[GFS2] flocks from same process trip kernel BUG at fs/gfs2/glock.c:1118!
[safe/jmp/linux-2.6] / fs / gfs2 / glock.c
1 /*
2  * Copyright (C) Sistina Software, Inc.  1997-2003 All rights reserved.
3  * Copyright (C) 2004-2006 Red Hat, Inc.  All rights reserved.
4  *
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.
8  */
9
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 <linux/wait.h>
23 #include <linux/module.h>
24 #include <linux/rwsem.h>
25 #include <asm/uaccess.h>
26 #include <linux/seq_file.h>
27 #include <linux/debugfs.h>
28 #include <linux/kthread.h>
29 #include <linux/freezer.h>
30 #include <linux/workqueue.h>
31 #include <linux/jiffies.h>
32
33 #include "gfs2.h"
34 #include "incore.h"
35 #include "glock.h"
36 #include "glops.h"
37 #include "inode.h"
38 #include "lm.h"
39 #include "lops.h"
40 #include "meta_io.h"
41 #include "quota.h"
42 #include "super.h"
43 #include "util.h"
44
45 struct gfs2_gl_hash_bucket {
46         struct hlist_head hb_list;
47 };
48
49 struct glock_iter {
50         int hash;                     /* hash bucket index         */
51         struct gfs2_sbd *sdp;         /* incore superblock         */
52         struct gfs2_glock *gl;        /* current glock struct      */
53         struct seq_file *seq;         /* sequence file for debugfs */
54         char string[512];             /* scratch space             */
55 };
56
57 typedef void (*glock_examiner) (struct gfs2_glock * gl);
58
59 static int gfs2_dump_lockstate(struct gfs2_sbd *sdp);
60 static int dump_glock(struct glock_iter *gi, struct gfs2_glock *gl);
61 static void gfs2_glock_xmote_th(struct gfs2_glock *gl, struct gfs2_holder *gh);
62 static void gfs2_glock_drop_th(struct gfs2_glock *gl);
63 static void run_queue(struct gfs2_glock *gl);
64
65 static DECLARE_RWSEM(gfs2_umount_flush_sem);
66 static struct dentry *gfs2_root;
67 static struct task_struct *scand_process;
68 static unsigned int scand_secs = 5;
69 static struct workqueue_struct *glock_workqueue;
70
71 #define GFS2_GL_HASH_SHIFT      15
72 #define GFS2_GL_HASH_SIZE       (1 << GFS2_GL_HASH_SHIFT)
73 #define GFS2_GL_HASH_MASK       (GFS2_GL_HASH_SIZE - 1)
74
75 static struct gfs2_gl_hash_bucket gl_hash_table[GFS2_GL_HASH_SIZE];
76 static struct dentry *gfs2_root;
77
78 /*
79  * Despite what you might think, the numbers below are not arbitrary :-)
80  * They are taken from the ipv4 routing hash code, which is well tested
81  * and thus should be nearly optimal. Later on we might tweek the numbers
82  * but for now this should be fine.
83  *
84  * The reason for putting the locks in a separate array from the list heads
85  * is that we can have fewer locks than list heads and save memory. We use
86  * the same hash function for both, but with a different hash mask.
87  */
88 #if defined(CONFIG_SMP) || defined(CONFIG_DEBUG_SPINLOCK) || \
89         defined(CONFIG_PROVE_LOCKING)
90
91 #ifdef CONFIG_LOCKDEP
92 # define GL_HASH_LOCK_SZ        256
93 #else
94 # if NR_CPUS >= 32
95 #  define GL_HASH_LOCK_SZ       4096
96 # elif NR_CPUS >= 16
97 #  define GL_HASH_LOCK_SZ       2048
98 # elif NR_CPUS >= 8
99 #  define GL_HASH_LOCK_SZ       1024
100 # elif NR_CPUS >= 4
101 #  define GL_HASH_LOCK_SZ       512
102 # else
103 #  define GL_HASH_LOCK_SZ       256
104 # endif
105 #endif
106
107 /* We never want more locks than chains */
108 #if GFS2_GL_HASH_SIZE < GL_HASH_LOCK_SZ
109 # undef GL_HASH_LOCK_SZ
110 # define GL_HASH_LOCK_SZ GFS2_GL_HASH_SIZE
111 #endif
112
113 static rwlock_t gl_hash_locks[GL_HASH_LOCK_SZ];
114
115 static inline rwlock_t *gl_lock_addr(unsigned int x)
116 {
117         return &gl_hash_locks[x & (GL_HASH_LOCK_SZ-1)];
118 }
119 #else /* not SMP, so no spinlocks required */
120 static inline rwlock_t *gl_lock_addr(unsigned int x)
121 {
122         return NULL;
123 }
124 #endif
125
126 /**
127  * relaxed_state_ok - is a requested lock compatible with the current lock mode?
128  * @actual: the current state of the lock
129  * @requested: the lock state that was requested by the caller
130  * @flags: the modifier flags passed in by the caller
131  *
132  * Returns: 1 if the locks are compatible, 0 otherwise
133  */
134
135 static inline int relaxed_state_ok(unsigned int actual, unsigned requested,
136                                    int flags)
137 {
138         if (actual == requested)
139                 return 1;
140
141         if (flags & GL_EXACT)
142                 return 0;
143
144         if (actual == LM_ST_EXCLUSIVE && requested == LM_ST_SHARED)
145                 return 1;
146
147         if (actual != LM_ST_UNLOCKED && (flags & LM_FLAG_ANY))
148                 return 1;
149
150         return 0;
151 }
152
153 /**
154  * gl_hash() - Turn glock number into hash bucket number
155  * @lock: The glock number
156  *
157  * Returns: The number of the corresponding hash bucket
158  */
159
160 static unsigned int gl_hash(const struct gfs2_sbd *sdp,
161                             const struct lm_lockname *name)
162 {
163         unsigned int h;
164
165         h = jhash(&name->ln_number, sizeof(u64), 0);
166         h = jhash(&name->ln_type, sizeof(unsigned int), h);
167         h = jhash(&sdp, sizeof(struct gfs2_sbd *), h);
168         h &= GFS2_GL_HASH_MASK;
169
170         return h;
171 }
172
173 /**
174  * glock_free() - Perform a few checks and then release struct gfs2_glock
175  * @gl: The glock to release
176  *
177  * Also calls lock module to release its internal structure for this glock.
178  *
179  */
180
181 static void glock_free(struct gfs2_glock *gl)
182 {
183         struct gfs2_sbd *sdp = gl->gl_sbd;
184         struct inode *aspace = gl->gl_aspace;
185
186         gfs2_lm_put_lock(sdp, gl->gl_lock);
187
188         if (aspace)
189                 gfs2_aspace_put(aspace);
190
191         kmem_cache_free(gfs2_glock_cachep, gl);
192 }
193
194 /**
195  * gfs2_glock_hold() - increment reference count on glock
196  * @gl: The glock to hold
197  *
198  */
199
200 void gfs2_glock_hold(struct gfs2_glock *gl)
201 {
202         atomic_inc(&gl->gl_ref);
203 }
204
205 /**
206  * gfs2_glock_put() - Decrement reference count on glock
207  * @gl: The glock to put
208  *
209  */
210
211 int gfs2_glock_put(struct gfs2_glock *gl)
212 {
213         int rv = 0;
214         struct gfs2_sbd *sdp = gl->gl_sbd;
215
216         write_lock(gl_lock_addr(gl->gl_hash));
217         if (atomic_dec_and_test(&gl->gl_ref)) {
218                 hlist_del(&gl->gl_list);
219                 write_unlock(gl_lock_addr(gl->gl_hash));
220                 BUG_ON(spin_is_locked(&gl->gl_spin));
221                 gfs2_assert(sdp, gl->gl_state == LM_ST_UNLOCKED);
222                 gfs2_assert(sdp, list_empty(&gl->gl_reclaim));
223                 gfs2_assert(sdp, list_empty(&gl->gl_holders));
224                 gfs2_assert(sdp, list_empty(&gl->gl_waiters1));
225                 gfs2_assert(sdp, list_empty(&gl->gl_waiters3));
226                 glock_free(gl);
227                 rv = 1;
228                 goto out;
229         }
230         write_unlock(gl_lock_addr(gl->gl_hash));
231 out:
232         return rv;
233 }
234
235 /**
236  * search_bucket() - Find struct gfs2_glock by lock number
237  * @bucket: the bucket to search
238  * @name: The lock name
239  *
240  * Returns: NULL, or the struct gfs2_glock with the requested number
241  */
242
243 static struct gfs2_glock *search_bucket(unsigned int hash,
244                                         const struct gfs2_sbd *sdp,
245                                         const struct lm_lockname *name)
246 {
247         struct gfs2_glock *gl;
248         struct hlist_node *h;
249
250         hlist_for_each_entry(gl, h, &gl_hash_table[hash].hb_list, gl_list) {
251                 if (!lm_name_equal(&gl->gl_name, name))
252                         continue;
253                 if (gl->gl_sbd != sdp)
254                         continue;
255
256                 atomic_inc(&gl->gl_ref);
257
258                 return gl;
259         }
260
261         return NULL;
262 }
263
264 /**
265  * gfs2_glock_find() - Find glock by lock number
266  * @sdp: The GFS2 superblock
267  * @name: The lock name
268  *
269  * Returns: NULL, or the struct gfs2_glock with the requested number
270  */
271
272 static struct gfs2_glock *gfs2_glock_find(const struct gfs2_sbd *sdp,
273                                           const struct lm_lockname *name)
274 {
275         unsigned int hash = gl_hash(sdp, name);
276         struct gfs2_glock *gl;
277
278         read_lock(gl_lock_addr(hash));
279         gl = search_bucket(hash, sdp, name);
280         read_unlock(gl_lock_addr(hash));
281
282         return gl;
283 }
284
285 static void glock_work_func(struct work_struct *work)
286 {
287         struct gfs2_glock *gl = container_of(work, struct gfs2_glock, gl_work.work);
288
289         spin_lock(&gl->gl_spin);
290         if (test_and_clear_bit(GLF_PENDING_DEMOTE, &gl->gl_flags))
291                 set_bit(GLF_DEMOTE, &gl->gl_flags);
292         run_queue(gl);
293         spin_unlock(&gl->gl_spin);
294         gfs2_glock_put(gl);
295 }
296
297 /**
298  * gfs2_glock_get() - Get a glock, or create one if one doesn't exist
299  * @sdp: The GFS2 superblock
300  * @number: the lock number
301  * @glops: The glock_operations to use
302  * @create: If 0, don't create the glock if it doesn't exist
303  * @glp: the glock is returned here
304  *
305  * This does not lock a glock, just finds/creates structures for one.
306  *
307  * Returns: errno
308  */
309
310 int gfs2_glock_get(struct gfs2_sbd *sdp, u64 number,
311                    const struct gfs2_glock_operations *glops, int create,
312                    struct gfs2_glock **glp)
313 {
314         struct lm_lockname name = { .ln_number = number, .ln_type = glops->go_type };
315         struct gfs2_glock *gl, *tmp;
316         unsigned int hash = gl_hash(sdp, &name);
317         int error;
318
319         read_lock(gl_lock_addr(hash));
320         gl = search_bucket(hash, sdp, &name);
321         read_unlock(gl_lock_addr(hash));
322
323         if (gl || !create) {
324                 *glp = gl;
325                 return 0;
326         }
327
328         gl = kmem_cache_alloc(gfs2_glock_cachep, GFP_KERNEL);
329         if (!gl)
330                 return -ENOMEM;
331
332         gl->gl_flags = 0;
333         gl->gl_name = name;
334         atomic_set(&gl->gl_ref, 1);
335         gl->gl_state = LM_ST_UNLOCKED;
336         gl->gl_demote_state = LM_ST_EXCLUSIVE;
337         gl->gl_hash = hash;
338         gl->gl_owner_pid = 0;
339         gl->gl_ip = 0;
340         gl->gl_ops = glops;
341         gl->gl_req_gh = NULL;
342         gl->gl_req_bh = NULL;
343         gl->gl_vn = 0;
344         gl->gl_stamp = jiffies;
345         gl->gl_tchange = jiffies;
346         gl->gl_object = NULL;
347         gl->gl_sbd = sdp;
348         gl->gl_aspace = NULL;
349         lops_init_le(&gl->gl_le, &gfs2_glock_lops);
350         INIT_DELAYED_WORK(&gl->gl_work, glock_work_func);
351
352         /* If this glock protects actual on-disk data or metadata blocks,
353            create a VFS inode to manage the pages/buffers holding them. */
354         if (glops == &gfs2_inode_glops || glops == &gfs2_rgrp_glops) {
355                 gl->gl_aspace = gfs2_aspace_get(sdp);
356                 if (!gl->gl_aspace) {
357                         error = -ENOMEM;
358                         goto fail;
359                 }
360         }
361
362         error = gfs2_lm_get_lock(sdp, &name, &gl->gl_lock);
363         if (error)
364                 goto fail_aspace;
365
366         write_lock(gl_lock_addr(hash));
367         tmp = search_bucket(hash, sdp, &name);
368         if (tmp) {
369                 write_unlock(gl_lock_addr(hash));
370                 glock_free(gl);
371                 gl = tmp;
372         } else {
373                 hlist_add_head(&gl->gl_list, &gl_hash_table[hash].hb_list);
374                 write_unlock(gl_lock_addr(hash));
375         }
376
377         *glp = gl;
378
379         return 0;
380
381 fail_aspace:
382         if (gl->gl_aspace)
383                 gfs2_aspace_put(gl->gl_aspace);
384 fail:
385         kmem_cache_free(gfs2_glock_cachep, gl);
386         return error;
387 }
388
389 /**
390  * gfs2_holder_init - initialize a struct gfs2_holder in the default way
391  * @gl: the glock
392  * @state: the state we're requesting
393  * @flags: the modifier flags
394  * @gh: the holder structure
395  *
396  */
397
398 void gfs2_holder_init(struct gfs2_glock *gl, unsigned int state, unsigned flags,
399                       struct gfs2_holder *gh)
400 {
401         INIT_LIST_HEAD(&gh->gh_list);
402         gh->gh_gl = gl;
403         gh->gh_ip = (unsigned long)__builtin_return_address(0);
404         gh->gh_owner_pid = current->pid;
405         gh->gh_state = state;
406         gh->gh_flags = flags;
407         gh->gh_error = 0;
408         gh->gh_iflags = 0;
409         gfs2_glock_hold(gl);
410 }
411
412 /**
413  * gfs2_holder_reinit - reinitialize a struct gfs2_holder so we can requeue it
414  * @state: the state we're requesting
415  * @flags: the modifier flags
416  * @gh: the holder structure
417  *
418  * Don't mess with the glock.
419  *
420  */
421
422 void gfs2_holder_reinit(unsigned int state, unsigned flags, struct gfs2_holder *gh)
423 {
424         gh->gh_state = state;
425         gh->gh_flags = flags;
426         gh->gh_iflags = 0;
427         gh->gh_ip = (unsigned long)__builtin_return_address(0);
428 }
429
430 /**
431  * gfs2_holder_uninit - uninitialize a holder structure (drop glock reference)
432  * @gh: the holder structure
433  *
434  */
435
436 void gfs2_holder_uninit(struct gfs2_holder *gh)
437 {
438         gfs2_glock_put(gh->gh_gl);
439         gh->gh_gl = NULL;
440         gh->gh_ip = 0;
441 }
442
443 static void gfs2_holder_wake(struct gfs2_holder *gh)
444 {
445         clear_bit(HIF_WAIT, &gh->gh_iflags);
446         smp_mb__after_clear_bit();
447         wake_up_bit(&gh->gh_iflags, HIF_WAIT);
448 }
449
450 static int just_schedule(void *word)
451 {
452         schedule();
453         return 0;
454 }
455
456 static void wait_on_holder(struct gfs2_holder *gh)
457 {
458         might_sleep();
459         wait_on_bit(&gh->gh_iflags, HIF_WAIT, just_schedule, TASK_UNINTERRUPTIBLE);
460 }
461
462 static void gfs2_demote_wake(struct gfs2_glock *gl)
463 {
464         BUG_ON(!spin_is_locked(&gl->gl_spin));
465         gl->gl_demote_state = LM_ST_EXCLUSIVE;
466         clear_bit(GLF_DEMOTE, &gl->gl_flags);
467         smp_mb__after_clear_bit();
468         wake_up_bit(&gl->gl_flags, GLF_DEMOTE);
469 }
470
471 static void wait_on_demote(struct gfs2_glock *gl)
472 {
473         might_sleep();
474         wait_on_bit(&gl->gl_flags, GLF_DEMOTE, just_schedule, TASK_UNINTERRUPTIBLE);
475 }
476
477 /**
478  * rq_mutex - process a mutex request in the queue
479  * @gh: the glock holder
480  *
481  * Returns: 1 if the queue is blocked
482  */
483
484 static int rq_mutex(struct gfs2_holder *gh)
485 {
486         struct gfs2_glock *gl = gh->gh_gl;
487
488         list_del_init(&gh->gh_list);
489         /*  gh->gh_error never examined.  */
490         set_bit(GLF_LOCK, &gl->gl_flags);
491         clear_bit(HIF_WAIT, &gh->gh_iflags);
492         smp_mb();
493         wake_up_bit(&gh->gh_iflags, HIF_WAIT);
494
495         return 1;
496 }
497
498 /**
499  * rq_promote - process a promote request in the queue
500  * @gh: the glock holder
501  *
502  * Acquire a new inter-node lock, or change a lock state to more restrictive.
503  *
504  * Returns: 1 if the queue is blocked
505  */
506
507 static int rq_promote(struct gfs2_holder *gh)
508 {
509         struct gfs2_glock *gl = gh->gh_gl;
510         struct gfs2_sbd *sdp = gl->gl_sbd;
511
512         if (!relaxed_state_ok(gl->gl_state, gh->gh_state, gh->gh_flags)) {
513                 if (list_empty(&gl->gl_holders)) {
514                         gl->gl_req_gh = gh;
515                         set_bit(GLF_LOCK, &gl->gl_flags);
516                         spin_unlock(&gl->gl_spin);
517
518                         if (atomic_read(&sdp->sd_reclaim_count) >
519                             gfs2_tune_get(sdp, gt_reclaim_limit) &&
520                             !(gh->gh_flags & LM_FLAG_PRIORITY)) {
521                                 gfs2_reclaim_glock(sdp);
522                                 gfs2_reclaim_glock(sdp);
523                         }
524
525                         gfs2_glock_xmote_th(gh->gh_gl, gh);
526                         spin_lock(&gl->gl_spin);
527                 }
528                 return 1;
529         }
530
531         if (list_empty(&gl->gl_holders)) {
532                 set_bit(HIF_FIRST, &gh->gh_iflags);
533                 set_bit(GLF_LOCK, &gl->gl_flags);
534         } else {
535                 struct gfs2_holder *next_gh;
536                 if (gh->gh_state == LM_ST_EXCLUSIVE)
537                         return 1;
538                 next_gh = list_entry(gl->gl_holders.next, struct gfs2_holder,
539                                      gh_list);
540                 if (next_gh->gh_state == LM_ST_EXCLUSIVE)
541                          return 1;
542         }
543
544         list_move_tail(&gh->gh_list, &gl->gl_holders);
545         gh->gh_error = 0;
546         set_bit(HIF_HOLDER, &gh->gh_iflags);
547
548         gfs2_holder_wake(gh);
549
550         return 0;
551 }
552
553 /**
554  * rq_demote - process a demote request in the queue
555  * @gh: the glock holder
556  *
557  * Returns: 1 if the queue is blocked
558  */
559
560 static int rq_demote(struct gfs2_glock *gl)
561 {
562         if (!list_empty(&gl->gl_holders))
563                 return 1;
564
565         if (gl->gl_state == gl->gl_demote_state ||
566             gl->gl_state == LM_ST_UNLOCKED) {
567                 gfs2_demote_wake(gl);
568                 return 0;
569         }
570         set_bit(GLF_LOCK, &gl->gl_flags);
571         if (gl->gl_demote_state == LM_ST_UNLOCKED ||
572             gl->gl_state != LM_ST_EXCLUSIVE) {
573                 spin_unlock(&gl->gl_spin);
574                 gfs2_glock_drop_th(gl);
575         } else {
576                 spin_unlock(&gl->gl_spin);
577                 gfs2_glock_xmote_th(gl, NULL);
578         }
579         spin_lock(&gl->gl_spin);
580
581         return 0;
582 }
583
584 /**
585  * run_queue - process holder structures on a glock
586  * @gl: the glock
587  *
588  */
589 static void run_queue(struct gfs2_glock *gl)
590 {
591         struct gfs2_holder *gh;
592         int blocked = 1;
593
594         for (;;) {
595                 if (test_bit(GLF_LOCK, &gl->gl_flags))
596                         break;
597
598                 if (!list_empty(&gl->gl_waiters1)) {
599                         gh = list_entry(gl->gl_waiters1.next,
600                                         struct gfs2_holder, gh_list);
601
602                         if (test_bit(HIF_MUTEX, &gh->gh_iflags))
603                                 blocked = rq_mutex(gh);
604                         else
605                                 gfs2_assert_warn(gl->gl_sbd, 0);
606
607                 } else if (test_bit(GLF_DEMOTE, &gl->gl_flags)) {
608                         blocked = rq_demote(gl);
609                 } else if (!list_empty(&gl->gl_waiters3)) {
610                         gh = list_entry(gl->gl_waiters3.next,
611                                         struct gfs2_holder, gh_list);
612
613                         if (test_bit(HIF_PROMOTE, &gh->gh_iflags))
614                                 blocked = rq_promote(gh);
615                         else
616                                 gfs2_assert_warn(gl->gl_sbd, 0);
617
618                 } else
619                         break;
620
621                 if (blocked)
622                         break;
623         }
624 }
625
626 /**
627  * gfs2_glmutex_lock - acquire a local lock on a glock
628  * @gl: the glock
629  *
630  * Gives caller exclusive access to manipulate a glock structure.
631  */
632
633 static void gfs2_glmutex_lock(struct gfs2_glock *gl)
634 {
635         struct gfs2_holder gh;
636
637         gfs2_holder_init(gl, 0, 0, &gh);
638         set_bit(HIF_MUTEX, &gh.gh_iflags);
639         if (test_and_set_bit(HIF_WAIT, &gh.gh_iflags))
640                 BUG();
641
642         spin_lock(&gl->gl_spin);
643         if (test_and_set_bit(GLF_LOCK, &gl->gl_flags)) {
644                 list_add_tail(&gh.gh_list, &gl->gl_waiters1);
645         } else {
646                 gl->gl_owner_pid = current->pid;
647                 gl->gl_ip = (unsigned long)__builtin_return_address(0);
648                 clear_bit(HIF_WAIT, &gh.gh_iflags);
649                 smp_mb();
650                 wake_up_bit(&gh.gh_iflags, HIF_WAIT);
651         }
652         spin_unlock(&gl->gl_spin);
653
654         wait_on_holder(&gh);
655         gfs2_holder_uninit(&gh);
656 }
657
658 /**
659  * gfs2_glmutex_trylock - try to acquire a local lock on a glock
660  * @gl: the glock
661  *
662  * Returns: 1 if the glock is acquired
663  */
664
665 static int gfs2_glmutex_trylock(struct gfs2_glock *gl)
666 {
667         int acquired = 1;
668
669         spin_lock(&gl->gl_spin);
670         if (test_and_set_bit(GLF_LOCK, &gl->gl_flags)) {
671                 acquired = 0;
672         } else {
673                 gl->gl_owner_pid = current->pid;
674                 gl->gl_ip = (unsigned long)__builtin_return_address(0);
675         }
676         spin_unlock(&gl->gl_spin);
677
678         return acquired;
679 }
680
681 /**
682  * gfs2_glmutex_unlock - release a local lock on a glock
683  * @gl: the glock
684  *
685  */
686
687 static void gfs2_glmutex_unlock(struct gfs2_glock *gl)
688 {
689         spin_lock(&gl->gl_spin);
690         clear_bit(GLF_LOCK, &gl->gl_flags);
691         gl->gl_owner_pid = 0;
692         gl->gl_ip = 0;
693         run_queue(gl);
694         BUG_ON(!spin_is_locked(&gl->gl_spin));
695         spin_unlock(&gl->gl_spin);
696 }
697
698 /**
699  * handle_callback - process a demote request
700  * @gl: the glock
701  * @state: the state the caller wants us to change to
702  *
703  * There are only two requests that we are going to see in actual
704  * practise: LM_ST_SHARED and LM_ST_UNLOCKED
705  */
706
707 static void handle_callback(struct gfs2_glock *gl, unsigned int state,
708                             int remote, unsigned long delay)
709 {
710         int bit = delay ? GLF_PENDING_DEMOTE : GLF_DEMOTE;
711
712         spin_lock(&gl->gl_spin);
713         set_bit(bit, &gl->gl_flags);
714         if (gl->gl_demote_state == LM_ST_EXCLUSIVE) {
715                 gl->gl_demote_state = state;
716                 gl->gl_demote_time = jiffies;
717                 if (remote && gl->gl_ops->go_type == LM_TYPE_IOPEN &&
718                     gl->gl_object) {
719                         struct inode *inode = igrab(gl->gl_object);
720                         spin_unlock(&gl->gl_spin);
721                         if (inode) {
722                                 d_prune_aliases(inode);
723                                 iput(inode);
724                         }
725                         return;
726                 }
727         } else if (gl->gl_demote_state != LM_ST_UNLOCKED &&
728                         gl->gl_demote_state != state) {
729                 gl->gl_demote_state = LM_ST_UNLOCKED;
730         }
731         spin_unlock(&gl->gl_spin);
732 }
733
734 /**
735  * state_change - record that the glock is now in a different state
736  * @gl: the glock
737  * @new_state the new state
738  *
739  */
740
741 static void state_change(struct gfs2_glock *gl, unsigned int new_state)
742 {
743         int held1, held2;
744
745         held1 = (gl->gl_state != LM_ST_UNLOCKED);
746         held2 = (new_state != LM_ST_UNLOCKED);
747
748         if (held1 != held2) {
749                 if (held2)
750                         gfs2_glock_hold(gl);
751                 else
752                         gfs2_glock_put(gl);
753         }
754
755         gl->gl_state = new_state;
756         gl->gl_tchange = jiffies;
757 }
758
759 /**
760  * xmote_bh - Called after the lock module is done acquiring a lock
761  * @gl: The glock in question
762  * @ret: the int returned from the lock module
763  *
764  */
765
766 static void xmote_bh(struct gfs2_glock *gl, unsigned int ret)
767 {
768         struct gfs2_sbd *sdp = gl->gl_sbd;
769         const struct gfs2_glock_operations *glops = gl->gl_ops;
770         struct gfs2_holder *gh = gl->gl_req_gh;
771         int prev_state = gl->gl_state;
772         int op_done = 1;
773
774         gfs2_assert_warn(sdp, test_bit(GLF_LOCK, &gl->gl_flags));
775         gfs2_assert_warn(sdp, list_empty(&gl->gl_holders));
776         gfs2_assert_warn(sdp, !(ret & LM_OUT_ASYNC));
777
778         state_change(gl, ret & LM_OUT_ST_MASK);
779
780         if (prev_state != LM_ST_UNLOCKED && !(ret & LM_OUT_CACHEABLE)) {
781                 if (glops->go_inval)
782                         glops->go_inval(gl, DIO_METADATA);
783         } else if (gl->gl_state == LM_ST_DEFERRED) {
784                 /* We might not want to do this here.
785                    Look at moving to the inode glops. */
786                 if (glops->go_inval)
787                         glops->go_inval(gl, 0);
788         }
789
790         /*  Deal with each possible exit condition  */
791
792         if (!gh) {
793                 gl->gl_stamp = jiffies;
794                 if (ret & LM_OUT_CANCELED) {
795                         op_done = 0;
796                 } else {
797                         spin_lock(&gl->gl_spin);
798                         if (gl->gl_state != gl->gl_demote_state) {
799                                 gl->gl_req_bh = NULL;
800                                 spin_unlock(&gl->gl_spin);
801                                 gfs2_glock_drop_th(gl);
802                                 gfs2_glock_put(gl);
803                                 return;
804                         }
805                         gfs2_demote_wake(gl);
806                         spin_unlock(&gl->gl_spin);
807                 }
808         } else {
809                 spin_lock(&gl->gl_spin);
810                 list_del_init(&gh->gh_list);
811                 gh->gh_error = -EIO;
812                 if (unlikely(test_bit(SDF_SHUTDOWN, &sdp->sd_flags))) 
813                         goto out;
814                 gh->gh_error = GLR_CANCELED;
815                 if (ret & LM_OUT_CANCELED) 
816                         goto out;
817                 if (relaxed_state_ok(gl->gl_state, gh->gh_state, gh->gh_flags)) {
818                         list_add_tail(&gh->gh_list, &gl->gl_holders);
819                         gh->gh_error = 0;
820                         set_bit(HIF_HOLDER, &gh->gh_iflags);
821                         set_bit(HIF_FIRST, &gh->gh_iflags);
822                         op_done = 0;
823                         goto out;
824                 }
825                 gh->gh_error = GLR_TRYFAILED;
826                 if (gh->gh_flags & (LM_FLAG_TRY | LM_FLAG_TRY_1CB))
827                         goto out;
828                 gh->gh_error = -EINVAL;
829                 if (gfs2_assert_withdraw(sdp, 0) == -1)
830                         fs_err(sdp, "ret = 0x%.8X\n", ret);
831 out:
832                 spin_unlock(&gl->gl_spin);
833         }
834
835         if (glops->go_xmote_bh)
836                 glops->go_xmote_bh(gl);
837
838         if (op_done) {
839                 spin_lock(&gl->gl_spin);
840                 gl->gl_req_gh = NULL;
841                 gl->gl_req_bh = NULL;
842                 clear_bit(GLF_LOCK, &gl->gl_flags);
843                 spin_unlock(&gl->gl_spin);
844         }
845
846         gfs2_glock_put(gl);
847
848         if (gh)
849                 gfs2_holder_wake(gh);
850 }
851
852 /**
853  * gfs2_glock_xmote_th - Call into the lock module to acquire or change a glock
854  * @gl: The glock in question
855  * @state: the requested state
856  * @flags: modifier flags to the lock call
857  *
858  */
859
860 static void gfs2_glock_xmote_th(struct gfs2_glock *gl, struct gfs2_holder *gh)
861 {
862         struct gfs2_sbd *sdp = gl->gl_sbd;
863         int flags = gh ? gh->gh_flags : 0;
864         unsigned state = gh ? gh->gh_state : gl->gl_demote_state;
865         const struct gfs2_glock_operations *glops = gl->gl_ops;
866         int lck_flags = flags & (LM_FLAG_TRY | LM_FLAG_TRY_1CB |
867                                  LM_FLAG_NOEXP | LM_FLAG_ANY |
868                                  LM_FLAG_PRIORITY);
869         unsigned int lck_ret;
870
871         if (glops->go_xmote_th)
872                 glops->go_xmote_th(gl);
873
874         gfs2_assert_warn(sdp, test_bit(GLF_LOCK, &gl->gl_flags));
875         gfs2_assert_warn(sdp, list_empty(&gl->gl_holders));
876         gfs2_assert_warn(sdp, state != LM_ST_UNLOCKED);
877         gfs2_assert_warn(sdp, state != gl->gl_state);
878
879         gfs2_glock_hold(gl);
880         gl->gl_req_bh = xmote_bh;
881
882         lck_ret = gfs2_lm_lock(sdp, gl->gl_lock, gl->gl_state, state, lck_flags);
883
884         if (gfs2_assert_withdraw(sdp, !(lck_ret & LM_OUT_ERROR)))
885                 return;
886
887         if (lck_ret & LM_OUT_ASYNC)
888                 gfs2_assert_warn(sdp, lck_ret == LM_OUT_ASYNC);
889         else
890                 xmote_bh(gl, lck_ret);
891 }
892
893 /**
894  * drop_bh - Called after a lock module unlock completes
895  * @gl: the glock
896  * @ret: the return status
897  *
898  * Doesn't wake up the process waiting on the struct gfs2_holder (if any)
899  * Doesn't drop the reference on the glock the top half took out
900  *
901  */
902
903 static void drop_bh(struct gfs2_glock *gl, unsigned int ret)
904 {
905         struct gfs2_sbd *sdp = gl->gl_sbd;
906         const struct gfs2_glock_operations *glops = gl->gl_ops;
907         struct gfs2_holder *gh = gl->gl_req_gh;
908
909         gfs2_assert_warn(sdp, test_bit(GLF_LOCK, &gl->gl_flags));
910         gfs2_assert_warn(sdp, list_empty(&gl->gl_holders));
911         gfs2_assert_warn(sdp, !ret);
912
913         state_change(gl, LM_ST_UNLOCKED);
914
915         if (glops->go_inval)
916                 glops->go_inval(gl, DIO_METADATA);
917
918         if (gh) {
919                 spin_lock(&gl->gl_spin);
920                 list_del_init(&gh->gh_list);
921                 gh->gh_error = 0;
922                 spin_unlock(&gl->gl_spin);
923         }
924
925         spin_lock(&gl->gl_spin);
926         gfs2_demote_wake(gl);
927         gl->gl_req_gh = NULL;
928         gl->gl_req_bh = NULL;
929         clear_bit(GLF_LOCK, &gl->gl_flags);
930         spin_unlock(&gl->gl_spin);
931
932         gfs2_glock_put(gl);
933
934         if (gh)
935                 gfs2_holder_wake(gh);
936 }
937
938 /**
939  * gfs2_glock_drop_th - call into the lock module to unlock a lock
940  * @gl: the glock
941  *
942  */
943
944 static void gfs2_glock_drop_th(struct gfs2_glock *gl)
945 {
946         struct gfs2_sbd *sdp = gl->gl_sbd;
947         const struct gfs2_glock_operations *glops = gl->gl_ops;
948         unsigned int ret;
949
950         if (glops->go_drop_th)
951                 glops->go_drop_th(gl);
952
953         gfs2_assert_warn(sdp, test_bit(GLF_LOCK, &gl->gl_flags));
954         gfs2_assert_warn(sdp, list_empty(&gl->gl_holders));
955         gfs2_assert_warn(sdp, gl->gl_state != LM_ST_UNLOCKED);
956
957         gfs2_glock_hold(gl);
958         gl->gl_req_bh = drop_bh;
959
960         ret = gfs2_lm_unlock(sdp, gl->gl_lock, gl->gl_state);
961
962         if (gfs2_assert_withdraw(sdp, !(ret & LM_OUT_ERROR)))
963                 return;
964
965         if (!ret)
966                 drop_bh(gl, ret);
967         else
968                 gfs2_assert_warn(sdp, ret == LM_OUT_ASYNC);
969 }
970
971 /**
972  * do_cancels - cancel requests for locks stuck waiting on an expire flag
973  * @gh: the LM_FLAG_PRIORITY holder waiting to acquire the lock
974  *
975  * Don't cancel GL_NOCANCEL requests.
976  */
977
978 static void do_cancels(struct gfs2_holder *gh)
979 {
980         struct gfs2_glock *gl = gh->gh_gl;
981
982         spin_lock(&gl->gl_spin);
983
984         while (gl->gl_req_gh != gh &&
985                !test_bit(HIF_HOLDER, &gh->gh_iflags) &&
986                !list_empty(&gh->gh_list)) {
987                 if (gl->gl_req_bh && !(gl->gl_req_gh &&
988                                      (gl->gl_req_gh->gh_flags & GL_NOCANCEL))) {
989                         spin_unlock(&gl->gl_spin);
990                         gfs2_lm_cancel(gl->gl_sbd, gl->gl_lock);
991                         msleep(100);
992                         spin_lock(&gl->gl_spin);
993                 } else {
994                         spin_unlock(&gl->gl_spin);
995                         msleep(100);
996                         spin_lock(&gl->gl_spin);
997                 }
998         }
999
1000         spin_unlock(&gl->gl_spin);
1001 }
1002
1003 /**
1004  * glock_wait_internal - wait on a glock acquisition
1005  * @gh: the glock holder
1006  *
1007  * Returns: 0 on success
1008  */
1009
1010 static int glock_wait_internal(struct gfs2_holder *gh)
1011 {
1012         struct gfs2_glock *gl = gh->gh_gl;
1013         struct gfs2_sbd *sdp = gl->gl_sbd;
1014         const struct gfs2_glock_operations *glops = gl->gl_ops;
1015
1016         if (test_bit(HIF_ABORTED, &gh->gh_iflags))
1017                 return -EIO;
1018
1019         if (gh->gh_flags & (LM_FLAG_TRY | LM_FLAG_TRY_1CB)) {
1020                 spin_lock(&gl->gl_spin);
1021                 if (gl->gl_req_gh != gh &&
1022                     !test_bit(HIF_HOLDER, &gh->gh_iflags) &&
1023                     !list_empty(&gh->gh_list)) {
1024                         list_del_init(&gh->gh_list);
1025                         gh->gh_error = GLR_TRYFAILED;
1026                         run_queue(gl);
1027                         spin_unlock(&gl->gl_spin);
1028                         return gh->gh_error;
1029                 }
1030                 spin_unlock(&gl->gl_spin);
1031         }
1032
1033         if (gh->gh_flags & LM_FLAG_PRIORITY)
1034                 do_cancels(gh);
1035
1036         wait_on_holder(gh);
1037         if (gh->gh_error)
1038                 return gh->gh_error;
1039
1040         gfs2_assert_withdraw(sdp, test_bit(HIF_HOLDER, &gh->gh_iflags));
1041         gfs2_assert_withdraw(sdp, relaxed_state_ok(gl->gl_state, gh->gh_state,
1042                                                    gh->gh_flags));
1043
1044         if (test_bit(HIF_FIRST, &gh->gh_iflags)) {
1045                 gfs2_assert_warn(sdp, test_bit(GLF_LOCK, &gl->gl_flags));
1046
1047                 if (glops->go_lock) {
1048                         gh->gh_error = glops->go_lock(gh);
1049                         if (gh->gh_error) {
1050                                 spin_lock(&gl->gl_spin);
1051                                 list_del_init(&gh->gh_list);
1052                                 spin_unlock(&gl->gl_spin);
1053                         }
1054                 }
1055
1056                 spin_lock(&gl->gl_spin);
1057                 gl->gl_req_gh = NULL;
1058                 gl->gl_req_bh = NULL;
1059                 clear_bit(GLF_LOCK, &gl->gl_flags);
1060                 run_queue(gl);
1061                 spin_unlock(&gl->gl_spin);
1062         }
1063
1064         return gh->gh_error;
1065 }
1066
1067 static inline struct gfs2_holder *
1068 find_holder_by_owner(struct list_head *head, pid_t pid)
1069 {
1070         struct gfs2_holder *gh;
1071
1072         list_for_each_entry(gh, head, gh_list) {
1073                 if (gh->gh_owner_pid == pid)
1074                         return gh;
1075         }
1076
1077         return NULL;
1078 }
1079
1080 static void print_dbg(struct glock_iter *gi, const char *fmt, ...)
1081 {
1082         va_list args;
1083
1084         va_start(args, fmt);
1085         if (gi) {
1086                 vsprintf(gi->string, fmt, args);
1087                 seq_printf(gi->seq, gi->string);
1088         }
1089         else
1090                 vprintk(fmt, args);
1091         va_end(args);
1092 }
1093
1094 /**
1095  * add_to_queue - Add a holder to the wait queue (but look for recursion)
1096  * @gh: the holder structure to add
1097  *
1098  */
1099
1100 static void add_to_queue(struct gfs2_holder *gh)
1101 {
1102         struct gfs2_glock *gl = gh->gh_gl;
1103         struct gfs2_holder *existing;
1104
1105         BUG_ON(!gh->gh_owner_pid);
1106         if (test_and_set_bit(HIF_WAIT, &gh->gh_iflags))
1107                 BUG();
1108
1109         if (!(gh->gh_flags & GL_FLOCK)) {
1110                 existing = find_holder_by_owner(&gl->gl_holders, 
1111                                                 gh->gh_owner_pid);
1112                 if (existing) {
1113                         print_symbol(KERN_WARNING "original: %s\n", 
1114                                      existing->gh_ip);
1115                         printk(KERN_INFO "pid : %d\n", existing->gh_owner_pid);
1116                         printk(KERN_INFO "lock type : %d lock state : %d\n",
1117                                existing->gh_gl->gl_name.ln_type, 
1118                                existing->gh_gl->gl_state);
1119                         print_symbol(KERN_WARNING "new: %s\n", gh->gh_ip);
1120                         printk(KERN_INFO "pid : %d\n", gh->gh_owner_pid);
1121                         printk(KERN_INFO "lock type : %d lock state : %d\n",
1122                                gl->gl_name.ln_type, gl->gl_state);
1123                         BUG();
1124                 }
1125                 
1126                 existing = find_holder_by_owner(&gl->gl_waiters3, 
1127                                                 gh->gh_owner_pid);
1128                 if (existing) {
1129                         print_symbol(KERN_WARNING "original: %s\n", 
1130                                      existing->gh_ip);
1131                         print_symbol(KERN_WARNING "new: %s\n", gh->gh_ip);
1132                         BUG();
1133                 }
1134         }
1135
1136         if (gh->gh_flags & LM_FLAG_PRIORITY)
1137                 list_add(&gh->gh_list, &gl->gl_waiters3);
1138         else
1139                 list_add_tail(&gh->gh_list, &gl->gl_waiters3);
1140 }
1141
1142 /**
1143  * gfs2_glock_nq - enqueue a struct gfs2_holder onto a glock (acquire a glock)
1144  * @gh: the holder structure
1145  *
1146  * if (gh->gh_flags & GL_ASYNC), this never returns an error
1147  *
1148  * Returns: 0, GLR_TRYFAILED, or errno on failure
1149  */
1150
1151 int gfs2_glock_nq(struct gfs2_holder *gh)
1152 {
1153         struct gfs2_glock *gl = gh->gh_gl;
1154         struct gfs2_sbd *sdp = gl->gl_sbd;
1155         int error = 0;
1156
1157 restart:
1158         if (unlikely(test_bit(SDF_SHUTDOWN, &sdp->sd_flags))) {
1159                 set_bit(HIF_ABORTED, &gh->gh_iflags);
1160                 return -EIO;
1161         }
1162
1163         set_bit(HIF_PROMOTE, &gh->gh_iflags);
1164
1165         spin_lock(&gl->gl_spin);
1166         add_to_queue(gh);
1167         run_queue(gl);
1168         spin_unlock(&gl->gl_spin);
1169
1170         if (!(gh->gh_flags & GL_ASYNC)) {
1171                 error = glock_wait_internal(gh);
1172                 if (error == GLR_CANCELED) {
1173                         msleep(100);
1174                         goto restart;
1175                 }
1176         }
1177
1178         return error;
1179 }
1180
1181 /**
1182  * gfs2_glock_poll - poll to see if an async request has been completed
1183  * @gh: the holder
1184  *
1185  * Returns: 1 if the request is ready to be gfs2_glock_wait()ed on
1186  */
1187
1188 int gfs2_glock_poll(struct gfs2_holder *gh)
1189 {
1190         struct gfs2_glock *gl = gh->gh_gl;
1191         int ready = 0;
1192
1193         spin_lock(&gl->gl_spin);
1194
1195         if (test_bit(HIF_HOLDER, &gh->gh_iflags))
1196                 ready = 1;
1197         else if (list_empty(&gh->gh_list)) {
1198                 if (gh->gh_error == GLR_CANCELED) {
1199                         spin_unlock(&gl->gl_spin);
1200                         msleep(100);
1201                         if (gfs2_glock_nq(gh))
1202                                 return 1;
1203                         return 0;
1204                 } else
1205                         ready = 1;
1206         }
1207
1208         spin_unlock(&gl->gl_spin);
1209
1210         return ready;
1211 }
1212
1213 /**
1214  * gfs2_glock_wait - wait for a lock acquisition that ended in a GLR_ASYNC
1215  * @gh: the holder structure
1216  *
1217  * Returns: 0, GLR_TRYFAILED, or errno on failure
1218  */
1219
1220 int gfs2_glock_wait(struct gfs2_holder *gh)
1221 {
1222         int error;
1223
1224         error = glock_wait_internal(gh);
1225         if (error == GLR_CANCELED) {
1226                 msleep(100);
1227                 gh->gh_flags &= ~GL_ASYNC;
1228                 error = gfs2_glock_nq(gh);
1229         }
1230
1231         return error;
1232 }
1233
1234 /**
1235  * gfs2_glock_dq - dequeue a struct gfs2_holder from a glock (release a glock)
1236  * @gh: the glock holder
1237  *
1238  */
1239
1240 void gfs2_glock_dq(struct gfs2_holder *gh)
1241 {
1242         struct gfs2_glock *gl = gh->gh_gl;
1243         const struct gfs2_glock_operations *glops = gl->gl_ops;
1244         unsigned delay = 0;
1245
1246         if (gh->gh_flags & GL_NOCACHE)
1247                 handle_callback(gl, LM_ST_UNLOCKED, 0, 0);
1248
1249         gfs2_glmutex_lock(gl);
1250
1251         spin_lock(&gl->gl_spin);
1252         list_del_init(&gh->gh_list);
1253
1254         if (list_empty(&gl->gl_holders)) {
1255                 spin_unlock(&gl->gl_spin);
1256
1257                 if (glops->go_unlock)
1258                         glops->go_unlock(gh);
1259
1260                 spin_lock(&gl->gl_spin);
1261                 gl->gl_stamp = jiffies;
1262         }
1263
1264         clear_bit(GLF_LOCK, &gl->gl_flags);
1265         spin_unlock(&gl->gl_spin);
1266
1267         gfs2_glock_hold(gl);
1268         if (test_bit(GLF_PENDING_DEMOTE, &gl->gl_flags) &&
1269             !test_bit(GLF_DEMOTE, &gl->gl_flags))
1270                 delay = gl->gl_ops->go_min_hold_time;
1271         if (queue_delayed_work(glock_workqueue, &gl->gl_work, delay) == 0)
1272                 gfs2_glock_put(gl);
1273 }
1274
1275 void gfs2_glock_dq_wait(struct gfs2_holder *gh)
1276 {
1277         struct gfs2_glock *gl = gh->gh_gl;
1278         gfs2_glock_dq(gh);
1279         wait_on_demote(gl);
1280 }
1281
1282 /**
1283  * gfs2_glock_dq_uninit - dequeue a holder from a glock and initialize it
1284  * @gh: the holder structure
1285  *
1286  */
1287
1288 void gfs2_glock_dq_uninit(struct gfs2_holder *gh)
1289 {
1290         gfs2_glock_dq(gh);
1291         gfs2_holder_uninit(gh);
1292 }
1293
1294 /**
1295  * gfs2_glock_nq_num - acquire a glock based on lock number
1296  * @sdp: the filesystem
1297  * @number: the lock number
1298  * @glops: the glock operations for the type of glock
1299  * @state: the state to acquire the glock in
1300  * @flags: modifier flags for the aquisition
1301  * @gh: the struct gfs2_holder
1302  *
1303  * Returns: errno
1304  */
1305
1306 int gfs2_glock_nq_num(struct gfs2_sbd *sdp, u64 number,
1307                       const struct gfs2_glock_operations *glops,
1308                       unsigned int state, int flags, struct gfs2_holder *gh)
1309 {
1310         struct gfs2_glock *gl;
1311         int error;
1312
1313         error = gfs2_glock_get(sdp, number, glops, CREATE, &gl);
1314         if (!error) {
1315                 error = gfs2_glock_nq_init(gl, state, flags, gh);
1316                 gfs2_glock_put(gl);
1317         }
1318
1319         return error;
1320 }
1321
1322 /**
1323  * glock_compare - Compare two struct gfs2_glock structures for sorting
1324  * @arg_a: the first structure
1325  * @arg_b: the second structure
1326  *
1327  */
1328
1329 static int glock_compare(const void *arg_a, const void *arg_b)
1330 {
1331         const struct gfs2_holder *gh_a = *(const struct gfs2_holder **)arg_a;
1332         const struct gfs2_holder *gh_b = *(const struct gfs2_holder **)arg_b;
1333         const struct lm_lockname *a = &gh_a->gh_gl->gl_name;
1334         const struct lm_lockname *b = &gh_b->gh_gl->gl_name;
1335
1336         if (a->ln_number > b->ln_number)
1337                 return 1;
1338         if (a->ln_number < b->ln_number)
1339                 return -1;
1340         BUG_ON(gh_a->gh_gl->gl_ops->go_type == gh_b->gh_gl->gl_ops->go_type);
1341         return 0;
1342 }
1343
1344 /**
1345  * nq_m_sync - synchonously acquire more than one glock in deadlock free order
1346  * @num_gh: the number of structures
1347  * @ghs: an array of struct gfs2_holder structures
1348  *
1349  * Returns: 0 on success (all glocks acquired),
1350  *          errno on failure (no glocks acquired)
1351  */
1352
1353 static int nq_m_sync(unsigned int num_gh, struct gfs2_holder *ghs,
1354                      struct gfs2_holder **p)
1355 {
1356         unsigned int x;
1357         int error = 0;
1358
1359         for (x = 0; x < num_gh; x++)
1360                 p[x] = &ghs[x];
1361
1362         sort(p, num_gh, sizeof(struct gfs2_holder *), glock_compare, NULL);
1363
1364         for (x = 0; x < num_gh; x++) {
1365                 p[x]->gh_flags &= ~(LM_FLAG_TRY | GL_ASYNC);
1366
1367                 error = gfs2_glock_nq(p[x]);
1368                 if (error) {
1369                         while (x--)
1370                                 gfs2_glock_dq(p[x]);
1371                         break;
1372                 }
1373         }
1374
1375         return error;
1376 }
1377
1378 /**
1379  * gfs2_glock_nq_m - acquire multiple glocks
1380  * @num_gh: the number of structures
1381  * @ghs: an array of struct gfs2_holder structures
1382  *
1383  *
1384  * Returns: 0 on success (all glocks acquired),
1385  *          errno on failure (no glocks acquired)
1386  */
1387
1388 int gfs2_glock_nq_m(unsigned int num_gh, struct gfs2_holder *ghs)
1389 {
1390         struct gfs2_holder *tmp[4];
1391         struct gfs2_holder **pph = tmp;
1392         int error = 0;
1393
1394         switch(num_gh) {
1395         case 0:
1396                 return 0;
1397         case 1:
1398                 ghs->gh_flags &= ~(LM_FLAG_TRY | GL_ASYNC);
1399                 return gfs2_glock_nq(ghs);
1400         default:
1401                 if (num_gh <= 4)
1402                         break;
1403                 pph = kmalloc(num_gh * sizeof(struct gfs2_holder *), GFP_NOFS);
1404                 if (!pph)
1405                         return -ENOMEM;
1406         }
1407
1408         error = nq_m_sync(num_gh, ghs, pph);
1409
1410         if (pph != tmp)
1411                 kfree(pph);
1412
1413         return error;
1414 }
1415
1416 /**
1417  * gfs2_glock_dq_m - release multiple glocks
1418  * @num_gh: the number of structures
1419  * @ghs: an array of struct gfs2_holder structures
1420  *
1421  */
1422
1423 void gfs2_glock_dq_m(unsigned int num_gh, struct gfs2_holder *ghs)
1424 {
1425         unsigned int x;
1426
1427         for (x = 0; x < num_gh; x++)
1428                 gfs2_glock_dq(&ghs[x]);
1429 }
1430
1431 /**
1432  * gfs2_glock_dq_uninit_m - release multiple glocks
1433  * @num_gh: the number of structures
1434  * @ghs: an array of struct gfs2_holder structures
1435  *
1436  */
1437
1438 void gfs2_glock_dq_uninit_m(unsigned int num_gh, struct gfs2_holder *ghs)
1439 {
1440         unsigned int x;
1441
1442         for (x = 0; x < num_gh; x++)
1443                 gfs2_glock_dq_uninit(&ghs[x]);
1444 }
1445
1446 /**
1447  * gfs2_lvb_hold - attach a LVB from a glock
1448  * @gl: The glock in question
1449  *
1450  */
1451
1452 int gfs2_lvb_hold(struct gfs2_glock *gl)
1453 {
1454         int error;
1455
1456         gfs2_glmutex_lock(gl);
1457
1458         if (!atomic_read(&gl->gl_lvb_count)) {
1459                 error = gfs2_lm_hold_lvb(gl->gl_sbd, gl->gl_lock, &gl->gl_lvb);
1460                 if (error) {
1461                         gfs2_glmutex_unlock(gl);
1462                         return error;
1463                 }
1464                 gfs2_glock_hold(gl);
1465         }
1466         atomic_inc(&gl->gl_lvb_count);
1467
1468         gfs2_glmutex_unlock(gl);
1469
1470         return 0;
1471 }
1472
1473 /**
1474  * gfs2_lvb_unhold - detach a LVB from a glock
1475  * @gl: The glock in question
1476  *
1477  */
1478
1479 void gfs2_lvb_unhold(struct gfs2_glock *gl)
1480 {
1481         gfs2_glock_hold(gl);
1482         gfs2_glmutex_lock(gl);
1483
1484         gfs2_assert(gl->gl_sbd, atomic_read(&gl->gl_lvb_count) > 0);
1485         if (atomic_dec_and_test(&gl->gl_lvb_count)) {
1486                 gfs2_lm_unhold_lvb(gl->gl_sbd, gl->gl_lock, gl->gl_lvb);
1487                 gl->gl_lvb = NULL;
1488                 gfs2_glock_put(gl);
1489         }
1490
1491         gfs2_glmutex_unlock(gl);
1492         gfs2_glock_put(gl);
1493 }
1494
1495 static void blocking_cb(struct gfs2_sbd *sdp, struct lm_lockname *name,
1496                         unsigned int state)
1497 {
1498         struct gfs2_glock *gl;
1499         unsigned long delay = 0;
1500         unsigned long holdtime;
1501         unsigned long now = jiffies;
1502
1503         gl = gfs2_glock_find(sdp, name);
1504         if (!gl)
1505                 return;
1506
1507         holdtime = gl->gl_tchange + gl->gl_ops->go_min_hold_time;
1508         if (time_before(now, holdtime))
1509                 delay = holdtime - now;
1510
1511         handle_callback(gl, state, 1, delay);
1512         if (queue_delayed_work(glock_workqueue, &gl->gl_work, delay) == 0)
1513                 gfs2_glock_put(gl);
1514 }
1515
1516 /**
1517  * gfs2_glock_cb - Callback used by locking module
1518  * @sdp: Pointer to the superblock
1519  * @type: Type of callback
1520  * @data: Type dependent data pointer
1521  *
1522  * Called by the locking module when it wants to tell us something.
1523  * Either we need to drop a lock, one of our ASYNC requests completed, or
1524  * a journal from another client needs to be recovered.
1525  */
1526
1527 void gfs2_glock_cb(void *cb_data, unsigned int type, void *data)
1528 {
1529         struct gfs2_sbd *sdp = cb_data;
1530
1531         switch (type) {
1532         case LM_CB_NEED_E:
1533                 blocking_cb(sdp, data, LM_ST_UNLOCKED);
1534                 return;
1535
1536         case LM_CB_NEED_D:
1537                 blocking_cb(sdp, data, LM_ST_DEFERRED);
1538                 return;
1539
1540         case LM_CB_NEED_S:
1541                 blocking_cb(sdp, data, LM_ST_SHARED);
1542                 return;
1543
1544         case LM_CB_ASYNC: {
1545                 struct lm_async_cb *async = data;
1546                 struct gfs2_glock *gl;
1547
1548                 down_read(&gfs2_umount_flush_sem);
1549                 gl = gfs2_glock_find(sdp, &async->lc_name);
1550                 if (gfs2_assert_warn(sdp, gl))
1551                         return;
1552                 if (!gfs2_assert_warn(sdp, gl->gl_req_bh))
1553                         gl->gl_req_bh(gl, async->lc_ret);
1554                 if (queue_delayed_work(glock_workqueue, &gl->gl_work, 0) == 0)
1555                         gfs2_glock_put(gl);
1556                 up_read(&gfs2_umount_flush_sem);
1557                 return;
1558         }
1559
1560         case LM_CB_NEED_RECOVERY:
1561                 gfs2_jdesc_make_dirty(sdp, *(unsigned int *)data);
1562                 if (sdp->sd_recoverd_process)
1563                         wake_up_process(sdp->sd_recoverd_process);
1564                 return;
1565
1566         case LM_CB_DROPLOCKS:
1567                 gfs2_gl_hash_clear(sdp, NO_WAIT);
1568                 gfs2_quota_scan(sdp);
1569                 return;
1570
1571         default:
1572                 gfs2_assert_warn(sdp, 0);
1573                 return;
1574         }
1575 }
1576
1577 /**
1578  * demote_ok - Check to see if it's ok to unlock a glock
1579  * @gl: the glock
1580  *
1581  * Returns: 1 if it's ok
1582  */
1583
1584 static int demote_ok(struct gfs2_glock *gl)
1585 {
1586         const struct gfs2_glock_operations *glops = gl->gl_ops;
1587         int demote = 1;
1588
1589         if (test_bit(GLF_STICKY, &gl->gl_flags))
1590                 demote = 0;
1591         else if (glops->go_demote_ok)
1592                 demote = glops->go_demote_ok(gl);
1593
1594         return demote;
1595 }
1596
1597 /**
1598  * gfs2_glock_schedule_for_reclaim - Add a glock to the reclaim list
1599  * @gl: the glock
1600  *
1601  */
1602
1603 void gfs2_glock_schedule_for_reclaim(struct gfs2_glock *gl)
1604 {
1605         struct gfs2_sbd *sdp = gl->gl_sbd;
1606
1607         spin_lock(&sdp->sd_reclaim_lock);
1608         if (list_empty(&gl->gl_reclaim)) {
1609                 gfs2_glock_hold(gl);
1610                 list_add(&gl->gl_reclaim, &sdp->sd_reclaim_list);
1611                 atomic_inc(&sdp->sd_reclaim_count);
1612         }
1613         spin_unlock(&sdp->sd_reclaim_lock);
1614
1615         wake_up(&sdp->sd_reclaim_wq);
1616 }
1617
1618 /**
1619  * gfs2_reclaim_glock - process the next glock on the filesystem's reclaim list
1620  * @sdp: the filesystem
1621  *
1622  * Called from gfs2_glockd() glock reclaim daemon, or when promoting a
1623  * different glock and we notice that there are a lot of glocks in the
1624  * reclaim list.
1625  *
1626  */
1627
1628 void gfs2_reclaim_glock(struct gfs2_sbd *sdp)
1629 {
1630         struct gfs2_glock *gl;
1631
1632         spin_lock(&sdp->sd_reclaim_lock);
1633         if (list_empty(&sdp->sd_reclaim_list)) {
1634                 spin_unlock(&sdp->sd_reclaim_lock);
1635                 return;
1636         }
1637         gl = list_entry(sdp->sd_reclaim_list.next,
1638                         struct gfs2_glock, gl_reclaim);
1639         list_del_init(&gl->gl_reclaim);
1640         spin_unlock(&sdp->sd_reclaim_lock);
1641
1642         atomic_dec(&sdp->sd_reclaim_count);
1643         atomic_inc(&sdp->sd_reclaimed);
1644
1645         if (gfs2_glmutex_trylock(gl)) {
1646                 if (list_empty(&gl->gl_holders) &&
1647                     gl->gl_state != LM_ST_UNLOCKED && demote_ok(gl))
1648                         handle_callback(gl, LM_ST_UNLOCKED, 0, 0);
1649                 gfs2_glmutex_unlock(gl);
1650         }
1651
1652         gfs2_glock_put(gl);
1653 }
1654
1655 /**
1656  * examine_bucket - Call a function for glock in a hash bucket
1657  * @examiner: the function
1658  * @sdp: the filesystem
1659  * @bucket: the bucket
1660  *
1661  * Returns: 1 if the bucket has entries
1662  */
1663
1664 static int examine_bucket(glock_examiner examiner, struct gfs2_sbd *sdp,
1665                           unsigned int hash)
1666 {
1667         struct gfs2_glock *gl, *prev = NULL;
1668         int has_entries = 0;
1669         struct hlist_head *head = &gl_hash_table[hash].hb_list;
1670
1671         read_lock(gl_lock_addr(hash));
1672         /* Can't use hlist_for_each_entry - don't want prefetch here */
1673         if (hlist_empty(head))
1674                 goto out;
1675         gl = list_entry(head->first, struct gfs2_glock, gl_list);
1676         while(1) {
1677                 if (!sdp || gl->gl_sbd == sdp) {
1678                         gfs2_glock_hold(gl);
1679                         read_unlock(gl_lock_addr(hash));
1680                         if (prev)
1681                                 gfs2_glock_put(prev);
1682                         prev = gl;
1683                         examiner(gl);
1684                         has_entries = 1;
1685                         read_lock(gl_lock_addr(hash));
1686                 }
1687                 if (gl->gl_list.next == NULL)
1688                         break;
1689                 gl = list_entry(gl->gl_list.next, struct gfs2_glock, gl_list);
1690         }
1691 out:
1692         read_unlock(gl_lock_addr(hash));
1693         if (prev)
1694                 gfs2_glock_put(prev);
1695         cond_resched();
1696         return has_entries;
1697 }
1698
1699 /**
1700  * scan_glock - look at a glock and see if we can reclaim it
1701  * @gl: the glock to look at
1702  *
1703  */
1704
1705 static void scan_glock(struct gfs2_glock *gl)
1706 {
1707         if (gl->gl_ops == &gfs2_inode_glops && gl->gl_object)
1708                 return;
1709
1710         if (gfs2_glmutex_trylock(gl)) {
1711                 if (list_empty(&gl->gl_holders) &&
1712                     gl->gl_state != LM_ST_UNLOCKED && demote_ok(gl))
1713                         goto out_schedule;
1714                 gfs2_glmutex_unlock(gl);
1715         }
1716         return;
1717
1718 out_schedule:
1719         gfs2_glmutex_unlock(gl);
1720         gfs2_glock_schedule_for_reclaim(gl);
1721 }
1722
1723 /**
1724  * clear_glock - look at a glock and see if we can free it from glock cache
1725  * @gl: the glock to look at
1726  *
1727  */
1728
1729 static void clear_glock(struct gfs2_glock *gl)
1730 {
1731         struct gfs2_sbd *sdp = gl->gl_sbd;
1732         int released;
1733
1734         spin_lock(&sdp->sd_reclaim_lock);
1735         if (!list_empty(&gl->gl_reclaim)) {
1736                 list_del_init(&gl->gl_reclaim);
1737                 atomic_dec(&sdp->sd_reclaim_count);
1738                 spin_unlock(&sdp->sd_reclaim_lock);
1739                 released = gfs2_glock_put(gl);
1740                 gfs2_assert(sdp, !released);
1741         } else {
1742                 spin_unlock(&sdp->sd_reclaim_lock);
1743         }
1744
1745         if (gfs2_glmutex_trylock(gl)) {
1746                 if (list_empty(&gl->gl_holders) &&
1747                     gl->gl_state != LM_ST_UNLOCKED)
1748                         handle_callback(gl, LM_ST_UNLOCKED, 0, 0);
1749                 gfs2_glmutex_unlock(gl);
1750         }
1751 }
1752
1753 /**
1754  * gfs2_gl_hash_clear - Empty out the glock hash table
1755  * @sdp: the filesystem
1756  * @wait: wait until it's all gone
1757  *
1758  * Called when unmounting the filesystem, or when inter-node lock manager
1759  * requests DROPLOCKS because it is running out of capacity.
1760  */
1761
1762 void gfs2_gl_hash_clear(struct gfs2_sbd *sdp, int wait)
1763 {
1764         unsigned long t;
1765         unsigned int x;
1766         int cont;
1767
1768         t = jiffies;
1769
1770         for (;;) {
1771                 cont = 0;
1772                 for (x = 0; x < GFS2_GL_HASH_SIZE; x++) {
1773                         if (examine_bucket(clear_glock, sdp, x))
1774                                 cont = 1;
1775                 }
1776
1777                 if (!wait || !cont)
1778                         break;
1779
1780                 if (time_after_eq(jiffies,
1781                                   t + gfs2_tune_get(sdp, gt_stall_secs) * HZ)) {
1782                         fs_warn(sdp, "Unmount seems to be stalled. "
1783                                      "Dumping lock state...\n");
1784                         gfs2_dump_lockstate(sdp);
1785                         t = jiffies;
1786                 }
1787
1788                 down_write(&gfs2_umount_flush_sem);
1789                 invalidate_inodes(sdp->sd_vfs);
1790                 up_write(&gfs2_umount_flush_sem);
1791                 msleep(10);
1792         }
1793 }
1794
1795 /*
1796  *  Diagnostic routines to help debug distributed deadlock
1797  */
1798
1799 static void gfs2_print_symbol(struct glock_iter *gi, const char *fmt,
1800                               unsigned long address)
1801 {
1802         char buffer[KSYM_SYMBOL_LEN];
1803
1804         sprint_symbol(buffer, address);
1805         print_dbg(gi, fmt, buffer);
1806 }
1807
1808 /**
1809  * dump_holder - print information about a glock holder
1810  * @str: a string naming the type of holder
1811  * @gh: the glock holder
1812  *
1813  * Returns: 0 on success, -ENOBUFS when we run out of space
1814  */
1815
1816 static int dump_holder(struct glock_iter *gi, char *str,
1817                        struct gfs2_holder *gh)
1818 {
1819         unsigned int x;
1820         struct task_struct *gh_owner;
1821
1822         print_dbg(gi, "  %s\n", str);
1823         if (gh->gh_owner_pid) {
1824                 print_dbg(gi, "    owner = %ld ", (long)gh->gh_owner_pid);
1825                 gh_owner = find_task_by_pid(gh->gh_owner_pid);
1826                 if (gh_owner)
1827                         print_dbg(gi, "(%s)\n", gh_owner->comm);
1828                 else
1829                         print_dbg(gi, "(ended)\n");
1830         } else
1831                 print_dbg(gi, "    owner = -1\n");
1832         print_dbg(gi, "    gh_state = %u\n", gh->gh_state);
1833         print_dbg(gi, "    gh_flags =");
1834         for (x = 0; x < 32; x++)
1835                 if (gh->gh_flags & (1 << x))
1836                         print_dbg(gi, " %u", x);
1837         print_dbg(gi, " \n");
1838         print_dbg(gi, "    error = %d\n", gh->gh_error);
1839         print_dbg(gi, "    gh_iflags =");
1840         for (x = 0; x < 32; x++)
1841                 if (test_bit(x, &gh->gh_iflags))
1842                         print_dbg(gi, " %u", x);
1843         print_dbg(gi, " \n");
1844         gfs2_print_symbol(gi, "    initialized at: %s\n", gh->gh_ip);
1845
1846         return 0;
1847 }
1848
1849 /**
1850  * dump_inode - print information about an inode
1851  * @ip: the inode
1852  *
1853  * Returns: 0 on success, -ENOBUFS when we run out of space
1854  */
1855
1856 static int dump_inode(struct glock_iter *gi, struct gfs2_inode *ip)
1857 {
1858         unsigned int x;
1859
1860         print_dbg(gi, "  Inode:\n");
1861         print_dbg(gi, "    num = %llu/%llu\n",
1862                   (unsigned long long)ip->i_no_formal_ino,
1863                   (unsigned long long)ip->i_no_addr);
1864         print_dbg(gi, "    type = %u\n", IF2DT(ip->i_inode.i_mode));
1865         print_dbg(gi, "    i_flags =");
1866         for (x = 0; x < 32; x++)
1867                 if (test_bit(x, &ip->i_flags))
1868                         print_dbg(gi, " %u", x);
1869         print_dbg(gi, " \n");
1870         return 0;
1871 }
1872
1873 /**
1874  * dump_glock - print information about a glock
1875  * @gl: the glock
1876  * @count: where we are in the buffer
1877  *
1878  * Returns: 0 on success, -ENOBUFS when we run out of space
1879  */
1880
1881 static int dump_glock(struct glock_iter *gi, struct gfs2_glock *gl)
1882 {
1883         struct gfs2_holder *gh;
1884         unsigned int x;
1885         int error = -ENOBUFS;
1886         struct task_struct *gl_owner;
1887
1888         spin_lock(&gl->gl_spin);
1889
1890         print_dbg(gi, "Glock 0x%p (%u, 0x%llx)\n", gl, gl->gl_name.ln_type,
1891                    (unsigned long long)gl->gl_name.ln_number);
1892         print_dbg(gi, "  gl_flags =");
1893         for (x = 0; x < 32; x++) {
1894                 if (test_bit(x, &gl->gl_flags))
1895                         print_dbg(gi, " %u", x);
1896         }
1897         if (!test_bit(GLF_LOCK, &gl->gl_flags))
1898                 print_dbg(gi, " (unlocked)");
1899         print_dbg(gi, " \n");
1900         print_dbg(gi, "  gl_ref = %d\n", atomic_read(&gl->gl_ref));
1901         print_dbg(gi, "  gl_state = %u\n", gl->gl_state);
1902         if (gl->gl_owner_pid) {
1903                 gl_owner = find_task_by_pid(gl->gl_owner_pid);
1904                 if (gl_owner)
1905                         print_dbg(gi, "  gl_owner = pid %d (%s)\n",
1906                                   gl->gl_owner_pid, gl_owner->comm);
1907                 else
1908                         print_dbg(gi, "  gl_owner = %d (ended)\n",
1909                                   gl->gl_owner_pid);
1910         } else
1911                 print_dbg(gi, "  gl_owner = -1\n");
1912         print_dbg(gi, "  gl_ip = %lu\n", gl->gl_ip);
1913         print_dbg(gi, "  req_gh = %s\n", (gl->gl_req_gh) ? "yes" : "no");
1914         print_dbg(gi, "  req_bh = %s\n", (gl->gl_req_bh) ? "yes" : "no");
1915         print_dbg(gi, "  lvb_count = %d\n", atomic_read(&gl->gl_lvb_count));
1916         print_dbg(gi, "  object = %s\n", (gl->gl_object) ? "yes" : "no");
1917         print_dbg(gi, "  le = %s\n",
1918                    (list_empty(&gl->gl_le.le_list)) ? "no" : "yes");
1919         print_dbg(gi, "  reclaim = %s\n",
1920                    (list_empty(&gl->gl_reclaim)) ? "no" : "yes");
1921         if (gl->gl_aspace)
1922                 print_dbg(gi, "  aspace = 0x%p nrpages = %lu\n", gl->gl_aspace,
1923                            gl->gl_aspace->i_mapping->nrpages);
1924         else
1925                 print_dbg(gi, "  aspace = no\n");
1926         print_dbg(gi, "  ail = %d\n", atomic_read(&gl->gl_ail_count));
1927         if (gl->gl_req_gh) {
1928                 error = dump_holder(gi, "Request", gl->gl_req_gh);
1929                 if (error)
1930                         goto out;
1931         }
1932         list_for_each_entry(gh, &gl->gl_holders, gh_list) {
1933                 error = dump_holder(gi, "Holder", gh);
1934                 if (error)
1935                         goto out;
1936         }
1937         list_for_each_entry(gh, &gl->gl_waiters1, gh_list) {
1938                 error = dump_holder(gi, "Waiter1", gh);
1939                 if (error)
1940                         goto out;
1941         }
1942         list_for_each_entry(gh, &gl->gl_waiters3, gh_list) {
1943                 error = dump_holder(gi, "Waiter3", gh);
1944                 if (error)
1945                         goto out;
1946         }
1947         if (test_bit(GLF_DEMOTE, &gl->gl_flags)) {
1948                 print_dbg(gi, "  Demotion req to state %u (%llu uS ago)\n",
1949                           gl->gl_demote_state, (unsigned long long)
1950                           (jiffies - gl->gl_demote_time)*(1000000/HZ));
1951         }
1952         if (gl->gl_ops == &gfs2_inode_glops && gl->gl_object) {
1953                 if (!test_bit(GLF_LOCK, &gl->gl_flags) &&
1954                         list_empty(&gl->gl_holders)) {
1955                         error = dump_inode(gi, gl->gl_object);
1956                         if (error)
1957                                 goto out;
1958                 } else {
1959                         error = -ENOBUFS;
1960                         print_dbg(gi, "  Inode: busy\n");
1961                 }
1962         }
1963
1964         error = 0;
1965
1966 out:
1967         spin_unlock(&gl->gl_spin);
1968         return error;
1969 }
1970
1971 /**
1972  * gfs2_dump_lockstate - print out the current lockstate
1973  * @sdp: the filesystem
1974  * @ub: the buffer to copy the information into
1975  *
1976  * If @ub is NULL, dump the lockstate to the console.
1977  *
1978  */
1979
1980 static int gfs2_dump_lockstate(struct gfs2_sbd *sdp)
1981 {
1982         struct gfs2_glock *gl;
1983         struct hlist_node *h;
1984         unsigned int x;
1985         int error = 0;
1986
1987         for (x = 0; x < GFS2_GL_HASH_SIZE; x++) {
1988
1989                 read_lock(gl_lock_addr(x));
1990
1991                 hlist_for_each_entry(gl, h, &gl_hash_table[x].hb_list, gl_list) {
1992                         if (gl->gl_sbd != sdp)
1993                                 continue;
1994
1995                         error = dump_glock(NULL, gl);
1996                         if (error)
1997                                 break;
1998                 }
1999
2000                 read_unlock(gl_lock_addr(x));
2001
2002                 if (error)
2003                         break;
2004         }
2005
2006
2007         return error;
2008 }
2009
2010 /**
2011  * gfs2_scand - Look for cached glocks and inodes to toss from memory
2012  * @sdp: Pointer to GFS2 superblock
2013  *
2014  * One of these daemons runs, finding candidates to add to sd_reclaim_list.
2015  * See gfs2_glockd()
2016  */
2017
2018 static int gfs2_scand(void *data)
2019 {
2020         unsigned x;
2021         unsigned delay;
2022
2023         while (!kthread_should_stop()) {
2024                 for (x = 0; x < GFS2_GL_HASH_SIZE; x++)
2025                         examine_bucket(scan_glock, NULL, x);
2026                 if (freezing(current))
2027                         refrigerator();
2028                 delay = scand_secs;
2029                 if (delay < 1)
2030                         delay = 1;
2031                 schedule_timeout_interruptible(delay * HZ);
2032         }
2033
2034         return 0;
2035 }
2036
2037
2038
2039 int __init gfs2_glock_init(void)
2040 {
2041         unsigned i;
2042         for(i = 0; i < GFS2_GL_HASH_SIZE; i++) {
2043                 INIT_HLIST_HEAD(&gl_hash_table[i].hb_list);
2044         }
2045 #ifdef GL_HASH_LOCK_SZ
2046         for(i = 0; i < GL_HASH_LOCK_SZ; i++) {
2047                 rwlock_init(&gl_hash_locks[i]);
2048         }
2049 #endif
2050
2051         scand_process = kthread_run(gfs2_scand, NULL, "gfs2_scand");
2052         if (IS_ERR(scand_process))
2053                 return PTR_ERR(scand_process);
2054
2055         glock_workqueue = create_workqueue("glock_workqueue");
2056         if (IS_ERR(glock_workqueue)) {
2057                 kthread_stop(scand_process);
2058                 return PTR_ERR(glock_workqueue);
2059         }
2060
2061         return 0;
2062 }
2063
2064 void gfs2_glock_exit(void)
2065 {
2066         destroy_workqueue(glock_workqueue);
2067         kthread_stop(scand_process);
2068 }
2069
2070 module_param(scand_secs, uint, S_IRUGO|S_IWUSR);
2071 MODULE_PARM_DESC(scand_secs, "The number of seconds between scand runs");
2072
2073 static int gfs2_glock_iter_next(struct glock_iter *gi)
2074 {
2075         struct gfs2_glock *gl;
2076
2077 restart:
2078         read_lock(gl_lock_addr(gi->hash));
2079         gl = gi->gl;
2080         if (gl) {
2081                 gi->gl = hlist_entry(gl->gl_list.next,
2082                                      struct gfs2_glock, gl_list);
2083                 if (gi->gl)
2084                         gfs2_glock_hold(gi->gl);
2085         }
2086         read_unlock(gl_lock_addr(gi->hash));
2087         if (gl)
2088                 gfs2_glock_put(gl);
2089         if (gl && gi->gl == NULL)
2090                 gi->hash++;
2091         while(gi->gl == NULL) {
2092                 if (gi->hash >= GFS2_GL_HASH_SIZE)
2093                         return 1;
2094                 read_lock(gl_lock_addr(gi->hash));
2095                 gi->gl = hlist_entry(gl_hash_table[gi->hash].hb_list.first,
2096                                      struct gfs2_glock, gl_list);
2097                 if (gi->gl)
2098                         gfs2_glock_hold(gi->gl);
2099                 read_unlock(gl_lock_addr(gi->hash));
2100                 gi->hash++;
2101         }
2102
2103         if (gi->sdp != gi->gl->gl_sbd)
2104                 goto restart;
2105
2106         return 0;
2107 }
2108
2109 static void gfs2_glock_iter_free(struct glock_iter *gi)
2110 {
2111         if (gi->gl)
2112                 gfs2_glock_put(gi->gl);
2113         kfree(gi);
2114 }
2115
2116 static struct glock_iter *gfs2_glock_iter_init(struct gfs2_sbd *sdp)
2117 {
2118         struct glock_iter *gi;
2119
2120         gi = kmalloc(sizeof (*gi), GFP_KERNEL);
2121         if (!gi)
2122                 return NULL;
2123
2124         gi->sdp = sdp;
2125         gi->hash = 0;
2126         gi->seq = NULL;
2127         gi->gl = NULL;
2128         memset(gi->string, 0, sizeof(gi->string));
2129
2130         if (gfs2_glock_iter_next(gi)) {
2131                 gfs2_glock_iter_free(gi);
2132                 return NULL;
2133         }
2134
2135         return gi;
2136 }
2137
2138 static void *gfs2_glock_seq_start(struct seq_file *file, loff_t *pos)
2139 {
2140         struct glock_iter *gi;
2141         loff_t n = *pos;
2142
2143         gi = gfs2_glock_iter_init(file->private);
2144         if (!gi)
2145                 return NULL;
2146
2147         while(n--) {
2148                 if (gfs2_glock_iter_next(gi)) {
2149                         gfs2_glock_iter_free(gi);
2150                         return NULL;
2151                 }
2152         }
2153
2154         return gi;
2155 }
2156
2157 static void *gfs2_glock_seq_next(struct seq_file *file, void *iter_ptr,
2158                                  loff_t *pos)
2159 {
2160         struct glock_iter *gi = iter_ptr;
2161
2162         (*pos)++;
2163
2164         if (gfs2_glock_iter_next(gi)) {
2165                 gfs2_glock_iter_free(gi);
2166                 return NULL;
2167         }
2168
2169         return gi;
2170 }
2171
2172 static void gfs2_glock_seq_stop(struct seq_file *file, void *iter_ptr)
2173 {
2174         struct glock_iter *gi = iter_ptr;
2175         if (gi)
2176                 gfs2_glock_iter_free(gi);
2177 }
2178
2179 static int gfs2_glock_seq_show(struct seq_file *file, void *iter_ptr)
2180 {
2181         struct glock_iter *gi = iter_ptr;
2182
2183         gi->seq = file;
2184         dump_glock(gi, gi->gl);
2185
2186         return 0;
2187 }
2188
2189 static const struct seq_operations gfs2_glock_seq_ops = {
2190         .start = gfs2_glock_seq_start,
2191         .next  = gfs2_glock_seq_next,
2192         .stop  = gfs2_glock_seq_stop,
2193         .show  = gfs2_glock_seq_show,
2194 };
2195
2196 static int gfs2_debugfs_open(struct inode *inode, struct file *file)
2197 {
2198         struct seq_file *seq;
2199         int ret;
2200
2201         ret = seq_open(file, &gfs2_glock_seq_ops);
2202         if (ret)
2203                 return ret;
2204
2205         seq = file->private_data;
2206         seq->private = inode->i_private;
2207
2208         return 0;
2209 }
2210
2211 static const struct file_operations gfs2_debug_fops = {
2212         .owner   = THIS_MODULE,
2213         .open    = gfs2_debugfs_open,
2214         .read    = seq_read,
2215         .llseek  = seq_lseek,
2216         .release = seq_release
2217 };
2218
2219 int gfs2_create_debugfs_file(struct gfs2_sbd *sdp)
2220 {
2221         sdp->debugfs_dir = debugfs_create_dir(sdp->sd_table_name, gfs2_root);
2222         if (!sdp->debugfs_dir)
2223                 return -ENOMEM;
2224         sdp->debugfs_dentry_glocks = debugfs_create_file("glocks",
2225                                                          S_IFREG | S_IRUGO,
2226                                                          sdp->debugfs_dir, sdp,
2227                                                          &gfs2_debug_fops);
2228         if (!sdp->debugfs_dentry_glocks)
2229                 return -ENOMEM;
2230
2231         return 0;
2232 }
2233
2234 void gfs2_delete_debugfs_file(struct gfs2_sbd *sdp)
2235 {
2236         if (sdp && sdp->debugfs_dir) {
2237                 if (sdp->debugfs_dentry_glocks) {
2238                         debugfs_remove(sdp->debugfs_dentry_glocks);
2239                         sdp->debugfs_dentry_glocks = NULL;
2240                 }
2241                 debugfs_remove(sdp->debugfs_dir);
2242                 sdp->debugfs_dir = NULL;
2243         }
2244 }
2245
2246 int gfs2_register_debugfs(void)
2247 {
2248         gfs2_root = debugfs_create_dir("gfs2", NULL);
2249         return gfs2_root ? 0 : -ENOMEM;
2250 }
2251
2252 void gfs2_unregister_debugfs(void)
2253 {
2254         debugfs_remove(gfs2_root);
2255         gfs2_root = NULL;
2256 }