1 1.1 cgd /* 2 1.7 mikel * Copyright (c) 1983, 1988, 1993 3 1.7 mikel * The Regents of the University of California. All rights reserved. 4 1.1 cgd * 5 1.1 cgd * Redistribution and use in source and binary forms, with or without 6 1.1 cgd * modification, are permitted provided that the following conditions 7 1.1 cgd * are met: 8 1.1 cgd * 1. Redistributions of source code must retain the above copyright 9 1.1 cgd * notice, this list of conditions and the following disclaimer. 10 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright 11 1.1 cgd * notice, this list of conditions and the following disclaimer in the 12 1.1 cgd * documentation and/or other materials provided with the distribution. 13 1.13 agc * 3. Neither the name of the University nor the names of its contributors 14 1.1 cgd * may be used to endorse or promote products derived from this software 15 1.1 cgd * without specific prior written permission. 16 1.1 cgd * 17 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 18 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 21 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 1.1 cgd * SUCH DAMAGE. 28 1.1 cgd */ 29 1.1 cgd 30 1.9 lukem #include <sys/cdefs.h> 31 1.1 cgd #ifndef lint 32 1.17 lukem __COPYRIGHT("@(#) Copyright (c) 1983, 1988, 1993\ 33 1.17 lukem The Regents of the University of California. All rights reserved."); 34 1.1 cgd #endif /* not lint */ 35 1.1 cgd 36 1.1 cgd #ifndef lint 37 1.9 lukem #if 0 38 1.9 lukem static char sccsid[] = "from: @(#)diskpart.c 8.3 (Berkeley) 11/30/94"; 39 1.9 lukem #else 40 1.21 andvar __RCSID("$NetBSD: diskpart.c,v 1.21 2021/08/01 18:02:22 andvar Exp $"); 41 1.9 lukem #endif 42 1.1 cgd #endif /* not lint */ 43 1.1 cgd 44 1.1 cgd /* 45 1.1 cgd * Program to calculate standard disk partition sizes. 46 1.1 cgd */ 47 1.1 cgd #include <sys/param.h> 48 1.1 cgd #define DKTYPENAMES 49 1.1 cgd #include <sys/disklabel.h> 50 1.1 cgd 51 1.8 lukem #include <ctype.h> 52 1.11 tron #include <disktab.h> 53 1.8 lukem #include <limits.h> 54 1.1 cgd #include <stdio.h> 55 1.8 lukem #include <stdlib.h> 56 1.7 mikel #include <string.h> 57 1.8 lukem #include <unistd.h> 58 1.1 cgd 59 1.1 cgd #define for_now /* show all of `c' partition for disklabel */ 60 1.1 cgd #define NPARTITIONS 8 61 1.1 cgd #define PART(x) (x - 'a') 62 1.1 cgd 63 1.1 cgd /* 64 1.1 cgd * Default partition sizes, where they exist. 65 1.1 cgd */ 66 1.1 cgd #define NDEFAULTS 4 67 1.19 joerg static int defpart[NDEFAULTS][NPARTITIONS] = { 68 1.1 cgd { 15884, 66880, 0, 15884, 307200, 0, 0, 291346 }, /* ~ 356+ Mbytes */ 69 1.1 cgd { 15884, 33440, 0, 15884, 55936, 0, 0, 291346 }, /* ~ 206-355 Mbytes */ 70 1.1 cgd { 15884, 33440, 0, 15884, 55936, 0, 0, 0 }, /* ~ 61-205 Mbytes */ 71 1.1 cgd { 15884, 10032, 0, 15884, 0, 0, 0, 0 }, /* ~ 20-60 Mbytes */ 72 1.1 cgd }; 73 1.1 cgd 74 1.1 cgd /* 75 1.1 cgd * Each array defines a layout for a disk; 76 1.1 cgd * that is, the collection of partitions totally 77 1.1 cgd * covers the physical space on a disk. 78 1.1 cgd */ 79 1.1 cgd #define NLAYOUTS 3 80 1.19 joerg static char layouts[NLAYOUTS][NPARTITIONS] = { 81 1.1 cgd { 'a', 'b', 'h', 'g' }, 82 1.1 cgd { 'a', 'b', 'h', 'd', 'e', 'f' }, 83 1.1 cgd { 'c' }, 84 1.1 cgd }; 85 1.1 cgd 86 1.1 cgd /* 87 1.1 cgd * Default disk block and disk block fragment 88 1.1 cgd * sizes for each file system. Those file systems 89 1.1 cgd * with zero block and frag sizes are special cases 90 1.1 cgd * (e.g. swap areas or for access to the entire device). 91 1.1 cgd */ 92 1.19 joerg static struct partition defparam[NPARTITIONS] = { 93 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, }, /* a */ 94 1.12 drochner { 0, 0, { 1024 }, FS_SWAP, 8, { 0 }, }, /* b */ 95 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, }, /* c */ 96 1.12 drochner { 0, 0, { 512 }, FS_UNUSED, 8, { 0 }, }, /* d */ 97 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, }, /* e */ 98 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, }, /* f */ 99 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, }, /* g */ 100 1.12 drochner { 0, 0, { 1024 }, FS_UNUSED, 8, { 0 }, } /* h */ 101 1.1 cgd }; 102 1.1 cgd 103 1.1 cgd /* 104 1.1 cgd * Each disk has some space reserved for a bad sector 105 1.1 cgd * forwarding table. DEC standard 144 uses the first 106 1.1 cgd * 5 even numbered sectors in the last track of the 107 1.1 cgd * last cylinder for replicated storage of the bad sector 108 1.1 cgd * table; another 126 sectors past this is needed as a 109 1.1 cgd * pool of replacement sectors. 110 1.1 cgd */ 111 1.19 joerg static int badsecttable = 126; /* # sectors */ 112 1.1 cgd 113 1.19 joerg static int pflag; /* print device driver partition tables */ 114 1.19 joerg static int dflag; /* print disktab entry */ 115 1.1 cgd 116 1.19 joerg static int gettype(const char *, const char *const *); 117 1.19 joerg static struct disklabel *promptfordisk(const char *); 118 1.19 joerg __dead static void usage(void); 119 1.1 cgd 120 1.8 lukem int 121 1.19 joerg main(int argc, char *argv[]) 122 1.1 cgd { 123 1.1 cgd struct disklabel *dp; 124 1.18 lukem int spc, def, part, layout, j, ch; 125 1.18 lukem uint32_t curcyl; 126 1.21 andvar int threshold, numcyls[NPARTITIONS], startcyl[NPARTITIONS]; 127 1.8 lukem off_t totsize = 0; 128 1.16 xtraeme const char *tyname; 129 1.16 xtraeme char *lp; 130 1.1 cgd 131 1.8 lukem while ((ch = getopt(argc, argv, "pds:")) != -1) { 132 1.8 lukem switch (ch) { 133 1.8 lukem case 'd': 134 1.8 lukem dflag++; 135 1.8 lukem break; 136 1.8 lukem 137 1.8 lukem case 'p': 138 1.8 lukem pflag++; 139 1.8 lukem break; 140 1.8 lukem 141 1.8 lukem case 's': 142 1.8 lukem totsize = strtoul(optarg, &lp, 10); 143 1.8 lukem if (*lp != '\0') 144 1.8 lukem usage(); 145 1.8 lukem break; 146 1.8 lukem 147 1.8 lukem case '?': 148 1.8 lukem default: 149 1.8 lukem usage(); 150 1.8 lukem /* NOTREACHED */ 151 1.8 lukem } 152 1.1 cgd } 153 1.8 lukem argc -= optind; 154 1.8 lukem argv += optind; 155 1.8 lukem 156 1.8 lukem if (argc != 1) { 157 1.8 lukem usage(); 158 1.8 lukem /* NOTREACHED */ 159 1.1 cgd } 160 1.8 lukem 161 1.1 cgd dp = getdiskbyname(*argv); 162 1.1 cgd if (dp == NULL) { 163 1.1 cgd if (isatty(0)) 164 1.1 cgd dp = promptfordisk(*argv); 165 1.1 cgd if (dp == NULL) { 166 1.1 cgd fprintf(stderr, "%s: unknown disk type\n", *argv); 167 1.8 lukem exit(1); 168 1.1 cgd } 169 1.1 cgd } 170 1.8 lukem if (dp->d_flags & D_REMOVABLE) 171 1.8 lukem tyname = "removable"; 172 1.8 lukem else if (dp->d_flags & D_RAMDISK) 173 1.8 lukem tyname = "simulated"; 174 1.8 lukem else 175 1.8 lukem tyname = "winchester"; 176 1.1 cgd spc = dp->d_secpercyl; 177 1.1 cgd /* 178 1.1 cgd * Bad sector table contains one track for the replicated 179 1.1 cgd * copies of the table and enough full tracks preceding 180 1.1 cgd * the last track to hold the pool of free blocks to which 181 1.1 cgd * bad sectors are mapped. 182 1.1 cgd * If disk size was specified explicitly, use specified size. 183 1.1 cgd */ 184 1.20 christos if (dp->d_type == DKTYPE_SMD && dp->d_flags & D_BADSECT && 185 1.1 cgd totsize == 0) { 186 1.1 cgd badsecttable = dp->d_nsectors + 187 1.1 cgd roundup(badsecttable, dp->d_nsectors); 188 1.21 andvar threshold = howmany(spc, badsecttable); 189 1.1 cgd } else { 190 1.1 cgd badsecttable = 0; 191 1.21 andvar threshold = 0; 192 1.1 cgd } 193 1.1 cgd /* 194 1.1 cgd * If disk size was specified, recompute number of cylinders 195 1.1 cgd * that may be used, and set badsecttable to any remaining 196 1.1 cgd * fraction of the last cylinder. 197 1.1 cgd */ 198 1.1 cgd if (totsize != 0) { 199 1.1 cgd dp->d_ncylinders = howmany(totsize, spc); 200 1.1 cgd badsecttable = spc * dp->d_ncylinders - totsize; 201 1.1 cgd } 202 1.1 cgd 203 1.1 cgd /* 204 1.1 cgd * Figure out if disk is large enough for 205 1.1 cgd * expanded swap area and 'd', 'e', and 'f' 206 1.1 cgd * partitions. Otherwise, use smaller defaults 207 1.1 cgd * based on RK07. 208 1.1 cgd */ 209 1.1 cgd for (def = 0; def < NDEFAULTS; def++) { 210 1.1 cgd curcyl = 0; 211 1.1 cgd for (part = PART('a'); part < NPARTITIONS; part++) 212 1.1 cgd curcyl += howmany(defpart[def][part], spc); 213 1.21 andvar if (curcyl < dp->d_ncylinders - threshold) 214 1.1 cgd break; 215 1.1 cgd } 216 1.1 cgd if (def >= NDEFAULTS) { 217 1.1 cgd fprintf(stderr, "%s: disk too small, calculate by hand\n", 218 1.1 cgd *argv); 219 1.8 lukem exit(1); 220 1.1 cgd } 221 1.1 cgd 222 1.1 cgd /* 223 1.1 cgd * Calculate number of cylinders allocated to each disk 224 1.1 cgd * partition. We may waste a bit of space here, but it's 225 1.1 cgd * in the interest of (very backward) compatibility 226 1.1 cgd * (for mixed disk systems). 227 1.1 cgd */ 228 1.1 cgd for (curcyl = 0, part = PART('a'); part < NPARTITIONS; part++) { 229 1.1 cgd numcyls[part] = 0; 230 1.1 cgd if (defpart[def][part] != 0) { 231 1.1 cgd numcyls[part] = howmany(defpart[def][part], spc); 232 1.1 cgd curcyl += numcyls[part]; 233 1.1 cgd } 234 1.1 cgd } 235 1.1 cgd numcyls[PART('f')] = dp->d_ncylinders - curcyl; 236 1.1 cgd numcyls[PART('g')] = 237 1.1 cgd numcyls[PART('d')] + numcyls[PART('e')] + numcyls[PART('f')]; 238 1.1 cgd numcyls[PART('c')] = dp->d_ncylinders; 239 1.1 cgd defpart[def][PART('f')] = numcyls[PART('f')] * spc - badsecttable; 240 1.1 cgd defpart[def][PART('g')] = numcyls[PART('g')] * spc - badsecttable; 241 1.1 cgd defpart[def][PART('c')] = numcyls[PART('c')] * spc; 242 1.1 cgd #ifndef for_now 243 1.1 cgd if (totsize || !pflag) 244 1.1 cgd #else 245 1.1 cgd if (totsize) 246 1.1 cgd #endif 247 1.1 cgd defpart[def][PART('c')] -= badsecttable; 248 1.1 cgd 249 1.1 cgd /* 250 1.1 cgd * Calculate starting cylinder number for each partition. 251 1.1 cgd * Note the 'h' partition is physically located before the 252 1.1 cgd * 'g' or 'd' partition. This is reflected in the layout 253 1.1 cgd * arrays defined above. 254 1.1 cgd */ 255 1.1 cgd for (layout = 0; layout < NLAYOUTS; layout++) { 256 1.1 cgd curcyl = 0; 257 1.1 cgd for (lp = layouts[layout]; *lp != 0; lp++) { 258 1.1 cgd startcyl[PART(*lp)] = curcyl; 259 1.1 cgd curcyl += numcyls[PART(*lp)]; 260 1.1 cgd } 261 1.1 cgd } 262 1.1 cgd 263 1.1 cgd if (pflag) { 264 1.1 cgd printf("}, %s_sizes[%d] = {\n", dp->d_typename, NPARTITIONS); 265 1.1 cgd for (part = PART('a'); part < NPARTITIONS; part++) { 266 1.1 cgd if (numcyls[part] == 0) { 267 1.1 cgd printf("\t0,\t0,\n"); 268 1.1 cgd continue; 269 1.1 cgd } 270 1.20 christos if (dp->d_type != DKTYPE_MSCP) { 271 1.1 cgd printf("\t%d,\t%d,\t\t/* %c=cyl %d thru %d */\n", 272 1.1 cgd defpart[def][part], startcyl[part], 273 1.1 cgd 'A' + part, startcyl[part], 274 1.1 cgd startcyl[part] + numcyls[part] - 1); 275 1.1 cgd continue; 276 1.1 cgd } 277 1.1 cgd printf("\t%d,\t%d,\t\t/* %c=sectors %d thru %d */\n", 278 1.1 cgd defpart[def][part], spc * startcyl[part], 279 1.1 cgd 'A' + part, spc * startcyl[part], 280 1.1 cgd spc * startcyl[part] + defpart[def][part] - 1); 281 1.1 cgd } 282 1.1 cgd exit(0); 283 1.1 cgd } 284 1.1 cgd if (dflag) { 285 1.1 cgd int nparts; 286 1.1 cgd 287 1.1 cgd /* 288 1.1 cgd * In case the disk is in the ``in-between'' range 289 1.1 cgd * where the 'g' partition is smaller than the 'h' 290 1.1 cgd * partition, reverse the frag sizes so the /usr partition 291 1.1 cgd * is always set up with a frag size larger than the 292 1.1 cgd * user's partition. 293 1.1 cgd */ 294 1.1 cgd if (defpart[def][PART('g')] < defpart[def][PART('h')]) { 295 1.1 cgd int temp; 296 1.1 cgd 297 1.1 cgd temp = defparam[PART('h')].p_fsize; 298 1.1 cgd defparam[PART('h')].p_fsize = 299 1.1 cgd defparam[PART('g')].p_fsize; 300 1.1 cgd defparam[PART('g')].p_fsize = temp; 301 1.1 cgd } 302 1.1 cgd printf("%s:\\\n", dp->d_typename); 303 1.1 cgd printf("\t:ty=%s:ns#%d:nt#%d:nc#%d:", tyname, 304 1.1 cgd dp->d_nsectors, dp->d_ntracks, dp->d_ncylinders); 305 1.1 cgd if (dp->d_secpercyl != dp->d_nsectors * dp->d_ntracks) 306 1.1 cgd printf("sc#%d:", dp->d_secpercyl); 307 1.20 christos if (dp->d_type == DKTYPE_SMD && dp->d_flags & D_BADSECT) 308 1.1 cgd printf("sf:"); 309 1.1 cgd printf("\\\n\t:dt=%s:", dktypenames[dp->d_type]); 310 1.1 cgd for (part = NDDATA - 1; part >= 0; part--) 311 1.1 cgd if (dp->d_drivedata[part]) 312 1.1 cgd break; 313 1.1 cgd for (j = 0; j <= part; j++) 314 1.1 cgd printf("d%d#%d:", j, dp->d_drivedata[j]); 315 1.1 cgd printf("\\\n"); 316 1.1 cgd for (nparts = 0, part = PART('a'); part < NPARTITIONS; part++) 317 1.1 cgd if (defpart[def][part] != 0) 318 1.1 cgd nparts++; 319 1.1 cgd for (part = PART('a'); part < NPARTITIONS; part++) { 320 1.1 cgd if (defpart[def][part] == 0) 321 1.1 cgd continue; 322 1.1 cgd printf("\t:p%c#%d:", 'a' + part, defpart[def][part]); 323 1.1 cgd printf("o%c#%d:b%c#%d:f%c#%d:", 324 1.1 cgd 'a' + part, spc * startcyl[part], 325 1.1 cgd 'a' + part, 326 1.1 cgd defparam[part].p_frag * defparam[part].p_fsize, 327 1.1 cgd 'a' + part, defparam[part].p_fsize); 328 1.1 cgd if (defparam[part].p_fstype == FS_SWAP) 329 1.1 cgd printf("t%c=swap:", 'a' + part); 330 1.1 cgd nparts--; 331 1.1 cgd printf("%s\n", nparts > 0 ? "\\" : ""); 332 1.1 cgd } 333 1.1 cgd #ifdef for_now 334 1.1 cgd defpart[def][PART('c')] -= badsecttable; 335 1.1 cgd part = PART('c'); 336 1.1 cgd printf("#\t:p%c#%d:", 'a' + part, defpart[def][part]); 337 1.1 cgd printf("o%c#%d:b%c#%d:f%c#%d:\n", 338 1.1 cgd 'a' + part, spc * startcyl[part], 339 1.1 cgd 'a' + part, 340 1.1 cgd defparam[part].p_frag * defparam[part].p_fsize, 341 1.1 cgd 'a' + part, defparam[part].p_fsize); 342 1.1 cgd #endif 343 1.1 cgd exit(0); 344 1.1 cgd } 345 1.1 cgd printf("%s: #sectors/track=%d, #tracks/cylinder=%d #cylinders=%d\n", 346 1.1 cgd dp->d_typename, dp->d_nsectors, dp->d_ntracks, 347 1.1 cgd dp->d_ncylinders); 348 1.1 cgd printf("\n Partition\t Size\t Offset\t Range\n"); 349 1.1 cgd for (part = PART('a'); part < NPARTITIONS; part++) { 350 1.1 cgd printf("\t%c\t", 'a' + part); 351 1.1 cgd if (numcyls[part] == 0) { 352 1.1 cgd printf(" unused\n"); 353 1.1 cgd continue; 354 1.1 cgd } 355 1.1 cgd printf("%7d\t%7d\t%4d - %d%s\n", 356 1.1 cgd defpart[def][part], startcyl[part] * spc, 357 1.1 cgd startcyl[part], startcyl[part] + numcyls[part] - 1, 358 1.1 cgd defpart[def][part] % spc ? "*" : ""); 359 1.1 cgd } 360 1.8 lukem exit(0); 361 1.1 cgd } 362 1.1 cgd 363 1.19 joerg static struct disklabel disk; 364 1.1 cgd 365 1.19 joerg static struct field { 366 1.16 xtraeme const char *f_name; 367 1.16 xtraeme const char *f_defaults; 368 1.7 mikel u_int32_t *f_location; 369 1.1 cgd } fields[] = { 370 1.1 cgd { "sector size", "512", &disk.d_secsize }, 371 1.16 xtraeme { "#sectors/track", NULL, &disk.d_nsectors }, 372 1.16 xtraeme { "#tracks/cylinder", NULL, &disk.d_ntracks }, 373 1.16 xtraeme { "#cylinders", NULL, &disk.d_ncylinders }, 374 1.16 xtraeme { NULL, NULL, 0 }, 375 1.1 cgd }; 376 1.1 cgd 377 1.19 joerg static struct disklabel * 378 1.19 joerg promptfordisk(const char *name) 379 1.1 cgd { 380 1.8 lukem struct disklabel *dp = &disk; 381 1.8 lukem struct field *fp; 382 1.8 lukem int i; 383 1.10 mycroft const char *const *tp; 384 1.10 mycroft char buf[BUFSIZ], *cp; 385 1.1 cgd 386 1.1 cgd strncpy(dp->d_typename, name, sizeof(dp->d_typename)); 387 1.1 cgd fprintf(stderr, 388 1.1 cgd "%s: unknown disk type, want to supply parameters (y/n)? ", 389 1.1 cgd name); 390 1.8 lukem if ((fgets(buf, BUFSIZ, stdin) == NULL) || buf[0] != 'y') 391 1.1 cgd return ((struct disklabel *)0); 392 1.1 cgd for (;;) { 393 1.1 cgd fprintf(stderr, "Disk/controller type (%s)? ", dktypenames[1]); 394 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 395 1.8 lukem return ((struct disklabel *)0); 396 1.8 lukem if ((cp = strchr(buf, '\n')) != NULL) 397 1.8 lukem *cp = '\0'; 398 1.8 lukem if (buf[0] == '\0') { 399 1.1 cgd dp->d_type = 1; 400 1.1 cgd break; 401 1.7 mikel } 402 1.7 mikel if ((i = gettype(buf, dktypenames)) >= 0) { 403 1.7 mikel dp->d_type = i; 404 1.7 mikel break; 405 1.7 mikel } 406 1.1 cgd fprintf(stderr, "%s: unrecognized controller type\n", buf); 407 1.8 lukem fprintf(stderr, "use one of:\n"); 408 1.1 cgd for (tp = dktypenames; *tp; tp++) 409 1.7 mikel if (strchr(*tp, ' ') == 0) 410 1.1 cgd fprintf(stderr, "\t%s\n", *tp); 411 1.1 cgd } 412 1.1 cgd gettype: 413 1.1 cgd dp->d_flags = 0; 414 1.1 cgd fprintf(stderr, "type (winchester|removable|simulated)? "); 415 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 416 1.8 lukem return ((struct disklabel *)0); 417 1.8 lukem if ((cp = strchr(buf, '\n')) != NULL) 418 1.8 lukem *cp = '\0'; 419 1.8 lukem if (buf[0] == '\0') 420 1.8 lukem goto gettype; 421 1.8 lukem switch (buf[0]) { 422 1.8 lukem case 'r': 423 1.1 cgd dp->d_flags = D_REMOVABLE; 424 1.8 lukem break; 425 1.8 lukem case 's': 426 1.1 cgd dp->d_flags = D_RAMDISK; 427 1.8 lukem break; 428 1.8 lukem case 'w': 429 1.8 lukem break; 430 1.8 lukem default: 431 1.1 cgd fprintf(stderr, "%s: bad disk type\n", buf); 432 1.8 lukem /* FALLTHROUGH */ 433 1.8 lukem case '\0': 434 1.1 cgd goto gettype; 435 1.1 cgd } 436 1.1 cgd fprintf(stderr, "(type <cr> to get default value, if only one)\n"); 437 1.20 christos if (dp->d_type == DKTYPE_SMD) { 438 1.8 lukem fprintf(stderr, 439 1.8 lukem "Do '%s' disks support bad144 bad block forwarding (yes)? ", 440 1.8 lukem dp->d_typename); 441 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 442 1.8 lukem return ((struct disklabel *)0); 443 1.8 lukem if (buf[0] != 'n') 444 1.8 lukem dp->d_flags |= D_BADSECT; 445 1.8 lukem } 446 1.1 cgd for (fp = fields; fp->f_name != NULL; fp++) { 447 1.1 cgd again: 448 1.1 cgd fprintf(stderr, "%s ", fp->f_name); 449 1.1 cgd if (fp->f_defaults != NULL) 450 1.1 cgd fprintf(stderr, "(%s)", fp->f_defaults); 451 1.1 cgd fprintf(stderr, "? "); 452 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 453 1.8 lukem return ((struct disklabel *)0); 454 1.8 lukem if ((cp = strchr(buf, '\n')) != NULL) 455 1.8 lukem *cp = '\0'; 456 1.8 lukem cp = buf; 457 1.1 cgd if (*cp == '\0') { 458 1.1 cgd if (fp->f_defaults == NULL) { 459 1.1 cgd fprintf(stderr, "no default value\n"); 460 1.1 cgd goto again; 461 1.1 cgd } 462 1.16 xtraeme /* XXX __UNCONST */ 463 1.16 xtraeme cp = __UNCONST(fp->f_defaults); 464 1.1 cgd } 465 1.1 cgd *fp->f_location = atol(cp); 466 1.1 cgd if (*fp->f_location == 0) { 467 1.1 cgd fprintf(stderr, "%s: bad value\n", cp); 468 1.1 cgd goto again; 469 1.1 cgd } 470 1.1 cgd } 471 1.1 cgd fprintf(stderr, "sectors/cylinder (%d)? ", 472 1.1 cgd dp->d_nsectors * dp->d_ntracks); 473 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 474 1.8 lukem return ((struct disklabel *)0); 475 1.8 lukem if ((cp = strchr(buf, '\n')) != NULL) 476 1.8 lukem *cp = '\0'; 477 1.1 cgd if (buf[0] == 0) 478 1.1 cgd dp->d_secpercyl = dp->d_nsectors * dp->d_ntracks; 479 1.1 cgd else 480 1.1 cgd dp->d_secpercyl = atol(buf); 481 1.1 cgd fprintf(stderr, "Drive-type-specific parameters, <cr> to terminate:\n"); 482 1.1 cgd for (i = 0; i < NDDATA; i++) { 483 1.1 cgd fprintf(stderr, "d%d? ", i); 484 1.8 lukem if (fgets(buf, BUFSIZ, stdin) == NULL) 485 1.8 lukem return ((struct disklabel *)0); 486 1.8 lukem if ((cp = strchr(buf, '\n')) != NULL) 487 1.8 lukem *cp = '\0'; 488 1.1 cgd if (buf[0] == 0) 489 1.1 cgd break; 490 1.1 cgd dp->d_drivedata[i] = atol(buf); 491 1.1 cgd } 492 1.1 cgd return (dp); 493 1.1 cgd } 494 1.1 cgd 495 1.19 joerg static int 496 1.19 joerg gettype(const char *t, const char *const *names) 497 1.1 cgd { 498 1.10 mycroft const char *const *nm; 499 1.1 cgd 500 1.1 cgd for (nm = names; *nm; nm++) 501 1.8 lukem if (strcasecmp(t, *nm) == 0) 502 1.1 cgd return (nm - names); 503 1.15 dsl if (isdigit((unsigned char)*t)) 504 1.1 cgd return (atoi(t)); 505 1.1 cgd return (-1); 506 1.1 cgd } 507 1.1 cgd 508 1.19 joerg static void 509 1.8 lukem usage(void) 510 1.1 cgd { 511 1.14 jmmv (void)fprintf(stderr, "usage: diskpart [-dp] [-s size] disk-type\n"); 512 1.8 lukem exit(1); 513 1.1 cgd } 514