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author | Carlos Maiolino <cem@kernel.org> | 2025-03-04 13:25:46 +0300 |
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committer | Carlos Maiolino <cem@kernel.org> | 2025-03-04 13:25:46 +0300 |
commit | 4c6283ec9284bb72906dba83bc7a809747e6331e (patch) | |
tree | 6a2ed104fc86a90bb787ff0dbee020461e59ec14 /fs/xfs/xfs_iops.c | |
parent | 0a1fd78080c8c9a5582e82100bd91b87ae5ac57c (diff) | |
parent | 9c477912b2f58da71751f244aceecf5f8cc549ed (diff) | |
download | linux-4c6283ec9284bb72906dba83bc7a809747e6331e.tar.xz |
Merge tag 'xfs-zoned-allocator-2025-03-03' of git://git.infradead.org/users/hch/xfs into xfs-6.15-zoned_devices
xfs: add support for zoned devices
Add support for the new zoned space allocator and thus for zoned devices:
https://zonedstorage.io/docs/introduction/zoned-storage
to XFS. This has been developed for and tested on both SMR hard drives,
which are the oldest and most common class of zoned devices:
https://zonedstorage.io/docs/introduction/smr
and ZNS SSDs:
https://zonedstorage.io/docs/introduction/zns
It has not been tested with zoned UFS devices, as their current capacity
points and performance characteristics aren't too interesting for XFS
use cases (but never say never).
Sequential write only zones are only supported for data using a new
allocator for the RT device, which maps each zone to a rtgroup which
is written sequentially. All metadata and (for now) the log require
using randomly writable space. This means a realtime device is required
to support zoned storage, but for the common case of SMR hard drives
that contain random writable zones and sequential write required zones
on the same block device, the concept of an internal RT device is added
which means using XFS on a SMR HDD is as simple as:
$ mkfs.xfs /dev/sda
$ mount /dev/sda /mnt
When using NVMe ZNS SSDs that do not support conventional zones, the
traditional multi-device RT configuration is required. E.g. for an
SSD with a conventional namespace 1 and a zoned namespace 2:
$ mkfs.xfs /dev/nvme0n1 -o rtdev=/dev/nvme0n2
$ mount -o rtdev=/dev/nvme0n2 /dev/nvme0n1 /mnt
The zoned allocator can also be used on conventional block devices, or
on conventional zones (e.g. when using an SMR HDD as the external RT
device). For example using zoned XFS on normal SSDs shows very nice
performance advantages and write amplification reduction for intelligent
workloads like RocksDB.
Some work is still in progress or planned, but should not affect the
integration with the rest of XFS or the on-disk format:
- support for quotas
- support for reflinks
Note that the I/O path already supports reflink, but garbage collection
isn't refcount aware yet and would unshare shared blocks, thus rendering
the feature useless.
Diffstat (limited to 'fs/xfs/xfs_iops.c')
-rw-r--r-- | fs/xfs/xfs_iops.c | 31 |
1 files changed, 29 insertions, 2 deletions
diff --git a/fs/xfs/xfs_iops.c b/fs/xfs/xfs_iops.c index 40289fe6f5b2..444193f543ef 100644 --- a/fs/xfs/xfs_iops.c +++ b/fs/xfs/xfs_iops.c @@ -29,6 +29,7 @@ #include "xfs_xattr.h" #include "xfs_file.h" #include "xfs_bmap.h" +#include "xfs_zone_alloc.h" #include <linux/posix_acl.h> #include <linux/security.h> @@ -854,6 +855,7 @@ xfs_setattr_size( uint lock_flags = 0; uint resblks = 0; bool did_zeroing = false; + struct xfs_zone_alloc_ctx ac = { }; xfs_assert_ilocked(ip, XFS_IOLOCK_EXCL | XFS_MMAPLOCK_EXCL); ASSERT(S_ISREG(inode->i_mode)); @@ -890,6 +892,28 @@ xfs_setattr_size( inode_dio_wait(inode); /* + * Normally xfs_zoned_space_reserve is supposed to be called outside the + * IOLOCK. For truncate we can't do that since ->setattr is called with + * it already held by the VFS. So for now chicken out and try to + * allocate space under it. + * + * To avoid deadlocks this means we can't block waiting for space, which + * can lead to spurious -ENOSPC if there are no directly available + * blocks. We mitigate this a bit by allowing zeroing to dip into the + * reserved pool, but eventually the VFS calling convention needs to + * change. + */ + if (xfs_is_zoned_inode(ip)) { + error = xfs_zoned_space_reserve(ip, 1, + XFS_ZR_NOWAIT | XFS_ZR_RESERVED, &ac); + if (error) { + if (error == -EAGAIN) + return -ENOSPC; + return error; + } + } + + /* * File data changes must be complete before we start the transaction to * modify the inode. This needs to be done before joining the inode to * the transaction because the inode cannot be unlocked once it is a @@ -902,11 +926,14 @@ xfs_setattr_size( if (newsize > oldsize) { trace_xfs_zero_eof(ip, oldsize, newsize - oldsize); error = xfs_zero_range(ip, oldsize, newsize - oldsize, - &did_zeroing); + &ac, &did_zeroing); } else { - error = xfs_truncate_page(ip, newsize, &did_zeroing); + error = xfs_truncate_page(ip, newsize, &ac, &did_zeroing); } + if (xfs_is_zoned_inode(ip)) + xfs_zoned_space_unreserve(ip, &ac); + if (error) return error; |