gfs2: Push file_update_time() into gfs2_page_mkwrite()
[deliverable/linux.git] / fs / gfs2 / file.c
1 /*
2 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
3 * Copyright (C) 2004-2006 Red Hat, Inc. All rights reserved.
4 *
5 * This copyrighted material is made available to anyone wishing to use,
6 * modify, copy, or redistribute it subject to the terms and conditions
7 * of the GNU General Public License version 2.
8 */
9
10 #include <linux/slab.h>
11 #include <linux/spinlock.h>
12 #include <linux/completion.h>
13 #include <linux/buffer_head.h>
14 #include <linux/pagemap.h>
15 #include <linux/uio.h>
16 #include <linux/blkdev.h>
17 #include <linux/mm.h>
18 #include <linux/mount.h>
19 #include <linux/fs.h>
20 #include <linux/gfs2_ondisk.h>
21 #include <linux/falloc.h>
22 #include <linux/swap.h>
23 #include <linux/crc32.h>
24 #include <linux/writeback.h>
25 #include <asm/uaccess.h>
26 #include <linux/dlm.h>
27 #include <linux/dlm_plock.h>
28
29 #include "gfs2.h"
30 #include "incore.h"
31 #include "bmap.h"
32 #include "dir.h"
33 #include "glock.h"
34 #include "glops.h"
35 #include "inode.h"
36 #include "log.h"
37 #include "meta_io.h"
38 #include "quota.h"
39 #include "rgrp.h"
40 #include "trans.h"
41 #include "util.h"
42
43 /**
44 * gfs2_llseek - seek to a location in a file
45 * @file: the file
46 * @offset: the offset
47 * @origin: Where to seek from (SEEK_SET, SEEK_CUR, or SEEK_END)
48 *
49 * SEEK_END requires the glock for the file because it references the
50 * file's size.
51 *
52 * Returns: The new offset, or errno
53 */
54
55 static loff_t gfs2_llseek(struct file *file, loff_t offset, int origin)
56 {
57 struct gfs2_inode *ip = GFS2_I(file->f_mapping->host);
58 struct gfs2_holder i_gh;
59 loff_t error;
60
61 switch (origin) {
62 case SEEK_END: /* These reference inode->i_size */
63 case SEEK_DATA:
64 case SEEK_HOLE:
65 error = gfs2_glock_nq_init(ip->i_gl, LM_ST_SHARED, LM_FLAG_ANY,
66 &i_gh);
67 if (!error) {
68 error = generic_file_llseek(file, offset, origin);
69 gfs2_glock_dq_uninit(&i_gh);
70 }
71 break;
72 case SEEK_CUR:
73 case SEEK_SET:
74 error = generic_file_llseek(file, offset, origin);
75 break;
76 default:
77 error = -EINVAL;
78 }
79
80 return error;
81 }
82
83 /**
84 * gfs2_readdir - Read directory entries from a directory
85 * @file: The directory to read from
86 * @dirent: Buffer for dirents
87 * @filldir: Function used to do the copying
88 *
89 * Returns: errno
90 */
91
92 static int gfs2_readdir(struct file *file, void *dirent, filldir_t filldir)
93 {
94 struct inode *dir = file->f_mapping->host;
95 struct gfs2_inode *dip = GFS2_I(dir);
96 struct gfs2_holder d_gh;
97 u64 offset = file->f_pos;
98 int error;
99
100 gfs2_holder_init(dip->i_gl, LM_ST_SHARED, 0, &d_gh);
101 error = gfs2_glock_nq(&d_gh);
102 if (error) {
103 gfs2_holder_uninit(&d_gh);
104 return error;
105 }
106
107 error = gfs2_dir_read(dir, &offset, dirent, filldir, &file->f_ra);
108
109 gfs2_glock_dq_uninit(&d_gh);
110
111 file->f_pos = offset;
112
113 return error;
114 }
115
116 /**
117 * fsflags_cvt
118 * @table: A table of 32 u32 flags
119 * @val: a 32 bit value to convert
120 *
121 * This function can be used to convert between fsflags values and
122 * GFS2's own flags values.
123 *
124 * Returns: the converted flags
125 */
126 static u32 fsflags_cvt(const u32 *table, u32 val)
127 {
128 u32 res = 0;
129 while(val) {
130 if (val & 1)
131 res |= *table;
132 table++;
133 val >>= 1;
134 }
135 return res;
136 }
137
138 static const u32 fsflags_to_gfs2[32] = {
139 [3] = GFS2_DIF_SYNC,
140 [4] = GFS2_DIF_IMMUTABLE,
141 [5] = GFS2_DIF_APPENDONLY,
142 [7] = GFS2_DIF_NOATIME,
143 [12] = GFS2_DIF_EXHASH,
144 [14] = GFS2_DIF_INHERIT_JDATA,
145 };
146
147 static const u32 gfs2_to_fsflags[32] = {
148 [gfs2fl_Sync] = FS_SYNC_FL,
149 [gfs2fl_Immutable] = FS_IMMUTABLE_FL,
150 [gfs2fl_AppendOnly] = FS_APPEND_FL,
151 [gfs2fl_NoAtime] = FS_NOATIME_FL,
152 [gfs2fl_ExHash] = FS_INDEX_FL,
153 [gfs2fl_InheritJdata] = FS_JOURNAL_DATA_FL,
154 };
155
156 static int gfs2_get_flags(struct file *filp, u32 __user *ptr)
157 {
158 struct inode *inode = filp->f_path.dentry->d_inode;
159 struct gfs2_inode *ip = GFS2_I(inode);
160 struct gfs2_holder gh;
161 int error;
162 u32 fsflags;
163
164 gfs2_holder_init(ip->i_gl, LM_ST_SHARED, 0, &gh);
165 error = gfs2_glock_nq(&gh);
166 if (error)
167 return error;
168
169 fsflags = fsflags_cvt(gfs2_to_fsflags, ip->i_diskflags);
170 if (!S_ISDIR(inode->i_mode) && ip->i_diskflags & GFS2_DIF_JDATA)
171 fsflags |= FS_JOURNAL_DATA_FL;
172 if (put_user(fsflags, ptr))
173 error = -EFAULT;
174
175 gfs2_glock_dq(&gh);
176 gfs2_holder_uninit(&gh);
177 return error;
178 }
179
180 void gfs2_set_inode_flags(struct inode *inode)
181 {
182 struct gfs2_inode *ip = GFS2_I(inode);
183 unsigned int flags = inode->i_flags;
184
185 flags &= ~(S_SYNC|S_APPEND|S_IMMUTABLE|S_NOATIME|S_DIRSYNC|S_NOSEC);
186 if ((ip->i_eattr == 0) && !is_sxid(inode->i_mode))
187 inode->i_flags |= S_NOSEC;
188 if (ip->i_diskflags & GFS2_DIF_IMMUTABLE)
189 flags |= S_IMMUTABLE;
190 if (ip->i_diskflags & GFS2_DIF_APPENDONLY)
191 flags |= S_APPEND;
192 if (ip->i_diskflags & GFS2_DIF_NOATIME)
193 flags |= S_NOATIME;
194 if (ip->i_diskflags & GFS2_DIF_SYNC)
195 flags |= S_SYNC;
196 inode->i_flags = flags;
197 }
198
199 /* Flags that can be set by user space */
200 #define GFS2_FLAGS_USER_SET (GFS2_DIF_JDATA| \
201 GFS2_DIF_IMMUTABLE| \
202 GFS2_DIF_APPENDONLY| \
203 GFS2_DIF_NOATIME| \
204 GFS2_DIF_SYNC| \
205 GFS2_DIF_SYSTEM| \
206 GFS2_DIF_INHERIT_JDATA)
207
208 /**
209 * gfs2_set_flags - set flags on an inode
210 * @inode: The inode
211 * @flags: The flags to set
212 * @mask: Indicates which flags are valid
213 *
214 */
215 static int do_gfs2_set_flags(struct file *filp, u32 reqflags, u32 mask)
216 {
217 struct inode *inode = filp->f_path.dentry->d_inode;
218 struct gfs2_inode *ip = GFS2_I(inode);
219 struct gfs2_sbd *sdp = GFS2_SB(inode);
220 struct buffer_head *bh;
221 struct gfs2_holder gh;
222 int error;
223 u32 new_flags, flags;
224
225 error = mnt_want_write_file(filp);
226 if (error)
227 return error;
228
229 error = gfs2_glock_nq_init(ip->i_gl, LM_ST_EXCLUSIVE, 0, &gh);
230 if (error)
231 goto out_drop_write;
232
233 error = -EACCES;
234 if (!inode_owner_or_capable(inode))
235 goto out;
236
237 error = 0;
238 flags = ip->i_diskflags;
239 new_flags = (flags & ~mask) | (reqflags & mask);
240 if ((new_flags ^ flags) == 0)
241 goto out;
242
243 error = -EINVAL;
244 if ((new_flags ^ flags) & ~GFS2_FLAGS_USER_SET)
245 goto out;
246
247 error = -EPERM;
248 if (IS_IMMUTABLE(inode) && (new_flags & GFS2_DIF_IMMUTABLE))
249 goto out;
250 if (IS_APPEND(inode) && (new_flags & GFS2_DIF_APPENDONLY))
251 goto out;
252 if (((new_flags ^ flags) & GFS2_DIF_IMMUTABLE) &&
253 !capable(CAP_LINUX_IMMUTABLE))
254 goto out;
255 if (!IS_IMMUTABLE(inode)) {
256 error = gfs2_permission(inode, MAY_WRITE);
257 if (error)
258 goto out;
259 }
260 if ((flags ^ new_flags) & GFS2_DIF_JDATA) {
261 if (flags & GFS2_DIF_JDATA)
262 gfs2_log_flush(sdp, ip->i_gl);
263 error = filemap_fdatawrite(inode->i_mapping);
264 if (error)
265 goto out;
266 error = filemap_fdatawait(inode->i_mapping);
267 if (error)
268 goto out;
269 }
270 error = gfs2_trans_begin(sdp, RES_DINODE, 0);
271 if (error)
272 goto out;
273 error = gfs2_meta_inode_buffer(ip, &bh);
274 if (error)
275 goto out_trans_end;
276 gfs2_trans_add_bh(ip->i_gl, bh, 1);
277 ip->i_diskflags = new_flags;
278 gfs2_dinode_out(ip, bh->b_data);
279 brelse(bh);
280 gfs2_set_inode_flags(inode);
281 gfs2_set_aops(inode);
282 out_trans_end:
283 gfs2_trans_end(sdp);
284 out:
285 gfs2_glock_dq_uninit(&gh);
286 out_drop_write:
287 mnt_drop_write_file(filp);
288 return error;
289 }
290
291 static int gfs2_set_flags(struct file *filp, u32 __user *ptr)
292 {
293 struct inode *inode = filp->f_path.dentry->d_inode;
294 u32 fsflags, gfsflags;
295
296 if (get_user(fsflags, ptr))
297 return -EFAULT;
298
299 gfsflags = fsflags_cvt(fsflags_to_gfs2, fsflags);
300 if (!S_ISDIR(inode->i_mode)) {
301 if (gfsflags & GFS2_DIF_INHERIT_JDATA)
302 gfsflags ^= (GFS2_DIF_JDATA | GFS2_DIF_INHERIT_JDATA);
303 return do_gfs2_set_flags(filp, gfsflags, ~0);
304 }
305 return do_gfs2_set_flags(filp, gfsflags, ~GFS2_DIF_JDATA);
306 }
307
308 static long gfs2_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
309 {
310 switch(cmd) {
311 case FS_IOC_GETFLAGS:
312 return gfs2_get_flags(filp, (u32 __user *)arg);
313 case FS_IOC_SETFLAGS:
314 return gfs2_set_flags(filp, (u32 __user *)arg);
315 case FITRIM:
316 return gfs2_fitrim(filp, (void __user *)arg);
317 }
318 return -ENOTTY;
319 }
320
321 /**
322 * gfs2_allocate_page_backing - Use bmap to allocate blocks
323 * @page: The (locked) page to allocate backing for
324 *
325 * We try to allocate all the blocks required for the page in
326 * one go. This might fail for various reasons, so we keep
327 * trying until all the blocks to back this page are allocated.
328 * If some of the blocks are already allocated, thats ok too.
329 */
330
331 static int gfs2_allocate_page_backing(struct page *page)
332 {
333 struct inode *inode = page->mapping->host;
334 struct buffer_head bh;
335 unsigned long size = PAGE_CACHE_SIZE;
336 u64 lblock = page->index << (PAGE_CACHE_SHIFT - inode->i_blkbits);
337
338 do {
339 bh.b_state = 0;
340 bh.b_size = size;
341 gfs2_block_map(inode, lblock, &bh, 1);
342 if (!buffer_mapped(&bh))
343 return -EIO;
344 size -= bh.b_size;
345 lblock += (bh.b_size >> inode->i_blkbits);
346 } while(size > 0);
347 return 0;
348 }
349
350 /**
351 * gfs2_page_mkwrite - Make a shared, mmap()ed, page writable
352 * @vma: The virtual memory area
353 * @page: The page which is about to become writable
354 *
355 * When the page becomes writable, we need to ensure that we have
356 * blocks allocated on disk to back that page.
357 */
358
359 static int gfs2_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf)
360 {
361 struct page *page = vmf->page;
362 struct inode *inode = vma->vm_file->f_path.dentry->d_inode;
363 struct gfs2_inode *ip = GFS2_I(inode);
364 struct gfs2_sbd *sdp = GFS2_SB(inode);
365 unsigned long last_index;
366 u64 pos = page->index << PAGE_CACHE_SHIFT;
367 unsigned int data_blocks, ind_blocks, rblocks;
368 struct gfs2_holder gh;
369 struct gfs2_qadata *qa;
370 loff_t size;
371 int ret;
372
373 /* Wait if fs is frozen. This is racy so we check again later on
374 * and retry if the fs has been frozen after the page lock has
375 * been acquired
376 */
377 vfs_check_frozen(inode->i_sb, SB_FREEZE_WRITE);
378
379 /* Update file times before taking page lock */
380 file_update_time(vma->vm_file);
381
382 gfs2_holder_init(ip->i_gl, LM_ST_EXCLUSIVE, 0, &gh);
383 ret = gfs2_glock_nq(&gh);
384 if (ret)
385 goto out;
386
387 set_bit(GLF_DIRTY, &ip->i_gl->gl_flags);
388 set_bit(GIF_SW_PAGED, &ip->i_flags);
389
390 if (!gfs2_write_alloc_required(ip, pos, PAGE_CACHE_SIZE)) {
391 lock_page(page);
392 if (!PageUptodate(page) || page->mapping != inode->i_mapping) {
393 ret = -EAGAIN;
394 unlock_page(page);
395 }
396 goto out_unlock;
397 }
398
399 ret = -ENOMEM;
400 qa = gfs2_qadata_get(ip);
401 if (qa == NULL)
402 goto out_unlock;
403
404 ret = gfs2_quota_lock_check(ip);
405 if (ret)
406 goto out_alloc_put;
407 gfs2_write_calc_reserv(ip, PAGE_CACHE_SIZE, &data_blocks, &ind_blocks);
408 ret = gfs2_inplace_reserve(ip, data_blocks + ind_blocks);
409 if (ret)
410 goto out_quota_unlock;
411
412 rblocks = RES_DINODE + ind_blocks;
413 if (gfs2_is_jdata(ip))
414 rblocks += data_blocks ? data_blocks : 1;
415 if (ind_blocks || data_blocks) {
416 rblocks += RES_STATFS + RES_QUOTA;
417 rblocks += gfs2_rg_blocks(ip);
418 }
419 ret = gfs2_trans_begin(sdp, rblocks, 0);
420 if (ret)
421 goto out_trans_fail;
422
423 lock_page(page);
424 ret = -EINVAL;
425 size = i_size_read(inode);
426 last_index = (size - 1) >> PAGE_CACHE_SHIFT;
427 /* Check page index against inode size */
428 if (size == 0 || (page->index > last_index))
429 goto out_trans_end;
430
431 ret = -EAGAIN;
432 /* If truncated, we must retry the operation, we may have raced
433 * with the glock demotion code.
434 */
435 if (!PageUptodate(page) || page->mapping != inode->i_mapping)
436 goto out_trans_end;
437
438 /* Unstuff, if required, and allocate backing blocks for page */
439 ret = 0;
440 if (gfs2_is_stuffed(ip))
441 ret = gfs2_unstuff_dinode(ip, page);
442 if (ret == 0)
443 ret = gfs2_allocate_page_backing(page);
444
445 out_trans_end:
446 if (ret)
447 unlock_page(page);
448 gfs2_trans_end(sdp);
449 out_trans_fail:
450 gfs2_inplace_release(ip);
451 out_quota_unlock:
452 gfs2_quota_unlock(ip);
453 out_alloc_put:
454 gfs2_qadata_put(ip);
455 out_unlock:
456 gfs2_glock_dq(&gh);
457 out:
458 gfs2_holder_uninit(&gh);
459 if (ret == 0) {
460 set_page_dirty(page);
461 /* This check must be post dropping of transaction lock */
462 if (inode->i_sb->s_frozen == SB_UNFROZEN) {
463 wait_on_page_writeback(page);
464 } else {
465 ret = -EAGAIN;
466 unlock_page(page);
467 }
468 }
469 return block_page_mkwrite_return(ret);
470 }
471
472 static const struct vm_operations_struct gfs2_vm_ops = {
473 .fault = filemap_fault,
474 .page_mkwrite = gfs2_page_mkwrite,
475 };
476
477 /**
478 * gfs2_mmap -
479 * @file: The file to map
480 * @vma: The VMA which described the mapping
481 *
482 * There is no need to get a lock here unless we should be updating
483 * atime. We ignore any locking errors since the only consequence is
484 * a missed atime update (which will just be deferred until later).
485 *
486 * Returns: 0
487 */
488
489 static int gfs2_mmap(struct file *file, struct vm_area_struct *vma)
490 {
491 struct gfs2_inode *ip = GFS2_I(file->f_mapping->host);
492
493 if (!(file->f_flags & O_NOATIME) &&
494 !IS_NOATIME(&ip->i_inode)) {
495 struct gfs2_holder i_gh;
496 int error;
497
498 gfs2_holder_init(ip->i_gl, LM_ST_SHARED, LM_FLAG_ANY, &i_gh);
499 error = gfs2_glock_nq(&i_gh);
500 if (error == 0) {
501 file_accessed(file);
502 gfs2_glock_dq(&i_gh);
503 }
504 gfs2_holder_uninit(&i_gh);
505 if (error)
506 return error;
507 }
508 vma->vm_ops = &gfs2_vm_ops;
509 vma->vm_flags |= VM_CAN_NONLINEAR;
510
511 return 0;
512 }
513
514 /**
515 * gfs2_open - open a file
516 * @inode: the inode to open
517 * @file: the struct file for this opening
518 *
519 * Returns: errno
520 */
521
522 static int gfs2_open(struct inode *inode, struct file *file)
523 {
524 struct gfs2_inode *ip = GFS2_I(inode);
525 struct gfs2_holder i_gh;
526 struct gfs2_file *fp;
527 int error;
528
529 fp = kzalloc(sizeof(struct gfs2_file), GFP_KERNEL);
530 if (!fp)
531 return -ENOMEM;
532
533 mutex_init(&fp->f_fl_mutex);
534
535 gfs2_assert_warn(GFS2_SB(inode), !file->private_data);
536 file->private_data = fp;
537
538 if (S_ISREG(ip->i_inode.i_mode)) {
539 error = gfs2_glock_nq_init(ip->i_gl, LM_ST_SHARED, LM_FLAG_ANY,
540 &i_gh);
541 if (error)
542 goto fail;
543
544 if (!(file->f_flags & O_LARGEFILE) &&
545 i_size_read(inode) > MAX_NON_LFS) {
546 error = -EOVERFLOW;
547 goto fail_gunlock;
548 }
549
550 gfs2_glock_dq_uninit(&i_gh);
551 }
552
553 return 0;
554
555 fail_gunlock:
556 gfs2_glock_dq_uninit(&i_gh);
557 fail:
558 file->private_data = NULL;
559 kfree(fp);
560 return error;
561 }
562
563 /**
564 * gfs2_release - called to close a struct file
565 * @inode: the inode the struct file belongs to
566 * @file: the struct file being closed
567 *
568 * Returns: errno
569 */
570
571 static int gfs2_release(struct inode *inode, struct file *file)
572 {
573 struct gfs2_sbd *sdp = inode->i_sb->s_fs_info;
574 struct gfs2_file *fp;
575
576 fp = file->private_data;
577 file->private_data = NULL;
578
579 if (gfs2_assert_warn(sdp, fp))
580 return -EIO;
581
582 kfree(fp);
583
584 return 0;
585 }
586
587 /**
588 * gfs2_fsync - sync the dirty data for a file (across the cluster)
589 * @file: the file that points to the dentry
590 * @start: the start position in the file to sync
591 * @end: the end position in the file to sync
592 * @datasync: set if we can ignore timestamp changes
593 *
594 * We split the data flushing here so that we don't wait for the data
595 * until after we've also sent the metadata to disk. Note that for
596 * data=ordered, we will write & wait for the data at the log flush
597 * stage anyway, so this is unlikely to make much of a difference
598 * except in the data=writeback case.
599 *
600 * If the fdatawrite fails due to any reason except -EIO, we will
601 * continue the remainder of the fsync, although we'll still report
602 * the error at the end. This is to match filemap_write_and_wait_range()
603 * behaviour.
604 *
605 * Returns: errno
606 */
607
608 static int gfs2_fsync(struct file *file, loff_t start, loff_t end,
609 int datasync)
610 {
611 struct address_space *mapping = file->f_mapping;
612 struct inode *inode = mapping->host;
613 int sync_state = inode->i_state & (I_DIRTY_SYNC|I_DIRTY_DATASYNC);
614 struct gfs2_inode *ip = GFS2_I(inode);
615 int ret = 0, ret1 = 0;
616
617 if (mapping->nrpages) {
618 ret1 = filemap_fdatawrite_range(mapping, start, end);
619 if (ret1 == -EIO)
620 return ret1;
621 }
622
623 if (datasync)
624 sync_state &= ~I_DIRTY_SYNC;
625
626 if (sync_state) {
627 ret = sync_inode_metadata(inode, 1);
628 if (ret)
629 return ret;
630 if (gfs2_is_jdata(ip))
631 filemap_write_and_wait(mapping);
632 gfs2_ail_flush(ip->i_gl, 1);
633 }
634
635 if (mapping->nrpages)
636 ret = filemap_fdatawait_range(mapping, start, end);
637
638 return ret ? ret : ret1;
639 }
640
641 /**
642 * gfs2_file_aio_write - Perform a write to a file
643 * @iocb: The io context
644 * @iov: The data to write
645 * @nr_segs: Number of @iov segments
646 * @pos: The file position
647 *
648 * We have to do a lock/unlock here to refresh the inode size for
649 * O_APPEND writes, otherwise we can land up writing at the wrong
650 * offset. There is still a race, but provided the app is using its
651 * own file locking, this will make O_APPEND work as expected.
652 *
653 */
654
655 static ssize_t gfs2_file_aio_write(struct kiocb *iocb, const struct iovec *iov,
656 unsigned long nr_segs, loff_t pos)
657 {
658 struct file *file = iocb->ki_filp;
659
660 if (file->f_flags & O_APPEND) {
661 struct dentry *dentry = file->f_dentry;
662 struct gfs2_inode *ip = GFS2_I(dentry->d_inode);
663 struct gfs2_holder gh;
664 int ret;
665
666 ret = gfs2_glock_nq_init(ip->i_gl, LM_ST_SHARED, 0, &gh);
667 if (ret)
668 return ret;
669 gfs2_glock_dq_uninit(&gh);
670 }
671
672 return generic_file_aio_write(iocb, iov, nr_segs, pos);
673 }
674
675 static int fallocate_chunk(struct inode *inode, loff_t offset, loff_t len,
676 int mode)
677 {
678 struct gfs2_inode *ip = GFS2_I(inode);
679 struct buffer_head *dibh;
680 int error;
681 loff_t size = len;
682 unsigned int nr_blks;
683 sector_t lblock = offset >> inode->i_blkbits;
684
685 error = gfs2_meta_inode_buffer(ip, &dibh);
686 if (unlikely(error))
687 return error;
688
689 gfs2_trans_add_bh(ip->i_gl, dibh, 1);
690
691 if (gfs2_is_stuffed(ip)) {
692 error = gfs2_unstuff_dinode(ip, NULL);
693 if (unlikely(error))
694 goto out;
695 }
696
697 while (len) {
698 struct buffer_head bh_map = { .b_state = 0, .b_blocknr = 0 };
699 bh_map.b_size = len;
700 set_buffer_zeronew(&bh_map);
701
702 error = gfs2_block_map(inode, lblock, &bh_map, 1);
703 if (unlikely(error))
704 goto out;
705 len -= bh_map.b_size;
706 nr_blks = bh_map.b_size >> inode->i_blkbits;
707 lblock += nr_blks;
708 if (!buffer_new(&bh_map))
709 continue;
710 if (unlikely(!buffer_zeronew(&bh_map))) {
711 error = -EIO;
712 goto out;
713 }
714 }
715 if (offset + size > inode->i_size && !(mode & FALLOC_FL_KEEP_SIZE))
716 i_size_write(inode, offset + size);
717
718 mark_inode_dirty(inode);
719
720 out:
721 brelse(dibh);
722 return error;
723 }
724
725 static void calc_max_reserv(struct gfs2_inode *ip, loff_t max, loff_t *len,
726 unsigned int *data_blocks, unsigned int *ind_blocks)
727 {
728 const struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);
729 unsigned int max_blocks = ip->i_rgd->rd_free_clone;
730 unsigned int tmp, max_data = max_blocks - 3 * (sdp->sd_max_height - 1);
731
732 for (tmp = max_data; tmp > sdp->sd_diptrs;) {
733 tmp = DIV_ROUND_UP(tmp, sdp->sd_inptrs);
734 max_data -= tmp;
735 }
736 /* This calculation isn't the exact reverse of gfs2_write_calc_reserve,
737 so it might end up with fewer data blocks */
738 if (max_data <= *data_blocks)
739 return;
740 *data_blocks = max_data;
741 *ind_blocks = max_blocks - max_data;
742 *len = ((loff_t)max_data - 3) << sdp->sd_sb.sb_bsize_shift;
743 if (*len > max) {
744 *len = max;
745 gfs2_write_calc_reserv(ip, max, data_blocks, ind_blocks);
746 }
747 }
748
749 static long gfs2_fallocate(struct file *file, int mode, loff_t offset,
750 loff_t len)
751 {
752 struct inode *inode = file->f_path.dentry->d_inode;
753 struct gfs2_sbd *sdp = GFS2_SB(inode);
754 struct gfs2_inode *ip = GFS2_I(inode);
755 unsigned int data_blocks = 0, ind_blocks = 0, rblocks;
756 loff_t bytes, max_bytes;
757 struct gfs2_qadata *qa;
758 int error;
759 const loff_t pos = offset;
760 const loff_t count = len;
761 loff_t bsize_mask = ~((loff_t)sdp->sd_sb.sb_bsize - 1);
762 loff_t next = (offset + len - 1) >> sdp->sd_sb.sb_bsize_shift;
763 loff_t max_chunk_size = UINT_MAX & bsize_mask;
764 next = (next + 1) << sdp->sd_sb.sb_bsize_shift;
765
766 /* We only support the FALLOC_FL_KEEP_SIZE mode */
767 if (mode & ~FALLOC_FL_KEEP_SIZE)
768 return -EOPNOTSUPP;
769
770 offset &= bsize_mask;
771
772 len = next - offset;
773 bytes = sdp->sd_max_rg_data * sdp->sd_sb.sb_bsize / 2;
774 if (!bytes)
775 bytes = UINT_MAX;
776 bytes &= bsize_mask;
777 if (bytes == 0)
778 bytes = sdp->sd_sb.sb_bsize;
779
780 gfs2_holder_init(ip->i_gl, LM_ST_EXCLUSIVE, 0, &ip->i_gh);
781 error = gfs2_glock_nq(&ip->i_gh);
782 if (unlikely(error))
783 goto out_uninit;
784
785 while (len > 0) {
786 if (len < bytes)
787 bytes = len;
788 if (!gfs2_write_alloc_required(ip, offset, bytes)) {
789 len -= bytes;
790 offset += bytes;
791 continue;
792 }
793 qa = gfs2_qadata_get(ip);
794 if (!qa) {
795 error = -ENOMEM;
796 goto out_unlock;
797 }
798
799 error = gfs2_quota_lock_check(ip);
800 if (error)
801 goto out_alloc_put;
802
803 retry:
804 gfs2_write_calc_reserv(ip, bytes, &data_blocks, &ind_blocks);
805
806 error = gfs2_inplace_reserve(ip, data_blocks + ind_blocks);
807 if (error) {
808 if (error == -ENOSPC && bytes > sdp->sd_sb.sb_bsize) {
809 bytes >>= 1;
810 bytes &= bsize_mask;
811 if (bytes == 0)
812 bytes = sdp->sd_sb.sb_bsize;
813 goto retry;
814 }
815 goto out_qunlock;
816 }
817 max_bytes = bytes;
818 calc_max_reserv(ip, (len > max_chunk_size)? max_chunk_size: len,
819 &max_bytes, &data_blocks, &ind_blocks);
820
821 rblocks = RES_DINODE + ind_blocks + RES_STATFS + RES_QUOTA +
822 RES_RG_HDR + gfs2_rg_blocks(ip);
823 if (gfs2_is_jdata(ip))
824 rblocks += data_blocks ? data_blocks : 1;
825
826 error = gfs2_trans_begin(sdp, rblocks,
827 PAGE_CACHE_SIZE/sdp->sd_sb.sb_bsize);
828 if (error)
829 goto out_trans_fail;
830
831 error = fallocate_chunk(inode, offset, max_bytes, mode);
832 gfs2_trans_end(sdp);
833
834 if (error)
835 goto out_trans_fail;
836
837 len -= max_bytes;
838 offset += max_bytes;
839 gfs2_inplace_release(ip);
840 gfs2_quota_unlock(ip);
841 gfs2_qadata_put(ip);
842 }
843
844 if (error == 0)
845 error = generic_write_sync(file, pos, count);
846 goto out_unlock;
847
848 out_trans_fail:
849 gfs2_inplace_release(ip);
850 out_qunlock:
851 gfs2_quota_unlock(ip);
852 out_alloc_put:
853 gfs2_qadata_put(ip);
854 out_unlock:
855 gfs2_glock_dq(&ip->i_gh);
856 out_uninit:
857 gfs2_holder_uninit(&ip->i_gh);
858 return error;
859 }
860
861 #ifdef CONFIG_GFS2_FS_LOCKING_DLM
862
863 /**
864 * gfs2_setlease - acquire/release a file lease
865 * @file: the file pointer
866 * @arg: lease type
867 * @fl: file lock
868 *
869 * We don't currently have a way to enforce a lease across the whole
870 * cluster; until we do, disable leases (by just returning -EINVAL),
871 * unless the administrator has requested purely local locking.
872 *
873 * Locking: called under lock_flocks
874 *
875 * Returns: errno
876 */
877
878 static int gfs2_setlease(struct file *file, long arg, struct file_lock **fl)
879 {
880 return -EINVAL;
881 }
882
883 /**
884 * gfs2_lock - acquire/release a posix lock on a file
885 * @file: the file pointer
886 * @cmd: either modify or retrieve lock state, possibly wait
887 * @fl: type and range of lock
888 *
889 * Returns: errno
890 */
891
892 static int gfs2_lock(struct file *file, int cmd, struct file_lock *fl)
893 {
894 struct gfs2_inode *ip = GFS2_I(file->f_mapping->host);
895 struct gfs2_sbd *sdp = GFS2_SB(file->f_mapping->host);
896 struct lm_lockstruct *ls = &sdp->sd_lockstruct;
897
898 if (!(fl->fl_flags & FL_POSIX))
899 return -ENOLCK;
900 if (__mandatory_lock(&ip->i_inode) && fl->fl_type != F_UNLCK)
901 return -ENOLCK;
902
903 if (cmd == F_CANCELLK) {
904 /* Hack: */
905 cmd = F_SETLK;
906 fl->fl_type = F_UNLCK;
907 }
908 if (unlikely(test_bit(SDF_SHUTDOWN, &sdp->sd_flags)))
909 return -EIO;
910 if (IS_GETLK(cmd))
911 return dlm_posix_get(ls->ls_dlm, ip->i_no_addr, file, fl);
912 else if (fl->fl_type == F_UNLCK)
913 return dlm_posix_unlock(ls->ls_dlm, ip->i_no_addr, file, fl);
914 else
915 return dlm_posix_lock(ls->ls_dlm, ip->i_no_addr, file, cmd, fl);
916 }
917
918 static int do_flock(struct file *file, int cmd, struct file_lock *fl)
919 {
920 struct gfs2_file *fp = file->private_data;
921 struct gfs2_holder *fl_gh = &fp->f_fl_gh;
922 struct gfs2_inode *ip = GFS2_I(file->f_path.dentry->d_inode);
923 struct gfs2_glock *gl;
924 unsigned int state;
925 int flags;
926 int error = 0;
927
928 state = (fl->fl_type == F_WRLCK) ? LM_ST_EXCLUSIVE : LM_ST_SHARED;
929 flags = (IS_SETLKW(cmd) ? 0 : LM_FLAG_TRY) | GL_EXACT | GL_NOCACHE;
930
931 mutex_lock(&fp->f_fl_mutex);
932
933 gl = fl_gh->gh_gl;
934 if (gl) {
935 if (fl_gh->gh_state == state)
936 goto out;
937 flock_lock_file_wait(file,
938 &(struct file_lock){.fl_type = F_UNLCK});
939 gfs2_glock_dq_wait(fl_gh);
940 gfs2_holder_reinit(state, flags, fl_gh);
941 } else {
942 error = gfs2_glock_get(GFS2_SB(&ip->i_inode), ip->i_no_addr,
943 &gfs2_flock_glops, CREATE, &gl);
944 if (error)
945 goto out;
946 gfs2_holder_init(gl, state, flags, fl_gh);
947 gfs2_glock_put(gl);
948 }
949 error = gfs2_glock_nq(fl_gh);
950 if (error) {
951 gfs2_holder_uninit(fl_gh);
952 if (error == GLR_TRYFAILED)
953 error = -EAGAIN;
954 } else {
955 error = flock_lock_file_wait(file, fl);
956 gfs2_assert_warn(GFS2_SB(&ip->i_inode), !error);
957 }
958
959 out:
960 mutex_unlock(&fp->f_fl_mutex);
961 return error;
962 }
963
964 static void do_unflock(struct file *file, struct file_lock *fl)
965 {
966 struct gfs2_file *fp = file->private_data;
967 struct gfs2_holder *fl_gh = &fp->f_fl_gh;
968
969 mutex_lock(&fp->f_fl_mutex);
970 flock_lock_file_wait(file, fl);
971 if (fl_gh->gh_gl) {
972 gfs2_glock_dq_wait(fl_gh);
973 gfs2_holder_uninit(fl_gh);
974 }
975 mutex_unlock(&fp->f_fl_mutex);
976 }
977
978 /**
979 * gfs2_flock - acquire/release a flock lock on a file
980 * @file: the file pointer
981 * @cmd: either modify or retrieve lock state, possibly wait
982 * @fl: type and range of lock
983 *
984 * Returns: errno
985 */
986
987 static int gfs2_flock(struct file *file, int cmd, struct file_lock *fl)
988 {
989 if (!(fl->fl_flags & FL_FLOCK))
990 return -ENOLCK;
991 if (fl->fl_type & LOCK_MAND)
992 return -EOPNOTSUPP;
993
994 if (fl->fl_type == F_UNLCK) {
995 do_unflock(file, fl);
996 return 0;
997 } else {
998 return do_flock(file, cmd, fl);
999 }
1000 }
1001
1002 const struct file_operations gfs2_file_fops = {
1003 .llseek = gfs2_llseek,
1004 .read = do_sync_read,
1005 .aio_read = generic_file_aio_read,
1006 .write = do_sync_write,
1007 .aio_write = gfs2_file_aio_write,
1008 .unlocked_ioctl = gfs2_ioctl,
1009 .mmap = gfs2_mmap,
1010 .open = gfs2_open,
1011 .release = gfs2_release,
1012 .fsync = gfs2_fsync,
1013 .lock = gfs2_lock,
1014 .flock = gfs2_flock,
1015 .splice_read = generic_file_splice_read,
1016 .splice_write = generic_file_splice_write,
1017 .setlease = gfs2_setlease,
1018 .fallocate = gfs2_fallocate,
1019 };
1020
1021 const struct file_operations gfs2_dir_fops = {
1022 .readdir = gfs2_readdir,
1023 .unlocked_ioctl = gfs2_ioctl,
1024 .open = gfs2_open,
1025 .release = gfs2_release,
1026 .fsync = gfs2_fsync,
1027 .lock = gfs2_lock,
1028 .flock = gfs2_flock,
1029 .llseek = default_llseek,
1030 };
1031
1032 #endif /* CONFIG_GFS2_FS_LOCKING_DLM */
1033
1034 const struct file_operations gfs2_file_fops_nolock = {
1035 .llseek = gfs2_llseek,
1036 .read = do_sync_read,
1037 .aio_read = generic_file_aio_read,
1038 .write = do_sync_write,
1039 .aio_write = gfs2_file_aio_write,
1040 .unlocked_ioctl = gfs2_ioctl,
1041 .mmap = gfs2_mmap,
1042 .open = gfs2_open,
1043 .release = gfs2_release,
1044 .fsync = gfs2_fsync,
1045 .splice_read = generic_file_splice_read,
1046 .splice_write = generic_file_splice_write,
1047 .setlease = generic_setlease,
1048 .fallocate = gfs2_fallocate,
1049 };
1050
1051 const struct file_operations gfs2_dir_fops_nolock = {
1052 .readdir = gfs2_readdir,
1053 .unlocked_ioctl = gfs2_ioctl,
1054 .open = gfs2_open,
1055 .release = gfs2_release,
1056 .fsync = gfs2_fsync,
1057 .llseek = default_llseek,
1058 };
1059
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