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ocfs2: remove unnecessary else in ocfs2_set_acl()
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CommitLineData
ccd979bd
MF
1/* -*- mode: c; c-basic-offset: 8; -*-
2 * vim: noexpandtab sw=8 ts=8 sts=0:
3 *
4 * file.c
5 *
6 * File open, close, extend, truncate
7 *
8 * Copyright (C) 2002, 2004 Oracle. All rights reserved.
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public
12 * License as published by the Free Software Foundation; either
13 * version 2 of the License, or (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public
21 * License along with this program; if not, write to the
22 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23 * Boston, MA 021110-1307, USA.
24 */
25
16f7e0fe 26#include <linux/capability.h>
ccd979bd
MF
27#include <linux/fs.h>
28#include <linux/types.h>
29#include <linux/slab.h>
30#include <linux/highmem.h>
31#include <linux/pagemap.h>
32#include <linux/uio.h>
e2057c5a 33#include <linux/sched.h>
d6b29d7c 34#include <linux/splice.h>
7f1a37e3 35#include <linux/mount.h>
9517bac6 36#include <linux/writeback.h>
385820a3 37#include <linux/falloc.h>
a90714c1 38#include <linux/quotaops.h>
04eda1a1 39#include <linux/blkdev.h>
ccd979bd 40
ccd979bd
MF
41#include <cluster/masklog.h>
42
43#include "ocfs2.h"
44
45#include "alloc.h"
46#include "aops.h"
47#include "dir.h"
48#include "dlmglue.h"
49#include "extent_map.h"
50#include "file.h"
51#include "sysfile.h"
52#include "inode.h"
ca4d147e 53#include "ioctl.h"
ccd979bd 54#include "journal.h"
53fc622b 55#include "locks.h"
ccd979bd
MF
56#include "mmap.h"
57#include "suballoc.h"
58#include "super.h"
cf1d6c76 59#include "xattr.h"
23fc2702 60#include "acl.h"
a90714c1 61#include "quota.h"
293b2f70 62#include "refcounttree.h"
468eedde 63#include "ocfs2_trace.h"
ccd979bd
MF
64
65#include "buffer_head_io.h"
66
53fc622b
MF
67static int ocfs2_init_file_private(struct inode *inode, struct file *file)
68{
69 struct ocfs2_file_private *fp;
70
71 fp = kzalloc(sizeof(struct ocfs2_file_private), GFP_KERNEL);
72 if (!fp)
73 return -ENOMEM;
74
75 fp->fp_file = file;
76 mutex_init(&fp->fp_mutex);
77 ocfs2_file_lock_res_init(&fp->fp_flock, fp);
78 file->private_data = fp;
79
80 return 0;
81}
82
83static void ocfs2_free_file_private(struct inode *inode, struct file *file)
84{
85 struct ocfs2_file_private *fp = file->private_data;
86 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
87
88 if (fp) {
89 ocfs2_simple_drop_lockres(osb, &fp->fp_flock);
90 ocfs2_lock_res_free(&fp->fp_flock);
91 kfree(fp);
92 file->private_data = NULL;
93 }
94}
95
ccd979bd
MF
96static int ocfs2_file_open(struct inode *inode, struct file *file)
97{
98 int status;
99 int mode = file->f_flags;
100 struct ocfs2_inode_info *oi = OCFS2_I(inode);
101
468eedde
TM
102 trace_ocfs2_file_open(inode, file, file->f_path.dentry,
103 (unsigned long long)OCFS2_I(inode)->ip_blkno,
104 file->f_path.dentry->d_name.len,
105 file->f_path.dentry->d_name.name, mode);
ccd979bd 106
907f4554 107 if (file->f_mode & FMODE_WRITE)
871a2931 108 dquot_initialize(inode);
907f4554 109
ccd979bd
MF
110 spin_lock(&oi->ip_lock);
111
112 /* Check that the inode hasn't been wiped from disk by another
113 * node. If it hasn't then we're safe as long as we hold the
114 * spin lock until our increment of open count. */
115 if (OCFS2_I(inode)->ip_flags & OCFS2_INODE_DELETED) {
116 spin_unlock(&oi->ip_lock);
117
118 status = -ENOENT;
119 goto leave;
120 }
121
122 if (mode & O_DIRECT)
123 oi->ip_flags |= OCFS2_INODE_OPEN_DIRECT;
124
125 oi->ip_open_count++;
126 spin_unlock(&oi->ip_lock);
53fc622b
MF
127
128 status = ocfs2_init_file_private(inode, file);
129 if (status) {
130 /*
131 * We want to set open count back if we're failing the
132 * open.
133 */
134 spin_lock(&oi->ip_lock);
135 oi->ip_open_count--;
136 spin_unlock(&oi->ip_lock);
137 }
138
ccd979bd 139leave:
ccd979bd
MF
140 return status;
141}
142
143static int ocfs2_file_release(struct inode *inode, struct file *file)
144{
145 struct ocfs2_inode_info *oi = OCFS2_I(inode);
146
ccd979bd
MF
147 spin_lock(&oi->ip_lock);
148 if (!--oi->ip_open_count)
149 oi->ip_flags &= ~OCFS2_INODE_OPEN_DIRECT;
468eedde
TM
150
151 trace_ocfs2_file_release(inode, file, file->f_path.dentry,
152 oi->ip_blkno,
153 file->f_path.dentry->d_name.len,
154 file->f_path.dentry->d_name.name,
155 oi->ip_open_count);
ccd979bd
MF
156 spin_unlock(&oi->ip_lock);
157
53fc622b
MF
158 ocfs2_free_file_private(inode, file);
159
ccd979bd
MF
160 return 0;
161}
162
53fc622b
MF
163static int ocfs2_dir_open(struct inode *inode, struct file *file)
164{
165 return ocfs2_init_file_private(inode, file);
166}
167
168static int ocfs2_dir_release(struct inode *inode, struct file *file)
169{
170 ocfs2_free_file_private(inode, file);
171 return 0;
172}
173
02c24a82
JB
174static int ocfs2_sync_file(struct file *file, loff_t start, loff_t end,
175 int datasync)
ccd979bd
MF
176{
177 int err = 0;
7ea80859 178 struct inode *inode = file->f_mapping->host;
ccd979bd 179 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
2931cdcb
DW
180 struct ocfs2_inode_info *oi = OCFS2_I(inode);
181 journal_t *journal = osb->journal->j_journal;
182 int ret;
183 tid_t commit_tid;
184 bool needs_barrier = false;
ccd979bd 185
468eedde
TM
186 trace_ocfs2_sync_file(inode, file, file->f_path.dentry,
187 OCFS2_I(inode)->ip_blkno,
188 file->f_path.dentry->d_name.len,
189 file->f_path.dentry->d_name.name,
190 (unsigned long long)datasync);
ccd979bd 191
a987c7ca
YL
192 if (ocfs2_is_hard_readonly(osb) || ocfs2_is_soft_readonly(osb))
193 return -EROFS;
194
02c24a82
JB
195 err = filemap_write_and_wait_range(inode->i_mapping, start, end);
196 if (err)
197 return err;
198
2931cdcb
DW
199 commit_tid = datasync ? oi->i_datasync_tid : oi->i_sync_tid;
200 if (journal->j_flags & JBD2_BARRIER &&
201 !jbd2_trans_will_send_data_barrier(journal, commit_tid))
202 needs_barrier = true;
203 err = jbd2_complete_transaction(journal, commit_tid);
204 if (needs_barrier) {
205 ret = blkdev_issue_flush(inode->i_sb->s_bdev, GFP_KERNEL, NULL);
206 if (!err)
207 err = ret;
04eda1a1 208 }
e04cc15f 209
c1e8d35e
TM
210 if (err)
211 mlog_errno(err);
ccd979bd
MF
212
213 return (err < 0) ? -EIO : 0;
214}
215
7f1a37e3
TY
216int ocfs2_should_update_atime(struct inode *inode,
217 struct vfsmount *vfsmnt)
218{
219 struct timespec now;
220 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
221
222 if (ocfs2_is_hard_readonly(osb) || ocfs2_is_soft_readonly(osb))
223 return 0;
224
225 if ((inode->i_flags & S_NOATIME) ||
226 ((inode->i_sb->s_flags & MS_NODIRATIME) && S_ISDIR(inode->i_mode)))
227 return 0;
228
6c2aad05
MF
229 /*
230 * We can be called with no vfsmnt structure - NFSD will
231 * sometimes do this.
232 *
233 * Note that our action here is different than touch_atime() -
234 * if we can't tell whether this is a noatime mount, then we
235 * don't know whether to trust the value of s_atime_quantum.
236 */
237 if (vfsmnt == NULL)
238 return 0;
239
7f1a37e3
TY
240 if ((vfsmnt->mnt_flags & MNT_NOATIME) ||
241 ((vfsmnt->mnt_flags & MNT_NODIRATIME) && S_ISDIR(inode->i_mode)))
242 return 0;
243
7e913c53
MF
244 if (vfsmnt->mnt_flags & MNT_RELATIME) {
245 if ((timespec_compare(&inode->i_atime, &inode->i_mtime) <= 0) ||
246 (timespec_compare(&inode->i_atime, &inode->i_ctime) <= 0))
247 return 1;
248
249 return 0;
250 }
251
7f1a37e3
TY
252 now = CURRENT_TIME;
253 if ((now.tv_sec - inode->i_atime.tv_sec <= osb->s_atime_quantum))
254 return 0;
255 else
256 return 1;
257}
258
259int ocfs2_update_inode_atime(struct inode *inode,
260 struct buffer_head *bh)
261{
262 int ret;
263 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
264 handle_t *handle;
c11e9faf 265 struct ocfs2_dinode *di = (struct ocfs2_dinode *) bh->b_data;
7f1a37e3 266
7f1a37e3 267 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
fa38e92c
JK
268 if (IS_ERR(handle)) {
269 ret = PTR_ERR(handle);
7f1a37e3
TY
270 mlog_errno(ret);
271 goto out;
272 }
273
0cf2f763 274 ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), bh,
13723d00 275 OCFS2_JOURNAL_ACCESS_WRITE);
c11e9faf
MF
276 if (ret) {
277 mlog_errno(ret);
278 goto out_commit;
279 }
280
281 /*
282 * Don't use ocfs2_mark_inode_dirty() here as we don't always
283 * have i_mutex to guard against concurrent changes to other
284 * inode fields.
285 */
7f1a37e3 286 inode->i_atime = CURRENT_TIME;
c11e9faf
MF
287 di->i_atime = cpu_to_le64(inode->i_atime.tv_sec);
288 di->i_atime_nsec = cpu_to_le32(inode->i_atime.tv_nsec);
6fdb702d 289 ocfs2_update_inode_fsync_trans(handle, inode, 0);
ec20cec7 290 ocfs2_journal_dirty(handle, bh);
7f1a37e3 291
c11e9faf 292out_commit:
7f1a37e3
TY
293 ocfs2_commit_trans(OCFS2_SB(inode->i_sb), handle);
294out:
7f1a37e3
TY
295 return ret;
296}
297
6cb129f5
AB
298static int ocfs2_set_inode_size(handle_t *handle,
299 struct inode *inode,
300 struct buffer_head *fe_bh,
301 u64 new_i_size)
ccd979bd
MF
302{
303 int status;
304
ccd979bd 305 i_size_write(inode, new_i_size);
8110b073 306 inode->i_blocks = ocfs2_inode_sector_count(inode);
ccd979bd
MF
307 inode->i_ctime = inode->i_mtime = CURRENT_TIME;
308
309 status = ocfs2_mark_inode_dirty(handle, inode, fe_bh);
310 if (status < 0) {
311 mlog_errno(status);
312 goto bail;
313 }
314
315bail:
ccd979bd
MF
316 return status;
317}
318
9e33d69f
JK
319int ocfs2_simple_size_update(struct inode *inode,
320 struct buffer_head *di_bh,
321 u64 new_i_size)
ccd979bd
MF
322{
323 int ret;
324 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1fabe148 325 handle_t *handle = NULL;
ccd979bd 326
65eff9cc 327 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
fa38e92c
JK
328 if (IS_ERR(handle)) {
329 ret = PTR_ERR(handle);
ccd979bd
MF
330 mlog_errno(ret);
331 goto out;
332 }
333
334 ret = ocfs2_set_inode_size(handle, inode, di_bh,
335 new_i_size);
336 if (ret < 0)
337 mlog_errno(ret);
338
6fdb702d 339 ocfs2_update_inode_fsync_trans(handle, inode, 0);
02dc1af4 340 ocfs2_commit_trans(osb, handle);
ccd979bd
MF
341out:
342 return ret;
343}
344
37f8a2bf
TM
345static int ocfs2_cow_file_pos(struct inode *inode,
346 struct buffer_head *fe_bh,
347 u64 offset)
348{
349 int status;
350 u32 phys, cpos = offset >> OCFS2_SB(inode->i_sb)->s_clustersize_bits;
351 unsigned int num_clusters = 0;
352 unsigned int ext_flags = 0;
353
354 /*
355 * If the new offset is aligned to the range of the cluster, there is
356 * no space for ocfs2_zero_range_for_truncate to fill, so no need to
357 * CoW either.
358 */
359 if ((offset & (OCFS2_SB(inode->i_sb)->s_clustersize - 1)) == 0)
360 return 0;
361
362 status = ocfs2_get_clusters(inode, cpos, &phys,
363 &num_clusters, &ext_flags);
364 if (status) {
365 mlog_errno(status);
366 goto out;
367 }
368
369 if (!(ext_flags & OCFS2_EXT_REFCOUNTED))
370 goto out;
371
c7dd3392 372 return ocfs2_refcount_cow(inode, fe_bh, cpos, 1, cpos+1);
37f8a2bf
TM
373
374out:
375 return status;
376}
377
ccd979bd
MF
378static int ocfs2_orphan_for_truncate(struct ocfs2_super *osb,
379 struct inode *inode,
380 struct buffer_head *fe_bh,
381 u64 new_i_size)
382{
383 int status;
1fabe148 384 handle_t *handle;
60b11392 385 struct ocfs2_dinode *di;
35edec1d 386 u64 cluster_bytes;
ccd979bd 387
37f8a2bf
TM
388 /*
389 * We need to CoW the cluster contains the offset if it is reflinked
390 * since we will call ocfs2_zero_range_for_truncate later which will
391 * write "0" from offset to the end of the cluster.
392 */
393 status = ocfs2_cow_file_pos(inode, fe_bh, new_i_size);
394 if (status) {
395 mlog_errno(status);
396 return status;
397 }
398
ccd979bd
MF
399 /* TODO: This needs to actually orphan the inode in this
400 * transaction. */
401
65eff9cc 402 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
ccd979bd
MF
403 if (IS_ERR(handle)) {
404 status = PTR_ERR(handle);
405 mlog_errno(status);
406 goto out;
407 }
408
0cf2f763 409 status = ocfs2_journal_access_di(handle, INODE_CACHE(inode), fe_bh,
13723d00 410 OCFS2_JOURNAL_ACCESS_WRITE);
60b11392
MF
411 if (status < 0) {
412 mlog_errno(status);
413 goto out_commit;
414 }
415
416 /*
417 * Do this before setting i_size.
418 */
35edec1d
MF
419 cluster_bytes = ocfs2_align_bytes_to_clusters(inode->i_sb, new_i_size);
420 status = ocfs2_zero_range_for_truncate(inode, handle, new_i_size,
421 cluster_bytes);
60b11392
MF
422 if (status) {
423 mlog_errno(status);
424 goto out_commit;
425 }
426
427 i_size_write(inode, new_i_size);
60b11392
MF
428 inode->i_ctime = inode->i_mtime = CURRENT_TIME;
429
430 di = (struct ocfs2_dinode *) fe_bh->b_data;
431 di->i_size = cpu_to_le64(new_i_size);
432 di->i_ctime = di->i_mtime = cpu_to_le64(inode->i_ctime.tv_sec);
433 di->i_ctime_nsec = di->i_mtime_nsec = cpu_to_le32(inode->i_ctime.tv_nsec);
6fdb702d 434 ocfs2_update_inode_fsync_trans(handle, inode, 0);
60b11392 435
ec20cec7 436 ocfs2_journal_dirty(handle, fe_bh);
ccd979bd 437
60b11392 438out_commit:
02dc1af4 439 ocfs2_commit_trans(osb, handle);
ccd979bd 440out:
ccd979bd
MF
441 return status;
442}
443
444static int ocfs2_truncate_file(struct inode *inode,
445 struct buffer_head *di_bh,
446 u64 new_i_size)
447{
448 int status = 0;
449 struct ocfs2_dinode *fe = NULL;
450 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
ccd979bd 451
b657c95c
JB
452 /* We trust di_bh because it comes from ocfs2_inode_lock(), which
453 * already validated it */
ccd979bd 454 fe = (struct ocfs2_dinode *) di_bh->b_data;
ccd979bd 455
468eedde
TM
456 trace_ocfs2_truncate_file((unsigned long long)OCFS2_I(inode)->ip_blkno,
457 (unsigned long long)le64_to_cpu(fe->i_size),
458 (unsigned long long)new_i_size);
459
ccd979bd 460 mlog_bug_on_msg(le64_to_cpu(fe->i_size) != i_size_read(inode),
b0697053
MF
461 "Inode %llu, inode i_size = %lld != di "
462 "i_size = %llu, i_flags = 0x%x\n",
463 (unsigned long long)OCFS2_I(inode)->ip_blkno,
ccd979bd 464 i_size_read(inode),
b0697053
MF
465 (unsigned long long)le64_to_cpu(fe->i_size),
466 le32_to_cpu(fe->i_flags));
ccd979bd
MF
467
468 if (new_i_size > le64_to_cpu(fe->i_size)) {
468eedde
TM
469 trace_ocfs2_truncate_file_error(
470 (unsigned long long)le64_to_cpu(fe->i_size),
471 (unsigned long long)new_i_size);
ccd979bd
MF
472 status = -EINVAL;
473 mlog_errno(status);
474 goto bail;
475 }
476
2e89b2e4
MF
477 down_write(&OCFS2_I(inode)->ip_alloc_sem);
478
4fe370af
MF
479 ocfs2_resv_discard(&osb->osb_la_resmap,
480 &OCFS2_I(inode)->ip_la_data_resv);
481
c934a92d
MF
482 /*
483 * The inode lock forced other nodes to sync and drop their
484 * pages, which (correctly) happens even if we have a truncate
485 * without allocation change - ocfs2 cluster sizes can be much
486 * greater than page size, so we have to truncate them
487 * anyway.
488 */
2e89b2e4
MF
489 unmap_mapping_range(inode->i_mapping, new_i_size + PAGE_SIZE - 1, 0, 1);
490 truncate_inode_pages(inode->i_mapping, new_i_size);
491
1afc32b9
MF
492 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
493 status = ocfs2_truncate_inline(inode, di_bh, new_i_size,
b1967d0e 494 i_size_read(inode), 1);
1afc32b9
MF
495 if (status)
496 mlog_errno(status);
497
c934a92d 498 goto bail_unlock_sem;
1afc32b9
MF
499 }
500
ccd979bd
MF
501 /* alright, we're going to need to do a full blown alloc size
502 * change. Orphan the inode so that recovery can complete the
503 * truncate if necessary. This does the task of marking
504 * i_size. */
505 status = ocfs2_orphan_for_truncate(osb, inode, di_bh, new_i_size);
506 if (status < 0) {
507 mlog_errno(status);
c934a92d 508 goto bail_unlock_sem;
ccd979bd
MF
509 }
510
78f94673 511 status = ocfs2_commit_truncate(osb, inode, di_bh);
ccd979bd
MF
512 if (status < 0) {
513 mlog_errno(status);
c934a92d 514 goto bail_unlock_sem;
ccd979bd
MF
515 }
516
517 /* TODO: orphan dir cleanup here. */
c934a92d 518bail_unlock_sem:
2e89b2e4
MF
519 up_write(&OCFS2_I(inode)->ip_alloc_sem);
520
ccd979bd 521bail:
8b2c0dba
TM
522 if (!status && OCFS2_I(inode)->ip_clusters == 0)
523 status = ocfs2_try_remove_refcount_tree(inode, di_bh);
ccd979bd 524
ccd979bd
MF
525 return status;
526}
527
528/*
0eb8d47e 529 * extend file allocation only here.
ccd979bd
MF
530 * we'll update all the disk stuff, and oip->alloc_size
531 *
532 * expect stuff to be locked, a transaction started and enough data /
533 * metadata reservations in the contexts.
534 *
535 * Will return -EAGAIN, and a reason if a restart is needed.
536 * If passed in, *reason will always be set, even in error.
537 */
0eb8d47e
TM
538int ocfs2_add_inode_data(struct ocfs2_super *osb,
539 struct inode *inode,
540 u32 *logical_offset,
541 u32 clusters_to_add,
542 int mark_unwritten,
543 struct buffer_head *fe_bh,
544 handle_t *handle,
545 struct ocfs2_alloc_context *data_ac,
546 struct ocfs2_alloc_context *meta_ac,
547 enum ocfs2_alloc_restarted *reason_ret)
ccd979bd 548{
f99b9b7c
JB
549 int ret;
550 struct ocfs2_extent_tree et;
ccd979bd 551
5e404e9e 552 ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(inode), fe_bh);
cbee7e1a
JB
553 ret = ocfs2_add_clusters_in_btree(handle, &et, logical_offset,
554 clusters_to_add, mark_unwritten,
555 data_ac, meta_ac, reason_ret);
f99b9b7c
JB
556
557 return ret;
ccd979bd
MF
558}
559
2ae99a60
MF
560static int __ocfs2_extend_allocation(struct inode *inode, u32 logical_start,
561 u32 clusters_to_add, int mark_unwritten)
ccd979bd
MF
562{
563 int status = 0;
564 int restart_func = 0;
abf8b156 565 int credits;
2ae99a60 566 u32 prev_clusters;
ccd979bd
MF
567 struct buffer_head *bh = NULL;
568 struct ocfs2_dinode *fe = NULL;
1fabe148 569 handle_t *handle = NULL;
ccd979bd
MF
570 struct ocfs2_alloc_context *data_ac = NULL;
571 struct ocfs2_alloc_context *meta_ac = NULL;
572 enum ocfs2_alloc_restarted why;
573 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
f99b9b7c 574 struct ocfs2_extent_tree et;
a90714c1 575 int did_quota = 0;
ccd979bd 576
dcd0538f 577 /*
f0cb0f0b 578 * Unwritten extent only exists for file systems which
dcd0538f
MF
579 * support holes.
580 */
2ae99a60 581 BUG_ON(mark_unwritten && !ocfs2_sparse_alloc(osb));
dcd0538f 582
b657c95c 583 status = ocfs2_read_inode_block(inode, &bh);
ccd979bd
MF
584 if (status < 0) {
585 mlog_errno(status);
586 goto leave;
587 }
ccd979bd 588 fe = (struct ocfs2_dinode *) bh->b_data;
ccd979bd
MF
589
590restart_all:
591 BUG_ON(le32_to_cpu(fe->i_clusters) != OCFS2_I(inode)->ip_clusters);
592
5e404e9e 593 ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(inode), bh);
f99b9b7c
JB
594 status = ocfs2_lock_allocators(inode, &et, clusters_to_add, 0,
595 &data_ac, &meta_ac);
9517bac6
MF
596 if (status) {
597 mlog_errno(status);
598 goto leave;
599 }
600
06f9da6e 601 credits = ocfs2_calc_extend_credits(osb->sb, &fe->id2.i_list);
65eff9cc 602 handle = ocfs2_start_trans(osb, credits);
ccd979bd
MF
603 if (IS_ERR(handle)) {
604 status = PTR_ERR(handle);
605 handle = NULL;
606 mlog_errno(status);
607 goto leave;
608 }
609
610restarted_transaction:
468eedde
TM
611 trace_ocfs2_extend_allocation(
612 (unsigned long long)OCFS2_I(inode)->ip_blkno,
613 (unsigned long long)i_size_read(inode),
614 le32_to_cpu(fe->i_clusters), clusters_to_add,
615 why, restart_func);
616
5dd4056d
CH
617 status = dquot_alloc_space_nodirty(inode,
618 ocfs2_clusters_to_bytes(osb->sb, clusters_to_add));
619 if (status)
a90714c1 620 goto leave;
a90714c1
JK
621 did_quota = 1;
622
ccd979bd
MF
623 /* reserve a write to the file entry early on - that we if we
624 * run out of credits in the allocation path, we can still
625 * update i_size. */
0cf2f763 626 status = ocfs2_journal_access_di(handle, INODE_CACHE(inode), bh,
13723d00 627 OCFS2_JOURNAL_ACCESS_WRITE);
ccd979bd
MF
628 if (status < 0) {
629 mlog_errno(status);
630 goto leave;
631 }
632
633 prev_clusters = OCFS2_I(inode)->ip_clusters;
634
0eb8d47e
TM
635 status = ocfs2_add_inode_data(osb,
636 inode,
637 &logical_start,
638 clusters_to_add,
639 mark_unwritten,
640 bh,
641 handle,
642 data_ac,
643 meta_ac,
644 &why);
ccd979bd
MF
645 if ((status < 0) && (status != -EAGAIN)) {
646 if (status != -ENOSPC)
647 mlog_errno(status);
648 goto leave;
649 }
2931cdcb 650 ocfs2_update_inode_fsync_trans(handle, inode, 1);
ec20cec7 651 ocfs2_journal_dirty(handle, bh);
ccd979bd
MF
652
653 spin_lock(&OCFS2_I(inode)->ip_lock);
654 clusters_to_add -= (OCFS2_I(inode)->ip_clusters - prev_clusters);
655 spin_unlock(&OCFS2_I(inode)->ip_lock);
a90714c1 656 /* Release unused quota reservation */
5dd4056d 657 dquot_free_space(inode,
a90714c1
JK
658 ocfs2_clusters_to_bytes(osb->sb, clusters_to_add));
659 did_quota = 0;
ccd979bd
MF
660
661 if (why != RESTART_NONE && clusters_to_add) {
662 if (why == RESTART_META) {
ccd979bd 663 restart_func = 1;
79681842 664 status = 0;
ccd979bd
MF
665 } else {
666 BUG_ON(why != RESTART_TRANS);
667
2b1e55c3 668 status = ocfs2_allocate_extend_trans(handle, 1);
ccd979bd
MF
669 if (status < 0) {
670 /* handle still has to be committed at
671 * this point. */
672 status = -ENOMEM;
673 mlog_errno(status);
674 goto leave;
675 }
676 goto restarted_transaction;
677 }
678 }
679
468eedde 680 trace_ocfs2_extend_allocation_end(OCFS2_I(inode)->ip_blkno,
1ca1a111 681 le32_to_cpu(fe->i_clusters),
468eedde
TM
682 (unsigned long long)le64_to_cpu(fe->i_size),
683 OCFS2_I(inode)->ip_clusters,
684 (unsigned long long)i_size_read(inode));
ccd979bd
MF
685
686leave:
a90714c1 687 if (status < 0 && did_quota)
5dd4056d 688 dquot_free_space(inode,
a90714c1 689 ocfs2_clusters_to_bytes(osb->sb, clusters_to_add));
ccd979bd 690 if (handle) {
02dc1af4 691 ocfs2_commit_trans(osb, handle);
ccd979bd
MF
692 handle = NULL;
693 }
694 if (data_ac) {
695 ocfs2_free_alloc_context(data_ac);
696 data_ac = NULL;
697 }
698 if (meta_ac) {
699 ocfs2_free_alloc_context(meta_ac);
700 meta_ac = NULL;
701 }
702 if ((!status) && restart_func) {
703 restart_func = 0;
704 goto restart_all;
705 }
a81cb88b
MF
706 brelse(bh);
707 bh = NULL;
ccd979bd 708
ccd979bd
MF
709 return status;
710}
711
a4bfb4cf
JB
712/*
713 * While a write will already be ordering the data, a truncate will not.
714 * Thus, we need to explicitly order the zeroed pages.
715 */
c7d2cbc3
JB
716static handle_t *ocfs2_zero_start_ordered_transaction(struct inode *inode,
717 struct buffer_head *di_bh)
a4bfb4cf
JB
718{
719 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
720 handle_t *handle = NULL;
721 int ret = 0;
722
723 if (!ocfs2_should_order_data(inode))
724 goto out;
725
726 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
727 if (IS_ERR(handle)) {
728 ret = -ENOMEM;
729 mlog_errno(ret);
730 goto out;
731 }
732
733 ret = ocfs2_jbd2_file_inode(handle, inode);
c7d2cbc3
JB
734 if (ret < 0) {
735 mlog_errno(ret);
736 goto out;
737 }
738
739 ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), di_bh,
740 OCFS2_JOURNAL_ACCESS_WRITE);
741 if (ret)
a4bfb4cf 742 mlog_errno(ret);
6fdb702d 743 ocfs2_update_inode_fsync_trans(handle, inode, 1);
a4bfb4cf
JB
744
745out:
746 if (ret) {
747 if (!IS_ERR(handle))
748 ocfs2_commit_trans(osb, handle);
749 handle = ERR_PTR(ret);
750 }
751 return handle;
752}
753
ccd979bd
MF
754/* Some parts of this taken from generic_cont_expand, which turned out
755 * to be too fragile to do exactly what we need without us having to
4e02ed4b 756 * worry about recursive locking in ->write_begin() and ->write_end(). */
a4bfb4cf 757static int ocfs2_write_zero_page(struct inode *inode, u64 abs_from,
c7d2cbc3 758 u64 abs_to, struct buffer_head *di_bh)
ccd979bd
MF
759{
760 struct address_space *mapping = inode->i_mapping;
761 struct page *page;
a4bfb4cf 762 unsigned long index = abs_from >> PAGE_CACHE_SHIFT;
f775da2f 763 handle_t *handle;
5453258d 764 int ret = 0;
a4bfb4cf 765 unsigned zero_from, zero_to, block_start, block_end;
c7d2cbc3 766 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
ccd979bd 767
a4bfb4cf
JB
768 BUG_ON(abs_from >= abs_to);
769 BUG_ON(abs_to > (((u64)index + 1) << PAGE_CACHE_SHIFT));
770 BUG_ON(abs_from & (inode->i_blkbits - 1));
ccd979bd 771
f775da2f
JB
772 handle = ocfs2_zero_start_ordered_transaction(inode, di_bh);
773 if (IS_ERR(handle)) {
774 ret = PTR_ERR(handle);
775 goto out;
776 }
777
9b4c0ff3 778 page = find_or_create_page(mapping, index, GFP_NOFS);
ccd979bd
MF
779 if (!page) {
780 ret = -ENOMEM;
781 mlog_errno(ret);
f775da2f 782 goto out_commit_trans;
ccd979bd
MF
783 }
784
a4bfb4cf
JB
785 /* Get the offsets within the page that we want to zero */
786 zero_from = abs_from & (PAGE_CACHE_SIZE - 1);
787 zero_to = abs_to & (PAGE_CACHE_SIZE - 1);
788 if (!zero_to)
789 zero_to = PAGE_CACHE_SIZE;
ccd979bd 790
468eedde
TM
791 trace_ocfs2_write_zero_page(
792 (unsigned long long)OCFS2_I(inode)->ip_blkno,
793 (unsigned long long)abs_from,
794 (unsigned long long)abs_to,
795 index, zero_from, zero_to);
5693486b 796
a4bfb4cf
JB
797 /* We know that zero_from is block aligned */
798 for (block_start = zero_from; block_start < zero_to;
799 block_start = block_end) {
800 block_end = block_start + (1 << inode->i_blkbits);
801
802 /*
ebdec241
CH
803 * block_start is block-aligned. Bump it by one to force
804 * __block_write_begin and block_commit_write to zero the
a4bfb4cf
JB
805 * whole block.
806 */
ebdec241
CH
807 ret = __block_write_begin(page, block_start + 1, 0,
808 ocfs2_get_block);
a4bfb4cf
JB
809 if (ret < 0) {
810 mlog_errno(ret);
ccd979bd
MF
811 goto out_unlock;
812 }
ccd979bd 813
a4bfb4cf
JB
814
815 /* must not update i_size! */
816 ret = block_commit_write(page, block_start + 1,
817 block_start + 1);
818 if (ret < 0)
819 mlog_errno(ret);
820 else
821 ret = 0;
822 }
ccd979bd 823
f775da2f
JB
824 /*
825 * fs-writeback will release the dirty pages without page lock
826 * whose offset are over inode size, the release happens at
827 * block_write_full_page().
828 */
829 i_size_write(inode, abs_to);
830 inode->i_blocks = ocfs2_inode_sector_count(inode);
831 di->i_size = cpu_to_le64((u64)i_size_read(inode));
832 inode->i_mtime = inode->i_ctime = CURRENT_TIME;
833 di->i_mtime = di->i_ctime = cpu_to_le64(inode->i_mtime.tv_sec);
834 di->i_ctime_nsec = cpu_to_le32(inode->i_mtime.tv_nsec);
835 di->i_mtime_nsec = di->i_ctime_nsec;
c7d2cbc3 836 if (handle) {
c7d2cbc3 837 ocfs2_journal_dirty(handle, di_bh);
6fdb702d 838 ocfs2_update_inode_fsync_trans(handle, inode, 1);
c7d2cbc3 839 }
a4bfb4cf 840
ccd979bd
MF
841out_unlock:
842 unlock_page(page);
843 page_cache_release(page);
f775da2f
JB
844out_commit_trans:
845 if (handle)
846 ocfs2_commit_trans(OCFS2_SB(inode->i_sb), handle);
ccd979bd
MF
847out:
848 return ret;
849}
850
5693486b
JB
851/*
852 * Find the next range to zero. We do this in terms of bytes because
853 * that's what ocfs2_zero_extend() wants, and it is dealing with the
854 * pagecache. We may return multiple extents.
855 *
856 * zero_start and zero_end are ocfs2_zero_extend()s current idea of what
857 * needs to be zeroed. range_start and range_end return the next zeroing
858 * range. A subsequent call should pass the previous range_end as its
859 * zero_start. If range_end is 0, there's nothing to do.
860 *
861 * Unwritten extents are skipped over. Refcounted extents are CoWd.
862 */
863static int ocfs2_zero_extend_get_range(struct inode *inode,
864 struct buffer_head *di_bh,
865 u64 zero_start, u64 zero_end,
866 u64 *range_start, u64 *range_end)
ccd979bd 867{
5693486b
JB
868 int rc = 0, needs_cow = 0;
869 u32 p_cpos, zero_clusters = 0;
870 u32 zero_cpos =
871 zero_start >> OCFS2_SB(inode->i_sb)->s_clustersize_bits;
872 u32 last_cpos = ocfs2_clusters_for_bytes(inode->i_sb, zero_end);
873 unsigned int num_clusters = 0;
874 unsigned int ext_flags = 0;
ccd979bd 875
5693486b
JB
876 while (zero_cpos < last_cpos) {
877 rc = ocfs2_get_clusters(inode, zero_cpos, &p_cpos,
878 &num_clusters, &ext_flags);
879 if (rc) {
880 mlog_errno(rc);
ccd979bd
MF
881 goto out;
882 }
883
5693486b
JB
884 if (p_cpos && !(ext_flags & OCFS2_EXT_UNWRITTEN)) {
885 zero_clusters = num_clusters;
886 if (ext_flags & OCFS2_EXT_REFCOUNTED)
887 needs_cow = 1;
888 break;
889 }
890
891 zero_cpos += num_clusters;
892 }
893 if (!zero_clusters) {
894 *range_end = 0;
895 goto out;
896 }
897
898 while ((zero_cpos + zero_clusters) < last_cpos) {
899 rc = ocfs2_get_clusters(inode, zero_cpos + zero_clusters,
900 &p_cpos, &num_clusters,
901 &ext_flags);
902 if (rc) {
903 mlog_errno(rc);
904 goto out;
905 }
906
907 if (!p_cpos || (ext_flags & OCFS2_EXT_UNWRITTEN))
908 break;
909 if (ext_flags & OCFS2_EXT_REFCOUNTED)
910 needs_cow = 1;
911 zero_clusters += num_clusters;
912 }
913 if ((zero_cpos + zero_clusters) > last_cpos)
914 zero_clusters = last_cpos - zero_cpos;
915
916 if (needs_cow) {
c7dd3392 917 rc = ocfs2_refcount_cow(inode, di_bh, zero_cpos,
15502712 918 zero_clusters, UINT_MAX);
5693486b
JB
919 if (rc) {
920 mlog_errno(rc);
921 goto out;
922 }
923 }
924
925 *range_start = ocfs2_clusters_to_bytes(inode->i_sb, zero_cpos);
926 *range_end = ocfs2_clusters_to_bytes(inode->i_sb,
927 zero_cpos + zero_clusters);
928
929out:
930 return rc;
931}
932
933/*
934 * Zero one range returned from ocfs2_zero_extend_get_range(). The caller
935 * has made sure that the entire range needs zeroing.
936 */
937static int ocfs2_zero_extend_range(struct inode *inode, u64 range_start,
c7d2cbc3 938 u64 range_end, struct buffer_head *di_bh)
5693486b
JB
939{
940 int rc = 0;
941 u64 next_pos;
942 u64 zero_pos = range_start;
943
468eedde
TM
944 trace_ocfs2_zero_extend_range(
945 (unsigned long long)OCFS2_I(inode)->ip_blkno,
946 (unsigned long long)range_start,
947 (unsigned long long)range_end);
5693486b
JB
948 BUG_ON(range_start >= range_end);
949
950 while (zero_pos < range_end) {
951 next_pos = (zero_pos & PAGE_CACHE_MASK) + PAGE_CACHE_SIZE;
952 if (next_pos > range_end)
953 next_pos = range_end;
c7d2cbc3 954 rc = ocfs2_write_zero_page(inode, zero_pos, next_pos, di_bh);
5693486b
JB
955 if (rc < 0) {
956 mlog_errno(rc);
957 break;
958 }
959 zero_pos = next_pos;
e2057c5a
MF
960
961 /*
962 * Very large extends have the potential to lock up
963 * the cpu for extended periods of time.
964 */
965 cond_resched();
ccd979bd
MF
966 }
967
5693486b
JB
968 return rc;
969}
970
971int ocfs2_zero_extend(struct inode *inode, struct buffer_head *di_bh,
972 loff_t zero_to_size)
973{
974 int ret = 0;
975 u64 zero_start, range_start = 0, range_end = 0;
976 struct super_block *sb = inode->i_sb;
977
978 zero_start = ocfs2_align_bytes_to_blocks(sb, i_size_read(inode));
468eedde
TM
979 trace_ocfs2_zero_extend((unsigned long long)OCFS2_I(inode)->ip_blkno,
980 (unsigned long long)zero_start,
981 (unsigned long long)i_size_read(inode));
5693486b
JB
982 while (zero_start < zero_to_size) {
983 ret = ocfs2_zero_extend_get_range(inode, di_bh, zero_start,
984 zero_to_size,
985 &range_start,
986 &range_end);
987 if (ret) {
988 mlog_errno(ret);
989 break;
990 }
991 if (!range_end)
992 break;
993 /* Trim the ends */
994 if (range_start < zero_start)
995 range_start = zero_start;
996 if (range_end > zero_to_size)
997 range_end = zero_to_size;
998
999 ret = ocfs2_zero_extend_range(inode, range_start,
c7d2cbc3 1000 range_end, di_bh);
5693486b
JB
1001 if (ret) {
1002 mlog_errno(ret);
1003 break;
1004 }
1005 zero_start = range_end;
1006 }
1007
ccd979bd
MF
1008 return ret;
1009}
1010
5693486b
JB
1011int ocfs2_extend_no_holes(struct inode *inode, struct buffer_head *di_bh,
1012 u64 new_i_size, u64 zero_to)
65ed39d6
MF
1013{
1014 int ret;
1015 u32 clusters_to_add;
1016 struct ocfs2_inode_info *oi = OCFS2_I(inode);
1017
5693486b
JB
1018 /*
1019 * Only quota files call this without a bh, and they can't be
1020 * refcounted.
1021 */
1022 BUG_ON(!di_bh && (oi->ip_dyn_features & OCFS2_HAS_REFCOUNT_FL));
1023 BUG_ON(!di_bh && !(oi->ip_flags & OCFS2_INODE_SYSTEM_FILE));
1024
65ed39d6
MF
1025 clusters_to_add = ocfs2_clusters_for_bytes(inode->i_sb, new_i_size);
1026 if (clusters_to_add < oi->ip_clusters)
1027 clusters_to_add = 0;
1028 else
1029 clusters_to_add -= oi->ip_clusters;
1030
1031 if (clusters_to_add) {
1032 ret = __ocfs2_extend_allocation(inode, oi->ip_clusters,
1033 clusters_to_add, 0);
1034 if (ret) {
1035 mlog_errno(ret);
1036 goto out;
1037 }
1038 }
1039
1040 /*
1041 * Call this even if we don't add any clusters to the tree. We
1042 * still need to zero the area between the old i_size and the
1043 * new i_size.
1044 */
5693486b 1045 ret = ocfs2_zero_extend(inode, di_bh, zero_to);
65ed39d6
MF
1046 if (ret < 0)
1047 mlog_errno(ret);
1048
1049out:
1050 return ret;
1051}
1052
ccd979bd
MF
1053static int ocfs2_extend_file(struct inode *inode,
1054 struct buffer_head *di_bh,
65ed39d6 1055 u64 new_i_size)
ccd979bd 1056{
c934a92d 1057 int ret = 0;
1afc32b9 1058 struct ocfs2_inode_info *oi = OCFS2_I(inode);
ccd979bd 1059
65ed39d6 1060 BUG_ON(!di_bh);
53013cba 1061
ccd979bd
MF
1062 /* setattr sometimes calls us like this. */
1063 if (new_i_size == 0)
1064 goto out;
1065
1066 if (i_size_read(inode) == new_i_size)
5693486b 1067 goto out;
ccd979bd
MF
1068 BUG_ON(new_i_size < i_size_read(inode));
1069
0effef77 1070 /*
65ed39d6
MF
1071 * The alloc sem blocks people in read/write from reading our
1072 * allocation until we're done changing it. We depend on
1073 * i_mutex to block other extend/truncate calls while we're
5693486b
JB
1074 * here. We even have to hold it for sparse files because there
1075 * might be some tail zeroing.
0effef77 1076 */
1afc32b9
MF
1077 down_write(&oi->ip_alloc_sem);
1078
1079 if (oi->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
1080 /*
1081 * We can optimize small extends by keeping the inodes
1082 * inline data.
1083 */
1084 if (ocfs2_size_fits_inline_data(di_bh, new_i_size)) {
1085 up_write(&oi->ip_alloc_sem);
1086 goto out_update_size;
1087 }
1088
1089 ret = ocfs2_convert_inline_data_to_extents(inode, di_bh);
1090 if (ret) {
1091 up_write(&oi->ip_alloc_sem);
1afc32b9 1092 mlog_errno(ret);
c934a92d 1093 goto out;
1afc32b9
MF
1094 }
1095 }
1096
5693486b
JB
1097 if (ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb)))
1098 ret = ocfs2_zero_extend(inode, di_bh, new_i_size);
1099 else
1100 ret = ocfs2_extend_no_holes(inode, di_bh, new_i_size,
1101 new_i_size);
1afc32b9
MF
1102
1103 up_write(&oi->ip_alloc_sem);
65ed39d6 1104
0effef77
MF
1105 if (ret < 0) {
1106 mlog_errno(ret);
c934a92d 1107 goto out;
53013cba
MF
1108 }
1109
3a0782d0 1110out_update_size:
65ed39d6
MF
1111 ret = ocfs2_simple_size_update(inode, di_bh, new_i_size);
1112 if (ret < 0)
1113 mlog_errno(ret);
ccd979bd
MF
1114
1115out:
1116 return ret;
1117}
1118
1119int ocfs2_setattr(struct dentry *dentry, struct iattr *attr)
1120{
1121 int status = 0, size_change;
1122 struct inode *inode = dentry->d_inode;
1123 struct super_block *sb = inode->i_sb;
1124 struct ocfs2_super *osb = OCFS2_SB(sb);
1125 struct buffer_head *bh = NULL;
1fabe148 1126 handle_t *handle = NULL;
65bac575 1127 struct dquot *transfer_to[MAXQUOTAS] = { };
52a9ee28 1128 int qtype;
ccd979bd 1129
468eedde
TM
1130 trace_ocfs2_setattr(inode, dentry,
1131 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1132 dentry->d_name.len, dentry->d_name.name,
1133 attr->ia_valid, attr->ia_mode,
ba613560
EB
1134 from_kuid(&init_user_ns, attr->ia_uid),
1135 from_kgid(&init_user_ns, attr->ia_gid));
ccd979bd 1136
bc535809
SM
1137 /* ensuring we don't even attempt to truncate a symlink */
1138 if (S_ISLNK(inode->i_mode))
1139 attr->ia_valid &= ~ATTR_SIZE;
1140
ccd979bd
MF
1141#define OCFS2_VALID_ATTRS (ATTR_ATIME | ATTR_MTIME | ATTR_CTIME | ATTR_SIZE \
1142 | ATTR_GID | ATTR_UID | ATTR_MODE)
468eedde 1143 if (!(attr->ia_valid & OCFS2_VALID_ATTRS))
ccd979bd 1144 return 0;
ccd979bd
MF
1145
1146 status = inode_change_ok(inode, attr);
1147 if (status)
1148 return status;
1149
12755627
DM
1150 if (is_quota_modification(inode, attr))
1151 dquot_initialize(inode);
ccd979bd
MF
1152 size_change = S_ISREG(inode->i_mode) && attr->ia_valid & ATTR_SIZE;
1153 if (size_change) {
1154 status = ocfs2_rw_lock(inode, 1);
1155 if (status < 0) {
1156 mlog_errno(status);
1157 goto bail;
1158 }
1159 }
1160
e63aecb6 1161 status = ocfs2_inode_lock(inode, &bh, 1);
ccd979bd
MF
1162 if (status < 0) {
1163 if (status != -ENOENT)
1164 mlog_errno(status);
1165 goto bail_unlock_rw;
1166 }
1167
d62e74be 1168 if (size_change) {
5051f768
WW
1169 status = inode_newsize_ok(inode, attr->ia_size);
1170 if (status)
ce76fd30 1171 goto bail_unlock;
ce76fd30 1172
562c72aa
CH
1173 inode_dio_wait(inode);
1174
d62e74be 1175 if (i_size_read(inode) >= attr->ia_size) {
2b4e30fb
JB
1176 if (ocfs2_should_order_data(inode)) {
1177 status = ocfs2_begin_ordered_truncate(inode,
1178 attr->ia_size);
1179 if (status)
1180 goto bail_unlock;
1181 }
ccd979bd 1182 status = ocfs2_truncate_file(inode, bh, attr->ia_size);
2b4e30fb 1183 } else
65ed39d6 1184 status = ocfs2_extend_file(inode, bh, attr->ia_size);
ccd979bd
MF
1185 if (status < 0) {
1186 if (status != -ENOSPC)
1187 mlog_errno(status);
1188 status = -ENOSPC;
1189 goto bail_unlock;
1190 }
1191 }
1192
488c8ef0
EB
1193 if ((attr->ia_valid & ATTR_UID && !uid_eq(attr->ia_uid, inode->i_uid)) ||
1194 (attr->ia_valid & ATTR_GID && !gid_eq(attr->ia_gid, inode->i_gid))) {
65bac575
JK
1195 /*
1196 * Gather pointers to quota structures so that allocation /
1197 * freeing of quota structures happens here and not inside
b43fa828 1198 * dquot_transfer() where we have problems with lock ordering
65bac575 1199 */
488c8ef0 1200 if (attr->ia_valid & ATTR_UID && !uid_eq(attr->ia_uid, inode->i_uid)
a90714c1
JK
1201 && OCFS2_HAS_RO_COMPAT_FEATURE(sb,
1202 OCFS2_FEATURE_RO_COMPAT_USRQUOTA)) {
aca645a6 1203 transfer_to[USRQUOTA] = dqget(sb, make_kqid_uid(attr->ia_uid));
52a9ee28 1204 if (!transfer_to[USRQUOTA]) {
65bac575 1205 status = -ESRCH;
a90714c1 1206 goto bail_unlock;
65bac575 1207 }
a90714c1 1208 }
488c8ef0 1209 if (attr->ia_valid & ATTR_GID && !gid_eq(attr->ia_gid, inode->i_gid)
a90714c1
JK
1210 && OCFS2_HAS_RO_COMPAT_FEATURE(sb,
1211 OCFS2_FEATURE_RO_COMPAT_GRPQUOTA)) {
aca645a6 1212 transfer_to[GRPQUOTA] = dqget(sb, make_kqid_gid(attr->ia_gid));
52a9ee28 1213 if (!transfer_to[GRPQUOTA]) {
65bac575 1214 status = -ESRCH;
a90714c1 1215 goto bail_unlock;
65bac575 1216 }
a90714c1 1217 }
65bac575
JK
1218 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS +
1219 2 * ocfs2_quota_trans_credits(sb));
a90714c1
JK
1220 if (IS_ERR(handle)) {
1221 status = PTR_ERR(handle);
1222 mlog_errno(status);
1223 goto bail_unlock;
1224 }
52a9ee28 1225 status = __dquot_transfer(inode, transfer_to);
a90714c1
JK
1226 if (status < 0)
1227 goto bail_commit;
1228 } else {
1229 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
1230 if (IS_ERR(handle)) {
1231 status = PTR_ERR(handle);
1232 mlog_errno(status);
1233 goto bail_unlock;
1234 }
ccd979bd
MF
1235 }
1236
1025774c
CH
1237 setattr_copy(inode, attr);
1238 mark_inode_dirty(inode);
1239
ccd979bd
MF
1240 status = ocfs2_mark_inode_dirty(handle, inode, bh);
1241 if (status < 0)
1242 mlog_errno(status);
1243
1244bail_commit:
02dc1af4 1245 ocfs2_commit_trans(osb, handle);
ccd979bd 1246bail_unlock:
e63aecb6 1247 ocfs2_inode_unlock(inode, 1);
ccd979bd
MF
1248bail_unlock_rw:
1249 if (size_change)
1250 ocfs2_rw_unlock(inode, 1);
1251bail:
a81cb88b 1252 brelse(bh);
ccd979bd 1253
65bac575 1254 /* Release quota pointers in case we acquired them */
52362810 1255 for (qtype = 0; qtype < OCFS2_MAXQUOTAS; qtype++)
65bac575 1256 dqput(transfer_to[qtype]);
65bac575 1257
060bc66d 1258 if (!status && attr->ia_valid & ATTR_MODE) {
702e5bc6 1259 status = posix_acl_chmod(inode, inode->i_mode);
060bc66d
TY
1260 if (status < 0)
1261 mlog_errno(status);
1262 }
1263
ccd979bd
MF
1264 return status;
1265}
1266
1267int ocfs2_getattr(struct vfsmount *mnt,
1268 struct dentry *dentry,
1269 struct kstat *stat)
1270{
1271 struct inode *inode = dentry->d_inode;
1272 struct super_block *sb = dentry->d_inode->i_sb;
1273 struct ocfs2_super *osb = sb->s_fs_info;
1274 int err;
1275
ccd979bd
MF
1276 err = ocfs2_inode_revalidate(dentry);
1277 if (err) {
1278 if (err != -ENOENT)
1279 mlog_errno(err);
1280 goto bail;
1281 }
1282
1283 generic_fillattr(inode, stat);
1284
1285 /* We set the blksize from the cluster size for performance */
1286 stat->blksize = osb->s_clustersize;
1287
1288bail:
ccd979bd
MF
1289 return err;
1290}
1291
10556cb2 1292int ocfs2_permission(struct inode *inode, int mask)
d38eb8db
TY
1293{
1294 int ret;
1295
10556cb2 1296 if (mask & MAY_NOT_BLOCK)
b74c79e9
NP
1297 return -ECHILD;
1298
e63aecb6 1299 ret = ocfs2_inode_lock(inode, NULL, 0);
d38eb8db 1300 if (ret) {
a9f5f707
MF
1301 if (ret != -ENOENT)
1302 mlog_errno(ret);
d38eb8db
TY
1303 goto out;
1304 }
1305
2830ba7f 1306 ret = generic_permission(inode, mask);
d38eb8db 1307
e63aecb6 1308 ocfs2_inode_unlock(inode, 0);
d38eb8db 1309out:
d38eb8db
TY
1310 return ret;
1311}
1312
b2580103
MF
1313static int __ocfs2_write_remove_suid(struct inode *inode,
1314 struct buffer_head *bh)
ccd979bd
MF
1315{
1316 int ret;
1fabe148 1317 handle_t *handle;
ccd979bd
MF
1318 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1319 struct ocfs2_dinode *di;
1320
468eedde
TM
1321 trace_ocfs2_write_remove_suid(
1322 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1323 inode->i_mode);
ccd979bd 1324
65eff9cc 1325 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
fa38e92c
JK
1326 if (IS_ERR(handle)) {
1327 ret = PTR_ERR(handle);
ccd979bd
MF
1328 mlog_errno(ret);
1329 goto out;
1330 }
1331
0cf2f763 1332 ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), bh,
13723d00 1333 OCFS2_JOURNAL_ACCESS_WRITE);
ccd979bd
MF
1334 if (ret < 0) {
1335 mlog_errno(ret);
b2580103 1336 goto out_trans;
ccd979bd
MF
1337 }
1338
1339 inode->i_mode &= ~S_ISUID;
1340 if ((inode->i_mode & S_ISGID) && (inode->i_mode & S_IXGRP))
1341 inode->i_mode &= ~S_ISGID;
1342
1343 di = (struct ocfs2_dinode *) bh->b_data;
1344 di->i_mode = cpu_to_le16(inode->i_mode);
6fdb702d 1345 ocfs2_update_inode_fsync_trans(handle, inode, 0);
ccd979bd 1346
ec20cec7 1347 ocfs2_journal_dirty(handle, bh);
b2580103 1348
ccd979bd 1349out_trans:
02dc1af4 1350 ocfs2_commit_trans(osb, handle);
ccd979bd 1351out:
ccd979bd
MF
1352 return ret;
1353}
1354
9517bac6
MF
1355/*
1356 * Will look for holes and unwritten extents in the range starting at
1357 * pos for count bytes (inclusive).
1358 */
1359static int ocfs2_check_range_for_holes(struct inode *inode, loff_t pos,
1360 size_t count)
1361{
1362 int ret = 0;
49cb8d2d 1363 unsigned int extent_flags;
9517bac6
MF
1364 u32 cpos, clusters, extent_len, phys_cpos;
1365 struct super_block *sb = inode->i_sb;
1366
1367 cpos = pos >> OCFS2_SB(sb)->s_clustersize_bits;
1368 clusters = ocfs2_clusters_for_bytes(sb, pos + count) - cpos;
1369
1370 while (clusters) {
49cb8d2d
MF
1371 ret = ocfs2_get_clusters(inode, cpos, &phys_cpos, &extent_len,
1372 &extent_flags);
9517bac6
MF
1373 if (ret < 0) {
1374 mlog_errno(ret);
1375 goto out;
1376 }
1377
49cb8d2d 1378 if (phys_cpos == 0 || (extent_flags & OCFS2_EXT_UNWRITTEN)) {
9517bac6
MF
1379 ret = 1;
1380 break;
1381 }
1382
1383 if (extent_len > clusters)
1384 extent_len = clusters;
1385
1386 clusters -= extent_len;
1387 cpos += extent_len;
1388 }
1389out:
1390 return ret;
1391}
1392
b2580103
MF
1393static int ocfs2_write_remove_suid(struct inode *inode)
1394{
1395 int ret;
1396 struct buffer_head *bh = NULL;
b2580103 1397
b657c95c 1398 ret = ocfs2_read_inode_block(inode, &bh);
b2580103
MF
1399 if (ret < 0) {
1400 mlog_errno(ret);
1401 goto out;
1402 }
1403
1404 ret = __ocfs2_write_remove_suid(inode, bh);
1405out:
1406 brelse(bh);
1407 return ret;
1408}
1409
2ae99a60
MF
1410/*
1411 * Allocate enough extents to cover the region starting at byte offset
1412 * start for len bytes. Existing extents are skipped, any extents
1413 * added are marked as "unwritten".
1414 */
1415static int ocfs2_allocate_unwritten_extents(struct inode *inode,
1416 u64 start, u64 len)
1417{
1418 int ret;
1419 u32 cpos, phys_cpos, clusters, alloc_size;
1afc32b9
MF
1420 u64 end = start + len;
1421 struct buffer_head *di_bh = NULL;
1422
1423 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
b657c95c 1424 ret = ocfs2_read_inode_block(inode, &di_bh);
1afc32b9
MF
1425 if (ret) {
1426 mlog_errno(ret);
1427 goto out;
1428 }
1429
1430 /*
1431 * Nothing to do if the requested reservation range
1432 * fits within the inode.
1433 */
1434 if (ocfs2_size_fits_inline_data(di_bh, end))
1435 goto out;
1436
1437 ret = ocfs2_convert_inline_data_to_extents(inode, di_bh);
1438 if (ret) {
1439 mlog_errno(ret);
1440 goto out;
1441 }
1442 }
2ae99a60
MF
1443
1444 /*
1445 * We consider both start and len to be inclusive.
1446 */
1447 cpos = start >> OCFS2_SB(inode->i_sb)->s_clustersize_bits;
1448 clusters = ocfs2_clusters_for_bytes(inode->i_sb, start + len);
1449 clusters -= cpos;
1450
1451 while (clusters) {
1452 ret = ocfs2_get_clusters(inode, cpos, &phys_cpos,
1453 &alloc_size, NULL);
1454 if (ret) {
1455 mlog_errno(ret);
1456 goto out;
1457 }
1458
1459 /*
1460 * Hole or existing extent len can be arbitrary, so
1461 * cap it to our own allocation request.
1462 */
1463 if (alloc_size > clusters)
1464 alloc_size = clusters;
1465
1466 if (phys_cpos) {
1467 /*
1468 * We already have an allocation at this
1469 * region so we can safely skip it.
1470 */
1471 goto next;
1472 }
1473
1474 ret = __ocfs2_extend_allocation(inode, cpos, alloc_size, 1);
1475 if (ret) {
1476 if (ret != -ENOSPC)
1477 mlog_errno(ret);
1478 goto out;
1479 }
1480
1481next:
1482 cpos += alloc_size;
1483 clusters -= alloc_size;
1484 }
1485
1486 ret = 0;
1487out:
1afc32b9
MF
1488
1489 brelse(di_bh);
2ae99a60
MF
1490 return ret;
1491}
1492
063c4561
MF
1493/*
1494 * Truncate a byte range, avoiding pages within partial clusters. This
1495 * preserves those pages for the zeroing code to write to.
1496 */
1497static void ocfs2_truncate_cluster_pages(struct inode *inode, u64 byte_start,
1498 u64 byte_len)
1499{
1500 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1501 loff_t start, end;
1502 struct address_space *mapping = inode->i_mapping;
1503
1504 start = (loff_t)ocfs2_align_bytes_to_clusters(inode->i_sb, byte_start);
1505 end = byte_start + byte_len;
1506 end = end & ~(osb->s_clustersize - 1);
1507
1508 if (start < end) {
1509 unmap_mapping_range(mapping, start, end - start, 0);
1510 truncate_inode_pages_range(mapping, start, end - 1);
1511 }
1512}
1513
1514static int ocfs2_zero_partial_clusters(struct inode *inode,
1515 u64 start, u64 len)
1516{
1517 int ret = 0;
1518 u64 tmpend, end = start + len;
1519 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1520 unsigned int csize = osb->s_clustersize;
1521 handle_t *handle;
1522
1523 /*
1524 * The "start" and "end" values are NOT necessarily part of
1525 * the range whose allocation is being deleted. Rather, this
1526 * is what the user passed in with the request. We must zero
1527 * partial clusters here. There's no need to worry about
1528 * physical allocation - the zeroing code knows to skip holes.
1529 */
468eedde
TM
1530 trace_ocfs2_zero_partial_clusters(
1531 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1532 (unsigned long long)start, (unsigned long long)end);
063c4561
MF
1533
1534 /*
1535 * If both edges are on a cluster boundary then there's no
1536 * zeroing required as the region is part of the allocation to
1537 * be truncated.
1538 */
1539 if ((start & (csize - 1)) == 0 && (end & (csize - 1)) == 0)
1540 goto out;
1541
1542 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
fa38e92c
JK
1543 if (IS_ERR(handle)) {
1544 ret = PTR_ERR(handle);
063c4561
MF
1545 mlog_errno(ret);
1546 goto out;
1547 }
1548
1549 /*
1550 * We want to get the byte offset of the end of the 1st cluster.
1551 */
1552 tmpend = (u64)osb->s_clustersize + (start & ~(osb->s_clustersize - 1));
1553 if (tmpend > end)
1554 tmpend = end;
1555
468eedde
TM
1556 trace_ocfs2_zero_partial_clusters_range1((unsigned long long)start,
1557 (unsigned long long)tmpend);
063c4561
MF
1558
1559 ret = ocfs2_zero_range_for_truncate(inode, handle, start, tmpend);
1560 if (ret)
1561 mlog_errno(ret);
1562
1563 if (tmpend < end) {
1564 /*
1565 * This may make start and end equal, but the zeroing
1566 * code will skip any work in that case so there's no
1567 * need to catch it up here.
1568 */
1569 start = end & ~(osb->s_clustersize - 1);
1570
468eedde
TM
1571 trace_ocfs2_zero_partial_clusters_range2(
1572 (unsigned long long)start, (unsigned long long)end);
063c4561
MF
1573
1574 ret = ocfs2_zero_range_for_truncate(inode, handle, start, end);
1575 if (ret)
1576 mlog_errno(ret);
1577 }
6fdb702d 1578 ocfs2_update_inode_fsync_trans(handle, inode, 1);
063c4561
MF
1579
1580 ocfs2_commit_trans(osb, handle);
1581out:
1582 return ret;
1583}
1584
c1631d4a
TY
1585static int ocfs2_find_rec(struct ocfs2_extent_list *el, u32 pos)
1586{
1587 int i;
1588 struct ocfs2_extent_rec *rec = NULL;
1589
1590 for (i = le16_to_cpu(el->l_next_free_rec) - 1; i >= 0; i--) {
1591
1592 rec = &el->l_recs[i];
1593
1594 if (le32_to_cpu(rec->e_cpos) < pos)
1595 break;
1596 }
1597
1598 return i;
1599}
1600
1601/*
1602 * Helper to calculate the punching pos and length in one run, we handle the
1603 * following three cases in order:
1604 *
1605 * - remove the entire record
1606 * - remove a partial record
1607 * - no record needs to be removed (hole-punching completed)
1608*/
1609static void ocfs2_calc_trunc_pos(struct inode *inode,
1610 struct ocfs2_extent_list *el,
1611 struct ocfs2_extent_rec *rec,
1612 u32 trunc_start, u32 *trunc_cpos,
1613 u32 *trunc_len, u32 *trunc_end,
1614 u64 *blkno, int *done)
1615{
1616 int ret = 0;
1617 u32 coff, range;
1618
1619 range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec);
1620
1621 if (le32_to_cpu(rec->e_cpos) >= trunc_start) {
9a790ba1
TY
1622 /*
1623 * remove an entire extent record.
1624 */
c1631d4a
TY
1625 *trunc_cpos = le32_to_cpu(rec->e_cpos);
1626 /*
1627 * Skip holes if any.
1628 */
1629 if (range < *trunc_end)
1630 *trunc_end = range;
1631 *trunc_len = *trunc_end - le32_to_cpu(rec->e_cpos);
1632 *blkno = le64_to_cpu(rec->e_blkno);
1633 *trunc_end = le32_to_cpu(rec->e_cpos);
1634 } else if (range > trunc_start) {
9a790ba1
TY
1635 /*
1636 * remove a partial extent record, which means we're
1637 * removing the last extent record.
1638 */
c1631d4a 1639 *trunc_cpos = trunc_start;
9a790ba1
TY
1640 /*
1641 * skip hole if any.
1642 */
1643 if (range < *trunc_end)
1644 *trunc_end = range;
c1631d4a
TY
1645 *trunc_len = *trunc_end - trunc_start;
1646 coff = trunc_start - le32_to_cpu(rec->e_cpos);
1647 *blkno = le64_to_cpu(rec->e_blkno) +
1648 ocfs2_clusters_to_blocks(inode->i_sb, coff);
1649 *trunc_end = trunc_start;
1650 } else {
1651 /*
1652 * It may have two following possibilities:
1653 *
1654 * - last record has been removed
1655 * - trunc_start was within a hole
1656 *
1657 * both two cases mean the completion of hole punching.
1658 */
1659 ret = 1;
1660 }
1661
1662 *done = ret;
1663}
1664
063c4561
MF
1665static int ocfs2_remove_inode_range(struct inode *inode,
1666 struct buffer_head *di_bh, u64 byte_start,
1667 u64 byte_len)
1668{
c1631d4a
TY
1669 int ret = 0, flags = 0, done = 0, i;
1670 u32 trunc_start, trunc_len, trunc_end, trunc_cpos, phys_cpos;
1671 u32 cluster_in_el;
063c4561
MF
1672 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1673 struct ocfs2_cached_dealloc_ctxt dealloc;
b1967d0e 1674 struct address_space *mapping = inode->i_mapping;
fecc0112 1675 struct ocfs2_extent_tree et;
c1631d4a
TY
1676 struct ocfs2_path *path = NULL;
1677 struct ocfs2_extent_list *el = NULL;
1678 struct ocfs2_extent_rec *rec = NULL;
e8aec068 1679 struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data;
c1631d4a 1680 u64 blkno, refcount_loc = le64_to_cpu(di->i_refcount_loc);
063c4561 1681
5e404e9e 1682 ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(inode), di_bh);
063c4561
MF
1683 ocfs2_init_dealloc_ctxt(&dealloc);
1684
468eedde
TM
1685 trace_ocfs2_remove_inode_range(
1686 (unsigned long long)OCFS2_I(inode)->ip_blkno,
1687 (unsigned long long)byte_start,
1688 (unsigned long long)byte_len);
1689
063c4561
MF
1690 if (byte_len == 0)
1691 return 0;
1692
1afc32b9
MF
1693 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
1694 ret = ocfs2_truncate_inline(inode, di_bh, byte_start,
b1967d0e
MF
1695 byte_start + byte_len, 0);
1696 if (ret) {
1afc32b9 1697 mlog_errno(ret);
b1967d0e
MF
1698 goto out;
1699 }
1700 /*
1701 * There's no need to get fancy with the page cache
1702 * truncate of an inline-data inode. We're talking
1703 * about less than a page here, which will be cached
1704 * in the dinode buffer anyway.
1705 */
1706 unmap_mapping_range(mapping, 0, 0, 0);
1707 truncate_inode_pages(mapping, 0);
1708 goto out;
1afc32b9
MF
1709 }
1710
e8aec068
TY
1711 /*
1712 * For reflinks, we may need to CoW 2 clusters which might be
1713 * partially zero'd later, if hole's start and end offset were
1714 * within one cluster(means is not exactly aligned to clustersize).
1715 */
1716
1717 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_HAS_REFCOUNT_FL) {
1718
1719 ret = ocfs2_cow_file_pos(inode, di_bh, byte_start);
1720 if (ret) {
1721 mlog_errno(ret);
1722 goto out;
1723 }
1724
1725 ret = ocfs2_cow_file_pos(inode, di_bh, byte_start + byte_len);
1726 if (ret) {
1727 mlog_errno(ret);
1728 goto out;
1729 }
1730 }
1731
063c4561 1732 trunc_start = ocfs2_clusters_for_bytes(osb->sb, byte_start);
c1631d4a
TY
1733 trunc_end = (byte_start + byte_len) >> osb->s_clustersize_bits;
1734 cluster_in_el = trunc_end;
063c4561 1735
063c4561
MF
1736 ret = ocfs2_zero_partial_clusters(inode, byte_start, byte_len);
1737 if (ret) {
1738 mlog_errno(ret);
1739 goto out;
1740 }
1741
c1631d4a
TY
1742 path = ocfs2_new_path_from_et(&et);
1743 if (!path) {
1744 ret = -ENOMEM;
1745 mlog_errno(ret);
1746 goto out;
1747 }
1748
1749 while (trunc_end > trunc_start) {
1750
1751 ret = ocfs2_find_path(INODE_CACHE(inode), path,
1752 cluster_in_el);
063c4561
MF
1753 if (ret) {
1754 mlog_errno(ret);
1755 goto out;
1756 }
1757
c1631d4a 1758 el = path_leaf_el(path);
063c4561 1759
c1631d4a
TY
1760 i = ocfs2_find_rec(el, trunc_end);
1761 /*
1762 * Need to go to previous extent block.
1763 */
1764 if (i < 0) {
1765 if (path->p_tree_depth == 0)
1766 break;
063c4561 1767
c1631d4a
TY
1768 ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb,
1769 path,
1770 &cluster_in_el);
063c4561
MF
1771 if (ret) {
1772 mlog_errno(ret);
1773 goto out;
1774 }
c1631d4a
TY
1775
1776 /*
1777 * We've reached the leftmost extent block,
1778 * it's safe to leave.
1779 */
1780 if (cluster_in_el == 0)
1781 break;
1782
1783 /*
1784 * The 'pos' searched for previous extent block is
1785 * always one cluster less than actual trunc_end.
1786 */
1787 trunc_end = cluster_in_el + 1;
1788
1789 ocfs2_reinit_path(path, 1);
1790
1791 continue;
1792
1793 } else
1794 rec = &el->l_recs[i];
1795
1796 ocfs2_calc_trunc_pos(inode, el, rec, trunc_start, &trunc_cpos,
1797 &trunc_len, &trunc_end, &blkno, &done);
1798 if (done)
1799 break;
1800
1801 flags = rec->e_flags;
1802 phys_cpos = ocfs2_blocks_to_clusters(inode->i_sb, blkno);
1803
1804 ret = ocfs2_remove_btree_range(inode, &et, trunc_cpos,
1805 phys_cpos, trunc_len, flags,
f62f12b3 1806 &dealloc, refcount_loc, false);
c1631d4a
TY
1807 if (ret < 0) {
1808 mlog_errno(ret);
1809 goto out;
063c4561
MF
1810 }
1811
c1631d4a
TY
1812 cluster_in_el = trunc_end;
1813
1814 ocfs2_reinit_path(path, 1);
063c4561
MF
1815 }
1816
1817 ocfs2_truncate_cluster_pages(inode, byte_start, byte_len);
1818
1819out:
7aebff18 1820 ocfs2_free_path(path);
063c4561
MF
1821 ocfs2_schedule_truncate_log_flush(osb, 1);
1822 ocfs2_run_deallocs(osb, &dealloc);
1823
1824 return ret;
1825}
1826
b2580103
MF
1827/*
1828 * Parts of this function taken from xfs_change_file_space()
1829 */
385820a3
MF
1830static int __ocfs2_change_file_space(struct file *file, struct inode *inode,
1831 loff_t f_pos, unsigned int cmd,
1832 struct ocfs2_space_resv *sr,
1833 int change_size)
b2580103
MF
1834{
1835 int ret;
1836 s64 llen;
385820a3 1837 loff_t size;
b2580103
MF
1838 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1839 struct buffer_head *di_bh = NULL;
1840 handle_t *handle;
a00cce35 1841 unsigned long long max_off = inode->i_sb->s_maxbytes;
b2580103 1842
b2580103
MF
1843 if (ocfs2_is_hard_readonly(osb) || ocfs2_is_soft_readonly(osb))
1844 return -EROFS;
1845
1846 mutex_lock(&inode->i_mutex);
1847
1848 /*
1849 * This prevents concurrent writes on other nodes
1850 */
1851 ret = ocfs2_rw_lock(inode, 1);
1852 if (ret) {
1853 mlog_errno(ret);
1854 goto out;
1855 }
1856
e63aecb6 1857 ret = ocfs2_inode_lock(inode, &di_bh, 1);
b2580103
MF
1858 if (ret) {
1859 mlog_errno(ret);
1860 goto out_rw_unlock;
1861 }
1862
1863 if (inode->i_flags & (S_IMMUTABLE|S_APPEND)) {
1864 ret = -EPERM;
e63aecb6 1865 goto out_inode_unlock;
b2580103
MF
1866 }
1867
1868 switch (sr->l_whence) {
1869 case 0: /*SEEK_SET*/
1870 break;
1871 case 1: /*SEEK_CUR*/
385820a3 1872 sr->l_start += f_pos;
b2580103
MF
1873 break;
1874 case 2: /*SEEK_END*/
1875 sr->l_start += i_size_read(inode);
1876 break;
1877 default:
1878 ret = -EINVAL;
e63aecb6 1879 goto out_inode_unlock;
b2580103
MF
1880 }
1881 sr->l_whence = 0;
1882
1883 llen = sr->l_len > 0 ? sr->l_len - 1 : sr->l_len;
1884
1885 if (sr->l_start < 0
1886 || sr->l_start > max_off
1887 || (sr->l_start + llen) < 0
1888 || (sr->l_start + llen) > max_off) {
1889 ret = -EINVAL;
e63aecb6 1890 goto out_inode_unlock;
b2580103 1891 }
385820a3 1892 size = sr->l_start + sr->l_len;
b2580103 1893
a2a3b398
TS
1894 if (cmd == OCFS2_IOC_RESVSP || cmd == OCFS2_IOC_RESVSP64 ||
1895 cmd == OCFS2_IOC_UNRESVSP || cmd == OCFS2_IOC_UNRESVSP64) {
b2580103
MF
1896 if (sr->l_len <= 0) {
1897 ret = -EINVAL;
e63aecb6 1898 goto out_inode_unlock;
b2580103
MF
1899 }
1900 }
1901
385820a3 1902 if (file && should_remove_suid(file->f_path.dentry)) {
b2580103
MF
1903 ret = __ocfs2_write_remove_suid(inode, di_bh);
1904 if (ret) {
1905 mlog_errno(ret);
e63aecb6 1906 goto out_inode_unlock;
b2580103
MF
1907 }
1908 }
1909
1910 down_write(&OCFS2_I(inode)->ip_alloc_sem);
1911 switch (cmd) {
1912 case OCFS2_IOC_RESVSP:
1913 case OCFS2_IOC_RESVSP64:
1914 /*
1915 * This takes unsigned offsets, but the signed ones we
1916 * pass have been checked against overflow above.
1917 */
1918 ret = ocfs2_allocate_unwritten_extents(inode, sr->l_start,
1919 sr->l_len);
1920 break;
1921 case OCFS2_IOC_UNRESVSP:
1922 case OCFS2_IOC_UNRESVSP64:
1923 ret = ocfs2_remove_inode_range(inode, di_bh, sr->l_start,
1924 sr->l_len);
1925 break;
1926 default:
1927 ret = -EINVAL;
1928 }
1929 up_write(&OCFS2_I(inode)->ip_alloc_sem);
1930 if (ret) {
1931 mlog_errno(ret);
e63aecb6 1932 goto out_inode_unlock;
b2580103
MF
1933 }
1934
1935 /*
1936 * We update c/mtime for these changes
1937 */
1938 handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS);
1939 if (IS_ERR(handle)) {
1940 ret = PTR_ERR(handle);
1941 mlog_errno(ret);
e63aecb6 1942 goto out_inode_unlock;
b2580103
MF
1943 }
1944
385820a3
MF
1945 if (change_size && i_size_read(inode) < size)
1946 i_size_write(inode, size);
1947
b2580103
MF
1948 inode->i_ctime = inode->i_mtime = CURRENT_TIME;
1949 ret = ocfs2_mark_inode_dirty(handle, inode, di_bh);
1950 if (ret < 0)
1951 mlog_errno(ret);
1952
a4e08d00 1953 if (file && (file->f_flags & O_SYNC))
df295d4a
MF
1954 handle->h_sync = 1;
1955
b2580103
MF
1956 ocfs2_commit_trans(osb, handle);
1957
e63aecb6 1958out_inode_unlock:
b2580103 1959 brelse(di_bh);
e63aecb6 1960 ocfs2_inode_unlock(inode, 1);
b2580103
MF
1961out_rw_unlock:
1962 ocfs2_rw_unlock(inode, 1);
1963
b2580103 1964out:
c259ae52 1965 mutex_unlock(&inode->i_mutex);
b2580103
MF
1966 return ret;
1967}
1968
385820a3
MF
1969int ocfs2_change_file_space(struct file *file, unsigned int cmd,
1970 struct ocfs2_space_resv *sr)
1971{
496ad9aa 1972 struct inode *inode = file_inode(file);
c19a28e1 1973 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
fef6925c 1974 int ret;
385820a3
MF
1975
1976 if ((cmd == OCFS2_IOC_RESVSP || cmd == OCFS2_IOC_RESVSP64) &&
1977 !ocfs2_writes_unwritten_extents(osb))
1978 return -ENOTTY;
1979 else if ((cmd == OCFS2_IOC_UNRESVSP || cmd == OCFS2_IOC_UNRESVSP64) &&
1980 !ocfs2_sparse_alloc(osb))
1981 return -ENOTTY;
1982
1983 if (!S_ISREG(inode->i_mode))
1984 return -EINVAL;
1985
1986 if (!(file->f_mode & FMODE_WRITE))
1987 return -EBADF;
1988
fef6925c
JK
1989 ret = mnt_want_write_file(file);
1990 if (ret)
1991 return ret;
1992 ret = __ocfs2_change_file_space(file, inode, file->f_pos, cmd, sr, 0);
1993 mnt_drop_write_file(file);
1994 return ret;
385820a3
MF
1995}
1996
2fe17c10 1997static long ocfs2_fallocate(struct file *file, int mode, loff_t offset,
385820a3
MF
1998 loff_t len)
1999{
496ad9aa 2000 struct inode *inode = file_inode(file);
385820a3
MF
2001 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
2002 struct ocfs2_space_resv sr;
2003 int change_size = 1;
db47fef2 2004 int cmd = OCFS2_IOC_RESVSP64;
385820a3 2005
64c23e86
CH
2006 if (mode & ~(FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE))
2007 return -EOPNOTSUPP;
385820a3
MF
2008 if (!ocfs2_writes_unwritten_extents(osb))
2009 return -EOPNOTSUPP;
2010
385820a3
MF
2011 if (mode & FALLOC_FL_KEEP_SIZE)
2012 change_size = 0;
2013
db47fef2
JB
2014 if (mode & FALLOC_FL_PUNCH_HOLE)
2015 cmd = OCFS2_IOC_UNRESVSP64;
2016
385820a3
MF
2017 sr.l_whence = 0;
2018 sr.l_start = (s64)offset;
2019 sr.l_len = (s64)len;
2020
db47fef2
JB
2021 return __ocfs2_change_file_space(NULL, inode, offset, cmd, &sr,
2022 change_size);
385820a3
MF
2023}
2024
293b2f70
TM
2025int ocfs2_check_range_for_refcount(struct inode *inode, loff_t pos,
2026 size_t count)
2027{
2028 int ret = 0;
2029 unsigned int extent_flags;
2030 u32 cpos, clusters, extent_len, phys_cpos;
2031 struct super_block *sb = inode->i_sb;
2032
2033 if (!ocfs2_refcount_tree(OCFS2_SB(inode->i_sb)) ||
2f48d593
TM
2034 !(OCFS2_I(inode)->ip_dyn_features & OCFS2_HAS_REFCOUNT_FL) ||
2035 OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)
293b2f70
TM
2036 return 0;
2037
2038 cpos = pos >> OCFS2_SB(sb)->s_clustersize_bits;
2039 clusters = ocfs2_clusters_for_bytes(sb, pos + count) - cpos;
2040
2041 while (clusters) {
2042 ret = ocfs2_get_clusters(inode, cpos, &phys_cpos, &extent_len,
2043 &extent_flags);
2044 if (ret < 0) {
2045 mlog_errno(ret);
2046 goto out;
2047 }
2048
2049 if (phys_cpos && (extent_flags & OCFS2_EXT_REFCOUNTED)) {
2050 ret = 1;
2051 break;
2052 }
2053
2054 if (extent_len > clusters)
2055 extent_len = clusters;
2056
2057 clusters -= extent_len;
2058 cpos += extent_len;
2059 }
2060out:
2061 return ret;
2062}
2063
a11f7e63
MF
2064static int ocfs2_is_io_unaligned(struct inode *inode, size_t count, loff_t pos)
2065{
2066 int blockmask = inode->i_sb->s_blocksize - 1;
2067 loff_t final_size = pos + count;
2068
2069 if ((pos & blockmask) || (final_size & blockmask))
2070 return 1;
2071 return 0;
2072}
2073
293b2f70 2074static int ocfs2_prepare_inode_for_refcount(struct inode *inode,
b8908236 2075 struct file *file,
293b2f70
TM
2076 loff_t pos, size_t count,
2077 int *meta_level)
2078{
2079 int ret;
2080 struct buffer_head *di_bh = NULL;
2081 u32 cpos = pos >> OCFS2_SB(inode->i_sb)->s_clustersize_bits;
2082 u32 clusters =
2083 ocfs2_clusters_for_bytes(inode->i_sb, pos + count) - cpos;
2084
2085 ret = ocfs2_inode_lock(inode, &di_bh, 1);
2086 if (ret) {
2087 mlog_errno(ret);
2088 goto out;
2089 }
2090
2091 *meta_level = 1;
2092
c7dd3392 2093 ret = ocfs2_refcount_cow(inode, di_bh, cpos, clusters, UINT_MAX);
293b2f70
TM
2094 if (ret)
2095 mlog_errno(ret);
2096out:
2097 brelse(di_bh);
2098 return ret;
2099}
2100
b8908236 2101static int ocfs2_prepare_inode_for_write(struct file *file,
8659ac25
TY
2102 loff_t *ppos,
2103 size_t count,
9517bac6 2104 int appending,
86470e98
TM
2105 int *direct_io,
2106 int *has_refcount)
ccd979bd 2107{
65ed39d6 2108 int ret = 0, meta_level = 0;
b8908236 2109 struct dentry *dentry = file->f_path.dentry;
8659ac25 2110 struct inode *inode = dentry->d_inode;
468eedde 2111 loff_t saved_pos = 0, end;
ccd979bd 2112
2bd63216 2113 /*
65ed39d6
MF
2114 * We start with a read level meta lock and only jump to an ex
2115 * if we need to make modifications here.
ccd979bd 2116 */
ccd979bd 2117 for(;;) {
e63aecb6 2118 ret = ocfs2_inode_lock(inode, NULL, meta_level);
ccd979bd
MF
2119 if (ret < 0) {
2120 meta_level = -1;
2121 mlog_errno(ret);
2122 goto out;
2123 }
2124
2125 /* Clear suid / sgid if necessary. We do this here
2126 * instead of later in the write path because
2127 * remove_suid() calls ->setattr without any hint that
2128 * we may have already done our cluster locking. Since
2129 * ocfs2_setattr() *must* take cluster locks to
42b2aa86 2130 * proceed, this will lead us to recursively lock the
ccd979bd
MF
2131 * inode. There's also the dinode i_size state which
2132 * can be lost via setattr during extending writes (we
2133 * set inode->i_size at the end of a write. */
8659ac25 2134 if (should_remove_suid(dentry)) {
ccd979bd 2135 if (meta_level == 0) {
e63aecb6 2136 ocfs2_inode_unlock(inode, meta_level);
ccd979bd
MF
2137 meta_level = 1;
2138 continue;
2139 }
2140
2141 ret = ocfs2_write_remove_suid(inode);
2142 if (ret < 0) {
2143 mlog_errno(ret);
8659ac25 2144 goto out_unlock;
ccd979bd
MF
2145 }
2146 }
2147
2148 /* work on a copy of ppos until we're sure that we won't have
2149 * to recalculate it due to relocking. */
468eedde 2150 if (appending)
ccd979bd 2151 saved_pos = i_size_read(inode);
468eedde 2152 else
8659ac25 2153 saved_pos = *ppos;
3a0782d0 2154
65ed39d6 2155 end = saved_pos + count;
9517bac6 2156
293b2f70
TM
2157 ret = ocfs2_check_range_for_refcount(inode, saved_pos, count);
2158 if (ret == 1) {
2159 ocfs2_inode_unlock(inode, meta_level);
2160 meta_level = -1;
2161
2162 ret = ocfs2_prepare_inode_for_refcount(inode,
b8908236 2163 file,
293b2f70
TM
2164 saved_pos,
2165 count,
2166 &meta_level);
86470e98
TM
2167 if (has_refcount)
2168 *has_refcount = 1;
96a1cc73
WW
2169 if (direct_io)
2170 *direct_io = 0;
293b2f70
TM
2171 }
2172
2173 if (ret < 0) {
2174 mlog_errno(ret);
2175 goto out_unlock;
2176 }
2177
65ed39d6
MF
2178 /*
2179 * Skip the O_DIRECT checks if we don't need
2180 * them.
2181 */
2182 if (!direct_io || !(*direct_io))
9517bac6 2183 break;
9517bac6 2184
1afc32b9
MF
2185 /*
2186 * There's no sane way to do direct writes to an inode
2187 * with inline data.
2188 */
2189 if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) {
2190 *direct_io = 0;
2191 break;
2192 }
2193
3a0782d0 2194 /*
65ed39d6
MF
2195 * Allowing concurrent direct writes means
2196 * i_size changes wouldn't be synchronized, so
2197 * one node could wind up truncating another
2198 * nodes writes.
3a0782d0 2199 */
65ed39d6
MF
2200 if (end > i_size_read(inode)) {
2201 *direct_io = 0;
ccd979bd 2202 break;
ccd979bd
MF
2203 }
2204
65ed39d6
MF
2205 /*
2206 * We don't fill holes during direct io, so
2207 * check for them here. If any are found, the
2208 * caller will have to retake some cluster
2209 * locks and initiate the io as buffered.
2210 */
2211 ret = ocfs2_check_range_for_holes(inode, saved_pos, count);
2212 if (ret == 1) {
2213 *direct_io = 0;
2214 ret = 0;
2215 } else if (ret < 0)
2216 mlog_errno(ret);
ccd979bd
MF
2217 break;
2218 }
2219
8659ac25
TY
2220 if (appending)
2221 *ppos = saved_pos;
2222
2223out_unlock:
468eedde
TM
2224 trace_ocfs2_prepare_inode_for_write(OCFS2_I(inode)->ip_blkno,
2225 saved_pos, appending, count,
2226 direct_io, has_refcount);
2227
293b2f70
TM
2228 if (meta_level >= 0)
2229 ocfs2_inode_unlock(inode, meta_level);
8659ac25
TY
2230
2231out:
2232 return ret;
2233}
2234
3ef045c3
AV
2235static ssize_t ocfs2_file_write_iter(struct kiocb *iocb,
2236 struct iov_iter *from)
8659ac25 2237{
9517bac6 2238 int ret, direct_io, appending, rw_level, have_alloc_sem = 0;
86470e98 2239 int can_do_direct, has_refcount = 0;
9517bac6 2240 ssize_t written = 0;
3ef045c3 2241 size_t count = iov_iter_count(from);
9ea2d32f
MF
2242 loff_t old_size, *ppos = &iocb->ki_pos;
2243 u32 old_clusters;
9517bac6 2244 struct file *file = iocb->ki_filp;
496ad9aa 2245 struct inode *inode = file_inode(file);
9ea2d32f 2246 struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
7bdb0d18
TY
2247 int full_coherency = !(osb->s_mount_opt &
2248 OCFS2_MOUNT_COHERENCY_BUFFERED);
a11f7e63 2249 int unaligned_dio = 0;
9517bac6 2250
468eedde
TM
2251 trace_ocfs2_file_aio_write(inode, file, file->f_path.dentry,
2252 (unsigned long long)OCFS2_I(inode)->ip_blkno,
2253 file->f_path.dentry->d_name.len,
2254 file->f_path.dentry->d_name.name,
3ef045c3 2255 (unsigned int)from->nr_segs); /* GRRRRR */
8659ac25 2256
73a7075e 2257 if (iocb->ki_nbytes == 0)
8659ac25
TY
2258 return 0;
2259
9517bac6
MF
2260 appending = file->f_flags & O_APPEND ? 1 : 0;
2261 direct_io = file->f_flags & O_DIRECT ? 1 : 0;
2262
8659ac25 2263 mutex_lock(&inode->i_mutex);
9517bac6 2264
39c99f12
TY
2265 ocfs2_iocb_clear_sem_locked(iocb);
2266
9517bac6 2267relock:
bd5fe6c5 2268 /* to match setattr's i_mutex -> rw_lock ordering */
9517bac6 2269 if (direct_io) {
9517bac6 2270 have_alloc_sem = 1;
39c99f12
TY
2271 /* communicate with ocfs2_dio_end_io */
2272 ocfs2_iocb_set_sem_locked(iocb);
8659ac25
TY
2273 }
2274
7bdb0d18
TY
2275 /*
2276 * Concurrent O_DIRECT writes are allowed with
2277 * mount_option "coherency=buffered".
2278 */
2279 rw_level = (!direct_io || full_coherency);
2280
8659ac25
TY
2281 ret = ocfs2_rw_lock(inode, rw_level);
2282 if (ret < 0) {
8659ac25 2283 mlog_errno(ret);
9517bac6 2284 goto out_sems;
8659ac25
TY
2285 }
2286
7bdb0d18
TY
2287 /*
2288 * O_DIRECT writes with "coherency=full" need to take EX cluster
2289 * inode_lock to guarantee coherency.
2290 */
2291 if (direct_io && full_coherency) {
2292 /*
2293 * We need to take and drop the inode lock to force
2294 * other nodes to drop their caches. Buffered I/O
2295 * already does this in write_begin().
2296 */
2297 ret = ocfs2_inode_lock(inode, NULL, 1);
2298 if (ret < 0) {
2299 mlog_errno(ret);
afe1bb73 2300 goto out;
7bdb0d18
TY
2301 }
2302
2303 ocfs2_inode_unlock(inode, 1);
2304 }
2305
9517bac6 2306 can_do_direct = direct_io;
b8908236 2307 ret = ocfs2_prepare_inode_for_write(file, ppos,
73a7075e 2308 iocb->ki_nbytes, appending,
86470e98 2309 &can_do_direct, &has_refcount);
8659ac25
TY
2310 if (ret < 0) {
2311 mlog_errno(ret);
2312 goto out;
2313 }
ccd979bd 2314
a11f7e63 2315 if (direct_io && !is_sync_kiocb(iocb))
73a7075e 2316 unaligned_dio = ocfs2_is_io_unaligned(inode, iocb->ki_nbytes,
a11f7e63
MF
2317 *ppos);
2318
9517bac6
MF
2319 /*
2320 * We can't complete the direct I/O as requested, fall back to
2321 * buffered I/O.
2322 */
2323 if (direct_io && !can_do_direct) {
2324 ocfs2_rw_unlock(inode, rw_level);
9517bac6
MF
2325
2326 have_alloc_sem = 0;
2327 rw_level = -1;
2328
2329 direct_io = 0;
9517bac6
MF
2330 goto relock;
2331 }
2332
a11f7e63
MF
2333 if (unaligned_dio) {
2334 /*
2335 * Wait on previous unaligned aio to complete before
2336 * proceeding.
2337 */
c18ceab0
WW
2338 mutex_lock(&OCFS2_I(inode)->ip_unaligned_aio);
2339 /* Mark the iocb as needing an unlock in ocfs2_dio_end_io */
a11f7e63
MF
2340 ocfs2_iocb_set_unaligned_aio(iocb);
2341 }
2342
9ea2d32f
MF
2343 /*
2344 * To later detect whether a journal commit for sync writes is
2345 * necessary, we sample i_size, and cluster count here.
2346 */
2347 old_size = i_size_read(inode);
2348 old_clusters = OCFS2_I(inode)->ip_clusters;
2349
ccd979bd 2350 /* communicate with ocfs2_dio_end_io */
7cdfc3a1 2351 ocfs2_iocb_set_rw_locked(iocb, rw_level);
ccd979bd 2352
6b933c8e
LD
2353 ret = generic_write_checks(file, ppos, &count,
2354 S_ISBLK(inode->i_mode));
2355 if (ret)
2356 goto out_dio;
b6af1bcd 2357
3ef045c3 2358 iov_iter_truncate(from, count);
6b933c8e 2359 if (direct_io) {
3ef045c3 2360 written = generic_file_direct_write(iocb, from, *ppos);
9517bac6
MF
2361 if (written < 0) {
2362 ret = written;
2363 goto out_dio;
2364 }
2365 } else {
6b933c8e 2366 current->backing_dev_info = file->f_mapping->backing_dev_info;
3ef045c3 2367 written = generic_perform_write(file, from, *ppos);
58bfab39
AV
2368 if (likely(written >= 0))
2369 iocb->ki_pos = *ppos + written;
6b933c8e 2370 current->backing_dev_info = NULL;
9517bac6 2371 }
ccd979bd 2372
9517bac6 2373out_dio:
ccd979bd 2374 /* buffered aio wouldn't have proper lock coverage today */
9517bac6 2375 BUG_ON(ret == -EIOCBQUEUED && !(file->f_flags & O_DIRECT));
ccd979bd 2376
60c48674 2377 if (((file->f_flags & O_DSYNC) && !direct_io) || IS_SYNC(inode) ||
81c8c82b 2378 ((file->f_flags & O_DIRECT) && !direct_io)) {
1b56e989
AV
2379 ret = filemap_fdatawrite_range(file->f_mapping, *ppos,
2380 *ppos + count - 1);
918941a3
JK
2381 if (ret < 0)
2382 written = ret;
2383
86b9c6f3 2384 if (!ret) {
2b4e30fb 2385 ret = jbd2_journal_force_commit(osb->journal->j_journal);
9ea2d32f
MF
2386 if (ret < 0)
2387 written = ret;
2388 }
918941a3
JK
2389
2390 if (!ret)
1b56e989
AV
2391 ret = filemap_fdatawait_range(file->f_mapping, *ppos,
2392 *ppos + count - 1);
9ea2d32f
MF
2393 }
2394
2bd63216 2395 /*
ccd979bd
MF
2396 * deep in g_f_a_w_n()->ocfs2_direct_IO we pass in a ocfs2_dio_end_io
2397 * function pointer which is called when o_direct io completes so that
bd5fe6c5 2398 * it can unlock our rw lock.
ccd979bd
MF
2399 * Unfortunately there are error cases which call end_io and others
2400 * that don't. so we don't have to unlock the rw_lock if either an
2401 * async dio is going to do it in the future or an end_io after an
2402 * error has already done it.
2403 */
66b116c9 2404 if ((ret == -EIOCBQUEUED) || (!ocfs2_iocb_is_rw_locked(iocb))) {
ccd979bd
MF
2405 rw_level = -1;
2406 have_alloc_sem = 0;
a11f7e63 2407 unaligned_dio = 0;
ccd979bd
MF
2408 }
2409
3e5d3c35
JB
2410 if (unaligned_dio) {
2411 ocfs2_iocb_clear_unaligned_aio(iocb);
c18ceab0 2412 mutex_unlock(&OCFS2_I(inode)->ip_unaligned_aio);
3e5d3c35 2413 }
a11f7e63 2414
ccd979bd 2415out:
9517bac6
MF
2416 if (rw_level != -1)
2417 ocfs2_rw_unlock(inode, rw_level);
2418
2419out_sems:
df2d6f26 2420 if (have_alloc_sem)
39c99f12 2421 ocfs2_iocb_clear_sem_locked(iocb);
9517bac6 2422
1b1dcc1b 2423 mutex_unlock(&inode->i_mutex);
ccd979bd 2424
812e7a6a
WW
2425 if (written)
2426 ret = written;
812e7a6a 2427 return ret;
ccd979bd
MF
2428}
2429
8659ac25
TY
2430static ssize_t ocfs2_file_splice_read(struct file *in,
2431 loff_t *ppos,
2432 struct pipe_inode_info *pipe,
2433 size_t len,
2434 unsigned int flags)
2435{
1962f39a 2436 int ret = 0, lock_level = 0;
496ad9aa 2437 struct inode *inode = file_inode(in);
8659ac25 2438
468eedde
TM
2439 trace_ocfs2_file_splice_read(inode, in, in->f_path.dentry,
2440 (unsigned long long)OCFS2_I(inode)->ip_blkno,
2441 in->f_path.dentry->d_name.len,
2442 in->f_path.dentry->d_name.name, len);
8659ac25
TY
2443
2444 /*
3cd9ad5a 2445 * See the comment in ocfs2_file_read_iter()
8659ac25 2446 */
182be684 2447 ret = ocfs2_inode_lock_atime(inode, in->f_path.mnt, &lock_level);
8659ac25
TY
2448 if (ret < 0) {
2449 mlog_errno(ret);
2450 goto bail;
2451 }
1962f39a 2452 ocfs2_inode_unlock(inode, lock_level);
8659ac25
TY
2453
2454 ret = generic_file_splice_read(in, ppos, pipe, len, flags);
2455
2456bail:
8659ac25
TY
2457 return ret;
2458}
2459
3cd9ad5a
AV
2460static ssize_t ocfs2_file_read_iter(struct kiocb *iocb,
2461 struct iov_iter *to)
ccd979bd 2462{
25899dee 2463 int ret = 0, rw_level = -1, have_alloc_sem = 0, lock_level = 0;
ccd979bd 2464 struct file *filp = iocb->ki_filp;
496ad9aa 2465 struct inode *inode = file_inode(filp);
ccd979bd 2466
468eedde
TM
2467 trace_ocfs2_file_aio_read(inode, filp, filp->f_path.dentry,
2468 (unsigned long long)OCFS2_I(inode)->ip_blkno,
2469 filp->f_path.dentry->d_name.len,
3cd9ad5a
AV
2470 filp->f_path.dentry->d_name.name,
2471 to->nr_segs); /* GRRRRR */
468eedde 2472
ccd979bd
MF
2473
2474 if (!inode) {
2475 ret = -EINVAL;
2476 mlog_errno(ret);
2477 goto bail;
2478 }
2479
39c99f12
TY
2480 ocfs2_iocb_clear_sem_locked(iocb);
2481
2bd63216 2482 /*
ccd979bd
MF
2483 * buffered reads protect themselves in ->readpage(). O_DIRECT reads
2484 * need locks to protect pending reads from racing with truncate.
2485 */
2486 if (filp->f_flags & O_DIRECT) {
ccd979bd 2487 have_alloc_sem = 1;
39c99f12 2488 ocfs2_iocb_set_sem_locked(iocb);
ccd979bd
MF
2489
2490 ret = ocfs2_rw_lock(inode, 0);
2491 if (ret < 0) {
2492 mlog_errno(ret);
2493 goto bail;
2494 }
2495 rw_level = 0;
2496 /* communicate with ocfs2_dio_end_io */
7cdfc3a1 2497 ocfs2_iocb_set_rw_locked(iocb, rw_level);
ccd979bd
MF
2498 }
2499
c4374f8a
MF
2500 /*
2501 * We're fine letting folks race truncates and extending
2502 * writes with read across the cluster, just like they can
2503 * locally. Hence no rw_lock during read.
2bd63216 2504 *
c4374f8a
MF
2505 * Take and drop the meta data lock to update inode fields
2506 * like i_size. This allows the checks down below
2bd63216 2507 * generic_file_aio_read() a chance of actually working.
c4374f8a 2508 */
182be684 2509 ret = ocfs2_inode_lock_atime(inode, filp->f_path.mnt, &lock_level);
c4374f8a
MF
2510 if (ret < 0) {
2511 mlog_errno(ret);
2512 goto bail;
2513 }
e63aecb6 2514 ocfs2_inode_unlock(inode, lock_level);
c4374f8a 2515
3cd9ad5a 2516 ret = generic_file_read_iter(iocb, to);
468eedde 2517 trace_generic_file_aio_read_ret(ret);
ccd979bd
MF
2518
2519 /* buffered aio wouldn't have proper lock coverage today */
2520 BUG_ON(ret == -EIOCBQUEUED && !(filp->f_flags & O_DIRECT));
2521
3ef045c3 2522 /* see ocfs2_file_write_iter */
ccd979bd
MF
2523 if (ret == -EIOCBQUEUED || !ocfs2_iocb_is_rw_locked(iocb)) {
2524 rw_level = -1;
2525 have_alloc_sem = 0;
2526 }
2527
2528bail:
df2d6f26 2529 if (have_alloc_sem)
39c99f12 2530 ocfs2_iocb_clear_sem_locked(iocb);
df2d6f26 2531
2bd63216 2532 if (rw_level != -1)
ccd979bd 2533 ocfs2_rw_unlock(inode, rw_level);
ccd979bd
MF
2534
2535 return ret;
2536}
2537
93862d5e 2538/* Refer generic_file_llseek_unlocked() */
965c8e59 2539static loff_t ocfs2_file_llseek(struct file *file, loff_t offset, int whence)
93862d5e
SM
2540{
2541 struct inode *inode = file->f_mapping->host;
2542 int ret = 0;
2543
2544 mutex_lock(&inode->i_mutex);
2545
965c8e59 2546 switch (whence) {
93862d5e
SM
2547 case SEEK_SET:
2548 break;
2549 case SEEK_END:
c8d888d9
J
2550 /* SEEK_END requires the OCFS2 inode lock for the file
2551 * because it references the file's size.
2552 */
2553 ret = ocfs2_inode_lock(inode, NULL, 0);
2554 if (ret < 0) {
2555 mlog_errno(ret);
2556 goto out;
2557 }
2558 offset += i_size_read(inode);
2559 ocfs2_inode_unlock(inode, 0);
93862d5e
SM
2560 break;
2561 case SEEK_CUR:
2562 if (offset == 0) {
2563 offset = file->f_pos;
2564 goto out;
2565 }
2566 offset += file->f_pos;
2567 break;
2568 case SEEK_DATA:
2569 case SEEK_HOLE:
965c8e59 2570 ret = ocfs2_seek_data_hole_offset(file, &offset, whence);
93862d5e
SM
2571 if (ret)
2572 goto out;
2573 break;
2574 default:
2575 ret = -EINVAL;
2576 goto out;
2577 }
2578
46a1c2c7 2579 offset = vfs_setpos(file, offset, inode->i_sb->s_maxbytes);
93862d5e
SM
2580
2581out:
2582 mutex_unlock(&inode->i_mutex);
2583 if (ret)
2584 return ret;
2585 return offset;
2586}
2587
92e1d5be 2588const struct inode_operations ocfs2_file_iops = {
ccd979bd
MF
2589 .setattr = ocfs2_setattr,
2590 .getattr = ocfs2_getattr,
d38eb8db 2591 .permission = ocfs2_permission,
cf1d6c76
TY
2592 .setxattr = generic_setxattr,
2593 .getxattr = generic_getxattr,
2594 .listxattr = ocfs2_listxattr,
2595 .removexattr = generic_removexattr,
00dc417f 2596 .fiemap = ocfs2_fiemap,
4e34e719 2597 .get_acl = ocfs2_iop_get_acl,
702e5bc6 2598 .set_acl = ocfs2_iop_set_acl,
ccd979bd
MF
2599};
2600
92e1d5be 2601const struct inode_operations ocfs2_special_file_iops = {
ccd979bd
MF
2602 .setattr = ocfs2_setattr,
2603 .getattr = ocfs2_getattr,
d38eb8db 2604 .permission = ocfs2_permission,
4e34e719 2605 .get_acl = ocfs2_iop_get_acl,
702e5bc6 2606 .set_acl = ocfs2_iop_set_acl,
ccd979bd
MF
2607};
2608
53da4939
MF
2609/*
2610 * Other than ->lock, keep ocfs2_fops and ocfs2_dops in sync with
2611 * ocfs2_fops_no_plocks and ocfs2_dops_no_plocks!
2612 */
4b6f5d20 2613const struct file_operations ocfs2_fops = {
93862d5e 2614 .llseek = ocfs2_file_llseek,
3cd9ad5a 2615 .read = new_sync_read,
3ef045c3 2616 .write = new_sync_write,
ccd979bd
MF
2617 .mmap = ocfs2_mmap,
2618 .fsync = ocfs2_sync_file,
2619 .release = ocfs2_file_release,
2620 .open = ocfs2_file_open,
3cd9ad5a 2621 .read_iter = ocfs2_file_read_iter,
3ef045c3 2622 .write_iter = ocfs2_file_write_iter,
c9ec1488 2623 .unlocked_ioctl = ocfs2_ioctl,
586d232b
MF
2624#ifdef CONFIG_COMPAT
2625 .compat_ioctl = ocfs2_compat_ioctl,
2626#endif
53da4939 2627 .lock = ocfs2_lock,
53fc622b 2628 .flock = ocfs2_flock,
8659ac25 2629 .splice_read = ocfs2_file_splice_read,
6dc8bc0f 2630 .splice_write = iter_file_splice_write,
2fe17c10 2631 .fallocate = ocfs2_fallocate,
ccd979bd
MF
2632};
2633
4b6f5d20 2634const struct file_operations ocfs2_dops = {
32c3c0e2 2635 .llseek = generic_file_llseek,
ccd979bd 2636 .read = generic_read_dir,
3704412b 2637 .iterate = ocfs2_readdir,
ccd979bd 2638 .fsync = ocfs2_sync_file,
53fc622b
MF
2639 .release = ocfs2_dir_release,
2640 .open = ocfs2_dir_open,
c9ec1488 2641 .unlocked_ioctl = ocfs2_ioctl,
586d232b
MF
2642#ifdef CONFIG_COMPAT
2643 .compat_ioctl = ocfs2_compat_ioctl,
53da4939
MF
2644#endif
2645 .lock = ocfs2_lock,
2646 .flock = ocfs2_flock,
2647};
2648
2649/*
2650 * POSIX-lockless variants of our file_operations.
2651 *
2652 * These will be used if the underlying cluster stack does not support
2653 * posix file locking, if the user passes the "localflocks" mount
2654 * option, or if we have a local-only fs.
2655 *
2656 * ocfs2_flock is in here because all stacks handle UNIX file locks,
2657 * so we still want it in the case of no stack support for
2658 * plocks. Internally, it will do the right thing when asked to ignore
2659 * the cluster.
2660 */
2661const struct file_operations ocfs2_fops_no_plocks = {
93862d5e 2662 .llseek = ocfs2_file_llseek,
3cd9ad5a 2663 .read = new_sync_read,
3ef045c3 2664 .write = new_sync_write,
53da4939
MF
2665 .mmap = ocfs2_mmap,
2666 .fsync = ocfs2_sync_file,
2667 .release = ocfs2_file_release,
2668 .open = ocfs2_file_open,
3cd9ad5a 2669 .read_iter = ocfs2_file_read_iter,
3ef045c3 2670 .write_iter = ocfs2_file_write_iter,
53da4939
MF
2671 .unlocked_ioctl = ocfs2_ioctl,
2672#ifdef CONFIG_COMPAT
2673 .compat_ioctl = ocfs2_compat_ioctl,
2674#endif
2675 .flock = ocfs2_flock,
2676 .splice_read = ocfs2_file_splice_read,
6dc8bc0f 2677 .splice_write = iter_file_splice_write,
3d1c1829 2678 .fallocate = ocfs2_fallocate,
53da4939
MF
2679};
2680
2681const struct file_operations ocfs2_dops_no_plocks = {
2682 .llseek = generic_file_llseek,
2683 .read = generic_read_dir,
3704412b 2684 .iterate = ocfs2_readdir,
53da4939
MF
2685 .fsync = ocfs2_sync_file,
2686 .release = ocfs2_dir_release,
2687 .open = ocfs2_dir_open,
2688 .unlocked_ioctl = ocfs2_ioctl,
2689#ifdef CONFIG_COMPAT
2690 .compat_ioctl = ocfs2_compat_ioctl,
586d232b 2691#endif
53fc622b 2692 .flock = ocfs2_flock,
ccd979bd 2693};