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[fs/lustre-release.git] / lustre / osc / osc_page.c
1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2  * vim:expandtab:shiftwidth=8:tabstop=8:
3  *
4  * GPL HEADER START
5  *
6  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
7  *
8  * This program is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License version 2 only,
10  * as published by the Free Software Foundation.
11  *
12  * This program is distributed in the hope that it will be useful, but
13  * WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15  * General Public License version 2 for more details (a copy is included
16  * in the LICENSE file that accompanied this code).
17  *
18  * You should have received a copy of the GNU General Public License
19  * version 2 along with this program; If not, see
20  * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
21  *
22  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
23  * CA 95054 USA or visit www.sun.com if you need additional information or
24  * have any questions.
25  *
26  * GPL HEADER END
27  */
28 /*
29  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
30  * Use is subject to license terms.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * Implementation of cl_page for OSC layer.
37  *
38  *   Author: Nikita Danilov <nikita.danilov@sun.com>
39  */
40
41 /** \addtogroup osc osc @{ */
42
43 #define DEBUG_SUBSYSTEM S_OSC
44
45 #include "osc_cl_internal.h"
46
47 static int osc_page_is_dlocked(const struct lu_env *env,
48                                const struct osc_page *opg,
49                                enum cl_lock_mode mode, int pending, int unref)
50 {
51         struct cl_page         *page;
52         struct osc_object      *obj;
53         struct osc_thread_info *info;
54         struct ldlm_res_id     *resname;
55         struct lustre_handle   *lockh;
56         ldlm_policy_data_t     *policy;
57         ldlm_mode_t             dlmmode;
58         int                     flags;
59
60         info = osc_env_info(env);
61         resname = &info->oti_resname;
62         policy = &info->oti_policy;
63         lockh = &info->oti_handle;
64         page = opg->ops_cl.cpl_page;
65         obj = cl2osc(opg->ops_cl.cpl_obj);
66
67         flags = LDLM_FL_TEST_LOCK | LDLM_FL_BLOCK_GRANTED;
68         if (pending)
69                 flags |= LDLM_FL_CBPENDING;
70
71         dlmmode = osc_cl_lock2ldlm(mode) | LCK_PW;
72         osc_lock_build_res(env, obj, resname);
73         osc_index2policy(policy, page->cp_obj, page->cp_index, page->cp_index);
74         return osc_match_base(osc_export(obj), resname, LDLM_EXTENT, policy,
75                               dlmmode, &flags, NULL, lockh, unref);
76 }
77
78 static int osc_page_protected(const struct lu_env *env,
79                               const struct osc_page *opg,
80                               enum cl_lock_mode mode, int unref)
81 {
82         struct cl_object_header *hdr;
83         struct cl_lock          *scan;
84         struct cl_page          *page;
85         struct cl_lock_descr    *descr;
86         int result;
87
88         LINVRNT(!opg->ops_temp);
89
90         result = osc_page_is_dlocked(env, opg, mode, 1, unref);
91         if (result == 0) {
92                 /* maybe this page is a part of a lockless io? */
93                 hdr = cl_object_header(opg->ops_cl.cpl_obj);
94                 page = opg->ops_cl.cpl_page;
95                 descr = &osc_env_info(env)->oti_descr;
96                 descr->cld_mode = mode;
97                 descr->cld_start = page->cp_index;
98                 descr->cld_end   = page->cp_index;
99                 spin_lock(&hdr->coh_lock_guard);
100                 list_for_each_entry(scan, &hdr->coh_locks, cll_linkage) {
101                         /*
102                          * Lock-less sub-lock has to be either in HELD state
103                          * (when io is actively going on), or in CACHED state,
104                          * when top-lock is being unlocked:
105                          * cl_io_unlock()->cl_unuse()->...->lov_lock_unuse().
106                          */
107                         if ((scan->cll_state == CLS_HELD ||
108                              scan->cll_state == CLS_CACHED) &&
109                             cl_lock_ext_match(&scan->cll_descr, descr)) {
110                                 struct osc_lock *olck;
111
112                                 olck = osc_lock_at(scan);
113                                 result = osc_lock_is_lockless(olck);
114                                 break;
115                         }
116                 }
117                 spin_unlock(&hdr->coh_lock_guard);
118         }
119         return result;
120 }
121
122 /*****************************************************************************
123  *
124  * Page operations.
125  *
126  */
127 static void osc_page_fini(const struct lu_env *env,
128                           struct cl_page_slice *slice)
129 {
130         struct osc_page *opg = cl2osc_page(slice);
131         CDEBUG(D_TRACE, "%p\n", opg);
132         OBD_SLAB_FREE_PTR(opg, osc_page_kmem);
133 }
134
135 static void osc_page_transfer_get(struct osc_page *opg, const char *label)
136 {
137         struct cl_page *page = cl_page_top(opg->ops_cl.cpl_page);
138
139         LASSERT(!opg->ops_transfer_pinned);
140         cl_page_get(page);
141         lu_ref_add_atomic(&page->cp_reference, label, page);
142         opg->ops_transfer_pinned = 1;
143 }
144
145 static void osc_page_transfer_put(const struct lu_env *env,
146                                   struct osc_page *opg)
147 {
148         struct cl_page *page = cl_page_top(opg->ops_cl.cpl_page);
149
150         if (opg->ops_transfer_pinned) {
151                 lu_ref_del(&page->cp_reference, "transfer", page);
152                 opg->ops_transfer_pinned = 0;
153                 cl_page_put(env, page);
154         }
155 }
156
157 /**
158  * This is called once for every page when it is submitted for a transfer
159  * either opportunistic (osc_page_cache_add()), or immediate
160  * (osc_page_submit()).
161  */
162 static void osc_page_transfer_add(const struct lu_env *env,
163                                   struct osc_page *opg, enum cl_req_type crt)
164 {
165         struct osc_object *obj;
166
167         obj = cl2osc(opg->ops_cl.cpl_obj);
168         spin_lock(&obj->oo_seatbelt);
169         list_add(&opg->ops_inflight, &obj->oo_inflight[crt]);
170         opg->ops_submitter = cfs_current();
171         spin_unlock(&obj->oo_seatbelt);
172 }
173
174 static int osc_page_cache_add(const struct lu_env *env,
175                               const struct cl_page_slice *slice,
176                               struct cl_io *_)
177 {
178         struct osc_page   *opg = cl2osc_page(slice);
179         struct osc_object *obj = cl2osc(opg->ops_cl.cpl_obj);
180         struct osc_io     *oio = osc_env_io(env);
181         int result;
182         int brw_flags;
183         int noquota = 0;
184
185         LINVRNT(osc_page_protected(env, opg, CLM_WRITE, 0));
186         ENTRY;
187
188         /* Set the OBD_BRW_SRVLOCK before the page is queued. */
189         brw_flags = oio->oi_lockless ? OBD_BRW_SRVLOCK : 0;
190         if (!client_is_remote(osc_export(obj)) &&
191             cfs_capable(CFS_CAP_SYS_RESOURCE)) {
192                 brw_flags |= OBD_BRW_NOQUOTA;
193                 noquota = OBD_BRW_NOQUOTA;
194         }
195
196         osc_page_transfer_get(opg, "transfer\0cache");
197         result = osc_queue_async_io(env, osc_export(obj), NULL, obj->oo_oinfo,
198                                     &opg->ops_oap, OBD_BRW_WRITE | noquota,
199                                     0, 0, brw_flags, 0);
200         if (result != 0)
201                 osc_page_transfer_put(env, opg);
202         else
203                 osc_page_transfer_add(env, opg, CRT_WRITE);
204         RETURN(result);
205 }
206
207 void osc_index2policy(ldlm_policy_data_t *policy, const struct cl_object *obj,
208                       pgoff_t start, pgoff_t end)
209 {
210         memset(policy, 0, sizeof *policy);
211         policy->l_extent.start = cl_offset(obj, start);
212         policy->l_extent.end   = cl_offset(obj, end + 1) - 1;
213 }
214
215 static int osc_page_is_under_lock(const struct lu_env *env,
216                                   const struct cl_page_slice *slice,
217                                   struct cl_io *_)
218 {
219         struct cl_lock *lock;
220         int             result;
221
222         ENTRY;
223         lock = cl_lock_at_page(env, slice->cpl_obj, slice->cpl_page,
224                                NULL, 1, 0);
225         if (lock != NULL) {
226                 cl_lock_put(env, lock);
227                 result = -EBUSY;
228         } else
229                 result = -ENODATA;
230         RETURN(result);
231 }
232
233 static int osc_page_fail(const struct lu_env *env,
234                          const struct cl_page_slice *slice, struct cl_io *_)
235 {
236         /*
237          * Cached read?
238          */
239         LBUG();
240         return 0;
241 }
242
243
244 static const char *osc_list(struct list_head *head)
245 {
246         return list_empty(head) ? "-" : "+";
247 }
248
249 static int osc_page_print(const struct lu_env *env,
250                           const struct cl_page_slice *slice,
251                           void *cookie, lu_printer_t printer)
252 {
253         struct osc_page       *opg = cl2osc_page(slice);
254         struct osc_async_page *oap = &opg->ops_oap;
255
256         return (*printer)(env, cookie, LUSTRE_OSC_NAME"-page@%p: "
257                           "%#x %d %u %s %s %s %llu %u %#x %p %p %p %p %p\n",
258                           opg, oap->oap_magic, oap->oap_cmd,
259                           oap->oap_interrupted,
260                           osc_list(&oap->oap_pending_item),
261                           osc_list(&oap->oap_urgent_item),
262                           osc_list(&oap->oap_rpc_item),
263                           oap->oap_obj_off, oap->oap_page_off,
264                           oap->oap_async_flags, oap->oap_request,
265                           oap->oap_cli, oap->oap_loi, oap->oap_caller_ops,
266                           oap->oap_caller_data);
267 }
268
269 static void osc_page_delete(const struct lu_env *env,
270                             const struct cl_page_slice *slice)
271 {
272         struct osc_page       *opg = cl2osc_page(slice);
273         struct osc_object     *obj = cl2osc(opg->ops_cl.cpl_obj);
274         struct osc_async_page *oap = &opg->ops_oap;
275         int rc;
276
277         LINVRNT(opg->ops_temp || osc_page_protected(env, opg, CLM_READ, 1));
278
279         ENTRY;
280         CDEBUG(D_TRACE, "%p\n", opg);
281         osc_page_transfer_put(env, opg);
282         rc = osc_teardown_async_page(osc_export(obj), NULL, obj->oo_oinfo, oap);
283         LASSERTF(rc == 0, "%i\n", rc);
284         spin_lock(&obj->oo_seatbelt);
285         list_del_init(&opg->ops_inflight);
286         spin_unlock(&obj->oo_seatbelt);
287         EXIT;
288 }
289
290 void osc_page_clip(const struct lu_env *env, const struct cl_page_slice *slice,
291                    int from, int to)
292 {
293         struct osc_page       *opg = cl2osc_page(slice);
294         struct osc_async_page *oap = &opg->ops_oap;
295
296         LINVRNT(osc_page_protected(env, opg, CLM_READ, 0));
297
298         opg->ops_from = from;
299         opg->ops_to   = to;
300         oap->oap_async_flags |= ASYNC_COUNT_STABLE;
301 }
302
303 static int osc_page_cancel(const struct lu_env *env,
304                            const struct cl_page_slice *slice)
305 {
306         struct osc_page *opg       = cl2osc_page(slice);
307         struct osc_async_page *oap = &opg->ops_oap;
308         int rc = 0;
309
310         LINVRNT(osc_page_protected(env, opg, CLM_READ, 0));
311
312         client_obd_list_lock(&oap->oap_cli->cl_loi_list_lock);
313         /* Check if the transferring against this page
314          * is completed, or not even queued. */
315         if (opg->ops_transfer_pinned)
316                 /* FIXME: may not be interrupted.. */
317                 rc = osc_oap_interrupted(env, oap);
318         LASSERT(ergo(rc == 0, opg->ops_transfer_pinned == 0));
319         client_obd_list_unlock(&oap->oap_cli->cl_loi_list_lock);
320         return rc;
321 }
322
323 static const struct cl_page_operations osc_page_ops = {
324         .cpo_fini          = osc_page_fini,
325         .cpo_print         = osc_page_print,
326         .cpo_delete        = osc_page_delete,
327         .cpo_is_under_lock = osc_page_is_under_lock,
328         .io = {
329                 [CRT_READ] = {
330                         .cpo_cache_add = osc_page_fail
331                 },
332                 [CRT_WRITE] = {
333                         .cpo_cache_add = osc_page_cache_add
334                 }
335         },
336         .cpo_clip           = osc_page_clip,
337         .cpo_cancel         = osc_page_cancel
338 };
339
340 static int osc_make_ready(const struct lu_env *env, void *data, int cmd)
341 {
342         struct osc_page *opg  = data;
343         struct cl_page  *page = cl_page_top(opg->ops_cl.cpl_page);
344         int result;
345
346         LASSERT(cmd == OBD_BRW_WRITE); /* no cached reads */
347         LINVRNT(osc_page_protected(env, opg, CLM_WRITE, 1));
348
349         ENTRY;
350         result = cl_page_make_ready(env, page, CRT_WRITE);
351         RETURN(result);
352 }
353
354 static int osc_refresh_count(const struct lu_env *env, void *data, int cmd)
355 {
356         struct cl_page   *page;
357         struct osc_page  *osc = data;
358         struct cl_object *obj;
359         struct cl_attr   *attr = &osc_env_info(env)->oti_attr;
360
361         int result;
362         loff_t kms;
363
364         LINVRNT(osc_page_protected(env, osc, CLM_READ, 1));
365
366         /* readpage queues with _COUNT_STABLE, shouldn't get here. */
367         LASSERT(!(cmd & OBD_BRW_READ));
368         LASSERT(osc != NULL);
369         page = osc->ops_cl.cpl_page;
370         obj = osc->ops_cl.cpl_obj;
371
372         cl_object_attr_lock(obj);
373         result = cl_object_attr_get(env, obj, attr);
374         cl_object_attr_unlock(obj);
375         if (result < 0)
376                 return result;
377         kms = attr->cat_kms;
378         if (cl_offset(obj, page->cp_index) >= kms)
379                 /* catch race with truncate */
380                 return 0;
381         else if (cl_offset(obj, page->cp_index + 1) > kms)
382                 /* catch sub-page write at end of file */
383                 return kms % CFS_PAGE_SIZE;
384         else
385                 return CFS_PAGE_SIZE;
386 }
387
388 static int osc_completion(const struct lu_env *env,
389                           void *data, int cmd, struct obdo *oa, int rc)
390 {
391         struct osc_page       *opg  = data;
392         struct osc_async_page *oap  = &opg->ops_oap;
393         struct cl_page        *page = cl_page_top(opg->ops_cl.cpl_page);
394         struct osc_object     *obj  = cl2osc(opg->ops_cl.cpl_obj);
395         enum cl_req_type crt;
396
397         LINVRNT(osc_page_protected(env, opg, CLM_READ, 1));
398
399         ENTRY;
400
401         cmd &= ~OBD_BRW_NOQUOTA;
402         LASSERT(equi(page->cp_state == CPS_PAGEIN,  cmd == OBD_BRW_READ));
403         LASSERT(equi(page->cp_state == CPS_PAGEOUT, cmd == OBD_BRW_WRITE));
404         LASSERT(opg->ops_transfer_pinned);
405
406         /*
407          * page->cp_req can be NULL if io submission failed before
408          * cl_req was allocated.
409          */
410         if (page->cp_req != NULL)
411                 cl_req_page_done(env, page);
412         LASSERT(page->cp_req == NULL);
413
414         /* As the transfer for this page is being done, clear the flags */
415         oap->oap_async_flags = 0;
416
417         crt = cmd == OBD_BRW_READ ? CRT_READ : CRT_WRITE;
418         /* Clear opg->ops_transfer_pinned before VM lock is released. */
419         opg->ops_transfer_pinned = 0;
420
421         spin_lock(&obj->oo_seatbelt);
422         LASSERT(opg->ops_submitter != NULL);
423         LASSERT(!list_empty(&opg->ops_inflight));
424         list_del_init(&opg->ops_inflight);
425         spin_unlock(&obj->oo_seatbelt);
426
427         cl_page_completion(env, page, crt, rc);
428
429         /* statistic */
430         if (rc == 0 && oap->oap_brw_flags & OBD_BRW_SRVLOCK) {
431                 struct lu_device *ld    = opg->ops_cl.cpl_obj->co_lu.lo_dev;
432                 struct osc_stats *stats = &lu2osc_dev(ld)->od_stats;
433                 int bytes = opg->ops_to - opg->ops_from;
434
435                 if (crt == CRT_READ)
436                         stats->os_lockless_reads += bytes;
437                 else
438                         stats->os_lockless_writes += bytes;
439         }
440
441         /*
442          * This has to be the last operation with the page, as locks are
443          * released in cl_page_completion() and nothing except for the
444          * reference counter protects page from concurrent reclaim.
445          */
446         lu_ref_del(&page->cp_reference, "transfer", page);
447         /*
448          * As page->cp_obj is pinned by a reference from page->cp_req, it is
449          * safe to call cl_page_put() without risking object destruction in a
450          * non-blocking context.
451          */
452         cl_page_put(env, page);
453         RETURN(0);
454 }
455
456 const static struct obd_async_page_ops osc_async_page_ops = {
457         .ap_make_ready    = osc_make_ready,
458         .ap_refresh_count = osc_refresh_count,
459         .ap_completion    = osc_completion
460 };
461
462 struct cl_page *osc_page_init(const struct lu_env *env,
463                               struct cl_object *obj,
464                               struct cl_page *page, cfs_page_t *vmpage)
465 {
466         struct osc_object *osc = cl2osc(obj);
467         struct osc_page   *opg;
468         int result;
469
470         OBD_SLAB_ALLOC_PTR(opg, osc_page_kmem);
471         if (opg != NULL) {
472                 void *oap = &opg->ops_oap;
473
474                 opg->ops_from = 0;
475                 opg->ops_to   = CFS_PAGE_SIZE;
476
477                 result = osc_prep_async_page(osc_export(osc),
478                                              NULL, osc->oo_oinfo, vmpage,
479                                              cl_offset(obj, page->cp_index),
480                                              &osc_async_page_ops,
481                                              opg, (void **)&oap, 1, NULL);
482                 if (result == 0)
483                         cl_page_slice_add(page, &opg->ops_cl, obj,
484                                           &osc_page_ops);
485                 /*
486                  * Cannot assert osc_page_protected() here as read-ahead
487                  * creates temporary pages outside of a lock.
488                  */
489 #ifdef INVARIANT_CHECK
490                 opg->ops_temp = !osc_page_protected(env, opg, CLM_READ, 1);
491 #endif
492                 CFS_INIT_LIST_HEAD(&opg->ops_inflight);
493         } else
494                 result = -ENOMEM;
495         return ERR_PTR(result);
496 }
497
498 void osc_io_submit_page(const struct lu_env *env,
499                         struct osc_io *oio, struct osc_page *opg,
500                         enum cl_req_type crt)
501 {
502         struct osc_async_page *oap = &opg->ops_oap;
503         struct client_obd     *cli = oap->oap_cli;
504
505         LINVRNT(osc_page_protected(env, opg,
506                                    crt == CRT_WRITE ? CLM_WRITE : CLM_READ, 1));
507
508         oap->oap_page_off   = opg->ops_from;
509         oap->oap_count      = opg->ops_to - opg->ops_from;
510         oap->oap_brw_flags |= OBD_BRW_SYNC;
511         if (oio->oi_lockless)
512                 oap->oap_brw_flags |= OBD_BRW_SRVLOCK;
513
514         oap->oap_cmd = crt == CRT_WRITE ? OBD_BRW_WRITE : OBD_BRW_READ;
515         if (!client_is_remote(osc_export(cl2osc(opg->ops_cl.cpl_obj))) &&
516             cfs_capable(CFS_CAP_SYS_RESOURCE)) {
517                 oap->oap_brw_flags |= OBD_BRW_NOQUOTA;
518                 oap->oap_cmd |= OBD_BRW_NOQUOTA;
519         }
520
521         oap->oap_async_flags |= OSC_FLAGS;
522         if (oap->oap_cmd & OBD_BRW_READ)
523                 oap->oap_async_flags |= ASYNC_COUNT_STABLE;
524         else if (!(oap->oap_brw_page.flag & OBD_BRW_FROM_GRANT))
525                 osc_enter_cache_try(env, cli, oap->oap_loi, oap, 1);
526
527         osc_oap_to_pending(oap);
528         osc_page_transfer_get(opg, "transfer\0imm");
529         osc_page_transfer_add(env, opg, crt);
530 }
531
532 /** @} osc */