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Eric Andersene77ae3a1999-10-19 20:03:34 +00001/*
2 * sfdisk version 3.0 - aeb - 950813
3 *
4 * Copyright (C) 1995 Andries E. Brouwer (aeb@cwi.nl)
5 *
6 * This program is free software. You can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation: either Version 1
9 * or (at your option) any later version.
10 *
11 * A.V. Le Blanc (LeBlanc@mcc.ac.uk) wrote Linux fdisk 1992-1994,
12 * patched by various people (faith@cs.unc.edu, martin@cs.unc.edu,
13 * leisner@sdsp.mc.xerox.com, esr@snark.thyrsus.com, aeb@cwi.nl)
14 * 1993-1995, with version numbers (as far as I have seen) 0.93 - 2.0e.
15 * This program had (head,sector,cylinder) as basic unit, and was
16 * (therefore) broken in several ways for the use on larger disks -
17 * for example, my last patch (from 2.0d to 2.0e) was required
18 * to allow a partition to cross cylinder 8064, and to write an
19 * extended partition past the 4GB mark.
20 *
21 * The current program is a rewrite from scratch, and I started a
22 * version numbering at 3.0.
23 * Andries Brouwer, aeb@cwi.nl, 950813
24 *
25 * Well, a good user interface is still lacking. On the other hand,
26 * many configurations cannot be handled by any other fdisk.
27 * I changed the name to sfdisk to prevent confusion. - aeb, 970501
28 *
29 * Changes:
30 * 19990319 - Arnaldo Carvalho de Melo <acme@conectiva.com.br> - i18n
31 *
32 * busyboxed by Erik Andersen <andersee@debian.org> -- I stipped out
33 * all the NLS, pulled in some includes, and made stuff smaller...
34 */
35
36#define PROGNAME "sfdisk"
37#define VERSION "3.07"
38#define DATE "990908"
39
40#include "internal.h"
41#include <stdio.h>
42#include <stdlib.h> /* atoi, free */
43#include <stdarg.h> /* varargs */
44#include <unistd.h> /* read, write */
45#include <fcntl.h> /* O_RDWR */
46#include <errno.h> /* ERANGE */
47#include <string.h> /* index() */
48#include <ctype.h>
49#include <getopt.h>
50#include <sys/ioctl.h>
51#include <sys/stat.h>
52#include <linux/unistd.h> /* _syscall */
53#include <linux/hdreg.h> /* HDIO_GETGEO */
54#include <linux/fs.h> /* BLKGETSIZE */
55
56
57static const char sfdisk_usage[] =
58"Usage: sfdisk [options] device ...\n"
59"device: something like /dev/hda or /dev/sda\n"
60"useful options:\n"
61" -s [or --show-size]: list size of a partition\n"
62" -c [or --id]: print or change partition Id\n"
63" -l [or --list]: list partitions of each device\n"
64" -d [or --dump]: idem, but in a format suitable for later input\n"
65" -i [or --increment]: number cylinders etc. from 1 instead of from 0\n"
66" -uS, -uB, -uC, -uM: accept/report in units of sectors/blocks/cylinders/MB\n"
67" -T [or --list-types]:list the known partition types\n"
68" -D [or --DOS]: for DOS-compatibility: waste a little space\n"
69" -R [or --re-read]: make kernel reread partition table\n"
70" -N# : change only the partition with number #\n"
71" -n : do not actually write to disk\n"
72" -O file : save the sectors that will be overwritten to file\n"
73" -I file : restore these sectors again\n"
74" -v [or --version]: print version\n"
75" -? [or --help]: print this message\n"
76"dangerous options:\n"
77" -g [or --show-geometry]: print the kernel's idea of the geometry\n"
78" -x [or --show-extended]: also list extended partitions on output\n\n"
79" or expect descriptors for them on input\n"
80" -L [or --Linux]: do not complain about things irrelevant for Linux\n"
81" -q [or --quiet]: suppress warning messages\n"
82" You can override the detected geometry using:\n"
83" -C# [or --cylinders #]:set the number of cylinders to use\n"
84" -H# [or --heads #]: set the number of heads to use\n"
85" -S# [or --sectors #]: set the number of sectors to use\n"
86"You can disable all consistency checking with:\n"
87" -f [or --force]: do what I say, even if it is stupid\n";
88
89
90
91/* common stuff for fdisk, cfdisk, sfdisk */
92struct systypes {
93 unsigned char type;
94 char *name;
95};
96
97static struct systypes i386_sys_types[] = {
98 {0x00, "Empty"},
99 {0x01, "FAT12"},
100 {0x02, "XENIX root"},
101 {0x03, "XENIX usr"},
102 {0x04, "FAT16 <32M"},
103 {0x05, "Extended"}, /* DOS 3.3+ extended partition */
104 {0x06, "FAT16"}, /* DOS 16-bit >=32M */
105 {0x07, "HPFS/NTFS"}, /* OS/2 IFS, eg, HPFS or NTFS or QNX */
106 {0x08, "AIX"}, /* AIX boot (AIX -- PS/2 port or SplitDrive) */
107 {0x09, "AIX bootable"}, /* AIX data or Coherent */
108 {0x0a, "OS/2 Boot Manager"},/* OS/2 Boot Manager */
109 {0x0b, "Win95 FAT32"},
110 {0x0c, "Win95 FAT32 (LBA)"},/* LBA really is `Extended Int 13h' */
111 {0x0e, "Win95 FAT16 (LBA)"},
112 {0x0f, "Win95 Ext'd (LBA)"},
113 {0x10, "OPUS"},
114 {0x11, "Hidden FAT12"},
115 {0x12, "Compaq diagnostics"},
116 {0x14, "Hidden FAT16 <32M"},
117 {0x16, "Hidden FAT16"},
118 {0x17, "Hidden HPFS/NTFS"},
119 {0x18, "AST Windows swapfile"},
120 {0x1b, "Hidden Win95 FAT32"},
121 {0x1c, "Hidden Win95 FAT32 (LBA)"},
122 {0x1e, "Hidden Win95 FAT16 (LBA)"},
123 {0x24, "NEC DOS"},
124 {0x3c, "PartitionMagic recovery"},
125 {0x40, "Venix 80286"},
126 {0x41, "PPC PReP Boot"},
127 {0x42, "SFS"},
128 {0x4d, "QNX4.x"},
129 {0x4e, "QNX4.x 2nd part"},
130 {0x4f, "QNX4.x 3rd part"},
131 {0x50, "OnTrack DM"},
132 {0x51, "OnTrack DM6 Aux1"}, /* (or Novell) */
133 {0x52, "CP/M"}, /* CP/M or Microport SysV/AT */
134 {0x53, "OnTrack DM6 Aux3"},
135 {0x54, "OnTrackDM6"},
136 {0x55, "EZ-Drive"},
137 {0x56, "Golden Bow"},
138 {0x5c, "Priam Edisk"},
139 {0x61, "SpeedStor"},
140 {0x63, "GNU HURD or SysV"}, /* GNU HURD or Mach or Sys V/386 (such as ISC UNIX) */
141 {0x64, "Novell Netware 286"},
142 {0x65, "Novell Netware 386"},
143 {0x70, "DiskSecure Multi-Boot"},
144 {0x75, "PC/IX"},
145 {0x80, "Old Minix"}, /* Minix 1.4a and earlier */
146 {0x81, "Minix / old Linux"},/* Minix 1.4b and later */
147 {0x82, "Linux swap"}, /* also Solaris */
148 {0x83, "Linux"},
149 {0x84, "OS/2 hidden C: drive"},
150 {0x85, "Linux extended"},
151 {0x86, "NTFS volume set"},
152 {0x87, "NTFS volume set"},
153 {0x93, "Amoeba"},
154 {0x94, "Amoeba BBT"}, /* (bad block table) */
155 {0xa0, "IBM Thinkpad hibernation"},
156 {0xa5, "BSD/386"},
157 {0xa6, "OpenBSD"},
158 {0xa7, "NeXTSTEP"},
159 {0xb7, "BSDI fs"},
160 {0xb8, "BSDI swap"},
161 {0xc1, "DRDOS/sec (FAT-12)"},
162 {0xc4, "DRDOS/sec (FAT-16 < 32M)"},
163 {0xc6, "DRDOS/sec (FAT-16)"},
164 {0xc7, "Syrinx"},
165 {0xdb, "CP/M / CTOS / ..."},/* CP/M or Concurrent CP/M or Concurrent DOS or CTOS */
166 {0xe1, "DOS access"}, /* DOS access or SpeedStor 12-bit FAT extended partition */
167 {0xe3, "DOS R/O"}, /* DOS R/O or SpeedStor */
168 {0xe4, "SpeedStor"}, /* SpeedStor 16-bit FAT extended partition < 1024 cyl. */
169 {0xeb, "BeOS fs"},
170 {0xf1, "SpeedStor"},
171 {0xf4, "SpeedStor"}, /* SpeedStor large partition */
172 {0xf2, "DOS secondary"}, /* DOS 3.3+ secondary */
173 {0xfd, "Linux raid autodetect"},/* New (2.2.x) raid partition with autodetect
174 using persistent superblock */
175 {0xfe, "LANstep"}, /* SpeedStor >1024 cyl. or LANstep */
176 {0xff, "BBT"}, /* Xenix Bad Block Table */
177 { 0, 0 }
178};
179
180#define SIZE(a) (sizeof(a)/sizeof(a[0]))
181
182/*
183 * Table of contents:
184 * A. About seeking
185 * B. About sectors
186 * C. About heads, sectors and cylinders
187 * D. About system Ids
188 * E. About partitions
189 * F. The standard input
190 * G. The command line
191 * H. Listing the current situation
192 * I. Writing the new situation
193 */
194static int exit_status = 0;
195
196static int force = 0; /* 1: do what I say, even if it is stupid ... */
197static int quiet = 0; /* 1: suppress all warnings */
198static int Linux = 0; /* 1: suppress warnings irrelevant for Linux */
199static int DOS = 0; /* 1: shift extended partitions by #sectors, not 1 */
200static int dump = 0; /* 1: list in a format suitable for later input */
201static int verify = 0; /* 1: check that listed partition is reasonable */
202static int no_write = 0; /* 1: do not actually write to disk */
203static int no_reread = 0; /* 1: skip the BLKRRPART ioctl test at startup */
204static int leave_last = 0; /* 1: don't allocate the last cylinder */
205static int opt_list = 0;
206static char *save_sector_file = NULL;
207static char *restore_sector_file = NULL;
208
209static void
210warn(char *s, ...) {
211 va_list p;
212
213 va_start(p, s);
214 fflush(stdout);
215 if (!quiet)
216 vfprintf (stderr, s, p);
217 va_end(p);
218}
219
220static void
221error(char *s, ...) {
222 va_list p;
223
224 va_start(p, s);
225 fflush(stdout);
226 fprintf(stderr, "\n" PROGNAME ": ");
227 vfprintf(stderr, s, p);
228 va_end(p);
229}
230
231static void
232fatal(char *s, ...) {
233 va_list p;
234
235 va_start(p, s);
236 fflush(stdout);
237 fprintf(stderr, "\n" PROGNAME ": ");
238 vfprintf(stderr, s, p);
239 va_end(p);
240 exit(1);
241}
242
243/*
244 * A. About seeking
245 */
246
247/*
248 * sseek: seek to specified sector - return 0 on failure
249 *
250 * For >4GB disks lseek needs a > 32bit arg, and we have to use llseek.
251 * On the other hand, a 32 bit sector number is OK until 2TB.
252 * The routines _llseek and sseek below are the only ones that
253 * know about the loff_t type.
254 */
255#ifndef __alpha__
256static
257_syscall5(int, _llseek, uint, fd, ulong, hi, ulong, lo,
258 loff_t *, res, uint, wh);
259#endif
260
261static int
262sseek(char *dev, unsigned int fd, unsigned long s) {
263 loff_t in, out;
264 in = ((loff_t) s << 9);
265 out = 1;
266
267#ifndef __alpha__
268 if (_llseek (fd, in>>32, in & 0xffffffff, &out, SEEK_SET) != 0) {
269#else
270 if ((out = lseek(fd, in, SEEK_SET)) != in) {
271#endif
272 perror("llseek");
273 error("seek error on %s - cannot seek to %lu\n", dev, s);
274 return 0;
275 }
276
277 if (in != out) {
278 error("seek error: wanted 0x%08x%08x, got 0x%08x%08x\n",
279 (uint)(in>>32), (uint)(in & 0xffffffff),
280 (uint)(out>>32), (uint)(out & 0xffffffff));
281 return 0;
282 }
283 return 1;
284}
285
286/*
287 * B. About sectors
288 */
289
290/*
291 * We preserve all sectors read in a chain - some of these will
292 * have to be modified and written back.
293 */
294struct sector {
295 struct sector *next;
296 unsigned long sectornumber;
297 int to_be_written;
298 char data[512];
299} *sectorhead;
300
301static void
302free_sectors(void) {
303 struct sector *s;
304
305 while (sectorhead) {
306 s = sectorhead;
307 sectorhead = s->next;
308 free(s);
309 }
310}
311
312static struct sector *
313get_sector(char *dev, int fd, unsigned long sno) {
314 struct sector *s;
315
316 for(s = sectorhead; s; s = s->next)
317 if(s->sectornumber == sno)
318 return s;
319
320 if (!sseek(dev, fd, sno))
321 return 0;
322
323 if (!(s = (struct sector *) malloc(sizeof(struct sector))))
324 fatal("out of memory - giving up\n");
325
326 if (read(fd, s->data, sizeof(s->data)) != sizeof(s->data)) {
327 perror("read");
328 error("read error on %s - cannot read sector %lu\n", dev, sno);
329 free(s);
330 return 0;
331 }
332
333 s->next = sectorhead;
334 sectorhead = s;
335 s->sectornumber = sno;
336 s->to_be_written = 0;
337
338 return s;
339}
340
341static int
342msdos_signature (struct sector *s) {
343 if (*(unsigned short *) (s->data + 0x1fe) != 0xaa55) {
344 error("ERROR: sector %lu does not have an msdos signature\n",
345 s->sectornumber);
346 return 0;
347 }
348 return 1;
349}
350
351static int
352write_sectors(char *dev, int fd) {
353 struct sector *s;
354
355 for (s = sectorhead; s; s = s->next)
356 if (s->to_be_written) {
357 if (!sseek(dev, fd, s->sectornumber))
358 return 0;
359 if (write(fd, s->data, sizeof(s->data)) != sizeof(s->data)) {
360 perror("write");
361 error("write error on %s - cannot write sector %lu\n",
362 dev, s->sectornumber);
363 return 0;
364 }
365 s->to_be_written = 0;
366 }
367 return 1;
368}
369
370static void
371ulong_to_chars(unsigned long u, char *uu) {
372 int i;
373
374 for(i=0; i<4; i++) {
375 uu[i] = (u & 0xff);
376 u >>= 8;
377 }
378}
379
380static unsigned long
381chars_to_ulong(unsigned char *uu) {
382 int i;
383 unsigned long u = 0;
384
385 for(i=3; i>=0; i--)
386 u = (u << 8) | uu[i];
387 return u;
388}
389
390static int
391save_sectors(char *dev, int fdin) {
392 struct sector *s;
393 char ss[516];
394 int fdout;
395
396 fdout = open(save_sector_file, O_WRONLY | O_CREAT, 0444);
397 if (fdout < 0) {
398 perror(save_sector_file);
399 error("cannot open partition sector save file (%s)\n",
400 save_sector_file);
401 return 0;
402 }
403
404 for (s = sectorhead; s; s = s->next)
405 if (s->to_be_written) {
406 ulong_to_chars(s->sectornumber, ss);
407 if (!sseek(dev, fdin, s->sectornumber))
408 return 0;
409 if (read(fdin, ss+4, 512) != 512) {
410 perror("read");
411 error("read error on %s - cannot read sector %lu\n",
412 dev, s->sectornumber);
413 return 0;
414 }
415 if (write(fdout, ss, sizeof(ss)) != sizeof(ss)) {
416 perror("write");
417 error("write error on %s\n"), save_sector_file;
418 return 0;
419 }
420 }
421 return 1;
422}
423
424static void reread_disk_partition(char *dev, int fd);
425
426static int
427restore_sectors(char *dev) {
428 int fdin, fdout, ct;
429 struct stat statbuf;
430 char *ss0, *ss;
431 unsigned long sno;
432
433 if (stat(restore_sector_file, &statbuf) < 0) {
434 perror(restore_sector_file);
435 error("cannot stat partition restore file (%s)\n",
436 restore_sector_file);
437 return 0;
438 }
439 if (statbuf.st_size % 516) {
440 error("partition restore file has wrong size - not restoring\n");
441 return 0;
442 }
443 if (!(ss = (char *) malloc(statbuf.st_size))) {
444 error("out of memory?\n");
445 return 0;
446 }
447 fdin = open(restore_sector_file, O_RDONLY);
448 if (fdin < 0) {
449 perror(restore_sector_file);
450 error("cannot open partition restore file (%s)\n",
451 restore_sector_file);
452 return 0;
453 }
454 if (read(fdin, ss, statbuf.st_size) != statbuf.st_size) {
455 perror("read");
456 error("error reading %s\n"), restore_sector_file;
457 return 0;
458 }
459
460 fdout = open(dev, O_WRONLY);
461 if (fdout < 0) {
462 perror(dev);
463 error("cannot open device %s for writing\n"), dev;
464 return 0;
465 }
466
467 ss0 = ss;
468 ct = statbuf.st_size/516;
469 while(ct--) {
470 sno = chars_to_ulong(ss);
471 if (!sseek(dev, fdout, sno))
472 return 0;
473 if (write(fdout, ss+4, 512) != 512) {
474 perror(dev);
475 error("error writing sector %lu on %s\n", sno, dev);
476 return 0;
477 }
478 ss += 516;
479 }
480 free(ss0);
481
482 reread_disk_partition(dev, fdout);
483
484 return 1;
485}
486
487/*
488 * C. About heads, sectors and cylinders
489 */
490
491/*
492 * <linux/hdreg.h> defines HDIO_GETGEO and
493 * struct hd_geometry {
494 * unsigned char heads;
495 * unsigned char sectors;
496 * unsigned short cylinders;
497 * unsigned long start;
498 * };
499 */
500
501/*
502 * We consider several geometries for a disk:
503 * B - the BIOS geometry, gotten from the kernel via HDIO_GETGEO
504 * F - the fdisk geometry
505 * U - the user-specified geometry
506 *
507 * 0 means unspecified / unknown
508 */
509struct geometry {
510 unsigned long cylindersize;
511 unsigned long heads, sectors, cylinders;
512} B, F, U;
513
514static void
515get_cylindersize(char *dev, int fd, int silent) {
516 struct hd_geometry g;
517 int ioctl_ok = 0;
518
519 B.heads = B.sectors = B.cylinders = 0;
520
521 if (!ioctl(fd, HDIO_GETGEO, &g)) {
522 ioctl_ok = 1;
523
524 B.heads = g.heads;
525 B.sectors = g.sectors;
526 B.cylinders = g.cylinders;
527 }
528
529 if (U.heads)
530 B.heads = U.heads;
531 if (U.sectors)
532 B.sectors = U.sectors;
533 if (U.cylinders)
534 B.cylinders = U.cylinders;
535
536 B.cylindersize = B.heads * B.sectors;
537
538 if (ioctl_ok) {
539 if (g.start && !force) {
540 warn(
541 "Warning: start=%d - this looks like a partition rather than\n"
542 "the entire disk. Using fdisk on it is probably meaningless.\n"
543 "[Use the --force option if you really want this]\n", g.start);
544 exit(1);
545 }
546 if (B.heads != g.heads)
547 warn("Warning: HDIO_GETGEO says that there are %d heads\n",
548 g.heads);
549 if (B.sectors != g.sectors)
550 warn("Warning: HDIO_GETGEO says that there are %d sectors\n",
551 g.sectors);
552 if (B.cylinders != g.cylinders)
553 warn("Warning: HDIO_GETGEO says that there are %d cylinders\n",
554 g.cylinders);
555 } else if (!silent)
556 if (!B.heads || !B.sectors || !B.cylinders)
557 printf("Disk %s: cannot get geometry\n", dev);
558 if (B.sectors > 63)
559 warn("Warning: unlikely number of sectors (%d - usually at most 63\n"
560 "This will give problems with all software that uses C/H/S addressing.\n",
561 B.sectors);
562 if (!silent)
563 printf("\nDisk %s: %lu cylinders, %lu heads, %lu sectors/track\n",
564 dev, B.cylinders, B.heads, B.sectors);
565}
566
567typedef struct { unsigned char h,s,c; } chs; /* has some c bits in s */
568static chs zero_chs = { 0,0,0 };
569
570typedef struct { unsigned long h,s,c; } longchs;
571static longchs zero_longchs;
572
573static chs
574longchs_to_chs (longchs aa, struct geometry G) {
575 chs a;
576
577 if (aa.h < 256 && aa.s < 64 && aa.c < 1024) {
578 a.h = aa.h;
579 a.s = aa.s | ((aa.c >> 2) & 0xc0);
580 a.c = (aa.c & 0xff);
581 } else if (G.heads && G.sectors) {
582 a.h = G.heads - 1;
583 a.s = G.sectors | 0xc0;
584 a.c = 0xff;
585 } else
586 a = zero_chs;
587 return a;
588}
589
590static longchs
591chs_to_longchs (chs a) {
592 longchs aa;
593
594 aa.h = a.h;
595 aa.s = (a.s & 0x3f);
596 aa.c = (a.s & 0xc0);
597 aa.c = (aa.c << 2) + a.c;
598 return aa;
599}
600
601static longchs
602ulong_to_longchs (unsigned long sno, struct geometry G) {
603 longchs aa;
604
605 if (G.heads && G.sectors && G.cylindersize) {
606 aa.s = 1 + sno % G.sectors;
607 aa.h = (sno / G.sectors) % G.heads;
608 aa.c = sno / G.cylindersize;
609 return aa;
610 } else {
611 return zero_longchs;
612 }
613}
614
615//static unsigned long
616//longchs_to_ulong (longchs aa, struct geometry G) {
617// return (aa.c*G.cylindersize + aa.h*G.sectors + aa.s - 1);
618//}
619
620static chs
621ulong_to_chs (unsigned long sno, struct geometry G) {
622 return longchs_to_chs(ulong_to_longchs(sno, G), G);
623}
624
625//static unsigned long
626//chs_to_ulong (chs a, struct geometry G) {
627// return longchs_to_ulong(chs_to_longchs(a), G);
628//}
629
630static int
631is_equal_chs (chs a, chs b) {
632 return (a.h == b.h && a.s == b.s && a.c == b.c);
633}
634
635static int
636chs_ok (chs a, char *v, char *w) {
637 longchs aa = chs_to_longchs(a);
638 int ret = 1;
639
640 if (is_equal_chs(a, zero_chs))
641 return 1;
642 if (B.heads && aa.h >= B.heads) {
643 warn("%s of partition %s has impossible value for head: "
644 "%d (should be in 0-%d)\n", w, v, aa.h, B.heads-1);
645 ret = 0;
646 }
647 if (B.sectors && (aa.s == 0 || aa.s > B.sectors)) {
648 warn("%s of partition %s has impossible value for sector: "
649 "%d (should be in 1-%d)\n", w, v, aa.s, B.sectors);
650 ret = 0;
651 }
652 if (B.cylinders && aa.c >= B.cylinders) {
653 warn("%s of partition %s has impossible value for cylinders: "
654 "%d (should be in 0-%d)\n", w, v, aa.c, B.cylinders-1);
655 ret = 0;
656 }
657 return ret;
658}
659
660/*
661 * D. About system Ids
662 */
663
664#define EMPTY_PARTITION 0
665#define EXTENDED_PARTITION 5
666#define WIN98_EXTENDED 0x0f
667#define DM6_AUX1PARTITION 0x51
668#define DM6_AUX3PARTITION 0x53
669#define DM6_PARTITION 0x54
670#define EZD_PARTITION 0x55
671#define LINUX_SWAP 0x82
672#define LINUX_NATIVE 0x83
673#define LINUX_EXTENDED 0x85
674#define BSD_PARTITION 0xa5
675
676/* List of partition types now in i386_sys_types.c */
677
678static const char *
679sysname(unsigned char type) {
680 struct systypes *s;
681
682 for (s = i386_sys_types; s->name; s++)
683 if (s->type == type)
684 return s->name;
685 return "Unknown";
686}
687
688static void
689list_types(void) {
690 struct systypes *s;
691
692 printf("Id Name\n\n");
693 for (s = i386_sys_types; s->name; s++)
694 printf("%2x %s\n", s->type, s->name);
695}
696
697static int
698is_extended(unsigned char type) {
699 return (type == EXTENDED_PARTITION
700 || type == LINUX_EXTENDED
701 || type == WIN98_EXTENDED);
702}
703
704static int
705is_bsd(unsigned char type) {
706 return (type == BSD_PARTITION);
707}
708
709/*
710 * E. About partitions
711 */
712
713/* MS/DOS partition */
714
715struct partition {
716 unsigned char bootable; /* 0 or 0x80 */
717 chs begin_chs;
718 unsigned char sys_type;
719 chs end_chs;
720 unsigned int start_sect; /* starting sector counting from 0 */
721 unsigned int nr_sects; /* nr of sectors in partition */
722};
723
724/* Unfortunately, partitions are not aligned, and non-Intel machines
725 are unhappy with non-aligned integers. So, we need a copy by hand. */
726static int
727copy_to_int(unsigned char *cp) {
728 unsigned int m;
729
730 m = *cp++;
731 m += (*cp++ << 8);
732 m += (*cp++ << 16);
733 m += (*cp++ << 24);
734 return m;
735}
736
737static void
738copy_from_int(int m, char *cp) {
739 *cp++ = (m & 0xff); m >>= 8;
740 *cp++ = (m & 0xff); m >>= 8;
741 *cp++ = (m & 0xff); m >>= 8;
742 *cp++ = (m & 0xff);
743}
744
745static void
746copy_to_part(char *cp, struct partition *p) {
747 p->bootable = *cp++;
748 p->begin_chs.h = *cp++;
749 p->begin_chs.s = *cp++;
750 p->begin_chs.c = *cp++;
751 p->sys_type = *cp++;
752 p->end_chs.h = *cp++;
753 p->end_chs.s = *cp++;
754 p->end_chs.c = *cp++;
755 p->start_sect = copy_to_int(cp);
756 p->nr_sects = copy_to_int(cp+4);
757}
758
759static void
760copy_from_part(struct partition *p, char *cp) {
761 *cp++ = p->bootable;
762 *cp++ = p->begin_chs.h;
763 *cp++ = p->begin_chs.s;
764 *cp++ = p->begin_chs.c;
765 *cp++ = p->sys_type;
766 *cp++ = p->end_chs.h;
767 *cp++ = p->end_chs.s;
768 *cp++ = p->end_chs.c;
769 copy_from_int(p->start_sect, cp);
770 copy_from_int(p->nr_sects, cp+4);
771}
772
773/* Roughly speaking, Linux doesn't use any of the above fields except
774 for partition type, start sector and number of sectors. (However,
775 see also linux/drivers/scsi/fdomain.c.)
776 The only way partition type is used (in the kernel) is the comparison
777 for equality with EXTENDED_PARTITION (and these Disk Manager types). */
778
779struct part_desc {
780 unsigned long start;
781 unsigned long size;
782 unsigned long sector, offset; /* disk location of this info */
783 struct partition p;
784 struct part_desc *ep; /* extended partition containing this one */
785 int ptype;
786#define DOS_TYPE 0
787#define BSD_TYPE 1
788} zero_part_desc;
789
790struct part_desc *
791outer_extended_partition(struct part_desc *p) {
792 while (p->ep)
793 p = p->ep;
794 return p;
795}
796
797static int
798is_parent(struct part_desc *pp, struct part_desc *p) {
799 while (p) {
800 if (pp == p)
801 return 1;
802 p = p->ep;
803 }
804 return 0;
805}
806
807struct disk_desc {
808 struct part_desc partitions[128];
809 int partno;
810} oldp, newp;
811
812/* determine where on the disk this information goes */
813static void
814add_sector_and_offset(struct disk_desc *z) {
815 int pno;
816 struct part_desc *p;
817
818 for (pno = 0; pno < z->partno; pno++) {
819 p = &(z->partitions[pno]);
820 p->offset = 0x1be + (pno%4)*sizeof(struct partition);
821 p->sector = (p->ep ? p->ep->start : 0);
822 }
823}
824
825/* tell the kernel to reread the partition tables */
826static int
827reread_ioctl(int fd) {
828 if(ioctl(fd, BLKRRPART)) {
829 perror("BLKRRPART");
830 return -1;
831 }
832 return 0;
833}
834
835static int
836is_blockdev(int fd) {
837 struct stat statbuf;
838
839 return(fstat(fd, &statbuf) == 0 && S_ISBLK(statbuf.st_mode));
840}
841
842/* reread after writing */
843static void
844reread_disk_partition(char *dev, int fd) {
845 printf("Re-reading the partition table ...\n");
846 fflush(stdout);
847 sync();
848 sleep(3); /* superfluous since 1.3.20 */
849
850 if(reread_ioctl(fd) && is_blockdev(fd))
851 printf("The command to re-read the partition table failed\n"
852 "Reboot your system now, before using mkfs\n");
853
854 if (close(fd)) {
855 perror(dev);
856 printf("Error closing %s\n", dev);
857 }
858 printf("\n");
859}
860
861/* find Linux name of this partition, assuming that it will have a name */
862static int
863index_to_linux(int pno, struct disk_desc *z) {
864 int i, ct = 1;
865 struct part_desc *p = &(z->partitions[0]);
866 for (i=0; i<pno; i++,p++)
867 if(i < 4 || (p->size > 0 && !is_extended(p->p.sys_type)))
868 ct++;
869 return ct;
870}
871
872static int
873linux_to_index(int lpno, struct disk_desc *z) {
874 int i, ct = 0;
875 struct part_desc *p = &(z->partitions[0]);
876 for (i=0; i<z->partno && ct < lpno; i++,p++)
877 if((i < 4 || (p->size > 0 && !is_extended(p->p.sys_type)))
878 && ++ct == lpno)
879 return i;
880 return -1;
881}
882
883static int
884asc_to_index(char *pnam, struct disk_desc *z) {
885 int pnum, pno;
886
887 if (*pnam == '#') {
888 pno = atoi(pnam+1);
889 } else {
890 pnum = atoi(pnam);
891 pno = linux_to_index(pnum, z);
892 }
893 if (!(pno >= 0 && pno < z->partno))
894 fatal("%s: no such partition\n"), pnam;
895 return pno;
896}
897
898/*
899 * List partitions - in terms of sectors, blocks or cylinders
900 */
901#define F_SECTOR 1
902#define F_BLOCK 2
903#define F_CYLINDER 3
904#define F_MEGABYTE 4
905
906static int default_format = F_MEGABYTE;
907static int specified_format = 0;
908static int show_extended = 0;
909static int one_only = 0;
910static int one_only_pno;
911static int increment = 0;
912
913static void
914set_format(char c) {
915 switch(c) {
916 default:
917 printf("unrecognized format - using sectors\n");
918 case 'S': specified_format = F_SECTOR; break;
919 case 'B': specified_format = F_BLOCK; break;
920 case 'C': specified_format = F_CYLINDER; break;
921 case 'M': specified_format = F_MEGABYTE; break;
922 }
923}
924
925static unsigned long
926unitsize(int format) {
927 default_format = (B.cylindersize ? F_CYLINDER : F_MEGABYTE);
928 if (!format && !(format = specified_format))
929 format = default_format;
930
931 switch(format) {
932 default:
933 case F_CYLINDER:
934 if(B.cylindersize)
935 return B.cylindersize;
936 case F_SECTOR:
937 return 1;
938 case F_BLOCK:
939 return 2;
940 case F_MEGABYTE:
941 return 2048;
942 }
943}
944
945static unsigned long
946get_disksize(int format) {
947 unsigned long cs = B.cylinders;
948 if (cs && leave_last)
949 cs--;
950 return (cs * B.cylindersize) / unitsize(format);
951}
952
953static void
954out_partition_header(char *dev, int format, struct geometry G) {
955 if (dump) {
956 printf("# partition table of %s\n", dev);
957 printf("unit: sectors\n\n");
958 return;
959 }
960
961 default_format = (G.cylindersize ? F_CYLINDER : F_MEGABYTE);
962 if (!format && !(format = specified_format))
963 format = default_format;
964
965 switch(format) {
966 default:
967 printf("unimplemented format - using %s\n",
968 G.cylindersize ? "cylinders" : "sectors");
969 case F_CYLINDER:
970 if (G.cylindersize) {
971 printf("Units = cylinders of %lu bytes, blocks of 1024 bytes"
972 ", counting from %d\n\n",
973 G.cylindersize<<9, increment);
974 printf(" Device Boot Start End #cyls #blocks Id System\n");
975 break;
976 }
977 /* fall through */
978 case F_SECTOR:
979 printf("Units = sectors of 512 bytes, counting from %d\n\n",
980 increment);
981 printf(" Device Boot Start End #sectors Id System\n");
982 break;
983 case F_BLOCK:
984 printf("Units = blocks of 1024 bytes, counting from %d\n\n",
985 increment);
986 printf(" Device Boot Start End #blocks Id System\n");
987 break;
988 case F_MEGABYTE:
989 printf("Units = megabytes of 1048576 bytes, blocks of 1024 bytes"
990 ", counting from %d\n\n", increment);
991 printf(" Device Boot Start End MB #blocks Id System\n");
992 break;
993 }
994}
995
996static void
997out_rounddown(int width, unsigned long n, unsigned long unit, int inc) {
998 printf("%*lu", width, inc + n/unit);
999 if (unit != 1)
1000 putchar((n % unit) ? '+' : ' ');
1001 putchar(' ');
1002}
1003
1004static void
1005out_roundup(int width, unsigned long n, unsigned long unit, int inc) {
1006 if (n == (unsigned long)(-1))
1007 printf("%*s", width, "-");
1008 else
1009 printf("%*lu", width, inc + n/unit);
1010 if (unit != 1)
1011 putchar(((n+1) % unit) ? '-' : ' ');
1012 putchar(' ');
1013}
1014
1015static void
1016out_roundup_size(int width, unsigned long n, unsigned long unit) {
1017 printf("%*lu", width, (n+unit-1)/unit);
1018 if (unit != 1)
1019 putchar((n % unit) ? '-' : ' ');
1020 putchar(' ');
1021}
1022
1023static int
1024get_fdisk_geometry(struct part_desc *p) {
1025 chs b = p->p.end_chs;
1026 longchs bb = chs_to_longchs(b);
1027 F.heads = bb.h+1;
1028 F.sectors = bb.s;
1029 F.cylindersize = F.heads*F.sectors;
1030 return (F.sectors != B.sectors || F.heads != B.heads);
1031}
1032
1033static void
1034out_partition(char *dev, int format, struct part_desc *p,
1035 struct disk_desc *z, struct geometry G) {
1036 unsigned long start, end, size;
1037 int pno, lpno;
1038
1039 if (!format && !(format = specified_format))
1040 format = default_format;
1041
1042 pno = p - &(z->partitions[0]); /* our index */
1043 lpno = index_to_linux(pno, z); /* name of next one that has a name */
1044 if(pno == linux_to_index(lpno, z)) /* was that us? */
1045 printf("%8s%-2u", dev, lpno); /* yes */
1046 else if(show_extended)
1047 printf(" - ");
1048 else
1049 return;
1050 putchar(dump ? ':' : ' ');
1051
1052 start = p->start;
1053 end = p->start + p->size - 1;
1054 size = p->size;
1055
1056 if (dump) {
1057 printf(" start=%9lu", start);
1058 printf(", size=%8lu", size);
1059 if (p->ptype == DOS_TYPE) {
1060 printf(", Id=%2x", p->p.sys_type);
1061 if (p->p.bootable == 0x80)
1062 printf(", bootable");
1063 }
1064 printf("\n");
1065 return;
1066 }
1067
1068 if(p->ptype != DOS_TYPE || p->p.bootable == 0)
1069 printf(" ");
1070 else if(p->p.bootable == 0x80)
1071 printf(" * ");
1072 else
1073 printf(" ? "); /* garbage */
1074
1075 switch(format) {
1076 case F_CYLINDER:
1077 if (G.cylindersize) {
1078 out_rounddown(6, start, G.cylindersize, increment);
1079 out_roundup(6, end, G.cylindersize, increment);
1080 out_roundup_size(6, size, G.cylindersize);
1081 out_rounddown(8, size, 2, 0);
1082 break;
1083 }
1084 /* fall through */
1085 default:
1086 case F_SECTOR:
1087 out_rounddown(9, start, 1, increment);
1088 out_roundup(9, end, 1, increment);
1089 out_rounddown(9, size, 1, 0);
1090 break;
1091 case F_BLOCK:
1092#if 0
1093 printf("%8lu,%3lu ",
1094 p->sector/2, ((p->sector & 1) ? 512 : 0) + p->offset);
1095#endif
1096 out_rounddown(8, start, 2, increment);
1097 out_roundup(8, end, 2, increment);
1098 out_rounddown(8, size, 2, 0);
1099 break;
1100 case F_MEGABYTE:
1101 out_rounddown(5, start, 2048, increment);
1102 out_roundup(5, end, 2048, increment);
1103 out_roundup_size(5, size, 2048);
1104 out_rounddown(8, size, 2, 0);
1105 break;
1106 }
1107 if (p->ptype == DOS_TYPE) {
1108 printf(" %2x %s\n",
1109 p->p.sys_type, sysname(p->p.sys_type));
1110 } else {
1111 printf("\n");
1112 }
1113
1114 /* Is chs as we expect? */
1115 if (!quiet && p->ptype == DOS_TYPE) {
1116 chs a, b;
1117 longchs aa, bb;
1118 a = (size ? ulong_to_chs(start,G) : zero_chs);
1119 b = p->p.begin_chs;
1120 aa = chs_to_longchs(a);
1121 bb = chs_to_longchs(b);
1122 if(a.s && !is_equal_chs(a, b))
1123 printf("\t\tstart: (c,h,s) expected (%ld,%ld,%ld) found (%ld,%ld,%ld)\n",
1124 aa.c, aa.h, aa.s, bb.c, bb.h, bb.s);
1125 a = (size ? ulong_to_chs(end,G) : zero_chs);
1126 b = p->p.end_chs;
1127 aa = chs_to_longchs(a);
1128 bb = chs_to_longchs(b);
1129 if(a.s && !is_equal_chs(a, b))
1130 printf("\t\tend: (c,h,s) expected (%ld,%ld,%ld) found (%ld,%ld,%ld)\n",
1131 aa.c, aa.h, aa.s, bb.c, bb.h, bb.s);
1132 if(G.cylinders && G.cylinders < 1024 && bb.c > G.cylinders)
1133 printf("partition ends on cylinder %ld, beyond the end of the disk\n",
1134 bb.c);
1135 }
1136}
1137
1138static void
1139out_partitions(char *dev, struct disk_desc *z) {
1140 struct part_desc *p;
1141 int pno, format = 0;
1142
1143 if (z->partno == 0)
1144 printf("No partitions found\n");
1145 else {
1146 for (pno=0; pno < z->partno; pno++) {
1147 p = &(z->partitions[pno]);
1148 if (p->size != 0 && p->p.sys_type != 0) {
1149 if (get_fdisk_geometry(p))
1150 printf(
1151 "Warning: The first partition looks like it was made\n"
1152 " for C/H/S=*/%ld/%ld (instead of %ld/%ld/%ld).\n"
1153 "For this listing I'll assume that geometry.\n",
1154 F.heads, F.sectors, B.cylinders, B.heads, B.sectors);
1155 break;
1156 }
1157 }
1158 out_partition_header(dev, format, F);
1159 for(pno=0; pno < z->partno; pno++) {
1160 out_partition(dev, format, &(z->partitions[pno]), z, F);
1161 if(show_extended && pno%4==3)
1162 printf("\n");
1163 }
1164 }
1165}
1166
1167static int
1168disj(struct part_desc *p, struct part_desc *q) {
1169 return
1170 ((p->start + p->size <= q->start)
1171 || (is_extended(p->p.sys_type)
1172 && q->start + q->size <= p->start + p->size));
1173}
1174
1175static char *
1176pnumber(struct part_desc *p, struct disk_desc *z) {
1177 static char buf[20];
1178 int this, next;
1179 struct part_desc *p0 = &(z->partitions[0]);
1180
1181 this = index_to_linux(p-p0, z);
1182 next = index_to_linux(p-p0+1, z);
1183
1184 if (next > this)
1185 sprintf(buf, "%d", this);
1186 else
1187 sprintf(buf, "[%d]", this);
1188 return buf;
1189}
1190
1191static int
1192partitions_ok(struct disk_desc *z) {
1193 struct part_desc *partitions = &(z->partitions[0]), *p, *q;
1194 int partno = z->partno;
1195
1196#define PNO(p) pnumber(p, z)
1197
1198 /* Have at least 4 partitions been defined? */
1199 if (partno < 4) {
1200 if (!partno)
1201 fatal("no partition table present.\n");
1202 else
1203 fatal("strange, only %d partitions defined.\n"), partno;
1204 return 0;
1205 }
1206
1207 /* Are the partitions of size 0 marked empty?
1208 And do they have start = 0? And bootable = 0? */
1209 for (p = partitions; p - partitions < partno; p++)
1210 if (p->size == 0) {
1211 if(p->p.sys_type != EMPTY_PARTITION)
1212 warn("Warning: partition %s has size 0 but is not marked Empty\n",
1213 PNO(p));
1214 else if(p->p.bootable != 0)
1215 warn("Warning: partition %s has size 0 and is bootable\n",
1216 PNO(p));
1217 else if(p->p.start_sect != 0)
1218 warn("Warning: partition %s has size 0 and nonzero start\n",
1219 PNO(p));
1220 /* all this is probably harmless, no error return */
1221 }
1222
1223 /* Are the logical partitions contained in their extended partitions? */
1224 for (p = partitions+4; p < partitions+partno; p++)
1225 if (p->ptype == DOS_TYPE)
1226 if (p->size && !is_extended(p->p.sys_type)) {
1227 q = p->ep;
1228 if (p->start < q->start || p->start + p->size > q->start + q->size) {
1229 warn("Warning: partition %s "), PNO(p);
1230 warn("is not contained in partition %s\n"), PNO(q);
1231 return 0;
1232 }
1233 }
1234
1235 /* Are the data partitions mutually disjoint? */
1236 for (p = partitions; p < partitions+partno; p++)
1237 if (p->size && !is_extended(p->p.sys_type))
1238 for (q = p+1; q < partitions+partno; q++)
1239 if (q->size && !is_extended(q->p.sys_type))
1240 if(!((p->start > q-> start) ? disj(q,p) : disj(p,q))) {
1241 warn("Warning: partitions %s "), PNO(p);
1242 warn("and %s overlap\n"), PNO(q);
1243 return 0;
1244 }
1245
1246 /* Are the data partitions and the extended partition
1247 table sectors disjoint? */
1248 for (p = partitions; p < partitions+partno; p++)
1249 if (p->size && !is_extended(p->p.sys_type))
1250 for (q = partitions; q < partitions+partno; q++)
1251 if (is_extended(q->p.sys_type))
1252 if (p->start <= q->start && p->start + p->size > q->start) {
1253 warn("Warning: partition %s contains part of ", PNO(p));
1254 warn("the partition table (sector %lu),\n", q->start);
1255 warn("and will destroy it when filled\n");
1256 return 0;
1257 }
1258
1259 /* Do they start past zero and end before end-of-disk? */
1260 { unsigned long ds = get_disksize(F_SECTOR);
1261 for (p = partitions; p < partitions+partno; p++)
1262 if (p->size) {
1263 if(p->start == 0) {
1264 warn("Warning: partition %s starts at sector 0\n", PNO(p));
1265 return 0;
1266 }
1267 if (p->size && p->start + p->size > ds) {
1268 warn("Warning: partition %s extends past end of disk\n", PNO(p));
1269 return 0;
1270 }
1271 }
1272 }
1273
1274 /* At most one chain of DOS extended partitions ? */
1275 /* It seems that the OS/2 fdisk has the additional requirement
1276 that the extended partition must be the fourth one */
1277 { int ect = 0;
1278 for (p = partitions; p < partitions+4; p++)
1279 if (p->p.sys_type == EXTENDED_PARTITION)
1280 ect++;
1281 if (ect > 1 && !Linux) {
1282 warn("Among the primary partitions, at most one can be extended\n");
1283 warn(" (although this is not a problem under Linux)\n");
1284 return 0;
1285 }
1286 }
1287
1288 /*
1289 * Do all partitions start at a cylinder boundary ?
1290 * (this is not required for Linux)
1291 * The first partition starts after MBR.
1292 * Logical partitions start slightly after the containing extended partn.
1293 */
1294 if (B.cylindersize) {
1295 for(p = partitions; p < partitions+partno; p++)
1296 if (p->size) {
1297 if(p->start % B.cylindersize != 0
1298 && (!p->ep || p->start / B.cylindersize != p->ep->start / B.cylindersize)
1299 && (p->p.start_sect >= B.cylindersize)) {
1300 warn("Warning: partition %s does not start "
1301 "at a cylinder boundary\n", PNO(p));
1302 if (!Linux)
1303 return 0;
1304 }
1305 if((p->start + p->size) % B.cylindersize) {
1306 warn("Warning: partition %s does not end "
1307 "at a cylinder boundary\n", PNO(p));
1308 if (!Linux)
1309 return 0;
1310 }
1311 }
1312 }
1313
1314 /* Usually, one can boot only from primary partitions. */
1315 /* In fact, from a unique one only. */
1316 /* do not warn about bootable extended partitions -
1317 often LILO is there */
1318 { int pno = -1;
1319 for(p = partitions; p < partitions+partno; p++)
1320 if (p->p.bootable) {
1321 if (pno == -1)
1322 pno = p - partitions;
1323 else if (p - partitions < 4) {
1324 warn("Warning: more than one primary partition is marked "
1325 "bootable (active)\n"
1326 "This does not matter for LILO, but the DOS MBR will "
1327 "not boot this disk.\n");
1328 break;
1329 }
1330 if (p - partitions >= 4) {
1331 warn("Warning: usually one can boot from primary partitions "
1332 "only\nLILO disregards the `bootable' flag.\n");
1333 break;
1334 }
1335 }
1336 if (pno == -1 || pno >= 4)
1337 warn("Warning: no primary partition is marked bootable (active)\n"
1338 "This does not matter for LILO, but the DOS MBR will "
1339 "not boot this disk.\n");
1340 }
1341
1342 /* Is chs as we expect? */
1343 for(p = partitions; p < partitions+partno; p++)
1344 if(p->ptype == DOS_TYPE) {
1345 chs a, b;
1346 longchs aa, bb;
1347 a = p->size ? ulong_to_chs(p->start,B) : zero_chs;
1348 b = p->p.begin_chs;
1349 aa = chs_to_longchs(a);
1350 bb = chs_to_longchs(b);
1351 if (!chs_ok(b, PNO(p), "start"))
1352 return 0;
1353 if(a.s && !is_equal_chs(a, b))
1354 warn("partition %s: start: (c,h,s) expected (%ld,%ld,%ld) found (%ld,%ld,%ld)\n",
1355 PNO(p), aa.c, aa.h, aa.s, bb.c, bb.h, bb.s);
1356 a = p->size ? ulong_to_chs(p->start + p->size - 1, B) : zero_chs;
1357 b = p->p.end_chs;
1358 aa = chs_to_longchs(a);
1359 bb = chs_to_longchs(b);
1360 if (!chs_ok(b, PNO(p), "end"))
1361 return 0;
1362 if(a.s && !is_equal_chs(a, b))
1363 warn("partition %s: end: (c,h,s) expected (%ld,%ld,%ld) found (%ld,%ld,%ld)\n",
1364 PNO(p), aa.c, aa.h, aa.s, bb.c, bb.h, bb.s);
1365 if(B.cylinders && B.cylinders < 1024 && bb.c > B.cylinders)
1366 warn("partition %s ends on cylinder %ld, beyond the end of the disk\n",
1367 PNO(p), bb.c);
1368 }
1369
1370 return 1;
1371
1372#undef PNO
1373}
1374
1375static void
1376extended_partition(char *dev, int fd, struct part_desc *ep, struct disk_desc *z) {
1377 char *cp;
1378 struct sector *s;
1379 unsigned long start, here, next;
1380 int i, moretodo = 1;
1381 struct partition p;
1382 struct part_desc *partitions = &(z->partitions[0]);
1383 int pno = z->partno;
1384
1385 here = start = ep->start;
1386
1387 while (moretodo) {
1388 moretodo = 0;
1389
1390 if (!(s = get_sector(dev, fd, here)))
1391 break;
1392
1393 if (!msdos_signature(s))
1394 break;
1395
1396 cp = s->data + 0x1be;
1397
1398 if (pno+4 >= SIZE(z->partitions)) {
1399 printf("too many partitions - ignoring those past nr (%d)\n",
1400 pno-1);
1401 break;
1402 }
1403
1404 next = 0;
1405
1406 for (i=0; i<4; i++,cp += sizeof(struct partition)) {
1407 partitions[pno].sector = here;
1408 partitions[pno].offset = cp - s->data;
1409 partitions[pno].ep = ep;
1410 copy_to_part(cp,&p);
1411 if (is_extended(p.sys_type)) {
1412 partitions[pno].start = start + p.start_sect;
1413 if (next)
1414 printf("tree of partitions?\n");
1415 else
1416 next = partitions[pno].start; /* follow `upper' branch */
1417 moretodo = 1;
1418 } else {
1419 partitions[pno].start = here + p.start_sect;
1420 }
1421 partitions[pno].size = p.nr_sects;
1422 partitions[pno].ptype = DOS_TYPE;
1423 partitions[pno].p = p;
1424 pno++;
1425 }
1426 here = next;
1427 }
1428
1429 z->partno = pno;
1430}
1431
1432#define BSD_DISKMAGIC (0x82564557UL)
1433#define BSD_MAXPARTITIONS 8
1434#define BSD_FS_UNUSED 0
1435typedef unsigned char u8;
1436typedef unsigned short u16;
1437typedef unsigned int u32;
1438struct bsd_disklabel {
1439 u32 d_magic;
1440 char d_junk1[4];
1441 char d_typename[16];
1442 char d_packname[16];
1443 char d_junk2[92];
1444 u32 d_magic2;
1445 char d_junk3[2];
1446 u16 d_npartitions; /* number of partitions in following */
1447 char d_junk4[8];
1448 struct bsd_partition { /* the partition table */
1449 u32 p_size; /* number of sectors in partition */
1450 u32 p_offset; /* starting sector */
1451 u32 p_fsize; /* filesystem basic fragment size */
1452 u8 p_fstype; /* filesystem type, see below */
1453 u8 p_frag; /* filesystem fragments per block */
1454 u16 p_cpg; /* filesystem cylinders per group */
1455 } d_partitions[BSD_MAXPARTITIONS]; /* actually may be more */
1456};
1457
1458static void
1459bsd_partition(char *dev, int fd, struct part_desc *ep, struct disk_desc *z) {
1460 struct bsd_disklabel *l;
1461 struct bsd_partition *bp, *bp0;
1462 unsigned long start = ep->start;
1463 struct sector *s;
1464 struct part_desc *partitions = &(z->partitions[0]);
1465 int pno = z->partno;
1466
1467 if (!(s = get_sector(dev,fd,start+1)))
1468 return;
1469 l = (struct bsd_disklabel *) (s->data);
1470 if (l->d_magic != BSD_DISKMAGIC)
1471 return;
1472
1473 bp = bp0 = &l->d_partitions[0];
1474 while (bp - bp0 <= BSD_MAXPARTITIONS) {
1475 if (pno+1 >= SIZE(z->partitions)) {
1476 printf("too many partitions - ignoring those "
1477 "past nr (%d)\n", pno-1);
1478 break;
1479 }
1480 if (bp->p_fstype != BSD_FS_UNUSED) {
1481 partitions[pno].start = bp->p_offset;
1482 partitions[pno].size = bp->p_size;
1483 partitions[pno].sector = start+1;
1484 partitions[pno].offset = (char *)bp - (char *)bp0;
1485 partitions[pno].ep = 0;
1486 partitions[pno].ptype = BSD_TYPE;
1487 pno++;
1488 }
1489 bp++;
1490 }
1491 z->partno = pno;
1492}
1493
1494static int
1495msdos_partition(char *dev, int fd, unsigned long start, struct disk_desc *z) {
1496 int i;
1497 char *cp;
1498 struct partition pt;
1499 struct sector *s;
1500 struct part_desc *partitions = &(z->partitions[0]);
1501 int pno = z->partno;
1502
1503 if (!(s = get_sector(dev, fd, start)))
1504 return 0;
1505
1506 if (!msdos_signature(s))
1507 return 0;
1508
1509 cp = s->data + 0x1be;
1510 copy_to_part(cp,&pt);
1511
1512 /* If I am not mistaken, recent kernels will hide this from us,
1513 so we will never actually see traces of a Disk Manager */
1514 if (pt.sys_type == DM6_PARTITION
1515 || pt.sys_type == EZD_PARTITION
1516 || pt.sys_type == DM6_AUX1PARTITION
1517 || pt.sys_type == DM6_AUX3PARTITION) {
1518 printf("detected Disk Manager - unable to handle that\n");
1519 return 0;
1520 }
1521 { unsigned int sig = *(unsigned short *)(s->data + 2);
1522 if (sig <= 0x1ae
1523 && *(unsigned short *)(s->data + sig) == 0x55aa
1524 && (1 & *(unsigned char *)(s->data + sig + 2))) {
1525 printf("DM6 signature found - giving up\n");
1526 return 0;
1527 }
1528 }
1529
1530 for (pno=0; pno<4; pno++,cp += sizeof(struct partition)) {
1531 partitions[pno].sector = start;
1532 partitions[pno].offset = cp - s->data;
1533 copy_to_part(cp,&pt);
1534 partitions[pno].start = start + pt.start_sect;
1535 partitions[pno].size = pt.nr_sects;
1536 partitions[pno].ep = 0;
1537 partitions[pno].p = pt;
1538 }
1539
1540 z->partno = pno;
1541
1542 for (i=0; i<4; i++) {
1543 if (is_extended(partitions[i].p.sys_type)) {
1544 if (!partitions[i].size) {
1545 printf("strange..., an extended partition of size 0?\n");
1546 continue;
1547 }
1548 extended_partition(dev, fd, &partitions[i], z);
1549 }
1550 if (is_bsd(partitions[i].p.sys_type)) {
1551 if (!partitions[i].size) {
1552 printf("strange..., a BSD partition of size 0?\n");
1553 continue;
1554 }
1555 bsd_partition(dev, fd, &partitions[i], z);
1556 }
1557 }
1558 return 1;
1559}
1560
1561static int
1562osf_partition(char *dev, int fd, unsigned long start, struct disk_desc *z) {
1563 return 0;
1564}
1565
1566static int
1567sun_partition(char *dev, int fd, unsigned long start, struct disk_desc *z) {
1568 return 0;
1569}
1570
1571static int
1572amiga_partition(char *dev, int fd, unsigned long start, struct disk_desc *z) {
1573 return 0;
1574}
1575
1576static void
1577get_partitions(char *dev, int fd, struct disk_desc *z) {
1578 z->partno = 0;
1579
1580 if (!msdos_partition(dev, fd, 0, z)
1581 && !osf_partition(dev, fd, 0, z)
1582 && !sun_partition(dev, fd, 0, z)
1583 && !amiga_partition(dev, fd, 0, z)) {
1584 printf(" %s: unrecognized partition\n", dev);
1585 return;
1586 }
1587}
1588
1589static int
1590write_partitions(char *dev, int fd, struct disk_desc *z) {
1591 struct sector *s;
1592 struct part_desc *partitions = &(z->partitions[0]), *p;
1593 int pno = z->partno;
1594
1595 if (no_write) {
1596 printf("-n flag was given: Nothing changed\n");
1597 exit(0);
1598 }
1599
1600 for (p = partitions; p < partitions+pno; p++) {
1601 s = get_sector(dev, fd, p->sector);
1602 if (!s) return 0;
1603 s->to_be_written = 1;
1604 copy_from_part(&(p->p), s->data + p->offset);
1605 *(unsigned short *)(&(s->data[0x1fe])) = 0xaa55;
1606 }
1607 if (save_sector_file) {
1608 if (!save_sectors(dev, fd)) {
1609 fatal("Failed saving the old sectors - aborting\n");
1610 return 0;
1611 }
1612 }
1613 if (!write_sectors(dev, fd)) {
1614 error("Failed writing the partition on %s\n"), dev;
1615 return 0;
1616 }
1617 return 1;
1618}
1619
1620/*
1621 * F. The standard input
1622 */
1623
1624/*
1625 * Input format:
1626 * <start> <size> <type> <bootable> <c,h,s> <c,h,s>
1627 * Fields are separated by whitespace or comma or semicolon possibly
1628 * followed by whitespace; initial and trailing whitespace is ignored.
1629 * Numbers can be octal, decimal or hexadecimal, decimal is default
1630 * The <c,h,s> parts can (and probably should) be omitted.
1631 * Bootable is specified as [*|-], with as default not-bootable.
1632 * Type is given in hex, without the 0x prefix, or is [E|S|L|X], where
1633 * L (LINUX_NATIVE (83)) is the default, S is LINUX_SWAP (82), and E
1634 * is EXTENDED_PARTITION (5), X is LINUX_EXTENDED (85).
1635 * The default value of start is the first nonassigned sector/cylinder/...
1636 * The default value of size is as much as possible (until next
1637 * partition or end-of-disk).
1638 * .: end of chain of extended partitions.
1639 *
1640 * On interactive input an empty line means: all defaults.
1641 * Otherwise empty lines are ignored.
1642 */
1643
1644static int eof, eob;
1645
1646struct dumpfld {
1647 int fldno;
1648 char *fldname;
1649 int is_bool;
1650} dumpflds[] = {
1651 { 0, "start", 0 },
1652 { 1, "size", 0 },
1653 { 2, "Id", 0 },
1654 { 3, "bootable", 1 },
1655 { 4, "bh", 0 },
1656 { 5, "bs", 0 },
1657 { 6, "bc", 0 },
1658 { 7, "eh", 0 },
1659 { 8, "es", 0 },
1660 { 9, "ec", 0 }
1661};
1662
1663/*
1664 * Read a line, split it into fields
1665 *
1666 * (some primitive handwork, but a more elaborate parser seems
1667 * unnecessary)
1668 */
1669#define RD_EOF (-1)
1670#define RD_CMD (-2)
1671
1672static int
1673read_stdin(unsigned char **fields, unsigned char *line, int fieldssize, int linesize) {
1674 unsigned char *lp, *ip;
1675 int c, fno;
1676
1677 /* boolean true and empty string at start */
1678 line[0] = '*';
1679 line[1] = 0;
1680 for (fno=0; fno < fieldssize; fno++)
1681 fields[fno] = line + 1;
1682 fno = 0;
1683
1684 /* read a line from stdin */
1685 lp = fgets(line+2, linesize, stdin);
1686 if (lp == NULL) {
1687 eof = 1;
1688 return RD_EOF;
1689 }
1690 if (!(lp = index(lp, '\n')))
1691 fatal("long or incomplete input line - quitting\n");
1692 *lp = 0;
1693
1694 /* remove comments, if any */
1695 if ((lp = index(line+2, '#')) != 0)
1696 *lp = 0;
1697
1698 /* recognize a few commands - to be expanded */
1699 if (!strcmp(line+2, "unit: sectors")) {
1700 specified_format = F_SECTOR;
1701 return RD_CMD;
1702 }
1703
1704 /* dump style? - then bad input is fatal */
1705 if ((ip = index(line+2, ':')) != 0) {
1706 struct dumpfld *d;
1707
1708 nxtfld:
1709 ip++;
1710 while(isspace(*ip))
1711 ip++;
1712 if (*ip == 0)
1713 return fno;
1714 for(d = dumpflds; d-dumpflds < SIZE(dumpflds); d++) {
1715 if(!strncmp(ip, d->fldname, strlen(d->fldname))) {
1716 ip += strlen(d->fldname);
1717 while(isspace(*ip))
1718 ip++;
1719 if (d->is_bool)
1720 fields[d->fldno] = line;
1721 else if (*ip == '=') {
1722 while(isspace(*++ip)) ;
1723 fields[d->fldno] = ip;
1724 while(isalnum(*ip)) /* 0x07FF */
1725 ip++;
1726 } else
1727 fatal("input error: `=' expected after %s field\n",
1728 d->fldname);
1729 if (fno <= d->fldno)
1730 fno = d->fldno + 1;
1731 if(*ip == 0)
1732 return fno;
1733 if(*ip != ',' && *ip != ';')
1734 fatal("input error: unexpected character %c after %s field\n",
1735 *ip, d->fldname);
1736 *ip = 0;
1737 goto nxtfld;
1738 }
1739 }
1740 fatal("unrecognized input: %s\n"), ip;
1741 }
1742
1743 /* split line into fields */
1744 lp = ip = line+2;
1745 fields[fno++] = lp;
1746 while((c = *ip++) != 0) {
1747 if (!lp[-1] && (c == '\t' || c == ' '))
1748 ;
1749 else if (c == '\t' || c == ' ' || c == ',' || c == ';') {
1750 *lp++ = 0;
1751 if (fno < fieldssize)
1752 fields[fno++] = lp;
1753 continue;
1754 } else
1755 *lp++ = c;
1756 }
1757
1758 if (lp == fields[fno-1])
1759 fno--;
1760 return fno;
1761}
1762
1763/* read a number, use default if absent */
1764static int
1765get_ul(char *u, unsigned long *up, unsigned long def, int base) {
1766 char *nu;
1767
1768 if (*u) {
1769 errno = 0;
1770 *up = strtoul(u, &nu, base);
1771 if (errno == ERANGE) {
1772 printf("number too big\n");
1773 return -1;
1774 }
1775 if (*nu) {
1776 printf("trailing junk after number\n");
1777 return -1;
1778 }
1779 } else
1780 *up = def;
1781 return 0;
1782}
1783
1784/* There are two common ways to structure extended partitions:
1785 as nested boxes, and as a chain. Sometimes the partitions
1786 must be given in order. Sometimes all logical partitions
1787 must lie inside the outermost extended partition.
1788NESTED: every partition is contained in the surrounding partitions
1789 and is disjoint from all others.
1790CHAINED: every data partition is contained in the surrounding partitions
1791 and disjoint from all others, but extended partitions may lie outside
1792 (insofar as allowed by all_logicals_inside_outermost_extended).
1793ONESECTOR: all data partitions are mutually disjoint; extended partitions
1794 each use one sector only (except perhaps for the outermost one).
1795*/
1796static int partitions_in_order = 0;
1797static int all_logicals_inside_outermost_extended = 1;
1798static enum { NESTED, CHAINED, ONESECTOR } boxes = NESTED;
1799
1800/* find the default value for <start> - assuming entire units */
1801static unsigned long
1802first_free(int pno, int is_extended, struct part_desc *ep, int format,
1803 unsigned long mid, struct disk_desc *z) {
1804 unsigned long ff, fff;
1805 unsigned long unit = unitsize(format);
1806 struct part_desc *partitions = &(z->partitions[0]), *pp = 0;
1807
1808 /* if containing ep undefined, look at its container */
1809 if (ep && ep->p.sys_type == EMPTY_PARTITION)
1810 ep = ep->ep;
1811
1812 if (ep) {
1813 if (boxes == NESTED || (boxes == CHAINED && !is_extended))
1814 pp = ep;
1815 else if (all_logicals_inside_outermost_extended)
1816 pp = outer_extended_partition(ep);
1817 }
1818#if 0
1819 ff = pp ? (pp->start + unit - 1) / unit : 0;
1820#else
1821 /* rounding up wastes almost an entire cylinder - round down
1822 and leave it to compute_start_sect() to fix the difference */
1823 ff = pp ? pp->start / unit : 0;
1824#endif
1825 /* MBR and 1st sector of an extended partition are never free */
1826 if (unit == 1)
1827 ff++;
1828
1829 again:
1830 for(pp = partitions; pp < partitions+pno; pp++) {
1831 if (!is_parent(pp, ep) && pp->size > 0) {
1832 if ((partitions_in_order || pp->start / unit <= ff
1833 || (mid && pp->start / unit <= mid))
1834 && (fff = (pp->start + pp->size + unit - 1) / unit) > ff) {
1835 ff = fff;
1836 goto again;
1837 }
1838 }
1839 }
1840
1841 return ff;
1842}
1843
1844/* find the default value for <size> - assuming entire units */
1845static unsigned long
1846max_length(int pno, int is_extended, struct part_desc *ep, int format,
1847 unsigned long start, struct disk_desc *z) {
1848 unsigned long fu;
1849 unsigned long unit = unitsize(format);
1850 struct part_desc *partitions = &(z->partitions[0]), *pp = 0;
1851
1852 /* if containing ep undefined, look at its container */
1853 if (ep && ep->p.sys_type == EMPTY_PARTITION)
1854 ep = ep->ep;
1855
1856 if (ep) {
1857 if (boxes == NESTED || (boxes == CHAINED && !is_extended))
1858 pp = ep;
1859 else if (all_logicals_inside_outermost_extended)
1860 pp = outer_extended_partition(ep);
1861 }
1862 fu = pp ? (pp->start + pp->size) / unit : get_disksize(format);
1863
1864 for(pp = partitions; pp < partitions+pno; pp++)
1865 if (!is_parent(pp, ep) && pp->size > 0
1866 && pp->start / unit >= start && pp->start / unit < fu)
1867 fu = pp->start / unit;
1868
1869 return (fu > start) ? fu - start : 0;
1870}
1871
1872/* compute starting sector of a partition inside an extended one */
1873/* ep is 0 or points to surrounding extended partition */
1874static int
1875compute_start_sect(struct part_desc *p, struct part_desc *ep) {
1876 unsigned long base;
1877 int inc = (DOS && B.sectors) ? B.sectors : 1;
1878 int delta;
1879
1880 if (ep && p->start + p->size >= ep->start + 1)
1881 delta = p->start - ep->start - inc;
1882 else if (p->start == 0 && p->size > 0)
1883 delta = -inc;
1884 else
1885 delta = 0;
1886 if (delta < 0) {
1887 p->start -= delta;
1888 p->size += delta;
1889 if (is_extended(p->p.sys_type) && boxes == ONESECTOR)
1890 p->size = inc;
1891 else if ((int)(p->size) <= 0) {
1892 warn("no room for partition descriptor\n");
1893 return 0;
1894 }
1895 }
1896 base = (!ep ? 0
1897 : (is_extended(p->p.sys_type) ?
1898 outer_extended_partition(ep) : ep)->start);
1899 p->ep = ep;
1900 if (p->p.sys_type == EMPTY_PARTITION && p->size == 0) {
1901 p->p.start_sect = 0;
1902 p->p.begin_chs = zero_chs;
1903 p->p.end_chs = zero_chs;
1904 } else {
1905 p->p.start_sect = p->start - base;
1906 p->p.begin_chs = ulong_to_chs(p->start,B);
1907 p->p.end_chs = ulong_to_chs(p->start + p->size - 1,B);
1908 }
1909 p->p.nr_sects = p->size;
1910 return 1;
1911}
1912
1913/* build the extended partition surrounding a given logical partition */
1914static int
1915build_surrounding_extended(struct part_desc *p, struct part_desc *ep,
1916 struct disk_desc *z) {
1917 int inc = (DOS && B.sectors) ? B.sectors : 1;
1918 int format = F_SECTOR;
1919 struct part_desc *p0 = &(z->partitions[0]), *eep = ep->ep;
1920
1921 if (boxes == NESTED) {
1922 ep->start = first_free(ep-p0, 1, eep, format, p->start, z);
1923 ep->size = max_length(ep-p0, 1, eep, format, ep->start, z);
1924 if (ep->start > p->start || ep->start + ep->size < p->start + p->size) {
1925 warn("cannot build surrounding extended partition\n");
1926 return 0;
1927 }
1928 } else {
1929 ep->start = p->start;
1930 if(boxes == CHAINED)
1931 ep->size = p->size;
1932 else
1933 ep->size = inc;
1934 }
1935
1936 ep->p.nr_sects = ep->size;
1937 ep->p.bootable = 0;
1938 ep->p.sys_type = EXTENDED_PARTITION;
1939 if (!compute_start_sect(ep, eep) || !compute_start_sect(p, ep)) {
1940 ep->p.sys_type = EMPTY_PARTITION;
1941 ep->size = 0;
1942 return 0;
1943 }
1944
1945 return 1;
1946}
1947
1948static int
1949read_line(int pno, struct part_desc *ep, char *dev, int interactive,
1950 struct disk_desc *z) {
1951 unsigned char line[1000];
1952 unsigned char *fields[11];
1953 int fno, pct = pno%4;
1954 struct part_desc p, *orig;
1955 unsigned long ff, ff1, ul, ml, ml1, def;
1956 int format, lpno, is_extd;
1957
1958 if (eof || eob)
1959 return -1;
1960
1961 lpno = index_to_linux(pno, z);
1962
1963 if (interactive) {
1964 if (pct == 0 && (show_extended || pno == 0))
1965 warn("\n");
1966 warn("%8s%d: ", dev, lpno);
1967 }
1968
1969 /* read input line - skip blank lines when reading from a file */
1970 do {
1971 fno = read_stdin(fields, line, SIZE(fields), SIZE(line));
1972 } while(fno == RD_CMD || (fno == 0 && !interactive));
1973 if (fno == RD_EOF) {
1974 return -1;
1975 } else if (fno > 10 && *(fields[10]) != 0) {
1976 printf("too many input fields\n");
1977 return 0;
1978 }
1979
1980 if (fno == 1 && !strcmp(fields[0], ".")) {
1981 eob = 1;
1982 return -1;
1983 }
1984
1985 /* use specified format, but round to cylinders if F_MEGABYTE specified */
1986 format = 0;
1987 if (B.cylindersize && specified_format == F_MEGABYTE)
1988 format = F_CYLINDER;
1989
1990 orig = (one_only ? &(oldp.partitions[pno]) : 0);
1991
1992 p = zero_part_desc;
1993 p.ep = ep;
1994
1995 /* first read the type - we need to know whether it is extended */
1996 /* stop reading when input blank (defaults) and all is full */
1997 is_extd = 0;
1998 if (fno == 0) { /* empty line */
1999 if (orig && is_extended(orig->p.sys_type))
2000 is_extd = 1;
2001 ff = first_free(pno, is_extd, ep, format, 0, z);
2002 ml = max_length(pno, is_extd, ep, format, ff, z);
2003 if (ml == 0 && is_extd == 0) {
2004 is_extd = 1;
2005 ff = first_free(pno, is_extd, ep, format, 0, z);
2006 ml = max_length(pno, is_extd, ep, format, ff, z);
2007 }
2008 if (ml == 0 && pno >= 4) {
2009 /* no free blocks left - don't read any further */
2010 warn("No room for more\n");
2011 return -1;
2012 }
2013 }
2014 if (fno < 3 || !*(fields[2]))
2015 ul = orig ? orig->p.sys_type :
2016 (is_extd || (pno > 3 && pct == 1 && show_extended))
2017 ? EXTENDED_PARTITION : LINUX_NATIVE;
2018 else if(!strcmp(fields[2], "L"))
2019 ul = LINUX_NATIVE;
2020 else if(!strcmp(fields[2], "S"))
2021 ul = LINUX_SWAP;
2022 else if(!strcmp(fields[2], "E"))
2023 ul = EXTENDED_PARTITION;
2024 else if(!strcmp(fields[2], "X"))
2025 ul = LINUX_EXTENDED;
2026 else if (get_ul(fields[2], &ul, LINUX_NATIVE, 16))
2027 return 0;
2028 if (ul > 255) {
2029 warn("Illegal type\n");
2030 return 0;
2031 }
2032 p.p.sys_type = ul;
2033 is_extd = is_extended(ul);
2034
2035 /* find start */
2036 ff = first_free(pno, is_extd, ep, format, 0, z);
2037 ff1 = ff * unitsize(format);
2038 def = orig ? orig->start : (pno > 4 && pct > 1) ? 0 : ff1;
2039 if (fno < 1 || !*(fields[0]))
2040 p.start = def;
2041 else {
2042 if (get_ul(fields[0], &ul, def / unitsize(0), 0))
2043 return 0;
2044 p.start = ul * unitsize(0);
2045 p.start -= (p.start % unitsize(format));
2046 }
2047
2048 /* find length */
2049 ml = max_length(pno, is_extd, ep, format, p.start / unitsize(format), z);
2050 ml1 = ml * unitsize(format);
2051 def = orig ? orig->size : (pno > 4 && pct > 1) ? 0 : ml1;
2052 if (fno < 2 || !*(fields[1]))
2053 p.size = def;
2054 else {
2055 if (get_ul(fields[1], &ul, def / unitsize(0), 0))
2056 return 0;
2057 p.size = ul * unitsize(0) + unitsize(format) - 1;
2058 p.size -= (p.size % unitsize(format));
2059 }
2060 if (p.size > ml1) {
2061 warn("Warning: exceeds max allowable size (%lu)\n", ml1 / unitsize(0));
2062 if (!force)
2063 return 0;
2064 }
2065 if (p.size == 0 && pno >= 4 && (fno < 2 || !*(fields[1]))) {
2066 warn("Warning: empty partition\n");
2067 if (!force)
2068 return 0;
2069 }
2070 p.p.nr_sects = p.size;
2071
2072 if (p.size == 0 && !orig) {
2073 if(fno < 1 || !*(fields[0]))
2074 p.start = 0;
2075 if(fno < 3 || !*(fields[2]))
2076 p.p.sys_type = EMPTY_PARTITION;
2077 }
2078
2079 if (p.start < ff1 && p.size > 0) {
2080 warn("Warning: bad partition start (earliest %lu)\n",
2081 (ff1 + unitsize(0) - 1) / unitsize(0));
2082 if (!force)
2083 return 0;
2084 }
2085
2086 if (fno < 4 || !*(fields[3]))
2087 ul = (orig ? orig->p.bootable : 0);
2088 else if (!strcmp(fields[3], "-"))
2089 ul = 0;
2090 else if (!strcmp(fields[3], "*") || !strcmp(fields[3], "+"))
2091 ul = 0x80;
2092 else {
2093 warn("unrecognized bootable flag - choose - or *\n");
2094 return 0;
2095 }
2096 p.p.bootable = ul;
2097
2098 if (ep && ep->p.sys_type == EMPTY_PARTITION) {
2099 if(!build_surrounding_extended(&p, ep, z))
2100 return 0;
2101 } else
2102 if(!compute_start_sect(&p, ep))
2103 return 0;
2104
2105 { longchs aa = chs_to_longchs(p.p.begin_chs), bb;
2106
2107 if (fno < 5) {
2108 bb = aa;
2109 } else if (fno < 7) {
2110 warn("partial c,h,s specification?\n");
2111 return 0;
2112 } else if(get_ul(fields[4], &bb.c, aa.c, 0) ||
2113 get_ul(fields[5], &bb.h, aa.h, 0) ||
2114 get_ul(fields[6], &bb.s, aa.s, 0))
2115 return 0;
2116 p.p.begin_chs = longchs_to_chs(bb,B);
2117 }
2118 { longchs aa = chs_to_longchs(p.p.end_chs), bb;
2119
2120 if (fno < 8) {
2121 bb = aa;
2122 } else if (fno < 10) {
2123 warn("partial c,h,s specification?\n");
2124 return 0;
2125 } else if(get_ul(fields[7], &bb.c, aa.c, 0) ||
2126 get_ul(fields[8], &bb.h, aa.h, 0) ||
2127 get_ul(fields[9], &bb.s, aa.s, 0))
2128 return 0;
2129 p.p.end_chs = longchs_to_chs(bb, B);
2130 }
2131
2132 if (pno > 3 && p.size && show_extended && p.p.sys_type != EMPTY_PARTITION
2133 && (is_extended(p.p.sys_type) != (pct == 1))) {
2134 warn("Extended partition not where expected\n");
2135 if (!force)
2136 return 0;
2137 }
2138
2139 z->partitions[pno] = p;
2140 if (pno >= z->partno)
2141 z->partno += 4; /* reqd for out_partition() */
2142
2143 if (interactive)
2144 out_partition(dev, 0, &(z->partitions[pno]), z, B);
2145
2146 return 1;
2147}
2148
2149/* ep either points to the extended partition to contain this one,
2150 or to the empty partition that may become extended or is 0 */
2151static int
2152read_partition(char *dev, int interactive, int pno, struct part_desc *ep,
2153 struct disk_desc *z) {
2154 struct part_desc *p = &(z->partitions[pno]);
2155 int i;
2156
2157 if (one_only) {
2158 *p = oldp.partitions[pno];
2159 if (one_only_pno != pno)
2160 goto ret;
2161 } else if (!show_extended && pno > 4 && pno%4)
2162 goto ret;
2163
2164 while (!(i = read_line(pno, ep, dev, interactive, z)))
2165 if (!interactive)
2166 fatal("bad input\n");
2167 if (i < 0) {
2168 p->ep = ep;
2169 return 0;
2170 }
2171
2172 ret:
2173 p->ep = ep;
2174 if (pno >= z->partno)
2175 z->partno += 4;
2176 return 1;
2177}
2178
2179static void
2180read_partition_chain(char *dev, int interactive, struct part_desc *ep,
2181 struct disk_desc *z) {
2182 int i, base;
2183
2184 eob = 0;
2185 while (1) {
2186 base = z->partno;
2187 if (base+4 > SIZE(z->partitions)) {
2188 printf("too many partitions\n");
2189 break;
2190 }
2191 for (i=0; i<4; i++)
2192 if (!read_partition(dev, interactive, base+i, ep, z))
2193 return;
2194 for (i=0; i<4; i++) {
2195 ep = &(z->partitions[base+i]);
2196 if (is_extended(ep->p.sys_type) && ep->size)
2197 break;
2198 }
2199 if (i == 4) {
2200 /* nothing found - maybe an empty partition is going
2201 to be extended */
2202 if (one_only || show_extended)
2203 break;
2204 ep = &(z->partitions[base+1]);
2205 if (ep->size || ep->p.sys_type != EMPTY_PARTITION)
2206 break;
2207 }
2208 }
2209}
2210
2211static void
2212read_input(char *dev, int interactive, struct disk_desc *z) {
2213 int i;
2214 struct part_desc *partitions = &(z->partitions[0]), *ep;
2215
2216 for (i=0; i < SIZE(z->partitions); i++)
2217 partitions[i] = zero_part_desc;
2218 z->partno = 0;
2219
2220 if (interactive)
2221 warn("Input in the following format; absent fields get a default value.\n"
2222 "<start> <size> <type [E,S,L,X,hex]> <bootable [-,*]> <c,h,s> <c,h,s>\n"
2223 "Usually you only need to specify <start> and <size> (and perhaps <type>).\n");
2224 eof = 0;
2225
2226 for (i=0; i<4; i++)
2227 read_partition(dev, interactive, i, 0, z);
2228 for (i=0; i<4; i++) {
2229 ep = partitions+i;
2230 if (is_extended(ep->p.sys_type) && ep->size)
2231 read_partition_chain(dev, interactive, ep, z);
2232 }
2233 add_sector_and_offset(z);
2234}
2235
2236/*
2237 * G. The command line
2238 */
2239
2240static void version(void) {
2241 printf("%s %s %s (aeb@cwi.nl, %s)\n", PROGNAME, "version", VERSION, DATE);
2242}
2243
2244static char short_opts[] = "cdfgilnqsu:vx?1A::C:DH:I:LN:O:RS:TU::V";
2245
2246#define PRINT_ID 0400
2247#define CHANGE_ID 01000
2248
2249static const struct option long_opts[] = {
2250 { "change-id", no_argument, NULL, 'c' + CHANGE_ID },
2251 { "print-id", no_argument, NULL, 'c' + PRINT_ID },
2252 { "id", no_argument, NULL, 'c' },
2253 { "dump", no_argument, NULL, 'd' },
2254 { "force", no_argument, NULL, 'f' },
2255 { "show-geometry", no_argument, NULL, 'g' },
2256 { "increment", no_argument, NULL, 'i' },
2257 { "list", no_argument, NULL, 'l' },
2258 { "quiet", no_argument, NULL, 'q' },
2259 { "show-size", no_argument, NULL, 's' },
2260 { "unit", required_argument, NULL, 'u' },
2261 { "version", no_argument, NULL, 'v' },
2262 { "show-extended", no_argument, NULL, 'x' },
2263 { "help", no_argument, NULL, '?' },
2264 { "one-only", no_argument, NULL, '1' },
2265 { "cylinders", required_argument, NULL, 'C' },
2266 { "heads", required_argument, NULL, 'H' },
2267 { "sectors", required_argument, NULL, 'S' },
2268 { "activate", optional_argument, NULL, 'A' },
2269 { "DOS", no_argument, NULL, 'D' },
2270 { "Linux", no_argument, NULL, 'L' },
2271 { "re-read", no_argument, NULL, 'R' },
2272 { "list-types", no_argument, NULL, 'T' },
2273 { "unhide", optional_argument, NULL, 'U' },
2274 { "no-reread", no_argument, NULL, 160 },
2275 { "IBM", no_argument, NULL, 161 },
2276 { "leave-last", no_argument, NULL, 161 },
2277/* undocumented flags - not all completely implemented */
2278 { "in-order", no_argument, NULL, 128 },
2279 { "not-in-order", no_argument, NULL, 129 },
2280 { "inside-outer", no_argument, NULL, 130 },
2281 { "not-inside-outer", no_argument, NULL, 131 },
2282 { "nested", no_argument, NULL, 132 },
2283 { "chained", no_argument, NULL, 133 },
2284 { "onesector", no_argument, NULL, 134 },
2285 { NULL, 0, NULL, 0 }
2286};
2287
2288/* default devices to list */
2289static struct devd {
2290 char *pref, *letters;
2291} defdevs[] = {
2292 { "hd", "abcdefgh" },
2293 { "sd", "abcde" },
2294 { "xd", "ab" },
2295 { "ed", "abcd" }
2296};
2297
2298static int
2299is_ide_cdrom(char *device) {
2300 /* No device was given explicitly, and we are trying some
2301 likely things. But opening /dev/hdc may produce errors like
2302 "hdc: tray open or drive not ready"
2303 if it happens to be a CD-ROM drive. So try to be careful.
2304 This only works since 2.1.73. */
2305
2306 FILE *procf;
2307 char buf[100];
2308 struct stat statbuf;
2309
2310 sprintf(buf, "/proc/ide/%s/media", device+5);
2311 procf = fopen(buf, "r");
2312 if (procf != NULL && fgets(buf, sizeof(buf), procf))
2313 return !strncmp(buf, "cdrom", 5);
2314
2315 /* Now when this proc file does not exist, skip the
2316 device when it is read-only. */
2317 if (stat(device, &statbuf) == 0)
2318 return (statbuf.st_mode & 0222) == 0;
2319
2320 return 0;
2321}
2322
2323static void do_list(char *dev, int silent);
2324static void do_size(char *dev, int silent);
2325static void do_geom(char *dev, int silent);
2326static void do_fdisk(char *dev);
2327static void do_reread(char *dev);
2328static void do_change_id(char *dev, char *part, char *id);
2329static void do_unhide(char **av, int ac, char *arg);
2330static void do_activate(char **av, int ac, char *arg);
2331
2332static int total_size;
2333
2334extern int
2335sfdisk_main(int argc, char **argv) {
2336 int c;
2337 char *dev;
2338 int opt_size = 0;
2339 int opt_out_geom = 0;
2340 int opt_reread = 0;
2341 int activate = 0;
2342 int do_id = 0;
2343 int unhide = 0;
2344 char *activatearg = 0;
2345 char *unhidearg = 0;
2346
2347 if (argc < 1)
2348 usage( sfdisk_usage);
2349
2350 while ((c = getopt_long (argc, argv, short_opts, long_opts, NULL)) != -1) {
2351 switch (c) {
2352 case 'f':
2353 force = 1; break; /* does not imply quiet */
2354 case 'g':
2355 opt_out_geom = 1; break;
2356 case 'i':
2357 increment = 1; break;
2358 case 'c':
2359 case 'c' + PRINT_ID:
2360 case 'c' + CHANGE_ID:
2361 do_id = c; break;
2362 case 'd':
2363 dump = 1; /* fall through */
2364 case 'l':
2365 opt_list = 1; break;
2366 case 'n':
2367 no_write = 1; break;
2368 case 'q':
2369 quiet = 1; break;
2370 case 's':
2371 opt_size = 1; break;
2372 case 'u':
2373 set_format(*optarg); break;
2374 case 'v':
2375 version();
2376 exit(0);
2377 case 'x':
2378 show_extended = 1; break;
2379 case 'A':
2380 activatearg = optarg;
2381 activate = 1; break;
2382 case 'C':
2383 U.cylinders = atoi(optarg); break;
2384 case 'D':
2385 DOS = 1; break;
2386 case 'H':
2387 U.heads = atoi(optarg); break;
2388 case 'L':
2389 Linux = 1; break;
2390 case 'N':
2391 one_only = atoi(optarg); break;
2392 case 'I':
2393 restore_sector_file = optarg; break;
2394 case 'O':
2395 save_sector_file = optarg; break;
2396 case 'R':
2397 opt_reread = 1; break;
2398 case 'S':
2399 U.sectors = atoi(optarg); break;
2400 case 'T':
2401 list_types();
2402 exit(0);
2403 case 'U':
2404 unhidearg = optarg;
2405 unhide = 1; break;
2406 case 'V':
2407 verify = 1; break;
2408 case '?':
2409 default:
2410 usage( sfdisk_usage);
2411
2412 /* undocumented flags */
2413 case 128:
2414 partitions_in_order = 1; break;
2415 case 129:
2416 partitions_in_order = 0; break;
2417 case 130:
2418 all_logicals_inside_outermost_extended = 1; break;
2419 case 131:
2420 all_logicals_inside_outermost_extended = 0; break;
2421 case 132:
2422 boxes = NESTED; break;
2423 case 133:
2424 boxes = CHAINED; break;
2425 case 134:
2426 boxes = ONESECTOR; break;
2427
2428 /* more flags */
2429 case 160:
2430 no_reread = 1; break;
2431 case 161:
2432 leave_last = 1; break;
2433 }
2434 }
2435
2436 if (optind == argc && (opt_list || opt_out_geom || opt_size || verify)) {
2437 struct devd *dp;
2438 char *lp;
2439 char device[10];
2440
2441 total_size = 0;
2442
2443 for(dp = defdevs; dp-defdevs < SIZE(defdevs); dp++) {
2444 lp = dp->letters;
2445 while(*lp) {
2446 sprintf(device, "/dev/%s%c", dp->pref, *lp++);
2447 if (!strcmp(dp->pref, "hd") && is_ide_cdrom(device))
2448 continue;
2449 if (opt_out_geom)
2450 do_geom(device, 1);
2451 if (opt_size)
2452 do_size(device, 1);
2453 if (opt_list || verify)
2454 do_list(device, 1);
2455 }
2456 }
2457
2458 if (opt_size)
2459 printf("total: %d blocks\n", total_size);
2460
2461 exit(exit_status);
2462 }
2463
2464 if (optind == argc) usage( sfdisk_usage);
2465
2466 if (opt_list || opt_out_geom || opt_size || verify) {
2467 while (optind < argc) {
2468 if (opt_out_geom)
2469 do_geom(argv[optind], 0);
2470 if (opt_size)
2471 do_size(argv[optind], 0);
2472 if (opt_list || verify)
2473 do_list(argv[optind], 0);
2474 optind++;
2475 }
2476 exit(exit_status);
2477 }
2478
2479 if (activate) {
2480 do_activate(argv+optind, argc-optind, activatearg);
2481 exit(exit_status);
2482 }
2483 if (unhide) {
2484 do_unhide(argv+optind, argc-optind, unhidearg);
2485 exit(exit_status);
2486 }
2487 if (do_id) {
2488 if ((do_id & PRINT_ID) != 0 && optind != argc-2)
2489 fatal("usage: sfdisk --print-id device partition-number\n");
2490 else if ((do_id & CHANGE_ID) != 0 && optind != argc-3)
2491 fatal("usage: sfdisk --change-id device partition-number Id\n");
2492 else if (optind != argc-3 && optind != argc-2)
2493 fatal("usage: sfdisk --id device partition-number [Id]\n");
2494 do_change_id(argv[optind], argv[optind+1],
2495 (optind == argc-2) ? 0 : argv[optind+2]);
2496 exit(exit_status);
2497 }
2498
2499 if (optind != argc-1)
2500 fatal("can specify only one device (except with -l or -s)\n");
2501 dev = argv[optind];
2502
2503 if (opt_reread)
2504 do_reread(dev);
2505 else if (restore_sector_file)
2506 restore_sectors(dev);
2507 else
2508 do_fdisk(dev);
2509
2510 return ( TRUE);
2511}
2512
2513/*
2514 * H. Listing the current situation
2515 */
2516
2517static int
2518my_open (char *dev, int rw, int silent) {
2519 int fd, mode;
2520
2521 mode = (rw ? O_RDWR : O_RDONLY);
2522 fd = open(dev, mode);
2523 if (fd < 0 && !silent) {
2524 perror(dev);
2525 fatal("cannot open %s %s\n", dev, rw ? "read-write" : "for reading");
2526 }
2527 return fd;
2528}
2529
2530static void
2531do_list (char *dev, int silent) {
2532 int fd;
2533 struct disk_desc *z;
2534
2535 fd = my_open(dev, 0, silent);
2536 if (fd < 0)
2537 return;
2538
2539 z = &oldp;
2540
2541 free_sectors();
2542 get_cylindersize(dev, fd, dump ? 1 : opt_list ? 0 : 1);
2543 get_partitions(dev, fd, z);
2544
2545 if (opt_list)
2546 out_partitions(dev, z);
2547
2548 if (verify) {
2549 if (partitions_ok(z))
2550 warn("%s: OK\n"), dev;
2551 else
2552 exit_status = 1;
2553 }
2554}
2555
2556static void
2557do_geom (char *dev, int silent) {
2558 int fd;
2559 struct hd_geometry g;
2560
2561 fd = my_open(dev, 0, silent);
2562 if (fd < 0)
2563 return;
2564
2565 /* get_cylindersize(dev, fd, silent); */
2566 if (!ioctl(fd, HDIO_GETGEO, &g))
2567 printf("%s: %d cylinders, %d heads, %d sectors/track\n",
2568 dev, g.cylinders, g.heads, g.sectors);
2569 else
2570 printf("%s: unknown geometry\n", dev);
2571}
2572
2573/* for compatibility with earlier fdisk: provide option -s */
2574static void
2575do_size (char *dev, int silent) {
2576 int fd;
2577 long size;
2578
2579 fd = my_open(dev, 0, silent);
2580 if (fd < 0)
2581 return;
2582
2583 if(ioctl(fd, BLKGETSIZE, &size)) {
2584 if(!silent) {
2585 perror(dev);
2586 fatal("BLKGETSIZE ioctl failed for %s\n"), dev;
2587 }
2588 return;
2589 }
2590
2591 size /= 2; /* convert sectors to blocks */
2592
2593 /* a CDROM drive without mounted CD yields MAXINT */
2594 if (silent && size == ((1<<30)-1))
2595 return;
2596
2597 if (silent)
2598 printf("%s: %9ld\n", dev, size);
2599 else
2600 printf("%ld\n", size);
2601
2602 total_size += size;
2603}
2604
2605/*
2606 * Activate: usually one wants to have a single primary partition
2607 * to be active. OS/2 fdisk makes non-bootable logical partitions
2608 * active - I don't know what that means to OS/2 Boot Manager.
2609 *
2610 * Call: activate /dev/hda 2 5 7 make these partitions active
2611 * and the remaining ones inactive
2612 * Or: sfdisk -A /dev/hda 2 5 7
2613 *
2614 * If only a single partition must be active, one may also use the form
2615 * sfdisk -A2 /dev/hda
2616 *
2617 * With "activate /dev/hda" or "sfdisk -A /dev/hda" the active partitions
2618 * are listed but not changed. To get zero active partitions, use
2619 * "activate /dev/hda none" or "sfdisk -A /dev/hda none".
2620 * Use something like `echo ",,,*" | sfdisk -N2 /dev/hda' to only make
2621 * /dev/hda2 active, without changing other partitions.
2622 *
2623 * A warning will be given if after the change not precisely one primary
2624 * partition is active.
2625 *
2626 * The present syntax was chosen to be (somewhat) compatible with the
2627 * activate from the LILO package.
2628 */
2629static void
2630set_active (struct disk_desc *z, char *pnam) {
2631 int pno;
2632
2633 pno = asc_to_index(pnam, z);
2634 z->partitions[pno].p.bootable = 0x80;
2635}
2636
2637static void
2638do_activate (char **av, int ac, char *arg) {
2639 char *dev = av[0];
2640 int fd;
2641 int rw, i, pno, lpno;
2642 struct disk_desc *z;
2643
2644 z = &oldp;
2645
2646 rw = (!no_write && (arg || ac > 1));
2647 fd = my_open(dev, rw, 0);
2648
2649 free_sectors();
2650 get_cylindersize(dev, fd, 1);
2651 get_partitions(dev, fd, z);
2652
2653 if (!arg && ac == 1) {
2654 /* list active partitions */
2655 for (pno=0; pno < z->partno; pno++) {
2656 if (z->partitions[pno].p.bootable) {
2657 lpno = index_to_linux(pno, z);
2658 if (pno == linux_to_index(lpno, z))
2659 printf("%s%d\n", dev, lpno);
2660 else
2661 printf("%s#%d\n", dev, pno);
2662 if (z->partitions[pno].p.bootable != 0x80)
2663 warn("bad active byte: 0x%x instead of 0x80\n",
2664 z->partitions[pno].p.bootable);
2665 }
2666 }
2667 } else {
2668 /* clear `active byte' everywhere */
2669 for (pno=0; pno < z->partno; pno++)
2670 z->partitions[pno].p.bootable = 0;
2671
2672 /* then set where desired */
2673 if (ac == 1)
2674 set_active(z, arg);
2675 else for(i=1; i<ac; i++)
2676 set_active(z, av[i]);
2677
2678 /* then write to disk */
2679 if(write_partitions(dev, fd, z))
2680 warn("Done\n\n");
2681 else
2682 exit_status = 1;
2683 }
2684 i = 0;
2685 for (pno=0; pno < z->partno && pno < 4; pno++)
2686 if (z->partitions[pno].p.bootable)
2687 i++;
2688 if (i != 1)
2689 warn("You have %d active primary partitions. This does not matter for LILO,\n"
2690 "but the DOS MBR will only boot a disk with 1 active partition.\n", i);
2691}
2692
2693static void
2694set_unhidden (struct disk_desc *z, char *pnam) {
2695 int pno;
2696 unsigned char id;
2697
2698 pno = asc_to_index(pnam, z);
2699 id = z->partitions[pno].p.sys_type;
2700 if (id == 0x11 || id == 0x14 || id == 0x16 || id == 0x17)
2701 id -= 0x10;
2702 else
2703 fatal("partition %s has id %x and is not hidden\n", pnam, id);
2704 z->partitions[pno].p.sys_type = id;
2705}
2706
2707/*
2708 * maybe remove and make part of --change-id
2709 */
2710static void
2711do_unhide (char **av, int ac, char *arg) {
2712 char *dev = av[0];
2713 int fd, rw, i;
2714 struct disk_desc *z;
2715
2716 z = &oldp;
2717
2718 rw = !no_write;
2719 fd = my_open(dev, rw, 0);
2720
2721 free_sectors();
2722 get_cylindersize(dev, fd, 1);
2723 get_partitions(dev, fd, z);
2724
2725 /* unhide where desired */
2726 if (ac == 1)
2727 set_unhidden(z, arg);
2728 else for(i=1; i<ac; i++)
2729 set_unhidden(z, av[i]);
2730
2731 /* then write to disk */
2732 if(write_partitions(dev, fd, z))
2733 warn("Done\n\n");
2734 else
2735 exit_status = 1;
2736}
2737
2738static void do_change_id(char *dev, char *pnam, char *id) {
2739 int fd, rw, pno;
2740 struct disk_desc *z;
2741 unsigned long i;
2742
2743 z = &oldp;
2744
2745 rw = !no_write;
2746 fd = my_open(dev, rw, 0);
2747
2748 free_sectors();
2749 get_cylindersize(dev, fd, 1);
2750 get_partitions(dev, fd, z);
2751
2752 pno = asc_to_index(pnam, z);
2753 if (id == 0) {
2754 printf("%x\n", z->partitions[pno].p.sys_type);
2755 return;
2756 }
2757 i = strtoul(id, NULL, 16);
2758 if (i > 255)
2759 fatal("Bad Id %x\n"), i;
2760 z->partitions[pno].p.sys_type = i;
2761
2762 if(write_partitions(dev, fd, z))
2763 warn("Done\n\n");
2764 else
2765 exit_status = 1;
2766}
2767
2768static void
2769do_reread(char *dev) {
2770 int fd;
2771
2772 fd = my_open(dev, 0, 0);
2773 if(reread_ioctl(fd))
2774 printf("This disk is currently in use.\n");
2775}
2776
2777/*
2778 * I. Writing the new situation
2779 */
2780
2781static void
2782do_fdisk(char *dev){
2783 int fd;
2784 int c, answer;
2785 struct stat statbuf;
2786 int interactive = isatty(0);
2787 struct disk_desc *z;
2788
2789 if (stat(dev, &statbuf) < 0) {
2790 perror(dev);
2791 fatal("Fatal error: cannot find %s\n"), dev;
2792 }
2793 if (!S_ISBLK(statbuf.st_mode)) {
2794 warn("Warning: %s is not a block device\n"), dev;
2795 no_reread = 1;
2796 }
2797 fd = my_open(dev, !no_write, 0);
2798
2799 if(!no_write && !no_reread) {
2800 warn("Checking that no-one is using this disk right now ...\n");
2801 if(reread_ioctl(fd)) {
2802 printf("\nThis disk is currently in use - repartitioning is probably a bad idea."
2803 "Umount all file systems, and swapoff all swap partitions on this disk."
2804 "Use the --no-reread flag to suppress this check.\n");
2805 if (!force) {
2806 printf("Use the --force flag to overrule all checks.\n");
2807 exit(1);
2808 }
2809 } else
2810 warn("OK");
2811 }
2812
2813 z = &oldp;
2814
2815 free_sectors();
2816 get_cylindersize(dev, fd, 0);
2817 get_partitions(dev, fd, z);
2818
2819 printf("Old situation:\n");
2820 out_partitions(dev, z);
2821
2822 if (one_only && (one_only_pno = linux_to_index(one_only, z)) < 0)
2823 fatal("Partition %d does not exist, cannot change it\n"), one_only;
2824
2825 z = &newp;
2826
2827 while(1) {
2828
2829 read_input(dev, interactive, z);
2830
2831 printf("New situation:\n");
2832 out_partitions(dev, z);
2833
2834 if (!partitions_ok(z) && !force) {
2835 if(!interactive)
2836 fatal("I don't like these partitions - nothing changed.\n"
2837 "(If you really want this, use the --force option.)\n");
2838 else
2839 printf("I don't like this - probably you should answer No\n");
2840 }
2841 ask:
2842 if (interactive) {
2843 if (no_write)
2844 printf("Are you satisfied with this? [ynq] ");
2845 else
2846 printf("Do you want to write this to disk? [ynq] ");
2847 answer = c = getchar();
2848 while (c != '\n' && c != EOF)
2849 c = getchar();
2850 if (c == EOF)
2851 printf("\nsfdisk: premature end of input\n");
2852 if (c == EOF || answer == 'q' || answer == 'Q') {
2853 fatal("Quitting - nothing changed\n");
2854 } else if (answer == 'n' || answer == 'N') {
2855 continue;
2856 } else if (answer == 'y' || answer == 'Y') {
2857 break;
2858 } else {
2859 printf("Please answer one of y,n,q\n");
2860 goto ask;
2861 }
2862 } else
2863 break;
2864 }
2865
2866 if(write_partitions(dev, fd, z))
2867 printf("Successfully wrote the new partition table\n\n");
2868 else
2869 exit_status = 1;
2870
2871 reread_disk_partition(dev, fd);
2872
2873 warn("If you created or changed a DOS partition, /dev/foo7, say, then use dd(1)\n"
2874 "to zero the first 512 bytes: dd if=/dev/zero of=/dev/foo7 bs=512 count=1\n"
2875 "(See fdisk(8).)\n");
2876
2877 sync(); /* superstition */
2878 sleep(3);
2879 exit(exit_status);
2880}