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LU-3259 clio: cl_lock simplification
[fs/lustre-release.git] / lustre / osc / osc_cache.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2012, 2013, Intel Corporation.
31  *
32  */
33 /*
34  * This file is part of Lustre, http://www.lustre.org/
35  * Lustre is a trademark of Sun Microsystems, Inc.
36  *
37  * osc cache management.
38  *
39  * Author: Jinshan Xiong <jinshan.xiong@whamcloud.com>
40  */
41
42 #define DEBUG_SUBSYSTEM S_OSC
43
44 #include "osc_cl_internal.h"
45 #include "osc_internal.h"
46
47 static int extent_debug; /* set it to be true for more debug */
48
49 static void osc_update_pending(struct osc_object *obj, int cmd, int delta);
50 static int osc_extent_wait(const struct lu_env *env, struct osc_extent *ext,
51                            int state);
52 static void osc_ap_completion(const struct lu_env *env, struct client_obd *cli,
53                               struct osc_async_page *oap, int sent, int rc);
54 static int osc_make_ready(const struct lu_env *env, struct osc_async_page *oap,
55                           int cmd);
56 static int osc_refresh_count(const struct lu_env *env,
57                              struct osc_async_page *oap, int cmd);
58 static int osc_io_unplug_async(const struct lu_env *env,
59                                struct client_obd *cli, struct osc_object *osc);
60 static void osc_free_grant(struct client_obd *cli, unsigned int nr_pages,
61                            unsigned int lost_grant);
62
63 static void osc_extent_tree_dump0(int level, struct osc_object *obj,
64                                   const char *func, int line);
65 #define osc_extent_tree_dump(lvl, obj) \
66         osc_extent_tree_dump0(lvl, obj, __func__, __LINE__)
67
68 /** \addtogroup osc
69  *  @{
70  */
71
72 /* ------------------ osc extent ------------------ */
73 static inline char *ext_flags(struct osc_extent *ext, char *flags)
74 {
75         char *buf = flags;
76         *buf++ = ext->oe_rw ? 'r' : 'w';
77         if (ext->oe_intree)
78                 *buf++ = 'i';
79         if (ext->oe_sync)
80                 *buf++ = 'S';
81         if (ext->oe_srvlock)
82                 *buf++ = 's';
83         if (ext->oe_hp)
84                 *buf++ = 'h';
85         if (ext->oe_urgent)
86                 *buf++ = 'u';
87         if (ext->oe_memalloc)
88                 *buf++ = 'm';
89         if (ext->oe_trunc_pending)
90                 *buf++ = 't';
91         if (ext->oe_fsync_wait)
92                 *buf++ = 'Y';
93         *buf = 0;
94         return flags;
95 }
96
97 static inline char list_empty_marker(struct list_head *list)
98 {
99         return list_empty(list) ? '-' : '+';
100 }
101
102 #define EXTSTR       "[%lu -> %lu/%lu]"
103 #define EXTPARA(ext) (ext)->oe_start, (ext)->oe_end, (ext)->oe_max_end
104 static const char *oes_strings[] = {
105         "inv", "active", "cache", "locking", "lockdone", "rpc", "trunc", NULL };
106
107 #define OSC_EXTENT_DUMP(lvl, extent, fmt, ...) do {                           \
108         struct osc_extent *__ext = (extent);                                  \
109         char __buf[16];                                                       \
110                                                                               \
111         CDEBUG(lvl,                                                           \
112                 "extent %p@{" EXTSTR ", "                                     \
113                 "[%d|%d|%c|%s|%s|%p], [%d|%d|%c|%c|%p|%u|%p]} " fmt,          \
114                 /* ----- extent part 0 ----- */                               \
115                 __ext, EXTPARA(__ext),                                        \
116                 /* ----- part 1 ----- */                                      \
117                 atomic_read(&__ext->oe_refc),                         \
118                 atomic_read(&__ext->oe_users),                        \
119                 list_empty_marker(&__ext->oe_link),                           \
120                 oes_strings[__ext->oe_state], ext_flags(__ext, __buf),        \
121                 __ext->oe_obj,                                                \
122                 /* ----- part 2 ----- */                                      \
123                 __ext->oe_grants, __ext->oe_nr_pages,                         \
124                 list_empty_marker(&__ext->oe_pages),                          \
125                 waitqueue_active(&__ext->oe_waitq) ? '+' : '-',               \
126                 __ext->oe_dlmlock, __ext->oe_mppr, __ext->oe_owner,           \
127                 /* ----- part 4 ----- */                                      \
128                 ## __VA_ARGS__);                                              \
129         if (lvl == D_ERROR && __ext->oe_dlmlock != NULL)                      \
130                 LDLM_ERROR(__ext->oe_dlmlock, "extent: %p\n", __ext);         \
131         else                                                                  \
132                 LDLM_DEBUG(__ext->oe_dlmlock, "extent: %p\n", __ext);         \
133 } while (0)
134
135 #undef EASSERTF
136 #define EASSERTF(expr, ext, fmt, args...) do {                          \
137         if (!(expr)) {                                                  \
138                 OSC_EXTENT_DUMP(D_ERROR, (ext), fmt, ##args);           \
139                 osc_extent_tree_dump(D_ERROR, (ext)->oe_obj);           \
140                 LASSERT(expr);                                          \
141         }                                                               \
142 } while (0)
143
144 #undef EASSERT
145 #define EASSERT(expr, ext) EASSERTF(expr, ext, "\n")
146
147 static inline struct osc_extent *rb_extent(struct rb_node *n)
148 {
149         if (n == NULL)
150                 return NULL;
151
152         return container_of(n, struct osc_extent, oe_node);
153 }
154
155 static inline struct osc_extent *next_extent(struct osc_extent *ext)
156 {
157         if (ext == NULL)
158                 return NULL;
159
160         LASSERT(ext->oe_intree);
161         return rb_extent(rb_next(&ext->oe_node));
162 }
163
164 static inline struct osc_extent *prev_extent(struct osc_extent *ext)
165 {
166         if (ext == NULL)
167                 return NULL;
168
169         LASSERT(ext->oe_intree);
170         return rb_extent(rb_prev(&ext->oe_node));
171 }
172
173 static inline struct osc_extent *first_extent(struct osc_object *obj)
174 {
175         return rb_extent(rb_first(&obj->oo_root));
176 }
177
178 /* object must be locked by caller. */
179 static int osc_extent_sanity_check0(struct osc_extent *ext,
180                                     const char *func, const int line)
181 {
182         struct osc_object *obj = ext->oe_obj;
183         struct osc_async_page *oap;
184         int page_count;
185         int rc = 0;
186
187         if (!osc_object_is_locked(obj))
188                 GOTO(out, rc = 9);
189
190         if (ext->oe_state >= OES_STATE_MAX)
191                 GOTO(out, rc = 10);
192
193         if (atomic_read(&ext->oe_refc) <= 0)
194                 GOTO(out, rc = 20);
195
196         if (atomic_read(&ext->oe_refc) < atomic_read(&ext->oe_users))
197                 GOTO(out, rc = 30);
198
199         switch (ext->oe_state) {
200         case OES_INV:
201                 if (ext->oe_nr_pages > 0 || !list_empty(&ext->oe_pages))
202                         GOTO(out, rc = 35);
203                 GOTO(out, rc = 0);
204                 break;
205         case OES_ACTIVE:
206                 if (atomic_read(&ext->oe_users) == 0)
207                         GOTO(out, rc = 40);
208                 if (ext->oe_hp)
209                         GOTO(out, rc = 50);
210                 if (ext->oe_fsync_wait && !ext->oe_urgent)
211                         GOTO(out, rc = 55);
212                 break;
213         case OES_CACHE:
214                 if (ext->oe_grants == 0)
215                         GOTO(out, rc = 60);
216                 if (ext->oe_fsync_wait && !ext->oe_urgent && !ext->oe_hp)
217                         GOTO(out, rc = 65);
218         default:
219                 if (atomic_read(&ext->oe_users) > 0)
220                         GOTO(out, rc = 70);
221         }
222
223         if (ext->oe_max_end < ext->oe_end || ext->oe_end < ext->oe_start)
224                 GOTO(out, rc = 80);
225
226         if (ext->oe_sync && ext->oe_grants > 0)
227                 GOTO(out, rc = 90);
228
229         if (ext->oe_dlmlock != NULL) {
230                 struct ldlm_extent *extent;
231
232                 extent = &ext->oe_dlmlock->l_policy_data.l_extent;
233                 if (!(extent->start <= cl_offset(osc2cl(obj), ext->oe_start) &&
234                       extent->end   >= cl_offset(osc2cl(obj), ext->oe_max_end)))
235                         GOTO(out, rc = 100);
236
237                 if (!(ext->oe_dlmlock->l_granted_mode & (LCK_PW | LCK_GROUP)))
238                         GOTO(out, rc = 102);
239         }
240
241         if (ext->oe_nr_pages > ext->oe_mppr)
242                 GOTO(out, rc = 105);
243
244         /* Do not verify page list if extent is in RPC. This is because an
245          * in-RPC extent is supposed to be exclusively accessible w/o lock. */
246         if (ext->oe_state > OES_CACHE)
247                 GOTO(out, rc = 0);
248
249         if (!extent_debug)
250                 GOTO(out, rc = 0);
251
252         page_count = 0;
253         list_for_each_entry(oap, &ext->oe_pages, oap_pending_item) {
254                 pgoff_t index = osc_index(oap2osc(oap));
255                 ++page_count;
256                 if (index > ext->oe_end || index < ext->oe_start)
257                         GOTO(out, rc = 110);
258         }
259         if (page_count != ext->oe_nr_pages)
260                 GOTO(out, rc = 120);
261
262 out:
263         if (rc != 0)
264                 OSC_EXTENT_DUMP(D_ERROR, ext,
265                                 "%s:%d sanity check %p failed with rc = %d\n",
266                                 func, line, ext, rc);
267         return rc;
268 }
269
270 #define sanity_check_nolock(ext) \
271         osc_extent_sanity_check0(ext, __func__, __LINE__)
272
273 #define sanity_check(ext) ({                                                   \
274         int __res;                                                             \
275         osc_object_lock((ext)->oe_obj);                                        \
276         __res = sanity_check_nolock(ext);                                      \
277         osc_object_unlock((ext)->oe_obj);                                      \
278         __res;                                                                 \
279 })
280
281
282 /**
283  * sanity check - to make sure there is no overlapped extent in the tree.
284  */
285 static int osc_extent_is_overlapped(struct osc_object *obj,
286                                     struct osc_extent *ext)
287 {
288         struct osc_extent *tmp;
289
290         LASSERT(osc_object_is_locked(obj));
291
292         if (!extent_debug)
293                 return 0;
294
295         for (tmp = first_extent(obj); tmp != NULL; tmp = next_extent(tmp)) {
296                 if (tmp == ext)
297                         continue;
298                 if (tmp->oe_end >= ext->oe_start &&
299                     tmp->oe_start <= ext->oe_end)
300                         return 1;
301         }
302         return 0;
303 }
304
305 static void osc_extent_state_set(struct osc_extent *ext, int state)
306 {
307         LASSERT(osc_object_is_locked(ext->oe_obj));
308         LASSERT(state >= OES_INV && state < OES_STATE_MAX);
309
310         /* Never try to sanity check a state changing extent :-) */
311         /* LASSERT(sanity_check_nolock(ext) == 0); */
312
313         /* TODO: validate the state machine */
314         ext->oe_state = state;
315         wake_up_all(&ext->oe_waitq);
316 }
317
318 static struct osc_extent *osc_extent_alloc(struct osc_object *obj)
319 {
320         struct osc_extent *ext;
321
322         OBD_SLAB_ALLOC_PTR_GFP(ext, osc_extent_kmem, GFP_IOFS);
323         if (ext == NULL)
324                 return NULL;
325
326         RB_CLEAR_NODE(&ext->oe_node);
327         ext->oe_obj = obj;
328         atomic_set(&ext->oe_refc, 1);
329         atomic_set(&ext->oe_users, 0);
330         INIT_LIST_HEAD(&ext->oe_link);
331         ext->oe_state = OES_INV;
332         INIT_LIST_HEAD(&ext->oe_pages);
333         init_waitqueue_head(&ext->oe_waitq);
334         ext->oe_dlmlock = NULL;
335
336         return ext;
337 }
338
339 static void osc_extent_free(struct osc_extent *ext)
340 {
341         OBD_SLAB_FREE_PTR(ext, osc_extent_kmem);
342 }
343
344 static struct osc_extent *osc_extent_get(struct osc_extent *ext)
345 {
346         LASSERT(atomic_read(&ext->oe_refc) >= 0);
347         atomic_inc(&ext->oe_refc);
348         return ext;
349 }
350
351 static void osc_extent_put(const struct lu_env *env, struct osc_extent *ext)
352 {
353         LASSERT(atomic_read(&ext->oe_refc) > 0);
354         if (atomic_dec_and_test(&ext->oe_refc)) {
355                 LASSERT(list_empty(&ext->oe_link));
356                 LASSERT(atomic_read(&ext->oe_users) == 0);
357                 LASSERT(ext->oe_state == OES_INV);
358                 LASSERT(!ext->oe_intree);
359
360                 if (ext->oe_dlmlock != NULL) {
361                         lu_ref_add(&ext->oe_dlmlock->l_reference,
362                                    "osc_extent", ext);
363                         LDLM_LOCK_PUT(ext->oe_dlmlock);
364                         ext->oe_dlmlock = NULL;
365                 }
366                 osc_extent_free(ext);
367         }
368 }
369
370 /**
371  * osc_extent_put_trust() is a special version of osc_extent_put() when
372  * it's known that the caller is not the last user. This is to address the
373  * problem of lacking of lu_env ;-).
374  */
375 static void osc_extent_put_trust(struct osc_extent *ext)
376 {
377         LASSERT(atomic_read(&ext->oe_refc) > 1);
378         LASSERT(osc_object_is_locked(ext->oe_obj));
379         atomic_dec(&ext->oe_refc);
380 }
381
382 /**
383  * Return the extent which includes pgoff @index, or return the greatest
384  * previous extent in the tree.
385  */
386 static struct osc_extent *osc_extent_search(struct osc_object *obj,
387                                             pgoff_t index)
388 {
389         struct rb_node    *n = obj->oo_root.rb_node;
390         struct osc_extent *tmp, *p = NULL;
391
392         LASSERT(osc_object_is_locked(obj));
393         while (n != NULL) {
394                 tmp = rb_extent(n);
395                 if (index < tmp->oe_start) {
396                         n = n->rb_left;
397                 } else if (index > tmp->oe_end) {
398                         p = rb_extent(n);
399                         n = n->rb_right;
400                 } else {
401                         return tmp;
402                 }
403         }
404         return p;
405 }
406
407 /*
408  * Return the extent covering @index, otherwise return NULL.
409  * caller must have held object lock.
410  */
411 static struct osc_extent *osc_extent_lookup(struct osc_object *obj,
412                                             pgoff_t index)
413 {
414         struct osc_extent *ext;
415
416         ext = osc_extent_search(obj, index);
417         if (ext != NULL && ext->oe_start <= index && index <= ext->oe_end)
418                 return osc_extent_get(ext);
419         return NULL;
420 }
421
422 /* caller must have held object lock. */
423 static void osc_extent_insert(struct osc_object *obj, struct osc_extent *ext)
424 {
425         struct rb_node   **n      = &obj->oo_root.rb_node;
426         struct rb_node    *parent = NULL;
427         struct osc_extent *tmp;
428
429         LASSERT(ext->oe_intree == 0);
430         LASSERT(ext->oe_obj == obj);
431         LASSERT(osc_object_is_locked(obj));
432         while (*n != NULL) {
433                 tmp = rb_extent(*n);
434                 parent = *n;
435
436                 if (ext->oe_end < tmp->oe_start)
437                         n = &(*n)->rb_left;
438                 else if (ext->oe_start > tmp->oe_end)
439                         n = &(*n)->rb_right;
440                 else
441                         EASSERTF(0, tmp, EXTSTR"\n", EXTPARA(ext));
442         }
443         rb_link_node(&ext->oe_node, parent, n);
444         rb_insert_color(&ext->oe_node, &obj->oo_root);
445         osc_extent_get(ext);
446         ext->oe_intree = 1;
447 }
448
449 /* caller must have held object lock. */
450 static void osc_extent_erase(struct osc_extent *ext)
451 {
452         struct osc_object *obj = ext->oe_obj;
453         LASSERT(osc_object_is_locked(obj));
454         if (ext->oe_intree) {
455                 rb_erase(&ext->oe_node, &obj->oo_root);
456                 ext->oe_intree = 0;
457                 /* rbtree held a refcount */
458                 osc_extent_put_trust(ext);
459         }
460 }
461
462 static struct osc_extent *osc_extent_hold(struct osc_extent *ext)
463 {
464         struct osc_object *obj = ext->oe_obj;
465
466         LASSERT(osc_object_is_locked(obj));
467         LASSERT(ext->oe_state == OES_ACTIVE || ext->oe_state == OES_CACHE);
468         if (ext->oe_state == OES_CACHE) {
469                 osc_extent_state_set(ext, OES_ACTIVE);
470                 osc_update_pending(obj, OBD_BRW_WRITE, -ext->oe_nr_pages);
471         }
472         atomic_inc(&ext->oe_users);
473         list_del_init(&ext->oe_link);
474         return osc_extent_get(ext);
475 }
476
477 static void __osc_extent_remove(struct osc_extent *ext)
478 {
479         LASSERT(osc_object_is_locked(ext->oe_obj));
480         LASSERT(list_empty(&ext->oe_pages));
481         osc_extent_erase(ext);
482         list_del_init(&ext->oe_link);
483         osc_extent_state_set(ext, OES_INV);
484         OSC_EXTENT_DUMP(D_CACHE, ext, "destroyed.\n");
485 }
486
487 static void osc_extent_remove(struct osc_extent *ext)
488 {
489         struct osc_object *obj = ext->oe_obj;
490
491         osc_object_lock(obj);
492         __osc_extent_remove(ext);
493         osc_object_unlock(obj);
494 }
495
496 /**
497  * This function is used to merge extents to get better performance. It checks
498  * if @cur and @victim are contiguous at chunk level.
499  */
500 static int osc_extent_merge(const struct lu_env *env, struct osc_extent *cur,
501                             struct osc_extent *victim)
502 {
503         struct osc_object *obj = cur->oe_obj;
504         pgoff_t chunk_start;
505         pgoff_t chunk_end;
506         int ppc_bits;
507
508         LASSERT(cur->oe_state == OES_CACHE);
509         LASSERT(osc_object_is_locked(obj));
510         if (victim == NULL)
511                 return -EINVAL;
512
513         if (victim->oe_state != OES_CACHE || victim->oe_fsync_wait)
514                 return -EBUSY;
515
516         if (cur->oe_max_end != victim->oe_max_end)
517                 return -ERANGE;
518
519         LASSERT(cur->oe_dlmlock == victim->oe_dlmlock);
520         ppc_bits = osc_cli(obj)->cl_chunkbits - PAGE_CACHE_SHIFT;
521         chunk_start = cur->oe_start >> ppc_bits;
522         chunk_end   = cur->oe_end   >> ppc_bits;
523         if (chunk_start   != (victim->oe_end >> ppc_bits) + 1 &&
524             chunk_end + 1 != victim->oe_start >> ppc_bits)
525                 return -ERANGE;
526
527         OSC_EXTENT_DUMP(D_CACHE, victim, "will be merged by %p.\n", cur);
528
529         cur->oe_start     = min(cur->oe_start, victim->oe_start);
530         cur->oe_end       = max(cur->oe_end,   victim->oe_end);
531         cur->oe_grants   += victim->oe_grants;
532         cur->oe_nr_pages += victim->oe_nr_pages;
533         /* only the following bits are needed to merge */
534         cur->oe_urgent   |= victim->oe_urgent;
535         cur->oe_memalloc |= victim->oe_memalloc;
536         list_splice_init(&victim->oe_pages, &cur->oe_pages);
537         list_del_init(&victim->oe_link);
538         victim->oe_nr_pages = 0;
539
540         osc_extent_get(victim);
541         __osc_extent_remove(victim);
542         osc_extent_put(env, victim);
543
544         OSC_EXTENT_DUMP(D_CACHE, cur, "after merging %p.\n", victim);
545         return 0;
546 }
547
548 /**
549  * Drop user count of osc_extent, and unplug IO asynchronously.
550  */
551 int osc_extent_release(const struct lu_env *env, struct osc_extent *ext)
552 {
553         struct osc_object *obj = ext->oe_obj;
554         int rc = 0;
555         ENTRY;
556
557         LASSERT(atomic_read(&ext->oe_users) > 0);
558         LASSERT(sanity_check(ext) == 0);
559         LASSERT(ext->oe_grants > 0);
560
561         if (atomic_dec_and_lock(&ext->oe_users, &obj->oo_lock)) {
562                 LASSERT(ext->oe_state == OES_ACTIVE);
563                 if (ext->oe_trunc_pending) {
564                         /* a truncate process is waiting for this extent.
565                          * This may happen due to a race, check
566                          * osc_cache_truncate_start(). */
567                         osc_extent_state_set(ext, OES_TRUNC);
568                         ext->oe_trunc_pending = 0;
569                 } else {
570                         osc_extent_state_set(ext, OES_CACHE);
571                         osc_update_pending(obj, OBD_BRW_WRITE,
572                                            ext->oe_nr_pages);
573
574                         /* try to merge the previous and next extent. */
575                         osc_extent_merge(env, ext, prev_extent(ext));
576                         osc_extent_merge(env, ext, next_extent(ext));
577
578                         if (ext->oe_urgent)
579                                 list_move_tail(&ext->oe_link,
580                                                &obj->oo_urgent_exts);
581                 }
582                 osc_object_unlock(obj);
583
584                 osc_io_unplug_async(env, osc_cli(obj), obj);
585         }
586         osc_extent_put(env, ext);
587         RETURN(rc);
588 }
589
590 static inline int overlapped(struct osc_extent *ex1, struct osc_extent *ex2)
591 {
592         return !(ex1->oe_end < ex2->oe_start || ex2->oe_end < ex1->oe_start);
593 }
594
595 /**
596  * Find or create an extent which includes @index, core function to manage
597  * extent tree.
598  */
599 struct osc_extent *osc_extent_find(const struct lu_env *env,
600                                    struct osc_object *obj, pgoff_t index,
601                                    int *grants)
602 {
603         struct client_obd *cli = osc_cli(obj);
604         struct osc_lock   *olck;
605         struct cl_lock_descr *descr;
606         struct osc_extent *cur;
607         struct osc_extent *ext;
608         struct osc_extent *conflict = NULL;
609         struct osc_extent *found = NULL;
610         pgoff_t    chunk;
611         pgoff_t    max_end;
612         int        max_pages; /* max_pages_per_rpc */
613         int        chunksize;
614         int        ppc_bits; /* pages per chunk bits */
615         int        chunk_mask;
616         int        rc;
617         ENTRY;
618
619         cur = osc_extent_alloc(obj);
620         if (cur == NULL)
621                 RETURN(ERR_PTR(-ENOMEM));
622
623         olck = osc_env_io(env)->oi_write_osclock;
624         LASSERTF(olck != NULL, "page %lu is not covered by lock\n", index);
625         LASSERT(olck->ols_state == OLS_GRANTED);
626
627         descr = &olck->ols_cl.cls_lock->cll_descr;
628         LASSERT(descr->cld_mode >= CLM_WRITE);
629
630         LASSERT(cli->cl_chunkbits >= PAGE_CACHE_SHIFT);
631         ppc_bits   = cli->cl_chunkbits - PAGE_CACHE_SHIFT;
632         chunk_mask = ~((1 << ppc_bits) - 1);
633         chunksize  = 1 << cli->cl_chunkbits;
634         chunk      = index >> ppc_bits;
635
636         /* align end to rpc edge, rpc size may not be a power 2 integer. */
637         max_pages = cli->cl_max_pages_per_rpc;
638         LASSERT((max_pages & ~chunk_mask) == 0);
639         max_end = index - (index % max_pages) + max_pages - 1;
640         max_end = min_t(pgoff_t, max_end, descr->cld_end);
641
642         /* initialize new extent by parameters so far */
643         cur->oe_max_end = max_end;
644         cur->oe_start   = index & chunk_mask;
645         cur->oe_end     = ((index + ~chunk_mask + 1) & chunk_mask) - 1;
646         if (cur->oe_start < descr->cld_start)
647                 cur->oe_start = descr->cld_start;
648         if (cur->oe_end > max_end)
649                 cur->oe_end = max_end;
650         cur->oe_grants  = 0;
651         cur->oe_mppr    = max_pages;
652         if (olck->ols_dlmlock != NULL) {
653                 LASSERT(olck->ols_hold);
654                 cur->oe_dlmlock = LDLM_LOCK_GET(olck->ols_dlmlock);
655                 lu_ref_add(&olck->ols_dlmlock->l_reference, "osc_extent", cur);
656         }
657
658         /* grants has been allocated by caller */
659         LASSERTF(*grants >= chunksize + cli->cl_extent_tax,
660                  "%u/%u/%u.\n", *grants, chunksize, cli->cl_extent_tax);
661         LASSERTF((max_end - cur->oe_start) < max_pages, EXTSTR"\n",
662                  EXTPARA(cur));
663
664 restart:
665         osc_object_lock(obj);
666         ext = osc_extent_search(obj, cur->oe_start);
667         if (ext == NULL)
668                 ext = first_extent(obj);
669         while (ext != NULL) {
670                 loff_t ext_chk_start = ext->oe_start >> ppc_bits;
671                 loff_t ext_chk_end   = ext->oe_end   >> ppc_bits;
672
673                 LASSERT(sanity_check_nolock(ext) == 0);
674                 if (chunk > ext_chk_end + 1)
675                         break;
676
677                 /* if covering by different locks, no chance to match */
678                 if (olck->ols_dlmlock != ext->oe_dlmlock) {
679                         EASSERTF(!overlapped(ext, cur), ext,
680                                  EXTSTR"\n", EXTPARA(cur));
681
682                         ext = next_extent(ext);
683                         continue;
684                 }
685
686                 /* discontiguous chunks? */
687                 if (chunk + 1 < ext_chk_start) {
688                         ext = next_extent(ext);
689                         continue;
690                 }
691
692                 /* ok, from now on, ext and cur have these attrs:
693                  * 1. covered by the same lock
694                  * 2. contiguous at chunk level or overlapping. */
695
696                 if (overlapped(ext, cur)) {
697                         /* cur is the minimum unit, so overlapping means
698                          * full contain. */
699                         EASSERTF((ext->oe_start <= cur->oe_start &&
700                                   ext->oe_end >= cur->oe_end),
701                                  ext, EXTSTR"\n", EXTPARA(cur));
702
703                         if (ext->oe_state > OES_CACHE || ext->oe_fsync_wait) {
704                                 /* for simplicity, we wait for this extent to
705                                  * finish before going forward. */
706                                 conflict = osc_extent_get(ext);
707                                 break;
708                         }
709
710                         found = osc_extent_hold(ext);
711                         break;
712                 }
713
714                 /* non-overlapped extent */
715                 if (ext->oe_state != OES_CACHE || ext->oe_fsync_wait) {
716                         /* we can't do anything for a non OES_CACHE extent, or
717                          * if there is someone waiting for this extent to be
718                          * flushed, try next one. */
719                         ext = next_extent(ext);
720                         continue;
721                 }
722
723                 /* check if they belong to the same rpc slot before trying to
724                  * merge. the extents are not overlapped and contiguous at
725                  * chunk level to get here. */
726                 if (ext->oe_max_end != max_end) {
727                         /* if they don't belong to the same RPC slot or
728                          * max_pages_per_rpc has ever changed, do not merge. */
729                         ext = next_extent(ext);
730                         continue;
731                 }
732
733                 /* it's required that an extent must be contiguous at chunk
734                  * level so that we know the whole extent is covered by grant
735                  * (the pages in the extent are NOT required to be contiguous).
736                  * Otherwise, it will be too much difficult to know which
737                  * chunks have grants allocated. */
738
739                 /* try to do front merge - extend ext's start */
740                 if (chunk + 1 == ext_chk_start) {
741                         /* ext must be chunk size aligned */
742                         EASSERT((ext->oe_start & ~chunk_mask) == 0, ext);
743
744                         /* pull ext's start back to cover cur */
745                         ext->oe_start   = cur->oe_start;
746                         ext->oe_grants += chunksize;
747                         *grants -= chunksize;
748
749                         found = osc_extent_hold(ext);
750                 } else if (chunk == ext_chk_end + 1) {
751                         /* rear merge */
752                         ext->oe_end     = cur->oe_end;
753                         ext->oe_grants += chunksize;
754                         *grants -= chunksize;
755
756                         /* try to merge with the next one because we just fill
757                          * in a gap */
758                         if (osc_extent_merge(env, ext, next_extent(ext)) == 0)
759                                 /* we can save extent tax from next extent */
760                                 *grants += cli->cl_extent_tax;
761
762                         found = osc_extent_hold(ext);
763                 }
764                 if (found != NULL)
765                         break;
766
767                 ext = next_extent(ext);
768         }
769
770         osc_extent_tree_dump(D_CACHE, obj);
771         if (found != NULL) {
772                 LASSERT(conflict == NULL);
773                 if (!IS_ERR(found)) {
774                         LASSERT(found->oe_dlmlock == cur->oe_dlmlock);
775                         OSC_EXTENT_DUMP(D_CACHE, found,
776                                         "found caching ext for %lu.\n", index);
777                 }
778         } else if (conflict == NULL) {
779                 /* create a new extent */
780                 EASSERT(osc_extent_is_overlapped(obj, cur) == 0, cur);
781                 cur->oe_grants = chunksize + cli->cl_extent_tax;
782                 *grants -= cur->oe_grants;
783                 LASSERT(*grants >= 0);
784
785                 cur->oe_state = OES_CACHE;
786                 found = osc_extent_hold(cur);
787                 osc_extent_insert(obj, cur);
788                 OSC_EXTENT_DUMP(D_CACHE, cur, "add into tree %lu/%lu.\n",
789                                 index, descr->cld_end);
790         }
791         osc_object_unlock(obj);
792
793         if (conflict != NULL) {
794                 LASSERT(found == NULL);
795
796                 /* waiting for IO to finish. Please notice that it's impossible
797                  * to be an OES_TRUNC extent. */
798                 rc = osc_extent_wait(env, conflict, OES_INV);
799                 osc_extent_put(env, conflict);
800                 conflict = NULL;
801                 if (rc < 0)
802                         GOTO(out, found = ERR_PTR(rc));
803
804                 goto restart;
805         }
806         EXIT;
807
808 out:
809         osc_extent_put(env, cur);
810         LASSERT(*grants >= 0);
811         return found;
812 }
813
814 /**
815  * Called when IO is finished to an extent.
816  */
817 int osc_extent_finish(const struct lu_env *env, struct osc_extent *ext,
818                       int sent, int rc)
819 {
820         struct client_obd *cli = osc_cli(ext->oe_obj);
821         struct osc_async_page *oap;
822         struct osc_async_page *tmp;
823         int nr_pages = ext->oe_nr_pages;
824         int lost_grant = 0;
825         int blocksize = cli->cl_import->imp_obd->obd_osfs.os_bsize ? : 4096;
826         __u64 last_off = 0;
827         int last_count = -1;
828         ENTRY;
829
830         OSC_EXTENT_DUMP(D_CACHE, ext, "extent finished.\n");
831
832         ext->oe_rc = rc ?: ext->oe_nr_pages;
833         EASSERT(ergo(rc == 0, ext->oe_state == OES_RPC), ext);
834
835         osc_lru_add_batch(cli, &ext->oe_pages);
836         list_for_each_entry_safe(oap, tmp, &ext->oe_pages,
837                                      oap_pending_item) {
838                 list_del_init(&oap->oap_rpc_item);
839                 list_del_init(&oap->oap_pending_item);
840                 if (last_off <= oap->oap_obj_off) {
841                         last_off = oap->oap_obj_off;
842                         last_count = oap->oap_count;
843                 }
844
845                 --ext->oe_nr_pages;
846                 osc_ap_completion(env, cli, oap, sent, rc);
847         }
848         EASSERT(ext->oe_nr_pages == 0, ext);
849
850         if (!sent) {
851                 lost_grant = ext->oe_grants;
852         } else if (blocksize < PAGE_CACHE_SIZE &&
853                    last_count != PAGE_CACHE_SIZE) {
854                 /* For short writes we shouldn't count parts of pages that
855                  * span a whole chunk on the OST side, or our accounting goes
856                  * wrong.  Should match the code in filter_grant_check. */
857                 int offset = last_off & ~CFS_PAGE_MASK;
858                 int count = last_count + (offset & (blocksize - 1));
859                 int end = (offset + last_count) & (blocksize - 1);
860                 if (end)
861                         count += blocksize - end;
862
863                 lost_grant = PAGE_CACHE_SIZE - count;
864         }
865         if (ext->oe_grants > 0)
866                 osc_free_grant(cli, nr_pages, lost_grant);
867
868         osc_extent_remove(ext);
869         /* put the refcount for RPC */
870         osc_extent_put(env, ext);
871         RETURN(0);
872 }
873
874 static int extent_wait_cb(struct osc_extent *ext, int state)
875 {
876         int ret;
877
878         osc_object_lock(ext->oe_obj);
879         ret = ext->oe_state == state;
880         osc_object_unlock(ext->oe_obj);
881
882         return ret;
883 }
884
885 /**
886  * Wait for the extent's state to become @state.
887  */
888 static int osc_extent_wait(const struct lu_env *env, struct osc_extent *ext,
889                            int state)
890 {
891         struct osc_object *obj = ext->oe_obj;
892         struct l_wait_info lwi = LWI_TIMEOUT_INTR(cfs_time_seconds(600), NULL,
893                                                   LWI_ON_SIGNAL_NOOP, NULL);
894         int rc = 0;
895         ENTRY;
896
897         osc_object_lock(obj);
898         LASSERT(sanity_check_nolock(ext) == 0);
899         /* `Kick' this extent only if the caller is waiting for it to be
900          * written out. */
901         if (state == OES_INV && !ext->oe_urgent && !ext->oe_hp) {
902                 if (ext->oe_state == OES_ACTIVE) {
903                         ext->oe_urgent = 1;
904                 } else if (ext->oe_state == OES_CACHE) {
905                         ext->oe_urgent = 1;
906                         osc_extent_hold(ext);
907                         rc = 1;
908                 }
909         }
910         osc_object_unlock(obj);
911         if (rc == 1)
912                 osc_extent_release(env, ext);
913
914         /* wait for the extent until its state becomes @state */
915         rc = l_wait_event(ext->oe_waitq, extent_wait_cb(ext, state), &lwi);
916         if (rc == -ETIMEDOUT) {
917                 OSC_EXTENT_DUMP(D_ERROR, ext,
918                         "%s: wait ext to %d timedout, recovery in progress?\n",
919                         osc_export(obj)->exp_obd->obd_name, state);
920
921                 lwi = LWI_INTR(NULL, NULL);
922                 rc = l_wait_event(ext->oe_waitq, extent_wait_cb(ext, state),
923                                   &lwi);
924         }
925         if (rc == 0 && ext->oe_rc < 0)
926                 rc = ext->oe_rc;
927         RETURN(rc);
928 }
929
930 /**
931  * Discard pages with index greater than @size. If @ext is overlapped with
932  * @size, then partial truncate happens.
933  */
934 static int osc_extent_truncate(struct osc_extent *ext, pgoff_t trunc_index,
935                                 bool partial)
936 {
937         struct cl_env_nest     nest;
938         struct lu_env         *env;
939         struct cl_io          *io;
940         struct osc_object     *obj = ext->oe_obj;
941         struct client_obd     *cli = osc_cli(obj);
942         struct osc_async_page *oap;
943         struct osc_async_page *tmp;
944         int                    pages_in_chunk = 0;
945         int                    ppc_bits    = cli->cl_chunkbits -
946                                              PAGE_CACHE_SHIFT;
947         __u64                  trunc_chunk = trunc_index >> ppc_bits;
948         int                    grants   = 0;
949         int                    nr_pages = 0;
950         int                    rc       = 0;
951         ENTRY;
952
953         LASSERT(sanity_check(ext) == 0);
954         LASSERT(ext->oe_state == OES_TRUNC);
955         LASSERT(!ext->oe_urgent);
956
957         /* Request new lu_env.
958          * We can't use that env from osc_cache_truncate_start() because
959          * it's from lov_io_sub and not fully initialized. */
960         env = cl_env_nested_get(&nest);
961         io  = &osc_env_info(env)->oti_io;
962         io->ci_obj = cl_object_top(osc2cl(obj));
963         rc = cl_io_init(env, io, CIT_MISC, io->ci_obj);
964         if (rc < 0)
965                 GOTO(out, rc);
966
967         /* discard all pages with index greater then trunc_index */
968         list_for_each_entry_safe(oap, tmp, &ext->oe_pages,
969                                      oap_pending_item) {
970                 pgoff_t index = osc_index(oap2osc(oap));
971                 struct cl_page  *page = oap2cl_page(oap);
972
973                 LASSERT(list_empty(&oap->oap_rpc_item));
974
975                 /* only discard the pages with their index greater than
976                  * trunc_index, and ... */
977                 if (index < trunc_index ||
978                     (index == trunc_index && partial)) {
979                         /* accounting how many pages remaining in the chunk
980                          * so that we can calculate grants correctly. */
981                         if (index >> ppc_bits == trunc_chunk)
982                                 ++pages_in_chunk;
983                         continue;
984                 }
985
986                 list_del_init(&oap->oap_pending_item);
987
988                 cl_page_get(page);
989                 lu_ref_add(&page->cp_reference, "truncate", current);
990
991                 if (cl_page_own(env, io, page) == 0) {
992                         cl_page_discard(env, io, page);
993                         cl_page_disown(env, io, page);
994                 } else {
995                         LASSERT(page->cp_state == CPS_FREEING);
996                         LASSERT(0);
997                 }
998
999                 lu_ref_del(&page->cp_reference, "truncate", current);
1000                 cl_page_put(env, page);
1001
1002                 --ext->oe_nr_pages;
1003                 ++nr_pages;
1004         }
1005         EASSERTF(ergo(ext->oe_start >= trunc_index + !!partial,
1006                       ext->oe_nr_pages == 0),
1007                 ext, "trunc_index %lu, partial %d\n", trunc_index, partial);
1008
1009         osc_object_lock(obj);
1010         if (ext->oe_nr_pages == 0) {
1011                 LASSERT(pages_in_chunk == 0);
1012                 grants = ext->oe_grants;
1013                 ext->oe_grants = 0;
1014         } else { /* calculate how many grants we can free */
1015                 int     chunks = (ext->oe_end >> ppc_bits) - trunc_chunk;
1016                 pgoff_t last_index;
1017
1018
1019                 /* if there is no pages in this chunk, we can also free grants
1020                  * for the last chunk */
1021                 if (pages_in_chunk == 0) {
1022                         /* if this is the 1st chunk and no pages in this chunk,
1023                          * ext->oe_nr_pages must be zero, so we should be in
1024                          * the other if-clause. */
1025                         LASSERT(trunc_chunk > 0);
1026                         --trunc_chunk;
1027                         ++chunks;
1028                 }
1029
1030                 /* this is what we can free from this extent */
1031                 grants          = chunks << cli->cl_chunkbits;
1032                 ext->oe_grants -= grants;
1033                 last_index      = ((trunc_chunk + 1) << ppc_bits) - 1;
1034                 ext->oe_end     = min(last_index, ext->oe_max_end);
1035                 LASSERT(ext->oe_end >= ext->oe_start);
1036                 LASSERT(ext->oe_grants > 0);
1037         }
1038         osc_object_unlock(obj);
1039
1040         if (grants > 0 || nr_pages > 0)
1041                 osc_free_grant(cli, nr_pages, grants);
1042
1043 out:
1044         cl_io_fini(env, io);
1045         cl_env_nested_put(&nest, env);
1046         RETURN(rc);
1047 }
1048
1049 /**
1050  * This function is used to make the extent prepared for transfer.
1051  * A race with flusing page - ll_writepage() has to be handled cautiously.
1052  */
1053 static int osc_extent_make_ready(const struct lu_env *env,
1054                                  struct osc_extent *ext)
1055 {
1056         struct osc_async_page *oap;
1057         struct osc_async_page *last = NULL;
1058         struct osc_object *obj = ext->oe_obj;
1059         int page_count = 0;
1060         int rc;
1061         ENTRY;
1062
1063         /* we're going to grab page lock, so object lock must not be taken. */
1064         LASSERT(sanity_check(ext) == 0);
1065         /* in locking state, any process should not touch this extent. */
1066         EASSERT(ext->oe_state == OES_LOCKING, ext);
1067         EASSERT(ext->oe_owner != NULL, ext);
1068
1069         OSC_EXTENT_DUMP(D_CACHE, ext, "make ready\n");
1070
1071         list_for_each_entry(oap, &ext->oe_pages, oap_pending_item) {
1072                 ++page_count;
1073                 if (last == NULL || last->oap_obj_off < oap->oap_obj_off)
1074                         last = oap;
1075
1076                 /* checking ASYNC_READY is race safe */
1077                 if ((oap->oap_async_flags & ASYNC_READY) != 0)
1078                         continue;
1079
1080                 rc = osc_make_ready(env, oap, OBD_BRW_WRITE);
1081                 switch (rc) {
1082                 case 0:
1083                         spin_lock(&oap->oap_lock);
1084                         oap->oap_async_flags |= ASYNC_READY;
1085                         spin_unlock(&oap->oap_lock);
1086                         break;
1087                 case -EALREADY:
1088                         LASSERT((oap->oap_async_flags & ASYNC_READY) != 0);
1089                         break;
1090                 default:
1091                         LASSERTF(0, "unknown return code: %d\n", rc);
1092                 }
1093         }
1094
1095         LASSERT(page_count == ext->oe_nr_pages);
1096         LASSERT(last != NULL);
1097         /* the last page is the only one we need to refresh its count by
1098          * the size of file. */
1099         if (!(last->oap_async_flags & ASYNC_COUNT_STABLE)) {
1100                 last->oap_count = osc_refresh_count(env, last, OBD_BRW_WRITE);
1101                 LASSERT(last->oap_count > 0);
1102                 LASSERT(last->oap_page_off + last->oap_count <= PAGE_CACHE_SIZE);
1103                 spin_lock(&last->oap_lock);
1104                 last->oap_async_flags |= ASYNC_COUNT_STABLE;
1105                 spin_unlock(&last->oap_lock);
1106         }
1107
1108         /* for the rest of pages, we don't need to call osf_refresh_count()
1109          * because it's known they are not the last page */
1110         list_for_each_entry(oap, &ext->oe_pages, oap_pending_item) {
1111                 if (!(oap->oap_async_flags & ASYNC_COUNT_STABLE)) {
1112                         oap->oap_count = PAGE_CACHE_SIZE - oap->oap_page_off;
1113                         spin_lock(&oap->oap_lock);
1114                         oap->oap_async_flags |= ASYNC_COUNT_STABLE;
1115                         spin_unlock(&oap->oap_lock);
1116                 }
1117         }
1118
1119         osc_object_lock(obj);
1120         osc_extent_state_set(ext, OES_RPC);
1121         osc_object_unlock(obj);
1122         /* get a refcount for RPC. */
1123         osc_extent_get(ext);
1124
1125         RETURN(0);
1126 }
1127
1128 /**
1129  * Quick and simple version of osc_extent_find(). This function is frequently
1130  * called to expand the extent for the same IO. To expand the extent, the
1131  * page index must be in the same or next chunk of ext->oe_end.
1132  */
1133 static int osc_extent_expand(struct osc_extent *ext, pgoff_t index, int *grants)
1134 {
1135         struct osc_object *obj = ext->oe_obj;
1136         struct client_obd *cli = osc_cli(obj);
1137         struct osc_extent *next;
1138         int ppc_bits = cli->cl_chunkbits - PAGE_CACHE_SHIFT;
1139         pgoff_t chunk = index >> ppc_bits;
1140         pgoff_t end_chunk;
1141         pgoff_t end_index;
1142         int chunksize = 1 << cli->cl_chunkbits;
1143         int rc = 0;
1144         ENTRY;
1145
1146         LASSERT(ext->oe_max_end >= index && ext->oe_start <= index);
1147         osc_object_lock(obj);
1148         LASSERT(sanity_check_nolock(ext) == 0);
1149         end_chunk = ext->oe_end >> ppc_bits;
1150         if (chunk > end_chunk + 1)
1151                 GOTO(out, rc = -ERANGE);
1152
1153         if (end_chunk >= chunk)
1154                 GOTO(out, rc = 0);
1155
1156         LASSERT(end_chunk + 1 == chunk);
1157         /* try to expand this extent to cover @index */
1158         end_index = min(ext->oe_max_end, ((chunk + 1) << ppc_bits) - 1);
1159
1160         next = next_extent(ext);
1161         if (next != NULL && next->oe_start <= end_index)
1162                 /* complex mode - overlapped with the next extent,
1163                  * this case will be handled by osc_extent_find() */
1164                 GOTO(out, rc = -EAGAIN);
1165
1166         ext->oe_end = end_index;
1167         ext->oe_grants += chunksize;
1168         *grants -= chunksize;
1169         LASSERT(*grants >= 0);
1170         EASSERTF(osc_extent_is_overlapped(obj, ext) == 0, ext,
1171                  "overlapped after expanding for %lu.\n", index);
1172         EXIT;
1173
1174 out:
1175         osc_object_unlock(obj);
1176         RETURN(rc);
1177 }
1178
1179 static void osc_extent_tree_dump0(int level, struct osc_object *obj,
1180                                   const char *func, int line)
1181 {
1182         struct osc_extent *ext;
1183         int cnt;
1184
1185         CDEBUG(level, "Dump object %p extents at %s:%d, mppr: %u.\n",
1186                obj, func, line, osc_cli(obj)->cl_max_pages_per_rpc);
1187
1188         /* osc_object_lock(obj); */
1189         cnt = 1;
1190         for (ext = first_extent(obj); ext != NULL; ext = next_extent(ext))
1191                 OSC_EXTENT_DUMP(level, ext, "in tree %d.\n", cnt++);
1192
1193         cnt = 1;
1194         list_for_each_entry(ext, &obj->oo_hp_exts, oe_link)
1195                 OSC_EXTENT_DUMP(level, ext, "hp %d.\n", cnt++);
1196
1197         cnt = 1;
1198         list_for_each_entry(ext, &obj->oo_urgent_exts, oe_link)
1199                 OSC_EXTENT_DUMP(level, ext, "urgent %d.\n", cnt++);
1200
1201         cnt = 1;
1202         list_for_each_entry(ext, &obj->oo_reading_exts, oe_link)
1203                 OSC_EXTENT_DUMP(level, ext, "reading %d.\n", cnt++);
1204         /* osc_object_unlock(obj); */
1205 }
1206
1207 /* ------------------ osc extent end ------------------ */
1208
1209 static inline int osc_is_ready(struct osc_object *osc)
1210 {
1211         return !list_empty(&osc->oo_ready_item) ||
1212                !list_empty(&osc->oo_hp_ready_item);
1213 }
1214
1215 #define OSC_IO_DEBUG(OSC, STR, args...)                                        \
1216         CDEBUG(D_CACHE, "obj %p ready %d|%c|%c wr %d|%c|%c rd %d|%c " STR,     \
1217                (OSC), osc_is_ready(OSC),                                       \
1218                list_empty_marker(&(OSC)->oo_hp_ready_item),                    \
1219                list_empty_marker(&(OSC)->oo_ready_item),                       \
1220                atomic_read(&(OSC)->oo_nr_writes),                              \
1221                list_empty_marker(&(OSC)->oo_hp_exts),                          \
1222                list_empty_marker(&(OSC)->oo_urgent_exts),                      \
1223                atomic_read(&(OSC)->oo_nr_reads),                               \
1224                list_empty_marker(&(OSC)->oo_reading_exts),                     \
1225                ##args)
1226
1227 static int osc_make_ready(const struct lu_env *env, struct osc_async_page *oap,
1228                           int cmd)
1229 {
1230         struct osc_page *opg  = oap2osc_page(oap);
1231         struct cl_page  *page = oap2cl_page(oap);
1232         int result;
1233
1234         LASSERT(cmd == OBD_BRW_WRITE); /* no cached reads */
1235
1236         ENTRY;
1237         result = cl_page_make_ready(env, page, CRT_WRITE);
1238         if (result == 0)
1239                 opg->ops_submit_time = cfs_time_current();
1240         RETURN(result);
1241 }
1242
1243 static int osc_refresh_count(const struct lu_env *env,
1244                              struct osc_async_page *oap, int cmd)
1245 {
1246         struct osc_page  *opg = oap2osc_page(oap);
1247         pgoff_t index = osc_index(oap2osc(oap));
1248         struct cl_object *obj;
1249         struct cl_attr   *attr = &osc_env_info(env)->oti_attr;
1250
1251         int result;
1252         loff_t kms;
1253
1254         /* readpage queues with _COUNT_STABLE, shouldn't get here. */
1255         LASSERT(!(cmd & OBD_BRW_READ));
1256         LASSERT(opg != NULL);
1257         obj = opg->ops_cl.cpl_obj;
1258
1259         cl_object_attr_lock(obj);
1260         result = cl_object_attr_get(env, obj, attr);
1261         cl_object_attr_unlock(obj);
1262         if (result < 0)
1263                 return result;
1264         kms = attr->cat_kms;
1265         if (cl_offset(obj, index) >= kms)
1266                 /* catch race with truncate */
1267                 return 0;
1268         else if (cl_offset(obj, index + 1) > kms)
1269                 /* catch sub-page write at end of file */
1270                 return kms % PAGE_CACHE_SIZE;
1271         else
1272                 return PAGE_CACHE_SIZE;
1273 }
1274
1275 static int osc_completion(const struct lu_env *env, struct osc_async_page *oap,
1276                           int cmd, int rc)
1277 {
1278         struct osc_page   *opg  = oap2osc_page(oap);
1279         struct cl_page    *page = oap2cl_page(oap);
1280         struct osc_object *obj  = cl2osc(opg->ops_cl.cpl_obj);
1281         enum cl_req_type   crt;
1282         int srvlock;
1283
1284         ENTRY;
1285
1286         cmd &= ~OBD_BRW_NOQUOTA;
1287         LASSERTF(equi(page->cp_state == CPS_PAGEIN,  cmd == OBD_BRW_READ),
1288                  "cp_state:%u, cmd:%d\n", page->cp_state, cmd);
1289         LASSERTF(equi(page->cp_state == CPS_PAGEOUT, cmd == OBD_BRW_WRITE),
1290                 "cp_state:%u, cmd:%d\n", page->cp_state, cmd);
1291         LASSERT(opg->ops_transfer_pinned);
1292
1293         /*
1294          * page->cp_req can be NULL if io submission failed before
1295          * cl_req was allocated.
1296          */
1297         if (page->cp_req != NULL)
1298                 cl_req_page_done(env, page);
1299         LASSERT(page->cp_req == NULL);
1300
1301         crt = cmd == OBD_BRW_READ ? CRT_READ : CRT_WRITE;
1302         /* Clear opg->ops_transfer_pinned before VM lock is released. */
1303         opg->ops_transfer_pinned = 0;
1304
1305         spin_lock(&obj->oo_seatbelt);
1306         LASSERT(opg->ops_submitter != NULL);
1307         LASSERT(!list_empty(&opg->ops_inflight));
1308         list_del_init(&opg->ops_inflight);
1309         opg->ops_submitter = NULL;
1310         spin_unlock(&obj->oo_seatbelt);
1311
1312         opg->ops_submit_time = 0;
1313         srvlock = oap->oap_brw_flags & OBD_BRW_SRVLOCK;
1314
1315         /* statistic */
1316         if (rc == 0 && srvlock) {
1317                 struct lu_device *ld    = opg->ops_cl.cpl_obj->co_lu.lo_dev;
1318                 struct osc_stats *stats = &lu2osc_dev(ld)->od_stats;
1319                 int bytes = oap->oap_count;
1320
1321                 if (crt == CRT_READ)
1322                         stats->os_lockless_reads += bytes;
1323                 else
1324                         stats->os_lockless_writes += bytes;
1325         }
1326
1327         /*
1328          * This has to be the last operation with the page, as locks are
1329          * released in cl_page_completion() and nothing except for the
1330          * reference counter protects page from concurrent reclaim.
1331          */
1332         lu_ref_del(&page->cp_reference, "transfer", page);
1333
1334         cl_page_completion(env, page, crt, rc);
1335
1336         RETURN(0);
1337 }
1338
1339 #define OSC_DUMP_GRANT(lvl, cli, fmt, args...) do {                     \
1340         struct client_obd *__tmp = (cli);                               \
1341         CDEBUG(lvl, "%s: grant { dirty: %ld/%ld dirty_pages: %ld/%lu "  \
1342                "dropped: %ld avail: %ld, reserved: %ld, flight: %d }"   \
1343                "lru {in list: %ld, left: %ld, waiters: %d }" fmt,       \
1344                __tmp->cl_import->imp_obd->obd_name,                     \
1345                __tmp->cl_dirty_pages, __tmp->cl_dirty_max_pages,        \
1346                atomic_long_read(&obd_dirty_pages), obd_max_dirty_pages, \
1347                __tmp->cl_lost_grant, __tmp->cl_avail_grant,             \
1348                __tmp->cl_reserved_grant, __tmp->cl_w_in_flight,         \
1349                atomic_long_read(&__tmp->cl_lru_in_list),                \
1350                atomic_long_read(&__tmp->cl_lru_busy),                   \
1351                atomic_read(&__tmp->cl_lru_shrinkers), ##args);          \
1352 } while (0)
1353
1354 /* caller must hold loi_list_lock */
1355 static void osc_consume_write_grant(struct client_obd *cli,
1356                                     struct brw_page *pga)
1357 {
1358         assert_spin_locked(&cli->cl_loi_list_lock.lock);
1359         LASSERT(!(pga->flag & OBD_BRW_FROM_GRANT));
1360         atomic_long_inc(&obd_dirty_pages);
1361         cli->cl_dirty_pages++;
1362         pga->flag |= OBD_BRW_FROM_GRANT;
1363         CDEBUG(D_CACHE, "using %lu grant credits for brw %p page %p\n",
1364                PAGE_CACHE_SIZE, pga, pga->pg);
1365         osc_update_next_shrink(cli);
1366 }
1367
1368 /* the companion to osc_consume_write_grant, called when a brw has completed.
1369  * must be called with the loi lock held. */
1370 static void osc_release_write_grant(struct client_obd *cli,
1371                                     struct brw_page *pga)
1372 {
1373         ENTRY;
1374
1375         assert_spin_locked(&cli->cl_loi_list_lock.lock);
1376         if (!(pga->flag & OBD_BRW_FROM_GRANT)) {
1377                 EXIT;
1378                 return;
1379         }
1380
1381         pga->flag &= ~OBD_BRW_FROM_GRANT;
1382         atomic_long_dec(&obd_dirty_pages);
1383         cli->cl_dirty_pages--;
1384         if (pga->flag & OBD_BRW_NOCACHE) {
1385                 pga->flag &= ~OBD_BRW_NOCACHE;
1386                 atomic_long_dec(&obd_dirty_transit_pages);
1387                 cli->cl_dirty_transit--;
1388         }
1389         EXIT;
1390 }
1391
1392 /**
1393  * To avoid sleeping with object lock held, it's good for us allocate enough
1394  * grants before entering into critical section.
1395  *
1396  * client_obd_list_lock held by caller
1397  */
1398 static int osc_reserve_grant(struct client_obd *cli, unsigned int bytes)
1399 {
1400         int rc = -EDQUOT;
1401
1402         if (cli->cl_avail_grant >= bytes) {
1403                 cli->cl_avail_grant    -= bytes;
1404                 cli->cl_reserved_grant += bytes;
1405                 rc = 0;
1406         }
1407         return rc;
1408 }
1409
1410 static void __osc_unreserve_grant(struct client_obd *cli,
1411                                   unsigned int reserved, unsigned int unused)
1412 {
1413         /* it's quite normal for us to get more grant than reserved.
1414          * Thinking about a case that two extents merged by adding a new
1415          * chunk, we can save one extent tax. If extent tax is greater than
1416          * one chunk, we can save more grant by adding a new chunk */
1417         cli->cl_reserved_grant -= reserved;
1418         if (unused > reserved) {
1419                 cli->cl_avail_grant += reserved;
1420                 cli->cl_lost_grant  += unused - reserved;
1421         } else {
1422                 cli->cl_avail_grant += unused;
1423         }
1424 }
1425
1426 void osc_unreserve_grant(struct client_obd *cli,
1427                          unsigned int reserved, unsigned int unused)
1428 {
1429         client_obd_list_lock(&cli->cl_loi_list_lock);
1430         __osc_unreserve_grant(cli, reserved, unused);
1431         if (unused > 0)
1432                 osc_wake_cache_waiters(cli);
1433         client_obd_list_unlock(&cli->cl_loi_list_lock);
1434 }
1435
1436 /**
1437  * Free grant after IO is finished or canceled.
1438  *
1439  * @lost_grant is used to remember how many grants we have allocated but not
1440  * used, we should return these grants to OST. There're two cases where grants
1441  * can be lost:
1442  * 1. truncate;
1443  * 2. blocksize at OST is less than PAGE_CACHE_SIZE and a partial page was
1444  *    written. In this case OST may use less chunks to serve this partial
1445  *    write. OSTs don't actually know the page size on the client side. so
1446  *    clients have to calculate lost grant by the blocksize on the OST.
1447  *    See filter_grant_check() for details.
1448  */
1449 static void osc_free_grant(struct client_obd *cli, unsigned int nr_pages,
1450                            unsigned int lost_grant)
1451 {
1452         int grant = (1 << cli->cl_chunkbits) + cli->cl_extent_tax;
1453
1454         client_obd_list_lock(&cli->cl_loi_list_lock);
1455         atomic_long_sub(nr_pages, &obd_dirty_pages);
1456         cli->cl_dirty_pages -= nr_pages;
1457         cli->cl_lost_grant += lost_grant;
1458         if (cli->cl_avail_grant < grant && cli->cl_lost_grant >= grant) {
1459                 /* borrow some grant from truncate to avoid the case that
1460                  * truncate uses up all avail grant */
1461                 cli->cl_lost_grant -= grant;
1462                 cli->cl_avail_grant += grant;
1463         }
1464         osc_wake_cache_waiters(cli);
1465         client_obd_list_unlock(&cli->cl_loi_list_lock);
1466         CDEBUG(D_CACHE, "lost %u grant: %lu avail: %lu dirty: %lu\n",
1467                lost_grant, cli->cl_lost_grant,
1468                cli->cl_avail_grant, cli->cl_dirty_pages << PAGE_CACHE_SHIFT);
1469 }
1470
1471 /**
1472  * The companion to osc_enter_cache(), called when @oap is no longer part of
1473  * the dirty accounting due to error.
1474  */
1475 static void osc_exit_cache(struct client_obd *cli, struct osc_async_page *oap)
1476 {
1477         client_obd_list_lock(&cli->cl_loi_list_lock);
1478         osc_release_write_grant(cli, &oap->oap_brw_page);
1479         client_obd_list_unlock(&cli->cl_loi_list_lock);
1480 }
1481
1482 /**
1483  * Non-blocking version of osc_enter_cache() that consumes grant only when it
1484  * is available.
1485  */
1486 static int osc_enter_cache_try(struct client_obd *cli,
1487                                struct osc_async_page *oap,
1488                                int bytes, int transient)
1489 {
1490         int rc;
1491
1492         OSC_DUMP_GRANT(D_CACHE, cli, "need:%d", bytes);
1493
1494         rc = osc_reserve_grant(cli, bytes);
1495         if (rc < 0)
1496                 return 0;
1497
1498         if (cli->cl_dirty_pages < cli->cl_dirty_max_pages &&
1499             1 + atomic_long_read(&obd_dirty_pages) <= obd_max_dirty_pages) {
1500                 osc_consume_write_grant(cli, &oap->oap_brw_page);
1501                 if (transient) {
1502                         cli->cl_dirty_transit++;
1503                         atomic_long_inc(&obd_dirty_transit_pages);
1504                         oap->oap_brw_flags |= OBD_BRW_NOCACHE;
1505                 }
1506                 rc = 1;
1507         } else {
1508                 __osc_unreserve_grant(cli, bytes, bytes);
1509                 rc = 0;
1510         }
1511         return rc;
1512 }
1513
1514 static int ocw_granted(struct client_obd *cli, struct osc_cache_waiter *ocw)
1515 {
1516         int rc;
1517         client_obd_list_lock(&cli->cl_loi_list_lock);
1518         rc = list_empty(&ocw->ocw_entry);
1519         client_obd_list_unlock(&cli->cl_loi_list_lock);
1520         return rc;
1521 }
1522
1523 /**
1524  * The main entry to reserve dirty page accounting. Usually the grant reserved
1525  * in this function will be freed in bulk in osc_free_grant() unless it fails
1526  * to add osc cache, in that case, it will be freed in osc_exit_cache().
1527  *
1528  * The process will be put into sleep if it's already run out of grant.
1529  */
1530 static int osc_enter_cache(const struct lu_env *env, struct client_obd *cli,
1531                            struct osc_async_page *oap, int bytes)
1532 {
1533         struct osc_object       *osc = oap->oap_obj;
1534         struct lov_oinfo        *loi = osc->oo_oinfo;
1535         struct osc_cache_waiter  ocw;
1536         struct l_wait_info       lwi;
1537         int                      rc = -EDQUOT;
1538         ENTRY;
1539
1540         lwi = LWI_TIMEOUT_INTR(cfs_time_seconds(AT_OFF ? obd_timeout : at_max),
1541                                NULL, LWI_ON_SIGNAL_NOOP, NULL);
1542
1543         OSC_DUMP_GRANT(D_CACHE, cli, "need:%d", bytes);
1544
1545         client_obd_list_lock(&cli->cl_loi_list_lock);
1546
1547         /* force the caller to try sync io.  this can jump the list
1548          * of queued writes and create a discontiguous rpc stream */
1549         if (OBD_FAIL_CHECK(OBD_FAIL_OSC_NO_GRANT) ||
1550             cli->cl_dirty_max_pages == 0 ||
1551             cli->cl_ar.ar_force_sync || loi->loi_ar.ar_force_sync) {
1552                 OSC_DUMP_GRANT(D_CACHE, cli, "forced sync i/o");
1553                 GOTO(out, rc = -EDQUOT);
1554         }
1555
1556         /* Hopefully normal case - cache space and write credits available */
1557         if (osc_enter_cache_try(cli, oap, bytes, 0)) {
1558                 OSC_DUMP_GRANT(D_CACHE, cli, "granted from cache");
1559                 GOTO(out, rc = 0);
1560         }
1561
1562         /* We can get here for two reasons: too many dirty pages in cache, or
1563          * run out of grants. In both cases we should write dirty pages out.
1564          * Adding a cache waiter will trigger urgent write-out no matter what
1565          * RPC size will be.
1566          * The exiting condition is no avail grants and no dirty pages caching,
1567          * that really means there is no space on the OST. */
1568         init_waitqueue_head(&ocw.ocw_waitq);
1569         ocw.ocw_oap   = oap;
1570         ocw.ocw_grant = bytes;
1571         while (cli->cl_dirty_pages > 0 || cli->cl_w_in_flight > 0) {
1572                 list_add_tail(&ocw.ocw_entry, &cli->cl_cache_waiters);
1573                 ocw.ocw_rc = 0;
1574                 client_obd_list_unlock(&cli->cl_loi_list_lock);
1575
1576                 osc_io_unplug_async(env, cli, NULL);
1577
1578                 CDEBUG(D_CACHE, "%s: sleeping for cache space @ %p for %p\n",
1579                        cli->cl_import->imp_obd->obd_name, &ocw, oap);
1580
1581                 rc = l_wait_event(ocw.ocw_waitq, ocw_granted(cli, &ocw), &lwi);
1582
1583                 client_obd_list_lock(&cli->cl_loi_list_lock);
1584
1585                 if (rc < 0) {
1586                         /* l_wait_event is interrupted by signal or timed out */
1587                         list_del_init(&ocw.ocw_entry);
1588                         break;
1589                 }
1590                 LASSERT(list_empty(&ocw.ocw_entry));
1591                 rc = ocw.ocw_rc;
1592
1593                 if (rc != -EDQUOT)
1594                         break;
1595                 if (osc_enter_cache_try(cli, oap, bytes, 0)) {
1596                         rc = 0;
1597                         break;
1598                 }
1599         }
1600
1601         switch (rc) {
1602         case 0:
1603                 OSC_DUMP_GRANT(D_CACHE, cli, "finally got grant space");
1604                 break;
1605         case -ETIMEDOUT:
1606                 OSC_DUMP_GRANT(D_CACHE, cli, "timeout, fall back to sync i/o");
1607                 osc_extent_tree_dump(D_CACHE, osc);
1608                 /* fall back to synchronous I/O */
1609                 rc = -EDQUOT;
1610                 break;
1611         case -EINTR:
1612                 /* Ensures restartability - LU-3581 */
1613                 OSC_DUMP_GRANT(D_CACHE, cli, "interrupted");
1614                 rc = -ERESTARTSYS;
1615                 break;
1616         case -EDQUOT:
1617                 OSC_DUMP_GRANT(D_CACHE, cli, "no grant space, fall back to sync"
1618                                " i/o");
1619                 break;
1620         default:
1621                 CDEBUG(D_CACHE, "%s: event for cache space @ %p never arrived "
1622                        "due to %d, fall back to sync i/o\n",
1623                        cli->cl_import->imp_obd->obd_name, &ocw, rc);
1624                 /* fall back to synchronous I/O */
1625                 rc = -EDQUOT;
1626                 break;
1627         }
1628         EXIT;
1629 out:
1630         client_obd_list_unlock(&cli->cl_loi_list_lock);
1631         RETURN(rc);
1632 }
1633
1634 /* caller must hold loi_list_lock */
1635 void osc_wake_cache_waiters(struct client_obd *cli)
1636 {
1637         struct list_head *l, *tmp;
1638         struct osc_cache_waiter *ocw;
1639
1640         ENTRY;
1641         list_for_each_safe(l, tmp, &cli->cl_cache_waiters) {
1642                 ocw = list_entry(l, struct osc_cache_waiter, ocw_entry);
1643                 list_del_init(&ocw->ocw_entry);
1644
1645                 ocw->ocw_rc = -EDQUOT;
1646                 /* we can't dirty more */
1647                 if ((cli->cl_dirty_pages  >= cli->cl_dirty_max_pages) ||
1648                     (1 + atomic_long_read(&obd_dirty_pages) >
1649                      obd_max_dirty_pages)) {
1650                         CDEBUG(D_CACHE, "no dirty room: dirty: %ld "
1651                                "osc max %ld, sys max %ld\n",
1652                                cli->cl_dirty_pages, cli->cl_dirty_max_pages,
1653                                obd_max_dirty_pages);
1654                         goto wakeup;
1655                 }
1656
1657                 if (osc_enter_cache_try(cli, ocw->ocw_oap, ocw->ocw_grant, 0))
1658                         ocw->ocw_rc = 0;
1659 wakeup:
1660                 CDEBUG(D_CACHE, "wake up %p for oap %p, avail grant %ld, %d\n",
1661                        ocw, ocw->ocw_oap, cli->cl_avail_grant, ocw->ocw_rc);
1662
1663                 wake_up(&ocw->ocw_waitq);
1664         }
1665
1666         EXIT;
1667 }
1668
1669 static int osc_max_rpc_in_flight(struct client_obd *cli, struct osc_object *osc)
1670 {
1671         int hprpc = !!list_empty(&osc->oo_hp_exts);
1672         return rpcs_in_flight(cli) >= cli->cl_max_rpcs_in_flight + hprpc;
1673 }
1674
1675 /* This maintains the lists of pending pages to read/write for a given object
1676  * (lop).  This is used by osc_check_rpcs->osc_next_obj() and osc_list_maint()
1677  * to quickly find objects that are ready to send an RPC. */
1678 static int osc_makes_rpc(struct client_obd *cli, struct osc_object *osc,
1679                          int cmd)
1680 {
1681         int invalid_import = 0;
1682         ENTRY;
1683
1684         /* if we have an invalid import we want to drain the queued pages
1685          * by forcing them through rpcs that immediately fail and complete
1686          * the pages.  recovery relies on this to empty the queued pages
1687          * before canceling the locks and evicting down the llite pages */
1688         if ((cli->cl_import == NULL || cli->cl_import->imp_invalid))
1689                 invalid_import = 1;
1690
1691         if (cmd & OBD_BRW_WRITE) {
1692                 if (atomic_read(&osc->oo_nr_writes) == 0)
1693                         RETURN(0);
1694                 if (invalid_import) {
1695                         CDEBUG(D_CACHE, "invalid import forcing RPC\n");
1696                         RETURN(1);
1697                 }
1698                 if (!list_empty(&osc->oo_hp_exts)) {
1699                         CDEBUG(D_CACHE, "high prio request forcing RPC\n");
1700                         RETURN(1);
1701                 }
1702                 if (!list_empty(&osc->oo_urgent_exts)) {
1703                         CDEBUG(D_CACHE, "urgent request forcing RPC\n");
1704                         RETURN(1);
1705                 }
1706                 /* trigger a write rpc stream as long as there are dirtiers
1707                  * waiting for space.  as they're waiting, they're not going to
1708                  * create more pages to coalesce with what's waiting.. */
1709                 if (!list_empty(&cli->cl_cache_waiters)) {
1710                         CDEBUG(D_CACHE, "cache waiters forcing RPC\n");
1711                         RETURN(1);
1712                 }
1713                 if (atomic_read(&osc->oo_nr_writes) >=
1714                     cli->cl_max_pages_per_rpc)
1715                         RETURN(1);
1716         } else {
1717                 if (atomic_read(&osc->oo_nr_reads) == 0)
1718                         RETURN(0);
1719                 if (invalid_import) {
1720                         CDEBUG(D_CACHE, "invalid import forcing RPC\n");
1721                         RETURN(1);
1722                 }
1723                 /* all read are urgent. */
1724                 if (!list_empty(&osc->oo_reading_exts))
1725                         RETURN(1);
1726         }
1727
1728         RETURN(0);
1729 }
1730
1731 static void osc_update_pending(struct osc_object *obj, int cmd, int delta)
1732 {
1733         struct client_obd *cli = osc_cli(obj);
1734         if (cmd & OBD_BRW_WRITE) {
1735                 atomic_add(delta, &obj->oo_nr_writes);
1736                 atomic_add(delta, &cli->cl_pending_w_pages);
1737                 LASSERT(atomic_read(&obj->oo_nr_writes) >= 0);
1738         } else {
1739                 atomic_add(delta, &obj->oo_nr_reads);
1740                 atomic_add(delta, &cli->cl_pending_r_pages);
1741                 LASSERT(atomic_read(&obj->oo_nr_reads) >= 0);
1742         }
1743         OSC_IO_DEBUG(obj, "update pending cmd %d delta %d.\n", cmd, delta);
1744 }
1745
1746 static int osc_makes_hprpc(struct osc_object *obj)
1747 {
1748         return !list_empty(&obj->oo_hp_exts);
1749 }
1750
1751 static void on_list(struct list_head *item, struct list_head *list,
1752                     int should_be_on)
1753 {
1754         if (list_empty(item) && should_be_on)
1755                 list_add_tail(item, list);
1756         else if (!list_empty(item) && !should_be_on)
1757                 list_del_init(item);
1758 }
1759
1760 /* maintain the osc's cli list membership invariants so that osc_send_oap_rpc
1761  * can find pages to build into rpcs quickly */
1762 static int __osc_list_maint(struct client_obd *cli, struct osc_object *osc)
1763 {
1764         if (osc_makes_hprpc(osc)) {
1765                 /* HP rpc */
1766                 on_list(&osc->oo_ready_item, &cli->cl_loi_ready_list, 0);
1767                 on_list(&osc->oo_hp_ready_item, &cli->cl_loi_hp_ready_list, 1);
1768         } else {
1769                 on_list(&osc->oo_hp_ready_item, &cli->cl_loi_hp_ready_list, 0);
1770                 on_list(&osc->oo_ready_item, &cli->cl_loi_ready_list,
1771                         osc_makes_rpc(cli, osc, OBD_BRW_WRITE) ||
1772                         osc_makes_rpc(cli, osc, OBD_BRW_READ));
1773         }
1774
1775         on_list(&osc->oo_write_item, &cli->cl_loi_write_list,
1776                 atomic_read(&osc->oo_nr_writes) > 0);
1777
1778         on_list(&osc->oo_read_item, &cli->cl_loi_read_list,
1779                 atomic_read(&osc->oo_nr_reads) > 0);
1780
1781         return osc_is_ready(osc);
1782 }
1783
1784 static int osc_list_maint(struct client_obd *cli, struct osc_object *osc)
1785 {
1786         int is_ready;
1787
1788         client_obd_list_lock(&cli->cl_loi_list_lock);
1789         is_ready = __osc_list_maint(cli, osc);
1790         client_obd_list_unlock(&cli->cl_loi_list_lock);
1791
1792         return is_ready;
1793 }
1794
1795 /* this is trying to propogate async writeback errors back up to the
1796  * application.  As an async write fails we record the error code for later if
1797  * the app does an fsync.  As long as errors persist we force future rpcs to be
1798  * sync so that the app can get a sync error and break the cycle of queueing
1799  * pages for which writeback will fail. */
1800 static void osc_process_ar(struct osc_async_rc *ar, __u64 xid,
1801                            int rc)
1802 {
1803         if (rc) {
1804                 if (!ar->ar_rc)
1805                         ar->ar_rc = rc;
1806
1807                 ar->ar_force_sync = 1;
1808                 ar->ar_min_xid = ptlrpc_sample_next_xid();
1809                 return;
1810
1811         }
1812
1813         if (ar->ar_force_sync && (xid >= ar->ar_min_xid))
1814                 ar->ar_force_sync = 0;
1815 }
1816
1817 /* this must be called holding the loi list lock to give coverage to exit_cache,
1818  * async_flag maintenance, and oap_request */
1819 static void osc_ap_completion(const struct lu_env *env, struct client_obd *cli,
1820                               struct osc_async_page *oap, int sent, int rc)
1821 {
1822         struct osc_object *osc = oap->oap_obj;
1823         struct lov_oinfo  *loi = osc->oo_oinfo;
1824         __u64 xid = 0;
1825
1826         ENTRY;
1827         if (oap->oap_request != NULL) {
1828                 xid = ptlrpc_req_xid(oap->oap_request);
1829                 ptlrpc_req_finished(oap->oap_request);
1830                 oap->oap_request = NULL;
1831         }
1832
1833         /* As the transfer for this page is being done, clear the flags */
1834         spin_lock(&oap->oap_lock);
1835         oap->oap_async_flags = 0;
1836         spin_unlock(&oap->oap_lock);
1837         oap->oap_interrupted = 0;
1838
1839         if (oap->oap_cmd & OBD_BRW_WRITE && xid > 0) {
1840                 client_obd_list_lock(&cli->cl_loi_list_lock);
1841                 osc_process_ar(&cli->cl_ar, xid, rc);
1842                 osc_process_ar(&loi->loi_ar, xid, rc);
1843                 client_obd_list_unlock(&cli->cl_loi_list_lock);
1844         }
1845
1846         rc = osc_completion(env, oap, oap->oap_cmd, rc);
1847         if (rc)
1848                 CERROR("completion on oap %p obj %p returns %d.\n",
1849                        oap, osc, rc);
1850
1851         EXIT;
1852 }
1853
1854 /**
1855  * Try to add extent to one RPC. We need to think about the following things:
1856  * - # of pages must not be over max_pages_per_rpc
1857  * - extent must be compatible with previous ones
1858  */
1859 static int try_to_add_extent_for_io(struct client_obd *cli,
1860                                     struct osc_extent *ext,
1861                                     struct list_head *rpclist,
1862                                     int *pc, unsigned int *max_pages)
1863 {
1864         struct osc_extent *tmp;
1865         struct osc_async_page *oap = list_first_entry(&ext->oe_pages,
1866                                                       struct osc_async_page,
1867                                                       oap_pending_item);
1868         ENTRY;
1869
1870         EASSERT((ext->oe_state == OES_CACHE || ext->oe_state == OES_LOCK_DONE),
1871                 ext);
1872
1873         *max_pages = max(ext->oe_mppr, *max_pages);
1874         if (*pc + ext->oe_nr_pages > *max_pages)
1875                 RETURN(0);
1876
1877         list_for_each_entry(tmp, rpclist, oe_link) {
1878                 struct osc_async_page *oap2;
1879                 oap2 = list_first_entry(&tmp->oe_pages, struct osc_async_page,
1880                                         oap_pending_item);
1881                 EASSERT(tmp->oe_owner == current, tmp);
1882 #if 0
1883                 if (overlapped(tmp, ext)) {
1884                         OSC_EXTENT_DUMP(D_ERROR, tmp, "overlapped %p.\n", ext);
1885                         EASSERT(0, ext);
1886                 }
1887 #endif
1888                 if (oap2cl_page(oap)->cp_type != oap2cl_page(oap2)->cp_type) {
1889                         CDEBUG(D_CACHE, "Do not permit different type of IO"
1890                                         " for a same RPC\n");
1891                         RETURN(0);
1892                 }
1893
1894                 if (tmp->oe_srvlock != ext->oe_srvlock ||
1895                     !tmp->oe_grants != !ext->oe_grants)
1896                         RETURN(0);
1897
1898                 /* remove break for strict check */
1899                 break;
1900         }
1901
1902         *pc += ext->oe_nr_pages;
1903         list_move_tail(&ext->oe_link, rpclist);
1904         ext->oe_owner = current;
1905         RETURN(1);
1906 }
1907
1908 /**
1909  * In order to prevent multiple ptlrpcd from breaking contiguous extents,
1910  * get_write_extent() takes all appropriate extents in atomic.
1911  *
1912  * The following policy is used to collect extents for IO:
1913  * 1. Add as many HP extents as possible;
1914  * 2. Add the first urgent extent in urgent extent list and take it out of
1915  *    urgent list;
1916  * 3. Add subsequent extents of this urgent extent;
1917  * 4. If urgent list is not empty, goto 2;
1918  * 5. Traverse the extent tree from the 1st extent;
1919  * 6. Above steps exit if there is no space in this RPC.
1920  */
1921 static int get_write_extents(struct osc_object *obj, struct list_head *rpclist)
1922 {
1923         struct client_obd *cli = osc_cli(obj);
1924         struct osc_extent *ext;
1925         int page_count = 0;
1926         unsigned int max_pages = cli->cl_max_pages_per_rpc;
1927
1928         LASSERT(osc_object_is_locked(obj));
1929         while (!list_empty(&obj->oo_hp_exts)) {
1930                 ext = list_entry(obj->oo_hp_exts.next, struct osc_extent,
1931                                  oe_link);
1932                 LASSERT(ext->oe_state == OES_CACHE);
1933                 if (!try_to_add_extent_for_io(cli, ext, rpclist, &page_count,
1934                                               &max_pages))
1935                         return page_count;
1936                 EASSERT(ext->oe_nr_pages <= max_pages, ext);
1937         }
1938         if (page_count == max_pages)
1939                 return page_count;
1940
1941         while (!list_empty(&obj->oo_urgent_exts)) {
1942                 ext = list_entry(obj->oo_urgent_exts.next,
1943                                  struct osc_extent, oe_link);
1944                 if (!try_to_add_extent_for_io(cli, ext, rpclist, &page_count,
1945                                               &max_pages))
1946                         return page_count;
1947
1948                 if (!ext->oe_intree)
1949                         continue;
1950
1951                 while ((ext = next_extent(ext)) != NULL) {
1952                         if ((ext->oe_state != OES_CACHE) ||
1953                             (!list_empty(&ext->oe_link) &&
1954                              ext->oe_owner != NULL))
1955                                 continue;
1956
1957                         if (!try_to_add_extent_for_io(cli, ext, rpclist,
1958                                                       &page_count, &max_pages))
1959                                 return page_count;
1960                 }
1961         }
1962         if (page_count == max_pages)
1963                 return page_count;
1964
1965         ext = first_extent(obj);
1966         while (ext != NULL) {
1967                 if ((ext->oe_state != OES_CACHE) ||
1968                     /* this extent may be already in current rpclist */
1969                     (!list_empty(&ext->oe_link) && ext->oe_owner != NULL)) {
1970                         ext = next_extent(ext);
1971                         continue;
1972                 }
1973
1974                 if (!try_to_add_extent_for_io(cli, ext, rpclist, &page_count,
1975                                               &max_pages))
1976                         return page_count;
1977
1978                 ext = next_extent(ext);
1979         }
1980         return page_count;
1981 }
1982
1983 static int
1984 osc_send_write_rpc(const struct lu_env *env, struct client_obd *cli,
1985                    struct osc_object *osc, pdl_policy_t pol)
1986 __must_hold(osc)
1987 {
1988         struct list_head   rpclist = LIST_HEAD_INIT(rpclist);
1989         struct osc_extent *ext;
1990         struct osc_extent *tmp;
1991         struct osc_extent *first = NULL;
1992         obd_count page_count = 0;
1993         int srvlock = 0;
1994         int rc = 0;
1995         ENTRY;
1996
1997         LASSERT(osc_object_is_locked(osc));
1998
1999         page_count = get_write_extents(osc, &rpclist);
2000         LASSERT(equi(page_count == 0, list_empty(&rpclist)));
2001
2002         if (list_empty(&rpclist))
2003                 RETURN(0);
2004
2005         osc_update_pending(osc, OBD_BRW_WRITE, -page_count);
2006
2007         list_for_each_entry(ext, &rpclist, oe_link) {
2008                 LASSERT(ext->oe_state == OES_CACHE ||
2009                         ext->oe_state == OES_LOCK_DONE);
2010                 if (ext->oe_state == OES_CACHE)
2011                         osc_extent_state_set(ext, OES_LOCKING);
2012                 else
2013                         osc_extent_state_set(ext, OES_RPC);
2014         }
2015
2016         /* we're going to grab page lock, so release object lock because
2017          * lock order is page lock -> object lock. */
2018         osc_object_unlock(osc);
2019
2020         list_for_each_entry_safe(ext, tmp, &rpclist, oe_link) {
2021                 if (ext->oe_state == OES_LOCKING) {
2022                         rc = osc_extent_make_ready(env, ext);
2023                         if (unlikely(rc < 0)) {
2024                                 list_del_init(&ext->oe_link);
2025                                 osc_extent_finish(env, ext, 0, rc);
2026                                 continue;
2027                         }
2028                 }
2029                 if (first == NULL) {
2030                         first = ext;
2031                         srvlock = ext->oe_srvlock;
2032                 } else {
2033                         LASSERT(srvlock == ext->oe_srvlock);
2034                 }
2035         }
2036
2037         if (!list_empty(&rpclist)) {
2038                 LASSERT(page_count > 0);
2039                 rc = osc_build_rpc(env, cli, &rpclist, OBD_BRW_WRITE, pol);
2040                 LASSERT(list_empty(&rpclist));
2041         }
2042
2043         osc_object_lock(osc);
2044         RETURN(rc);
2045 }
2046
2047 /**
2048  * prepare pages for ASYNC io and put pages in send queue.
2049  *
2050  * \param cmd OBD_BRW_* macroses
2051  * \param lop pending pages
2052  *
2053  * \return zero if no page added to send queue.
2054  * \return 1 if pages successfully added to send queue.
2055  * \return negative on errors.
2056  */
2057 static int
2058 osc_send_read_rpc(const struct lu_env *env, struct client_obd *cli,
2059                   struct osc_object *osc, pdl_policy_t pol)
2060 __must_hold(osc)
2061 {
2062         struct osc_extent *ext;
2063         struct osc_extent *next;
2064         struct list_head rpclist = LIST_HEAD_INIT(rpclist);
2065         int page_count = 0;
2066         unsigned int max_pages = cli->cl_max_pages_per_rpc;
2067         int rc = 0;
2068         ENTRY;
2069
2070         LASSERT(osc_object_is_locked(osc));
2071         list_for_each_entry_safe(ext, next,
2072                                      &osc->oo_reading_exts, oe_link) {
2073                 EASSERT(ext->oe_state == OES_LOCK_DONE, ext);
2074                 if (!try_to_add_extent_for_io(cli, ext, &rpclist, &page_count,
2075                                               &max_pages))
2076                         break;
2077                 osc_extent_state_set(ext, OES_RPC);
2078                 EASSERT(ext->oe_nr_pages <= max_pages, ext);
2079         }
2080         LASSERT(page_count <= max_pages);
2081
2082         osc_update_pending(osc, OBD_BRW_READ, -page_count);
2083
2084         if (!list_empty(&rpclist)) {
2085                 osc_object_unlock(osc);
2086
2087                 LASSERT(page_count > 0);
2088                 rc = osc_build_rpc(env, cli, &rpclist, OBD_BRW_READ, pol);
2089                 LASSERT(list_empty(&rpclist));
2090
2091                 osc_object_lock(osc);
2092         }
2093         RETURN(rc);
2094 }
2095
2096 #define list_to_obj(list, item) ({                                            \
2097         struct list_head *__tmp = (list)->next;                               \
2098         list_del_init(__tmp);                                         \
2099         list_entry(__tmp, struct osc_object, oo_##item);                      \
2100 })
2101
2102 /* This is called by osc_check_rpcs() to find which objects have pages that
2103  * we could be sending.  These lists are maintained by osc_makes_rpc(). */
2104 static struct osc_object *osc_next_obj(struct client_obd *cli)
2105 {
2106         ENTRY;
2107
2108         /* First return objects that have blocked locks so that they
2109          * will be flushed quickly and other clients can get the lock,
2110          * then objects which have pages ready to be stuffed into RPCs */
2111         if (!list_empty(&cli->cl_loi_hp_ready_list))
2112                 RETURN(list_to_obj(&cli->cl_loi_hp_ready_list, hp_ready_item));
2113         if (!list_empty(&cli->cl_loi_ready_list))
2114                 RETURN(list_to_obj(&cli->cl_loi_ready_list, ready_item));
2115
2116         /* then if we have cache waiters, return all objects with queued
2117          * writes.  This is especially important when many small files
2118          * have filled up the cache and not been fired into rpcs because
2119          * they don't pass the nr_pending/object threshhold */
2120         if (!list_empty(&cli->cl_cache_waiters) &&
2121             !list_empty(&cli->cl_loi_write_list))
2122                 RETURN(list_to_obj(&cli->cl_loi_write_list, write_item));
2123
2124         /* then return all queued objects when we have an invalid import
2125          * so that they get flushed */
2126         if (cli->cl_import == NULL || cli->cl_import->imp_invalid) {
2127                 if (!list_empty(&cli->cl_loi_write_list))
2128                         RETURN(list_to_obj(&cli->cl_loi_write_list,
2129                                            write_item));
2130                 if (!list_empty(&cli->cl_loi_read_list))
2131                         RETURN(list_to_obj(&cli->cl_loi_read_list,
2132                                            read_item));
2133         }
2134         RETURN(NULL);
2135 }
2136
2137 /* called with the loi list lock held */
2138 static void osc_check_rpcs(const struct lu_env *env, struct client_obd *cli,
2139                            pdl_policy_t pol)
2140 __must_hold(&cli->cl_loi_list_lock)
2141 {
2142         struct osc_object *osc;
2143         int rc = 0;
2144         ENTRY;
2145
2146         while ((osc = osc_next_obj(cli)) != NULL) {
2147                 struct cl_object *obj = osc2cl(osc);
2148                 struct lu_ref_link link;
2149
2150                 OSC_IO_DEBUG(osc, "%lu in flight\n", rpcs_in_flight(cli));
2151
2152                 if (osc_max_rpc_in_flight(cli, osc)) {
2153                         __osc_list_maint(cli, osc);
2154                         break;
2155                 }
2156
2157                 cl_object_get(obj);
2158                 client_obd_list_unlock(&cli->cl_loi_list_lock);
2159                 lu_object_ref_add_at(&obj->co_lu, &link, "check", current);
2160
2161                 /* attempt some read/write balancing by alternating between
2162                  * reads and writes in an object.  The makes_rpc checks here
2163                  * would be redundant if we were getting read/write work items
2164                  * instead of objects.  we don't want send_oap_rpc to drain a
2165                  * partial read pending queue when we're given this object to
2166                  * do io on writes while there are cache waiters */
2167                 osc_object_lock(osc);
2168                 if (osc_makes_rpc(cli, osc, OBD_BRW_WRITE)) {
2169                         rc = osc_send_write_rpc(env, cli, osc, pol);
2170                         if (rc < 0) {
2171                                 CERROR("Write request failed with %d\n", rc);
2172
2173                                 /* osc_send_write_rpc failed, mostly because of
2174                                  * memory pressure.
2175                                  *
2176                                  * It can't break here, because if:
2177                                  *  - a page was submitted by osc_io_submit, so
2178                                  *    page locked;
2179                                  *  - no request in flight
2180                                  *  - no subsequent request
2181                                  * The system will be in live-lock state,
2182                                  * because there is no chance to call
2183                                  * osc_io_unplug() and osc_check_rpcs() any
2184                                  * more. pdflush can't help in this case,
2185                                  * because it might be blocked at grabbing
2186                                  * the page lock as we mentioned.
2187                                  *
2188                                  * Anyway, continue to drain pages. */
2189                                 /* break; */
2190                         }
2191                 }
2192                 if (osc_makes_rpc(cli, osc, OBD_BRW_READ)) {
2193                         rc = osc_send_read_rpc(env, cli, osc, pol);
2194                         if (rc < 0)
2195                                 CERROR("Read request failed with %d\n", rc);
2196                 }
2197                 osc_object_unlock(osc);
2198
2199                 osc_list_maint(cli, osc);
2200                 lu_object_ref_del_at(&obj->co_lu, &link, "check", current);
2201                 cl_object_put(env, obj);
2202
2203                 client_obd_list_lock(&cli->cl_loi_list_lock);
2204         }
2205 }
2206
2207 static int osc_io_unplug0(const struct lu_env *env, struct client_obd *cli,
2208                           struct osc_object *osc, pdl_policy_t pol, int async)
2209 {
2210         int rc = 0;
2211
2212         if (osc != NULL && osc_list_maint(cli, osc) == 0)
2213                 return 0;
2214
2215         if (!async) {
2216                 /* disable osc_lru_shrink() temporarily to avoid
2217                  * potential stack overrun problem. LU-2859 */
2218                 atomic_inc(&cli->cl_lru_shrinkers);
2219                 client_obd_list_lock(&cli->cl_loi_list_lock);
2220                 osc_check_rpcs(env, cli, pol);
2221                 client_obd_list_unlock(&cli->cl_loi_list_lock);
2222                 atomic_dec(&cli->cl_lru_shrinkers);
2223         } else {
2224                 CDEBUG(D_CACHE, "Queue writeback work for client %p.\n", cli);
2225                 LASSERT(cli->cl_writeback_work != NULL);
2226                 rc = ptlrpcd_queue_work(cli->cl_writeback_work);
2227         }
2228         return rc;
2229 }
2230
2231 static int osc_io_unplug_async(const struct lu_env *env,
2232                                 struct client_obd *cli, struct osc_object *osc)
2233 {
2234         /* XXX: policy is no use actually. */
2235         return osc_io_unplug0(env, cli, osc, PDL_POLICY_ROUND, 1);
2236 }
2237
2238 void osc_io_unplug(const struct lu_env *env, struct client_obd *cli,
2239                    struct osc_object *osc, pdl_policy_t pol)
2240 {
2241         (void)osc_io_unplug0(env, cli, osc, pol, 0);
2242 }
2243
2244 int osc_prep_async_page(struct osc_object *osc, struct osc_page *ops,
2245                         struct page *page, loff_t offset)
2246 {
2247         struct obd_export     *exp = osc_export(osc);
2248         struct osc_async_page *oap = &ops->ops_oap;
2249         ENTRY;
2250
2251         if (!page)
2252                 return cfs_size_round(sizeof(*oap));
2253
2254         oap->oap_magic = OAP_MAGIC;
2255         oap->oap_cli = &exp->exp_obd->u.cli;
2256         oap->oap_obj = osc;
2257
2258         oap->oap_page = page;
2259         oap->oap_obj_off = offset;
2260         LASSERT(!(offset & ~CFS_PAGE_MASK));
2261
2262         if (!client_is_remote(exp) && cfs_capable(CFS_CAP_SYS_RESOURCE))
2263                 oap->oap_brw_flags = OBD_BRW_NOQUOTA;
2264
2265         INIT_LIST_HEAD(&oap->oap_pending_item);
2266         INIT_LIST_HEAD(&oap->oap_rpc_item);
2267
2268         spin_lock_init(&oap->oap_lock);
2269         CDEBUG(D_INFO, "oap %p page %p obj off "LPU64"\n",
2270                oap, page, oap->oap_obj_off);
2271         RETURN(0);
2272 }
2273
2274 int osc_queue_async_io(const struct lu_env *env, struct cl_io *io,
2275                        struct osc_page *ops)
2276 {
2277         struct osc_io *oio = osc_env_io(env);
2278         struct osc_extent     *ext = NULL;
2279         struct osc_async_page *oap = &ops->ops_oap;
2280         struct client_obd     *cli = oap->oap_cli;
2281         struct osc_object     *osc = oap->oap_obj;
2282         pgoff_t index;
2283         int    grants = 0;
2284         int    brw_flags = OBD_BRW_ASYNC;
2285         int    cmd = OBD_BRW_WRITE;
2286         int    need_release = 0;
2287         int    rc = 0;
2288         ENTRY;
2289
2290         if (oap->oap_magic != OAP_MAGIC)
2291                 RETURN(-EINVAL);
2292
2293         if (cli->cl_import == NULL || cli->cl_import->imp_invalid)
2294                 RETURN(-EIO);
2295
2296         if (!list_empty(&oap->oap_pending_item) ||
2297             !list_empty(&oap->oap_rpc_item))
2298                 RETURN(-EBUSY);
2299
2300         /* Set the OBD_BRW_SRVLOCK before the page is queued. */
2301         brw_flags |= ops->ops_srvlock ? OBD_BRW_SRVLOCK : 0;
2302         if (!client_is_remote(osc_export(osc)) &&
2303             cfs_capable(CFS_CAP_SYS_RESOURCE)) {
2304                 brw_flags |= OBD_BRW_NOQUOTA;
2305                 cmd |= OBD_BRW_NOQUOTA;
2306         }
2307
2308         /* check if the file's owner/group is over quota */
2309         if (!(cmd & OBD_BRW_NOQUOTA)) {
2310                 struct cl_object *obj;
2311                 struct cl_attr   *attr;
2312                 unsigned int qid[MAXQUOTAS];
2313
2314                 obj = cl_object_top(&osc->oo_cl);
2315                 attr = &osc_env_info(env)->oti_attr;
2316
2317                 cl_object_attr_lock(obj);
2318                 rc = cl_object_attr_get(env, obj, attr);
2319                 cl_object_attr_unlock(obj);
2320
2321                 qid[USRQUOTA] = attr->cat_uid;
2322                 qid[GRPQUOTA] = attr->cat_gid;
2323                 if (rc == 0 && osc_quota_chkdq(cli, qid) == NO_QUOTA)
2324                         rc = -EDQUOT;
2325                 if (rc)
2326                         RETURN(rc);
2327         }
2328
2329         oap->oap_cmd = cmd;
2330         oap->oap_page_off = ops->ops_from;
2331         oap->oap_count = ops->ops_to - ops->ops_from;
2332         /* No need to hold a lock here,
2333          * since this page is not in any list yet. */
2334         oap->oap_async_flags = 0;
2335         oap->oap_brw_flags = brw_flags;
2336
2337         OSC_IO_DEBUG(osc, "oap %p page %p added for cmd %d\n",
2338                      oap, oap->oap_page, oap->oap_cmd & OBD_BRW_RWMASK);
2339
2340         index = osc_index(oap2osc(oap));
2341
2342         /* Add this page into extent by the following steps:
2343          * 1. if there exists an active extent for this IO, mostly this page
2344          *    can be added to the active extent and sometimes we need to
2345          *    expand extent to accomodate this page;
2346          * 2. otherwise, a new extent will be allocated. */
2347
2348         ext = oio->oi_active;
2349         if (ext != NULL && ext->oe_start <= index && ext->oe_max_end >= index) {
2350                 /* one chunk plus extent overhead must be enough to write this
2351                  * page */
2352                 grants = (1 << cli->cl_chunkbits) + cli->cl_extent_tax;
2353                 if (ext->oe_end >= index)
2354                         grants = 0;
2355
2356                 /* it doesn't need any grant to dirty this page */
2357                 client_obd_list_lock(&cli->cl_loi_list_lock);
2358                 rc = osc_enter_cache_try(cli, oap, grants, 0);
2359                 client_obd_list_unlock(&cli->cl_loi_list_lock);
2360                 if (rc == 0) { /* try failed */
2361                         grants = 0;
2362                         need_release = 1;
2363                 } else if (ext->oe_end < index) {
2364                         int tmp = grants;
2365                         /* try to expand this extent */
2366                         rc = osc_extent_expand(ext, index, &tmp);
2367                         if (rc < 0) {
2368                                 need_release = 1;
2369                                 /* don't free reserved grant */
2370                         } else {
2371                                 OSC_EXTENT_DUMP(D_CACHE, ext,
2372                                                 "expanded for %lu.\n", index);
2373                                 osc_unreserve_grant(cli, grants, tmp);
2374                                 grants = 0;
2375                         }
2376                 }
2377                 rc = 0;
2378         } else if (ext != NULL) {
2379                 /* index is located outside of active extent */
2380                 need_release = 1;
2381         }
2382         if (need_release) {
2383                 osc_extent_release(env, ext);
2384                 oio->oi_active = NULL;
2385                 ext = NULL;
2386         }
2387
2388         if (ext == NULL) {
2389                 int tmp = (1 << cli->cl_chunkbits) + cli->cl_extent_tax;
2390
2391                 /* try to find new extent to cover this page */
2392                 LASSERT(oio->oi_active == NULL);
2393                 /* we may have allocated grant for this page if we failed
2394                  * to expand the previous active extent. */
2395                 LASSERT(ergo(grants > 0, grants >= tmp));
2396
2397                 rc = 0;
2398                 if (grants == 0) {
2399                         /* we haven't allocated grant for this page. */
2400                         rc = osc_enter_cache(env, cli, oap, tmp);
2401                         if (rc == 0)
2402                                 grants = tmp;
2403                 }
2404
2405                 tmp = grants;
2406                 if (rc == 0) {
2407                         ext = osc_extent_find(env, osc, index, &tmp);
2408                         if (IS_ERR(ext)) {
2409                                 LASSERT(tmp == grants);
2410                                 osc_exit_cache(cli, oap);
2411                                 rc = PTR_ERR(ext);
2412                                 ext = NULL;
2413                         } else {
2414                                 oio->oi_active = ext;
2415                         }
2416                 }
2417                 if (grants > 0)
2418                         osc_unreserve_grant(cli, grants, tmp);
2419         }
2420
2421         LASSERT(ergo(rc == 0, ext != NULL));
2422         if (ext != NULL) {
2423                 EASSERTF(ext->oe_end >= index && ext->oe_start <= index,
2424                          ext, "index = %lu.\n", index);
2425                 LASSERT((oap->oap_brw_flags & OBD_BRW_FROM_GRANT) != 0);
2426
2427                 osc_object_lock(osc);
2428                 if (ext->oe_nr_pages == 0)
2429                         ext->oe_srvlock = ops->ops_srvlock;
2430                 else
2431                         LASSERT(ext->oe_srvlock == ops->ops_srvlock);
2432                 ++ext->oe_nr_pages;
2433                 list_add_tail(&oap->oap_pending_item, &ext->oe_pages);
2434                 osc_object_unlock(osc);
2435         }
2436         RETURN(rc);
2437 }
2438
2439 int osc_teardown_async_page(const struct lu_env *env,
2440                             struct osc_object *obj, struct osc_page *ops)
2441 {
2442         struct osc_async_page *oap = &ops->ops_oap;
2443         struct osc_extent     *ext = NULL;
2444         int rc = 0;
2445         ENTRY;
2446
2447         LASSERT(oap->oap_magic == OAP_MAGIC);
2448
2449         CDEBUG(D_INFO, "teardown oap %p page %p at index %lu.\n",
2450                oap, ops, osc_index(oap2osc(oap)));
2451
2452         osc_object_lock(obj);
2453         if (!list_empty(&oap->oap_rpc_item)) {
2454                 CDEBUG(D_CACHE, "oap %p is not in cache.\n", oap);
2455                 rc = -EBUSY;
2456         } else if (!list_empty(&oap->oap_pending_item)) {
2457                 ext = osc_extent_lookup(obj, osc_index(oap2osc(oap)));
2458                 /* only truncated pages are allowed to be taken out.
2459                  * See osc_extent_truncate() and osc_cache_truncate_start()
2460                  * for details. */
2461                 if (ext != NULL && ext->oe_state != OES_TRUNC) {
2462                         OSC_EXTENT_DUMP(D_ERROR, ext, "trunc at %lu.\n",
2463                                         osc_index(oap2osc(oap)));
2464                         rc = -EBUSY;
2465                 }
2466         }
2467         osc_object_unlock(obj);
2468         if (ext != NULL)
2469                 osc_extent_put(env, ext);
2470         RETURN(rc);
2471 }
2472
2473 /**
2474  * This is called when a page is picked up by kernel to write out.
2475  *
2476  * We should find out the corresponding extent and add the whole extent
2477  * into urgent list. The extent may be being truncated or used, handle it
2478  * carefully.
2479  */
2480 int osc_flush_async_page(const struct lu_env *env, struct cl_io *io,
2481                          struct osc_page *ops)
2482 {
2483         struct osc_extent *ext   = NULL;
2484         struct osc_object *obj   = cl2osc(ops->ops_cl.cpl_obj);
2485         struct cl_page    *cp    = ops->ops_cl.cpl_page;
2486         pgoff_t            index = osc_index(ops);
2487         struct osc_async_page *oap = &ops->ops_oap;
2488         bool unplug = false;
2489         int rc = 0;
2490         ENTRY;
2491
2492         osc_object_lock(obj);
2493         ext = osc_extent_lookup(obj, index);
2494         if (ext == NULL) {
2495                 osc_extent_tree_dump(D_ERROR, obj);
2496                 LASSERTF(0, "page index %lu is NOT covered.\n", index);
2497         }
2498
2499         switch (ext->oe_state) {
2500         case OES_RPC:
2501         case OES_LOCK_DONE:
2502                 CL_PAGE_DEBUG(D_ERROR, env, cp, "flush an in-rpc page?\n");
2503                 LASSERT(0);
2504                 break;
2505         case OES_LOCKING:
2506                 /* If we know this extent is being written out, we should abort
2507                  * so that the writer can make this page ready. Otherwise, there
2508                  * exists a deadlock problem because other process can wait for
2509                  * page writeback bit holding page lock; and meanwhile in
2510                  * vvp_page_make_ready(), we need to grab page lock before
2511                  * really sending the RPC. */
2512         case OES_TRUNC:
2513                 /* race with truncate, page will be redirtied */
2514         case OES_ACTIVE:
2515                 /* The extent is active so we need to abort and let the caller
2516                  * re-dirty the page. If we continued on here, and we were the
2517                  * one making the extent active, we could deadlock waiting for
2518                  * the page writeback to clear but it won't because the extent
2519                  * is active and won't be written out. */
2520                 GOTO(out, rc = -EAGAIN);
2521         default:
2522                 break;
2523         }
2524
2525         rc = cl_page_prep(env, io, cp, CRT_WRITE);
2526         if (rc)
2527                 GOTO(out, rc);
2528
2529         spin_lock(&oap->oap_lock);
2530         oap->oap_async_flags |= ASYNC_READY|ASYNC_URGENT;
2531         spin_unlock(&oap->oap_lock);
2532
2533         if (memory_pressure_get())
2534                 ext->oe_memalloc = 1;
2535
2536         ext->oe_urgent = 1;
2537         if (ext->oe_state == OES_CACHE) {
2538                 OSC_EXTENT_DUMP(D_CACHE, ext,
2539                                 "flush page %p make it urgent.\n", oap);
2540                 if (list_empty(&ext->oe_link))
2541                         list_add_tail(&ext->oe_link, &obj->oo_urgent_exts);
2542                 unplug = true;
2543         }
2544         rc = 0;
2545         EXIT;
2546
2547 out:
2548         osc_object_unlock(obj);
2549         osc_extent_put(env, ext);
2550         if (unplug)
2551                 osc_io_unplug_async(env, osc_cli(obj), obj);
2552         return rc;
2553 }
2554
2555 /**
2556  * this is called when a sync waiter receives an interruption.  Its job is to
2557  * get the caller woken as soon as possible.  If its page hasn't been put in an
2558  * rpc yet it can dequeue immediately.  Otherwise it has to mark the rpc as
2559  * desiring interruption which will forcefully complete the rpc once the rpc
2560  * has timed out.
2561  */
2562 int osc_cancel_async_page(const struct lu_env *env, struct osc_page *ops)
2563 {
2564         struct osc_async_page *oap = &ops->ops_oap;
2565         struct osc_object     *obj = oap->oap_obj;
2566         struct client_obd     *cli = osc_cli(obj);
2567         struct osc_extent     *ext;
2568         struct osc_extent     *found = NULL;
2569         struct list_head            *plist;
2570         pgoff_t index = osc_index(ops);
2571         int     rc = -EBUSY;
2572         int     cmd;
2573         ENTRY;
2574
2575         LASSERT(!oap->oap_interrupted);
2576         oap->oap_interrupted = 1;
2577
2578         /* Find out the caching extent */
2579         osc_object_lock(obj);
2580         if (oap->oap_cmd & OBD_BRW_WRITE) {
2581                 plist = &obj->oo_urgent_exts;
2582                 cmd   = OBD_BRW_WRITE;
2583         } else {
2584                 plist = &obj->oo_reading_exts;
2585                 cmd   = OBD_BRW_READ;
2586         }
2587         list_for_each_entry(ext, plist, oe_link) {
2588                 if (ext->oe_start <= index && ext->oe_end >= index) {
2589                         LASSERT(ext->oe_state == OES_LOCK_DONE);
2590                         /* For OES_LOCK_DONE state extent, it has already held
2591                          * a refcount for RPC. */
2592                         found = osc_extent_get(ext);
2593                         break;
2594                 }
2595         }
2596         if (found != NULL) {
2597                 list_del_init(&found->oe_link);
2598                 osc_update_pending(obj, cmd, -found->oe_nr_pages);
2599                 osc_object_unlock(obj);
2600
2601                 osc_extent_finish(env, found, 0, -EINTR);
2602                 osc_extent_put(env, found);
2603                 rc = 0;
2604         } else {
2605                 osc_object_unlock(obj);
2606                 /* ok, it's been put in an rpc. only one oap gets a request
2607                  * reference */
2608                 if (oap->oap_request != NULL) {
2609                         ptlrpc_mark_interrupted(oap->oap_request);
2610                         ptlrpcd_wake(oap->oap_request);
2611                         ptlrpc_req_finished(oap->oap_request);
2612                         oap->oap_request = NULL;
2613                 }
2614         }
2615
2616         osc_list_maint(cli, obj);
2617         RETURN(rc);
2618 }
2619
2620 int osc_queue_sync_pages(const struct lu_env *env, struct osc_object *obj,
2621                          struct list_head *list, int cmd, int brw_flags)
2622 {
2623         struct client_obd     *cli = osc_cli(obj);
2624         struct osc_extent     *ext;
2625         struct osc_async_page *oap;
2626         int     page_count = 0;
2627         int     mppr       = cli->cl_max_pages_per_rpc;
2628         pgoff_t start      = CL_PAGE_EOF;
2629         pgoff_t end        = 0;
2630         ENTRY;
2631
2632         list_for_each_entry(oap, list, oap_pending_item) {
2633                 pgoff_t index = osc_index(oap2osc(oap));
2634                 if (index > end)
2635                         end = index;
2636                 if (index < start)
2637                         start = index;
2638                 ++page_count;
2639                 mppr <<= (page_count > mppr);
2640         }
2641
2642         ext = osc_extent_alloc(obj);
2643         if (ext == NULL) {
2644                 list_for_each_entry(oap, list, oap_pending_item) {
2645                         list_del_init(&oap->oap_pending_item);
2646                         osc_ap_completion(env, cli, oap, 0, -ENOMEM);
2647                 }
2648                 RETURN(-ENOMEM);
2649         }
2650
2651         ext->oe_rw = !!(cmd & OBD_BRW_READ);
2652         ext->oe_sync = 1;
2653         ext->oe_urgent = 1;
2654         ext->oe_start = start;
2655         ext->oe_end = ext->oe_max_end = end;
2656         ext->oe_obj = obj;
2657         ext->oe_srvlock = !!(brw_flags & OBD_BRW_SRVLOCK);
2658         ext->oe_nr_pages = page_count;
2659         ext->oe_mppr = mppr;
2660         list_splice_init(list, &ext->oe_pages);
2661
2662         osc_object_lock(obj);
2663         /* Reuse the initial refcount for RPC, don't drop it */
2664         osc_extent_state_set(ext, OES_LOCK_DONE);
2665         if (cmd & OBD_BRW_WRITE) {
2666                 list_add_tail(&ext->oe_link, &obj->oo_urgent_exts);
2667                 osc_update_pending(obj, OBD_BRW_WRITE, page_count);
2668         } else {
2669                 list_add_tail(&ext->oe_link, &obj->oo_reading_exts);
2670                 osc_update_pending(obj, OBD_BRW_READ, page_count);
2671         }
2672         osc_object_unlock(obj);
2673
2674         osc_io_unplug_async(env, cli, obj);
2675         RETURN(0);
2676 }
2677
2678 /**
2679  * Called by osc_io_setattr_start() to freeze and destroy covering extents.
2680  */
2681 int osc_cache_truncate_start(const struct lu_env *env, struct osc_io *oio,
2682                              struct osc_object *obj, __u64 size)
2683 {
2684         struct client_obd *cli = osc_cli(obj);
2685         struct osc_extent *ext;
2686         struct osc_extent *waiting = NULL;
2687         pgoff_t index;
2688         struct list_head list = LIST_HEAD_INIT(list);
2689         int result = 0;
2690         bool partial;
2691         ENTRY;
2692
2693         /* pages with index greater or equal to index will be truncated. */
2694         index = cl_index(osc2cl(obj), size);
2695         partial = size > cl_offset(osc2cl(obj), index);
2696
2697 again:
2698         osc_object_lock(obj);
2699         ext = osc_extent_search(obj, index);
2700         if (ext == NULL)
2701                 ext = first_extent(obj);
2702         else if (ext->oe_end < index)
2703                 ext = next_extent(ext);
2704         while (ext != NULL) {
2705                 EASSERT(ext->oe_state != OES_TRUNC, ext);
2706
2707                 if (ext->oe_state > OES_CACHE || ext->oe_urgent) {
2708                         /* if ext is in urgent state, it means there must exist
2709                          * a page already having been flushed by write_page().
2710                          * We have to wait for this extent because we can't
2711                          * truncate that page. */
2712                         LASSERT(!ext->oe_hp);
2713                         OSC_EXTENT_DUMP(D_CACHE, ext,
2714                                         "waiting for busy extent\n");
2715                         waiting = osc_extent_get(ext);
2716                         break;
2717                 }
2718
2719                 OSC_EXTENT_DUMP(D_CACHE, ext, "try to trunc:"LPU64".\n", size);
2720
2721                 osc_extent_get(ext);
2722                 if (ext->oe_state == OES_ACTIVE) {
2723                         /* though we grab inode mutex for write path, but we
2724                          * release it before releasing extent(in osc_io_end()),
2725                          * so there is a race window that an extent is still
2726                          * in OES_ACTIVE when truncate starts. */
2727                         LASSERT(!ext->oe_trunc_pending);
2728                         ext->oe_trunc_pending = 1;
2729                 } else {
2730                         EASSERT(ext->oe_state == OES_CACHE, ext);
2731                         osc_extent_state_set(ext, OES_TRUNC);
2732                         osc_update_pending(obj, OBD_BRW_WRITE,
2733                                            -ext->oe_nr_pages);
2734                 }
2735                 EASSERT(list_empty(&ext->oe_link), ext);
2736                 list_add_tail(&ext->oe_link, &list);
2737
2738                 ext = next_extent(ext);
2739         }
2740         osc_object_unlock(obj);
2741
2742         osc_list_maint(cli, obj);
2743
2744         while (!list_empty(&list)) {
2745                 int rc;
2746
2747                 ext = list_entry(list.next, struct osc_extent, oe_link);
2748                 list_del_init(&ext->oe_link);
2749
2750                 /* extent may be in OES_ACTIVE state because inode mutex
2751                  * is released before osc_io_end() in file write case */
2752                 if (ext->oe_state != OES_TRUNC)
2753                         osc_extent_wait(env, ext, OES_TRUNC);
2754
2755                 rc = osc_extent_truncate(ext, index, partial);
2756                 if (rc < 0) {
2757                         if (result == 0)
2758                                 result = rc;
2759
2760                         OSC_EXTENT_DUMP(D_ERROR, ext,
2761                                         "truncate error %d\n", rc);
2762                 } else if (ext->oe_nr_pages == 0) {
2763                         osc_extent_remove(ext);
2764                 } else {
2765                         /* this must be an overlapped extent which means only
2766                          * part of pages in this extent have been truncated.
2767                          */
2768                         EASSERTF(ext->oe_start <= index, ext,
2769                                  "trunc index = %lu/%d.\n", index, partial);
2770                         /* fix index to skip this partially truncated extent */
2771                         index = ext->oe_end + 1;
2772                         partial = false;
2773
2774                         /* we need to hold this extent in OES_TRUNC state so
2775                          * that no writeback will happen. This is to avoid
2776                          * BUG 17397. */
2777                         LASSERT(oio->oi_trunc == NULL);
2778                         oio->oi_trunc = osc_extent_get(ext);
2779                         OSC_EXTENT_DUMP(D_CACHE, ext,
2780                                         "trunc at "LPU64"\n", size);
2781                 }
2782                 osc_extent_put(env, ext);
2783         }
2784         if (waiting != NULL) {
2785                 int rc;
2786
2787                 /* ignore the result of osc_extent_wait the write initiator
2788                  * should take care of it. */
2789                 rc = osc_extent_wait(env, waiting, OES_INV);
2790                 if (rc < 0)
2791                         OSC_EXTENT_DUMP(D_CACHE, waiting, "error: %d.\n", rc);
2792
2793                 osc_extent_put(env, waiting);
2794                 waiting = NULL;
2795                 goto again;
2796         }
2797         RETURN(result);
2798 }
2799
2800 /**
2801  * Called after osc_io_setattr_end to add oio->oi_trunc back to cache.
2802  */
2803 void osc_cache_truncate_end(const struct lu_env *env, struct osc_io *oio,
2804                             struct osc_object *obj)
2805 {
2806         struct osc_extent *ext = oio->oi_trunc;
2807
2808         oio->oi_trunc = NULL;
2809         if (ext != NULL) {
2810                 bool unplug = false;
2811
2812                 EASSERT(ext->oe_nr_pages > 0, ext);
2813                 EASSERT(ext->oe_state == OES_TRUNC, ext);
2814                 EASSERT(!ext->oe_urgent, ext);
2815
2816                 OSC_EXTENT_DUMP(D_CACHE, ext, "trunc -> cache.\n");
2817                 osc_object_lock(obj);
2818                 osc_extent_state_set(ext, OES_CACHE);
2819                 if (ext->oe_fsync_wait && !ext->oe_urgent) {
2820                         ext->oe_urgent = 1;
2821                         list_move_tail(&ext->oe_link, &obj->oo_urgent_exts);
2822                         unplug = true;
2823                 }
2824                 osc_update_pending(obj, OBD_BRW_WRITE, ext->oe_nr_pages);
2825                 osc_object_unlock(obj);
2826                 osc_extent_put(env, ext);
2827
2828                 if (unplug)
2829                         osc_io_unplug_async(env, osc_cli(obj), obj);
2830         }
2831 }
2832
2833 /**
2834  * Wait for extents in a specific range to be written out.
2835  * The caller must have called osc_cache_writeback_range() to issue IO
2836  * otherwise it will take a long time for this function to finish.
2837  *
2838  * Caller must hold inode_mutex , or cancel exclusive dlm lock so that
2839  * nobody else can dirty this range of file while we're waiting for
2840  * extents to be written.
2841  */
2842 int osc_cache_wait_range(const struct lu_env *env, struct osc_object *obj,
2843                          pgoff_t start, pgoff_t end)
2844 {
2845         struct osc_extent *ext;
2846         pgoff_t index = start;
2847         int     result = 0;
2848         ENTRY;
2849
2850 again:
2851         osc_object_lock(obj);
2852         ext = osc_extent_search(obj, index);
2853         if (ext == NULL)
2854                 ext = first_extent(obj);
2855         else if (ext->oe_end < index)
2856                 ext = next_extent(ext);
2857         while (ext != NULL) {
2858                 int rc;
2859
2860                 if (ext->oe_start > end)
2861                         break;
2862
2863                 if (!ext->oe_fsync_wait) {
2864                         ext = next_extent(ext);
2865                         continue;
2866                 }
2867
2868                 EASSERT(ergo(ext->oe_state == OES_CACHE,
2869                              ext->oe_hp || ext->oe_urgent), ext);
2870                 EASSERT(ergo(ext->oe_state == OES_ACTIVE,
2871                              !ext->oe_hp && ext->oe_urgent), ext);
2872
2873                 index = ext->oe_end + 1;
2874                 osc_extent_get(ext);
2875                 osc_object_unlock(obj);
2876
2877                 rc = osc_extent_wait(env, ext, OES_INV);
2878                 if (result == 0)
2879                         result = rc;
2880                 osc_extent_put(env, ext);
2881                 goto again;
2882         }
2883         osc_object_unlock(obj);
2884
2885         OSC_IO_DEBUG(obj, "sync file range.\n");
2886         RETURN(result);
2887 }
2888
2889 /**
2890  * Called to write out a range of osc object.
2891  *
2892  * @hp     : should be set this is caused by lock cancel;
2893  * @discard: is set if dirty pages should be dropped - file will be deleted or
2894  *         truncated, this implies there is no partially discarding extents.
2895  *
2896  * Return how many pages will be issued, or error code if error occurred.
2897  */
2898 int osc_cache_writeback_range(const struct lu_env *env, struct osc_object *obj,
2899                               pgoff_t start, pgoff_t end, int hp, int discard)
2900 {
2901         struct osc_extent *ext;
2902         struct list_head discard_list = LIST_HEAD_INIT(discard_list);
2903         bool unplug = false;
2904         int result = 0;
2905         ENTRY;
2906
2907         osc_object_lock(obj);
2908         ext = osc_extent_search(obj, start);
2909         if (ext == NULL)
2910                 ext = first_extent(obj);
2911         else if (ext->oe_end < start)
2912                 ext = next_extent(ext);
2913         while (ext != NULL) {
2914                 if (ext->oe_start > end)
2915                         break;
2916
2917                 ext->oe_fsync_wait = 1;
2918                 switch (ext->oe_state) {
2919                 case OES_CACHE:
2920                         result += ext->oe_nr_pages;
2921                         if (!discard) {
2922                                 struct list_head *list = NULL;
2923                                 if (hp) {
2924                                         EASSERT(!ext->oe_hp, ext);
2925                                         ext->oe_hp = 1;
2926                                         list = &obj->oo_hp_exts;
2927                                 } else if (!ext->oe_urgent) {
2928                                         ext->oe_urgent = 1;
2929                                         list = &obj->oo_urgent_exts;
2930                                 }
2931                                 if (list != NULL)
2932                                         list_move_tail(&ext->oe_link, list);
2933                                 unplug = true;
2934                         } else {
2935                                 /* the only discarder is lock cancelling, so
2936                                  * [start, end] must contain this extent */
2937                                 EASSERT(ext->oe_start >= start &&
2938                                         ext->oe_max_end <= end, ext);
2939                                 osc_extent_state_set(ext, OES_LOCKING);
2940                                 ext->oe_owner = current;
2941                                 list_move_tail(&ext->oe_link,
2942                                                    &discard_list);
2943                                 osc_update_pending(obj, OBD_BRW_WRITE,
2944                                                    -ext->oe_nr_pages);
2945                         }
2946                         break;
2947                 case OES_ACTIVE:
2948                         /* It's pretty bad to wait for ACTIVE extents, because
2949                          * we don't know how long we will wait for it to be
2950                          * flushed since it may be blocked at awaiting more
2951                          * grants. We do this for the correctness of fsync. */
2952                         LASSERT(hp == 0 && discard == 0);
2953                         ext->oe_urgent = 1;
2954                         break;
2955                 case OES_TRUNC:
2956                         /* this extent is being truncated, can't do anything
2957                          * for it now. it will be set to urgent after truncate
2958                          * is finished in osc_cache_truncate_end(). */
2959                 default:
2960                         break;
2961                 }
2962                 ext = next_extent(ext);
2963         }
2964         osc_object_unlock(obj);
2965
2966         LASSERT(ergo(!discard, list_empty(&discard_list)));
2967         if (!list_empty(&discard_list)) {
2968                 struct osc_extent *tmp;
2969                 int rc;
2970
2971                 osc_list_maint(osc_cli(obj), obj);
2972                 list_for_each_entry_safe(ext, tmp, &discard_list, oe_link) {
2973                         list_del_init(&ext->oe_link);
2974                         EASSERT(ext->oe_state == OES_LOCKING, ext);
2975
2976                         /* Discard caching pages. We don't actually write this
2977                          * extent out but we complete it as if we did. */
2978                         rc = osc_extent_make_ready(env, ext);
2979                         if (unlikely(rc < 0)) {
2980                                 OSC_EXTENT_DUMP(D_ERROR, ext,
2981                                                 "make_ready returned %d\n", rc);
2982                                 if (result >= 0)
2983                                         result = rc;
2984                         }
2985
2986                         /* finish the extent as if the pages were sent */
2987                         osc_extent_finish(env, ext, 0, 0);
2988                 }
2989         }
2990
2991         if (unplug)
2992                 osc_io_unplug(env, osc_cli(obj), obj, PDL_POLICY_ROUND);
2993
2994         if (hp || discard) {
2995                 int rc;
2996                 rc = osc_cache_wait_range(env, obj, start, end);
2997                 if (result >= 0 && rc < 0)
2998                         result = rc;
2999         }
3000
3001         OSC_IO_DEBUG(obj, "pageout [%lu, %lu], %d.\n", start, end, result);
3002         RETURN(result);
3003 }
3004
3005 /**
3006  * Returns a list of pages by a given [start, end] of \a obj.
3007  *
3008  * \param resched If not NULL, then we give up before hogging CPU for too
3009  * long and set *resched = 1, in that case caller should implement a retry
3010  * logic.
3011  *
3012  * Gang tree lookup (radix_tree_gang_lookup()) optimization is absolutely
3013  * crucial in the face of [offset, EOF] locks.
3014  *
3015  * Return at least one page in @queue unless there is no covered page.
3016  */
3017 int osc_page_gang_lookup(const struct lu_env *env, struct cl_io *io,
3018                         struct osc_object *osc, pgoff_t start, pgoff_t end,
3019                         osc_page_gang_cbt cb, void *cbdata)
3020 {
3021         struct osc_page *ops;
3022         void            **pvec;
3023         pgoff_t         idx;
3024         unsigned int    nr;
3025         unsigned int    i;
3026         unsigned int    j;
3027         int             res = CLP_GANG_OKAY;
3028         bool            tree_lock = true;
3029         ENTRY;
3030
3031         idx = start;
3032         pvec = osc_env_info(env)->oti_pvec;
3033         spin_lock(&osc->oo_tree_lock);
3034         while ((nr = radix_tree_gang_lookup(&osc->oo_tree, pvec,
3035                                             idx, OTI_PVEC_SIZE)) > 0) {
3036                 struct cl_page *page;
3037                 bool end_of_region = false;
3038
3039                 for (i = 0, j = 0; i < nr; ++i) {
3040                         ops = pvec[i];
3041                         pvec[i] = NULL;
3042
3043                         idx = osc_index(ops);
3044                         if (idx > end) {
3045                                 end_of_region = true;
3046                                 break;
3047                         }
3048
3049                         page = ops->ops_cl.cpl_page;
3050                         LASSERT(page->cp_type == CPT_CACHEABLE);
3051                         if (page->cp_state == CPS_FREEING)
3052                                 continue;
3053
3054                         cl_page_get(page);
3055                         lu_ref_add_atomic(&page->cp_reference,
3056                                           "gang_lookup", current);
3057                         pvec[j++] = ops;
3058                 }
3059                 ++idx;
3060
3061                 /*
3062                  * Here a delicate locking dance is performed. Current thread
3063                  * holds a reference to a page, but has to own it before it
3064                  * can be placed into queue. Owning implies waiting, so
3065                  * radix-tree lock is to be released. After a wait one has to
3066                  * check that pages weren't truncated (cl_page_own() returns
3067                  * error in the latter case).
3068                  */
3069                 spin_unlock(&osc->oo_tree_lock);
3070                 tree_lock = false;
3071
3072                 for (i = 0; i < j; ++i) {
3073                         ops = pvec[i];
3074                         if (res == CLP_GANG_OKAY)
3075                                 res = (*cb)(env, io, ops, cbdata);
3076
3077                         page = ops->ops_cl.cpl_page;
3078                         lu_ref_del(&page->cp_reference, "gang_lookup", current);
3079                         cl_page_put(env, page);
3080                 }
3081                 if (nr < OTI_PVEC_SIZE || end_of_region)
3082                         break;
3083
3084                 if (res == CLP_GANG_OKAY && need_resched())
3085                         res = CLP_GANG_RESCHED;
3086                 if (res != CLP_GANG_OKAY)
3087                         break;
3088
3089                 spin_lock(&osc->oo_tree_lock);
3090                 tree_lock = true;
3091         }
3092         if (tree_lock)
3093                 spin_unlock(&osc->oo_tree_lock);
3094         RETURN(res);
3095 }
3096
3097 /**
3098  * Check if page @page is covered by an extra lock or discard it.
3099  */
3100 static int check_and_discard_cb(const struct lu_env *env, struct cl_io *io,
3101                                 struct osc_page *ops, void *cbdata)
3102 {
3103         struct osc_thread_info *info = osc_env_info(env);
3104         struct osc_object *osc = cbdata;
3105         pgoff_t index;
3106
3107         index = osc_index(ops);
3108         if (index >= info->oti_fn_index) {
3109                 struct ldlm_lock *tmp;
3110                 struct cl_page *page = ops->ops_cl.cpl_page;
3111
3112                 /* refresh non-overlapped index */
3113                 tmp = dlmlock_at_pgoff(env, osc, index, 0, 0);
3114                 if (tmp != NULL) {
3115                         __u64 end = tmp->l_policy_data.l_extent.end;
3116                         /* Cache the first-non-overlapped index so as to skip
3117                          * all pages within [index, oti_fn_index). This is safe
3118                          * because if tmp lock is canceled, it will discard
3119                          * these pages. */
3120                         info->oti_fn_index = cl_index(osc2cl(osc), end + 1);
3121                         if (end == OBD_OBJECT_EOF)
3122                                 info->oti_fn_index = CL_PAGE_EOF;
3123                         LDLM_LOCK_PUT(tmp);
3124                 } else if (cl_page_own(env, io, page) == 0) {
3125                         /* discard the page */
3126                         cl_page_discard(env, io, page);
3127                         cl_page_disown(env, io, page);
3128                 } else {
3129                         LASSERT(page->cp_state == CPS_FREEING);
3130                 }
3131         }
3132
3133         info->oti_next_index = index + 1;
3134         return CLP_GANG_OKAY;
3135 }
3136
3137 static int discard_cb(const struct lu_env *env, struct cl_io *io,
3138                       struct osc_page *ops, void *cbdata)
3139 {
3140         struct osc_thread_info *info = osc_env_info(env);
3141         struct cl_page *page = ops->ops_cl.cpl_page;
3142
3143         /* page is top page. */
3144         info->oti_next_index = osc_index(ops) + 1;
3145         if (cl_page_own(env, io, page) == 0) {
3146                 KLASSERT(ergo(page->cp_type == CPT_CACHEABLE,
3147                               !PageDirty(cl_page_vmpage(page))));
3148
3149                 /* discard the page */
3150                 cl_page_discard(env, io, page);
3151                 cl_page_disown(env, io, page);
3152         } else {
3153                 LASSERT(page->cp_state == CPS_FREEING);
3154         }
3155
3156         return CLP_GANG_OKAY;
3157 }
3158
3159 /**
3160  * Discard pages protected by the given lock. This function traverses radix
3161  * tree to find all covering pages and discard them. If a page is being covered
3162  * by other locks, it should remain in cache.
3163  *
3164  * If error happens on any step, the process continues anyway (the reasoning
3165  * behind this being that lock cancellation cannot be delayed indefinitely).
3166  */
3167 int osc_lock_discard_pages(const struct lu_env *env, struct osc_object *osc,
3168                            pgoff_t start, pgoff_t end, enum cl_lock_mode mode)
3169 {
3170         struct osc_thread_info *info = osc_env_info(env);
3171         struct cl_io *io = &info->oti_io;
3172         osc_page_gang_cbt cb;
3173         int res;
3174         int result;
3175
3176         ENTRY;
3177
3178         io->ci_obj = cl_object_top(osc2cl(osc));
3179         io->ci_ignore_layout = 1;
3180         result = cl_io_init(env, io, CIT_MISC, io->ci_obj);
3181         if (result != 0)
3182                 GOTO(out, result);
3183
3184         cb = mode == CLM_READ ? check_and_discard_cb : discard_cb;
3185         info->oti_fn_index = info->oti_next_index = start;
3186         do {
3187                 res = osc_page_gang_lookup(env, io, osc,
3188                                            info->oti_next_index, end,
3189                                            cb, (void *)osc);
3190                 if (info->oti_next_index > end)
3191                         break;
3192
3193                 if (res == CLP_GANG_RESCHED)
3194                         cond_resched();
3195         } while (res != CLP_GANG_OKAY);
3196 out:
3197         cl_io_fini(env, io);
3198         RETURN(result);
3199 }
3200
3201
3202 /** @} osc */