xref: /rk3399_rockchip-uboot/fs/jffs2/jffs2_1pass.c (revision 9c4c5ae3e10e4f2ca799aacbb74e1f5adb86e0b5)
1 /*
2 -------------------------------------------------------------------------
3  * Filename:      jffs2.c
4  * Version:       $Id: jffs2_1pass.c,v 1.7 2002/01/25 01:56:47 nyet Exp $
5  * Copyright:     Copyright (C) 2001, Russ Dill
6  * Author:        Russ Dill <Russ.Dill@asu.edu>
7  * Description:   Module to load kernel from jffs2
8  *-----------------------------------------------------------------------*/
9 /*
10  * some portions of this code are taken from jffs2, and as such, the
11  * following copyright notice is included.
12  *
13  * JFFS2 -- Journalling Flash File System, Version 2.
14  *
15  * Copyright (C) 2001 Red Hat, Inc.
16  *
17  * Created by David Woodhouse <dwmw2@cambridge.redhat.com>
18  *
19  * The original JFFS, from which the design for JFFS2 was derived,
20  * was designed and implemented by Axis Communications AB.
21  *
22  * The contents of this file are subject to the Red Hat eCos Public
23  * License Version 1.1 (the "Licence"); you may not use this file
24  * except in compliance with the Licence.  You may obtain a copy of
25  * the Licence at http://www.redhat.com/
26  *
27  * Software distributed under the Licence is distributed on an "AS IS"
28  * basis, WITHOUT WARRANTY OF ANY KIND, either express or implied.
29  * See the Licence for the specific language governing rights and
30  * limitations under the Licence.
31  *
32  * The Original Code is JFFS2 - Journalling Flash File System, version 2
33  *
34  * Alternatively, the contents of this file may be used under the
35  * terms of the GNU General Public License version 2 (the "GPL"), in
36  * which case the provisions of the GPL are applicable instead of the
37  * above.  If you wish to allow the use of your version of this file
38  * only under the terms of the GPL and not to allow others to use your
39  * version of this file under the RHEPL, indicate your decision by
40  * deleting the provisions above and replace them with the notice and
41  * other provisions required by the GPL.  If you do not delete the
42  * provisions above, a recipient may use your version of this file
43  * under either the RHEPL or the GPL.
44  *
45  * $Id: jffs2_1pass.c,v 1.7 2002/01/25 01:56:47 nyet Exp $
46  *
47  */
48 
49 /* Ok, so anyone who knows the jffs2 code will probably want to get a papar
50  * bag to throw up into before reading this code. I looked through the jffs2
51  * code, the caching scheme is very elegant. I tried to keep the version
52  * for a bootloader as small and simple as possible. Instead of worring about
53  * unneccesary data copies, node scans, etc, I just optimized for the known
54  * common case, a kernel, which looks like:
55  * 	(1) most pages are 4096 bytes
56  *	(2) version numbers are somewhat sorted in acsending order
57  *	(3) multiple compressed blocks making up one page is uncommon
58  *
59  * So I create a linked list of decending version numbers (insertions at the
60  * head), and then for each page, walk down the list, until a matching page
61  * with 4096 bytes is found, and then decompress the watching pages in
62  * reverse order.
63  *
64  */
65 
66 /*
67  * Adapted by Nye Liu <nyet@zumanetworks.com> and
68  * Rex Feany <rfeany@zumanetworks.com>
69  * on Jan/2002 for U-Boot.
70  *
71  * Clipped out all the non-1pass functions, cleaned up warnings,
72  * wrappers, etc. No major changes to the code.
73  * Please, he really means it when he said have a paper bag
74  * handy. We needed it ;).
75  *
76  */
77 
78 /*
79  * Bugfixing by Kai-Uwe Bloem <kai-uwe.bloem@auerswald.de>, (C) Mar/2003
80  *
81  * - overhaul of the memory management. Removed much of the "paper-bagging"
82  *   in that part of the code, fixed several bugs, now frees memory when
83  *   partition is changed.
84  *   It's still ugly :-(
85  * - fixed a bug in jffs2_1pass_read_inode where the file length calculation
86  *   was incorrect. Removed a bit of the paper-bagging as well.
87  * - removed double crc calculation for fragment headers in jffs2_private.h
88  *   for speedup.
89  * - scan_empty rewritten in a more "standard" manner (non-paperbag, that is).
90  * - spinning wheel now spins depending on how much memory has been scanned
91  * - lots of small changes all over the place to "improve" readability.
92  * - implemented fragment sorting to ensure that the newest data is copied
93  *   if there are multiple copies of fragments for a certain file offset.
94  *
95  * The fragment sorting feature must be enabled by CFG_JFFS2_SORT_FRAGMENTS.
96  * Sorting is done while adding fragments to the lists, which is more or less a
97  * bubble sort. This takes a lot of time, and is most probably not an issue if
98  * the boot filesystem is always mounted readonly.
99  *
100  * You should define it if the boot filesystem is mounted writable, and updates
101  * to the boot files are done by copying files to that filesystem.
102  *
103  *
104  * There's a big issue left: endianess is completely ignored in this code. Duh!
105  *
106  *
107  * You still should have paper bags at hand :-(. The code lacks more or less
108  * any comment, and is still arcane and difficult to read in places. As this
109  * might be incompatible with any new code from the jffs2 maintainers anyway,
110  * it should probably be dumped and replaced by something like jffs2reader!
111  */
112 
113 
114 #include <common.h>
115 #include <config.h>
116 #include <malloc.h>
117 #include <linux/stat.h>
118 #include <linux/time.h>
119 
120 #if (CONFIG_COMMANDS & CFG_CMD_JFFS2)
121 
122 #include <jffs2/jffs2.h>
123 #include <jffs2/jffs2_1pass.h>
124 
125 #include "jffs2_private.h"
126 
127 
128 #define	NODE_CHUNK  	1024	/* size of memory allocation chunk in b_nodes */
129 #define	SPIN_BLKSIZE	18  	/* spin after having scanned 1<<BLKSIZE bytes */
130 
131 /* Debugging switches */
132 #undef	DEBUG_DIRENTS		/* print directory entry list after scan */
133 #undef	DEBUG_FRAGMENTS		/* print fragment list after scan */
134 #undef	DEBUG   			/* enable debugging messages */
135 
136 
137 #ifdef  DEBUG
138 # define DEBUGF(fmt,args...)	printf(fmt ,##args)
139 #else
140 # define DEBUGF(fmt,args...)
141 #endif
142 
143 #if defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND)
144 
145 /*
146  * Support for jffs2 on top of NAND-flash
147  *
148  * NAND memory isn't mapped in processor's address space,
149  * so data should be fetched from flash before
150  * being processed. This is exactly what functions declared
151  * here do.
152  *
153  */
154 
155 /* this one defined in cmd_nand.c */
156 int read_jffs2_nand(size_t start, size_t len,
157 		    size_t * retlen, u_char * buf, int nanddev);
158 
159 #define NAND_PAGE_SIZE 512
160 #define NAND_PAGE_SHIFT 9
161 #define NAND_PAGE_MASK (~(NAND_PAGE_SIZE-1))
162 
163 #ifndef NAND_CACHE_PAGES
164 #define NAND_CACHE_PAGES 16
165 #endif
166 #define NAND_CACHE_SIZE (NAND_CACHE_PAGES*NAND_PAGE_SIZE)
167 
168 static u8* nand_cache = NULL;
169 static u32 nand_cache_off = (u32)-1;
170 static int nanddev = 0; /* nand device of current partition */
171 
172 static int read_nand_cached(u32 off, u32 size, u_char *buf)
173 {
174 	u32 bytes_read = 0;
175 	size_t retlen;
176 	int cpy_bytes;
177 
178 	while (bytes_read < size) {
179 		if ((off + bytes_read < nand_cache_off) ||
180 		    (off + bytes_read >= nand_cache_off+NAND_CACHE_SIZE)) {
181 			nand_cache_off = (off + bytes_read) & NAND_PAGE_MASK;
182 			if (!nand_cache) {
183 				/* This memory never gets freed but 'cause
184 				   it's a bootloader, nobody cares */
185 				nand_cache = malloc(NAND_CACHE_SIZE);
186 				if (!nand_cache) {
187 					printf("read_nand_cached: can't alloc cache size %d bytes\n",
188 					       NAND_CACHE_SIZE);
189 					return -1;
190 				}
191 			}
192 			if (read_jffs2_nand(nand_cache_off, NAND_CACHE_SIZE,
193 					    &retlen, nand_cache, nanddev) < 0 ||
194 			    retlen != NAND_CACHE_SIZE) {
195 				printf("read_nand_cached: error reading nand off %#x size %d bytes\n",
196 				       nand_cache_off, NAND_CACHE_SIZE);
197 				return -1;
198 			}
199 		}
200 		cpy_bytes = nand_cache_off + NAND_CACHE_SIZE - (off + bytes_read);
201 		if (cpy_bytes > size - bytes_read)
202 			cpy_bytes = size - bytes_read;
203 		memcpy(buf + bytes_read,
204 		       nand_cache + off + bytes_read - nand_cache_off,
205 		       cpy_bytes);
206 		bytes_read += cpy_bytes;
207 	}
208 	return bytes_read;
209 }
210 
211 static void *get_fl_mem(u32 off, u32 size, void *ext_buf)
212 {
213 	u_char *buf = ext_buf ? (u_char*)ext_buf : (u_char*)malloc(size);
214 
215 	if (NULL == buf) {
216 		printf("get_fl_mem: can't alloc %d bytes\n", size);
217 		return NULL;
218 	}
219 	if (read_nand_cached(off, size, buf) < 0) {
220 		if (!ext_buf)
221 			free(buf);
222 		return NULL;
223 	}
224 
225 	return buf;
226 }
227 
228 static void *get_node_mem(u32 off)
229 {
230 	struct jffs2_unknown_node node;
231 	void *ret = NULL;
232 
233 	if (NULL == get_fl_mem(off, sizeof(node), &node))
234 		return NULL;
235 
236 	if (!(ret = get_fl_mem(off, node.magic ==
237 			       JFFS2_MAGIC_BITMASK ? node.totlen : sizeof(node),
238 			       NULL))) {
239 		printf("off = %#x magic %#x type %#x node.totlen = %d\n",
240 		       off, node.magic, node.nodetype, node.totlen);
241 	}
242 	return ret;
243 }
244 
245 static void put_fl_mem(void *buf)
246 {
247 	free(buf);
248 }
249 
250 #else /* defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND) */
251 
252 static inline void *get_fl_mem(u32 off, u32 size, void *ext_buf)
253 {
254 	return (void*)off;
255 }
256 
257 static inline void *get_node_mem(u32 off)
258 {
259 	return (void*)off;
260 }
261 
262 static inline void put_fl_mem(void *buf)
263 {
264 }
265 
266 #endif /* defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND) */
267 
268 
269 /* Compression names */
270 static char *compr_names[] = {
271 	"NONE",
272 	"ZERO",
273 	"RTIME",
274 	"RUBINMIPS",
275 	"COPY",
276 	"DYNRUBIN",
277 	"ZLIB",
278 #if defined(CONFIG_JFFS2_LZO_LZARI)
279 	"LZO",
280 	"LZARI",
281 #endif
282 };
283 
284 /* Spinning wheel */
285 static char spinner[] = { '|', '/', '-', '\\' };
286 
287 /* Memory management */
288 struct mem_block {
289 	u32	index;
290 	struct mem_block *next;
291 	struct b_node nodes[NODE_CHUNK];
292 };
293 
294 
295 static void
296 free_nodes(struct b_list *list)
297 {
298 	while (list->listMemBase != NULL) {
299 		struct mem_block *next = list->listMemBase->next;
300 		free( list->listMemBase );
301 		list->listMemBase = next;
302 	}
303 }
304 
305 static struct b_node *
306 add_node(struct b_list *list)
307 {
308 	u32 index = 0;
309 	struct mem_block *memBase;
310 	struct b_node *b;
311 
312 	memBase = list->listMemBase;
313 	if (memBase != NULL)
314 		index = memBase->index;
315 #if 0
316 	putLabeledWord("add_node: index = ", index);
317 	putLabeledWord("add_node: memBase = ", list->listMemBase);
318 #endif
319 
320 	if (memBase == NULL || index >= NODE_CHUNK) {
321 		/* we need more space before we continue */
322 		memBase = mmalloc(sizeof(struct mem_block));
323 		if (memBase == NULL) {
324 			putstr("add_node: malloc failed\n");
325 			return NULL;
326 		}
327 		memBase->next = list->listMemBase;
328 		index = 0;
329 #if 0
330 		putLabeledWord("add_node: alloced a new membase at ", *memBase);
331 #endif
332 
333 	}
334 	/* now we have room to add it. */
335 	b = &memBase->nodes[index];
336 	index ++;
337 
338 	memBase->index = index;
339 	list->listMemBase = memBase;
340 	list->listCount++;
341 	return b;
342 }
343 
344 static struct b_node *
345 insert_node(struct b_list *list, u32 offset)
346 {
347 	struct b_node *new;
348 #ifdef CFG_JFFS2_SORT_FRAGMENTS
349 	struct b_node *b, *prev;
350 #endif
351 
352 	if (!(new = add_node(list))) {
353 		putstr("add_node failed!\r\n");
354 		return NULL;
355 	}
356 	new->offset = offset;
357 
358 #ifdef CFG_JFFS2_SORT_FRAGMENTS
359 	if (list->listTail != NULL && list->listCompare(new, list->listTail))
360 		prev = list->listTail;
361 	else if (list->listLast != NULL && list->listCompare(new, list->listLast))
362 		prev = list->listLast;
363 	else
364 		prev = NULL;
365 
366 	for (b = (prev ? prev->next : list->listHead);
367 	     b != NULL && list->listCompare(new, b);
368 	     prev = b, b = b->next) {
369 		list->listLoops++;
370 	}
371 	if (b != NULL)
372 		list->listLast = prev;
373 
374 	if (b != NULL) {
375 		new->next = b;
376 		if (prev != NULL)
377 			prev->next = new;
378 		else
379 			list->listHead = new;
380 	} else
381 #endif
382 	{
383 		new->next = (struct b_node *) NULL;
384 		if (list->listTail != NULL) {
385 			list->listTail->next = new;
386 			list->listTail = new;
387 		} else {
388 			list->listTail = list->listHead = new;
389 		}
390 	}
391 
392 	return new;
393 }
394 
395 #ifdef CFG_JFFS2_SORT_FRAGMENTS
396 /* Sort data entries with the latest version last, so that if there
397  * is overlapping data the latest version will be used.
398  */
399 static int compare_inodes(struct b_node *new, struct b_node *old)
400 {
401 	struct jffs2_raw_inode ojNew;
402 	struct jffs2_raw_inode ojOld;
403 	struct jffs2_raw_inode *jNew =
404 		(struct jffs2_raw_inode *)get_fl_mem(new->offset, sizeof(ojNew), &ojNew);
405 	struct jffs2_raw_inode *jOld =
406 		(struct jffs2_raw_inode *)get_fl_mem(old->offset, sizeof(ojOld), &ojOld);
407 
408 	return jNew->version > jOld->version;
409 }
410 
411 /* Sort directory entries so all entries in the same directory
412  * with the same name are grouped together, with the latest version
413  * last. This makes it easy to eliminate all but the latest version
414  * by marking the previous version dead by setting the inode to 0.
415  */
416 static int compare_dirents(struct b_node *new, struct b_node *old)
417 {
418 	struct jffs2_raw_dirent ojNew;
419 	struct jffs2_raw_dirent ojOld;
420 	struct jffs2_raw_dirent *jNew =
421 		(struct jffs2_raw_dirent *)get_fl_mem(new->offset, sizeof(ojNew), &ojNew);
422 	struct jffs2_raw_dirent *jOld =
423 		(struct jffs2_raw_dirent *)get_fl_mem(old->offset, sizeof(ojOld), &ojOld);
424 	int cmp;
425 
426 	/* ascending sort by pino */
427 	if (jNew->pino != jOld->pino)
428 		return jNew->pino > jOld->pino;
429 
430 	/* pino is the same, so use ascending sort by nsize, so
431 	 * we don't do strncmp unless we really must.
432 	 */
433 	if (jNew->nsize != jOld->nsize)
434 		return jNew->nsize > jOld->nsize;
435 
436 	/* length is also the same, so use ascending sort by name
437 	 */
438 	cmp = strncmp(jNew->name, jOld->name, jNew->nsize);
439 	if (cmp != 0)
440 		return cmp > 0;
441 
442 	/* we have duplicate names in this directory, so use ascending
443 	 * sort by version
444 	 */
445 	if (jNew->version > jOld->version) {
446 		/* since jNew is newer, we know jOld is not valid, so
447 		 * mark it with inode 0 and it will not be used
448 		 */
449 		jOld->ino = 0;
450 		return 1;
451 	}
452 
453 	return 0;
454 }
455 #endif
456 
457 static u32
458 jffs2_scan_empty(u32 start_offset, struct part_info *part)
459 {
460 	char *max = part->offset + part->size - sizeof(struct jffs2_raw_inode);
461 	char *offset = part->offset + start_offset;
462 	u32 off;
463 
464 	while (offset < max &&
465 	       *(u32*)get_fl_mem((u32)offset, sizeof(u32), &off) == 0xFFFFFFFF) {
466 		offset += sizeof(u32);
467 		/* return if spinning is due */
468 		if (((u32)offset & ((1 << SPIN_BLKSIZE)-1)) == 0) break;
469 	}
470 
471 	return offset - part->offset;
472 }
473 
474 static u32
475 jffs_init_1pass_list(struct part_info *part)
476 {
477 	struct b_lists *pL;
478 
479 	if (part->jffs2_priv != NULL) {
480 		pL = (struct b_lists *)part->jffs2_priv;
481 		free_nodes(&pL->frag);
482 		free_nodes(&pL->dir);
483 		free(pL);
484 	}
485 	if (NULL != (part->jffs2_priv = malloc(sizeof(struct b_lists)))) {
486 		pL = (struct b_lists *)part->jffs2_priv;
487 
488 		memset(pL, 0, sizeof(*pL));
489 #ifdef CFG_JFFS2_SORT_FRAGMENTS
490 		pL->dir.listCompare = compare_dirents;
491 		pL->frag.listCompare = compare_inodes;
492 #endif
493 	}
494 	return 0;
495 }
496 
497 /* find the inode from the slashless name given a parent */
498 static long
499 jffs2_1pass_read_inode(struct b_lists *pL, u32 inode, char *dest)
500 {
501 	struct b_node *b;
502 	struct jffs2_raw_inode *jNode;
503 	u32 totalSize = 0;
504 	u32 latestVersion = 0;
505 	char *lDest;
506 	char *src;
507 	long ret;
508 	int i;
509 	u32 counter = 0;
510 #ifdef CFG_JFFS2_SORT_FRAGMENTS
511 	/* Find file size before loading any data, so fragments that
512 	 * start past the end of file can be ignored. A fragment
513 	 * that is partially in the file is loaded, so extra data may
514 	 * be loaded up to the next 4K boundary above the file size.
515 	 * This shouldn't cause trouble when loading kernel images, so
516 	 * we will live with it.
517 	 */
518 	for (b = pL->frag.listHead; b != NULL; b = b->next) {
519 		jNode = (struct jffs2_raw_inode *) get_fl_mem(b->offset,
520 		        sizeof(struct jffs2_raw_inode), NULL);
521 		if ((inode == jNode->ino)) {
522 			/* get actual file length from the newest node */
523 			if (jNode->version >= latestVersion) {
524 				totalSize = jNode->isize;
525 				latestVersion = jNode->version;
526 			}
527 		}
528 		put_fl_mem(jNode);
529 	}
530 #endif
531 
532 	for (b = pL->frag.listHead; b != NULL; b = b->next) {
533 		jNode = (struct jffs2_raw_inode *) get_node_mem(b->offset);
534 		if ((inode == jNode->ino)) {
535 #if 0
536 			putLabeledWord("\r\n\r\nread_inode: totlen = ", jNode->totlen);
537 			putLabeledWord("read_inode: inode = ", jNode->ino);
538 			putLabeledWord("read_inode: version = ", jNode->version);
539 			putLabeledWord("read_inode: isize = ", jNode->isize);
540 			putLabeledWord("read_inode: offset = ", jNode->offset);
541 			putLabeledWord("read_inode: csize = ", jNode->csize);
542 			putLabeledWord("read_inode: dsize = ", jNode->dsize);
543 			putLabeledWord("read_inode: compr = ", jNode->compr);
544 			putLabeledWord("read_inode: usercompr = ", jNode->usercompr);
545 			putLabeledWord("read_inode: flags = ", jNode->flags);
546 #endif
547 
548 #ifndef CFG_JFFS2_SORT_FRAGMENTS
549 			/* get actual file length from the newest node */
550 			if (jNode->version >= latestVersion) {
551 				totalSize = jNode->isize;
552 				latestVersion = jNode->version;
553 			}
554 #endif
555 
556 			if(dest) {
557 				src = ((char *) jNode) + sizeof(struct jffs2_raw_inode);
558 				/* ignore data behind latest known EOF */
559 				if (jNode->offset > totalSize) {
560 					put_fl_mem(jNode);
561 					continue;
562 				}
563 
564 				lDest = (char *) (dest + jNode->offset);
565 #if 0
566 				putLabeledWord("read_inode: src = ", src);
567 				putLabeledWord("read_inode: dest = ", lDest);
568 #endif
569 				switch (jNode->compr) {
570 				case JFFS2_COMPR_NONE:
571 					ret = (unsigned long) ldr_memcpy(lDest, src, jNode->dsize);
572 					break;
573 				case JFFS2_COMPR_ZERO:
574 					ret = 0;
575 					for (i = 0; i < jNode->dsize; i++)
576 						*(lDest++) = 0;
577 					break;
578 				case JFFS2_COMPR_RTIME:
579 					ret = 0;
580 					rtime_decompress(src, lDest, jNode->csize, jNode->dsize);
581 					break;
582 				case JFFS2_COMPR_DYNRUBIN:
583 					/* this is slow but it works */
584 					ret = 0;
585 					dynrubin_decompress(src, lDest, jNode->csize, jNode->dsize);
586 					break;
587 				case JFFS2_COMPR_ZLIB:
588 					ret = zlib_decompress(src, lDest, jNode->csize, jNode->dsize);
589 					break;
590 #if defined(CONFIG_JFFS2_LZO_LZARI)
591 				case JFFS2_COMPR_LZO:
592 					ret = lzo_decompress(src, lDest, jNode->csize, jNode->dsize);
593 					break;
594 				case JFFS2_COMPR_LZARI:
595 					ret = lzari_decompress(src, lDest, jNode->csize, jNode->dsize);
596 					break;
597 #endif
598 				default:
599 					/* unknown */
600 					putLabeledWord("UNKOWN COMPRESSION METHOD = ", jNode->compr);
601 					put_fl_mem(jNode);
602 					return -1;
603 					break;
604 				}
605 			}
606 
607 #if 0
608 			putLabeledWord("read_inode: totalSize = ", totalSize);
609 			putLabeledWord("read_inode: compr ret = ", ret);
610 #endif
611 		}
612 		counter++;
613 		put_fl_mem(jNode);
614 	}
615 
616 #if 0
617 	putLabeledWord("read_inode: returning = ", totalSize);
618 #endif
619 	return totalSize;
620 }
621 
622 /* find the inode from the slashless name given a parent */
623 static u32
624 jffs2_1pass_find_inode(struct b_lists * pL, const char *name, u32 pino)
625 {
626 	struct b_node *b;
627 	struct jffs2_raw_dirent *jDir;
628 	int len;
629 	u32 counter;
630 	u32 version = 0;
631 	u32 inode = 0;
632 
633 	/* name is assumed slash free */
634 	len = strlen(name);
635 
636 	counter = 0;
637 	/* we need to search all and return the inode with the highest version */
638 	for(b = pL->dir.listHead; b; b = b->next, counter++) {
639 		jDir = (struct jffs2_raw_dirent *) get_node_mem(b->offset);
640 		if ((pino == jDir->pino) && (len == jDir->nsize) &&
641 		    (jDir->ino) &&	/* 0 for unlink */
642 		    (!strncmp(jDir->name, name, len))) {	/* a match */
643 			if (jDir->version < version) {
644 				put_fl_mem(jDir);
645 				continue;
646 			}
647 
648 			if (jDir->version == version && inode != 0) {
649 			    	/* I'm pretty sure this isn't legal */
650 				putstr(" ** ERROR ** ");
651 				putnstr(jDir->name, jDir->nsize);
652 				putLabeledWord(" has dup version =", version);
653 			}
654 			inode = jDir->ino;
655 			version = jDir->version;
656 		}
657 #if 0
658 		putstr("\r\nfind_inode:p&l ->");
659 		putnstr(jDir->name, jDir->nsize);
660 		putstr("\r\n");
661 		putLabeledWord("pino = ", jDir->pino);
662 		putLabeledWord("nsize = ", jDir->nsize);
663 		putLabeledWord("b = ", (u32) b);
664 		putLabeledWord("counter = ", counter);
665 #endif
666 		put_fl_mem(jDir);
667 	}
668 	return inode;
669 }
670 
671 char *mkmodestr(unsigned long mode, char *str)
672 {
673 	static const char *l = "xwr";
674 	int mask = 1, i;
675 	char c;
676 
677 	switch (mode & S_IFMT) {
678 		case S_IFDIR:    str[0] = 'd'; break;
679 		case S_IFBLK:    str[0] = 'b'; break;
680 		case S_IFCHR:    str[0] = 'c'; break;
681 		case S_IFIFO:    str[0] = 'f'; break;
682 		case S_IFLNK:    str[0] = 'l'; break;
683 		case S_IFSOCK:   str[0] = 's'; break;
684 		case S_IFREG:    str[0] = '-'; break;
685 		default:         str[0] = '?';
686 	}
687 
688 	for(i = 0; i < 9; i++) {
689 		c = l[i%3];
690 		str[9-i] = (mode & mask)?c:'-';
691 		mask = mask<<1;
692 	}
693 
694 	if(mode & S_ISUID) str[3] = (mode & S_IXUSR)?'s':'S';
695 	if(mode & S_ISGID) str[6] = (mode & S_IXGRP)?'s':'S';
696 	if(mode & S_ISVTX) str[9] = (mode & S_IXOTH)?'t':'T';
697 	str[10] = '\0';
698 	return str;
699 }
700 
701 static inline void dump_stat(struct stat *st, const char *name)
702 {
703 	char str[20];
704 	char s[64], *p;
705 
706 	if (st->st_mtime == (time_t)(-1)) /* some ctimes really hate -1 */
707 		st->st_mtime = 1;
708 
709 	ctime_r(&st->st_mtime, s/*,64*/); /* newlib ctime doesn't have buflen */
710 
711 	if ((p = strchr(s,'\n')) != NULL) *p = '\0';
712 	if ((p = strchr(s,'\r')) != NULL) *p = '\0';
713 
714 /*
715 	printf("%6lo %s %8ld %s %s\n", st->st_mode, mkmodestr(st->st_mode, str),
716 		st->st_size, s, name);
717 */
718 
719 	printf(" %s %8ld %s %s", mkmodestr(st->st_mode,str), st->st_size, s, name);
720 }
721 
722 static inline u32 dump_inode(struct b_lists * pL, struct jffs2_raw_dirent *d, struct jffs2_raw_inode *i)
723 {
724 	char fname[256];
725 	struct stat st;
726 
727 	if(!d || !i) return -1;
728 
729 	strncpy(fname, d->name, d->nsize);
730 	fname[d->nsize] = '\0';
731 
732 	memset(&st,0,sizeof(st));
733 
734 	st.st_mtime = i->mtime;
735 	st.st_mode = i->mode;
736 	st.st_ino = i->ino;
737 
738 	/* neither dsize nor isize help us.. do it the long way */
739 	st.st_size = jffs2_1pass_read_inode(pL, i->ino, NULL);
740 
741 	dump_stat(&st, fname);
742 
743 	if (d->type == DT_LNK) {
744 		unsigned char *src = (unsigned char *) (&i[1]);
745 	        putstr(" -> ");
746 		putnstr(src, (int)i->dsize);
747 	}
748 
749 	putstr("\r\n");
750 
751 	return 0;
752 }
753 
754 /* list inodes with the given pino */
755 static u32
756 jffs2_1pass_list_inodes(struct b_lists * pL, u32 pino)
757 {
758 	struct b_node *b;
759 	struct jffs2_raw_dirent *jDir;
760 
761 	for (b = pL->dir.listHead; b; b = b->next) {
762 		jDir = (struct jffs2_raw_dirent *) get_node_mem(b->offset);
763 		if ((pino == jDir->pino) && (jDir->ino)) { /* ino=0 -> unlink */
764 			u32 i_version = 0;
765 			struct jffs2_raw_inode ojNode;
766 			struct jffs2_raw_inode *jNode, *i = NULL;
767 			struct b_node *b2 = pL->frag.listHead;
768 
769 			while (b2) {
770 				jNode = (struct jffs2_raw_inode *)
771 					get_fl_mem(b2->offset, sizeof(ojNode), &ojNode);
772 				if (jNode->ino == jDir->ino && jNode->version >= i_version) {
773 					if (i)
774 						put_fl_mem(i);
775 
776 					if (jDir->type == DT_LNK)
777 						i = get_node_mem(b2->offset);
778 					else
779 						i = get_fl_mem(b2->offset, sizeof(*i), NULL);
780 				}
781 				b2 = b2->next;
782 			}
783 
784 			dump_inode(pL, jDir, i);
785 			put_fl_mem(i);
786 		}
787 		put_fl_mem(jDir);
788 	}
789 	return pino;
790 }
791 
792 static u32
793 jffs2_1pass_search_inode(struct b_lists * pL, const char *fname, u32 pino)
794 {
795 	int i;
796 	char tmp[256];
797 	char working_tmp[256];
798 	char *c;
799 
800 	/* discard any leading slash */
801 	i = 0;
802 	while (fname[i] == '/')
803 		i++;
804 	strcpy(tmp, &fname[i]);
805 
806 	while ((c = (char *) strchr(tmp, '/')))	/* we are still dired searching */
807 	{
808 		strncpy(working_tmp, tmp, c - tmp);
809 		working_tmp[c - tmp] = '\0';
810 #if 0
811 		putstr("search_inode: tmp = ");
812 		putstr(tmp);
813 		putstr("\r\n");
814 		putstr("search_inode: wtmp = ");
815 		putstr(working_tmp);
816 		putstr("\r\n");
817 		putstr("search_inode: c = ");
818 		putstr(c);
819 		putstr("\r\n");
820 #endif
821 		for (i = 0; i < strlen(c) - 1; i++)
822 			tmp[i] = c[i + 1];
823 		tmp[i] = '\0';
824 #if 0
825 		putstr("search_inode: post tmp = ");
826 		putstr(tmp);
827 		putstr("\r\n");
828 #endif
829 
830 		if (!(pino = jffs2_1pass_find_inode(pL, working_tmp, pino))) {
831 			putstr("find_inode failed for name=");
832 			putstr(working_tmp);
833 			putstr("\r\n");
834 			return 0;
835 		}
836 	}
837 	/* this is for the bare filename, directories have already been mapped */
838 	if (!(pino = jffs2_1pass_find_inode(pL, tmp, pino))) {
839 		putstr("find_inode failed for name=");
840 		putstr(tmp);
841 		putstr("\r\n");
842 		return 0;
843 	}
844 	return pino;
845 
846 }
847 
848 static u32
849 jffs2_1pass_resolve_inode(struct b_lists * pL, u32 ino)
850 {
851 	struct b_node *b;
852 	struct b_node *b2;
853 	struct jffs2_raw_dirent *jDir;
854 	struct jffs2_raw_inode *jNode;
855 	u8 jDirFoundType = 0;
856 	u32 jDirFoundIno = 0;
857 	u32 jDirFoundPino = 0;
858 	char tmp[256];
859 	u32 version = 0;
860 	u32 pino;
861 	unsigned char *src;
862 
863 	/* we need to search all and return the inode with the highest version */
864 	for(b = pL->dir.listHead; b; b = b->next) {
865 		jDir = (struct jffs2_raw_dirent *) get_node_mem(b->offset);
866 		if (ino == jDir->ino) {
867 		    	if (jDir->version < version) {
868 				put_fl_mem(jDir);
869 				continue;
870 			}
871 
872 			if (jDir->version == version && jDirFoundType) {
873 			    	/* I'm pretty sure this isn't legal */
874 				putstr(" ** ERROR ** ");
875 				putnstr(jDir->name, jDir->nsize);
876 				putLabeledWord(" has dup version (resolve) = ",
877 					version);
878 			}
879 
880 			jDirFoundType = jDir->type;
881 			jDirFoundIno = jDir->ino;
882 			jDirFoundPino = jDir->pino;
883 			version = jDir->version;
884 		}
885 		put_fl_mem(jDir);
886 	}
887 	/* now we found the right entry again. (shoulda returned inode*) */
888 	if (jDirFoundType != DT_LNK)
889 		return jDirFoundIno;
890 
891 	/* it's a soft link so we follow it again. */
892 	b2 = pL->frag.listHead;
893 	while (b2) {
894 		jNode = (struct jffs2_raw_inode *) get_node_mem(b2->offset);
895 		if (jNode->ino == jDirFoundIno) {
896 			src = (unsigned char *)jNode + sizeof(struct jffs2_raw_inode);
897 
898 #if 0
899 			putLabeledWord("\t\t dsize = ", jNode->dsize);
900 			putstr("\t\t target = ");
901 			putnstr(src, jNode->dsize);
902 			putstr("\r\n");
903 #endif
904 			strncpy(tmp, src, jNode->dsize);
905 			tmp[jNode->dsize] = '\0';
906 			put_fl_mem(jNode);
907 			break;
908 		}
909 		b2 = b2->next;
910 		put_fl_mem(jNode);
911 	}
912 	/* ok so the name of the new file to find is in tmp */
913 	/* if it starts with a slash it is root based else shared dirs */
914 	if (tmp[0] == '/')
915 		pino = 1;
916 	else
917 		pino = jDirFoundPino;
918 
919 	return jffs2_1pass_search_inode(pL, tmp, pino);
920 }
921 
922 static u32
923 jffs2_1pass_search_list_inodes(struct b_lists * pL, const char *fname, u32 pino)
924 {
925 	int i;
926 	char tmp[256];
927 	char working_tmp[256];
928 	char *c;
929 
930 	/* discard any leading slash */
931 	i = 0;
932 	while (fname[i] == '/')
933 		i++;
934 	strcpy(tmp, &fname[i]);
935 	working_tmp[0] = '\0';
936 	while ((c = (char *) strchr(tmp, '/')))	/* we are still dired searching */
937 	{
938 		strncpy(working_tmp, tmp, c - tmp);
939 		working_tmp[c - tmp] = '\0';
940 		for (i = 0; i < strlen(c) - 1; i++)
941 			tmp[i] = c[i + 1];
942 		tmp[i] = '\0';
943 		/* only a failure if we arent looking at top level */
944 		if (!(pino = jffs2_1pass_find_inode(pL, working_tmp, pino)) &&
945 		    (working_tmp[0])) {
946 			putstr("find_inode failed for name=");
947 			putstr(working_tmp);
948 			putstr("\r\n");
949 			return 0;
950 		}
951 	}
952 
953 	if (tmp[0] && !(pino = jffs2_1pass_find_inode(pL, tmp, pino))) {
954 		putstr("find_inode failed for name=");
955 		putstr(tmp);
956 		putstr("\r\n");
957 		return 0;
958 	}
959 	/* this is for the bare filename, directories have already been mapped */
960 	if (!(pino = jffs2_1pass_list_inodes(pL, pino))) {
961 		putstr("find_inode failed for name=");
962 		putstr(tmp);
963 		putstr("\r\n");
964 		return 0;
965 	}
966 	return pino;
967 
968 }
969 
970 unsigned char
971 jffs2_1pass_rescan_needed(struct part_info *part)
972 {
973 	struct b_node *b;
974 	struct jffs2_unknown_node onode;
975 	struct jffs2_unknown_node *node;
976 	struct b_lists *pL = (struct b_lists *)part->jffs2_priv;
977 
978 	if (part->jffs2_priv == 0){
979 		DEBUGF ("rescan: First time in use\n");
980 		return 1;
981 	}
982 	/* if we have no list, we need to rescan */
983 	if (pL->frag.listCount == 0) {
984 		DEBUGF ("rescan: fraglist zero\n");
985 		return 1;
986 	}
987 
988 	/* or if we are scanning a new partition */
989 	if (pL->partOffset != part->offset) {
990 		DEBUGF ("rescan: different partition\n");
991 		return 1;
992 	}
993 
994 #if defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND)
995 	if (nanddev != (int)part->usr_priv - 1) {
996 		DEBUGF ("rescan: nand device changed\n");
997 		return -1;
998 	}
999 #endif /* defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND) */
1000 
1001 	/* but suppose someone reflashed a partition at the same offset... */
1002 	b = pL->dir.listHead;
1003 	while (b) {
1004 		node = (struct jffs2_unknown_node *) get_fl_mem(b->offset,
1005 			sizeof(onode), &onode);
1006 		if (node->nodetype != JFFS2_NODETYPE_DIRENT) {
1007 			DEBUGF ("rescan: fs changed beneath me? (%lx)\n",
1008 					(unsigned long) b->offset);
1009 			return 1;
1010 		}
1011 		b = b->next;
1012 	}
1013 	return 0;
1014 }
1015 
1016 #ifdef DEBUG_FRAGMENTS
1017 static void
1018 dump_fragments(struct b_lists *pL)
1019 {
1020 	struct b_node *b;
1021 	struct jffs2_raw_inode ojNode;
1022 	struct jffs2_raw_inode *jNode;
1023 
1024 	putstr("\r\n\r\n******The fragment Entries******\r\n");
1025 	b = pL->frag.listHead;
1026 	while (b) {
1027 		jNode = (struct jffs2_raw_inode *) get_fl_mem(b->offset,
1028 			sizeof(ojNode), &ojNode);
1029 		putLabeledWord("\r\n\tbuild_list: FLASH_OFFSET = ", b->offset);
1030 		putLabeledWord("\tbuild_list: totlen = ", jNode->totlen);
1031 		putLabeledWord("\tbuild_list: inode = ", jNode->ino);
1032 		putLabeledWord("\tbuild_list: version = ", jNode->version);
1033 		putLabeledWord("\tbuild_list: isize = ", jNode->isize);
1034 		putLabeledWord("\tbuild_list: atime = ", jNode->atime);
1035 		putLabeledWord("\tbuild_list: offset = ", jNode->offset);
1036 		putLabeledWord("\tbuild_list: csize = ", jNode->csize);
1037 		putLabeledWord("\tbuild_list: dsize = ", jNode->dsize);
1038 		putLabeledWord("\tbuild_list: compr = ", jNode->compr);
1039 		putLabeledWord("\tbuild_list: usercompr = ", jNode->usercompr);
1040 		putLabeledWord("\tbuild_list: flags = ", jNode->flags);
1041 		putLabeledWord("\tbuild_list: offset = ", b->offset);	/* FIXME: ? [RS] */
1042 		b = b->next;
1043 	}
1044 }
1045 #endif
1046 
1047 #ifdef DEBUG_DIRENTS
1048 static void
1049 dump_dirents(struct b_lists *pL)
1050 {
1051 	struct b_node *b;
1052 	struct jffs2_raw_dirent *jDir;
1053 
1054 	putstr("\r\n\r\n******The directory Entries******\r\n");
1055 	b = pL->dir.listHead;
1056 	while (b) {
1057 		jDir = (struct jffs2_raw_dirent *) get_node_mem(b->offset);
1058 		putstr("\r\n");
1059 		putnstr(jDir->name, jDir->nsize);
1060 		putLabeledWord("\r\n\tbuild_list: magic = ", jDir->magic);
1061 		putLabeledWord("\tbuild_list: nodetype = ", jDir->nodetype);
1062 		putLabeledWord("\tbuild_list: hdr_crc = ", jDir->hdr_crc);
1063 		putLabeledWord("\tbuild_list: pino = ", jDir->pino);
1064 		putLabeledWord("\tbuild_list: version = ", jDir->version);
1065 		putLabeledWord("\tbuild_list: ino = ", jDir->ino);
1066 		putLabeledWord("\tbuild_list: mctime = ", jDir->mctime);
1067 		putLabeledWord("\tbuild_list: nsize = ", jDir->nsize);
1068 		putLabeledWord("\tbuild_list: type = ", jDir->type);
1069 		putLabeledWord("\tbuild_list: node_crc = ", jDir->node_crc);
1070 		putLabeledWord("\tbuild_list: name_crc = ", jDir->name_crc);
1071 		putLabeledWord("\tbuild_list: offset = ", b->offset); 	/* FIXME: ? [RS] */
1072 		b = b->next;
1073 		put_fl_mem(jDir);
1074 	}
1075 }
1076 #endif
1077 
1078 static u32
1079 jffs2_1pass_build_lists(struct part_info * part)
1080 {
1081 	struct b_lists *pL;
1082 	struct jffs2_unknown_node *node;
1083 	u32 offset, oldoffset = 0;
1084 	u32 max = part->size - sizeof(struct jffs2_raw_inode);
1085 	u32 counter = 0;
1086 	u32 counter4 = 0;
1087 	u32 counterF = 0;
1088 	u32 counterN = 0;
1089 
1090 #if defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND)
1091 	nanddev = (int)part->usr_priv - 1;
1092 #endif /* defined(CONFIG_JFFS2_NAND) && (CONFIG_COMMANDS & CFG_CMD_NAND) */
1093 
1094 	/* turn off the lcd.  Refreshing the lcd adds 50% overhead to the */
1095 	/* jffs2 list building enterprise nope.  in newer versions the overhead is */
1096 	/* only about 5 %.  not enough to inconvenience people for. */
1097 	/* lcd_off(); */
1098 
1099 	/* if we are building a list we need to refresh the cache. */
1100 	jffs_init_1pass_list(part);
1101 	pL = (struct b_lists *)part->jffs2_priv;
1102 	pL->partOffset = part->offset;
1103 	offset = 0;
1104 	puts ("Scanning JFFS2 FS:   ");
1105 
1106 	/* start at the beginning of the partition */
1107 	while (offset < max) {
1108 	    	if ((oldoffset >> SPIN_BLKSIZE) != (offset >> SPIN_BLKSIZE)) {
1109 			printf("\b\b%c ", spinner[counter++ % sizeof(spinner)]);
1110 			oldoffset = offset;
1111 		}
1112 
1113 		node = (struct jffs2_unknown_node *) get_node_mem((u32)part->offset + offset);
1114 		if (node->magic == JFFS2_MAGIC_BITMASK && hdr_crc(node)) {
1115 			/* if its a fragment add it */
1116 			if (node->nodetype == JFFS2_NODETYPE_INODE &&
1117 				    inode_crc((struct jffs2_raw_inode *) node)) {
1118 				if (insert_node(&pL->frag, (u32) part->offset +
1119 						offset) == NULL) {
1120 					put_fl_mem(node);
1121 					return 0;
1122 				}
1123 			} else if (node->nodetype == JFFS2_NODETYPE_DIRENT &&
1124 				   dirent_crc((struct jffs2_raw_dirent *) node)  &&
1125 				   dirent_name_crc((struct jffs2_raw_dirent *) node)) {
1126 				if (! (counterN%100))
1127 					puts ("\b\b.  ");
1128 				if (insert_node(&pL->dir, (u32) part->offset +
1129 						offset) == NULL) {
1130 					put_fl_mem(node);
1131 					return 0;
1132 				}
1133 				counterN++;
1134 			} else if (node->nodetype == JFFS2_NODETYPE_CLEANMARKER) {
1135 				if (node->totlen != sizeof(struct jffs2_unknown_node))
1136 					printf("OOPS Cleanmarker has bad size "
1137 						"%d != %d\n", node->totlen,
1138 						sizeof(struct jffs2_unknown_node));
1139 			} else if (node->nodetype == JFFS2_NODETYPE_PADDING) {
1140 				if (node->totlen < sizeof(struct jffs2_unknown_node))
1141 					printf("OOPS Padding has bad size "
1142 						"%d < %d\n", node->totlen,
1143 						sizeof(struct jffs2_unknown_node));
1144 			} else {
1145 				printf("Unknown node type: %x len %d "
1146 					"offset 0x%x\n", node->nodetype,
1147 					node->totlen, offset);
1148 			}
1149 			offset += ((node->totlen + 3) & ~3);
1150 			counterF++;
1151 		} else if (node->magic == JFFS2_EMPTY_BITMASK &&
1152 			   node->nodetype == JFFS2_EMPTY_BITMASK) {
1153 			offset = jffs2_scan_empty(offset, part);
1154 		} else {	/* if we know nothing, we just step and look. */
1155 			offset += 4;
1156 			counter4++;
1157 		}
1158 /*             printf("unknown node magic %4.4x %4.4x @ %lx\n", node->magic, node->nodetype, (unsigned long)node); */
1159 		put_fl_mem(node);
1160 	}
1161 
1162 	putstr("\b\b done.\r\n");		/* close off the dots */
1163 	/* turn the lcd back on. */
1164 	/* splash(); */
1165 
1166 #if 0
1167 	putLabeledWord("dir entries = ", pL->dir.listCount);
1168 	putLabeledWord("frag entries = ", pL->frag.listCount);
1169 	putLabeledWord("+4 increments = ", counter4);
1170 	putLabeledWord("+file_offset increments = ", counterF);
1171 
1172 #endif
1173 
1174 #ifdef DEBUG_DIRENTS
1175 	dump_dirents(pL);
1176 #endif
1177 
1178 #ifdef DEBUG_FRAGMENTS
1179 	dump_fragments(pL);
1180 #endif
1181 
1182 	/* give visual feedback that we are done scanning the flash */
1183 	led_blink(0x0, 0x0, 0x1, 0x1);	/* off, forever, on 100ms, off 100ms */
1184 	return 1;
1185 }
1186 
1187 
1188 static u32
1189 jffs2_1pass_fill_info(struct b_lists * pL, struct b_jffs2_info * piL)
1190 {
1191 	struct b_node *b;
1192 	struct jffs2_raw_inode ojNode;
1193 	struct jffs2_raw_inode *jNode;
1194 	int i;
1195 
1196 	for (i = 0; i < JFFS2_NUM_COMPR; i++) {
1197 		piL->compr_info[i].num_frags = 0;
1198 		piL->compr_info[i].compr_sum = 0;
1199 		piL->compr_info[i].decompr_sum = 0;
1200 	}
1201 
1202 	b = pL->frag.listHead;
1203 	while (b) {
1204 		jNode = (struct jffs2_raw_inode *) get_fl_mem(b->offset,
1205 			sizeof(ojNode), &ojNode);
1206 		if (jNode->compr < JFFS2_NUM_COMPR) {
1207 			piL->compr_info[jNode->compr].num_frags++;
1208 			piL->compr_info[jNode->compr].compr_sum += jNode->csize;
1209 			piL->compr_info[jNode->compr].decompr_sum += jNode->dsize;
1210 		}
1211 		b = b->next;
1212 	}
1213 	return 0;
1214 }
1215 
1216 
1217 static struct b_lists *
1218 jffs2_get_list(struct part_info * part, const char *who)
1219 {
1220 	if (jffs2_1pass_rescan_needed(part)) {
1221 		if (!jffs2_1pass_build_lists(part)) {
1222 			printf("%s: Failed to scan JFFSv2 file structure\n", who);
1223 			return NULL;
1224 		}
1225 	}
1226 	return (struct b_lists *)part->jffs2_priv;
1227 }
1228 
1229 
1230 /* Print directory / file contents */
1231 u32
1232 jffs2_1pass_ls(struct part_info * part, const char *fname)
1233 {
1234 	struct b_lists *pl;
1235 	long ret = 0;
1236 	u32 inode;
1237 
1238 	if (! (pl = jffs2_get_list(part, "ls")))
1239 		return 0;
1240 
1241 	if (! (inode = jffs2_1pass_search_list_inodes(pl, fname, 1))) {
1242 		putstr("ls: Failed to scan jffs2 file structure\r\n");
1243 		return 0;
1244 	}
1245 
1246 
1247 #if 0
1248 	putLabeledWord("found file at inode = ", inode);
1249 	putLabeledWord("read_inode returns = ", ret);
1250 #endif
1251 
1252 	return ret;
1253 }
1254 
1255 
1256 /* Load a file from flash into memory. fname can be a full path */
1257 u32
1258 jffs2_1pass_load(char *dest, struct part_info * part, const char *fname)
1259 {
1260 
1261 	struct b_lists *pl;
1262 	long ret = 0;
1263 	u32 inode;
1264 
1265 	if (! (pl  = jffs2_get_list(part, "load")))
1266 		return 0;
1267 
1268 	if (! (inode = jffs2_1pass_search_inode(pl, fname, 1))) {
1269 		putstr("load: Failed to find inode\r\n");
1270 		return 0;
1271 	}
1272 
1273 	/* Resolve symlinks */
1274 	if (! (inode = jffs2_1pass_resolve_inode(pl, inode))) {
1275 		putstr("load: Failed to resolve inode structure\r\n");
1276 		return 0;
1277 	}
1278 
1279 	if ((ret = jffs2_1pass_read_inode(pl, inode, dest)) < 0) {
1280 		putstr("load: Failed to read inode\r\n");
1281 		return 0;
1282 	}
1283 
1284 	DEBUGF ("load: loaded '%s' to 0x%lx (%ld bytes)\n", fname,
1285 				(unsigned long) dest, ret);
1286 	return ret;
1287 }
1288 
1289 /* Return information about the fs on this partition */
1290 u32
1291 jffs2_1pass_info(struct part_info * part)
1292 {
1293 	struct b_jffs2_info info;
1294 	struct b_lists *pl;
1295 	int i;
1296 
1297 	if (! (pl  = jffs2_get_list(part, "info")))
1298 		return 0;
1299 
1300 	jffs2_1pass_fill_info(pl, &info);
1301 	for (i = 0; i < JFFS2_NUM_COMPR; i++) {
1302 		printf ("Compression: %s\n"
1303 			"\tfrag count: %d\n"
1304 			"\tcompressed sum: %d\n"
1305 			"\tuncompressed sum: %d\n",
1306 			compr_names[i],
1307 			info.compr_info[i].num_frags,
1308 			info.compr_info[i].compr_sum,
1309 			info.compr_info[i].decompr_sum);
1310 	}
1311 	return 1;
1312 }
1313 
1314 #endif /* CFG_CMD_JFFS2 */
1315