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ac27a0ec 1/*
617ba13b 2 * linux/fs/ext4/file.c
ac27a0ec
DK
3 *
4 * Copyright (C) 1992, 1993, 1994, 1995
5 * Remy Card (card@masi.ibp.fr)
6 * Laboratoire MASI - Institut Blaise Pascal
7 * Universite Pierre et Marie Curie (Paris VI)
8 *
9 * from
10 *
11 * linux/fs/minix/file.c
12 *
13 * Copyright (C) 1991, 1992 Linus Torvalds
14 *
617ba13b 15 * ext4 fs regular file handling primitives
ac27a0ec
DK
16 *
17 * 64-bit file support on 64-bit platforms by Jakub Jelinek
18 * (jj@sunsite.ms.mff.cuni.cz)
19 */
20
21#include <linux/time.h>
22#include <linux/fs.h>
bc0b0d6d
TT
23#include <linux/mount.h>
24#include <linux/path.h>
c94c2acf 25#include <linux/dax.h>
871a2931 26#include <linux/quotaops.h>
c8c0df24 27#include <linux/pagevec.h>
e2e40f2c 28#include <linux/uio.h>
3dcf5451
CH
29#include "ext4.h"
30#include "ext4_jbd2.h"
ac27a0ec
DK
31#include "xattr.h"
32#include "acl.h"
33
364443cb
JK
34#ifdef CONFIG_FS_DAX
35static ssize_t ext4_dax_read_iter(struct kiocb *iocb, struct iov_iter *to)
36{
37 struct inode *inode = file_inode(iocb->ki_filp);
38 ssize_t ret;
39
40 inode_lock_shared(inode);
41 /*
42 * Recheck under inode lock - at this point we are sure it cannot
43 * change anymore
44 */
45 if (!IS_DAX(inode)) {
46 inode_unlock_shared(inode);
47 /* Fallback to buffered IO in case we cannot support DAX */
48 return generic_file_read_iter(iocb, to);
49 }
50 ret = dax_iomap_rw(iocb, to, &ext4_iomap_ops);
51 inode_unlock_shared(inode);
52
53 file_accessed(iocb->ki_filp);
54 return ret;
55}
56#endif
57
58static ssize_t ext4_file_read_iter(struct kiocb *iocb, struct iov_iter *to)
59{
0db1ff22
TT
60 if (unlikely(ext4_forced_shutdown(EXT4_SB(file_inode(iocb->ki_filp)->i_sb))))
61 return -EIO;
62
364443cb
JK
63 if (!iov_iter_count(to))
64 return 0; /* skip atime */
65
66#ifdef CONFIG_FS_DAX
67 if (IS_DAX(file_inode(iocb->ki_filp)))
68 return ext4_dax_read_iter(iocb, to);
69#endif
70 return generic_file_read_iter(iocb, to);
71}
72
ac27a0ec
DK
73/*
74 * Called when an inode is released. Note that this is different
617ba13b 75 * from ext4_file_open: open gets called at every open, but release
ac27a0ec
DK
76 * gets called only when /all/ the files are closed.
77 */
af5bc92d 78static int ext4_release_file(struct inode *inode, struct file *filp)
ac27a0ec 79{
19f5fb7a 80 if (ext4_test_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE)) {
7d8f9f7d 81 ext4_alloc_da_blocks(inode);
19f5fb7a 82 ext4_clear_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE);
7d8f9f7d 83 }
ac27a0ec
DK
84 /* if we are the last writer on the inode, drop the block reservation */
85 if ((filp->f_mode & FMODE_WRITE) &&
d6014301
AK
86 (atomic_read(&inode->i_writecount) == 1) &&
87 !EXT4_I(inode)->i_reserved_data_blocks)
ac27a0ec 88 {
0e855ac8 89 down_write(&EXT4_I(inode)->i_data_sem);
c2ea3fde 90 ext4_discard_preallocations(inode);
0e855ac8 91 up_write(&EXT4_I(inode)->i_data_sem);
ac27a0ec
DK
92 }
93 if (is_dx(inode) && filp->private_data)
617ba13b 94 ext4_htree_free_dir_info(filp->private_data);
ac27a0ec
DK
95
96 return 0;
97}
98
c197855e 99static void ext4_unwritten_wait(struct inode *inode)
e9e3bcec
ES
100{
101 wait_queue_head_t *wq = ext4_ioend_wq(inode);
102
e27f41e1 103 wait_event(*wq, (atomic_read(&EXT4_I(inode)->i_unwritten) == 0));
e9e3bcec
ES
104}
105
106/*
107 * This tests whether the IO in question is block-aligned or not.
108 * Ext4 utilizes unwritten extents when hole-filling during direct IO, and they
109 * are converted to written only after the IO is complete. Until they are
110 * mapped, these blocks appear as holes, so dio_zero_block() will assume that
111 * it needs to zero out portions of the start and/or end block. If 2 AIO
112 * threads are at work on the same unwritten block, they must be synchronized
113 * or one thread will zero the other's data, causing corruption.
114 */
115static int
9b884164 116ext4_unaligned_aio(struct inode *inode, struct iov_iter *from, loff_t pos)
e9e3bcec
ES
117{
118 struct super_block *sb = inode->i_sb;
119 int blockmask = sb->s_blocksize - 1;
e9e3bcec 120
6e6358fc 121 if (pos >= i_size_read(inode))
e9e3bcec
ES
122 return 0;
123
9b884164 124 if ((pos | iov_iter_alignment(from)) & blockmask)
e9e3bcec
ES
125 return 1;
126
127 return 0;
128}
129
213bcd9c
JK
130/* Is IO overwriting allocated and initialized blocks? */
131static bool ext4_overwrite_io(struct inode *inode, loff_t pos, loff_t len)
132{
133 struct ext4_map_blocks map;
134 unsigned int blkbits = inode->i_blkbits;
135 int err, blklen;
136
137 if (pos + len > i_size_read(inode))
138 return false;
139
140 map.m_lblk = pos >> blkbits;
141 map.m_len = EXT4_MAX_BLOCKS(len, pos, blkbits);
142 blklen = map.m_len;
143
144 err = ext4_map_blocks(NULL, inode, &map, 0);
145 /*
146 * 'err==len' means that all of the blocks have been preallocated,
147 * regardless of whether they have been initialized or not. To exclude
148 * unwritten extents, we need to check m_flags.
149 */
150 return err == blklen && (map.m_flags & EXT4_MAP_MAPPED);
151}
152
153static ssize_t ext4_write_checks(struct kiocb *iocb, struct iov_iter *from)
154{
155 struct inode *inode = file_inode(iocb->ki_filp);
156 ssize_t ret;
157
158 ret = generic_write_checks(iocb, from);
159 if (ret <= 0)
160 return ret;
161 /*
162 * If we have encountered a bitmap-format file, the size limit
163 * is smaller than s_maxbytes, which is for extent-mapped files.
164 */
165 if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))) {
166 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
167
168 if (iocb->ki_pos >= sbi->s_bitmap_maxbytes)
169 return -EFBIG;
170 iov_iter_truncate(from, sbi->s_bitmap_maxbytes - iocb->ki_pos);
171 }
172 return iov_iter_count(from);
173}
174
776722e8
JK
175#ifdef CONFIG_FS_DAX
176static ssize_t
177ext4_dax_write_iter(struct kiocb *iocb, struct iov_iter *from)
178{
179 struct inode *inode = file_inode(iocb->ki_filp);
180 ssize_t ret;
776722e8
JK
181
182 inode_lock(inode);
183 ret = ext4_write_checks(iocb, from);
184 if (ret <= 0)
185 goto out;
186 ret = file_remove_privs(iocb->ki_filp);
187 if (ret)
188 goto out;
189 ret = file_update_time(iocb->ki_filp);
190 if (ret)
191 goto out;
192
776722e8
JK
193 ret = dax_iomap_rw(iocb, from, &ext4_iomap_ops);
194out:
ff5462e3 195 inode_unlock(inode);
776722e8
JK
196 if (ret > 0)
197 ret = generic_write_sync(iocb, ret);
198 return ret;
199}
200#endif
201
ac27a0ec 202static ssize_t
9b884164 203ext4_file_write_iter(struct kiocb *iocb, struct iov_iter *from)
ac27a0ec 204{
8ad2850f 205 struct inode *inode = file_inode(iocb->ki_filp);
2ba48ce5 206 int o_direct = iocb->ki_flags & IOCB_DIRECT;
e142d052 207 int unaligned_aio = 0;
4bd809db 208 int overwrite = 0;
8563000d 209 ssize_t ret;
7608e610 210
0db1ff22
TT
211 if (unlikely(ext4_forced_shutdown(EXT4_SB(inode->i_sb))))
212 return -EIO;
213
776722e8
JK
214#ifdef CONFIG_FS_DAX
215 if (IS_DAX(inode))
216 return ext4_dax_write_iter(iocb, from);
217#endif
218
e142d052 219 inode_lock(inode);
213bcd9c 220 ret = ext4_write_checks(iocb, from);
e142d052
JK
221 if (ret <= 0)
222 goto out;
223
f5ccfe1d 224 /*
e142d052
JK
225 * Unaligned direct AIO must be serialized among each other as zeroing
226 * of partial blocks of two competing unaligned AIOs can result in data
227 * corruption.
f5ccfe1d 228 */
e142d052 229 if (o_direct && ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS) &&
f5ccfe1d 230 !is_sync_kiocb(iocb) &&
e142d052
JK
231 ext4_unaligned_aio(inode, from, iocb->ki_pos)) {
232 unaligned_aio = 1;
f5ccfe1d
TT
233 ext4_unwritten_wait(inode);
234 }
235
a41537e6 236 iocb->private = &overwrite;
213bcd9c
JK
237 /* Check whether we do a DIO overwrite or not */
238 if (o_direct && ext4_should_dioread_nolock(inode) && !unaligned_aio &&
239 ext4_overwrite_io(inode, iocb->ki_pos, iov_iter_count(from)))
240 overwrite = 1;
7608e610 241
9b884164 242 ret = __generic_file_write_iter(iocb, from);
5955102c 243 inode_unlock(inode);
7608e610 244
e2592217
CH
245 if (ret > 0)
246 ret = generic_write_sync(iocb, ret);
e9e3bcec 247
e768d7ff
AV
248 return ret;
249
250out:
5955102c 251 inode_unlock(inode);
e9e3bcec 252 return ret;
ac27a0ec
DK
253}
254
923ae0ff 255#ifdef CONFIG_FS_DAX
c791ace1
DJ
256static int ext4_dax_huge_fault(struct vm_fault *vmf,
257 enum page_entry_size pe_size)
923ae0ff 258{
01a33b4a 259 int result;
11bac800 260 struct inode *inode = file_inode(vmf->vma->vm_file);
ea3d7209 261 struct super_block *sb = inode->i_sb;
01a33b4a
MW
262 bool write = vmf->flags & FAULT_FLAG_WRITE;
263
264 if (write) {
265 sb_start_pagefault(sb);
11bac800 266 file_update_time(vmf->vma->vm_file);
1db17542
JK
267 }
268 down_read(&EXT4_I(inode)->i_mmap_sem);
c791ace1 269 result = dax_iomap_fault(vmf, pe_size, &ext4_iomap_ops);
1db17542
JK
270 up_read(&EXT4_I(inode)->i_mmap_sem);
271 if (write)
01a33b4a 272 sb_end_pagefault(sb);
01a33b4a
MW
273
274 return result;
923ae0ff
RZ
275}
276
c791ace1
DJ
277static int ext4_dax_fault(struct vm_fault *vmf)
278{
279 return ext4_dax_huge_fault(vmf, PE_SIZE_PTE);
280}
281
ea3d7209 282/*
1e9d180b 283 * Handle write fault for VM_MIXEDMAP mappings. Similarly to ext4_dax_fault()
ea3d7209
JK
284 * handler we check for races agaist truncate. Note that since we cycle through
285 * i_mmap_sem, we are sure that also any hole punching that began before we
286 * were called is finished by now and so if it included part of the file we
287 * are working on, our pte will get unmapped and the check for pte_same() in
288 * wp_pfn_shared() fails. Thus fault gets retried and things work out as
289 * desired.
290 */
11bac800 291static int ext4_dax_pfn_mkwrite(struct vm_fault *vmf)
ea3d7209 292{
11bac800 293 struct inode *inode = file_inode(vmf->vma->vm_file);
ea3d7209 294 struct super_block *sb = inode->i_sb;
ea3d7209 295 loff_t size;
d5be7a03 296 int ret;
ea3d7209
JK
297
298 sb_start_pagefault(sb);
11bac800 299 file_update_time(vmf->vma->vm_file);
ea3d7209
JK
300 down_read(&EXT4_I(inode)->i_mmap_sem);
301 size = (i_size_read(inode) + PAGE_SIZE - 1) >> PAGE_SHIFT;
302 if (vmf->pgoff >= size)
303 ret = VM_FAULT_SIGBUS;
d5be7a03 304 else
11bac800 305 ret = dax_pfn_mkwrite(vmf);
ea3d7209
JK
306 up_read(&EXT4_I(inode)->i_mmap_sem);
307 sb_end_pagefault(sb);
308
309 return ret;
923ae0ff
RZ
310}
311
312static const struct vm_operations_struct ext4_dax_vm_ops = {
313 .fault = ext4_dax_fault,
c791ace1 314 .huge_fault = ext4_dax_huge_fault,
1e9d180b 315 .page_mkwrite = ext4_dax_fault,
ea3d7209 316 .pfn_mkwrite = ext4_dax_pfn_mkwrite,
923ae0ff
RZ
317};
318#else
319#define ext4_dax_vm_ops ext4_file_vm_ops
320#endif
321
f0f37e2f 322static const struct vm_operations_struct ext4_file_vm_ops = {
ea3d7209 323 .fault = ext4_filemap_fault,
f1820361 324 .map_pages = filemap_map_pages,
2e9ee850
AK
325 .page_mkwrite = ext4_page_mkwrite,
326};
327
328static int ext4_file_mmap(struct file *file, struct vm_area_struct *vma)
329{
c9c7429c
MH
330 struct inode *inode = file->f_mapping->host;
331
0db1ff22
TT
332 if (unlikely(ext4_forced_shutdown(EXT4_SB(inode->i_sb))))
333 return -EIO;
334
c9c7429c 335 if (ext4_encrypted_inode(inode)) {
a7550b30 336 int err = fscrypt_get_encryption_info(inode);
c9c7429c
MH
337 if (err)
338 return 0;
a7550b30 339 if (!fscrypt_has_encryption_key(inode))
abdd438b 340 return -ENOKEY;
c9c7429c 341 }
2e9ee850 342 file_accessed(file);
923ae0ff
RZ
343 if (IS_DAX(file_inode(file))) {
344 vma->vm_ops = &ext4_dax_vm_ops;
11bd1a9e 345 vma->vm_flags |= VM_MIXEDMAP | VM_HUGEPAGE;
923ae0ff
RZ
346 } else {
347 vma->vm_ops = &ext4_file_vm_ops;
348 }
2e9ee850
AK
349 return 0;
350}
351
bc0b0d6d
TT
352static int ext4_file_open(struct inode * inode, struct file * filp)
353{
354 struct super_block *sb = inode->i_sb;
355 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
356 struct vfsmount *mnt = filp->f_path.mnt;
9dd78d8c 357 struct dentry *dir;
bc0b0d6d
TT
358 struct path path;
359 char buf[64], *cp;
c9c7429c 360 int ret;
bc0b0d6d 361
0db1ff22
TT
362 if (unlikely(ext4_forced_shutdown(EXT4_SB(inode->i_sb))))
363 return -EIO;
364
bc0b0d6d
TT
365 if (unlikely(!(sbi->s_mount_flags & EXT4_MF_MNTDIR_SAMPLED) &&
366 !(sb->s_flags & MS_RDONLY))) {
367 sbi->s_mount_flags |= EXT4_MF_MNTDIR_SAMPLED;
368 /*
369 * Sample where the filesystem has been mounted and
370 * store it in the superblock for sysadmin convenience
371 * when trying to sort through large numbers of block
372 * devices or filesystem images.
373 */
374 memset(buf, 0, sizeof(buf));
3899167d
AV
375 path.mnt = mnt;
376 path.dentry = mnt->mnt_root;
bc0b0d6d 377 cp = d_path(&path, buf, sizeof(buf));
bc0b0d6d 378 if (!IS_ERR(cp)) {
044ce47f
JK
379 handle_t *handle;
380 int err;
381
9924a92a 382 handle = ext4_journal_start_sb(sb, EXT4_HT_MISC, 1);
044ce47f
JK
383 if (IS_ERR(handle))
384 return PTR_ERR(handle);
5d601255 385 BUFFER_TRACE(sbi->s_sbh, "get_write_access");
044ce47f
JK
386 err = ext4_journal_get_write_access(handle, sbi->s_sbh);
387 if (err) {
388 ext4_journal_stop(handle);
389 return err;
390 }
cf803903
DW
391 strlcpy(sbi->s_es->s_last_mounted, cp,
392 sizeof(sbi->s_es->s_last_mounted));
044ce47f
JK
393 ext4_handle_dirty_super(handle, sb);
394 ext4_journal_stop(handle);
bc0b0d6d
TT
395 }
396 }
abdd438b 397 if (ext4_encrypted_inode(inode)) {
a7550b30 398 ret = fscrypt_get_encryption_info(inode);
abdd438b
TT
399 if (ret)
400 return -EACCES;
a7550b30 401 if (!fscrypt_has_encryption_key(inode))
abdd438b
TT
402 return -ENOKEY;
403 }
9dd78d8c 404
c0a37d48 405 dir = dget_parent(file_dentry(filp));
9dd78d8c 406 if (ext4_encrypted_inode(d_inode(dir)) &&
a7550b30 407 !fscrypt_has_permitted_context(d_inode(dir), inode)) {
ff978b09 408 ext4_warning(inode->i_sb,
8d2ae1cb 409 "Inconsistent encryption contexts: %lu/%lu",
9dd78d8c 410 (unsigned long) d_inode(dir)->i_ino,
ff978b09 411 (unsigned long) inode->i_ino);
9dd78d8c 412 dput(dir);
ff978b09
TT
413 return -EPERM;
414 }
9dd78d8c 415 dput(dir);
8aefcd55
TT
416 /*
417 * Set up the jbd2_inode if we are opening the inode for
418 * writing and the journal is present
419 */
a361293f 420 if (filp->f_mode & FMODE_WRITE) {
c9c7429c 421 ret = ext4_inode_attach_jinode(inode);
a361293f
JK
422 if (ret < 0)
423 return ret;
8aefcd55 424 }
abdd438b 425 return dquot_file_open(inode, filp);
bc0b0d6d
TT
426}
427
c8c0df24
ZL
428/*
429 * Here we use ext4_map_blocks() to get a block mapping for a extent-based
430 * file rather than ext4_ext_walk_space() because we can introduce
431 * SEEK_DATA/SEEK_HOLE for block-mapped and extent-mapped file at the same
432 * function. When extent status tree has been fully implemented, it will
433 * track all extent status for a file and we can directly use it to
434 * retrieve the offset for SEEK_DATA/SEEK_HOLE.
435 */
436
437/*
438 * When we retrieve the offset for SEEK_DATA/SEEK_HOLE, we would need to
439 * lookup page cache to check whether or not there has some data between
440 * [startoff, endoff] because, if this range contains an unwritten extent,
441 * we determine this extent as a data or a hole according to whether the
442 * page cache has data or not.
443 */
ad7fefb1
TT
444static int ext4_find_unwritten_pgoff(struct inode *inode,
445 int whence,
2d90c160 446 ext4_lblk_t end_blk,
ad7fefb1 447 loff_t *offset)
c8c0df24
ZL
448{
449 struct pagevec pvec;
ad7fefb1 450 unsigned int blkbits;
c8c0df24
ZL
451 pgoff_t index;
452 pgoff_t end;
ad7fefb1 453 loff_t endoff;
c8c0df24
ZL
454 loff_t startoff;
455 loff_t lastoff;
456 int found = 0;
457
ad7fefb1 458 blkbits = inode->i_sb->s_blocksize_bits;
c8c0df24
ZL
459 startoff = *offset;
460 lastoff = startoff;
2d90c160 461 endoff = (loff_t)end_blk << blkbits;
c8c0df24 462
09cbfeaf
KS
463 index = startoff >> PAGE_SHIFT;
464 end = endoff >> PAGE_SHIFT;
c8c0df24
ZL
465
466 pagevec_init(&pvec, 0);
467 do {
468 int i, num;
469 unsigned long nr_pages;
470
471 num = min_t(pgoff_t, end - index, PAGEVEC_SIZE);
472 nr_pages = pagevec_lookup(&pvec, inode->i_mapping, index,
473 (pgoff_t)num);
474 if (nr_pages == 0) {
965c8e59 475 if (whence == SEEK_DATA)
c8c0df24
ZL
476 break;
477
965c8e59 478 BUG_ON(whence != SEEK_HOLE);
c8c0df24
ZL
479 /*
480 * If this is the first time to go into the loop and
481 * offset is not beyond the end offset, it will be a
482 * hole at this offset
483 */
484 if (lastoff == startoff || lastoff < endoff)
485 found = 1;
486 break;
487 }
488
489 /*
490 * If this is the first time to go into the loop and
491 * offset is smaller than the first page offset, it will be a
492 * hole at this offset.
493 */
965c8e59 494 if (lastoff == startoff && whence == SEEK_HOLE &&
c8c0df24
ZL
495 lastoff < page_offset(pvec.pages[0])) {
496 found = 1;
497 break;
498 }
499
500 for (i = 0; i < nr_pages; i++) {
501 struct page *page = pvec.pages[i];
502 struct buffer_head *bh, *head;
503
504 /*
505 * If the current offset is not beyond the end of given
506 * range, it will be a hole.
507 */
965c8e59 508 if (lastoff < endoff && whence == SEEK_HOLE &&
c8c0df24
ZL
509 page->index > end) {
510 found = 1;
511 *offset = lastoff;
512 goto out;
513 }
514
515 lock_page(page);
516
517 if (unlikely(page->mapping != inode->i_mapping)) {
518 unlock_page(page);
519 continue;
520 }
521
522 if (!page_has_buffers(page)) {
523 unlock_page(page);
524 continue;
525 }
526
527 if (page_has_buffers(page)) {
528 lastoff = page_offset(page);
529 bh = head = page_buffers(page);
530 do {
531 if (buffer_uptodate(bh) ||
532 buffer_unwritten(bh)) {
965c8e59 533 if (whence == SEEK_DATA)
c8c0df24
ZL
534 found = 1;
535 } else {
965c8e59 536 if (whence == SEEK_HOLE)
c8c0df24
ZL
537 found = 1;
538 }
539 if (found) {
540 *offset = max_t(loff_t,
541 startoff, lastoff);
542 unlock_page(page);
543 goto out;
544 }
545 lastoff += bh->b_size;
546 bh = bh->b_this_page;
547 } while (bh != head);
548 }
549
550 lastoff = page_offset(page) + PAGE_SIZE;
551 unlock_page(page);
552 }
553
554 /*
555 * The no. of pages is less than our desired, that would be a
556 * hole in there.
557 */
965c8e59 558 if (nr_pages < num && whence == SEEK_HOLE) {
c8c0df24
ZL
559 found = 1;
560 *offset = lastoff;
561 break;
562 }
563
564 index = pvec.pages[i - 1]->index + 1;
565 pagevec_release(&pvec);
566 } while (index <= end);
567
568out:
569 pagevec_release(&pvec);
570 return found;
571}
572
573/*
574 * ext4_seek_data() retrieves the offset for SEEK_DATA.
575 */
576static loff_t ext4_seek_data(struct file *file, loff_t offset, loff_t maxsize)
577{
578 struct inode *inode = file->f_mapping->host;
ad7fefb1
TT
579 struct extent_status es;
580 ext4_lblk_t start, last, end;
581 loff_t dataoff, isize;
582 int blkbits;
2d90c160 583 int ret;
c8c0df24 584
5955102c 585 inode_lock(inode);
ad7fefb1
TT
586
587 isize = i_size_read(inode);
588 if (offset >= isize) {
5955102c 589 inode_unlock(inode);
c8c0df24
ZL
590 return -ENXIO;
591 }
ad7fefb1
TT
592
593 blkbits = inode->i_sb->s_blocksize_bits;
594 start = offset >> blkbits;
595 last = start;
596 end = isize >> blkbits;
597 dataoff = offset;
598
599 do {
2d90c160
JK
600 ret = ext4_get_next_extent(inode, last, end - last + 1, &es);
601 if (ret <= 0) {
602 /* No extent found -> no data */
603 if (ret == 0)
604 ret = -ENXIO;
605 inode_unlock(inode);
606 return ret;
ad7fefb1 607 }
c8c0df24 608
2d90c160
JK
609 last = es.es_lblk;
610 if (last != start)
611 dataoff = (loff_t)last << blkbits;
612 if (!ext4_es_is_unwritten(&es))
c8c0df24 613 break;
c8c0df24 614
ad7fefb1
TT
615 /*
616 * If there is a unwritten extent at this offset,
617 * it will be as a data or a hole according to page
618 * cache that has data or not.
619 */
2d90c160
JK
620 if (ext4_find_unwritten_pgoff(inode, SEEK_DATA,
621 es.es_lblk + es.es_len, &dataoff))
622 break;
623 last += es.es_len;
ad7fefb1 624 dataoff = (loff_t)last << blkbits;
2d90c160 625 cond_resched();
ad7fefb1 626 } while (last <= end);
c8c0df24 627
5955102c 628 inode_unlock(inode);
c8c0df24 629
ad7fefb1
TT
630 if (dataoff > isize)
631 return -ENXIO;
632
633 return vfs_setpos(file, dataoff, maxsize);
c8c0df24
ZL
634}
635
636/*
ad7fefb1 637 * ext4_seek_hole() retrieves the offset for SEEK_HOLE.
c8c0df24
ZL
638 */
639static loff_t ext4_seek_hole(struct file *file, loff_t offset, loff_t maxsize)
640{
641 struct inode *inode = file->f_mapping->host;
ad7fefb1
TT
642 struct extent_status es;
643 ext4_lblk_t start, last, end;
644 loff_t holeoff, isize;
645 int blkbits;
2d90c160 646 int ret;
c8c0df24 647
5955102c 648 inode_lock(inode);
ad7fefb1
TT
649
650 isize = i_size_read(inode);
651 if (offset >= isize) {
5955102c 652 inode_unlock(inode);
c8c0df24
ZL
653 return -ENXIO;
654 }
655
ad7fefb1
TT
656 blkbits = inode->i_sb->s_blocksize_bits;
657 start = offset >> blkbits;
658 last = start;
659 end = isize >> blkbits;
660 holeoff = offset;
c8c0df24 661
ad7fefb1 662 do {
2d90c160
JK
663 ret = ext4_get_next_extent(inode, last, end - last + 1, &es);
664 if (ret < 0) {
665 inode_unlock(inode);
666 return ret;
ad7fefb1 667 }
2d90c160
JK
668 /* Found a hole? */
669 if (ret == 0 || es.es_lblk > last) {
670 if (last != start)
671 holeoff = (loff_t)last << blkbits;
672 break;
ad7fefb1 673 }
ad7fefb1
TT
674 /*
675 * If there is a unwritten extent at this offset,
676 * it will be as a data or a hole according to page
677 * cache that has data or not.
678 */
2d90c160
JK
679 if (ext4_es_is_unwritten(&es) &&
680 ext4_find_unwritten_pgoff(inode, SEEK_HOLE,
681 last + es.es_len, &holeoff))
682 break;
ad7fefb1 683
2d90c160
JK
684 last += es.es_len;
685 holeoff = (loff_t)last << blkbits;
686 cond_resched();
ad7fefb1
TT
687 } while (last <= end);
688
5955102c 689 inode_unlock(inode);
c8c0df24 690
ad7fefb1
TT
691 if (holeoff > isize)
692 holeoff = isize;
693
694 return vfs_setpos(file, holeoff, maxsize);
c8c0df24
ZL
695}
696
e0d10bfa 697/*
ec7268ce
ES
698 * ext4_llseek() handles both block-mapped and extent-mapped maxbytes values
699 * by calling generic_file_llseek_size() with the appropriate maxbytes
700 * value for each.
e0d10bfa 701 */
965c8e59 702loff_t ext4_llseek(struct file *file, loff_t offset, int whence)
e0d10bfa
TO
703{
704 struct inode *inode = file->f_mapping->host;
705 loff_t maxbytes;
706
707 if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)))
708 maxbytes = EXT4_SB(inode->i_sb)->s_bitmap_maxbytes;
709 else
710 maxbytes = inode->i_sb->s_maxbytes;
e0d10bfa 711
965c8e59 712 switch (whence) {
c8c0df24
ZL
713 case SEEK_SET:
714 case SEEK_CUR:
715 case SEEK_END:
965c8e59 716 return generic_file_llseek_size(file, offset, whence,
c8c0df24
ZL
717 maxbytes, i_size_read(inode));
718 case SEEK_DATA:
719 return ext4_seek_data(file, offset, maxbytes);
720 case SEEK_HOLE:
721 return ext4_seek_hole(file, offset, maxbytes);
722 }
723
724 return -EINVAL;
e0d10bfa
TO
725}
726
617ba13b 727const struct file_operations ext4_file_operations = {
e0d10bfa 728 .llseek = ext4_llseek,
364443cb 729 .read_iter = ext4_file_read_iter,
9b884164 730 .write_iter = ext4_file_write_iter,
5cdd7b2d 731 .unlocked_ioctl = ext4_ioctl,
ac27a0ec 732#ifdef CONFIG_COMPAT
617ba13b 733 .compat_ioctl = ext4_compat_ioctl,
ac27a0ec 734#endif
2e9ee850 735 .mmap = ext4_file_mmap,
bc0b0d6d 736 .open = ext4_file_open,
617ba13b
MC
737 .release = ext4_release_file,
738 .fsync = ext4_sync_file,
dbe6ec81 739 .get_unmapped_area = thp_get_unmapped_area,
ac27a0ec 740 .splice_read = generic_file_splice_read,
8d020765 741 .splice_write = iter_file_splice_write,
2fe17c10 742 .fallocate = ext4_fallocate,
ac27a0ec
DK
743};
744
754661f1 745const struct inode_operations ext4_file_inode_operations = {
617ba13b 746 .setattr = ext4_setattr,
99652ea5 747 .getattr = ext4_file_getattr,
617ba13b 748 .listxattr = ext4_listxattr,
4e34e719 749 .get_acl = ext4_get_acl,
64e178a7 750 .set_acl = ext4_set_acl,
6873fa0d 751 .fiemap = ext4_fiemap,
ac27a0ec
DK
752};
753