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/delay.h>
16 #include <linux/sort.h>
17 #include <linux/jhash.h>
18 #include <linux/kallsyms.h>
19 #include <linux/gfs2_ondisk.h>
20 #include <linux/list.h>
21 #include <linux/lm_interface.h>
22 #include <asm/uaccess.h>
37 struct gfs2_holder gr_gh
;
38 struct delayed_work gr_work
;
41 struct gfs2_gl_hash_bucket
{
42 struct hlist_head hb_list
;
45 typedef void (*glock_examiner
) (struct gfs2_glock
* gl
);
47 static int gfs2_dump_lockstate(struct gfs2_sbd
*sdp
);
48 static int dump_glock(struct gfs2_glock
*gl
);
49 static int dump_inode(struct gfs2_inode
*ip
);
51 #define GFS2_GL_HASH_SHIFT 15
52 #define GFS2_GL_HASH_SIZE (1 << GFS2_GL_HASH_SHIFT)
53 #define GFS2_GL_HASH_MASK (GFS2_GL_HASH_SIZE - 1)
55 static struct gfs2_gl_hash_bucket gl_hash_table
[GFS2_GL_HASH_SIZE
];
58 * Despite what you might think, the numbers below are not arbitrary :-)
59 * They are taken from the ipv4 routing hash code, which is well tested
60 * and thus should be nearly optimal. Later on we might tweek the numbers
61 * but for now this should be fine.
63 * The reason for putting the locks in a separate array from the list heads
64 * is that we can have fewer locks than list heads and save memory. We use
65 * the same hash function for both, but with a different hash mask.
67 #if defined(CONFIG_SMP) || defined(CONFIG_DEBUG_SPINLOCK) || \
68 defined(CONFIG_PROVE_LOCKING)
71 # define GL_HASH_LOCK_SZ 256
74 # define GL_HASH_LOCK_SZ 4096
76 # define GL_HASH_LOCK_SZ 2048
78 # define GL_HASH_LOCK_SZ 1024
80 # define GL_HASH_LOCK_SZ 512
82 # define GL_HASH_LOCK_SZ 256
86 /* We never want more locks than chains */
87 #if GFS2_GL_HASH_SIZE < GL_HASH_LOCK_SZ
88 # undef GL_HASH_LOCK_SZ
89 # define GL_HASH_LOCK_SZ GFS2_GL_HASH_SIZE
92 static rwlock_t gl_hash_locks
[GL_HASH_LOCK_SZ
];
94 static inline rwlock_t
*gl_lock_addr(unsigned int x
)
96 return &gl_hash_locks
[x
& (GL_HASH_LOCK_SZ
-1)];
98 #else /* not SMP, so no spinlocks required */
99 static inline rwlock_t
*gl_lock_addr(unsigned int x
)
106 * relaxed_state_ok - is a requested lock compatible with the current lock mode?
107 * @actual: the current state of the lock
108 * @requested: the lock state that was requested by the caller
109 * @flags: the modifier flags passed in by the caller
111 * Returns: 1 if the locks are compatible, 0 otherwise
114 static inline int relaxed_state_ok(unsigned int actual
, unsigned requested
,
117 if (actual
== requested
)
120 if (flags
& GL_EXACT
)
123 if (actual
== LM_ST_EXCLUSIVE
&& requested
== LM_ST_SHARED
)
126 if (actual
!= LM_ST_UNLOCKED
&& (flags
& LM_FLAG_ANY
))
133 * gl_hash() - Turn glock number into hash bucket number
134 * @lock: The glock number
136 * Returns: The number of the corresponding hash bucket
139 static unsigned int gl_hash(const struct gfs2_sbd
*sdp
,
140 const struct lm_lockname
*name
)
144 h
= jhash(&name
->ln_number
, sizeof(u64
), 0);
145 h
= jhash(&name
->ln_type
, sizeof(unsigned int), h
);
146 h
= jhash(&sdp
, sizeof(struct gfs2_sbd
*), h
);
147 h
&= GFS2_GL_HASH_MASK
;
153 * glock_free() - Perform a few checks and then release struct gfs2_glock
154 * @gl: The glock to release
156 * Also calls lock module to release its internal structure for this glock.
160 static void glock_free(struct gfs2_glock
*gl
)
162 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
163 struct inode
*aspace
= gl
->gl_aspace
;
165 gfs2_lm_put_lock(sdp
, gl
->gl_lock
);
168 gfs2_aspace_put(aspace
);
170 kmem_cache_free(gfs2_glock_cachep
, gl
);
174 * gfs2_glock_hold() - increment reference count on glock
175 * @gl: The glock to hold
179 void gfs2_glock_hold(struct gfs2_glock
*gl
)
181 atomic_inc(&gl
->gl_ref
);
185 * gfs2_glock_put() - Decrement reference count on glock
186 * @gl: The glock to put
190 int gfs2_glock_put(struct gfs2_glock
*gl
)
193 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
195 write_lock(gl_lock_addr(gl
->gl_hash
));
196 if (atomic_dec_and_test(&gl
->gl_ref
)) {
197 hlist_del(&gl
->gl_list
);
198 write_unlock(gl_lock_addr(gl
->gl_hash
));
199 BUG_ON(spin_is_locked(&gl
->gl_spin
));
200 gfs2_assert(sdp
, gl
->gl_state
== LM_ST_UNLOCKED
);
201 gfs2_assert(sdp
, list_empty(&gl
->gl_reclaim
));
202 gfs2_assert(sdp
, list_empty(&gl
->gl_holders
));
203 gfs2_assert(sdp
, list_empty(&gl
->gl_waiters1
));
204 gfs2_assert(sdp
, list_empty(&gl
->gl_waiters2
));
205 gfs2_assert(sdp
, list_empty(&gl
->gl_waiters3
));
210 write_unlock(gl_lock_addr(gl
->gl_hash
));
216 * queue_empty - check to see if a glock's queue is empty
218 * @head: the head of the queue to check
220 * This function protects the list in the event that a process already
221 * has a holder on the list and is adding a second holder for itself.
222 * The glmutex lock is what generally prevents processes from working
223 * on the same glock at once, but the special case of adding a second
224 * holder for yourself ("recursive" locking) doesn't involve locking
225 * glmutex, making the spin lock necessary.
227 * Returns: 1 if the queue is empty
230 static inline int queue_empty(struct gfs2_glock
*gl
, struct list_head
*head
)
233 spin_lock(&gl
->gl_spin
);
234 empty
= list_empty(head
);
235 spin_unlock(&gl
->gl_spin
);
240 * search_bucket() - Find struct gfs2_glock by lock number
241 * @bucket: the bucket to search
242 * @name: The lock name
244 * Returns: NULL, or the struct gfs2_glock with the requested number
247 static struct gfs2_glock
*search_bucket(unsigned int hash
,
248 const struct gfs2_sbd
*sdp
,
249 const struct lm_lockname
*name
)
251 struct gfs2_glock
*gl
;
252 struct hlist_node
*h
;
254 hlist_for_each_entry(gl
, h
, &gl_hash_table
[hash
].hb_list
, gl_list
) {
255 if (!lm_name_equal(&gl
->gl_name
, name
))
257 if (gl
->gl_sbd
!= sdp
)
260 atomic_inc(&gl
->gl_ref
);
269 * gfs2_glock_find() - Find glock by lock number
270 * @sdp: The GFS2 superblock
271 * @name: The lock name
273 * Returns: NULL, or the struct gfs2_glock with the requested number
276 static struct gfs2_glock
*gfs2_glock_find(const struct gfs2_sbd
*sdp
,
277 const struct lm_lockname
*name
)
279 unsigned int hash
= gl_hash(sdp
, name
);
280 struct gfs2_glock
*gl
;
282 read_lock(gl_lock_addr(hash
));
283 gl
= search_bucket(hash
, sdp
, name
);
284 read_unlock(gl_lock_addr(hash
));
290 * gfs2_glock_get() - Get a glock, or create one if one doesn't exist
291 * @sdp: The GFS2 superblock
292 * @number: the lock number
293 * @glops: The glock_operations to use
294 * @create: If 0, don't create the glock if it doesn't exist
295 * @glp: the glock is returned here
297 * This does not lock a glock, just finds/creates structures for one.
302 int gfs2_glock_get(struct gfs2_sbd
*sdp
, u64 number
,
303 const struct gfs2_glock_operations
*glops
, int create
,
304 struct gfs2_glock
**glp
)
306 struct lm_lockname name
= { .ln_number
= number
, .ln_type
= glops
->go_type
};
307 struct gfs2_glock
*gl
, *tmp
;
308 unsigned int hash
= gl_hash(sdp
, &name
);
311 read_lock(gl_lock_addr(hash
));
312 gl
= search_bucket(hash
, sdp
, &name
);
313 read_unlock(gl_lock_addr(hash
));
320 gl
= kmem_cache_alloc(gfs2_glock_cachep
, GFP_KERNEL
);
326 atomic_set(&gl
->gl_ref
, 1);
327 gl
->gl_state
= LM_ST_UNLOCKED
;
332 gl
->gl_req_gh
= NULL
;
333 gl
->gl_req_bh
= NULL
;
335 gl
->gl_stamp
= jiffies
;
336 gl
->gl_object
= NULL
;
338 gl
->gl_aspace
= NULL
;
339 lops_init_le(&gl
->gl_le
, &gfs2_glock_lops
);
341 /* If this glock protects actual on-disk data or metadata blocks,
342 create a VFS inode to manage the pages/buffers holding them. */
343 if (glops
== &gfs2_inode_glops
|| glops
== &gfs2_rgrp_glops
) {
344 gl
->gl_aspace
= gfs2_aspace_get(sdp
);
345 if (!gl
->gl_aspace
) {
351 error
= gfs2_lm_get_lock(sdp
, &name
, &gl
->gl_lock
);
355 write_lock(gl_lock_addr(hash
));
356 tmp
= search_bucket(hash
, sdp
, &name
);
358 write_unlock(gl_lock_addr(hash
));
362 hlist_add_head(&gl
->gl_list
, &gl_hash_table
[hash
].hb_list
);
363 write_unlock(gl_lock_addr(hash
));
372 gfs2_aspace_put(gl
->gl_aspace
);
374 kmem_cache_free(gfs2_glock_cachep
, gl
);
379 * gfs2_holder_init - initialize a struct gfs2_holder in the default way
381 * @state: the state we're requesting
382 * @flags: the modifier flags
383 * @gh: the holder structure
387 void gfs2_holder_init(struct gfs2_glock
*gl
, unsigned int state
, unsigned flags
,
388 struct gfs2_holder
*gh
)
390 INIT_LIST_HEAD(&gh
->gh_list
);
392 gh
->gh_ip
= (unsigned long)__builtin_return_address(0);
393 gh
->gh_owner
= current
;
394 gh
->gh_state
= state
;
395 gh
->gh_flags
= flags
;
398 init_completion(&gh
->gh_wait
);
400 if (gh
->gh_state
== LM_ST_EXCLUSIVE
)
401 gh
->gh_flags
|= GL_LOCAL_EXCL
;
407 * gfs2_holder_reinit - reinitialize a struct gfs2_holder so we can requeue it
408 * @state: the state we're requesting
409 * @flags: the modifier flags
410 * @gh: the holder structure
412 * Don't mess with the glock.
416 void gfs2_holder_reinit(unsigned int state
, unsigned flags
, struct gfs2_holder
*gh
)
418 gh
->gh_state
= state
;
419 gh
->gh_flags
= flags
;
420 if (gh
->gh_state
== LM_ST_EXCLUSIVE
)
421 gh
->gh_flags
|= GL_LOCAL_EXCL
;
423 gh
->gh_iflags
&= 1 << HIF_ALLOCED
;
424 gh
->gh_ip
= (unsigned long)__builtin_return_address(0);
428 * gfs2_holder_uninit - uninitialize a holder structure (drop glock reference)
429 * @gh: the holder structure
433 void gfs2_holder_uninit(struct gfs2_holder
*gh
)
435 gfs2_glock_put(gh
->gh_gl
);
441 * gfs2_holder_get - get a struct gfs2_holder structure
443 * @state: the state we're requesting
444 * @flags: the modifier flags
447 * Figure out how big an impact this function has. Either:
448 * 1) Replace it with a cache of structures hanging off the struct gfs2_sbd
449 * 2) Leave it like it is
451 * Returns: the holder structure, NULL on ENOMEM
454 static struct gfs2_holder
*gfs2_holder_get(struct gfs2_glock
*gl
,
456 int flags
, gfp_t gfp_flags
)
458 struct gfs2_holder
*gh
;
460 gh
= kmalloc(sizeof(struct gfs2_holder
), gfp_flags
);
464 gfs2_holder_init(gl
, state
, flags
, gh
);
465 set_bit(HIF_ALLOCED
, &gh
->gh_iflags
);
466 gh
->gh_ip
= (unsigned long)__builtin_return_address(0);
471 * gfs2_holder_put - get rid of a struct gfs2_holder structure
472 * @gh: the holder structure
476 static void gfs2_holder_put(struct gfs2_holder
*gh
)
478 gfs2_holder_uninit(gh
);
483 * rq_mutex - process a mutex request in the queue
484 * @gh: the glock holder
486 * Returns: 1 if the queue is blocked
489 static int rq_mutex(struct gfs2_holder
*gh
)
491 struct gfs2_glock
*gl
= gh
->gh_gl
;
493 list_del_init(&gh
->gh_list
);
494 /* gh->gh_error never examined. */
495 set_bit(GLF_LOCK
, &gl
->gl_flags
);
496 complete(&gh
->gh_wait
);
502 * rq_promote - process a promote request in the queue
503 * @gh: the glock holder
505 * Acquire a new inter-node lock, or change a lock state to more restrictive.
507 * Returns: 1 if the queue is blocked
510 static int rq_promote(struct gfs2_holder
*gh
)
512 struct gfs2_glock
*gl
= gh
->gh_gl
;
513 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
514 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
516 if (!relaxed_state_ok(gl
->gl_state
, gh
->gh_state
, gh
->gh_flags
)) {
517 if (list_empty(&gl
->gl_holders
)) {
519 set_bit(GLF_LOCK
, &gl
->gl_flags
);
520 spin_unlock(&gl
->gl_spin
);
522 if (atomic_read(&sdp
->sd_reclaim_count
) >
523 gfs2_tune_get(sdp
, gt_reclaim_limit
) &&
524 !(gh
->gh_flags
& LM_FLAG_PRIORITY
)) {
525 gfs2_reclaim_glock(sdp
);
526 gfs2_reclaim_glock(sdp
);
529 glops
->go_xmote_th(gl
, gh
->gh_state
, gh
->gh_flags
);
530 spin_lock(&gl
->gl_spin
);
535 if (list_empty(&gl
->gl_holders
)) {
536 set_bit(HIF_FIRST
, &gh
->gh_iflags
);
537 set_bit(GLF_LOCK
, &gl
->gl_flags
);
539 struct gfs2_holder
*next_gh
;
540 if (gh
->gh_flags
& GL_LOCAL_EXCL
)
542 next_gh
= list_entry(gl
->gl_holders
.next
, struct gfs2_holder
,
544 if (next_gh
->gh_flags
& GL_LOCAL_EXCL
)
548 list_move_tail(&gh
->gh_list
, &gl
->gl_holders
);
550 set_bit(HIF_HOLDER
, &gh
->gh_iflags
);
552 complete(&gh
->gh_wait
);
558 * rq_demote - process a demote request in the queue
559 * @gh: the glock holder
561 * Returns: 1 if the queue is blocked
564 static int rq_demote(struct gfs2_holder
*gh
)
566 struct gfs2_glock
*gl
= gh
->gh_gl
;
567 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
569 if (!list_empty(&gl
->gl_holders
))
572 if (gl
->gl_state
== gh
->gh_state
|| gl
->gl_state
== LM_ST_UNLOCKED
) {
573 list_del_init(&gh
->gh_list
);
575 spin_unlock(&gl
->gl_spin
);
576 if (test_bit(HIF_DEALLOC
, &gh
->gh_iflags
))
579 complete(&gh
->gh_wait
);
580 spin_lock(&gl
->gl_spin
);
583 set_bit(GLF_LOCK
, &gl
->gl_flags
);
584 spin_unlock(&gl
->gl_spin
);
586 if (gh
->gh_state
== LM_ST_UNLOCKED
||
587 gl
->gl_state
!= LM_ST_EXCLUSIVE
)
588 glops
->go_drop_th(gl
);
590 glops
->go_xmote_th(gl
, gh
->gh_state
, gh
->gh_flags
);
592 spin_lock(&gl
->gl_spin
);
599 * rq_greedy - process a queued request to drop greedy status
600 * @gh: the glock holder
602 * Returns: 1 if the queue is blocked
605 static int rq_greedy(struct gfs2_holder
*gh
)
607 struct gfs2_glock
*gl
= gh
->gh_gl
;
609 list_del_init(&gh
->gh_list
);
610 /* gh->gh_error never examined. */
611 clear_bit(GLF_GREEDY
, &gl
->gl_flags
);
612 spin_unlock(&gl
->gl_spin
);
614 gfs2_holder_uninit(gh
);
615 kfree(container_of(gh
, struct greedy
, gr_gh
));
617 spin_lock(&gl
->gl_spin
);
623 * run_queue - process holder structures on a glock
627 static void run_queue(struct gfs2_glock
*gl
)
629 struct gfs2_holder
*gh
;
633 if (test_bit(GLF_LOCK
, &gl
->gl_flags
))
636 if (!list_empty(&gl
->gl_waiters1
)) {
637 gh
= list_entry(gl
->gl_waiters1
.next
,
638 struct gfs2_holder
, gh_list
);
640 if (test_bit(HIF_MUTEX
, &gh
->gh_iflags
))
641 blocked
= rq_mutex(gh
);
643 gfs2_assert_warn(gl
->gl_sbd
, 0);
645 } else if (!list_empty(&gl
->gl_waiters2
) &&
646 !test_bit(GLF_SKIP_WAITERS2
, &gl
->gl_flags
)) {
647 gh
= list_entry(gl
->gl_waiters2
.next
,
648 struct gfs2_holder
, gh_list
);
650 if (test_bit(HIF_DEMOTE
, &gh
->gh_iflags
))
651 blocked
= rq_demote(gh
);
652 else if (test_bit(HIF_GREEDY
, &gh
->gh_iflags
))
653 blocked
= rq_greedy(gh
);
655 gfs2_assert_warn(gl
->gl_sbd
, 0);
657 } else if (!list_empty(&gl
->gl_waiters3
)) {
658 gh
= list_entry(gl
->gl_waiters3
.next
,
659 struct gfs2_holder
, gh_list
);
661 if (test_bit(HIF_PROMOTE
, &gh
->gh_iflags
))
662 blocked
= rq_promote(gh
);
664 gfs2_assert_warn(gl
->gl_sbd
, 0);
675 * gfs2_glmutex_lock - acquire a local lock on a glock
678 * Gives caller exclusive access to manipulate a glock structure.
681 static void gfs2_glmutex_lock(struct gfs2_glock
*gl
)
683 struct gfs2_holder gh
;
685 gfs2_holder_init(gl
, 0, 0, &gh
);
686 set_bit(HIF_MUTEX
, &gh
.gh_iflags
);
688 spin_lock(&gl
->gl_spin
);
689 if (test_and_set_bit(GLF_LOCK
, &gl
->gl_flags
)) {
690 list_add_tail(&gh
.gh_list
, &gl
->gl_waiters1
);
692 gl
->gl_owner
= current
;
693 gl
->gl_ip
= (unsigned long)__builtin_return_address(0);
694 complete(&gh
.gh_wait
);
696 spin_unlock(&gl
->gl_spin
);
698 wait_for_completion(&gh
.gh_wait
);
699 gfs2_holder_uninit(&gh
);
703 * gfs2_glmutex_trylock - try to acquire a local lock on a glock
706 * Returns: 1 if the glock is acquired
709 static int gfs2_glmutex_trylock(struct gfs2_glock
*gl
)
713 spin_lock(&gl
->gl_spin
);
714 if (test_and_set_bit(GLF_LOCK
, &gl
->gl_flags
)) {
717 gl
->gl_owner
= current
;
718 gl
->gl_ip
= (unsigned long)__builtin_return_address(0);
720 spin_unlock(&gl
->gl_spin
);
726 * gfs2_glmutex_unlock - release a local lock on a glock
731 static void gfs2_glmutex_unlock(struct gfs2_glock
*gl
)
733 spin_lock(&gl
->gl_spin
);
734 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
738 BUG_ON(!spin_is_locked(&gl
->gl_spin
));
739 spin_unlock(&gl
->gl_spin
);
743 * handle_callback - add a demote request to a lock's queue
745 * @state: the state the caller wants us to change to
747 * Note: This may fail sliently if we are out of memory.
750 static void handle_callback(struct gfs2_glock
*gl
, unsigned int state
)
752 struct gfs2_holder
*gh
, *new_gh
= NULL
;
755 spin_lock(&gl
->gl_spin
);
757 list_for_each_entry(gh
, &gl
->gl_waiters2
, gh_list
) {
758 if (test_bit(HIF_DEMOTE
, &gh
->gh_iflags
) &&
759 gl
->gl_req_gh
!= gh
) {
760 if (gh
->gh_state
!= state
)
761 gh
->gh_state
= LM_ST_UNLOCKED
;
767 list_add_tail(&new_gh
->gh_list
, &gl
->gl_waiters2
);
770 spin_unlock(&gl
->gl_spin
);
772 new_gh
= gfs2_holder_get(gl
, state
, LM_FLAG_TRY
, GFP_NOFS
);
775 set_bit(HIF_DEMOTE
, &new_gh
->gh_iflags
);
776 set_bit(HIF_DEALLOC
, &new_gh
->gh_iflags
);
782 spin_unlock(&gl
->gl_spin
);
785 gfs2_holder_put(new_gh
);
789 * state_change - record that the glock is now in a different state
791 * @new_state the new state
795 static void state_change(struct gfs2_glock
*gl
, unsigned int new_state
)
799 held1
= (gl
->gl_state
!= LM_ST_UNLOCKED
);
800 held2
= (new_state
!= LM_ST_UNLOCKED
);
802 if (held1
!= held2
) {
809 gl
->gl_state
= new_state
;
813 * xmote_bh - Called after the lock module is done acquiring a lock
814 * @gl: The glock in question
815 * @ret: the int returned from the lock module
819 static void xmote_bh(struct gfs2_glock
*gl
, unsigned int ret
)
821 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
822 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
823 struct gfs2_holder
*gh
= gl
->gl_req_gh
;
824 int prev_state
= gl
->gl_state
;
827 gfs2_assert_warn(sdp
, test_bit(GLF_LOCK
, &gl
->gl_flags
));
828 gfs2_assert_warn(sdp
, queue_empty(gl
, &gl
->gl_holders
));
829 gfs2_assert_warn(sdp
, !(ret
& LM_OUT_ASYNC
));
831 state_change(gl
, ret
& LM_OUT_ST_MASK
);
833 if (prev_state
!= LM_ST_UNLOCKED
&& !(ret
& LM_OUT_CACHEABLE
)) {
835 glops
->go_inval(gl
, DIO_METADATA
);
836 } else if (gl
->gl_state
== LM_ST_DEFERRED
) {
837 /* We might not want to do this here.
838 Look at moving to the inode glops. */
840 glops
->go_inval(gl
, 0);
843 /* Deal with each possible exit condition */
846 gl
->gl_stamp
= jiffies
;
847 else if (unlikely(test_bit(SDF_SHUTDOWN
, &sdp
->sd_flags
))) {
848 spin_lock(&gl
->gl_spin
);
849 list_del_init(&gh
->gh_list
);
851 spin_unlock(&gl
->gl_spin
);
852 } else if (test_bit(HIF_DEMOTE
, &gh
->gh_iflags
)) {
853 spin_lock(&gl
->gl_spin
);
854 list_del_init(&gh
->gh_list
);
855 if (gl
->gl_state
== gh
->gh_state
||
856 gl
->gl_state
== LM_ST_UNLOCKED
) {
859 if (gfs2_assert_warn(sdp
, gh
->gh_flags
&
860 (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
)) == -1)
861 fs_warn(sdp
, "ret = 0x%.8X\n", ret
);
862 gh
->gh_error
= GLR_TRYFAILED
;
864 spin_unlock(&gl
->gl_spin
);
866 if (ret
& LM_OUT_CANCELED
)
867 handle_callback(gl
, LM_ST_UNLOCKED
);
869 } else if (ret
& LM_OUT_CANCELED
) {
870 spin_lock(&gl
->gl_spin
);
871 list_del_init(&gh
->gh_list
);
872 gh
->gh_error
= GLR_CANCELED
;
873 spin_unlock(&gl
->gl_spin
);
875 } else if (relaxed_state_ok(gl
->gl_state
, gh
->gh_state
, gh
->gh_flags
)) {
876 spin_lock(&gl
->gl_spin
);
877 list_move_tail(&gh
->gh_list
, &gl
->gl_holders
);
879 set_bit(HIF_HOLDER
, &gh
->gh_iflags
);
880 spin_unlock(&gl
->gl_spin
);
882 set_bit(HIF_FIRST
, &gh
->gh_iflags
);
886 } else if (gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
)) {
887 spin_lock(&gl
->gl_spin
);
888 list_del_init(&gh
->gh_list
);
889 gh
->gh_error
= GLR_TRYFAILED
;
890 spin_unlock(&gl
->gl_spin
);
893 if (gfs2_assert_withdraw(sdp
, 0) == -1)
894 fs_err(sdp
, "ret = 0x%.8X\n", ret
);
897 if (glops
->go_xmote_bh
)
898 glops
->go_xmote_bh(gl
);
901 spin_lock(&gl
->gl_spin
);
902 gl
->gl_req_gh
= NULL
;
903 gl
->gl_req_bh
= NULL
;
904 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
906 spin_unlock(&gl
->gl_spin
);
912 if (test_bit(HIF_DEALLOC
, &gh
->gh_iflags
))
915 complete(&gh
->gh_wait
);
920 * gfs2_glock_xmote_th - Call into the lock module to acquire or change a glock
921 * @gl: The glock in question
922 * @state: the requested state
923 * @flags: modifier flags to the lock call
927 void gfs2_glock_xmote_th(struct gfs2_glock
*gl
, unsigned int state
, int flags
)
929 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
930 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
931 int lck_flags
= flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
|
932 LM_FLAG_NOEXP
| LM_FLAG_ANY
|
934 unsigned int lck_ret
;
936 gfs2_assert_warn(sdp
, test_bit(GLF_LOCK
, &gl
->gl_flags
));
937 gfs2_assert_warn(sdp
, queue_empty(gl
, &gl
->gl_holders
));
938 gfs2_assert_warn(sdp
, state
!= LM_ST_UNLOCKED
);
939 gfs2_assert_warn(sdp
, state
!= gl
->gl_state
);
941 if (gl
->gl_state
== LM_ST_EXCLUSIVE
&& glops
->go_sync
)
945 gl
->gl_req_bh
= xmote_bh
;
947 lck_ret
= gfs2_lm_lock(sdp
, gl
->gl_lock
, gl
->gl_state
, state
, lck_flags
);
949 if (gfs2_assert_withdraw(sdp
, !(lck_ret
& LM_OUT_ERROR
)))
952 if (lck_ret
& LM_OUT_ASYNC
)
953 gfs2_assert_warn(sdp
, lck_ret
== LM_OUT_ASYNC
);
955 xmote_bh(gl
, lck_ret
);
959 * drop_bh - Called after a lock module unlock completes
961 * @ret: the return status
963 * Doesn't wake up the process waiting on the struct gfs2_holder (if any)
964 * Doesn't drop the reference on the glock the top half took out
968 static void drop_bh(struct gfs2_glock
*gl
, unsigned int ret
)
970 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
971 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
972 struct gfs2_holder
*gh
= gl
->gl_req_gh
;
974 clear_bit(GLF_PREFETCH
, &gl
->gl_flags
);
976 gfs2_assert_warn(sdp
, test_bit(GLF_LOCK
, &gl
->gl_flags
));
977 gfs2_assert_warn(sdp
, queue_empty(gl
, &gl
->gl_holders
));
978 gfs2_assert_warn(sdp
, !ret
);
980 state_change(gl
, LM_ST_UNLOCKED
);
983 glops
->go_inval(gl
, DIO_METADATA
);
986 spin_lock(&gl
->gl_spin
);
987 list_del_init(&gh
->gh_list
);
989 spin_unlock(&gl
->gl_spin
);
992 if (glops
->go_drop_bh
)
993 glops
->go_drop_bh(gl
);
995 spin_lock(&gl
->gl_spin
);
996 gl
->gl_req_gh
= NULL
;
997 gl
->gl_req_bh
= NULL
;
998 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
1000 spin_unlock(&gl
->gl_spin
);
1005 if (test_bit(HIF_DEALLOC
, &gh
->gh_iflags
))
1006 gfs2_holder_put(gh
);
1008 complete(&gh
->gh_wait
);
1013 * gfs2_glock_drop_th - call into the lock module to unlock a lock
1018 void gfs2_glock_drop_th(struct gfs2_glock
*gl
)
1020 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1021 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1024 gfs2_assert_warn(sdp
, test_bit(GLF_LOCK
, &gl
->gl_flags
));
1025 gfs2_assert_warn(sdp
, queue_empty(gl
, &gl
->gl_holders
));
1026 gfs2_assert_warn(sdp
, gl
->gl_state
!= LM_ST_UNLOCKED
);
1028 if (gl
->gl_state
== LM_ST_EXCLUSIVE
&& glops
->go_sync
)
1031 gfs2_glock_hold(gl
);
1032 gl
->gl_req_bh
= drop_bh
;
1034 ret
= gfs2_lm_unlock(sdp
, gl
->gl_lock
, gl
->gl_state
);
1036 if (gfs2_assert_withdraw(sdp
, !(ret
& LM_OUT_ERROR
)))
1042 gfs2_assert_warn(sdp
, ret
== LM_OUT_ASYNC
);
1046 * do_cancels - cancel requests for locks stuck waiting on an expire flag
1047 * @gh: the LM_FLAG_PRIORITY holder waiting to acquire the lock
1049 * Don't cancel GL_NOCANCEL requests.
1052 static void do_cancels(struct gfs2_holder
*gh
)
1054 struct gfs2_glock
*gl
= gh
->gh_gl
;
1056 spin_lock(&gl
->gl_spin
);
1058 while (gl
->gl_req_gh
!= gh
&&
1059 !test_bit(HIF_HOLDER
, &gh
->gh_iflags
) &&
1060 !list_empty(&gh
->gh_list
)) {
1061 if (gl
->gl_req_bh
&& !(gl
->gl_req_gh
&&
1062 (gl
->gl_req_gh
->gh_flags
& GL_NOCANCEL
))) {
1063 spin_unlock(&gl
->gl_spin
);
1064 gfs2_lm_cancel(gl
->gl_sbd
, gl
->gl_lock
);
1066 spin_lock(&gl
->gl_spin
);
1068 spin_unlock(&gl
->gl_spin
);
1070 spin_lock(&gl
->gl_spin
);
1074 spin_unlock(&gl
->gl_spin
);
1078 * glock_wait_internal - wait on a glock acquisition
1079 * @gh: the glock holder
1081 * Returns: 0 on success
1084 static int glock_wait_internal(struct gfs2_holder
*gh
)
1086 struct gfs2_glock
*gl
= gh
->gh_gl
;
1087 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1088 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1090 if (test_bit(HIF_ABORTED
, &gh
->gh_iflags
))
1093 if (gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
)) {
1094 spin_lock(&gl
->gl_spin
);
1095 if (gl
->gl_req_gh
!= gh
&&
1096 !test_bit(HIF_HOLDER
, &gh
->gh_iflags
) &&
1097 !list_empty(&gh
->gh_list
)) {
1098 list_del_init(&gh
->gh_list
);
1099 gh
->gh_error
= GLR_TRYFAILED
;
1101 spin_unlock(&gl
->gl_spin
);
1102 return gh
->gh_error
;
1104 spin_unlock(&gl
->gl_spin
);
1107 if (gh
->gh_flags
& LM_FLAG_PRIORITY
)
1110 wait_for_completion(&gh
->gh_wait
);
1113 return gh
->gh_error
;
1115 gfs2_assert_withdraw(sdp
, test_bit(HIF_HOLDER
, &gh
->gh_iflags
));
1116 gfs2_assert_withdraw(sdp
, relaxed_state_ok(gl
->gl_state
, gh
->gh_state
,
1119 if (test_bit(HIF_FIRST
, &gh
->gh_iflags
)) {
1120 gfs2_assert_warn(sdp
, test_bit(GLF_LOCK
, &gl
->gl_flags
));
1122 if (glops
->go_lock
) {
1123 gh
->gh_error
= glops
->go_lock(gh
);
1125 spin_lock(&gl
->gl_spin
);
1126 list_del_init(&gh
->gh_list
);
1127 spin_unlock(&gl
->gl_spin
);
1131 spin_lock(&gl
->gl_spin
);
1132 gl
->gl_req_gh
= NULL
;
1133 gl
->gl_req_bh
= NULL
;
1134 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
1136 spin_unlock(&gl
->gl_spin
);
1139 return gh
->gh_error
;
1142 static inline struct gfs2_holder
*
1143 find_holder_by_owner(struct list_head
*head
, struct task_struct
*owner
)
1145 struct gfs2_holder
*gh
;
1147 list_for_each_entry(gh
, head
, gh_list
) {
1148 if (gh
->gh_owner
== owner
)
1156 * add_to_queue - Add a holder to the wait queue (but look for recursion)
1157 * @gh: the holder structure to add
1161 static void add_to_queue(struct gfs2_holder
*gh
)
1163 struct gfs2_glock
*gl
= gh
->gh_gl
;
1164 struct gfs2_holder
*existing
;
1166 BUG_ON(!gh
->gh_owner
);
1168 existing
= find_holder_by_owner(&gl
->gl_holders
, gh
->gh_owner
);
1170 print_symbol(KERN_WARNING
"original: %s\n", existing
->gh_ip
);
1171 printk(KERN_INFO
"pid : %d\n", existing
->gh_owner
->pid
);
1172 printk(KERN_INFO
"lock type : %d lock state : %d\n",
1173 existing
->gh_gl
->gl_name
.ln_type
, existing
->gh_gl
->gl_state
);
1174 print_symbol(KERN_WARNING
"new: %s\n", gh
->gh_ip
);
1175 printk(KERN_INFO
"pid : %d\n", gh
->gh_owner
->pid
);
1176 printk(KERN_INFO
"lock type : %d lock state : %d\n",
1177 gl
->gl_name
.ln_type
, gl
->gl_state
);
1181 existing
= find_holder_by_owner(&gl
->gl_waiters3
, gh
->gh_owner
);
1183 print_symbol(KERN_WARNING
"original: %s\n", existing
->gh_ip
);
1184 print_symbol(KERN_WARNING
"new: %s\n", gh
->gh_ip
);
1188 if (gh
->gh_flags
& LM_FLAG_PRIORITY
)
1189 list_add(&gh
->gh_list
, &gl
->gl_waiters3
);
1191 list_add_tail(&gh
->gh_list
, &gl
->gl_waiters3
);
1195 * gfs2_glock_nq - enqueue a struct gfs2_holder onto a glock (acquire a glock)
1196 * @gh: the holder structure
1198 * if (gh->gh_flags & GL_ASYNC), this never returns an error
1200 * Returns: 0, GLR_TRYFAILED, or errno on failure
1203 int gfs2_glock_nq(struct gfs2_holder
*gh
)
1205 struct gfs2_glock
*gl
= gh
->gh_gl
;
1206 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1210 if (unlikely(test_bit(SDF_SHUTDOWN
, &sdp
->sd_flags
))) {
1211 set_bit(HIF_ABORTED
, &gh
->gh_iflags
);
1215 set_bit(HIF_PROMOTE
, &gh
->gh_iflags
);
1217 spin_lock(&gl
->gl_spin
);
1220 spin_unlock(&gl
->gl_spin
);
1222 if (!(gh
->gh_flags
& GL_ASYNC
)) {
1223 error
= glock_wait_internal(gh
);
1224 if (error
== GLR_CANCELED
) {
1230 clear_bit(GLF_PREFETCH
, &gl
->gl_flags
);
1236 * gfs2_glock_poll - poll to see if an async request has been completed
1239 * Returns: 1 if the request is ready to be gfs2_glock_wait()ed on
1242 int gfs2_glock_poll(struct gfs2_holder
*gh
)
1244 struct gfs2_glock
*gl
= gh
->gh_gl
;
1247 spin_lock(&gl
->gl_spin
);
1249 if (test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
1251 else if (list_empty(&gh
->gh_list
)) {
1252 if (gh
->gh_error
== GLR_CANCELED
) {
1253 spin_unlock(&gl
->gl_spin
);
1255 if (gfs2_glock_nq(gh
))
1262 spin_unlock(&gl
->gl_spin
);
1268 * gfs2_glock_wait - wait for a lock acquisition that ended in a GLR_ASYNC
1269 * @gh: the holder structure
1271 * Returns: 0, GLR_TRYFAILED, or errno on failure
1274 int gfs2_glock_wait(struct gfs2_holder
*gh
)
1278 error
= glock_wait_internal(gh
);
1279 if (error
== GLR_CANCELED
) {
1281 gh
->gh_flags
&= ~GL_ASYNC
;
1282 error
= gfs2_glock_nq(gh
);
1289 * gfs2_glock_dq - dequeue a struct gfs2_holder from a glock (release a glock)
1290 * @gh: the glock holder
1294 void gfs2_glock_dq(struct gfs2_holder
*gh
)
1296 struct gfs2_glock
*gl
= gh
->gh_gl
;
1297 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1299 if (gh
->gh_flags
& GL_NOCACHE
)
1300 handle_callback(gl
, LM_ST_UNLOCKED
);
1302 gfs2_glmutex_lock(gl
);
1304 spin_lock(&gl
->gl_spin
);
1305 list_del_init(&gh
->gh_list
);
1307 if (list_empty(&gl
->gl_holders
)) {
1308 spin_unlock(&gl
->gl_spin
);
1310 if (glops
->go_unlock
)
1311 glops
->go_unlock(gh
);
1313 gl
->gl_stamp
= jiffies
;
1315 spin_lock(&gl
->gl_spin
);
1318 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
1320 spin_unlock(&gl
->gl_spin
);
1324 * gfs2_glock_prefetch - Try to prefetch a glock
1326 * @state: the state to prefetch in
1327 * @flags: flags passed to go_xmote_th()
1331 static void gfs2_glock_prefetch(struct gfs2_glock
*gl
, unsigned int state
,
1334 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1336 spin_lock(&gl
->gl_spin
);
1338 if (test_bit(GLF_LOCK
, &gl
->gl_flags
) || !list_empty(&gl
->gl_holders
) ||
1339 !list_empty(&gl
->gl_waiters1
) || !list_empty(&gl
->gl_waiters2
) ||
1340 !list_empty(&gl
->gl_waiters3
) ||
1341 relaxed_state_ok(gl
->gl_state
, state
, flags
)) {
1342 spin_unlock(&gl
->gl_spin
);
1346 set_bit(GLF_PREFETCH
, &gl
->gl_flags
);
1347 set_bit(GLF_LOCK
, &gl
->gl_flags
);
1348 spin_unlock(&gl
->gl_spin
);
1350 glops
->go_xmote_th(gl
, state
, flags
);
1353 static void greedy_work(struct work_struct
*work
)
1355 struct greedy
*gr
= container_of(work
, struct greedy
, gr_work
.work
);
1356 struct gfs2_holder
*gh
= &gr
->gr_gh
;
1357 struct gfs2_glock
*gl
= gh
->gh_gl
;
1358 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1360 clear_bit(GLF_SKIP_WAITERS2
, &gl
->gl_flags
);
1362 if (glops
->go_greedy
)
1363 glops
->go_greedy(gl
);
1365 spin_lock(&gl
->gl_spin
);
1367 if (list_empty(&gl
->gl_waiters2
)) {
1368 clear_bit(GLF_GREEDY
, &gl
->gl_flags
);
1369 spin_unlock(&gl
->gl_spin
);
1370 gfs2_holder_uninit(gh
);
1373 gfs2_glock_hold(gl
);
1374 list_add_tail(&gh
->gh_list
, &gl
->gl_waiters2
);
1376 spin_unlock(&gl
->gl_spin
);
1382 * gfs2_glock_be_greedy -
1386 * Returns: 0 if go_greedy will be called, 1 otherwise
1389 int gfs2_glock_be_greedy(struct gfs2_glock
*gl
, unsigned int time
)
1392 struct gfs2_holder
*gh
;
1394 if (!time
|| gl
->gl_sbd
->sd_args
.ar_localcaching
||
1395 test_and_set_bit(GLF_GREEDY
, &gl
->gl_flags
))
1398 gr
= kmalloc(sizeof(struct greedy
), GFP_KERNEL
);
1400 clear_bit(GLF_GREEDY
, &gl
->gl_flags
);
1405 gfs2_holder_init(gl
, 0, 0, gh
);
1406 set_bit(HIF_GREEDY
, &gh
->gh_iflags
);
1407 INIT_DELAYED_WORK(&gr
->gr_work
, greedy_work
);
1409 set_bit(GLF_SKIP_WAITERS2
, &gl
->gl_flags
);
1410 schedule_delayed_work(&gr
->gr_work
, time
);
1416 * gfs2_glock_dq_uninit - dequeue a holder from a glock and initialize it
1417 * @gh: the holder structure
1421 void gfs2_glock_dq_uninit(struct gfs2_holder
*gh
)
1424 gfs2_holder_uninit(gh
);
1428 * gfs2_glock_nq_num - acquire a glock based on lock number
1429 * @sdp: the filesystem
1430 * @number: the lock number
1431 * @glops: the glock operations for the type of glock
1432 * @state: the state to acquire the glock in
1433 * @flags: modifier flags for the aquisition
1434 * @gh: the struct gfs2_holder
1439 int gfs2_glock_nq_num(struct gfs2_sbd
*sdp
, u64 number
,
1440 const struct gfs2_glock_operations
*glops
,
1441 unsigned int state
, int flags
, struct gfs2_holder
*gh
)
1443 struct gfs2_glock
*gl
;
1446 error
= gfs2_glock_get(sdp
, number
, glops
, CREATE
, &gl
);
1448 error
= gfs2_glock_nq_init(gl
, state
, flags
, gh
);
1456 * glock_compare - Compare two struct gfs2_glock structures for sorting
1457 * @arg_a: the first structure
1458 * @arg_b: the second structure
1462 static int glock_compare(const void *arg_a
, const void *arg_b
)
1464 const struct gfs2_holder
*gh_a
= *(const struct gfs2_holder
**)arg_a
;
1465 const struct gfs2_holder
*gh_b
= *(const struct gfs2_holder
**)arg_b
;
1466 const struct lm_lockname
*a
= &gh_a
->gh_gl
->gl_name
;
1467 const struct lm_lockname
*b
= &gh_b
->gh_gl
->gl_name
;
1469 if (a
->ln_number
> b
->ln_number
)
1471 if (a
->ln_number
< b
->ln_number
)
1473 if (gh_a
->gh_state
== LM_ST_SHARED
&& gh_b
->gh_state
== LM_ST_EXCLUSIVE
)
1475 if (!(gh_a
->gh_flags
& GL_LOCAL_EXCL
) && (gh_b
->gh_flags
& GL_LOCAL_EXCL
))
1481 * nq_m_sync - synchonously acquire more than one glock in deadlock free order
1482 * @num_gh: the number of structures
1483 * @ghs: an array of struct gfs2_holder structures
1485 * Returns: 0 on success (all glocks acquired),
1486 * errno on failure (no glocks acquired)
1489 static int nq_m_sync(unsigned int num_gh
, struct gfs2_holder
*ghs
,
1490 struct gfs2_holder
**p
)
1495 for (x
= 0; x
< num_gh
; x
++)
1498 sort(p
, num_gh
, sizeof(struct gfs2_holder
*), glock_compare
, NULL
);
1500 for (x
= 0; x
< num_gh
; x
++) {
1501 p
[x
]->gh_flags
&= ~(LM_FLAG_TRY
| GL_ASYNC
);
1503 error
= gfs2_glock_nq(p
[x
]);
1506 gfs2_glock_dq(p
[x
]);
1515 * gfs2_glock_nq_m - acquire multiple glocks
1516 * @num_gh: the number of structures
1517 * @ghs: an array of struct gfs2_holder structures
1519 * Figure out how big an impact this function has. Either:
1520 * 1) Replace this code with code that calls gfs2_glock_prefetch()
1521 * 2) Forget async stuff and just call nq_m_sync()
1522 * 3) Leave it like it is
1524 * Returns: 0 on success (all glocks acquired),
1525 * errno on failure (no glocks acquired)
1528 int gfs2_glock_nq_m(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1532 int borked
= 0, serious
= 0;
1539 ghs
->gh_flags
&= ~(LM_FLAG_TRY
| GL_ASYNC
);
1540 return gfs2_glock_nq(ghs
);
1543 e
= kcalloc(num_gh
, sizeof(struct gfs2_holder
*), GFP_KERNEL
);
1547 for (x
= 0; x
< num_gh
; x
++) {
1548 ghs
[x
].gh_flags
|= LM_FLAG_TRY
| GL_ASYNC
;
1549 error
= gfs2_glock_nq(&ghs
[x
]);
1558 for (x
= 0; x
< num_gh
; x
++) {
1559 error
= e
[x
] = glock_wait_internal(&ghs
[x
]);
1562 if (error
!= GLR_TRYFAILED
&& error
!= GLR_CANCELED
)
1572 for (x
= 0; x
< num_gh
; x
++)
1574 gfs2_glock_dq(&ghs
[x
]);
1579 for (x
= 0; x
< num_gh
; x
++)
1580 gfs2_holder_reinit(ghs
[x
].gh_state
, ghs
[x
].gh_flags
,
1582 error
= nq_m_sync(num_gh
, ghs
, (struct gfs2_holder
**)e
);
1591 * gfs2_glock_dq_m - release multiple glocks
1592 * @num_gh: the number of structures
1593 * @ghs: an array of struct gfs2_holder structures
1597 void gfs2_glock_dq_m(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1601 for (x
= 0; x
< num_gh
; x
++)
1602 gfs2_glock_dq(&ghs
[x
]);
1606 * gfs2_glock_dq_uninit_m - release multiple glocks
1607 * @num_gh: the number of structures
1608 * @ghs: an array of struct gfs2_holder structures
1612 void gfs2_glock_dq_uninit_m(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1616 for (x
= 0; x
< num_gh
; x
++)
1617 gfs2_glock_dq_uninit(&ghs
[x
]);
1621 * gfs2_glock_prefetch_num - prefetch a glock based on lock number
1622 * @sdp: the filesystem
1623 * @number: the lock number
1624 * @glops: the glock operations for the type of glock
1625 * @state: the state to acquire the glock in
1626 * @flags: modifier flags for the aquisition
1631 void gfs2_glock_prefetch_num(struct gfs2_sbd
*sdp
, u64 number
,
1632 const struct gfs2_glock_operations
*glops
,
1633 unsigned int state
, int flags
)
1635 struct gfs2_glock
*gl
;
1638 if (atomic_read(&sdp
->sd_reclaim_count
) <
1639 gfs2_tune_get(sdp
, gt_reclaim_limit
)) {
1640 error
= gfs2_glock_get(sdp
, number
, glops
, CREATE
, &gl
);
1642 gfs2_glock_prefetch(gl
, state
, flags
);
1649 * gfs2_lvb_hold - attach a LVB from a glock
1650 * @gl: The glock in question
1654 int gfs2_lvb_hold(struct gfs2_glock
*gl
)
1658 gfs2_glmutex_lock(gl
);
1660 if (!atomic_read(&gl
->gl_lvb_count
)) {
1661 error
= gfs2_lm_hold_lvb(gl
->gl_sbd
, gl
->gl_lock
, &gl
->gl_lvb
);
1663 gfs2_glmutex_unlock(gl
);
1666 gfs2_glock_hold(gl
);
1668 atomic_inc(&gl
->gl_lvb_count
);
1670 gfs2_glmutex_unlock(gl
);
1676 * gfs2_lvb_unhold - detach a LVB from a glock
1677 * @gl: The glock in question
1681 void gfs2_lvb_unhold(struct gfs2_glock
*gl
)
1683 gfs2_glock_hold(gl
);
1684 gfs2_glmutex_lock(gl
);
1686 gfs2_assert(gl
->gl_sbd
, atomic_read(&gl
->gl_lvb_count
) > 0);
1687 if (atomic_dec_and_test(&gl
->gl_lvb_count
)) {
1688 gfs2_lm_unhold_lvb(gl
->gl_sbd
, gl
->gl_lock
, gl
->gl_lvb
);
1693 gfs2_glmutex_unlock(gl
);
1697 static void blocking_cb(struct gfs2_sbd
*sdp
, struct lm_lockname
*name
,
1700 struct gfs2_glock
*gl
;
1702 gl
= gfs2_glock_find(sdp
, name
);
1706 if (gl
->gl_ops
->go_callback
)
1707 gl
->gl_ops
->go_callback(gl
, state
);
1708 handle_callback(gl
, state
);
1710 spin_lock(&gl
->gl_spin
);
1712 spin_unlock(&gl
->gl_spin
);
1718 * gfs2_glock_cb - Callback used by locking module
1719 * @sdp: Pointer to the superblock
1720 * @type: Type of callback
1721 * @data: Type dependent data pointer
1723 * Called by the locking module when it wants to tell us something.
1724 * Either we need to drop a lock, one of our ASYNC requests completed, or
1725 * a journal from another client needs to be recovered.
1728 void gfs2_glock_cb(void *cb_data
, unsigned int type
, void *data
)
1730 struct gfs2_sbd
*sdp
= cb_data
;
1734 blocking_cb(sdp
, data
, LM_ST_UNLOCKED
);
1738 blocking_cb(sdp
, data
, LM_ST_DEFERRED
);
1742 blocking_cb(sdp
, data
, LM_ST_SHARED
);
1746 struct lm_async_cb
*async
= data
;
1747 struct gfs2_glock
*gl
;
1749 gl
= gfs2_glock_find(sdp
, &async
->lc_name
);
1750 if (gfs2_assert_warn(sdp
, gl
))
1752 if (!gfs2_assert_warn(sdp
, gl
->gl_req_bh
))
1753 gl
->gl_req_bh(gl
, async
->lc_ret
);
1758 case LM_CB_NEED_RECOVERY
:
1759 gfs2_jdesc_make_dirty(sdp
, *(unsigned int *)data
);
1760 if (sdp
->sd_recoverd_process
)
1761 wake_up_process(sdp
->sd_recoverd_process
);
1764 case LM_CB_DROPLOCKS
:
1765 gfs2_gl_hash_clear(sdp
, NO_WAIT
);
1766 gfs2_quota_scan(sdp
);
1770 gfs2_assert_warn(sdp
, 0);
1776 * demote_ok - Check to see if it's ok to unlock a glock
1779 * Returns: 1 if it's ok
1782 static int demote_ok(struct gfs2_glock
*gl
)
1784 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1785 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1788 if (test_bit(GLF_STICKY
, &gl
->gl_flags
))
1790 else if (test_bit(GLF_PREFETCH
, &gl
->gl_flags
))
1791 demote
= time_after_eq(jiffies
, gl
->gl_stamp
+
1792 gfs2_tune_get(sdp
, gt_prefetch_secs
) * HZ
);
1793 else if (glops
->go_demote_ok
)
1794 demote
= glops
->go_demote_ok(gl
);
1800 * gfs2_glock_schedule_for_reclaim - Add a glock to the reclaim list
1805 void gfs2_glock_schedule_for_reclaim(struct gfs2_glock
*gl
)
1807 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1809 spin_lock(&sdp
->sd_reclaim_lock
);
1810 if (list_empty(&gl
->gl_reclaim
)) {
1811 gfs2_glock_hold(gl
);
1812 list_add(&gl
->gl_reclaim
, &sdp
->sd_reclaim_list
);
1813 atomic_inc(&sdp
->sd_reclaim_count
);
1815 spin_unlock(&sdp
->sd_reclaim_lock
);
1817 wake_up(&sdp
->sd_reclaim_wq
);
1821 * gfs2_reclaim_glock - process the next glock on the filesystem's reclaim list
1822 * @sdp: the filesystem
1824 * Called from gfs2_glockd() glock reclaim daemon, or when promoting a
1825 * different glock and we notice that there are a lot of glocks in the
1830 void gfs2_reclaim_glock(struct gfs2_sbd
*sdp
)
1832 struct gfs2_glock
*gl
;
1834 spin_lock(&sdp
->sd_reclaim_lock
);
1835 if (list_empty(&sdp
->sd_reclaim_list
)) {
1836 spin_unlock(&sdp
->sd_reclaim_lock
);
1839 gl
= list_entry(sdp
->sd_reclaim_list
.next
,
1840 struct gfs2_glock
, gl_reclaim
);
1841 list_del_init(&gl
->gl_reclaim
);
1842 spin_unlock(&sdp
->sd_reclaim_lock
);
1844 atomic_dec(&sdp
->sd_reclaim_count
);
1845 atomic_inc(&sdp
->sd_reclaimed
);
1847 if (gfs2_glmutex_trylock(gl
)) {
1848 if (queue_empty(gl
, &gl
->gl_holders
) &&
1849 gl
->gl_state
!= LM_ST_UNLOCKED
&& demote_ok(gl
))
1850 handle_callback(gl
, LM_ST_UNLOCKED
);
1851 gfs2_glmutex_unlock(gl
);
1858 * examine_bucket - Call a function for glock in a hash bucket
1859 * @examiner: the function
1860 * @sdp: the filesystem
1861 * @bucket: the bucket
1863 * Returns: 1 if the bucket has entries
1866 static int examine_bucket(glock_examiner examiner
, struct gfs2_sbd
*sdp
,
1869 struct gfs2_glock
*gl
, *prev
= NULL
;
1870 int has_entries
= 0;
1871 struct hlist_head
*head
= &gl_hash_table
[hash
].hb_list
;
1873 read_lock(gl_lock_addr(hash
));
1874 /* Can't use hlist_for_each_entry - don't want prefetch here */
1875 if (hlist_empty(head
))
1877 gl
= list_entry(head
->first
, struct gfs2_glock
, gl_list
);
1879 if (gl
->gl_sbd
== sdp
) {
1880 gfs2_glock_hold(gl
);
1881 read_unlock(gl_lock_addr(hash
));
1883 gfs2_glock_put(prev
);
1887 read_lock(gl_lock_addr(hash
));
1889 if (gl
->gl_list
.next
== NULL
)
1891 gl
= list_entry(gl
->gl_list
.next
, struct gfs2_glock
, gl_list
);
1894 read_unlock(gl_lock_addr(hash
));
1896 gfs2_glock_put(prev
);
1901 * scan_glock - look at a glock and see if we can reclaim it
1902 * @gl: the glock to look at
1906 static void scan_glock(struct gfs2_glock
*gl
)
1908 if (gl
->gl_ops
== &gfs2_inode_glops
&& gl
->gl_object
)
1911 if (gfs2_glmutex_trylock(gl
)) {
1912 if (queue_empty(gl
, &gl
->gl_holders
) &&
1913 gl
->gl_state
!= LM_ST_UNLOCKED
&& demote_ok(gl
))
1915 gfs2_glmutex_unlock(gl
);
1920 gfs2_glmutex_unlock(gl
);
1921 gfs2_glock_schedule_for_reclaim(gl
);
1925 * gfs2_scand_internal - Look for glocks and inodes to toss from memory
1926 * @sdp: the filesystem
1930 void gfs2_scand_internal(struct gfs2_sbd
*sdp
)
1934 for (x
= 0; x
< GFS2_GL_HASH_SIZE
; x
++)
1935 examine_bucket(scan_glock
, sdp
, x
);
1939 * clear_glock - look at a glock and see if we can free it from glock cache
1940 * @gl: the glock to look at
1944 static void clear_glock(struct gfs2_glock
*gl
)
1946 struct gfs2_sbd
*sdp
= gl
->gl_sbd
;
1949 spin_lock(&sdp
->sd_reclaim_lock
);
1950 if (!list_empty(&gl
->gl_reclaim
)) {
1951 list_del_init(&gl
->gl_reclaim
);
1952 atomic_dec(&sdp
->sd_reclaim_count
);
1953 spin_unlock(&sdp
->sd_reclaim_lock
);
1954 released
= gfs2_glock_put(gl
);
1955 gfs2_assert(sdp
, !released
);
1957 spin_unlock(&sdp
->sd_reclaim_lock
);
1960 if (gfs2_glmutex_trylock(gl
)) {
1961 if (queue_empty(gl
, &gl
->gl_holders
) &&
1962 gl
->gl_state
!= LM_ST_UNLOCKED
)
1963 handle_callback(gl
, LM_ST_UNLOCKED
);
1964 gfs2_glmutex_unlock(gl
);
1969 * gfs2_gl_hash_clear - Empty out the glock hash table
1970 * @sdp: the filesystem
1971 * @wait: wait until it's all gone
1973 * Called when unmounting the filesystem, or when inter-node lock manager
1974 * requests DROPLOCKS because it is running out of capacity.
1977 void gfs2_gl_hash_clear(struct gfs2_sbd
*sdp
, int wait
)
1987 for (x
= 0; x
< GFS2_GL_HASH_SIZE
; x
++) {
1988 if (examine_bucket(clear_glock
, sdp
, x
))
1995 if (time_after_eq(jiffies
,
1996 t
+ gfs2_tune_get(sdp
, gt_stall_secs
) * HZ
)) {
1997 fs_warn(sdp
, "Unmount seems to be stalled. "
1998 "Dumping lock state...\n");
1999 gfs2_dump_lockstate(sdp
);
2003 invalidate_inodes(sdp
->sd_vfs
);
2009 * Diagnostic routines to help debug distributed deadlock
2013 * dump_holder - print information about a glock holder
2014 * @str: a string naming the type of holder
2015 * @gh: the glock holder
2017 * Returns: 0 on success, -ENOBUFS when we run out of space
2020 static int dump_holder(char *str
, struct gfs2_holder
*gh
)
2023 int error
= -ENOBUFS
;
2025 printk(KERN_INFO
" %s\n", str
);
2026 printk(KERN_INFO
" owner = %ld\n",
2027 (gh
->gh_owner
) ? (long)gh
->gh_owner
->pid
: -1);
2028 printk(KERN_INFO
" gh_state = %u\n", gh
->gh_state
);
2029 printk(KERN_INFO
" gh_flags =");
2030 for (x
= 0; x
< 32; x
++)
2031 if (gh
->gh_flags
& (1 << x
))
2034 printk(KERN_INFO
" error = %d\n", gh
->gh_error
);
2035 printk(KERN_INFO
" gh_iflags =");
2036 for (x
= 0; x
< 32; x
++)
2037 if (test_bit(x
, &gh
->gh_iflags
))
2040 print_symbol(KERN_INFO
" initialized at: %s\n", gh
->gh_ip
);
2048 * dump_inode - print information about an inode
2051 * Returns: 0 on success, -ENOBUFS when we run out of space
2054 static int dump_inode(struct gfs2_inode
*ip
)
2057 int error
= -ENOBUFS
;
2059 printk(KERN_INFO
" Inode:\n");
2060 printk(KERN_INFO
" num = %llu %llu\n",
2061 (unsigned long long)ip
->i_num
.no_formal_ino
,
2062 (unsigned long long)ip
->i_num
.no_addr
);
2063 printk(KERN_INFO
" type = %u\n", IF2DT(ip
->i_inode
.i_mode
));
2064 printk(KERN_INFO
" i_flags =");
2065 for (x
= 0; x
< 32; x
++)
2066 if (test_bit(x
, &ip
->i_flags
))
2076 * dump_glock - print information about a glock
2078 * @count: where we are in the buffer
2080 * Returns: 0 on success, -ENOBUFS when we run out of space
2083 static int dump_glock(struct gfs2_glock
*gl
)
2085 struct gfs2_holder
*gh
;
2087 int error
= -ENOBUFS
;
2089 spin_lock(&gl
->gl_spin
);
2091 printk(KERN_INFO
"Glock 0x%p (%u, %llu)\n", gl
, gl
->gl_name
.ln_type
,
2092 (unsigned long long)gl
->gl_name
.ln_number
);
2093 printk(KERN_INFO
" gl_flags =");
2094 for (x
= 0; x
< 32; x
++) {
2095 if (test_bit(x
, &gl
->gl_flags
))
2099 printk(KERN_INFO
" gl_ref = %d\n", atomic_read(&gl
->gl_ref
));
2100 printk(KERN_INFO
" gl_state = %u\n", gl
->gl_state
);
2101 printk(KERN_INFO
" gl_owner = %s\n", gl
->gl_owner
->comm
);
2102 print_symbol(KERN_INFO
" gl_ip = %s\n", gl
->gl_ip
);
2103 printk(KERN_INFO
" req_gh = %s\n", (gl
->gl_req_gh
) ? "yes" : "no");
2104 printk(KERN_INFO
" req_bh = %s\n", (gl
->gl_req_bh
) ? "yes" : "no");
2105 printk(KERN_INFO
" lvb_count = %d\n", atomic_read(&gl
->gl_lvb_count
));
2106 printk(KERN_INFO
" object = %s\n", (gl
->gl_object
) ? "yes" : "no");
2107 printk(KERN_INFO
" le = %s\n",
2108 (list_empty(&gl
->gl_le
.le_list
)) ? "no" : "yes");
2109 printk(KERN_INFO
" reclaim = %s\n",
2110 (list_empty(&gl
->gl_reclaim
)) ? "no" : "yes");
2112 printk(KERN_INFO
" aspace = 0x%p nrpages = %lu\n", gl
->gl_aspace
,
2113 gl
->gl_aspace
->i_mapping
->nrpages
);
2115 printk(KERN_INFO
" aspace = no\n");
2116 printk(KERN_INFO
" ail = %d\n", atomic_read(&gl
->gl_ail_count
));
2117 if (gl
->gl_req_gh
) {
2118 error
= dump_holder("Request", gl
->gl_req_gh
);
2122 list_for_each_entry(gh
, &gl
->gl_holders
, gh_list
) {
2123 error
= dump_holder("Holder", gh
);
2127 list_for_each_entry(gh
, &gl
->gl_waiters1
, gh_list
) {
2128 error
= dump_holder("Waiter1", gh
);
2132 list_for_each_entry(gh
, &gl
->gl_waiters2
, gh_list
) {
2133 error
= dump_holder("Waiter2", gh
);
2137 list_for_each_entry(gh
, &gl
->gl_waiters3
, gh_list
) {
2138 error
= dump_holder("Waiter3", gh
);
2142 if (gl
->gl_ops
== &gfs2_inode_glops
&& gl
->gl_object
) {
2143 if (!test_bit(GLF_LOCK
, &gl
->gl_flags
) &&
2144 list_empty(&gl
->gl_holders
)) {
2145 error
= dump_inode(gl
->gl_object
);
2150 printk(KERN_INFO
" Inode: busy\n");
2157 spin_unlock(&gl
->gl_spin
);
2162 * gfs2_dump_lockstate - print out the current lockstate
2163 * @sdp: the filesystem
2164 * @ub: the buffer to copy the information into
2166 * If @ub is NULL, dump the lockstate to the console.
2170 static int gfs2_dump_lockstate(struct gfs2_sbd
*sdp
)
2172 struct gfs2_glock
*gl
;
2173 struct hlist_node
*h
;
2177 for (x
= 0; x
< GFS2_GL_HASH_SIZE
; x
++) {
2179 read_lock(gl_lock_addr(x
));
2181 hlist_for_each_entry(gl
, h
, &gl_hash_table
[x
].hb_list
, gl_list
) {
2182 if (gl
->gl_sbd
!= sdp
)
2185 error
= dump_glock(gl
);
2190 read_unlock(gl_lock_addr(x
));
2200 int __init
gfs2_glock_init(void)
2203 for(i
= 0; i
< GFS2_GL_HASH_SIZE
; i
++) {
2204 INIT_HLIST_HEAD(&gl_hash_table
[i
].hb_list
);
2206 #ifdef GL_HASH_LOCK_SZ
2207 for(i
= 0; i
< GL_HASH_LOCK_SZ
; i
++) {
2208 rwlock_init(&gl_hash_locks
[i
]);