1 // SPDX-License-Identifier: GPL-2.0-only
3 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
4 * Copyright (C) 2004-2008 Red Hat, Inc. All rights reserved.
7 #include <linux/spinlock.h>
8 #include <linux/completion.h>
9 #include <linux/buffer_head.h>
10 #include <linux/gfs2_ondisk.h>
11 #include <linux/bio.h>
12 #include <linux/posix_acl.h>
13 #include <linux/security.h>
30 struct workqueue_struct
*gfs2_freeze_wq
;
32 extern struct workqueue_struct
*gfs2_control_wq
;
34 static void gfs2_ail_error(struct gfs2_glock
*gl
, const struct buffer_head
*bh
)
36 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
39 "AIL buffer %p: blocknr %llu state 0x%08lx mapping %p page "
41 bh
, (unsigned long long)bh
->b_blocknr
, bh
->b_state
,
42 bh
->b_folio
->mapping
, bh
->b_folio
->flags
);
43 fs_err(sdp
, "AIL glock %u:%llu mapping %p\n",
44 gl
->gl_name
.ln_type
, gl
->gl_name
.ln_number
,
45 gfs2_glock2aspace(gl
));
46 gfs2_lm(sdp
, "AIL error\n");
47 gfs2_withdraw_delayed(sdp
);
51 * __gfs2_ail_flush - remove all buffers for a given lock from the AIL
53 * @fsync: set when called from fsync (not all buffers will be clean)
54 * @nr_revokes: Number of buffers to revoke
56 * None of the buffers should be dirty, locked, or pinned.
59 static void __gfs2_ail_flush(struct gfs2_glock
*gl
, bool fsync
,
60 unsigned int nr_revokes
)
62 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
63 struct list_head
*head
= &gl
->gl_ail_list
;
64 struct gfs2_bufdata
*bd
, *tmp
;
65 struct buffer_head
*bh
;
66 const unsigned long b_state
= (1UL << BH_Dirty
)|(1UL << BH_Pinned
)|(1UL << BH_Lock
);
69 spin_lock(&sdp
->sd_ail_lock
);
70 list_for_each_entry_safe_reverse(bd
, tmp
, head
, bd_ail_gl_list
) {
74 if (bh
->b_state
& b_state
) {
77 gfs2_ail_error(gl
, bh
);
79 gfs2_trans_add_revoke(sdp
, bd
);
82 GLOCK_BUG_ON(gl
, !fsync
&& atomic_read(&gl
->gl_ail_count
));
83 spin_unlock(&sdp
->sd_ail_lock
);
86 if (gfs2_withdrawing(sdp
))
91 static int gfs2_ail_empty_gl(struct gfs2_glock
*gl
)
93 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
98 revokes
= atomic_read(&gl
->gl_ail_count
);
105 * We have nothing on the ail, but there could be revokes on
106 * the sdp revoke queue, in which case, we still want to flush
107 * the log and wait for it to finish.
109 * If the sdp revoke list is empty too, we might still have an
110 * io outstanding for writing revokes, so we should wait for
111 * it before returning.
113 * If none of these conditions are true, our revokes are all
114 * flushed and we can return.
117 have_revokes
= !list_empty(&sdp
->sd_log_revokes
);
118 log_in_flight
= atomic_read(&sdp
->sd_log_in_flight
);
119 gfs2_log_unlock(sdp
);
127 memset(&tr
, 0, sizeof(tr
));
128 set_bit(TR_ONSTACK
, &tr
.tr_flags
);
129 ret
= __gfs2_trans_begin(&tr
, sdp
, 0, revokes
, _RET_IP_
);
131 fs_err(sdp
, "Transaction error %d: Unable to write revokes.", ret
);
134 __gfs2_ail_flush(gl
, 0, revokes
);
139 gfs2_log_flush(sdp
, NULL
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
140 GFS2_LFC_AIL_EMPTY_GL
);
144 void gfs2_ail_flush(struct gfs2_glock
*gl
, bool fsync
)
146 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
147 unsigned int revokes
= atomic_read(&gl
->gl_ail_count
);
153 ret
= gfs2_trans_begin(sdp
, 0, revokes
);
156 __gfs2_ail_flush(gl
, fsync
, revokes
);
158 gfs2_log_flush(sdp
, NULL
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
163 * gfs2_rgrp_metasync - sync out the metadata of a resource group
164 * @gl: the glock protecting the resource group
168 static int gfs2_rgrp_metasync(struct gfs2_glock
*gl
)
170 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
171 struct address_space
*metamapping
= &sdp
->sd_aspace
;
172 struct gfs2_rgrpd
*rgd
= gfs2_glock2rgrp(gl
);
173 const unsigned bsize
= sdp
->sd_sb
.sb_bsize
;
174 loff_t start
= (rgd
->rd_addr
* bsize
) & PAGE_MASK
;
175 loff_t end
= PAGE_ALIGN((rgd
->rd_addr
+ rgd
->rd_length
) * bsize
) - 1;
178 filemap_fdatawrite_range(metamapping
, start
, end
);
179 error
= filemap_fdatawait_range(metamapping
, start
, end
);
180 WARN_ON_ONCE(error
&& !gfs2_withdrawing_or_withdrawn(sdp
));
181 mapping_set_error(metamapping
, error
);
188 * rgrp_go_sync - sync out the metadata for this glock
191 * Called when demoting or unlocking an EX glock. We must flush
192 * to disk all dirty buffers/pages relating to this glock, and must not
193 * return to caller to demote/unlock the glock until I/O is complete.
196 static int rgrp_go_sync(struct gfs2_glock
*gl
)
198 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
199 struct gfs2_rgrpd
*rgd
= gfs2_glock2rgrp(gl
);
202 if (!rgd
|| !test_and_clear_bit(GLF_DIRTY
, &gl
->gl_flags
))
204 GLOCK_BUG_ON(gl
, gl
->gl_state
!= LM_ST_EXCLUSIVE
);
206 gfs2_log_flush(sdp
, gl
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
207 GFS2_LFC_RGRP_GO_SYNC
);
208 error
= gfs2_rgrp_metasync(gl
);
210 error
= gfs2_ail_empty_gl(gl
);
211 gfs2_free_clones(rgd
);
216 * rgrp_go_inval - invalidate the metadata for this glock
220 * We never used LM_ST_DEFERRED with resource groups, so that we
221 * should always see the metadata flag set here.
225 static void rgrp_go_inval(struct gfs2_glock
*gl
, int flags
)
227 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
228 struct address_space
*mapping
= &sdp
->sd_aspace
;
229 struct gfs2_rgrpd
*rgd
= gfs2_glock2rgrp(gl
);
230 const unsigned bsize
= sdp
->sd_sb
.sb_bsize
;
235 start
= (rgd
->rd_addr
* bsize
) & PAGE_MASK
;
236 end
= PAGE_ALIGN((rgd
->rd_addr
+ rgd
->rd_length
) * bsize
) - 1;
237 gfs2_rgrp_brelse(rgd
);
238 WARN_ON_ONCE(!(flags
& DIO_METADATA
));
239 truncate_inode_pages_range(mapping
, start
, end
);
242 static void gfs2_rgrp_go_dump(struct seq_file
*seq
, const struct gfs2_glock
*gl
,
243 const char *fs_id_buf
)
245 struct gfs2_rgrpd
*rgd
= gl
->gl_object
;
248 gfs2_rgrp_dump(seq
, rgd
, fs_id_buf
);
251 static struct gfs2_inode
*gfs2_glock2inode(struct gfs2_glock
*gl
)
253 struct gfs2_inode
*ip
;
255 spin_lock(&gl
->gl_lockref
.lock
);
258 set_bit(GIF_GLOP_PENDING
, &ip
->i_flags
);
259 spin_unlock(&gl
->gl_lockref
.lock
);
263 struct gfs2_rgrpd
*gfs2_glock2rgrp(struct gfs2_glock
*gl
)
265 struct gfs2_rgrpd
*rgd
;
267 spin_lock(&gl
->gl_lockref
.lock
);
269 spin_unlock(&gl
->gl_lockref
.lock
);
274 static void gfs2_clear_glop_pending(struct gfs2_inode
*ip
)
279 clear_bit_unlock(GIF_GLOP_PENDING
, &ip
->i_flags
);
280 wake_up_bit(&ip
->i_flags
, GIF_GLOP_PENDING
);
284 * gfs2_inode_metasync - sync out the metadata of an inode
285 * @gl: the glock protecting the inode
288 int gfs2_inode_metasync(struct gfs2_glock
*gl
)
290 struct address_space
*metamapping
= gfs2_glock2aspace(gl
);
293 filemap_fdatawrite(metamapping
);
294 error
= filemap_fdatawait(metamapping
);
296 gfs2_io_error(gl
->gl_name
.ln_sbd
);
301 * inode_go_sync - Sync the dirty metadata of an inode
302 * @gl: the glock protecting the inode
306 static int inode_go_sync(struct gfs2_glock
*gl
)
308 struct gfs2_inode
*ip
= gfs2_glock2inode(gl
);
309 int isreg
= ip
&& S_ISREG(ip
->i_inode
.i_mode
);
310 struct address_space
*metamapping
= gfs2_glock2aspace(gl
);
314 if (test_and_clear_bit(GIF_SW_PAGED
, &ip
->i_flags
))
315 unmap_shared_mapping_range(ip
->i_inode
.i_mapping
, 0, 0);
316 inode_dio_wait(&ip
->i_inode
);
318 if (!test_and_clear_bit(GLF_DIRTY
, &gl
->gl_flags
))
321 GLOCK_BUG_ON(gl
, gl
->gl_state
!= LM_ST_EXCLUSIVE
);
323 gfs2_log_flush(gl
->gl_name
.ln_sbd
, gl
, GFS2_LOG_HEAD_FLUSH_NORMAL
|
324 GFS2_LFC_INODE_GO_SYNC
);
325 filemap_fdatawrite(metamapping
);
327 struct address_space
*mapping
= ip
->i_inode
.i_mapping
;
328 filemap_fdatawrite(mapping
);
329 error
= filemap_fdatawait(mapping
);
330 mapping_set_error(mapping
, error
);
332 ret
= gfs2_inode_metasync(gl
);
335 ret
= gfs2_ail_empty_gl(gl
);
339 * Writeback of the data mapping may cause the dirty flag to be set
340 * so we have to clear it again here.
342 smp_mb__before_atomic();
343 clear_bit(GLF_DIRTY
, &gl
->gl_flags
);
346 gfs2_clear_glop_pending(ip
);
351 * inode_go_inval - prepare a inode glock to be released
355 * Normally we invalidate everything, but if we are moving into
356 * LM_ST_DEFERRED from LM_ST_SHARED or LM_ST_EXCLUSIVE then we
357 * can keep hold of the metadata, since it won't have changed.
361 static void inode_go_inval(struct gfs2_glock
*gl
, int flags
)
363 struct gfs2_inode
*ip
= gfs2_glock2inode(gl
);
365 if (flags
& DIO_METADATA
) {
366 struct address_space
*mapping
= gfs2_glock2aspace(gl
);
367 truncate_inode_pages(mapping
, 0);
369 set_bit(GLF_INSTANTIATE_NEEDED
, &gl
->gl_flags
);
370 forget_all_cached_acls(&ip
->i_inode
);
371 security_inode_invalidate_secctx(&ip
->i_inode
);
372 gfs2_dir_hash_inval(ip
);
376 if (ip
== GFS2_I(gl
->gl_name
.ln_sbd
->sd_rindex
)) {
377 gfs2_log_flush(gl
->gl_name
.ln_sbd
, NULL
,
378 GFS2_LOG_HEAD_FLUSH_NORMAL
|
379 GFS2_LFC_INODE_GO_INVAL
);
380 gl
->gl_name
.ln_sbd
->sd_rindex_uptodate
= 0;
382 if (ip
&& S_ISREG(ip
->i_inode
.i_mode
))
383 truncate_inode_pages(ip
->i_inode
.i_mapping
, 0);
385 gfs2_clear_glop_pending(ip
);
388 static int gfs2_dinode_in(struct gfs2_inode
*ip
, const void *buf
)
390 struct gfs2_sbd
*sdp
= GFS2_SB(&ip
->i_inode
);
391 const struct gfs2_dinode
*str
= buf
;
392 struct timespec64 atime
, iatime
;
394 umode_t mode
= be32_to_cpu(str
->di_mode
);
395 struct inode
*inode
= &ip
->i_inode
;
396 bool is_new
= inode
->i_state
& I_NEW
;
398 if (unlikely(ip
->i_no_addr
!= be64_to_cpu(str
->di_num
.no_addr
))) {
399 gfs2_consist_inode(ip
);
402 if (unlikely(!is_new
&& inode_wrong_type(inode
, mode
))) {
403 gfs2_consist_inode(ip
);
406 ip
->i_no_formal_ino
= be64_to_cpu(str
->di_num
.no_formal_ino
);
407 inode
->i_mode
= mode
;
410 switch (mode
& S_IFMT
) {
413 inode
->i_rdev
= MKDEV(be32_to_cpu(str
->di_major
),
414 be32_to_cpu(str
->di_minor
));
419 i_uid_write(inode
, be32_to_cpu(str
->di_uid
));
420 i_gid_write(inode
, be32_to_cpu(str
->di_gid
));
421 set_nlink(inode
, be32_to_cpu(str
->di_nlink
));
422 i_size_write(inode
, be64_to_cpu(str
->di_size
));
423 gfs2_set_inode_blocks(inode
, be64_to_cpu(str
->di_blocks
));
424 atime
.tv_sec
= be64_to_cpu(str
->di_atime
);
425 atime
.tv_nsec
= be32_to_cpu(str
->di_atime_nsec
);
426 iatime
= inode_get_atime(inode
);
427 if (timespec64_compare(&iatime
, &atime
) < 0)
428 inode_set_atime_to_ts(inode
, atime
);
429 inode_set_mtime(inode
, be64_to_cpu(str
->di_mtime
),
430 be32_to_cpu(str
->di_mtime_nsec
));
431 inode_set_ctime(inode
, be64_to_cpu(str
->di_ctime
),
432 be32_to_cpu(str
->di_ctime_nsec
));
434 ip
->i_goal
= be64_to_cpu(str
->di_goal_meta
);
435 ip
->i_generation
= be64_to_cpu(str
->di_generation
);
437 ip
->i_diskflags
= be32_to_cpu(str
->di_flags
);
438 ip
->i_eattr
= be64_to_cpu(str
->di_eattr
);
439 /* i_diskflags and i_eattr must be set before gfs2_set_inode_flags() */
440 gfs2_set_inode_flags(inode
);
441 height
= be16_to_cpu(str
->di_height
);
442 if (unlikely(height
> sdp
->sd_max_height
)) {
443 gfs2_consist_inode(ip
);
446 ip
->i_height
= (u8
)height
;
448 depth
= be16_to_cpu(str
->di_depth
);
449 if (unlikely(depth
> GFS2_DIR_MAX_DEPTH
)) {
450 gfs2_consist_inode(ip
);
453 ip
->i_depth
= (u8
)depth
;
454 ip
->i_entries
= be32_to_cpu(str
->di_entries
);
456 if (gfs2_is_stuffed(ip
) && inode
->i_size
> gfs2_max_stuffed_size(ip
)) {
457 gfs2_consist_inode(ip
);
460 if (S_ISREG(inode
->i_mode
))
461 gfs2_set_aops(inode
);
467 * gfs2_inode_refresh - Refresh the incore copy of the dinode
468 * @ip: The GFS2 inode
473 static int gfs2_inode_refresh(struct gfs2_inode
*ip
)
475 struct buffer_head
*dibh
;
478 error
= gfs2_meta_inode_buffer(ip
, &dibh
);
482 error
= gfs2_dinode_in(ip
, dibh
->b_data
);
488 * inode_go_instantiate - read in an inode if necessary
494 static int inode_go_instantiate(struct gfs2_glock
*gl
)
496 struct gfs2_inode
*ip
= gl
->gl_object
;
497 struct gfs2_glock
*io_gl
;
500 if (!ip
) /* no inode to populate - read it in later */
503 error
= gfs2_inode_refresh(ip
);
506 io_gl
= ip
->i_iopen_gh
.gh_gl
;
507 io_gl
->gl_no_formal_ino
= ip
->i_no_formal_ino
;
511 static int inode_go_held(struct gfs2_holder
*gh
)
513 struct gfs2_glock
*gl
= gh
->gh_gl
;
514 struct gfs2_inode
*ip
= gl
->gl_object
;
517 if (!ip
) /* no inode to populate - read it in later */
520 if (gh
->gh_state
!= LM_ST_DEFERRED
)
521 inode_dio_wait(&ip
->i_inode
);
523 if ((ip
->i_diskflags
& GFS2_DIF_TRUNC_IN_PROG
) &&
524 (gl
->gl_state
== LM_ST_EXCLUSIVE
) &&
525 (gh
->gh_state
== LM_ST_EXCLUSIVE
))
526 error
= gfs2_truncatei_resume(ip
);
532 * inode_go_dump - print information about an inode
535 * @fs_id_buf: file system id (may be empty)
539 static void inode_go_dump(struct seq_file
*seq
, const struct gfs2_glock
*gl
,
540 const char *fs_id_buf
)
542 struct gfs2_inode
*ip
= gl
->gl_object
;
543 const struct inode
*inode
= &ip
->i_inode
;
548 gfs2_print_dbg(seq
, "%s I: n:%llu/%llu t:%u f:0x%02lx d:0x%08x s:%llu "
549 "p:%lu\n", fs_id_buf
,
550 (unsigned long long)ip
->i_no_formal_ino
,
551 (unsigned long long)ip
->i_no_addr
,
552 IF2DT(inode
->i_mode
), ip
->i_flags
,
553 (unsigned int)ip
->i_diskflags
,
554 (unsigned long long)i_size_read(inode
),
555 inode
->i_data
.nrpages
);
559 * freeze_go_callback - A cluster node is requesting a freeze
561 * @remote: true if this came from a different cluster node
564 static void freeze_go_callback(struct gfs2_glock
*gl
, bool remote
)
566 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
567 struct super_block
*sb
= sdp
->sd_vfs
;
570 (gl
->gl_state
!= LM_ST_SHARED
&&
571 gl
->gl_state
!= LM_ST_UNLOCKED
) ||
572 gl
->gl_demote_state
!= LM_ST_UNLOCKED
)
576 * Try to get an active super block reference to prevent racing with
577 * unmount (see super_trylock_shared()). But note that unmount isn't
578 * the only place where a write lock on s_umount is taken, and we can
579 * fail here because of things like remount as well.
581 if (down_read_trylock(&sb
->s_umount
)) {
582 atomic_inc(&sb
->s_active
);
583 up_read(&sb
->s_umount
);
584 if (!queue_work(gfs2_freeze_wq
, &sdp
->sd_freeze_work
))
585 deactivate_super(sb
);
590 * freeze_go_xmote_bh - After promoting/demoting the freeze glock
593 static int freeze_go_xmote_bh(struct gfs2_glock
*gl
)
595 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
596 struct gfs2_inode
*ip
= GFS2_I(sdp
->sd_jdesc
->jd_inode
);
597 struct gfs2_glock
*j_gl
= ip
->i_gl
;
598 struct gfs2_log_header_host head
;
601 if (test_bit(SDF_JOURNAL_LIVE
, &sdp
->sd_flags
)) {
602 j_gl
->gl_ops
->go_inval(j_gl
, DIO_METADATA
);
604 error
= gfs2_find_jhead(sdp
->sd_jdesc
, &head
, false);
605 if (gfs2_assert_withdraw_delayed(sdp
, !error
))
607 if (gfs2_assert_withdraw_delayed(sdp
, head
.lh_flags
&
608 GFS2_LOG_HEAD_UNMOUNT
))
610 sdp
->sd_log_sequence
= head
.lh_sequence
+ 1;
611 gfs2_log_pointers_init(sdp
, head
.lh_blkno
);
617 * iopen_go_callback - schedule the dcache entry for the inode to be deleted
619 * @remote: true if this came from a different cluster node
621 * gl_lockref.lock lock is held while calling this
623 static void iopen_go_callback(struct gfs2_glock
*gl
, bool remote
)
625 struct gfs2_inode
*ip
= gl
->gl_object
;
626 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
628 if (!remote
|| sb_rdonly(sdp
->sd_vfs
) ||
629 test_bit(SDF_KILL
, &sdp
->sd_flags
))
632 if (gl
->gl_demote_state
== LM_ST_UNLOCKED
&&
633 gl
->gl_state
== LM_ST_SHARED
&& ip
) {
634 gl
->gl_lockref
.count
++;
635 if (!gfs2_queue_try_to_evict(gl
))
636 gl
->gl_lockref
.count
--;
641 * inode_go_unlocked - wake up anyone waiting for dlm's unlock ast
642 * @gl: glock being unlocked
644 * For now, this is only used for the journal inode glock. In withdraw
645 * situations, we need to wait for the glock to be unlocked so that we know
646 * other nodes may proceed with recovery / journal replay.
648 static void inode_go_unlocked(struct gfs2_glock
*gl
)
650 /* Note that we cannot reference gl_object because it's already set
651 * to NULL by this point in its lifecycle. */
652 if (!test_bit(GLF_UNLOCKED
, &gl
->gl_flags
))
654 clear_bit_unlock(GLF_UNLOCKED
, &gl
->gl_flags
);
655 wake_up_bit(&gl
->gl_flags
, GLF_UNLOCKED
);
659 * nondisk_go_callback - used to signal when a node did a withdraw
660 * @gl: the nondisk glock
661 * @remote: true if this came from a different cluster node
664 static void nondisk_go_callback(struct gfs2_glock
*gl
, bool remote
)
666 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
668 /* Ignore the callback unless it's from another node, and it's the
670 if (!remote
|| gl
->gl_name
.ln_number
!= GFS2_LIVE_LOCK
)
673 /* First order of business is to cancel the demote request. We don't
674 * really want to demote a nondisk glock. At best it's just to inform
675 * us of another node's withdraw. We'll keep it in SH mode. */
676 clear_bit(GLF_DEMOTE
, &gl
->gl_flags
);
677 clear_bit(GLF_PENDING_DEMOTE
, &gl
->gl_flags
);
679 /* Ignore the unlock if we're withdrawn, unmounting, or in recovery. */
680 if (test_bit(SDF_NORECOVERY
, &sdp
->sd_flags
) ||
681 test_bit(SDF_WITHDRAWN
, &sdp
->sd_flags
) ||
682 test_bit(SDF_REMOTE_WITHDRAW
, &sdp
->sd_flags
))
685 /* We only care when a node wants us to unlock, because that means
686 * they want a journal recovered. */
687 if (gl
->gl_demote_state
!= LM_ST_UNLOCKED
)
690 if (sdp
->sd_args
.ar_spectator
) {
691 fs_warn(sdp
, "Spectator node cannot recover journals.\n");
695 fs_warn(sdp
, "Some node has withdrawn; checking for recovery.\n");
696 set_bit(SDF_REMOTE_WITHDRAW
, &sdp
->sd_flags
);
698 * We can't call remote_withdraw directly here or gfs2_recover_journal
699 * because this is called from the glock unlock function and the
700 * remote_withdraw needs to enqueue and dequeue the same "live" glock
701 * we were called from. So we queue it to the control work queue in
704 queue_delayed_work(gfs2_control_wq
, &sdp
->sd_control_work
, 0);
707 const struct gfs2_glock_operations gfs2_meta_glops
= {
708 .go_type
= LM_TYPE_META
,
709 .go_flags
= GLOF_NONDISK
,
712 const struct gfs2_glock_operations gfs2_inode_glops
= {
713 .go_sync
= inode_go_sync
,
714 .go_inval
= inode_go_inval
,
715 .go_instantiate
= inode_go_instantiate
,
716 .go_held
= inode_go_held
,
717 .go_dump
= inode_go_dump
,
718 .go_type
= LM_TYPE_INODE
,
719 .go_flags
= GLOF_ASPACE
| GLOF_LVB
,
720 .go_unlocked
= inode_go_unlocked
,
723 const struct gfs2_glock_operations gfs2_rgrp_glops
= {
724 .go_sync
= rgrp_go_sync
,
725 .go_inval
= rgrp_go_inval
,
726 .go_instantiate
= gfs2_rgrp_go_instantiate
,
727 .go_dump
= gfs2_rgrp_go_dump
,
728 .go_type
= LM_TYPE_RGRP
,
729 .go_flags
= GLOF_LVB
,
732 const struct gfs2_glock_operations gfs2_freeze_glops
= {
733 .go_xmote_bh
= freeze_go_xmote_bh
,
734 .go_callback
= freeze_go_callback
,
735 .go_type
= LM_TYPE_NONDISK
,
736 .go_flags
= GLOF_NONDISK
,
739 const struct gfs2_glock_operations gfs2_iopen_glops
= {
740 .go_type
= LM_TYPE_IOPEN
,
741 .go_callback
= iopen_go_callback
,
742 .go_dump
= inode_go_dump
,
743 .go_flags
= GLOF_NONDISK
,
747 const struct gfs2_glock_operations gfs2_flock_glops
= {
748 .go_type
= LM_TYPE_FLOCK
,
749 .go_flags
= GLOF_NONDISK
,
752 const struct gfs2_glock_operations gfs2_nondisk_glops
= {
753 .go_type
= LM_TYPE_NONDISK
,
754 .go_flags
= GLOF_NONDISK
,
755 .go_callback
= nondisk_go_callback
,
758 const struct gfs2_glock_operations gfs2_quota_glops
= {
759 .go_type
= LM_TYPE_QUOTA
,
760 .go_flags
= GLOF_LVB
| GLOF_NONDISK
,
763 const struct gfs2_glock_operations gfs2_journal_glops
= {
764 .go_type
= LM_TYPE_JOURNAL
,
765 .go_flags
= GLOF_NONDISK
,
768 const struct gfs2_glock_operations
*gfs2_glops_list
[] = {
769 [LM_TYPE_META
] = &gfs2_meta_glops
,
770 [LM_TYPE_INODE
] = &gfs2_inode_glops
,
771 [LM_TYPE_RGRP
] = &gfs2_rgrp_glops
,
772 [LM_TYPE_IOPEN
] = &gfs2_iopen_glops
,
773 [LM_TYPE_FLOCK
] = &gfs2_flock_glops
,
774 [LM_TYPE_NONDISK
] = &gfs2_nondisk_glops
,
775 [LM_TYPE_QUOTA
] = &gfs2_quota_glops
,
776 [LM_TYPE_JOURNAL
] = &gfs2_journal_glops
,