staging: add Lustre file system client support
[deliverable/linux.git] / drivers / staging / lustre / lustre / osc / osc_io.c
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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, 2012, 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_io for OSC layer.
37 *
38 * Author: Nikita Danilov <nikita.danilov@sun.com>
39 * Author: Jinshan Xiong <jinshan.xiong@whamcloud.com>
40 */
41
42#define DEBUG_SUBSYSTEM S_OSC
43
44#include "osc_cl_internal.h"
45
46/** \addtogroup osc
47 * @{
48 */
49
50/*****************************************************************************
51 *
52 * Type conversions.
53 *
54 */
55
56static struct osc_req *cl2osc_req(const struct cl_req_slice *slice)
57{
58 LINVRNT(slice->crs_dev->cd_lu_dev.ld_type == &osc_device_type);
59 return container_of0(slice, struct osc_req, or_cl);
60}
61
62static struct osc_io *cl2osc_io(const struct lu_env *env,
63 const struct cl_io_slice *slice)
64{
65 struct osc_io *oio = container_of0(slice, struct osc_io, oi_cl);
66 LINVRNT(oio == osc_env_io(env));
67 return oio;
68}
69
70static struct osc_page *osc_cl_page_osc(struct cl_page *page)
71{
72 const struct cl_page_slice *slice;
73
74 slice = cl_page_at(page, &osc_device_type);
75 LASSERT(slice != NULL);
76
77 return cl2osc_page(slice);
78}
79
80
81/*****************************************************************************
82 *
83 * io operations.
84 *
85 */
86
87static void osc_io_fini(const struct lu_env *env, const struct cl_io_slice *io)
88{
89}
90
91/**
92 * An implementation of cl_io_operations::cio_io_submit() method for osc
93 * layer. Iterates over pages in the in-queue, prepares each for io by calling
94 * cl_page_prep() and then either submits them through osc_io_submit_page()
95 * or, if page is already submitted, changes osc flags through
96 * osc_set_async_flags().
97 */
98static int osc_io_submit(const struct lu_env *env,
99 const struct cl_io_slice *ios,
100 enum cl_req_type crt, struct cl_2queue *queue)
101{
102 struct cl_page *page;
103 struct cl_page *tmp;
104 struct client_obd *cli = NULL;
105 struct osc_object *osc = NULL; /* to keep gcc happy */
106 struct osc_page *opg;
107 struct cl_io *io;
108 LIST_HEAD (list);
109
110 struct cl_page_list *qin = &queue->c2_qin;
111 struct cl_page_list *qout = &queue->c2_qout;
112 int queued = 0;
113 int result = 0;
114 int cmd;
115 int brw_flags;
116 int max_pages;
117
118 LASSERT(qin->pl_nr > 0);
119
120 CDEBUG(D_CACHE, "%d %d\n", qin->pl_nr, crt);
121
122 osc = cl2osc(ios->cis_obj);
123 cli = osc_cli(osc);
124 max_pages = cli->cl_max_pages_per_rpc;
125
126 cmd = crt == CRT_WRITE ? OBD_BRW_WRITE : OBD_BRW_READ;
127 brw_flags = osc_io_srvlock(cl2osc_io(env, ios)) ? OBD_BRW_SRVLOCK : 0;
128
129 /*
130 * NOTE: here @page is a top-level page. This is done to avoid
131 * creation of sub-page-list.
132 */
133 cl_page_list_for_each_safe(page, tmp, qin) {
134 struct osc_async_page *oap;
135
136 /* Top level IO. */
137 io = page->cp_owner;
138 LASSERT(io != NULL);
139
140 opg = osc_cl_page_osc(page);
141 oap = &opg->ops_oap;
142 LASSERT(osc == oap->oap_obj);
143
144 if (!list_empty(&oap->oap_pending_item) ||
145 !list_empty(&oap->oap_rpc_item)) {
146 CDEBUG(D_CACHE, "Busy oap %p page %p for submit.\n",
147 oap, opg);
148 result = -EBUSY;
149 break;
150 }
151
152 result = cl_page_prep(env, io, page, crt);
153 if (result != 0) {
154 LASSERT(result < 0);
155 if (result != -EALREADY)
156 break;
157 /*
158 * Handle -EALREADY error: for read case, the page is
159 * already in UPTODATE state; for write, the page
160 * is not dirty.
161 */
162 result = 0;
163 continue;
164 }
165
166 cl_page_list_move(qout, qin, page);
167 oap->oap_async_flags = ASYNC_URGENT|ASYNC_READY;
168 oap->oap_async_flags |= ASYNC_COUNT_STABLE;
169
170 osc_page_submit(env, opg, crt, brw_flags);
171 list_add_tail(&oap->oap_pending_item, &list);
172 if (++queued == max_pages) {
173 queued = 0;
174 result = osc_queue_sync_pages(env, osc, &list, cmd,
175 brw_flags);
176 if (result < 0)
177 break;
178 }
179 }
180
181 if (queued > 0)
182 result = osc_queue_sync_pages(env, osc, &list, cmd, brw_flags);
183
184 CDEBUG(D_INFO, "%d/%d %d\n", qin->pl_nr, qout->pl_nr, result);
185 return qout->pl_nr > 0 ? 0 : result;
186}
187
188static void osc_page_touch_at(const struct lu_env *env,
189 struct cl_object *obj, pgoff_t idx, unsigned to)
190{
191 struct lov_oinfo *loi = cl2osc(obj)->oo_oinfo;
192 struct cl_attr *attr = &osc_env_info(env)->oti_attr;
193 int valid;
194 __u64 kms;
195
196 /* offset within stripe */
197 kms = cl_offset(obj, idx) + to;
198
199 cl_object_attr_lock(obj);
200 /*
201 * XXX old code used
202 *
203 * ll_inode_size_lock(inode, 0); lov_stripe_lock(lsm);
204 *
205 * here
206 */
207 CDEBUG(D_INODE, "stripe KMS %sincreasing "LPU64"->"LPU64" "LPU64"\n",
208 kms > loi->loi_kms ? "" : "not ", loi->loi_kms, kms,
209 loi->loi_lvb.lvb_size);
210
211 valid = 0;
212 if (kms > loi->loi_kms) {
213 attr->cat_kms = kms;
214 valid |= CAT_KMS;
215 }
216 if (kms > loi->loi_lvb.lvb_size) {
217 attr->cat_size = kms;
218 valid |= CAT_SIZE;
219 }
220 cl_object_attr_set(env, obj, attr, valid);
221 cl_object_attr_unlock(obj);
222}
223
224/**
225 * This is called when a page is accessed within file in a way that creates
226 * new page, if one were missing (i.e., if there were a hole at that place in
227 * the file, or accessed page is beyond the current file size). Examples:
228 * ->commit_write() and ->nopage() methods.
229 *
230 * Expand stripe KMS if necessary.
231 */
232static void osc_page_touch(const struct lu_env *env,
233 struct osc_page *opage, unsigned to)
234{
235 struct cl_page *page = opage->ops_cl.cpl_page;
236 struct cl_object *obj = opage->ops_cl.cpl_obj;
237
238 osc_page_touch_at(env, obj, page->cp_index, to);
239}
240
241/**
242 * Implements cl_io_operations::cio_prepare_write() method for osc layer.
243 *
244 * \retval -EIO transfer initiated against this osc will most likely fail
245 * \retval 0 transfer initiated against this osc will most likely succeed.
246 *
247 * The reason for this check is to immediately return an error to the caller
248 * in the case of a deactivated import. Note, that import can be deactivated
249 * later, while pages, dirtied by this IO, are still in the cache, but this is
250 * irrelevant, because that would still return an error to the application (if
251 * it does fsync), but many applications don't do fsync because of performance
252 * issues, and we wanted to return an -EIO at write time to notify the
253 * application.
254 */
255static int osc_io_prepare_write(const struct lu_env *env,
256 const struct cl_io_slice *ios,
257 const struct cl_page_slice *slice,
258 unsigned from, unsigned to)
259{
260 struct osc_device *dev = lu2osc_dev(slice->cpl_obj->co_lu.lo_dev);
261 struct obd_import *imp = class_exp2cliimp(dev->od_exp);
262 struct osc_io *oio = cl2osc_io(env, ios);
263 int result = 0;
264 ENTRY;
265
266 /*
267 * This implements OBD_BRW_CHECK logic from old client.
268 */
269
270 if (imp == NULL || imp->imp_invalid)
271 result = -EIO;
272 if (result == 0 && oio->oi_lockless)
273 /* this page contains `invalid' data, but who cares?
274 * nobody can access the invalid data.
275 * in osc_io_commit_write(), we're going to write exact
276 * [from, to) bytes of this page to OST. -jay */
277 cl_page_export(env, slice->cpl_page, 1);
278
279 RETURN(result);
280}
281
282static int osc_io_commit_write(const struct lu_env *env,
283 const struct cl_io_slice *ios,
284 const struct cl_page_slice *slice,
285 unsigned from, unsigned to)
286{
287 struct osc_io *oio = cl2osc_io(env, ios);
288 struct osc_page *opg = cl2osc_page(slice);
289 struct osc_object *obj = cl2osc(opg->ops_cl.cpl_obj);
290 struct osc_async_page *oap = &opg->ops_oap;
291 ENTRY;
292
293 LASSERT(to > 0);
294 /*
295 * XXX instead of calling osc_page_touch() here and in
296 * osc_io_fault_start() it might be more logical to introduce
297 * cl_page_touch() method, that generic cl_io_commit_write() and page
298 * fault code calls.
299 */
300 osc_page_touch(env, cl2osc_page(slice), to);
301 if (!client_is_remote(osc_export(obj)) &&
302 cfs_capable(CFS_CAP_SYS_RESOURCE))
303 oap->oap_brw_flags |= OBD_BRW_NOQUOTA;
304
305 if (oio->oi_lockless)
306 /* see osc_io_prepare_write() for lockless io handling. */
307 cl_page_clip(env, slice->cpl_page, from, to);
308
309 RETURN(0);
310}
311
312static int osc_io_fault_start(const struct lu_env *env,
313 const struct cl_io_slice *ios)
314{
315 struct cl_io *io;
316 struct cl_fault_io *fio;
317
318 ENTRY;
319
320 io = ios->cis_io;
321 fio = &io->u.ci_fault;
322 CDEBUG(D_INFO, "%lu %d %d\n",
323 fio->ft_index, fio->ft_writable, fio->ft_nob);
324 /*
325 * If mapping is writeable, adjust kms to cover this page,
326 * but do not extend kms beyond actual file size.
327 * See bug 10919.
328 */
329 if (fio->ft_writable)
330 osc_page_touch_at(env, ios->cis_obj,
331 fio->ft_index, fio->ft_nob);
332 RETURN(0);
333}
334
335static int osc_async_upcall(void *a, int rc)
336{
337 struct osc_async_cbargs *args = a;
338
339 args->opc_rc = rc;
340 complete(&args->opc_sync);
341 return 0;
342}
343
344/**
345 * Checks that there are no pages being written in the extent being truncated.
346 */
347static int trunc_check_cb(const struct lu_env *env, struct cl_io *io,
348 struct cl_page *page, void *cbdata)
349{
350 const struct cl_page_slice *slice;
351 struct osc_page *ops;
352 struct osc_async_page *oap;
353 __u64 start = *(__u64 *)cbdata;
354
355 slice = cl_page_at(page, &osc_device_type);
356 LASSERT(slice != NULL);
357 ops = cl2osc_page(slice);
358 oap = &ops->ops_oap;
359
360 if (oap->oap_cmd & OBD_BRW_WRITE &&
361 !list_empty(&oap->oap_pending_item))
362 CL_PAGE_DEBUG(D_ERROR, env, page, "exists " LPU64 "/%s.\n",
363 start, current->comm);
364
365 {
366 struct page *vmpage = cl_page_vmpage(env, page);
367 if (PageLocked(vmpage))
368 CDEBUG(D_CACHE, "page %p index %lu locked for %d.\n",
369 ops, page->cp_index,
370 (oap->oap_cmd & OBD_BRW_RWMASK));
371 }
372
373 return CLP_GANG_OKAY;
374}
375
376static void osc_trunc_check(const struct lu_env *env, struct cl_io *io,
377 struct osc_io *oio, __u64 size)
378{
379 struct cl_object *clob;
380 int partial;
381 pgoff_t start;
382
383 clob = oio->oi_cl.cis_obj;
384 start = cl_index(clob, size);
385 partial = cl_offset(clob, start) < size;
386
387 /*
388 * Complain if there are pages in the truncated region.
389 */
390 cl_page_gang_lookup(env, clob, io, start + partial, CL_PAGE_EOF,
391 trunc_check_cb, (void *)&size);
392}
393
394static int osc_io_setattr_start(const struct lu_env *env,
395 const struct cl_io_slice *slice)
396{
397 struct cl_io *io = slice->cis_io;
398 struct osc_io *oio = cl2osc_io(env, slice);
399 struct cl_object *obj = slice->cis_obj;
400 struct lov_oinfo *loi = cl2osc(obj)->oo_oinfo;
401 struct cl_attr *attr = &osc_env_info(env)->oti_attr;
402 struct obdo *oa = &oio->oi_oa;
403 struct osc_async_cbargs *cbargs = &oio->oi_cbarg;
404 __u64 size = io->u.ci_setattr.sa_attr.lvb_size;
405 unsigned int ia_valid = io->u.ci_setattr.sa_valid;
406 int result = 0;
407 struct obd_info oinfo = { { { 0 } } };
408
409 /* truncate cache dirty pages first */
410 if (cl_io_is_trunc(io))
411 result = osc_cache_truncate_start(env, oio, cl2osc(obj), size);
412
413 if (result == 0 && oio->oi_lockless == 0) {
414 cl_object_attr_lock(obj);
415 result = cl_object_attr_get(env, obj, attr);
416 if (result == 0) {
417 struct ost_lvb *lvb = &io->u.ci_setattr.sa_attr;
418 unsigned int cl_valid = 0;
419
420 if (ia_valid & ATTR_SIZE) {
421 attr->cat_size = attr->cat_kms = size;
422 cl_valid = (CAT_SIZE | CAT_KMS);
423 }
424 if (ia_valid & ATTR_MTIME_SET) {
425 attr->cat_mtime = lvb->lvb_mtime;
426 cl_valid |= CAT_MTIME;
427 }
428 if (ia_valid & ATTR_ATIME_SET) {
429 attr->cat_atime = lvb->lvb_atime;
430 cl_valid |= CAT_ATIME;
431 }
432 if (ia_valid & ATTR_CTIME_SET) {
433 attr->cat_ctime = lvb->lvb_ctime;
434 cl_valid |= CAT_CTIME;
435 }
436 result = cl_object_attr_set(env, obj, attr, cl_valid);
437 }
438 cl_object_attr_unlock(obj);
439 }
440 memset(oa, 0, sizeof(*oa));
441 if (result == 0) {
442 oa->o_oi = loi->loi_oi;
443 oa->o_mtime = attr->cat_mtime;
444 oa->o_atime = attr->cat_atime;
445 oa->o_ctime = attr->cat_ctime;
446 oa->o_valid = OBD_MD_FLID | OBD_MD_FLGROUP | OBD_MD_FLATIME |
447 OBD_MD_FLCTIME | OBD_MD_FLMTIME;
448 if (ia_valid & ATTR_SIZE) {
449 oa->o_size = size;
450 oa->o_blocks = OBD_OBJECT_EOF;
451 oa->o_valid |= OBD_MD_FLSIZE | OBD_MD_FLBLOCKS;
452
453 if (oio->oi_lockless) {
454 oa->o_flags = OBD_FL_SRVLOCK;
455 oa->o_valid |= OBD_MD_FLFLAGS;
456 }
457 } else {
458 LASSERT(oio->oi_lockless == 0);
459 }
460
461 oinfo.oi_oa = oa;
462 oinfo.oi_capa = io->u.ci_setattr.sa_capa;
463 init_completion(&cbargs->opc_sync);
464
465 if (ia_valid & ATTR_SIZE)
466 result = osc_punch_base(osc_export(cl2osc(obj)),
467 &oinfo, osc_async_upcall,
468 cbargs, PTLRPCD_SET);
469 else
470 result = osc_setattr_async_base(osc_export(cl2osc(obj)),
471 &oinfo, NULL,
472 osc_async_upcall,
473 cbargs, PTLRPCD_SET);
474 cbargs->opc_rpc_sent = result == 0;
475 }
476 return result;
477}
478
479static void osc_io_setattr_end(const struct lu_env *env,
480 const struct cl_io_slice *slice)
481{
482 struct cl_io *io = slice->cis_io;
483 struct osc_io *oio = cl2osc_io(env, slice);
484 struct cl_object *obj = slice->cis_obj;
485 struct osc_async_cbargs *cbargs = &oio->oi_cbarg;
486 int result = 0;
487
488 if (cbargs->opc_rpc_sent) {
489 wait_for_completion(&cbargs->opc_sync);
490 result = io->ci_result = cbargs->opc_rc;
491 }
492 if (result == 0) {
493 if (oio->oi_lockless) {
494 /* lockless truncate */
495 struct osc_device *osd = lu2osc_dev(obj->co_lu.lo_dev);
496
497 LASSERT(cl_io_is_trunc(io));
498 /* XXX: Need a lock. */
499 osd->od_stats.os_lockless_truncates++;
500 }
501 }
502
503 if (cl_io_is_trunc(io)) {
504 __u64 size = io->u.ci_setattr.sa_attr.lvb_size;
505 osc_trunc_check(env, io, oio, size);
506 if (oio->oi_trunc != NULL) {
507 osc_cache_truncate_end(env, oio, cl2osc(obj));
508 oio->oi_trunc = NULL;
509 }
510 }
511}
512
513static int osc_io_read_start(const struct lu_env *env,
514 const struct cl_io_slice *slice)
515{
516 struct osc_io *oio = cl2osc_io(env, slice);
517 struct cl_object *obj = slice->cis_obj;
518 struct cl_attr *attr = &osc_env_info(env)->oti_attr;
519 int result = 0;
520 ENTRY;
521
522 if (oio->oi_lockless == 0) {
523 cl_object_attr_lock(obj);
524 result = cl_object_attr_get(env, obj, attr);
525 if (result == 0) {
526 attr->cat_atime = LTIME_S(CFS_CURRENT_TIME);
527 result = cl_object_attr_set(env, obj, attr,
528 CAT_ATIME);
529 }
530 cl_object_attr_unlock(obj);
531 }
532 RETURN(result);
533}
534
535static int osc_io_write_start(const struct lu_env *env,
536 const struct cl_io_slice *slice)
537{
538 struct osc_io *oio = cl2osc_io(env, slice);
539 struct cl_object *obj = slice->cis_obj;
540 struct cl_attr *attr = &osc_env_info(env)->oti_attr;
541 int result = 0;
542 ENTRY;
543
544 if (oio->oi_lockless == 0) {
545 OBD_FAIL_TIMEOUT(OBD_FAIL_OSC_DELAY_SETTIME, 1);
546 cl_object_attr_lock(obj);
547 result = cl_object_attr_get(env, obj, attr);
548 if (result == 0) {
549 attr->cat_mtime = attr->cat_ctime =
550 LTIME_S(CFS_CURRENT_TIME);
551 result = cl_object_attr_set(env, obj, attr,
552 CAT_MTIME | CAT_CTIME);
553 }
554 cl_object_attr_unlock(obj);
555 }
556 RETURN(result);
557}
558
559static int osc_fsync_ost(const struct lu_env *env, struct osc_object *obj,
560 struct cl_fsync_io *fio)
561{
562 struct osc_io *oio = osc_env_io(env);
563 struct obdo *oa = &oio->oi_oa;
564 struct obd_info *oinfo = &oio->oi_info;
565 struct lov_oinfo *loi = obj->oo_oinfo;
566 struct osc_async_cbargs *cbargs = &oio->oi_cbarg;
567 int rc = 0;
568 ENTRY;
569
570 memset(oa, 0, sizeof(*oa));
571 oa->o_oi = loi->loi_oi;
572 oa->o_valid = OBD_MD_FLID | OBD_MD_FLGROUP;
573
574 /* reload size abd blocks for start and end of sync range */
575 oa->o_size = fio->fi_start;
576 oa->o_blocks = fio->fi_end;
577 oa->o_valid |= OBD_MD_FLSIZE | OBD_MD_FLBLOCKS;
578
579 obdo_set_parent_fid(oa, fio->fi_fid);
580
581 memset(oinfo, 0, sizeof(*oinfo));
582 oinfo->oi_oa = oa;
583 oinfo->oi_capa = fio->fi_capa;
584 init_completion(&cbargs->opc_sync);
585
586 rc = osc_sync_base(osc_export(obj), oinfo, osc_async_upcall, cbargs,
587 PTLRPCD_SET);
588 RETURN(rc);
589}
590
591static int osc_io_fsync_start(const struct lu_env *env,
592 const struct cl_io_slice *slice)
593{
594 struct cl_io *io = slice->cis_io;
595 struct cl_fsync_io *fio = &io->u.ci_fsync;
596 struct cl_object *obj = slice->cis_obj;
597 struct osc_object *osc = cl2osc(obj);
598 pgoff_t start = cl_index(obj, fio->fi_start);
599 pgoff_t end = cl_index(obj, fio->fi_end);
600 int result = 0;
601 ENTRY;
602
603 if (fio->fi_end == OBD_OBJECT_EOF)
604 end = CL_PAGE_EOF;
605
606 result = osc_cache_writeback_range(env, osc, start, end, 0,
607 fio->fi_mode == CL_FSYNC_DISCARD);
608 if (result > 0) {
609 fio->fi_nr_written += result;
610 result = 0;
611 }
612 if (fio->fi_mode == CL_FSYNC_ALL) {
613 int rc;
614
615 /* we have to wait for writeback to finish before we can
616 * send OST_SYNC RPC. This is bad because it causes extents
617 * to be written osc by osc. However, we usually start
618 * writeback before CL_FSYNC_ALL so this won't have any real
619 * problem. */
620 rc = osc_cache_wait_range(env, osc, start, end);
621 if (result == 0)
622 result = rc;
623 rc = osc_fsync_ost(env, osc, fio);
624 if (result == 0)
625 result = rc;
626 }
627
628 RETURN(result);
629}
630
631static void osc_io_fsync_end(const struct lu_env *env,
632 const struct cl_io_slice *slice)
633{
634 struct cl_fsync_io *fio = &slice->cis_io->u.ci_fsync;
635 struct cl_object *obj = slice->cis_obj;
636 pgoff_t start = cl_index(obj, fio->fi_start);
637 pgoff_t end = cl_index(obj, fio->fi_end);
638 int result = 0;
639
640 if (fio->fi_mode == CL_FSYNC_LOCAL) {
641 result = osc_cache_wait_range(env, cl2osc(obj), start, end);
642 } else if (fio->fi_mode == CL_FSYNC_ALL) {
643 struct osc_io *oio = cl2osc_io(env, slice);
644 struct osc_async_cbargs *cbargs = &oio->oi_cbarg;
645
646 wait_for_completion(&cbargs->opc_sync);
647 if (result == 0)
648 result = cbargs->opc_rc;
649 }
650 slice->cis_io->ci_result = result;
651}
652
653static void osc_io_end(const struct lu_env *env,
654 const struct cl_io_slice *slice)
655{
656 struct osc_io *oio = cl2osc_io(env, slice);
657
658 if (oio->oi_active) {
659 osc_extent_release(env, oio->oi_active);
660 oio->oi_active = NULL;
661 }
662}
663
664static const struct cl_io_operations osc_io_ops = {
665 .op = {
666 [CIT_READ] = {
667 .cio_start = osc_io_read_start,
668 .cio_fini = osc_io_fini
669 },
670 [CIT_WRITE] = {
671 .cio_start = osc_io_write_start,
672 .cio_end = osc_io_end,
673 .cio_fini = osc_io_fini
674 },
675 [CIT_SETATTR] = {
676 .cio_start = osc_io_setattr_start,
677 .cio_end = osc_io_setattr_end
678 },
679 [CIT_FAULT] = {
680 .cio_start = osc_io_fault_start,
681 .cio_end = osc_io_end,
682 .cio_fini = osc_io_fini
683 },
684 [CIT_FSYNC] = {
685 .cio_start = osc_io_fsync_start,
686 .cio_end = osc_io_fsync_end,
687 .cio_fini = osc_io_fini
688 },
689 [CIT_MISC] = {
690 .cio_fini = osc_io_fini
691 }
692 },
693 .req_op = {
694 [CRT_READ] = {
695 .cio_submit = osc_io_submit
696 },
697 [CRT_WRITE] = {
698 .cio_submit = osc_io_submit
699 }
700 },
701 .cio_prepare_write = osc_io_prepare_write,
702 .cio_commit_write = osc_io_commit_write
703};
704
705/*****************************************************************************
706 *
707 * Transfer operations.
708 *
709 */
710
711static int osc_req_prep(const struct lu_env *env,
712 const struct cl_req_slice *slice)
713{
714 return 0;
715}
716
717static void osc_req_completion(const struct lu_env *env,
718 const struct cl_req_slice *slice, int ioret)
719{
720 struct osc_req *or;
721
722 or = cl2osc_req(slice);
723 OBD_SLAB_FREE_PTR(or, osc_req_kmem);
724}
725
726/**
727 * Implementation of struct cl_req_operations::cro_attr_set() for osc
728 * layer. osc is responsible for struct obdo::o_id and struct obdo::o_seq
729 * fields.
730 */
731static void osc_req_attr_set(const struct lu_env *env,
732 const struct cl_req_slice *slice,
733 const struct cl_object *obj,
734 struct cl_req_attr *attr, obd_valid flags)
735{
736 struct lov_oinfo *oinfo;
737 struct cl_req *clerq;
738 struct cl_page *apage; /* _some_ page in @clerq */
739 struct cl_lock *lock; /* _some_ lock protecting @apage */
740 struct osc_lock *olck;
741 struct osc_page *opg;
742 struct obdo *oa;
743 struct ost_lvb *lvb;
744
745 oinfo = cl2osc(obj)->oo_oinfo;
746 lvb = &oinfo->loi_lvb;
747 oa = attr->cra_oa;
748
749 if ((flags & OBD_MD_FLMTIME) != 0) {
750 oa->o_mtime = lvb->lvb_mtime;
751 oa->o_valid |= OBD_MD_FLMTIME;
752 }
753 if ((flags & OBD_MD_FLATIME) != 0) {
754 oa->o_atime = lvb->lvb_atime;
755 oa->o_valid |= OBD_MD_FLATIME;
756 }
757 if ((flags & OBD_MD_FLCTIME) != 0) {
758 oa->o_ctime = lvb->lvb_ctime;
759 oa->o_valid |= OBD_MD_FLCTIME;
760 }
761 if (flags & OBD_MD_FLGROUP) {
762 ostid_set_seq(&oa->o_oi, ostid_seq(&oinfo->loi_oi));
763 oa->o_valid |= OBD_MD_FLGROUP;
764 }
765 if (flags & OBD_MD_FLID) {
766 ostid_set_id(&oa->o_oi, ostid_id(&oinfo->loi_oi));
767 oa->o_valid |= OBD_MD_FLID;
768 }
769 if (flags & OBD_MD_FLHANDLE) {
770 clerq = slice->crs_req;
771 LASSERT(!list_empty(&clerq->crq_pages));
772 apage = container_of(clerq->crq_pages.next,
773 struct cl_page, cp_flight);
774 opg = osc_cl_page_osc(apage);
775 apage = opg->ops_cl.cpl_page; /* now apage is a sub-page */
776 lock = cl_lock_at_page(env, apage->cp_obj, apage, NULL, 1, 1);
777 if (lock == NULL) {
778 struct cl_object_header *head;
779 struct cl_lock *scan;
780
781 head = cl_object_header(apage->cp_obj);
782 list_for_each_entry(scan, &head->coh_locks,
783 cll_linkage)
784 CL_LOCK_DEBUG(D_ERROR, env, scan,
785 "no cover page!\n");
786 CL_PAGE_DEBUG(D_ERROR, env, apage,
787 "dump uncover page!\n");
788 libcfs_debug_dumpstack(NULL);
789 LBUG();
790 }
791
792 olck = osc_lock_at(lock);
793 LASSERT(olck != NULL);
794 LASSERT(ergo(opg->ops_srvlock, olck->ols_lock == NULL));
795 /* check for lockless io. */
796 if (olck->ols_lock != NULL) {
797 oa->o_handle = olck->ols_lock->l_remote_handle;
798 oa->o_valid |= OBD_MD_FLHANDLE;
799 }
800 cl_lock_put(env, lock);
801 }
802}
803
804static const struct cl_req_operations osc_req_ops = {
805 .cro_prep = osc_req_prep,
806 .cro_attr_set = osc_req_attr_set,
807 .cro_completion = osc_req_completion
808};
809
810
811int osc_io_init(const struct lu_env *env,
812 struct cl_object *obj, struct cl_io *io)
813{
814 struct osc_io *oio = osc_env_io(env);
815
816 CL_IO_SLICE_CLEAN(oio, oi_cl);
817 cl_io_slice_add(io, &oio->oi_cl, obj, &osc_io_ops);
818 return 0;
819}
820
821int osc_req_init(const struct lu_env *env, struct cl_device *dev,
822 struct cl_req *req)
823{
824 struct osc_req *or;
825 int result;
826
827 OBD_SLAB_ALLOC_PTR_GFP(or, osc_req_kmem, __GFP_IO);
828 if (or != NULL) {
829 cl_req_slice_add(req, &or->or_cl, dev, &osc_req_ops);
830 result = 0;
831 } else
832 result = -ENOMEM;
833 return result;
834}
835
836/** @} osc */
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