1 /* $NetBSD: ext2fs.c,v 1.12 2012/01/16 18:44:13 christos Exp $ */ 2 3 /* 4 * Copyright (c) 1997 Manuel Bouyer. 5 * 6 * Redistribution and use in source and binary forms, with or without 7 * modification, are permitted provided that the following conditions 8 * are met: 9 * 1. Redistributions of source code must retain the above copyright 10 * notice, this list of conditions and the following disclaimer. 11 * 2. Redistributions in binary form must reproduce the above copyright 12 * notice, this list of conditions and the following disclaimer in the 13 * documentation and/or other materials provided with the distribution. 14 * 15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 18 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 19 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 20 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 21 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 22 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 23 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 24 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 25 */ 26 27 /*- 28 * Copyright (c) 1993 29 * The Regents of the University of California. All rights reserved. 30 * 31 * This code is derived from software contributed to Berkeley by 32 * The Mach Operating System project at Carnegie-Mellon University. 33 * 34 * Redistribution and use in source and binary forms, with or without 35 * modification, are permitted provided that the following conditions 36 * are met: 37 * 1. Redistributions of source code must retain the above copyright 38 * notice, this list of conditions and the following disclaimer. 39 * 2. Redistributions in binary form must reproduce the above copyright 40 * notice, this list of conditions and the following disclaimer in the 41 * documentation and/or other materials provided with the distribution. 42 * 3. Neither the name of the University nor the names of its contributors 43 * may be used to endorse or promote products derived from this software 44 * without specific prior written permission. 45 * 46 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 47 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 48 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 49 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 50 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 51 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 52 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 53 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 54 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 55 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 56 * SUCH DAMAGE. 57 * 58 * 59 * Copyright (c) 1990, 1991 Carnegie Mellon University 60 * All Rights Reserved. 61 * 62 * Author: David Golub 63 * 64 * Permission to use, copy, modify and distribute this software and its 65 * documentation is hereby granted, provided that both the copyright 66 * notice and this permission notice appear in all copies of the 67 * software, derivative works or modified versions, and any portions 68 * thereof, and that both notices appear in supporting documentation. 69 * 70 * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS" 71 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR 72 * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE. 73 * 74 * Carnegie Mellon requests users of this software to return to 75 * 76 * Software Distribution Coordinator or Software.Distribution@CS.CMU.EDU 77 * School of Computer Science 78 * Carnegie Mellon University 79 * Pittsburgh PA 15213-3890 80 * 81 * any improvements or extensions that they make and grant Carnegie the 82 * rights to redistribute these changes. 83 */ 84 85 /* 86 * Stand-alone file reading package for Ext2 file system. 87 */ 88 89 /* #define EXT2FS_DEBUG */ 90 91 #include <sys/param.h> 92 #include <sys/time.h> 93 #include <ufs/ext2fs/ext2fs_dinode.h> 94 #include <ufs/ext2fs/ext2fs_dir.h> 95 #include <ufs/ext2fs/ext2fs.h> 96 #ifdef _STANDALONE 97 #include <lib/libkern/libkern.h> 98 #else 99 #include <string.h> 100 #endif 101 102 #include "stand.h" 103 #include "ext2fs.h" 104 105 #if defined(LIBSA_FS_SINGLECOMPONENT) && !defined(LIBSA_NO_FS_SYMLINK) 106 #define LIBSA_NO_FS_SYMLINK 107 #endif 108 109 #if defined(LIBSA_NO_TWIDDLE) 110 #define twiddle() 111 #endif 112 113 #ifndef indp_t 114 #define indp_t int32_t 115 #endif 116 typedef uint32_t ino32_t; 117 #ifndef FSBTODB 118 #define FSBTODB(fs, indp) fsbtodb(fs, indp) 119 #endif 120 121 /* 122 * To avoid having a lot of filesystem-block sized buffers lurking (which 123 * could be 32k) we only keep a few entries of the indirect block map. 124 * With 8k blocks, 2^8 blocks is ~500k so we reread the indirect block 125 * ~13 times pulling in a 6M kernel. 126 * The cache size must be smaller than the smallest filesystem block, 127 * so LN2_IND_CACHE_SZ <= 9 (UFS2 and 4k blocks). 128 */ 129 #define LN2_IND_CACHE_SZ 6 130 #define IND_CACHE_SZ (1 << LN2_IND_CACHE_SZ) 131 #define IND_CACHE_MASK (IND_CACHE_SZ - 1) 132 133 /* 134 * In-core open file. 135 */ 136 struct file { 137 off_t f_seekp; /* seek pointer */ 138 struct m_ext2fs *f_fs; /* pointer to super-block */ 139 struct ext2fs_dinode f_di; /* copy of on-disk inode */ 140 uint f_nishift; /* for blocks in indirect block */ 141 indp_t f_ind_cache_block; 142 indp_t f_ind_cache[IND_CACHE_SZ]; 143 144 char *f_buf; /* buffer for data block */ 145 size_t f_buf_size; /* size of data block */ 146 daddr_t f_buf_blkno; /* block number of data block */ 147 }; 148 149 #if defined(LIBSA_ENABLE_LS_OP) 150 151 #define NELEM(x) (sizeof (x) / sizeof(*x)) 152 153 typedef struct entry_t entry_t; 154 struct entry_t { 155 entry_t *e_next; 156 ino32_t e_ino; 157 uint8_t e_type; 158 char e_name[1]; 159 }; 160 161 static const char *const typestr[] = { 162 "unknown", 163 "REG", 164 "DIR", 165 "CHR", 166 "BLK", 167 "FIFO", 168 "SOCK", 169 "LNK" 170 }; 171 172 #endif /* LIBSA_ENABLE_LS_OP */ 173 174 static int read_inode(ino32_t, struct open_file *); 175 static int block_map(struct open_file *, indp_t, indp_t *); 176 static int buf_read_file(struct open_file *, char **, size_t *); 177 static int search_directory(const char *, int, struct open_file *, ino32_t *); 178 static int read_sblock(struct open_file *, struct m_ext2fs *); 179 static int read_gdblock(struct open_file *, struct m_ext2fs *); 180 #ifdef EXT2FS_DEBUG 181 static void dump_sblock(struct m_ext2fs *); 182 #endif 183 184 /* 185 * Read a new inode into a file structure. 186 */ 187 static int 188 read_inode(ino32_t inumber, struct open_file *f) 189 { 190 struct file *fp = (struct file *)f->f_fsdata; 191 struct m_ext2fs *fs = fp->f_fs; 192 char *buf; 193 size_t rsize; 194 int rc; 195 daddr_t inode_sector; 196 struct ext2fs_dinode *dip; 197 198 inode_sector = FSBTODB(fs, ino_to_fsba(fs, inumber)); 199 200 /* 201 * Read inode and save it. 202 */ 203 buf = fp->f_buf; 204 twiddle(); 205 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ, 206 inode_sector, fs->e2fs_bsize, buf, &rsize); 207 if (rc) 208 return rc; 209 if (rsize != fs->e2fs_bsize) 210 return EIO; 211 212 dip = (struct ext2fs_dinode *)(buf + 213 EXT2_DINODE_SIZE(fs) * ino_to_fsbo(fs, inumber)); 214 e2fs_iload(dip, &fp->f_di); 215 216 /* 217 * Clear out the old buffers 218 */ 219 fp->f_ind_cache_block = ~0; 220 fp->f_buf_blkno = -1; 221 return rc; 222 } 223 224 /* 225 * Given an offset in a file, find the disk block number that 226 * contains that block. 227 */ 228 static int 229 block_map(struct open_file *f, indp_t file_block, indp_t *disk_block_p) 230 { 231 struct file *fp = (struct file *)f->f_fsdata; 232 struct m_ext2fs *fs = fp->f_fs; 233 uint level; 234 indp_t ind_cache; 235 indp_t ind_block_num; 236 size_t rsize; 237 int rc; 238 indp_t *buf = (void *)fp->f_buf; 239 240 /* 241 * Index structure of an inode: 242 * 243 * e2di_blocks[0..NDADDR-1] 244 * hold block numbers for blocks 245 * 0..NDADDR-1 246 * 247 * e2di_blocks[NDADDR+0] 248 * block NDADDR+0 is the single indirect block 249 * holds block numbers for blocks 250 * NDADDR .. NDADDR + NINDIR(fs)-1 251 * 252 * e2di_blocks[NDADDR+1] 253 * block NDADDR+1 is the double indirect block 254 * holds block numbers for INDEX blocks for blocks 255 * NDADDR + NINDIR(fs) .. 256 * NDADDR + NINDIR(fs) + NINDIR(fs)**2 - 1 257 * 258 * e2di_blocks[NDADDR+2] 259 * block NDADDR+2 is the triple indirect block 260 * holds block numbers for double-indirect 261 * blocks for blocks 262 * NDADDR + NINDIR(fs) + NINDIR(fs)**2 .. 263 * NDADDR + NINDIR(fs) + NINDIR(fs)**2 264 * + NINDIR(fs)**3 - 1 265 */ 266 267 if (file_block < NDADDR) { 268 /* Direct block. */ 269 *disk_block_p = fs2h32(fp->f_di.e2di_blocks[file_block]); 270 return 0; 271 } 272 273 file_block -= NDADDR; 274 275 ind_cache = file_block >> LN2_IND_CACHE_SZ; 276 if (ind_cache == fp->f_ind_cache_block) { 277 *disk_block_p = 278 fs2h32(fp->f_ind_cache[file_block & IND_CACHE_MASK]); 279 return 0; 280 } 281 282 for (level = 0;;) { 283 level += fp->f_nishift; 284 if (file_block < (indp_t)1 << level) 285 break; 286 if (level > NIADDR * fp->f_nishift) 287 /* Block number too high */ 288 return EFBIG; 289 file_block -= (indp_t)1 << level; 290 } 291 292 ind_block_num = 293 fs2h32(fp->f_di.e2di_blocks[NDADDR + (level / fp->f_nishift - 1)]); 294 295 for (;;) { 296 level -= fp->f_nishift; 297 if (ind_block_num == 0) { 298 *disk_block_p = 0; /* missing */ 299 return 0; 300 } 301 302 twiddle(); 303 /* 304 * If we were feeling brave, we could work out the number 305 * of the disk sector and read a single disk sector instead 306 * of a filesystem block. 307 * However we don't do this very often anyway... 308 */ 309 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ, 310 FSBTODB(fp->f_fs, ind_block_num), fs->e2fs_bsize, 311 buf, &rsize); 312 if (rc) 313 return rc; 314 if (rsize != fs->e2fs_bsize) 315 return EIO; 316 ind_block_num = fs2h32(buf[file_block >> level]); 317 if (level == 0) 318 break; 319 file_block &= (1 << level) - 1; 320 } 321 322 /* Save the part of the block that contains this sector */ 323 memcpy(fp->f_ind_cache, &buf[file_block & ~IND_CACHE_MASK], 324 IND_CACHE_SZ * sizeof fp->f_ind_cache[0]); 325 fp->f_ind_cache_block = ind_cache; 326 327 *disk_block_p = ind_block_num; 328 329 return 0; 330 } 331 332 /* 333 * Read a portion of a file into an internal buffer. 334 * Return the location in the buffer and the amount in the buffer. 335 */ 336 static int 337 buf_read_file(struct open_file *f, char **buf_p, size_t *size_p) 338 { 339 struct file *fp = (struct file *)f->f_fsdata; 340 struct m_ext2fs *fs = fp->f_fs; 341 long off; 342 indp_t file_block; 343 indp_t disk_block; 344 size_t block_size; 345 int rc; 346 347 off = blkoff(fs, fp->f_seekp); 348 file_block = lblkno(fs, fp->f_seekp); 349 block_size = fs->e2fs_bsize; /* no fragment */ 350 351 if (file_block != fp->f_buf_blkno) { 352 rc = block_map(f, file_block, &disk_block); 353 if (rc) 354 return rc; 355 356 if (disk_block == 0) { 357 memset(fp->f_buf, 0, block_size); 358 fp->f_buf_size = block_size; 359 } else { 360 twiddle(); 361 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ, 362 FSBTODB(fs, disk_block), 363 block_size, fp->f_buf, &fp->f_buf_size); 364 if (rc) 365 return rc; 366 } 367 368 fp->f_buf_blkno = file_block; 369 } 370 371 /* 372 * Return address of byte in buffer corresponding to 373 * offset, and size of remainder of buffer after that 374 * byte. 375 */ 376 *buf_p = fp->f_buf + off; 377 *size_p = block_size - off; 378 379 /* 380 * But truncate buffer at end of file. 381 */ 382 /* XXX should handle LARGEFILE */ 383 if (*size_p > fp->f_di.e2di_size - fp->f_seekp) 384 *size_p = fp->f_di.e2di_size - fp->f_seekp; 385 386 return 0; 387 } 388 389 /* 390 * Search a directory for a name and return its 391 * inode number. 392 */ 393 static int 394 search_directory(const char *name, int length, struct open_file *f, 395 ino32_t *inumber_p) 396 { 397 struct file *fp = (struct file *)f->f_fsdata; 398 struct ext2fs_direct *dp; 399 struct ext2fs_direct *edp; 400 char *buf; 401 size_t buf_size; 402 int namlen; 403 int rc; 404 405 fp->f_seekp = 0; 406 /* XXX should handle LARGEFILE */ 407 while (fp->f_seekp < (off_t)fp->f_di.e2di_size) { 408 rc = buf_read_file(f, &buf, &buf_size); 409 if (rc) 410 return rc; 411 412 dp = (struct ext2fs_direct *)buf; 413 edp = (struct ext2fs_direct *)(buf + buf_size); 414 for (; dp < edp; 415 dp = (void *)((char *)dp + fs2h16(dp->e2d_reclen))) { 416 if (fs2h16(dp->e2d_reclen) <= 0) 417 break; 418 if (fs2h32(dp->e2d_ino) == (ino32_t)0) 419 continue; 420 namlen = dp->e2d_namlen; 421 if (namlen == length && 422 !memcmp(name, dp->e2d_name, length)) { 423 /* found entry */ 424 *inumber_p = fs2h32(dp->e2d_ino); 425 return 0; 426 } 427 } 428 fp->f_seekp += buf_size; 429 } 430 return ENOENT; 431 } 432 433 int 434 read_sblock(struct open_file *f, struct m_ext2fs *fs) 435 { 436 static uint8_t sbbuf[SBSIZE]; 437 struct ext2fs ext2fs; 438 size_t buf_size; 439 int rc; 440 441 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ, 442 SBOFF / DEV_BSIZE, SBSIZE, sbbuf, &buf_size); 443 if (rc) 444 return rc; 445 446 if (buf_size != SBSIZE) 447 return EIO; 448 449 e2fs_sbload((void *)sbbuf, &ext2fs); 450 if (ext2fs.e2fs_magic != E2FS_MAGIC) 451 return EINVAL; 452 if (ext2fs.e2fs_rev > E2FS_REV1 || 453 (ext2fs.e2fs_rev == E2FS_REV1 && 454 (ext2fs.e2fs_first_ino != EXT2_FIRSTINO || 455 (ext2fs.e2fs_inode_size != 128 && ext2fs.e2fs_inode_size != 256) || 456 ext2fs.e2fs_features_incompat & ~EXT2F_INCOMPAT_SUPP))) { 457 return ENODEV; 458 } 459 460 e2fs_sbload((void *)sbbuf, &fs->e2fs); 461 /* compute in-memory m_ext2fs values */ 462 fs->e2fs_ncg = 463 howmany(fs->e2fs.e2fs_bcount - fs->e2fs.e2fs_first_dblock, 464 fs->e2fs.e2fs_bpg); 465 /* XXX assume hw bsize = 512 */ 466 fs->e2fs_fsbtodb = fs->e2fs.e2fs_log_bsize + 1; 467 fs->e2fs_bsize = MINBSIZE << fs->e2fs.e2fs_log_bsize; 468 fs->e2fs_bshift = LOG_MINBSIZE + fs->e2fs.e2fs_log_bsize; 469 fs->e2fs_qbmask = fs->e2fs_bsize - 1; 470 fs->e2fs_bmask = ~fs->e2fs_qbmask; 471 fs->e2fs_ngdb = 472 howmany(fs->e2fs_ncg, fs->e2fs_bsize / sizeof(struct ext2_gd)); 473 fs->e2fs_ipb = fs->e2fs_bsize / ext2fs.e2fs_inode_size; 474 fs->e2fs_itpg = fs->e2fs.e2fs_ipg / fs->e2fs_ipb; 475 476 return 0; 477 } 478 479 int 480 read_gdblock(struct open_file *f, struct m_ext2fs *fs) 481 { 482 struct file *fp = (struct file *)f->f_fsdata; 483 size_t rsize; 484 uint gdpb; 485 int i, rc; 486 487 gdpb = fs->e2fs_bsize / sizeof(struct ext2_gd); 488 489 for (i = 0; i < fs->e2fs_ngdb; i++) { 490 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, F_READ, 491 FSBTODB(fs, fs->e2fs.e2fs_first_dblock + 492 1 /* superblock */ + i), 493 fs->e2fs_bsize, fp->f_buf, &rsize); 494 if (rc) 495 return rc; 496 if (rsize != fs->e2fs_bsize) 497 return EIO; 498 499 e2fs_cgload((struct ext2_gd *)fp->f_buf, 500 &fs->e2fs_gd[i * gdpb], 501 (i == (fs->e2fs_ngdb - 1)) ? 502 (fs->e2fs_ncg - gdpb * i) * sizeof(struct ext2_gd): 503 fs->e2fs_bsize); 504 } 505 506 return 0; 507 } 508 509 510 /* 511 * Open a file. 512 */ 513 __compactcall int 514 ext2fs_open(const char *path, struct open_file *f) 515 { 516 #ifndef LIBSA_FS_SINGLECOMPONENT 517 const char *cp, *ncp; 518 int c; 519 #endif 520 ino32_t inumber; 521 struct file *fp; 522 struct m_ext2fs *fs; 523 int rc; 524 #ifndef LIBSA_NO_FS_SYMLINK 525 ino32_t parent_inumber; 526 int nlinks = 0; 527 char namebuf[MAXPATHLEN+1]; 528 char *buf; 529 #endif 530 531 /* allocate file system specific data structure */ 532 fp = alloc(sizeof(struct file)); 533 memset(fp, 0, sizeof(struct file)); 534 f->f_fsdata = (void *)fp; 535 536 /* allocate space and read super block */ 537 fs = alloc(sizeof(*fs)); 538 memset(fs, 0, sizeof(*fs)); 539 fp->f_fs = fs; 540 twiddle(); 541 542 rc = read_sblock(f, fs); 543 if (rc) 544 goto out; 545 546 #ifdef EXT2FS_DEBUG 547 dump_sblock(fs); 548 #endif 549 550 /* alloc a block sized buffer used for all fs transfers */ 551 fp->f_buf = alloc(fs->e2fs_bsize); 552 553 /* read group descriptor blocks */ 554 fs->e2fs_gd = alloc(sizeof(struct ext2_gd) * fs->e2fs_ncg); 555 rc = read_gdblock(f, fs); 556 if (rc) 557 goto out; 558 559 /* 560 * Calculate indirect block levels. 561 */ 562 { 563 indp_t mult; 564 int ln2; 565 566 /* 567 * We note that the number of indirect blocks is always 568 * a power of 2. This lets us use shifts and masks instead 569 * of divide and remainder and avoinds pulling in the 570 * 64bit division routine into the boot code. 571 */ 572 mult = NINDIR(fs); 573 #ifdef DEBUG 574 if (!powerof2(mult)) { 575 /* Hummm was't a power of 2 */ 576 rc = EINVAL; 577 goto out; 578 } 579 #endif 580 for (ln2 = 0; mult != 1; ln2++) 581 mult >>= 1; 582 583 fp->f_nishift = ln2; 584 } 585 586 inumber = EXT2_ROOTINO; 587 if ((rc = read_inode(inumber, f)) != 0) 588 goto out; 589 590 #ifndef LIBSA_FS_SINGLECOMPONENT 591 cp = path; 592 while (*cp) { 593 594 /* 595 * Remove extra separators 596 */ 597 while (*cp == '/') 598 cp++; 599 if (*cp == '\0') 600 break; 601 602 /* 603 * Check that current node is a directory. 604 */ 605 if ((fp->f_di.e2di_mode & EXT2_IFMT) != EXT2_IFDIR) { 606 rc = ENOTDIR; 607 goto out; 608 } 609 610 /* 611 * Get next component of path name. 612 */ 613 ncp = cp; 614 while ((c = *cp) != '\0' && c != '/') 615 cp++; 616 617 /* 618 * Look up component in current directory. 619 * Save directory inumber in case we find a 620 * symbolic link. 621 */ 622 #ifndef LIBSA_NO_FS_SYMLINK 623 parent_inumber = inumber; 624 #endif 625 rc = search_directory(ncp, cp - ncp, f, &inumber); 626 if (rc) 627 goto out; 628 629 /* 630 * Open next component. 631 */ 632 if ((rc = read_inode(inumber, f)) != 0) 633 goto out; 634 635 #ifndef LIBSA_NO_FS_SYMLINK 636 /* 637 * Check for symbolic link. 638 */ 639 if ((fp->f_di.e2di_mode & EXT2_IFMT) == EXT2_IFLNK) { 640 /* XXX should handle LARGEFILE */ 641 int link_len = fp->f_di.e2di_size; 642 int len; 643 644 len = strlen(cp); 645 646 if (link_len + len > MAXPATHLEN || 647 ++nlinks > MAXSYMLINKS) { 648 rc = ENOENT; 649 goto out; 650 } 651 652 memmove(&namebuf[link_len], cp, len + 1); 653 654 if (link_len < EXT2_MAXSYMLINKLEN) { 655 memcpy(namebuf, fp->f_di.e2di_blocks, link_len); 656 } else { 657 /* 658 * Read file for symbolic link 659 */ 660 size_t buf_size; 661 indp_t disk_block; 662 663 buf = fp->f_buf; 664 rc = block_map(f, (indp_t)0, &disk_block); 665 if (rc) 666 goto out; 667 668 twiddle(); 669 rc = DEV_STRATEGY(f->f_dev)(f->f_devdata, 670 F_READ, FSBTODB(fs, disk_block), 671 fs->e2fs_bsize, buf, &buf_size); 672 if (rc) 673 goto out; 674 675 memcpy(namebuf, buf, link_len); 676 } 677 678 /* 679 * If relative pathname, restart at parent directory. 680 * If absolute pathname, restart at root. 681 */ 682 cp = namebuf; 683 if (*cp != '/') 684 inumber = parent_inumber; 685 else 686 inumber = (ino32_t)EXT2_ROOTINO; 687 688 if ((rc = read_inode(inumber, f)) != 0) 689 goto out; 690 } 691 #endif /* !LIBSA_NO_FS_SYMLINK */ 692 } 693 694 /* 695 * Found terminal component. 696 */ 697 rc = 0; 698 699 #else /* !LIBSA_FS_SINGLECOMPONENT */ 700 701 /* look up component in the current (root) directory */ 702 rc = search_directory(path, strlen(path), f, &inumber); 703 if (rc) 704 goto out; 705 706 /* open it */ 707 rc = read_inode(inumber, f); 708 709 #endif /* !LIBSA_FS_SINGLECOMPONENT */ 710 711 fp->f_seekp = 0; /* reset seek pointer */ 712 713 out: 714 if (rc) 715 ext2fs_close(f); 716 else { 717 fsmod = "ext2fs"; 718 fsmod2 = "ffs"; 719 } 720 return rc; 721 } 722 723 __compactcall int 724 ext2fs_close(struct open_file *f) 725 { 726 struct file *fp = (struct file *)f->f_fsdata; 727 728 f->f_fsdata = NULL; 729 if (fp == NULL) 730 return 0; 731 732 if (fp->f_fs->e2fs_gd) 733 dealloc(fp->f_fs->e2fs_gd, 734 sizeof(struct ext2_gd) * fp->f_fs->e2fs_ncg); 735 if (fp->f_buf) 736 dealloc(fp->f_buf, fp->f_fs->e2fs_bsize); 737 dealloc(fp->f_fs, sizeof(*fp->f_fs)); 738 dealloc(fp, sizeof(struct file)); 739 return 0; 740 } 741 742 /* 743 * Copy a portion of a file into kernel memory. 744 * Cross block boundaries when necessary. 745 */ 746 __compactcall int 747 ext2fs_read(struct open_file *f, void *start, size_t size, size_t *resid) 748 { 749 struct file *fp = (struct file *)f->f_fsdata; 750 size_t csize; 751 char *buf; 752 size_t buf_size; 753 int rc = 0; 754 char *addr = start; 755 756 while (size != 0) { 757 /* XXX should handle LARGEFILE */ 758 if (fp->f_seekp >= (off_t)fp->f_di.e2di_size) 759 break; 760 761 rc = buf_read_file(f, &buf, &buf_size); 762 if (rc) 763 break; 764 765 csize = size; 766 if (csize > buf_size) 767 csize = buf_size; 768 769 memcpy(addr, buf, csize); 770 771 fp->f_seekp += csize; 772 addr += csize; 773 size -= csize; 774 } 775 if (resid) 776 *resid = size; 777 return rc; 778 } 779 780 /* 781 * Not implemented. 782 */ 783 #ifndef LIBSA_NO_FS_WRITE 784 __compactcall int 785 ext2fs_write(struct open_file *f, void *start, size_t size, size_t *resid) 786 { 787 788 return EROFS; 789 } 790 #endif /* !LIBSA_NO_FS_WRITE */ 791 792 #ifndef LIBSA_NO_FS_SEEK 793 __compactcall off_t 794 ext2fs_seek(struct open_file *f, off_t offset, int where) 795 { 796 struct file *fp = (struct file *)f->f_fsdata; 797 798 switch (where) { 799 case SEEK_SET: 800 fp->f_seekp = offset; 801 break; 802 case SEEK_CUR: 803 fp->f_seekp += offset; 804 break; 805 case SEEK_END: 806 /* XXX should handle LARGEFILE */ 807 fp->f_seekp = fp->f_di.e2di_size - offset; 808 break; 809 default: 810 return -1; 811 } 812 return fp->f_seekp; 813 } 814 #endif /* !LIBSA_NO_FS_SEEK */ 815 816 __compactcall int 817 ext2fs_stat(struct open_file *f, struct stat *sb) 818 { 819 struct file *fp = (struct file *)f->f_fsdata; 820 821 /* only important stuff */ 822 memset(sb, 0, sizeof *sb); 823 sb->st_mode = fp->f_di.e2di_mode; 824 sb->st_uid = fp->f_di.e2di_uid; 825 sb->st_gid = fp->f_di.e2di_gid; 826 /* XXX should handle LARGEFILE */ 827 sb->st_size = fp->f_di.e2di_size; 828 return 0; 829 } 830 831 #if defined(LIBSA_ENABLE_LS_OP) 832 __compactcall void 833 ext2fs_ls(struct open_file *f, const char *pattern) 834 { 835 struct file *fp = (struct file *)f->f_fsdata; 836 size_t block_size = fp->f_fs->e2fs_bsize; 837 char *buf; 838 size_t buf_size; 839 entry_t *names = 0, *n, **np; 840 841 fp->f_seekp = 0; 842 while (fp->f_seekp < (off_t)fp->f_di.e2di_size) { 843 struct ext2fs_direct *dp, *edp; 844 int rc = buf_read_file(f, &buf, &buf_size); 845 if (rc) 846 goto out; 847 if (buf_size != block_size || buf_size == 0) 848 goto out; 849 850 dp = (struct ext2fs_direct *)buf; 851 edp = (struct ext2fs_direct *)(buf + buf_size); 852 853 for (; dp < edp; 854 dp = (void *)((char *)dp + fs2h16(dp->e2d_reclen))) { 855 const char *t; 856 857 if (fs2h16(dp->e2d_reclen) <= 0) 858 goto out; 859 860 if (fs2h32(dp->e2d_ino) == 0) 861 continue; 862 863 if (dp->e2d_type >= NELEM(typestr) || 864 !(t = typestr[dp->e2d_type])) { 865 /* 866 * This does not handle "old" 867 * filesystems properly. On little 868 * endian machines, we get a bogus 869 * type name if the namlen matches a 870 * valid type identifier. We could 871 * check if we read namlen "0" and 872 * handle this case specially, if 873 * there were a pressing need... 874 */ 875 printf("bad dir entry\n"); 876 goto out; 877 } 878 if (pattern && !fnmatch(dp->e2d_name, pattern)) 879 continue; 880 n = alloc(sizeof *n + strlen(dp->e2d_name)); 881 if (!n) { 882 printf("%d: %s (%s)\n", 883 fs2h32(dp->e2d_ino), dp->e2d_name, t); 884 continue; 885 } 886 n->e_ino = fs2h32(dp->e2d_ino); 887 n->e_type = dp->e2d_type; 888 strcpy(n->e_name, dp->e2d_name); 889 for (np = &names; *np; np = &(*np)->e_next) { 890 if (strcmp(n->e_name, (*np)->e_name) < 0) 891 break; 892 } 893 n->e_next = *np; 894 *np = n; 895 } 896 fp->f_seekp += buf_size; 897 } 898 899 if (names) { 900 entry_t *p_names = names; 901 do { 902 n = p_names; 903 printf("%d: %s (%s)\n", 904 n->e_ino, n->e_name, typestr[n->e_type]); 905 p_names = n->e_next; 906 } while (p_names); 907 } else { 908 printf("not found\n"); 909 } 910 out: 911 if (names) { 912 do { 913 n = names; 914 names = n->e_next; 915 dealloc(n, 0); 916 } while (names); 917 } 918 return; 919 } 920 #endif 921 922 /* 923 * byte swap functions for big endian machines 924 * (ext2fs is always little endian) 925 * 926 * XXX: We should use src/sys/ufs/ext2fs/ext2fs_bswap.c 927 */ 928 929 /* These functions are only needed if native byte order is not big endian */ 930 #if BYTE_ORDER == BIG_ENDIAN 931 void 932 e2fs_sb_bswap(struct ext2fs *old, struct ext2fs *new) 933 { 934 935 /* preserve unused fields */ 936 memcpy(new, old, sizeof(struct ext2fs)); 937 new->e2fs_icount = bswap32(old->e2fs_icount); 938 new->e2fs_bcount = bswap32(old->e2fs_bcount); 939 new->e2fs_rbcount = bswap32(old->e2fs_rbcount); 940 new->e2fs_fbcount = bswap32(old->e2fs_fbcount); 941 new->e2fs_ficount = bswap32(old->e2fs_ficount); 942 new->e2fs_first_dblock = bswap32(old->e2fs_first_dblock); 943 new->e2fs_log_bsize = bswap32(old->e2fs_log_bsize); 944 new->e2fs_fsize = bswap32(old->e2fs_fsize); 945 new->e2fs_bpg = bswap32(old->e2fs_bpg); 946 new->e2fs_fpg = bswap32(old->e2fs_fpg); 947 new->e2fs_ipg = bswap32(old->e2fs_ipg); 948 new->e2fs_mtime = bswap32(old->e2fs_mtime); 949 new->e2fs_wtime = bswap32(old->e2fs_wtime); 950 new->e2fs_mnt_count = bswap16(old->e2fs_mnt_count); 951 new->e2fs_max_mnt_count = bswap16(old->e2fs_max_mnt_count); 952 new->e2fs_magic = bswap16(old->e2fs_magic); 953 new->e2fs_state = bswap16(old->e2fs_state); 954 new->e2fs_beh = bswap16(old->e2fs_beh); 955 new->e2fs_minrev = bswap16(old->e2fs_minrev); 956 new->e2fs_lastfsck = bswap32(old->e2fs_lastfsck); 957 new->e2fs_fsckintv = bswap32(old->e2fs_fsckintv); 958 new->e2fs_creator = bswap32(old->e2fs_creator); 959 new->e2fs_rev = bswap32(old->e2fs_rev); 960 new->e2fs_ruid = bswap16(old->e2fs_ruid); 961 new->e2fs_rgid = bswap16(old->e2fs_rgid); 962 new->e2fs_first_ino = bswap32(old->e2fs_first_ino); 963 new->e2fs_inode_size = bswap16(old->e2fs_inode_size); 964 new->e2fs_block_group_nr = bswap16(old->e2fs_block_group_nr); 965 new->e2fs_features_compat = bswap32(old->e2fs_features_compat); 966 new->e2fs_features_incompat = bswap32(old->e2fs_features_incompat); 967 new->e2fs_features_rocompat = bswap32(old->e2fs_features_rocompat); 968 new->e2fs_algo = bswap32(old->e2fs_algo); 969 new->e2fs_reserved_ngdb = bswap16(old->e2fs_reserved_ngdb); 970 } 971 972 void e2fs_cg_bswap(struct ext2_gd *old, struct ext2_gd *new, int size) 973 { 974 int i; 975 976 for (i = 0; i < (size / sizeof(struct ext2_gd)); i++) { 977 new[i].ext2bgd_b_bitmap = bswap32(old[i].ext2bgd_b_bitmap); 978 new[i].ext2bgd_i_bitmap = bswap32(old[i].ext2bgd_i_bitmap); 979 new[i].ext2bgd_i_tables = bswap32(old[i].ext2bgd_i_tables); 980 new[i].ext2bgd_nbfree = bswap16(old[i].ext2bgd_nbfree); 981 new[i].ext2bgd_nifree = bswap16(old[i].ext2bgd_nifree); 982 new[i].ext2bgd_ndirs = bswap16(old[i].ext2bgd_ndirs); 983 } 984 } 985 986 void e2fs_i_bswap(struct ext2fs_dinode *old, struct ext2fs_dinode *new) 987 { 988 989 new->e2di_mode = bswap16(old->e2di_mode); 990 new->e2di_uid = bswap16(old->e2di_uid); 991 new->e2di_gid = bswap16(old->e2di_gid); 992 new->e2di_nlink = bswap16(old->e2di_nlink); 993 new->e2di_size = bswap32(old->e2di_size); 994 new->e2di_atime = bswap32(old->e2di_atime); 995 new->e2di_ctime = bswap32(old->e2di_ctime); 996 new->e2di_mtime = bswap32(old->e2di_mtime); 997 new->e2di_dtime = bswap32(old->e2di_dtime); 998 new->e2di_nblock = bswap32(old->e2di_nblock); 999 new->e2di_flags = bswap32(old->e2di_flags); 1000 new->e2di_gen = bswap32(old->e2di_gen); 1001 new->e2di_facl = bswap32(old->e2di_facl); 1002 new->e2di_dacl = bswap32(old->e2di_dacl); 1003 new->e2di_faddr = bswap32(old->e2di_faddr); 1004 memcpy(&new->e2di_blocks[0], &old->e2di_blocks[0], 1005 (NDADDR + NIADDR) * sizeof(uint32_t)); 1006 } 1007 #endif 1008 1009 #ifdef EXT2FS_DEBUG 1010 void 1011 dump_sblock(struct m_ext2fs *fs) 1012 { 1013 1014 printf("fs->e2fs.e2fs_bcount = %u\n", fs->e2fs.e2fs_bcount); 1015 printf("fs->e2fs.e2fs_first_dblock = %u\n", fs->e2fs.e2fs_first_dblock); 1016 printf("fs->e2fs.e2fs_log_bsize = %u\n", fs->e2fs.e2fs_log_bsize); 1017 printf("fs->e2fs.e2fs_bpg = %u\n", fs->e2fs.e2fs_bpg); 1018 printf("fs->e2fs.e2fs_ipg = %u\n", fs->e2fs.e2fs_ipg); 1019 printf("fs->e2fs.e2fs_magic = 0x%x\n", fs->e2fs.e2fs_magic); 1020 printf("fs->e2fs.e2fs_rev = %u\n", fs->e2fs.e2fs_rev); 1021 1022 if (fs->e2fs.e2fs_rev == E2FS_REV1) { 1023 printf("fs->e2fs.e2fs_first_ino = %u\n", 1024 fs->e2fs.e2fs_first_ino); 1025 printf("fs->e2fs.e2fs_inode_size = %u\n", 1026 fs->e2fs.e2fs_inode_size); 1027 printf("fs->e2fs.e2fs_features_compat = %u\n", 1028 fs->e2fs.e2fs_features_compat); 1029 printf("fs->e2fs.e2fs_features_incompat = %u\n", 1030 fs->e2fs.e2fs_features_incompat); 1031 printf("fs->e2fs.e2fs_features_rocompat = %u\n", 1032 fs->e2fs.e2fs_features_rocompat); 1033 printf("fs->e2fs.e2fs_reserved_ngdb = %u\n", 1034 fs->e2fs.e2fs_reserved_ngdb); 1035 } 1036 1037 printf("fs->e2fs_bsize = %u\n", fs->e2fs_bsize); 1038 printf("fs->e2fs_fsbtodb = %u\n", fs->e2fs_fsbtodb); 1039 printf("fs->e2fs_ncg = %u\n", fs->e2fs_ncg); 1040 printf("fs->e2fs_ngdb = %u\n", fs->e2fs_ngdb); 1041 printf("fs->e2fs_ipb = %u\n", fs->e2fs_ipb); 1042 printf("fs->e2fs_itpg = %u\n", fs->e2fs_itpg); 1043 } 1044 #endif 1045