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2018-05-30btrfs: fix lockdep splat in btrfs_alloc_subvolume_writersJeff Mahoney
[ Upstream commit 8a5a916d9a35e13576d79cc16e24611821b13e34 ] While running btrfs/011, I hit the following lockdep splat. This is the important bit: pcpu_alloc+0x1ac/0x5e0 __percpu_counter_init+0x4e/0xb0 btrfs_init_fs_root+0x99/0x1c0 [btrfs] btrfs_get_fs_root.part.54+0x5b/0x150 [btrfs] resolve_indirect_refs+0x130/0x830 [btrfs] find_parent_nodes+0x69e/0xff0 [btrfs] btrfs_find_all_roots_safe+0xa0/0x110 [btrfs] btrfs_find_all_roots+0x50/0x70 [btrfs] btrfs_qgroup_prepare_account_extents+0x53/0x90 [btrfs] btrfs_commit_transaction+0x3ce/0x9b0 [btrfs] The percpu_counter_init call in btrfs_alloc_subvolume_writers uses GFP_KERNEL, which we can't do during transaction commit. This switches it to GFP_NOFS. ======================================================== WARNING: possible irq lock inversion dependency detected 4.12.14-kvmsmall #8 Tainted: G W -------------------------------------------------------- kswapd0/50 just changed the state of lock: (&delayed_node->mutex){+.+.-.}, at: [<ffffffffc06994fa>] __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] but this lock took another, RECLAIM_FS-unsafe lock in the past: (pcpu_alloc_mutex){+.+.+.} and interrupts could create inverse lock ordering between them. other info that might help us debug this: Chain exists of: &delayed_node->mutex --> &found->groups_sem --> pcpu_alloc_mutex Possible interrupt unsafe locking scenario: CPU0 CPU1 ---- ---- lock(pcpu_alloc_mutex); local_irq_disable(); lock(&delayed_node->mutex); lock(&found->groups_sem); <Interrupt> lock(&delayed_node->mutex); *** DEADLOCK *** 2 locks held by kswapd0/50: #0: (shrinker_rwsem){++++..}, at: [<ffffffff811dc11f>] shrink_slab+0x7f/0x5b0 #1: (&type->s_umount_key#30){+++++.}, at: [<ffffffff8126dec6>] trylock_super+0x16/0x50 the shortest dependencies between 2nd lock and 1st lock: -> (pcpu_alloc_mutex){+.+.+.} ops: 4904 { HARDIRQ-ON-W at: __mutex_lock+0x4e/0x8c0 pcpu_alloc+0x1ac/0x5e0 alloc_kmem_cache_cpus.isra.70+0x25/0xa0 __do_tune_cpucache+0x2c/0x220 do_tune_cpucache+0x26/0xc0 enable_cpucache+0x6d/0xf0 kmem_cache_init_late+0x42/0x75 start_kernel+0x343/0x4cb x86_64_start_kernel+0x127/0x134 secondary_startup_64+0xa5/0xb0 SOFTIRQ-ON-W at: __mutex_lock+0x4e/0x8c0 pcpu_alloc+0x1ac/0x5e0 alloc_kmem_cache_cpus.isra.70+0x25/0xa0 __do_tune_cpucache+0x2c/0x220 do_tune_cpucache+0x26/0xc0 enable_cpucache+0x6d/0xf0 kmem_cache_init_late+0x42/0x75 start_kernel+0x343/0x4cb x86_64_start_kernel+0x127/0x134 secondary_startup_64+0xa5/0xb0 RECLAIM_FS-ON-W at: __kmalloc+0x47/0x310 pcpu_extend_area_map+0x2b/0xc0 pcpu_alloc+0x3ec/0x5e0 alloc_kmem_cache_cpus.isra.70+0x25/0xa0 __do_tune_cpucache+0x2c/0x220 do_tune_cpucache+0x26/0xc0 enable_cpucache+0x6d/0xf0 __kmem_cache_create+0x1bf/0x390 create_cache+0xba/0x1b0 kmem_cache_create+0x1f8/0x2b0 ksm_init+0x6f/0x19d do_one_initcall+0x50/0x1b0 kernel_init_freeable+0x201/0x289 kernel_init+0xa/0x100 ret_from_fork+0x3a/0x50 INITIAL USE at: __mutex_lock+0x4e/0x8c0 pcpu_alloc+0x1ac/0x5e0 alloc_kmem_cache_cpus.isra.70+0x25/0xa0 setup_cpu_cache+0x2f/0x1f0 __kmem_cache_create+0x1bf/0x390 create_boot_cache+0x8b/0xb1 kmem_cache_init+0xa1/0x19e start_kernel+0x270/0x4cb x86_64_start_kernel+0x127/0x134 secondary_startup_64+0xa5/0xb0 } ... key at: [<ffffffff821d8e70>] pcpu_alloc_mutex+0x70/0xa0 ... acquired at: pcpu_alloc+0x1ac/0x5e0 __percpu_counter_init+0x4e/0xb0 btrfs_init_fs_root+0x99/0x1c0 [btrfs] btrfs_get_fs_root.part.54+0x5b/0x150 [btrfs] resolve_indirect_refs+0x130/0x830 [btrfs] find_parent_nodes+0x69e/0xff0 [btrfs] btrfs_find_all_roots_safe+0xa0/0x110 [btrfs] btrfs_find_all_roots+0x50/0x70 [btrfs] btrfs_qgroup_prepare_account_extents+0x53/0x90 [btrfs] btrfs_commit_transaction+0x3ce/0x9b0 [btrfs] transaction_kthread+0x176/0x1b0 [btrfs] kthread+0x102/0x140 ret_from_fork+0x3a/0x50 -> (&fs_info->commit_root_sem){++++..} ops: 1566382 { HARDIRQ-ON-W at: down_write+0x3e/0xa0 cache_block_group+0x287/0x420 [btrfs] find_free_extent+0x106c/0x12d0 [btrfs] btrfs_reserve_extent+0xd8/0x170 [btrfs] cow_file_range.isra.66+0x133/0x470 [btrfs] run_delalloc_range+0x121/0x410 [btrfs] writepage_delalloc.isra.50+0xfe/0x180 [btrfs] __extent_writepage+0x19a/0x360 [btrfs] extent_write_cache_pages.constprop.56+0x249/0x3e0 [btrfs] extent_writepages+0x4d/0x60 [btrfs] do_writepages+0x1a/0x70 __filemap_fdatawrite_range+0xa7/0xe0 btrfs_rename+0x5ee/0xdb0 [btrfs] vfs_rename+0x52a/0x7e0 SyS_rename+0x351/0x3b0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 HARDIRQ-ON-R at: down_read+0x35/0x90 caching_thread+0x57/0x560 [btrfs] normal_work_helper+0x1c0/0x5e0 [btrfs] process_one_work+0x1e0/0x5c0 worker_thread+0x44/0x390 kthread+0x102/0x140 ret_from_fork+0x3a/0x50 SOFTIRQ-ON-W at: down_write+0x3e/0xa0 cache_block_group+0x287/0x420 [btrfs] find_free_extent+0x106c/0x12d0 [btrfs] btrfs_reserve_extent+0xd8/0x170 [btrfs] cow_file_range.isra.66+0x133/0x470 [btrfs] run_delalloc_range+0x121/0x410 [btrfs] writepage_delalloc.isra.50+0xfe/0x180 [btrfs] __extent_writepage+0x19a/0x360 [btrfs] extent_write_cache_pages.constprop.56+0x249/0x3e0 [btrfs] extent_writepages+0x4d/0x60 [btrfs] do_writepages+0x1a/0x70 __filemap_fdatawrite_range+0xa7/0xe0 btrfs_rename+0x5ee/0xdb0 [btrfs] vfs_rename+0x52a/0x7e0 SyS_rename+0x351/0x3b0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 SOFTIRQ-ON-R at: down_read+0x35/0x90 caching_thread+0x57/0x560 [btrfs] normal_work_helper+0x1c0/0x5e0 [btrfs] process_one_work+0x1e0/0x5c0 worker_thread+0x44/0x390 kthread+0x102/0x140 ret_from_fork+0x3a/0x50 INITIAL USE at: down_write+0x3e/0xa0 cache_block_group+0x287/0x420 [btrfs] find_free_extent+0x106c/0x12d0 [btrfs] btrfs_reserve_extent+0xd8/0x170 [btrfs] cow_file_range.isra.66+0x133/0x470 [btrfs] run_delalloc_range+0x121/0x410 [btrfs] writepage_delalloc.isra.50+0xfe/0x180 [btrfs] __extent_writepage+0x19a/0x360 [btrfs] extent_write_cache_pages.constprop.56+0x249/0x3e0 [btrfs] extent_writepages+0x4d/0x60 [btrfs] do_writepages+0x1a/0x70 __filemap_fdatawrite_range+0xa7/0xe0 btrfs_rename+0x5ee/0xdb0 [btrfs] vfs_rename+0x52a/0x7e0 SyS_rename+0x351/0x3b0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 } ... key at: [<ffffffffc0729578>] __key.61970+0x0/0xfffffffffff9aa88 [btrfs] ... acquired at: cache_block_group+0x287/0x420 [btrfs] find_free_extent+0x106c/0x12d0 [btrfs] btrfs_reserve_extent+0xd8/0x170 [btrfs] btrfs_alloc_tree_block+0x12f/0x4c0 [btrfs] btrfs_create_tree+0xbb/0x2a0 [btrfs] btrfs_create_uuid_tree+0x37/0x140 [btrfs] open_ctree+0x23c0/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 -> (&found->groups_sem){++++..} ops: 2134587 { HARDIRQ-ON-W at: down_write+0x3e/0xa0 __link_block_group+0x34/0x130 [btrfs] btrfs_read_block_groups+0x33d/0x7b0 [btrfs] open_ctree+0x2054/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 HARDIRQ-ON-R at: down_read+0x35/0x90 btrfs_calc_num_tolerated_disk_barrier_failures+0x113/0x1f0 [btrfs] open_ctree+0x207b/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 SOFTIRQ-ON-W at: down_write+0x3e/0xa0 __link_block_group+0x34/0x130 [btrfs] btrfs_read_block_groups+0x33d/0x7b0 [btrfs] open_ctree+0x2054/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 SOFTIRQ-ON-R at: down_read+0x35/0x90 btrfs_calc_num_tolerated_disk_barrier_failures+0x113/0x1f0 [btrfs] open_ctree+0x207b/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 INITIAL USE at: down_write+0x3e/0xa0 __link_block_group+0x34/0x130 [btrfs] btrfs_read_block_groups+0x33d/0x7b0 [btrfs] open_ctree+0x2054/0x2660 [btrfs] btrfs_mount+0xd36/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 btrfs_mount+0x18c/0xf90 [btrfs] mount_fs+0x3a/0x160 vfs_kern_mount+0x66/0x150 do_mount+0x1c1/0xcc0 SyS_mount+0x7e/0xd0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 } ... key at: [<ffffffffc0729488>] __key.59101+0x0/0xfffffffffff9ab78 [btrfs] ... acquired at: find_free_extent+0xcb4/0x12d0 [btrfs] btrfs_reserve_extent+0xd8/0x170 [btrfs] btrfs_alloc_tree_block+0x12f/0x4c0 [btrfs] __btrfs_cow_block+0x110/0x5b0 [btrfs] btrfs_cow_block+0xd7/0x290 [btrfs] btrfs_search_slot+0x1f6/0x960 [btrfs] btrfs_lookup_inode+0x2a/0x90 [btrfs] __btrfs_update_delayed_inode+0x65/0x210 [btrfs] btrfs_commit_inode_delayed_inode+0x121/0x130 [btrfs] btrfs_evict_inode+0x3fe/0x6a0 [btrfs] evict+0xc4/0x190 __dentry_kill+0xbf/0x170 dput+0x2ae/0x2f0 SyS_rename+0x2a6/0x3b0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 -> (&delayed_node->mutex){+.+.-.} ops: 5580204 { HARDIRQ-ON-W at: __mutex_lock+0x4e/0x8c0 btrfs_delayed_update_inode+0x46/0x6e0 [btrfs] btrfs_update_inode+0x83/0x110 [btrfs] btrfs_dirty_inode+0x62/0xe0 [btrfs] touch_atime+0x8c/0xb0 do_generic_file_read+0x818/0xb10 __vfs_read+0xdc/0x150 vfs_read+0x8a/0x130 SyS_read+0x45/0xa0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 SOFTIRQ-ON-W at: __mutex_lock+0x4e/0x8c0 btrfs_delayed_update_inode+0x46/0x6e0 [btrfs] btrfs_update_inode+0x83/0x110 [btrfs] btrfs_dirty_inode+0x62/0xe0 [btrfs] touch_atime+0x8c/0xb0 do_generic_file_read+0x818/0xb10 __vfs_read+0xdc/0x150 vfs_read+0x8a/0x130 SyS_read+0x45/0xa0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 IN-RECLAIM_FS-W at: __mutex_lock+0x4e/0x8c0 __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] btrfs_evict_inode+0x22c/0x6a0 [btrfs] evict+0xc4/0x190 dispose_list+0x35/0x50 prune_icache_sb+0x42/0x50 super_cache_scan+0x139/0x190 shrink_slab+0x262/0x5b0 shrink_node+0x2eb/0x2f0 kswapd+0x2eb/0x890 kthread+0x102/0x140 ret_from_fork+0x3a/0x50 INITIAL USE at: __mutex_lock+0x4e/0x8c0 btrfs_delayed_update_inode+0x46/0x6e0 [btrfs] btrfs_update_inode+0x83/0x110 [btrfs] btrfs_dirty_inode+0x62/0xe0 [btrfs] touch_atime+0x8c/0xb0 do_generic_file_read+0x818/0xb10 __vfs_read+0xdc/0x150 vfs_read+0x8a/0x130 SyS_read+0x45/0xa0 do_syscall_64+0x79/0x1e0 entry_SYSCALL_64_after_hwframe+0x42/0xb7 } ... key at: [<ffffffffc072d488>] __key.56935+0x0/0xfffffffffff96b78 [btrfs] ... acquired at: __lock_acquire+0x264/0x11c0 lock_acquire+0xbd/0x1e0 __mutex_lock+0x4e/0x8c0 __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] btrfs_evict_inode+0x22c/0x6a0 [btrfs] evict+0xc4/0x190 dispose_list+0x35/0x50 prune_icache_sb+0x42/0x50 super_cache_scan+0x139/0x190 shrink_slab+0x262/0x5b0 shrink_node+0x2eb/0x2f0 kswapd+0x2eb/0x890 kthread+0x102/0x140 ret_from_fork+0x3a/0x50 stack backtrace: CPU: 1 PID: 50 Comm: kswapd0 Tainted: G W 4.12.14-kvmsmall #8 SLE15 (unreleased) Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS 1.0.0-prebuilt.qemu-project.org 04/01/2014 Call Trace: dump_stack+0x78/0xb7 print_irq_inversion_bug.part.38+0x19f/0x1aa check_usage_forwards+0x102/0x120 ? ret_from_fork+0x3a/0x50 ? check_usage_backwards+0x110/0x110 mark_lock+0x16c/0x270 __lock_acquire+0x264/0x11c0 ? pagevec_lookup_entries+0x1a/0x30 ? truncate_inode_pages_range+0x2b3/0x7f0 lock_acquire+0xbd/0x1e0 ? __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] __mutex_lock+0x4e/0x8c0 ? __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] ? __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] ? btrfs_evict_inode+0x1f6/0x6a0 [btrfs] __btrfs_release_delayed_node+0x3a/0x1f0 [btrfs] btrfs_evict_inode+0x22c/0x6a0 [btrfs] evict+0xc4/0x190 dispose_list+0x35/0x50 prune_icache_sb+0x42/0x50 super_cache_scan+0x139/0x190 shrink_slab+0x262/0x5b0 shrink_node+0x2eb/0x2f0 kswapd+0x2eb/0x890 kthread+0x102/0x140 ? mem_cgroup_shrink_node+0x2c0/0x2c0 ? kthread_create_on_node+0x40/0x40 ret_from_fork+0x3a/0x50 Signed-off-by: Jeff Mahoney <jeffm@suse.com> Reviewed-by: Liu Bo <bo.liu@linux.alibaba.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: fix copy_items() return value when logging an inodeFilipe Manana
[ Upstream commit 8434ec46c6e3232cebc25a910363b29f5c617820 ] When logging an inode, at tree-log.c:copy_items(), if we call btrfs_next_leaf() at the loop which checks for the need to log holes, we need to make sure copy_items() returns the value 1 to its caller and not 0 (on success). This is because the path the caller passed was released and is now different from what is was before, and the caller expects a return value of 0 to mean both success and that the path has not changed, while a return value of 1 means both success and signals the caller that it can not reuse the path, it has to perform another tree search. Even though this is a case that should not be triggered on normal circumstances or very rare at least, its consequences can be very unpredictable (especially when replaying a log tree). Fixes: 16e7549f045d ("Btrfs: incompatible format change to remove hole extents") Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30btrfs: tests/qgroup: Fix wrong tree backref levelQu Wenruo
[ Upstream commit 3c0efdf03b2d127f0e40e30db4e7aa0429b1b79a ] The extent tree of the test fs is like the following: BTRFS info (device (null)): leaf 16327509003777336587 total ptrs 1 free space 3919 item 0 key (4096 168 4096) itemoff 3944 itemsize 51 extent refs 1 gen 1 flags 2 tree block key (68719476736 0 0) level 1 ^^^^^^^ ref#0: tree block backref root 5 And it's using an empty tree for fs tree, so there is no way that its level can be 1. For REAL (created by mkfs) fs tree backref with no skinny metadata, the result should look like: item 3 key (30408704 EXTENT_ITEM 4096) itemoff 3845 itemsize 51 refs 1 gen 4 flags TREE_BLOCK tree block key (256 INODE_ITEM 0) level 0 ^^^^^^^ tree block backref root 5 Fix the level to 0, so it won't break later tree level checker. Fixes: faa2dbf004e8 ("Btrfs: add sanity tests for new qgroup accounting code") Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30btrfs: Fix possible softlock on single core machinesNikolay Borisov
[ Upstream commit 1e1c50a929bc9e49bc3f9935b92450d9e69f8158 ] do_chunk_alloc implements a loop checking whether there is a pending chunk allocation and if so causes the caller do loop. Generally this loop is executed only once, however testing with btrfs/072 on a single core vm machines uncovered an extreme case where the system could loop indefinitely. This is due to a missing cond_resched when loop which doesn't give a chance to the previous chunk allocator finish its job. The fix is to simply add the missing cond_resched. Fixes: 6d74119f1a3e ("Btrfs: avoid taking the chunk_mutex in do_chunk_alloc") Signed-off-by: Nikolay Borisov <nborisov@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: fix NULL pointer dereference in log_dir_itemsLiu Bo
[ Upstream commit 80c0b4210a963e31529e15bf90519708ec947596 ] 0, 1 and <0 can be returned by btrfs_next_leaf(), and when <0 is returned, path->nodes[0] could be NULL, log_dir_items lacks such a check for <0 and we may run into a null pointer dereference panic. Fixes: e02119d5a7b4 ("Btrfs: Add a write ahead tree log to optimize synchronous operations") Reviewed-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Liu Bo <bo.liu@linux.alibaba.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: bail out on error during replay_dir_deletesLiu Bo
[ Upstream commit b98def7ca6e152ee55e36863dddf6f41f12d1dc6 ] If errors were returned by btrfs_next_leaf(), replay_dir_deletes needs to bail out, otherwise @ret would be forced to be 0 after 'break;' and the caller won't be aware of it. Fixes: e02119d5a7b4 ("Btrfs: Add a write ahead tree log to optimize synchronous operations") Reviewed-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Liu Bo <bo.liu@linux.alibaba.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: send, fix issuing write op when processing hole in no data modeFilipe Manana
[ Upstream commit d4dfc0f4d39475ccbbac947880b5464a74c30b99 ] When doing an incremental send of a filesystem with the no-holes feature enabled, we end up issuing a write operation when using the no data mode send flag, instead of issuing an update extent operation. Fix this by issuing the update extent operation instead. Trivial reproducer: $ mkfs.btrfs -f -O no-holes /dev/sdc $ mkfs.btrfs -f /dev/sdd $ mount /dev/sdc /mnt/sdc $ mount /dev/sdd /mnt/sdd $ xfs_io -f -c "pwrite -S 0xab 0 32K" /mnt/sdc/foobar $ btrfs subvolume snapshot -r /mnt/sdc /mnt/sdc/snap1 $ xfs_io -c "fpunch 8K 8K" /mnt/sdc/foobar $ btrfs subvolume snapshot -r /mnt/sdc /mnt/sdc/snap2 $ btrfs send /mnt/sdc/snap1 | btrfs receive /mnt/sdd $ btrfs send --no-data -p /mnt/sdc/snap1 /mnt/sdc/snap2 \ | btrfs receive -vv /mnt/sdd Before this change the output of the second receive command is: receiving snapshot snap2 uuid=f6922049-8c22-e544-9ff9-fc6755918447... utimes write foobar, offset 8192, len 8192 utimes foobar BTRFS_IOC_SET_RECEIVED_SUBVOL uuid=f6922049-8c22-e544-9ff9-... After this change it is: receiving snapshot snap2 uuid=564d36a3-ebc8-7343-aec9-bf6fda278e64... utimes update_extent foobar: offset=8192, len=8192 utimes foobar BTRFS_IOC_SET_RECEIVED_SUBVOL uuid=564d36a3-ebc8-7343-aec9-bf6fda278e64... Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: fix scrub to repair raid6 corruptionLiu Bo
[ Upstream commit 762221f095e3932669093466aaf4b85ed9ad2ac1 ] The raid6 corruption is that, suppose that all disks can be read without problems and if the content that was read out doesn't match its checksum, currently for raid6 btrfs at most retries twice, - the 1st retry is to rebuild with all other stripes, it'll eventually be a raid5 xor rebuild, - if the 1st fails, the 2nd retry will deliberately fail parity p so that it will do raid6 style rebuild, however, the chances are that another non-parity stripe content also has something corrupted, so that the above retries are not able to return correct content. We've fixed normal reads to rebuild raid6 correctly with more retries in Patch "Btrfs: make raid6 rebuild retry more"[1], this is to fix scrub to do the exactly same rebuild process. [1]: https://patchwork.kernel.org/patch/10091755/ Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30btrfs: Fix out of bounds access in btrfs_search_slotNikolay Borisov
[ Upstream commit 9ea2c7c9da13c9073e371c046cbbc45481ecb459 ] When modifying a tree where the root is at BTRFS_MAX_LEVEL - 1 then the level variable is going to be 7 (this is the max height of the tree). On the other hand btrfs_cow_block is always called with "level + 1" as an index into the nodes and slots arrays. This leads to an out of bounds access. Admittdely this will be benign since an OOB access of the nodes array will likely read the 0th element from the slots array, which in this case is going to be 0 (since we start CoW at the top of the tree). The OOB access into the slots array in turn will read the 0th and 1st values of the locks array, which would both be 0 at the time. However, this benign behavior relies on the fact that the path being passed hasn't been initialised, if it has already been used to query a btree then it could potentially have populated the nodes/slots arrays. Fix it by explicitly checking if we are at level 7 (the maximum allowed index in nodes/slots arrays) and explicitly call the CoW routine with NULL for parent's node/slot. Signed-off-by: Nikolay Borisov <nborisov@suse.com> Fixes-coverity-id: 711515 Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30Btrfs: set plug for fsyncLiu Bo
[ Upstream commit 343e4fc1c60971b0734de26dbbd475d433950982 ] Setting plug can merge adjacent IOs before dispatching IOs to the disk driver. Without plug, it'd not be a problem for single disk usecases, but for multiple disks using raid profile, a large IO can be split to several IOs of stripe length, and plug can be helpful to bring them together for each disk so that we can save several disk access. Moreover, fsync issues synchronous writes, so plug can really take effect. Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-30do d_instantiate/unlock_new_inode combinations safelyAl Viro
commit 1e2e547a93a00ebc21582c06ca3c6cfea2a309ee upstream. For anything NFS-exported we do _not_ want to unlock new inode before it has grown an alias; original set of fixes got the ordering right, but missed the nasty complication in case of lockdep being enabled - unlock_new_inode() does lockdep_annotate_inode_mutex_key(inode) which can only be done before anyone gets a chance to touch ->i_mutex. Unfortunately, flipping the order and doing unlock_new_inode() before d_instantiate() opens a window when mkdir can race with open-by-fhandle on a guessed fhandle, leading to multiple aliases for a directory inode and all the breakage that follows from that. Correct solution: a new primitive (d_instantiate_new()) combining these two in the right order - lockdep annotate, then d_instantiate(), then the rest of unlock_new_inode(). All combinations of d_instantiate() with unlock_new_inode() should be converted to that. Cc: stable@kernel.org # 2.6.29 and later Tested-by: Mike Marshall <hubcap@omnibond.com> Reviewed-by: Andreas Dilger <adilger@dilger.ca> Signed-off-by: Al Viro <viro@zeniv.linux.org.uk> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-26btrfs: fix reading stale metadata blocks after degraded raid1 mountsLiu Bo
commit 02a3307aa9c20b4f6626255b028f07f6cfa16feb upstream. If a btree block, aka. extent buffer, is not available in the extent buffer cache, it'll be read out from the disk instead, i.e. btrfs_search_slot() read_block_for_search() # hold parent and its lock, go to read child btrfs_release_path() read_tree_block() # read child Unfortunately, the parent lock got released before reading child, so commit 5bdd3536cbbe ("Btrfs: Fix block generation verification race") had used 0 as parent transid to read the child block. It forces read_tree_block() not to check if parent transid is different with the generation id of the child that it reads out from disk. A simple PoC is included in btrfs/124, 0. A two-disk raid1 btrfs, 1. Right after mkfs.btrfs, block A is allocated to be device tree's root. 2. Mount this filesystem and put it in use, after a while, device tree's root got COW but block A hasn't been allocated/overwritten yet. 3. Umount it and reload the btrfs module to remove both disks from the global @fs_devices list. 4. mount -odegraded dev1 and write some data, so now block A is allocated to be a leaf in checksum tree. Note that only dev1 has the latest metadata of this filesystem. 5. Umount it and mount it again normally (with both disks), since raid1 can pick up one disk by the writer task's pid, if btrfs_search_slot() needs to read block A, dev2 which does NOT have the latest metadata might be read for block A, then we got a stale block A. 6. As parent transid is not checked, block A is marked as uptodate and put into the extent buffer cache, so the future search won't bother to read disk again, which means it'll make changes on this stale one and make it dirty and flush it onto disk. To avoid the problem, parent transid needs to be passed to read_tree_block(). In order to get a valid parent transid, we need to hold the parent's lock until finishing reading child. This patch needs to be slightly adapted for stable kernels, the &first_key parameter added to read_tree_block() is from 4.16+ (581c1760415c4). The fix is to replace 0 by 'gen'. Fixes: 5bdd3536cbbe ("Btrfs: Fix block generation verification race") CC: stable@vger.kernel.org # 4.4+ Signed-off-by: Liu Bo <bo.liu@linux.alibaba.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: Qu Wenruo <wqu@suse.com> [ update changelog ] Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-26btrfs: fix crash when trying to resume balance without the resume flagAnand Jain
commit 02ee654d3a04563c67bfe658a05384548b9bb105 upstream. We set the BTRFS_BALANCE_RESUME flag in the btrfs_recover_balance() only, which isn't called during the remount. So when resuming from the paused balance we hit the bug: kernel: kernel BUG at fs/btrfs/volumes.c:3890! :: kernel: balance_kthread+0x51/0x60 [btrfs] kernel: kthread+0x111/0x130 :: kernel: RIP: btrfs_balance+0x12e1/0x1570 [btrfs] RSP: ffffba7d0090bde8 Reproducer: On a mounted filesystem: btrfs balance start --full-balance /btrfs btrfs balance pause /btrfs mount -o remount,ro /dev/sdb /btrfs mount -o remount,rw /dev/sdb /btrfs To fix this set the BTRFS_BALANCE_RESUME flag in btrfs_resume_balance_async(). CC: stable@vger.kernel.org # 4.4+ Signed-off-by: Anand Jain <anand.jain@oracle.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-05-26Btrfs: fix xattr loss after power failureFilipe Manana
commit 9a8fca62aacc1599fea8e813d01e1955513e4fad upstream. If a file has xattrs, we fsync it, to ensure we clear the flags BTRFS_INODE_NEEDS_FULL_SYNC and BTRFS_INODE_COPY_EVERYTHING from its inode, the current transaction commits and then we fsync it (without either of those bits being set in its inode), we end up not logging all its xattrs. This results in deleting all xattrs when replying the log after a power failure. Trivial reproducer $ mkfs.btrfs -f /dev/sdb $ mount /dev/sdb /mnt $ touch /mnt/foobar $ setfattr -n user.xa -v qwerty /mnt/foobar $ xfs_io -c "fsync" /mnt/foobar $ sync $ xfs_io -c "pwrite -S 0xab 0 64K" /mnt/foobar $ xfs_io -c "fsync" /mnt/foobar <power failure> $ mount /dev/sdb /mnt $ getfattr --absolute-names --dump /mnt/foobar <empty output> $ So fix this by making sure all xattrs are logged if we log a file's inode item and neither the flags BTRFS_INODE_NEEDS_FULL_SYNC nor BTRFS_INODE_COPY_EVERYTHING were set in the inode. Fixes: 36283bf777d9 ("Btrfs: fix fsync xattr loss in the fast fsync path") Cc: <stable@vger.kernel.org> # 4.2+ Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-04-13btrfs: fix incorrect error return ret being passed to mapping_set_errorColin Ian King
[ Upstream commit bff5baf8aa37a97293725a16c03f49872249c07e ] The setting of return code ret should be based on the error code passed into function end_extent_writepage and not on ret. Thanks to Liu Bo for spotting this mistake in the original fix I submitted. Detected by CoverityScan, CID#1414312 ("Logically dead code") Fixes: 5dca6eea91653e ("Btrfs: mark mapping with error flag to report errors to userspace") Signed-off-by: Colin Ian King <colin.king@canonical.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-03-24Btrfs: send, fix file hole not being preserved due to inline extentFilipe Manana
[ Upstream commit e1cbfd7bf6dabdac561c75d08357571f44040a45 ] Normally we don't have inline extents followed by regular extents, but there's currently at least one harmless case where this happens. For example, when the page size is 4Kb and compression is enabled: $ mkfs.btrfs -f /dev/sdb $ mount -o compress /dev/sdb /mnt $ xfs_io -f -c "pwrite -S 0xaa 0 4K" -c "fsync" /mnt/foobar $ xfs_io -c "pwrite -S 0xbb 8K 4K" -c "fsync" /mnt/foobar In this case we get a compressed inline extent, representing 4Kb of data, followed by a hole extent and then a regular data extent. The inline extent was not expanded/converted to a regular extent exactly because it represents 4Kb of data. This does not cause any apparent problem (such as the issue solved by commit e1699d2d7bf6 ("btrfs: add missing memset while reading compressed inline extents")) except trigger an unexpected case in the incremental send code path that makes us issue an operation to write a hole when it's not needed, resulting in more writes at the receiver and wasting space at the receiver. So teach the incremental send code to deal with this particular case. The issue can be currently triggered by running fstests btrfs/137 with compression enabled (MOUNT_OPTIONS="-o compress" ./check btrfs/137). Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-03-22btrfs: Fix use-after-free when cleaning up fs_devs with a single stale deviceNikolay Borisov
commit fd649f10c3d21ee9d7542c609f29978bdf73ab94 upstream. Commit 4fde46f0cc71 ("Btrfs: free the stale device") introduced btrfs_free_stale_device which iterates the device lists for all registered btrfs filesystems and deletes those devices which aren't mounted. In a btrfs_devices structure has only 1 device attached to it and it is unused then btrfs_free_stale_devices will proceed to also free the btrfs_fs_devices struct itself. Currently this leads to a use after free since list_for_each_entry will try to perform a check on the already freed memory to see if it has to terminate the loop. The fix is to use 'break' when we know we are freeing the current fs_devs. Fixes: 4fde46f0cc71 ("Btrfs: free the stale device") Signed-off-by: Nikolay Borisov <nborisov@suse.com> Reviewed-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-03-22btrfs: alloc_chunk: fix DUP stripe size handlingHans van Kranenburg
commit 92e222df7b8f05c565009c7383321b593eca488b upstream. In case of using DUP, we search for enough unallocated disk space on a device to hold two stripes. The devices_info[ndevs-1].max_avail that holds the amount of unallocated space found is directly assigned to stripe_size, while it's actually twice the stripe size. Later on in the code, an unconditional division of stripe_size by dev_stripes corrects the value, but in the meantime there's a check to see if the stripe_size does not exceed max_chunk_size. Since during this check stripe_size is twice the amount as intended, the check will reduce the stripe_size to max_chunk_size if the actual correct to be used stripe_size is more than half the amount of max_chunk_size. The unconditional division later tries to correct stripe_size, but will actually make sure we can't allocate more than half the max_chunk_size. Fix this by moving the division by dev_stripes before the max chunk size check, so it always contains the right value, instead of putting a duct tape division in further on to get it fixed again. Since in all other cases than DUP, dev_stripes is 1, this change only affects DUP. Other attempts in the past were made to fix this: * 37db63a400 "Btrfs: fix max chunk size check in chunk allocator" tried to fix the same problem, but still resulted in part of the code acting on a wrongly doubled stripe_size value. * 86db25785a "Btrfs: fix max chunk size on raid5/6" unintentionally broke this fix again. The real problem was already introduced with the rest of the code in 73c5de0051. The user visible result however will be that the max chunk size for DUP will suddenly double, while it's actually acting according to the limits in the code again like it was 5 years ago. Reported-by: Naohiro Aota <naohiro.aota@wdc.com> Link: https://www.spinics.net/lists/linux-btrfs/msg69752.html Fixes: 73c5de0051 ("btrfs: quasi-round-robin for chunk allocation") Fixes: 86db25785a ("Btrfs: fix max chunk size on raid5/6") Signed-off-by: Hans van Kranenburg <hans.van.kranenburg@mendix.com> Reviewed-by: David Sterba <dsterba@suse.com> [ update comment ] Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-03-11btrfs: preserve i_mode if __btrfs_set_acl() failsErnesto A. Fernández
commit d7d824966530acfe32b94d1ed672e6fe1638cd68 upstream. When changing a file's acl mask, btrfs_set_acl() will first set the group bits of i_mode to the value of the mask, and only then set the actual extended attribute representing the new acl. If the second part fails (due to lack of space, for example) and the file had no acl attribute to begin with, the system will from now on assume that the mask permission bits are actual group permission bits, potentially granting access to the wrong users. Prevent this by restoring the original mode bits if __btrfs_set_acl fails. Signed-off-by: Ernesto A. Fernández <ernesto.mnd.fernandez@gmail.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-03-11btrfs: Don't clear SGID when inheriting ACLsJan Kara
commit b7f8a09f8097db776b8d160862540e4fc1f51296 upstream. When new directory 'DIR1' is created in a directory 'DIR0' with SGID bit set, DIR1 is expected to have SGID bit set (and owning group equal to the owning group of 'DIR0'). However when 'DIR0' also has some default ACLs that 'DIR1' inherits, setting these ACLs will result in SGID bit on 'DIR1' to get cleared if user is not member of the owning group. Fix the problem by moving posix_acl_update_mode() out of __btrfs_set_acl() into btrfs_set_acl(). That way the function will not be called when inheriting ACLs which is what we want as it prevents SGID bit clearing and the mode has been properly set by posix_acl_create() anyway. Fixes: 073931017b49d9458aa351605b43a7e34598caef CC: stable@vger.kernel.org CC: linux-btrfs@vger.kernel.org CC: David Sterba <dsterba@suse.com> Signed-off-by: Jan Kara <jack@suse.cz> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-25btrfs: Fix possible off-by-one in btrfs_search_path_in_treeNikolay Borisov
[ Upstream commit c8bcbfbd239ed60a6562964b58034ac8a25f4c31 ] The name char array passed to btrfs_search_path_in_tree is of size BTRFS_INO_LOOKUP_PATH_MAX (4080). So the actual accessible char indexes are in the range of [0, 4079]. Currently the code uses the define but this represents an off-by-one. Implications: Size of btrfs_ioctl_ino_lookup_args is 4096, so the new byte will be written to extra space, not some padding that could be provided by the allocator. btrfs-progs store the arguments on stack, but kernel does own copy of the ioctl buffer and the off-by-one overwrite does not affect userspace, but the ending 0 might be lost. Kernel ioctl buffer is allocated dynamically so we're overwriting somebody else's memory, and the ioctl is privileged if args.objectid is not 256. Which is in most cases, but resolving a subvolume stored in another directory will trigger that path. Before this patch the buffer was one byte larger, but then the -1 was not added. Fixes: ac8e9819d71f907 ("Btrfs: add search and inode lookup ioctls") Signed-off-by: Nikolay Borisov <nborisov@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> [ added implications ] Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-22Btrfs: fix unexpected -EEXIST when creating new inodeLiu Bo
commit 900c9981680067573671ecc5cbfa7c5770be3a40 upstream. The highest objectid, which is assigned to new inode, is decided at the time of initializing fs roots. However, in cases where log replay gets processed, the btree which fs root owns might be changed, so we have to search it again for the highest objectid, otherwise creating new inode would end up with -EEXIST. cc: <stable@vger.kernel.org> v4.4-rc6+ Fixes: f32e48e92596 ("Btrfs: Initialize btrfs_root->highest_objectid when loading tree root and subvolume roots") Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-22Btrfs: fix crash due to not cleaning up tree log block's dirty bitsLiu Bo
commit 1846430c24d66e85cc58286b3319c82cd54debb2 upstream. In cases that the whole fs flips into readonly status due to failures in critical sections, then log tree's blocks are still dirty, and this leads to a crash during umount time, the crash is about use-after-free, umount -> close_ctree -> stop workers -> iput(btree_inode) -> iput_final -> write_inode_now -> ... -> queue job on stop'd workers cc: <stable@vger.kernel.org> v3.12+ Fixes: 681ae50917df ("Btrfs: cleanup reserved space when freeing tree log on error") Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-22Btrfs: fix deadlock in run_delalloc_nocowLiu Bo
commit e89166990f11c3f21e1649d760dd35f9e410321c upstream. @cur_offset is not set back to what it should be (@cow_start) if btrfs_next_leaf() returns something wrong, and the range [cow_start, cur_offset) remains locked forever. cc: <stable@vger.kernel.org> Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-16btrfs: Handle btrfs_set_extent_delalloc failure in fixup workerNikolay Borisov
commit f3038ee3a3f1017a1cbe9907e31fa12d366c5dcb upstream. This function was introduced by 247e743cbe6e ("Btrfs: Use async helpers to deal with pages that have been improperly dirtied") and it didn't do any error handling then. This function might very well fail in ENOMEM situation, yet it's not handled, this could lead to inconsistent state. So let's handle the failure by setting the mapping error bit. Signed-off-by: Nikolay Borisov <nborisov@suse.com> Reviewed-by: Qu Wenruo <wqu@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-02-03btrfs: fix deadlock when writing out space cacheJosef Bacik
[ Upstream commit b77000ed558daa3bef0899d29bf171b8c9b5e6a8 ] If we fail to prepare our pages for whatever reason (out of memory in our case) we need to make sure to drop the block_group->data_rwsem, otherwise hilarity ensues. Signed-off-by: Josef Bacik <jbacik@fb.com> Reviewed-by: Omar Sandoval <osandov@fb.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: David Sterba <dsterba@suse.com> [ add label and use existing unlocking code ] Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-12-20btrfs: add missing memset while reading compressed inline extentsZygo Blaxell
[ Upstream commit e1699d2d7bf6e6cce3e1baff19f9dd4595a58664 ] This is a story about 4 distinct (and very old) btrfs bugs. Commit c8b978188c ("Btrfs: Add zlib compression support") added three data corruption bugs for inline extents (bugs #1-3). Commit 93c82d5750 ("Btrfs: zero page past end of inline file items") fixed bug #1: uncompressed inline extents followed by a hole and more extents could get non-zero data in the hole as they were read. The fix was to add a memset in btrfs_get_extent to zero out the hole. Commit 166ae5a418 ("btrfs: fix inline compressed read err corruption") fixed bug #2: compressed inline extents which contained non-zero bytes might be replaced with zero bytes in some cases. This patch removed an unhelpful memset from uncompress_inline, but the case where memset is required was missed. There is also a memset in the decompression code, but this only covers decompressed data that is shorter than the ram_bytes from the extent ref record. This memset doesn't cover the region between the end of the decompressed data and the end of the page. It has also moved around a few times over the years, so there's no single patch to refer to. This patch fixes bug #3: compressed inline extents followed by a hole and more extents could get non-zero data in the hole as they were read (i.e. bug #3 is the same as bug #1, but s/uncompressed/compressed/). The fix is the same: zero out the hole in the compressed case too, by putting a memset back in uncompress_inline, but this time with correct parameters. The last and oldest bug, bug #0, is the cause of the offending inline extent/hole/extent pattern. Bug #0 is a subtle and mostly-harmless quirk of behavior somewhere in the btrfs write code. In a few special cases, an inline extent and hole are allowed to persist where they normally would be combined with later extents in the file. A fast reproducer for bug #0 is presented below. A few offending extents are also created in the wild during large rsync transfers with the -S flag. A Linux kernel build (git checkout; make allyesconfig; make -j8) will produce a handful of offending files as well. Once an offending file is created, it can present different content to userspace each time it is read. Bug #0 is at least 4 and possibly 8 years old. I verified every vX.Y kernel back to v3.5 has this behavior. There are fossil records of this bug's effects in commits all the way back to v2.6.32. I have no reason to believe bug #0 wasn't present at the beginning of btrfs compression support in v2.6.29, but I can't easily test kernels that old to be sure. It is not clear whether bug #0 is worth fixing. A fix would likely require injecting extra reads into currently write-only paths, and most of the exceptional cases caused by bug #0 are already handled now. Whether we like them or not, bug #0's inline extents followed by holes are part of the btrfs de-facto disk format now, and we need to be able to read them without data corruption or an infoleak. So enough about bug #0, let's get back to bug #3 (this patch). An example of on-disk structure leading to data corruption found in the wild: item 61 key (606890 INODE_ITEM 0) itemoff 9662 itemsize 160 inode generation 50 transid 50 size 47424 nbytes 49141 block group 0 mode 100644 links 1 uid 0 gid 0 rdev 0 flags 0x0(none) item 62 key (606890 INODE_REF 603050) itemoff 9642 itemsize 20 inode ref index 3 namelen 10 name: DB_File.so item 63 key (606890 EXTENT_DATA 0) itemoff 8280 itemsize 1362 inline extent data size 1341 ram 4085 compress(zlib) item 64 key (606890 EXTENT_DATA 4096) itemoff 8227 itemsize 53 extent data disk byte 5367308288 nr 20480 extent data offset 0 nr 45056 ram 45056 extent compression(zlib) Different data appears in userspace during each read of the 11 bytes between 4085 and 4096. The extent in item 63 is not long enough to fill the first page of the file, so a memset is required to fill the space between item 63 (ending at 4085) and item 64 (beginning at 4096) with zero. Here is a reproducer from Liu Bo, which demonstrates another method of creating the same inline extent and hole pattern: Using 'page_poison=on' kernel command line (or enable CONFIG_PAGE_POISONING) run the following: # touch foo # chattr +c foo # xfs_io -f -c "pwrite -W 0 1000" foo # xfs_io -f -c "falloc 4 8188" foo # od -x foo # echo 3 >/proc/sys/vm/drop_caches # od -x foo This produce the following on my box: Correct output: file contains 1000 data bytes followed by zeros: 0000000 cdcd cdcd cdcd cdcd cdcd cdcd cdcd cdcd * 0001740 cdcd cdcd cdcd cdcd 0000 0000 0000 0000 0001760 0000 0000 0000 0000 0000 0000 0000 0000 * 0020000 Actual output: the data after the first 1000 bytes will be different each run: 0000000 cdcd cdcd cdcd cdcd cdcd cdcd cdcd cdcd * 0001740 cdcd cdcd cdcd cdcd 6c63 7400 635f 006d 0001760 5f74 6f43 7400 435f 0053 5f74 7363 7400 0002000 435f 0056 5f74 6164 7400 645f 0062 5f74 (...) Signed-off-by: Zygo Blaxell <ce3g8jdj@umail.furryterror.org> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: Chris Mason <clm@fb.com> Signed-off-by: Chris Mason <clm@fb.com> Signed-off-by: Sasha Levin <alexander.levin@verizon.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-12-05btrfs: clear space cache inode generation alwaysJosef Bacik
commit 8e138e0d92c6c9d3d481674fb14e3439b495be37 upstream. We discovered a box that had double allocations, and suspected the space cache may be to blame. While auditing the write out path I noticed that if we've already setup the space cache we will just carry on. This means that any error we hit after cache_save_setup before we go to actually write the cache out we won't reset the inode generation, so whatever was already written will be considered correct, except it'll be stale. Fix this by _always_ resetting the generation on the block group inode, this way we only ever have valid or invalid cache. With this patch I was no longer able to reproduce cache corruption with dm-log-writes and my bpf error injection tool. Signed-off-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-11-30btrfs: return the actual error value from from btrfs_uuid_tree_iteratePan Bian
[ Upstream commit 73ba39ab9307340dc98ec3622891314bbc09cc2e ] In function btrfs_uuid_tree_iterate(), errno is assigned to variable ret on errors. However, it directly returns 0. It may be better to return ret. This patch also removes the warning, because the caller already prints a warning. Bugzilla: https://bugzilla.kernel.org/show_bug.cgi?id=188731 Signed-off-by: Pan Bian <bianpan2016@163.com> Reviewed-by: Omar Sandoval <osandov@fb.com> [ edited subject ] Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@verizon.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-10-21Btrfs: send, fix failure to rename top level inode due to name collisionRobbie Ko
[ Upstream commit 4dd9920d991745c4a16f53a8f615f706fbe4b3f7 ] Under certain situations, an incremental send operation can fail due to a premature attempt to create a new top level inode (a direct child of the subvolume/snapshot root) whose name collides with another inode that was removed from the send snapshot. Consider the following example scenario. Parent snapshot: . (ino 256, gen 8) |---- a1/ (ino 257, gen 9) |---- a2/ (ino 258, gen 9) Send snapshot: . (ino 256, gen 3) |---- a2/ (ino 257, gen 7) In this scenario, when receiving the incremental send stream, the btrfs receive command fails like this (ran in verbose mode, -vv argument): rmdir a1 mkfile o257-7-0 rename o257-7-0 -> a2 ERROR: rename o257-7-0 -> a2 failed: Is a directory What happens when computing the incremental send stream is: 1) An operation to remove the directory with inode number 257 and generation 9 is issued. 2) An operation to create the inode with number 257 and generation 7 is issued. This creates the inode with an orphanized name of "o257-7-0". 3) An operation rename the new inode 257 to its final name, "a2", is issued. This is incorrect because inode 258, which has the same name and it's a child of the same parent (root inode 256), was not yet processed and therefore no rmdir operation for it was yet issued. The rename operation is issued because we fail to detect that the name of the new inode 257 collides with inode 258, because their parent, a subvolume/snapshot root (inode 256) has a different generation in both snapshots. So fix this by ignoring the generation value of a parent directory that matches a root inode (number 256) when we are checking if the name of the inode currently being processed collides with the name of some other inode that was not yet processed. We can achieve this scenario of different inodes with the same number but different generation values either by mounting a filesystem with the inode cache option (-o inode_cache) or by creating and sending snapshots across different filesystems, like in the following example: $ mkfs.btrfs -f /dev/sdb $ mount /dev/sdb /mnt $ mkdir /mnt/a1 $ mkdir /mnt/a2 $ btrfs subvolume snapshot -r /mnt /mnt/snap1 $ btrfs send /mnt/snap1 -f /tmp/1.snap $ umount /mnt $ mkfs.btrfs -f /dev/sdc $ mount /dev/sdc /mnt $ touch /mnt/a2 $ btrfs subvolume snapshot -r /mnt /mnt/snap2 $ btrfs receive /mnt -f /tmp/1.snap # Take note that once the filesystem is created, its current # generation has value 7 so the inode from the second snapshot has # a generation value of 7. And after receiving the first snapshot # the filesystem is at a generation value of 10, because the call to # create the second snapshot bumps the generation to 8 (the snapshot # creation ioctl does a transaction commit), the receive command calls # the snapshot creation ioctl to create the first snapshot, which bumps # the filesystem's generation to 9, and finally when the receive # operation finishes it calls an ioctl to transition the first snapshot # (snap1) from RW mode to RO mode, which does another transaction commit # and bumps the filesystem's generation to 10. $ rm -f /tmp/1.snap $ btrfs send /mnt/snap1 -f /tmp/1.snap $ btrfs send -p /mnt/snap1 /mnt/snap2 -f /tmp/2.snap $ umount /mnt $ mkfs.btrfs -f /dev/sdd $ mount /dev/sdd /mnt $ btrfs receive /mnt /tmp/1.snap # Receive of snapshot snap2 used to fail. $ btrfs receive /mnt /tmp/2.snap Signed-off-by: Robbie Ko <robbieko@synology.com> Reviewed-by: Filipe Manana <fdmanana@suse.com> [Rewrote changelog to be more precise and clear] Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Sasha Levin <alexander.levin@verizon.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-10-05btrfs: prevent to set invalid default subvolidsatoru takeuchi
commit 6d6d282932d1a609e60dc4467677e0e863682f57 upstream. `btrfs sub set-default` succeeds to set an ID which isn't corresponding to any fs/file tree. If such the bad ID is set to a filesystem, we can't mount this filesystem without specifying `subvol` or `subvolid` mount options. Fixes: 6ef5ed0d386b ("Btrfs: add ioctl and incompat flag to set the default mount subvol") Signed-off-by: Satoru Takeuchi <satoru.takeuchi@gmail.com> Reviewed-by: Qu Wenruo <quwenruo.btrfs@gmx.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-10-05btrfs: propagate error to btrfs_cmp_data_prepare callerNaohiro Aota
commit 78ad4ce014d025f41b8dde3a81876832ead643cf upstream. btrfs_cmp_data_prepare() (almost) always returns 0 i.e. ignoring errors from gather_extent_pages(). While the pages are freed by btrfs_cmp_data_free(), cmp->num_pages still has > 0. Then, btrfs_extent_same() try to access the already freed pages causing faults (or violates PageLocked assertion). This patch just return the error as is so that the caller stop the process. Signed-off-by: Naohiro Aota <naohiro.aota@wdc.com> Fixes: f441460202cb ("btrfs: fix deadlock with extent-same and readpage") Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-10-05btrfs: fix NULL pointer dereference from free_reloc_roots()Naohiro Aota
commit bb166d7207432d3c7d10c45dc052f12ba3a2121d upstream. __del_reloc_root should be called before freeing up reloc_root->node. If not, calling __del_reloc_root() dereference reloc_root->node, causing the system BUG. Fixes: 6bdf131fac23 ("Btrfs: don't leak reloc root nodes on error") Signed-off-by: Naohiro Aota <naohiro.aota@wdc.com> Reviewed-by: Nikolay Borisov <nborisov@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-09-13btrfs: resume qgroup rescan on rw remountAleksa Sarai
commit 6c6b5a39c4bf3dbd8cf629c9f5450e983c19dbb9 upstream. Several distributions mount the "proper root" as ro during initrd and then remount it as rw before pivot_root(2). Thus, if a rescan had been aborted by a previous shutdown, the rescan would never be resumed. This issue would manifest itself as several btrfs ioctl(2)s causing the entire machine to hang when btrfs_qgroup_wait_for_completion was hit (due to the fs_info->qgroup_rescan_running flag being set but the rescan itself not being resumed). Notably, Docker's btrfs storage driver makes regular use of BTRFS_QUOTA_CTL_DISABLE and BTRFS_IOC_QUOTA_RESCAN_WAIT (causing this problem to be manifested on boot for some machines). Cc: Jeff Mahoney <jeffm@suse.com> Fixes: b382a324b60f ("Btrfs: fix qgroup rescan resume on mount") Signed-off-by: Aleksa Sarai <asarai@suse.de> Reviewed-by: Nikolay Borisov <nborisov@suse.com> Tested-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-09-02btrfs: remove duplicate const specifierColin Ian King
commit fb75d857a31d600cc0c37b8c7d914014f7fa3f9a upstream. duplicate const is redundant so remove it Signed-off-by: Colin Ian King <colin.king@canonical.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-08-06Btrfs: adjust outstanding_extents counter properly when dio write is splitLiu Bo
[ Upstream commit c2931667c83ded6504b3857e99cc45b21fa496fb ] Currently how btrfs dio deals with split dio write is not good enough if dio write is split into several segments due to the lack of contiguous space, a large dio write like 'dd bs=1G count=1' can end up with incorrect outstanding_extents counter and endio would complain loudly with an assertion. This fixes the problem by compensating the outstanding_extents counter in inode if a large dio write gets split. Reported-by: Anand Jain <anand.jain@oracle.com> Tested-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@verizon.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-07-05Btrfs: fix truncate down when no_holes feature is enabledLiu Bo
[ Upstream commit 91298eec05cd8d4e828cf7ee5d4a6334f70cf69a ] For such a file mapping, [0-4k][hole][8k-12k] In NO_HOLES mode, we don't have the [hole] extent any more. Commit c1aa45759e90 ("Btrfs: fix shrinking truncate when the no_holes feature is enabled") fixed disk isize not being updated in NO_HOLES mode when data is not flushed. However, even if data has been flushed, we can still have trouble in updating disk isize since we updated disk isize to 'start' of the last evicted extent. Reviewed-by: Chris Mason <clm@fb.com> Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Sasha Levin <alexander.levin@verizon.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-06-14btrfs: fix memory leak in update_space_info failure pathJeff Mahoney
commit 896533a7da929136d0432713f02a3edffece2826 upstream. If we fail to add the space_info kobject, we'll leak the memory for the percpu counter. Fixes: 6ab0a2029c (btrfs: publish allocation data in sysfs) Signed-off-by: Jeff Mahoney <jeffm@suse.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-06-14btrfs: use correct types for page indices in btrfs_page_exists_in_rangeDavid Sterba
commit cc2b702c52094b637a351d7491ac5200331d0445 upstream. Variables start_idx and end_idx are supposed to hold a page index derived from the file offsets. The int type is not the right one though, offsets larger than 1 << 44 will get silently trimmed off the high bits. (1 << 44 is 16TiB) What can go wrong, if start is below the boundary and end gets trimmed: - if there's a page after start, we'll find it (radix_tree_gang_lookup_slot) - the final check "if (page->index <= end_idx)" will unexpectedly fail The function will return false, ie. "there's no page in the range", although there is at least one. btrfs_page_exists_in_range is used to prevent races in: * in hole punching, where we make sure there are not pages in the truncated range, otherwise we'll wait for them to finish and redo truncation, but we're going to replace the pages with holes anyway so the only problem is the intermediate state * lock_extent_direct: we want to make sure there are no pages before we lock and start DIO, to prevent stale data reads For practical occurence of the bug, there are several constaints. The file must be quite large, the affected range must cross the 16TiB boundary and the internal state of the file pages and pending operations must match. Also, we must not have started any ordered data in the range, otherwise we don't even reach the buggy function check. DIO locking tries hard in several places to avoid deadlocks with buffered IO and avoids waiting for ranges. The worst consequence seems to be stale data read. CC: Liu Bo <bo.li.liu@oracle.com> Fixes: fc4adbff823f7 ("btrfs: Drop EXTENT_UPTODATE check in hole punching and direct locking") Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-06-14fs: add i_blocksize()Fabian Frederick
commit 93407472a21b82f39c955ea7787e5bc7da100642 upstream. Replace all 1 << inode->i_blkbits and (1 << inode->i_blkbits) in fs branch. This patch also fixes multiple checkpatch warnings: WARNING: Prefer 'unsigned int' to bare use of 'unsigned' Thanks to Andrew Morton for suggesting more appropriate function instead of macro. [geliangtang@gmail.com: truncate: use i_blocksize()] Link: http://lkml.kernel.org/r/9c8b2cd83c8f5653805d43debde9fa8817e02fc4.1484895804.git.geliangtang@gmail.com Link: http://lkml.kernel.org/r/1481319905-10126-1-git-send-email-fabf@skynet.be Signed-off-by: Fabian Frederick <fabf@skynet.be> Signed-off-by: Geliang Tang <geliangtang@gmail.com> Cc: Alexander Viro <viro@zeniv.linux.org.uk> Cc: Ross Zwisler <ross.zwisler@linux.intel.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-19btrfs: fix error handling when run_delayed_extent_op failsJeff Mahoney
commit aa7c8da35d1905d80e840d075f07d26ec90144b5 upstream. In __btrfs_run_delayed_refs, the error path when run_delayed_extent_op fails sets locked_ref->processing = 0 but doesn't re-increment delayed_refs->num_heads_ready. As a result, we end up triggering the WARN_ON in btrfs_select_ref_head. Fixes: d7df2c796d7 (Btrfs: attach delayed ref updates to delayed ref heads) Reported-by: Jon Nelson <jnelson-suse@jamponi.net> Signed-off-by: Jeff Mahoney <jeffm@suse.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-19btrfs: fix locking when we put back a delayed ref that's too newJeff Mahoney
commit d0280996437081dd12ed1e982ac8aeaa62835ec4 upstream. In __btrfs_run_delayed_refs, when we put back a delayed ref that's too new, we have already dropped the lock on locked_ref when we set ->processing = 0. This patch keeps the lock to cover that assignment. Fixes: d7df2c796d7 (Btrfs: attach delayed ref updates to delayed ref heads) Signed-off-by: Jeff Mahoney <jeffm@suse.com> Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06btrfs: make file clone aware of fatal signalsWang Xiaoguang
commit 69ae5e4459e43e56f03d0987e865fbac2b05af2a upstream. Indeed this just make the behavior similar to xfs when process has fatal signals pending, and it'll make fstests/generic/298 happy. Signed-off-by: Wang Xiaoguang <wangxg.fnst@cn.fujitsu.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: don't BUG() during drop snapshotJosef Bacik
commit 4867268c57ff709a7b6b86ae6f6537d846d1443a upstream. Really there's lots of things that can go wrong here, kill all the BUG_ON()'s and replace the logic ones with ASSERT()'s and return EIO instead. Signed-off-by: Josef Bacik <jbacik@fb.com> [ switched to btrfs_err, errors go to common label ] Reviewed-by: Liu Bo <bo.li.liu@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: fix memory leak in do_walk_downLiu Bo
commit a958eab0ed7fdc1b977bc25d3af6efedaa945488 upstream. The extent buffer 'next' needs to be free'd conditionally. Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: don't leak reloc root nodes on errorJosef Bacik
commit 6bdf131fac2336adb1a628f992ba32384f653a55 upstream. We don't track the reloc roots in any sort of normal way, so the only way the root/commit_root nodes get free'd is if the relocation finishes successfully and the reloc root is deleted. Fix this by free'ing them in free_reloc_roots. Thanks, Signed-off-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: return gracefully from balance if fs tree is corruptedLiu Bo
commit 3561b9db70928f207be4570b48fc19898eeaef54 upstream. When relocating tree blocks, we firstly get block information from back references in the extent tree, we then search fs tree to try to find all parents of a block. However, if fs tree is corrupted, eg. if there're some missing items, we could come across these WARN_ONs and BUG_ONs. This makes us print some error messages and return gracefully from balance. Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: Josef Bacik <jbacik@fb.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: bail out if block group has different mixed flagLiu Bo
commit 49303381f19ab16a371a061b67e783d3f570d56e upstream. Currently we allow inconsistence about mixed flag (BTRFS_BLOCK_GROUP_METADATA | BTRFS_BLOCK_GROUP_DATA). We'd get ENOSPC if block group has mixed flag and btrfs doesn't. If that happens, we have one space_info with mixed flag and another space_info only with BTRFS_BLOCK_GROUP_METADATA, and global_block_rsv.space_info points to the latter one, but all bytes from block_group contributes to the mixed space_info, thus all the allocation will fail with ENOSPC. This adds a check for the above case. Reported-by: Vegard Nossum <vegard.nossum@oracle.com> Signed-off-by: Liu Bo <bo.li.liu@oracle.com> [ updated message ] Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: fix memory leak in reading btree blocksLiu Bo
commit 2571e739677f1e4c0c63f5ed49adcc0857923625 upstream. So we can read a btree block via readahead or intentional read, and we can end up with a memory leak when something happens as follows, 1) readahead starts to read block A but does not wait for read completion, 2) btree_readpage_end_io_hook finds that block A is corrupted, and it needs to clear all block A's pages' uptodate bit. 3) meanwhile an intentional read kicks in and checks block A's pages' uptodate to decide which page needs to be read. 4) when some pages have the uptodate bit during 3)'s check so 3) doesn't count them for eb->io_pages, but they are later cleared by 2) so we has to readpage on the page, we get the wrong eb->io_pages which results in a memory leak of this block. This fixes the problem by firstly getting all pages's locking and then checking pages' uptodate bit. t1(readahead) t2(readahead endio) t3(the following read) read_extent_buffer_pages end_bio_extent_readpage for pg in eb: for page 0,1,2 in eb: if pg is uptodate: btree_readpage_end_io_hook(pg) num_reads++ if uptodate: eb->io_pages = num_reads SetPageUptodate(pg) _______________ for pg in eb: for page 3 in eb: read_extent_buffer_pages if pg is NOT uptodate: btree_readpage_end_io_hook(pg) for pg in eb: __extent_read_full_page(pg) sanity check reports something wrong if pg is uptodate: clear_extent_buffer_uptodate(eb) num_reads++ for pg in eb: eb->io_pages = num_reads ClearPageUptodate(page) _______________ for pg in eb: if pg is NOT uptodate: __extent_read_full_page(pg) So t3's eb->io_pages is not consistent with the number of pages it's reading, and during endio(), atomic_dec_and_test(&eb->io_pages) will get a negative number so that we're not able to free the eb. Signed-off-by: Liu Bo <bo.li.liu@oracle.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-01-06Btrfs: fix qgroup rescan worker initializationFilipe Manana
commit 8d9eddad19467b008e0c881bc3133d7da94b7ec1 upstream. We were setting the qgroup_rescan_running flag to true only after the rescan worker started (which is a task run by a queue). So if a user space task starts a rescan and immediately after asks to wait for the rescan worker to finish, this second call might happen before the rescan worker task starts running, in which case the rescan wait ioctl returns immediatley, not waiting for the rescan worker to finish. This was making the fstest btrfs/022 fail very often. Fixes: d2c609b834d6 (btrfs: properly track when rescan worker is running) Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>