fs: ext4: Problem with ext4load and sparse files
[oweals/u-boot.git] / fs / ext4 / ext4_common.c
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * (C) Copyright 2011 - 2012 Samsung Electronics
4  * EXT4 filesystem implementation in Uboot by
5  * Uma Shankar <uma.shankar@samsung.com>
6  * Manjunatha C Achar <a.manjunatha@samsung.com>
7  *
8  * ext4ls and ext4load : Based on ext2 ls load support in Uboot.
9  *
10  * (C) Copyright 2004
11  * esd gmbh <www.esd-electronics.com>
12  * Reinhard Arlt <reinhard.arlt@esd-electronics.com>
13  *
14  * based on code from grub2 fs/ext2.c and fs/fshelp.c by
15  * GRUB  --  GRand Unified Bootloader
16  * Copyright (C) 2003, 2004  Free Software Foundation, Inc.
17  *
18  * ext4write : Based on generic ext4 protocol.
19  */
20
21 #include <common.h>
22 #include <ext_common.h>
23 #include <ext4fs.h>
24 #include <malloc.h>
25 #include <memalign.h>
26 #include <stddef.h>
27 #include <linux/stat.h>
28 #include <linux/time.h>
29 #include <asm/byteorder.h>
30 #include "ext4_common.h"
31
32 struct ext2_data *ext4fs_root;
33 struct ext2fs_node *ext4fs_file;
34 __le32 *ext4fs_indir1_block;
35 int ext4fs_indir1_size;
36 int ext4fs_indir1_blkno = -1;
37 __le32 *ext4fs_indir2_block;
38 int ext4fs_indir2_size;
39 int ext4fs_indir2_blkno = -1;
40
41 __le32 *ext4fs_indir3_block;
42 int ext4fs_indir3_size;
43 int ext4fs_indir3_blkno = -1;
44 struct ext2_inode *g_parent_inode;
45 static int symlinknest;
46
47 #if defined(CONFIG_EXT4_WRITE)
48 struct ext2_block_group *ext4fs_get_group_descriptor
49         (const struct ext_filesystem *fs, uint32_t bg_idx)
50 {
51         return (struct ext2_block_group *)(fs->gdtable + (bg_idx * fs->gdsize));
52 }
53
54 static inline void ext4fs_sb_free_inodes_dec(struct ext2_sblock *sb)
55 {
56         sb->free_inodes = cpu_to_le32(le32_to_cpu(sb->free_inodes) - 1);
57 }
58
59 static inline void ext4fs_sb_free_blocks_dec(struct ext2_sblock *sb)
60 {
61         uint64_t free_blocks = le32_to_cpu(sb->free_blocks);
62         free_blocks += (uint64_t)le32_to_cpu(sb->free_blocks_high) << 32;
63         free_blocks--;
64
65         sb->free_blocks = cpu_to_le32(free_blocks & 0xffffffff);
66         sb->free_blocks_high = cpu_to_le16(free_blocks >> 32);
67 }
68
69 static inline void ext4fs_bg_free_inodes_dec
70         (struct ext2_block_group *bg, const struct ext_filesystem *fs)
71 {
72         uint32_t free_inodes = le16_to_cpu(bg->free_inodes);
73         if (fs->gdsize == 64)
74                 free_inodes += le16_to_cpu(bg->free_inodes_high) << 16;
75         free_inodes--;
76
77         bg->free_inodes = cpu_to_le16(free_inodes & 0xffff);
78         if (fs->gdsize == 64)
79                 bg->free_inodes_high = cpu_to_le16(free_inodes >> 16);
80 }
81
82 static inline void ext4fs_bg_free_blocks_dec
83         (struct ext2_block_group *bg, const struct ext_filesystem *fs)
84 {
85         uint32_t free_blocks = le16_to_cpu(bg->free_blocks);
86         if (fs->gdsize == 64)
87                 free_blocks += le16_to_cpu(bg->free_blocks_high) << 16;
88         free_blocks--;
89
90         bg->free_blocks = cpu_to_le16(free_blocks & 0xffff);
91         if (fs->gdsize == 64)
92                 bg->free_blocks_high = cpu_to_le16(free_blocks >> 16);
93 }
94
95 static inline void ext4fs_bg_itable_unused_dec
96         (struct ext2_block_group *bg, const struct ext_filesystem *fs)
97 {
98         uint32_t free_inodes = le16_to_cpu(bg->bg_itable_unused);
99         if (fs->gdsize == 64)
100                 free_inodes += le16_to_cpu(bg->bg_itable_unused_high) << 16;
101         free_inodes--;
102
103         bg->bg_itable_unused = cpu_to_le16(free_inodes & 0xffff);
104         if (fs->gdsize == 64)
105                 bg->bg_itable_unused_high = cpu_to_le16(free_inodes >> 16);
106 }
107
108 uint64_t ext4fs_sb_get_free_blocks(const struct ext2_sblock *sb)
109 {
110         uint64_t free_blocks = le32_to_cpu(sb->free_blocks);
111         free_blocks += (uint64_t)le32_to_cpu(sb->free_blocks_high) << 32;
112         return free_blocks;
113 }
114
115 void ext4fs_sb_set_free_blocks(struct ext2_sblock *sb, uint64_t free_blocks)
116 {
117         sb->free_blocks = cpu_to_le32(free_blocks & 0xffffffff);
118         sb->free_blocks_high = cpu_to_le16(free_blocks >> 32);
119 }
120
121 uint32_t ext4fs_bg_get_free_blocks(const struct ext2_block_group *bg,
122                                    const struct ext_filesystem *fs)
123 {
124         uint32_t free_blocks = le16_to_cpu(bg->free_blocks);
125         if (fs->gdsize == 64)
126                 free_blocks += le16_to_cpu(bg->free_blocks_high) << 16;
127         return free_blocks;
128 }
129
130 static inline
131 uint32_t ext4fs_bg_get_free_inodes(const struct ext2_block_group *bg,
132                                    const struct ext_filesystem *fs)
133 {
134         uint32_t free_inodes = le16_to_cpu(bg->free_inodes);
135         if (fs->gdsize == 64)
136                 free_inodes += le16_to_cpu(bg->free_inodes_high) << 16;
137         return free_inodes;
138 }
139
140 static inline uint16_t ext4fs_bg_get_flags(const struct ext2_block_group *bg)
141 {
142         return le16_to_cpu(bg->bg_flags);
143 }
144
145 static inline void ext4fs_bg_set_flags(struct ext2_block_group *bg,
146                                        uint16_t flags)
147 {
148         bg->bg_flags = cpu_to_le16(flags);
149 }
150
151 /* Block number of the block bitmap */
152 uint64_t ext4fs_bg_get_block_id(const struct ext2_block_group *bg,
153                                 const struct ext_filesystem *fs)
154 {
155         uint64_t block_nr = le32_to_cpu(bg->block_id);
156         if (fs->gdsize == 64)
157                 block_nr += (uint64_t)le32_to_cpu(bg->block_id_high) << 32;
158         return block_nr;
159 }
160
161 /* Block number of the inode bitmap */
162 uint64_t ext4fs_bg_get_inode_id(const struct ext2_block_group *bg,
163                                 const struct ext_filesystem *fs)
164 {
165         uint64_t block_nr = le32_to_cpu(bg->inode_id);
166         if (fs->gdsize == 64)
167                 block_nr += (uint64_t)le32_to_cpu(bg->inode_id_high) << 32;
168         return block_nr;
169 }
170 #endif
171
172 /* Block number of the inode table */
173 uint64_t ext4fs_bg_get_inode_table_id(const struct ext2_block_group *bg,
174                                       const struct ext_filesystem *fs)
175 {
176         uint64_t block_nr = le32_to_cpu(bg->inode_table_id);
177         if (fs->gdsize == 64)
178                 block_nr +=
179                         (uint64_t)le32_to_cpu(bg->inode_table_id_high) << 32;
180         return block_nr;
181 }
182
183 #if defined(CONFIG_EXT4_WRITE)
184 uint32_t ext4fs_div_roundup(uint32_t size, uint32_t n)
185 {
186         uint32_t res = size / n;
187         if (res * n != size)
188                 res++;
189
190         return res;
191 }
192
193 void put_ext4(uint64_t off, const void *buf, uint32_t size)
194 {
195         uint64_t startblock;
196         uint64_t remainder;
197         unsigned char *temp_ptr = NULL;
198         struct ext_filesystem *fs = get_fs();
199         int log2blksz = fs->dev_desc->log2blksz;
200         ALLOC_CACHE_ALIGN_BUFFER(unsigned char, sec_buf, fs->dev_desc->blksz);
201
202         startblock = off >> log2blksz;
203         startblock += part_offset;
204         remainder = off & (uint64_t)(fs->dev_desc->blksz - 1);
205
206         if (fs->dev_desc == NULL)
207                 return;
208
209         if ((startblock + (size >> log2blksz)) >
210             (part_offset + fs->total_sect)) {
211                 printf("part_offset is " LBAFU "\n", part_offset);
212                 printf("total_sector is %llu\n", fs->total_sect);
213                 printf("error: overflow occurs\n");
214                 return;
215         }
216
217         if (remainder) {
218                 blk_dread(fs->dev_desc, startblock, 1, sec_buf);
219                 temp_ptr = sec_buf;
220                 memcpy((temp_ptr + remainder), (unsigned char *)buf, size);
221                 blk_dwrite(fs->dev_desc, startblock, 1, sec_buf);
222         } else {
223                 if (size >> log2blksz != 0) {
224                         blk_dwrite(fs->dev_desc, startblock, size >> log2blksz,
225                                    (unsigned long *)buf);
226                 } else {
227                         blk_dread(fs->dev_desc, startblock, 1, sec_buf);
228                         temp_ptr = sec_buf;
229                         memcpy(temp_ptr, buf, size);
230                         blk_dwrite(fs->dev_desc, startblock, 1,
231                                    (unsigned long *)sec_buf);
232                 }
233         }
234 }
235
236 static int _get_new_inode_no(unsigned char *buffer)
237 {
238         struct ext_filesystem *fs = get_fs();
239         unsigned char input;
240         int operand, status;
241         int count = 1;
242         int j = 0;
243
244         /* get the blocksize of the filesystem */
245         unsigned char *ptr = buffer;
246         while (*ptr == 255) {
247                 ptr++;
248                 count += 8;
249                 if (count > le32_to_cpu(ext4fs_root->sblock.inodes_per_group))
250                         return -1;
251         }
252
253         for (j = 0; j < fs->blksz; j++) {
254                 input = *ptr;
255                 int i = 0;
256                 while (i <= 7) {
257                         operand = 1 << i;
258                         status = input & operand;
259                         if (status) {
260                                 i++;
261                                 count++;
262                         } else {
263                                 *ptr |= operand;
264                                 return count;
265                         }
266                 }
267                 ptr = ptr + 1;
268         }
269
270         return -1;
271 }
272
273 static int _get_new_blk_no(unsigned char *buffer)
274 {
275         int operand;
276         int count = 0;
277         int i;
278         unsigned char *ptr = buffer;
279         struct ext_filesystem *fs = get_fs();
280
281         while (*ptr == 255) {
282                 ptr++;
283                 count += 8;
284                 if (count == (fs->blksz * 8))
285                         return -1;
286         }
287
288         if (fs->blksz == 1024)
289                 count += 1;
290
291         for (i = 0; i <= 7; i++) {
292                 operand = 1 << i;
293                 if (*ptr & operand) {
294                         count++;
295                 } else {
296                         *ptr |= operand;
297                         return count;
298                 }
299         }
300
301         return -1;
302 }
303
304 int ext4fs_set_block_bmap(long int blockno, unsigned char *buffer, int index)
305 {
306         int i, remainder, status;
307         unsigned char *ptr = buffer;
308         unsigned char operand;
309         i = blockno / 8;
310         remainder = blockno % 8;
311         int blocksize = EXT2_BLOCK_SIZE(ext4fs_root);
312
313         i = i - (index * blocksize);
314         if (blocksize != 1024) {
315                 ptr = ptr + i;
316                 operand = 1 << remainder;
317                 status = *ptr & operand;
318                 if (status)
319                         return -1;
320
321                 *ptr = *ptr | operand;
322                 return 0;
323         } else {
324                 if (remainder == 0) {
325                         ptr = ptr + i - 1;
326                         operand = (1 << 7);
327                 } else {
328                         ptr = ptr + i;
329                         operand = (1 << (remainder - 1));
330                 }
331                 status = *ptr & operand;
332                 if (status)
333                         return -1;
334
335                 *ptr = *ptr | operand;
336                 return 0;
337         }
338 }
339
340 void ext4fs_reset_block_bmap(long int blockno, unsigned char *buffer, int index)
341 {
342         int i, remainder, status;
343         unsigned char *ptr = buffer;
344         unsigned char operand;
345         i = blockno / 8;
346         remainder = blockno % 8;
347         int blocksize = EXT2_BLOCK_SIZE(ext4fs_root);
348
349         i = i - (index * blocksize);
350         if (blocksize != 1024) {
351                 ptr = ptr + i;
352                 operand = (1 << remainder);
353                 status = *ptr & operand;
354                 if (status)
355                         *ptr = *ptr & ~(operand);
356         } else {
357                 if (remainder == 0) {
358                         ptr = ptr + i - 1;
359                         operand = (1 << 7);
360                 } else {
361                         ptr = ptr + i;
362                         operand = (1 << (remainder - 1));
363                 }
364                 status = *ptr & operand;
365                 if (status)
366                         *ptr = *ptr & ~(operand);
367         }
368 }
369
370 int ext4fs_set_inode_bmap(int inode_no, unsigned char *buffer, int index)
371 {
372         int i, remainder, status;
373         unsigned char *ptr = buffer;
374         unsigned char operand;
375
376         inode_no -= (index * le32_to_cpu(ext4fs_root->sblock.inodes_per_group));
377         i = inode_no / 8;
378         remainder = inode_no % 8;
379         if (remainder == 0) {
380                 ptr = ptr + i - 1;
381                 operand = (1 << 7);
382         } else {
383                 ptr = ptr + i;
384                 operand = (1 << (remainder - 1));
385         }
386         status = *ptr & operand;
387         if (status)
388                 return -1;
389
390         *ptr = *ptr | operand;
391
392         return 0;
393 }
394
395 void ext4fs_reset_inode_bmap(int inode_no, unsigned char *buffer, int index)
396 {
397         int i, remainder, status;
398         unsigned char *ptr = buffer;
399         unsigned char operand;
400
401         inode_no -= (index * le32_to_cpu(ext4fs_root->sblock.inodes_per_group));
402         i = inode_no / 8;
403         remainder = inode_no % 8;
404         if (remainder == 0) {
405                 ptr = ptr + i - 1;
406                 operand = (1 << 7);
407         } else {
408                 ptr = ptr + i;
409                 operand = (1 << (remainder - 1));
410         }
411         status = *ptr & operand;
412         if (status)
413                 *ptr = *ptr & ~(operand);
414 }
415
416 uint16_t ext4fs_checksum_update(uint32_t i)
417 {
418         struct ext2_block_group *desc;
419         struct ext_filesystem *fs = get_fs();
420         uint16_t crc = 0;
421         __le32 le32_i = cpu_to_le32(i);
422
423         desc = ext4fs_get_group_descriptor(fs, i);
424         if (le32_to_cpu(fs->sb->feature_ro_compat) & EXT4_FEATURE_RO_COMPAT_GDT_CSUM) {
425                 int offset = offsetof(struct ext2_block_group, bg_checksum);
426
427                 crc = ext2fs_crc16(~0, fs->sb->unique_id,
428                                    sizeof(fs->sb->unique_id));
429                 crc = ext2fs_crc16(crc, &le32_i, sizeof(le32_i));
430                 crc = ext2fs_crc16(crc, desc, offset);
431                 offset += sizeof(desc->bg_checksum);    /* skip checksum */
432                 assert(offset == sizeof(*desc));
433                 if (offset < fs->gdsize) {
434                         crc = ext2fs_crc16(crc, (__u8 *)desc + offset,
435                                            fs->gdsize - offset);
436                 }
437         }
438
439         return crc;
440 }
441
442 static int check_void_in_dentry(struct ext2_dirent *dir, char *filename)
443 {
444         int dentry_length;
445         int sizeof_void_space;
446         int new_entry_byte_reqd;
447         short padding_factor = 0;
448
449         if (dir->namelen % 4 != 0)
450                 padding_factor = 4 - (dir->namelen % 4);
451
452         dentry_length = sizeof(struct ext2_dirent) +
453                         dir->namelen + padding_factor;
454         sizeof_void_space = le16_to_cpu(dir->direntlen) - dentry_length;
455         if (sizeof_void_space == 0)
456                 return 0;
457
458         padding_factor = 0;
459         if (strlen(filename) % 4 != 0)
460                 padding_factor = 4 - (strlen(filename) % 4);
461
462         new_entry_byte_reqd = strlen(filename) +
463             sizeof(struct ext2_dirent) + padding_factor;
464         if (sizeof_void_space >= new_entry_byte_reqd) {
465                 dir->direntlen = cpu_to_le16(dentry_length);
466                 return sizeof_void_space;
467         }
468
469         return 0;
470 }
471
472 int ext4fs_update_parent_dentry(char *filename, int file_type)
473 {
474         unsigned int *zero_buffer = NULL;
475         char *root_first_block_buffer = NULL;
476         int blk_idx;
477         long int first_block_no_of_root = 0;
478         int totalbytes = 0;
479         unsigned int new_entry_byte_reqd;
480         int sizeof_void_space = 0;
481         int templength = 0;
482         int inodeno = -1;
483         int status;
484         struct ext_filesystem *fs = get_fs();
485         /* directory entry */
486         struct ext2_dirent *dir;
487         char *temp_dir = NULL;
488         uint32_t new_blk_no;
489         uint32_t new_size;
490         uint32_t new_blockcnt;
491         uint32_t directory_blocks;
492
493         zero_buffer = zalloc(fs->blksz);
494         if (!zero_buffer) {
495                 printf("No Memory\n");
496                 return -1;
497         }
498         root_first_block_buffer = zalloc(fs->blksz);
499         if (!root_first_block_buffer) {
500                 free(zero_buffer);
501                 printf("No Memory\n");
502                 return -1;
503         }
504         new_entry_byte_reqd = ROUND(strlen(filename) +
505                                     sizeof(struct ext2_dirent), 4);
506 restart:
507         directory_blocks = le32_to_cpu(g_parent_inode->size) >>
508                 LOG2_BLOCK_SIZE(ext4fs_root);
509         blk_idx = directory_blocks - 1;
510
511 restart_read:
512         /* read the block no allocated to a file */
513         first_block_no_of_root = read_allocated_block(g_parent_inode, blk_idx,
514                                                       NULL);
515         if (first_block_no_of_root <= 0)
516                 goto fail;
517
518         status = ext4fs_devread((lbaint_t)first_block_no_of_root
519                                 * fs->sect_perblk,
520                                 0, fs->blksz, root_first_block_buffer);
521         if (status == 0)
522                 goto fail;
523
524         if (ext4fs_log_journal(root_first_block_buffer, first_block_no_of_root))
525                 goto fail;
526         dir = (struct ext2_dirent *)root_first_block_buffer;
527         totalbytes = 0;
528
529         while (le16_to_cpu(dir->direntlen) > 0) {
530                 unsigned short used_len = ROUND(dir->namelen +
531                     sizeof(struct ext2_dirent), 4);
532
533                 /* last entry of block */
534                 if (fs->blksz - totalbytes == le16_to_cpu(dir->direntlen)) {
535
536                         /* check if new entry fits */
537                         if ((used_len + new_entry_byte_reqd) <=
538                             le16_to_cpu(dir->direntlen)) {
539                                 dir->direntlen = cpu_to_le16(used_len);
540                                 break;
541                         } else {
542                                 if (blk_idx > 0) {
543                                         printf("Block full, trying previous\n");
544                                         blk_idx--;
545                                         goto restart_read;
546                                 }
547                                 printf("All blocks full: Allocate new\n");
548
549                                 if (le32_to_cpu(g_parent_inode->flags) &
550                                                 EXT4_EXTENTS_FL) {
551                                         printf("Directory uses extents\n");
552                                         goto fail;
553                                 }
554                                 if (directory_blocks >= INDIRECT_BLOCKS) {
555                                         printf("Directory exceeds limit\n");
556                                         goto fail;
557                                 }
558                                 new_blk_no = ext4fs_get_new_blk_no();
559                                 if (new_blk_no == -1) {
560                                         printf("no block left to assign\n");
561                                         goto fail;
562                                 }
563                                 put_ext4((uint64_t)new_blk_no * fs->blksz, zero_buffer, fs->blksz);
564                                 g_parent_inode->b.blocks.
565                                         dir_blocks[directory_blocks] =
566                                         cpu_to_le32(new_blk_no);
567
568                                 new_size = le32_to_cpu(g_parent_inode->size);
569                                 new_size += fs->blksz;
570                                 g_parent_inode->size = cpu_to_le32(new_size);
571
572                                 new_blockcnt = le32_to_cpu(g_parent_inode->blockcnt);
573                                 new_blockcnt += fs->sect_perblk;
574                                 g_parent_inode->blockcnt = cpu_to_le32(new_blockcnt);
575
576                                 if (ext4fs_put_metadata
577                                     (root_first_block_buffer,
578                                      first_block_no_of_root))
579                                         goto fail;
580                                 goto restart;
581                         }
582                 }
583
584                 templength = le16_to_cpu(dir->direntlen);
585                 totalbytes = totalbytes + templength;
586                 sizeof_void_space = check_void_in_dentry(dir, filename);
587                 if (sizeof_void_space)
588                         break;
589
590                 dir = (struct ext2_dirent *)((char *)dir + templength);
591         }
592
593         /* make a pointer ready for creating next directory entry */
594         templength = le16_to_cpu(dir->direntlen);
595         totalbytes = totalbytes + templength;
596         dir = (struct ext2_dirent *)((char *)dir + templength);
597
598         /* get the next available inode number */
599         inodeno = ext4fs_get_new_inode_no();
600         if (inodeno == -1) {
601                 printf("no inode left to assign\n");
602                 goto fail;
603         }
604         dir->inode = cpu_to_le32(inodeno);
605         if (sizeof_void_space)
606                 dir->direntlen = cpu_to_le16(sizeof_void_space);
607         else
608                 dir->direntlen = cpu_to_le16(fs->blksz - totalbytes);
609
610         dir->namelen = strlen(filename);
611         dir->filetype = file_type;
612         temp_dir = (char *)dir;
613         temp_dir = temp_dir + sizeof(struct ext2_dirent);
614         memcpy(temp_dir, filename, strlen(filename));
615
616         /* update or write  the 1st block of root inode */
617         if (ext4fs_put_metadata(root_first_block_buffer,
618                                 first_block_no_of_root))
619                 goto fail;
620
621 fail:
622         free(zero_buffer);
623         free(root_first_block_buffer);
624
625         return inodeno;
626 }
627
628 static int search_dir(struct ext2_inode *parent_inode, char *dirname)
629 {
630         int status;
631         int inodeno = 0;
632         int offset;
633         int blk_idx;
634         long int blknr;
635         char *block_buffer = NULL;
636         struct ext2_dirent *dir = NULL;
637         struct ext_filesystem *fs = get_fs();
638         uint32_t directory_blocks;
639         char *direntname;
640
641         directory_blocks = le32_to_cpu(parent_inode->size) >>
642                 LOG2_BLOCK_SIZE(ext4fs_root);
643
644         block_buffer = zalloc(fs->blksz);
645         if (!block_buffer)
646                 goto fail;
647
648         /* get the block no allocated to a file */
649         for (blk_idx = 0; blk_idx < directory_blocks; blk_idx++) {
650                 blknr = read_allocated_block(parent_inode, blk_idx, NULL);
651                 if (blknr <= 0)
652                         goto fail;
653
654                 /* read the directory block */
655                 status = ext4fs_devread((lbaint_t)blknr * fs->sect_perblk,
656                                         0, fs->blksz, (char *)block_buffer);
657                 if (status == 0)
658                         goto fail;
659
660                 offset = 0;
661                 do {
662                         if (offset & 3) {
663                                 printf("Badly aligned ext2_dirent\n");
664                                 break;
665                         }
666
667                         dir = (struct ext2_dirent *)(block_buffer + offset);
668                         direntname = (char*)(dir) + sizeof(struct ext2_dirent);
669
670                         int direntlen = le16_to_cpu(dir->direntlen);
671                         if (direntlen < sizeof(struct ext2_dirent))
672                                 break;
673
674                         if (dir->inode && (strlen(dirname) == dir->namelen) &&
675                             (strncmp(dirname, direntname, dir->namelen) == 0)) {
676                                 inodeno = le32_to_cpu(dir->inode);
677                                 break;
678                         }
679
680                         offset += direntlen;
681
682                 } while (offset < fs->blksz);
683
684                 if (inodeno > 0) {
685                         free(block_buffer);
686                         return inodeno;
687                 }
688         }
689
690 fail:
691         free(block_buffer);
692
693         return -1;
694 }
695
696 static int find_dir_depth(char *dirname)
697 {
698         char *token = strtok(dirname, "/");
699         int count = 0;
700         while (token != NULL) {
701                 token = strtok(NULL, "/");
702                 count++;
703         }
704         return count + 1 + 1;
705         /*
706          * for example  for string /home/temp
707          * depth=home(1)+temp(1)+1 extra for NULL;
708          * so count is 4;
709          */
710 }
711
712 static int parse_path(char **arr, char *dirname)
713 {
714         char *token = strtok(dirname, "/");
715         int i = 0;
716
717         /* add root */
718         arr[i] = zalloc(strlen("/") + 1);
719         if (!arr[i])
720                 return -ENOMEM;
721         memcpy(arr[i++], "/", strlen("/"));
722
723         /* add each path entry after root */
724         while (token != NULL) {
725                 arr[i] = zalloc(strlen(token) + 1);
726                 if (!arr[i])
727                         return -ENOMEM;
728                 memcpy(arr[i++], token, strlen(token));
729                 token = strtok(NULL, "/");
730         }
731         arr[i] = NULL;
732
733         return 0;
734 }
735
736 int ext4fs_iget(int inode_no, struct ext2_inode *inode)
737 {
738         if (ext4fs_read_inode(ext4fs_root, inode_no, inode) == 0)
739                 return -1;
740
741         return 0;
742 }
743
744 /*
745  * Function: ext4fs_get_parent_inode_num
746  * Return Value: inode Number of the parent directory of  file/Directory to be
747  * created
748  * dirname : Input parmater, input path name of the file/directory to be created
749  * dname : Output parameter, to be filled with the name of the directory
750  * extracted from dirname
751  */
752 int ext4fs_get_parent_inode_num(const char *dirname, char *dname, int flags)
753 {
754         int i;
755         int depth = 0;
756         int matched_inode_no;
757         int result_inode_no = -1;
758         char **ptr = NULL;
759         char *depth_dirname = NULL;
760         char *parse_dirname = NULL;
761         struct ext2_inode *parent_inode = NULL;
762         struct ext2_inode *first_inode = NULL;
763         struct ext2_inode temp_inode;
764
765         if (*dirname != '/') {
766                 printf("Please supply Absolute path\n");
767                 return -1;
768         }
769
770         /* TODO: input validation make equivalent to linux */
771         depth_dirname = zalloc(strlen(dirname) + 1);
772         if (!depth_dirname)
773                 return -ENOMEM;
774
775         memcpy(depth_dirname, dirname, strlen(dirname));
776         depth = find_dir_depth(depth_dirname);
777         parse_dirname = zalloc(strlen(dirname) + 1);
778         if (!parse_dirname)
779                 goto fail;
780         memcpy(parse_dirname, dirname, strlen(dirname));
781
782         /* allocate memory for each directory level */
783         ptr = zalloc((depth) * sizeof(char *));
784         if (!ptr)
785                 goto fail;
786         if (parse_path(ptr, parse_dirname))
787                 goto fail;
788         parent_inode = zalloc(sizeof(struct ext2_inode));
789         if (!parent_inode)
790                 goto fail;
791         first_inode = zalloc(sizeof(struct ext2_inode));
792         if (!first_inode)
793                 goto fail;
794         memcpy(parent_inode, ext4fs_root->inode, sizeof(struct ext2_inode));
795         memcpy(first_inode, parent_inode, sizeof(struct ext2_inode));
796         if (flags & F_FILE)
797                 result_inode_no = EXT2_ROOT_INO;
798         for (i = 1; i < depth; i++) {
799                 matched_inode_no = search_dir(parent_inode, ptr[i]);
800                 if (matched_inode_no == -1) {
801                         if (ptr[i + 1] == NULL && i == 1) {
802                                 result_inode_no = EXT2_ROOT_INO;
803                                 goto end;
804                         } else {
805                                 if (ptr[i + 1] == NULL)
806                                         break;
807                                 printf("Invalid path\n");
808                                 result_inode_no = -1;
809                                 goto fail;
810                         }
811                 } else {
812                         if (ptr[i + 1] != NULL) {
813                                 memset(parent_inode, '\0',
814                                        sizeof(struct ext2_inode));
815                                 if (ext4fs_iget(matched_inode_no,
816                                                 parent_inode)) {
817                                         result_inode_no = -1;
818                                         goto fail;
819                                 }
820                                 result_inode_no = matched_inode_no;
821                         } else {
822                                 break;
823                         }
824                 }
825         }
826
827 end:
828         if (i == 1)
829                 matched_inode_no = search_dir(first_inode, ptr[i]);
830         else
831                 matched_inode_no = search_dir(parent_inode, ptr[i]);
832
833         if (matched_inode_no != -1) {
834                 ext4fs_iget(matched_inode_no, &temp_inode);
835                 if (le16_to_cpu(temp_inode.mode) & S_IFDIR) {
836                         printf("It is a Directory\n");
837                         result_inode_no = -1;
838                         goto fail;
839                 }
840         }
841
842         if (strlen(ptr[i]) > 256) {
843                 result_inode_no = -1;
844                 goto fail;
845         }
846         memcpy(dname, ptr[i], strlen(ptr[i]));
847
848 fail:
849         free(depth_dirname);
850         free(parse_dirname);
851         for (i = 0; i < depth; i++) {
852                 if (!ptr[i])
853                         break;
854                 free(ptr[i]);
855         }
856         free(ptr);
857         free(parent_inode);
858         free(first_inode);
859
860         return result_inode_no;
861 }
862
863 static int unlink_filename(char *filename, unsigned int blknr)
864 {
865         int status;
866         int inodeno = 0;
867         int offset;
868         char *block_buffer = NULL;
869         struct ext2_dirent *dir = NULL;
870         struct ext2_dirent *previous_dir;
871         struct ext_filesystem *fs = get_fs();
872         int ret = -1;
873         char *direntname;
874
875         block_buffer = zalloc(fs->blksz);
876         if (!block_buffer)
877                 return -ENOMEM;
878
879         /* read the directory block */
880         status = ext4fs_devread((lbaint_t)blknr * fs->sect_perblk, 0,
881                                 fs->blksz, block_buffer);
882         if (status == 0)
883                 goto fail;
884
885         offset = 0;
886         do {
887                 if (offset & 3) {
888                         printf("Badly aligned ext2_dirent\n");
889                         break;
890                 }
891
892                 previous_dir = dir;
893                 dir = (struct ext2_dirent *)(block_buffer + offset);
894                 direntname = (char *)(dir) + sizeof(struct ext2_dirent);
895
896                 int direntlen = le16_to_cpu(dir->direntlen);
897                 if (direntlen < sizeof(struct ext2_dirent))
898                         break;
899
900                 if (dir->inode && (strlen(filename) == dir->namelen) &&
901                     (strncmp(direntname, filename, dir->namelen) == 0)) {
902                         inodeno = le32_to_cpu(dir->inode);
903                         break;
904                 }
905
906                 offset += direntlen;
907
908         } while (offset < fs->blksz);
909
910         if (inodeno > 0) {
911                 printf("file found, deleting\n");
912                 if (ext4fs_log_journal(block_buffer, blknr))
913                         goto fail;
914
915                 if (previous_dir) {
916                         /* merge dir entry with predecessor */
917                         uint16_t new_len;
918                         new_len = le16_to_cpu(previous_dir->direntlen);
919                         new_len += le16_to_cpu(dir->direntlen);
920                         previous_dir->direntlen = cpu_to_le16(new_len);
921                 } else {
922                         /* invalidate dir entry */
923                         dir->inode = 0;
924                 }
925                 if (ext4fs_put_metadata(block_buffer, blknr))
926                         goto fail;
927                 ret = inodeno;
928         }
929 fail:
930         free(block_buffer);
931
932         return ret;
933 }
934
935 int ext4fs_filename_unlink(char *filename)
936 {
937         int blk_idx;
938         long int blknr = -1;
939         int inodeno = -1;
940         uint32_t directory_blocks;
941
942         directory_blocks = le32_to_cpu(g_parent_inode->size) >>
943                 LOG2_BLOCK_SIZE(ext4fs_root);
944
945         /* read the block no allocated to a file */
946         for (blk_idx = 0; blk_idx < directory_blocks; blk_idx++) {
947                 blknr = read_allocated_block(g_parent_inode, blk_idx, NULL);
948                 if (blknr <= 0)
949                         break;
950                 inodeno = unlink_filename(filename, blknr);
951                 if (inodeno != -1)
952                         return inodeno;
953         }
954
955         return -1;
956 }
957
958 uint32_t ext4fs_get_new_blk_no(void)
959 {
960         short i;
961         short status;
962         int remainder;
963         unsigned int bg_idx;
964         static int prev_bg_bitmap_index = -1;
965         unsigned int blk_per_grp = le32_to_cpu(ext4fs_root->sblock.blocks_per_group);
966         struct ext_filesystem *fs = get_fs();
967         char *journal_buffer = zalloc(fs->blksz);
968         char *zero_buffer = zalloc(fs->blksz);
969         if (!journal_buffer || !zero_buffer)
970                 goto fail;
971
972         if (fs->first_pass_bbmap == 0) {
973                 for (i = 0; i < fs->no_blkgrp; i++) {
974                         struct ext2_block_group *bgd = NULL;
975                         bgd = ext4fs_get_group_descriptor(fs, i);
976                         if (ext4fs_bg_get_free_blocks(bgd, fs)) {
977                                 uint16_t bg_flags = ext4fs_bg_get_flags(bgd);
978                                 uint64_t b_bitmap_blk =
979                                         ext4fs_bg_get_block_id(bgd, fs);
980                                 if (bg_flags & EXT4_BG_BLOCK_UNINIT) {
981                                         memcpy(fs->blk_bmaps[i], zero_buffer,
982                                                fs->blksz);
983                                         put_ext4(b_bitmap_blk * fs->blksz,
984                                                  fs->blk_bmaps[i], fs->blksz);
985                                         bg_flags &= ~EXT4_BG_BLOCK_UNINIT;
986                                         ext4fs_bg_set_flags(bgd, bg_flags);
987                                 }
988                                 fs->curr_blkno =
989                                     _get_new_blk_no(fs->blk_bmaps[i]);
990                                 if (fs->curr_blkno == -1)
991                                         /* block bitmap is completely filled */
992                                         continue;
993                                 fs->curr_blkno = fs->curr_blkno +
994                                                 (i * fs->blksz * 8);
995                                 fs->first_pass_bbmap++;
996                                 ext4fs_bg_free_blocks_dec(bgd, fs);
997                                 ext4fs_sb_free_blocks_dec(fs->sb);
998                                 status = ext4fs_devread(b_bitmap_blk *
999                                                         fs->sect_perblk,
1000                                                         0, fs->blksz,
1001                                                         journal_buffer);
1002                                 if (status == 0)
1003                                         goto fail;
1004                                 if (ext4fs_log_journal(journal_buffer,
1005                                                        b_bitmap_blk))
1006                                         goto fail;
1007                                 goto success;
1008                         } else {
1009                                 debug("no space left on block group %d\n", i);
1010                         }
1011                 }
1012
1013                 goto fail;
1014         } else {
1015                 fs->curr_blkno++;
1016 restart:
1017                 /* get the blockbitmap index respective to blockno */
1018                 bg_idx = fs->curr_blkno / blk_per_grp;
1019                 if (fs->blksz == 1024) {
1020                         remainder = fs->curr_blkno % blk_per_grp;
1021                         if (!remainder)
1022                                 bg_idx--;
1023                 }
1024
1025                 /*
1026                  * To skip completely filled block group bitmaps
1027                  * Optimize the block allocation
1028                  */
1029                 if (bg_idx >= fs->no_blkgrp)
1030                         goto fail;
1031
1032                 struct ext2_block_group *bgd = NULL;
1033                 bgd = ext4fs_get_group_descriptor(fs, bg_idx);
1034                 if (ext4fs_bg_get_free_blocks(bgd, fs) == 0) {
1035                         debug("block group %u is full. Skipping\n", bg_idx);
1036                         fs->curr_blkno = (bg_idx + 1) * blk_per_grp;
1037                         if (fs->blksz == 1024)
1038                                 fs->curr_blkno += 1;
1039                         goto restart;
1040                 }
1041
1042                 uint16_t bg_flags = ext4fs_bg_get_flags(bgd);
1043                 uint64_t b_bitmap_blk = ext4fs_bg_get_block_id(bgd, fs);
1044                 if (bg_flags & EXT4_BG_BLOCK_UNINIT) {
1045                         memcpy(fs->blk_bmaps[bg_idx], zero_buffer, fs->blksz);
1046                         put_ext4(b_bitmap_blk * fs->blksz,
1047                                  zero_buffer, fs->blksz);
1048                         bg_flags &= ~EXT4_BG_BLOCK_UNINIT;
1049                         ext4fs_bg_set_flags(bgd, bg_flags);
1050                 }
1051
1052                 if (ext4fs_set_block_bmap(fs->curr_blkno, fs->blk_bmaps[bg_idx],
1053                                    bg_idx) != 0) {
1054                         debug("going for restart for the block no %ld %u\n",
1055                               fs->curr_blkno, bg_idx);
1056                         fs->curr_blkno++;
1057                         goto restart;
1058                 }
1059
1060                 /* journal backup */
1061                 if (prev_bg_bitmap_index != bg_idx) {
1062                         status = ext4fs_devread(b_bitmap_blk * fs->sect_perblk,
1063                                                 0, fs->blksz, journal_buffer);
1064                         if (status == 0)
1065                                 goto fail;
1066                         if (ext4fs_log_journal(journal_buffer, b_bitmap_blk))
1067                                 goto fail;
1068
1069                         prev_bg_bitmap_index = bg_idx;
1070                 }
1071                 ext4fs_bg_free_blocks_dec(bgd, fs);
1072                 ext4fs_sb_free_blocks_dec(fs->sb);
1073                 goto success;
1074         }
1075 success:
1076         free(journal_buffer);
1077         free(zero_buffer);
1078
1079         return fs->curr_blkno;
1080 fail:
1081         free(journal_buffer);
1082         free(zero_buffer);
1083
1084         return -1;
1085 }
1086
1087 int ext4fs_get_new_inode_no(void)
1088 {
1089         short i;
1090         short status;
1091         unsigned int ibmap_idx;
1092         static int prev_inode_bitmap_index = -1;
1093         unsigned int inodes_per_grp = le32_to_cpu(ext4fs_root->sblock.inodes_per_group);
1094         struct ext_filesystem *fs = get_fs();
1095         char *journal_buffer = zalloc(fs->blksz);
1096         char *zero_buffer = zalloc(fs->blksz);
1097         if (!journal_buffer || !zero_buffer)
1098                 goto fail;
1099         int has_gdt_chksum = le32_to_cpu(fs->sb->feature_ro_compat) &
1100                 EXT4_FEATURE_RO_COMPAT_GDT_CSUM ? 1 : 0;
1101
1102         if (fs->first_pass_ibmap == 0) {
1103                 for (i = 0; i < fs->no_blkgrp; i++) {
1104                         uint32_t free_inodes;
1105                         struct ext2_block_group *bgd = NULL;
1106                         bgd = ext4fs_get_group_descriptor(fs, i);
1107                         free_inodes = ext4fs_bg_get_free_inodes(bgd, fs);
1108                         if (free_inodes) {
1109                                 uint16_t bg_flags = ext4fs_bg_get_flags(bgd);
1110                                 uint64_t i_bitmap_blk =
1111                                         ext4fs_bg_get_inode_id(bgd, fs);
1112                                 if (has_gdt_chksum)
1113                                         bgd->bg_itable_unused = free_inodes;
1114                                 if (bg_flags & EXT4_BG_INODE_UNINIT) {
1115                                         put_ext4(i_bitmap_blk * fs->blksz,
1116                                                  zero_buffer, fs->blksz);
1117                                         bg_flags &= ~EXT4_BG_INODE_UNINIT;
1118                                         ext4fs_bg_set_flags(bgd, bg_flags);
1119                                         memcpy(fs->inode_bmaps[i],
1120                                                zero_buffer, fs->blksz);
1121                                 }
1122                                 fs->curr_inode_no =
1123                                     _get_new_inode_no(fs->inode_bmaps[i]);
1124                                 if (fs->curr_inode_no == -1)
1125                                         /* inode bitmap is completely filled */
1126                                         continue;
1127                                 fs->curr_inode_no = fs->curr_inode_no +
1128                                                         (i * inodes_per_grp);
1129                                 fs->first_pass_ibmap++;
1130                                 ext4fs_bg_free_inodes_dec(bgd, fs);
1131                                 if (has_gdt_chksum)
1132                                         ext4fs_bg_itable_unused_dec(bgd, fs);
1133                                 ext4fs_sb_free_inodes_dec(fs->sb);
1134                                 status = ext4fs_devread(i_bitmap_blk *
1135                                                         fs->sect_perblk,
1136                                                         0, fs->blksz,
1137                                                         journal_buffer);
1138                                 if (status == 0)
1139                                         goto fail;
1140                                 if (ext4fs_log_journal(journal_buffer,
1141                                                        i_bitmap_blk))
1142                                         goto fail;
1143                                 goto success;
1144                         } else
1145                                 debug("no inode left on block group %d\n", i);
1146                 }
1147                 goto fail;
1148         } else {
1149 restart:
1150                 fs->curr_inode_no++;
1151                 /* get the blockbitmap index respective to blockno */
1152                 ibmap_idx = fs->curr_inode_no / inodes_per_grp;
1153                 struct ext2_block_group *bgd =
1154                         ext4fs_get_group_descriptor(fs, ibmap_idx);
1155                 uint16_t bg_flags = ext4fs_bg_get_flags(bgd);
1156                 uint64_t i_bitmap_blk = ext4fs_bg_get_inode_id(bgd, fs);
1157
1158                 if (bg_flags & EXT4_BG_INODE_UNINIT) {
1159                         put_ext4(i_bitmap_blk * fs->blksz,
1160                                  zero_buffer, fs->blksz);
1161                         bg_flags &= ~EXT4_BG_INODE_UNINIT;
1162                         ext4fs_bg_set_flags(bgd, bg_flags);
1163                         memcpy(fs->inode_bmaps[ibmap_idx], zero_buffer,
1164                                 fs->blksz);
1165                 }
1166
1167                 if (ext4fs_set_inode_bmap(fs->curr_inode_no,
1168                                           fs->inode_bmaps[ibmap_idx],
1169                                           ibmap_idx) != 0) {
1170                         debug("going for restart for the block no %d %u\n",
1171                               fs->curr_inode_no, ibmap_idx);
1172                         goto restart;
1173                 }
1174
1175                 /* journal backup */
1176                 if (prev_inode_bitmap_index != ibmap_idx) {
1177                         status = ext4fs_devread(i_bitmap_blk * fs->sect_perblk,
1178                                                 0, fs->blksz, journal_buffer);
1179                         if (status == 0)
1180                                 goto fail;
1181                         if (ext4fs_log_journal(journal_buffer,
1182                                                 le32_to_cpu(bgd->inode_id)))
1183                                 goto fail;
1184                         prev_inode_bitmap_index = ibmap_idx;
1185                 }
1186                 ext4fs_bg_free_inodes_dec(bgd, fs);
1187                 if (has_gdt_chksum)
1188                         bgd->bg_itable_unused = bgd->free_inodes;
1189                 ext4fs_sb_free_inodes_dec(fs->sb);
1190                 goto success;
1191         }
1192
1193 success:
1194         free(journal_buffer);
1195         free(zero_buffer);
1196
1197         return fs->curr_inode_no;
1198 fail:
1199         free(journal_buffer);
1200         free(zero_buffer);
1201
1202         return -1;
1203
1204 }
1205
1206
1207 static void alloc_single_indirect_block(struct ext2_inode *file_inode,
1208                                         unsigned int *total_remaining_blocks,
1209                                         unsigned int *no_blks_reqd)
1210 {
1211         short i;
1212         short status;
1213         long int actual_block_no;
1214         long int si_blockno;
1215         /* si :single indirect */
1216         __le32 *si_buffer = NULL;
1217         __le32 *si_start_addr = NULL;
1218         struct ext_filesystem *fs = get_fs();
1219
1220         if (*total_remaining_blocks != 0) {
1221                 si_buffer = zalloc(fs->blksz);
1222                 if (!si_buffer) {
1223                         printf("No Memory\n");
1224                         return;
1225                 }
1226                 si_start_addr = si_buffer;
1227                 si_blockno = ext4fs_get_new_blk_no();
1228                 if (si_blockno == -1) {
1229                         printf("no block left to assign\n");
1230                         goto fail;
1231                 }
1232                 (*no_blks_reqd)++;
1233                 debug("SIPB %ld: %u\n", si_blockno, *total_remaining_blocks);
1234
1235                 status = ext4fs_devread((lbaint_t)si_blockno * fs->sect_perblk,
1236                                         0, fs->blksz, (char *)si_buffer);
1237                 memset(si_buffer, '\0', fs->blksz);
1238                 if (status == 0)
1239                         goto fail;
1240
1241                 for (i = 0; i < (fs->blksz / sizeof(int)); i++) {
1242                         actual_block_no = ext4fs_get_new_blk_no();
1243                         if (actual_block_no == -1) {
1244                                 printf("no block left to assign\n");
1245                                 goto fail;
1246                         }
1247                         *si_buffer = cpu_to_le32(actual_block_no);
1248                         debug("SIAB %u: %u\n", *si_buffer,
1249                                 *total_remaining_blocks);
1250
1251                         si_buffer++;
1252                         (*total_remaining_blocks)--;
1253                         if (*total_remaining_blocks == 0)
1254                                 break;
1255                 }
1256
1257                 /* write the block to disk */
1258                 put_ext4(((uint64_t) ((uint64_t)si_blockno * (uint64_t)fs->blksz)),
1259                          si_start_addr, fs->blksz);
1260                 file_inode->b.blocks.indir_block = cpu_to_le32(si_blockno);
1261         }
1262 fail:
1263         free(si_start_addr);
1264 }
1265
1266 static void alloc_double_indirect_block(struct ext2_inode *file_inode,
1267                                         unsigned int *total_remaining_blocks,
1268                                         unsigned int *no_blks_reqd)
1269 {
1270         short i;
1271         short j;
1272         short status;
1273         long int actual_block_no;
1274         /* di:double indirect */
1275         long int di_blockno_parent;
1276         long int di_blockno_child;
1277         __le32 *di_parent_buffer = NULL;
1278         __le32 *di_child_buff = NULL;
1279         __le32 *di_block_start_addr = NULL;
1280         __le32 *di_child_buff_start = NULL;
1281         struct ext_filesystem *fs = get_fs();
1282
1283         if (*total_remaining_blocks != 0) {
1284                 /* double indirect parent block connecting to inode */
1285                 di_blockno_parent = ext4fs_get_new_blk_no();
1286                 if (di_blockno_parent == -1) {
1287                         printf("no block left to assign\n");
1288                         goto fail;
1289                 }
1290                 di_parent_buffer = zalloc(fs->blksz);
1291                 if (!di_parent_buffer)
1292                         goto fail;
1293
1294                 di_block_start_addr = di_parent_buffer;
1295                 (*no_blks_reqd)++;
1296                 debug("DIPB %ld: %u\n", di_blockno_parent,
1297                       *total_remaining_blocks);
1298
1299                 status = ext4fs_devread((lbaint_t)di_blockno_parent *
1300                                         fs->sect_perblk, 0,
1301                                         fs->blksz, (char *)di_parent_buffer);
1302
1303                 if (!status) {
1304                         printf("%s: Device read error!\n", __func__);
1305                         goto fail;
1306                 }
1307                 memset(di_parent_buffer, '\0', fs->blksz);
1308
1309                 /*
1310                  * start:for each double indirect parent
1311                  * block create one more block
1312                  */
1313                 for (i = 0; i < (fs->blksz / sizeof(int)); i++) {
1314                         di_blockno_child = ext4fs_get_new_blk_no();
1315                         if (di_blockno_child == -1) {
1316                                 printf("no block left to assign\n");
1317                                 goto fail;
1318                         }
1319                         di_child_buff = zalloc(fs->blksz);
1320                         if (!di_child_buff)
1321                                 goto fail;
1322
1323                         di_child_buff_start = di_child_buff;
1324                         *di_parent_buffer = cpu_to_le32(di_blockno_child);
1325                         di_parent_buffer++;
1326                         (*no_blks_reqd)++;
1327                         debug("DICB %ld: %u\n", di_blockno_child,
1328                               *total_remaining_blocks);
1329
1330                         status = ext4fs_devread((lbaint_t)di_blockno_child *
1331                                                 fs->sect_perblk, 0,
1332                                                 fs->blksz,
1333                                                 (char *)di_child_buff);
1334
1335                         if (!status) {
1336                                 printf("%s: Device read error!\n", __func__);
1337                                 goto fail;
1338                         }
1339                         memset(di_child_buff, '\0', fs->blksz);
1340                         /* filling of actual datablocks for each child */
1341                         for (j = 0; j < (fs->blksz / sizeof(int)); j++) {
1342                                 actual_block_no = ext4fs_get_new_blk_no();
1343                                 if (actual_block_no == -1) {
1344                                         printf("no block left to assign\n");
1345                                         goto fail;
1346                                 }
1347                                 *di_child_buff = cpu_to_le32(actual_block_no);
1348                                 debug("DIAB %ld: %u\n", actual_block_no,
1349                                       *total_remaining_blocks);
1350
1351                                 di_child_buff++;
1352                                 (*total_remaining_blocks)--;
1353                                 if (*total_remaining_blocks == 0)
1354                                         break;
1355                         }
1356                         /* write the block  table */
1357                         put_ext4(((uint64_t) ((uint64_t)di_blockno_child * (uint64_t)fs->blksz)),
1358                                  di_child_buff_start, fs->blksz);
1359                         free(di_child_buff_start);
1360                         di_child_buff_start = NULL;
1361
1362                         if (*total_remaining_blocks == 0)
1363                                 break;
1364                 }
1365                 put_ext4(((uint64_t) ((uint64_t)di_blockno_parent * (uint64_t)fs->blksz)),
1366                          di_block_start_addr, fs->blksz);
1367                 file_inode->b.blocks.double_indir_block = cpu_to_le32(di_blockno_parent);
1368         }
1369 fail:
1370         free(di_block_start_addr);
1371 }
1372
1373 static void alloc_triple_indirect_block(struct ext2_inode *file_inode,
1374                                         unsigned int *total_remaining_blocks,
1375                                         unsigned int *no_blks_reqd)
1376 {
1377         short i;
1378         short j;
1379         short k;
1380         long int actual_block_no;
1381         /* ti: Triple Indirect */
1382         long int ti_gp_blockno;
1383         long int ti_parent_blockno;
1384         long int ti_child_blockno;
1385         __le32 *ti_gp_buff = NULL;
1386         __le32 *ti_parent_buff = NULL;
1387         __le32 *ti_child_buff = NULL;
1388         __le32 *ti_gp_buff_start_addr = NULL;
1389         __le32 *ti_pbuff_start_addr = NULL;
1390         __le32 *ti_cbuff_start_addr = NULL;
1391         struct ext_filesystem *fs = get_fs();
1392         if (*total_remaining_blocks != 0) {
1393                 /* triple indirect grand parent block connecting to inode */
1394                 ti_gp_blockno = ext4fs_get_new_blk_no();
1395                 if (ti_gp_blockno == -1) {
1396                         printf("no block left to assign\n");
1397                         return;
1398                 }
1399                 ti_gp_buff = zalloc(fs->blksz);
1400                 if (!ti_gp_buff)
1401                         return;
1402
1403                 ti_gp_buff_start_addr = ti_gp_buff;
1404                 (*no_blks_reqd)++;
1405                 debug("TIGPB %ld: %u\n", ti_gp_blockno,
1406                       *total_remaining_blocks);
1407
1408                 /* for each 4 byte grand parent entry create one more block */
1409                 for (i = 0; i < (fs->blksz / sizeof(int)); i++) {
1410                         ti_parent_blockno = ext4fs_get_new_blk_no();
1411                         if (ti_parent_blockno == -1) {
1412                                 printf("no block left to assign\n");
1413                                 goto fail;
1414                         }
1415                         ti_parent_buff = zalloc(fs->blksz);
1416                         if (!ti_parent_buff)
1417                                 goto fail;
1418
1419                         ti_pbuff_start_addr = ti_parent_buff;
1420                         *ti_gp_buff = cpu_to_le32(ti_parent_blockno);
1421                         ti_gp_buff++;
1422                         (*no_blks_reqd)++;
1423                         debug("TIPB %ld: %u\n", ti_parent_blockno,
1424                               *total_remaining_blocks);
1425
1426                         /* for each 4 byte entry parent create one more block */
1427                         for (j = 0; j < (fs->blksz / sizeof(int)); j++) {
1428                                 ti_child_blockno = ext4fs_get_new_blk_no();
1429                                 if (ti_child_blockno == -1) {
1430                                         printf("no block left assign\n");
1431                                         goto fail1;
1432                                 }
1433                                 ti_child_buff = zalloc(fs->blksz);
1434                                 if (!ti_child_buff)
1435                                         goto fail1;
1436
1437                                 ti_cbuff_start_addr = ti_child_buff;
1438                                 *ti_parent_buff = cpu_to_le32(ti_child_blockno);
1439                                 ti_parent_buff++;
1440                                 (*no_blks_reqd)++;
1441                                 debug("TICB %ld: %u\n", ti_parent_blockno,
1442                                       *total_remaining_blocks);
1443
1444                                 /* fill actual datablocks for each child */
1445                                 for (k = 0; k < (fs->blksz / sizeof(int));
1446                                         k++) {
1447                                         actual_block_no =
1448                                             ext4fs_get_new_blk_no();
1449                                         if (actual_block_no == -1) {
1450                                                 printf("no block left\n");
1451                                                 free(ti_cbuff_start_addr);
1452                                                 goto fail1;
1453                                         }
1454                                         *ti_child_buff = cpu_to_le32(actual_block_no);
1455                                         debug("TIAB %ld: %u\n", actual_block_no,
1456                                               *total_remaining_blocks);
1457
1458                                         ti_child_buff++;
1459                                         (*total_remaining_blocks)--;
1460                                         if (*total_remaining_blocks == 0)
1461                                                 break;
1462                                 }
1463                                 /* write the child block */
1464                                 put_ext4(((uint64_t) ((uint64_t)ti_child_blockno *
1465                                                       (uint64_t)fs->blksz)),
1466                                          ti_cbuff_start_addr, fs->blksz);
1467                                 free(ti_cbuff_start_addr);
1468
1469                                 if (*total_remaining_blocks == 0)
1470                                         break;
1471                         }
1472                         /* write the parent block */
1473                         put_ext4(((uint64_t) ((uint64_t)ti_parent_blockno * (uint64_t)fs->blksz)),
1474                                  ti_pbuff_start_addr, fs->blksz);
1475                         free(ti_pbuff_start_addr);
1476
1477                         if (*total_remaining_blocks == 0)
1478                                 break;
1479                 }
1480                 /* write the grand parent block */
1481                 put_ext4(((uint64_t) ((uint64_t)ti_gp_blockno * (uint64_t)fs->blksz)),
1482                          ti_gp_buff_start_addr, fs->blksz);
1483                 file_inode->b.blocks.triple_indir_block = cpu_to_le32(ti_gp_blockno);
1484                 free(ti_gp_buff_start_addr);
1485                 return;
1486         }
1487 fail1:
1488         free(ti_pbuff_start_addr);
1489 fail:
1490         free(ti_gp_buff_start_addr);
1491 }
1492
1493 void ext4fs_allocate_blocks(struct ext2_inode *file_inode,
1494                                 unsigned int total_remaining_blocks,
1495                                 unsigned int *total_no_of_block)
1496 {
1497         short i;
1498         long int direct_blockno;
1499         unsigned int no_blks_reqd = 0;
1500
1501         /* allocation of direct blocks */
1502         for (i = 0; total_remaining_blocks && i < INDIRECT_BLOCKS; i++) {
1503                 direct_blockno = ext4fs_get_new_blk_no();
1504                 if (direct_blockno == -1) {
1505                         printf("no block left to assign\n");
1506                         return;
1507                 }
1508                 file_inode->b.blocks.dir_blocks[i] = cpu_to_le32(direct_blockno);
1509                 debug("DB %ld: %u\n", direct_blockno, total_remaining_blocks);
1510
1511                 total_remaining_blocks--;
1512         }
1513
1514         alloc_single_indirect_block(file_inode, &total_remaining_blocks,
1515                                     &no_blks_reqd);
1516         alloc_double_indirect_block(file_inode, &total_remaining_blocks,
1517                                     &no_blks_reqd);
1518         alloc_triple_indirect_block(file_inode, &total_remaining_blocks,
1519                                     &no_blks_reqd);
1520         *total_no_of_block += no_blks_reqd;
1521 }
1522
1523 #endif
1524
1525 static struct ext4_extent_header *ext4fs_get_extent_block
1526         (struct ext2_data *data, struct ext_block_cache *cache,
1527                 struct ext4_extent_header *ext_block,
1528                 uint32_t fileblock, int log2_blksz)
1529 {
1530         struct ext4_extent_idx *index;
1531         unsigned long long block;
1532         int blksz = EXT2_BLOCK_SIZE(data);
1533         int i;
1534
1535         while (1) {
1536                 index = (struct ext4_extent_idx *)(ext_block + 1);
1537
1538                 if (le16_to_cpu(ext_block->eh_magic) != EXT4_EXT_MAGIC)
1539                         return NULL;
1540
1541                 if (ext_block->eh_depth == 0)
1542                         return ext_block;
1543                 i = -1;
1544                 do {
1545                         i++;
1546                         if (i >= le16_to_cpu(ext_block->eh_entries))
1547                                 break;
1548                 } while (fileblock >= le32_to_cpu(index[i].ei_block));
1549
1550                 /*
1551                  * If first logical block number is higher than requested fileblock,
1552                  * it is a sparse file. This is handled on upper layer.
1553                  */
1554                 if (i > 0)
1555                         i--;
1556
1557                 block = le16_to_cpu(index[i].ei_leaf_hi);
1558                 block = (block << 32) + le32_to_cpu(index[i].ei_leaf_lo);
1559                 block <<= log2_blksz;
1560                 if (!ext_cache_read(cache, (lbaint_t)block, blksz))
1561                         return NULL;
1562                 ext_block = (struct ext4_extent_header *)cache->buf;
1563         }
1564 }
1565
1566 static int ext4fs_blockgroup
1567         (struct ext2_data *data, int group, struct ext2_block_group *blkgrp)
1568 {
1569         long int blkno;
1570         unsigned int blkoff, desc_per_blk;
1571         int log2blksz = get_fs()->dev_desc->log2blksz;
1572         int desc_size = get_fs()->gdsize;
1573
1574         desc_per_blk = EXT2_BLOCK_SIZE(data) / desc_size;
1575
1576         blkno = le32_to_cpu(data->sblock.first_data_block) + 1 +
1577                         group / desc_per_blk;
1578         blkoff = (group % desc_per_blk) * desc_size;
1579
1580         debug("ext4fs read %d group descriptor (blkno %ld blkoff %u)\n",
1581               group, blkno, blkoff);
1582
1583         return ext4fs_devread((lbaint_t)blkno <<
1584                               (LOG2_BLOCK_SIZE(data) - log2blksz),
1585                               blkoff, desc_size, (char *)blkgrp);
1586 }
1587
1588 int ext4fs_read_inode(struct ext2_data *data, int ino, struct ext2_inode *inode)
1589 {
1590         struct ext2_block_group blkgrp;
1591         struct ext2_sblock *sblock = &data->sblock;
1592         struct ext_filesystem *fs = get_fs();
1593         int log2blksz = get_fs()->dev_desc->log2blksz;
1594         int inodes_per_block, status;
1595         long int blkno;
1596         unsigned int blkoff;
1597
1598         /* It is easier to calculate if the first inode is 0. */
1599         ino--;
1600         status = ext4fs_blockgroup(data, ino / le32_to_cpu
1601                                    (sblock->inodes_per_group), &blkgrp);
1602         if (status == 0)
1603                 return 0;
1604
1605         inodes_per_block = EXT2_BLOCK_SIZE(data) / fs->inodesz;
1606         blkno = ext4fs_bg_get_inode_table_id(&blkgrp, fs) +
1607             (ino % le32_to_cpu(sblock->inodes_per_group)) / inodes_per_block;
1608         blkoff = (ino % inodes_per_block) * fs->inodesz;
1609         /* Read the inode. */
1610         status = ext4fs_devread((lbaint_t)blkno << (LOG2_BLOCK_SIZE(data) -
1611                                 log2blksz), blkoff,
1612                                 sizeof(struct ext2_inode), (char *)inode);
1613         if (status == 0)
1614                 return 0;
1615
1616         return 1;
1617 }
1618
1619 long int read_allocated_block(struct ext2_inode *inode, int fileblock,
1620                               struct ext_block_cache *cache)
1621 {
1622         long int blknr;
1623         int blksz;
1624         int log2_blksz;
1625         int status;
1626         long int rblock;
1627         long int perblock_parent;
1628         long int perblock_child;
1629         unsigned long long start;
1630         /* get the blocksize of the filesystem */
1631         blksz = EXT2_BLOCK_SIZE(ext4fs_root);
1632         log2_blksz = LOG2_BLOCK_SIZE(ext4fs_root)
1633                 - get_fs()->dev_desc->log2blksz;
1634
1635         if (le32_to_cpu(inode->flags) & EXT4_EXTENTS_FL) {
1636                 long int startblock, endblock;
1637                 struct ext_block_cache *c, cd;
1638                 struct ext4_extent_header *ext_block;
1639                 struct ext4_extent *extent;
1640                 int i;
1641
1642                 if (cache) {
1643                         c = cache;
1644                 } else {
1645                         c = &cd;
1646                         ext_cache_init(c);
1647                 }
1648                 ext_block =
1649                         ext4fs_get_extent_block(ext4fs_root, c,
1650                                                 (struct ext4_extent_header *)
1651                                                 inode->b.blocks.dir_blocks,
1652                                                 fileblock, log2_blksz);
1653                 if (!ext_block) {
1654                         printf("invalid extent block\n");
1655                         if (!cache)
1656                                 ext_cache_fini(c);
1657                         return -EINVAL;
1658                 }
1659
1660                 extent = (struct ext4_extent *)(ext_block + 1);
1661
1662                 for (i = 0; i < le16_to_cpu(ext_block->eh_entries); i++) {
1663                         startblock = le32_to_cpu(extent[i].ee_block);
1664                         endblock = startblock + le16_to_cpu(extent[i].ee_len);
1665
1666                         if (startblock > fileblock) {
1667                                 /* Sparse file */
1668                                 if (!cache)
1669                                         ext_cache_fini(c);
1670                                 return 0;
1671
1672                         } else if (fileblock < endblock) {
1673                                 start = le16_to_cpu(extent[i].ee_start_hi);
1674                                 start = (start << 32) +
1675                                         le32_to_cpu(extent[i].ee_start_lo);
1676                                 if (!cache)
1677                                         ext_cache_fini(c);
1678                                 return (fileblock - startblock) + start;
1679                         }
1680                 }
1681
1682                 if (!cache)
1683                         ext_cache_fini(c);
1684                 return 0;
1685         }
1686
1687         /* Direct blocks. */
1688         if (fileblock < INDIRECT_BLOCKS)
1689                 blknr = le32_to_cpu(inode->b.blocks.dir_blocks[fileblock]);
1690
1691         /* Indirect. */
1692         else if (fileblock < (INDIRECT_BLOCKS + (blksz / 4))) {
1693                 if (ext4fs_indir1_block == NULL) {
1694                         ext4fs_indir1_block = zalloc(blksz);
1695                         if (ext4fs_indir1_block == NULL) {
1696                                 printf("** SI ext2fs read block (indir 1)"
1697                                         "malloc failed. **\n");
1698                                 return -1;
1699                         }
1700                         ext4fs_indir1_size = blksz;
1701                         ext4fs_indir1_blkno = -1;
1702                 }
1703                 if (blksz != ext4fs_indir1_size) {
1704                         free(ext4fs_indir1_block);
1705                         ext4fs_indir1_block = NULL;
1706                         ext4fs_indir1_size = 0;
1707                         ext4fs_indir1_blkno = -1;
1708                         ext4fs_indir1_block = zalloc(blksz);
1709                         if (ext4fs_indir1_block == NULL) {
1710                                 printf("** SI ext2fs read block (indir 1):"
1711                                         "malloc failed. **\n");
1712                                 return -1;
1713                         }
1714                         ext4fs_indir1_size = blksz;
1715                 }
1716                 if ((le32_to_cpu(inode->b.blocks.indir_block) <<
1717                      log2_blksz) != ext4fs_indir1_blkno) {
1718                         status =
1719                             ext4fs_devread((lbaint_t)le32_to_cpu
1720                                            (inode->b.blocks.
1721                                             indir_block) << log2_blksz, 0,
1722                                            blksz, (char *)ext4fs_indir1_block);
1723                         if (status == 0) {
1724                                 printf("** SI ext2fs read block (indir 1)"
1725                                         "failed. **\n");
1726                                 return -1;
1727                         }
1728                         ext4fs_indir1_blkno =
1729                                 le32_to_cpu(inode->b.blocks.
1730                                                indir_block) << log2_blksz;
1731                 }
1732                 blknr = le32_to_cpu(ext4fs_indir1_block
1733                                       [fileblock - INDIRECT_BLOCKS]);
1734         }
1735         /* Double indirect. */
1736         else if (fileblock < (INDIRECT_BLOCKS + (blksz / 4 *
1737                                         (blksz / 4 + 1)))) {
1738
1739                 long int perblock = blksz / 4;
1740                 long int rblock = fileblock - (INDIRECT_BLOCKS + blksz / 4);
1741
1742                 if (ext4fs_indir1_block == NULL) {
1743                         ext4fs_indir1_block = zalloc(blksz);
1744                         if (ext4fs_indir1_block == NULL) {
1745                                 printf("** DI ext2fs read block (indir 2 1)"
1746                                         "malloc failed. **\n");
1747                                 return -1;
1748                         }
1749                         ext4fs_indir1_size = blksz;
1750                         ext4fs_indir1_blkno = -1;
1751                 }
1752                 if (blksz != ext4fs_indir1_size) {
1753                         free(ext4fs_indir1_block);
1754                         ext4fs_indir1_block = NULL;
1755                         ext4fs_indir1_size = 0;
1756                         ext4fs_indir1_blkno = -1;
1757                         ext4fs_indir1_block = zalloc(blksz);
1758                         if (ext4fs_indir1_block == NULL) {
1759                                 printf("** DI ext2fs read block (indir 2 1)"
1760                                         "malloc failed. **\n");
1761                                 return -1;
1762                         }
1763                         ext4fs_indir1_size = blksz;
1764                 }
1765                 if ((le32_to_cpu(inode->b.blocks.double_indir_block) <<
1766                      log2_blksz) != ext4fs_indir1_blkno) {
1767                         status =
1768                             ext4fs_devread((lbaint_t)le32_to_cpu
1769                                            (inode->b.blocks.
1770                                             double_indir_block) << log2_blksz,
1771                                            0, blksz,
1772                                            (char *)ext4fs_indir1_block);
1773                         if (status == 0) {
1774                                 printf("** DI ext2fs read block (indir 2 1)"
1775                                         "failed. **\n");
1776                                 return -1;
1777                         }
1778                         ext4fs_indir1_blkno =
1779                             le32_to_cpu(inode->b.blocks.double_indir_block) <<
1780                             log2_blksz;
1781                 }
1782
1783                 if (ext4fs_indir2_block == NULL) {
1784                         ext4fs_indir2_block = zalloc(blksz);
1785                         if (ext4fs_indir2_block == NULL) {
1786                                 printf("** DI ext2fs read block (indir 2 2)"
1787                                         "malloc failed. **\n");
1788                                 return -1;
1789                         }
1790                         ext4fs_indir2_size = blksz;
1791                         ext4fs_indir2_blkno = -1;
1792                 }
1793                 if (blksz != ext4fs_indir2_size) {
1794                         free(ext4fs_indir2_block);
1795                         ext4fs_indir2_block = NULL;
1796                         ext4fs_indir2_size = 0;
1797                         ext4fs_indir2_blkno = -1;
1798                         ext4fs_indir2_block = zalloc(blksz);
1799                         if (ext4fs_indir2_block == NULL) {
1800                                 printf("** DI ext2fs read block (indir 2 2)"
1801                                         "malloc failed. **\n");
1802                                 return -1;
1803                         }
1804                         ext4fs_indir2_size = blksz;
1805                 }
1806                 if ((le32_to_cpu(ext4fs_indir1_block[rblock / perblock]) <<
1807                      log2_blksz) != ext4fs_indir2_blkno) {
1808                         status = ext4fs_devread((lbaint_t)le32_to_cpu
1809                                                 (ext4fs_indir1_block
1810                                                  [rblock /
1811                                                   perblock]) << log2_blksz, 0,
1812                                                 blksz,
1813                                                 (char *)ext4fs_indir2_block);
1814                         if (status == 0) {
1815                                 printf("** DI ext2fs read block (indir 2 2)"
1816                                         "failed. **\n");
1817                                 return -1;
1818                         }
1819                         ext4fs_indir2_blkno =
1820                             le32_to_cpu(ext4fs_indir1_block[rblock
1821                                                               /
1822                                                               perblock]) <<
1823                             log2_blksz;
1824                 }
1825                 blknr = le32_to_cpu(ext4fs_indir2_block[rblock % perblock]);
1826         }
1827         /* Tripple indirect. */
1828         else {
1829                 rblock = fileblock - (INDIRECT_BLOCKS + blksz / 4 +
1830                                       (blksz / 4 * blksz / 4));
1831                 perblock_child = blksz / 4;
1832                 perblock_parent = ((blksz / 4) * (blksz / 4));
1833
1834                 if (ext4fs_indir1_block == NULL) {
1835                         ext4fs_indir1_block = zalloc(blksz);
1836                         if (ext4fs_indir1_block == NULL) {
1837                                 printf("** TI ext2fs read block (indir 2 1)"
1838                                         "malloc failed. **\n");
1839                                 return -1;
1840                         }
1841                         ext4fs_indir1_size = blksz;
1842                         ext4fs_indir1_blkno = -1;
1843                 }
1844                 if (blksz != ext4fs_indir1_size) {
1845                         free(ext4fs_indir1_block);
1846                         ext4fs_indir1_block = NULL;
1847                         ext4fs_indir1_size = 0;
1848                         ext4fs_indir1_blkno = -1;
1849                         ext4fs_indir1_block = zalloc(blksz);
1850                         if (ext4fs_indir1_block == NULL) {
1851                                 printf("** TI ext2fs read block (indir 2 1)"
1852                                         "malloc failed. **\n");
1853                                 return -1;
1854                         }
1855                         ext4fs_indir1_size = blksz;
1856                 }
1857                 if ((le32_to_cpu(inode->b.blocks.triple_indir_block) <<
1858                      log2_blksz) != ext4fs_indir1_blkno) {
1859                         status = ext4fs_devread
1860                             ((lbaint_t)
1861                              le32_to_cpu(inode->b.blocks.triple_indir_block)
1862                              << log2_blksz, 0, blksz,
1863                              (char *)ext4fs_indir1_block);
1864                         if (status == 0) {
1865                                 printf("** TI ext2fs read block (indir 2 1)"
1866                                         "failed. **\n");
1867                                 return -1;
1868                         }
1869                         ext4fs_indir1_blkno =
1870                             le32_to_cpu(inode->b.blocks.triple_indir_block) <<
1871                             log2_blksz;
1872                 }
1873
1874                 if (ext4fs_indir2_block == NULL) {
1875                         ext4fs_indir2_block = zalloc(blksz);
1876                         if (ext4fs_indir2_block == NULL) {
1877                                 printf("** TI ext2fs read block (indir 2 2)"
1878                                         "malloc failed. **\n");
1879                                 return -1;
1880                         }
1881                         ext4fs_indir2_size = blksz;
1882                         ext4fs_indir2_blkno = -1;
1883                 }
1884                 if (blksz != ext4fs_indir2_size) {
1885                         free(ext4fs_indir2_block);
1886                         ext4fs_indir2_block = NULL;
1887                         ext4fs_indir2_size = 0;
1888                         ext4fs_indir2_blkno = -1;
1889                         ext4fs_indir2_block = zalloc(blksz);
1890                         if (ext4fs_indir2_block == NULL) {
1891                                 printf("** TI ext2fs read block (indir 2 2)"
1892                                         "malloc failed. **\n");
1893                                 return -1;
1894                         }
1895                         ext4fs_indir2_size = blksz;
1896                 }
1897                 if ((le32_to_cpu(ext4fs_indir1_block[rblock /
1898                                                        perblock_parent]) <<
1899                      log2_blksz)
1900                     != ext4fs_indir2_blkno) {
1901                         status = ext4fs_devread((lbaint_t)le32_to_cpu
1902                                                 (ext4fs_indir1_block
1903                                                  [rblock /
1904                                                   perblock_parent]) <<
1905                                                 log2_blksz, 0, blksz,
1906                                                 (char *)ext4fs_indir2_block);
1907                         if (status == 0) {
1908                                 printf("** TI ext2fs read block (indir 2 2)"
1909                                         "failed. **\n");
1910                                 return -1;
1911                         }
1912                         ext4fs_indir2_blkno =
1913                             le32_to_cpu(ext4fs_indir1_block[rblock /
1914                                                               perblock_parent])
1915                             << log2_blksz;
1916                 }
1917
1918                 if (ext4fs_indir3_block == NULL) {
1919                         ext4fs_indir3_block = zalloc(blksz);
1920                         if (ext4fs_indir3_block == NULL) {
1921                                 printf("** TI ext2fs read block (indir 2 2)"
1922                                         "malloc failed. **\n");
1923                                 return -1;
1924                         }
1925                         ext4fs_indir3_size = blksz;
1926                         ext4fs_indir3_blkno = -1;
1927                 }
1928                 if (blksz != ext4fs_indir3_size) {
1929                         free(ext4fs_indir3_block);
1930                         ext4fs_indir3_block = NULL;
1931                         ext4fs_indir3_size = 0;
1932                         ext4fs_indir3_blkno = -1;
1933                         ext4fs_indir3_block = zalloc(blksz);
1934                         if (ext4fs_indir3_block == NULL) {
1935                                 printf("** TI ext2fs read block (indir 2 2)"
1936                                         "malloc failed. **\n");
1937                                 return -1;
1938                         }
1939                         ext4fs_indir3_size = blksz;
1940                 }
1941                 if ((le32_to_cpu(ext4fs_indir2_block[rblock
1942                                                        /
1943                                                        perblock_child]) <<
1944                      log2_blksz) != ext4fs_indir3_blkno) {
1945                         status =
1946                             ext4fs_devread((lbaint_t)le32_to_cpu
1947                                            (ext4fs_indir2_block
1948                                             [(rblock / perblock_child)
1949                                              % (blksz / 4)]) << log2_blksz, 0,
1950                                            blksz, (char *)ext4fs_indir3_block);
1951                         if (status == 0) {
1952                                 printf("** TI ext2fs read block (indir 2 2)"
1953                                        "failed. **\n");
1954                                 return -1;
1955                         }
1956                         ext4fs_indir3_blkno =
1957                             le32_to_cpu(ext4fs_indir2_block[(rblock /
1958                                                                perblock_child) %
1959                                                               (blksz /
1960                                                                4)]) <<
1961                             log2_blksz;
1962                 }
1963
1964                 blknr = le32_to_cpu(ext4fs_indir3_block
1965                                       [rblock % perblock_child]);
1966         }
1967         debug("read_allocated_block %ld\n", blknr);
1968
1969         return blknr;
1970 }
1971
1972 /**
1973  * ext4fs_reinit_global() - Reinitialize values of ext4 write implementation's
1974  *                          global pointers
1975  *
1976  * This function assures that for a file with the same name but different size
1977  * the sequential store on the ext4 filesystem will be correct.
1978  *
1979  * In this function the global data, responsible for internal representation
1980  * of the ext4 data are initialized to the reset state. Without this, during
1981  * replacement of the smaller file with the bigger truncation of new file was
1982  * performed.
1983  */
1984 void ext4fs_reinit_global(void)
1985 {
1986         if (ext4fs_indir1_block != NULL) {
1987                 free(ext4fs_indir1_block);
1988                 ext4fs_indir1_block = NULL;
1989                 ext4fs_indir1_size = 0;
1990                 ext4fs_indir1_blkno = -1;
1991         }
1992         if (ext4fs_indir2_block != NULL) {
1993                 free(ext4fs_indir2_block);
1994                 ext4fs_indir2_block = NULL;
1995                 ext4fs_indir2_size = 0;
1996                 ext4fs_indir2_blkno = -1;
1997         }
1998         if (ext4fs_indir3_block != NULL) {
1999                 free(ext4fs_indir3_block);
2000                 ext4fs_indir3_block = NULL;
2001                 ext4fs_indir3_size = 0;
2002                 ext4fs_indir3_blkno = -1;
2003         }
2004 }
2005 void ext4fs_close(void)
2006 {
2007         if ((ext4fs_file != NULL) && (ext4fs_root != NULL)) {
2008                 ext4fs_free_node(ext4fs_file, &ext4fs_root->diropen);
2009                 ext4fs_file = NULL;
2010         }
2011         if (ext4fs_root != NULL) {
2012                 free(ext4fs_root);
2013                 ext4fs_root = NULL;
2014         }
2015
2016         ext4fs_reinit_global();
2017 }
2018
2019 int ext4fs_iterate_dir(struct ext2fs_node *dir, char *name,
2020                                 struct ext2fs_node **fnode, int *ftype)
2021 {
2022         unsigned int fpos = 0;
2023         int status;
2024         loff_t actread;
2025         struct ext2fs_node *diro = (struct ext2fs_node *) dir;
2026
2027 #ifdef DEBUG
2028         if (name != NULL)
2029                 printf("Iterate dir %s\n", name);
2030 #endif /* of DEBUG */
2031         if (!diro->inode_read) {
2032                 status = ext4fs_read_inode(diro->data, diro->ino, &diro->inode);
2033                 if (status == 0)
2034                         return 0;
2035         }
2036         /* Search the file.  */
2037         while (fpos < le32_to_cpu(diro->inode.size)) {
2038                 struct ext2_dirent dirent;
2039
2040                 status = ext4fs_read_file(diro, fpos,
2041                                            sizeof(struct ext2_dirent),
2042                                            (char *)&dirent, &actread);
2043                 if (status < 0)
2044                         return 0;
2045
2046                 if (dirent.direntlen == 0) {
2047                         printf("Failed to iterate over directory %s\n", name);
2048                         return 0;
2049                 }
2050
2051                 if (dirent.namelen != 0) {
2052                         char filename[dirent.namelen + 1];
2053                         struct ext2fs_node *fdiro;
2054                         int type = FILETYPE_UNKNOWN;
2055
2056                         status = ext4fs_read_file(diro,
2057                                                   fpos +
2058                                                   sizeof(struct ext2_dirent),
2059                                                   dirent.namelen, filename,
2060                                                   &actread);
2061                         if (status < 0)
2062                                 return 0;
2063
2064                         fdiro = zalloc(sizeof(struct ext2fs_node));
2065                         if (!fdiro)
2066                                 return 0;
2067
2068                         fdiro->data = diro->data;
2069                         fdiro->ino = le32_to_cpu(dirent.inode);
2070
2071                         filename[dirent.namelen] = '\0';
2072
2073                         if (dirent.filetype != FILETYPE_UNKNOWN) {
2074                                 fdiro->inode_read = 0;
2075
2076                                 if (dirent.filetype == FILETYPE_DIRECTORY)
2077                                         type = FILETYPE_DIRECTORY;
2078                                 else if (dirent.filetype == FILETYPE_SYMLINK)
2079                                         type = FILETYPE_SYMLINK;
2080                                 else if (dirent.filetype == FILETYPE_REG)
2081                                         type = FILETYPE_REG;
2082                         } else {
2083                                 status = ext4fs_read_inode(diro->data,
2084                                                            le32_to_cpu
2085                                                            (dirent.inode),
2086                                                            &fdiro->inode);
2087                                 if (status == 0) {
2088                                         free(fdiro);
2089                                         return 0;
2090                                 }
2091                                 fdiro->inode_read = 1;
2092
2093                                 if ((le16_to_cpu(fdiro->inode.mode) &
2094                                      FILETYPE_INO_MASK) ==
2095                                     FILETYPE_INO_DIRECTORY) {
2096                                         type = FILETYPE_DIRECTORY;
2097                                 } else if ((le16_to_cpu(fdiro->inode.mode)
2098                                             & FILETYPE_INO_MASK) ==
2099                                            FILETYPE_INO_SYMLINK) {
2100                                         type = FILETYPE_SYMLINK;
2101                                 } else if ((le16_to_cpu(fdiro->inode.mode)
2102                                             & FILETYPE_INO_MASK) ==
2103                                            FILETYPE_INO_REG) {
2104                                         type = FILETYPE_REG;
2105                                 }
2106                         }
2107 #ifdef DEBUG
2108                         printf("iterate >%s<\n", filename);
2109 #endif /* of DEBUG */
2110                         if ((name != NULL) && (fnode != NULL)
2111                             && (ftype != NULL)) {
2112                                 if (strcmp(filename, name) == 0) {
2113                                         *ftype = type;
2114                                         *fnode = fdiro;
2115                                         return 1;
2116                                 }
2117                         } else {
2118                                 if (fdiro->inode_read == 0) {
2119                                         status = ext4fs_read_inode(diro->data,
2120                                                                  le32_to_cpu(
2121                                                                  dirent.inode),
2122                                                                  &fdiro->inode);
2123                                         if (status == 0) {
2124                                                 free(fdiro);
2125                                                 return 0;
2126                                         }
2127                                         fdiro->inode_read = 1;
2128                                 }
2129                                 switch (type) {
2130                                 case FILETYPE_DIRECTORY:
2131                                         printf("<DIR> ");
2132                                         break;
2133                                 case FILETYPE_SYMLINK:
2134                                         printf("<SYM> ");
2135                                         break;
2136                                 case FILETYPE_REG:
2137                                         printf("      ");
2138                                         break;
2139                                 default:
2140                                         printf("< ? > ");
2141                                         break;
2142                                 }
2143                                 printf("%10u %s\n",
2144                                        le32_to_cpu(fdiro->inode.size),
2145                                         filename);
2146                         }
2147                         free(fdiro);
2148                 }
2149                 fpos += le16_to_cpu(dirent.direntlen);
2150         }
2151         return 0;
2152 }
2153
2154 static char *ext4fs_read_symlink(struct ext2fs_node *node)
2155 {
2156         char *symlink;
2157         struct ext2fs_node *diro = node;
2158         int status;
2159         loff_t actread;
2160
2161         if (!diro->inode_read) {
2162                 status = ext4fs_read_inode(diro->data, diro->ino, &diro->inode);
2163                 if (status == 0)
2164                         return NULL;
2165         }
2166         symlink = zalloc(le32_to_cpu(diro->inode.size) + 1);
2167         if (!symlink)
2168                 return NULL;
2169
2170         if (le32_to_cpu(diro->inode.size) < sizeof(diro->inode.b.symlink)) {
2171                 strncpy(symlink, diro->inode.b.symlink,
2172                          le32_to_cpu(diro->inode.size));
2173         } else {
2174                 status = ext4fs_read_file(diro, 0,
2175                                            le32_to_cpu(diro->inode.size),
2176                                            symlink, &actread);
2177                 if ((status < 0) || (actread == 0)) {
2178                         free(symlink);
2179                         return NULL;
2180                 }
2181         }
2182         symlink[le32_to_cpu(diro->inode.size)] = '\0';
2183         return symlink;
2184 }
2185
2186 static int ext4fs_find_file1(const char *currpath,
2187                              struct ext2fs_node *currroot,
2188                              struct ext2fs_node **currfound, int *foundtype)
2189 {
2190         char fpath[strlen(currpath) + 1];
2191         char *name = fpath;
2192         char *next;
2193         int status;
2194         int type = FILETYPE_DIRECTORY;
2195         struct ext2fs_node *currnode = currroot;
2196         struct ext2fs_node *oldnode = currroot;
2197
2198         strncpy(fpath, currpath, strlen(currpath) + 1);
2199
2200         /* Remove all leading slashes. */
2201         while (*name == '/')
2202                 name++;
2203
2204         if (!*name) {
2205                 *currfound = currnode;
2206                 return 1;
2207         }
2208
2209         for (;;) {
2210                 int found;
2211
2212                 /* Extract the actual part from the pathname. */
2213                 next = strchr(name, '/');
2214                 if (next) {
2215                         /* Remove all leading slashes. */
2216                         while (*next == '/')
2217                                 *(next++) = '\0';
2218                 }
2219
2220                 if (type != FILETYPE_DIRECTORY) {
2221                         ext4fs_free_node(currnode, currroot);
2222                         return 0;
2223                 }
2224
2225                 oldnode = currnode;
2226
2227                 /* Iterate over the directory. */
2228                 found = ext4fs_iterate_dir(currnode, name, &currnode, &type);
2229                 if (found == 0)
2230                         return 0;
2231
2232                 if (found == -1)
2233                         break;
2234
2235                 /* Read in the symlink and follow it. */
2236                 if (type == FILETYPE_SYMLINK) {
2237                         char *symlink;
2238
2239                         /* Test if the symlink does not loop. */
2240                         if (++symlinknest == 8) {
2241                                 ext4fs_free_node(currnode, currroot);
2242                                 ext4fs_free_node(oldnode, currroot);
2243                                 return 0;
2244                         }
2245
2246                         symlink = ext4fs_read_symlink(currnode);
2247                         ext4fs_free_node(currnode, currroot);
2248
2249                         if (!symlink) {
2250                                 ext4fs_free_node(oldnode, currroot);
2251                                 return 0;
2252                         }
2253
2254                         debug("Got symlink >%s<\n", symlink);
2255
2256                         if (symlink[0] == '/') {
2257                                 ext4fs_free_node(oldnode, currroot);
2258                                 oldnode = &ext4fs_root->diropen;
2259                         }
2260
2261                         /* Lookup the node the symlink points to. */
2262                         status = ext4fs_find_file1(symlink, oldnode,
2263                                                     &currnode, &type);
2264
2265                         free(symlink);
2266
2267                         if (status == 0) {
2268                                 ext4fs_free_node(oldnode, currroot);
2269                                 return 0;
2270                         }
2271                 }
2272
2273                 ext4fs_free_node(oldnode, currroot);
2274
2275                 /* Found the node! */
2276                 if (!next || *next == '\0') {
2277                         *currfound = currnode;
2278                         *foundtype = type;
2279                         return 1;
2280                 }
2281                 name = next;
2282         }
2283         return -1;
2284 }
2285
2286 int ext4fs_find_file(const char *path, struct ext2fs_node *rootnode,
2287         struct ext2fs_node **foundnode, int expecttype)
2288 {
2289         int status;
2290         int foundtype = FILETYPE_DIRECTORY;
2291
2292         symlinknest = 0;
2293         if (!path)
2294                 return 0;
2295
2296         status = ext4fs_find_file1(path, rootnode, foundnode, &foundtype);
2297         if (status == 0)
2298                 return 0;
2299
2300         /* Check if the node that was found was of the expected type. */
2301         if ((expecttype == FILETYPE_REG) && (foundtype != expecttype))
2302                 return 0;
2303         else if ((expecttype == FILETYPE_DIRECTORY)
2304                    && (foundtype != expecttype))
2305                 return 0;
2306
2307         return 1;
2308 }
2309
2310 int ext4fs_open(const char *filename, loff_t *len)
2311 {
2312         struct ext2fs_node *fdiro = NULL;
2313         int status;
2314
2315         if (ext4fs_root == NULL)
2316                 return -1;
2317
2318         ext4fs_file = NULL;
2319         status = ext4fs_find_file(filename, &ext4fs_root->diropen, &fdiro,
2320                                   FILETYPE_REG);
2321         if (status == 0)
2322                 goto fail;
2323
2324         if (!fdiro->inode_read) {
2325                 status = ext4fs_read_inode(fdiro->data, fdiro->ino,
2326                                 &fdiro->inode);
2327                 if (status == 0)
2328                         goto fail;
2329         }
2330         *len = le32_to_cpu(fdiro->inode.size);
2331         ext4fs_file = fdiro;
2332
2333         return 0;
2334 fail:
2335         ext4fs_free_node(fdiro, &ext4fs_root->diropen);
2336
2337         return -1;
2338 }
2339
2340 int ext4fs_mount(unsigned part_length)
2341 {
2342         struct ext2_data *data;
2343         int status;
2344         struct ext_filesystem *fs = get_fs();
2345         data = zalloc(SUPERBLOCK_SIZE);
2346         if (!data)
2347                 return 0;
2348
2349         /* Read the superblock. */
2350         status = ext4_read_superblock((char *)&data->sblock);
2351
2352         if (status == 0)
2353                 goto fail;
2354
2355         /* Make sure this is an ext2 filesystem. */
2356         if (le16_to_cpu(data->sblock.magic) != EXT2_MAGIC)
2357                 goto fail_noerr;
2358
2359
2360         if (le32_to_cpu(data->sblock.revision_level) == 0) {
2361                 fs->inodesz = 128;
2362                 fs->gdsize = 32;
2363         } else {
2364                 debug("EXT4 features COMPAT: %08x INCOMPAT: %08x RO_COMPAT: %08x\n",
2365                       __le32_to_cpu(data->sblock.feature_compatibility),
2366                       __le32_to_cpu(data->sblock.feature_incompat),
2367                       __le32_to_cpu(data->sblock.feature_ro_compat));
2368
2369                 fs->inodesz = le16_to_cpu(data->sblock.inode_size);
2370                 fs->gdsize = le32_to_cpu(data->sblock.feature_incompat) &
2371                         EXT4_FEATURE_INCOMPAT_64BIT ?
2372                         le16_to_cpu(data->sblock.descriptor_size) : 32;
2373         }
2374
2375         debug("EXT2 rev %d, inode_size %d, descriptor size %d\n",
2376               le32_to_cpu(data->sblock.revision_level),
2377               fs->inodesz, fs->gdsize);
2378
2379         data->diropen.data = data;
2380         data->diropen.ino = 2;
2381         data->diropen.inode_read = 1;
2382         data->inode = &data->diropen.inode;
2383
2384         status = ext4fs_read_inode(data, 2, data->inode);
2385         if (status == 0)
2386                 goto fail;
2387
2388         ext4fs_root = data;
2389
2390         return 1;
2391 fail:
2392         printf("Failed to mount ext2 filesystem...\n");
2393 fail_noerr:
2394         free(data);
2395         ext4fs_root = NULL;
2396
2397         return 0;
2398 }