xref: /openbmc/u-boot/fs/ext4/ext4fs.c (revision 55675142)
1 /*
2  * (C) Copyright 2011 - 2012 Samsung Electronics
3  * EXT4 filesystem implementation in Uboot by
4  * Uma Shankar <uma.shankar@samsung.com>
5  * Manjunatha C Achar <a.manjunatha@samsung.com>
6  *
7  * ext4ls and ext4load : Based on ext2 ls and load support in Uboot.
8  *		       Ext4 read optimization taken from Open-Moko
9  *		       Qi bootloader
10  *
11  * (C) Copyright 2004
12  * esd gmbh <www.esd-electronics.com>
13  * Reinhard Arlt <reinhard.arlt@esd-electronics.com>
14  *
15  * based on code from grub2 fs/ext2.c and fs/fshelp.c by
16  * GRUB  --  GRand Unified Bootloader
17  * Copyright (C) 2003, 2004  Free Software Foundation, Inc.
18  *
19  * ext4write : Based on generic ext4 protocol.
20  *
21  * This program is free software; you can redistribute it and/or modify
22  * it under the terms of the GNU General Public License as published by
23  * the Free Software Foundation; either version 2 of the License, or
24  * (at your option) any later version.
25  *
26  * This program is distributed in the hope that it will be useful,
27  * but WITHOUT ANY WARRANTY; without even the implied warranty of
28  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
29  * GNU General Public License for more details.
30  *
31  * You should have received a copy of the GNU General Public License
32  * along with this program; if not, write to the Free Software
33  * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
34  */
35 
36 #include <common.h>
37 #include <malloc.h>
38 #include <ext_common.h>
39 #include <ext4fs.h>
40 #include <linux/stat.h>
41 #include <linux/time.h>
42 #include <asm/byteorder.h>
43 #include "ext4_common.h"
44 
45 int ext4fs_symlinknest;
46 struct ext_filesystem ext_fs;
47 
48 struct ext_filesystem *get_fs(void)
49 {
50 	return &ext_fs;
51 }
52 
53 void ext4fs_free_node(struct ext2fs_node *node, struct ext2fs_node *currroot)
54 {
55 	if ((node != &ext4fs_root->diropen) && (node != currroot))
56 		free(node);
57 }
58 
59 /*
60  * Taken from openmoko-kernel mailing list: By Andy green
61  * Optimized read file API : collects and defers contiguous sector
62  * reads into one potentially more efficient larger sequential read action
63  */
64 int ext4fs_read_file(struct ext2fs_node *node, int pos,
65 		unsigned int len, char *buf)
66 {
67 	int i;
68 	int blockcnt;
69 	int log2blocksize = LOG2_EXT2_BLOCK_SIZE(node->data);
70 	int blocksize = 1 << (log2blocksize + DISK_SECTOR_BITS);
71 	unsigned int filesize = __le32_to_cpu(node->inode.size);
72 	int previous_block_number = -1;
73 	int delayed_start = 0;
74 	int delayed_extent = 0;
75 	int delayed_skipfirst = 0;
76 	int delayed_next = 0;
77 	char *delayed_buf = NULL;
78 	short status;
79 
80 	/* Adjust len so it we can't read past the end of the file. */
81 	if (len > filesize)
82 		len = filesize;
83 
84 	blockcnt = ((len + pos) + blocksize - 1) / blocksize;
85 
86 	for (i = pos / blocksize; i < blockcnt; i++) {
87 		int blknr;
88 		int blockoff = pos % blocksize;
89 		int blockend = blocksize;
90 		int skipfirst = 0;
91 		blknr = read_allocated_block(&(node->inode), i);
92 		if (blknr < 0)
93 			return -1;
94 
95 		blknr = blknr << log2blocksize;
96 
97 		/* Last block.  */
98 		if (i == blockcnt - 1) {
99 			blockend = (len + pos) % blocksize;
100 
101 			/* The last portion is exactly blocksize. */
102 			if (!blockend)
103 				blockend = blocksize;
104 		}
105 
106 		/* First block. */
107 		if (i == pos / blocksize) {
108 			skipfirst = blockoff;
109 			blockend -= skipfirst;
110 		}
111 		if (blknr) {
112 			int status;
113 
114 			if (previous_block_number != -1) {
115 				if (delayed_next == blknr) {
116 					delayed_extent += blockend;
117 					delayed_next += blockend >> SECTOR_BITS;
118 				} else {	/* spill */
119 					status = ext4fs_devread(delayed_start,
120 							delayed_skipfirst,
121 							delayed_extent,
122 							delayed_buf);
123 					if (status == 0)
124 						return -1;
125 					previous_block_number = blknr;
126 					delayed_start = blknr;
127 					delayed_extent = blockend;
128 					delayed_skipfirst = skipfirst;
129 					delayed_buf = buf;
130 					delayed_next = blknr +
131 						(blockend >> SECTOR_BITS);
132 				}
133 			} else {
134 				previous_block_number = blknr;
135 				delayed_start = blknr;
136 				delayed_extent = blockend;
137 				delayed_skipfirst = skipfirst;
138 				delayed_buf = buf;
139 				delayed_next = blknr +
140 					(blockend >> SECTOR_BITS);
141 			}
142 		} else {
143 			if (previous_block_number != -1) {
144 				/* spill */
145 				status = ext4fs_devread(delayed_start,
146 							delayed_skipfirst,
147 							delayed_extent,
148 							delayed_buf);
149 				if (status == 0)
150 					return -1;
151 				previous_block_number = -1;
152 			}
153 			memset(buf, 0, blocksize - skipfirst);
154 		}
155 		buf += blocksize - skipfirst;
156 	}
157 	if (previous_block_number != -1) {
158 		/* spill */
159 		status = ext4fs_devread(delayed_start,
160 					delayed_skipfirst, delayed_extent,
161 					delayed_buf);
162 		if (status == 0)
163 			return -1;
164 		previous_block_number = -1;
165 	}
166 
167 	return len;
168 }
169 
170 int ext4fs_ls(const char *dirname)
171 {
172 	struct ext2fs_node *dirnode;
173 	int status;
174 
175 	if (dirname == NULL)
176 		return 0;
177 
178 	status = ext4fs_find_file(dirname, &ext4fs_root->diropen, &dirnode,
179 				  FILETYPE_DIRECTORY);
180 	if (status != 1) {
181 		printf("** Can not find directory. **\n");
182 		return 1;
183 	}
184 
185 	ext4fs_iterate_dir(dirnode, NULL, NULL, NULL);
186 	ext4fs_free_node(dirnode, &ext4fs_root->diropen);
187 
188 	return 0;
189 }
190 
191 int ext4fs_read(char *buf, unsigned len)
192 {
193 	if (ext4fs_root == NULL || ext4fs_file == NULL)
194 		return 0;
195 
196 	return ext4fs_read_file(ext4fs_file, 0, len, buf);
197 }
198 
199 #if defined(CONFIG_CMD_EXT4_WRITE)
200 static void ext4fs_update(void)
201 {
202 	short i;
203 	ext4fs_update_journal();
204 	struct ext_filesystem *fs = get_fs();
205 
206 	/* update  super block */
207 	put_ext4((uint64_t)(SUPERBLOCK_SIZE),
208 		 (struct ext2_sblock *)fs->sb, (uint32_t)SUPERBLOCK_SIZE);
209 
210 	/* update block groups */
211 	for (i = 0; i < fs->no_blkgrp; i++) {
212 		fs->bgd[i].bg_checksum = ext4fs_checksum_update(i);
213 		put_ext4((uint64_t)(fs->bgd[i].block_id * fs->blksz),
214 			 fs->blk_bmaps[i], fs->blksz);
215 	}
216 
217 	/* update inode table groups */
218 	for (i = 0; i < fs->no_blkgrp; i++) {
219 		put_ext4((uint64_t) (fs->bgd[i].inode_id * fs->blksz),
220 			 fs->inode_bmaps[i], fs->blksz);
221 	}
222 
223 	/* update the block group descriptor table */
224 	put_ext4((uint64_t)(fs->gdtable_blkno * fs->blksz),
225 		 (struct ext2_block_group *)fs->gdtable,
226 		 (fs->blksz * fs->no_blk_pergdt));
227 
228 	ext4fs_dump_metadata();
229 
230 	gindex = 0;
231 	gd_index = 0;
232 }
233 
234 int ext4fs_get_bgdtable(void)
235 {
236 	int status;
237 	int grp_desc_size;
238 	struct ext_filesystem *fs = get_fs();
239 	grp_desc_size = sizeof(struct ext2_block_group);
240 	fs->no_blk_pergdt = (fs->no_blkgrp * grp_desc_size) / fs->blksz;
241 	if ((fs->no_blkgrp * grp_desc_size) % fs->blksz)
242 		fs->no_blk_pergdt++;
243 
244 	/* allocate memory for gdtable */
245 	fs->gdtable = zalloc(fs->blksz * fs->no_blk_pergdt);
246 	if (!fs->gdtable)
247 		return -ENOMEM;
248 	/* read the group descriptor table */
249 	status = ext4fs_devread(fs->gdtable_blkno * fs->sect_perblk, 0,
250 				fs->blksz * fs->no_blk_pergdt, fs->gdtable);
251 	if (status == 0)
252 		goto fail;
253 
254 	if (ext4fs_log_gdt(fs->gdtable)) {
255 		printf("Error in ext4fs_log_gdt\n");
256 		return -1;
257 	}
258 
259 	return 0;
260 fail:
261 	free(fs->gdtable);
262 	fs->gdtable = NULL;
263 
264 	return -1;
265 }
266 
267 static void delete_single_indirect_block(struct ext2_inode *inode)
268 {
269 	struct ext2_block_group *bgd = NULL;
270 	static int prev_bg_bmap_idx = -1;
271 	long int blknr;
272 	int remainder;
273 	int bg_idx;
274 	int status;
275 	unsigned int blk_per_grp = ext4fs_root->sblock.blocks_per_group;
276 	struct ext_filesystem *fs = get_fs();
277 	char *journal_buffer = zalloc(fs->blksz);
278 	if (!journal_buffer) {
279 		printf("No memory\n");
280 		return;
281 	}
282 	/* get  block group descriptor table */
283 	bgd = (struct ext2_block_group *)fs->gdtable;
284 
285 	/* deleting the single indirect block associated with inode */
286 	if (inode->b.blocks.indir_block != 0) {
287 		debug("SIPB releasing %u\n", inode->b.blocks.indir_block);
288 		blknr = inode->b.blocks.indir_block;
289 		if (fs->blksz != 1024) {
290 			bg_idx = blknr / blk_per_grp;
291 		} else {
292 			bg_idx = blknr / blk_per_grp;
293 			remainder = blknr % blk_per_grp;
294 			if (!remainder)
295 				bg_idx--;
296 		}
297 		ext4fs_reset_block_bmap(blknr, fs->blk_bmaps[bg_idx], bg_idx);
298 		bgd[bg_idx].free_blocks++;
299 		fs->sb->free_blocks++;
300 		/* journal backup */
301 		if (prev_bg_bmap_idx != bg_idx) {
302 			status =
303 			    ext4fs_devread(bgd[bg_idx].block_id *
304 					   fs->sect_perblk, 0, fs->blksz,
305 					   journal_buffer);
306 			if (status == 0)
307 				goto fail;
308 			if (ext4fs_log_journal
309 			    (journal_buffer, bgd[bg_idx].block_id))
310 				goto fail;
311 			prev_bg_bmap_idx = bg_idx;
312 		}
313 	}
314 fail:
315 	free(journal_buffer);
316 }
317 
318 static void delete_double_indirect_block(struct ext2_inode *inode)
319 {
320 	int i;
321 	short status;
322 	static int prev_bg_bmap_idx = -1;
323 	long int blknr;
324 	int remainder;
325 	int bg_idx;
326 	unsigned int blk_per_grp = ext4fs_root->sblock.blocks_per_group;
327 	unsigned int *di_buffer = NULL;
328 	unsigned int *DIB_start_addr = NULL;
329 	struct ext2_block_group *bgd = NULL;
330 	struct ext_filesystem *fs = get_fs();
331 	char *journal_buffer = zalloc(fs->blksz);
332 	if (!journal_buffer) {
333 		printf("No memory\n");
334 		return;
335 	}
336 	/* get the block group descriptor table */
337 	bgd = (struct ext2_block_group *)fs->gdtable;
338 
339 	if (inode->b.blocks.double_indir_block != 0) {
340 		di_buffer = zalloc(fs->blksz);
341 		if (!di_buffer) {
342 			printf("No memory\n");
343 			return;
344 		}
345 		DIB_start_addr = (unsigned int *)di_buffer;
346 		blknr = inode->b.blocks.double_indir_block;
347 		status = ext4fs_devread(blknr * fs->sect_perblk, 0, fs->blksz,
348 					(char *)di_buffer);
349 		for (i = 0; i < fs->blksz / sizeof(int); i++) {
350 			if (*di_buffer == 0)
351 				break;
352 
353 			debug("DICB releasing %u\n", *di_buffer);
354 			if (fs->blksz != 1024) {
355 				bg_idx = (*di_buffer) / blk_per_grp;
356 			} else {
357 				bg_idx = (*di_buffer) / blk_per_grp;
358 				remainder = (*di_buffer) % blk_per_grp;
359 				if (!remainder)
360 					bg_idx--;
361 			}
362 			ext4fs_reset_block_bmap(*di_buffer,
363 					fs->blk_bmaps[bg_idx], bg_idx);
364 			di_buffer++;
365 			bgd[bg_idx].free_blocks++;
366 			fs->sb->free_blocks++;
367 			/* journal backup */
368 			if (prev_bg_bmap_idx != bg_idx) {
369 				status = ext4fs_devread(bgd[bg_idx].block_id
370 							* fs->sect_perblk, 0,
371 							fs->blksz,
372 							journal_buffer);
373 				if (status == 0)
374 					goto fail;
375 
376 				if (ext4fs_log_journal(journal_buffer,
377 							bgd[bg_idx].block_id))
378 					goto fail;
379 				prev_bg_bmap_idx = bg_idx;
380 			}
381 		}
382 
383 		/* removing the parent double indirect block */
384 		blknr = inode->b.blocks.double_indir_block;
385 		if (fs->blksz != 1024) {
386 			bg_idx = blknr / blk_per_grp;
387 		} else {
388 			bg_idx = blknr / blk_per_grp;
389 			remainder = blknr % blk_per_grp;
390 			if (!remainder)
391 				bg_idx--;
392 		}
393 		ext4fs_reset_block_bmap(blknr, fs->blk_bmaps[bg_idx], bg_idx);
394 		bgd[bg_idx].free_blocks++;
395 		fs->sb->free_blocks++;
396 		/* journal backup */
397 		if (prev_bg_bmap_idx != bg_idx) {
398 			memset(journal_buffer, '\0', fs->blksz);
399 			status = ext4fs_devread(bgd[bg_idx].block_id *
400 						fs->sect_perblk, 0, fs->blksz,
401 						journal_buffer);
402 			if (status == 0)
403 				goto fail;
404 
405 			if (ext4fs_log_journal(journal_buffer,
406 						bgd[bg_idx].block_id))
407 				goto fail;
408 			prev_bg_bmap_idx = bg_idx;
409 		}
410 		debug("DIPB releasing %ld\n", blknr);
411 	}
412 fail:
413 	free(DIB_start_addr);
414 	free(journal_buffer);
415 }
416 
417 static void delete_triple_indirect_block(struct ext2_inode *inode)
418 {
419 	int i, j;
420 	short status;
421 	static int prev_bg_bmap_idx = -1;
422 	long int blknr;
423 	int remainder;
424 	int bg_idx;
425 	unsigned int blk_per_grp = ext4fs_root->sblock.blocks_per_group;
426 	unsigned int *tigp_buffer = NULL;
427 	unsigned int *tib_start_addr = NULL;
428 	unsigned int *tip_buffer = NULL;
429 	unsigned int *tipb_start_addr = NULL;
430 	struct ext2_block_group *bgd = NULL;
431 	struct ext_filesystem *fs = get_fs();
432 	char *journal_buffer = zalloc(fs->blksz);
433 	if (!journal_buffer) {
434 		printf("No memory\n");
435 		return;
436 	}
437 	/* get block group descriptor table */
438 	bgd = (struct ext2_block_group *)fs->gdtable;
439 
440 	if (inode->b.blocks.triple_indir_block != 0) {
441 		tigp_buffer = zalloc(fs->blksz);
442 		if (!tigp_buffer) {
443 			printf("No memory\n");
444 			return;
445 		}
446 		tib_start_addr = (unsigned int *)tigp_buffer;
447 		blknr = inode->b.blocks.triple_indir_block;
448 		status = ext4fs_devread(blknr * fs->sect_perblk, 0, fs->blksz,
449 					(char *)tigp_buffer);
450 		for (i = 0; i < fs->blksz / sizeof(int); i++) {
451 			if (*tigp_buffer == 0)
452 				break;
453 			debug("tigp buffer releasing %u\n", *tigp_buffer);
454 
455 			tip_buffer = zalloc(fs->blksz);
456 			if (!tip_buffer)
457 				goto fail;
458 			tipb_start_addr = (unsigned int *)tip_buffer;
459 			status = ext4fs_devread((*tigp_buffer) *
460 						fs->sect_perblk, 0, fs->blksz,
461 						(char *)tip_buffer);
462 			for (j = 0; j < fs->blksz / sizeof(int); j++) {
463 				if (*tip_buffer == 0)
464 					break;
465 				if (fs->blksz != 1024) {
466 					bg_idx = (*tip_buffer) / blk_per_grp;
467 				} else {
468 					bg_idx = (*tip_buffer) / blk_per_grp;
469 
470 					remainder = (*tip_buffer) % blk_per_grp;
471 					if (!remainder)
472 						bg_idx--;
473 				}
474 
475 				ext4fs_reset_block_bmap(*tip_buffer,
476 							fs->blk_bmaps[bg_idx],
477 							bg_idx);
478 
479 				tip_buffer++;
480 				bgd[bg_idx].free_blocks++;
481 				fs->sb->free_blocks++;
482 				/* journal backup */
483 				if (prev_bg_bmap_idx != bg_idx) {
484 					status =
485 					    ext4fs_devread(
486 							bgd[bg_idx].block_id *
487 							fs->sect_perblk, 0,
488 							fs->blksz,
489 							journal_buffer);
490 					if (status == 0)
491 						goto fail;
492 
493 					if (ext4fs_log_journal(journal_buffer,
494 							       bgd[bg_idx].
495 							       block_id))
496 						goto fail;
497 					prev_bg_bmap_idx = bg_idx;
498 				}
499 			}
500 			free(tipb_start_addr);
501 			tipb_start_addr = NULL;
502 
503 			/*
504 			 * removing the grand parent blocks
505 			 * which is connected to inode
506 			 */
507 			if (fs->blksz != 1024) {
508 				bg_idx = (*tigp_buffer) / blk_per_grp;
509 			} else {
510 				bg_idx = (*tigp_buffer) / blk_per_grp;
511 
512 				remainder = (*tigp_buffer) % blk_per_grp;
513 				if (!remainder)
514 					bg_idx--;
515 			}
516 			ext4fs_reset_block_bmap(*tigp_buffer,
517 						fs->blk_bmaps[bg_idx], bg_idx);
518 
519 			tigp_buffer++;
520 			bgd[bg_idx].free_blocks++;
521 			fs->sb->free_blocks++;
522 			/* journal backup */
523 			if (prev_bg_bmap_idx != bg_idx) {
524 				memset(journal_buffer, '\0', fs->blksz);
525 				status =
526 				    ext4fs_devread(bgd[bg_idx].block_id *
527 						   fs->sect_perblk, 0,
528 						   fs->blksz, journal_buffer);
529 				if (status == 0)
530 					goto fail;
531 
532 				if (ext4fs_log_journal(journal_buffer,
533 							bgd[bg_idx].block_id))
534 					goto fail;
535 				prev_bg_bmap_idx = bg_idx;
536 			}
537 		}
538 
539 		/* removing the grand parent triple indirect block */
540 		blknr = inode->b.blocks.triple_indir_block;
541 		if (fs->blksz != 1024) {
542 			bg_idx = blknr / blk_per_grp;
543 		} else {
544 			bg_idx = blknr / blk_per_grp;
545 			remainder = blknr % blk_per_grp;
546 			if (!remainder)
547 				bg_idx--;
548 		}
549 		ext4fs_reset_block_bmap(blknr, fs->blk_bmaps[bg_idx], bg_idx);
550 		bgd[bg_idx].free_blocks++;
551 		fs->sb->free_blocks++;
552 		/* journal backup */
553 		if (prev_bg_bmap_idx != bg_idx) {
554 			memset(journal_buffer, '\0', fs->blksz);
555 			status = ext4fs_devread(bgd[bg_idx].block_id *
556 						fs->sect_perblk, 0, fs->blksz,
557 						journal_buffer);
558 			if (status == 0)
559 				goto fail;
560 
561 			if (ext4fs_log_journal(journal_buffer,
562 						bgd[bg_idx].block_id))
563 				goto fail;
564 			prev_bg_bmap_idx = bg_idx;
565 		}
566 		debug("tigp buffer itself releasing %ld\n", blknr);
567 	}
568 fail:
569 	free(tib_start_addr);
570 	free(tipb_start_addr);
571 	free(journal_buffer);
572 }
573 
574 static int ext4fs_delete_file(int inodeno)
575 {
576 	struct ext2_inode inode;
577 	short status;
578 	int i;
579 	int remainder;
580 	long int blknr;
581 	int bg_idx;
582 	int ibmap_idx;
583 	char *read_buffer = NULL;
584 	char *start_block_address = NULL;
585 	unsigned int no_blocks;
586 
587 	static int prev_bg_bmap_idx = -1;
588 	unsigned int inodes_per_block;
589 	long int blkno;
590 	unsigned int blkoff;
591 	unsigned int blk_per_grp = ext4fs_root->sblock.blocks_per_group;
592 	unsigned int inode_per_grp = ext4fs_root->sblock.inodes_per_group;
593 	struct ext2_inode *inode_buffer = NULL;
594 	struct ext2_block_group *bgd = NULL;
595 	struct ext_filesystem *fs = get_fs();
596 	char *journal_buffer = zalloc(fs->blksz);
597 	if (!journal_buffer)
598 		return -ENOMEM;
599 	/* get the block group descriptor table */
600 	bgd = (struct ext2_block_group *)fs->gdtable;
601 	status = ext4fs_read_inode(ext4fs_root, inodeno, &inode);
602 	if (status == 0)
603 		goto fail;
604 
605 	/* read the block no allocated to a file */
606 	no_blocks = inode.size / fs->blksz;
607 	if (inode.size % fs->blksz)
608 		no_blocks++;
609 
610 	if (le32_to_cpu(inode.flags) & EXT4_EXTENTS_FL) {
611 		struct ext2fs_node *node_inode =
612 		    zalloc(sizeof(struct ext2fs_node));
613 		if (!node_inode)
614 			goto fail;
615 		node_inode->data = ext4fs_root;
616 		node_inode->ino = inodeno;
617 		node_inode->inode_read = 0;
618 		memcpy(&(node_inode->inode), &inode, sizeof(struct ext2_inode));
619 
620 		for (i = 0; i < no_blocks; i++) {
621 			blknr = read_allocated_block(&(node_inode->inode), i);
622 			if (fs->blksz != 1024) {
623 				bg_idx = blknr / blk_per_grp;
624 			} else {
625 				bg_idx = blknr / blk_per_grp;
626 				remainder = blknr % blk_per_grp;
627 				if (!remainder)
628 					bg_idx--;
629 			}
630 			ext4fs_reset_block_bmap(blknr, fs->blk_bmaps[bg_idx],
631 						bg_idx);
632 			debug("EXT4_EXTENTS Block releasing %ld: %d\n",
633 			      blknr, bg_idx);
634 
635 			bgd[bg_idx].free_blocks++;
636 			fs->sb->free_blocks++;
637 
638 			/* journal backup */
639 			if (prev_bg_bmap_idx != bg_idx) {
640 				status =
641 				    ext4fs_devread(bgd[bg_idx].block_id *
642 						   fs->sect_perblk, 0,
643 						   fs->blksz, journal_buffer);
644 				if (status == 0)
645 					goto fail;
646 				if (ext4fs_log_journal(journal_buffer,
647 							bgd[bg_idx].block_id))
648 					goto fail;
649 				prev_bg_bmap_idx = bg_idx;
650 			}
651 		}
652 		if (node_inode) {
653 			free(node_inode);
654 			node_inode = NULL;
655 		}
656 	} else {
657 
658 		delete_single_indirect_block(&inode);
659 		delete_double_indirect_block(&inode);
660 		delete_triple_indirect_block(&inode);
661 
662 		/* read the block no allocated to a file */
663 		no_blocks = inode.size / fs->blksz;
664 		if (inode.size % fs->blksz)
665 			no_blocks++;
666 		for (i = 0; i < no_blocks; i++) {
667 			blknr = read_allocated_block(&inode, i);
668 			if (fs->blksz != 1024) {
669 				bg_idx = blknr / blk_per_grp;
670 			} else {
671 				bg_idx = blknr / blk_per_grp;
672 				remainder = blknr % blk_per_grp;
673 				if (!remainder)
674 					bg_idx--;
675 			}
676 			ext4fs_reset_block_bmap(blknr, fs->blk_bmaps[bg_idx],
677 						bg_idx);
678 			debug("ActualB releasing %ld: %d\n", blknr, bg_idx);
679 
680 			bgd[bg_idx].free_blocks++;
681 			fs->sb->free_blocks++;
682 			/* journal backup */
683 			if (prev_bg_bmap_idx != bg_idx) {
684 				memset(journal_buffer, '\0', fs->blksz);
685 				status = ext4fs_devread(bgd[bg_idx].block_id
686 							* fs->sect_perblk,
687 							0, fs->blksz,
688 							journal_buffer);
689 				if (status == 0)
690 					goto fail;
691 				if (ext4fs_log_journal(journal_buffer,
692 						bgd[bg_idx].block_id))
693 					goto fail;
694 				prev_bg_bmap_idx = bg_idx;
695 			}
696 		}
697 	}
698 
699 	/* from the inode no to blockno */
700 	inodes_per_block = fs->blksz / fs->inodesz;
701 	ibmap_idx = inodeno / inode_per_grp;
702 
703 	/* get the block no */
704 	inodeno--;
705 	blkno = __le32_to_cpu(bgd[ibmap_idx].inode_table_id) +
706 		(inodeno % __le32_to_cpu(inode_per_grp)) / inodes_per_block;
707 
708 	/* get the offset of the inode */
709 	blkoff = ((inodeno) % inodes_per_block) * fs->inodesz;
710 
711 	/* read the block no containing the inode */
712 	read_buffer = zalloc(fs->blksz);
713 	if (!read_buffer)
714 		goto fail;
715 	start_block_address = read_buffer;
716 	status = ext4fs_devread(blkno * fs->sect_perblk,
717 				0, fs->blksz, read_buffer);
718 	if (status == 0)
719 		goto fail;
720 
721 	if (ext4fs_log_journal(read_buffer, blkno))
722 		goto fail;
723 
724 	read_buffer = read_buffer + blkoff;
725 	inode_buffer = (struct ext2_inode *)read_buffer;
726 	memset(inode_buffer, '\0', sizeof(struct ext2_inode));
727 
728 	/* write the inode to original position in inode table */
729 	if (ext4fs_put_metadata(start_block_address, blkno))
730 		goto fail;
731 
732 	/* update the respective inode bitmaps */
733 	inodeno++;
734 	ext4fs_reset_inode_bmap(inodeno, fs->inode_bmaps[ibmap_idx], ibmap_idx);
735 	bgd[ibmap_idx].free_inodes++;
736 	fs->sb->free_inodes++;
737 	/* journal backup */
738 	memset(journal_buffer, '\0', fs->blksz);
739 	status = ext4fs_devread(bgd[ibmap_idx].inode_id *
740 				fs->sect_perblk, 0, fs->blksz, journal_buffer);
741 	if (status == 0)
742 		goto fail;
743 	if (ext4fs_log_journal(journal_buffer, bgd[ibmap_idx].inode_id))
744 		goto fail;
745 
746 	ext4fs_update();
747 	ext4fs_deinit();
748 
749 	if (ext4fs_init() != 0) {
750 		printf("error in File System init\n");
751 		goto fail;
752 	}
753 
754 	free(start_block_address);
755 	free(journal_buffer);
756 
757 	return 0;
758 fail:
759 	free(start_block_address);
760 	free(journal_buffer);
761 
762 	return -1;
763 }
764 
765 int ext4fs_init(void)
766 {
767 	short status;
768 	int i;
769 	unsigned int real_free_blocks = 0;
770 	struct ext_filesystem *fs = get_fs();
771 
772 	/* populate fs */
773 	fs->blksz = EXT2_BLOCK_SIZE(ext4fs_root);
774 	fs->inodesz = INODE_SIZE_FILESYSTEM(ext4fs_root);
775 	fs->sect_perblk = fs->blksz / SECTOR_SIZE;
776 
777 	/* get the superblock */
778 	fs->sb = zalloc(SUPERBLOCK_SIZE);
779 	if (!fs->sb)
780 		return -ENOMEM;
781 	if (!ext4fs_devread(SUPERBLOCK_SECTOR, 0, SUPERBLOCK_SIZE,
782 			(char *)fs->sb))
783 		goto fail;
784 
785 	/* init journal */
786 	if (ext4fs_init_journal())
787 		goto fail;
788 
789 	/* get total no of blockgroups */
790 	fs->no_blkgrp = (uint32_t)ext4fs_div_roundup(
791 			(ext4fs_root->sblock.total_blocks -
792 			ext4fs_root->sblock.first_data_block),
793 			ext4fs_root->sblock.blocks_per_group);
794 
795 	/* get the block group descriptor table */
796 	fs->gdtable_blkno = ((EXT2_MIN_BLOCK_SIZE == fs->blksz) + 1);
797 	if (ext4fs_get_bgdtable() == -1) {
798 		printf("Error in getting the block group descriptor table\n");
799 		goto fail;
800 	}
801 	fs->bgd = (struct ext2_block_group *)fs->gdtable;
802 
803 	/* load all the available bitmap block of the partition */
804 	fs->blk_bmaps = zalloc(fs->no_blkgrp * sizeof(char *));
805 	if (!fs->blk_bmaps)
806 		goto fail;
807 	for (i = 0; i < fs->no_blkgrp; i++) {
808 		fs->blk_bmaps[i] = zalloc(fs->blksz);
809 		if (!fs->blk_bmaps[i])
810 			goto fail;
811 	}
812 
813 	for (i = 0; i < fs->no_blkgrp; i++) {
814 		status =
815 		    ext4fs_devread(fs->bgd[i].block_id * fs->sect_perblk, 0,
816 				   fs->blksz, (char *)fs->blk_bmaps[i]);
817 		if (status == 0)
818 			goto fail;
819 	}
820 
821 	/* load all the available inode bitmap of the partition */
822 	fs->inode_bmaps = zalloc(fs->no_blkgrp * sizeof(unsigned char *));
823 	if (!fs->inode_bmaps)
824 		goto fail;
825 	for (i = 0; i < fs->no_blkgrp; i++) {
826 		fs->inode_bmaps[i] = zalloc(fs->blksz);
827 		if (!fs->inode_bmaps[i])
828 			goto fail;
829 	}
830 
831 	for (i = 0; i < fs->no_blkgrp; i++) {
832 		status = ext4fs_devread(fs->bgd[i].inode_id * fs->sect_perblk,
833 					0, fs->blksz,
834 					(char *)fs->inode_bmaps[i]);
835 		if (status == 0)
836 			goto fail;
837 	}
838 
839 	/*
840 	 * check filesystem consistency with free blocks of file system
841 	 * some time we observed that superblock freeblocks does not match
842 	 * with the  blockgroups freeblocks when improper
843 	 * reboot of a linux kernel
844 	 */
845 	for (i = 0; i < fs->no_blkgrp; i++)
846 		real_free_blocks = real_free_blocks + fs->bgd[i].free_blocks;
847 	if (real_free_blocks != fs->sb->free_blocks)
848 		fs->sb->free_blocks = real_free_blocks;
849 
850 	return 0;
851 fail:
852 	ext4fs_deinit();
853 
854 	return -1;
855 }
856 
857 void ext4fs_deinit(void)
858 {
859 	int i;
860 	struct ext2_inode inode_journal;
861 	struct journal_superblock_t *jsb;
862 	long int blknr;
863 	struct ext_filesystem *fs = get_fs();
864 
865 	/* free journal */
866 	char *temp_buff = zalloc(fs->blksz);
867 	if (temp_buff) {
868 		ext4fs_read_inode(ext4fs_root, EXT2_JOURNAL_INO,
869 				  &inode_journal);
870 		blknr = read_allocated_block(&inode_journal,
871 					EXT2_JOURNAL_SUPERBLOCK);
872 		ext4fs_devread(blknr * fs->sect_perblk, 0, fs->blksz,
873 			       temp_buff);
874 		jsb = (struct journal_superblock_t *)temp_buff;
875 		jsb->s_start = cpu_to_be32(0);
876 		put_ext4((uint64_t) (blknr * fs->blksz),
877 			 (struct journal_superblock_t *)temp_buff, fs->blksz);
878 		free(temp_buff);
879 	}
880 	ext4fs_free_journal();
881 
882 	/* get the superblock */
883 	ext4fs_devread(SUPERBLOCK_SECTOR, 0, SUPERBLOCK_SIZE, (char *)fs->sb);
884 	fs->sb->feature_incompat &= ~EXT3_FEATURE_INCOMPAT_RECOVER;
885 	put_ext4((uint64_t)(SUPERBLOCK_SIZE),
886 		 (struct ext2_sblock *)fs->sb, (uint32_t)SUPERBLOCK_SIZE);
887 	free(fs->sb);
888 	fs->sb = NULL;
889 
890 	if (fs->blk_bmaps) {
891 		for (i = 0; i < fs->no_blkgrp; i++) {
892 			free(fs->blk_bmaps[i]);
893 			fs->blk_bmaps[i] = NULL;
894 		}
895 		free(fs->blk_bmaps);
896 		fs->blk_bmaps = NULL;
897 	}
898 
899 	if (fs->inode_bmaps) {
900 		for (i = 0; i < fs->no_blkgrp; i++) {
901 			free(fs->inode_bmaps[i]);
902 			fs->inode_bmaps[i] = NULL;
903 		}
904 		free(fs->inode_bmaps);
905 		fs->inode_bmaps = NULL;
906 	}
907 
908 
909 	free(fs->gdtable);
910 	fs->gdtable = NULL;
911 	fs->bgd = NULL;
912 	/*
913 	 * reinitiliazed the global inode and
914 	 * block bitmap first execution check variables
915 	 */
916 	fs->first_pass_ibmap = 0;
917 	fs->first_pass_bbmap = 0;
918 	fs->curr_inode_no = 0;
919 	fs->curr_blkno = 0;
920 }
921 
922 static int ext4fs_write_file(struct ext2_inode *file_inode,
923 			     int pos, unsigned int len, char *buf)
924 {
925 	int i;
926 	int blockcnt;
927 	int log2blocksize = LOG2_EXT2_BLOCK_SIZE(ext4fs_root);
928 	unsigned int filesize = __le32_to_cpu(file_inode->size);
929 	struct ext_filesystem *fs = get_fs();
930 	int previous_block_number = -1;
931 	int delayed_start = 0;
932 	int delayed_extent = 0;
933 	int delayed_skipfirst = 0;
934 	int delayed_next = 0;
935 	char *delayed_buf = NULL;
936 
937 	/* Adjust len so it we can't read past the end of the file. */
938 	if (len > filesize)
939 		len = filesize;
940 
941 	blockcnt = ((len + pos) + fs->blksz - 1) / fs->blksz;
942 
943 	for (i = pos / fs->blksz; i < blockcnt; i++) {
944 		long int blknr;
945 		int blockend = fs->blksz;
946 		int skipfirst = 0;
947 		blknr = read_allocated_block(file_inode, i);
948 		if (blknr < 0)
949 			return -1;
950 
951 		blknr = blknr << log2blocksize;
952 
953 		if (blknr) {
954 			if (previous_block_number != -1) {
955 				if (delayed_next == blknr) {
956 					delayed_extent += blockend;
957 					delayed_next += blockend >> SECTOR_BITS;
958 				} else {	/* spill */
959 					put_ext4((uint64_t) (delayed_start *
960 							     SECTOR_SIZE),
961 						 delayed_buf,
962 						 (uint32_t) delayed_extent);
963 					previous_block_number = blknr;
964 					delayed_start = blknr;
965 					delayed_extent = blockend;
966 					delayed_skipfirst = skipfirst;
967 					delayed_buf = buf;
968 					delayed_next = blknr +
969 					    (blockend >> SECTOR_BITS);
970 				}
971 			} else {
972 				previous_block_number = blknr;
973 				delayed_start = blknr;
974 				delayed_extent = blockend;
975 				delayed_skipfirst = skipfirst;
976 				delayed_buf = buf;
977 				delayed_next = blknr +
978 				    (blockend >> SECTOR_BITS);
979 			}
980 		} else {
981 			if (previous_block_number != -1) {
982 				/* spill */
983 				put_ext4((uint64_t) (delayed_start *
984 						     SECTOR_SIZE), delayed_buf,
985 					 (uint32_t) delayed_extent);
986 				previous_block_number = -1;
987 			}
988 			memset(buf, 0, fs->blksz - skipfirst);
989 		}
990 		buf += fs->blksz - skipfirst;
991 	}
992 	if (previous_block_number != -1) {
993 		/* spill */
994 		put_ext4((uint64_t) (delayed_start * SECTOR_SIZE),
995 			 delayed_buf, (uint32_t) delayed_extent);
996 		previous_block_number = -1;
997 	}
998 
999 	return len;
1000 }
1001 
1002 int ext4fs_write(const char *fname, unsigned char *buffer,
1003 					unsigned long sizebytes)
1004 {
1005 	int ret = 0;
1006 	struct ext2_inode *file_inode = NULL;
1007 	unsigned char *inode_buffer = NULL;
1008 	int parent_inodeno;
1009 	int inodeno;
1010 	time_t timestamp = 0;
1011 
1012 	uint64_t bytes_reqd_for_file;
1013 	unsigned int blks_reqd_for_file;
1014 	unsigned int blocks_remaining;
1015 	int existing_file_inodeno;
1016 	char filename[256];
1017 
1018 	char *temp_ptr = NULL;
1019 	long int itable_blkno;
1020 	long int parent_itable_blkno;
1021 	long int blkoff;
1022 	struct ext2_sblock *sblock = &(ext4fs_root->sblock);
1023 	unsigned int inodes_per_block;
1024 	unsigned int ibmap_idx;
1025 	struct ext_filesystem *fs = get_fs();
1026 	g_parent_inode = zalloc(sizeof(struct ext2_inode));
1027 	if (!g_parent_inode)
1028 		goto fail;
1029 
1030 	if (ext4fs_init() != 0) {
1031 		printf("error in File System init\n");
1032 		return -1;
1033 	}
1034 	inodes_per_block = fs->blksz / fs->inodesz;
1035 	parent_inodeno = ext4fs_get_parent_inode_num(fname, filename, F_FILE);
1036 	if (parent_inodeno == -1)
1037 		goto fail;
1038 	if (ext4fs_iget(parent_inodeno, g_parent_inode))
1039 		goto fail;
1040 	/* check if the filename is already present in root */
1041 	existing_file_inodeno = ext4fs_filename_check(filename);
1042 	if (existing_file_inodeno != -1) {
1043 		ret = ext4fs_delete_file(existing_file_inodeno);
1044 		fs->first_pass_bbmap = 0;
1045 		fs->curr_blkno = 0;
1046 
1047 		fs->first_pass_ibmap = 0;
1048 		fs->curr_inode_no = 0;
1049 		if (ret)
1050 			goto fail;
1051 	}
1052 	/* calucalate how many blocks required */
1053 	bytes_reqd_for_file = sizebytes;
1054 	blks_reqd_for_file = bytes_reqd_for_file / fs->blksz;
1055 	if (bytes_reqd_for_file % fs->blksz != 0) {
1056 		blks_reqd_for_file++;
1057 		debug("total bytes for a file %u\n", blks_reqd_for_file);
1058 	}
1059 	blocks_remaining = blks_reqd_for_file;
1060 	/* test for available space in partition */
1061 	if (fs->sb->free_blocks < blks_reqd_for_file) {
1062 		printf("Not enough space on partition !!!\n");
1063 		goto fail;
1064 	}
1065 
1066 	ext4fs_update_parent_dentry(filename, &inodeno, FILETYPE_REG);
1067 	/* prepare file inode */
1068 	inode_buffer = zalloc(fs->inodesz);
1069 	if (!inode_buffer)
1070 		goto fail;
1071 	file_inode = (struct ext2_inode *)inode_buffer;
1072 	file_inode->mode = S_IFREG | S_IRWXU |
1073 	    S_IRGRP | S_IROTH | S_IXGRP | S_IXOTH;
1074 	/* ToDo: Update correct time */
1075 	file_inode->mtime = timestamp;
1076 	file_inode->atime = timestamp;
1077 	file_inode->ctime = timestamp;
1078 	file_inode->nlinks = 1;
1079 	file_inode->size = sizebytes;
1080 
1081 	/* Allocate data blocks */
1082 	ext4fs_allocate_blocks(file_inode, blocks_remaining,
1083 			       &blks_reqd_for_file);
1084 	file_inode->blockcnt = (blks_reqd_for_file * fs->blksz) / SECTOR_SIZE;
1085 
1086 	temp_ptr = zalloc(fs->blksz);
1087 	if (!temp_ptr)
1088 		goto fail;
1089 	ibmap_idx = inodeno / ext4fs_root->sblock.inodes_per_group;
1090 	inodeno--;
1091 	itable_blkno = __le32_to_cpu(fs->bgd[ibmap_idx].inode_table_id) +
1092 			(inodeno % __le32_to_cpu(sblock->inodes_per_group)) /
1093 			inodes_per_block;
1094 	blkoff = (inodeno % inodes_per_block) * fs->inodesz;
1095 	ext4fs_devread(itable_blkno * fs->sect_perblk, 0, fs->blksz, temp_ptr);
1096 	if (ext4fs_log_journal(temp_ptr, itable_blkno))
1097 		goto fail;
1098 
1099 	memcpy(temp_ptr + blkoff, inode_buffer, fs->inodesz);
1100 	if (ext4fs_put_metadata(temp_ptr, itable_blkno))
1101 		goto fail;
1102 	/* copy the file content into data blocks */
1103 	if (ext4fs_write_file(file_inode, 0, sizebytes, (char *)buffer) == -1) {
1104 		printf("Error in copying content\n");
1105 		goto fail;
1106 	}
1107 	ibmap_idx = parent_inodeno / ext4fs_root->sblock.inodes_per_group;
1108 	parent_inodeno--;
1109 	parent_itable_blkno = __le32_to_cpu(fs->bgd[ibmap_idx].inode_table_id) +
1110 	    (parent_inodeno %
1111 	     __le32_to_cpu(sblock->inodes_per_group)) / inodes_per_block;
1112 	blkoff = (parent_inodeno % inodes_per_block) * fs->inodesz;
1113 	if (parent_itable_blkno != itable_blkno) {
1114 		memset(temp_ptr, '\0', fs->blksz);
1115 		ext4fs_devread(parent_itable_blkno * fs->sect_perblk,
1116 			       0, fs->blksz, temp_ptr);
1117 		if (ext4fs_log_journal(temp_ptr, parent_itable_blkno))
1118 			goto fail;
1119 
1120 		memcpy(temp_ptr + blkoff, g_parent_inode,
1121 			sizeof(struct ext2_inode));
1122 		if (ext4fs_put_metadata(temp_ptr, parent_itable_blkno))
1123 			goto fail;
1124 		free(temp_ptr);
1125 	} else {
1126 		/*
1127 		 * If parent and child fall in same inode table block
1128 		 * both should be kept in 1 buffer
1129 		 */
1130 		memcpy(temp_ptr + blkoff, g_parent_inode,
1131 		       sizeof(struct ext2_inode));
1132 		gd_index--;
1133 		if (ext4fs_put_metadata(temp_ptr, itable_blkno))
1134 			goto fail;
1135 		free(temp_ptr);
1136 	}
1137 	ext4fs_update();
1138 	ext4fs_deinit();
1139 
1140 	fs->first_pass_bbmap = 0;
1141 	fs->curr_blkno = 0;
1142 	fs->first_pass_ibmap = 0;
1143 	fs->curr_inode_no = 0;
1144 	free(inode_buffer);
1145 	free(g_parent_inode);
1146 	g_parent_inode = NULL;
1147 
1148 	return 0;
1149 fail:
1150 	ext4fs_deinit();
1151 	free(inode_buffer);
1152 	free(g_parent_inode);
1153 	g_parent_inode = NULL;
1154 
1155 	return -1;
1156 }
1157 #endif
1158