gpt.c revision 1.15 1 /* $NetBSD: gpt.c,v 1.15 2020/01/15 19:36:30 martin Exp $ */
2
3 /*
4 * Copyright 2018 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY PIERMONT INFORMATION SYSTEMS INC. ``AS IS''
17 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 * ARE DISCLAIMED. IN NO EVENT SHALL PIERMONT INFORMATION SYSTEMS INC. BE
20 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
26 * THE POSSIBILITY OF SUCH DAMAGE.
27 *
28 */
29
30 #include "defs.h"
31 #include "mbr.h"
32 #include "md.h"
33 #include "gpt_uuid.h"
34 #include <assert.h>
35 #include <err.h>
36 #include <paths.h>
37 #include <sys/param.h>
38 #include <sys/ioctl.h>
39 #include <util.h>
40 #include <uuid.h>
41
42 bool gpt_parts_check(void); /* check for needed binaries */
43
44
45 /*************** GPT ************************************************/
46 /* a GPT based disk_partitions interface */
47
48 #define GUID_STR_LEN 40
49 #define GPT_PTYPE_ALLOC 32 /* initial type array allocation, should be >
50 * gpt type -l | wc -l */
51 #define GPT_DEV_LEN 16 /* dkNN */
52
53 #define GPT_PARTS_PER_SEC 4 /* a 512 byte sector hols 4 entries */
54 #define GPT_DEFAULT_MAX_PARTS 128
55
56 /* a usable label will be short, so we can get away with an arbitrary limit */
57 #define GPT_LABEL_LEN 96
58
59 #define GPT_ATTR_BIOSBOOT 1
60 #define GPT_ATTR_BOOTME 2
61 #define GPT_ATTR_BOOTONCE 4
62 #define GPT_ATTR_BOOTFAILED 8
63 #define GPT_ATTR_NOBLOCKIO 16
64 #define GPT_ATTR_REQUIRED 32
65
66 /* when we don't care for BIOS or UEFI boot, use the combined boot flags */
67 #define GPT_ATTR_BOOT (GPT_ATTR_BIOSBOOT|GPT_ATTR_BOOTME)
68
69 struct gpt_attr_desc {
70 const char *name;
71 uint flag;
72 };
73 static const struct gpt_attr_desc gpt_avail_attrs[] = {
74 { "biosboot", GPT_ATTR_BIOSBOOT },
75 { "bootme", GPT_ATTR_BOOTME },
76 { "bootonce", GPT_ATTR_BOOTONCE },
77 { "bootfailed", GPT_ATTR_BOOTFAILED },
78 { "noblockio", GPT_ATTR_NOBLOCKIO },
79 { "required", GPT_ATTR_REQUIRED },
80 { NULL, 0 }
81 };
82
83 struct gpt_ptype_desc {
84 struct part_type_desc gent;
85 char tid[GUID_STR_LEN];
86 uint fsflags, default_fs_type;
87 };
88
89 static const
90 struct {
91 const char *name;
92 uint fstype;
93 enum part_type ptype;
94 uint fsflags;
95 } gpt_fs_types[] = {
96 { .name = "ffs", .fstype = FS_BSDFFS, .ptype = PT_root,
97 .fsflags = GLM_LIKELY_FFS },
98 { .name = "swap", .fstype = FS_SWAP, .ptype = PT_swap },
99 { .name = "windows", .fstype = FS_MSDOS, .ptype = PT_FAT,
100 .fsflags = GLM_MAYBE_FAT32|GLM_MAYBE_NTFS },
101 { .name = "windows", .fstype = FS_NTFS, .ptype = PT_FAT,
102 .fsflags = GLM_MAYBE_FAT32|GLM_MAYBE_NTFS },
103 { .name = "efi", .fstype = FS_MSDOS, .ptype = PT_EFI_SYSTEM,
104 .fsflags = GLM_MAYBE_FAT32 },
105 { .name = "bios", .fstype = FS_MSDOS, .ptype = PT_FAT,
106 .fsflags = GLM_MAYBE_FAT32 },
107 { .name = "lfs", .fstype = FS_BSDLFS, .ptype = PT_root },
108 { .name = "linux-data", .fstype = FS_EX2FS, .ptype = PT_root },
109 { .name = "apple", .fstype = FS_HFS, .ptype = PT_unknown },
110 { .name = "ccd", .fstype = FS_CCD, .ptype = PT_root },
111 { .name = "cgd", .fstype = FS_CGD, .ptype = PT_root },
112 { .name = "raid", .fstype = FS_RAID, .ptype = PT_root },
113 { .name = "vmcore", .fstype = FS_VMKCORE, .ptype = PT_unknown },
114 { .name = "vmfs", .fstype = FS_VMFS, .ptype = PT_unknown },
115 { .name = "vmresered", .fstype = FS_VMWRESV, .ptype = PT_unknown }
116 };
117
118 static size_t gpt_ptype_cnt = 0, gpt_ptype_alloc = 0;
119 static struct gpt_ptype_desc *gpt_ptype_descs = NULL;
120
121 /* "well" known types with special handling */
122 static const struct part_type_desc *gpt_native_root;
123
124 /* similar to struct gpt_ent, but matching our needs */
125 struct gpt_part_entry {
126 const struct gpt_ptype_desc *gp_type;
127 char gp_id[GUID_STR_LEN]; /* partition guid as string */
128 daddr_t gp_start, gp_size;
129 uint gp_attr; /* various attribute bits */
130 char gp_label[GPT_LABEL_LEN]; /* user defined label */
131 char gp_dev_name[GPT_DEV_LEN]; /* name of wedge */
132 const char *last_mounted; /* last mounted if known */
133 uint fs_type, fs_sub_type; /* FS_* and maybe sub type */
134 uint gp_flags;
135 #define GPEF_ON_DISK 1 /* This entry exists on-disk */
136 #define GPEF_MODIFIED 2 /* this entry has been changed */
137 #define GPEF_WEDGE 4 /* wedge for this exists */
138 #define GPEF_RESIZED 8 /* size has changed */
139 struct gpt_part_entry *gp_next;
140 };
141
142 static const struct gpt_ptype_desc *gpt_find_native_type(
143 const struct part_type_desc *gent);
144 static const struct gpt_ptype_desc *gpt_find_guid_type(const char*);
145 static bool
146 gpt_info_to_part(struct gpt_part_entry *p, const struct disk_part_info *info,
147 const char **err_msg);
148
149 const struct disk_partitioning_scheme gpt_parts;
150 struct gpt_disk_partitions {
151 struct disk_partitions dp;
152 /*
153 * We keep a list of our current valid partitions, pointed
154 * to by "partitions".
155 * dp.num_part is the number of entries in "partitions".
156 * When partitions that have a representation on disk already
157 * are deleted, we move them to the "obsolete" list so we
158 * can issue the proper commands to remove it when writing back.
159 */
160 struct gpt_part_entry *partitions, /* current partitions */
161 *obsolete; /* deleted partitions */
162 size_t max_num_parts; /* how many entries max? */
163 size_t prologue, epilogue; /* number of sectors res. */
164 bool has_gpt; /* disk already has a GPT */
165 };
166
167 /*
168 * Init global variables from MD details
169 */
170 static void
171 gpt_md_init(bool is_boot_disk, size_t *max_parts, size_t *head, size_t *tail)
172 {
173 size_t num;
174
175 if (is_boot_disk) {
176 #ifdef MD_GPT_INITIAL_SIZE
177 #if MD_GPT_INITIAL_SIZE < 2*512
178 #error impossible small GPT prologue
179 #endif
180 num = ((MD_GPT_INITIAL_SIZE-(2*512))/512)*GPT_PARTS_PER_SEC;
181 #else
182 num = GPT_DEFAULT_MAX_PARTS;
183 #endif
184 } else {
185 num = GPT_DEFAULT_MAX_PARTS;
186 }
187 *max_parts = num;
188 *head = 2 + num/GPT_PARTS_PER_SEC;
189 *tail = 1 + num/GPT_PARTS_PER_SEC;
190 }
191
192 /*
193 * Parse a part of "gpt show" output into a struct gpt_part_entry.
194 * Output is from "show -a" format if details = false, otherwise
195 * from details for a specific partition (show -i or show -b)
196 */
197 static void
198 gpt_add_info(struct gpt_part_entry *part, const char *tag, char *val,
199 bool details)
200 {
201 char *s, *e;
202
203 if (details && strcmp(tag, "Start:") == 0) {
204 part->gp_start = strtouq(val, NULL, 10);
205 } else if (details && strcmp(tag, "Size:") == 0) {
206 part->gp_size = strtouq(val, NULL, 10);
207 } else if (details && strcmp(tag, "Type:") == 0) {
208 s = strchr(val, '(');
209 if (!s)
210 return;
211 e = strchr(s, ')');
212 if (!e)
213 return;
214 *e = 0;
215 part->gp_type = gpt_find_guid_type(s+1);
216 } else if (strcmp(tag, "TypeID:") == 0) {
217 part->gp_type = gpt_find_guid_type(val);
218 } else if (strcmp(tag, "GUID:") == 0) {
219 strlcpy(part->gp_id, val, sizeof(part->gp_id));
220 } else if (strcmp(tag, "Label:") == 0) {
221 strlcpy(part->gp_label, val, sizeof(part->gp_label));
222 } else if (strcmp(tag, "Attributes:") == 0) {
223 char *n;
224
225 while ((n = strsep(&val, ", ")) != NULL) {
226 if (*n == 0)
227 continue;
228 for (const struct gpt_attr_desc *p = gpt_avail_attrs;
229 p->name != NULL; p++) {
230 if (strcmp(p->name, n) == 0)
231 part->gp_attr |= p->flag;
232 }
233 }
234 }
235 }
236
237 /*
238 * Find the partition matching this wedge info and record that we
239 * have a wedge already.
240 */
241 static void
242 update_part_from_wedge_info(struct gpt_disk_partitions *parts,
243 const struct dkwedge_info *dkw)
244 {
245 for (struct gpt_part_entry *p = parts->partitions; p != NULL;
246 p = p->gp_next) {
247 if (p->gp_start != dkw->dkw_offset ||
248 (uint64_t)p->gp_size != dkw->dkw_size)
249 continue;
250 p->gp_flags |= GPEF_WEDGE;
251 strlcpy(p->gp_dev_name, dkw->dkw_devname,
252 sizeof p->gp_dev_name);
253 return;
254 }
255 }
256
257 static struct disk_partitions *
258 gpt_read_from_disk(const char *dev, daddr_t start, daddr_t len,
259 const struct disk_partitioning_scheme *scheme)
260 {
261 char diskpath[MAXPATHLEN];
262 int fd;
263 struct dkwedge_info *dkw;
264 struct dkwedge_list dkwl;
265 size_t bufsize, dk;
266
267 assert(start == 0);
268 assert(have_gpt);
269
270 if (run_program(RUN_SILENT | RUN_ERROR_OK,
271 "gpt -rq header %s", dev) != 0)
272 return NULL;
273
274 /* read the partitions */
275 int i;
276 unsigned int p_index;
277 daddr_t p_start = 0, p_size = 0, avail_start = 0, avail_size = 0,
278 disk_size = 0;
279 char *textbuf, *t, *tt, p_type[STRSIZE];
280 static const char regpart_prefix[] = "GPT part - ";
281 struct gpt_disk_partitions *parts;
282 struct gpt_part_entry *last = NULL, *add_to = NULL;
283
284 if (collect(T_OUTPUT, &textbuf, "gpt -r show -a %s 2>/dev/null", dev)
285 < 1)
286 return NULL;
287
288 /* parse output and create our list */
289 parts = calloc(1, sizeof(*parts));
290 if (parts == NULL)
291 return NULL;
292
293 (void)strtok(textbuf, "\n"); /* ignore first line */
294 while ((t = strtok(NULL, "\n")) != NULL) {
295 i = 0; p_start = 0; p_size = 0; p_index = 0;
296 p_type[0] = 0;
297 while ((tt = strsep(&t, " \t")) != NULL) {
298 if (strlen(tt) == 0)
299 continue;
300 if (i == 0) {
301 if (add_to != NULL)
302 gpt_add_info(add_to, tt, t, false);
303 p_start = strtouq(tt, NULL, 10);
304 if (p_start == 0 && add_to != NULL)
305 break;
306 else
307 add_to = NULL;
308 }
309 if (i == 1)
310 p_size = strtouq(tt, NULL, 10);
311 if (i == 2)
312 p_index = strtouq(tt, NULL, 10);
313 if (i > 2 || (i == 2 && p_index == 0)) {
314 if (p_type[0])
315 strlcat(p_type, " ", STRSIZE);
316 strlcat(p_type, tt, STRSIZE);
317 }
318 i++;
319 }
320
321 if (p_start == 0 || p_size == 0)
322 continue;
323 else if (strcmp(p_type, "Pri GPT table") == 0) {
324 avail_start = p_start + p_size;
325 parts->prologue = avail_start;
326 parts->epilogue = p_size + 1;
327 parts->max_num_parts = p_size * GPT_PARTS_PER_SEC;
328 } else if (strcmp(p_type, "Sec GPT table") == 0)
329 avail_size = p_start - avail_start;
330 else if(strcmp(p_type, "Sec GPT header") == 0)
331 disk_size = p_start + p_size;
332 else if (p_index == 0 && strlen(p_type) > 0)
333 /* Utilitary entry (PMBR, etc) */
334 continue;
335 else if (p_index == 0) {
336 /* Free space */
337 continue;
338 } else {
339 /* Usual partition */
340 tt = p_type;
341 if (strncmp(tt, regpart_prefix,
342 strlen(regpart_prefix)) == 0)
343 tt += strlen(regpart_prefix);
344
345 /* Add to our linked list */
346 struct gpt_part_entry *np = calloc(1, sizeof(*np));
347 if (np == NULL)
348 break;
349
350 strlcpy(np->gp_label, tt, sizeof(np->gp_label));
351 np->gp_start = p_start;
352 np->gp_size = p_size;
353 np->gp_flags |= GPEF_ON_DISK;
354
355 if (last == NULL)
356 parts->partitions = np;
357 else
358 last->gp_next = np;
359 last = np;
360 add_to = np;
361 parts->dp.num_part++;
362 }
363 }
364 free(textbuf);
365
366 /* If the GPT was not complete (e.g. truncated image), barf */
367 if (disk_size <= 0) {
368 free(parts);
369 return NULL;
370 }
371
372 parts->dp.pscheme = scheme;
373 parts->dp.disk = strdup(dev);
374 parts->dp.disk_start = start;
375 parts->dp.disk_size = disk_size;
376 parts->dp.free_space = avail_size;
377 parts->has_gpt = true;
378
379 fd = opendisk(parts->dp.disk, O_RDONLY, diskpath, sizeof(diskpath), 0);
380 for (struct gpt_part_entry *p = parts->partitions; p != NULL;
381 p = p->gp_next) {
382 #ifdef DEFAULT_UFS2
383 bool fs_is_default = false;
384 #endif
385
386 if (p->gp_type != NULL) {
387
388 if (p->gp_type->fsflags != 0) {
389 const char *lm = get_last_mounted(fd,
390 p->gp_start, &p->fs_type,
391 &p->fs_sub_type, p->gp_type->fsflags);
392 if (lm != NULL && *lm != 0) {
393 char *path = strdup(lm);
394 canonicalize_last_mounted(path);
395 p->last_mounted = path;
396 } else {
397 p->fs_type = p->gp_type->
398 default_fs_type;
399 #ifdef DEFAULT_UFS2
400 fs_is_default = true;
401 #endif
402 }
403 } else {
404 p->fs_type = p->gp_type->default_fs_type;
405 #ifdef DEFAULT_UFS2
406 fs_is_default = true;
407 #endif
408 }
409 #ifdef DEFAULT_UFS2
410 if (fs_is_default && p->fs_type == FS_BSDFFS)
411 p->fs_sub_type = 2;
412 #endif
413 }
414
415 parts->dp.free_space -= p->gp_size;
416 }
417
418 /*
419 * Check if we have any (matching/auto-configured) wedges already
420 */
421 dkw = NULL;
422 dkwl.dkwl_buf = dkw;
423 dkwl.dkwl_bufsize = 0;
424 if (ioctl(fd, DIOCLWEDGES, &dkwl) == 0) {
425 /* do not even try to deal with any races at this point */
426 bufsize = dkwl.dkwl_nwedges * sizeof(*dkw);
427 dkw = malloc(bufsize);
428 dkwl.dkwl_buf = dkw;
429 dkwl.dkwl_bufsize = bufsize;
430 if (dkw != NULL && ioctl(fd, DIOCLWEDGES, &dkwl) == 0) {
431 for (dk = 0; dk < dkwl.dkwl_ncopied; dk++)
432 update_part_from_wedge_info(parts, &dkw[dk]);
433 }
434 free(dkw);
435 }
436
437 close(fd);
438
439 return &parts->dp;
440 }
441
442 static size_t
443 gpt_cyl_size(const struct disk_partitions *arg)
444 {
445 return MEG / 512;
446 }
447
448 static struct disk_partitions *
449 gpt_create_new(const char *disk, daddr_t start, daddr_t len, daddr_t total,
450 bool is_boot_drive, struct disk_partitions *parent)
451 {
452 struct gpt_disk_partitions *parts;
453
454 if (start != 0) {
455 assert(0);
456 return NULL;
457 }
458
459 parts = calloc(1, sizeof(*parts));
460 if (!parts)
461 return NULL;
462
463 parts->dp.pscheme = &gpt_parts;
464 parts->dp.disk = strdup(disk);
465
466 gpt_md_init(is_boot_drive, &parts->max_num_parts, &parts->prologue,
467 &parts->epilogue);
468
469 parts->dp.disk_start = start;
470 parts->dp.disk_size = len;
471 parts->dp.free_space = len - start - parts->prologue - parts->epilogue;
472 parts->has_gpt = false;
473
474 return &parts->dp;
475 }
476
477 static bool
478 gpt_get_part_info(const struct disk_partitions *arg, part_id id,
479 struct disk_part_info *info)
480 {
481 static const struct part_type_desc gpt_unknown_type =
482 { .generic_ptype = PT_undef,
483 .short_desc = "<unknown>" };
484 const struct gpt_disk_partitions *parts =
485 (const struct gpt_disk_partitions*)arg;
486 const struct gpt_part_entry *p = parts->partitions;
487 part_id no;
488
489 for (no = 0; p != NULL && no < id; no++)
490 p = p->gp_next;
491
492 if (no != id || p == NULL)
493 return false;
494
495 memset(info, 0, sizeof(*info));
496 info->start = p->gp_start;
497 info->size = p->gp_size;
498 if (p->gp_type)
499 info->nat_type = &p->gp_type->gent;
500 else
501 info->nat_type = &gpt_unknown_type;
502 info->last_mounted = p->last_mounted;
503 info->fs_type = p->fs_type;
504 info->fs_sub_type = p->fs_sub_type;
505
506 return true;
507 }
508
509 static bool
510 gpt_get_part_attr_str(const struct disk_partitions *arg, part_id id,
511 char *str, size_t avail_space)
512 {
513 const struct gpt_disk_partitions *parts =
514 (const struct gpt_disk_partitions*)arg;
515 const struct gpt_part_entry *p = parts->partitions;
516 part_id no;
517 static const char *flags = NULL;
518
519 for (no = 0; p != NULL && no < id; no++)
520 p = p->gp_next;
521
522 if (no != id || p == NULL)
523 return false;
524
525 if (flags == NULL)
526 flags = msg_string(MSG_gpt_flags);
527
528 if (avail_space < 2)
529 return false;
530
531 if (p->gp_attr & GPT_ATTR_BOOT)
532 *str++ = flags[0];
533 *str = 0;
534
535 return true;
536 }
537
538 /*
539 * Find insert position and check for duplicates.
540 * If all goes well, insert the new "entry" in the "list".
541 * If there are collisions, report "no free space".
542 * We keep all lists sorted by start sector number,
543 */
544 static bool
545 gpt_insert_part_into_list(struct gpt_disk_partitions *parts,
546 struct gpt_part_entry **list,
547 struct gpt_part_entry *entry, const char **err_msg)
548 {
549 struct gpt_part_entry *p, *last;
550
551 /* find the first entry past the new one (if any) */
552 for (last = NULL, p = *list; p != NULL; last = p, p = p->gp_next) {
553 if (p->gp_start > entry->gp_start)
554 break;
555 }
556
557 /* check if last partition overlaps with new one */
558 if (last) {
559 if (last->gp_start + last->gp_size > entry->gp_start) {
560 if (err_msg)
561 *err_msg = msg_string(MSG_No_free_space);
562 return false;
563 }
564 }
565
566 if (p == NULL) {
567 entry->gp_next = NULL;
568 if (last != NULL) {
569 last->gp_next = entry;
570 }
571 } else {
572 /* check if new entry overlaps with next */
573 if (entry->gp_start + entry->gp_size > p->gp_start) {
574 if (err_msg)
575 *err_msg = msg_string(MSG_No_free_space);
576 return false;
577 }
578
579 entry->gp_next = p;
580 if (last != NULL)
581 last->gp_next = entry;
582 else
583 *list = entry;
584 }
585 if (*list == NULL)
586 *list = entry;
587
588 return true;
589 }
590
591 static bool
592 gpt_set_part_info(struct disk_partitions *arg, part_id id,
593 const struct disk_part_info *info, const char **err_msg)
594 {
595 struct gpt_disk_partitions *parts =
596 (struct gpt_disk_partitions*)arg;
597 struct gpt_part_entry *p = parts->partitions, *n;
598 part_id no;
599 daddr_t lendiff;
600
601 for (no = 0; p != NULL && no < id; no++)
602 p = p->gp_next;
603
604 if (no != id || p == NULL)
605 return false;
606
607 if ((p->gp_flags & GPEF_ON_DISK)) {
608 if (info->start != p->gp_start) {
609 /* partition moved, we need to delete and re-add */
610 n = calloc(1, sizeof(*n));
611 if (n == NULL) {
612 if (err_msg)
613 *err_msg = err_outofmem;
614 return false;
615 }
616 *n = *p;
617 p->gp_flags &= ~GPEF_ON_DISK;
618 if (!gpt_insert_part_into_list(parts, &parts->obsolete,
619 n, err_msg))
620 return false;
621 } else if (info->size != p->gp_size) {
622 p->gp_flags |= GPEF_RESIZED;
623 }
624 }
625
626 p->gp_flags |= GPEF_MODIFIED;
627
628 lendiff = info->size - p->gp_size;
629 parts->dp.free_space -= lendiff;
630 return gpt_info_to_part(p, info, err_msg);
631 }
632
633 static size_t
634 gpt_get_free_spaces_internal(const struct gpt_disk_partitions *parts,
635 struct disk_part_free_space *result, size_t max_num_result,
636 daddr_t min_space_size, daddr_t align, daddr_t start, daddr_t ignore)
637 {
638 size_t cnt = 0;
639 daddr_t s, e, from, size, end_of_disk;
640 struct gpt_part_entry *p;
641
642 if (align > 1)
643 start = max(roundup(start, align), align);
644 if (start < 0 || start < (daddr_t)parts->prologue)
645 start = parts->prologue;
646 if (parts->dp.disk_start != 0 && parts->dp.disk_start > start)
647 start = parts->dp.disk_start;
648 if (min_space_size < 1)
649 min_space_size = 1;
650 end_of_disk = parts->dp.disk_start + parts->dp.disk_size
651 - parts->epilogue;
652 from = start;
653 while (from < end_of_disk && cnt < max_num_result) {
654 again:
655 size = parts->dp.disk_start + parts->dp.disk_size - from;
656 start = from;
657 if (start + size > end_of_disk)
658 size = end_of_disk - start;
659 for (p = parts->partitions; p != NULL; p = p->gp_next) {
660 s = p->gp_start;
661 e = p->gp_size + s;
662 if (s == ignore)
663 continue;
664 if (e < from)
665 continue;
666 if (s <= from && e > from) {
667 if (e - 1 >= end_of_disk)
668 return cnt;
669 from = e + 1;
670 if (align > 1) {
671 from = max(roundup(from, align), align);
672 if (from >= end_of_disk) {
673 size = 0;
674 break;
675 }
676 }
677 goto again;
678 }
679 if (s > from && s - from < size) {
680 size = s - from;
681 }
682 }
683 if (size >= min_space_size) {
684 result->start = start;
685 result->size = size;
686 result++;
687 cnt++;
688 }
689 from += size + 1;
690 if (align > 1)
691 from = max(roundup(from, align), align);
692 }
693
694 return cnt;
695 }
696
697 static daddr_t
698 gpt_max_free_space_at(const struct disk_partitions *arg, daddr_t start)
699 {
700 const struct gpt_disk_partitions *parts =
701 (const struct gpt_disk_partitions*)arg;
702 struct disk_part_free_space space;
703
704 if (gpt_get_free_spaces_internal(parts, &space, 1, 1, 0,
705 start, start) == 1)
706 return space.size;
707
708 return 0;
709 }
710
711 static size_t
712 gpt_get_free_spaces(const struct disk_partitions *arg,
713 struct disk_part_free_space *result, size_t max_num_result,
714 daddr_t min_space_size, daddr_t align, daddr_t start,
715 daddr_t ignore)
716 {
717 const struct gpt_disk_partitions *parts =
718 (const struct gpt_disk_partitions*)arg;
719
720 return gpt_get_free_spaces_internal(parts, result,
721 max_num_result, min_space_size, align, start, ignore);
722 }
723
724 static void
725 gpt_match_ptype(const char *name, struct gpt_ptype_desc *t)
726 {
727 size_t i;
728
729 for (i = 0; i < __arraycount(gpt_fs_types); i++) {
730 if (strcmp(name, gpt_fs_types[i].name) == 0) {
731 t->gent.generic_ptype = gpt_fs_types[i].ptype;
732 t->fsflags = gpt_fs_types[i].fsflags;
733 t->default_fs_type = gpt_fs_types[i].fstype;
734
735 /* recongnize special entries */
736 if (gpt_native_root == NULL && i == 0)
737 gpt_native_root = &t->gent;
738
739 return;
740 }
741 }
742
743 t->gent.generic_ptype = PT_unknown;
744 t->fsflags = 0;
745 t->default_fs_type = FS_BSDFFS;
746 }
747
748 static void
749 gpt_internal_add_ptype(const char *uid, const char *name, const char *desc)
750 {
751 if (gpt_ptype_cnt >= gpt_ptype_alloc) {
752 gpt_ptype_alloc = gpt_ptype_alloc ? 2*gpt_ptype_alloc
753 : GPT_PTYPE_ALLOC;
754 struct gpt_ptype_desc *nptypes = realloc(gpt_ptype_descs,
755 gpt_ptype_alloc*sizeof(*gpt_ptype_descs));
756 if (nptypes == 0)
757 errx(EXIT_FAILURE, "out of memory");
758 gpt_ptype_descs = nptypes;
759 }
760
761 strlcpy(gpt_ptype_descs[gpt_ptype_cnt].tid, uid,
762 sizeof(gpt_ptype_descs[gpt_ptype_cnt].tid));
763 gpt_ptype_descs[gpt_ptype_cnt].gent.short_desc = strdup(name);
764 gpt_ptype_descs[gpt_ptype_cnt].gent.description = strdup(desc);
765 gpt_match_ptype(name, &gpt_ptype_descs[gpt_ptype_cnt]);
766 gpt_ptype_cnt++;
767 }
768
769 static void
770 gpt_init_ptypes(void)
771 {
772 if (gpt_ptype_cnt == 0)
773 gpt_uuid_query(gpt_internal_add_ptype);
774 }
775
776 static void
777 gpt_cleanup(void)
778 {
779 /* free all of gpt_ptype_descs */
780 for (size_t i = 0; i < gpt_ptype_cnt; i++) {
781 free(__UNCONST(gpt_ptype_descs[i].gent.short_desc));
782 free(__UNCONST(gpt_ptype_descs[i].gent.description));
783 }
784 free(gpt_ptype_descs);
785 gpt_ptype_descs = NULL;
786 gpt_ptype_cnt = gpt_ptype_alloc = 0;
787 }
788
789 static size_t
790 gpt_type_count(void)
791 {
792 if (gpt_ptype_cnt == 0)
793 gpt_init_ptypes();
794
795 return gpt_ptype_cnt;
796 }
797
798 static const struct part_type_desc *
799 gpt_get_ptype(size_t ndx)
800 {
801 if (gpt_ptype_cnt == 0)
802 gpt_init_ptypes();
803
804 if (ndx >= gpt_ptype_cnt)
805 return NULL;
806
807 return &gpt_ptype_descs[ndx].gent;
808 }
809
810 static const struct part_type_desc *
811 gpt_get_generic_type(enum part_type gent)
812 {
813 if (gpt_ptype_cnt == 0)
814 gpt_init_ptypes();
815
816 if (gent == PT_root)
817 return gpt_native_root;
818 if (gent == PT_unknown)
819 return NULL;
820
821 for (size_t i = 0; i < gpt_ptype_cnt; i++)
822 if (gpt_ptype_descs[i].gent.generic_ptype == gent)
823 return &gpt_ptype_descs[i].gent;
824
825 return NULL;
826 }
827
828 static const struct gpt_ptype_desc *
829 gpt_find_native_type(const struct part_type_desc *gent)
830 {
831 if (gpt_ptype_cnt == 0)
832 gpt_init_ptypes();
833
834 if (gent == NULL)
835 return NULL;
836
837 for (size_t i = 0; i < gpt_ptype_cnt; i++)
838 if (gent == &gpt_ptype_descs[i].gent)
839 return &gpt_ptype_descs[i];
840
841 gent = gpt_get_generic_type(gent->generic_ptype);
842 if (gent == NULL)
843 return NULL;
844
845 /* this can not recurse deeper than once, we would not have found a
846 * generic type a few lines above if it would. */
847 return gpt_find_native_type(gent);
848 }
849
850 static const struct gpt_ptype_desc *
851 gpt_find_guid_type(const char *uid)
852 {
853 if (gpt_ptype_cnt == 0)
854 gpt_init_ptypes();
855
856 if (uid == NULL || uid[0] == 0)
857 return NULL;
858
859 for (size_t i = 0; i < gpt_ptype_cnt; i++)
860 if (strcmp(gpt_ptype_descs[i].tid, uid) == 0)
861 return &gpt_ptype_descs[i];
862
863 return NULL;
864 }
865
866 static const struct part_type_desc *
867 gpt_find_type(const char *desc)
868 {
869 if (gpt_ptype_cnt == 0)
870 gpt_init_ptypes();
871
872 if (desc == NULL || desc[0] == 0)
873 return NULL;
874
875 for (size_t i = 0; i < gpt_ptype_cnt; i++)
876 if (strcmp(gpt_ptype_descs[i].gent.short_desc, desc) == 0)
877 return &gpt_ptype_descs[i].gent;
878
879 return NULL;
880 }
881
882 static const struct part_type_desc *
883 gpt_get_fs_part_type(enum part_type pt, unsigned fstype, unsigned fs_sub_type)
884 {
885 size_t i;
886
887 /* Try with complete match (including part_type) first */
888 for (i = 0; i < __arraycount(gpt_fs_types); i++)
889 if (fstype == gpt_fs_types[i].fstype &&
890 pt == gpt_fs_types[i].ptype)
891 return gpt_find_type(gpt_fs_types[i].name);
892
893 /* If that did not work, ignore part_type */
894 for (i = 0; i < __arraycount(gpt_fs_types); i++)
895 if (fstype == gpt_fs_types[i].fstype)
896 return gpt_find_type(gpt_fs_types[i].name);
897
898 return NULL;
899 }
900
901 static bool
902 gpt_get_default_fstype(const struct part_type_desc *nat_type,
903 unsigned *fstype, unsigned *fs_sub_type)
904 {
905 const struct gpt_ptype_desc *gtype;
906
907 gtype = gpt_find_native_type(nat_type);
908 if (gtype == NULL)
909 return false;
910
911 *fstype = gtype->default_fs_type;
912 #ifdef DEFAULT_UFS2
913 if (gtype->default_fs_type == FS_BSDFFS)
914 *fs_sub_type = 2;
915 else
916 #endif
917 *fs_sub_type = 0;
918 return true;
919 }
920
921 static const struct part_type_desc *
922 gpt_get_uuid_part_type(const uuid_t *id)
923 {
924 char str[GUID_STR_LEN], desc[GUID_STR_LEN + MENUSTRSIZE];
925 const struct gpt_ptype_desc *t;
926 char *guid = NULL;
927 uint32_t err;
928
929 uuid_to_string(id, &guid, &err);
930 strlcpy(str, err == uuid_s_ok ? guid : "-", sizeof str);
931 free(guid);
932
933 t = gpt_find_guid_type(str);
934 if (t == NULL) {
935 snprintf(desc, sizeof desc, "%s (%s)",
936 msg_string(MSG_custom_type), str);
937 gpt_internal_add_ptype(str, str, desc);
938 t = gpt_find_guid_type(str);
939 assert(t != NULL);
940 }
941 return &t->gent;
942 }
943
944 static const struct part_type_desc *
945 gpt_create_custom_part_type(const char *custom, const char **err_msg)
946 {
947 uuid_t id;
948 uint32_t err;
949
950 uuid_from_string(custom, &id, &err);
951 if (err_msg != NULL &&
952 (err == uuid_s_invalid_string_uuid || err == uuid_s_bad_version)) {
953 *err_msg = MSG_invalid_guid;
954 return NULL;
955 }
956 if (err != uuid_s_ok)
957 return NULL;
958
959 return gpt_get_uuid_part_type(&id);
960 }
961
962 static const struct part_type_desc *
963 gpt_create_unknown_part_type(void)
964 {
965 uuid_t id;
966 uint32_t err;
967
968 uuid_create(&id, &err);
969 if (err != uuid_s_ok)
970 return NULL;
971
972 return gpt_get_uuid_part_type(&id);
973 }
974
975 static daddr_t
976 gpt_get_part_alignment(const struct disk_partitions *parts)
977 {
978
979 assert(parts->disk_size > 0);
980 if (parts->disk_size < 0)
981 return 1;
982
983 /* Use 1MB offset/alignemnt for large (>128GB) disks */
984 if (parts->disk_size > HUGE_DISK_SIZE)
985 return 2048;
986 else if (parts->disk_size > TINY_DISK_SIZE)
987 return 64;
988 else
989 return 4;
990 }
991
992 static bool
993 gpt_can_add_partition(const struct disk_partitions *arg)
994 {
995 const struct gpt_disk_partitions *parts =
996 (const struct gpt_disk_partitions*)arg;
997 struct disk_part_free_space space;
998 daddr_t align;
999
1000 if (parts->dp.num_part >= parts->max_num_parts)
1001 return false;
1002
1003 align = gpt_get_part_alignment(arg);
1004 if (parts->dp.free_space <= align)
1005 return false;
1006
1007 if (gpt_get_free_spaces_internal(parts, &space, 1, align, align,
1008 0, -1) < 1)
1009 return false;
1010
1011 return true;
1012 }
1013
1014 static bool
1015 gpt_info_to_part(struct gpt_part_entry *p, const struct disk_part_info *info,
1016 const char **err_msg)
1017 {
1018 p->gp_type = gpt_find_native_type(info->nat_type);
1019 p->gp_start = info->start;
1020 p->gp_size = info->size;
1021 if (info->last_mounted != NULL && info->last_mounted !=
1022 p->last_mounted) {
1023 free(__UNCONST(p->last_mounted));
1024 p->last_mounted = strdup(info->last_mounted);
1025 }
1026 p->fs_type = info->fs_type;
1027 p->fs_sub_type = info->fs_sub_type;
1028
1029 return true;
1030 }
1031
1032 static part_id
1033 gpt_add_part(struct disk_partitions *arg,
1034 const struct disk_part_info *info, const char **err_msg)
1035 {
1036 struct gpt_disk_partitions *parts =
1037 (struct gpt_disk_partitions*)arg;
1038 struct disk_part_free_space space;
1039 struct disk_part_info data = *info;
1040 struct gpt_part_entry *p;
1041 bool ok;
1042
1043 if (err_msg != NULL)
1044 *err_msg = NULL;
1045
1046 if (gpt_get_free_spaces_internal(parts, &space, 1, 1, 1,
1047 info->start, -1) < 1) {
1048 if (err_msg)
1049 *err_msg = msg_string(MSG_No_free_space);
1050 return NO_PART;
1051 }
1052 if (parts->dp.num_part >= parts->max_num_parts) {
1053 if (err_msg)
1054 *err_msg = msg_string(MSG_err_too_many_partitions);
1055 return NO_PART;
1056 }
1057
1058 if (data.size > space.size)
1059 data.size = space.size;
1060
1061 p = calloc(1, sizeof(*p));
1062 if (p == NULL) {
1063 if (err_msg != NULL)
1064 *err_msg = INTERNAL_ERROR;
1065 return NO_PART;
1066 }
1067 if (!gpt_info_to_part(p, &data, err_msg)) {
1068 free(p);
1069 return NO_PART;
1070 }
1071 p->gp_flags |= GPEF_MODIFIED;
1072 ok = gpt_insert_part_into_list(parts, &parts->partitions, p, err_msg);
1073 if (ok) {
1074 parts->dp.num_part++;
1075 parts->dp.free_space -= p->gp_size;
1076 return parts->dp.num_part-1;
1077 } else {
1078 free(p);
1079 return NO_PART;
1080 }
1081 }
1082
1083 static bool
1084 gpt_delete_partition(struct disk_partitions *arg, part_id id,
1085 const char **err_msg)
1086 {
1087 struct gpt_disk_partitions *parts = (struct gpt_disk_partitions*)arg;
1088 struct gpt_part_entry *p, *last = NULL;
1089 part_id i;
1090 bool res;
1091
1092 if (parts->dp.num_part == 0)
1093 return false;
1094
1095 for (i = 0, p = parts->partitions;
1096 i != id && i < parts->dp.num_part && p != NULL;
1097 i++, p = p->gp_next)
1098 last = p;
1099
1100 if (p == NULL) {
1101 if (err_msg)
1102 *err_msg = INTERNAL_ERROR;
1103 return false;
1104 }
1105
1106 if (last == NULL)
1107 parts->partitions = p->gp_next;
1108 else
1109 last->gp_next = p->gp_next;
1110
1111 res = true;
1112 if (p->gp_flags & GPEF_ON_DISK) {
1113 if (!gpt_insert_part_into_list(parts, &parts->obsolete,
1114 p, err_msg))
1115 res = false;
1116 } else {
1117 free(p);
1118 }
1119
1120 if (res) {
1121 parts->dp.num_part--;
1122 parts->dp.free_space += p->gp_size;
1123 }
1124
1125 return res;
1126 }
1127
1128 static bool
1129 gpt_delete_all_partitions(struct disk_partitions *arg)
1130 {
1131 struct gpt_disk_partitions *parts = (struct gpt_disk_partitions*)arg;
1132
1133 while (parts->dp.num_part > 0) {
1134 if (!gpt_delete_partition(&parts->dp, 0, NULL))
1135 return false;
1136 }
1137
1138 return true;
1139 }
1140
1141 static bool
1142 gpt_read_part(const char *disk, daddr_t start, struct gpt_part_entry *p)
1143 {
1144 char *textbuf, *t, *tt;
1145 static const char expected_hdr[] = "Details for index ";
1146
1147 /* run gpt show for this partition */
1148 if (collect(T_OUTPUT, &textbuf,
1149 "gpt -r show -b %" PRIu64 " %s 2>/dev/null", start, disk) < 1)
1150 return false;
1151
1152 /*
1153 * gpt show should respond with single partition details, but will
1154 * fall back to "show -a" output if something is wrong
1155 */
1156 t = strtok(textbuf, "\n"); /* first line is special */
1157 if (strncmp(t, expected_hdr, sizeof(expected_hdr)-1) != 0) {
1158 free(textbuf);
1159 return false;
1160 }
1161
1162 /* parse output into "old" */
1163 while ((t = strtok(NULL, "\n")) != NULL) {
1164 tt = strsep(&t, " \t");
1165 if (strlen(tt) == 0)
1166 continue;
1167 gpt_add_info(p, tt, t, true);
1168 }
1169 free(textbuf);
1170
1171 return true;
1172 }
1173
1174 static bool
1175 gpt_apply_attr(const char *disk, const char *cmd, off_t start, uint todo)
1176 {
1177 size_t i;
1178 char attr_str[STRSIZE];
1179
1180 if (todo == 0)
1181 return true;
1182
1183 strcpy(attr_str, "-a ");
1184 for (i = 0; todo != 0; i++) {
1185 if (!(gpt_avail_attrs[i].flag & todo))
1186 continue;
1187 todo &= ~gpt_avail_attrs[i].flag;
1188 if (attr_str[0])
1189 strlcat(attr_str, ",",
1190 sizeof(attr_str));
1191 strlcat(attr_str,
1192 gpt_avail_attrs[i].name,
1193 sizeof(attr_str));
1194 }
1195 if (run_program(RUN_SILENT,
1196 "gpt %s %s -b %" PRIu64 " %s", cmd, attr_str, start, disk) != 0)
1197 return false;
1198 return true;
1199 }
1200
1201 /*
1202 * Modify an existing on-disk partition.
1203 * Start and size can not be changed here, caller needs to deal
1204 * with that kind of changes upfront.
1205 */
1206 static bool
1207 gpt_modify_part(const char *disk, struct gpt_part_entry *p)
1208 {
1209 struct gpt_part_entry old;
1210 uint todo_set, todo_unset;
1211
1212 /*
1213 * Query current on-disk state
1214 */
1215 memset(&old, 0, sizeof old);
1216 if (!gpt_read_part(disk, p->gp_start, &old))
1217 return false;
1218
1219 /* Reject unsupported changes */
1220 if (old.gp_start != p->gp_start || old.gp_size != p->gp_size)
1221 return false;
1222
1223 /*
1224 * GUID should never change, but the internal copy
1225 * may not yet know it.
1226 */
1227 strcpy(p->gp_id, old.gp_id);
1228
1229 /* Check type */
1230 if (p->gp_type != old.gp_type) {
1231 if (run_program(RUN_SILENT,
1232 "gpt label -b %" PRIu64 " -T %s %s",
1233 p->gp_start, p->gp_type->tid, disk) != 0)
1234 return false;
1235 }
1236
1237 /* Check label */
1238 if (strcmp(p->gp_label, old.gp_label) != 0) {
1239 if (run_program(RUN_SILENT,
1240 "gpt label -b %" PRIu64 " -l \'%s\' %s",
1241 p->gp_start, p->gp_label, disk) != 0)
1242 return false;
1243 }
1244
1245 /* Check attributes */
1246 if (p->gp_attr != old.gp_attr) {
1247 if (p->gp_attr == 0) {
1248 if (run_program(RUN_SILENT,
1249 "gpt set -N -b %" PRIu64 " %s",
1250 p->gp_start, disk) != 0)
1251 return false;
1252 } else {
1253 todo_set = (p->gp_attr ^ old.gp_attr) & p->gp_attr;
1254 todo_unset = (p->gp_attr ^ old.gp_attr) & old.gp_attr;
1255 if (!gpt_apply_attr(disk, "unset", p->gp_start,
1256 todo_unset))
1257 return false;
1258 if (!gpt_apply_attr(disk, "set", p->gp_start,
1259 todo_set))
1260 return false;
1261 }
1262 }
1263
1264 return true;
1265 }
1266
1267 /*
1268 * verbatim copy from sys/dev/dkwedge/dkwedge_bsdlabel.c:
1269 * map FS_* to wedge strings
1270 */
1271 static const char *
1272 bsdlabel_fstype_to_str(uint8_t fstype)
1273 {
1274 const char *str;
1275
1276 /*
1277 * For each type known to FSTYPE_DEFN (from <sys/disklabel.h>),
1278 * a suitable case branch will convert the type number to a string.
1279 */
1280 switch (fstype) {
1281 #define FSTYPE_TO_STR_CASE(tag, number, name, fsck, mount) \
1282 case __CONCAT(FS_,tag): str = __CONCAT(DKW_PTYPE_,tag); break;
1283 FSTYPE_DEFN(FSTYPE_TO_STR_CASE)
1284 #undef FSTYPE_TO_STR_CASE
1285 default: str = NULL; break;
1286 }
1287
1288 return (str);
1289 }
1290
1291 static bool
1292 gpt_add_wedge(const char *disk, struct gpt_part_entry *p)
1293 {
1294 struct dkwedge_info dkw;
1295 const char *tname;
1296 char diskpath[MAXPATHLEN];
1297 int fd;
1298
1299 memset(&dkw, 0, sizeof(dkw));
1300 tname = bsdlabel_fstype_to_str(p->fs_type);
1301 if (tname)
1302 strlcpy(dkw.dkw_ptype, tname, sizeof(dkw.dkw_ptype));
1303
1304 strlcpy((char*)&dkw.dkw_wname, p->gp_id, sizeof(dkw.dkw_wname));
1305 dkw.dkw_offset = p->gp_start;
1306 dkw.dkw_size = p->gp_size;
1307 if (dkw.dkw_wname[0] == 0) {
1308 if (p->gp_label[0] != 0)
1309 strlcpy((char*)&dkw.dkw_wname,
1310 p->gp_label, sizeof(dkw.dkw_wname));
1311 }
1312 if (dkw.dkw_wname[0] == 0) {
1313 snprintf((char*)dkw.dkw_wname, sizeof dkw.dkw_wname,
1314 "%s_%" PRIi64 "@%" PRIi64, disk, p->gp_size, p->gp_start);
1315 }
1316
1317 fd = opendisk(disk, O_RDWR, diskpath, sizeof(diskpath), 0);
1318 if (fd < 0)
1319 return false;
1320 if (ioctl(fd, DIOCAWEDGE, &dkw) == -1) {
1321 close(fd);
1322 return false;
1323 }
1324 close(fd);
1325
1326 strlcpy(p->gp_dev_name, dkw.dkw_devname, sizeof(p->gp_dev_name));
1327 p->gp_flags |= GPEF_WEDGE;
1328 return true;
1329 }
1330
1331 static void
1332 escape_spaces(char *dest, const char *src)
1333 {
1334 unsigned char c;
1335
1336 while (*src) {
1337 c = *src++;
1338 if (isspace(c) || c == '\\')
1339 *dest++ = '\\';
1340 *dest++ = c;
1341 }
1342 *dest = 0;
1343 }
1344
1345 static bool
1346 gpt_get_part_device(const struct disk_partitions *arg,
1347 part_id id, char *devname, size_t max_devname_len, int *part,
1348 enum dev_name_usage usage, bool with_path, bool life)
1349 {
1350 const struct gpt_disk_partitions *parts =
1351 (const struct gpt_disk_partitions*)arg;
1352 struct gpt_part_entry *p = parts->partitions;
1353 char tmpname[GPT_LABEL_LEN*2];
1354 part_id no;
1355
1356
1357 for (no = 0; p != NULL && no < id; no++)
1358 p = p->gp_next;
1359
1360 if (no != id || p == NULL)
1361 return false;
1362
1363 if (part)
1364 *part = -1;
1365
1366 if (usage == logical_name && p->gp_label[0] == 0 && p->gp_id[0] == 0)
1367 usage = plain_name;
1368 if (usage == plain_name || usage == raw_dev_name)
1369 life = true;
1370 if (!(p->gp_flags & GPEF_WEDGE) && life)
1371 gpt_add_wedge(arg->disk, p);
1372
1373 switch (usage) {
1374 case logical_name:
1375 if (p->gp_label[0] != 0) {
1376 escape_spaces(tmpname, p->gp_label);
1377 snprintf(devname, max_devname_len,
1378 "NAME=%s", tmpname);
1379 } else {
1380 snprintf(devname, max_devname_len,
1381 "NAME=%s", p->gp_id);
1382 }
1383 break;
1384 case plain_name:
1385 assert(p->gp_flags & GPEF_WEDGE);
1386 if (with_path)
1387 snprintf(devname, max_devname_len, _PATH_DEV "%s",
1388 p->gp_dev_name);
1389 else
1390 strlcpy(devname, p->gp_dev_name, max_devname_len);
1391 break;
1392 case raw_dev_name:
1393 assert(p->gp_flags & GPEF_WEDGE);
1394 if (with_path)
1395 snprintf(devname, max_devname_len, _PATH_DEV "r%s",
1396 p->gp_dev_name);
1397 else
1398 snprintf(devname, max_devname_len, "r%s",
1399 p->gp_dev_name);
1400 break;
1401 default:
1402 return false;
1403 }
1404
1405 return true;
1406 }
1407
1408 static bool
1409 gpt_write_to_disk(struct disk_partitions *arg)
1410 {
1411 struct gpt_disk_partitions *parts = (struct gpt_disk_partitions*)arg;
1412 struct gpt_part_entry *p, *n;
1413 char label_arg[sizeof(p->gp_label) + 10];
1414 char diskpath[MAXPATHLEN];
1415 int fd, bits = 0;
1416 bool root_is_new = false, efi_is_new = false;
1417 part_id root_id = NO_PART, efi_id = NO_PART, pno;
1418
1419 /*
1420 * Remove all wedges on this disk - they may become invalid and we
1421 * have no easy way to associate them with the partitioning data.
1422 * Instead we will explicitly request creation of wedges on demand
1423 * later.
1424 */
1425 fd = opendisk(arg->disk, O_RDWR, diskpath, sizeof(diskpath), 0);
1426 if (fd < 0)
1427 return false;
1428 if (ioctl(fd, DIOCRMWEDGES, &bits) == -1)
1429 return false;
1430 close(fd);
1431
1432 /*
1433 * Collect first root and efi partition (if available), clear
1434 * "have wedge" flags.
1435 */
1436 for (pno = 0, p = parts->partitions; p != NULL; p = p->gp_next, pno++) {
1437 p->gp_flags &= ~GPEF_WEDGE;
1438 if (root_id == NO_PART && p->gp_type != NULL) {
1439 if (p->gp_type->gent.generic_ptype == PT_root &&
1440 p->gp_start == pm->ptstart) {
1441 root_id = pno;
1442 root_is_new = !(p->gp_flags & GPEF_ON_DISK);
1443 } else if (efi_id == NO_PART &&
1444 p->gp_type->gent.generic_ptype == PT_EFI_SYSTEM) {
1445 efi_id = pno;
1446 efi_is_new = !(p->gp_flags & GPEF_ON_DISK);
1447 }
1448 }
1449 }
1450
1451 /*
1452 * If no GPT on disk yet, create it.
1453 */
1454 if (!parts->has_gpt) {
1455 char limit[30];
1456
1457 if (parts->max_num_parts > 0)
1458 sprintf(limit, "-p %zu", parts->max_num_parts);
1459 else
1460 limit[0] = 0;
1461 if (run_program(RUN_SILENT, "gpt create %s %s",
1462 limit, parts->dp.disk))
1463 return false;
1464 parts->has_gpt = true;
1465 }
1466
1467 /*
1468 * Delete all old partitions
1469 */
1470 for (p = parts->obsolete; p != NULL; p = n) {
1471 run_program(RUN_SILENT, "gpt -n remove -b %" PRIu64 " %s",
1472 p->gp_start, arg->disk);
1473 n = p->gp_next;
1474 free(p);
1475 }
1476 parts->obsolete = NULL;
1477
1478 /*
1479 * Modify existing but changed partitions
1480 */
1481 for (p = parts->partitions; p != NULL; p = p->gp_next) {
1482 if (!(p->gp_flags & GPEF_ON_DISK))
1483 continue;
1484
1485 if (p->gp_flags & GPEF_RESIZED) {
1486 run_program(RUN_SILENT,
1487 "gpt -n resize -b %" PRIu64 " -s %" PRIu64 "s %s",
1488 p->gp_start, p->gp_size, arg->disk);
1489 p->gp_flags &= ~GPEF_RESIZED;
1490 }
1491
1492 if (!(p->gp_flags & GPEF_MODIFIED))
1493 continue;
1494
1495 if (!gpt_modify_part(parts->dp.disk, p))
1496 return false;
1497 }
1498
1499 /*
1500 * Add new partitions
1501 */
1502 for (p = parts->partitions; p != NULL; p = p->gp_next) {
1503 if (p->gp_flags & GPEF_ON_DISK)
1504 continue;
1505 if (!(p->gp_flags & GPEF_MODIFIED))
1506 continue;
1507
1508 if (p->gp_label[0] == 0)
1509 label_arg[0] = 0;
1510 else
1511 sprintf(label_arg, "-l \'%s\'", p->gp_label);
1512
1513 if (p->gp_type != NULL)
1514 run_program(RUN_SILENT,
1515 "gpt -n add -b %" PRIu64 " -s %" PRIu64
1516 "s -t %s %s %s",
1517 p->gp_start, p->gp_size, p->gp_type->tid,
1518 label_arg, arg->disk);
1519 else
1520 run_program(RUN_SILENT,
1521 "gpt -n add -b %" PRIu64 " -s %" PRIu64
1522 "s %s %s",
1523 p->gp_start, p->gp_size, label_arg, arg->disk);
1524 gpt_apply_attr(arg->disk, "set", p->gp_start, p->gp_attr);
1525 gpt_read_part(arg->disk, p->gp_start, p);
1526 p->gp_flags |= GPEF_ON_DISK;
1527 }
1528
1529 /*
1530 * Additional MD bootloader magic...
1531 */
1532 if (!md_gpt_post_write(&parts->dp, root_id, root_is_new, efi_id,
1533 efi_is_new))
1534 return false;
1535
1536 return true;
1537 }
1538
1539 static part_id
1540 gpt_find_by_name(struct disk_partitions *arg, const char *name)
1541 {
1542 struct gpt_disk_partitions *parts = (struct gpt_disk_partitions*)arg;
1543 struct gpt_part_entry *p;
1544 part_id pno;
1545
1546 for (pno = 0, p = parts->partitions; p != NULL;
1547 p = p->gp_next, pno++) {
1548 if (strcmp(p->gp_label, name) == 0)
1549 return pno;
1550 if (strcmp(p->gp_id, name) == 0)
1551 return pno;
1552 }
1553
1554 return NO_PART;
1555 }
1556
1557 bool
1558 gpt_parts_check(void)
1559 {
1560
1561 check_available_binaries();
1562
1563 return have_gpt && have_dk;
1564 }
1565
1566 static void
1567 gpt_free(struct disk_partitions *arg)
1568 {
1569 struct gpt_disk_partitions *parts = (struct gpt_disk_partitions*)arg;
1570 struct gpt_part_entry *p, *n;
1571
1572 assert(parts != NULL);
1573 for (p = parts->partitions; p != NULL; p = n) {
1574 free(__UNCONST(p->last_mounted));
1575 n = p->gp_next;
1576 free(p);
1577 }
1578 free(__UNCONST(parts->dp.disk));
1579 free(parts);
1580 }
1581
1582 static bool
1583 gpt_custom_attribute_writable(const struct disk_partitions *arg,
1584 part_id ptn, size_t attr_no)
1585 {
1586 const struct gpt_disk_partitions *parts =
1587 (const struct gpt_disk_partitions*)arg;
1588 size_t i;
1589 struct gpt_part_entry *p;
1590
1591 if (attr_no >= arg->pscheme->custom_attribute_count)
1592 return false;
1593
1594 const msg label = arg->pscheme->custom_attributes[attr_no].label;
1595
1596 /* we can not edit the uuid attribute */
1597 if (label == MSG_ptn_uuid)
1598 return false;
1599
1600 /* the label is always editable */
1601 if (label == MSG_ptn_label)
1602 return true;
1603
1604 /* the GPT type is read only */
1605 if (label == MSG_ptn_gpt_type)
1606 return false;
1607
1608 /* BOOTME makes no sense on swap partitions */
1609 for (i = 0, p = parts->partitions; p != NULL; i++, p = p->gp_next)
1610 if (i == ptn)
1611 break;
1612
1613 if (p == NULL)
1614 return false;
1615
1616 if (p->fs_type == FS_SWAP ||
1617 (p->gp_type != NULL && p->gp_type->gent.generic_ptype == PT_swap))
1618 return false;
1619
1620 return true;
1621 }
1622
1623 static const char *
1624 gpt_get_label_str(const struct disk_partitions *arg, part_id ptn)
1625 {
1626 const struct gpt_disk_partitions *parts =
1627 (const struct gpt_disk_partitions*)arg;
1628 size_t i;
1629 struct gpt_part_entry *p;
1630
1631 for (i = 0, p = parts->partitions; p != NULL; i++, p = p->gp_next)
1632 if (i == ptn)
1633 break;
1634
1635 if (p == NULL)
1636 return NULL;
1637
1638 if (p->gp_label[0] != 0)
1639 return p->gp_label;
1640 return p->gp_id;
1641 }
1642
1643 static bool
1644 gpt_format_custom_attribute(const struct disk_partitions *arg,
1645 part_id ptn, size_t attr_no, const struct disk_part_info *info,
1646 char *out, size_t out_space)
1647 {
1648 const struct gpt_disk_partitions *parts =
1649 (const struct gpt_disk_partitions*)arg;
1650 size_t i;
1651 struct gpt_part_entry *p, data;
1652
1653 for (i = 0, p = parts->partitions; p != NULL; i++, p = p->gp_next)
1654 if (i == ptn)
1655 break;
1656
1657 if (p == NULL)
1658 return false;
1659
1660 if (attr_no >= parts->dp.pscheme->custom_attribute_count)
1661 return false;
1662
1663 const msg label = parts->dp.pscheme->custom_attributes[attr_no].label;
1664
1665 if (info != NULL) {
1666 data = *p;
1667 gpt_info_to_part(&data, info, NULL);
1668 p = &data;
1669 }
1670
1671 if (label == MSG_ptn_label)
1672 strlcpy(out, p->gp_label, out_space);
1673 else if (label == MSG_ptn_uuid)
1674 strlcpy(out, p->gp_id, out_space);
1675 else if (label == MSG_ptn_gpt_type) {
1676 if (p->gp_type != NULL)
1677 strlcpy(out, p->gp_type->gent.description, out_space);
1678 else if (out_space > 1)
1679 out[0] = 0;
1680 } else if (label == MSG_ptn_boot)
1681 strlcpy(out, msg_string(p->gp_attr & GPT_ATTR_BOOT ?
1682 MSG_Yes : MSG_No), out_space);
1683 else
1684 return false;
1685
1686 return true;
1687 }
1688
1689 static bool
1690 gpt_custom_attribute_toggle(struct disk_partitions *arg,
1691 part_id ptn, size_t attr_no)
1692 {
1693 const struct gpt_disk_partitions *parts =
1694 (const struct gpt_disk_partitions*)arg;
1695 size_t i;
1696 struct gpt_part_entry *p;
1697
1698 for (i = 0, p = parts->partitions; p != NULL; i++, p = p->gp_next)
1699 if (i == ptn)
1700 break;
1701
1702 if (p == NULL)
1703 return false;
1704
1705 if (attr_no >= parts->dp.pscheme->custom_attribute_count)
1706 return false;
1707
1708 const msg label = parts->dp.pscheme->custom_attributes[attr_no].label;
1709 if (label != MSG_ptn_boot)
1710 return false;
1711
1712 if (p->gp_attr & GPT_ATTR_BOOT) {
1713 p->gp_attr &= ~GPT_ATTR_BOOT;
1714 } else {
1715 for (i = 0, p = parts->partitions; p != NULL;
1716 i++, p = p->gp_next)
1717 if (i == ptn)
1718 p->gp_attr |= GPT_ATTR_BOOT;
1719 else
1720 p->gp_attr &= ~GPT_ATTR_BOOT;
1721 }
1722 return true;
1723 }
1724
1725 static bool
1726 gpt_custom_attribute_set_str(struct disk_partitions *arg,
1727 part_id ptn, size_t attr_no, const char *new_val)
1728 {
1729 const struct gpt_disk_partitions *parts =
1730 (const struct gpt_disk_partitions*)arg;
1731 size_t i;
1732 struct gpt_part_entry *p;
1733
1734 for (i = 0, p = parts->partitions; p != NULL; i++, p = p->gp_next)
1735 if (i == ptn)
1736 break;
1737
1738 if (p == NULL)
1739 return false;
1740
1741 if (attr_no >= parts->dp.pscheme->custom_attribute_count)
1742 return false;
1743
1744 const msg label = parts->dp.pscheme->custom_attributes[attr_no].label;
1745
1746 if (label != MSG_ptn_label)
1747 return false;
1748
1749 strlcpy(p->gp_label, new_val, sizeof(p->gp_label));
1750 return true;
1751 }
1752
1753 static bool
1754 gpt_have_boot_support(const char *disk)
1755 {
1756 #ifdef HAVE_GPT_BOOT
1757 return true;
1758 #else
1759 return false;
1760 #endif
1761 }
1762
1763 const struct disk_part_custom_attribute gpt_custom_attrs[] = {
1764 { .label = MSG_ptn_label, .type = pet_str },
1765 { .label = MSG_ptn_uuid, .type = pet_str },
1766 { .label = MSG_ptn_gpt_type, .type = pet_str },
1767 { .label = MSG_ptn_boot, .type = pet_bool },
1768 };
1769
1770 const struct disk_partitioning_scheme
1771 gpt_parts = {
1772 .name = MSG_parttype_gpt,
1773 .short_name = MSG_parttype_gpt_short,
1774 .part_flag_desc = MSG_gpt_flag_desc,
1775 .custom_attribute_count = __arraycount(gpt_custom_attrs),
1776 .custom_attributes = gpt_custom_attrs,
1777 .get_part_types_count = gpt_type_count,
1778 .get_part_type = gpt_get_ptype,
1779 .get_generic_part_type = gpt_get_generic_type,
1780 .get_fs_part_type = gpt_get_fs_part_type,
1781 .get_default_fstype = gpt_get_default_fstype,
1782 .create_custom_part_type = gpt_create_custom_part_type,
1783 .create_unknown_part_type = gpt_create_unknown_part_type,
1784 .get_part_alignment = gpt_get_part_alignment,
1785 .read_from_disk = gpt_read_from_disk,
1786 .get_cylinder_size = gpt_cyl_size,
1787 .create_new_for_disk = gpt_create_new,
1788 .have_boot_support = gpt_have_boot_support,
1789 .find_by_name = gpt_find_by_name,
1790 .can_add_partition = gpt_can_add_partition,
1791 .custom_attribute_writable = gpt_custom_attribute_writable,
1792 .format_custom_attribute = gpt_format_custom_attribute,
1793 .custom_attribute_toggle = gpt_custom_attribute_toggle,
1794 .custom_attribute_set_str = gpt_custom_attribute_set_str,
1795 .other_partition_identifier = gpt_get_label_str,
1796 .get_part_device = gpt_get_part_device,
1797 .max_free_space_at = gpt_max_free_space_at,
1798 .get_free_spaces = gpt_get_free_spaces,
1799 .adapt_foreign_part_info = generic_adapt_foreign_part_info,
1800 .get_part_info = gpt_get_part_info,
1801 .get_part_attr_str = gpt_get_part_attr_str,
1802 .set_part_info = gpt_set_part_info,
1803 .add_partition = gpt_add_part,
1804 .delete_all_partitions = gpt_delete_all_partitions,
1805 .delete_partition = gpt_delete_partition,
1806 .write_to_disk = gpt_write_to_disk,
1807 .free = gpt_free,
1808 .cleanup = gpt_cleanup,
1809 };
1810