btrfs_del_item(trans, root, path);
8627357623aSQu Wenruo 	return ret;
8637357623aSQu Wenruo }
8647357623aSQu Wenruo 
865e3e0520bSJosef Bacik int btrfs_remove_block_group(struct btrfs_trans_handle *trans,
866e3e0520bSJosef Bacik 			     u64 group_start, struct extent_map *em)
867e3e0520bSJosef Bacik {
868e3e0520bSJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
869e3e0520bSJosef Bacik 	struct btrfs_path *path;
87032da5386SDavid Sterba 	struct btrfs_block_group *block_group;
871e3e0520bSJosef Bacik 	struct btrfs_free_cluster *cluster;
872e3e0520bSJosef Bacik 	struct inode *inode;
873e3e0520bSJosef Bacik 	struct kobject *kobj = NULL;
874e3e0520bSJosef Bacik 	int ret;
875e3e0520bSJosef Bacik 	int index;
876e3e0520bSJosef Bacik 	int factor;
877e3e0520bSJosef Bacik 	struct btrfs_caching_control *caching_ctl = NULL;
878e3e0520bSJosef Bacik 	bool remove_em;
879e3e0520bSJosef Bacik 	bool remove_rsv = false;
880e3e0520bSJosef Bacik 
881e3e0520bSJosef Bacik 	block_group = btrfs_lookup_block_group(fs_info, group_start);
882e3e0520bSJosef Bacik 	BUG_ON(!block_group);
883e3e0520bSJosef Bacik 	BUG_ON(!block_group->ro);
884e3e0520bSJosef Bacik 
885e3e0520bSJosef Bacik 	trace_btrfs_remove_block_group(block_group);
886e3e0520bSJosef Bacik 	/*
887e3e0520bSJosef Bacik 	 * Free the reserved super bytes from this block group before
888e3e0520bSJosef Bacik 	 * remove it.
889e3e0520bSJosef Bacik 	 */
890e3e0520bSJosef Bacik 	btrfs_free_excluded_extents(block_group);
891b3470b5dSDavid Sterba 	btrfs_free_ref_tree_range(fs_info, block_group->start,
892b3470b5dSDavid Sterba 				  block_group->length);
893e3e0520bSJosef Bacik 
894e3e0520bSJosef Bacik 	index = btrfs_bg_flags_to_raid_index(block_group->flags);
895e3e0520bSJosef Bacik 	factor = btrfs_bg_type_to_factor(block_group->flags);
896e3e0520bSJosef Bacik 
897e3e0520bSJosef Bacik 	/* make sure this block group isn't part of an allocation cluster */
898e3e0520bSJosef Bacik 	cluster = &fs_info->data_alloc_cluster;
899e3e0520bSJosef Bacik 	spin_lock(&cluster->refill_lock);
900e3e0520bSJosef Bacik 	btrfs_return_cluster_to_free_space(block_group, cluster);
901e3e0520bSJosef Bacik 	spin_unlock(&cluster->refill_lock);
902e3e0520bSJosef Bacik 
903e3e0520bSJosef Bacik 	/*
904e3e0520bSJosef Bacik 	 * make sure this block group isn't part of a metadata
905e3e0520bSJosef Bacik 	 * allocation cluster
906e3e0520bSJosef Bacik 	 */
907e3e0520bSJosef Bacik 	cluster = &fs_info->meta_alloc_cluster;
908e3e0520bSJosef Bacik 	spin_lock(&cluster->refill_lock);
909e3e0520bSJosef Bacik 	btrfs_return_cluster_to_free_space(block_group, cluster);
910e3e0520bSJosef Bacik 	spin_unlock(&cluster->refill_lock);
911e3e0520bSJosef Bacik 
91240ab3be1SNaohiro Aota 	btrfs_clear_treelog_bg(block_group);
913c2707a25SJohannes Thumshirn 	btrfs_clear_data_reloc_bg(block_group);
91440ab3be1SNaohiro Aota 
915e3e0520bSJosef Bacik 	path = btrfs_alloc_path();
916e3e0520bSJosef Bacik 	if (!path) {
917e3e0520bSJosef Bacik 		ret = -ENOMEM;
9189fecd132SFilipe Manana 		goto out;
919e3e0520bSJosef Bacik 	}
920e3e0520bSJosef Bacik 
921e3e0520bSJosef Bacik 	/*
922e3e0520bSJosef Bacik 	 * get the inode first so any iput calls done for the io_list
923e3e0520bSJosef Bacik 	 * aren't the final iput (no unlinks allowed now)
924e3e0520bSJosef Bacik 	 */
925e3e0520bSJosef Bacik 	inode = lookup_free_space_inode(block_group, path);
926e3e0520bSJosef Bacik 
927e3e0520bSJosef Bacik 	mutex_lock(&trans->transaction->cache_write_mutex);
928e3e0520bSJosef Bacik 	/*
929e3e0520bSJosef Bacik 	 * Make sure our free space cache IO is done before removing the
930e3e0520bSJosef Bacik 	 * free space inode
931e3e0520bSJosef Bacik 	 */
932e3e0520bSJosef Bacik 	spin_lock(&trans->transaction->dirty_bgs_lock);
933e3e0520bSJosef Bacik 	if (!list_empty(&block_group->io_list)) {
934e3e0520bSJosef Bacik 		list_del_init(&block_group->io_list);
935e3e0520bSJosef Bacik 
936e3e0520bSJosef Bacik 		WARN_ON(!IS_ERR(inode) && inode != block_group->io_ctl.inode);
937e3e0520bSJosef Bacik 
938e3e0520bSJosef Bacik 		spin_unlock(&trans->transaction->dirty_bgs_lock);
939e3e0520bSJosef Bacik 		btrfs_wait_cache_io(trans, block_group, path);
940e3e0520bSJosef Bacik 		btrfs_put_block_group(block_group);
941e3e0520bSJosef Bacik 		spin_lock(&trans->transaction->dirty_bgs_lock);
942e3e0520bSJosef Bacik 	}
943e3e0520bSJosef Bacik 
944e3e0520bSJosef Bacik 	if (!list_empty(&block_group->dirty_list)) {
945e3e0520bSJosef Bacik 		list_del_init(&block_group->dirty_list);
946e3e0520bSJosef Bacik 		remove_rsv = true;
947e3e0520bSJosef Bacik 		btrfs_put_block_group(block_group);
948e3e0520bSJosef Bacik 	}
949e3e0520bSJosef Bacik 	spin_unlock(&trans->transaction->dirty_bgs_lock);
950e3e0520bSJosef Bacik 	mutex_unlock(&trans->transaction->cache_write_mutex);
951e3e0520bSJosef Bacik 
95236b216c8SBoris Burkov 	ret = btrfs_remove_free_space_inode(trans, inode, block_group);
953e3e0520bSJosef Bacik 	if (ret)
9549fecd132SFilipe Manana 		goto out;
955e3e0520bSJosef Bacik 
956e3e0520bSJosef Bacik 	spin_lock(&fs_info->block_group_cache_lock);
957*08dddb29SFilipe Manana 	rb_erase_cached(&block_group->cache_node,
958e3e0520bSJosef Bacik 			&fs_info->block_group_cache_tree);
959e3e0520bSJosef Bacik 	RB_CLEAR_NODE(&block_group->cache_node);
960e3e0520bSJosef Bacik 
9619fecd132SFilipe Manana 	/* Once for the block groups rbtree */
9629fecd132SFilipe Manana 	btrfs_put_block_group(block_group);
9639fecd132SFilipe Manana 
964e3e0520bSJosef Bacik 	spin_unlock(&fs_info->block_group_cache_lock);
965e3e0520bSJosef Bacik 
966e3e0520bSJosef Bacik 	down_write(&block_group->space_info->groups_sem);
967e3e0520bSJosef Bacik 	/*
968e3e0520bSJosef Bacik 	 * we must use list_del_init so people can check to see if they
969e3e0520bSJosef Bacik 	 * are still on the list after taking the semaphore
970e3e0520bSJosef Bacik 	 */
971e3e0520bSJosef Bacik 	list_del_init(&block_group->list);
972e3e0520bSJosef Bacik 	if (list_empty(&block_group->space_info->block_groups[index])) {
973e3e0520bSJosef Bacik 		kobj = block_group->space_info->block_group_kobjs[index];
974e3e0520bSJosef Bacik 		block_group->space_info->block_group_kobjs[index] = NULL;
975e3e0520bSJosef Bacik 		clear_avail_alloc_bits(fs_info, block_group->flags);
976e3e0520bSJosef Bacik 	}
977e3e0520bSJosef Bacik 	up_write(&block_group->space_info->groups_sem);
978e3e0520bSJosef Bacik 	clear_incompat_bg_bits(fs_info, block_group->flags);
979e3e0520bSJosef Bacik 	if (kobj) {
980e3e0520bSJosef Bacik 		kobject_del(kobj);
981e3e0520bSJosef Bacik 		kobject_put(kobj);
982e3e0520bSJosef Bacik 	}
983e3e0520bSJosef Bacik 
984e3e0520bSJosef Bacik 	if (block_group->has_caching_ctl)
985e3e0520bSJosef Bacik 		caching_ctl = btrfs_get_caching_control(block_group);
986e3e0520bSJosef Bacik 	if (block_group->cached == BTRFS_CACHE_STARTED)
987e3e0520bSJosef Bacik 		btrfs_wait_block_group_cache_done(block_group);
988e3e0520bSJosef Bacik 	if (block_group->has_caching_ctl) {
989bbb86a37SJosef Bacik 		spin_lock(&fs_info->block_group_cache_lock);
990e3e0520bSJosef Bacik 		if (!caching_ctl) {
991e3e0520bSJosef Bacik 			struct btrfs_caching_control *ctl;
992e3e0520bSJosef Bacik 
993e3e0520bSJosef Bacik 			list_for_each_entry(ctl,
994e3e0520bSJosef Bacik 				    &fs_info->caching_block_groups, list)
995e3e0520bSJosef Bacik 				if (ctl->block_group == block_group) {
996e3e0520bSJosef Bacik 					caching_ctl = ctl;
997e3e0520bSJosef Bacik 					refcount_inc(&caching_ctl->count);
998e3e0520bSJosef Bacik 					break;
999e3e0520bSJosef Bacik 				}
1000e3e0520bSJosef Bacik 		}
1001e3e0520bSJosef Bacik 		if (caching_ctl)
1002e3e0520bSJosef Bacik 			list_del_init(&caching_ctl->list);
1003bbb86a37SJosef Bacik 		spin_unlock(&fs_info->block_group_cache_lock);
1004e3e0520bSJosef Bacik 		if (caching_ctl) {
1005e3e0520bSJosef Bacik 			/* Once for the caching bgs list and once for us. */
1006e3e0520bSJosef Bacik 			btrfs_put_caching_control(caching_ctl);
1007e3e0520bSJosef Bacik 			btrfs_put_caching_control(caching_ctl);
1008e3e0520bSJosef Bacik 		}
1009e3e0520bSJosef Bacik 	}
1010e3e0520bSJosef Bacik 
1011e3e0520bSJosef Bacik 	spin_lock(&trans->transaction->dirty_bgs_lock);
1012e3e0520bSJosef Bacik 	WARN_ON(!list_empty(&block_group->dirty_list));
1013e3e0520bSJosef Bacik 	WARN_ON(!list_empty(&block_group->io_list));
1014e3e0520bSJosef Bacik 	spin_unlock(&trans->transaction->dirty_bgs_lock);
1015e3e0520bSJosef Bacik 
1016e3e0520bSJosef Bacik 	btrfs_remove_free_space_cache(block_group);
1017e3e0520bSJosef Bacik 
1018e3e0520bSJosef Bacik 	spin_lock(&block_group->space_info->lock);
1019e3e0520bSJosef Bacik 	list_del_init(&block_group->ro_list);
1020e3e0520bSJosef Bacik 
1021e3e0520bSJosef Bacik 	if (btrfs_test_opt(fs_info, ENOSPC_DEBUG)) {
1022e3e0520bSJosef Bacik 		WARN_ON(block_group->space_info->total_bytes
1023b3470b5dSDavid Sterba 			< block_group->length);
1024e3e0520bSJosef Bacik 		WARN_ON(block_group->space_info->bytes_readonly
1025169e0da9SNaohiro Aota 			< block_group->length - block_group->zone_unusable);
1026169e0da9SNaohiro Aota 		WARN_ON(block_group->space_info->bytes_zone_unusable
1027169e0da9SNaohiro Aota 			< block_group->zone_unusable);
1028e3e0520bSJosef Bacik 		WARN_ON(block_group->space_info->disk_total
1029b3470b5dSDavid Sterba 			< block_group->length * factor);
1030e3e0520bSJosef Bacik 	}
1031b3470b5dSDavid Sterba 	block_group->space_info->total_bytes -= block_group->length;
1032169e0da9SNaohiro Aota 	block_group->space_info->bytes_readonly -=
1033169e0da9SNaohiro Aota 		(block_group->length - block_group->zone_unusable);
1034169e0da9SNaohiro Aota 	block_group->space_info->bytes_zone_unusable -=
1035169e0da9SNaohiro Aota 		block_group->zone_unusable;
1036b3470b5dSDavid Sterba 	block_group->space_info->disk_total -= block_group->length * factor;
1037e3e0520bSJosef Bacik 
1038e3e0520bSJosef Bacik 	spin_unlock(&block_group->space_info->lock);
1039e3e0520bSJosef Bacik 
1040ffcb9d44SFilipe Manana 	/*
1041ffcb9d44SFilipe Manana 	 * Remove the free space for the block group from the free space tree
1042ffcb9d44SFilipe Manana 	 * and the block group's item from the extent tree before marking the
1043ffcb9d44SFilipe Manana 	 * block group as removed. This is to prevent races with tasks that
1044ffcb9d44SFilipe Manana 	 * freeze and unfreeze a block group, this task and another task
1045ffcb9d44SFilipe Manana 	 * allocating a new block group - the unfreeze task ends up removing
1046ffcb9d44SFilipe Manana 	 * the block group's extent map before the task calling this function
1047ffcb9d44SFilipe Manana 	 * deletes the block group item from the extent tree, allowing for
1048ffcb9d44SFilipe Manana 	 * another task to attempt to create another block group with the same
1049ffcb9d44SFilipe Manana 	 * item key (and failing with -EEXIST and a transaction abort).
1050ffcb9d44SFilipe Manana 	 */
1051ffcb9d44SFilipe Manana 	ret = remove_block_group_free_space(trans, block_group);
1052ffcb9d44SFilipe Manana 	if (ret)
1053ffcb9d44SFilipe Manana 		goto out;
1054ffcb9d44SFilipe Manana 
1055ffcb9d44SFilipe Manana 	ret = remove_block_group_item(trans, path, block_group);
1056ffcb9d44SFilipe Manana 	if (ret < 0)
1057ffcb9d44SFilipe Manana 		goto out;
1058ffcb9d44SFilipe Manana 
1059e3e0520bSJosef Bacik 	spin_lock(&block_group->lock);
1060e3e0520bSJosef Bacik 	block_group->removed = 1;
1061e3e0520bSJosef Bacik 	/*
10626b7304afSFilipe Manana 	 * At this point trimming or scrub can't start on this block group,
10636b7304afSFilipe Manana 	 * because we removed the block group from the rbtree
10646b7304afSFilipe Manana 	 * fs_info->block_group_cache_tree so no one can't find it anymore and
10656b7304afSFilipe Manana 	 * even if someone already got this block group before we removed it
10666b7304afSFilipe Manana 	 * from the rbtree, they have already incremented block_group->frozen -
10676b7304afSFilipe Manana 	 * if they didn't, for the trimming case they won't find any free space
10686b7304afSFilipe Manana 	 * entries because we already removed them all when we called
10696b7304afSFilipe Manana 	 * btrfs_remove_free_space_cache().
1070e3e0520bSJosef Bacik 	 *
1071e3e0520bSJosef Bacik 	 * And we must not remove the extent map from the fs_info->mapping_tree
1072e3e0520bSJosef Bacik 	 * to prevent the same logical address range and physical device space
10736b7304afSFilipe Manana 	 * ranges from being reused for a new block group. This is needed to
10746b7304afSFilipe Manana 	 * avoid races with trimming and scrub.
10756b7304afSFilipe Manana 	 *
10766b7304afSFilipe Manana 	 * An fs trim operation (btrfs_trim_fs() / btrfs_ioctl_fitrim()) is
1077e3e0520bSJosef Bacik 	 * completely transactionless, so while it is trimming a range the
1078e3e0520bSJosef Bacik 	 * currently running transaction might finish and a new one start,
1079e3e0520bSJosef Bacik 	 * allowing for new block groups to be created that can reuse the same
1080e3e0520bSJosef Bacik 	 * physical device locations unless we take this special care.
1081e3e0520bSJosef Bacik 	 *
1082e3e0520bSJosef Bacik 	 * There may also be an implicit trim operation if the file system
1083e3e0520bSJosef Bacik 	 * is mounted with -odiscard. The same protections must remain
1084e3e0520bSJosef Bacik 	 * in place until the extents have been discarded completely when
1085e3e0520bSJosef Bacik 	 * the transaction commit has completed.
1086e3e0520bSJosef Bacik 	 */
10876b7304afSFilipe Manana 	remove_em = (atomic_read(&block_group->frozen) == 0);
1088e3e0520bSJosef Bacik 	spin_unlock(&block_group->lock);
1089e3e0520bSJosef Bacik 
1090e3e0520bSJosef Bacik 	if (remove_em) {
1091e3e0520bSJosef Bacik 		struct extent_map_tree *em_tree;
1092e3e0520bSJosef Bacik 
1093e3e0520bSJosef Bacik 		em_tree = &fs_info->mapping_tree;
1094e3e0520bSJosef Bacik 		write_lock(&em_tree->lock);
1095e3e0520bSJosef Bacik 		remove_extent_mapping(em_tree, em);
1096e3e0520bSJosef Bacik 		write_unlock(&em_tree->lock);
1097e3e0520bSJosef Bacik 		/* once for the tree */
1098e3e0520bSJosef Bacik 		free_extent_map(em);
1099e3e0520bSJosef Bacik 	}
1100f6033c5eSXiyu Yang 
11019fecd132SFilipe Manana out:
1102f6033c5eSXiyu Yang 	/* Once for the lookup reference */
1103f6033c5eSXiyu Yang 	btrfs_put_block_group(block_group);
1104e3e0520bSJosef Bacik 	if (remove_rsv)
1105e3e0520bSJosef Bacik 		btrfs_delayed_refs_rsv_release(fs_info, 1);
1106e3e0520bSJosef Bacik 	btrfs_free_path(path);
1107e3e0520bSJosef Bacik 	return ret;
1108e3e0520bSJosef Bacik }
1109e3e0520bSJosef Bacik 
1110e3e0520bSJosef Bacik struct btrfs_trans_handle *btrfs_start_trans_remove_block_group(
1111e3e0520bSJosef Bacik 		struct btrfs_fs_info *fs_info, const u64 chunk_offset)
1112e3e0520bSJosef Bacik {
1113dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(fs_info);
1114e3e0520bSJosef Bacik 	struct extent_map_tree *em_tree = &fs_info->mapping_tree;
1115e3e0520bSJosef Bacik 	struct extent_map *em;
1116e3e0520bSJosef Bacik 	struct map_lookup *map;
1117e3e0520bSJosef Bacik 	unsigned int num_items;
1118e3e0520bSJosef Bacik 
1119e3e0520bSJosef Bacik 	read_lock(&em_tree->lock);
1120e3e0520bSJosef Bacik 	em = lookup_extent_mapping(em_tree, chunk_offset, 1);
1121e3e0520bSJosef Bacik 	read_unlock(&em_tree->lock);
1122e3e0520bSJosef Bacik 	ASSERT(em && em->start == chunk_offset);
1123e3e0520bSJosef Bacik 
1124e3e0520bSJosef Bacik 	/*
1125e3e0520bSJosef Bacik 	 * We need to reserve 3 + N units from the metadata space info in order
1126e3e0520bSJosef Bacik 	 * to remove a block group (done at btrfs_remove_chunk() and at
1127e3e0520bSJosef Bacik 	 * btrfs_remove_block_group()), which are used for:
1128e3e0520bSJosef Bacik 	 *
1129e3e0520bSJosef Bacik 	 * 1 unit for adding the free space inode's orphan (located in the tree
1130e3e0520bSJosef Bacik 	 * of tree roots).
1131e3e0520bSJosef Bacik 	 * 1 unit for deleting the block group item (located in the extent
1132e3e0520bSJosef Bacik 	 * tree).
1133e3e0520bSJosef Bacik 	 * 1 unit for deleting the free space item (located in tree of tree
1134e3e0520bSJosef Bacik 	 * roots).
1135e3e0520bSJosef Bacik 	 * N units for deleting N device extent items corresponding to each
1136e3e0520bSJosef Bacik 	 * stripe (located in the device tree).
1137e3e0520bSJosef Bacik 	 *
1138e3e0520bSJosef Bacik 	 * In order to remove a block group we also need to reserve units in the
1139e3e0520bSJosef Bacik 	 * system space info in order to update the chunk tree (update one or
1140e3e0520bSJosef Bacik 	 * more device items and remove one chunk item), but this is done at
1141e3e0520bSJosef Bacik 	 * btrfs_remove_chunk() through a call to check_system_chunk().
1142e3e0520bSJosef Bacik 	 */
1143e3e0520bSJosef Bacik 	map = em->map_lookup;
1144e3e0520bSJosef Bacik 	num_items = 3 + map->num_stripes;
1145e3e0520bSJosef Bacik 	free_extent_map(em);
1146e3e0520bSJosef Bacik 
1147dfe8aec4SJosef Bacik 	return btrfs_start_transaction_fallback_global_rsv(root, num_items);
1148e3e0520bSJosef Bacik }
1149e3e0520bSJosef Bacik 
1150e3e0520bSJosef Bacik /*
115126ce2095SJosef Bacik  * Mark block group @cache read-only, so later write won't happen to block
115226ce2095SJosef Bacik  * group @cache.
115326ce2095SJosef Bacik  *
115426ce2095SJosef Bacik  * If @force is not set, this function will only mark the block group readonly
115526ce2095SJosef Bacik  * if we have enough free space (1M) in other metadata/system block groups.
115626ce2095SJosef Bacik  * If @force is not set, this function will mark the block group readonly
115726ce2095SJosef Bacik  * without checking free space.
115826ce2095SJosef Bacik  *
115926ce2095SJosef Bacik  * NOTE: This function doesn't care if other block groups can contain all the
116026ce2095SJosef Bacik  * data in this block group. That check should be done by relocation routine,
116126ce2095SJosef Bacik  * not this function.
116226ce2095SJosef Bacik  */
116332da5386SDavid Sterba static int inc_block_group_ro(struct btrfs_block_group *cache, int force)
116426ce2095SJosef Bacik {
116526ce2095SJosef Bacik 	struct btrfs_space_info *sinfo = cache->space_info;
116626ce2095SJosef Bacik 	u64 num_bytes;
116726ce2095SJosef Bacik 	int ret = -ENOSPC;
116826ce2095SJosef Bacik 
116926ce2095SJosef Bacik 	spin_lock(&sinfo->lock);
117026ce2095SJosef Bacik 	spin_lock(&cache->lock);
117126ce2095SJosef Bacik 
1172195a49eaSFilipe Manana 	if (cache->swap_extents) {
1173195a49eaSFilipe Manana 		ret = -ETXTBSY;
1174195a49eaSFilipe Manana 		goto out;
1175195a49eaSFilipe Manana 	}
1176195a49eaSFilipe Manana 
117726ce2095SJosef Bacik 	if (cache->ro) {
117826ce2095SJosef Bacik 		cache->ro++;
117926ce2095SJosef Bacik 		ret = 0;
118026ce2095SJosef Bacik 		goto out;
118126ce2095SJosef Bacik 	}
118226ce2095SJosef Bacik 
1183b3470b5dSDavid Sterba 	num_bytes = cache->length - cache->reserved - cache->pinned -
1184169e0da9SNaohiro Aota 		    cache->bytes_super - cache->zone_unusable - cache->used;
118526ce2095SJosef Bacik 
118626ce2095SJosef Bacik 	/*
1187a30a3d20SJosef Bacik 	 * Data never overcommits, even in mixed mode, so do just the straight
1188a30a3d20SJosef Bacik 	 * check of left over space in how much we have allocated.
1189a30a3d20SJosef Bacik 	 */
1190a30a3d20SJosef Bacik 	if (force) {
1191a30a3d20SJosef Bacik 		ret = 0;
1192a30a3d20SJosef Bacik 	} else if (sinfo->flags & BTRFS_BLOCK_GROUP_DATA) {
1193a30a3d20SJosef Bacik 		u64 sinfo_used = btrfs_space_info_used(sinfo, true);
1194a30a3d20SJosef Bacik 
1195a30a3d20SJosef Bacik 		/*
119626ce2095SJosef Bacik 		 * Here we make sure if we mark this bg RO, we still have enough
1197f8935566SJosef Bacik 		 * free space as buffer.
119826ce2095SJosef Bacik 		 */
1199a30a3d20SJosef Bacik 		if (sinfo_used + num_bytes <= sinfo->total_bytes)
1200a30a3d20SJosef Bacik 			ret = 0;
1201a30a3d20SJosef Bacik 	} else {
1202a30a3d20SJosef Bacik 		/*
1203a30a3d20SJosef Bacik 		 * We overcommit metadata, so we need to do the
1204a30a3d20SJosef Bacik 		 * btrfs_can_overcommit check here, and we need to pass in
1205a30a3d20SJosef Bacik 		 * BTRFS_RESERVE_NO_FLUSH to give ourselves the most amount of
1206a30a3d20SJosef Bacik 		 * leeway to allow us to mark this block group as read only.
1207a30a3d20SJosef Bacik 		 */
1208a30a3d20SJosef Bacik 		if (btrfs_can_overcommit(cache->fs_info, sinfo, num_bytes,
1209a30a3d20SJosef Bacik 					 BTRFS_RESERVE_NO_FLUSH))
1210a30a3d20SJosef Bacik 			ret = 0;
1211a30a3d20SJosef Bacik 	}
1212a30a3d20SJosef Bacik 
1213a30a3d20SJosef Bacik 	if (!ret) {
121426ce2095SJosef Bacik 		sinfo->bytes_readonly += num_bytes;
1215169e0da9SNaohiro Aota 		if (btrfs_is_zoned(cache->fs_info)) {
1216169e0da9SNaohiro Aota 			/* Migrate zone_unusable bytes to readonly */
1217169e0da9SNaohiro Aota 			sinfo->bytes_readonly += cache->zone_unusable;
1218169e0da9SNaohiro Aota 			sinfo->bytes_zone_unusable -= cache->zone_unusable;
1219169e0da9SNaohiro Aota 			cache->zone_unusable = 0;
1220169e0da9SNaohiro Aota 		}
122126ce2095SJosef Bacik 		cache->ro++;
122226ce2095SJosef Bacik 		list_add_tail(&cache->ro_list, &sinfo->ro_bgs);
122326ce2095SJosef Bacik 	}
122426ce2095SJosef Bacik out:
122526ce2095SJosef Bacik 	spin_unlock(&cache->lock);
122626ce2095SJosef Bacik 	spin_unlock(&sinfo->lock);
122726ce2095SJosef Bacik 	if (ret == -ENOSPC && btrfs_test_opt(cache->fs_info, ENOSPC_DEBUG)) {
122826ce2095SJosef Bacik 		btrfs_info(cache->fs_info,
1229b3470b5dSDavid Sterba 			"unable to make block group %llu ro", cache->start);
123026ce2095SJosef Bacik 		btrfs_dump_space_info(cache->fs_info, cache->space_info, 0, 0);
123126ce2095SJosef Bacik 	}
123226ce2095SJosef Bacik 	return ret;
123326ce2095SJosef Bacik }
123426ce2095SJosef Bacik 
1235fe119a6eSNikolay Borisov static bool clean_pinned_extents(struct btrfs_trans_handle *trans,
1236fe119a6eSNikolay Borisov 				 struct btrfs_block_group *bg)
123745bb5d6aSNikolay Borisov {
123845bb5d6aSNikolay Borisov 	struct btrfs_fs_info *fs_info = bg->fs_info;
1239fe119a6eSNikolay Borisov 	struct btrfs_transaction *prev_trans = NULL;
124045bb5d6aSNikolay Borisov 	const u64 start = bg->start;
124145bb5d6aSNikolay Borisov 	const u64 end = start + bg->length - 1;
124245bb5d6aSNikolay Borisov 	int ret;
124345bb5d6aSNikolay Borisov 
1244fe119a6eSNikolay Borisov 	spin_lock(&fs_info->trans_lock);
1245fe119a6eSNikolay Borisov 	if (trans->transaction->list.prev != &fs_info->trans_list) {
1246fe119a6eSNikolay Borisov 		prev_trans = list_last_entry(&trans->transaction->list,
1247fe119a6eSNikolay Borisov 					     struct btrfs_transaction, list);
1248fe119a6eSNikolay Borisov 		refcount_inc(&prev_trans->use_count);
1249fe119a6eSNikolay Borisov 	}
1250fe119a6eSNikolay Borisov 	spin_unlock(&fs_info->trans_lock);
1251fe119a6eSNikolay Borisov 
125245bb5d6aSNikolay Borisov 	/*
125345bb5d6aSNikolay Borisov 	 * Hold the unused_bg_unpin_mutex lock to avoid racing with
125445bb5d6aSNikolay Borisov 	 * btrfs_finish_extent_commit(). If we are at transaction N, another
125545bb5d6aSNikolay Borisov 	 * task might be running finish_extent_commit() for the previous
125645bb5d6aSNikolay Borisov 	 * transaction N - 1, and have seen a range belonging to the block
1257fe119a6eSNikolay Borisov 	 * group in pinned_extents before we were able to clear the whole block
1258fe119a6eSNikolay Borisov 	 * group range from pinned_extents. This means that task can lookup for
1259fe119a6eSNikolay Borisov 	 * the block group after we unpinned it from pinned_extents and removed
1260fe119a6eSNikolay Borisov 	 * it, leading to a BUG_ON() at unpin_extent_range().
126145bb5d6aSNikolay Borisov 	 */
126245bb5d6aSNikolay Borisov 	mutex_lock(&fs_info->unused_bg_unpin_mutex);
1263fe119a6eSNikolay Borisov 	if (prev_trans) {
1264fe119a6eSNikolay Borisov 		ret = clear_extent_bits(&prev_trans->pinned_extents, start, end,
126545bb5d6aSNikolay Borisov 					EXTENT_DIRTY);
126645bb5d6aSNikolay Borisov 		if (ret)
1267534cf531SFilipe Manana 			goto out;
1268fe119a6eSNikolay Borisov 	}
126945bb5d6aSNikolay Borisov 
1270fe119a6eSNikolay Borisov 	ret = clear_extent_bits(&trans->transaction->pinned_extents, start, end,
127145bb5d6aSNikolay Borisov 				EXTENT_DIRTY);
1272534cf531SFilipe Manana out:
127345bb5d6aSNikolay Borisov 	mutex_unlock(&fs_info->unused_bg_unpin_mutex);
12745150bf19SFilipe Manana 	if (prev_trans)
12755150bf19SFilipe Manana 		btrfs_put_transaction(prev_trans);
127645bb5d6aSNikolay Borisov 
1277534cf531SFilipe Manana 	return ret == 0;
127845bb5d6aSNikolay Borisov }
127945bb5d6aSNikolay Borisov 
128026ce2095SJosef Bacik /*
1281e3e0520bSJosef Bacik  * Process the unused_bgs list and remove any that don't have any allocated
1282e3e0520bSJosef Bacik  * space inside of them.
1283e3e0520bSJosef Bacik  */
1284e3e0520bSJosef Bacik void btrfs_delete_unused_bgs(struct btrfs_fs_info *fs_info)
1285e3e0520bSJosef Bacik {
128632da5386SDavid Sterba 	struct btrfs_block_group *block_group;
1287e3e0520bSJosef Bacik 	struct btrfs_space_info *space_info;
1288e3e0520bSJosef Bacik 	struct btrfs_trans_handle *trans;
12896e80d4f8SDennis Zhou 	const bool async_trim_enabled = btrfs_test_opt(fs_info, DISCARD_ASYNC);
1290e3e0520bSJosef Bacik 	int ret = 0;
1291e3e0520bSJosef Bacik 
1292e3e0520bSJosef Bacik 	if (!test_bit(BTRFS_FS_OPEN, &fs_info->flags))
1293e3e0520bSJosef Bacik 		return;
1294e3e0520bSJosef Bacik 
1295ddfd08cbSJosef Bacik 	/*
1296ddfd08cbSJosef Bacik 	 * Long running balances can keep us blocked here for eternity, so
1297ddfd08cbSJosef Bacik 	 * simply skip deletion if we're unable to get the mutex.
1298ddfd08cbSJosef Bacik 	 */
1299f3372065SJohannes Thumshirn 	if (!mutex_trylock(&fs_info->reclaim_bgs_lock))
1300ddfd08cbSJosef Bacik 		return;
1301ddfd08cbSJosef Bacik 
1302e3e0520bSJosef Bacik 	spin_lock(&fs_info->unused_bgs_lock);
1303e3e0520bSJosef Bacik 	while (!list_empty(&fs_info->unused_bgs)) {
1304e3e0520bSJosef Bacik 		int trimming;
1305e3e0520bSJosef Bacik 
1306e3e0520bSJosef Bacik 		block_group = list_first_entry(&fs_info->unused_bgs,
130732da5386SDavid Sterba 					       struct btrfs_block_group,
1308e3e0520bSJosef Bacik 					       bg_list);
1309e3e0520bSJosef Bacik 		list_del_init(&block_group->bg_list);
1310e3e0520bSJosef Bacik 
1311e3e0520bSJosef Bacik 		space_info = block_group->space_info;
1312e3e0520bSJosef Bacik 
1313e3e0520bSJosef Bacik 		if (ret || btrfs_mixed_space_info(space_info)) {
1314e3e0520bSJosef Bacik 			btrfs_put_block_group(block_group);
1315e3e0520bSJosef Bacik 			continue;
1316e3e0520bSJosef Bacik 		}
1317e3e0520bSJosef Bacik 		spin_unlock(&fs_info->unused_bgs_lock);
1318e3e0520bSJosef Bacik 
1319b0643e59SDennis Zhou 		btrfs_discard_cancel_work(&fs_info->discard_ctl, block_group);
1320b0643e59SDennis Zhou 
1321e3e0520bSJosef Bacik 		/* Don't want to race with allocators so take the groups_sem */
1322e3e0520bSJosef Bacik 		down_write(&space_info->groups_sem);
13236e80d4f8SDennis Zhou 
13246e80d4f8SDennis Zhou 		/*
13256e80d4f8SDennis Zhou 		 * Async discard moves the final block group discard to be prior
13266e80d4f8SDennis Zhou 		 * to the unused_bgs code path.  Therefore, if it's not fully
13276e80d4f8SDennis Zhou 		 * trimmed, punt it back to the async discard lists.
13286e80d4f8SDennis Zhou 		 */
13296e80d4f8SDennis Zhou 		if (btrfs_test_opt(fs_info, DISCARD_ASYNC) &&
13306e80d4f8SDennis Zhou 		    !btrfs_is_free_space_trimmed(block_group)) {
13316e80d4f8SDennis Zhou 			trace_btrfs_skip_unused_block_group(block_group);
13326e80d4f8SDennis Zhou 			up_write(&space_info->groups_sem);
13336e80d4f8SDennis Zhou 			/* Requeue if we failed because of async discard */
13346e80d4f8SDennis Zhou 			btrfs_discard_queue_work(&fs_info->discard_ctl,
13356e80d4f8SDennis Zhou 						 block_group);
13366e80d4f8SDennis Zhou 			goto next;
13376e80d4f8SDennis Zhou 		}
13386e80d4f8SDennis Zhou 
1339e3e0520bSJosef Bacik 		spin_lock(&block_group->lock);
1340e3e0520bSJosef Bacik 		if (block_group->reserved || block_group->pinned ||
1341bf38be65SDavid Sterba 		    block_group->used || block_group->ro ||
1342e3e0520bSJosef Bacik 		    list_is_singular(&block_group->list)) {
1343e3e0520bSJosef Bacik 			/*
1344e3e0520bSJosef Bacik 			 * We want to bail if we made new allocations or have
1345e3e0520bSJosef Bacik 			 * outstanding allocations in this block group.  We do
1346e3e0520bSJosef Bacik 			 * the ro check in case balance is currently acting on
1347e3e0520bSJosef Bacik 			 * this block group.
1348e3e0520bSJosef Bacik 			 */
1349e3e0520bSJosef Bacik 			trace_btrfs_skip_unused_block_group(block_group);
1350e3e0520bSJosef Bacik 			spin_unlock(&block_group->lock);
1351e3e0520bSJosef Bacik 			up_write(&space_info->groups_sem);
1352e3e0520bSJosef Bacik 			goto next;
1353e3e0520bSJosef Bacik 		}
1354e3e0520bSJosef Bacik 		spin_unlock(&block_group->lock);
1355e3e0520bSJosef Bacik 
1356e3e0520bSJosef Bacik 		/* We don't want to force the issue, only flip if it's ok. */
1357e11c0406SJosef Bacik 		ret = inc_block_group_ro(block_group, 0);
1358e3e0520bSJosef Bacik 		up_write(&space_info->groups_sem);
1359e3e0520bSJosef Bacik 		if (ret < 0) {
1360e3e0520bSJosef Bacik 			ret = 0;
1361e3e0520bSJosef Bacik 			goto next;
1362e3e0520bSJosef Bacik 		}
1363e3e0520bSJosef Bacik 
1364e3e0520bSJosef Bacik 		/*
1365e3e0520bSJosef Bacik 		 * Want to do this before we do anything else so we can recover
1366e3e0520bSJosef Bacik 		 * properly if we fail to join the transaction.
1367e3e0520bSJosef Bacik 		 */
1368e3e0520bSJosef Bacik 		trans = btrfs_start_trans_remove_block_group(fs_info,
1369b3470b5dSDavid Sterba 						     block_group->start);
1370e3e0520bSJosef Bacik 		if (IS_ERR(trans)) {
1371e3e0520bSJosef Bacik 			btrfs_dec_block_group_ro(block_group);
1372e3e0520bSJosef Bacik 			ret = PTR_ERR(trans);
1373e3e0520bSJosef Bacik 			goto next;
1374e3e0520bSJosef Bacik 		}
1375e3e0520bSJosef Bacik 
1376e3e0520bSJosef Bacik 		/*
1377e3e0520bSJosef Bacik 		 * We could have pending pinned extents for this block group,
1378e3e0520bSJosef Bacik 		 * just delete them, we don't care about them anymore.
1379e3e0520bSJosef Bacik 		 */
1380534cf531SFilipe Manana 		if (!clean_pinned_extents(trans, block_group)) {
1381534cf531SFilipe Manana 			btrfs_dec_block_group_ro(block_group);
1382e3e0520bSJosef Bacik 			goto end_trans;
1383534cf531SFilipe Manana 		}
1384e3e0520bSJosef Bacik 
1385b0643e59SDennis Zhou 		/*
1386b0643e59SDennis Zhou 		 * At this point, the block_group is read only and should fail
1387b0643e59SDennis Zhou 		 * new allocations.  However, btrfs_finish_extent_commit() can
1388b0643e59SDennis Zhou 		 * cause this block_group to be placed back on the discard
1389b0643e59SDennis Zhou 		 * lists because now the block_group isn't fully discarded.
1390b0643e59SDennis Zhou 		 * Bail here and try again later after discarding everything.
1391b0643e59SDennis Zhou 		 */
1392b0643e59SDennis Zhou 		spin_lock(&fs_info->discard_ctl.lock);
1393b0643e59SDennis Zhou 		if (!list_empty(&block_group->discard_list)) {
1394b0643e59SDennis Zhou 			spin_unlock(&fs_info->discard_ctl.lock);
1395b0643e59SDennis Zhou 			btrfs_dec_block_group_ro(block_group);
1396b0643e59SDennis Zhou 			btrfs_discard_queue_work(&fs_info->discard_ctl,
1397b0643e59SDennis Zhou 						 block_group);
1398b0643e59SDennis Zhou 			goto end_trans;
1399b0643e59SDennis Zhou 		}
1400b0643e59SDennis Zhou 		spin_unlock(&fs_info->discard_ctl.lock);
1401b0643e59SDennis Zhou 
1402e3e0520bSJosef Bacik 		/* Reset pinned so btrfs_put_block_group doesn't complain */
1403e3e0520bSJosef Bacik 		spin_lock(&space_info->lock);
1404e3e0520bSJosef Bacik 		spin_lock(&block_group->lock);
1405e3e0520bSJosef Bacik 
1406e3e0520bSJosef Bacik 		btrfs_space_info_update_bytes_pinned(fs_info, space_info,
1407e3e0520bSJosef Bacik 						     -block_group->pinned);
1408e3e0520bSJosef Bacik 		space_info->bytes_readonly += block_group->pinned;
1409e3e0520bSJosef Bacik 		block_group->pinned = 0;
1410e3e0520bSJosef Bacik 
1411e3e0520bSJosef Bacik 		spin_unlock(&block_group->lock);
1412e3e0520bSJosef Bacik 		spin_unlock(&space_info->lock);
1413e3e0520bSJosef Bacik 
14146e80d4f8SDennis Zhou 		/*
14156e80d4f8SDennis Zhou 		 * The normal path here is an unused block group is passed here,
14166e80d4f8SDennis Zhou 		 * then trimming is handled in the transaction commit path.
14176e80d4f8SDennis Zhou 		 * Async discard interposes before this to do the trimming
14186e80d4f8SDennis Zhou 		 * before coming down the unused block group path as trimming
14196e80d4f8SDennis Zhou 		 * will no longer be done later in the transaction commit path.
14206e80d4f8SDennis Zhou 		 */
14216e80d4f8SDennis Zhou 		if (!async_trim_enabled && btrfs_test_opt(fs_info, DISCARD_ASYNC))
14226e80d4f8SDennis Zhou 			goto flip_async;
14236e80d4f8SDennis Zhou 
1424dcba6e48SNaohiro Aota 		/*
1425dcba6e48SNaohiro Aota 		 * DISCARD can flip during remount. On zoned filesystems, we
1426dcba6e48SNaohiro Aota 		 * need to reset sequential-required zones.
1427dcba6e48SNaohiro Aota 		 */
1428dcba6e48SNaohiro Aota 		trimming = btrfs_test_opt(fs_info, DISCARD_SYNC) ||
1429dcba6e48SNaohiro Aota 				btrfs_is_zoned(fs_info);
1430e3e0520bSJosef Bacik 
1431e3e0520bSJosef Bacik 		/* Implicit trim during transaction commit. */
1432e3e0520bSJosef Bacik 		if (trimming)
14336b7304afSFilipe Manana 			btrfs_freeze_block_group(block_group);
1434e3e0520bSJosef Bacik 
1435e3e0520bSJosef Bacik 		/*
1436e3e0520bSJosef Bacik 		 * Btrfs_remove_chunk will abort the transaction if things go
1437e3e0520bSJosef Bacik 		 * horribly wrong.
1438e3e0520bSJosef Bacik 		 */
1439b3470b5dSDavid Sterba 		ret = btrfs_remove_chunk(trans, block_group->start);
1440e3e0520bSJosef Bacik 
1441e3e0520bSJosef Bacik 		if (ret) {
1442e3e0520bSJosef Bacik 			if (trimming)
14436b7304afSFilipe Manana 				btrfs_unfreeze_block_group(block_group);
1444e3e0520bSJosef Bacik 			goto end_trans;
1445e3e0520bSJosef Bacik 		}
1446e3e0520bSJosef Bacik 
1447e3e0520bSJosef Bacik 		/*
1448e3e0520bSJosef Bacik 		 * If we're not mounted with -odiscard, we can just forget
1449e3e0520bSJosef Bacik 		 * about this block group. Otherwise we'll need to wait
1450e3e0520bSJosef Bacik 		 * until transaction commit to do the actual discard.
1451e3e0520bSJosef Bacik 		 */
1452e3e0520bSJosef Bacik 		if (trimming) {
1453e3e0520bSJosef Bacik 			spin_lock(&fs_info->unused_bgs_lock);
1454e3e0520bSJosef Bacik 			/*
1455e3e0520bSJosef Bacik 			 * A concurrent scrub might have added us to the list
1456e3e0520bSJosef Bacik 			 * fs_info->unused_bgs, so use a list_move operation
1457e3e0520bSJosef Bacik 			 * to add the block group to the deleted_bgs list.
1458e3e0520bSJosef Bacik 			 */
1459e3e0520bSJosef Bacik 			list_move(&block_group->bg_list,
1460e3e0520bSJosef Bacik 				  &trans->transaction->deleted_bgs);
1461e3e0520bSJosef Bacik 			spin_unlock(&fs_info->unused_bgs_lock);
1462e3e0520bSJosef Bacik 			btrfs_get_block_group(block_group);
1463e3e0520bSJosef Bacik 		}
1464e3e0520bSJosef Bacik end_trans:
1465e3e0520bSJosef Bacik 		btrfs_end_transaction(trans);
1466e3e0520bSJosef Bacik next:
1467e3e0520bSJosef Bacik 		btrfs_put_block_group(block_group);
1468e3e0520bSJosef Bacik 		spin_lock(&fs_info->unused_bgs_lock);
1469e3e0520bSJosef Bacik 	}
1470e3e0520bSJosef Bacik 	spin_unlock(&fs_info->unused_bgs_lock);
1471f3372065SJohannes Thumshirn 	mutex_unlock(&fs_info->reclaim_bgs_lock);
14726e80d4f8SDennis Zhou 	return;
14736e80d4f8SDennis Zhou 
14746e80d4f8SDennis Zhou flip_async:
14756e80d4f8SDennis Zhou 	btrfs_end_transaction(trans);
1476f3372065SJohannes Thumshirn 	mutex_unlock(&fs_info->reclaim_bgs_lock);
14776e80d4f8SDennis Zhou 	btrfs_put_block_group(block_group);
14786e80d4f8SDennis Zhou 	btrfs_discard_punt_unused_bgs_list(fs_info);
1479e3e0520bSJosef Bacik }
1480e3e0520bSJosef Bacik 
148132da5386SDavid Sterba void btrfs_mark_bg_unused(struct btrfs_block_group *bg)
1482e3e0520bSJosef Bacik {
1483e3e0520bSJosef Bacik 	struct btrfs_fs_info *fs_info = bg->fs_info;
1484e3e0520bSJosef Bacik 
1485e3e0520bSJosef Bacik 	spin_lock(&fs_info->unused_bgs_lock);
1486e3e0520bSJosef Bacik 	if (list_empty(&bg->bg_list)) {
1487e3e0520bSJosef Bacik 		btrfs_get_block_group(bg);
1488e3e0520bSJosef Bacik 		trace_btrfs_add_unused_block_group(bg);
1489e3e0520bSJosef Bacik 		list_add_tail(&bg->bg_list, &fs_info->unused_bgs);
1490e3e0520bSJosef Bacik 	}
1491e3e0520bSJosef Bacik 	spin_unlock(&fs_info->unused_bgs_lock);
1492e3e0520bSJosef Bacik }
14934358d963SJosef Bacik 
14942ca0ec77SJohannes Thumshirn /*
14952ca0ec77SJohannes Thumshirn  * We want block groups with a low number of used bytes to be in the beginning
14962ca0ec77SJohannes Thumshirn  * of the list, so they will get reclaimed first.
14972ca0ec77SJohannes Thumshirn  */
14982ca0ec77SJohannes Thumshirn static int reclaim_bgs_cmp(void *unused, const struct list_head *a,
14992ca0ec77SJohannes Thumshirn 			   const struct list_head *b)
15002ca0ec77SJohannes Thumshirn {
15012ca0ec77SJohannes Thumshirn 	const struct btrfs_block_group *bg1, *bg2;
15022ca0ec77SJohannes Thumshirn 
15032ca0ec77SJohannes Thumshirn 	bg1 = list_entry(a, struct btrfs_block_group, bg_list);
15042ca0ec77SJohannes Thumshirn 	bg2 = list_entry(b, struct btrfs_block_group, bg_list);
15052ca0ec77SJohannes Thumshirn 
15062ca0ec77SJohannes Thumshirn 	return bg1->used > bg2->used;
15072ca0ec77SJohannes Thumshirn }
15082ca0ec77SJohannes Thumshirn 
15093687fcb0SJohannes Thumshirn static inline bool btrfs_should_reclaim(struct btrfs_fs_info *fs_info)
15103687fcb0SJohannes Thumshirn {
15113687fcb0SJohannes Thumshirn 	if (btrfs_is_zoned(fs_info))
15123687fcb0SJohannes Thumshirn 		return btrfs_zoned_should_reclaim(fs_info);
15133687fcb0SJohannes Thumshirn 	return true;
15143687fcb0SJohannes Thumshirn }
15153687fcb0SJohannes Thumshirn 
151618bb8bbfSJohannes Thumshirn void btrfs_reclaim_bgs_work(struct work_struct *work)
151718bb8bbfSJohannes Thumshirn {
151818bb8bbfSJohannes Thumshirn 	struct btrfs_fs_info *fs_info =
151918bb8bbfSJohannes Thumshirn 		container_of(work, struct btrfs_fs_info, reclaim_bgs_work);
152018bb8bbfSJohannes Thumshirn 	struct btrfs_block_group *bg;
152118bb8bbfSJohannes Thumshirn 	struct btrfs_space_info *space_info;
152218bb8bbfSJohannes Thumshirn 
152318bb8bbfSJohannes Thumshirn 	if (!test_bit(BTRFS_FS_OPEN, &fs_info->flags))
152418bb8bbfSJohannes Thumshirn 		return;
152518bb8bbfSJohannes Thumshirn 
15263687fcb0SJohannes Thumshirn 	if (!btrfs_should_reclaim(fs_info))
15273687fcb0SJohannes Thumshirn 		return;
15283687fcb0SJohannes Thumshirn 
1529ca5e4ea0SNaohiro Aota 	sb_start_write(fs_info->sb);
1530ca5e4ea0SNaohiro Aota 
1531ca5e4ea0SNaohiro Aota 	if (!btrfs_exclop_start(fs_info, BTRFS_EXCLOP_BALANCE)) {
1532ca5e4ea0SNaohiro Aota 		sb_end_write(fs_info->sb);
153318bb8bbfSJohannes Thumshirn 		return;
1534ca5e4ea0SNaohiro Aota 	}
153518bb8bbfSJohannes Thumshirn 
15369cc0b837SJohannes Thumshirn 	/*
15379cc0b837SJohannes Thumshirn 	 * Long running balances can keep us blocked here for eternity, so
15389cc0b837SJohannes Thumshirn 	 * simply skip reclaim if we're unable to get the mutex.
15399cc0b837SJohannes Thumshirn 	 */
15409cc0b837SJohannes Thumshirn 	if (!mutex_trylock(&fs_info->reclaim_bgs_lock)) {
15419cc0b837SJohannes Thumshirn 		btrfs_exclop_finish(fs_info);
1542ca5e4ea0SNaohiro Aota 		sb_end_write(fs_info->sb);
15439cc0b837SJohannes Thumshirn 		return;
15449cc0b837SJohannes Thumshirn 	}
15459cc0b837SJohannes Thumshirn 
154618bb8bbfSJohannes Thumshirn 	spin_lock(&fs_info->unused_bgs_lock);
15472ca0ec77SJohannes Thumshirn 	/*
15482ca0ec77SJohannes Thumshirn 	 * Sort happens under lock because we can't simply splice it and sort.
15492ca0ec77SJohannes Thumshirn 	 * The block groups might still be in use and reachable via bg_list,
15502ca0ec77SJohannes Thumshirn 	 * and their presence in the reclaim_bgs list must be preserved.
15512ca0ec77SJohannes Thumshirn 	 */
15522ca0ec77SJohannes Thumshirn 	list_sort(NULL, &fs_info->reclaim_bgs, reclaim_bgs_cmp);
155318bb8bbfSJohannes Thumshirn 	while (!list_empty(&fs_info->reclaim_bgs)) {
15545f93e776SJohannes Thumshirn 		u64 zone_unusable;
15551cea5cf0SFilipe Manana 		int ret = 0;
15561cea5cf0SFilipe Manana 
155718bb8bbfSJohannes Thumshirn 		bg = list_first_entry(&fs_info->reclaim_bgs,
155818bb8bbfSJohannes Thumshirn 				      struct btrfs_block_group,
155918bb8bbfSJohannes Thumshirn 				      bg_list);
156018bb8bbfSJohannes Thumshirn 		list_del_init(&bg->bg_list);
156118bb8bbfSJohannes Thumshirn 
156218bb8bbfSJohannes Thumshirn 		space_info = bg->space_info;
156318bb8bbfSJohannes Thumshirn 		spin_unlock(&fs_info->unused_bgs_lock);
156418bb8bbfSJohannes Thumshirn 
156518bb8bbfSJohannes Thumshirn 		/* Don't race with allocators so take the groups_sem */
156618bb8bbfSJohannes Thumshirn 		down_write(&space_info->groups_sem);
156718bb8bbfSJohannes Thumshirn 
156818bb8bbfSJohannes Thumshirn 		spin_lock(&bg->lock);
156918bb8bbfSJohannes Thumshirn 		if (bg->reserved || bg->pinned || bg->ro) {
157018bb8bbfSJohannes Thumshirn 			/*
157118bb8bbfSJohannes Thumshirn 			 * We want to bail if we made new allocations or have
157218bb8bbfSJohannes Thumshirn 			 * outstanding allocations in this block group.  We do
157318bb8bbfSJohannes Thumshirn 			 * the ro check in case balance is currently acting on
157418bb8bbfSJohannes Thumshirn 			 * this block group.
157518bb8bbfSJohannes Thumshirn 			 */
157618bb8bbfSJohannes Thumshirn 			spin_unlock(&bg->lock);
157718bb8bbfSJohannes Thumshirn 			up_write(&space_info->groups_sem);
157818bb8bbfSJohannes Thumshirn 			goto next;
157918bb8bbfSJohannes Thumshirn 		}
158018bb8bbfSJohannes Thumshirn 		spin_unlock(&bg->lock);
158118bb8bbfSJohannes Thumshirn 
158218bb8bbfSJohannes Thumshirn 		/* Get out fast, in case we're unmounting the filesystem */
158318bb8bbfSJohannes Thumshirn 		if (btrfs_fs_closing(fs_info)) {
158418bb8bbfSJohannes Thumshirn 			up_write(&space_info->groups_sem);
158518bb8bbfSJohannes Thumshirn 			goto next;
158618bb8bbfSJohannes Thumshirn 		}
158718bb8bbfSJohannes Thumshirn 
15885f93e776SJohannes Thumshirn 		/*
15895f93e776SJohannes Thumshirn 		 * Cache the zone_unusable value before turning the block group
15905f93e776SJohannes Thumshirn 		 * to read only. As soon as the blog group is read only it's
15915f93e776SJohannes Thumshirn 		 * zone_unusable value gets moved to the block group's read-only
15925f93e776SJohannes Thumshirn 		 * bytes and isn't available for calculations anymore.
15935f93e776SJohannes Thumshirn 		 */
15945f93e776SJohannes Thumshirn 		zone_unusable = bg->zone_unusable;
159518bb8bbfSJohannes Thumshirn 		ret = inc_block_group_ro(bg, 0);
159618bb8bbfSJohannes Thumshirn 		up_write(&space_info->groups_sem);
159718bb8bbfSJohannes Thumshirn 		if (ret < 0)
159818bb8bbfSJohannes Thumshirn 			goto next;
159918bb8bbfSJohannes Thumshirn 
16005f93e776SJohannes Thumshirn 		btrfs_info(fs_info,
16015f93e776SJohannes Thumshirn 			"reclaiming chunk %llu with %llu%% used %llu%% unusable",
16025f93e776SJohannes Thumshirn 				bg->start, div_u64(bg->used * 100, bg->length),
16035f93e776SJohannes Thumshirn 				div64_u64(zone_unusable * 100, bg->length));
160418bb8bbfSJohannes Thumshirn 		trace_btrfs_reclaim_block_group(bg);
160518bb8bbfSJohannes Thumshirn 		ret = btrfs_relocate_chunk(fs_info, bg->start);
1606d96b3424SFilipe Manana 		if (ret)
160718bb8bbfSJohannes Thumshirn 			btrfs_err(fs_info, "error relocating chunk %llu",
160818bb8bbfSJohannes Thumshirn 				  bg->start);
160918bb8bbfSJohannes Thumshirn 
161018bb8bbfSJohannes Thumshirn next:
16111cea5cf0SFilipe Manana 		btrfs_put_block_group(bg);
1612d96b3424SFilipe Manana 		spin_lock(&fs_info->unused_bgs_lock);
161318bb8bbfSJohannes Thumshirn 	}
161418bb8bbfSJohannes Thumshirn 	spin_unlock(&fs_info->unused_bgs_lock);
161518bb8bbfSJohannes Thumshirn 	mutex_unlock(&fs_info->reclaim_bgs_lock);
161618bb8bbfSJohannes Thumshirn 	btrfs_exclop_finish(fs_info);
1617ca5e4ea0SNaohiro Aota 	sb_end_write(fs_info->sb);
161818bb8bbfSJohannes Thumshirn }
161918bb8bbfSJohannes Thumshirn 
162018bb8bbfSJohannes Thumshirn void btrfs_reclaim_bgs(struct btrfs_fs_info *fs_info)
162118bb8bbfSJohannes Thumshirn {
162218bb8bbfSJohannes Thumshirn 	spin_lock(&fs_info->unused_bgs_lock);
162318bb8bbfSJohannes Thumshirn 	if (!list_empty(&fs_info->reclaim_bgs))
162418bb8bbfSJohannes Thumshirn 		queue_work(system_unbound_wq, &fs_info->reclaim_bgs_work);
162518bb8bbfSJohannes Thumshirn 	spin_unlock(&fs_info->unused_bgs_lock);
162618bb8bbfSJohannes Thumshirn }
162718bb8bbfSJohannes Thumshirn 
162818bb8bbfSJohannes Thumshirn void btrfs_mark_bg_to_reclaim(struct btrfs_block_group *bg)
162918bb8bbfSJohannes Thumshirn {
163018bb8bbfSJohannes Thumshirn 	struct btrfs_fs_info *fs_info = bg->fs_info;
163118bb8bbfSJohannes Thumshirn 
163218bb8bbfSJohannes Thumshirn 	spin_lock(&fs_info->unused_bgs_lock);
163318bb8bbfSJohannes Thumshirn 	if (list_empty(&bg->bg_list)) {
163418bb8bbfSJohannes Thumshirn 		btrfs_get_block_group(bg);
163518bb8bbfSJohannes Thumshirn 		trace_btrfs_add_reclaim_block_group(bg);
163618bb8bbfSJohannes Thumshirn 		list_add_tail(&bg->bg_list, &fs_info->reclaim_bgs);
163718bb8bbfSJohannes Thumshirn 	}
163818bb8bbfSJohannes Thumshirn 	spin_unlock(&fs_info->unused_bgs_lock);
163918bb8bbfSJohannes Thumshirn }
164018bb8bbfSJohannes Thumshirn 
1641e3ba67a1SJohannes Thumshirn static int read_bg_from_eb(struct btrfs_fs_info *fs_info, struct btrfs_key *key,
1642e3ba67a1SJohannes Thumshirn 			   struct btrfs_path *path)
1643e3ba67a1SJohannes Thumshirn {
1644e3ba67a1SJohannes Thumshirn 	struct extent_map_tree *em_tree;
1645e3ba67a1SJohannes Thumshirn 	struct extent_map *em;
1646e3ba67a1SJohannes Thumshirn 	struct btrfs_block_group_item bg;
1647e3ba67a1SJohannes Thumshirn 	struct extent_buffer *leaf;
1648e3ba67a1SJohannes Thumshirn 	int slot;
1649e3ba67a1SJohannes Thumshirn 	u64 flags;
1650e3ba67a1SJohannes Thumshirn 	int ret = 0;
1651e3ba67a1SJohannes Thumshirn 
1652e3ba67a1SJohannes Thumshirn 	slot = path->slots[0];
1653e3ba67a1SJohannes Thumshirn 	leaf = path->nodes[0];
1654e3ba67a1SJohannes Thumshirn 
1655e3ba67a1SJohannes Thumshirn 	em_tree = &fs_info->mapping_tree;
1656e3ba67a1SJohannes Thumshirn 	read_lock(&em_tree->lock);
1657e3ba67a1SJohannes Thumshirn 	em = lookup_extent_mapping(em_tree, key->objectid, key->offset);
1658e3ba67a1SJohannes Thumshirn 	read_unlock(&em_tree->lock);
1659e3ba67a1SJohannes Thumshirn 	if (!em) {
1660e3ba67a1SJohannes Thumshirn 		btrfs_err(fs_info,
1661e3ba67a1SJohannes Thumshirn 			  "logical %llu len %llu found bg but no related chunk",
1662e3ba67a1SJohannes Thumshirn 			  key->objectid, key->offset);
1663e3ba67a1SJohannes Thumshirn 		return -ENOENT;
1664e3ba67a1SJohannes Thumshirn 	}
1665e3ba67a1SJohannes Thumshirn 
1666e3ba67a1SJohannes Thumshirn 	if (em->start != key->objectid || em->len != key->offset) {
1667e3ba67a1SJohannes Thumshirn 		btrfs_err(fs_info,
1668e3ba67a1SJohannes Thumshirn 			"block group %llu len %llu mismatch with chunk %llu len %llu",
1669e3ba67a1SJohannes Thumshirn 			key->objectid, key->offset, em->start, em->len);
1670e3ba67a1SJohannes Thumshirn 		ret = -EUCLEAN;
1671e3ba67a1SJohannes Thumshirn 		goto out_free_em;
1672e3ba67a1SJohannes Thumshirn 	}
1673e3ba67a1SJohannes Thumshirn 
1674e3ba67a1SJohannes Thumshirn 	read_extent_buffer(leaf, &bg, btrfs_item_ptr_offset(leaf, slot),
1675e3ba67a1SJohannes Thumshirn 			   sizeof(bg));
1676e3ba67a1SJohannes Thumshirn 	flags = btrfs_stack_block_group_flags(&bg) &
1677e3ba67a1SJohannes Thumshirn 		BTRFS_BLOCK_GROUP_TYPE_MASK;
1678e3ba67a1SJohannes Thumshirn 
1679e3ba67a1SJohannes Thumshirn 	if (flags != (em->map_lookup->type & BTRFS_BLOCK_GROUP_TYPE_MASK)) {
1680e3ba67a1SJohannes Thumshirn 		btrfs_err(fs_info,
1681e3ba67a1SJohannes Thumshirn "block group %llu len %llu type flags 0x%llx mismatch with chunk type flags 0x%llx",
1682e3ba67a1SJohannes Thumshirn 			  key->objectid, key->offset, flags,
1683e3ba67a1SJohannes Thumshirn 			  (BTRFS_BLOCK_GROUP_TYPE_MASK & em->map_lookup->type));
1684e3ba67a1SJohannes Thumshirn 		ret = -EUCLEAN;
1685e3ba67a1SJohannes Thumshirn 	}
1686e3ba67a1SJohannes Thumshirn 
1687e3ba67a1SJohannes Thumshirn out_free_em:
1688e3ba67a1SJohannes Thumshirn 	free_extent_map(em);
1689e3ba67a1SJohannes Thumshirn 	return ret;
1690e3ba67a1SJohannes Thumshirn }
1691e3ba67a1SJohannes Thumshirn 
16924358d963SJosef Bacik static int find_first_block_group(struct btrfs_fs_info *fs_info,
16934358d963SJosef Bacik 				  struct btrfs_path *path,
16944358d963SJosef Bacik 				  struct btrfs_key *key)
16954358d963SJosef Bacik {
1696dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(fs_info);
1697e3ba67a1SJohannes Thumshirn 	int ret;
16984358d963SJosef Bacik 	struct btrfs_key found_key;
16994358d963SJosef Bacik 
170036dfbbe2SGabriel Niebler 	btrfs_for_each_slot(root, key, &found_key, path, ret) {
17014358d963SJosef Bacik 		if (found_key.objectid >= key->objectid &&
17024358d963SJosef Bacik 		    found_key.type == BTRFS_BLOCK_GROUP_ITEM_KEY) {
170336dfbbe2SGabriel Niebler 			return read_bg_from_eb(fs_info, &found_key, path);
1704e3ba67a1SJohannes Thumshirn 		}
17054358d963SJosef Bacik 	}
17064358d963SJosef Bacik 	return ret;
17074358d963SJosef Bacik }
17084358d963SJosef Bacik 
17094358d963SJosef Bacik static void set_avail_alloc_bits(struct btrfs_fs_info *fs_info, u64 flags)
17104358d963SJosef Bacik {
17114358d963SJosef Bacik 	u64 extra_flags = chunk_to_extended(flags) &
17124358d963SJosef Bacik 				BTRFS_EXTENDED_PROFILE_MASK;
17134358d963SJosef Bacik 
17144358d963SJosef Bacik 	write_seqlock(&fs_info->profiles_lock);
17154358d963SJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_DATA)
17164358d963SJosef Bacik 		fs_info->avail_data_alloc_bits |= extra_flags;
17174358d963SJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_METADATA)
17184358d963SJosef Bacik 		fs_info->avail_metadata_alloc_bits |= extra_flags;
17194358d963SJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_SYSTEM)
17204358d963SJosef Bacik 		fs_info->avail_system_alloc_bits |= extra_flags;
17214358d963SJosef Bacik 	write_sequnlock(&fs_info->profiles_lock);
17224358d963SJosef Bacik }
17234358d963SJosef Bacik 
172496a14336SNikolay Borisov /**
17259ee9b979SNikolay Borisov  * Map a physical disk address to a list of logical addresses
17269ee9b979SNikolay Borisov  *
17279ee9b979SNikolay Borisov  * @fs_info:       the filesystem
172896a14336SNikolay Borisov  * @chunk_start:   logical address of block group
1729138082f3SNaohiro Aota  * @bdev:	   physical device to resolve, can be NULL to indicate any device
173096a14336SNikolay Borisov  * @physical:	   physical address to map to logical addresses
173196a14336SNikolay Borisov  * @logical:	   return array of logical addresses which map to @physical
173296a14336SNikolay Borisov  * @naddrs:	   length of @logical
173396a14336SNikolay Borisov  * @stripe_len:    size of IO stripe for the given block group
173496a14336SNikolay Borisov  *
173596a14336SNikolay Borisov  * Maps a particular @physical disk address to a list of @logical addresses.
173696a14336SNikolay Borisov  * Used primarily to exclude those portions of a block group that contain super
173796a14336SNikolay Borisov  * block copies.
173896a14336SNikolay Borisov  */
173996a14336SNikolay Borisov int btrfs_rmap_block(struct btrfs_fs_info *fs_info, u64 chunk_start,
1740138082f3SNaohiro Aota 		     struct block_device *bdev, u64 physical, u64 **logical,
1741138082f3SNaohiro Aota 		     int *naddrs, int *stripe_len)
174296a14336SNikolay Borisov {
174396a14336SNikolay Borisov 	struct extent_map *em;
174496a14336SNikolay Borisov 	struct map_lookup *map;
174596a14336SNikolay Borisov 	u64 *buf;
174696a14336SNikolay Borisov 	u64 bytenr;
17471776ad17SNikolay Borisov 	u64 data_stripe_length;
17481776ad17SNikolay Borisov 	u64 io_stripe_size;
17491776ad17SNikolay Borisov 	int i, nr = 0;
17501776ad17SNikolay Borisov 	int ret = 0;
175196a14336SNikolay Borisov 
175296a14336SNikolay Borisov 	em = btrfs_get_chunk_map(fs_info, chunk_start, 1);
175396a14336SNikolay Borisov 	if (IS_ERR(em))
175496a14336SNikolay Borisov 		return -EIO;
175596a14336SNikolay Borisov 
175696a14336SNikolay Borisov 	map = em->map_lookup;
17579e22b925SNikolay Borisov 	data_stripe_length = em->orig_block_len;
17581776ad17SNikolay Borisov 	io_stripe_size = map->stripe_len;
1759138082f3SNaohiro Aota 	chunk_start = em->start;
176096a14336SNikolay Borisov 
17619e22b925SNikolay Borisov 	/* For RAID5/6 adjust to a full IO stripe length */
17629e22b925SNikolay Borisov 	if (map->type & BTRFS_BLOCK_GROUP_RAID56_MASK)
17631776ad17SNikolay Borisov 		io_stripe_size = map->stripe_len * nr_data_stripes(map);
176496a14336SNikolay Borisov 
176596a14336SNikolay Borisov 	buf = kcalloc(map->num_stripes, sizeof(u64), GFP_NOFS);
17661776ad17SNikolay Borisov 	if (!buf) {
17671776ad17SNikolay Borisov 		ret = -ENOMEM;
17681776ad17SNikolay Borisov 		goto out;
17691776ad17SNikolay Borisov 	}
177096a14336SNikolay Borisov 
177196a14336SNikolay Borisov 	for (i = 0; i < map->num_stripes; i++) {
17721776ad17SNikolay Borisov 		bool already_inserted = false;
17731776ad17SNikolay Borisov 		u64 stripe_nr;
1774138082f3SNaohiro Aota 		u64 offset;
17751776ad17SNikolay Borisov 		int j;
17761776ad17SNikolay Borisov 
17771776ad17SNikolay Borisov 		if (!in_range(physical, map->stripes[i].physical,
17781776ad17SNikolay Borisov 			      data_stripe_length))
177996a14336SNikolay Borisov 			continue;
178096a14336SNikolay Borisov 
1781138082f3SNaohiro Aota 		if (bdev && map->stripes[i].dev->bdev != bdev)
1782138082f3SNaohiro Aota 			continue;
1783138082f3SNaohiro Aota 
178496a14336SNikolay Borisov 		stripe_nr = physical - map->stripes[i].physical;
1785138082f3SNaohiro Aota 		stripe_nr = div64_u64_rem(stripe_nr, map->stripe_len, &offset);
178696a14336SNikolay Borisov 
178796a14336SNikolay Borisov 		if (map->type & BTRFS_BLOCK_GROUP_RAID10) {
178896a14336SNikolay Borisov 			stripe_nr = stripe_nr * map->num_stripes + i;
178996a14336SNikolay Borisov 			stripe_nr = div_u64(stripe_nr, map->sub_stripes);
179096a14336SNikolay Borisov 		} else if (map->type & BTRFS_BLOCK_GROUP_RAID0) {
179196a14336SNikolay Borisov 			stripe_nr = stripe_nr * map->num_stripes + i;
179296a14336SNikolay Borisov 		}
179396a14336SNikolay Borisov 		/*
179496a14336SNikolay Borisov 		 * The remaining case would be for RAID56, multiply by
179596a14336SNikolay Borisov 		 * nr_data_stripes().  Alternatively, just use rmap_len below
179696a14336SNikolay Borisov 		 * instead of map->stripe_len
179796a14336SNikolay Borisov 		 */
179896a14336SNikolay Borisov 
1799138082f3SNaohiro Aota 		bytenr = chunk_start + stripe_nr * io_stripe_size + offset;
18001776ad17SNikolay Borisov 
18011776ad17SNikolay Borisov 		/* Ensure we don't add duplicate addresses */
180296a14336SNikolay Borisov 		for (j = 0; j < nr; j++) {
18031776ad17SNikolay Borisov 			if (buf[j] == bytenr) {
18041776ad17SNikolay Borisov 				already_inserted = true;
180596a14336SNikolay Borisov 				break;
180696a14336SNikolay Borisov 			}
180796a14336SNikolay Borisov 		}
18081776ad17SNikolay Borisov 
18091776ad17SNikolay Borisov 		if (!already_inserted)
18101776ad17SNikolay Borisov 			buf[nr++] = bytenr;
181196a14336SNikolay Borisov 	}
181296a14336SNikolay Borisov 
181396a14336SNikolay Borisov 	*logical = buf;
181496a14336SNikolay Borisov 	*naddrs = nr;
18151776ad17SNikolay Borisov 	*stripe_len = io_stripe_size;
18161776ad17SNikolay Borisov out:
181796a14336SNikolay Borisov 	free_extent_map(em);
18181776ad17SNikolay Borisov 	return ret;
181996a14336SNikolay Borisov }
182096a14336SNikolay Borisov 
182132da5386SDavid Sterba static int exclude_super_stripes(struct btrfs_block_group *cache)
18224358d963SJosef Bacik {
18234358d963SJosef Bacik 	struct btrfs_fs_info *fs_info = cache->fs_info;
182412659251SNaohiro Aota 	const bool zoned = btrfs_is_zoned(fs_info);
18254358d963SJosef Bacik 	u64 bytenr;
18264358d963SJosef Bacik 	u64 *logical;
18274358d963SJosef Bacik 	int stripe_len;
18284358d963SJosef Bacik 	int i, nr, ret;
18294358d963SJosef Bacik 
1830b3470b5dSDavid Sterba 	if (cache->start < BTRFS_SUPER_INFO_OFFSET) {
1831b3470b5dSDavid Sterba 		stripe_len = BTRFS_SUPER_INFO_OFFSET - cache->start;
18324358d963SJosef Bacik 		cache->bytes_super += stripe_len;
1833b3470b5dSDavid Sterba 		ret = btrfs_add_excluded_extent(fs_info, cache->start,
18344358d963SJosef Bacik 						stripe_len);
18354358d963SJosef Bacik 		if (ret)
18364358d963SJosef Bacik 			return ret;
18374358d963SJosef Bacik 	}
18384358d963SJosef Bacik 
18394358d963SJosef Bacik 	for (i = 0; i < BTRFS_SUPER_MIRROR_MAX; i++) {
18404358d963SJosef Bacik 		bytenr = btrfs_sb_offset(i);
1841138082f3SNaohiro Aota 		ret = btrfs_rmap_block(fs_info, cache->start, NULL,
18424358d963SJosef Bacik 				       bytenr, &logical, &nr, &stripe_len);
18434358d963SJosef Bacik 		if (ret)
18444358d963SJosef Bacik 			return ret;
18454358d963SJosef Bacik 
184612659251SNaohiro Aota 		/* Shouldn't have super stripes in sequential zones */
184712659251SNaohiro Aota 		if (zoned && nr) {
184812659251SNaohiro Aota 			btrfs_err(fs_info,
184912659251SNaohiro Aota 			"zoned: block group %llu must not contain super block",
185012659251SNaohiro Aota 				  cache->start);
185112659251SNaohiro Aota 			return -EUCLEAN;
185212659251SNaohiro Aota 		}
185312659251SNaohiro Aota 
18544358d963SJosef Bacik 		while (nr--) {
185596f9b0f2SNikolay Borisov 			u64 len = min_t(u64, stripe_len,
185696f9b0f2SNikolay Borisov 				cache->start + cache->length - logical[nr]);
18574358d963SJosef Bacik 
18584358d963SJosef Bacik 			cache->bytes_super += len;
185996f9b0f2SNikolay Borisov 			ret = btrfs_add_excluded_extent(fs_info, logical[nr],
186096f9b0f2SNikolay Borisov 							len);
18614358d963SJosef Bacik 			if (ret) {
18624358d963SJosef Bacik 				kfree(logical);
18634358d963SJosef Bacik 				return ret;
18644358d963SJosef Bacik 			}
18654358d963SJosef Bacik 		}
18664358d963SJosef Bacik 
18674358d963SJosef Bacik 		kfree(logical);
18684358d963SJosef Bacik 	}
18694358d963SJosef Bacik 	return 0;
18704358d963SJosef Bacik }
18714358d963SJosef Bacik 
187232da5386SDavid Sterba static void link_block_group(struct btrfs_block_group *cache)
18734358d963SJosef Bacik {
18744358d963SJosef Bacik 	struct btrfs_space_info *space_info = cache->space_info;
18754358d963SJosef Bacik 	int index = btrfs_bg_flags_to_raid_index(cache->flags);
18764358d963SJosef Bacik 
18774358d963SJosef Bacik 	down_write(&space_info->groups_sem);
18784358d963SJosef Bacik 	list_add_tail(&cache->list, &space_info->block_groups[index]);
18794358d963SJosef Bacik 	up_write(&space_info->groups_sem);
18804358d963SJosef Bacik }
18814358d963SJosef Bacik 
188232da5386SDavid Sterba static struct btrfs_block_group *btrfs_create_block_group_cache(
18839afc6649SQu Wenruo 		struct btrfs_fs_info *fs_info, u64 start)
18844358d963SJosef Bacik {
188532da5386SDavid Sterba 	struct btrfs_block_group *cache;
18864358d963SJosef Bacik 
18874358d963SJosef Bacik 	cache = kzalloc(sizeof(*cache), GFP_NOFS);
18884358d963SJosef Bacik 	if (!cache)
18894358d963SJosef Bacik 		return NULL;
18904358d963SJosef Bacik 
18914358d963SJosef Bacik 	cache->free_space_ctl = kzalloc(sizeof(*cache->free_space_ctl),
18924358d963SJosef Bacik 					GFP_NOFS);
18934358d963SJosef Bacik 	if (!cache->free_space_ctl) {
18944358d963SJosef Bacik 		kfree(cache);
18954358d963SJosef Bacik 		return NULL;
18964358d963SJosef Bacik 	}
18974358d963SJosef Bacik 
1898b3470b5dSDavid Sterba 	cache->start = start;
18994358d963SJosef Bacik 
19004358d963SJosef Bacik 	cache->fs_info = fs_info;
19014358d963SJosef Bacik 	cache->full_stripe_len = btrfs_full_stripe_len(fs_info, start);
19024358d963SJosef Bacik 
19036e80d4f8SDennis Zhou 	cache->discard_index = BTRFS_DISCARD_INDEX_UNUSED;
19046e80d4f8SDennis Zhou 
190548aaeebeSJosef Bacik 	refcount_set(&cache->refs, 1);
19064358d963SJosef Bacik 	spin_lock_init(&cache->lock);
19074358d963SJosef Bacik 	init_rwsem(&cache->data_rwsem);
19084358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->list);
19094358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->cluster_list);
19104358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->bg_list);
19114358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->ro_list);
1912b0643e59SDennis Zhou 	INIT_LIST_HEAD(&cache->discard_list);
19134358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->dirty_list);
19144358d963SJosef Bacik 	INIT_LIST_HEAD(&cache->io_list);
1915afba2bc0SNaohiro Aota 	INIT_LIST_HEAD(&cache->active_bg_list);
1916cd79909bSJosef Bacik 	btrfs_init_free_space_ctl(cache, cache->free_space_ctl);
19176b7304afSFilipe Manana 	atomic_set(&cache->frozen, 0);
19184358d963SJosef Bacik 	mutex_init(&cache->free_space_lock);
19194358d963SJosef Bacik 	btrfs_init_full_stripe_locks_tree(&cache->full_stripe_locks_root);
19204358d963SJosef Bacik 
19214358d963SJosef Bacik 	return cache;
19224358d963SJosef Bacik }
19234358d963SJosef Bacik 
19244358d963SJosef Bacik /*
19254358d963SJosef Bacik  * Iterate all chunks and verify that each of them has the corresponding block
19264358d963SJosef Bacik  * group
19274358d963SJosef Bacik  */
19284358d963SJosef Bacik static int check_chunk_block_group_mappings(struct btrfs_fs_info *fs_info)
19294358d963SJosef Bacik {
19304358d963SJosef Bacik 	struct extent_map_tree *map_tree = &fs_info->mapping_tree;
19314358d963SJosef Bacik 	struct extent_map *em;
193232da5386SDavid Sterba 	struct btrfs_block_group *bg;
19334358d963SJosef Bacik 	u64 start = 0;
19344358d963SJosef Bacik 	int ret = 0;
19354358d963SJosef Bacik 
19364358d963SJosef Bacik 	while (1) {
19374358d963SJosef Bacik 		read_lock(&map_tree->lock);
19384358d963SJosef Bacik 		/*
19394358d963SJosef Bacik 		 * lookup_extent_mapping will return the first extent map
19404358d963SJosef Bacik 		 * intersecting the range, so setting @len to 1 is enough to
19414358d963SJosef Bacik 		 * get the first chunk.
19424358d963SJosef Bacik 		 */
19434358d963SJosef Bacik 		em = lookup_extent_mapping(map_tree, start, 1);
19444358d963SJosef Bacik 		read_unlock(&map_tree->lock);
19454358d963SJosef Bacik 		if (!em)
19464358d963SJosef Bacik 			break;
19474358d963SJosef Bacik 
19484358d963SJosef Bacik 		bg = btrfs_lookup_block_group(fs_info, em->start);
19494358d963SJosef Bacik 		if (!bg) {
19504358d963SJosef Bacik 			btrfs_err(fs_info,
19514358d963SJosef Bacik 	"chunk start=%llu len=%llu doesn't have corresponding block group",
19524358d963SJosef Bacik 				     em->start, em->len);
19534358d963SJosef Bacik 			ret = -EUCLEAN;
19544358d963SJosef Bacik 			free_extent_map(em);
19554358d963SJosef Bacik 			break;
19564358d963SJosef Bacik 		}
1957b3470b5dSDavid Sterba 		if (bg->start != em->start || bg->length != em->len ||
19584358d963SJosef Bacik 		    (bg->flags & BTRFS_BLOCK_GROUP_TYPE_MASK) !=
19594358d963SJosef Bacik 		    (em->map_lookup->type & BTRFS_BLOCK_GROUP_TYPE_MASK)) {
19604358d963SJosef Bacik 			btrfs_err(fs_info,
19614358d963SJosef Bacik "chunk start=%llu len=%llu flags=0x%llx doesn't match block group start=%llu len=%llu flags=0x%llx",
19624358d963SJosef Bacik 				em->start, em->len,
19634358d963SJosef Bacik 				em->map_lookup->type & BTRFS_BLOCK_GROUP_TYPE_MASK,
1964b3470b5dSDavid Sterba 				bg->start, bg->length,
19654358d963SJosef Bacik 				bg->flags & BTRFS_BLOCK_GROUP_TYPE_MASK);
19664358d963SJosef Bacik 			ret = -EUCLEAN;
19674358d963SJosef Bacik 			free_extent_map(em);
19684358d963SJosef Bacik 			btrfs_put_block_group(bg);
19694358d963SJosef Bacik 			break;
19704358d963SJosef Bacik 		}
19714358d963SJosef Bacik 		start = em->start + em->len;
19724358d963SJosef Bacik 		free_extent_map(em);
19734358d963SJosef Bacik 		btrfs_put_block_group(bg);
19744358d963SJosef Bacik 	}
19754358d963SJosef Bacik 	return ret;
19764358d963SJosef Bacik }
19774358d963SJosef Bacik 
1978ffb9e0f0SQu Wenruo static int read_one_block_group(struct btrfs_fs_info *info,
19794afd2fe8SJohannes Thumshirn 				struct btrfs_block_group_item *bgi,
1980d49a2ddbSQu Wenruo 				const struct btrfs_key *key,
1981ffb9e0f0SQu Wenruo 				int need_clear)
1982ffb9e0f0SQu Wenruo {
198332da5386SDavid Sterba 	struct btrfs_block_group *cache;
1984ffb9e0f0SQu Wenruo 	struct btrfs_space_info *space_info;
1985ffb9e0f0SQu Wenruo 	const bool mixed = btrfs_fs_incompat(info, MIXED_GROUPS);
1986ffb9e0f0SQu Wenruo 	int ret;
1987ffb9e0f0SQu Wenruo 
1988d49a2ddbSQu Wenruo 	ASSERT(key->type == BTRFS_BLOCK_GROUP_ITEM_KEY);
1989ffb9e0f0SQu Wenruo 
19909afc6649SQu Wenruo 	cache = btrfs_create_block_group_cache(info, key->objectid);
1991ffb9e0f0SQu Wenruo 	if (!cache)
1992ffb9e0f0SQu Wenruo 		return -ENOMEM;
1993ffb9e0f0SQu Wenruo 
19944afd2fe8SJohannes Thumshirn 	cache->length = key->offset;
19954afd2fe8SJohannes Thumshirn 	cache->used = btrfs_stack_block_group_used(bgi);
19964afd2fe8SJohannes Thumshirn 	cache->flags = btrfs_stack_block_group_flags(bgi);
1997f7238e50SJosef Bacik 	cache->global_root_id = btrfs_stack_block_group_chunk_objectid(bgi);
19989afc6649SQu Wenruo 
1999e3e39c72SMarcos Paulo de Souza 	set_free_space_tree_thresholds(cache);
2000e3e39c72SMarcos Paulo de Souza 
2001ffb9e0f0SQu Wenruo 	if (need_clear) {
2002ffb9e0f0SQu Wenruo 		/*
2003ffb9e0f0SQu Wenruo 		 * When we mount with old space cache, we need to
2004ffb9e0f0SQu Wenruo 		 * set BTRFS_DC_CLEAR and set dirty flag.
2005ffb9e0f0SQu Wenruo 		 *
2006ffb9e0f0SQu Wenruo 		 * a) Setting 'BTRFS_DC_CLEAR' makes sure that we
2007ffb9e0f0SQu Wenruo 		 *    truncate the old free space cache inode and
2008ffb9e0f0SQu Wenruo 		 *    setup a new one.
2009ffb9e0f0SQu Wenruo 		 * b) Setting 'dirty flag' makes sure that we flush
2010ffb9e0f0SQu Wenruo 		 *    the new space cache info onto disk.
2011ffb9e0f0SQu Wenruo 		 */
2012ffb9e0f0SQu Wenruo 		if (btrfs_test_opt(info, SPACE_CACHE))
2013ffb9e0f0SQu Wenruo 			cache->disk_cache_state = BTRFS_DC_CLEAR;
2014ffb9e0f0SQu Wenruo 	}
2015ffb9e0f0SQu Wenruo 	if (!mixed && ((cache->flags & BTRFS_BLOCK_GROUP_METADATA) &&
2016ffb9e0f0SQu Wenruo 	    (cache->flags & BTRFS_BLOCK_GROUP_DATA))) {
2017ffb9e0f0SQu Wenruo 			btrfs_err(info,
2018ffb9e0f0SQu Wenruo "bg %llu is a mixed block group but filesystem hasn't enabled mixed block groups",
2019ffb9e0f0SQu Wenruo 				  cache->start);
2020ffb9e0f0SQu Wenruo 			ret = -EINVAL;
2021ffb9e0f0SQu Wenruo 			goto error;
2022ffb9e0f0SQu Wenruo 	}
2023ffb9e0f0SQu Wenruo 
2024a94794d5SNaohiro Aota 	ret = btrfs_load_block_group_zone_info(cache, false);
202508e11a3dSNaohiro Aota 	if (ret) {
202608e11a3dSNaohiro Aota 		btrfs_err(info, "zoned: failed to load zone info of bg %llu",
202708e11a3dSNaohiro Aota 			  cache->start);
202808e11a3dSNaohiro Aota 		goto error;
202908e11a3dSNaohiro Aota 	}
203008e11a3dSNaohiro Aota 
2031ffb9e0f0SQu Wenruo 	/*
2032ffb9e0f0SQu Wenruo 	 * We need to exclude the super stripes now so that the space info has
2033ffb9e0f0SQu Wenruo 	 * super bytes accounted for, otherwise we'll think we have more space
2034ffb9e0f0SQu Wenruo 	 * than we actually do.
2035ffb9e0f0SQu Wenruo 	 */
2036ffb9e0f0SQu Wenruo 	ret = exclude_super_stripes(cache);
2037ffb9e0f0SQu Wenruo 	if (ret) {
2038ffb9e0f0SQu Wenruo 		/* We may have excluded something, so call this just in case. */
2039ffb9e0f0SQu Wenruo 		btrfs_free_excluded_extents(cache);
2040ffb9e0f0SQu Wenruo 		goto error;
2041ffb9e0f0SQu Wenruo 	}
2042ffb9e0f0SQu Wenruo 
2043ffb9e0f0SQu Wenruo 	/*
2044169e0da9SNaohiro Aota 	 * For zoned filesystem, space after the allocation offset is the only
2045169e0da9SNaohiro Aota 	 * free space for a block group. So, we don't need any caching work.
2046169e0da9SNaohiro Aota 	 * btrfs_calc_zone_unusable() will set the amount of free space and
2047169e0da9SNaohiro Aota 	 * zone_unusable space.
2048169e0da9SNaohiro Aota 	 *
2049169e0da9SNaohiro Aota 	 * For regular filesystem, check for two cases, either we are full, and
2050169e0da9SNaohiro Aota 	 * therefore don't need to bother with the caching work since we won't
2051169e0da9SNaohiro Aota 	 * find any space, or we are empty, and we can just add all the space
2052169e0da9SNaohiro Aota 	 * in and be done with it.  This saves us _a_lot_ of time, particularly
2053169e0da9SNaohiro Aota 	 * in the full case.
2054ffb9e0f0SQu Wenruo 	 */
2055169e0da9SNaohiro Aota 	if (btrfs_is_zoned(info)) {
2056169e0da9SNaohiro Aota 		btrfs_calc_zone_unusable(cache);
2057c46c4247SNaohiro Aota 		/* Should not have any excluded extents. Just in case, though. */
2058c46c4247SNaohiro Aota 		btrfs_free_excluded_extents(cache);
2059169e0da9SNaohiro Aota 	} else if (cache->length == cache->used) {
2060ffb9e0f0SQu Wenruo 		cache->last_byte_to_unpin = (u64)-1;
2061ffb9e0f0SQu Wenruo 		cache->cached = BTRFS_CACHE_FINISHED;
2062ffb9e0f0SQu Wenruo 		btrfs_free_excluded_extents(cache);
2063ffb9e0f0SQu Wenruo 	} else if (cache->used == 0) {
2064ffb9e0f0SQu Wenruo 		cache->last_byte_to_unpin = (u64)-1;
2065ffb9e0f0SQu Wenruo 		cache->cached = BTRFS_CACHE_FINISHED;
20669afc6649SQu Wenruo 		add_new_free_space(cache, cache->start,
20679afc6649SQu Wenruo 				   cache->start + cache->length);
2068ffb9e0f0SQu Wenruo 		btrfs_free_excluded_extents(cache);
2069ffb9e0f0SQu Wenruo 	}
2070ffb9e0f0SQu Wenruo 
2071ffb9e0f0SQu Wenruo 	ret = btrfs_add_block_group_cache(info, cache);
2072ffb9e0f0SQu Wenruo 	if (ret) {
2073ffb9e0f0SQu Wenruo 		btrfs_remove_free_space_cache(cache);
2074ffb9e0f0SQu Wenruo 		goto error;
2075ffb9e0f0SQu Wenruo 	}
2076ffb9e0f0SQu Wenruo 	trace_btrfs_add_block_group(info, cache, 0);
20779afc6649SQu Wenruo 	btrfs_update_space_info(info, cache->flags, cache->length,
2078169e0da9SNaohiro Aota 				cache->used, cache->bytes_super,
2079169e0da9SNaohiro Aota 				cache->zone_unusable, &space_info);
2080ffb9e0f0SQu Wenruo 
2081ffb9e0f0SQu Wenruo 	cache->space_info = space_info;
2082ffb9e0f0SQu Wenruo 
2083ffb9e0f0SQu Wenruo 	link_block_group(cache);
2084ffb9e0f0SQu Wenruo 
2085ffb9e0f0SQu Wenruo 	set_avail_alloc_bits(info, cache->flags);
2086a09f23c3SAnand Jain 	if (btrfs_chunk_writeable(info, cache->start)) {
2087a09f23c3SAnand Jain 		if (cache->used == 0) {
2088ffb9e0f0SQu Wenruo 			ASSERT(list_empty(&cache->bg_list));
20896e80d4f8SDennis Zhou 			if (btrfs_test_opt(info, DISCARD_ASYNC))
20906e80d4f8SDennis Zhou 				btrfs_discard_queue_work(&info->discard_ctl, cache);
20916e80d4f8SDennis Zhou 			else
2092ffb9e0f0SQu Wenruo 				btrfs_mark_bg_unused(cache);
2093ffb9e0f0SQu Wenruo 		}
2094a09f23c3SAnand Jain 	} else {
2095a09f23c3SAnand Jain 		inc_block_group_ro(cache, 1);
2096a09f23c3SAnand Jain 	}
2097a09f23c3SAnand Jain 
2098ffb9e0f0SQu Wenruo 	return 0;
2099ffb9e0f0SQu Wenruo error:
2100ffb9e0f0SQu Wenruo 	btrfs_put_block_group(cache);
2101ffb9e0f0SQu Wenruo 	return ret;
2102ffb9e0f0SQu Wenruo }
2103ffb9e0f0SQu Wenruo 
210442437a63SJosef Bacik static int fill_dummy_bgs(struct btrfs_fs_info *fs_info)
210542437a63SJosef Bacik {
210642437a63SJosef Bacik 	struct extent_map_tree *em_tree = &fs_info->mapping_tree;
210742437a63SJosef Bacik 	struct btrfs_space_info *space_info;
210842437a63SJosef Bacik 	struct rb_node *node;
210942437a63SJosef Bacik 	int ret = 0;
211042437a63SJosef Bacik 
211142437a63SJosef Bacik 	for (node = rb_first_cached(&em_tree->map); node; node = rb_next(node)) {
211242437a63SJosef Bacik 		struct extent_map *em;
211342437a63SJosef Bacik 		struct map_lookup *map;
211442437a63SJosef Bacik 		struct btrfs_block_group *bg;
211542437a63SJosef Bacik 
211642437a63SJosef Bacik 		em = rb_entry(node, struct extent_map, rb_node);
211742437a63SJosef Bacik 		map = em->map_lookup;
211842437a63SJosef Bacik 		bg = btrfs_create_block_group_cache(fs_info, em->start);
211942437a63SJosef Bacik 		if (!bg) {
212042437a63SJosef Bacik 			ret = -ENOMEM;
212142437a63SJosef Bacik 			break;
212242437a63SJosef Bacik 		}
212342437a63SJosef Bacik 
212442437a63SJosef Bacik 		/* Fill dummy cache as FULL */
212542437a63SJosef Bacik 		bg->length = em->len;
212642437a63SJosef Bacik 		bg->flags = map->type;
212742437a63SJosef Bacik 		bg->last_byte_to_unpin = (u64)-1;
212842437a63SJosef Bacik 		bg->cached = BTRFS_CACHE_FINISHED;
212942437a63SJosef Bacik 		bg->used = em->len;
213042437a63SJosef Bacik 		bg->flags = map->type;
213142437a63SJosef Bacik 		ret = btrfs_add_block_group_cache(fs_info, bg);
21322b29726cSQu Wenruo 		/*
21332b29726cSQu Wenruo 		 * We may have some valid block group cache added already, in
21342b29726cSQu Wenruo 		 * that case we skip to the next one.
21352b29726cSQu Wenruo 		 */
21362b29726cSQu Wenruo 		if (ret == -EEXIST) {
21372b29726cSQu Wenruo 			ret = 0;
21382b29726cSQu Wenruo 			btrfs_put_block_group(bg);
21392b29726cSQu Wenruo 			continue;
21402b29726cSQu Wenruo 		}
21412b29726cSQu Wenruo 
214242437a63SJosef Bacik 		if (ret) {
214342437a63SJosef Bacik 			btrfs_remove_free_space_cache(bg);
214442437a63SJosef Bacik 			btrfs_put_block_group(bg);
214542437a63SJosef Bacik 			break;
214642437a63SJosef Bacik 		}
21472b29726cSQu Wenruo 
214842437a63SJosef Bacik 		btrfs_update_space_info(fs_info, bg->flags, em->len, em->len,
2149169e0da9SNaohiro Aota 					0, 0, &space_info);
215042437a63SJosef Bacik 		bg->space_info = space_info;
215142437a63SJosef Bacik 		link_block_group(bg);
215242437a63SJosef Bacik 
215342437a63SJosef Bacik 		set_avail_alloc_bits(fs_info, bg->flags);
215442437a63SJosef Bacik 	}
215542437a63SJosef Bacik 	if (!ret)
215642437a63SJosef Bacik 		btrfs_init_global_block_rsv(fs_info);
215742437a63SJosef Bacik 	return ret;
215842437a63SJosef Bacik }
215942437a63SJosef Bacik 
21604358d963SJosef Bacik int btrfs_read_block_groups(struct btrfs_fs_info *info)
21614358d963SJosef Bacik {
2162dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(info);
21634358d963SJosef Bacik 	struct btrfs_path *path;
21644358d963SJosef Bacik 	int ret;
216532da5386SDavid Sterba 	struct btrfs_block_group *cache;
21664358d963SJosef Bacik 	struct btrfs_space_info *space_info;
21674358d963SJosef Bacik 	struct btrfs_key key;
21684358d963SJosef Bacik 	int need_clear = 0;
21694358d963SJosef Bacik 	u64 cache_gen;
21704358d963SJosef Bacik 
2171dfe8aec4SJosef Bacik 	if (!root)
217242437a63SJosef Bacik 		return fill_dummy_bgs(info);
217342437a63SJosef Bacik 
21744358d963SJosef Bacik 	key.objectid = 0;
21754358d963SJosef Bacik 	key.offset = 0;
21764358d963SJosef Bacik 	key.type = BTRFS_BLOCK_GROUP_ITEM_KEY;
21774358d963SJosef Bacik 	path = btrfs_alloc_path();
21784358d963SJosef Bacik 	if (!path)
21794358d963SJosef Bacik 		return -ENOMEM;
21804358d963SJosef Bacik 
21814358d963SJosef Bacik 	cache_gen = btrfs_super_cache_generation(info->super_copy);
21824358d963SJosef Bacik 	if (btrfs_test_opt(info, SPACE_CACHE) &&
21834358d963SJosef Bacik 	    btrfs_super_generation(info->super_copy) != cache_gen)
21844358d963SJosef Bacik 		need_clear = 1;
21854358d963SJosef Bacik 	if (btrfs_test_opt(info, CLEAR_CACHE))
21864358d963SJosef Bacik 		need_clear = 1;
21874358d963SJosef Bacik 
21884358d963SJosef Bacik 	while (1) {
21894afd2fe8SJohannes Thumshirn 		struct btrfs_block_group_item bgi;
21904afd2fe8SJohannes Thumshirn 		struct extent_buffer *leaf;
21914afd2fe8SJohannes Thumshirn 		int slot;
21924afd2fe8SJohannes Thumshirn 
21934358d963SJosef Bacik 		ret = find_first_block_group(info, path, &key);
21944358d963SJosef Bacik 		if (ret > 0)
21954358d963SJosef Bacik 			break;
21964358d963SJosef Bacik 		if (ret != 0)
21974358d963SJosef Bacik 			goto error;
21984358d963SJosef Bacik 
21994afd2fe8SJohannes Thumshirn 		leaf = path->nodes[0];
22004afd2fe8SJohannes Thumshirn 		slot = path->slots[0];
22014afd2fe8SJohannes Thumshirn 
22024afd2fe8SJohannes Thumshirn 		read_extent_buffer(leaf, &bgi, btrfs_item_ptr_offset(leaf, slot),
22034afd2fe8SJohannes Thumshirn 				   sizeof(bgi));
22044afd2fe8SJohannes Thumshirn 
22054afd2fe8SJohannes Thumshirn 		btrfs_item_key_to_cpu(leaf, &key, slot);
22064afd2fe8SJohannes Thumshirn 		btrfs_release_path(path);
22074afd2fe8SJohannes Thumshirn 		ret = read_one_block_group(info, &bgi, &key, need_clear);
2208ffb9e0f0SQu Wenruo 		if (ret < 0)
22094358d963SJosef Bacik 			goto error;
2210ffb9e0f0SQu Wenruo 		key.objectid += key.offset;
2211ffb9e0f0SQu Wenruo 		key.offset = 0;
22124358d963SJosef Bacik 	}
22137837fa88SJosef Bacik 	btrfs_release_path(path);
22144358d963SJosef Bacik 
221572804905SJosef Bacik 	list_for_each_entry(space_info, &info->space_info, list) {
221649ea112dSJosef Bacik 		int i;
221749ea112dSJosef Bacik 
221849ea112dSJosef Bacik 		for (i = 0; i < BTRFS_NR_RAID_TYPES; i++) {
221949ea112dSJosef Bacik 			if (list_empty(&space_info->block_groups[i]))
222049ea112dSJosef Bacik 				continue;
222149ea112dSJosef Bacik 			cache = list_first_entry(&space_info->block_groups[i],
222249ea112dSJosef Bacik 						 struct btrfs_block_group,
222349ea112dSJosef Bacik 						 list);
222449ea112dSJosef Bacik 			btrfs_sysfs_add_block_group_type(cache);
222549ea112dSJosef Bacik 		}
222649ea112dSJosef Bacik 
22274358d963SJosef Bacik 		if (!(btrfs_get_alloc_profile(info, space_info->flags) &
22284358d963SJosef Bacik 		      (BTRFS_BLOCK_GROUP_RAID10 |
22294358d963SJosef Bacik 		       BTRFS_BLOCK_GROUP_RAID1_MASK |
22304358d963SJosef Bacik 		       BTRFS_BLOCK_GROUP_RAID56_MASK |
22314358d963SJosef Bacik 		       BTRFS_BLOCK_GROUP_DUP)))
22324358d963SJosef Bacik 			continue;
22334358d963SJosef Bacik 		/*
22344358d963SJosef Bacik 		 * Avoid allocating from un-mirrored block group if there are
22354358d963SJosef Bacik 		 * mirrored block groups.
22364358d963SJosef Bacik 		 */
22374358d963SJosef Bacik 		list_for_each_entry(cache,
22384358d963SJosef Bacik 				&space_info->block_groups[BTRFS_RAID_RAID0],
22394358d963SJosef Bacik 				list)
2240e11c0406SJosef Bacik 			inc_block_group_ro(cache, 1);
22414358d963SJosef Bacik 		list_for_each_entry(cache,
22424358d963SJosef Bacik 				&space_info->block_groups[BTRFS_RAID_SINGLE],
22434358d963SJosef Bacik 				list)
2244e11c0406SJosef Bacik 			inc_block_group_ro(cache, 1);
22454358d963SJosef Bacik 	}
22464358d963SJosef Bacik 
22474358d963SJosef Bacik 	btrfs_init_global_block_rsv(info);
22484358d963SJosef Bacik 	ret = check_chunk_block_group_mappings(info);
22494358d963SJosef Bacik error:
22504358d963SJosef Bacik 	btrfs_free_path(path);
22512b29726cSQu Wenruo 	/*
22522b29726cSQu Wenruo 	 * We've hit some error while reading the extent tree, and have
22532b29726cSQu Wenruo 	 * rescue=ibadroots mount option.
22542b29726cSQu Wenruo 	 * Try to fill the tree using dummy block groups so that the user can
22552b29726cSQu Wenruo 	 * continue to mount and grab their data.
22562b29726cSQu Wenruo 	 */
22572b29726cSQu Wenruo 	if (ret && btrfs_test_opt(info, IGNOREBADROOTS))
22582b29726cSQu Wenruo 		ret = fill_dummy_bgs(info);
22594358d963SJosef Bacik 	return ret;
22604358d963SJosef Bacik }
22614358d963SJosef Bacik 
226279bd3712SFilipe Manana /*
226379bd3712SFilipe Manana  * This function, insert_block_group_item(), belongs to the phase 2 of chunk
226479bd3712SFilipe Manana  * allocation.
226579bd3712SFilipe Manana  *
226679bd3712SFilipe Manana  * See the comment at btrfs_chunk_alloc() for details about the chunk allocation
226779bd3712SFilipe Manana  * phases.
226879bd3712SFilipe Manana  */
226997f4728aSQu Wenruo static int insert_block_group_item(struct btrfs_trans_handle *trans,
227097f4728aSQu Wenruo 				   struct btrfs_block_group *block_group)
227197f4728aSQu Wenruo {
227297f4728aSQu Wenruo 	struct btrfs_fs_info *fs_info = trans->fs_info;
227397f4728aSQu Wenruo 	struct btrfs_block_group_item bgi;
2274dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(fs_info);
227597f4728aSQu Wenruo 	struct btrfs_key key;
227697f4728aSQu Wenruo 
227797f4728aSQu Wenruo 	spin_lock(&block_group->lock);
227897f4728aSQu Wenruo 	btrfs_set_stack_block_group_used(&bgi, block_group->used);
227997f4728aSQu Wenruo 	btrfs_set_stack_block_group_chunk_objectid(&bgi,
2280f7238e50SJosef Bacik 						   block_group->global_root_id);
228197f4728aSQu Wenruo 	btrfs_set_stack_block_group_flags(&bgi, block_group->flags);
228297f4728aSQu Wenruo 	key.objectid = block_group->start;
228397f4728aSQu Wenruo 	key.type = BTRFS_BLOCK_GROUP_ITEM_KEY;
228497f4728aSQu Wenruo 	key.offset = block_group->length;
228597f4728aSQu Wenruo 	spin_unlock(&block_group->lock);
228697f4728aSQu Wenruo 
228797f4728aSQu Wenruo 	return btrfs_insert_item(trans, root, &key, &bgi, sizeof(bgi));
228897f4728aSQu Wenruo }
228997f4728aSQu Wenruo 
22902eadb9e7SNikolay Borisov static int insert_dev_extent(struct btrfs_trans_handle *trans,
22912eadb9e7SNikolay Borisov 			    struct btrfs_device *device, u64 chunk_offset,
22922eadb9e7SNikolay Borisov 			    u64 start, u64 num_bytes)
22932eadb9e7SNikolay Borisov {
22942eadb9e7SNikolay Borisov 	struct btrfs_fs_info *fs_info = device->fs_info;
22952eadb9e7SNikolay Borisov 	struct btrfs_root *root = fs_info->dev_root;
22962eadb9e7SNikolay Borisov 	struct btrfs_path *path;
22972eadb9e7SNikolay Borisov 	struct btrfs_dev_extent *extent;
22982eadb9e7SNikolay Borisov 	struct extent_buffer *leaf;
22992eadb9e7SNikolay Borisov 	struct btrfs_key key;
23002eadb9e7SNikolay Borisov 	int ret;
23012eadb9e7SNikolay Borisov 
23022eadb9e7SNikolay Borisov 	WARN_ON(!test_bit(BTRFS_DEV_STATE_IN_FS_METADATA, &device->dev_state));
23032eadb9e7SNikolay Borisov 	WARN_ON(test_bit(BTRFS_DEV_STATE_REPLACE_TGT, &device->dev_state));
23042eadb9e7SNikolay Borisov 	path = btrfs_alloc_path();
23052eadb9e7SNikolay Borisov 	if (!path)
23062eadb9e7SNikolay Borisov 		return -ENOMEM;
23072eadb9e7SNikolay Borisov 
23082eadb9e7SNikolay Borisov 	key.objectid = device->devid;
23092eadb9e7SNikolay Borisov 	key.type = BTRFS_DEV_EXTENT_KEY;
23102eadb9e7SNikolay Borisov 	key.offset = start;
23112eadb9e7SNikolay Borisov 	ret = btrfs_insert_empty_item(trans, root, path, &key, sizeof(*extent));
23122eadb9e7SNikolay Borisov 	if (ret)
23132eadb9e7SNikolay Borisov 		goto out;
23142eadb9e7SNikolay Borisov 
23152eadb9e7SNikolay Borisov 	leaf = path->nodes[0];
23162eadb9e7SNikolay Borisov 	extent = btrfs_item_ptr(leaf, path->slots[0], struct btrfs_dev_extent);
23172eadb9e7SNikolay Borisov 	btrfs_set_dev_extent_chunk_tree(leaf, extent, BTRFS_CHUNK_TREE_OBJECTID);
23182eadb9e7SNikolay Borisov 	btrfs_set_dev_extent_chunk_objectid(leaf, extent,
23192eadb9e7SNikolay Borisov 					    BTRFS_FIRST_CHUNK_TREE_OBJECTID);
23202eadb9e7SNikolay Borisov 	btrfs_set_dev_extent_chunk_offset(leaf, extent, chunk_offset);
23212eadb9e7SNikolay Borisov 
23222eadb9e7SNikolay Borisov 	btrfs_set_dev_extent_length(leaf, extent, num_bytes);
23232eadb9e7SNikolay Borisov 	btrfs_mark_buffer_dirty(leaf);
23242eadb9e7SNikolay Borisov out:
23252eadb9e7SNikolay Borisov 	btrfs_free_path(path);
23262eadb9e7SNikolay Borisov 	return ret;
23272eadb9e7SNikolay Borisov }
23282eadb9e7SNikolay Borisov 
23292eadb9e7SNikolay Borisov /*
23302eadb9e7SNikolay Borisov  * This function belongs to phase 2.
23312eadb9e7SNikolay Borisov  *
23322eadb9e7SNikolay Borisov  * See the comment at btrfs_chunk_alloc() for details about the chunk allocation
23332eadb9e7SNikolay Borisov  * phases.
23342eadb9e7SNikolay Borisov  */
23352eadb9e7SNikolay Borisov static int insert_dev_extents(struct btrfs_trans_handle *trans,
23362eadb9e7SNikolay Borisov 				   u64 chunk_offset, u64 chunk_size)
23372eadb9e7SNikolay Borisov {
23382eadb9e7SNikolay Borisov 	struct btrfs_fs_info *fs_info = trans->fs_info;
23392eadb9e7SNikolay Borisov 	struct btrfs_device *device;
23402eadb9e7SNikolay Borisov 	struct extent_map *em;
23412eadb9e7SNikolay Borisov 	struct map_lookup *map;
23422eadb9e7SNikolay Borisov 	u64 dev_offset;
23432eadb9e7SNikolay Borisov 	u64 stripe_size;
23442eadb9e7SNikolay Borisov 	int i;
23452eadb9e7SNikolay Borisov 	int ret = 0;
23462eadb9e7SNikolay Borisov 
23472eadb9e7SNikolay Borisov 	em = btrfs_get_chunk_map(fs_info, chunk_offset, chunk_size);
23482eadb9e7SNikolay Borisov 	if (IS_ERR(em))
23492eadb9e7SNikolay Borisov 		return PTR_ERR(em);
23502eadb9e7SNikolay Borisov 
23512eadb9e7SNikolay Borisov 	map = em->map_lookup;
23522eadb9e7SNikolay Borisov 	stripe_size = em->orig_block_len;
23532eadb9e7SNikolay Borisov 
23542eadb9e7SNikolay Borisov 	/*
23552eadb9e7SNikolay Borisov 	 * Take the device list mutex to prevent races with the final phase of
23562eadb9e7SNikolay Borisov 	 * a device replace operation that replaces the device object associated
23572eadb9e7SNikolay Borisov 	 * with the map's stripes, because the device object's id can change
23582eadb9e7SNikolay Borisov 	 * at any time during that final phase of the device replace operation
23592eadb9e7SNikolay Borisov 	 * (dev-replace.c:btrfs_dev_replace_finishing()), so we could grab the
23602eadb9e7SNikolay Borisov 	 * replaced device and then see it with an ID of BTRFS_DEV_REPLACE_DEVID,
23612eadb9e7SNikolay Borisov 	 * resulting in persisting a device extent item with such ID.
23622eadb9e7SNikolay Borisov 	 */
23632eadb9e7SNikolay Borisov 	mutex_lock(&fs_info->fs_devices->device_list_mutex);
23642eadb9e7SNikolay Borisov 	for (i = 0; i < map->num_stripes; i++) {
23652eadb9e7SNikolay Borisov 		device = map->stripes[i].dev;
23662eadb9e7SNikolay Borisov 		dev_offset = map->stripes[i].physical;
23672eadb9e7SNikolay Borisov 
23682eadb9e7SNikolay Borisov 		ret = insert_dev_extent(trans, device, chunk_offset, dev_offset,
23692eadb9e7SNikolay Borisov 				       stripe_size);
23702eadb9e7SNikolay Borisov 		if (ret)
23712eadb9e7SNikolay Borisov 			break;
23722eadb9e7SNikolay Borisov 	}
23732eadb9e7SNikolay Borisov 	mutex_unlock(&fs_info->fs_devices->device_list_mutex);
23742eadb9e7SNikolay Borisov 
23752eadb9e7SNikolay Borisov 	free_extent_map(em);
23762eadb9e7SNikolay Borisov 	return ret;
23772eadb9e7SNikolay Borisov }
23782eadb9e7SNikolay Borisov 
237979bd3712SFilipe Manana /*
238079bd3712SFilipe Manana  * This function, btrfs_create_pending_block_groups(), belongs to the phase 2 of
238179bd3712SFilipe Manana  * chunk allocation.
238279bd3712SFilipe Manana  *
238379bd3712SFilipe Manana  * See the comment at btrfs_chunk_alloc() for details about the chunk allocation
238479bd3712SFilipe Manana  * phases.
238579bd3712SFilipe Manana  */
23864358d963SJosef Bacik void btrfs_create_pending_block_groups(struct btrfs_trans_handle *trans)
23874358d963SJosef Bacik {
23884358d963SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
238932da5386SDavid Sterba 	struct btrfs_block_group *block_group;
23904358d963SJosef Bacik 	int ret = 0;
23914358d963SJosef Bacik 
23924358d963SJosef Bacik 	while (!list_empty(&trans->new_bgs)) {
239349ea112dSJosef Bacik 		int index;
239449ea112dSJosef Bacik 
23954358d963SJosef Bacik 		block_group = list_first_entry(&trans->new_bgs,
239632da5386SDavid Sterba 					       struct btrfs_block_group,
23974358d963SJosef Bacik 					       bg_list);
23984358d963SJosef Bacik 		if (ret)
23994358d963SJosef Bacik 			goto next;
24004358d963SJosef Bacik 
240149ea112dSJosef Bacik 		index = btrfs_bg_flags_to_raid_index(block_group->flags);
240249ea112dSJosef Bacik 
240397f4728aSQu Wenruo 		ret = insert_block_group_item(trans, block_group);
24044358d963SJosef Bacik 		if (ret)
24054358d963SJosef Bacik 			btrfs_abort_transaction(trans, ret);
240679bd3712SFilipe Manana 		if (!block_group->chunk_item_inserted) {
240779bd3712SFilipe Manana 			mutex_lock(&fs_info->chunk_mutex);
240879bd3712SFilipe Manana 			ret = btrfs_chunk_alloc_add_chunk_item(trans, block_group);
240979bd3712SFilipe Manana 			mutex_unlock(&fs_info->chunk_mutex);
241079bd3712SFilipe Manana 			if (ret)
241179bd3712SFilipe Manana 				btrfs_abort_transaction(trans, ret);
241279bd3712SFilipe Manana 		}
24132eadb9e7SNikolay Borisov 		ret = insert_dev_extents(trans, block_group->start,
241497f4728aSQu Wenruo 					 block_group->length);
24154358d963SJosef Bacik 		if (ret)
24164358d963SJosef Bacik 			btrfs_abort_transaction(trans, ret);
24174358d963SJosef Bacik 		add_block_group_free_space(trans, block_group);
241849ea112dSJosef Bacik 
241949ea112dSJosef Bacik 		/*
242049ea112dSJosef Bacik 		 * If we restriped during balance, we may have added a new raid
242149ea112dSJosef Bacik 		 * type, so now add the sysfs entries when it is safe to do so.
242249ea112dSJosef Bacik 		 * We don't have to worry about locking here as it's handled in
242349ea112dSJosef Bacik 		 * btrfs_sysfs_add_block_group_type.
242449ea112dSJosef Bacik 		 */
242549ea112dSJosef Bacik 		if (block_group->space_info->block_group_kobjs[index] == NULL)
242649ea112dSJosef Bacik 			btrfs_sysfs_add_block_group_type(block_group);
242749ea112dSJosef Bacik 
24284358d963SJosef Bacik 		/* Already aborted the transaction if it failed. */
24294358d963SJosef Bacik next:
24304358d963SJosef Bacik 		btrfs_delayed_refs_rsv_release(fs_info, 1);
24314358d963SJosef Bacik 		list_del_init(&block_group->bg_list);
24324358d963SJosef Bacik 	}
24334358d963SJosef Bacik 	btrfs_trans_release_chunk_metadata(trans);
24344358d963SJosef Bacik }
24354358d963SJosef Bacik 
2436f7238e50SJosef Bacik /*
2437f7238e50SJosef Bacik  * For extent tree v2 we use the block_group_item->chunk_offset to point at our
2438f7238e50SJosef Bacik  * global root id.  For v1 it's always set to BTRFS_FIRST_CHUNK_TREE_OBJECTID.
2439f7238e50SJosef Bacik  */
2440f7238e50SJosef Bacik static u64 calculate_global_root_id(struct btrfs_fs_info *fs_info, u64 offset)
2441f7238e50SJosef Bacik {
2442f7238e50SJosef Bacik 	u64 div = SZ_1G;
2443f7238e50SJosef Bacik 	u64 index;
2444f7238e50SJosef Bacik 
2445f7238e50SJosef Bacik 	if (!btrfs_fs_incompat(fs_info, EXTENT_TREE_V2))
2446f7238e50SJosef Bacik 		return BTRFS_FIRST_CHUNK_TREE_OBJECTID;
2447f7238e50SJosef Bacik 
2448f7238e50SJosef Bacik 	/* If we have a smaller fs index based on 128MiB. */
2449f7238e50SJosef Bacik 	if (btrfs_super_total_bytes(fs_info->super_copy) <= (SZ_1G * 10ULL))
2450f7238e50SJosef Bacik 		div = SZ_128M;
2451f7238e50SJosef Bacik 
2452f7238e50SJosef Bacik 	offset = div64_u64(offset, div);
2453f7238e50SJosef Bacik 	div64_u64_rem(offset, fs_info->nr_global_roots, &index);
2454f7238e50SJosef Bacik 	return index;
2455f7238e50SJosef Bacik }
2456f7238e50SJosef Bacik 
245779bd3712SFilipe Manana struct btrfs_block_group *btrfs_make_block_group(struct btrfs_trans_handle *trans,
245879bd3712SFilipe Manana 						 u64 bytes_used, u64 type,
245979bd3712SFilipe Manana 						 u64 chunk_offset, u64 size)
24604358d963SJosef Bacik {
24614358d963SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
246232da5386SDavid Sterba 	struct btrfs_block_group *cache;
24634358d963SJosef Bacik 	int ret;
24644358d963SJosef Bacik 
24654358d963SJosef Bacik 	btrfs_set_log_full_commit(trans);
24664358d963SJosef Bacik 
24679afc6649SQu Wenruo 	cache = btrfs_create_block_group_cache(fs_info, chunk_offset);
24684358d963SJosef Bacik 	if (!cache)
246979bd3712SFilipe Manana 		return ERR_PTR(-ENOMEM);
24704358d963SJosef Bacik 
24719afc6649SQu Wenruo 	cache->length = size;
2472e3e39c72SMarcos Paulo de Souza 	set_free_space_tree_thresholds(cache);
2473bf38be65SDavid Sterba 	cache->used = bytes_used;
24744358d963SJosef Bacik 	cache->flags = type;
24754358d963SJosef Bacik 	cache->last_byte_to_unpin = (u64)-1;
24764358d963SJosef Bacik 	cache->cached = BTRFS_CACHE_FINISHED;
2477f7238e50SJosef Bacik 	cache->global_root_id = calculate_global_root_id(fs_info, cache->start);
2478f7238e50SJosef Bacik 
2479997e3e2eSBoris Burkov 	if (btrfs_fs_compat_ro(fs_info, FREE_SPACE_TREE))
24804358d963SJosef Bacik 		cache->needs_free_space = 1;
248108e11a3dSNaohiro Aota 
2482a94794d5SNaohiro Aota 	ret = btrfs_load_block_group_zone_info(cache, true);
248308e11a3dSNaohiro Aota 	if (ret) {
248408e11a3dSNaohiro Aota 		btrfs_put_block_group(cache);
248579bd3712SFilipe Manana 		return ERR_PTR(ret);
248608e11a3dSNaohiro Aota 	}
248708e11a3dSNaohiro Aota 
24884358d963SJosef Bacik 	ret = exclude_super_stripes(cache);
24894358d963SJosef Bacik 	if (ret) {
24904358d963SJosef Bacik 		/* We may have excluded something, so call this just in case */
24914358d963SJosef Bacik 		btrfs_free_excluded_extents(cache);
24924358d963SJosef Bacik 		btrfs_put_block_group(cache);
249379bd3712SFilipe Manana 		return ERR_PTR(ret);
24944358d963SJosef Bacik 	}
24954358d963SJosef Bacik 
24964358d963SJosef Bacik 	add_new_free_space(cache, chunk_offset, chunk_offset + size);
24974358d963SJosef Bacik 
24984358d963SJosef Bacik 	btrfs_free_excluded_extents(cache);
24994358d963SJosef Bacik 
25004358d963SJosef Bacik #ifdef CONFIG_BTRFS_DEBUG
25014358d963SJosef Bacik 	if (btrfs_should_fragment_free_space(cache)) {
25024358d963SJosef Bacik 		u64 new_bytes_used = size - bytes_used;
25034358d963SJosef Bacik 
25044358d963SJosef Bacik 		bytes_used += new_bytes_used >> 1;
2505e11c0406SJosef Bacik 		fragment_free_space(cache);
25064358d963SJosef Bacik 	}
25074358d963SJosef Bacik #endif
25084358d963SJosef Bacik 	/*
25094358d963SJosef Bacik 	 * Ensure the corresponding space_info object is created and
25104358d963SJosef Bacik 	 * assigned to our block group. We want our bg to be added to the rbtree
25114358d963SJosef Bacik 	 * with its ->space_info set.
25124358d963SJosef Bacik 	 */
25134358d963SJosef Bacik 	cache->space_info = btrfs_find_space_info(fs_info, cache->flags);
25144358d963SJosef Bacik 	ASSERT(cache->space_info);
25154358d963SJosef Bacik 
25164358d963SJosef Bacik 	ret = btrfs_add_block_group_cache(fs_info, cache);
25174358d963SJosef Bacik 	if (ret) {
25184358d963SJosef Bacik 		btrfs_remove_free_space_cache(cache);
25194358d963SJosef Bacik 		btrfs_put_block_group(cache);
252079bd3712SFilipe Manana 		return ERR_PTR(ret);
25214358d963SJosef Bacik 	}
25224358d963SJosef Bacik 
25234358d963SJosef Bacik 	/*
25244358d963SJosef Bacik 	 * Now that our block group has its ->space_info set and is inserted in
25254358d963SJosef Bacik 	 * the rbtree, update the space info's counters.
25264358d963SJosef Bacik 	 */
25274358d963SJosef Bacik 	trace_btrfs_add_block_group(fs_info, cache, 1);
25284358d963SJosef Bacik 	btrfs_update_space_info(fs_info, cache->flags, size, bytes_used,
252998173255SNaohiro Aota 				cache->bytes_super, cache->zone_unusable,
253098173255SNaohiro Aota 				&cache->space_info);
25314358d963SJosef Bacik 	btrfs_update_global_block_rsv(fs_info);
25324358d963SJosef Bacik 
25334358d963SJosef Bacik 	link_block_group(cache);
25344358d963SJosef Bacik 
25354358d963SJosef Bacik 	list_add_tail(&cache->bg_list, &trans->new_bgs);
25364358d963SJosef Bacik 	trans->delayed_ref_updates++;
25374358d963SJosef Bacik 	btrfs_update_delayed_refs_rsv(trans);
25384358d963SJosef Bacik 
25394358d963SJosef Bacik 	set_avail_alloc_bits(fs_info, type);
254079bd3712SFilipe Manana 	return cache;
25414358d963SJosef Bacik }
254226ce2095SJosef Bacik 
2543b12de528SQu Wenruo /*
2544b12de528SQu Wenruo  * Mark one block group RO, can be called several times for the same block
2545b12de528SQu Wenruo  * group.
2546b12de528SQu Wenruo  *
2547b12de528SQu Wenruo  * @cache:		the destination block group
2548b12de528SQu Wenruo  * @do_chunk_alloc:	whether need to do chunk pre-allocation, this is to
2549b12de528SQu Wenruo  * 			ensure we still have some free space after marking this
2550b12de528SQu Wenruo  * 			block group RO.
2551b12de528SQu Wenruo  */
2552b12de528SQu Wenruo int btrfs_inc_block_group_ro(struct btrfs_block_group *cache,
2553b12de528SQu Wenruo 			     bool do_chunk_alloc)
255426ce2095SJosef Bacik {
255526ce2095SJosef Bacik 	struct btrfs_fs_info *fs_info = cache->fs_info;
255626ce2095SJosef Bacik 	struct btrfs_trans_handle *trans;
2557dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(fs_info);
255826ce2095SJosef Bacik 	u64 alloc_flags;
255926ce2095SJosef Bacik 	int ret;
2560b6e9f16cSNikolay Borisov 	bool dirty_bg_running;
256126ce2095SJosef Bacik 
25622d192fc4SQu Wenruo 	/*
25632d192fc4SQu Wenruo 	 * This can only happen when we are doing read-only scrub on read-only
25642d192fc4SQu Wenruo 	 * mount.
25652d192fc4SQu Wenruo 	 * In that case we should not start a new transaction on read-only fs.
25662d192fc4SQu Wenruo 	 * Thus here we skip all chunk allocations.
25672d192fc4SQu Wenruo 	 */
25682d192fc4SQu Wenruo 	if (sb_rdonly(fs_info->sb)) {
25692d192fc4SQu Wenruo 		mutex_lock(&fs_info->ro_block_group_mutex);
25702d192fc4SQu Wenruo 		ret = inc_block_group_ro(cache, 0);
25712d192fc4SQu Wenruo 		mutex_unlock(&fs_info->ro_block_group_mutex);
25722d192fc4SQu Wenruo 		return ret;
25732d192fc4SQu Wenruo 	}
25742d192fc4SQu Wenruo 
2575b6e9f16cSNikolay Borisov 	do {
2576dfe8aec4SJosef Bacik 		trans = btrfs_join_transaction(root);
257726ce2095SJosef Bacik 		if (IS_ERR(trans))
257826ce2095SJosef Bacik 			return PTR_ERR(trans);
257926ce2095SJosef Bacik 
2580b6e9f16cSNikolay Borisov 		dirty_bg_running = false;
2581b6e9f16cSNikolay Borisov 
258226ce2095SJosef Bacik 		/*
2583b6e9f16cSNikolay Borisov 		 * We're not allowed to set block groups readonly after the dirty
2584b6e9f16cSNikolay Borisov 		 * block group cache has started writing.  If it already started,
2585b6e9f16cSNikolay Borisov 		 * back off and let this transaction commit.
258626ce2095SJosef Bacik 		 */
258726ce2095SJosef Bacik 		mutex_lock(&fs_info->ro_block_group_mutex);
258826ce2095SJosef Bacik 		if (test_bit(BTRFS_TRANS_DIRTY_BG_RUN, &trans->transaction->flags)) {
258926ce2095SJosef Bacik 			u64 transid = trans->transid;
259026ce2095SJosef Bacik 
259126ce2095SJosef Bacik 			mutex_unlock(&fs_info->ro_block_group_mutex);
259226ce2095SJosef Bacik 			btrfs_end_transaction(trans);
259326ce2095SJosef Bacik 
259426ce2095SJosef Bacik 			ret = btrfs_wait_for_commit(fs_info, transid);
259526ce2095SJosef Bacik 			if (ret)
259626ce2095SJosef Bacik 				return ret;
2597b6e9f16cSNikolay Borisov 			dirty_bg_running = true;
259826ce2095SJosef Bacik 		}
2599b6e9f16cSNikolay Borisov 	} while (dirty_bg_running);
260026ce2095SJosef Bacik 
2601b12de528SQu Wenruo 	if (do_chunk_alloc) {
260226ce2095SJosef Bacik 		/*
2603b12de528SQu Wenruo 		 * If we are changing raid levels, try to allocate a
2604b12de528SQu Wenruo 		 * corresponding block group with the new raid level.
260526ce2095SJosef Bacik 		 */
2606349e120eSJosef Bacik 		alloc_flags = btrfs_get_alloc_profile(fs_info, cache->flags);
260726ce2095SJosef Bacik 		if (alloc_flags != cache->flags) {
2608b12de528SQu Wenruo 			ret = btrfs_chunk_alloc(trans, alloc_flags,
2609b12de528SQu Wenruo 						CHUNK_ALLOC_FORCE);
261026ce2095SJosef Bacik 			/*
261126ce2095SJosef Bacik 			 * ENOSPC is allowed here, we may have enough space
2612b12de528SQu Wenruo 			 * already allocated at the new raid level to carry on
261326ce2095SJosef Bacik 			 */
261426ce2095SJosef Bacik 			if (ret == -ENOSPC)
261526ce2095SJosef Bacik 				ret = 0;
261626ce2095SJosef Bacik 			if (ret < 0)
261726ce2095SJosef Bacik 				goto out;
261826ce2095SJosef Bacik 		}
2619b12de528SQu Wenruo 	}
262026ce2095SJosef Bacik 
2621a7a63accSJosef Bacik 	ret = inc_block_group_ro(cache, 0);
2622195a49eaSFilipe Manana 	if (!do_chunk_alloc || ret == -ETXTBSY)
2623b12de528SQu Wenruo 		goto unlock_out;
262426ce2095SJosef Bacik 	if (!ret)
262526ce2095SJosef Bacik 		goto out;
262626ce2095SJosef Bacik 	alloc_flags = btrfs_get_alloc_profile(fs_info, cache->space_info->flags);
262726ce2095SJosef Bacik 	ret = btrfs_chunk_alloc(trans, alloc_flags, CHUNK_ALLOC_FORCE);
262826ce2095SJosef Bacik 	if (ret < 0)
262926ce2095SJosef Bacik 		goto out;
2630e11c0406SJosef Bacik 	ret = inc_block_group_ro(cache, 0);
2631195a49eaSFilipe Manana 	if (ret == -ETXTBSY)
2632195a49eaSFilipe Manana 		goto unlock_out;
263326ce2095SJosef Bacik out:
263426ce2095SJosef Bacik 	if (cache->flags & BTRFS_BLOCK_GROUP_SYSTEM) {
2635349e120eSJosef Bacik 		alloc_flags = btrfs_get_alloc_profile(fs_info, cache->flags);
263626ce2095SJosef Bacik 		mutex_lock(&fs_info->chunk_mutex);
263726ce2095SJosef Bacik 		check_system_chunk(trans, alloc_flags);
263826ce2095SJosef Bacik 		mutex_unlock(&fs_info->chunk_mutex);
263926ce2095SJosef Bacik 	}
2640b12de528SQu Wenruo unlock_out:
264126ce2095SJosef Bacik 	mutex_unlock(&fs_info->ro_block_group_mutex);
264226ce2095SJosef Bacik 
264326ce2095SJosef Bacik 	btrfs_end_transaction(trans);
264426ce2095SJosef Bacik 	return ret;
264526ce2095SJosef Bacik }
264626ce2095SJosef Bacik 
264732da5386SDavid Sterba void btrfs_dec_block_group_ro(struct btrfs_block_group *cache)
264826ce2095SJosef Bacik {
264926ce2095SJosef Bacik 	struct btrfs_space_info *sinfo = cache->space_info;
265026ce2095SJosef Bacik 	u64 num_bytes;
265126ce2095SJosef Bacik 
265226ce2095SJosef Bacik 	BUG_ON(!cache->ro);
265326ce2095SJosef Bacik 
265426ce2095SJosef Bacik 	spin_lock(&sinfo->lock);
265526ce2095SJosef Bacik 	spin_lock(&cache->lock);
265626ce2095SJosef Bacik 	if (!--cache->ro) {
2657169e0da9SNaohiro Aota 		if (btrfs_is_zoned(cache->fs_info)) {
2658169e0da9SNaohiro Aota 			/* Migrate zone_unusable bytes back */
265998173255SNaohiro Aota 			cache->zone_unusable =
266098173255SNaohiro Aota 				(cache->alloc_offset - cache->used) +
266198173255SNaohiro Aota 				(cache->length - cache->zone_capacity);
2662169e0da9SNaohiro Aota 			sinfo->bytes_zone_unusable += cache->zone_unusable;
2663169e0da9SNaohiro Aota 			sinfo->bytes_readonly -= cache->zone_unusable;
2664169e0da9SNaohiro Aota 		}
2665f9f28e5bSNaohiro Aota 		num_bytes = cache->length - cache->reserved -
2666f9f28e5bSNaohiro Aota 			    cache->pinned - cache->bytes_super -
2667f9f28e5bSNaohiro Aota 			    cache->zone_unusable - cache->used;
2668f9f28e5bSNaohiro Aota 		sinfo->bytes_readonly -= num_bytes;
266926ce2095SJosef Bacik 		list_del_init(&cache->ro_list);
267026ce2095SJosef Bacik 	}
267126ce2095SJosef Bacik 	spin_unlock(&cache->lock);
267226ce2095SJosef Bacik 	spin_unlock(&sinfo->lock);
267326ce2095SJosef Bacik }
267477745c05SJosef Bacik 
26753be4d8efSQu Wenruo static int update_block_group_item(struct btrfs_trans_handle *trans,
267677745c05SJosef Bacik 				   struct btrfs_path *path,
267732da5386SDavid Sterba 				   struct btrfs_block_group *cache)
267877745c05SJosef Bacik {
267977745c05SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
268077745c05SJosef Bacik 	int ret;
2681dfe8aec4SJosef Bacik 	struct btrfs_root *root = btrfs_block_group_root(fs_info);
268277745c05SJosef Bacik 	unsigned long bi;
268377745c05SJosef Bacik 	struct extent_buffer *leaf;
2684bf38be65SDavid Sterba 	struct btrfs_block_group_item bgi;
2685b3470b5dSDavid Sterba 	struct btrfs_key key;
268677745c05SJosef Bacik 
2687b3470b5dSDavid Sterba 	key.objectid = cache->start;
2688b3470b5dSDavid Sterba 	key.type = BTRFS_BLOCK_GROUP_ITEM_KEY;
2689b3470b5dSDavid Sterba 	key.offset = cache->length;
2690b3470b5dSDavid Sterba 
26913be4d8efSQu Wenruo 	ret = btrfs_search_slot(trans, root, &key, path, 0, 1);
269277745c05SJosef Bacik 	if (ret) {
269377745c05SJosef Bacik 		if (ret > 0)
269477745c05SJosef Bacik 			ret = -ENOENT;
269577745c05SJosef Bacik 		goto fail;
269677745c05SJosef Bacik 	}
269777745c05SJosef Bacik 
269877745c05SJosef Bacik 	leaf = path->nodes[0];
269977745c05SJosef Bacik 	bi = btrfs_item_ptr_offset(leaf, path->slots[0]);
2700de0dc456SDavid Sterba 	btrfs_set_stack_block_group_used(&bgi, cache->used);
2701de0dc456SDavid Sterba 	btrfs_set_stack_block_group_chunk_objectid(&bgi,
2702f7238e50SJosef Bacik 						   cache->global_root_id);
2703de0dc456SDavid Sterba 	btrfs_set_stack_block_group_flags(&bgi, cache->flags);
2704bf38be65SDavid Sterba 	write_extent_buffer(leaf, &bgi, bi, sizeof(bgi));
270577745c05SJosef Bacik 	btrfs_mark_buffer_dirty(leaf);
270677745c05SJosef Bacik fail:
270777745c05SJosef Bacik 	btrfs_release_path(path);
270877745c05SJosef Bacik 	return ret;
270977745c05SJosef Bacik 
271077745c05SJosef Bacik }
271177745c05SJosef Bacik 
271232da5386SDavid Sterba static int cache_save_setup(struct btrfs_block_group *block_group,
271377745c05SJosef Bacik 			    struct btrfs_trans_handle *trans,
271477745c05SJosef Bacik 			    struct btrfs_path *path)
271577745c05SJosef Bacik {
271677745c05SJosef Bacik 	struct btrfs_fs_info *fs_info = block_group->fs_info;
271777745c05SJosef Bacik 	struct btrfs_root *root = fs_info->tree_root;
271877745c05SJosef Bacik 	struct inode *inode = NULL;
271977745c05SJosef Bacik 	struct extent_changeset *data_reserved = NULL;
272077745c05SJosef Bacik 	u64 alloc_hint = 0;
272177745c05SJosef Bacik 	int dcs = BTRFS_DC_ERROR;
27220044ae11SQu Wenruo 	u64 cache_size = 0;
272377745c05SJosef Bacik 	int retries = 0;
272477745c05SJosef Bacik 	int ret = 0;
272577745c05SJosef Bacik 
2726af456a2cSBoris Burkov 	if (!btrfs_test_opt(fs_info, SPACE_CACHE))
2727af456a2cSBoris Burkov 		return 0;
2728af456a2cSBoris Burkov 
272977745c05SJosef Bacik 	/*
273077745c05SJosef Bacik 	 * If this block group is smaller than 100 megs don't bother caching the
273177745c05SJosef Bacik 	 * block group.
273277745c05SJosef Bacik 	 */
2733b3470b5dSDavid Sterba 	if (block_group->length < (100 * SZ_1M)) {
273477745c05SJosef Bacik 		spin_lock(&block_group->lock);
273577745c05SJosef Bacik 		block_group->disk_cache_state = BTRFS_DC_WRITTEN;
273677745c05SJosef Bacik 		spin_unlock(&block_group->lock);
273777745c05SJosef Bacik 		return 0;
273877745c05SJosef Bacik 	}
273977745c05SJosef Bacik 
2740bf31f87fSDavid Sterba 	if (TRANS_ABORTED(trans))
274177745c05SJosef Bacik 		return 0;
274277745c05SJosef Bacik again:
274377745c05SJosef Bacik 	inode = lookup_free_space_inode(block_group, path);
274477745c05SJosef Bacik 	if (IS_ERR(inode) && PTR_ERR(inode) != -ENOENT) {
274577745c05SJosef Bacik 		ret = PTR_ERR(inode);
274677745c05SJosef Bacik 		btrfs_release_path(path);
274777745c05SJosef Bacik 		goto out;
274877745c05SJosef Bacik 	}
274977745c05SJosef Bacik 
275077745c05SJosef Bacik 	if (IS_ERR(inode)) {
275177745c05SJosef Bacik 		BUG_ON(retries);
275277745c05SJosef Bacik 		retries++;
275377745c05SJosef Bacik 
275477745c05SJosef Bacik 		if (block_group->ro)
275577745c05SJosef Bacik 			goto out_free;
275677745c05SJosef Bacik 
275777745c05SJosef Bacik 		ret = create_free_space_inode(trans, block_group, path);
275877745c05SJosef Bacik 		if (ret)
275977745c05SJosef Bacik 			goto out_free;
276077745c05SJosef Bacik 		goto again;
276177745c05SJosef Bacik 	}
276277745c05SJosef Bacik 
276377745c05SJosef Bacik 	/*
276477745c05SJosef Bacik 	 * We want to set the generation to 0, that way if anything goes wrong
276577745c05SJosef Bacik 	 * from here on out we know not to trust this cache when we load up next
276677745c05SJosef Bacik 	 * time.
276777745c05SJosef Bacik 	 */
276877745c05SJosef Bacik 	BTRFS_I(inode)->generation = 0;
27699a56fcd1SNikolay Borisov 	ret = btrfs_update_inode(trans, root, BTRFS_I(inode));
277077745c05SJosef Bacik 	if (ret) {
277177745c05SJosef Bacik 		/*
277277745c05SJosef Bacik 		 * So theoretically we could recover from this, simply set the
277377745c05SJosef Bacik 		 * super cache generation to 0 so we know to invalidate the
277477745c05SJosef Bacik 		 * cache, but then we'd have to keep track of the block groups
277577745c05SJosef Bacik 		 * that fail this way so we know we _have_ to reset this cache
277677745c05SJosef Bacik 		 * before the next commit or risk reading stale cache.  So to
277777745c05SJosef Bacik 		 * limit our exposure to horrible edge cases lets just abort the
277877745c05SJosef Bacik 		 * transaction, this only happens in really bad situations
277977745c05SJosef Bacik 		 * anyway.
278077745c05SJosef Bacik 		 */
278177745c05SJosef Bacik 		btrfs_abort_transaction(trans, ret);
278277745c05SJosef Bacik 		goto out_put;
278377745c05SJosef Bacik 	}
278477745c05SJosef Bacik 	WARN_ON(ret);
278577745c05SJosef Bacik 
278677745c05SJosef Bacik 	/* We've already setup this transaction, go ahead and exit */
278777745c05SJosef Bacik 	if (block_group->cache_generation == trans->transid &&
278877745c05SJosef Bacik 	    i_size_read(inode)) {
278977745c05SJosef Bacik 		dcs = BTRFS_DC_SETUP;
279077745c05SJosef Bacik 		goto out_put;
279177745c05SJosef Bacik 	}
279277745c05SJosef Bacik 
279377745c05SJosef Bacik 	if (i_size_read(inode) > 0) {
279477745c05SJosef Bacik 		ret = btrfs_check_trunc_cache_free_space(fs_info,
279577745c05SJosef Bacik 					&fs_info->global_block_rsv);
279677745c05SJosef Bacik 		if (ret)
279777745c05SJosef Bacik 			goto out_put;
279877745c05SJosef Bacik 
279977745c05SJosef Bacik 		ret = btrfs_truncate_free_space_cache(trans, NULL, inode);
280077745c05SJosef Bacik 		if (ret)
280177745c05SJosef Bacik 			goto out_put;
280277745c05SJosef Bacik 	}
280377745c05SJosef Bacik 
280477745c05SJosef Bacik 	spin_lock(&block_group->lock);
280577745c05SJosef Bacik 	if (block_group->cached != BTRFS_CACHE_FINISHED ||
280677745c05SJosef Bacik 	    !btrfs_test_opt(fs_info, SPACE_CACHE)) {
280777745c05SJosef Bacik 		/*
280877745c05SJosef Bacik 		 * don't bother trying to write stuff out _if_
280977745c05SJosef Bacik 		 * a) we're not cached,
281077745c05SJosef Bacik 		 * b) we're with nospace_cache mount option,
281177745c05SJosef Bacik 		 * c) we're with v2 space_cache (FREE_SPACE_TREE).
281277745c05SJosef Bacik 		 */
281377745c05SJosef Bacik 		dcs = BTRFS_DC_WRITTEN;
281477745c05SJosef Bacik 		spin_unlock(&block_group->lock);
281577745c05SJosef Bacik 		goto out_put;
281677745c05SJosef Bacik 	}
281777745c05SJosef Bacik 	spin_unlock(&block_group->lock);
281877745c05SJosef Bacik 
281977745c05SJosef Bacik 	/*
282077745c05SJosef Bacik 	 * We hit an ENOSPC when setting up the cache in this transaction, just
282177745c05SJosef Bacik 	 * skip doing the setup, we've already cleared the cache so we're safe.
282277745c05SJosef Bacik 	 */
282377745c05SJosef Bacik 	if (test_bit(BTRFS_TRANS_CACHE_ENOSPC, &trans->transaction->flags)) {
282477745c05SJosef Bacik 		ret = -ENOSPC;
282577745c05SJosef Bacik 		goto out_put;
282677745c05SJosef Bacik 	}
282777745c05SJosef Bacik 
282877745c05SJosef Bacik 	/*
282977745c05SJosef Bacik 	 * Try to preallocate enough space based on how big the block group is.
283077745c05SJosef Bacik 	 * Keep in mind this has to include any pinned space which could end up
283177745c05SJosef Bacik 	 * taking up quite a bit since it's not folded into the other space
283277745c05SJosef Bacik 	 * cache.
283377745c05SJosef Bacik 	 */
28340044ae11SQu Wenruo 	cache_size = div_u64(block_group->length, SZ_256M);
28350044ae11SQu Wenruo 	if (!cache_size)
28360044ae11SQu Wenruo 		cache_size = 1;
283777745c05SJosef Bacik 
28380044ae11SQu Wenruo 	cache_size *= 16;
28390044ae11SQu Wenruo 	cache_size *= fs_info->sectorsize;
284077745c05SJosef Bacik 
284136ea6f3eSNikolay Borisov 	ret = btrfs_check_data_free_space(BTRFS_I(inode), &data_reserved, 0,
28420044ae11SQu Wenruo 					  cache_size);
284377745c05SJosef Bacik 	if (ret)
284477745c05SJosef Bacik 		goto out_put;
284577745c05SJosef Bacik 
28460044ae11SQu Wenruo 	ret = btrfs_prealloc_file_range_trans(inode, trans, 0, 0, cache_size,
28470044ae11SQu Wenruo 					      cache_size, cache_size,
284877745c05SJosef Bacik 					      &alloc_hint);
284977745c05SJosef Bacik 	/*
285077745c05SJosef Bacik 	 * Our cache requires contiguous chunks so that we don't modify a bunch
285177745c05SJosef Bacik 	 * of metadata or split extents when writing the cache out, which means
285277745c05SJosef Bacik 	 * we can enospc if we are heavily fragmented in addition to just normal
285377745c05SJosef Bacik 	 * out of space conditions.  So if we hit this just skip setting up any
285477745c05SJosef Bacik 	 * other block groups for this transaction, maybe we'll unpin enough
285577745c05SJosef Bacik 	 * space the next time around.
285677745c05SJosef Bacik 	 */
285777745c05SJosef Bacik 	if (!ret)
285877745c05SJosef Bacik 		dcs = BTRFS_DC_SETUP;
285977745c05SJosef Bacik 	else if (ret == -ENOSPC)
286077745c05SJosef Bacik 		set_bit(BTRFS_TRANS_CACHE_ENOSPC, &trans->transaction->flags);
286177745c05SJosef Bacik 
286277745c05SJosef Bacik out_put:
286377745c05SJosef Bacik 	iput(inode);
286477745c05SJosef Bacik out_free:
286577745c05SJosef Bacik 	btrfs_release_path(path);
286677745c05SJosef Bacik out:
286777745c05SJosef Bacik 	spin_lock(&block_group->lock);
286877745c05SJosef Bacik 	if (!ret && dcs == BTRFS_DC_SETUP)
286977745c05SJosef Bacik 		block_group->cache_generation = trans->transid;
287077745c05SJosef Bacik 	block_group->disk_cache_state = dcs;
287177745c05SJosef Bacik 	spin_unlock(&block_group->lock);
287277745c05SJosef Bacik 
287377745c05SJosef Bacik 	extent_changeset_free(data_reserved);
287477745c05SJosef Bacik 	return ret;
287577745c05SJosef Bacik }
287677745c05SJosef Bacik 
287777745c05SJosef Bacik int btrfs_setup_space_cache(struct btrfs_trans_handle *trans)
287877745c05SJosef Bacik {
287977745c05SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
288032da5386SDavid Sterba 	struct btrfs_block_group *cache, *tmp;
288177745c05SJosef Bacik 	struct btrfs_transaction *cur_trans = trans->transaction;
288277745c05SJosef Bacik 	struct btrfs_path *path;
288377745c05SJosef Bacik 
288477745c05SJosef Bacik 	if (list_empty(&cur_trans->dirty_bgs) ||
288577745c05SJosef Bacik 	    !btrfs_test_opt(fs_info, SPACE_CACHE))
288677745c05SJosef Bacik 		return 0;
288777745c05SJosef Bacik 
288877745c05SJosef Bacik 	path = btrfs_alloc_path();
288977745c05SJosef Bacik 	if (!path)
289077745c05SJosef Bacik 		return -ENOMEM;
289177745c05SJosef Bacik 
289277745c05SJosef Bacik 	/* Could add new block groups, use _safe just in case */
289377745c05SJosef Bacik 	list_for_each_entry_safe(cache, tmp, &cur_trans->dirty_bgs,
289477745c05SJosef Bacik 				 dirty_list) {
289577745c05SJosef Bacik 		if (cache->disk_cache_state == BTRFS_DC_CLEAR)
289677745c05SJosef Bacik 			cache_save_setup(cache, trans, path);
289777745c05SJosef Bacik 	}
289877745c05SJosef Bacik 
289977745c05SJosef Bacik 	btrfs_free_path(path);
290077745c05SJosef Bacik 	return 0;
290177745c05SJosef Bacik }
290277745c05SJosef Bacik 
290377745c05SJosef Bacik /*
290477745c05SJosef Bacik  * Transaction commit does final block group cache writeback during a critical
290577745c05SJosef Bacik  * section where nothing is allowed to change the FS.  This is required in
290677745c05SJosef Bacik  * order for the cache to actually match the block group, but can introduce a
290777745c05SJosef Bacik  * lot of latency into the commit.
290877745c05SJosef Bacik  *
290977745c05SJosef Bacik  * So, btrfs_start_dirty_block_groups is here to kick off block group cache IO.
291077745c05SJosef Bacik  * There's a chance we'll have to redo some of it if the block group changes
291177745c05SJosef Bacik  * again during the commit, but it greatly reduces the commit latency by
291277745c05SJosef Bacik  * getting rid of the easy block groups while we're still allowing others to
291377745c05SJosef Bacik  * join the commit.
291477745c05SJosef Bacik  */
291577745c05SJosef Bacik int btrfs_start_dirty_block_groups(struct btrfs_trans_handle *trans)
291677745c05SJosef Bacik {
291777745c05SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
291832da5386SDavid Sterba 	struct btrfs_block_group *cache;
291977745c05SJosef Bacik 	struct btrfs_transaction *cur_trans = trans->transaction;
292077745c05SJosef Bacik 	int ret = 0;
292177745c05SJosef Bacik 	int should_put;
292277745c05SJosef Bacik 	struct btrfs_path *path = NULL;
292377745c05SJosef Bacik 	LIST_HEAD(dirty);
292477745c05SJosef Bacik 	struct list_head *io = &cur_trans->io_bgs;
292577745c05SJosef Bacik 	int loops = 0;
292677745c05SJosef Bacik 
292777745c05SJosef Bacik 	spin_lock(&cur_trans->dirty_bgs_lock);
292877745c05SJosef Bacik 	if (list_empty(&cur_trans->dirty_bgs)) {
292977745c05SJosef Bacik 		spin_unlock(&cur_trans->dirty_bgs_lock);
293077745c05SJosef Bacik 		return 0;
293177745c05SJosef Bacik 	}
293277745c05SJosef Bacik 	list_splice_init(&cur_trans->dirty_bgs, &dirty);
293377745c05SJosef Bacik 	spin_unlock(&cur_trans->dirty_bgs_lock);
293477745c05SJosef Bacik 
293577745c05SJosef Bacik again:
293677745c05SJosef Bacik 	/* Make sure all the block groups on our dirty list actually exist */
293777745c05SJosef Bacik 	btrfs_create_pending_block_groups(trans);
293877745c05SJosef Bacik 
293977745c05SJosef Bacik 	if (!path) {
294077745c05SJosef Bacik 		path = btrfs_alloc_path();
2941938fcbfbSJosef Bacik 		if (!path) {
2942938fcbfbSJosef Bacik 			ret = -ENOMEM;
2943938fcbfbSJosef Bacik 			goto out;
2944938fcbfbSJosef Bacik 		}
294577745c05SJosef Bacik 	}
294677745c05SJosef Bacik 
294777745c05SJosef Bacik 	/*
294877745c05SJosef Bacik 	 * cache_write_mutex is here only to save us from balance or automatic
294977745c05SJosef Bacik 	 * removal of empty block groups deleting this block group while we are
295077745c05SJosef Bacik 	 * writing out the cache
295177745c05SJosef Bacik 	 */
295277745c05SJosef Bacik 	mutex_lock(&trans->transaction->cache_write_mutex);
295377745c05SJosef Bacik 	while (!list_empty(&dirty)) {
295477745c05SJosef Bacik 		bool drop_reserve = true;
295577745c05SJosef Bacik 
295632da5386SDavid Sterba 		cache = list_first_entry(&dirty, struct btrfs_block_group,
295777745c05SJosef Bacik 					 dirty_list);
295877745c05SJosef Bacik 		/*
295977745c05SJosef Bacik 		 * This can happen if something re-dirties a block group that
296077745c05SJosef Bacik 		 * is already under IO.  Just wait for it to finish and then do
296177745c05SJosef Bacik 		 * it all again
296277745c05SJosef Bacik 		 */
296377745c05SJosef Bacik 		if (!list_empty(&cache->io_list)) {
296477745c05SJosef Bacik 			list_del_init(&cache->io_list);
296577745c05SJosef Bacik 			btrfs_wait_cache_io(trans, cache, path);
296677745c05SJosef Bacik 			btrfs_put_block_group(cache);
296777745c05SJosef Bacik 		}
296877745c05SJosef Bacik 
296977745c05SJosef Bacik 
297077745c05SJosef Bacik 		/*
297177745c05SJosef Bacik 		 * btrfs_wait_cache_io uses the cache->dirty_list to decide if
297277745c05SJosef Bacik 		 * it should update the cache_state.  Don't delete until after
297377745c05SJosef Bacik 		 * we wait.
297477745c05SJosef Bacik 		 *
297577745c05SJosef Bacik 		 * Since we're not running in the commit critical section
297677745c05SJosef Bacik 		 * we need the dirty_bgs_lock to protect from update_block_group
297777745c05SJosef Bacik 		 */
297877745c05SJosef Bacik 		spin_lock(&cur_trans->dirty_bgs_lock);
297977745c05SJosef Bacik 		list_del_init(&cache->dirty_list);
298077745c05SJosef Bacik 		spin_unlock(&cur_trans->dirty_bgs_lock);
298177745c05SJosef Bacik 
298277745c05SJosef Bacik 		should_put = 1;
298377745c05SJosef Bacik 
298477745c05SJosef Bacik 		cache_save_setup(cache, trans, path);
298577745c05SJosef Bacik 
298677745c05SJosef Bacik 		if (cache->disk_cache_state == BTRFS_DC_SETUP) {
298777745c05SJosef Bacik 			cache->io_ctl.inode = NULL;
298877745c05SJosef Bacik 			ret = btrfs_write_out_cache(trans, cache, path);
298977745c05SJosef Bacik 			if (ret == 0 && cache->io_ctl.inode) {
299077745c05SJosef Bacik 				should_put = 0;
299177745c05SJosef Bacik 
299277745c05SJosef Bacik 				/*
299377745c05SJosef Bacik 				 * The cache_write_mutex is protecting the
299477745c05SJosef Bacik 				 * io_list, also refer to the definition of
299577745c05SJosef Bacik 				 * btrfs_transaction::io_bgs for more details
299677745c05SJosef Bacik 				 */
299777745c05SJosef Bacik 				list_add_tail(&cache->io_list, io);
299877745c05SJosef Bacik 			} else {
299977745c05SJosef Bacik 				/*
300077745c05SJosef Bacik 				 * If we failed to write the cache, the
300177745c05SJosef Bacik 				 * generation will be bad and life goes on
300277745c05SJosef Bacik 				 */
300377745c05SJosef Bacik 				ret = 0;
300477745c05SJosef Bacik 			}
300577745c05SJosef Bacik 		}
300677745c05SJosef Bacik 		if (!ret) {
30073be4d8efSQu Wenruo 			ret = update_block_group_item(trans, path, cache);
300877745c05SJosef Bacik 			/*
300977745c05SJosef Bacik 			 * Our block group might still be attached to the list
301077745c05SJosef Bacik 			 * of new block groups in the transaction handle of some
301177745c05SJosef Bacik 			 * other task (struct btrfs_trans_handle->new_bgs). This
301277745c05SJosef Bacik 			 * means its block group item isn't yet in the extent
301377745c05SJosef Bacik 			 * tree. If this happens ignore the error, as we will
301477745c05SJosef Bacik 			 * try again later in the critical section of the
301577745c05SJosef Bacik 			 * transaction commit.
301677745c05SJosef Bacik 			 */
301777745c05SJosef Bacik 			if (ret == -ENOENT) {
301877745c05SJosef Bacik 				ret = 0;
301977745c05SJosef Bacik 				spin_lock(&cur_trans->dirty_bgs_lock);
302077745c05SJosef Bacik 				if (list_empty(&cache->dirty_list)) {
302177745c05SJosef Bacik 					list_add_tail(&cache->dirty_list,
302277745c05SJosef Bacik 						      &cur_trans->dirty_bgs);
302377745c05SJosef Bacik 					btrfs_get_block_group(cache);
302477745c05SJosef Bacik 					drop_reserve = false;
302577745c05SJosef Bacik 				}
302677745c05SJosef Bacik 				spin_unlock(&cur_trans->dirty_bgs_lock);
302777745c05SJosef Bacik 			} else if (ret) {
302877745c05SJosef Bacik 				btrfs_abort_transaction(trans, ret);
302977745c05SJosef Bacik 			}
303077745c05SJosef Bacik 		}
303177745c05SJosef Bacik 
303277745c05SJosef Bacik 		/* If it's not on the io list, we need to put the block group */
303377745c05SJosef Bacik 		if (should_put)
303477745c05SJosef Bacik 			btrfs_put_block_group(cache);
303577745c05SJosef Bacik 		if (drop_reserve)
303677745c05SJosef Bacik 			btrfs_delayed_refs_rsv_release(fs_info, 1);
303777745c05SJosef Bacik 		/*
303877745c05SJosef Bacik 		 * Avoid blocking other tasks for too long. It might even save
303977745c05SJosef Bacik 		 * us from writing caches for block groups that are going to be
304077745c05SJosef Bacik 		 * removed.
304177745c05SJosef Bacik 		 */
304277745c05SJosef Bacik 		mutex_unlock(&trans->transaction->cache_write_mutex);
3043938fcbfbSJosef Bacik 		if (ret)
3044938fcbfbSJosef Bacik 			goto out;
304577745c05SJosef Bacik 		mutex_lock(&trans->transaction->cache_write_mutex);
304677745c05SJosef Bacik 	}
304777745c05SJosef Bacik 	mutex_unlock(&trans->transaction->cache_write_mutex);
304877745c05SJosef Bacik 
304977745c05SJosef Bacik 	/*
305077745c05SJosef Bacik 	 * Go through delayed refs for all the stuff we've just kicked off
305177745c05SJosef Bacik 	 * and then loop back (just once)
305277745c05SJosef Bacik 	 */
305334d1eb0eSJosef Bacik 	if (!ret)
305477745c05SJosef Bacik 		ret = btrfs_run_delayed_refs(trans, 0);
305577745c05SJosef Bacik 	if (!ret && loops == 0) {
305677745c05SJosef Bacik 		loops++;
305777745c05SJosef Bacik 		spin_lock(&cur_trans->dirty_bgs_lock);
305877745c05SJosef Bacik 		list_splice_init(&cur_trans->dirty_bgs, &dirty);
305977745c05SJosef Bacik 		/*
306077745c05SJosef Bacik 		 * dirty_bgs_lock protects us from concurrent block group
306177745c05SJosef Bacik 		 * deletes too (not just cache_write_mutex).
306277745c05SJosef Bacik 		 */
306377745c05SJosef Bacik 		if (!list_empty(&dirty)) {
306477745c05SJosef Bacik 			spin_unlock(&cur_trans->dirty_bgs_lock);
306577745c05SJosef Bacik 			goto again;
306677745c05SJosef Bacik 		}
306777745c05SJosef Bacik 		spin_unlock(&cur_trans->dirty_bgs_lock);
3068938fcbfbSJosef Bacik 	}
3069938fcbfbSJosef Bacik out:
3070938fcbfbSJosef Bacik 	if (ret < 0) {
3071938fcbfbSJosef Bacik 		spin_lock(&cur_trans->dirty_bgs_lock);
3072938fcbfbSJosef Bacik 		list_splice_init(&dirty, &cur_trans->dirty_bgs);
3073938fcbfbSJosef Bacik 		spin_unlock(&cur_trans->dirty_bgs_lock);
307477745c05SJosef Bacik 		btrfs_cleanup_dirty_bgs(cur_trans, fs_info);
307577745c05SJosef Bacik 	}
307677745c05SJosef Bacik 
307777745c05SJosef Bacik 	btrfs_free_path(path);
307877745c05SJosef Bacik 	return ret;
307977745c05SJosef Bacik }
308077745c05SJosef Bacik 
308177745c05SJosef Bacik int btrfs_write_dirty_block_groups(struct btrfs_trans_handle *trans)
308277745c05SJosef Bacik {
308377745c05SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
308432da5386SDavid Sterba 	struct btrfs_block_group *cache;
308577745c05SJosef Bacik 	struct btrfs_transaction *cur_trans = trans->transaction;
308677745c05SJosef Bacik 	int ret = 0;
308777745c05SJosef Bacik 	int should_put;
308877745c05SJosef Bacik 	struct btrfs_path *path;
308977745c05SJosef Bacik 	struct list_head *io = &cur_trans->io_bgs;
309077745c05SJosef Bacik 
309177745c05SJosef Bacik 	path = btrfs_alloc_path();
309277745c05SJosef Bacik 	if (!path)
309377745c05SJosef Bacik 		return -ENOMEM;
309477745c05SJosef Bacik 
309577745c05SJosef Bacik 	/*
309677745c05SJosef Bacik 	 * Even though we are in the critical section of the transaction commit,
309777745c05SJosef Bacik 	 * we can still have concurrent tasks adding elements to this
309877745c05SJosef Bacik 	 * transaction's list of dirty block groups. These tasks correspond to
309977745c05SJosef Bacik 	 * endio free space workers started when writeback finishes for a
310077745c05SJosef Bacik 	 * space cache, which run inode.c:btrfs_finish_ordered_io(), and can
310177745c05SJosef Bacik 	 * allocate new block groups as a result of COWing nodes of the root
310277745c05SJosef Bacik 	 * tree when updating the free space inode. The writeback for the space
310377745c05SJosef Bacik 	 * caches is triggered by an earlier call to
310477745c05SJosef Bacik 	 * btrfs_start_dirty_block_groups() and iterations of the following
310577745c05SJosef Bacik 	 * loop.
310677745c05SJosef Bacik 	 * Also we want to do the cache_save_setup first and then run the
310777745c05SJosef Bacik 	 * delayed refs to make sure we have the best chance at doing this all
310877745c05SJosef Bacik 	 * in one shot.
310977745c05SJosef Bacik 	 */
311077745c05SJosef Bacik 	spin_lock(&cur_trans->dirty_bgs_lock);
311177745c05SJosef Bacik 	while (!list_empty(&cur_trans->dirty_bgs)) {
311277745c05SJosef Bacik 		cache = list_first_entry(&cur_trans->dirty_bgs,
311332da5386SDavid Sterba 					 struct btrfs_block_group,
311477745c05SJosef Bacik 					 dirty_list);
311577745c05SJosef Bacik 
311677745c05SJosef Bacik 		/*
311777745c05SJosef Bacik 		 * This can happen if cache_save_setup re-dirties a block group
311877745c05SJosef Bacik 		 * that is already under IO.  Just wait for it to finish and
311977745c05SJosef Bacik 		 * then do it all again
312077745c05SJosef Bacik 		 */
312177745c05SJosef Bacik 		if (!list_empty(&cache->io_list)) {
312277745c05SJosef Bacik 			spin_unlock(&cur_trans->dirty_bgs_lock);
312377745c05SJosef Bacik 			list_del_init(&cache->io_list);
312477745c05SJosef Bacik 			btrfs_wait_cache_io(trans, cache, path);
312577745c05SJosef Bacik 			btrfs_put_block_group(cache);
312677745c05SJosef Bacik 			spin_lock(&cur_trans->dirty_bgs_lock);
312777745c05SJosef Bacik 		}
312877745c05SJosef Bacik 
312977745c05SJosef Bacik 		/*
313077745c05SJosef Bacik 		 * Don't remove from the dirty list until after we've waited on
313177745c05SJosef Bacik 		 * any pending IO
313277745c05SJosef Bacik 		 */
313377745c05SJosef Bacik 		list_del_init(&cache->dirty_list);
313477745c05SJosef Bacik 		spin_unlock(&cur_trans->dirty_bgs_lock);
313577745c05SJosef Bacik 		should_put = 1;
313677745c05SJosef Bacik 
313777745c05SJosef Bacik 		cache_save_setup(cache, trans, path);
313877745c05SJosef Bacik 
313977745c05SJosef Bacik 		if (!ret)
314077745c05SJosef Bacik 			ret = btrfs_run_delayed_refs(trans,
314177745c05SJosef Bacik 						     (unsigned long) -1);
314277745c05SJosef Bacik 
314377745c05SJosef Bacik 		if (!ret && cache->disk_cache_state == BTRFS_DC_SETUP) {
314477745c05SJosef Bacik 			cache->io_ctl.inode = NULL;
314577745c05SJosef Bacik 			ret = btrfs_write_out_cache(trans, cache, path);
314677745c05SJosef Bacik 			if (ret == 0 && cache->io_ctl.inode) {
314777745c05SJosef Bacik 				should_put = 0;
314877745c05SJosef Bacik 				list_add_tail(&cache->io_list, io);
314977745c05SJosef Bacik 			} else {
315077745c05SJosef Bacik 				/*
315177745c05SJosef Bacik 				 * If we failed to write the cache, the
315277745c05SJosef Bacik 				 * generation will be bad and life goes on
315377745c05SJosef Bacik 				 */
315477745c05SJosef Bacik 				ret = 0;
315577745c05SJosef Bacik 			}
315677745c05SJosef Bacik 		}
315777745c05SJosef Bacik 		if (!ret) {
31583be4d8efSQu Wenruo 			ret = update_block_group_item(trans, path, cache);
315977745c05SJosef Bacik 			/*
316077745c05SJosef Bacik 			 * One of the free space endio workers might have
316177745c05SJosef Bacik 			 * created a new block group while updating a free space
316277745c05SJosef Bacik 			 * cache's inode (at inode.c:btrfs_finish_ordered_io())
316377745c05SJosef Bacik 			 * and hasn't released its transaction handle yet, in
316477745c05SJosef Bacik 			 * which case the new block group is still attached to
316577745c05SJosef Bacik 			 * its transaction handle and its creation has not
316677745c05SJosef Bacik 			 * finished yet (no block group item in the extent tree
316777745c05SJosef Bacik 			 * yet, etc). If this is the case, wait for all free
316877745c05SJosef Bacik 			 * space endio workers to finish and retry. This is a
3169260db43cSRandy Dunlap 			 * very rare case so no need for a more efficient and
317077745c05SJosef Bacik 			 * complex approach.
317177745c05SJosef Bacik 			 */
317277745c05SJosef Bacik 			if (ret == -ENOENT) {
317377745c05SJosef Bacik 				wait_event(cur_trans->writer_wait,
317477745c05SJosef Bacik 				   atomic_read(&cur_trans->num_writers) == 1);
31753be4d8efSQu Wenruo 				ret = update_block_group_item(trans, path, cache);
317677745c05SJosef Bacik 			}
317777745c05SJosef Bacik 			if (ret)
317877745c05SJosef Bacik 				btrfs_abort_transaction(trans, ret);
317977745c05SJosef Bacik 		}
318077745c05SJosef Bacik 
318177745c05SJosef Bacik 		/* If its not on the io list, we need to put the block group */
318277745c05SJosef Bacik 		if (should_put)
318377745c05SJosef Bacik 			btrfs_put_block_group(cache);
318477745c05SJosef Bacik 		btrfs_delayed_refs_rsv_release(fs_info, 1);
318577745c05SJosef Bacik 		spin_lock(&cur_trans->dirty_bgs_lock);
318677745c05SJosef Bacik 	}
318777745c05SJosef Bacik 	spin_unlock(&cur_trans->dirty_bgs_lock);
318877745c05SJosef Bacik 
318977745c05SJosef Bacik 	/*
319077745c05SJosef Bacik 	 * Refer to the definition of io_bgs member for details why it's safe
319177745c05SJosef Bacik 	 * to use it without any locking
319277745c05SJosef Bacik 	 */
319377745c05SJosef Bacik 	while (!list_empty(io)) {
319432da5386SDavid Sterba 		cache = list_first_entry(io, struct btrfs_block_group,
319577745c05SJosef Bacik 					 io_list);
319677745c05SJosef Bacik 		list_del_init(&cache->io_list);
319777745c05SJosef Bacik 		btrfs_wait_cache_io(trans, cache, path);
319877745c05SJosef Bacik 		btrfs_put_block_group(cache);
319977745c05SJosef Bacik 	}
320077745c05SJosef Bacik 
320177745c05SJosef Bacik 	btrfs_free_path(path);
320277745c05SJosef Bacik 	return ret;
320377745c05SJosef Bacik }
3204606d1bf1SJosef Bacik 
3205ac2f1e63SJosef Bacik static inline bool should_reclaim_block_group(struct btrfs_block_group *bg,
3206ac2f1e63SJosef Bacik 					      u64 bytes_freed)
3207ac2f1e63SJosef Bacik {
3208ac2f1e63SJosef Bacik 	const struct btrfs_space_info *space_info = bg->space_info;
3209ac2f1e63SJosef Bacik 	const int reclaim_thresh = READ_ONCE(space_info->bg_reclaim_threshold);
3210ac2f1e63SJosef Bacik 	const u64 new_val = bg->used;
3211ac2f1e63SJosef Bacik 	const u64 old_val = new_val + bytes_freed;
3212ac2f1e63SJosef Bacik 	u64 thresh;
3213ac2f1e63SJosef Bacik 
3214ac2f1e63SJosef Bacik 	if (reclaim_thresh == 0)
3215ac2f1e63SJosef Bacik 		return false;
3216ac2f1e63SJosef Bacik 
3217ac2f1e63SJosef Bacik 	thresh = div_factor_fine(bg->length, reclaim_thresh);
3218ac2f1e63SJosef Bacik 
3219ac2f1e63SJosef Bacik 	/*
3220ac2f1e63SJosef Bacik 	 * If we were below the threshold before don't reclaim, we are likely a
3221ac2f1e63SJosef Bacik 	 * brand new block group and we don't want to relocate new block groups.
3222ac2f1e63SJosef Bacik 	 */
3223ac2f1e63SJosef Bacik 	if (old_val < thresh)
3224ac2f1e63SJosef Bacik 		return false;
3225ac2f1e63SJosef Bacik 	if (new_val >= thresh)
3226ac2f1e63SJosef Bacik 		return false;
3227ac2f1e63SJosef Bacik 	return true;
3228ac2f1e63SJosef Bacik }
3229ac2f1e63SJosef Bacik 
3230606d1bf1SJosef Bacik int btrfs_update_block_group(struct btrfs_trans_handle *trans,
323111b66fa6SAnand Jain 			     u64 bytenr, u64 num_bytes, bool alloc)
3232606d1bf1SJosef Bacik {
3233606d1bf1SJosef Bacik 	struct btrfs_fs_info *info = trans->fs_info;
323432da5386SDavid Sterba 	struct btrfs_block_group *cache = NULL;
3235606d1bf1SJosef Bacik 	u64 total = num_bytes;
3236606d1bf1SJosef Bacik 	u64 old_val;
3237606d1bf1SJosef Bacik 	u64 byte_in_group;
3238606d1bf1SJosef Bacik 	int factor;
3239606d1bf1SJosef Bacik 	int ret = 0;
3240606d1bf1SJosef Bacik 
3241606d1bf1SJosef Bacik 	/* Block accounting for super block */
3242606d1bf1SJosef Bacik 	spin_lock(&info->delalloc_root_lock);
3243606d1bf1SJosef Bacik 	old_val = btrfs_super_bytes_used(info->super_copy);
3244606d1bf1SJosef Bacik 	if (alloc)
3245606d1bf1SJosef Bacik 		old_val += num_bytes;
3246606d1bf1SJosef Bacik 	else
3247606d1bf1SJosef Bacik 		old_val -= num_bytes;
3248606d1bf1SJosef Bacik 	btrfs_set_super_bytes_used(info->super_copy, old_val);
3249606d1bf1SJosef Bacik 	spin_unlock(&info->delalloc_root_lock);
3250606d1bf1SJosef Bacik 
3251606d1bf1SJosef Bacik 	while (total) {
3252ac2f1e63SJosef Bacik 		bool reclaim;
3253ac2f1e63SJosef Bacik 
3254606d1bf1SJosef Bacik 		cache = btrfs_lookup_block_group(info, bytenr);
3255606d1bf1SJosef Bacik 		if (!cache) {
3256606d1bf1SJosef Bacik 			ret = -ENOENT;
3257606d1bf1SJosef Bacik 			break;
3258606d1bf1SJosef Bacik 		}
3259606d1bf1SJosef Bacik 		factor = btrfs_bg_type_to_factor(cache->flags);
3260606d1bf1SJosef Bacik 
3261606d1bf1SJosef Bacik 		/*
3262606d1bf1SJosef Bacik 		 * If this block group has free space cache written out, we
3263606d1bf1SJosef Bacik 		 * need to make sure to load it if we are removing space.  This
3264606d1bf1SJosef Bacik 		 * is because we need the unpinning stage to actually add the
3265606d1bf1SJosef Bacik 		 * space back to the block group, otherwise we will leak space.
3266606d1bf1SJosef Bacik 		 */
326732da5386SDavid Sterba 		if (!alloc && !btrfs_block_group_done(cache))
3268606d1bf1SJosef Bacik 			btrfs_cache_block_group(cache, 1);
3269606d1bf1SJosef Bacik 
3270b3470b5dSDavid Sterba 		byte_in_group = bytenr - cache->start;
3271b3470b5dSDavid Sterba 		WARN_ON(byte_in_group > cache->length);
3272606d1bf1SJosef Bacik 
3273606d1bf1SJosef Bacik 		spin_lock(&cache->space_info->lock);
3274606d1bf1SJosef Bacik 		spin_lock(&cache->lock);
3275606d1bf1SJosef Bacik 
3276606d1bf1SJosef Bacik 		if (btrfs_test_opt(info, SPACE_CACHE) &&
3277606d1bf1SJosef Bacik 		    cache->disk_cache_state < BTRFS_DC_CLEAR)
3278606d1bf1SJosef Bacik 			cache->disk_cache_state = BTRFS_DC_CLEAR;
3279606d1bf1SJosef Bacik 
3280bf38be65SDavid Sterba 		old_val = cache->used;
3281b3470b5dSDavid Sterba 		num_bytes = min(total, cache->length - byte_in_group);
3282606d1bf1SJosef Bacik 		if (alloc) {
3283606d1bf1SJosef Bacik 			old_val += num_bytes;
3284bf38be65SDavid Sterba 			cache->used = old_val;
3285606d1bf1SJosef Bacik 			cache->reserved -= num_bytes;
3286606d1bf1SJosef Bacik 			cache->space_info->bytes_reserved -= num_bytes;
3287606d1bf1SJosef Bacik 			cache->space_info->bytes_used += num_bytes;
3288606d1bf1SJosef Bacik 			cache->space_info->disk_used += num_bytes * factor;
3289606d1bf1SJosef Bacik 			spin_unlock(&cache->lock);
3290606d1bf1SJosef Bacik 			spin_unlock(&cache->space_info->lock);
3291606d1bf1SJosef Bacik 		} else {
3292606d1bf1SJosef Bacik 			old_val -= num_bytes;
3293bf38be65SDavid Sterba 			cache->used = old_val;
3294606d1bf1SJosef Bacik 			cache->pinned += num_bytes;
3295606d1bf1SJosef Bacik 			btrfs_space_info_update_bytes_pinned(info,
3296606d1bf1SJosef Bacik 					cache->space_info, num_bytes);
3297606d1bf1SJosef Bacik 			cache->space_info->bytes_used -= num_bytes;
3298606d1bf1SJosef Bacik 			cache->space_info->disk_used -= num_bytes * factor;
3299ac2f1e63SJosef Bacik 
3300ac2f1e63SJosef Bacik 			reclaim = should_reclaim_block_group(cache, num_bytes);
3301606d1bf1SJosef Bacik 			spin_unlock(&cache->lock);
3302606d1bf1SJosef Bacik 			spin_unlock(&cache->space_info->lock);
3303606d1bf1SJosef Bacik 
3304fe119a6eSNikolay Borisov 			set_extent_dirty(&trans->transaction->pinned_extents,
3305606d1bf1SJosef Bacik 					 bytenr, bytenr + num_bytes - 1,
3306606d1bf1SJosef Bacik 					 GFP_NOFS | __GFP_NOFAIL);
3307606d1bf1SJosef Bacik 		}
3308606d1bf1SJosef Bacik 
3309606d1bf1SJosef Bacik 		spin_lock(&trans->transaction->dirty_bgs_lock);
3310606d1bf1SJosef Bacik 		if (list_empty(&cache->dirty_list)) {
3311606d1bf1SJosef Bacik 			list_add_tail(&cache->dirty_list,
3312606d1bf1SJosef Bacik 				      &trans->transaction->dirty_bgs);
3313606d1bf1SJosef Bacik 			trans->delayed_ref_updates++;
3314606d1bf1SJosef Bacik 			btrfs_get_block_group(cache);
3315606d1bf1SJosef Bacik 		}
3316606d1bf1SJosef Bacik 		spin_unlock(&trans->transaction->dirty_bgs_lock);
3317606d1bf1SJosef Bacik 
3318606d1bf1SJosef Bacik 		/*
3319606d1bf1SJosef Bacik 		 * No longer have used bytes in this block group, queue it for
3320606d1bf1SJosef Bacik 		 * deletion. We do this after adding the block group to the
3321606d1bf1SJosef Bacik 		 * dirty list to avoid races between cleaner kthread and space
3322606d1bf1SJosef Bacik 		 * cache writeout.
3323606d1bf1SJosef Bacik 		 */
33246e80d4f8SDennis Zhou 		if (!alloc && old_val == 0) {
33256e80d4f8SDennis Zhou 			if (!btrfs_test_opt(info, DISCARD_ASYNC))
3326606d1bf1SJosef Bacik 				btrfs_mark_bg_unused(cache);
3327ac2f1e63SJosef Bacik 		} else if (!alloc && reclaim) {
3328ac2f1e63SJosef Bacik 			btrfs_mark_bg_to_reclaim(cache);
33296e80d4f8SDennis Zhou 		}
3330606d1bf1SJosef Bacik 
3331606d1bf1SJosef Bacik 		btrfs_put_block_group(cache);
3332606d1bf1SJosef Bacik 		total -= num_bytes;
3333606d1bf1SJosef Bacik 		bytenr += num_bytes;
3334606d1bf1SJosef Bacik 	}
3335606d1bf1SJosef Bacik 
3336606d1bf1SJosef Bacik 	/* Modified block groups are accounted for in the delayed_refs_rsv. */
3337606d1bf1SJosef Bacik 	btrfs_update_delayed_refs_rsv(trans);
3338606d1bf1SJosef Bacik 	return ret;
3339606d1bf1SJosef Bacik }
3340606d1bf1SJosef Bacik 
3341606d1bf1SJosef Bacik /**
3342606d1bf1SJosef Bacik  * btrfs_add_reserved_bytes - update the block_group and space info counters
3343606d1bf1SJosef Bacik  * @cache:	The cache we are manipulating
3344606d1bf1SJosef Bacik  * @ram_bytes:  The number of bytes of file content, and will be same to
3345606d1bf1SJosef Bacik  *              @num_bytes except for the compress path.
3346606d1bf1SJosef Bacik  * @num_bytes:	The number of bytes in question
3347606d1bf1SJosef Bacik  * @delalloc:   The blocks are allocated for the delalloc write
3348606d1bf1SJosef Bacik  *
3349606d1bf1SJosef Bacik  * This is called by the allocator when it reserves space. If this is a
3350606d1bf1SJosef Bacik  * reservation and the block group has become read only we cannot make the
3351606d1bf1SJosef Bacik  * reservation and return -EAGAIN, otherwise this function always succeeds.
3352606d1bf1SJosef Bacik  */
335332da5386SDavid Sterba int btrfs_add_reserved_bytes(struct btrfs_block_group *cache,
3354606d1bf1SJosef Bacik 			     u64 ram_bytes, u64 num_bytes, int delalloc)
3355606d1bf1SJosef Bacik {
3356606d1bf1SJosef Bacik 	struct btrfs_space_info *space_info = cache->space_info;
3357606d1bf1SJosef Bacik 	int ret = 0;
3358606d1bf1SJosef Bacik 
3359606d1bf1SJosef Bacik 	spin_lock(&space_info->lock);
3360606d1bf1SJosef Bacik 	spin_lock(&cache->lock);
3361606d1bf1SJosef Bacik 	if (cache->ro) {
3362606d1bf1SJosef Bacik 		ret = -EAGAIN;
3363606d1bf1SJosef Bacik 	} else {
3364606d1bf1SJosef Bacik 		cache->reserved += num_bytes;
3365606d1bf1SJosef Bacik 		space_info->bytes_reserved += num_bytes;
3366a43c3835SJosef Bacik 		trace_btrfs_space_reservation(cache->fs_info, "space_info",
3367a43c3835SJosef Bacik 					      space_info->flags, num_bytes, 1);
3368606d1bf1SJosef Bacik 		btrfs_space_info_update_bytes_may_use(cache->fs_info,
3369606d1bf1SJosef Bacik 						      space_info, -ram_bytes);
3370606d1bf1SJosef Bacik 		if (delalloc)
3371606d1bf1SJosef Bacik 			cache->delalloc_bytes += num_bytes;
337299ffb43eSJosef Bacik 
337399ffb43eSJosef Bacik 		/*
337499ffb43eSJosef Bacik 		 * Compression can use less space than we reserved, so wake
337599ffb43eSJosef Bacik 		 * tickets if that happens
337699ffb43eSJosef Bacik 		 */
337799ffb43eSJosef Bacik 		if (num_bytes < ram_bytes)
337899ffb43eSJosef Bacik 			btrfs_try_granting_tickets(cache->fs_info, space_info);
3379606d1bf1SJosef Bacik 	}
3380606d1bf1SJosef Bacik 	spin_unlock(&cache->lock);
3381606d1bf1SJosef Bacik 	spin_unlock(&space_info->lock);
3382606d1bf1SJosef Bacik 	return ret;
3383606d1bf1SJosef Bacik }
3384606d1bf1SJosef Bacik 
3385606d1bf1SJosef Bacik /**
3386606d1bf1SJosef Bacik  * btrfs_free_reserved_bytes - update the block_group and space info counters
3387606d1bf1SJosef Bacik  * @cache:      The cache we are manipulating
3388606d1bf1SJosef Bacik  * @num_bytes:  The number of bytes in question
3389606d1bf1SJosef Bacik  * @delalloc:   The blocks are allocated for the delalloc write
3390606d1bf1SJosef Bacik  *
3391606d1bf1SJosef Bacik  * This is called by somebody who is freeing space that was never actually used
3392606d1bf1SJosef Bacik  * on disk.  For example if you reserve some space for a new leaf in transaction
3393606d1bf1SJosef Bacik  * A and before transaction A commits you free that leaf, you call this with
3394606d1bf1SJosef Bacik  * reserve set to 0 in order to clear the reservation.
3395606d1bf1SJosef Bacik  */
339632da5386SDavid Sterba void btrfs_free_reserved_bytes(struct btrfs_block_group *cache,
3397606d1bf1SJosef Bacik 			       u64 num_bytes, int delalloc)
3398606d1bf1SJosef Bacik {
3399606d1bf1SJosef Bacik 	struct btrfs_space_info *space_info = cache->space_info;
3400606d1bf1SJosef Bacik 
3401606d1bf1SJosef Bacik 	spin_lock(&space_info->lock);
3402606d1bf1SJosef Bacik 	spin_lock(&cache->lock);
3403606d1bf1SJosef Bacik 	if (cache->ro)
3404606d1bf1SJosef Bacik 		space_info->bytes_readonly += num_bytes;
3405606d1bf1SJosef Bacik 	cache->reserved -= num_bytes;
3406606d1bf1SJosef Bacik 	space_info->bytes_reserved -= num_bytes;
3407606d1bf1SJosef Bacik 	space_info->max_extent_size = 0;
3408606d1bf1SJosef Bacik 
3409606d1bf1SJosef Bacik 	if (delalloc)
3410606d1bf1SJosef Bacik 		cache->delalloc_bytes -= num_bytes;
3411606d1bf1SJosef Bacik 	spin_unlock(&cache->lock);
34123308234aSJosef Bacik 
34133308234aSJosef Bacik 	btrfs_try_granting_tickets(cache->fs_info, space_info);
3414606d1bf1SJosef Bacik 	spin_unlock(&space_info->lock);
3415606d1bf1SJosef Bacik }
341607730d87SJosef Bacik 
341707730d87SJosef Bacik static void force_metadata_allocation(struct btrfs_fs_info *info)
341807730d87SJosef Bacik {
341907730d87SJosef Bacik 	struct list_head *head = &info->space_info;
342007730d87SJosef Bacik 	struct btrfs_space_info *found;
342107730d87SJosef Bacik 
342272804905SJosef Bacik 	list_for_each_entry(found, head, list) {
342307730d87SJosef Bacik 		if (found->flags & BTRFS_BLOCK_GROUP_METADATA)
342407730d87SJosef Bacik 			found->force_alloc = CHUNK_ALLOC_FORCE;
342507730d87SJosef Bacik 	}
342607730d87SJosef Bacik }
342707730d87SJosef Bacik 
342807730d87SJosef Bacik static int should_alloc_chunk(struct btrfs_fs_info *fs_info,
342907730d87SJosef Bacik 			      struct btrfs_space_info *sinfo, int force)
343007730d87SJosef Bacik {
343107730d87SJosef Bacik 	u64 bytes_used = btrfs_space_info_used(sinfo, false);
343207730d87SJosef Bacik 	u64 thresh;
343307730d87SJosef Bacik 
343407730d87SJosef Bacik 	if (force == CHUNK_ALLOC_FORCE)
343507730d87SJosef Bacik 		return 1;
343607730d87SJosef Bacik 
343707730d87SJosef Bacik 	/*
343807730d87SJosef Bacik 	 * in limited mode, we want to have some free space up to
343907730d87SJosef Bacik 	 * about 1% of the FS size.
344007730d87SJosef Bacik 	 */
344107730d87SJosef Bacik 	if (force == CHUNK_ALLOC_LIMITED) {
344207730d87SJosef Bacik 		thresh = btrfs_super_total_bytes(fs_info->super_copy);
344307730d87SJosef Bacik 		thresh = max_t(u64, SZ_64M, div_factor_fine(thresh, 1));
344407730d87SJosef Bacik 
344507730d87SJosef Bacik 		if (sinfo->total_bytes - bytes_used < thresh)
344607730d87SJosef Bacik 			return 1;
344707730d87SJosef Bacik 	}
344807730d87SJosef Bacik 
344907730d87SJosef Bacik 	if (bytes_used + SZ_2M < div_factor(sinfo->total_bytes, 8))
345007730d87SJosef Bacik 		return 0;
345107730d87SJosef Bacik 	return 1;
345207730d87SJosef Bacik }
345307730d87SJosef Bacik 
345407730d87SJosef Bacik int btrfs_force_chunk_alloc(struct btrfs_trans_handle *trans, u64 type)
345507730d87SJosef Bacik {
345607730d87SJosef Bacik 	u64 alloc_flags = btrfs_get_alloc_profile(trans->fs_info, type);
345707730d87SJosef Bacik 
345807730d87SJosef Bacik 	return btrfs_chunk_alloc(trans, alloc_flags, CHUNK_ALLOC_FORCE);
345907730d87SJosef Bacik }
346007730d87SJosef Bacik 
3461820c363bSNaohiro Aota static struct btrfs_block_group *do_chunk_alloc(struct btrfs_trans_handle *trans, u64 flags)
346279bd3712SFilipe Manana {
346379bd3712SFilipe Manana 	struct btrfs_block_group *bg;
346479bd3712SFilipe Manana 	int ret;
346579bd3712SFilipe Manana 
346607730d87SJosef Bacik 	/*
346779bd3712SFilipe Manana 	 * Check if we have enough space in the system space info because we
346879bd3712SFilipe Manana 	 * will need to update device items in the chunk btree and insert a new
346979bd3712SFilipe Manana 	 * chunk item in the chunk btree as well. This will allocate a new
347079bd3712SFilipe Manana 	 * system block group if needed.
347179bd3712SFilipe Manana 	 */
347279bd3712SFilipe Manana 	check_system_chunk(trans, flags);
347379bd3712SFilipe Manana 
3474f6f39f7aSNikolay Borisov 	bg = btrfs_create_chunk(trans, flags);
347579bd3712SFilipe Manana 	if (IS_ERR(bg)) {
347679bd3712SFilipe Manana 		ret = PTR_ERR(bg);
347779bd3712SFilipe Manana 		goto out;
347879bd3712SFilipe Manana 	}
347979bd3712SFilipe Manana 
348079bd3712SFilipe Manana 	ret = btrfs_chunk_alloc_add_chunk_item(trans, bg);
348179bd3712SFilipe Manana 	/*
348279bd3712SFilipe Manana 	 * Normally we are not expected to fail with -ENOSPC here, since we have
348379bd3712SFilipe Manana 	 * previously reserved space in the system space_info and allocated one
3484ecd84d54SFilipe Manana 	 * new system chunk if necessary. However there are three exceptions:
348579bd3712SFilipe Manana 	 *
348679bd3712SFilipe Manana 	 * 1) We may have enough free space in the system space_info but all the
348779bd3712SFilipe Manana 	 *    existing system block groups have a profile which can not be used
348879bd3712SFilipe Manana 	 *    for extent allocation.
348979bd3712SFilipe Manana 	 *
349079bd3712SFilipe Manana 	 *    This happens when mounting in degraded mode. For example we have a
349179bd3712SFilipe Manana 	 *    RAID1 filesystem with 2 devices, lose one device and mount the fs
349279bd3712SFilipe Manana 	 *    using the other device in degraded mode. If we then allocate a chunk,
349379bd3712SFilipe Manana 	 *    we may have enough free space in the existing system space_info, but
349479bd3712SFilipe Manana 	 *    none of the block groups can be used for extent allocation since they
349579bd3712SFilipe Manana 	 *    have a RAID1 profile, and because we are in degraded mode with a
349679bd3712SFilipe Manana 	 *    single device, we are forced to allocate a new system chunk with a
349779bd3712SFilipe Manana 	 *    SINGLE profile. Making check_system_chunk() iterate over all system
349879bd3712SFilipe Manana 	 *    block groups and check if they have a usable profile and enough space
349979bd3712SFilipe Manana 	 *    can be slow on very large filesystems, so we tolerate the -ENOSPC and
350079bd3712SFilipe Manana 	 *    try again after forcing allocation of a new system chunk. Like this
350179bd3712SFilipe Manana 	 *    we avoid paying the cost of that search in normal circumstances, when
350279bd3712SFilipe Manana 	 *    we were not mounted in degraded mode;
350379bd3712SFilipe Manana 	 *
350479bd3712SFilipe Manana 	 * 2) We had enough free space info the system space_info, and one suitable
350579bd3712SFilipe Manana 	 *    block group to allocate from when we called check_system_chunk()
350679bd3712SFilipe Manana 	 *    above. However right after we called it, the only system block group
350779bd3712SFilipe Manana 	 *    with enough free space got turned into RO mode by a running scrub,
350879bd3712SFilipe Manana 	 *    and in this case we have to allocate a new one and retry. We only
350979bd3712SFilipe Manana 	 *    need do this allocate and retry once, since we have a transaction
3510ecd84d54SFilipe Manana 	 *    handle and scrub uses the commit root to search for block groups;
3511ecd84d54SFilipe Manana 	 *
3512ecd84d54SFilipe Manana 	 * 3) We had one system block group with enough free space when we called
3513ecd84d54SFilipe Manana 	 *    check_system_chunk(), but after that, right before we tried to
3514ecd84d54SFilipe Manana 	 *    allocate the last extent buffer we needed, a discard operation came
3515ecd84d54SFilipe Manana 	 *    in and it temporarily removed the last free space entry from the
3516ecd84d54SFilipe Manana 	 *    block group (discard removes a free space entry, discards it, and
3517ecd84d54SFilipe Manana 	 *    then adds back the entry to the block group cache).
351879bd3712SFilipe Manana 	 */
351979bd3712SFilipe Manana 	if (ret == -ENOSPC) {
352079bd3712SFilipe Manana 		const u64 sys_flags = btrfs_system_alloc_profile(trans->fs_info);
352179bd3712SFilipe Manana 		struct btrfs_block_group *sys_bg;
352279bd3712SFilipe Manana 
3523f6f39f7aSNikolay Borisov 		sys_bg = btrfs_create_chunk(trans, sys_flags);
352479bd3712SFilipe Manana 		if (IS_ERR(sys_bg)) {
352579bd3712SFilipe Manana 			ret = PTR_ERR(sys_bg);
352679bd3712SFilipe Manana 			btrfs_abort_transaction(trans, ret);
352779bd3712SFilipe Manana 			goto out;
352879bd3712SFilipe Manana 		}
352979bd3712SFilipe Manana 
353079bd3712SFilipe Manana 		ret = btrfs_chunk_alloc_add_chunk_item(trans, sys_bg);
353179bd3712SFilipe Manana 		if (ret) {
353279bd3712SFilipe Manana 			btrfs_abort_transaction(trans, ret);
353379bd3712SFilipe Manana 			goto out;
353479bd3712SFilipe Manana 		}
353579bd3712SFilipe Manana 
353679bd3712SFilipe Manana 		ret = btrfs_chunk_alloc_add_chunk_item(trans, bg);
353779bd3712SFilipe Manana 		if (ret) {
353879bd3712SFilipe Manana 			btrfs_abort_transaction(trans, ret);
353979bd3712SFilipe Manana 			goto out;
354079bd3712SFilipe Manana 		}
354179bd3712SFilipe Manana 	} else if (ret) {
354279bd3712SFilipe Manana 		btrfs_abort_transaction(trans, ret);
354379bd3712SFilipe Manana 		goto out;
354479bd3712SFilipe Manana 	}
354579bd3712SFilipe Manana out:
354679bd3712SFilipe Manana 	btrfs_trans_release_chunk_metadata(trans);
354779bd3712SFilipe Manana 
3548820c363bSNaohiro Aota 	if (ret)
3549820c363bSNaohiro Aota 		return ERR_PTR(ret);
3550820c363bSNaohiro Aota 
3551820c363bSNaohiro Aota 	btrfs_get_block_group(bg);
3552820c363bSNaohiro Aota 	return bg;
355379bd3712SFilipe Manana }
355479bd3712SFilipe Manana 
355579bd3712SFilipe Manana /*
355679bd3712SFilipe Manana  * Chunk allocation is done in 2 phases:
355779bd3712SFilipe Manana  *
355879bd3712SFilipe Manana  * 1) Phase 1 - through btrfs_chunk_alloc() we allocate device extents for
355979bd3712SFilipe Manana  *    the chunk, the chunk mapping, create its block group and add the items
356079bd3712SFilipe Manana  *    that belong in the chunk btree to it - more specifically, we need to
356179bd3712SFilipe Manana  *    update device items in the chunk btree and add a new chunk item to it.
356279bd3712SFilipe Manana  *
356379bd3712SFilipe Manana  * 2) Phase 2 - through btrfs_create_pending_block_groups(), we add the block
356479bd3712SFilipe Manana  *    group item to the extent btree and the device extent items to the devices
356579bd3712SFilipe Manana  *    btree.
356679bd3712SFilipe Manana  *
356779bd3712SFilipe Manana  * This is done to prevent deadlocks. For example when COWing a node from the
356879bd3712SFilipe Manana  * extent btree we are holding a write lock on the node's parent and if we
356979bd3712SFilipe Manana  * trigger chunk allocation and attempted to insert the new block group item
357079bd3712SFilipe Manana  * in the extent btree right way, we could deadlock because the path for the
357179bd3712SFilipe Manana  * insertion can include that parent node. At first glance it seems impossible
357279bd3712SFilipe Manana  * to trigger chunk allocation after starting a transaction since tasks should
357379bd3712SFilipe Manana  * reserve enough transaction units (metadata space), however while that is true
357479bd3712SFilipe Manana  * most of the time, chunk allocation may still be triggered for several reasons:
357579bd3712SFilipe Manana  *
357679bd3712SFilipe Manana  * 1) When reserving metadata, we check if there is enough free space in the
357779bd3712SFilipe Manana  *    metadata space_info and therefore don't trigger allocation of a new chunk.
357879bd3712SFilipe Manana  *    However later when the task actually tries to COW an extent buffer from
357979bd3712SFilipe Manana  *    the extent btree or from the device btree for example, it is forced to
358079bd3712SFilipe Manana  *    allocate a new block group (chunk) because the only one that had enough
358179bd3712SFilipe Manana  *    free space was just turned to RO mode by a running scrub for example (or
358279bd3712SFilipe Manana  *    device replace, block group reclaim thread, etc), so we can not use it
358379bd3712SFilipe Manana  *    for allocating an extent and end up being forced to allocate a new one;
358479bd3712SFilipe Manana  *
358579bd3712SFilipe Manana  * 2) Because we only check that the metadata space_info has enough free bytes,
358679bd3712SFilipe Manana  *    we end up not allocating a new metadata chunk in that case. However if
358779bd3712SFilipe Manana  *    the filesystem was mounted in degraded mode, none of the existing block
358879bd3712SFilipe Manana  *    groups might be suitable for extent allocation due to their incompatible
358979bd3712SFilipe Manana  *    profile (for e.g. mounting a 2 devices filesystem, where all block groups
359079bd3712SFilipe Manana  *    use a RAID1 profile, in degraded mode using a single device). In this case
359179bd3712SFilipe Manana  *    when the task attempts to COW some extent buffer of the extent btree for
359279bd3712SFilipe Manana  *    example, it will trigger allocation of a new metadata block group with a
359379bd3712SFilipe Manana  *    suitable profile (SINGLE profile in the example of the degraded mount of
359479bd3712SFilipe Manana  *    the RAID1 filesystem);
359579bd3712SFilipe Manana  *
359679bd3712SFilipe Manana  * 3) The task has reserved enough transaction units / metadata space, but when
359779bd3712SFilipe Manana  *    it attempts to COW an extent buffer from the extent or device btree for
359879bd3712SFilipe Manana  *    example, it does not find any free extent in any metadata block group,
359979bd3712SFilipe Manana  *    therefore forced to try to allocate a new metadata block group.
360079bd3712SFilipe Manana  *    This is because some other task allocated all available extents in the
360179bd3712SFilipe Manana  *    meanwhile - this typically happens with tasks that don't reserve space
360279bd3712SFilipe Manana  *    properly, either intentionally or as a bug. One example where this is
360379bd3712SFilipe Manana  *    done intentionally is fsync, as it does not reserve any transaction units
360479bd3712SFilipe Manana  *    and ends up allocating a variable number of metadata extents for log
3605ecd84d54SFilipe Manana  *    tree extent buffers;
3606ecd84d54SFilipe Manana  *
3607ecd84d54SFilipe Manana  * 4) The task has reserved enough transaction units / metadata space, but right
3608ecd84d54SFilipe Manana  *    before it tries to allocate the last extent buffer it needs, a discard
3609ecd84d54SFilipe Manana  *    operation comes in and, temporarily, removes the last free space entry from
3610ecd84d54SFilipe Manana  *    the only metadata block group that had free space (discard starts by
3611ecd84d54SFilipe Manana  *    removing a free space entry from a block group, then does the discard
3612ecd84d54SFilipe Manana  *    operation and, once it's done, it adds back the free space entry to the
3613ecd84d54SFilipe Manana  *    block group).
361479bd3712SFilipe Manana  *
361579bd3712SFilipe Manana  * We also need this 2 phases setup when adding a device to a filesystem with
361679bd3712SFilipe Manana  * a seed device - we must create new metadata and system chunks without adding
361779bd3712SFilipe Manana  * any of the block group items to the chunk, extent and device btrees. If we
361879bd3712SFilipe Manana  * did not do it this way, we would get ENOSPC when attempting to update those
361979bd3712SFilipe Manana  * btrees, since all the chunks from the seed device are read-only.
362079bd3712SFilipe Manana  *
362179bd3712SFilipe Manana  * Phase 1 does the updates and insertions to the chunk btree because if we had
362279bd3712SFilipe Manana  * it done in phase 2 and have a thundering herd of tasks allocating chunks in
362379bd3712SFilipe Manana  * parallel, we risk having too many system chunks allocated by many tasks if
362479bd3712SFilipe Manana  * many tasks reach phase 1 without the previous ones completing phase 2. In the
362579bd3712SFilipe Manana  * extreme case this leads to exhaustion of the system chunk array in the
362679bd3712SFilipe Manana  * superblock. This is easier to trigger if using a btree node/leaf size of 64K
362779bd3712SFilipe Manana  * and with RAID filesystems (so we have more device items in the chunk btree).
362879bd3712SFilipe Manana  * This has happened before and commit eafa4fd0ad0607 ("btrfs: fix exhaustion of
362979bd3712SFilipe Manana  * the system chunk array due to concurrent allocations") provides more details.
363079bd3712SFilipe Manana  *
36312bb2e00eSFilipe Manana  * Allocation of system chunks does not happen through this function. A task that
36322bb2e00eSFilipe Manana  * needs to update the chunk btree (the only btree that uses system chunks), must
36332bb2e00eSFilipe Manana  * preallocate chunk space by calling either check_system_chunk() or
36342bb2e00eSFilipe Manana  * btrfs_reserve_chunk_metadata() - the former is used when allocating a data or
36352bb2e00eSFilipe Manana  * metadata chunk or when removing a chunk, while the later is used before doing
36362bb2e00eSFilipe Manana  * a modification to the chunk btree - use cases for the later are adding,
36372bb2e00eSFilipe Manana  * removing and resizing a device as well as relocation of a system chunk.
36382bb2e00eSFilipe Manana  * See the comment below for more details.
363979bd3712SFilipe Manana  *
364079bd3712SFilipe Manana  * The reservation of system space, done through check_system_chunk(), as well
364179bd3712SFilipe Manana  * as all the updates and insertions into the chunk btree must be done while
364279bd3712SFilipe Manana  * holding fs_info->chunk_mutex. This is important to guarantee that while COWing
364379bd3712SFilipe Manana  * an extent buffer from the chunks btree we never trigger allocation of a new
364479bd3712SFilipe Manana  * system chunk, which would result in a deadlock (trying to lock twice an
364579bd3712SFilipe Manana  * extent buffer of the chunk btree, first time before triggering the chunk
364679bd3712SFilipe Manana  * allocation and the second time during chunk allocation while attempting to
364779bd3712SFilipe Manana  * update the chunks btree). The system chunk array is also updated while holding
364879bd3712SFilipe Manana  * that mutex. The same logic applies to removing chunks - we must reserve system
364979bd3712SFilipe Manana  * space, update the chunk btree and the system chunk array in the superblock
365079bd3712SFilipe Manana  * while holding fs_info->chunk_mutex.
365179bd3712SFilipe Manana  *
365279bd3712SFilipe Manana  * This function, btrfs_chunk_alloc(), belongs to phase 1.
365379bd3712SFilipe Manana  *
365479bd3712SFilipe Manana  * If @force is CHUNK_ALLOC_FORCE:
365507730d87SJosef Bacik  *    - return 1 if it successfully allocates a chunk,
365607730d87SJosef Bacik  *    - return errors including -ENOSPC otherwise.
365779bd3712SFilipe Manana  * If @force is NOT CHUNK_ALLOC_FORCE:
365807730d87SJosef Bacik  *    - return 0 if it doesn't need to allocate a new chunk,
365907730d87SJosef Bacik  *    - return 1 if it successfully allocates a chunk,
366007730d87SJosef Bacik  *    - return errors including -ENOSPC otherwise.
366107730d87SJosef Bacik  */
366207730d87SJosef Bacik int btrfs_chunk_alloc(struct btrfs_trans_handle *trans, u64 flags,
366307730d87SJosef Bacik 		      enum btrfs_chunk_alloc_enum force)
366407730d87SJosef Bacik {
366507730d87SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
366607730d87SJosef Bacik 	struct btrfs_space_info *space_info;
3667820c363bSNaohiro Aota 	struct btrfs_block_group *ret_bg;
366807730d87SJosef Bacik 	bool wait_for_alloc = false;
366907730d87SJosef Bacik 	bool should_alloc = false;
3670760e69c4SNaohiro Aota 	bool from_extent_allocation = false;
367107730d87SJosef Bacik 	int ret = 0;
367207730d87SJosef Bacik 
3673760e69c4SNaohiro Aota 	if (force == CHUNK_ALLOC_FORCE_FOR_EXTENT) {
3674760e69c4SNaohiro Aota 		from_extent_allocation = true;
3675760e69c4SNaohiro Aota 		force = CHUNK_ALLOC_FORCE;
3676760e69c4SNaohiro Aota 	}
3677760e69c4SNaohiro Aota 
367807730d87SJosef Bacik 	/* Don't re-enter if we're already allocating a chunk */
367907730d87SJosef Bacik 	if (trans->allocating_chunk)
368007730d87SJosef Bacik 		return -ENOSPC;
368179bd3712SFilipe Manana 	/*
36822bb2e00eSFilipe Manana 	 * Allocation of system chunks can not happen through this path, as we
36832bb2e00eSFilipe Manana 	 * could end up in a deadlock if we are allocating a data or metadata
36842bb2e00eSFilipe Manana 	 * chunk and there is another task modifying the chunk btree.
36852bb2e00eSFilipe Manana 	 *
36862bb2e00eSFilipe Manana 	 * This is because while we are holding the chunk mutex, we will attempt
36872bb2e00eSFilipe Manana 	 * to add the new chunk item to the chunk btree or update an existing
36882bb2e00eSFilipe Manana 	 * device item in the chunk btree, while the other task that is modifying
36892bb2e00eSFilipe Manana 	 * the chunk btree is attempting to COW an extent buffer while holding a
36902bb2e00eSFilipe Manana 	 * lock on it and on its parent - if the COW operation triggers a system
36912bb2e00eSFilipe Manana 	 * chunk allocation, then we can deadlock because we are holding the
36922bb2e00eSFilipe Manana 	 * chunk mutex and we may need to access that extent buffer or its parent
36932bb2e00eSFilipe Manana 	 * in order to add the chunk item or update a device item.
36942bb2e00eSFilipe Manana 	 *
36952bb2e00eSFilipe Manana 	 * Tasks that want to modify the chunk tree should reserve system space
36962bb2e00eSFilipe Manana 	 * before updating the chunk btree, by calling either
36972bb2e00eSFilipe Manana 	 * btrfs_reserve_chunk_metadata() or check_system_chunk().
36982bb2e00eSFilipe Manana 	 * It's possible that after a task reserves the space, it still ends up
36992bb2e00eSFilipe Manana 	 * here - this happens in the cases described above at do_chunk_alloc().
37002bb2e00eSFilipe Manana 	 * The task will have to either retry or fail.
370179bd3712SFilipe Manana 	 */
37022bb2e00eSFilipe Manana 	if (flags & BTRFS_BLOCK_GROUP_SYSTEM)
370379bd3712SFilipe Manana 		return -ENOSPC;
370407730d87SJosef Bacik 
370507730d87SJosef Bacik 	space_info = btrfs_find_space_info(fs_info, flags);
370607730d87SJosef Bacik 	ASSERT(space_info);
370707730d87SJosef Bacik 
370807730d87SJosef Bacik 	do {
370907730d87SJosef Bacik 		spin_lock(&space_info->lock);
371007730d87SJosef Bacik 		if (force < space_info->force_alloc)
371107730d87SJosef Bacik 			force = space_info->force_alloc;
371207730d87SJosef Bacik 		should_alloc = should_alloc_chunk(fs_info, space_info, force);
371307730d87SJosef Bacik 		if (space_info->full) {
371407730d87SJosef Bacik 			/* No more free physical space */
371507730d87SJosef Bacik 			if (should_alloc)
371607730d87SJosef Bacik 				ret = -ENOSPC;
371707730d87SJosef Bacik 			else
371807730d87SJosef Bacik 				ret = 0;
371907730d87SJosef Bacik 			spin_unlock(&space_info->lock);
372007730d87SJosef Bacik 			return ret;
372107730d87SJosef Bacik 		} else if (!should_alloc) {
372207730d87SJosef Bacik 			spin_unlock(&space_info->lock);
372307730d87SJosef Bacik 			return 0;
372407730d87SJosef Bacik 		} else if (space_info->chunk_alloc) {
372507730d87SJosef Bacik 			/*
372607730d87SJosef Bacik 			 * Someone is already allocating, so we need to block
372707730d87SJosef Bacik 			 * until this someone is finished and then loop to
372807730d87SJosef Bacik 			 * recheck if we should continue with our allocation
372907730d87SJosef Bacik 			 * attempt.
373007730d87SJosef Bacik 			 */
373107730d87SJosef Bacik 			wait_for_alloc = true;
373207730d87SJosef Bacik 			spin_unlock(&space_info->lock);
373307730d87SJosef Bacik 			mutex_lock(&fs_info->chunk_mutex);
373407730d87SJosef Bacik 			mutex_unlock(&fs_info->chunk_mutex);
373507730d87SJosef Bacik 		} else {
373607730d87SJosef Bacik 			/* Proceed with allocation */
373707730d87SJosef Bacik 			space_info->chunk_alloc = 1;
373807730d87SJosef Bacik 			wait_for_alloc = false;
373907730d87SJosef Bacik 			spin_unlock(&space_info->lock);
374007730d87SJosef Bacik 		}
374107730d87SJosef Bacik 
374207730d87SJosef Bacik 		cond_resched();
374307730d87SJosef Bacik 	} while (wait_for_alloc);
374407730d87SJosef Bacik 
374507730d87SJosef Bacik 	mutex_lock(&fs_info->chunk_mutex);
374607730d87SJosef Bacik 	trans->allocating_chunk = true;
374707730d87SJosef Bacik 
374807730d87SJosef Bacik 	/*
374907730d87SJosef Bacik 	 * If we have mixed data/metadata chunks we want to make sure we keep
375007730d87SJosef Bacik 	 * allocating mixed chunks instead of individual chunks.
375107730d87SJosef Bacik 	 */
375207730d87SJosef Bacik 	if (btrfs_mixed_space_info(space_info))
375307730d87SJosef Bacik 		flags |= (BTRFS_BLOCK_GROUP_DATA | BTRFS_BLOCK_GROUP_METADATA);
375407730d87SJosef Bacik 
375507730d87SJosef Bacik 	/*
375607730d87SJosef Bacik 	 * if we're doing a data chunk, go ahead and make sure that
375707730d87SJosef Bacik 	 * we keep a reasonable number of metadata chunks allocated in the
375807730d87SJosef Bacik 	 * FS as well.
375907730d87SJosef Bacik 	 */
376007730d87SJosef Bacik 	if (flags & BTRFS_BLOCK_GROUP_DATA && fs_info->metadata_ratio) {
376107730d87SJosef Bacik 		fs_info->data_chunk_allocations++;
376207730d87SJosef Bacik 		if (!(fs_info->data_chunk_allocations %
376307730d87SJosef Bacik 		      fs_info->metadata_ratio))
376407730d87SJosef Bacik 			force_metadata_allocation(fs_info);
376507730d87SJosef Bacik 	}
376607730d87SJosef Bacik 
3767820c363bSNaohiro Aota 	ret_bg = do_chunk_alloc(trans, flags);
376807730d87SJosef Bacik 	trans->allocating_chunk = false;
376907730d87SJosef Bacik 
3770760e69c4SNaohiro Aota 	if (IS_ERR(ret_bg)) {
3771820c363bSNaohiro Aota 		ret = PTR_ERR(ret_bg);
3772760e69c4SNaohiro Aota 	} else if (from_extent_allocation) {
3773760e69c4SNaohiro Aota 		/*
3774760e69c4SNaohiro Aota 		 * New block group is likely to be used soon. Try to activate
3775760e69c4SNaohiro Aota 		 * it now. Failure is OK for now.
3776760e69c4SNaohiro Aota 		 */
3777760e69c4SNaohiro Aota 		btrfs_zone_activate(ret_bg);
3778760e69c4SNaohiro Aota 	}
3779760e69c4SNaohiro Aota 
3780760e69c4SNaohiro Aota 	if (!ret)
3781820c363bSNaohiro Aota 		btrfs_put_block_group(ret_bg);
3782820c363bSNaohiro Aota 
378307730d87SJosef Bacik 	spin_lock(&space_info->lock);
378407730d87SJosef Bacik 	if (ret < 0) {
378507730d87SJosef Bacik 		if (ret == -ENOSPC)
378607730d87SJosef Bacik 			space_info->full = 1;
378707730d87SJosef Bacik 		else
378807730d87SJosef Bacik 			goto out;
378907730d87SJosef Bacik 	} else {
379007730d87SJosef Bacik 		ret = 1;
379107730d87SJosef Bacik 		space_info->max_extent_size = 0;
379207730d87SJosef Bacik 	}
379307730d87SJosef Bacik 
379407730d87SJosef Bacik 	space_info->force_alloc = CHUNK_ALLOC_NO_FORCE;
379507730d87SJosef Bacik out:
379607730d87SJosef Bacik 	space_info->chunk_alloc = 0;
379707730d87SJosef Bacik 	spin_unlock(&space_info->lock);
379807730d87SJosef Bacik 	mutex_unlock(&fs_info->chunk_mutex);
379907730d87SJosef Bacik 
380007730d87SJosef Bacik 	return ret;
380107730d87SJosef Bacik }
380207730d87SJosef Bacik 
380307730d87SJosef Bacik static u64 get_profile_num_devs(struct btrfs_fs_info *fs_info, u64 type)
380407730d87SJosef Bacik {
380507730d87SJosef Bacik 	u64 num_dev;
380607730d87SJosef Bacik 
380707730d87SJosef Bacik 	num_dev = btrfs_raid_array[btrfs_bg_flags_to_raid_index(type)].devs_max;
380807730d87SJosef Bacik 	if (!num_dev)
380907730d87SJosef Bacik 		num_dev = fs_info->fs_devices->rw_devices;
381007730d87SJosef Bacik 
381107730d87SJosef Bacik 	return num_dev;
381207730d87SJosef Bacik }
381307730d87SJosef Bacik 
38142bb2e00eSFilipe Manana static void reserve_chunk_space(struct btrfs_trans_handle *trans,
38152bb2e00eSFilipe Manana 				u64 bytes,
38162bb2e00eSFilipe Manana 				u64 type)
381707730d87SJosef Bacik {
381807730d87SJosef Bacik 	struct btrfs_fs_info *fs_info = trans->fs_info;
381907730d87SJosef Bacik 	struct btrfs_space_info *info;
382007730d87SJosef Bacik 	u64 left;
382107730d87SJosef Bacik 	int ret = 0;
382207730d87SJosef Bacik 
382307730d87SJosef Bacik 	/*
382407730d87SJosef Bacik 	 * Needed because we can end up allocating a system chunk and for an
382507730d87SJosef Bacik 	 * atomic and race free space reservation in the chunk block reserve.
382607730d87SJosef Bacik 	 */
382707730d87SJosef Bacik 	lockdep_assert_held(&fs_info->chunk_mutex);
382807730d87SJosef Bacik 
382907730d87SJosef Bacik 	info = btrfs_find_space_info(fs_info, BTRFS_BLOCK_GROUP_SYSTEM);
383007730d87SJosef Bacik 	spin_lock(&info->lock);
383107730d87SJosef Bacik 	left = info->total_bytes - btrfs_space_info_used(info, true);
383207730d87SJosef Bacik 	spin_unlock(&info->lock);
383307730d87SJosef Bacik 
38342bb2e00eSFilipe Manana 	if (left < bytes && btrfs_test_opt(fs_info, ENOSPC_DEBUG)) {
383507730d87SJosef Bacik 		btrfs_info(fs_info, "left=%llu, need=%llu, flags=%llu",
38362bb2e00eSFilipe Manana 			   left, bytes, type);
383707730d87SJosef Bacik 		btrfs_dump_space_info(fs_info, info, 0, 0);
383807730d87SJosef Bacik 	}
383907730d87SJosef Bacik 
38402bb2e00eSFilipe Manana 	if (left < bytes) {
384107730d87SJosef Bacik 		u64 flags = btrfs_system_alloc_profile(fs_info);
384279bd3712SFilipe Manana 		struct btrfs_block_group *bg;
384307730d87SJosef Bacik 
384407730d87SJosef Bacik 		/*
384507730d87SJosef Bacik 		 * Ignore failure to create system chunk. We might end up not
384607730d87SJosef Bacik 		 * needing it, as we might not need to COW all nodes/leafs from
384707730d87SJosef Bacik 		 * the paths we visit in the chunk tree (they were already COWed
384807730d87SJosef Bacik 		 * or created in the current transaction for example).
384907730d87SJosef Bacik 		 */
3850f6f39f7aSNikolay Borisov 		bg = btrfs_create_chunk(trans, flags);
385179bd3712SFilipe Manana 		if (IS_ERR(bg)) {
385279bd3712SFilipe Manana 			ret = PTR_ERR(bg);
38532bb2e00eSFilipe Manana 		} else {
385479bd3712SFilipe Manana 			/*
385579bd3712SFilipe Manana 			 * If we fail to add the chunk item here, we end up
385679bd3712SFilipe Manana 			 * trying again at phase 2 of chunk allocation, at
385779bd3712SFilipe Manana 			 * btrfs_create_pending_block_groups(). So ignore
38582bb2e00eSFilipe Manana 			 * any error here. An ENOSPC here could happen, due to
38592bb2e00eSFilipe Manana 			 * the cases described at do_chunk_alloc() - the system
38602bb2e00eSFilipe Manana 			 * block group we just created was just turned into RO
38612bb2e00eSFilipe Manana 			 * mode by a scrub for example, or a running discard
38622bb2e00eSFilipe Manana 			 * temporarily removed its free space entries, etc.
386379bd3712SFilipe Manana 			 */
386479bd3712SFilipe Manana 			btrfs_chunk_alloc_add_chunk_item(trans, bg);
386579bd3712SFilipe Manana 		}
386607730d87SJosef Bacik 	}
386707730d87SJosef Bacik 
386807730d87SJosef Bacik 	if (!ret) {
38699270501cSJosef Bacik 		ret = btrfs_block_rsv_add(fs_info,
387007730d87SJosef Bacik 					  &fs_info->chunk_block_rsv,
38712bb2e00eSFilipe Manana 					  bytes, BTRFS_RESERVE_NO_FLUSH);
38721cb3db1cSFilipe Manana 		if (!ret)
38732bb2e00eSFilipe Manana 			trans->chunk_bytes_reserved += bytes;
387407730d87SJosef Bacik 	}
387507730d87SJosef Bacik }
387607730d87SJosef Bacik 
38772bb2e00eSFilipe Manana /*
38782bb2e00eSFilipe Manana  * Reserve space in the system space for allocating or removing a chunk.
38792bb2e00eSFilipe Manana  * The caller must be holding fs_info->chunk_mutex.
38802bb2e00eSFilipe Manana  */
38812bb2e00eSFilipe Manana void check_system_chunk(struct btrfs_trans_handle *trans, u64 type)
38822bb2e00eSFilipe Manana {
38832bb2e00eSFilipe Manana 	struct btrfs_fs_info *fs_info = trans->fs_info;
38842bb2e00eSFilipe Manana 	const u64 num_devs = get_profile_num_devs(fs_info, type);
38852bb2e00eSFilipe Manana 	u64 bytes;
38862bb2e00eSFilipe Manana 
38872bb2e00eSFilipe Manana 	/* num_devs device items to update and 1 chunk item to add or remove. */
38882bb2e00eSFilipe Manana 	bytes = btrfs_calc_metadata_size(fs_info, num_devs) +
38892bb2e00eSFilipe Manana 		btrfs_calc_insert_metadata_size(fs_info, 1);
38902bb2e00eSFilipe Manana 
38912bb2e00eSFilipe Manana 	reserve_chunk_space(trans, bytes, type);
38922bb2e00eSFilipe Manana }
38932bb2e00eSFilipe Manana 
38942bb2e00eSFilipe Manana /*
38952bb2e00eSFilipe Manana  * Reserve space in the system space, if needed, for doing a modification to the
38962bb2e00eSFilipe Manana  * chunk btree.
38972bb2e00eSFilipe Manana  *
38982bb2e00eSFilipe Manana  * @trans:		A transaction handle.
38992bb2e00eSFilipe Manana  * @is_item_insertion:	Indicate if the modification is for inserting a new item
39002bb2e00eSFilipe Manana  *			in the chunk btree or if it's for the deletion or update
39012bb2e00eSFilipe Manana  *			of an existing item.
39022bb2e00eSFilipe Manana  *
39032bb2e00eSFilipe Manana  * This is used in a context where we need to update the chunk btree outside
39042bb2e00eSFilipe Manana  * block group allocation and removal, to avoid a deadlock with a concurrent
39052bb2e00eSFilipe Manana  * task that is allocating a metadata or data block group and therefore needs to
39062bb2e00eSFilipe Manana  * update the chunk btree while holding the chunk mutex. After the update to the
39072bb2e00eSFilipe Manana  * chunk btree is done, btrfs_trans_release_chunk_metadata() should be called.
39082bb2e00eSFilipe Manana  *
39092bb2e00eSFilipe Manana  */
39102bb2e00eSFilipe Manana void btrfs_reserve_chunk_metadata(struct btrfs_trans_handle *trans,
39112bb2e00eSFilipe Manana 				  bool is_item_insertion)
39122bb2e00eSFilipe Manana {
39132bb2e00eSFilipe Manana 	struct btrfs_fs_info *fs_info = trans->fs_info;
39142bb2e00eSFilipe Manana 	u64 bytes;
39152bb2e00eSFilipe Manana 
39162bb2e00eSFilipe Manana 	if (is_item_insertion)
39172bb2e00eSFilipe Manana 		bytes = btrfs_calc_insert_metadata_size(fs_info, 1);
39182bb2e00eSFilipe Manana 	else
39192bb2e00eSFilipe Manana 		bytes = btrfs_calc_metadata_size(fs_info, 1);
39202bb2e00eSFilipe Manana 
39212bb2e00eSFilipe Manana 	mutex_lock(&fs_info->chunk_mutex);
39222bb2e00eSFilipe Manana 	reserve_chunk_space(trans, bytes, BTRFS_BLOCK_GROUP_SYSTEM);
39232bb2e00eSFilipe Manana 	mutex_unlock(&fs_info->chunk_mutex);
39242bb2e00eSFilipe Manana }
39252bb2e00eSFilipe Manana 
39263e43c279SJosef Bacik void btrfs_put_block_group_cache(struct btrfs_fs_info *info)
39273e43c279SJosef Bacik {
392832da5386SDavid Sterba 	struct btrfs_block_group *block_group;
39293e43c279SJosef Bacik 	u64 last = 0;
39303e43c279SJosef Bacik 
39313e43c279SJosef Bacik 	while (1) {
39323e43c279SJosef Bacik 		struct inode *inode;
39333e43c279SJosef Bacik 
39343e43c279SJosef Bacik 		block_group = btrfs_lookup_first_block_group(info, last);
39353e43c279SJosef Bacik 		while (block_group) {
39363e43c279SJosef Bacik 			btrfs_wait_block_group_cache_done(block_group);
39373e43c279SJosef Bacik 			spin_lock(&block_group->lock);
39383e43c279SJosef Bacik 			if (block_group->iref)
39393e43c279SJosef Bacik 				break;
39403e43c279SJosef Bacik 			spin_unlock(&block_group->lock);
39413e43c279SJosef Bacik 			block_group = btrfs_next_block_group(block_group);
39423e43c279SJosef Bacik 		}
39433e43c279SJosef Bacik 		if (!block_group) {
39443e43c279SJosef Bacik 			if (last == 0)
39453e43c279SJosef Bacik 				break;
39463e43c279SJosef Bacik 			last = 0;
39473e43c279SJosef Bacik 			continue;
39483e43c279SJosef Bacik 		}
39493e43c279SJosef Bacik 
39503e43c279SJosef Bacik 		inode = block_group->inode;
39513e43c279SJosef Bacik 		block_group->iref = 0;
39523e43c279SJosef Bacik 		block_group->inode = NULL;
39533e43c279SJosef Bacik 		spin_unlock(&block_group->lock);
39543e43c279SJosef Bacik 		ASSERT(block_group->io_ctl.inode == NULL);
39553e43c279SJosef Bacik 		iput(inode);
3956b3470b5dSDavid Sterba 		last = block_group->start + block_group->length;
39573e43c279SJosef Bacik 		btrfs_put_block_group(block_group);
39583e43c279SJosef Bacik 	}
39593e43c279SJosef Bacik }
39603e43c279SJosef Bacik 
39613e43c279SJosef Bacik /*
39623e43c279SJosef Bacik  * Must be called only after stopping all workers, since we could have block
39633e43c279SJosef Bacik  * group caching kthreads running, and therefore they could race with us if we
39643e43c279SJosef Bacik  * freed the block groups before stopping them.
39653e43c279SJosef Bacik  */
39663e43c279SJosef Bacik int btrfs_free_block_groups(struct btrfs_fs_info *info)
39673e43c279SJosef Bacik {
396832da5386SDavid Sterba 	struct btrfs_block_group *block_group;
39693e43c279SJosef Bacik 	struct btrfs_space_info *space_info;
39703e43c279SJosef Bacik 	struct btrfs_caching_control *caching_ctl;
39713e43c279SJosef Bacik 	struct rb_node *n;
39723e43c279SJosef Bacik 
3973bbb86a37SJosef Bacik 	spin_lock(&info->block_group_cache_lock);
39743e43c279SJosef Bacik 	while (!list_empty(&info->caching_block_groups)) {
39753e43c279SJosef Bacik 		caching_ctl = list_entry(info->caching_block_groups.next,
39763e43c279SJosef Bacik 					 struct btrfs_caching_control, list);
39773e43c279SJosef Bacik 		list_del(&caching_ctl->list);
39783e43c279SJosef Bacik 		btrfs_put_caching_control(caching_ctl);
39793e43c279SJosef Bacik 	}
3980bbb86a37SJosef Bacik 	spin_unlock(&info->block_group_cache_lock);
39813e43c279SJosef Bacik 
39823e43c279SJosef Bacik 	spin_lock(&info->unused_bgs_lock);
39833e43c279SJosef Bacik 	while (!list_empty(&info->unused_bgs)) {
39843e43c279SJosef Bacik 		block_group = list_first_entry(&info->unused_bgs,
398532da5386SDavid Sterba 					       struct btrfs_block_group,
39863e43c279SJosef Bacik 					       bg_list);
39873e43c279SJosef Bacik 		list_del_init(&block_group->bg_list);
39883e43c279SJosef Bacik 		btrfs_put_block_group(block_group);
39893e43c279SJosef Bacik 	}
39903e43c279SJosef Bacik 
399118bb8bbfSJohannes Thumshirn 	while (!list_empty(&info->reclaim_bgs)) {
399218bb8bbfSJohannes Thumshirn 		block_group = list_first_entry(&info->reclaim_bgs,
399318bb8bbfSJohannes Thumshirn 					       struct btrfs_block_group,
399418bb8bbfSJohannes Thumshirn 					       bg_list);
399518bb8bbfSJohannes Thumshirn 		list_del_init(&block_group->bg_list);
399618bb8bbfSJohannes Thumshirn 		btrfs_put_block_group(block_group);
399718bb8bbfSJohannes Thumshirn 	}
399818bb8bbfSJohannes Thumshirn 	spin_unlock(&info->unused_bgs_lock);
399918bb8bbfSJohannes Thumshirn 
4000afba2bc0SNaohiro Aota 	spin_lock(&info->zone_active_bgs_lock);
4001afba2bc0SNaohiro Aota 	while (!list_empty(&info->zone_active_bgs)) {
4002afba2bc0SNaohiro Aota 		block_group = list_first_entry(&info->zone_active_bgs,
4003afba2bc0SNaohiro Aota 					       struct btrfs_block_group,
4004afba2bc0SNaohiro Aota 					       active_bg_list);
4005afba2bc0SNaohiro Aota 		list_del_init(&block_group->active_bg_list);
4006afba2bc0SNaohiro Aota 		btrfs_put_block_group(block_group);
4007afba2bc0SNaohiro Aota 	}
4008afba2bc0SNaohiro Aota 	spin_unlock(&info->zone_active_bgs_lock);
4009afba2bc0SNaohiro Aota 
40103e43c279SJosef Bacik 	spin_lock(&info->block_group_cache_lock);
4011*08dddb29SFilipe Manana 	while ((n = rb_last(&info->block_group_cache_tree.rb_root)) != NULL) {
401232da5386SDavid Sterba 		block_group = rb_entry(n, struct btrfs_block_group,
40133e43c279SJosef Bacik 				       cache_node);
4014*08dddb29SFilipe Manana 		rb_erase_cached(&block_group->cache_node,
40153e43c279SJosef Bacik 				&info->block_group_cache_tree);
40163e43c279SJosef Bacik 		RB_CLEAR_NODE(&block_group->cache_node);
40173e43c279SJosef Bacik 		spin_unlock(&info->block_group_cache_lock);
40183e43c279SJosef Bacik 
40193e43c279SJosef Bacik 		down_write(&block_group->space_info->groups_sem);
40203e43c279SJosef Bacik 		list_del(&block_group->list);
40213e43c279SJosef Bacik 		up_write(&block_group->space_info->groups_sem);
40223e43c279SJosef Bacik 
40233e43c279SJosef Bacik 		/*
40243e43c279SJosef Bacik 		 * We haven't cached this block group, which means we could
40253e43c279SJosef Bacik 		 * possibly have excluded extents on this block group.
40263e43c279SJosef Bacik 		 */
40273e43c279SJosef Bacik 		if (block_group->cached == BTRFS_CACHE_NO ||
40283e43c279SJosef Bacik 		    block_group->cached == BTRFS_CACHE_ERROR)
40293e43c279SJosef Bacik 			btrfs_free_excluded_extents(block_group);
40303e43c279SJosef Bacik 
40313e43c279SJosef Bacik 		btrfs_remove_free_space_cache(block_group);
40323e43c279SJosef Bacik 		ASSERT(block_group->cached != BTRFS_CACHE_STARTED);
40333e43c279SJosef Bacik 		ASSERT(list_empty(&block_group->dirty_list));
40343e43c279SJosef Bacik 		ASSERT(list_empty(&block_group->io_list));
40353e43c279SJosef Bacik 		ASSERT(list_empty(&block_group->bg_list));
403648aaeebeSJosef Bacik 		ASSERT(refcount_read(&block_group->refs) == 1);
4037195a49eaSFilipe Manana 		ASSERT(block_group->swap_extents == 0);
40383e43c279SJosef Bacik 		btrfs_put_block_group(block_group);
40393e43c279SJosef Bacik 
40403e43c279SJosef Bacik 		spin_lock(&info->block_group_cache_lock);
40413e43c279SJosef Bacik 	}
40423e43c279SJosef Bacik 	spin_unlock(&info->block_group_cache_lock);
40433e43c279SJosef Bacik 
40443e43c279SJosef Bacik 	btrfs_release_global_block_rsv(info);
40453e43c279SJosef Bacik 
40463e43c279SJosef Bacik 	while (!list_empty(&info->space_info)) {
40473e43c279SJosef Bacik 		space_info = list_entry(info->space_info.next,
40483e43c279SJosef Bacik 					struct btrfs_space_info,
40493e43c279SJosef Bacik 					list);
40503e43c279SJosef Bacik 
40513e43c279SJosef Bacik 		/*
40523e43c279SJosef Bacik 		 * Do not hide this behind enospc_debug, this is actually
40533e43c279SJosef Bacik 		 * important and indicates a real bug if this happens.
40543e43c279SJosef Bacik 		 */
40553e43c279SJosef Bacik 		if (WARN_ON(space_info->bytes_pinned > 0 ||
40563e43c279SJosef Bacik 			    space_info->bytes_may_use > 0))
40573e43c279SJosef Bacik 			btrfs_dump_space_info(info, space_info, 0, 0);
405840cdc509SFilipe Manana 
405940cdc509SFilipe Manana 		/*
406040cdc509SFilipe Manana 		 * If there was a failure to cleanup a log tree, very likely due
406140cdc509SFilipe Manana 		 * to an IO failure on a writeback attempt of one or more of its
406240cdc509SFilipe Manana 		 * extent buffers, we could not do proper (and cheap) unaccounting
406340cdc509SFilipe Manana 		 * of their reserved space, so don't warn on bytes_reserved > 0 in
406440cdc509SFilipe Manana 		 * that case.
406540cdc509SFilipe Manana 		 */
406640cdc509SFilipe Manana 		if (!(space_info->flags & BTRFS_BLOCK_GROUP_METADATA) ||
406740cdc509SFilipe Manana 		    !BTRFS_FS_LOG_CLEANUP_ERROR(info)) {
406840cdc509SFilipe Manana 			if (WARN_ON(space_info->bytes_reserved > 0))
406940cdc509SFilipe Manana 				btrfs_dump_space_info(info, space_info, 0, 0);
407040cdc509SFilipe Manana 		}
407140cdc509SFilipe Manana 
4072d611add4SFilipe Manana 		WARN_ON(space_info->reclaim_size > 0);
40733e43c279SJosef Bacik 		list_del(&space_info->list);
40743e43c279SJosef Bacik 		btrfs_sysfs_remove_space_info(space_info);
40753e43c279SJosef Bacik 	}
40763e43c279SJosef Bacik 	return 0;
40773e43c279SJosef Bacik }
4078684b752bSFilipe Manana 
4079684b752bSFilipe Manana void btrfs_freeze_block_group(struct btrfs_block_group *cache)
4080684b752bSFilipe Manana {
4081684b752bSFilipe Manana 	atomic_inc(&cache->frozen);
4082684b752bSFilipe Manana }
4083684b752bSFilipe Manana 
4084684b752bSFilipe Manana void btrfs_unfreeze_block_group(struct btrfs_block_group *block_group)
4085684b752bSFilipe Manana {
4086684b752bSFilipe Manana 	struct btrfs_fs_info *fs_info = block_group->fs_info;
4087684b752bSFilipe Manana 	struct extent_map_tree *em_tree;
4088684b752bSFilipe Manana 	struct extent_map *em;
4089684b752bSFilipe Manana 	bool cleanup;
4090684b752bSFilipe Manana 
4091684b752bSFilipe Manana 	spin_lock(&block_group->lock);
4092684b752bSFilipe Manana 	cleanup = (atomic_dec_and_test(&block_group->frozen) &&
4093684b752bSFilipe Manana 		   block_group->removed);
4094684b752bSFilipe Manana 	spin_unlock(&block_group->lock);
4095684b752bSFilipe Manana 
4096684b752bSFilipe Manana 	if (cleanup) {
4097684b752bSFilipe Manana 		em_tree = &fs_info->mapping_tree;
4098684b752bSFilipe Manana 		write_lock(&em_tree->lock);
4099684b752bSFilipe Manana 		em = lookup_extent_mapping(em_tree, block_group->start,
4100684b752bSFilipe Manana 					   1);
4101684b752bSFilipe Manana 		BUG_ON(!em); /* logic error, can't happen */
4102684b752bSFilipe Manana 		remove_extent_mapping(em_tree, em);
4103684b752bSFilipe Manana 		write_unlock(&em_tree->lock);
4104684b752bSFilipe Manana 
4105684b752bSFilipe Manana 		/* once for us and once for the tree */
4106684b752bSFilipe Manana 		free_extent_map(em);
4107684b752bSFilipe Manana 		free_extent_map(em);
4108684b752bSFilipe Manana 
4109684b752bSFilipe Manana 		/*
4110684b752bSFilipe Manana 		 * We may have left one free space entry and other possible
4111684b752bSFilipe Manana 		 * tasks trimming this block group have left 1 entry each one.
4112684b752bSFilipe Manana 		 * Free them if any.
4113684b752bSFilipe Manana 		 */
4114684b752bSFilipe Manana 		__btrfs_remove_free_space_cache(block_group->free_space_ctl);
4115684b752bSFilipe Manana 	}
4116684b752bSFilipe Manana }
4117195a49eaSFilipe Manana 
4118195a49eaSFilipe Manana bool btrfs_inc_block_group_swap_extents(struct btrfs_block_group *bg)
4119195a49eaSFilipe Manana {
4120195a49eaSFilipe Manana 	bool ret = true;
4121195a49eaSFilipe Manana 
4122195a49eaSFilipe Manana 	spin_lock(&bg->lock);
4123195a49eaSFilipe Manana 	if (bg->ro)
4124195a49eaSFilipe Manana 		ret = false;
4125195a49eaSFilipe Manana 	else
4126195a49eaSFilipe Manana 		bg->swap_extents++;
4127195a49eaSFilipe Manana 	spin_unlock(&bg->lock);
4128195a49eaSFilipe Manana 
4129195a49eaSFilipe Manana 	return ret;
4130195a49eaSFilipe Manana }
4131195a49eaSFilipe Manana 
4132195a49eaSFilipe Manana void btrfs_dec_block_group_swap_extents(struct btrfs_block_group *bg, int amount)
4133195a49eaSFilipe Manana {
4134195a49eaSFilipe Manana 	spin_lock(&bg->lock);
4135195a49eaSFilipe Manana 	ASSERT(!bg->ro);
4136195a49eaSFilipe Manana 	ASSERT(bg->swap_extents >= amount);
4137195a49eaSFilipe Manana 	bg->swap_extents -= amount;
4138195a49eaSFilipe Manana 	spin_unlock(&bg->lock);
4139195a49eaSFilipe Manana }
4140