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d6c9574f 1/*-*- Mode: C; c-basic-offset: 8; indent-tabs-mode: nil -*-*/
60918275 2
a7334b09
LP
3/***
4 This file is part of systemd.
5
6 Copyright 2010 Lennart Poettering
7
8 systemd is free software; you can redistribute it and/or modify it
5430f7f2
LP
9 under the terms of the GNU Lesser General Public License as published by
10 the Free Software Foundation; either version 2.1 of the License, or
a7334b09
LP
11 (at your option) any later version.
12
13 systemd is distributed in the hope that it will be useful, but
14 WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
5430f7f2 16 Lesser General Public License for more details.
a7334b09 17
5430f7f2 18 You should have received a copy of the GNU Lesser General Public License
a7334b09
LP
19 along with systemd; If not, see <http://www.gnu.org/licenses/>.
20***/
21
60918275
LP
22#include <assert.h>
23#include <string.h>
24#include <unistd.h>
25#include <errno.h>
85261803 26#include <stdlib.h>
034c6ed7
LP
27#include <signal.h>
28#include <stdio.h>
1dccbe19
LP
29#include <syslog.h>
30#include <sched.h>
31#include <sys/resource.h>
ef886c6a 32#include <linux/sched.h>
a9f5d454
LP
33#include <sys/types.h>
34#include <sys/stat.h>
3a0ecb08 35#include <fcntl.h>
a0d40ac5 36#include <dirent.h>
601f6a1e
LP
37#include <sys/ioctl.h>
38#include <linux/vt.h>
39#include <linux/tiocl.h>
80876c20
LP
40#include <termios.h>
41#include <stdarg.h>
42#include <sys/inotify.h>
43#include <sys/poll.h>
3177a7fa 44#include <ctype.h>
5b6319dc 45#include <sys/prctl.h>
ef2f1067
LP
46#include <sys/utsname.h>
47#include <pwd.h>
4fd5948e 48#include <netinet/ip.h>
3fe5e5d4 49#include <linux/kd.h>
afea26ad 50#include <dlfcn.h>
2e78aa99 51#include <sys/wait.h>
7948c4df 52#include <sys/time.h>
8092a428 53#include <glob.h>
4b67834e 54#include <grp.h>
87d2c1ff 55#include <sys/mman.h>
825c6fe5 56#include <sys/vfs.h>
6d313367 57#include <sys/mount.h>
825c6fe5 58#include <linux/magic.h>
0b507b17 59#include <limits.h>
09017585
MS
60#include <langinfo.h>
61#include <locale.h>
6afc95b7 62#include <sys/personality.h>
844ec79b 63#include <libgen.h>
2b6bf07d 64#undef basename
60918275 65
9bf3b535
LP
66#ifdef HAVE_SYS_AUXV_H
67#include <sys/auxv.h>
68#endif
69
60918275
LP
70#include "macro.h"
71#include "util.h"
1dccbe19
LP
72#include "ioprio.h"
73#include "missing.h"
a9f5d454 74#include "log.h"
65d2ebdc 75#include "strv.h"
e51bc1a2 76#include "label.h"
c38dfac9 77#include "mkdir.h"
9eb977db 78#include "path-util.h"
d06dacd0 79#include "exit-status.h"
83cc030f 80#include "hashmap.h"
4d1a6904 81#include "env-util.h"
a5c32cff 82#include "fileio.h"
8f6ce71f 83#include "device-nodes.h"
f405e86d
SL
84#include "utf8.h"
85#include "gunicode.h"
295edddf 86#include "virt.h"
477def80 87#include "def.h"
56cf987f 88
9a0e6896
LP
89int saved_argc = 0;
90char **saved_argv = NULL;
9086e840 91
28917d7d 92static volatile unsigned cached_columns = 0;
ed757c0c 93static volatile unsigned cached_lines = 0;
9a0e6896 94
37f85e66 95size_t page_size(void) {
ec202eae 96 static thread_local size_t pgsz = 0;
37f85e66 97 long r;
98
87d2c1ff 99 if (_likely_(pgsz > 0))
37f85e66 100 return pgsz;
101
e67f47e5
LP
102 r = sysconf(_SC_PAGESIZE);
103 assert(r > 0);
37f85e66 104
105 pgsz = (size_t) r;
37f85e66 106 return pgsz;
107}
108
e05797fb
LP
109bool streq_ptr(const char *a, const char *b) {
110
111 /* Like streq(), but tries to make sense of NULL pointers */
112
113 if (a && b)
114 return streq(a, b);
115
116 if (!a && !b)
117 return true;
118
119 return false;
120}
121
8c7c140f 122char* endswith(const char *s, const char *postfix) {
60918275
LP
123 size_t sl, pl;
124
125 assert(s);
126 assert(postfix);
127
128 sl = strlen(s);
129 pl = strlen(postfix);
130
d4d0d4db 131 if (pl == 0)
8c7c140f 132 return (char*) s + sl;
d4d0d4db 133
60918275 134 if (sl < pl)
8c7c140f
LP
135 return NULL;
136
137 if (memcmp(s + sl - pl, postfix, pl) != 0)
138 return NULL;
60918275 139
8c7c140f 140 return (char*) s + sl - pl;
60918275
LP
141}
142
5cb36f41 143char* first_word(const char *s, const char *word) {
79d6d816 144 size_t sl, wl;
5cb36f41 145 const char *p;
79d6d816
LP
146
147 assert(s);
148 assert(word);
149
5cb36f41
LP
150 /* Checks if the string starts with the specified word, either
151 * followed by NUL or by whitespace. Returns a pointer to the
152 * NUL or the first character after the whitespace. */
153
79d6d816
LP
154 sl = strlen(s);
155 wl = strlen(word);
156
157 if (sl < wl)
5cb36f41 158 return NULL;
79d6d816 159
d4d0d4db 160 if (wl == 0)
5cb36f41 161 return (char*) s;
d4d0d4db 162
79d6d816 163 if (memcmp(s, word, wl) != 0)
5cb36f41
LP
164 return NULL;
165
166 p = s + wl;
167 if (*p == 0)
168 return (char*) p;
169
170 if (!strchr(WHITESPACE, *p))
171 return NULL;
79d6d816 172
5cb36f41
LP
173 p += strspn(p, WHITESPACE);
174 return (char*) p;
79d6d816
LP
175}
176
42f4e3c4 177int close_nointr(int fd) {
b0ee8068 178 assert(fd >= 0);
a9f85faf
LP
179
180 if (close(fd) >= 0)
181 return 0;
182
183 /*
184 * Just ignore EINTR; a retry loop is the wrong thing to do on
185 * Linux.
186 *
187 * http://lkml.indiana.edu/hypermail/linux/kernel/0509.1/0877.html
188 * https://bugzilla.gnome.org/show_bug.cgi?id=682819
189 * http://utcc.utoronto.ca/~cks/space/blog/unix/CloseEINTR
190 * https://sites.google.com/site/michaelsafyan/software-engineering/checkforeintrwheninvokingclosethinkagain
191 */
192 if (errno == EINTR)
d96ea504 193 return 0;
a9f85faf
LP
194
195 return -errno;
60918275 196}
85261803 197
03e334a1
LP
198int safe_close(int fd) {
199
200 /*
201 * Like close_nointr() but cannot fail. Guarantees errno is
202 * unchanged. Is a NOP with negative fds passed, and returns
203 * -1, so that it can be used in this syntax:
204 *
205 * fd = safe_close(fd);
206 */
85f136b5 207
03e334a1
LP
208 if (fd >= 0) {
209 PROTECT_ERRNO;
d96ea504
LP
210
211 /* The kernel might return pretty much any error code
212 * via close(), but the fd will be closed anyway. The
213 * only condition we want to check for here is whether
214 * the fd was invalid at all... */
215
216 assert_se(close_nointr(fd) != -EBADF);
03e334a1 217 }
85f136b5 218
03e334a1 219 return -1;
85f136b5
LP
220}
221
5b6319dc
LP
222void close_many(const int fds[], unsigned n_fd) {
223 unsigned i;
224
2c93b4ef
LP
225 assert(fds || n_fd <= 0);
226
5b6319dc 227 for (i = 0; i < n_fd; i++)
03e334a1 228 safe_close(fds[i]);
5b6319dc
LP
229}
230
4b73a0c0
LP
231int unlink_noerrno(const char *path) {
232 PROTECT_ERRNO;
233 int r;
234
235 r = unlink(path);
236 if (r < 0)
237 return -errno;
238
239 return 0;
240}
241
85261803
LP
242int parse_boolean(const char *v) {
243 assert(v);
244
0f625d0b 245 if (streq(v, "1") || strcaseeq(v, "yes") || strcaseeq(v, "y") || strcaseeq(v, "true") || strcaseeq(v, "t") || strcaseeq(v, "on"))
85261803 246 return 1;
0f625d0b 247 else if (streq(v, "0") || strcaseeq(v, "no") || strcaseeq(v, "n") || strcaseeq(v, "false") || strcaseeq(v, "f") || strcaseeq(v, "off"))
85261803
LP
248 return 0;
249
250 return -EINVAL;
251}
252
3ba686c1 253int parse_pid(const char *s, pid_t* ret_pid) {
0b172489 254 unsigned long ul = 0;
3ba686c1
LP
255 pid_t pid;
256 int r;
257
258 assert(s);
259 assert(ret_pid);
260
e67f47e5
LP
261 r = safe_atolu(s, &ul);
262 if (r < 0)
3ba686c1
LP
263 return r;
264
265 pid = (pid_t) ul;
266
267 if ((unsigned long) pid != ul)
268 return -ERANGE;
269
270 if (pid <= 0)
271 return -ERANGE;
272
273 *ret_pid = pid;
274 return 0;
275}
276
034a2a52
LP
277int parse_uid(const char *s, uid_t* ret_uid) {
278 unsigned long ul = 0;
279 uid_t uid;
280 int r;
281
282 assert(s);
283 assert(ret_uid);
284
e67f47e5
LP
285 r = safe_atolu(s, &ul);
286 if (r < 0)
034a2a52
LP
287 return r;
288
289 uid = (uid_t) ul;
290
291 if ((unsigned long) uid != ul)
292 return -ERANGE;
293
306a55c8
LP
294 /* Some libc APIs use (uid_t) -1 as special placeholder */
295 if (uid == (uid_t) 0xFFFFFFFF)
f841a154 296 return -ENXIO;
306a55c8 297
6afeb1cf 298 /* A long time ago UIDs where 16bit, hence explicitly avoid the 16bit -1 too */
306a55c8 299 if (uid == (uid_t) 0xFFFF)
f841a154 300 return -ENXIO;
306a55c8 301
034a2a52
LP
302 *ret_uid = uid;
303 return 0;
304}
305
85261803
LP
306int safe_atou(const char *s, unsigned *ret_u) {
307 char *x = NULL;
034c6ed7 308 unsigned long l;
85261803
LP
309
310 assert(s);
311 assert(ret_u);
312
313 errno = 0;
314 l = strtoul(s, &x, 0);
315
f3910003 316 if (!x || x == s || *x || errno)
48deb058 317 return errno > 0 ? -errno : -EINVAL;
85261803 318
034c6ed7 319 if ((unsigned long) (unsigned) l != l)
85261803
LP
320 return -ERANGE;
321
322 *ret_u = (unsigned) l;
323 return 0;
324}
325
326int safe_atoi(const char *s, int *ret_i) {
327 char *x = NULL;
034c6ed7 328 long l;
85261803
LP
329
330 assert(s);
331 assert(ret_i);
332
333 errno = 0;
334 l = strtol(s, &x, 0);
335
f3910003 336 if (!x || x == s || *x || errno)
48deb058 337 return errno > 0 ? -errno : -EINVAL;
85261803 338
034c6ed7 339 if ((long) (int) l != l)
85261803
LP
340 return -ERANGE;
341
034c6ed7
LP
342 *ret_i = (int) l;
343 return 0;
344}
345
b914e211
LP
346int safe_atou8(const char *s, uint8_t *ret) {
347 char *x = NULL;
348 unsigned long l;
349
350 assert(s);
351 assert(ret);
352
353 errno = 0;
354 l = strtoul(s, &x, 0);
355
356 if (!x || x == s || *x || errno)
357 return errno > 0 ? -errno : -EINVAL;
358
359 if ((unsigned long) (uint8_t) l != l)
360 return -ERANGE;
361
362 *ret = (uint8_t) l;
363 return 0;
364}
365
034c6ed7
LP
366int safe_atollu(const char *s, long long unsigned *ret_llu) {
367 char *x = NULL;
368 unsigned long long l;
369
370 assert(s);
371 assert(ret_llu);
372
373 errno = 0;
374 l = strtoull(s, &x, 0);
375
f3910003 376 if (!x || x == s || *x || errno)
034c6ed7
LP
377 return errno ? -errno : -EINVAL;
378
379 *ret_llu = l;
380 return 0;
381}
382
383int safe_atolli(const char *s, long long int *ret_lli) {
384 char *x = NULL;
385 long long l;
386
387 assert(s);
388 assert(ret_lli);
389
390 errno = 0;
391 l = strtoll(s, &x, 0);
392
f3910003 393 if (!x || x == s || *x || errno)
034c6ed7
LP
394 return errno ? -errno : -EINVAL;
395
396 *ret_lli = l;
85261803
LP
397 return 0;
398}
a41e8209 399
f7900e25
TA
400int safe_atod(const char *s, double *ret_d) {
401 char *x = NULL;
32b2634e 402 double d = 0;
f7900e25
TA
403
404 assert(s);
405 assert(ret_d);
406
d6dd604b
LP
407 RUN_WITH_LOCALE(LC_NUMERIC_MASK, "C") {
408 errno = 0;
409 d = strtod(s, &x);
410 }
f7900e25
TA
411
412 if (!x || x == s || *x || errno)
413 return errno ? -errno : -EINVAL;
414
415 *ret_d = (double) d;
416 return 0;
417}
418
bf85c24d
SP
419static size_t strcspn_escaped(const char *s, const char *reject) {
420 bool escaped = false;
421 size_t n;
422
423 for (n=0; s[n]; n++) {
424 if (escaped)
425 escaped = false;
426 else if (s[n] == '\\')
427 escaped = true;
428 else if (strchr(reject, s[n]))
a2a5291b 429 break;
bf85c24d 430 }
a2a5291b
ZJS
431 /* if s ends in \, return index of previous char */
432 return n - escaped;
bf85c24d
SP
433}
434
a41e8209 435/* Split a string into words. */
a2a5291b
ZJS
436const char* split(const char **state, size_t *l, const char *separator, bool quoted) {
437 const char *current;
a41e8209 438
a2a5291b 439 current = *state;
a41e8209 440
a2a5291b
ZJS
441 if (!*current) {
442 assert(**state == '\0');
a41e8209 443 return NULL;
a2a5291b 444 }
a41e8209 445
65d2ebdc 446 current += strspn(current, separator);
a2a5291b
ZJS
447 if (!*current) {
448 *state = current;
70f75a52 449 return NULL;
a2a5291b 450 }
70f75a52 451
bf85c24d 452 if (quoted && strchr("\'\"", *current)) {
a2a5291b
ZJS
453 char quotechars[2] = {*current, '\0'};
454
455 *l = strcspn_escaped(current + 1, quotechars);
456 if (current[*l + 1] == '\0' ||
457 (current[*l + 2] && !strchr(separator, current[*l + 2]))) {
458 /* right quote missing or garbage at the end*/
459 *state = current;
460 return NULL;
461 }
462 assert(current[*l + 1] == quotechars[0]);
463 *state = current++ + *l + 2;
bf85c24d
SP
464 } else if (quoted) {
465 *l = strcspn_escaped(current, separator);
a2a5291b 466 *state = current + *l;
034c6ed7 467 } else {
bf85c24d 468 *l = strcspn(current, separator);
a2a5291b 469 *state = current + *l;
034c6ed7
LP
470 }
471
a2a5291b 472 return current;
034c6ed7
LP
473}
474
034c6ed7
LP
475int get_parent_of_pid(pid_t pid, pid_t *_ppid) {
476 int r;
b4696bce 477 _cleanup_free_ char *line = NULL;
bb00e604 478 long unsigned ppid;
49aa47c7 479 const char *p;
034c6ed7 480
49aa47c7 481 assert(pid >= 0);
034c6ed7
LP
482 assert(_ppid);
483
49aa47c7
LP
484 if (pid == 0) {
485 *_ppid = getppid();
486 return 0;
487 }
034c6ed7 488
49aa47c7 489 p = procfs_file_alloca(pid, "stat");
b4696bce
SP
490 r = read_one_line_file(p, &line);
491 if (r < 0)
034c6ed7 492 return r;
034c6ed7 493
034c6ed7
LP
494 /* Let's skip the pid and comm fields. The latter is enclosed
495 * in () but does not escape any () in its value, so let's
496 * skip over it manually */
497
2fbe635a
LP
498 p = strrchr(line, ')');
499 if (!p)
034c6ed7
LP
500 return -EIO;
501
502 p++;
503
504 if (sscanf(p, " "
505 "%*c " /* state */
bb00e604 506 "%lu ", /* ppid */
034c6ed7
LP
507 &ppid) != 1)
508 return -EIO;
509
bb00e604 510 if ((long unsigned) (pid_t) ppid != ppid)
034c6ed7
LP
511 return -ERANGE;
512
513 *_ppid = (pid_t) ppid;
514
515 return 0;
516}
517
7640a5de 518int get_starttime_of_pid(pid_t pid, unsigned long long *st) {
b4696bce
SP
519 int r;
520 _cleanup_free_ char *line = NULL;
49aa47c7 521 const char *p;
7640a5de 522
49aa47c7 523 assert(pid >= 0);
7640a5de
LP
524 assert(st);
525
b68fa010 526 p = procfs_file_alloca(pid, "stat");
b4696bce
SP
527 r = read_one_line_file(p, &line);
528 if (r < 0)
529 return r;
7640a5de
LP
530
531 /* Let's skip the pid and comm fields. The latter is enclosed
532 * in () but does not escape any () in its value, so let's
533 * skip over it manually */
534
e67f47e5
LP
535 p = strrchr(line, ')');
536 if (!p)
7640a5de
LP
537 return -EIO;
538
539 p++;
540
541 if (sscanf(p, " "
542 "%*c " /* state */
543 "%*d " /* ppid */
544 "%*d " /* pgrp */
545 "%*d " /* session */
546 "%*d " /* tty_nr */
547 "%*d " /* tpgid */
548 "%*u " /* flags */
549 "%*u " /* minflt */
550 "%*u " /* cminflt */
551 "%*u " /* majflt */
552 "%*u " /* cmajflt */
553 "%*u " /* utime */
554 "%*u " /* stime */
555 "%*d " /* cutime */
556 "%*d " /* cstime */
557 "%*d " /* priority */
558 "%*d " /* nice */
559 "%*d " /* num_threads */
560 "%*d " /* itrealvalue */
561 "%llu " /* starttime */,
562 st) != 1)
563 return -EIO;
564
565 return 0;
566}
567
34ca941c
LP
568int fchmod_umask(int fd, mode_t m) {
569 mode_t u;
570 int r;
571
572 u = umask(0777);
573 r = fchmod(fd, m & (~u)) < 0 ? -errno : 0;
574 umask(u);
575
576 return r;
577}
578
7072ced8
LP
579char *truncate_nl(char *s) {
580 assert(s);
581
582 s[strcspn(s, NEWLINE)] = 0;
583 return s;
584}
585
93b5eaec 586int get_process_state(pid_t pid) {
e10c9985
YS
587 const char *p;
588 char state;
589 int r;
590 _cleanup_free_ char *line = NULL;
591
592 assert(pid >= 0);
593
594 p = procfs_file_alloca(pid, "stat");
595 r = read_one_line_file(p, &line);
596 if (r < 0)
597 return r;
598
599 p = strrchr(line, ')');
600 if (!p)
601 return -EIO;
602
603 p++;
604
605 if (sscanf(p, " %c", &state) != 1)
606 return -EIO;
607
608 return (unsigned char) state;
609}
610
87d2c1ff 611int get_process_comm(pid_t pid, char **name) {
49aa47c7 612 const char *p;
5b12334d 613 int r;
7072ced8 614
7072ced8 615 assert(name);
49aa47c7 616 assert(pid >= 0);
7072ced8 617
b68fa010 618 p = procfs_file_alloca(pid, "comm");
7072ced8 619
5b12334d
LP
620 r = read_one_line_file(p, name);
621 if (r == -ENOENT)
622 return -ESRCH;
623
624 return r;
7072ced8
LP
625}
626
87d2c1ff 627int get_process_cmdline(pid_t pid, size_t max_length, bool comm_fallback, char **line) {
49aa47c7 628 _cleanup_fclose_ FILE *f = NULL;
9bdbc2e2 629 char *r = NULL, *k;
49aa47c7 630 const char *p;
c59760ee 631 int c;
c59760ee 632
c59760ee 633 assert(line);
49aa47c7 634 assert(pid >= 0);
c59760ee 635
b68fa010 636 p = procfs_file_alloca(pid, "cmdline");
c59760ee 637
49aa47c7 638 f = fopen(p, "re");
c59760ee
LP
639 if (!f)
640 return -errno;
49aa47c7 641
9bdbc2e2 642 if (max_length == 0) {
49aa47c7
LP
643 size_t len = 0, allocated = 0;
644
9bdbc2e2 645 while ((c = getc(f)) != EOF) {
49aa47c7
LP
646
647 if (!GREEDY_REALLOC(r, allocated, len+2)) {
9bdbc2e2 648 free(r);
9bdbc2e2
LN
649 return -ENOMEM;
650 }
49aa47c7
LP
651
652 r[len++] = isprint(c) ? c : ' ';
9bdbc2e2 653 }
49aa47c7
LP
654
655 if (len > 0)
656 r[len-1] = 0;
657
9bdbc2e2
LN
658 } else {
659 bool space = false;
660 size_t left;
49aa47c7 661
9bdbc2e2 662 r = new(char, max_length);
49aa47c7 663 if (!r)
9bdbc2e2 664 return -ENOMEM;
c59760ee 665
9bdbc2e2
LN
666 k = r;
667 left = max_length;
668 while ((c = getc(f)) != EOF) {
c59760ee 669
9bdbc2e2
LN
670 if (isprint(c)) {
671 if (space) {
672 if (left <= 4)
673 break;
674
675 *(k++) = ' ';
676 left--;
677 space = false;
678 }
c59760ee 679
c59760ee
LP
680 if (left <= 4)
681 break;
682
9bdbc2e2 683 *(k++) = (char) c;
057fbb58 684 left--;
9bdbc2e2
LN
685 } else
686 space = true;
687 }
c59760ee 688
9bdbc2e2
LN
689 if (left <= 4) {
690 size_t n = MIN(left-1, 3U);
691 memcpy(k, "...", n);
692 k[n] = 0;
693 } else
694 *k = 0;
c59760ee
LP
695 }
696
35d2e7ec 697 /* Kernel threads have no argv[] */
9bdbc2e2 698 if (r == NULL || r[0] == 0) {
b47d419c 699 _cleanup_free_ char *t = NULL;
35d2e7ec
LP
700 int h;
701
702 free(r);
703
87d2c1ff
LP
704 if (!comm_fallback)
705 return -ENOENT;
706
707 h = get_process_comm(pid, &t);
708 if (h < 0)
35d2e7ec
LP
709 return h;
710
b7def684 711 r = strjoin("[", t, "]", NULL);
87d2c1ff 712 if (!r)
35d2e7ec
LP
713 return -ENOMEM;
714 }
fa776d8e 715
c59760ee
LP
716 *line = r;
717 return 0;
718}
719
1e5678d0 720int is_kernel_thread(pid_t pid) {
49aa47c7 721 const char *p;
1e5678d0
LP
722 size_t count;
723 char c;
724 bool eof;
725 FILE *f;
726
727 if (pid == 0)
728 return 0;
729
49aa47c7 730 assert(pid > 0);
1e5678d0 731
49aa47c7
LP
732 p = procfs_file_alloca(pid, "cmdline");
733 f = fopen(p, "re");
1e5678d0
LP
734 if (!f)
735 return -errno;
736
737 count = fread(&c, 1, 1, f);
738 eof = feof(f);
739 fclose(f);
740
741 /* Kernel threads have an empty cmdline */
742
743 if (count <= 0)
744 return eof ? 1 : -errno;
745
746 return 0;
747}
748
3a832116
SL
749int get_process_capeff(pid_t pid, char **capeff) {
750 const char *p;
3a832116
SL
751
752 assert(capeff);
753 assert(pid >= 0);
754
b68fa010 755 p = procfs_file_alloca(pid, "status");
3a832116 756
69ab8088 757 return get_status_field(p, "\nCapEff:", capeff);
3a832116 758}
49aa47c7 759
87d2c1ff 760int get_process_exe(pid_t pid, char **name) {
49aa47c7 761 const char *p;
e79f68d1
ZJS
762 char *d;
763 int r;
87d2c1ff 764
49aa47c7 765 assert(pid >= 0);
87d2c1ff
LP
766 assert(name);
767
b68fa010 768 p = procfs_file_alloca(pid, "exe");
87d2c1ff 769
e79f68d1
ZJS
770 r = readlink_malloc(p, name);
771 if (r < 0)
5b12334d 772 return r == -ENOENT ? -ESRCH : r;
e79f68d1
ZJS
773
774 d = endswith(*name, " (deleted)");
775 if (d)
776 *d = '\0';
777
778 return 0;
87d2c1ff
LP
779}
780
901c3d0d 781static int get_process_id(pid_t pid, const char *field, uid_t *uid) {
f74e605f 782 _cleanup_fclose_ FILE *f = NULL;
9db11a99 783 char line[LINE_MAX];
49aa47c7 784 const char *p;
7e4ab3c5 785
f74e605f 786 assert(field);
7e4ab3c5
LP
787 assert(uid);
788
789 if (pid == 0)
790 return getuid();
791
49aa47c7
LP
792 p = procfs_file_alloca(pid, "status");
793 f = fopen(p, "re");
7e4ab3c5
LP
794 if (!f)
795 return -errno;
796
9db11a99 797 FOREACH_LINE(line, f, return -errno) {
f74e605f 798 char *l;
7e4ab3c5
LP
799
800 l = strstrip(line);
801
901c3d0d
LP
802 if (startswith(l, field)) {
803 l += strlen(field);
7e4ab3c5
LP
804 l += strspn(l, WHITESPACE);
805
806 l[strcspn(l, WHITESPACE)] = 0;
807
f74e605f 808 return parse_uid(l, uid);
7e4ab3c5
LP
809 }
810 }
811
f74e605f 812 return -EIO;
7e4ab3c5
LP
813}
814
901c3d0d
LP
815int get_process_uid(pid_t pid, uid_t *uid) {
816 return get_process_id(pid, "Uid:", uid);
817}
818
819int get_process_gid(pid_t pid, gid_t *gid) {
49aa47c7 820 assert_cc(sizeof(uid_t) == sizeof(gid_t));
901c3d0d
LP
821 return get_process_id(pid, "Gid:", gid);
822}
823
fab56fc5
LP
824char *strnappend(const char *s, const char *suffix, size_t b) {
825 size_t a;
44d8db9e
LP
826 char *r;
827
fab56fc5
LP
828 if (!s && !suffix)
829 return strdup("");
830
831 if (!s)
832 return strndup(suffix, b);
833
834 if (!suffix)
835 return strdup(s);
836
44d8db9e
LP
837 assert(s);
838 assert(suffix);
839
840 a = strlen(s);
aa408e77 841 if (b > ((size_t) -1) - a)
040f18ea 842 return NULL;
44d8db9e 843
040f18ea
LP
844 r = new(char, a+b+1);
845 if (!r)
44d8db9e
LP
846 return NULL;
847
848 memcpy(r, s, a);
849 memcpy(r+a, suffix, b);
850 r[a+b] = 0;
851
852 return r;
853}
87f0e418 854
fab56fc5
LP
855char *strappend(const char *s, const char *suffix) {
856 return strnappend(s, suffix, suffix ? strlen(suffix) : 0);
857}
858
849958d1 859int readlinkat_malloc(int fd, const char *p, char **ret) {
87f0e418 860 size_t l = 100;
2d2ebd6b 861 int r;
87f0e418
LP
862
863 assert(p);
2d2ebd6b 864 assert(ret);
87f0e418
LP
865
866 for (;;) {
867 char *c;
868 ssize_t n;
869
2d2ebd6b
LP
870 c = new(char, l);
871 if (!c)
87f0e418
LP
872 return -ENOMEM;
873
849958d1 874 n = readlinkat(fd, p, c, l-1);
2d2ebd6b
LP
875 if (n < 0) {
876 r = -errno;
87f0e418 877 free(c);
2d2ebd6b 878 return r;
87f0e418
LP
879 }
880
881 if ((size_t) n < l-1) {
882 c[n] = 0;
2d2ebd6b 883 *ret = c;
87f0e418
LP
884 return 0;
885 }
886
887 free(c);
888 l *= 2;
889 }
890}
891
849958d1
LP
892int readlink_malloc(const char *p, char **ret) {
893 return readlinkat_malloc(AT_FDCWD, p, ret);
894}
895
2c7108c4 896int readlink_and_make_absolute(const char *p, char **r) {
1058cbf2
ZJS
897 _cleanup_free_ char *target = NULL;
898 char *k;
2c7108c4
LP
899 int j;
900
901 assert(p);
902 assert(r);
903
1058cbf2
ZJS
904 j = readlink_malloc(p, &target);
905 if (j < 0)
2c7108c4
LP
906 return j;
907
908 k = file_in_same_dir(p, target);
2c7108c4
LP
909 if (!k)
910 return -ENOMEM;
911
912 *r = k;
913 return 0;
914}
915
83096483
LP
916int readlink_and_canonicalize(const char *p, char **r) {
917 char *t, *s;
918 int j;
919
920 assert(p);
921 assert(r);
922
923 j = readlink_and_make_absolute(p, &t);
924 if (j < 0)
925 return j;
926
927 s = canonicalize_file_name(t);
928 if (s) {
929 free(t);
930 *r = s;
931 } else
932 *r = t;
933
934 path_kill_slashes(*r);
935
936 return 0;
937}
938
2a987ee8 939int reset_all_signal_handlers(void) {
24a5d6b0 940 int sig, r = 0;
2a987ee8
LP
941
942 for (sig = 1; sig < _NSIG; sig++) {
b92bea5d
ZJS
943 struct sigaction sa = {
944 .sa_handler = SIG_DFL,
945 .sa_flags = SA_RESTART,
946 };
2a987ee8 947
24a5d6b0 948 /* These two cannot be caught... */
2a987ee8
LP
949 if (sig == SIGKILL || sig == SIGSTOP)
950 continue;
951
2a987ee8
LP
952 /* On Linux the first two RT signals are reserved by
953 * glibc, and sigaction() will return EINVAL for them. */
954 if ((sigaction(sig, &sa, NULL) < 0))
24a5d6b0
LP
955 if (errno != EINVAL && r == 0)
956 r = -errno;
2a987ee8
LP
957 }
958
24a5d6b0 959 return r;
2a987ee8 960}
4a72ff34 961
1dedb74a
LP
962int reset_signal_mask(void) {
963 sigset_t ss;
964
965 if (sigemptyset(&ss) < 0)
966 return -errno;
967
968 if (sigprocmask(SIG_SETMASK, &ss, NULL) < 0)
969 return -errno;
970
971 return 0;
972}
973
4a72ff34 974char *strstrip(char *s) {
57a8eca8 975 char *e;
4a72ff34
LP
976
977 /* Drops trailing whitespace. Modifies the string in
978 * place. Returns pointer to first non-space character */
979
980 s += strspn(s, WHITESPACE);
981
57a8eca8
LP
982 for (e = strchr(s, 0); e > s; e --)
983 if (!strchr(WHITESPACE, e[-1]))
984 break;
4a72ff34 985
57a8eca8 986 *e = 0;
4a72ff34
LP
987
988 return s;
4a72ff34
LP
989}
990
ee9b5e01
LP
991char *delete_chars(char *s, const char *bad) {
992 char *f, *t;
993
994 /* Drops all whitespace, regardless where in the string */
995
996 for (f = s, t = s; *f; f++) {
997 if (strchr(bad, *f))
998 continue;
999
1000 *(t++) = *f;
1001 }
1002
1003 *t = 0;
1004
1005 return s;
1006}
1007
4a72ff34
LP
1008char *file_in_same_dir(const char *path, const char *filename) {
1009 char *e, *r;
1010 size_t k;
1011
1012 assert(path);
1013 assert(filename);
1014
1015 /* This removes the last component of path and appends
1016 * filename, unless the latter is absolute anyway or the
1017 * former isn't */
1018
1019 if (path_is_absolute(filename))
1020 return strdup(filename);
1021
1022 if (!(e = strrchr(path, '/')))
1023 return strdup(filename);
1024
1025 k = strlen(filename);
1026 if (!(r = new(char, e-path+1+k+1)))
1027 return NULL;
1028
1029 memcpy(r, path, e-path+1);
1030 memcpy(r+(e-path)+1, filename, k+1);
1031
1032 return r;
1033}
fb624d04 1034
c32dd69b
LP
1035int rmdir_parents(const char *path, const char *stop) {
1036 size_t l;
1037 int r = 0;
1038
1039 assert(path);
1040 assert(stop);
1041
1042 l = strlen(path);
1043
1044 /* Skip trailing slashes */
1045 while (l > 0 && path[l-1] == '/')
1046 l--;
1047
1048 while (l > 0) {
1049 char *t;
1050
1051 /* Skip last component */
1052 while (l > 0 && path[l-1] != '/')
1053 l--;
1054
1055 /* Skip trailing slashes */
1056 while (l > 0 && path[l-1] == '/')
1057 l--;
1058
1059 if (l <= 0)
1060 break;
1061
1062 if (!(t = strndup(path, l)))
1063 return -ENOMEM;
1064
1065 if (path_startswith(stop, t)) {
1066 free(t);
1067 return 0;
1068 }
1069
1070 r = rmdir(t);
1071 free(t);
1072
1073 if (r < 0)
1074 if (errno != ENOENT)
1075 return -errno;
1076 }
1077
1078 return 0;
1079}
1080
fb624d04
LP
1081char hexchar(int x) {
1082 static const char table[16] = "0123456789abcdef";
1083
1084 return table[x & 15];
1085}
4fe88d28
LP
1086
1087int unhexchar(char c) {
1088
1089 if (c >= '0' && c <= '9')
1090 return c - '0';
1091
1092 if (c >= 'a' && c <= 'f')
ea430986 1093 return c - 'a' + 10;
4fe88d28
LP
1094
1095 if (c >= 'A' && c <= 'F')
ea430986 1096 return c - 'A' + 10;
4fe88d28 1097
7e8185ef 1098 return -EINVAL;
4fe88d28
LP
1099}
1100
66e35261
LP
1101char *hexmem(const void *p, size_t l) {
1102 char *r, *z;
1103 const uint8_t *x;
1104
1105 z = r = malloc(l * 2 + 1);
1106 if (!r)
1107 return NULL;
1108
1109 for (x = p; x < (const uint8_t*) p + l; x++) {
1110 *(z++) = hexchar(*x >> 4);
1111 *(z++) = hexchar(*x & 15);
1112 }
1113
1114 *z = 0;
1115 return r;
1116}
1117
2181a7f5
LP
1118void *unhexmem(const char *p, size_t l) {
1119 uint8_t *r, *z;
1120 const char *x;
1121
1122 assert(p);
1123
1124 z = r = malloc((l + 1) / 2 + 1);
1125 if (!r)
1126 return NULL;
1127
1128 for (x = p; x < p + l; x += 2) {
1129 int a, b;
1130
1131 a = unhexchar(x[0]);
1132 if (x+1 < p + l)
1133 b = unhexchar(x[1]);
1134 else
1135 b = 0;
1136
1137 *(z++) = (uint8_t) a << 4 | (uint8_t) b;
1138 }
1139
1140 *z = 0;
1141 return r;
1142}
1143
4fe88d28
LP
1144char octchar(int x) {
1145 return '0' + (x & 7);
1146}
1147
1148int unoctchar(char c) {
1149
1150 if (c >= '0' && c <= '7')
1151 return c - '0';
1152
7e8185ef 1153 return -EINVAL;
4fe88d28
LP
1154}
1155
5af98f82
LP
1156char decchar(int x) {
1157 return '0' + (x % 10);
1158}
1159
1160int undecchar(char c) {
1161
1162 if (c >= '0' && c <= '9')
1163 return c - '0';
1164
7e8185ef 1165 return -EINVAL;
5af98f82
LP
1166}
1167
4fe88d28
LP
1168char *cescape(const char *s) {
1169 char *r, *t;
1170 const char *f;
1171
1172 assert(s);
1173
1174 /* Does C style string escaping. */
1175
f8e2fb7b
LP
1176 r = new(char, strlen(s)*4 + 1);
1177 if (!r)
4fe88d28
LP
1178 return NULL;
1179
1180 for (f = s, t = r; *f; f++)
1181
1182 switch (*f) {
1183
1184 case '\a':
1185 *(t++) = '\\';
1186 *(t++) = 'a';
1187 break;
1188 case '\b':
1189 *(t++) = '\\';
1190 *(t++) = 'b';
1191 break;
1192 case '\f':
1193 *(t++) = '\\';
1194 *(t++) = 'f';
1195 break;
1196 case '\n':
1197 *(t++) = '\\';
1198 *(t++) = 'n';
1199 break;
1200 case '\r':
1201 *(t++) = '\\';
1202 *(t++) = 'r';
1203 break;
1204 case '\t':
1205 *(t++) = '\\';
1206 *(t++) = 't';
1207 break;
1208 case '\v':
1209 *(t++) = '\\';
1210 *(t++) = 'v';
1211 break;
1212 case '\\':
1213 *(t++) = '\\';
1214 *(t++) = '\\';
1215 break;
1216 case '"':
1217 *(t++) = '\\';
1218 *(t++) = '"';
1219 break;
1220 case '\'':
1221 *(t++) = '\\';
1222 *(t++) = '\'';
1223 break;
1224
1225 default:
1226 /* For special chars we prefer octal over
1227 * hexadecimal encoding, simply because glib's
1228 * g_strescape() does the same */
1229 if ((*f < ' ') || (*f >= 127)) {
1230 *(t++) = '\\';
1231 *(t++) = octchar((unsigned char) *f >> 6);
1232 *(t++) = octchar((unsigned char) *f >> 3);
1233 *(t++) = octchar((unsigned char) *f);
1234 } else
1235 *(t++) = *f;
1236 break;
1237 }
1238
1239 *t = 0;
1240
1241 return r;
1242}
1243
5b4c61cd 1244char *cunescape_length_with_prefix(const char *s, size_t length, const char *prefix) {
4fe88d28
LP
1245 char *r, *t;
1246 const char *f;
5b4c61cd 1247 size_t pl;
4fe88d28
LP
1248
1249 assert(s);
1250
5b4c61cd
LP
1251 /* Undoes C style string escaping, and optionally prefixes it. */
1252
1253 pl = prefix ? strlen(prefix) : 0;
4fe88d28 1254
5b4c61cd 1255 r = new(char, pl+length+1);
7f110ff9 1256 if (!r)
1e2fd62d 1257 return NULL;
4fe88d28 1258
5b4c61cd
LP
1259 if (prefix)
1260 memcpy(r, prefix, pl);
1261
1262 for (f = s, t = r + pl; f < s + length; f++) {
4fe88d28
LP
1263
1264 if (*f != '\\') {
1265 *(t++) = *f;
1266 continue;
1267 }
1268
1269 f++;
1270
1271 switch (*f) {
1272
1273 case 'a':
1274 *(t++) = '\a';
1275 break;
1276 case 'b':
1277 *(t++) = '\b';
1278 break;
1279 case 'f':
1280 *(t++) = '\f';
1281 break;
1282 case 'n':
1283 *(t++) = '\n';
1284 break;
1285 case 'r':
1286 *(t++) = '\r';
1287 break;
1288 case 't':
1289 *(t++) = '\t';
1290 break;
1291 case 'v':
1292 *(t++) = '\v';
1293 break;
1294 case '\\':
1295 *(t++) = '\\';
1296 break;
1297 case '"':
1298 *(t++) = '"';
1299 break;
1300 case '\'':
1301 *(t++) = '\'';
1302 break;
1303
e167fb86
LP
1304 case 's':
1305 /* This is an extension of the XDG syntax files */
1306 *(t++) = ' ';
1307 break;
1308
4fe88d28
LP
1309 case 'x': {
1310 /* hexadecimal encoding */
1311 int a, b;
1312
7f110ff9
LP
1313 a = unhexchar(f[1]);
1314 b = unhexchar(f[2]);
1315
e0a33e7b 1316 if (a < 0 || b < 0 || (a == 0 && b == 0)) {
4fe88d28
LP
1317 /* Invalid escape code, let's take it literal then */
1318 *(t++) = '\\';
1319 *(t++) = 'x';
1320 } else {
1321 *(t++) = (char) ((a << 4) | b);
1322 f += 2;
1323 }
1324
1325 break;
1326 }
1327
1328 case '0':
1329 case '1':
1330 case '2':
1331 case '3':
1332 case '4':
1333 case '5':
1334 case '6':
1335 case '7': {
1336 /* octal encoding */
1337 int a, b, c;
1338
7f110ff9
LP
1339 a = unoctchar(f[0]);
1340 b = unoctchar(f[1]);
1341 c = unoctchar(f[2]);
1342
e0a33e7b 1343 if (a < 0 || b < 0 || c < 0 || (a == 0 && b == 0 && c == 0)) {
4fe88d28
LP
1344 /* Invalid escape code, let's take it literal then */
1345 *(t++) = '\\';
1346 *(t++) = f[0];
1347 } else {
1348 *(t++) = (char) ((a << 6) | (b << 3) | c);
1349 f += 2;
1350 }
1351
1352 break;
1353 }
1354
1355 case 0:
1356 /* premature end of string.*/
1357 *(t++) = '\\';
1358 goto finish;
1359
1360 default:
1361 /* Invalid escape code, let's take it literal then */
1362 *(t++) = '\\';
f3d4cc01 1363 *(t++) = *f;
4fe88d28
LP
1364 break;
1365 }
1366 }
1367
1368finish:
1369 *t = 0;
1370 return r;
1371}
1372
5b4c61cd
LP
1373char *cunescape_length(const char *s, size_t length) {
1374 return cunescape_length_with_prefix(s, length, NULL);
1375}
1376
6febfd0d 1377char *cunescape(const char *s) {
5b4c61cd
LP
1378 assert(s);
1379
6febfd0d
LP
1380 return cunescape_length(s, strlen(s));
1381}
4fe88d28
LP
1382
1383char *xescape(const char *s, const char *bad) {
1384 char *r, *t;
1385 const char *f;
1386
1387 /* Escapes all chars in bad, in addition to \ and all special
1388 * chars, in \xFF style escaping. May be reversed with
1389 * cunescape. */
1390
08ace05b
LP
1391 r = new(char, strlen(s) * 4 + 1);
1392 if (!r)
4fe88d28
LP
1393 return NULL;
1394
1395 for (f = s, t = r; *f; f++) {
1396
b866264a
LP
1397 if ((*f < ' ') || (*f >= 127) ||
1398 (*f == '\\') || strchr(bad, *f)) {
4fe88d28
LP
1399 *(t++) = '\\';
1400 *(t++) = 'x';
1401 *(t++) = hexchar(*f >> 4);
1402 *(t++) = hexchar(*f);
1403 } else
1404 *(t++) = *f;
1405 }
1406
1407 *t = 0;
1408
1409 return r;
1410}
1411
67d51650 1412char *ascii_strlower(char *t) {
4fe88d28
LP
1413 char *p;
1414
67d51650 1415 assert(t);
4fe88d28 1416
67d51650 1417 for (p = t; *p; p++)
4fe88d28
LP
1418 if (*p >= 'A' && *p <= 'Z')
1419 *p = *p - 'A' + 'a';
1420
67d51650 1421 return t;
4fe88d28 1422}
1dccbe19 1423
44a6b1b6 1424_pure_ static bool ignore_file_allow_backup(const char *filename) {
c85dc17b
LP
1425 assert(filename);
1426
1427 return
1428 filename[0] == '.' ||
6c78be3c 1429 streq(filename, "lost+found") ||
e472d476
LP
1430 streq(filename, "aquota.user") ||
1431 streq(filename, "aquota.group") ||
c85dc17b
LP
1432 endswith(filename, ".rpmnew") ||
1433 endswith(filename, ".rpmsave") ||
1434 endswith(filename, ".rpmorig") ||
1435 endswith(filename, ".dpkg-old") ||
1436 endswith(filename, ".dpkg-new") ||
0cdfd26e 1437 endswith(filename, ".dpkg-tmp") ||
c85dc17b
LP
1438 endswith(filename, ".swp");
1439}
1440
a228a22f
LP
1441bool ignore_file(const char *filename) {
1442 assert(filename);
1443
1444 if (endswith(filename, "~"))
93f1a063 1445 return true;
a228a22f
LP
1446
1447 return ignore_file_allow_backup(filename);
1448}
1449
3a0ecb08 1450int fd_nonblock(int fd, bool nonblock) {
be8f4e9e 1451 int flags, nflags;
3a0ecb08
LP
1452
1453 assert(fd >= 0);
1454
be8f4e9e
LP
1455 flags = fcntl(fd, F_GETFL, 0);
1456 if (flags < 0)
3a0ecb08
LP
1457 return -errno;
1458
1459 if (nonblock)
be8f4e9e 1460 nflags = flags | O_NONBLOCK;
3a0ecb08 1461 else
be8f4e9e
LP
1462 nflags = flags & ~O_NONBLOCK;
1463
1464 if (nflags == flags)
1465 return 0;
3a0ecb08 1466
34b42c96 1467 if (fcntl(fd, F_SETFL, nflags) < 0)
3a0ecb08
LP
1468 return -errno;
1469
1470 return 0;
1471}
1472
1473int fd_cloexec(int fd, bool cloexec) {
be8f4e9e 1474 int flags, nflags;
3a0ecb08
LP
1475
1476 assert(fd >= 0);
1477
be8f4e9e
LP
1478 flags = fcntl(fd, F_GETFD, 0);
1479 if (flags < 0)
3a0ecb08
LP
1480 return -errno;
1481
1482 if (cloexec)
be8f4e9e 1483 nflags = flags | FD_CLOEXEC;
3a0ecb08 1484 else
be8f4e9e
LP
1485 nflags = flags & ~FD_CLOEXEC;
1486
1487 if (nflags == flags)
1488 return 0;
3a0ecb08 1489
34b42c96 1490 if (fcntl(fd, F_SETFD, nflags) < 0)
3a0ecb08
LP
1491 return -errno;
1492
1493 return 0;
1494}
1495
44a6b1b6 1496_pure_ static bool fd_in_set(int fd, const int fdset[], unsigned n_fdset) {
b19be9eb
LP
1497 unsigned i;
1498
1499 assert(n_fdset == 0 || fdset);
1500
1501 for (i = 0; i < n_fdset; i++)
1502 if (fdset[i] == fd)
1503 return true;
1504
1505 return false;
1506}
1507
a0d40ac5 1508int close_all_fds(const int except[], unsigned n_except) {
e1d75803 1509 _cleanup_closedir_ DIR *d = NULL;
a0d40ac5
LP
1510 struct dirent *de;
1511 int r = 0;
1512
b19be9eb
LP
1513 assert(n_except == 0 || except);
1514
1515 d = opendir("/proc/self/fd");
1516 if (!d) {
1517 int fd;
1518 struct rlimit rl;
1519
1520 /* When /proc isn't available (for example in chroots)
1521 * the fallback is brute forcing through the fd
1522 * table */
1523
1524 assert_se(getrlimit(RLIMIT_NOFILE, &rl) >= 0);
1525 for (fd = 3; fd < (int) rl.rlim_max; fd ++) {
1526
1527 if (fd_in_set(fd, except, n_except))
1528 continue;
1529
1530 if (close_nointr(fd) < 0)
1531 if (errno != EBADF && r == 0)
1532 r = -errno;
1533 }
1534
1535 return r;
1536 }
a0d40ac5
LP
1537
1538 while ((de = readdir(d))) {
a7610064 1539 int fd = -1;
a0d40ac5 1540
a16e1123 1541 if (ignore_file(de->d_name))
a0d40ac5
LP
1542 continue;
1543
720ce21d
LP
1544 if (safe_atoi(de->d_name, &fd) < 0)
1545 /* Let's better ignore this, just in case */
1546 continue;
a0d40ac5
LP
1547
1548 if (fd < 3)
1549 continue;
1550
1551 if (fd == dirfd(d))
1552 continue;
1553
b19be9eb
LP
1554 if (fd_in_set(fd, except, n_except))
1555 continue;
a0d40ac5 1556
720ce21d 1557 if (close_nointr(fd) < 0) {
2f357920 1558 /* Valgrind has its own FD and doesn't want to have it closed */
720ce21d
LP
1559 if (errno != EBADF && r == 0)
1560 r = -errno;
2f357920 1561 }
a0d40ac5
LP
1562 }
1563
a0d40ac5
LP
1564 return r;
1565}
1566
db12775d
LP
1567bool chars_intersect(const char *a, const char *b) {
1568 const char *p;
1569
1570 /* Returns true if any of the chars in a are in b. */
1571 for (p = a; *p; p++)
1572 if (strchr(b, *p))
1573 return true;
1574
1575 return false;
1576}
1577
42856c10 1578bool fstype_is_network(const char *fstype) {
a05f97b3
LP
1579 static const char table[] =
1580 "cifs\0"
1581 "smbfs\0"
da92ca5e 1582 "sshfs\0"
a05f97b3 1583 "ncpfs\0"
dac70dc7 1584 "ncp\0"
a05f97b3
LP
1585 "nfs\0"
1586 "nfs4\0"
1587 "gfs\0"
67608cad
LP
1588 "gfs2\0"
1589 "glusterfs\0";
1590
1591 const char *x;
1592
1593 x = startswith(fstype, "fuse.");
1594 if (x)
1595 fstype = x;
42856c10 1596
a05f97b3 1597 return nulstr_contains(table, fstype);
42856c10
LP
1598}
1599
601f6a1e 1600int chvt(int vt) {
a05f97b3 1601 _cleanup_close_ int fd;
601f6a1e 1602
a05f97b3
LP
1603 fd = open_terminal("/dev/tty0", O_RDWR|O_NOCTTY|O_CLOEXEC);
1604 if (fd < 0)
601f6a1e
LP
1605 return -errno;
1606
1607 if (vt < 0) {
1608 int tiocl[2] = {
1609 TIOCL_GETKMSGREDIRECT,
1610 0
1611 };
1612
a05f97b3
LP
1613 if (ioctl(fd, TIOCLINUX, tiocl) < 0)
1614 return -errno;
601f6a1e
LP
1615
1616 vt = tiocl[0] <= 0 ? 1 : tiocl[0];
1617 }
1618
1619 if (ioctl(fd, VT_ACTIVATE, vt) < 0)
a05f97b3 1620 return -errno;
601f6a1e 1621
a05f97b3 1622 return 0;
601f6a1e
LP
1623}
1624
8f2d43a0 1625int read_one_char(FILE *f, char *ret, usec_t t, bool *need_nl) {
80876c20 1626 struct termios old_termios, new_termios;
e0a33e7b 1627 char c, line[LINE_MAX];
80876c20
LP
1628
1629 assert(f);
1630 assert(ret);
1631
1632 if (tcgetattr(fileno(f), &old_termios) >= 0) {
1633 new_termios = old_termios;
1634
1635 new_termios.c_lflag &= ~ICANON;
1636 new_termios.c_cc[VMIN] = 1;
1637 new_termios.c_cc[VTIME] = 0;
1638
1639 if (tcsetattr(fileno(f), TCSADRAIN, &new_termios) >= 0) {
1640 size_t k;
1641
3a43da28 1642 if (t != USEC_INFINITY) {
8f2d43a0
LP
1643 if (fd_wait_for_event(fileno(f), POLLIN, t) <= 0) {
1644 tcsetattr(fileno(f), TCSADRAIN, &old_termios);
1645 return -ETIMEDOUT;
1646 }
1647 }
1648
80876c20
LP
1649 k = fread(&c, 1, 1, f);
1650
1651 tcsetattr(fileno(f), TCSADRAIN, &old_termios);
1652
1653 if (k <= 0)
1654 return -EIO;
1655
1656 if (need_nl)
1657 *need_nl = c != '\n';
1658
1659 *ret = c;
1660 return 0;
1661 }
1662 }
1663
3a43da28 1664 if (t != USEC_INFINITY) {
8f2d43a0
LP
1665 if (fd_wait_for_event(fileno(f), POLLIN, t) <= 0)
1666 return -ETIMEDOUT;
e0a33e7b 1667 }
8f2d43a0 1668
3a8a9163 1669 errno = 0;
8f2d43a0 1670 if (!fgets(line, sizeof(line), f))
3a8a9163 1671 return errno ? -errno : -EIO;
80876c20
LP
1672
1673 truncate_nl(line);
1674
1675 if (strlen(line) != 1)
1676 return -EBADMSG;
1677
1678 if (need_nl)
1679 *need_nl = false;
1680
1681 *ret = line[0];
1682 return 0;
1683}
1684
418b9be5 1685int ask_char(char *ret, const char *replies, const char *text, ...) {
e0a33e7b 1686 int r;
1b39d4b9 1687
80876c20
LP
1688 assert(ret);
1689 assert(replies);
1690 assert(text);
1691
1692 for (;;) {
1693 va_list ap;
1694 char c;
80876c20
LP
1695 bool need_nl = true;
1696
8481248b 1697 if (on_tty())
c1072ea0 1698 fputs(ANSI_HIGHLIGHT_ON, stdout);
b1b2dc0c 1699
80876c20
LP
1700 va_start(ap, text);
1701 vprintf(text, ap);
1702 va_end(ap);
1703
8481248b 1704 if (on_tty())
c1072ea0 1705 fputs(ANSI_HIGHLIGHT_OFF, stdout);
b1b2dc0c 1706
80876c20
LP
1707 fflush(stdout);
1708
3a43da28 1709 r = read_one_char(stdin, &c, USEC_INFINITY, &need_nl);
8f2d43a0 1710 if (r < 0) {
80876c20
LP
1711
1712 if (r == -EBADMSG) {
1713 puts("Bad input, please try again.");
1714 continue;
1715 }
1716
1717 putchar('\n');
1718 return r;
1719 }
1720
1721 if (need_nl)
1722 putchar('\n');
1723
1724 if (strchr(replies, c)) {
1725 *ret = c;
1726 return 0;
1727 }
1728
1729 puts("Read unexpected character, please try again.");
1730 }
1731}
1732
418b9be5
LP
1733int ask_string(char **ret, const char *text, ...) {
1734 assert(ret);
1735 assert(text);
1736
1737 for (;;) {
1738 char line[LINE_MAX];
1739 va_list ap;
1740
1741 if (on_tty())
1742 fputs(ANSI_HIGHLIGHT_ON, stdout);
1743
1744 va_start(ap, text);
1745 vprintf(text, ap);
1746 va_end(ap);
1747
1748 if (on_tty())
1749 fputs(ANSI_HIGHLIGHT_OFF, stdout);
1750
1751 fflush(stdout);
1752
1753 errno = 0;
1754 if (!fgets(line, sizeof(line), stdin))
1755 return errno ? -errno : -EIO;
1756
1757 if (!endswith(line, "\n"))
1758 putchar('\n');
1759 else {
1760 char *s;
1761
1762 if (isempty(line))
1763 continue;
1764
1765 truncate_nl(line);
1766 s = strdup(line);
1767 if (!s)
1768 return -ENOMEM;
1769
1770 *ret = s;
1771 return 0;
1772 }
1773 }
1774}
1775
512947d4 1776int reset_terminal_fd(int fd, bool switch_to_text) {
80876c20
LP
1777 struct termios termios;
1778 int r = 0;
3fe5e5d4
LP
1779
1780 /* Set terminal to some sane defaults */
80876c20
LP
1781
1782 assert(fd >= 0);
1783
eed1d0e3
LP
1784 /* We leave locked terminal attributes untouched, so that
1785 * Plymouth may set whatever it wants to set, and we don't
1786 * interfere with that. */
3fe5e5d4
LP
1787
1788 /* Disable exclusive mode, just in case */
1789 ioctl(fd, TIOCNXCL);
1790
5c0100a5 1791 /* Switch to text mode */
512947d4
MS
1792 if (switch_to_text)
1793 ioctl(fd, KDSETMODE, KD_TEXT);
5c0100a5 1794
3fe5e5d4 1795 /* Enable console unicode mode */
df465b3f 1796 ioctl(fd, KDSKBMODE, K_UNICODE);
80876c20
LP
1797
1798 if (tcgetattr(fd, &termios) < 0) {
1799 r = -errno;
1800 goto finish;
1801 }
1802
aaf694ca
LP
1803 /* We only reset the stuff that matters to the software. How
1804 * hardware is set up we don't touch assuming that somebody
1805 * else will do that for us */
1806
1807 termios.c_iflag &= ~(IGNBRK | BRKINT | ISTRIP | INLCR | IGNCR | IUCLC);
80876c20
LP
1808 termios.c_iflag |= ICRNL | IMAXBEL | IUTF8;
1809 termios.c_oflag |= ONLCR;
1810 termios.c_cflag |= CREAD;
1811 termios.c_lflag = ISIG | ICANON | IEXTEN | ECHO | ECHOE | ECHOK | ECHOCTL | ECHOPRT | ECHOKE;
1812
1813 termios.c_cc[VINTR] = 03; /* ^C */
1814 termios.c_cc[VQUIT] = 034; /* ^\ */
1815 termios.c_cc[VERASE] = 0177;
1816 termios.c_cc[VKILL] = 025; /* ^X */
1817 termios.c_cc[VEOF] = 04; /* ^D */
1818 termios.c_cc[VSTART] = 021; /* ^Q */
1819 termios.c_cc[VSTOP] = 023; /* ^S */
1820 termios.c_cc[VSUSP] = 032; /* ^Z */
1821 termios.c_cc[VLNEXT] = 026; /* ^V */
1822 termios.c_cc[VWERASE] = 027; /* ^W */
1823 termios.c_cc[VREPRINT] = 022; /* ^R */
aaf694ca
LP
1824 termios.c_cc[VEOL] = 0;
1825 termios.c_cc[VEOL2] = 0;
80876c20
LP
1826
1827 termios.c_cc[VTIME] = 0;
1828 termios.c_cc[VMIN] = 1;
1829
1830 if (tcsetattr(fd, TCSANOW, &termios) < 0)
1831 r = -errno;
1832
1833finish:
1834 /* Just in case, flush all crap out */
1835 tcflush(fd, TCIOFLUSH);
1836
1837 return r;
1838}
1839
6ea832a2 1840int reset_terminal(const char *name) {
03e334a1 1841 _cleanup_close_ int fd = -1;
6ea832a2
LP
1842
1843 fd = open_terminal(name, O_RDWR|O_NOCTTY|O_CLOEXEC);
1844 if (fd < 0)
1845 return fd;
1846
03e334a1 1847 return reset_terminal_fd(fd, true);
6ea832a2
LP
1848}
1849
80876c20
LP
1850int open_terminal(const char *name, int mode) {
1851 int fd, r;
f73f76ac 1852 unsigned c = 0;
80876c20 1853
f73f76ac
LP
1854 /*
1855 * If a TTY is in the process of being closed opening it might
1856 * cause EIO. This is horribly awful, but unlikely to be
1857 * changed in the kernel. Hence we work around this problem by
1858 * retrying a couple of times.
1859 *
1860 * https://bugs.launchpad.net/ubuntu/+source/linux/+bug/554172/comments/245
1861 */
1862
dd94c17e
LP
1863 assert(!(mode & O_CREAT));
1864
f73f76ac 1865 for (;;) {
dd94c17e 1866 fd = open(name, mode, 0);
af6da548 1867 if (fd >= 0)
f73f76ac
LP
1868 break;
1869
1870 if (errno != EIO)
1871 return -errno;
1872
af6da548 1873 /* Max 1s in total */
f73f76ac
LP
1874 if (c >= 20)
1875 return -errno;
1876
1877 usleep(50 * USEC_PER_MSEC);
1878 c++;
1879 }
1880
af6da548
LP
1881 r = isatty(fd);
1882 if (r < 0) {
03e334a1 1883 safe_close(fd);
80876c20
LP
1884 return -errno;
1885 }
1886
1887 if (!r) {
03e334a1 1888 safe_close(fd);
80876c20
LP
1889 return -ENOTTY;
1890 }
1891
1892 return fd;
1893}
1894
1895int flush_fd(int fd) {
b92bea5d
ZJS
1896 struct pollfd pollfd = {
1897 .fd = fd,
1898 .events = POLLIN,
1899 };
80876c20
LP
1900
1901 for (;;) {
20c03b7b 1902 char buf[LINE_MAX];
80876c20
LP
1903 ssize_t l;
1904 int r;
1905
e62d8c39
ZJS
1906 r = poll(&pollfd, 1, 0);
1907 if (r < 0) {
80876c20
LP
1908 if (errno == EINTR)
1909 continue;
1910
1911 return -errno;
80876c20 1912
e62d8c39 1913 } else if (r == 0)
80876c20
LP
1914 return 0;
1915
e62d8c39
ZJS
1916 l = read(fd, buf, sizeof(buf));
1917 if (l < 0) {
80876c20
LP
1918
1919 if (errno == EINTR)
1920 continue;
1921
1922 if (errno == EAGAIN)
1923 return 0;
1924
1925 return -errno;
e62d8c39 1926 } else if (l == 0)
80876c20
LP
1927 return 0;
1928 }
1929}
1930
af6da548
LP
1931int acquire_terminal(
1932 const char *name,
1933 bool fail,
1934 bool force,
1935 bool ignore_tiocstty_eperm,
1936 usec_t timeout) {
1937
4a0ff478 1938 int fd = -1, notify = -1, r = 0, wd = -1;
af6da548 1939 usec_t ts = 0;
80876c20
LP
1940
1941 assert(name);
1942
1943 /* We use inotify to be notified when the tty is closed. We
1944 * create the watch before checking if we can actually acquire
1945 * it, so that we don't lose any event.
1946 *
1947 * Note: strictly speaking this actually watches for the
1948 * device being closed, it does *not* really watch whether a
1949 * tty loses its controlling process. However, unless some
1950 * rogue process uses TIOCNOTTY on /dev/tty *after* closing
1951 * its tty otherwise this will not become a problem. As long
1952 * as the administrator makes sure not configure any service
1953 * on the same tty as an untrusted user this should not be a
1954 * problem. (Which he probably should not do anyway.) */
1955
3a43da28 1956 if (timeout != USEC_INFINITY)
af6da548
LP
1957 ts = now(CLOCK_MONOTONIC);
1958
80876c20 1959 if (!fail && !force) {
3a43da28 1960 notify = inotify_init1(IN_CLOEXEC | (timeout != USEC_INFINITY ? IN_NONBLOCK : 0));
af6da548 1961 if (notify < 0) {
80876c20
LP
1962 r = -errno;
1963 goto fail;
1964 }
1965
af6da548
LP
1966 wd = inotify_add_watch(notify, name, IN_CLOSE);
1967 if (wd < 0) {
80876c20
LP
1968 r = -errno;
1969 goto fail;
1970 }
1971 }
1972
1973 for (;;) {
b92bea5d
ZJS
1974 struct sigaction sa_old, sa_new = {
1975 .sa_handler = SIG_IGN,
1976 .sa_flags = SA_RESTART,
1977 };
1978
af6da548
LP
1979 if (notify >= 0) {
1980 r = flush_fd(notify);
1981 if (r < 0)
e3d1855b 1982 goto fail;
af6da548 1983 }
80876c20
LP
1984
1985 /* We pass here O_NOCTTY only so that we can check the return
1986 * value TIOCSCTTY and have a reliable way to figure out if we
1987 * successfully became the controlling process of the tty */
af6da548
LP
1988 fd = open_terminal(name, O_RDWR|O_NOCTTY|O_CLOEXEC);
1989 if (fd < 0)
6ea832a2 1990 return fd;
80876c20 1991
32c4bef8
LP
1992 /* Temporarily ignore SIGHUP, so that we don't get SIGHUP'ed
1993 * if we already own the tty. */
32c4bef8
LP
1994 assert_se(sigaction(SIGHUP, &sa_new, &sa_old) == 0);
1995
80876c20 1996 /* First, try to get the tty */
32c4bef8
LP
1997 if (ioctl(fd, TIOCSCTTY, force) < 0)
1998 r = -errno;
1999
2000 assert_se(sigaction(SIGHUP, &sa_old, NULL) == 0);
21de3988
LP
2001
2002 /* Sometimes it makes sense to ignore TIOCSCTTY
2003 * returning EPERM, i.e. when very likely we already
2004 * are have this controlling terminal. */
32c4bef8 2005 if (r < 0 && r == -EPERM && ignore_tiocstty_eperm)
21de3988
LP
2006 r = 0;
2007
32c4bef8 2008 if (r < 0 && (force || fail || r != -EPERM)) {
80876c20
LP
2009 goto fail;
2010 }
2011
2012 if (r >= 0)
2013 break;
2014
2015 assert(!fail);
2016 assert(!force);
2017 assert(notify >= 0);
2018
2019 for (;;) {
f601daa7 2020 uint8_t inotify_buffer[sizeof(struct inotify_event) + FILENAME_MAX];
80876c20 2021 ssize_t l;
f601daa7 2022 struct inotify_event *e;
80876c20 2023
3a43da28 2024 if (timeout != USEC_INFINITY) {
af6da548
LP
2025 usec_t n;
2026
2027 n = now(CLOCK_MONOTONIC);
2028 if (ts + timeout < n) {
2029 r = -ETIMEDOUT;
2030 goto fail;
2031 }
2032
2033 r = fd_wait_for_event(fd, POLLIN, ts + timeout - n);
2034 if (r < 0)
2035 goto fail;
2036
2037 if (r == 0) {
2038 r = -ETIMEDOUT;
2039 goto fail;
2040 }
2041 }
2042
2043 l = read(notify, inotify_buffer, sizeof(inotify_buffer));
2044 if (l < 0) {
80876c20 2045
af6da548 2046 if (errno == EINTR || errno == EAGAIN)
f601daa7
LP
2047 continue;
2048
2049 r = -errno;
2050 goto fail;
2051 }
2052
2053 e = (struct inotify_event*) inotify_buffer;
80876c20 2054
f601daa7
LP
2055 while (l > 0) {
2056 size_t step;
80876c20 2057
f601daa7 2058 if (e->wd != wd || !(e->mask & IN_CLOSE)) {
80876c20 2059 r = -EIO;
f601daa7
LP
2060 goto fail;
2061 }
80876c20 2062
f601daa7
LP
2063 step = sizeof(struct inotify_event) + e->len;
2064 assert(step <= (size_t) l);
80876c20 2065
f601daa7
LP
2066 e = (struct inotify_event*) ((uint8_t*) e + step);
2067 l -= step;
80876c20
LP
2068 }
2069
2070 break;
2071 }
2072
2073 /* We close the tty fd here since if the old session
2074 * ended our handle will be dead. It's important that
2075 * we do this after sleeping, so that we don't enter
2076 * an endless loop. */
6f53e671 2077 fd = safe_close(fd);
80876c20
LP
2078 }
2079
03e334a1 2080 safe_close(notify);
80876c20 2081
512947d4
MS
2082 r = reset_terminal_fd(fd, true);
2083 if (r < 0)
80876c20
LP
2084 log_warning("Failed to reset terminal: %s", strerror(-r));
2085
2086 return fd;
2087
2088fail:
03e334a1
LP
2089 safe_close(fd);
2090 safe_close(notify);
80876c20
LP
2091
2092 return r;
2093}
2094
2095int release_terminal(void) {
56d96fc0 2096 static const struct sigaction sa_new = {
b92bea5d
ZJS
2097 .sa_handler = SIG_IGN,
2098 .sa_flags = SA_RESTART,
2099 };
56d96fc0
LP
2100
2101 _cleanup_close_ int fd = -1;
2102 struct sigaction sa_old;
2103 int r = 0;
80876c20 2104
e62d8c39
ZJS
2105 fd = open("/dev/tty", O_RDWR|O_NOCTTY|O_NDELAY|O_CLOEXEC);
2106 if (fd < 0)
80876c20
LP
2107 return -errno;
2108
57cd2192
LP
2109 /* Temporarily ignore SIGHUP, so that we don't get SIGHUP'ed
2110 * by our own TIOCNOTTY */
57cd2192
LP
2111 assert_se(sigaction(SIGHUP, &sa_new, &sa_old) == 0);
2112
80876c20
LP
2113 if (ioctl(fd, TIOCNOTTY) < 0)
2114 r = -errno;
2115
57cd2192
LP
2116 assert_se(sigaction(SIGHUP, &sa_old, NULL) == 0);
2117
80876c20
LP
2118 return r;
2119}
2120
9a34ec5f
LP
2121int sigaction_many(const struct sigaction *sa, ...) {
2122 va_list ap;
2123 int r = 0, sig;
2124
2125 va_start(ap, sa);
2126 while ((sig = va_arg(ap, int)) > 0)
2127 if (sigaction(sig, sa, NULL) < 0)
2128 r = -errno;
2129 va_end(ap);
2130
2131 return r;
2132}
2133
2134int ignore_signals(int sig, ...) {
b92bea5d
ZJS
2135 struct sigaction sa = {
2136 .sa_handler = SIG_IGN,
2137 .sa_flags = SA_RESTART,
2138 };
9a34ec5f
LP
2139 va_list ap;
2140 int r = 0;
a337c6fc 2141
9a34ec5f
LP
2142 if (sigaction(sig, &sa, NULL) < 0)
2143 r = -errno;
2144
2145 va_start(ap, sig);
2146 while ((sig = va_arg(ap, int)) > 0)
2147 if (sigaction(sig, &sa, NULL) < 0)
2148 r = -errno;
2149 va_end(ap);
2150
2151 return r;
2152}
2153
2154int default_signals(int sig, ...) {
b92bea5d
ZJS
2155 struct sigaction sa = {
2156 .sa_handler = SIG_DFL,
2157 .sa_flags = SA_RESTART,
2158 };
9a34ec5f
LP
2159 va_list ap;
2160 int r = 0;
2161
9a34ec5f
LP
2162 if (sigaction(sig, &sa, NULL) < 0)
2163 r = -errno;
2164
2165 va_start(ap, sig);
2166 while ((sig = va_arg(ap, int)) > 0)
2167 if (sigaction(sig, &sa, NULL) < 0)
2168 r = -errno;
2169 va_end(ap);
2170
2171 return r;
a337c6fc
LP
2172}
2173
3d94f76c 2174void safe_close_pair(int p[]) {
8d567588
LP
2175 assert(p);
2176
3d94f76c
LP
2177 if (p[0] == p[1]) {
2178 /* Special case pairs which use the same fd in both
2179 * directions... */
2180 p[0] = p[1] = safe_close(p[0]);
2181 return;
8d567588
LP
2182 }
2183
3d94f76c
LP
2184 p[0] = safe_close(p[0]);
2185 p[1] = safe_close(p[1]);
8d567588
LP
2186}
2187
eb22ac37 2188ssize_t loop_read(int fd, void *buf, size_t nbytes, bool do_poll) {
7d5dd5e0 2189 uint8_t *p = buf;
8d567588
LP
2190 ssize_t n = 0;
2191
2192 assert(fd >= 0);
2193 assert(buf);
2194
8d567588
LP
2195 while (nbytes > 0) {
2196 ssize_t k;
2197
7d5dd5e0
LP
2198 k = read(fd, p, nbytes);
2199 if (k < 0 && errno == EINTR)
2200 continue;
8d567588 2201
7d5dd5e0 2202 if (k < 0 && errno == EAGAIN && do_poll) {
8d567588 2203
7d5dd5e0
LP
2204 /* We knowingly ignore any return value here,
2205 * and expect that any error/EOF is reported
2206 * via read() */
8d567588 2207
3a43da28 2208 fd_wait_for_event(fd, POLLIN, USEC_INFINITY);
7d5dd5e0
LP
2209 continue;
2210 }
8d567588 2211
7d5dd5e0 2212 if (k <= 0)
8d567588 2213 return n > 0 ? n : (k < 0 ? -errno : 0);
8d567588
LP
2214
2215 p += k;
2216 nbytes -= k;
2217 n += k;
2218 }
2219
2220 return n;
2221}
2222
eb22ac37 2223ssize_t loop_write(int fd, const void *buf, size_t nbytes, bool do_poll) {
7d5dd5e0 2224 const uint8_t *p = buf;
eb22ac37
LP
2225 ssize_t n = 0;
2226
2227 assert(fd >= 0);
2228 assert(buf);
2229
eb22ac37
LP
2230 while (nbytes > 0) {
2231 ssize_t k;
2232
fe652127 2233 k = write(fd, p, nbytes);
7d5dd5e0
LP
2234 if (k < 0 && errno == EINTR)
2235 continue;
eb22ac37 2236
7d5dd5e0 2237 if (k < 0 && errno == EAGAIN && do_poll) {
eb22ac37 2238
7d5dd5e0
LP
2239 /* We knowingly ignore any return value here,
2240 * and expect that any error/EOF is reported
2241 * via write() */
eb22ac37 2242
3a43da28 2243 fd_wait_for_event(fd, POLLOUT, USEC_INFINITY);
7d5dd5e0
LP
2244 continue;
2245 }
eb22ac37 2246
7d5dd5e0 2247 if (k <= 0)
eb22ac37 2248 return n > 0 ? n : (k < 0 ? -errno : 0);
eb22ac37
LP
2249
2250 p += k;
2251 nbytes -= k;
2252 n += k;
2253 }
2254
2255 return n;
2256}
2257
5556b5fe
LP
2258int parse_size(const char *t, off_t base, off_t *size) {
2259
2260 /* Soo, sometimes we want to parse IEC binary suffxies, and
2261 * sometimes SI decimal suffixes. This function can parse
2262 * both. Which one is the right way depends on the
2263 * context. Wikipedia suggests that SI is customary for
2264 * hardrware metrics and network speeds, while IEC is
2265 * customary for most data sizes used by software and volatile
2266 * (RAM) memory. Hence be careful which one you pick!
2267 *
2268 * In either case we use just K, M, G as suffix, and not Ki,
2269 * Mi, Gi or so (as IEC would suggest). That's because that's
2270 * frickin' ugly. But this means you really need to make sure
2271 * to document which base you are parsing when you use this
2272 * call. */
2273
2274 struct table {
ab1f0633 2275 const char *suffix;
b32ff512 2276 unsigned long long factor;
5556b5fe
LP
2277 };
2278
2279 static const struct table iec[] = {
32895bb3 2280 { "E", 1024ULL*1024ULL*1024ULL*1024ULL*1024ULL*1024ULL },
840292be
ZJS
2281 { "P", 1024ULL*1024ULL*1024ULL*1024ULL*1024ULL },
2282 { "T", 1024ULL*1024ULL*1024ULL*1024ULL },
2283 { "G", 1024ULL*1024ULL*1024ULL },
2284 { "M", 1024ULL*1024ULL },
2285 { "K", 1024ULL },
2286 { "B", 1 },
ab1f0633
LP
2287 { "", 1 },
2288 };
2289
5556b5fe 2290 static const struct table si[] = {
5556b5fe 2291 { "E", 1000ULL*1000ULL*1000ULL*1000ULL*1000ULL*1000ULL },
840292be
ZJS
2292 { "P", 1000ULL*1000ULL*1000ULL*1000ULL*1000ULL },
2293 { "T", 1000ULL*1000ULL*1000ULL*1000ULL },
2294 { "G", 1000ULL*1000ULL*1000ULL },
2295 { "M", 1000ULL*1000ULL },
2296 { "K", 1000ULL },
2297 { "B", 1 },
5556b5fe
LP
2298 { "", 1 },
2299 };
2300
2301 const struct table *table;
ab1f0633 2302 const char *p;
b32ff512 2303 unsigned long long r = 0;
840292be 2304 unsigned n_entries, start_pos = 0;
ab1f0633
LP
2305
2306 assert(t);
5556b5fe
LP
2307 assert(base == 1000 || base == 1024);
2308 assert(size);
2309
2310 if (base == 1000) {
2311 table = si;
2312 n_entries = ELEMENTSOF(si);
2313 } else {
2314 table = iec;
2315 n_entries = ELEMENTSOF(iec);
2316 }
ab1f0633
LP
2317
2318 p = t;
2319 do {
2320 long long l;
9480794b
ZJS
2321 unsigned long long l2;
2322 double frac = 0;
ab1f0633
LP
2323 char *e;
2324 unsigned i;
2325
2326 errno = 0;
2327 l = strtoll(p, &e, 10);
2328
8333c77e 2329 if (errno > 0)
ab1f0633
LP
2330 return -errno;
2331
2332 if (l < 0)
2333 return -ERANGE;
2334
2335 if (e == p)
2336 return -EINVAL;
2337
9480794b
ZJS
2338 if (*e == '.') {
2339 e++;
2340 if (*e >= '0' && *e <= '9') {
2341 char *e2;
2342
2343 /* strotoull itself would accept space/+/- */
2344 l2 = strtoull(e, &e2, 10);
2345
2346 if (errno == ERANGE)
2347 return -errno;
2348
2349 /* Ignore failure. E.g. 10.M is valid */
2350 frac = l2;
2351 for (; e < e2; e++)
2352 frac /= 10;
2353 }
2354 }
2355
ab1f0633
LP
2356 e += strspn(e, WHITESPACE);
2357
840292be 2358 for (i = start_pos; i < n_entries; i++)
ab1f0633 2359 if (startswith(e, table[i].suffix)) {
b32ff512 2360 unsigned long long tmp;
9480794b 2361 if ((unsigned long long) l + (frac > 0) > ULLONG_MAX / table[i].factor)
b32ff512 2362 return -ERANGE;
9480794b 2363 tmp = l * table[i].factor + (unsigned long long) (frac * table[i].factor);
b32ff512
ZJS
2364 if (tmp > ULLONG_MAX - r)
2365 return -ERANGE;
2366
2367 r += tmp;
2368 if ((unsigned long long) (off_t) r != r)
2369 return -ERANGE;
2370
ab1f0633 2371 p = e + strlen(table[i].suffix);
840292be
ZJS
2372
2373 start_pos = i + 1;
ab1f0633
LP
2374 break;
2375 }
2376
5556b5fe 2377 if (i >= n_entries)
ab1f0633
LP
2378 return -EINVAL;
2379
b32ff512 2380 } while (*p);
ab1f0633 2381
5556b5fe 2382 *size = r;
ab1f0633
LP
2383
2384 return 0;
2385}
2386
843d2643
LP
2387int make_stdio(int fd) {
2388 int r, s, t;
2389
2390 assert(fd >= 0);
2391
73836c5c
LP
2392 r = dup3(fd, STDIN_FILENO, 0);
2393 s = dup3(fd, STDOUT_FILENO, 0);
2394 t = dup3(fd, STDERR_FILENO, 0);
843d2643
LP
2395
2396 if (fd >= 3)
03e334a1 2397 safe_close(fd);
843d2643
LP
2398
2399 if (r < 0 || s < 0 || t < 0)
2400 return -errno;
2401
73836c5c 2402 /* We rely here that the new fd has O_CLOEXEC not set */
7862f62d 2403
843d2643
LP
2404 return 0;
2405}
2406
ade509ce
LP
2407int make_null_stdio(void) {
2408 int null_fd;
2409
cd3bd60a
LP
2410 null_fd = open("/dev/null", O_RDWR|O_NOCTTY);
2411 if (null_fd < 0)
ade509ce
LP
2412 return -errno;
2413
2414 return make_stdio(null_fd);
2415}
2416
8407a5d0
LP
2417bool is_device_path(const char *path) {
2418
2419 /* Returns true on paths that refer to a device, either in
2420 * sysfs or in /dev */
2421
2422 return
2423 path_startswith(path, "/dev/") ||
2424 path_startswith(path, "/sys/");
2425}
2426
01f78473 2427int dir_is_empty(const char *path) {
a05f97b3 2428 _cleanup_closedir_ DIR *d;
01f78473 2429
a05f97b3
LP
2430 d = opendir(path);
2431 if (!d)
01f78473
LP
2432 return -errno;
2433
2434 for (;;) {
7d5e9c0f 2435 struct dirent *de;
01f78473 2436
3fd11280
FW
2437 errno = 0;
2438 de = readdir(d);
2439 if (!de && errno != 0)
2440 return -errno;
01f78473 2441
a05f97b3
LP
2442 if (!de)
2443 return 1;
01f78473 2444
a05f97b3
LP
2445 if (!ignore_file(de->d_name))
2446 return 0;
2447 }
01f78473
LP
2448}
2449
844ec79b
ZJS
2450char* dirname_malloc(const char *path) {
2451 char *d, *dir, *dir2;
2452
2453 d = strdup(path);
2454 if (!d)
2455 return NULL;
2456 dir = dirname(d);
2457 assert(dir);
2458
2459 if (dir != d) {
2460 dir2 = strdup(dir);
2461 free(d);
2462 return dir2;
2463 }
2464
2465 return dir;
2466}
2467
b89446bb 2468int dev_urandom(void *p, size_t n) {
a05f97b3 2469 _cleanup_close_ int fd;
9bf3b535 2470 ssize_t k;
d3782d60 2471
ac0930c8
LP
2472 fd = open("/dev/urandom", O_RDONLY|O_CLOEXEC|O_NOCTTY);
2473 if (fd < 0)
b89446bb 2474 return errno == ENOENT ? -ENOSYS : -errno;
d3782d60 2475
9bf3b535 2476 k = loop_read(fd, p, n, true);
b89446bb
LP
2477 if (k < 0)
2478 return (int) k;
2479 if ((size_t) k != n)
2480 return -EIO;
2481
2482 return 0;
2483}
2484
2485void random_bytes(void *p, size_t n) {
2486 static bool srand_called = false;
2487 uint8_t *q;
2488 int r;
d3782d60 2489
b89446bb
LP
2490 r = dev_urandom(p, n);
2491 if (r >= 0)
2492 return;
d3782d60 2493
b89446bb
LP
2494 /* If some idiot made /dev/urandom unavailable to us, he'll
2495 * get a PRNG instead. */
d3782d60 2496
9bf3b535 2497 if (!srand_called) {
b89446bb 2498 unsigned x = 0;
a3b6fafe 2499
9bf3b535
LP
2500#ifdef HAVE_SYS_AUXV_H
2501 /* The kernel provides us with a bit of entropy in
2502 * auxv, so let's try to make use of that to seed the
2503 * pseudo-random generator. It's better than
2504 * nothing... */
a3b6fafe 2505
9bf3b535
LP
2506 void *auxv;
2507
2508 auxv = (void*) getauxval(AT_RANDOM);
2509 if (auxv)
b89446bb 2510 x ^= *(unsigned*) auxv;
9bf3b535 2511#endif
a3b6fafe 2512
b89446bb
LP
2513 x ^= (unsigned) now(CLOCK_REALTIME);
2514 x ^= (unsigned) gettid();
2515
2516 srand(x);
9bf3b535
LP
2517 srand_called = true;
2518 }
a3b6fafe 2519
9bf3b535
LP
2520 for (q = p; q < (uint8_t*) p + n; q ++)
2521 *q = rand();
a3b6fafe
LP
2522}
2523
5b6319dc
LP
2524void rename_process(const char name[8]) {
2525 assert(name);
2526
5d6b1584
LP
2527 /* This is a like a poor man's setproctitle(). It changes the
2528 * comm field, argv[0], and also the glibc's internally used
2529 * name of the process. For the first one a limit of 16 chars
2530 * applies, to the second one usually one of 10 (i.e. length
2531 * of "/sbin/init"), to the third one one of 7 (i.e. length of
2532 * "systemd"). If you pass a longer string it will be
2533 * truncated */
5b6319dc 2534
5d6b1584 2535 prctl(PR_SET_NAME, name);
5b6319dc
LP
2536
2537 if (program_invocation_name)
2538 strncpy(program_invocation_name, name, strlen(program_invocation_name));
9a0e6896
LP
2539
2540 if (saved_argc > 0) {
2541 int i;
2542
2543 if (saved_argv[0])
2544 strncpy(saved_argv[0], name, strlen(saved_argv[0]));
2545
2546 for (i = 1; i < saved_argc; i++) {
2547 if (!saved_argv[i])
2548 break;
2549
29804cc1 2550 memzero(saved_argv[i], strlen(saved_argv[i]));
9a0e6896
LP
2551 }
2552 }
5b6319dc
LP
2553}
2554
7d793605
LP
2555void sigset_add_many(sigset_t *ss, ...) {
2556 va_list ap;
2557 int sig;
2558
2559 assert(ss);
2560
2561 va_start(ap, ss);
2562 while ((sig = va_arg(ap, int)) > 0)
2563 assert_se(sigaddset(ss, sig) == 0);
2564 va_end(ap);
2565}
2566
856a5a7d
LP
2567int sigprocmask_many(int how, ...) {
2568 va_list ap;
2569 sigset_t ss;
2570 int sig;
2571
2572 assert_se(sigemptyset(&ss) == 0);
2573
2574 va_start(ap, how);
2575 while ((sig = va_arg(ap, int)) > 0)
2576 assert_se(sigaddset(&ss, sig) == 0);
2577 va_end(ap);
2578
2579 if (sigprocmask(how, &ss, NULL) < 0)
2580 return -errno;
2581
2582 return 0;
2583}
2584
ef2f1067
LP
2585char* gethostname_malloc(void) {
2586 struct utsname u;
2587
2588 assert_se(uname(&u) >= 0);
2589
344de609 2590 if (!isempty(u.nodename) && !streq(u.nodename, "(none)"))
ef2f1067
LP
2591 return strdup(u.nodename);
2592
2593 return strdup(u.sysname);
2594}
2595
344de609
LP
2596bool hostname_is_set(void) {
2597 struct utsname u;
2598
2599 assert_se(uname(&u) >= 0);
2600
2601 return !isempty(u.nodename) && !streq(u.nodename, "(none)");
2602}
2603
f1566e63 2604char *lookup_uid(uid_t uid) {
ef2f1067 2605 long bufsize;
a05f97b3
LP
2606 char *name;
2607 _cleanup_free_ char *buf = NULL;
ef2f1067 2608 struct passwd pwbuf, *pw = NULL;
ef2f1067
LP
2609
2610 /* Shortcut things to avoid NSS lookups */
2611 if (uid == 0)
2612 return strdup("root");
2613
7c5f152a
LP
2614 bufsize = sysconf(_SC_GETPW_R_SIZE_MAX);
2615 if (bufsize <= 0)
ef2f1067
LP
2616 bufsize = 4096;
2617
7c5f152a
LP
2618 buf = malloc(bufsize);
2619 if (!buf)
ef2f1067
LP
2620 return NULL;
2621
a05f97b3
LP
2622 if (getpwuid_r(uid, &pwbuf, buf, bufsize, &pw) == 0 && pw)
2623 return strdup(pw->pw_name);
ef2f1067 2624
de0671ee 2625 if (asprintf(&name, UID_FMT, uid) < 0)
ef2f1067
LP
2626 return NULL;
2627
2628 return name;
2629}
2630
7c5f152a
LP
2631char* getlogname_malloc(void) {
2632 uid_t uid;
2633 struct stat st;
2634
2635 if (isatty(STDIN_FILENO) && fstat(STDIN_FILENO, &st) >= 0)
2636 uid = st.st_uid;
2637 else
2638 uid = getuid();
2639
2640 return lookup_uid(uid);
2641}
2642
2643char *getusername_malloc(void) {
2644 const char *e;
2645
2646 e = getenv("USER");
2647 if (e)
2648 return strdup(e);
2649
2650 return lookup_uid(getuid());
2651}
2652
fc116c6a
LP
2653int getttyname_malloc(int fd, char **r) {
2654 char path[PATH_MAX], *c;
618e02c7 2655 int k;
8c6db833
LP
2656
2657 assert(r);
ef2f1067 2658
a05f97b3 2659 k = ttyname_r(fd, path, sizeof(path));
27373e44 2660 if (k > 0)
618e02c7 2661 return -k;
ef2f1067
LP
2662
2663 char_array_0(path);
2664
a05f97b3
LP
2665 c = strdup(startswith(path, "/dev/") ? path + 5 : path);
2666 if (!c)
8c6db833
LP
2667 return -ENOMEM;
2668
2669 *r = c;
2670 return 0;
2671}
2672
fc116c6a
LP
2673int getttyname_harder(int fd, char **r) {
2674 int k;
2675 char *s;
2676
a05f97b3
LP
2677 k = getttyname_malloc(fd, &s);
2678 if (k < 0)
fc116c6a
LP
2679 return k;
2680
2681 if (streq(s, "tty")) {
2682 free(s);
4d6d6518 2683 return get_ctty(0, NULL, r);
fc116c6a
LP
2684 }
2685
2686 *r = s;
2687 return 0;
2688}
2689
4d6d6518 2690int get_ctty_devnr(pid_t pid, dev_t *d) {
b4696bce
SP
2691 int r;
2692 _cleanup_free_ char *line = NULL;
2693 const char *p;
fc116c6a 2694 unsigned long ttynr;
fc116c6a 2695
49aa47c7 2696 assert(pid >= 0);
49aa47c7 2697
b4696bce
SP
2698 p = procfs_file_alloca(pid, "stat");
2699 r = read_one_line_file(p, &line);
2700 if (r < 0)
2701 return r;
fc116c6a 2702
4d6d6518
LP
2703 p = strrchr(line, ')');
2704 if (!p)
fc116c6a
LP
2705 return -EIO;
2706
2707 p++;
2708
2709 if (sscanf(p, " "
2710 "%*c " /* state */
2711 "%*d " /* ppid */
2712 "%*d " /* pgrp */
2713 "%*d " /* session */
2714 "%lu ", /* ttynr */
2715 &ttynr) != 1)
2716 return -EIO;
2717
11dc5d2b
LP
2718 if (major(ttynr) == 0 && minor(ttynr) == 0)
2719 return -ENOENT;
2720
0bee65f0
LP
2721 if (d)
2722 *d = (dev_t) ttynr;
2723
fc116c6a
LP
2724 return 0;
2725}
2726
4d6d6518 2727int get_ctty(pid_t pid, dev_t *_devnr, char **r) {
833fce28
LP
2728 char fn[sizeof("/dev/char/")-1 + 2*DECIMAL_STR_MAX(unsigned) + 1 + 1], *b = NULL;
2729 _cleanup_free_ char *s = NULL;
2730 const char *p;
fc116c6a 2731 dev_t devnr;
833fce28 2732 int k;
fc116c6a
LP
2733
2734 assert(r);
2735
4d6d6518
LP
2736 k = get_ctty_devnr(pid, &devnr);
2737 if (k < 0)
fc116c6a
LP
2738 return k;
2739
2740 snprintf(fn, sizeof(fn), "/dev/char/%u:%u", major(devnr), minor(devnr));
fc116c6a 2741
23406ce5
LP
2742 k = readlink_malloc(fn, &s);
2743 if (k < 0) {
fc116c6a
LP
2744
2745 if (k != -ENOENT)
2746 return k;
2747
46824d0e
LP
2748 /* This is an ugly hack */
2749 if (major(devnr) == 136) {
de0671ee 2750 asprintf(&b, "pts/%u", minor(devnr));
833fce28 2751 goto finish;
46824d0e
LP
2752 }
2753
fc116c6a
LP
2754 /* Probably something like the ptys which have no
2755 * symlink in /dev/char. Let's return something
2756 * vaguely useful. */
2757
23406ce5 2758 b = strdup(fn + 5);
833fce28 2759 goto finish;
fc116c6a
LP
2760 }
2761
2762 if (startswith(s, "/dev/"))
2763 p = s + 5;
2764 else if (startswith(s, "../"))
2765 p = s + 3;
2766 else
2767 p = s;
2768
2769 b = strdup(p);
fc116c6a 2770
833fce28 2771finish:
fc116c6a
LP
2772 if (!b)
2773 return -ENOMEM;
2774
2775 *r = b;
46824d0e
LP
2776 if (_devnr)
2777 *_devnr = devnr;
2778
fc116c6a
LP
2779 return 0;
2780}
2781
f56d5db9 2782int rm_rf_children_dangerous(int fd, bool only_dirs, bool honour_sticky, struct stat *root_dev) {
dede0e33 2783 _cleanup_closedir_ DIR *d = NULL;
8c6db833
LP
2784 int ret = 0;
2785
2786 assert(fd >= 0);
2787
2788 /* This returns the first error we run into, but nevertheless
7925c22a 2789 * tries to go on. This closes the passed fd. */
8c6db833 2790
d4d046e3
LP
2791 d = fdopendir(fd);
2792 if (!d) {
03e334a1 2793 safe_close(fd);
4c633005
LP
2794
2795 return errno == ENOENT ? 0 : -errno;
8c6db833
LP
2796 }
2797
2798 for (;;) {
7d5e9c0f 2799 struct dirent *de;
7925c22a
LP
2800 bool is_dir, keep_around;
2801 struct stat st;
8c6db833
LP
2802 int r;
2803
3fd11280
FW
2804 errno = 0;
2805 de = readdir(d);
dede0e33
ZJS
2806 if (!de) {
2807 if (errno != 0 && ret == 0)
3fd11280 2808 ret = -errno;
dede0e33 2809 return ret;
8c6db833
LP
2810 }
2811
8c6db833
LP
2812 if (streq(de->d_name, ".") || streq(de->d_name, ".."))
2813 continue;
2814
7925c22a
LP
2815 if (de->d_type == DT_UNKNOWN ||
2816 honour_sticky ||
2817 (de->d_type == DT_DIR && root_dev)) {
8c6db833 2818 if (fstatat(fd, de->d_name, &st, AT_SYMLINK_NOFOLLOW) < 0) {
4c633005 2819 if (ret == 0 && errno != ENOENT)
8c6db833
LP
2820 ret = -errno;
2821 continue;
2822 }
2823
2824 is_dir = S_ISDIR(st.st_mode);
7925c22a
LP
2825 keep_around =
2826 honour_sticky &&
2827 (st.st_uid == 0 || st.st_uid == getuid()) &&
2828 (st.st_mode & S_ISVTX);
ad293f5a 2829 } else {
8c6db833 2830 is_dir = de->d_type == DT_DIR;
7925c22a 2831 keep_around = false;
ad293f5a 2832 }
8c6db833
LP
2833
2834 if (is_dir) {
2835 int subdir_fd;
8c6db833 2836
597f43c7 2837 /* if root_dev is set, remove subdirectories only, if device is same as dir */
7925c22a
LP
2838 if (root_dev && st.st_dev != root_dev->st_dev)
2839 continue;
8c6db833 2840
7925c22a
LP
2841 subdir_fd = openat(fd, de->d_name,
2842 O_RDONLY|O_NONBLOCK|O_DIRECTORY|O_CLOEXEC|O_NOFOLLOW|O_NOATIME);
2843 if (subdir_fd < 0) {
2844 if (ret == 0 && errno != ENOENT)
2845 ret = -errno;
2846 continue;
2847 }
2848
b3d28469 2849 r = rm_rf_children_dangerous(subdir_fd, only_dirs, honour_sticky, root_dev);
7925c22a
LP
2850 if (r < 0 && ret == 0)
2851 ret = r;
2852
2853 if (!keep_around)
2854 if (unlinkat(fd, de->d_name, AT_REMOVEDIR) < 0) {
ad293f5a
LP
2855 if (ret == 0 && errno != ENOENT)
2856 ret = -errno;
2857 }
2858
2859 } else if (!only_dirs && !keep_around) {
8c6db833
LP
2860
2861 if (unlinkat(fd, de->d_name, 0) < 0) {
4c633005 2862 if (ret == 0 && errno != ENOENT)
8c6db833
LP
2863 ret = -errno;
2864 }
2865 }
2866 }
8c6db833
LP
2867}
2868
44a6b1b6 2869_pure_ static int is_temporary_fs(struct statfs *s) {
943aad8c 2870 assert(s);
73020ab2
SL
2871
2872 return F_TYPE_EQUAL(s->f_type, TMPFS_MAGIC) ||
2873 F_TYPE_EQUAL(s->f_type, RAMFS_MAGIC);
943aad8c
ZJS
2874}
2875
f56d5db9
LP
2876int rm_rf_children(int fd, bool only_dirs, bool honour_sticky, struct stat *root_dev) {
2877 struct statfs s;
2878
2879 assert(fd >= 0);
2880
2881 if (fstatfs(fd, &s) < 0) {
03e334a1 2882 safe_close(fd);
f56d5db9
LP
2883 return -errno;
2884 }
2885
2886 /* We refuse to clean disk file systems with this call. This
2887 * is extra paranoia just to be sure we never ever remove
2888 * non-state data */
943aad8c 2889 if (!is_temporary_fs(&s)) {
f56d5db9 2890 log_error("Attempted to remove disk file system, and we can't allow that.");
03e334a1 2891 safe_close(fd);
f56d5db9
LP
2892 return -EPERM;
2893 }
2894
2895 return rm_rf_children_dangerous(fd, only_dirs, honour_sticky, root_dev);
2896}
2897
2898static int rm_rf_internal(const char *path, bool only_dirs, bool delete_root, bool honour_sticky, bool dangerous) {
2899 int fd, r;
2900 struct statfs s;
8c6db833
LP
2901
2902 assert(path);
2903
f56d5db9
LP
2904 /* We refuse to clean the root file system with this
2905 * call. This is extra paranoia to never cause a really
2906 * seriously broken system. */
2907 if (path_equal(path, "/")) {
2908 log_error("Attempted to remove entire root file system, and we can't allow that.");
2909 return -EPERM;
2910 }
461b1822 2911
d4d046e3
LP
2912 fd = open(path, O_RDONLY|O_NONBLOCK|O_DIRECTORY|O_CLOEXEC|O_NOFOLLOW|O_NOATIME);
2913 if (fd < 0) {
8c6db833
LP
2914
2915 if (errno != ENOTDIR)
2916 return -errno;
2917
f56d5db9
LP
2918 if (!dangerous) {
2919 if (statfs(path, &s) < 0)
2920 return -errno;
2921
943aad8c 2922 if (!is_temporary_fs(&s)) {
f56d5db9
LP
2923 log_error("Attempted to remove disk file system, and we can't allow that.");
2924 return -EPERM;
2925 }
2926 }
2927
8c6db833 2928 if (delete_root && !only_dirs)
d4d046e3 2929 if (unlink(path) < 0 && errno != ENOENT)
8c6db833
LP
2930 return -errno;
2931
2932 return 0;
2933 }
2934
f56d5db9
LP
2935 if (!dangerous) {
2936 if (fstatfs(fd, &s) < 0) {
03e334a1 2937 safe_close(fd);
f56d5db9
LP
2938 return -errno;
2939 }
ad293f5a 2940
943aad8c 2941 if (!is_temporary_fs(&s)) {
f56d5db9 2942 log_error("Attempted to remove disk file system, and we can't allow that.");
03e334a1 2943 safe_close(fd);
f56d5db9
LP
2944 return -EPERM;
2945 }
2946 }
2947
2948 r = rm_rf_children_dangerous(fd, only_dirs, honour_sticky, NULL);
ad293f5a
LP
2949 if (delete_root) {
2950
8d53b453 2951 if (honour_sticky && file_is_priv_sticky(path) > 0)
ad293f5a 2952 return r;
8c6db833 2953
e27796a0 2954 if (rmdir(path) < 0 && errno != ENOENT) {
8c6db833
LP
2955 if (r == 0)
2956 r = -errno;
2957 }
ad293f5a 2958 }
8c6db833
LP
2959
2960 return r;
2961}
2962
f56d5db9
LP
2963int rm_rf(const char *path, bool only_dirs, bool delete_root, bool honour_sticky) {
2964 return rm_rf_internal(path, only_dirs, delete_root, honour_sticky, false);
2965}
2966
2967int rm_rf_dangerous(const char *path, bool only_dirs, bool delete_root, bool honour_sticky) {
2968 return rm_rf_internal(path, only_dirs, delete_root, honour_sticky, true);
2969}
2970
8c6db833
LP
2971int chmod_and_chown(const char *path, mode_t mode, uid_t uid, gid_t gid) {
2972 assert(path);
2973
2974 /* Under the assumption that we are running privileged we
2975 * first change the access mode and only then hand out
2976 * ownership to avoid a window where access is too open. */
2977
8d53b453
LP
2978 if (mode != (mode_t) -1)
2979 if (chmod(path, mode) < 0)
2980 return -errno;
8c6db833 2981
8d53b453
LP
2982 if (uid != (uid_t) -1 || gid != (gid_t) -1)
2983 if (chown(path, uid, gid) < 0)
2984 return -errno;
8c6db833
LP
2985
2986 return 0;
ef2f1067
LP
2987}
2988
f4b47811
LP
2989int fchmod_and_fchown(int fd, mode_t mode, uid_t uid, gid_t gid) {
2990 assert(fd >= 0);
2991
2992 /* Under the assumption that we are running privileged we
2993 * first change the access mode and only then hand out
2994 * ownership to avoid a window where access is too open. */
2995
9588bc32
LP
2996 if (mode != (mode_t) -1)
2997 if (fchmod(fd, mode) < 0)
2998 return -errno;
f4b47811 2999
9588bc32
LP
3000 if (uid != (uid_t) -1 || gid != (gid_t) -1)
3001 if (fchown(fd, uid, gid) < 0)
3002 return -errno;
f4b47811
LP
3003
3004 return 0;
3005}
3006
82c121a4
LP
3007cpu_set_t* cpu_set_malloc(unsigned *ncpus) {
3008 cpu_set_t *r;
3009 unsigned n = 1024;
3010
3011 /* Allocates the cpuset in the right size */
3012
3013 for (;;) {
3014 if (!(r = CPU_ALLOC(n)))
3015 return NULL;
3016
3017 if (sched_getaffinity(0, CPU_ALLOC_SIZE(n), r) >= 0) {
3018 CPU_ZERO_S(CPU_ALLOC_SIZE(n), r);
3019
3020 if (ncpus)
3021 *ncpus = n;
3022
3023 return r;
3024 }
3025
3026 CPU_FREE(r);
3027
3028 if (errno != EINVAL)
3029 return NULL;
3030
3031 n *= 2;
3032 }
3033}
3034
984a2be4 3035int status_vprintf(const char *status, bool ellipse, bool ephemeral, const char *format, va_list ap) {
9ab7a8d2 3036 static const char status_indent[] = " "; /* "[" STATUS "] " */
669bec5d
LP
3037 _cleanup_free_ char *s = NULL;
3038 _cleanup_close_ int fd = -1;
b92bea5d 3039 struct iovec iovec[6] = {};
81beb750 3040 int n = 0;
984a2be4 3041 static bool prev_ephemeral;
9e58ff9c
LP
3042
3043 assert(format);
3044
9ab7a8d2 3045 /* This is independent of logging, as status messages are
9e58ff9c
LP
3046 * optional and go exclusively to the console. */
3047
3048 if (vasprintf(&s, format, ap) < 0)
669bec5d 3049 return log_oom();
9e58ff9c 3050
67e5cc4f 3051 fd = open_terminal("/dev/console", O_WRONLY|O_NOCTTY|O_CLOEXEC);
81beb750 3052 if (fd < 0)
669bec5d 3053 return fd;
9e58ff9c 3054
67e5cc4f 3055 if (ellipse) {
9ab7a8d2
MS
3056 char *e;
3057 size_t emax, sl;
3058 int c;
3059
67e5cc4f
LP
3060 c = fd_columns(fd);
3061 if (c <= 0)
3062 c = 80;
81beb750 3063
669bec5d 3064 sl = status ? sizeof(status_indent)-1 : 0;
9ab7a8d2
MS
3065
3066 emax = c - sl - 1;
3067 if (emax < 3)
3068 emax = 3;
81beb750 3069
58d61742 3070 e = ellipsize(s, emax, 50);
67e5cc4f
LP
3071 if (e) {
3072 free(s);
3073 s = e;
3074 }
81beb750
LP
3075 }
3076
984a2be4
MS
3077 if (prev_ephemeral)
3078 IOVEC_SET_STRING(iovec[n++], "\r" ANSI_ERASE_TO_END_OF_LINE);
3079 prev_ephemeral = ephemeral;
3080
9ab7a8d2
MS
3081 if (status) {
3082 if (!isempty(status)) {
3083 IOVEC_SET_STRING(iovec[n++], "[");
3084 IOVEC_SET_STRING(iovec[n++], status);
3085 IOVEC_SET_STRING(iovec[n++], "] ");
3086 } else
3087 IOVEC_SET_STRING(iovec[n++], status_indent);
81beb750
LP
3088 }
3089
9ab7a8d2 3090 IOVEC_SET_STRING(iovec[n++], s);
984a2be4
MS
3091 if (!ephemeral)
3092 IOVEC_SET_STRING(iovec[n++], "\n");
81beb750 3093
669bec5d
LP
3094 if (writev(fd, iovec, n) < 0)
3095 return -errno;
9e58ff9c 3096
669bec5d 3097 return 0;
9e58ff9c
LP
3098}
3099
984a2be4 3100int status_printf(const char *status, bool ellipse, bool ephemeral, const char *format, ...) {
c846ff47 3101 va_list ap;
669bec5d 3102 int r;
c846ff47
LP
3103
3104 assert(format);
3105
3106 va_start(ap, format);
984a2be4 3107 r = status_vprintf(status, ellipse, ephemeral, format, ap);
c846ff47 3108 va_end(ap);
669bec5d
LP
3109
3110 return r;
c846ff47
LP
3111}
3112
fab56fc5
LP
3113char *replace_env(const char *format, char **env) {
3114 enum {
3115 WORD,
c24eb49e 3116 CURLY,
fab56fc5
LP
3117 VARIABLE
3118 } state = WORD;
3119
3120 const char *e, *word = format;
3121 char *r = NULL, *k;
3122
3123 assert(format);
3124
3125 for (e = format; *e; e ++) {
3126
3127 switch (state) {
3128
3129 case WORD:
3130 if (*e == '$')
c24eb49e 3131 state = CURLY;
fab56fc5
LP
3132 break;
3133
c24eb49e
LP
3134 case CURLY:
3135 if (*e == '{') {
fab56fc5
LP
3136 if (!(k = strnappend(r, word, e-word-1)))
3137 goto fail;
3138
3139 free(r);
3140 r = k;
3141
3142 word = e-1;
3143 state = VARIABLE;
3144
3145 } else if (*e == '$') {
3146 if (!(k = strnappend(r, word, e-word)))
3147 goto fail;
3148
3149 free(r);
3150 r = k;
3151
3152 word = e+1;
3153 state = WORD;
3154 } else
3155 state = WORD;
3156 break;
3157
3158 case VARIABLE:
c24eb49e 3159 if (*e == '}') {
b95cf362 3160 const char *t;
fab56fc5 3161
4d1a6904 3162 t = strempty(strv_env_get_n(env, word+2, e-word-2));
fab56fc5 3163
4d1a6904
LP
3164 k = strappend(r, t);
3165 if (!k)
b95cf362 3166 goto fail;
fab56fc5 3167
b95cf362
LP
3168 free(r);
3169 r = k;
fab56fc5 3170
b95cf362 3171 word = e+1;
fab56fc5
LP
3172 state = WORD;
3173 }
3174 break;
3175 }
3176 }
3177
3178 if (!(k = strnappend(r, word, e-word)))
3179 goto fail;
3180
3181 free(r);
3182 return k;
3183
3184fail:
3185 free(r);
3186 return NULL;
3187}
3188
3189char **replace_env_argv(char **argv, char **env) {
b2fadec6 3190 char **ret, **i;
c24eb49e
LP
3191 unsigned k = 0, l = 0;
3192
3193 l = strv_length(argv);
fab56fc5 3194
b2fadec6
ZJS
3195 ret = new(char*, l+1);
3196 if (!ret)
fab56fc5
LP
3197 return NULL;
3198
3199 STRV_FOREACH(i, argv) {
c24eb49e
LP
3200
3201 /* If $FOO appears as single word, replace it by the split up variable */
b95cf362
LP
3202 if ((*i)[0] == '$' && (*i)[1] != '{') {
3203 char *e;
3204 char **w, **m;
3205 unsigned q;
c24eb49e 3206
4d1a6904
LP
3207 e = strv_env_get(env, *i+1);
3208 if (e) {
b2fadec6 3209 int r;
c24eb49e 3210
b2fadec6
ZJS
3211 r = strv_split_quoted(&m, e);
3212 if (r < 0) {
3213 ret[k] = NULL;
3214 strv_free(ret);
c24eb49e
LP
3215 return NULL;
3216 }
b95cf362
LP
3217 } else
3218 m = NULL;
c24eb49e 3219
b95cf362
LP
3220 q = strv_length(m);
3221 l = l + q - 1;
c24eb49e 3222
b2fadec6
ZJS
3223 w = realloc(ret, sizeof(char*) * (l+1));
3224 if (!w) {
3225 ret[k] = NULL;
3226 strv_free(ret);
b95cf362
LP
3227 strv_free(m);
3228 return NULL;
3229 }
c24eb49e 3230
b2fadec6 3231 ret = w;
b95cf362 3232 if (m) {
b2fadec6 3233 memcpy(ret + k, m, q * sizeof(char*));
c24eb49e 3234 free(m);
c24eb49e 3235 }
b95cf362
LP
3236
3237 k += q;
3238 continue;
c24eb49e
LP
3239 }
3240
3241 /* If ${FOO} appears as part of a word, replace it by the variable as-is */
b2fadec6
ZJS
3242 ret[k] = replace_env(*i, env);
3243 if (!ret[k]) {
3244 strv_free(ret);
fab56fc5
LP
3245 return NULL;
3246 }
b2fadec6 3247 k++;
fab56fc5
LP
3248 }
3249
b2fadec6
ZJS
3250 ret[k] = NULL;
3251 return ret;
fab56fc5
LP
3252}
3253
81beb750 3254int fd_columns(int fd) {
b92bea5d 3255 struct winsize ws = {};
81beb750
LP
3256
3257 if (ioctl(fd, TIOCGWINSZ, &ws) < 0)
3258 return -errno;
3259
3260 if (ws.ws_col <= 0)
3261 return -EIO;
3262
3263 return ws.ws_col;
3264}
3265
28917d7d 3266unsigned columns(void) {
fa776d8e 3267 const char *e;
7009eec2 3268 int c;
fa776d8e 3269
28917d7d
LP
3270 if (_likely_(cached_columns > 0))
3271 return cached_columns;
11f96fac 3272
28917d7d
LP
3273 c = 0;
3274 e = getenv("COLUMNS");
c6828d27
TG
3275 if (e)
3276 (void) safe_atoi(e, &c);
fa776d8e 3277
28917d7d
LP
3278 if (c <= 0)
3279 c = fd_columns(STDOUT_FILENO);
fa776d8e 3280
28917d7d
LP
3281 if (c <= 0)
3282 c = 80;
11f96fac 3283
28917d7d
LP
3284 cached_columns = c;
3285 return c;
11f96fac
ZJS
3286}
3287
8f2d43a0 3288int fd_lines(int fd) {
b92bea5d 3289 struct winsize ws = {};
8f2d43a0
LP
3290
3291 if (ioctl(fd, TIOCGWINSZ, &ws) < 0)
3292 return -errno;
3293
3294 if (ws.ws_row <= 0)
3295 return -EIO;
3296
3297 return ws.ws_row;
3298}
3299
3300unsigned lines(void) {
8f2d43a0 3301 const char *e;
ed757c0c 3302 unsigned l;
8f2d43a0 3303
ed757c0c
LP
3304 if (_likely_(cached_lines > 0))
3305 return cached_lines;
8f2d43a0 3306
ed757c0c 3307 l = 0;
8f2d43a0 3308 e = getenv("LINES");
acb3b3dd
ZJS
3309 if (e)
3310 (void) safe_atou(e, &l);
8f2d43a0 3311
ed757c0c
LP
3312 if (l <= 0)
3313 l = fd_lines(STDOUT_FILENO);
8f2d43a0 3314
ed757c0c
LP
3315 if (l <= 0)
3316 l = 24;
8f2d43a0 3317
ed757c0c
LP
3318 cached_lines = l;
3319 return cached_lines;
3320}
3321
3322/* intended to be used as a SIGWINCH sighandler */
3323void columns_lines_cache_reset(int signum) {
3324 cached_columns = 0;
3325 cached_lines = 0;
3326}
3327
3328bool on_tty(void) {
3329 static int cached_on_tty = -1;
3330
3331 if (_unlikely_(cached_on_tty < 0))
3332 cached_on_tty = isatty(STDOUT_FILENO) > 0;
3333
3334 return cached_on_tty;
8f2d43a0
LP
3335}
3336
9d9951a4
HH
3337int files_same(const char *filea, const char *fileb) {
3338 struct stat a, b;
b4f10a5e 3339
9d9951a4 3340 if (stat(filea, &a) < 0)
b4f10a5e
LP
3341 return -errno;
3342
9d9951a4 3343 if (stat(fileb, &b) < 0)
b4f10a5e
LP
3344 return -errno;
3345
9d9951a4
HH
3346 return a.st_dev == b.st_dev &&
3347 a.st_ino == b.st_ino;
3348}
3349
3350int running_in_chroot(void) {
3351 int ret;
3352
3353 ret = files_same("/proc/1/root", "/");
3354 if (ret < 0)
3355 return ret;
3356
3357 return ret == 0;
b4f10a5e
LP
3358}
3359
f405e86d 3360static char *ascii_ellipsize_mem(const char *s, size_t old_length, size_t new_length, unsigned percent) {
72f59706 3361 size_t x;
8fe914ec
LP
3362 char *r;
3363
3364 assert(s);
3365 assert(percent <= 100);
72f59706 3366 assert(new_length >= 3);
8fe914ec 3367
72f59706
LP
3368 if (old_length <= 3 || old_length <= new_length)
3369 return strndup(s, old_length);
8fe914ec 3370
72f59706
LP
3371 r = new0(char, new_length+1);
3372 if (!r)
a6f0104a 3373 return NULL;
8fe914ec 3374
72f59706 3375 x = (new_length * percent) / 100;
8fe914ec 3376
72f59706
LP
3377 if (x > new_length - 3)
3378 x = new_length - 3;
8fe914ec
LP
3379
3380 memcpy(r, s, x);
3381 r[x] = '.';
3382 r[x+1] = '.';
3383 r[x+2] = '.';
3384 memcpy(r + x + 3,
72f59706
LP
3385 s + old_length - (new_length - x - 3),
3386 new_length - x - 3);
8fe914ec
LP
3387
3388 return r;
3389}
3390
f405e86d
SL
3391char *ellipsize_mem(const char *s, size_t old_length, size_t new_length, unsigned percent) {
3392 size_t x;
3393 char *e;
3394 const char *i, *j;
3395 unsigned k, len, len2;
3396
3397 assert(s);
3398 assert(percent <= 100);
3399 assert(new_length >= 3);
3400
3401 /* if no multibyte characters use ascii_ellipsize_mem for speed */
3402 if (ascii_is_valid(s))
3403 return ascii_ellipsize_mem(s, old_length, new_length, percent);
3404
3405 if (old_length <= 3 || old_length <= new_length)
3406 return strndup(s, old_length);
3407
3408 x = (new_length * percent) / 100;
3409
3410 if (x > new_length - 3)
3411 x = new_length - 3;
3412
3413 k = 0;
3414 for (i = s; k < x && i < s + old_length; i = utf8_next_char(i)) {
3415 int c;
3416
3417 c = utf8_encoded_to_unichar(i);
3418 if (c < 0)
3419 return NULL;
3420 k += unichar_iswide(c) ? 2 : 1;
3421 }
3422
3423 if (k > x) /* last character was wide and went over quota */
3424 x ++;
3425
3426 for (j = s + old_length; k < new_length && j > i; ) {
3427 int c;
3428
3429 j = utf8_prev_char(j);
3430 c = utf8_encoded_to_unichar(j);
3431 if (c < 0)
3432 return NULL;
3433 k += unichar_iswide(c) ? 2 : 1;
3434 }
3435 assert(i <= j);
3436
3437 /* we don't actually need to ellipsize */
3438 if (i == j)
3439 return memdup(s, old_length + 1);
3440
3441 /* make space for ellipsis */
3442 j = utf8_next_char(j);
3443
3444 len = i - s;
3445 len2 = s + old_length - j;
3446 e = new(char, len + 3 + len2 + 1);
3447 if (!e)
3448 return NULL;
3449
3450 /*
3451 printf("old_length=%zu new_length=%zu x=%zu len=%u len2=%u k=%u\n",
3452 old_length, new_length, x, len, len2, k);
3453 */
3454
3455 memcpy(e, s, len);
3456 e[len] = 0xe2; /* tri-dot ellipsis: … */
3457 e[len + 1] = 0x80;
3458 e[len + 2] = 0xa6;
3459
3460 memcpy(e + len + 3, j, len2 + 1);
3461
3462 return e;
3463}
3464
72f59706
LP
3465char *ellipsize(const char *s, size_t length, unsigned percent) {
3466 return ellipsize_mem(s, strlen(s), length, percent);
3467}
3468
c38dfac9 3469int touch_file(const char *path, bool parents, usec_t stamp, uid_t uid, gid_t gid, mode_t mode) {
03e334a1 3470 _cleanup_close_ int fd;
c38dfac9 3471 int r;
f6144808
LP
3472
3473 assert(path);
3474
c38dfac9
KS
3475 if (parents)
3476 mkdir_parents(path, 0755);
73836c5c 3477
c38dfac9 3478 fd = open(path, O_WRONLY|O_CREAT|O_CLOEXEC|O_NOCTTY, mode > 0 ? mode : 0644);
73836c5c 3479 if (fd < 0)
f6144808
LP
3480 return -errno;
3481
c38dfac9
KS
3482 if (mode > 0) {
3483 r = fchmod(fd, mode);
3484 if (r < 0)
3485 return -errno;
3486 }
3487
359efc59 3488 if (uid != (uid_t) -1 || gid != (gid_t) -1) {
c38dfac9
KS
3489 r = fchown(fd, uid, gid);
3490 if (r < 0)
3491 return -errno;
3492 }
3493
3a43da28 3494 if (stamp != USEC_INFINITY) {
c38dfac9
KS
3495 struct timespec ts[2];
3496
3497 timespec_store(&ts[0], stamp);
359efc59 3498 ts[1] = ts[0];
c38dfac9
KS
3499 r = futimens(fd, ts);
3500 } else
3501 r = futimens(fd, NULL);
3502 if (r < 0)
3503 return -errno;
3504
f6144808
LP
3505 return 0;
3506}
afea26ad 3507
c38dfac9 3508int touch(const char *path) {
3a43da28 3509 return touch_file(path, false, USEC_INFINITY, (uid_t) -1, (gid_t) -1, 0);
c38dfac9
KS
3510}
3511
97c4a07d 3512char *unquote(const char *s, const char* quotes) {
11ce3427
LP
3513 size_t l;
3514 assert(s);
3515
73836c5c
LP
3516 /* This is rather stupid, simply removes the heading and
3517 * trailing quotes if there is one. Doesn't care about
57f30678
LP
3518 * escaping or anything. We should make this smarter one
3519 * day...*/
73836c5c 3520
31ed59c5
LP
3521 l = strlen(s);
3522 if (l < 2)
11ce3427
LP
3523 return strdup(s);
3524
97c4a07d 3525 if (strchr(quotes, s[0]) && s[l-1] == s[0])
11ce3427
LP
3526 return strndup(s+1, l-2);
3527
3528 return strdup(s);
3529}
3530
5f7c426e 3531char *normalize_env_assignment(const char *s) {
57f30678
LP
3532 _cleanup_free_ char *name = NULL, *value = NULL, *p = NULL;
3533 char *eq, *r;
5f7c426e 3534
57f30678
LP
3535 eq = strchr(s, '=');
3536 if (!eq) {
3537 char *t;
5f7c426e 3538
57f30678
LP
3539 r = strdup(s);
3540 if (!r)
5f7c426e
LP
3541 return NULL;
3542
57f30678
LP
3543 t = strstrip(r);
3544 if (t == r)
3545 return r;
3546
3547 memmove(r, t, strlen(t) + 1);
3548 return r;
5f7c426e
LP
3549 }
3550
57f30678
LP
3551 name = strndup(s, eq - s);
3552 if (!name)
5f7c426e
LP
3553 return NULL;
3554
57f30678
LP
3555 p = strdup(eq + 1);
3556 if (!p)
5f7c426e 3557 return NULL;
5f7c426e
LP
3558
3559 value = unquote(strstrip(p), QUOTES);
57f30678 3560 if (!value)
5f7c426e 3561 return NULL;
5f7c426e 3562
57f30678 3563 if (asprintf(&r, "%s=%s", strstrip(name), value) < 0)
5f7c426e
LP
3564 r = NULL;
3565
5f7c426e
LP
3566 return r;
3567}
3568
8e12a6ae 3569int wait_for_terminate(pid_t pid, siginfo_t *status) {
1968a360
LP
3570 siginfo_t dummy;
3571
2e78aa99 3572 assert(pid >= 1);
1968a360
LP
3573
3574 if (!status)
3575 status = &dummy;
2e78aa99
LP
3576
3577 for (;;) {
8e12a6ae
LP
3578 zero(*status);
3579
3580 if (waitid(P_PID, pid, status, WEXITED) < 0) {
2e78aa99
LP
3581
3582 if (errno == EINTR)
3583 continue;
3584
3585 return -errno;
3586 }
3587
3588 return 0;
3589 }
3590}
3591
0659e8ba
LS
3592/*
3593 * Return values:
3594 * < 0 : wait_for_terminate() failed to get the state of the
3595 * process, the process was terminated by a signal, or
3596 * failed for an unknown reason.
3597 * >=0 : The process terminated normally, and its exit code is
3598 * returned.
3599 *
3600 * That is, success is indicated by a return value of zero, and an
3601 * error is indicated by a non-zero value.
3602 */
97c4a07d
LP
3603int wait_for_terminate_and_warn(const char *name, pid_t pid) {
3604 int r;
3605 siginfo_t status;
3606
3607 assert(name);
3608 assert(pid > 1);
3609
d87be9b0
LP
3610 r = wait_for_terminate(pid, &status);
3611 if (r < 0) {
97c4a07d
LP
3612 log_warning("Failed to wait for %s: %s", name, strerror(-r));
3613 return r;
3614 }
3615
3616 if (status.si_code == CLD_EXITED) {
3617 if (status.si_status != 0) {
3618 log_warning("%s failed with error code %i.", name, status.si_status);
0a27cf3f 3619 return status.si_status;
97c4a07d
LP
3620 }
3621
3622 log_debug("%s succeeded.", name);
3623 return 0;
3624
3625 } else if (status.si_code == CLD_KILLED ||
3626 status.si_code == CLD_DUMPED) {
3627
3628 log_warning("%s terminated by signal %s.", name, signal_to_string(status.si_status));
3629 return -EPROTO;
3630 }
3631
3632 log_warning("%s failed due to unknown reason.", name);
3633 return -EPROTO;
97c4a07d
LP
3634}
3635
919ce0b7 3636noreturn void freeze(void) {
720ce21d
LP
3637
3638 /* Make sure nobody waits for us on a socket anymore */
3639 close_all_fds(NULL, 0);
3640
c29597a1
LP
3641 sync();
3642
3c14d26c
LP
3643 for (;;)
3644 pause();
3645}
3646
00dc5d76
LP
3647bool null_or_empty(struct stat *st) {
3648 assert(st);
3649
3650 if (S_ISREG(st->st_mode) && st->st_size <= 0)
3651 return true;
3652
c8f26f42 3653 if (S_ISCHR(st->st_mode) || S_ISBLK(st->st_mode))
00dc5d76
LP
3654 return true;
3655
3656 return false;
3657}
3658
83096483
LP
3659int null_or_empty_path(const char *fn) {
3660 struct stat st;
3661
3662 assert(fn);
3663
3664 if (stat(fn, &st) < 0)
3665 return -errno;
3666
3667 return null_or_empty(&st);
3668}
3669
ed88bcfb
ZJS
3670int null_or_empty_fd(int fd) {
3671 struct stat st;
3672
3673 assert(fd >= 0);
3674
3675 if (fstat(fd, &st) < 0)
3676 return -errno;
3677
3678 return null_or_empty(&st);
3679}
3680
a247755d 3681DIR *xopendirat(int fd, const char *name, int flags) {
c4731d11
LP
3682 int nfd;
3683 DIR *d;
3684
dd94c17e
LP
3685 assert(!(flags & O_CREAT));
3686
3687 nfd = openat(fd, name, O_RDONLY|O_NONBLOCK|O_DIRECTORY|O_CLOEXEC|flags, 0);
73836c5c 3688 if (nfd < 0)
c4731d11
LP
3689 return NULL;
3690
73836c5c
LP
3691 d = fdopendir(nfd);
3692 if (!d) {
03e334a1 3693 safe_close(nfd);
c4731d11
LP
3694 return NULL;
3695 }
3696
3697 return d;
3b63d2d3
LP
3698}
3699
8a0867d6
LP
3700int signal_from_string_try_harder(const char *s) {
3701 int signo;
3702 assert(s);
3703
73836c5c
LP
3704 signo = signal_from_string(s);
3705 if (signo <= 0)
8a0867d6
LP
3706 if (startswith(s, "SIG"))
3707 return signal_from_string(s+3);
3708
3709 return signo;
3710}
3711
383182b5 3712static char *tag_to_udev_node(const char *tagvalue, const char *by) {
22f5f628 3713 _cleanup_free_ char *t = NULL, *u = NULL;
22f5f628 3714 size_t enc_len;
e23a0ce8 3715
383182b5 3716 u = unquote(tagvalue, "\"\'");
6db615c1 3717 if (!u)
383182b5 3718 return NULL;
e23a0ce8 3719
1d5989fd 3720 enc_len = strlen(u) * 4 + 1;
22f5f628 3721 t = new(char, enc_len);
6db615c1 3722 if (!t)
383182b5 3723 return NULL;
e23a0ce8 3724
8f6ce71f 3725 if (encode_devnode_name(u, t, enc_len) < 0)
22f5f628 3726 return NULL;
e23a0ce8 3727
6db615c1 3728 return strjoin("/dev/disk/by-", by, "/", t, NULL);
383182b5 3729}
e23a0ce8 3730
383182b5 3731char *fstab_node_to_udev_node(const char *p) {
faa368e3
LP
3732 assert(p);
3733
383182b5
DR
3734 if (startswith(p, "LABEL="))
3735 return tag_to_udev_node(p+6, "label");
e23a0ce8 3736
383182b5
DR
3737 if (startswith(p, "UUID="))
3738 return tag_to_udev_node(p+5, "uuid");
e23a0ce8 3739
84cc2abf
DR
3740 if (startswith(p, "PARTUUID="))
3741 return tag_to_udev_node(p+9, "partuuid");
3742
3743 if (startswith(p, "PARTLABEL="))
3744 return tag_to_udev_node(p+10, "partlabel");
3745
e23a0ce8
LP
3746 return strdup(p);
3747}
3748
f212ac12
LP
3749bool tty_is_vc(const char *tty) {
3750 assert(tty);
3751
98a28fef
LP
3752 return vtnr_from_tty(tty) >= 0;
3753}
3754
d1122ad5
LP
3755bool tty_is_console(const char *tty) {
3756 assert(tty);
3757
3758 if (startswith(tty, "/dev/"))
3759 tty += 5;
3760
3761 return streq(tty, "console");
3762}
3763
98a28fef
LP
3764int vtnr_from_tty(const char *tty) {
3765 int i, r;
3766
3767 assert(tty);
3768
3769 if (startswith(tty, "/dev/"))
3770 tty += 5;
3771
3772 if (!startswith(tty, "tty") )
3773 return -EINVAL;
3774
3775 if (tty[3] < '0' || tty[3] > '9')
3776 return -EINVAL;
3777
3778 r = safe_atoi(tty+3, &i);
3779 if (r < 0)
3780 return r;
3781
3782 if (i < 0 || i > 63)
3783 return -EINVAL;
3784
3785 return i;
f212ac12
LP
3786}
3787
21baf21a
MS
3788char *resolve_dev_console(char **active) {
3789 char *tty;
3790
3791 /* Resolve where /dev/console is pointing to, if /sys is actually ours
3792 * (i.e. not read-only-mounted which is a sign for container setups) */
3793
3794 if (path_is_read_only_fs("/sys") > 0)
3795 return NULL;
3796
3797 if (read_one_line_file("/sys/class/tty/console/active", active) < 0)
3798 return NULL;
3799
3800 /* If multiple log outputs are configured the last one is what
3801 * /dev/console points to */
3802 tty = strrchr(*active, ' ');
3803 if (tty)
3804 tty++;
3805 else
3806 tty = *active;
3807
8aa5429a
OB
3808 if (streq(tty, "tty0")) {
3809 char *tmp;
3810
3811 /* Get the active VC (e.g. tty1) */
3812 if (read_one_line_file("/sys/class/tty/tty0/active", &tmp) >= 0) {
3813 free(*active);
3814 tty = *active = tmp;
3815 }
3816 }
3817
21baf21a
MS
3818 return tty;
3819}
3820
3043935f 3821bool tty_is_vc_resolve(const char *tty) {
9588bc32 3822 _cleanup_free_ char *active = NULL;
3030ccd7 3823
e3aa71c3
LP
3824 assert(tty);
3825
3826 if (startswith(tty, "/dev/"))
3827 tty += 5;
3828
21baf21a
MS
3829 if (streq(tty, "console")) {
3830 tty = resolve_dev_console(&active);
3831 if (!tty)
3832 return false;
3833 }
3030ccd7 3834
9588bc32 3835 return tty_is_vc(tty);
3043935f
LP
3836}
3837
3838const char *default_term_for_tty(const char *tty) {
3839 assert(tty);
3840
acda6a05 3841 return tty_is_vc_resolve(tty) ? "TERM=linux" : "TERM=vt102";
e3aa71c3
LP
3842}
3843
87d2c1ff 3844bool dirent_is_file(const struct dirent *de) {
fb19a739
LP
3845 assert(de);
3846
3847 if (ignore_file(de->d_name))
3848 return false;
3849
3850 if (de->d_type != DT_REG &&
3851 de->d_type != DT_LNK &&
3852 de->d_type != DT_UNKNOWN)
3853 return false;
3854
3855 return true;
3856}
3857
87d2c1ff
LP
3858bool dirent_is_file_with_suffix(const struct dirent *de, const char *suffix) {
3859 assert(de);
3860
a228a22f
LP
3861 if (de->d_type != DT_REG &&
3862 de->d_type != DT_LNK &&
3863 de->d_type != DT_UNKNOWN)
3864 return false;
3865
3866 if (ignore_file_allow_backup(de->d_name))
87d2c1ff
LP
3867 return false;
3868
3869 return endswith(de->d_name, suffix);
3870}
3871
e2680723 3872void execute_directory(const char *directory, DIR *d, usec_t timeout, char *argv[]) {
aa62a893
LP
3873 pid_t executor_pid;
3874 int r;
83cc030f
LP
3875
3876 assert(directory);
3877
aa62a893
LP
3878 /* Executes all binaries in a directory in parallel and waits
3879 * for them to finish. Optionally a timeout is applied. */
83cc030f 3880
aa62a893
LP
3881 executor_pid = fork();
3882 if (executor_pid < 0) {
3883 log_error("Failed to fork: %m");
3884 return;
83cc030f 3885
aa62a893
LP
3886 } else if (executor_pid == 0) {
3887 _cleanup_hashmap_free_free_ Hashmap *pids = NULL;
3888 _cleanup_closedir_ DIR *_d = NULL;
3889 struct dirent *de;
83cc030f 3890
aa62a893
LP
3891 /* We fork this all off from a child process so that
3892 * we can somewhat cleanly make use of SIGALRM to set
3893 * a time limit */
83cc030f 3894
aa62a893 3895 reset_all_signal_handlers();
1b6d7fa7 3896 reset_signal_mask();
83cc030f 3897
aa62a893 3898 assert_se(prctl(PR_SET_PDEATHSIG, SIGTERM) == 0);
83cc030f 3899
aa62a893
LP
3900 if (!d) {
3901 d = _d = opendir(directory);
3902 if (!d) {
3903 if (errno == ENOENT)
3904 _exit(EXIT_SUCCESS);
83cc030f 3905
aa62a893
LP
3906 log_error("Failed to enumerate directory %s: %m", directory);
3907 _exit(EXIT_FAILURE);
3908 }
83cc030f
LP
3909 }
3910
d5099efc 3911 pids = hashmap_new(NULL);
aa62a893
LP
3912 if (!pids) {
3913 log_oom();
3914 _exit(EXIT_FAILURE);
83cc030f
LP
3915 }
3916
aa62a893
LP
3917 FOREACH_DIRENT(de, d, break) {
3918 _cleanup_free_ char *path = NULL;
3919 pid_t pid;
83cc030f 3920
aa62a893
LP
3921 if (!dirent_is_file(de))
3922 continue;
83cc030f 3923
418b9be5
LP
3924 path = strjoin(directory, "/", de->d_name, NULL);
3925 if (!path) {
aa62a893
LP
3926 log_oom();
3927 _exit(EXIT_FAILURE);
3928 }
83cc030f 3929
aa62a893
LP
3930 pid = fork();
3931 if (pid < 0) {
3932 log_error("Failed to fork: %m");
3933 continue;
3934 } else if (pid == 0) {
3935 char *_argv[2];
83cc030f 3936
aa62a893 3937 assert_se(prctl(PR_SET_PDEATHSIG, SIGTERM) == 0);
83cc030f 3938
aa62a893
LP
3939 if (!argv) {
3940 _argv[0] = path;
3941 _argv[1] = NULL;
3942 argv = _argv;
3943 } else
3944 argv[0] = path;
83cc030f 3945
aa62a893
LP
3946 execv(path, argv);
3947 log_error("Failed to execute %s: %m", path);
3948 _exit(EXIT_FAILURE);
3949 }
83cc030f 3950
aa62a893 3951 log_debug("Spawned %s as " PID_FMT ".", path, pid);
83cc030f 3952
aa62a893
LP
3953 r = hashmap_put(pids, UINT_TO_PTR(pid), path);
3954 if (r < 0) {
3955 log_oom();
3956 _exit(EXIT_FAILURE);
3957 }
3958
3959 path = NULL;
83cc030f
LP
3960 }
3961
aa62a893
LP
3962 /* Abort execution of this process after the
3963 * timout. We simply rely on SIGALRM as default action
3964 * terminating the process, and turn on alarm(). */
3965
3a43da28 3966 if (timeout != USEC_INFINITY)
aa62a893
LP
3967 alarm((timeout + USEC_PER_SEC - 1) / USEC_PER_SEC);
3968
3969 while (!hashmap_isempty(pids)) {
3970 _cleanup_free_ char *path = NULL;
3971 pid_t pid;
3972
3973 pid = PTR_TO_UINT(hashmap_first_key(pids));
3974 assert(pid > 0);
83cc030f 3975
aa62a893
LP
3976 path = hashmap_remove(pids, UINT_TO_PTR(pid));
3977 assert(path);
3978
3979 wait_for_terminate_and_warn(path, pid);
83cc030f 3980 }
83cc030f 3981
aa62a893
LP
3982 _exit(EXIT_SUCCESS);
3983 }
83cc030f 3984
aa62a893 3985 wait_for_terminate_and_warn(directory, executor_pid);
83cc030f
LP
3986}
3987
430c18ed
LP
3988int kill_and_sigcont(pid_t pid, int sig) {
3989 int r;
3990
3991 r = kill(pid, sig) < 0 ? -errno : 0;
3992
3993 if (r >= 0)
3994 kill(pid, SIGCONT);
3995
3996 return r;
3997}
3998
05feefe0
LP
3999bool nulstr_contains(const char*nulstr, const char *needle) {
4000 const char *i;
4001
4002 if (!nulstr)
4003 return false;
4004
4005 NULSTR_FOREACH(i, nulstr)
4006 if (streq(i, needle))
4007 return true;
4008
4009 return false;
4010}
4011
6faa1114 4012bool plymouth_running(void) {
9408a2d2 4013 return access("/run/plymouth/pid", F_OK) >= 0;
6faa1114
LP
4014}
4015
9beb3f4d
LP
4016char* strshorten(char *s, size_t l) {
4017 assert(s);
4018
4019 if (l < strlen(s))
4020 s[l] = 0;
4021
4022 return s;
4023}
4024
4025static bool hostname_valid_char(char c) {
4026 return
4027 (c >= 'a' && c <= 'z') ||
4028 (c >= 'A' && c <= 'Z') ||
4029 (c >= '0' && c <= '9') ||
4030 c == '-' ||
4031 c == '_' ||
4032 c == '.';
4033}
4034
4035bool hostname_is_valid(const char *s) {
4036 const char *p;
aa3c5cf8 4037 bool dot;
9beb3f4d
LP
4038
4039 if (isempty(s))
4040 return false;
4041
aa3c5cf8
LP
4042 for (p = s, dot = true; *p; p++) {
4043 if (*p == '.') {
4044 if (dot)
4045 return false;
4046
4047 dot = true;
4048 } else {
4049 if (!hostname_valid_char(*p))
4050 return false;
4051
4052 dot = false;
4053 }
4054 }
4055
4056 if (dot)
4057 return false;
9beb3f4d
LP
4058
4059 if (p-s > HOST_NAME_MAX)
4060 return false;
4061
4062 return true;
4063}
4064
e724b063 4065char* hostname_cleanup(char *s, bool lowercase) {
9beb3f4d 4066 char *p, *d;
cec4ead9
LP
4067 bool dot;
4068
4069 for (p = s, d = s, dot = true; *p; p++) {
4070 if (*p == '.') {
e724b063 4071 if (dot)
cec4ead9 4072 continue;
9beb3f4d 4073
e724b063 4074 *(d++) = '.';
cec4ead9 4075 dot = true;
e724b063
LP
4076 } else if (hostname_valid_char(*p)) {
4077 *(d++) = lowercase ? tolower(*p) : *p;
cec4ead9 4078 dot = false;
e724b063 4079 }
cec4ead9 4080
cec4ead9 4081 }
9beb3f4d 4082
e724b063
LP
4083 if (dot && d > s)
4084 d[-1] = 0;
4085 else
4086 *d = 0;
4087
9beb3f4d 4088 strshorten(s, HOST_NAME_MAX);
cec4ead9 4089
9beb3f4d
LP
4090 return s;
4091}
4092
7f0d207d
LP
4093bool machine_name_is_valid(const char *s) {
4094
4095 if (!hostname_is_valid(s))
4096 return false;
4097
4098 /* Machine names should be useful hostnames, but also be
4099 * useful in unit names, hence we enforce a stricter length
4100 * limitation. */
4101
4102 if (strlen(s) > 64)
4103 return false;
4104
4105 return true;
4106}
4107
1325aa42 4108int pipe_eof(int fd) {
b92bea5d
ZJS
4109 struct pollfd pollfd = {
4110 .fd = fd,
4111 .events = POLLIN|POLLHUP,
4112 };
1325aa42 4113
d37a91e8
LP
4114 int r;
4115
1325aa42
LP
4116 r = poll(&pollfd, 1, 0);
4117 if (r < 0)
4118 return -errno;
4119
4120 if (r == 0)
4121 return 0;
4122
4123 return pollfd.revents & POLLHUP;
4124}
4125
8f2d43a0 4126int fd_wait_for_event(int fd, int event, usec_t t) {
968d3d24 4127
b92bea5d
ZJS
4128 struct pollfd pollfd = {
4129 .fd = fd,
4130 .events = event,
4131 };
df50185b 4132
968d3d24
LP
4133 struct timespec ts;
4134 int r;
4135
3a43da28 4136 r = ppoll(&pollfd, 1, t == USEC_INFINITY ? NULL : timespec_store(&ts, t), NULL);
df50185b
LP
4137 if (r < 0)
4138 return -errno;
4139
4140 if (r == 0)
4141 return 0;
4142
4143 return pollfd.revents;
4144}
4145
5a3ab509
LP
4146int fopen_temporary(const char *path, FILE **_f, char **_temp_path) {
4147 FILE *f;
4148 char *t;
5a3ab509
LP
4149 int fd;
4150
4151 assert(path);
4152 assert(_f);
4153 assert(_temp_path);
4154
2e78fa79 4155 t = tempfn_xxxxxx(path);
5a3ab509
LP
4156 if (!t)
4157 return -ENOMEM;
4158
2d5bdf5b 4159 fd = mkostemp_safe(t, O_WRONLY|O_CLOEXEC);
5a3ab509
LP
4160 if (fd < 0) {
4161 free(t);
4162 return -errno;
4163 }
4164
4165 f = fdopen(fd, "we");
4166 if (!f) {
4167 unlink(t);
4168 free(t);
4169 return -errno;
4170 }
4171
4172 *_f = f;
4173 *_temp_path = t;
4174
4175 return 0;
4176}
4177
6ea832a2 4178int terminal_vhangup_fd(int fd) {
5a3ab509
LP
4179 assert(fd >= 0);
4180
6ea832a2
LP
4181 if (ioctl(fd, TIOCVHANGUP) < 0)
4182 return -errno;
4183
4184 return 0;
4185}
4186
4187int terminal_vhangup(const char *name) {
03e334a1 4188 _cleanup_close_ int fd;
6ea832a2
LP
4189
4190 fd = open_terminal(name, O_RDWR|O_NOCTTY|O_CLOEXEC);
4191 if (fd < 0)
4192 return fd;
4193
03e334a1 4194 return terminal_vhangup_fd(fd);
6ea832a2
LP
4195}
4196
4197int vt_disallocate(const char *name) {
4198 int fd, r;
4199 unsigned u;
6ea832a2
LP
4200
4201 /* Deallocate the VT if possible. If not possible
4202 * (i.e. because it is the active one), at least clear it
4203 * entirely (including the scrollback buffer) */
4204
b83bc4e9
LP
4205 if (!startswith(name, "/dev/"))
4206 return -EINVAL;
4207
4208 if (!tty_is_vc(name)) {
4209 /* So this is not a VT. I guess we cannot deallocate
4210 * it then. But let's at least clear the screen */
4211
4212 fd = open_terminal(name, O_RDWR|O_NOCTTY|O_CLOEXEC);
4213 if (fd < 0)
4214 return fd;
4215
8585357a
LP
4216 loop_write(fd,
4217 "\033[r" /* clear scrolling region */
4218 "\033[H" /* move home */
4219 "\033[2J", /* clear screen */
4220 10, false);
03e334a1 4221 safe_close(fd);
b83bc4e9
LP
4222
4223 return 0;
4224 }
6ea832a2
LP
4225
4226 if (!startswith(name, "/dev/tty"))
4227 return -EINVAL;
4228
4229 r = safe_atou(name+8, &u);
4230 if (r < 0)
4231 return r;
4232
4233 if (u <= 0)
b83bc4e9 4234 return -EINVAL;
6ea832a2 4235
b83bc4e9 4236 /* Try to deallocate */
6ea832a2
LP
4237 fd = open_terminal("/dev/tty0", O_RDWR|O_NOCTTY|O_CLOEXEC);
4238 if (fd < 0)
4239 return fd;
4240
4241 r = ioctl(fd, VT_DISALLOCATE, u);
03e334a1 4242 safe_close(fd);
6ea832a2 4243
b83bc4e9
LP
4244 if (r >= 0)
4245 return 0;
6ea832a2 4246
b83bc4e9 4247 if (errno != EBUSY)
6ea832a2 4248 return -errno;
6ea832a2 4249
b83bc4e9
LP
4250 /* Couldn't deallocate, so let's clear it fully with
4251 * scrollback */
4252 fd = open_terminal(name, O_RDWR|O_NOCTTY|O_CLOEXEC);
6ea832a2 4253 if (fd < 0)
b83bc4e9 4254 return fd;
6ea832a2 4255
8585357a
LP
4256 loop_write(fd,
4257 "\033[r" /* clear scrolling region */
4258 "\033[H" /* move home */
4259 "\033[3J", /* clear screen including scrollback, requires Linux 2.6.40 */
4260 10, false);
03e334a1 4261 safe_close(fd);
6ea832a2 4262
b83bc4e9 4263 return 0;
6ea832a2
LP
4264}
4265
424a19f8 4266int symlink_atomic(const char *from, const char *to) {
2e78fa79 4267 _cleanup_free_ char *t = NULL;
34ca941c
LP
4268
4269 assert(from);
4270 assert(to);
4271
2e78fa79 4272 t = tempfn_random(to);
34ca941c
LP
4273 if (!t)
4274 return -ENOMEM;
4275
424a19f8
LP
4276 if (symlink(from, t) < 0)
4277 return -errno;
34ca941c
LP
4278
4279 if (rename(t, to) < 0) {
2e78fa79
LP
4280 unlink_noerrno(t);
4281 return -errno;
34ca941c
LP
4282 }
4283
424a19f8 4284 return 0;
34ca941c
LP
4285}
4286
1554afae
LP
4287int mknod_atomic(const char *path, mode_t mode, dev_t dev) {
4288 _cleanup_free_ char *t = NULL;
4289
4290 assert(path);
4291
4292 t = tempfn_random(path);
4293 if (!t)
4294 return -ENOMEM;
4295
4296 if (mknod(t, mode, dev) < 0)
4297 return -errno;
4298
4299 if (rename(t, path) < 0) {
4300 unlink_noerrno(t);
4301 return -errno;
4302 }
4303
4304 return 0;
4305}
4306
4307int mkfifo_atomic(const char *path, mode_t mode) {
4308 _cleanup_free_ char *t = NULL;
4309
4310 assert(path);
4311
4312 t = tempfn_random(path);
4313 if (!t)
4314 return -ENOMEM;
4315
4316 if (mkfifo(t, mode) < 0)
4317 return -errno;
4318
4319 if (rename(t, path) < 0) {
4320 unlink_noerrno(t);
4321 return -errno;
4322 }
4323
4324 return 0;
4325}
4326
4d6d6518
LP
4327bool display_is_local(const char *display) {
4328 assert(display);
4329
4330 return
4331 display[0] == ':' &&
4332 display[1] >= '0' &&
4333 display[1] <= '9';
4334}
4335
4336int socket_from_display(const char *display, char **path) {
4337 size_t k;
4338 char *f, *c;
4339
4340 assert(display);
4341 assert(path);
4342
4343 if (!display_is_local(display))
4344 return -EINVAL;
4345
4346 k = strspn(display+1, "0123456789");
4347
f8294e41 4348 f = new(char, strlen("/tmp/.X11-unix/X") + k + 1);
4d6d6518
LP
4349 if (!f)
4350 return -ENOMEM;
4351
4352 c = stpcpy(f, "/tmp/.X11-unix/X");
4353 memcpy(c, display+1, k);
4354 c[k] = 0;
4355
4356 *path = f;
4357
4358 return 0;
4359}
4360
d05c5031
LP
4361int get_user_creds(
4362 const char **username,
4363 uid_t *uid, gid_t *gid,
4364 const char **home,
4365 const char **shell) {
4366
1cccf435 4367 struct passwd *p;
ddd88763 4368 uid_t u;
1cccf435
MV
4369
4370 assert(username);
4371 assert(*username);
1cccf435
MV
4372
4373 /* We enforce some special rules for uid=0: in order to avoid
4374 * NSS lookups for root we hardcode its data. */
4375
4376 if (streq(*username, "root") || streq(*username, "0")) {
4377 *username = "root";
4b67834e
LP
4378
4379 if (uid)
4380 *uid = 0;
4381
4382 if (gid)
4383 *gid = 0;
4384
4385 if (home)
4386 *home = "/root";
d05c5031
LP
4387
4388 if (shell)
4389 *shell = "/bin/sh";
4390
1cccf435
MV
4391 return 0;
4392 }
4393
ddd88763 4394 if (parse_uid(*username, &u) >= 0) {
1cccf435 4395 errno = 0;
ddd88763 4396 p = getpwuid(u);
1cccf435
MV
4397
4398 /* If there are multiple users with the same id, make
4399 * sure to leave $USER to the configured value instead
4400 * of the first occurrence in the database. However if
4401 * the uid was configured by a numeric uid, then let's
4402 * pick the real username from /etc/passwd. */
4403 if (p)
4404 *username = p->pw_name;
4405 } else {
4406 errno = 0;
4407 p = getpwnam(*username);
4408 }
4409
4410 if (!p)
8333c77e 4411 return errno > 0 ? -errno : -ESRCH;
1cccf435 4412
4b67834e
LP
4413 if (uid)
4414 *uid = p->pw_uid;
4415
4416 if (gid)
4417 *gid = p->pw_gid;
4418
4419 if (home)
4420 *home = p->pw_dir;
4421
d05c5031
LP
4422 if (shell)
4423 *shell = p->pw_shell;
4424
4b67834e
LP
4425 return 0;
4426}
4427
59164be4
LP
4428char* uid_to_name(uid_t uid) {
4429 struct passwd *p;
4430 char *r;
4431
4432 if (uid == 0)
4433 return strdup("root");
4434
4435 p = getpwuid(uid);
4436 if (p)
4437 return strdup(p->pw_name);
4438
de0671ee 4439 if (asprintf(&r, UID_FMT, uid) < 0)
59164be4
LP
4440 return NULL;
4441
4442 return r;
4443}
4444
4468addc
LP
4445char* gid_to_name(gid_t gid) {
4446 struct group *p;
4447 char *r;
4448
4449 if (gid == 0)
4450 return strdup("root");
4451
4452 p = getgrgid(gid);
4453 if (p)
4454 return strdup(p->gr_name);
4455
de0671ee 4456 if (asprintf(&r, GID_FMT, gid) < 0)
4468addc
LP
4457 return NULL;
4458
4459 return r;
4460}
4461
4b67834e
LP
4462int get_group_creds(const char **groupname, gid_t *gid) {
4463 struct group *g;
4464 gid_t id;
4465
4466 assert(groupname);
4467
4468 /* We enforce some special rules for gid=0: in order to avoid
4469 * NSS lookups for root we hardcode its data. */
4470
4471 if (streq(*groupname, "root") || streq(*groupname, "0")) {
4472 *groupname = "root";
4473
4474 if (gid)
4475 *gid = 0;
4476
4477 return 0;
4478 }
4479
4480 if (parse_gid(*groupname, &id) >= 0) {
4481 errno = 0;
4482 g = getgrgid(id);
4483
4484 if (g)
4485 *groupname = g->gr_name;
4486 } else {
4487 errno = 0;
4488 g = getgrnam(*groupname);
4489 }
4490
4491 if (!g)
8333c77e 4492 return errno > 0 ? -errno : -ESRCH;
4b67834e
LP
4493
4494 if (gid)
4495 *gid = g->gr_gid;
4496
1cccf435
MV
4497 return 0;
4498}
4499
4468addc
LP
4500int in_gid(gid_t gid) {
4501 gid_t *gids;
43673799
LP
4502 int ngroups_max, r, i;
4503
43673799
LP
4504 if (getgid() == gid)
4505 return 1;
4506
4507 if (getegid() == gid)
4508 return 1;
4509
4510 ngroups_max = sysconf(_SC_NGROUPS_MAX);
4511 assert(ngroups_max > 0);
4512
4513 gids = alloca(sizeof(gid_t) * ngroups_max);
4514
4515 r = getgroups(ngroups_max, gids);
4516 if (r < 0)
4517 return -errno;
4518
4519 for (i = 0; i < r; i++)
4520 if (gids[i] == gid)
4521 return 1;
4522
4523 return 0;
4524}
4525
4468addc
LP
4526int in_group(const char *name) {
4527 int r;
4528 gid_t gid;
4529
4530 r = get_group_creds(&name, &gid);
4531 if (r < 0)
4532 return r;
4533
4534 return in_gid(gid);
4535}
4536
8092a428 4537int glob_exists(const char *path) {
7fd1b19b 4538 _cleanup_globfree_ glob_t g = {};
8d98da3f 4539 int k;
8092a428
LP
4540
4541 assert(path);
4542
8092a428
LP
4543 errno = 0;
4544 k = glob(path, GLOB_NOSORT|GLOB_BRACE, NULL, &g);
4545
4546 if (k == GLOB_NOMATCH)
8d98da3f 4547 return 0;
8092a428 4548 else if (k == GLOB_NOSPACE)
8d98da3f 4549 return -ENOMEM;
8092a428 4550 else if (k == 0)
8d98da3f 4551 return !strv_isempty(g.gl_pathv);
8092a428 4552 else
8d98da3f
ZJS
4553 return errno ? -errno : -EIO;
4554}
8092a428 4555
8d98da3f
ZJS
4556int glob_extend(char ***strv, const char *path) {
4557 _cleanup_globfree_ glob_t g = {};
4558 int k;
4559 char **p;
4560
4561 errno = 0;
a8ccacf5 4562 k = glob(path, GLOB_NOSORT|GLOB_BRACE, NULL, &g);
8d98da3f
ZJS
4563
4564 if (k == GLOB_NOMATCH)
4565 return -ENOENT;
4566 else if (k == GLOB_NOSPACE)
4567 return -ENOMEM;
4568 else if (k != 0 || strv_isempty(g.gl_pathv))
4569 return errno ? -errno : -EIO;
4570
4571 STRV_FOREACH(p, g.gl_pathv) {
4572 k = strv_extend(strv, *p);
4573 if (k < 0)
4574 break;
4575 }
4576
4577 return k;
8092a428
LP
4578}
4579
83096483
LP
4580int dirent_ensure_type(DIR *d, struct dirent *de) {
4581 struct stat st;
4582
4583 assert(d);
4584 assert(de);
4585
4586 if (de->d_type != DT_UNKNOWN)
4587 return 0;
4588
4589 if (fstatat(dirfd(d), de->d_name, &st, AT_SYMLINK_NOFOLLOW) < 0)
4590 return -errno;
4591
4592 de->d_type =
4593 S_ISREG(st.st_mode) ? DT_REG :
4594 S_ISDIR(st.st_mode) ? DT_DIR :
4595 S_ISLNK(st.st_mode) ? DT_LNK :
4596 S_ISFIFO(st.st_mode) ? DT_FIFO :
4597 S_ISSOCK(st.st_mode) ? DT_SOCK :
4598 S_ISCHR(st.st_mode) ? DT_CHR :
4599 S_ISBLK(st.st_mode) ? DT_BLK :
4600 DT_UNKNOWN;
4601
4602 return 0;
4603}
4604
034a2a52 4605int get_files_in_directory(const char *path, char ***list) {
893fa014
ZJS
4606 _cleanup_closedir_ DIR *d = NULL;
4607 size_t bufsize = 0, n = 0;
4608 _cleanup_strv_free_ char **l = NULL;
034a2a52
LP
4609
4610 assert(path);
d60ef526
LP
4611
4612 /* Returns all files in a directory in *list, and the number
4613 * of files as return value. If list is NULL returns only the
893fa014 4614 * number. */
034a2a52
LP
4615
4616 d = opendir(path);
8ea913b2
LP
4617 if (!d)
4618 return -errno;
4619
034a2a52 4620 for (;;) {
7d5e9c0f 4621 struct dirent *de;
034a2a52 4622
3fd11280
FW
4623 errno = 0;
4624 de = readdir(d);
4625 if (!de && errno != 0)
4626 return -errno;
034a2a52
LP
4627 if (!de)
4628 break;
4629
4630 dirent_ensure_type(d, de);
4631
4632 if (!dirent_is_file(de))
4633 continue;
4634
d60ef526 4635 if (list) {
893fa014
ZJS
4636 /* one extra slot is needed for the terminating NULL */
4637 if (!GREEDY_REALLOC(l, bufsize, n + 2))
4638 return -ENOMEM;
034a2a52 4639
893fa014
ZJS
4640 l[n] = strdup(de->d_name);
4641 if (!l[n])
4642 return -ENOMEM;
034a2a52 4643
893fa014 4644 l[++n] = NULL;
d60ef526 4645 } else
893fa014 4646 n++;
034a2a52
LP
4647 }
4648
893fa014
ZJS
4649 if (list) {
4650 *list = l;
4651 l = NULL; /* avoid freeing */
4652 }
034a2a52 4653
893fa014 4654 return n;
034a2a52
LP
4655}
4656
b7def684 4657char *strjoin(const char *x, ...) {
911a4828
LP
4658 va_list ap;
4659 size_t l;
4660 char *r, *p;
4661
4662 va_start(ap, x);
4663
4664 if (x) {
4665 l = strlen(x);
4666
4667 for (;;) {
4668 const char *t;
040f18ea 4669 size_t n;
911a4828
LP
4670
4671 t = va_arg(ap, const char *);
4672 if (!t)
4673 break;
4674
040f18ea 4675 n = strlen(t);
e98055de
LN
4676 if (n > ((size_t) -1) - l) {
4677 va_end(ap);
040f18ea 4678 return NULL;
e98055de 4679 }
040f18ea
LP
4680
4681 l += n;
911a4828
LP
4682 }
4683 } else
4684 l = 0;
4685
4686 va_end(ap);
4687
4688 r = new(char, l+1);
4689 if (!r)
4690 return NULL;
4691
4692 if (x) {
4693 p = stpcpy(r, x);
4694
4695 va_start(ap, x);
4696
4697 for (;;) {
4698 const char *t;
4699
4700 t = va_arg(ap, const char *);
4701 if (!t)
4702 break;
4703
4704 p = stpcpy(p, t);
4705 }
8ea913b2
LP
4706
4707 va_end(ap);
911a4828
LP
4708 } else
4709 r[0] = 0;
4710
4711 return r;
4712}
4713
b636465b 4714bool is_main_thread(void) {
ec202eae 4715 static thread_local int cached = 0;
b636465b
LP
4716
4717 if (_unlikely_(cached == 0))
4718 cached = getpid() == gettid() ? 1 : -1;
4719
4720 return cached > 0;
4721}
4722
94959f0f
LP
4723int block_get_whole_disk(dev_t d, dev_t *ret) {
4724 char *p, *s;
4725 int r;
4726 unsigned n, m;
4727
4728 assert(ret);
4729
4730 /* If it has a queue this is good enough for us */
4731 if (asprintf(&p, "/sys/dev/block/%u:%u/queue", major(d), minor(d)) < 0)
4732 return -ENOMEM;
4733
4734 r = access(p, F_OK);
4735 free(p);
4736
4737 if (r >= 0) {
4738 *ret = d;
4739 return 0;
4740 }
4741
4742 /* If it is a partition find the originating device */
4743 if (asprintf(&p, "/sys/dev/block/%u:%u/partition", major(d), minor(d)) < 0)
4744 return -ENOMEM;
4745
4746 r = access(p, F_OK);
4747 free(p);
4748
4749 if (r < 0)
4750 return -ENOENT;
4751
4752 /* Get parent dev_t */
4753 if (asprintf(&p, "/sys/dev/block/%u:%u/../dev", major(d), minor(d)) < 0)
4754 return -ENOMEM;
4755
4756 r = read_one_line_file(p, &s);
4757 free(p);
4758
4759 if (r < 0)
4760 return r;
4761
4762 r = sscanf(s, "%u:%u", &m, &n);
4763 free(s);
4764
4765 if (r != 2)
4766 return -EINVAL;
4767
4768 /* Only return this if it is really good enough for us. */
4769 if (asprintf(&p, "/sys/dev/block/%u:%u/queue", m, n) < 0)
4770 return -ENOMEM;
4771
4772 r = access(p, F_OK);
4773 free(p);
4774
4775 if (r >= 0) {
4776 *ret = makedev(m, n);
4777 return 0;
4778 }
4779
4780 return -ENOENT;
4781}
4782
8d53b453 4783int file_is_priv_sticky(const char *p) {
ad293f5a
LP
4784 struct stat st;
4785
4786 assert(p);
4787
4788 if (lstat(p, &st) < 0)
4789 return -errno;
4790
4791 return
8d53b453 4792 (st.st_uid == 0 || st.st_uid == getuid()) &&
ad293f5a
LP
4793 (st.st_mode & S_ISVTX);
4794}
94959f0f 4795
f41607a6
LP
4796static const char *const ioprio_class_table[] = {
4797 [IOPRIO_CLASS_NONE] = "none",
4798 [IOPRIO_CLASS_RT] = "realtime",
4799 [IOPRIO_CLASS_BE] = "best-effort",
4800 [IOPRIO_CLASS_IDLE] = "idle"
4801};
4802
f8b69d1d 4803DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(ioprio_class, int, INT_MAX);
f41607a6
LP
4804
4805static const char *const sigchld_code_table[] = {
4806 [CLD_EXITED] = "exited",
4807 [CLD_KILLED] = "killed",
4808 [CLD_DUMPED] = "dumped",
4809 [CLD_TRAPPED] = "trapped",
4810 [CLD_STOPPED] = "stopped",
4811 [CLD_CONTINUED] = "continued",
4812};
4813
4814DEFINE_STRING_TABLE_LOOKUP(sigchld_code, int);
4815
4816static const char *const log_facility_unshifted_table[LOG_NFACILITIES] = {
4817 [LOG_FAC(LOG_KERN)] = "kern",
4818 [LOG_FAC(LOG_USER)] = "user",
4819 [LOG_FAC(LOG_MAIL)] = "mail",
4820 [LOG_FAC(LOG_DAEMON)] = "daemon",
4821 [LOG_FAC(LOG_AUTH)] = "auth",
4822 [LOG_FAC(LOG_SYSLOG)] = "syslog",
4823 [LOG_FAC(LOG_LPR)] = "lpr",
4824 [LOG_FAC(LOG_NEWS)] = "news",
4825 [LOG_FAC(LOG_UUCP)] = "uucp",
4826 [LOG_FAC(LOG_CRON)] = "cron",
4827 [LOG_FAC(LOG_AUTHPRIV)] = "authpriv",
4828 [LOG_FAC(LOG_FTP)] = "ftp",
4829 [LOG_FAC(LOG_LOCAL0)] = "local0",
4830 [LOG_FAC(LOG_LOCAL1)] = "local1",
4831 [LOG_FAC(LOG_LOCAL2)] = "local2",
4832 [LOG_FAC(LOG_LOCAL3)] = "local3",
4833 [LOG_FAC(LOG_LOCAL4)] = "local4",
4834 [LOG_FAC(LOG_LOCAL5)] = "local5",
4835 [LOG_FAC(LOG_LOCAL6)] = "local6",
4836 [LOG_FAC(LOG_LOCAL7)] = "local7"
4837};
4838
f8b69d1d 4839DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(log_facility_unshifted, int, LOG_FAC(~0));
f41607a6
LP
4840
4841static const char *const log_level_table[] = {
4842 [LOG_EMERG] = "emerg",
4843 [LOG_ALERT] = "alert",
4844 [LOG_CRIT] = "crit",
4845 [LOG_ERR] = "err",
4846 [LOG_WARNING] = "warning",
4847 [LOG_NOTICE] = "notice",
4848 [LOG_INFO] = "info",
4849 [LOG_DEBUG] = "debug"
4850};
4851
f8b69d1d 4852DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(log_level, int, LOG_DEBUG);
f41607a6
LP
4853
4854static const char* const sched_policy_table[] = {
4855 [SCHED_OTHER] = "other",
4856 [SCHED_BATCH] = "batch",
4857 [SCHED_IDLE] = "idle",
4858 [SCHED_FIFO] = "fifo",
4859 [SCHED_RR] = "rr"
4860};
4861
f8b69d1d 4862DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(sched_policy, int, INT_MAX);
f41607a6 4863
517d56b1 4864static const char* const rlimit_table[_RLIMIT_MAX] = {
f41607a6
LP
4865 [RLIMIT_CPU] = "LimitCPU",
4866 [RLIMIT_FSIZE] = "LimitFSIZE",
4867 [RLIMIT_DATA] = "LimitDATA",
4868 [RLIMIT_STACK] = "LimitSTACK",
4869 [RLIMIT_CORE] = "LimitCORE",
4870 [RLIMIT_RSS] = "LimitRSS",
4871 [RLIMIT_NOFILE] = "LimitNOFILE",
4872 [RLIMIT_AS] = "LimitAS",
4873 [RLIMIT_NPROC] = "LimitNPROC",
4874 [RLIMIT_MEMLOCK] = "LimitMEMLOCK",
4875 [RLIMIT_LOCKS] = "LimitLOCKS",
4876 [RLIMIT_SIGPENDING] = "LimitSIGPENDING",
4877 [RLIMIT_MSGQUEUE] = "LimitMSGQUEUE",
4878 [RLIMIT_NICE] = "LimitNICE",
4879 [RLIMIT_RTPRIO] = "LimitRTPRIO",
4880 [RLIMIT_RTTIME] = "LimitRTTIME"
4881};
4882
4883DEFINE_STRING_TABLE_LOOKUP(rlimit, int);
4884
4885static const char* const ip_tos_table[] = {
4886 [IPTOS_LOWDELAY] = "low-delay",
4887 [IPTOS_THROUGHPUT] = "throughput",
4888 [IPTOS_RELIABILITY] = "reliability",
4889 [IPTOS_LOWCOST] = "low-cost",
4890};
4891
f8b69d1d 4892DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(ip_tos, int, 0xff);
f41607a6 4893
4e240ab0 4894static const char *const __signal_table[] = {
f41607a6
LP
4895 [SIGHUP] = "HUP",
4896 [SIGINT] = "INT",
4897 [SIGQUIT] = "QUIT",
4898 [SIGILL] = "ILL",
4899 [SIGTRAP] = "TRAP",
4900 [SIGABRT] = "ABRT",
4901 [SIGBUS] = "BUS",
4902 [SIGFPE] = "FPE",
4903 [SIGKILL] = "KILL",
4904 [SIGUSR1] = "USR1",
4905 [SIGSEGV] = "SEGV",
4906 [SIGUSR2] = "USR2",
4907 [SIGPIPE] = "PIPE",
4908 [SIGALRM] = "ALRM",
4909 [SIGTERM] = "TERM",
4910#ifdef SIGSTKFLT
4911 [SIGSTKFLT] = "STKFLT", /* Linux on SPARC doesn't know SIGSTKFLT */
4912#endif
4913 [SIGCHLD] = "CHLD",
4914 [SIGCONT] = "CONT",
4915 [SIGSTOP] = "STOP",
4916 [SIGTSTP] = "TSTP",
4917 [SIGTTIN] = "TTIN",
4918 [SIGTTOU] = "TTOU",
4919 [SIGURG] = "URG",
4920 [SIGXCPU] = "XCPU",
4921 [SIGXFSZ] = "XFSZ",
4922 [SIGVTALRM] = "VTALRM",
4923 [SIGPROF] = "PROF",
4924 [SIGWINCH] = "WINCH",
4925 [SIGIO] = "IO",
4926 [SIGPWR] = "PWR",
4927 [SIGSYS] = "SYS"
4928};
4929
4e240ab0
MS
4930DEFINE_PRIVATE_STRING_TABLE_LOOKUP(__signal, int);
4931
4932const char *signal_to_string(int signo) {
ec202eae 4933 static thread_local char buf[sizeof("RTMIN+")-1 + DECIMAL_STR_MAX(int) + 1];
4e240ab0
MS
4934 const char *name;
4935
4936 name = __signal_to_string(signo);
4937 if (name)
4938 return name;
4939
4940 if (signo >= SIGRTMIN && signo <= SIGRTMAX)
fa70beaa 4941 snprintf(buf, sizeof(buf), "RTMIN+%d", signo - SIGRTMIN);
4e240ab0 4942 else
fa70beaa
LP
4943 snprintf(buf, sizeof(buf), "%d", signo);
4944
4e240ab0
MS
4945 return buf;
4946}
4947
4948int signal_from_string(const char *s) {
4949 int signo;
4950 int offset = 0;
4951 unsigned u;
4952
040f18ea 4953 signo = __signal_from_string(s);
4e240ab0
MS
4954 if (signo > 0)
4955 return signo;
4956
4957 if (startswith(s, "RTMIN+")) {
4958 s += 6;
4959 offset = SIGRTMIN;
4960 }
4961 if (safe_atou(s, &u) >= 0) {
4962 signo = (int) u + offset;
4963 if (signo > 0 && signo < _NSIG)
4964 return signo;
4965 }
7e8185ef 4966 return -EINVAL;
4e240ab0 4967}
65457142
FC
4968
4969bool kexec_loaded(void) {
4970 bool loaded = false;
4971 char *s;
4972
4973 if (read_one_line_file("/sys/kernel/kexec_loaded", &s) >= 0) {
4974 if (s[0] == '1')
4975 loaded = true;
4976 free(s);
4977 }
4978 return loaded;
4979}
fb9de93d 4980
87d2c1ff
LP
4981int prot_from_flags(int flags) {
4982
4983 switch (flags & O_ACCMODE) {
4984
4985 case O_RDONLY:
4986 return PROT_READ;
4987
4988 case O_WRONLY:
4989 return PROT_WRITE;
4990
4991 case O_RDWR:
4992 return PROT_READ|PROT_WRITE;
4993
4994 default:
4995 return -EINVAL;
4996 }
7c99e0c1 4997}
689b9a22 4998
babfc091 4999char *format_bytes(char *buf, size_t l, off_t t) {
c0f99c21 5000 unsigned i;
babfc091
LP
5001
5002 static const struct {
5003 const char *suffix;
5004 off_t factor;
5005 } table[] = {
32895bb3
LP
5006 { "E", 1024ULL*1024ULL*1024ULL*1024ULL*1024ULL*1024ULL },
5007 { "P", 1024ULL*1024ULL*1024ULL*1024ULL*1024ULL },
babfc091
LP
5008 { "T", 1024ULL*1024ULL*1024ULL*1024ULL },
5009 { "G", 1024ULL*1024ULL*1024ULL },
5010 { "M", 1024ULL*1024ULL },
5011 { "K", 1024ULL },
5012 };
5013
5014 for (i = 0; i < ELEMENTSOF(table); i++) {
5015
5016 if (t >= table[i].factor) {
5017 snprintf(buf, l,
5018 "%llu.%llu%s",
5019 (unsigned long long) (t / table[i].factor),
5020 (unsigned long long) (((t*10ULL) / table[i].factor) % 10ULL),
5021 table[i].suffix);
5022
5023 goto finish;
5024 }
5025 }
5026
5027 snprintf(buf, l, "%lluB", (unsigned long long) t);
5028
5029finish:
5030 buf[l-1] = 0;
5031 return buf;
5032
5033}
55d7bfc1
LP
5034
5035void* memdup(const void *p, size_t l) {
5036 void *r;
5037
5038 assert(p);
5039
5040 r = malloc(l);
5041 if (!r)
5042 return NULL;
5043
5044 memcpy(r, p, l);
5045 return r;
5046}
bb99a35a
LP
5047
5048int fd_inc_sndbuf(int fd, size_t n) {
5049 int r, value;
5050 socklen_t l = sizeof(value);
5051
5052 r = getsockopt(fd, SOL_SOCKET, SO_SNDBUF, &value, &l);
92d75ca4 5053 if (r >= 0 && l == sizeof(value) && (size_t) value >= n*2)
bb99a35a
LP
5054 return 0;
5055
92d75ca4
LP
5056 /* If we have the privileges we will ignore the kernel limit. */
5057
bb99a35a 5058 value = (int) n;
92d75ca4
LP
5059 if (setsockopt(fd, SOL_SOCKET, SO_SNDBUFFORCE, &value, sizeof(value)) < 0)
5060 if (setsockopt(fd, SOL_SOCKET, SO_SNDBUF, &value, sizeof(value)) < 0)
5061 return -errno;
bb99a35a
LP
5062
5063 return 1;
5064}
5065
5066int fd_inc_rcvbuf(int fd, size_t n) {
5067 int r, value;
5068 socklen_t l = sizeof(value);
5069
5070 r = getsockopt(fd, SOL_SOCKET, SO_RCVBUF, &value, &l);
92d75ca4 5071 if (r >= 0 && l == sizeof(value) && (size_t) value >= n*2)
bb99a35a
LP
5072 return 0;
5073
92d75ca4 5074 /* If we have the privileges we will ignore the kernel limit. */
bb99a35a 5075
92d75ca4
LP
5076 value = (int) n;
5077 if (setsockopt(fd, SOL_SOCKET, SO_RCVBUFFORCE, &value, sizeof(value)) < 0)
5078 if (setsockopt(fd, SOL_SOCKET, SO_RCVBUF, &value, sizeof(value)) < 0)
5079 return -errno;
bb99a35a
LP
5080 return 1;
5081}
6bb92a16 5082
9bdc770c 5083int fork_agent(pid_t *pid, const int except[], unsigned n_except, const char *path, ...) {
6bb92a16 5084 bool stdout_is_tty, stderr_is_tty;
8a7c93d8
LP
5085 pid_t parent_pid, agent_pid;
5086 sigset_t ss, saved_ss;
6bb92a16
LP
5087 unsigned n, i;
5088 va_list ap;
5089 char **l;
5090
5091 assert(pid);
5092 assert(path);
5093
6bb92a16
LP
5094 /* Spawns a temporary TTY agent, making sure it goes away when
5095 * we go away */
5096
8a7c93d8
LP
5097 parent_pid = getpid();
5098
5099 /* First we temporarily block all signals, so that the new
5100 * child has them blocked initially. This way, we can be sure
5101 * that SIGTERMs are not lost we might send to the agent. */
5102 assert_se(sigfillset(&ss) >= 0);
5103 assert_se(sigprocmask(SIG_SETMASK, &ss, &saved_ss) >= 0);
5104
6bb92a16 5105 agent_pid = fork();
8a7c93d8
LP
5106 if (agent_pid < 0) {
5107 assert_se(sigprocmask(SIG_SETMASK, &saved_ss, NULL) >= 0);
6bb92a16 5108 return -errno;
8a7c93d8 5109 }
6bb92a16
LP
5110
5111 if (agent_pid != 0) {
8a7c93d8 5112 assert_se(sigprocmask(SIG_SETMASK, &saved_ss, NULL) >= 0);
6bb92a16
LP
5113 *pid = agent_pid;
5114 return 0;
5115 }
5116
5117 /* In the child:
5118 *
5119 * Make sure the agent goes away when the parent dies */
5120 if (prctl(PR_SET_PDEATHSIG, SIGTERM) < 0)
5121 _exit(EXIT_FAILURE);
5122
8a7c93d8
LP
5123 /* Make sure we actually can kill the agent, if we need to, in
5124 * case somebody invoked us from a shell script that trapped
5125 * SIGTERM or so... */
5126 reset_all_signal_handlers();
5127 reset_signal_mask();
5128
6bb92a16 5129 /* Check whether our parent died before we were able
8a7c93d8 5130 * to set the death signal and unblock the signals */
6bb92a16
LP
5131 if (getppid() != parent_pid)
5132 _exit(EXIT_SUCCESS);
5133
5134 /* Don't leak fds to the agent */
9bdc770c 5135 close_all_fds(except, n_except);
6bb92a16
LP
5136
5137 stdout_is_tty = isatty(STDOUT_FILENO);
5138 stderr_is_tty = isatty(STDERR_FILENO);
5139
5140 if (!stdout_is_tty || !stderr_is_tty) {
8a7c93d8
LP
5141 int fd;
5142
6bb92a16
LP
5143 /* Detach from stdout/stderr. and reopen
5144 * /dev/tty for them. This is important to
5145 * ensure that when systemctl is started via
5146 * popen() or a similar call that expects to
5147 * read EOF we actually do generate EOF and
5148 * not delay this indefinitely by because we
5149 * keep an unused copy of stdin around. */
5150 fd = open("/dev/tty", O_WRONLY);
5151 if (fd < 0) {
5152 log_error("Failed to open /dev/tty: %m");
5153 _exit(EXIT_FAILURE);
5154 }
5155
5156 if (!stdout_is_tty)
5157 dup2(fd, STDOUT_FILENO);
5158
5159 if (!stderr_is_tty)
5160 dup2(fd, STDERR_FILENO);
5161
5162 if (fd > 2)
5163 close(fd);
5164 }
5165
5166 /* Count arguments */
5167 va_start(ap, path);
5168 for (n = 0; va_arg(ap, char*); n++)
5169 ;
5170 va_end(ap);
5171
5172 /* Allocate strv */
5173 l = alloca(sizeof(char *) * (n + 1));
5174
5175 /* Fill in arguments */
5176 va_start(ap, path);
5177 for (i = 0; i <= n; i++)
5178 l[i] = va_arg(ap, char*);
5179 va_end(ap);
5180
5181 execv(path, l);
5182 _exit(EXIT_FAILURE);
5183}
68faf98c
LP
5184
5185int setrlimit_closest(int resource, const struct rlimit *rlim) {
5186 struct rlimit highest, fixed;
5187
5188 assert(rlim);
5189
5190 if (setrlimit(resource, rlim) >= 0)
5191 return 0;
5192
5193 if (errno != EPERM)
5194 return -errno;
5195
5196 /* So we failed to set the desired setrlimit, then let's try
5197 * to get as close as we can */
5198 assert_se(getrlimit(resource, &highest) == 0);
5199
5200 fixed.rlim_cur = MIN(rlim->rlim_cur, highest.rlim_max);
5201 fixed.rlim_max = MIN(rlim->rlim_max, highest.rlim_max);
5202
5203 if (setrlimit(resource, &fixed) < 0)
5204 return -errno;
5205
5206 return 0;
5207}
3d9a4122 5208
ab94af92 5209int getenv_for_pid(pid_t pid, const char *field, char **_value) {
49aa47c7
LP
5210 _cleanup_fclose_ FILE *f = NULL;
5211 char *value = NULL;
ab94af92 5212 int r;
ab94af92
LP
5213 bool done = false;
5214 size_t l;
49aa47c7 5215 const char *path;
ab94af92 5216
49aa47c7 5217 assert(pid >= 0);
ab94af92
LP
5218 assert(field);
5219 assert(_value);
5220
b68fa010 5221 path = procfs_file_alloca(pid, "environ");
ab94af92
LP
5222
5223 f = fopen(path, "re");
5224 if (!f)
5225 return -errno;
5226
5227 l = strlen(field);
5228 r = 0;
5229
5230 do {
5231 char line[LINE_MAX];
5232 unsigned i;
5233
5234 for (i = 0; i < sizeof(line)-1; i++) {
5235 int c;
5236
5237 c = getc(f);
5238 if (_unlikely_(c == EOF)) {
5239 done = true;
5240 break;
5241 } else if (c == 0)
5242 break;
5243
5244 line[i] = c;
5245 }
5246 line[i] = 0;
5247
5248 if (memcmp(line, field, l) == 0 && line[l] == '=') {
5249 value = strdup(line + l + 1);
49aa47c7
LP
5250 if (!value)
5251 return -ENOMEM;
ab94af92
LP
5252
5253 r = 1;
5254 break;
5255 }
5256
5257 } while (!done);
5258
49aa47c7 5259 *_value = value;
ab94af92
LP
5260 return r;
5261}
d889a206 5262
49dbfa7b
LP
5263bool is_valid_documentation_url(const char *url) {
5264 assert(url);
5265
5266 if (startswith(url, "http://") && url[7])
5267 return true;
5268
5269 if (startswith(url, "https://") && url[8])
5270 return true;
5271
5272 if (startswith(url, "file:") && url[5])
5273 return true;
5274
5275 if (startswith(url, "info:") && url[5])
5276 return true;
5277
5278 if (startswith(url, "man:") && url[4])
5279 return true;
5280
5281 return false;
5282}
9be346c9
HH
5283
5284bool in_initrd(void) {
73020ab2 5285 static int saved = -1;
825c6fe5 5286 struct statfs s;
8f33b5b8 5287
825c6fe5
LP
5288 if (saved >= 0)
5289 return saved;
5290
5291 /* We make two checks here:
5292 *
5293 * 1. the flag file /etc/initrd-release must exist
5294 * 2. the root file system must be a memory file system
5295 *
5296 * The second check is extra paranoia, since misdetecting an
5297 * initrd can have bad bad consequences due the initrd
5298 * emptying when transititioning to the main systemd.
5299 */
5300
5301 saved = access("/etc/initrd-release", F_OK) >= 0 &&
5302 statfs("/", &s) >= 0 &&
943aad8c 5303 is_temporary_fs(&s);
9be346c9 5304
8f33b5b8 5305 return saved;
9be346c9 5306}
069cfc85
LP
5307
5308void warn_melody(void) {
e67f47e5 5309 _cleanup_close_ int fd = -1;
069cfc85
LP
5310
5311 fd = open("/dev/console", O_WRONLY|O_CLOEXEC|O_NOCTTY);
5312 if (fd < 0)
5313 return;
5314
040f18ea 5315 /* Yeah, this is synchronous. Kinda sucks. But well... */
069cfc85
LP
5316
5317 ioctl(fd, KIOCSOUND, (int)(1193180/440));
5318 usleep(125*USEC_PER_MSEC);
5319
5320 ioctl(fd, KIOCSOUND, (int)(1193180/220));
5321 usleep(125*USEC_PER_MSEC);
5322
5323 ioctl(fd, KIOCSOUND, (int)(1193180/220));
5324 usleep(125*USEC_PER_MSEC);
5325
5326 ioctl(fd, KIOCSOUND, 0);
069cfc85 5327}
cd3bd60a
LP
5328
5329int make_console_stdio(void) {
5330 int fd, r;
5331
5332 /* Make /dev/console the controlling terminal and stdin/stdout/stderr */
5333
3a43da28 5334 fd = acquire_terminal("/dev/console", false, true, true, USEC_INFINITY);
cd3bd60a
LP
5335 if (fd < 0) {
5336 log_error("Failed to acquire terminal: %s", strerror(-fd));
5337 return fd;
5338 }
5339
5340 r = make_stdio(fd);
5341 if (r < 0) {
5342 log_error("Failed to duplicate terminal fd: %s", strerror(-r));
5343 return r;
5344 }
5345
5346 return 0;
5347}
7c5f152a
LP
5348
5349int get_home_dir(char **_h) {
2cfbd749 5350 struct passwd *p;
7c5f152a 5351 const char *e;
2cfbd749 5352 char *h;
7c5f152a 5353 uid_t u;
7c5f152a
LP
5354
5355 assert(_h);
5356
5357 /* Take the user specified one */
9a00f57a
LP
5358 e = secure_getenv("HOME");
5359 if (e && path_is_absolute(e)) {
7c5f152a
LP
5360 h = strdup(e);
5361 if (!h)
5362 return -ENOMEM;
5363
5364 *_h = h;
5365 return 0;
5366 }
5367
5368 /* Hardcode home directory for root to avoid NSS */
5369 u = getuid();
5370 if (u == 0) {
5371 h = strdup("/root");
5372 if (!h)
5373 return -ENOMEM;
5374
5375 *_h = h;
5376 return 0;
5377 }
5378
5379 /* Check the database... */
5380 errno = 0;
5381 p = getpwuid(u);
5382 if (!p)
bcb161b0 5383 return errno > 0 ? -errno : -ESRCH;
7c5f152a
LP
5384
5385 if (!path_is_absolute(p->pw_dir))
5386 return -EINVAL;
5387
5388 h = strdup(p->pw_dir);
5389 if (!h)
5390 return -ENOMEM;
5391
5392 *_h = h;
5393 return 0;
5394}
5395
2cfbd749
LP
5396int get_shell(char **_s) {
5397 struct passwd *p;
5398 const char *e;
5399 char *s;
5400 uid_t u;
5401
5402 assert(_s);
5403
5404 /* Take the user specified one */
5405 e = getenv("SHELL");
5406 if (e) {
5407 s = strdup(e);
5408 if (!s)
5409 return -ENOMEM;
5410
5411 *_s = s;
5412 return 0;
5413 }
5414
5415 /* Hardcode home directory for root to avoid NSS */
5416 u = getuid();
5417 if (u == 0) {
5418 s = strdup("/bin/sh");
5419 if (!s)
5420 return -ENOMEM;
5421
5422 *_s = s;
5423 return 0;
5424 }
5425
5426 /* Check the database... */
5427 errno = 0;
5428 p = getpwuid(u);
5429 if (!p)
5430 return errno > 0 ? -errno : -ESRCH;
5431
5432 if (!path_is_absolute(p->pw_shell))
5433 return -EINVAL;
5434
5435 s = strdup(p->pw_shell);
5436 if (!s)
5437 return -ENOMEM;
5438
5439 *_s = s;
5440 return 0;
5441}
5442
0b507b17
LP
5443bool filename_is_safe(const char *p) {
5444
5445 if (isempty(p))
5446 return false;
5447
5448 if (strchr(p, '/'))
5449 return false;
5450
5451 if (streq(p, "."))
5452 return false;
5453
5454 if (streq(p, ".."))
5455 return false;
5456
5457 if (strlen(p) > FILENAME_MAX)
5458 return false;
5459
5460 return true;
5461}
5462
5463bool string_is_safe(const char *p) {
5464 const char *t;
5465
6294aa76
LP
5466 if (!p)
5467 return false;
0b507b17
LP
5468
5469 for (t = p; *t; t++) {
01539d6e 5470 if (*t > 0 && *t < ' ')
0b507b17
LP
5471 return false;
5472
6294aa76 5473 if (strchr("\\\"\'\0x7f", *t))
0b507b17
LP
5474 return false;
5475 }
5476
5477 return true;
5478}
cfbc22ab 5479
ac4c8d6d 5480/**
6294aa76
LP
5481 * Check if a string contains control characters. If 'ok' is non-NULL
5482 * it may be a string containing additional CCs to be considered OK.
ac4c8d6d 5483 */
6294aa76 5484bool string_has_cc(const char *p, const char *ok) {
4d1a6904
LP
5485 const char *t;
5486
5487 assert(p);
5488
3a8a9163 5489 for (t = p; *t; t++) {
6294aa76 5490 if (ok && strchr(ok, *t))
1cb1767a 5491 continue;
6294aa76
LP
5492
5493 if (*t > 0 && *t < ' ')
4d1a6904
LP
5494 return true;
5495
3a8a9163
LP
5496 if (*t == 127)
5497 return true;
5498 }
5499
4d1a6904
LP
5500 return false;
5501}
5502
e884315e
LP
5503bool path_is_safe(const char *p) {
5504
5505 if (isempty(p))
5506 return false;
5507
5508 if (streq(p, "..") || startswith(p, "../") || endswith(p, "/..") || strstr(p, "/../"))
5509 return false;
5510
5511 if (strlen(p) > PATH_MAX)
5512 return false;
5513
5514 /* The following two checks are not really dangerous, but hey, they still are confusing */
5515 if (streq(p, ".") || startswith(p, "./") || endswith(p, "/.") || strstr(p, "/./"))
5516 return false;
5517
5518 if (strstr(p, "//"))
5519 return false;
5520
5521 return true;
5522}
5523
a9e12476
KS
5524/* hey glibc, APIs with callbacks without a user pointer are so useless */
5525void *xbsearch_r(const void *key, const void *base, size_t nmemb, size_t size,
1c574591 5526 int (*compar) (const void *, const void *, void *), void *arg) {
a9e12476
KS
5527 size_t l, u, idx;
5528 const void *p;
5529 int comparison;
5530
5531 l = 0;
5532 u = nmemb;
5533 while (l < u) {
5534 idx = (l + u) / 2;
5535 p = (void *)(((const char *) base) + (idx * size));
5536 comparison = compar(key, p, arg);
5537 if (comparison < 0)
5538 u = idx;
5539 else if (comparison > 0)
5540 l = idx + 1;
5541 else
5542 return (void *)p;
5543 }
5544 return NULL;
5545}
09017585
MS
5546
5547bool is_locale_utf8(void) {
5548 const char *set;
5549 static int cached_answer = -1;
5550
5551 if (cached_answer >= 0)
5552 goto out;
5553
5554 if (!setlocale(LC_ALL, "")) {
5555 cached_answer = true;
5556 goto out;
5557 }
5558
5559 set = nl_langinfo(CODESET);
5560 if (!set) {
5561 cached_answer = true;
5562 goto out;
5563 }
5564
f168c273 5565 if (streq(set, "UTF-8")) {
fee79e01
HH
5566 cached_answer = true;
5567 goto out;
5568 }
5569
6cf2f1d9
HH
5570 /* For LC_CTYPE=="C" return true, because CTYPE is effectly
5571 * unset and everything can do to UTF-8 nowadays. */
fee79e01
HH
5572 set = setlocale(LC_CTYPE, NULL);
5573 if (!set) {
5574 cached_answer = true;
5575 goto out;
5576 }
5577
6cf2f1d9
HH
5578 /* Check result, but ignore the result if C was set
5579 * explicitly. */
5580 cached_answer =
5581 streq(set, "C") &&
5582 !getenv("LC_ALL") &&
5583 !getenv("LC_CTYPE") &&
5584 !getenv("LANG");
fee79e01 5585
09017585 5586out:
6cf2f1d9 5587 return (bool) cached_answer;
09017585 5588}
c339d977
MS
5589
5590const char *draw_special_char(DrawSpecialChar ch) {
5591 static const char *draw_table[2][_DRAW_SPECIAL_CHAR_MAX] = {
6b01f1d3 5592
c339d977 5593 /* UTF-8 */ {
6b01f1d3 5594 [DRAW_TREE_VERTICAL] = "\342\224\202 ", /* │ */
45a5ff0d
MS
5595 [DRAW_TREE_BRANCH] = "\342\224\234\342\224\200", /* ├─ */
5596 [DRAW_TREE_RIGHT] = "\342\224\224\342\224\200", /* └─ */
55c0b89c 5597 [DRAW_TREE_SPACE] = " ", /* */
6b01f1d3
LP
5598 [DRAW_TRIANGULAR_BULLET] = "\342\200\243", /* ‣ */
5599 [DRAW_BLACK_CIRCLE] = "\342\227\217", /* ● */
5600 [DRAW_ARROW] = "\342\206\222", /* → */
13f8b8cb 5601 [DRAW_DASH] = "\342\200\223", /* – */
c339d977 5602 },
6b01f1d3 5603
c339d977 5604 /* ASCII fallback */ {
6b01f1d3 5605 [DRAW_TREE_VERTICAL] = "| ",
45a5ff0d
MS
5606 [DRAW_TREE_BRANCH] = "|-",
5607 [DRAW_TREE_RIGHT] = "`-",
55c0b89c 5608 [DRAW_TREE_SPACE] = " ",
6b01f1d3
LP
5609 [DRAW_TRIANGULAR_BULLET] = ">",
5610 [DRAW_BLACK_CIRCLE] = "*",
5611 [DRAW_ARROW] = "->",
13f8b8cb 5612 [DRAW_DASH] = "-",
c339d977
MS
5613 }
5614 };
5615
5616 return draw_table[!is_locale_utf8()][ch];
5617}
409bc9c3
LP
5618
5619char *strreplace(const char *text, const char *old_string, const char *new_string) {
5620 const char *f;
5621 char *t, *r;
5622 size_t l, old_len, new_len;
5623
5624 assert(text);
5625 assert(old_string);
5626 assert(new_string);
5627
5628 old_len = strlen(old_string);
5629 new_len = strlen(new_string);
5630
5631 l = strlen(text);
5632 r = new(char, l+1);
5633 if (!r)
5634 return NULL;
5635
5636 f = text;
5637 t = r;
5638 while (*f) {
5639 char *a;
5640 size_t d, nl;
5641
5642 if (!startswith(f, old_string)) {
5643 *(t++) = *(f++);
5644 continue;
5645 }
5646
5647 d = t - r;
5648 nl = l - old_len + new_len;
5649 a = realloc(r, nl + 1);
5650 if (!a)
5651 goto oom;
5652
5653 l = nl;
5654 r = a;
5655 t = r + d;
5656
5657 t = stpcpy(t, new_string);
5658 f += old_len;
5659 }
5660
5661 *t = 0;
5662 return r;
5663
5664oom:
5665 free(r);
5666 return NULL;
5667}
e8bc0ea2
LP
5668
5669char *strip_tab_ansi(char **ibuf, size_t *_isz) {
660ddc72 5670 const char *i, *begin = NULL;
e8bc0ea2
LP
5671 enum {
5672 STATE_OTHER,
5673 STATE_ESCAPE,
5674 STATE_BRACKET
5675 } state = STATE_OTHER;
5676 char *obuf = NULL;
5677 size_t osz = 0, isz;
5678 FILE *f;
5679
5680 assert(ibuf);
5681 assert(*ibuf);
5682
5683 /* Strips ANSI color and replaces TABs by 8 spaces */
5684
5685 isz = _isz ? *_isz : strlen(*ibuf);
5686
5687 f = open_memstream(&obuf, &osz);
5688 if (!f)
5689 return NULL;
5690
5691 for (i = *ibuf; i < *ibuf + isz + 1; i++) {
5692
5693 switch (state) {
5694
5695 case STATE_OTHER:
5696 if (i >= *ibuf + isz) /* EOT */
5697 break;
5698 else if (*i == '\x1B')
5699 state = STATE_ESCAPE;
5700 else if (*i == '\t')
5701 fputs(" ", f);
5702 else
5703 fputc(*i, f);
5704 break;
5705
5706 case STATE_ESCAPE:
5707 if (i >= *ibuf + isz) { /* EOT */
5708 fputc('\x1B', f);
5709 break;
5710 } else if (*i == '[') {
5711 state = STATE_BRACKET;
5712 begin = i + 1;
5713 } else {
5714 fputc('\x1B', f);
5715 fputc(*i, f);
5716 state = STATE_OTHER;
5717 }
5718
5719 break;
5720
5721 case STATE_BRACKET:
5722
5723 if (i >= *ibuf + isz || /* EOT */
5724 (!(*i >= '0' && *i <= '9') && *i != ';' && *i != 'm')) {
5725 fputc('\x1B', f);
5726 fputc('[', f);
5727 state = STATE_OTHER;
5728 i = begin-1;
5729 } else if (*i == 'm')
5730 state = STATE_OTHER;
5731 break;
5732 }
5733 }
5734
5735 if (ferror(f)) {
5736 fclose(f);
5737 free(obuf);
5738 return NULL;
5739 }
5740
5741 fclose(f);
5742
5743 free(*ibuf);
5744 *ibuf = obuf;
5745
5746 if (_isz)
5747 *_isz = osz;
5748
5749 return obuf;
5750}
240dbaa4
LP
5751
5752int on_ac_power(void) {
5753 bool found_offline = false, found_online = false;
5754 _cleanup_closedir_ DIR *d = NULL;
5755
5756 d = opendir("/sys/class/power_supply");
5757 if (!d)
5758 return -errno;
5759
5760 for (;;) {
5761 struct dirent *de;
240dbaa4
LP
5762 _cleanup_close_ int fd = -1, device = -1;
5763 char contents[6];
5764 ssize_t n;
240dbaa4 5765
3fd11280
FW
5766 errno = 0;
5767 de = readdir(d);
5768 if (!de && errno != 0)
5769 return -errno;
240dbaa4
LP
5770
5771 if (!de)
5772 break;
5773
5774 if (ignore_file(de->d_name))
5775 continue;
5776
5777 device = openat(dirfd(d), de->d_name, O_DIRECTORY|O_RDONLY|O_CLOEXEC|O_NOCTTY);
5778 if (device < 0) {
5779 if (errno == ENOENT || errno == ENOTDIR)
5780 continue;
5781
5782 return -errno;
5783 }
5784
5785 fd = openat(device, "type", O_RDONLY|O_CLOEXEC|O_NOCTTY);
5786 if (fd < 0) {
5787 if (errno == ENOENT)
5788 continue;
5789
5790 return -errno;
5791 }
5792
5793 n = read(fd, contents, sizeof(contents));
5794 if (n < 0)
5795 return -errno;
5796
5797 if (n != 6 || memcmp(contents, "Mains\n", 6))
5798 continue;
5799
03e334a1 5800 safe_close(fd);
240dbaa4
LP
5801 fd = openat(device, "online", O_RDONLY|O_CLOEXEC|O_NOCTTY);
5802 if (fd < 0) {
5803 if (errno == ENOENT)
5804 continue;
5805
5806 return -errno;
5807 }
5808
5809 n = read(fd, contents, sizeof(contents));
5810 if (n < 0)
5811 return -errno;
5812
5813 if (n != 2 || contents[1] != '\n')
5814 return -EIO;
5815
5816 if (contents[0] == '1') {
5817 found_online = true;
5818 break;
5819 } else if (contents[0] == '0')
5820 found_offline = true;
5821 else
5822 return -EIO;
5823 }
5824
5825 return found_online || !found_offline;
5826}
fabe5c0e 5827
4cf7ea55 5828static int search_and_fopen_internal(const char *path, const char *mode, const char *root, char **search, FILE **_f) {
fabe5c0e
LP
5829 char **i;
5830
5831 assert(path);
5832 assert(mode);
5833 assert(_f);
5834
7d8da2c9 5835 if (!path_strv_resolve_uniq(search, root))
fabe5c0e
LP
5836 return -ENOMEM;
5837
5838 STRV_FOREACH(i, search) {
5839 _cleanup_free_ char *p = NULL;
5840 FILE *f;
5841
375eadd9
MM
5842 if (root)
5843 p = strjoin(root, *i, "/", path, NULL);
5844 else
5845 p = strjoin(*i, "/", path, NULL);
fabe5c0e
LP
5846 if (!p)
5847 return -ENOMEM;
5848
5849 f = fopen(p, mode);
5850 if (f) {
5851 *_f = f;
5852 return 0;
5853 }
5854
5855 if (errno != ENOENT)
5856 return -errno;
5857 }
5858
5859 return -ENOENT;
5860}
5861
4cf7ea55 5862int search_and_fopen(const char *path, const char *mode, const char *root, const char **search, FILE **_f) {
fabe5c0e
LP
5863 _cleanup_strv_free_ char **copy = NULL;
5864
5865 assert(path);
5866 assert(mode);
5867 assert(_f);
5868
5869 if (path_is_absolute(path)) {
5870 FILE *f;
5871
5872 f = fopen(path, mode);
5873 if (f) {
5874 *_f = f;
5875 return 0;
5876 }
5877
5878 return -errno;
5879 }
5880
5881 copy = strv_copy((char**) search);
5882 if (!copy)
5883 return -ENOMEM;
5884
4cf7ea55 5885 return search_and_fopen_internal(path, mode, root, copy, _f);
fabe5c0e
LP
5886}
5887
4cf7ea55 5888int search_and_fopen_nulstr(const char *path, const char *mode, const char *root, const char *search, FILE **_f) {
fabe5c0e
LP
5889 _cleanup_strv_free_ char **s = NULL;
5890
5891 if (path_is_absolute(path)) {
5892 FILE *f;
5893
5894 f = fopen(path, mode);
5895 if (f) {
5896 *_f = f;
5897 return 0;
5898 }
5899
5900 return -errno;
5901 }
5902
5903 s = strv_split_nulstr(search);
5904 if (!s)
5905 return -ENOMEM;
5906
4cf7ea55 5907 return search_and_fopen_internal(path, mode, root, s, _f);
fabe5c0e 5908}
c17ec25e 5909
66e35261
LP
5910char *strextend(char **x, ...) {
5911 va_list ap;
5912 size_t f, l;
5913 char *r, *p;
5914
5915 assert(x);
5916
5917 l = f = *x ? strlen(*x) : 0;
5918
5919 va_start(ap, x);
5920 for (;;) {
5921 const char *t;
5922 size_t n;
5923
5924 t = va_arg(ap, const char *);
5925 if (!t)
5926 break;
5927
5928 n = strlen(t);
5929 if (n > ((size_t) -1) - l) {
5930 va_end(ap);
5931 return NULL;
5932 }
5933
5934 l += n;
5935 }
5936 va_end(ap);
5937
5938 r = realloc(*x, l+1);
5939 if (!r)
5940 return NULL;
5941
5942 p = r + f;
5943
5944 va_start(ap, x);
5945 for (;;) {
5946 const char *t;
5947
5948 t = va_arg(ap, const char *);
5949 if (!t)
5950 break;
5951
5952 p = stpcpy(p, t);
5953 }
5954 va_end(ap);
5955
5956 *p = 0;
5957 *x = r;
5958
5959 return r + l;
5960}
9a17484d
LP
5961
5962char *strrep(const char *s, unsigned n) {
5963 size_t l;
5964 char *r, *p;
5965 unsigned i;
5966
5967 assert(s);
5968
5969 l = strlen(s);
5970 p = r = malloc(l * n + 1);
5971 if (!r)
5972 return NULL;
5973
5974 for (i = 0; i < n; i++)
5975 p = stpcpy(p, s);
5976
5977 *p = 0;
5978 return r;
5979}
392d5b37 5980
ca2d3784
ZJS
5981void* greedy_realloc(void **p, size_t *allocated, size_t need, size_t size) {
5982 size_t a, newalloc;
392d5b37
LP
5983 void *q;
5984
98088803 5985 assert(p);
e93c33d4
SL
5986 assert(allocated);
5987
392d5b37
LP
5988 if (*allocated >= need)
5989 return *p;
5990
ca2d3784
ZJS
5991 newalloc = MAX(need * 2, 64u / size);
5992 a = newalloc * size;
98088803
LP
5993
5994 /* check for overflows */
ca2d3784 5995 if (a < size * need)
98088803
LP
5996 return NULL;
5997
392d5b37
LP
5998 q = realloc(*p, a);
5999 if (!q)
6000 return NULL;
6001
6002 *p = q;
ca2d3784 6003 *allocated = newalloc;
392d5b37
LP
6004 return q;
6005}
aa96c6cb 6006
ca2d3784 6007void* greedy_realloc0(void **p, size_t *allocated, size_t need, size_t size) {
98088803 6008 size_t prev;
4545a231
DH
6009 uint8_t *q;
6010
98088803
LP
6011 assert(p);
6012 assert(allocated);
6013
6014 prev = *allocated;
6015
ca2d3784 6016 q = greedy_realloc(p, allocated, need, size);
4545a231
DH
6017 if (!q)
6018 return NULL;
6019
6020 if (*allocated > prev)
ca2d3784 6021 memzero(q + prev * size, (*allocated - prev) * size);
4545a231
DH
6022
6023 return q;
6024}
6025
aa96c6cb
LP
6026bool id128_is_valid(const char *s) {
6027 size_t i, l;
6028
6029 l = strlen(s);
6030 if (l == 32) {
6031
6032 /* Simple formatted 128bit hex string */
6033
6034 for (i = 0; i < l; i++) {
6035 char c = s[i];
6036
6037 if (!(c >= '0' && c <= '9') &&
6038 !(c >= 'a' && c <= 'z') &&
6039 !(c >= 'A' && c <= 'Z'))
6040 return false;
6041 }
6042
6043 } else if (l == 36) {
6044
6045 /* Formatted UUID */
6046
6047 for (i = 0; i < l; i++) {
6048 char c = s[i];
6049
6050 if ((i == 8 || i == 13 || i == 18 || i == 23)) {
6051 if (c != '-')
6052 return false;
6053 } else {
6054 if (!(c >= '0' && c <= '9') &&
6055 !(c >= 'a' && c <= 'z') &&
6056 !(c >= 'A' && c <= 'Z'))
6057 return false;
6058 }
6059 }
6060
6061 } else
6062 return false;
6063
6064 return true;
6065}
7085053a 6066
d4ac85c6
LP
6067int split_pair(const char *s, const char *sep, char **l, char **r) {
6068 char *x, *a, *b;
6069
6070 assert(s);
6071 assert(sep);
6072 assert(l);
6073 assert(r);
6074
6075 if (isempty(sep))
6076 return -EINVAL;
6077
6078 x = strstr(s, sep);
6079 if (!x)
6080 return -EINVAL;
6081
6082 a = strndup(s, x - s);
6083 if (!a)
6084 return -ENOMEM;
6085
6086 b = strdup(x + strlen(sep));
6087 if (!b) {
6088 free(a);
6089 return -ENOMEM;
6090 }
6091
6092 *l = a;
6093 *r = b;
6094
6095 return 0;
6096}
295edddf 6097
74df0fca 6098int shall_restore_state(void) {
059cb385 6099 _cleanup_free_ char *line = NULL;
a2a5291b 6100 const char *word, *state;
295edddf 6101 size_t l;
74df0fca 6102 int r;
295edddf 6103
74df0fca
LP
6104 r = proc_cmdline(&line);
6105 if (r < 0)
6106 return r;
6107 if (r == 0) /* Container ... */
6108 return 1;
295edddf 6109
059cb385 6110 r = 1;
74df0fca 6111
a2a5291b 6112 FOREACH_WORD_QUOTED(word, l, line, state) {
059cb385
LP
6113 const char *e;
6114 char n[l+1];
6115 int k;
6116
a2a5291b 6117 memcpy(n, word, l);
059cb385
LP
6118 n[l] = 0;
6119
6120 e = startswith(n, "systemd.restore_state=");
6121 if (!e)
6122 continue;
6123
6124 k = parse_boolean(e);
6125 if (k >= 0)
6126 r = k;
6127 }
6128
6129 return r;
74df0fca
LP
6130}
6131
6132int proc_cmdline(char **ret) {
6133 int r;
6134
6135 if (detect_container(NULL) > 0) {
39883f62 6136 char *buf = NULL, *p;
02bb6cda
LP
6137 size_t sz = 0;
6138
6139 r = read_full_file("/proc/1/cmdline", &buf, &sz);
6140 if (r < 0)
6141 return r;
6142
6143 for (p = buf; p + 1 < buf + sz; p++)
6144 if (*p == 0)
6145 *p = ' ';
6146
059cb385 6147 *p = 0;
02bb6cda
LP
6148 *ret = buf;
6149 return 1;
295edddf
TG
6150 }
6151
74df0fca
LP
6152 r = read_one_line_file("/proc/cmdline", ret);
6153 if (r < 0)
6154 return r;
295edddf 6155
74df0fca 6156 return 1;
295edddf 6157}
bc9fd78c 6158
059cb385 6159int parse_proc_cmdline(int (*parse_item)(const char *key, const char *value)) {
141a79f4 6160 _cleanup_free_ char *line = NULL;
a2a5291b 6161 const char *w, *state;
141a79f4
ZJS
6162 size_t l;
6163 int r;
6164
059cb385
LP
6165 assert(parse_item);
6166
141a79f4
ZJS
6167 r = proc_cmdline(&line);
6168 if (r < 0)
6169 log_warning("Failed to read /proc/cmdline, ignoring: %s", strerror(-r));
6170 if (r <= 0)
6171 return 0;
6172
6173 FOREACH_WORD_QUOTED(w, l, line, state) {
059cb385 6174 char word[l+1], *value;
141a79f4 6175
059cb385
LP
6176 memcpy(word, w, l);
6177 word[l] = 0;
141a79f4 6178
059cb385
LP
6179 /* Filter out arguments that are intended only for the
6180 * initrd */
6181 if (!in_initrd() && startswith(word, "rd."))
6182 continue;
6183
6184 value = strchr(word, '=');
6185 if (value)
6186 *(value++) = 0;
6187
6188 r = parse_item(word, value);
6189 if (r < 0)
141a79f4 6190 return r;
141a79f4
ZJS
6191 }
6192
6193 return 0;
6194}
6195
bc9fd78c
LP
6196int container_get_leader(const char *machine, pid_t *pid) {
6197 _cleanup_free_ char *s = NULL, *class = NULL;
6198 const char *p;
6199 pid_t leader;
6200 int r;
6201
6202 assert(machine);
6203 assert(pid);
6204
6205 p = strappenda("/run/systemd/machines/", machine);
6206 r = parse_env_file(p, NEWLINE, "LEADER", &s, "CLASS", &class, NULL);
6207 if (r == -ENOENT)
6208 return -EHOSTDOWN;
6209 if (r < 0)
6210 return r;
6211 if (!s)
6212 return -EIO;
6213
6214 if (!streq_ptr(class, "container"))
6215 return -EIO;
6216
6217 r = parse_pid(s, &leader);
6218 if (r < 0)
6219 return r;
6220 if (leader <= 1)
6221 return -EIO;
6222
6223 *pid = leader;
6224 return 0;
6225}
6226
878cd7e9
LP
6227int namespace_open(pid_t pid, int *pidns_fd, int *mntns_fd, int *netns_fd, int *root_fd) {
6228 _cleanup_close_ int pidnsfd = -1, mntnsfd = -1, netnsfd = -1;
359a06aa 6229 int rfd = -1;
bc9fd78c
LP
6230
6231 assert(pid >= 0);
bc9fd78c 6232
878cd7e9
LP
6233 if (mntns_fd) {
6234 const char *mntns;
a4475f57 6235
878cd7e9
LP
6236 mntns = procfs_file_alloca(pid, "ns/mnt");
6237 mntnsfd = open(mntns, O_RDONLY|O_NOCTTY|O_CLOEXEC);
6238 if (mntnsfd < 0)
6239 return -errno;
6240 }
bc9fd78c 6241
878cd7e9
LP
6242 if (pidns_fd) {
6243 const char *pidns;
6244
6245 pidns = procfs_file_alloca(pid, "ns/pid");
6246 pidnsfd = open(pidns, O_RDONLY|O_NOCTTY|O_CLOEXEC);
6247 if (pidnsfd < 0)
6248 return -errno;
6249 }
6250
6251 if (netns_fd) {
6252 const char *netns;
6253
6254 netns = procfs_file_alloca(pid, "ns/net");
6255 netnsfd = open(netns, O_RDONLY|O_NOCTTY|O_CLOEXEC);
6256 if (netnsfd < 0)
6257 return -errno;
6258 }
6259
6260 if (root_fd) {
6261 const char *root;
6262
6263 root = procfs_file_alloca(pid, "root");
6264 rfd = open(root, O_RDONLY|O_NOCTTY|O_CLOEXEC|O_DIRECTORY);
6265 if (rfd < 0)
6266 return -errno;
6267 }
6268
6269 if (pidns_fd)
6270 *pidns_fd = pidnsfd;
bc9fd78c 6271
878cd7e9
LP
6272 if (mntns_fd)
6273 *mntns_fd = mntnsfd;
6274
6275 if (netns_fd)
6276 *netns_fd = netnsfd;
6277
6278 if (root_fd)
6279 *root_fd = rfd;
6280
6281 pidnsfd = mntnsfd = netnsfd = -1;
bc9fd78c
LP
6282
6283 return 0;
6284}
6285
878cd7e9 6286int namespace_enter(int pidns_fd, int mntns_fd, int netns_fd, int root_fd) {
bc9fd78c 6287
878cd7e9
LP
6288 if (pidns_fd >= 0)
6289 if (setns(pidns_fd, CLONE_NEWPID) < 0)
6290 return -errno;
a4475f57 6291
878cd7e9
LP
6292 if (mntns_fd >= 0)
6293 if (setns(mntns_fd, CLONE_NEWNS) < 0)
6294 return -errno;
bc9fd78c 6295
878cd7e9
LP
6296 if (netns_fd >= 0)
6297 if (setns(netns_fd, CLONE_NEWNET) < 0)
6298 return -errno;
bc9fd78c 6299
878cd7e9
LP
6300 if (root_fd >= 0) {
6301 if (fchdir(root_fd) < 0)
6302 return -errno;
6303
6304 if (chroot(".") < 0)
6305 return -errno;
6306 }
bc9fd78c 6307
5e2b3214
LP
6308 if (setresgid(0, 0, 0) < 0)
6309 return -errno;
6310
878cd7e9
LP
6311 if (setgroups(0, NULL) < 0)
6312 return -errno;
6313
5e2b3214
LP
6314 if (setresuid(0, 0, 0) < 0)
6315 return -errno;
6316
bc9fd78c
LP
6317 return 0;
6318}
bf108e55 6319
9f5650ae
LP
6320bool pid_is_unwaited(pid_t pid) {
6321 /* Checks whether a PID is still valid at all, including a zombie */
6322
bf108e55
LP
6323 if (pid <= 0)
6324 return false;
6325
6326 if (kill(pid, 0) >= 0)
6327 return true;
6328
6329 return errno != ESRCH;
6330}
eff05270 6331
9f5650ae
LP
6332bool pid_is_alive(pid_t pid) {
6333 int r;
6334
6335 /* Checks whether a PID is still valid and not a zombie */
6336
6337 if (pid <= 0)
6338 return false;
6339
6340 r = get_process_state(pid);
6341 if (r == -ENOENT || r == 'Z')
6342 return false;
6343
6344 return true;
6345}
6346
eff05270
LP
6347int getpeercred(int fd, struct ucred *ucred) {
6348 socklen_t n = sizeof(struct ucred);
6349 struct ucred u;
6350 int r;
6351
6352 assert(fd >= 0);
6353 assert(ucred);
6354
6355 r = getsockopt(fd, SOL_SOCKET, SO_PEERCRED, &u, &n);
6356 if (r < 0)
6357 return -errno;
6358
6359 if (n != sizeof(struct ucred))
6360 return -EIO;
6361
6362 /* Check if the data is actually useful and not suppressed due
6363 * to namespacing issues */
6364 if (u.pid <= 0)
6365 return -ENODATA;
6366
6367 *ucred = u;
6368 return 0;
6369}
6370
6371int getpeersec(int fd, char **ret) {
6372 socklen_t n = 64;
6373 char *s;
6374 int r;
6375
6376 assert(fd >= 0);
6377 assert(ret);
6378
6379 s = new0(char, n);
6380 if (!s)
6381 return -ENOMEM;
6382
6383 r = getsockopt(fd, SOL_SOCKET, SO_PEERSEC, s, &n);
6384 if (r < 0) {
6385 free(s);
6386
6387 if (errno != ERANGE)
6388 return -errno;
6389
6390 s = new0(char, n);
6391 if (!s)
6392 return -ENOMEM;
6393
6394 r = getsockopt(fd, SOL_SOCKET, SO_PEERSEC, s, &n);
6395 if (r < 0) {
6396 free(s);
6397 return -errno;
6398 }
6399 }
6400
ae98841e
LP
6401 if (isempty(s)) {
6402 free(s);
6403 return -ENOTSUP;
6404 }
6405
eff05270
LP
6406 *ret = s;
6407 return 0;
6408}
8e33886e 6409
0f010ef2 6410/* This is much like like mkostemp() but is subject to umask(). */
65b3903f 6411int mkostemp_safe(char *pattern, int flags) {
2d5bdf5b 6412 _cleanup_umask_ mode_t u;
0f010ef2 6413 int fd;
65b3903f 6414
d37a91e8 6415 assert(pattern);
65b3903f 6416
2d5bdf5b
LP
6417 u = umask(077);
6418
0f010ef2
ZJS
6419 fd = mkostemp(pattern, flags);
6420 if (fd < 0)
6421 return -errno;
65b3903f 6422
0f010ef2 6423 return fd;
65b3903f
ZJS
6424}
6425
8e33886e 6426int open_tmpfile(const char *path, int flags) {
8e33886e 6427 char *p;
a6afc4ae
LP
6428 int fd;
6429
6430 assert(path);
8e33886e
ZJS
6431
6432#ifdef O_TMPFILE
7736202c
LP
6433 /* Try O_TMPFILE first, if it is supported */
6434 fd = open(path, flags|O_TMPFILE, S_IRUSR|S_IWUSR);
8e33886e
ZJS
6435 if (fd >= 0)
6436 return fd;
6437#endif
7736202c
LP
6438
6439 /* Fall back to unguessable name + unlinking */
8e33886e
ZJS
6440 p = strappenda(path, "/systemd-tmp-XXXXXX");
6441
a6afc4ae 6442 fd = mkostemp_safe(p, flags);
8e33886e 6443 if (fd < 0)
65b3903f 6444 return fd;
8e33886e
ZJS
6445
6446 unlink(p);
6447 return fd;
6448}
fdb9161c
LP
6449
6450int fd_warn_permissions(const char *path, int fd) {
6451 struct stat st;
6452
6453 if (fstat(fd, &st) < 0)
6454 return -errno;
6455
6456 if (st.st_mode & 0111)
6457 log_warning("Configuration file %s is marked executable. Please remove executable permission bits. Proceeding anyway.", path);
6458
6459 if (st.st_mode & 0002)
6460 log_warning("Configuration file %s is marked world-writable. Please remove world writability permission bits. Proceeding anyway.", path);
6461
6462 if (getpid() == 1 && (st.st_mode & 0044) != 0044)
6463 log_warning("Configuration file %s is marked world-inaccessible. This has no effect as configuration data is accessible via APIs without restrictions. Proceeding anyway.", path);
6464
6465 return 0;
6466}
6afc95b7 6467
ac45f971 6468unsigned long personality_from_string(const char *p) {
6afc95b7
LP
6469
6470 /* Parse a personality specifier. We introduce our own
6471 * identifiers that indicate specific ABIs, rather than just
6472 * hints regarding the register size, since we want to keep
6473 * things open for multiple locally supported ABIs for the
6474 * same register size. We try to reuse the ABI identifiers
6475 * used by libseccomp. */
6476
6477#if defined(__x86_64__)
6478
6479 if (streq(p, "x86"))
6480 return PER_LINUX32;
6481
6482 if (streq(p, "x86-64"))
6483 return PER_LINUX;
6484
6485#elif defined(__i386__)
6486
6487 if (streq(p, "x86"))
6488 return PER_LINUX;
6489#endif
6490
6491 /* personality(7) documents that 0xffffffffUL is used for
6492 * querying the current personality, hence let's use that here
6493 * as error indicator. */
6494 return 0xffffffffUL;
6495}
ac45f971
LP
6496
6497const char* personality_to_string(unsigned long p) {
6498
6499#if defined(__x86_64__)
6500
6501 if (p == PER_LINUX32)
6502 return "x86";
6503
6504 if (p == PER_LINUX)
6505 return "x86-64";
6506
6507#elif defined(__i386__)
6508
6509 if (p == PER_LINUX)
6510 return "x86";
6511#endif
6512
6513 return NULL;
6514}
1c231f56
LP
6515
6516uint64_t physical_memory(void) {
6517 long mem;
6518
6519 /* We return this as uint64_t in case we are running as 32bit
6520 * process on a 64bit kernel with huge amounts of memory */
6521
6522 mem = sysconf(_SC_PHYS_PAGES);
6523 assert(mem > 0);
6524
6525 return (uint64_t) mem * (uint64_t) page_size();
6526}
6db615c1
LP
6527
6528char* mount_test_option(const char *haystack, const char *needle) {
6529
6530 struct mntent me = {
6531 .mnt_opts = (char*) haystack
6532 };
6533
6534 assert(needle);
6535
6536 /* Like glibc's hasmntopt(), but works on a string, not a
6537 * struct mntent */
6538
6539 if (!haystack)
6540 return NULL;
6541
6542 return hasmntopt(&me, needle);
6543}
29bfbcd6
LP
6544
6545void hexdump(FILE *f, const void *p, size_t s) {
6546 const uint8_t *b = p;
6547 unsigned n = 0;
6548
6549 assert(s == 0 || b);
6550
6551 while (s > 0) {
6552 size_t i;
6553
6554 fprintf(f, "%04x ", n);
6555
6556 for (i = 0; i < 16; i++) {
6557
6558 if (i >= s)
6559 fputs(" ", f);
6560 else
6561 fprintf(f, "%02x ", b[i]);
6562
6563 if (i == 7)
6564 fputc(' ', f);
6565 }
6566
6567 fputc(' ', f);
6568
6569 for (i = 0; i < 16; i++) {
6570
6571 if (i >= s)
6572 fputc(' ', f);
6573 else
6574 fputc(isprint(b[i]) ? (char) b[i] : '.', f);
6575 }
6576
6577 fputc('\n', f);
6578
6579 if (s < 16)
6580 break;
6581
6582 n += 16;
6583 b += 16;
6584 s -= 16;
6585 }
6586}
c5220a94 6587
966bff26 6588int update_reboot_param_file(const char *param) {
c5220a94
MO
6589 int r = 0;
6590
6591 if (param) {
6592
6593 r = write_string_file(REBOOT_PARAM_FILE, param);
6594 if (r < 0)
6595 log_error("Failed to write reboot param to "
6596 REBOOT_PARAM_FILE": %s", strerror(-r));
6597 } else
6598 unlink(REBOOT_PARAM_FILE);
6599
6600 return r;
6601}
6d313367
LP
6602
6603int umount_recursive(const char *prefix, int flags) {
6604 bool again;
6605 int n = 0, r;
6606
6607 /* Try to umount everything recursively below a
6608 * directory. Also, take care of stacked mounts, and keep
6609 * unmounting them until they are gone. */
6610
6611 do {
6612 _cleanup_fclose_ FILE *proc_self_mountinfo = NULL;
6613
6614 again = false;
6615 r = 0;
6616
6617 proc_self_mountinfo = fopen("/proc/self/mountinfo", "re");
6618 if (!proc_self_mountinfo)
6619 return -errno;
6620
6621 for (;;) {
6622 _cleanup_free_ char *path = NULL, *p = NULL;
6623 int k;
6624
6625 k = fscanf(proc_self_mountinfo,
6626 "%*s " /* (1) mount id */
6627 "%*s " /* (2) parent id */
6628 "%*s " /* (3) major:minor */
6629 "%*s " /* (4) root */
6630 "%ms " /* (5) mount point */
6631 "%*s" /* (6) mount options */
6632 "%*[^-]" /* (7) optional fields */
6633 "- " /* (8) separator */
6634 "%*s " /* (9) file system type */
6635 "%*s" /* (10) mount source */
6636 "%*s" /* (11) mount options 2 */
6637 "%*[^\n]", /* some rubbish at the end */
6638 &path);
6d313367
LP
6639 if (k != 1) {
6640 if (k == EOF)
6641 break;
6642
6643 continue;
6644 }
6645
6646 p = cunescape(path);
6647 if (!p)
6648 return -ENOMEM;
6649
6650 if (!path_startswith(p, prefix))
6651 continue;
6652
6653 if (umount2(p, flags) < 0) {
6654 r = -errno;
6655 continue;
6656 }
6657
6658 again = true;
6659 n++;
6660
6661 break;
6662 }
6663
6664 } while (again);
6665
6666 return r ? r : n;
6667}
d6797c92
LP
6668
6669int bind_remount_recursive(const char *prefix, bool ro) {
6670 _cleanup_set_free_free_ Set *done = NULL;
6671 _cleanup_free_ char *cleaned = NULL;
6672 int r;
6673
6674 /* Recursively remount a directory (and all its submounts)
6675 * read-only or read-write. If the directory is already
6676 * mounted, we reuse the mount and simply mark it
6677 * MS_BIND|MS_RDONLY (or remove the MS_RDONLY for read-write
6678 * operation). If it isn't we first make it one. Afterwards we
6679 * apply MS_BIND|MS_RDONLY (or remove MS_RDONLY) to all
6680 * submounts we can access, too. When mounts are stacked on
6681 * the same mount point we only care for each individual
6682 * "top-level" mount on each point, as we cannot
6683 * influence/access the underlying mounts anyway. We do not
6684 * have any effect on future submounts that might get
6685 * propagated, they migt be writable. This includes future
6686 * submounts that have been triggered via autofs. */
6687
6688 cleaned = strdup(prefix);
6689 if (!cleaned)
6690 return -ENOMEM;
6691
6692 path_kill_slashes(cleaned);
6693
d5099efc 6694 done = set_new(&string_hash_ops);
d6797c92
LP
6695 if (!done)
6696 return -ENOMEM;
6697
6698 for (;;) {
6699 _cleanup_fclose_ FILE *proc_self_mountinfo = NULL;
6700 _cleanup_set_free_free_ Set *todo = NULL;
6701 bool top_autofs = false;
6702 char *x;
6703
d5099efc 6704 todo = set_new(&string_hash_ops);
d6797c92
LP
6705 if (!todo)
6706 return -ENOMEM;
6707
6708 proc_self_mountinfo = fopen("/proc/self/mountinfo", "re");
6709 if (!proc_self_mountinfo)
6710 return -errno;
6711
6712 for (;;) {
6713 _cleanup_free_ char *path = NULL, *p = NULL, *type = NULL;
6714 int k;
6715
6716 k = fscanf(proc_self_mountinfo,
6717 "%*s " /* (1) mount id */
6718 "%*s " /* (2) parent id */
6719 "%*s " /* (3) major:minor */
6720 "%*s " /* (4) root */
6721 "%ms " /* (5) mount point */
6722 "%*s" /* (6) mount options (superblock) */
6723 "%*[^-]" /* (7) optional fields */
6724 "- " /* (8) separator */
6725 "%ms " /* (9) file system type */
6726 "%*s" /* (10) mount source */
6727 "%*s" /* (11) mount options (bind mount) */
6728 "%*[^\n]", /* some rubbish at the end */
6729 &path,
6730 &type);
6731 if (k != 2) {
6732 if (k == EOF)
6733 break;
6734
6735 continue;
6736 }
6737
6738 p = cunescape(path);
6739 if (!p)
6740 return -ENOMEM;
6741
6742 /* Let's ignore autofs mounts. If they aren't
6743 * triggered yet, we want to avoid triggering
6744 * them, as we don't make any guarantees for
6745 * future submounts anyway. If they are
6746 * already triggered, then we will find
6747 * another entry for this. */
6748 if (streq(type, "autofs")) {
6749 top_autofs = top_autofs || path_equal(cleaned, p);
6750 continue;
6751 }
6752
6753 if (path_startswith(p, cleaned) &&
6754 !set_contains(done, p)) {
6755
6756 r = set_consume(todo, p);
6757 p = NULL;
6758
6759 if (r == -EEXIST)
6760 continue;
6761 if (r < 0)
6762 return r;
6763 }
6764 }
6765
6766 /* If we have no submounts to process anymore and if
6767 * the root is either already done, or an autofs, we
6768 * are done */
6769 if (set_isempty(todo) &&
6770 (top_autofs || set_contains(done, cleaned)))
6771 return 0;
6772
6773 if (!set_contains(done, cleaned) &&
6774 !set_contains(todo, cleaned)) {
6775 /* The prefix directory itself is not yet a
6776 * mount, make it one. */
6777 if (mount(cleaned, cleaned, NULL, MS_BIND|MS_REC, NULL) < 0)
6778 return -errno;
6779
6780 if (mount(NULL, prefix, NULL, MS_BIND|MS_REMOUNT|(ro ? MS_RDONLY : 0), NULL) < 0)
6781 return -errno;
6782
6783 x = strdup(cleaned);
6784 if (!x)
6785 return -ENOMEM;
6786
6787 r = set_consume(done, x);
6788 if (r < 0)
6789 return r;
6790 }
6791
6792 while ((x = set_steal_first(todo))) {
6793
6794 r = set_consume(done, x);
6795 if (r == -EEXIST)
6796 continue;
6797 if (r < 0)
6798 return r;
6799
6800 if (mount(NULL, x, NULL, MS_BIND|MS_REMOUNT|(ro ? MS_RDONLY : 0), NULL) < 0) {
6801
6802 /* Deal with mount points that are
6803 * obstructed by a later mount */
6804
6805 if (errno != ENOENT)
6806 return -errno;
6807 }
6808
6809 }
6810 }
6811}
1b992147
LP
6812
6813int fflush_and_check(FILE *f) {
45c196a7 6814 assert(f);
1b992147
LP
6815
6816 errno = 0;
6817 fflush(f);
6818
6819 if (ferror(f))
6820 return errno ? -errno : -EIO;
6821
6822 return 0;
6823}
2e78fa79
LP
6824
6825char *tempfn_xxxxxx(const char *p) {
6826 const char *fn;
6827 char *t;
6828 size_t k;
6829
6830 assert(p);
6831
6832 t = new(char, strlen(p) + 1 + 6 + 1);
6833 if (!t)
6834 return NULL;
6835
6836 fn = basename(p);
6837 k = fn - p;
6838
6839 strcpy(stpcpy(stpcpy(mempcpy(t, p, k), "."), fn), "XXXXXX");
6840
6841 return t;
6842}
6843
6844char *tempfn_random(const char *p) {
6845 const char *fn;
6846 char *t, *x;
6847 uint64_t u;
6848 size_t k;
6849 unsigned i;
6850
6851 assert(p);
6852
6853 t = new(char, strlen(p) + 1 + 16 + 1);
6854 if (!t)
6855 return NULL;
6856
6857 fn = basename(p);
6858 k = fn - p;
6859
6860 x = stpcpy(stpcpy(mempcpy(t, p, k), "."), fn);
6861
6862 u = random_u64();
6863 for (i = 0; i < 16; i++) {
6864 *(x++) = hexchar(u & 0xF);
6865 u >>= 4;
6866 }
6867
6868 *x = 0;
6869
6870 return t;
6871}
fecc80c1
LP
6872
6873/* make sure the hostname is not "localhost" */
6874bool is_localhost(const char *hostname) {
6875 assert(hostname);
6876
a0627f82
LP
6877 /* This tries to identify local host and domain names
6878 * described in RFC6761 plus the redhatism of .localdomain */
fecc80c1
LP
6879
6880 return streq(hostname, "localhost") ||
6881 streq(hostname, "localhost.") ||
a0627f82
LP
6882 streq(hostname, "localdomain.") ||
6883 streq(hostname, "localdomain") ||
fecc80c1
LP
6884 endswith(hostname, ".localhost") ||
6885 endswith(hostname, ".localhost.") ||
6886 endswith(hostname, ".localdomain") ||
6887 endswith(hostname, ".localdomain.");
6888}
45035609
LP
6889
6890int take_password_lock(const char *root) {
6891
6892 struct flock flock = {
6893 .l_type = F_WRLCK,
6894 .l_whence = SEEK_SET,
6895 .l_start = 0,
6896 .l_len = 0,
6897 };
6898
6899 const char *path;
6900 int fd, r;
6901
6902 /* This is roughly the same as lckpwdf(), but not as awful. We
6903 * don't want to use alarm() and signals, hence we implement
6904 * our own trivial version of this.
6905 *
6906 * Note that shadow-utils also takes per-database locks in
6907 * addition to lckpwdf(). However, we don't given that they
6908 * are redundant as they they invoke lckpwdf() first and keep
6909 * it during everything they do. The per-database locks are
6910 * awfully racy, and thus we just won't do them. */
6911
6912 if (root)
6913 path = strappenda(root, "/etc/.pwd.lock");
6914 else
6915 path = "/etc/.pwd.lock";
6916
6917 fd = open(path, O_WRONLY|O_CREAT|O_CLOEXEC|O_NOCTTY|O_NOFOLLOW, 0600);
6918 if (fd < 0)
6919 return -errno;
6920
6921 r = fcntl(fd, F_SETLKW, &flock);
6922 if (r < 0) {
6923 safe_close(fd);
6924 return -errno;
6925 }
6926
6927 return fd;
6928}
5261ba90
TT
6929
6930int is_symlink(const char *path) {
6931 struct stat info;
6932
6933 if (lstat(path, &info) < 0)
6934 return -errno;
6935
be57e297
LP
6936 return !!S_ISLNK(info.st_mode);
6937}
5261ba90 6938
be57e297
LP
6939int is_dir(const char* path, bool follow) {
6940 struct stat st;
6941
6942 if (follow) {
6943 if (stat(path, &st) < 0)
6944 return -errno;
6945 } else {
6946 if (lstat(path, &st) < 0)
6947 return -errno;
6948 }
6949
6950 return !!S_ISDIR(st.st_mode);
a0627f82 6951}
7629889c
LP
6952
6953int unquote_first_word(const char **p, char **ret) {
6954 _cleanup_free_ char *s = NULL;
6955 size_t allocated = 0, sz = 0;
6956
6957 enum {
6958 START,
6959 VALUE,
6960 VALUE_ESCAPE,
6961 SINGLE_QUOTE,
6962 SINGLE_QUOTE_ESCAPE,
6963 DOUBLE_QUOTE,
6964 DOUBLE_QUOTE_ESCAPE,
6965 SPACE,
6966 } state = START;
6967
6968 assert(p);
6969 assert(*p);
6970 assert(ret);
6971
6972 /* Parses the first word of a string, and returns it in
6973 * *ret. Removes all quotes in the process. When parsing fails
6974 * (because of an uneven number of quotes or similar), leaves
6975 * the pointer *p at the first invalid character. */
6976
6977 for (;;) {
6978 char c = **p;
6979
6980 switch (state) {
6981
6982 case START:
6983 if (c == 0)
6984 goto finish;
6985 else if (strchr(WHITESPACE, c))
6986 break;
6987
6988 state = VALUE;
6989 /* fallthrough */
6990
6991 case VALUE:
6992 if (c == 0)
6993 goto finish;
6994 else if (c == '\'')
6995 state = SINGLE_QUOTE;
6996 else if (c == '\\')
6997 state = VALUE_ESCAPE;
6998 else if (c == '\"')
6999 state = DOUBLE_QUOTE;
7000 else if (strchr(WHITESPACE, c))
7001 state = SPACE;
7002 else {
7003 if (!GREEDY_REALLOC(s, allocated, sz+2))
7004 return -ENOMEM;
7005
7006 s[sz++] = c;
7007 }
7008
7009 break;
7010
7011 case VALUE_ESCAPE:
7012 if (c == 0)
7013 return -EINVAL;
7014
7015 if (!GREEDY_REALLOC(s, allocated, sz+2))
7016 return -ENOMEM;
7017
7018 s[sz++] = c;
7019 state = VALUE;
7020
7021 break;
7022
7023 case SINGLE_QUOTE:
7024 if (c == 0)
7025 return -EINVAL;
7026 else if (c == '\'')
7027 state = VALUE;
7028 else if (c == '\\')
7029 state = SINGLE_QUOTE_ESCAPE;
7030 else {
7031 if (!GREEDY_REALLOC(s, allocated, sz+2))
7032 return -ENOMEM;
7033
7034 s[sz++] = c;
7035 }
7036
7037 break;
7038
7039 case SINGLE_QUOTE_ESCAPE:
7040 if (c == 0)
7041 return -EINVAL;
7042
7043 if (!GREEDY_REALLOC(s, allocated, sz+2))
7044 return -ENOMEM;
7045
7046 s[sz++] = c;
7047 state = SINGLE_QUOTE;
7048 break;
7049
7050 case DOUBLE_QUOTE:
7051 if (c == 0)
7052 return -EINVAL;
7053 else if (c == '\"')
7054 state = VALUE;
7055 else if (c == '\\')
7056 state = DOUBLE_QUOTE_ESCAPE;
7057 else {
7058 if (!GREEDY_REALLOC(s, allocated, sz+2))
7059 return -ENOMEM;
7060
7061 s[sz++] = c;
7062 }
7063
7064 break;
7065
7066 case DOUBLE_QUOTE_ESCAPE:
7067 if (c == 0)
7068 return -EINVAL;
7069
7070 if (!GREEDY_REALLOC(s, allocated, sz+2))
7071 return -ENOMEM;
7072
7073 s[sz++] = c;
7074 state = DOUBLE_QUOTE;
7075 break;
7076
7077 case SPACE:
7078 if (c == 0)
7079 goto finish;
7080 if (!strchr(WHITESPACE, c))
7081 goto finish;
7082
7083 break;
7084 }
7085
7086 (*p) ++;
7087 }
7088
7089finish:
7090 if (!s) {
7091 *ret = NULL;
7092 return 0;
7093 }
7094
7095 s[sz] = 0;
7096 *ret = s;
7097 s = NULL;
7098
7099 return 1;
7100}
7101
7102int unquote_many_words(const char **p, ...) {
7103 va_list ap;
7104 char **l;
7105 int n = 0, i, c, r;
7106
7107 /* Parses a number of words from a string, stripping any
7108 * quotes if necessary. */
7109
7110 assert(p);
7111
7112 /* Count how many words are expected */
7113 va_start(ap, p);
7114 for (;;) {
7115 if (!va_arg(ap, char **))
7116 break;
7117 n++;
7118 }
7119 va_end(ap);
7120
7121 if (n <= 0)
7122 return 0;
7123
7124 /* Read all words into a temporary array */
7125 l = newa0(char*, n);
7126 for (c = 0; c < n; c++) {
7127
7128 r = unquote_first_word(p, &l[c]);
7129 if (r < 0) {
7130 int j;
7131
081e009b 7132 for (j = 0; j < c; j++)
7629889c 7133 free(l[j]);
081e009b
LN
7134
7135 return r;
7629889c
LP
7136 }
7137
7138 if (r == 0)
7139 break;
7140 }
7141
7142 /* If we managed to parse all words, return them in the passed
7143 * in parameters */
7144 va_start(ap, p);
7145 for (i = 0; i < n; i++) {
7146 char **v;
7147
7148 v = va_arg(ap, char **);
7149 assert(v);
7150
7151 *v = l[i];
7152 }
7153 va_end(ap);
7154
7155 return c;
7156}
2928b0a8
LP
7157
7158int free_and_strdup(char **p, const char *s) {
7159 char *t;
7160
7161 assert(p);
7162
7163 /* Replaces a string pointer with an strdup()ed new string,
7164 * possibly freeing the old one. */
7165
7166 if (s) {
7167 t = strdup(s);
7168 if (!t)
7169 return -ENOMEM;
7170 } else
7171 t = NULL;
7172
7173 free(*p);
7174 *p = t;
7175
7176 return 0;
7177}