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53e1b683 1/* SPDX-License-Identifier: LGPL-2.1+ */
2e3d0692 2
a8fbdf54
TA
3#include <dirent.h>
4#include <errno.h>
2e3d0692 5#include <fcntl.h>
a8fbdf54
TA
6#include <limits.h>
7#include <stdio.h>
8#include <stdlib.h>
cf0fbc49 9#include <string.h>
a8fbdf54 10#include <sys/stat.h>
cf0fbc49 11#include <unistd.h>
2e3d0692 12
a8fbdf54
TA
13#include "sd-id128.h"
14
b5efdb8a 15#include "alloc-util.h"
a0956174 16#include "dirent-util.h"
3ffd4af2
LP
17#include "efivars.h"
18#include "fd-util.h"
c004493c 19#include "io-util.h"
a8fbdf54 20#include "macro.h"
6bedfcbb 21#include "parse-util.h"
15a5e950 22#include "stdio-util.h"
a8fbdf54 23#include "time-util.h"
2e3d0692 24#include "utf8.h"
3ffd4af2 25#include "util.h"
5bdf2243 26#include "virt.h"
2e3d0692 27
349cc4a5 28#if ENABLE_EFI
b872e9a0 29
0974a682
KS
30#define LOAD_OPTION_ACTIVE 0x00000001
31#define MEDIA_DEVICE_PATH 0x04
32#define MEDIA_HARDDRIVE_DP 0x01
33#define MEDIA_FILEPATH_DP 0x04
34#define SIGNATURE_TYPE_GUID 0x02
35#define MBR_TYPE_EFI_PARTITION_TABLE_HEADER 0x02
36#define END_DEVICE_PATH_TYPE 0x7f
37#define END_ENTIRE_DEVICE_PATH_SUBTYPE 0xff
5bdf2243 38#define EFI_OS_INDICATIONS_BOOT_TO_FW_UI 0x0000000000000001
0974a682
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39
40struct boot_option {
41 uint32_t attr;
42 uint16_t path_len;
43 uint16_t title[];
885fdebc 44} _packed_;
0974a682
KS
45
46struct drive_path {
47 uint32_t part_nr;
48 uint64_t part_start;
49 uint64_t part_size;
50 char signature[16];
51 uint8_t mbr_type;
52 uint8_t signature_type;
885fdebc 53} _packed_;
0974a682
KS
54
55struct device_path {
56 uint8_t type;
57 uint8_t sub_type;
58 uint16_t length;
59 union {
60 uint16_t path[0];
61 struct drive_path drive;
62 };
885fdebc 63} _packed_;
0974a682 64
9cde64ff 65bool is_efi_boot(void) {
34e5a31e
LP
66 return access("/sys/firmware/efi", F_OK) >= 0;
67}
68
bc6f2e7c 69static int read_flag(const char *varname) {
b47d419c 70 _cleanup_free_ void *v = NULL;
bc6f2e7c 71 uint8_t b;
e22c567f
LP
72 size_t s;
73 int r;
bc6f2e7c
KS
74
75 r = efi_get_variable(EFI_VENDOR_GLOBAL, varname, NULL, &v, &s);
76 if (r < 0)
77 return r;
78
b47d419c
ZJS
79 if (s != 1)
80 return -EINVAL;
bc6f2e7c
KS
81
82 b = *(uint8_t *)v;
e22c567f 83 return b > 0;
bc6f2e7c
KS
84}
85
9df49b33
TG
86bool is_efi_secure_boot(void) {
87 return read_flag("SecureBoot") > 0;
bc6f2e7c
KS
88}
89
9df49b33
TG
90bool is_efi_secure_boot_setup_mode(void) {
91 return read_flag("SetupMode") > 0;
bc6f2e7c
KS
92}
93
5bdf2243 94int efi_reboot_to_firmware_supported(void) {
5bdf2243 95 _cleanup_free_ void *v = NULL;
e22c567f
LP
96 uint64_t b;
97 size_t s;
98 int r;
5bdf2243 99
75f86906 100 if (!is_efi_boot() || detect_container() > 0)
5bdf2243
JJ
101 return -EOPNOTSUPP;
102
103 r = efi_get_variable(EFI_VENDOR_GLOBAL, "OsIndicationsSupported", NULL, &v, &s);
846ab104
LP
104 if (r == -ENOENT) /* variable doesn't exist? it's not supported then */
105 return -EOPNOTSUPP;
5bdf2243
JJ
106 if (r < 0)
107 return r;
e22c567f 108 if (s != sizeof(uint64_t))
5bdf2243
JJ
109 return -EINVAL;
110
e22c567f
LP
111 b = *(uint64_t*) v;
112 if (!(b & EFI_OS_INDICATIONS_BOOT_TO_FW_UI))
113 return -EOPNOTSUPP; /* bit unset? it's not supported then */
114
115 return 0;
5bdf2243
JJ
116}
117
118static int get_os_indications(uint64_t *os_indication) {
5bdf2243 119 _cleanup_free_ void *v = NULL;
e22c567f
LP
120 size_t s;
121 int r;
5bdf2243
JJ
122
123 r = efi_reboot_to_firmware_supported();
124 if (r < 0)
125 return r;
126
127 r = efi_get_variable(EFI_VENDOR_GLOBAL, "OsIndications", NULL, &v, &s);
6b62bbbc
LP
128 if (r == -ENOENT) {
129 /* Some firmware implementations that do support
130 * OsIndications and report that with
131 * OsIndicationsSupported will remove the
132 * OsIndications variable when it is unset. Let's
133 * pretend it's 0 then, to hide this implementation
134 * detail. Note that this call will return -ENOENT
135 * then only if the support for OsIndications is
136 * missing entirely, as determined by
137 * efi_reboot_to_firmware_supported() above. */
138 *os_indication = 0;
139 return 0;
140 } else if (r < 0)
5bdf2243
JJ
141 return r;
142 else if (s != sizeof(uint64_t))
143 return -EINVAL;
144
145 *os_indication = *(uint64_t *)v;
146 return 0;
147}
148
149int efi_get_reboot_to_firmware(void) {
150 int r;
151 uint64_t b;
152
153 r = get_os_indications(&b);
154 if (r < 0)
155 return r;
156
157 return !!(b & EFI_OS_INDICATIONS_BOOT_TO_FW_UI);
158}
159
160int efi_set_reboot_to_firmware(bool value) {
161 int r;
162 uint64_t b, b_new;
163
164 r = get_os_indications(&b);
165 if (r < 0)
166 return r;
167
168 if (value)
169 b_new = b | EFI_OS_INDICATIONS_BOOT_TO_FW_UI;
170 else
171 b_new = b & ~EFI_OS_INDICATIONS_BOOT_TO_FW_UI;
172
173 /* Avoid writing to efi vars store if we can due to firmware bugs. */
174 if (b != b_new)
175 return efi_set_variable(EFI_VENDOR_GLOBAL, "OsIndications", &b_new, sizeof(uint64_t));
176
177 return 0;
178}
179
9cde64ff
LP
180int efi_get_variable(
181 sd_id128_t vendor,
182 const char *name,
183 uint32_t *attribute,
184 void **value,
185 size_t *size) {
186
2e3d0692
LP
187 _cleanup_close_ int fd = -1;
188 _cleanup_free_ char *p = NULL;
189 uint32_t a;
190 ssize_t n;
191 struct stat st;
ad7bcf52 192 _cleanup_free_ void *buf = NULL;
2e3d0692
LP
193
194 assert(name);
195 assert(value);
196 assert(size);
197
198 if (asprintf(&p,
199 "/sys/firmware/efi/efivars/%s-%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
200 name, SD_ID128_FORMAT_VAL(vendor)) < 0)
201 return -ENOMEM;
202
203 fd = open(p, O_RDONLY|O_NOCTTY|O_CLOEXEC);
204 if (fd < 0)
205 return -errno;
206
207 if (fstat(fd, &st) < 0)
208 return -errno;
209 if (st.st_size < 4)
210 return -EIO;
211 if (st.st_size > 4*1024*1024 + 4)
212 return -E2BIG;
213
214 n = read(fd, &a, sizeof(a));
215 if (n < 0)
9cde64ff 216 return -errno;
2e3d0692
LP
217 if (n != sizeof(a))
218 return -EIO;
219
0797f232
ZJS
220 buf = malloc(st.st_size - 4 + 2);
221 if (!buf)
2e3d0692
LP
222 return -ENOMEM;
223
0797f232
ZJS
224 n = read(fd, buf, (size_t) st.st_size - 4);
225 if (n < 0)
742af54a 226 return -errno;
0797f232 227 if (n != (ssize_t) st.st_size - 4)
2e3d0692 228 return -EIO;
2e3d0692
LP
229
230 /* Always NUL terminate (2 bytes, to protect UTF-16) */
0797f232
ZJS
231 ((char*) buf)[st.st_size - 4] = 0;
232 ((char*) buf)[st.st_size - 4 + 1] = 0;
2e3d0692 233
ae2a15bc 234 *value = TAKE_PTR(buf);
ff47c895 235 *size = (size_t) st.st_size - 4;
2e3d0692
LP
236
237 if (attribute)
238 *attribute = a;
239
240 return 0;
241}
242
0974a682
KS
243int efi_set_variable(
244 sd_id128_t vendor,
245 const char *name,
246 const void *value,
247 size_t size) {
248
249 struct var {
250 uint32_t attr;
251 char buf[];
b7749eb5
ZJS
252 } _packed_ * _cleanup_free_ buf = NULL;
253 _cleanup_free_ char *p = NULL;
254 _cleanup_close_ int fd = -1;
0974a682
KS
255
256 assert(name);
e1e26566 257 assert(value || size == 0);
0974a682
KS
258
259 if (asprintf(&p,
260 "/sys/firmware/efi/efivars/%s-%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
261 name, SD_ID128_FORMAT_VAL(vendor)) < 0)
262 return -ENOMEM;
263
264 if (size == 0) {
b7749eb5
ZJS
265 if (unlink(p) < 0)
266 return -errno;
267 return 0;
0974a682
KS
268 }
269
270 fd = open(p, O_WRONLY|O_CREAT|O_NOCTTY|O_CLOEXEC, 0644);
b7749eb5
ZJS
271 if (fd < 0)
272 return -errno;
0974a682
KS
273
274 buf = malloc(sizeof(uint32_t) + size);
b7749eb5
ZJS
275 if (!buf)
276 return -ENOMEM;
0974a682
KS
277
278 buf->attr = EFI_VARIABLE_NON_VOLATILE|EFI_VARIABLE_BOOTSERVICE_ACCESS|EFI_VARIABLE_RUNTIME_ACCESS;
279 memcpy(buf->buf, value, size);
280
b7749eb5 281 return loop_write(fd, buf, sizeof(uint32_t) + size, false);
0974a682
KS
282}
283
9cde64ff 284int efi_get_variable_string(sd_id128_t vendor, const char *name, char **p) {
7b4d7cc0 285 _cleanup_free_ void *s = NULL;
39883f62 286 size_t ss = 0;
9cde64ff
LP
287 int r;
288 char *x;
7b4d7cc0 289
9cde64ff
LP
290 r = efi_get_variable(vendor, name, NULL, &s, &ss);
291 if (r < 0)
292 return r;
293
294 x = utf16_to_utf8(s, ss);
295 if (!x)
296 return -ENOMEM;
297
298 *p = x;
299 return 0;
7b4d7cc0
KS
300}
301
302static size_t utf16_size(const uint16_t *s) {
303 size_t l = 0;
304
305 while (s[l] > 0)
306 l++;
9cde64ff 307
7b4d7cc0
KS
308 return (l+1) * sizeof(uint16_t);
309}
310
311static void efi_guid_to_id128(const void *guid, sd_id128_t *id128) {
312 struct uuid {
313 uint32_t u1;
314 uint16_t u2;
315 uint16_t u3;
316 uint8_t u4[8];
317 } _packed_;
318 const struct uuid *uuid = guid;
319
320 id128->bytes[0] = (uuid->u1 >> 24) & 0xff;
321 id128->bytes[1] = (uuid->u1 >> 16) & 0xff;
322 id128->bytes[2] = (uuid->u1 >> 8) & 0xff;
323 id128->bytes[3] = (uuid->u1) & 0xff;
324 id128->bytes[4] = (uuid->u2 >> 8) & 0xff;
325 id128->bytes[5] = (uuid->u2) & 0xff;
326 id128->bytes[6] = (uuid->u3 >> 8) & 0xff;
327 id128->bytes[7] = (uuid->u3) & 0xff;
328 memcpy(&id128->bytes[8], uuid->u4, sizeof(uuid->u4));
329}
330
9cde64ff
LP
331int efi_get_boot_option(
332 uint16_t id,
333 char **title,
334 sd_id128_t *part_uuid,
0974a682
KS
335 char **path,
336 bool *active) {
7b4d7cc0 337
9cde64ff
LP
338 char boot_id[9];
339 _cleanup_free_ uint8_t *buf = NULL;
7b4d7cc0
KS
340 size_t l;
341 struct boot_option *header;
342 size_t title_size;
b7749eb5 343 _cleanup_free_ char *s = NULL, *p = NULL;
7b4d7cc0 344 sd_id128_t p_uuid = SD_ID128_NULL;
a8436474 345 int r;
7b4d7cc0 346
b7749eb5 347 xsprintf(boot_id, "Boot%04X", id);
a8436474
ZJS
348 r = efi_get_variable(EFI_VENDOR_GLOBAL, boot_id, NULL, (void **)&buf, &l);
349 if (r < 0)
350 return r;
7b4d7cc0
KS
351 if (l < sizeof(struct boot_option))
352 return -ENOENT;
353
354 header = (struct boot_option *)buf;
355 title_size = utf16_size(header->title);
356 if (title_size > l - offsetof(struct boot_option, title))
357 return -EINVAL;
358
5483a186
ZJS
359 if (title) {
360 s = utf16_to_utf8(header->title, title_size);
b7749eb5
ZJS
361 if (!s)
362 return -ENOMEM;
7b4d7cc0
KS
363 }
364
365 if (header->path_len > 0) {
9cde64ff 366 uint8_t *dbuf;
7b4d7cc0
KS
367 size_t dnext;
368
369 dbuf = buf + offsetof(struct boot_option, title) + title_size;
370 dnext = 0;
371 while (dnext < header->path_len) {
372 struct device_path *dpath;
373
374 dpath = (struct device_path *)(dbuf + dnext);
375 if (dpath->length < 4)
376 break;
377
378 /* Type 0x7F – End of Hardware Device Path, Sub-Type 0xFF – End Entire Device Path */
0974a682 379 if (dpath->type == END_DEVICE_PATH_TYPE && dpath->sub_type == END_ENTIRE_DEVICE_PATH_SUBTYPE)
7b4d7cc0
KS
380 break;
381
382 dnext += dpath->length;
383
384 /* Type 0x04 – Media Device Path */
0974a682 385 if (dpath->type != MEDIA_DEVICE_PATH)
7b4d7cc0
KS
386 continue;
387
388 /* Sub-Type 1 – Hard Drive */
0974a682 389 if (dpath->sub_type == MEDIA_HARDDRIVE_DP) {
7b4d7cc0 390 /* 0x02 – GUID Partition Table */
0974a682 391 if (dpath->drive.mbr_type != MBR_TYPE_EFI_PARTITION_TABLE_HEADER)
7b4d7cc0
KS
392 continue;
393
394 /* 0x02 – GUID signature */
0974a682 395 if (dpath->drive.signature_type != SIGNATURE_TYPE_GUID)
7b4d7cc0
KS
396 continue;
397
5483a186
ZJS
398 if (part_uuid)
399 efi_guid_to_id128(dpath->drive.signature, &p_uuid);
7b4d7cc0
KS
400 continue;
401 }
402
403 /* Sub-Type 4 – File Path */
0974a682 404 if (dpath->sub_type == MEDIA_FILEPATH_DP && !p && path) {
7b4d7cc0 405 p = utf16_to_utf8(dpath->path, dpath->length-4);
0974a682 406 efi_tilt_backslashes(p);
7b4d7cc0
KS
407 continue;
408 }
409 }
410 }
411
1cc6c93a
YW
412 if (title)
413 *title = TAKE_PTR(s);
7b4d7cc0
KS
414 if (part_uuid)
415 *part_uuid = p_uuid;
1cc6c93a
YW
416 if (path)
417 *path = TAKE_PTR(p);
0974a682 418 if (active)
0aa3b783 419 *active = !!(header->attr & LOAD_OPTION_ACTIVE);
9cde64ff 420
7b4d7cc0 421 return 0;
7b4d7cc0
KS
422}
423
0974a682
KS
424static void to_utf16(uint16_t *dest, const char *src) {
425 int i;
426
427 for (i = 0; src[i] != '\0'; i++)
428 dest[i] = src[i];
429 dest[i] = '\0';
430}
431
432struct guid {
433 uint32_t u1;
434 uint16_t u2;
435 uint16_t u3;
436 uint8_t u4[8];
885fdebc 437} _packed_;
0974a682
KS
438
439static void id128_to_efi_guid(sd_id128_t id, void *guid) {
440 struct guid *uuid = guid;
441
442 uuid->u1 = id.bytes[0] << 24 | id.bytes[1] << 16 | id.bytes[2] << 8 | id.bytes[3];
443 uuid->u2 = id.bytes[4] << 8 | id.bytes[5];
444 uuid->u3 = id.bytes[6] << 8 | id.bytes[7];
445 memcpy(uuid->u4, id.bytes+8, sizeof(uuid->u4));
446}
447
448static uint16_t *tilt_slashes(uint16_t *s) {
449 uint16_t *p;
450
451 for (p = s; *p; p++)
452 if (*p == '/')
453 *p = '\\';
454
455 return s;
456}
457
0974a682
KS
458int efi_add_boot_option(uint16_t id, const char *title,
459 uint32_t part, uint64_t pstart, uint64_t psize,
460 sd_id128_t part_uuid, const char *path) {
461 char boot_id[9];
0974a682
KS
462 size_t size;
463 size_t title_len;
464 size_t path_len;
465 struct boot_option *option;
466 struct device_path *devicep;
b7749eb5 467 _cleanup_free_ char *buf = NULL;
0974a682
KS
468
469 title_len = (strlen(title)+1) * 2;
470 path_len = (strlen(path)+1) * 2;
471
472 buf = calloc(sizeof(struct boot_option) + title_len +
473 sizeof(struct drive_path) +
474 sizeof(struct device_path) + path_len, 1);
b7749eb5
ZJS
475 if (!buf)
476 return -ENOMEM;
0974a682
KS
477
478 /* header */
479 option = (struct boot_option *)buf;
480 option->attr = LOAD_OPTION_ACTIVE;
481 option->path_len = offsetof(struct device_path, drive) + sizeof(struct drive_path) +
482 offsetof(struct device_path, path) + path_len +
483 offsetof(struct device_path, path);
484 to_utf16(option->title, title);
485 size = offsetof(struct boot_option, title) + title_len;
486
487 /* partition info */
488 devicep = (struct device_path *)(buf + size);
489 devicep->type = MEDIA_DEVICE_PATH;
490 devicep->sub_type = MEDIA_HARDDRIVE_DP;
491 devicep->length = offsetof(struct device_path, drive) + sizeof(struct drive_path);
492 devicep->drive.part_nr = part;
493 devicep->drive.part_start = pstart;
920b52e4 494 devicep->drive.part_size = psize;
0974a682
KS
495 devicep->drive.signature_type = SIGNATURE_TYPE_GUID;
496 devicep->drive.mbr_type = MBR_TYPE_EFI_PARTITION_TABLE_HEADER;
497 id128_to_efi_guid(part_uuid, devicep->drive.signature);
498 size += devicep->length;
499
500 /* path to loader */
501 devicep = (struct device_path *)(buf + size);
502 devicep->type = MEDIA_DEVICE_PATH;
503 devicep->sub_type = MEDIA_FILEPATH_DP;
504 devicep->length = offsetof(struct device_path, path) + path_len;
505 to_utf16(devicep->path, path);
506 tilt_slashes(devicep->path);
507 size += devicep->length;
508
509 /* end of path */
510 devicep = (struct device_path *)(buf + size);
511 devicep->type = END_DEVICE_PATH_TYPE;
512 devicep->sub_type = END_ENTIRE_DEVICE_PATH_SUBTYPE;
513 devicep->length = offsetof(struct device_path, path);
514 size += devicep->length;
515
b7749eb5
ZJS
516 xsprintf(boot_id, "Boot%04X", id);
517 return efi_set_variable(EFI_VENDOR_GLOBAL, boot_id, buf, size);
0974a682
KS
518}
519
520int efi_remove_boot_option(uint16_t id) {
521 char boot_id[9];
522
b7749eb5 523 xsprintf(boot_id, "Boot%04X", id);
0974a682
KS
524 return efi_set_variable(EFI_VENDOR_GLOBAL, boot_id, NULL, 0);
525}
526
9cde64ff 527int efi_get_boot_order(uint16_t **order) {
0797f232 528 _cleanup_free_ void *buf = NULL;
7b4d7cc0 529 size_t l;
9cde64ff 530 int r;
7b4d7cc0 531
9cde64ff
LP
532 r = efi_get_variable(EFI_VENDOR_GLOBAL, "BootOrder", NULL, &buf, &l);
533 if (r < 0)
534 return r;
7b4d7cc0 535
0797f232 536 if (l <= 0)
7b4d7cc0 537 return -ENOENT;
7b4d7cc0 538
0797f232
ZJS
539 if (l % sizeof(uint16_t) > 0 ||
540 l / sizeof(uint16_t) > INT_MAX)
7b4d7cc0 541 return -EINVAL;
7b4d7cc0 542
ae2a15bc 543 *order = TAKE_PTR(buf);
9cde64ff
LP
544 return (int) (l / sizeof(uint16_t));
545}
546
0974a682
KS
547int efi_set_boot_order(uint16_t *order, size_t n) {
548 return efi_set_variable(EFI_VENDOR_GLOBAL, "BootOrder", order, n * sizeof(uint16_t));
549}
550
4d34c495
KS
551static int boot_id_hex(const char s[4]) {
552 int i;
553 int id = 0;
554
555 for (i = 0; i < 4; i++)
556 if (s[i] >= '0' && s[i] <= '9')
557 id |= (s[i] - '0') << (3 - i) * 4;
558 else if (s[i] >= 'A' && s[i] <= 'F')
559 id |= (s[i] - 'A' + 10) << (3 - i) * 4;
560 else
7e8185ef 561 return -EINVAL;
4d34c495
KS
562
563 return id;
564}
565
93bab288
YW
566static int cmp_uint16(const uint16_t *a, const uint16_t *b) {
567 return CMP(*a, *b);
9db11a99
LP
568}
569
9cde64ff
LP
570int efi_get_boot_options(uint16_t **options) {
571 _cleanup_closedir_ DIR *dir = NULL;
572 struct dirent *de;
b7749eb5 573 _cleanup_free_ uint16_t *list = NULL;
7432b24b 574 size_t alloc = 0;
b7749eb5 575 int count = 0;
9cde64ff
LP
576
577 assert(options);
578
579 dir = opendir("/sys/firmware/efi/efivars/");
580 if (!dir)
581 return -errno;
582
b7749eb5 583 FOREACH_DIRENT(de, dir, return -errno) {
4d34c495 584 int id;
9cde64ff
LP
585
586 if (strncmp(de->d_name, "Boot", 4) != 0)
587 continue;
588
4d34c495 589 if (strlen(de->d_name) != 45)
9cde64ff
LP
590 continue;
591
592 if (strcmp(de->d_name + 8, "-8be4df61-93ca-11d2-aa0d-00e098032b8c") != 0)
593 continue;
594
4d34c495
KS
595 id = boot_id_hex(de->d_name + 4);
596 if (id < 0)
9cde64ff
LP
597 continue;
598
7432b24b 599 if (!GREEDY_REALLOC(list, alloc, count + 1))
b7749eb5 600 return -ENOMEM;
9cde64ff 601
7432b24b 602 list[count++] = id;
9cde64ff
LP
603 }
604
93bab288 605 typesafe_qsort(list, count, cmp_uint16);
9db11a99 606
1cc6c93a
YW
607 *options = TAKE_PTR(list);
608
9cde64ff 609 return count;
7b4d7cc0
KS
610}
611
5dbe9f53 612static int read_usec(sd_id128_t vendor, const char *name, usec_t *u) {
2e3d0692 613 _cleanup_free_ char *j = NULL;
2e3d0692 614 int r;
39883f62 615 uint64_t x = 0;
2e3d0692
LP
616
617 assert(name);
618 assert(u);
619
61cc634b 620 r = efi_get_variable_string(EFI_VENDOR_LOADER, name, &j);
2e3d0692
LP
621 if (r < 0)
622 return r;
623
2e3d0692
LP
624 r = safe_atou64(j, &x);
625 if (r < 0)
626 return r;
627
5dbe9f53 628 *u = x;
2e3d0692
LP
629 return 0;
630}
631
c51d84dc 632int efi_loader_get_boot_usec(usec_t *firmware, usec_t *loader) {
2e3d0692
LP
633 uint64_t x, y;
634 int r;
2e3d0692
LP
635
636 assert(firmware);
637 assert(loader);
638
e9cea16d 639 r = read_usec(EFI_VENDOR_LOADER, "LoaderTimeInitUSec", &x);
2e3d0692
LP
640 if (r < 0)
641 return r;
642
e9cea16d 643 r = read_usec(EFI_VENDOR_LOADER, "LoaderTimeExecUSec", &y);
2e3d0692
LP
644 if (r < 0)
645 return r;
646
647 if (y == 0 || y < x)
648 return -EIO;
649
650 if (y > USEC_PER_HOUR)
651 return -EIO;
652
653 *firmware = x;
654 *loader = y;
655
656 return 0;
657}
658
c51d84dc 659int efi_loader_get_device_part_uuid(sd_id128_t *u) {
f4ce2b3e 660 _cleanup_free_ char *p = NULL;
f4ce2b3e 661 int r, parsed[16];
f4ce2b3e 662
61cc634b 663 r = efi_get_variable_string(EFI_VENDOR_LOADER, "LoaderDevicePartUUID", &p);
f4ce2b3e
LP
664 if (r < 0)
665 return r;
666
f4ce2b3e
LP
667 if (sscanf(p, "%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
668 &parsed[0], &parsed[1], &parsed[2], &parsed[3],
669 &parsed[4], &parsed[5], &parsed[6], &parsed[7],
670 &parsed[8], &parsed[9], &parsed[10], &parsed[11],
671 &parsed[12], &parsed[13], &parsed[14], &parsed[15]) != 16)
672 return -EIO;
673
73b80ec2
LP
674 if (u) {
675 unsigned i;
676
677 for (i = 0; i < ELEMENTSOF(parsed); i++)
678 u->bytes[i] = parsed[i];
679 }
f4ce2b3e
LP
680
681 return 0;
682}
b872e9a0
LP
683
684#endif
b28ce7c6
TG
685
686char *efi_tilt_backslashes(char *s) {
687 char *p;
688
689 for (p = s; *p; p++)
690 if (*p == '\\')
691 *p = '/';
692
693 return s;
694}