2 * Copyright (c) 2000-2006 Silicon Graphics, Inc.
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License as
7 * published by the Free Software Foundation.
9 * This program is distributed in the hope that it would be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write the Free Software Foundation,
16 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 #include "xfs_shared.h"
21 #include "xfs_format.h"
22 #include "xfs_log_format.h"
23 #include "xfs_trans_resv.h"
25 #include "xfs_mount.h"
26 #include "xfs_da_format.h"
27 #include "xfs_inode.h"
28 #include "xfs_btree.h"
30 #include "xfs_alloc.h"
31 #include "xfs_error.h"
32 #include "xfs_fsops.h"
33 #include "xfs_trans.h"
34 #include "xfs_buf_item.h"
36 #include "xfs_log_priv.h"
37 #include "xfs_da_btree.h"
39 #include "xfs_extfree_item.h"
40 #include "xfs_mru_cache.h"
41 #include "xfs_inode_item.h"
42 #include "xfs_icache.h"
43 #include "xfs_trace.h"
44 #include "xfs_icreate_item.h"
45 #include "xfs_filestream.h"
46 #include "xfs_quota.h"
47 #include "xfs_sysfs.h"
48 #include "xfs_ondisk.h"
49 #include "xfs_rmap_item.h"
50 #include "xfs_refcount_item.h"
51 #include "xfs_bmap_item.h"
52 #include "xfs_reflink.h"
54 #include <linux/namei.h>
55 #include <linux/dax.h>
56 #include <linux/init.h>
57 #include <linux/slab.h>
58 #include <linux/mount.h>
59 #include <linux/mempool.h>
60 #include <linux/writeback.h>
61 #include <linux/kthread.h>
62 #include <linux/freezer.h>
63 #include <linux/parser.h>
65 static const struct super_operations xfs_super_operations;
66 struct bio_set xfs_ioend_bioset;
68 static struct kset *xfs_kset; /* top-level xfs sysfs dir */
70 static struct xfs_kobj xfs_dbg_kobj; /* global debug sysfs attrs */
74 * Table driven mount option parser.
77 Opt_logbufs, Opt_logbsize, Opt_logdev, Opt_rtdev, Opt_biosize,
78 Opt_wsync, Opt_noalign, Opt_swalloc, Opt_sunit, Opt_swidth, Opt_nouuid,
79 Opt_mtpt, Opt_grpid, Opt_nogrpid, Opt_bsdgroups, Opt_sysvgroups,
80 Opt_allocsize, Opt_norecovery, Opt_barrier, Opt_nobarrier,
81 Opt_inode64, Opt_inode32, Opt_ikeep, Opt_noikeep,
82 Opt_largeio, Opt_nolargeio, Opt_attr2, Opt_noattr2, Opt_filestreams,
83 Opt_quota, Opt_noquota, Opt_usrquota, Opt_grpquota, Opt_prjquota,
84 Opt_uquota, Opt_gquota, Opt_pquota,
85 Opt_uqnoenforce, Opt_gqnoenforce, Opt_pqnoenforce, Opt_qnoenforce,
86 Opt_discard, Opt_nodiscard, Opt_dax, Opt_err,
89 static const match_table_t tokens = {
90 {Opt_logbufs, "logbufs=%u"}, /* number of XFS log buffers */
91 {Opt_logbsize, "logbsize=%s"}, /* size of XFS log buffers */
92 {Opt_logdev, "logdev=%s"}, /* log device */
93 {Opt_rtdev, "rtdev=%s"}, /* realtime I/O device */
94 {Opt_biosize, "biosize=%u"}, /* log2 of preferred buffered io size */
95 {Opt_wsync, "wsync"}, /* safe-mode nfs compatible mount */
96 {Opt_noalign, "noalign"}, /* turn off stripe alignment */
97 {Opt_swalloc, "swalloc"}, /* turn on stripe width allocation */
98 {Opt_sunit, "sunit=%u"}, /* data volume stripe unit */
99 {Opt_swidth, "swidth=%u"}, /* data volume stripe width */
100 {Opt_nouuid, "nouuid"}, /* ignore filesystem UUID */
101 {Opt_mtpt, "mtpt"}, /* filesystem mount point */
102 {Opt_grpid, "grpid"}, /* group-ID from parent directory */
103 {Opt_nogrpid, "nogrpid"}, /* group-ID from current process */
104 {Opt_bsdgroups, "bsdgroups"}, /* group-ID from parent directory */
105 {Opt_sysvgroups,"sysvgroups"}, /* group-ID from current process */
106 {Opt_allocsize, "allocsize=%s"},/* preferred allocation size */
107 {Opt_norecovery,"norecovery"}, /* don't run XFS recovery */
108 {Opt_inode64, "inode64"}, /* inodes can be allocated anywhere */
109 {Opt_inode32, "inode32"}, /* inode allocation limited to
110 * XFS_MAXINUMBER_32 */
111 {Opt_ikeep, "ikeep"}, /* do not free empty inode clusters */
112 {Opt_noikeep, "noikeep"}, /* free empty inode clusters */
113 {Opt_largeio, "largeio"}, /* report large I/O sizes in stat() */
114 {Opt_nolargeio, "nolargeio"}, /* do not report large I/O sizes
116 {Opt_attr2, "attr2"}, /* do use attr2 attribute format */
117 {Opt_noattr2, "noattr2"}, /* do not use attr2 attribute format */
118 {Opt_filestreams,"filestreams"},/* use filestreams allocator */
119 {Opt_quota, "quota"}, /* disk quotas (user) */
120 {Opt_noquota, "noquota"}, /* no quotas */
121 {Opt_usrquota, "usrquota"}, /* user quota enabled */
122 {Opt_grpquota, "grpquota"}, /* group quota enabled */
123 {Opt_prjquota, "prjquota"}, /* project quota enabled */
124 {Opt_uquota, "uquota"}, /* user quota (IRIX variant) */
125 {Opt_gquota, "gquota"}, /* group quota (IRIX variant) */
126 {Opt_pquota, "pquota"}, /* project quota (IRIX variant) */
127 {Opt_uqnoenforce,"uqnoenforce"},/* user quota limit enforcement */
128 {Opt_gqnoenforce,"gqnoenforce"},/* group quota limit enforcement */
129 {Opt_pqnoenforce,"pqnoenforce"},/* project quota limit enforcement */
130 {Opt_qnoenforce, "qnoenforce"}, /* same as uqnoenforce */
131 {Opt_discard, "discard"}, /* Discard unused blocks */
132 {Opt_nodiscard, "nodiscard"}, /* Do not discard unused blocks */
134 {Opt_dax, "dax"}, /* Enable direct access to bdev pages */
136 /* Deprecated mount options scheduled for removal */
137 {Opt_barrier, "barrier"}, /* use writer barriers for log write and
138 * unwritten extent conversion */
139 {Opt_nobarrier, "nobarrier"}, /* .. disable */
146 suffix_kstrtoint(const substring_t *s, unsigned int base, int *res)
148 int last, shift_left_factor = 0, _res;
152 value = match_strdup(s);
156 last = strlen(value) - 1;
157 if (value[last] == 'K' || value[last] == 'k') {
158 shift_left_factor = 10;
161 if (value[last] == 'M' || value[last] == 'm') {
162 shift_left_factor = 20;
165 if (value[last] == 'G' || value[last] == 'g') {
166 shift_left_factor = 30;
170 if (kstrtoint(value, base, &_res))
173 *res = _res << shift_left_factor;
178 * This function fills in xfs_mount_t fields based on mount args.
179 * Note: the superblock has _not_ yet been read in.
181 * Note that this function leaks the various device name allocations on
182 * failure. The caller takes care of them.
184 * *sb is const because this is also used to test options on the remount
185 * path, and we don't want this to have any side effects at remount time.
186 * Today this function does not change *sb, but just to future-proof...
190 struct xfs_mount *mp,
193 const struct super_block *sb = mp->m_super;
195 substring_t args[MAX_OPT_ARGS];
199 uint8_t iosizelog = 0;
202 * set up the mount name first so all the errors will refer to the
205 mp->m_fsname = kstrndup(sb->s_id, MAXNAMELEN, GFP_KERNEL);
208 mp->m_fsname_len = strlen(mp->m_fsname) + 1;
211 * Copy binary VFS mount flags we are interested in.
214 mp->m_flags |= XFS_MOUNT_RDONLY;
215 if (sb->s_flags & SB_DIRSYNC)
216 mp->m_flags |= XFS_MOUNT_DIRSYNC;
217 if (sb->s_flags & SB_SYNCHRONOUS)
218 mp->m_flags |= XFS_MOUNT_WSYNC;
221 * Set some default flags that could be cleared by the mount option
224 mp->m_flags |= XFS_MOUNT_BARRIER;
225 mp->m_flags |= XFS_MOUNT_COMPAT_IOSIZE;
228 * These can be overridden by the mount option parsing.
236 while ((p = strsep(&options, ",")) != NULL) {
242 token = match_token(p, tokens, args);
245 if (match_int(args, &mp->m_logbufs))
249 if (suffix_kstrtoint(args, 10, &mp->m_logbsize))
253 kfree(mp->m_logname);
254 mp->m_logname = match_strdup(args);
259 xfs_warn(mp, "%s option not allowed on this system", p);
263 mp->m_rtname = match_strdup(args);
269 if (suffix_kstrtoint(args, 10, &iosize))
271 iosizelog = ffs(iosize) - 1;
275 mp->m_flags |= XFS_MOUNT_GRPID;
279 mp->m_flags &= ~XFS_MOUNT_GRPID;
282 mp->m_flags |= XFS_MOUNT_WSYNC;
285 mp->m_flags |= XFS_MOUNT_NORECOVERY;
288 mp->m_flags |= XFS_MOUNT_NOALIGN;
291 mp->m_flags |= XFS_MOUNT_SWALLOC;
294 if (match_int(args, &dsunit))
298 if (match_int(args, &dswidth))
302 mp->m_flags |= XFS_MOUNT_SMALL_INUMS;
305 mp->m_flags &= ~XFS_MOUNT_SMALL_INUMS;
308 mp->m_flags |= XFS_MOUNT_NOUUID;
311 mp->m_flags |= XFS_MOUNT_IKEEP;
314 mp->m_flags &= ~XFS_MOUNT_IKEEP;
317 mp->m_flags &= ~XFS_MOUNT_COMPAT_IOSIZE;
320 mp->m_flags |= XFS_MOUNT_COMPAT_IOSIZE;
323 mp->m_flags |= XFS_MOUNT_ATTR2;
326 mp->m_flags &= ~XFS_MOUNT_ATTR2;
327 mp->m_flags |= XFS_MOUNT_NOATTR2;
329 case Opt_filestreams:
330 mp->m_flags |= XFS_MOUNT_FILESTREAMS;
333 mp->m_qflags &= ~XFS_ALL_QUOTA_ACCT;
334 mp->m_qflags &= ~XFS_ALL_QUOTA_ENFD;
335 mp->m_qflags &= ~XFS_ALL_QUOTA_ACTIVE;
340 mp->m_qflags |= (XFS_UQUOTA_ACCT | XFS_UQUOTA_ACTIVE |
344 case Opt_uqnoenforce:
345 mp->m_qflags |= (XFS_UQUOTA_ACCT | XFS_UQUOTA_ACTIVE);
346 mp->m_qflags &= ~XFS_UQUOTA_ENFD;
350 mp->m_qflags |= (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE |
353 case Opt_pqnoenforce:
354 mp->m_qflags |= (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE);
355 mp->m_qflags &= ~XFS_PQUOTA_ENFD;
359 mp->m_qflags |= (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE |
362 case Opt_gqnoenforce:
363 mp->m_qflags |= (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE);
364 mp->m_qflags &= ~XFS_GQUOTA_ENFD;
367 mp->m_flags |= XFS_MOUNT_DISCARD;
370 mp->m_flags &= ~XFS_MOUNT_DISCARD;
374 mp->m_flags |= XFS_MOUNT_DAX;
378 xfs_warn(mp, "%s option is deprecated, ignoring.", p);
379 mp->m_flags |= XFS_MOUNT_BARRIER;
382 xfs_warn(mp, "%s option is deprecated, ignoring.", p);
383 mp->m_flags &= ~XFS_MOUNT_BARRIER;
386 xfs_warn(mp, "unknown mount option [%s].", p);
392 * no recovery flag requires a read-only mount
394 if ((mp->m_flags & XFS_MOUNT_NORECOVERY) &&
395 !(mp->m_flags & XFS_MOUNT_RDONLY)) {
396 xfs_warn(mp, "no-recovery mounts must be read-only.");
400 if ((mp->m_flags & XFS_MOUNT_NOALIGN) && (dsunit || dswidth)) {
402 "sunit and swidth options incompatible with the noalign option");
406 #ifndef CONFIG_XFS_QUOTA
407 if (XFS_IS_QUOTA_RUNNING(mp)) {
408 xfs_warn(mp, "quota support not available in this kernel.");
413 if ((dsunit && !dswidth) || (!dsunit && dswidth)) {
414 xfs_warn(mp, "sunit and swidth must be specified together");
418 if (dsunit && (dswidth % dsunit != 0)) {
420 "stripe width (%d) must be a multiple of the stripe unit (%d)",
426 if (dsunit && !(mp->m_flags & XFS_MOUNT_NOALIGN)) {
428 * At this point the superblock has not been read
429 * in, therefore we do not know the block size.
430 * Before the mount call ends we will convert
433 mp->m_dalign = dsunit;
434 mp->m_swidth = dswidth;
437 if (mp->m_logbufs != -1 &&
438 mp->m_logbufs != 0 &&
439 (mp->m_logbufs < XLOG_MIN_ICLOGS ||
440 mp->m_logbufs > XLOG_MAX_ICLOGS)) {
441 xfs_warn(mp, "invalid logbufs value: %d [not %d-%d]",
442 mp->m_logbufs, XLOG_MIN_ICLOGS, XLOG_MAX_ICLOGS);
445 if (mp->m_logbsize != -1 &&
446 mp->m_logbsize != 0 &&
447 (mp->m_logbsize < XLOG_MIN_RECORD_BSIZE ||
448 mp->m_logbsize > XLOG_MAX_RECORD_BSIZE ||
449 !is_power_of_2(mp->m_logbsize))) {
451 "invalid logbufsize: %d [not 16k,32k,64k,128k or 256k]",
457 if (iosizelog > XFS_MAX_IO_LOG ||
458 iosizelog < XFS_MIN_IO_LOG) {
459 xfs_warn(mp, "invalid log iosize: %d [not %d-%d]",
460 iosizelog, XFS_MIN_IO_LOG,
465 mp->m_flags |= XFS_MOUNT_DFLT_IOSIZE;
466 mp->m_readio_log = iosizelog;
467 mp->m_writeio_log = iosizelog;
473 struct proc_xfs_info {
480 struct xfs_mount *mp,
483 static struct proc_xfs_info xfs_info_set[] = {
484 /* the few simple ones we can get from the mount struct */
485 { XFS_MOUNT_IKEEP, ",ikeep" },
486 { XFS_MOUNT_WSYNC, ",wsync" },
487 { XFS_MOUNT_NOALIGN, ",noalign" },
488 { XFS_MOUNT_SWALLOC, ",swalloc" },
489 { XFS_MOUNT_NOUUID, ",nouuid" },
490 { XFS_MOUNT_NORECOVERY, ",norecovery" },
491 { XFS_MOUNT_ATTR2, ",attr2" },
492 { XFS_MOUNT_FILESTREAMS, ",filestreams" },
493 { XFS_MOUNT_GRPID, ",grpid" },
494 { XFS_MOUNT_DISCARD, ",discard" },
495 { XFS_MOUNT_SMALL_INUMS, ",inode32" },
496 { XFS_MOUNT_DAX, ",dax" },
499 static struct proc_xfs_info xfs_info_unset[] = {
500 /* the few simple ones we can get from the mount struct */
501 { XFS_MOUNT_COMPAT_IOSIZE, ",largeio" },
502 { XFS_MOUNT_BARRIER, ",nobarrier" },
503 { XFS_MOUNT_SMALL_INUMS, ",inode64" },
506 struct proc_xfs_info *xfs_infop;
508 for (xfs_infop = xfs_info_set; xfs_infop->flag; xfs_infop++) {
509 if (mp->m_flags & xfs_infop->flag)
510 seq_puts(m, xfs_infop->str);
512 for (xfs_infop = xfs_info_unset; xfs_infop->flag; xfs_infop++) {
513 if (!(mp->m_flags & xfs_infop->flag))
514 seq_puts(m, xfs_infop->str);
517 if (mp->m_flags & XFS_MOUNT_DFLT_IOSIZE)
518 seq_printf(m, ",allocsize=%dk",
519 (int)(1 << mp->m_writeio_log) >> 10);
521 if (mp->m_logbufs > 0)
522 seq_printf(m, ",logbufs=%d", mp->m_logbufs);
523 if (mp->m_logbsize > 0)
524 seq_printf(m, ",logbsize=%dk", mp->m_logbsize >> 10);
527 seq_show_option(m, "logdev", mp->m_logname);
529 seq_show_option(m, "rtdev", mp->m_rtname);
531 if (mp->m_dalign > 0)
532 seq_printf(m, ",sunit=%d",
533 (int)XFS_FSB_TO_BB(mp, mp->m_dalign));
534 if (mp->m_swidth > 0)
535 seq_printf(m, ",swidth=%d",
536 (int)XFS_FSB_TO_BB(mp, mp->m_swidth));
538 if (mp->m_qflags & (XFS_UQUOTA_ACCT|XFS_UQUOTA_ENFD))
539 seq_puts(m, ",usrquota");
540 else if (mp->m_qflags & XFS_UQUOTA_ACCT)
541 seq_puts(m, ",uqnoenforce");
543 if (mp->m_qflags & XFS_PQUOTA_ACCT) {
544 if (mp->m_qflags & XFS_PQUOTA_ENFD)
545 seq_puts(m, ",prjquota");
547 seq_puts(m, ",pqnoenforce");
549 if (mp->m_qflags & XFS_GQUOTA_ACCT) {
550 if (mp->m_qflags & XFS_GQUOTA_ENFD)
551 seq_puts(m, ",grpquota");
553 seq_puts(m, ",gqnoenforce");
556 if (!(mp->m_qflags & XFS_ALL_QUOTA_ACCT))
557 seq_puts(m, ",noquota");
563 unsigned int blockshift)
565 unsigned int pagefactor = 1;
566 unsigned int bitshift = BITS_PER_LONG - 1;
568 /* Figure out maximum filesize, on Linux this can depend on
569 * the filesystem blocksize (on 32 bit platforms).
570 * __block_write_begin does this in an [unsigned] long...
571 * page->index << (PAGE_SHIFT - bbits)
572 * So, for page sized blocks (4K on 32 bit platforms),
573 * this wraps at around 8Tb (hence MAX_LFS_FILESIZE which is
574 * (((u64)PAGE_SIZE << (BITS_PER_LONG-1))-1)
575 * but for smaller blocksizes it is less (bbits = log2 bsize).
576 * Note1: get_block_t takes a long (implicit cast from above)
577 * Note2: The Large Block Device (LBD and HAVE_SECTOR_T) patch
578 * can optionally convert the [unsigned] long from above into
579 * an [unsigned] long long.
582 #if BITS_PER_LONG == 32
583 # if defined(CONFIG_LBDAF)
584 ASSERT(sizeof(sector_t) == 8);
585 pagefactor = PAGE_SIZE;
586 bitshift = BITS_PER_LONG;
588 pagefactor = PAGE_SIZE >> (PAGE_SHIFT - blockshift);
592 return (((uint64_t)pagefactor) << bitshift) - 1;
596 * Set parameters for inode allocation heuristics, taking into account
597 * filesystem size and inode32/inode64 mount options; i.e. specifically
598 * whether or not XFS_MOUNT_SMALL_INUMS is set.
600 * Inode allocation patterns are altered only if inode32 is requested
601 * (XFS_MOUNT_SMALL_INUMS), and the filesystem is sufficiently large.
602 * If altered, XFS_MOUNT_32BITINODES is set as well.
604 * An agcount independent of that in the mount structure is provided
605 * because in the growfs case, mp->m_sb.sb_agcount is not yet updated
606 * to the potentially higher ag count.
608 * Returns the maximum AG index which may contain inodes.
612 struct xfs_mount *mp,
613 xfs_agnumber_t agcount)
615 xfs_agnumber_t index;
616 xfs_agnumber_t maxagi = 0;
617 xfs_sb_t *sbp = &mp->m_sb;
618 xfs_agnumber_t max_metadata;
623 * Calculate how much should be reserved for inodes to meet
624 * the max inode percentage. Used only for inode32.
626 if (mp->m_maxicount) {
629 icount = sbp->sb_dblocks * sbp->sb_imax_pct;
631 icount += sbp->sb_agblocks - 1;
632 do_div(icount, sbp->sb_agblocks);
633 max_metadata = icount;
635 max_metadata = agcount;
638 /* Get the last possible inode in the filesystem */
639 agino = XFS_OFFBNO_TO_AGINO(mp, sbp->sb_agblocks - 1, 0);
640 ino = XFS_AGINO_TO_INO(mp, agcount - 1, agino);
643 * If user asked for no more than 32-bit inodes, and the fs is
644 * sufficiently large, set XFS_MOUNT_32BITINODES if we must alter
645 * the allocator to accommodate the request.
647 if ((mp->m_flags & XFS_MOUNT_SMALL_INUMS) && ino > XFS_MAXINUMBER_32)
648 mp->m_flags |= XFS_MOUNT_32BITINODES;
650 mp->m_flags &= ~XFS_MOUNT_32BITINODES;
652 for (index = 0; index < agcount; index++) {
653 struct xfs_perag *pag;
655 ino = XFS_AGINO_TO_INO(mp, index, agino);
657 pag = xfs_perag_get(mp, index);
659 if (mp->m_flags & XFS_MOUNT_32BITINODES) {
660 if (ino > XFS_MAXINUMBER_32) {
661 pag->pagi_inodeok = 0;
662 pag->pagf_metadata = 0;
664 pag->pagi_inodeok = 1;
666 if (index < max_metadata)
667 pag->pagf_metadata = 1;
669 pag->pagf_metadata = 0;
672 pag->pagi_inodeok = 1;
673 pag->pagf_metadata = 0;
679 return (mp->m_flags & XFS_MOUNT_32BITINODES) ? maxagi : agcount;
686 struct block_device **bdevp)
690 *bdevp = blkdev_get_by_path(name, FMODE_READ|FMODE_WRITE|FMODE_EXCL,
692 if (IS_ERR(*bdevp)) {
693 error = PTR_ERR(*bdevp);
694 xfs_warn(mp, "Invalid device [%s], error=%d", name, error);
702 struct block_device *bdev)
705 blkdev_put(bdev, FMODE_READ|FMODE_WRITE|FMODE_EXCL);
709 xfs_blkdev_issue_flush(
710 xfs_buftarg_t *buftarg)
712 blkdev_issue_flush(buftarg->bt_bdev, GFP_NOFS, NULL);
717 struct xfs_mount *mp)
719 struct dax_device *dax_ddev = mp->m_ddev_targp->bt_daxdev;
721 if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) {
722 struct block_device *logdev = mp->m_logdev_targp->bt_bdev;
723 struct dax_device *dax_logdev = mp->m_logdev_targp->bt_daxdev;
725 xfs_free_buftarg(mp->m_logdev_targp);
726 xfs_blkdev_put(logdev);
727 fs_put_dax(dax_logdev);
729 if (mp->m_rtdev_targp) {
730 struct block_device *rtdev = mp->m_rtdev_targp->bt_bdev;
731 struct dax_device *dax_rtdev = mp->m_rtdev_targp->bt_daxdev;
733 xfs_free_buftarg(mp->m_rtdev_targp);
734 xfs_blkdev_put(rtdev);
735 fs_put_dax(dax_rtdev);
737 xfs_free_buftarg(mp->m_ddev_targp);
738 fs_put_dax(dax_ddev);
742 * The file system configurations are:
743 * (1) device (partition) with data and internal log
744 * (2) logical volume with data and log subvolumes.
745 * (3) logical volume with data, log, and realtime subvolumes.
747 * We only have to handle opening the log and realtime volumes here if
748 * they are present. The data subvolume has already been opened by
749 * get_sb_bdev() and is stored in sb->s_bdev.
753 struct xfs_mount *mp)
755 struct block_device *ddev = mp->m_super->s_bdev;
756 struct dax_device *dax_ddev = fs_dax_get_by_bdev(ddev);
757 struct dax_device *dax_logdev = NULL, *dax_rtdev = NULL;
758 struct block_device *logdev = NULL, *rtdev = NULL;
762 * Open real time and log devices - order is important.
765 error = xfs_blkdev_get(mp, mp->m_logname, &logdev);
768 dax_logdev = fs_dax_get_by_bdev(logdev);
772 error = xfs_blkdev_get(mp, mp->m_rtname, &rtdev);
774 goto out_close_logdev;
776 if (rtdev == ddev || rtdev == logdev) {
778 "Cannot mount filesystem with identical rtdev and ddev/logdev.");
780 goto out_close_rtdev;
782 dax_rtdev = fs_dax_get_by_bdev(rtdev);
786 * Setup xfs_mount buffer target pointers
789 mp->m_ddev_targp = xfs_alloc_buftarg(mp, ddev, dax_ddev);
790 if (!mp->m_ddev_targp)
791 goto out_close_rtdev;
794 mp->m_rtdev_targp = xfs_alloc_buftarg(mp, rtdev, dax_rtdev);
795 if (!mp->m_rtdev_targp)
796 goto out_free_ddev_targ;
799 if (logdev && logdev != ddev) {
800 mp->m_logdev_targp = xfs_alloc_buftarg(mp, logdev, dax_logdev);
801 if (!mp->m_logdev_targp)
802 goto out_free_rtdev_targ;
804 mp->m_logdev_targp = mp->m_ddev_targp;
810 if (mp->m_rtdev_targp)
811 xfs_free_buftarg(mp->m_rtdev_targp);
813 xfs_free_buftarg(mp->m_ddev_targp);
815 xfs_blkdev_put(rtdev);
816 fs_put_dax(dax_rtdev);
818 if (logdev && logdev != ddev) {
819 xfs_blkdev_put(logdev);
820 fs_put_dax(dax_logdev);
823 fs_put_dax(dax_ddev);
828 * Setup xfs_mount buffer target pointers based on superblock
832 struct xfs_mount *mp)
836 error = xfs_setsize_buftarg(mp->m_ddev_targp, mp->m_sb.sb_sectsize);
840 if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) {
841 unsigned int log_sector_size = BBSIZE;
843 if (xfs_sb_version_hassector(&mp->m_sb))
844 log_sector_size = mp->m_sb.sb_logsectsize;
845 error = xfs_setsize_buftarg(mp->m_logdev_targp,
850 if (mp->m_rtdev_targp) {
851 error = xfs_setsize_buftarg(mp->m_rtdev_targp,
852 mp->m_sb.sb_sectsize);
861 xfs_init_mount_workqueues(
862 struct xfs_mount *mp)
864 mp->m_buf_workqueue = alloc_workqueue("xfs-buf/%s",
865 WQ_MEM_RECLAIM|WQ_FREEZABLE, 1, mp->m_fsname);
866 if (!mp->m_buf_workqueue)
869 mp->m_data_workqueue = alloc_workqueue("xfs-data/%s",
870 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0, mp->m_fsname);
871 if (!mp->m_data_workqueue)
872 goto out_destroy_buf;
874 mp->m_unwritten_workqueue = alloc_workqueue("xfs-conv/%s",
875 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0, mp->m_fsname);
876 if (!mp->m_unwritten_workqueue)
877 goto out_destroy_data_iodone_queue;
879 mp->m_cil_workqueue = alloc_workqueue("xfs-cil/%s",
880 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0, mp->m_fsname);
881 if (!mp->m_cil_workqueue)
882 goto out_destroy_unwritten;
884 mp->m_reclaim_workqueue = alloc_workqueue("xfs-reclaim/%s",
885 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0, mp->m_fsname);
886 if (!mp->m_reclaim_workqueue)
887 goto out_destroy_cil;
889 mp->m_log_workqueue = alloc_workqueue("xfs-log/%s",
890 WQ_MEM_RECLAIM|WQ_FREEZABLE|WQ_HIGHPRI, 0,
892 if (!mp->m_log_workqueue)
893 goto out_destroy_reclaim;
895 mp->m_eofblocks_workqueue = alloc_workqueue("xfs-eofblocks/%s",
896 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0, mp->m_fsname);
897 if (!mp->m_eofblocks_workqueue)
898 goto out_destroy_log;
900 mp->m_sync_workqueue = alloc_workqueue("xfs-sync/%s", WQ_FREEZABLE, 0,
902 if (!mp->m_sync_workqueue)
903 goto out_destroy_eofb;
908 destroy_workqueue(mp->m_eofblocks_workqueue);
910 destroy_workqueue(mp->m_log_workqueue);
912 destroy_workqueue(mp->m_reclaim_workqueue);
914 destroy_workqueue(mp->m_cil_workqueue);
915 out_destroy_unwritten:
916 destroy_workqueue(mp->m_unwritten_workqueue);
917 out_destroy_data_iodone_queue:
918 destroy_workqueue(mp->m_data_workqueue);
920 destroy_workqueue(mp->m_buf_workqueue);
926 xfs_destroy_mount_workqueues(
927 struct xfs_mount *mp)
929 destroy_workqueue(mp->m_sync_workqueue);
930 destroy_workqueue(mp->m_eofblocks_workqueue);
931 destroy_workqueue(mp->m_log_workqueue);
932 destroy_workqueue(mp->m_reclaim_workqueue);
933 destroy_workqueue(mp->m_cil_workqueue);
934 destroy_workqueue(mp->m_data_workqueue);
935 destroy_workqueue(mp->m_unwritten_workqueue);
936 destroy_workqueue(mp->m_buf_workqueue);
940 * Flush all dirty data to disk. Must not be called while holding an XFS_ILOCK
941 * or a page lock. We use sync_inodes_sb() here to ensure we block while waiting
942 * for IO to complete so that we effectively throttle multiple callers to the
943 * rate at which IO is completing.
947 struct xfs_mount *mp)
949 struct super_block *sb = mp->m_super;
951 if (down_read_trylock(&sb->s_umount)) {
953 up_read(&sb->s_umount);
957 /* Catch misguided souls that try to use this interface on XFS */
958 STATIC struct inode *
960 struct super_block *sb)
967 * Now that the generic code is guaranteed not to be accessing
968 * the linux inode, we can inactivate and reclaim the inode.
971 xfs_fs_destroy_inode(
974 struct xfs_inode *ip = XFS_I(inode);
976 trace_xfs_destroy_inode(ip);
978 ASSERT(!rwsem_is_locked(&inode->i_rwsem));
979 XFS_STATS_INC(ip->i_mount, vn_rele);
980 XFS_STATS_INC(ip->i_mount, vn_remove);
984 ASSERT(XFS_FORCED_SHUTDOWN(ip->i_mount) || ip->i_delayed_blks == 0);
985 XFS_STATS_INC(ip->i_mount, vn_reclaim);
988 * We should never get here with one of the reclaim flags already set.
990 ASSERT_ALWAYS(!xfs_iflags_test(ip, XFS_IRECLAIMABLE));
991 ASSERT_ALWAYS(!xfs_iflags_test(ip, XFS_IRECLAIM));
994 * We always use background reclaim here because even if the
995 * inode is clean, it still may be under IO and hence we have
996 * to take the flush lock. The background reclaim path handles
997 * this more efficiently than we can here, so simply let background
998 * reclaim tear down all inodes.
1000 xfs_inode_set_reclaim_tag(ip);
1005 struct inode *inode,
1008 struct xfs_inode *ip = XFS_I(inode);
1009 struct xfs_mount *mp = ip->i_mount;
1010 struct xfs_trans *tp;
1012 if (!(inode->i_sb->s_flags & SB_LAZYTIME))
1014 if (flag != I_DIRTY_SYNC || !(inode->i_state & I_DIRTY_TIME))
1017 if (xfs_trans_alloc(mp, &M_RES(mp)->tr_fsyncts, 0, 0, 0, &tp))
1019 xfs_ilock(ip, XFS_ILOCK_EXCL);
1020 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
1021 xfs_trans_log_inode(tp, ip, XFS_ILOG_TIMESTAMP);
1022 xfs_trans_commit(tp);
1026 * Slab object creation initialisation for the XFS inode.
1027 * This covers only the idempotent fields in the XFS inode;
1028 * all other fields need to be initialised on allocation
1029 * from the slab. This avoids the need to repeatedly initialise
1030 * fields in the xfs inode that left in the initialise state
1031 * when freeing the inode.
1034 xfs_fs_inode_init_once(
1037 struct xfs_inode *ip = inode;
1039 memset(ip, 0, sizeof(struct xfs_inode));
1042 inode_init_once(VFS_I(ip));
1045 atomic_set(&ip->i_pincount, 0);
1046 spin_lock_init(&ip->i_flags_lock);
1048 mrlock_init(&ip->i_mmaplock, MRLOCK_ALLOW_EQUAL_PRI|MRLOCK_BARRIER,
1049 "xfsino", ip->i_ino);
1050 mrlock_init(&ip->i_lock, MRLOCK_ALLOW_EQUAL_PRI|MRLOCK_BARRIER,
1051 "xfsino", ip->i_ino);
1055 * We do an unlocked check for XFS_IDONTCACHE here because we are already
1056 * serialised against cache hits here via the inode->i_lock and igrab() in
1057 * xfs_iget_cache_hit(). Hence a lookup that might clear this flag will not be
1058 * racing with us, and it avoids needing to grab a spinlock here for every inode
1059 * we drop the final reference on.
1063 struct inode *inode)
1065 struct xfs_inode *ip = XFS_I(inode);
1068 * If this unlinked inode is in the middle of recovery, don't
1069 * drop the inode just yet; log recovery will take care of
1070 * that. See the comment for this inode flag.
1072 if (ip->i_flags & XFS_IRECOVERY) {
1073 ASSERT(ip->i_mount->m_log->l_flags & XLOG_RECOVERY_NEEDED);
1077 return generic_drop_inode(inode) || (ip->i_flags & XFS_IDONTCACHE);
1082 struct xfs_mount *mp)
1084 kfree(mp->m_fsname);
1085 kfree(mp->m_rtname);
1086 kfree(mp->m_logname);
1091 struct super_block *sb,
1094 struct xfs_mount *mp = XFS_M(sb);
1097 * Doing anything during the async pass would be counterproductive.
1102 xfs_log_force(mp, XFS_LOG_SYNC);
1105 * The disk must be active because we're syncing.
1106 * We schedule log work now (now that the disk is
1107 * active) instead of later (when it might not be).
1109 flush_delayed_work(&mp->m_log->l_work);
1117 struct dentry *dentry,
1118 struct kstatfs *statp)
1120 struct xfs_mount *mp = XFS_M(dentry->d_sb);
1121 xfs_sb_t *sbp = &mp->m_sb;
1122 struct xfs_inode *ip = XFS_I(d_inode(dentry));
1123 uint64_t fakeinos, id;
1130 statp->f_type = XFS_SB_MAGIC;
1131 statp->f_namelen = MAXNAMELEN - 1;
1133 id = huge_encode_dev(mp->m_ddev_targp->bt_dev);
1134 statp->f_fsid.val[0] = (u32)id;
1135 statp->f_fsid.val[1] = (u32)(id >> 32);
1137 icount = percpu_counter_sum(&mp->m_icount);
1138 ifree = percpu_counter_sum(&mp->m_ifree);
1139 fdblocks = percpu_counter_sum(&mp->m_fdblocks);
1141 spin_lock(&mp->m_sb_lock);
1142 statp->f_bsize = sbp->sb_blocksize;
1143 lsize = sbp->sb_logstart ? sbp->sb_logblocks : 0;
1144 statp->f_blocks = sbp->sb_dblocks - lsize;
1145 spin_unlock(&mp->m_sb_lock);
1147 statp->f_bfree = fdblocks - mp->m_alloc_set_aside;
1148 statp->f_bavail = statp->f_bfree;
1150 fakeinos = statp->f_bfree << sbp->sb_inopblog;
1151 statp->f_files = MIN(icount + fakeinos, (uint64_t)XFS_MAXINUMBER);
1152 if (mp->m_maxicount)
1153 statp->f_files = min_t(typeof(statp->f_files),
1157 /* If sb_icount overshot maxicount, report actual allocation */
1158 statp->f_files = max_t(typeof(statp->f_files),
1162 /* make sure statp->f_ffree does not underflow */
1163 ffree = statp->f_files - (icount - ifree);
1164 statp->f_ffree = max_t(int64_t, ffree, 0);
1167 if ((ip->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
1168 ((mp->m_qflags & (XFS_PQUOTA_ACCT|XFS_PQUOTA_ENFD))) ==
1169 (XFS_PQUOTA_ACCT|XFS_PQUOTA_ENFD))
1170 xfs_qm_statvfs(ip, statp);
1172 if (XFS_IS_REALTIME_MOUNT(mp) &&
1173 (ip->i_d.di_flags & (XFS_DIFLAG_RTINHERIT | XFS_DIFLAG_REALTIME))) {
1174 statp->f_blocks = sbp->sb_rblocks;
1175 statp->f_bavail = statp->f_bfree =
1176 sbp->sb_frextents * sbp->sb_rextsize;
1183 xfs_save_resvblks(struct xfs_mount *mp)
1185 uint64_t resblks = 0;
1187 mp->m_resblks_save = mp->m_resblks;
1188 xfs_reserve_blocks(mp, &resblks, NULL);
1192 xfs_restore_resvblks(struct xfs_mount *mp)
1196 if (mp->m_resblks_save) {
1197 resblks = mp->m_resblks_save;
1198 mp->m_resblks_save = 0;
1200 resblks = xfs_default_resblks(mp);
1202 xfs_reserve_blocks(mp, &resblks, NULL);
1206 * Trigger writeback of all the dirty metadata in the file system.
1208 * This ensures that the metadata is written to their location on disk rather
1209 * than just existing in transactions in the log. This means after a quiesce
1210 * there is no log replay required to write the inodes to disk - this is the
1211 * primary difference between a sync and a quiesce.
1213 * Note: xfs_log_quiesce() stops background log work - the callers must ensure
1214 * it is started again when appropriate.
1218 struct xfs_mount *mp)
1222 /* wait for all modifications to complete */
1223 while (atomic_read(&mp->m_active_trans) > 0)
1226 /* force the log to unpin objects from the now complete transactions */
1227 xfs_log_force(mp, XFS_LOG_SYNC);
1229 /* reclaim inodes to do any IO before the freeze completes */
1230 xfs_reclaim_inodes(mp, 0);
1231 xfs_reclaim_inodes(mp, SYNC_WAIT);
1233 /* Push the superblock and write an unmount record */
1234 error = xfs_log_sbcount(mp);
1236 xfs_warn(mp, "xfs_attr_quiesce: failed to log sb changes. "
1237 "Frozen image may not be consistent.");
1239 * Just warn here till VFS can correctly support
1240 * read-only remount without racing.
1242 WARN_ON(atomic_read(&mp->m_active_trans) != 0);
1244 xfs_log_quiesce(mp);
1248 xfs_test_remount_options(
1249 struct super_block *sb,
1253 struct xfs_mount *tmp_mp;
1255 tmp_mp = kmem_zalloc(sizeof(*tmp_mp), KM_MAYFAIL);
1259 tmp_mp->m_super = sb;
1260 error = xfs_parseargs(tmp_mp, options);
1261 xfs_free_fsname(tmp_mp);
1269 struct super_block *sb,
1273 struct xfs_mount *mp = XFS_M(sb);
1274 xfs_sb_t *sbp = &mp->m_sb;
1275 substring_t args[MAX_OPT_ARGS];
1279 /* First, check for complete junk; i.e. invalid options */
1280 error = xfs_test_remount_options(sb, options);
1284 sync_filesystem(sb);
1285 while ((p = strsep(&options, ",")) != NULL) {
1291 token = match_token(p, tokens, args);
1294 xfs_warn(mp, "%s option is deprecated, ignoring.", p);
1295 mp->m_flags |= XFS_MOUNT_BARRIER;
1298 xfs_warn(mp, "%s option is deprecated, ignoring.", p);
1299 mp->m_flags &= ~XFS_MOUNT_BARRIER;
1302 mp->m_flags &= ~XFS_MOUNT_SMALL_INUMS;
1303 mp->m_maxagi = xfs_set_inode_alloc(mp, sbp->sb_agcount);
1306 mp->m_flags |= XFS_MOUNT_SMALL_INUMS;
1307 mp->m_maxagi = xfs_set_inode_alloc(mp, sbp->sb_agcount);
1311 * Logically we would return an error here to prevent
1312 * users from believing they might have changed
1313 * mount options using remount which can't be changed.
1315 * But unfortunately mount(8) adds all options from
1316 * mtab and fstab to the mount arguments in some cases
1317 * so we can't blindly reject options, but have to
1318 * check for each specified option if it actually
1319 * differs from the currently set option and only
1320 * reject it if that's the case.
1322 * Until that is implemented we return success for
1323 * every remount request, and silently ignore all
1324 * options that we can't actually change.
1328 "mount option \"%s\" not supported for remount", p);
1337 if ((mp->m_flags & XFS_MOUNT_RDONLY) && !(*flags & SB_RDONLY)) {
1338 if (mp->m_flags & XFS_MOUNT_NORECOVERY) {
1340 "ro->rw transition prohibited on norecovery mount");
1344 if (XFS_SB_VERSION_NUM(sbp) == XFS_SB_VERSION_5 &&
1345 xfs_sb_has_ro_compat_feature(sbp,
1346 XFS_SB_FEAT_RO_COMPAT_UNKNOWN)) {
1348 "ro->rw transition prohibited on unknown (0x%x) ro-compat filesystem",
1349 (sbp->sb_features_ro_compat &
1350 XFS_SB_FEAT_RO_COMPAT_UNKNOWN));
1354 mp->m_flags &= ~XFS_MOUNT_RDONLY;
1357 * If this is the first remount to writeable state we
1358 * might have some superblock changes to update.
1360 if (mp->m_update_sb) {
1361 error = xfs_sync_sb(mp, false);
1363 xfs_warn(mp, "failed to write sb changes");
1366 mp->m_update_sb = false;
1370 * Fill out the reserve pool if it is empty. Use the stashed
1371 * value if it is non-zero, otherwise go with the default.
1373 xfs_restore_resvblks(mp);
1374 xfs_log_work_queue(mp);
1376 /* Recover any CoW blocks that never got remapped. */
1377 error = xfs_reflink_recover_cow(mp);
1380 "Error %d recovering leftover CoW allocations.", error);
1381 xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
1384 xfs_icache_enable_reclaim(mp);
1386 /* Create the per-AG metadata reservation pool .*/
1387 error = xfs_fs_reserve_ag_blocks(mp);
1388 if (error && error != -ENOSPC)
1393 if (!(mp->m_flags & XFS_MOUNT_RDONLY) && (*flags & SB_RDONLY)) {
1395 * Cancel background eofb scanning so it cannot race with the
1396 * final log force+buftarg wait and deadlock the remount.
1398 xfs_icache_disable_reclaim(mp);
1400 /* Get rid of any leftover CoW reservations... */
1401 error = xfs_icache_free_cowblocks(mp, NULL);
1403 xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
1407 /* Free the per-AG metadata reservation pool. */
1408 error = xfs_fs_unreserve_ag_blocks(mp);
1410 xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
1415 * Before we sync the metadata, we need to free up the reserve
1416 * block pool so that the used block count in the superblock on
1417 * disk is correct at the end of the remount. Stash the current
1418 * reserve pool size so that if we get remounted rw, we can
1419 * return it to the same size.
1421 xfs_save_resvblks(mp);
1423 xfs_quiesce_attr(mp);
1424 mp->m_flags |= XFS_MOUNT_RDONLY;
1431 * Second stage of a freeze. The data is already frozen so we only
1432 * need to take care of the metadata. Once that's done sync the superblock
1433 * to the log to dirty it in case of a crash while frozen. This ensures that we
1434 * will recover the unlinked inode lists on the next mount.
1438 struct super_block *sb)
1440 struct xfs_mount *mp = XFS_M(sb);
1442 xfs_icache_disable_reclaim(mp);
1443 xfs_save_resvblks(mp);
1444 xfs_quiesce_attr(mp);
1445 return xfs_sync_sb(mp, true);
1450 struct super_block *sb)
1452 struct xfs_mount *mp = XFS_M(sb);
1454 xfs_restore_resvblks(mp);
1455 xfs_log_work_queue(mp);
1456 xfs_icache_enable_reclaim(mp);
1461 xfs_fs_show_options(
1463 struct dentry *root)
1465 return xfs_showargs(XFS_M(root->d_sb), m);
1469 * This function fills in xfs_mount_t fields based on mount args.
1470 * Note: the superblock _has_ now been read in.
1474 struct xfs_mount *mp)
1476 int ronly = (mp->m_flags & XFS_MOUNT_RDONLY);
1478 /* Fail a mount where the logbuf is smaller than the log stripe */
1479 if (xfs_sb_version_haslogv2(&mp->m_sb)) {
1480 if (mp->m_logbsize <= 0 &&
1481 mp->m_sb.sb_logsunit > XLOG_BIG_RECORD_BSIZE) {
1482 mp->m_logbsize = mp->m_sb.sb_logsunit;
1483 } else if (mp->m_logbsize > 0 &&
1484 mp->m_logbsize < mp->m_sb.sb_logsunit) {
1486 "logbuf size must be greater than or equal to log stripe size");
1490 /* Fail a mount if the logbuf is larger than 32K */
1491 if (mp->m_logbsize > XLOG_BIG_RECORD_BSIZE) {
1493 "logbuf size for version 1 logs must be 16K or 32K");
1499 * V5 filesystems always use attr2 format for attributes.
1501 if (xfs_sb_version_hascrc(&mp->m_sb) &&
1502 (mp->m_flags & XFS_MOUNT_NOATTR2)) {
1503 xfs_warn(mp, "Cannot mount a V5 filesystem as noattr2. "
1504 "attr2 is always enabled for V5 filesystems.");
1509 * mkfs'ed attr2 will turn on attr2 mount unless explicitly
1510 * told by noattr2 to turn it off
1512 if (xfs_sb_version_hasattr2(&mp->m_sb) &&
1513 !(mp->m_flags & XFS_MOUNT_NOATTR2))
1514 mp->m_flags |= XFS_MOUNT_ATTR2;
1517 * prohibit r/w mounts of read-only filesystems
1519 if ((mp->m_sb.sb_flags & XFS_SBF_READONLY) && !ronly) {
1521 "cannot mount a read-only filesystem as read-write");
1525 if ((mp->m_qflags & (XFS_GQUOTA_ACCT | XFS_GQUOTA_ACTIVE)) &&
1526 (mp->m_qflags & (XFS_PQUOTA_ACCT | XFS_PQUOTA_ACTIVE)) &&
1527 !xfs_sb_version_has_pquotino(&mp->m_sb)) {
1529 "Super block does not support project and group quota together");
1537 xfs_init_percpu_counters(
1538 struct xfs_mount *mp)
1542 error = percpu_counter_init(&mp->m_icount, 0, GFP_KERNEL);
1546 error = percpu_counter_init(&mp->m_ifree, 0, GFP_KERNEL);
1550 error = percpu_counter_init(&mp->m_fdblocks, 0, GFP_KERNEL);
1557 percpu_counter_destroy(&mp->m_ifree);
1559 percpu_counter_destroy(&mp->m_icount);
1564 xfs_reinit_percpu_counters(
1565 struct xfs_mount *mp)
1567 percpu_counter_set(&mp->m_icount, mp->m_sb.sb_icount);
1568 percpu_counter_set(&mp->m_ifree, mp->m_sb.sb_ifree);
1569 percpu_counter_set(&mp->m_fdblocks, mp->m_sb.sb_fdblocks);
1573 xfs_destroy_percpu_counters(
1574 struct xfs_mount *mp)
1576 percpu_counter_destroy(&mp->m_icount);
1577 percpu_counter_destroy(&mp->m_ifree);
1578 percpu_counter_destroy(&mp->m_fdblocks);
1581 static struct xfs_mount *
1583 struct super_block *sb)
1585 struct xfs_mount *mp;
1587 mp = kzalloc(sizeof(struct xfs_mount), GFP_KERNEL);
1592 spin_lock_init(&mp->m_sb_lock);
1593 spin_lock_init(&mp->m_agirotor_lock);
1594 INIT_RADIX_TREE(&mp->m_perag_tree, GFP_ATOMIC);
1595 spin_lock_init(&mp->m_perag_lock);
1596 mutex_init(&mp->m_growlock);
1597 atomic_set(&mp->m_active_trans, 0);
1598 INIT_DELAYED_WORK(&mp->m_reclaim_work, xfs_reclaim_worker);
1599 INIT_DELAYED_WORK(&mp->m_eofblocks_work, xfs_eofblocks_worker);
1600 INIT_DELAYED_WORK(&mp->m_cowblocks_work, xfs_cowblocks_worker);
1601 mp->m_kobj.kobject.kset = xfs_kset;
1608 struct super_block *sb,
1613 struct xfs_mount *mp = NULL;
1614 int flags = 0, error = -ENOMEM;
1617 * allocate mp and do all low-level struct initializations before we
1618 * attach it to the super
1620 mp = xfs_mount_alloc(sb);
1625 error = xfs_parseargs(mp, (char *)data);
1627 goto out_free_fsname;
1629 sb_min_blocksize(sb, BBSIZE);
1630 sb->s_xattr = xfs_xattr_handlers;
1631 sb->s_export_op = &xfs_export_operations;
1632 #ifdef CONFIG_XFS_QUOTA
1633 sb->s_qcop = &xfs_quotactl_operations;
1634 sb->s_quota_types = QTYPE_MASK_USR | QTYPE_MASK_GRP | QTYPE_MASK_PRJ;
1636 sb->s_op = &xfs_super_operations;
1639 * Delay mount work if the debug hook is set. This is debug
1640 * instrumention to coordinate simulation of xfs mount failures with
1641 * VFS superblock operations
1643 if (xfs_globals.mount_delay) {
1644 xfs_notice(mp, "Delaying mount for %d seconds.",
1645 xfs_globals.mount_delay);
1646 msleep(xfs_globals.mount_delay * 1000);
1650 flags |= XFS_MFSI_QUIET;
1652 error = xfs_open_devices(mp);
1654 goto out_free_fsname;
1656 error = xfs_init_mount_workqueues(mp);
1658 goto out_close_devices;
1660 error = xfs_init_percpu_counters(mp);
1662 goto out_destroy_workqueues;
1664 /* Allocate stats memory before we do operations that might use it */
1665 mp->m_stats.xs_stats = alloc_percpu(struct xfsstats);
1666 if (!mp->m_stats.xs_stats) {
1668 goto out_destroy_counters;
1671 error = xfs_readsb(mp, flags);
1673 goto out_free_stats;
1675 error = xfs_finish_flags(mp);
1679 error = xfs_setup_devices(mp);
1683 error = xfs_filestream_mount(mp);
1688 * we must configure the block size in the superblock before we run the
1689 * full mount process as the mount process can lookup and cache inodes.
1691 sb->s_magic = XFS_SB_MAGIC;
1692 sb->s_blocksize = mp->m_sb.sb_blocksize;
1693 sb->s_blocksize_bits = ffs(sb->s_blocksize) - 1;
1694 sb->s_maxbytes = xfs_max_file_offset(sb->s_blocksize_bits);
1695 sb->s_max_links = XFS_MAXLINK;
1696 sb->s_time_gran = 1;
1697 set_posix_acl_flag(sb);
1699 /* version 5 superblocks support inode version counters. */
1700 if (XFS_SB_VERSION_NUM(&mp->m_sb) == XFS_SB_VERSION_5)
1701 sb->s_flags |= SB_I_VERSION;
1703 if (mp->m_flags & XFS_MOUNT_DAX) {
1704 bool rtdev_is_dax = false, datadev_is_dax;
1707 "DAX enabled. Warning: EXPERIMENTAL, use at your own risk");
1709 datadev_is_dax = bdev_dax_supported(mp->m_ddev_targp->bt_bdev,
1711 if (mp->m_rtdev_targp)
1712 rtdev_is_dax = bdev_dax_supported(
1713 mp->m_rtdev_targp->bt_bdev, sb->s_blocksize);
1714 if (!rtdev_is_dax && !datadev_is_dax) {
1716 "DAX unsupported by block device. Turning off DAX.");
1717 mp->m_flags &= ~XFS_MOUNT_DAX;
1719 if (xfs_sb_version_hasreflink(&mp->m_sb)) {
1721 "DAX and reflink cannot be used together!");
1723 goto out_filestream_unmount;
1727 if (mp->m_flags & XFS_MOUNT_DISCARD) {
1728 struct request_queue *q = bdev_get_queue(sb->s_bdev);
1730 if (!blk_queue_discard(q)) {
1731 xfs_warn(mp, "mounting with \"discard\" option, but "
1732 "the device does not support discard");
1733 mp->m_flags &= ~XFS_MOUNT_DISCARD;
1737 if (xfs_sb_version_hasreflink(&mp->m_sb) && mp->m_sb.sb_rblocks) {
1739 "reflink not compatible with realtime device!");
1741 goto out_filestream_unmount;
1744 if (xfs_sb_version_hasrmapbt(&mp->m_sb) && mp->m_sb.sb_rblocks) {
1746 "reverse mapping btree not compatible with realtime device!");
1748 goto out_filestream_unmount;
1751 error = xfs_mountfs(mp);
1753 goto out_filestream_unmount;
1755 root = igrab(VFS_I(mp->m_rootip));
1760 sb->s_root = d_make_root(root);
1768 out_filestream_unmount:
1769 xfs_filestream_unmount(mp);
1773 free_percpu(mp->m_stats.xs_stats);
1774 out_destroy_counters:
1775 xfs_destroy_percpu_counters(mp);
1776 out_destroy_workqueues:
1777 xfs_destroy_mount_workqueues(mp);
1779 xfs_close_devices(mp);
1781 sb->s_fs_info = NULL;
1782 xfs_free_fsname(mp);
1788 xfs_filestream_unmount(mp);
1795 struct super_block *sb)
1797 struct xfs_mount *mp = XFS_M(sb);
1799 /* if ->fill_super failed, we have no mount to tear down */
1803 xfs_notice(mp, "Unmounting Filesystem");
1804 xfs_filestream_unmount(mp);
1808 free_percpu(mp->m_stats.xs_stats);
1809 xfs_destroy_percpu_counters(mp);
1810 xfs_destroy_mount_workqueues(mp);
1811 xfs_close_devices(mp);
1813 sb->s_fs_info = NULL;
1814 xfs_free_fsname(mp);
1818 STATIC struct dentry *
1820 struct file_system_type *fs_type,
1822 const char *dev_name,
1825 return mount_bdev(fs_type, flags, dev_name, data, xfs_fs_fill_super);
1829 xfs_fs_nr_cached_objects(
1830 struct super_block *sb,
1831 struct shrink_control *sc)
1833 /* Paranoia: catch incorrect calls during mount setup or teardown */
1834 if (WARN_ON_ONCE(!sb->s_fs_info))
1836 return xfs_reclaim_inodes_count(XFS_M(sb));
1840 xfs_fs_free_cached_objects(
1841 struct super_block *sb,
1842 struct shrink_control *sc)
1844 return xfs_reclaim_inodes_nr(XFS_M(sb), sc->nr_to_scan);
1847 static const struct super_operations xfs_super_operations = {
1848 .alloc_inode = xfs_fs_alloc_inode,
1849 .destroy_inode = xfs_fs_destroy_inode,
1850 .dirty_inode = xfs_fs_dirty_inode,
1851 .drop_inode = xfs_fs_drop_inode,
1852 .put_super = xfs_fs_put_super,
1853 .sync_fs = xfs_fs_sync_fs,
1854 .freeze_fs = xfs_fs_freeze,
1855 .unfreeze_fs = xfs_fs_unfreeze,
1856 .statfs = xfs_fs_statfs,
1857 .remount_fs = xfs_fs_remount,
1858 .show_options = xfs_fs_show_options,
1859 .nr_cached_objects = xfs_fs_nr_cached_objects,
1860 .free_cached_objects = xfs_fs_free_cached_objects,
1863 static struct file_system_type xfs_fs_type = {
1864 .owner = THIS_MODULE,
1866 .mount = xfs_fs_mount,
1867 .kill_sb = kill_block_super,
1868 .fs_flags = FS_REQUIRES_DEV,
1870 MODULE_ALIAS_FS("xfs");
1873 xfs_init_zones(void)
1875 if (bioset_init(&xfs_ioend_bioset, 4 * MAX_BUF_PER_PAGE,
1876 offsetof(struct xfs_ioend, io_inline_bio),
1880 xfs_log_ticket_zone = kmem_zone_init(sizeof(xlog_ticket_t),
1882 if (!xfs_log_ticket_zone)
1883 goto out_free_ioend_bioset;
1885 xfs_bmap_free_item_zone = kmem_zone_init(
1886 sizeof(struct xfs_extent_free_item),
1887 "xfs_bmap_free_item");
1888 if (!xfs_bmap_free_item_zone)
1889 goto out_destroy_log_ticket_zone;
1891 xfs_btree_cur_zone = kmem_zone_init(sizeof(xfs_btree_cur_t),
1893 if (!xfs_btree_cur_zone)
1894 goto out_destroy_bmap_free_item_zone;
1896 xfs_da_state_zone = kmem_zone_init(sizeof(xfs_da_state_t),
1898 if (!xfs_da_state_zone)
1899 goto out_destroy_btree_cur_zone;
1901 xfs_ifork_zone = kmem_zone_init(sizeof(xfs_ifork_t), "xfs_ifork");
1902 if (!xfs_ifork_zone)
1903 goto out_destroy_da_state_zone;
1905 xfs_trans_zone = kmem_zone_init(sizeof(xfs_trans_t), "xfs_trans");
1906 if (!xfs_trans_zone)
1907 goto out_destroy_ifork_zone;
1911 * The size of the zone allocated buf log item is the maximum
1912 * size possible under XFS. This wastes a little bit of memory,
1913 * but it is much faster.
1915 xfs_buf_item_zone = kmem_zone_init(sizeof(struct xfs_buf_log_item),
1917 if (!xfs_buf_item_zone)
1918 goto out_destroy_trans_zone;
1920 xfs_efd_zone = kmem_zone_init((sizeof(xfs_efd_log_item_t) +
1921 ((XFS_EFD_MAX_FAST_EXTENTS - 1) *
1922 sizeof(xfs_extent_t))), "xfs_efd_item");
1924 goto out_destroy_buf_item_zone;
1926 xfs_efi_zone = kmem_zone_init((sizeof(xfs_efi_log_item_t) +
1927 ((XFS_EFI_MAX_FAST_EXTENTS - 1) *
1928 sizeof(xfs_extent_t))), "xfs_efi_item");
1930 goto out_destroy_efd_zone;
1933 kmem_zone_init_flags(sizeof(xfs_inode_t), "xfs_inode",
1934 KM_ZONE_HWALIGN | KM_ZONE_RECLAIM | KM_ZONE_SPREAD |
1935 KM_ZONE_ACCOUNT, xfs_fs_inode_init_once);
1936 if (!xfs_inode_zone)
1937 goto out_destroy_efi_zone;
1940 kmem_zone_init_flags(sizeof(xfs_inode_log_item_t), "xfs_ili",
1941 KM_ZONE_SPREAD, NULL);
1943 goto out_destroy_inode_zone;
1944 xfs_icreate_zone = kmem_zone_init(sizeof(struct xfs_icreate_item),
1946 if (!xfs_icreate_zone)
1947 goto out_destroy_ili_zone;
1949 xfs_rud_zone = kmem_zone_init(sizeof(struct xfs_rud_log_item),
1952 goto out_destroy_icreate_zone;
1954 xfs_rui_zone = kmem_zone_init(
1955 xfs_rui_log_item_sizeof(XFS_RUI_MAX_FAST_EXTENTS),
1958 goto out_destroy_rud_zone;
1960 xfs_cud_zone = kmem_zone_init(sizeof(struct xfs_cud_log_item),
1963 goto out_destroy_rui_zone;
1965 xfs_cui_zone = kmem_zone_init(
1966 xfs_cui_log_item_sizeof(XFS_CUI_MAX_FAST_EXTENTS),
1969 goto out_destroy_cud_zone;
1971 xfs_bud_zone = kmem_zone_init(sizeof(struct xfs_bud_log_item),
1974 goto out_destroy_cui_zone;
1976 xfs_bui_zone = kmem_zone_init(
1977 xfs_bui_log_item_sizeof(XFS_BUI_MAX_FAST_EXTENTS),
1980 goto out_destroy_bud_zone;
1984 out_destroy_bud_zone:
1985 kmem_zone_destroy(xfs_bud_zone);
1986 out_destroy_cui_zone:
1987 kmem_zone_destroy(xfs_cui_zone);
1988 out_destroy_cud_zone:
1989 kmem_zone_destroy(xfs_cud_zone);
1990 out_destroy_rui_zone:
1991 kmem_zone_destroy(xfs_rui_zone);
1992 out_destroy_rud_zone:
1993 kmem_zone_destroy(xfs_rud_zone);
1994 out_destroy_icreate_zone:
1995 kmem_zone_destroy(xfs_icreate_zone);
1996 out_destroy_ili_zone:
1997 kmem_zone_destroy(xfs_ili_zone);
1998 out_destroy_inode_zone:
1999 kmem_zone_destroy(xfs_inode_zone);
2000 out_destroy_efi_zone:
2001 kmem_zone_destroy(xfs_efi_zone);
2002 out_destroy_efd_zone:
2003 kmem_zone_destroy(xfs_efd_zone);
2004 out_destroy_buf_item_zone:
2005 kmem_zone_destroy(xfs_buf_item_zone);
2006 out_destroy_trans_zone:
2007 kmem_zone_destroy(xfs_trans_zone);
2008 out_destroy_ifork_zone:
2009 kmem_zone_destroy(xfs_ifork_zone);
2010 out_destroy_da_state_zone:
2011 kmem_zone_destroy(xfs_da_state_zone);
2012 out_destroy_btree_cur_zone:
2013 kmem_zone_destroy(xfs_btree_cur_zone);
2014 out_destroy_bmap_free_item_zone:
2015 kmem_zone_destroy(xfs_bmap_free_item_zone);
2016 out_destroy_log_ticket_zone:
2017 kmem_zone_destroy(xfs_log_ticket_zone);
2018 out_free_ioend_bioset:
2019 bioset_exit(&xfs_ioend_bioset);
2025 xfs_destroy_zones(void)
2028 * Make sure all delayed rcu free are flushed before we
2032 kmem_zone_destroy(xfs_bui_zone);
2033 kmem_zone_destroy(xfs_bud_zone);
2034 kmem_zone_destroy(xfs_cui_zone);
2035 kmem_zone_destroy(xfs_cud_zone);
2036 kmem_zone_destroy(xfs_rui_zone);
2037 kmem_zone_destroy(xfs_rud_zone);
2038 kmem_zone_destroy(xfs_icreate_zone);
2039 kmem_zone_destroy(xfs_ili_zone);
2040 kmem_zone_destroy(xfs_inode_zone);
2041 kmem_zone_destroy(xfs_efi_zone);
2042 kmem_zone_destroy(xfs_efd_zone);
2043 kmem_zone_destroy(xfs_buf_item_zone);
2044 kmem_zone_destroy(xfs_trans_zone);
2045 kmem_zone_destroy(xfs_ifork_zone);
2046 kmem_zone_destroy(xfs_da_state_zone);
2047 kmem_zone_destroy(xfs_btree_cur_zone);
2048 kmem_zone_destroy(xfs_bmap_free_item_zone);
2049 kmem_zone_destroy(xfs_log_ticket_zone);
2050 bioset_exit(&xfs_ioend_bioset);
2054 xfs_init_workqueues(void)
2057 * The allocation workqueue can be used in memory reclaim situations
2058 * (writepage path), and parallelism is only limited by the number of
2059 * AGs in all the filesystems mounted. Hence use the default large
2060 * max_active value for this workqueue.
2062 xfs_alloc_wq = alloc_workqueue("xfsalloc",
2063 WQ_MEM_RECLAIM|WQ_FREEZABLE, 0);
2067 xfs_discard_wq = alloc_workqueue("xfsdiscard", WQ_UNBOUND, 0);
2068 if (!xfs_discard_wq)
2069 goto out_free_alloc_wq;
2073 destroy_workqueue(xfs_alloc_wq);
2078 xfs_destroy_workqueues(void)
2080 destroy_workqueue(xfs_discard_wq);
2081 destroy_workqueue(xfs_alloc_wq);
2089 xfs_check_ondisk_structs();
2091 printk(KERN_INFO XFS_VERSION_STRING " with "
2092 XFS_BUILD_OPTIONS " enabled\n");
2094 xfs_extent_free_init_defer_op();
2095 xfs_rmap_update_init_defer_op();
2096 xfs_refcount_update_init_defer_op();
2097 xfs_bmap_update_init_defer_op();
2101 error = xfs_init_zones();
2105 error = xfs_init_workqueues();
2107 goto out_destroy_zones;
2109 error = xfs_mru_cache_init();
2111 goto out_destroy_wq;
2113 error = xfs_buf_init();
2115 goto out_mru_cache_uninit;
2117 error = xfs_init_procfs();
2119 goto out_buf_terminate;
2121 error = xfs_sysctl_register();
2123 goto out_cleanup_procfs;
2125 xfs_kset = kset_create_and_add("xfs", NULL, fs_kobj);
2128 goto out_sysctl_unregister;
2131 xfsstats.xs_kobj.kobject.kset = xfs_kset;
2133 xfsstats.xs_stats = alloc_percpu(struct xfsstats);
2134 if (!xfsstats.xs_stats) {
2136 goto out_kset_unregister;
2139 error = xfs_sysfs_init(&xfsstats.xs_kobj, &xfs_stats_ktype, NULL,
2142 goto out_free_stats;
2145 xfs_dbg_kobj.kobject.kset = xfs_kset;
2146 error = xfs_sysfs_init(&xfs_dbg_kobj, &xfs_dbg_ktype, NULL, "debug");
2148 goto out_remove_stats_kobj;
2151 error = xfs_qm_init();
2153 goto out_remove_dbg_kobj;
2155 error = register_filesystem(&xfs_fs_type);
2162 out_remove_dbg_kobj:
2164 xfs_sysfs_del(&xfs_dbg_kobj);
2165 out_remove_stats_kobj:
2167 xfs_sysfs_del(&xfsstats.xs_kobj);
2169 free_percpu(xfsstats.xs_stats);
2170 out_kset_unregister:
2171 kset_unregister(xfs_kset);
2172 out_sysctl_unregister:
2173 xfs_sysctl_unregister();
2175 xfs_cleanup_procfs();
2177 xfs_buf_terminate();
2178 out_mru_cache_uninit:
2179 xfs_mru_cache_uninit();
2181 xfs_destroy_workqueues();
2183 xfs_destroy_zones();
2192 unregister_filesystem(&xfs_fs_type);
2194 xfs_sysfs_del(&xfs_dbg_kobj);
2196 xfs_sysfs_del(&xfsstats.xs_kobj);
2197 free_percpu(xfsstats.xs_stats);
2198 kset_unregister(xfs_kset);
2199 xfs_sysctl_unregister();
2200 xfs_cleanup_procfs();
2201 xfs_buf_terminate();
2202 xfs_mru_cache_uninit();
2203 xfs_destroy_workqueues();
2204 xfs_destroy_zones();
2205 xfs_uuid_table_free();
2208 module_init(init_xfs_fs);
2209 module_exit(exit_xfs_fs);
2211 MODULE_AUTHOR("Silicon Graphics, Inc.");
2212 MODULE_DESCRIPTION(XFS_VERSION_STRING " with " XFS_BUILD_OPTIONS " enabled");
2213 MODULE_LICENSE("GPL");