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