fdisk.c revision 1.125 1 /* $NetBSD: fdisk.c,v 1.125 2009/11/04 22:25:56 dsl Exp $ */
2
3 /*
4 * Mach Operating System
5 * Copyright (c) 1992 Carnegie Mellon University
6 * All Rights Reserved.
7 *
8 * Permission to use, copy, modify and distribute this software and its
9 * documentation is hereby granted, provided that both the copyright
10 * notice and this permission notice appear in all copies of the
11 * software, derivative works or modified versions, and any portions
12 * thereof, and that both notices appear in supporting documentation.
13 *
14 * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
15 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
16 * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
17 *
18 * Carnegie Mellon requests users of this software to return to
19 *
20 * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
21 * School of Computer Science
22 * Carnegie Mellon University
23 * Pittsburgh PA 15213-3890
24 *
25 * any improvements or extensions that they make and grant Carnegie Mellon
26 * the rights to redistribute these changes.
27 */
28
29 /*
30 * 14-Dec-89 Robert Baron (rvb) at Carnegie-Mellon University
31 * Copyright (c) 1989 Robert. V. Baron
32 * Created.
33 */
34
35 #if HAVE_NBTOOL_CONFIG_H
36 #include "nbtool_config.h"
37 #endif
38
39 #include <sys/cdefs.h>
40
41 #ifndef lint
42 __RCSID("$NetBSD: fdisk.c,v 1.125 2009/11/04 22:25:56 dsl Exp $");
43 #endif /* not lint */
44
45 #define MBRPTYPENAMES
46 #include <sys/types.h>
47 #include <sys/param.h>
48 #include <sys/stat.h>
49 #include <ctype.h>
50 #include <err.h>
51 #include <errno.h>
52 #include <fcntl.h>
53 #include <paths.h>
54 #include <stdarg.h>
55 #include <stddef.h>
56 #include <stdio.h>
57 #include <stdlib.h>
58 #include <string.h>
59 #include <unistd.h>
60 #include <vis.h>
61
62 #if !HAVE_NBTOOL_CONFIG_H
63 #include <sys/disklabel.h>
64 #include <sys/disklabel_gpt.h>
65 #include <sys/bootblock.h>
66 #include <sys/ioctl.h>
67 #include <sys/sysctl.h>
68 #include <disktab.h>
69 #include <util.h>
70 #include <zlib.h>
71 #else
72 #include <nbinclude/sys/disklabel.h>
73 #include <nbinclude/sys/disklabel_gpt.h>
74 #include <nbinclude/sys/bootblock.h>
75 #include "../../include/disktab.h"
76 /* We enforce -F, so none of these possibly undefined items can be needed */
77 #define opendisk(path, fl, buf, buflen, cooked) (-1)
78 #ifndef DIOCGDEFLABEL
79 #define DIOCGDEFLABEL 0
80 #endif
81 #ifndef DIOCGDINFO
82 #define DIOCGDINFO 0
83 #endif
84 #ifndef DIOCWLABEL
85 #define DIOCWLABEL 0
86 #endif
87 #endif /* HAVE_NBTOOL_CONFIG_H */
88
89 #define DEFAULT_BOOTDIR "/usr/mdec"
90
91 #define LE_MBR_MAGIC htole16(MBR_MAGIC)
92 #define LE_MBR_BS_MAGIC htole16(MBR_BS_MAGIC)
93
94 #if defined(__i386__) || defined(__x86_64__)
95 #if !HAVE_NBTOOL_CONFIG_H
96 #include <machine/cpu.h>
97 #endif /* !HAVE_NBTOOL_CONFIG_H */
98 #define BOOTSEL
99 #endif
100
101 #ifdef BOOTSEL
102
103 #define DEFAULT_BOOTCODE "mbr"
104 #define DEFAULT_BOOTSELCODE "mbr_bootsel"
105 #define DEFAULT_BOOTEXTCODE "mbr_ext"
106
107 /* Scan values for the various keys we use, as returned by the BIOS */
108 #define SCAN_ENTER 0x1c
109 #define SCAN_F1 0x3b
110 #define SCAN_1 0x2
111
112
113 #define MAX_BIOS_DISKS 16 /* Going beyond F12 is hard though! */
114
115 /* We same the dflt 'boot partition' as a disk block, with some magic values. */
116 #define DEFAULT_ACTIVE (~(daddr_t)0)
117 #define DEFAULT_DISK(n) (DEFAULT_ACTIVE - MAX_BIOS_DISKS + (n))
118
119 #endif
120
121 #define GPT_TYPE(offs) ((offs) == GPT_HDR_BLKNO ? "primary" : "secondary")
122
123 #define LBUF 100
124 static char lbuf[LBUF];
125
126 #ifndef PRIdaddr
127 #define PRIdaddr PRId64
128 #endif
129
130 #ifndef _PATH_DEFDISK
131 #define _PATH_DEFDISK "/dev/rwd0d"
132 #endif
133
134 const char *disk = _PATH_DEFDISK;
135
136 struct disklabel disklabel; /* disk parameters */
137
138 unsigned int cylinders, sectors, heads;
139 daddr_t disksectors;
140 #define cylindersectors (heads * sectors)
141
142 struct mbr_sector mboot;
143
144
145 struct {
146 struct mbr_sector *ptn; /* array of pbrs */
147 daddr_t base; /* first sector of ext. ptn */
148 daddr_t limit; /* last sector of ext. ptn */
149 int num_ptn; /* number of contained partitions */
150 int ptn_id; /* entry in mbr */
151 int is_corrupt; /* 1 if extended chain illegal */
152 } ext;
153
154 const char *boot_dir = DEFAULT_BOOTDIR;
155 char *boot_path = 0; /* name of file we actually opened */
156
157 #ifdef BOOTSEL
158
159 #define OPTIONS "0123BFSafiluvs:b:c:E:r:w:t:T:"
160 #else
161 #define change_part(e, p, id, st, sz, bm) change__part(e, p, id, st, sz)
162 #define OPTIONS "0123FSafiluvs:b:c:E:r:w:"
163 #endif
164
165 unsigned int dos_cylinders;
166 unsigned int dos_heads;
167 unsigned int dos_sectors;
168 daddr_t dos_disksectors;
169 #define dos_cylindersectors (dos_heads * dos_sectors)
170 #define dos_totalsectors (dos_heads * dos_sectors * dos_cylinders)
171
172 #define DOSSECT(s,c) (((s) & 0x3f) | (((c) >> 2) & 0xc0))
173 #define DOSCYL(c) ((c) & 0xff)
174 #define SEC_IN_1M (1024 * 1024 / 512)
175 #define SEC_TO_MB(sec) ((unsigned int)(((sec) + SEC_IN_1M / 2) / SEC_IN_1M))
176 #define SEC_TO_CYL(sec) (((sec) + dos_cylindersectors/2) / dos_cylindersectors)
177
178 #define MAXCYL 1024 /* Usual limit is 1023 */
179 #define MAXHEAD 256 /* Usual limit is 255 */
180 #define MAXSECTOR 63
181 int partition = -1;
182
183 int fd = -1, wfd = -1, *rfd = &fd;
184 char *disk_file = NULL;
185 char *disk_type = NULL;
186
187 int a_flag; /* set active partition */
188 int i_flag; /* init bootcode */
189 int u_flag; /* update partition data */
190 int v_flag; /* more verbose */
191 int sh_flag; /* Output data as shell defines */
192 int f_flag; /* force --not interactive */
193 int s_flag; /* set id,offset,size */
194 int b_flag; /* Set cyl, heads, secs (as c/h/s) */
195 int B_flag; /* Edit/install bootselect code */
196 int E_flag; /* extended partition number */
197 int b_cyl, b_head, b_sec; /* b_flag values. */
198
199 #if !HAVE_NBTOOL_CONFIG_H
200 int F_flag = 0;
201 #else
202 /* Tool - force 'file' mode to avoid unsupported functions and ioctls */
203 int F_flag = 1;
204 #endif
205
206 struct gpt_hdr gpt1, gpt2; /* GUID partition tables */
207
208 struct mbr_sector bootcode[8192 / sizeof (struct mbr_sector)];
209 int bootsize; /* actual size of bootcode */
210 int boot_installed; /* 1 if we've copied code into the mbr */
211
212 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
213 struct disklist *dl;
214 #endif
215
216
217 #define KNOWN_SYSIDS (sizeof(mbr_ptypes)/sizeof(mbr_ptypes[0]))
218
219 void usage(void);
220 void print_s0(int);
221 void print_part(struct mbr_sector *, int, daddr_t);
222 void print_mbr_partition(struct mbr_sector *, int, daddr_t, daddr_t, int);
223 void print_pbr(daddr_t, int, uint8_t);
224 int is_all_zero(const unsigned char *, size_t);
225 void printvis(int, const char *, const char *, size_t);
226 int read_boot(const char *, void *, size_t, int);
227 void init_sector0(int);
228 void intuit_translated_geometry(void);
229 void get_geometry(void);
230 void get_extended_ptn(void);
231 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
232 void get_diskname(const char *, char *, size_t);
233 #endif /* (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H */
234 int change_part(int, int, int, daddr_t, daddr_t, char *);
235 void print_params(void);
236 int first_active(void);
237 void change_active(int);
238 void get_params_to_use(void);
239 void dos(int, unsigned char *, unsigned char *, unsigned char *);
240 int open_disk(int);
241 int read_disk(daddr_t, void *);
242 int write_disk(daddr_t, void *);
243 int get_params(void);
244 int read_s0(daddr_t, struct mbr_sector *);
245 int write_mbr(void);
246 int read_gpt(daddr_t, struct gpt_hdr *);
247 int delete_gpt(struct gpt_hdr *);
248 int yesno(const char *, ...);
249 int decimal(const char *, int64_t, int, int64_t, int64_t);
250 #define DEC_SEC 1 /* asking for a sector number */
251 #define DEC_RND 2 /* round to end of first track */
252 #define DEC_RND_0 4 /* round 0 to size of a track */
253 #define DEC_RND_DOWN 8 /* subtract 1 track */
254 #define DEC_RND_DOWN_2 16 /* subtract 2 tracks */
255 void string(const char *, int, char *);
256 int ptn_id(const char *, int *);
257 int type_match(const void *, const void *);
258 const char *get_type(int);
259 int get_mapping(int, unsigned int *, unsigned int *, unsigned int *, unsigned long *);
260 #ifdef BOOTSEL
261 daddr_t configure_bootsel(daddr_t);
262 void install_bootsel(int);
263 daddr_t get_default_boot(void);
264 void set_default_boot(daddr_t);
265 #endif
266
267 static void
268 initvar_disk(const char **diskp)
269 {
270 #if !HAVE_NBTOOL_CONFIG_H
271 int mib[2];
272 size_t len;
273 char *root_device;
274
275 mib[0] = CTL_KERN;
276 mib[1] = KERN_ROOT_DEVICE;
277 if (sysctl(mib, 2, NULL, &len, NULL, 0) == -1 ||
278 (root_device = malloc(len)) == NULL ||
279 sysctl(mib, 2, root_device, &len, NULL, 0) == -1)
280 return;
281
282 *diskp = root_device;
283 #endif /* HAVE_NBTOOL_CONFIG_H */
284 }
285
286 int
287 main(int argc, char *argv[])
288 {
289 struct stat sb;
290 int ch;
291 size_t len;
292 char *cp;
293 int n;
294 #ifdef BOOTSEL
295 daddr_t default_ptn; /* start sector of default ptn */
296 char *cbootmenu = 0;
297 #endif
298
299 int csysid; /* For the s_flag. */
300 unsigned int cstart, csize;
301 a_flag = u_flag = sh_flag = f_flag = s_flag = b_flag = 0;
302 i_flag = B_flag = 0;
303 v_flag = 0;
304 E_flag = 0;
305 csysid = cstart = csize = 0;
306 while ((ch = getopt(argc, argv, OPTIONS)) != -1)
307 switch (ch) {
308 case '0':
309 partition = 0;
310 break;
311 case '1':
312 partition = 1;
313 break;
314 case '2':
315 partition = 2;
316 break;
317 case '3':
318 partition = 3;
319 break;
320 case 'E': /* Extended partition number */
321 E_flag = 1;
322 partition = strtoul(optarg, &cp, 0);
323 if (*cp || partition < 0)
324 errx(1, "Bad partition number -E %s.", optarg);
325 break;
326 #ifdef BOOTSEL
327 case 'B': /* Bootselect parameters */
328 B_flag = 1;
329 break;
330 #endif
331 case 'F': /* device argument is really a file */
332 F_flag = 1;
333 break;
334 case 'S': /* Output as shell variables */
335 sh_flag = 1;
336 break;
337 case 'a': /* Set active partition */
338 a_flag = 1;
339 break;
340 case 'f': /* Non interactive */
341 f_flag = 1;
342 break;
343 case 'i': /* Always update bootcode */
344 i_flag = 1;
345 break;
346 case 'l': /* List known partition types */
347 for (len = 0; len < KNOWN_SYSIDS; len++)
348 printf("%03d %s\n", mbr_ptypes[len].id,
349 mbr_ptypes[len].name);
350 return 0;
351 case 'u': /* Update partition details */
352 u_flag = 1;
353 break;
354 case 'v': /* Be verbose */
355 v_flag++;
356 break;
357 case 's': /* Partition details */
358 s_flag = 1;
359 if (sscanf(optarg, "%d/%u/%u%n", &csysid, &cstart,
360 &csize, &n) == 3) {
361 if (optarg[n] == 0)
362 break;
363 #ifdef BOOTSEL
364 if (optarg[n] == '/') {
365 cbootmenu = optarg + n + 1;
366 break;
367 }
368 #endif
369 }
370 errx(1, "Bad argument to the -s flag.");
371 break;
372 case 'b': /* BIOS geometry */
373 b_flag = 1;
374 if (sscanf(optarg, "%d/%d/%d%n", &b_cyl, &b_head,
375 &b_sec, &n) != 3 || optarg[n] != 0)
376 errx(1, "Bad argument to the -b flag.");
377 if (b_cyl > MAXCYL)
378 b_cyl = MAXCYL;
379 break;
380 case 'c': /* file/directory containing boot code */
381 if (strchr(optarg, '/') != NULL &&
382 stat(optarg, &sb) == 0 &&
383 (sb.st_mode & S_IFMT) == S_IFDIR) {
384 boot_dir = optarg;
385 break;
386 }
387 bootsize = read_boot(optarg, bootcode,
388 sizeof bootcode, 1);
389 i_flag = 1;
390 break;
391 case 'r': /* read data from disk_file (not raw disk) */
392 rfd = &wfd;
393 /* FALLTHROUGH */
394 case 'w': /* write data to disk_file */
395 disk_file = optarg;
396 break;
397 case 't':
398 if (setdisktab(optarg) == -1)
399 errx(EXIT_FAILURE, "bad disktab");
400 break;
401 case 'T':
402 disk_type = optarg;
403 break;
404 default:
405 usage();
406 }
407 argc -= optind;
408 argv += optind;
409
410 if (disk_type != NULL && getdiskbyname(disk_type) == NULL)
411 errx(EXIT_FAILURE, "bad disktype");
412
413 if (sh_flag && (a_flag || i_flag || u_flag || f_flag || s_flag))
414 usage();
415
416 if (B_flag && f_flag) {
417 warnx("Bootselector may only be configured interactively");
418 usage();
419 }
420
421 if (f_flag && u_flag && !s_flag) {
422 warnx("Partition data not specified");
423 usage();
424 }
425
426 if (s_flag && partition == -1) {
427 warnx("-s flag requires a partition selected.");
428 usage();
429 }
430
431 if (argc > 1)
432 usage();
433
434 if (argc > 0)
435 disk = argv[0];
436 else if (!F_flag) {
437 /* Default to boot device */
438 initvar_disk(&disk);
439 }
440
441 if (open_disk(B_flag || a_flag || i_flag || u_flag) < 0)
442 exit(1);
443
444 if (read_s0(0, &mboot))
445 /* must have been a blank disk */
446 init_sector0(1);
447
448 read_gpt(GPT_HDR_BLKNO, &gpt1);
449 read_gpt(disksectors - 1, &gpt2);
450
451 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
452 get_geometry();
453 #else
454 intuit_translated_geometry();
455 #endif
456 get_extended_ptn();
457
458 #ifdef BOOTSEL
459 default_ptn = get_default_boot();
460 #endif
461
462 if (E_flag && !u_flag && partition >= ext.num_ptn)
463 errx(1, "Extended partition %d is not defined.", partition);
464
465 if (u_flag && (!f_flag || b_flag))
466 get_params_to_use();
467
468 /* Do the update stuff! */
469 if (u_flag) {
470 if (s_flag)
471 change_part(E_flag, partition, csysid, cstart, csize,
472 cbootmenu);
473 else {
474 int part = partition, chg_ext = E_flag, prompt = 1;
475 do {
476 if (prompt) {
477 printf("\n");
478 print_s0(partition);
479 }
480 if (partition == -1)
481 part = ptn_id(
482 "Which partition do you want to change?",
483 &chg_ext);
484 if (part < 0)
485 break;
486 prompt = change_part(chg_ext, part, 0, 0, 0, 0);
487 } while (partition == -1);
488 }
489 } else
490 if (!i_flag && !B_flag) {
491 print_params();
492 print_s0(partition);
493 }
494
495 if (a_flag && !E_flag)
496 change_active(partition);
497
498 #ifdef BOOTSEL
499 if (B_flag || u_flag || i_flag)
500 /* Ensure the mbr code supports this configuration */
501 install_bootsel(0);
502 if (B_flag)
503 default_ptn = configure_bootsel(default_ptn);
504 set_default_boot(default_ptn);
505 #else
506 if (i_flag)
507 init_sector0(0);
508 #endif
509
510 if (u_flag || a_flag || i_flag || B_flag) {
511 if (!f_flag) {
512 printf("\nWe haven't written the MBR back to disk "
513 "yet. This is your last chance.\n");
514 if (u_flag)
515 print_s0(-1);
516 if (gpt1.hdr_size != 0 || gpt2.hdr_size != 0)
517 printf("\nWARNING: The disk is carrying "
518 "GUID Partition Tables.\n"
519 " If you continue, "
520 "GPT headers will be deleted.\n\n");
521 if (yesno("Should we write new partition table?")) {
522 delete_gpt(&gpt1);
523 delete_gpt(&gpt2);
524 write_mbr();
525 }
526 } else {
527 if (delete_gpt(&gpt1) > 0)
528 warnx("Primary GPT header was deleted");
529 if (delete_gpt(&gpt2) > 0)
530 warnx("Secondary GPT header was deleted");
531 write_mbr();
532 }
533 }
534
535 exit(0);
536 }
537
538 void
539 usage(void)
540 {
541 int indent = 7 + (int)strlen(getprogname()) + 1;
542
543 (void)fprintf(stderr, "usage: %s [-afiluvBS] "
544 "[-b cylinders/heads/sectors] \\\n"
545 "%*s[-0123 | -E num "
546 "[-s id/start/size[/bootmenu]]] \\\n"
547 "%*s[-t disktab] [-T disktype] \\\n"
548 "%*s[-c bootcode] "
549 "[-r|-w file] [device]\n"
550 "\t-a change active partition\n"
551 "\t-f force - not interactive\n"
552 "\t-i initialise MBR code\n"
553 "\t-l list partition types\n"
554 "\t-u update partition data\n"
555 "\t-v verbose output, -v -v more verbose still\n"
556 "\t-B update bootselect options\n"
557 "\t-F treat device as a regular file\n"
558 "\t-S output as shell defines\n"
559 "\t-r and -w access 'file' for non-destructive testing\n",
560 getprogname(), indent, "", indent, "", indent, "");
561 exit(1);
562 }
563
564 static daddr_t
565 ext_offset(int part)
566 {
567 daddr_t offset = ext.base;
568
569 if (part != 0)
570 offset += le32toh(ext.ptn[part - 1].mbr_parts[1].mbrp_start);
571 return offset;
572 }
573
574 void
575 print_s0(int which)
576 {
577 int part;
578
579 if (which == -1) {
580 if (!sh_flag)
581 printf("Partition table:\n");
582 for (part = 0; part < MBR_PART_COUNT; part++) {
583 if (!sh_flag)
584 printf("%d: ", part);
585 print_part(&mboot, part, 0);
586 }
587 if (!sh_flag) {
588 if (ext.is_corrupt)
589 printf("Extended partition table is corrupt\n");
590 else
591 if (ext.num_ptn != 0)
592 printf("Extended partition table:\n");
593 }
594 for (part = 0; part < ext.num_ptn; part++) {
595 if (!sh_flag)
596 printf("E%d: ", part);
597 print_part(&ext.ptn[part], 0, ext_offset(part));
598 if (!sh_flag && v_flag >= 2) {
599 printf("link: ");
600 print_mbr_partition(&ext.ptn[part], 1,
601 ext_offset(part), ext.base, 0);
602 }
603 }
604 #ifdef BOOTSEL
605 if (!sh_flag && mboot.mbr_bootsel_magic == LE_MBR_BS_MAGIC) {
606 int tmo;
607
608 printf("Bootselector ");
609 if (mboot.mbr_bootsel.mbrbs_flags & MBR_BS_ACTIVE) {
610 printf("enabled");
611 tmo = le16toh(mboot.mbr_bootsel.mbrbs_timeo);
612 if (tmo == 0xffff)
613 printf(", infinite timeout");
614 else
615 printf(", timeout %d seconds",
616 (10 * tmo + 9) / 182);
617 } else
618 printf("disabled");
619 printf(".\n");
620 }
621 #endif
622 if (!sh_flag) {
623 int active = first_active();
624 if (active == MBR_PART_COUNT)
625 printf("No active partition.\n");
626 else
627 printf("First active partition: %d\n", active);
628 }
629 if (!sh_flag && mboot.mbr_dsn != 0)
630 printf("Drive serial number: %"PRIu32" (0x%08x)\n",
631 le32toh(mboot.mbr_dsn),
632 le32toh(mboot.mbr_dsn));
633 return;
634 }
635
636 if (E_flag) {
637 if (!sh_flag)
638 printf("Extended partition E%d:\n", which);
639 if (which > ext.num_ptn)
640 printf("Undefined\n");
641 else
642 print_part(&ext.ptn[which], 0, ext_offset(which));
643 } else {
644 if (!sh_flag)
645 printf("Partition %d:\n", which);
646 print_part(&mboot, which, 0);
647 }
648 }
649
650 void
651 print_part(struct mbr_sector *boot, int part, daddr_t offset)
652 {
653 struct mbr_partition *partp;
654 const char *e;
655
656 if (!sh_flag) {
657 print_mbr_partition(boot, part, offset, 0, 0);
658 return;
659 }
660
661 partp = &boot->mbr_parts[part];
662 if (boot != &mboot) {
663 part = boot - ext.ptn;
664 e = "E";
665 } else
666 e = "";
667
668 if (partp->mbrp_type == 0) {
669 printf("PART%s%dSIZE=0\n", e, part);
670 return;
671 }
672
673 printf("PART%s%dID=%d\n", e, part, partp->mbrp_type);
674 printf("PART%s%dSIZE=%u\n", e, part, le32toh(partp->mbrp_size));
675 printf("PART%s%dSTART=%"PRIdaddr"\n", e, part,
676 offset + le32toh(partp->mbrp_start));
677 printf("PART%s%dFLAG=0x%x\n", e, part, partp->mbrp_flag);
678 printf("PART%s%dBCYL=%d\n", e, part,
679 MBR_PCYL(partp->mbrp_scyl, partp->mbrp_ssect));
680 printf("PART%s%dBHEAD=%d\n", e, part, partp->mbrp_shd);
681 printf("PART%s%dBSEC=%d\n", e, part, MBR_PSECT(partp->mbrp_ssect));
682 printf("PART%s%dECYL=%d\n", e, part,
683 MBR_PCYL(partp->mbrp_ecyl, partp->mbrp_esect));
684 printf("PART%s%dEHEAD=%d\n", e, part, partp->mbrp_ehd);
685 printf("PART%s%dESEC=%d\n", e, part, MBR_PSECT(partp->mbrp_esect));
686 }
687
688 static void
689 pr_cyls(daddr_t sector, int is_end)
690 {
691 unsigned long cyl, head, sect;
692 cyl = sector / dos_cylindersectors;
693 sect = sector - cyl * dos_cylindersectors;
694 head = sect / dos_sectors;
695 sect -= head * dos_sectors;
696
697 printf("%lu", cyl);
698
699 if (is_end) {
700 if (head == dos_heads - 1 && sect == dos_sectors - 1)
701 return;
702 } else {
703 if (head == 0 && sect == 0)
704 return;
705 }
706
707 printf("/%lu/%lu", head, sect + 1);
708 }
709
710 void
711 print_mbr_partition(struct mbr_sector *boot, int part,
712 daddr_t offset, daddr_t exoffset, int indent)
713 {
714 daddr_t start;
715 daddr_t size;
716 struct mbr_partition *partp = &boot->mbr_parts[part];
717 struct mbr_sector eboot;
718 int p;
719 static int dumped = 0;
720
721 if (partp->mbrp_type == 0 && v_flag < 2) {
722 printf("<UNUSED>\n");
723 return;
724 }
725
726 start = le32toh(partp->mbrp_start);
727 size = le32toh(partp->mbrp_size);
728 if (MBR_IS_EXTENDED(partp->mbrp_type))
729 start += exoffset;
730 else
731 start += offset;
732
733 printf("%s (sysid %d)\n", get_type(partp->mbrp_type), partp->mbrp_type);
734 #ifdef BOOTSEL
735 if (boot->mbr_bootsel_magic == LE_MBR_BS_MAGIC &&
736 boot->mbr_bootsel.mbrbs_nametab[part][0])
737 printf("%*s bootmenu: %s\n", indent, "",
738 boot->mbr_bootsel.mbrbs_nametab[part]);
739 #endif
740
741 printf("%*s start %"PRIdaddr", size %"PRIdaddr,
742 indent, "", start, size);
743 if (size != 0) {
744 printf(" (%u MB, Cyls ", SEC_TO_MB(size));
745 if (v_flag == 0 && le32toh(partp->mbrp_start) == dos_sectors)
746 pr_cyls(start - dos_sectors, 0);
747 else
748 pr_cyls(start, 0);
749 printf("-");
750 pr_cyls(start + size - 1, 1);
751 printf(")");
752 }
753
754 switch (partp->mbrp_flag) {
755 case 0:
756 break;
757 case MBR_PFLAG_ACTIVE:
758 printf(", Active");
759 break;
760 default:
761 printf(", flag 0x%x", partp->mbrp_flag);
762 break;
763 }
764 printf("\n");
765
766 if (v_flag) {
767 printf("%*s beg: cylinder %4d, head %3d, sector %2d\n",
768 indent, "",
769 MBR_PCYL(partp->mbrp_scyl, partp->mbrp_ssect),
770 partp->mbrp_shd, MBR_PSECT(partp->mbrp_ssect));
771 printf("%*s end: cylinder %4d, head %3d, sector %2d\n",
772 indent, "",
773 MBR_PCYL(partp->mbrp_ecyl, partp->mbrp_esect),
774 partp->mbrp_ehd, MBR_PSECT(partp->mbrp_esect));
775 }
776
777 if (partp->mbrp_type == 0 && start == 0 && v_flag < 3)
778 return;
779
780 if (! MBR_IS_EXTENDED(partp->mbrp_type))
781 print_pbr(start, indent + 8, partp->mbrp_type);
782
783 if (!MBR_IS_EXTENDED(partp->mbrp_type) ||
784 (v_flag <= 2 && !ext.is_corrupt))
785 return;
786
787 /*
788 * Recursive dump extended table,
789 * This is read from the disk - so is wrong during editing.
790 * Just ensure we only show it once.
791 */
792 if (dumped)
793 return;
794
795 printf("%*s Extended partition table:\n", indent, "");
796 indent += 4;
797 if (read_s0(start, &eboot) == -1)
798 return;
799 for (p = 0; p < MBR_PART_COUNT; p++) {
800 printf("%*s%d: ", indent, "", p);
801 print_mbr_partition(&eboot, p, start,
802 exoffset ? exoffset : start, indent);
803 }
804
805 if (exoffset == 0)
806 dumped = 1;
807 }
808
809 /* Print a line with a label and a vis-encoded string */
810 void
811 printvis(int indent, const char *label, const char *buf, size_t size)
812 {
813 char *visbuf;
814
815 if ((visbuf = malloc(size * 4 + 1)) == NULL)
816 err(1, "Malloc failed");
817 strsvisx(visbuf, buf, size, VIS_TAB|VIS_NL|VIS_OCTAL, "\"");
818 printf("%*s%s: \"%s\"\n",
819 indent, "",
820 label, visbuf);
821 free(visbuf);
822 }
823
824 /* Check whether a buffer contains all bytes zero */
825 int
826 is_all_zero(const unsigned char *p, size_t size)
827 {
828
829 while (size-- > 0) {
830 if (*p++ != 0)
831 return 0;
832 }
833 return 1;
834 }
835
836 /*
837 * Report on the contents of a PBR sector.
838 *
839 * We first perform several sanity checks. If vflag >= 2, we report all
840 * failing tests, but for smaller values of v_flag we stop after the
841 * first failing test. Tests are ordered in an attempt to get the most
842 * useful error message from the first failing test.
843 *
844 * If v_flag >= 2, we also report some decoded values from the PBR.
845 * These results may be meaningless, if the PBR doesn't follow common
846 * conventions.
847 *
848 * Trying to decode anything more than the magic number in the last
849 * two bytes is a layering violation, but it can be very useful in
850 * diagnosing boot failures.
851 */
852 void
853 print_pbr(daddr_t sector, int indent, uint8_t part_type)
854 {
855 struct mbr_sector pboot;
856 unsigned char *p, *endp;
857 unsigned char val;
858 int ok;
859 int errcount = 0;
860
861 #define PBR_ERROR(...) \
862 do { \
863 ++errcount; \
864 printf("%*s%s: ", indent, "", \
865 (v_flag < 2 ? "PBR is not bootable" : "Not bootable")); \
866 printf(__VA_ARGS__); \
867 if (v_flag < 2) \
868 return; \
869 } while (/*CONSTCOND*/ 0)
870
871 if (v_flag >= 2) {
872 printf("%*sInformation from PBR:\n",
873 indent, "");
874 indent += 4;
875 }
876
877 if (read_disk(sector, &pboot) == -1) {
878 PBR_ERROR("Sector %"PRIdaddr" is unreadable (%s)\n",
879 sector, strerror(errno));
880 return;
881 }
882
883 /* all bytes identical? */
884 p = (unsigned char *)&pboot;
885 endp = p + sizeof(pboot);
886 val = *p;
887 ok = 0;
888 for (; p < endp; p++) {
889 if (*p != val) {
890 ok = 1;
891 break;
892 }
893 }
894 if (! ok)
895 PBR_ERROR("All bytes are identical (0x%02x)\n", val);
896
897 if (pboot.mbr_magic != LE_MBR_MAGIC)
898 PBR_ERROR("Bad magic number (0x%04x)\n",
899 le16toh(pboot.mbr_magic));
900
901 #if 0
902 /* Some i386 OS might fail this test. All non-i386 will fail. */
903 if (pboot.mbr_jmpboot[0] != 0xE9
904 && pboot.mbr_jmpboot[0] != 0xEB) {
905 PBR_ERROR("Does not begin with i386 JMP instruction"
906 " (0x%02x 0x%02x0 0x%02x)\n",
907 pboot.mbr_jmpboot[0], pboot.mbr_jmpboot[1],
908 pboot.mbr_jmpboot[2]);
909 }
910 #endif
911
912 if (v_flag > 0 && errcount == 0)
913 printf("%*sPBR appears to be bootable\n",
914 indent, "");
915 if (v_flag < 2)
916 return;
917
918 if (! is_all_zero(pboot.mbr_oemname, sizeof(pboot.mbr_oemname))) {
919 printvis(indent, "OEM name", (char *)pboot.mbr_oemname,
920 sizeof(pboot.mbr_oemname));
921 }
922
923 if (pboot.mbr_bpb.bpb16.bsBootSig == 0x29)
924 printf("%*sBPB FAT16 boot signature found\n",
925 indent, "");
926 if (pboot.mbr_bpb.bpb32.bsBootSig == 0x29)
927 printf("%*sBPB FAT32 boot signature found\n",
928 indent, "");
929
930 #undef PBR_ERROR
931 }
932
933 int
934 read_boot(const char *name, void *buf, size_t len, int err_exit)
935 {
936 int bfd, ret;
937 struct stat st;
938
939 if (boot_path != NULL)
940 free(boot_path);
941 if (strchr(name, '/') == 0)
942 asprintf(&boot_path, "%s/%s", boot_dir, name);
943 else
944 boot_path = strdup(name);
945 if (boot_path == NULL)
946 err(1, "Malloc failed");
947
948 if ((bfd = open(boot_path, O_RDONLY)) < 0 || fstat(bfd, &st) == -1) {
949 warn("%s", boot_path);
950 goto fail;
951 }
952
953 if (st.st_size > (off_t)len) {
954 warnx("%s: bootcode too large", boot_path);
955 goto fail;
956 }
957 ret = st.st_size;
958 if (ret < 0x200) {
959 warnx("%s: bootcode too small", boot_path);
960 goto fail;
961 }
962 if (read(bfd, buf, len) != ret) {
963 warn("%s", boot_path);
964 goto fail;
965 }
966
967 /*
968 * Do some sanity checking here
969 */
970 if (((struct mbr_sector *)buf)->mbr_magic != LE_MBR_MAGIC) {
971 warnx("%s: invalid magic", boot_path);
972 goto fail;
973 }
974
975 close(bfd);
976 ret = (ret + 0x1ff) & ~0x1ff;
977 return ret;
978
979 fail:
980 if (bfd >= 0)
981 close(bfd);
982 if (err_exit)
983 exit(1);
984 return 0;
985 }
986
987 void
988 init_sector0(int zappart)
989 {
990 int i;
991 int copy_size = offsetof(struct mbr_sector, mbr_dsn);
992
993 #ifdef DEFAULT_BOOTCODE
994 if (bootsize == 0)
995 bootsize = read_boot(DEFAULT_BOOTCODE, bootcode,
996 sizeof bootcode, 0);
997 #endif
998 #ifdef BOOTSEL
999 if (mboot.mbr_bootsel_magic == LE_MBR_BS_MAGIC
1000 && bootcode[0].mbr_bootsel_magic == LE_MBR_BS_MAGIC)
1001 copy_size = MBR_BS_OFFSET;
1002 #endif
1003
1004 if (bootsize != 0) {
1005 boot_installed = 1;
1006 memcpy(&mboot, bootcode, copy_size);
1007 mboot.mbr_bootsel_magic = bootcode[0].mbr_bootsel_magic;
1008 }
1009 mboot.mbr_magic = LE_MBR_MAGIC;
1010
1011 if (!zappart)
1012 return;
1013 for (i = 0; i < MBR_PART_COUNT; i++)
1014 memset(&mboot.mbr_parts[i], 0, sizeof(mboot.mbr_parts[i]));
1015 }
1016
1017 void
1018 get_extended_ptn(void)
1019 {
1020 struct mbr_partition *mp;
1021 struct mbr_sector *boot;
1022 daddr_t offset;
1023 struct mbr_sector *nptn;
1024
1025 /* find first (there should only be one) extended partition */
1026 for (mp = mboot.mbr_parts; !MBR_IS_EXTENDED(mp->mbrp_type); mp++)
1027 if (mp >= &mboot.mbr_parts[MBR_PART_COUNT])
1028 return;
1029
1030 /*
1031 * The extended partition should be structured as a linked list
1032 * (even though it appears, at first glance, to be a tree).
1033 */
1034 ext.base = le32toh(mp->mbrp_start);
1035 ext.limit = ext.base + le32toh(mp->mbrp_size);
1036 ext.ptn_id = mp - mboot.mbr_parts;
1037 for (offset = 0;; offset = le32toh(boot->mbr_parts[1].mbrp_start)) {
1038 nptn = realloc(ext.ptn, (ext.num_ptn + 1) * sizeof *ext.ptn);
1039 if (nptn == NULL)
1040 err(1, "Malloc failed");
1041 ext.ptn = nptn;
1042 boot = ext.ptn + ext.num_ptn;
1043 if (read_s0(offset + ext.base, boot) == -1)
1044 break;
1045 /* expect p0 to be valid and p1 to be another extended ptn */
1046 if (MBR_IS_EXTENDED(boot->mbr_parts[0].mbrp_type))
1047 break;
1048 if (boot->mbr_parts[1].mbrp_type != 0 &&
1049 !MBR_IS_EXTENDED(boot->mbr_parts[1].mbrp_type))
1050 break;
1051 /* p2 and p3 should be unallocated */
1052 if (boot->mbr_parts[2].mbrp_type != 0 ||
1053 boot->mbr_parts[3].mbrp_type != 0)
1054 break;
1055 /* data ptn inside extended one */
1056 if (boot->mbr_parts[0].mbrp_type != 0 &&
1057 offset + le32toh(boot->mbr_parts[0].mbrp_start)
1058 + le32toh(boot->mbr_parts[0].mbrp_size) > ext.limit)
1059 break;
1060
1061 ext.num_ptn++;
1062
1063 if (boot->mbr_parts[1].mbrp_type == 0)
1064 /* end of extended partition chain */
1065 return;
1066 /* must be in sector order */
1067 if (offset >= le32toh(boot->mbr_parts[1].mbrp_start))
1068 break;
1069 }
1070
1071 warnx("Extended partition table is corrupt\n");
1072 ext.is_corrupt = 1;
1073 ext.num_ptn = 0;
1074 }
1075
1076 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
1077 void
1078 get_diskname(const char *fullname, char *diskname, size_t size)
1079 {
1080 const char *p, *p2;
1081 size_t len;
1082
1083 p = strrchr(fullname, '/');
1084 if (p == NULL)
1085 p = fullname;
1086 else
1087 p++;
1088
1089 if (*p == 0) {
1090 strlcpy(diskname, fullname, size);
1091 return;
1092 }
1093
1094 if (*p == 'r')
1095 p++;
1096
1097 for (p2 = p; *p2 != 0; p2++)
1098 if (isdigit((unsigned char)*p2))
1099 break;
1100 if (*p2 == 0) {
1101 /* XXX invalid diskname? */
1102 strlcpy(diskname, fullname, size);
1103 return;
1104 }
1105 while (isdigit((unsigned char)*p2))
1106 p2++;
1107
1108 len = p2 - p;
1109 if (len > size) {
1110 /* XXX */
1111 strlcpy(diskname, fullname, size);
1112 return;
1113 }
1114
1115 memcpy(diskname, p, len);
1116 diskname[len] = 0;
1117 }
1118
1119 void
1120 get_geometry(void)
1121 {
1122 int mib[2], i;
1123 size_t len;
1124 struct biosdisk_info *bip;
1125 struct nativedisk_info *nip;
1126 char diskname[8];
1127
1128 mib[0] = CTL_MACHDEP;
1129 mib[1] = CPU_DISKINFO;
1130 if (sysctl(mib, 2, NULL, &len, NULL, 0) < 0) {
1131 goto out;
1132 }
1133 dl = (struct disklist *) malloc(len);
1134 if (dl == NULL)
1135 err(1, "Malloc failed");
1136 if (sysctl(mib, 2, dl, &len, NULL, 0) < 0) {
1137 free(dl);
1138 dl = 0;
1139 goto out;
1140 }
1141
1142 get_diskname(disk, diskname, sizeof diskname);
1143
1144 for (i = 0; i < dl->dl_nnativedisks; i++) {
1145 nip = &dl->dl_nativedisks[i];
1146 if (strcmp(diskname, nip->ni_devname))
1147 continue;
1148 /*
1149 * XXX listing possible matches is better. This is ok for
1150 * now because the user has a chance to change it later.
1151 * Also, if all the disks have the same parameters then we can
1152 * just use them, we don't need to know which disk is which.
1153 */
1154 if (nip->ni_nmatches != 0) {
1155 bip = &dl->dl_biosdisks[nip->ni_biosmatches[0]];
1156 dos_cylinders = bip->bi_cyl;
1157 dos_heads = bip->bi_head;
1158 dos_sectors = bip->bi_sec;
1159 if (bip->bi_lbasecs)
1160 dos_disksectors = bip->bi_lbasecs;
1161 return;
1162 }
1163 }
1164 out:
1165 /* Allright, allright, make a stupid guess.. */
1166 intuit_translated_geometry();
1167 }
1168 #endif /* (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H */
1169
1170 #ifdef BOOTSEL
1171 daddr_t
1172 get_default_boot(void)
1173 {
1174 unsigned int id;
1175 int p;
1176
1177 if (mboot.mbr_bootsel_magic != LE_MBR_BS_MAGIC)
1178 /* default to first active partition */
1179 return DEFAULT_ACTIVE;
1180
1181 id = mboot.mbr_bootsel.mbrbs_defkey;
1182
1183 if (mboot.mbr_bootsel.mbrbs_flags & MBR_BS_ASCII) {
1184 /* Keycode is ascii */
1185 if (id == '\r')
1186 return DEFAULT_ACTIVE;
1187 /* '1'+ => allocated partition id, 'a'+ => disk 0+ */
1188 if (id >= 'a' && id < 'a' + MAX_BIOS_DISKS)
1189 return DEFAULT_DISK(id - 'a');
1190 id -= '1';
1191 } else {
1192 /* keycode is PS/2 keycode */
1193 if (id == SCAN_ENTER)
1194 return DEFAULT_ACTIVE;
1195 /* 1+ => allocated partition id, F1+ => disk 0+ */
1196 if (id >= SCAN_F1 && id < SCAN_F1 + MAX_BIOS_DISKS)
1197 return DEFAULT_DISK(id - SCAN_F1);
1198 id -= SCAN_1;
1199 }
1200
1201 /* Convert partition index to the invariant start sector number */
1202
1203 for (p = 0; p < MBR_PART_COUNT; p++) {
1204 if (mboot.mbr_parts[p].mbrp_type == 0)
1205 continue;
1206 if (mboot.mbr_bootsel.mbrbs_nametab[p][0] == 0)
1207 continue;
1208 if (id-- == 0)
1209 return le32toh(mboot.mbr_parts[p].mbrp_start);
1210 }
1211
1212 for (p = 0; p < ext.num_ptn; p++) {
1213 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1214 continue;
1215 if (ext.ptn[p].mbr_bootsel.mbrbs_nametab[0][0] == 0)
1216 continue;
1217 if (id-- == 0)
1218 return ext_offset(p)
1219 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_start);
1220 }
1221
1222 return DEFAULT_ACTIVE;
1223 }
1224
1225 void
1226 set_default_boot(daddr_t default_ptn)
1227 {
1228 int p;
1229 static const unsigned char key_list[] = { SCAN_ENTER, SCAN_F1, SCAN_1,
1230 '\r', 'a', '1' };
1231 const unsigned char *key = key_list;
1232
1233 if (mboot.mbr_bootsel_magic != LE_MBR_BS_MAGIC)
1234 /* sanity */
1235 return;
1236
1237 if (mboot.mbr_bootsel.mbrbs_flags & MBR_BS_ASCII)
1238 /* Use ascii values */
1239 key += 3;
1240
1241 if (default_ptn == DEFAULT_ACTIVE) {
1242 mboot.mbr_bootsel.mbrbs_defkey = key[0];
1243 return;
1244 }
1245
1246 if (default_ptn >= DEFAULT_DISK(0)
1247 && default_ptn < DEFAULT_DISK(MAX_BIOS_DISKS)) {
1248 mboot.mbr_bootsel.mbrbs_defkey = key[1]
1249 + default_ptn - DEFAULT_DISK(0);
1250 return;
1251 }
1252
1253 mboot.mbr_bootsel.mbrbs_defkey = key[2];
1254 for (p = 0; p < MBR_PART_COUNT; p++) {
1255 if (mboot.mbr_parts[p].mbrp_type == 0)
1256 continue;
1257 if (mboot.mbr_bootsel.mbrbs_nametab[p][0] == 0)
1258 continue;
1259 if (le32toh(mboot.mbr_parts[p].mbrp_start) == default_ptn)
1260 return;
1261 mboot.mbr_bootsel.mbrbs_defkey++;
1262 }
1263
1264 if (mboot.mbr_bootsel.mbrbs_flags & MBR_BS_EXTLBA) {
1265 for (p = 0; p < ext.num_ptn; p++) {
1266 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1267 continue;
1268 if (ext.ptn[p].mbr_bootsel.mbrbs_nametab[0][0] == 0)
1269 continue;
1270 if (le32toh(ext.ptn[p].mbr_parts[0].mbrp_start) +
1271 ext_offset(p) == default_ptn)
1272 return;
1273 mboot.mbr_bootsel.mbrbs_defkey++;
1274 }
1275 }
1276
1277 /* Default to first active partition */
1278 mboot.mbr_bootsel.mbrbs_defkey = key[0];
1279 }
1280
1281 void
1282 install_bootsel(int needed)
1283 {
1284 struct mbr_bootsel *mbs = &mboot.mbr_bootsel;
1285 int p;
1286 int ext13 = 0;
1287 const char *code;
1288
1289 needed |= MBR_BS_NEWMBR; /* need new bootsel code */
1290
1291 /* Work out which boot code we need for this configuration */
1292 for (p = 0; p < MBR_PART_COUNT; p++) {
1293 if (mboot.mbr_parts[p].mbrp_type == 0)
1294 continue;
1295 if (mboot.mbr_bootsel_magic != LE_MBR_BS_MAGIC)
1296 break;
1297 if (mbs->mbrbs_nametab[p][0] == 0)
1298 continue;
1299 needed |= MBR_BS_ACTIVE;
1300 if (le32toh(mboot.mbr_parts[p].mbrp_start) >= dos_totalsectors)
1301 ext13 = MBR_BS_EXTINT13;
1302 }
1303
1304 for (p = 0; p < ext.num_ptn; p++) {
1305 if (ext.ptn[p].mbr_bootsel_magic != LE_MBR_BS_MAGIC)
1306 continue;
1307 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1308 continue;
1309 if (ext.ptn[p].mbr_bootsel.mbrbs_nametab[p][0] == 0)
1310 continue;
1311 needed |= MBR_BS_EXTLBA | MBR_BS_ACTIVE;
1312 }
1313
1314 if (B_flag)
1315 needed |= MBR_BS_ACTIVE;
1316
1317 /* Is the installed code good enough ? */
1318 if (!i_flag && (needed == 0 ||
1319 (mboot.mbr_bootsel_magic == LE_MBR_BS_MAGIC
1320 && (mbs->mbrbs_flags & needed) == needed))) {
1321 /* yes - just set flags */
1322 mbs->mbrbs_flags |= ext13;
1323 return;
1324 }
1325
1326 /* ok - we need to replace the bootcode */
1327
1328 if (f_flag && !(i_flag || B_flag)) {
1329 warnx("Installed bootfile doesn't support required options.");
1330 return;
1331 }
1332
1333 if (!f_flag && bootsize == 0 && !i_flag)
1334 /* Output an explanation for the 'update bootcode' prompt. */
1335 printf("\n%s\n",
1336 "Installed bootfile doesn't support required options.");
1337
1338 /* Were we told a specific file ? (which we have already read) */
1339 /* If so check that it supports what we need. */
1340 if (bootsize != 0 && needed != 0
1341 && (bootcode[0].mbr_bootsel_magic != LE_MBR_BS_MAGIC
1342 || ((bootcode[0].mbr_bootsel.mbrbs_flags & needed) != needed))) {
1343 /* No it doesn't... */
1344 if (f_flag)
1345 warnx("Bootfile %s doesn't support "
1346 "required bootsel options", boot_path );
1347 /* But install it anyway */
1348 else
1349 if (yesno("Bootfile %s doesn't support the required "
1350 "options,\ninstall default bootfile instead?",
1351 boot_path))
1352 bootsize = 0;
1353 }
1354
1355 if (bootsize == 0) {
1356 /* Get name of bootfile that supports the required facilities */
1357 code = DEFAULT_BOOTCODE;
1358 if (needed & MBR_BS_ACTIVE)
1359 code = DEFAULT_BOOTSELCODE;
1360 #ifdef DEFAULT_BOOTEXTCODE
1361 if (needed & MBR_BS_EXTLBA)
1362 code = DEFAULT_BOOTEXTCODE;
1363 #endif
1364
1365 bootsize = read_boot(code, bootcode, sizeof bootcode, 0);
1366 if (bootsize == 0)
1367 /* The old bootcode is better than no bootcode at all */
1368 return;
1369 if ((bootcode[0].mbr_bootsel.mbrbs_flags & needed) != needed)
1370 warnx("Default bootfile %s doesn't support required "
1371 "options. Got flags 0x%x, wanted 0x%x\n",
1372 boot_path, bootcode[0].mbr_bootsel.mbrbs_flags,
1373 needed);
1374 }
1375
1376 if (!f_flag && !yesno("Update the bootcode from %s?", boot_path))
1377 return;
1378
1379 init_sector0(0);
1380
1381 if (mboot.mbr_bootsel_magic == LE_MBR_BS_MAGIC)
1382 mbs->mbrbs_flags = bootcode[0].mbr_bootsel.mbrbs_flags | ext13;
1383 }
1384
1385 daddr_t
1386 configure_bootsel(daddr_t default_ptn)
1387 {
1388 struct mbr_bootsel *mbs = &mboot.mbr_bootsel;
1389 int i, item, opt;
1390 int tmo;
1391 daddr_t *off;
1392 int num_bios_disks;
1393
1394 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
1395 if (dl != NULL) {
1396 num_bios_disks = dl->dl_nbiosdisks;
1397 if (num_bios_disks > MAX_BIOS_DISKS)
1398 num_bios_disks = MAX_BIOS_DISKS;
1399 } else
1400 #endif
1401 num_bios_disks = MAX_BIOS_DISKS;
1402
1403 printf("\nBoot selector configuration:\n");
1404
1405 /* The timeout value is in ticks, ~18.2 Hz. Avoid using floats.
1406 * Ticks are nearly 64k/3600 - so our long timers are sligtly out!
1407 * Newer bootcode always waits for 1 tick, so treats 0xffff
1408 * as wait forever.
1409 */
1410 tmo = le16toh(mbs->mbrbs_timeo);
1411 tmo = tmo == 0xffff ? -1 : (10 * tmo + 9) / 182;
1412 tmo = decimal("Timeout value (0 to 3600 seconds, -1 => never)",
1413 tmo, 0, -1, 3600);
1414 mbs->mbrbs_timeo = htole16(tmo == -1 ? 0xffff : (tmo * 182) / 10);
1415
1416 off = calloc(1 + MBR_PART_COUNT + ext.num_ptn + num_bios_disks, sizeof *off);
1417 if (off == NULL)
1418 err(1, "Malloc failed");
1419
1420 printf("Select the default boot option. Options are:\n\n");
1421 item = 0;
1422 opt = 0;
1423 off[opt] = DEFAULT_ACTIVE;
1424 printf("%d: The first active partition\n", opt);
1425 for (i = 0; i < MBR_PART_COUNT; i++) {
1426 if (mboot.mbr_parts[i].mbrp_type == 0)
1427 continue;
1428 if (mbs->mbrbs_nametab[i][0] == 0)
1429 continue;
1430 printf("%d: %s\n", ++opt, &mbs->mbrbs_nametab[i][0]);
1431 off[opt] = le32toh(mboot.mbr_parts[i].mbrp_start);
1432 if (off[opt] == default_ptn)
1433 item = opt;
1434 }
1435 if (mbs->mbrbs_flags & MBR_BS_EXTLBA) {
1436 for (i = 0; i < ext.num_ptn; i++) {
1437 if (ext.ptn[i].mbr_parts[0].mbrp_type == 0)
1438 continue;
1439 if (ext.ptn[i].mbr_bootsel.mbrbs_nametab[0][0] == 0)
1440 continue;
1441 printf("%d: %s\n",
1442 ++opt, ext.ptn[i].mbr_bootsel.mbrbs_nametab[0]);
1443 off[opt] = ext_offset(i) +
1444 le32toh(ext.ptn[i].mbr_parts[0].mbrp_start);
1445 if (off[opt] == default_ptn)
1446 item = opt;
1447 }
1448 }
1449 for (i = 0; i < num_bios_disks; i++) {
1450 printf("%d: Harddisk %d\n", ++opt, i);
1451 off[opt] = DEFAULT_DISK(i);
1452 if (DEFAULT_DISK(i) == default_ptn)
1453 item = opt;
1454 }
1455
1456 item = decimal("Default boot option", item, 0, 0, opt);
1457
1458 default_ptn = off[item];
1459 free(off);
1460 return default_ptn;
1461 }
1462 #endif /* BOOTSEL */
1463
1464
1465 /* Prerequisite: the disklabel parameters and master boot record must
1466 * have been read (i.e. dos_* and mboot are meaningful).
1467 * Specification: modifies dos_cylinders, dos_heads, dos_sectors, and
1468 * dos_cylindersectors to be consistent with what the
1469 * partition table is using, if we can find a geometry
1470 * which is consistent with all partition table entries.
1471 * We may get the number of cylinders slightly wrong (in
1472 * the conservative direction). The idea is to be able
1473 * to create a NetBSD partition on a disk we don't know
1474 * the translated geometry of.
1475 * This routine is only used for non-x86 systems or when we fail to
1476 * get the BIOS geometry from the kernel.
1477 */
1478 void
1479 intuit_translated_geometry(void)
1480 {
1481 uint32_t xcylinders;
1482 int xheads = -1, xsectors = -1, i, j;
1483 unsigned int c1, h1, s1, c2, h2, s2;
1484 unsigned long a1, a2;
1485 uint64_t num, denom;
1486
1487 /*
1488 * The physical parameters may be invalid as bios geometry.
1489 * If we cannot determine the actual bios geometry, we are
1490 * better off picking a likely 'faked' geometry than leaving
1491 * the invalid physical one.
1492 */
1493
1494 if (dos_cylinders > MAXCYL || dos_heads > MAXHEAD ||
1495 dos_sectors > MAXSECTOR) {
1496 h1 = MAXHEAD - 1;
1497 c1 = MAXCYL - 1;
1498 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
1499 if (dl != NULL) {
1500 /* BIOS may use 256 heads or 1024 cylinders */
1501 for (i = 0; i < dl->dl_nbiosdisks; i++) {
1502 if (h1 < (unsigned int)dl->dl_biosdisks[i].bi_head)
1503 h1 = dl->dl_biosdisks[i].bi_head;
1504 if (c1 < (unsigned int)dl->dl_biosdisks[i].bi_cyl)
1505 c1 = dl->dl_biosdisks[i].bi_cyl;
1506 }
1507 }
1508 #endif
1509 dos_sectors = MAXSECTOR;
1510 dos_heads = h1;
1511 dos_cylinders = disklabel.d_secperunit / (MAXSECTOR * h1);
1512 if (dos_cylinders > c1)
1513 dos_cylinders = c1;
1514 }
1515
1516 /* Try to deduce the number of heads from two different mappings. */
1517 for (i = 0; i < MBR_PART_COUNT * 2 - 1; i++) {
1518 if (get_mapping(i, &c1, &h1, &s1, &a1) < 0)
1519 continue;
1520 a1 -= s1;
1521 for (j = i + 1; j < MBR_PART_COUNT * 2; j++) {
1522 if (get_mapping(j, &c2, &h2, &s2, &a2) < 0)
1523 continue;
1524 a2 -= s2;
1525 num = (uint64_t)h1 * a2 - (uint64_t)h2 * a1;
1526 denom = (uint64_t)c2 * a1 - (uint64_t)c1 * a2;
1527 if (denom != 0 && num != 0 && num % denom == 0) {
1528 xheads = num / denom;
1529 xsectors = a1 / (c1 * xheads + h1);
1530 break;
1531 }
1532 }
1533 if (xheads != -1)
1534 break;
1535 }
1536
1537 if (xheads == -1) {
1538 warnx("Cannot determine the number of heads");
1539 return;
1540 }
1541
1542 if (xsectors == -1) {
1543 warnx("Cannot determine the number of sectors");
1544 return;
1545 }
1546
1547 /* Estimate the number of cylinders. */
1548 xcylinders = disklabel.d_secperunit / xheads / xsectors;
1549 if (disklabel.d_secperunit > xcylinders * xheads * xsectors)
1550 xcylinders++;
1551
1552 /*
1553 * Now verify consistency with each of the partition table entries.
1554 * Be willing to shove cylinders up a little bit to make things work,
1555 * but translation mismatches are fatal.
1556 */
1557 for (i = 0; i < MBR_PART_COUNT * 2; i++) {
1558 if (get_mapping(i, &c1, &h1, &s1, &a1) < 0)
1559 continue;
1560 if (c1 >= MAXCYL - 2)
1561 continue;
1562 if (xsectors * (c1 * xheads + h1) + s1 != a1)
1563 return;
1564 }
1565
1566
1567 /* Everything checks out.
1568 * Reset the geometry to use for further calculations.
1569 * But cylinders cannot be > 1024.
1570 */
1571 if (xcylinders > MAXCYL)
1572 dos_cylinders = MAXCYL;
1573 else
1574 dos_cylinders = xcylinders;
1575 dos_heads = xheads;
1576 dos_sectors = xsectors;
1577 }
1578
1579 /*
1580 * For the purposes of intuit_translated_geometry(), treat the partition
1581 * table as a list of eight mapping between (cylinder, head, sector)
1582 * triplets and absolute sectors. Get the relevant geometry triplet and
1583 * absolute sectors for a given entry, or return -1 if it isn't present.
1584 * Note: for simplicity, the returned sector is 0-based.
1585 */
1586 int
1587 get_mapping(int i, unsigned int *cylinder, unsigned int *head, unsigned int *sector,
1588 unsigned long *absolute)
1589 {
1590 struct mbr_partition *part = &mboot.mbr_parts[i / 2];
1591
1592 if (part->mbrp_type == 0)
1593 return -1;
1594 if (i % 2 == 0) {
1595 *cylinder = MBR_PCYL(part->mbrp_scyl, part->mbrp_ssect);
1596 *head = part->mbrp_shd;
1597 *sector = MBR_PSECT(part->mbrp_ssect);
1598 *absolute = le32toh(part->mbrp_start);
1599 } else {
1600 *cylinder = MBR_PCYL(part->mbrp_ecyl, part->mbrp_esect);
1601 *head = part->mbrp_ehd;
1602 *sector = MBR_PSECT(part->mbrp_esect);
1603 *absolute = le32toh(part->mbrp_start)
1604 + le32toh(part->mbrp_size) - 1;
1605 }
1606 /* Sanity check the data against all zeroes */
1607 if ((*cylinder == 0) && (*sector == 0) && (*head == 0))
1608 return -1;
1609 /* sector numbers in the MBR partition table start at 1 */
1610 *sector = *sector - 1;
1611 /* Sanity check the data against max values */
1612 if ((((*cylinder * MAXHEAD) + *head) * MAXSECTOR + *sector) < *absolute)
1613 /* cannot be a CHS mapping */
1614 return -1;
1615 return 0;
1616 }
1617
1618 static void
1619 delete_ptn(int part)
1620 {
1621 if (part == ext.ptn_id) {
1622 /* forget all about the extended partition */
1623 free(ext.ptn);
1624 memset(&ext, 0, sizeof ext);
1625 }
1626
1627 mboot.mbr_parts[part].mbrp_type = 0;
1628 }
1629
1630 static void
1631 delete_ext_ptn(int part)
1632 {
1633
1634 if (part == 0) {
1635 ext.ptn[0].mbr_parts[0].mbrp_type = 0;
1636 return;
1637 }
1638 ext.ptn[part - 1].mbr_parts[1] = ext.ptn[part].mbr_parts[1];
1639 memmove(&ext.ptn[part], &ext.ptn[part + 1],
1640 (ext.num_ptn - part - 1) * sizeof ext.ptn[0]);
1641 ext.num_ptn--;
1642 }
1643
1644 static int
1645 add_ext_ptn(daddr_t start, daddr_t size)
1646 {
1647 int part;
1648 struct mbr_partition *partp;
1649 struct mbr_sector *nptn;
1650
1651 nptn = realloc(ext.ptn, (ext.num_ptn + 1) * sizeof *ext.ptn);
1652 if (!nptn)
1653 err(1, "realloc");
1654 ext.ptn = nptn;
1655 for (part = 0; part < ext.num_ptn; part++)
1656 if (ext_offset(part) > start)
1657 break;
1658 /* insert before 'part' - make space... */
1659 memmove(&ext.ptn[part + 1], &ext.ptn[part],
1660 (ext.num_ptn - part) * sizeof ext.ptn[0]);
1661 memset(&ext.ptn[part], 0, sizeof ext.ptn[0]);
1662 ext.ptn[part].mbr_magic = LE_MBR_MAGIC;
1663 /* we will be 'part' */
1664 if (part == 0) {
1665 /* link us to 'next' */
1666 partp = &ext.ptn[0].mbr_parts[1];
1667 /* offset will be fixed by caller */
1668 partp->mbrp_size = htole32(
1669 le32toh(ext.ptn[1].mbr_parts[0].mbrp_start) +
1670 le32toh(ext.ptn[1].mbr_parts[0].mbrp_size));
1671 } else {
1672 /* link us to prev's next */
1673 partp = &ext.ptn[part - 1].mbr_parts[1];
1674 ext.ptn[part].mbr_parts[1] = *partp;
1675 /* and prev onto us */
1676 partp->mbrp_start = htole32(start - dos_sectors - ext.base);
1677 partp->mbrp_size = htole32(size + dos_sectors);
1678 }
1679 partp->mbrp_type = 5; /* as used by win98 */
1680 partp->mbrp_flag = 0;
1681 /* wallop in some CHS values - win98 doesn't saturate them */
1682 dos(le32toh(partp->mbrp_start),
1683 &partp->mbrp_scyl, &partp->mbrp_shd, &partp->mbrp_ssect);
1684 dos(le32toh(partp->mbrp_start) + le32toh(partp->mbrp_size) - 1,
1685 &partp->mbrp_ecyl, &partp->mbrp_ehd, &partp->mbrp_esect);
1686 ext.num_ptn++;
1687
1688 return part;
1689 }
1690
1691 static const char *
1692 check_overlap(int part, int sysid, daddr_t start, daddr_t size, int fix)
1693 {
1694 int p;
1695 unsigned int p_s, p_e;
1696
1697 if (sysid != 0) {
1698 if (start == 0)
1699 return "Sector zero is reserved for the MBR";
1700 #if 0
1701 if (start < dos_sectors)
1702 /* This is just a convention, not a requirement */
1703 return "Track zero is reserved for the BIOS";
1704 #endif
1705 if (start + size > disksectors)
1706 return "Partition exceeds size of disk";
1707 for (p = 0; p < MBR_PART_COUNT; p++) {
1708 if (p == part || mboot.mbr_parts[p].mbrp_type == 0)
1709 continue;
1710 p_s = le32toh(mboot.mbr_parts[p].mbrp_start);
1711 p_e = p_s + le32toh(mboot.mbr_parts[p].mbrp_size);
1712 if (start + size <= p_s || start >= p_e)
1713 continue;
1714 if (f_flag) {
1715 if (fix)
1716 delete_ptn(p);
1717 return 0;
1718 }
1719 return "Overlaps another partition";
1720 }
1721 }
1722
1723 /* Are we trying to create an extended partition */
1724 if (!MBR_IS_EXTENDED(mboot.mbr_parts[part].mbrp_type)) {
1725 /* this wasn't the extended partition */
1726 if (!MBR_IS_EXTENDED(sysid))
1727 return 0;
1728 /* making an extended partition */
1729 if (ext.base != 0) {
1730 if (!f_flag)
1731 return "There cannot be 2 extended partitions";
1732 if (fix)
1733 delete_ptn(ext.ptn_id);
1734 }
1735 if (fix) {
1736 /* allocate a new extended partition */
1737 ext.ptn = calloc(1, sizeof ext.ptn[0]);
1738 if (ext.ptn == NULL)
1739 err(1, "Malloc failed");
1740 ext.ptn[0].mbr_magic = LE_MBR_MAGIC;
1741 ext.ptn_id = part;
1742 ext.base = start;
1743 ext.limit = start + size;
1744 ext.num_ptn = 1;
1745 }
1746 return 0;
1747 }
1748
1749 /* Check we haven't cut space allocated to an extended ptn */
1750
1751 if (!MBR_IS_EXTENDED(sysid)) {
1752 /* no longer an extended partition */
1753 if (fix) {
1754 /* Kill all memory of the extended partitions */
1755 delete_ptn(part);
1756 return 0;
1757 }
1758 if (ext.num_ptn == 0 ||
1759 (ext.num_ptn == 1 && ext.ptn[0].mbr_parts[0].mbrp_type == 0))
1760 /* nothing in extended partition */
1761 return 0;
1762 if (f_flag)
1763 return 0;
1764 if (yesno("Do you really want to delete all the extended partitions?"))
1765 return 0;
1766 return "Extended partition busy";
1767 }
1768
1769 if (le32toh(mboot.mbr_parts[part].mbrp_start) != ext.base)
1770 /* maybe impossible, but an extra sanity check */
1771 return 0;
1772
1773 for (p = ext.num_ptn; --p >= 0;) {
1774 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1775 continue;
1776 p_s = ext_offset(p);
1777 p_e = p_s + le32toh(ext.ptn[p].mbr_parts[0].mbrp_start)
1778 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_size);
1779 if (p_s >= start && p_e <= start + size)
1780 continue;
1781 if (!f_flag)
1782 return "Extended partition outside main partition";
1783 if (fix)
1784 delete_ext_ptn(p);
1785 }
1786
1787 if (fix && start != ext.base) {
1788 /* The internal offsets need to be fixed up */
1789 for (p = 0; p < ext.num_ptn - 1; p++)
1790 ext.ptn[p].mbr_parts[1].mbrp_start = htole32(
1791 le32toh(ext.ptn[p].mbr_parts[1].mbrp_start)
1792 + ext.base - start);
1793 /* and maybe an empty partition at the start */
1794 if (ext.ptn[0].mbr_parts[0].mbrp_type == 0) {
1795 if (le32toh(ext.ptn[0].mbr_parts[1].mbrp_start) == 0) {
1796 /* don't need the empty slot */
1797 memmove(&ext.ptn[0], &ext.ptn[1],
1798 (ext.num_ptn - 1) * sizeof ext.ptn[0]);
1799 ext.num_ptn--;
1800 }
1801 } else {
1802 /* must create an empty slot */
1803 add_ext_ptn(start, dos_sectors);
1804 ext.ptn[0].mbr_parts[1].mbrp_start = htole32(ext.base
1805 - start);
1806 }
1807 }
1808 if (fix) {
1809 ext.base = start;
1810 ext.limit = start + size;
1811 }
1812 return 0;
1813 }
1814
1815 static const char *
1816 check_ext_overlap(int part, int sysid, daddr_t start, daddr_t size, int fix)
1817 {
1818 int p;
1819 unsigned int p_s, p_e;
1820
1821 if (sysid == 0)
1822 return 0;
1823
1824 if (MBR_IS_EXTENDED(sysid))
1825 return "Nested extended partitions are not allowed";
1826
1827 /* allow one track at start for extended partition header */
1828 start -= dos_sectors;
1829 size += dos_sectors;
1830 if (start < ext.base || start + size > ext.limit)
1831 return "Outside bounds of extended partition";
1832
1833 if (f_flag && !fix)
1834 return 0;
1835
1836 for (p = ext.num_ptn; --p >= 0;) {
1837 if (p == part || ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1838 continue;
1839 p_s = ext_offset(p);
1840 p_e = p_s + le32toh(ext.ptn[p].mbr_parts[0].mbrp_start)
1841 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_size);
1842 if (p == 0)
1843 p_s += le32toh(ext.ptn[p].mbr_parts[0].mbrp_start)
1844 - dos_sectors;
1845 if (start < p_e && start + size > p_s) {
1846 if (!f_flag)
1847 return "Overlaps another extended partition";
1848 if (fix) {
1849 if (part == -1)
1850 delete_ext_ptn(p);
1851 else
1852 /* must not change numbering yet */
1853 ext.ptn[p].mbr_parts[0].mbrp_type = 0;
1854 }
1855 }
1856 }
1857 return 0;
1858 }
1859
1860 int
1861 change_part(int extended, int part, int sysid, daddr_t start, daddr_t size,
1862 char *bootmenu)
1863 {
1864 struct mbr_partition *partp;
1865 struct mbr_sector *boot;
1866 daddr_t offset;
1867 const char *e;
1868 int upart = part;
1869 int p;
1870 int fl;
1871 daddr_t n_s, n_e;
1872 const char *errtext;
1873 #ifdef BOOTSEL
1874 char tmp_bootmenu[MBR_PART_COUNT * (MBR_BS_PARTNAMESIZE + 1)];
1875 int bootmenu_len = (extended ? MBR_PART_COUNT : 1) * (MBR_BS_PARTNAMESIZE + 1);
1876 #endif
1877
1878 if (extended) {
1879 if (part != -1 && part < ext.num_ptn) {
1880 boot = &ext.ptn[part];
1881 partp = &boot->mbr_parts[0];
1882 offset = ext_offset(part);
1883 } else {
1884 part = -1;
1885 boot = 0;
1886 partp = 0;
1887 offset = 0;
1888 }
1889 upart = 0;
1890 e = "E";
1891 } else {
1892 boot = &mboot;
1893 partp = &boot->mbr_parts[part];
1894 offset = 0;
1895 e = "";
1896 }
1897
1898 if (!f_flag && part != -1) {
1899 printf("The data for partition %s%d is:\n", e, part);
1900 print_part(boot, upart, offset);
1901 }
1902
1903 #ifdef BOOTSEL
1904 if (bootmenu != NULL)
1905 strlcpy(tmp_bootmenu, bootmenu, bootmenu_len);
1906 else
1907 if (boot != NULL && boot->mbr_bootsel_magic == LE_MBR_BS_MAGIC)
1908 strlcpy(tmp_bootmenu,
1909 boot->mbr_bootsel.mbrbs_nametab[upart],
1910 bootmenu_len);
1911 else
1912 tmp_bootmenu[0] = 0;
1913 #endif
1914
1915 if (!s_flag && partp != NULL) {
1916 /* values not specified, default to current ones */
1917 sysid = partp->mbrp_type;
1918 start = offset + le32toh(partp->mbrp_start);
1919 size = le32toh(partp->mbrp_size);
1920 }
1921
1922 /* creating a new partition, default to free space */
1923 if (!s_flag && sysid == 0 && extended) {
1924 /* non-extended partition */
1925 start = ext.base;
1926 for (p = 0; p < ext.num_ptn; p++) {
1927 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
1928 continue;
1929 n_s = ext_offset(p);
1930 if (n_s > start + dos_sectors)
1931 break;
1932 start = ext_offset(p)
1933 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_start)
1934 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_size);
1935 }
1936 if (ext.limit - start <= dos_sectors) {
1937 printf("No space in extended partition\n");
1938 return 0;
1939 }
1940 start += dos_sectors;
1941 }
1942
1943 if (!s_flag && sysid == 0 && !extended) {
1944 /* same for non-extended partition */
1945 /* first see if old start is free */
1946 if (start < dos_sectors)
1947 start = 0;
1948 for (p = 0; start != 0 && p < MBR_PART_COUNT; p++) {
1949 if (mboot.mbr_parts[p].mbrp_type == 0)
1950 continue;
1951 n_s = le32toh(mboot.mbr_parts[p].mbrp_start);
1952 if (start >= n_s &&
1953 start < n_s + le32toh(mboot.mbr_parts[p].mbrp_size))
1954 start = 0;
1955 }
1956 if (start == 0) {
1957 /* Look for first gap */
1958 start = dos_sectors;
1959 for (p = 0; p < MBR_PART_COUNT; p++) {
1960 if (mboot.mbr_parts[p].mbrp_type == 0)
1961 continue;
1962 n_s = le32toh(mboot.mbr_parts[p].mbrp_start);
1963 n_e = n_s + le32toh(mboot.mbr_parts[p].mbrp_size);
1964 if (start >= n_s && start < n_e) {
1965 start = n_e;
1966 p = -1;
1967 }
1968 }
1969 if (start >= disksectors) {
1970 printf("No free space\n");
1971 return 0;
1972 }
1973 }
1974 }
1975
1976 if (!f_flag) {
1977 /* request new values from user */
1978 if (sysid == 0)
1979 sysid = 169;
1980 sysid = decimal("sysid", sysid, 0, 0, 255);
1981 if (sysid == 0 && !v_flag) {
1982 start = 0;
1983 size = 0;
1984 #ifdef BOOTSEL
1985 tmp_bootmenu[0] = 0;
1986 #endif
1987 } else {
1988 daddr_t old = start;
1989 daddr_t lim = extended ? ext.limit : disksectors;
1990 start = decimal("start", start,
1991 DEC_SEC | DEC_RND_0 | (extended ? DEC_RND : 0),
1992 extended ? ext.base : 0, lim);
1993 /* Adjust 'size' so that end doesn't move when 'start'
1994 * is only changed slightly.
1995 */
1996 if (size > start - old)
1997 size -= start - old;
1998 else
1999 size = 0;
2000 /* Find end of available space from this start point */
2001 if (extended) {
2002 for (p = 0; p < ext.num_ptn; p++) {
2003 if (p == part)
2004 continue;
2005 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
2006 continue;
2007 n_s = ext_offset(p);
2008 if (n_s > start && n_s < lim)
2009 lim = n_s;
2010 if (start >= n_s && start < n_s
2011 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_start)
2012 + le32toh(ext.ptn[p].mbr_parts[0].mbrp_size)) {
2013 lim = start;
2014 break;
2015 }
2016 }
2017 } else {
2018 for (p = 0; p < MBR_PART_COUNT; p++) {
2019 if (p == part)
2020 continue;
2021 if (mboot.mbr_parts[p].mbrp_type == 0)
2022 continue;
2023 n_s = le32toh(mboot.mbr_parts[p].mbrp_start);
2024 if (n_s > start && n_s < lim)
2025 lim = n_s;
2026 if (start >= n_s && start < n_s
2027 + le32toh(mboot.mbr_parts[p].mbrp_size)) {
2028 lim = start;
2029 break;
2030 }
2031 }
2032 }
2033 lim -= start;
2034 if (lim == 0) {
2035 printf("Start sector already allocated\n");
2036 return 0;
2037 }
2038 if (size == 0 || size > lim)
2039 size = lim;
2040 fl = DEC_SEC;
2041 if (start % dos_cylindersectors == dos_sectors)
2042 fl |= DEC_RND_DOWN;
2043 if (start == 2 * dos_sectors)
2044 fl |= DEC_RND_DOWN | DEC_RND_DOWN_2;
2045 size = decimal("size", size, fl, 0, lim);
2046 #ifdef BOOTSEL
2047 #ifndef DEFAULT_BOOTEXTCODE
2048 if (!extended)
2049 #endif
2050 string("bootmenu", bootmenu_len, tmp_bootmenu);
2051 #endif
2052 }
2053 }
2054
2055 /*
2056 * Before we write these away, we must verify that nothing
2057 * untoward has been requested.
2058 */
2059
2060 if (extended)
2061 errtext = check_ext_overlap(part, sysid, start, size, 0);
2062 else
2063 errtext = check_overlap(part, sysid, start, size, 0);
2064 if (errtext != NULL) {
2065 if (f_flag)
2066 errx(2, "%s\n", errtext);
2067 printf("%s\n", errtext);
2068 return 0;
2069 }
2070
2071 /*
2072 * Before proceeding, delete any overlapped partitions.
2073 * This can only happen if '-f' was supplied on the command line.
2074 * Just hope the caller knows what they are doing.
2075 * This also fixes the base of each extended partition if the
2076 * partition itself has moved.
2077 */
2078
2079 if (extended)
2080 errtext = check_ext_overlap(part, sysid, start, size, 1);
2081 else
2082 errtext = check_overlap(part, sysid, start, size, 1);
2083
2084 if (errtext)
2085 errx(1, "%s\n", errtext);
2086
2087 if (sysid == 0) {
2088 /* delete this partition - save info though */
2089 if (partp == NULL)
2090 /* must have been trying to create an extended ptn */
2091 return 0;
2092 if (start == 0 && size == 0)
2093 memset(partp, 0, sizeof *partp);
2094 #ifdef BOOTSEL
2095 if (boot->mbr_bootsel_magic == LE_MBR_BS_MAGIC)
2096 memset(boot->mbr_bootsel.mbrbs_nametab[upart], 0,
2097 sizeof boot->mbr_bootsel.mbrbs_nametab[0]);
2098 #endif
2099 if (extended)
2100 delete_ext_ptn(part);
2101 else
2102 delete_ptn(part);
2103 return 1;
2104 }
2105
2106
2107 if (extended) {
2108 if (part != -1)
2109 delete_ext_ptn(part);
2110 if (start == ext.base + dos_sectors)
2111 /* First one must have been free */
2112 part = 0;
2113 else
2114 part = add_ext_ptn(start, size);
2115
2116 /* These must be re-calculated because of the realloc */
2117 boot = &ext.ptn[part];
2118 partp = &boot->mbr_parts[0];
2119 offset = ext_offset(part);
2120 }
2121
2122 partp->mbrp_type = sysid;
2123 partp->mbrp_start = htole32( start - offset);
2124 partp->mbrp_size = htole32( size);
2125 dos(start, &partp->mbrp_scyl, &partp->mbrp_shd, &partp->mbrp_ssect);
2126 dos(start + size - 1,
2127 &partp->mbrp_ecyl, &partp->mbrp_ehd, &partp->mbrp_esect);
2128 #ifdef BOOTSEL
2129 if (extended) {
2130 boot->mbr_bootsel_magic = LE_MBR_BS_MAGIC;
2131 strncpy(boot->mbr_bootsel.mbrbs_nametab[upart], tmp_bootmenu,
2132 bootmenu_len);
2133 } else {
2134 /* We need to bootselect code installed in order to have
2135 * somewhere to safely write the menu tag.
2136 */
2137 if (boot->mbr_bootsel_magic != LE_MBR_BS_MAGIC) {
2138 if (f_flag ||
2139 yesno("The bootselect code is not installed, "
2140 "do you want to install it now?"))
2141 install_bootsel(MBR_BS_ACTIVE);
2142 }
2143 if (boot->mbr_bootsel_magic == LE_MBR_BS_MAGIC) {
2144 strncpy(boot->mbr_bootsel.mbrbs_nametab[upart],
2145 tmp_bootmenu, bootmenu_len);
2146 }
2147 }
2148 #endif
2149
2150 if (v_flag && !f_flag && yesno("Explicitly specify beg/end address?")) {
2151 /* this really isn't a good idea.... */
2152 int tsector, tcylinder, thead;
2153
2154 tcylinder = MBR_PCYL(partp->mbrp_scyl, partp->mbrp_ssect);
2155 thead = partp->mbrp_shd;
2156 tsector = MBR_PSECT(partp->mbrp_ssect);
2157 tcylinder = decimal("beginning cylinder",
2158 tcylinder, 0, 0, dos_cylinders - 1);
2159 thead = decimal("beginning head",
2160 thead, 0, 0, dos_heads - 1);
2161 tsector = decimal("beginning sector",
2162 tsector, 0, 1, dos_sectors);
2163 partp->mbrp_scyl = DOSCYL(tcylinder);
2164 partp->mbrp_shd = thead;
2165 partp->mbrp_ssect = DOSSECT(tsector, tcylinder);
2166
2167 tcylinder = MBR_PCYL(partp->mbrp_ecyl, partp->mbrp_esect);
2168 thead = partp->mbrp_ehd;
2169 tsector = MBR_PSECT(partp->mbrp_esect);
2170 tcylinder = decimal("ending cylinder",
2171 tcylinder, 0, 0, dos_cylinders - 1);
2172 thead = decimal("ending head",
2173 thead, 0, 0, dos_heads - 1);
2174 tsector = decimal("ending sector",
2175 tsector, 0, 1, dos_sectors);
2176 partp->mbrp_ecyl = DOSCYL(tcylinder);
2177 partp->mbrp_ehd = thead;
2178 partp->mbrp_esect = DOSSECT(tsector, tcylinder);
2179 }
2180
2181 /* If we had to mark an extended partition as deleted because
2182 * another request would have overlapped it, now is the time
2183 * to do the actual delete.
2184 */
2185 if (extended && f_flag) {
2186 for (p = ext.num_ptn; --p >= 0;)
2187 if (ext.ptn[p].mbr_parts[0].mbrp_type == 0)
2188 delete_ext_ptn(p);
2189 }
2190 return 1;
2191 }
2192
2193 void
2194 print_params(void)
2195 {
2196
2197 if (sh_flag) {
2198 printf("DISK=%s\n", disk);
2199 printf("DLCYL=%d\nDLHEAD=%d\nDLSEC=%d\nDLSIZE=%"PRIdaddr"\n",
2200 cylinders, heads, sectors, disksectors);
2201 printf("BCYL=%d\nBHEAD=%d\nBSEC=%d\nBDLSIZE=%"PRIdaddr"\n",
2202 dos_cylinders, dos_heads, dos_sectors, dos_disksectors);
2203 printf("NUMEXTPTN=%d\n", ext.num_ptn);
2204 return;
2205 }
2206
2207 /* Not sh_flag */
2208 printf("Disk: %s\n", disk);
2209 printf("NetBSD disklabel disk geometry:\n");
2210 printf("cylinders: %d, heads: %d, sectors/track: %d "
2211 "(%d sectors/cylinder)\ntotal sectors: %"PRIdaddr"\n\n",
2212 cylinders, heads, sectors, cylindersectors, disksectors);
2213 printf("BIOS disk geometry:\n");
2214 printf("cylinders: %d, heads: %d, sectors/track: %d "
2215 "(%d sectors/cylinder)\ntotal sectors: %"PRIdaddr"\n\n",
2216 dos_cylinders, dos_heads, dos_sectors, dos_cylindersectors,
2217 dos_disksectors);
2218 }
2219
2220 /* Find the first active partition, else return MBR_PART_COUNT */
2221 int
2222 first_active(void)
2223 {
2224 struct mbr_partition *partp = &mboot.mbr_parts[0];
2225 int part;
2226
2227 for (part = 0; part < MBR_PART_COUNT; part++)
2228 if (partp[part].mbrp_flag & MBR_PFLAG_ACTIVE)
2229 return part;
2230 return MBR_PART_COUNT;
2231 }
2232
2233 void
2234 change_active(int which)
2235 {
2236 struct mbr_partition *partp;
2237 int part;
2238 int active = MBR_PART_COUNT;
2239
2240 partp = &mboot.mbr_parts[0];
2241
2242 if (a_flag && which != -1)
2243 active = which;
2244 else
2245 active = first_active();
2246 if (!f_flag) {
2247 if (yesno("Do you want to change the active partition?")) {
2248 printf ("Choosing %d will make no partition active.\n",
2249 MBR_PART_COUNT);
2250 do {
2251 active = decimal("active partition",
2252 active, 0, 0, MBR_PART_COUNT);
2253 } while (!yesno("Are you happy with this choice?"));
2254 } else
2255 return;
2256 } else
2257 if (active != MBR_PART_COUNT)
2258 printf ("Making partition %d active.\n", active);
2259
2260 for (part = 0; part < MBR_PART_COUNT; part++)
2261 partp[part].mbrp_flag &= ~MBR_PFLAG_ACTIVE;
2262 if (active < MBR_PART_COUNT)
2263 partp[active].mbrp_flag |= MBR_PFLAG_ACTIVE;
2264 }
2265
2266 void
2267 get_params_to_use(void)
2268 {
2269 #if defined(__i386__) || defined(__x86_64__)
2270 struct biosdisk_info *bip;
2271 int i;
2272 #endif
2273
2274 if (b_flag) {
2275 dos_cylinders = b_cyl;
2276 dos_heads = b_head;
2277 dos_sectors = b_sec;
2278 return;
2279 }
2280
2281 print_params();
2282 if (!yesno("Do you want to change our idea of what BIOS thinks?"))
2283 return;
2284
2285 #if (defined(__i386__) || defined(__x86_64__)) && !HAVE_NBTOOL_CONFIG_H
2286 if (dl != NULL) {
2287 for (i = 0; i < dl->dl_nbiosdisks; i++) {
2288 if (i == 0)
2289 printf("\nGeometries of known disks:\n");
2290 bip = &dl->dl_biosdisks[i];
2291 printf("Disk %d: cylinders %u, heads %u, sectors %u"
2292 " (%"PRIdaddr" sectors, %dMB)\n",
2293 i, bip->bi_cyl, bip->bi_head, bip->bi_sec,
2294 bip->bi_lbasecs, SEC_TO_MB(bip->bi_lbasecs));
2295
2296 }
2297 printf("\n");
2298 }
2299 #endif
2300 do {
2301 dos_cylinders = decimal("BIOS's idea of #cylinders",
2302 dos_cylinders, 0, 0, MAXCYL);
2303 dos_heads = decimal("BIOS's idea of #heads",
2304 dos_heads, 0, 0, MAXHEAD);
2305 dos_sectors = decimal("BIOS's idea of #sectors",
2306 dos_sectors, 0, 1, MAXSECTOR);
2307 print_params();
2308 } while (!yesno("Are you happy with this choice?"));
2309 }
2310
2311
2312 /***********************************************\
2313 * Change real numbers into strange dos numbers *
2314 \***********************************************/
2315 void
2316 dos(int sector, unsigned char *cylinderp, unsigned char *headp,
2317 unsigned char *sectorp)
2318 {
2319 int cylinder, head;
2320
2321 cylinder = sector / dos_cylindersectors;
2322 sector -= cylinder * dos_cylindersectors;
2323
2324 head = sector / dos_sectors;
2325 sector -= head * dos_sectors;
2326 if (cylinder > 1023)
2327 cylinder = 1023;
2328
2329 *cylinderp = DOSCYL(cylinder);
2330 *headp = head;
2331 *sectorp = DOSSECT(sector + 1, cylinder);
2332 }
2333
2334 int
2335 open_disk(int update)
2336 {
2337 static char namebuf[MAXPATHLEN + 1];
2338 int flags = update && disk_file == NULL ? O_RDWR : O_RDONLY;
2339
2340 if (!F_flag) {
2341 fd = opendisk(disk, flags, namebuf, sizeof(namebuf), 0);
2342 if (fd < 0) {
2343 if (errno == ENODEV)
2344 warnx("%s is not a character device", namebuf);
2345 else
2346 warn("cannot opendisk %s", namebuf);
2347 return (-1);
2348 }
2349 disk = namebuf;
2350 } else {
2351 fd = open(disk, flags, 0);
2352 if (fd == -1) {
2353 warn("cannot open %s", disk);
2354 return -1;
2355 }
2356 }
2357
2358 if (get_params() == -1) {
2359 close(fd);
2360 fd = -1;
2361 return (-1);
2362 }
2363 if (disk_file != NULL) {
2364 /* for testing: read/write data from a disk file */
2365 wfd = open(disk_file, update ? O_RDWR|O_CREAT : O_RDONLY, 0777);
2366 if (wfd == -1) {
2367 warn("%s", disk_file);
2368 close(fd);
2369 fd = -1;
2370 return -1;
2371 }
2372 } else
2373 wfd = fd;
2374 return (0);
2375 }
2376
2377 int
2378 read_disk(daddr_t sector, void *buf)
2379 {
2380
2381 if (*rfd == -1)
2382 errx(1, "read_disk(); fd == -1");
2383 if (lseek(*rfd, sector * (off_t)512, 0) == -1)
2384 return (-1);
2385 return (read(*rfd, buf, 512));
2386 }
2387
2388 int
2389 write_disk(daddr_t sector, void *buf)
2390 {
2391
2392 if (wfd == -1)
2393 errx(1, "write_disk(); wfd == -1");
2394 if (lseek(wfd, sector * (off_t)512, 0) == -1)
2395 return (-1);
2396 return (write(wfd, buf, 512));
2397 }
2398
2399 static void
2400 guess_geometry(daddr_t _sectors)
2401 {
2402 dos_sectors = MAXSECTOR;
2403 dos_heads = MAXHEAD - 1; /* some BIOS might use 256 */
2404 dos_cylinders = _sectors / (MAXSECTOR * (MAXHEAD - 1));
2405 if (dos_cylinders < 1)
2406 dos_cylinders = 1;
2407 else if (dos_cylinders > MAXCYL - 1)
2408 dos_cylinders = MAXCYL - 1;
2409 }
2410
2411 int
2412 get_params(void)
2413 {
2414 if (disk_type != NULL) {
2415 struct disklabel *tmplabel;
2416
2417 if ((tmplabel = getdiskbyname(disk_type)) == NULL) {
2418 warn("bad disktype");
2419 return (-1);
2420 }
2421 disklabel = *tmplabel;
2422 } else if (F_flag) {
2423 struct stat st;
2424 if (fstat(fd, &st) == -1) {
2425 warn("fstat");
2426 return (-1);
2427 }
2428 if (st.st_size % 512 != 0) {
2429 warnx("%s size (%lld) is not divisible "
2430 "by sector size (%d)", disk, (long long)st.st_size,
2431 512);
2432 }
2433 disklabel.d_secperunit = st.st_size / 512;
2434 guess_geometry(disklabel.d_secperunit);
2435 disklabel.d_ncylinders = dos_cylinders;
2436 disklabel.d_ntracks = dos_heads;
2437 disklabel.d_nsectors = dos_sectors;
2438 } else if (ioctl(fd, DIOCGDEFLABEL, &disklabel) == -1) {
2439 warn("DIOCGDEFLABEL");
2440 if (ioctl(fd, DIOCGDINFO, &disklabel) == -1) {
2441 warn("DIOCGDINFO");
2442 return (-1);
2443 }
2444 }
2445
2446 disksectors = disklabel.d_secperunit;
2447 cylinders = disklabel.d_ncylinders;
2448 heads = disklabel.d_ntracks;
2449 sectors = disklabel.d_nsectors;
2450
2451 /* pick up some defaults for the BIOS sizes */
2452 if (sectors <= MAXSECTOR) {
2453 dos_cylinders = cylinders;
2454 dos_heads = heads;
2455 dos_sectors = sectors;
2456 } else {
2457 /* guess - has to better than the above */
2458 guess_geometry(disksectors);
2459 }
2460 dos_disksectors = disksectors;
2461
2462 return (0);
2463 }
2464
2465 #ifdef BOOTSEL
2466 /*
2467 * Rather unfortunately the bootsel 'magic' number is at the end of the
2468 * the structure, and there is no checksum. So when other operating
2469 * systems install mbr code by only writing the length of their code they
2470 * can overwrite part of the structure but keeping the magic number intact.
2471 * This code attempts to empirically detect this problem.
2472 */
2473 static int
2474 validate_bootsel(struct mbr_bootsel *mbs)
2475 {
2476 unsigned int key = mbs->mbrbs_defkey;
2477 unsigned int tmo;
2478 size_t i;
2479
2480 if (v_flag)
2481 return 0;
2482
2483 /*
2484 * Check default key is sane
2485 * - this is the most likely field to be stuffed
2486 * 16 disks and 16 bootable partitions seems enough!
2487 * (the keymap decode starts falling apart at that point)
2488 */
2489 if (mbs->mbrbs_flags & MBR_BS_ASCII) {
2490 if (key != 0 && !(key == '\r'
2491 || (key >= '1' && key < '1' + MAX_BIOS_DISKS)
2492 || (key >= 'a' && key < 'a' + MAX_BIOS_DISKS)))
2493 return 1;
2494 } else {
2495 if (key != 0 && !(key == SCAN_ENTER
2496 || (key >= SCAN_1 && key < SCAN_1 + MAX_BIOS_DISKS)
2497 || (key >= SCAN_F1 && key < SCAN_F1 + MAX_BIOS_DISKS)))
2498 return 1;
2499 }
2500
2501 /* Checking the flags will lead to breakage... */
2502
2503 /* Timeout value is expected to be a multiple of a second */
2504 tmo = htole16(mbs->mbrbs_timeo);
2505 if (tmo != 0 && tmo != 0xffff && tmo != (10 * tmo + 9) / 182 * 182 / 10)
2506 return 2;
2507
2508 /* Check the menu strings are printable */
2509 /* Unfortunately they aren't zero filled... */
2510 for (i = 0; i < sizeof(mbs->mbrbs_nametab); i++) {
2511 int c = (uint8_t)mbs->mbrbs_nametab[0][i];
2512 if (c == 0 || isprint(c))
2513 continue;
2514 return 3;
2515 }
2516
2517 return 0;
2518 }
2519 #endif
2520
2521 int
2522 read_s0(daddr_t offset, struct mbr_sector *boot)
2523 {
2524 const char *tabletype = offset ? "extended" : "primary";
2525 #ifdef BOOTSEL
2526 static int reported;
2527 #endif
2528
2529 if (read_disk(offset, boot) == -1) {
2530 warn("Can't read %s partition table", tabletype);
2531 return -1;
2532 }
2533 if (boot->mbr_magic != LE_MBR_MAGIC) {
2534 warnx("%s partition table invalid, "
2535 "no magic in sector %"PRIdaddr, tabletype, offset);
2536 return -1;
2537
2538 }
2539 #ifdef BOOTSEL
2540 if (boot->mbr_bootsel_magic == LE_MBR_BS_MAGIC) {
2541 /* mbr_bootsel in new location */
2542 if (validate_bootsel(&boot->mbr_bootsel)) {
2543 warnx("removing corrupt bootsel information");
2544 boot->mbr_bootsel_magic = 0;
2545 }
2546 return 0;
2547 }
2548 if (boot->mbr_bootsel_magic != LE_MBR_MAGIC)
2549 return 0;
2550
2551 /* mbr_bootsel in old location */
2552 if (!reported)
2553 warnx("%s partition table: using old-style bootsel information",
2554 tabletype);
2555 reported = 1;
2556 if (validate_bootsel((void *)((uint8_t *)boot + MBR_BS_OFFSET + 4))) {
2557 warnx("%s bootsel information corrupt - ignoring", tabletype);
2558 return 0;
2559 }
2560 memmove((uint8_t *)boot + MBR_BS_OFFSET,
2561 (uint8_t *)boot + MBR_BS_OFFSET + 4,
2562 sizeof(struct mbr_bootsel));
2563 if ( ! (boot->mbr_bootsel.mbrbs_flags & MBR_BS_NEWMBR)) {
2564 /* old style default key */
2565 int id;
2566 /* F1..F4 => ptn 0..3, F5+ => disk 0+ */
2567 id = boot->mbr_bootsel.mbrbs_defkey;
2568 id -= SCAN_F1;
2569 if (id >= MBR_PART_COUNT)
2570 id -= MBR_PART_COUNT; /* Use number of disk */
2571 else if (mboot.mbr_parts[id].mbrp_type != 0)
2572 id = le32toh(boot->mbr_parts[id].mbrp_start);
2573 else
2574 id = DEFAULT_ACTIVE;
2575 boot->mbr_bootsel.mbrbs_defkey = id;
2576 }
2577 boot->mbr_bootsel_magic = LE_MBR_BS_MAGIC;
2578 /* highlight that new bootsel code is necessary */
2579 boot->mbr_bootsel.mbrbs_flags &= ~MBR_BS_NEWMBR;
2580 #endif /* BOOTSEL */
2581 return 0;
2582 }
2583
2584 int
2585 write_mbr(void)
2586 {
2587 int flag, i;
2588 daddr_t offset;
2589 int rval = -1;
2590
2591 /*
2592 * write enable label sector before write (if necessary),
2593 * disable after writing.
2594 * needed if the disklabel protected area also protects
2595 * sector 0. (e.g. empty disk)
2596 */
2597 flag = 1;
2598 if (wfd == fd && F_flag == 0 && ioctl(wfd, DIOCWLABEL, &flag) < 0)
2599 warn("DIOCWLABEL");
2600 if (write_disk(0, &mboot) == -1) {
2601 warn("Can't write fdisk partition table");
2602 goto protect_label;
2603 }
2604 if (boot_installed)
2605 for (i = bootsize; (i -= 0x200) > 0;)
2606 if (write_disk(i / 0x200, &bootcode[i / 0x200]) == -1) {
2607 warn("Can't write bootcode");
2608 goto protect_label;
2609 }
2610 for (offset = 0, i = 0; i < ext.num_ptn; i++) {
2611 if (write_disk(ext.base + offset, ext.ptn + i) == -1) {
2612 warn("Can't write %dth extended partition", i);
2613 goto protect_label;
2614 }
2615 offset = le32toh(ext.ptn[i].mbr_parts[1].mbrp_start);
2616 }
2617 rval = 0;
2618 protect_label:
2619 flag = 0;
2620 if (wfd == fd && F_flag == 0 && ioctl(wfd, DIOCWLABEL, &flag) < 0)
2621 warn("DIOCWLABEL");
2622 return rval;
2623 }
2624
2625 int
2626 yesno(const char *str, ...)
2627 {
2628 int ch, first;
2629 va_list ap;
2630
2631 va_start(ap, str);
2632
2633 vprintf(str, ap);
2634 printf(" [n] ");
2635
2636 first = ch = getchar();
2637 while (ch != '\n' && ch != EOF)
2638 ch = getchar();
2639 if (ch == EOF)
2640 errx(1, "EOF");
2641 return (first == 'y' || first == 'Y');
2642 }
2643
2644 int
2645 decimal(const char *prompt, int64_t dflt, int flags, int64_t minval, int64_t maxval)
2646 {
2647 int64_t acc = 0;
2648 int valid;
2649 int len;
2650 char *cp;
2651
2652 for (;;) {
2653 if (flags & DEC_SEC) {
2654 printf("%s: [%" PRId64 "..%" PRId64 "cyl default: %" PRId64 ", %" PRId64 "cyl, %uMB] ",
2655 prompt, SEC_TO_CYL(minval), SEC_TO_CYL(maxval),
2656 dflt, SEC_TO_CYL(dflt), SEC_TO_MB(dflt));
2657 } else
2658 printf("%s: [%" PRId64 "..%" PRId64 " default: %" PRId64 "] ",
2659 prompt, minval, maxval, dflt);
2660
2661 if (!fgets(lbuf, LBUF, stdin))
2662 errx(1, "EOF");
2663 cp = lbuf;
2664
2665 cp += strspn(cp, " \t");
2666 if (*cp == '\n')
2667 return dflt;
2668
2669 if (cp[0] == '$' && cp[1] == '\n')
2670 return maxval;
2671
2672 if (isdigit((unsigned char)*cp) || *cp == '-') {
2673 acc = strtoll(lbuf, &cp, 10);
2674 len = strcspn(cp, " \t\n");
2675 valid = 0;
2676 if (len != 0 && (flags & DEC_SEC)) {
2677 if (!strncasecmp(cp, "gb", len)) {
2678 acc *= 1024;
2679 valid = 1;
2680 }
2681 if (valid || !strncasecmp(cp, "mb", len)) {
2682 acc *= SEC_IN_1M;
2683 /* round to whole number of cylinders */
2684 acc += dos_cylindersectors / 2;
2685 acc /= dos_cylindersectors;
2686 valid = 1;
2687 }
2688 if (valid || !strncasecmp(cp, "cyl", len)) {
2689 acc *= dos_cylindersectors;
2690 /* adjustments for cylinder boundary */
2691 if (acc == 0 && flags & DEC_RND_0)
2692 acc += dos_sectors;
2693 if (flags & DEC_RND)
2694 acc += dos_sectors;
2695 if (flags & DEC_RND_DOWN)
2696 acc -= dos_sectors;
2697 if (flags & DEC_RND_DOWN_2)
2698 acc -= dos_sectors;
2699 cp += len;
2700 }
2701 }
2702 }
2703
2704 cp += strspn(cp, " \t");
2705 if (*cp != '\n') {
2706 lbuf[strlen(lbuf) - 1] = 0;
2707 printf("%s is not a valid %s number.\n", lbuf,
2708 flags & DEC_SEC ? "sector" : "decimal");
2709 continue;
2710 }
2711
2712 if (acc >= minval && acc <= maxval)
2713 return acc;
2714 printf("%" PRId64 " is not between %" PRId64 " and %" PRId64 ".\n", acc, minval, maxval);
2715 }
2716 }
2717
2718 int
2719 ptn_id(const char *prompt, int *extended)
2720 {
2721 unsigned int acc = 0;
2722 char *cp;
2723
2724 for (;; printf("%s is not a valid partition number.\n", lbuf)) {
2725 printf("%s: [none] ", prompt);
2726
2727 if (!fgets(lbuf, LBUF, stdin))
2728 errx(1, "EOF");
2729 lbuf[strlen(lbuf)-1] = '\0';
2730 cp = lbuf;
2731
2732 cp += strspn(cp, " \t");
2733 *extended = 0;
2734 if (*cp == 0)
2735 return -1;
2736
2737 if (*cp == 'E' || *cp == 'e') {
2738 cp++;
2739 *extended = 1;
2740 }
2741
2742 acc = strtoul(cp, &cp, 10);
2743
2744 cp += strspn(cp, " \t");
2745 if (*cp != '\0')
2746 continue;
2747
2748 if (*extended || acc < MBR_PART_COUNT)
2749 return acc;
2750 }
2751 }
2752
2753 #ifdef BOOTSEL
2754 void
2755 string(const char *prompt, int length, char *buf)
2756 {
2757 int len;
2758
2759 for (;;) {
2760 printf("%s: [%.*s] ", prompt, length, buf);
2761
2762 if (!fgets(lbuf, LBUF, stdin))
2763 errx(1, "EOF");
2764 len = strlen(lbuf);
2765 if (len <= 1)
2766 /* unchanged if just <enter> */
2767 return;
2768 /* now strip trailing spaces, <space><enter> deletes string */
2769 do
2770 lbuf[--len] = 0;
2771 while (len != 0 && lbuf[len - 1] == ' ');
2772 if (len < length)
2773 break;
2774 printf("'%s' is longer than %d characters.\n",
2775 lbuf, length - 1);
2776 }
2777 strncpy(buf, lbuf, length);
2778 }
2779 #endif
2780
2781 int
2782 type_match(const void *key, const void *item)
2783 {
2784 const int *idp = key;
2785 const struct mbr_ptype *ptr = item;
2786
2787 if (*idp < ptr->id)
2788 return (-1);
2789 if (*idp > ptr->id)
2790 return (1);
2791 return (0);
2792 }
2793
2794 const char *
2795 get_type(int type)
2796 {
2797 struct mbr_ptype *ptr;
2798
2799 ptr = bsearch(&type, mbr_ptypes, KNOWN_SYSIDS,
2800 sizeof(mbr_ptypes[0]), type_match);
2801 if (ptr == 0)
2802 return ("unknown");
2803 return (ptr->name);
2804 }
2805
2806 int
2807 read_gpt(daddr_t offset, struct gpt_hdr *gptp)
2808 {
2809 char buf[512];
2810 struct gpt_hdr *hdr = (void *)buf;
2811 const char *tabletype = GPT_TYPE(offset);
2812
2813 if (read_disk(offset, buf) == -1) {
2814 warn("Can't read %s GPT header", tabletype);
2815 return -1;
2816 }
2817 (void)memcpy(gptp, buf, GPT_HDR_SIZE);
2818
2819 /* GPT CRC should be calculated with CRC field preset to zero */
2820 hdr->hdr_crc_self = 0;
2821
2822 if (memcmp(gptp->hdr_sig, GPT_HDR_SIG, sizeof(gptp->hdr_sig))
2823 || gptp->hdr_lba_self != (uint64_t)offset
2824 || crc32(0, (void *)hdr, gptp->hdr_size) != gptp->hdr_crc_self) {
2825 /* not a GPT */
2826 (void)memset(gptp, 0, GPT_HDR_SIZE);
2827 }
2828
2829 if (v_flag && gptp->hdr_size != 0) {
2830 printf("Found %s GPT header CRC %"PRIu32" "
2831 "at sector %"PRIdaddr", backup at %"PRIdaddr"\n",
2832 tabletype, gptp->hdr_crc_self, offset, gptp->hdr_lba_alt);
2833 }
2834 return gptp->hdr_size;
2835
2836 }
2837
2838 int
2839 delete_gpt(struct gpt_hdr *gptp)
2840 {
2841 char buf[512];
2842 struct gpt_hdr *hdr = (void *)buf;
2843
2844 if (gptp->hdr_size == 0)
2845 return 0;
2846
2847 /* don't accidently overwrite something important */
2848 if (gptp->hdr_lba_self != GPT_HDR_BLKNO &&
2849 gptp->hdr_lba_self != (uint64_t)disksectors - 1) {
2850 warnx("given GPT header location doesn't seem correct");
2851 return -1;
2852 }
2853
2854 (void)memcpy(buf, gptp, GPT_HDR_SIZE);
2855 /*
2856 * Don't really delete GPT, just "disable" it, so it can
2857 * be recovered later in case of mistake or something
2858 */
2859 (void)memset(hdr->hdr_sig, 0, sizeof(gptp->hdr_sig));
2860 if (write_disk(gptp->hdr_lba_self, hdr) == -1) {
2861 warn("can't delete %s GPT header",
2862 GPT_TYPE(gptp->hdr_lba_self));
2863 return -1;
2864 }
2865 (void)memset(gptp, 0, GPT_HDR_SIZE);
2866 return 1;
2867 }
2868