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ext4: convert write_begin methods to stable_page_writes semantics
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CommitLineData
a86c6181
AT
1/*
2 * Copyright (c) 2003-2006, Cluster File Systems, Inc, info@clusterfs.com
3 * Written by Alex Tomas <alex@clusterfs.com>
4 *
5 * Architecture independence:
6 * Copyright (c) 2005, Bull S.A.
7 * Written by Pierre Peiffer <pierre.peiffer@bull.net>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public Licens
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-
21 */
22
23/*
24 * Extents support for EXT4
25 *
26 * TODO:
27 * - ext4*_error() should be used in some situations
28 * - analyze all BUG()/BUG_ON(), use -EIO where appropriate
29 * - smart tree reduction
30 */
31
a86c6181
AT
32#include <linux/fs.h>
33#include <linux/time.h>
cd02ff0b 34#include <linux/jbd2.h>
a86c6181
AT
35#include <linux/highuid.h>
36#include <linux/pagemap.h>
37#include <linux/quotaops.h>
38#include <linux/string.h>
39#include <linux/slab.h>
a2df2a63 40#include <linux/falloc.h>
a86c6181 41#include <asm/uaccess.h>
6873fa0d 42#include <linux/fiemap.h>
3dcf5451 43#include "ext4_jbd2.h"
4a092d73 44#include "ext4_extents.h"
f19d5870 45#include "xattr.h"
a86c6181 46
0562e0ba
JZ
47#include <trace/events/ext4.h>
48
5f95d21f
LC
49/*
50 * used by extent splitting.
51 */
52#define EXT4_EXT_MAY_ZEROOUT 0x1 /* safe to zeroout if split fails \
53 due to ENOSPC */
54#define EXT4_EXT_MARK_UNINIT1 0x2 /* mark first half uninitialized */
55#define EXT4_EXT_MARK_UNINIT2 0x4 /* mark second half uninitialized */
56
dee1f973
DM
57#define EXT4_EXT_DATA_VALID1 0x8 /* first half contains valid data */
58#define EXT4_EXT_DATA_VALID2 0x10 /* second half contains valid data */
59
7ac5990d
DW
60static __le32 ext4_extent_block_csum(struct inode *inode,
61 struct ext4_extent_header *eh)
62{
63 struct ext4_inode_info *ei = EXT4_I(inode);
64 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
65 __u32 csum;
66
67 csum = ext4_chksum(sbi, ei->i_csum_seed, (__u8 *)eh,
68 EXT4_EXTENT_TAIL_OFFSET(eh));
69 return cpu_to_le32(csum);
70}
71
72static int ext4_extent_block_csum_verify(struct inode *inode,
73 struct ext4_extent_header *eh)
74{
75 struct ext4_extent_tail *et;
76
77 if (!EXT4_HAS_RO_COMPAT_FEATURE(inode->i_sb,
78 EXT4_FEATURE_RO_COMPAT_METADATA_CSUM))
79 return 1;
80
81 et = find_ext4_extent_tail(eh);
82 if (et->et_checksum != ext4_extent_block_csum(inode, eh))
83 return 0;
84 return 1;
85}
86
87static void ext4_extent_block_csum_set(struct inode *inode,
88 struct ext4_extent_header *eh)
89{
90 struct ext4_extent_tail *et;
91
92 if (!EXT4_HAS_RO_COMPAT_FEATURE(inode->i_sb,
93 EXT4_FEATURE_RO_COMPAT_METADATA_CSUM))
94 return;
95
96 et = find_ext4_extent_tail(eh);
97 et->et_checksum = ext4_extent_block_csum(inode, eh);
98}
99
d583fb87
AH
100static int ext4_split_extent(handle_t *handle,
101 struct inode *inode,
102 struct ext4_ext_path *path,
103 struct ext4_map_blocks *map,
104 int split_flag,
105 int flags);
106
5f95d21f
LC
107static int ext4_split_extent_at(handle_t *handle,
108 struct inode *inode,
109 struct ext4_ext_path *path,
110 ext4_lblk_t split,
111 int split_flag,
112 int flags);
113
91dd8c11 114static int ext4_find_delayed_extent(struct inode *inode,
69eb33dc 115 struct extent_status *newes);
91dd8c11 116
487caeef
JK
117static int ext4_ext_truncate_extend_restart(handle_t *handle,
118 struct inode *inode,
119 int needed)
a86c6181
AT
120{
121 int err;
122
0390131b
FM
123 if (!ext4_handle_valid(handle))
124 return 0;
a86c6181 125 if (handle->h_buffer_credits > needed)
9102e4fa
SF
126 return 0;
127 err = ext4_journal_extend(handle, needed);
0123c939 128 if (err <= 0)
9102e4fa 129 return err;
487caeef 130 err = ext4_truncate_restart_trans(handle, inode, needed);
0617b83f
DM
131 if (err == 0)
132 err = -EAGAIN;
487caeef
JK
133
134 return err;
a86c6181
AT
135}
136
137/*
138 * could return:
139 * - EROFS
140 * - ENOMEM
141 */
142static int ext4_ext_get_access(handle_t *handle, struct inode *inode,
143 struct ext4_ext_path *path)
144{
145 if (path->p_bh) {
146 /* path points to block */
147 return ext4_journal_get_write_access(handle, path->p_bh);
148 }
149 /* path points to leaf/index in inode body */
150 /* we use in-core data, no need to protect them */
151 return 0;
152}
153
154/*
155 * could return:
156 * - EROFS
157 * - ENOMEM
158 * - EIO
159 */
2656497b
DW
160int __ext4_ext_dirty(const char *where, unsigned int line, handle_t *handle,
161 struct inode *inode, struct ext4_ext_path *path)
a86c6181
AT
162{
163 int err;
164 if (path->p_bh) {
7ac5990d 165 ext4_extent_block_csum_set(inode, ext_block_hdr(path->p_bh));
a86c6181 166 /* path points to block */
9ea7a0df
TT
167 err = __ext4_handle_dirty_metadata(where, line, handle,
168 inode, path->p_bh);
a86c6181
AT
169 } else {
170 /* path points to leaf/index in inode body */
171 err = ext4_mark_inode_dirty(handle, inode);
172 }
173 return err;
174}
175
f65e6fba 176static ext4_fsblk_t ext4_ext_find_goal(struct inode *inode,
a86c6181 177 struct ext4_ext_path *path,
725d26d3 178 ext4_lblk_t block)
a86c6181 179{
a86c6181 180 if (path) {
81fdbb4a 181 int depth = path->p_depth;
a86c6181 182 struct ext4_extent *ex;
a86c6181 183
ad4fb9ca
KM
184 /*
185 * Try to predict block placement assuming that we are
186 * filling in a file which will eventually be
187 * non-sparse --- i.e., in the case of libbfd writing
188 * an ELF object sections out-of-order but in a way
189 * the eventually results in a contiguous object or
190 * executable file, or some database extending a table
191 * space file. However, this is actually somewhat
192 * non-ideal if we are writing a sparse file such as
193 * qemu or KVM writing a raw image file that is going
194 * to stay fairly sparse, since it will end up
195 * fragmenting the file system's free space. Maybe we
196 * should have some hueristics or some way to allow
197 * userspace to pass a hint to file system,
b8d6568a 198 * especially if the latter case turns out to be
ad4fb9ca
KM
199 * common.
200 */
7e028976 201 ex = path[depth].p_ext;
ad4fb9ca
KM
202 if (ex) {
203 ext4_fsblk_t ext_pblk = ext4_ext_pblock(ex);
204 ext4_lblk_t ext_block = le32_to_cpu(ex->ee_block);
205
206 if (block > ext_block)
207 return ext_pblk + (block - ext_block);
208 else
209 return ext_pblk - (ext_block - block);
210 }
a86c6181 211
d0d856e8
RD
212 /* it looks like index is empty;
213 * try to find starting block from index itself */
a86c6181
AT
214 if (path[depth].p_bh)
215 return path[depth].p_bh->b_blocknr;
216 }
217
218 /* OK. use inode's group */
f86186b4 219 return ext4_inode_to_goal_block(inode);
a86c6181
AT
220}
221
654b4908
AK
222/*
223 * Allocation for a meta data block
224 */
f65e6fba 225static ext4_fsblk_t
654b4908 226ext4_ext_new_meta_block(handle_t *handle, struct inode *inode,
a86c6181 227 struct ext4_ext_path *path,
55f020db 228 struct ext4_extent *ex, int *err, unsigned int flags)
a86c6181 229{
f65e6fba 230 ext4_fsblk_t goal, newblock;
a86c6181
AT
231
232 goal = ext4_ext_find_goal(inode, path, le32_to_cpu(ex->ee_block));
55f020db
AH
233 newblock = ext4_new_meta_blocks(handle, inode, goal, flags,
234 NULL, err);
a86c6181
AT
235 return newblock;
236}
237
55ad63bf 238static inline int ext4_ext_space_block(struct inode *inode, int check)
a86c6181
AT
239{
240 int size;
241
242 size = (inode->i_sb->s_blocksize - sizeof(struct ext4_extent_header))
243 / sizeof(struct ext4_extent);
bbf2f9fb 244#ifdef AGGRESSIVE_TEST
02dc62fb
YY
245 if (!check && size > 6)
246 size = 6;
a86c6181
AT
247#endif
248 return size;
249}
250
55ad63bf 251static inline int ext4_ext_space_block_idx(struct inode *inode, int check)
a86c6181
AT
252{
253 int size;
254
255 size = (inode->i_sb->s_blocksize - sizeof(struct ext4_extent_header))
256 / sizeof(struct ext4_extent_idx);
bbf2f9fb 257#ifdef AGGRESSIVE_TEST
02dc62fb
YY
258 if (!check && size > 5)
259 size = 5;
a86c6181
AT
260#endif
261 return size;
262}
263
55ad63bf 264static inline int ext4_ext_space_root(struct inode *inode, int check)
a86c6181
AT
265{
266 int size;
267
268 size = sizeof(EXT4_I(inode)->i_data);
269 size -= sizeof(struct ext4_extent_header);
270 size /= sizeof(struct ext4_extent);
bbf2f9fb 271#ifdef AGGRESSIVE_TEST
02dc62fb
YY
272 if (!check && size > 3)
273 size = 3;
a86c6181
AT
274#endif
275 return size;
276}
277
55ad63bf 278static inline int ext4_ext_space_root_idx(struct inode *inode, int check)
a86c6181
AT
279{
280 int size;
281
282 size = sizeof(EXT4_I(inode)->i_data);
283 size -= sizeof(struct ext4_extent_header);
284 size /= sizeof(struct ext4_extent_idx);
bbf2f9fb 285#ifdef AGGRESSIVE_TEST
02dc62fb
YY
286 if (!check && size > 4)
287 size = 4;
a86c6181
AT
288#endif
289 return size;
290}
291
d2a17637
MC
292/*
293 * Calculate the number of metadata blocks needed
294 * to allocate @blocks
295 * Worse case is one block per extent
296 */
01f49d0b 297int ext4_ext_calc_metadata_amount(struct inode *inode, ext4_lblk_t lblock)
d2a17637 298{
9d0be502 299 struct ext4_inode_info *ei = EXT4_I(inode);
81fdbb4a 300 int idxs;
d2a17637 301
9d0be502
TT
302 idxs = ((inode->i_sb->s_blocksize - sizeof(struct ext4_extent_header))
303 / sizeof(struct ext4_extent_idx));
d2a17637
MC
304
305 /*
9d0be502
TT
306 * If the new delayed allocation block is contiguous with the
307 * previous da block, it can share index blocks with the
308 * previous block, so we only need to allocate a new index
309 * block every idxs leaf blocks. At ldxs**2 blocks, we need
310 * an additional index block, and at ldxs**3 blocks, yet
311 * another index blocks.
d2a17637 312 */
9d0be502
TT
313 if (ei->i_da_metadata_calc_len &&
314 ei->i_da_metadata_calc_last_lblock+1 == lblock) {
81fdbb4a
YY
315 int num = 0;
316
9d0be502
TT
317 if ((ei->i_da_metadata_calc_len % idxs) == 0)
318 num++;
319 if ((ei->i_da_metadata_calc_len % (idxs*idxs)) == 0)
320 num++;
321 if ((ei->i_da_metadata_calc_len % (idxs*idxs*idxs)) == 0) {
322 num++;
323 ei->i_da_metadata_calc_len = 0;
324 } else
325 ei->i_da_metadata_calc_len++;
326 ei->i_da_metadata_calc_last_lblock++;
327 return num;
328 }
d2a17637 329
9d0be502
TT
330 /*
331 * In the worst case we need a new set of index blocks at
332 * every level of the inode's extent tree.
333 */
334 ei->i_da_metadata_calc_len = 1;
335 ei->i_da_metadata_calc_last_lblock = lblock;
336 return ext_depth(inode) + 1;
d2a17637
MC
337}
338
c29c0ae7
AT
339static int
340ext4_ext_max_entries(struct inode *inode, int depth)
341{
342 int max;
343
344 if (depth == ext_depth(inode)) {
345 if (depth == 0)
55ad63bf 346 max = ext4_ext_space_root(inode, 1);
c29c0ae7 347 else
55ad63bf 348 max = ext4_ext_space_root_idx(inode, 1);
c29c0ae7
AT
349 } else {
350 if (depth == 0)
55ad63bf 351 max = ext4_ext_space_block(inode, 1);
c29c0ae7 352 else
55ad63bf 353 max = ext4_ext_space_block_idx(inode, 1);
c29c0ae7
AT
354 }
355
356 return max;
357}
358
56b19868
AK
359static int ext4_valid_extent(struct inode *inode, struct ext4_extent *ext)
360{
bf89d16f 361 ext4_fsblk_t block = ext4_ext_pblock(ext);
56b19868 362 int len = ext4_ext_get_actual_len(ext);
e84a26ce 363
31d4f3a2
TT
364 if (len == 0)
365 return 0;
6fd058f7 366 return ext4_data_block_valid(EXT4_SB(inode->i_sb), block, len);
56b19868
AK
367}
368
369static int ext4_valid_extent_idx(struct inode *inode,
370 struct ext4_extent_idx *ext_idx)
371{
bf89d16f 372 ext4_fsblk_t block = ext4_idx_pblock(ext_idx);
e84a26ce 373
6fd058f7 374 return ext4_data_block_valid(EXT4_SB(inode->i_sb), block, 1);
56b19868
AK
375}
376
377static int ext4_valid_extent_entries(struct inode *inode,
378 struct ext4_extent_header *eh,
379 int depth)
380{
56b19868
AK
381 unsigned short entries;
382 if (eh->eh_entries == 0)
383 return 1;
384
385 entries = le16_to_cpu(eh->eh_entries);
386
387 if (depth == 0) {
388 /* leaf entries */
81fdbb4a 389 struct ext4_extent *ext = EXT_FIRST_EXTENT(eh);
56b19868
AK
390 while (entries) {
391 if (!ext4_valid_extent(inode, ext))
392 return 0;
393 ext++;
394 entries--;
395 }
396 } else {
81fdbb4a 397 struct ext4_extent_idx *ext_idx = EXT_FIRST_INDEX(eh);
56b19868
AK
398 while (entries) {
399 if (!ext4_valid_extent_idx(inode, ext_idx))
400 return 0;
401 ext_idx++;
402 entries--;
403 }
404 }
405 return 1;
406}
407
c398eda0
TT
408static int __ext4_ext_check(const char *function, unsigned int line,
409 struct inode *inode, struct ext4_extent_header *eh,
c349179b 410 int depth, ext4_fsblk_t pblk)
c29c0ae7
AT
411{
412 const char *error_msg;
413 int max = 0;
414
415 if (unlikely(eh->eh_magic != EXT4_EXT_MAGIC)) {
416 error_msg = "invalid magic";
417 goto corrupted;
418 }
419 if (unlikely(le16_to_cpu(eh->eh_depth) != depth)) {
420 error_msg = "unexpected eh_depth";
421 goto corrupted;
422 }
423 if (unlikely(eh->eh_max == 0)) {
424 error_msg = "invalid eh_max";
425 goto corrupted;
426 }
427 max = ext4_ext_max_entries(inode, depth);
428 if (unlikely(le16_to_cpu(eh->eh_max) > max)) {
429 error_msg = "too large eh_max";
430 goto corrupted;
431 }
432 if (unlikely(le16_to_cpu(eh->eh_entries) > le16_to_cpu(eh->eh_max))) {
433 error_msg = "invalid eh_entries";
434 goto corrupted;
435 }
56b19868
AK
436 if (!ext4_valid_extent_entries(inode, eh, depth)) {
437 error_msg = "invalid extent entries";
438 goto corrupted;
439 }
7ac5990d
DW
440 /* Verify checksum on non-root extent tree nodes */
441 if (ext_depth(inode) != depth &&
442 !ext4_extent_block_csum_verify(inode, eh)) {
443 error_msg = "extent tree corrupted";
444 goto corrupted;
445 }
c29c0ae7
AT
446 return 0;
447
448corrupted:
c398eda0 449 ext4_error_inode(inode, function, line, 0,
c349179b
TT
450 "pblk %llu bad header/extent: %s - magic %x, "
451 "entries %u, max %u(%u), depth %u(%u)",
452 (unsigned long long) pblk, error_msg,
453 le16_to_cpu(eh->eh_magic),
454 le16_to_cpu(eh->eh_entries), le16_to_cpu(eh->eh_max),
455 max, le16_to_cpu(eh->eh_depth), depth);
c29c0ae7
AT
456 return -EIO;
457}
458
c349179b
TT
459#define ext4_ext_check(inode, eh, depth, pblk) \
460 __ext4_ext_check(__func__, __LINE__, (inode), (eh), (depth), (pblk))
c29c0ae7 461
7a262f7c
AK
462int ext4_ext_check_inode(struct inode *inode)
463{
c349179b 464 return ext4_ext_check(inode, ext_inode_hdr(inode), ext_depth(inode), 0);
7a262f7c
AK
465}
466
7d7ea89e
TT
467static struct buffer_head *
468__read_extent_tree_block(const char *function, unsigned int line,
107a7bd3
TT
469 struct inode *inode, ext4_fsblk_t pblk, int depth,
470 int flags)
f8489128 471{
7d7ea89e
TT
472 struct buffer_head *bh;
473 int err;
474
475 bh = sb_getblk(inode->i_sb, pblk);
476 if (unlikely(!bh))
477 return ERR_PTR(-ENOMEM);
f8489128 478
7d7ea89e
TT
479 if (!bh_uptodate_or_lock(bh)) {
480 trace_ext4_ext_load_extent(inode, pblk, _RET_IP_);
481 err = bh_submit_read(bh);
482 if (err < 0)
483 goto errout;
484 }
7869a4a6 485 if (buffer_verified(bh) && !(flags & EXT4_EX_FORCE_CACHE))
7d7ea89e
TT
486 return bh;
487 err = __ext4_ext_check(function, line, inode,
c349179b 488 ext_block_hdr(bh), depth, pblk);
7d7ea89e
TT
489 if (err)
490 goto errout;
f8489128 491 set_buffer_verified(bh);
107a7bd3
TT
492 /*
493 * If this is a leaf block, cache all of its entries
494 */
495 if (!(flags & EXT4_EX_NOCACHE) && depth == 0) {
496 struct ext4_extent_header *eh = ext_block_hdr(bh);
497 struct ext4_extent *ex = EXT_FIRST_EXTENT(eh);
498 ext4_lblk_t prev = 0;
499 int i;
500
501 for (i = le16_to_cpu(eh->eh_entries); i > 0; i--, ex++) {
502 unsigned int status = EXTENT_STATUS_WRITTEN;
503 ext4_lblk_t lblk = le32_to_cpu(ex->ee_block);
504 int len = ext4_ext_get_actual_len(ex);
505
506 if (prev && (prev != lblk))
507 ext4_es_cache_extent(inode, prev,
508 lblk - prev, ~0,
509 EXTENT_STATUS_HOLE);
510
511 if (ext4_ext_is_uninitialized(ex))
512 status = EXTENT_STATUS_UNWRITTEN;
513 ext4_es_cache_extent(inode, lblk, len,
514 ext4_ext_pblock(ex), status);
515 prev = lblk + len;
516 }
517 }
7d7ea89e
TT
518 return bh;
519errout:
520 put_bh(bh);
521 return ERR_PTR(err);
522
f8489128
DW
523}
524
107a7bd3
TT
525#define read_extent_tree_block(inode, pblk, depth, flags) \
526 __read_extent_tree_block(__func__, __LINE__, (inode), (pblk), \
527 (depth), (flags))
f8489128 528
7869a4a6
TT
529/*
530 * This function is called to cache a file's extent information in the
531 * extent status tree
532 */
533int ext4_ext_precache(struct inode *inode)
534{
535 struct ext4_inode_info *ei = EXT4_I(inode);
536 struct ext4_ext_path *path = NULL;
537 struct buffer_head *bh;
538 int i = 0, depth, ret = 0;
539
540 if (!ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))
541 return 0; /* not an extent-mapped inode */
542
543 down_read(&ei->i_data_sem);
544 depth = ext_depth(inode);
545
546 path = kzalloc(sizeof(struct ext4_ext_path) * (depth + 1),
547 GFP_NOFS);
548 if (path == NULL) {
549 up_read(&ei->i_data_sem);
550 return -ENOMEM;
551 }
552
553 /* Don't cache anything if there are no external extent blocks */
554 if (depth == 0)
555 goto out;
556 path[0].p_hdr = ext_inode_hdr(inode);
557 ret = ext4_ext_check(inode, path[0].p_hdr, depth, 0);
558 if (ret)
559 goto out;
560 path[0].p_idx = EXT_FIRST_INDEX(path[0].p_hdr);
561 while (i >= 0) {
562 /*
563 * If this is a leaf block or we've reached the end of
564 * the index block, go up
565 */
566 if ((i == depth) ||
567 path[i].p_idx > EXT_LAST_INDEX(path[i].p_hdr)) {
568 brelse(path[i].p_bh);
569 path[i].p_bh = NULL;
570 i--;
571 continue;
572 }
573 bh = read_extent_tree_block(inode,
574 ext4_idx_pblock(path[i].p_idx++),
575 depth - i - 1,
576 EXT4_EX_FORCE_CACHE);
577 if (IS_ERR(bh)) {
578 ret = PTR_ERR(bh);
579 break;
580 }
581 i++;
582 path[i].p_bh = bh;
583 path[i].p_hdr = ext_block_hdr(bh);
584 path[i].p_idx = EXT_FIRST_INDEX(path[i].p_hdr);
585 }
586 ext4_set_inode_state(inode, EXT4_STATE_EXT_PRECACHED);
587out:
588 up_read(&ei->i_data_sem);
589 ext4_ext_drop_refs(path);
590 kfree(path);
591 return ret;
592}
593
a86c6181
AT
594#ifdef EXT_DEBUG
595static void ext4_ext_show_path(struct inode *inode, struct ext4_ext_path *path)
596{
597 int k, l = path->p_depth;
598
599 ext_debug("path:");
600 for (k = 0; k <= l; k++, path++) {
601 if (path->p_idx) {
2ae02107 602 ext_debug(" %d->%llu", le32_to_cpu(path->p_idx->ei_block),
bf89d16f 603 ext4_idx_pblock(path->p_idx));
a86c6181 604 } else if (path->p_ext) {
553f9008 605 ext_debug(" %d:[%d]%d:%llu ",
a86c6181 606 le32_to_cpu(path->p_ext->ee_block),
553f9008 607 ext4_ext_is_uninitialized(path->p_ext),
a2df2a63 608 ext4_ext_get_actual_len(path->p_ext),
bf89d16f 609 ext4_ext_pblock(path->p_ext));
a86c6181
AT
610 } else
611 ext_debug(" []");
612 }
613 ext_debug("\n");
614}
615
616static void ext4_ext_show_leaf(struct inode *inode, struct ext4_ext_path *path)
617{
618 int depth = ext_depth(inode);
619 struct ext4_extent_header *eh;
620 struct ext4_extent *ex;
621 int i;
622
623 if (!path)
624 return;
625
626 eh = path[depth].p_hdr;
627 ex = EXT_FIRST_EXTENT(eh);
628
553f9008
M
629 ext_debug("Displaying leaf extents for inode %lu\n", inode->i_ino);
630
a86c6181 631 for (i = 0; i < le16_to_cpu(eh->eh_entries); i++, ex++) {
553f9008
M
632 ext_debug("%d:[%d]%d:%llu ", le32_to_cpu(ex->ee_block),
633 ext4_ext_is_uninitialized(ex),
bf89d16f 634 ext4_ext_get_actual_len(ex), ext4_ext_pblock(ex));
a86c6181
AT
635 }
636 ext_debug("\n");
637}
1b16da77
YY
638
639static void ext4_ext_show_move(struct inode *inode, struct ext4_ext_path *path,
640 ext4_fsblk_t newblock, int level)
641{
642 int depth = ext_depth(inode);
643 struct ext4_extent *ex;
644
645 if (depth != level) {
646 struct ext4_extent_idx *idx;
647 idx = path[level].p_idx;
648 while (idx <= EXT_MAX_INDEX(path[level].p_hdr)) {
649 ext_debug("%d: move %d:%llu in new index %llu\n", level,
650 le32_to_cpu(idx->ei_block),
651 ext4_idx_pblock(idx),
652 newblock);
653 idx++;
654 }
655
656 return;
657 }
658
659 ex = path[depth].p_ext;
660 while (ex <= EXT_MAX_EXTENT(path[depth].p_hdr)) {
661 ext_debug("move %d:%llu:[%d]%d in new leaf %llu\n",
662 le32_to_cpu(ex->ee_block),
663 ext4_ext_pblock(ex),
664 ext4_ext_is_uninitialized(ex),
665 ext4_ext_get_actual_len(ex),
666 newblock);
667 ex++;
668 }
669}
670
a86c6181 671#else
af5bc92d
TT
672#define ext4_ext_show_path(inode, path)
673#define ext4_ext_show_leaf(inode, path)
1b16da77 674#define ext4_ext_show_move(inode, path, newblock, level)
a86c6181
AT
675#endif
676
b35905c1 677void ext4_ext_drop_refs(struct ext4_ext_path *path)
a86c6181
AT
678{
679 int depth = path->p_depth;
680 int i;
681
682 for (i = 0; i <= depth; i++, path++)
683 if (path->p_bh) {
684 brelse(path->p_bh);
685 path->p_bh = NULL;
686 }
687}
688
689/*
d0d856e8
RD
690 * ext4_ext_binsearch_idx:
691 * binary search for the closest index of the given block
c29c0ae7 692 * the header must be checked before calling this
a86c6181
AT
693 */
694static void
725d26d3
AK
695ext4_ext_binsearch_idx(struct inode *inode,
696 struct ext4_ext_path *path, ext4_lblk_t block)
a86c6181
AT
697{
698 struct ext4_extent_header *eh = path->p_hdr;
699 struct ext4_extent_idx *r, *l, *m;
700
a86c6181 701
bba90743 702 ext_debug("binsearch for %u(idx): ", block);
a86c6181
AT
703
704 l = EXT_FIRST_INDEX(eh) + 1;
e9f410b1 705 r = EXT_LAST_INDEX(eh);
a86c6181
AT
706 while (l <= r) {
707 m = l + (r - l) / 2;
708 if (block < le32_to_cpu(m->ei_block))
709 r = m - 1;
710 else
711 l = m + 1;
26d535ed
DM
712 ext_debug("%p(%u):%p(%u):%p(%u) ", l, le32_to_cpu(l->ei_block),
713 m, le32_to_cpu(m->ei_block),
714 r, le32_to_cpu(r->ei_block));
a86c6181
AT
715 }
716
717 path->p_idx = l - 1;
4a3c3a51 718 ext_debug(" -> %u->%lld ", le32_to_cpu(path->p_idx->ei_block),
bf89d16f 719 ext4_idx_pblock(path->p_idx));
a86c6181
AT
720
721#ifdef CHECK_BINSEARCH
722 {
723 struct ext4_extent_idx *chix, *ix;
724 int k;
725
726 chix = ix = EXT_FIRST_INDEX(eh);
727 for (k = 0; k < le16_to_cpu(eh->eh_entries); k++, ix++) {
728 if (k != 0 &&
729 le32_to_cpu(ix->ei_block) <= le32_to_cpu(ix[-1].ei_block)) {
4776004f
TT
730 printk(KERN_DEBUG "k=%d, ix=0x%p, "
731 "first=0x%p\n", k,
732 ix, EXT_FIRST_INDEX(eh));
733 printk(KERN_DEBUG "%u <= %u\n",
a86c6181
AT
734 le32_to_cpu(ix->ei_block),
735 le32_to_cpu(ix[-1].ei_block));
736 }
737 BUG_ON(k && le32_to_cpu(ix->ei_block)
8c55e204 738 <= le32_to_cpu(ix[-1].ei_block));
a86c6181
AT
739 if (block < le32_to_cpu(ix->ei_block))
740 break;
741 chix = ix;
742 }
743 BUG_ON(chix != path->p_idx);
744 }
745#endif
746
747}
748
749/*
d0d856e8
RD
750 * ext4_ext_binsearch:
751 * binary search for closest extent of the given block
c29c0ae7 752 * the header must be checked before calling this
a86c6181
AT
753 */
754static void
725d26d3
AK
755ext4_ext_binsearch(struct inode *inode,
756 struct ext4_ext_path *path, ext4_lblk_t block)
a86c6181
AT
757{
758 struct ext4_extent_header *eh = path->p_hdr;
759 struct ext4_extent *r, *l, *m;
760
a86c6181
AT
761 if (eh->eh_entries == 0) {
762 /*
d0d856e8
RD
763 * this leaf is empty:
764 * we get such a leaf in split/add case
a86c6181
AT
765 */
766 return;
767 }
768
bba90743 769 ext_debug("binsearch for %u: ", block);
a86c6181
AT
770
771 l = EXT_FIRST_EXTENT(eh) + 1;
e9f410b1 772 r = EXT_LAST_EXTENT(eh);
a86c6181
AT
773
774 while (l <= r) {
775 m = l + (r - l) / 2;
776 if (block < le32_to_cpu(m->ee_block))
777 r = m - 1;
778 else
779 l = m + 1;
26d535ed
DM
780 ext_debug("%p(%u):%p(%u):%p(%u) ", l, le32_to_cpu(l->ee_block),
781 m, le32_to_cpu(m->ee_block),
782 r, le32_to_cpu(r->ee_block));
a86c6181
AT
783 }
784
785 path->p_ext = l - 1;
553f9008 786 ext_debug(" -> %d:%llu:[%d]%d ",
8c55e204 787 le32_to_cpu(path->p_ext->ee_block),
bf89d16f 788 ext4_ext_pblock(path->p_ext),
553f9008 789 ext4_ext_is_uninitialized(path->p_ext),
a2df2a63 790 ext4_ext_get_actual_len(path->p_ext));
a86c6181
AT
791
792#ifdef CHECK_BINSEARCH
793 {
794 struct ext4_extent *chex, *ex;
795 int k;
796
797 chex = ex = EXT_FIRST_EXTENT(eh);
798 for (k = 0; k < le16_to_cpu(eh->eh_entries); k++, ex++) {
799 BUG_ON(k && le32_to_cpu(ex->ee_block)
8c55e204 800 <= le32_to_cpu(ex[-1].ee_block));
a86c6181
AT
801 if (block < le32_to_cpu(ex->ee_block))
802 break;
803 chex = ex;
804 }
805 BUG_ON(chex != path->p_ext);
806 }
807#endif
808
809}
810
811int ext4_ext_tree_init(handle_t *handle, struct inode *inode)
812{
813 struct ext4_extent_header *eh;
814
815 eh = ext_inode_hdr(inode);
816 eh->eh_depth = 0;
817 eh->eh_entries = 0;
818 eh->eh_magic = EXT4_EXT_MAGIC;
55ad63bf 819 eh->eh_max = cpu_to_le16(ext4_ext_space_root(inode, 0));
a86c6181 820 ext4_mark_inode_dirty(handle, inode);
a86c6181
AT
821 return 0;
822}
823
824struct ext4_ext_path *
725d26d3 825ext4_ext_find_extent(struct inode *inode, ext4_lblk_t block,
107a7bd3 826 struct ext4_ext_path *path, int flags)
a86c6181
AT
827{
828 struct ext4_extent_header *eh;
829 struct buffer_head *bh;
830 short int depth, i, ppos = 0, alloc = 0;
860d21e2 831 int ret;
a86c6181
AT
832
833 eh = ext_inode_hdr(inode);
c29c0ae7 834 depth = ext_depth(inode);
a86c6181
AT
835
836 /* account possible depth increase */
837 if (!path) {
5d4958f9 838 path = kzalloc(sizeof(struct ext4_ext_path) * (depth + 2),
a86c6181
AT
839 GFP_NOFS);
840 if (!path)
841 return ERR_PTR(-ENOMEM);
842 alloc = 1;
843 }
a86c6181 844 path[0].p_hdr = eh;
1973adcb 845 path[0].p_bh = NULL;
a86c6181 846
c29c0ae7 847 i = depth;
a86c6181
AT
848 /* walk through the tree */
849 while (i) {
850 ext_debug("depth %d: num %d, max %d\n",
851 ppos, le16_to_cpu(eh->eh_entries), le16_to_cpu(eh->eh_max));
c29c0ae7 852
a86c6181 853 ext4_ext_binsearch_idx(inode, path + ppos, block);
bf89d16f 854 path[ppos].p_block = ext4_idx_pblock(path[ppos].p_idx);
a86c6181
AT
855 path[ppos].p_depth = i;
856 path[ppos].p_ext = NULL;
857
107a7bd3
TT
858 bh = read_extent_tree_block(inode, path[ppos].p_block, --i,
859 flags);
7d7ea89e
TT
860 if (IS_ERR(bh)) {
861 ret = PTR_ERR(bh);
a86c6181 862 goto err;
860d21e2 863 }
7d7ea89e 864
a86c6181
AT
865 eh = ext_block_hdr(bh);
866 ppos++;
273df556
FM
867 if (unlikely(ppos > depth)) {
868 put_bh(bh);
869 EXT4_ERROR_INODE(inode,
870 "ppos %d > depth %d", ppos, depth);
860d21e2 871 ret = -EIO;
273df556
FM
872 goto err;
873 }
a86c6181
AT
874 path[ppos].p_bh = bh;
875 path[ppos].p_hdr = eh;
a86c6181
AT
876 }
877
878 path[ppos].p_depth = i;
a86c6181
AT
879 path[ppos].p_ext = NULL;
880 path[ppos].p_idx = NULL;
881
a86c6181
AT
882 /* find extent */
883 ext4_ext_binsearch(inode, path + ppos, block);
1973adcb
SF
884 /* if not an empty leaf */
885 if (path[ppos].p_ext)
bf89d16f 886 path[ppos].p_block = ext4_ext_pblock(path[ppos].p_ext);
a86c6181
AT
887
888 ext4_ext_show_path(inode, path);
889
890 return path;
891
892err:
893 ext4_ext_drop_refs(path);
894 if (alloc)
895 kfree(path);
860d21e2 896 return ERR_PTR(ret);
a86c6181
AT
897}
898
899/*
d0d856e8
RD
900 * ext4_ext_insert_index:
901 * insert new index [@logical;@ptr] into the block at @curp;
902 * check where to insert: before @curp or after @curp
a86c6181 903 */
1f109d5a
TT
904static int ext4_ext_insert_index(handle_t *handle, struct inode *inode,
905 struct ext4_ext_path *curp,
906 int logical, ext4_fsblk_t ptr)
a86c6181
AT
907{
908 struct ext4_extent_idx *ix;
909 int len, err;
910
7e028976
AM
911 err = ext4_ext_get_access(handle, inode, curp);
912 if (err)
a86c6181
AT
913 return err;
914
273df556
FM
915 if (unlikely(logical == le32_to_cpu(curp->p_idx->ei_block))) {
916 EXT4_ERROR_INODE(inode,
917 "logical %d == ei_block %d!",
918 logical, le32_to_cpu(curp->p_idx->ei_block));
919 return -EIO;
920 }
d4620315
RD
921
922 if (unlikely(le16_to_cpu(curp->p_hdr->eh_entries)
923 >= le16_to_cpu(curp->p_hdr->eh_max))) {
924 EXT4_ERROR_INODE(inode,
925 "eh_entries %d >= eh_max %d!",
926 le16_to_cpu(curp->p_hdr->eh_entries),
927 le16_to_cpu(curp->p_hdr->eh_max));
928 return -EIO;
929 }
930
a86c6181
AT
931 if (logical > le32_to_cpu(curp->p_idx->ei_block)) {
932 /* insert after */
80e675f9 933 ext_debug("insert new index %d after: %llu\n", logical, ptr);
a86c6181
AT
934 ix = curp->p_idx + 1;
935 } else {
936 /* insert before */
80e675f9 937 ext_debug("insert new index %d before: %llu\n", logical, ptr);
a86c6181
AT
938 ix = curp->p_idx;
939 }
940
80e675f9
EG
941 len = EXT_LAST_INDEX(curp->p_hdr) - ix + 1;
942 BUG_ON(len < 0);
943 if (len > 0) {
944 ext_debug("insert new index %d: "
945 "move %d indices from 0x%p to 0x%p\n",
946 logical, len, ix, ix + 1);
947 memmove(ix + 1, ix, len * sizeof(struct ext4_extent_idx));
948 }
949
f472e026
TM
950 if (unlikely(ix > EXT_MAX_INDEX(curp->p_hdr))) {
951 EXT4_ERROR_INODE(inode, "ix > EXT_MAX_INDEX!");
952 return -EIO;
953 }
954
a86c6181 955 ix->ei_block = cpu_to_le32(logical);
f65e6fba 956 ext4_idx_store_pblock(ix, ptr);
e8546d06 957 le16_add_cpu(&curp->p_hdr->eh_entries, 1);
a86c6181 958
273df556
FM
959 if (unlikely(ix > EXT_LAST_INDEX(curp->p_hdr))) {
960 EXT4_ERROR_INODE(inode, "ix > EXT_LAST_INDEX!");
961 return -EIO;
962 }
a86c6181
AT
963
964 err = ext4_ext_dirty(handle, inode, curp);
965 ext4_std_error(inode->i_sb, err);
966
967 return err;
968}
969
970/*
d0d856e8
RD
971 * ext4_ext_split:
972 * inserts new subtree into the path, using free index entry
973 * at depth @at:
974 * - allocates all needed blocks (new leaf and all intermediate index blocks)
975 * - makes decision where to split
976 * - moves remaining extents and index entries (right to the split point)
977 * into the newly allocated blocks
978 * - initializes subtree
a86c6181
AT
979 */
980static int ext4_ext_split(handle_t *handle, struct inode *inode,
55f020db
AH
981 unsigned int flags,
982 struct ext4_ext_path *path,
983 struct ext4_extent *newext, int at)
a86c6181
AT
984{
985 struct buffer_head *bh = NULL;
986 int depth = ext_depth(inode);
987 struct ext4_extent_header *neh;
988 struct ext4_extent_idx *fidx;
a86c6181 989 int i = at, k, m, a;
f65e6fba 990 ext4_fsblk_t newblock, oldblock;
a86c6181 991 __le32 border;
f65e6fba 992 ext4_fsblk_t *ablocks = NULL; /* array of allocated blocks */
a86c6181
AT
993 int err = 0;
994
995 /* make decision: where to split? */
d0d856e8 996 /* FIXME: now decision is simplest: at current extent */
a86c6181 997
d0d856e8 998 /* if current leaf will be split, then we should use
a86c6181 999 * border from split point */
273df556
FM
1000 if (unlikely(path[depth].p_ext > EXT_MAX_EXTENT(path[depth].p_hdr))) {
1001 EXT4_ERROR_INODE(inode, "p_ext > EXT_MAX_EXTENT!");
1002 return -EIO;
1003 }
a86c6181
AT
1004 if (path[depth].p_ext != EXT_MAX_EXTENT(path[depth].p_hdr)) {
1005 border = path[depth].p_ext[1].ee_block;
d0d856e8 1006 ext_debug("leaf will be split."
a86c6181 1007 " next leaf starts at %d\n",
8c55e204 1008 le32_to_cpu(border));
a86c6181
AT
1009 } else {
1010 border = newext->ee_block;
1011 ext_debug("leaf will be added."
1012 " next leaf starts at %d\n",
8c55e204 1013 le32_to_cpu(border));
a86c6181
AT
1014 }
1015
1016 /*
d0d856e8
RD
1017 * If error occurs, then we break processing
1018 * and mark filesystem read-only. index won't
a86c6181 1019 * be inserted and tree will be in consistent
d0d856e8 1020 * state. Next mount will repair buffers too.
a86c6181
AT
1021 */
1022
1023 /*
d0d856e8
RD
1024 * Get array to track all allocated blocks.
1025 * We need this to handle errors and free blocks
1026 * upon them.
a86c6181 1027 */
5d4958f9 1028 ablocks = kzalloc(sizeof(ext4_fsblk_t) * depth, GFP_NOFS);
a86c6181
AT
1029 if (!ablocks)
1030 return -ENOMEM;
a86c6181
AT
1031
1032 /* allocate all needed blocks */
1033 ext_debug("allocate %d blocks for indexes/leaf\n", depth - at);
1034 for (a = 0; a < depth - at; a++) {
654b4908 1035 newblock = ext4_ext_new_meta_block(handle, inode, path,
55f020db 1036 newext, &err, flags);
a86c6181
AT
1037 if (newblock == 0)
1038 goto cleanup;
1039 ablocks[a] = newblock;
1040 }
1041
1042 /* initialize new leaf */
1043 newblock = ablocks[--a];
273df556
FM
1044 if (unlikely(newblock == 0)) {
1045 EXT4_ERROR_INODE(inode, "newblock == 0!");
1046 err = -EIO;
1047 goto cleanup;
1048 }
a86c6181 1049 bh = sb_getblk(inode->i_sb, newblock);
aebf0243 1050 if (unlikely(!bh)) {
860d21e2 1051 err = -ENOMEM;
a86c6181
AT
1052 goto cleanup;
1053 }
1054 lock_buffer(bh);
1055
7e028976
AM
1056 err = ext4_journal_get_create_access(handle, bh);
1057 if (err)
a86c6181
AT
1058 goto cleanup;
1059
1060 neh = ext_block_hdr(bh);
1061 neh->eh_entries = 0;
55ad63bf 1062 neh->eh_max = cpu_to_le16(ext4_ext_space_block(inode, 0));
a86c6181
AT
1063 neh->eh_magic = EXT4_EXT_MAGIC;
1064 neh->eh_depth = 0;
a86c6181 1065
d0d856e8 1066 /* move remainder of path[depth] to the new leaf */
273df556
FM
1067 if (unlikely(path[depth].p_hdr->eh_entries !=
1068 path[depth].p_hdr->eh_max)) {
1069 EXT4_ERROR_INODE(inode, "eh_entries %d != eh_max %d!",
1070 path[depth].p_hdr->eh_entries,
1071 path[depth].p_hdr->eh_max);
1072 err = -EIO;
1073 goto cleanup;
1074 }
a86c6181 1075 /* start copy from next extent */
1b16da77
YY
1076 m = EXT_MAX_EXTENT(path[depth].p_hdr) - path[depth].p_ext++;
1077 ext4_ext_show_move(inode, path, newblock, depth);
a86c6181 1078 if (m) {
1b16da77
YY
1079 struct ext4_extent *ex;
1080 ex = EXT_FIRST_EXTENT(neh);
1081 memmove(ex, path[depth].p_ext, sizeof(struct ext4_extent) * m);
e8546d06 1082 le16_add_cpu(&neh->eh_entries, m);
a86c6181
AT
1083 }
1084
7ac5990d 1085 ext4_extent_block_csum_set(inode, neh);
a86c6181
AT
1086 set_buffer_uptodate(bh);
1087 unlock_buffer(bh);
1088
0390131b 1089 err = ext4_handle_dirty_metadata(handle, inode, bh);
7e028976 1090 if (err)
a86c6181
AT
1091 goto cleanup;
1092 brelse(bh);
1093 bh = NULL;
1094
1095 /* correct old leaf */
1096 if (m) {
7e028976
AM
1097 err = ext4_ext_get_access(handle, inode, path + depth);
1098 if (err)
a86c6181 1099 goto cleanup;
e8546d06 1100 le16_add_cpu(&path[depth].p_hdr->eh_entries, -m);
7e028976
AM
1101 err = ext4_ext_dirty(handle, inode, path + depth);
1102 if (err)
a86c6181
AT
1103 goto cleanup;
1104
1105 }
1106
1107 /* create intermediate indexes */
1108 k = depth - at - 1;
273df556
FM
1109 if (unlikely(k < 0)) {
1110 EXT4_ERROR_INODE(inode, "k %d < 0!", k);
1111 err = -EIO;
1112 goto cleanup;
1113 }
a86c6181
AT
1114 if (k)
1115 ext_debug("create %d intermediate indices\n", k);
1116 /* insert new index into current index block */
1117 /* current depth stored in i var */
1118 i = depth - 1;
1119 while (k--) {
1120 oldblock = newblock;
1121 newblock = ablocks[--a];
bba90743 1122 bh = sb_getblk(inode->i_sb, newblock);
aebf0243 1123 if (unlikely(!bh)) {
860d21e2 1124 err = -ENOMEM;
a86c6181
AT
1125 goto cleanup;
1126 }
1127 lock_buffer(bh);
1128
7e028976
AM
1129 err = ext4_journal_get_create_access(handle, bh);
1130 if (err)
a86c6181
AT
1131 goto cleanup;
1132
1133 neh = ext_block_hdr(bh);
1134 neh->eh_entries = cpu_to_le16(1);
1135 neh->eh_magic = EXT4_EXT_MAGIC;
55ad63bf 1136 neh->eh_max = cpu_to_le16(ext4_ext_space_block_idx(inode, 0));
a86c6181
AT
1137 neh->eh_depth = cpu_to_le16(depth - i);
1138 fidx = EXT_FIRST_INDEX(neh);
1139 fidx->ei_block = border;
f65e6fba 1140 ext4_idx_store_pblock(fidx, oldblock);
a86c6181 1141
bba90743
ES
1142 ext_debug("int.index at %d (block %llu): %u -> %llu\n",
1143 i, newblock, le32_to_cpu(border), oldblock);
a86c6181 1144
1b16da77 1145 /* move remainder of path[i] to the new index block */
273df556
FM
1146 if (unlikely(EXT_MAX_INDEX(path[i].p_hdr) !=
1147 EXT_LAST_INDEX(path[i].p_hdr))) {
1148 EXT4_ERROR_INODE(inode,
1149 "EXT_MAX_INDEX != EXT_LAST_INDEX ee_block %d!",
1150 le32_to_cpu(path[i].p_ext->ee_block));
1151 err = -EIO;
1152 goto cleanup;
1153 }
1b16da77
YY
1154 /* start copy indexes */
1155 m = EXT_MAX_INDEX(path[i].p_hdr) - path[i].p_idx++;
1156 ext_debug("cur 0x%p, last 0x%p\n", path[i].p_idx,
1157 EXT_MAX_INDEX(path[i].p_hdr));
1158 ext4_ext_show_move(inode, path, newblock, i);
a86c6181 1159 if (m) {
1b16da77 1160 memmove(++fidx, path[i].p_idx,
a86c6181 1161 sizeof(struct ext4_extent_idx) * m);
e8546d06 1162 le16_add_cpu(&neh->eh_entries, m);
a86c6181 1163 }
7ac5990d 1164 ext4_extent_block_csum_set(inode, neh);
a86c6181
AT
1165 set_buffer_uptodate(bh);
1166 unlock_buffer(bh);
1167
0390131b 1168 err = ext4_handle_dirty_metadata(handle, inode, bh);
7e028976 1169 if (err)
a86c6181
AT
1170 goto cleanup;
1171 brelse(bh);
1172 bh = NULL;
1173
1174 /* correct old index */
1175 if (m) {
1176 err = ext4_ext_get_access(handle, inode, path + i);
1177 if (err)
1178 goto cleanup;
e8546d06 1179 le16_add_cpu(&path[i].p_hdr->eh_entries, -m);
a86c6181
AT
1180 err = ext4_ext_dirty(handle, inode, path + i);
1181 if (err)
1182 goto cleanup;
1183 }
1184
1185 i--;
1186 }
1187
1188 /* insert new index */
a86c6181
AT
1189 err = ext4_ext_insert_index(handle, inode, path + at,
1190 le32_to_cpu(border), newblock);
1191
1192cleanup:
1193 if (bh) {
1194 if (buffer_locked(bh))
1195 unlock_buffer(bh);
1196 brelse(bh);
1197 }
1198
1199 if (err) {
1200 /* free all allocated blocks in error case */
1201 for (i = 0; i < depth; i++) {
1202 if (!ablocks[i])
1203 continue;
7dc57615 1204 ext4_free_blocks(handle, inode, NULL, ablocks[i], 1,
e6362609 1205 EXT4_FREE_BLOCKS_METADATA);
a86c6181
AT
1206 }
1207 }
1208 kfree(ablocks);
1209
1210 return err;
1211}
1212
1213/*
d0d856e8
RD
1214 * ext4_ext_grow_indepth:
1215 * implements tree growing procedure:
1216 * - allocates new block
1217 * - moves top-level data (index block or leaf) into the new block
1218 * - initializes new top-level, creating index that points to the
1219 * just created block
a86c6181
AT
1220 */
1221static int ext4_ext_grow_indepth(handle_t *handle, struct inode *inode,
55f020db 1222 unsigned int flags,
55f020db 1223 struct ext4_extent *newext)
a86c6181 1224{
a86c6181 1225 struct ext4_extent_header *neh;
a86c6181 1226 struct buffer_head *bh;
f65e6fba 1227 ext4_fsblk_t newblock;
a86c6181
AT
1228 int err = 0;
1229
1939dd84 1230 newblock = ext4_ext_new_meta_block(handle, inode, NULL,
55f020db 1231 newext, &err, flags);
a86c6181
AT
1232 if (newblock == 0)
1233 return err;
1234
1235 bh = sb_getblk(inode->i_sb, newblock);
aebf0243 1236 if (unlikely(!bh))
860d21e2 1237 return -ENOMEM;
a86c6181
AT
1238 lock_buffer(bh);
1239
7e028976
AM
1240 err = ext4_journal_get_create_access(handle, bh);
1241 if (err) {
a86c6181
AT
1242 unlock_buffer(bh);
1243 goto out;
1244 }
1245
1246 /* move top-level index/leaf into new block */
1939dd84
DM
1247 memmove(bh->b_data, EXT4_I(inode)->i_data,
1248 sizeof(EXT4_I(inode)->i_data));
a86c6181
AT
1249
1250 /* set size of new block */
1251 neh = ext_block_hdr(bh);
1252 /* old root could have indexes or leaves
1253 * so calculate e_max right way */
1254 if (ext_depth(inode))
55ad63bf 1255 neh->eh_max = cpu_to_le16(ext4_ext_space_block_idx(inode, 0));
a86c6181 1256 else
55ad63bf 1257 neh->eh_max = cpu_to_le16(ext4_ext_space_block(inode, 0));
a86c6181 1258 neh->eh_magic = EXT4_EXT_MAGIC;
7ac5990d 1259 ext4_extent_block_csum_set(inode, neh);
a86c6181
AT
1260 set_buffer_uptodate(bh);
1261 unlock_buffer(bh);
1262
0390131b 1263 err = ext4_handle_dirty_metadata(handle, inode, bh);
7e028976 1264 if (err)
a86c6181
AT
1265 goto out;
1266
1939dd84 1267 /* Update top-level index: num,max,pointer */
a86c6181 1268 neh = ext_inode_hdr(inode);
1939dd84
DM
1269 neh->eh_entries = cpu_to_le16(1);
1270 ext4_idx_store_pblock(EXT_FIRST_INDEX(neh), newblock);
1271 if (neh->eh_depth == 0) {
1272 /* Root extent block becomes index block */
1273 neh->eh_max = cpu_to_le16(ext4_ext_space_root_idx(inode, 0));
1274 EXT_FIRST_INDEX(neh)->ei_block =
1275 EXT_FIRST_EXTENT(neh)->ee_block;
1276 }
2ae02107 1277 ext_debug("new root: num %d(%d), lblock %d, ptr %llu\n",
a86c6181 1278 le16_to_cpu(neh->eh_entries), le16_to_cpu(neh->eh_max),
5a0790c2 1279 le32_to_cpu(EXT_FIRST_INDEX(neh)->ei_block),
bf89d16f 1280 ext4_idx_pblock(EXT_FIRST_INDEX(neh)));
a86c6181 1281
ba39ebb6 1282 le16_add_cpu(&neh->eh_depth, 1);
1939dd84 1283 ext4_mark_inode_dirty(handle, inode);
a86c6181
AT
1284out:
1285 brelse(bh);
1286
1287 return err;
1288}
1289
1290/*
d0d856e8
RD
1291 * ext4_ext_create_new_leaf:
1292 * finds empty index and adds new leaf.
1293 * if no free index is found, then it requests in-depth growing.
a86c6181
AT
1294 */
1295static int ext4_ext_create_new_leaf(handle_t *handle, struct inode *inode,
107a7bd3
TT
1296 unsigned int mb_flags,
1297 unsigned int gb_flags,
55f020db
AH
1298 struct ext4_ext_path *path,
1299 struct ext4_extent *newext)
a86c6181
AT
1300{
1301 struct ext4_ext_path *curp;
1302 int depth, i, err = 0;
1303
1304repeat:
1305 i = depth = ext_depth(inode);
1306
1307 /* walk up to the tree and look for free index entry */
1308 curp = path + depth;
1309 while (i > 0 && !EXT_HAS_FREE_INDEX(curp)) {
1310 i--;
1311 curp--;
1312 }
1313
d0d856e8
RD
1314 /* we use already allocated block for index block,
1315 * so subsequent data blocks should be contiguous */
a86c6181
AT
1316 if (EXT_HAS_FREE_INDEX(curp)) {
1317 /* if we found index with free entry, then use that
1318 * entry: create all needed subtree and add new leaf */
107a7bd3 1319 err = ext4_ext_split(handle, inode, mb_flags, path, newext, i);
787e0981
SF
1320 if (err)
1321 goto out;
a86c6181
AT
1322
1323 /* refill path */
1324 ext4_ext_drop_refs(path);
1325 path = ext4_ext_find_extent(inode,
725d26d3 1326 (ext4_lblk_t)le32_to_cpu(newext->ee_block),
107a7bd3 1327 path, gb_flags);
a86c6181
AT
1328 if (IS_ERR(path))
1329 err = PTR_ERR(path);
1330 } else {
1331 /* tree is full, time to grow in depth */
107a7bd3 1332 err = ext4_ext_grow_indepth(handle, inode, mb_flags, newext);
a86c6181
AT
1333 if (err)
1334 goto out;
1335
1336 /* refill path */
1337 ext4_ext_drop_refs(path);
1338 path = ext4_ext_find_extent(inode,
725d26d3 1339 (ext4_lblk_t)le32_to_cpu(newext->ee_block),
107a7bd3 1340 path, gb_flags);
a86c6181
AT
1341 if (IS_ERR(path)) {
1342 err = PTR_ERR(path);
1343 goto out;
1344 }
1345
1346 /*
d0d856e8
RD
1347 * only first (depth 0 -> 1) produces free space;
1348 * in all other cases we have to split the grown tree
a86c6181
AT
1349 */
1350 depth = ext_depth(inode);
1351 if (path[depth].p_hdr->eh_entries == path[depth].p_hdr->eh_max) {
d0d856e8 1352 /* now we need to split */
a86c6181
AT
1353 goto repeat;
1354 }
1355 }
1356
1357out:
1358 return err;
1359}
1360
1988b51e
AT
1361/*
1362 * search the closest allocated block to the left for *logical
1363 * and returns it at @logical + it's physical address at @phys
1364 * if *logical is the smallest allocated block, the function
1365 * returns 0 at @phys
1366 * return value contains 0 (success) or error code
1367 */
1f109d5a
TT
1368static int ext4_ext_search_left(struct inode *inode,
1369 struct ext4_ext_path *path,
1370 ext4_lblk_t *logical, ext4_fsblk_t *phys)
1988b51e
AT
1371{
1372 struct ext4_extent_idx *ix;
1373 struct ext4_extent *ex;
b939e376 1374 int depth, ee_len;
1988b51e 1375
273df556
FM
1376 if (unlikely(path == NULL)) {
1377 EXT4_ERROR_INODE(inode, "path == NULL *logical %d!", *logical);
1378 return -EIO;
1379 }
1988b51e
AT
1380 depth = path->p_depth;
1381 *phys = 0;
1382
1383 if (depth == 0 && path->p_ext == NULL)
1384 return 0;
1385
1386 /* usually extent in the path covers blocks smaller
1387 * then *logical, but it can be that extent is the
1388 * first one in the file */
1389
1390 ex = path[depth].p_ext;
b939e376 1391 ee_len = ext4_ext_get_actual_len(ex);
1988b51e 1392 if (*logical < le32_to_cpu(ex->ee_block)) {
273df556
FM
1393 if (unlikely(EXT_FIRST_EXTENT(path[depth].p_hdr) != ex)) {
1394 EXT4_ERROR_INODE(inode,
1395 "EXT_FIRST_EXTENT != ex *logical %d ee_block %d!",
1396 *logical, le32_to_cpu(ex->ee_block));
1397 return -EIO;
1398 }
1988b51e
AT
1399 while (--depth >= 0) {
1400 ix = path[depth].p_idx;
273df556
FM
1401 if (unlikely(ix != EXT_FIRST_INDEX(path[depth].p_hdr))) {
1402 EXT4_ERROR_INODE(inode,
1403 "ix (%d) != EXT_FIRST_INDEX (%d) (depth %d)!",
6ee3b212 1404 ix != NULL ? le32_to_cpu(ix->ei_block) : 0,
273df556 1405 EXT_FIRST_INDEX(path[depth].p_hdr) != NULL ?
6ee3b212 1406 le32_to_cpu(EXT_FIRST_INDEX(path[depth].p_hdr)->ei_block) : 0,
273df556
FM
1407 depth);
1408 return -EIO;
1409 }
1988b51e
AT
1410 }
1411 return 0;
1412 }
1413
273df556
FM
1414 if (unlikely(*logical < (le32_to_cpu(ex->ee_block) + ee_len))) {
1415 EXT4_ERROR_INODE(inode,
1416 "logical %d < ee_block %d + ee_len %d!",
1417 *logical, le32_to_cpu(ex->ee_block), ee_len);
1418 return -EIO;
1419 }
1988b51e 1420
b939e376 1421 *logical = le32_to_cpu(ex->ee_block) + ee_len - 1;
bf89d16f 1422 *phys = ext4_ext_pblock(ex) + ee_len - 1;
1988b51e
AT
1423 return 0;
1424}
1425
1426/*
1427 * search the closest allocated block to the right for *logical
1428 * and returns it at @logical + it's physical address at @phys
df3ab170 1429 * if *logical is the largest allocated block, the function
1988b51e
AT
1430 * returns 0 at @phys
1431 * return value contains 0 (success) or error code
1432 */
1f109d5a
TT
1433static int ext4_ext_search_right(struct inode *inode,
1434 struct ext4_ext_path *path,
4d33b1ef
TT
1435 ext4_lblk_t *logical, ext4_fsblk_t *phys,
1436 struct ext4_extent **ret_ex)
1988b51e
AT
1437{
1438 struct buffer_head *bh = NULL;
1439 struct ext4_extent_header *eh;
1440 struct ext4_extent_idx *ix;
1441 struct ext4_extent *ex;
1442 ext4_fsblk_t block;
395a87bf
ES
1443 int depth; /* Note, NOT eh_depth; depth from top of tree */
1444 int ee_len;
1988b51e 1445
273df556
FM
1446 if (unlikely(path == NULL)) {
1447 EXT4_ERROR_INODE(inode, "path == NULL *logical %d!", *logical);
1448 return -EIO;
1449 }
1988b51e
AT
1450 depth = path->p_depth;
1451 *phys = 0;
1452
1453 if (depth == 0 && path->p_ext == NULL)
1454 return 0;
1455
1456 /* usually extent in the path covers blocks smaller
1457 * then *logical, but it can be that extent is the
1458 * first one in the file */
1459
1460 ex = path[depth].p_ext;
b939e376 1461 ee_len = ext4_ext_get_actual_len(ex);
1988b51e 1462 if (*logical < le32_to_cpu(ex->ee_block)) {
273df556
FM
1463 if (unlikely(EXT_FIRST_EXTENT(path[depth].p_hdr) != ex)) {
1464 EXT4_ERROR_INODE(inode,
1465 "first_extent(path[%d].p_hdr) != ex",
1466 depth);
1467 return -EIO;
1468 }
1988b51e
AT
1469 while (--depth >= 0) {
1470 ix = path[depth].p_idx;
273df556
FM
1471 if (unlikely(ix != EXT_FIRST_INDEX(path[depth].p_hdr))) {
1472 EXT4_ERROR_INODE(inode,
1473 "ix != EXT_FIRST_INDEX *logical %d!",
1474 *logical);
1475 return -EIO;
1476 }
1988b51e 1477 }
4d33b1ef 1478 goto found_extent;
1988b51e
AT
1479 }
1480
273df556
FM
1481 if (unlikely(*logical < (le32_to_cpu(ex->ee_block) + ee_len))) {
1482 EXT4_ERROR_INODE(inode,
1483 "logical %d < ee_block %d + ee_len %d!",
1484 *logical, le32_to_cpu(ex->ee_block), ee_len);
1485 return -EIO;
1486 }
1988b51e
AT
1487
1488 if (ex != EXT_LAST_EXTENT(path[depth].p_hdr)) {
1489 /* next allocated block in this leaf */
1490 ex++;
4d33b1ef 1491 goto found_extent;
1988b51e
AT
1492 }
1493
1494 /* go up and search for index to the right */
1495 while (--depth >= 0) {
1496 ix = path[depth].p_idx;
1497 if (ix != EXT_LAST_INDEX(path[depth].p_hdr))
25f1ee3a 1498 goto got_index;
1988b51e
AT
1499 }
1500
25f1ee3a
WF
1501 /* we've gone up to the root and found no index to the right */
1502 return 0;
1988b51e 1503
25f1ee3a 1504got_index:
1988b51e
AT
1505 /* we've found index to the right, let's
1506 * follow it and find the closest allocated
1507 * block to the right */
1508 ix++;
bf89d16f 1509 block = ext4_idx_pblock(ix);
1988b51e 1510 while (++depth < path->p_depth) {
395a87bf 1511 /* subtract from p_depth to get proper eh_depth */
7d7ea89e 1512 bh = read_extent_tree_block(inode, block,
107a7bd3 1513 path->p_depth - depth, 0);
7d7ea89e
TT
1514 if (IS_ERR(bh))
1515 return PTR_ERR(bh);
1516 eh = ext_block_hdr(bh);
1988b51e 1517 ix = EXT_FIRST_INDEX(eh);
bf89d16f 1518 block = ext4_idx_pblock(ix);
1988b51e
AT
1519 put_bh(bh);
1520 }
1521
107a7bd3 1522 bh = read_extent_tree_block(inode, block, path->p_depth - depth, 0);
7d7ea89e
TT
1523 if (IS_ERR(bh))
1524 return PTR_ERR(bh);
1988b51e 1525 eh = ext_block_hdr(bh);
1988b51e 1526 ex = EXT_FIRST_EXTENT(eh);
4d33b1ef 1527found_extent:
1988b51e 1528 *logical = le32_to_cpu(ex->ee_block);
bf89d16f 1529 *phys = ext4_ext_pblock(ex);
4d33b1ef
TT
1530 *ret_ex = ex;
1531 if (bh)
1532 put_bh(bh);
1988b51e 1533 return 0;
1988b51e
AT
1534}
1535
a86c6181 1536/*
d0d856e8 1537 * ext4_ext_next_allocated_block:
f17722f9 1538 * returns allocated block in subsequent extent or EXT_MAX_BLOCKS.
d0d856e8
RD
1539 * NOTE: it considers block number from index entry as
1540 * allocated block. Thus, index entries have to be consistent
1541 * with leaves.
a86c6181 1542 */
725d26d3 1543static ext4_lblk_t
a86c6181
AT
1544ext4_ext_next_allocated_block(struct ext4_ext_path *path)
1545{
1546 int depth;
1547
1548 BUG_ON(path == NULL);
1549 depth = path->p_depth;
1550
1551 if (depth == 0 && path->p_ext == NULL)
f17722f9 1552 return EXT_MAX_BLOCKS;
a86c6181
AT
1553
1554 while (depth >= 0) {
1555 if (depth == path->p_depth) {
1556 /* leaf */
6f8ff537
CW
1557 if (path[depth].p_ext &&
1558 path[depth].p_ext !=
a86c6181
AT
1559 EXT_LAST_EXTENT(path[depth].p_hdr))
1560 return le32_to_cpu(path[depth].p_ext[1].ee_block);
1561 } else {
1562 /* index */
1563 if (path[depth].p_idx !=
1564 EXT_LAST_INDEX(path[depth].p_hdr))
1565 return le32_to_cpu(path[depth].p_idx[1].ei_block);
1566 }
1567 depth--;
1568 }
1569
f17722f9 1570 return EXT_MAX_BLOCKS;
a86c6181
AT
1571}
1572
1573/*
d0d856e8 1574 * ext4_ext_next_leaf_block:
f17722f9 1575 * returns first allocated block from next leaf or EXT_MAX_BLOCKS
a86c6181 1576 */
5718789d 1577static ext4_lblk_t ext4_ext_next_leaf_block(struct ext4_ext_path *path)
a86c6181
AT
1578{
1579 int depth;
1580
1581 BUG_ON(path == NULL);
1582 depth = path->p_depth;
1583
1584 /* zero-tree has no leaf blocks at all */
1585 if (depth == 0)
f17722f9 1586 return EXT_MAX_BLOCKS;
a86c6181
AT
1587
1588 /* go to index block */
1589 depth--;
1590
1591 while (depth >= 0) {
1592 if (path[depth].p_idx !=
1593 EXT_LAST_INDEX(path[depth].p_hdr))
725d26d3
AK
1594 return (ext4_lblk_t)
1595 le32_to_cpu(path[depth].p_idx[1].ei_block);
a86c6181
AT
1596 depth--;
1597 }
1598
f17722f9 1599 return EXT_MAX_BLOCKS;
a86c6181
AT
1600}
1601
1602/*
d0d856e8
RD
1603 * ext4_ext_correct_indexes:
1604 * if leaf gets modified and modified extent is first in the leaf,
1605 * then we have to correct all indexes above.
a86c6181
AT
1606 * TODO: do we need to correct tree in all cases?
1607 */
1d03ec98 1608static int ext4_ext_correct_indexes(handle_t *handle, struct inode *inode,
a86c6181
AT
1609 struct ext4_ext_path *path)
1610{
1611 struct ext4_extent_header *eh;
1612 int depth = ext_depth(inode);
1613 struct ext4_extent *ex;
1614 __le32 border;
1615 int k, err = 0;
1616
1617 eh = path[depth].p_hdr;
1618 ex = path[depth].p_ext;
273df556
FM
1619
1620 if (unlikely(ex == NULL || eh == NULL)) {
1621 EXT4_ERROR_INODE(inode,
1622 "ex %p == NULL or eh %p == NULL", ex, eh);
1623 return -EIO;
1624 }
a86c6181
AT
1625
1626 if (depth == 0) {
1627 /* there is no tree at all */
1628 return 0;
1629 }
1630
1631 if (ex != EXT_FIRST_EXTENT(eh)) {
1632 /* we correct tree if first leaf got modified only */
1633 return 0;
1634 }
1635
1636 /*
d0d856e8 1637 * TODO: we need correction if border is smaller than current one
a86c6181
AT
1638 */
1639 k = depth - 1;
1640 border = path[depth].p_ext->ee_block;
7e028976
AM
1641 err = ext4_ext_get_access(handle, inode, path + k);
1642 if (err)
a86c6181
AT
1643 return err;
1644 path[k].p_idx->ei_block = border;
7e028976
AM
1645 err = ext4_ext_dirty(handle, inode, path + k);
1646 if (err)
a86c6181
AT
1647 return err;
1648
1649 while (k--) {
1650 /* change all left-side indexes */
1651 if (path[k+1].p_idx != EXT_FIRST_INDEX(path[k+1].p_hdr))
1652 break;
7e028976
AM
1653 err = ext4_ext_get_access(handle, inode, path + k);
1654 if (err)
a86c6181
AT
1655 break;
1656 path[k].p_idx->ei_block = border;
7e028976
AM
1657 err = ext4_ext_dirty(handle, inode, path + k);
1658 if (err)
a86c6181
AT
1659 break;
1660 }
1661
1662 return err;
1663}
1664
748de673 1665int
a86c6181
AT
1666ext4_can_extents_be_merged(struct inode *inode, struct ext4_extent *ex1,
1667 struct ext4_extent *ex2)
1668{
749269fa 1669 unsigned short ext1_ee_len, ext2_ee_len, max_len;
a2df2a63
AA
1670
1671 /*
ec22ba8e
DM
1672 * Make sure that both extents are initialized. We don't merge
1673 * uninitialized extents so that we can be sure that end_io code has
1674 * the extent that was written properly split out and conversion to
1675 * initialized is trivial.
a2df2a63 1676 */
ec22ba8e 1677 if (ext4_ext_is_uninitialized(ex1) || ext4_ext_is_uninitialized(ex2))
a2df2a63
AA
1678 return 0;
1679
749269fa
AA
1680 if (ext4_ext_is_uninitialized(ex1))
1681 max_len = EXT_UNINIT_MAX_LEN;
1682 else
1683 max_len = EXT_INIT_MAX_LEN;
1684
a2df2a63
AA
1685 ext1_ee_len = ext4_ext_get_actual_len(ex1);
1686 ext2_ee_len = ext4_ext_get_actual_len(ex2);
1687
1688 if (le32_to_cpu(ex1->ee_block) + ext1_ee_len !=
63f57933 1689 le32_to_cpu(ex2->ee_block))
a86c6181
AT
1690 return 0;
1691
471d4011
SB
1692 /*
1693 * To allow future support for preallocated extents to be added
1694 * as an RO_COMPAT feature, refuse to merge to extents if
d0d856e8 1695 * this can result in the top bit of ee_len being set.
471d4011 1696 */
749269fa 1697 if (ext1_ee_len + ext2_ee_len > max_len)
471d4011 1698 return 0;
bbf2f9fb 1699#ifdef AGGRESSIVE_TEST
b939e376 1700 if (ext1_ee_len >= 4)
a86c6181
AT
1701 return 0;
1702#endif
1703
bf89d16f 1704 if (ext4_ext_pblock(ex1) + ext1_ee_len == ext4_ext_pblock(ex2))
a86c6181
AT
1705 return 1;
1706 return 0;
1707}
1708
56055d3a
AA
1709/*
1710 * This function tries to merge the "ex" extent to the next extent in the tree.
1711 * It always tries to merge towards right. If you want to merge towards
1712 * left, pass "ex - 1" as argument instead of "ex".
1713 * Returns 0 if the extents (ex and ex+1) were _not_ merged and returns
1714 * 1 if they got merged.
1715 */
197217a5 1716static int ext4_ext_try_to_merge_right(struct inode *inode,
1f109d5a
TT
1717 struct ext4_ext_path *path,
1718 struct ext4_extent *ex)
56055d3a
AA
1719{
1720 struct ext4_extent_header *eh;
1721 unsigned int depth, len;
1722 int merge_done = 0;
1723 int uninitialized = 0;
1724
1725 depth = ext_depth(inode);
1726 BUG_ON(path[depth].p_hdr == NULL);
1727 eh = path[depth].p_hdr;
1728
1729 while (ex < EXT_LAST_EXTENT(eh)) {
1730 if (!ext4_can_extents_be_merged(inode, ex, ex + 1))
1731 break;
1732 /* merge with next extent! */
1733 if (ext4_ext_is_uninitialized(ex))
1734 uninitialized = 1;
1735 ex->ee_len = cpu_to_le16(ext4_ext_get_actual_len(ex)
1736 + ext4_ext_get_actual_len(ex + 1));
1737 if (uninitialized)
1738 ext4_ext_mark_uninitialized(ex);
1739
1740 if (ex + 1 < EXT_LAST_EXTENT(eh)) {
1741 len = (EXT_LAST_EXTENT(eh) - ex - 1)
1742 * sizeof(struct ext4_extent);
1743 memmove(ex + 1, ex + 2, len);
1744 }
e8546d06 1745 le16_add_cpu(&eh->eh_entries, -1);
56055d3a
AA
1746 merge_done = 1;
1747 WARN_ON(eh->eh_entries == 0);
1748 if (!eh->eh_entries)
24676da4 1749 EXT4_ERROR_INODE(inode, "eh->eh_entries = 0!");
56055d3a
AA
1750 }
1751
1752 return merge_done;
1753}
1754
ecb94f5f
TT
1755/*
1756 * This function does a very simple check to see if we can collapse
1757 * an extent tree with a single extent tree leaf block into the inode.
1758 */
1759static void ext4_ext_try_to_merge_up(handle_t *handle,
1760 struct inode *inode,
1761 struct ext4_ext_path *path)
1762{
1763 size_t s;
1764 unsigned max_root = ext4_ext_space_root(inode, 0);
1765 ext4_fsblk_t blk;
1766
1767 if ((path[0].p_depth != 1) ||
1768 (le16_to_cpu(path[0].p_hdr->eh_entries) != 1) ||
1769 (le16_to_cpu(path[1].p_hdr->eh_entries) > max_root))
1770 return;
1771
1772 /*
1773 * We need to modify the block allocation bitmap and the block
1774 * group descriptor to release the extent tree block. If we
1775 * can't get the journal credits, give up.
1776 */
1777 if (ext4_journal_extend(handle, 2))
1778 return;
1779
1780 /*
1781 * Copy the extent data up to the inode
1782 */
1783 blk = ext4_idx_pblock(path[0].p_idx);
1784 s = le16_to_cpu(path[1].p_hdr->eh_entries) *
1785 sizeof(struct ext4_extent_idx);
1786 s += sizeof(struct ext4_extent_header);
1787
1788 memcpy(path[0].p_hdr, path[1].p_hdr, s);
1789 path[0].p_depth = 0;
1790 path[0].p_ext = EXT_FIRST_EXTENT(path[0].p_hdr) +
1791 (path[1].p_ext - EXT_FIRST_EXTENT(path[1].p_hdr));
1792 path[0].p_hdr->eh_max = cpu_to_le16(max_root);
1793
1794 brelse(path[1].p_bh);
1795 ext4_free_blocks(handle, inode, NULL, blk, 1,
7d734532
JK
1796 EXT4_FREE_BLOCKS_METADATA | EXT4_FREE_BLOCKS_FORGET |
1797 EXT4_FREE_BLOCKS_RESERVE);
ecb94f5f
TT
1798}
1799
197217a5
YY
1800/*
1801 * This function tries to merge the @ex extent to neighbours in the tree.
1802 * return 1 if merge left else 0.
1803 */
ecb94f5f
TT
1804static void ext4_ext_try_to_merge(handle_t *handle,
1805 struct inode *inode,
197217a5
YY
1806 struct ext4_ext_path *path,
1807 struct ext4_extent *ex) {
1808 struct ext4_extent_header *eh;
1809 unsigned int depth;
1810 int merge_done = 0;
197217a5
YY
1811
1812 depth = ext_depth(inode);
1813 BUG_ON(path[depth].p_hdr == NULL);
1814 eh = path[depth].p_hdr;
1815
1816 if (ex > EXT_FIRST_EXTENT(eh))
1817 merge_done = ext4_ext_try_to_merge_right(inode, path, ex - 1);
1818
1819 if (!merge_done)
ecb94f5f 1820 (void) ext4_ext_try_to_merge_right(inode, path, ex);
197217a5 1821
ecb94f5f 1822 ext4_ext_try_to_merge_up(handle, inode, path);
197217a5
YY
1823}
1824
25d14f98
AA
1825/*
1826 * check if a portion of the "newext" extent overlaps with an
1827 * existing extent.
1828 *
1829 * If there is an overlap discovered, it updates the length of the newext
1830 * such that there will be no overlap, and then returns 1.
1831 * If there is no overlap found, it returns 0.
1832 */
4d33b1ef
TT
1833static unsigned int ext4_ext_check_overlap(struct ext4_sb_info *sbi,
1834 struct inode *inode,
1f109d5a
TT
1835 struct ext4_extent *newext,
1836 struct ext4_ext_path *path)
25d14f98 1837{
725d26d3 1838 ext4_lblk_t b1, b2;
25d14f98
AA
1839 unsigned int depth, len1;
1840 unsigned int ret = 0;
1841
1842 b1 = le32_to_cpu(newext->ee_block);
a2df2a63 1843 len1 = ext4_ext_get_actual_len(newext);
25d14f98
AA
1844 depth = ext_depth(inode);
1845 if (!path[depth].p_ext)
1846 goto out;
1847 b2 = le32_to_cpu(path[depth].p_ext->ee_block);
4d33b1ef 1848 b2 &= ~(sbi->s_cluster_ratio - 1);
25d14f98
AA
1849
1850 /*
1851 * get the next allocated block if the extent in the path
2b2d6d01 1852 * is before the requested block(s)
25d14f98
AA
1853 */
1854 if (b2 < b1) {
1855 b2 = ext4_ext_next_allocated_block(path);
f17722f9 1856 if (b2 == EXT_MAX_BLOCKS)
25d14f98 1857 goto out;
4d33b1ef 1858 b2 &= ~(sbi->s_cluster_ratio - 1);
25d14f98
AA
1859 }
1860
725d26d3 1861 /* check for wrap through zero on extent logical start block*/
25d14f98 1862 if (b1 + len1 < b1) {
f17722f9 1863 len1 = EXT_MAX_BLOCKS - b1;
25d14f98
AA
1864 newext->ee_len = cpu_to_le16(len1);
1865 ret = 1;
1866 }
1867
1868 /* check for overlap */
1869 if (b1 + len1 > b2) {
1870 newext->ee_len = cpu_to_le16(b2 - b1);
1871 ret = 1;
1872 }
1873out:
1874 return ret;
1875}
1876
a86c6181 1877/*
d0d856e8
RD
1878 * ext4_ext_insert_extent:
1879 * tries to merge requsted extent into the existing extent or
1880 * inserts requested extent as new one into the tree,
1881 * creating new leaf in the no-space case.
a86c6181
AT
1882 */
1883int ext4_ext_insert_extent(handle_t *handle, struct inode *inode,
1884 struct ext4_ext_path *path,
107a7bd3 1885 struct ext4_extent *newext, int gb_flags)
a86c6181 1886{
af5bc92d 1887 struct ext4_extent_header *eh;
a86c6181
AT
1888 struct ext4_extent *ex, *fex;
1889 struct ext4_extent *nearex; /* nearest extent */
1890 struct ext4_ext_path *npath = NULL;
725d26d3
AK
1891 int depth, len, err;
1892 ext4_lblk_t next;
a2df2a63 1893 unsigned uninitialized = 0;
107a7bd3 1894 int mb_flags = 0;
a86c6181 1895
273df556
FM
1896 if (unlikely(ext4_ext_get_actual_len(newext) == 0)) {
1897 EXT4_ERROR_INODE(inode, "ext4_ext_get_actual_len(newext) == 0");
1898 return -EIO;
1899 }
a86c6181
AT
1900 depth = ext_depth(inode);
1901 ex = path[depth].p_ext;
be8981be 1902 eh = path[depth].p_hdr;
273df556
FM
1903 if (unlikely(path[depth].p_hdr == NULL)) {
1904 EXT4_ERROR_INODE(inode, "path[%d].p_hdr == NULL", depth);
1905 return -EIO;
1906 }
a86c6181
AT
1907
1908 /* try to insert block into found extent and return */
107a7bd3 1909 if (ex && !(gb_flags & EXT4_GET_BLOCKS_PRE_IO)) {
a2df2a63
AA
1910
1911 /*
be8981be
LC
1912 * Try to see whether we should rather test the extent on
1913 * right from ex, or from the left of ex. This is because
1914 * ext4_ext_find_extent() can return either extent on the
1915 * left, or on the right from the searched position. This
1916 * will make merging more effective.
a2df2a63 1917 */
be8981be
LC
1918 if (ex < EXT_LAST_EXTENT(eh) &&
1919 (le32_to_cpu(ex->ee_block) +
1920 ext4_ext_get_actual_len(ex) <
1921 le32_to_cpu(newext->ee_block))) {
1922 ex += 1;
1923 goto prepend;
1924 } else if ((ex > EXT_FIRST_EXTENT(eh)) &&
1925 (le32_to_cpu(newext->ee_block) +
1926 ext4_ext_get_actual_len(newext) <
1927 le32_to_cpu(ex->ee_block)))
1928 ex -= 1;
1929
1930 /* Try to append newex to the ex */
1931 if (ext4_can_extents_be_merged(inode, ex, newext)) {
1932 ext_debug("append [%d]%d block to %u:[%d]%d"
1933 "(from %llu)\n",
1934 ext4_ext_is_uninitialized(newext),
1935 ext4_ext_get_actual_len(newext),
1936 le32_to_cpu(ex->ee_block),
1937 ext4_ext_is_uninitialized(ex),
1938 ext4_ext_get_actual_len(ex),
1939 ext4_ext_pblock(ex));
1940 err = ext4_ext_get_access(handle, inode,
1941 path + depth);
1942 if (err)
1943 return err;
1944
1945 /*
1946 * ext4_can_extents_be_merged should have checked
1947 * that either both extents are uninitialized, or
1948 * both aren't. Thus we need to check only one of
1949 * them here.
1950 */
1951 if (ext4_ext_is_uninitialized(ex))
1952 uninitialized = 1;
1953 ex->ee_len = cpu_to_le16(ext4_ext_get_actual_len(ex)
a2df2a63 1954 + ext4_ext_get_actual_len(newext));
be8981be
LC
1955 if (uninitialized)
1956 ext4_ext_mark_uninitialized(ex);
1957 eh = path[depth].p_hdr;
1958 nearex = ex;
1959 goto merge;
1960 }
1961
1962prepend:
1963 /* Try to prepend newex to the ex */
1964 if (ext4_can_extents_be_merged(inode, newext, ex)) {
1965 ext_debug("prepend %u[%d]%d block to %u:[%d]%d"
1966 "(from %llu)\n",
1967 le32_to_cpu(newext->ee_block),
1968 ext4_ext_is_uninitialized(newext),
1969 ext4_ext_get_actual_len(newext),
1970 le32_to_cpu(ex->ee_block),
1971 ext4_ext_is_uninitialized(ex),
1972 ext4_ext_get_actual_len(ex),
1973 ext4_ext_pblock(ex));
1974 err = ext4_ext_get_access(handle, inode,
1975 path + depth);
1976 if (err)
1977 return err;
1978
1979 /*
1980 * ext4_can_extents_be_merged should have checked
1981 * that either both extents are uninitialized, or
1982 * both aren't. Thus we need to check only one of
1983 * them here.
1984 */
1985 if (ext4_ext_is_uninitialized(ex))
1986 uninitialized = 1;
1987 ex->ee_block = newext->ee_block;
1988 ext4_ext_store_pblock(ex, ext4_ext_pblock(newext));
1989 ex->ee_len = cpu_to_le16(ext4_ext_get_actual_len(ex)
1990 + ext4_ext_get_actual_len(newext));
1991 if (uninitialized)
1992 ext4_ext_mark_uninitialized(ex);
1993 eh = path[depth].p_hdr;
1994 nearex = ex;
1995 goto merge;
1996 }
a86c6181
AT
1997 }
1998
a86c6181
AT
1999 depth = ext_depth(inode);
2000 eh = path[depth].p_hdr;
2001 if (le16_to_cpu(eh->eh_entries) < le16_to_cpu(eh->eh_max))
2002 goto has_space;
2003
2004 /* probably next leaf has space for us? */
2005 fex = EXT_LAST_EXTENT(eh);
598dbdf2
RD
2006 next = EXT_MAX_BLOCKS;
2007 if (le32_to_cpu(newext->ee_block) > le32_to_cpu(fex->ee_block))
5718789d 2008 next = ext4_ext_next_leaf_block(path);
598dbdf2 2009 if (next != EXT_MAX_BLOCKS) {
32de6756 2010 ext_debug("next leaf block - %u\n", next);
a86c6181 2011 BUG_ON(npath != NULL);
107a7bd3 2012 npath = ext4_ext_find_extent(inode, next, NULL, 0);
a86c6181
AT
2013 if (IS_ERR(npath))
2014 return PTR_ERR(npath);
2015 BUG_ON(npath->p_depth != path->p_depth);
2016 eh = npath[depth].p_hdr;
2017 if (le16_to_cpu(eh->eh_entries) < le16_to_cpu(eh->eh_max)) {
25985edc 2018 ext_debug("next leaf isn't full(%d)\n",
a86c6181
AT
2019 le16_to_cpu(eh->eh_entries));
2020 path = npath;
ffb505ff 2021 goto has_space;
a86c6181
AT
2022 }
2023 ext_debug("next leaf has no free space(%d,%d)\n",
2024 le16_to_cpu(eh->eh_entries), le16_to_cpu(eh->eh_max));
2025 }
2026
2027 /*
d0d856e8
RD
2028 * There is no free space in the found leaf.
2029 * We're gonna add a new leaf in the tree.
a86c6181 2030 */
107a7bd3
TT
2031 if (gb_flags & EXT4_GET_BLOCKS_METADATA_NOFAIL)
2032 mb_flags = EXT4_MB_USE_RESERVED;
2033 err = ext4_ext_create_new_leaf(handle, inode, mb_flags, gb_flags,
2034 path, newext);
a86c6181
AT
2035 if (err)
2036 goto cleanup;
2037 depth = ext_depth(inode);
2038 eh = path[depth].p_hdr;
2039
2040has_space:
2041 nearex = path[depth].p_ext;
2042
7e028976
AM
2043 err = ext4_ext_get_access(handle, inode, path + depth);
2044 if (err)
a86c6181
AT
2045 goto cleanup;
2046
2047 if (!nearex) {
2048 /* there is no extent in this leaf, create first one */
32de6756 2049 ext_debug("first extent in the leaf: %u:%llu:[%d]%d\n",
8c55e204 2050 le32_to_cpu(newext->ee_block),
bf89d16f 2051 ext4_ext_pblock(newext),
553f9008 2052 ext4_ext_is_uninitialized(newext),
a2df2a63 2053 ext4_ext_get_actual_len(newext));
80e675f9
EG
2054 nearex = EXT_FIRST_EXTENT(eh);
2055 } else {
2056 if (le32_to_cpu(newext->ee_block)
8c55e204 2057 > le32_to_cpu(nearex->ee_block)) {
80e675f9 2058 /* Insert after */
32de6756
YY
2059 ext_debug("insert %u:%llu:[%d]%d before: "
2060 "nearest %p\n",
80e675f9
EG
2061 le32_to_cpu(newext->ee_block),
2062 ext4_ext_pblock(newext),
2063 ext4_ext_is_uninitialized(newext),
2064 ext4_ext_get_actual_len(newext),
2065 nearex);
2066 nearex++;
2067 } else {
2068 /* Insert before */
2069 BUG_ON(newext->ee_block == nearex->ee_block);
32de6756
YY
2070 ext_debug("insert %u:%llu:[%d]%d after: "
2071 "nearest %p\n",
8c55e204 2072 le32_to_cpu(newext->ee_block),
bf89d16f 2073 ext4_ext_pblock(newext),
553f9008 2074 ext4_ext_is_uninitialized(newext),
a2df2a63 2075 ext4_ext_get_actual_len(newext),
80e675f9
EG
2076 nearex);
2077 }
2078 len = EXT_LAST_EXTENT(eh) - nearex + 1;
2079 if (len > 0) {
32de6756 2080 ext_debug("insert %u:%llu:[%d]%d: "
80e675f9
EG
2081 "move %d extents from 0x%p to 0x%p\n",
2082 le32_to_cpu(newext->ee_block),
2083 ext4_ext_pblock(newext),
2084 ext4_ext_is_uninitialized(newext),
2085 ext4_ext_get_actual_len(newext),
2086 len, nearex, nearex + 1);
2087 memmove(nearex + 1, nearex,
2088 len * sizeof(struct ext4_extent));
a86c6181 2089 }
a86c6181
AT
2090 }
2091
e8546d06 2092 le16_add_cpu(&eh->eh_entries, 1);
80e675f9 2093 path[depth].p_ext = nearex;
a86c6181 2094 nearex->ee_block = newext->ee_block;
bf89d16f 2095 ext4_ext_store_pblock(nearex, ext4_ext_pblock(newext));
a86c6181 2096 nearex->ee_len = newext->ee_len;
a86c6181
AT
2097
2098merge:
e7bcf823 2099 /* try to merge extents */
107a7bd3 2100 if (!(gb_flags & EXT4_GET_BLOCKS_PRE_IO))
ecb94f5f 2101 ext4_ext_try_to_merge(handle, inode, path, nearex);
a86c6181 2102
a86c6181
AT
2103
2104 /* time to correct all indexes above */
2105 err = ext4_ext_correct_indexes(handle, inode, path);
2106 if (err)
2107 goto cleanup;
2108
ecb94f5f 2109 err = ext4_ext_dirty(handle, inode, path + path->p_depth);
a86c6181
AT
2110
2111cleanup:
2112 if (npath) {
2113 ext4_ext_drop_refs(npath);
2114 kfree(npath);
2115 }
a86c6181
AT
2116 return err;
2117}
2118
91dd8c11
LC
2119static int ext4_fill_fiemap_extents(struct inode *inode,
2120 ext4_lblk_t block, ext4_lblk_t num,
2121 struct fiemap_extent_info *fieinfo)
6873fa0d
ES
2122{
2123 struct ext4_ext_path *path = NULL;
6873fa0d 2124 struct ext4_extent *ex;
69eb33dc 2125 struct extent_status es;
91dd8c11 2126 ext4_lblk_t next, next_del, start = 0, end = 0;
6873fa0d 2127 ext4_lblk_t last = block + num;
91dd8c11
LC
2128 int exists, depth = 0, err = 0;
2129 unsigned int flags = 0;
2130 unsigned char blksize_bits = inode->i_sb->s_blocksize_bits;
6873fa0d 2131
f17722f9 2132 while (block < last && block != EXT_MAX_BLOCKS) {
6873fa0d
ES
2133 num = last - block;
2134 /* find extent for this block */
fab3a549 2135 down_read(&EXT4_I(inode)->i_data_sem);
91dd8c11
LC
2136
2137 if (path && ext_depth(inode) != depth) {
2138 /* depth was changed. we have to realloc path */
2139 kfree(path);
2140 path = NULL;
2141 }
2142
107a7bd3 2143 path = ext4_ext_find_extent(inode, block, path, 0);
6873fa0d 2144 if (IS_ERR(path)) {
91dd8c11 2145 up_read(&EXT4_I(inode)->i_data_sem);
6873fa0d
ES
2146 err = PTR_ERR(path);
2147 path = NULL;
2148 break;
2149 }
2150
2151 depth = ext_depth(inode);
273df556 2152 if (unlikely(path[depth].p_hdr == NULL)) {
91dd8c11 2153 up_read(&EXT4_I(inode)->i_data_sem);
273df556
FM
2154 EXT4_ERROR_INODE(inode, "path[%d].p_hdr == NULL", depth);
2155 err = -EIO;
2156 break;
2157 }
6873fa0d
ES
2158 ex = path[depth].p_ext;
2159 next = ext4_ext_next_allocated_block(path);
91dd8c11 2160 ext4_ext_drop_refs(path);
6873fa0d 2161
91dd8c11 2162 flags = 0;
6873fa0d
ES
2163 exists = 0;
2164 if (!ex) {
2165 /* there is no extent yet, so try to allocate
2166 * all requested space */
2167 start = block;
2168 end = block + num;
2169 } else if (le32_to_cpu(ex->ee_block) > block) {
2170 /* need to allocate space before found extent */
2171 start = block;
2172 end = le32_to_cpu(ex->ee_block);
2173 if (block + num < end)
2174 end = block + num;
2175 } else if (block >= le32_to_cpu(ex->ee_block)
2176 + ext4_ext_get_actual_len(ex)) {
2177 /* need to allocate space after found extent */
2178 start = block;
2179 end = block + num;
2180 if (end >= next)
2181 end = next;
2182 } else if (block >= le32_to_cpu(ex->ee_block)) {
2183 /*
2184 * some part of requested space is covered
2185 * by found extent
2186 */
2187 start = block;
2188 end = le32_to_cpu(ex->ee_block)
2189 + ext4_ext_get_actual_len(ex);
2190 if (block + num < end)
2191 end = block + num;
2192 exists = 1;
2193 } else {
2194 BUG();
2195 }
2196 BUG_ON(end <= start);
2197
2198 if (!exists) {
69eb33dc
ZL
2199 es.es_lblk = start;
2200 es.es_len = end - start;
2201 es.es_pblk = 0;
6873fa0d 2202 } else {
69eb33dc
ZL
2203 es.es_lblk = le32_to_cpu(ex->ee_block);
2204 es.es_len = ext4_ext_get_actual_len(ex);
2205 es.es_pblk = ext4_ext_pblock(ex);
91dd8c11
LC
2206 if (ext4_ext_is_uninitialized(ex))
2207 flags |= FIEMAP_EXTENT_UNWRITTEN;
6873fa0d
ES
2208 }
2209
91dd8c11 2210 /*
69eb33dc
ZL
2211 * Find delayed extent and update es accordingly. We call
2212 * it even in !exists case to find out whether es is the
91dd8c11
LC
2213 * last existing extent or not.
2214 */
69eb33dc 2215 next_del = ext4_find_delayed_extent(inode, &es);
91dd8c11
LC
2216 if (!exists && next_del) {
2217 exists = 1;
72dac95d
JL
2218 flags |= (FIEMAP_EXTENT_DELALLOC |
2219 FIEMAP_EXTENT_UNKNOWN);
91dd8c11
LC
2220 }
2221 up_read(&EXT4_I(inode)->i_data_sem);
2222
69eb33dc
ZL
2223 if (unlikely(es.es_len == 0)) {
2224 EXT4_ERROR_INODE(inode, "es.es_len == 0");
273df556
FM
2225 err = -EIO;
2226 break;
2227 }
6873fa0d 2228
f7fec032
ZL
2229 /*
2230 * This is possible iff next == next_del == EXT_MAX_BLOCKS.
2231 * we need to check next == EXT_MAX_BLOCKS because it is
2232 * possible that an extent is with unwritten and delayed
2233 * status due to when an extent is delayed allocated and
2234 * is allocated by fallocate status tree will track both of
2235 * them in a extent.
2236 *
2237 * So we could return a unwritten and delayed extent, and
2238 * its block is equal to 'next'.
2239 */
2240 if (next == next_del && next == EXT_MAX_BLOCKS) {
91dd8c11
LC
2241 flags |= FIEMAP_EXTENT_LAST;
2242 if (unlikely(next_del != EXT_MAX_BLOCKS ||
2243 next != EXT_MAX_BLOCKS)) {
2244 EXT4_ERROR_INODE(inode,
2245 "next extent == %u, next "
2246 "delalloc extent = %u",
2247 next, next_del);
2248 err = -EIO;
2249 break;
2250 }
6873fa0d
ES
2251 }
2252
91dd8c11
LC
2253 if (exists) {
2254 err = fiemap_fill_next_extent(fieinfo,
69eb33dc
ZL
2255 (__u64)es.es_lblk << blksize_bits,
2256 (__u64)es.es_pblk << blksize_bits,
2257 (__u64)es.es_len << blksize_bits,
91dd8c11
LC
2258 flags);
2259 if (err < 0)
2260 break;
2261 if (err == 1) {
2262 err = 0;
2263 break;
2264 }
6873fa0d
ES
2265 }
2266
69eb33dc 2267 block = es.es_lblk + es.es_len;
6873fa0d
ES
2268 }
2269
2270 if (path) {
2271 ext4_ext_drop_refs(path);
2272 kfree(path);
2273 }
2274
2275 return err;
2276}
2277
a86c6181 2278/*
d0d856e8
RD
2279 * ext4_ext_put_gap_in_cache:
2280 * calculate boundaries of the gap that the requested block fits into
a86c6181
AT
2281 * and cache this gap
2282 */
09b88252 2283static void
a86c6181 2284ext4_ext_put_gap_in_cache(struct inode *inode, struct ext4_ext_path *path,
725d26d3 2285 ext4_lblk_t block)
a86c6181
AT
2286{
2287 int depth = ext_depth(inode);
27b1b228
AS
2288 unsigned long len = 0;
2289 ext4_lblk_t lblock = 0;
a86c6181
AT
2290 struct ext4_extent *ex;
2291
2292 ex = path[depth].p_ext;
2293 if (ex == NULL) {
69eb33dc
ZL
2294 /*
2295 * there is no extent yet, so gap is [0;-] and we
2296 * don't cache it
2297 */
a86c6181
AT
2298 ext_debug("cache gap(whole file):");
2299 } else if (block < le32_to_cpu(ex->ee_block)) {
2300 lblock = block;
2301 len = le32_to_cpu(ex->ee_block) - block;
bba90743
ES
2302 ext_debug("cache gap(before): %u [%u:%u]",
2303 block,
2304 le32_to_cpu(ex->ee_block),
2305 ext4_ext_get_actual_len(ex));
d100eef2
ZL
2306 if (!ext4_find_delalloc_range(inode, lblock, lblock + len - 1))
2307 ext4_es_insert_extent(inode, lblock, len, ~0,
2308 EXTENT_STATUS_HOLE);
a86c6181 2309 } else if (block >= le32_to_cpu(ex->ee_block)
a2df2a63 2310 + ext4_ext_get_actual_len(ex)) {
725d26d3 2311 ext4_lblk_t next;
8c55e204 2312 lblock = le32_to_cpu(ex->ee_block)
a2df2a63 2313 + ext4_ext_get_actual_len(ex);
725d26d3
AK
2314
2315 next = ext4_ext_next_allocated_block(path);
bba90743
ES
2316 ext_debug("cache gap(after): [%u:%u] %u",
2317 le32_to_cpu(ex->ee_block),
2318 ext4_ext_get_actual_len(ex),
2319 block);
725d26d3
AK
2320 BUG_ON(next == lblock);
2321 len = next - lblock;
d100eef2
ZL
2322 if (!ext4_find_delalloc_range(inode, lblock, lblock + len - 1))
2323 ext4_es_insert_extent(inode, lblock, len, ~0,
2324 EXTENT_STATUS_HOLE);
a86c6181 2325 } else {
a86c6181
AT
2326 BUG();
2327 }
2328
bba90743 2329 ext_debug(" -> %u:%lu\n", lblock, len);
a86c6181
AT
2330}
2331
2332/*
d0d856e8
RD
2333 * ext4_ext_rm_idx:
2334 * removes index from the index block.
a86c6181 2335 */
1d03ec98 2336static int ext4_ext_rm_idx(handle_t *handle, struct inode *inode,
c36575e6 2337 struct ext4_ext_path *path, int depth)
a86c6181 2338{
a86c6181 2339 int err;
f65e6fba 2340 ext4_fsblk_t leaf;
a86c6181
AT
2341
2342 /* free index block */
c36575e6
FL
2343 depth--;
2344 path = path + depth;
bf89d16f 2345 leaf = ext4_idx_pblock(path->p_idx);
273df556
FM
2346 if (unlikely(path->p_hdr->eh_entries == 0)) {
2347 EXT4_ERROR_INODE(inode, "path->p_hdr->eh_entries == 0");
2348 return -EIO;
2349 }
7e028976
AM
2350 err = ext4_ext_get_access(handle, inode, path);
2351 if (err)
a86c6181 2352 return err;
0e1147b0
RD
2353
2354 if (path->p_idx != EXT_LAST_INDEX(path->p_hdr)) {
2355 int len = EXT_LAST_INDEX(path->p_hdr) - path->p_idx;
2356 len *= sizeof(struct ext4_extent_idx);
2357 memmove(path->p_idx, path->p_idx + 1, len);
2358 }
2359
e8546d06 2360 le16_add_cpu(&path->p_hdr->eh_entries, -1);
7e028976
AM
2361 err = ext4_ext_dirty(handle, inode, path);
2362 if (err)
a86c6181 2363 return err;
2ae02107 2364 ext_debug("index is empty, remove it, free block %llu\n", leaf);
d8990240
AK
2365 trace_ext4_ext_rm_idx(inode, leaf);
2366
7dc57615 2367 ext4_free_blocks(handle, inode, NULL, leaf, 1,
e6362609 2368 EXT4_FREE_BLOCKS_METADATA | EXT4_FREE_BLOCKS_FORGET);
c36575e6
FL
2369
2370 while (--depth >= 0) {
2371 if (path->p_idx != EXT_FIRST_INDEX(path->p_hdr))
2372 break;
2373 path--;
2374 err = ext4_ext_get_access(handle, inode, path);
2375 if (err)
2376 break;
2377 path->p_idx->ei_block = (path+1)->p_idx->ei_block;
2378 err = ext4_ext_dirty(handle, inode, path);
2379 if (err)
2380 break;
2381 }
a86c6181
AT
2382 return err;
2383}
2384
2385/*
ee12b630
MC
2386 * ext4_ext_calc_credits_for_single_extent:
2387 * This routine returns max. credits that needed to insert an extent
2388 * to the extent tree.
2389 * When pass the actual path, the caller should calculate credits
2390 * under i_data_sem.
a86c6181 2391 */
525f4ed8 2392int ext4_ext_calc_credits_for_single_extent(struct inode *inode, int nrblocks,
a86c6181
AT
2393 struct ext4_ext_path *path)
2394{
a86c6181 2395 if (path) {
ee12b630 2396 int depth = ext_depth(inode);
f3bd1f3f 2397 int ret = 0;
ee12b630 2398
a86c6181 2399 /* probably there is space in leaf? */
a86c6181 2400 if (le16_to_cpu(path[depth].p_hdr->eh_entries)
ee12b630 2401 < le16_to_cpu(path[depth].p_hdr->eh_max)) {
a86c6181 2402
ee12b630
MC
2403 /*
2404 * There are some space in the leaf tree, no
2405 * need to account for leaf block credit
2406 *
2407 * bitmaps and block group descriptor blocks
df3ab170 2408 * and other metadata blocks still need to be
ee12b630
MC
2409 * accounted.
2410 */
525f4ed8 2411 /* 1 bitmap, 1 block group descriptor */
ee12b630 2412 ret = 2 + EXT4_META_TRANS_BLOCKS(inode->i_sb);
5887e98b 2413 return ret;
ee12b630
MC
2414 }
2415 }
a86c6181 2416
525f4ed8 2417 return ext4_chunk_trans_blocks(inode, nrblocks);
ee12b630 2418}
a86c6181 2419
ee12b630 2420/*
fffb2739 2421 * How many index/leaf blocks need to change/allocate to add @extents extents?
ee12b630 2422 *
fffb2739
JK
2423 * If we add a single extent, then in the worse case, each tree level
2424 * index/leaf need to be changed in case of the tree split.
ee12b630 2425 *
fffb2739
JK
2426 * If more extents are inserted, they could cause the whole tree split more
2427 * than once, but this is really rare.
ee12b630 2428 */
fffb2739 2429int ext4_ext_index_trans_blocks(struct inode *inode, int extents)
ee12b630
MC
2430{
2431 int index;
f19d5870
TM
2432 int depth;
2433
2434 /* If we are converting the inline data, only one is needed here. */
2435 if (ext4_has_inline_data(inode))
2436 return 1;
2437
2438 depth = ext_depth(inode);
a86c6181 2439
fffb2739 2440 if (extents <= 1)
ee12b630
MC
2441 index = depth * 2;
2442 else
2443 index = depth * 3;
a86c6181 2444
ee12b630 2445 return index;
a86c6181
AT
2446}
2447
981250ca
TT
2448static inline int get_default_free_blocks_flags(struct inode *inode)
2449{
2450 if (S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode))
2451 return EXT4_FREE_BLOCKS_METADATA | EXT4_FREE_BLOCKS_FORGET;
2452 else if (ext4_should_journal_data(inode))
2453 return EXT4_FREE_BLOCKS_FORGET;
2454 return 0;
2455}
2456
a86c6181 2457static int ext4_remove_blocks(handle_t *handle, struct inode *inode,
0aa06000 2458 struct ext4_extent *ex,
d23142c6 2459 long long *partial_cluster,
0aa06000 2460 ext4_lblk_t from, ext4_lblk_t to)
a86c6181 2461{
0aa06000 2462 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
a2df2a63 2463 unsigned short ee_len = ext4_ext_get_actual_len(ex);
0aa06000 2464 ext4_fsblk_t pblk;
981250ca 2465 int flags = get_default_free_blocks_flags(inode);
18888cf0 2466
0aa06000
TT
2467 /*
2468 * For bigalloc file systems, we never free a partial cluster
2469 * at the beginning of the extent. Instead, we make a note
2470 * that we tried freeing the cluster, and check to see if we
2471 * need to free it on a subsequent call to ext4_remove_blocks,
2472 * or at the end of the ext4_truncate() operation.
2473 */
2474 flags |= EXT4_FREE_BLOCKS_NOFREE_FIRST_CLUSTER;
2475
d8990240 2476 trace_ext4_remove_blocks(inode, ex, from, to, *partial_cluster);
0aa06000
TT
2477 /*
2478 * If we have a partial cluster, and it's different from the
2479 * cluster of the last block, we need to explicitly free the
2480 * partial cluster here.
2481 */
2482 pblk = ext4_ext_pblock(ex) + ee_len - 1;
d23142c6
LC
2483 if ((*partial_cluster > 0) &&
2484 (EXT4_B2C(sbi, pblk) != *partial_cluster)) {
0aa06000
TT
2485 ext4_free_blocks(handle, inode, NULL,
2486 EXT4_C2B(sbi, *partial_cluster),
2487 sbi->s_cluster_ratio, flags);
2488 *partial_cluster = 0;
2489 }
2490
a86c6181
AT
2491#ifdef EXTENTS_STATS
2492 {
2493 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
a86c6181
AT
2494 spin_lock(&sbi->s_ext_stats_lock);
2495 sbi->s_ext_blocks += ee_len;
2496 sbi->s_ext_extents++;
2497 if (ee_len < sbi->s_ext_min)
2498 sbi->s_ext_min = ee_len;
2499 if (ee_len > sbi->s_ext_max)
2500 sbi->s_ext_max = ee_len;
2501 if (ext_depth(inode) > sbi->s_depth_max)
2502 sbi->s_depth_max = ext_depth(inode);
2503 spin_unlock(&sbi->s_ext_stats_lock);
2504 }
2505#endif
2506 if (from >= le32_to_cpu(ex->ee_block)
a2df2a63 2507 && to == le32_to_cpu(ex->ee_block) + ee_len - 1) {
a86c6181 2508 /* tail removal */
725d26d3 2509 ext4_lblk_t num;
d23142c6 2510 unsigned int unaligned;
725d26d3 2511
a2df2a63 2512 num = le32_to_cpu(ex->ee_block) + ee_len - from;
0aa06000 2513 pblk = ext4_ext_pblock(ex) + ee_len - num;
d23142c6
LC
2514 /*
2515 * Usually we want to free partial cluster at the end of the
2516 * extent, except for the situation when the cluster is still
2517 * used by any other extent (partial_cluster is negative).
2518 */
2519 if (*partial_cluster < 0 &&
2520 -(*partial_cluster) == EXT4_B2C(sbi, pblk + num - 1))
2521 flags |= EXT4_FREE_BLOCKS_NOFREE_LAST_CLUSTER;
2522
2523 ext_debug("free last %u blocks starting %llu partial %lld\n",
2524 num, pblk, *partial_cluster);
0aa06000
TT
2525 ext4_free_blocks(handle, inode, NULL, pblk, num, flags);
2526 /*
2527 * If the block range to be freed didn't start at the
2528 * beginning of a cluster, and we removed the entire
d23142c6
LC
2529 * extent and the cluster is not used by any other extent,
2530 * save the partial cluster here, since we might need to
2531 * delete if we determine that the truncate operation has
2532 * removed all of the blocks in the cluster.
2533 *
2534 * On the other hand, if we did not manage to free the whole
2535 * extent, we have to mark the cluster as used (store negative
2536 * cluster number in partial_cluster).
0aa06000 2537 */
d23142c6
LC
2538 unaligned = pblk & (sbi->s_cluster_ratio - 1);
2539 if (unaligned && (ee_len == num) &&
2540 (*partial_cluster != -((long long)EXT4_B2C(sbi, pblk))))
0aa06000 2541 *partial_cluster = EXT4_B2C(sbi, pblk);
d23142c6
LC
2542 else if (unaligned)
2543 *partial_cluster = -((long long)EXT4_B2C(sbi, pblk));
2544 else if (*partial_cluster > 0)
0aa06000 2545 *partial_cluster = 0;
78fb9cdf
LC
2546 } else
2547 ext4_error(sbi->s_sb, "strange request: removal(2) "
2548 "%u-%u from %u:%u\n",
2549 from, to, le32_to_cpu(ex->ee_block), ee_len);
a86c6181
AT
2550 return 0;
2551}
2552
d583fb87
AH
2553
2554/*
2555 * ext4_ext_rm_leaf() Removes the extents associated with the
2556 * blocks appearing between "start" and "end", and splits the extents
2557 * if "start" and "end" appear in the same extent
2558 *
2559 * @handle: The journal handle
2560 * @inode: The files inode
2561 * @path: The path to the leaf
d23142c6
LC
2562 * @partial_cluster: The cluster which we'll have to free if all extents
2563 * has been released from it. It gets negative in case
2564 * that the cluster is still used.
d583fb87
AH
2565 * @start: The first block to remove
2566 * @end: The last block to remove
2567 */
a86c6181
AT
2568static int
2569ext4_ext_rm_leaf(handle_t *handle, struct inode *inode,
d23142c6
LC
2570 struct ext4_ext_path *path,
2571 long long *partial_cluster,
0aa06000 2572 ext4_lblk_t start, ext4_lblk_t end)
a86c6181 2573{
0aa06000 2574 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
a86c6181
AT
2575 int err = 0, correct_index = 0;
2576 int depth = ext_depth(inode), credits;
2577 struct ext4_extent_header *eh;
750c9c47 2578 ext4_lblk_t a, b;
725d26d3
AK
2579 unsigned num;
2580 ext4_lblk_t ex_ee_block;
a86c6181 2581 unsigned short ex_ee_len;
a2df2a63 2582 unsigned uninitialized = 0;
a86c6181 2583 struct ext4_extent *ex;
d23142c6 2584 ext4_fsblk_t pblk;
a86c6181 2585
c29c0ae7 2586 /* the header must be checked already in ext4_ext_remove_space() */
5f95d21f 2587 ext_debug("truncate since %u in leaf to %u\n", start, end);
a86c6181
AT
2588 if (!path[depth].p_hdr)
2589 path[depth].p_hdr = ext_block_hdr(path[depth].p_bh);
2590 eh = path[depth].p_hdr;
273df556
FM
2591 if (unlikely(path[depth].p_hdr == NULL)) {
2592 EXT4_ERROR_INODE(inode, "path[%d].p_hdr == NULL", depth);
2593 return -EIO;
2594 }
a86c6181 2595 /* find where to start removing */
6ae06ff5
AS
2596 ex = path[depth].p_ext;
2597 if (!ex)
2598 ex = EXT_LAST_EXTENT(eh);
a86c6181
AT
2599
2600 ex_ee_block = le32_to_cpu(ex->ee_block);
a2df2a63 2601 ex_ee_len = ext4_ext_get_actual_len(ex);
a86c6181 2602
d8990240
AK
2603 trace_ext4_ext_rm_leaf(inode, start, ex, *partial_cluster);
2604
a86c6181
AT
2605 while (ex >= EXT_FIRST_EXTENT(eh) &&
2606 ex_ee_block + ex_ee_len > start) {
a41f2071
AK
2607
2608 if (ext4_ext_is_uninitialized(ex))
2609 uninitialized = 1;
2610 else
2611 uninitialized = 0;
2612
553f9008
M
2613 ext_debug("remove ext %u:[%d]%d\n", ex_ee_block,
2614 uninitialized, ex_ee_len);
a86c6181
AT
2615 path[depth].p_ext = ex;
2616
2617 a = ex_ee_block > start ? ex_ee_block : start;
d583fb87
AH
2618 b = ex_ee_block+ex_ee_len - 1 < end ?
2619 ex_ee_block+ex_ee_len - 1 : end;
a86c6181
AT
2620
2621 ext_debug(" border %u:%u\n", a, b);
2622
d583fb87 2623 /* If this extent is beyond the end of the hole, skip it */
5f95d21f 2624 if (end < ex_ee_block) {
d23142c6
LC
2625 /*
2626 * We're going to skip this extent and move to another,
2627 * so if this extent is not cluster aligned we have
2628 * to mark the current cluster as used to avoid
2629 * accidentally freeing it later on
2630 */
2631 pblk = ext4_ext_pblock(ex);
2632 if (pblk & (sbi->s_cluster_ratio - 1))
2633 *partial_cluster =
2634 -((long long)EXT4_B2C(sbi, pblk));
d583fb87
AH
2635 ex--;
2636 ex_ee_block = le32_to_cpu(ex->ee_block);
2637 ex_ee_len = ext4_ext_get_actual_len(ex);
2638 continue;
750c9c47 2639 } else if (b != ex_ee_block + ex_ee_len - 1) {
dc1841d6
LC
2640 EXT4_ERROR_INODE(inode,
2641 "can not handle truncate %u:%u "
2642 "on extent %u:%u",
2643 start, end, ex_ee_block,
2644 ex_ee_block + ex_ee_len - 1);
750c9c47
DM
2645 err = -EIO;
2646 goto out;
a86c6181
AT
2647 } else if (a != ex_ee_block) {
2648 /* remove tail of the extent */
750c9c47 2649 num = a - ex_ee_block;
a86c6181
AT
2650 } else {
2651 /* remove whole extent: excellent! */
a86c6181 2652 num = 0;
a86c6181 2653 }
34071da7
TT
2654 /*
2655 * 3 for leaf, sb, and inode plus 2 (bmap and group
2656 * descriptor) for each block group; assume two block
2657 * groups plus ex_ee_len/blocks_per_block_group for
2658 * the worst case
2659 */
2660 credits = 7 + 2*(ex_ee_len/EXT4_BLOCKS_PER_GROUP(inode->i_sb));
a86c6181
AT
2661 if (ex == EXT_FIRST_EXTENT(eh)) {
2662 correct_index = 1;
2663 credits += (ext_depth(inode)) + 1;
2664 }
5aca07eb 2665 credits += EXT4_MAXQUOTAS_TRANS_BLOCKS(inode->i_sb);
a86c6181 2666
487caeef 2667 err = ext4_ext_truncate_extend_restart(handle, inode, credits);
9102e4fa 2668 if (err)
a86c6181 2669 goto out;
a86c6181
AT
2670
2671 err = ext4_ext_get_access(handle, inode, path + depth);
2672 if (err)
2673 goto out;
2674
0aa06000
TT
2675 err = ext4_remove_blocks(handle, inode, ex, partial_cluster,
2676 a, b);
a86c6181
AT
2677 if (err)
2678 goto out;
2679
750c9c47 2680 if (num == 0)
d0d856e8 2681 /* this extent is removed; mark slot entirely unused */
f65e6fba 2682 ext4_ext_store_pblock(ex, 0);
a86c6181 2683
a86c6181 2684 ex->ee_len = cpu_to_le16(num);
749269fa
AA
2685 /*
2686 * Do not mark uninitialized if all the blocks in the
2687 * extent have been removed.
2688 */
2689 if (uninitialized && num)
a2df2a63 2690 ext4_ext_mark_uninitialized(ex);
d583fb87
AH
2691 /*
2692 * If the extent was completely released,
2693 * we need to remove it from the leaf
2694 */
2695 if (num == 0) {
f17722f9 2696 if (end != EXT_MAX_BLOCKS - 1) {
d583fb87
AH
2697 /*
2698 * For hole punching, we need to scoot all the
2699 * extents up when an extent is removed so that
2700 * we dont have blank extents in the middle
2701 */
2702 memmove(ex, ex+1, (EXT_LAST_EXTENT(eh) - ex) *
2703 sizeof(struct ext4_extent));
2704
2705 /* Now get rid of the one at the end */
2706 memset(EXT_LAST_EXTENT(eh), 0,
2707 sizeof(struct ext4_extent));
2708 }
2709 le16_add_cpu(&eh->eh_entries, -1);
d23142c6 2710 } else if (*partial_cluster > 0)
0aa06000 2711 *partial_cluster = 0;
d583fb87 2712
750c9c47
DM
2713 err = ext4_ext_dirty(handle, inode, path + depth);
2714 if (err)
2715 goto out;
2716
bf52c6f7 2717 ext_debug("new extent: %u:%u:%llu\n", ex_ee_block, num,
bf89d16f 2718 ext4_ext_pblock(ex));
a86c6181
AT
2719 ex--;
2720 ex_ee_block = le32_to_cpu(ex->ee_block);
a2df2a63 2721 ex_ee_len = ext4_ext_get_actual_len(ex);
a86c6181
AT
2722 }
2723
2724 if (correct_index && eh->eh_entries)
2725 err = ext4_ext_correct_indexes(handle, inode, path);
2726
0aa06000 2727 /*
d23142c6
LC
2728 * Free the partial cluster only if the current extent does not
2729 * reference it. Otherwise we might free used cluster.
0aa06000 2730 */
d23142c6 2731 if (*partial_cluster > 0 &&
0aa06000
TT
2732 (EXT4_B2C(sbi, ext4_ext_pblock(ex) + ex_ee_len - 1) !=
2733 *partial_cluster)) {
981250ca 2734 int flags = get_default_free_blocks_flags(inode);
0aa06000
TT
2735
2736 ext4_free_blocks(handle, inode, NULL,
2737 EXT4_C2B(sbi, *partial_cluster),
2738 sbi->s_cluster_ratio, flags);
2739 *partial_cluster = 0;
2740 }
2741
a86c6181
AT
2742 /* if this leaf is free, then we should
2743 * remove it from index block above */
2744 if (err == 0 && eh->eh_entries == 0 && path[depth].p_bh != NULL)
c36575e6 2745 err = ext4_ext_rm_idx(handle, inode, path, depth);
a86c6181
AT
2746
2747out:
2748 return err;
2749}
2750
2751/*
d0d856e8
RD
2752 * ext4_ext_more_to_rm:
2753 * returns 1 if current index has to be freed (even partial)
a86c6181 2754 */
09b88252 2755static int
a86c6181
AT
2756ext4_ext_more_to_rm(struct ext4_ext_path *path)
2757{
2758 BUG_ON(path->p_idx == NULL);
2759
2760 if (path->p_idx < EXT_FIRST_INDEX(path->p_hdr))
2761 return 0;
2762
2763 /*
d0d856e8 2764 * if truncate on deeper level happened, it wasn't partial,
a86c6181
AT
2765 * so we have to consider current index for truncation
2766 */
2767 if (le16_to_cpu(path->p_hdr->eh_entries) == path->p_block)
2768 return 0;
2769 return 1;
2770}
2771
26a4c0c6
TT
2772int ext4_ext_remove_space(struct inode *inode, ext4_lblk_t start,
2773 ext4_lblk_t end)
a86c6181
AT
2774{
2775 struct super_block *sb = inode->i_sb;
2776 int depth = ext_depth(inode);
968dee77 2777 struct ext4_ext_path *path = NULL;
d23142c6 2778 long long partial_cluster = 0;
a86c6181 2779 handle_t *handle;
6f2080e6 2780 int i = 0, err = 0;
a86c6181 2781
5f95d21f 2782 ext_debug("truncate since %u to %u\n", start, end);
a86c6181
AT
2783
2784 /* probably first extent we're gonna free will be last in block */
9924a92a 2785 handle = ext4_journal_start(inode, EXT4_HT_TRUNCATE, depth + 1);
a86c6181
AT
2786 if (IS_ERR(handle))
2787 return PTR_ERR(handle);
2788
0617b83f 2789again:
61801325 2790 trace_ext4_ext_remove_space(inode, start, end, depth);
d8990240 2791
5f95d21f
LC
2792 /*
2793 * Check if we are removing extents inside the extent tree. If that
2794 * is the case, we are going to punch a hole inside the extent tree
2795 * so we have to check whether we need to split the extent covering
2796 * the last block to remove so we can easily remove the part of it
2797 * in ext4_ext_rm_leaf().
2798 */
2799 if (end < EXT_MAX_BLOCKS - 1) {
2800 struct ext4_extent *ex;
2801 ext4_lblk_t ee_block;
2802
2803 /* find extent for this block */
107a7bd3 2804 path = ext4_ext_find_extent(inode, end, NULL, EXT4_EX_NOCACHE);
5f95d21f
LC
2805 if (IS_ERR(path)) {
2806 ext4_journal_stop(handle);
2807 return PTR_ERR(path);
2808 }
2809 depth = ext_depth(inode);
6f2080e6 2810 /* Leaf not may not exist only if inode has no blocks at all */
5f95d21f 2811 ex = path[depth].p_ext;
968dee77 2812 if (!ex) {
6f2080e6
DM
2813 if (depth) {
2814 EXT4_ERROR_INODE(inode,
2815 "path[%d].p_hdr == NULL",
2816 depth);
2817 err = -EIO;
2818 }
2819 goto out;
968dee77 2820 }
5f95d21f
LC
2821
2822 ee_block = le32_to_cpu(ex->ee_block);
2823
2824 /*
2825 * See if the last block is inside the extent, if so split
2826 * the extent at 'end' block so we can easily remove the
2827 * tail of the first part of the split extent in
2828 * ext4_ext_rm_leaf().
2829 */
2830 if (end >= ee_block &&
2831 end < ee_block + ext4_ext_get_actual_len(ex) - 1) {
2832 int split_flag = 0;
2833
2834 if (ext4_ext_is_uninitialized(ex))
2835 split_flag = EXT4_EXT_MARK_UNINIT1 |
2836 EXT4_EXT_MARK_UNINIT2;
2837
2838 /*
2839 * Split the extent in two so that 'end' is the last
27dd4385
LC
2840 * block in the first new extent. Also we should not
2841 * fail removing space due to ENOSPC so try to use
2842 * reserved block if that happens.
5f95d21f
LC
2843 */
2844 err = ext4_split_extent_at(handle, inode, path,
27dd4385 2845 end + 1, split_flag,
107a7bd3 2846 EXT4_EX_NOCACHE |
27dd4385
LC
2847 EXT4_GET_BLOCKS_PRE_IO |
2848 EXT4_GET_BLOCKS_METADATA_NOFAIL);
5f95d21f
LC
2849
2850 if (err < 0)
2851 goto out;
2852 }
5f95d21f 2853 }
a86c6181 2854 /*
d0d856e8
RD
2855 * We start scanning from right side, freeing all the blocks
2856 * after i_size and walking into the tree depth-wise.
a86c6181 2857 */
0617b83f 2858 depth = ext_depth(inode);
968dee77
AS
2859 if (path) {
2860 int k = i = depth;
2861 while (--k > 0)
2862 path[k].p_block =
2863 le16_to_cpu(path[k].p_hdr->eh_entries)+1;
2864 } else {
2865 path = kzalloc(sizeof(struct ext4_ext_path) * (depth + 1),
2866 GFP_NOFS);
2867 if (path == NULL) {
2868 ext4_journal_stop(handle);
2869 return -ENOMEM;
2870 }
2871 path[0].p_depth = depth;
2872 path[0].p_hdr = ext_inode_hdr(inode);
89a4e48f 2873 i = 0;
5f95d21f 2874
c349179b 2875 if (ext4_ext_check(inode, path[0].p_hdr, depth, 0)) {
968dee77
AS
2876 err = -EIO;
2877 goto out;
2878 }
a86c6181 2879 }
968dee77 2880 err = 0;
a86c6181
AT
2881
2882 while (i >= 0 && err == 0) {
2883 if (i == depth) {
2884 /* this is leaf block */
d583fb87 2885 err = ext4_ext_rm_leaf(handle, inode, path,
0aa06000 2886 &partial_cluster, start,
5f95d21f 2887 end);
d0d856e8 2888 /* root level has p_bh == NULL, brelse() eats this */
a86c6181
AT
2889 brelse(path[i].p_bh);
2890 path[i].p_bh = NULL;
2891 i--;
2892 continue;
2893 }
2894
2895 /* this is index block */
2896 if (!path[i].p_hdr) {
2897 ext_debug("initialize header\n");
2898 path[i].p_hdr = ext_block_hdr(path[i].p_bh);
a86c6181
AT
2899 }
2900
a86c6181 2901 if (!path[i].p_idx) {
d0d856e8 2902 /* this level hasn't been touched yet */
a86c6181
AT
2903 path[i].p_idx = EXT_LAST_INDEX(path[i].p_hdr);
2904 path[i].p_block = le16_to_cpu(path[i].p_hdr->eh_entries)+1;
2905 ext_debug("init index ptr: hdr 0x%p, num %d\n",
2906 path[i].p_hdr,
2907 le16_to_cpu(path[i].p_hdr->eh_entries));
2908 } else {
d0d856e8 2909 /* we were already here, see at next index */
a86c6181
AT
2910 path[i].p_idx--;
2911 }
2912
2913 ext_debug("level %d - index, first 0x%p, cur 0x%p\n",
2914 i, EXT_FIRST_INDEX(path[i].p_hdr),
2915 path[i].p_idx);
2916 if (ext4_ext_more_to_rm(path + i)) {
c29c0ae7 2917 struct buffer_head *bh;
a86c6181 2918 /* go to the next level */
2ae02107 2919 ext_debug("move to level %d (block %llu)\n",
bf89d16f 2920 i + 1, ext4_idx_pblock(path[i].p_idx));
a86c6181 2921 memset(path + i + 1, 0, sizeof(*path));
7d7ea89e 2922 bh = read_extent_tree_block(inode,
107a7bd3
TT
2923 ext4_idx_pblock(path[i].p_idx), depth - i - 1,
2924 EXT4_EX_NOCACHE);
7d7ea89e 2925 if (IS_ERR(bh)) {
a86c6181 2926 /* should we reset i_size? */
7d7ea89e 2927 err = PTR_ERR(bh);
a86c6181
AT
2928 break;
2929 }
76828c88
TT
2930 /* Yield here to deal with large extent trees.
2931 * Should be a no-op if we did IO above. */
2932 cond_resched();
c29c0ae7
AT
2933 if (WARN_ON(i + 1 > depth)) {
2934 err = -EIO;
c29c0ae7
AT
2935 break;
2936 }
2937 path[i + 1].p_bh = bh;
a86c6181 2938
d0d856e8
RD
2939 /* save actual number of indexes since this
2940 * number is changed at the next iteration */
a86c6181
AT
2941 path[i].p_block = le16_to_cpu(path[i].p_hdr->eh_entries);
2942 i++;
2943 } else {
d0d856e8 2944 /* we finished processing this index, go up */
a86c6181 2945 if (path[i].p_hdr->eh_entries == 0 && i > 0) {
d0d856e8 2946 /* index is empty, remove it;
a86c6181
AT
2947 * handle must be already prepared by the
2948 * truncatei_leaf() */
c36575e6 2949 err = ext4_ext_rm_idx(handle, inode, path, i);
a86c6181 2950 }
d0d856e8 2951 /* root level has p_bh == NULL, brelse() eats this */
a86c6181
AT
2952 brelse(path[i].p_bh);
2953 path[i].p_bh = NULL;
2954 i--;
2955 ext_debug("return to level %d\n", i);
2956 }
2957 }
2958
61801325
LC
2959 trace_ext4_ext_remove_space_done(inode, start, end, depth,
2960 partial_cluster, path->p_hdr->eh_entries);
d8990240 2961
7b415bf6
AK
2962 /* If we still have something in the partial cluster and we have removed
2963 * even the first extent, then we should free the blocks in the partial
2964 * cluster as well. */
d23142c6 2965 if (partial_cluster > 0 && path->p_hdr->eh_entries == 0) {
981250ca 2966 int flags = get_default_free_blocks_flags(inode);
7b415bf6
AK
2967
2968 ext4_free_blocks(handle, inode, NULL,
2969 EXT4_C2B(EXT4_SB(sb), partial_cluster),
2970 EXT4_SB(sb)->s_cluster_ratio, flags);
2971 partial_cluster = 0;
2972 }
2973
a86c6181
AT
2974 /* TODO: flexible tree reduction should be here */
2975 if (path->p_hdr->eh_entries == 0) {
2976 /*
d0d856e8
RD
2977 * truncate to zero freed all the tree,
2978 * so we need to correct eh_depth
a86c6181
AT
2979 */
2980 err = ext4_ext_get_access(handle, inode, path);
2981 if (err == 0) {
2982 ext_inode_hdr(inode)->eh_depth = 0;
2983 ext_inode_hdr(inode)->eh_max =
55ad63bf 2984 cpu_to_le16(ext4_ext_space_root(inode, 0));
a86c6181
AT
2985 err = ext4_ext_dirty(handle, inode, path);
2986 }
2987 }
2988out:
a86c6181
AT
2989 ext4_ext_drop_refs(path);
2990 kfree(path);
968dee77
AS
2991 if (err == -EAGAIN) {
2992 path = NULL;
0617b83f 2993 goto again;
968dee77 2994 }
a86c6181
AT
2995 ext4_journal_stop(handle);
2996
2997 return err;
2998}
2999
3000/*
3001 * called at mount time
3002 */
3003void ext4_ext_init(struct super_block *sb)
3004{
3005 /*
3006 * possible initialization would be here
3007 */
3008
83982b6f 3009 if (EXT4_HAS_INCOMPAT_FEATURE(sb, EXT4_FEATURE_INCOMPAT_EXTENTS)) {
90576c0b 3010#if defined(AGGRESSIVE_TEST) || defined(CHECK_BINSEARCH) || defined(EXTENTS_STATS)
92b97816 3011 printk(KERN_INFO "EXT4-fs: file extents enabled"
bbf2f9fb 3012#ifdef AGGRESSIVE_TEST
92b97816 3013 ", aggressive tests"
a86c6181
AT
3014#endif
3015#ifdef CHECK_BINSEARCH
92b97816 3016 ", check binsearch"
a86c6181
AT
3017#endif
3018#ifdef EXTENTS_STATS
92b97816 3019 ", stats"
a86c6181 3020#endif
92b97816 3021 "\n");
90576c0b 3022#endif
a86c6181
AT
3023#ifdef EXTENTS_STATS
3024 spin_lock_init(&EXT4_SB(sb)->s_ext_stats_lock);
3025 EXT4_SB(sb)->s_ext_min = 1 << 30;
3026 EXT4_SB(sb)->s_ext_max = 0;
3027#endif
3028 }
3029}
3030
3031/*
3032 * called at umount time
3033 */
3034void ext4_ext_release(struct super_block *sb)
3035{
83982b6f 3036 if (!EXT4_HAS_INCOMPAT_FEATURE(sb, EXT4_FEATURE_INCOMPAT_EXTENTS))
a86c6181
AT
3037 return;
3038
3039#ifdef EXTENTS_STATS
3040 if (EXT4_SB(sb)->s_ext_blocks && EXT4_SB(sb)->s_ext_extents) {
3041 struct ext4_sb_info *sbi = EXT4_SB(sb);
3042 printk(KERN_ERR "EXT4-fs: %lu blocks in %lu extents (%lu ave)\n",
3043 sbi->s_ext_blocks, sbi->s_ext_extents,
3044 sbi->s_ext_blocks / sbi->s_ext_extents);
3045 printk(KERN_ERR "EXT4-fs: extents: %lu min, %lu max, max depth %lu\n",
3046 sbi->s_ext_min, sbi->s_ext_max, sbi->s_depth_max);
3047 }
3048#endif
3049}
3050
093a088b
AK
3051/* FIXME!! we need to try to merge to left or right after zero-out */
3052static int ext4_ext_zeroout(struct inode *inode, struct ext4_extent *ex)
3053{
2407518d
LC
3054 ext4_fsblk_t ee_pblock;
3055 unsigned int ee_len;
b720303d 3056 int ret;
093a088b 3057
093a088b 3058 ee_len = ext4_ext_get_actual_len(ex);
bf89d16f 3059 ee_pblock = ext4_ext_pblock(ex);
b720303d 3060
a107e5a3 3061 ret = sb_issue_zeroout(inode->i_sb, ee_pblock, ee_len, GFP_NOFS);
2407518d
LC
3062 if (ret > 0)
3063 ret = 0;
093a088b 3064
2407518d 3065 return ret;
093a088b
AK
3066}
3067
47ea3bb5
YY
3068/*
3069 * ext4_split_extent_at() splits an extent at given block.
3070 *
3071 * @handle: the journal handle
3072 * @inode: the file inode
3073 * @path: the path to the extent
3074 * @split: the logical block where the extent is splitted.
3075 * @split_flags: indicates if the extent could be zeroout if split fails, and
3076 * the states(init or uninit) of new extents.
3077 * @flags: flags used to insert new extent to extent tree.
3078 *
3079 *
3080 * Splits extent [a, b] into two extents [a, @split) and [@split, b], states
3081 * of which are deterimined by split_flag.
3082 *
3083 * There are two cases:
3084 * a> the extent are splitted into two extent.
3085 * b> split is not needed, and just mark the extent.
3086 *
3087 * return 0 on success.
3088 */
3089static int ext4_split_extent_at(handle_t *handle,
3090 struct inode *inode,
3091 struct ext4_ext_path *path,
3092 ext4_lblk_t split,
3093 int split_flag,
3094 int flags)
3095{
3096 ext4_fsblk_t newblock;
3097 ext4_lblk_t ee_block;
adb23551 3098 struct ext4_extent *ex, newex, orig_ex, zero_ex;
47ea3bb5
YY
3099 struct ext4_extent *ex2 = NULL;
3100 unsigned int ee_len, depth;
3101 int err = 0;
3102
dee1f973
DM
3103 BUG_ON((split_flag & (EXT4_EXT_DATA_VALID1 | EXT4_EXT_DATA_VALID2)) ==
3104 (EXT4_EXT_DATA_VALID1 | EXT4_EXT_DATA_VALID2));
3105
47ea3bb5
YY
3106 ext_debug("ext4_split_extents_at: inode %lu, logical"
3107 "block %llu\n", inode->i_ino, (unsigned long long)split);
3108
3109 ext4_ext_show_leaf(inode, path);
3110
3111 depth = ext_depth(inode);
3112 ex = path[depth].p_ext;
3113 ee_block = le32_to_cpu(ex->ee_block);
3114 ee_len = ext4_ext_get_actual_len(ex);
3115 newblock = split - ee_block + ext4_ext_pblock(ex);
3116
3117 BUG_ON(split < ee_block || split >= (ee_block + ee_len));
357b66fd
DM
3118 BUG_ON(!ext4_ext_is_uninitialized(ex) &&
3119 split_flag & (EXT4_EXT_MAY_ZEROOUT |
3120 EXT4_EXT_MARK_UNINIT1 |
3121 EXT4_EXT_MARK_UNINIT2));
47ea3bb5
YY
3122
3123 err = ext4_ext_get_access(handle, inode, path + depth);
3124 if (err)
3125 goto out;
3126
3127 if (split == ee_block) {
3128 /*
3129 * case b: block @split is the block that the extent begins with
3130 * then we just change the state of the extent, and splitting
3131 * is not needed.
3132 */
3133 if (split_flag & EXT4_EXT_MARK_UNINIT2)
3134 ext4_ext_mark_uninitialized(ex);
3135 else
3136 ext4_ext_mark_initialized(ex);
3137
3138 if (!(flags & EXT4_GET_BLOCKS_PRE_IO))
ecb94f5f 3139 ext4_ext_try_to_merge(handle, inode, path, ex);
47ea3bb5 3140
ecb94f5f 3141 err = ext4_ext_dirty(handle, inode, path + path->p_depth);
47ea3bb5
YY
3142 goto out;
3143 }
3144
3145 /* case a */
3146 memcpy(&orig_ex, ex, sizeof(orig_ex));
3147 ex->ee_len = cpu_to_le16(split - ee_block);
3148 if (split_flag & EXT4_EXT_MARK_UNINIT1)
3149 ext4_ext_mark_uninitialized(ex);
3150
3151 /*
3152 * path may lead to new leaf, not to original leaf any more
3153 * after ext4_ext_insert_extent() returns,
3154 */
3155 err = ext4_ext_dirty(handle, inode, path + depth);
3156 if (err)
3157 goto fix_extent_len;
3158
3159 ex2 = &newex;
3160 ex2->ee_block = cpu_to_le32(split);
3161 ex2->ee_len = cpu_to_le16(ee_len - (split - ee_block));
3162 ext4_ext_store_pblock(ex2, newblock);
3163 if (split_flag & EXT4_EXT_MARK_UNINIT2)
3164 ext4_ext_mark_uninitialized(ex2);
3165
3166 err = ext4_ext_insert_extent(handle, inode, path, &newex, flags);
3167 if (err == -ENOSPC && (EXT4_EXT_MAY_ZEROOUT & split_flag)) {
dee1f973 3168 if (split_flag & (EXT4_EXT_DATA_VALID1|EXT4_EXT_DATA_VALID2)) {
adb23551 3169 if (split_flag & EXT4_EXT_DATA_VALID1) {
dee1f973 3170 err = ext4_ext_zeroout(inode, ex2);
adb23551 3171 zero_ex.ee_block = ex2->ee_block;
8cde7ad1
ZL
3172 zero_ex.ee_len = cpu_to_le16(
3173 ext4_ext_get_actual_len(ex2));
adb23551
ZL
3174 ext4_ext_store_pblock(&zero_ex,
3175 ext4_ext_pblock(ex2));
3176 } else {
dee1f973 3177 err = ext4_ext_zeroout(inode, ex);
adb23551 3178 zero_ex.ee_block = ex->ee_block;
8cde7ad1
ZL
3179 zero_ex.ee_len = cpu_to_le16(
3180 ext4_ext_get_actual_len(ex));
adb23551
ZL
3181 ext4_ext_store_pblock(&zero_ex,
3182 ext4_ext_pblock(ex));
3183 }
3184 } else {
dee1f973 3185 err = ext4_ext_zeroout(inode, &orig_ex);
adb23551 3186 zero_ex.ee_block = orig_ex.ee_block;
8cde7ad1
ZL
3187 zero_ex.ee_len = cpu_to_le16(
3188 ext4_ext_get_actual_len(&orig_ex));
adb23551
ZL
3189 ext4_ext_store_pblock(&zero_ex,
3190 ext4_ext_pblock(&orig_ex));
3191 }
dee1f973 3192
47ea3bb5
YY
3193 if (err)
3194 goto fix_extent_len;
3195 /* update the extent length and mark as initialized */
af1584f5 3196 ex->ee_len = cpu_to_le16(ee_len);
ecb94f5f
TT
3197 ext4_ext_try_to_merge(handle, inode, path, ex);
3198 err = ext4_ext_dirty(handle, inode, path + path->p_depth);
adb23551
ZL
3199 if (err)
3200 goto fix_extent_len;
3201
3202 /* update extent status tree */
3203 err = ext4_es_zeroout(inode, &zero_ex);
3204
47ea3bb5
YY
3205 goto out;
3206 } else if (err)
3207 goto fix_extent_len;
3208
3209out:
3210 ext4_ext_show_leaf(inode, path);
3211 return err;
3212
3213fix_extent_len:
3214 ex->ee_len = orig_ex.ee_len;
3215 ext4_ext_dirty(handle, inode, path + depth);
3216 return err;
3217}
3218
3219/*
3220 * ext4_split_extents() splits an extent and mark extent which is covered
3221 * by @map as split_flags indicates
3222 *
3223 * It may result in splitting the extent into multiple extents (upto three)
3224 * There are three possibilities:
3225 * a> There is no split required
3226 * b> Splits in two extents: Split is happening at either end of the extent
3227 * c> Splits in three extents: Somone is splitting in middle of the extent
3228 *
3229 */
3230static int ext4_split_extent(handle_t *handle,
3231 struct inode *inode,
3232 struct ext4_ext_path *path,
3233 struct ext4_map_blocks *map,
3234 int split_flag,
3235 int flags)
3236{
3237 ext4_lblk_t ee_block;
3238 struct ext4_extent *ex;
3239 unsigned int ee_len, depth;
3240 int err = 0;
3241 int uninitialized;
3242 int split_flag1, flags1;
3a225670 3243 int allocated = map->m_len;
47ea3bb5
YY
3244
3245 depth = ext_depth(inode);
3246 ex = path[depth].p_ext;
3247 ee_block = le32_to_cpu(ex->ee_block);
3248 ee_len = ext4_ext_get_actual_len(ex);
3249 uninitialized = ext4_ext_is_uninitialized(ex);
3250
3251 if (map->m_lblk + map->m_len < ee_block + ee_len) {
dee1f973 3252 split_flag1 = split_flag & EXT4_EXT_MAY_ZEROOUT;
47ea3bb5
YY
3253 flags1 = flags | EXT4_GET_BLOCKS_PRE_IO;
3254 if (uninitialized)
3255 split_flag1 |= EXT4_EXT_MARK_UNINIT1 |
3256 EXT4_EXT_MARK_UNINIT2;
dee1f973
DM
3257 if (split_flag & EXT4_EXT_DATA_VALID2)
3258 split_flag1 |= EXT4_EXT_DATA_VALID1;
47ea3bb5
YY
3259 err = ext4_split_extent_at(handle, inode, path,
3260 map->m_lblk + map->m_len, split_flag1, flags1);
93917411
YY
3261 if (err)
3262 goto out;
3a225670
ZL
3263 } else {
3264 allocated = ee_len - (map->m_lblk - ee_block);
47ea3bb5 3265 }
357b66fd
DM
3266 /*
3267 * Update path is required because previous ext4_split_extent_at() may
3268 * result in split of original leaf or extent zeroout.
3269 */
47ea3bb5 3270 ext4_ext_drop_refs(path);
107a7bd3 3271 path = ext4_ext_find_extent(inode, map->m_lblk, path, 0);
47ea3bb5
YY
3272 if (IS_ERR(path))
3273 return PTR_ERR(path);
357b66fd
DM
3274 depth = ext_depth(inode);
3275 ex = path[depth].p_ext;
3276 uninitialized = ext4_ext_is_uninitialized(ex);
3277 split_flag1 = 0;
47ea3bb5
YY
3278
3279 if (map->m_lblk >= ee_block) {
357b66fd
DM
3280 split_flag1 = split_flag & EXT4_EXT_DATA_VALID2;
3281 if (uninitialized) {
47ea3bb5 3282 split_flag1 |= EXT4_EXT_MARK_UNINIT1;
357b66fd
DM
3283 split_flag1 |= split_flag & (EXT4_EXT_MAY_ZEROOUT |
3284 EXT4_EXT_MARK_UNINIT2);
3285 }
47ea3bb5
YY
3286 err = ext4_split_extent_at(handle, inode, path,
3287 map->m_lblk, split_flag1, flags);
3288 if (err)
3289 goto out;
3290 }
3291
3292 ext4_ext_show_leaf(inode, path);
3293out:
3a225670 3294 return err ? err : allocated;
47ea3bb5
YY
3295}
3296
56055d3a 3297/*
e35fd660 3298 * This function is called by ext4_ext_map_blocks() if someone tries to write
56055d3a 3299 * to an uninitialized extent. It may result in splitting the uninitialized
25985edc 3300 * extent into multiple extents (up to three - one initialized and two
56055d3a
AA
3301 * uninitialized).
3302 * There are three possibilities:
3303 * a> There is no split required: Entire extent should be initialized
3304 * b> Splits in two extents: Write is happening at either end of the extent
3305 * c> Splits in three extents: Somone is writing in middle of the extent
6f91bc5f
EG
3306 *
3307 * Pre-conditions:
3308 * - The extent pointed to by 'path' is uninitialized.
3309 * - The extent pointed to by 'path' contains a superset
3310 * of the logical span [map->m_lblk, map->m_lblk + map->m_len).
3311 *
3312 * Post-conditions on success:
3313 * - the returned value is the number of blocks beyond map->l_lblk
3314 * that are allocated and initialized.
3315 * It is guaranteed to be >= map->m_len.
56055d3a 3316 */
725d26d3 3317static int ext4_ext_convert_to_initialized(handle_t *handle,
e35fd660
TT
3318 struct inode *inode,
3319 struct ext4_map_blocks *map,
27dd4385
LC
3320 struct ext4_ext_path *path,
3321 int flags)
56055d3a 3322{
67a5da56 3323 struct ext4_sb_info *sbi;
6f91bc5f 3324 struct ext4_extent_header *eh;
667eff35
YY
3325 struct ext4_map_blocks split_map;
3326 struct ext4_extent zero_ex;
bc2d9db4 3327 struct ext4_extent *ex, *abut_ex;
21ca087a 3328 ext4_lblk_t ee_block, eof_block;
bc2d9db4
LC
3329 unsigned int ee_len, depth, map_len = map->m_len;
3330 int allocated = 0, max_zeroout = 0;
56055d3a 3331 int err = 0;
667eff35 3332 int split_flag = 0;
21ca087a
DM
3333
3334 ext_debug("ext4_ext_convert_to_initialized: inode %lu, logical"
3335 "block %llu, max_blocks %u\n", inode->i_ino,
bc2d9db4 3336 (unsigned long long)map->m_lblk, map_len);
21ca087a 3337
67a5da56 3338 sbi = EXT4_SB(inode->i_sb);
21ca087a
DM
3339 eof_block = (inode->i_size + inode->i_sb->s_blocksize - 1) >>
3340 inode->i_sb->s_blocksize_bits;
bc2d9db4
LC
3341 if (eof_block < map->m_lblk + map_len)
3342 eof_block = map->m_lblk + map_len;
56055d3a
AA
3343
3344 depth = ext_depth(inode);
6f91bc5f 3345 eh = path[depth].p_hdr;
56055d3a
AA
3346 ex = path[depth].p_ext;
3347 ee_block = le32_to_cpu(ex->ee_block);
3348 ee_len = ext4_ext_get_actual_len(ex);
adb23551 3349 zero_ex.ee_len = 0;
56055d3a 3350
6f91bc5f
EG
3351 trace_ext4_ext_convert_to_initialized_enter(inode, map, ex);
3352
3353 /* Pre-conditions */
3354 BUG_ON(!ext4_ext_is_uninitialized(ex));
3355 BUG_ON(!in_range(map->m_lblk, ee_block, ee_len));
6f91bc5f
EG
3356
3357 /*
3358 * Attempt to transfer newly initialized blocks from the currently
bc2d9db4 3359 * uninitialized extent to its neighbor. This is much cheaper
6f91bc5f 3360 * than an insertion followed by a merge as those involve costly
bc2d9db4
LC
3361 * memmove() calls. Transferring to the left is the common case in
3362 * steady state for workloads doing fallocate(FALLOC_FL_KEEP_SIZE)
3363 * followed by append writes.
6f91bc5f
EG
3364 *
3365 * Limitations of the current logic:
bc2d9db4 3366 * - L1: we do not deal with writes covering the whole extent.
6f91bc5f
EG
3367 * This would require removing the extent if the transfer
3368 * is possible.
bc2d9db4 3369 * - L2: we only attempt to merge with an extent stored in the
6f91bc5f
EG
3370 * same extent tree node.
3371 */
bc2d9db4
LC
3372 if ((map->m_lblk == ee_block) &&
3373 /* See if we can merge left */
3374 (map_len < ee_len) && /*L1*/
3375 (ex > EXT_FIRST_EXTENT(eh))) { /*L2*/
6f91bc5f
EG
3376 ext4_lblk_t prev_lblk;
3377 ext4_fsblk_t prev_pblk, ee_pblk;
bc2d9db4 3378 unsigned int prev_len;
6f91bc5f 3379
bc2d9db4
LC
3380 abut_ex = ex - 1;
3381 prev_lblk = le32_to_cpu(abut_ex->ee_block);
3382 prev_len = ext4_ext_get_actual_len(abut_ex);
3383 prev_pblk = ext4_ext_pblock(abut_ex);
6f91bc5f 3384 ee_pblk = ext4_ext_pblock(ex);
6f91bc5f
EG
3385
3386 /*
bc2d9db4 3387 * A transfer of blocks from 'ex' to 'abut_ex' is allowed
6f91bc5f 3388 * upon those conditions:
bc2d9db4
LC
3389 * - C1: abut_ex is initialized,
3390 * - C2: abut_ex is logically abutting ex,
3391 * - C3: abut_ex is physically abutting ex,
3392 * - C4: abut_ex can receive the additional blocks without
6f91bc5f
EG
3393 * overflowing the (initialized) length limit.
3394 */
bc2d9db4 3395 if ((!ext4_ext_is_uninitialized(abut_ex)) && /*C1*/
6f91bc5f
EG
3396 ((prev_lblk + prev_len) == ee_block) && /*C2*/
3397 ((prev_pblk + prev_len) == ee_pblk) && /*C3*/
bc2d9db4 3398 (prev_len < (EXT_INIT_MAX_LEN - map_len))) { /*C4*/
6f91bc5f
EG
3399 err = ext4_ext_get_access(handle, inode, path + depth);
3400 if (err)
3401 goto out;
3402
3403 trace_ext4_ext_convert_to_initialized_fastpath(inode,
bc2d9db4 3404 map, ex, abut_ex);
6f91bc5f 3405
bc2d9db4
LC
3406 /* Shift the start of ex by 'map_len' blocks */
3407 ex->ee_block = cpu_to_le32(ee_block + map_len);
3408 ext4_ext_store_pblock(ex, ee_pblk + map_len);
3409 ex->ee_len = cpu_to_le16(ee_len - map_len);
6f91bc5f
EG
3410 ext4_ext_mark_uninitialized(ex); /* Restore the flag */
3411
bc2d9db4
LC
3412 /* Extend abut_ex by 'map_len' blocks */
3413 abut_ex->ee_len = cpu_to_le16(prev_len + map_len);
6f91bc5f 3414
bc2d9db4
LC
3415 /* Result: number of initialized blocks past m_lblk */
3416 allocated = map_len;
3417 }
3418 } else if (((map->m_lblk + map_len) == (ee_block + ee_len)) &&
3419 (map_len < ee_len) && /*L1*/
3420 ex < EXT_LAST_EXTENT(eh)) { /*L2*/
3421 /* See if we can merge right */
3422 ext4_lblk_t next_lblk;
3423 ext4_fsblk_t next_pblk, ee_pblk;
3424 unsigned int next_len;
3425
3426 abut_ex = ex + 1;
3427 next_lblk = le32_to_cpu(abut_ex->ee_block);
3428 next_len = ext4_ext_get_actual_len(abut_ex);
3429 next_pblk = ext4_ext_pblock(abut_ex);
3430 ee_pblk = ext4_ext_pblock(ex);
6f91bc5f 3431
bc2d9db4
LC
3432 /*
3433 * A transfer of blocks from 'ex' to 'abut_ex' is allowed
3434 * upon those conditions:
3435 * - C1: abut_ex is initialized,
3436 * - C2: abut_ex is logically abutting ex,
3437 * - C3: abut_ex is physically abutting ex,
3438 * - C4: abut_ex can receive the additional blocks without
3439 * overflowing the (initialized) length limit.
3440 */
3441 if ((!ext4_ext_is_uninitialized(abut_ex)) && /*C1*/
3442 ((map->m_lblk + map_len) == next_lblk) && /*C2*/
3443 ((ee_pblk + ee_len) == next_pblk) && /*C3*/
3444 (next_len < (EXT_INIT_MAX_LEN - map_len))) { /*C4*/
3445 err = ext4_ext_get_access(handle, inode, path + depth);
3446 if (err)
3447 goto out;
3448
3449 trace_ext4_ext_convert_to_initialized_fastpath(inode,
3450 map, ex, abut_ex);
3451
3452 /* Shift the start of abut_ex by 'map_len' blocks */
3453 abut_ex->ee_block = cpu_to_le32(next_lblk - map_len);
3454 ext4_ext_store_pblock(abut_ex, next_pblk - map_len);
3455 ex->ee_len = cpu_to_le16(ee_len - map_len);
3456 ext4_ext_mark_uninitialized(ex); /* Restore the flag */
3457
3458 /* Extend abut_ex by 'map_len' blocks */
3459 abut_ex->ee_len = cpu_to_le16(next_len + map_len);
6f91bc5f
EG
3460
3461 /* Result: number of initialized blocks past m_lblk */
bc2d9db4 3462 allocated = map_len;
6f91bc5f
EG
3463 }
3464 }
bc2d9db4
LC
3465 if (allocated) {
3466 /* Mark the block containing both extents as dirty */
3467 ext4_ext_dirty(handle, inode, path + depth);
3468
3469 /* Update path to point to the right extent */
3470 path[depth].p_ext = abut_ex;
3471 goto out;
3472 } else
3473 allocated = ee_len - (map->m_lblk - ee_block);
6f91bc5f 3474
667eff35 3475 WARN_ON(map->m_lblk < ee_block);
21ca087a
DM
3476 /*
3477 * It is safe to convert extent to initialized via explicit
3478 * zeroout only if extent is fully insde i_size or new_size.
3479 */
667eff35 3480 split_flag |= ee_block + ee_len <= eof_block ? EXT4_EXT_MAY_ZEROOUT : 0;
21ca087a 3481
67a5da56
ZL
3482 if (EXT4_EXT_MAY_ZEROOUT & split_flag)
3483 max_zeroout = sbi->s_extent_max_zeroout_kb >>
4f42f80a 3484 (inode->i_sb->s_blocksize_bits - 10);
67a5da56
ZL
3485
3486 /* If extent is less than s_max_zeroout_kb, zeroout directly */
3487 if (max_zeroout && (ee_len <= max_zeroout)) {
667eff35 3488 err = ext4_ext_zeroout(inode, ex);
3977c965 3489 if (err)
d03856bd 3490 goto out;
adb23551 3491 zero_ex.ee_block = ex->ee_block;
8cde7ad1 3492 zero_ex.ee_len = cpu_to_le16(ext4_ext_get_actual_len(ex));
adb23551 3493 ext4_ext_store_pblock(&zero_ex, ext4_ext_pblock(ex));
d03856bd
AK
3494
3495 err = ext4_ext_get_access(handle, inode, path + depth);
3496 if (err)
3497 goto out;
667eff35 3498 ext4_ext_mark_initialized(ex);
ecb94f5f
TT
3499 ext4_ext_try_to_merge(handle, inode, path, ex);
3500 err = ext4_ext_dirty(handle, inode, path + path->p_depth);
667eff35 3501 goto out;
56055d3a 3502 }
667eff35 3503
56055d3a 3504 /*
667eff35
YY
3505 * four cases:
3506 * 1. split the extent into three extents.
3507 * 2. split the extent into two extents, zeroout the first half.
3508 * 3. split the extent into two extents, zeroout the second half.
3509 * 4. split the extent into two extents with out zeroout.
56055d3a 3510 */
667eff35
YY
3511 split_map.m_lblk = map->m_lblk;
3512 split_map.m_len = map->m_len;
3513
67a5da56
ZL
3514 if (max_zeroout && (allocated > map->m_len)) {
3515 if (allocated <= max_zeroout) {
667eff35
YY
3516 /* case 3 */
3517 zero_ex.ee_block =
9b940f8e
AH
3518 cpu_to_le32(map->m_lblk);
3519 zero_ex.ee_len = cpu_to_le16(allocated);
667eff35
YY
3520 ext4_ext_store_pblock(&zero_ex,
3521 ext4_ext_pblock(ex) + map->m_lblk - ee_block);
3522 err = ext4_ext_zeroout(inode, &zero_ex);
56055d3a
AA
3523 if (err)
3524 goto out;
667eff35
YY
3525 split_map.m_lblk = map->m_lblk;
3526 split_map.m_len = allocated;
67a5da56 3527 } else if (map->m_lblk - ee_block + map->m_len < max_zeroout) {
667eff35
YY
3528 /* case 2 */
3529 if (map->m_lblk != ee_block) {
3530 zero_ex.ee_block = ex->ee_block;
3531 zero_ex.ee_len = cpu_to_le16(map->m_lblk -
3532 ee_block);
3533 ext4_ext_store_pblock(&zero_ex,
3534 ext4_ext_pblock(ex));
3535 err = ext4_ext_zeroout(inode, &zero_ex);
3536 if (err)
3537 goto out;
3538 }
3539
667eff35 3540 split_map.m_lblk = ee_block;
9b940f8e
AH
3541 split_map.m_len = map->m_lblk - ee_block + map->m_len;
3542 allocated = map->m_len;
56055d3a
AA
3543 }
3544 }
667eff35
YY
3545
3546 allocated = ext4_split_extent(handle, inode, path,
27dd4385 3547 &split_map, split_flag, flags);
667eff35
YY
3548 if (allocated < 0)
3549 err = allocated;
3550
56055d3a 3551out:
adb23551
ZL
3552 /* If we have gotten a failure, don't zero out status tree */
3553 if (!err)
3554 err = ext4_es_zeroout(inode, &zero_ex);
56055d3a
AA
3555 return err ? err : allocated;
3556}
3557
0031462b 3558/*
e35fd660 3559 * This function is called by ext4_ext_map_blocks() from
0031462b
MC
3560 * ext4_get_blocks_dio_write() when DIO to write
3561 * to an uninitialized extent.
3562 *
fd018fe8 3563 * Writing to an uninitialized extent may result in splitting the uninitialized
30cb27d6 3564 * extent into multiple initialized/uninitialized extents (up to three)
0031462b
MC
3565 * There are three possibilities:
3566 * a> There is no split required: Entire extent should be uninitialized
3567 * b> Splits in two extents: Write is happening at either end of the extent
3568 * c> Splits in three extents: Somone is writing in middle of the extent
3569 *
3570 * One of more index blocks maybe needed if the extent tree grow after
b595076a 3571 * the uninitialized extent split. To prevent ENOSPC occur at the IO
0031462b 3572 * complete, we need to split the uninitialized extent before DIO submit
421f91d2 3573 * the IO. The uninitialized extent called at this time will be split
0031462b
MC
3574 * into three uninitialized extent(at most). After IO complete, the part
3575 * being filled will be convert to initialized by the end_io callback function
3576 * via ext4_convert_unwritten_extents().
ba230c3f
M
3577 *
3578 * Returns the size of uninitialized extent to be written on success.
0031462b
MC
3579 */
3580static int ext4_split_unwritten_extents(handle_t *handle,
3581 struct inode *inode,
e35fd660 3582 struct ext4_map_blocks *map,
0031462b 3583 struct ext4_ext_path *path,
0031462b
MC
3584 int flags)
3585{
667eff35
YY
3586 ext4_lblk_t eof_block;
3587 ext4_lblk_t ee_block;
3588 struct ext4_extent *ex;
3589 unsigned int ee_len;
3590 int split_flag = 0, depth;
21ca087a
DM
3591
3592 ext_debug("ext4_split_unwritten_extents: inode %lu, logical"
3593 "block %llu, max_blocks %u\n", inode->i_ino,
e35fd660 3594 (unsigned long long)map->m_lblk, map->m_len);
21ca087a
DM
3595
3596 eof_block = (inode->i_size + inode->i_sb->s_blocksize - 1) >>
3597 inode->i_sb->s_blocksize_bits;
e35fd660
TT
3598 if (eof_block < map->m_lblk + map->m_len)
3599 eof_block = map->m_lblk + map->m_len;
21ca087a
DM
3600 /*
3601 * It is safe to convert extent to initialized via explicit
3602 * zeroout only if extent is fully insde i_size or new_size.
3603 */
667eff35
YY
3604 depth = ext_depth(inode);
3605 ex = path[depth].p_ext;
3606 ee_block = le32_to_cpu(ex->ee_block);
3607 ee_len = ext4_ext_get_actual_len(ex);
0031462b 3608
667eff35
YY
3609 split_flag |= ee_block + ee_len <= eof_block ? EXT4_EXT_MAY_ZEROOUT : 0;
3610 split_flag |= EXT4_EXT_MARK_UNINIT2;
dee1f973
DM
3611 if (flags & EXT4_GET_BLOCKS_CONVERT)
3612 split_flag |= EXT4_EXT_DATA_VALID2;
667eff35
YY
3613 flags |= EXT4_GET_BLOCKS_PRE_IO;
3614 return ext4_split_extent(handle, inode, path, map, split_flag, flags);
0031462b 3615}
197217a5 3616
c7064ef1 3617static int ext4_convert_unwritten_extents_endio(handle_t *handle,
dee1f973
DM
3618 struct inode *inode,
3619 struct ext4_map_blocks *map,
3620 struct ext4_ext_path *path)
0031462b
MC
3621{
3622 struct ext4_extent *ex;
dee1f973
DM
3623 ext4_lblk_t ee_block;
3624 unsigned int ee_len;
0031462b
MC
3625 int depth;
3626 int err = 0;
0031462b
MC
3627
3628 depth = ext_depth(inode);
0031462b 3629 ex = path[depth].p_ext;
dee1f973
DM
3630 ee_block = le32_to_cpu(ex->ee_block);
3631 ee_len = ext4_ext_get_actual_len(ex);
0031462b 3632
197217a5
YY
3633 ext_debug("ext4_convert_unwritten_extents_endio: inode %lu, logical"
3634 "block %llu, max_blocks %u\n", inode->i_ino,
dee1f973
DM
3635 (unsigned long long)ee_block, ee_len);
3636
ff95ec22
DM
3637 /* If extent is larger than requested it is a clear sign that we still
3638 * have some extent state machine issues left. So extent_split is still
3639 * required.
3640 * TODO: Once all related issues will be fixed this situation should be
3641 * illegal.
3642 */
dee1f973 3643 if (ee_block != map->m_lblk || ee_len > map->m_len) {
ff95ec22
DM
3644#ifdef EXT4_DEBUG
3645 ext4_warning("Inode (%ld) finished: extent logical block %llu,"
3646 " len %u; IO logical block %llu, len %u\n",
3647 inode->i_ino, (unsigned long long)ee_block, ee_len,
3648 (unsigned long long)map->m_lblk, map->m_len);
3649#endif
dee1f973
DM
3650 err = ext4_split_unwritten_extents(handle, inode, map, path,
3651 EXT4_GET_BLOCKS_CONVERT);
3652 if (err < 0)
3653 goto out;
3654 ext4_ext_drop_refs(path);
107a7bd3 3655 path = ext4_ext_find_extent(inode, map->m_lblk, path, 0);
dee1f973
DM
3656 if (IS_ERR(path)) {
3657 err = PTR_ERR(path);
3658 goto out;
3659 }
3660 depth = ext_depth(inode);
3661 ex = path[depth].p_ext;
3662 }
197217a5 3663
0031462b
MC
3664 err = ext4_ext_get_access(handle, inode, path + depth);
3665 if (err)
3666 goto out;
3667 /* first mark the extent as initialized */
3668 ext4_ext_mark_initialized(ex);
3669
197217a5
YY
3670 /* note: ext4_ext_correct_indexes() isn't needed here because
3671 * borders are not changed
0031462b 3672 */
ecb94f5f 3673 ext4_ext_try_to_merge(handle, inode, path, ex);
197217a5 3674
0031462b 3675 /* Mark modified extent as dirty */
ecb94f5f 3676 err = ext4_ext_dirty(handle, inode, path + path->p_depth);
0031462b
MC
3677out:
3678 ext4_ext_show_leaf(inode, path);
3679 return err;
3680}
3681
515f41c3
AK
3682static void unmap_underlying_metadata_blocks(struct block_device *bdev,
3683 sector_t block, int count)
3684{
3685 int i;
3686 for (i = 0; i < count; i++)
3687 unmap_underlying_metadata(bdev, block + i);
3688}
3689
58590b06
TT
3690/*
3691 * Handle EOFBLOCKS_FL flag, clearing it if necessary
3692 */
3693static int check_eofblocks_fl(handle_t *handle, struct inode *inode,
d002ebf1 3694 ext4_lblk_t lblk,
58590b06
TT
3695 struct ext4_ext_path *path,
3696 unsigned int len)
3697{
3698 int i, depth;
3699 struct ext4_extent_header *eh;
65922cb5 3700 struct ext4_extent *last_ex;
58590b06
TT
3701
3702 if (!ext4_test_inode_flag(inode, EXT4_INODE_EOFBLOCKS))
3703 return 0;
3704
3705 depth = ext_depth(inode);
3706 eh = path[depth].p_hdr;
58590b06 3707
afcff5d8
LC
3708 /*
3709 * We're going to remove EOFBLOCKS_FL entirely in future so we
3710 * do not care for this case anymore. Simply remove the flag
3711 * if there are no extents.
3712 */
3713 if (unlikely(!eh->eh_entries))
3714 goto out;
58590b06
TT
3715 last_ex = EXT_LAST_EXTENT(eh);
3716 /*
3717 * We should clear the EOFBLOCKS_FL flag if we are writing the
3718 * last block in the last extent in the file. We test this by
3719 * first checking to see if the caller to
3720 * ext4_ext_get_blocks() was interested in the last block (or
3721 * a block beyond the last block) in the current extent. If
3722 * this turns out to be false, we can bail out from this
3723 * function immediately.
3724 */
d002ebf1 3725 if (lblk + len < le32_to_cpu(last_ex->ee_block) +
58590b06
TT
3726 ext4_ext_get_actual_len(last_ex))
3727 return 0;
3728 /*
3729 * If the caller does appear to be planning to write at or
3730 * beyond the end of the current extent, we then test to see
3731 * if the current extent is the last extent in the file, by
3732 * checking to make sure it was reached via the rightmost node
3733 * at each level of the tree.
3734 */
3735 for (i = depth-1; i >= 0; i--)
3736 if (path[i].p_idx != EXT_LAST_INDEX(path[i].p_hdr))
3737 return 0;
afcff5d8 3738out:
58590b06
TT
3739 ext4_clear_inode_flag(inode, EXT4_INODE_EOFBLOCKS);
3740 return ext4_mark_inode_dirty(handle, inode);
3741}
3742
7b415bf6
AK
3743/**
3744 * ext4_find_delalloc_range: find delayed allocated block in the given range.
3745 *
7d1b1fbc 3746 * Return 1 if there is a delalloc block in the range, otherwise 0.
7b415bf6 3747 */
f7fec032
ZL
3748int ext4_find_delalloc_range(struct inode *inode,
3749 ext4_lblk_t lblk_start,
3750 ext4_lblk_t lblk_end)
7b415bf6 3751{
7d1b1fbc 3752 struct extent_status es;
7b415bf6 3753
e30b5dca 3754 ext4_es_find_delayed_extent_range(inode, lblk_start, lblk_end, &es);
06b0c886 3755 if (es.es_len == 0)
7d1b1fbc 3756 return 0; /* there is no delay extent in this tree */
06b0c886
ZL
3757 else if (es.es_lblk <= lblk_start &&
3758 lblk_start < es.es_lblk + es.es_len)
7d1b1fbc 3759 return 1;
06b0c886 3760 else if (lblk_start <= es.es_lblk && es.es_lblk <= lblk_end)
7d1b1fbc 3761 return 1;
7b415bf6 3762 else
7d1b1fbc 3763 return 0;
7b415bf6
AK
3764}
3765
7d1b1fbc 3766int ext4_find_delalloc_cluster(struct inode *inode, ext4_lblk_t lblk)
7b415bf6
AK
3767{
3768 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
3769 ext4_lblk_t lblk_start, lblk_end;
3770 lblk_start = lblk & (~(sbi->s_cluster_ratio - 1));
3771 lblk_end = lblk_start + sbi->s_cluster_ratio - 1;
3772
7d1b1fbc 3773 return ext4_find_delalloc_range(inode, lblk_start, lblk_end);
7b415bf6
AK
3774}
3775
3776/**
3777 * Determines how many complete clusters (out of those specified by the 'map')
3778 * are under delalloc and were reserved quota for.
3779 * This function is called when we are writing out the blocks that were
3780 * originally written with their allocation delayed, but then the space was
3781 * allocated using fallocate() before the delayed allocation could be resolved.
3782 * The cases to look for are:
3783 * ('=' indicated delayed allocated blocks
3784 * '-' indicates non-delayed allocated blocks)
3785 * (a) partial clusters towards beginning and/or end outside of allocated range
3786 * are not delalloc'ed.
3787 * Ex:
3788 * |----c---=|====c====|====c====|===-c----|
3789 * |++++++ allocated ++++++|
3790 * ==> 4 complete clusters in above example
3791 *
3792 * (b) partial cluster (outside of allocated range) towards either end is
3793 * marked for delayed allocation. In this case, we will exclude that
3794 * cluster.
3795 * Ex:
3796 * |----====c========|========c========|
3797 * |++++++ allocated ++++++|
3798 * ==> 1 complete clusters in above example
3799 *
3800 * Ex:
3801 * |================c================|
3802 * |++++++ allocated ++++++|
3803 * ==> 0 complete clusters in above example
3804 *
3805 * The ext4_da_update_reserve_space will be called only if we
3806 * determine here that there were some "entire" clusters that span
3807 * this 'allocated' range.
3808 * In the non-bigalloc case, this function will just end up returning num_blks
3809 * without ever calling ext4_find_delalloc_range.
3810 */
3811static unsigned int
3812get_reserved_cluster_alloc(struct inode *inode, ext4_lblk_t lblk_start,
3813 unsigned int num_blks)
3814{
3815 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
3816 ext4_lblk_t alloc_cluster_start, alloc_cluster_end;
3817 ext4_lblk_t lblk_from, lblk_to, c_offset;
3818 unsigned int allocated_clusters = 0;
3819
3820 alloc_cluster_start = EXT4_B2C(sbi, lblk_start);
3821 alloc_cluster_end = EXT4_B2C(sbi, lblk_start + num_blks - 1);
3822
3823 /* max possible clusters for this allocation */
3824 allocated_clusters = alloc_cluster_end - alloc_cluster_start + 1;
3825
d8990240
AK
3826 trace_ext4_get_reserved_cluster_alloc(inode, lblk_start, num_blks);
3827
7b415bf6
AK
3828 /* Check towards left side */
3829 c_offset = lblk_start & (sbi->s_cluster_ratio - 1);
3830 if (c_offset) {
3831 lblk_from = lblk_start & (~(sbi->s_cluster_ratio - 1));
3832 lblk_to = lblk_from + c_offset - 1;
3833
7d1b1fbc 3834 if (ext4_find_delalloc_range(inode, lblk_from, lblk_to))
7b415bf6
AK
3835 allocated_clusters--;
3836 }
3837
3838 /* Now check towards right. */
3839 c_offset = (lblk_start + num_blks) & (sbi->s_cluster_ratio - 1);
3840 if (allocated_clusters && c_offset) {
3841 lblk_from = lblk_start + num_blks;
3842 lblk_to = lblk_from + (sbi->s_cluster_ratio - c_offset) - 1;
3843
7d1b1fbc 3844 if (ext4_find_delalloc_range(inode, lblk_from, lblk_to))
7b415bf6
AK
3845 allocated_clusters--;
3846 }
3847
3848 return allocated_clusters;
3849}
3850
0031462b
MC
3851static int
3852ext4_ext_handle_uninitialized_extents(handle_t *handle, struct inode *inode,
e35fd660 3853 struct ext4_map_blocks *map,
0031462b 3854 struct ext4_ext_path *path, int flags,
e35fd660 3855 unsigned int allocated, ext4_fsblk_t newblock)
0031462b
MC
3856{
3857 int ret = 0;
3858 int err = 0;
f45ee3a1 3859 ext4_io_end_t *io = ext4_inode_aio(inode);
0031462b 3860
88635ca2
ZL
3861 ext_debug("ext4_ext_handle_uninitialized_extents: inode %lu, logical "
3862 "block %llu, max_blocks %u, flags %x, allocated %u\n",
e35fd660 3863 inode->i_ino, (unsigned long long)map->m_lblk, map->m_len,
0031462b
MC
3864 flags, allocated);
3865 ext4_ext_show_leaf(inode, path);
3866
27dd4385
LC
3867 /*
3868 * When writing into uninitialized space, we should not fail to
3869 * allocate metadata blocks for the new extent block if needed.
3870 */
3871 flags |= EXT4_GET_BLOCKS_METADATA_NOFAIL;
3872
b5645534
ZL
3873 trace_ext4_ext_handle_uninitialized_extents(inode, map, flags,
3874 allocated, newblock);
d8990240 3875
c7064ef1 3876 /* get_block() before submit the IO, split the extent */
744692dc 3877 if ((flags & EXT4_GET_BLOCKS_PRE_IO)) {
e35fd660
TT
3878 ret = ext4_split_unwritten_extents(handle, inode, map,
3879 path, flags);
82e54229
DM
3880 if (ret <= 0)
3881 goto out;
5f524950
M
3882 /*
3883 * Flag the inode(non aio case) or end_io struct (aio case)
25985edc 3884 * that this IO needs to conversion to written when IO is
5f524950
M
3885 * completed
3886 */
0edeb71d
TM
3887 if (io)
3888 ext4_set_io_unwritten_flag(inode, io);
3889 else
19f5fb7a 3890 ext4_set_inode_state(inode, EXT4_STATE_DIO_UNWRITTEN);
a25a4e1a 3891 map->m_flags |= EXT4_MAP_UNWRITTEN;
744692dc 3892 if (ext4_should_dioread_nolock(inode))
e35fd660 3893 map->m_flags |= EXT4_MAP_UNINIT;
0031462b
MC
3894 goto out;
3895 }
c7064ef1 3896 /* IO end_io complete, convert the filled extent to written */
744692dc 3897 if ((flags & EXT4_GET_BLOCKS_CONVERT)) {
dee1f973 3898 ret = ext4_convert_unwritten_extents_endio(handle, inode, map,
0031462b 3899 path);
58590b06 3900 if (ret >= 0) {
b436b9be 3901 ext4_update_inode_fsync_trans(handle, inode, 1);
d002ebf1
ES
3902 err = check_eofblocks_fl(handle, inode, map->m_lblk,
3903 path, map->m_len);
58590b06
TT
3904 } else
3905 err = ret;
cdee7843
ZL
3906 map->m_flags |= EXT4_MAP_MAPPED;
3907 if (allocated > map->m_len)
3908 allocated = map->m_len;
3909 map->m_len = allocated;
0031462b
MC
3910 goto out2;
3911 }
3912 /* buffered IO case */
3913 /*
3914 * repeat fallocate creation request
3915 * we already have an unwritten extent
3916 */
a25a4e1a
ZL
3917 if (flags & EXT4_GET_BLOCKS_UNINIT_EXT) {
3918 map->m_flags |= EXT4_MAP_UNWRITTEN;
0031462b 3919 goto map_out;
a25a4e1a 3920 }
0031462b
MC
3921
3922 /* buffered READ or buffered write_begin() lookup */
3923 if ((flags & EXT4_GET_BLOCKS_CREATE) == 0) {
3924 /*
3925 * We have blocks reserved already. We
3926 * return allocated blocks so that delalloc
3927 * won't do block reservation for us. But
3928 * the buffer head will be unmapped so that
3929 * a read from the block returns 0s.
3930 */
e35fd660 3931 map->m_flags |= EXT4_MAP_UNWRITTEN;
0031462b
MC
3932 goto out1;
3933 }
3934
3935 /* buffered write, writepage time, convert*/
27dd4385 3936 ret = ext4_ext_convert_to_initialized(handle, inode, map, path, flags);
a4e5d88b 3937 if (ret >= 0)
b436b9be 3938 ext4_update_inode_fsync_trans(handle, inode, 1);
0031462b
MC
3939out:
3940 if (ret <= 0) {
3941 err = ret;
3942 goto out2;
3943 } else
3944 allocated = ret;
e35fd660 3945 map->m_flags |= EXT4_MAP_NEW;
515f41c3
AK
3946 /*
3947 * if we allocated more blocks than requested
3948 * we need to make sure we unmap the extra block
3949 * allocated. The actual needed block will get
3950 * unmapped later when we find the buffer_head marked
3951 * new.
3952 */
e35fd660 3953 if (allocated > map->m_len) {
515f41c3 3954 unmap_underlying_metadata_blocks(inode->i_sb->s_bdev,
e35fd660
TT
3955 newblock + map->m_len,
3956 allocated - map->m_len);
3957 allocated = map->m_len;
515f41c3 3958 }
3a225670 3959 map->m_len = allocated;
5f634d06
AK
3960
3961 /*
3962 * If we have done fallocate with the offset that is already
3963 * delayed allocated, we would have block reservation
3964 * and quota reservation done in the delayed write path.
3965 * But fallocate would have already updated quota and block
3966 * count for this offset. So cancel these reservation
3967 */
7b415bf6
AK
3968 if (flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE) {
3969 unsigned int reserved_clusters;
3970 reserved_clusters = get_reserved_cluster_alloc(inode,
3971 map->m_lblk, map->m_len);
3972 if (reserved_clusters)
3973 ext4_da_update_reserve_space(inode,
3974 reserved_clusters,
3975 0);
3976 }
5f634d06 3977
0031462b 3978map_out:
e35fd660 3979 map->m_flags |= EXT4_MAP_MAPPED;
a4e5d88b
DM
3980 if ((flags & EXT4_GET_BLOCKS_KEEP_SIZE) == 0) {
3981 err = check_eofblocks_fl(handle, inode, map->m_lblk, path,
3982 map->m_len);
3983 if (err < 0)
3984 goto out2;
3985 }
0031462b 3986out1:
e35fd660
TT
3987 if (allocated > map->m_len)
3988 allocated = map->m_len;
0031462b 3989 ext4_ext_show_leaf(inode, path);
e35fd660
TT
3990 map->m_pblk = newblock;
3991 map->m_len = allocated;
0031462b
MC
3992out2:
3993 if (path) {
3994 ext4_ext_drop_refs(path);
3995 kfree(path);
3996 }
3997 return err ? err : allocated;
3998}
58590b06 3999
4d33b1ef
TT
4000/*
4001 * get_implied_cluster_alloc - check to see if the requested
4002 * allocation (in the map structure) overlaps with a cluster already
4003 * allocated in an extent.
d8990240 4004 * @sb The filesystem superblock structure
4d33b1ef
TT
4005 * @map The requested lblk->pblk mapping
4006 * @ex The extent structure which might contain an implied
4007 * cluster allocation
4008 *
4009 * This function is called by ext4_ext_map_blocks() after we failed to
4010 * find blocks that were already in the inode's extent tree. Hence,
4011 * we know that the beginning of the requested region cannot overlap
4012 * the extent from the inode's extent tree. There are three cases we
4013 * want to catch. The first is this case:
4014 *
4015 * |--- cluster # N--|
4016 * |--- extent ---| |---- requested region ---|
4017 * |==========|
4018 *
4019 * The second case that we need to test for is this one:
4020 *
4021 * |--------- cluster # N ----------------|
4022 * |--- requested region --| |------- extent ----|
4023 * |=======================|
4024 *
4025 * The third case is when the requested region lies between two extents
4026 * within the same cluster:
4027 * |------------- cluster # N-------------|
4028 * |----- ex -----| |---- ex_right ----|
4029 * |------ requested region ------|
4030 * |================|
4031 *
4032 * In each of the above cases, we need to set the map->m_pblk and
4033 * map->m_len so it corresponds to the return the extent labelled as
4034 * "|====|" from cluster #N, since it is already in use for data in
4035 * cluster EXT4_B2C(sbi, map->m_lblk). We will then return 1 to
4036 * signal to ext4_ext_map_blocks() that map->m_pblk should be treated
4037 * as a new "allocated" block region. Otherwise, we will return 0 and
4038 * ext4_ext_map_blocks() will then allocate one or more new clusters
4039 * by calling ext4_mb_new_blocks().
4040 */
d8990240 4041static int get_implied_cluster_alloc(struct super_block *sb,
4d33b1ef
TT
4042 struct ext4_map_blocks *map,
4043 struct ext4_extent *ex,
4044 struct ext4_ext_path *path)
4045{
d8990240 4046 struct ext4_sb_info *sbi = EXT4_SB(sb);
4d33b1ef
TT
4047 ext4_lblk_t c_offset = map->m_lblk & (sbi->s_cluster_ratio-1);
4048 ext4_lblk_t ex_cluster_start, ex_cluster_end;
14d7f3ef 4049 ext4_lblk_t rr_cluster_start;
4d33b1ef
TT
4050 ext4_lblk_t ee_block = le32_to_cpu(ex->ee_block);
4051 ext4_fsblk_t ee_start = ext4_ext_pblock(ex);
4052 unsigned short ee_len = ext4_ext_get_actual_len(ex);
4053
4054 /* The extent passed in that we are trying to match */
4055 ex_cluster_start = EXT4_B2C(sbi, ee_block);
4056 ex_cluster_end = EXT4_B2C(sbi, ee_block + ee_len - 1);
4057
4058 /* The requested region passed into ext4_map_blocks() */
4059 rr_cluster_start = EXT4_B2C(sbi, map->m_lblk);
4d33b1ef
TT
4060
4061 if ((rr_cluster_start == ex_cluster_end) ||
4062 (rr_cluster_start == ex_cluster_start)) {
4063 if (rr_cluster_start == ex_cluster_end)
4064 ee_start += ee_len - 1;
4065 map->m_pblk = (ee_start & ~(sbi->s_cluster_ratio - 1)) +
4066 c_offset;
4067 map->m_len = min(map->m_len,
4068 (unsigned) sbi->s_cluster_ratio - c_offset);
4069 /*
4070 * Check for and handle this case:
4071 *
4072 * |--------- cluster # N-------------|
4073 * |------- extent ----|
4074 * |--- requested region ---|
4075 * |===========|
4076 */
4077
4078 if (map->m_lblk < ee_block)
4079 map->m_len = min(map->m_len, ee_block - map->m_lblk);
4080
4081 /*
4082 * Check for the case where there is already another allocated
4083 * block to the right of 'ex' but before the end of the cluster.
4084 *
4085 * |------------- cluster # N-------------|
4086 * |----- ex -----| |---- ex_right ----|
4087 * |------ requested region ------|
4088 * |================|
4089 */
4090 if (map->m_lblk > ee_block) {
4091 ext4_lblk_t next = ext4_ext_next_allocated_block(path);
4092 map->m_len = min(map->m_len, next - map->m_lblk);
4093 }
d8990240
AK
4094
4095 trace_ext4_get_implied_cluster_alloc_exit(sb, map, 1);
4d33b1ef
TT
4096 return 1;
4097 }
d8990240
AK
4098
4099 trace_ext4_get_implied_cluster_alloc_exit(sb, map, 0);
4d33b1ef
TT
4100 return 0;
4101}
4102
4103
c278bfec 4104/*
f5ab0d1f
MC
4105 * Block allocation/map/preallocation routine for extents based files
4106 *
4107 *
c278bfec 4108 * Need to be called with
0e855ac8
AK
4109 * down_read(&EXT4_I(inode)->i_data_sem) if not allocating file system block
4110 * (ie, create is zero). Otherwise down_write(&EXT4_I(inode)->i_data_sem)
f5ab0d1f
MC
4111 *
4112 * return > 0, number of of blocks already mapped/allocated
4113 * if create == 0 and these are pre-allocated blocks
4114 * buffer head is unmapped
4115 * otherwise blocks are mapped
4116 *
4117 * return = 0, if plain look up failed (blocks have not been allocated)
4118 * buffer head is unmapped
4119 *
4120 * return < 0, error case.
c278bfec 4121 */
e35fd660
TT
4122int ext4_ext_map_blocks(handle_t *handle, struct inode *inode,
4123 struct ext4_map_blocks *map, int flags)
a86c6181
AT
4124{
4125 struct ext4_ext_path *path = NULL;
4d33b1ef
TT
4126 struct ext4_extent newex, *ex, *ex2;
4127 struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
0562e0ba 4128 ext4_fsblk_t newblock = 0;
37794732 4129 int free_on_err = 0, err = 0, depth;
4d33b1ef 4130 unsigned int allocated = 0, offset = 0;
81fdbb4a 4131 unsigned int allocated_clusters = 0;
c9de560d 4132 struct ext4_allocation_request ar;
f45ee3a1 4133 ext4_io_end_t *io = ext4_inode_aio(inode);
4d33b1ef 4134 ext4_lblk_t cluster_offset;
82e54229 4135 int set_unwritten = 0;
a86c6181 4136
84fe3bef 4137 ext_debug("blocks %u/%u requested for inode %lu\n",
e35fd660 4138 map->m_lblk, map->m_len, inode->i_ino);
0562e0ba 4139 trace_ext4_ext_map_blocks_enter(inode, map->m_lblk, map->m_len, flags);
a86c6181 4140
a86c6181 4141 /* find extent for this block */
107a7bd3 4142 path = ext4_ext_find_extent(inode, map->m_lblk, NULL, 0);
a86c6181
AT
4143 if (IS_ERR(path)) {
4144 err = PTR_ERR(path);
4145 path = NULL;
4146 goto out2;
4147 }
4148
4149 depth = ext_depth(inode);
4150
4151 /*
d0d856e8
RD
4152 * consistent leaf must not be empty;
4153 * this situation is possible, though, _during_ tree modification;
a86c6181
AT
4154 * this is why assert can't be put in ext4_ext_find_extent()
4155 */
273df556
FM
4156 if (unlikely(path[depth].p_ext == NULL && depth != 0)) {
4157 EXT4_ERROR_INODE(inode, "bad extent address "
f70f362b
TT
4158 "lblock: %lu, depth: %d pblock %lld",
4159 (unsigned long) map->m_lblk, depth,
4160 path[depth].p_block);
034fb4c9
SP
4161 err = -EIO;
4162 goto out2;
4163 }
a86c6181 4164
7e028976
AM
4165 ex = path[depth].p_ext;
4166 if (ex) {
725d26d3 4167 ext4_lblk_t ee_block = le32_to_cpu(ex->ee_block);
bf89d16f 4168 ext4_fsblk_t ee_start = ext4_ext_pblock(ex);
a2df2a63 4169 unsigned short ee_len;
471d4011
SB
4170
4171 /*
471d4011 4172 * Uninitialized extents are treated as holes, except that
56055d3a 4173 * we split out initialized portions during a write.
471d4011 4174 */
a2df2a63 4175 ee_len = ext4_ext_get_actual_len(ex);
d8990240
AK
4176
4177 trace_ext4_ext_show_extent(inode, ee_block, ee_start, ee_len);
4178
d0d856e8 4179 /* if found extent covers block, simply return it */
e35fd660
TT
4180 if (in_range(map->m_lblk, ee_block, ee_len)) {
4181 newblock = map->m_lblk - ee_block + ee_start;
d0d856e8 4182 /* number of remaining blocks in the extent */
e35fd660
TT
4183 allocated = ee_len - (map->m_lblk - ee_block);
4184 ext_debug("%u fit into %u:%d -> %llu\n", map->m_lblk,
4185 ee_block, ee_len, newblock);
56055d3a 4186
69eb33dc 4187 if (!ext4_ext_is_uninitialized(ex))
7877191c 4188 goto out;
69eb33dc 4189
37794732 4190 allocated = ext4_ext_handle_uninitialized_extents(
7877191c
LC
4191 handle, inode, map, path, flags,
4192 allocated, newblock);
37794732 4193 goto out3;
a86c6181
AT
4194 }
4195 }
4196
7b415bf6 4197 if ((sbi->s_cluster_ratio > 1) &&
7d1b1fbc 4198 ext4_find_delalloc_cluster(inode, map->m_lblk))
7b415bf6
AK
4199 map->m_flags |= EXT4_MAP_FROM_CLUSTER;
4200
a86c6181 4201 /*
d0d856e8 4202 * requested block isn't allocated yet;
a86c6181
AT
4203 * we couldn't try to create block if create flag is zero
4204 */
c2177057 4205 if ((flags & EXT4_GET_BLOCKS_CREATE) == 0) {
56055d3a
AA
4206 /*
4207 * put just found gap into cache to speed up
4208 * subsequent requests
4209 */
d100eef2
ZL
4210 if ((flags & EXT4_GET_BLOCKS_NO_PUT_HOLE) == 0)
4211 ext4_ext_put_gap_in_cache(inode, path, map->m_lblk);
a86c6181
AT
4212 goto out2;
4213 }
4d33b1ef 4214
a86c6181 4215 /*
c2ea3fde 4216 * Okay, we need to do block allocation.
63f57933 4217 */
7b415bf6 4218 map->m_flags &= ~EXT4_MAP_FROM_CLUSTER;
4d33b1ef
TT
4219 newex.ee_block = cpu_to_le32(map->m_lblk);
4220 cluster_offset = map->m_lblk & (sbi->s_cluster_ratio-1);
4221
4222 /*
4223 * If we are doing bigalloc, check to see if the extent returned
4224 * by ext4_ext_find_extent() implies a cluster we can use.
4225 */
4226 if (cluster_offset && ex &&
d8990240 4227 get_implied_cluster_alloc(inode->i_sb, map, ex, path)) {
4d33b1ef
TT
4228 ar.len = allocated = map->m_len;
4229 newblock = map->m_pblk;
7b415bf6 4230 map->m_flags |= EXT4_MAP_FROM_CLUSTER;
4d33b1ef
TT
4231 goto got_allocated_blocks;
4232 }
a86c6181 4233
c9de560d 4234 /* find neighbour allocated blocks */
e35fd660 4235 ar.lleft = map->m_lblk;
c9de560d
AT
4236 err = ext4_ext_search_left(inode, path, &ar.lleft, &ar.pleft);
4237 if (err)
4238 goto out2;
e35fd660 4239 ar.lright = map->m_lblk;
4d33b1ef
TT
4240 ex2 = NULL;
4241 err = ext4_ext_search_right(inode, path, &ar.lright, &ar.pright, &ex2);
c9de560d
AT
4242 if (err)
4243 goto out2;
25d14f98 4244
4d33b1ef
TT
4245 /* Check if the extent after searching to the right implies a
4246 * cluster we can use. */
4247 if ((sbi->s_cluster_ratio > 1) && ex2 &&
d8990240 4248 get_implied_cluster_alloc(inode->i_sb, map, ex2, path)) {
4d33b1ef
TT
4249 ar.len = allocated = map->m_len;
4250 newblock = map->m_pblk;
7b415bf6 4251 map->m_flags |= EXT4_MAP_FROM_CLUSTER;
4d33b1ef
TT
4252 goto got_allocated_blocks;
4253 }
4254
749269fa
AA
4255 /*
4256 * See if request is beyond maximum number of blocks we can have in
4257 * a single extent. For an initialized extent this limit is
4258 * EXT_INIT_MAX_LEN and for an uninitialized extent this limit is
4259 * EXT_UNINIT_MAX_LEN.
4260 */
e35fd660 4261 if (map->m_len > EXT_INIT_MAX_LEN &&
c2177057 4262 !(flags & EXT4_GET_BLOCKS_UNINIT_EXT))
e35fd660
TT
4263 map->m_len = EXT_INIT_MAX_LEN;
4264 else if (map->m_len > EXT_UNINIT_MAX_LEN &&
c2177057 4265 (flags & EXT4_GET_BLOCKS_UNINIT_EXT))
e35fd660 4266 map->m_len = EXT_UNINIT_MAX_LEN;
749269fa 4267
e35fd660 4268 /* Check if we can really insert (m_lblk)::(m_lblk + m_len) extent */
e35fd660 4269 newex.ee_len = cpu_to_le16(map->m_len);
4d33b1ef 4270 err = ext4_ext_check_overlap(sbi, inode, &newex, path);
25d14f98 4271 if (err)
b939e376 4272 allocated = ext4_ext_get_actual_len(&newex);
25d14f98 4273 else
e35fd660 4274 allocated = map->m_len;
c9de560d
AT
4275
4276 /* allocate new block */
4277 ar.inode = inode;
e35fd660
TT
4278 ar.goal = ext4_ext_find_goal(inode, path, map->m_lblk);
4279 ar.logical = map->m_lblk;
4d33b1ef
TT
4280 /*
4281 * We calculate the offset from the beginning of the cluster
4282 * for the logical block number, since when we allocate a
4283 * physical cluster, the physical block should start at the
4284 * same offset from the beginning of the cluster. This is
4285 * needed so that future calls to get_implied_cluster_alloc()
4286 * work correctly.
4287 */
4288 offset = map->m_lblk & (sbi->s_cluster_ratio - 1);
4289 ar.len = EXT4_NUM_B2C(sbi, offset+allocated);
4290 ar.goal -= offset;
4291 ar.logical -= offset;
c9de560d
AT
4292 if (S_ISREG(inode->i_mode))
4293 ar.flags = EXT4_MB_HINT_DATA;
4294 else
4295 /* disable in-core preallocation for non-regular files */
4296 ar.flags = 0;
556b27ab
VH
4297 if (flags & EXT4_GET_BLOCKS_NO_NORMALIZE)
4298 ar.flags |= EXT4_MB_HINT_NOPREALLOC;
c9de560d 4299 newblock = ext4_mb_new_blocks(handle, &ar, &err);
a86c6181
AT
4300 if (!newblock)
4301 goto out2;
84fe3bef 4302 ext_debug("allocate new block: goal %llu, found %llu/%u\n",
498e5f24 4303 ar.goal, newblock, allocated);
4d33b1ef 4304 free_on_err = 1;
7b415bf6 4305 allocated_clusters = ar.len;
4d33b1ef
TT
4306 ar.len = EXT4_C2B(sbi, ar.len) - offset;
4307 if (ar.len > allocated)
4308 ar.len = allocated;
a86c6181 4309
4d33b1ef 4310got_allocated_blocks:
a86c6181 4311 /* try to insert new extent into found leaf and return */
4d33b1ef 4312 ext4_ext_store_pblock(&newex, newblock + offset);
c9de560d 4313 newex.ee_len = cpu_to_le16(ar.len);
8d5d02e6
MC
4314 /* Mark uninitialized */
4315 if (flags & EXT4_GET_BLOCKS_UNINIT_EXT){
a2df2a63 4316 ext4_ext_mark_uninitialized(&newex);
a25a4e1a 4317 map->m_flags |= EXT4_MAP_UNWRITTEN;
8d5d02e6 4318 /*
744692dc 4319 * io_end structure was created for every IO write to an
25985edc 4320 * uninitialized extent. To avoid unnecessary conversion,
744692dc 4321 * here we flag the IO that really needs the conversion.
5f524950 4322 * For non asycn direct IO case, flag the inode state
25985edc 4323 * that we need to perform conversion when IO is done.
8d5d02e6 4324 */
82e54229
DM
4325 if ((flags & EXT4_GET_BLOCKS_PRE_IO))
4326 set_unwritten = 1;
744692dc 4327 if (ext4_should_dioread_nolock(inode))
e35fd660 4328 map->m_flags |= EXT4_MAP_UNINIT;
8d5d02e6 4329 }
c8d46e41 4330
a4e5d88b
DM
4331 err = 0;
4332 if ((flags & EXT4_GET_BLOCKS_KEEP_SIZE) == 0)
4333 err = check_eofblocks_fl(handle, inode, map->m_lblk,
4334 path, ar.len);
575a1d4b
JZ
4335 if (!err)
4336 err = ext4_ext_insert_extent(handle, inode, path,
4337 &newex, flags);
82e54229
DM
4338
4339 if (!err && set_unwritten) {
4340 if (io)
4341 ext4_set_io_unwritten_flag(inode, io);
4342 else
4343 ext4_set_inode_state(inode,
4344 EXT4_STATE_DIO_UNWRITTEN);
4345 }
4346
4d33b1ef 4347 if (err && free_on_err) {
7132de74
MP
4348 int fb_flags = flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE ?
4349 EXT4_FREE_BLOCKS_NO_QUOT_UPDATE : 0;
315054f0 4350 /* free data blocks we just allocated */
c9de560d
AT
4351 /* not a good idea to call discard here directly,
4352 * but otherwise we'd need to call it every free() */
c2ea3fde 4353 ext4_discard_preallocations(inode);
c8e15130
TT
4354 ext4_free_blocks(handle, inode, NULL, newblock,
4355 EXT4_C2B(sbi, allocated_clusters), fb_flags);
a86c6181 4356 goto out2;
315054f0 4357 }
a86c6181 4358
a86c6181 4359 /* previous routine could use block we allocated */
bf89d16f 4360 newblock = ext4_ext_pblock(&newex);
b939e376 4361 allocated = ext4_ext_get_actual_len(&newex);
e35fd660
TT
4362 if (allocated > map->m_len)
4363 allocated = map->m_len;
4364 map->m_flags |= EXT4_MAP_NEW;
a86c6181 4365
5f634d06
AK
4366 /*
4367 * Update reserved blocks/metadata blocks after successful
4368 * block allocation which had been deferred till now.
4369 */
7b415bf6 4370 if (flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE) {
81fdbb4a 4371 unsigned int reserved_clusters;
7b415bf6 4372 /*
81fdbb4a 4373 * Check how many clusters we had reserved this allocated range
7b415bf6
AK
4374 */
4375 reserved_clusters = get_reserved_cluster_alloc(inode,
4376 map->m_lblk, allocated);
4377 if (map->m_flags & EXT4_MAP_FROM_CLUSTER) {
4378 if (reserved_clusters) {
4379 /*
4380 * We have clusters reserved for this range.
4381 * But since we are not doing actual allocation
4382 * and are simply using blocks from previously
4383 * allocated cluster, we should release the
4384 * reservation and not claim quota.
4385 */
4386 ext4_da_update_reserve_space(inode,
4387 reserved_clusters, 0);
4388 }
4389 } else {
4390 BUG_ON(allocated_clusters < reserved_clusters);
7b415bf6 4391 if (reserved_clusters < allocated_clusters) {
5356f261 4392 struct ext4_inode_info *ei = EXT4_I(inode);
7b415bf6
AK
4393 int reservation = allocated_clusters -
4394 reserved_clusters;
4395 /*
4396 * It seems we claimed few clusters outside of
4397 * the range of this allocation. We should give
4398 * it back to the reservation pool. This can
4399 * happen in the following case:
4400 *
4401 * * Suppose s_cluster_ratio is 4 (i.e., each
4402 * cluster has 4 blocks. Thus, the clusters
4403 * are [0-3],[4-7],[8-11]...
4404 * * First comes delayed allocation write for
4405 * logical blocks 10 & 11. Since there were no
4406 * previous delayed allocated blocks in the
4407 * range [8-11], we would reserve 1 cluster
4408 * for this write.
4409 * * Next comes write for logical blocks 3 to 8.
4410 * In this case, we will reserve 2 clusters
4411 * (for [0-3] and [4-7]; and not for [8-11] as
4412 * that range has a delayed allocated blocks.
4413 * Thus total reserved clusters now becomes 3.
4414 * * Now, during the delayed allocation writeout
4415 * time, we will first write blocks [3-8] and
4416 * allocate 3 clusters for writing these
4417 * blocks. Also, we would claim all these
4418 * three clusters above.
4419 * * Now when we come here to writeout the
4420 * blocks [10-11], we would expect to claim
4421 * the reservation of 1 cluster we had made
4422 * (and we would claim it since there are no
4423 * more delayed allocated blocks in the range
4424 * [8-11]. But our reserved cluster count had
4425 * already gone to 0.
4426 *
4427 * Thus, at the step 4 above when we determine
4428 * that there are still some unwritten delayed
4429 * allocated blocks outside of our current
4430 * block range, we should increment the
4431 * reserved clusters count so that when the
4432 * remaining blocks finally gets written, we
4433 * could claim them.
4434 */
5356f261
AK
4435 dquot_reserve_block(inode,
4436 EXT4_C2B(sbi, reservation));
4437 spin_lock(&ei->i_block_reservation_lock);
4438 ei->i_reserved_data_blocks += reservation;
4439 spin_unlock(&ei->i_block_reservation_lock);
7b415bf6 4440 }
232ec872
LC
4441 /*
4442 * We will claim quota for all newly allocated blocks.
4443 * We're updating the reserved space *after* the
4444 * correction above so we do not accidentally free
4445 * all the metadata reservation because we might
4446 * actually need it later on.
4447 */
4448 ext4_da_update_reserve_space(inode, allocated_clusters,
4449 1);
7b415bf6
AK
4450 }
4451 }
5f634d06 4452
b436b9be
JK
4453 /*
4454 * Cache the extent and update transaction to commit on fdatasync only
4455 * when it is _not_ an uninitialized extent.
4456 */
69eb33dc 4457 if ((flags & EXT4_GET_BLOCKS_UNINIT_EXT) == 0)
b436b9be 4458 ext4_update_inode_fsync_trans(handle, inode, 1);
69eb33dc 4459 else
b436b9be 4460 ext4_update_inode_fsync_trans(handle, inode, 0);
a86c6181 4461out:
e35fd660
TT
4462 if (allocated > map->m_len)
4463 allocated = map->m_len;
a86c6181 4464 ext4_ext_show_leaf(inode, path);
e35fd660
TT
4465 map->m_flags |= EXT4_MAP_MAPPED;
4466 map->m_pblk = newblock;
4467 map->m_len = allocated;
a86c6181
AT
4468out2:
4469 if (path) {
4470 ext4_ext_drop_refs(path);
4471 kfree(path);
4472 }
e861304b 4473
37794732 4474out3:
63b99968
TT
4475 trace_ext4_ext_map_blocks_exit(inode, flags, map,
4476 err ? err : allocated);
4477 ext4_es_lru_add(inode);
7877191c 4478 return err ? err : allocated;
a86c6181
AT
4479}
4480
819c4920 4481void ext4_ext_truncate(handle_t *handle, struct inode *inode)
a86c6181 4482{
a86c6181 4483 struct super_block *sb = inode->i_sb;
725d26d3 4484 ext4_lblk_t last_block;
a86c6181
AT
4485 int err = 0;
4486
a86c6181 4487 /*
d0d856e8
RD
4488 * TODO: optimization is possible here.
4489 * Probably we need not scan at all,
4490 * because page truncation is enough.
a86c6181 4491 */
a86c6181
AT
4492
4493 /* we have to know where to truncate from in crash case */
4494 EXT4_I(inode)->i_disksize = inode->i_size;
4495 ext4_mark_inode_dirty(handle, inode);
4496
4497 last_block = (inode->i_size + sb->s_blocksize - 1)
4498 >> EXT4_BLOCK_SIZE_BITS(sb);
8acd5e9b 4499retry:
51865fda
ZL
4500 err = ext4_es_remove_extent(inode, last_block,
4501 EXT_MAX_BLOCKS - last_block);
94eec0fc 4502 if (err == -ENOMEM) {
8acd5e9b
TT
4503 cond_resched();
4504 congestion_wait(BLK_RW_ASYNC, HZ/50);
4505 goto retry;
4506 }
4507 if (err) {
4508 ext4_std_error(inode->i_sb, err);
4509 return;
4510 }
5f95d21f 4511 err = ext4_ext_remove_space(inode, last_block, EXT_MAX_BLOCKS - 1);
8acd5e9b 4512 ext4_std_error(inode->i_sb, err);
a86c6181
AT
4513}
4514
fd28784a
AK
4515static void ext4_falloc_update_inode(struct inode *inode,
4516 int mode, loff_t new_size, int update_ctime)
4517{
4518 struct timespec now;
4519
4520 if (update_ctime) {
4521 now = current_fs_time(inode->i_sb);
4522 if (!timespec_equal(&inode->i_ctime, &now))
4523 inode->i_ctime = now;
4524 }
4525 /*
4526 * Update only when preallocation was requested beyond
4527 * the file size.
4528 */
cf17fea6
AK
4529 if (!(mode & FALLOC_FL_KEEP_SIZE)) {
4530 if (new_size > i_size_read(inode))
4531 i_size_write(inode, new_size);
4532 if (new_size > EXT4_I(inode)->i_disksize)
4533 ext4_update_i_disksize(inode, new_size);
c8d46e41
JZ
4534 } else {
4535 /*
4536 * Mark that we allocate beyond EOF so the subsequent truncate
4537 * can proceed even if the new size is the same as i_size.
4538 */
4539 if (new_size > i_size_read(inode))
12e9b892 4540 ext4_set_inode_flag(inode, EXT4_INODE_EOFBLOCKS);
fd28784a
AK
4541 }
4542
4543}
4544
a2df2a63 4545/*
2fe17c10 4546 * preallocate space for a file. This implements ext4's fallocate file
a2df2a63
AA
4547 * operation, which gets called from sys_fallocate system call.
4548 * For block-mapped files, posix_fallocate should fall back to the method
4549 * of writing zeroes to the required new blocks (the same behavior which is
4550 * expected for file systems which do not support fallocate() system call).
4551 */
2fe17c10 4552long ext4_fallocate(struct file *file, int mode, loff_t offset, loff_t len)
a2df2a63 4553{
496ad9aa 4554 struct inode *inode = file_inode(file);
a2df2a63 4555 handle_t *handle;
fd28784a 4556 loff_t new_size;
498e5f24 4557 unsigned int max_blocks;
a2df2a63
AA
4558 int ret = 0;
4559 int ret2 = 0;
4560 int retries = 0;
a4e5d88b 4561 int flags;
2ed88685 4562 struct ext4_map_blocks map;
a2df2a63
AA
4563 unsigned int credits, blkbits = inode->i_blkbits;
4564
a4bb6b64
AH
4565 /* Return error if mode is not supported */
4566 if (mode & ~(FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE))
4567 return -EOPNOTSUPP;
4568
4569 if (mode & FALLOC_FL_PUNCH_HOLE)
aeb2817a 4570 return ext4_punch_hole(inode, offset, len);
a4bb6b64 4571
0c8d414f
TM
4572 ret = ext4_convert_inline_data(inode);
4573 if (ret)
4574 return ret;
4575
8bad6fc8
ZL
4576 /*
4577 * currently supporting (pre)allocate mode for extent-based
4578 * files _only_
4579 */
4580 if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)))
4581 return -EOPNOTSUPP;
4582
0562e0ba 4583 trace_ext4_fallocate_enter(inode, offset, len, mode);
2ed88685 4584 map.m_lblk = offset >> blkbits;
fd28784a
AK
4585 /*
4586 * We can't just convert len to max_blocks because
4587 * If blocksize = 4096 offset = 3072 and len = 2048
4588 */
a2df2a63 4589 max_blocks = (EXT4_BLOCK_ALIGN(len + offset, blkbits) >> blkbits)
2ed88685 4590 - map.m_lblk;
a2df2a63 4591 /*
f3bd1f3f 4592 * credits to insert 1 extent into extent tree
a2df2a63 4593 */
f3bd1f3f 4594 credits = ext4_chunk_trans_blocks(inode, max_blocks);
55bd725a 4595 mutex_lock(&inode->i_mutex);
6d19c42b
NK
4596 ret = inode_newsize_ok(inode, (len + offset));
4597 if (ret) {
4598 mutex_unlock(&inode->i_mutex);
0562e0ba 4599 trace_ext4_fallocate_exit(inode, offset, max_blocks, ret);
6d19c42b
NK
4600 return ret;
4601 }
3c6fe770 4602 flags = EXT4_GET_BLOCKS_CREATE_UNINIT_EXT;
a4e5d88b
DM
4603 if (mode & FALLOC_FL_KEEP_SIZE)
4604 flags |= EXT4_GET_BLOCKS_KEEP_SIZE;
3c6fe770
GH
4605 /*
4606 * Don't normalize the request if it can fit in one extent so
4607 * that it doesn't get unnecessarily split into multiple
4608 * extents.
4609 */
4610 if (len <= EXT_UNINIT_MAX_LEN << blkbits)
4611 flags |= EXT4_GET_BLOCKS_NO_NORMALIZE;
60d4616f 4612
a2df2a63
AA
4613retry:
4614 while (ret >= 0 && ret < max_blocks) {
2ed88685
TT
4615 map.m_lblk = map.m_lblk + ret;
4616 map.m_len = max_blocks = max_blocks - ret;
9924a92a
TT
4617 handle = ext4_journal_start(inode, EXT4_HT_MAP_BLOCKS,
4618 credits);
a2df2a63
AA
4619 if (IS_ERR(handle)) {
4620 ret = PTR_ERR(handle);
4621 break;
4622 }
a4e5d88b 4623 ret = ext4_map_blocks(handle, inode, &map, flags);
221879c9 4624 if (ret <= 0) {
2c98615d 4625#ifdef EXT4FS_DEBUG
b06acd38
LC
4626 ext4_warning(inode->i_sb,
4627 "inode #%lu: block %u: len %u: "
4628 "ext4_ext_map_blocks returned %d",
4629 inode->i_ino, map.m_lblk,
4630 map.m_len, ret);
2c98615d 4631#endif
a2df2a63
AA
4632 ext4_mark_inode_dirty(handle, inode);
4633 ret2 = ext4_journal_stop(handle);
4634 break;
4635 }
2ed88685 4636 if ((map.m_lblk + ret) >= (EXT4_BLOCK_ALIGN(offset + len,
fd28784a
AK
4637 blkbits) >> blkbits))
4638 new_size = offset + len;
4639 else
29ae07b7 4640 new_size = ((loff_t) map.m_lblk + ret) << blkbits;
a2df2a63 4641
fd28784a 4642 ext4_falloc_update_inode(inode, mode, new_size,
2ed88685 4643 (map.m_flags & EXT4_MAP_NEW));
a2df2a63 4644 ext4_mark_inode_dirty(handle, inode);
f4e95b33
ZL
4645 if ((file->f_flags & O_SYNC) && ret >= max_blocks)
4646 ext4_handle_sync(handle);
a2df2a63
AA
4647 ret2 = ext4_journal_stop(handle);
4648 if (ret2)
4649 break;
4650 }
fd28784a
AK
4651 if (ret == -ENOSPC &&
4652 ext4_should_retry_alloc(inode->i_sb, &retries)) {
4653 ret = 0;
a2df2a63 4654 goto retry;
a2df2a63 4655 }
55bd725a 4656 mutex_unlock(&inode->i_mutex);
0562e0ba
JZ
4657 trace_ext4_fallocate_exit(inode, offset, max_blocks,
4658 ret > 0 ? ret2 : ret);
a2df2a63
AA
4659 return ret > 0 ? ret2 : ret;
4660}
6873fa0d 4661
0031462b
MC
4662/*
4663 * This function convert a range of blocks to written extents
4664 * The caller of this function will pass the start offset and the size.
4665 * all unwritten extents within this range will be converted to
4666 * written extents.
4667 *
4668 * This function is called from the direct IO end io call back
4669 * function, to convert the fallocated extents after IO is completed.
109f5565 4670 * Returns 0 on success.
0031462b 4671 */
6b523df4
JK
4672int ext4_convert_unwritten_extents(handle_t *handle, struct inode *inode,
4673 loff_t offset, ssize_t len)
0031462b 4674{
0031462b
MC
4675 unsigned int max_blocks;
4676 int ret = 0;
4677 int ret2 = 0;
2ed88685 4678 struct ext4_map_blocks map;
0031462b
MC
4679 unsigned int credits, blkbits = inode->i_blkbits;
4680
2ed88685 4681 map.m_lblk = offset >> blkbits;
0031462b
MC
4682 /*
4683 * We can't just convert len to max_blocks because
4684 * If blocksize = 4096 offset = 3072 and len = 2048
4685 */
2ed88685
TT
4686 max_blocks = ((EXT4_BLOCK_ALIGN(len + offset, blkbits) >> blkbits) -
4687 map.m_lblk);
0031462b 4688 /*
6b523df4
JK
4689 * This is somewhat ugly but the idea is clear: When transaction is
4690 * reserved, everything goes into it. Otherwise we rather start several
4691 * smaller transactions for conversion of each extent separately.
0031462b 4692 */
6b523df4
JK
4693 if (handle) {
4694 handle = ext4_journal_start_reserved(handle,
4695 EXT4_HT_EXT_CONVERT);
4696 if (IS_ERR(handle))
4697 return PTR_ERR(handle);
4698 credits = 0;
4699 } else {
4700 /*
4701 * credits to insert 1 extent into extent tree
4702 */
4703 credits = ext4_chunk_trans_blocks(inode, max_blocks);
4704 }
0031462b 4705 while (ret >= 0 && ret < max_blocks) {
2ed88685
TT
4706 map.m_lblk += ret;
4707 map.m_len = (max_blocks -= ret);
6b523df4
JK
4708 if (credits) {
4709 handle = ext4_journal_start(inode, EXT4_HT_MAP_BLOCKS,
4710 credits);
4711 if (IS_ERR(handle)) {
4712 ret = PTR_ERR(handle);
4713 break;
4714 }
0031462b 4715 }
2ed88685 4716 ret = ext4_map_blocks(handle, inode, &map,
c7064ef1 4717 EXT4_GET_BLOCKS_IO_CONVERT_EXT);
b06acd38
LC
4718 if (ret <= 0)
4719 ext4_warning(inode->i_sb,
4720 "inode #%lu: block %u: len %u: "
4721 "ext4_ext_map_blocks returned %d",
4722 inode->i_ino, map.m_lblk,
4723 map.m_len, ret);
0031462b 4724 ext4_mark_inode_dirty(handle, inode);
6b523df4
JK
4725 if (credits)
4726 ret2 = ext4_journal_stop(handle);
4727 if (ret <= 0 || ret2)
0031462b
MC
4728 break;
4729 }
6b523df4
JK
4730 if (!credits)
4731 ret2 = ext4_journal_stop(handle);
0031462b
MC
4732 return ret > 0 ? ret2 : ret;
4733}
6d9c85eb 4734
6873fa0d 4735/*
69eb33dc
ZL
4736 * If newes is not existing extent (newes->ec_pblk equals zero) find
4737 * delayed extent at start of newes and update newes accordingly and
91dd8c11
LC
4738 * return start of the next delayed extent.
4739 *
69eb33dc 4740 * If newes is existing extent (newes->ec_pblk is not equal zero)
91dd8c11 4741 * return start of next delayed extent or EXT_MAX_BLOCKS if no delayed
69eb33dc 4742 * extent found. Leave newes unmodified.
6873fa0d 4743 */
91dd8c11 4744static int ext4_find_delayed_extent(struct inode *inode,
69eb33dc 4745 struct extent_status *newes)
6873fa0d 4746{
b3aff3e3 4747 struct extent_status es;
be401363 4748 ext4_lblk_t block, next_del;
6873fa0d 4749
69eb33dc 4750 if (newes->es_pblk == 0) {
e30b5dca
YZ
4751 ext4_es_find_delayed_extent_range(inode, newes->es_lblk,
4752 newes->es_lblk + newes->es_len - 1, &es);
4753
6d9c85eb 4754 /*
69eb33dc 4755 * No extent in extent-tree contains block @newes->es_pblk,
6d9c85eb 4756 * then the block may stay in 1)a hole or 2)delayed-extent.
6d9c85eb 4757 */
06b0c886 4758 if (es.es_len == 0)
b3aff3e3 4759 /* A hole found. */
91dd8c11 4760 return 0;
b3aff3e3 4761
69eb33dc 4762 if (es.es_lblk > newes->es_lblk) {
b3aff3e3 4763 /* A hole found. */
69eb33dc
ZL
4764 newes->es_len = min(es.es_lblk - newes->es_lblk,
4765 newes->es_len);
91dd8c11 4766 return 0;
6873fa0d 4767 }
6d9c85eb 4768
69eb33dc 4769 newes->es_len = es.es_lblk + es.es_len - newes->es_lblk;
6873fa0d
ES
4770 }
4771
69eb33dc 4772 block = newes->es_lblk + newes->es_len;
e30b5dca 4773 ext4_es_find_delayed_extent_range(inode, block, EXT_MAX_BLOCKS, &es);
be401363
ZL
4774 if (es.es_len == 0)
4775 next_del = EXT_MAX_BLOCKS;
4776 else
4777 next_del = es.es_lblk;
4778
91dd8c11 4779 return next_del;
6873fa0d 4780}
6873fa0d
ES
4781/* fiemap flags we can handle specified here */
4782#define EXT4_FIEMAP_FLAGS (FIEMAP_FLAG_SYNC|FIEMAP_FLAG_XATTR)
4783
3a06d778
AK
4784static int ext4_xattr_fiemap(struct inode *inode,
4785 struct fiemap_extent_info *fieinfo)
6873fa0d
ES
4786{
4787 __u64 physical = 0;
4788 __u64 length;
4789 __u32 flags = FIEMAP_EXTENT_LAST;
4790 int blockbits = inode->i_sb->s_blocksize_bits;
4791 int error = 0;
4792
4793 /* in-inode? */
19f5fb7a 4794 if (ext4_test_inode_state(inode, EXT4_STATE_XATTR)) {
6873fa0d
ES
4795 struct ext4_iloc iloc;
4796 int offset; /* offset of xattr in inode */
4797
4798 error = ext4_get_inode_loc(inode, &iloc);
4799 if (error)
4800 return error;
a60697f4 4801 physical = (__u64)iloc.bh->b_blocknr << blockbits;
6873fa0d
ES
4802 offset = EXT4_GOOD_OLD_INODE_SIZE +
4803 EXT4_I(inode)->i_extra_isize;
4804 physical += offset;
4805 length = EXT4_SB(inode->i_sb)->s_inode_size - offset;
4806 flags |= FIEMAP_EXTENT_DATA_INLINE;
fd2dd9fb 4807 brelse(iloc.bh);
6873fa0d 4808 } else { /* external block */
a60697f4 4809 physical = (__u64)EXT4_I(inode)->i_file_acl << blockbits;
6873fa0d
ES
4810 length = inode->i_sb->s_blocksize;
4811 }
4812
4813 if (physical)
4814 error = fiemap_fill_next_extent(fieinfo, 0, physical,
4815 length, flags);
4816 return (error < 0 ? error : 0);
4817}
4818
4819int ext4_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo,
4820 __u64 start, __u64 len)
4821{
4822 ext4_lblk_t start_blk;
6873fa0d
ES
4823 int error = 0;
4824
94191985
TM
4825 if (ext4_has_inline_data(inode)) {
4826 int has_inline = 1;
4827
4828 error = ext4_inline_data_fiemap(inode, fieinfo, &has_inline);
4829
4830 if (has_inline)
4831 return error;
4832 }
4833
7869a4a6
TT
4834 if (fieinfo->fi_flags & FIEMAP_FLAG_CACHE) {
4835 error = ext4_ext_precache(inode);
4836 if (error)
4837 return error;
4838 }
4839
6873fa0d 4840 /* fallback to generic here if not in extents fmt */
12e9b892 4841 if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)))
6873fa0d
ES
4842 return generic_block_fiemap(inode, fieinfo, start, len,
4843 ext4_get_block);
4844
4845 if (fiemap_check_flags(fieinfo, EXT4_FIEMAP_FLAGS))
4846 return -EBADR;
4847
4848 if (fieinfo->fi_flags & FIEMAP_FLAG_XATTR) {
4849 error = ext4_xattr_fiemap(inode, fieinfo);
4850 } else {
aca92ff6
LM
4851 ext4_lblk_t len_blks;
4852 __u64 last_blk;
4853
6873fa0d 4854 start_blk = start >> inode->i_sb->s_blocksize_bits;
aca92ff6 4855 last_blk = (start + len - 1) >> inode->i_sb->s_blocksize_bits;
f17722f9
LC
4856 if (last_blk >= EXT_MAX_BLOCKS)
4857 last_blk = EXT_MAX_BLOCKS-1;
aca92ff6 4858 len_blks = ((ext4_lblk_t) last_blk) - start_blk + 1;
6873fa0d
ES
4859
4860 /*
91dd8c11
LC
4861 * Walk the extent tree gathering extent information
4862 * and pushing extents back to the user.
6873fa0d 4863 */
91dd8c11
LC
4864 error = ext4_fill_fiemap_extents(inode, start_blk,
4865 len_blks, fieinfo);
6873fa0d 4866 }
107a7bd3 4867 ext4_es_lru_add(inode);
6873fa0d
ES
4868 return error;
4869}