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[mirror_ubuntu-zesty-kernel.git] / drivers / staging / lustre / lustre / llite / vvp_io.c
CommitLineData
d7e09d03
PT
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
6a5b99a4 18 * http://www.gnu.org/licenses/gpl-2.0.html
d7e09d03 19 *
d7e09d03
PT
20 * GPL HEADER END
21 */
22/*
23 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
24 * Use is subject to license terms.
25 *
1dc563a6 26 * Copyright (c) 2011, 2015, Intel Corporation.
d7e09d03
PT
27 */
28/*
29 * This file is part of Lustre, http://www.lustre.org/
30 * Lustre is a trademark of Sun Microsystems, Inc.
31 *
32 * Implementation of cl_io for VVP layer.
33 *
34 * Author: Nikita Danilov <nikita.danilov@sun.com>
35 * Author: Jinshan Xiong <jinshan.xiong@whamcloud.com>
36 */
37
38#define DEBUG_SUBSYSTEM S_LLITE
39
67a235f5 40#include "../include/obd.h"
d7e09d03 41
0d345656 42#include "llite_internal.h"
d7e09d03
PT
43#include "vvp_internal.h"
44
e3c9078a
TH
45static struct vvp_io *cl2vvp_io(const struct lu_env *env,
46 const struct cl_io_slice *slice)
fee6eb50
JH
47{
48 struct vvp_io *vio;
49
50 vio = container_of(slice, struct vvp_io, vui_cl);
51 LASSERT(vio == vvp_env_io(env));
52
53 return vio;
54}
55
d7e09d03
PT
56/**
57 * For swapping layout. The file's layout may have changed.
58 * To avoid populating pages to a wrong stripe, we have to verify the
59 * correctness of layout. It works because swapping layout processes
60 * have to acquire group lock.
61 */
62static bool can_populate_pages(const struct lu_env *env, struct cl_io *io,
e15ba45d 63 struct inode *inode)
d7e09d03
PT
64{
65 struct ll_inode_info *lli = ll_i2info(inode);
e0a8144b 66 struct vvp_io *vio = vvp_env_io(env);
d7e09d03
PT
67 bool rc = true;
68
69 switch (io->ci_type) {
70 case CIT_READ:
71 case CIT_WRITE:
72 /* don't need lock here to check lli_layout_gen as we have held
c0894c6c
OD
73 * extent lock and GROUP lock has to hold to swap layout
74 */
e0a8144b 75 if (ll_layout_version_get(lli) != vio->vui_layout_gen) {
d7e09d03
PT
76 io->ci_need_restart = 1;
77 /* this will return application a short read/write */
78 io->ci_continue = 0;
79 rc = false;
80 }
81 case CIT_FAULT:
82 /* fault is okay because we've already had a page. */
83 default:
84 break;
85 }
86
87 return rc;
88}
89
fee6eb50
JH
90static void vvp_object_size_lock(struct cl_object *obj)
91{
92 struct inode *inode = vvp_object_inode(obj);
93
94 ll_inode_size_lock(inode);
95 cl_object_attr_lock(obj);
96}
97
98static void vvp_object_size_unlock(struct cl_object *obj)
99{
100 struct inode *inode = vvp_object_inode(obj);
101
102 cl_object_attr_unlock(obj);
103 ll_inode_size_unlock(inode);
104}
105
106/**
107 * Helper function that if necessary adjusts file size (inode->i_size), when
108 * position at the offset \a pos is accessed. File size can be arbitrary stale
109 * on a Lustre client, but client at least knows KMS. If accessed area is
110 * inside [0, KMS], set file size to KMS, otherwise glimpse file size.
111 *
112 * Locking: cl_isize_lock is used to serialize changes to inode size and to
113 * protect consistency between inode size and cl_object
114 * attributes. cl_object_size_lock() protects consistency between cl_attr's of
115 * top-object and sub-objects.
116 */
117static int vvp_prep_size(const struct lu_env *env, struct cl_object *obj,
118 struct cl_io *io, loff_t start, size_t count,
119 int *exceed)
120{
9acc4500 121 struct cl_attr *attr = vvp_env_thread_attr(env);
fee6eb50
JH
122 struct inode *inode = vvp_object_inode(obj);
123 loff_t pos = start + count - 1;
124 loff_t kms;
125 int result;
126
127 /*
128 * Consistency guarantees: following possibilities exist for the
129 * relation between region being accessed and real file size at this
130 * moment:
131 *
132 * (A): the region is completely inside of the file;
133 *
134 * (B-x): x bytes of region are inside of the file, the rest is
135 * outside;
136 *
137 * (C): the region is completely outside of the file.
138 *
139 * This classification is stable under DLM lock already acquired by
140 * the caller, because to change the class, other client has to take
141 * DLM lock conflicting with our lock. Also, any updates to ->i_size
142 * by other threads on this client are serialized by
143 * ll_inode_size_lock(). This guarantees that short reads are handled
144 * correctly in the face of concurrent writes and truncates.
145 */
146 vvp_object_size_lock(obj);
147 result = cl_object_attr_get(env, obj, attr);
148 if (result == 0) {
149 kms = attr->cat_kms;
150 if (pos > kms) {
151 /*
152 * A glimpse is necessary to determine whether we
153 * return a short read (B) or some zeroes at the end
154 * of the buffer (C)
155 */
156 vvp_object_size_unlock(obj);
157 result = cl_glimpse_lock(env, io, inode, obj, 0);
158 if (result == 0 && exceed) {
159 /* If objective page index exceed end-of-file
160 * page index, return directly. Do not expect
161 * kernel will check such case correctly.
162 * linux-2.6.18-128.1.1 miss to do that.
163 * --bug 17336
164 */
165 loff_t size = i_size_read(inode);
5f479924
GKH
166 loff_t cur_index = start >> PAGE_SHIFT;
167 loff_t size_index = (size - 1) >> PAGE_SHIFT;
fee6eb50
JH
168
169 if ((size == 0 && cur_index != 0) ||
170 size_index < cur_index)
171 *exceed = 1;
172 }
173 return result;
174 }
175 /*
176 * region is within kms and, hence, within real file
177 * size (A). We need to increase i_size to cover the
178 * read region so that generic_file_read() will do its
179 * job, but that doesn't mean the kms size is
180 * _correct_, it is only the _minimum_ size. If
181 * someone does a stat they will get the correct size
182 * which will always be >= the kms value here.
183 * b=11081
184 */
185 if (i_size_read(inode) < kms) {
186 i_size_write(inode, kms);
187 CDEBUG(D_VFSTRACE, DFID " updating i_size %llu\n",
188 PFID(lu_object_fid(&obj->co_lu)),
189 (__u64)i_size_read(inode));
190 }
191 }
192
193 vvp_object_size_unlock(obj);
194
195 return result;
196}
197
d7e09d03
PT
198/*****************************************************************************
199 *
200 * io operations.
201 *
202 */
203
fee6eb50
JH
204static int vvp_io_one_lock_index(const struct lu_env *env, struct cl_io *io,
205 __u32 enqflags, enum cl_lock_mode mode,
206 pgoff_t start, pgoff_t end)
207{
208 struct vvp_io *vio = vvp_env_io(env);
209 struct cl_lock_descr *descr = &vio->vui_link.cill_descr;
210 struct cl_object *obj = io->ci_obj;
211
212 CLOBINVRNT(env, obj, vvp_object_invariant(obj));
213
214 CDEBUG(D_VFSTRACE, "lock: %d [%lu, %lu]\n", mode, start, end);
215
216 memset(&vio->vui_link, 0, sizeof(vio->vui_link));
217
218 if (vio->vui_fd && (vio->vui_fd->fd_flags & LL_FILE_GROUP_LOCKED)) {
219 descr->cld_mode = CLM_GROUP;
98eae5e7 220 descr->cld_gid = vio->vui_fd->fd_grouplock.lg_gid;
fee6eb50
JH
221 } else {
222 descr->cld_mode = mode;
223 }
224 descr->cld_obj = obj;
225 descr->cld_start = start;
226 descr->cld_end = end;
227 descr->cld_enq_flags = enqflags;
228
229 cl_io_lock_add(env, io, &vio->vui_link);
230 return 0;
231}
232
233static int vvp_io_one_lock(const struct lu_env *env, struct cl_io *io,
234 __u32 enqflags, enum cl_lock_mode mode,
235 loff_t start, loff_t end)
236{
237 struct cl_object *obj = io->ci_obj;
238
239 return vvp_io_one_lock_index(env, io, enqflags, mode,
240 cl_index(obj, start), cl_index(obj, end));
241}
242
77605e41
JX
243static int vvp_io_write_iter_init(const struct lu_env *env,
244 const struct cl_io_slice *ios)
245{
e0a8144b 246 struct vvp_io *vio = cl2vvp_io(env, ios);
77605e41 247
e0a8144b
JH
248 cl_page_list_init(&vio->u.write.vui_queue);
249 vio->u.write.vui_written = 0;
250 vio->u.write.vui_from = 0;
251 vio->u.write.vui_to = PAGE_SIZE;
77605e41
JX
252
253 return 0;
254}
255
256static void vvp_io_write_iter_fini(const struct lu_env *env,
257 const struct cl_io_slice *ios)
258{
e0a8144b 259 struct vvp_io *vio = cl2vvp_io(env, ios);
77605e41 260
e0a8144b 261 LASSERT(vio->u.write.vui_queue.pl_nr == 0);
77605e41
JX
262}
263
d7e09d03
PT
264static int vvp_io_fault_iter_init(const struct lu_env *env,
265 const struct cl_io_slice *ios)
266{
267 struct vvp_io *vio = cl2vvp_io(env, ios);
8c7b0e1a 268 struct inode *inode = vvp_object_inode(ios->cis_obj);
d7e09d03 269
e0a8144b 270 LASSERT(inode == file_inode(vio->vui_fd->fd_file));
46c360f9 271 vio->u.fault.ft_mtime = inode->i_mtime.tv_sec;
d7e09d03
PT
272 return 0;
273}
274
275static void vvp_io_fini(const struct lu_env *env, const struct cl_io_slice *ios)
276{
277 struct cl_io *io = ios->cis_io;
278 struct cl_object *obj = io->ci_obj;
e0a8144b 279 struct vvp_io *vio = cl2vvp_io(env, ios);
1b1594da 280 struct inode *inode = vvp_object_inode(obj);
d7e09d03 281
8c7b0e1a 282 CLOBINVRNT(env, obj, vvp_object_invariant(obj));
d7e09d03 283
5ea17d6c
JL
284 CDEBUG(D_VFSTRACE, DFID
285 " ignore/verify layout %d/%d, layout version %d restore needed %d\n",
286 PFID(lu_object_fid(&obj->co_lu)),
287 io->ci_ignore_layout, io->ci_verify_layout,
e0a8144b 288 vio->vui_layout_gen, io->ci_restore_needed);
5ea17d6c
JL
289
290 if (io->ci_restore_needed == 1) {
291 int rc;
292
293 /* file was detected release, we need to restore it
294 * before finishing the io
295 */
1b1594da 296 rc = ll_layout_restore(inode, 0, OBD_OBJECT_EOF);
5ea17d6c 297 /* if restore registration failed, no restart,
c0894c6c
OD
298 * we will return -ENODATA
299 */
5ea17d6c
JL
300 /* The layout will change after restore, so we need to
301 * block on layout lock hold by the MDT
302 * as MDT will not send new layout in lvb (see LU-3124)
303 * we have to explicitly fetch it, all this will be done
304 * by ll_layout_refresh()
305 */
306 if (rc == 0) {
307 io->ci_restore_needed = 0;
308 io->ci_need_restart = 1;
309 io->ci_verify_layout = 1;
310 } else {
311 io->ci_restore_needed = 1;
312 io->ci_need_restart = 0;
313 io->ci_verify_layout = 0;
314 io->ci_result = rc;
315 }
316 }
d7e09d03
PT
317
318 if (!io->ci_ignore_layout && io->ci_verify_layout) {
319 __u32 gen = 0;
320
321 /* check layout version */
1b1594da 322 ll_layout_refresh(inode, &gen);
e0a8144b 323 io->ci_need_restart = vio->vui_layout_gen != gen;
5ea17d6c
JL
324 if (io->ci_need_restart) {
325 CDEBUG(D_VFSTRACE,
326 DFID" layout changed from %d to %d.\n",
327 PFID(lu_object_fid(&obj->co_lu)),
e0a8144b 328 vio->vui_layout_gen, gen);
c0894c6c 329 /* today successful restore is the only possible case */
5ea17d6c 330 /* restore was done, clear restoring state */
8c7b0e1a 331 ll_i2info(vvp_object_inode(obj))->lli_flags &=
5ea17d6c
JL
332 ~LLIF_FILE_RESTORING;
333 }
d7e09d03
PT
334 }
335}
336
337static void vvp_io_fault_fini(const struct lu_env *env,
338 const struct cl_io_slice *ios)
339{
340 struct cl_io *io = ios->cis_io;
341 struct cl_page *page = io->u.ci_fault.ft_page;
342
8c7b0e1a 343 CLOBINVRNT(env, io->ci_obj, vvp_object_invariant(io->ci_obj));
d7e09d03 344
6e16818b 345 if (page) {
d7e09d03
PT
346 lu_ref_del(&page->cp_reference, "fault", io);
347 cl_page_put(env, page);
348 io->u.ci_fault.ft_page = NULL;
349 }
350 vvp_io_fini(env, ios);
351}
352
2d95f10e 353static enum cl_lock_mode vvp_mode_from_vma(struct vm_area_struct *vma)
d7e09d03
PT
354{
355 /*
356 * we only want to hold PW locks if the mmap() can generate
357 * writes back to the file and that only happens in shared
358 * writable vmas
359 */
360 if ((vma->vm_flags & VM_SHARED) && (vma->vm_flags & VM_WRITE))
361 return CLM_WRITE;
362 return CLM_READ;
363}
364
365static int vvp_mmap_locks(const struct lu_env *env,
10cdef73 366 struct vvp_io *vio, struct cl_io *io)
d7e09d03 367{
9acc4500 368 struct vvp_thread_info *cti = vvp_env_info(env);
d7e09d03
PT
369 struct mm_struct *mm = current->mm;
370 struct vm_area_struct *vma;
9acc4500 371 struct cl_lock_descr *descr = &cti->vti_descr;
d7e09d03
PT
372 ldlm_policy_data_t policy;
373 unsigned long addr;
d7e09d03 374 ssize_t count;
06563b56 375 int result = 0;
b42b15fd
AV
376 struct iov_iter i;
377 struct iovec iov;
d7e09d03
PT
378
379 LASSERT(io->ci_type == CIT_READ || io->ci_type == CIT_WRITE);
380
e0a8144b 381 if (!vio->vui_iter) /* nfs or loop back device write */
0a3bdb00 382 return 0;
d7e09d03
PT
383
384 /* No MM (e.g. NFS)? No vmas too. */
6e16818b 385 if (!mm)
0a3bdb00 386 return 0;
d7e09d03 387
e0a8144b 388 iov_for_each(iov, i, *vio->vui_iter) {
b42b15fd
AV
389 addr = (unsigned long)iov.iov_base;
390 count = iov.iov_len;
d7e09d03
PT
391 if (count == 0)
392 continue;
393
616387e8
OD
394 count += addr & (~PAGE_MASK);
395 addr &= PAGE_MASK;
d7e09d03
PT
396
397 down_read(&mm->mmap_sem);
a58a38ac 398 while ((vma = our_vma(mm, addr, count)) != NULL) {
2a8a3597 399 struct inode *inode = file_inode(vma->vm_file);
d7e09d03
PT
400 int flags = CEF_MUST;
401
402 if (ll_file_nolock(vma->vm_file)) {
403 /*
06563b56 404 * For no lock case is not allowed for mmap
d7e09d03 405 */
06563b56
JX
406 result = -EINVAL;
407 break;
d7e09d03
PT
408 }
409
410 /*
411 * XXX: Required lock mode can be weakened: CIT_WRITE
412 * io only ever reads user level buffer, and CIT_READ
413 * only writes on it.
414 */
415 policy_from_vma(&policy, vma, addr, count);
416 descr->cld_mode = vvp_mode_from_vma(vma);
417 descr->cld_obj = ll_i2info(inode)->lli_clob;
418 descr->cld_start = cl_index(descr->cld_obj,
419 policy.l_extent.start);
420 descr->cld_end = cl_index(descr->cld_obj,
421 policy.l_extent.end);
422 descr->cld_enq_flags = flags;
423 result = cl_io_lock_alloc_add(env, io, descr);
424
425 CDEBUG(D_VFSTRACE, "lock: %d: [%lu, %lu]\n",
426 descr->cld_mode, descr->cld_start,
427 descr->cld_end);
428
06563b56
JX
429 if (result < 0)
430 break;
d7e09d03
PT
431
432 if (vma->vm_end - addr >= count)
433 break;
434
435 count -= vma->vm_end - addr;
436 addr = vma->vm_end;
437 }
438 up_read(&mm->mmap_sem);
06563b56
JX
439 if (result < 0)
440 break;
d7e09d03 441 }
06563b56 442 return result;
d7e09d03
PT
443}
444
fee6eb50
JH
445static void vvp_io_advance(const struct lu_env *env,
446 const struct cl_io_slice *ios,
447 size_t nob)
448{
fee6eb50 449 struct cl_object *obj = ios->cis_io->ci_obj;
82c156f8 450 struct vvp_io *vio = cl2vvp_io(env, ios);
fee6eb50
JH
451 CLOBINVRNT(env, obj, vvp_object_invariant(obj));
452
fee6eb50
JH
453 iov_iter_reexpand(vio->vui_iter, vio->vui_tot_count -= nob);
454}
455
456static void vvp_io_update_iov(const struct lu_env *env,
457 struct vvp_io *vio, struct cl_io *io)
458{
459 size_t size = io->u.ci_rw.crw_count;
460
82c156f8 461 if (!vio->vui_iter)
fee6eb50
JH
462 return;
463
464 iov_iter_truncate(vio->vui_iter, size);
465}
466
d7e09d03
PT
467static int vvp_io_rw_lock(const struct lu_env *env, struct cl_io *io,
468 enum cl_lock_mode mode, loff_t start, loff_t end)
469{
e0a8144b 470 struct vvp_io *vio = vvp_env_io(env);
d7e09d03
PT
471 int result;
472 int ast_flags = 0;
473
474 LASSERT(io->ci_type == CIT_READ || io->ci_type == CIT_WRITE);
d7e09d03 475
e0a8144b 476 vvp_io_update_iov(env, vio, io);
d7e09d03
PT
477
478 if (io->u.ci_rw.crw_nonblock)
479 ast_flags |= CEF_NONBLOCK;
e0a8144b 480 result = vvp_mmap_locks(env, vio, io);
d7e09d03 481 if (result == 0)
10cdef73 482 result = vvp_io_one_lock(env, io, ast_flags, mode, start, end);
0a3bdb00 483 return result;
d7e09d03
PT
484}
485
486static int vvp_io_read_lock(const struct lu_env *env,
487 const struct cl_io_slice *ios)
488{
4c309612
JX
489 struct cl_io *io = ios->cis_io;
490 struct cl_io_rw_common *rd = &io->u.ci_rd.rd;
d7e09d03
PT
491 int result;
492
4c309612
JX
493 result = vvp_io_rw_lock(env, io, CLM_READ, rd->crw_pos,
494 rd->crw_pos + rd->crw_count - 1);
495
0a3bdb00 496 return result;
d7e09d03
PT
497}
498
499static int vvp_io_fault_lock(const struct lu_env *env,
500 const struct cl_io_slice *ios)
501{
502 struct cl_io *io = ios->cis_io;
503 struct vvp_io *vio = cl2vvp_io(env, ios);
504 /*
505 * XXX LDLM_FL_CBPENDING
506 */
10cdef73
JH
507 return vvp_io_one_lock_index(env,
508 io, 0,
509 vvp_mode_from_vma(vio->u.fault.ft_vma),
510 io->u.ci_fault.ft_index,
511 io->u.ci_fault.ft_index);
d7e09d03
PT
512}
513
514static int vvp_io_write_lock(const struct lu_env *env,
515 const struct cl_io_slice *ios)
516{
517 struct cl_io *io = ios->cis_io;
518 loff_t start;
519 loff_t end;
520
521 if (io->u.ci_wr.wr_append) {
522 start = 0;
523 end = OBD_OBJECT_EOF;
524 } else {
525 start = io->u.ci_wr.wr.crw_pos;
526 end = start + io->u.ci_wr.wr.crw_count - 1;
527 }
528 return vvp_io_rw_lock(env, io, CLM_WRITE, start, end);
529}
530
531static int vvp_io_setattr_iter_init(const struct lu_env *env,
532 const struct cl_io_slice *ios)
533{
534 return 0;
535}
536
537/**
e0a8144b 538 * Implementation of cl_io_operations::vio_lock() method for CIT_SETATTR io.
d7e09d03
PT
539 *
540 * Handles "lockless io" mode when extent locking is done by server.
541 */
542static int vvp_io_setattr_lock(const struct lu_env *env,
543 const struct cl_io_slice *ios)
544{
d7e09d03
PT
545 struct cl_io *io = ios->cis_io;
546 __u64 new_size;
547 __u32 enqflags = 0;
548
549 if (cl_io_is_trunc(io)) {
550 new_size = io->u.ci_setattr.sa_attr.lvb_size;
551 if (new_size == 0)
552 enqflags = CEF_DISCARD_DATA;
553 } else {
554 if ((io->u.ci_setattr.sa_attr.lvb_mtime >=
555 io->u.ci_setattr.sa_attr.lvb_ctime) ||
556 (io->u.ci_setattr.sa_attr.lvb_atime >=
557 io->u.ci_setattr.sa_attr.lvb_ctime))
558 return 0;
559 new_size = 0;
560 }
e0a8144b 561
10cdef73 562 return vvp_io_one_lock(env, io, enqflags, CLM_WRITE,
d7e09d03
PT
563 new_size, OBD_OBJECT_EOF);
564}
565
566static int vvp_do_vmtruncate(struct inode *inode, size_t size)
567{
568 int result;
569 /*
570 * Only ll_inode_size_lock is taken at this level.
571 */
572 ll_inode_size_lock(inode);
573 result = inode_newsize_ok(inode, size);
574 if (result < 0) {
575 ll_inode_size_unlock(inode);
576 return result;
577 }
578 truncate_setsize(inode, size);
579 ll_inode_size_unlock(inode);
580 return result;
581}
582
583static int vvp_io_setattr_trunc(const struct lu_env *env,
584 const struct cl_io_slice *ios,
585 struct inode *inode, loff_t size)
586{
587 inode_dio_wait(inode);
588 return 0;
589}
590
591static int vvp_io_setattr_time(const struct lu_env *env,
592 const struct cl_io_slice *ios)
593{
594 struct cl_io *io = ios->cis_io;
595 struct cl_object *obj = io->ci_obj;
9acc4500 596 struct cl_attr *attr = vvp_env_thread_attr(env);
d7e09d03
PT
597 int result;
598 unsigned valid = CAT_CTIME;
599
600 cl_object_attr_lock(obj);
601 attr->cat_ctime = io->u.ci_setattr.sa_attr.lvb_ctime;
602 if (io->u.ci_setattr.sa_valid & ATTR_ATIME_SET) {
603 attr->cat_atime = io->u.ci_setattr.sa_attr.lvb_atime;
604 valid |= CAT_ATIME;
605 }
606 if (io->u.ci_setattr.sa_valid & ATTR_MTIME_SET) {
607 attr->cat_mtime = io->u.ci_setattr.sa_attr.lvb_mtime;
608 valid |= CAT_MTIME;
609 }
96234ec5 610 result = cl_object_attr_update(env, obj, attr, valid);
d7e09d03
PT
611 cl_object_attr_unlock(obj);
612
613 return result;
614}
615
616static int vvp_io_setattr_start(const struct lu_env *env,
617 const struct cl_io_slice *ios)
618{
619 struct cl_io *io = ios->cis_io;
8c7b0e1a 620 struct inode *inode = vvp_object_inode(io->ci_obj);
5dd16419 621 int result = 0;
d7e09d03 622
5955102c 623 inode_lock(inode);
d7e09d03 624 if (cl_io_is_trunc(io))
5dd16419
JX
625 result = vvp_io_setattr_trunc(env, ios, inode,
626 io->u.ci_setattr.sa_attr.lvb_size);
627 if (result == 0)
628 result = vvp_io_setattr_time(env, ios);
629 return result;
d7e09d03
PT
630}
631
632static void vvp_io_setattr_end(const struct lu_env *env,
633 const struct cl_io_slice *ios)
634{
635 struct cl_io *io = ios->cis_io;
8c7b0e1a 636 struct inode *inode = vvp_object_inode(io->ci_obj);
d7e09d03 637
81e053c7 638 if (cl_io_is_trunc(io))
d7e09d03 639 /* Truncate in memory pages - they must be clean pages
c0894c6c
OD
640 * because osc has already notified to destroy osc_extents.
641 */
d7e09d03 642 vvp_do_vmtruncate(inode, io->u.ci_setattr.sa_attr.lvb_size);
81e053c7 643
5955102c 644 inode_unlock(inode);
d7e09d03
PT
645}
646
647static void vvp_io_setattr_fini(const struct lu_env *env,
648 const struct cl_io_slice *ios)
649{
650 vvp_io_fini(env, ios);
651}
652
d7e09d03
PT
653static int vvp_io_read_start(const struct lu_env *env,
654 const struct cl_io_slice *ios)
655{
656 struct vvp_io *vio = cl2vvp_io(env, ios);
d7e09d03
PT
657 struct cl_io *io = ios->cis_io;
658 struct cl_object *obj = io->ci_obj;
8c7b0e1a 659 struct inode *inode = vvp_object_inode(obj);
e0a8144b 660 struct file *file = vio->vui_fd->fd_file;
d7e09d03
PT
661
662 int result;
663 loff_t pos = io->u.ci_rd.rd.crw_pos;
664 long cnt = io->u.ci_rd.rd.crw_count;
e0a8144b 665 long tot = vio->vui_tot_count;
d7e09d03
PT
666 int exceed = 0;
667
8c7b0e1a 668 CLOBINVRNT(env, obj, vvp_object_invariant(obj));
d7e09d03
PT
669
670 CDEBUG(D_VFSTRACE, "read: -> [%lli, %lli)\n", pos, pos + cnt);
671
672 if (!can_populate_pages(env, io, inode))
673 return 0;
674
fee6eb50 675 result = vvp_prep_size(env, obj, io, pos, tot, &exceed);
d7e09d03
PT
676 if (result != 0)
677 return result;
678 else if (exceed != 0)
679 goto out;
680
681 LU_OBJECT_HEADER(D_INODE, env, &obj->co_lu,
e15ba45d
OD
682 "Read ino %lu, %lu bytes, offset %lld, size %llu\n",
683 inode->i_ino, cnt, pos, i_size_read(inode));
d7e09d03
PT
684
685 /* turn off the kernel's read-ahead */
e0a8144b 686 vio->vui_fd->fd_file->f_ra.ra_pages = 0;
d7e09d03
PT
687
688 /* initialize read-ahead window once per syscall */
e0a8144b
JH
689 if (!vio->vui_ra_valid) {
690 vio->vui_ra_valid = true;
691 vio->vui_ra_start = cl_index(obj, pos);
5f479924 692 vio->vui_ra_count = cl_index(obj, tot + PAGE_SIZE - 1);
bc4320a9 693 ll_ras_enter(file);
d7e09d03
PT
694 }
695
696 /* BUG: 5972 */
697 file_accessed(file);
82c156f8
AV
698 LASSERT(vio->vui_iocb->ki_pos == pos);
699 result = generic_file_read_iter(vio->vui_iocb, vio->vui_iter);
d7e09d03
PT
700
701out:
702 if (result >= 0) {
703 if (result < cnt)
704 io->ci_continue = 0;
705 io->ci_nob += result;
706 ll_rw_stats_tally(ll_i2sbi(inode), current->pid,
e0a8144b 707 vio->vui_fd, pos, result, READ);
d7e09d03
PT
708 result = 0;
709 }
710 return result;
711}
712
77605e41
JX
713static int vvp_io_commit_sync(const struct lu_env *env, struct cl_io *io,
714 struct cl_page_list *plist, int from, int to)
715{
716 struct cl_2queue *queue = &io->ci_queue;
717 struct cl_page *page;
718 unsigned int bytes = 0;
719 int rc = 0;
720
721 if (plist->pl_nr == 0)
722 return 0;
723
c11599b8 724 if (from > 0 || to != PAGE_SIZE) {
77605e41 725 page = cl_page_list_first(plist);
c11599b8
JX
726 if (plist->pl_nr == 1) {
727 cl_page_clip(env, page, from, to);
c11599b8 728 } else {
902a34ad
LD
729 if (from > 0)
730 cl_page_clip(env, page, from, PAGE_SIZE);
731 if (to != PAGE_SIZE) {
732 page = cl_page_list_last(plist);
733 cl_page_clip(env, page, 0, to);
734 }
735 }
c11599b8 736 }
77605e41
JX
737
738 cl_2queue_init(queue);
739 cl_page_list_splice(plist, &queue->c2_qin);
740 rc = cl_io_submit_sync(env, io, CRT_WRITE, queue, 0);
741
742 /* plist is not sorted any more */
743 cl_page_list_splice(&queue->c2_qin, plist);
744 cl_page_list_splice(&queue->c2_qout, plist);
745 cl_2queue_fini(env, queue);
746
747 if (rc == 0) {
748 /* calculate bytes */
749 bytes = plist->pl_nr << PAGE_SHIFT;
750 bytes -= from + PAGE_SIZE - to;
751
752 while (plist->pl_nr > 0) {
753 page = cl_page_list_first(plist);
754 cl_page_list_del(env, plist, page);
755
756 cl_page_clip(env, page, 0, PAGE_SIZE);
757
7addf402 758 SetPageUptodate(cl_page_vmpage(page));
77605e41
JX
759 cl_page_disown(env, io, page);
760
761 /* held in ll_cl_init() */
762 lu_ref_del(&page->cp_reference, "cl_io", io);
763 cl_page_put(env, page);
764 }
765 }
766
767 return bytes > 0 ? bytes : rc;
768}
769
770static void write_commit_callback(const struct lu_env *env, struct cl_io *io,
771 struct cl_page *page)
772{
3a52f803 773 struct vvp_page *vpg;
7addf402
JX
774 struct page *vmpage = page->cp_vmpage;
775 struct cl_object *clob = cl_io_top(io)->ci_obj;
77605e41
JX
776
777 SetPageUptodate(vmpage);
778 set_page_dirty(vmpage);
7addf402 779
3a52f803
JH
780 vpg = cl2vvp_page(cl_object_page_slice(clob, page));
781 vvp_write_pending(cl2vvp(clob), vpg);
77605e41
JX
782
783 cl_page_disown(env, io, page);
784
785 /* held in ll_cl_init() */
058a6a42 786 lu_ref_del(&page->cp_reference, "cl_io", cl_io_top(io));
77605e41
JX
787 cl_page_put(env, page);
788}
789
790/* make sure the page list is contiguous */
7addf402
JX
791static bool page_list_sanity_check(struct cl_object *obj,
792 struct cl_page_list *plist)
77605e41
JX
793{
794 struct cl_page *page;
795 pgoff_t index = CL_PAGE_EOF;
796
797 cl_page_list_for_each(page, plist) {
3a52f803 798 struct vvp_page *vpg = cl_object_page_slice(obj, page);
7addf402 799
77605e41 800 if (index == CL_PAGE_EOF) {
3a52f803 801 index = vvp_index(vpg);
77605e41
JX
802 continue;
803 }
804
805 ++index;
3a52f803 806 if (index == vvp_index(vpg))
77605e41
JX
807 continue;
808
809 return false;
810 }
811 return true;
812}
813
814/* Return how many bytes have queued or written */
815int vvp_io_write_commit(const struct lu_env *env, struct cl_io *io)
816{
817 struct cl_object *obj = io->ci_obj;
8c7b0e1a 818 struct inode *inode = vvp_object_inode(obj);
e0a8144b
JH
819 struct vvp_io *vio = vvp_env_io(env);
820 struct cl_page_list *queue = &vio->u.write.vui_queue;
77605e41
JX
821 struct cl_page *page;
822 int rc = 0;
823 int bytes = 0;
e0a8144b 824 unsigned int npages = vio->u.write.vui_queue.pl_nr;
77605e41
JX
825
826 if (npages == 0)
827 return 0;
828
829 CDEBUG(D_VFSTRACE, "commit async pages: %d, from %d, to %d\n",
e0a8144b 830 npages, vio->u.write.vui_from, vio->u.write.vui_to);
77605e41 831
7addf402 832 LASSERT(page_list_sanity_check(obj, queue));
77605e41
JX
833
834 /* submit IO with async write */
835 rc = cl_io_commit_async(env, io, queue,
e0a8144b 836 vio->u.write.vui_from, vio->u.write.vui_to,
77605e41
JX
837 write_commit_callback);
838 npages -= queue->pl_nr; /* already committed pages */
839 if (npages > 0) {
840 /* calculate how many bytes were written */
841 bytes = npages << PAGE_SHIFT;
842
843 /* first page */
e0a8144b 844 bytes -= vio->u.write.vui_from;
77605e41 845 if (queue->pl_nr == 0) /* last page */
e0a8144b 846 bytes -= PAGE_SIZE - vio->u.write.vui_to;
77605e41
JX
847 LASSERTF(bytes > 0, "bytes = %d, pages = %d\n", bytes, npages);
848
e0a8144b 849 vio->u.write.vui_written += bytes;
77605e41
JX
850
851 CDEBUG(D_VFSTRACE, "Committed %d pages %d bytes, tot: %ld\n",
e0a8144b 852 npages, bytes, vio->u.write.vui_written);
77605e41
JX
853
854 /* the first page must have been written. */
e0a8144b 855 vio->u.write.vui_from = 0;
77605e41 856 }
7addf402 857 LASSERT(page_list_sanity_check(obj, queue));
77605e41
JX
858 LASSERT(ergo(rc == 0, queue->pl_nr == 0));
859
860 /* out of quota, try sync write */
861 if (rc == -EDQUOT && !cl_io_is_mkwrite(io)) {
862 rc = vvp_io_commit_sync(env, io, queue,
e0a8144b
JH
863 vio->u.write.vui_from,
864 vio->u.write.vui_to);
77605e41 865 if (rc > 0) {
e0a8144b 866 vio->u.write.vui_written += rc;
77605e41
JX
867 rc = 0;
868 }
869 }
870
871 /* update inode size */
d2995737 872 ll_merge_attr(env, inode);
77605e41
JX
873
874 /* Now the pages in queue were failed to commit, discard them
875 * unless they were dirtied before.
876 */
877 while (queue->pl_nr > 0) {
878 page = cl_page_list_first(queue);
879 cl_page_list_del(env, queue, page);
880
7addf402 881 if (!PageDirty(cl_page_vmpage(page)))
77605e41
JX
882 cl_page_discard(env, io, page);
883
884 cl_page_disown(env, io, page);
885
886 /* held in ll_cl_init() */
887 lu_ref_del(&page->cp_reference, "cl_io", io);
888 cl_page_put(env, page);
889 }
890 cl_page_list_fini(env, queue);
891
892 return rc;
893}
894
d7e09d03
PT
895static int vvp_io_write_start(const struct lu_env *env,
896 const struct cl_io_slice *ios)
897{
e0a8144b 898 struct vvp_io *vio = cl2vvp_io(env, ios);
d7e09d03
PT
899 struct cl_io *io = ios->cis_io;
900 struct cl_object *obj = io->ci_obj;
8c7b0e1a 901 struct inode *inode = vvp_object_inode(obj);
d7e09d03
PT
902 ssize_t result = 0;
903 loff_t pos = io->u.ci_wr.wr.crw_pos;
904 size_t cnt = io->u.ci_wr.wr.crw_count;
905
d7e09d03
PT
906 if (!can_populate_pages(env, io, inode))
907 return 0;
908
909 if (cl_io_is_append(io)) {
910 /*
911 * PARALLEL IO This has to be changed for parallel IO doing
912 * out-of-order writes.
913 */
06563b56 914 ll_merge_attr(env, inode);
7551b8b5
NC
915 pos = i_size_read(inode);
916 io->u.ci_wr.wr.crw_pos = pos;
e0a8144b 917 vio->vui_iocb->ki_pos = pos;
74c0da19 918 } else {
e0a8144b 919 LASSERT(vio->vui_iocb->ki_pos == pos);
d7e09d03
PT
920 }
921
922 CDEBUG(D_VFSTRACE, "write: [%lli, %lli)\n", pos, pos + (long long)cnt);
923
5d770fe8
PS
924 if (!vio->vui_iter) {
925 /* from a temp io in ll_cl_init(). */
d7e09d03 926 result = 0;
5d770fe8
PS
927 } else {
928 /*
929 * When using the locked AIO function (generic_file_aio_write())
930 * testing has shown the inode mutex to be a limiting factor
931 * with multi-threaded single shared file performance. To get
932 * around this, we now use the lockless version. To maintain
933 * consistency, proper locking to protect against writes,
934 * trucates, etc. is handled in the higher layers of lustre.
935 */
936 bool lock_node = !IS_NOSEC(inode);
937
938 if (lock_node)
939 inode_lock(inode);
940 result = __generic_file_write_iter(vio->vui_iocb,
941 vio->vui_iter);
942 if (lock_node)
943 inode_unlock(inode);
944
945 if (result > 0 || result == -EIOCBQUEUED)
946 result = generic_write_sync(vio->vui_iocb, result);
947 }
b42b15fd 948
d7e09d03 949 if (result > 0) {
77605e41 950 result = vvp_io_write_commit(env, io);
e0a8144b
JH
951 if (vio->u.write.vui_written > 0) {
952 result = vio->u.write.vui_written;
77605e41
JX
953 io->ci_nob += result;
954
955 CDEBUG(D_VFSTRACE, "write: nob %zd, result: %zd\n",
956 io->ci_nob, result);
957 }
958 }
959 if (result > 0) {
960 struct ll_inode_info *lli = ll_i2info(inode);
961
962 spin_lock(&lli->lli_lock);
963 lli->lli_flags |= LLIF_DATA_MODIFIED;
964 spin_unlock(&lli->lli_lock);
965
d7e09d03
PT
966 if (result < cnt)
967 io->ci_continue = 0;
d7e09d03 968 ll_rw_stats_tally(ll_i2sbi(inode), current->pid,
e0a8144b 969 vio->vui_fd, pos, result, WRITE);
d7e09d03
PT
970 result = 0;
971 }
0a3bdb00 972 return result;
d7e09d03
PT
973}
974
975static int vvp_io_kernel_fault(struct vvp_fault_io *cfio)
976{
10cdef73 977 struct vm_fault *vmf = cfio->ft_vmf;
d7e09d03 978
10cdef73
JH
979 cfio->ft_flags = filemap_fault(cfio->ft_vma, vmf);
980 cfio->ft_flags_valid = 1;
d7e09d03
PT
981
982 if (vmf->page) {
aa3bee0d
GKH
983 CDEBUG(D_PAGE,
984 "page %p map %p index %lu flags %lx count %u priv %0lx: got addr %p type NOPAGE\n",
985 vmf->page, vmf->page->mapping, vmf->page->index,
986 (long)vmf->page->flags, page_count(vmf->page),
987 page_private(vmf->page), vmf->virtual_address);
10cdef73 988 if (unlikely(!(cfio->ft_flags & VM_FAULT_LOCKED))) {
d7e09d03 989 lock_page(vmf->page);
10cdef73 990 cfio->ft_flags |= VM_FAULT_LOCKED;
d7e09d03
PT
991 }
992
993 cfio->ft_vmpage = vmf->page;
994 return 0;
995 }
996
10cdef73 997 if (cfio->ft_flags & (VM_FAULT_SIGBUS | VM_FAULT_SIGSEGV)) {
d7e09d03
PT
998 CDEBUG(D_PAGE, "got addr %p - SIGBUS\n", vmf->virtual_address);
999 return -EFAULT;
1000 }
1001
10cdef73 1002 if (cfio->ft_flags & VM_FAULT_OOM) {
d7e09d03
PT
1003 CDEBUG(D_PAGE, "got addr %p - OOM\n", vmf->virtual_address);
1004 return -ENOMEM;
1005 }
1006
10cdef73 1007 if (cfio->ft_flags & VM_FAULT_RETRY)
d7e09d03
PT
1008 return -EAGAIN;
1009
10cdef73 1010 CERROR("Unknown error in page fault %d!\n", cfio->ft_flags);
d7e09d03
PT
1011 return -EINVAL;
1012}
1013
77605e41
JX
1014static void mkwrite_commit_callback(const struct lu_env *env, struct cl_io *io,
1015 struct cl_page *page)
1016{
3a52f803 1017 struct vvp_page *vpg;
7addf402 1018 struct cl_object *clob = cl_io_top(io)->ci_obj;
77605e41 1019
7addf402 1020 set_page_dirty(page->cp_vmpage);
77605e41 1021
3a52f803
JH
1022 vpg = cl2vvp_page(cl_object_page_slice(clob, page));
1023 vvp_write_pending(cl2vvp(clob), vpg);
77605e41
JX
1024}
1025
d7e09d03
PT
1026static int vvp_io_fault_start(const struct lu_env *env,
1027 const struct cl_io_slice *ios)
1028{
1029 struct vvp_io *vio = cl2vvp_io(env, ios);
1030 struct cl_io *io = ios->cis_io;
1031 struct cl_object *obj = io->ci_obj;
8c7b0e1a 1032 struct inode *inode = vvp_object_inode(obj);
d7e09d03
PT
1033 struct cl_fault_io *fio = &io->u.ci_fault;
1034 struct vvp_fault_io *cfio = &vio->u.fault;
1035 loff_t offset;
1036 int result = 0;
1037 struct page *vmpage = NULL;
1038 struct cl_page *page;
1039 loff_t size;
77605e41 1040 pgoff_t last_index;
d7e09d03
PT
1041
1042 if (fio->ft_executable &&
46c360f9 1043 inode->i_mtime.tv_sec != vio->u.fault.ft_mtime)
d7e09d03
PT
1044 CWARN("binary "DFID
1045 " changed while waiting for the page fault lock\n",
1046 PFID(lu_object_fid(&obj->co_lu)));
1047
1048 /* offset of the last byte on the page */
1049 offset = cl_offset(obj, fio->ft_index + 1) - 1;
1050 LASSERT(cl_index(obj, offset) == fio->ft_index);
fee6eb50 1051 result = vvp_prep_size(env, obj, io, 0, offset + 1, NULL);
d7e09d03
PT
1052 if (result != 0)
1053 return result;
1054
1055 /* must return locked page */
1056 if (fio->ft_mkwrite) {
6e16818b 1057 LASSERT(cfio->ft_vmpage);
d7e09d03
PT
1058 lock_page(cfio->ft_vmpage);
1059 } else {
1060 result = vvp_io_kernel_fault(cfio);
1061 if (result != 0)
1062 return result;
1063 }
1064
1065 vmpage = cfio->ft_vmpage;
1066 LASSERT(PageLocked(vmpage));
1067
1068 if (OBD_FAIL_CHECK(OBD_FAIL_LLITE_FAULT_TRUNC_RACE))
1069 ll_invalidate_page(vmpage);
1070
1071 size = i_size_read(inode);
1072 /* Though we have already held a cl_lock upon this page, but
c0894c6c
OD
1073 * it still can be truncated locally.
1074 */
d7e09d03
PT
1075 if (unlikely((vmpage->mapping != inode->i_mapping) ||
1076 (page_offset(vmpage) > size))) {
1077 CDEBUG(D_PAGE, "llite: fault and truncate race happened!\n");
1078
1079 /* return +1 to stop cl_io_loop() and ll_fault() will catch
c0894c6c
OD
1080 * and retry.
1081 */
b2952d62 1082 result = 1;
34e1f2bb 1083 goto out;
d7e09d03
PT
1084 }
1085
77605e41
JX
1086 last_index = cl_index(obj, size - 1);
1087
557732ad 1088 if (fio->ft_mkwrite) {
d7e09d03
PT
1089 /*
1090 * Capture the size while holding the lli_trunc_sem from above
1091 * we want to make sure that we complete the mkwrite action
1092 * while holding this lock. We need to make sure that we are
1093 * not past the end of the file.
1094 */
d7e09d03
PT
1095 if (last_index < fio->ft_index) {
1096 CDEBUG(D_PAGE,
2d00bd17
JP
1097 "llite: mkwrite and truncate race happened: %p: 0x%lx 0x%lx\n",
1098 vmpage->mapping, fio->ft_index, last_index);
d7e09d03
PT
1099 /*
1100 * We need to return if we are
1101 * passed the end of the file. This will propagate
1102 * up the call stack to ll_page_mkwrite where
1103 * we will return VM_FAULT_NOPAGE. Any non-negative
1104 * value returned here will be silently
1105 * converted to 0. If the vmpage->mapping is null
1106 * the error code would be converted back to ENODATA
1107 * in ll_page_mkwrite0. Thus we return -ENODATA
1108 * to handle both cases
1109 */
34e1f2bb
JL
1110 result = -ENODATA;
1111 goto out;
d7e09d03
PT
1112 }
1113 }
1114
1115 page = cl_page_find(env, obj, fio->ft_index, vmpage, CPT_CACHEABLE);
34e1f2bb
JL
1116 if (IS_ERR(page)) {
1117 result = PTR_ERR(page);
1118 goto out;
1119 }
d7e09d03
PT
1120
1121 /* if page is going to be written, we should add this page into cache
c0894c6c
OD
1122 * earlier.
1123 */
d7e09d03
PT
1124 if (fio->ft_mkwrite) {
1125 wait_on_page_writeback(vmpage);
77605e41
JX
1126 if (!PageDirty(vmpage)) {
1127 struct cl_page_list *plist = &io->ci_queue.c2_qin;
3a52f803 1128 struct vvp_page *vpg = cl_object_page_slice(obj, page);
77605e41 1129 int to = PAGE_SIZE;
d7e09d03
PT
1130
1131 /* vvp_page_assume() calls wait_on_page_writeback(). */
1132 cl_page_assume(env, io, page);
1133
77605e41
JX
1134 cl_page_list_init(plist);
1135 cl_page_list_add(plist, page);
1136
1137 /* size fixup */
3a52f803 1138 if (last_index == vvp_index(vpg))
77605e41 1139 to = size & ~PAGE_MASK;
d7e09d03
PT
1140
1141 /* Do not set Dirty bit here so that in case IO is
1142 * started before the page is really made dirty, we
c0894c6c
OD
1143 * still have chance to detect it.
1144 */
77605e41
JX
1145 result = cl_io_commit_async(env, io, plist, 0, to,
1146 mkwrite_commit_callback);
d7e09d03 1147 LASSERT(cl_page_is_owned(page, io));
77605e41 1148 cl_page_list_fini(env, plist);
d7e09d03
PT
1149
1150 vmpage = NULL;
1151 if (result < 0) {
d7e09d03
PT
1152 cl_page_discard(env, io, page);
1153 cl_page_disown(env, io, page);
1154
1155 cl_page_put(env, page);
1156
1157 /* we're in big trouble, what can we do now? */
1158 if (result == -EDQUOT)
1159 result = -ENOSPC;
34e1f2bb 1160 goto out;
da5ecb4d 1161 } else {
d7e09d03 1162 cl_page_disown(env, io, page);
da5ecb4d 1163 }
d7e09d03
PT
1164 }
1165 }
1166
d7e09d03
PT
1167 /*
1168 * The ft_index is only used in the case of
1169 * a mkwrite action. We need to check
1170 * our assertions are correct, since
1171 * we should have caught this above
1172 */
77605e41
JX
1173 LASSERT(!fio->ft_mkwrite || fio->ft_index <= last_index);
1174 if (fio->ft_index == last_index)
d7e09d03
PT
1175 /*
1176 * Last page is mapped partially.
1177 */
1178 fio->ft_nob = size - cl_offset(obj, fio->ft_index);
1179 else
1180 fio->ft_nob = cl_page_size(obj);
1181
1182 lu_ref_add(&page->cp_reference, "fault", io);
1183 fio->ft_page = page;
d7e09d03
PT
1184
1185out:
1186 /* return unlocked vmpage to avoid deadlocking */
6e16818b 1187 if (vmpage)
d7e09d03 1188 unlock_page(vmpage);
10cdef73
JH
1189
1190 cfio->ft_flags &= ~VM_FAULT_LOCKED;
1191
d7e09d03
PT
1192 return result;
1193}
1194
1195static int vvp_io_fsync_start(const struct lu_env *env,
1196 const struct cl_io_slice *ios)
1197{
1198 /* we should mark TOWRITE bit to each dirty page in radix tree to
1199 * verify pages have been written, but this is difficult because of
c0894c6c
OD
1200 * race.
1201 */
d7e09d03
PT
1202 return 0;
1203}
1204
1205static int vvp_io_read_page(const struct lu_env *env,
1206 const struct cl_io_slice *ios,
1207 const struct cl_page_slice *slice)
1208{
1209 struct cl_io *io = ios->cis_io;
3a52f803 1210 struct vvp_page *vpg = cl2vvp_page(slice);
d7e09d03 1211 struct cl_page *page = slice->cpl_page;
8c7b0e1a 1212 struct inode *inode = vvp_object_inode(slice->cpl_obj);
d7e09d03 1213 struct ll_sb_info *sbi = ll_i2sbi(inode);
e0a8144b 1214 struct ll_file_data *fd = cl2vvp_io(env, ios)->vui_fd;
d7e09d03 1215 struct ll_readahead_state *ras = &fd->fd_ras;
d7e09d03 1216 struct cl_2queue *queue = &io->ci_queue;
d7e09d03 1217
d7e09d03
PT
1218 if (sbi->ll_ra_info.ra_max_pages_per_file &&
1219 sbi->ll_ra_info.ra_max_pages)
3a52f803
JH
1220 ras_update(sbi, inode, ras, vvp_index(vpg),
1221 vpg->vpg_defer_uptodate);
d7e09d03 1222
3a52f803
JH
1223 if (vpg->vpg_defer_uptodate) {
1224 vpg->vpg_ra_used = 1;
d7e09d03
PT
1225 cl_page_export(env, page, 1);
1226 }
1227 /*
1228 * Add page into the queue even when it is marked uptodate above.
1229 * this will unlock it automatically as part of cl_page_list_disown().
1230 */
fd7444fe 1231
53f1a127 1232 cl_page_list_add(&queue->c2_qin, page);
d7e09d03
PT
1233 if (sbi->ll_ra_info.ra_max_pages_per_file &&
1234 sbi->ll_ra_info.ra_max_pages)
fd7444fe 1235 ll_readahead(env, io, &queue->c2_qin, ras,
3a52f803 1236 vpg->vpg_defer_uptodate);
d7e09d03 1237
0a3bdb00 1238 return 0;
d7e09d03
PT
1239}
1240
e3c9078a 1241static void vvp_io_end(const struct lu_env *env, const struct cl_io_slice *ios)
fee6eb50
JH
1242{
1243 CLOBINVRNT(env, ios->cis_io->ci_obj,
1244 vvp_object_invariant(ios->cis_io->ci_obj));
1245}
1246
d7e09d03
PT
1247static const struct cl_io_operations vvp_io_ops = {
1248 .op = {
1249 [CIT_READ] = {
bc4320a9 1250 .cio_fini = vvp_io_fini,
d7e09d03
PT
1251 .cio_lock = vvp_io_read_lock,
1252 .cio_start = vvp_io_read_start,
10cdef73 1253 .cio_advance = vvp_io_advance,
d7e09d03
PT
1254 },
1255 [CIT_WRITE] = {
1256 .cio_fini = vvp_io_fini,
77605e41
JX
1257 .cio_iter_init = vvp_io_write_iter_init,
1258 .cio_iter_fini = vvp_io_write_iter_fini,
d7e09d03
PT
1259 .cio_lock = vvp_io_write_lock,
1260 .cio_start = vvp_io_write_start,
10cdef73 1261 .cio_advance = vvp_io_advance,
d7e09d03
PT
1262 },
1263 [CIT_SETATTR] = {
1264 .cio_fini = vvp_io_setattr_fini,
1265 .cio_iter_init = vvp_io_setattr_iter_init,
1266 .cio_lock = vvp_io_setattr_lock,
1267 .cio_start = vvp_io_setattr_start,
1268 .cio_end = vvp_io_setattr_end
1269 },
1270 [CIT_FAULT] = {
1271 .cio_fini = vvp_io_fault_fini,
1272 .cio_iter_init = vvp_io_fault_iter_init,
1273 .cio_lock = vvp_io_fault_lock,
1274 .cio_start = vvp_io_fault_start,
10cdef73 1275 .cio_end = vvp_io_end,
d7e09d03
PT
1276 },
1277 [CIT_FSYNC] = {
1278 .cio_start = vvp_io_fsync_start,
1279 .cio_fini = vvp_io_fini
1280 },
1281 [CIT_MISC] = {
1282 .cio_fini = vvp_io_fini
1283 }
1284 },
1285 .cio_read_page = vvp_io_read_page,
d7e09d03
PT
1286};
1287
1288int vvp_io_init(const struct lu_env *env, struct cl_object *obj,
1289 struct cl_io *io)
1290{
1291 struct vvp_io *vio = vvp_env_io(env);
8c7b0e1a 1292 struct inode *inode = vvp_object_inode(obj);
d7e09d03
PT
1293 int result;
1294
8c7b0e1a 1295 CLOBINVRNT(env, obj, vvp_object_invariant(obj));
d7e09d03 1296
5ea17d6c
JL
1297 CDEBUG(D_VFSTRACE, DFID
1298 " ignore/verify layout %d/%d, layout version %d restore needed %d\n",
1299 PFID(lu_object_fid(&obj->co_lu)),
1300 io->ci_ignore_layout, io->ci_verify_layout,
e0a8144b 1301 vio->vui_layout_gen, io->ci_restore_needed);
5ea17d6c 1302
e0a8144b
JH
1303 CL_IO_SLICE_CLEAN(vio, vui_cl);
1304 cl_io_slice_add(io, &vio->vui_cl, obj, &vvp_io_ops);
1305 vio->vui_ra_valid = false;
d7e09d03
PT
1306 result = 0;
1307 if (io->ci_type == CIT_READ || io->ci_type == CIT_WRITE) {
1308 size_t count;
1309 struct ll_inode_info *lli = ll_i2info(inode);
1310
1311 count = io->u.ci_rw.crw_count;
1312 /* "If nbyte is 0, read() will return 0 and have no other
c0894c6c
OD
1313 * results." -- Single Unix Spec
1314 */
d7e09d03
PT
1315 if (count == 0)
1316 result = 1;
b42b15fd 1317 else
e0a8144b 1318 vio->vui_tot_count = count;
b42b15fd 1319
d7e09d03
PT
1320 /* for read/write, we store the jobid in the inode, and
1321 * it'll be fetched by osc when building RPC.
1322 *
1323 * it's not accurate if the file is shared by different
1324 * jobs.
1325 */
1326 lustre_get_jobid(lli->lli_jobid);
1327 } else if (io->ci_type == CIT_SETATTR) {
1328 if (!cl_io_is_trunc(io))
1329 io->ci_lockreq = CILR_MANDATORY;
1330 }
1331
1332 /* ignore layout change for generic CIT_MISC but not for glimpse.
1333 * io context for glimpse must set ci_verify_layout to true,
c0894c6c
OD
1334 * see cl_glimpse_size0() for details.
1335 */
d7e09d03
PT
1336 if (io->ci_type == CIT_MISC && !io->ci_verify_layout)
1337 io->ci_ignore_layout = 1;
1338
1339 /* Enqueue layout lock and get layout version. We need to do this
1340 * even for operations requiring to open file, such as read and write,
c0894c6c
OD
1341 * because it might not grant layout lock in IT_OPEN.
1342 */
65fb55d1 1343 if (result == 0 && !io->ci_ignore_layout) {
e0a8144b 1344 result = ll_layout_refresh(inode, &vio->vui_layout_gen);
65fb55d1
NY
1345 if (result == -ENOENT)
1346 /* If the inode on MDS has been removed, but the objects
1347 * on OSTs haven't been destroyed (async unlink), layout
d0a0acc3 1348 * fetch will return -ENOENT, we'd ignore this error
c0894c6c
OD
1349 * and continue with dirty flush. LU-3230.
1350 */
65fb55d1
NY
1351 result = 0;
1352 if (result < 0)
1353 CERROR("%s: refresh file layout " DFID " error %d.\n",
e15ba45d
OD
1354 ll_get_fsname(inode->i_sb, NULL, 0),
1355 PFID(lu_object_fid(&obj->co_lu)), result);
65fb55d1 1356 }
d7e09d03 1357
0a3bdb00 1358 return result;
d7e09d03 1359}