btrfs: zoned: extend zoned allocator to use dedicated tree-log block group
This is the 1/3 patch to enable tree log on zoned filesystems. The tree-log feature does not work on a zoned filesystem as is. Blocks for a tree-log tree are allocated mixed with other metadata blocks and btrfs writes and syncs the tree-log blocks to devices at the time of fsync(), which has a different timing than a global transaction commit. As a result, both writing tree-log blocks and writing other metadata blocks become non-sequential writes that zoned filesystems must avoid. Introduce a dedicated block group for tree-log blocks, so that tree-log blocks and other metadata blocks can be separate write streams. As a result, each write stream can now be written to devices separately. "fs_info->treelog_bg" tracks the dedicated block group and assigns "treelog_bg" on-demand on tree-log block allocation time. This commit extends the zoned block allocator to use the block group. Reviewed-by: Josef Bacik <josef@toxicpanda.com> Signed-off-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Naohiro Aota <naohiro.aota@wdc.com> Signed-off-by: David Sterba <dsterba@suse.com>
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6ab6ebb760
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40ab3be102
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@ -901,6 +901,8 @@ int btrfs_remove_block_group(struct btrfs_trans_handle *trans,
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btrfs_return_cluster_to_free_space(block_group, cluster);
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spin_unlock(&cluster->refill_lock);
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btrfs_clear_treelog_bg(block_group);
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path = btrfs_alloc_path();
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if (!path) {
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ret = -ENOMEM;
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@ -976,6 +976,8 @@ struct btrfs_fs_info {
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/* Max size to emit ZONE_APPEND write command */
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u64 max_zone_append_size;
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struct mutex zoned_meta_io_lock;
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spinlock_t treelog_bg_lock;
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u64 treelog_bg;
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#ifdef CONFIG_BTRFS_FS_REF_VERIFY
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spinlock_t ref_verify_lock;
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@ -2787,6 +2787,7 @@ void btrfs_init_fs_info(struct btrfs_fs_info *fs_info)
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spin_lock_init(&fs_info->super_lock);
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spin_lock_init(&fs_info->buffer_lock);
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spin_lock_init(&fs_info->unused_bgs_lock);
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spin_lock_init(&fs_info->treelog_bg_lock);
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rwlock_init(&fs_info->tree_mod_log_lock);
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mutex_init(&fs_info->unused_bg_unpin_mutex);
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mutex_init(&fs_info->delete_unused_bgs_mutex);
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@ -3497,6 +3497,9 @@ struct find_free_extent_ctl {
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bool have_caching_bg;
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bool orig_have_caching_bg;
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/* Allocation is called for tree-log */
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bool for_treelog;
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/* RAID index, converted from flags */
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int index;
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@ -3725,6 +3728,22 @@ static int do_allocation_clustered(struct btrfs_block_group *block_group,
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return find_free_extent_unclustered(block_group, ffe_ctl);
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}
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/*
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* Tree-log block group locking
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* ============================
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*
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* fs_info::treelog_bg_lock protects the fs_info::treelog_bg which
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* indicates the starting address of a block group, which is reserved only
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* for tree-log metadata.
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*
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* Lock nesting
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* ============
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*
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* space_info::lock
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* block_group::lock
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* fs_info::treelog_bg_lock
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*/
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/*
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* Simple allocator for sequential-only block group. It only allows sequential
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* allocation. No need to play with trees. This function also reserves the
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@ -3734,23 +3753,54 @@ static int do_allocation_zoned(struct btrfs_block_group *block_group,
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struct find_free_extent_ctl *ffe_ctl,
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struct btrfs_block_group **bg_ret)
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{
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struct btrfs_fs_info *fs_info = block_group->fs_info;
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struct btrfs_space_info *space_info = block_group->space_info;
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struct btrfs_free_space_ctl *ctl = block_group->free_space_ctl;
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u64 start = block_group->start;
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u64 num_bytes = ffe_ctl->num_bytes;
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u64 avail;
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u64 bytenr = block_group->start;
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u64 log_bytenr;
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int ret = 0;
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bool skip;
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ASSERT(btrfs_is_zoned(block_group->fs_info));
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/*
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* Do not allow non-tree-log blocks in the dedicated tree-log block
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* group, and vice versa.
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*/
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spin_lock(&fs_info->treelog_bg_lock);
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log_bytenr = fs_info->treelog_bg;
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skip = log_bytenr && ((ffe_ctl->for_treelog && bytenr != log_bytenr) ||
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(!ffe_ctl->for_treelog && bytenr == log_bytenr));
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spin_unlock(&fs_info->treelog_bg_lock);
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if (skip)
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return 1;
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spin_lock(&space_info->lock);
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spin_lock(&block_group->lock);
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spin_lock(&fs_info->treelog_bg_lock);
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ASSERT(!ffe_ctl->for_treelog ||
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block_group->start == fs_info->treelog_bg ||
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fs_info->treelog_bg == 0);
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if (block_group->ro) {
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ret = 1;
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goto out;
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}
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/*
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* Do not allow currently using block group to be tree-log dedicated
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* block group.
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*/
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if (ffe_ctl->for_treelog && !fs_info->treelog_bg &&
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(block_group->used || block_group->reserved)) {
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ret = 1;
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goto out;
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}
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avail = block_group->length - block_group->alloc_offset;
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if (avail < num_bytes) {
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if (ffe_ctl->max_extent_size < avail) {
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@ -3765,6 +3815,9 @@ static int do_allocation_zoned(struct btrfs_block_group *block_group,
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goto out;
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}
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if (ffe_ctl->for_treelog && !fs_info->treelog_bg)
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fs_info->treelog_bg = block_group->start;
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ffe_ctl->found_offset = start + block_group->alloc_offset;
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block_group->alloc_offset += num_bytes;
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spin_lock(&ctl->tree_lock);
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@ -3779,6 +3832,9 @@ static int do_allocation_zoned(struct btrfs_block_group *block_group,
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ffe_ctl->search_start = ffe_ctl->found_offset;
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out:
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if (ret && ffe_ctl->for_treelog)
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fs_info->treelog_bg = 0;
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spin_unlock(&fs_info->treelog_bg_lock);
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spin_unlock(&block_group->lock);
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spin_unlock(&space_info->lock);
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return ret;
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@ -4028,7 +4084,12 @@ static int prepare_allocation(struct btrfs_fs_info *fs_info,
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return prepare_allocation_clustered(fs_info, ffe_ctl,
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space_info, ins);
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case BTRFS_EXTENT_ALLOC_ZONED:
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/* Nothing to do */
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if (ffe_ctl->for_treelog) {
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spin_lock(&fs_info->treelog_bg_lock);
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if (fs_info->treelog_bg)
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ffe_ctl->hint_byte = fs_info->treelog_bg;
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spin_unlock(&fs_info->treelog_bg_lock);
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}
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return 0;
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default:
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BUG();
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@ -4072,6 +4133,7 @@ static noinline int find_free_extent(struct btrfs_root *root,
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struct find_free_extent_ctl ffe_ctl = {0};
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struct btrfs_space_info *space_info;
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bool full_search = false;
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bool for_treelog = (root->root_key.objectid == BTRFS_TREE_LOG_OBJECTID);
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WARN_ON(num_bytes < fs_info->sectorsize);
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@ -4085,6 +4147,7 @@ static noinline int find_free_extent(struct btrfs_root *root,
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ffe_ctl.orig_have_caching_bg = false;
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ffe_ctl.found_offset = 0;
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ffe_ctl.hint_byte = hint_byte_orig;
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ffe_ctl.for_treelog = for_treelog;
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ffe_ctl.policy = BTRFS_EXTENT_ALLOC_CLUSTERED;
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/* For clustered allocation */
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@ -4159,8 +4222,11 @@ search:
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struct btrfs_block_group *bg_ret;
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/* If the block group is read-only, we can skip it entirely. */
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if (unlikely(block_group->ro))
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if (unlikely(block_group->ro)) {
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if (for_treelog)
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btrfs_clear_treelog_bg(block_group);
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continue;
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}
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btrfs_grab_block_group(block_group, delalloc);
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ffe_ctl.search_start = block_group->start;
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@ -4346,6 +4412,7 @@ int btrfs_reserve_extent(struct btrfs_root *root, u64 ram_bytes,
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bool final_tried = num_bytes == min_alloc_size;
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u64 flags;
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int ret;
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bool for_treelog = (root->root_key.objectid == BTRFS_TREE_LOG_OBJECTID);
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flags = get_alloc_profile_by_root(root, is_data);
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again:
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@ -4369,8 +4436,8 @@ again:
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sinfo = btrfs_find_space_info(fs_info, flags);
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btrfs_err(fs_info,
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"allocation failed flags %llu, wanted %llu",
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flags, num_bytes);
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"allocation failed flags %llu, wanted %llu tree-log %d",
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flags, num_bytes, for_treelog);
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if (sinfo)
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btrfs_dump_space_info(fs_info, sinfo,
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num_bytes, 1);
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@ -7,6 +7,7 @@
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#include <linux/blkdev.h>
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#include "volumes.h"
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#include "disk-io.h"
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#include "block-group.h"
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struct btrfs_zoned_device_info {
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/*
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mutex_unlock(&fs_info->zoned_meta_io_lock);
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}
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static inline void btrfs_clear_treelog_bg(struct btrfs_block_group *bg)
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{
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struct btrfs_fs_info *fs_info = bg->fs_info;
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if (!btrfs_is_zoned(fs_info))
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return;
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spin_lock(&fs_info->treelog_bg_lock);
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if (fs_info->treelog_bg == bg->start)
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fs_info->treelog_bg = 0;
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spin_unlock(&fs_info->treelog_bg_lock);
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}
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#endif
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