1 // SPDX-License-Identifier: GPL-2.0
3 * Copyright (c) 2000-2006 Silicon Graphics, Inc.
8 #include "xfs_shared.h"
9 #include "xfs_format.h"
10 #include "xfs_log_format.h"
11 #include "xfs_trans_resv.h"
13 #include "xfs_mount.h"
14 #include "xfs_inode.h"
15 #include "xfs_btree.h"
17 #include "xfs_alloc.h"
18 #include "xfs_fsops.h"
19 #include "xfs_trans.h"
20 #include "xfs_buf_item.h"
22 #include "xfs_log_priv.h"
24 #include "xfs_extfree_item.h"
25 #include "xfs_mru_cache.h"
26 #include "xfs_inode_item.h"
27 #include "xfs_icache.h"
28 #include "xfs_trace.h"
29 #include "xfs_icreate_item.h"
30 #include "xfs_filestream.h"
31 #include "xfs_quota.h"
32 #include "xfs_sysfs.h"
33 #include "xfs_ondisk.h"
34 #include "xfs_rmap_item.h"
35 #include "xfs_refcount_item.h"
36 #include "xfs_bmap_item.h"
37 #include "xfs_reflink.h"
38 #include "xfs_pwork.h"
40 #include "xfs_defer.h"
41 #include "xfs_attr_item.h"
42 #include "xfs_xattr.h"
43 #include "xfs_iunlink_item.h"
44 #include "xfs_dahash_test.h"
45 #include "xfs_rtbitmap.h"
46 #include "xfs_exchmaps_item.h"
47 #include "xfs_parent.h"
48 #include "xfs_rtalloc.h"
49 #include "scrub/stats.h"
50 #include "scrub/rcbag_btree.h"
52 #include <linux/magic.h>
53 #include <linux/fs_context.h>
54 #include <linux/fs_parser.h>
56 static const struct super_operations xfs_super_operations
;
58 static struct dentry
*xfs_debugfs
; /* top-level xfs debugfs dir */
59 static struct kset
*xfs_kset
; /* top-level xfs sysfs dir */
61 static struct xfs_kobj xfs_dbg_kobj
; /* global debug sysfs attrs */
70 /* Were quota mount options provided? Must use the upper 16 bits of qflags. */
71 #define XFS_QFLAGS_MNTOPTS (1U << 31)
74 xfs_mount_set_dax_mode(
76 enum xfs_dax_mode mode
)
80 mp
->m_features
&= ~(XFS_FEAT_DAX_ALWAYS
| XFS_FEAT_DAX_NEVER
);
83 mp
->m_features
|= XFS_FEAT_DAX_ALWAYS
;
84 mp
->m_features
&= ~XFS_FEAT_DAX_NEVER
;
87 mp
->m_features
|= XFS_FEAT_DAX_NEVER
;
88 mp
->m_features
&= ~XFS_FEAT_DAX_ALWAYS
;
93 static const struct constant_table dax_param_enums
[] = {
94 {"inode", XFS_DAX_INODE
},
95 {"always", XFS_DAX_ALWAYS
},
96 {"never", XFS_DAX_NEVER
},
101 * Table driven mount option parser.
104 Opt_logbufs
, Opt_logbsize
, Opt_logdev
, Opt_rtdev
,
105 Opt_wsync
, Opt_noalign
, Opt_swalloc
, Opt_sunit
, Opt_swidth
, Opt_nouuid
,
106 Opt_grpid
, Opt_nogrpid
, Opt_bsdgroups
, Opt_sysvgroups
,
107 Opt_allocsize
, Opt_norecovery
, Opt_inode64
, Opt_inode32
, Opt_ikeep
,
108 Opt_noikeep
, Opt_largeio
, Opt_nolargeio
, Opt_attr2
, Opt_noattr2
,
109 Opt_filestreams
, Opt_quota
, Opt_noquota
, Opt_usrquota
, Opt_grpquota
,
110 Opt_prjquota
, Opt_uquota
, Opt_gquota
, Opt_pquota
,
111 Opt_uqnoenforce
, Opt_gqnoenforce
, Opt_pqnoenforce
, Opt_qnoenforce
,
112 Opt_discard
, Opt_nodiscard
, Opt_dax
, Opt_dax_enum
,
115 static const struct fs_parameter_spec xfs_fs_parameters
[] = {
116 fsparam_u32("logbufs", Opt_logbufs
),
117 fsparam_string("logbsize", Opt_logbsize
),
118 fsparam_string("logdev", Opt_logdev
),
119 fsparam_string("rtdev", Opt_rtdev
),
120 fsparam_flag("wsync", Opt_wsync
),
121 fsparam_flag("noalign", Opt_noalign
),
122 fsparam_flag("swalloc", Opt_swalloc
),
123 fsparam_u32("sunit", Opt_sunit
),
124 fsparam_u32("swidth", Opt_swidth
),
125 fsparam_flag("nouuid", Opt_nouuid
),
126 fsparam_flag("grpid", Opt_grpid
),
127 fsparam_flag("nogrpid", Opt_nogrpid
),
128 fsparam_flag("bsdgroups", Opt_bsdgroups
),
129 fsparam_flag("sysvgroups", Opt_sysvgroups
),
130 fsparam_string("allocsize", Opt_allocsize
),
131 fsparam_flag("norecovery", Opt_norecovery
),
132 fsparam_flag("inode64", Opt_inode64
),
133 fsparam_flag("inode32", Opt_inode32
),
134 fsparam_flag("ikeep", Opt_ikeep
),
135 fsparam_flag("noikeep", Opt_noikeep
),
136 fsparam_flag("largeio", Opt_largeio
),
137 fsparam_flag("nolargeio", Opt_nolargeio
),
138 fsparam_flag("attr2", Opt_attr2
),
139 fsparam_flag("noattr2", Opt_noattr2
),
140 fsparam_flag("filestreams", Opt_filestreams
),
141 fsparam_flag("quota", Opt_quota
),
142 fsparam_flag("noquota", Opt_noquota
),
143 fsparam_flag("usrquota", Opt_usrquota
),
144 fsparam_flag("grpquota", Opt_grpquota
),
145 fsparam_flag("prjquota", Opt_prjquota
),
146 fsparam_flag("uquota", Opt_uquota
),
147 fsparam_flag("gquota", Opt_gquota
),
148 fsparam_flag("pquota", Opt_pquota
),
149 fsparam_flag("uqnoenforce", Opt_uqnoenforce
),
150 fsparam_flag("gqnoenforce", Opt_gqnoenforce
),
151 fsparam_flag("pqnoenforce", Opt_pqnoenforce
),
152 fsparam_flag("qnoenforce", Opt_qnoenforce
),
153 fsparam_flag("discard", Opt_discard
),
154 fsparam_flag("nodiscard", Opt_nodiscard
),
155 fsparam_flag("dax", Opt_dax
),
156 fsparam_enum("dax", Opt_dax_enum
, dax_param_enums
),
160 struct proc_xfs_info
{
170 static struct proc_xfs_info xfs_info_set
[] = {
171 /* the few simple ones we can get from the mount struct */
172 { XFS_FEAT_IKEEP
, ",ikeep" },
173 { XFS_FEAT_WSYNC
, ",wsync" },
174 { XFS_FEAT_NOALIGN
, ",noalign" },
175 { XFS_FEAT_SWALLOC
, ",swalloc" },
176 { XFS_FEAT_NOUUID
, ",nouuid" },
177 { XFS_FEAT_NORECOVERY
, ",norecovery" },
178 { XFS_FEAT_ATTR2
, ",attr2" },
179 { XFS_FEAT_FILESTREAMS
, ",filestreams" },
180 { XFS_FEAT_GRPID
, ",grpid" },
181 { XFS_FEAT_DISCARD
, ",discard" },
182 { XFS_FEAT_LARGE_IOSIZE
, ",largeio" },
183 { XFS_FEAT_DAX_ALWAYS
, ",dax=always" },
184 { XFS_FEAT_DAX_NEVER
, ",dax=never" },
187 struct xfs_mount
*mp
= XFS_M(root
->d_sb
);
188 struct proc_xfs_info
*xfs_infop
;
190 for (xfs_infop
= xfs_info_set
; xfs_infop
->flag
; xfs_infop
++) {
191 if (mp
->m_features
& xfs_infop
->flag
)
192 seq_puts(m
, xfs_infop
->str
);
195 seq_printf(m
, ",inode%d", xfs_has_small_inums(mp
) ? 32 : 64);
197 if (xfs_has_allocsize(mp
))
198 seq_printf(m
, ",allocsize=%dk",
199 (1 << mp
->m_allocsize_log
) >> 10);
201 if (mp
->m_logbufs
> 0)
202 seq_printf(m
, ",logbufs=%d", mp
->m_logbufs
);
203 if (mp
->m_logbsize
> 0)
204 seq_printf(m
, ",logbsize=%dk", mp
->m_logbsize
>> 10);
207 seq_show_option(m
, "logdev", mp
->m_logname
);
209 seq_show_option(m
, "rtdev", mp
->m_rtname
);
211 if (mp
->m_dalign
> 0)
212 seq_printf(m
, ",sunit=%d",
213 (int)XFS_FSB_TO_BB(mp
, mp
->m_dalign
));
214 if (mp
->m_swidth
> 0)
215 seq_printf(m
, ",swidth=%d",
216 (int)XFS_FSB_TO_BB(mp
, mp
->m_swidth
));
218 if (mp
->m_qflags
& XFS_UQUOTA_ENFD
)
219 seq_puts(m
, ",usrquota");
220 else if (mp
->m_qflags
& XFS_UQUOTA_ACCT
)
221 seq_puts(m
, ",uqnoenforce");
223 if (mp
->m_qflags
& XFS_PQUOTA_ENFD
)
224 seq_puts(m
, ",prjquota");
225 else if (mp
->m_qflags
& XFS_PQUOTA_ACCT
)
226 seq_puts(m
, ",pqnoenforce");
228 if (mp
->m_qflags
& XFS_GQUOTA_ENFD
)
229 seq_puts(m
, ",grpquota");
230 else if (mp
->m_qflags
& XFS_GQUOTA_ACCT
)
231 seq_puts(m
, ",gqnoenforce");
233 if (!(mp
->m_qflags
& XFS_ALL_QUOTA_ACCT
))
234 seq_puts(m
, ",noquota");
240 xfs_set_inode_alloc_perag(
241 struct xfs_perag
*pag
,
243 xfs_agnumber_t max_metadata
)
245 if (!xfs_is_inode32(pag_mount(pag
))) {
246 set_bit(XFS_AGSTATE_ALLOWS_INODES
, &pag
->pag_opstate
);
247 clear_bit(XFS_AGSTATE_PREFERS_METADATA
, &pag
->pag_opstate
);
251 if (ino
> XFS_MAXINUMBER_32
) {
252 clear_bit(XFS_AGSTATE_ALLOWS_INODES
, &pag
->pag_opstate
);
253 clear_bit(XFS_AGSTATE_PREFERS_METADATA
, &pag
->pag_opstate
);
257 set_bit(XFS_AGSTATE_ALLOWS_INODES
, &pag
->pag_opstate
);
258 if (pag_agno(pag
) < max_metadata
)
259 set_bit(XFS_AGSTATE_PREFERS_METADATA
, &pag
->pag_opstate
);
261 clear_bit(XFS_AGSTATE_PREFERS_METADATA
, &pag
->pag_opstate
);
266 * Set parameters for inode allocation heuristics, taking into account
267 * filesystem size and inode32/inode64 mount options; i.e. specifically
268 * whether or not XFS_FEAT_SMALL_INUMS is set.
270 * Inode allocation patterns are altered only if inode32 is requested
271 * (XFS_FEAT_SMALL_INUMS), and the filesystem is sufficiently large.
272 * If altered, XFS_OPSTATE_INODE32 is set as well.
274 * An agcount independent of that in the mount structure is provided
275 * because in the growfs case, mp->m_sb.sb_agcount is not yet updated
276 * to the potentially higher ag count.
278 * Returns the maximum AG index which may contain inodes.
282 struct xfs_mount
*mp
,
283 xfs_agnumber_t agcount
)
285 xfs_agnumber_t index
;
286 xfs_agnumber_t maxagi
= 0;
287 xfs_sb_t
*sbp
= &mp
->m_sb
;
288 xfs_agnumber_t max_metadata
;
293 * Calculate how much should be reserved for inodes to meet
294 * the max inode percentage. Used only for inode32.
296 if (M_IGEO(mp
)->maxicount
) {
299 icount
= sbp
->sb_dblocks
* sbp
->sb_imax_pct
;
301 icount
+= sbp
->sb_agblocks
- 1;
302 do_div(icount
, sbp
->sb_agblocks
);
303 max_metadata
= icount
;
305 max_metadata
= agcount
;
308 /* Get the last possible inode in the filesystem */
309 agino
= XFS_AGB_TO_AGINO(mp
, sbp
->sb_agblocks
- 1);
310 ino
= XFS_AGINO_TO_INO(mp
, agcount
- 1, agino
);
313 * If user asked for no more than 32-bit inodes, and the fs is
314 * sufficiently large, set XFS_OPSTATE_INODE32 if we must alter
315 * the allocator to accommodate the request.
317 if (xfs_has_small_inums(mp
) && ino
> XFS_MAXINUMBER_32
)
320 xfs_clear_inode32(mp
);
322 for (index
= 0; index
< agcount
; index
++) {
323 struct xfs_perag
*pag
;
325 ino
= XFS_AGINO_TO_INO(mp
, index
, agino
);
327 pag
= xfs_perag_get(mp
, index
);
328 if (xfs_set_inode_alloc_perag(pag
, ino
, max_metadata
))
333 return xfs_is_inode32(mp
) ? maxagi
: agcount
;
337 xfs_setup_dax_always(
338 struct xfs_mount
*mp
)
340 if (!mp
->m_ddev_targp
->bt_daxdev
&&
341 (!mp
->m_rtdev_targp
|| !mp
->m_rtdev_targp
->bt_daxdev
)) {
343 "DAX unsupported by block device. Turning off DAX.");
347 if (mp
->m_super
->s_blocksize
!= PAGE_SIZE
) {
349 "DAX not supported for blocksize. Turning off DAX.");
353 if (xfs_has_reflink(mp
) &&
354 bdev_is_partition(mp
->m_ddev_targp
->bt_bdev
)) {
356 "DAX and reflink cannot work with multi-partitions!");
363 xfs_mount_set_dax_mode(mp
, XFS_DAX_NEVER
);
371 struct file
**bdev_filep
)
375 *bdev_filep
= bdev_file_open_by_path(name
,
376 BLK_OPEN_READ
| BLK_OPEN_WRITE
| BLK_OPEN_RESTRICT_WRITES
,
377 mp
->m_super
, &fs_holder_ops
);
378 if (IS_ERR(*bdev_filep
)) {
379 error
= PTR_ERR(*bdev_filep
);
381 xfs_warn(mp
, "Invalid device [%s], error=%d", name
, error
);
388 xfs_shutdown_devices(
389 struct xfs_mount
*mp
)
392 * Udev is triggered whenever anyone closes a block device or unmounts
393 * a file systemm on a block device.
394 * The default udev rules invoke blkid to read the fs super and create
395 * symlinks to the bdev under /dev/disk. For this, it uses buffered
396 * reads through the page cache.
398 * xfs_db also uses buffered reads to examine metadata. There is no
399 * coordination between xfs_db and udev, which means that they can run
400 * concurrently. Note there is no coordination between the kernel and
403 * On a system with 64k pages, the page cache can cache the superblock
404 * and the root inode (and hence the root directory) with the same 64k
405 * page. If udev spawns blkid after the mkfs and the system is busy
406 * enough that it is still running when xfs_db starts up, they'll both
407 * read from the same page in the pagecache.
409 * The unmount writes updated inode metadata to disk directly. The XFS
410 * buffer cache does not use the bdev pagecache, so it needs to
411 * invalidate that pagecache on unmount. If the above scenario occurs,
412 * the pagecache no longer reflects what's on disk, xfs_db reads the
413 * stale metadata, and fails to find /a. Most of the time this succeeds
414 * because closing a bdev invalidates the page cache, but when processes
415 * race, everyone loses.
417 if (mp
->m_logdev_targp
&& mp
->m_logdev_targp
!= mp
->m_ddev_targp
) {
418 blkdev_issue_flush(mp
->m_logdev_targp
->bt_bdev
);
419 invalidate_bdev(mp
->m_logdev_targp
->bt_bdev
);
421 if (mp
->m_rtdev_targp
) {
422 blkdev_issue_flush(mp
->m_rtdev_targp
->bt_bdev
);
423 invalidate_bdev(mp
->m_rtdev_targp
->bt_bdev
);
425 blkdev_issue_flush(mp
->m_ddev_targp
->bt_bdev
);
426 invalidate_bdev(mp
->m_ddev_targp
->bt_bdev
);
430 * The file system configurations are:
431 * (1) device (partition) with data and internal log
432 * (2) logical volume with data and log subvolumes.
433 * (3) logical volume with data, log, and realtime subvolumes.
435 * We only have to handle opening the log and realtime volumes here if
436 * they are present. The data subvolume has already been opened by
437 * get_sb_bdev() and is stored in sb->s_bdev.
441 struct xfs_mount
*mp
)
443 struct super_block
*sb
= mp
->m_super
;
444 struct block_device
*ddev
= sb
->s_bdev
;
445 struct file
*logdev_file
= NULL
, *rtdev_file
= NULL
;
449 * Open real time and log devices - order is important.
452 error
= xfs_blkdev_get(mp
, mp
->m_logname
, &logdev_file
);
458 error
= xfs_blkdev_get(mp
, mp
->m_rtname
, &rtdev_file
);
460 goto out_close_logdev
;
462 if (file_bdev(rtdev_file
) == ddev
||
464 file_bdev(rtdev_file
) == file_bdev(logdev_file
))) {
466 "Cannot mount filesystem with identical rtdev and ddev/logdev.");
468 goto out_close_rtdev
;
473 * Setup xfs_mount buffer target pointers
476 mp
->m_ddev_targp
= xfs_alloc_buftarg(mp
, sb
->s_bdev_file
);
477 if (!mp
->m_ddev_targp
)
478 goto out_close_rtdev
;
481 mp
->m_rtdev_targp
= xfs_alloc_buftarg(mp
, rtdev_file
);
482 if (!mp
->m_rtdev_targp
)
483 goto out_free_ddev_targ
;
486 if (logdev_file
&& file_bdev(logdev_file
) != ddev
) {
487 mp
->m_logdev_targp
= xfs_alloc_buftarg(mp
, logdev_file
);
488 if (!mp
->m_logdev_targp
)
489 goto out_free_rtdev_targ
;
491 mp
->m_logdev_targp
= mp
->m_ddev_targp
;
492 /* Handle won't be used, drop it */
494 bdev_fput(logdev_file
);
500 if (mp
->m_rtdev_targp
)
501 xfs_free_buftarg(mp
->m_rtdev_targp
);
503 xfs_free_buftarg(mp
->m_ddev_targp
);
506 bdev_fput(rtdev_file
);
509 bdev_fput(logdev_file
);
514 * Setup xfs_mount buffer target pointers based on superblock
518 struct xfs_mount
*mp
)
522 error
= xfs_setsize_buftarg(mp
->m_ddev_targp
, mp
->m_sb
.sb_sectsize
);
526 if (mp
->m_logdev_targp
&& mp
->m_logdev_targp
!= mp
->m_ddev_targp
) {
527 unsigned int log_sector_size
= BBSIZE
;
529 if (xfs_has_sector(mp
))
530 log_sector_size
= mp
->m_sb
.sb_logsectsize
;
531 error
= xfs_setsize_buftarg(mp
->m_logdev_targp
,
536 if (mp
->m_rtdev_targp
) {
537 error
= xfs_setsize_buftarg(mp
->m_rtdev_targp
,
538 mp
->m_sb
.sb_sectsize
);
547 xfs_init_mount_workqueues(
548 struct xfs_mount
*mp
)
550 mp
->m_buf_workqueue
= alloc_workqueue("xfs-buf/%s",
551 XFS_WQFLAGS(WQ_FREEZABLE
| WQ_MEM_RECLAIM
),
552 1, mp
->m_super
->s_id
);
553 if (!mp
->m_buf_workqueue
)
556 mp
->m_unwritten_workqueue
= alloc_workqueue("xfs-conv/%s",
557 XFS_WQFLAGS(WQ_FREEZABLE
| WQ_MEM_RECLAIM
),
558 0, mp
->m_super
->s_id
);
559 if (!mp
->m_unwritten_workqueue
)
560 goto out_destroy_buf
;
562 mp
->m_reclaim_workqueue
= alloc_workqueue("xfs-reclaim/%s",
563 XFS_WQFLAGS(WQ_FREEZABLE
| WQ_MEM_RECLAIM
),
564 0, mp
->m_super
->s_id
);
565 if (!mp
->m_reclaim_workqueue
)
566 goto out_destroy_unwritten
;
568 mp
->m_blockgc_wq
= alloc_workqueue("xfs-blockgc/%s",
569 XFS_WQFLAGS(WQ_UNBOUND
| WQ_FREEZABLE
| WQ_MEM_RECLAIM
),
570 0, mp
->m_super
->s_id
);
571 if (!mp
->m_blockgc_wq
)
572 goto out_destroy_reclaim
;
574 mp
->m_inodegc_wq
= alloc_workqueue("xfs-inodegc/%s",
575 XFS_WQFLAGS(WQ_FREEZABLE
| WQ_MEM_RECLAIM
),
576 1, mp
->m_super
->s_id
);
577 if (!mp
->m_inodegc_wq
)
578 goto out_destroy_blockgc
;
580 mp
->m_sync_workqueue
= alloc_workqueue("xfs-sync/%s",
581 XFS_WQFLAGS(WQ_FREEZABLE
), 0, mp
->m_super
->s_id
);
582 if (!mp
->m_sync_workqueue
)
583 goto out_destroy_inodegc
;
588 destroy_workqueue(mp
->m_inodegc_wq
);
590 destroy_workqueue(mp
->m_blockgc_wq
);
592 destroy_workqueue(mp
->m_reclaim_workqueue
);
593 out_destroy_unwritten
:
594 destroy_workqueue(mp
->m_unwritten_workqueue
);
596 destroy_workqueue(mp
->m_buf_workqueue
);
602 xfs_destroy_mount_workqueues(
603 struct xfs_mount
*mp
)
605 destroy_workqueue(mp
->m_sync_workqueue
);
606 destroy_workqueue(mp
->m_blockgc_wq
);
607 destroy_workqueue(mp
->m_inodegc_wq
);
608 destroy_workqueue(mp
->m_reclaim_workqueue
);
609 destroy_workqueue(mp
->m_unwritten_workqueue
);
610 destroy_workqueue(mp
->m_buf_workqueue
);
614 xfs_flush_inodes_worker(
615 struct work_struct
*work
)
617 struct xfs_mount
*mp
= container_of(work
, struct xfs_mount
,
618 m_flush_inodes_work
);
619 struct super_block
*sb
= mp
->m_super
;
621 if (down_read_trylock(&sb
->s_umount
)) {
623 up_read(&sb
->s_umount
);
628 * Flush all dirty data to disk. Must not be called while holding an XFS_ILOCK
629 * or a page lock. We use sync_inodes_sb() here to ensure we block while waiting
630 * for IO to complete so that we effectively throttle multiple callers to the
631 * rate at which IO is completing.
635 struct xfs_mount
*mp
)
638 * If flush_work() returns true then that means we waited for a flush
639 * which was already in progress. Don't bother running another scan.
641 if (flush_work(&mp
->m_flush_inodes_work
))
644 queue_work(mp
->m_sync_workqueue
, &mp
->m_flush_inodes_work
);
645 flush_work(&mp
->m_flush_inodes_work
);
648 /* Catch misguided souls that try to use this interface on XFS */
649 STATIC
struct inode
*
651 struct super_block
*sb
)
658 * Now that the generic code is guaranteed not to be accessing
659 * the linux inode, we can inactivate and reclaim the inode.
662 xfs_fs_destroy_inode(
665 struct xfs_inode
*ip
= XFS_I(inode
);
667 trace_xfs_destroy_inode(ip
);
669 ASSERT(!rwsem_is_locked(&inode
->i_rwsem
));
670 XFS_STATS_INC(ip
->i_mount
, vn_rele
);
671 XFS_STATS_INC(ip
->i_mount
, vn_remove
);
672 xfs_inode_mark_reclaimable(ip
);
680 struct xfs_inode
*ip
= XFS_I(inode
);
681 struct xfs_mount
*mp
= ip
->i_mount
;
682 struct xfs_trans
*tp
;
684 if (!(inode
->i_sb
->s_flags
& SB_LAZYTIME
))
688 * Only do the timestamp update if the inode is dirty (I_DIRTY_SYNC)
689 * and has dirty timestamp (I_DIRTY_TIME). I_DIRTY_TIME can be passed
690 * in flags possibly together with I_DIRTY_SYNC.
692 if ((flags
& ~I_DIRTY_TIME
) != I_DIRTY_SYNC
|| !(flags
& I_DIRTY_TIME
))
695 if (xfs_trans_alloc(mp
, &M_RES(mp
)->tr_fsyncts
, 0, 0, 0, &tp
))
697 xfs_ilock(ip
, XFS_ILOCK_EXCL
);
698 xfs_trans_ijoin(tp
, ip
, XFS_ILOCK_EXCL
);
699 xfs_trans_log_inode(tp
, ip
, XFS_ILOG_TIMESTAMP
);
700 xfs_trans_commit(tp
);
704 * Slab object creation initialisation for the XFS inode.
705 * This covers only the idempotent fields in the XFS inode;
706 * all other fields need to be initialised on allocation
707 * from the slab. This avoids the need to repeatedly initialise
708 * fields in the xfs inode that left in the initialise state
709 * when freeing the inode.
712 xfs_fs_inode_init_once(
715 struct xfs_inode
*ip
= inode
;
717 memset(ip
, 0, sizeof(struct xfs_inode
));
720 inode_init_once(VFS_I(ip
));
723 atomic_set(&ip
->i_pincount
, 0);
724 spin_lock_init(&ip
->i_flags_lock
);
725 init_rwsem(&ip
->i_lock
);
729 * We do an unlocked check for XFS_IDONTCACHE here because we are already
730 * serialised against cache hits here via the inode->i_lock and igrab() in
731 * xfs_iget_cache_hit(). Hence a lookup that might clear this flag will not be
732 * racing with us, and it avoids needing to grab a spinlock here for every inode
733 * we drop the final reference on.
739 struct xfs_inode
*ip
= XFS_I(inode
);
742 * If this unlinked inode is in the middle of recovery, don't
743 * drop the inode just yet; log recovery will take care of
744 * that. See the comment for this inode flag.
746 if (ip
->i_flags
& XFS_IRECOVERY
) {
747 ASSERT(xlog_recovery_needed(ip
->i_mount
->m_log
));
751 return generic_drop_inode(inode
);
756 struct xfs_mount
*mp
)
758 if (mp
->m_logdev_targp
&& mp
->m_logdev_targp
!= mp
->m_ddev_targp
)
759 xfs_free_buftarg(mp
->m_logdev_targp
);
760 if (mp
->m_rtdev_targp
)
761 xfs_free_buftarg(mp
->m_rtdev_targp
);
762 if (mp
->m_ddev_targp
)
763 xfs_free_buftarg(mp
->m_ddev_targp
);
765 debugfs_remove(mp
->m_debugfs
);
767 kfree(mp
->m_logname
);
773 struct super_block
*sb
,
776 struct xfs_mount
*mp
= XFS_M(sb
);
779 trace_xfs_fs_sync_fs(mp
, __return_address
);
782 * Doing anything during the async pass would be counterproductive.
787 error
= xfs_log_force(mp
, XFS_LOG_SYNC
);
793 * The disk must be active because we're syncing.
794 * We schedule log work now (now that the disk is
795 * active) instead of later (when it might not be).
797 flush_delayed_work(&mp
->m_log
->l_work
);
801 * If we are called with page faults frozen out, it means we are about
802 * to freeze the transaction subsystem. Take the opportunity to shut
803 * down inodegc because once SB_FREEZE_FS is set it's too late to
804 * prevent inactivation races with freeze. The fs doesn't get called
805 * again by the freezing process until after SB_FREEZE_FS has been set,
806 * so it's now or never. Same logic applies to speculative allocation
807 * garbage collection.
809 * We don't care if this is a normal syncfs call that does this or
810 * freeze that does this - we can run this multiple times without issue
811 * and we won't race with a restart because a restart can only occur
812 * when the state is either SB_FREEZE_FS or SB_FREEZE_COMPLETE.
814 if (sb
->s_writers
.frozen
== SB_FREEZE_PAGEFAULT
) {
815 xfs_inodegc_stop(mp
);
816 xfs_blockgc_stop(mp
);
823 xfs_internal_log_size(
824 struct xfs_mount
*mp
)
826 if (!mp
->m_sb
.sb_logstart
)
828 return mp
->m_sb
.sb_logblocks
;
833 struct xfs_mount
*mp
,
837 percpu_counter_sum(&mp
->m_fdblocks
);
839 /* make sure st->f_bfree does not underflow */
840 st
->f_bfree
= max(0LL, fdblocks
- xfs_fdblocks_unavailable(mp
));
842 * sb_dblocks can change during growfs, but nothing cares about reporting
843 * the old or new value during growfs.
845 st
->f_blocks
= mp
->m_sb
.sb_dblocks
- xfs_internal_log_size(mp
);
849 * When stat(v)fs is called on a file with the realtime bit set or a directory
850 * with the rtinherit bit, report freespace information for the RT device
851 * instead of the main data device.
855 struct xfs_mount
*mp
,
858 st
->f_bfree
= xfs_rtbxlen_to_blen(mp
,
859 percpu_counter_sum_positive(&mp
->m_frextents
));
860 st
->f_blocks
= mp
->m_sb
.sb_rblocks
;
865 struct xfs_mount
*mp
,
868 uint64_t icount
= percpu_counter_sum(&mp
->m_icount
);
869 uint64_t ifree
= percpu_counter_sum(&mp
->m_ifree
);
870 uint64_t fakeinos
= XFS_FSB_TO_INO(mp
, st
->f_bfree
);
872 st
->f_files
= min(icount
+ fakeinos
, (uint64_t)XFS_MAXINUMBER
);
873 if (M_IGEO(mp
)->maxicount
)
874 st
->f_files
= min_t(typeof(st
->f_files
), st
->f_files
,
875 M_IGEO(mp
)->maxicount
);
877 /* If sb_icount overshot maxicount, report actual allocation */
878 st
->f_files
= max_t(typeof(st
->f_files
), st
->f_files
,
881 /* Make sure st->f_ffree does not underflow */
882 st
->f_ffree
= max_t(int64_t, 0, st
->f_files
- (icount
- ifree
));
887 struct dentry
*dentry
,
890 struct xfs_mount
*mp
= XFS_M(dentry
->d_sb
);
891 struct xfs_inode
*ip
= XFS_I(d_inode(dentry
));
894 * Expedite background inodegc but don't wait. We do not want to block
895 * here waiting hours for a billion extent file to be truncated.
897 xfs_inodegc_push(mp
);
899 st
->f_type
= XFS_SUPER_MAGIC
;
900 st
->f_namelen
= MAXNAMELEN
- 1;
901 st
->f_bsize
= mp
->m_sb
.sb_blocksize
;
902 st
->f_fsid
= u64_to_fsid(huge_encode_dev(mp
->m_ddev_targp
->bt_dev
));
904 xfs_statfs_data(mp
, st
);
905 xfs_statfs_inodes(mp
, st
);
907 if (XFS_IS_REALTIME_MOUNT(mp
) &&
908 (ip
->i_diflags
& (XFS_DIFLAG_RTINHERIT
| XFS_DIFLAG_REALTIME
)))
909 xfs_statfs_rt(mp
, st
);
911 if ((ip
->i_diflags
& XFS_DIFLAG_PROJINHERIT
) &&
912 ((mp
->m_qflags
& (XFS_PQUOTA_ACCT
|XFS_PQUOTA_ENFD
))) ==
913 (XFS_PQUOTA_ACCT
|XFS_PQUOTA_ENFD
))
914 xfs_qm_statvfs(ip
, st
);
917 * XFS does not distinguish between blocks available to privileged and
918 * unprivileged users.
920 st
->f_bavail
= st
->f_bfree
;
925 xfs_save_resvblks(struct xfs_mount
*mp
)
927 mp
->m_resblks_save
= mp
->m_resblks
;
928 xfs_reserve_blocks(mp
, 0);
932 xfs_restore_resvblks(struct xfs_mount
*mp
)
936 if (mp
->m_resblks_save
) {
937 resblks
= mp
->m_resblks_save
;
938 mp
->m_resblks_save
= 0;
940 resblks
= xfs_default_resblks(mp
);
942 xfs_reserve_blocks(mp
, resblks
);
946 * Second stage of a freeze. The data is already frozen so we only
947 * need to take care of the metadata. Once that's done sync the superblock
948 * to the log to dirty it in case of a crash while frozen. This ensures that we
949 * will recover the unlinked inode lists on the next mount.
953 struct super_block
*sb
)
955 struct xfs_mount
*mp
= XFS_M(sb
);
960 * The filesystem is now frozen far enough that memory reclaim
961 * cannot safely operate on the filesystem. Hence we need to
962 * set a GFP_NOFS context here to avoid recursion deadlocks.
964 flags
= memalloc_nofs_save();
965 xfs_save_resvblks(mp
);
966 ret
= xfs_log_quiesce(mp
);
967 memalloc_nofs_restore(flags
);
970 * For read-write filesystems, we need to restart the inodegc on error
971 * because we stopped it at SB_FREEZE_PAGEFAULT level and a thaw is not
972 * going to be run to restart it now. We are at SB_FREEZE_FS level
973 * here, so we can restart safely without racing with a stop in
976 if (ret
&& !xfs_is_readonly(mp
)) {
977 xfs_blockgc_start(mp
);
978 xfs_inodegc_start(mp
);
986 struct super_block
*sb
)
988 struct xfs_mount
*mp
= XFS_M(sb
);
990 xfs_restore_resvblks(mp
);
991 xfs_log_work_queue(mp
);
994 * Don't reactivate the inodegc worker on a readonly filesystem because
995 * inodes are sent directly to reclaim. Don't reactivate the blockgc
996 * worker because there are no speculative preallocations on a readonly
999 if (!xfs_is_readonly(mp
)) {
1000 xfs_blockgc_start(mp
);
1001 xfs_inodegc_start(mp
);
1008 * This function fills in xfs_mount_t fields based on mount args.
1009 * Note: the superblock _has_ now been read in.
1013 struct xfs_mount
*mp
)
1015 /* Fail a mount where the logbuf is smaller than the log stripe */
1016 if (xfs_has_logv2(mp
)) {
1017 if (mp
->m_logbsize
<= 0 &&
1018 mp
->m_sb
.sb_logsunit
> XLOG_BIG_RECORD_BSIZE
) {
1019 mp
->m_logbsize
= mp
->m_sb
.sb_logsunit
;
1020 } else if (mp
->m_logbsize
> 0 &&
1021 mp
->m_logbsize
< mp
->m_sb
.sb_logsunit
) {
1023 "logbuf size must be greater than or equal to log stripe size");
1027 /* Fail a mount if the logbuf is larger than 32K */
1028 if (mp
->m_logbsize
> XLOG_BIG_RECORD_BSIZE
) {
1030 "logbuf size for version 1 logs must be 16K or 32K");
1036 * V5 filesystems always use attr2 format for attributes.
1038 if (xfs_has_crc(mp
) && xfs_has_noattr2(mp
)) {
1039 xfs_warn(mp
, "Cannot mount a V5 filesystem as noattr2. "
1040 "attr2 is always enabled for V5 filesystems.");
1045 * prohibit r/w mounts of read-only filesystems
1047 if ((mp
->m_sb
.sb_flags
& XFS_SBF_READONLY
) && !xfs_is_readonly(mp
)) {
1049 "cannot mount a read-only filesystem as read-write");
1053 if ((mp
->m_qflags
& XFS_GQUOTA_ACCT
) &&
1054 (mp
->m_qflags
& XFS_PQUOTA_ACCT
) &&
1055 !xfs_has_pquotino(mp
)) {
1057 "Super block does not support project and group quota together");
1065 xfs_init_percpu_counters(
1066 struct xfs_mount
*mp
)
1070 error
= percpu_counter_init(&mp
->m_icount
, 0, GFP_KERNEL
);
1074 error
= percpu_counter_init(&mp
->m_ifree
, 0, GFP_KERNEL
);
1078 error
= percpu_counter_init(&mp
->m_fdblocks
, 0, GFP_KERNEL
);
1082 error
= percpu_counter_init(&mp
->m_delalloc_blks
, 0, GFP_KERNEL
);
1086 error
= percpu_counter_init(&mp
->m_delalloc_rtextents
, 0, GFP_KERNEL
);
1090 error
= percpu_counter_init(&mp
->m_frextents
, 0, GFP_KERNEL
);
1092 goto free_delalloc_rt
;
1097 percpu_counter_destroy(&mp
->m_delalloc_rtextents
);
1099 percpu_counter_destroy(&mp
->m_delalloc_blks
);
1101 percpu_counter_destroy(&mp
->m_fdblocks
);
1103 percpu_counter_destroy(&mp
->m_ifree
);
1105 percpu_counter_destroy(&mp
->m_icount
);
1110 xfs_reinit_percpu_counters(
1111 struct xfs_mount
*mp
)
1113 percpu_counter_set(&mp
->m_icount
, mp
->m_sb
.sb_icount
);
1114 percpu_counter_set(&mp
->m_ifree
, mp
->m_sb
.sb_ifree
);
1115 percpu_counter_set(&mp
->m_fdblocks
, mp
->m_sb
.sb_fdblocks
);
1116 percpu_counter_set(&mp
->m_frextents
, mp
->m_sb
.sb_frextents
);
1120 xfs_destroy_percpu_counters(
1121 struct xfs_mount
*mp
)
1123 percpu_counter_destroy(&mp
->m_icount
);
1124 percpu_counter_destroy(&mp
->m_ifree
);
1125 percpu_counter_destroy(&mp
->m_fdblocks
);
1126 ASSERT(xfs_is_shutdown(mp
) ||
1127 percpu_counter_sum(&mp
->m_delalloc_rtextents
) == 0);
1128 percpu_counter_destroy(&mp
->m_delalloc_rtextents
);
1129 ASSERT(xfs_is_shutdown(mp
) ||
1130 percpu_counter_sum(&mp
->m_delalloc_blks
) == 0);
1131 percpu_counter_destroy(&mp
->m_delalloc_blks
);
1132 percpu_counter_destroy(&mp
->m_frextents
);
1136 xfs_inodegc_init_percpu(
1137 struct xfs_mount
*mp
)
1139 struct xfs_inodegc
*gc
;
1142 mp
->m_inodegc
= alloc_percpu(struct xfs_inodegc
);
1146 for_each_possible_cpu(cpu
) {
1147 gc
= per_cpu_ptr(mp
->m_inodegc
, cpu
);
1150 init_llist_head(&gc
->list
);
1153 INIT_DELAYED_WORK(&gc
->work
, xfs_inodegc_worker
);
1159 xfs_inodegc_free_percpu(
1160 struct xfs_mount
*mp
)
1164 free_percpu(mp
->m_inodegc
);
1169 struct super_block
*sb
)
1171 struct xfs_mount
*mp
= XFS_M(sb
);
1173 xfs_notice(mp
, "Unmounting Filesystem %pU", &mp
->m_sb
.sb_uuid
);
1174 xfs_filestream_unmount(mp
);
1177 xfs_rtmount_freesb(mp
);
1179 xchk_mount_stats_free(mp
);
1180 free_percpu(mp
->m_stats
.xs_stats
);
1181 xfs_inodegc_free_percpu(mp
);
1182 xfs_destroy_percpu_counters(mp
);
1183 xfs_destroy_mount_workqueues(mp
);
1184 xfs_shutdown_devices(mp
);
1188 xfs_fs_nr_cached_objects(
1189 struct super_block
*sb
,
1190 struct shrink_control
*sc
)
1192 /* Paranoia: catch incorrect calls during mount setup or teardown */
1193 if (WARN_ON_ONCE(!sb
->s_fs_info
))
1195 return xfs_reclaim_inodes_count(XFS_M(sb
));
1199 xfs_fs_free_cached_objects(
1200 struct super_block
*sb
,
1201 struct shrink_control
*sc
)
1203 return xfs_reclaim_inodes_nr(XFS_M(sb
), sc
->nr_to_scan
);
1208 struct super_block
*sb
)
1210 xfs_force_shutdown(XFS_M(sb
), SHUTDOWN_DEVICE_REMOVED
);
1213 static const struct super_operations xfs_super_operations
= {
1214 .alloc_inode
= xfs_fs_alloc_inode
,
1215 .destroy_inode
= xfs_fs_destroy_inode
,
1216 .dirty_inode
= xfs_fs_dirty_inode
,
1217 .drop_inode
= xfs_fs_drop_inode
,
1218 .put_super
= xfs_fs_put_super
,
1219 .sync_fs
= xfs_fs_sync_fs
,
1220 .freeze_fs
= xfs_fs_freeze
,
1221 .unfreeze_fs
= xfs_fs_unfreeze
,
1222 .statfs
= xfs_fs_statfs
,
1223 .show_options
= xfs_fs_show_options
,
1224 .nr_cached_objects
= xfs_fs_nr_cached_objects
,
1225 .free_cached_objects
= xfs_fs_free_cached_objects
,
1226 .shutdown
= xfs_fs_shutdown
,
1235 int last
, shift_left_factor
= 0, _res
;
1239 value
= kstrdup(s
, GFP_KERNEL
);
1243 last
= strlen(value
) - 1;
1244 if (value
[last
] == 'K' || value
[last
] == 'k') {
1245 shift_left_factor
= 10;
1248 if (value
[last
] == 'M' || value
[last
] == 'm') {
1249 shift_left_factor
= 20;
1252 if (value
[last
] == 'G' || value
[last
] == 'g') {
1253 shift_left_factor
= 30;
1257 if (kstrtoint(value
, base
, &_res
))
1260 *res
= _res
<< shift_left_factor
;
1265 xfs_fs_warn_deprecated(
1266 struct fs_context
*fc
,
1267 struct fs_parameter
*param
,
1271 /* Don't print the warning if reconfiguring and current mount point
1272 * already had the flag set
1274 if ((fc
->purpose
& FS_CONTEXT_FOR_RECONFIGURE
) &&
1275 !!(XFS_M(fc
->root
->d_sb
)->m_features
& flag
) == value
)
1277 xfs_warn(fc
->s_fs_info
, "%s mount option is deprecated.", param
->key
);
1281 * Set mount state from a mount option.
1283 * NOTE: mp->m_super is NULL here!
1287 struct fs_context
*fc
,
1288 struct fs_parameter
*param
)
1290 struct xfs_mount
*parsing_mp
= fc
->s_fs_info
;
1291 struct fs_parse_result result
;
1295 BUILD_BUG_ON(XFS_QFLAGS_MNTOPTS
& XFS_MOUNT_QUOTA_ALL
);
1297 opt
= fs_parse(fc
, xfs_fs_parameters
, param
, &result
);
1303 parsing_mp
->m_logbufs
= result
.uint_32
;
1306 if (suffix_kstrtoint(param
->string
, 10, &parsing_mp
->m_logbsize
))
1310 kfree(parsing_mp
->m_logname
);
1311 parsing_mp
->m_logname
= kstrdup(param
->string
, GFP_KERNEL
);
1312 if (!parsing_mp
->m_logname
)
1316 kfree(parsing_mp
->m_rtname
);
1317 parsing_mp
->m_rtname
= kstrdup(param
->string
, GFP_KERNEL
);
1318 if (!parsing_mp
->m_rtname
)
1322 if (suffix_kstrtoint(param
->string
, 10, &size
))
1324 parsing_mp
->m_allocsize_log
= ffs(size
) - 1;
1325 parsing_mp
->m_features
|= XFS_FEAT_ALLOCSIZE
;
1329 parsing_mp
->m_features
|= XFS_FEAT_GRPID
;
1332 case Opt_sysvgroups
:
1333 parsing_mp
->m_features
&= ~XFS_FEAT_GRPID
;
1336 parsing_mp
->m_features
|= XFS_FEAT_WSYNC
;
1338 case Opt_norecovery
:
1339 parsing_mp
->m_features
|= XFS_FEAT_NORECOVERY
;
1342 parsing_mp
->m_features
|= XFS_FEAT_NOALIGN
;
1345 parsing_mp
->m_features
|= XFS_FEAT_SWALLOC
;
1348 parsing_mp
->m_dalign
= result
.uint_32
;
1351 parsing_mp
->m_swidth
= result
.uint_32
;
1354 parsing_mp
->m_features
|= XFS_FEAT_SMALL_INUMS
;
1357 parsing_mp
->m_features
&= ~XFS_FEAT_SMALL_INUMS
;
1360 parsing_mp
->m_features
|= XFS_FEAT_NOUUID
;
1363 parsing_mp
->m_features
|= XFS_FEAT_LARGE_IOSIZE
;
1366 parsing_mp
->m_features
&= ~XFS_FEAT_LARGE_IOSIZE
;
1368 case Opt_filestreams
:
1369 parsing_mp
->m_features
|= XFS_FEAT_FILESTREAMS
;
1372 parsing_mp
->m_qflags
&= ~XFS_ALL_QUOTA_ACCT
;
1373 parsing_mp
->m_qflags
&= ~XFS_ALL_QUOTA_ENFD
;
1374 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1379 parsing_mp
->m_qflags
|= (XFS_UQUOTA_ACCT
| XFS_UQUOTA_ENFD
);
1380 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1382 case Opt_qnoenforce
:
1383 case Opt_uqnoenforce
:
1384 parsing_mp
->m_qflags
|= XFS_UQUOTA_ACCT
;
1385 parsing_mp
->m_qflags
&= ~XFS_UQUOTA_ENFD
;
1386 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1390 parsing_mp
->m_qflags
|= (XFS_PQUOTA_ACCT
| XFS_PQUOTA_ENFD
);
1391 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1393 case Opt_pqnoenforce
:
1394 parsing_mp
->m_qflags
|= XFS_PQUOTA_ACCT
;
1395 parsing_mp
->m_qflags
&= ~XFS_PQUOTA_ENFD
;
1396 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1400 parsing_mp
->m_qflags
|= (XFS_GQUOTA_ACCT
| XFS_GQUOTA_ENFD
);
1401 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1403 case Opt_gqnoenforce
:
1404 parsing_mp
->m_qflags
|= XFS_GQUOTA_ACCT
;
1405 parsing_mp
->m_qflags
&= ~XFS_GQUOTA_ENFD
;
1406 parsing_mp
->m_qflags
|= XFS_QFLAGS_MNTOPTS
;
1409 parsing_mp
->m_features
|= XFS_FEAT_DISCARD
;
1412 parsing_mp
->m_features
&= ~XFS_FEAT_DISCARD
;
1414 #ifdef CONFIG_FS_DAX
1416 xfs_mount_set_dax_mode(parsing_mp
, XFS_DAX_ALWAYS
);
1419 xfs_mount_set_dax_mode(parsing_mp
, result
.uint_32
);
1422 /* Following mount options will be removed in September 2025 */
1424 xfs_fs_warn_deprecated(fc
, param
, XFS_FEAT_IKEEP
, true);
1425 parsing_mp
->m_features
|= XFS_FEAT_IKEEP
;
1428 xfs_fs_warn_deprecated(fc
, param
, XFS_FEAT_IKEEP
, false);
1429 parsing_mp
->m_features
&= ~XFS_FEAT_IKEEP
;
1432 xfs_fs_warn_deprecated(fc
, param
, XFS_FEAT_ATTR2
, true);
1433 parsing_mp
->m_features
|= XFS_FEAT_ATTR2
;
1436 xfs_fs_warn_deprecated(fc
, param
, XFS_FEAT_NOATTR2
, true);
1437 parsing_mp
->m_features
|= XFS_FEAT_NOATTR2
;
1440 xfs_warn(parsing_mp
, "unknown mount option [%s].", param
->key
);
1448 xfs_fs_validate_params(
1449 struct xfs_mount
*mp
)
1451 /* No recovery flag requires a read-only mount */
1452 if (xfs_has_norecovery(mp
) && !xfs_is_readonly(mp
)) {
1453 xfs_warn(mp
, "no-recovery mounts must be read-only.");
1458 * We have not read the superblock at this point, so only the attr2
1459 * mount option can set the attr2 feature by this stage.
1461 if (xfs_has_attr2(mp
) && xfs_has_noattr2(mp
)) {
1462 xfs_warn(mp
, "attr2 and noattr2 cannot both be specified.");
1467 if (xfs_has_noalign(mp
) && (mp
->m_dalign
|| mp
->m_swidth
)) {
1469 "sunit and swidth options incompatible with the noalign option");
1473 if (!IS_ENABLED(CONFIG_XFS_QUOTA
) &&
1474 (mp
->m_qflags
& ~XFS_QFLAGS_MNTOPTS
)) {
1475 xfs_warn(mp
, "quota support not available in this kernel.");
1479 if ((mp
->m_dalign
&& !mp
->m_swidth
) ||
1480 (!mp
->m_dalign
&& mp
->m_swidth
)) {
1481 xfs_warn(mp
, "sunit and swidth must be specified together");
1485 if (mp
->m_dalign
&& (mp
->m_swidth
% mp
->m_dalign
!= 0)) {
1487 "stripe width (%d) must be a multiple of the stripe unit (%d)",
1488 mp
->m_swidth
, mp
->m_dalign
);
1492 if (mp
->m_logbufs
!= -1 &&
1493 mp
->m_logbufs
!= 0 &&
1494 (mp
->m_logbufs
< XLOG_MIN_ICLOGS
||
1495 mp
->m_logbufs
> XLOG_MAX_ICLOGS
)) {
1496 xfs_warn(mp
, "invalid logbufs value: %d [not %d-%d]",
1497 mp
->m_logbufs
, XLOG_MIN_ICLOGS
, XLOG_MAX_ICLOGS
);
1501 if (mp
->m_logbsize
!= -1 &&
1502 mp
->m_logbsize
!= 0 &&
1503 (mp
->m_logbsize
< XLOG_MIN_RECORD_BSIZE
||
1504 mp
->m_logbsize
> XLOG_MAX_RECORD_BSIZE
||
1505 !is_power_of_2(mp
->m_logbsize
))) {
1507 "invalid logbufsize: %d [not 16k,32k,64k,128k or 256k]",
1512 if (xfs_has_allocsize(mp
) &&
1513 (mp
->m_allocsize_log
> XFS_MAX_IO_LOG
||
1514 mp
->m_allocsize_log
< XFS_MIN_IO_LOG
)) {
1515 xfs_warn(mp
, "invalid log iosize: %d [not %d-%d]",
1516 mp
->m_allocsize_log
, XFS_MIN_IO_LOG
, XFS_MAX_IO_LOG
);
1526 struct dentry
*parent
)
1528 struct dentry
*child
;
1530 /* Apparently we're expected to ignore error returns?? */
1531 child
= debugfs_create_dir(name
, parent
);
1540 struct super_block
*sb
,
1541 struct fs_context
*fc
)
1543 struct xfs_mount
*mp
= sb
->s_fs_info
;
1545 int flags
= 0, error
;
1550 * Copy VFS mount flags from the context now that all parameter parsing
1551 * is guaranteed to have been completed by either the old mount API or
1552 * the newer fsopen/fsconfig API.
1554 if (fc
->sb_flags
& SB_RDONLY
)
1555 xfs_set_readonly(mp
);
1556 if (fc
->sb_flags
& SB_DIRSYNC
)
1557 mp
->m_features
|= XFS_FEAT_DIRSYNC
;
1558 if (fc
->sb_flags
& SB_SYNCHRONOUS
)
1559 mp
->m_features
|= XFS_FEAT_WSYNC
;
1561 error
= xfs_fs_validate_params(mp
);
1565 sb_min_blocksize(sb
, BBSIZE
);
1566 sb
->s_xattr
= xfs_xattr_handlers
;
1567 sb
->s_export_op
= &xfs_export_operations
;
1568 #ifdef CONFIG_XFS_QUOTA
1569 sb
->s_qcop
= &xfs_quotactl_operations
;
1570 sb
->s_quota_types
= QTYPE_MASK_USR
| QTYPE_MASK_GRP
| QTYPE_MASK_PRJ
;
1572 sb
->s_op
= &xfs_super_operations
;
1575 * Delay mount work if the debug hook is set. This is debug
1576 * instrumention to coordinate simulation of xfs mount failures with
1577 * VFS superblock operations
1579 if (xfs_globals
.mount_delay
) {
1580 xfs_notice(mp
, "Delaying mount for %d seconds.",
1581 xfs_globals
.mount_delay
);
1582 msleep(xfs_globals
.mount_delay
* 1000);
1585 if (fc
->sb_flags
& SB_SILENT
)
1586 flags
|= XFS_MFSI_QUIET
;
1588 error
= xfs_open_devices(mp
);
1593 mp
->m_debugfs
= xfs_debugfs_mkdir(mp
->m_super
->s_id
,
1596 mp
->m_debugfs
= NULL
;
1599 error
= xfs_init_mount_workqueues(mp
);
1601 goto out_shutdown_devices
;
1603 error
= xfs_init_percpu_counters(mp
);
1605 goto out_destroy_workqueues
;
1607 error
= xfs_inodegc_init_percpu(mp
);
1609 goto out_destroy_counters
;
1611 /* Allocate stats memory before we do operations that might use it */
1612 mp
->m_stats
.xs_stats
= alloc_percpu(struct xfsstats
);
1613 if (!mp
->m_stats
.xs_stats
) {
1615 goto out_destroy_inodegc
;
1618 error
= xchk_mount_stats_alloc(mp
);
1620 goto out_free_stats
;
1622 error
= xfs_readsb(mp
, flags
);
1624 goto out_free_scrub_stats
;
1626 error
= xfs_finish_flags(mp
);
1630 error
= xfs_setup_devices(mp
);
1635 * V4 support is undergoing deprecation.
1637 * Note: this has to use an open coded m_features check as xfs_has_crc
1638 * always returns false for !CONFIG_XFS_SUPPORT_V4.
1640 if (!(mp
->m_features
& XFS_FEAT_CRC
)) {
1641 if (!IS_ENABLED(CONFIG_XFS_SUPPORT_V4
)) {
1643 "Deprecated V4 format (crc=0) not supported by kernel.");
1648 "Deprecated V4 format (crc=0) will not be supported after September 2030.");
1651 /* ASCII case insensitivity is undergoing deprecation. */
1652 if (xfs_has_asciici(mp
)) {
1653 #ifdef CONFIG_XFS_SUPPORT_ASCII_CI
1655 "Deprecated ASCII case-insensitivity feature (ascii-ci=1) will not be supported after September 2030.");
1658 "Deprecated ASCII case-insensitivity feature (ascii-ci=1) not supported by kernel.");
1664 /* Filesystem claims it needs repair, so refuse the mount. */
1665 if (xfs_has_needsrepair(mp
)) {
1666 xfs_warn(mp
, "Filesystem needs repair. Please run xfs_repair.");
1667 error
= -EFSCORRUPTED
;
1672 * Don't touch the filesystem if a user tool thinks it owns the primary
1673 * superblock. mkfs doesn't clear the flag from secondary supers, so
1674 * we don't check them at all.
1676 if (mp
->m_sb
.sb_inprogress
) {
1677 xfs_warn(mp
, "Offline file system operation in progress!");
1678 error
= -EFSCORRUPTED
;
1682 if (mp
->m_sb
.sb_blocksize
> PAGE_SIZE
) {
1683 size_t max_folio_size
= mapping_max_folio_size_supported();
1685 if (!xfs_has_crc(mp
)) {
1687 "V4 Filesystem with blocksize %d bytes. Only pagesize (%ld) or less is supported.",
1688 mp
->m_sb
.sb_blocksize
, PAGE_SIZE
);
1693 if (mp
->m_sb
.sb_blocksize
> max_folio_size
) {
1695 "block size (%u bytes) not supported; Only block size (%zu) or less is supported",
1696 mp
->m_sb
.sb_blocksize
, max_folio_size
);
1701 xfs_warn_experimental(mp
, XFS_EXPERIMENTAL_LBS
);
1704 /* Ensure this filesystem fits in the page cache limits */
1705 if (xfs_sb_validate_fsb_count(&mp
->m_sb
, mp
->m_sb
.sb_dblocks
) ||
1706 xfs_sb_validate_fsb_count(&mp
->m_sb
, mp
->m_sb
.sb_rblocks
)) {
1708 "file system too large to be mounted on this system.");
1714 * XFS block mappings use 54 bits to store the logical block offset.
1715 * This should suffice to handle the maximum file size that the VFS
1716 * supports (currently 2^63 bytes on 64-bit and ULONG_MAX << PAGE_SHIFT
1717 * bytes on 32-bit), but as XFS and VFS have gotten the s_maxbytes
1718 * calculation wrong on 32-bit kernels in the past, we'll add a WARN_ON
1719 * to check this assertion.
1721 * Avoid integer overflow by comparing the maximum bmbt offset to the
1722 * maximum pagecache offset in units of fs blocks.
1724 if (!xfs_verify_fileoff(mp
, XFS_B_TO_FSBT(mp
, MAX_LFS_FILESIZE
))) {
1726 "MAX_LFS_FILESIZE block offset (%llu) exceeds extent map maximum (%llu)!",
1727 XFS_B_TO_FSBT(mp
, MAX_LFS_FILESIZE
),
1733 error
= xfs_rtmount_readsb(mp
);
1737 error
= xfs_filestream_mount(mp
);
1742 * we must configure the block size in the superblock before we run the
1743 * full mount process as the mount process can lookup and cache inodes.
1745 sb
->s_magic
= XFS_SUPER_MAGIC
;
1746 sb
->s_blocksize
= mp
->m_sb
.sb_blocksize
;
1747 sb
->s_blocksize_bits
= ffs(sb
->s_blocksize
) - 1;
1748 sb
->s_maxbytes
= MAX_LFS_FILESIZE
;
1749 sb
->s_max_links
= XFS_MAXLINK
;
1750 sb
->s_time_gran
= 1;
1751 if (xfs_has_bigtime(mp
)) {
1752 sb
->s_time_min
= xfs_bigtime_to_unix(XFS_BIGTIME_TIME_MIN
);
1753 sb
->s_time_max
= xfs_bigtime_to_unix(XFS_BIGTIME_TIME_MAX
);
1755 sb
->s_time_min
= XFS_LEGACY_TIME_MIN
;
1756 sb
->s_time_max
= XFS_LEGACY_TIME_MAX
;
1758 trace_xfs_inode_timestamp_range(mp
, sb
->s_time_min
, sb
->s_time_max
);
1759 sb
->s_iflags
|= SB_I_CGROUPWB
| SB_I_ALLOW_HSM
;
1761 set_posix_acl_flag(sb
);
1763 /* version 5 superblocks support inode version counters. */
1764 if (xfs_has_crc(mp
))
1765 sb
->s_flags
|= SB_I_VERSION
;
1767 if (xfs_has_dax_always(mp
)) {
1768 error
= xfs_setup_dax_always(mp
);
1770 goto out_filestream_unmount
;
1773 if (xfs_has_discard(mp
) && !bdev_max_discard_sectors(sb
->s_bdev
)) {
1775 "mounting with \"discard\" option, but the device does not support discard");
1776 mp
->m_features
&= ~XFS_FEAT_DISCARD
;
1779 if (xfs_has_metadir(mp
))
1780 xfs_warn_experimental(mp
, XFS_EXPERIMENTAL_METADIR
);
1782 if (xfs_has_reflink(mp
)) {
1783 if (xfs_has_realtime(mp
) &&
1784 !xfs_reflink_supports_rextsize(mp
, mp
->m_sb
.sb_rextsize
)) {
1786 "reflink not compatible with realtime extent size %u!",
1787 mp
->m_sb
.sb_rextsize
);
1789 goto out_filestream_unmount
;
1792 if (xfs_globals
.always_cow
) {
1793 xfs_info(mp
, "using DEBUG-only always_cow mode.");
1794 mp
->m_always_cow
= true;
1799 if (xfs_has_exchange_range(mp
))
1800 xfs_warn_experimental(mp
, XFS_EXPERIMENTAL_EXCHRANGE
);
1802 if (xfs_has_parent(mp
))
1803 xfs_warn_experimental(mp
, XFS_EXPERIMENTAL_PPTR
);
1806 * If no quota mount options were provided, maybe we'll try to pick
1807 * up the quota accounting and enforcement flags from the ondisk sb.
1809 if (!(mp
->m_qflags
& XFS_QFLAGS_MNTOPTS
))
1810 xfs_set_resuming_quotaon(mp
);
1811 mp
->m_qflags
&= ~XFS_QFLAGS_MNTOPTS
;
1813 error
= xfs_mountfs(mp
);
1815 goto out_filestream_unmount
;
1817 root
= igrab(VFS_I(mp
->m_rootip
));
1822 sb
->s_root
= d_make_root(root
);
1830 out_filestream_unmount
:
1831 xfs_filestream_unmount(mp
);
1833 xfs_rtmount_freesb(mp
);
1836 out_free_scrub_stats
:
1837 xchk_mount_stats_free(mp
);
1839 free_percpu(mp
->m_stats
.xs_stats
);
1840 out_destroy_inodegc
:
1841 xfs_inodegc_free_percpu(mp
);
1842 out_destroy_counters
:
1843 xfs_destroy_percpu_counters(mp
);
1844 out_destroy_workqueues
:
1845 xfs_destroy_mount_workqueues(mp
);
1846 out_shutdown_devices
:
1847 xfs_shutdown_devices(mp
);
1851 xfs_filestream_unmount(mp
);
1858 struct fs_context
*fc
)
1860 return get_tree_bdev(fc
, xfs_fs_fill_super
);
1865 struct xfs_mount
*mp
)
1867 struct xfs_sb
*sbp
= &mp
->m_sb
;
1870 if (xfs_has_norecovery(mp
)) {
1872 "ro->rw transition prohibited on norecovery mount");
1876 if (xfs_sb_is_v5(sbp
) &&
1877 xfs_sb_has_ro_compat_feature(sbp
, XFS_SB_FEAT_RO_COMPAT_UNKNOWN
)) {
1879 "ro->rw transition prohibited on unknown (0x%x) ro-compat filesystem",
1880 (sbp
->sb_features_ro_compat
&
1881 XFS_SB_FEAT_RO_COMPAT_UNKNOWN
));
1885 xfs_clear_readonly(mp
);
1888 * If this is the first remount to writeable state we might have some
1889 * superblock changes to update.
1891 if (mp
->m_update_sb
) {
1892 error
= xfs_sync_sb(mp
, false);
1894 xfs_warn(mp
, "failed to write sb changes");
1897 mp
->m_update_sb
= false;
1901 * Fill out the reserve pool if it is empty. Use the stashed value if
1902 * it is non-zero, otherwise go with the default.
1904 xfs_restore_resvblks(mp
);
1905 xfs_log_work_queue(mp
);
1906 xfs_blockgc_start(mp
);
1908 /* Create the per-AG metadata reservation pool .*/
1909 error
= xfs_fs_reserve_ag_blocks(mp
);
1910 if (error
&& error
!= -ENOSPC
)
1913 /* Re-enable the background inode inactivation worker. */
1914 xfs_inodegc_start(mp
);
1921 struct xfs_mount
*mp
)
1923 struct xfs_icwalk icw
= {
1924 .icw_flags
= XFS_ICWALK_FLAG_SYNC
,
1928 /* Flush all the dirty data to disk. */
1929 error
= sync_filesystem(mp
->m_super
);
1934 * Cancel background eofb scanning so it cannot race with the final
1935 * log force+buftarg wait and deadlock the remount.
1937 xfs_blockgc_stop(mp
);
1940 * Clear out all remaining COW staging extents and speculative post-EOF
1941 * preallocations so that we don't leave inodes requiring inactivation
1942 * cleanups during reclaim on a read-only mount. We must process every
1943 * cached inode, so this requires a synchronous cache scan.
1945 error
= xfs_blockgc_free_space(mp
, &icw
);
1947 xfs_force_shutdown(mp
, SHUTDOWN_CORRUPT_INCORE
);
1952 * Stop the inodegc background worker. xfs_fs_reconfigure already
1953 * flushed all pending inodegc work when it sync'd the filesystem.
1954 * The VFS holds s_umount, so we know that inodes cannot enter
1955 * xfs_fs_destroy_inode during a remount operation. In readonly mode
1956 * we send inodes straight to reclaim, so no inodes will be queued.
1958 xfs_inodegc_stop(mp
);
1960 /* Free the per-AG metadata reservation pool. */
1961 xfs_fs_unreserve_ag_blocks(mp
);
1964 * Before we sync the metadata, we need to free up the reserve block
1965 * pool so that the used block count in the superblock on disk is
1966 * correct at the end of the remount. Stash the current* reserve pool
1967 * size so that if we get remounted rw, we can return it to the same
1970 xfs_save_resvblks(mp
);
1973 xfs_set_readonly(mp
);
1979 * Logically we would return an error here to prevent users from believing
1980 * they might have changed mount options using remount which can't be changed.
1982 * But unfortunately mount(8) adds all options from mtab and fstab to the mount
1983 * arguments in some cases so we can't blindly reject options, but have to
1984 * check for each specified option if it actually differs from the currently
1985 * set option and only reject it if that's the case.
1987 * Until that is implemented we return success for every remount request, and
1988 * silently ignore all options that we can't actually change.
1992 struct fs_context
*fc
)
1994 struct xfs_mount
*mp
= XFS_M(fc
->root
->d_sb
);
1995 struct xfs_mount
*new_mp
= fc
->s_fs_info
;
1996 int flags
= fc
->sb_flags
;
1999 new_mp
->m_qflags
&= ~XFS_QFLAGS_MNTOPTS
;
2001 /* version 5 superblocks always support version counters. */
2002 if (xfs_has_crc(mp
))
2003 fc
->sb_flags
|= SB_I_VERSION
;
2005 error
= xfs_fs_validate_params(new_mp
);
2009 /* inode32 -> inode64 */
2010 if (xfs_has_small_inums(mp
) && !xfs_has_small_inums(new_mp
)) {
2011 mp
->m_features
&= ~XFS_FEAT_SMALL_INUMS
;
2012 mp
->m_maxagi
= xfs_set_inode_alloc(mp
, mp
->m_sb
.sb_agcount
);
2015 /* inode64 -> inode32 */
2016 if (!xfs_has_small_inums(mp
) && xfs_has_small_inums(new_mp
)) {
2017 mp
->m_features
|= XFS_FEAT_SMALL_INUMS
;
2018 mp
->m_maxagi
= xfs_set_inode_alloc(mp
, mp
->m_sb
.sb_agcount
);
2022 if (xfs_is_readonly(mp
) && !(flags
& SB_RDONLY
)) {
2023 error
= xfs_remount_rw(mp
);
2029 if (!xfs_is_readonly(mp
) && (flags
& SB_RDONLY
)) {
2030 error
= xfs_remount_ro(mp
);
2040 struct fs_context
*fc
)
2042 struct xfs_mount
*mp
= fc
->s_fs_info
;
2045 * mp is stored in the fs_context when it is initialized.
2046 * mp is transferred to the superblock on a successful mount,
2047 * but if an error occurs before the transfer we have to free
2054 static const struct fs_context_operations xfs_context_ops
= {
2055 .parse_param
= xfs_fs_parse_param
,
2056 .get_tree
= xfs_fs_get_tree
,
2057 .reconfigure
= xfs_fs_reconfigure
,
2058 .free
= xfs_fs_free
,
2062 * WARNING: do not initialise any parameters in this function that depend on
2063 * mount option parsing having already been performed as this can be called from
2064 * fsopen() before any parameters have been set.
2067 xfs_init_fs_context(
2068 struct fs_context
*fc
)
2070 struct xfs_mount
*mp
;
2073 mp
= kzalloc(sizeof(struct xfs_mount
), GFP_KERNEL
| __GFP_NOFAIL
);
2077 spin_lock_init(&mp
->m_sb_lock
);
2078 for (i
= 0; i
< XG_TYPE_MAX
; i
++)
2079 xa_init(&mp
->m_groups
[i
].xa
);
2080 mutex_init(&mp
->m_growlock
);
2081 INIT_WORK(&mp
->m_flush_inodes_work
, xfs_flush_inodes_worker
);
2082 INIT_DELAYED_WORK(&mp
->m_reclaim_work
, xfs_reclaim_worker
);
2083 mp
->m_kobj
.kobject
.kset
= xfs_kset
;
2085 * We don't create the finobt per-ag space reservation until after log
2086 * recovery, so we must set this to true so that an ifree transaction
2087 * started during log recovery will not depend on space reservations
2088 * for finobt expansion.
2090 mp
->m_finobt_nores
= true;
2093 * These can be overridden by the mount option parsing.
2096 mp
->m_logbsize
= -1;
2097 mp
->m_allocsize_log
= 16; /* 64k */
2099 xfs_hooks_init(&mp
->m_dir_update_hooks
);
2102 fc
->ops
= &xfs_context_ops
;
2109 struct super_block
*sb
)
2111 kill_block_super(sb
);
2112 xfs_mount_free(XFS_M(sb
));
2115 static struct file_system_type xfs_fs_type
= {
2116 .owner
= THIS_MODULE
,
2118 .init_fs_context
= xfs_init_fs_context
,
2119 .parameters
= xfs_fs_parameters
,
2120 .kill_sb
= xfs_kill_sb
,
2121 .fs_flags
= FS_REQUIRES_DEV
| FS_ALLOW_IDMAP
| FS_MGTIME
,
2123 MODULE_ALIAS_FS("xfs");
2126 xfs_init_caches(void)
2130 xfs_buf_cache
= kmem_cache_create("xfs_buf", sizeof(struct xfs_buf
), 0,
2131 SLAB_HWCACHE_ALIGN
|
2132 SLAB_RECLAIM_ACCOUNT
,
2137 xfs_log_ticket_cache
= kmem_cache_create("xfs_log_ticket",
2138 sizeof(struct xlog_ticket
),
2140 if (!xfs_log_ticket_cache
)
2141 goto out_destroy_buf_cache
;
2143 error
= xfs_btree_init_cur_caches();
2145 goto out_destroy_log_ticket_cache
;
2147 error
= rcbagbt_init_cur_cache();
2149 goto out_destroy_btree_cur_cache
;
2151 error
= xfs_defer_init_item_caches();
2153 goto out_destroy_rcbagbt_cur_cache
;
2155 xfs_da_state_cache
= kmem_cache_create("xfs_da_state",
2156 sizeof(struct xfs_da_state
),
2158 if (!xfs_da_state_cache
)
2159 goto out_destroy_defer_item_cache
;
2161 xfs_ifork_cache
= kmem_cache_create("xfs_ifork",
2162 sizeof(struct xfs_ifork
),
2164 if (!xfs_ifork_cache
)
2165 goto out_destroy_da_state_cache
;
2167 xfs_trans_cache
= kmem_cache_create("xfs_trans",
2168 sizeof(struct xfs_trans
),
2170 if (!xfs_trans_cache
)
2171 goto out_destroy_ifork_cache
;
2175 * The size of the cache-allocated buf log item is the maximum
2176 * size possible under XFS. This wastes a little bit of memory,
2177 * but it is much faster.
2179 xfs_buf_item_cache
= kmem_cache_create("xfs_buf_item",
2180 sizeof(struct xfs_buf_log_item
),
2182 if (!xfs_buf_item_cache
)
2183 goto out_destroy_trans_cache
;
2185 xfs_efd_cache
= kmem_cache_create("xfs_efd_item",
2186 xfs_efd_log_item_sizeof(XFS_EFD_MAX_FAST_EXTENTS
),
2189 goto out_destroy_buf_item_cache
;
2191 xfs_efi_cache
= kmem_cache_create("xfs_efi_item",
2192 xfs_efi_log_item_sizeof(XFS_EFI_MAX_FAST_EXTENTS
),
2195 goto out_destroy_efd_cache
;
2197 xfs_inode_cache
= kmem_cache_create("xfs_inode",
2198 sizeof(struct xfs_inode
), 0,
2199 (SLAB_HWCACHE_ALIGN
|
2200 SLAB_RECLAIM_ACCOUNT
|
2202 xfs_fs_inode_init_once
);
2203 if (!xfs_inode_cache
)
2204 goto out_destroy_efi_cache
;
2206 xfs_ili_cache
= kmem_cache_create("xfs_ili",
2207 sizeof(struct xfs_inode_log_item
), 0,
2208 SLAB_RECLAIM_ACCOUNT
,
2211 goto out_destroy_inode_cache
;
2213 xfs_icreate_cache
= kmem_cache_create("xfs_icr",
2214 sizeof(struct xfs_icreate_item
),
2216 if (!xfs_icreate_cache
)
2217 goto out_destroy_ili_cache
;
2219 xfs_rud_cache
= kmem_cache_create("xfs_rud_item",
2220 sizeof(struct xfs_rud_log_item
),
2223 goto out_destroy_icreate_cache
;
2225 xfs_rui_cache
= kmem_cache_create("xfs_rui_item",
2226 xfs_rui_log_item_sizeof(XFS_RUI_MAX_FAST_EXTENTS
),
2229 goto out_destroy_rud_cache
;
2231 xfs_cud_cache
= kmem_cache_create("xfs_cud_item",
2232 sizeof(struct xfs_cud_log_item
),
2235 goto out_destroy_rui_cache
;
2237 xfs_cui_cache
= kmem_cache_create("xfs_cui_item",
2238 xfs_cui_log_item_sizeof(XFS_CUI_MAX_FAST_EXTENTS
),
2241 goto out_destroy_cud_cache
;
2243 xfs_bud_cache
= kmem_cache_create("xfs_bud_item",
2244 sizeof(struct xfs_bud_log_item
),
2247 goto out_destroy_cui_cache
;
2249 xfs_bui_cache
= kmem_cache_create("xfs_bui_item",
2250 xfs_bui_log_item_sizeof(XFS_BUI_MAX_FAST_EXTENTS
),
2253 goto out_destroy_bud_cache
;
2255 xfs_attrd_cache
= kmem_cache_create("xfs_attrd_item",
2256 sizeof(struct xfs_attrd_log_item
),
2258 if (!xfs_attrd_cache
)
2259 goto out_destroy_bui_cache
;
2261 xfs_attri_cache
= kmem_cache_create("xfs_attri_item",
2262 sizeof(struct xfs_attri_log_item
),
2264 if (!xfs_attri_cache
)
2265 goto out_destroy_attrd_cache
;
2267 xfs_iunlink_cache
= kmem_cache_create("xfs_iul_item",
2268 sizeof(struct xfs_iunlink_item
),
2270 if (!xfs_iunlink_cache
)
2271 goto out_destroy_attri_cache
;
2273 xfs_xmd_cache
= kmem_cache_create("xfs_xmd_item",
2274 sizeof(struct xfs_xmd_log_item
),
2277 goto out_destroy_iul_cache
;
2279 xfs_xmi_cache
= kmem_cache_create("xfs_xmi_item",
2280 sizeof(struct xfs_xmi_log_item
),
2283 goto out_destroy_xmd_cache
;
2285 xfs_parent_args_cache
= kmem_cache_create("xfs_parent_args",
2286 sizeof(struct xfs_parent_args
),
2288 if (!xfs_parent_args_cache
)
2289 goto out_destroy_xmi_cache
;
2293 out_destroy_xmi_cache
:
2294 kmem_cache_destroy(xfs_xmi_cache
);
2295 out_destroy_xmd_cache
:
2296 kmem_cache_destroy(xfs_xmd_cache
);
2297 out_destroy_iul_cache
:
2298 kmem_cache_destroy(xfs_iunlink_cache
);
2299 out_destroy_attri_cache
:
2300 kmem_cache_destroy(xfs_attri_cache
);
2301 out_destroy_attrd_cache
:
2302 kmem_cache_destroy(xfs_attrd_cache
);
2303 out_destroy_bui_cache
:
2304 kmem_cache_destroy(xfs_bui_cache
);
2305 out_destroy_bud_cache
:
2306 kmem_cache_destroy(xfs_bud_cache
);
2307 out_destroy_cui_cache
:
2308 kmem_cache_destroy(xfs_cui_cache
);
2309 out_destroy_cud_cache
:
2310 kmem_cache_destroy(xfs_cud_cache
);
2311 out_destroy_rui_cache
:
2312 kmem_cache_destroy(xfs_rui_cache
);
2313 out_destroy_rud_cache
:
2314 kmem_cache_destroy(xfs_rud_cache
);
2315 out_destroy_icreate_cache
:
2316 kmem_cache_destroy(xfs_icreate_cache
);
2317 out_destroy_ili_cache
:
2318 kmem_cache_destroy(xfs_ili_cache
);
2319 out_destroy_inode_cache
:
2320 kmem_cache_destroy(xfs_inode_cache
);
2321 out_destroy_efi_cache
:
2322 kmem_cache_destroy(xfs_efi_cache
);
2323 out_destroy_efd_cache
:
2324 kmem_cache_destroy(xfs_efd_cache
);
2325 out_destroy_buf_item_cache
:
2326 kmem_cache_destroy(xfs_buf_item_cache
);
2327 out_destroy_trans_cache
:
2328 kmem_cache_destroy(xfs_trans_cache
);
2329 out_destroy_ifork_cache
:
2330 kmem_cache_destroy(xfs_ifork_cache
);
2331 out_destroy_da_state_cache
:
2332 kmem_cache_destroy(xfs_da_state_cache
);
2333 out_destroy_defer_item_cache
:
2334 xfs_defer_destroy_item_caches();
2335 out_destroy_rcbagbt_cur_cache
:
2336 rcbagbt_destroy_cur_cache();
2337 out_destroy_btree_cur_cache
:
2338 xfs_btree_destroy_cur_caches();
2339 out_destroy_log_ticket_cache
:
2340 kmem_cache_destroy(xfs_log_ticket_cache
);
2341 out_destroy_buf_cache
:
2342 kmem_cache_destroy(xfs_buf_cache
);
2348 xfs_destroy_caches(void)
2351 * Make sure all delayed rcu free are flushed before we
2355 kmem_cache_destroy(xfs_parent_args_cache
);
2356 kmem_cache_destroy(xfs_xmd_cache
);
2357 kmem_cache_destroy(xfs_xmi_cache
);
2358 kmem_cache_destroy(xfs_iunlink_cache
);
2359 kmem_cache_destroy(xfs_attri_cache
);
2360 kmem_cache_destroy(xfs_attrd_cache
);
2361 kmem_cache_destroy(xfs_bui_cache
);
2362 kmem_cache_destroy(xfs_bud_cache
);
2363 kmem_cache_destroy(xfs_cui_cache
);
2364 kmem_cache_destroy(xfs_cud_cache
);
2365 kmem_cache_destroy(xfs_rui_cache
);
2366 kmem_cache_destroy(xfs_rud_cache
);
2367 kmem_cache_destroy(xfs_icreate_cache
);
2368 kmem_cache_destroy(xfs_ili_cache
);
2369 kmem_cache_destroy(xfs_inode_cache
);
2370 kmem_cache_destroy(xfs_efi_cache
);
2371 kmem_cache_destroy(xfs_efd_cache
);
2372 kmem_cache_destroy(xfs_buf_item_cache
);
2373 kmem_cache_destroy(xfs_trans_cache
);
2374 kmem_cache_destroy(xfs_ifork_cache
);
2375 kmem_cache_destroy(xfs_da_state_cache
);
2376 xfs_defer_destroy_item_caches();
2377 rcbagbt_destroy_cur_cache();
2378 xfs_btree_destroy_cur_caches();
2379 kmem_cache_destroy(xfs_log_ticket_cache
);
2380 kmem_cache_destroy(xfs_buf_cache
);
2384 xfs_init_workqueues(void)
2387 * The allocation workqueue can be used in memory reclaim situations
2388 * (writepage path), and parallelism is only limited by the number of
2389 * AGs in all the filesystems mounted. Hence use the default large
2390 * max_active value for this workqueue.
2392 xfs_alloc_wq
= alloc_workqueue("xfsalloc",
2393 XFS_WQFLAGS(WQ_MEM_RECLAIM
| WQ_FREEZABLE
), 0);
2397 xfs_discard_wq
= alloc_workqueue("xfsdiscard", XFS_WQFLAGS(WQ_UNBOUND
),
2399 if (!xfs_discard_wq
)
2400 goto out_free_alloc_wq
;
2404 destroy_workqueue(xfs_alloc_wq
);
2409 xfs_destroy_workqueues(void)
2411 destroy_workqueue(xfs_discard_wq
);
2412 destroy_workqueue(xfs_alloc_wq
);
2420 xfs_check_ondisk_structs();
2422 error
= xfs_dahash_test();
2426 printk(KERN_INFO XFS_VERSION_STRING
" with "
2427 XFS_BUILD_OPTIONS
" enabled\n");
2431 error
= xfs_init_caches();
2435 error
= xfs_init_workqueues();
2437 goto out_destroy_caches
;
2439 error
= xfs_mru_cache_init();
2441 goto out_destroy_wq
;
2443 error
= xfs_init_procfs();
2445 goto out_mru_cache_uninit
;
2447 error
= xfs_sysctl_register();
2449 goto out_cleanup_procfs
;
2451 xfs_debugfs
= xfs_debugfs_mkdir("xfs", NULL
);
2453 xfs_kset
= kset_create_and_add("xfs", NULL
, fs_kobj
);
2456 goto out_debugfs_unregister
;
2459 xfsstats
.xs_kobj
.kobject
.kset
= xfs_kset
;
2461 xfsstats
.xs_stats
= alloc_percpu(struct xfsstats
);
2462 if (!xfsstats
.xs_stats
) {
2464 goto out_kset_unregister
;
2467 error
= xfs_sysfs_init(&xfsstats
.xs_kobj
, &xfs_stats_ktype
, NULL
,
2470 goto out_free_stats
;
2472 error
= xchk_global_stats_setup(xfs_debugfs
);
2474 goto out_remove_stats_kobj
;
2477 xfs_dbg_kobj
.kobject
.kset
= xfs_kset
;
2478 error
= xfs_sysfs_init(&xfs_dbg_kobj
, &xfs_dbg_ktype
, NULL
, "debug");
2480 goto out_remove_scrub_stats
;
2483 error
= xfs_qm_init();
2485 goto out_remove_dbg_kobj
;
2487 error
= register_filesystem(&xfs_fs_type
);
2494 out_remove_dbg_kobj
:
2496 xfs_sysfs_del(&xfs_dbg_kobj
);
2497 out_remove_scrub_stats
:
2499 xchk_global_stats_teardown();
2500 out_remove_stats_kobj
:
2501 xfs_sysfs_del(&xfsstats
.xs_kobj
);
2503 free_percpu(xfsstats
.xs_stats
);
2504 out_kset_unregister
:
2505 kset_unregister(xfs_kset
);
2506 out_debugfs_unregister
:
2507 debugfs_remove(xfs_debugfs
);
2508 xfs_sysctl_unregister();
2510 xfs_cleanup_procfs();
2511 out_mru_cache_uninit
:
2512 xfs_mru_cache_uninit();
2514 xfs_destroy_workqueues();
2516 xfs_destroy_caches();
2525 unregister_filesystem(&xfs_fs_type
);
2527 xfs_sysfs_del(&xfs_dbg_kobj
);
2529 xchk_global_stats_teardown();
2530 xfs_sysfs_del(&xfsstats
.xs_kobj
);
2531 free_percpu(xfsstats
.xs_stats
);
2532 kset_unregister(xfs_kset
);
2533 debugfs_remove(xfs_debugfs
);
2534 xfs_sysctl_unregister();
2535 xfs_cleanup_procfs();
2536 xfs_mru_cache_uninit();
2537 xfs_destroy_workqueues();
2538 xfs_destroy_caches();
2539 xfs_uuid_table_free();
2542 module_init(init_xfs_fs
);
2543 module_exit(exit_xfs_fs
);
2545 MODULE_AUTHOR("Silicon Graphics, Inc.");
2546 MODULE_DESCRIPTION(XFS_VERSION_STRING
" with " XFS_BUILD_OPTIONS
" enabled");
2547 MODULE_LICENSE("GPL");