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[fs/lustre-release.git] / lustre / ldlm / ldlm_lockd.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.gnu.org/licenses/gpl-2.0.html
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright (c) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2010, 2017, Intel Corporation.
27  */
28 /*
29  * This file is part of Lustre, http://www.lustre.org/
30  * Lustre is a trademark of Sun Microsystems, Inc.
31  *
32  * lustre/ldlm/ldlm_lockd.c
33  *
34  * Author: Peter Braam <braam@clusterfs.com>
35  * Author: Phil Schwan <phil@clusterfs.com>
36  */
37
38 #define DEBUG_SUBSYSTEM S_LDLM
39
40 #include <linux/kthread.h>
41 #include <linux/list.h>
42 #include <libcfs/libcfs.h>
43 #include <lustre_errno.h>
44 #include <lustre_dlm.h>
45 #include <obd_class.h>
46 #include "ldlm_internal.h"
47
48 static int ldlm_num_threads;
49 module_param(ldlm_num_threads, int, 0444);
50 MODULE_PARM_DESC(ldlm_num_threads, "number of DLM service threads to start");
51
52 static unsigned int ldlm_cpu_bind = 1;
53 module_param(ldlm_cpu_bind, uint, 0444);
54 MODULE_PARM_DESC(ldlm_cpu_bind,
55                  "bind DLM service threads to particular CPU partitions");
56
57 static char *ldlm_cpts;
58 module_param(ldlm_cpts, charp, 0444);
59 MODULE_PARM_DESC(ldlm_cpts, "CPU partitions ldlm threads should run on");
60
61 static DEFINE_MUTEX(ldlm_ref_mutex);
62 static int ldlm_refcount;
63
64 struct kobject *ldlm_kobj;
65 struct kset *ldlm_ns_kset;
66 struct kset *ldlm_svc_kset;
67
68 /* LDLM state */
69
70 static struct ldlm_state *ldlm_state;
71
72 /* timeout for initial callback (AST) reply (bz10399)
73  * Due to having to send a 32 bit time value over the
74  * wire return it as time_t instead of time64_t
75  */
76 static inline time_t ldlm_get_rq_timeout(void)
77 {
78         /* Non-AT value */
79         time_t timeout = min(ldlm_timeout, obd_timeout / 3);
80
81         return timeout < 1 ? 1 : timeout;
82 }
83
84 struct ldlm_bl_pool {
85         spinlock_t              blp_lock;
86
87         /*
88          * blp_prio_list is used for callbacks that should be handled
89          * as a priority. It is used for LDLM_FL_DISCARD_DATA requests.
90          * see bug 13843
91          */
92         struct list_head              blp_prio_list;
93
94         /*
95          * blp_list is used for all other callbacks which are likely
96          * to take longer to process.
97          */
98         struct list_head              blp_list;
99
100         wait_queue_head_t       blp_waitq;
101         struct completion       blp_comp;
102         atomic_t            blp_num_threads;
103         atomic_t            blp_busy_threads;
104         int                     blp_min_threads;
105         int                     blp_max_threads;
106 };
107
108 struct ldlm_bl_work_item {
109         struct list_head        blwi_entry;
110         struct ldlm_namespace   *blwi_ns;
111         struct ldlm_lock_desc   blwi_ld;
112         struct ldlm_lock        *blwi_lock;
113         struct list_head        blwi_head;
114         int                     blwi_count;
115         struct completion       blwi_comp;
116         enum ldlm_cancel_flags  blwi_flags;
117         int                     blwi_mem_pressure;
118 };
119
120 #ifdef HAVE_SERVER_SUPPORT
121
122 /**
123  * Protects both waiting_locks_list and expired_lock_thread.
124  */
125 static DEFINE_SPINLOCK(waiting_locks_spinlock); /* BH lock (timer) */
126
127 /**
128  * List for contended locks.
129  *
130  * As soon as a lock is contended, it gets placed on this list and
131  * expected time to get a response is filled in the lock. A special
132  * thread walks the list looking for locks that should be released and
133  * schedules client evictions for those that have not been released in
134  * time.
135  *
136  * All access to it should be under waiting_locks_spinlock.
137  */
138 static LIST_HEAD(waiting_locks_list);
139 static void waiting_locks_callback(TIMER_DATA_TYPE unused);
140 static CFS_DEFINE_TIMER(waiting_locks_timer, waiting_locks_callback, 0, 0);
141
142 enum elt_state {
143         ELT_STOPPED,
144         ELT_READY,
145         ELT_TERMINATE,
146 };
147
148 static DECLARE_WAIT_QUEUE_HEAD(expired_lock_wait_queue);
149 static enum elt_state expired_lock_thread_state = ELT_STOPPED;
150 static int expired_lock_dump;
151 static LIST_HEAD(expired_lock_list);
152
153 static int ldlm_lock_busy(struct ldlm_lock *lock);
154 static int ldlm_add_waiting_lock(struct ldlm_lock *lock, time64_t timeout);
155 static int __ldlm_add_waiting_lock(struct ldlm_lock *lock, time64_t seconds);
156
157 static inline int have_expired_locks(void)
158 {
159         int need_to_run;
160
161         ENTRY;
162         spin_lock_bh(&waiting_locks_spinlock);
163         need_to_run = !list_empty(&expired_lock_list);
164         spin_unlock_bh(&waiting_locks_spinlock);
165
166         RETURN(need_to_run);
167 }
168
169 /**
170  * Check expired lock list for expired locks and time them out.
171  */
172 static int expired_lock_main(void *arg)
173 {
174         struct list_head *expired = &expired_lock_list;
175         struct l_wait_info lwi = { 0 };
176         int do_dump;
177
178         ENTRY;
179
180         expired_lock_thread_state = ELT_READY;
181         wake_up(&expired_lock_wait_queue);
182
183         while (1) {
184                 l_wait_event(expired_lock_wait_queue,
185                              have_expired_locks() ||
186                              expired_lock_thread_state == ELT_TERMINATE,
187                              &lwi);
188
189                 spin_lock_bh(&waiting_locks_spinlock);
190                 if (expired_lock_dump) {
191                         spin_unlock_bh(&waiting_locks_spinlock);
192
193                         /* from waiting_locks_callback, but not in timer */
194                         libcfs_debug_dumplog();
195
196                         spin_lock_bh(&waiting_locks_spinlock);
197                         expired_lock_dump = 0;
198                 }
199
200                 do_dump = 0;
201
202                 while (!list_empty(expired)) {
203                         struct obd_export *export;
204                         struct ldlm_lock *lock;
205
206                         lock = list_entry(expired->next, struct ldlm_lock,
207                                           l_pending_chain);
208                         if ((void *)lock < LP_POISON + PAGE_SIZE &&
209                             (void *)lock >= LP_POISON) {
210                                 spin_unlock_bh(&waiting_locks_spinlock);
211                                 CERROR("free lock on elt list %p\n", lock);
212                                 LBUG();
213                         }
214                         list_del_init(&lock->l_pending_chain);
215                         if ((void *)lock->l_export <
216                              LP_POISON + PAGE_SIZE &&
217                             (void *)lock->l_export >= LP_POISON) {
218                                 CERROR("lock with free export on elt list %p\n",
219                                        lock->l_export);
220                                 lock->l_export = NULL;
221                                 LDLM_ERROR(lock, "free export");
222                                 /* release extra ref grabbed by
223                                  * ldlm_add_waiting_lock() or
224                                  * ldlm_failed_ast() */
225                                 LDLM_LOCK_RELEASE(lock);
226                                 continue;
227                         }
228
229                         if (ldlm_is_destroyed(lock)) {
230                                 /* release the lock refcount where
231                                  * waiting_locks_callback() founds */
232                                 LDLM_LOCK_RELEASE(lock);
233                                 continue;
234                         }
235                         export = class_export_lock_get(lock->l_export, lock);
236                         spin_unlock_bh(&waiting_locks_spinlock);
237
238                         /* Check if we need to prolong timeout */
239                         if (!OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_HPREQ_TIMEOUT) &&
240                             lock->l_callback_timeout != 0 && /* not AST error */
241                             ldlm_lock_busy(lock)) {
242                                 LDLM_DEBUG(lock, "prolong the busy lock");
243                                 lock_res_and_lock(lock);
244                                 ldlm_add_waiting_lock(lock,
245                                                 ldlm_bl_timeout(lock) >> 1);
246                                 unlock_res_and_lock(lock);
247                         } else {
248                                 spin_lock_bh(&export->exp_bl_list_lock);
249                                 list_del_init(&lock->l_exp_list);
250                                 spin_unlock_bh(&export->exp_bl_list_lock);
251
252                                 LDLM_ERROR(lock,
253                                            "lock callback timer expired after %llds: evicting client at %s ",
254                                            ktime_get_real_seconds() -
255                                            lock->l_blast_sent,
256                                            obd_export_nid2str(export));
257                                 ldlm_lock_to_ns(lock)->ns_timeouts++;
258                                 do_dump++;
259                                 class_fail_export(export);
260                         }
261                         class_export_lock_put(export, lock);
262                         /* release extra ref grabbed by ldlm_add_waiting_lock()
263                          * or ldlm_failed_ast() */
264                         LDLM_LOCK_RELEASE(lock);
265
266                         spin_lock_bh(&waiting_locks_spinlock);
267                 }
268                 spin_unlock_bh(&waiting_locks_spinlock);
269
270                 if (do_dump && obd_dump_on_eviction) {
271                         CERROR("dump the log upon eviction\n");
272                         libcfs_debug_dumplog();
273                 }
274
275                 if (expired_lock_thread_state == ELT_TERMINATE)
276                         break;
277         }
278
279         expired_lock_thread_state = ELT_STOPPED;
280         wake_up(&expired_lock_wait_queue);
281         RETURN(0);
282 }
283
284 /**
285  * Check if there is a request in the export request list
286  * which prevents the lock canceling.
287  */
288 static int ldlm_lock_busy(struct ldlm_lock *lock)
289 {
290         struct ptlrpc_request *req;
291         int match = 0;
292         ENTRY;
293
294         if (lock->l_export == NULL)
295                 return 0;
296
297         spin_lock(&lock->l_export->exp_rpc_lock);
298         list_for_each_entry(req, &lock->l_export->exp_hp_rpcs,
299                                 rq_exp_list) {
300                 if (req->rq_ops->hpreq_lock_match) {
301                         match = req->rq_ops->hpreq_lock_match(req, lock);
302                         if (match)
303                                 break;
304                 }
305         }
306         spin_unlock(&lock->l_export->exp_rpc_lock);
307         RETURN(match);
308 }
309
310 /* This is called from within a timer interrupt and cannot schedule */
311 static void waiting_locks_callback(TIMER_DATA_TYPE unused)
312 {
313         struct ldlm_lock        *lock;
314         int                     need_dump = 0;
315
316         spin_lock_bh(&waiting_locks_spinlock);
317         while (!list_empty(&waiting_locks_list)) {
318                 lock = list_entry(waiting_locks_list.next, struct ldlm_lock,
319                                   l_pending_chain);
320                 if (lock->l_callback_timeout > ktime_get_seconds() ||
321                     lock->l_req_mode == LCK_GROUP)
322                         break;
323
324                 /* no needs to take an extra ref on the lock since it was in
325                  * the waiting_locks_list and ldlm_add_waiting_lock()
326                  * already grabbed a ref */
327                 list_del(&lock->l_pending_chain);
328                 list_add(&lock->l_pending_chain, &expired_lock_list);
329                 need_dump = 1;
330         }
331
332         if (!list_empty(&expired_lock_list)) {
333                 if (obd_dump_on_timeout && need_dump)
334                         expired_lock_dump = __LINE__;
335
336                 wake_up(&expired_lock_wait_queue);
337         }
338
339         /*
340          * Make sure the timer will fire again if we have any locks
341          * left.
342          */
343         if (!list_empty(&waiting_locks_list)) {
344                 unsigned long timeout_jiffies;
345
346                 lock = list_entry(waiting_locks_list.next, struct ldlm_lock,
347                                   l_pending_chain);
348                 timeout_jiffies = cfs_time_seconds(lock->l_callback_timeout);
349                 mod_timer(&waiting_locks_timer, timeout_jiffies);
350         }
351         spin_unlock_bh(&waiting_locks_spinlock);
352 }
353
354 /**
355  * Add lock to the list of contended locks.
356  *
357  * Indicate that we're waiting for a client to call us back cancelling a given
358  * lock.  We add it to the pending-callback chain, and schedule the lock-timeout
359  * timer to fire appropriately.  (We round up to the next second, to avoid
360  * floods of timer firings during periods of high lock contention and traffic).
361  * As done by ldlm_add_waiting_lock(), the caller must grab a lock reference
362  * if it has been added to the waiting list (1 is returned).
363  *
364  * Called with the namespace lock held.
365  */
366 static int __ldlm_add_waiting_lock(struct ldlm_lock *lock, time64_t seconds)
367 {
368         unsigned long timeout_jiffies;
369         time64_t timeout;
370
371         if (!list_empty(&lock->l_pending_chain))
372                 return 0;
373
374         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_HPREQ_NOTIMEOUT) ||
375             OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_HPREQ_TIMEOUT))
376                 seconds = 1;
377
378         timeout = ktime_get_seconds() + seconds;
379         if (likely(timeout > lock->l_callback_timeout))
380                 lock->l_callback_timeout = timeout;
381
382         timeout_jiffies = cfs_time_seconds(lock->l_callback_timeout);
383
384         if (time_before(timeout_jiffies, waiting_locks_timer.expires) ||
385             !timer_pending(&waiting_locks_timer))
386                 mod_timer(&waiting_locks_timer, timeout_jiffies);
387
388         /* if the new lock has a shorter timeout than something earlier on
389          * the list, we'll wait the longer amount of time; no big deal.
390          */
391         /* FIFO */
392         list_add_tail(&lock->l_pending_chain, &waiting_locks_list);
393         return 1;
394 }
395
396 static void ldlm_add_blocked_lock(struct ldlm_lock *lock)
397 {
398         spin_lock_bh(&lock->l_export->exp_bl_list_lock);
399         if (list_empty(&lock->l_exp_list)) {
400                 if (!ldlm_is_granted(lock))
401                         list_add_tail(&lock->l_exp_list,
402                                       &lock->l_export->exp_bl_list);
403                 else
404                         list_add(&lock->l_exp_list,
405                                  &lock->l_export->exp_bl_list);
406         }
407         spin_unlock_bh(&lock->l_export->exp_bl_list_lock);
408
409         /* A blocked lock is added. Adjust the position in
410          * the stale list if the export is in the list.
411          * If export is stale and not in the list - it is being
412          * processed and will be placed on the right position
413          * on obd_stale_export_put(). */
414         if (!list_empty(&lock->l_export->exp_stale_list))
415                 obd_stale_export_adjust(lock->l_export);
416 }
417
418 static int ldlm_add_waiting_lock(struct ldlm_lock *lock, time64_t timeout)
419 {
420         int ret;
421
422         /* NB: must be called with hold of lock_res_and_lock() */
423         LASSERT(ldlm_is_res_locked(lock));
424         LASSERT(!ldlm_is_cancel_on_block(lock));
425
426         /* Do not put cross-MDT lock in the waiting list, since we
427          * will not evict it due to timeout for now */
428         if (lock->l_export != NULL &&
429             (exp_connect_flags(lock->l_export) & OBD_CONNECT_MDS_MDS))
430                 return 0;
431
432         spin_lock_bh(&waiting_locks_spinlock);
433         if (ldlm_is_cancel(lock)) {
434                 spin_unlock_bh(&waiting_locks_spinlock);
435                 return 0;
436         }
437
438         if (ldlm_is_destroyed(lock)) {
439                 static time64_t next;
440
441                 spin_unlock_bh(&waiting_locks_spinlock);
442                 LDLM_ERROR(lock, "not waiting on destroyed lock (bug 5653)");
443                 if (ktime_get_seconds() > next) {
444                         next = ktime_get_seconds() + 14400;
445                         libcfs_debug_dumpstack(NULL);
446                 }
447                 return 0;
448         }
449
450         ldlm_set_waited(lock);
451         lock->l_blast_sent = ktime_get_real_seconds();
452         ret = __ldlm_add_waiting_lock(lock, timeout);
453         if (ret) {
454                 /* grab ref on the lock if it has been added to the
455                  * waiting list */
456                 LDLM_LOCK_GET(lock);
457         }
458         spin_unlock_bh(&waiting_locks_spinlock);
459
460         if (ret)
461                 ldlm_add_blocked_lock(lock);
462
463         LDLM_DEBUG(lock, "%sadding to wait list(timeout: %lld, AT: %s)",
464                    ret == 0 ? "not re-" : "", timeout,
465                    AT_OFF ? "off" : "on");
466         return ret;
467 }
468
469 /**
470  * Remove a lock from the pending list, likely because it had its cancellation
471  * callback arrive without incident.  This adjusts the lock-timeout timer if
472  * needed.  Returns 0 if the lock wasn't pending after all, 1 if it was.
473  * As done by ldlm_del_waiting_lock(), the caller must release the lock
474  * reference when the lock is removed from any list (1 is returned).
475  *
476  * Called with namespace lock held.
477  */
478 static int __ldlm_del_waiting_lock(struct ldlm_lock *lock)
479 {
480         struct list_head *list_next;
481
482         if (list_empty(&lock->l_pending_chain))
483                 return 0;
484
485         list_next = lock->l_pending_chain.next;
486         if (lock->l_pending_chain.prev == &waiting_locks_list) {
487                 /* Removing the head of the list, adjust timer. */
488                 if (list_next == &waiting_locks_list) {
489                         /* No more, just cancel. */
490                         del_timer(&waiting_locks_timer);
491                 } else {
492                         struct ldlm_lock *next;
493
494                         next = list_entry(list_next, struct ldlm_lock,
495                                           l_pending_chain);
496                         mod_timer(&waiting_locks_timer,
497                                   cfs_time_seconds(next->l_callback_timeout));
498                 }
499         }
500         list_del_init(&lock->l_pending_chain);
501
502         return 1;
503 }
504
505 int ldlm_del_waiting_lock(struct ldlm_lock *lock)
506 {
507         int ret;
508
509         if (lock->l_export == NULL) {
510                 /* We don't have a "waiting locks list" on clients. */
511                 CDEBUG(D_DLMTRACE, "Client lock %p : no-op\n", lock);
512                 return 0;
513         }
514
515         spin_lock_bh(&waiting_locks_spinlock);
516         ret = __ldlm_del_waiting_lock(lock);
517         ldlm_clear_waited(lock);
518         spin_unlock_bh(&waiting_locks_spinlock);
519
520         /* remove the lock out of export blocking list */
521         spin_lock_bh(&lock->l_export->exp_bl_list_lock);
522         list_del_init(&lock->l_exp_list);
523         spin_unlock_bh(&lock->l_export->exp_bl_list_lock);
524
525         if (ret) {
526                 /* release lock ref if it has indeed been removed
527                  * from a list */
528                 LDLM_LOCK_RELEASE(lock);
529         }
530
531         LDLM_DEBUG(lock, "%s", ret == 0 ? "wasn't waiting" : "removed");
532         return ret;
533 }
534
535 /**
536  * Prolong the contended lock waiting time.
537  *
538  * Called with namespace lock held.
539  */
540 int ldlm_refresh_waiting_lock(struct ldlm_lock *lock, time64_t timeout)
541 {
542         if (lock->l_export == NULL) {
543                 /* We don't have a "waiting locks list" on clients. */
544                 LDLM_DEBUG(lock, "client lock: no-op");
545                 return 0;
546         }
547
548         if (exp_connect_flags(lock->l_export) & OBD_CONNECT_MDS_MDS) {
549                 /* We don't have a "waiting locks list" on OSP. */
550                 LDLM_DEBUG(lock, "MDS-MDS lock: no-op");
551                 return 0;
552         }
553
554         spin_lock_bh(&waiting_locks_spinlock);
555
556         if (list_empty(&lock->l_pending_chain)) {
557                 spin_unlock_bh(&waiting_locks_spinlock);
558                 LDLM_DEBUG(lock, "wasn't waiting");
559                 return 0;
560         }
561
562         /* we remove/add the lock to the waiting list, so no needs to
563          * release/take a lock reference */
564         __ldlm_del_waiting_lock(lock);
565         __ldlm_add_waiting_lock(lock, timeout);
566         spin_unlock_bh(&waiting_locks_spinlock);
567
568         LDLM_DEBUG(lock, "refreshed");
569         return 1;
570 }
571 EXPORT_SYMBOL(ldlm_refresh_waiting_lock);
572
573 #else /* HAVE_SERVER_SUPPORT */
574
575 int ldlm_del_waiting_lock(struct ldlm_lock *lock)
576 {
577         RETURN(0);
578 }
579
580 int ldlm_refresh_waiting_lock(struct ldlm_lock *lock, time64_t timeout)
581 {
582         RETURN(0);
583 }
584
585 #endif /* !HAVE_SERVER_SUPPORT */
586
587 #ifdef HAVE_SERVER_SUPPORT
588
589 /**
590  * Calculate the per-export Blocking timeout (covering BL AST, data flush,
591  * lock cancel, and their replies). Used for lock callback timeout and AST
592  * re-send period.
593  *
594  * \param[in] lock        lock which is getting the blocking callback
595  *
596  * \retval            timeout in seconds to wait for the client reply
597  */
598 time64_t ldlm_bl_timeout(struct ldlm_lock *lock)
599 {
600         time64_t timeout;
601
602         if (AT_OFF)
603                 return obd_timeout / 2;
604
605         /* Since these are non-updating timeouts, we should be conservative.
606          * Take more than usually, 150%
607          * It would be nice to have some kind of "early reply" mechanism for
608          * lock callbacks too... */
609         timeout = at_get(&lock->l_export->exp_bl_lock_at);
610         return max(timeout + (timeout >> 1), (time64_t)ldlm_enqueue_min);
611 }
612 EXPORT_SYMBOL(ldlm_bl_timeout);
613
614 /**
615  * Perform lock cleanup if AST sending failed.
616  */
617 static void ldlm_failed_ast(struct ldlm_lock *lock, int rc,
618                             const char *ast_type)
619 {
620         LCONSOLE_ERROR_MSG(0x138, "%s: A client on nid %s was evicted due "
621                            "to a lock %s callback time out: rc %d\n",
622                            lock->l_export->exp_obd->obd_name,
623                            obd_export_nid2str(lock->l_export), ast_type, rc);
624
625         if (obd_dump_on_timeout)
626                 libcfs_debug_dumplog();
627         spin_lock_bh(&waiting_locks_spinlock);
628         if (__ldlm_del_waiting_lock(lock) == 0)
629                 /* the lock was not in any list, grab an extra ref before adding
630                  * the lock to the expired list */
631                 LDLM_LOCK_GET(lock);
632         lock->l_callback_timeout = 0; /* differentiate it from expired locks */
633         list_add(&lock->l_pending_chain, &expired_lock_list);
634         wake_up(&expired_lock_wait_queue);
635         spin_unlock_bh(&waiting_locks_spinlock);
636 }
637
638 /**
639  * Perform lock cleanup if AST reply came with error.
640  */
641 static int ldlm_handle_ast_error(struct ldlm_lock *lock,
642                                  struct ptlrpc_request *req, int rc,
643                                  const char *ast_type)
644 {
645         struct lnet_process_id peer = req->rq_import->imp_connection->c_peer;
646
647         if (!req->rq_replied || (rc && rc != -EINVAL)) {
648                 if (ldlm_is_cancel(lock)) {
649                         LDLM_DEBUG(lock,
650                                    "%s AST (req@%p x%llu) timeout from nid %s, but cancel was received (AST reply lost?)",
651                                    ast_type, req, req->rq_xid,
652                                    libcfs_nid2str(peer.nid));
653                         ldlm_lock_cancel(lock);
654                         rc = -ERESTART;
655                 } else if (rc == -ENODEV || rc == -ESHUTDOWN ||
656                            (rc == -EIO &&
657                             req->rq_import->imp_state == LUSTRE_IMP_CLOSED)) {
658                         /* Upon umount process the AST fails because cannot be
659                          * sent. This shouldn't lead to the client eviction.
660                          * -ENODEV error is returned by ptl_send_rpc() for
661                          *  new request in such import.
662                          * -SHUTDOWN is returned by ptlrpc_import_delay_req()
663                          *  if imp_invalid is set or obd_no_recov.
664                          * Meanwhile there is also check for LUSTRE_IMP_CLOSED
665                          * in ptlrpc_import_delay_req() as well with -EIO code.
666                          * In all such cases errors are ignored.
667                          */
668                         LDLM_DEBUG(lock, "%s AST can't be sent due to a server"
669                                          " %s failure or umount process: rc = %d\n",
670                                          ast_type,
671                                          req->rq_import->imp_obd->obd_name, rc);
672                 } else {
673                         LDLM_ERROR(lock,
674                                    "client (nid %s) %s %s AST (req@%p x%llu status %d rc %d), evict it",
675                                    libcfs_nid2str(peer.nid),
676                                    req->rq_replied ? "returned error from" :
677                                    "failed to reply to",
678                                    ast_type, req, req->rq_xid,
679                                    (req->rq_repmsg != NULL) ?
680                                    lustre_msg_get_status(req->rq_repmsg) : 0,
681                                    rc);
682                         ldlm_failed_ast(lock, rc, ast_type);
683                 }
684                 return rc;
685         }
686
687         if (rc == -EINVAL) {
688                 struct ldlm_resource *res = lock->l_resource;
689
690                 LDLM_DEBUG(lock,
691                            "client (nid %s) returned %d from %s AST (req@%p x%llu) - normal race",
692                            libcfs_nid2str(peer.nid),
693                            req->rq_repmsg ?
694                            lustre_msg_get_status(req->rq_repmsg) : -1,
695                            ast_type, req, req->rq_xid);
696                 if (res) {
697                         /* update lvbo to return proper attributes.
698                          * see bug 23174 */
699                         ldlm_resource_getref(res);
700                         ldlm_lvbo_update(res, lock, NULL, 1);
701                         ldlm_resource_putref(res);
702                 }
703                 ldlm_lock_cancel(lock);
704                 rc = -ERESTART;
705         }
706
707         return rc;
708 }
709
710 static int ldlm_cb_interpret(const struct lu_env *env,
711                              struct ptlrpc_request *req, void *args, int rc)
712 {
713         struct ldlm_cb_async_args *ca   = args;
714         struct ldlm_lock          *lock = ca->ca_lock;
715         struct ldlm_cb_set_arg    *arg  = ca->ca_set_arg;
716         ENTRY;
717
718         LASSERT(lock != NULL);
719
720         switch (arg->type) {
721         case LDLM_GL_CALLBACK:
722                 /* Update the LVB from disk if the AST failed
723                  * (this is a legal race)
724                  *
725                  * - Glimpse callback of local lock just returns
726                  *   -ELDLM_NO_LOCK_DATA.
727                  * - Glimpse callback of remote lock might return
728                  *   -ELDLM_NO_LOCK_DATA when inode is cleared. LU-274
729                  */
730                 if (unlikely(arg->gl_interpret_reply)) {
731                         rc = arg->gl_interpret_reply(NULL, req, args, rc);
732                 } else if (rc == -ELDLM_NO_LOCK_DATA) {
733                         LDLM_DEBUG(lock,
734                                    "lost race - client has a lock but no inode");
735                         ldlm_lvbo_update(lock->l_resource, lock, NULL, 1);
736                 } else if (rc != 0) {
737                         rc = ldlm_handle_ast_error(lock, req, rc, "glimpse");
738                 } else {
739                         rc = ldlm_lvbo_update(lock->l_resource,
740                                               lock, req, 1);
741                 }
742                 break;
743         case LDLM_BL_CALLBACK:
744                 if (rc != 0)
745                         rc = ldlm_handle_ast_error(lock, req, rc, "blocking");
746                 break;
747         case LDLM_CP_CALLBACK:
748                 if (rc != 0)
749                         rc = ldlm_handle_ast_error(lock, req, rc, "completion");
750                 break;
751         default:
752                 LDLM_ERROR(lock, "invalid opcode for lock callback %d",
753                            arg->type);
754                 LBUG();
755         }
756
757         /* release extra reference taken in ldlm_ast_fini() */
758         LDLM_LOCK_RELEASE(lock);
759
760         if (rc == -ERESTART)
761                 atomic_inc(&arg->restart);
762
763         RETURN(0);
764 }
765
766 static void ldlm_update_resend(struct ptlrpc_request *req, void *data)
767 {
768         struct ldlm_cb_async_args *ca = data;
769         struct ldlm_lock *lock = ca->ca_lock;
770
771         ldlm_refresh_waiting_lock(lock, ldlm_bl_timeout(lock));
772 }
773
774 static inline int ldlm_ast_fini(struct ptlrpc_request *req,
775                                 struct ldlm_cb_set_arg *arg,
776                                 struct ldlm_lock *lock,
777                                 int instant_cancel)
778 {
779         int rc = 0;
780         ENTRY;
781
782         if (unlikely(instant_cancel)) {
783                 rc = ptl_send_rpc(req, 1);
784                 ptlrpc_req_finished(req);
785                 if (rc == 0)
786                         atomic_inc(&arg->restart);
787         } else {
788                 LDLM_LOCK_GET(lock);
789                 ptlrpc_set_add_req(arg->set, req);
790         }
791
792         RETURN(rc);
793 }
794
795 /**
796  * Check if there are requests in the export request list which prevent
797  * the lock canceling and make these requests high priority ones.
798  */
799 static void ldlm_lock_reorder_req(struct ldlm_lock *lock)
800 {
801         struct ptlrpc_request *req;
802         ENTRY;
803
804         if (lock->l_export == NULL) {
805                 LDLM_DEBUG(lock, "client lock: no-op");
806                 RETURN_EXIT;
807         }
808
809         spin_lock(&lock->l_export->exp_rpc_lock);
810         list_for_each_entry(req, &lock->l_export->exp_hp_rpcs,
811                             rq_exp_list) {
812                 /* Do not process requests that were not yet added to there
813                  * incoming queue or were already removed from there for
814                  * processing. We evaluate ptlrpc_nrs_req_can_move() without
815                  * holding svcpt->scp_req_lock, and then redo the check with
816                  * the lock held once we need to obtain a reliable result.
817                  */
818                 if (ptlrpc_nrs_req_can_move(req) &&
819                     req->rq_ops->hpreq_lock_match &&
820                     req->rq_ops->hpreq_lock_match(req, lock))
821                         ptlrpc_nrs_req_hp_move(req);
822         }
823         spin_unlock(&lock->l_export->exp_rpc_lock);
824         EXIT;
825 }
826
827 /**
828  * ->l_blocking_ast() method for server-side locks. This is invoked when newly
829  * enqueued server lock conflicts with given one.
830  *
831  * Sends blocking AST RPC to the client owning that lock; arms timeout timer
832  * to wait for client response.
833  */
834 int ldlm_server_blocking_ast(struct ldlm_lock *lock,
835                              struct ldlm_lock_desc *desc,
836                              void *data, int flag)
837 {
838         struct ldlm_cb_async_args *ca;
839         struct ldlm_cb_set_arg *arg = data;
840         struct ldlm_request    *body;
841         struct ptlrpc_request  *req;
842         int                     instant_cancel = 0;
843         int                     rc = 0;
844         ENTRY;
845
846         if (flag == LDLM_CB_CANCELING)
847                 /* Don't need to do anything here. */
848                 RETURN(0);
849
850         if (OBD_FAIL_PRECHECK(OBD_FAIL_LDLM_SRV_BL_AST)) {
851                 LDLM_DEBUG(lock, "dropping BL AST");
852                 RETURN(0);
853         }
854
855         LASSERT(lock);
856         LASSERT(data != NULL);
857         if (lock->l_export->exp_obd->obd_recovering != 0)
858                 LDLM_ERROR(lock, "BUG 6063: lock collide during recovery");
859
860         ldlm_lock_reorder_req(lock);
861
862         req = ptlrpc_request_alloc_pack(lock->l_export->exp_imp_reverse,
863                                         &RQF_LDLM_BL_CALLBACK,
864                                         LUSTRE_DLM_VERSION, LDLM_BL_CALLBACK);
865         if (req == NULL)
866                 RETURN(-ENOMEM);
867
868         CLASSERT(sizeof(*ca) <= sizeof(req->rq_async_args));
869         ca = ptlrpc_req_async_args(req);
870         ca->ca_set_arg = arg;
871         ca->ca_lock = lock;
872
873         req->rq_interpret_reply = ldlm_cb_interpret;
874
875         lock_res_and_lock(lock);
876         if (ldlm_is_destroyed(lock)) {
877                 /* What's the point? */
878                 unlock_res_and_lock(lock);
879                 ptlrpc_req_finished(req);
880                 RETURN(0);
881         }
882
883         if (!ldlm_is_granted(lock)) {
884                 /* this blocking AST will be communicated as part of the
885                  * completion AST instead */
886                 ldlm_add_blocked_lock(lock);
887                 ldlm_set_waited(lock);
888                 unlock_res_and_lock(lock);
889
890                 ptlrpc_req_finished(req);
891                 LDLM_DEBUG(lock, "lock not granted, not sending blocking AST");
892                 RETURN(0);
893         }
894
895         if (ldlm_is_cancel_on_block(lock))
896                 instant_cancel = 1;
897
898         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
899         body->lock_handle[0] = lock->l_remote_handle;
900         body->lock_desc = *desc;
901         body->lock_flags |= ldlm_flags_to_wire(lock->l_flags & LDLM_FL_AST_MASK);
902
903         LDLM_DEBUG(lock, "server preparing blocking AST");
904
905         ptlrpc_request_set_replen(req);
906         ldlm_set_cbpending(lock);
907         if (instant_cancel) {
908                 unlock_res_and_lock(lock);
909                 ldlm_lock_cancel(lock);
910
911                 req->rq_no_resend = 1;
912         } else {
913                 LASSERT(ldlm_is_granted(lock));
914                 ldlm_add_waiting_lock(lock, ldlm_bl_timeout(lock));
915                 unlock_res_and_lock(lock);
916
917                 /* Do not resend after lock callback timeout */
918                 req->rq_delay_limit = ldlm_bl_timeout(lock);
919                 req->rq_resend_cb = ldlm_update_resend;
920         }
921
922         req->rq_send_state = LUSTRE_IMP_FULL;
923         /* ptlrpc_request_alloc_pack already set timeout */
924         if (AT_OFF)
925                 req->rq_timeout = ldlm_get_rq_timeout();
926
927         if (lock->l_export && lock->l_export->exp_nid_stats &&
928             lock->l_export->exp_nid_stats->nid_ldlm_stats)
929                 lprocfs_counter_incr(lock->l_export->exp_nid_stats->nid_ldlm_stats,
930                                      LDLM_BL_CALLBACK - LDLM_FIRST_OPC);
931
932         rc = ldlm_ast_fini(req, arg, lock, instant_cancel);
933
934         RETURN(rc);
935 }
936
937 /**
938  * ->l_completion_ast callback for a remote lock in server namespace.
939  *
940  *  Sends AST to the client notifying it of lock granting.  If initial
941  *  lock response was not sent yet, instead of sending another RPC, just
942  *  mark the lock as granted and client will understand
943  */
944 int ldlm_server_completion_ast(struct ldlm_lock *lock, __u64 flags, void *data)
945 {
946         struct ldlm_cb_set_arg *arg = data;
947         struct ldlm_request    *body;
948         struct ptlrpc_request  *req;
949         struct ldlm_cb_async_args *ca;
950         int                     instant_cancel = 0;
951         int                     rc = 0;
952         int                     lvb_len;
953         ENTRY;
954
955         LASSERT(lock != NULL);
956         LASSERT(data != NULL);
957
958         if (OBD_FAIL_PRECHECK(OBD_FAIL_LDLM_SRV_CP_AST)) {
959                 LDLM_DEBUG(lock, "dropping CP AST");
960                 RETURN(0);
961         }
962
963         req = ptlrpc_request_alloc(lock->l_export->exp_imp_reverse,
964                                     &RQF_LDLM_CP_CALLBACK);
965         if (req == NULL)
966                 RETURN(-ENOMEM);
967
968         /* server namespace, doesn't need lock */
969         lvb_len = ldlm_lvbo_size(lock);
970         /* LU-3124 & LU-2187: to not return layout in completion AST because
971          * it may deadlock for LU-2187, or client may not have enough space
972          * for large layout. The layout will be returned to client with an
973          * extra RPC to fetch xattr.lov */
974         if (ldlm_has_layout(lock))
975                 lvb_len = 0;
976
977         req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB, RCL_CLIENT, lvb_len);
978         rc = ptlrpc_request_pack(req, LUSTRE_DLM_VERSION, LDLM_CP_CALLBACK);
979         if (rc) {
980                 ptlrpc_request_free(req);
981                 RETURN(rc);
982         }
983
984         CLASSERT(sizeof(*ca) <= sizeof(req->rq_async_args));
985         ca = ptlrpc_req_async_args(req);
986         ca->ca_set_arg = arg;
987         ca->ca_lock = lock;
988
989         req->rq_interpret_reply = ldlm_cb_interpret;
990         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
991
992         body->lock_handle[0] = lock->l_remote_handle;
993         body->lock_flags = ldlm_flags_to_wire(flags);
994         ldlm_lock2desc(lock, &body->lock_desc);
995         if (lvb_len > 0) {
996                 void *lvb = req_capsule_client_get(&req->rq_pill, &RMF_DLM_LVB);
997                 lvb_len = ldlm_lvbo_fill(lock, lvb, &lvb_len);
998                 if (lvb_len < 0) {
999                         /* We still need to send the RPC to wake up the blocked
1000                          * enqueue thread on the client.
1001                          *
1002                          * Consider old client, there is no better way to notify
1003                          * the failure, just zero-sized the LVB, then the client
1004                          * will fail out as "-EPROTO". */
1005                         req_capsule_shrink(&req->rq_pill, &RMF_DLM_LVB, 0,
1006                                            RCL_CLIENT);
1007                         instant_cancel = 1;
1008                 } else {
1009                         req_capsule_shrink(&req->rq_pill, &RMF_DLM_LVB, lvb_len,
1010                                            RCL_CLIENT);
1011                 }
1012         }
1013
1014         LDLM_DEBUG(lock, "server preparing completion AST");
1015
1016         ptlrpc_request_set_replen(req);
1017
1018         req->rq_send_state = LUSTRE_IMP_FULL;
1019         /* ptlrpc_request_pack already set timeout */
1020         if (AT_OFF)
1021                 req->rq_timeout = ldlm_get_rq_timeout();
1022
1023         /* We only send real blocking ASTs after the lock is granted */
1024         lock_res_and_lock(lock);
1025         if (ldlm_is_ast_sent(lock)) {
1026                 body->lock_flags |= ldlm_flags_to_wire(LDLM_FL_AST_SENT);
1027                 /* Copy AST flags like LDLM_FL_DISCARD_DATA. */
1028                 body->lock_flags |= ldlm_flags_to_wire(lock->l_flags &
1029                                                        LDLM_FL_AST_MASK);
1030
1031                 /* We might get here prior to ldlm_handle_enqueue setting
1032                  * LDLM_FL_CANCEL_ON_BLOCK flag. Then we will put this lock
1033                  * into waiting list, but this is safe and similar code in
1034                  * ldlm_handle_enqueue will call ldlm_lock_cancel() still,
1035                  * that would not only cancel the lock, but will also remove
1036                  * it from waiting list */
1037                 if (ldlm_is_cancel_on_block(lock)) {
1038                         unlock_res_and_lock(lock);
1039                         ldlm_lock_cancel(lock);
1040
1041                         instant_cancel = 1;
1042                         req->rq_no_resend = 1;
1043
1044                         lock_res_and_lock(lock);
1045                 } else {
1046                         /* start the lock-timeout clock */
1047                         ldlm_add_waiting_lock(lock, ldlm_bl_timeout(lock));
1048                         /* Do not resend after lock callback timeout */
1049                         req->rq_delay_limit = ldlm_bl_timeout(lock);
1050                         req->rq_resend_cb = ldlm_update_resend;
1051                 }
1052         }
1053         unlock_res_and_lock(lock);
1054
1055         if (lock->l_export && lock->l_export->exp_nid_stats &&
1056             lock->l_export->exp_nid_stats->nid_ldlm_stats)
1057                 lprocfs_counter_incr(lock->l_export->exp_nid_stats->nid_ldlm_stats,
1058                                      LDLM_CP_CALLBACK - LDLM_FIRST_OPC);
1059
1060         rc = ldlm_ast_fini(req, arg, lock, instant_cancel);
1061
1062         RETURN(lvb_len < 0 ? lvb_len : rc);
1063 }
1064
1065 /**
1066  * Server side ->l_glimpse_ast handler for client locks.
1067  *
1068  * Sends glimpse AST to the client and waits for reply. Then updates
1069  * lvbo with the result.
1070  */
1071 int ldlm_server_glimpse_ast(struct ldlm_lock *lock, void *data)
1072 {
1073         struct ldlm_cb_set_arg          *arg = data;
1074         struct ldlm_request             *body;
1075         struct ptlrpc_request           *req;
1076         struct ldlm_cb_async_args       *ca;
1077         int                              rc;
1078         struct req_format               *req_fmt;
1079         ENTRY;
1080
1081         LASSERT(lock != NULL);
1082
1083         if (arg->gl_desc != NULL)
1084                 /* There is a glimpse descriptor to pack */
1085                 req_fmt = &RQF_LDLM_GL_CALLBACK_DESC;
1086         else
1087                 req_fmt = &RQF_LDLM_GL_CALLBACK;
1088
1089         req = ptlrpc_request_alloc_pack(lock->l_export->exp_imp_reverse,
1090                                         req_fmt, LUSTRE_DLM_VERSION,
1091                                         LDLM_GL_CALLBACK);
1092
1093         if (req == NULL)
1094                 RETURN(-ENOMEM);
1095
1096         if (arg->gl_desc != NULL) {
1097                 /* copy the GL descriptor */
1098                 union ldlm_gl_desc      *desc;
1099                 desc = req_capsule_client_get(&req->rq_pill, &RMF_DLM_GL_DESC);
1100                 *desc = *arg->gl_desc;
1101         }
1102
1103         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
1104         body->lock_handle[0] = lock->l_remote_handle;
1105         ldlm_lock2desc(lock, &body->lock_desc);
1106
1107         CLASSERT(sizeof(*ca) <= sizeof(req->rq_async_args));
1108         ca = ptlrpc_req_async_args(req);
1109         ca->ca_set_arg = arg;
1110         ca->ca_lock = lock;
1111
1112         /* server namespace, doesn't need lock */
1113         req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB, RCL_SERVER,
1114                              ldlm_lvbo_size(lock));
1115         ptlrpc_request_set_replen(req);
1116
1117         req->rq_send_state = LUSTRE_IMP_FULL;
1118         /* ptlrpc_request_alloc_pack already set timeout */
1119         if (AT_OFF)
1120                 req->rq_timeout = ldlm_get_rq_timeout();
1121
1122         req->rq_interpret_reply = ldlm_cb_interpret;
1123
1124         if (lock->l_export && lock->l_export->exp_nid_stats &&
1125             lock->l_export->exp_nid_stats->nid_ldlm_stats)
1126                 lprocfs_counter_incr(lock->l_export->exp_nid_stats->nid_ldlm_stats,
1127                                      LDLM_GL_CALLBACK - LDLM_FIRST_OPC);
1128
1129         rc = ldlm_ast_fini(req, arg, lock, 0);
1130
1131         RETURN(rc);
1132 }
1133 EXPORT_SYMBOL(ldlm_server_glimpse_ast);
1134
1135 int ldlm_glimpse_locks(struct ldlm_resource *res,
1136                        struct list_head *gl_work_list)
1137 {
1138         int     rc;
1139         ENTRY;
1140
1141         rc = ldlm_run_ast_work(ldlm_res_to_ns(res), gl_work_list,
1142                                LDLM_WORK_GL_AST);
1143         if (rc == -ERESTART)
1144                 ldlm_reprocess_all(res, NULL);
1145
1146         RETURN(rc);
1147 }
1148 EXPORT_SYMBOL(ldlm_glimpse_locks);
1149
1150 /* return LDLM lock associated with a lock callback request */
1151 struct ldlm_lock *ldlm_request_lock(struct ptlrpc_request *req)
1152 {
1153         struct ldlm_cb_async_args       *ca;
1154         struct ldlm_lock                *lock;
1155         ENTRY;
1156
1157         ca = ptlrpc_req_async_args(req);
1158         lock = ca->ca_lock;
1159         if (lock == NULL)
1160                 RETURN(ERR_PTR(-EFAULT));
1161
1162         RETURN(lock);
1163 }
1164 EXPORT_SYMBOL(ldlm_request_lock);
1165
1166 /**
1167  * Main server-side entry point into LDLM for enqueue. This is called by ptlrpc
1168  * service threads to carry out client lock enqueueing requests.
1169  */
1170 int ldlm_handle_enqueue0(struct ldlm_namespace *ns,
1171                          struct ptlrpc_request *req,
1172                          const struct ldlm_request *dlm_req,
1173                          const struct ldlm_callback_suite *cbs)
1174 {
1175         struct ldlm_reply *dlm_rep;
1176         __u64 flags;
1177         enum ldlm_error err = ELDLM_OK;
1178         struct ldlm_lock *lock = NULL;
1179         void *cookie = NULL;
1180         int rc = 0;
1181         struct ldlm_resource *res = NULL;
1182         const struct lu_env *env = req->rq_svc_thread->t_env;
1183         ENTRY;
1184
1185         LDLM_DEBUG_NOLOCK("server-side enqueue handler START");
1186
1187         ldlm_request_cancel(req, dlm_req, LDLM_ENQUEUE_CANCEL_OFF, LATF_SKIP);
1188         flags = ldlm_flags_from_wire(dlm_req->lock_flags);
1189
1190         LASSERT(req->rq_export);
1191
1192         /* for intent enqueue the stat will be updated inside intent policy */
1193         if (ptlrpc_req2svc(req)->srv_stats != NULL &&
1194             !(dlm_req->lock_flags & LDLM_FL_HAS_INTENT))
1195                 ldlm_svc_get_eopc(dlm_req, ptlrpc_req2svc(req)->srv_stats);
1196
1197         if (req->rq_export && req->rq_export->exp_nid_stats &&
1198             req->rq_export->exp_nid_stats->nid_ldlm_stats)
1199                 lprocfs_counter_incr(req->rq_export->exp_nid_stats->nid_ldlm_stats,
1200                                      LDLM_ENQUEUE - LDLM_FIRST_OPC);
1201
1202         if (unlikely(dlm_req->lock_desc.l_resource.lr_type < LDLM_MIN_TYPE ||
1203                      dlm_req->lock_desc.l_resource.lr_type >= LDLM_MAX_TYPE)) {
1204                 DEBUG_REQ(D_ERROR, req, "invalid lock request type %d",
1205                           dlm_req->lock_desc.l_resource.lr_type);
1206                 GOTO(out, rc = -EFAULT);
1207         }
1208
1209         if (unlikely(dlm_req->lock_desc.l_req_mode <= LCK_MINMODE ||
1210                      dlm_req->lock_desc.l_req_mode >= LCK_MAXMODE ||
1211                      dlm_req->lock_desc.l_req_mode &
1212                      (dlm_req->lock_desc.l_req_mode-1))) {
1213                 DEBUG_REQ(D_ERROR, req, "invalid lock request mode %d",
1214                           dlm_req->lock_desc.l_req_mode);
1215                 GOTO(out, rc = -EFAULT);
1216         }
1217
1218         if (unlikely((flags & LDLM_FL_REPLAY) ||
1219                      (lustre_msg_get_flags(req->rq_reqmsg) & MSG_RESENT))) {
1220                 /* Find an existing lock in the per-export lock hash */
1221                 /* In the function below, .hs_keycmp resolves to
1222                  * ldlm_export_lock_keycmp() */
1223                 /* coverity[overrun-buffer-val] */
1224                 lock = cfs_hash_lookup(req->rq_export->exp_lock_hash,
1225                                        (void *)&dlm_req->lock_handle[0]);
1226                 if (lock != NULL) {
1227                         DEBUG_REQ(D_DLMTRACE, req, "found existing lock cookie %#llx",
1228                                   lock->l_handle.h_cookie);
1229                         flags |= LDLM_FL_RESENT;
1230                         GOTO(existing_lock, rc = 0);
1231                 }
1232         } else {
1233                 if (ldlm_reclaim_full()) {
1234                         DEBUG_REQ(D_DLMTRACE, req, "Too many granted locks, "
1235                                   "reject current enqueue request and let the "
1236                                   "client retry later.\n");
1237                         GOTO(out, rc = -EINPROGRESS);
1238                 }
1239         }
1240
1241         /* The lock's callback data might be set in the policy function */
1242         lock = ldlm_lock_create(ns, &dlm_req->lock_desc.l_resource.lr_name,
1243                                 dlm_req->lock_desc.l_resource.lr_type,
1244                                 dlm_req->lock_desc.l_req_mode,
1245                                 cbs, NULL, 0, LVB_T_NONE);
1246         if (IS_ERR(lock)) {
1247                 rc = PTR_ERR(lock);
1248                 lock = NULL;
1249                 GOTO(out, rc);
1250         }
1251
1252         lock->l_remote_handle = dlm_req->lock_handle[0];
1253         LDLM_DEBUG(lock, "server-side enqueue handler, new lock created");
1254
1255         /* Initialize resource lvb but not for a lock being replayed since
1256          * Client already got lvb sent in this case.
1257          * This must occur early since some policy methods assume resource
1258          * lvb is available (lr_lvb_data != NULL).
1259          */
1260         res = lock->l_resource;
1261         if (!(flags & LDLM_FL_REPLAY)) {
1262                 /* non-replayed lock, delayed lvb init may need to be done */
1263                 rc = ldlm_lvbo_init(res);
1264                 if (rc < 0) {
1265                         LDLM_DEBUG(lock, "delayed lvb init failed (rc %d)", rc);
1266                         GOTO(out, rc);
1267                 }
1268         }
1269
1270         OBD_FAIL_TIMEOUT(OBD_FAIL_LDLM_ENQUEUE_BLOCKED, obd_timeout * 2);
1271         /* Don't enqueue a lock onto the export if it is been disonnected
1272          * due to eviction (bug 3822) or server umount (bug 24324).
1273          * Cancel it now instead. */
1274         if (req->rq_export->exp_disconnected) {
1275                 LDLM_ERROR(lock, "lock on disconnected export %p",
1276                            req->rq_export);
1277                 GOTO(out, rc = -ENOTCONN);
1278         }
1279
1280         lock->l_export = class_export_lock_get(req->rq_export, lock);
1281         if (lock->l_export->exp_lock_hash)
1282                 cfs_hash_add(lock->l_export->exp_lock_hash,
1283                              &lock->l_remote_handle,
1284                              &lock->l_exp_hash);
1285
1286         /* Inherit the enqueue flags before the operation, because we do not
1287          * keep the res lock on return and next operations (BL AST) may proceed
1288          * without them. */
1289         lock->l_flags |= ldlm_flags_from_wire(dlm_req->lock_flags &
1290                                               LDLM_FL_INHERIT_MASK);
1291
1292         ldlm_convert_policy_to_local(req->rq_export,
1293                                      dlm_req->lock_desc.l_resource.lr_type,
1294                                      &dlm_req->lock_desc.l_policy_data,
1295                                      &lock->l_policy_data);
1296         if (dlm_req->lock_desc.l_resource.lr_type == LDLM_EXTENT)
1297                 lock->l_req_extent = lock->l_policy_data.l_extent;
1298
1299 existing_lock:
1300         if (flags & LDLM_FL_HAS_INTENT) {
1301                 /* In this case, the reply buffer is allocated deep in
1302                  * local_lock_enqueue by the policy function. */
1303                 cookie = req;
1304         } else {
1305                 /* based on the assumption that lvb size never changes during
1306                  * resource life time otherwise it need resource->lr_lock's
1307                  * protection */
1308                 req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB,
1309                                      RCL_SERVER, ldlm_lvbo_size(lock));
1310
1311                 if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_ENQUEUE_EXTENT_ERR))
1312                         GOTO(out, rc = -ENOMEM);
1313
1314                 rc = req_capsule_server_pack(&req->rq_pill);
1315                 if (rc)
1316                         GOTO(out, rc);
1317         }
1318
1319         err = ldlm_lock_enqueue(env, ns, &lock, cookie, &flags);
1320         if (err) {
1321                 if ((int)err < 0)
1322                         rc = (int)err;
1323                 GOTO(out, err);
1324         }
1325
1326         dlm_rep = req_capsule_server_get(&req->rq_pill, &RMF_DLM_REP);
1327
1328         ldlm_lock2desc(lock, &dlm_rep->lock_desc);
1329         ldlm_lock2handle(lock, &dlm_rep->lock_handle);
1330
1331         if (lock && lock->l_resource->lr_type == LDLM_EXTENT)
1332                 OBD_FAIL_TIMEOUT(OBD_FAIL_LDLM_BL_EVICT, 6);
1333
1334         /* We never send a blocking AST until the lock is granted, but
1335          * we can tell it right now */
1336         lock_res_and_lock(lock);
1337
1338         /* Now take into account flags to be inherited from original lock
1339            request both in reply to client and in our own lock flags. */
1340         dlm_rep->lock_flags = ldlm_flags_to_wire(flags);
1341         lock->l_flags |= flags & LDLM_FL_INHERIT_MASK;
1342
1343         /* Don't move a pending lock onto the export if it has already been
1344          * disconnected due to eviction (bug 5683) or server umount (bug 24324).
1345          * Cancel it now instead. */
1346         if (unlikely(req->rq_export->exp_disconnected ||
1347                      OBD_FAIL_CHECK(OBD_FAIL_LDLM_ENQUEUE_OLD_EXPORT))) {
1348                 LDLM_ERROR(lock, "lock on destroyed export %p", req->rq_export);
1349                 rc = -ENOTCONN;
1350         } else if (ldlm_is_ast_sent(lock)) {
1351                 /* fill lock desc for possible lock convert */
1352                 if (lock->l_blocking_lock &&
1353                     lock->l_resource->lr_type == LDLM_IBITS) {
1354                         struct ldlm_lock *bl_lock = lock->l_blocking_lock;
1355                         struct ldlm_lock_desc *rep_desc = &dlm_rep->lock_desc;
1356
1357                         LDLM_DEBUG(lock,
1358                                    "save blocking bits %llx in granted lock",
1359                                    bl_lock->l_policy_data.l_inodebits.bits);
1360                         /* If lock is blocked then save blocking ibits
1361                          * in returned lock policy for the possible lock
1362                          * convert on a client.
1363                          */
1364                         rep_desc->l_policy_data.l_inodebits.cancel_bits =
1365                                 bl_lock->l_policy_data.l_inodebits.bits;
1366                 }
1367                 dlm_rep->lock_flags |= ldlm_flags_to_wire(LDLM_FL_AST_SENT);
1368                 if (ldlm_is_granted(lock)) {
1369                         /*
1370                          * Only cancel lock if it was granted, because it would
1371                          * be destroyed immediately and would never be granted
1372                          * in the future, causing timeouts on client.  Not
1373                          * granted lock will be cancelled immediately after
1374                          * sending completion AST.
1375                          */
1376                         if (dlm_rep->lock_flags & LDLM_FL_CANCEL_ON_BLOCK) {
1377                                 unlock_res_and_lock(lock);
1378                                 ldlm_lock_cancel(lock);
1379                                 lock_res_and_lock(lock);
1380                         } else {
1381                                 ldlm_add_waiting_lock(lock,
1382                                                       ldlm_bl_timeout(lock));
1383                         }
1384                 }
1385         }
1386         unlock_res_and_lock(lock);
1387
1388         EXIT;
1389  out:
1390         req->rq_status = rc ?: err; /* return either error - bug 11190 */
1391         if (!req->rq_packed_final) {
1392                 err = lustre_pack_reply(req, 1, NULL, NULL);
1393                 if (rc == 0)
1394                         rc = err;
1395         }
1396
1397         /* The LOCK_CHANGED code in ldlm_lock_enqueue depends on this
1398          * ldlm_reprocess_all.  If this moves, revisit that code. -phil */
1399         if (lock != NULL) {
1400                 LDLM_DEBUG(lock, "server-side enqueue handler, sending reply"
1401                            "(err=%d, rc=%d)", err, rc);
1402
1403                 if (rc == 0 &&
1404                     req_capsule_has_field(&req->rq_pill, &RMF_DLM_LVB,
1405                                           RCL_SERVER) &&
1406                     ldlm_lvbo_size(lock) > 0) {
1407                         void *buf;
1408                         int buflen;
1409
1410 retry:
1411                         buf = req_capsule_server_get(&req->rq_pill,
1412                                                      &RMF_DLM_LVB);
1413                         LASSERTF(buf != NULL, "req %p, lock %p\n", req, lock);
1414                         buflen = req_capsule_get_size(&req->rq_pill,
1415                                         &RMF_DLM_LVB, RCL_SERVER);
1416                         /* non-replayed lock, delayed lvb init may
1417                          * need to be occur now
1418                          */
1419                         if ((buflen > 0) && !(flags & LDLM_FL_REPLAY)) {
1420                                 int rc2;
1421
1422                                 rc2 = ldlm_lvbo_fill(lock, buf, &buflen);
1423                                 if (rc2 >= 0) {
1424                                         req_capsule_shrink(&req->rq_pill,
1425                                                            &RMF_DLM_LVB,
1426                                                            rc2, RCL_SERVER);
1427                                 } else if (rc2 == -ERANGE) {
1428                                         rc2 = req_capsule_server_grow(
1429                                                         &req->rq_pill,
1430                                                         &RMF_DLM_LVB, buflen);
1431                                         if (!rc2) {
1432                                                 goto retry;
1433                                         } else {
1434                                                 /* if we can't grow the buffer,
1435                                                  * it's ok to return empty lvb
1436                                                  * to client.
1437                                                  */
1438                                                 req_capsule_shrink(
1439                                                         &req->rq_pill,
1440                                                         &RMF_DLM_LVB, 0,
1441                                                         RCL_SERVER);
1442                                         }
1443                                 } else {
1444                                         rc = rc2;
1445                                 }
1446                         } else if (flags & LDLM_FL_REPLAY) {
1447                                 /* no LVB resend upon replay */
1448                                 if (buflen > 0)
1449                                         req_capsule_shrink(&req->rq_pill,
1450                                                            &RMF_DLM_LVB,
1451                                                            0, RCL_SERVER);
1452                                 else
1453                                         rc = buflen;
1454                         } else {
1455                                 rc = buflen;
1456                         }
1457                 }
1458
1459                 if (rc != 0 && !(flags & LDLM_FL_RESENT)) {
1460                         if (lock->l_export) {
1461                                 ldlm_lock_cancel(lock);
1462                         } else {
1463                                 lock_res_and_lock(lock);
1464                                 ldlm_resource_unlink_lock(lock);
1465                                 ldlm_lock_destroy_nolock(lock);
1466                                 unlock_res_and_lock(lock);
1467
1468                         }
1469                 }
1470
1471                 if (!err && !ldlm_is_cbpending(lock) &&
1472                     dlm_req->lock_desc.l_resource.lr_type != LDLM_FLOCK)
1473                         ldlm_reprocess_all(lock->l_resource, lock);
1474
1475                 LDLM_LOCK_RELEASE(lock);
1476         }
1477
1478         LDLM_DEBUG_NOLOCK("server-side enqueue handler END (lock %p, rc %d)",
1479                           lock, rc);
1480
1481         return rc;
1482 }
1483
1484 /* Clear the blocking lock, the race is possible between ldlm_handle_convert0()
1485  * and ldlm_work_bl_ast_lock(), so this is done under lock with check for NULL.
1486  */
1487 void ldlm_clear_blocking_lock(struct ldlm_lock *lock)
1488 {
1489         if (lock->l_blocking_lock) {
1490                 LDLM_LOCK_RELEASE(lock->l_blocking_lock);
1491                 lock->l_blocking_lock = NULL;
1492         }
1493 }
1494
1495 /* A lock can be converted to new ibits or mode and should be considered
1496  * as new lock. Clear all states related to a previous blocking AST
1497  * processing so new conflicts will cause new blocking ASTs.
1498  *
1499  * This is used during lock convert below and lock downgrade to COS mode in
1500  * ldlm_lock_mode_downgrade().
1501  */
1502 void ldlm_clear_blocking_data(struct ldlm_lock *lock)
1503 {
1504         ldlm_clear_ast_sent(lock);
1505         lock->l_bl_ast_run = 0;
1506         ldlm_clear_blocking_lock(lock);
1507 }
1508
1509 /**
1510  * Main LDLM entry point for server code to process lock conversion requests.
1511  */
1512 int ldlm_handle_convert0(struct ptlrpc_request *req,
1513                          const struct ldlm_request *dlm_req)
1514 {
1515         struct obd_export *exp = req->rq_export;
1516         struct ldlm_reply *dlm_rep;
1517         struct ldlm_lock *lock;
1518         int rc;
1519
1520         ENTRY;
1521
1522         if (exp && exp->exp_nid_stats && exp->exp_nid_stats->nid_ldlm_stats)
1523                 lprocfs_counter_incr(exp->exp_nid_stats->nid_ldlm_stats,
1524                                      LDLM_CONVERT - LDLM_FIRST_OPC);
1525
1526         rc = req_capsule_server_pack(&req->rq_pill);
1527         if (rc)
1528                 RETURN(rc);
1529
1530         dlm_rep = req_capsule_server_get(&req->rq_pill, &RMF_DLM_REP);
1531         dlm_rep->lock_flags = dlm_req->lock_flags;
1532
1533         lock = ldlm_handle2lock(&dlm_req->lock_handle[0]);
1534         if (lock) {
1535                 __u64 bits;
1536                 __u64 new;
1537
1538                 bits = lock->l_policy_data.l_inodebits.bits;
1539                 new = dlm_req->lock_desc.l_policy_data.l_inodebits.bits;
1540                 LDLM_DEBUG(lock, "server-side convert handler START");
1541
1542                 if (ldlm_is_cancel(lock)) {
1543                         LDLM_ERROR(lock, "convert on canceled lock!");
1544                         rc = ELDLM_NO_LOCK_DATA;
1545                 } else if (dlm_req->lock_desc.l_req_mode !=
1546                            lock->l_granted_mode) {
1547                         LDLM_ERROR(lock, "lock mode differs!");
1548                         rc = ELDLM_NO_LOCK_DATA;
1549                 } else if (bits == new) {
1550                         /* This can be valid situation if CONVERT RPCs are
1551                          * re-ordered. Just finish silently */
1552                         LDLM_DEBUG(lock, "lock is converted already!");
1553                         rc = ELDLM_OK;
1554                 } else {
1555                         lock_res_and_lock(lock);
1556                         if (ldlm_is_waited(lock))
1557                                 ldlm_del_waiting_lock(lock);
1558
1559                         ldlm_clear_cbpending(lock);
1560                         lock->l_policy_data.l_inodebits.cancel_bits = 0;
1561                         ldlm_inodebits_drop(lock, bits & ~new);
1562
1563                         ldlm_clear_blocking_data(lock);
1564                         unlock_res_and_lock(lock);
1565
1566                         ldlm_reprocess_all(lock->l_resource, NULL);
1567                         rc = ELDLM_OK;
1568                 }
1569
1570                 if (rc == ELDLM_OK) {
1571                         dlm_rep->lock_handle = lock->l_remote_handle;
1572                         ldlm_ibits_policy_local_to_wire(&lock->l_policy_data,
1573                                         &dlm_rep->lock_desc.l_policy_data);
1574                 }
1575
1576                 LDLM_DEBUG(lock, "server-side convert handler END, rc = %d",
1577                            rc);
1578                 LDLM_LOCK_PUT(lock);
1579         } else {
1580                 rc = ELDLM_NO_LOCK_DATA;
1581                 LDLM_DEBUG_NOLOCK("server-side convert handler END, rc = %d",
1582                                   rc);
1583         }
1584
1585         req->rq_status = rc;
1586
1587         RETURN(0);
1588 }
1589
1590 /**
1591  * Cancel all the locks whose handles are packed into ldlm_request
1592  *
1593  * Called by server code expecting such combined cancel activity
1594  * requests.
1595  */
1596 int ldlm_request_cancel(struct ptlrpc_request *req,
1597                         const struct ldlm_request *dlm_req,
1598                         int first, enum lustre_at_flags flags)
1599 {
1600         struct ldlm_resource *res, *pres = NULL;
1601         struct ldlm_lock *lock;
1602         int i, count, done = 0;
1603         unsigned int size;
1604
1605         ENTRY;
1606
1607         size = req_capsule_get_size(&req->rq_pill, &RMF_DLM_REQ, RCL_CLIENT);
1608         if (size <= offsetof(struct ldlm_request, lock_handle) ||
1609             (size - offsetof(struct ldlm_request, lock_handle)) /
1610              sizeof(struct lustre_handle) < dlm_req->lock_count)
1611                 RETURN(0);
1612
1613         count = dlm_req->lock_count ? dlm_req->lock_count : 1;
1614         if (first >= count)
1615                 RETURN(0);
1616
1617         if (count == 1 && dlm_req->lock_handle[0].cookie == 0)
1618                 RETURN(0);
1619
1620         /* There is no lock on the server at the replay time,
1621          * skip lock cancelling to make replay tests to pass. */
1622         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REPLAY)
1623                 RETURN(0);
1624
1625         LDLM_DEBUG_NOLOCK("server-side cancel handler START: %d locks, "
1626                           "starting at %d", count, first);
1627
1628         for (i = first; i < count; i++) {
1629                 lock = ldlm_handle2lock(&dlm_req->lock_handle[i]);
1630                 if (!lock) {
1631                         LDLM_DEBUG_NOLOCK("server-side cancel handler stale "
1632                                           "lock (cookie %llu)",
1633                                           dlm_req->lock_handle[i].cookie);
1634                         continue;
1635                 }
1636
1637                 res = lock->l_resource;
1638                 done++;
1639
1640                 /* This code is an optimization to only attempt lock
1641                  * granting on the resource (that could be CPU-expensive)
1642                  * after we are done cancelling lock in that resource.
1643                  */
1644                 if (res != pres) {
1645                         if (pres != NULL) {
1646                                 ldlm_reprocess_all(pres, NULL);
1647                                 LDLM_RESOURCE_DELREF(pres);
1648                                 ldlm_resource_putref(pres);
1649                         }
1650                         if (res != NULL) {
1651                                 ldlm_resource_getref(res);
1652                                 LDLM_RESOURCE_ADDREF(res);
1653
1654                                 if (!ldlm_is_discard_data(lock))
1655                                         ldlm_lvbo_update(res, lock,
1656                                                          NULL, 1);
1657                         }
1658                         pres = res;
1659                 }
1660
1661                 if ((flags & LATF_STATS) && ldlm_is_ast_sent(lock) &&
1662                     lock->l_blast_sent != 0) {
1663                         time64_t delay = ktime_get_real_seconds() -
1664                                          lock->l_blast_sent;
1665                         LDLM_DEBUG(lock, "server cancels blocked lock after %llds",
1666                                    (s64)delay);
1667                         at_measured(&lock->l_export->exp_bl_lock_at, delay);
1668                 }
1669                 ldlm_lock_cancel(lock);
1670                 LDLM_LOCK_PUT(lock);
1671         }
1672         if (pres != NULL) {
1673                 ldlm_reprocess_all(pres, NULL);
1674                 LDLM_RESOURCE_DELREF(pres);
1675                 ldlm_resource_putref(pres);
1676         }
1677         LDLM_DEBUG_NOLOCK("server-side cancel handler END");
1678         RETURN(done);
1679 }
1680 EXPORT_SYMBOL(ldlm_request_cancel);
1681
1682 /**
1683  * Main LDLM entry point for server code to cancel locks.
1684  *
1685  * Typically gets called from service handler on LDLM_CANCEL opc.
1686  */
1687 int ldlm_handle_cancel(struct ptlrpc_request *req)
1688 {
1689         struct ldlm_request *dlm_req;
1690         int rc;
1691         ENTRY;
1692
1693         dlm_req = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
1694         if (dlm_req == NULL) {
1695                 CDEBUG(D_INFO, "bad request buffer for cancel\n");
1696                 RETURN(-EFAULT);
1697         }
1698
1699         if (req_capsule_get_size(&req->rq_pill, &RMF_DLM_REQ, RCL_CLIENT) <
1700             offsetof(struct ldlm_request, lock_handle[1]))
1701                 RETURN(-EPROTO);
1702
1703         if (req->rq_export && req->rq_export->exp_nid_stats &&
1704             req->rq_export->exp_nid_stats->nid_ldlm_stats)
1705                 lprocfs_counter_incr(req->rq_export->exp_nid_stats->nid_ldlm_stats,
1706                                      LDLM_CANCEL - LDLM_FIRST_OPC);
1707
1708         rc = req_capsule_server_pack(&req->rq_pill);
1709         if (rc)
1710                 RETURN(rc);
1711
1712         if (!ldlm_request_cancel(req, dlm_req, 0, LATF_STATS))
1713                 req->rq_status = LUSTRE_ESTALE;
1714
1715         RETURN(ptlrpc_reply(req));
1716 }
1717 #endif /* HAVE_SERVER_SUPPORT */
1718
1719 /**
1720  * Callback handler for receiving incoming blocking ASTs.
1721  *
1722  * This can only happen on client side.
1723  */
1724 void ldlm_handle_bl_callback(struct ldlm_namespace *ns,
1725                              struct ldlm_lock_desc *ld, struct ldlm_lock *lock)
1726 {
1727         int do_ast;
1728         ENTRY;
1729
1730         LDLM_DEBUG(lock, "client blocking AST callback handler");
1731
1732         lock_res_and_lock(lock);
1733
1734         /* set bits to cancel for this lock for possible lock convert */
1735         if (ns_is_client(ns) && (lock->l_resource->lr_type == LDLM_IBITS)) {
1736                 /* Lock description contains policy of blocking lock,
1737                  * and its cancel_bits is used to pass conflicting bits.
1738                  * NOTE: ld can be NULL or can be not NULL but zeroed if
1739                  * passed from ldlm_bl_thread_blwi(), check below used bits
1740                  * in ld to make sure it is valid description.
1741                  */
1742                 if (ld && ld->l_policy_data.l_inodebits.bits)
1743                         lock->l_policy_data.l_inodebits.cancel_bits =
1744                                 ld->l_policy_data.l_inodebits.cancel_bits;
1745                 /* if there is no valid ld and lock is cbpending already
1746                  * then cancel_bits should be kept, otherwise it is zeroed.
1747                  */
1748                 else if (!ldlm_is_cbpending(lock))
1749                         lock->l_policy_data.l_inodebits.cancel_bits = 0;
1750         }
1751         ldlm_set_cbpending(lock);
1752
1753         if (ldlm_is_cancel_on_block(lock))
1754                 ldlm_set_cancel(lock);
1755
1756         do_ast = (!lock->l_readers && !lock->l_writers);
1757         unlock_res_and_lock(lock);
1758
1759         if (do_ast) {
1760                 CDEBUG(D_DLMTRACE, "Lock %p already unused, calling callback (%p)\n",
1761                        lock, lock->l_blocking_ast);
1762                 if (lock->l_blocking_ast != NULL)
1763                         lock->l_blocking_ast(lock, ld, lock->l_ast_data,
1764                                              LDLM_CB_BLOCKING);
1765         } else {
1766                 CDEBUG(D_DLMTRACE, "Lock %p is referenced, will be cancelled later\n",
1767                        lock);
1768         }
1769
1770         LDLM_DEBUG(lock, "client blocking callback handler END");
1771         LDLM_LOCK_RELEASE(lock);
1772         EXIT;
1773 }
1774
1775 /**
1776  * Callback handler for receiving incoming completion ASTs.
1777  *
1778  * This only can happen on client side.
1779  */
1780 static void ldlm_handle_cp_callback(struct ptlrpc_request *req,
1781                                     struct ldlm_namespace *ns,
1782                                     struct ldlm_request *dlm_req,
1783                                     struct ldlm_lock *lock)
1784 {
1785         struct list_head ast_list;
1786         int lvb_len;
1787         int rc = 0;
1788         ENTRY;
1789
1790         LDLM_DEBUG(lock, "client completion callback handler START");
1791
1792         INIT_LIST_HEAD(&ast_list);
1793         if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_CANCEL_BL_CB_RACE)) {
1794                 long to = cfs_time_seconds(1);
1795
1796                 while (to > 0) {
1797                         set_current_state(TASK_INTERRUPTIBLE);
1798                         schedule_timeout(to);
1799                         if (ldlm_is_granted(lock) ||
1800                             ldlm_is_destroyed(lock))
1801                                 break;
1802                 }
1803         }
1804
1805         lvb_len = req_capsule_get_size(&req->rq_pill, &RMF_DLM_LVB, RCL_CLIENT);
1806         if (lvb_len < 0) {
1807                 LDLM_ERROR(lock, "Fail to get lvb_len, rc = %d", lvb_len);
1808                 GOTO(out, rc = lvb_len);
1809         } else if (lvb_len > 0) {
1810                 if (lock->l_lvb_len > 0) {
1811                         /* for extent lock, lvb contains ost_lvb{}. */
1812                         LASSERT(lock->l_lvb_data != NULL);
1813
1814                         if (unlikely(lock->l_lvb_len < lvb_len)) {
1815                                 LDLM_ERROR(lock, "Replied LVB is larger than "
1816                                            "expectation, expected = %d, "
1817                                            "replied = %d",
1818                                            lock->l_lvb_len, lvb_len);
1819                                 GOTO(out, rc = -EINVAL);
1820                         }
1821                 }
1822         }
1823
1824         lock_res_and_lock(lock);
1825
1826         if (!ldlm_res_eq(&dlm_req->lock_desc.l_resource.lr_name,
1827                          &lock->l_resource->lr_name)) {
1828                 ldlm_resource_unlink_lock(lock);
1829                 unlock_res_and_lock(lock);
1830                 rc = ldlm_lock_change_resource(ns, lock,
1831                                 &dlm_req->lock_desc.l_resource.lr_name);
1832                 if (rc < 0) {
1833                         LDLM_ERROR(lock, "Failed to allocate resource");
1834                         GOTO(out, rc);
1835                 }
1836                 LDLM_DEBUG(lock, "completion AST, new resource");
1837                 lock_res_and_lock(lock);
1838         }
1839
1840         if (ldlm_is_destroyed(lock) ||
1841             ldlm_is_granted(lock)) {
1842                 /* bug 11300: the lock has already been granted */
1843                 unlock_res_and_lock(lock);
1844                 LDLM_DEBUG(lock, "Double grant race happened");
1845                 GOTO(out, rc = 0);
1846         }
1847
1848         /* If we receive the completion AST before the actual enqueue returned,
1849          * then we might need to switch lock modes, resources, or extents. */
1850         if (dlm_req->lock_desc.l_granted_mode != lock->l_req_mode) {
1851                 lock->l_req_mode = dlm_req->lock_desc.l_granted_mode;
1852                 LDLM_DEBUG(lock, "completion AST, new lock mode");
1853         }
1854
1855         if (lock->l_resource->lr_type != LDLM_PLAIN) {
1856                 ldlm_convert_policy_to_local(req->rq_export,
1857                                           dlm_req->lock_desc.l_resource.lr_type,
1858                                           &dlm_req->lock_desc.l_policy_data,
1859                                           &lock->l_policy_data);
1860                 LDLM_DEBUG(lock, "completion AST, new policy data");
1861         }
1862
1863         ldlm_resource_unlink_lock(lock);
1864
1865         if (dlm_req->lock_flags & LDLM_FL_AST_SENT) {
1866                 /* BL_AST locks are not needed in LRU.
1867                  * Let ldlm_cancel_lru() be fast. */
1868                 ldlm_lock_remove_from_lru(lock);
1869                 lock->l_flags |= LDLM_FL_CBPENDING | LDLM_FL_BL_AST;
1870                 LDLM_DEBUG(lock, "completion AST includes blocking AST");
1871         }
1872
1873         if (lock->l_lvb_len > 0) {
1874                 rc = ldlm_fill_lvb(lock, &req->rq_pill, RCL_CLIENT,
1875                                    lock->l_lvb_data, lvb_len);
1876                 if (rc < 0) {
1877                         unlock_res_and_lock(lock);
1878                         GOTO(out, rc);
1879                 }
1880         }
1881
1882         ldlm_grant_lock(lock, &ast_list);
1883         unlock_res_and_lock(lock);
1884
1885         LDLM_DEBUG(lock, "callback handler finished, about to run_ast_work");
1886
1887         /* Let Enqueue to call osc_lock_upcall() and initialize
1888          * l_ast_data */
1889         OBD_FAIL_TIMEOUT(OBD_FAIL_OSC_CP_ENQ_RACE, 2);
1890
1891         ldlm_run_ast_work(ns, &ast_list, LDLM_WORK_CP_AST);
1892
1893         LDLM_DEBUG_NOLOCK("client completion callback handler END (lock %p)",
1894                           lock);
1895         GOTO(out, rc);
1896
1897 out:
1898         if (rc < 0) {
1899                 lock_res_and_lock(lock);
1900                 ldlm_set_failed(lock);
1901                 unlock_res_and_lock(lock);
1902                 wake_up(&lock->l_waitq);
1903         }
1904         LDLM_LOCK_RELEASE(lock);
1905 }
1906
1907 /**
1908  * Callback handler for receiving incoming glimpse ASTs.
1909  *
1910  * This only can happen on client side.  After handling the glimpse AST
1911  * we also consider dropping the lock here if it is unused locally for a
1912  * long time.
1913  */
1914 static void ldlm_handle_gl_callback(struct ptlrpc_request *req,
1915                                     struct ldlm_namespace *ns,
1916                                     struct ldlm_request *dlm_req,
1917                                     struct ldlm_lock *lock)
1918 {
1919         int rc = -ENOSYS;
1920         ENTRY;
1921
1922         LDLM_DEBUG(lock, "client glimpse AST callback handler");
1923
1924         if (lock->l_glimpse_ast != NULL)
1925                 rc = lock->l_glimpse_ast(lock, req);
1926
1927         if (req->rq_repmsg != NULL) {
1928                 ptlrpc_reply(req);
1929         } else {
1930                 req->rq_status = rc;
1931                 ptlrpc_error(req);
1932         }
1933
1934         lock_res_and_lock(lock);
1935         if (lock->l_granted_mode == LCK_PW &&
1936             !lock->l_readers && !lock->l_writers &&
1937             ktime_after(ktime_get(),
1938                         ktime_add(lock->l_last_used,
1939                                   ktime_set(ns->ns_dirty_age_limit, 0)))) {
1940                 unlock_res_and_lock(lock);
1941                 if (ldlm_bl_to_thread_lock(ns, NULL, lock))
1942                         ldlm_handle_bl_callback(ns, NULL, lock);
1943
1944                 EXIT;
1945                 return;
1946         }
1947         unlock_res_and_lock(lock);
1948         LDLM_LOCK_RELEASE(lock);
1949         EXIT;
1950 }
1951
1952 static int ldlm_callback_reply(struct ptlrpc_request *req, int rc)
1953 {
1954         if (req->rq_no_reply)
1955                 return 0;
1956
1957         req->rq_status = rc;
1958         if (!req->rq_packed_final) {
1959                 rc = lustre_pack_reply(req, 1, NULL, NULL);
1960                 if (rc)
1961                         return rc;
1962         }
1963         return ptlrpc_reply(req);
1964 }
1965
1966 static int __ldlm_bl_to_thread(struct ldlm_bl_work_item *blwi,
1967                                enum ldlm_cancel_flags cancel_flags)
1968 {
1969         struct ldlm_bl_pool *blp = ldlm_state->ldlm_bl_pool;
1970         ENTRY;
1971
1972         spin_lock(&blp->blp_lock);
1973         if (blwi->blwi_lock &&
1974             ldlm_is_discard_data(blwi->blwi_lock)) {
1975                 /* add LDLM_FL_DISCARD_DATA requests to the priority list */
1976                 list_add_tail(&blwi->blwi_entry, &blp->blp_prio_list);
1977         } else {
1978                 /* other blocking callbacks are added to the regular list */
1979                 list_add_tail(&blwi->blwi_entry, &blp->blp_list);
1980         }
1981         spin_unlock(&blp->blp_lock);
1982
1983         wake_up(&blp->blp_waitq);
1984
1985         /* can not check blwi->blwi_flags as blwi could be already freed in
1986            LCF_ASYNC mode */
1987         if (!(cancel_flags & LCF_ASYNC))
1988                 wait_for_completion(&blwi->blwi_comp);
1989
1990         RETURN(0);
1991 }
1992
1993 static inline void init_blwi(struct ldlm_bl_work_item *blwi,
1994                              struct ldlm_namespace *ns,
1995                              struct ldlm_lock_desc *ld,
1996                              struct list_head *cancels, int count,
1997                              struct ldlm_lock *lock,
1998                              enum ldlm_cancel_flags cancel_flags)
1999 {
2000         init_completion(&blwi->blwi_comp);
2001         INIT_LIST_HEAD(&blwi->blwi_head);
2002
2003         if (memory_pressure_get())
2004                 blwi->blwi_mem_pressure = 1;
2005
2006         blwi->blwi_ns = ns;
2007         blwi->blwi_flags = cancel_flags;
2008         if (ld != NULL)
2009                 blwi->blwi_ld = *ld;
2010         if (count) {
2011                 list_add(&blwi->blwi_head, cancels);
2012                 list_del_init(cancels);
2013                 blwi->blwi_count = count;
2014         } else {
2015                 blwi->blwi_lock = lock;
2016         }
2017 }
2018
2019 /**
2020  * Queues a list of locks \a cancels containing \a count locks
2021  * for later processing by a blocking thread.  If \a count is zero,
2022  * then the lock referenced as \a lock is queued instead.
2023  *
2024  * The blocking thread would then call ->l_blocking_ast callback in the lock.
2025  * If list addition fails an error is returned and caller is supposed to
2026  * call ->l_blocking_ast itself.
2027  */
2028 static int ldlm_bl_to_thread(struct ldlm_namespace *ns,
2029                              struct ldlm_lock_desc *ld,
2030                              struct ldlm_lock *lock,
2031                              struct list_head *cancels, int count,
2032                              enum ldlm_cancel_flags cancel_flags)
2033 {
2034         ENTRY;
2035
2036         if (cancels && count == 0)
2037                 RETURN(0);
2038
2039         if (cancel_flags & LCF_ASYNC) {
2040                 struct ldlm_bl_work_item *blwi;
2041
2042                 OBD_ALLOC(blwi, sizeof(*blwi));
2043                 if (blwi == NULL)
2044                         RETURN(-ENOMEM);
2045                 init_blwi(blwi, ns, ld, cancels, count, lock, cancel_flags);
2046
2047                 RETURN(__ldlm_bl_to_thread(blwi, cancel_flags));
2048         } else {
2049                 /* if it is synchronous call do minimum mem alloc, as it could
2050                  * be triggered from kernel shrinker
2051                  */
2052                 struct ldlm_bl_work_item blwi;
2053
2054                 memset(&blwi, 0, sizeof(blwi));
2055                 init_blwi(&blwi, ns, ld, cancels, count, lock, cancel_flags);
2056                 RETURN(__ldlm_bl_to_thread(&blwi, cancel_flags));
2057         }
2058 }
2059
2060
2061 int ldlm_bl_to_thread_lock(struct ldlm_namespace *ns, struct ldlm_lock_desc *ld,
2062                            struct ldlm_lock *lock)
2063 {
2064         return ldlm_bl_to_thread(ns, ld, lock, NULL, 0, LCF_ASYNC);
2065 }
2066
2067 int ldlm_bl_to_thread_list(struct ldlm_namespace *ns, struct ldlm_lock_desc *ld,
2068                            struct list_head *cancels, int count,
2069                            enum ldlm_cancel_flags cancel_flags)
2070 {
2071         return ldlm_bl_to_thread(ns, ld, NULL, cancels, count, cancel_flags);
2072 }
2073
2074 int ldlm_bl_thread_wakeup(void)
2075 {
2076         wake_up(&ldlm_state->ldlm_bl_pool->blp_waitq);
2077         return 0;
2078 }
2079
2080 /* Setinfo coming from Server (eg MDT) to Client (eg MDC)! */
2081 static int ldlm_handle_setinfo(struct ptlrpc_request *req)
2082 {
2083         struct obd_device *obd = req->rq_export->exp_obd;
2084         char *key;
2085         void *val;
2086         int keylen, vallen;
2087         int rc = -ENOSYS;
2088         ENTRY;
2089
2090         DEBUG_REQ(D_HSM, req, "%s: handle setinfo\n", obd->obd_name);
2091
2092         req_capsule_set(&req->rq_pill, &RQF_OBD_SET_INFO);
2093
2094         key = req_capsule_client_get(&req->rq_pill, &RMF_SETINFO_KEY);
2095         if (key == NULL) {
2096                 DEBUG_REQ(D_IOCTL, req, "no set_info key");
2097                 RETURN(-EFAULT);
2098         }
2099         keylen = req_capsule_get_size(&req->rq_pill, &RMF_SETINFO_KEY,
2100                                       RCL_CLIENT);
2101         val = req_capsule_client_get(&req->rq_pill, &RMF_SETINFO_VAL);
2102         if (val == NULL) {
2103                 DEBUG_REQ(D_IOCTL, req, "no set_info val");
2104                 RETURN(-EFAULT);
2105         }
2106         vallen = req_capsule_get_size(&req->rq_pill, &RMF_SETINFO_VAL,
2107                                       RCL_CLIENT);
2108
2109         /* We are responsible for swabbing contents of val */
2110
2111         if (KEY_IS(KEY_HSM_COPYTOOL_SEND))
2112                 /* Pass it on to mdc (the "export" in this case) */
2113                 rc = obd_set_info_async(req->rq_svc_thread->t_env,
2114                                         req->rq_export,
2115                                         sizeof(KEY_HSM_COPYTOOL_SEND),
2116                                         KEY_HSM_COPYTOOL_SEND,
2117                                         vallen, val, NULL);
2118         else
2119                 DEBUG_REQ(D_WARNING, req, "ignoring unknown key %s", key);
2120
2121         return rc;
2122 }
2123
2124 static inline void ldlm_callback_errmsg(struct ptlrpc_request *req,
2125                                         const char *msg, int rc,
2126                                         const struct lustre_handle *handle)
2127 {
2128         DEBUG_REQ((req->rq_no_reply || rc) ? D_WARNING : D_DLMTRACE, req,
2129                   "%s: [nid %s] [rc %d] [lock %#llx]",
2130                   msg, libcfs_id2str(req->rq_peer), rc,
2131                   handle ? handle->cookie : 0);
2132         if (req->rq_no_reply)
2133                 CWARN("No reply was sent, maybe cause bug 21636.\n");
2134         else if (rc)
2135                 CWARN("Send reply failed, maybe cause bug 21636.\n");
2136 }
2137
2138 /* TODO: handle requests in a similar way as MDT: see mdt_handle_common() */
2139 static int ldlm_callback_handler(struct ptlrpc_request *req)
2140 {
2141         struct ldlm_namespace *ns;
2142         struct ldlm_request *dlm_req;
2143         struct ldlm_lock *lock;
2144         int rc;
2145         ENTRY;
2146
2147         /* Requests arrive in sender's byte order.  The ptlrpc service
2148          * handler has already checked and, if necessary, byte-swapped the
2149          * incoming request message body, but I am responsible for the
2150          * message buffers. */
2151
2152         /* do nothing for sec context finalize */
2153         if (lustre_msg_get_opc(req->rq_reqmsg) == SEC_CTX_FINI)
2154                 RETURN(0);
2155
2156         req_capsule_init(&req->rq_pill, req, RCL_SERVER);
2157
2158         if (req->rq_export == NULL) {
2159                 rc = ldlm_callback_reply(req, -ENOTCONN);
2160                 ldlm_callback_errmsg(req, "Operate on unconnected server",
2161                                      rc, NULL);
2162                 RETURN(0);
2163         }
2164
2165         LASSERT(req->rq_export != NULL);
2166         LASSERT(req->rq_export->exp_obd != NULL);
2167
2168         switch (lustre_msg_get_opc(req->rq_reqmsg)) {
2169         case LDLM_BL_CALLBACK:
2170                 if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_BL_CALLBACK_NET)) {
2171                         if (cfs_fail_err)
2172                                 ldlm_callback_reply(req, -(int)cfs_fail_err);
2173                         RETURN(0);
2174                 }
2175                 break;
2176         case LDLM_CP_CALLBACK:
2177                 if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_CP_CALLBACK_NET))
2178                         RETURN(0);
2179                 break;
2180         case LDLM_GL_CALLBACK:
2181                 if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_GL_CALLBACK_NET))
2182                         RETURN(0);
2183                 break;
2184         case LDLM_SET_INFO:
2185                 rc = ldlm_handle_setinfo(req);
2186                 ldlm_callback_reply(req, rc);
2187                 RETURN(0);
2188         default:
2189                 CERROR("unknown opcode %u\n",
2190                        lustre_msg_get_opc(req->rq_reqmsg));
2191                 ldlm_callback_reply(req, -EPROTO);
2192                 RETURN(0);
2193         }
2194
2195         ns = req->rq_export->exp_obd->obd_namespace;
2196         LASSERT(ns != NULL);
2197
2198         req_capsule_set(&req->rq_pill, &RQF_LDLM_CALLBACK);
2199
2200         dlm_req = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
2201         if (dlm_req == NULL) {
2202                 rc = ldlm_callback_reply(req, -EPROTO);
2203                 ldlm_callback_errmsg(req, "Operate without parameter", rc,
2204                                      NULL);
2205                 RETURN(0);
2206         }
2207
2208         /* Force a known safe race, send a cancel to the server for a lock
2209          * which the server has already started a blocking callback on. */
2210         if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_CANCEL_BL_CB_RACE) &&
2211             lustre_msg_get_opc(req->rq_reqmsg) == LDLM_BL_CALLBACK) {
2212                 rc = ldlm_cli_cancel(&dlm_req->lock_handle[0], 0);
2213                 if (rc < 0)
2214                         CERROR("ldlm_cli_cancel: %d\n", rc);
2215         }
2216
2217         lock = ldlm_handle2lock_long(&dlm_req->lock_handle[0], 0);
2218         if (!lock) {
2219                 CDEBUG(D_DLMTRACE, "callback on lock %#llx - lock "
2220                        "disappeared\n", dlm_req->lock_handle[0].cookie);
2221                 rc = ldlm_callback_reply(req, -EINVAL);
2222                 ldlm_callback_errmsg(req, "Operate with invalid parameter", rc,
2223                                      &dlm_req->lock_handle[0]);
2224                 RETURN(0);
2225         }
2226
2227         if (ldlm_is_fail_loc(lock) &&
2228             lustre_msg_get_opc(req->rq_reqmsg) == LDLM_BL_CALLBACK)
2229                 OBD_RACE(OBD_FAIL_LDLM_CP_BL_RACE);
2230
2231         /* Copy hints/flags (e.g. LDLM_FL_DISCARD_DATA) from AST. */
2232         lock_res_and_lock(lock);
2233         lock->l_flags |= ldlm_flags_from_wire(dlm_req->lock_flags &
2234                                               LDLM_FL_AST_MASK);
2235         if (lustre_msg_get_opc(req->rq_reqmsg) == LDLM_BL_CALLBACK) {
2236                 /* If somebody cancels lock and cache is already dropped,
2237                  * or lock is failed before cp_ast received on client,
2238                  * we can tell the server we have no lock. Otherwise, we
2239                  * should send cancel after dropping the cache. */
2240                 if ((ldlm_is_canceling(lock) && ldlm_is_bl_done(lock)) ||
2241                      ldlm_is_failed(lock)) {
2242                         LDLM_DEBUG(lock, "callback on lock %llx - lock disappeared",
2243                                    dlm_req->lock_handle[0].cookie);
2244                         unlock_res_and_lock(lock);
2245                         LDLM_LOCK_RELEASE(lock);
2246                         rc = ldlm_callback_reply(req, -EINVAL);
2247                         ldlm_callback_errmsg(req, "Operate on stale lock", rc,
2248                                              &dlm_req->lock_handle[0]);
2249                         RETURN(0);
2250                 }
2251                 /* BL_AST locks are not needed in LRU.
2252                  * Let ldlm_cancel_lru() be fast. */
2253                 ldlm_lock_remove_from_lru(lock);
2254                 ldlm_set_bl_ast(lock);
2255         }
2256         unlock_res_and_lock(lock);
2257
2258         /* We want the ost thread to get this reply so that it can respond
2259          * to ost requests (write cache writeback) that might be triggered
2260          * in the callback.
2261          *
2262          * But we'd also like to be able to indicate in the reply that we're
2263          * cancelling right now, because it's unused, or have an intent result
2264          * in the reply, so we might have to push the responsibility for sending
2265          * the reply down into the AST handlers, alas. */
2266
2267         switch (lustre_msg_get_opc(req->rq_reqmsg)) {
2268         case LDLM_BL_CALLBACK:
2269                 CDEBUG(D_INODE, "blocking ast\n");
2270                 req_capsule_extend(&req->rq_pill, &RQF_LDLM_BL_CALLBACK);
2271                 if (!ldlm_is_cancel_on_block(lock)) {
2272                         rc = ldlm_callback_reply(req, 0);
2273                         if (req->rq_no_reply || rc)
2274                                 ldlm_callback_errmsg(req, "Normal process", rc,
2275                                                      &dlm_req->lock_handle[0]);
2276                 }
2277                 if (ldlm_bl_to_thread_lock(ns, &dlm_req->lock_desc, lock))
2278                         ldlm_handle_bl_callback(ns, &dlm_req->lock_desc, lock);
2279                 break;
2280         case LDLM_CP_CALLBACK:
2281                 CDEBUG(D_INODE, "completion ast\n");
2282                 req_capsule_extend(&req->rq_pill, &RQF_LDLM_CP_CALLBACK);
2283                 ldlm_callback_reply(req, 0);
2284                 ldlm_handle_cp_callback(req, ns, dlm_req, lock);
2285                 break;
2286         case LDLM_GL_CALLBACK:
2287                 CDEBUG(D_INODE, "glimpse ast\n");
2288                 req_capsule_extend(&req->rq_pill, &RQF_LDLM_GL_CALLBACK);
2289                 ldlm_handle_gl_callback(req, ns, dlm_req, lock);
2290                 break;
2291         default:
2292                 LBUG();                         /* checked above */
2293         }
2294
2295         RETURN(0);
2296 }
2297
2298 #ifdef HAVE_SERVER_SUPPORT
2299 /**
2300  * Main handler for canceld thread.
2301  *
2302  * Separated into its own thread to avoid deadlocks.
2303  */
2304 static int ldlm_cancel_handler(struct ptlrpc_request *req)
2305 {
2306         int rc;
2307
2308         ENTRY;
2309
2310         /* Requests arrive in sender's byte order.  The ptlrpc service
2311          * handler has already checked and, if necessary, byte-swapped the
2312          * incoming request message body, but I am responsible for the
2313          * message buffers. */
2314
2315         req_capsule_init(&req->rq_pill, req, RCL_SERVER);
2316
2317         if (req->rq_export == NULL) {
2318                 struct ldlm_request *dlm_req;
2319
2320                 CERROR("%s from %s arrived at %llu with bad export cookie %llu\n",
2321                        ll_opcode2str(lustre_msg_get_opc(req->rq_reqmsg)),
2322                        libcfs_nid2str(req->rq_peer.nid),
2323                        (unsigned long long)req->rq_arrival_time.tv_sec,
2324                        lustre_msg_get_handle(req->rq_reqmsg)->cookie);
2325
2326                 if (lustre_msg_get_opc(req->rq_reqmsg) == LDLM_CANCEL) {
2327                         req_capsule_set(&req->rq_pill, &RQF_LDLM_CALLBACK);
2328                         dlm_req = req_capsule_client_get(&req->rq_pill,
2329                                                          &RMF_DLM_REQ);
2330                         if (dlm_req != NULL)
2331                                 ldlm_lock_dump_handle(D_ERROR,
2332                                                       &dlm_req->lock_handle[0]);
2333                 }
2334                 ldlm_callback_reply(req, -ENOTCONN);
2335                 RETURN(0);
2336         }
2337
2338         switch (lustre_msg_get_opc(req->rq_reqmsg)) {
2339         /* XXX FIXME move this back to mds/handler.c, bug 249 */
2340         case LDLM_CANCEL:
2341                 req_capsule_set(&req->rq_pill, &RQF_LDLM_CANCEL);
2342                 CDEBUG(D_INODE, "cancel\n");
2343                 if (CFS_FAIL_CHECK(OBD_FAIL_LDLM_CANCEL_NET) ||
2344                     CFS_FAIL_CHECK(OBD_FAIL_PTLRPC_CANCEL_RESEND) ||
2345                     CFS_FAIL_CHECK(OBD_FAIL_LDLM_BL_EVICT))
2346                         RETURN(0);
2347                 rc = ldlm_handle_cancel(req);
2348                 break;
2349         case LDLM_CONVERT:
2350         {
2351                 struct ldlm_request *dlm_req;
2352
2353                 req_capsule_set(&req->rq_pill, &RQF_LDLM_CONVERT);
2354                 CDEBUG(D_INODE, "convert\n");
2355
2356                 dlm_req = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
2357                 if (dlm_req == NULL) {
2358                         CDEBUG(D_INFO, "bad request buffer for cancel\n");
2359                         rc = ldlm_callback_reply(req, -EPROTO);
2360                 } else {
2361                         req->rq_status = ldlm_handle_convert0(req, dlm_req);
2362                         rc = ptlrpc_reply(req);
2363                 }
2364                 break;
2365         }
2366         default:
2367                 CERROR("invalid opcode %d\n",
2368                        lustre_msg_get_opc(req->rq_reqmsg));
2369                 req_capsule_set(&req->rq_pill, &RQF_LDLM_CALLBACK);
2370                 rc = ldlm_callback_reply(req, -EINVAL);
2371         }
2372
2373         RETURN(rc);
2374 }
2375
2376 static int ldlm_cancel_hpreq_lock_match(struct ptlrpc_request *req,
2377                                         struct ldlm_lock *lock)
2378 {
2379         struct ldlm_request *dlm_req;
2380         struct lustre_handle lockh;
2381         int rc = 0;
2382         int i;
2383
2384         ENTRY;
2385
2386         dlm_req = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
2387         if (dlm_req == NULL)
2388                 RETURN(0);
2389
2390         ldlm_lock2handle(lock, &lockh);
2391         for (i = 0; i < dlm_req->lock_count; i++) {
2392                 if (lustre_handle_equal(&dlm_req->lock_handle[i],
2393                                         &lockh)) {
2394                         DEBUG_REQ(D_RPCTRACE, req,
2395                                   "Prio raised by lock %#llx.", lockh.cookie);
2396                         rc = 1;
2397                         break;
2398                 }
2399         }
2400
2401         RETURN(rc);
2402 }
2403
2404 static int ldlm_cancel_hpreq_check(struct ptlrpc_request *req)
2405 {
2406         struct ldlm_request *dlm_req;
2407         int rc = 0;
2408         int i;
2409         unsigned int size;
2410
2411         ENTRY;
2412
2413         /* no prolong in recovery */
2414         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REPLAY)
2415                 RETURN(0);
2416
2417         dlm_req = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
2418         if (dlm_req == NULL)
2419                 RETURN(-EFAULT);
2420
2421         size = req_capsule_get_size(&req->rq_pill, &RMF_DLM_REQ, RCL_CLIENT);
2422         if (size <= offsetof(struct ldlm_request, lock_handle) ||
2423             (size - offsetof(struct ldlm_request, lock_handle)) /
2424              sizeof(struct lustre_handle) < dlm_req->lock_count)
2425                 RETURN(-EPROTO);
2426
2427         for (i = 0; i < dlm_req->lock_count; i++) {
2428                 struct ldlm_lock *lock;
2429
2430                 lock = ldlm_handle2lock(&dlm_req->lock_handle[i]);
2431                 if (lock == NULL)
2432                         continue;
2433
2434                 rc = ldlm_is_ast_sent(lock) ? 1 : 0;
2435                 if (rc)
2436                         LDLM_DEBUG(lock, "hpreq cancel/convert lock");
2437                 LDLM_LOCK_PUT(lock);
2438
2439                 if (rc)
2440                         break;
2441         }
2442
2443         RETURN(rc);
2444 }
2445
2446 static struct ptlrpc_hpreq_ops ldlm_cancel_hpreq_ops = {
2447         .hpreq_lock_match = ldlm_cancel_hpreq_lock_match,
2448         .hpreq_check      = ldlm_cancel_hpreq_check,
2449         .hpreq_fini       = NULL,
2450 };
2451
2452 static int ldlm_hpreq_handler(struct ptlrpc_request *req)
2453 {
2454         ENTRY;
2455
2456         req_capsule_init(&req->rq_pill, req, RCL_SERVER);
2457
2458         if (req->rq_export == NULL)
2459                 RETURN(0);
2460
2461         if (LDLM_CANCEL == lustre_msg_get_opc(req->rq_reqmsg)) {
2462                 req_capsule_set(&req->rq_pill, &RQF_LDLM_CANCEL);
2463                 req->rq_ops = &ldlm_cancel_hpreq_ops;
2464         } else if (LDLM_CONVERT == lustre_msg_get_opc(req->rq_reqmsg)) {
2465                 req_capsule_set(&req->rq_pill, &RQF_LDLM_CONVERT);
2466                 req->rq_ops = &ldlm_cancel_hpreq_ops;
2467         }
2468         RETURN(0);
2469 }
2470
2471 static int ldlm_revoke_lock_cb(struct cfs_hash *hs, struct cfs_hash_bd *bd,
2472                                struct hlist_node *hnode, void *data)
2473
2474 {
2475         struct list_head         *rpc_list = data;
2476         struct ldlm_lock   *lock = cfs_hash_object(hs, hnode);
2477
2478         lock_res_and_lock(lock);
2479
2480         if (!ldlm_is_granted(lock)) {
2481                 unlock_res_and_lock(lock);
2482                 return 0;
2483         }
2484
2485         LASSERT(lock->l_resource);
2486         if (lock->l_resource->lr_type != LDLM_IBITS &&
2487             lock->l_resource->lr_type != LDLM_PLAIN) {
2488                 unlock_res_and_lock(lock);
2489                 return 0;
2490         }
2491
2492         if (ldlm_is_ast_sent(lock)) {
2493                 unlock_res_and_lock(lock);
2494                 return 0;
2495         }
2496
2497         LASSERT(lock->l_blocking_ast);
2498         LASSERT(!lock->l_blocking_lock);
2499
2500         ldlm_set_ast_sent(lock);
2501         if (lock->l_export && lock->l_export->exp_lock_hash) {
2502                 /* NB: it's safe to call cfs_hash_del() even lock isn't
2503                  * in exp_lock_hash. */
2504                 /* In the function below, .hs_keycmp resolves to
2505                  * ldlm_export_lock_keycmp() */
2506                 /* coverity[overrun-buffer-val] */
2507                 cfs_hash_del(lock->l_export->exp_lock_hash,
2508                              &lock->l_remote_handle, &lock->l_exp_hash);
2509         }
2510
2511         list_add_tail(&lock->l_rk_ast, rpc_list);
2512         LDLM_LOCK_GET(lock);
2513
2514         unlock_res_and_lock(lock);
2515         return 0;
2516 }
2517
2518 void ldlm_revoke_export_locks(struct obd_export *exp)
2519 {
2520         struct list_head  rpc_list;
2521         ENTRY;
2522
2523         INIT_LIST_HEAD(&rpc_list);
2524         cfs_hash_for_each_nolock(exp->exp_lock_hash,
2525                                  ldlm_revoke_lock_cb, &rpc_list, 0);
2526         ldlm_run_ast_work(exp->exp_obd->obd_namespace, &rpc_list,
2527                           LDLM_WORK_REVOKE_AST);
2528
2529         EXIT;
2530 }
2531 EXPORT_SYMBOL(ldlm_revoke_export_locks);
2532 #endif /* HAVE_SERVER_SUPPORT */
2533
2534 static int ldlm_bl_get_work(struct ldlm_bl_pool *blp,
2535                             struct ldlm_bl_work_item **p_blwi,
2536                             struct obd_export **p_exp)
2537 {
2538         struct ldlm_bl_work_item *blwi = NULL;
2539         static unsigned int num_bl = 0;
2540         static unsigned int num_stale;
2541         int num_th = atomic_read(&blp->blp_num_threads);
2542
2543         *p_exp = obd_stale_export_get();
2544
2545         spin_lock(&blp->blp_lock);
2546         if (*p_exp != NULL) {
2547                 if (num_th == 1 || ++num_stale < num_th) {
2548                         spin_unlock(&blp->blp_lock);
2549                         return 1;
2550                 } else {
2551                         num_stale = 0;
2552                 }
2553         }
2554
2555         /* process a request from the blp_list at least every blp_num_threads */
2556         if (!list_empty(&blp->blp_list) &&
2557             (list_empty(&blp->blp_prio_list) || num_bl == 0))
2558                 blwi = list_entry(blp->blp_list.next,
2559                                   struct ldlm_bl_work_item, blwi_entry);
2560         else
2561                 if (!list_empty(&blp->blp_prio_list))
2562                         blwi = list_entry(blp->blp_prio_list.next,
2563                                           struct ldlm_bl_work_item,
2564                                           blwi_entry);
2565
2566         if (blwi) {
2567                 if (++num_bl >= num_th)
2568                         num_bl = 0;
2569                 list_del(&blwi->blwi_entry);
2570         }
2571         spin_unlock(&blp->blp_lock);
2572         *p_blwi = blwi;
2573
2574         if (*p_exp != NULL && *p_blwi != NULL) {
2575                 obd_stale_export_put(*p_exp);
2576                 *p_exp = NULL;
2577         }
2578
2579         return (*p_blwi != NULL || *p_exp != NULL) ? 1 : 0;
2580 }
2581
2582 /* This only contains temporary data until the thread starts */
2583 struct ldlm_bl_thread_data {
2584         struct ldlm_bl_pool     *bltd_blp;
2585         struct completion       bltd_comp;
2586         int                     bltd_num;
2587 };
2588
2589 static int ldlm_bl_thread_main(void *arg);
2590
2591 static int ldlm_bl_thread_start(struct ldlm_bl_pool *blp, bool check_busy)
2592 {
2593         struct ldlm_bl_thread_data bltd = { .bltd_blp = blp };
2594         struct task_struct *task;
2595
2596         init_completion(&bltd.bltd_comp);
2597
2598         bltd.bltd_num = atomic_inc_return(&blp->blp_num_threads);
2599         if (bltd.bltd_num >= blp->blp_max_threads) {
2600                 atomic_dec(&blp->blp_num_threads);
2601                 return 0;
2602         }
2603
2604         LASSERTF(bltd.bltd_num > 0, "thread num:%d\n", bltd.bltd_num);
2605         if (check_busy &&
2606             atomic_read(&blp->blp_busy_threads) < (bltd.bltd_num - 1)) {
2607                 atomic_dec(&blp->blp_num_threads);
2608                 return 0;
2609         }
2610
2611         task = kthread_run(ldlm_bl_thread_main, &bltd, "ldlm_bl_%02d",
2612                            bltd.bltd_num);
2613         if (IS_ERR(task)) {
2614                 CERROR("cannot start LDLM thread ldlm_bl_%02d: rc %ld\n",
2615                        bltd.bltd_num, PTR_ERR(task));
2616                 atomic_dec(&blp->blp_num_threads);
2617                 return PTR_ERR(task);
2618         }
2619         wait_for_completion(&bltd.bltd_comp);
2620
2621         return 0;
2622 }
2623
2624 /* Not fatal if racy and have a few too many threads */
2625 static int ldlm_bl_thread_need_create(struct ldlm_bl_pool *blp,
2626                                       struct ldlm_bl_work_item *blwi)
2627 {
2628         if (atomic_read(&blp->blp_num_threads) >= blp->blp_max_threads)
2629                 return 0;
2630
2631         if (atomic_read(&blp->blp_busy_threads) <
2632             atomic_read(&blp->blp_num_threads))
2633                 return 0;
2634
2635         if (blwi != NULL && (blwi->blwi_ns == NULL ||
2636                              blwi->blwi_mem_pressure))
2637                 return 0;
2638
2639         return 1;
2640 }
2641
2642 static int ldlm_bl_thread_blwi(struct ldlm_bl_pool *blp,
2643                                struct ldlm_bl_work_item *blwi)
2644 {
2645         ENTRY;
2646
2647         if (blwi->blwi_ns == NULL)
2648                 /* added by ldlm_cleanup() */
2649                 RETURN(LDLM_ITER_STOP);
2650
2651         if (blwi->blwi_mem_pressure)
2652                 memory_pressure_set();
2653
2654         OBD_FAIL_TIMEOUT(OBD_FAIL_LDLM_PAUSE_CANCEL2, 4);
2655
2656         if (blwi->blwi_count) {
2657                 int count;
2658                 /* The special case when we cancel locks in lru
2659                  * asynchronously, we pass the list of locks here.
2660                  * Thus locks are marked LDLM_FL_CANCELING, but NOT
2661                  * canceled locally yet. */
2662                 count = ldlm_cli_cancel_list_local(&blwi->blwi_head,
2663                                                    blwi->blwi_count,
2664                                                    LCF_BL_AST);
2665                 ldlm_cli_cancel_list(&blwi->blwi_head, count, NULL,
2666                                      blwi->blwi_flags);
2667         } else {
2668                 ldlm_handle_bl_callback(blwi->blwi_ns, &blwi->blwi_ld,
2669                                         blwi->blwi_lock);
2670         }
2671         if (blwi->blwi_mem_pressure)
2672                 memory_pressure_clr();
2673
2674         if (blwi->blwi_flags & LCF_ASYNC)
2675                 OBD_FREE(blwi, sizeof(*blwi));
2676         else
2677                 complete(&blwi->blwi_comp);
2678
2679         RETURN(0);
2680 }
2681
2682 /**
2683  * Cancel stale locks on export. Cancel blocked locks first.
2684  * If the given export has blocked locks, the next in the list may have
2685  * them too, thus cancel not blocked locks only if the current export has
2686  * no blocked locks.
2687  **/
2688 static int ldlm_bl_thread_exports(struct ldlm_bl_pool *blp,
2689                                   struct obd_export *exp)
2690 {
2691         int num;
2692         ENTRY;
2693
2694         OBD_FAIL_TIMEOUT(OBD_FAIL_LDLM_BL_EVICT, 4);
2695
2696         num = ldlm_export_cancel_blocked_locks(exp);
2697         if (num == 0)
2698                 ldlm_export_cancel_locks(exp);
2699
2700         obd_stale_export_put(exp);
2701
2702         RETURN(0);
2703 }
2704
2705
2706 /**
2707  * Main blocking requests processing thread.
2708  *
2709  * Callers put locks into its queue by calling ldlm_bl_to_thread.
2710  * This thread in the end ends up doing actual call to ->l_blocking_ast
2711  * for queued locks.
2712  */
2713 static int ldlm_bl_thread_main(void *arg)
2714 {
2715         struct lu_env *env;
2716         struct ldlm_bl_pool *blp;
2717         struct ldlm_bl_thread_data *bltd = arg;
2718         int rc;
2719
2720         ENTRY;
2721
2722         OBD_ALLOC_PTR(env);
2723         if (!env)
2724                 RETURN(-ENOMEM);
2725         rc = lu_env_init(env, LCT_DT_THREAD);
2726         if (rc)
2727                 GOTO(out_env, rc);
2728         rc = lu_env_add(env);
2729         if (rc)
2730                 GOTO(out_env_fini, rc);
2731
2732         blp = bltd->bltd_blp;
2733
2734         complete(&bltd->bltd_comp);
2735         /* cannot use bltd after this, it is only on caller's stack */
2736
2737         while (1) {
2738                 struct l_wait_info lwi = { 0 };
2739                 struct ldlm_bl_work_item *blwi = NULL;
2740                 struct obd_export *exp = NULL;
2741                 int rc;
2742
2743                 rc = ldlm_bl_get_work(blp, &blwi, &exp);
2744
2745                 if (rc == 0)
2746                         l_wait_event_exclusive(blp->blp_waitq,
2747                                                ldlm_bl_get_work(blp, &blwi,
2748                                                                 &exp),
2749                                                &lwi);
2750                 atomic_inc(&blp->blp_busy_threads);
2751
2752                 if (ldlm_bl_thread_need_create(blp, blwi))
2753                         /* discard the return value, we tried */
2754                         ldlm_bl_thread_start(blp, true);
2755
2756                 if (exp)
2757                         rc = ldlm_bl_thread_exports(blp, exp);
2758                 else if (blwi)
2759                         rc = ldlm_bl_thread_blwi(blp, blwi);
2760
2761                 atomic_dec(&blp->blp_busy_threads);
2762
2763                 if (rc == LDLM_ITER_STOP)
2764                         break;
2765
2766                 /* If there are many namespaces, we will not sleep waiting for
2767                  * work, and must do a cond_resched to avoid holding the CPU
2768                  * for too long */
2769                 cond_resched();
2770         }
2771
2772         atomic_dec(&blp->blp_num_threads);
2773         complete(&blp->blp_comp);
2774
2775         lu_env_remove(env);
2776 out_env_fini:
2777         lu_env_fini(env);
2778 out_env:
2779         OBD_FREE_PTR(env);
2780         RETURN(rc);
2781 }
2782
2783
2784 static int ldlm_setup(void);
2785 static int ldlm_cleanup(void);
2786
2787 int ldlm_get_ref(void)
2788 {
2789         int rc = 0;
2790         ENTRY;
2791         mutex_lock(&ldlm_ref_mutex);
2792         if (++ldlm_refcount == 1) {
2793                 rc = ldlm_setup();
2794                 if (rc)
2795                         ldlm_refcount--;
2796         }
2797         mutex_unlock(&ldlm_ref_mutex);
2798
2799         RETURN(rc);
2800 }
2801
2802 void ldlm_put_ref(void)
2803 {
2804         ENTRY;
2805         mutex_lock(&ldlm_ref_mutex);
2806         if (ldlm_refcount == 1) {
2807                 int rc = ldlm_cleanup();
2808                 if (rc)
2809                         CERROR("ldlm_cleanup failed: %d\n", rc);
2810                 else
2811                         ldlm_refcount--;
2812         } else {
2813                 ldlm_refcount--;
2814         }
2815         mutex_unlock(&ldlm_ref_mutex);
2816
2817         EXIT;
2818 }
2819
2820 /*
2821  * Export handle<->lock hash operations.
2822  */
2823 static unsigned
2824 ldlm_export_lock_hash(struct cfs_hash *hs, const void *key, unsigned mask)
2825 {
2826         return cfs_hash_u64_hash(((struct lustre_handle *)key)->cookie, mask);
2827 }
2828
2829 static void *
2830 ldlm_export_lock_key(struct hlist_node *hnode)
2831 {
2832         struct ldlm_lock *lock;
2833
2834         lock = hlist_entry(hnode, struct ldlm_lock, l_exp_hash);
2835         return &lock->l_remote_handle;
2836 }
2837
2838 static void
2839 ldlm_export_lock_keycpy(struct hlist_node *hnode, void *key)
2840 {
2841         struct ldlm_lock     *lock;
2842
2843         lock = hlist_entry(hnode, struct ldlm_lock, l_exp_hash);
2844         lock->l_remote_handle = *(struct lustre_handle *)key;
2845 }
2846
2847 static int
2848 ldlm_export_lock_keycmp(const void *key, struct hlist_node *hnode)
2849 {
2850         return lustre_handle_equal(ldlm_export_lock_key(hnode), key);
2851 }
2852
2853 static void *
2854 ldlm_export_lock_object(struct hlist_node *hnode)
2855 {
2856         return hlist_entry(hnode, struct ldlm_lock, l_exp_hash);
2857 }
2858
2859 static void
2860 ldlm_export_lock_get(struct cfs_hash *hs, struct hlist_node *hnode)
2861 {
2862         struct ldlm_lock *lock;
2863
2864         lock = hlist_entry(hnode, struct ldlm_lock, l_exp_hash);
2865         LDLM_LOCK_GET(lock);
2866 }
2867
2868 static void
2869 ldlm_export_lock_put(struct cfs_hash *hs, struct hlist_node *hnode)
2870 {
2871         struct ldlm_lock *lock;
2872
2873         lock = hlist_entry(hnode, struct ldlm_lock, l_exp_hash);
2874         LDLM_LOCK_RELEASE(lock);
2875 }
2876
2877 static struct cfs_hash_ops ldlm_export_lock_ops = {
2878         .hs_hash        = ldlm_export_lock_hash,
2879         .hs_key         = ldlm_export_lock_key,
2880         .hs_keycmp      = ldlm_export_lock_keycmp,
2881         .hs_keycpy      = ldlm_export_lock_keycpy,
2882         .hs_object      = ldlm_export_lock_object,
2883         .hs_get         = ldlm_export_lock_get,
2884         .hs_put         = ldlm_export_lock_put,
2885         .hs_put_locked  = ldlm_export_lock_put,
2886 };
2887
2888 int ldlm_init_export(struct obd_export *exp)
2889 {
2890         int rc;
2891         ENTRY;
2892
2893         exp->exp_lock_hash =
2894                 cfs_hash_create(obd_uuid2str(&exp->exp_client_uuid),
2895                                 HASH_EXP_LOCK_CUR_BITS,
2896                                 HASH_EXP_LOCK_MAX_BITS,
2897                                 HASH_EXP_LOCK_BKT_BITS, 0,
2898                                 CFS_HASH_MIN_THETA, CFS_HASH_MAX_THETA,
2899                                 &ldlm_export_lock_ops,
2900                                 CFS_HASH_DEFAULT | CFS_HASH_REHASH_KEY |
2901                                 CFS_HASH_NBLK_CHANGE);
2902
2903         if (!exp->exp_lock_hash)
2904                 RETURN(-ENOMEM);
2905
2906         rc = ldlm_init_flock_export(exp);
2907         if (rc)
2908                 GOTO(err, rc);
2909
2910         RETURN(0);
2911 err:
2912         ldlm_destroy_export(exp);
2913         RETURN(rc);
2914 }
2915 EXPORT_SYMBOL(ldlm_init_export);
2916
2917 void ldlm_destroy_export(struct obd_export *exp)
2918 {
2919         ENTRY;
2920         cfs_hash_putref(exp->exp_lock_hash);
2921         exp->exp_lock_hash = NULL;
2922
2923         ldlm_destroy_flock_export(exp);
2924         EXIT;
2925 }
2926 EXPORT_SYMBOL(ldlm_destroy_export);
2927
2928 static ssize_t cancel_unused_locks_before_replay_show(struct kobject *kobj,
2929                                                       struct attribute *attr,
2930                                                       char *buf)
2931 {
2932         return sprintf(buf, "%d\n", ldlm_cancel_unused_locks_before_replay);
2933 }
2934
2935 static ssize_t cancel_unused_locks_before_replay_store(struct kobject *kobj,
2936                                                        struct attribute *attr,
2937                                                        const char *buffer,
2938                                                        size_t count)
2939 {
2940         int rc;
2941         unsigned long val;
2942
2943         rc = kstrtoul(buffer, 10, &val);
2944         if (rc)
2945                 return rc;
2946
2947         ldlm_cancel_unused_locks_before_replay = val;
2948
2949         return count;
2950 }
2951 LUSTRE_RW_ATTR(cancel_unused_locks_before_replay);
2952
2953 static struct attribute *ldlm_attrs[] = {
2954         &lustre_attr_cancel_unused_locks_before_replay.attr,
2955         NULL,
2956 };
2957
2958 static struct attribute_group ldlm_attr_group = {
2959         .attrs = ldlm_attrs,
2960 };
2961
2962 static int ldlm_setup(void)
2963 {
2964         static struct ptlrpc_service_conf       conf;
2965         struct ldlm_bl_pool                    *blp = NULL;
2966 #ifdef HAVE_SERVER_SUPPORT
2967         struct task_struct *task;
2968 #endif /* HAVE_SERVER_SUPPORT */
2969         int i;
2970         int rc = 0;
2971
2972         ENTRY;
2973
2974         if (ldlm_state != NULL)
2975                 RETURN(-EALREADY);
2976
2977         OBD_ALLOC(ldlm_state, sizeof(*ldlm_state));
2978         if (ldlm_state == NULL)
2979                 RETURN(-ENOMEM);
2980
2981         ldlm_kobj = kobject_create_and_add("ldlm", &lustre_kset->kobj);
2982         if (!ldlm_kobj)
2983                 GOTO(out, -ENOMEM);
2984
2985         rc = sysfs_create_group(ldlm_kobj, &ldlm_attr_group);
2986         if (rc)
2987                 GOTO(out, rc);
2988
2989         ldlm_ns_kset = kset_create_and_add("namespaces", NULL, ldlm_kobj);
2990         if (!ldlm_ns_kset)
2991                 GOTO(out, -ENOMEM);
2992
2993         ldlm_svc_kset = kset_create_and_add("services", NULL, ldlm_kobj);
2994         if (!ldlm_svc_kset)
2995                 GOTO(out, -ENOMEM);
2996
2997         rc = ldlm_debugfs_setup();
2998         if (rc != 0)
2999                 GOTO(out, rc);
3000
3001         memset(&conf, 0, sizeof(conf));
3002         conf = (typeof(conf)) {
3003                 .psc_name               = "ldlm_cbd",
3004                 .psc_watchdog_factor    = 2,
3005                 .psc_buf                = {
3006                         .bc_nbufs               = LDLM_CLIENT_NBUFS,
3007                         .bc_buf_size            = LDLM_BUFSIZE,
3008                         .bc_req_max_size        = LDLM_MAXREQSIZE,
3009                         .bc_rep_max_size        = LDLM_MAXREPSIZE,
3010                         .bc_req_portal          = LDLM_CB_REQUEST_PORTAL,
3011                         .bc_rep_portal          = LDLM_CB_REPLY_PORTAL,
3012                 },
3013                 .psc_thr                = {
3014                         .tc_thr_name            = "ldlm_cb",
3015                         .tc_thr_factor          = LDLM_THR_FACTOR,
3016                         .tc_nthrs_init          = LDLM_NTHRS_INIT,
3017                         .tc_nthrs_base          = LDLM_NTHRS_BASE,
3018                         .tc_nthrs_max           = LDLM_NTHRS_MAX,
3019                         .tc_nthrs_user          = ldlm_num_threads,
3020                         .tc_cpu_bind            = ldlm_cpu_bind,
3021                         .tc_ctx_tags            = LCT_MD_THREAD | LCT_DT_THREAD,
3022                 },
3023                 .psc_cpt                = {
3024                         .cc_pattern             = ldlm_cpts,
3025                         .cc_affinity            = true,
3026                 },
3027                 .psc_ops                = {
3028                         .so_req_handler         = ldlm_callback_handler,
3029                 },
3030         };
3031         ldlm_state->ldlm_cb_service = \
3032                         ptlrpc_register_service(&conf, ldlm_svc_kset,
3033                                                 ldlm_svc_debugfs_dir);
3034         if (IS_ERR(ldlm_state->ldlm_cb_service)) {
3035                 CERROR("failed to start service\n");
3036                 rc = PTR_ERR(ldlm_state->ldlm_cb_service);
3037                 ldlm_state->ldlm_cb_service = NULL;
3038                 GOTO(out, rc);
3039         }
3040
3041 #ifdef HAVE_SERVER_SUPPORT
3042         memset(&conf, 0, sizeof(conf));
3043         conf = (typeof(conf)) {
3044                 .psc_name               = "ldlm_canceld",
3045                 .psc_watchdog_factor    = 6,
3046                 .psc_buf                = {
3047                         .bc_nbufs               = LDLM_SERVER_NBUFS,
3048                         .bc_buf_size            = LDLM_BUFSIZE,
3049                         .bc_req_max_size        = LDLM_MAXREQSIZE,
3050                         .bc_rep_max_size        = LDLM_MAXREPSIZE,
3051                         .bc_req_portal          = LDLM_CANCEL_REQUEST_PORTAL,
3052                         .bc_rep_portal          = LDLM_CANCEL_REPLY_PORTAL,
3053
3054                 },
3055                 .psc_thr                = {
3056                         .tc_thr_name            = "ldlm_cn",
3057                         .tc_thr_factor          = LDLM_THR_FACTOR,
3058                         .tc_nthrs_init          = LDLM_NTHRS_INIT,
3059                         .tc_nthrs_base          = LDLM_NTHRS_BASE,
3060                         .tc_nthrs_max           = LDLM_NTHRS_MAX,
3061                         .tc_nthrs_user          = ldlm_num_threads,
3062                         .tc_cpu_bind            = ldlm_cpu_bind,
3063                         .tc_ctx_tags            = LCT_MD_THREAD | \
3064                                                   LCT_DT_THREAD | \
3065                                                   LCT_CL_THREAD,
3066                 },
3067                 .psc_cpt                = {
3068                         .cc_pattern             = ldlm_cpts,
3069                         .cc_affinity            = true,
3070                 },
3071                 .psc_ops                = {
3072                         .so_req_handler         = ldlm_cancel_handler,
3073                         .so_hpreq_handler       = ldlm_hpreq_handler,
3074                 },
3075         };
3076         ldlm_state->ldlm_cancel_service = \
3077                         ptlrpc_register_service(&conf, ldlm_svc_kset,
3078                                                 ldlm_svc_debugfs_dir);
3079         if (IS_ERR(ldlm_state->ldlm_cancel_service)) {
3080                 CERROR("failed to start service\n");
3081                 rc = PTR_ERR(ldlm_state->ldlm_cancel_service);
3082                 ldlm_state->ldlm_cancel_service = NULL;
3083                 GOTO(out, rc);
3084         }
3085 #endif /* HAVE_SERVER_SUPPORT */
3086
3087         OBD_ALLOC(blp, sizeof(*blp));
3088         if (blp == NULL)
3089                 GOTO(out, rc = -ENOMEM);
3090         ldlm_state->ldlm_bl_pool = blp;
3091
3092         spin_lock_init(&blp->blp_lock);
3093         INIT_LIST_HEAD(&blp->blp_list);
3094         INIT_LIST_HEAD(&blp->blp_prio_list);
3095         init_waitqueue_head(&blp->blp_waitq);
3096         atomic_set(&blp->blp_num_threads, 0);
3097         atomic_set(&blp->blp_busy_threads, 0);
3098
3099         if (ldlm_num_threads == 0) {
3100                 blp->blp_min_threads = LDLM_NTHRS_INIT;
3101                 blp->blp_max_threads = LDLM_NTHRS_MAX;
3102         } else {
3103                 blp->blp_min_threads = blp->blp_max_threads = \
3104                         min_t(int, LDLM_NTHRS_MAX, max_t(int, LDLM_NTHRS_INIT,
3105                                                          ldlm_num_threads));
3106         }
3107
3108         for (i = 0; i < blp->blp_min_threads; i++) {
3109                 rc = ldlm_bl_thread_start(blp, false);
3110                 if (rc < 0)
3111                         GOTO(out, rc);
3112         }
3113
3114 #ifdef HAVE_SERVER_SUPPORT
3115         task = kthread_run(expired_lock_main, NULL, "ldlm_elt");
3116         if (IS_ERR(task)) {
3117                 rc = PTR_ERR(task);
3118                 CERROR("Cannot start ldlm expired-lock thread: %d\n", rc);
3119                 GOTO(out, rc);
3120         }
3121
3122         wait_event(expired_lock_wait_queue,
3123                    expired_lock_thread_state == ELT_READY);
3124 #endif /* HAVE_SERVER_SUPPORT */
3125
3126         rc = ldlm_pools_init();
3127         if (rc) {
3128                 CERROR("Failed to initialize LDLM pools: %d\n", rc);
3129                 GOTO(out, rc);
3130         }
3131
3132         rc = ldlm_reclaim_setup();
3133         if (rc) {
3134                 CERROR("Failed to setup reclaim thread: rc = %d\n", rc);
3135                 GOTO(out, rc);
3136         }
3137         RETURN(0);
3138
3139  out:
3140         ldlm_cleanup();
3141         RETURN(rc);
3142 }
3143
3144 static int ldlm_cleanup(void)
3145 {
3146         ENTRY;
3147
3148         if (!list_empty(ldlm_namespace_list(LDLM_NAMESPACE_SERVER)) ||
3149             !list_empty(ldlm_namespace_list(LDLM_NAMESPACE_CLIENT))) {
3150                 CERROR("ldlm still has namespaces; clean these up first.\n");
3151                 ldlm_dump_all_namespaces(LDLM_NAMESPACE_SERVER, D_DLMTRACE);
3152                 ldlm_dump_all_namespaces(LDLM_NAMESPACE_CLIENT, D_DLMTRACE);
3153                 RETURN(-EBUSY);
3154         }
3155
3156         ldlm_reclaim_cleanup();
3157         ldlm_pools_fini();
3158
3159         if (ldlm_state->ldlm_bl_pool != NULL) {
3160                 struct ldlm_bl_pool *blp = ldlm_state->ldlm_bl_pool;
3161
3162                 while (atomic_read(&blp->blp_num_threads) > 0) {
3163                         struct ldlm_bl_work_item blwi = { .blwi_ns = NULL };
3164
3165                         init_completion(&blp->blp_comp);
3166
3167                         spin_lock(&blp->blp_lock);
3168                         list_add_tail(&blwi.blwi_entry, &blp->blp_list);
3169                         wake_up(&blp->blp_waitq);
3170                         spin_unlock(&blp->blp_lock);
3171
3172                         wait_for_completion(&blp->blp_comp);
3173                 }
3174
3175                 OBD_FREE(blp, sizeof(*blp));
3176         }
3177
3178         if (ldlm_state->ldlm_cb_service != NULL)
3179                 ptlrpc_unregister_service(ldlm_state->ldlm_cb_service);
3180 #ifdef HAVE_SERVER_SUPPORT
3181         if (ldlm_state->ldlm_cancel_service != NULL)
3182                 ptlrpc_unregister_service(ldlm_state->ldlm_cancel_service);
3183 #endif
3184
3185         if (ldlm_ns_kset)
3186                 kset_unregister(ldlm_ns_kset);
3187         if (ldlm_svc_kset)
3188                 kset_unregister(ldlm_svc_kset);
3189         if (ldlm_kobj) {
3190                 sysfs_remove_group(ldlm_kobj, &ldlm_attr_group);
3191                 kobject_put(ldlm_kobj);
3192         }
3193
3194         ldlm_debugfs_cleanup();
3195
3196 #ifdef HAVE_SERVER_SUPPORT
3197         if (expired_lock_thread_state != ELT_STOPPED) {
3198                 expired_lock_thread_state = ELT_TERMINATE;
3199                 wake_up(&expired_lock_wait_queue);
3200                 wait_event(expired_lock_wait_queue,
3201                            expired_lock_thread_state == ELT_STOPPED);
3202         }
3203 #endif
3204
3205         OBD_FREE(ldlm_state, sizeof(*ldlm_state));
3206         ldlm_state = NULL;
3207
3208         RETURN(0);
3209 }
3210
3211 int ldlm_init(void)
3212 {
3213         ldlm_resource_slab = kmem_cache_create("ldlm_resources",
3214                                                sizeof(struct ldlm_resource), 0,
3215                                                SLAB_HWCACHE_ALIGN, NULL);
3216         if (ldlm_resource_slab == NULL)
3217                 return -ENOMEM;
3218
3219         ldlm_lock_slab = kmem_cache_create("ldlm_locks",
3220                               sizeof(struct ldlm_lock), 0,
3221                               SLAB_HWCACHE_ALIGN, NULL);
3222         if (ldlm_lock_slab == NULL)
3223                 goto out_resource;
3224
3225         ldlm_interval_slab = kmem_cache_create("interval_node",
3226                                         sizeof(struct ldlm_interval),
3227                                         0, SLAB_HWCACHE_ALIGN, NULL);
3228         if (ldlm_interval_slab == NULL)
3229                 goto out_lock;
3230
3231         ldlm_interval_tree_slab = kmem_cache_create("interval_tree",
3232                         sizeof(struct ldlm_interval_tree) * LCK_MODE_NUM,
3233                         0, SLAB_HWCACHE_ALIGN, NULL);
3234         if (ldlm_interval_tree_slab == NULL)
3235                 goto out_interval;
3236
3237 #ifdef HAVE_SERVER_SUPPORT
3238         ldlm_inodebits_slab = kmem_cache_create("ldlm_ibits_node",
3239                                                 sizeof(struct ldlm_ibits_node),
3240                                                 0, SLAB_HWCACHE_ALIGN, NULL);
3241         if (ldlm_inodebits_slab == NULL)
3242                 goto out_interval_tree;
3243
3244         ldlm_glimpse_work_kmem = kmem_cache_create("ldlm_glimpse_work_kmem",
3245                                         sizeof(struct ldlm_glimpse_work),
3246                                         0, 0, NULL);
3247         if (ldlm_glimpse_work_kmem == NULL)
3248                 goto out_inodebits;
3249 #endif
3250
3251 #if LUSTRE_TRACKS_LOCK_EXP_REFS
3252         class_export_dump_hook = ldlm_dump_export_locks;
3253 #endif
3254         return 0;
3255 #ifdef HAVE_SERVER_SUPPORT
3256 out_inodebits:
3257         kmem_cache_destroy(ldlm_inodebits_slab);
3258 out_interval_tree:
3259         kmem_cache_destroy(ldlm_interval_tree_slab);
3260 #endif
3261 out_interval:
3262         kmem_cache_destroy(ldlm_interval_slab);
3263 out_lock:
3264         kmem_cache_destroy(ldlm_lock_slab);
3265 out_resource:
3266         kmem_cache_destroy(ldlm_resource_slab);
3267
3268         return -ENOMEM;
3269 }
3270
3271 void ldlm_exit(void)
3272 {
3273         if (ldlm_refcount)
3274                 CERROR("ldlm_refcount is %d in ldlm_exit!\n", ldlm_refcount);
3275         kmem_cache_destroy(ldlm_resource_slab);
3276         /*
3277          * ldlm_lock_put() use RCU to call ldlm_lock_free, so need call
3278          * rcu_barrier() to wait all outstanding RCU callbacks to complete,
3279          * so that ldlm_lock_free() get a chance to be called.
3280          */
3281         rcu_barrier();
3282         kmem_cache_destroy(ldlm_lock_slab);
3283         kmem_cache_destroy(ldlm_interval_slab);
3284         kmem_cache_destroy(ldlm_interval_tree_slab);
3285 #ifdef HAVE_SERVER_SUPPORT
3286         kmem_cache_destroy(ldlm_inodebits_slab);
3287         kmem_cache_destroy(ldlm_glimpse_work_kmem);
3288 #endif
3289 }