source: mainline/uspace/lib/ext4/libext4_filesystem.c@ 2f591127

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 2f591127 was 532f53d, checked in by Maurizio Lombardi <m.lombardi85@…>, 12 years ago

ext4: return the error code to the caller in case something fails.

  • Property mode set to 100644
File size: 37.0 KB
Line 
1/*
2 * Copyright (c) 2011 Martin Sucha
3 * Copyright (c) 2012 Frantisek Princ
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * - Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * - Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * - The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30/** @addtogroup libext4
31 * @{
32 */
33/**
34 * @file libext4_filesystem.c
35 * @brief More complex filesystem operations.
36 */
37
38#include <byteorder.h>
39#include <errno.h>
40#include <malloc.h>
41#include <ipc/vfs.h>
42#include "libext4.h"
43
44/** Initialize filesystem and read all needed data.
45 *
46 * @param fs Filesystem instance to be initialized
47 * @param service_id Identifier if device with the filesystem
48 *
49 * @return Error code
50 *
51 */
52int ext4_filesystem_init(ext4_filesystem_t *fs, service_id_t service_id,
53 enum cache_mode cmode)
54{
55 fs->device = service_id;
56
57 /* Initialize block library (4096 is size of communication channel) */
58 int rc = block_init(EXCHANGE_SERIALIZE, fs->device, 4096);
59 if (rc != EOK)
60 return rc;
61
62 /* Read superblock from device to memory */
63 ext4_superblock_t *temp_superblock;
64 rc = ext4_superblock_read_direct(fs->device, &temp_superblock);
65 if (rc != EOK) {
66 block_fini(fs->device);
67 return rc;
68 }
69
70 /* Read block size from superblock and check */
71 uint32_t block_size = ext4_superblock_get_block_size(temp_superblock);
72 if (block_size > EXT4_MAX_BLOCK_SIZE) {
73 block_fini(fs->device);
74 return ENOTSUP;
75 }
76
77 /* Initialize block caching by libblock */
78 rc = block_cache_init(service_id, block_size, 0, cmode);
79 if (rc != EOK) {
80 block_fini(fs->device);
81 return rc;
82 }
83
84 /* Compute limits for indirect block levels */
85 uint32_t block_ids_per_block = block_size / sizeof(uint32_t);
86 fs->inode_block_limits[0] = EXT4_INODE_DIRECT_BLOCK_COUNT;
87 fs->inode_blocks_per_level[0] = 1;
88 for (unsigned int i = 1; i < 4; i++) {
89 fs->inode_blocks_per_level[i] = fs->inode_blocks_per_level[i - 1] *
90 block_ids_per_block;
91 fs->inode_block_limits[i] = fs->inode_block_limits[i - 1] +
92 fs->inode_blocks_per_level[i];
93 }
94
95 /* Return loaded superblock */
96 fs->superblock = temp_superblock;
97
98 uint16_t state = ext4_superblock_get_state(fs->superblock);
99
100 if (((state & EXT4_SUPERBLOCK_STATE_VALID_FS) !=
101 EXT4_SUPERBLOCK_STATE_VALID_FS) ||
102 ((state & EXT4_SUPERBLOCK_STATE_ERROR_FS) ==
103 EXT4_SUPERBLOCK_STATE_ERROR_FS)) {
104 block_cache_fini(fs->device);
105 block_fini(fs->device);
106 return ENOTSUP;
107 }
108
109 /* Mark system as mounted */
110 ext4_superblock_set_state(fs->superblock, EXT4_SUPERBLOCK_STATE_ERROR_FS);
111 rc = ext4_superblock_write_direct(fs->device, fs->superblock);
112 if (rc != EOK) {
113 block_cache_fini(fs->device);
114 block_fini(fs->device);
115 return rc;
116 }
117
118 uint16_t mnt_count = ext4_superblock_get_mount_count(fs->superblock);
119 ext4_superblock_set_mount_count(fs->superblock, mnt_count + 1);
120
121 return EOK;
122}
123
124/** Destroy filesystem instance (used by unmount operation).
125 *
126 * @param fs Filesystem to be destroyed
127 *
128 * @return Error code
129 *
130 */
131int ext4_filesystem_fini(ext4_filesystem_t *fs)
132{
133 /* Write the superblock to the device */
134 ext4_superblock_set_state(fs->superblock, EXT4_SUPERBLOCK_STATE_VALID_FS);
135 int rc = ext4_superblock_write_direct(fs->device, fs->superblock);
136
137 /* Release memory space for superblock */
138 free(fs->superblock);
139
140 /* Finish work with block library */
141 block_cache_fini(fs->device);
142 block_fini(fs->device);
143
144 return rc;
145}
146
147/** Check sanity of the filesystem.
148 *
149 * Main is the check of the superblock structure.
150 *
151 * @param fs Filesystem to be checked
152 *
153 * @return Error code
154 *
155 */
156int ext4_filesystem_check_sanity(ext4_filesystem_t *fs)
157{
158 /* Check superblock */
159 return ext4_superblock_check_sanity(fs->superblock);
160}
161
162/** Check filesystem's features, if supported by this driver
163 *
164 * Function can return EOK and set read_only flag. It mean's that
165 * there are some not-supported features, that can cause problems
166 * during some write operations.
167 *
168 * @param fs Filesystem to be checked
169 * @param read_only Flag if filesystem should be mounted only for reading
170 *
171 * @return Error code
172 *
173 */
174int ext4_filesystem_check_features(ext4_filesystem_t *fs, bool *read_only)
175{
176 /* Feature flags are present only in higher revisions */
177 if (ext4_superblock_get_rev_level(fs->superblock) == 0) {
178 *read_only = false;
179 return EOK;
180 }
181
182 /*
183 * Check incompatible features - if filesystem has some,
184 * volume can't be mounted
185 */
186 uint32_t incompatible_features;
187 incompatible_features =
188 ext4_superblock_get_features_incompatible(fs->superblock);
189 incompatible_features &= ~EXT4_FEATURE_INCOMPAT_SUPP;
190 if (incompatible_features > 0)
191 return ENOTSUP;
192
193 /*
194 * Check read-only features, if filesystem has some,
195 * volume can be mount only in read-only mode
196 */
197 uint32_t compatible_read_only;
198 compatible_read_only =
199 ext4_superblock_get_features_read_only(fs->superblock);
200 compatible_read_only &= ~EXT4_FEATURE_RO_COMPAT_SUPP;
201 if (compatible_read_only > 0) {
202 *read_only = true;
203 return EOK;
204 }
205
206 return EOK;
207}
208
209
210/** Convert block address to relative index in block group.
211 *
212 * @param sb Superblock pointer
213 * @param block_addr Block number to convert
214 *
215 * @return Relative number of block
216 *
217 */
218uint32_t ext4_filesystem_blockaddr2_index_in_group(ext4_superblock_t *sb,
219 uint32_t block_addr)
220{
221 uint32_t blocks_per_group = ext4_superblock_get_blocks_per_group(sb);
222 uint32_t first_block = ext4_superblock_get_first_data_block(sb);
223
224 /* First block == 0 or 1 */
225 if (first_block == 0)
226 return block_addr % blocks_per_group;
227 else
228 return (block_addr - 1) % blocks_per_group;
229}
230
231
232/** Convert relative block address in group to absolute address.
233 *
234 * @param sb Superblock pointer
235 *
236 * @return Absolute block address
237 *
238 */
239uint32_t ext4_filesystem_index_in_group2blockaddr(ext4_superblock_t *sb,
240 uint32_t index, uint32_t bgid)
241{
242 uint32_t blocks_per_group = ext4_superblock_get_blocks_per_group(sb);
243
244 if (ext4_superblock_get_first_data_block(sb) == 0)
245 return bgid * blocks_per_group + index;
246 else
247 return bgid * blocks_per_group + index + 1;
248}
249
250/** Initialize block bitmap in block group.
251 *
252 * @param bg_ref Reference to block group
253 *
254 * @return Error code
255 *
256 */
257static int ext4_filesystem_init_block_bitmap(ext4_block_group_ref_t *bg_ref)
258{
259 /* Load bitmap */
260 uint32_t bitmap_block_addr = ext4_block_group_get_block_bitmap(
261 bg_ref->block_group, bg_ref->fs->superblock);
262
263 block_t *bitmap_block;
264 int rc = block_get(&bitmap_block, bg_ref->fs->device,
265 bitmap_block_addr, BLOCK_FLAGS_NOREAD);
266 if (rc != EOK)
267 return rc;
268
269 uint8_t *bitmap = bitmap_block->data;
270
271 /* Initialize all bitmap bits to zero */
272 uint32_t block_size = ext4_superblock_get_block_size(bg_ref->fs->superblock);
273 memset(bitmap, 0, block_size);
274
275 /* Determine first block and first data block in group */
276 uint32_t first_idx = 0;
277
278 uint32_t first_data = ext4_balloc_get_first_data_block_in_group(
279 bg_ref->fs->superblock, bg_ref);
280 uint32_t first_data_idx = ext4_filesystem_blockaddr2_index_in_group(
281 bg_ref->fs->superblock, first_data);
282
283 /* Set bits from to first block to first data block - 1 to one (allocated) */
284 for (uint32_t block = first_idx; block < first_data_idx; ++block)
285 ext4_bitmap_set_bit(bitmap, block);
286
287 bitmap_block->dirty = true;
288
289 /* Save bitmap */
290 return block_put(bitmap_block);
291}
292
293/** Initialize i-node bitmap in block group.
294 *
295 * @param bg_ref Reference to block group
296 *
297 * @return Error code
298 *
299 */
300static int ext4_filesystem_init_inode_bitmap(ext4_block_group_ref_t *bg_ref)
301{
302 /* Load bitmap */
303 uint32_t bitmap_block_addr = ext4_block_group_get_inode_bitmap(
304 bg_ref->block_group, bg_ref->fs->superblock);
305 block_t *bitmap_block;
306
307 int rc = block_get(&bitmap_block, bg_ref->fs->device,
308 bitmap_block_addr, BLOCK_FLAGS_NOREAD);
309 if (rc != EOK)
310 return rc;
311
312 uint8_t *bitmap = bitmap_block->data;
313
314 /* Initialize all bitmap bits to zero */
315 uint32_t block_size = ext4_superblock_get_block_size(bg_ref->fs->superblock);
316 uint32_t inodes_per_group =
317 ext4_superblock_get_inodes_per_group(bg_ref->fs->superblock);
318 memset(bitmap, 0, (inodes_per_group + 7) / 8);
319
320 uint32_t start_bit = inodes_per_group;
321 uint32_t end_bit = block_size * 8;
322
323 uint32_t i;
324 for (i = start_bit; i < ((start_bit + 7) & ~7UL); i++)
325 ext4_bitmap_set_bit(bitmap, i);
326
327 if (i < end_bit)
328 memset(bitmap + (i >> 3), 0xff, (end_bit - i) >> 3);
329
330 bitmap_block->dirty = true;
331
332 /* Save bitmap */
333 return block_put(bitmap_block);
334}
335
336/** Initialize i-node table in block group.
337 *
338 * @param bg_ref Reference to block group
339 *
340 * @return Error code
341 *
342 */
343static int ext4_filesystem_init_inode_table(ext4_block_group_ref_t *bg_ref)
344{
345 ext4_superblock_t *sb = bg_ref->fs->superblock;
346
347 uint32_t inode_size = ext4_superblock_get_inode_size(sb);
348 uint32_t block_size = ext4_superblock_get_block_size(sb);
349 uint32_t inodes_per_block = block_size / inode_size;
350
351 uint32_t inodes_in_group =
352 ext4_superblock_get_inodes_in_group(sb, bg_ref->index);
353
354 uint32_t table_blocks = inodes_in_group / inodes_per_block;
355
356 if (inodes_in_group % inodes_per_block)
357 table_blocks++;
358
359 /* Compute initialization bounds */
360 uint32_t first_block = ext4_block_group_get_inode_table_first_block(
361 bg_ref->block_group, sb);
362
363 uint32_t last_block = first_block + table_blocks - 1;
364
365 /* Initialization of all itable blocks */
366 for (uint32_t fblock = first_block; fblock <= last_block; ++fblock) {
367 block_t *block;
368 int rc = block_get(&block, bg_ref->fs->device, fblock,
369 BLOCK_FLAGS_NOREAD);
370 if (rc != EOK)
371 return rc;
372
373 memset(block->data, 0, block_size);
374 block->dirty = true;
375
376 rc = block_put(block);
377 if (rc != EOK)
378 return rc;
379 }
380
381 return EOK;
382}
383
384/** Get reference to block group specified by index.
385 *
386 * @param fs Filesystem to find block group on
387 * @param bgid Index of block group to load
388 * @param ref Output pointer for reference
389 *
390 * @return Error code
391 *
392 */
393int ext4_filesystem_get_block_group_ref(ext4_filesystem_t *fs, uint32_t bgid,
394 ext4_block_group_ref_t **ref)
395{
396 /* Allocate memory for new structure */
397 ext4_block_group_ref_t *newref =
398 malloc(sizeof(ext4_block_group_ref_t));
399 if (newref == NULL)
400 return ENOMEM;
401
402 /* Compute number of descriptors, that fits in one data block */
403 uint32_t descriptors_per_block =
404 ext4_superblock_get_block_size(fs->superblock) /
405 ext4_superblock_get_desc_size(fs->superblock);
406
407 /* Block group descriptor table starts at the next block after superblock */
408 aoff64_t block_id =
409 ext4_superblock_get_first_data_block(fs->superblock) + 1;
410
411 /* Find the block containing the descriptor we are looking for */
412 block_id += bgid / descriptors_per_block;
413 uint32_t offset = (bgid % descriptors_per_block) *
414 ext4_superblock_get_desc_size(fs->superblock);
415
416 /* Load block with descriptors */
417 int rc = block_get(&newref->block, fs->device, block_id, 0);
418 if (rc != EOK) {
419 free(newref);
420 return rc;
421 }
422
423 /* Inititialize in-memory representation */
424 newref->block_group = newref->block->data + offset;
425 newref->fs = fs;
426 newref->index = bgid;
427 newref->dirty = false;
428
429 *ref = newref;
430
431 if (ext4_block_group_has_flag(newref->block_group,
432 EXT4_BLOCK_GROUP_BLOCK_UNINIT)) {
433 rc = ext4_filesystem_init_block_bitmap(newref);
434 if (rc != EOK) {
435 block_put(newref->block);
436 free(newref);
437 return rc;
438 }
439
440 ext4_block_group_clear_flag(newref->block_group,
441 EXT4_BLOCK_GROUP_BLOCK_UNINIT);
442
443 newref->dirty = true;
444 }
445
446 if (ext4_block_group_has_flag(newref->block_group,
447 EXT4_BLOCK_GROUP_INODE_UNINIT)) {
448 rc = ext4_filesystem_init_inode_bitmap(newref);
449 if (rc != EOK) {
450 block_put(newref->block);
451 free(newref);
452 return rc;
453 }
454
455 ext4_block_group_clear_flag(newref->block_group,
456 EXT4_BLOCK_GROUP_INODE_UNINIT);
457
458 if (!ext4_block_group_has_flag(newref->block_group,
459 EXT4_BLOCK_GROUP_ITABLE_ZEROED)) {
460 rc = ext4_filesystem_init_inode_table(newref);
461 if (rc != EOK)
462 return rc;
463
464 ext4_block_group_set_flag(newref->block_group,
465 EXT4_BLOCK_GROUP_ITABLE_ZEROED);
466 }
467
468 newref->dirty = true;
469 }
470
471 return EOK;
472}
473
474/** Compute checksum of block group descriptor.
475 *
476 * @param sb Superblock
477 * @param bgid Index of block group in the filesystem
478 * @param bg Block group to compute checksum for
479 *
480 * @return Checksum value
481 *
482 */
483static uint16_t ext4_filesystem_bg_checksum(ext4_superblock_t *sb, uint32_t bgid,
484 ext4_block_group_t *bg)
485{
486 /* If checksum not supported, 0 will be returned */
487 uint16_t crc = 0;
488
489 /* Compute the checksum only if the filesystem supports it */
490 if (ext4_superblock_has_feature_read_only(sb,
491 EXT4_FEATURE_RO_COMPAT_GDT_CSUM)) {
492 void *base = bg;
493 void *checksum = &bg->checksum;
494
495 uint32_t offset = (uint32_t) (checksum - base);
496
497 /* Convert block group index to little endian */
498 uint32_t le_group = host2uint32_t_le(bgid);
499
500 /* Initialization */
501 crc = crc16(~0, sb->uuid, sizeof(sb->uuid));
502
503 /* Include index of block group */
504 crc = crc16(crc, (uint8_t *) &le_group, sizeof(le_group));
505
506 /* Compute crc from the first part (stop before checksum field) */
507 crc = crc16(crc, (uint8_t *) bg, offset);
508
509 /* Skip checksum */
510 offset += sizeof(bg->checksum);
511
512 /* Checksum of the rest of block group descriptor */
513 if ((ext4_superblock_has_feature_incompatible(sb,
514 EXT4_FEATURE_INCOMPAT_64BIT)) &&
515 (offset < ext4_superblock_get_desc_size(sb)))
516 crc = crc16(crc, ((uint8_t *) bg) + offset,
517 ext4_superblock_get_desc_size(sb) - offset);
518 }
519
520 return crc;
521}
522
523/** Put reference to block group.
524 *
525 * @oaram ref Pointer for reference to be put back
526 *
527 * @return Error code
528 *
529 */
530int ext4_filesystem_put_block_group_ref(ext4_block_group_ref_t *ref)
531{
532 /* Check if reference modified */
533 if (ref->dirty) {
534 /* Compute new checksum of block group */
535 uint16_t checksum =
536 ext4_filesystem_bg_checksum(ref->fs->superblock, ref->index,
537 ref->block_group);
538 ext4_block_group_set_checksum(ref->block_group, checksum);
539
540 /* Mark block dirty for writing changes to physical device */
541 ref->block->dirty = true;
542 }
543
544 /* Put back block, that contains block group descriptor */
545 int rc = block_put(ref->block);
546 free(ref);
547
548 return rc;
549}
550
551/** Get reference to i-node specified by index.
552 *
553 * @param fs Filesystem to find i-node on
554 * @param index Index of i-node to load
555 * @oaram ref Output pointer for reference
556 *
557 * @return Error code
558 *
559 */
560int ext4_filesystem_get_inode_ref(ext4_filesystem_t *fs, uint32_t index,
561 ext4_inode_ref_t **ref)
562{
563 /* Allocate memory for new structure */
564 ext4_inode_ref_t *newref =
565 malloc(sizeof(ext4_inode_ref_t));
566 if (newref == NULL)
567 return ENOMEM;
568
569 /* Compute number of i-nodes, that fits in one data block */
570 uint32_t inodes_per_group =
571 ext4_superblock_get_inodes_per_group(fs->superblock);
572
573 /*
574 * Inode numbers are 1-based, but it is simpler to work with 0-based
575 * when computing indices
576 */
577 index -= 1;
578 uint32_t block_group = index / inodes_per_group;
579 uint32_t offset_in_group = index % inodes_per_group;
580
581 /* Load block group, where i-node is located */
582 ext4_block_group_ref_t *bg_ref;
583 int rc = ext4_filesystem_get_block_group_ref(fs, block_group, &bg_ref);
584 if (rc != EOK) {
585 free(newref);
586 return rc;
587 }
588
589 /* Load block address, where i-node table is located */
590 uint32_t inode_table_start =
591 ext4_block_group_get_inode_table_first_block(bg_ref->block_group,
592 fs->superblock);
593
594 /* Put back block group reference (not needed more) */
595 rc = ext4_filesystem_put_block_group_ref(bg_ref);
596 if (rc != EOK) {
597 free(newref);
598 return rc;
599 }
600
601 /* Compute position of i-node in the block group */
602 uint16_t inode_size = ext4_superblock_get_inode_size(fs->superblock);
603 uint32_t block_size = ext4_superblock_get_block_size(fs->superblock);
604 uint32_t byte_offset_in_group = offset_in_group * inode_size;
605
606 /* Compute block address */
607 aoff64_t block_id = inode_table_start + (byte_offset_in_group / block_size);
608 rc = block_get(&newref->block, fs->device, block_id, 0);
609 if (rc != EOK) {
610 free(newref);
611 return rc;
612 }
613
614 /* Compute position of i-node in the data block */
615 uint32_t offset_in_block = byte_offset_in_group % block_size;
616 newref->inode = newref->block->data + offset_in_block;
617
618 /* We need to store the original value of index in the reference */
619 newref->index = index + 1;
620 newref->fs = fs;
621 newref->dirty = false;
622
623 *ref = newref;
624
625 return EOK;
626}
627
628/** Put reference to i-node.
629 *
630 * @param ref Pointer for reference to be put back
631 *
632 * @return Error code
633 *
634 */
635int ext4_filesystem_put_inode_ref(ext4_inode_ref_t *ref)
636{
637 /* Check if reference modified */
638 if (ref->dirty) {
639 /* Mark block dirty for writing changes to physical device */
640 ref->block->dirty = true;
641 }
642
643 /* Put back block, that contains i-node */
644 int rc = block_put(ref->block);
645 free(ref);
646
647 return rc;
648}
649
650/** Allocate new i-node in the filesystem.
651 *
652 * @param fs Filesystem to allocated i-node on
653 * @param inode_ref Output pointer to return reference to allocated i-node
654 * @param flags Flags to be set for newly created i-node
655 *
656 * @return Error code
657 *
658 */
659int ext4_filesystem_alloc_inode(ext4_filesystem_t *fs,
660 ext4_inode_ref_t **inode_ref, int flags)
661{
662 /* Check if newly allocated i-node will be a directory */
663 bool is_dir = false;
664 if (flags & L_DIRECTORY)
665 is_dir = true;
666
667 /* Allocate inode by allocation algorithm */
668 uint32_t index;
669 int rc = ext4_ialloc_alloc_inode(fs, &index, is_dir);
670 if (rc != EOK)
671 return rc;
672
673 /* Load i-node from on-disk i-node table */
674 rc = ext4_filesystem_get_inode_ref(fs, index, inode_ref);
675 if (rc != EOK) {
676 ext4_ialloc_free_inode(fs, index, is_dir);
677 return rc;
678 }
679
680 /* Initialize i-node */
681 ext4_inode_t *inode = (*inode_ref)->inode;
682
683 uint16_t mode;
684 if (is_dir) {
685 /*
686 * Default directory permissions to be compatible with other systems
687 * 0777 (octal) == rwxrwxrwx
688 */
689
690 mode = 0777;
691 mode |= EXT4_INODE_MODE_DIRECTORY;
692 ext4_inode_set_mode(fs->superblock, inode, mode);
693 ext4_inode_set_links_count(inode, 1); /* '.' entry */
694 } else {
695 /*
696 * Default file permissions to be compatible with other systems
697 * 0666 (octal) == rw-rw-rw-
698 */
699
700 mode = 0666;
701 mode |= EXT4_INODE_MODE_FILE;
702 ext4_inode_set_mode(fs->superblock, inode, mode);
703 ext4_inode_set_links_count(inode, 0);
704 }
705
706 ext4_inode_set_uid(inode, 0);
707 ext4_inode_set_gid(inode, 0);
708 ext4_inode_set_size(inode, 0);
709 ext4_inode_set_access_time(inode, 0);
710 ext4_inode_set_change_inode_time(inode, 0);
711 ext4_inode_set_modification_time(inode, 0);
712 ext4_inode_set_deletion_time(inode, 0);
713 ext4_inode_set_blocks_count(fs->superblock, inode, 0);
714 ext4_inode_set_flags(inode, 0);
715 ext4_inode_set_generation(inode, 0);
716
717 /* Reset blocks array */
718 for (uint32_t i = 0; i < EXT4_INODE_BLOCKS; i++)
719 inode->blocks[i] = 0;
720
721 /* Initialize extents if needed */
722 if (ext4_superblock_has_feature_incompatible(
723 fs->superblock, EXT4_FEATURE_INCOMPAT_EXTENTS)) {
724 ext4_inode_set_flag(inode, EXT4_INODE_FLAG_EXTENTS);
725
726 /* Initialize extent root header */
727 ext4_extent_header_t *header = ext4_inode_get_extent_header(inode);
728 ext4_extent_header_set_depth(header, 0);
729 ext4_extent_header_set_entries_count(header, 0);
730 ext4_extent_header_set_generation(header, 0);
731 ext4_extent_header_set_magic(header, EXT4_EXTENT_MAGIC);
732
733 uint16_t max_entries = (EXT4_INODE_BLOCKS * sizeof(uint32_t) -
734 sizeof(ext4_extent_header_t)) / sizeof(ext4_extent_t);
735
736 ext4_extent_header_set_max_entries_count(header, max_entries);
737 }
738
739 (*inode_ref)->dirty = true;
740
741 return EOK;
742}
743
744/** Release i-node and mark it as free.
745 *
746 * @param inode_ref I-node to be released
747 *
748 * @return Error code
749 *
750 */
751int ext4_filesystem_free_inode(ext4_inode_ref_t *inode_ref)
752{
753 ext4_filesystem_t *fs = inode_ref->fs;
754
755 /* For extents must be data block destroyed by other way */
756 if ((ext4_superblock_has_feature_incompatible(fs->superblock,
757 EXT4_FEATURE_INCOMPAT_EXTENTS)) &&
758 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS))) {
759 /* Data structures are released during truncate operation... */
760 goto finish;
761 }
762
763 /* Release all indirect (no data) blocks */
764
765 /* 1) Single indirect */
766 uint32_t fblock = ext4_inode_get_indirect_block(inode_ref->inode, 0);
767 if (fblock != 0) {
768 int rc = ext4_balloc_free_block(inode_ref, fblock);
769 if (rc != EOK)
770 return rc;
771
772 ext4_inode_set_indirect_block(inode_ref->inode, 0, 0);
773 }
774
775 block_t *block;
776 uint32_t block_size = ext4_superblock_get_block_size(fs->superblock);
777 uint32_t count = block_size / sizeof(uint32_t);
778
779 /* 2) Double indirect */
780 fblock = ext4_inode_get_indirect_block(inode_ref->inode, 1);
781 if (fblock != 0) {
782 int rc = block_get(&block, fs->device, fblock, BLOCK_FLAGS_NONE);
783 if (rc != EOK)
784 return rc;
785
786 uint32_t ind_block;
787 for (uint32_t offset = 0; offset < count; ++offset) {
788 ind_block = uint32_t_le2host(((uint32_t *) block->data)[offset]);
789
790 if (ind_block != 0) {
791 rc = ext4_balloc_free_block(inode_ref, ind_block);
792 if (rc != EOK) {
793 block_put(block);
794 return rc;
795 }
796 }
797 }
798
799 rc = block_put(block);
800 if (rc != EOK)
801 return rc;
802
803 rc = ext4_balloc_free_block(inode_ref, fblock);
804 if (rc != EOK)
805 return rc;
806
807 ext4_inode_set_indirect_block(inode_ref->inode, 1, 0);
808 }
809
810 /* 3) Tripple indirect */
811 block_t *subblock;
812 fblock = ext4_inode_get_indirect_block(inode_ref->inode, 2);
813 if (fblock != 0) {
814 int rc = block_get(&block, fs->device, fblock, BLOCK_FLAGS_NONE);
815 if (rc != EOK)
816 return rc;
817
818 uint32_t ind_block;
819 for (uint32_t offset = 0; offset < count; ++offset) {
820 ind_block = uint32_t_le2host(((uint32_t *) block->data)[offset]);
821
822 if (ind_block != 0) {
823 rc = block_get(&subblock, fs->device, ind_block,
824 BLOCK_FLAGS_NONE);
825 if (rc != EOK) {
826 block_put(block);
827 return rc;
828 }
829
830 uint32_t ind_subblock;
831 for (uint32_t suboffset = 0; suboffset < count;
832 ++suboffset) {
833 ind_subblock = uint32_t_le2host(((uint32_t *)
834 subblock->data)[suboffset]);
835
836 if (ind_subblock != 0) {
837 rc = ext4_balloc_free_block(inode_ref, ind_subblock);
838 if (rc != EOK) {
839 block_put(subblock);
840 block_put(block);
841 return rc;
842 }
843 }
844 }
845
846 rc = block_put(subblock);
847 if (rc != EOK)
848 return rc;
849 }
850
851 rc = ext4_balloc_free_block(inode_ref, ind_block);
852 if (rc != EOK) {
853 block_put(block);
854 return rc;
855 }
856 }
857
858 rc = block_put(block);
859 if (rc != EOK)
860 return rc;
861
862 rc = ext4_balloc_free_block(inode_ref, fblock);
863 if (rc != EOK)
864 return rc;
865
866 ext4_inode_set_indirect_block(inode_ref->inode, 2, 0);
867 }
868
869finish:
870 /* Mark inode dirty for writing to the physical device */
871 inode_ref->dirty = true;
872
873 /* Free block with extended attributes if present */
874 uint32_t xattr_block = ext4_inode_get_file_acl(
875 inode_ref->inode, fs->superblock);
876 if (xattr_block) {
877 int rc = ext4_balloc_free_block(inode_ref, xattr_block);
878 if (rc != EOK)
879 return rc;
880
881 ext4_inode_set_file_acl(inode_ref->inode, fs->superblock, 0);
882 }
883
884 /* Free inode by allocator */
885 int rc;
886 if (ext4_inode_is_type(fs->superblock, inode_ref->inode,
887 EXT4_INODE_MODE_DIRECTORY))
888 rc = ext4_ialloc_free_inode(fs, inode_ref->index, true);
889 else
890 rc = ext4_ialloc_free_inode(fs, inode_ref->index, false);
891
892 return rc;
893}
894
895/** Truncate i-node data blocks.
896 *
897 * @param inode_ref I-node to be truncated
898 * @param new_size New size of inode (must be < current size)
899 *
900 * @return Error code
901 *
902 */
903int ext4_filesystem_truncate_inode(ext4_inode_ref_t *inode_ref,
904 aoff64_t new_size)
905{
906 ext4_superblock_t *sb = inode_ref->fs->superblock;
907
908 /* Check flags, if i-node can be truncated */
909 if (!ext4_inode_can_truncate(sb, inode_ref->inode))
910 return EINVAL;
911
912 /* If sizes are equal, nothing has to be done. */
913 aoff64_t old_size = ext4_inode_get_size(sb, inode_ref->inode);
914 if (old_size == new_size)
915 return EOK;
916
917 /* It's not suppported to make the larger file by truncate operation */
918 if (old_size < new_size)
919 return EINVAL;
920
921 /* Compute how many blocks will be released */
922 aoff64_t size_diff = old_size - new_size;
923 uint32_t block_size = ext4_superblock_get_block_size(sb);
924 uint32_t diff_blocks_count = size_diff / block_size;
925 if (size_diff % block_size != 0)
926 diff_blocks_count++;
927
928 uint32_t old_blocks_count = old_size / block_size;
929 if (old_size % block_size != 0)
930 old_blocks_count++;
931
932 if ((ext4_superblock_has_feature_incompatible(inode_ref->fs->superblock,
933 EXT4_FEATURE_INCOMPAT_EXTENTS)) &&
934 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS))) {
935 /* Extents require special operation */
936 int rc = ext4_extent_release_blocks_from(inode_ref,
937 old_blocks_count - diff_blocks_count);
938 if (rc != EOK)
939 return rc;
940 } else {
941 /* Release data blocks from the end of file */
942
943 /* Starting from 1 because of logical blocks are numbered from 0 */
944 for (uint32_t i = 1; i <= diff_blocks_count; ++i) {
945 int rc = ext4_filesystem_release_inode_block(inode_ref,
946 old_blocks_count - i);
947 if (rc != EOK)
948 return rc;
949 }
950 }
951
952 /* Update i-node */
953 ext4_inode_set_size(inode_ref->inode, new_size);
954 inode_ref->dirty = true;
955
956 return EOK;
957}
958
959/** Get physical block address by logical index of the block.
960 *
961 * @param inode_ref I-node to read block address from
962 * @param iblock Logical index of block
963 * @param fblock Output pointer for return physical block address
964 *
965 * @return Error code
966 *
967 */
968int ext4_filesystem_get_inode_data_block_index(ext4_inode_ref_t *inode_ref,
969 aoff64_t iblock, uint32_t *fblock)
970{
971 ext4_filesystem_t *fs = inode_ref->fs;
972
973 /* For empty file is situation simple */
974 if (ext4_inode_get_size(fs->superblock, inode_ref->inode) == 0) {
975 *fblock = 0;
976 return EOK;
977 }
978
979 uint32_t current_block;
980
981 /* Handle i-node using extents */
982 if ((ext4_superblock_has_feature_incompatible(fs->superblock,
983 EXT4_FEATURE_INCOMPAT_EXTENTS)) &&
984 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS))) {
985 int rc = ext4_extent_find_block(inode_ref, iblock, &current_block);
986 if (rc != EOK)
987 return rc;
988
989 *fblock = current_block;
990 return EOK;
991 }
992
993 ext4_inode_t *inode = inode_ref->inode;
994
995 /* Direct block are read directly from array in i-node structure */
996 if (iblock < EXT4_INODE_DIRECT_BLOCK_COUNT) {
997 current_block = ext4_inode_get_direct_block(inode, (uint32_t) iblock);
998 *fblock = current_block;
999 return EOK;
1000 }
1001
1002 /* Determine indirection level of the target block */
1003 unsigned int level = 0;
1004 for (unsigned int i = 1; i < 4; i++) {
1005 if (iblock < fs->inode_block_limits[i]) {
1006 level = i;
1007 break;
1008 }
1009 }
1010
1011 if (level == 0)
1012 return EIO;
1013
1014 /* Compute offsets for the topmost level */
1015 aoff64_t block_offset_in_level =
1016 iblock - fs->inode_block_limits[level - 1];
1017 current_block = ext4_inode_get_indirect_block(inode, level - 1);
1018 uint32_t offset_in_block =
1019 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1020
1021 /* Sparse file */
1022 if (current_block == 0) {
1023 *fblock = 0;
1024 return EOK;
1025 }
1026
1027 block_t *block;
1028
1029 /*
1030 * Navigate through other levels, until we find the block number
1031 * or find null reference meaning we are dealing with sparse file
1032 */
1033 while (level > 0) {
1034 /* Load indirect block */
1035 int rc = block_get(&block, fs->device, current_block, 0);
1036 if (rc != EOK)
1037 return rc;
1038
1039 /* Read block address from indirect block */
1040 current_block =
1041 uint32_t_le2host(((uint32_t *) block->data)[offset_in_block]);
1042
1043 /* Put back indirect block untouched */
1044 rc = block_put(block);
1045 if (rc != EOK)
1046 return rc;
1047
1048 /* Check for sparse file */
1049 if (current_block == 0) {
1050 *fblock = 0;
1051 return EOK;
1052 }
1053
1054 /* Jump to the next level */
1055 level--;
1056
1057 /* Termination condition - we have address of data block loaded */
1058 if (level == 0)
1059 break;
1060
1061 /* Visit the next level */
1062 block_offset_in_level %= fs->inode_blocks_per_level[level];
1063 offset_in_block =
1064 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1065 }
1066
1067 *fblock = current_block;
1068
1069 return EOK;
1070}
1071
1072/** Set physical block address for the block logical address into the i-node.
1073 *
1074 * @param inode_ref I-node to set block address to
1075 * @param iblock Logical index of block
1076 * @param fblock Physical block address
1077 *
1078 * @return Error code
1079 *
1080 */
1081int ext4_filesystem_set_inode_data_block_index(ext4_inode_ref_t *inode_ref,
1082 aoff64_t iblock, uint32_t fblock)
1083{
1084 ext4_filesystem_t *fs = inode_ref->fs;
1085
1086 /* Handle inode using extents */
1087 if ((ext4_superblock_has_feature_compatible(fs->superblock,
1088 EXT4_FEATURE_INCOMPAT_EXTENTS)) &&
1089 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS))) {
1090 /* Not reachable */
1091 return ENOTSUP;
1092 }
1093
1094 /* Handle simple case when we are dealing with direct reference */
1095 if (iblock < EXT4_INODE_DIRECT_BLOCK_COUNT) {
1096 ext4_inode_set_direct_block(inode_ref->inode, (uint32_t) iblock, fblock);
1097 inode_ref->dirty = true;
1098
1099 return EOK;
1100 }
1101
1102 /* Determine the indirection level needed to get the desired block */
1103 unsigned int level = 0;
1104 for (unsigned int i = 1; i < 4; i++) {
1105 if (iblock < fs->inode_block_limits[i]) {
1106 level = i;
1107 break;
1108 }
1109 }
1110
1111 if (level == 0)
1112 return EIO;
1113
1114 uint32_t block_size = ext4_superblock_get_block_size(fs->superblock);
1115
1116 /* Compute offsets for the topmost level */
1117 aoff64_t block_offset_in_level =
1118 iblock - fs->inode_block_limits[level - 1];
1119 uint32_t current_block =
1120 ext4_inode_get_indirect_block(inode_ref->inode, level - 1);
1121 uint32_t offset_in_block =
1122 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1123
1124 uint32_t new_block_addr;
1125 block_t *block;
1126 block_t *new_block;
1127
1128 /* Is needed to allocate indirect block on the i-node level */
1129 if (current_block == 0) {
1130 /* Allocate new indirect block */
1131 int rc = ext4_balloc_alloc_block(inode_ref, &new_block_addr);
1132 if (rc != EOK)
1133 return rc;
1134
1135 /* Update i-node */
1136 ext4_inode_set_indirect_block(inode_ref->inode, level - 1,
1137 new_block_addr);
1138 inode_ref->dirty = true;
1139
1140 /* Load newly allocated block */
1141 rc = block_get(&new_block, fs->device, new_block_addr,
1142 BLOCK_FLAGS_NOREAD);
1143 if (rc != EOK) {
1144 ext4_balloc_free_block(inode_ref, new_block_addr);
1145 return rc;
1146 }
1147
1148 /* Initialize new block */
1149 memset(new_block->data, 0, block_size);
1150 new_block->dirty = true;
1151
1152 /* Put back the allocated block */
1153 rc = block_put(new_block);
1154 if (rc != EOK)
1155 return rc;
1156
1157 current_block = new_block_addr;
1158 }
1159
1160 /*
1161 * Navigate through other levels, until we find the block number
1162 * or find null reference meaning we are dealing with sparse file
1163 */
1164 while (level > 0) {
1165 int rc = block_get(&block, fs->device, current_block, 0);
1166 if (rc != EOK)
1167 return rc;
1168
1169 current_block =
1170 uint32_t_le2host(((uint32_t *) block->data)[offset_in_block]);
1171
1172 if ((level > 1) && (current_block == 0)) {
1173 /* Allocate new block */
1174 rc = ext4_balloc_alloc_block(inode_ref, &new_block_addr);
1175 if (rc != EOK) {
1176 block_put(block);
1177 return rc;
1178 }
1179
1180 /* Load newly allocated block */
1181 rc = block_get(&new_block, fs->device, new_block_addr,
1182 BLOCK_FLAGS_NOREAD);
1183 if (rc != EOK) {
1184 block_put(block);
1185 return rc;
1186 }
1187
1188 /* Initialize allocated block */
1189 memset(new_block->data, 0, block_size);
1190 new_block->dirty = true;
1191
1192 rc = block_put(new_block);
1193 if (rc != EOK) {
1194 block_put(block);
1195 return rc;
1196 }
1197
1198 /* Write block address to the parent */
1199 ((uint32_t *) block->data)[offset_in_block] =
1200 host2uint32_t_le(new_block_addr);
1201 block->dirty = true;
1202 current_block = new_block_addr;
1203 }
1204
1205 /* Will be finished, write the fblock address */
1206 if (level == 1) {
1207 ((uint32_t *) block->data)[offset_in_block] =
1208 host2uint32_t_le(fblock);
1209 block->dirty = true;
1210 }
1211
1212 rc = block_put(block);
1213 if (rc != EOK)
1214 return rc;
1215
1216 level--;
1217
1218 /*
1219 * If we are on the last level, break here as
1220 * there is no next level to visit
1221 */
1222 if (level == 0)
1223 break;
1224
1225 /* Visit the next level */
1226 block_offset_in_level %= fs->inode_blocks_per_level[level];
1227 offset_in_block =
1228 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1229 }
1230
1231 return EOK;
1232}
1233
1234/** Release data block from i-node
1235 *
1236 * @param inode_ref I-node to release block from
1237 * @param iblock Logical block to be released
1238 *
1239 * @return Error code
1240 *
1241 */
1242int ext4_filesystem_release_inode_block(ext4_inode_ref_t *inode_ref,
1243 uint32_t iblock)
1244{
1245 uint32_t fblock;
1246
1247 ext4_filesystem_t *fs = inode_ref->fs;
1248
1249 /* Extents are handled otherwise = there is not support in this function */
1250 assert(!(ext4_superblock_has_feature_incompatible(fs->superblock,
1251 EXT4_FEATURE_INCOMPAT_EXTENTS) &&
1252 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS))));
1253
1254 ext4_inode_t *inode = inode_ref->inode;
1255
1256 /* Handle simple case when we are dealing with direct reference */
1257 if (iblock < EXT4_INODE_DIRECT_BLOCK_COUNT) {
1258 fblock = ext4_inode_get_direct_block(inode, iblock);
1259
1260 /* Sparse file */
1261 if (fblock == 0)
1262 return EOK;
1263
1264 ext4_inode_set_direct_block(inode, iblock, 0);
1265 return ext4_balloc_free_block(inode_ref, fblock);
1266 }
1267
1268 /* Determine the indirection level needed to get the desired block */
1269 unsigned int level = 0;
1270 for (unsigned int i = 1; i < 4; i++) {
1271 if (iblock < fs->inode_block_limits[i]) {
1272 level = i;
1273 break;
1274 }
1275 }
1276
1277 if (level == 0)
1278 return EIO;
1279
1280 /* Compute offsets for the topmost level */
1281 aoff64_t block_offset_in_level =
1282 iblock - fs->inode_block_limits[level - 1];
1283 uint32_t current_block =
1284 ext4_inode_get_indirect_block(inode, level - 1);
1285 uint32_t offset_in_block =
1286 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1287
1288 /*
1289 * Navigate through other levels, until we find the block number
1290 * or find null reference meaning we are dealing with sparse file
1291 */
1292 block_t *block;
1293 while (level > 0) {
1294
1295 /* Sparse check */
1296 if (current_block == 0)
1297 return EOK;
1298
1299 int rc = block_get(&block, fs->device, current_block, 0);
1300 if (rc != EOK)
1301 return rc;
1302
1303 current_block =
1304 uint32_t_le2host(((uint32_t *) block->data)[offset_in_block]);
1305
1306 /* Set zero if physical data block address found */
1307 if (level == 1) {
1308 ((uint32_t *) block->data)[offset_in_block] =
1309 host2uint32_t_le(0);
1310 block->dirty = true;
1311 }
1312
1313 rc = block_put(block);
1314 if (rc != EOK)
1315 return rc;
1316
1317 level--;
1318
1319 /*
1320 * If we are on the last level, break here as
1321 * there is no next level to visit
1322 */
1323 if (level == 0)
1324 break;
1325
1326 /* Visit the next level */
1327 block_offset_in_level %= fs->inode_blocks_per_level[level];
1328 offset_in_block =
1329 block_offset_in_level / fs->inode_blocks_per_level[level - 1];
1330 }
1331
1332 fblock = current_block;
1333 if (fblock == 0)
1334 return EOK;
1335
1336 /* Physical block is not referenced, it can be released */
1337 return ext4_balloc_free_block(inode_ref, fblock);
1338}
1339
1340/** Append following logical block to the i-node.
1341 *
1342 * @param inode_ref I-node to append block to
1343 * @param fblock Output physical block address of newly allocated block
1344 * @param iblock Output logical number of newly allocated block
1345 *
1346 * @return Error code
1347 *
1348 */
1349int ext4_filesystem_append_inode_block(ext4_inode_ref_t *inode_ref,
1350 uint32_t *fblock, uint32_t *iblock)
1351{
1352 /* Handle extents separately */
1353 if ((ext4_superblock_has_feature_incompatible(inode_ref->fs->superblock,
1354 EXT4_FEATURE_INCOMPAT_EXTENTS)) &&
1355 (ext4_inode_has_flag(inode_ref->inode, EXT4_INODE_FLAG_EXTENTS)))
1356 return ext4_extent_append_block(inode_ref, iblock, fblock, true);
1357
1358 ext4_superblock_t *sb = inode_ref->fs->superblock;
1359
1360 /* Compute next block index and allocate data block */
1361 uint64_t inode_size = ext4_inode_get_size(sb, inode_ref->inode);
1362 uint32_t block_size = ext4_superblock_get_block_size(sb);
1363
1364 /* Align size i-node size */
1365 if ((inode_size % block_size) != 0)
1366 inode_size += block_size - (inode_size % block_size);
1367
1368 /* Logical blocks are numbered from 0 */
1369 uint32_t new_block_idx = inode_size / block_size;
1370
1371 /* Allocate new physical block */
1372 uint32_t phys_block;
1373 int rc = ext4_balloc_alloc_block(inode_ref, &phys_block);
1374 if (rc != EOK)
1375 return rc;
1376
1377 /* Add physical block address to the i-node */
1378 rc = ext4_filesystem_set_inode_data_block_index(inode_ref,
1379 new_block_idx, phys_block);
1380 if (rc != EOK) {
1381 ext4_balloc_free_block(inode_ref, phys_block);
1382 return rc;
1383 }
1384
1385 /* Update i-node */
1386 ext4_inode_set_size(inode_ref->inode, inode_size + block_size);
1387 inode_ref->dirty = true;
1388
1389 *fblock = phys_block;
1390 *iblock = new_block_idx;
1391
1392 return EOK;
1393}
1394
1395/**
1396 * @}
1397 */
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