xref: /freebsd/sbin/fdisk/fdisk.c (revision 70fe064ad7cab6c0444b91622f60ec6a462f308a)
1 /*
2  * Mach Operating System
3  * Copyright (c) 1992 Carnegie Mellon University
4  * All Rights Reserved.
5  *
6  * Permission to use, copy, modify and distribute this software and its
7  * documentation is hereby granted, provided that both the copyright
8  * notice and this permission notice appear in all copies of the
9  * software, derivative works or modified versions, and any portions
10  * thereof, and that both notices appear in supporting documentation.
11  *
12  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
13  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
14  * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
15  *
16  * Carnegie Mellon requests users of this software to return to
17  *
18  *  Software Distribution Coordinator  or  Software.Distribution@CS.CMU.EDU
19  *  School of Computer Science
20  *  Carnegie Mellon University
21  *  Pittsburgh PA 15213-3890
22  *
23  * any improvements or extensions that they make and grant Carnegie Mellon
24  * the rights to redistribute these changes.
25  */
26 
27 #ifndef lint
28 static const char rcsid[] =
29   "$FreeBSD$";
30 #endif /* not lint */
31 
32 #include <sys/disklabel.h>
33 #include <sys/param.h>
34 #include <sys/stat.h>
35 #include <sys/mount.h>
36 #include <ctype.h>
37 #include <fcntl.h>
38 #include <err.h>
39 #include <errno.h>
40 #include <paths.h>
41 #include <regex.h>
42 #include <stdio.h>
43 #include <stdlib.h>
44 #include <string.h>
45 #include <unistd.h>
46 
47 int iotest;
48 
49 #define LBUF 100
50 static char lbuf[LBUF];
51 
52 #define MBRSIGOFF	510
53 
54 /*
55  *
56  * Ported to 386bsd by Julian Elischer  Thu Oct 15 20:26:46 PDT 1992
57  *
58  * 14-Dec-89  Robert Baron (rvb) at Carnegie-Mellon University
59  *	Copyright (c) 1989	Robert. V. Baron
60  *	Created.
61  */
62 
63 #define Decimal(str, ans, tmp) if (decimal(str, &tmp, ans)) ans = tmp
64 #define Hex(str, ans, tmp) if (hex(str, &tmp, ans)) ans = tmp
65 #define String(str, ans, len) {char *z = ans; char **dflt = &z; if (string(str, dflt)) strncpy(ans, *dflt, len); }
66 
67 #define RoundCyl(x) ((((x) + cylsecs - 1) / cylsecs) * cylsecs)
68 
69 #define MAX_SEC_SIZE 2048	/* maximum section size that is supported */
70 #define MIN_SEC_SIZE 512	/* the sector size to start sensing at */
71 int secsize = 0;		/* the sensed sector size */
72 
73 char *disk;
74 
75 struct disklabel disklabel;		/* disk parameters */
76 
77 int cyls, sectors, heads, cylsecs, disksecs;
78 
79 struct mboot
80 {
81 	unsigned char padding[2]; /* force the longs to be long aligned */
82   	unsigned char *bootinst;  /* boot code */
83   	off_t bootinst_size;
84 	struct	dos_partition parts[4];
85 };
86 struct mboot mboot = {{0}, NULL, 0};
87 
88 #define ACTIVE 0x80
89 #define BOOT_MAGIC 0xAA55
90 
91 int dos_cyls;
92 int dos_heads;
93 int dos_sectors;
94 int dos_cylsecs;
95 
96 #define DOSSECT(s,c) ((s & 0x3f) | ((c >> 2) & 0xc0))
97 #define DOSCYL(c)	(c & 0xff)
98 static int partition = -1;
99 
100 
101 #define MAX_ARGS	10
102 
103 static int	current_line_number;
104 
105 static int	geom_processed = 0;
106 static int	part_processed = 0;
107 static int	active_processed = 0;
108 
109 
110 typedef struct cmd {
111     char		cmd;
112     int			n_args;
113     struct arg {
114 	char	argtype;
115 	int	arg_val;
116     }			args[MAX_ARGS];
117 } CMD;
118 
119 
120 static int B_flag  = 0;		/* replace boot code */
121 static int I_flag  = 0;		/* use entire disk for FreeBSD */
122 static int a_flag  = 0;		/* set active partition */
123 static char *b_flag = NULL;	/* path to boot code */
124 static int i_flag  = 0;		/* replace partition data */
125 static int u_flag  = 0;		/* update partition data */
126 static int s_flag  = 0;		/* Print a summary and exit */
127 static int t_flag  = 0;		/* test only, if f_flag is given */
128 static char *f_flag = NULL;	/* Read config info from file */
129 static int v_flag  = 0;		/* Be verbose */
130 
131 struct part_type
132 {
133  unsigned char type;
134  char *name;
135 }part_types[] =
136 {
137 	 {0x00, "unused"}
138 	,{0x01, "Primary DOS with 12 bit FAT"}
139 	,{0x02, "XENIX / filesystem"}
140 	,{0x03, "XENIX /usr filesystem"}
141 	,{0x04, "Primary DOS with 16 bit FAT (<= 32MB)"}
142 	,{0x05, "Extended DOS"}
143 	,{0x06, "Primary 'big' DOS (> 32MB)"}
144 	,{0x07, "OS/2 HPFS, NTFS, QNX-2 (16 bit) or Advanced UNIX"}
145 	,{0x08, "AIX filesystem"}
146 	,{0x09, "AIX boot partition or Coherent"}
147 	,{0x0A, "OS/2 Boot Manager or OPUS"}
148 	,{0x0B, "DOS or Windows 95 with 32 bit FAT"}
149 	,{0x0C, "DOS or Windows 95 with 32 bit FAT, LBA"}
150 	,{0x0E, "Primary 'big' DOS (> 32MB, LBA)"}
151 	,{0x0F, "Extended DOS, LBA"}
152 	,{0x10, "OPUS"}
153 	,{0x39, "plan9"}
154 	,{0x40, "VENIX 286"}
155 	,{0x4D, "QNX 4.2 Primary"}
156 	,{0x4E, "QNX 4.2 Secondary"}
157 	,{0x4F, "QNX 4.2 Tertiary"}
158 	,{0x50, "DM"}
159 	,{0x51, "DM"}
160 	,{0x52, "CP/M or Microport SysV/AT"}
161 	,{0x56, "GB"}
162 	,{0x61, "Speed"}
163 	,{0x63, "ISC UNIX, other System V/386, GNU HURD or Mach"}
164 	,{0x64, "Novell Netware 2.xx"}
165 	,{0x65, "Novell Netware 3.xx"}
166 	,{0x75, "PCIX"}
167 	,{0x80, "Minix 1.1 ... 1.4a"}
168 	,{0x81, "Minix 1.4b ... 1.5.10"}
169 	,{0x82, "Linux swap or Solaris x86"}
170 	,{0x83, "Linux filesystem"}
171 	,{0x93, "Amoeba filesystem"}
172 	,{0x94, "Amoeba bad block table"}
173 	,{0x9F, "BSD/OS"}
174 	,{0xA0, "Suspend to Disk"}
175 	,{0xA5, "FreeBSD/NetBSD/386BSD"}
176 	,{0xA6, "OpenBSD"}
177 	,{0xA7, "NEXTSTEP"}
178 	,{0xA9, "NetBSD"}
179 	,{0xB7, "BSDI BSD/386 filesystem"}
180 	,{0xB8, "BSDI BSD/386 swap"}
181 	,{0xDB, "Concurrent CPM or C.DOS or CTOS"}
182 	,{0xE1, "Speed"}
183 	,{0xE3, "Speed"}
184 	,{0xE4, "Speed"}
185 	,{0xEE, "EFI GPT"}
186 	,{0xEF, "EFI System Partition"}
187 	,{0xF1, "Speed"}
188 	,{0xF2, "DOS 3.3+ Secondary"}
189 	,{0xF4, "Speed"}
190 	,{0xFF, "BBT (Bad Blocks Table)"}
191 };
192 
193 static void print_s0(int which);
194 static void print_part(int i);
195 static void init_sector0(unsigned long start);
196 static void init_boot(void);
197 static void change_part(int i);
198 static void print_params();
199 static void change_active(int which);
200 static void change_code();
201 static void get_params_to_use();
202 static char *get_rootdisk(void);
203 static void dos(struct dos_partition *partp);
204 static int open_disk(int u_flag);
205 static ssize_t read_disk(off_t sector, void *buf);
206 static ssize_t write_disk(off_t sector, void *buf);
207 static int get_params();
208 static int read_s0();
209 static int write_s0();
210 static int ok(char *str);
211 static int decimal(char *str, int *num, int deflt);
212 static char *get_type(int type);
213 static int read_config(char *config_file);
214 static void reset_boot(void);
215 static int sanitize_partition(struct dos_partition *);
216 static void usage(void);
217 #if 0
218 static int hex(char *str, int *num, int deflt);
219 static int string(char *str, char **ans);
220 #endif
221 
222 
223 int
224 main(int argc, char *argv[])
225 {
226 	struct	stat sb;
227 	int	c, i;
228 
229 	while ((c = getopt(argc, argv, "BIab:f:istuv1234")) != -1)
230 		switch (c) {
231 		case 'B':
232 			B_flag = 1;
233 			break;
234 		case 'I':
235 			I_flag = 1;
236 			break;
237 		case 'a':
238 			a_flag = 1;
239 			break;
240 		case 'b':
241 			b_flag = optarg;
242 			break;
243 		case 'f':
244 			f_flag = optarg;
245 			break;
246 		case 'i':
247 			i_flag = 1;
248 			break;
249 		case 's':
250 			s_flag = 1;
251 			break;
252 		case 't':
253 			t_flag = 1;
254 			break;
255 		case 'u':
256 			u_flag = 1;
257 			break;
258 		case 'v':
259 			v_flag = 1;
260 			break;
261 		case '1':
262 		case '2':
263 		case '3':
264 		case '4':
265 			partition = c - '0';
266 			break;
267 		default:
268 			usage();
269 		}
270 	if (f_flag || i_flag)
271 		u_flag = 1;
272 	if (t_flag)
273 		v_flag = 1;
274 	argc -= optind;
275 	argv += optind;
276 
277 	if (argc == 0) {
278 		disk = get_rootdisk();
279 	} else {
280 		if (stat(argv[0], &sb) == 0) {
281 			/* OK, full pathname given */
282 			disk = argv[0];
283 		} else if (errno == ENOENT) {
284 			/* Try prepending "/dev" */
285 			if ((disk = malloc(strlen(argv[0]) + strlen(_PATH_DEV) +
286 			     1)) == NULL)
287 				errx(1, "out of memory");
288 			strcpy(disk, _PATH_DEV);
289 			strcat(disk, argv[0]);
290 		} else {
291 			/* other stat error, let it fail below */
292 			disk = argv[0];
293 		}
294 	}
295 	if (open_disk(u_flag) < 0)
296 		err(1, "cannot open disk %s", disk);
297 
298 	/* (abu)use mboot.bootinst to probe for the sector size */
299 	if ((mboot.bootinst = malloc(MAX_SEC_SIZE)) == NULL)
300 		err(1, "cannot allocate buffer to determine disk sector size");
301 	read_disk(0, mboot.bootinst);
302 	free(mboot.bootinst);
303 	mboot.bootinst = NULL;
304 
305 	if (s_flag)
306 	{
307 		int i;
308 		struct dos_partition *partp;
309 
310 		if (read_s0())
311 			err(1, "read_s0");
312 		printf("%s: %d cyl %d hd %d sec\n", disk, dos_cyls, dos_heads,
313 		    dos_sectors);
314 		printf("Part  %11s %11s Type Flags\n", "Start", "Size");
315 		for (i = 0; i < NDOSPART; i++) {
316 			partp = ((struct dos_partition *) &mboot.parts) + i;
317 			if (partp->dp_start == 0 && partp->dp_size == 0)
318 				continue;
319 			printf("%4d: %11lu %11lu 0x%02x 0x%02x\n", i + 1,
320 			    (u_long) partp->dp_start,
321 			    (u_long) partp->dp_size, partp->dp_typ,
322 			    partp->dp_flag);
323 		}
324 		exit(0);
325 	}
326 
327 	printf("******* Working on device %s *******\n",disk);
328 
329 	if (I_flag)
330 	{
331 		struct dos_partition *partp;
332 
333 		read_s0();
334 		reset_boot();
335 		partp = (struct dos_partition *) (&mboot.parts[0]);
336 		partp->dp_typ = DOSPTYP_386BSD;
337 		partp->dp_flag = ACTIVE;
338 		partp->dp_start = dos_sectors;
339 		partp->dp_size = (disksecs / dos_cylsecs) * dos_cylsecs -
340 		    dos_sectors;
341 
342 		dos(partp);
343 		if (v_flag)
344 			print_s0(-1);
345 		write_s0();
346 		exit(0);
347 	}
348 	if (f_flag)
349 	{
350 	    if (read_s0() || i_flag)
351 	    {
352 		reset_boot();
353 	    }
354 
355 	    if (!read_config(f_flag))
356 	    {
357 		exit(1);
358 	    }
359 	    if (v_flag)
360 	    {
361 		print_s0(-1);
362 	    }
363 	    if (!t_flag)
364 	    {
365 		write_s0();
366 	    }
367 	}
368 	else
369 	{
370 	    if(u_flag)
371 	    {
372 		get_params_to_use();
373 	    }
374 	    else
375 	    {
376 		print_params();
377 	    }
378 
379 	    if (read_s0())
380 		init_sector0(dos_sectors);
381 
382 	    printf("Media sector size is %d\n", secsize);
383 	    printf("Warning: BIOS sector numbering starts with sector 1\n");
384 	    printf("Information from DOS bootblock is:\n");
385 	    if (partition == -1)
386 		for (i = 1; i <= NDOSPART; i++)
387 		    change_part(i);
388 	    else
389 		change_part(partition);
390 
391 	    if (u_flag || a_flag)
392 		change_active(partition);
393 
394 	    if (B_flag)
395 		change_code();
396 
397 	    if (u_flag || a_flag || B_flag) {
398 		if (!t_flag)
399 		{
400 		    printf("\nWe haven't changed the partition table yet.  ");
401 		    printf("This is your last chance.\n");
402 		}
403 		print_s0(-1);
404 		if (!t_flag)
405 		{
406 		    if (ok("Should we write new partition table?"))
407 			write_s0();
408 		}
409 		else
410 		{
411 		    printf("\n-t flag specified -- partition table not written.\n");
412 		}
413 	    }
414 	}
415 
416 	exit(0);
417 }
418 
419 static void
420 usage()
421 {
422 	fprintf(stderr, "%s%s",
423 		"usage: fdisk [-BIaistu] [-b bootcode] [-1234] [disk]\n",
424  		"       fdisk -f configfile [-itv] [disk]\n");
425         exit(1);
426 }
427 
428 static void
429 print_s0(int which)
430 {
431 int	i;
432 
433 	print_params();
434 	printf("Information from DOS bootblock is:\n");
435 	if (which == -1)
436 		for (i = 1; i <= NDOSPART; i++)
437 			printf("%d: ", i), print_part(i);
438 	else
439 		print_part(which);
440 }
441 
442 static struct dos_partition mtpart = { 0 };
443 
444 static void
445 print_part(int i)
446 {
447 	struct	  dos_partition *partp;
448 	u_int64_t part_mb;
449 
450 	partp = ((struct dos_partition *) &mboot.parts) + i - 1;
451 
452 	if (!bcmp(partp, &mtpart, sizeof (struct dos_partition))) {
453 		printf("<UNUSED>\n");
454 		return;
455 	}
456 	/*
457 	 * Be careful not to overflow.
458 	 */
459 	part_mb = partp->dp_size;
460 	part_mb *= secsize;
461 	part_mb /= (1024 * 1024);
462 	printf("sysid %d,(%s)\n", partp->dp_typ, get_type(partp->dp_typ));
463 	printf("    start %lu, size %lu (%qd Meg), flag %x%s\n",
464 		(u_long)partp->dp_start,
465 		(u_long)partp->dp_size,
466 		part_mb,
467 		partp->dp_flag,
468 		partp->dp_flag == ACTIVE ? " (active)" : "");
469 	printf("\tbeg: cyl %d/ head %d/ sector %d;\n\tend: cyl %d/ head %d/ sector %d\n"
470 		,DPCYL(partp->dp_scyl, partp->dp_ssect)
471 		,partp->dp_shd
472 		,DPSECT(partp->dp_ssect)
473 		,DPCYL(partp->dp_ecyl, partp->dp_esect)
474 		,partp->dp_ehd
475 		,DPSECT(partp->dp_esect));
476 }
477 
478 
479 static void
480 init_boot(void)
481 {
482 	const char *fname;
483 	int fd, n;
484 	struct stat sb;
485 
486 	fname = b_flag ? b_flag : "/boot/mbr";
487 	if ((fd = open(fname, O_RDONLY)) == -1 ||
488 	    fstat(fd, &sb) == -1)
489 		err(1, "%s", fname);
490 	if ((mboot.bootinst_size = sb.st_size) % secsize != 0)
491 		errx(1, "%s: length must be a multiple of sector size", fname);
492 	if (mboot.bootinst != NULL)
493 		free(mboot.bootinst);
494 	if ((mboot.bootinst = malloc(mboot.bootinst_size = sb.st_size)) == NULL)
495 		errx(1, "%s: unable to allocate read buffer", fname);
496 	if ((n = read(fd, mboot.bootinst, mboot.bootinst_size)) == -1 ||
497 	    close(fd))
498 		err(1, "%s", fname);
499 	if (n != mboot.bootinst_size)
500 		errx(1, "%s: short read", fname);
501 }
502 
503 
504 static void
505 init_sector0(unsigned long start)
506 {
507 struct dos_partition *partp = (struct dos_partition *) (&mboot.parts[3]);
508 
509 	init_boot();
510 
511 	partp->dp_typ = DOSPTYP_386BSD;
512 	partp->dp_flag = ACTIVE;
513 	start = ((start + dos_sectors - 1) / dos_sectors) * dos_sectors;
514 	if(start == 0)
515 		start = dos_sectors;
516 	partp->dp_start = start;
517 	partp->dp_size = (disksecs / dos_cylsecs) * dos_cylsecs - start;
518 
519 	dos(partp);
520 }
521 
522 static void
523 change_part(int i)
524 {
525 struct dos_partition *partp = ((struct dos_partition *) &mboot.parts) + i - 1;
526 
527     printf("The data for partition %d is:\n", i);
528     print_part(i);
529 
530     if (u_flag && ok("Do you want to change it?")) {
531 	int tmp;
532 
533 	if (i_flag) {
534 		bzero((char *)partp, sizeof (struct dos_partition));
535 		if (i == 4) {
536 			init_sector0(1);
537 			printf("\nThe static data for the DOS partition 4 has been reinitialized to:\n");
538 			print_part(i);
539 		}
540 	}
541 
542 	do {
543 		Decimal("sysid (165=FreeBSD)", partp->dp_typ, tmp);
544 		Decimal("start", partp->dp_start, tmp);
545 		Decimal("size", partp->dp_size, tmp);
546 		if (!sanitize_partition(partp)) {
547 			warnx("ERROR: failed to adjust; setting sysid to 0");
548 			partp->dp_typ = 0;
549 		}
550 
551 		if (ok("Explicitly specify beg/end address ?"))
552 		{
553 			int	tsec,tcyl,thd;
554 			tcyl = DPCYL(partp->dp_scyl,partp->dp_ssect);
555 			thd = partp->dp_shd;
556 			tsec = DPSECT(partp->dp_ssect);
557 			Decimal("beginning cylinder", tcyl, tmp);
558 			Decimal("beginning head", thd, tmp);
559 			Decimal("beginning sector", tsec, tmp);
560 			partp->dp_scyl = DOSCYL(tcyl);
561 			partp->dp_ssect = DOSSECT(tsec,tcyl);
562 			partp->dp_shd = thd;
563 
564 			tcyl = DPCYL(partp->dp_ecyl,partp->dp_esect);
565 			thd = partp->dp_ehd;
566 			tsec = DPSECT(partp->dp_esect);
567 			Decimal("ending cylinder", tcyl, tmp);
568 			Decimal("ending head", thd, tmp);
569 			Decimal("ending sector", tsec, tmp);
570 			partp->dp_ecyl = DOSCYL(tcyl);
571 			partp->dp_esect = DOSSECT(tsec,tcyl);
572 			partp->dp_ehd = thd;
573 		} else
574 			dos(partp);
575 
576 		print_part(i);
577 	} while (!ok("Are we happy with this entry?"));
578     }
579 }
580 
581 static void
582 print_params()
583 {
584 	printf("parameters extracted from in-core disklabel are:\n");
585 	printf("cylinders=%d heads=%d sectors/track=%d (%d blks/cyl)\n\n"
586 			,cyls,heads,sectors,cylsecs);
587 	if((dos_sectors > 63) || (dos_cyls > 1023) || (dos_heads > 255))
588 		printf("Figures below won't work with BIOS for partitions not in cyl 1\n");
589 	printf("parameters to be used for BIOS calculations are:\n");
590 	printf("cylinders=%d heads=%d sectors/track=%d (%d blks/cyl)\n\n"
591 		,dos_cyls,dos_heads,dos_sectors,dos_cylsecs);
592 }
593 
594 static void
595 change_active(int which)
596 {
597 	struct dos_partition *partp = &mboot.parts[0];
598 	int active, i, new, tmp;
599 
600 	active = -1;
601 	for (i = 0; i < NDOSPART; i++) {
602 		if ((partp[i].dp_flag & ACTIVE) == 0)
603 			continue;
604 		printf("Partition %d is marked active\n", i + 1);
605 		if (active == -1)
606 			active = i + 1;
607 	}
608 	if (a_flag && which != -1)
609 		active = which;
610 	else if (active == -1)
611 		active = 1;
612 
613 	if (!ok("Do you want to change the active partition?"))
614 		return;
615 setactive:
616 	do {
617 		new = active;
618 		Decimal("active partition", new, tmp);
619 		if (new < 1 || new > 4) {
620 			printf("Active partition number must be in range 1-4."
621 					"  Try again.\n");
622 			goto setactive;
623 		}
624 		active = new;
625 	} while (!ok("Are you happy with this choice"));
626 	for (i = 0; i < NDOSPART; i++)
627 		partp[i].dp_flag = 0;
628 	if (active > 0 && active <= NDOSPART)
629 		partp[active-1].dp_flag = ACTIVE;
630 }
631 
632 static void
633 change_code()
634 {
635 	if (ok("Do you want to change the boot code?"))
636 		init_boot();
637 }
638 
639 void
640 get_params_to_use()
641 {
642 	int	tmp;
643 	print_params();
644 	if (ok("Do you want to change our idea of what BIOS thinks ?"))
645 	{
646 		do
647 		{
648 			Decimal("BIOS's idea of #cylinders", dos_cyls, tmp);
649 			Decimal("BIOS's idea of #heads", dos_heads, tmp);
650 			Decimal("BIOS's idea of #sectors", dos_sectors, tmp);
651 			dos_cylsecs = dos_heads * dos_sectors;
652 			print_params();
653 		}
654 		while(!ok("Are you happy with this choice"));
655 	}
656 }
657 
658 
659 /***********************************************\
660 * Change real numbers into strange dos numbers	*
661 \***********************************************/
662 static void
663 dos(partp)
664 	struct dos_partition *partp;
665 {
666 	int cy, sec;
667 	u_int32_t end;
668 
669 	if (partp->dp_typ == 0 && partp->dp_start == 0 && partp->dp_size == 0) {
670 		memcpy(partp, &mtpart, sizeof(*partp));
671 		return;
672 	}
673 
674 	/* Start c/h/s. */
675 	partp->dp_shd = partp->dp_start % dos_cylsecs / dos_sectors;
676 	cy = partp->dp_start / dos_cylsecs;
677 	sec = partp->dp_start % dos_sectors + 1;
678 	partp->dp_scyl = DOSCYL(cy);
679 	partp->dp_ssect = DOSSECT(sec, cy);
680 
681 	/* End c/h/s. */
682 	end = partp->dp_start + partp->dp_size - 1;
683 	partp->dp_ehd = end % dos_cylsecs / dos_sectors;
684 	cy = end / dos_cylsecs;
685 	sec = end % dos_sectors + 1;
686 	partp->dp_ecyl = DOSCYL(cy);
687 	partp->dp_esect = DOSSECT(sec, cy);
688 }
689 
690 int fd;
691 
692 	/* Getting device status */
693 
694 static int
695 open_disk(int u_flag)
696 {
697 	struct stat 	st;
698 
699 	if (stat(disk, &st) == -1) {
700 		if (errno == ENOENT)
701 			return -2;
702 		warnx("can't get file status of %s", disk);
703 		return -1;
704 	}
705 	if ( !(st.st_mode & S_IFCHR) )
706 		warnx("device %s is not character special", disk);
707 	if ((fd = open(disk,
708 	    a_flag || I_flag || B_flag || u_flag ? O_RDWR : O_RDONLY)) == -1) {
709 		if(errno == ENXIO)
710 			return -2;
711 		warnx("can't open device %s", disk);
712 		return -1;
713 	}
714 	if (get_params(0) == -1) {
715 		warnx("can't get disk parameters on %s", disk);
716 		return -1;
717 	}
718 	return fd;
719 }
720 
721 static ssize_t
722 read_disk(off_t sector, void *buf)
723 {
724 	lseek(fd,(sector * 512), 0);
725 	if( secsize == 0 )
726 		for( secsize = MIN_SEC_SIZE; secsize <= MAX_SEC_SIZE; secsize *= 2 )
727 			{
728 			/* try the read */
729 			int size = read(fd, buf, secsize);
730 			if( size == secsize )
731 				/* it worked so return */
732 				return secsize;
733 			}
734 	else
735 		return read( fd, buf, secsize );
736 
737 	/* we failed to read at any of the sizes */
738 	return -1;
739 }
740 
741 static ssize_t
742 write_disk(off_t sector, void *buf)
743 {
744 	lseek(fd,(sector * 512), 0);
745 	/* write out in the size that the read_disk found worked */
746 	return write(fd, buf, secsize);
747 }
748 
749 static int
750 get_params()
751 {
752 
753     if (ioctl(fd, DIOCGDINFO, &disklabel) == -1) {
754 	warnx("can't get disk parameters on %s; supplying dummy ones", disk);
755 	dos_cyls = cyls = 1;
756 	dos_heads = heads = 1;
757 	dos_sectors = sectors = 1;
758 	dos_cylsecs = cylsecs = heads * sectors;
759 	disksecs = cyls * heads * sectors;
760 	return disksecs;
761     }
762 
763     dos_cyls = cyls = disklabel.d_ncylinders;
764     dos_heads = heads = disklabel.d_ntracks;
765     dos_sectors = sectors = disklabel.d_nsectors;
766     dos_cylsecs = cylsecs = heads * sectors;
767     disksecs = cyls * heads * sectors;
768 
769     return (disksecs);
770 }
771 
772 
773 static int
774 read_s0()
775 {
776 	mboot.bootinst_size = secsize;
777 	if (mboot.bootinst != NULL)
778 		free(mboot.bootinst);
779 	if ((mboot.bootinst = malloc(mboot.bootinst_size)) == NULL) {
780 		warnx("unable to allocate buffer to read fdisk "
781 		      "partition table");
782 		return -1;
783 	}
784 	if (read_disk(0, mboot.bootinst) == -1) {
785 		warnx("can't read fdisk partition table");
786 		return -1;
787 	}
788 	if (*(uint16_t *)&mboot.bootinst[MBRSIGOFF] != BOOT_MAGIC) {
789 		warnx("invalid fdisk partition table found");
790 		/* So should we initialize things */
791 		return -1;
792 	}
793 	memcpy(mboot.parts, &mboot.bootinst[DOSPARTOFF], sizeof(mboot.parts));
794 	return 0;
795 }
796 
797 static int
798 write_s0()
799 {
800 #ifdef NOT_NOW
801 	int	flag;
802 #endif
803 	int	sector;
804 
805 	if (iotest) {
806 		print_s0(-1);
807 		return 0;
808 	}
809 	memcpy(&mboot.bootinst[DOSPARTOFF], mboot.parts, sizeof(mboot.parts));
810 	/*
811 	 * write enable label sector before write (if necessary),
812 	 * disable after writing.
813 	 * needed if the disklabel protected area also protects
814 	 * sector 0. (e.g. empty disk)
815 	 */
816 #ifdef NOT_NOW
817 	flag = 1;
818 	if (ioctl(fd, DIOCWLABEL, &flag) < 0)
819 		warn("ioctl DIOCWLABEL");
820 #endif
821 	for(sector = 0; sector < mboot.bootinst_size / secsize; sector++)
822 		if (write_disk(sector,
823 			       &mboot.bootinst[sector * secsize]) == -1) {
824 			warn("can't write fdisk partition table");
825 			return -1;
826 #ifdef NOT_NOW
827 			flag = 0;
828 			(void) ioctl(fd, DIOCWLABEL, &flag);
829 #endif
830 		}
831 #ifdef NOT_NOW
832 	flag = 0;
833 	(void) ioctl(fd, DIOCWLABEL, &flag);
834 #endif
835 	return(0);
836 }
837 
838 
839 static int
840 ok(str)
841 char *str;
842 {
843 	printf("%s [n] ", str);
844 	fflush(stdout);
845 	if (fgets(lbuf, LBUF, stdin) == NULL)
846 		exit(1);
847 	lbuf[strlen(lbuf)-1] = 0;
848 
849 	if (*lbuf &&
850 		(!strcmp(lbuf, "yes") || !strcmp(lbuf, "YES") ||
851 		 !strcmp(lbuf, "y") || !strcmp(lbuf, "Y")))
852 		return 1;
853 	else
854 		return 0;
855 }
856 
857 static int
858 decimal(char *str, int *num, int deflt)
859 {
860 int acc = 0, c;
861 char *cp;
862 
863 	while (1) {
864 		printf("Supply a decimal value for \"%s\" [%d] ", str, deflt);
865 		fflush(stdout);
866 		if (fgets(lbuf, LBUF, stdin) == NULL)
867 			exit(1);
868 		lbuf[strlen(lbuf)-1] = 0;
869 
870 		if (!*lbuf)
871 			return 0;
872 
873 		cp = lbuf;
874 		while ((c = *cp) && (c == ' ' || c == '\t')) cp++;
875 		if (!c)
876 			return 0;
877 		while ((c = *cp++)) {
878 			if (c <= '9' && c >= '0')
879 				acc = acc * 10 + c - '0';
880 			else
881 				break;
882 		}
883 		if (c == ' ' || c == '\t')
884 			while ((c = *cp) && (c == ' ' || c == '\t')) cp++;
885 		if (!c) {
886 			*num = acc;
887 			return 1;
888 		} else
889 			printf("%s is an invalid decimal number.  Try again.\n",
890 				lbuf);
891 	}
892 
893 }
894 
895 #if 0
896 static int
897 hex(char *str, int *num, int deflt)
898 {
899 int acc = 0, c;
900 char *cp;
901 
902 	while (1) {
903 		printf("Supply a hex value for \"%s\" [%x] ", str, deflt);
904 		fgets(lbuf, LBUF, stdin);
905 		lbuf[strlen(lbuf)-1] = 0;
906 
907 		if (!*lbuf)
908 			return 0;
909 
910 		cp = lbuf;
911 		while ((c = *cp) && (c == ' ' || c == '\t')) cp++;
912 		if (!c)
913 			return 0;
914 		while ((c = *cp++)) {
915 			if (c <= '9' && c >= '0')
916 				acc = (acc << 4) + c - '0';
917 			else if (c <= 'f' && c >= 'a')
918 				acc = (acc << 4) + c - 'a' + 10;
919 			else if (c <= 'F' && c >= 'A')
920 				acc = (acc << 4) + c - 'A' + 10;
921 			else
922 				break;
923 		}
924 		if (c == ' ' || c == '\t')
925 			while ((c = *cp) && (c == ' ' || c == '\t')) cp++;
926 		if (!c) {
927 			*num = acc;
928 			return 1;
929 		} else
930 			printf("%s is an invalid hex number.  Try again.\n",
931 				lbuf);
932 	}
933 
934 }
935 
936 static int
937 string(char *str, char **ans)
938 {
939 int c;
940 char *cp = lbuf;
941 
942 	while (1) {
943 		printf("Supply a string value for \"%s\" [%s] ", str, *ans);
944 		fgets(lbuf, LBUF, stdin);
945 		lbuf[strlen(lbuf)-1] = 0;
946 
947 		if (!*lbuf)
948 			return 0;
949 
950 		while ((c = *cp) && (c == ' ' || c == '\t')) cp++;
951 		if (c == '"') {
952 			c = *++cp;
953 			*ans = cp;
954 			while ((c = *cp) && c != '"') cp++;
955 		} else {
956 			*ans = cp;
957 			while ((c = *cp) && c != ' ' && c != '\t') cp++;
958 		}
959 
960 		if (c)
961 			*cp = 0;
962 		return 1;
963 	}
964 }
965 #endif
966 
967 static char *
968 get_type(int type)
969 {
970 	int	numentries = (sizeof(part_types)/sizeof(struct part_type));
971 	int	counter = 0;
972 	struct	part_type *ptr = part_types;
973 
974 
975 	while(counter < numentries)
976 	{
977 		if(ptr->type == type)
978 		{
979 			return(ptr->name);
980 		}
981 		ptr++;
982 		counter++;
983 	}
984 	return("unknown");
985 }
986 
987 
988 static void
989 parse_config_line(line, command)
990     char	*line;
991     CMD		*command;
992 {
993     char	*cp, *end;
994 
995     cp = line;
996     while (1)	/* dirty trick used to insure one exit point for this
997 		   function */
998     {
999 	memset(command, 0, sizeof(*command));
1000 
1001 	while (isspace(*cp)) ++cp;
1002 	if (*cp == '\0' || *cp == '#')
1003 	{
1004 	    break;
1005 	}
1006 	command->cmd = *cp++;
1007 
1008 	/*
1009 	 * Parse args
1010 	 */
1011 	while (1)
1012 	{
1013 	    while (isspace(*cp)) ++cp;
1014 	    if (*cp == '#')
1015 	    {
1016 		break;		/* found comment */
1017 	    }
1018 	    if (isalpha(*cp))
1019 	    {
1020 		command->args[command->n_args].argtype = *cp++;
1021 	    }
1022 	    if (!isdigit(*cp))
1023 	    {
1024 		break;		/* assume end of line */
1025 	    }
1026 	    end = NULL;
1027 	    command->args[command->n_args].arg_val = strtol(cp, &end, 0);
1028 	    if (cp == end)
1029 	    {
1030 		break;		/* couldn't parse number */
1031 	    }
1032 	    cp = end;
1033 	    command->n_args++;
1034 	}
1035 	break;
1036     }
1037 }
1038 
1039 
1040 static int
1041 process_geometry(command)
1042     CMD		*command;
1043 {
1044     int		status = 1, i;
1045 
1046     while (1)
1047     {
1048 	geom_processed = 1;
1049 	if (part_processed)
1050 	{
1051 	    warnx(
1052 	"ERROR line %d: the geometry specification line must occur before\n\
1053     all partition specifications",
1054 		    current_line_number);
1055 	    status = 0;
1056 	    break;
1057 	}
1058 	if (command->n_args != 3)
1059 	{
1060 	    warnx("ERROR line %d: incorrect number of geometry args",
1061 		    current_line_number);
1062 	    status = 0;
1063 	    break;
1064 	}
1065 	dos_cyls = -1;
1066 	dos_heads = -1;
1067 	dos_sectors = -1;
1068 	for (i = 0; i < 3; ++i)
1069 	{
1070 	    switch (command->args[i].argtype)
1071 	    {
1072 	    case 'c':
1073 		dos_cyls = command->args[i].arg_val;
1074 		break;
1075 	    case 'h':
1076 		dos_heads = command->args[i].arg_val;
1077 		break;
1078 	    case 's':
1079 		dos_sectors = command->args[i].arg_val;
1080 		break;
1081 	    default:
1082 		warnx(
1083 		"ERROR line %d: unknown geometry arg type: '%c' (0x%02x)",
1084 			current_line_number, command->args[i].argtype,
1085 			command->args[i].argtype);
1086 		status = 0;
1087 		break;
1088 	    }
1089 	}
1090 	if (status == 0)
1091 	{
1092 	    break;
1093 	}
1094 
1095 	dos_cylsecs = dos_heads * dos_sectors;
1096 
1097 	/*
1098 	 * Do sanity checks on parameter values
1099 	 */
1100 	if (dos_cyls < 0)
1101 	{
1102 	    warnx("ERROR line %d: number of cylinders not specified",
1103 		    current_line_number);
1104 	    status = 0;
1105 	}
1106 	if (dos_cyls == 0 || dos_cyls > 1024)
1107 	{
1108 	    warnx(
1109 	"WARNING line %d: number of cylinders (%d) may be out-of-range\n\
1110     (must be within 1-1024 for normal BIOS operation, unless the entire disk\n\
1111     is dedicated to FreeBSD)",
1112 		    current_line_number, dos_cyls);
1113 	}
1114 
1115 	if (dos_heads < 0)
1116 	{
1117 	    warnx("ERROR line %d: number of heads not specified",
1118 		    current_line_number);
1119 	    status = 0;
1120 	}
1121 	else if (dos_heads < 1 || dos_heads > 256)
1122 	{
1123 	    warnx("ERROR line %d: number of heads must be within (1-256)",
1124 		    current_line_number);
1125 	    status = 0;
1126 	}
1127 
1128 	if (dos_sectors < 0)
1129 	{
1130 	    warnx("ERROR line %d: number of sectors not specified",
1131 		    current_line_number);
1132 	    status = 0;
1133 	}
1134 	else if (dos_sectors < 1 || dos_sectors > 63)
1135 	{
1136 	    warnx("ERROR line %d: number of sectors must be within (1-63)",
1137 		    current_line_number);
1138 	    status = 0;
1139 	}
1140 
1141 	break;
1142     }
1143     return (status);
1144 }
1145 
1146 
1147 static int
1148 process_partition(command)
1149     CMD		*command;
1150 {
1151     int				status = 0, partition;
1152     u_int32_t			prev_head_boundary, prev_cyl_boundary;
1153     u_int32_t			adj_size, max_end;
1154     struct dos_partition	*partp;
1155 
1156     while (1)
1157     {
1158 	part_processed = 1;
1159 	if (command->n_args != 4)
1160 	{
1161 	    warnx("ERROR line %d: incorrect number of partition args",
1162 		    current_line_number);
1163 	    break;
1164 	}
1165 	partition = command->args[0].arg_val;
1166 	if (partition < 1 || partition > 4)
1167 	{
1168 	    warnx("ERROR line %d: invalid partition number %d",
1169 		    current_line_number, partition);
1170 	    break;
1171 	}
1172 	partp = ((struct dos_partition *) &mboot.parts) + partition - 1;
1173 	bzero((char *)partp, sizeof (struct dos_partition));
1174 	partp->dp_typ = command->args[1].arg_val;
1175 	partp->dp_start = command->args[2].arg_val;
1176 	partp->dp_size = command->args[3].arg_val;
1177 	max_end = partp->dp_start + partp->dp_size;
1178 
1179 	if (partp->dp_typ == 0)
1180 	{
1181 	    /*
1182 	     * Get out, the partition is marked as unused.
1183 	     */
1184 	    /*
1185 	     * Insure that it's unused.
1186 	     */
1187 	    bzero((char *)partp, sizeof (struct dos_partition));
1188 	    status = 1;
1189 	    break;
1190 	}
1191 
1192 	/*
1193 	 * Adjust start upwards, if necessary, to fall on an head boundary.
1194 	 */
1195 	if (partp->dp_start % dos_sectors != 0)
1196 	{
1197 	    prev_head_boundary = partp->dp_start / dos_sectors * dos_sectors;
1198 	    if (max_end < dos_sectors ||
1199 		prev_head_boundary > max_end - dos_sectors)
1200 	    {
1201 		/*
1202 		 * Can't go past end of partition
1203 		 */
1204 		warnx(
1205 	"ERROR line %d: unable to adjust start of partition %d to fall on\n\
1206     a head boundary",
1207 			current_line_number, partition);
1208 		break;
1209 	    }
1210 	    warnx(
1211 	"WARNING: adjusting start offset of partition %d\n\
1212     from %u to %u, to fall on a head boundary",
1213 		    partition, (u_int)partp->dp_start,
1214 		    (u_int)(prev_head_boundary + dos_sectors));
1215 	    partp->dp_start = prev_head_boundary + dos_sectors;
1216 	}
1217 
1218 	/*
1219 	 * Adjust size downwards, if necessary, to fall on a cylinder
1220 	 * boundary.
1221 	 */
1222 	prev_cyl_boundary =
1223 	    ((partp->dp_start + partp->dp_size) / dos_cylsecs) * dos_cylsecs;
1224 	if (prev_cyl_boundary > partp->dp_start)
1225 	    adj_size = prev_cyl_boundary - partp->dp_start;
1226 	else
1227 	{
1228 	    warnx(
1229 	"ERROR: could not adjust partition to start on a head boundary\n\
1230     and end on a cylinder boundary.");
1231 	    return (0);
1232 	}
1233 	if (adj_size != partp->dp_size)
1234 	{
1235 	    warnx(
1236 	"WARNING: adjusting size of partition %d from %u to %u\n\
1237     to end on a cylinder boundary",
1238 		    partition, (u_int)partp->dp_size, (u_int)adj_size);
1239 	    partp->dp_size = adj_size;
1240 	}
1241 	if (partp->dp_size == 0)
1242 	{
1243 	    warnx("ERROR line %d: size of partition %d is zero",
1244 		    current_line_number, partition);
1245 	    break;
1246 	}
1247 
1248 	dos(partp);
1249 	status = 1;
1250 	break;
1251     }
1252     return (status);
1253 }
1254 
1255 
1256 static int
1257 process_active(command)
1258     CMD		*command;
1259 {
1260     int				status = 0, partition, i;
1261     struct dos_partition	*partp;
1262 
1263     while (1)
1264     {
1265 	active_processed = 1;
1266 	if (command->n_args != 1)
1267 	{
1268 	    warnx("ERROR line %d: incorrect number of active args",
1269 		    current_line_number);
1270 	    status = 0;
1271 	    break;
1272 	}
1273 	partition = command->args[0].arg_val;
1274 	if (partition < 1 || partition > 4)
1275 	{
1276 	    warnx("ERROR line %d: invalid partition number %d",
1277 		    current_line_number, partition);
1278 	    break;
1279 	}
1280 	/*
1281 	 * Reset active partition
1282 	 */
1283 	partp = ((struct dos_partition *) &mboot.parts);
1284 	for (i = 0; i < NDOSPART; i++)
1285 	    partp[i].dp_flag = 0;
1286 	partp[partition-1].dp_flag = ACTIVE;
1287 
1288 	status = 1;
1289 	break;
1290     }
1291     return (status);
1292 }
1293 
1294 
1295 static int
1296 process_line(line)
1297     char	*line;
1298 {
1299     CMD		command;
1300     int		status = 1;
1301 
1302     while (1)
1303     {
1304 	parse_config_line(line, &command);
1305 	switch (command.cmd)
1306 	{
1307 	case 0:
1308 	    /*
1309 	     * Comment or blank line
1310 	     */
1311 	    break;
1312 	case 'g':
1313 	    /*
1314 	     * Set geometry
1315 	     */
1316 	    status = process_geometry(&command);
1317 	    break;
1318 	case 'p':
1319 	    status = process_partition(&command);
1320 	    break;
1321 	case 'a':
1322 	    status = process_active(&command);
1323 	    break;
1324 	default:
1325 	    status = 0;
1326 	    break;
1327 	}
1328 	break;
1329     }
1330     return (status);
1331 }
1332 
1333 
1334 static int
1335 read_config(config_file)
1336     char *config_file;
1337 {
1338     FILE	*fp = NULL;
1339     int		status = 1;
1340     char	buf[1010];
1341 
1342     while (1)	/* dirty trick used to insure one exit point for this
1343 		   function */
1344     {
1345 	if (strcmp(config_file, "-") != 0)
1346 	{
1347 	    /*
1348 	     * We're not reading from stdin
1349 	     */
1350 	    if ((fp = fopen(config_file, "r")) == NULL)
1351 	    {
1352 		status = 0;
1353 		break;
1354 	    }
1355 	}
1356 	else
1357 	{
1358 	    fp = stdin;
1359 	}
1360 	current_line_number = 0;
1361 	while (!feof(fp))
1362 	{
1363 	    if (fgets(buf, sizeof(buf), fp) == NULL)
1364 	    {
1365 		break;
1366 	    }
1367 	    ++current_line_number;
1368 	    status = process_line(buf);
1369 	    if (status == 0)
1370 	    {
1371 		break;
1372 	    }
1373 	}
1374 	break;
1375     }
1376     if (fp)
1377     {
1378 	/*
1379 	 * It doesn't matter if we're reading from stdin, as we've reached EOF
1380 	 */
1381 	fclose(fp);
1382     }
1383     return (status);
1384 }
1385 
1386 
1387 static void
1388 reset_boot(void)
1389 {
1390     int				i;
1391     struct dos_partition	*partp;
1392 
1393     init_boot();
1394     for (i = 0; i < 4; ++i)
1395     {
1396 	partp = ((struct dos_partition *) &mboot.parts) + i;
1397 	bzero((char *)partp, sizeof (struct dos_partition));
1398     }
1399 }
1400 
1401 static int
1402 sanitize_partition(partp)
1403     struct dos_partition	*partp;
1404 {
1405     u_int32_t			prev_head_boundary, prev_cyl_boundary;
1406     u_int32_t			max_end, size, start;
1407 
1408     start = partp->dp_start;
1409     size = partp->dp_size;
1410     max_end = start + size;
1411     /* Only allow a zero size if the partition is being marked unused. */
1412     if (size == 0) {
1413 	if (start == 0 && partp->dp_typ == 0)
1414 	    return (1);
1415 	warnx("ERROR: size of partition is zero");
1416 	return (0);
1417     }
1418     /* Return if no adjustment is necessary. */
1419     if (start % dos_sectors == 0 && (start + size) % dos_sectors == 0)
1420 	return (1);
1421 
1422     if (start % dos_sectors != 0)
1423 	warnx("WARNING: partition does not start on a head boundary");
1424     if ((start  +size) % dos_sectors != 0)
1425 	warnx("WARNING: partition does not end on a cylinder boundary");
1426     warnx("WARNING: this may confuse the BIOS or some operating systems");
1427     if (!ok("Correct this automatically?"))
1428 	return (1);
1429 
1430     /*
1431      * Adjust start upwards, if necessary, to fall on an head boundary.
1432      */
1433     if (start % dos_sectors != 0) {
1434 	prev_head_boundary = start / dos_sectors * dos_sectors;
1435 	if (max_end < dos_sectors ||
1436 	    prev_head_boundary >= max_end - dos_sectors) {
1437 	    /*
1438 	     * Can't go past end of partition
1439 	     */
1440 	    warnx(
1441     "ERROR: unable to adjust start of partition to fall on a head boundary");
1442 	    return (0);
1443         }
1444 	start = prev_head_boundary + dos_sectors;
1445     }
1446 
1447     /*
1448      * Adjust size downwards, if necessary, to fall on a cylinder
1449      * boundary.
1450      */
1451     prev_cyl_boundary = ((start + size) / dos_cylsecs) * dos_cylsecs;
1452     if (prev_cyl_boundary > start)
1453 	size = prev_cyl_boundary - start;
1454     else {
1455 	warnx("ERROR: could not adjust partition to start on a head boundary\n\
1456     and end on a cylinder boundary.");
1457 	return (0);
1458     }
1459 
1460     /* Finally, commit any changes to partp and return. */
1461     if (start != partp->dp_start) {
1462 	warnx("WARNING: adjusting start offset of partition to %u",
1463 	    (u_int)start);
1464 	partp->dp_start = start;
1465     }
1466     if (size != partp->dp_size) {
1467 	warnx("WARNING: adjusting size of partition to %u", (u_int)size);
1468 	partp->dp_size = size;
1469     }
1470 
1471     return (1);
1472 }
1473 
1474 /*
1475  * Try figuring out the root device's canonical disk name.
1476  * The following choices are considered:
1477  *   /dev/ad0s1a     => /dev/ad0
1478  *   /dev/da0a       => /dev/da0
1479  *   /dev/vinum/root => /dev/vinum/root
1480  */
1481 static char *
1482 get_rootdisk(void)
1483 {
1484 	struct statfs rootfs;
1485 	regex_t re;
1486 #define NMATCHES 2
1487 	regmatch_t rm[NMATCHES];
1488 	char *s;
1489 	int rv;
1490 
1491 	if (statfs("/", &rootfs) == -1)
1492 		err(1, "statfs(\"/\")");
1493 
1494 	if ((rv = regcomp(&re, "^(/dev/.*)(\\d+(s\\d+)?[a-h])?$",
1495 		    REG_EXTENDED)) != 0)
1496 		errx(1, "regcomp() failed (%d)", rv);
1497 	if ((rv = regexec(&re, rootfs.f_mntfromname, NMATCHES, rm, 0)) != 0)
1498 		errx(1,
1499 "mounted root fs resource doesn't match expectations (regexec returned %d)",
1500 		    rv);
1501 	if ((s = malloc(rm[1].rm_eo - rm[1].rm_so + 1)) == NULL)
1502 		errx(1, "out of memory");
1503 	memcpy(s, rootfs.f_mntfromname + rm[1].rm_so,
1504 	    rm[1].rm_eo - rm[1].rm_so);
1505 	s[rm[1].rm_eo - rm[1].rm_so] = 0;
1506 
1507 	return s;
1508 }
1509