1 /* 2 * Copyright (c) 1998 Robert Nordier 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions 7 * are met: 8 * 1. Redistributions of source code must retain the above copyright 9 * notice, this list of conditions and the following disclaimer. 10 * 2. Redistributions in binary form must reproduce the above copyright 11 * notice, this list of conditions and the following disclaimer in 12 * the documentation and/or other materials provided with the 13 * distribution. 14 * 15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR(S) ``AS IS'' AND ANY EXPRESS 16 * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 17 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 18 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR(S) BE LIABLE FOR ANY 19 * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 20 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE 21 * GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 22 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER 23 * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 24 * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN 25 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 26 */ 27 28 #include <sys/param.h> 29 #ifdef MAKEFS 30 /* In the makefs case we only want struct disklabel */ 31 #include <sys/disk/bsd.h> 32 #else 33 #include <sys/fdcio.h> 34 #include <sys/disk.h> 35 #include <sys/disklabel.h> 36 #include <sys/mount.h> 37 #endif 38 #include <sys/stat.h> 39 #include <sys/sysctl.h> 40 #include <sys/time.h> 41 42 #include <assert.h> 43 #include <ctype.h> 44 #include <err.h> 45 #include <errno.h> 46 #include <fcntl.h> 47 #include <inttypes.h> 48 #include <paths.h> 49 #include <signal.h> 50 #include <stdio.h> 51 #include <stdlib.h> 52 #include <string.h> 53 #include <time.h> 54 #include <unistd.h> 55 56 #include "mkfs_msdos.h" 57 58 #define MAXU16 0xffff /* maximum unsigned 16-bit quantity */ 59 #define BPN 4 /* bits per nibble */ 60 #define NPB 2 /* nibbles per byte */ 61 62 #define DOSMAGIC 0xaa55 /* DOS magic number */ 63 #define MINBPS 512 /* minimum bytes per sector */ 64 #define MAXBPS 4096 /* maximum bytes per sector */ 65 #define MAXSPC 128 /* maximum sectors per cluster */ 66 #define MAXNFT 16 /* maximum number of FATs */ 67 #define DEFBLK 4096 /* default block size */ 68 #define DEFBLK16 2048 /* default block size FAT16 */ 69 #define DEFRDE 512 /* default root directory entries */ 70 #define RESFTE 2 /* reserved FAT entries */ 71 #define MINCLS12 1U /* minimum FAT12 clusters */ 72 #define MINCLS16 0xff5U /* minimum FAT16 clusters */ 73 #define MINCLS32 0xfff5U /* minimum FAT32 clusters */ 74 #define MAXCLS12 0xff4U /* maximum FAT12 clusters */ 75 #define MAXCLS16 0xfff4U /* maximum FAT16 clusters */ 76 #define MAXCLS32 0xffffff4U /* maximum FAT32 clusters */ 77 78 #define mincls(fat) ((fat) == 12 ? MINCLS12 : \ 79 (fat) == 16 ? MINCLS16 : \ 80 MINCLS32) 81 82 #define maxcls(fat) ((fat) == 12 ? MAXCLS12 : \ 83 (fat) == 16 ? MAXCLS16 : \ 84 MAXCLS32) 85 86 #define mk1(p, x) \ 87 (p) = (u_int8_t)(x) 88 89 #define mk2(p, x) \ 90 (p)[0] = (u_int8_t)(x), \ 91 (p)[1] = (u_int8_t)((x) >> 010) 92 93 #define mk4(p, x) \ 94 (p)[0] = (u_int8_t)(x), \ 95 (p)[1] = (u_int8_t)((x) >> 010), \ 96 (p)[2] = (u_int8_t)((x) >> 020), \ 97 (p)[3] = (u_int8_t)((x) >> 030) 98 99 struct bs { 100 u_int8_t bsJump[3]; /* bootstrap entry point */ 101 u_int8_t bsOemName[8]; /* OEM name and version */ 102 } __packed; 103 104 struct bsbpb { 105 u_int8_t bpbBytesPerSec[2]; /* bytes per sector */ 106 u_int8_t bpbSecPerClust; /* sectors per cluster */ 107 u_int8_t bpbResSectors[2]; /* reserved sectors */ 108 u_int8_t bpbFATs; /* number of FATs */ 109 u_int8_t bpbRootDirEnts[2]; /* root directory entries */ 110 u_int8_t bpbSectors[2]; /* total sectors */ 111 u_int8_t bpbMedia; /* media descriptor */ 112 u_int8_t bpbFATsecs[2]; /* sectors per FAT */ 113 u_int8_t bpbSecPerTrack[2]; /* sectors per track */ 114 u_int8_t bpbHeads[2]; /* drive heads */ 115 u_int8_t bpbHiddenSecs[4]; /* hidden sectors */ 116 u_int8_t bpbHugeSectors[4]; /* big total sectors */ 117 } __packed; 118 119 struct bsxbpb { 120 u_int8_t bpbBigFATsecs[4]; /* big sectors per FAT */ 121 u_int8_t bpbExtFlags[2]; /* FAT control flags */ 122 u_int8_t bpbFSVers[2]; /* file system version */ 123 u_int8_t bpbRootClust[4]; /* root directory start cluster */ 124 u_int8_t bpbFSInfo[2]; /* file system info sector */ 125 u_int8_t bpbBackup[2]; /* backup boot sector */ 126 u_int8_t bpbReserved[12]; /* reserved */ 127 } __packed; 128 129 struct bsx { 130 u_int8_t exDriveNumber; /* drive number */ 131 u_int8_t exReserved1; /* reserved */ 132 u_int8_t exBootSignature; /* extended boot signature */ 133 u_int8_t exVolumeID[4]; /* volume ID number */ 134 u_int8_t exVolumeLabel[11]; /* volume label */ 135 u_int8_t exFileSysType[8]; /* file system type */ 136 } __packed; 137 138 struct de { 139 u_int8_t deName[11]; /* name and extension */ 140 u_int8_t deAttributes; /* attributes */ 141 u_int8_t rsvd[10]; /* reserved */ 142 u_int8_t deMTime[2]; /* last-modified time */ 143 u_int8_t deMDate[2]; /* last-modified date */ 144 u_int8_t deStartCluster[2]; /* starting cluster */ 145 u_int8_t deFileSize[4]; /* size */ 146 } __packed; 147 148 struct bpb { 149 u_int bpbBytesPerSec; /* bytes per sector */ 150 u_int bpbSecPerClust; /* sectors per cluster */ 151 u_int bpbResSectors; /* reserved sectors */ 152 u_int bpbFATs; /* number of FATs */ 153 u_int bpbRootDirEnts; /* root directory entries */ 154 u_int bpbSectors; /* total sectors */ 155 u_int bpbMedia; /* media descriptor */ 156 u_int bpbFATsecs; /* sectors per FAT */ 157 u_int bpbSecPerTrack; /* sectors per track */ 158 u_int bpbHeads; /* drive heads */ 159 u_int bpbHiddenSecs; /* hidden sectors */ 160 u_int bpbHugeSectors; /* big total sectors */ 161 u_int bpbBigFATsecs; /* big sectors per FAT */ 162 u_int bpbRootClust; /* root directory start cluster */ 163 u_int bpbFSInfo; /* file system info sector */ 164 u_int bpbBackup; /* backup boot sector */ 165 }; 166 167 #define BPBGAP 0, 0, 0, 0, 0, 0 168 169 static struct { 170 const char *name; 171 struct bpb bpb; 172 } const stdfmt[] = { 173 {"160", {512, 1, 1, 2, 64, 320, 0xfe, 1, 8, 1, BPBGAP}}, 174 {"180", {512, 1, 1, 2, 64, 360, 0xfc, 2, 9, 1, BPBGAP}}, 175 {"320", {512, 2, 1, 2, 112, 640, 0xff, 1, 8, 2, BPBGAP}}, 176 {"360", {512, 2, 1, 2, 112, 720, 0xfd, 2, 9, 2, BPBGAP}}, 177 {"640", {512, 2, 1, 2, 112, 1280, 0xfb, 2, 8, 2, BPBGAP}}, 178 {"720", {512, 2, 1, 2, 112, 1440, 0xf9, 3, 9, 2, BPBGAP}}, 179 {"1200", {512, 1, 1, 2, 224, 2400, 0xf9, 7, 15, 2, BPBGAP}}, 180 {"1232", {1024,1, 1, 2, 192, 1232, 0xfe, 2, 8, 2, BPBGAP}}, 181 {"1440", {512, 1, 1, 2, 224, 2880, 0xf0, 9, 18, 2, BPBGAP}}, 182 {"2880", {512, 2, 1, 2, 240, 5760, 0xf0, 9, 36, 2, BPBGAP}} 183 }; 184 185 static const u_int8_t bootcode[] = { 186 0xfa, /* cli */ 187 0x31, 0xc0, /* xor ax,ax */ 188 0x8e, 0xd0, /* mov ss,ax */ 189 0xbc, 0x00, 0x7c, /* mov sp,7c00h */ 190 0xfb, /* sti */ 191 0x8e, 0xd8, /* mov ds,ax */ 192 0xe8, 0x00, 0x00, /* call $ + 3 */ 193 0x5e, /* pop si */ 194 0x83, 0xc6, 0x19, /* add si,+19h */ 195 0xbb, 0x07, 0x00, /* mov bx,0007h */ 196 0xfc, /* cld */ 197 0xac, /* lodsb */ 198 0x84, 0xc0, /* test al,al */ 199 0x74, 0x06, /* jz $ + 8 */ 200 0xb4, 0x0e, /* mov ah,0eh */ 201 0xcd, 0x10, /* int 10h */ 202 0xeb, 0xf5, /* jmp $ - 9 */ 203 0x30, 0xe4, /* xor ah,ah */ 204 0xcd, 0x16, /* int 16h */ 205 0xcd, 0x19, /* int 19h */ 206 0x0d, 0x0a, 207 'N', 'o', 'n', '-', 's', 'y', 's', 't', 208 'e', 'm', ' ', 'd', 'i', 's', 'k', 209 0x0d, 0x0a, 210 'P', 'r', 'e', 's', 's', ' ', 'a', 'n', 211 'y', ' ', 'k', 'e', 'y', ' ', 't', 'o', 212 ' ', 'r', 'e', 'b', 'o', 'o', 't', 213 0x0d, 0x0a, 214 0 215 }; 216 217 static volatile sig_atomic_t got_siginfo; 218 static void infohandler(int); 219 220 #ifndef MAKEFS 221 static int check_mounted(const char *, mode_t); 222 #endif 223 static ssize_t getchunksize(void); 224 static int getstdfmt(const char *, struct bpb *); 225 static int getdiskinfo(int, const char *, const char *, int, struct bpb *); 226 static void print_bpb(struct bpb *); 227 static int ckgeom(const char *, u_int, const char *); 228 static void mklabel(u_int8_t *, const char *); 229 static int oklabel(const char *); 230 static void setstr(u_int8_t *, const char *, size_t); 231 232 int 233 mkfs_msdos(const char *fname, const char *dtype, const struct msdos_options *op) 234 { 235 char buf[MAXPATHLEN]; 236 struct sigaction si_sa; 237 struct stat sb; 238 struct timeval tv; 239 struct bpb bpb; 240 struct tm *tm; 241 struct bs *bs; 242 struct bsbpb *bsbpb; 243 struct bsxbpb *bsxbpb; 244 struct bsx *bsx; 245 struct de *de; 246 u_int8_t *img; 247 u_int8_t *physbuf, *physbuf_end; 248 const char *bname; 249 ssize_t n; 250 time_t now; 251 u_int fat, bss, rds, cls, dir, lsn, x, x1, x2; 252 u_int extra_res, alignment, alignto, saved_x, attempts=0; 253 bool set_res, set_spf, set_spc; 254 int fd, fd1, rv; 255 struct msdos_options o = *op; 256 ssize_t chunksize; 257 258 physbuf = NULL; 259 rv = -1; 260 fd = fd1 = -1; 261 262 if (o.block_size && o.sectors_per_cluster) { 263 warnx("Cannot specify both block size and sectors per cluster"); 264 goto done; 265 } 266 if (o.OEM_string && strlen(o.OEM_string) > 8) { 267 warnx("%s: bad OEM string", o.OEM_string); 268 goto done; 269 } 270 if (o.create_size) { 271 if (o.no_create) { 272 warnx("create (-C) is incompatible with -N"); 273 goto done; 274 } 275 fd = open(fname, O_RDWR | O_CREAT | O_TRUNC, 0644); 276 if (fd == -1) { 277 warnx("failed to create %s", fname); 278 goto done; 279 } 280 if (ftruncate(fd, o.create_size)) { 281 warnx("failed to initialize %jd bytes", (intmax_t)o.create_size); 282 goto done; 283 } 284 } else if ((fd = open(fname, o.no_create ? O_RDONLY : O_RDWR)) == -1) { 285 warn("%s", fname); 286 goto done; 287 } 288 if (fstat(fd, &sb)) { 289 warn("%s", fname); 290 goto done; 291 } 292 if (o.create_size) { 293 if (!S_ISREG(sb.st_mode)) 294 warnx("warning, %s is not a regular file", fname); 295 } else { 296 #ifdef MAKEFS 297 errx(1, "o.create_size must be set!"); 298 #else 299 if (!S_ISCHR(sb.st_mode)) 300 warnx("warning, %s is not a character device", fname); 301 #endif 302 } 303 #ifndef MAKEFS 304 if (!o.no_create) 305 if (check_mounted(fname, sb.st_mode) == -1) 306 goto done; 307 #endif 308 if (o.offset && o.offset != lseek(fd, o.offset, SEEK_SET)) { 309 warnx("cannot seek to %jd", (intmax_t)o.offset); 310 goto done; 311 } 312 memset(&bpb, 0, sizeof(bpb)); 313 if (o.floppy) { 314 if (getstdfmt(o.floppy, &bpb) == -1) 315 goto done; 316 bpb.bpbHugeSectors = bpb.bpbSectors; 317 bpb.bpbSectors = 0; 318 bpb.bpbBigFATsecs = bpb.bpbFATsecs; 319 bpb.bpbFATsecs = 0; 320 } 321 if (o.drive_heads) 322 bpb.bpbHeads = o.drive_heads; 323 if (o.sectors_per_track) 324 bpb.bpbSecPerTrack = o.sectors_per_track; 325 if (o.bytes_per_sector) 326 bpb.bpbBytesPerSec = o.bytes_per_sector; 327 if (o.size) 328 bpb.bpbHugeSectors = o.size; 329 if (o.hidden_sectors_set) 330 bpb.bpbHiddenSecs = o.hidden_sectors; 331 if (!(o.floppy || (o.drive_heads && o.sectors_per_track && 332 o.bytes_per_sector && o.size && o.hidden_sectors_set))) { 333 if (getdiskinfo(fd, fname, dtype, o.hidden_sectors_set, &bpb) == -1) 334 goto done; 335 bpb.bpbHugeSectors -= (o.offset / bpb.bpbBytesPerSec); 336 if (bpb.bpbSecPerClust == 0) { /* set defaults */ 337 if (bpb.bpbHugeSectors <= 6000) /* about 3MB -> 512 bytes */ 338 bpb.bpbSecPerClust = 1; 339 else if (bpb.bpbHugeSectors <= (1<<17)) /* 64M -> 4k */ 340 bpb.bpbSecPerClust = 8; 341 else if (bpb.bpbHugeSectors <= (1<<19)) /* 256M -> 8k */ 342 bpb.bpbSecPerClust = 16; 343 else if (bpb.bpbHugeSectors <= (1<<21)) /* 1G -> 16k */ 344 bpb.bpbSecPerClust = 32; 345 else 346 bpb.bpbSecPerClust = 64; /* otherwise 32k */ 347 } 348 } 349 if (bpb.bpbBytesPerSec < MINBPS || 350 bpb.bpbBytesPerSec > MAXBPS || 351 !powerof2(bpb.bpbBytesPerSec)) { 352 warnx("Invalid bytes/sector (%u): must be 512, 1024, 2048 or 4096", 353 bpb.bpbBytesPerSec); 354 goto done; 355 } 356 357 if (o.volume_label && !oklabel(o.volume_label)) { 358 warnx("%s: bad volume label", o.volume_label); 359 goto done; 360 } 361 if (!(fat = o.fat_type)) { 362 if (o.floppy) 363 fat = 12; 364 else if (!o.directory_entries && (o.info_sector || o.backup_sector)) 365 fat = 32; 366 } 367 if ((fat == 32 && o.directory_entries) || (fat != 32 && (o.info_sector || o.backup_sector))) { 368 warnx("-%c is not a legal FAT%s option", 369 fat == 32 ? 'e' : o.info_sector ? 'i' : 'k', 370 fat == 32 ? "32" : "12/16"); 371 goto done; 372 } 373 if (o.floppy && fat == 32) 374 bpb.bpbRootDirEnts = 0; 375 if (fat != 0 && fat != 12 && fat != 16 && fat != 32) { 376 warnx("%d: bad FAT type", fat); 377 goto done; 378 } 379 380 if (o.block_size) { 381 if (!powerof2(o.block_size)) { 382 warnx("block size (%u) is not a power of 2", o.block_size); 383 goto done; 384 } 385 if (o.block_size < bpb.bpbBytesPerSec) { 386 warnx("block size (%u) is too small; minimum is %u", 387 o.block_size, bpb.bpbBytesPerSec); 388 goto done; 389 } 390 if (o.block_size > bpb.bpbBytesPerSec * MAXSPC) { 391 warnx("block size (%u) is too large; maximum is %u", 392 o.block_size, bpb.bpbBytesPerSec * MAXSPC); 393 goto done; 394 } 395 bpb.bpbSecPerClust = o.block_size / bpb.bpbBytesPerSec; 396 } 397 if (o.sectors_per_cluster) { 398 if (!powerof2(o.sectors_per_cluster)) { 399 warnx("sectors/cluster (%u) is not a power of 2", 400 o.sectors_per_cluster); 401 goto done; 402 } 403 bpb.bpbSecPerClust = o.sectors_per_cluster; 404 } 405 if (o.reserved_sectors) 406 bpb.bpbResSectors = o.reserved_sectors; 407 if (o.num_FAT) { 408 if (o.num_FAT > MAXNFT) { 409 warnx("number of FATs (%u) is too large; maximum is %u", 410 o.num_FAT, MAXNFT); 411 goto done; 412 } 413 bpb.bpbFATs = o.num_FAT; 414 } 415 if (o.directory_entries) { 416 bpb.bpbRootDirEnts = roundup(o.directory_entries, 417 bpb.bpbBytesPerSec / sizeof(struct de)); 418 if (bpb.bpbBytesPerSec == 0 || o.directory_entries >= MAXU16) 419 bpb.bpbRootDirEnts = MAXU16; 420 } 421 if (o.media_descriptor_set) { 422 if (o.media_descriptor < 0xf0) { 423 warnx("illegal media descriptor (%#x)", o.media_descriptor); 424 goto done; 425 } 426 bpb.bpbMedia = o.media_descriptor; 427 } 428 if (o.sectors_per_fat) 429 bpb.bpbBigFATsecs = o.sectors_per_fat; 430 if (o.info_sector) 431 bpb.bpbFSInfo = o.info_sector; 432 if (o.backup_sector) 433 bpb.bpbBackup = o.backup_sector; 434 bss = 1; 435 bname = NULL; 436 fd1 = -1; 437 if (o.bootstrap) { 438 bname = o.bootstrap; 439 if (!strchr(bname, '/')) { 440 snprintf(buf, sizeof(buf), "/boot/%s", bname); 441 bname = buf; 442 } 443 if ((fd1 = open(bname, O_RDONLY)) == -1 || fstat(fd1, &sb)) { 444 warn("%s", bname); 445 goto done; 446 } 447 if (!S_ISREG(sb.st_mode) || sb.st_size % bpb.bpbBytesPerSec || 448 sb.st_size < bpb.bpbBytesPerSec || 449 sb.st_size > bpb.bpbBytesPerSec * MAXU16) { 450 warnx("%s: inappropriate file type or format", bname); 451 goto done; 452 } 453 bss = sb.st_size / bpb.bpbBytesPerSec; 454 } 455 if (!bpb.bpbFATs) 456 bpb.bpbFATs = 2; 457 if (!fat) { 458 if (bpb.bpbHugeSectors < (bpb.bpbResSectors ? bpb.bpbResSectors : bss) + 459 howmany((RESFTE + (bpb.bpbSecPerClust ? MINCLS16 : MAXCLS12 + 1)) * 460 (bpb.bpbSecPerClust ? 16 : 12) / BPN, 461 bpb.bpbBytesPerSec * NPB) * 462 bpb.bpbFATs + 463 howmany(bpb.bpbRootDirEnts ? bpb.bpbRootDirEnts : DEFRDE, 464 bpb.bpbBytesPerSec / sizeof(struct de)) + 465 (bpb.bpbSecPerClust ? MINCLS16 : MAXCLS12 + 1) * 466 (bpb.bpbSecPerClust ? bpb.bpbSecPerClust : 467 howmany(DEFBLK, bpb.bpbBytesPerSec))) 468 fat = 12; 469 else if (bpb.bpbRootDirEnts || bpb.bpbHugeSectors < 470 (bpb.bpbResSectors ? bpb.bpbResSectors : bss) + 471 howmany((RESFTE + MAXCLS16) * 2, bpb.bpbBytesPerSec) * 472 bpb.bpbFATs + 473 howmany(DEFRDE, bpb.bpbBytesPerSec / sizeof(struct de)) + 474 (MAXCLS16 + 1) * 475 (bpb.bpbSecPerClust ? bpb.bpbSecPerClust : 476 howmany(8192, bpb.bpbBytesPerSec))) 477 fat = 16; 478 else 479 fat = 32; 480 } 481 x = bss; 482 if (fat == 32) { 483 if (!bpb.bpbFSInfo) { 484 if (x == MAXU16 || x == bpb.bpbBackup) { 485 warnx("no room for info sector"); 486 goto done; 487 } 488 bpb.bpbFSInfo = x; 489 } 490 if (bpb.bpbFSInfo != MAXU16 && x <= bpb.bpbFSInfo) 491 x = bpb.bpbFSInfo + 1; 492 if (!bpb.bpbBackup) { 493 if (x == MAXU16) { 494 warnx("no room for backup sector"); 495 goto done; 496 } 497 bpb.bpbBackup = x; 498 } else if (bpb.bpbBackup != MAXU16 && bpb.bpbBackup == bpb.bpbFSInfo) { 499 warnx("backup sector would overwrite info sector"); 500 goto done; 501 } 502 if (bpb.bpbBackup != MAXU16 && x <= bpb.bpbBackup) 503 x = bpb.bpbBackup + 1; 504 } 505 506 extra_res = 0; 507 alignment = 0; 508 set_res = (bpb.bpbResSectors == 0); 509 set_spf = (bpb.bpbBigFATsecs == 0); 510 set_spc = (bpb.bpbSecPerClust == 0); 511 saved_x = x; 512 513 /* 514 * Attempt to align the root directory to cluster if o.align is set. 515 * This is done by padding with reserved blocks. Note that this can 516 * cause other factors to change, which can in turn change the alignment. 517 * This should take at most 2 iterations, as increasing the reserved 518 * amount may cause the FAT size to decrease by 1, requiring another 519 * bpbFATs reserved blocks. If bpbSecPerClust changes, it will 520 * be half of its previous size, and thus will not throw off alignment. 521 */ 522 do { 523 x = saved_x; 524 if (set_res) 525 bpb.bpbResSectors = ((fat == 32) ? 526 MAX(x, MAX(16384 / bpb.bpbBytesPerSec, 4)) : x) + extra_res; 527 else if (bpb.bpbResSectors < x) { 528 warnx("too few reserved sectors (need %d have %d)", x, 529 bpb.bpbResSectors); 530 goto done; 531 } 532 if (fat != 32 && !bpb.bpbRootDirEnts) 533 bpb.bpbRootDirEnts = DEFRDE; 534 rds = howmany(bpb.bpbRootDirEnts, 535 bpb.bpbBytesPerSec / sizeof(struct de)); 536 if (set_spc) { 537 for (bpb.bpbSecPerClust = howmany(fat == 16 ? DEFBLK16 : 538 DEFBLK, bpb.bpbBytesPerSec); 539 bpb.bpbSecPerClust < MAXSPC && (bpb.bpbResSectors + 540 howmany((RESFTE + maxcls(fat)) * (fat / BPN), 541 bpb.bpbBytesPerSec * NPB) * bpb.bpbFATs + 542 rds + 543 (u_int64_t) (maxcls(fat) + 1) * bpb.bpbSecPerClust) <= 544 bpb.bpbHugeSectors; 545 bpb.bpbSecPerClust <<= 1) 546 continue; 547 548 } 549 if (fat != 32 && bpb.bpbBigFATsecs > MAXU16) { 550 warnx("too many sectors/FAT for FAT12/16"); 551 goto done; 552 } 553 x1 = bpb.bpbResSectors + rds; 554 x = bpb.bpbBigFATsecs ? bpb.bpbBigFATsecs : 1; 555 if (x1 + (u_int64_t)x * bpb.bpbFATs > bpb.bpbHugeSectors) { 556 warnx("meta data exceeds file system size"); 557 goto done; 558 } 559 x1 += x * bpb.bpbFATs; 560 x = (u_int64_t)(bpb.bpbHugeSectors - x1) * bpb.bpbBytesPerSec * NPB / 561 (bpb.bpbSecPerClust * bpb.bpbBytesPerSec * NPB + 562 fat / BPN * bpb.bpbFATs); 563 x2 = howmany((RESFTE + MIN(x, maxcls(fat))) * (fat / BPN), 564 bpb.bpbBytesPerSec * NPB); 565 if (set_spf) { 566 if (bpb.bpbBigFATsecs == 0) 567 bpb.bpbBigFATsecs = x2; 568 x1 += (bpb.bpbBigFATsecs - 1) * bpb.bpbFATs; 569 } 570 if (set_res) { 571 if (o.align) 572 alignto = bpb.bpbSecPerClust; 573 else 574 #ifdef PAGE_SIZE 575 alignto = PAGE_SIZE / bpb.bpbBytesPerSec; 576 #else 577 alignto = 1; 578 #endif 579 if (alignto > 1) { 580 /* align data clusters */ 581 alignment = (bpb.bpbResSectors + bpb.bpbBigFATsecs * bpb.bpbFATs + rds) % 582 alignto; 583 if (alignment != 0) 584 extra_res += alignto - alignment; 585 } 586 } 587 attempts++; 588 } while (alignment != 0 && attempts < 2); 589 if (o.align && alignment != 0) 590 warnx("warning: Alignment failed."); 591 592 cls = (bpb.bpbHugeSectors - x1) / bpb.bpbSecPerClust; 593 x = (u_int64_t)bpb.bpbBigFATsecs * bpb.bpbBytesPerSec * NPB / (fat / BPN) - 594 RESFTE; 595 if (cls > x) 596 cls = x; 597 if (bpb.bpbBigFATsecs < x2) 598 warnx("warning: sectors/FAT limits file system to %u clusters", 599 cls); 600 if (cls < mincls(fat)) { 601 warnx("%u clusters too few clusters for FAT%u, need %u", cls, fat, 602 mincls(fat)); 603 goto done; 604 } 605 if (cls > maxcls(fat)) { 606 cls = maxcls(fat); 607 bpb.bpbHugeSectors = x1 + (cls + 1) * bpb.bpbSecPerClust - 1; 608 warnx("warning: FAT type limits file system to %u sectors", 609 bpb.bpbHugeSectors); 610 } 611 printf("%s: %u sector%s in %u FAT%u cluster%s " 612 "(%u bytes/cluster)\n", fname, cls * bpb.bpbSecPerClust, 613 cls * bpb.bpbSecPerClust == 1 ? "" : "s", cls, fat, 614 cls == 1 ? "" : "s", bpb.bpbBytesPerSec * bpb.bpbSecPerClust); 615 if (!bpb.bpbMedia) 616 bpb.bpbMedia = !bpb.bpbHiddenSecs ? 0xf0 : 0xf8; 617 if (fat == 32) 618 bpb.bpbRootClust = RESFTE; 619 if (bpb.bpbHugeSectors <= MAXU16) { 620 bpb.bpbSectors = bpb.bpbHugeSectors; 621 bpb.bpbHugeSectors = 0; 622 } 623 if (fat != 32) { 624 bpb.bpbFATsecs = bpb.bpbBigFATsecs; 625 bpb.bpbBigFATsecs = 0; 626 } 627 print_bpb(&bpb); 628 if (!o.no_create) { 629 if (o.timestamp_set) { 630 tv.tv_sec = now = o.timestamp; 631 tv.tv_usec = 0; 632 tm = gmtime(&now); 633 } else { 634 gettimeofday(&tv, NULL); 635 now = tv.tv_sec; 636 tm = localtime(&now); 637 } 638 639 chunksize = getchunksize(); 640 physbuf = malloc(chunksize); 641 if (physbuf == NULL) { 642 warn(NULL); 643 goto done; 644 } 645 physbuf_end = physbuf + chunksize; 646 img = physbuf; 647 648 dir = bpb.bpbResSectors + (bpb.bpbFATsecs ? bpb.bpbFATsecs : 649 bpb.bpbBigFATsecs) * bpb.bpbFATs; 650 memset(&si_sa, 0, sizeof(si_sa)); 651 si_sa.sa_handler = infohandler; 652 #ifdef SIGINFO 653 if (sigaction(SIGINFO, &si_sa, NULL) == -1) { 654 warn("sigaction SIGINFO"); 655 goto done; 656 } 657 #endif 658 for (lsn = 0; lsn < dir + (fat == 32 ? bpb.bpbSecPerClust : rds); lsn++) { 659 if (got_siginfo) { 660 fprintf(stderr,"%s: writing sector %u of %u (%u%%)\n", 661 fname, lsn, 662 (dir + (fat == 32 ? bpb.bpbSecPerClust: rds)), 663 (lsn * 100) / (dir + 664 (fat == 32 ? bpb.bpbSecPerClust: rds))); 665 got_siginfo = 0; 666 } 667 x = lsn; 668 if (o.bootstrap && 669 fat == 32 && bpb.bpbBackup != MAXU16 && 670 bss <= bpb.bpbBackup && x >= bpb.bpbBackup) { 671 x -= bpb.bpbBackup; 672 if (!x && lseek(fd1, o.offset, SEEK_SET)) { 673 warn("%s", bname); 674 goto done; 675 } 676 } 677 if (o.bootstrap && x < bss) { 678 if ((n = read(fd1, img, bpb.bpbBytesPerSec)) == -1) { 679 warn("%s", bname); 680 goto done; 681 } 682 if ((unsigned)n != bpb.bpbBytesPerSec) { 683 warnx("%s: can't read sector %u", bname, x); 684 goto done; 685 } 686 } else 687 memset(img, 0, bpb.bpbBytesPerSec); 688 if (!lsn || 689 (fat == 32 && bpb.bpbBackup != MAXU16 && 690 lsn == bpb.bpbBackup)) { 691 x1 = sizeof(struct bs); 692 bsbpb = (struct bsbpb *)(img + x1); 693 mk2(bsbpb->bpbBytesPerSec, bpb.bpbBytesPerSec); 694 mk1(bsbpb->bpbSecPerClust, bpb.bpbSecPerClust); 695 mk2(bsbpb->bpbResSectors, bpb.bpbResSectors); 696 mk1(bsbpb->bpbFATs, bpb.bpbFATs); 697 mk2(bsbpb->bpbRootDirEnts, bpb.bpbRootDirEnts); 698 mk2(bsbpb->bpbSectors, bpb.bpbSectors); 699 mk1(bsbpb->bpbMedia, bpb.bpbMedia); 700 mk2(bsbpb->bpbFATsecs, bpb.bpbFATsecs); 701 mk2(bsbpb->bpbSecPerTrack, bpb.bpbSecPerTrack); 702 mk2(bsbpb->bpbHeads, bpb.bpbHeads); 703 mk4(bsbpb->bpbHiddenSecs, bpb.bpbHiddenSecs); 704 mk4(bsbpb->bpbHugeSectors, bpb.bpbHugeSectors); 705 x1 += sizeof(struct bsbpb); 706 if (fat == 32) { 707 bsxbpb = (struct bsxbpb *)(img + x1); 708 mk4(bsxbpb->bpbBigFATsecs, bpb.bpbBigFATsecs); 709 mk2(bsxbpb->bpbExtFlags, 0); 710 mk2(bsxbpb->bpbFSVers, 0); 711 mk4(bsxbpb->bpbRootClust, bpb.bpbRootClust); 712 mk2(bsxbpb->bpbFSInfo, bpb.bpbFSInfo); 713 mk2(bsxbpb->bpbBackup, bpb.bpbBackup); 714 x1 += sizeof(struct bsxbpb); 715 } 716 bsx = (struct bsx *)(img + x1); 717 mk1(bsx->exBootSignature, 0x29); 718 if (o.volume_id_set) 719 x = o.volume_id; 720 else 721 x = (((u_int)(1 + tm->tm_mon) << 8 | 722 (u_int)tm->tm_mday) + 723 ((u_int)tm->tm_sec << 8 | 724 (u_int)(tv.tv_usec / 10))) << 16 | 725 ((u_int)(1900 + tm->tm_year) + 726 ((u_int)tm->tm_hour << 8 | 727 (u_int)tm->tm_min)); 728 mk4(bsx->exVolumeID, x); 729 mklabel(bsx->exVolumeLabel, o.volume_label ? o.volume_label : "NO NAME"); 730 snprintf(buf, sizeof(buf), "FAT%u", fat); 731 setstr(bsx->exFileSysType, buf, sizeof(bsx->exFileSysType)); 732 if (!o.bootstrap) { 733 x1 += sizeof(struct bsx); 734 bs = (struct bs *)img; 735 mk1(bs->bsJump[0], 0xeb); 736 mk1(bs->bsJump[1], x1 - 2); 737 mk1(bs->bsJump[2], 0x90); 738 setstr(bs->bsOemName, o.OEM_string ? o.OEM_string : "BSD4.4 ", 739 sizeof(bs->bsOemName)); 740 memcpy(img + x1, bootcode, sizeof(bootcode)); 741 mk2(img + MINBPS - 2, DOSMAGIC); 742 } 743 } else if (fat == 32 && bpb.bpbFSInfo != MAXU16 && 744 (lsn == bpb.bpbFSInfo || 745 (bpb.bpbBackup != MAXU16 && 746 lsn == bpb.bpbBackup + bpb.bpbFSInfo))) { 747 mk4(img, 0x41615252); 748 mk4(img + MINBPS - 28, 0x61417272); 749 mk4(img + MINBPS - 24, 0xffffffff); 750 mk4(img + MINBPS - 20, 0xffffffff); 751 mk2(img + MINBPS - 2, DOSMAGIC); 752 } else if (lsn >= bpb.bpbResSectors && lsn < dir && 753 !((lsn - bpb.bpbResSectors) % 754 (bpb.bpbFATsecs ? bpb.bpbFATsecs : 755 bpb.bpbBigFATsecs))) { 756 mk1(img[0], bpb.bpbMedia); 757 for (x = 1; x < fat * (fat == 32 ? 3 : 2) / 8; x++) 758 mk1(img[x], fat == 32 && x % 4 == 3 ? 0x0f : 0xff); 759 } else if (lsn == dir && o.volume_label) { 760 de = (struct de *)img; 761 mklabel(de->deName, o.volume_label); 762 mk1(de->deAttributes, 050); 763 x = (u_int)tm->tm_hour << 11 | 764 (u_int)tm->tm_min << 5 | 765 (u_int)tm->tm_sec >> 1; 766 mk2(de->deMTime, x); 767 x = (u_int)(tm->tm_year - 80) << 9 | 768 (u_int)(tm->tm_mon + 1) << 5 | 769 (u_int)tm->tm_mday; 770 mk2(de->deMDate, x); 771 } 772 /* 773 * Issue a write of chunksize once we have collected 774 * enough sectors. 775 */ 776 img += bpb.bpbBytesPerSec; 777 if (img >= physbuf_end) { 778 n = write(fd, physbuf, chunksize); 779 if (n != chunksize) { 780 warnx("%s: can't write sector %u", fname, lsn); 781 goto done; 782 } 783 img = physbuf; 784 } 785 } 786 /* 787 * Write remaining sectors, if the last write didn't end 788 * up filling a whole chunk. 789 */ 790 if (img != physbuf) { 791 ssize_t tailsize = img - physbuf; 792 793 n = write(fd, physbuf, tailsize); 794 if (n != tailsize) { 795 warnx("%s: can't write sector %u", fname, lsn); 796 goto done; 797 } 798 } 799 } 800 rv = 0; 801 done: 802 free(physbuf); 803 if (fd != -1) 804 close(fd); 805 if (fd1 != -1) 806 close(fd1); 807 808 return rv; 809 } 810 811 /* 812 * return -1 with error if file system is mounted. 813 */ 814 #ifndef MAKEFS 815 static int 816 check_mounted(const char *fname, mode_t mode) 817 { 818 /* 819 * If getmntinfo() is not available (e.g. Linux) don't check. This should 820 * not be a problem since we will only be using makefs to create images. 821 */ 822 struct statfs *mp; 823 const char *s1, *s2; 824 size_t len; 825 int n, r; 826 827 if (!(n = getmntinfo(&mp, MNT_NOWAIT))) { 828 warn("getmntinfo"); 829 return -1; 830 } 831 len = strlen(_PATH_DEV); 832 s1 = fname; 833 if (!strncmp(s1, _PATH_DEV, len)) 834 s1 += len; 835 r = S_ISCHR(mode) && s1 != fname && *s1 == 'r'; 836 for (; n--; mp++) { 837 s2 = mp->f_mntfromname; 838 if (!strncmp(s2, _PATH_DEV, len)) 839 s2 += len; 840 if ((r && s2 != mp->f_mntfromname && !strcmp(s1 + 1, s2)) || 841 !strcmp(s1, s2)) { 842 warnx("%s is mounted on %s", fname, mp->f_mntonname); 843 return -1; 844 } 845 } 846 return 0; 847 } 848 #endif 849 850 /* 851 * Get optimal I/O size 852 */ 853 static ssize_t 854 getchunksize(void) 855 { 856 static ssize_t chunksize; 857 858 if (chunksize != 0) 859 return (chunksize); 860 861 #ifdef KERN_MAXPHYS 862 int mib[2]; 863 size_t len; 864 865 mib[0] = CTL_KERN; 866 mib[1] = KERN_MAXPHYS; 867 len = sizeof(chunksize); 868 869 if (sysctl(mib, 2, &chunksize, &len, NULL, 0) == -1) { 870 warn("sysctl: KERN_MAXPHYS, using %zu", (size_t)MAXPHYS); 871 chunksize = 0; 872 } 873 #endif 874 if (chunksize == 0) 875 chunksize = MAXPHYS; 876 877 /* 878 * For better performance, we want to write larger chunks instead of 879 * individual sectors (the size can only be 512, 1024, 2048 or 4096 880 * bytes). Assert that chunksize can always hold an integer number of 881 * sectors by asserting that both are power of two numbers and the 882 * chunksize is greater than MAXBPS. 883 */ 884 static_assert(powerof2(MAXBPS), "MAXBPS is not power of 2"); 885 assert(powerof2(chunksize)); 886 assert(chunksize > MAXBPS); 887 888 return (chunksize); 889 } 890 891 /* 892 * Get a standard format. 893 */ 894 static int 895 getstdfmt(const char *fmt, struct bpb *bpb) 896 { 897 u_int x, i; 898 899 x = nitems(stdfmt); 900 for (i = 0; i < x && strcmp(fmt, stdfmt[i].name); i++); 901 if (i == x) { 902 warnx("%s: unknown standard format", fmt); 903 return -1; 904 } 905 *bpb = stdfmt[i].bpb; 906 return 0; 907 } 908 909 static void 910 compute_geometry_from_file(int fd, const char *fname, struct disklabel *lp) 911 { 912 struct stat st; 913 off_t ms; 914 915 if (fstat(fd, &st)) 916 err(1, "cannot get disk size"); 917 if (!S_ISREG(st.st_mode)) 918 errx(1, "%s is not a regular file", fname); 919 ms = st.st_size; 920 lp->d_secsize = 512; 921 lp->d_nsectors = 63; 922 lp->d_ntracks = 255; 923 lp->d_secperunit = ms / lp->d_secsize; 924 } 925 926 /* 927 * Get disk slice, partition, and geometry information. 928 */ 929 static int 930 getdiskinfo(int fd, const char *fname, const char *dtype, __unused int oflag, 931 struct bpb *bpb) 932 { 933 struct disklabel *lp, dlp; 934 off_t hs = 0; 935 #ifndef MAKEFS 936 off_t ms; 937 struct fd_type type; 938 939 lp = NULL; 940 941 /* If the user specified a disk type, try to use that */ 942 if (dtype != NULL) { 943 lp = getdiskbyname(dtype); 944 } 945 946 /* Maybe it's a floppy drive */ 947 if (lp == NULL) { 948 if (ioctl(fd, DIOCGMEDIASIZE, &ms) == -1) { 949 /* create a fake geometry for a file image */ 950 compute_geometry_from_file(fd, fname, &dlp); 951 lp = &dlp; 952 } else if (ioctl(fd, FD_GTYPE, &type) != -1) { 953 dlp.d_secsize = 128 << type.secsize; 954 dlp.d_nsectors = type.sectrac; 955 dlp.d_ntracks = type.heads; 956 dlp.d_secperunit = ms / dlp.d_secsize; 957 lp = &dlp; 958 } 959 } 960 961 /* Maybe it's a fixed drive */ 962 if (lp == NULL) { 963 if (bpb->bpbBytesPerSec) 964 dlp.d_secsize = bpb->bpbBytesPerSec; 965 if (bpb->bpbBytesPerSec == 0 && ioctl(fd, DIOCGSECTORSIZE, 966 &dlp.d_secsize) == -1) 967 err(1, "cannot get sector size"); 968 969 dlp.d_secperunit = ms / dlp.d_secsize; 970 971 if (bpb->bpbSecPerTrack == 0 && ioctl(fd, DIOCGFWSECTORS, 972 &dlp.d_nsectors) == -1) { 973 warn("cannot get number of sectors per track"); 974 dlp.d_nsectors = 63; 975 } 976 if (bpb->bpbHeads == 0 && 977 ioctl(fd, DIOCGFWHEADS, &dlp.d_ntracks) == -1) { 978 warn("cannot get number of heads"); 979 if (dlp.d_secperunit <= 63*1*1024) 980 dlp.d_ntracks = 1; 981 else if (dlp.d_secperunit <= 63*16*1024) 982 dlp.d_ntracks = 16; 983 else 984 dlp.d_ntracks = 255; 985 } 986 987 hs = (ms / dlp.d_secsize) - dlp.d_secperunit; 988 lp = &dlp; 989 } 990 #else 991 (void)dtype; 992 /* In the makefs case we only support image files: */ 993 compute_geometry_from_file(fd, fname, &dlp); 994 lp = &dlp; 995 #endif 996 997 if (bpb->bpbBytesPerSec == 0) { 998 if (ckgeom(fname, lp->d_secsize, "bytes/sector") == -1) 999 return -1; 1000 bpb->bpbBytesPerSec = lp->d_secsize; 1001 } 1002 if (bpb->bpbSecPerTrack == 0) { 1003 if (ckgeom(fname, lp->d_nsectors, "sectors/track") == -1) 1004 return -1; 1005 bpb->bpbSecPerTrack = lp->d_nsectors; 1006 } 1007 if (bpb->bpbHeads == 0) { 1008 if (ckgeom(fname, lp->d_ntracks, "drive heads") == -1) 1009 return -1; 1010 bpb->bpbHeads = lp->d_ntracks; 1011 } 1012 if (bpb->bpbHugeSectors == 0) 1013 bpb->bpbHugeSectors = lp->d_secperunit; 1014 if (bpb->bpbHiddenSecs == 0) 1015 bpb->bpbHiddenSecs = hs; 1016 return 0; 1017 } 1018 1019 /* 1020 * Print out BPB values. 1021 */ 1022 static void 1023 print_bpb(struct bpb *bpb) 1024 { 1025 printf("BytesPerSec=%u SecPerClust=%u ResSectors=%u FATs=%u", 1026 bpb->bpbBytesPerSec, bpb->bpbSecPerClust, bpb->bpbResSectors, 1027 bpb->bpbFATs); 1028 if (bpb->bpbRootDirEnts) 1029 printf(" RootDirEnts=%u", bpb->bpbRootDirEnts); 1030 if (bpb->bpbSectors) 1031 printf(" Sectors=%u", bpb->bpbSectors); 1032 printf(" Media=%#x", bpb->bpbMedia); 1033 if (bpb->bpbFATsecs) 1034 printf(" FATsecs=%u", bpb->bpbFATsecs); 1035 printf(" SecPerTrack=%u Heads=%u HiddenSecs=%u", bpb->bpbSecPerTrack, 1036 bpb->bpbHeads, bpb->bpbHiddenSecs); 1037 if (bpb->bpbHugeSectors) 1038 printf(" HugeSectors=%u", bpb->bpbHugeSectors); 1039 if (!bpb->bpbFATsecs) { 1040 printf(" FATsecs=%u RootCluster=%u", bpb->bpbBigFATsecs, 1041 bpb->bpbRootClust); 1042 printf(" FSInfo="); 1043 printf(bpb->bpbFSInfo == MAXU16 ? "%#x" : "%u", bpb->bpbFSInfo); 1044 printf(" Backup="); 1045 printf(bpb->bpbBackup == MAXU16 ? "%#x" : "%u", bpb->bpbBackup); 1046 } 1047 printf("\n"); 1048 } 1049 1050 /* 1051 * Check a disk geometry value. 1052 */ 1053 static int 1054 ckgeom(const char *fname, u_int val, const char *msg) 1055 { 1056 if (!val) { 1057 warnx("%s: no default %s", fname, msg); 1058 return -1; 1059 } 1060 if (val > MAXU16) { 1061 warnx("%s: illegal %s %d", fname, msg, val); 1062 return -1; 1063 } 1064 return 0; 1065 } 1066 1067 /* 1068 * Check a volume label. 1069 */ 1070 static int 1071 oklabel(const char *src) 1072 { 1073 int c, i; 1074 1075 for (i = 0; i <= 11; i++) { 1076 c = (u_char)*src++; 1077 if (c < ' ' + !i || strchr("\"*+,./:;<=>?[\\]|", c)) 1078 break; 1079 } 1080 return i && !c; 1081 } 1082 1083 /* 1084 * Make a volume label. 1085 */ 1086 static void 1087 mklabel(u_int8_t *dest, const char *src) 1088 { 1089 int c, i; 1090 1091 for (i = 0; i < 11; i++) { 1092 c = *src ? toupper(*src++) : ' '; 1093 *dest++ = !i && c == '\xe5' ? 5 : c; 1094 } 1095 } 1096 1097 /* 1098 * Copy string, padding with spaces. 1099 */ 1100 static void 1101 setstr(u_int8_t *dest, const char *src, size_t len) 1102 { 1103 while (len--) 1104 *dest++ = *src ? *src++ : ' '; 1105 } 1106 1107 static void 1108 infohandler(int sig __unused) 1109 { 1110 1111 got_siginfo = 1; 1112 } 1113