Whamcloud - gitweb
594b13a578a1eaf822ca725afadf05676d37c15d
[fs/lustre-release.git] / lustre / osc / osc_page.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) 2011, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * Implementation of cl_page for OSC layer.
37  *
38  *   Author: Nikita Danilov <nikita.danilov@sun.com>
39  *   Author: Jinshan Xiong <jinshan.xiong@intel.com>
40  */
41
42 #define DEBUG_SUBSYSTEM S_OSC
43
44 #include "osc_cl_internal.h"
45
46 static void osc_lru_del(struct client_obd *cli, struct osc_page *opg);
47 static void osc_lru_use(struct client_obd *cli, struct osc_page *opg);
48 static int osc_lru_reserve(const struct lu_env *env, struct osc_object *obj,
49                            struct osc_page *opg);
50
51 /** \addtogroup osc
52  *  @{
53  */
54
55 /*
56  * Comment out osc_page_protected because it may sleep inside the
57  * the client_obd_list_lock.
58  * client_obd_list_lock -> osc_ap_completion -> osc_completion ->
59  *   -> osc_page_protected -> osc_page_is_dlocked -> osc_match_base
60  *   -> ldlm_lock_match -> sptlrpc_import_check_ctx -> sleep.
61  */
62 #if 0
63 static int osc_page_is_dlocked(const struct lu_env *env,
64                                const struct osc_page *opg,
65                                enum cl_lock_mode mode, int pending, int unref)
66 {
67         struct cl_page         *page;
68         struct osc_object      *obj;
69         struct osc_thread_info *info;
70         struct ldlm_res_id     *resname;
71         struct lustre_handle   *lockh;
72         ldlm_policy_data_t     *policy;
73         ldlm_mode_t             dlmmode;
74         __u64                   flags;
75
76         might_sleep();
77
78         info = osc_env_info(env);
79         resname = &info->oti_resname;
80         policy = &info->oti_policy;
81         lockh = &info->oti_handle;
82         page = opg->ops_cl.cpl_page;
83         obj = cl2osc(opg->ops_cl.cpl_obj);
84
85         flags = LDLM_FL_TEST_LOCK | LDLM_FL_BLOCK_GRANTED;
86         if (pending)
87                 flags |= LDLM_FL_CBPENDING;
88
89         dlmmode = osc_cl_lock2ldlm(mode) | LCK_PW;
90         osc_lock_build_res(env, obj, resname);
91         osc_index2policy(policy, page->cp_obj, osc_index(opg), osc_index(opg));
92         return osc_match_base(osc_export(obj), resname, LDLM_EXTENT, policy,
93                               dlmmode, &flags, NULL, lockh, unref);
94 }
95
96 /**
97  * Checks an invariant that a page in the cache is covered by a lock, as
98  * needed.
99  */
100 static int osc_page_protected(const struct lu_env *env,
101                               const struct osc_page *opg,
102                               enum cl_lock_mode mode, int unref)
103 {
104         struct cl_object_header *hdr;
105         struct cl_lock          *scan;
106         struct cl_page          *page;
107         struct cl_lock_descr    *descr;
108         int result;
109
110         LINVRNT(!opg->ops_temp);
111
112         page = opg->ops_cl.cpl_page;
113         if (page->cp_owner != NULL &&
114             cl_io_top(page->cp_owner)->ci_lockreq == CILR_NEVER)
115                 /*
116                  * If IO is done without locks (liblustre, or lloop), lock is
117                  * not required.
118                  */
119                 result = 1;
120         else
121                 /* otherwise check for a DLM lock */
122         result = osc_page_is_dlocked(env, opg, mode, 1, unref);
123         if (result == 0) {
124                 /* maybe this page is a part of a lockless io? */
125                 hdr = cl_object_header(opg->ops_cl.cpl_obj);
126                 descr = &osc_env_info(env)->oti_descr;
127                 descr->cld_mode = mode;
128                 descr->cld_start = osc_index(opg);
129                 descr->cld_end   = osc_index(opg);
130                 spin_lock(&hdr->coh_lock_guard);
131                 cfs_list_for_each_entry(scan, &hdr->coh_locks, cll_linkage) {
132                         /*
133                          * Lock-less sub-lock has to be either in HELD state
134                          * (when io is actively going on), or in CACHED state,
135                          * when top-lock is being unlocked:
136                          * cl_io_unlock()->cl_unuse()->...->lov_lock_unuse().
137                          */
138                         if ((scan->cll_state == CLS_HELD ||
139                              scan->cll_state == CLS_CACHED) &&
140                             cl_lock_ext_match(&scan->cll_descr, descr)) {
141                                 struct osc_lock *olck;
142
143                                 olck = osc_lock_at(scan);
144                                 result = osc_lock_is_lockless(olck);
145                                 break;
146                         }
147                 }
148                 spin_unlock(&hdr->coh_lock_guard);
149         }
150         return result;
151 }
152 #else
153 static int osc_page_protected(const struct lu_env *env,
154                               const struct osc_page *opg,
155                               enum cl_lock_mode mode, int unref)
156 {
157         return 1;
158 }
159 #endif
160
161 /*****************************************************************************
162  *
163  * Page operations.
164  *
165  */
166 static void osc_page_transfer_get(struct osc_page *opg, const char *label)
167 {
168         struct cl_page *page = opg->ops_cl.cpl_page;
169
170         LASSERT(!opg->ops_transfer_pinned);
171         cl_page_get(page);
172         lu_ref_add_atomic(&page->cp_reference, label, page);
173         opg->ops_transfer_pinned = 1;
174 }
175
176 static void osc_page_transfer_put(const struct lu_env *env,
177                                   struct osc_page *opg)
178 {
179         struct cl_page *page = opg->ops_cl.cpl_page;
180
181         if (opg->ops_transfer_pinned) {
182                 opg->ops_transfer_pinned = 0;
183                 lu_ref_del(&page->cp_reference, "transfer", page);
184                 cl_page_put(env, page);
185         }
186 }
187
188 /**
189  * This is called once for every page when it is submitted for a transfer
190  * either opportunistic (osc_page_cache_add()), or immediate
191  * (osc_page_submit()).
192  */
193 static void osc_page_transfer_add(const struct lu_env *env,
194                                   struct osc_page *opg, enum cl_req_type crt)
195 {
196         struct osc_object *obj = cl2osc(opg->ops_cl.cpl_obj);
197
198         /* ops_lru and ops_inflight share the same field, so take it from LRU
199          * first and then use it as inflight. */
200         osc_lru_use(osc_cli(obj), opg);
201
202         spin_lock(&obj->oo_seatbelt);
203         cfs_list_add(&opg->ops_inflight, &obj->oo_inflight[crt]);
204         opg->ops_submitter = current;
205         spin_unlock(&obj->oo_seatbelt);
206 }
207
208 int osc_page_cache_add(const struct lu_env *env,
209                         const struct cl_page_slice *slice, struct cl_io *io)
210 {
211         struct osc_page *opg = cl2osc_page(slice);
212         int result;
213         ENTRY;
214
215         LINVRNT(osc_page_protected(env, opg, CLM_WRITE, 0));
216
217         osc_page_transfer_get(opg, "transfer\0cache");
218         result = osc_queue_async_io(env, io, opg);
219         if (result != 0)
220                 osc_page_transfer_put(env, opg);
221         else
222                 osc_page_transfer_add(env, opg, CRT_WRITE);
223
224         RETURN(result);
225 }
226
227 void osc_index2policy(ldlm_policy_data_t *policy, const struct cl_object *obj,
228                       pgoff_t start, pgoff_t end)
229 {
230         memset(policy, 0, sizeof *policy);
231         policy->l_extent.start = cl_offset(obj, start);
232         policy->l_extent.end   = cl_offset(obj, end + 1) - 1;
233 }
234
235 static int osc_page_is_under_lock(const struct lu_env *env,
236                                   const struct cl_page_slice *slice,
237                                   struct cl_io *unused, pgoff_t *max_index)
238 {
239         struct osc_page *opg = cl2osc_page(slice);
240         struct cl_lock *lock;
241         int             result = -ENODATA;
242         ENTRY;
243
244         *max_index = 0;
245         lock = cl_lock_at_pgoff(env, slice->cpl_obj, osc_index(opg),
246                                 NULL, 1, 0);
247         if (lock != NULL) {
248                 *max_index = lock->cll_descr.cld_end;
249                 cl_lock_put(env, lock);
250                 result = 0;
251         }
252         RETURN(result);
253 }
254
255 static const char *osc_list(cfs_list_t *head)
256 {
257         return cfs_list_empty(head) ? "-" : "+";
258 }
259
260 static inline cfs_time_t osc_submit_duration(struct osc_page *opg)
261 {
262         if (opg->ops_submit_time == 0)
263                 return 0;
264
265         return (cfs_time_current() - opg->ops_submit_time);
266 }
267
268 static int osc_page_print(const struct lu_env *env,
269                           const struct cl_page_slice *slice,
270                           void *cookie, lu_printer_t printer)
271 {
272         struct osc_page       *opg = cl2osc_page(slice);
273         struct osc_async_page *oap = &opg->ops_oap;
274         struct osc_object     *obj = cl2osc(slice->cpl_obj);
275         struct client_obd     *cli = &osc_export(obj)->exp_obd->u.cli;
276
277         return (*printer)(env, cookie, LUSTRE_OSC_NAME"-page@%p %lu: "
278                           "1< %#x %d %u %s %s > "
279                           "2< "LPU64" %u %u %#x %#x | %p %p %p > "
280                           "3< %s %p %d %lu %d > "
281                           "4< %d %d %d %lu %s | %s %s %s %s > "
282                           "5< %s %s %s %s | %d %s | %d %s %s>\n",
283                           opg, osc_index(opg),
284                           /* 1 */
285                           oap->oap_magic, oap->oap_cmd,
286                           oap->oap_interrupted,
287                           osc_list(&oap->oap_pending_item),
288                           osc_list(&oap->oap_rpc_item),
289                           /* 2 */
290                           oap->oap_obj_off, oap->oap_page_off, oap->oap_count,
291                           oap->oap_async_flags, oap->oap_brw_flags,
292                           oap->oap_request, oap->oap_cli, obj,
293                           /* 3 */
294                           osc_list(&opg->ops_inflight),
295                           opg->ops_submitter, opg->ops_transfer_pinned,
296                           osc_submit_duration(opg), opg->ops_srvlock,
297                           /* 4 */
298                           cli->cl_r_in_flight, cli->cl_w_in_flight,
299                           cli->cl_max_rpcs_in_flight,
300                           cli->cl_avail_grant,
301                           osc_list(&cli->cl_cache_waiters),
302                           osc_list(&cli->cl_loi_ready_list),
303                           osc_list(&cli->cl_loi_hp_ready_list),
304                           osc_list(&cli->cl_loi_write_list),
305                           osc_list(&cli->cl_loi_read_list),
306                           /* 5 */
307                           osc_list(&obj->oo_ready_item),
308                           osc_list(&obj->oo_hp_ready_item),
309                           osc_list(&obj->oo_write_item),
310                           osc_list(&obj->oo_read_item),
311                           atomic_read(&obj->oo_nr_reads),
312                           osc_list(&obj->oo_reading_exts),
313                           atomic_read(&obj->oo_nr_writes),
314                           osc_list(&obj->oo_hp_exts),
315                           osc_list(&obj->oo_urgent_exts));
316 }
317
318 static void osc_page_delete(const struct lu_env *env,
319                             const struct cl_page_slice *slice)
320 {
321         struct osc_page   *opg = cl2osc_page(slice);
322         struct osc_object *obj = cl2osc(opg->ops_cl.cpl_obj);
323         int rc;
324
325         LINVRNT(opg->ops_temp || osc_page_protected(env, opg, CLM_READ, 1));
326
327         ENTRY;
328         CDEBUG(D_TRACE, "%p\n", opg);
329         osc_page_transfer_put(env, opg);
330         rc = osc_teardown_async_page(env, obj, opg);
331         if (rc) {
332                 CL_PAGE_DEBUG(D_ERROR, env, slice->cpl_page,
333                               "Trying to teardown failed: %d\n", rc);
334                 LASSERT(0);
335         }
336
337         spin_lock(&obj->oo_seatbelt);
338         if (opg->ops_submitter != NULL) {
339                 LASSERT(!cfs_list_empty(&opg->ops_inflight));
340                 cfs_list_del_init(&opg->ops_inflight);
341                 opg->ops_submitter = NULL;
342         }
343         spin_unlock(&obj->oo_seatbelt);
344
345         osc_lru_del(osc_cli(obj), opg);
346
347         if (slice->cpl_page->cp_type == CPT_CACHEABLE) {
348                 void *value;
349
350                 spin_lock(&obj->oo_tree_lock);
351                 value = radix_tree_delete(&obj->oo_tree, osc_index(opg));
352                 if (value != NULL)
353                         --obj->oo_npages;
354                 spin_unlock(&obj->oo_tree_lock);
355
356                 LASSERT(ergo(value != NULL, value == opg));
357         }
358
359         EXIT;
360 }
361
362 void osc_page_clip(const struct lu_env *env, const struct cl_page_slice *slice,
363                    int from, int to)
364 {
365         struct osc_page       *opg = cl2osc_page(slice);
366         struct osc_async_page *oap = &opg->ops_oap;
367
368         LINVRNT(osc_page_protected(env, opg, CLM_READ, 0));
369
370         opg->ops_from = from;
371         opg->ops_to   = to;
372         spin_lock(&oap->oap_lock);
373         oap->oap_async_flags |= ASYNC_COUNT_STABLE;
374         spin_unlock(&oap->oap_lock);
375 }
376
377 static int osc_page_cancel(const struct lu_env *env,
378                            const struct cl_page_slice *slice)
379 {
380         struct osc_page *opg = cl2osc_page(slice);
381         int rc = 0;
382
383         LINVRNT(osc_page_protected(env, opg, CLM_READ, 0));
384
385         /* Check if the transferring against this page
386          * is completed, or not even queued. */
387         if (opg->ops_transfer_pinned)
388                 /* FIXME: may not be interrupted.. */
389                 rc = osc_cancel_async_page(env, opg);
390         LASSERT(ergo(rc == 0, opg->ops_transfer_pinned == 0));
391         return rc;
392 }
393
394 static int osc_page_flush(const struct lu_env *env,
395                           const struct cl_page_slice *slice,
396                           struct cl_io *io)
397 {
398         struct osc_page *opg = cl2osc_page(slice);
399         int rc = 0;
400         ENTRY;
401         rc = osc_flush_async_page(env, io, opg);
402         RETURN(rc);
403 }
404
405 static const struct cl_page_operations osc_page_ops = {
406         .cpo_print         = osc_page_print,
407         .cpo_delete        = osc_page_delete,
408         .cpo_is_under_lock = osc_page_is_under_lock,
409         .cpo_clip           = osc_page_clip,
410         .cpo_cancel         = osc_page_cancel,
411         .cpo_flush          = osc_page_flush
412 };
413
414 int osc_page_init(const struct lu_env *env, struct cl_object *obj,
415                   struct cl_page *page, pgoff_t index)
416 {
417         struct osc_object *osc = cl2osc(obj);
418         struct osc_page   *opg = cl_object_page_slice(obj, page);
419         int result;
420
421         opg->ops_from = 0;
422         opg->ops_to   = PAGE_CACHE_SIZE;
423
424         result = osc_prep_async_page(osc, opg, page->cp_vmpage,
425                                      cl_offset(obj, index));
426         if (result == 0) {
427                 struct osc_io *oio = osc_env_io(env);
428                 opg->ops_srvlock = osc_io_srvlock(oio);
429                 cl_page_slice_add(page, &opg->ops_cl, obj, index,
430                                   &osc_page_ops);
431         }
432         /*
433          * Cannot assert osc_page_protected() here as read-ahead
434          * creates temporary pages outside of a lock.
435          */
436 #ifdef CONFIG_LUSTRE_DEBUG_EXPENSIVE_CHECK
437         opg->ops_temp = !osc_page_protected(env, opg, CLM_READ, 1);
438 #endif
439         /* ops_inflight and ops_lru are the same field, but it doesn't
440          * hurt to initialize it twice :-) */
441         CFS_INIT_LIST_HEAD(&opg->ops_inflight);
442         CFS_INIT_LIST_HEAD(&opg->ops_lru);
443
444         /* reserve an LRU space for this page */
445         if (page->cp_type == CPT_CACHEABLE && result == 0) {
446                 result = osc_lru_reserve(env, osc, opg);
447                 if (result == 0) {
448                         spin_lock(&osc->oo_tree_lock);
449                         result = radix_tree_insert(&osc->oo_tree, index, opg);
450                         if (result == 0)
451                                 ++osc->oo_npages;
452                         spin_unlock(&osc->oo_tree_lock);
453                         LASSERT(result == 0);
454                 }
455         }
456
457         return result;
458 }
459
460 int osc_over_unstable_soft_limit(struct client_obd *cli)
461 {
462         long obd_upages, obd_dpages, osc_upages;
463
464         /* Can't check cli->cl_unstable_count, therefore, no soft limit */
465         if (cli == NULL)
466                 return 0;
467
468         obd_upages = atomic_read(&obd_unstable_pages);
469         obd_dpages = atomic_read(&obd_dirty_pages);
470
471         osc_upages = atomic_read(&cli->cl_unstable_count);
472
473         /* obd_max_dirty_pages is the max number of (dirty + unstable)
474          * pages allowed at any given time. To simulate an unstable page
475          * only limit, we subtract the current number of dirty pages
476          * from this max. This difference is roughly the amount of pages
477          * currently available for unstable pages. Thus, the soft limit
478          * is half of that difference. Check osc_upages to ensure we don't
479          * set SOFT_SYNC for OSCs without any outstanding unstable pages. */
480         return osc_upages != 0 &&
481                obd_upages >= (obd_max_dirty_pages - obd_dpages) / 2;
482 }
483
484 /**
485  * Helper function called by osc_io_submit() for every page in an immediate
486  * transfer (i.e., transferred synchronously).
487  */
488 void osc_page_submit(const struct lu_env *env, struct osc_page *opg,
489                      enum cl_req_type crt, int brw_flags)
490 {
491         struct osc_async_page *oap = &opg->ops_oap;
492         struct osc_object     *obj = oap->oap_obj;
493
494         LINVRNT(osc_page_protected(env, opg,
495                                    crt == CRT_WRITE ? CLM_WRITE : CLM_READ, 1));
496
497         LASSERTF(oap->oap_magic == OAP_MAGIC, "Bad oap magic: oap %p, "
498                  "magic 0x%x\n", oap, oap->oap_magic);
499         LASSERT(oap->oap_async_flags & ASYNC_READY);
500         LASSERT(oap->oap_async_flags & ASYNC_COUNT_STABLE);
501
502         oap->oap_cmd       = crt == CRT_WRITE ? OBD_BRW_WRITE : OBD_BRW_READ;
503         oap->oap_page_off  = opg->ops_from;
504         oap->oap_count     = opg->ops_to - opg->ops_from;
505         oap->oap_brw_flags = OBD_BRW_SYNC | brw_flags;
506
507         if (osc_over_unstable_soft_limit(oap->oap_cli))
508                 oap->oap_brw_flags |= OBD_BRW_SOFT_SYNC;
509
510         if (!client_is_remote(osc_export(obj)) &&
511                         cfs_capable(CFS_CAP_SYS_RESOURCE)) {
512                 oap->oap_brw_flags |= OBD_BRW_NOQUOTA;
513                 oap->oap_cmd |= OBD_BRW_NOQUOTA;
514         }
515
516         opg->ops_submit_time = cfs_time_current();
517         osc_page_transfer_get(opg, "transfer\0imm");
518         osc_page_transfer_add(env, opg, crt);
519 }
520
521 /* --------------- LRU page management ------------------ */
522
523 /* OSC is a natural place to manage LRU pages as applications are specialized
524  * to write OSC by OSC. Ideally, if one OSC is used more frequently it should
525  * occupy more LRU slots. On the other hand, we should avoid using up all LRU
526  * slots (client_obd::cl_lru_left) otherwise process has to be put into sleep
527  * for free LRU slots - this will be very bad so the algorithm requires each
528  * OSC to free slots voluntarily to maintain a reasonable number of free slots
529  * at any time.
530  */
531
532 static CFS_DECL_WAITQ(osc_lru_waitq);
533 /* LRU pages are freed in batch mode. OSC should at least free this
534  * number of pages to avoid running out of LRU budget, and.. */
535 static const int lru_shrink_min = 2 << (20 - PAGE_CACHE_SHIFT); /* 2M */
536 /* free this number at most otherwise it will take too long time to finsih. */
537 static const int lru_shrink_max = 8 << (20 - PAGE_CACHE_SHIFT); /* 8M */
538
539 /* Check if we can free LRU slots from this OSC. If there exists LRU waiters,
540  * we should free slots aggressively. In this way, slots are freed in a steady
541  * step to maintain fairness among OSCs.
542  *
543  * Return how many LRU pages should be freed. */
544 static int osc_cache_too_much(struct client_obd *cli)
545 {
546         struct cl_client_cache *cache = cli->cl_cache;
547         int pages = atomic_read(&cli->cl_lru_in_list);
548         unsigned long budget;
549
550         budget = cache->ccc_lru_max / atomic_read(&cache->ccc_users);
551
552         /* if it's going to run out LRU slots, we should free some, but not
553          * too much to maintain faireness among OSCs. */
554         if (atomic_read(cli->cl_lru_left) < cache->ccc_lru_max >> 4) {
555                 if (pages >= budget)
556                         return lru_shrink_max;
557                 else if (pages >= budget / 2)
558                         return lru_shrink_min;
559         } else if (pages >= budget * 2)
560                 return lru_shrink_min;
561         return 0;
562 }
563
564 int lru_queue_work(const struct lu_env *env, void *data)
565 {
566         struct client_obd *cli = data;
567
568         CDEBUG(D_CACHE, "Run LRU work for client obd %p.\n", cli);
569
570         if (osc_cache_too_much(cli))
571                 osc_lru_shrink(env, cli, lru_shrink_max, true);
572
573         RETURN(0);
574 }
575
576 void osc_lru_add_batch(struct client_obd *cli, cfs_list_t *plist)
577 {
578         CFS_LIST_HEAD(lru);
579         struct osc_async_page *oap;
580         int npages = 0;
581
582         cfs_list_for_each_entry(oap, plist, oap_pending_item) {
583                 struct osc_page *opg = oap2osc_page(oap);
584
585                 if (!opg->ops_in_lru)
586                         continue;
587
588                 ++npages;
589                 LASSERT(cfs_list_empty(&opg->ops_lru));
590                 cfs_list_add(&opg->ops_lru, &lru);
591         }
592
593         if (npages > 0) {
594                 client_obd_list_lock(&cli->cl_lru_list_lock);
595                 cfs_list_splice_tail(&lru, &cli->cl_lru_list);
596                 atomic_sub(npages, &cli->cl_lru_busy);
597                 atomic_add(npages, &cli->cl_lru_in_list);
598                 client_obd_list_unlock(&cli->cl_lru_list_lock);
599
600                 /* XXX: May set force to be true for better performance */
601                 if (osc_cache_too_much(cli))
602                         (void)ptlrpcd_queue_work(cli->cl_lru_work);
603         }
604 }
605
606 static void __osc_lru_del(struct client_obd *cli, struct osc_page *opg)
607 {
608         LASSERT(atomic_read(&cli->cl_lru_in_list) > 0);
609         cfs_list_del_init(&opg->ops_lru);
610         atomic_dec(&cli->cl_lru_in_list);
611 }
612
613 /**
614  * Page is being destroyed. The page may be not in LRU list, if the transfer
615  * has never finished(error occurred).
616  */
617 static void osc_lru_del(struct client_obd *cli, struct osc_page *opg)
618 {
619         if (opg->ops_in_lru) {
620                 client_obd_list_lock(&cli->cl_lru_list_lock);
621                 if (!cfs_list_empty(&opg->ops_lru)) {
622                         __osc_lru_del(cli, opg);
623                 } else {
624                         LASSERT(atomic_read(&cli->cl_lru_busy) > 0);
625                         atomic_dec(&cli->cl_lru_busy);
626                 }
627                 client_obd_list_unlock(&cli->cl_lru_list_lock);
628
629                 atomic_inc(cli->cl_lru_left);
630                 /* this is a great place to release more LRU pages if
631                  * this osc occupies too many LRU pages and kernel is
632                  * stealing one of them. */
633                 if (!memory_pressure_get())
634                         (void)ptlrpcd_queue_work(cli->cl_lru_work);
635                 wake_up(&osc_lru_waitq);
636         } else {
637                 LASSERT(cfs_list_empty(&opg->ops_lru));
638         }
639 }
640
641 /**
642  * Delete page from LRUlist for redirty.
643  */
644 static void osc_lru_use(struct client_obd *cli, struct osc_page *opg)
645 {
646         /* If page is being transfered for the first time,
647          * ops_lru should be empty */
648         if (opg->ops_in_lru && !cfs_list_empty(&opg->ops_lru)) {
649                 client_obd_list_lock(&cli->cl_lru_list_lock);
650                 __osc_lru_del(cli, opg);
651                 client_obd_list_unlock(&cli->cl_lru_list_lock);
652                 atomic_inc(&cli->cl_lru_busy);
653         }
654 }
655
656 static void discard_pagevec(const struct lu_env *env, struct cl_io *io,
657                                 struct cl_page **pvec, int max_index)
658 {
659         int i;
660
661         for (i = 0; i < max_index; i++) {
662                 struct cl_page *page = pvec[i];
663
664                 LASSERT(cl_page_is_owned(page, io));
665                 cl_page_discard(env, io, page);
666                 cl_page_disown(env, io, page);
667                 cl_page_put(env, page);
668
669                 pvec[i] = NULL;
670         }
671 }
672
673 /**
674  * Drop @target of pages from LRU at most.
675  */
676 int osc_lru_shrink(const struct lu_env *env, struct client_obd *cli,
677                    int target, bool force)
678 {
679         struct cl_io *io;
680         struct cl_object *clobj = NULL;
681         struct cl_page **pvec;
682         struct osc_page *opg;
683         int maxscan = 0;
684         int count = 0;
685         int index = 0;
686         int rc = 0;
687         ENTRY;
688
689         LASSERT(atomic_read(&cli->cl_lru_in_list) >= 0);
690         if (atomic_read(&cli->cl_lru_in_list) == 0 || target <= 0)
691                 RETURN(0);
692
693         if (!force) {
694                 if (atomic_read(&cli->cl_lru_shrinkers) > 0)
695                         RETURN(-EBUSY);
696
697                 if (atomic_inc_return(&cli->cl_lru_shrinkers) > 1) {
698                         atomic_dec(&cli->cl_lru_shrinkers);
699                         RETURN(-EBUSY);
700                 }
701         } else {
702                 atomic_inc(&cli->cl_lru_shrinkers);
703         }
704
705         pvec = (struct cl_page **)osc_env_info(env)->oti_pvec;
706         io = &osc_env_info(env)->oti_io;
707
708         client_obd_list_lock(&cli->cl_lru_list_lock);
709         maxscan = min(target << 1, atomic_read(&cli->cl_lru_in_list));
710         while (!cfs_list_empty(&cli->cl_lru_list)) {
711                 struct cl_page *page;
712                 bool will_free = false;
713
714                 if (--maxscan < 0)
715                         break;
716
717                 opg = cfs_list_entry(cli->cl_lru_list.next, struct osc_page,
718                                      ops_lru);
719                 page = opg->ops_cl.cpl_page;
720                 if (cl_page_in_use_noref(page)) {
721                         cfs_list_move_tail(&opg->ops_lru, &cli->cl_lru_list);
722                         continue;
723                 }
724
725                 LASSERT(page->cp_obj != NULL);
726                 if (clobj != page->cp_obj) {
727                         struct cl_object *tmp = page->cp_obj;
728
729                         cl_object_get(tmp);
730                         client_obd_list_unlock(&cli->cl_lru_list_lock);
731
732                         if (clobj != NULL) {
733                                 discard_pagevec(env, io, pvec, index);
734                                 index = 0;
735
736                                 cl_io_fini(env, io);
737                                 cl_object_put(env, clobj);
738                                 clobj = NULL;
739                         }
740
741                         clobj = tmp;
742                         io->ci_obj = clobj;
743                         io->ci_ignore_layout = 1;
744                         rc = cl_io_init(env, io, CIT_MISC, clobj);
745
746                         client_obd_list_lock(&cli->cl_lru_list_lock);
747
748                         if (rc != 0)
749                                 break;
750
751                         ++maxscan;
752                         continue;
753                 }
754
755                 if (cl_page_own_try(env, io, page) == 0) {
756                         if (!cl_page_in_use_noref(page)) {
757                                 /* remove it from lru list earlier to avoid
758                                  * lock contention */
759                                 __osc_lru_del(cli, opg);
760                                 opg->ops_in_lru = 0; /* will be discarded */
761
762                                 cl_page_get(page);
763                                 will_free = true;
764                         } else {
765                                 cl_page_disown(env, io, page);
766                         }
767                 }
768
769                 if (!will_free) {
770                         cfs_list_move_tail(&opg->ops_lru, &cli->cl_lru_list);
771                         continue;
772                 }
773
774                 /* Don't discard and free the page with cl_lru_list held */
775                 pvec[index++] = page;
776                 if (unlikely(index == OTI_PVEC_SIZE)) {
777                         client_obd_list_unlock(&cli->cl_lru_list_lock);
778                         discard_pagevec(env, io, pvec, index);
779                         index = 0;
780
781                         client_obd_list_lock(&cli->cl_lru_list_lock);
782                 }
783
784                 if (++count >= target)
785                         break;
786         }
787         client_obd_list_unlock(&cli->cl_lru_list_lock);
788
789         if (clobj != NULL) {
790                 discard_pagevec(env, io, pvec, index);
791
792                 cl_io_fini(env, io);
793                 cl_object_put(env, clobj);
794         }
795
796         atomic_dec(&cli->cl_lru_shrinkers);
797         if (count > 0) {
798                 atomic_add(count, cli->cl_lru_left);
799                 wake_up_all(&osc_lru_waitq);
800         }
801         RETURN(count > 0 ? count : rc);
802 }
803
804 static inline int max_to_shrink(struct client_obd *cli)
805 {
806         return min(atomic_read(&cli->cl_lru_in_list) >> 1, lru_shrink_max);
807 }
808
809 int osc_lru_reclaim(struct client_obd *cli)
810 {
811         struct cl_env_nest nest;
812         struct lu_env *env;
813         struct cl_client_cache *cache = cli->cl_cache;
814         int max_scans;
815         int rc = 0;
816         ENTRY;
817
818         LASSERT(cache != NULL);
819         LASSERT(!cfs_list_empty(&cache->ccc_lru));
820
821         env = cl_env_nested_get(&nest);
822         if (IS_ERR(env))
823                 RETURN(rc);
824
825         rc = osc_lru_shrink(env, cli, osc_cache_too_much(cli), false);
826         if (rc != 0) {
827                 if (rc == -EBUSY)
828                         rc = 0;
829
830                 CDEBUG(D_CACHE, "%s: Free %d pages from own LRU: %p.\n",
831                         cli->cl_import->imp_obd->obd_name, rc, cli);
832                 GOTO(out, rc);
833         }
834
835         CDEBUG(D_CACHE, "%s: cli %p no free slots, pages: %d, busy: %d.\n",
836                 cli->cl_import->imp_obd->obd_name, cli,
837                 atomic_read(&cli->cl_lru_in_list),
838                 atomic_read(&cli->cl_lru_busy));
839
840         /* Reclaim LRU slots from other client_obd as it can't free enough
841          * from its own. This should rarely happen. */
842         spin_lock(&cache->ccc_lru_lock);
843         cache->ccc_lru_shrinkers++;
844         cfs_list_move_tail(&cli->cl_lru_osc, &cache->ccc_lru);
845
846         max_scans = atomic_read(&cache->ccc_users);
847         while (--max_scans > 0 && !cfs_list_empty(&cache->ccc_lru)) {
848                 cli = cfs_list_entry(cache->ccc_lru.next, struct client_obd,
849                                         cl_lru_osc);
850
851                 CDEBUG(D_CACHE, "%s: cli %p LRU pages: %d, busy: %d.\n",
852                         cli->cl_import->imp_obd->obd_name, cli,
853                         atomic_read(&cli->cl_lru_in_list),
854                         atomic_read(&cli->cl_lru_busy));
855
856                 cfs_list_move_tail(&cli->cl_lru_osc, &cache->ccc_lru);
857                 if (osc_cache_too_much(cli) > 0) {
858                         spin_unlock(&cache->ccc_lru_lock);
859
860                         rc = osc_lru_shrink(env, cli, osc_cache_too_much(cli),
861                                             true);
862                         spin_lock(&cache->ccc_lru_lock);
863                         if (rc != 0)
864                                 break;
865                 }
866         }
867         spin_unlock(&cache->ccc_lru_lock);
868
869 out:
870         cl_env_nested_put(&nest, env);
871         CDEBUG(D_CACHE, "%s: cli %p freed %d pages.\n",
872                 cli->cl_import->imp_obd->obd_name, cli, rc);
873         return rc;
874 }
875
876 static int osc_lru_reserve(const struct lu_env *env, struct osc_object *obj,
877                            struct osc_page *opg)
878 {
879         struct l_wait_info lwi = LWI_INTR(LWI_ON_SIGNAL_NOOP, NULL);
880         struct osc_io *oio = osc_env_io(env);
881         struct client_obd *cli = osc_cli(obj);
882         int rc = 0;
883         ENTRY;
884
885         if (cli->cl_cache == NULL) /* shall not be in LRU */
886                 RETURN(0);
887
888         if (oio->oi_lru_reserved > 0) {
889                 --oio->oi_lru_reserved;
890                 goto out;
891         }
892
893         LASSERT(atomic_read(cli->cl_lru_left) >= 0);
894         while (!atomic_add_unless(cli->cl_lru_left, -1, 0)) {
895
896                 /* run out of LRU spaces, try to drop some by itself */
897                 rc = osc_lru_reclaim(cli);
898                 if (rc < 0)
899                         break;
900                 if (rc > 0)
901                         continue;
902
903                 cond_resched();
904                 rc = l_wait_event(osc_lru_waitq,
905                                 atomic_read(cli->cl_lru_left) > 0,
906                                 &lwi);
907                 if (rc < 0)
908                         break;
909         }
910
911 out:
912         if (rc >= 0) {
913                 atomic_inc(&cli->cl_lru_busy);
914                 opg->ops_in_lru = 1;
915                 rc = 0;
916         }
917
918         RETURN(rc);
919 }
920
921 /** @} osc */