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 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
9 #include <linux/sched.h>
10 #include <linux/slab.h>
11 #include <linux/spinlock.h>
12 #include <linux/buffer_head.h>
13 #include <linux/delay.h>
14 #include <linux/sort.h>
15 #include <linux/hash.h>
16 #include <linux/jhash.h>
17 #include <linux/kallsyms.h>
18 #include <linux/gfs2_ondisk.h>
19 #include <linux/list.h>
20 #include <linux/wait.h>
21 #include <linux/module.h>
22 #include <linux/uaccess.h>
23 #include <linux/seq_file.h>
24 #include <linux/debugfs.h>
25 #include <linux/kthread.h>
26 #include <linux/freezer.h>
27 #include <linux/workqueue.h>
28 #include <linux/jiffies.h>
29 #include <linux/rcupdate.h>
30 #include <linux/rculist_bl.h>
31 #include <linux/bit_spinlock.h>
32 #include <linux/percpu.h>
33 #include <linux/list_sort.h>
34 #include <linux/lockref.h>
35 #include <linux/rhashtable.h>
48 #define CREATE_TRACE_POINTS
49 #include "trace_gfs2.h"
51 struct gfs2_glock_iter
{
52 struct gfs2_sbd
*sdp
; /* incore superblock */
53 struct rhashtable_iter hti
; /* rhashtable iterator */
54 struct gfs2_glock
*gl
; /* current glock struct */
55 loff_t last_pos
; /* last position */
58 typedef void (*glock_examiner
) (struct gfs2_glock
* gl
);
60 static void do_xmote(struct gfs2_glock
*gl
, struct gfs2_holder
*gh
, unsigned int target
);
62 static struct dentry
*gfs2_root
;
63 static struct workqueue_struct
*glock_workqueue
;
64 struct workqueue_struct
*gfs2_delete_workqueue
;
65 static LIST_HEAD(lru_list
);
66 static atomic_t lru_count
= ATOMIC_INIT(0);
67 static DEFINE_SPINLOCK(lru_lock
);
69 #define GFS2_GL_HASH_SHIFT 15
70 #define GFS2_GL_HASH_SIZE BIT(GFS2_GL_HASH_SHIFT)
72 static const struct rhashtable_params ht_parms
= {
73 .nelem_hint
= GFS2_GL_HASH_SIZE
* 3 / 4,
74 .key_len
= offsetofend(struct lm_lockname
, ln_type
),
75 .key_offset
= offsetof(struct gfs2_glock
, gl_name
),
76 .head_offset
= offsetof(struct gfs2_glock
, gl_node
),
79 static struct rhashtable gl_hash_table
;
81 #define GLOCK_WAIT_TABLE_BITS 12
82 #define GLOCK_WAIT_TABLE_SIZE (1 << GLOCK_WAIT_TABLE_BITS)
83 static wait_queue_head_t glock_wait_table
[GLOCK_WAIT_TABLE_SIZE
] __cacheline_aligned
;
85 struct wait_glock_queue
{
86 struct lm_lockname
*name
;
87 wait_queue_entry_t wait
;
90 static int glock_wake_function(wait_queue_entry_t
*wait
, unsigned int mode
,
93 struct wait_glock_queue
*wait_glock
=
94 container_of(wait
, struct wait_glock_queue
, wait
);
95 struct lm_lockname
*wait_name
= wait_glock
->name
;
96 struct lm_lockname
*wake_name
= key
;
98 if (wake_name
->ln_sbd
!= wait_name
->ln_sbd
||
99 wake_name
->ln_number
!= wait_name
->ln_number
||
100 wake_name
->ln_type
!= wait_name
->ln_type
)
102 return autoremove_wake_function(wait
, mode
, sync
, key
);
105 static wait_queue_head_t
*glock_waitqueue(struct lm_lockname
*name
)
107 u32 hash
= jhash2((u32
*)name
, ht_parms
.key_len
/ 4, 0);
109 return glock_wait_table
+ hash_32(hash
, GLOCK_WAIT_TABLE_BITS
);
113 * wake_up_glock - Wake up waiters on a glock
116 static void wake_up_glock(struct gfs2_glock
*gl
)
118 wait_queue_head_t
*wq
= glock_waitqueue(&gl
->gl_name
);
120 if (waitqueue_active(wq
))
121 __wake_up(wq
, TASK_NORMAL
, 1, &gl
->gl_name
);
124 static void gfs2_glock_dealloc(struct rcu_head
*rcu
)
126 struct gfs2_glock
*gl
= container_of(rcu
, struct gfs2_glock
, gl_rcu
);
128 if (gl
->gl_ops
->go_flags
& GLOF_ASPACE
) {
129 kmem_cache_free(gfs2_glock_aspace_cachep
, gl
);
131 kfree(gl
->gl_lksb
.sb_lvbptr
);
132 kmem_cache_free(gfs2_glock_cachep
, gl
);
137 * glock_blocked_by_withdraw - determine if we can still use a glock
140 * We need to allow some glocks to be enqueued, dequeued, promoted, and demoted
141 * when we're withdrawn. For example, to maintain metadata integrity, we should
142 * disallow the use of inode and rgrp glocks when withdrawn. Other glocks, like
143 * iopen or the transaction glocks may be safely used because none of their
144 * metadata goes through the journal. So in general, we should disallow all
145 * glocks that are journaled, and allow all the others. One exception is:
146 * we need to allow our active journal to be promoted and demoted so others
147 * may recover it and we can reacquire it when they're done.
149 static bool glock_blocked_by_withdraw(struct gfs2_glock
*gl
)
151 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
153 if (likely(!gfs2_withdrawn(sdp
)))
155 if (gl
->gl_ops
->go_flags
& GLOF_NONDISK
)
157 if (!sdp
->sd_jdesc
||
158 gl
->gl_name
.ln_number
== sdp
->sd_jdesc
->jd_no_addr
)
163 void gfs2_glock_free(struct gfs2_glock
*gl
)
165 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
167 BUG_ON(atomic_read(&gl
->gl_revokes
));
168 rhashtable_remove_fast(&gl_hash_table
, &gl
->gl_node
, ht_parms
);
171 call_rcu(&gl
->gl_rcu
, gfs2_glock_dealloc
);
172 if (atomic_dec_and_test(&sdp
->sd_glock_disposal
))
173 wake_up(&sdp
->sd_glock_wait
);
177 * gfs2_glock_hold() - increment reference count on glock
178 * @gl: The glock to hold
182 void gfs2_glock_hold(struct gfs2_glock
*gl
)
184 GLOCK_BUG_ON(gl
, __lockref_is_dead(&gl
->gl_lockref
));
185 lockref_get(&gl
->gl_lockref
);
189 * demote_ok - Check to see if it's ok to unlock a glock
192 * Returns: 1 if it's ok
195 static int demote_ok(const struct gfs2_glock
*gl
)
197 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
199 if (gl
->gl_state
== LM_ST_UNLOCKED
)
201 if (!list_empty(&gl
->gl_holders
))
203 if (glops
->go_demote_ok
)
204 return glops
->go_demote_ok(gl
);
209 void gfs2_glock_add_to_lru(struct gfs2_glock
*gl
)
211 if (!(gl
->gl_ops
->go_flags
& GLOF_LRU
))
214 spin_lock(&lru_lock
);
216 list_del(&gl
->gl_lru
);
217 list_add_tail(&gl
->gl_lru
, &lru_list
);
219 if (!test_bit(GLF_LRU
, &gl
->gl_flags
)) {
220 set_bit(GLF_LRU
, &gl
->gl_flags
);
221 atomic_inc(&lru_count
);
224 spin_unlock(&lru_lock
);
227 static void gfs2_glock_remove_from_lru(struct gfs2_glock
*gl
)
229 if (!(gl
->gl_ops
->go_flags
& GLOF_LRU
))
232 spin_lock(&lru_lock
);
233 if (test_bit(GLF_LRU
, &gl
->gl_flags
)) {
234 list_del_init(&gl
->gl_lru
);
235 atomic_dec(&lru_count
);
236 clear_bit(GLF_LRU
, &gl
->gl_flags
);
238 spin_unlock(&lru_lock
);
242 * Enqueue the glock on the work queue. Passes one glock reference on to the
245 static void __gfs2_glock_queue_work(struct gfs2_glock
*gl
, unsigned long delay
) {
246 if (!queue_delayed_work(glock_workqueue
, &gl
->gl_work
, delay
)) {
248 * We are holding the lockref spinlock, and the work was still
249 * queued above. The queued work (glock_work_func) takes that
250 * spinlock before dropping its glock reference(s), so it
251 * cannot have dropped them in the meantime.
253 GLOCK_BUG_ON(gl
, gl
->gl_lockref
.count
< 2);
254 gl
->gl_lockref
.count
--;
258 static void gfs2_glock_queue_work(struct gfs2_glock
*gl
, unsigned long delay
) {
259 spin_lock(&gl
->gl_lockref
.lock
);
260 __gfs2_glock_queue_work(gl
, delay
);
261 spin_unlock(&gl
->gl_lockref
.lock
);
264 static void __gfs2_glock_put(struct gfs2_glock
*gl
)
266 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
267 struct address_space
*mapping
= gfs2_glock2aspace(gl
);
269 lockref_mark_dead(&gl
->gl_lockref
);
271 gfs2_glock_remove_from_lru(gl
);
272 spin_unlock(&gl
->gl_lockref
.lock
);
273 GLOCK_BUG_ON(gl
, !list_empty(&gl
->gl_holders
));
274 GLOCK_BUG_ON(gl
, mapping
&& mapping
->nrpages
&& !gfs2_withdrawn(sdp
));
275 trace_gfs2_glock_put(gl
);
276 sdp
->sd_lockstruct
.ls_ops
->lm_put_lock(gl
);
280 * Cause the glock to be put in work queue context.
282 void gfs2_glock_queue_put(struct gfs2_glock
*gl
)
284 gfs2_glock_queue_work(gl
, 0);
288 * gfs2_glock_put() - Decrement reference count on glock
289 * @gl: The glock to put
293 void gfs2_glock_put(struct gfs2_glock
*gl
)
295 if (lockref_put_or_lock(&gl
->gl_lockref
))
298 __gfs2_glock_put(gl
);
302 * may_grant - check if its ok to grant a new lock
304 * @gh: The lock request which we wish to grant
306 * Returns: true if its ok to grant the lock
309 static inline int may_grant(const struct gfs2_glock
*gl
, const struct gfs2_holder
*gh
)
311 const struct gfs2_holder
*gh_head
= list_first_entry(&gl
->gl_holders
, const struct gfs2_holder
, gh_list
);
312 if ((gh
->gh_state
== LM_ST_EXCLUSIVE
||
313 gh_head
->gh_state
== LM_ST_EXCLUSIVE
) && gh
!= gh_head
)
315 if (gl
->gl_state
== gh
->gh_state
)
317 if (gh
->gh_flags
& GL_EXACT
)
319 if (gl
->gl_state
== LM_ST_EXCLUSIVE
) {
320 if (gh
->gh_state
== LM_ST_SHARED
&& gh_head
->gh_state
== LM_ST_SHARED
)
322 if (gh
->gh_state
== LM_ST_DEFERRED
&& gh_head
->gh_state
== LM_ST_DEFERRED
)
325 if (gl
->gl_state
!= LM_ST_UNLOCKED
&& (gh
->gh_flags
& LM_FLAG_ANY
))
330 static void gfs2_holder_wake(struct gfs2_holder
*gh
)
332 clear_bit(HIF_WAIT
, &gh
->gh_iflags
);
333 smp_mb__after_atomic();
334 wake_up_bit(&gh
->gh_iflags
, HIF_WAIT
);
335 if (gh
->gh_flags
& GL_ASYNC
) {
336 struct gfs2_sbd
*sdp
= gh
->gh_gl
->gl_name
.ln_sbd
;
338 wake_up(&sdp
->sd_async_glock_wait
);
343 * do_error - Something unexpected has happened during a lock request
347 static void do_error(struct gfs2_glock
*gl
, const int ret
)
349 struct gfs2_holder
*gh
, *tmp
;
351 list_for_each_entry_safe(gh
, tmp
, &gl
->gl_holders
, gh_list
) {
352 if (test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
354 if (ret
& LM_OUT_ERROR
)
356 else if (gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
))
357 gh
->gh_error
= GLR_TRYFAILED
;
360 list_del_init(&gh
->gh_list
);
361 trace_gfs2_glock_queue(gh
, 0);
362 gfs2_holder_wake(gh
);
367 * do_promote - promote as many requests as possible on the current queue
370 * Returns: 1 if there is a blocked holder at the head of the list, or 2
371 * if a type specific operation is underway.
374 static int do_promote(struct gfs2_glock
*gl
)
375 __releases(&gl
->gl_lockref
.lock
)
376 __acquires(&gl
->gl_lockref
.lock
)
378 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
379 struct gfs2_holder
*gh
, *tmp
;
383 list_for_each_entry_safe(gh
, tmp
, &gl
->gl_holders
, gh_list
) {
384 if (test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
386 if (may_grant(gl
, gh
)) {
387 if (gh
->gh_list
.prev
== &gl
->gl_holders
&&
389 spin_unlock(&gl
->gl_lockref
.lock
);
390 /* FIXME: eliminate this eventually */
391 ret
= glops
->go_lock(gh
);
392 spin_lock(&gl
->gl_lockref
.lock
);
397 list_del_init(&gh
->gh_list
);
398 trace_gfs2_glock_queue(gh
, 0);
399 gfs2_holder_wake(gh
);
402 set_bit(HIF_HOLDER
, &gh
->gh_iflags
);
403 trace_gfs2_promote(gh
, 1);
404 gfs2_holder_wake(gh
);
407 set_bit(HIF_HOLDER
, &gh
->gh_iflags
);
408 trace_gfs2_promote(gh
, 0);
409 gfs2_holder_wake(gh
);
412 if (gh
->gh_list
.prev
== &gl
->gl_holders
)
421 * find_first_waiter - find the first gh that's waiting for the glock
425 static inline struct gfs2_holder
*find_first_waiter(const struct gfs2_glock
*gl
)
427 struct gfs2_holder
*gh
;
429 list_for_each_entry(gh
, &gl
->gl_holders
, gh_list
) {
430 if (!test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
437 * state_change - record that the glock is now in a different state
439 * @new_state the new state
443 static void state_change(struct gfs2_glock
*gl
, unsigned int new_state
)
447 held1
= (gl
->gl_state
!= LM_ST_UNLOCKED
);
448 held2
= (new_state
!= LM_ST_UNLOCKED
);
450 if (held1
!= held2
) {
451 GLOCK_BUG_ON(gl
, __lockref_is_dead(&gl
->gl_lockref
));
453 gl
->gl_lockref
.count
++;
455 gl
->gl_lockref
.count
--;
457 if (held1
&& held2
&& list_empty(&gl
->gl_holders
))
458 clear_bit(GLF_QUEUED
, &gl
->gl_flags
);
460 if (new_state
!= gl
->gl_target
)
461 /* shorten our minimum hold time */
462 gl
->gl_hold_time
= max(gl
->gl_hold_time
- GL_GLOCK_HOLD_DECR
,
464 gl
->gl_state
= new_state
;
465 gl
->gl_tchange
= jiffies
;
468 static void gfs2_demote_wake(struct gfs2_glock
*gl
)
470 gl
->gl_demote_state
= LM_ST_EXCLUSIVE
;
471 clear_bit(GLF_DEMOTE
, &gl
->gl_flags
);
472 smp_mb__after_atomic();
473 wake_up_bit(&gl
->gl_flags
, GLF_DEMOTE
);
477 * finish_xmote - The DLM has replied to one of our lock requests
479 * @ret: The status from the DLM
483 static void finish_xmote(struct gfs2_glock
*gl
, unsigned int ret
)
485 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
486 struct gfs2_holder
*gh
;
487 unsigned state
= ret
& LM_OUT_ST_MASK
;
490 spin_lock(&gl
->gl_lockref
.lock
);
491 trace_gfs2_glock_state_change(gl
, state
);
492 state_change(gl
, state
);
493 gh
= find_first_waiter(gl
);
495 /* Demote to UN request arrived during demote to SH or DF */
496 if (test_bit(GLF_DEMOTE_IN_PROGRESS
, &gl
->gl_flags
) &&
497 state
!= LM_ST_UNLOCKED
&& gl
->gl_demote_state
== LM_ST_UNLOCKED
)
498 gl
->gl_target
= LM_ST_UNLOCKED
;
500 /* Check for state != intended state */
501 if (unlikely(state
!= gl
->gl_target
)) {
502 if (gh
&& !test_bit(GLF_DEMOTE_IN_PROGRESS
, &gl
->gl_flags
)) {
503 /* move to back of queue and try next entry */
504 if (ret
& LM_OUT_CANCELED
) {
505 if ((gh
->gh_flags
& LM_FLAG_PRIORITY
) == 0)
506 list_move_tail(&gh
->gh_list
, &gl
->gl_holders
);
507 gh
= find_first_waiter(gl
);
508 gl
->gl_target
= gh
->gh_state
;
511 /* Some error or failed "try lock" - report it */
512 if ((ret
& LM_OUT_ERROR
) ||
513 (gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
))) {
514 gl
->gl_target
= gl
->gl_state
;
520 /* Unlocked due to conversion deadlock, try again */
523 do_xmote(gl
, gh
, gl
->gl_target
);
525 /* Conversion fails, unlock and try again */
528 do_xmote(gl
, gh
, LM_ST_UNLOCKED
);
530 default: /* Everything else */
531 fs_err(gl
->gl_name
.ln_sbd
, "wanted %u got %u\n",
532 gl
->gl_target
, state
);
535 spin_unlock(&gl
->gl_lockref
.lock
);
539 /* Fast path - we got what we asked for */
540 if (test_and_clear_bit(GLF_DEMOTE_IN_PROGRESS
, &gl
->gl_flags
))
541 gfs2_demote_wake(gl
);
542 if (state
!= LM_ST_UNLOCKED
) {
543 if (glops
->go_xmote_bh
) {
544 spin_unlock(&gl
->gl_lockref
.lock
);
545 rv
= glops
->go_xmote_bh(gl
, gh
);
546 spin_lock(&gl
->gl_lockref
.lock
);
557 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
559 spin_unlock(&gl
->gl_lockref
.lock
);
563 * do_xmote - Calls the DLM to change the state of a lock
564 * @gl: The lock state
565 * @gh: The holder (only for promotes)
566 * @target: The target lock state
570 static void do_xmote(struct gfs2_glock
*gl
, struct gfs2_holder
*gh
, unsigned int target
)
571 __releases(&gl
->gl_lockref
.lock
)
572 __acquires(&gl
->gl_lockref
.lock
)
574 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
575 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
576 unsigned int lck_flags
= (unsigned int)(gh
? gh
->gh_flags
: 0);
579 if (target
!= LM_ST_UNLOCKED
&& glock_blocked_by_withdraw(gl
) &&
580 gh
&& !(gh
->gh_flags
& LM_FLAG_NOEXP
))
582 lck_flags
&= (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
| LM_FLAG_NOEXP
|
584 GLOCK_BUG_ON(gl
, gl
->gl_state
== target
);
585 GLOCK_BUG_ON(gl
, gl
->gl_state
== gl
->gl_target
);
586 if ((target
== LM_ST_UNLOCKED
|| target
== LM_ST_DEFERRED
) &&
589 * If another process is already doing the invalidate, let that
590 * finish first. The glock state machine will get back to this
591 * holder again later.
593 if (test_and_set_bit(GLF_INVALIDATE_IN_PROGRESS
,
596 do_error(gl
, 0); /* Fail queued try locks */
599 set_bit(GLF_BLOCKING
, &gl
->gl_flags
);
600 if ((gl
->gl_req
== LM_ST_UNLOCKED
) ||
601 (gl
->gl_state
== LM_ST_EXCLUSIVE
) ||
602 (lck_flags
& (LM_FLAG_TRY
|LM_FLAG_TRY_1CB
)))
603 clear_bit(GLF_BLOCKING
, &gl
->gl_flags
);
604 spin_unlock(&gl
->gl_lockref
.lock
);
605 if (glops
->go_sync
) {
606 ret
= glops
->go_sync(gl
);
607 /* If we had a problem syncing (due to io errors or whatever,
608 * we should not invalidate the metadata or tell dlm to
609 * release the glock to other nodes.
612 if (cmpxchg(&sdp
->sd_log_error
, 0, ret
)) {
613 fs_err(sdp
, "Error %d syncing glock \n", ret
);
614 gfs2_dump_glock(NULL
, gl
, true);
619 if (test_bit(GLF_INVALIDATE_IN_PROGRESS
, &gl
->gl_flags
)) {
621 * The call to go_sync should have cleared out the ail list.
622 * If there are still items, we have a problem. We ought to
623 * withdraw, but we can't because the withdraw code also uses
624 * glocks. Warn about the error, dump the glock, then fall
625 * through and wait for logd to do the withdraw for us.
627 if ((atomic_read(&gl
->gl_ail_count
) != 0) &&
628 (!cmpxchg(&sdp
->sd_log_error
, 0, -EIO
))) {
629 gfs2_assert_warn(sdp
, !atomic_read(&gl
->gl_ail_count
));
630 gfs2_dump_glock(NULL
, gl
, true);
632 glops
->go_inval(gl
, target
== LM_ST_DEFERRED
? 0 : DIO_METADATA
);
633 clear_bit(GLF_INVALIDATE_IN_PROGRESS
, &gl
->gl_flags
);
638 * Check for an error encountered since we called go_sync and go_inval.
639 * If so, we can't withdraw from the glock code because the withdraw
640 * code itself uses glocks (see function signal_our_withdraw) to
641 * change the mount to read-only. Most importantly, we must not call
642 * dlm to unlock the glock until the journal is in a known good state
643 * (after journal replay) otherwise other nodes may use the object
644 * (rgrp or dinode) and then later, journal replay will corrupt the
645 * file system. The best we can do here is wait for the logd daemon
646 * to see sd_log_error and withdraw, and in the meantime, requeue the
649 * However, if we're just unlocking the lock (say, for unmount, when
650 * gfs2_gl_hash_clear calls clear_glock) and recovery is complete
651 * then it's okay to tell dlm to unlock it.
653 if (unlikely(sdp
->sd_log_error
&& !gfs2_withdrawn(sdp
)))
654 gfs2_withdraw_delayed(sdp
);
655 if (glock_blocked_by_withdraw(gl
)) {
656 if (target
!= LM_ST_UNLOCKED
||
657 test_bit(SDF_WITHDRAW_RECOVERY
, &sdp
->sd_flags
)) {
658 gfs2_glock_queue_work(gl
, GL_GLOCK_DFT_HOLD
);
663 if (sdp
->sd_lockstruct
.ls_ops
->lm_lock
) {
665 ret
= sdp
->sd_lockstruct
.ls_ops
->lm_lock(gl
, target
, lck_flags
);
666 if (ret
== -EINVAL
&& gl
->gl_target
== LM_ST_UNLOCKED
&&
667 target
== LM_ST_UNLOCKED
&&
668 test_bit(SDF_SKIP_DLM_UNLOCK
, &sdp
->sd_flags
)) {
669 finish_xmote(gl
, target
);
670 gfs2_glock_queue_work(gl
, 0);
672 fs_err(sdp
, "lm_lock ret %d\n", ret
);
673 GLOCK_BUG_ON(gl
, !gfs2_withdrawn(sdp
));
675 } else { /* lock_nolock */
676 finish_xmote(gl
, target
);
677 gfs2_glock_queue_work(gl
, 0);
680 spin_lock(&gl
->gl_lockref
.lock
);
684 * find_first_holder - find the first "holder" gh
688 static inline struct gfs2_holder
*find_first_holder(const struct gfs2_glock
*gl
)
690 struct gfs2_holder
*gh
;
692 if (!list_empty(&gl
->gl_holders
)) {
693 gh
= list_first_entry(&gl
->gl_holders
, struct gfs2_holder
, gh_list
);
694 if (test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
701 * run_queue - do all outstanding tasks related to a glock
702 * @gl: The glock in question
703 * @nonblock: True if we must not block in run_queue
707 static void run_queue(struct gfs2_glock
*gl
, const int nonblock
)
708 __releases(&gl
->gl_lockref
.lock
)
709 __acquires(&gl
->gl_lockref
.lock
)
711 struct gfs2_holder
*gh
= NULL
;
714 if (test_and_set_bit(GLF_LOCK
, &gl
->gl_flags
))
717 GLOCK_BUG_ON(gl
, test_bit(GLF_DEMOTE_IN_PROGRESS
, &gl
->gl_flags
));
719 if (test_bit(GLF_DEMOTE
, &gl
->gl_flags
) &&
720 gl
->gl_demote_state
!= gl
->gl_state
) {
721 if (find_first_holder(gl
))
726 if (atomic_read(&gl
->gl_revokes
) != 0)
728 set_bit(GLF_DEMOTE_IN_PROGRESS
, &gl
->gl_flags
);
729 GLOCK_BUG_ON(gl
, gl
->gl_demote_state
== LM_ST_EXCLUSIVE
);
730 gl
->gl_target
= gl
->gl_demote_state
;
732 if (test_bit(GLF_DEMOTE
, &gl
->gl_flags
))
733 gfs2_demote_wake(gl
);
734 ret
= do_promote(gl
);
739 gh
= find_first_waiter(gl
);
740 gl
->gl_target
= gh
->gh_state
;
741 if (!(gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
)))
742 do_error(gl
, 0); /* Fail queued try locks */
744 do_xmote(gl
, gh
, gl
->gl_target
);
749 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
750 smp_mb__after_atomic();
751 gl
->gl_lockref
.count
++;
752 __gfs2_glock_queue_work(gl
, 0);
756 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
757 smp_mb__after_atomic();
761 static void delete_work_func(struct work_struct
*work
)
763 struct gfs2_glock
*gl
= container_of(work
, struct gfs2_glock
, gl_delete
);
764 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
766 u64 no_addr
= gl
->gl_name
.ln_number
;
768 /* If someone's using this glock to create a new dinode, the block must
769 have been freed by another node, then re-used, in which case our
770 iopen callback is too late after the fact. Ignore it. */
771 if (test_bit(GLF_INODE_CREATING
, &gl
->gl_flags
))
774 inode
= gfs2_lookup_by_inum(sdp
, no_addr
, NULL
, GFS2_BLKST_UNLINKED
);
775 if (!IS_ERR_OR_NULL(inode
)) {
776 d_prune_aliases(inode
);
783 static void glock_work_func(struct work_struct
*work
)
785 unsigned long delay
= 0;
786 struct gfs2_glock
*gl
= container_of(work
, struct gfs2_glock
, gl_work
.work
);
787 unsigned int drop_refs
= 1;
789 if (test_and_clear_bit(GLF_REPLY_PENDING
, &gl
->gl_flags
)) {
790 finish_xmote(gl
, gl
->gl_reply
);
793 spin_lock(&gl
->gl_lockref
.lock
);
794 if (test_bit(GLF_PENDING_DEMOTE
, &gl
->gl_flags
) &&
795 gl
->gl_state
!= LM_ST_UNLOCKED
&&
796 gl
->gl_demote_state
!= LM_ST_EXCLUSIVE
) {
797 unsigned long holdtime
, now
= jiffies
;
799 holdtime
= gl
->gl_tchange
+ gl
->gl_hold_time
;
800 if (time_before(now
, holdtime
))
801 delay
= holdtime
- now
;
804 clear_bit(GLF_PENDING_DEMOTE
, &gl
->gl_flags
);
805 set_bit(GLF_DEMOTE
, &gl
->gl_flags
);
810 /* Keep one glock reference for the work we requeue. */
812 if (gl
->gl_name
.ln_type
!= LM_TYPE_INODE
)
814 __gfs2_glock_queue_work(gl
, delay
);
818 * Drop the remaining glock references manually here. (Mind that
819 * __gfs2_glock_queue_work depends on the lockref spinlock begin held
822 gl
->gl_lockref
.count
-= drop_refs
;
823 if (!gl
->gl_lockref
.count
) {
824 __gfs2_glock_put(gl
);
827 spin_unlock(&gl
->gl_lockref
.lock
);
830 static struct gfs2_glock
*find_insert_glock(struct lm_lockname
*name
,
831 struct gfs2_glock
*new)
833 struct wait_glock_queue wait
;
834 wait_queue_head_t
*wq
= glock_waitqueue(name
);
835 struct gfs2_glock
*gl
;
838 init_wait(&wait
.wait
);
839 wait
.wait
.func
= glock_wake_function
;
842 prepare_to_wait(wq
, &wait
.wait
, TASK_UNINTERRUPTIBLE
);
845 gl
= rhashtable_lookup_get_insert_fast(&gl_hash_table
,
846 &new->gl_node
, ht_parms
);
850 gl
= rhashtable_lookup_fast(&gl_hash_table
,
853 if (gl
&& !lockref_get_not_dead(&gl
->gl_lockref
)) {
860 finish_wait(wq
, &wait
.wait
);
865 * gfs2_glock_get() - Get a glock, or create one if one doesn't exist
866 * @sdp: The GFS2 superblock
867 * @number: the lock number
868 * @glops: The glock_operations to use
869 * @create: If 0, don't create the glock if it doesn't exist
870 * @glp: the glock is returned here
872 * This does not lock a glock, just finds/creates structures for one.
877 int gfs2_glock_get(struct gfs2_sbd
*sdp
, u64 number
,
878 const struct gfs2_glock_operations
*glops
, int create
,
879 struct gfs2_glock
**glp
)
881 struct super_block
*s
= sdp
->sd_vfs
;
882 struct lm_lockname name
= { .ln_number
= number
,
883 .ln_type
= glops
->go_type
,
885 struct gfs2_glock
*gl
, *tmp
;
886 struct address_space
*mapping
;
887 struct kmem_cache
*cachep
;
890 gl
= find_insert_glock(&name
, NULL
);
898 if (glops
->go_flags
& GLOF_ASPACE
)
899 cachep
= gfs2_glock_aspace_cachep
;
901 cachep
= gfs2_glock_cachep
;
902 gl
= kmem_cache_alloc(cachep
, GFP_NOFS
);
906 memset(&gl
->gl_lksb
, 0, sizeof(struct dlm_lksb
));
908 if (glops
->go_flags
& GLOF_LVB
) {
909 gl
->gl_lksb
.sb_lvbptr
= kzalloc(GDLM_LVB_SIZE
, GFP_NOFS
);
910 if (!gl
->gl_lksb
.sb_lvbptr
) {
911 kmem_cache_free(cachep
, gl
);
916 atomic_inc(&sdp
->sd_glock_disposal
);
917 gl
->gl_node
.next
= NULL
;
920 gl
->gl_lockref
.count
= 1;
921 gl
->gl_state
= LM_ST_UNLOCKED
;
922 gl
->gl_target
= LM_ST_UNLOCKED
;
923 gl
->gl_demote_state
= LM_ST_EXCLUSIVE
;
927 /* We use the global stats to estimate the initial per-glock stats */
928 gl
->gl_stats
= this_cpu_ptr(sdp
->sd_lkstats
)->lkstats
[glops
->go_type
];
930 gl
->gl_stats
.stats
[GFS2_LKS_DCOUNT
] = 0;
931 gl
->gl_stats
.stats
[GFS2_LKS_QCOUNT
] = 0;
932 gl
->gl_tchange
= jiffies
;
933 gl
->gl_object
= NULL
;
934 gl
->gl_hold_time
= GL_GLOCK_DFT_HOLD
;
935 INIT_DELAYED_WORK(&gl
->gl_work
, glock_work_func
);
936 INIT_WORK(&gl
->gl_delete
, delete_work_func
);
938 mapping
= gfs2_glock2aspace(gl
);
940 mapping
->a_ops
= &gfs2_meta_aops
;
941 mapping
->host
= s
->s_bdev
->bd_inode
;
943 mapping_set_gfp_mask(mapping
, GFP_NOFS
);
944 mapping
->private_data
= NULL
;
945 mapping
->writeback_index
= 0;
948 tmp
= find_insert_glock(&name
, gl
);
960 kfree(gl
->gl_lksb
.sb_lvbptr
);
961 kmem_cache_free(cachep
, gl
);
962 atomic_dec(&sdp
->sd_glock_disposal
);
969 * gfs2_holder_init - initialize a struct gfs2_holder in the default way
971 * @state: the state we're requesting
972 * @flags: the modifier flags
973 * @gh: the holder structure
977 void gfs2_holder_init(struct gfs2_glock
*gl
, unsigned int state
, u16 flags
,
978 struct gfs2_holder
*gh
)
980 INIT_LIST_HEAD(&gh
->gh_list
);
982 gh
->gh_ip
= _RET_IP_
;
983 gh
->gh_owner_pid
= get_pid(task_pid(current
));
984 gh
->gh_state
= state
;
985 gh
->gh_flags
= flags
;
992 * gfs2_holder_reinit - reinitialize a struct gfs2_holder so we can requeue it
993 * @state: the state we're requesting
994 * @flags: the modifier flags
995 * @gh: the holder structure
997 * Don't mess with the glock.
1001 void gfs2_holder_reinit(unsigned int state
, u16 flags
, struct gfs2_holder
*gh
)
1003 gh
->gh_state
= state
;
1004 gh
->gh_flags
= flags
;
1006 gh
->gh_ip
= _RET_IP_
;
1007 put_pid(gh
->gh_owner_pid
);
1008 gh
->gh_owner_pid
= get_pid(task_pid(current
));
1012 * gfs2_holder_uninit - uninitialize a holder structure (drop glock reference)
1013 * @gh: the holder structure
1017 void gfs2_holder_uninit(struct gfs2_holder
*gh
)
1019 put_pid(gh
->gh_owner_pid
);
1020 gfs2_glock_put(gh
->gh_gl
);
1021 gfs2_holder_mark_uninitialized(gh
);
1025 static void gfs2_glock_update_hold_time(struct gfs2_glock
*gl
,
1026 unsigned long start_time
)
1028 /* Have we waited longer that a second? */
1029 if (time_after(jiffies
, start_time
+ HZ
)) {
1030 /* Lengthen the minimum hold time. */
1031 gl
->gl_hold_time
= min(gl
->gl_hold_time
+ GL_GLOCK_HOLD_INCR
,
1037 * gfs2_glock_wait - wait on a glock acquisition
1038 * @gh: the glock holder
1040 * Returns: 0 on success
1043 int gfs2_glock_wait(struct gfs2_holder
*gh
)
1045 unsigned long start_time
= jiffies
;
1048 wait_on_bit(&gh
->gh_iflags
, HIF_WAIT
, TASK_UNINTERRUPTIBLE
);
1049 gfs2_glock_update_hold_time(gh
->gh_gl
, start_time
);
1050 return gh
->gh_error
;
1053 static int glocks_pending(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1057 for (i
= 0; i
< num_gh
; i
++)
1058 if (test_bit(HIF_WAIT
, &ghs
[i
].gh_iflags
))
1064 * gfs2_glock_async_wait - wait on multiple asynchronous glock acquisitions
1065 * @num_gh: the number of holders in the array
1066 * @ghs: the glock holder array
1068 * Returns: 0 on success, meaning all glocks have been granted and are held.
1069 * -ESTALE if the request timed out, meaning all glocks were released,
1070 * and the caller should retry the operation.
1073 int gfs2_glock_async_wait(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1075 struct gfs2_sbd
*sdp
= ghs
[0].gh_gl
->gl_name
.ln_sbd
;
1076 int i
, ret
= 0, timeout
= 0;
1077 unsigned long start_time
= jiffies
;
1082 * Total up the (minimum hold time * 2) of all glocks and use that to
1083 * determine the max amount of time we should wait.
1085 for (i
= 0; i
< num_gh
; i
++)
1086 timeout
+= ghs
[i
].gh_gl
->gl_hold_time
<< 1;
1089 if (!wait_event_timeout(sdp
->sd_async_glock_wait
,
1090 !glocks_pending(num_gh
, ghs
), timeout
))
1091 ret
= -ESTALE
; /* request timed out. */
1094 * If dlm granted all our requests, we need to adjust the glock
1095 * minimum hold time values according to how long we waited.
1097 * If our request timed out, we need to repeatedly release any held
1098 * glocks we acquired thus far to allow dlm to acquire the remaining
1099 * glocks without deadlocking. We cannot currently cancel outstanding
1100 * glock acquisitions.
1102 * The HIF_WAIT bit tells us which requests still need a response from
1105 * If dlm sent us any errors, we return the first error we find.
1107 keep_waiting
= false;
1108 for (i
= 0; i
< num_gh
; i
++) {
1109 /* Skip holders we have already dequeued below. */
1110 if (!gfs2_holder_queued(&ghs
[i
]))
1112 /* Skip holders with a pending DLM response. */
1113 if (test_bit(HIF_WAIT
, &ghs
[i
].gh_iflags
)) {
1114 keep_waiting
= true;
1118 if (test_bit(HIF_HOLDER
, &ghs
[i
].gh_iflags
)) {
1120 gfs2_glock_dq(&ghs
[i
]);
1122 gfs2_glock_update_hold_time(ghs
[i
].gh_gl
,
1126 ret
= ghs
[i
].gh_error
;
1133 * At this point, we've either acquired all locks or released them all.
1139 * handle_callback - process a demote request
1141 * @state: the state the caller wants us to change to
1143 * There are only two requests that we are going to see in actual
1144 * practise: LM_ST_SHARED and LM_ST_UNLOCKED
1147 static void handle_callback(struct gfs2_glock
*gl
, unsigned int state
,
1148 unsigned long delay
, bool remote
)
1150 int bit
= delay
? GLF_PENDING_DEMOTE
: GLF_DEMOTE
;
1152 set_bit(bit
, &gl
->gl_flags
);
1153 if (gl
->gl_demote_state
== LM_ST_EXCLUSIVE
) {
1154 gl
->gl_demote_state
= state
;
1155 gl
->gl_demote_time
= jiffies
;
1156 } else if (gl
->gl_demote_state
!= LM_ST_UNLOCKED
&&
1157 gl
->gl_demote_state
!= state
) {
1158 gl
->gl_demote_state
= LM_ST_UNLOCKED
;
1160 if (gl
->gl_ops
->go_callback
)
1161 gl
->gl_ops
->go_callback(gl
, remote
);
1162 trace_gfs2_demote_rq(gl
, remote
);
1165 void gfs2_print_dbg(struct seq_file
*seq
, const char *fmt
, ...)
1167 struct va_format vaf
;
1170 va_start(args
, fmt
);
1173 seq_vprintf(seq
, fmt
, args
);
1178 pr_err("%pV", &vaf
);
1185 * add_to_queue - Add a holder to the wait queue (but look for recursion)
1186 * @gh: the holder structure to add
1188 * Eventually we should move the recursive locking trap to a
1189 * debugging option or something like that. This is the fast
1190 * path and needs to have the minimum number of distractions.
1194 static inline void add_to_queue(struct gfs2_holder
*gh
)
1195 __releases(&gl
->gl_lockref
.lock
)
1196 __acquires(&gl
->gl_lockref
.lock
)
1198 struct gfs2_glock
*gl
= gh
->gh_gl
;
1199 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
1200 struct list_head
*insert_pt
= NULL
;
1201 struct gfs2_holder
*gh2
;
1204 GLOCK_BUG_ON(gl
, gh
->gh_owner_pid
== NULL
);
1205 if (test_and_set_bit(HIF_WAIT
, &gh
->gh_iflags
))
1206 GLOCK_BUG_ON(gl
, true);
1208 if (gh
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
)) {
1209 if (test_bit(GLF_LOCK
, &gl
->gl_flags
))
1210 try_futile
= !may_grant(gl
, gh
);
1211 if (test_bit(GLF_INVALIDATE_IN_PROGRESS
, &gl
->gl_flags
))
1215 list_for_each_entry(gh2
, &gl
->gl_holders
, gh_list
) {
1216 if (unlikely(gh2
->gh_owner_pid
== gh
->gh_owner_pid
&&
1217 (gh
->gh_gl
->gl_ops
->go_type
!= LM_TYPE_FLOCK
)))
1218 goto trap_recursive
;
1220 !(gh2
->gh_flags
& (LM_FLAG_TRY
| LM_FLAG_TRY_1CB
))) {
1222 gh
->gh_error
= GLR_TRYFAILED
;
1223 gfs2_holder_wake(gh
);
1226 if (test_bit(HIF_HOLDER
, &gh2
->gh_iflags
))
1228 if (unlikely((gh
->gh_flags
& LM_FLAG_PRIORITY
) && !insert_pt
))
1229 insert_pt
= &gh2
->gh_list
;
1231 set_bit(GLF_QUEUED
, &gl
->gl_flags
);
1232 trace_gfs2_glock_queue(gh
, 1);
1233 gfs2_glstats_inc(gl
, GFS2_LKS_QCOUNT
);
1234 gfs2_sbstats_inc(gl
, GFS2_LKS_QCOUNT
);
1235 if (likely(insert_pt
== NULL
)) {
1236 list_add_tail(&gh
->gh_list
, &gl
->gl_holders
);
1237 if (unlikely(gh
->gh_flags
& LM_FLAG_PRIORITY
))
1241 list_add_tail(&gh
->gh_list
, insert_pt
);
1243 gh
= list_first_entry(&gl
->gl_holders
, struct gfs2_holder
, gh_list
);
1244 if (!(gh
->gh_flags
& LM_FLAG_PRIORITY
)) {
1245 spin_unlock(&gl
->gl_lockref
.lock
);
1246 if (sdp
->sd_lockstruct
.ls_ops
->lm_cancel
)
1247 sdp
->sd_lockstruct
.ls_ops
->lm_cancel(gl
);
1248 spin_lock(&gl
->gl_lockref
.lock
);
1253 fs_err(sdp
, "original: %pSR\n", (void *)gh2
->gh_ip
);
1254 fs_err(sdp
, "pid: %d\n", pid_nr(gh2
->gh_owner_pid
));
1255 fs_err(sdp
, "lock type: %d req lock state : %d\n",
1256 gh2
->gh_gl
->gl_name
.ln_type
, gh2
->gh_state
);
1257 fs_err(sdp
, "new: %pSR\n", (void *)gh
->gh_ip
);
1258 fs_err(sdp
, "pid: %d\n", pid_nr(gh
->gh_owner_pid
));
1259 fs_err(sdp
, "lock type: %d req lock state : %d\n",
1260 gh
->gh_gl
->gl_name
.ln_type
, gh
->gh_state
);
1261 gfs2_dump_glock(NULL
, gl
, true);
1266 * gfs2_glock_nq - enqueue a struct gfs2_holder onto a glock (acquire a glock)
1267 * @gh: the holder structure
1269 * if (gh->gh_flags & GL_ASYNC), this never returns an error
1271 * Returns: 0, GLR_TRYFAILED, or errno on failure
1274 int gfs2_glock_nq(struct gfs2_holder
*gh
)
1276 struct gfs2_glock
*gl
= gh
->gh_gl
;
1279 if (glock_blocked_by_withdraw(gl
) && !(gh
->gh_flags
& LM_FLAG_NOEXP
))
1282 if (test_bit(GLF_LRU
, &gl
->gl_flags
))
1283 gfs2_glock_remove_from_lru(gl
);
1285 spin_lock(&gl
->gl_lockref
.lock
);
1287 if (unlikely((LM_FLAG_NOEXP
& gh
->gh_flags
) &&
1288 test_and_clear_bit(GLF_FROZEN
, &gl
->gl_flags
))) {
1289 set_bit(GLF_REPLY_PENDING
, &gl
->gl_flags
);
1290 gl
->gl_lockref
.count
++;
1291 __gfs2_glock_queue_work(gl
, 0);
1294 spin_unlock(&gl
->gl_lockref
.lock
);
1296 if (!(gh
->gh_flags
& GL_ASYNC
))
1297 error
= gfs2_glock_wait(gh
);
1303 * gfs2_glock_poll - poll to see if an async request has been completed
1306 * Returns: 1 if the request is ready to be gfs2_glock_wait()ed on
1309 int gfs2_glock_poll(struct gfs2_holder
*gh
)
1311 return test_bit(HIF_WAIT
, &gh
->gh_iflags
) ? 0 : 1;
1315 * gfs2_glock_dq - dequeue a struct gfs2_holder from a glock (release a glock)
1316 * @gh: the glock holder
1320 void gfs2_glock_dq(struct gfs2_holder
*gh
)
1322 struct gfs2_glock
*gl
= gh
->gh_gl
;
1323 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
1327 spin_lock(&gl
->gl_lockref
.lock
);
1329 * If we're in the process of file system withdraw, we cannot just
1330 * dequeue any glocks until our journal is recovered, lest we
1331 * introduce file system corruption. We need two exceptions to this
1332 * rule: We need to allow unlocking of nondisk glocks and the glock
1333 * for our own journal that needs recovery.
1335 if (test_bit(SDF_WITHDRAW_RECOVERY
, &sdp
->sd_flags
) &&
1336 glock_blocked_by_withdraw(gl
) &&
1337 gh
->gh_gl
!= sdp
->sd_jinode_gl
) {
1338 sdp
->sd_glock_dqs_held
++;
1340 wait_on_bit(&sdp
->sd_flags
, SDF_WITHDRAW_RECOVERY
,
1341 TASK_UNINTERRUPTIBLE
);
1343 if (gh
->gh_flags
& GL_NOCACHE
)
1344 handle_callback(gl
, LM_ST_UNLOCKED
, 0, false);
1346 list_del_init(&gh
->gh_list
);
1347 clear_bit(HIF_HOLDER
, &gh
->gh_iflags
);
1348 if (find_first_holder(gl
) == NULL
) {
1349 if (list_empty(&gl
->gl_holders
) &&
1350 !test_bit(GLF_PENDING_DEMOTE
, &gl
->gl_flags
) &&
1351 !test_bit(GLF_DEMOTE
, &gl
->gl_flags
))
1354 if (!test_bit(GLF_LFLUSH
, &gl
->gl_flags
) && demote_ok(gl
))
1355 gfs2_glock_add_to_lru(gl
);
1357 trace_gfs2_glock_queue(gh
, 0);
1358 if (unlikely(!fast_path
)) {
1359 gl
->gl_lockref
.count
++;
1360 if (test_bit(GLF_PENDING_DEMOTE
, &gl
->gl_flags
) &&
1361 !test_bit(GLF_DEMOTE
, &gl
->gl_flags
) &&
1362 gl
->gl_name
.ln_type
== LM_TYPE_INODE
)
1363 delay
= gl
->gl_hold_time
;
1364 __gfs2_glock_queue_work(gl
, delay
);
1366 spin_unlock(&gl
->gl_lockref
.lock
);
1369 void gfs2_glock_dq_wait(struct gfs2_holder
*gh
)
1371 struct gfs2_glock
*gl
= gh
->gh_gl
;
1374 wait_on_bit(&gl
->gl_flags
, GLF_DEMOTE
, TASK_UNINTERRUPTIBLE
);
1378 * gfs2_glock_dq_uninit - dequeue a holder from a glock and initialize it
1379 * @gh: the holder structure
1383 void gfs2_glock_dq_uninit(struct gfs2_holder
*gh
)
1386 gfs2_holder_uninit(gh
);
1390 * gfs2_glock_nq_num - acquire a glock based on lock number
1391 * @sdp: the filesystem
1392 * @number: the lock number
1393 * @glops: the glock operations for the type of glock
1394 * @state: the state to acquire the glock in
1395 * @flags: modifier flags for the acquisition
1396 * @gh: the struct gfs2_holder
1401 int gfs2_glock_nq_num(struct gfs2_sbd
*sdp
, u64 number
,
1402 const struct gfs2_glock_operations
*glops
,
1403 unsigned int state
, u16 flags
, struct gfs2_holder
*gh
)
1405 struct gfs2_glock
*gl
;
1408 error
= gfs2_glock_get(sdp
, number
, glops
, CREATE
, &gl
);
1410 error
= gfs2_glock_nq_init(gl
, state
, flags
, gh
);
1418 * glock_compare - Compare two struct gfs2_glock structures for sorting
1419 * @arg_a: the first structure
1420 * @arg_b: the second structure
1424 static int glock_compare(const void *arg_a
, const void *arg_b
)
1426 const struct gfs2_holder
*gh_a
= *(const struct gfs2_holder
**)arg_a
;
1427 const struct gfs2_holder
*gh_b
= *(const struct gfs2_holder
**)arg_b
;
1428 const struct lm_lockname
*a
= &gh_a
->gh_gl
->gl_name
;
1429 const struct lm_lockname
*b
= &gh_b
->gh_gl
->gl_name
;
1431 if (a
->ln_number
> b
->ln_number
)
1433 if (a
->ln_number
< b
->ln_number
)
1435 BUG_ON(gh_a
->gh_gl
->gl_ops
->go_type
== gh_b
->gh_gl
->gl_ops
->go_type
);
1440 * nq_m_sync - synchonously acquire more than one glock in deadlock free order
1441 * @num_gh: the number of structures
1442 * @ghs: an array of struct gfs2_holder structures
1444 * Returns: 0 on success (all glocks acquired),
1445 * errno on failure (no glocks acquired)
1448 static int nq_m_sync(unsigned int num_gh
, struct gfs2_holder
*ghs
,
1449 struct gfs2_holder
**p
)
1454 for (x
= 0; x
< num_gh
; x
++)
1457 sort(p
, num_gh
, sizeof(struct gfs2_holder
*), glock_compare
, NULL
);
1459 for (x
= 0; x
< num_gh
; x
++) {
1460 p
[x
]->gh_flags
&= ~(LM_FLAG_TRY
| GL_ASYNC
);
1462 error
= gfs2_glock_nq(p
[x
]);
1465 gfs2_glock_dq(p
[x
]);
1474 * gfs2_glock_nq_m - acquire multiple glocks
1475 * @num_gh: the number of structures
1476 * @ghs: an array of struct gfs2_holder structures
1479 * Returns: 0 on success (all glocks acquired),
1480 * errno on failure (no glocks acquired)
1483 int gfs2_glock_nq_m(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1485 struct gfs2_holder
*tmp
[4];
1486 struct gfs2_holder
**pph
= tmp
;
1493 ghs
->gh_flags
&= ~(LM_FLAG_TRY
| GL_ASYNC
);
1494 return gfs2_glock_nq(ghs
);
1498 pph
= kmalloc_array(num_gh
, sizeof(struct gfs2_holder
*),
1504 error
= nq_m_sync(num_gh
, ghs
, pph
);
1513 * gfs2_glock_dq_m - release multiple glocks
1514 * @num_gh: the number of structures
1515 * @ghs: an array of struct gfs2_holder structures
1519 void gfs2_glock_dq_m(unsigned int num_gh
, struct gfs2_holder
*ghs
)
1522 gfs2_glock_dq(&ghs
[num_gh
]);
1525 void gfs2_glock_cb(struct gfs2_glock
*gl
, unsigned int state
)
1527 unsigned long delay
= 0;
1528 unsigned long holdtime
;
1529 unsigned long now
= jiffies
;
1531 gfs2_glock_hold(gl
);
1532 holdtime
= gl
->gl_tchange
+ gl
->gl_hold_time
;
1533 if (test_bit(GLF_QUEUED
, &gl
->gl_flags
) &&
1534 gl
->gl_name
.ln_type
== LM_TYPE_INODE
) {
1535 if (time_before(now
, holdtime
))
1536 delay
= holdtime
- now
;
1537 if (test_bit(GLF_REPLY_PENDING
, &gl
->gl_flags
))
1538 delay
= gl
->gl_hold_time
;
1541 spin_lock(&gl
->gl_lockref
.lock
);
1542 handle_callback(gl
, state
, delay
, true);
1543 __gfs2_glock_queue_work(gl
, delay
);
1544 spin_unlock(&gl
->gl_lockref
.lock
);
1548 * gfs2_should_freeze - Figure out if glock should be frozen
1549 * @gl: The glock in question
1551 * Glocks are not frozen if (a) the result of the dlm operation is
1552 * an error, (b) the locking operation was an unlock operation or
1553 * (c) if there is a "noexp" flagged request anywhere in the queue
1555 * Returns: 1 if freezing should occur, 0 otherwise
1558 static int gfs2_should_freeze(const struct gfs2_glock
*gl
)
1560 const struct gfs2_holder
*gh
;
1562 if (gl
->gl_reply
& ~LM_OUT_ST_MASK
)
1564 if (gl
->gl_target
== LM_ST_UNLOCKED
)
1567 list_for_each_entry(gh
, &gl
->gl_holders
, gh_list
) {
1568 if (test_bit(HIF_HOLDER
, &gh
->gh_iflags
))
1570 if (LM_FLAG_NOEXP
& gh
->gh_flags
)
1578 * gfs2_glock_complete - Callback used by locking
1579 * @gl: Pointer to the glock
1580 * @ret: The return value from the dlm
1582 * The gl_reply field is under the gl_lockref.lock lock so that it is ok
1583 * to use a bitfield shared with other glock state fields.
1586 void gfs2_glock_complete(struct gfs2_glock
*gl
, int ret
)
1588 struct lm_lockstruct
*ls
= &gl
->gl_name
.ln_sbd
->sd_lockstruct
;
1590 spin_lock(&gl
->gl_lockref
.lock
);
1593 if (unlikely(test_bit(DFL_BLOCK_LOCKS
, &ls
->ls_recover_flags
))) {
1594 if (gfs2_should_freeze(gl
)) {
1595 set_bit(GLF_FROZEN
, &gl
->gl_flags
);
1596 spin_unlock(&gl
->gl_lockref
.lock
);
1601 gl
->gl_lockref
.count
++;
1602 set_bit(GLF_REPLY_PENDING
, &gl
->gl_flags
);
1603 __gfs2_glock_queue_work(gl
, 0);
1604 spin_unlock(&gl
->gl_lockref
.lock
);
1607 static int glock_cmp(void *priv
, struct list_head
*a
, struct list_head
*b
)
1609 struct gfs2_glock
*gla
, *glb
;
1611 gla
= list_entry(a
, struct gfs2_glock
, gl_lru
);
1612 glb
= list_entry(b
, struct gfs2_glock
, gl_lru
);
1614 if (gla
->gl_name
.ln_number
> glb
->gl_name
.ln_number
)
1616 if (gla
->gl_name
.ln_number
< glb
->gl_name
.ln_number
)
1623 * gfs2_dispose_glock_lru - Demote a list of glocks
1624 * @list: The list to dispose of
1626 * Disposing of glocks may involve disk accesses, so that here we sort
1627 * the glocks by number (i.e. disk location of the inodes) so that if
1628 * there are any such accesses, they'll be sent in order (mostly).
1630 * Must be called under the lru_lock, but may drop and retake this
1631 * lock. While the lru_lock is dropped, entries may vanish from the
1632 * list, but no new entries will appear on the list (since it is
1636 static void gfs2_dispose_glock_lru(struct list_head
*list
)
1637 __releases(&lru_lock
)
1638 __acquires(&lru_lock
)
1640 struct gfs2_glock
*gl
;
1642 list_sort(NULL
, list
, glock_cmp
);
1644 while(!list_empty(list
)) {
1645 gl
= list_first_entry(list
, struct gfs2_glock
, gl_lru
);
1646 list_del_init(&gl
->gl_lru
);
1647 if (!spin_trylock(&gl
->gl_lockref
.lock
)) {
1649 list_add(&gl
->gl_lru
, &lru_list
);
1650 set_bit(GLF_LRU
, &gl
->gl_flags
);
1651 atomic_inc(&lru_count
);
1654 if (test_and_set_bit(GLF_LOCK
, &gl
->gl_flags
)) {
1655 spin_unlock(&gl
->gl_lockref
.lock
);
1656 goto add_back_to_lru
;
1658 gl
->gl_lockref
.count
++;
1660 handle_callback(gl
, LM_ST_UNLOCKED
, 0, false);
1661 WARN_ON(!test_and_clear_bit(GLF_LOCK
, &gl
->gl_flags
));
1662 __gfs2_glock_queue_work(gl
, 0);
1663 spin_unlock(&gl
->gl_lockref
.lock
);
1664 cond_resched_lock(&lru_lock
);
1669 * gfs2_scan_glock_lru - Scan the LRU looking for locks to demote
1670 * @nr: The number of entries to scan
1672 * This function selects the entries on the LRU which are able to
1673 * be demoted, and then kicks off the process by calling
1674 * gfs2_dispose_glock_lru() above.
1677 static long gfs2_scan_glock_lru(int nr
)
1679 struct gfs2_glock
*gl
;
1684 spin_lock(&lru_lock
);
1685 while ((nr
-- >= 0) && !list_empty(&lru_list
)) {
1686 gl
= list_first_entry(&lru_list
, struct gfs2_glock
, gl_lru
);
1688 /* Test for being demotable */
1689 if (!test_bit(GLF_LOCK
, &gl
->gl_flags
)) {
1690 list_move(&gl
->gl_lru
, &dispose
);
1691 atomic_dec(&lru_count
);
1692 clear_bit(GLF_LRU
, &gl
->gl_flags
);
1697 list_move(&gl
->gl_lru
, &skipped
);
1699 list_splice(&skipped
, &lru_list
);
1700 if (!list_empty(&dispose
))
1701 gfs2_dispose_glock_lru(&dispose
);
1702 spin_unlock(&lru_lock
);
1707 static unsigned long gfs2_glock_shrink_scan(struct shrinker
*shrink
,
1708 struct shrink_control
*sc
)
1710 if (!(sc
->gfp_mask
& __GFP_FS
))
1712 return gfs2_scan_glock_lru(sc
->nr_to_scan
);
1715 static unsigned long gfs2_glock_shrink_count(struct shrinker
*shrink
,
1716 struct shrink_control
*sc
)
1718 return vfs_pressure_ratio(atomic_read(&lru_count
));
1721 static struct shrinker glock_shrinker
= {
1722 .seeks
= DEFAULT_SEEKS
,
1723 .count_objects
= gfs2_glock_shrink_count
,
1724 .scan_objects
= gfs2_glock_shrink_scan
,
1728 * examine_bucket - Call a function for glock in a hash bucket
1729 * @examiner: the function
1730 * @sdp: the filesystem
1731 * @bucket: the bucket
1733 * Note that the function can be called multiple times on the same
1734 * object. So the user must ensure that the function can cope with
1738 static void glock_hash_walk(glock_examiner examiner
, const struct gfs2_sbd
*sdp
)
1740 struct gfs2_glock
*gl
;
1741 struct rhashtable_iter iter
;
1743 rhashtable_walk_enter(&gl_hash_table
, &iter
);
1746 rhashtable_walk_start(&iter
);
1748 while ((gl
= rhashtable_walk_next(&iter
)) && !IS_ERR(gl
))
1749 if (gl
->gl_name
.ln_sbd
== sdp
&&
1750 lockref_get_not_dead(&gl
->gl_lockref
))
1753 rhashtable_walk_stop(&iter
);
1754 } while (cond_resched(), gl
== ERR_PTR(-EAGAIN
));
1756 rhashtable_walk_exit(&iter
);
1760 * thaw_glock - thaw out a glock which has an unprocessed reply waiting
1761 * @gl: The glock to thaw
1765 static void thaw_glock(struct gfs2_glock
*gl
)
1767 if (!test_and_clear_bit(GLF_FROZEN
, &gl
->gl_flags
)) {
1771 set_bit(GLF_REPLY_PENDING
, &gl
->gl_flags
);
1772 gfs2_glock_queue_work(gl
, 0);
1776 * clear_glock - look at a glock and see if we can free it from glock cache
1777 * @gl: the glock to look at
1781 static void clear_glock(struct gfs2_glock
*gl
)
1783 gfs2_glock_remove_from_lru(gl
);
1785 spin_lock(&gl
->gl_lockref
.lock
);
1786 if (gl
->gl_state
!= LM_ST_UNLOCKED
)
1787 handle_callback(gl
, LM_ST_UNLOCKED
, 0, false);
1788 __gfs2_glock_queue_work(gl
, 0);
1789 spin_unlock(&gl
->gl_lockref
.lock
);
1793 * gfs2_glock_thaw - Thaw any frozen glocks
1794 * @sdp: The super block
1798 void gfs2_glock_thaw(struct gfs2_sbd
*sdp
)
1800 glock_hash_walk(thaw_glock
, sdp
);
1803 static void dump_glock(struct seq_file
*seq
, struct gfs2_glock
*gl
, bool fsid
)
1805 spin_lock(&gl
->gl_lockref
.lock
);
1806 gfs2_dump_glock(seq
, gl
, fsid
);
1807 spin_unlock(&gl
->gl_lockref
.lock
);
1810 static void dump_glock_func(struct gfs2_glock
*gl
)
1812 dump_glock(NULL
, gl
, true);
1816 * gfs2_gl_hash_clear - Empty out the glock hash table
1817 * @sdp: the filesystem
1818 * @wait: wait until it's all gone
1820 * Called when unmounting the filesystem.
1823 void gfs2_gl_hash_clear(struct gfs2_sbd
*sdp
)
1825 set_bit(SDF_SKIP_DLM_UNLOCK
, &sdp
->sd_flags
);
1826 flush_workqueue(glock_workqueue
);
1827 glock_hash_walk(clear_glock
, sdp
);
1828 flush_workqueue(glock_workqueue
);
1829 wait_event_timeout(sdp
->sd_glock_wait
,
1830 atomic_read(&sdp
->sd_glock_disposal
) == 0,
1832 glock_hash_walk(dump_glock_func
, sdp
);
1835 void gfs2_glock_finish_truncate(struct gfs2_inode
*ip
)
1837 struct gfs2_glock
*gl
= ip
->i_gl
;
1840 ret
= gfs2_truncatei_resume(ip
);
1841 gfs2_assert_withdraw(gl
->gl_name
.ln_sbd
, ret
== 0);
1843 spin_lock(&gl
->gl_lockref
.lock
);
1844 clear_bit(GLF_LOCK
, &gl
->gl_flags
);
1846 spin_unlock(&gl
->gl_lockref
.lock
);
1849 static const char *state2str(unsigned state
)
1852 case LM_ST_UNLOCKED
:
1856 case LM_ST_DEFERRED
:
1858 case LM_ST_EXCLUSIVE
:
1864 static const char *hflags2str(char *buf
, u16 flags
, unsigned long iflags
)
1867 if (flags
& LM_FLAG_TRY
)
1869 if (flags
& LM_FLAG_TRY_1CB
)
1871 if (flags
& LM_FLAG_NOEXP
)
1873 if (flags
& LM_FLAG_ANY
)
1875 if (flags
& LM_FLAG_PRIORITY
)
1877 if (flags
& GL_ASYNC
)
1879 if (flags
& GL_EXACT
)
1881 if (flags
& GL_NOCACHE
)
1883 if (test_bit(HIF_HOLDER
, &iflags
))
1885 if (test_bit(HIF_WAIT
, &iflags
))
1887 if (test_bit(HIF_FIRST
, &iflags
))
1894 * dump_holder - print information about a glock holder
1895 * @seq: the seq_file struct
1896 * @gh: the glock holder
1897 * @fs_id_buf: pointer to file system id (if requested)
1901 static void dump_holder(struct seq_file
*seq
, const struct gfs2_holder
*gh
,
1902 const char *fs_id_buf
)
1904 struct task_struct
*gh_owner
= NULL
;
1908 if (gh
->gh_owner_pid
)
1909 gh_owner
= pid_task(gh
->gh_owner_pid
, PIDTYPE_PID
);
1910 gfs2_print_dbg(seq
, "%s H: s:%s f:%s e:%d p:%ld [%s] %pS\n",
1911 fs_id_buf
, state2str(gh
->gh_state
),
1912 hflags2str(flags_buf
, gh
->gh_flags
, gh
->gh_iflags
),
1914 gh
->gh_owner_pid
? (long)pid_nr(gh
->gh_owner_pid
) : -1,
1915 gh_owner
? gh_owner
->comm
: "(ended)",
1920 static const char *gflags2str(char *buf
, const struct gfs2_glock
*gl
)
1922 const unsigned long *gflags
= &gl
->gl_flags
;
1925 if (test_bit(GLF_LOCK
, gflags
))
1927 if (test_bit(GLF_DEMOTE
, gflags
))
1929 if (test_bit(GLF_PENDING_DEMOTE
, gflags
))
1931 if (test_bit(GLF_DEMOTE_IN_PROGRESS
, gflags
))
1933 if (test_bit(GLF_DIRTY
, gflags
))
1935 if (test_bit(GLF_LFLUSH
, gflags
))
1937 if (test_bit(GLF_INVALIDATE_IN_PROGRESS
, gflags
))
1939 if (test_bit(GLF_REPLY_PENDING
, gflags
))
1941 if (test_bit(GLF_INITIAL
, gflags
))
1943 if (test_bit(GLF_FROZEN
, gflags
))
1945 if (test_bit(GLF_QUEUED
, gflags
))
1947 if (test_bit(GLF_LRU
, gflags
))
1951 if (test_bit(GLF_BLOCKING
, gflags
))
1958 * gfs2_dump_glock - print information about a glock
1959 * @seq: The seq_file struct
1961 * @fsid: If true, also dump the file system id
1963 * The file format is as follows:
1964 * One line per object, capital letters are used to indicate objects
1965 * G = glock, I = Inode, R = rgrp, H = holder. Glocks are not indented,
1966 * other objects are indented by a single space and follow the glock to
1967 * which they are related. Fields are indicated by lower case letters
1968 * followed by a colon and the field value, except for strings which are in
1969 * [] so that its possible to see if they are composed of spaces for
1970 * example. The field's are n = number (id of the object), f = flags,
1971 * t = type, s = state, r = refcount, e = error, p = pid.
1975 void gfs2_dump_glock(struct seq_file
*seq
, struct gfs2_glock
*gl
, bool fsid
)
1977 const struct gfs2_glock_operations
*glops
= gl
->gl_ops
;
1978 unsigned long long dtime
;
1979 const struct gfs2_holder
*gh
;
1980 char gflags_buf
[32];
1981 struct gfs2_sbd
*sdp
= gl
->gl_name
.ln_sbd
;
1982 char fs_id_buf
[sizeof(sdp
->sd_fsname
) + 7];
1984 memset(fs_id_buf
, 0, sizeof(fs_id_buf
));
1985 if (fsid
&& sdp
) /* safety precaution */
1986 sprintf(fs_id_buf
, "fsid=%s: ", sdp
->sd_fsname
);
1987 dtime
= jiffies
- gl
->gl_demote_time
;
1988 dtime
*= 1000000/HZ
; /* demote time in uSec */
1989 if (!test_bit(GLF_DEMOTE
, &gl
->gl_flags
))
1991 gfs2_print_dbg(seq
, "%sG: s:%s n:%u/%llx f:%s t:%s d:%s/%llu a:%d "
1992 "v:%d r:%d m:%ld\n", fs_id_buf
, state2str(gl
->gl_state
),
1993 gl
->gl_name
.ln_type
,
1994 (unsigned long long)gl
->gl_name
.ln_number
,
1995 gflags2str(gflags_buf
, gl
),
1996 state2str(gl
->gl_target
),
1997 state2str(gl
->gl_demote_state
), dtime
,
1998 atomic_read(&gl
->gl_ail_count
),
1999 atomic_read(&gl
->gl_revokes
),
2000 (int)gl
->gl_lockref
.count
, gl
->gl_hold_time
);
2002 list_for_each_entry(gh
, &gl
->gl_holders
, gh_list
)
2003 dump_holder(seq
, gh
, fs_id_buf
);
2005 if (gl
->gl_state
!= LM_ST_UNLOCKED
&& glops
->go_dump
)
2006 glops
->go_dump(seq
, gl
, fs_id_buf
);
2009 static int gfs2_glstats_seq_show(struct seq_file
*seq
, void *iter_ptr
)
2011 struct gfs2_glock
*gl
= iter_ptr
;
2013 seq_printf(seq
, "G: n:%u/%llx rtt:%llu/%llu rttb:%llu/%llu irt:%llu/%llu dcnt: %llu qcnt: %llu\n",
2014 gl
->gl_name
.ln_type
,
2015 (unsigned long long)gl
->gl_name
.ln_number
,
2016 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SRTT
],
2017 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SRTTVAR
],
2018 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SRTTB
],
2019 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SRTTVARB
],
2020 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SIRT
],
2021 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_SIRTVAR
],
2022 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_DCOUNT
],
2023 (unsigned long long)gl
->gl_stats
.stats
[GFS2_LKS_QCOUNT
]);
2027 static const char *gfs2_gltype
[] = {
2041 static const char *gfs2_stype
[] = {
2042 [GFS2_LKS_SRTT
] = "srtt",
2043 [GFS2_LKS_SRTTVAR
] = "srttvar",
2044 [GFS2_LKS_SRTTB
] = "srttb",
2045 [GFS2_LKS_SRTTVARB
] = "srttvarb",
2046 [GFS2_LKS_SIRT
] = "sirt",
2047 [GFS2_LKS_SIRTVAR
] = "sirtvar",
2048 [GFS2_LKS_DCOUNT
] = "dlm",
2049 [GFS2_LKS_QCOUNT
] = "queue",
2052 #define GFS2_NR_SBSTATS (ARRAY_SIZE(gfs2_gltype) * ARRAY_SIZE(gfs2_stype))
2054 static int gfs2_sbstats_seq_show(struct seq_file
*seq
, void *iter_ptr
)
2056 struct gfs2_sbd
*sdp
= seq
->private;
2057 loff_t pos
= *(loff_t
*)iter_ptr
;
2058 unsigned index
= pos
>> 3;
2059 unsigned subindex
= pos
& 0x07;
2062 if (index
== 0 && subindex
!= 0)
2065 seq_printf(seq
, "%-10s %8s:", gfs2_gltype
[index
],
2066 (index
== 0) ? "cpu": gfs2_stype
[subindex
]);
2068 for_each_possible_cpu(i
) {
2069 const struct gfs2_pcpu_lkstats
*lkstats
= per_cpu_ptr(sdp
->sd_lkstats
, i
);
2072 seq_printf(seq
, " %15u", i
);
2074 seq_printf(seq
, " %15llu", (unsigned long long)lkstats
->
2075 lkstats
[index
- 1].stats
[subindex
]);
2077 seq_putc(seq
, '\n');
2081 int __init
gfs2_glock_init(void)
2085 ret
= rhashtable_init(&gl_hash_table
, &ht_parms
);
2089 glock_workqueue
= alloc_workqueue("glock_workqueue", WQ_MEM_RECLAIM
|
2090 WQ_HIGHPRI
| WQ_FREEZABLE
, 0);
2091 if (!glock_workqueue
) {
2092 rhashtable_destroy(&gl_hash_table
);
2095 gfs2_delete_workqueue
= alloc_workqueue("delete_workqueue",
2096 WQ_MEM_RECLAIM
| WQ_FREEZABLE
,
2098 if (!gfs2_delete_workqueue
) {
2099 destroy_workqueue(glock_workqueue
);
2100 rhashtable_destroy(&gl_hash_table
);
2104 ret
= register_shrinker(&glock_shrinker
);
2106 destroy_workqueue(gfs2_delete_workqueue
);
2107 destroy_workqueue(glock_workqueue
);
2108 rhashtable_destroy(&gl_hash_table
);
2112 for (i
= 0; i
< GLOCK_WAIT_TABLE_SIZE
; i
++)
2113 init_waitqueue_head(glock_wait_table
+ i
);
2118 void gfs2_glock_exit(void)
2120 unregister_shrinker(&glock_shrinker
);
2121 rhashtable_destroy(&gl_hash_table
);
2122 destroy_workqueue(glock_workqueue
);
2123 destroy_workqueue(gfs2_delete_workqueue
);
2126 static void gfs2_glock_iter_next(struct gfs2_glock_iter
*gi
, loff_t n
)
2128 struct gfs2_glock
*gl
= gi
->gl
;
2133 if (!lockref_put_not_zero(&gl
->gl_lockref
))
2134 gfs2_glock_queue_put(gl
);
2137 gl
= rhashtable_walk_next(&gi
->hti
);
2138 if (IS_ERR_OR_NULL(gl
)) {
2139 if (gl
== ERR_PTR(-EAGAIN
)) {
2146 if (gl
->gl_name
.ln_sbd
!= gi
->sdp
)
2149 if (!lockref_get_not_dead(&gl
->gl_lockref
))
2153 if (__lockref_is_dead(&gl
->gl_lockref
))
2161 static void *gfs2_glock_seq_start(struct seq_file
*seq
, loff_t
*pos
)
2164 struct gfs2_glock_iter
*gi
= seq
->private;
2168 * We can either stay where we are, skip to the next hash table
2169 * entry, or start from the beginning.
2171 if (*pos
< gi
->last_pos
) {
2172 rhashtable_walk_exit(&gi
->hti
);
2173 rhashtable_walk_enter(&gl_hash_table
, &gi
->hti
);
2176 n
= *pos
- gi
->last_pos
;
2179 rhashtable_walk_start(&gi
->hti
);
2181 gfs2_glock_iter_next(gi
, n
);
2182 gi
->last_pos
= *pos
;
2186 static void *gfs2_glock_seq_next(struct seq_file
*seq
, void *iter_ptr
,
2189 struct gfs2_glock_iter
*gi
= seq
->private;
2192 gi
->last_pos
= *pos
;
2193 gfs2_glock_iter_next(gi
, 1);
2197 static void gfs2_glock_seq_stop(struct seq_file
*seq
, void *iter_ptr
)
2200 struct gfs2_glock_iter
*gi
= seq
->private;
2202 rhashtable_walk_stop(&gi
->hti
);
2205 static int gfs2_glock_seq_show(struct seq_file
*seq
, void *iter_ptr
)
2207 dump_glock(seq
, iter_ptr
, false);
2211 static void *gfs2_sbstats_seq_start(struct seq_file
*seq
, loff_t
*pos
)
2214 if (*pos
>= GFS2_NR_SBSTATS
)
2219 static void *gfs2_sbstats_seq_next(struct seq_file
*seq
, void *iter_ptr
,
2223 if (*pos
>= GFS2_NR_SBSTATS
)
2228 static void gfs2_sbstats_seq_stop(struct seq_file
*seq
, void *iter_ptr
)
2233 static const struct seq_operations gfs2_glock_seq_ops
= {
2234 .start
= gfs2_glock_seq_start
,
2235 .next
= gfs2_glock_seq_next
,
2236 .stop
= gfs2_glock_seq_stop
,
2237 .show
= gfs2_glock_seq_show
,
2240 static const struct seq_operations gfs2_glstats_seq_ops
= {
2241 .start
= gfs2_glock_seq_start
,
2242 .next
= gfs2_glock_seq_next
,
2243 .stop
= gfs2_glock_seq_stop
,
2244 .show
= gfs2_glstats_seq_show
,
2247 static const struct seq_operations gfs2_sbstats_seq_ops
= {
2248 .start
= gfs2_sbstats_seq_start
,
2249 .next
= gfs2_sbstats_seq_next
,
2250 .stop
= gfs2_sbstats_seq_stop
,
2251 .show
= gfs2_sbstats_seq_show
,
2254 #define GFS2_SEQ_GOODSIZE min(PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER, 65536UL)
2256 static int __gfs2_glocks_open(struct inode
*inode
, struct file
*file
,
2257 const struct seq_operations
*ops
)
2259 int ret
= seq_open_private(file
, ops
, sizeof(struct gfs2_glock_iter
));
2261 struct seq_file
*seq
= file
->private_data
;
2262 struct gfs2_glock_iter
*gi
= seq
->private;
2264 gi
->sdp
= inode
->i_private
;
2265 seq
->buf
= kmalloc(GFS2_SEQ_GOODSIZE
, GFP_KERNEL
| __GFP_NOWARN
);
2267 seq
->size
= GFS2_SEQ_GOODSIZE
;
2269 * Initially, we are "before" the first hash table entry; the
2270 * first call to rhashtable_walk_next gets us the first entry.
2274 rhashtable_walk_enter(&gl_hash_table
, &gi
->hti
);
2279 static int gfs2_glocks_open(struct inode
*inode
, struct file
*file
)
2281 return __gfs2_glocks_open(inode
, file
, &gfs2_glock_seq_ops
);
2284 static int gfs2_glocks_release(struct inode
*inode
, struct file
*file
)
2286 struct seq_file
*seq
= file
->private_data
;
2287 struct gfs2_glock_iter
*gi
= seq
->private;
2290 gfs2_glock_put(gi
->gl
);
2291 rhashtable_walk_exit(&gi
->hti
);
2292 return seq_release_private(inode
, file
);
2295 static int gfs2_glstats_open(struct inode
*inode
, struct file
*file
)
2297 return __gfs2_glocks_open(inode
, file
, &gfs2_glstats_seq_ops
);
2300 static int gfs2_sbstats_open(struct inode
*inode
, struct file
*file
)
2302 int ret
= seq_open(file
, &gfs2_sbstats_seq_ops
);
2304 struct seq_file
*seq
= file
->private_data
;
2305 seq
->private = inode
->i_private
; /* sdp */
2310 static const struct file_operations gfs2_glocks_fops
= {
2311 .owner
= THIS_MODULE
,
2312 .open
= gfs2_glocks_open
,
2314 .llseek
= seq_lseek
,
2315 .release
= gfs2_glocks_release
,
2318 static const struct file_operations gfs2_glstats_fops
= {
2319 .owner
= THIS_MODULE
,
2320 .open
= gfs2_glstats_open
,
2322 .llseek
= seq_lseek
,
2323 .release
= gfs2_glocks_release
,
2326 static const struct file_operations gfs2_sbstats_fops
= {
2327 .owner
= THIS_MODULE
,
2328 .open
= gfs2_sbstats_open
,
2330 .llseek
= seq_lseek
,
2331 .release
= seq_release
,
2334 void gfs2_create_debugfs_file(struct gfs2_sbd
*sdp
)
2336 sdp
->debugfs_dir
= debugfs_create_dir(sdp
->sd_table_name
, gfs2_root
);
2338 debugfs_create_file("glocks", S_IFREG
| S_IRUGO
, sdp
->debugfs_dir
, sdp
,
2341 debugfs_create_file("glstats", S_IFREG
| S_IRUGO
, sdp
->debugfs_dir
, sdp
,
2342 &gfs2_glstats_fops
);
2344 debugfs_create_file("sbstats", S_IFREG
| S_IRUGO
, sdp
->debugfs_dir
, sdp
,
2345 &gfs2_sbstats_fops
);
2348 void gfs2_delete_debugfs_file(struct gfs2_sbd
*sdp
)
2350 debugfs_remove_recursive(sdp
->debugfs_dir
);
2351 sdp
->debugfs_dir
= NULL
;
2354 void gfs2_register_debugfs(void)
2356 gfs2_root
= debugfs_create_dir("gfs2", NULL
);
2359 void gfs2_unregister_debugfs(void)
2361 debugfs_remove(gfs2_root
);