1 /*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16 #include "ext4_utils.h"
17 #include "make_ext4fs.h"
18 #include "ext4_extents.h"
19 #include "output_file.h"
20 #include "backed_block.h"
21 #include "allocate.h"
22 #include "ext4fixup.h"
23
24 #include <sys/types.h>
25 #include <sys/stat.h>
26 #include <sys/types.h>
27 #include <sys/mman.h>
28 #include <fcntl.h>
29 #include <unistd.h>
30
31 #if defined(__APPLE__) && defined(__MACH__)
32 #define lseek64 lseek
33 #define off64_t off_t
34 #endif
35
36 /* The inode block count for a file/directory is in units of 512 byte blocks,
37 * _NOT_ the filesystem block size!
38 */
39 #define INODE_BLOCK_SIZE 512
40
41 #define MAX_EXT4_BLOCK_SIZE 4096
42
43 /* The two modes the recurse_dir() can be in */
44 #define SANITY_CHECK_PASS 1
45 #define MARK_INODE_NUMS 2
46 #define UPDATE_INODE_NUMS 3
47
48 /* Magic numbers to indicate what state the update process is in */
49 #define MAGIC_STATE_MARKING_INUMS 0x7000151515565512ll
50 #define MAGIC_STATE_UPDATING_INUMS 0x6121131211735123ll
51 #define MAGIC_STATE_UPDATING_SB 0x15e1715151558477ll
52
53 /* Internal state variables corresponding to the magic numbers */
54 #define STATE_UNSET 0
55 #define STATE_MARKING_INUMS 1
56 #define STATE_UPDATING_INUMS 2
57 #define STATE_UPDATING_SB 3
58
59 /* Used for automated testing of this programs ability to stop and be restarted wthout error */
60 static int bail_phase = 0;
61 static int bail_loc = 0;
62 static int bail_count = 0;
63 static int count = 0;
64
65 /* global flags */
66 static int verbose = 0;
67 static int no_write = 0;
68
69 static int new_inodes_per_group = 0;
70
71 static int no_write_fixup_state = 0;
72
compute_new_inum(unsigned int old_inum)73 static int compute_new_inum(unsigned int old_inum)
74 {
75 unsigned int group, offset;
76
77 group = (old_inum - 1) / info.inodes_per_group;
78 offset = (old_inum -1) % info.inodes_per_group;
79
80 return (group * new_inodes_per_group) + offset + 1;
81 }
82
83 /* Function to read the primary superblock */
read_sb(int fd,struct ext4_super_block * sb)84 static void read_sb(int fd, struct ext4_super_block *sb)
85 {
86 off64_t ret;
87
88 ret = lseek64(fd, 1024, SEEK_SET);
89 if (ret < 0)
90 critical_error_errno("failed to seek to superblock");
91
92 ret = read(fd, sb, sizeof(*sb));
93 if (ret < 0)
94 critical_error_errno("failed to read superblock");
95 if (ret != sizeof(*sb))
96 critical_error("failed to read all of superblock");
97 }
98
99 /* Function to write a primary or backup superblock at a given offset */
write_sb(int fd,unsigned long long offset,struct ext4_super_block * sb)100 static void write_sb(int fd, unsigned long long offset, struct ext4_super_block *sb)
101 {
102 off64_t ret;
103
104 if (no_write) {
105 return;
106 }
107
108 ret = lseek64(fd, offset, SEEK_SET);
109 if (ret < 0)
110 critical_error_errno("failed to seek to superblock");
111
112 ret = write(fd, sb, sizeof(*sb));
113 if (ret < 0)
114 critical_error_errno("failed to write superblock");
115 if (ret != sizeof(*sb))
116 critical_error("failed to write all of superblock");
117 }
118
get_fs_fixup_state(int fd)119 static int get_fs_fixup_state(int fd)
120 {
121 unsigned long long magic;
122 int ret, len;
123
124 if (no_write) {
125 return no_write_fixup_state;
126 }
127
128 lseek64(fd, 0, SEEK_SET);
129 len = read(fd, &magic, sizeof(magic));
130 if (len != sizeof(magic)) {
131 critical_error("cannot read fixup_state\n");
132 }
133
134 switch (magic) {
135 case MAGIC_STATE_MARKING_INUMS:
136 ret = STATE_MARKING_INUMS;
137 break;
138 case MAGIC_STATE_UPDATING_INUMS:
139 ret = STATE_UPDATING_INUMS;
140 break;
141 case MAGIC_STATE_UPDATING_SB:
142 ret = STATE_UPDATING_SB;
143 break;
144 default:
145 ret = STATE_UNSET;
146 }
147 return ret;
148 }
149
set_fs_fixup_state(int fd,int state)150 static int set_fs_fixup_state(int fd, int state)
151 {
152 unsigned long long magic;
153 struct ext4_super_block sb;
154 int len;
155
156 if (no_write) {
157 no_write_fixup_state = state;
158 return 0;
159 }
160
161 switch (state) {
162 case STATE_MARKING_INUMS:
163 magic = MAGIC_STATE_MARKING_INUMS;
164 break;
165 case STATE_UPDATING_INUMS:
166 magic = MAGIC_STATE_UPDATING_INUMS;
167 break;
168 case STATE_UPDATING_SB:
169 magic = MAGIC_STATE_UPDATING_SB;
170 break;
171 case STATE_UNSET:
172 default:
173 magic = 0ll;
174 break;
175 }
176
177 lseek64(fd, 0, SEEK_SET);
178 len = write(fd, &magic, sizeof(magic));
179 if (len != sizeof(magic)) {
180 critical_error("cannot write fixup_state\n");
181 }
182
183 read_sb(fd, &sb);
184 if (magic) {
185 /* If we are in the process of updating the filesystem, make it unmountable */
186 sb.s_desc_size |= 1;
187 } else {
188 /* we are done, so make the filesystem mountable again */
189 sb.s_desc_size &= ~1;
190 }
191 write_sb(fd, 1024, &sb);
192
193 return 0;
194 }
195
read_ext(int fd)196 static int read_ext(int fd)
197 {
198 off64_t ret;
199 struct ext4_super_block sb;
200 unsigned int i;
201
202 read_sb(fd, &sb);
203
204 ext4_parse_sb(&sb);
205
206 if (info.feat_incompat & EXT4_FEATURE_INCOMPAT_RECOVER) {
207 critical_error("Filesystem needs recovery first, mount and unmount to do that\n");
208 }
209
210 /* Clear the low bit which is set while this tool is in progress.
211 * If the tool crashes, it will still be set when we restart.
212 * The low bit is set to make the filesystem unmountable while
213 * it is being fixed up. Also allow 0, which means the old ext2
214 * size is in use.
215 */
216 if (((sb.s_desc_size & ~1) != sizeof(struct ext2_group_desc)) &&
217 ((sb.s_desc_size & ~1) != 0))
218 critical_error("error: bg_desc_size != sizeof(struct ext2_group_desc)\n");
219
220 ret = lseek64(fd, info.len, SEEK_SET);
221 if (ret < 0)
222 critical_error_errno("failed to seek to end of input image");
223
224 ret = lseek64(fd, info.block_size * (aux_info.first_data_block + 1), SEEK_SET);
225 if (ret < 0)
226 critical_error_errno("failed to seek to block group descriptors");
227
228 ret = read(fd, aux_info.bg_desc, info.block_size * aux_info.bg_desc_blocks);
229 if (ret < 0)
230 critical_error_errno("failed to read block group descriptors");
231 if (ret != (int)info.block_size * (int)aux_info.bg_desc_blocks)
232 critical_error("failed to read all of block group descriptors");
233
234 if (verbose) {
235 printf("Found filesystem with parameters:\n");
236 printf(" Size: %llu\n", info.len);
237 printf(" Block size: %d\n", info.block_size);
238 printf(" Blocks per group: %d\n", info.blocks_per_group);
239 printf(" Inodes per group: %d\n", info.inodes_per_group);
240 printf(" Inode size: %d\n", info.inode_size);
241 printf(" Label: %s\n", info.label);
242 printf(" Blocks: %llu\n", aux_info.len_blocks);
243 printf(" Block groups: %d\n", aux_info.groups);
244 printf(" Reserved block group size: %d\n", info.bg_desc_reserve_blocks);
245 printf(" Used %d/%d inodes and %d/%d blocks\n",
246 aux_info.sb->s_inodes_count - aux_info.sb->s_free_inodes_count,
247 aux_info.sb->s_inodes_count,
248 aux_info.sb->s_blocks_count_lo - aux_info.sb->s_free_blocks_count_lo,
249 aux_info.sb->s_blocks_count_lo);
250 }
251
252 return 0;
253 }
254
read_inode(int fd,unsigned int inum,struct ext4_inode * inode)255 static int read_inode(int fd, unsigned int inum, struct ext4_inode *inode)
256 {
257 unsigned int bg_num, bg_offset;
258 off64_t inode_offset;
259 int len;
260
261 bg_num = (inum-1) / info.inodes_per_group;
262 bg_offset = (inum-1) % info.inodes_per_group;
263
264 inode_offset = ((unsigned long long)aux_info.bg_desc[bg_num].bg_inode_table * info.block_size) +
265 (bg_offset * info.inode_size);
266
267 if (lseek64(fd, inode_offset, SEEK_SET) < 0) {
268 critical_error_errno("failed to seek to inode %d\n", inum);
269 }
270
271 len=read(fd, inode, sizeof(*inode));
272 if (len != sizeof(*inode)) {
273 critical_error_errno("failed to read inode %d\n", inum);
274 }
275
276 return 0;
277 }
278
read_block(int fd,unsigned long long block_num,void * block)279 static int read_block(int fd, unsigned long long block_num, void *block)
280 {
281 off64_t off;
282 unsigned int len;
283
284 off = block_num * info.block_size;
285
286 if (lseek64(fd, off, SEEK_SET) , 0) {
287 critical_error_errno("failed to seek to block %lld\n", block_num);
288 }
289
290 len=read(fd, block, info.block_size);
291 if (len != info.block_size) {
292 critical_error_errno("failed to read block %lld\n", block_num);
293 }
294
295 return 0;
296 }
297
write_block(int fd,unsigned long long block_num,void * block)298 static int write_block(int fd, unsigned long long block_num, void *block)
299 {
300 off64_t off;
301 unsigned int len;
302
303 if (no_write) {
304 return 0;
305 }
306
307 off = block_num * info.block_size;
308
309 if (lseek64(fd, off, SEEK_SET) < 0) {
310 critical_error_errno("failed to seek to block %lld\n", block_num);
311 }
312
313 len=write(fd, block, info.block_size);
314 if (len != info.block_size) {
315 critical_error_errno("failed to write block %lld\n", block_num);
316 }
317
318 return 0;
319 }
320
bitmap_get_bit(u8 * bitmap,u32 bit)321 static int bitmap_get_bit(u8 *bitmap, u32 bit)
322 {
323 if (bitmap[bit / 8] & (1 << (bit % 8)))
324 return 1;
325
326 return 0;
327 }
328
bitmap_clear_bit(u8 * bitmap,u32 bit)329 static void bitmap_clear_bit(u8 *bitmap, u32 bit)
330 {
331 bitmap[bit / 8] &= ~(1 << (bit % 8));
332
333 return;
334 }
335
check_inode_bitmap(int fd,unsigned int bg_num)336 static void check_inode_bitmap(int fd, unsigned int bg_num)
337 {
338 unsigned int inode_bitmap_block_num;
339 unsigned char block[MAX_EXT4_BLOCK_SIZE];
340 int i, bitmap_updated = 0;
341
342 /* Using the bg_num, aux_info.bg_desc[], info.inodes_per_group and
343 * new_inodes_per_group, retrieve the inode bitmap, and make sure
344 * the bits between the old and new size are clear
345 */
346 inode_bitmap_block_num = aux_info.bg_desc[bg_num].bg_inode_bitmap;
347
348 read_block(fd, inode_bitmap_block_num, block);
349
350 for (i = info.inodes_per_group; i < new_inodes_per_group; i++) {
351 if (bitmap_get_bit(block, i)) {
352 bitmap_clear_bit(block, i);
353 bitmap_updated = 1;
354 }
355 }
356
357 if (bitmap_updated) {
358 if (verbose) {
359 printf("Warning: updated inode bitmap for block group %d\n", bg_num);
360 }
361 write_block(fd, inode_bitmap_block_num, block);
362 }
363
364 return;
365 }
366
367 /* Update the superblock and bgdesc of the specified block group */
update_superblocks_and_bg_desc(int fd,int state)368 static int update_superblocks_and_bg_desc(int fd, int state)
369 {
370 off64_t ret;
371 struct ext4_super_block sb;
372 unsigned int num_block_groups, total_new_inodes;
373 unsigned int i;
374
375
376 read_sb(fd, &sb);
377
378 /* Compute how many more inodes are now available */
379 num_block_groups = DIV_ROUND_UP(aux_info.len_blocks, info.blocks_per_group);
380 total_new_inodes = num_block_groups * (new_inodes_per_group - sb.s_inodes_per_group);
381
382 if (verbose) {
383 printf("created %d additional inodes\n", total_new_inodes);
384 }
385
386 /* Update the free inodes count in each block group descriptor */
387 for (i = 0; i < num_block_groups; i++) {
388 if (state == STATE_UPDATING_SB) {
389 aux_info.bg_desc[i].bg_free_inodes_count += (new_inodes_per_group - sb.s_inodes_per_group);
390 }
391 check_inode_bitmap(fd, i);
392 }
393
394 /* First some sanity checks */
395 if ((sb.s_inodes_count + total_new_inodes) != (new_inodes_per_group * num_block_groups)) {
396 critical_error("Failed sanity check on new inode count\n");
397 }
398 if (new_inodes_per_group % (info.block_size/info.inode_size)) {
399 critical_error("Failed sanity check on new inode per group alignment\n");
400 }
401
402 /* Update the free inodes count in the superblock */
403 sb.s_inodes_count += total_new_inodes;
404 sb.s_free_inodes_count += total_new_inodes;
405 sb.s_inodes_per_group = new_inodes_per_group;
406
407 for (i = 0; i < aux_info.groups; i++) {
408 if (ext4_bg_has_super_block(i)) {
409 unsigned int sb_offset;
410
411 if (i == 0) {
412 /* The first superblock is offset by 1K to leave room for boot sectors */
413 sb_offset = 1024;
414 } else {
415 sb_offset = 0;
416 }
417
418 sb.s_block_group_nr = i;
419 /* Don't write out the backup superblocks with the bit set in the s_desc_size
420 * which prevents the filesystem from mounting. The bit for the primary
421 * superblock will be cleared on the final call to set_fs_fixup_state() */
422 if (i != 0) {
423 sb.s_desc_size &= ~1;
424 }
425
426 write_sb(fd, (unsigned long long)i * info.blocks_per_group * info.block_size + sb_offset, &sb);
427
428 ret = lseek64(fd, ((unsigned long long)i * info.blocks_per_group * info.block_size) +
429 (info.block_size * (aux_info.first_data_block + 1)), SEEK_SET);
430 if (ret < 0)
431 critical_error_errno("failed to seek to block group descriptors");
432
433 if (!no_write) {
434 ret = write(fd, aux_info.bg_desc, info.block_size * aux_info.bg_desc_blocks);
435 if (ret < 0)
436 critical_error_errno("failed to write block group descriptors");
437 if (ret != (int)info.block_size * (int)aux_info.bg_desc_blocks)
438 critical_error("failed to write all of block group descriptors");
439 }
440 }
441 if ((bail_phase == 4) && ((unsigned int)bail_count == i)) {
442 critical_error("bailing at phase 4\n");
443 }
444 }
445
446 return 0;
447 }
448
449
get_direct_blocks(struct ext4_inode * inode,unsigned long long * block_list,unsigned int * count)450 static int get_direct_blocks(struct ext4_inode *inode, unsigned long long *block_list,
451 unsigned int *count)
452 {
453 unsigned int i = 0;
454 unsigned int ret = 0;
455 unsigned int sectors_per_block;
456
457 sectors_per_block = info.block_size / INODE_BLOCK_SIZE;
458 while ((i < (inode->i_blocks_lo / sectors_per_block)) && (i < EXT4_NDIR_BLOCKS)) {
459 block_list[i] = inode->i_block[i];
460 i++;
461 }
462
463 *count += i;
464
465 if ((inode->i_blocks_lo / sectors_per_block) > EXT4_NDIR_BLOCKS) {
466 ret = 1;
467 }
468
469 return ret;
470 }
471
get_indirect_blocks(int fd,struct ext4_inode * inode,unsigned long long * block_list,unsigned int * count)472 static int get_indirect_blocks(int fd, struct ext4_inode *inode,
473 unsigned long long *block_list, unsigned int *count)
474 {
475 unsigned int i;
476 unsigned int *indirect_block;
477 unsigned int sectors_per_block;
478
479 sectors_per_block = info.block_size / INODE_BLOCK_SIZE;
480
481 indirect_block = (unsigned int *)malloc(info.block_size);
482 if (indirect_block == 0) {
483 critical_error("failed to allocate memory for indirect_block\n");
484 }
485
486 read_block(fd, inode->i_block[EXT4_NDIR_BLOCKS], indirect_block);
487
488 for(i = 0; i < (inode->i_blocks_lo / sectors_per_block - EXT4_NDIR_BLOCKS); i++) {
489 block_list[EXT4_NDIR_BLOCKS+i] = indirect_block[i];
490 }
491
492 *count += i;
493
494 free(indirect_block);
495
496 return 0;
497 }
498
get_block_list_indirect(int fd,struct ext4_inode * inode,unsigned long long * block_list)499 static int get_block_list_indirect(int fd, struct ext4_inode *inode, unsigned long long *block_list)
500 {
501 unsigned int count=0;
502
503 if (get_direct_blocks(inode, block_list, &count)) {
504 get_indirect_blocks(fd, inode, block_list, &count);
505 }
506
507 return count;
508 }
509
get_extent_ents(int fd,struct ext4_extent_header * ext_hdr,unsigned long long * block_list)510 static int get_extent_ents(int fd, struct ext4_extent_header *ext_hdr, unsigned long long *block_list)
511 {
512 int i, j;
513 struct ext4_extent *extent;
514 off64_t fs_block_num;
515
516 if (ext_hdr->eh_depth != 0) {
517 critical_error("get_extent_ents called with eh_depth != 0\n");
518 }
519
520 /* The extent entries immediately follow the header, so add 1 to the pointer
521 * and cast it to an extent pointer.
522 */
523 extent = (struct ext4_extent *)(ext_hdr + 1);
524
525 for (i = 0; i < ext_hdr->eh_entries; i++) {
526 fs_block_num = ((off64_t)extent->ee_start_hi << 32) | extent->ee_start_lo;
527 for (j = 0; j < extent->ee_len; j++) {
528 block_list[extent->ee_block+j] = fs_block_num+j;
529 }
530 extent++;
531 }
532
533 return 0;
534 }
535
get_extent_idx(int fd,struct ext4_extent_header * ext_hdr,unsigned long long * block_list)536 static int get_extent_idx(int fd, struct ext4_extent_header *ext_hdr, unsigned long long *block_list)
537 {
538 int i;
539 struct ext4_extent_idx *extent_idx;
540 struct ext4_extent_header *tmp_ext_hdr;
541 off64_t fs_block_num;
542 unsigned char block[MAX_EXT4_BLOCK_SIZE];
543
544 /* Sanity check */
545 if (ext_hdr->eh_depth == 0) {
546 critical_error("get_extent_idx called with eh_depth == 0\n");
547 }
548
549 /* The extent entries immediately follow the header, so add 1 to the pointer
550 * and cast it to an extent pointer.
551 */
552 extent_idx = (struct ext4_extent_idx *)(ext_hdr + 1);
553
554 for (i = 0; i < ext_hdr->eh_entries; i++) {
555 fs_block_num = ((off64_t)extent_idx->ei_leaf_hi << 32) | extent_idx->ei_leaf_lo;
556 read_block(fd, fs_block_num, block);
557 tmp_ext_hdr = (struct ext4_extent_header *)block;
558
559 if (tmp_ext_hdr->eh_depth == 0) {
560 get_extent_ents(fd, tmp_ext_hdr, block_list); /* leaf node, fill in block_list */
561 } else {
562 get_extent_idx(fd, tmp_ext_hdr, block_list); /* recurse down the tree */
563 }
564 }
565
566 return 0;
567 }
568
get_block_list_extents(int fd,struct ext4_inode * inode,unsigned long long * block_list)569 static int get_block_list_extents(int fd, struct ext4_inode *inode, unsigned long long *block_list)
570 {
571 struct ext4_extent_header *extent_hdr;
572
573 extent_hdr = (struct ext4_extent_header *)inode->i_block;
574
575 if (extent_hdr->eh_magic != EXT4_EXT_MAGIC) {
576 critical_error("extent header has unexpected magic value 0x%4.4x\n",
577 extent_hdr->eh_magic);
578 }
579
580 if (extent_hdr->eh_depth == 0) {
581 get_extent_ents(fd, (struct ext4_extent_header *)inode->i_block, block_list);
582 return 0;
583 }
584
585 get_extent_idx(fd, (struct ext4_extent_header *)inode->i_block, block_list);
586
587 return 0;
588 }
589
is_entry_dir(int fd,struct ext4_dir_entry_2 * dirp,int pass)590 static int is_entry_dir(int fd, struct ext4_dir_entry_2 *dirp, int pass)
591 {
592 struct ext4_inode inode;
593 int ret = 0;
594
595 if (dirp->file_type == EXT4_FT_DIR) {
596 ret = 1;
597 } else if (dirp->file_type == EXT4_FT_UNKNOWN) {
598 /* Somebody was too lazy to fill in the dir entry,
599 * so we have to go fetch it from the inode. Grrr.
600 */
601 /* if UPDATE_INODE_NUMS pass and the inode high bit is not
602 * set return false so we don't recurse down the tree that is
603 * already updated. Otherwise, fetch inode, and return answer.
604 */
605 if ((pass == UPDATE_INODE_NUMS) && !(dirp->inode & 0x80000000)) {
606 ret = 0;
607 } else {
608 read_inode(fd, (dirp->inode & 0x7fffffff), &inode);
609 if (S_ISDIR(inode.i_mode)) {
610 ret = 1;
611 }
612 }
613 }
614
615 return ret;
616 }
617
recurse_dir(int fd,struct ext4_inode * inode,char * dirbuf,int dirsize,int mode)618 static int recurse_dir(int fd, struct ext4_inode *inode, char *dirbuf, int dirsize, int mode)
619 {
620 unsigned long long *block_list;
621 unsigned int num_blocks;
622 struct ext4_dir_entry_2 *dirp, *prev_dirp = 0;
623 char name[256];
624 unsigned int i, leftover_space, is_dir;
625 struct ext4_inode tmp_inode;
626 int tmp_dirsize;
627 char *tmp_dirbuf;
628
629 switch (mode) {
630 case SANITY_CHECK_PASS:
631 case MARK_INODE_NUMS:
632 case UPDATE_INODE_NUMS:
633 break;
634 default:
635 critical_error("recurse_dir() called witn unknown mode!\n");
636 }
637
638 if (dirsize % info.block_size) {
639 critical_error("dirsize %d not a multiple of block_size %d. This is unexpected!\n",
640 dirsize, info.block_size);
641 }
642
643 num_blocks = dirsize / info.block_size;
644
645 block_list = malloc((num_blocks + 1) * sizeof(*block_list));
646 if (block_list == 0) {
647 critical_error("failed to allocate memory for block_list\n");
648 }
649
650 if (inode->i_flags & EXT4_EXTENTS_FL) {
651 get_block_list_extents(fd, inode, block_list);
652 } else {
653 /* A directory that requires doubly or triply indirect blocks in huge indeed,
654 * and will almost certainly not exist, especially since make_ext4fs only creates
655 * directories with extents, and the kernel will too, but check to make sure the
656 * directory is not that big and give an error if so. Our limit is 12 direct blocks,
657 * plus block_size/4 singly indirect blocks, which for a filesystem with 4K blocks
658 * is a directory 1036 blocks long, or 4,243,456 bytes long! Assuming an average
659 * filename length of 20 (which I think is generous) thats 20 + 8 bytes overhead
660 * per entry, or 151,552 entries in the directory!
661 */
662 if (num_blocks > (info.block_size / 4 + EXT4_NDIR_BLOCKS)) {
663 critical_error("Non-extent based directory is too big!\n");
664 }
665 get_block_list_indirect(fd, inode, block_list);
666 }
667
668 /* Read in all the blocks for this directory */
669 for (i = 0; i < num_blocks; i++) {
670 read_block(fd, block_list[i], dirbuf + (i * info.block_size));
671 }
672
673 dirp = (struct ext4_dir_entry_2 *)dirbuf;
674 while (dirp < (struct ext4_dir_entry_2 *)(dirbuf + dirsize)) {
675 count++;
676 leftover_space = (char *)(dirbuf + dirsize) - (char *)dirp;
677 if (((mode == SANITY_CHECK_PASS) || (mode == UPDATE_INODE_NUMS)) &&
678 (leftover_space <= 8) && prev_dirp) {
679 /* This is a bug in an older version of make_ext4fs, where it
680 * didn't properly include the rest of the block in rec_len.
681 * Update rec_len on the previous entry to include the rest of
682 * the block and exit the loop.
683 */
684 if (verbose) {
685 printf("fixing up short rec_len for diretory entry for %s\n", name);
686 }
687 prev_dirp->rec_len += leftover_space;
688 break;
689 }
690
691 if (dirp->inode == 0) {
692 /* This is the last entry in the directory */
693 break;
694 }
695
696 strncpy(name, dirp->name, dirp->name_len);
697 name[dirp->name_len]='\0';
698
699 /* Only recurse on pass UPDATE_INODE_NUMS if the high bit is set.
700 * Otherwise, this inode entry has already been updated
701 * and we'll do the wrong thing. Also don't recurse on . or ..,
702 * and certainly not on non-directories!
703 */
704 /* Hrm, looks like filesystems made by fastboot on stingray set the file_type
705 * flag, but the lost+found directory has the type set to Unknown, which
706 * seems to imply I need to read the inode and get it.
707 */
708 is_dir = is_entry_dir(fd, dirp, mode);
709 if ( is_dir && (strcmp(name, ".") && strcmp(name, "..")) &&
710 ((mode == SANITY_CHECK_PASS) || (mode == MARK_INODE_NUMS) ||
711 ((mode == UPDATE_INODE_NUMS) && (dirp->inode & 0x80000000))) ) {
712 /* A directory! Recurse! */
713 read_inode(fd, dirp->inode & 0x7fffffff, &tmp_inode);
714
715 if (!S_ISDIR(tmp_inode.i_mode)) {
716 critical_error("inode %d for name %s does not point to a directory\n",
717 dirp->inode & 0x7fffffff, name);
718 }
719 if (verbose) {
720 printf("inode %d %s use extents\n", dirp->inode & 0x7fffffff,
721 (tmp_inode.i_flags & EXT4_EXTENTS_FL) ? "does" : "does not");
722 }
723
724 tmp_dirsize = tmp_inode.i_blocks_lo * INODE_BLOCK_SIZE;
725 if (verbose) {
726 printf("dir size = %d bytes\n", tmp_dirsize);
727 }
728
729 tmp_dirbuf = malloc(tmp_dirsize);
730 if (tmp_dirbuf == 0) {
731 critical_error("failed to allocate memory for tmp_dirbuf\n");
732 }
733
734 recurse_dir(fd, &tmp_inode, tmp_dirbuf, tmp_dirsize, mode);
735
736 free(tmp_dirbuf);
737 }
738
739 if (verbose) {
740 if (is_dir) {
741 printf("Directory %s\n", name);
742 } else {
743 printf("Non-directory %s\n", name);
744 }
745 }
746
747 /* Process entry based on current mode. Either set high bit or change inode number */
748 if (mode == MARK_INODE_NUMS) {
749 dirp->inode |= 0x80000000;
750 } else if (mode == UPDATE_INODE_NUMS) {
751 if (dirp->inode & 0x80000000) {
752 dirp->inode = compute_new_inum(dirp->inode & 0x7fffffff);
753 }
754 }
755
756 if ((bail_phase == mode) && (bail_loc == 1) && (bail_count == count)) {
757 critical_error("Bailing at phase %d, loc 1 and count %d\n", mode, count);
758 }
759
760 /* Point dirp at the next entry */
761 prev_dirp = dirp;
762 dirp = (struct ext4_dir_entry_2*)((char *)dirp + dirp->rec_len);
763 }
764
765 /* Write out all the blocks for this directory */
766 for (i = 0; i < num_blocks; i++) {
767 write_block(fd, block_list[i], dirbuf + (i * info.block_size));
768 if ((bail_phase == mode) && (bail_loc == 2) && (bail_count <= count)) {
769 critical_error("Bailing at phase %d, loc 2 and count %d\n", mode, count);
770 }
771 }
772
773 free(block_list);
774
775 return 0;
776 }
777
ext4fixup(char * fsdev)778 int ext4fixup(char *fsdev)
779 {
780 return ext4fixup_internal(fsdev, 0, 0, 0, 0, 0);
781 }
782
ext4fixup_internal(char * fsdev,int v_flag,int n_flag,int stop_phase,int stop_loc,int stop_count)783 int ext4fixup_internal(char *fsdev, int v_flag, int n_flag,
784 int stop_phase, int stop_loc, int stop_count)
785 {
786 int fd;
787 struct ext4_inode root_inode;
788 unsigned int dirsize;
789 char *dirbuf;
790
791 if (setjmp(setjmp_env))
792 return EXIT_FAILURE; /* Handle a call to longjmp() */
793
794 verbose = v_flag;
795 no_write = n_flag;
796
797 bail_phase = stop_phase;
798 bail_loc = stop_loc;
799 bail_count = stop_count;
800
801 fd = open(fsdev, O_RDWR);
802
803 if (fd < 0)
804 critical_error_errno("failed to open filesystem image");
805
806 read_ext(fd);
807
808 if ((info.feat_incompat & EXT4_FEATURE_INCOMPAT_FILETYPE) == 0) {
809 critical_error("Expected filesystem to have filetype flag set\n");
810 }
811
812 #if 0 // If we have to fix the directory rec_len issue, we can't use this check
813 /* Check to see if the inodes/group is copacetic */
814 if (info.inodes_per_blockgroup % (info.block_size/info.inode_size) == 0) {
815 /* This filesystem has either already been updated, or was
816 * made correctly.
817 */
818 if (verbose) {
819 printf("%s: filesystem correct, no work to do\n", me);
820 }
821 exit(0);
822 }
823 #endif
824
825 /* Compute what the new value of inodes_per_blockgroup will be when we're done */
826 new_inodes_per_group=ALIGN(info.inodes_per_group,(info.block_size/info.inode_size));
827
828 read_inode(fd, EXT4_ROOT_INO, &root_inode);
829
830 if (!S_ISDIR(root_inode.i_mode)) {
831 critical_error("root inode %d does not point to a directory\n", EXT4_ROOT_INO);
832 }
833 if (verbose) {
834 printf("inode %d %s use extents\n", EXT4_ROOT_INO,
835 (root_inode.i_flags & EXT4_EXTENTS_FL) ? "does" : "does not");
836 }
837
838 dirsize = root_inode.i_blocks_lo * INODE_BLOCK_SIZE;
839 if (verbose) {
840 printf("root dir size = %d bytes\n", dirsize);
841 }
842
843 dirbuf = malloc(dirsize);
844 if (dirbuf == 0) {
845 critical_error("failed to allocate memory for dirbuf\n");
846 }
847
848 /* Perform a sanity check pass first, try to catch any errors that will occur
849 * before we actually change anything, so we don't leave a filesystem in a
850 * corrupted, unrecoverable state. Set no_write, make it quiet, and do a recurse
851 * pass and a update_superblock pass. Set flags back to requested state when done.
852 * Only perform sanity check if the state is unset. If the state is _NOT_ unset,
853 * then the tool has already been run and interrupted, and it presumably ran and
854 * passed sanity checked before it got interrupted. It is _NOT_ safe to run sanity
855 * check if state is unset because it assumes inodes are to be computed using the
856 * old inodes/group, but some inode numbers may be updated to the new number.
857 */
858 if (get_fs_fixup_state(fd) == STATE_UNSET) {
859 verbose = 0;
860 no_write = 1;
861 recurse_dir(fd, &root_inode, dirbuf, dirsize, SANITY_CHECK_PASS);
862 update_superblocks_and_bg_desc(fd, STATE_UNSET);
863 verbose = v_flag;
864 no_write = n_flag;
865
866 set_fs_fixup_state(fd, STATE_MARKING_INUMS);
867 }
868
869 if (get_fs_fixup_state(fd) == STATE_MARKING_INUMS) {
870 count = 0; /* Reset debugging counter */
871 if (!recurse_dir(fd, &root_inode, dirbuf, dirsize, MARK_INODE_NUMS)) {
872 set_fs_fixup_state(fd, STATE_UPDATING_INUMS);
873 }
874 }
875
876 if (get_fs_fixup_state(fd) == STATE_UPDATING_INUMS) {
877 count = 0; /* Reset debugging counter */
878 if (!recurse_dir(fd, &root_inode, dirbuf, dirsize, UPDATE_INODE_NUMS)) {
879 set_fs_fixup_state(fd, STATE_UPDATING_SB);
880 }
881 }
882
883 if (get_fs_fixup_state(fd) == STATE_UPDATING_SB) {
884 /* set the new inodes/blockgroup number,
885 * and sets the state back to 0.
886 */
887 if (!update_superblocks_and_bg_desc(fd, STATE_UPDATING_SB)) {
888 set_fs_fixup_state(fd, STATE_UNSET);
889 }
890 }
891
892 close(fd);
893
894 return 0;
895 }
896