2 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
3 * Copyright (C) 2004-2006 Red Hat, Inc. All rights reserved.
5 * This copyrighted material is made available to anyone wishing to use,
6 * modify, copy, or redistribute it subject to the terms and conditions
7 * of the GNU General Public License version 2.
10 #include <linux/sched.h>
11 #include <linux/slab.h>
12 #include <linux/spinlock.h>
13 #include <linux/completion.h>
14 #include <linux/buffer_head.h>
15 #include <linux/crc32.h>
16 #include <linux/gfs2_ondisk.h>
17 #include <linux/bio.h>
18 #include <linux/lm_interface.h>
36 static const u32 gfs2_old_fs_formats
[] = {
40 static const u32 gfs2_old_multihost_formats
[] = {
45 * gfs2_tune_init - Fill a gfs2_tune structure with default values
50 void gfs2_tune_init(struct gfs2_tune
*gt
)
52 spin_lock_init(>
->gt_spin
);
55 gt
->gt_ilimit_tries
= 3;
56 gt
->gt_ilimit_min
= 1;
57 gt
->gt_demote_secs
= 300;
58 gt
->gt_incore_log_blocks
= 1024;
59 gt
->gt_log_flush_secs
= 60;
60 gt
->gt_jindex_refresh_secs
= 60;
61 gt
->gt_scand_secs
= 15;
62 gt
->gt_recoverd_secs
= 60;
64 gt
->gt_quotad_secs
= 5;
65 gt
->gt_quota_simul_sync
= 64;
66 gt
->gt_quota_warn_period
= 10;
67 gt
->gt_quota_scale_num
= 1;
68 gt
->gt_quota_scale_den
= 1;
69 gt
->gt_quota_cache_secs
= 300;
70 gt
->gt_quota_quantum
= 60;
71 gt
->gt_atime_quantum
= 3600;
72 gt
->gt_new_files_jdata
= 0;
73 gt
->gt_new_files_directio
= 0;
74 gt
->gt_max_atomic_write
= 4 << 20;
75 gt
->gt_max_readahead
= 1 << 18;
76 gt
->gt_lockdump_size
= 131072;
77 gt
->gt_stall_secs
= 600;
78 gt
->gt_complain_secs
= 10;
79 gt
->gt_reclaim_limit
= 5000;
80 gt
->gt_entries_per_readdir
= 32;
81 gt
->gt_prefetch_secs
= 10;
82 gt
->gt_greedy_default
= HZ
/ 10;
83 gt
->gt_greedy_quantum
= HZ
/ 40;
84 gt
->gt_greedy_max
= HZ
/ 4;
85 gt
->gt_statfs_quantum
= 30;
86 gt
->gt_statfs_slow
= 0;
90 * gfs2_check_sb - Check superblock
91 * @sdp: the filesystem
93 * @silent: Don't print a message if the check fails
95 * Checks the version code of the FS is one that we understand how to
96 * read and that the sizes of the various on-disk structures have not
100 int gfs2_check_sb(struct gfs2_sbd
*sdp
, struct gfs2_sb_host
*sb
, int silent
)
104 if (sb
->sb_header
.mh_magic
!= GFS2_MAGIC
||
105 sb
->sb_header
.mh_type
!= GFS2_METATYPE_SB
) {
107 printk(KERN_WARNING
"GFS2: not a GFS2 filesystem\n");
111 /* If format numbers match exactly, we're done. */
113 if (sb
->sb_fs_format
== GFS2_FORMAT_FS
&&
114 sb
->sb_multihost_format
== GFS2_FORMAT_MULTI
)
117 if (sb
->sb_fs_format
!= GFS2_FORMAT_FS
) {
118 for (x
= 0; gfs2_old_fs_formats
[x
]; x
++)
119 if (gfs2_old_fs_formats
[x
] == sb
->sb_fs_format
)
122 if (!gfs2_old_fs_formats
[x
]) {
124 "GFS2: code version (%u, %u) is incompatible "
125 "with ondisk format (%u, %u)\n",
126 GFS2_FORMAT_FS
, GFS2_FORMAT_MULTI
,
127 sb
->sb_fs_format
, sb
->sb_multihost_format
);
129 "GFS2: I don't know how to upgrade this FS\n");
134 if (sb
->sb_multihost_format
!= GFS2_FORMAT_MULTI
) {
135 for (x
= 0; gfs2_old_multihost_formats
[x
]; x
++)
136 if (gfs2_old_multihost_formats
[x
] ==
137 sb
->sb_multihost_format
)
140 if (!gfs2_old_multihost_formats
[x
]) {
142 "GFS2: code version (%u, %u) is incompatible "
143 "with ondisk format (%u, %u)\n",
144 GFS2_FORMAT_FS
, GFS2_FORMAT_MULTI
,
145 sb
->sb_fs_format
, sb
->sb_multihost_format
);
147 "GFS2: I don't know how to upgrade this FS\n");
152 if (!sdp
->sd_args
.ar_upgrade
) {
154 "GFS2: code version (%u, %u) is incompatible "
155 "with ondisk format (%u, %u)\n",
156 GFS2_FORMAT_FS
, GFS2_FORMAT_MULTI
,
157 sb
->sb_fs_format
, sb
->sb_multihost_format
);
159 "GFS2: Use the \"upgrade\" mount option to upgrade "
161 printk(KERN_INFO
"GFS2: See the manual for more details\n");
169 static int end_bio_io_page(struct bio
*bio
, unsigned int bytes_done
, int error
)
171 struct page
*page
= bio
->bi_private
;
176 SetPageUptodate(page
);
178 printk(KERN_WARNING
"gfs2: error %d reading superblock\n", error
);
184 * gfs2_read_super - Read the gfs2 super block from disk
185 * @sb: The VFS super block
186 * @sector: The location of the super block
188 * This uses the bio functions to read the super block from disk
189 * because we want to be 100% sure that we never read cached data.
190 * A super block is read twice only during each GFS2 mount and is
191 * never written to by the filesystem. The first time its read no
192 * locks are held, and the only details which are looked at are those
193 * relating to the locking protocol. Once locking is up and working,
194 * the sb is read again under the lock to establish the location of
195 * the master directory (contains pointers to journals etc) and the
198 * Returns: A page containing the sb or NULL
201 struct page
*gfs2_read_super(struct super_block
*sb
, sector_t sector
)
206 page
= alloc_page(GFP_KERNEL
);
210 ClearPageUptodate(page
);
211 ClearPageDirty(page
);
214 bio
= bio_alloc(GFP_KERNEL
, 1);
215 if (unlikely(!bio
)) {
220 bio
->bi_sector
= sector
* (sb
->s_blocksize
>> 9);
221 bio
->bi_bdev
= sb
->s_bdev
;
222 bio_add_page(bio
, page
, PAGE_SIZE
, 0);
224 bio
->bi_end_io
= end_bio_io_page
;
225 bio
->bi_private
= page
;
226 submit_bio(READ_SYNC
| (1 << BIO_RW_META
), bio
);
227 wait_on_page_locked(page
);
229 if (!PageUptodate(page
)) {
237 * gfs2_read_sb - Read super block
238 * @sdp: The GFS2 superblock
239 * @gl: the glock for the superblock (assumed to be held)
240 * @silent: Don't print message if mount fails
244 int gfs2_read_sb(struct gfs2_sbd
*sdp
, struct gfs2_glock
*gl
, int silent
)
246 u32 hash_blocks
, ind_blocks
, leaf_blocks
;
253 page
= gfs2_read_super(sdp
->sd_vfs
, GFS2_SB_ADDR
>> sdp
->sd_fsb2bb_shift
);
256 fs_err(sdp
, "can't read superblock\n");
260 gfs2_sb_in(&sdp
->sd_sb
, sb
);
264 error
= gfs2_check_sb(sdp
, &sdp
->sd_sb
, silent
);
268 sdp
->sd_fsb2bb_shift
= sdp
->sd_sb
.sb_bsize_shift
-
269 GFS2_BASIC_BLOCK_SHIFT
;
270 sdp
->sd_fsb2bb
= 1 << sdp
->sd_fsb2bb_shift
;
271 sdp
->sd_diptrs
= (sdp
->sd_sb
.sb_bsize
-
272 sizeof(struct gfs2_dinode
)) / sizeof(u64
);
273 sdp
->sd_inptrs
= (sdp
->sd_sb
.sb_bsize
-
274 sizeof(struct gfs2_meta_header
)) / sizeof(u64
);
275 sdp
->sd_jbsize
= sdp
->sd_sb
.sb_bsize
- sizeof(struct gfs2_meta_header
);
276 sdp
->sd_hash_bsize
= sdp
->sd_sb
.sb_bsize
/ 2;
277 sdp
->sd_hash_bsize_shift
= sdp
->sd_sb
.sb_bsize_shift
- 1;
278 sdp
->sd_hash_ptrs
= sdp
->sd_hash_bsize
/ sizeof(u64
);
279 sdp
->sd_qc_per_block
= (sdp
->sd_sb
.sb_bsize
-
280 sizeof(struct gfs2_meta_header
)) /
281 sizeof(struct gfs2_quota_change
);
283 /* Compute maximum reservation required to add a entry to a directory */
285 hash_blocks
= DIV_ROUND_UP(sizeof(u64
) * (1 << GFS2_DIR_MAX_DEPTH
),
289 for (tmp_blocks
= hash_blocks
; tmp_blocks
> sdp
->sd_diptrs
;) {
290 tmp_blocks
= DIV_ROUND_UP(tmp_blocks
, sdp
->sd_inptrs
);
291 ind_blocks
+= tmp_blocks
;
294 leaf_blocks
= 2 + GFS2_DIR_MAX_DEPTH
;
296 sdp
->sd_max_dirres
= hash_blocks
+ ind_blocks
+ leaf_blocks
;
298 sdp
->sd_heightsize
[0] = sdp
->sd_sb
.sb_bsize
-
299 sizeof(struct gfs2_dinode
);
300 sdp
->sd_heightsize
[1] = sdp
->sd_sb
.sb_bsize
* sdp
->sd_diptrs
;
305 space
= sdp
->sd_heightsize
[x
- 1] * sdp
->sd_inptrs
;
307 m
= do_div(d
, sdp
->sd_inptrs
);
309 if (d
!= sdp
->sd_heightsize
[x
- 1] || m
)
311 sdp
->sd_heightsize
[x
] = space
;
313 sdp
->sd_max_height
= x
;
314 gfs2_assert(sdp
, sdp
->sd_max_height
<= GFS2_MAX_META_HEIGHT
);
316 sdp
->sd_jheightsize
[0] = sdp
->sd_sb
.sb_bsize
-
317 sizeof(struct gfs2_dinode
);
318 sdp
->sd_jheightsize
[1] = sdp
->sd_jbsize
* sdp
->sd_diptrs
;
323 space
= sdp
->sd_jheightsize
[x
- 1] * sdp
->sd_inptrs
;
325 m
= do_div(d
, sdp
->sd_inptrs
);
327 if (d
!= sdp
->sd_jheightsize
[x
- 1] || m
)
329 sdp
->sd_jheightsize
[x
] = space
;
331 sdp
->sd_max_jheight
= x
;
332 gfs2_assert(sdp
, sdp
->sd_max_jheight
<= GFS2_MAX_META_HEIGHT
);
338 * gfs2_jindex_hold - Grab a lock on the jindex
339 * @sdp: The GFS2 superblock
340 * @ji_gh: the holder for the jindex glock
342 * This is very similar to the gfs2_rindex_hold() function, except that
343 * in general we hold the jindex lock for longer periods of time and
344 * we grab it far less frequently (in general) then the rgrp lock.
349 int gfs2_jindex_hold(struct gfs2_sbd
*sdp
, struct gfs2_holder
*ji_gh
)
351 struct gfs2_inode
*dip
= GFS2_I(sdp
->sd_jindex
);
354 struct gfs2_jdesc
*jd
;
359 mutex_lock(&sdp
->sd_jindex_mutex
);
362 error
= gfs2_glock_nq_init(dip
->i_gl
, LM_ST_SHARED
,
363 GL_LOCAL_EXCL
, ji_gh
);
367 name
.len
= sprintf(buf
, "journal%u", sdp
->sd_journals
);
368 name
.hash
= gfs2_disk_hash(name
.name
, name
.len
);
370 error
= gfs2_dir_search(sdp
->sd_jindex
, &name
, NULL
, NULL
);
371 if (error
== -ENOENT
) {
376 gfs2_glock_dq_uninit(ji_gh
);
382 jd
= kzalloc(sizeof(struct gfs2_jdesc
), GFP_KERNEL
);
386 jd
->jd_inode
= gfs2_lookupi(sdp
->sd_jindex
, &name
, 1, NULL
);
387 if (!jd
->jd_inode
|| IS_ERR(jd
->jd_inode
)) {
391 error
= PTR_ERR(jd
->jd_inode
);
396 spin_lock(&sdp
->sd_jindex_spin
);
397 jd
->jd_jid
= sdp
->sd_journals
++;
398 list_add_tail(&jd
->jd_list
, &sdp
->sd_jindex_list
);
399 spin_unlock(&sdp
->sd_jindex_spin
);
402 mutex_unlock(&sdp
->sd_jindex_mutex
);
408 * gfs2_jindex_free - Clear all the journal index information
409 * @sdp: The GFS2 superblock
413 void gfs2_jindex_free(struct gfs2_sbd
*sdp
)
415 struct list_head list
;
416 struct gfs2_jdesc
*jd
;
418 spin_lock(&sdp
->sd_jindex_spin
);
419 list_add(&list
, &sdp
->sd_jindex_list
);
420 list_del_init(&sdp
->sd_jindex_list
);
421 sdp
->sd_journals
= 0;
422 spin_unlock(&sdp
->sd_jindex_spin
);
424 while (!list_empty(&list
)) {
425 jd
= list_entry(list
.next
, struct gfs2_jdesc
, jd_list
);
426 list_del(&jd
->jd_list
);
432 static struct gfs2_jdesc
*jdesc_find_i(struct list_head
*head
, unsigned int jid
)
434 struct gfs2_jdesc
*jd
;
437 list_for_each_entry(jd
, head
, jd_list
) {
438 if (jd
->jd_jid
== jid
) {
450 struct gfs2_jdesc
*gfs2_jdesc_find(struct gfs2_sbd
*sdp
, unsigned int jid
)
452 struct gfs2_jdesc
*jd
;
454 spin_lock(&sdp
->sd_jindex_spin
);
455 jd
= jdesc_find_i(&sdp
->sd_jindex_list
, jid
);
456 spin_unlock(&sdp
->sd_jindex_spin
);
461 void gfs2_jdesc_make_dirty(struct gfs2_sbd
*sdp
, unsigned int jid
)
463 struct gfs2_jdesc
*jd
;
465 spin_lock(&sdp
->sd_jindex_spin
);
466 jd
= jdesc_find_i(&sdp
->sd_jindex_list
, jid
);
469 spin_unlock(&sdp
->sd_jindex_spin
);
472 struct gfs2_jdesc
*gfs2_jdesc_find_dirty(struct gfs2_sbd
*sdp
)
474 struct gfs2_jdesc
*jd
;
477 spin_lock(&sdp
->sd_jindex_spin
);
479 list_for_each_entry(jd
, &sdp
->sd_jindex_list
, jd_list
) {
486 spin_unlock(&sdp
->sd_jindex_spin
);
494 int gfs2_jdesc_check(struct gfs2_jdesc
*jd
)
496 struct gfs2_inode
*ip
= GFS2_I(jd
->jd_inode
);
497 struct gfs2_sbd
*sdp
= GFS2_SB(jd
->jd_inode
);
501 if (ip
->i_di
.di_size
< (8 << 20) || ip
->i_di
.di_size
> (1 << 30) ||
502 (ip
->i_di
.di_size
& (sdp
->sd_sb
.sb_bsize
- 1))) {
503 gfs2_consist_inode(ip
);
506 jd
->jd_blocks
= ip
->i_di
.di_size
>> sdp
->sd_sb
.sb_bsize_shift
;
508 error
= gfs2_write_alloc_required(ip
, 0, ip
->i_di
.di_size
, &ar
);
510 gfs2_consist_inode(ip
);
518 * gfs2_make_fs_rw - Turn a Read-Only FS into a Read-Write one
519 * @sdp: the filesystem
524 int gfs2_make_fs_rw(struct gfs2_sbd
*sdp
)
526 struct gfs2_inode
*ip
= GFS2_I(sdp
->sd_jdesc
->jd_inode
);
527 struct gfs2_glock
*j_gl
= ip
->i_gl
;
528 struct gfs2_holder t_gh
;
529 struct gfs2_log_header_host head
;
532 error
= gfs2_glock_nq_init(sdp
->sd_trans_gl
, LM_ST_SHARED
,
533 GL_LOCAL_EXCL
, &t_gh
);
537 gfs2_meta_cache_flush(ip
);
538 j_gl
->gl_ops
->go_inval(j_gl
, DIO_METADATA
);
540 error
= gfs2_find_jhead(sdp
->sd_jdesc
, &head
);
544 if (!(head
.lh_flags
& GFS2_LOG_HEAD_UNMOUNT
)) {
550 /* Initialize some head of the log stuff */
551 sdp
->sd_log_sequence
= head
.lh_sequence
+ 1;
552 gfs2_log_pointers_init(sdp
, head
.lh_blkno
);
554 error
= gfs2_quota_init(sdp
);
558 set_bit(SDF_JOURNAL_LIVE
, &sdp
->sd_flags
);
560 gfs2_glock_dq_uninit(&t_gh
);
565 t_gh
.gh_flags
|= GL_NOCACHE
;
566 gfs2_glock_dq_uninit(&t_gh
);
572 * gfs2_make_fs_ro - Turn a Read-Write FS into a Read-Only one
573 * @sdp: the filesystem
578 int gfs2_make_fs_ro(struct gfs2_sbd
*sdp
)
580 struct gfs2_holder t_gh
;
583 gfs2_quota_sync(sdp
);
584 gfs2_statfs_sync(sdp
);
586 error
= gfs2_glock_nq_init(sdp
->sd_trans_gl
, LM_ST_SHARED
,
587 GL_LOCAL_EXCL
| GL_NOCACHE
,
589 if (error
&& !test_bit(SDF_SHUTDOWN
, &sdp
->sd_flags
))
592 gfs2_meta_syncfs(sdp
);
593 gfs2_log_shutdown(sdp
);
595 clear_bit(SDF_JOURNAL_LIVE
, &sdp
->sd_flags
);
598 gfs2_glock_dq_uninit(&t_gh
);
600 gfs2_quota_cleanup(sdp
);
605 int gfs2_statfs_init(struct gfs2_sbd
*sdp
)
607 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
608 struct gfs2_statfs_change_host
*m_sc
= &sdp
->sd_statfs_master
;
609 struct gfs2_inode
*l_ip
= GFS2_I(sdp
->sd_sc_inode
);
610 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
611 struct buffer_head
*m_bh
, *l_bh
;
612 struct gfs2_holder gh
;
615 error
= gfs2_glock_nq_init(m_ip
->i_gl
, LM_ST_EXCLUSIVE
, GL_NOCACHE
,
620 error
= gfs2_meta_inode_buffer(m_ip
, &m_bh
);
624 if (sdp
->sd_args
.ar_spectator
) {
625 spin_lock(&sdp
->sd_statfs_spin
);
626 gfs2_statfs_change_in(m_sc
, m_bh
->b_data
+
627 sizeof(struct gfs2_dinode
));
628 spin_unlock(&sdp
->sd_statfs_spin
);
630 error
= gfs2_meta_inode_buffer(l_ip
, &l_bh
);
634 spin_lock(&sdp
->sd_statfs_spin
);
635 gfs2_statfs_change_in(m_sc
, m_bh
->b_data
+
636 sizeof(struct gfs2_dinode
));
637 gfs2_statfs_change_in(l_sc
, l_bh
->b_data
+
638 sizeof(struct gfs2_dinode
));
639 spin_unlock(&sdp
->sd_statfs_spin
);
647 gfs2_glock_dq_uninit(&gh
);
651 void gfs2_statfs_change(struct gfs2_sbd
*sdp
, s64 total
, s64 free
,
654 struct gfs2_inode
*l_ip
= GFS2_I(sdp
->sd_sc_inode
);
655 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
656 struct buffer_head
*l_bh
;
659 error
= gfs2_meta_inode_buffer(l_ip
, &l_bh
);
663 mutex_lock(&sdp
->sd_statfs_mutex
);
664 gfs2_trans_add_bh(l_ip
->i_gl
, l_bh
, 1);
665 mutex_unlock(&sdp
->sd_statfs_mutex
);
667 spin_lock(&sdp
->sd_statfs_spin
);
668 l_sc
->sc_total
+= total
;
669 l_sc
->sc_free
+= free
;
670 l_sc
->sc_dinodes
+= dinodes
;
671 gfs2_statfs_change_out(l_sc
, l_bh
->b_data
+ sizeof(struct gfs2_dinode
));
672 spin_unlock(&sdp
->sd_statfs_spin
);
677 int gfs2_statfs_sync(struct gfs2_sbd
*sdp
)
679 struct gfs2_inode
*m_ip
= GFS2_I(sdp
->sd_statfs_inode
);
680 struct gfs2_inode
*l_ip
= GFS2_I(sdp
->sd_sc_inode
);
681 struct gfs2_statfs_change_host
*m_sc
= &sdp
->sd_statfs_master
;
682 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
683 struct gfs2_holder gh
;
684 struct buffer_head
*m_bh
, *l_bh
;
687 error
= gfs2_glock_nq_init(m_ip
->i_gl
, LM_ST_EXCLUSIVE
, GL_NOCACHE
,
692 error
= gfs2_meta_inode_buffer(m_ip
, &m_bh
);
696 spin_lock(&sdp
->sd_statfs_spin
);
697 gfs2_statfs_change_in(m_sc
, m_bh
->b_data
+
698 sizeof(struct gfs2_dinode
));
699 if (!l_sc
->sc_total
&& !l_sc
->sc_free
&& !l_sc
->sc_dinodes
) {
700 spin_unlock(&sdp
->sd_statfs_spin
);
703 spin_unlock(&sdp
->sd_statfs_spin
);
705 error
= gfs2_meta_inode_buffer(l_ip
, &l_bh
);
709 error
= gfs2_trans_begin(sdp
, 2 * RES_DINODE
, 0);
713 mutex_lock(&sdp
->sd_statfs_mutex
);
714 gfs2_trans_add_bh(l_ip
->i_gl
, l_bh
, 1);
715 mutex_unlock(&sdp
->sd_statfs_mutex
);
717 spin_lock(&sdp
->sd_statfs_spin
);
718 m_sc
->sc_total
+= l_sc
->sc_total
;
719 m_sc
->sc_free
+= l_sc
->sc_free
;
720 m_sc
->sc_dinodes
+= l_sc
->sc_dinodes
;
721 memset(l_sc
, 0, sizeof(struct gfs2_statfs_change
));
722 memset(l_bh
->b_data
+ sizeof(struct gfs2_dinode
),
723 0, sizeof(struct gfs2_statfs_change
));
724 spin_unlock(&sdp
->sd_statfs_spin
);
726 gfs2_trans_add_bh(m_ip
->i_gl
, m_bh
, 1);
727 gfs2_statfs_change_out(m_sc
, m_bh
->b_data
+ sizeof(struct gfs2_dinode
));
736 gfs2_glock_dq_uninit(&gh
);
741 * gfs2_statfs_i - Do a statfs
742 * @sdp: the filesystem
743 * @sg: the sg structure
748 int gfs2_statfs_i(struct gfs2_sbd
*sdp
, struct gfs2_statfs_change_host
*sc
)
750 struct gfs2_statfs_change_host
*m_sc
= &sdp
->sd_statfs_master
;
751 struct gfs2_statfs_change_host
*l_sc
= &sdp
->sd_statfs_local
;
753 spin_lock(&sdp
->sd_statfs_spin
);
756 sc
->sc_total
+= l_sc
->sc_total
;
757 sc
->sc_free
+= l_sc
->sc_free
;
758 sc
->sc_dinodes
+= l_sc
->sc_dinodes
;
760 spin_unlock(&sdp
->sd_statfs_spin
);
764 if (sc
->sc_free
> sc
->sc_total
)
765 sc
->sc_free
= sc
->sc_total
;
766 if (sc
->sc_dinodes
< 0)
773 * statfs_fill - fill in the sg for a given RG
775 * @sc: the sc structure
777 * Returns: 0 on success, -ESTALE if the LVB is invalid
780 static int statfs_slow_fill(struct gfs2_rgrpd
*rgd
,
781 struct gfs2_statfs_change_host
*sc
)
783 gfs2_rgrp_verify(rgd
);
784 sc
->sc_total
+= rgd
->rd_ri
.ri_data
;
785 sc
->sc_free
+= rgd
->rd_rg
.rg_free
;
786 sc
->sc_dinodes
+= rgd
->rd_rg
.rg_dinodes
;
791 * gfs2_statfs_slow - Stat a filesystem using asynchronous locking
792 * @sdp: the filesystem
793 * @sc: the sc info that will be returned
795 * Any error (other than a signal) will cause this routine to fall back
796 * to the synchronous version.
798 * FIXME: This really shouldn't busy wait like this.
803 int gfs2_statfs_slow(struct gfs2_sbd
*sdp
, struct gfs2_statfs_change_host
*sc
)
805 struct gfs2_holder ri_gh
;
806 struct gfs2_rgrpd
*rgd_next
;
807 struct gfs2_holder
*gha
, *gh
;
808 unsigned int slots
= 64;
813 memset(sc
, 0, sizeof(struct gfs2_statfs_change_host
));
814 gha
= kcalloc(slots
, sizeof(struct gfs2_holder
), GFP_KERNEL
);
818 error
= gfs2_rindex_hold(sdp
, &ri_gh
);
822 rgd_next
= gfs2_rgrpd_get_first(sdp
);
827 for (x
= 0; x
< slots
; x
++) {
830 if (gh
->gh_gl
&& gfs2_glock_poll(gh
)) {
831 err
= gfs2_glock_wait(gh
);
833 gfs2_holder_uninit(gh
);
837 error
= statfs_slow_fill(
838 gh
->gh_gl
->gl_object
, sc
);
839 gfs2_glock_dq_uninit(gh
);
845 else if (rgd_next
&& !error
) {
846 error
= gfs2_glock_nq_init(rgd_next
->rd_gl
,
850 rgd_next
= gfs2_rgrpd_get_next(rgd_next
);
854 if (signal_pending(current
))
855 error
= -ERESTARTSYS
;
864 gfs2_glock_dq_uninit(&ri_gh
);
872 struct list_head list
;
873 struct gfs2_holder gh
;
877 * gfs2_lock_fs_check_clean - Stop all writes to the FS and check that all
879 * @sdp: the file system
880 * @state: the state to put the transaction lock into
881 * @t_gh: the hold on the transaction lock
886 static int gfs2_lock_fs_check_clean(struct gfs2_sbd
*sdp
,
887 struct gfs2_holder
*t_gh
)
889 struct gfs2_inode
*ip
;
890 struct gfs2_holder ji_gh
;
891 struct gfs2_jdesc
*jd
;
894 struct gfs2_log_header_host lh
;
897 error
= gfs2_jindex_hold(sdp
, &ji_gh
);
901 list_for_each_entry(jd
, &sdp
->sd_jindex_list
, jd_list
) {
902 lfcc
= kmalloc(sizeof(struct lfcc
), GFP_KERNEL
);
907 ip
= GFS2_I(jd
->jd_inode
);
908 error
= gfs2_glock_nq_init(ip
->i_gl
, LM_ST_SHARED
, 0, &lfcc
->gh
);
913 list_add(&lfcc
->list
, &list
);
916 error
= gfs2_glock_nq_init(sdp
->sd_trans_gl
, LM_ST_DEFERRED
,
917 LM_FLAG_PRIORITY
| GL_NOCACHE
,
920 list_for_each_entry(jd
, &sdp
->sd_jindex_list
, jd_list
) {
921 error
= gfs2_jdesc_check(jd
);
924 error
= gfs2_find_jhead(jd
, &lh
);
927 if (!(lh
.lh_flags
& GFS2_LOG_HEAD_UNMOUNT
)) {
934 gfs2_glock_dq_uninit(t_gh
);
937 while (!list_empty(&list
)) {
938 lfcc
= list_entry(list
.next
, struct lfcc
, list
);
939 list_del(&lfcc
->list
);
940 gfs2_glock_dq_uninit(&lfcc
->gh
);
943 gfs2_glock_dq_uninit(&ji_gh
);
948 * gfs2_freeze_fs - freezes the file system
949 * @sdp: the file system
951 * This function flushes data and meta data for all machines by
952 * aquiring the transaction log exclusively. All journals are
953 * ensured to be in a clean state as well.
958 int gfs2_freeze_fs(struct gfs2_sbd
*sdp
)
962 mutex_lock(&sdp
->sd_freeze_lock
);
964 if (!sdp
->sd_freeze_count
++) {
965 error
= gfs2_lock_fs_check_clean(sdp
, &sdp
->sd_freeze_gh
);
967 sdp
->sd_freeze_count
--;
970 mutex_unlock(&sdp
->sd_freeze_lock
);
976 * gfs2_unfreeze_fs - unfreezes the file system
977 * @sdp: the file system
979 * This function allows the file system to proceed by unlocking
980 * the exclusively held transaction lock. Other GFS2 nodes are
981 * now free to acquire the lock shared and go on with their lives.
985 void gfs2_unfreeze_fs(struct gfs2_sbd
*sdp
)
987 mutex_lock(&sdp
->sd_freeze_lock
);
989 if (sdp
->sd_freeze_count
&& !--sdp
->sd_freeze_count
)
990 gfs2_glock_dq_uninit(&sdp
->sd_freeze_gh
);
992 mutex_unlock(&sdp
->sd_freeze_lock
);