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[CURRENT LIMIT] Btrfs currently only supports sub-bitmaps (e.g. dirty bitmap) no larger than BITS_PER_LONG. One call site that utilizes this limit is btrfs_bio_ctrl::submit_bitmap, which makes it very simple and straightforward to just grab an unsigned long value and assign it to submit_bitmap. Unfortunately that limit prevents us from supporting huge folios. For 4K page size and block size, a huge folio (order 9) means 512 blocks inside a 2M folio. [ENHANCEMENT] Instead of using a fixed unsigned long value, change btrfs_bio_ctrl::submit_bitmap to an unsigned long pointer. And for cases where an unsigned long can hold the whole bitmap, introduce @submit_bitmap_value, and just point that pointer to that unsigned long. Then update all direct users of bio_ctrl->submit_bitmap to use the pointer version. There are several call sites that get extra changes: - @range_bitmap inside extent_writepage_io() Which is only utilized to truncate the bitmap. Since we do not want to allocate new memory just for such temporary usage, change the original bitmap_set() and bitmap_and() into bitmap_clear() for the ranges outside of the target range. - Getting dirty subpage bitmap inside writepage_delalloc() Since we're passing an unsigned long pointer now, we need to go with different handling (bs == ps, blocks_per_folio <= BITS_PER_LONG, blocks_per_folio > BITS_PER_LONG). Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
194 lines
7.0 KiB
C
194 lines
7.0 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef BTRFS_SUBPAGE_H
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#define BTRFS_SUBPAGE_H
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#include <linux/spinlock.h>
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#include <linux/atomic.h>
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#include <linux/sizes.h>
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#include "btrfs_inode.h"
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struct address_space;
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struct folio;
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/*
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* Extra info for subpage bitmap.
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*
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* For subpage we pack all uptodate/dirty/writeback bitmaps into
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* one larger bitmap.
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*
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* This structure records how they are organized in the bitmap:
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*
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* /- uptodate /- dirty /- writeback
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* | | |
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* v v v
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* |u|u|u|u|........|u|u|d|d|.......|d|d|w|w|.......|w|w|
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* |< sectors_per_page >|
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*
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* Unlike regular macro-like enums, here we do not go upper-case names, as
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* these names will be utilized in various macros to define function names.
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*/
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enum {
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btrfs_bitmap_nr_uptodate = 0,
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btrfs_bitmap_nr_dirty,
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/*
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* This can be changed to atomic eventually. But this change will rely
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* on the async delalloc range rework for locked bitmap. As async
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* delalloc can unlock its range and mark blocks writeback at random
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* timing.
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*/
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btrfs_bitmap_nr_writeback,
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btrfs_bitmap_nr_max
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};
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/*
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* Structure to trace status of each sector inside a page, attached to
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* page::private for both data and metadata inodes.
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*/
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struct btrfs_folio_state {
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/* Common members for both data and metadata pages */
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spinlock_t lock;
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union {
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/*
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* Structures only used by metadata
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*
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* @eb_refs should only be operated under private_lock, as it
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* manages whether the btrfs_folio_state can be detached.
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*/
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atomic_t eb_refs;
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/*
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* Structures only used by data,
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*
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* How many sectors inside the page is locked.
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*/
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atomic_t nr_locked;
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};
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unsigned long bitmaps[];
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};
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enum btrfs_folio_type {
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BTRFS_SUBPAGE_METADATA,
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BTRFS_SUBPAGE_DATA,
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};
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/*
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* Subpage support for metadata is more complex, as we can have dummy extent
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* buffers, where folios have no mapping to determine the owning inode.
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*
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* Thankfully we only need to check if node size is smaller than page size.
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* Even with larger folio support, we will only allocate a folio as large as
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* node size.
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* Thus if nodesize < PAGE_SIZE, we know metadata needs need to subpage routine.
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*/
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static inline bool btrfs_meta_is_subpage(const struct btrfs_fs_info *fs_info)
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{
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return fs_info->nodesize < PAGE_SIZE;
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}
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static inline bool btrfs_is_subpage(const struct btrfs_fs_info *fs_info,
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struct folio *folio)
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{
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if (folio->mapping && folio->mapping->host)
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ASSERT(is_data_inode(BTRFS_I(folio->mapping->host)));
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return fs_info->sectorsize < folio_size(folio);
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}
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int btrfs_attach_folio_state(const struct btrfs_fs_info *fs_info,
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struct folio *folio, enum btrfs_folio_type type);
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void btrfs_detach_folio_state(const struct btrfs_fs_info *fs_info, struct folio *folio,
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enum btrfs_folio_type type);
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/* Allocate additional data where page represents more than one sector */
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struct btrfs_folio_state *btrfs_alloc_folio_state(const struct btrfs_fs_info *fs_info,
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size_t fsize, enum btrfs_folio_type type);
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static inline void btrfs_free_folio_state(struct btrfs_folio_state *bfs)
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{
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kfree(bfs);
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}
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void btrfs_folio_inc_eb_refs(const struct btrfs_fs_info *fs_info, struct folio *folio);
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void btrfs_folio_dec_eb_refs(const struct btrfs_fs_info *fs_info, struct folio *folio);
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void btrfs_folio_end_lock(const struct btrfs_fs_info *fs_info,
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struct folio *folio, u64 start, u32 len);
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void btrfs_folio_set_lock(const struct btrfs_fs_info *fs_info,
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struct folio *folio, u64 start, u32 len);
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void btrfs_folio_end_lock_bitmap(const struct btrfs_fs_info *fs_info,
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struct folio *folio, unsigned long *bitmap);
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/*
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* Template for subpage related operations.
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*
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* btrfs_subpage_*() are for call sites where the folio has subpage attached and
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* the range is ensured to be inside the folio's single page.
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*
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* btrfs_folio_*() are for call sites where the page can either be subpage
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* specific or regular folios. The function will handle both cases.
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* But the range still needs to be inside one single page.
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*
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* btrfs_folio_clamp_*() are similar to btrfs_folio_*(), except the range doesn't
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* need to be inside the page. Those functions will truncate the range
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* automatically.
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*
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* Both btrfs_folio_*() and btrfs_folio_clamp_*() are for data folios.
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*
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* For metadata, one should use btrfs_meta_folio_*() helpers instead, and there
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* is no clamp version for metadata helpers, as we either go subpage
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* (nodesize < PAGE_SIZE) or go regular folio helpers (nodesize >= PAGE_SIZE,
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* and our folio is never larger than nodesize).
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*/
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#define DECLARE_BTRFS_SUBPAGE_OPS(name) \
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void btrfs_subpage_set_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_subpage_clear_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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bool btrfs_subpage_test_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_folio_set_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_folio_clear_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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bool btrfs_folio_test_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_folio_clamp_set_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_folio_clamp_clear_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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bool btrfs_folio_clamp_test_##name(const struct btrfs_fs_info *fs_info, \
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struct folio *folio, u64 start, u32 len); \
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void btrfs_meta_folio_set_##name(struct folio *folio, const struct extent_buffer *eb); \
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void btrfs_meta_folio_clear_##name(struct folio *folio, const struct extent_buffer *eb); \
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bool btrfs_meta_folio_test_##name(struct folio *folio, const struct extent_buffer *eb);
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DECLARE_BTRFS_SUBPAGE_OPS(uptodate);
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DECLARE_BTRFS_SUBPAGE_OPS(dirty);
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DECLARE_BTRFS_SUBPAGE_OPS(writeback);
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/*
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* Helper for error cleanup, where a folio will have its dirty flag cleared,
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* with writeback started and finished.
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*/
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static inline void btrfs_folio_clamp_finish_io(struct btrfs_fs_info *fs_info,
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struct folio *locked_folio,
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u64 start, u32 len)
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{
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btrfs_folio_clamp_clear_dirty(fs_info, locked_folio, start, len);
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btrfs_folio_clamp_set_writeback(fs_info, locked_folio, start, len);
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btrfs_folio_clamp_clear_writeback(fs_info, locked_folio, start, len);
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}
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bool btrfs_subpage_clear_and_test_dirty(const struct btrfs_fs_info *fs_info,
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struct folio *folio, u64 start, u32 len);
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void btrfs_folio_assert_not_dirty(const struct btrfs_fs_info *fs_info,
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struct folio *folio, u64 start, u32 len);
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bool btrfs_meta_folio_clear_and_test_dirty(struct folio *folio, const struct extent_buffer *eb);
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void btrfs_copy_subpage_dirty_bitmap(struct btrfs_fs_info *fs_info,
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struct folio *folio,
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unsigned long *dst);
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void __cold btrfs_subpage_dump_bitmap(const struct btrfs_fs_info *fs_info,
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struct folio *folio, u64 start, u32 len);
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#endif
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