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[dragonfly.git] / sbin / gpt / gpt.c
1 /*-
2  * Copyright (c) 2002 Marcel Moolenaar
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  *
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25  *
26  * CRC32 code derived from work by Gary S. Brown.
27  *
28  * $FreeBSD: src/sbin/gpt/gpt.c,v 1.16 2006/07/07 02:44:23 marcel Exp $
29  */
30
31 #include <sys/param.h>
32 #include <sys/types.h>
33 #include <sys/stat.h>
34 #include <sys/diskslice.h>
35
36 #include <err.h>
37 #include <errno.h>
38 #include <fcntl.h>
39 #include <paths.h>
40 #include <stddef.h>
41 #include <stdio.h>
42 #include <stdlib.h>
43 #include <string.h>
44 #include <unistd.h>
45
46 #include "map.h"
47 #include "gpt.h"
48
49 char    device_path[MAXPATHLEN];
50 char    *device_name;
51
52 off_t   mediasz;
53
54 u_int   parts;
55 u_int   secsz;
56
57 int     readonly, verbose;
58
59 static uint32_t crc32_tab[] = {
60         0x00000000, 0x77073096, 0xee0e612c, 0x990951ba, 0x076dc419, 0x706af48f,
61         0xe963a535, 0x9e6495a3, 0x0edb8832, 0x79dcb8a4, 0xe0d5e91e, 0x97d2d988,
62         0x09b64c2b, 0x7eb17cbd, 0xe7b82d07, 0x90bf1d91, 0x1db71064, 0x6ab020f2,
63         0xf3b97148, 0x84be41de, 0x1adad47d, 0x6ddde4eb, 0xf4d4b551, 0x83d385c7,
64         0x136c9856, 0x646ba8c0, 0xfd62f97a, 0x8a65c9ec, 0x14015c4f, 0x63066cd9,
65         0xfa0f3d63, 0x8d080df5, 0x3b6e20c8, 0x4c69105e, 0xd56041e4, 0xa2677172,
66         0x3c03e4d1, 0x4b04d447, 0xd20d85fd, 0xa50ab56b, 0x35b5a8fa, 0x42b2986c,
67         0xdbbbc9d6, 0xacbcf940, 0x32d86ce3, 0x45df5c75, 0xdcd60dcf, 0xabd13d59,
68         0x26d930ac, 0x51de003a, 0xc8d75180, 0xbfd06116, 0x21b4f4b5, 0x56b3c423,
69         0xcfba9599, 0xb8bda50f, 0x2802b89e, 0x5f058808, 0xc60cd9b2, 0xb10be924,
70         0x2f6f7c87, 0x58684c11, 0xc1611dab, 0xb6662d3d, 0x76dc4190, 0x01db7106,
71         0x98d220bc, 0xefd5102a, 0x71b18589, 0x06b6b51f, 0x9fbfe4a5, 0xe8b8d433,
72         0x7807c9a2, 0x0f00f934, 0x9609a88e, 0xe10e9818, 0x7f6a0dbb, 0x086d3d2d,
73         0x91646c97, 0xe6635c01, 0x6b6b51f4, 0x1c6c6162, 0x856530d8, 0xf262004e,
74         0x6c0695ed, 0x1b01a57b, 0x8208f4c1, 0xf50fc457, 0x65b0d9c6, 0x12b7e950,
75         0x8bbeb8ea, 0xfcb9887c, 0x62dd1ddf, 0x15da2d49, 0x8cd37cf3, 0xfbd44c65,
76         0x4db26158, 0x3ab551ce, 0xa3bc0074, 0xd4bb30e2, 0x4adfa541, 0x3dd895d7,
77         0xa4d1c46d, 0xd3d6f4fb, 0x4369e96a, 0x346ed9fc, 0xad678846, 0xda60b8d0,
78         0x44042d73, 0x33031de5, 0xaa0a4c5f, 0xdd0d7cc9, 0x5005713c, 0x270241aa,
79         0xbe0b1010, 0xc90c2086, 0x5768b525, 0x206f85b3, 0xb966d409, 0xce61e49f,
80         0x5edef90e, 0x29d9c998, 0xb0d09822, 0xc7d7a8b4, 0x59b33d17, 0x2eb40d81,
81         0xb7bd5c3b, 0xc0ba6cad, 0xedb88320, 0x9abfb3b6, 0x03b6e20c, 0x74b1d29a,
82         0xead54739, 0x9dd277af, 0x04db2615, 0x73dc1683, 0xe3630b12, 0x94643b84,
83         0x0d6d6a3e, 0x7a6a5aa8, 0xe40ecf0b, 0x9309ff9d, 0x0a00ae27, 0x7d079eb1,
84         0xf00f9344, 0x8708a3d2, 0x1e01f268, 0x6906c2fe, 0xf762575d, 0x806567cb,
85         0x196c3671, 0x6e6b06e7, 0xfed41b76, 0x89d32be0, 0x10da7a5a, 0x67dd4acc,
86         0xf9b9df6f, 0x8ebeeff9, 0x17b7be43, 0x60b08ed5, 0xd6d6a3e8, 0xa1d1937e,
87         0x38d8c2c4, 0x4fdff252, 0xd1bb67f1, 0xa6bc5767, 0x3fb506dd, 0x48b2364b,
88         0xd80d2bda, 0xaf0a1b4c, 0x36034af6, 0x41047a60, 0xdf60efc3, 0xa867df55,
89         0x316e8eef, 0x4669be79, 0xcb61b38c, 0xbc66831a, 0x256fd2a0, 0x5268e236,
90         0xcc0c7795, 0xbb0b4703, 0x220216b9, 0x5505262f, 0xc5ba3bbe, 0xb2bd0b28,
91         0x2bb45a92, 0x5cb36a04, 0xc2d7ffa7, 0xb5d0cf31, 0x2cd99e8b, 0x5bdeae1d,
92         0x9b64c2b0, 0xec63f226, 0x756aa39c, 0x026d930a, 0x9c0906a9, 0xeb0e363f,
93         0x72076785, 0x05005713, 0x95bf4a82, 0xe2b87a14, 0x7bb12bae, 0x0cb61b38,
94         0x92d28e9b, 0xe5d5be0d, 0x7cdcefb7, 0x0bdbdf21, 0x86d3d2d4, 0xf1d4e242,
95         0x68ddb3f8, 0x1fda836e, 0x81be16cd, 0xf6b9265b, 0x6fb077e1, 0x18b74777,
96         0x88085ae6, 0xff0f6a70, 0x66063bca, 0x11010b5c, 0x8f659eff, 0xf862ae69,
97         0x616bffd3, 0x166ccf45, 0xa00ae278, 0xd70dd2ee, 0x4e048354, 0x3903b3c2,
98         0xa7672661, 0xd06016f7, 0x4969474d, 0x3e6e77db, 0xaed16a4a, 0xd9d65adc,
99         0x40df0b66, 0x37d83bf0, 0xa9bcae53, 0xdebb9ec5, 0x47b2cf7f, 0x30b5ffe9,
100         0xbdbdf21c, 0xcabac28a, 0x53b39330, 0x24b4a3a6, 0xbad03605, 0xcdd70693,
101         0x54de5729, 0x23d967bf, 0xb3667a2e, 0xc4614ab8, 0x5d681b02, 0x2a6f2b94,
102         0xb40bbe37, 0xc30c8ea1, 0x5a05df1b, 0x2d02ef8d
103 };
104
105 uint32_t
106 crc32(const void *buf, size_t size)
107 {
108         const uint8_t *p;
109         uint32_t crc;
110
111         p = buf;
112         crc = ~0U;
113
114         while (size--)
115                 crc = crc32_tab[(crc ^ *p++) & 0xFF] ^ (crc >> 8);
116
117         return crc ^ ~0U;
118 }
119
120 uint8_t *
121 utf16_to_utf8(uint16_t *s16)
122 {
123         static uint8_t *s8 = NULL;
124         static size_t s8len = 0;
125         size_t s8idx, s16idx, s16len;
126         uint32_t utfchar;
127         unsigned int c;
128
129         s16len = 0;
130         while (s16[s16len++] != 0)
131                 ;
132         if (s8len < s16len * 3) {
133                 if (s8 != NULL)
134                         free(s8);
135                 s8len = s16len * 3;
136                 s8 = calloc(s16len, 3);
137         }
138         s8idx = s16idx = 0;
139         while (s16idx < s16len) {
140                 utfchar = le16toh(s16[s16idx++]);
141                 if ((utfchar & 0xf800) == 0xd800) {
142                         c = le16toh(s16[s16idx]);
143                         if ((utfchar & 0x400) != 0 || (c & 0xfc00) != 0xdc00)
144                                 utfchar = 0xfffd;
145                         else
146                                 s16idx++;
147                 }
148                 if (utfchar < 0x80) {
149                         s8[s8idx++] = utfchar;
150                 } else if (utfchar < 0x800) {
151                         s8[s8idx++] = 0xc0 | (utfchar >> 6);
152                         s8[s8idx++] = 0x80 | (utfchar & 0x3f);
153                 } else if (utfchar < 0x10000) {
154                         s8[s8idx++] = 0xe0 | (utfchar >> 12);
155                         s8[s8idx++] = 0x80 | ((utfchar >> 6) & 0x3f);
156                         s8[s8idx++] = 0x80 | (utfchar & 0x3f);
157                 } else if (utfchar < 0x200000) {
158                         s8[s8idx++] = 0xf0 | (utfchar >> 18);
159                         s8[s8idx++] = 0x80 | ((utfchar >> 12) & 0x3f);
160                         s8[s8idx++] = 0x80 | ((utfchar >> 6) & 0x3f);
161                         s8[s8idx++] = 0x80 | (utfchar & 0x3f);
162                 }
163         }
164         return (s8);
165 }
166
167 void
168 utf8_to_utf16(const uint8_t *s8, uint16_t *s16, size_t s16len)
169 {
170         size_t s16idx, s8idx, s8len;
171         uint32_t utfchar;
172         unsigned int c, utfbytes;
173
174         s8len = 0;
175         while (s8[s8len++] != 0)
176                 ;
177         s8idx = s16idx = 0;
178         utfbytes = 0;
179         do {
180                 utfchar = 0;
181                 c = s8[s8idx++];
182                 if ((c & 0xc0) != 0x80) {
183                         /* Initial characters. */
184                         if (utfbytes != 0) {
185                                 /* Incomplete encoding. */
186                                 s16[s16idx++] = 0xfffd;
187                                 if (s16idx == s16len) {
188                                         s16[--s16idx] = 0;
189                                         return;
190                                 }
191                         }
192                         if ((c & 0xf8) == 0xf0) {
193                                 utfchar = c & 0x07;
194                                 utfbytes = 3;
195                         } else if ((c & 0xf0) == 0xe0) {
196                                 utfchar = c & 0x0f;
197                                 utfbytes = 2;
198                         } else if ((c & 0xe0) == 0xc0) {
199                                 utfchar = c & 0x1f;
200                                 utfbytes = 1;
201                         } else {
202                                 utfchar = c & 0x7f;
203                                 utfbytes = 0;
204                         }
205                 } else {
206                         /* Followup characters. */
207                         if (utfbytes > 0) {
208                                 utfchar = (utfchar << 6) + (c & 0x3f);
209                                 utfbytes--;
210                         } else if (utfbytes == 0)
211                                 utfbytes = -1;
212                 }
213                 if (utfbytes == 0) {
214                         if (utfchar >= 0x10000 && s16idx + 2 >= s16len)
215                                 utfchar = 0xfffd;
216                         if (utfchar >= 0x10000) {
217                                 s16[s16idx++] = 0xd800 | ((utfchar>>10)-0x40);
218                                 s16[s16idx++] = 0xdc00 | (utfchar & 0x3ff);
219                         } else
220                                 s16[s16idx++] = utfchar;
221                         if (s16idx == s16len) {
222                                 s16[--s16idx] = 0;
223                                 return;
224                         }
225                 }
226         } while (c != 0);
227 }
228
229 void
230 le_uuid_dec(void const *buf, uuid_t *uuid)
231 {
232         u_char const *p;
233         int i;
234
235         p = buf;
236         uuid->time_low = le32dec(p);
237         uuid->time_mid = le16dec(p + 4);
238         uuid->time_hi_and_version = le16dec(p + 6);
239         uuid->clock_seq_hi_and_reserved = p[8];
240         uuid->clock_seq_low = p[9];
241         for (i = 0; i < _UUID_NODE_LEN; i++)
242                 uuid->node[i] = p[10 + i];
243 }
244
245 void
246 le_uuid_enc(void *buf, uuid_t const *uuid)
247 {
248         u_char *p;
249         int i;
250
251         p = buf;
252         le32enc(p, uuid->time_low);
253         le16enc(p + 4, uuid->time_mid);
254         le16enc(p + 6, uuid->time_hi_and_version);
255         p[8] = uuid->clock_seq_hi_and_reserved;
256         p[9] = uuid->clock_seq_low;
257         for (i = 0; i < _UUID_NODE_LEN; i++)
258                 p[10 + i] = uuid->node[i];
259 }
260
261 int
262 parse_uuid(const char *s, uuid_t *uuid)
263 {
264         uint32_t status;
265         uuid_t tmp;
266
267         uuid_from_string(s, uuid, &status);
268         if (status == uuid_s_ok)
269                 return (0);
270
271         switch (*s) {
272         case 'd':
273                 if (strcmp(s, "dfly") == 0 || strcmp(s, "dragonfly") == 0) {
274                         s = "DragonFly Label64";
275                         /* fall through to lookup at end */
276                 }
277                 break;
278         case 'e':
279                 if (strcmp(s, "efi") == 0) {
280                         uuid_t efi = GPT_ENT_TYPE_EFI;
281                         *uuid = efi;
282                         return (0);
283                 }
284                 break;
285         case 'h':
286                 if (strcmp(s, "hammer2") == 0) {
287                         uuid_t hammer2 = GPT_ENT_TYPE_DRAGONFLY_HAMMER2;
288                         *uuid = hammer2;
289                         return (0);
290                 }
291                 if (strcmp(s, "hammer") == 0) {
292                         uuid_t hammer = GPT_ENT_TYPE_DRAGONFLY_HAMMER;
293                         *uuid = hammer;
294                         return (0);
295                 }
296                 if (strcmp(s, "hfs") == 0) {
297                         uuid_t hfs = GPT_ENT_TYPE_APPLE_HFS;
298                         *uuid = hfs;
299                         return (0);
300                 }
301                 break;
302         case 'l':
303                 if (strcmp(s, "linux") == 0) {
304                         uuid_t lnx = GPT_ENT_TYPE_MS_BASIC_DATA;
305                         *uuid = lnx;
306                         return (0);
307                 }
308                 break;
309         case 's':
310                 if (strcmp(s, "swap") == 0) {
311                         uuid_t sw = GPT_ENT_TYPE_FREEBSD_SWAP;
312                         *uuid = sw;
313                         return (0);
314                 }
315                 break;
316         case 'u':
317                 if (strcmp(s, "ufs") == 0) {
318                         uuid_t ufs = GPT_ENT_TYPE_FREEBSD_UFS;
319                         *uuid = ufs;
320                         return (0);
321                 }
322                 break;
323         case 'w':
324                 if (strcmp(s, "windows") == 0) {
325                         uuid_t win = GPT_ENT_TYPE_MS_BASIC_DATA;
326                         *uuid = win;
327                         return (0);
328                 }
329                 break;
330         }
331
332         uuid_name_lookup(&tmp, s, &status);
333         if (status == uuid_s_ok) {
334                 *uuid = tmp;
335                 return(0);
336         }
337
338         return (EINVAL);
339 }
340
341 void*
342 gpt_read(int fd, off_t lba, size_t count)
343 {
344         off_t ofs;
345         void *buf;
346
347         count *= secsz;
348         buf = malloc(count);
349         if (buf == NULL)
350                 return (NULL);
351
352         ofs = lba * secsz;
353         if (lseek(fd, ofs, SEEK_SET) == ofs &&
354             read(fd, buf, count) == (ssize_t)count)
355                 return (buf);
356
357         free(buf);
358         return (NULL);
359 }
360
361 int
362 gpt_write(int fd, map_t *map)
363 {
364         off_t ofs;
365         size_t count;
366
367         count = map->map_size * secsz;
368         ofs = map->map_start * secsz;
369         if (lseek(fd, ofs, SEEK_SET) == ofs &&
370             write(fd, map->map_data, count) == (ssize_t)count)
371                 return (0);
372         return (-1);
373 }
374
375 static int
376 gpt_mbr(int fd, off_t lba)
377 {
378         struct mbr *mbr;
379         map_t *m, *p;
380         off_t size, start;
381         unsigned int i, pmbr;
382
383         mbr = gpt_read(fd, lba, 1);
384         if (mbr == NULL)
385                 return (-1);
386
387         if (mbr->mbr_sig != htole16(MBR_SIG)) {
388                 if (verbose)
389                         warnx("%s: MBR not found at sector %llu", device_name,
390                             (long long)lba);
391                 free(mbr);
392                 return (0);
393         }
394
395         /*
396          * Differentiate between a regular MBR and a PMBR. This is more
397          * convenient in general. A PMBR is one with a single partition
398          * of type 0xee.
399          */
400         pmbr = 0;
401         for (i = 0; i < 4; i++) {
402                 if (mbr->mbr_part[i].part_typ == 0)
403                         continue;
404                 if (mbr->mbr_part[i].part_typ == 0xee)
405                         pmbr++;
406                 else
407                         break;
408         }
409         if (pmbr && (i == 1 || i == 4) && lba == 0) {
410                 if (pmbr != 1)
411                         warnx("%s: Suspicious PMBR at sector %llu",
412                             device_name, (long long)lba);
413                 else if (verbose > 1)
414                         warnx("%s: PMBR at sector %llu", device_name,
415                             (long long)lba);
416                 p = map_add(lba, 1LL, MAP_TYPE_PMBR, mbr);
417                 return ((p == NULL) ? -1 : 0);
418         }
419         if (pmbr)
420                 warnx("%s: Suspicious MBR at sector %llu", device_name,
421                     (long long)lba);
422         else if (verbose > 1)
423                 warnx("%s: MBR at sector %llu", device_name, (long long)lba);
424
425         p = map_add(lba, 1LL, MAP_TYPE_MBR, mbr);
426         if (p == NULL)
427                 return (-1);
428         for (i = 0; i < 4; i++) {
429                 if (mbr->mbr_part[i].part_typ == 0 ||
430                     mbr->mbr_part[i].part_typ == 0xee)
431                         continue;
432                 start = le16toh(mbr->mbr_part[i].part_start_hi);
433                 start = (start << 16) + le16toh(mbr->mbr_part[i].part_start_lo);
434                 size = le16toh(mbr->mbr_part[i].part_size_hi);
435                 size = (size << 16) + le16toh(mbr->mbr_part[i].part_size_lo);
436                 if (start == 0 && size == 0) {
437                         warnx("%s: Malformed MBR at sector %llu", device_name,
438                             (long long)lba);
439                         continue;
440                 }
441                 /* start is relative to the offset of the MBR itself. */
442                 start += lba;
443                 if (verbose > 2)
444                         warnx("%s: MBR part: type=%d, start=%llu, size=%llu",
445                             device_name, mbr->mbr_part[i].part_typ,
446                             (long long)start, (long long)size);
447                 if (mbr->mbr_part[i].part_typ != 15) {
448                         m = map_add(start, size, MAP_TYPE_MBR_PART, p);
449                         if (m == NULL)
450                                 return (-1);
451                         m->map_index = i;
452                 } else {
453                         if (gpt_mbr(fd, start) == -1)
454                                 return (-1);
455                 }
456         }
457         return (0);
458 }
459
460 static int
461 gpt_gpt(int fd, off_t lba)
462 {
463         uuid_t type;
464         off_t size;
465         struct gpt_ent *ent;
466         struct gpt_hdr *hdr;
467         char *p, *s;
468         map_t *m;
469         size_t blocks, tblsz;
470         unsigned int i;
471         uint32_t crc;
472
473         hdr = gpt_read(fd, lba, 1);
474         if (hdr == NULL)
475                 return (-1);
476
477         if (memcmp(hdr->hdr_sig, GPT_HDR_SIG, sizeof(hdr->hdr_sig)))
478                 goto fail_hdr;
479
480         crc = le32toh(hdr->hdr_crc_self);
481         hdr->hdr_crc_self = 0;
482         if (crc32(hdr, le32toh(hdr->hdr_size)) != crc) {
483                 if (verbose)
484                         warnx("%s: Bad CRC in GPT header at sector %llu",
485                             device_name, (long long)lba);
486                 goto fail_hdr;
487         }
488
489         tblsz = le32toh(hdr->hdr_entries) * le32toh(hdr->hdr_entsz);
490         blocks = tblsz / secsz + ((tblsz % secsz) ? 1 : 0);
491
492         /* Use generic pointer to deal with hdr->hdr_entsz != sizeof(*ent). */
493         p = gpt_read(fd, le64toh(hdr->hdr_lba_table), blocks);
494         if (p == NULL)
495                 return (-1);
496
497         if (crc32(p, tblsz) != le32toh(hdr->hdr_crc_table)) {
498                 if (verbose)
499                         warnx("%s: Bad CRC in GPT table at sector %llu",
500                             device_name,
501                             (long long)le64toh(hdr->hdr_lba_table));
502                 goto fail_ent;
503         }
504
505         if (verbose > 1)
506                 warnx("%s: %s GPT at sector %llu", device_name,
507                     (lba == 1) ? "Pri" : "Sec", (long long)lba);
508
509         m = map_add(lba, 1, (lba == 1)
510             ? MAP_TYPE_PRI_GPT_HDR : MAP_TYPE_SEC_GPT_HDR, hdr);
511         if (m == NULL)
512                 return (-1);
513
514         m = map_add(le64toh(hdr->hdr_lba_table), blocks, (lba == 1)
515             ? MAP_TYPE_PRI_GPT_TBL : MAP_TYPE_SEC_GPT_TBL, p);
516         if (m == NULL)
517                 return (-1);
518
519         if (lba != 1)
520                 return (0);
521
522         for (i = 0; i < le32toh(hdr->hdr_entries); i++) {
523                 ent = (void*)(p + i * le32toh(hdr->hdr_entsz));
524                 if (uuid_is_nil(&ent->ent_type, NULL))
525                         continue;
526
527                 size = le64toh(ent->ent_lba_end) - le64toh(ent->ent_lba_start) +
528                     1LL;
529                 if (verbose > 2) {
530                         le_uuid_dec(&ent->ent_type, &type);
531                         uuid_to_string(&type, &s, NULL);
532                         warnx(
533         "%s: GPT partition: type=%s, start=%llu, size=%llu", device_name, s,
534                             (long long)le64toh(ent->ent_lba_start),
535                             (long long)size);
536                         free(s);
537                 }
538                 m = map_add(le64toh(ent->ent_lba_start), size,
539                     MAP_TYPE_GPT_PART, ent);
540                 if (m == NULL)
541                         return (-1);
542                 m->map_index = i;
543         }
544         return (0);
545
546  fail_ent:
547         free(p);
548
549  fail_hdr:
550         free(hdr);
551         return (0);
552 }
553
554 int
555 gpt_open(const char *dev)
556 {
557         struct stat sb;
558         int fd, mode;
559
560         mode = readonly ? O_RDONLY : O_RDWR|O_EXCL;
561
562         strlcpy(device_path, dev, sizeof(device_path));
563         device_name = device_path;
564
565         if ((fd = open(device_path, mode)) != -1)
566                 goto found;
567
568         snprintf(device_path, sizeof(device_path), "%s%s", _PATH_DEV, dev);
569         device_name = device_path + strlen(_PATH_DEV);
570         if ((fd = open(device_path, mode)) != -1)
571                 goto found;
572
573         return (-1);
574
575  found:
576         if (fstat(fd, &sb) == -1)
577                 goto close;
578
579         if ((sb.st_mode & S_IFMT) != S_IFREG) {
580                 struct partinfo partinfo;
581
582                 if (ioctl(fd, DIOCGPART, &partinfo) < 0)
583                         goto close;
584                 secsz = partinfo.media_blksize;
585                 mediasz = partinfo.media_size;
586         } else {
587                 secsz = 512;    /* Fixed size for files. */
588                 if (sb.st_size % secsz) {
589                         errno = EINVAL;
590                         goto close;
591                 }
592                 mediasz = sb.st_size;
593         }
594
595         /*
596          * We require an absolute minimum of 6 sectors. One for the MBR,
597          * 2 for the GPT header, 2 for the GPT table and one to hold some
598          * user data. Let's catch this extreme border case here so that
599          * we don't have to worry about it later.
600          */
601         if (mediasz / secsz < 6) {
602                 errno = ENODEV;
603                 goto close;
604         }
605
606         if (verbose)
607                 warnx("%s: mediasize=%llu; sectorsize=%u; blocks=%llu",
608                     device_name, (long long)mediasz, secsz,
609                     (long long)(mediasz / secsz));
610
611         map_init(mediasz / secsz);
612
613         if (gpt_mbr(fd, 0LL) == -1)
614                 goto close;
615         if (gpt_gpt(fd, 1LL) == -1)
616                 goto close;
617         if (gpt_gpt(fd, mediasz / secsz - 1LL) == -1)
618                 goto close;
619
620         return (fd);
621
622  close:
623         close(fd);
624         return (-1);
625 }
626
627 void
628 gpt_close(int fd)
629 {
630         /* XXX post processing? */
631         close(fd);
632 }
633
634 #ifndef _LIBEFIVAR
635 static struct {
636         int (*fptr)(int, char *[]);
637         const char *name;
638 } cmdsw[] = {
639         { cmd_add, "add" },
640         { cmd_boot, "boot" },
641         { cmd_create, "create" },
642         { cmd_destroy, "destroy" },
643         { NULL, "help" },
644         { cmd_init, "init" },
645         { cmd_label, "label" },
646         { cmd_migrate, "migrate" },
647         { cmd_recover, "recover" },
648         { cmd_remove, "remove" },
649         { NULL, "rename" },
650         { cmd_show, "show" },
651         { NULL, "verify" },
652         { NULL, NULL }
653 };
654
655 static void
656 usage(void)
657 {
658         const char *prgname = getprogname();
659
660         fprintf(stderr,
661             "usage: %s [-rv] [-p nparts] <command> [options] <device> ...\n"
662             "       %s show <device>\n",
663             prgname, prgname);
664         exit(1);
665 }
666
667 static void
668 prefix(const char *cmd)
669 {
670         char *pfx;
671         const char *prg;
672
673         prg = getprogname();
674         pfx = malloc(strlen(prg) + strlen(cmd) + 2);
675         /* Don't bother failing. It's not important */
676         if (pfx == NULL)
677                 return;
678
679         sprintf(pfx, "%s %s", prg, cmd);
680         setprogname(pfx);
681 }
682
683 int
684 main(int argc, char *argv[])
685 {
686         char *cmd, *p;
687         int ch, i;
688
689         /* Get the generic options */
690         while ((ch = getopt(argc, argv, "p:rv")) != -1) {
691                 switch(ch) {
692                 case 'p':
693                         if (parts > 0)
694                                 usage();
695                         parts = strtol(optarg, &p, 10);
696                         if (*p != 0 || parts < 1)
697                                 usage();
698                         break;
699                 case 'r':
700                         readonly = 1;
701                         break;
702                 case 'v':
703                         verbose++;
704                         break;
705                 default:
706                         usage();
707                 }
708         }
709         if (!parts)
710                 parts = 128;
711
712         if (argc == optind)
713                 usage();
714
715         cmd = argv[optind++];
716         for (i = 0; cmdsw[i].name != NULL && strcmp(cmd, cmdsw[i].name); i++);
717
718         if (cmdsw[i].fptr == NULL)
719                 errx(1, "unknown command: %s", cmd);
720
721         prefix(cmd);
722         return ((*cmdsw[i].fptr)(argc, argv));
723 }
724 #endif /* !_LIBEFIVAR */