summaryrefslogtreecommitdiff
path: root/fs/btrfs/file-item.c
AgeCommit message (Collapse)Author
2026-06-30btrfs: fallback to transaction csum tree on a commit root csum missBoris Burkov
We have been running with commit root csums enabled for some time and have noticed a slight uptick in zero csum errors. Investigating those revealed that they were same transaction reads of extents that were just relocated, but the extent map generation was long ago. It turns out that relocation intentionally does not update the extent generation (replace_file_extents()), but must write a new csum since the data has moved, so we must account for this with commit root csum reading. Luckily this is a short lived condition: after the relocation transaction the commit root will once again have the csum. So we can add a generic fallback to the lookup to try again with the transaction csum root. Fixes: f07b855c56b1 ("btrfs: try to search for data csums in commit root") Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Boris Burkov <boris@bur.io> Signed-off-by: David Sterba <dsterba@suse.com>
2026-06-09btrfs: use shifts for sectorsize and nodesizeDavid Sterba
Convert more multiplications of sectorsize or nodesize to use the shifts. The remaining cases are multiplications by constants that compiler can optimize by itself, and in tests. Reviewed-by: Qu Wenruo <wqu@suse.com> Reviewed-by: Boris Burkov <boris@bur.io> Signed-off-by: David Sterba <dsterba@suse.com>
2026-06-08btrfs: make more ASSERTs verbose, part 3David Sterba
We have support for optional string to be printed in ASSERT() (added in 19468a623a9109 ("btrfs: enhance ASSERT() to take optional format string")), it's not yet everywhere it could be so add a few more files. Try to finish what was left after 1c094e6ccead7a ("btrfs: make a few more ASSERTs verbose"). Signed-off-by: David Sterba <dsterba@suse.com>
2026-04-07btrfs: rename btrfs_csum_file_blocks() to btrfs_insert_data_csums()Qu Wenruo
The function btrfs_csum_file_blocks() is a little confusing, unlike btrfs_csum_one_bio(), it is not calculating the checksum of some file blocks. Instead it's just inserting the already calculated checksums into a given root (can be a csum root or a log tree). So rename it to btrfs_insert_data_csums() to reflect its behavior better. Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2026-03-21Merge tag 'for-7.0-rc4-tag' of ↵Linus Torvalds
git://git.kernel.org/pub/scm/linux/kernel/git/kdave/linux Pull btrfs fixes from David Sterba: "Another batch of fixes for problems that have been identified by tools analyzing code or by fuzzing. Most of them are short, two patches fix the same thing in many places so the diffs are bigger. - handle potential NULL pointer errors after attempting to read extent and checksum trees - prevent ENOSPC when creating many qgroups by ioctls in the same transaction - encoded write ioctl fixes (with 64K page and 4K block size): - fix unexpected bio length - do not let compressed bios and pages interfere with page cache - compression fixes on setups with 64K page and 4K block size: fix folio length assertions (zstd and lzo) - remap tree fixes: - make sure to hold block group reference while moving it - handle early exit when moving block group to unused list - handle deleted subvolumes with inconsistent state of deletion progress" * tag 'for-7.0-rc4-tag' of git://git.kernel.org/pub/scm/linux/kernel/git/kdave/linux: btrfs: reject root items with drop_progress and zero drop_level btrfs: check block group before marking it unused in balance_remap_chunks() btrfs: hold block group reference during entire move_existing_remap() btrfs: fix an incorrect ASSERT() condition inside lzo_decompress_bio() btrfs: fix an incorrect ASSERT() condition inside zstd_decompress_bio() btrfs: do not touch page cache for encoded writes btrfs: fix a bug that makes encoded write bio larger than expected btrfs: reserve enough transaction items for qgroup ioctls btrfs: check for NULL root after calls to btrfs_csum_root() btrfs: check for NULL root after calls to btrfs_extent_root()
2026-03-17btrfs: check for NULL root after calls to btrfs_csum_root()Filipe Manana
btrfs_csum_root() can return a NULL pointer in case the root we are looking for is not in the rb tree that tracks roots. So add checks to every caller that is missing such check to log a message and return an error. Reported-by: Chris Mason <clm@meta.com> Link: https://lore.kernel.org/linux-btrfs/20260208161657.3972997-1-clm@meta.com/ Reviewed-by: Boris Burkov <boris@bur.io> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2026-02-21treewide: Replace kmalloc with kmalloc_obj for non-scalar typesKees Cook
This is the result of running the Coccinelle script from scripts/coccinelle/api/kmalloc_objs.cocci. The script is designed to avoid scalar types (which need careful case-by-case checking), and instead replace kmalloc-family calls that allocate struct or union object instances: Single allocations: kmalloc(sizeof(TYPE), ...) are replaced with: kmalloc_obj(TYPE, ...) Array allocations: kmalloc_array(COUNT, sizeof(TYPE), ...) are replaced with: kmalloc_objs(TYPE, COUNT, ...) Flex array allocations: kmalloc(struct_size(PTR, FAM, COUNT), ...) are replaced with: kmalloc_flex(*PTR, FAM, COUNT, ...) (where TYPE may also be *VAR) The resulting allocations no longer return "void *", instead returning "TYPE *". Signed-off-by: Kees Cook <kees@kernel.org>
2026-02-03btrfs: remove out label in btrfs_csum_file_blocks()Filipe Manana
There is no point in having the label since all it does is return the value in the 'ret' variable. Instead make every goto return directly and remove the label. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2026-02-03btrfs: switch to library APIs for checksumsEric Biggers
Make btrfs use the library APIs instead of crypto_shash, for all checksum computations. This has many benefits: - Allows future checksum types, e.g. XXH3 or CRC64, to be more easily supported. Only a library API will be needed, not crypto_shash too. - Eliminates the overhead of the generic crypto layer, including an indirect call for every function call and other API overhead. A microbenchmark of btrfs_check_read_bio() with crc32c checksums shows a speedup from 658 cycles to 608 cycles per 4096-byte block. - Decreases the stack usage of btrfs by reducing the size of checksum contexts from 384 bytes to 240 bytes, and by eliminating the need for some functions to declare a checksum context at all. - Increases reliability. The library functions always succeed and return void. In contrast, crypto_shash can fail and return errors. Also, the library functions are guaranteed to be available when btrfs is loaded; there's no longer any need to use module softdeps to try to work around the crypto modules sometimes not being loaded. - Fixes a bug where blake2b checksums didn't work on kernels booted with fips=1. Since btrfs checksums are for integrity only, it's fine for them to use non-FIPS-approved algorithms. Note that with having to handle 4 algorithms instead of just 1-2, this commit does result in a slightly positive diffstat. That being said, this wouldn't have been the case if btrfs had actually checked for errors from crypto_shash, which technically it should have been doing. Reviewed-by: Ard Biesheuvel <ardb@kernel.org> Reviewed-by: Neal Gompa <neal@gompa.dev> Signed-off-by: Eric Biggers <ebiggers@kernel.org> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-11-25btrfs: add orig_logical to btrfs_bio for encryptionJosef Bacik
When checksumming the encrypted bio on writes we need to know which logical address this checksum is for. At the point where we get the encrypted bio the bi_sector is the physical location on the target disk, so we need to save the original logical offset in the btrfs_bio. Then we can use this when checksumming the bio instead of the bio->iter.bi_sector. Note: The patch was taken from v5 of fscrypt patchset (https://lore.kernel.org/linux-btrfs/cover.1706116485.git.josef@toxicpanda.com/) which was handled over time by various people: Omar Sandoval, Sweet Tea Dorminy, Josef Bacik. Signed-off-by: Josef Bacik <josef@toxicpanda.com> Signed-off-by: Daniel Vacek <neelx@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> [ add note ] Signed-off-by: David Sterba <dsterba@suse.com>
2025-11-24btrfs: use bool type for btrfs_path members used as booleansFilipe Manana
Many fields of struct btrfs_path are used as booleans but their type is an unsigned int (of one 1 bit width to save space). Change the type to bool keeping the :1 suffix so that they combine with the previous u8 fields in order to save space. This makes the code more clear by using explicit true/false and more in line with the preferred style, preserving the size of the structure. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-11-24btrfs: make btrfs_csum_one_bio() handle bs > ps without large foliosQu Wenruo
For bs > ps cases, all folios passed into btrfs_csum_one_bio() are ensured to be backed by large folios. But that requirement excludes features like direct IO and encoded writes. To support bs > ps without large folios, enhance btrfs_csum_one_bio() by: - Split btrfs_calculate_block_csum() into two versions * btrfs_calculate_block_csum_folio() For call sites where a fs block is always backed by a large folio. This will do extra checks on the folio size, build a paddrs[] array, and pass it into the newer btrfs_calculate_block_csum_pages() helper. For now btrfs_check_block_csum() is still using this version. * btrfs_calculate_block_csum_pages() For call sites that may hit a fs block backed by noncontiguous pages. The pages are represented by paddrs[] array, which includes the offset inside the page. This function will do the proper sub-block handling. - Make btrfs_csum_one_bio() to use btrfs_calculate_block_csum_pages() This means we will need to build a local paddrs[] array, and after filling a fs block, do the checksum calculation. Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-11-24btrfs: use kvcalloc for btrfs_bio::csum allocationQu Wenruo
[BUG] There is a report that memory allocation failed for btrfs_bio::csum during a large read: b2sum: page allocation failure: order:4, mode:0x40c40(GFP_NOFS|__GFP_COMP), nodemask=(null),cpuset=/,mems_allowed=0 CPU: 0 UID: 0 PID: 416120 Comm: b2sum Tainted: G W 6.17.0 #1 NONE Tainted: [W]=WARN Hardware name: Raspberry Pi 4 Model B Rev 1.5 (DT) Call trace: show_stack+0x18/0x30 (C) dump_stack_lvl+0x5c/0x7c dump_stack+0x18/0x24 warn_alloc+0xec/0x184 __alloc_pages_slowpath.constprop.0+0x21c/0x730 __alloc_frozen_pages_noprof+0x230/0x260 ___kmalloc_large_node+0xd4/0xf0 __kmalloc_noprof+0x1c8/0x260 btrfs_lookup_bio_sums+0x214/0x278 btrfs_submit_chunk+0xf0/0x3c0 btrfs_submit_bbio+0x2c/0x4c submit_one_bio+0x50/0xac submit_extent_folio+0x13c/0x340 btrfs_do_readpage+0x4b0/0x7a0 btrfs_readahead+0x184/0x254 read_pages+0x58/0x260 page_cache_ra_unbounded+0x170/0x24c page_cache_ra_order+0x360/0x3bc page_cache_async_ra+0x1a4/0x1d4 filemap_readahead.isra.0+0x44/0x74 filemap_get_pages+0x2b4/0x3b4 filemap_read+0xc4/0x3bc btrfs_file_read_iter+0x70/0x7c vfs_read+0x1ec/0x2c0 ksys_read+0x4c/0xe0 __arm64_sys_read+0x18/0x24 el0_svc_common.constprop.0+0x5c/0x130 do_el0_svc+0x1c/0x30 el0_svc+0x30/0xa0 el0t_64_sync_handler+0xa0/0xe4 el0t_64_sync+0x198/0x19c [CAUSE] Btrfs needs to allocate memory for btrfs_bio::csum for large reads, so that we can later verify the contents of the read. However nowadays a read bio can easily go beyond BIO_MAX_VECS * PAGE_SIZE (which is 1M for 4K page sizes), due to the multi-page bvec that one bvec can have more than one pages, as long as the pages are physically adjacent. This will become more common when the large folio support is moved out of experimental features. In the above case, a read larger than 4MiB with SHA256 checksum (32 bytes for each 4K block) will be able to trigger a order 4 allocation. The order 4 is larger than PAGE_ALLOC_COSTLY_ORDER (3), thus without extra flags such allocation will not retry. And if the system has very small amount of memory (e.g. RPI4 with low memory spec) or VMs with small vRAM, or the memory is heavily fragmented, such allocation will fail and cause the above warning. [FIX] Although btrfs is handling the memory allocation failure correctly, we do not really need the physically contiguous memory just to restore our checksum. In fact btrfs_csum_one_bio() is already using kvzalloc() to reduce the memory pressure. So follow the step to use kvcalloc() for btrfs_bio::csum. Reported-by: Calvin Owens <calvin@wbinvd.org> Link: https://lore.kernel.org/linux-btrfs/20251105180054.511528-1-calvin@wbinvd.org/ Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-11-24btrfs: introduce btrfs_bio::async_csumQu Wenruo
[ENHANCEMENT] Btrfs currently calculates data checksums then submits the bio. But after commit 968f19c5b1b7 ("btrfs: always fallback to buffered write if the inode requires checksum"), any writes with data checksum will fallback to buffered IO, meaning the content will not change during writeback. This means we're safe to calculate the data checksum and submit the bio in parallel, and only need the following new behavior: - Wait the csum generation to finish before calling btrfs_bio::end_io() Or this can lead to use-after-free for the csum generation worker. - Save the current bi_iter for csum_one_bio() As the submission part can advance btrfs_bio::bio.bi_iter, if not saved csum_one_bio() may got an empty bi_iter and do not generate any checksum. Unfortunately this means we have to increase the size of btrfs_bio for 16 bytes, but this is still acceptable. As usual, such new feature is hidden behind the experimental flag. [THEORETIC ANALYZE] Consider the following theoretic hardware performance, which should be more or less close to modern mainstream hardware: Memory bandwidth: 50GiB/s CRC32C bandwidth: 45GiB/s SSD bandwidth: 8GiB/s Then write bandwidth with data checksum before the patch is: 1 / ( 1 / 50 + 1 / 45 + 1 / 8) = 5.98 GiB/s After the patch, the bandwidth is: 1 / ( 1 / 50 + max( 1 / 45 + 1 / 8)) = 6.90 GiB/s The difference is 15.32% improvement. [REAL WORLD BENCHMARK] I'm using a Zen5 (HX 370) as the host, the VM has 4GiB memory, 10 vCPUs, the storage is backed by a PCIe gen3 x4 NVMe. The test is a direct IO write, with 1MiB block size, write 7GiB data into a btrfs mount with data checksum. Thus the direct write will fallback to buffered one: Vanilla Datasum: 1619.97 GiB/s Patched Datasum: 1792.26 GiB/s Diff +10.6 % In my case, the bottleneck is the storage, thus the improvement is not reaching the theoretic one, but still some observable improvement. Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-09-23btrfs: add unlikely annotations to branches leading to transaction abortDavid Sterba
The unlikely() annotation is a static prediction hint that compiler may use to reorder code out of hot path. We use it elsewhere (namely tree-checker.c) for error branches that almost never happen. Transaction abort is one such error, the btrfs_abort_transaction() inlines code to check the state and print a warning, this ought to be out of the hot path. The most common pattern is when transaction abort is called after checking a return value and the control flow leads to a quick return. In other cases it may not be necessary to add unlikely() e.g. when the function returns anyway or the control flow is not changed noticeably. Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-09-23btrfs: introduce btrfs_bio_for_each_block() helperQu Wenruo
Currently if we want to iterate a bio in block unit, we do something like this: while (iter->bi_size) { struct bio_vec bv = bio_iter_iovec(); /* Do something with using the bv */ bio_advance_iter_single(&bbio->bio, iter, sectorsize); } That's fine for now, but it will not handle future bs > ps, as bio_iter_iovec() returns a single-page bvec, meaning the bv_len will not exceed page size. This means the code using that bv can only handle a block if bs <= ps. To address this problem and handle future bs > ps cases better: - Introduce a helper btrfs_bio_for_each_block() Instead of bio_vec, which has single and multiple page version and multiple page version has quite some limits, use my favorite way to represent a block, phys_addr_t. For bs <= ps cases, nothing is changed, except we will do a very small overhead to convert phys_addr_t to a folio, then use the proper folio helpers to handle the possible highmem cases. For bs > ps cases, all blocks will be backed by large folios, meaning every folio will cover at least one block. And still use proper folio helpers to handle highmem cases. With phys_addr_t, we will handle both large folio and highmem properly. So there is no better single variable to present a btrfs block than phys_addr_t. - Extract the data block csum calculation into a helper The new helper, btrfs_calculate_block_csum() will be utilized by btrfs_csum_one_bio(). - Use btrfs_bio_for_each_block() to replace existing call sites Including: * index_one_bio() from raid56.c Very straight-forward. * btrfs_check_read_bio() Also update repair_one_sector() to grab the folio using phys_addr_t, and do extra checks to make sure the folio covers at least one block. We do not need to bother bv_len at all now. * btrfs_csum_one_bio() Now we can move the highmem handling into a dedicated helper, calculate_block_csum(), and use btrfs_bio_for_each_block() helper. There is one exception in btrfs_decompress_buf2page(), which is copying decompressed data into the original bio, which is not iterating using block size thus we don't need to bother. Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-09-22btrfs: try to search for data csums in commit rootBoris Burkov
If you run a workload with: - a cgroup that does tons of parallel data reading, with a working set much larger than its memory limit - a second cgroup that writes relatively fewer files, with overwrites, with no memory limit (see full code listing at the bottom for a reproducer) Then what quickly occurs is: - we have a large number of threads trying to read the csum tree - we have a decent number of threads deleting csums running delayed refs - we have a large number of threads in direct reclaim and thus high memory pressure The result of this is that we writeback the csum tree repeatedly mid transaction, to get back the extent_buffer folios for reclaim. As a result, we repeatedly COW the csum tree for the delayed refs that are deleting csums. This means repeatedly write locking the higher levels of the tree. As a result of this, we achieve an unpleasant priority inversion. We have: - a high degree of contention on the csum root node (and other upper nodes) eb rwsem - a memory starved cgroup doing tons of reclaim on CPU. - many reader threads in the memory starved cgroup "holding" the sem as readers, but not scheduling promptly. i.e., task __state == 0, but not running on a cpu. - btrfs_commit_transaction stuck trying to acquire the sem as a writer. (running delayed_refs, deleting csums for unreferenced data extents) This results in arbitrarily long transactions. This then results in seriously degraded performance for any cgroup using the filesystem (the victim cgroup in the script). It isn't an academic problem, as we see this exact problem in production at Meta with one cgroup over its memory limit ruining btrfs performance for the whole system, stalling critical system services that depend on btrfs syncs. The underlying scheduling "problem" with global rwsems is sort of thorny and apparently well known and was discussed at LPC 2024, for example. As a result, our main lever in the short term is just trying to reduce contention on our various rwsems with an eye to reducing the frequency of write locking, to avoid disabling the read lock fast acquisition path. Luckily, it seems likely that many reads are for old extents written many transactions ago, and that for those we *can* in fact search the commit root. The commit_root_sem only gets taken write once, near the end of transaction commit, no matter how much memory pressure there is, so we have much less contention between readers and writers. This change detects when we are trying to read an old extent (according to extent map generation) and then wires that through bio_ctrl to the btrfs_bio, which unfortunately isn't allocated yet when we have this information. When we go to lookup the csums in lookup_bio_sums we can check this condition on the btrfs_bio and do the commit root lookup accordingly. Note that a single bio_ctrl might collect a few extent_maps into a single bio, so it is important to track a maximum generation across all the extent_maps used for each bio to make an accurate decision on whether it is valid to look in the commit root. If any extent_map is updated in the current generation, we can't use the commit root. To test and reproduce this issue, I used the following script and accompanying C program (to avoid bottlenecks in constantly forking thousands of dd processes): ====== big-read.c ====== #include <fcntl.h> #include <stdio.h> #include <stdlib.h> #include <sys/mman.h> #include <sys/stat.h> #include <unistd.h> #include <errno.h> #define BUF_SZ (128 * (1 << 10UL)) int read_once(int fd, size_t sz) { char buf[BUF_SZ]; size_t rd = 0; int ret = 0; while (rd < sz) { ret = read(fd, buf, BUF_SZ); if (ret < 0) { if (errno == EINTR) continue; fprintf(stderr, "read failed: %d\n", errno); return -errno; } else if (ret == 0) { break; } else { rd += ret; } } return rd; } int read_loop(char *fname) { int fd; struct stat st; size_t sz = 0; int ret; while (1) { fd = open(fname, O_RDONLY); if (fd == -1) { perror("open"); return 1; } if (!sz) { if (!fstat(fd, &st)) { sz = st.st_size; } else { perror("stat"); return 1; } } ret = read_once(fd, sz); close(fd); } } int main(int argc, char *argv[]) { int fd; struct stat st; off_t sz; char *buf; int ret; if (argc != 2) { fprintf(stderr, "Usage: %s <filename>\n", argv[0]); return 1; } return read_loop(argv[1]); } ====== repro.sh ====== #!/usr/bin/env bash SCRIPT=$(readlink -f "$0") DIR=$(dirname "$SCRIPT") dev=$1 mnt=$2 shift shift CG_ROOT=/sys/fs/cgroup BAD_CG=$CG_ROOT/bad-nbr GOOD_CG=$CG_ROOT/good-nbr NR_BIGGOS=1 NR_LITTLE=10 NR_VICTIMS=32 NR_VILLAINS=512 START_SEC=$(date +%s) _elapsed() { echo "elapsed: $(($(date +%s) - $START_SEC))" } _stats() { local sysfs=/sys/fs/btrfs/$(findmnt -no UUID $dev) echo "================" date _elapsed cat $sysfs/commit_stats cat $BAD_CG/memory.pressure } _setup_cgs() { echo "+memory +cpuset" > $CG_ROOT/cgroup.subtree_control mkdir -p $GOOD_CG mkdir -p $BAD_CG echo max > $BAD_CG/memory.max # memory.high much less than the working set will cause heavy reclaim echo $((1 << 30)) > $BAD_CG/memory.high # victims get a subset of villain CPUs echo 0 > $GOOD_CG/cpuset.cpus echo 0,1,2,3 > $BAD_CG/cpuset.cpus } _kill_cg() { local cg=$1 local attempts=0 echo "kill cgroup $cg" [ -f $cg/cgroup.procs ] || return while true; do attempts=$((attempts + 1)) echo 1 > $cg/cgroup.kill sleep 1 procs=$(wc -l $cg/cgroup.procs | cut -d' ' -f1) [ $procs -eq 0 ] && break done rmdir $cg echo "killed cgroup $cg in $attempts attempts" } _biggo_vol() { echo $mnt/biggo_vol.$1 } _biggo_file() { echo $(_biggo_vol $1)/biggo } _subvoled_biggos() { total_sz=$((10 << 30)) per_sz=$((total_sz / $NR_VILLAINS)) dd_count=$((per_sz >> 20)) echo "create $NR_VILLAINS subvols with a file of size $per_sz bytes for a total of $total_sz bytes." for i in $(seq $NR_VILLAINS) do btrfs subvol create $(_biggo_vol $i) &>/dev/null dd if=/dev/zero of=$(_biggo_file $i) bs=1M count=$dd_count &>/dev/null done echo "done creating subvols." } _setup() { [ -f .done ] && rm .done findmnt -n $dev && exit 1 if [ -f .re-mkfs ]; then mkfs.btrfs -f -m single -d single $dev >/dev/null || exit 2 else echo "touch .re-mkfs to populate the test fs" fi mount -o noatime $dev $mnt || exit 3 [ -f .re-mkfs ] && _subvoled_biggos _setup_cgs } _my_cleanup() { echo "CLEANUP!" _kill_cg $BAD_CG _kill_cg $GOOD_CG sleep 1 umount $mnt } _bad_exit() { _err "Unexpected Exit! $?" _stats exit $? } trap _my_cleanup EXIT trap _bad_exit INT TERM _setup # Use a lot of page cache reading the big file _villain() { local i=$1 echo $BASHPID > $BAD_CG/cgroup.procs $DIR/big-read $(_biggo_file $i) } # Hit del_csum a lot by overwriting lots of small new files _victim() { echo $BASHPID > $GOOD_CG/cgroup.procs i=0; while (true) do local tmp=$mnt/tmp.$i dd if=/dev/zero of=$tmp bs=4k count=2 >/dev/null 2>&1 i=$((i+1)) [ $i -eq $NR_LITTLE ] && i=0 done } _one_sync() { echo "sync..." before=$(date +%s) sync after=$(date +%s) echo "sync done in $((after - before))s" _stats } # sync in a loop _sync() { echo "start sync loop" syncs=0 echo $BASHPID > $GOOD_CG/cgroup.procs while true do [ -f .done ] && break _one_sync syncs=$((syncs + 1)) [ -f .done ] && break sleep 10 done if [ $syncs -eq 0 ]; then echo "do at least one sync!" _one_sync fi echo "sync loop done." } _sleep() { local time=${1-60} local now=$(date +%s) local end=$((now + time)) while [ $now -lt $end ]; do echo "SLEEP: $((end - now))s left. Sleep 10." sleep 10 now=$(date +%s) done } echo "start $NR_VILLAINS villains" for i in $(seq $NR_VILLAINS) do _villain $i & disown # get rid of annoying log on kill (done via cgroup anyway) done echo "start $NR_VICTIMS victims" for i in $(seq $NR_VICTIMS) do _victim & disown done _sync & SYNC_PID=$! _sleep $1 _elapsed touch .done wait $SYNC_PID echo "OK" exit 0 Without this patch, that reproducer: - Ran for 6+ minutes instead of 60s - Hung hundreds of threads in D state on the csum reader lock - Got a commit stuck for 3 minutes sync done in 388s ================ Wed Jul 9 09:52:31 PM UTC 2025 elapsed: 420 commits 2 cur_commit_ms 0 last_commit_ms 159446 max_commit_ms 159446 total_commit_ms 160058 some avg10=99.03 avg60=98.97 avg300=75.43 total=418033386 full avg10=82.79 avg60=80.52 avg300=59.45 total=324995274 419 hits state R, D comms big-read btrfs_tree_read_lock_nested btrfs_read_lock_root_node btrfs_search_slot btrfs_lookup_csum btrfs_lookup_bio_sums btrfs_submit_bbio 1 hits state D comms btrfs-transacti btrfs_tree_lock_nested btrfs_lock_root_node btrfs_search_slot btrfs_del_csums __btrfs_run_delayed_refs btrfs_run_delayed_refs With the patch, the reproducer exits naturally, in 65s, completing a pretty decent 4 commits, despite heavy memory pressure. Occasionally you can still trigger a rather long commit (couple seconds) but never one that is minutes long. sync done in 3s ================ elapsed: 65 commits 4 cur_commit_ms 0 last_commit_ms 485 max_commit_ms 689 total_commit_ms 2453 some avg10=98.28 avg60=64.54 avg300=19.39 total=64849893 full avg10=74.43 avg60=48.50 avg300=14.53 total=48665168 some random rwalker samples showed the most common stack in reclaim, rather than the csum tree: 145 hits state R comms bash, sleep, dd, shuf shrink_folio_list shrink_lruvec shrink_node do_try_to_free_pages try_to_free_mem_cgroup_pages reclaim_high Link: https://lpc.events/event/18/contributions/1883/ Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Boris Burkov <boris@bur.io> Signed-off-by: David Sterba <dsterba@suse.com>
2025-07-21btrfs: use btrfs_is_data_reloc_root() where not done yetDavid Sterba
Two remaining cases where we can use the helper. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: change return type of btrfs_alloc_dummy_sum() to intDavid Sterba
The type blk_status_t is from block layer and not related to checksums in our context. Use int internally and do the conversions to blk_status_t as needed in btrfs_submit_chunk(). Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: change return type of btrfs_csum_one_bio() to intDavid Sterba
The type blk_status_t is from block layer and not related to checksums in our context. Use int internally and do the conversions to blk_status_t as needed in btrfs_bio_csum(). Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: change return type of btrfs_lookup_bio_sums() to intDavid Sterba
The type blk_status_t is from block layer and not related to checksums in our context. Use int internally and do the conversions to blk_status_t as needed in btrfs_submit_chunk(). Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: rename exported extent map compression functionsFilipe Manana
These functions are exported and don't have a 'btrfs_' prefix in their names, which goes against coding style conventions. Rename them to have such prefix, making it clear they are from btrfs and avoiding potential collisions in the future with functions defined elsewhere outside btrfs. Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: make btrfs_find_contiguous_extent_bit() return bool instead of intFilipe Manana
The function needs only to return true or false, so there's no need to return an integer. Currently it returns 0 when a range with the given bits is set and 1 when not found, which is a bit counter intuitive too. So change the function to return a bool instead, returning true when a range is found and false otherwise. Update the function's documentation to mention the return value too. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: rename the functions to search for bits in extent rangesFilipe Manana
These functions are exported so they should have a 'btrfs_' prefix by convention, to make it clear they are btrfs specific and to avoid collisions with functions from elsewhere in the kernel. So add a 'btrfs_' prefix to their name to make it clear they are from btrfs. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: rename set_extent_bit() to include a btrfs prefixFilipe Manana
This is an exported function so it should have a 'btrfs_' prefix by convention, to make it clear it's btrfs specific and to avoid collisions with functions from elsewhere in the kernel. So rename it to btrfs_set_extent_bit(). Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: rename the functions to clear bits for an extent rangeFilipe Manana
These functions are exported so they should have a 'btrfs_' prefix by convention, to make it clear they are btrfs specific and to avoid collisions with functions from elsewhere in the kernel. One of them has a double underscore prefix which is also discouraged. So remove double underscore prefix where applicable and add a 'btrfs_' prefix to their name to make it clear they are from btrfs. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-05-15btrfs: do more trivial BTRFS_PATH_AUTO_FREE conversionsDavid Sterba
The most trivial pattern for the auto freeing when the variable is declared with the macro and the final btrfs_free_path() is removed. There are almost none goto -> return conversions and there's no other function cleanup. Reviewed-by: Daniel Vacek <neelx@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-03-18btrfs: use BTRFS_PATH_AUTO_FREE in btrfs_lookup_bio_sums()David Sterba
This is the trivial pattern for path auto free, initialize at the beginning and free at the end. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-03-18btrfs: do trivial BTRFS_PATH_AUTO_FREE conversionsDavid Sterba
The most trivial pattern for the auto freeing when the variable is declared with the macro and the final btrfs_free_path() is removed. There are almost none goto -> return conversions and there's no other function cleanup. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: David Sterba <dsterba@suse.com>
2025-03-18btrfs: unify ordering of btrfs_key initializationsDavid Sterba
The btrfs_key is defined as objectid/type/offset and the keys are also printed like that. For better readability, update all key initializations to match this order. Signed-off-by: David Sterba <dsterba@suse.com>
2025-01-13btrfs: file-item: remove unnecessary calls to btrfs_mark_buffer_dirty()Filipe Manana
We have several places explicitly calling btrfs_mark_buffer_dirty() but that is not necessarily since the target leaf came from a path that was obtained for a btree search function that modifies the btree, something like btrfs_insert_empty_item() or anything else that ends up calling btrfs_search_slot() with a value of 1 for its 'cow' argument. These just make the code more verbose, confusing and add a little extra overhead and well as increase the module's text size, so remove them. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-09-10btrfs: constify more pointer parametersDavid Sterba
Continue adding const to parameters. This is for clarity and minor addition to safety. There are some minor effects, in the assembly code and .ko measured on release config. Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: introduce new "rescue=ignoremetacsums" mount optionQu Wenruo
Introduce "rescue=ignoremetacsums" to ignore metadata csums, all the other metadata sanity checks are still kept as is. This new mount option is mostly to allow the kernel to mount an interrupted checksum conversion (at the metadata csum overwrite stage). And since the main part of metadata sanity checks is inside tree-checker, we shouldn't lose much safety, and the new mount option is rescue mount option it requires full read-only mount. Reviewed-by: Josef Bacik <josef@toxicpanda.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: ignore incorrect btrfs_file_extent_item::ram_bytesQu Wenruo
[HICCUP] Kernels can create file extent items with incorrect ram_bytes like this: item 6 key (257 EXTENT_DATA 0) itemoff 15816 itemsize 53 generation 7 type 1 (regular) extent data disk byte 13631488 nr 32768 extent data offset 0 nr 4096 ram 4096 extent compression 0 (none) Thankfully kernel can handle them properly, as in that case ram_bytes is not utilized at all. [ENHANCEMENT] Since the hiccup is not going to cause any data-loss and is only a minor violation of on-disk format, here we only need to ignore the incorrect ram_bytes value, and use the correct one from btrfs_file_extent_item::disk_num_bytes. Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: cleanup the bytenr usage inside btrfs_extent_item_to_extent_map()Qu Wenruo
[HICCUP] Before commit 85de2be7129c ("btrfs: remove extent_map::block_start member"), we utilized @bytenr variable inside btrfs_extent_item_to_extent_map() to calculate block_start. But that commit removed block_start completely, we have no need to advance @bytenr at all. [ENHANCEMENT] - Rename @bytenr as @disk_bytenr - Only declare @disk_bytenr inside the if branch - Make @disk_bytenr const and remove the modification on it Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: remove extent_map::block_start memberQu Wenruo
The member extent_map::block_start can be calculated from extent_map::disk_bytenr + extent_map::offset for regular extents. And otherwise just extent_map::disk_bytenr. And this is already validated by the validate_extent_map(). Now we can remove the member. However there is a special case in btrfs_create_dio_extent() where we for NOCOW/PREALLOC ordered extents cannot directly use the resulting btrfs_file_extent, as btrfs_split_ordered_extent() cannot handle them yet. So for that call site, we pass file_extent->disk_bytenr + file_extent->num_bytes as disk_bytenr for the ordered extent, and 0 for offset. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: remove extent_map::block_len memberQu Wenruo
The extent_map::block_len is either extent_map::len (non-compressed extent) or extent_map::disk_num_bytes (compressed extent). Since we already have sanity checks to do the cross-checks between the new and old members, we can drop the old extent_map::block_len now. For most call sites, they can manually select extent_map::len or extent_map::disk_num_bytes, since most if not all of them have checked if the extent is compressed. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: remove extent_map::orig_start memberQu Wenruo
Since we have extent_map::offset, the old extent_map::orig_start is just extent_map::start - extent_map::offset for non-hole/inline extents. And since the new extent_map::offset is already verified by validate_extent_map() while the old orig_start is not, let's just remove the old member from all call sites. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: introduce new members for extent_mapQu Wenruo
Introduce two new members for extent_map: - disk_bytenr - offset Both are matching the members with the same name inside btrfs_file_extent_items. For now this patch only touches those members when: - Reading btrfs_file_extent_items from disk - Inserting new holes - Merging two extent maps With the new disk_bytenr and disk_num_bytes, doing merging would be a little more complex, as we have 3 different cases: * Both extent maps are referring to the same data extents |<----- data extent A ----->| |<- em 1 ->|<- em 2 ->| * Both extent maps are referring to different data extents |<-- data extent A -->|<-- data extent B -->| |<- em 1 ->|<- em 2 ->| * One of the extent maps is referring to a merged and larger data extent that covers both extent maps This is not really valid case other than some selftests. So this test case would be removed. A new helper merge_ondisk_extents() is introduced to handle the above valid cases. To properly assign values for those new members, a new btrfs_file_extent parameter is introduced to all the involved call sites. - For NOCOW writes the btrfs_file_extent would be exposed from can_nocow_file_extent(). - For other writes, the members can be easily calculated As most of them have 0 offset and utilizing the whole on-disk data extent. The exception is encoded write, but thankfully that interface provided offset directly and all other needed info. For now, both the old members (block_start/block_len/orig_start) are co-existing with the new members (disk_bytenr/offset), meanwhile all the critical code is still using the old members only. The cleanup will happen later after all the old and new members are properly validated. There would be some re-ordering for the assignment of the extent_map members, now we follow the new ordering: - start and len Or file_pos and num_bytes for other structures. - disk_bytenr and disk_num_bytes - offset and ram_bytes - compression So expect some seemingly unrelated line movement. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: rename extent_map::orig_block_len to disk_num_bytesQu Wenruo
This would make it very obvious that the member just matches btrfs_file_extent_item::disk_num_bytes. Reviewed-by: Johannes Thumshirn <johannes.thumshirn@wdc.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-07-11btrfs: don't allocate file extent tree for non regular filesFilipe Manana
When not using the NO_HOLES feature we always allocate an io tree for an inode's file_extent_tree. This is wasteful because that io tree is only used for regular files, so we allocate more memory than needed for inodes that represent directories or symlinks for example, or for inodes that correspond to free space inodes. So improve on this by allocating the io tree only for inodes of regular files that are not free space inodes. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: simplify the inline extent map creationQu Wenruo
With the tree-checker ensuring all inline file extents starts at file offset 0 and has a length no larger than sectorsize, we can simplify the calculation to assigned those fixes values directly. Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: change root->root_key.objectid to btrfs_root_id()Josef Bacik
A comment from Filipe on one of my previous cleanups brought my attention to a new helper we have for getting the root id of a root, which makes it easier to read in the code. The changes where made with the following Coccinelle semantic patch: // <smpl> @@ expression E,E1; @@ ( E->root_key.objectid = E1 | - E->root_key.objectid + btrfs_root_id(E) ) // </smpl> Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Josef Bacik <josef@toxicpanda.com> Reviewed-by: David Sterba <dsterba@suse.com> [ minor style fixups ] Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: make NOCOW checks for existence of checksums in a range more efficientFilipe Manana
Before deciding if we can do a NOCOW write into a range, one of the things we have to do is check if there are checksum items for that range. We do that through the btrfs_lookup_csums_list() function, which searches for checksums and adds them to a list supplied by the caller. But all we need is to check if there is any checksum, we don't need to look for all of them and collect them into a list, which requires more search time in the checksums tree, allocating memory for checksums items to add to the list, copy checksums from a leaf into those list items, then free that memory, etc. This is all unnecessary overhead, wasting mostly CPU time, and perhaps some occasional IO if we need to read from disk any extent buffers. So change btrfs_lookup_csums_list() to allow to return immediately in case it finds any checksum, without the need to add it to a list and read it from a leaf. This is accomplished by allowing a NULL list parameter and making the function return 1 if it found any checksum, 0 if it didn't found any, and a negative value in case of an error. The following test with fio was used to measure performance: $ cat test.sh #!/bin/bash DEV=/dev/nullb0 MNT=/mnt/nullb0 cat <<EOF > /tmp/fio-job.ini [global] name=fio-rand-write filename=$MNT/fio-rand-write rw=randwrite bssplit=4k/20:8k/20:16k/20:32k/20:64k/20 direct=1 numjobs=16 fallocate=posix time_based runtime=300 [file1] size=8G ioengine=io_uring iodepth=16 EOF umount $MNT &> /dev/null mkfs.btrfs -f $DEV mount -o ssd $DEV $MNT fio /tmp/fio-job.ini umount $MNT The test was run on a release kernel (Debian's default kernel config). The results before this patch: WRITE: bw=139MiB/s (146MB/s), 8204KiB/s-9504KiB/s (8401kB/s-9732kB/s), io=17.0GiB (18.3GB), run=125317-125344msec The results after this patch: WRITE: bw=153MiB/s (160MB/s), 9241KiB/s-10.0MiB/s (9463kB/s-10.5MB/s), io=17.0GiB (18.3GB), run=114054-114071msec Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: simplify error path for btrfs_lookup_csums_list()Filipe Manana
In the error path we have this while loop that keeps iterating over the csums of the list and then delete them from the list and free them, testing for an error (ret < 0) and list emptyness as the conditions of the while loop. Simplify this by using list_for_each_entry_safe() so there's no need to delete elements from the list and need to test the error condition on each iteration. Also rename the 'fail' label to 'out' since the label is not exclusive to a failure path, as we also end up there when the function succeeds, and it's also a more common label name. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: remove use of a temporary list at btrfs_lookup_csums_list()Filipe Manana
There's no need to use a temporary list to add the checksums, we can just add them to input list and then on error delete and free any checksums that were added. So simplify and remove the temporary list. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: remove search_commit parameter from btrfs_lookup_csums_list()Filipe Manana
All the callers of btrfs_lookup_csums_list() pass a value of 0 as the "search_commit" parameter. So remove it and make the function behave as to always search from the regular root. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-05-07btrfs: add function comment to btrfs_lookup_csums_list()Filipe Manana
Add a function comment to btrfs_lookup_csums_list() to document it. With another upcoming change its parameter list and return value will be less obvious. So add the documentation now so that it can be updated where needed later. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-03-04btrfs: unify handling of return values of btrfs_insert_empty_items()David Sterba
The error values returned by btrfs_insert_empty_items() are following the common patter of 0/-errno, but some callers check for a value > 0, which can't happen. Document that and update calls to not expect positive values. Reviewed-by: Josef Bacik <josef@toxicpanda.com> Reviewed-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com>
2024-03-04btrfs: remove unused included headersDavid Sterba
With help of neovim, LSP and clangd we can identify header files that are not actually needed to be included in the .c files. This is focused only on removal (with minor fixups), further cleanups are possible but will require doing the header files properly with forward declarations, minimized includes and include-what-you-use care. Reviewed-by: Josef Bacik <josef@toxicpanda.com> Signed-off-by: David Sterba <dsterba@suse.com>