* Add --shared option for creating non-overlapping crypt segments.
[platform/upstream/cryptsetup.git] / lib / libdevmapper.c
1 /*
2  * libdevmapper - device-mapper backend for cryptsetup
3  *
4  * Copyright (C) 2004, Christophe Saout <christophe@saout.de>
5  * Copyright (C) 2004-2007, Clemens Fruhwirth <clemens@endorphin.org>
6  * Copyright (C) 2009-2011, Red Hat, Inc. All rights reserved.
7  *
8  * This program is free software; you can redistribute it and/or
9  * modify it under the terms of the GNU General Public License
10  * version 2 as published by the Free Software Foundation.
11  *
12  * This program is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15  * GNU General Public License for more details.
16  *
17  * You should have received a copy of the GNU General Public License
18  * along with this program; if not, write to the Free Software
19  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
20  */
21
22 #include <stdio.h>
23 #include <dirent.h>
24 #include <errno.h>
25 #include <libdevmapper.h>
26 #include <fcntl.h>
27 #include <linux/fs.h>
28 #include <uuid/uuid.h>
29
30 #include "internal.h"
31 #include "luks.h"
32
33 #define DM_UUID_LEN             129
34 #define DM_UUID_PREFIX          "CRYPT-"
35 #define DM_UUID_PREFIX_LEN      6
36 #define DM_CRYPT_TARGET         "crypt"
37 #define RETRY_COUNT             5
38
39 /* Set if dm-crypt version was probed */
40 static int _dm_crypt_checked = 0;
41 static uint32_t _dm_crypt_flags = 0;
42
43 static int _dm_use_count = 0;
44 static struct crypt_device *_context = NULL;
45
46 /* Check if we have DM flag to instruct kernel to force wipe buffers */
47 #if !HAVE_DECL_DM_TASK_SECURE_DATA
48 static int dm_task_secure_data(struct dm_task *dmt) { return 1; }
49 #endif
50
51 /* Compatibility for old device-mapper without udev support */
52 #if HAVE_DECL_DM_UDEV_DISABLE_DISK_RULES_FLAG
53 #define CRYPT_TEMP_UDEV_FLAGS   DM_UDEV_DISABLE_SUBSYSTEM_RULES_FLAG | \
54                                 DM_UDEV_DISABLE_DISK_RULES_FLAG | \
55                                 DM_UDEV_DISABLE_OTHER_RULES_FLAG
56 #define _dm_task_set_cookie     dm_task_set_cookie
57 #define _dm_udev_wait           dm_udev_wait
58 #else
59 #define CRYPT_TEMP_UDEV_FLAGS   0
60 static int _dm_task_set_cookie(struct dm_task *dmt, uint32_t *cookie, uint16_t flags) { return 0; }
61 static int _dm_udev_wait(uint32_t cookie) { return 0; };
62 #endif
63
64 static int _dm_use_udev(void)
65 {
66 #ifdef USE_UDEV /* cannot be enabled if devmapper is too old */
67         return dm_udev_get_sync_support();
68 #else
69         return 0;
70 #endif
71 }
72
73 __attribute__((format(printf, 4, 5)))
74 static void set_dm_error(int level,
75                          const char *file __attribute__((unused)),
76                          int line __attribute__((unused)),
77                          const char *f, ...)
78 {
79         char *msg = NULL;
80         va_list va;
81
82         va_start(va, f);
83         if (vasprintf(&msg, f, va) > 0) {
84                 if (level < 4) {
85                         log_err(_context, msg);
86                         log_err(_context, "\n");
87                 } else
88                         log_dbg(msg);
89         }
90         free(msg);
91         va_end(va);
92 }
93
94 static int _dm_simple(int task, const char *name, int udev_wait);
95
96 static void _dm_set_crypt_compat(const char *dm_version, unsigned crypt_maj,
97                                  unsigned crypt_min, unsigned crypt_patch)
98 {
99         unsigned dm_maj, dm_min, dm_patch;
100
101         if (sscanf(dm_version, "%u.%u.%u", &dm_maj, &dm_min, &dm_patch) != 3)
102                 dm_maj = dm_min = dm_patch = 0;
103
104         log_dbg("Detected dm-crypt version %i.%i.%i, dm-ioctl version %u.%u.%u.",
105                 crypt_maj, crypt_min, crypt_patch, dm_maj, dm_min, dm_patch);
106
107         if (crypt_maj >= 1 && crypt_min >= 2)
108                 _dm_crypt_flags |= DM_KEY_WIPE_SUPPORTED;
109         else
110                 log_dbg("Suspend and resume disabled, no wipe key support.");
111
112         if (crypt_maj >= 1 && crypt_min >= 10)
113                 _dm_crypt_flags |= DM_LMK_SUPPORTED;
114
115         if (dm_maj >= 4 && dm_min >= 20)
116                 _dm_crypt_flags |= DM_SECURE_SUPPORTED;
117
118         /* not perfect, 2.6.33 supports with 1.7.0 */
119         if (crypt_maj >= 1 && crypt_min >= 8)
120                 _dm_crypt_flags |= DM_PLAIN64_SUPPORTED;
121
122         /* Repeat test if dm-crypt is not present */
123         if (crypt_maj > 0)
124                 _dm_crypt_checked = 1;
125 }
126
127 static int _dm_check_versions(void)
128 {
129         struct dm_task *dmt;
130         struct dm_versions *target, *last_target;
131         char dm_version[16];
132
133         if (_dm_crypt_checked)
134                 return 1;
135
136         /* FIXME: add support to DM so it forces crypt target module load here */
137         if (!(dmt = dm_task_create(DM_DEVICE_LIST_VERSIONS)))
138                 return 0;
139
140         if (!dm_task_run(dmt)) {
141                 dm_task_destroy(dmt);
142                 return 0;
143         }
144
145         if (!dm_task_get_driver_version(dmt, dm_version, sizeof(dm_version))) {
146                 dm_task_destroy(dmt);
147                 return 0;
148         }
149
150         target = dm_task_get_versions(dmt);
151         do {
152                 last_target = target;
153                 if (!strcmp(DM_CRYPT_TARGET, target->name)) {
154                         _dm_set_crypt_compat(dm_version,
155                                              (unsigned)target->version[0],
156                                              (unsigned)target->version[1],
157                                              (unsigned)target->version[2]);
158                 }
159                 target = (struct dm_versions *)((char *) target + target->next);
160         } while (last_target != target);
161
162         dm_task_destroy(dmt);
163         return 1;
164 }
165
166 uint32_t dm_flags(void)
167 {
168         if (!_dm_crypt_checked)
169                 _dm_check_versions();
170
171         return _dm_crypt_flags;
172 }
173
174 int dm_init(struct crypt_device *context, int check_kernel)
175 {
176         if (!_dm_use_count++) {
177                 log_dbg("Initialising device-mapper backend%s, UDEV is %sabled.",
178                         check_kernel ? "" : " (NO kernel check requested)",
179                         _dm_use_udev() ? "en" : "dis");
180                 if (check_kernel && !_dm_check_versions()) {
181                         log_err(context, _("Cannot initialize device-mapper. Is dm_mod kernel module loaded?\n"));
182                         return -1;
183                 }
184                 if (getuid() || geteuid())
185                         log_dbg(("WARNING: Running as a non-root user. Functionality may be unavailable."));
186                 dm_log_init(set_dm_error);
187                 dm_log_init_verbose(10);
188         }
189
190         // FIXME: global context is not safe
191         if (context)
192                 _context = context;
193
194         return 1;       /* unsafe memory */
195 }
196
197 void dm_exit(void)
198 {
199         if (_dm_use_count && (!--_dm_use_count)) {
200                 log_dbg("Releasing device-mapper backend.");
201                 dm_log_init_verbose(0);
202                 dm_log_init(NULL);
203                 dm_lib_release();
204                 _context = NULL;
205         }
206 }
207
208 /* Return path to DM device */
209 char *dm_device_path(const char *prefix, int major, int minor)
210 {
211         struct dm_task *dmt;
212         const char *name;
213         char path[PATH_MAX];
214
215         if (!(dmt = dm_task_create(DM_DEVICE_STATUS)))
216                 return NULL;
217         if (!dm_task_set_minor(dmt, minor) ||
218             !dm_task_set_major(dmt, major) ||
219             !dm_task_run(dmt) ||
220             !(name = dm_task_get_name(dmt))) {
221                 dm_task_destroy(dmt);
222                 return NULL;
223         }
224
225         if (snprintf(path, sizeof(path), "%s%s", prefix ?: "", name) < 0)
226                 path[0] = '\0';
227
228         dm_task_destroy(dmt);
229
230         return strdup(path);
231 }
232
233 static void hex_key(char *hexkey, size_t key_size, const char *key)
234 {
235         unsigned i;
236
237         for(i = 0; i < key_size; i++)
238                 sprintf(&hexkey[i * 2], "%02x", (unsigned char)key[i]);
239 }
240
241 static char *get_params(const char *device, uint64_t skip, uint64_t offset,
242                         const char *cipher, size_t key_size, const char *key)
243 {
244         char *params;
245         char *hexkey;
246
247         hexkey = crypt_safe_alloc(key_size * 2 + 1);
248         if (!hexkey)
249                 return NULL;
250
251         hex_key(hexkey, key_size, key);
252
253         params = crypt_safe_alloc(strlen(hexkey) + strlen(cipher) + strlen(device) + 64);
254         if (!params)
255                 goto out;
256
257         sprintf(params, "%s %s %" PRIu64 " %s %" PRIu64,
258                 cipher, hexkey, skip, device, offset);
259
260 out:
261         crypt_safe_free(hexkey);
262         return params;
263 }
264
265 /* DM helpers */
266 static int _dm_simple(int task, const char *name, int udev_wait)
267 {
268         int r = 0;
269         struct dm_task *dmt;
270         uint32_t cookie = 0;
271
272         if (!_dm_use_udev())
273                 udev_wait = 0;
274
275         if (!(dmt = dm_task_create(task)))
276                 return 0;
277
278         if (name && !dm_task_set_name(dmt, name))
279                 goto out;
280
281         if (udev_wait && !_dm_task_set_cookie(dmt, &cookie, 0))
282                 goto out;
283
284         r = dm_task_run(dmt);
285
286         if (udev_wait)
287                 (void)_dm_udev_wait(cookie);
288
289       out:
290         dm_task_destroy(dmt);
291         return r;
292 }
293
294 static int _error_device(const char *name, size_t size)
295 {
296         struct dm_task *dmt;
297         int r = 0;
298
299         if (!(dmt = dm_task_create(DM_DEVICE_RELOAD)))
300                 return 0;
301
302         if (!dm_task_set_name(dmt, name))
303                 goto error;
304
305         if (!dm_task_add_target(dmt, UINT64_C(0), size, "error", ""))
306                 goto error;
307
308         if (!dm_task_set_ro(dmt))
309                 goto error;
310
311         if (!dm_task_no_open_count(dmt))
312                 goto error;
313
314         if (!dm_task_run(dmt))
315                 goto error;
316
317         if (!_dm_simple(DM_DEVICE_RESUME, name, 1)) {
318                 _dm_simple(DM_DEVICE_CLEAR, name, 0);
319                 goto error;
320         }
321
322         r = 1;
323
324 error:
325         dm_task_destroy(dmt);
326         return r;
327 }
328
329 int dm_remove_device(const char *name, int force, uint64_t size)
330 {
331         int r = -EINVAL;
332         int retries = force ? RETRY_COUNT : 1;
333         int error_target = 0;
334
335         if (!name || (force && !size))
336                 return -EINVAL;
337
338         do {
339                 r = _dm_simple(DM_DEVICE_REMOVE, name, 1) ? 0 : -EINVAL;
340                 if (--retries && r) {
341                         log_dbg("WARNING: other process locked internal device %s, %s.",
342                                 name, retries ? "retrying remove" : "giving up");
343                         if (force && (crypt_get_debug_level() == CRYPT_LOG_DEBUG))
344                                 debug_processes_using_device(name);
345                         sleep(1);
346                         if (force && !error_target) {
347                                 /* If force flag is set, replace device with error, read-only target.
348                                  * it should stop processes from reading it and also removed underlying
349                                  * device from mapping, so it is usable again.
350                                  * Force flag should be used only for temporary devices, which are
351                                  * intended to work inside cryptsetup only!
352                                  * Anyway, if some process try to read temporary cryptsetup device,
353                                  * it is bug - no other process should try touch it (e.g. udev).
354                                  */
355                                 _error_device(name, size);
356                                 error_target = 1;
357                         }
358                 }
359         } while (r == -EINVAL && retries);
360
361         dm_task_update_nodes();
362
363         return r;
364 }
365
366 #define UUID_LEN 37 /* 36 + \0, libuuid ... */
367 /*
368  * UUID has format: CRYPT-<devicetype>-[<uuid>-]<device name>
369  * CRYPT-PLAIN-name
370  * CRYPT-LUKS1-00000000000000000000000000000000-name
371  * CRYPT-TEMP-name
372  */
373 static void dm_prepare_uuid(const char *name, const char *type, const char *uuid, char *buf, size_t buflen)
374 {
375         char *ptr, uuid2[UUID_LEN] = {0};
376         uuid_t uu;
377         unsigned i = 0;
378
379         /* Remove '-' chars */
380         if (uuid && !uuid_parse(uuid, uu)) {
381                 for (ptr = uuid2, i = 0; i < UUID_LEN; i++)
382                         if (uuid[i] != '-') {
383                                 *ptr = uuid[i];
384                                 ptr++;
385                         }
386         }
387
388         i = snprintf(buf, buflen, DM_UUID_PREFIX "%s%s%s%s%s",
389                 type ?: "", type ? "-" : "",
390                 uuid2[0] ? uuid2 : "", uuid2[0] ? "-" : "",
391                 name);
392
393         log_dbg("DM-UUID is %s", buf);
394         if (i >= buflen)
395                 log_err(NULL, _("DM-UUID for device %s was truncated.\n"), name);
396 }
397
398 int dm_create_device(const char *name,
399                      const char *device,
400                      const char *cipher,
401                      const char *type,
402                      const char *uuid,
403                      uint64_t size,
404                      uint64_t skip,
405                      uint64_t offset,
406                      size_t key_size,
407                      const char *key,
408                      int read_only,
409                      int reload)
410 {
411         struct dm_task *dmt = NULL;
412         struct dm_info dmi;
413         char *params = NULL;
414         char *error = NULL;
415         char dev_uuid[DM_UUID_LEN] = {0};
416         int r = -EINVAL;
417         uint32_t read_ahead = 0;
418         uint32_t cookie = 0;
419         uint16_t udev_flags = 0;
420
421         params = get_params(device, skip, offset, cipher, key_size, key);
422         if (!params)
423                 goto out_no_removal;
424
425         if (type && !strncmp(type, "TEMP", 4))
426                 udev_flags = CRYPT_TEMP_UDEV_FLAGS;
427
428         /* All devices must have DM_UUID, only resize on old device is exception */
429         if (reload) {
430                 if (!(dmt = dm_task_create(DM_DEVICE_RELOAD)))
431                         goto out_no_removal;
432
433                 if (!dm_task_set_name(dmt, name))
434                         goto out_no_removal;
435         } else {
436                 dm_prepare_uuid(name, type, uuid, dev_uuid, sizeof(dev_uuid));
437
438                 if (!(dmt = dm_task_create(DM_DEVICE_CREATE)))
439                         goto out_no_removal;
440
441                 if (!dm_task_set_name(dmt, name))
442                         goto out_no_removal;
443
444                 if (!dm_task_set_uuid(dmt, dev_uuid))
445                         goto out_no_removal;
446
447                 if (_dm_use_udev() && !_dm_task_set_cookie(dmt, &cookie, udev_flags))
448                         goto out_no_removal;
449         }
450
451         if ((dm_flags() & DM_SECURE_SUPPORTED) && !dm_task_secure_data(dmt))
452                 goto out_no_removal;
453         if (read_only && !dm_task_set_ro(dmt))
454                 goto out_no_removal;
455         if (!dm_task_add_target(dmt, 0, size, DM_CRYPT_TARGET, params))
456                 goto out_no_removal;
457
458 #ifdef DM_READ_AHEAD_MINIMUM_FLAG
459         if (device_read_ahead(device, &read_ahead) &&
460             !dm_task_set_read_ahead(dmt, read_ahead, DM_READ_AHEAD_MINIMUM_FLAG))
461                 goto out_no_removal;
462 #endif
463
464         if (!dm_task_run(dmt))
465                 goto out_no_removal;
466
467         if (reload) {
468                 dm_task_destroy(dmt);
469                 if (!(dmt = dm_task_create(DM_DEVICE_RESUME)))
470                         goto out;
471                 if (!dm_task_set_name(dmt, name))
472                         goto out;
473                 if (uuid && !dm_task_set_uuid(dmt, dev_uuid))
474                         goto out;
475                 if (_dm_use_udev() && !_dm_task_set_cookie(dmt, &cookie, udev_flags))
476                         goto out;
477                 if (!dm_task_run(dmt))
478                         goto out;
479         }
480
481         if (!dm_task_get_info(dmt, &dmi))
482                 goto out;
483
484         r = 0;
485 out:
486         if (_dm_use_udev()) {
487                 (void)_dm_udev_wait(cookie);
488                 cookie = 0;
489         }
490
491         if (r < 0 && !reload) {
492                 if (get_error())
493                         error = strdup(get_error());
494
495                 dm_remove_device(name, 0, 0);
496
497                 if (error) {
498                         set_error(error);
499                         free(error);
500                 }
501         }
502
503 out_no_removal:
504         if (cookie && _dm_use_udev())
505                 (void)_dm_udev_wait(cookie);
506
507         if (params)
508                 crypt_safe_free(params);
509         if (dmt)
510                 dm_task_destroy(dmt);
511
512         dm_task_update_nodes();
513         return r;
514 }
515
516 int dm_status_device(const char *name)
517 {
518         struct dm_task *dmt;
519         struct dm_info dmi;
520         uint64_t start, length;
521         char *target_type, *params;
522         void *next = NULL;
523         int r = -EINVAL;
524
525         if (!(dmt = dm_task_create(DM_DEVICE_STATUS)))
526                 goto out;
527
528         if (!dm_task_set_name(dmt, name))
529                 goto out;
530
531         if (!dm_task_run(dmt))
532                 goto out;
533
534         if (!dm_task_get_info(dmt, &dmi))
535                 goto out;
536
537         if (!dmi.exists) {
538                 r = -ENODEV;
539                 goto out;
540         }
541
542         next = dm_get_next_target(dmt, next, &start, &length,
543                                   &target_type, &params);
544         if (!target_type || strcmp(target_type, DM_CRYPT_TARGET) != 0 ||
545             start != 0 || next)
546                 r = -EINVAL;
547         else
548                 r = (dmi.open_count > 0);
549 out:
550         if (dmt)
551                 dm_task_destroy(dmt);
552
553         return r;
554 }
555
556 int dm_query_device(const char *name,
557                     char **device,
558                     uint64_t *size,
559                     uint64_t *skip,
560                     uint64_t *offset,
561                     char **cipher,
562                     int *key_size,
563                     char **key,
564                     int *read_only,
565                     int *suspended,
566                     char **uuid)
567 {
568         struct dm_task *dmt;
569         struct dm_info dmi;
570         uint64_t start, length, val64;
571         char *target_type, *params, *rcipher, *key_, *rdevice, *endp, buffer[3];
572         const char *tmp_uuid;
573         void *next = NULL;
574         int i, r = -EINVAL;
575
576         if (!(dmt = dm_task_create(DM_DEVICE_TABLE)))
577                 goto out;
578         if ((dm_flags() & DM_SECURE_SUPPORTED) && !dm_task_secure_data(dmt))
579                 goto out;
580         if (!dm_task_set_name(dmt, name))
581                 goto out;
582         r = -ENODEV;
583         if (!dm_task_run(dmt))
584                 goto out;
585
586         r = -EINVAL;
587         if (!dm_task_get_info(dmt, &dmi))
588                 goto out;
589
590         if (!dmi.exists) {
591                 r = -ENODEV;
592                 goto out;
593         }
594
595         next = dm_get_next_target(dmt, next, &start, &length,
596                                   &target_type, &params);
597         if (!target_type || strcmp(target_type, DM_CRYPT_TARGET) != 0 ||
598             start != 0 || next)
599                 goto out;
600
601         if (size)
602                 *size = length;
603
604         rcipher = strsep(&params, " ");
605         /* cipher */
606         if (cipher)
607                 *cipher = strdup(rcipher);
608
609         /* skip */
610         key_ = strsep(&params, " ");
611         if (!params)
612                 goto out;
613         val64 = strtoull(params, &params, 10);
614         if (*params != ' ')
615                 goto out;
616         params++;
617         if (skip)
618                 *skip = val64;
619
620         /* device */
621         rdevice = strsep(&params, " ");
622         if (device)
623                 *device = crypt_lookup_dev(rdevice);
624
625         /*offset */
626         if (!params)
627                 goto out;
628         val64 = strtoull(params, &params, 10);
629         if (*params)
630                 goto out;
631         if (offset)
632                 *offset = val64;
633
634         /* key_size */
635         if (key_size)
636                 *key_size = strlen(key_) / 2;
637
638         /* key */
639         if (key_size && key) {
640                 *key = crypt_safe_alloc(*key_size);
641                 if (!*key) {
642                         r = -ENOMEM;
643                         goto out;
644                 }
645
646                 buffer[2] = '\0';
647                 for(i = 0; i < *key_size; i++) {
648                         memcpy(buffer, &key_[i * 2], 2);
649                         (*key)[i] = strtoul(buffer, &endp, 16);
650                         if (endp != &buffer[2]) {
651                                 crypt_safe_free(key);
652                                 *key = NULL;
653                                 goto out;
654                         }
655                 }
656         }
657         memset(key_, 0, strlen(key_));
658
659         if (read_only)
660                 *read_only = dmi.read_only;
661
662         if (suspended)
663                 *suspended = dmi.suspended;
664
665         if (uuid && (tmp_uuid = dm_task_get_uuid(dmt)) &&
666             !strncmp(tmp_uuid, DM_UUID_PREFIX, DM_UUID_PREFIX_LEN))
667                 *uuid = strdup(tmp_uuid + DM_UUID_PREFIX_LEN);
668
669         r = (dmi.open_count > 0);
670 out:
671         if (dmt)
672                 dm_task_destroy(dmt);
673
674         return r;
675 }
676
677 static int _dm_message(const char *name, const char *msg)
678 {
679         int r = 0;
680         struct dm_task *dmt;
681
682         if (!(dmt = dm_task_create(DM_DEVICE_TARGET_MSG)))
683                 return 0;
684
685         if ((dm_flags() & DM_SECURE_SUPPORTED) && !dm_task_secure_data(dmt))
686                 goto out;
687
688         if (name && !dm_task_set_name(dmt, name))
689                 goto out;
690
691         if (!dm_task_set_sector(dmt, (uint64_t) 0))
692                 goto out;
693
694         if (!dm_task_set_message(dmt, msg))
695                 goto out;
696
697         r = dm_task_run(dmt);
698
699       out:
700         dm_task_destroy(dmt);
701         return r;
702 }
703
704 int dm_suspend_and_wipe_key(const char *name)
705 {
706         if (!_dm_check_versions())
707                 return -ENOTSUP;
708
709         if (!(_dm_crypt_flags & DM_KEY_WIPE_SUPPORTED))
710                 return -ENOTSUP;
711
712         if (!_dm_simple(DM_DEVICE_SUSPEND, name, 0))
713                 return -EINVAL;
714
715         if (!_dm_message(name, "key wipe")) {
716                 _dm_simple(DM_DEVICE_RESUME, name, 1);
717                 return -EINVAL;
718         }
719
720         return 0;
721 }
722
723 int dm_resume_and_reinstate_key(const char *name,
724                                 size_t key_size,
725                                 const char *key)
726 {
727         int msg_size = key_size * 2 + 10; // key set <key>
728         char *msg;
729         int r = 0;
730
731         if (!_dm_check_versions())
732                 return -ENOTSUP;
733
734         if (!(_dm_crypt_flags & DM_KEY_WIPE_SUPPORTED))
735                 return -ENOTSUP;
736
737         msg = crypt_safe_alloc(msg_size);
738         if (!msg)
739                 return -ENOMEM;
740
741         memset(msg, 0, msg_size);
742         strcpy(msg, "key set ");
743         hex_key(&msg[8], key_size, key);
744
745         if (!_dm_message(name, msg) ||
746             !_dm_simple(DM_DEVICE_RESUME, name, 1))
747                 r = -EINVAL;
748
749         crypt_safe_free(msg);
750         return r;
751 }
752
753 const char *dm_get_dir(void)
754 {
755         return dm_dir();
756 }
757
758 int dm_is_dm_device(int major, int minor)
759 {
760         return dm_is_dm_major((uint32_t)major);
761 }
762
763 int dm_is_dm_kernel_name(const char *name)
764 {
765         return strncmp(name, "dm-", 3) ? 0 : 1;
766 }
767
768 int dm_check_segment(const char *name, uint64_t offset, uint64_t size)
769 {
770         uint64_t seg_size, seg_offset;
771         int r;
772
773         log_dbg("Checking segments for device %s.", name);
774
775         r = dm_query_device(name, NULL, &seg_size, NULL, &seg_offset,
776                             NULL, NULL, NULL, NULL, NULL, NULL);
777         if (r < 0)
778                 return r;
779
780         if (offset >= (seg_offset + seg_size) || (offset + size) <= seg_offset)
781                 r = 0;
782         else
783                 r = -EBUSY;
784
785         log_dbg("seg: %" PRIu64 " - %" PRIu64 ", new %" PRIu64 " - %" PRIu64 "%s",
786                seg_offset, seg_offset + seg_size, offset, offset + size,
787                r ? " (overlapping)" : " (ok)");
788
789         return r;
790 }