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LU-104 Properly address ownership of posix and flock locks
[fs/lustre-release.git] / lustre / ldlm / ldlm_request.c
1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2  * vim:expandtab:shiftwidth=8:tabstop=8:
3  *
4  * GPL HEADER START
5  *
6  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
7  *
8  * This program is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License version 2 only,
10  * as published by the Free Software Foundation.
11  *
12  * This program is distributed in the hope that it will be useful, but
13  * WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15  * General Public License version 2 for more details (a copy is included
16  * in the LICENSE file that accompanied this code).
17  *
18  * You should have received a copy of the GNU General Public License
19  * version 2 along with this program; If not, see
20  * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
21  *
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26  * GPL HEADER END
27  */
28 /*
29  * Copyright (c) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
30  * Use is subject to license terms.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  */
36
37 #define DEBUG_SUBSYSTEM S_LDLM
38 #ifndef __KERNEL__
39 #include <signal.h>
40 #include <liblustre.h>
41 #endif
42
43 #include <lustre_dlm.h>
44 #include <obd_class.h>
45 #include <obd.h>
46
47 #include "ldlm_internal.h"
48
49 int ldlm_enqueue_min = OBD_TIMEOUT_DEFAULT;
50 CFS_MODULE_PARM(ldlm_enqueue_min, "i", int, 0644,
51                 "lock enqueue timeout minimum");
52
53 /* in client side, whether the cached locks will be canceled before replay */
54 unsigned int ldlm_cancel_unused_locks_before_replay = 1;
55
56 static void interrupted_completion_wait(void *data)
57 {
58 }
59
60 struct lock_wait_data {
61         struct ldlm_lock *lwd_lock;
62         __u32             lwd_conn_cnt;
63 };
64
65 struct ldlm_async_args {
66         struct lustre_handle lock_handle;
67 };
68
69 int ldlm_expired_completion_wait(void *data)
70 {
71         struct lock_wait_data *lwd = data;
72         struct ldlm_lock *lock = lwd->lwd_lock;
73         struct obd_import *imp;
74         struct obd_device *obd;
75
76         ENTRY;
77         if (lock->l_conn_export == NULL) {
78                 static cfs_time_t next_dump = 0, last_dump = 0;
79
80                 if (ptlrpc_check_suspend())
81                         RETURN(0);
82
83                 LDLM_ERROR(lock, "lock timed out (enqueued at "CFS_TIME_T", "
84                            CFS_DURATION_T"s ago); not entering recovery in "
85                            "server code, just going back to sleep",
86                            lock->l_last_activity,
87                            cfs_time_sub(cfs_time_current_sec(),
88                            lock->l_last_activity));
89                 if (cfs_time_after(cfs_time_current(), next_dump)) {
90                         last_dump = next_dump;
91                         next_dump = cfs_time_shift(300);
92                         ldlm_namespace_dump(D_DLMTRACE,
93                                             ldlm_lock_to_ns(lock));
94                         if (last_dump == 0)
95                                 libcfs_debug_dumplog();
96                 }
97                 RETURN(0);
98         }
99
100         obd = lock->l_conn_export->exp_obd;
101         imp = obd->u.cli.cl_import;
102         ptlrpc_fail_import(imp, lwd->lwd_conn_cnt);
103         LDLM_ERROR(lock, "lock timed out (enqueued at "CFS_TIME_T", "
104                   CFS_DURATION_T"s ago), entering recovery for %s@%s",
105                   lock->l_last_activity,
106                   cfs_time_sub(cfs_time_current_sec(), lock->l_last_activity),
107                   obd2cli_tgt(obd), imp->imp_connection->c_remote_uuid.uuid);
108
109         RETURN(0);
110 }
111
112 /* We use the same basis for both server side and client side functions
113    from a single node. */
114 int ldlm_get_enq_timeout(struct ldlm_lock *lock)
115 {
116         int timeout = at_get(ldlm_lock_to_ns_at(lock));
117         if (AT_OFF)
118                 return obd_timeout / 2;
119         /* Since these are non-updating timeouts, we should be conservative.
120            It would be nice to have some kind of "early reply" mechanism for
121            lock callbacks too... */
122         timeout = min_t(int, at_max, timeout + (timeout >> 1)); /* 150% */
123         return max(timeout, ldlm_enqueue_min);
124 }
125 EXPORT_SYMBOL(ldlm_get_enq_timeout);
126
127 /**
128  * Helper function for ldlm_completion_ast(), updating timings when lock is
129  * actually granted.
130  */
131 static int ldlm_completion_tail(struct ldlm_lock *lock)
132 {
133         long delay;
134         int  result;
135
136         if (lock->l_destroyed || lock->l_flags & LDLM_FL_FAILED) {
137                 LDLM_DEBUG(lock, "client-side enqueue: destroyed");
138                 result = -EIO;
139         } else {
140                 delay = cfs_time_sub(cfs_time_current_sec(),
141                                      lock->l_last_activity);
142                 LDLM_DEBUG(lock, "client-side enqueue: granted after "
143                            CFS_DURATION_T"s", delay);
144
145                 /* Update our time estimate */
146                 at_measured(ldlm_lock_to_ns_at(lock),
147                             delay);
148                 result = 0;
149         }
150         return result;
151 }
152
153 /**
154  * Implementation of ->l_completion_ast() for a client, that doesn't wait
155  * until lock is granted. Suitable for locks enqueued through ptlrpcd, of
156  * other threads that cannot block for long.
157  */
158 int ldlm_completion_ast_async(struct ldlm_lock *lock, int flags, void *data)
159 {
160         ENTRY;
161
162         if (flags == LDLM_FL_WAIT_NOREPROC) {
163                 LDLM_DEBUG(lock, "client-side enqueue waiting on pending lock");
164                 RETURN(0);
165         }
166
167         if (!(flags & (LDLM_FL_BLOCK_WAIT | LDLM_FL_BLOCK_GRANTED |
168                        LDLM_FL_BLOCK_CONV))) {
169                 cfs_waitq_signal(&lock->l_waitq);
170                 RETURN(ldlm_completion_tail(lock));
171         }
172
173         LDLM_DEBUG(lock, "client-side enqueue returned a blocked lock, "
174                    "going forward");
175         ldlm_lock_dump(D_OTHER, lock, 0);
176         ldlm_reprocess_all(lock->l_resource);
177         RETURN(0);
178 }
179
180 /**
181  * Client side LDLM "completion" AST. This is called in several cases:
182  *
183  *     - when a reply to an ENQUEUE rpc is received from the server
184  *       (ldlm_cli_enqueue_fini()). Lock might be granted or not granted at
185  *       this point (determined by flags);
186  *
187  *     - when LDLM_CP_CALLBACK rpc comes to client to notify it that lock has
188  *       been granted;
189  *
190  *     - when ldlm_lock_match(LDLM_FL_LVB_READY) is about to wait until lock
191  *       gets correct lvb;
192  *
193  *     - to force all locks when resource is destroyed (cleanup_resource());
194  *
195  *     - during lock conversion (not used currently).
196  *
197  * If lock is not granted in the first case, this function waits until second
198  * or penultimate cases happen in some other thread.
199  *
200  */
201 int ldlm_completion_ast(struct ldlm_lock *lock, int flags, void *data)
202 {
203         /* XXX ALLOCATE - 160 bytes */
204         struct lock_wait_data lwd;
205         struct obd_device *obd;
206         struct obd_import *imp = NULL;
207         struct l_wait_info lwi;
208         __u32 timeout;
209         int rc = 0;
210         ENTRY;
211
212         if (flags == LDLM_FL_WAIT_NOREPROC) {
213                 LDLM_DEBUG(lock, "client-side enqueue waiting on pending lock");
214                 goto noreproc;
215         }
216
217         if (!(flags & (LDLM_FL_BLOCK_WAIT | LDLM_FL_BLOCK_GRANTED |
218                        LDLM_FL_BLOCK_CONV))) {
219                 cfs_waitq_signal(&lock->l_waitq);
220                 RETURN(0);
221         }
222
223         LDLM_DEBUG(lock, "client-side enqueue returned a blocked lock, "
224                    "sleeping");
225         ldlm_lock_dump(D_OTHER, lock, 0);
226
227 noreproc:
228
229         obd = class_exp2obd(lock->l_conn_export);
230
231         /* if this is a local lock, then there is no import */
232         if (obd != NULL) {
233                 imp = obd->u.cli.cl_import;
234         }
235
236         /* Wait a long time for enqueue - server may have to callback a
237            lock from another client.  Server will evict the other client if it
238            doesn't respond reasonably, and then give us the lock. */
239         timeout = ldlm_get_enq_timeout(lock) * 2;
240
241         lwd.lwd_lock = lock;
242
243         if (lock->l_flags & LDLM_FL_NO_TIMEOUT) {
244                 LDLM_DEBUG(lock, "waiting indefinitely because of NO_TIMEOUT");
245                 lwi = LWI_INTR(interrupted_completion_wait, &lwd);
246         } else {
247                 lwi = LWI_TIMEOUT_INTR(cfs_time_seconds(timeout),
248                                        ldlm_expired_completion_wait,
249                                        interrupted_completion_wait, &lwd);
250         }
251
252         if (imp != NULL) {
253                 cfs_spin_lock(&imp->imp_lock);
254                 lwd.lwd_conn_cnt = imp->imp_conn_cnt;
255                 cfs_spin_unlock(&imp->imp_lock);
256         }
257
258         if (ns_is_client(ldlm_lock_to_ns(lock)) &&
259             OBD_FAIL_CHECK_RESET(OBD_FAIL_LDLM_INTR_CP_AST,
260                                  OBD_FAIL_LDLM_CP_BL_RACE | OBD_FAIL_ONCE)) {
261                 lock->l_flags |= LDLM_FL_FAIL_LOC;
262                 rc = -EINTR;
263         } else {
264                 /* Go to sleep until the lock is granted or cancelled. */
265                 rc = l_wait_event(lock->l_waitq,
266                                   is_granted_or_cancelled(lock), &lwi);
267         }
268
269         if (rc) {
270                 LDLM_DEBUG(lock, "client-side enqueue waking up: failed (%d)",
271                            rc);
272                 RETURN(rc);
273         }
274
275         RETURN(ldlm_completion_tail(lock));
276 }
277
278 /**
279  * A helper to build a blocking ast function
280  *
281  * Perform a common operation for blocking asts:
282  * defferred lock cancellation.
283  *
284  * \param lock the lock blocking or canceling ast was called on
285  * \retval 0
286  * \see mdt_blocking_ast
287  * \see ldlm_blocking_ast
288  */
289 int ldlm_blocking_ast_nocheck(struct ldlm_lock *lock)
290 {
291         int do_ast;
292         ENTRY;
293
294         lock->l_flags |= LDLM_FL_CBPENDING;
295         do_ast = (!lock->l_readers && !lock->l_writers);
296         unlock_res_and_lock(lock);
297
298         if (do_ast) {
299                 struct lustre_handle lockh;
300                 int rc;
301
302                 LDLM_DEBUG(lock, "already unused, calling ldlm_cli_cancel");
303                 ldlm_lock2handle(lock, &lockh);
304                 rc = ldlm_cli_cancel(&lockh);
305                 if (rc < 0)
306                         CERROR("ldlm_cli_cancel: %d\n", rc);
307         } else {
308                 LDLM_DEBUG(lock, "Lock still has references, will be "
309                            "cancelled later");
310         }
311         RETURN(0);
312 }
313
314 /**
315  * Server blocking AST
316  *
317  * ->l_blocking_ast() callback for LDLM locks acquired by server-side
318  * OBDs.
319  *
320  * \param lock the lock which blocks a request or cancelling lock
321  * \param desc unused
322  * \param data unused
323  * \param flag indicates whether this cancelling or blocking callback
324  * \retval 0
325  * \see ldlm_blocking_ast_nocheck
326  */
327 int ldlm_blocking_ast(struct ldlm_lock *lock, struct ldlm_lock_desc *desc,
328                       void *data, int flag)
329 {
330         ENTRY;
331
332         if (flag == LDLM_CB_CANCELING) {
333                 /* Don't need to do anything here. */
334                 RETURN(0);
335         }
336
337         lock_res_and_lock(lock);
338         /* Get this: if ldlm_blocking_ast is racing with intent_policy, such
339          * that ldlm_blocking_ast is called just before intent_policy method
340          * takes the lr_lock, then by the time we get the lock, we might not
341          * be the correct blocking function anymore.  So check, and return
342          * early, if so. */
343         if (lock->l_blocking_ast != ldlm_blocking_ast) {
344                 unlock_res_and_lock(lock);
345                 RETURN(0);
346         }
347         RETURN(ldlm_blocking_ast_nocheck(lock));
348 }
349
350 /*
351  * ->l_glimpse_ast() for DLM extent locks acquired on the server-side. See
352  * comment in filter_intent_policy() on why you may need this.
353  */
354 int ldlm_glimpse_ast(struct ldlm_lock *lock, void *reqp)
355 {
356         /*
357          * Returning -ELDLM_NO_LOCK_DATA actually works, but the reason for
358          * that is rather subtle: with OST-side locking, it may so happen that
359          * _all_ extent locks are held by the OST. If client wants to obtain
360          * current file size it calls ll{,u}_glimpse_size(), and (as locks are
361          * on the server), dummy glimpse callback fires and does
362          * nothing. Client still receives correct file size due to the
363          * following fragment in filter_intent_policy():
364          *
365          * rc = l->l_glimpse_ast(l, NULL); // this will update the LVB
366          * if (rc != 0 && res->lr_namespace->ns_lvbo &&
367          *     res->lr_namespace->ns_lvbo->lvbo_update) {
368          *         res->lr_namespace->ns_lvbo->lvbo_update(res, NULL, 0, 1);
369          * }
370          *
371          * that is, after glimpse_ast() fails, filter_lvbo_update() runs, and
372          * returns correct file size to the client.
373          */
374         return -ELDLM_NO_LOCK_DATA;
375 }
376
377 int ldlm_cli_enqueue_local(struct ldlm_namespace *ns,
378                            const struct ldlm_res_id *res_id,
379                            ldlm_type_t type, ldlm_policy_data_t *policy,
380                            ldlm_mode_t mode, int *flags,
381                            ldlm_blocking_callback blocking,
382                            ldlm_completion_callback completion,
383                            ldlm_glimpse_callback glimpse,
384                            void *data, __u32 lvb_len,
385                            const __u64 *client_cookie,
386                            struct lustre_handle *lockh)
387 {
388         struct ldlm_lock *lock;
389         int err;
390         const struct ldlm_callback_suite cbs = { .lcs_completion = completion,
391                                                  .lcs_blocking   = blocking,
392                                                  .lcs_glimpse    = glimpse,
393         };
394         ENTRY;
395
396         LASSERT(!(*flags & LDLM_FL_REPLAY));
397         if (unlikely(ns_is_client(ns))) {
398                 CERROR("Trying to enqueue local lock in a shadow namespace\n");
399                 LBUG();
400         }
401
402         lock = ldlm_lock_create(ns, res_id, type, mode, &cbs, data, lvb_len);
403         if (unlikely(!lock))
404                 GOTO(out_nolock, err = -ENOMEM);
405
406         ldlm_lock2handle(lock, lockh);
407
408         /* NB: we don't have any lock now (lock_res_and_lock)
409          * because it's a new lock */
410         ldlm_lock_addref_internal_nolock(lock, mode);
411         lock->l_flags |= LDLM_FL_LOCAL;
412         if (*flags & LDLM_FL_ATOMIC_CB)
413                 lock->l_flags |= LDLM_FL_ATOMIC_CB;
414
415         if (policy != NULL)
416                 lock->l_policy_data = *policy;
417         if (client_cookie != NULL)
418                 lock->l_client_cookie = *client_cookie;
419         if (type == LDLM_EXTENT)
420                 lock->l_req_extent = policy->l_extent;
421
422         err = ldlm_lock_enqueue(ns, &lock, policy, flags);
423         if (unlikely(err != ELDLM_OK))
424                 GOTO(out, err);
425
426         if (policy != NULL)
427                 *policy = lock->l_policy_data;
428
429         if (lock->l_completion_ast)
430                 lock->l_completion_ast(lock, *flags, NULL);
431
432         LDLM_DEBUG(lock, "client-side local enqueue handler, new lock created");
433         EXIT;
434  out:
435         LDLM_LOCK_RELEASE(lock);
436  out_nolock:
437         return err;
438 }
439
440 static void failed_lock_cleanup(struct ldlm_namespace *ns,
441                                 struct ldlm_lock *lock, int mode)
442 {
443         int need_cancel = 0;
444
445         /* Set a flag to prevent us from sending a CANCEL (bug 407) */
446         lock_res_and_lock(lock);
447         /* Check that lock is not granted or failed, we might race. */
448         if ((lock->l_req_mode != lock->l_granted_mode) &&
449             !(lock->l_flags & LDLM_FL_FAILED)) {
450                 /* Make sure that this lock will not be found by raced
451                  * bl_ast and -EINVAL reply is sent to server anyways.
452                  * bug 17645 */
453                 lock->l_flags |= LDLM_FL_LOCAL_ONLY | LDLM_FL_FAILED |
454                                  LDLM_FL_ATOMIC_CB | LDLM_FL_CBPENDING;
455                 need_cancel = 1;
456         }
457         unlock_res_and_lock(lock);
458
459         if (need_cancel)
460                 LDLM_DEBUG(lock,
461                            "setting FL_LOCAL_ONLY | LDLM_FL_FAILED | "
462                            "LDLM_FL_ATOMIC_CB | LDLM_FL_CBPENDING");
463         else
464                 LDLM_DEBUG(lock, "lock was granted or failed in race");
465
466         ldlm_lock_decref_internal(lock, mode);
467
468         /* XXX - HACK because we shouldn't call ldlm_lock_destroy()
469          *       from llite/file.c/ll_file_flock(). */
470         /* This code makes for the fact that we do not have blocking handler on
471          * a client for flock locks. As such this is the place where we must
472          * completely kill failed locks. (interrupted and those that
473          * were waiting to be granted when server evicted us. */
474         if (lock->l_resource->lr_type == LDLM_FLOCK) {
475                 lock_res_and_lock(lock);
476                 ldlm_resource_unlink_lock(lock);
477                 ldlm_lock_destroy_nolock(lock);
478                 unlock_res_and_lock(lock);
479         }
480 }
481
482 int ldlm_cli_enqueue_fini(struct obd_export *exp, struct ptlrpc_request *req,
483                           ldlm_type_t type, __u8 with_policy, ldlm_mode_t mode,
484                           int *flags, void *lvb, __u32 lvb_len,
485                           struct lustre_handle *lockh,int rc)
486 {
487         struct ldlm_namespace *ns = exp->exp_obd->obd_namespace;
488         int is_replay = *flags & LDLM_FL_REPLAY;
489         struct ldlm_lock *lock;
490         struct ldlm_reply *reply;
491         struct ost_lvb *tmplvb;
492         int cleanup_phase = 1;
493         ENTRY;
494
495         lock = ldlm_handle2lock(lockh);
496         /* ldlm_cli_enqueue is holding a reference on this lock. */
497         if (!lock) {
498                 LASSERT(type == LDLM_FLOCK);
499                 RETURN(-ENOLCK);
500         }
501
502         if (rc != ELDLM_OK) {
503                 LASSERT(!is_replay);
504                 LDLM_DEBUG(lock, "client-side enqueue END (%s)",
505                            rc == ELDLM_LOCK_ABORTED ? "ABORTED" : "FAILED");
506                 if (rc == ELDLM_LOCK_ABORTED) {
507                         /* Before we return, swab the reply */
508                         reply = req_capsule_server_get(&req->rq_pill,
509                                                        &RMF_DLM_REP);
510                         if (reply == NULL)
511                                 rc = -EPROTO;
512                         if (lvb_len) {
513
514                                 req_capsule_set_size(&req->rq_pill,
515                                                      &RMF_DLM_LVB, RCL_SERVER,
516                                                      lvb_len);
517                                 tmplvb = req_capsule_server_get(&req->rq_pill,
518                                                                  &RMF_DLM_LVB);
519                                 if (tmplvb == NULL)
520                                         GOTO(cleanup, rc = -EPROTO);
521                                 if (lvb != NULL)
522                                         memcpy(lvb, tmplvb, lvb_len);
523                         }
524                 }
525                 GOTO(cleanup, rc);
526         }
527
528         reply = req_capsule_server_get(&req->rq_pill, &RMF_DLM_REP);
529         if (reply == NULL)
530                 GOTO(cleanup, rc = -EPROTO);
531
532         /* lock enqueued on the server */
533         cleanup_phase = 0;
534
535         lock_res_and_lock(lock);
536         /* Key change rehash lock in per-export hash with new key */
537         if (exp->exp_lock_hash) {
538                 cfs_hash_rehash_key(exp->exp_lock_hash,
539                                     &lock->l_remote_handle,
540                                     &reply->lock_handle,
541                                     &lock->l_exp_hash);
542         } else {
543                 lock->l_remote_handle = reply->lock_handle;
544         }
545
546         *flags = reply->lock_flags;
547         lock->l_flags |= reply->lock_flags & LDLM_INHERIT_FLAGS;
548         /* move NO_TIMEOUT flag to the lock to force ldlm_lock_match()
549          * to wait with no timeout as well */
550         lock->l_flags |= reply->lock_flags & LDLM_FL_NO_TIMEOUT;
551         unlock_res_and_lock(lock);
552
553         CDEBUG(D_INFO, "local: %p, remote cookie: "LPX64", flags: 0x%x\n",
554                lock, reply->lock_handle.cookie, *flags);
555
556         /* If enqueue returned a blocked lock but the completion handler has
557          * already run, then it fixed up the resource and we don't need to do it
558          * again. */
559         if ((*flags) & LDLM_FL_LOCK_CHANGED) {
560                 int newmode = reply->lock_desc.l_req_mode;
561                 LASSERT(!is_replay);
562                 if (newmode && newmode != lock->l_req_mode) {
563                         LDLM_DEBUG(lock, "server returned different mode %s",
564                                    ldlm_lockname[newmode]);
565                         lock->l_req_mode = newmode;
566                 }
567
568                 if (memcmp(reply->lock_desc.l_resource.lr_name.name,
569                           lock->l_resource->lr_name.name,
570                           sizeof(struct ldlm_res_id))) {
571                         CDEBUG(D_INFO, "remote intent success, locking "
572                                         "(%ld,%ld,%ld) instead of "
573                                         "(%ld,%ld,%ld)\n",
574                               (long)reply->lock_desc.l_resource.lr_name.name[0],
575                               (long)reply->lock_desc.l_resource.lr_name.name[1],
576                               (long)reply->lock_desc.l_resource.lr_name.name[2],
577                               (long)lock->l_resource->lr_name.name[0],
578                               (long)lock->l_resource->lr_name.name[1],
579                               (long)lock->l_resource->lr_name.name[2]);
580
581                         rc = ldlm_lock_change_resource(ns, lock,
582                                         &reply->lock_desc.l_resource.lr_name);
583                         if (rc || lock->l_resource == NULL)
584                                 GOTO(cleanup, rc = -ENOMEM);
585                         LDLM_DEBUG(lock, "client-side enqueue, new resource");
586                 }
587                 if (with_policy)
588                         if (!(type == LDLM_IBITS && !(exp->exp_connect_flags &
589                                                     OBD_CONNECT_IBITS)))
590                                 /* We assume lock type cannot change on server*/
591                                 ldlm_convert_policy_to_local(
592                                                 lock->l_resource->lr_type,
593                                                 &reply->lock_desc.l_policy_data,
594                                                 &lock->l_policy_data);
595                 if (type != LDLM_PLAIN)
596                         LDLM_DEBUG(lock,"client-side enqueue, new policy data");
597         }
598
599         if ((*flags) & LDLM_FL_AST_SENT ||
600             /* Cancel extent locks as soon as possible on a liblustre client,
601              * because it cannot handle asynchronous ASTs robustly (see
602              * bug 7311). */
603             (LIBLUSTRE_CLIENT && type == LDLM_EXTENT)) {
604                 lock_res_and_lock(lock);
605                 lock->l_flags |= LDLM_FL_CBPENDING |  LDLM_FL_BL_AST;
606                 unlock_res_and_lock(lock);
607                 LDLM_DEBUG(lock, "enqueue reply includes blocking AST");
608         }
609
610         /* If the lock has already been granted by a completion AST, don't
611          * clobber the LVB with an older one. */
612         if (lvb_len) {
613                 /* We must lock or a racing completion might update lvb
614                    without letting us know and we'll clobber the correct value.
615                    Cannot unlock after the check either, a that still leaves
616                    a tiny window for completion to get in */
617                 lock_res_and_lock(lock);
618                 if (lock->l_req_mode != lock->l_granted_mode) {
619
620                         req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB,
621                                              RCL_SERVER, lvb_len);
622                         tmplvb = req_capsule_server_get(&req->rq_pill,
623                                                              &RMF_DLM_LVB);
624                         if (tmplvb == NULL) {
625                                 unlock_res_and_lock(lock);
626                                 GOTO(cleanup, rc = -EPROTO);
627                         }
628                         memcpy(lock->l_lvb_data, tmplvb, lvb_len);
629                 }
630                 unlock_res_and_lock(lock);
631         }
632
633         if (!is_replay) {
634                 rc = ldlm_lock_enqueue(ns, &lock, NULL, flags);
635                 if (lock->l_completion_ast != NULL) {
636                         int err = lock->l_completion_ast(lock, *flags, NULL);
637                         if (!rc)
638                                 rc = err;
639                         if (rc)
640                                 cleanup_phase = 1;
641                 }
642         }
643
644         if (lvb_len && lvb != NULL) {
645                 /* Copy the LVB here, and not earlier, because the completion
646                  * AST (if any) can override what we got in the reply */
647                 memcpy(lvb, lock->l_lvb_data, lvb_len);
648         }
649
650         LDLM_DEBUG(lock, "client-side enqueue END");
651         EXIT;
652 cleanup:
653         if (cleanup_phase == 1 && rc)
654                 failed_lock_cleanup(ns, lock, mode);
655         /* Put lock 2 times, the second reference is held by ldlm_cli_enqueue */
656         LDLM_LOCK_PUT(lock);
657         LDLM_LOCK_RELEASE(lock);
658         return rc;
659 }
660
661 /* PAGE_SIZE-512 is to allow TCP/IP and LNET headers to fit into
662  * a single page on the send/receive side. XXX: 512 should be changed
663  * to more adequate value. */
664 static inline int ldlm_req_handles_avail(int req_size, int off)
665 {
666         int avail;
667
668         avail = min_t(int, LDLM_MAXREQSIZE, CFS_PAGE_SIZE - 512) - req_size;
669         if (likely(avail >= 0))
670                 avail /= (int)sizeof(struct lustre_handle);
671         else
672                 avail = 0;
673         avail += LDLM_LOCKREQ_HANDLES - off;
674
675         return avail;
676 }
677
678 static inline int ldlm_capsule_handles_avail(struct req_capsule *pill,
679                                              enum req_location loc,
680                                              int off)
681 {
682         int size = req_capsule_msg_size(pill, loc);
683         return ldlm_req_handles_avail(size, off);
684 }
685
686 static inline int ldlm_format_handles_avail(struct obd_import *imp,
687                                             const struct req_format *fmt,
688                                             enum req_location loc, int off)
689 {
690         int size = req_capsule_fmt_size(imp->imp_msg_magic, fmt, loc);
691         return ldlm_req_handles_avail(size, off);
692 }
693
694 /* Cancel lru locks and pack them into the enqueue request. Pack there the given
695  * @count locks in @cancels. */
696 int ldlm_prep_elc_req(struct obd_export *exp, struct ptlrpc_request *req,
697                       int version, int opc, int canceloff,
698                       cfs_list_t *cancels, int count)
699 {
700         struct ldlm_namespace   *ns = exp->exp_obd->obd_namespace;
701         struct req_capsule      *pill = &req->rq_pill;
702         struct ldlm_request     *dlm = NULL;
703         int flags, avail, to_free, bufcount, pack = 0;
704         CFS_LIST_HEAD(head);
705         int rc;
706         ENTRY;
707
708         if (cancels == NULL)
709                 cancels = &head;
710         if (exp_connect_cancelset(exp)) {
711                 /* Estimate the amount of available space in the request. */
712                 bufcount = req_capsule_filled_sizes(pill, RCL_CLIENT);
713                 avail = ldlm_capsule_handles_avail(pill, RCL_CLIENT, canceloff);
714
715                 flags = ns_connect_lru_resize(ns) ?
716                         LDLM_CANCEL_LRUR : LDLM_CANCEL_AGED;
717                 to_free = !ns_connect_lru_resize(ns) &&
718                           opc == LDLM_ENQUEUE ? 1 : 0;
719
720                 /* Cancel lru locks here _only_ if the server supports
721                  * EARLY_CANCEL. Otherwise we have to send extra CANCEL
722                  * rpc, what will make us slower. */
723                 if (avail > count)
724                         count += ldlm_cancel_lru_local(ns, cancels, to_free,
725                                                        avail - count, 0, flags);
726                 if (avail > count)
727                         pack = count;
728                 else
729                         pack = avail;
730                 req_capsule_set_size(pill, &RMF_DLM_REQ, RCL_CLIENT,
731                                      ldlm_request_bufsize(pack, opc));
732         }
733
734         rc = ptlrpc_request_pack(req, version, opc);
735         if (rc) {
736                 ldlm_lock_list_put(cancels, l_bl_ast, count);
737                 RETURN(rc);
738         }
739
740         if (exp_connect_cancelset(exp)) {
741                 if (canceloff) {
742                         dlm = req_capsule_client_get(pill, &RMF_DLM_REQ);
743                         LASSERT(dlm);
744                         /* Skip first lock handler in ldlm_request_pack(),
745                          * this method will incrment @lock_count according
746                          * to the lock handle amount actually written to
747                          * the buffer. */
748                         dlm->lock_count = canceloff;
749                 }
750                 /* Pack into the request @pack lock handles. */
751                 ldlm_cli_cancel_list(cancels, pack, req, 0);
752                 /* Prepare and send separate cancel rpc for others. */
753                 ldlm_cli_cancel_list(cancels, count - pack, NULL, 0);
754         } else {
755                 ldlm_lock_list_put(cancels, l_bl_ast, count);
756         }
757         RETURN(0);
758 }
759
760 int ldlm_prep_enqueue_req(struct obd_export *exp, struct ptlrpc_request *req,
761                           cfs_list_t *cancels, int count)
762 {
763         return ldlm_prep_elc_req(exp, req, LUSTRE_DLM_VERSION, LDLM_ENQUEUE,
764                                  LDLM_ENQUEUE_CANCEL_OFF, cancels, count);
765 }
766
767 /* If a request has some specific initialisation it is passed in @reqp,
768  * otherwise it is created in ldlm_cli_enqueue.
769  *
770  * Supports sync and async requests, pass @async flag accordingly. If a
771  * request was created in ldlm_cli_enqueue and it is the async request,
772  * pass it to the caller in @reqp. */
773 int ldlm_cli_enqueue(struct obd_export *exp, struct ptlrpc_request **reqp,
774                      struct ldlm_enqueue_info *einfo,
775                      const struct ldlm_res_id *res_id,
776                      ldlm_policy_data_t const *policy, int *flags,
777                      void *lvb, __u32 lvb_len, struct lustre_handle *lockh,
778                      int async)
779 {
780         struct ldlm_namespace *ns = exp->exp_obd->obd_namespace;
781         struct ldlm_lock      *lock;
782         struct ldlm_request   *body;
783         int                    is_replay = *flags & LDLM_FL_REPLAY;
784         int                    req_passed_in = 1;
785         int                    rc, err;
786         struct ptlrpc_request *req;
787         ENTRY;
788
789         LASSERT(exp != NULL);
790
791         /* If we're replaying this lock, just check some invariants.
792          * If we're creating a new lock, get everything all setup nice. */
793         if (is_replay) {
794                 lock = ldlm_handle2lock_long(lockh, 0);
795                 LASSERT(lock != NULL);
796                 LDLM_DEBUG(lock, "client-side enqueue START");
797                 LASSERT(exp == lock->l_conn_export);
798         } else {
799                 const struct ldlm_callback_suite cbs = {
800                         .lcs_completion = einfo->ei_cb_cp,
801                         .lcs_blocking   = einfo->ei_cb_bl,
802                         .lcs_glimpse    = einfo->ei_cb_gl,
803                         .lcs_weigh      = einfo->ei_cb_wg
804                 };
805                 lock = ldlm_lock_create(ns, res_id, einfo->ei_type,
806                                         einfo->ei_mode, &cbs, einfo->ei_cbdata,
807                                         lvb_len);
808                 if (lock == NULL)
809                         RETURN(-ENOMEM);
810                 /* for the local lock, add the reference */
811                 ldlm_lock_addref_internal(lock, einfo->ei_mode);
812                 ldlm_lock2handle(lock, lockh);
813                 if (policy != NULL) {
814                         /* INODEBITS_INTEROP: If the server does not support
815                          * inodebits, we will request a plain lock in the
816                          * descriptor (ldlm_lock2desc() below) but use an
817                          * inodebits lock internally with both bits set.
818                          */
819                         if (einfo->ei_type == LDLM_IBITS &&
820                             !(exp->exp_connect_flags & OBD_CONNECT_IBITS))
821                                 lock->l_policy_data.l_inodebits.bits =
822                                         MDS_INODELOCK_LOOKUP |
823                                         MDS_INODELOCK_UPDATE;
824                         else
825                                 lock->l_policy_data = *policy;
826                 }
827
828                 if (einfo->ei_type == LDLM_EXTENT)
829                         lock->l_req_extent = policy->l_extent;
830                 LDLM_DEBUG(lock, "client-side enqueue START");
831         }
832
833         /* lock not sent to server yet */
834
835         if (reqp == NULL || *reqp == NULL) {
836                 req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp),
837                                                 &RQF_LDLM_ENQUEUE,
838                                                 LUSTRE_DLM_VERSION,
839                                                 LDLM_ENQUEUE);
840                 if (req == NULL) {
841                         failed_lock_cleanup(ns, lock, einfo->ei_mode);
842                         LDLM_LOCK_RELEASE(lock);
843                         RETURN(-ENOMEM);
844                 }
845                 req_passed_in = 0;
846                 if (reqp)
847                         *reqp = req;
848         } else {
849                 int len;
850
851                 req = *reqp;
852                 len = req_capsule_get_size(&req->rq_pill, &RMF_DLM_REQ,
853                                            RCL_CLIENT);
854                 LASSERTF(len >= sizeof(*body), "buflen[%d] = %d, not %d\n",
855                          DLM_LOCKREQ_OFF, len, (int)sizeof(*body));
856         }
857
858         lock->l_conn_export = exp;
859         lock->l_export = NULL;
860         lock->l_blocking_ast = einfo->ei_cb_bl;
861
862         /* Dump lock data into the request buffer */
863         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
864         ldlm_lock2desc(lock, &body->lock_desc);
865         body->lock_flags = *flags;
866         body->lock_handle[0] = *lockh;
867
868         /* Continue as normal. */
869         if (!req_passed_in) {
870                 if (lvb_len > 0) {
871                         req_capsule_extend(&req->rq_pill,
872                                            &RQF_LDLM_ENQUEUE_LVB);
873                         req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB,
874                                              RCL_SERVER, lvb_len);
875                 }
876                 ptlrpc_request_set_replen(req);
877         }
878
879         /*
880          * Liblustre client doesn't get extent locks, except for O_APPEND case
881          * where [0, OBD_OBJECT_EOF] lock is taken, or truncate, where
882          * [i_size, OBD_OBJECT_EOF] lock is taken.
883          */
884         LASSERT(ergo(LIBLUSTRE_CLIENT, einfo->ei_type != LDLM_EXTENT ||
885                      policy->l_extent.end == OBD_OBJECT_EOF));
886
887         if (async) {
888                 LASSERT(reqp != NULL);
889                 RETURN(0);
890         }
891
892         LDLM_DEBUG(lock, "sending request");
893
894         rc = ptlrpc_queue_wait(req);
895
896         err = ldlm_cli_enqueue_fini(exp, req, einfo->ei_type, policy ? 1 : 0,
897                                     einfo->ei_mode, flags, lvb, lvb_len,
898                                     lockh, rc);
899
900         /* If ldlm_cli_enqueue_fini did not find the lock, we need to free
901          * one reference that we took */
902         if (err == -ENOLCK)
903                 LDLM_LOCK_RELEASE(lock);
904         else
905                 rc = err;
906
907         if (!req_passed_in && req != NULL) {
908                 ptlrpc_req_finished(req);
909                 if (reqp)
910                         *reqp = NULL;
911         }
912
913         RETURN(rc);
914 }
915
916 static int ldlm_cli_convert_local(struct ldlm_lock *lock, int new_mode,
917                                   __u32 *flags)
918 {
919         struct ldlm_resource *res;
920         int rc;
921         ENTRY;
922         if (ns_is_client(ldlm_lock_to_ns(lock))) {
923                 CERROR("Trying to cancel local lock\n");
924                 LBUG();
925         }
926         LDLM_DEBUG(lock, "client-side local convert");
927
928         res = ldlm_lock_convert(lock, new_mode, flags);
929         if (res) {
930                 ldlm_reprocess_all(res);
931                 rc = 0;
932         } else {
933                 rc = EDEADLOCK;
934         }
935         LDLM_DEBUG(lock, "client-side local convert handler END");
936         LDLM_LOCK_PUT(lock);
937         RETURN(rc);
938 }
939
940 /* FIXME: one of ldlm_cli_convert or the server side should reject attempted
941  * conversion of locks which are on the waiting or converting queue */
942 /* Caller of this code is supposed to take care of lock readers/writers
943    accounting */
944 int ldlm_cli_convert(struct lustre_handle *lockh, int new_mode, __u32 *flags)
945 {
946         struct ldlm_request   *body;
947         struct ldlm_reply     *reply;
948         struct ldlm_lock      *lock;
949         struct ldlm_resource  *res;
950         struct ptlrpc_request *req;
951         int                    rc;
952         ENTRY;
953
954         lock = ldlm_handle2lock(lockh);
955         if (!lock) {
956                 LBUG();
957                 RETURN(-EINVAL);
958         }
959         *flags = 0;
960
961         if (lock->l_conn_export == NULL)
962                 RETURN(ldlm_cli_convert_local(lock, new_mode, flags));
963
964         LDLM_DEBUG(lock, "client-side convert");
965
966         req = ptlrpc_request_alloc_pack(class_exp2cliimp(lock->l_conn_export),
967                                         &RQF_LDLM_CONVERT, LUSTRE_DLM_VERSION,
968                                         LDLM_CONVERT);
969         if (req == NULL) {
970                 LDLM_LOCK_PUT(lock);
971                 RETURN(-ENOMEM);
972         }
973
974         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
975         body->lock_handle[0] = lock->l_remote_handle;
976
977         body->lock_desc.l_req_mode = new_mode;
978         body->lock_flags = *flags;
979
980
981         ptlrpc_request_set_replen(req);
982         rc = ptlrpc_queue_wait(req);
983         if (rc != ELDLM_OK)
984                 GOTO(out, rc);
985
986         reply = req_capsule_server_get(&req->rq_pill, &RMF_DLM_REP);
987         if (reply == NULL)
988                 GOTO(out, rc = -EPROTO);
989
990         if (req->rq_status)
991                 GOTO(out, rc = req->rq_status);
992
993         res = ldlm_lock_convert(lock, new_mode, &reply->lock_flags);
994         if (res != NULL) {
995                 ldlm_reprocess_all(res);
996                 /* Go to sleep until the lock is granted. */
997                 /* FIXME: or cancelled. */
998                 if (lock->l_completion_ast) {
999                         rc = lock->l_completion_ast(lock, LDLM_FL_WAIT_NOREPROC,
1000                                                     NULL);
1001                         if (rc)
1002                                 GOTO(out, rc);
1003                 }
1004         } else {
1005                 rc = EDEADLOCK;
1006         }
1007         EXIT;
1008  out:
1009         LDLM_LOCK_PUT(lock);
1010         ptlrpc_req_finished(req);
1011         return rc;
1012 }
1013
1014 /* Cancel locks locally.
1015  * Returns:
1016  * LDLM_FL_LOCAL_ONLY if tere is no need in a CANCEL rpc to the server;
1017  * LDLM_FL_CANCELING otherwise;
1018  * LDLM_FL_BL_AST if there is a need in a separate CANCEL rpc. */
1019 static int ldlm_cli_cancel_local(struct ldlm_lock *lock)
1020 {
1021         int rc = LDLM_FL_LOCAL_ONLY;
1022         ENTRY;
1023
1024         if (lock->l_conn_export) {
1025                 int local_only;
1026
1027                 LDLM_DEBUG(lock, "client-side cancel");
1028                 /* Set this flag to prevent others from getting new references*/
1029                 lock_res_and_lock(lock);
1030                 lock->l_flags |= LDLM_FL_CBPENDING;
1031                 local_only = (lock->l_flags &
1032                               (LDLM_FL_LOCAL_ONLY|LDLM_FL_CANCEL_ON_BLOCK));
1033                 ldlm_cancel_callback(lock);
1034                 rc = (lock->l_flags & LDLM_FL_BL_AST) ?
1035                         LDLM_FL_BL_AST : LDLM_FL_CANCELING;
1036                 unlock_res_and_lock(lock);
1037
1038                 if (local_only) {
1039                         CDEBUG(D_DLMTRACE, "not sending request (at caller's "
1040                                "instruction)\n");
1041                         rc = LDLM_FL_LOCAL_ONLY;
1042                 }
1043                 ldlm_lock_cancel(lock);
1044         } else {
1045                 if (ns_is_client(ldlm_lock_to_ns(lock))) {
1046                         LDLM_ERROR(lock, "Trying to cancel local lock");
1047                         LBUG();
1048                 }
1049                 LDLM_DEBUG(lock, "server-side local cancel");
1050                 ldlm_lock_cancel(lock);
1051                 ldlm_reprocess_all(lock->l_resource);
1052         }
1053
1054         RETURN(rc);
1055 }
1056
1057 /* Pack @count locks in @head into ldlm_request buffer at the offset @off,
1058    of the request @req. */
1059 static void ldlm_cancel_pack(struct ptlrpc_request *req,
1060                              cfs_list_t *head, int count)
1061 {
1062         struct ldlm_request *dlm;
1063         struct ldlm_lock *lock;
1064         int max, packed = 0;
1065         ENTRY;
1066
1067         dlm = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
1068         LASSERT(dlm != NULL);
1069
1070         /* Check the room in the request buffer. */
1071         max = req_capsule_get_size(&req->rq_pill, &RMF_DLM_REQ, RCL_CLIENT) -
1072                 sizeof(struct ldlm_request);
1073         max /= sizeof(struct lustre_handle);
1074         max += LDLM_LOCKREQ_HANDLES;
1075         LASSERT(max >= dlm->lock_count + count);
1076
1077         /* XXX: it would be better to pack lock handles grouped by resource.
1078          * so that the server cancel would call filter_lvbo_update() less
1079          * frequently. */
1080         cfs_list_for_each_entry(lock, head, l_bl_ast) {
1081                 if (!count--)
1082                         break;
1083                 LASSERT(lock->l_conn_export);
1084                 /* Pack the lock handle to the given request buffer. */
1085                 LDLM_DEBUG(lock, "packing");
1086                 dlm->lock_handle[dlm->lock_count++] = lock->l_remote_handle;
1087                 packed++;
1088         }
1089         CDEBUG(D_DLMTRACE, "%d locks packed\n", packed);
1090         EXIT;
1091 }
1092
1093 /* Prepare and send a batched cancel rpc, it will include count lock handles
1094  * of locks given in @head. */
1095 int ldlm_cli_cancel_req(struct obd_export *exp, cfs_list_t *cancels,
1096                         int count, ldlm_cancel_flags_t flags)
1097 {
1098         struct ptlrpc_request *req = NULL;
1099         struct obd_import *imp;
1100         int free, sent = 0;
1101         int rc = 0;
1102         ENTRY;
1103
1104         LASSERT(exp != NULL);
1105         LASSERT(count > 0);
1106
1107         OBD_FAIL_TIMEOUT(OBD_FAIL_LDLM_PAUSE_CANCEL, obd_fail_val);
1108
1109         if (OBD_FAIL_CHECK(OBD_FAIL_LDLM_CANCEL_RACE))
1110                 RETURN(count);
1111
1112         free = ldlm_format_handles_avail(class_exp2cliimp(exp),
1113                                          &RQF_LDLM_CANCEL, RCL_CLIENT, 0);
1114         if (count > free)
1115                 count = free;
1116
1117         while (1) {
1118                 int bufcount;
1119
1120                 imp = class_exp2cliimp(exp);
1121                 if (imp == NULL || imp->imp_invalid) {
1122                         CDEBUG(D_DLMTRACE,
1123                                "skipping cancel on invalid import %p\n", imp);
1124                         RETURN(count);
1125                 }
1126
1127                 req = ptlrpc_request_alloc(imp, &RQF_LDLM_CANCEL);
1128                 if (req == NULL)
1129                         GOTO(out, rc = -ENOMEM);
1130
1131                 bufcount = req_capsule_filled_sizes(&req->rq_pill, RCL_CLIENT);
1132                 req_capsule_set_size(&req->rq_pill, &RMF_DLM_REQ, RCL_CLIENT,
1133                                      ldlm_request_bufsize(count, LDLM_CANCEL));
1134
1135                 rc = ptlrpc_request_pack(req, LUSTRE_DLM_VERSION, LDLM_CANCEL);
1136                 if (rc) {
1137                         ptlrpc_request_free(req);
1138                         GOTO(out, rc);
1139                 }
1140                 req->rq_no_resend = 1;
1141                 req->rq_no_delay = 1;
1142
1143                 req->rq_request_portal = LDLM_CANCEL_REQUEST_PORTAL;
1144                 req->rq_reply_portal = LDLM_CANCEL_REPLY_PORTAL;
1145                 ptlrpc_at_set_req_timeout(req);
1146
1147                 ldlm_cancel_pack(req, cancels, count);
1148
1149                 ptlrpc_request_set_replen(req);
1150                 if (flags & LCF_ASYNC) {
1151                         ptlrpcd_add_req(req, PSCOPE_OTHER);
1152                         sent = count;
1153                         GOTO(out, 0);
1154                 } else {
1155                         rc = ptlrpc_queue_wait(req);
1156                 }
1157                 if (rc == ESTALE) {
1158                         CDEBUG(D_DLMTRACE, "client/server (nid %s) "
1159                                "out of sync -- not fatal\n",
1160                                libcfs_nid2str(req->rq_import->
1161                                               imp_connection->c_peer.nid));
1162                         rc = 0;
1163                 } else if (rc == -ETIMEDOUT && /* check there was no reconnect*/
1164                            req->rq_import_generation == imp->imp_generation) {
1165                         ptlrpc_req_finished(req);
1166                         continue;
1167                 } else if (rc != ELDLM_OK) {
1168                         CERROR("Got rc %d from cancel RPC: canceling "
1169                                "anyway\n", rc);
1170                         break;
1171                 }
1172                 sent = count;
1173                 break;
1174         }
1175
1176         ptlrpc_req_finished(req);
1177         EXIT;
1178 out:
1179         return sent ? sent : rc;
1180 }
1181
1182 static inline struct ldlm_pool *ldlm_imp2pl(struct obd_import *imp)
1183 {
1184         LASSERT(imp != NULL);
1185         return &imp->imp_obd->obd_namespace->ns_pool;
1186 }
1187
1188 /**
1189  * Update client's obd pool related fields with new SLV and Limit from \a req.
1190  */
1191 int ldlm_cli_update_pool(struct ptlrpc_request *req)
1192 {
1193         struct obd_device *obd;
1194         __u64 old_slv, new_slv;
1195         __u32 new_limit;
1196         ENTRY;
1197         if (unlikely(!req->rq_import || !req->rq_import->imp_obd ||
1198                      !imp_connect_lru_resize(req->rq_import)))
1199         {
1200                 /*
1201                  * Do nothing for corner cases.
1202                  */
1203                 RETURN(0);
1204         }
1205
1206         /*
1207          * In some cases RPC may contain slv and limit zeroed out. This is
1208          * the case when server does not support lru resize feature. This is
1209          * also possible in some recovery cases when server side reqs have no
1210          * ref to obd export and thus access to server side namespace is no
1211          * possible.
1212          */
1213         if (lustre_msg_get_slv(req->rq_repmsg) == 0 ||
1214             lustre_msg_get_limit(req->rq_repmsg) == 0) {
1215                 DEBUG_REQ(D_HA, req, "Zero SLV or Limit found "
1216                           "(SLV: "LPU64", Limit: %u)",
1217                           lustre_msg_get_slv(req->rq_repmsg),
1218                           lustre_msg_get_limit(req->rq_repmsg));
1219                 RETURN(0);
1220         }
1221
1222         new_limit = lustre_msg_get_limit(req->rq_repmsg);
1223         new_slv = lustre_msg_get_slv(req->rq_repmsg);
1224         obd = req->rq_import->imp_obd;
1225
1226         /*
1227          * Set new SLV and Limit to obd fields to make accessible for pool
1228          * thread. We do not access obd_namespace and pool directly here
1229          * as there is no reliable way to make sure that they are still
1230          * alive in cleanup time. Evil races are possible which may cause
1231          * oops in that time.
1232          */
1233         cfs_write_lock(&obd->obd_pool_lock);
1234         old_slv = obd->obd_pool_slv;
1235         obd->obd_pool_slv = new_slv;
1236         obd->obd_pool_limit = new_limit;
1237         cfs_write_unlock(&obd->obd_pool_lock);
1238
1239         RETURN(0);
1240 }
1241 EXPORT_SYMBOL(ldlm_cli_update_pool);
1242
1243 int ldlm_cli_cancel(struct lustre_handle *lockh)
1244 {
1245         struct obd_export *exp;
1246         int avail, flags, count = 1, rc = 0;
1247         struct ldlm_namespace *ns;
1248         struct ldlm_lock *lock;
1249         CFS_LIST_HEAD(cancels);
1250         ENTRY;
1251
1252         /* concurrent cancels on the same handle can happen */
1253         lock = ldlm_handle2lock_long(lockh, LDLM_FL_CANCELING);
1254         if (lock == NULL) {
1255                 LDLM_DEBUG_NOLOCK("lock is already being destroyed\n");
1256                 RETURN(0);
1257         }
1258
1259         rc = ldlm_cli_cancel_local(lock);
1260         if (rc < 0 || rc == LDLM_FL_LOCAL_ONLY) {
1261                 LDLM_LOCK_RELEASE(lock);
1262                 RETURN(rc < 0 ? rc : 0);
1263         }
1264         /* Even if the lock is marked as LDLM_FL_BL_AST, this is a LDLM_CANCEL
1265          * rpc which goes to canceld portal, so we can cancel other lru locks
1266          * here and send them all as one LDLM_CANCEL rpc. */
1267         LASSERT(cfs_list_empty(&lock->l_bl_ast));
1268         cfs_list_add(&lock->l_bl_ast, &cancels);
1269
1270         exp = lock->l_conn_export;
1271         if (exp_connect_cancelset(exp)) {
1272                 avail = ldlm_format_handles_avail(class_exp2cliimp(exp),
1273                                                   &RQF_LDLM_CANCEL,
1274                                                   RCL_CLIENT, 0);
1275                 LASSERT(avail > 0);
1276
1277                 ns = ldlm_lock_to_ns(lock);
1278                 flags = ns_connect_lru_resize(ns) ?
1279                         LDLM_CANCEL_LRUR : LDLM_CANCEL_AGED;
1280                 count += ldlm_cancel_lru_local(ns, &cancels, 0, avail - 1,
1281                                                LCF_BL_AST, flags);
1282         }
1283         ldlm_cli_cancel_list(&cancels, count, NULL, 0);
1284         RETURN(0);
1285 }
1286
1287 /* XXX until we will have compound requests and can cut cancels from generic rpc
1288  * we need send cancels with LDLM_FL_BL_AST flag as separate rpc */
1289 int ldlm_cli_cancel_list_local(cfs_list_t *cancels, int count,
1290                                ldlm_cancel_flags_t flags)
1291 {
1292         CFS_LIST_HEAD(head);
1293         struct ldlm_lock *lock, *next;
1294         int left = 0, bl_ast = 0, rc;
1295
1296         left = count;
1297         cfs_list_for_each_entry_safe(lock, next, cancels, l_bl_ast) {
1298                 if (left-- == 0)
1299                         break;
1300
1301                 if (flags & LCF_LOCAL) {
1302                         rc = LDLM_FL_LOCAL_ONLY;
1303                         ldlm_lock_cancel(lock);
1304                 } else {
1305                         rc = ldlm_cli_cancel_local(lock);
1306                 }
1307                 if (!(flags & LCF_BL_AST) && (rc == LDLM_FL_BL_AST)) {
1308                         LDLM_DEBUG(lock, "Cancel lock separately");
1309                         cfs_list_del_init(&lock->l_bl_ast);
1310                         cfs_list_add(&lock->l_bl_ast, &head);
1311                         bl_ast ++;
1312                         continue;
1313                 }
1314                 if (rc == LDLM_FL_LOCAL_ONLY) {
1315                         /* CANCEL RPC should not be sent to server. */
1316                         cfs_list_del_init(&lock->l_bl_ast);
1317                         LDLM_LOCK_RELEASE(lock);
1318                         count--;
1319                 }
1320
1321         }
1322         if (bl_ast > 0) {
1323                 count -= bl_ast;
1324                 ldlm_cli_cancel_list(&head, bl_ast, NULL, 0);
1325         }
1326
1327         RETURN(count);
1328 }
1329
1330 /**
1331  * Cancel as many locks as possible w/o sending any rpcs (e.g. to write back
1332  * dirty data, to close a file, ...) or waiting for any rpcs in-flight (e.g.
1333  * readahead requests, ...)
1334  */
1335 static ldlm_policy_res_t ldlm_cancel_no_wait_policy(struct ldlm_namespace *ns,
1336                                                     struct ldlm_lock *lock,
1337                                                     int unused, int added,
1338                                                     int count)
1339 {
1340         ldlm_policy_res_t result = LDLM_POLICY_CANCEL_LOCK;
1341         ldlm_cancel_for_recovery cb = ns->ns_cancel_for_recovery;
1342         lock_res_and_lock(lock);
1343
1344         /* don't check added & count since we want to process all locks
1345          * from unused list */
1346         switch (lock->l_resource->lr_type) {
1347                 case LDLM_EXTENT:
1348                 case LDLM_IBITS:
1349                         if (cb && cb(lock))
1350                                 break;
1351                 default:
1352                         result = LDLM_POLICY_SKIP_LOCK;
1353                         lock->l_flags |= LDLM_FL_SKIPPED;
1354                         break;
1355         }
1356
1357         unlock_res_and_lock(lock);
1358         RETURN(result);
1359 }
1360
1361 /**
1362  * Callback function for lru-resize policy. Makes decision whether to keep
1363  * \a lock in LRU for current \a LRU size \a unused, added in current scan
1364  * \a added and number of locks to be preferably canceled \a count.
1365  *
1366  * \retval LDLM_POLICY_KEEP_LOCK keep lock in LRU in stop scanning
1367  *
1368  * \retval LDLM_POLICY_CANCEL_LOCK cancel lock from LRU
1369  */
1370 static ldlm_policy_res_t ldlm_cancel_lrur_policy(struct ldlm_namespace *ns,
1371                                                  struct ldlm_lock *lock,
1372                                                  int unused, int added,
1373                                                  int count)
1374 {
1375         cfs_time_t cur = cfs_time_current();
1376         struct ldlm_pool *pl = &ns->ns_pool;
1377         __u64 slv, lvf, lv;
1378         cfs_time_t la;
1379
1380         /*
1381          * Stop lru processing when we reached passed @count or checked all
1382          * locks in lru.
1383          */
1384         if (count && added >= count)
1385                 return LDLM_POLICY_KEEP_LOCK;
1386
1387         slv = ldlm_pool_get_slv(pl);
1388         lvf = ldlm_pool_get_lvf(pl);
1389         la = cfs_duration_sec(cfs_time_sub(cur,
1390                               lock->l_last_used));
1391
1392         /*
1393          * Stop when slv is not yet come from server or lv is smaller than
1394          * it is.
1395          */
1396         lv = lvf * la * unused;
1397
1398         /*
1399          * Inform pool about current CLV to see it via proc.
1400          */
1401         ldlm_pool_set_clv(pl, lv);
1402         return (slv == 0 || lv < slv) ?
1403                 LDLM_POLICY_KEEP_LOCK : LDLM_POLICY_CANCEL_LOCK;
1404 }
1405
1406 /**
1407  * Callback function for proc used policy. Makes decision whether to keep
1408  * \a lock in LRU for current \a LRU size \a unused, added in current scan
1409  * \a added and number of locks to be preferably canceled \a count.
1410  *
1411  * \retval LDLM_POLICY_KEEP_LOCK keep lock in LRU in stop scanning
1412  *
1413  * \retval LDLM_POLICY_CANCEL_LOCK cancel lock from LRU
1414  */
1415 static ldlm_policy_res_t ldlm_cancel_passed_policy(struct ldlm_namespace *ns,
1416                                                    struct ldlm_lock *lock,
1417                                                    int unused, int added,
1418                                                    int count)
1419 {
1420         /*
1421          * Stop lru processing when we reached passed @count or checked all
1422          * locks in lru.
1423          */
1424         return (added >= count) ?
1425                 LDLM_POLICY_KEEP_LOCK : LDLM_POLICY_CANCEL_LOCK;
1426 }
1427
1428 /**
1429  * Callback function for aged policy. Makes decision whether to keep
1430  * \a lock in LRU for current \a LRU size \a unused, added in current scan
1431  * \a added and number of locks to be preferably canceled \a count.
1432  *
1433  * \retval LDLM_POLICY_KEEP_LOCK keep lock in LRU in stop scanning
1434  *
1435  * \retval LDLM_POLICY_CANCEL_LOCK cancel lock from LRU
1436  */
1437 static ldlm_policy_res_t ldlm_cancel_aged_policy(struct ldlm_namespace *ns,
1438                                                  struct ldlm_lock *lock,
1439                                                  int unused, int added,
1440                                                  int count)
1441 {
1442         /*
1443          * Stop lru processing if young lock is found and we reached passed
1444          * @count.
1445          */
1446         return ((added >= count) &&
1447                 cfs_time_before(cfs_time_current(),
1448                                 cfs_time_add(lock->l_last_used,
1449                                              ns->ns_max_age))) ?
1450                 LDLM_POLICY_KEEP_LOCK : LDLM_POLICY_CANCEL_LOCK;
1451 }
1452
1453 /**
1454  * Callback function for default policy. Makes decision whether to keep
1455  * \a lock in LRU for current \a LRU size \a unused, added in current scan
1456  * \a added and number of locks to be preferably canceled \a count.
1457  *
1458  * \retval LDLM_POLICY_KEEP_LOCK keep lock in LRU in stop scanning
1459  *
1460  * \retval LDLM_POLICY_CANCEL_LOCK cancel lock from LRU
1461  */
1462 static ldlm_policy_res_t ldlm_cancel_default_policy(struct ldlm_namespace *ns,
1463                                                     struct ldlm_lock *lock,
1464                                                     int unused, int added,
1465                                                     int count)
1466 {
1467         /*
1468          * Stop lru processing when we reached passed @count or checked all
1469          * locks in lru.
1470          */
1471         return (added >= count) ?
1472                 LDLM_POLICY_KEEP_LOCK : LDLM_POLICY_CANCEL_LOCK;
1473 }
1474
1475 typedef ldlm_policy_res_t (*ldlm_cancel_lru_policy_t)(struct ldlm_namespace *,
1476                                                       struct ldlm_lock *, int,
1477                                                       int, int);
1478
1479 static ldlm_cancel_lru_policy_t
1480 ldlm_cancel_lru_policy(struct ldlm_namespace *ns, int flags)
1481 {
1482         if (flags & LDLM_CANCEL_NO_WAIT)
1483                 return ldlm_cancel_no_wait_policy;
1484
1485         if (ns_connect_lru_resize(ns)) {
1486                 if (flags & LDLM_CANCEL_SHRINK)
1487                         /* We kill passed number of old locks. */
1488                         return ldlm_cancel_passed_policy;
1489                 else if (flags & LDLM_CANCEL_LRUR)
1490                         return ldlm_cancel_lrur_policy;
1491                 else if (flags & LDLM_CANCEL_PASSED)
1492                         return ldlm_cancel_passed_policy;
1493         } else {
1494                 if (flags & LDLM_CANCEL_AGED)
1495                         return ldlm_cancel_aged_policy;
1496         }
1497
1498         return ldlm_cancel_default_policy;
1499 }
1500
1501 /* - Free space in lru for @count new locks,
1502  *   redundant unused locks are canceled locally;
1503  * - also cancel locally unused aged locks;
1504  * - do not cancel more than @max locks;
1505  * - GET the found locks and add them into the @cancels list.
1506  *
1507  * A client lock can be added to the l_bl_ast list only when it is
1508  * marked LDLM_FL_CANCELING. Otherwise, somebody is already doing CANCEL.
1509  * There are the following use cases: ldlm_cancel_resource_local(),
1510  * ldlm_cancel_lru_local() and ldlm_cli_cancel(), which check&set this
1511  * flag properly. As any attempt to cancel a lock rely on this flag,
1512  * l_bl_ast list is accessed later without any special locking.
1513  *
1514  * Calling policies for enabled lru resize:
1515  * ----------------------------------------
1516  * flags & LDLM_CANCEL_LRUR - use lru resize policy (SLV from server) to
1517  *                            cancel not more than @count locks;
1518  *
1519  * flags & LDLM_CANCEL_PASSED - cancel @count number of old locks (located at
1520  *                              the beginning of lru list);
1521  *
1522  * flags & LDLM_CANCEL_SHRINK - cancel not more than @count locks according to
1523  *                              memory pressre policy function;
1524  *
1525  * flags & LDLM_CANCEL_AGED -   cancel alocks according to "aged policy".
1526  *
1527  * flags & LDLM_CANCEL_NO_WAIT - cancel as many unused locks as possible
1528  *                               (typically before replaying locks) w/o
1529  *                               sending any rpcs or waiting for any
1530  *                               outstanding rpc to complete.
1531  */
1532 static int ldlm_prepare_lru_list(struct ldlm_namespace *ns, cfs_list_t *cancels,
1533                                  int count, int max, int flags)
1534 {
1535         ldlm_cancel_lru_policy_t pf;
1536         struct ldlm_lock *lock, *next;
1537         int added = 0, unused, remained;
1538         ENTRY;
1539
1540         cfs_spin_lock(&ns->ns_lock);
1541         unused = ns->ns_nr_unused;
1542         remained = unused;
1543
1544         if (!ns_connect_lru_resize(ns))
1545                 count += unused - ns->ns_max_unused;
1546
1547         pf = ldlm_cancel_lru_policy(ns, flags);
1548         LASSERT(pf != NULL);
1549
1550         while (!cfs_list_empty(&ns->ns_unused_list)) {
1551                 ldlm_policy_res_t result;
1552
1553                 /* all unused locks */
1554                 if (remained-- <= 0)
1555                         break;
1556
1557                 /* For any flags, stop scanning if @max is reached. */
1558                 if (max && added >= max)
1559                         break;
1560
1561                 cfs_list_for_each_entry_safe(lock, next, &ns->ns_unused_list,
1562                                              l_lru){
1563                         /* No locks which got blocking requests. */
1564                         LASSERT(!(lock->l_flags & LDLM_FL_BL_AST));
1565
1566                         if (flags & LDLM_CANCEL_NO_WAIT &&
1567                             lock->l_flags & LDLM_FL_SKIPPED)
1568                                 /* already processed */
1569                                 continue;
1570
1571                         /* Somebody is already doing CANCEL. No need in this
1572                          * lock in lru, do not traverse it again. */
1573                         if (!(lock->l_flags & LDLM_FL_CANCELING))
1574                                 break;
1575
1576                         ldlm_lock_remove_from_lru_nolock(lock);
1577                 }
1578                 if (&lock->l_lru == &ns->ns_unused_list)
1579                         break;
1580
1581                 LDLM_LOCK_GET(lock);
1582                 cfs_spin_unlock(&ns->ns_lock);
1583                 lu_ref_add(&lock->l_reference, __FUNCTION__, cfs_current());
1584
1585                 /* Pass the lock through the policy filter and see if it
1586                  * should stay in lru.
1587                  *
1588                  * Even for shrinker policy we stop scanning if
1589                  * we find a lock that should stay in the cache.
1590                  * We should take into account lock age anyway
1591                  * as new lock even if it is small of weight is
1592                  * valuable resource.
1593                  *
1594                  * That is, for shrinker policy we drop only
1595                  * old locks, but additionally chose them by
1596                  * their weight. Big extent locks will stay in
1597                  * the cache. */
1598                 result = pf(ns, lock, unused, added, count);
1599                 if (result == LDLM_POLICY_KEEP_LOCK) {
1600                         lu_ref_del(&lock->l_reference,
1601                                    __FUNCTION__, cfs_current());
1602                         LDLM_LOCK_RELEASE(lock);
1603                         cfs_spin_lock(&ns->ns_lock);
1604                         break;
1605                 }
1606                 if (result == LDLM_POLICY_SKIP_LOCK) {
1607                         lu_ref_del(&lock->l_reference,
1608                                    __FUNCTION__, cfs_current());
1609                         LDLM_LOCK_RELEASE(lock);
1610                         cfs_spin_lock(&ns->ns_lock);
1611                         continue;
1612                 }
1613
1614                 lock_res_and_lock(lock);
1615                 /* Check flags again under the lock. */
1616                 if ((lock->l_flags & LDLM_FL_CANCELING) ||
1617                     (ldlm_lock_remove_from_lru(lock) == 0)) {
1618                         /* other thread is removing lock from lru or
1619                          * somebody is already doing CANCEL or
1620                          * there is a blocking request which will send
1621                          * cancel by itseft or the lock is matched
1622                          * is already not unused. */
1623                         unlock_res_and_lock(lock);
1624                         lu_ref_del(&lock->l_reference,
1625                                    __FUNCTION__, cfs_current());
1626                         LDLM_LOCK_RELEASE(lock);
1627                         cfs_spin_lock(&ns->ns_lock);
1628                         continue;
1629                 }
1630                 LASSERT(!lock->l_readers && !lock->l_writers);
1631
1632                 /* If we have chosen to cancel this lock voluntarily, we
1633                  * better send cancel notification to server, so that it
1634                  * frees appropriate state. This might lead to a race
1635                  * where while we are doing cancel here, server is also
1636                  * silently cancelling this lock. */
1637                 lock->l_flags &= ~LDLM_FL_CANCEL_ON_BLOCK;
1638
1639                 /* Setting the CBPENDING flag is a little misleading,
1640                  * but prevents an important race; namely, once
1641                  * CBPENDING is set, the lock can accumulate no more
1642                  * readers/writers. Since readers and writers are
1643                  * already zero here, ldlm_lock_decref() won't see
1644                  * this flag and call l_blocking_ast */
1645                 lock->l_flags |= LDLM_FL_CBPENDING | LDLM_FL_CANCELING;
1646
1647                 /* We can't re-add to l_lru as it confuses the
1648                  * refcounting in ldlm_lock_remove_from_lru() if an AST
1649                  * arrives after we drop lr_lock below. We use l_bl_ast
1650                  * and can't use l_pending_chain as it is used both on
1651                  * server and client nevertheless bug 5666 says it is
1652                  * used only on server */
1653                 LASSERT(cfs_list_empty(&lock->l_bl_ast));
1654                 cfs_list_add(&lock->l_bl_ast, cancels);
1655                 unlock_res_and_lock(lock);
1656                 lu_ref_del(&lock->l_reference, __FUNCTION__, cfs_current());
1657                 cfs_spin_lock(&ns->ns_lock);
1658                 added++;
1659                 unused--;
1660         }
1661         cfs_spin_unlock(&ns->ns_lock);
1662         RETURN(added);
1663 }
1664
1665 int ldlm_cancel_lru_local(struct ldlm_namespace *ns, cfs_list_t *cancels,
1666                           int count, int max, ldlm_cancel_flags_t cancel_flags,
1667                           int flags)
1668 {
1669         int added;
1670         added = ldlm_prepare_lru_list(ns, cancels, count, max, flags);
1671         if (added <= 0)
1672                 return added;
1673         return ldlm_cli_cancel_list_local(cancels, added, cancel_flags);
1674 }
1675
1676 /* when called with LDLM_ASYNC the blocking callback will be handled
1677  * in a thread and this function will return after the thread has been
1678  * asked to call the callback.  when called with LDLM_SYNC the blocking
1679  * callback will be performed in this function. */
1680 int ldlm_cancel_lru(struct ldlm_namespace *ns, int nr, ldlm_sync_t mode,
1681                     int flags)
1682 {
1683         CFS_LIST_HEAD(cancels);
1684         int count, rc;
1685         ENTRY;
1686
1687 #ifndef __KERNEL__
1688         mode = LDLM_SYNC; /* force to be sync in user space */
1689 #endif
1690         /* Just prepare the list of locks, do not actually cancel them yet.
1691          * Locks are cancelled later in a separate thread. */
1692         count = ldlm_prepare_lru_list(ns, &cancels, nr, 0, flags);
1693         rc = ldlm_bl_to_thread_list(ns, NULL, &cancels, count, mode);
1694         if (rc == 0)
1695                 RETURN(count);
1696
1697         RETURN(0);
1698 }
1699
1700 /* Find and cancel locally unused locks found on resource, matched to the
1701  * given policy, mode. GET the found locks and add them into the @cancels
1702  * list. */
1703 int ldlm_cancel_resource_local(struct ldlm_resource *res,
1704                                cfs_list_t *cancels,
1705                                ldlm_policy_data_t *policy,
1706                                ldlm_mode_t mode, int lock_flags,
1707                                ldlm_cancel_flags_t cancel_flags, void *opaque)
1708 {
1709         struct ldlm_lock *lock;
1710         int count = 0;
1711         ENTRY;
1712
1713         lock_res(res);
1714         cfs_list_for_each_entry(lock, &res->lr_granted, l_res_link) {
1715                 if (opaque != NULL && lock->l_ast_data != opaque) {
1716                         LDLM_ERROR(lock, "data %p doesn't match opaque %p",
1717                                    lock->l_ast_data, opaque);
1718                         //LBUG();
1719                         continue;
1720                 }
1721
1722                 if (lock->l_readers || lock->l_writers)
1723                         continue;
1724
1725                 /* If somebody is already doing CANCEL, or blocking ast came,
1726                  * skip this lock. */
1727                 if (lock->l_flags & LDLM_FL_BL_AST ||
1728                     lock->l_flags & LDLM_FL_CANCELING)
1729                         continue;
1730
1731                 if (lockmode_compat(lock->l_granted_mode, mode))
1732                         continue;
1733
1734                 /* If policy is given and this is IBITS lock, add to list only
1735                  * those locks that match by policy. */
1736                 if (policy && (lock->l_resource->lr_type == LDLM_IBITS) &&
1737                     !(lock->l_policy_data.l_inodebits.bits &
1738                       policy->l_inodebits.bits))
1739                         continue;
1740
1741                 /* See CBPENDING comment in ldlm_cancel_lru */
1742                 lock->l_flags |= LDLM_FL_CBPENDING | LDLM_FL_CANCELING |
1743                                  lock_flags;
1744
1745                 LASSERT(cfs_list_empty(&lock->l_bl_ast));
1746                 cfs_list_add(&lock->l_bl_ast, cancels);
1747                 LDLM_LOCK_GET(lock);
1748                 count++;
1749         }
1750         unlock_res(res);
1751
1752         RETURN(ldlm_cli_cancel_list_local(cancels, count, cancel_flags));
1753 }
1754
1755 /* If @req is NULL, send CANCEL request to server with handles of locks
1756  * in the @cancels. If EARLY_CANCEL is not supported, send CANCEL requests
1757  * separately per lock.
1758  * If @req is not NULL, put handles of locks in @cancels into the request
1759  * buffer at the offset @off.
1760  * Destroy @cancels at the end. */
1761 int ldlm_cli_cancel_list(cfs_list_t *cancels, int count,
1762                          struct ptlrpc_request *req, ldlm_cancel_flags_t flags)
1763 {
1764         struct ldlm_lock *lock;
1765         int res = 0;
1766         ENTRY;
1767
1768         if (cfs_list_empty(cancels) || count == 0)
1769                 RETURN(0);
1770
1771         /* XXX: requests (both batched and not) could be sent in parallel.
1772          * Usually it is enough to have just 1 RPC, but it is possible that
1773          * there are to many locks to be cancelled in LRU or on a resource.
1774          * It would also speed up the case when the server does not support
1775          * the feature. */
1776         while (count > 0) {
1777                 LASSERT(!cfs_list_empty(cancels));
1778                 lock = cfs_list_entry(cancels->next, struct ldlm_lock,
1779                                       l_bl_ast);
1780                 LASSERT(lock->l_conn_export);
1781
1782                 if (exp_connect_cancelset(lock->l_conn_export)) {
1783                         res = count;
1784                         if (req)
1785                                 ldlm_cancel_pack(req, cancels, count);
1786                         else
1787                                 res = ldlm_cli_cancel_req(lock->l_conn_export,
1788                                                           cancels, count,
1789                                                           flags);
1790                 } else {
1791                         res = ldlm_cli_cancel_req(lock->l_conn_export,
1792                                                   cancels, 1, flags);
1793                 }
1794
1795                 if (res < 0) {
1796                         CERROR("ldlm_cli_cancel_list: %d\n", res);
1797                         res = count;
1798                 }
1799
1800                 count -= res;
1801                 ldlm_lock_list_put(cancels, l_bl_ast, res);
1802         }
1803         LASSERT(count == 0);
1804         RETURN(0);
1805 }
1806
1807 int ldlm_cli_cancel_unused_resource(struct ldlm_namespace *ns,
1808                                     const struct ldlm_res_id *res_id,
1809                                     ldlm_policy_data_t *policy,
1810                                     ldlm_mode_t mode,
1811                                     ldlm_cancel_flags_t flags,
1812                                     void *opaque)
1813 {
1814         struct ldlm_resource *res;
1815         CFS_LIST_HEAD(cancels);
1816         int count;
1817         int rc;
1818         ENTRY;
1819
1820         res = ldlm_resource_get(ns, NULL, res_id, 0, 0);
1821         if (res == NULL) {
1822                 /* This is not a problem. */
1823                 CDEBUG(D_INFO, "No resource "LPU64"\n", res_id->name[0]);
1824                 RETURN(0);
1825         }
1826
1827         LDLM_RESOURCE_ADDREF(res);
1828         count = ldlm_cancel_resource_local(res, &cancels, policy, mode,
1829                                            0, flags | LCF_BL_AST, opaque);
1830         rc = ldlm_cli_cancel_list(&cancels, count, NULL, flags);
1831         if (rc != ELDLM_OK)
1832                 CERROR("ldlm_cli_cancel_unused_resource: %d\n", rc);
1833
1834         LDLM_RESOURCE_DELREF(res);
1835         ldlm_resource_putref(res);
1836         RETURN(0);
1837 }
1838
1839 struct ldlm_cli_cancel_arg {
1840         int     lc_flags;
1841         void   *lc_opaque;
1842 };
1843
1844 static int ldlm_cli_hash_cancel_unused(cfs_hash_t *hs, cfs_hash_bd_t *bd,
1845                                        cfs_hlist_node_t *hnode, void *arg)
1846 {
1847         struct ldlm_resource           *res = cfs_hash_object(hs, hnode);
1848         struct ldlm_cli_cancel_arg     *lc = arg;
1849         int                             rc;
1850
1851         rc = ldlm_cli_cancel_unused_resource(ldlm_res_to_ns(res), &res->lr_name,
1852                                              NULL, LCK_MINMODE,
1853                                              lc->lc_flags, lc->lc_opaque);
1854         if (rc != 0) {
1855                 CERROR("ldlm_cli_cancel_unused ("LPU64"): %d\n",
1856                        res->lr_name.name[0], rc);
1857         }
1858         /* must return 0 for hash iteration */
1859         return 0;
1860 }
1861
1862 /* Cancel all locks on a namespace (or a specific resource, if given)
1863  * that have 0 readers/writers.
1864  *
1865  * If flags & LCF_LOCAL, throw the locks away without trying
1866  * to notify the server. */
1867 int ldlm_cli_cancel_unused(struct ldlm_namespace *ns,
1868                            const struct ldlm_res_id *res_id,
1869                            ldlm_cancel_flags_t flags, void *opaque)
1870 {
1871         struct ldlm_cli_cancel_arg arg = {
1872                 .lc_flags       = flags,
1873                 .lc_opaque      = opaque,
1874         };
1875
1876         ENTRY;
1877
1878         if (ns == NULL)
1879                 RETURN(ELDLM_OK);
1880
1881         if (res_id != NULL) {
1882                 RETURN(ldlm_cli_cancel_unused_resource(ns, res_id, NULL,
1883                                                        LCK_MINMODE, flags,
1884                                                        opaque));
1885         } else {
1886                 cfs_hash_for_each_nolock(ns->ns_rs_hash,
1887                                          ldlm_cli_hash_cancel_unused, &arg);
1888                 RETURN(ELDLM_OK);
1889         }
1890 }
1891
1892 /* Lock iterators. */
1893
1894 int ldlm_resource_foreach(struct ldlm_resource *res, ldlm_iterator_t iter,
1895                           void *closure)
1896 {
1897         cfs_list_t *tmp, *next;
1898         struct ldlm_lock *lock;
1899         int rc = LDLM_ITER_CONTINUE;
1900
1901         ENTRY;
1902
1903         if (!res)
1904                 RETURN(LDLM_ITER_CONTINUE);
1905
1906         lock_res(res);
1907         cfs_list_for_each_safe(tmp, next, &res->lr_granted) {
1908                 lock = cfs_list_entry(tmp, struct ldlm_lock, l_res_link);
1909
1910                 if (iter(lock, closure) == LDLM_ITER_STOP)
1911                         GOTO(out, rc = LDLM_ITER_STOP);
1912         }
1913
1914         cfs_list_for_each_safe(tmp, next, &res->lr_converting) {
1915                 lock = cfs_list_entry(tmp, struct ldlm_lock, l_res_link);
1916
1917                 if (iter(lock, closure) == LDLM_ITER_STOP)
1918                         GOTO(out, rc = LDLM_ITER_STOP);
1919         }
1920
1921         cfs_list_for_each_safe(tmp, next, &res->lr_waiting) {
1922                 lock = cfs_list_entry(tmp, struct ldlm_lock, l_res_link);
1923
1924                 if (iter(lock, closure) == LDLM_ITER_STOP)
1925                         GOTO(out, rc = LDLM_ITER_STOP);
1926         }
1927  out:
1928         unlock_res(res);
1929         RETURN(rc);
1930 }
1931
1932 struct iter_helper_data {
1933         ldlm_iterator_t iter;
1934         void *closure;
1935 };
1936
1937 static int ldlm_iter_helper(struct ldlm_lock *lock, void *closure)
1938 {
1939         struct iter_helper_data *helper = closure;
1940         return helper->iter(lock, helper->closure);
1941 }
1942
1943 static int ldlm_res_iter_helper(cfs_hash_t *hs, cfs_hash_bd_t *bd,
1944                                 cfs_hlist_node_t *hnode, void *arg)
1945
1946 {
1947         struct ldlm_resource *res = cfs_hash_object(hs, hnode);
1948
1949         return ldlm_resource_foreach(res, ldlm_iter_helper, arg) ==
1950                LDLM_ITER_STOP;
1951 }
1952
1953 void ldlm_namespace_foreach(struct ldlm_namespace *ns,
1954                             ldlm_iterator_t iter, void *closure)
1955
1956 {
1957         struct iter_helper_data helper = { iter: iter, closure: closure };
1958
1959         cfs_hash_for_each_nolock(ns->ns_rs_hash,
1960                                  ldlm_res_iter_helper, &helper);
1961
1962 }
1963
1964 /* non-blocking function to manipulate a lock whose cb_data is being put away.
1965  * return  0:  find no resource
1966  *       > 0:  must be LDLM_ITER_STOP/LDLM_ITER_CONTINUE.
1967  *       < 0:  errors
1968  */
1969 int ldlm_resource_iterate(struct ldlm_namespace *ns,
1970                           const struct ldlm_res_id *res_id,
1971                           ldlm_iterator_t iter, void *data)
1972 {
1973         struct ldlm_resource *res;
1974         int rc;
1975         ENTRY;
1976
1977         if (ns == NULL) {
1978                 CERROR("must pass in namespace\n");
1979                 LBUG();
1980         }
1981
1982         res = ldlm_resource_get(ns, NULL, res_id, 0, 0);
1983         if (res == NULL)
1984                 RETURN(0);
1985
1986         LDLM_RESOURCE_ADDREF(res);
1987         rc = ldlm_resource_foreach(res, iter, data);
1988         LDLM_RESOURCE_DELREF(res);
1989         ldlm_resource_putref(res);
1990         RETURN(rc);
1991 }
1992
1993 /* Lock replay */
1994
1995 static int ldlm_chain_lock_for_replay(struct ldlm_lock *lock, void *closure)
1996 {
1997         cfs_list_t *list = closure;
1998
1999         /* we use l_pending_chain here, because it's unused on clients. */
2000         LASSERTF(cfs_list_empty(&lock->l_pending_chain),
2001                  "lock %p next %p prev %p\n",
2002                  lock, &lock->l_pending_chain.next,&lock->l_pending_chain.prev);
2003         /* bug 9573: don't replay locks left after eviction, or
2004          * bug 17614: locks being actively cancelled. Get a reference
2005          * on a lock so that it does not disapear under us (e.g. due to cancel)
2006          */
2007         if (!(lock->l_flags & (LDLM_FL_FAILED|LDLM_FL_CANCELING))) {
2008                 cfs_list_add(&lock->l_pending_chain, list);
2009                 LDLM_LOCK_GET(lock);
2010         }
2011
2012         return LDLM_ITER_CONTINUE;
2013 }
2014
2015 static int replay_lock_interpret(const struct lu_env *env,
2016                                  struct ptlrpc_request *req,
2017                                  struct ldlm_async_args *aa, int rc)
2018 {
2019         struct ldlm_lock     *lock;
2020         struct ldlm_reply    *reply;
2021         struct obd_export    *exp;
2022
2023         ENTRY;
2024         cfs_atomic_dec(&req->rq_import->imp_replay_inflight);
2025         if (rc != ELDLM_OK)
2026                 GOTO(out, rc);
2027
2028
2029         reply = req_capsule_server_get(&req->rq_pill, &RMF_DLM_REP);
2030         if (reply == NULL)
2031                 GOTO(out, rc = -EPROTO);
2032
2033         lock = ldlm_handle2lock(&aa->lock_handle);
2034         if (!lock) {
2035                 CERROR("received replay ack for unknown local cookie "LPX64
2036                        " remote cookie "LPX64 " from server %s id %s\n",
2037                        aa->lock_handle.cookie, reply->lock_handle.cookie,
2038                        req->rq_export->exp_client_uuid.uuid,
2039                        libcfs_id2str(req->rq_peer));
2040                 GOTO(out, rc = -ESTALE);
2041         }
2042
2043         /* Key change rehash lock in per-export hash with new key */
2044         exp = req->rq_export;
2045         if (exp && exp->exp_lock_hash) {
2046                 cfs_hash_rehash_key(exp->exp_lock_hash,
2047                                     &lock->l_remote_handle,
2048                                     &reply->lock_handle,
2049                                     &lock->l_exp_hash);
2050         } else {
2051                 lock->l_remote_handle = reply->lock_handle;
2052         }
2053
2054         LDLM_DEBUG(lock, "replayed lock:");
2055         ptlrpc_import_recovery_state_machine(req->rq_import);
2056         LDLM_LOCK_PUT(lock);
2057 out:
2058         if (rc != ELDLM_OK)
2059                 ptlrpc_connect_import(req->rq_import, NULL);
2060
2061         RETURN(rc);
2062 }
2063
2064 static int replay_one_lock(struct obd_import *imp, struct ldlm_lock *lock)
2065 {
2066         struct ptlrpc_request *req;
2067         struct ldlm_async_args *aa;
2068         struct ldlm_request   *body;
2069         int flags;
2070         ENTRY;
2071
2072
2073         /* Bug 11974: Do not replay a lock which is actively being canceled */
2074         if (lock->l_flags & LDLM_FL_CANCELING) {
2075                 LDLM_DEBUG(lock, "Not replaying canceled lock:");
2076                 RETURN(0);
2077         }
2078
2079         /* If this is reply-less callback lock, we cannot replay it, since
2080          * server might have long dropped it, but notification of that event was
2081          * lost by network. (and server granted conflicting lock already) */
2082         if (lock->l_flags & LDLM_FL_CANCEL_ON_BLOCK) {
2083                 LDLM_DEBUG(lock, "Not replaying reply-less lock:");
2084                 ldlm_lock_cancel(lock);
2085                 RETURN(0);
2086         }
2087         /*
2088          * If granted mode matches the requested mode, this lock is granted.
2089          *
2090          * If they differ, but we have a granted mode, then we were granted
2091          * one mode and now want another: ergo, converting.
2092          *
2093          * If we haven't been granted anything and are on a resource list,
2094          * then we're blocked/waiting.
2095          *
2096          * If we haven't been granted anything and we're NOT on a resource list,
2097          * then we haven't got a reply yet and don't have a known disposition.
2098          * This happens whenever a lock enqueue is the request that triggers
2099          * recovery.
2100          */
2101         if (lock->l_granted_mode == lock->l_req_mode)
2102                 flags = LDLM_FL_REPLAY | LDLM_FL_BLOCK_GRANTED;
2103         else if (lock->l_granted_mode)
2104                 flags = LDLM_FL_REPLAY | LDLM_FL_BLOCK_CONV;
2105         else if (!cfs_list_empty(&lock->l_res_link))
2106                 flags = LDLM_FL_REPLAY | LDLM_FL_BLOCK_WAIT;
2107         else
2108                 flags = LDLM_FL_REPLAY;
2109
2110         req = ptlrpc_request_alloc_pack(imp, &RQF_LDLM_ENQUEUE,
2111                                         LUSTRE_DLM_VERSION, LDLM_ENQUEUE);
2112         if (req == NULL)
2113                 RETURN(-ENOMEM);
2114
2115         /* We're part of recovery, so don't wait for it. */
2116         req->rq_send_state = LUSTRE_IMP_REPLAY_LOCKS;
2117
2118         body = req_capsule_client_get(&req->rq_pill, &RMF_DLM_REQ);
2119         ldlm_lock2desc(lock, &body->lock_desc);
2120         body->lock_flags = flags;
2121
2122         ldlm_lock2handle(lock, &body->lock_handle[0]);
2123         if (lock->l_lvb_len != 0) {
2124                 req_capsule_extend(&req->rq_pill, &RQF_LDLM_ENQUEUE_LVB);
2125                 req_capsule_set_size(&req->rq_pill, &RMF_DLM_LVB, RCL_SERVER,
2126                                      lock->l_lvb_len);
2127         }
2128         ptlrpc_request_set_replen(req);
2129         /* notify the server we've replayed all requests.
2130          * also, we mark the request to be put on a dedicated
2131          * queue to be processed after all request replayes.
2132          * bug 6063 */
2133         lustre_msg_set_flags(req->rq_reqmsg, MSG_REQ_REPLAY_DONE);
2134
2135         LDLM_DEBUG(lock, "replaying lock:");
2136
2137         cfs_atomic_inc(&req->rq_import->imp_replay_inflight);
2138         CLASSERT(sizeof(*aa) <= sizeof(req->rq_async_args));
2139         aa = ptlrpc_req_async_args(req);
2140         aa->lock_handle = body->lock_handle[0];
2141         req->rq_interpret_reply = (ptlrpc_interpterer_t)replay_lock_interpret;
2142         ptlrpcd_add_req(req, PSCOPE_OTHER);
2143
2144         RETURN(0);
2145 }
2146
2147 /**
2148  * Cancel as many unused locks as possible before replay. since we are
2149  * in recovery, we can't wait for any outstanding RPCs to send any RPC
2150  * to the server.
2151  *
2152  * Called only in recovery before replaying locks. there is no need to
2153  * replay locks that are unused. since the clients may hold thousands of
2154  * cached unused locks, dropping the unused locks can greatly reduce the
2155  * load on the servers at recovery time.
2156  */
2157 static void ldlm_cancel_unused_locks_for_replay(struct ldlm_namespace *ns)
2158 {
2159         int canceled;
2160         CFS_LIST_HEAD(cancels);
2161
2162         CDEBUG(D_DLMTRACE, "Dropping as many unused locks as possible before"
2163                            "replay for namespace %s (%d)\n",
2164                            ldlm_ns_name(ns), ns->ns_nr_unused);
2165
2166         /* We don't need to care whether or not LRU resize is enabled
2167          * because the LDLM_CANCEL_NO_WAIT policy doesn't use the
2168          * count parameter */
2169         canceled = ldlm_cancel_lru_local(ns, &cancels, ns->ns_nr_unused, 0,
2170                                          LCF_LOCAL, LDLM_CANCEL_NO_WAIT);
2171
2172         CDEBUG(D_DLMTRACE, "Canceled %d unused locks from namespace %s\n",
2173                            canceled, ldlm_ns_name(ns));
2174 }
2175
2176 int ldlm_replay_locks(struct obd_import *imp)
2177 {
2178         struct ldlm_namespace *ns = imp->imp_obd->obd_namespace;
2179         CFS_LIST_HEAD(list);
2180         struct ldlm_lock *lock, *next;
2181         int rc = 0;
2182
2183         ENTRY;
2184
2185         LASSERT(cfs_atomic_read(&imp->imp_replay_inflight) == 0);
2186
2187         /* don't replay locks if import failed recovery */
2188         if (imp->imp_vbr_failed)
2189                 RETURN(0);
2190
2191         /* ensure this doesn't fall to 0 before all have been queued */
2192         cfs_atomic_inc(&imp->imp_replay_inflight);
2193
2194         if (ldlm_cancel_unused_locks_before_replay)
2195                 ldlm_cancel_unused_locks_for_replay(ns);
2196
2197         ldlm_namespace_foreach(ns, ldlm_chain_lock_for_replay, &list);
2198
2199         cfs_list_for_each_entry_safe(lock, next, &list, l_pending_chain) {
2200                 cfs_list_del_init(&lock->l_pending_chain);
2201                 if (rc) {
2202                         LDLM_LOCK_RELEASE(lock);
2203                         continue; /* or try to do the rest? */
2204                 }
2205                 rc = replay_one_lock(imp, lock);
2206                 LDLM_LOCK_RELEASE(lock);
2207         }
2208
2209         cfs_atomic_dec(&imp->imp_replay_inflight);
2210
2211         RETURN(rc);
2212 }