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Merge pull request #12927 from fbuihuu/coredump-cleanup-part-2
[thirdparty/systemd.git] / src / core / unit.c
CommitLineData
53e1b683 1/* SPDX-License-Identifier: LGPL-2.1+ */
a7334b09 2
87f0e418 3#include <errno.h>
0301abf4 4#include <stdlib.h>
4f5dd394 5#include <string.h>
4c253ed1 6#include <sys/prctl.h>
45fb0699 7#include <sys/stat.h>
4f5dd394 8#include <unistd.h>
87f0e418 9
718db961
LP
10#include "sd-id128.h"
11#include "sd-messages.h"
4f5dd394 12
57b7a260 13#include "all-units.h"
d68c645b 14#include "alloc-util.h"
fab34748 15#include "bpf-firewall.h"
4f5dd394
LP
16#include "bus-common-errors.h"
17#include "bus-util.h"
c6c18be3 18#include "cgroup-util.h"
4f5dd394
LP
19#include "dbus-unit.h"
20#include "dbus.h"
21#include "dropin.h"
22#include "escape.h"
23#include "execute.h"
6a48d82f 24#include "fd-util.h"
a5c32cff 25#include "fileio-label.h"
ee228be1 26#include "fileio.h"
f97b34a6 27#include "format-util.h"
d3070fbd 28#include "fs-util.h"
4b58153d 29#include "id128-util.h"
915b1d01 30#include "io-util.h"
4f5dd394
LP
31#include "load-dropin.h"
32#include "load-fragment.h"
33#include "log.h"
34#include "macro.h"
35#include "missing.h"
36#include "mkdir.h"
6bedfcbb 37#include "parse-util.h"
4f5dd394 38#include "path-util.h"
0b452006 39#include "process-util.h"
d68c645b 40#include "serialize.h"
4f5dd394 41#include "set.h"
6eb7c172 42#include "signal-util.h"
d3070fbd 43#include "sparse-endian.h"
e9db43d5 44#include "special.h"
2e59b241 45#include "specifier.h"
8fcde012 46#include "stat-util.h"
d054f0a4 47#include "stdio-util.h"
5afe510c 48#include "string-table.h"
07630cea 49#include "string-util.h"
4f5dd394 50#include "strv.h"
5b262f74 51#include "terminal-util.h"
e4de7287 52#include "tmpfile-util.h"
4f4afc88 53#include "umask-util.h"
4f5dd394 54#include "unit-name.h"
e9db43d5 55#include "unit.h"
b1d4f8e1
LP
56#include "user-util.h"
57#include "virt.h"
87f0e418
LP
58
59const UnitVTable * const unit_vtable[_UNIT_TYPE_MAX] = {
60 [UNIT_SERVICE] = &service_vtable,
87f0e418
LP
61 [UNIT_SOCKET] = &socket_vtable,
62 [UNIT_TARGET] = &target_vtable,
63 [UNIT_DEVICE] = &device_vtable,
64 [UNIT_MOUNT] = &mount_vtable,
65 [UNIT_AUTOMOUNT] = &automount_vtable,
01f78473 66 [UNIT_SWAP] = &swap_vtable,
e821075a 67 [UNIT_TIMER] = &timer_vtable,
a016b922 68 [UNIT_PATH] = &path_vtable,
6c12b52e 69 [UNIT_SLICE] = &slice_vtable,
5afe510c 70 [UNIT_SCOPE] = &scope_vtable,
87f0e418
LP
71};
72
f2341e0a 73static void maybe_warn_about_dependency(Unit *u, const char *other, UnitDependency dependency);
d1fab3fe 74
7d17cfbc 75Unit *unit_new(Manager *m, size_t size) {
87f0e418
LP
76 Unit *u;
77
78 assert(m);
ac155bb8 79 assert(size >= sizeof(Unit));
87f0e418 80
7d17cfbc
MS
81 u = malloc0(size);
82 if (!u)
87f0e418
LP
83 return NULL;
84
d5099efc 85 u->names = set_new(&string_hash_ops);
6b430fdb
ZJS
86 if (!u->names)
87 return mfree(u);
87f0e418 88
ac155bb8
MS
89 u->manager = m;
90 u->type = _UNIT_TYPE_INVALID;
ac155bb8
MS
91 u->default_dependencies = true;
92 u->unit_file_state = _UNIT_FILE_STATE_INVALID;
d2dc52db 93 u->unit_file_preset = -1;
d420282b 94 u->on_failure_job_mode = JOB_REPLACE;
0bb814c2 95 u->cgroup_control_inotify_wd = -1;
afcfaa69 96 u->cgroup_memory_inotify_wd = -1;
36c16a7c 97 u->job_timeout = USEC_INFINITY;
a2df3ea4 98 u->job_running_timeout = USEC_INFINITY;
00d9ef85
LP
99 u->ref_uid = UID_INVALID;
100 u->ref_gid = GID_INVALID;
fe700f46 101 u->cpu_usage_last = NSEC_INFINITY;
17f14955 102 u->cgroup_invalidated_mask |= CGROUP_MASK_BPF_FIREWALL;
7af67e9a 103 u->failure_action_exit_status = u->success_action_exit_status = -1;
87f0e418 104
6a48d82f
DM
105 u->ip_accounting_ingress_map_fd = -1;
106 u->ip_accounting_egress_map_fd = -1;
107 u->ipv4_allow_map_fd = -1;
108 u->ipv6_allow_map_fd = -1;
109 u->ipv4_deny_map_fd = -1;
110 u->ipv6_deny_map_fd = -1;
111
2e59b241
LP
112 u->last_section_private = -1;
113
6bf0f408 114 RATELIMIT_INIT(u->start_limit, m->default_start_limit_interval, m->default_start_limit_burst);
67bfdc97 115 RATELIMIT_INIT(u->auto_stop_ratelimit, 10 * USEC_PER_SEC, 16);
bea355da 116
fbe14fc9
LP
117 for (CGroupIOAccountingMetric i = 0; i < _CGROUP_IO_ACCOUNTING_METRIC_MAX; i++)
118 u->io_accounting_last[i] = UINT64_MAX;
119
87f0e418
LP
120 return u;
121}
122
a581e45a 123int unit_new_for_name(Manager *m, size_t size, const char *name, Unit **ret) {
dc409696 124 _cleanup_(unit_freep) Unit *u = NULL;
a581e45a
LP
125 int r;
126
127 u = unit_new(m, size);
128 if (!u)
129 return -ENOMEM;
130
131 r = unit_add_name(u, name);
dc409696 132 if (r < 0)
a581e45a 133 return r;
a581e45a 134
1cc6c93a
YW
135 *ret = TAKE_PTR(u);
136
a581e45a
LP
137 return r;
138}
139
303ee601 140bool unit_has_name(const Unit *u, const char *name) {
f278026d
LP
141 assert(u);
142 assert(name);
143
390bc2b1 144 return set_contains(u->names, (char*) name);
f278026d
LP
145}
146
598459ce
LP
147static void unit_init(Unit *u) {
148 CGroupContext *cc;
149 ExecContext *ec;
150 KillContext *kc;
151
152 assert(u);
153 assert(u->manager);
154 assert(u->type >= 0);
155
156 cc = unit_get_cgroup_context(u);
157 if (cc) {
158 cgroup_context_init(cc);
159
160 /* Copy in the manager defaults into the cgroup
161 * context, _before_ the rest of the settings have
162 * been initialized */
163
164 cc->cpu_accounting = u->manager->default_cpu_accounting;
13c31542 165 cc->io_accounting = u->manager->default_io_accounting;
598459ce
LP
166 cc->blockio_accounting = u->manager->default_blockio_accounting;
167 cc->memory_accounting = u->manager->default_memory_accounting;
03a7b521 168 cc->tasks_accounting = u->manager->default_tasks_accounting;
6a48d82f 169 cc->ip_accounting = u->manager->default_ip_accounting;
0af20ea2
LP
170
171 if (u->type != UNIT_SLICE)
172 cc->tasks_max = u->manager->default_tasks_max;
598459ce
LP
173 }
174
175 ec = unit_get_exec_context(u);
b1edf445 176 if (ec) {
598459ce
LP
177 exec_context_init(ec);
178
b1edf445 179 ec->keyring_mode = MANAGER_IS_SYSTEM(u->manager) ?
00f5ad93 180 EXEC_KEYRING_SHARED : EXEC_KEYRING_INHERIT;
b1edf445
LP
181 }
182
598459ce
LP
183 kc = unit_get_kill_context(u);
184 if (kc)
185 kill_context_init(kc);
186
187 if (UNIT_VTABLE(u)->init)
188 UNIT_VTABLE(u)->init(u);
189}
190
87f0e418 191int unit_add_name(Unit *u, const char *text) {
598459ce 192 _cleanup_free_ char *s = NULL, *i = NULL;
87f0e418 193 UnitType t;
87f0e418
LP
194 int r;
195
196 assert(u);
197 assert(text);
198
7410616c 199 if (unit_name_is_valid(text, UNIT_NAME_TEMPLATE)) {
598459ce 200
ac155bb8 201 if (!u->instance)
9e2f7c11 202 return -EINVAL;
87f0e418 203
7410616c
LP
204 r = unit_name_replace_instance(text, u->instance, &s);
205 if (r < 0)
206 return r;
207 } else {
9e2f7c11 208 s = strdup(text);
7410616c
LP
209 if (!s)
210 return -ENOMEM;
211 }
87f0e418 212
7410616c
LP
213 if (set_contains(u->names, s))
214 return 0;
215 if (hashmap_contains(u->manager->units, s))
216 return -EEXIST;
217
218 if (!unit_name_is_valid(s, UNIT_NAME_PLAIN|UNIT_NAME_INSTANCE))
598459ce 219 return -EINVAL;
e537352b 220
7410616c
LP
221 t = unit_name_to_type(s);
222 if (t < 0)
223 return -EINVAL;
87f0e418 224
598459ce
LP
225 if (u->type != _UNIT_TYPE_INVALID && t != u->type)
226 return -EINVAL;
87f0e418 227
e48614c4
ZJS
228 r = unit_name_to_instance(s, &i);
229 if (r < 0)
598459ce 230 return r;
87f0e418 231
ce99c68a 232 if (i && !unit_type_may_template(t))
598459ce 233 return -EINVAL;
9e2f7c11 234
276c3e78 235 /* Ensure that this unit is either instanced or not instanced,
7410616c
LP
236 * but not both. Note that we do allow names with different
237 * instance names however! */
598459ce
LP
238 if (u->type != _UNIT_TYPE_INVALID && !u->instance != !i)
239 return -EINVAL;
9e2f7c11 240
8a993b61 241 if (!unit_type_may_alias(t) && !set_isempty(u->names))
598459ce 242 return -EEXIST;
9e2f7c11 243
598459ce
LP
244 if (hashmap_size(u->manager->units) >= MANAGER_MAX_NAMES)
245 return -E2BIG;
4f0f902f 246
e48614c4 247 r = set_put(u->names, s);
7410616c 248 if (r < 0)
598459ce 249 return r;
7410616c 250 assert(r > 0);
87f0e418 251
e48614c4
ZJS
252 r = hashmap_put(u->manager->units, s, u);
253 if (r < 0) {
7410616c 254 (void) set_remove(u->names, s);
598459ce 255 return r;
87f0e418
LP
256 }
257
ac155bb8 258 if (u->type == _UNIT_TYPE_INVALID) {
ac155bb8
MS
259 u->type = t;
260 u->id = s;
1cc6c93a 261 u->instance = TAKE_PTR(i);
9e2f7c11 262
71fda00f 263 LIST_PREPEND(units_by_type, u->manager->units_by_type[t], u);
e537352b 264
598459ce 265 unit_init(u);
598459ce 266 }
9e2f7c11 267
598459ce 268 s = NULL;
9e2f7c11 269
598459ce
LP
270 unit_add_to_dbus_queue(u);
271 return 0;
87f0e418
LP
272}
273
0ae97ec1 274int unit_choose_id(Unit *u, const char *name) {
68eda4bd 275 _cleanup_free_ char *t = NULL;
598459ce 276 char *s, *i;
276c3e78 277 int r;
0ae97ec1
LP
278
279 assert(u);
280 assert(name);
281
7410616c 282 if (unit_name_is_valid(name, UNIT_NAME_TEMPLATE)) {
9e2f7c11 283
ac155bb8 284 if (!u->instance)
9e2f7c11
LP
285 return -EINVAL;
286
7410616c
LP
287 r = unit_name_replace_instance(name, u->instance, &t);
288 if (r < 0)
289 return r;
9e2f7c11
LP
290
291 name = t;
292 }
293
0ae97ec1 294 /* Selects one of the names of this unit as the id */
ac155bb8 295 s = set_get(u->names, (char*) name);
9e2f7c11 296 if (!s)
0ae97ec1
LP
297 return -ENOENT;
298
7410616c 299 /* Determine the new instance from the new id */
e48614c4
ZJS
300 r = unit_name_to_instance(s, &i);
301 if (r < 0)
276c3e78
LP
302 return r;
303
ac155bb8 304 u->id = s;
276c3e78 305
ac155bb8
MS
306 free(u->instance);
307 u->instance = i;
276c3e78 308
c1e1601e 309 unit_add_to_dbus_queue(u);
9e2f7c11 310
0ae97ec1
LP
311 return 0;
312}
313
f50e0a01 314int unit_set_description(Unit *u, const char *description) {
84b26d51 315 int r;
f50e0a01
LP
316
317 assert(u);
318
84b26d51
LP
319 r = free_and_strdup(&u->description, empty_to_null(description));
320 if (r < 0)
321 return r;
322 if (r > 0)
323 unit_add_to_dbus_queue(u);
c1e1601e 324
f50e0a01
LP
325 return 0;
326}
327
f2f725e5 328bool unit_may_gc(Unit *u) {
a354329f 329 UnitActiveState state;
e98b2fbb 330 int r;
5afe510c 331
701cc384
LP
332 assert(u);
333
f2f725e5
ZJS
334 /* Checks whether the unit is ready to be unloaded for garbage collection.
335 * Returns true when the unit may be collected, and false if there's some
2641f02e
ZJS
336 * reason to keep it loaded.
337 *
338 * References from other units are *not* checked here. Instead, this is done
339 * in unit_gc_sweep(), but using markers to properly collect dependency loops.
340 */
5afe510c 341
a354329f 342 if (u->job)
f2f725e5 343 return false;
701cc384 344
a354329f 345 if (u->nop_job)
f2f725e5 346 return false;
6c073082 347
a354329f
LP
348 state = unit_active_state(u);
349
7eb2a8a1 350 /* If the unit is inactive and failed and no job is queued for it, then release its runtime resources */
a354329f
LP
351 if (UNIT_IS_INACTIVE_OR_FAILED(state) &&
352 UNIT_VTABLE(u)->release_resources)
7eb2a8a1 353 UNIT_VTABLE(u)->release_resources(u);
a354329f 354
f5869324 355 if (u->perpetual)
f2f725e5 356 return false;
9d576438 357
05a98afd 358 if (sd_bus_track_count(u->bus_track) > 0)
f2f725e5 359 return false;
05a98afd 360
5afe510c
LP
361 /* But we keep the unit object around for longer when it is referenced or configured to not be gc'ed */
362 switch (u->collect_mode) {
363
364 case COLLECT_INACTIVE:
365 if (state != UNIT_INACTIVE)
f2f725e5 366 return false;
5afe510c
LP
367
368 break;
369
370 case COLLECT_INACTIVE_OR_FAILED:
371 if (!IN_SET(state, UNIT_INACTIVE, UNIT_FAILED))
f2f725e5 372 return false;
5afe510c
LP
373
374 break;
375
376 default:
377 assert_not_reached("Unknown garbage collection mode");
378 }
379
e98b2fbb
LP
380 if (u->cgroup_path) {
381 /* If the unit has a cgroup, then check whether there's anything in it. If so, we should stay
382 * around. Units with active processes should never be collected. */
383
384 r = cg_is_empty_recursive(SYSTEMD_CGROUP_CONTROLLER, u->cgroup_path);
385 if (r < 0)
386 log_unit_debug_errno(u, r, "Failed to determine whether cgroup %s is empty: %m", u->cgroup_path);
387 if (r <= 0)
f2f725e5 388 return false;
e98b2fbb
LP
389 }
390
f2f725e5
ZJS
391 if (UNIT_VTABLE(u)->may_gc && !UNIT_VTABLE(u)->may_gc(u))
392 return false;
701cc384 393
f2f725e5 394 return true;
701cc384
LP
395}
396
87f0e418
LP
397void unit_add_to_load_queue(Unit *u) {
398 assert(u);
ac155bb8 399 assert(u->type != _UNIT_TYPE_INVALID);
87f0e418 400
ac155bb8 401 if (u->load_state != UNIT_STUB || u->in_load_queue)
87f0e418
LP
402 return;
403
71fda00f 404 LIST_PREPEND(load_queue, u->manager->load_queue, u);
ac155bb8 405 u->in_load_queue = true;
87f0e418
LP
406}
407
23a177ef
LP
408void unit_add_to_cleanup_queue(Unit *u) {
409 assert(u);
410
ac155bb8 411 if (u->in_cleanup_queue)
23a177ef
LP
412 return;
413
71fda00f 414 LIST_PREPEND(cleanup_queue, u->manager->cleanup_queue, u);
ac155bb8 415 u->in_cleanup_queue = true;
23a177ef
LP
416}
417
701cc384
LP
418void unit_add_to_gc_queue(Unit *u) {
419 assert(u);
420
ac155bb8 421 if (u->in_gc_queue || u->in_cleanup_queue)
701cc384
LP
422 return;
423
f2f725e5 424 if (!unit_may_gc(u))
701cc384
LP
425 return;
426
c5a97ed1 427 LIST_PREPEND(gc_queue, u->manager->gc_unit_queue, u);
ac155bb8 428 u->in_gc_queue = true;
701cc384
LP
429}
430
c1e1601e
LP
431void unit_add_to_dbus_queue(Unit *u) {
432 assert(u);
ac155bb8 433 assert(u->type != _UNIT_TYPE_INVALID);
c1e1601e 434
ac155bb8 435 if (u->load_state == UNIT_STUB || u->in_dbus_queue)
c1e1601e
LP
436 return;
437
a567261a 438 /* Shortcut things if nobody cares */
8f8f05a9 439 if (sd_bus_track_count(u->manager->subscribed) <= 0 &&
ae572acd 440 sd_bus_track_count(u->bus_track) <= 0 &&
8f8f05a9 441 set_isempty(u->manager->private_buses)) {
ac155bb8 442 u->sent_dbus_new_signal = true;
94b6dfa2
LP
443 return;
444 }
445
71fda00f 446 LIST_PREPEND(dbus_queue, u->manager->dbus_unit_queue, u);
ac155bb8 447 u->in_dbus_queue = true;
c1e1601e
LP
448}
449
fda09318 450void unit_submit_to_stop_when_unneeded_queue(Unit *u) {
a3c1168a
LP
451 assert(u);
452
453 if (u->in_stop_when_unneeded_queue)
454 return;
455
456 if (!u->stop_when_unneeded)
457 return;
458
459 if (!UNIT_IS_ACTIVE_OR_RELOADING(unit_active_state(u)))
460 return;
461
462 LIST_PREPEND(stop_when_unneeded_queue, u->manager->stop_when_unneeded_queue, u);
463 u->in_stop_when_unneeded_queue = true;
464}
465
eef85c4a 466static void bidi_set_free(Unit *u, Hashmap *h) {
87f0e418 467 Unit *other;
eef85c4a
LP
468 Iterator i;
469 void *v;
87f0e418
LP
470
471 assert(u);
472
eef85c4a 473 /* Frees the hashmap and makes sure we are dropped from the inverse pointers */
87f0e418 474
eef85c4a 475 HASHMAP_FOREACH_KEY(v, other, h, i) {
87f0e418
LP
476 UnitDependency d;
477
478 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
eef85c4a 479 hashmap_remove(other->dependencies[d], u);
701cc384
LP
480
481 unit_add_to_gc_queue(other);
87f0e418
LP
482 }
483
eef85c4a 484 hashmap_free(h);
87f0e418
LP
485}
486
c2756a68
LP
487static void unit_remove_transient(Unit *u) {
488 char **i;
489
490 assert(u);
491
492 if (!u->transient)
493 return;
494
495 if (u->fragment_path)
3f5e8115 496 (void) unlink(u->fragment_path);
c2756a68
LP
497
498 STRV_FOREACH(i, u->dropin_paths) {
39591351 499 _cleanup_free_ char *p = NULL, *pp = NULL;
c2756a68 500
39591351
LP
501 p = dirname_malloc(*i); /* Get the drop-in directory from the drop-in file */
502 if (!p)
503 continue;
504
505 pp = dirname_malloc(p); /* Get the config directory from the drop-in directory */
506 if (!pp)
507 continue;
508
509 /* Only drop transient drop-ins */
510 if (!path_equal(u->manager->lookup_paths.transient, pp))
511 continue;
c2756a68 512
39591351
LP
513 (void) unlink(*i);
514 (void) rmdir(p);
c2756a68
LP
515 }
516}
517
a57f7e2c 518static void unit_free_requires_mounts_for(Unit *u) {
eef85c4a 519 assert(u);
a57f7e2c 520
eef85c4a
LP
521 for (;;) {
522 _cleanup_free_ char *path;
a57f7e2c 523
eef85c4a
LP
524 path = hashmap_steal_first_key(u->requires_mounts_for);
525 if (!path)
526 break;
527 else {
528 char s[strlen(path) + 1];
a57f7e2c 529
eef85c4a
LP
530 PATH_FOREACH_PREFIX_MORE(s, path) {
531 char *y;
532 Set *x;
533
534 x = hashmap_get2(u->manager->units_requiring_mounts_for, s, (void**) &y);
535 if (!x)
536 continue;
a57f7e2c 537
eef85c4a 538 (void) set_remove(x, u);
a57f7e2c 539
eef85c4a
LP
540 if (set_isempty(x)) {
541 (void) hashmap_remove(u->manager->units_requiring_mounts_for, y);
542 free(y);
543 set_free(x);
544 }
a57f7e2c
LP
545 }
546 }
547 }
548
eef85c4a 549 u->requires_mounts_for = hashmap_free(u->requires_mounts_for);
a57f7e2c
LP
550}
551
598459ce
LP
552static void unit_done(Unit *u) {
553 ExecContext *ec;
554 CGroupContext *cc;
555
556 assert(u);
557
558 if (u->type < 0)
559 return;
560
561 if (UNIT_VTABLE(u)->done)
562 UNIT_VTABLE(u)->done(u);
563
564 ec = unit_get_exec_context(u);
565 if (ec)
566 exec_context_done(ec);
567
568 cc = unit_get_cgroup_context(u);
569 if (cc)
570 cgroup_context_done(cc);
571}
572
87f0e418
LP
573void unit_free(Unit *u) {
574 UnitDependency d;
575 Iterator i;
576 char *t;
577
c9d5c9c0
LP
578 if (!u)
579 return;
87f0e418 580
b8b6f321
LP
581 if (UNIT_ISSET(u->slice)) {
582 /* A unit is being dropped from the tree, make sure our parent slice recalculates the member mask */
583 unit_invalidate_cgroup_members_masks(UNIT_DEREF(u->slice));
584
585 /* And make sure the parent is realized again, updating cgroup memberships */
586 unit_add_to_cgroup_realize_queue(UNIT_DEREF(u->slice));
587 }
588
50fb00b7 589 u->transient_file = safe_fclose(u->transient_file);
4f4afc88 590
2c289ea8 591 if (!MANAGER_IS_RELOADING(u->manager))
c2756a68
LP
592 unit_remove_transient(u);
593
c1e1601e
LP
594 bus_unit_send_removed_signal(u);
595
598459ce 596 unit_done(u);
a013b84b 597
50be4f4a 598 unit_dequeue_rewatch_pids(u);
cf9fd508 599
50be4f4a 600 sd_bus_slot_unref(u->match_bus_slot);
05a98afd
LP
601 sd_bus_track_unref(u->bus_track);
602 u->deserialized_refs = strv_free(u->deserialized_refs);
603
a57f7e2c
LP
604 unit_free_requires_mounts_for(u);
605
ac155bb8
MS
606 SET_FOREACH(t, u->names, i)
607 hashmap_remove_value(u->manager->units, t, u);
87f0e418 608
4b58153d
LP
609 if (!sd_id128_is_null(u->invocation_id))
610 hashmap_remove_value(u->manager->units_by_invocation_id, &u->invocation_id, u);
611
97e7d748
MS
612 if (u->job) {
613 Job *j = u->job;
614 job_uninstall(j);
615 job_free(j);
616 }
964e0949 617
e0209d83
MS
618 if (u->nop_job) {
619 Job *j = u->nop_job;
620 job_uninstall(j);
621 job_free(j);
622 }
623
964e0949 624 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
ac155bb8 625 bidi_set_free(u, u->dependencies[d]);
964e0949 626
adefcf28
LP
627 if (u->on_console)
628 manager_unref_console(u->manager);
629
efdb0237 630 unit_release_cgroup(u);
72673e86 631
d3070fbd
LP
632 if (!MANAGER_IS_RELOADING(u->manager))
633 unit_unlink_state_files(u);
634
00d9ef85
LP
635 unit_unref_uid_gid(u, false);
636
5269eb6b 637 (void) manager_update_failed_units(u->manager, u, false);
db785129 638 set_remove(u->manager->startup_units, u);
f755e3b7 639
a911bb9a
LP
640 unit_unwatch_all_pids(u);
641
702a2d8f 642 unit_ref_unset(&u->slice);
7f7d01ed
ZJS
643 while (u->refs_by_target)
644 unit_ref_unset(u->refs_by_target);
57020a3a 645
ac155bb8 646 if (u->type != _UNIT_TYPE_INVALID)
71fda00f 647 LIST_REMOVE(units_by_type, u->manager->units_by_type[u->type], u);
ef734fd6 648
ac155bb8 649 if (u->in_load_queue)
71fda00f 650 LIST_REMOVE(load_queue, u->manager->load_queue, u);
87f0e418 651
ac155bb8 652 if (u->in_dbus_queue)
71fda00f 653 LIST_REMOVE(dbus_queue, u->manager->dbus_unit_queue, u);
c1e1601e 654
a2d72e26 655 if (u->in_gc_queue)
c5a97ed1 656 LIST_REMOVE(gc_queue, u->manager->gc_unit_queue, u);
701cc384 657
91a6073e
LP
658 if (u->in_cgroup_realize_queue)
659 LIST_REMOVE(cgroup_realize_queue, u->manager->cgroup_realize_queue, u);
87f0e418 660
09e24654
LP
661 if (u->in_cgroup_empty_queue)
662 LIST_REMOVE(cgroup_empty_queue, u->manager->cgroup_empty_queue, u);
663
1bdf2790
ZJS
664 if (u->in_cleanup_queue)
665 LIST_REMOVE(cleanup_queue, u->manager->cleanup_queue, u);
adefcf28 666
19496554
MS
667 if (u->in_target_deps_queue)
668 LIST_REMOVE(target_deps_queue, u->manager->target_deps_queue, u);
669
a3c1168a
LP
670 if (u->in_stop_when_unneeded_queue)
671 LIST_REMOVE(stop_when_unneeded_queue, u->manager->stop_when_unneeded_queue, u);
672
6a48d82f
DM
673 safe_close(u->ip_accounting_ingress_map_fd);
674 safe_close(u->ip_accounting_egress_map_fd);
72673e86 675
6a48d82f
DM
676 safe_close(u->ipv4_allow_map_fd);
677 safe_close(u->ipv6_allow_map_fd);
678 safe_close(u->ipv4_deny_map_fd);
679 safe_close(u->ipv6_deny_map_fd);
d3070fbd 680
6a48d82f 681 bpf_program_unref(u->ip_bpf_ingress);
aa2b6f1d 682 bpf_program_unref(u->ip_bpf_ingress_installed);
6a48d82f 683 bpf_program_unref(u->ip_bpf_egress);
aa2b6f1d 684 bpf_program_unref(u->ip_bpf_egress_installed);
00d9ef85 685
fab34748
KL
686 set_free(u->ip_bpf_custom_ingress);
687 set_free(u->ip_bpf_custom_egress);
688 set_free(u->ip_bpf_custom_ingress_installed);
689 set_free(u->ip_bpf_custom_egress_installed);
690
084c7007
RG
691 bpf_program_unref(u->bpf_device_control_installed);
692
a946fa9b
ZJS
693 condition_free_list(u->conditions);
694 condition_free_list(u->asserts);
f755e3b7 695
ac155bb8 696 free(u->description);
49dbfa7b 697 strv_free(u->documentation);
ac155bb8 698 free(u->fragment_path);
1b64d026 699 free(u->source_path);
ae7a7182 700 strv_free(u->dropin_paths);
ac155bb8 701 free(u->instance);
87f0e418 702
f189ab18
LP
703 free(u->job_timeout_reboot_arg);
704
ac155bb8 705 set_free_free(u->names);
87f0e418 706
6bf0f408
LP
707 free(u->reboot_arg);
708
87f0e418
LP
709 free(u);
710}
711
712UnitActiveState unit_active_state(Unit *u) {
713 assert(u);
714
ac155bb8 715 if (u->load_state == UNIT_MERGED)
6124958c
LP
716 return unit_active_state(unit_follow_merge(u));
717
718 /* After a reload it might happen that a unit is not correctly
719 * loaded but still has a process around. That's why we won't
fdf20a31 720 * shortcut failed loading to UNIT_INACTIVE_FAILED. */
87f0e418
LP
721
722 return UNIT_VTABLE(u)->active_state(u);
723}
724
10a94420
LP
725const char* unit_sub_state_to_string(Unit *u) {
726 assert(u);
727
728 return UNIT_VTABLE(u)->sub_state_to_string(u);
729}
730
eef85c4a
LP
731static int set_complete_move(Set **s, Set **other) {
732 assert(s);
733 assert(other);
734
735 if (!other)
736 return 0;
737
738 if (*s)
739 return set_move(*s, *other);
ae2a15bc
LP
740 else
741 *s = TAKE_PTR(*other);
7c0b05e5 742
eef85c4a
LP
743 return 0;
744}
745
746static int hashmap_complete_move(Hashmap **s, Hashmap **other) {
23a177ef
LP
747 assert(s);
748 assert(other);
87f0e418 749
23a177ef 750 if (!*other)
7c0b05e5 751 return 0;
87f0e418 752
eef85c4a
LP
753 if (*s)
754 return hashmap_move(*s, *other);
ae2a15bc
LP
755 else
756 *s = TAKE_PTR(*other);
7c0b05e5
MS
757
758 return 0;
23a177ef 759}
87f0e418 760
7c0b05e5 761static int merge_names(Unit *u, Unit *other) {
23a177ef
LP
762 char *t;
763 Iterator i;
7c0b05e5 764 int r;
87f0e418 765
23a177ef
LP
766 assert(u);
767 assert(other);
768
eef85c4a 769 r = set_complete_move(&u->names, &other->names);
7c0b05e5
MS
770 if (r < 0)
771 return r;
23a177ef 772
ac155bb8
MS
773 set_free_free(other->names);
774 other->names = NULL;
775 other->id = NULL;
23a177ef 776
ac155bb8
MS
777 SET_FOREACH(t, u->names, i)
778 assert_se(hashmap_replace(u->manager->units, t, u) == 0);
7c0b05e5
MS
779
780 return 0;
87f0e418
LP
781}
782
09a65f92
MS
783static int reserve_dependencies(Unit *u, Unit *other, UnitDependency d) {
784 unsigned n_reserve;
785
786 assert(u);
787 assert(other);
788 assert(d < _UNIT_DEPENDENCY_MAX);
789
790 /*
791 * If u does not have this dependency set allocated, there is no need
f131770b 792 * to reserve anything. In that case other's set will be transferred
09a65f92
MS
793 * as a whole to u by complete_move().
794 */
795 if (!u->dependencies[d])
796 return 0;
797
798 /* merge_dependencies() will skip a u-on-u dependency */
eef85c4a 799 n_reserve = hashmap_size(other->dependencies[d]) - !!hashmap_get(other->dependencies[d], u);
09a65f92 800
eef85c4a 801 return hashmap_reserve(u->dependencies[d], n_reserve);
09a65f92
MS
802}
803
d1fab3fe 804static void merge_dependencies(Unit *u, Unit *other, const char *other_id, UnitDependency d) {
23a177ef
LP
805 Iterator i;
806 Unit *back;
eef85c4a 807 void *v;
87f0e418 808 int r;
23a177ef 809
eef85c4a
LP
810 /* Merges all dependencies of type 'd' of the unit 'other' into the deps of the unit 'u' */
811
23a177ef
LP
812 assert(u);
813 assert(other);
814 assert(d < _UNIT_DEPENDENCY_MAX);
815
5238e957 816 /* Fix backwards pointers. Let's iterate through all dependent units of the other unit. */
eef85c4a 817 HASHMAP_FOREACH_KEY(v, back, other->dependencies[d], i) {
23a177ef
LP
818 UnitDependency k;
819
eef85c4a
LP
820 /* Let's now iterate through the dependencies of that dependencies of the other units, looking for
821 * pointers back, and let's fix them up, to instead point to 'u'. */
822
e48614c4 823 for (k = 0; k < _UNIT_DEPENDENCY_MAX; k++) {
e66047ff 824 if (back == u) {
eef85c4a
LP
825 /* Do not add dependencies between u and itself. */
826 if (hashmap_remove(back->dependencies[k], other))
f2341e0a 827 maybe_warn_about_dependency(u, other_id, k);
e66047ff 828 } else {
eef85c4a
LP
829 UnitDependencyInfo di_u, di_other, di_merged;
830
831 /* Let's drop this dependency between "back" and "other", and let's create it between
832 * "back" and "u" instead. Let's merge the bit masks of the dependency we are moving,
833 * and any such dependency which might already exist */
834
835 di_other.data = hashmap_get(back->dependencies[k], other);
836 if (!di_other.data)
837 continue; /* dependency isn't set, let's try the next one */
838
839 di_u.data = hashmap_get(back->dependencies[k], u);
840
841 di_merged = (UnitDependencyInfo) {
842 .origin_mask = di_u.origin_mask | di_other.origin_mask,
843 .destination_mask = di_u.destination_mask | di_other.destination_mask,
844 };
845
846 r = hashmap_remove_and_replace(back->dependencies[k], other, u, di_merged.data);
847 if (r < 0)
848 log_warning_errno(r, "Failed to remove/replace: back=%s other=%s u=%s: %m", back->id, other_id, u->id);
849 assert(r >= 0);
850
851 /* assert_se(hashmap_remove_and_replace(back->dependencies[k], other, u, di_merged.data) >= 0); */
e66047ff 852 }
e48614c4 853 }
eef85c4a 854
23a177ef
LP
855 }
856
e66047ff 857 /* Also do not move dependencies on u to itself */
eef85c4a 858 back = hashmap_remove(other->dependencies[d], u);
d1fab3fe 859 if (back)
f2341e0a 860 maybe_warn_about_dependency(u, other_id, d);
e66047ff 861
7c0b05e5 862 /* The move cannot fail. The caller must have performed a reservation. */
eef85c4a 863 assert_se(hashmap_complete_move(&u->dependencies[d], &other->dependencies[d]) == 0);
23a177ef 864
eef85c4a 865 other->dependencies[d] = hashmap_free(other->dependencies[d]);
23a177ef
LP
866}
867
868int unit_merge(Unit *u, Unit *other) {
87f0e418 869 UnitDependency d;
d1fab3fe 870 const char *other_id = NULL;
09a65f92 871 int r;
87f0e418
LP
872
873 assert(u);
874 assert(other);
ac155bb8
MS
875 assert(u->manager == other->manager);
876 assert(u->type != _UNIT_TYPE_INVALID);
87f0e418 877
cc916967
LP
878 other = unit_follow_merge(other);
879
23a177ef
LP
880 if (other == u)
881 return 0;
882
ac155bb8 883 if (u->type != other->type)
9e2f7c11
LP
884 return -EINVAL;
885
ac155bb8 886 if (!u->instance != !other->instance)
87f0e418
LP
887 return -EINVAL;
888
8a993b61 889 if (!unit_type_may_alias(u->type)) /* Merging only applies to unit names that support aliases */
934e749e
LP
890 return -EEXIST;
891
ec2ce0c5 892 if (!IN_SET(other->load_state, UNIT_STUB, UNIT_NOT_FOUND))
23a177ef 893 return -EEXIST;
87f0e418 894
ac155bb8 895 if (other->job)
819e213f
LP
896 return -EEXIST;
897
e0209d83
MS
898 if (other->nop_job)
899 return -EEXIST;
900
fdf20a31 901 if (!UNIT_IS_INACTIVE_OR_FAILED(unit_active_state(other)))
819e213f
LP
902 return -EEXIST;
903
d1fab3fe
ZJS
904 if (other->id)
905 other_id = strdupa(other->id);
906
09a65f92
MS
907 /* Make reservations to ensure merge_dependencies() won't fail */
908 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++) {
909 r = reserve_dependencies(u, other, d);
910 /*
911 * We don't rollback reservations if we fail. We don't have
912 * a way to undo reservations. A reservation is not a leak.
913 */
914 if (r < 0)
915 return r;
916 }
917
87f0e418 918 /* Merge names */
7c0b05e5
MS
919 r = merge_names(u, other);
920 if (r < 0)
921 return r;
87f0e418 922
57020a3a 923 /* Redirect all references */
7f7d01ed
ZJS
924 while (other->refs_by_target)
925 unit_ref_set(other->refs_by_target, other->refs_by_target->source, u);
57020a3a 926
87f0e418
LP
927 /* Merge dependencies */
928 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
d1fab3fe 929 merge_dependencies(u, other, other_id, d);
87f0e418 930
ac155bb8
MS
931 other->load_state = UNIT_MERGED;
932 other->merged_into = u;
23a177ef 933
3616a49c
LP
934 /* If there is still some data attached to the other node, we
935 * don't need it anymore, and can free it. */
ac155bb8 936 if (other->load_state != UNIT_STUB)
3616a49c
LP
937 if (UNIT_VTABLE(other)->done)
938 UNIT_VTABLE(other)->done(other);
939
940 unit_add_to_dbus_queue(u);
23a177ef
LP
941 unit_add_to_cleanup_queue(other);
942
943 return 0;
944}
945
946int unit_merge_by_name(Unit *u, const char *name) {
934e749e 947 _cleanup_free_ char *s = NULL;
23a177ef 948 Unit *other;
9e2f7c11 949 int r;
23a177ef
LP
950
951 assert(u);
952 assert(name);
953
7410616c 954 if (unit_name_is_valid(name, UNIT_NAME_TEMPLATE)) {
ac155bb8 955 if (!u->instance)
9e2f7c11
LP
956 return -EINVAL;
957
7410616c
LP
958 r = unit_name_replace_instance(name, u->instance, &s);
959 if (r < 0)
960 return r;
9e2f7c11
LP
961
962 name = s;
963 }
964
c2756a68 965 other = manager_get_unit(u->manager, name);
7410616c
LP
966 if (other)
967 return unit_merge(u, other);
23a177ef 968
7410616c 969 return unit_add_name(u, name);
23a177ef
LP
970}
971
972Unit* unit_follow_merge(Unit *u) {
973 assert(u);
974
ac155bb8
MS
975 while (u->load_state == UNIT_MERGED)
976 assert_se(u = u->merged_into);
23a177ef
LP
977
978 return u;
979}
980
981int unit_add_exec_dependencies(Unit *u, ExecContext *c) {
ada5e276
YW
982 ExecDirectoryType dt;
983 char **dp;
23a177ef
LP
984 int r;
985
986 assert(u);
987 assert(c);
988
e1e74614 989 if (c->working_directory && !c->working_directory_missing_ok) {
eef85c4a 990 r = unit_require_mounts_for(u, c->working_directory, UNIT_DEPENDENCY_FILE);
36be24c8
ZJS
991 if (r < 0)
992 return r;
993 }
994
995 if (c->root_directory) {
eef85c4a 996 r = unit_require_mounts_for(u, c->root_directory, UNIT_DEPENDENCY_FILE);
36be24c8
ZJS
997 if (r < 0)
998 return r;
999 }
1000
915e6d16 1001 if (c->root_image) {
eef85c4a 1002 r = unit_require_mounts_for(u, c->root_image, UNIT_DEPENDENCY_FILE);
915e6d16
LP
1003 if (r < 0)
1004 return r;
1005 }
1006
72fd1768 1007 for (dt = 0; dt < _EXEC_DIRECTORY_TYPE_MAX; dt++) {
ada5e276
YW
1008 if (!u->manager->prefix[dt])
1009 continue;
1010
1011 STRV_FOREACH(dp, c->directories[dt].paths) {
1012 _cleanup_free_ char *p;
1013
657ee2d8 1014 p = path_join(u->manager->prefix[dt], *dp);
ada5e276
YW
1015 if (!p)
1016 return -ENOMEM;
1017
eef85c4a 1018 r = unit_require_mounts_for(u, p, UNIT_DEPENDENCY_FILE);
ada5e276
YW
1019 if (r < 0)
1020 return r;
1021 }
1022 }
1023
463d0d15 1024 if (!MANAGER_IS_SYSTEM(u->manager))
b46a529c
LP
1025 return 0;
1026
1027 if (c->private_tmp) {
d71f0505
LP
1028 const char *p;
1029
1030 FOREACH_STRING(p, "/tmp", "/var/tmp") {
eef85c4a 1031 r = unit_require_mounts_for(u, p, UNIT_DEPENDENCY_FILE);
d71f0505
LP
1032 if (r < 0)
1033 return r;
1034 }
b46a529c 1035
35d8c19a 1036 r = unit_add_dependency_by_name(u, UNIT_AFTER, SPECIAL_TMPFILES_SETUP_SERVICE, true, UNIT_DEPENDENCY_FILE);
b46a529c
LP
1037 if (r < 0)
1038 return r;
1039 }
1040
52c239d7
LB
1041 if (!IN_SET(c->std_output,
1042 EXEC_OUTPUT_JOURNAL, EXEC_OUTPUT_JOURNAL_AND_CONSOLE,
1043 EXEC_OUTPUT_KMSG, EXEC_OUTPUT_KMSG_AND_CONSOLE,
1044 EXEC_OUTPUT_SYSLOG, EXEC_OUTPUT_SYSLOG_AND_CONSOLE) &&
1045 !IN_SET(c->std_error,
1046 EXEC_OUTPUT_JOURNAL, EXEC_OUTPUT_JOURNAL_AND_CONSOLE,
1047 EXEC_OUTPUT_KMSG, EXEC_OUTPUT_KMSG_AND_CONSOLE,
1048 EXEC_OUTPUT_SYSLOG, EXEC_OUTPUT_SYSLOG_AND_CONSOLE))
23a177ef
LP
1049 return 0;
1050
1051 /* If syslog or kernel logging is requested, make sure our own
1052 * logging daemon is run first. */
1053
35d8c19a 1054 r = unit_add_dependency_by_name(u, UNIT_AFTER, SPECIAL_JOURNALD_SOCKET, true, UNIT_DEPENDENCY_FILE);
b46a529c
LP
1055 if (r < 0)
1056 return r;
23a177ef 1057
87f0e418
LP
1058 return 0;
1059}
1060
87f0e418
LP
1061const char *unit_description(Unit *u) {
1062 assert(u);
1063
ac155bb8
MS
1064 if (u->description)
1065 return u->description;
87f0e418 1066
ac155bb8 1067 return strna(u->id);
87f0e418
LP
1068}
1069
2a8f53c6
ZJS
1070const char *unit_status_string(Unit *u) {
1071 assert(u);
1072
1073 if (u->manager->status_unit_format == STATUS_UNIT_FORMAT_NAME && u->id)
1074 return u->id;
1075
1076 return unit_description(u);
1077}
1078
eef85c4a
LP
1079static void print_unit_dependency_mask(FILE *f, const char *kind, UnitDependencyMask mask, bool *space) {
1080 const struct {
1081 UnitDependencyMask mask;
1082 const char *name;
1083 } table[] = {
1084 { UNIT_DEPENDENCY_FILE, "file" },
1085 { UNIT_DEPENDENCY_IMPLICIT, "implicit" },
1086 { UNIT_DEPENDENCY_DEFAULT, "default" },
1087 { UNIT_DEPENDENCY_UDEV, "udev" },
1088 { UNIT_DEPENDENCY_PATH, "path" },
1089 { UNIT_DEPENDENCY_MOUNTINFO_IMPLICIT, "mountinfo-implicit" },
1090 { UNIT_DEPENDENCY_MOUNTINFO_DEFAULT, "mountinfo-default" },
1091 { UNIT_DEPENDENCY_PROC_SWAP, "proc-swap" },
1092 };
1093 size_t i;
1094
1095 assert(f);
1096 assert(kind);
1097 assert(space);
1098
1099 for (i = 0; i < ELEMENTSOF(table); i++) {
1100
1101 if (mask == 0)
1102 break;
1103
d94a24ca 1104 if (FLAGS_SET(mask, table[i].mask)) {
eef85c4a
LP
1105 if (*space)
1106 fputc(' ', f);
1107 else
1108 *space = true;
1109
1110 fputs(kind, f);
1111 fputs("-", f);
1112 fputs(table[i].name, f);
1113
1114 mask &= ~table[i].mask;
1115 }
1116 }
1117
1118 assert(mask == 0);
1119}
1120
87f0e418 1121void unit_dump(Unit *u, FILE *f, const char *prefix) {
49dbfa7b 1122 char *t, **j;
87f0e418
LP
1123 UnitDependency d;
1124 Iterator i;
47be870b 1125 const char *prefix2;
173e3821 1126 char
a483fb59 1127 timestamp0[FORMAT_TIMESTAMP_MAX],
173e3821
LP
1128 timestamp1[FORMAT_TIMESTAMP_MAX],
1129 timestamp2[FORMAT_TIMESTAMP_MAX],
1130 timestamp3[FORMAT_TIMESTAMP_MAX],
faf919f1
LP
1131 timestamp4[FORMAT_TIMESTAMP_MAX],
1132 timespan[FORMAT_TIMESPAN_MAX];
a7f241db 1133 Unit *following;
eeaedb7c 1134 _cleanup_set_free_ Set *following_set = NULL;
05a98afd 1135 const char *n;
02638280
LP
1136 CGroupMask m;
1137 int r;
87f0e418
LP
1138
1139 assert(u);
ac155bb8 1140 assert(u->type >= 0);
87f0e418 1141
4c940960 1142 prefix = strempty(prefix);
63c372cb 1143 prefix2 = strjoina(prefix, "\t");
87f0e418
LP
1144
1145 fprintf(f,
0121d1f2
ZJS
1146 "%s-> Unit %s:\n",
1147 prefix, u->id);
1148
1149 SET_FOREACH(t, u->names, i)
1150 if (!streq(t, u->id))
1151 fprintf(f, "%s\tAlias: %s\n", prefix, t);
1152
1153 fprintf(f,
87f0e418 1154 "%s\tDescription: %s\n"
9e2f7c11 1155 "%s\tInstance: %s\n"
87f0e418 1156 "%s\tUnit Load State: %s\n"
2fad8195 1157 "%s\tUnit Active State: %s\n"
b895d155 1158 "%s\tState Change Timestamp: %s\n"
173e3821 1159 "%s\tInactive Exit Timestamp: %s\n"
2fad8195 1160 "%s\tActive Enter Timestamp: %s\n"
701cc384 1161 "%s\tActive Exit Timestamp: %s\n"
173e3821 1162 "%s\tInactive Enter Timestamp: %s\n"
f2f725e5 1163 "%s\tMay GC: %s\n"
9444b1f2 1164 "%s\tNeed Daemon Reload: %s\n"
c2756a68 1165 "%s\tTransient: %s\n"
f5869324 1166 "%s\tPerpetual: %s\n"
5afe510c 1167 "%s\tGarbage Collection Mode: %s\n"
4ad49000
LP
1168 "%s\tSlice: %s\n"
1169 "%s\tCGroup: %s\n"
aae7e17f 1170 "%s\tCGroup realized: %s\n",
87f0e418 1171 prefix, unit_description(u),
ac155bb8
MS
1172 prefix, strna(u->instance),
1173 prefix, unit_load_state_to_string(u->load_state),
2fad8195 1174 prefix, unit_active_state_to_string(unit_active_state(u)),
a483fb59 1175 prefix, strna(format_timestamp(timestamp0, sizeof(timestamp0), u->state_change_timestamp.realtime)),
ac155bb8
MS
1176 prefix, strna(format_timestamp(timestamp1, sizeof(timestamp1), u->inactive_exit_timestamp.realtime)),
1177 prefix, strna(format_timestamp(timestamp2, sizeof(timestamp2), u->active_enter_timestamp.realtime)),
1178 prefix, strna(format_timestamp(timestamp3, sizeof(timestamp3), u->active_exit_timestamp.realtime)),
1179 prefix, strna(format_timestamp(timestamp4, sizeof(timestamp4), u->inactive_enter_timestamp.realtime)),
f2f725e5 1180 prefix, yes_no(unit_may_gc(u)),
9444b1f2 1181 prefix, yes_no(unit_need_daemon_reload(u)),
c2756a68 1182 prefix, yes_no(u->transient),
f5869324 1183 prefix, yes_no(u->perpetual),
5afe510c 1184 prefix, collect_mode_to_string(u->collect_mode),
4ad49000
LP
1185 prefix, strna(unit_slice_name(u)),
1186 prefix, strna(u->cgroup_path),
aae7e17f
FB
1187 prefix, yes_no(u->cgroup_realized));
1188
1189 if (u->cgroup_realized_mask != 0) {
1190 _cleanup_free_ char *s = NULL;
1191 (void) cg_mask_to_string(u->cgroup_realized_mask, &s);
02638280
LP
1192 fprintf(f, "%s\tCGroup realized mask: %s\n", prefix, strnull(s));
1193 }
0adf88b6 1194
02638280
LP
1195 if (u->cgroup_enabled_mask != 0) {
1196 _cleanup_free_ char *s = NULL;
1197 (void) cg_mask_to_string(u->cgroup_enabled_mask, &s);
1198 fprintf(f, "%s\tCGroup enabled mask: %s\n", prefix, strnull(s));
1199 }
0adf88b6 1200
02638280
LP
1201 m = unit_get_own_mask(u);
1202 if (m != 0) {
1203 _cleanup_free_ char *s = NULL;
1204 (void) cg_mask_to_string(m, &s);
1205 fprintf(f, "%s\tCGroup own mask: %s\n", prefix, strnull(s));
aae7e17f 1206 }
0adf88b6 1207
02638280
LP
1208 m = unit_get_members_mask(u);
1209 if (m != 0) {
aae7e17f 1210 _cleanup_free_ char *s = NULL;
02638280 1211 (void) cg_mask_to_string(m, &s);
aae7e17f
FB
1212 fprintf(f, "%s\tCGroup members mask: %s\n", prefix, strnull(s));
1213 }
0301abf4 1214
0adf88b6
LP
1215 m = unit_get_delegate_mask(u);
1216 if (m != 0) {
1217 _cleanup_free_ char *s = NULL;
1218 (void) cg_mask_to_string(m, &s);
1219 fprintf(f, "%s\tCGroup delegate mask: %s\n", prefix, strnull(s));
1220 }
1221
4b58153d
LP
1222 if (!sd_id128_is_null(u->invocation_id))
1223 fprintf(f, "%s\tInvocation ID: " SD_ID128_FORMAT_STR "\n",
1224 prefix, SD_ID128_FORMAT_VAL(u->invocation_id));
1225
49dbfa7b
LP
1226 STRV_FOREACH(j, u->documentation)
1227 fprintf(f, "%s\tDocumentation: %s\n", prefix, *j);
1228
eeaedb7c
LP
1229 following = unit_following(u);
1230 if (following)
ac155bb8 1231 fprintf(f, "%s\tFollowing: %s\n", prefix, following->id);
8fe914ec 1232
eeaedb7c
LP
1233 r = unit_following_set(u, &following_set);
1234 if (r >= 0) {
1235 Unit *other;
1236
1237 SET_FOREACH(other, following_set, i)
1238 fprintf(f, "%s\tFollowing Set Member: %s\n", prefix, other->id);
1239 }
1240
ac155bb8
MS
1241 if (u->fragment_path)
1242 fprintf(f, "%s\tFragment Path: %s\n", prefix, u->fragment_path);
23a177ef 1243
1b64d026
LP
1244 if (u->source_path)
1245 fprintf(f, "%s\tSource Path: %s\n", prefix, u->source_path);
1246
ae7a7182 1247 STRV_FOREACH(j, u->dropin_paths)
2875e22b 1248 fprintf(f, "%s\tDropIn Path: %s\n", prefix, *j);
ae7a7182 1249
e7dfbb4e
LP
1250 if (u->failure_action != EMERGENCY_ACTION_NONE)
1251 fprintf(f, "%s\tFailure Action: %s\n", prefix, emergency_action_to_string(u->failure_action));
7af67e9a
LP
1252 if (u->failure_action_exit_status >= 0)
1253 fprintf(f, "%s\tFailure Action Exit Status: %i\n", prefix, u->failure_action_exit_status);
e7dfbb4e
LP
1254 if (u->success_action != EMERGENCY_ACTION_NONE)
1255 fprintf(f, "%s\tSuccess Action: %s\n", prefix, emergency_action_to_string(u->success_action));
7af67e9a
LP
1256 if (u->success_action_exit_status >= 0)
1257 fprintf(f, "%s\tSuccess Action Exit Status: %i\n", prefix, u->success_action_exit_status);
e7dfbb4e 1258
36c16a7c 1259 if (u->job_timeout != USEC_INFINITY)
2fa4092c 1260 fprintf(f, "%s\tJob Timeout: %s\n", prefix, format_timespan(timespan, sizeof(timespan), u->job_timeout, 0));
faf919f1 1261
87a47f99
LN
1262 if (u->job_timeout_action != EMERGENCY_ACTION_NONE)
1263 fprintf(f, "%s\tJob Timeout Action: %s\n", prefix, emergency_action_to_string(u->job_timeout_action));
f189ab18
LP
1264
1265 if (u->job_timeout_reboot_arg)
1266 fprintf(f, "%s\tJob Timeout Reboot Argument: %s\n", prefix, u->job_timeout_reboot_arg);
1267
59fccdc5
LP
1268 condition_dump_list(u->conditions, f, prefix, condition_type_to_string);
1269 condition_dump_list(u->asserts, f, prefix, assert_type_to_string);
52661efd 1270
ac155bb8 1271 if (dual_timestamp_is_set(&u->condition_timestamp))
2791a8f8
LP
1272 fprintf(f,
1273 "%s\tCondition Timestamp: %s\n"
1274 "%s\tCondition Result: %s\n",
ac155bb8
MS
1275 prefix, strna(format_timestamp(timestamp1, sizeof(timestamp1), u->condition_timestamp.realtime)),
1276 prefix, yes_no(u->condition_result));
2791a8f8 1277
59fccdc5
LP
1278 if (dual_timestamp_is_set(&u->assert_timestamp))
1279 fprintf(f,
1280 "%s\tAssert Timestamp: %s\n"
1281 "%s\tAssert Result: %s\n",
1282 prefix, strna(format_timestamp(timestamp1, sizeof(timestamp1), u->assert_timestamp.realtime)),
1283 prefix, yes_no(u->assert_result));
1284
87f0e418 1285 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++) {
eef85c4a 1286 UnitDependencyInfo di;
87f0e418
LP
1287 Unit *other;
1288
eef85c4a
LP
1289 HASHMAP_FOREACH_KEY(di.data, other, u->dependencies[d], i) {
1290 bool space = false;
1291
1292 fprintf(f, "%s\t%s: %s (", prefix, unit_dependency_to_string(d), other->id);
1293
1294 print_unit_dependency_mask(f, "origin", di.origin_mask, &space);
1295 print_unit_dependency_mask(f, "destination", di.destination_mask, &space);
1296
1297 fputs(")\n", f);
1298 }
87f0e418
LP
1299 }
1300
eef85c4a
LP
1301 if (!hashmap_isempty(u->requires_mounts_for)) {
1302 UnitDependencyInfo di;
1303 const char *path;
1304
1305 HASHMAP_FOREACH_KEY(di.data, path, u->requires_mounts_for, i) {
1306 bool space = false;
7c8fa05c 1307
eef85c4a 1308 fprintf(f, "%s\tRequiresMountsFor: %s (", prefix, path);
7c8fa05c 1309
eef85c4a
LP
1310 print_unit_dependency_mask(f, "origin", di.origin_mask, &space);
1311 print_unit_dependency_mask(f, "destination", di.destination_mask, &space);
1312
1313 fputs(")\n", f);
1314 }
7c8fa05c
LP
1315 }
1316
ac155bb8 1317 if (u->load_state == UNIT_LOADED) {
ab1f0633 1318
b0650475 1319 fprintf(f,
a40eb732 1320 "%s\tStopWhenUnneeded: %s\n"
b5e9dba8
LP
1321 "%s\tRefuseManualStart: %s\n"
1322 "%s\tRefuseManualStop: %s\n"
222ae6a8 1323 "%s\tDefaultDependencies: %s\n"
d420282b 1324 "%s\tOnFailureJobMode: %s\n"
36b4a7ba 1325 "%s\tIgnoreOnIsolate: %s\n",
ac155bb8
MS
1326 prefix, yes_no(u->stop_when_unneeded),
1327 prefix, yes_no(u->refuse_manual_start),
1328 prefix, yes_no(u->refuse_manual_stop),
1329 prefix, yes_no(u->default_dependencies),
d420282b 1330 prefix, job_mode_to_string(u->on_failure_job_mode),
36b4a7ba 1331 prefix, yes_no(u->ignore_on_isolate));
ac155bb8 1332
23a177ef
LP
1333 if (UNIT_VTABLE(u)->dump)
1334 UNIT_VTABLE(u)->dump(u, f, prefix2);
b0650475 1335
ac155bb8 1336 } else if (u->load_state == UNIT_MERGED)
b0650475
LP
1337 fprintf(f,
1338 "%s\tMerged into: %s\n",
ac155bb8
MS
1339 prefix, u->merged_into->id);
1340 else if (u->load_state == UNIT_ERROR)
4bbccb02 1341 fprintf(f, "%s\tLoad Error Code: %s\n", prefix, strerror_safe(u->load_error));
8821a00f 1342
05a98afd
LP
1343 for (n = sd_bus_track_first(u->bus_track); n; n = sd_bus_track_next(u->bus_track))
1344 fprintf(f, "%s\tBus Ref: %s\n", prefix, n);
87f0e418 1345
ac155bb8
MS
1346 if (u->job)
1347 job_dump(u->job, f, prefix2);
87f0e418 1348
e0209d83
MS
1349 if (u->nop_job)
1350 job_dump(u->nop_job, f, prefix2);
87f0e418
LP
1351}
1352
1353/* Common implementation for multiple backends */
e537352b 1354int unit_load_fragment_and_dropin(Unit *u) {
23a177ef
LP
1355 int r;
1356
1357 assert(u);
23a177ef 1358
e48614c4 1359 /* Load a .{service,socket,...} file */
4ad49000
LP
1360 r = unit_load_fragment(u);
1361 if (r < 0)
23a177ef
LP
1362 return r;
1363
ac155bb8 1364 if (u->load_state == UNIT_STUB)
23a177ef
LP
1365 return -ENOENT;
1366
9e4ea9cc
ZJS
1367 /* Load drop-in directory data. If u is an alias, we might be reloading the
1368 * target unit needlessly. But we cannot be sure which drops-ins have already
1369 * been loaded and which not, at least without doing complicated book-keeping,
1370 * so let's always reread all drop-ins. */
1371 return unit_load_dropin(unit_follow_merge(u));
23a177ef
LP
1372}
1373
1374/* Common implementation for multiple backends */
e537352b 1375int unit_load_fragment_and_dropin_optional(Unit *u) {
23a177ef 1376 int r;
87f0e418
LP
1377
1378 assert(u);
1379
23a177ef
LP
1380 /* Same as unit_load_fragment_and_dropin(), but whether
1381 * something can be loaded or not doesn't matter. */
1382
e9e8cbc8 1383 /* Load a .service/.socket/.slice/… file */
4ad49000
LP
1384 r = unit_load_fragment(u);
1385 if (r < 0)
87f0e418
LP
1386 return r;
1387
ac155bb8
MS
1388 if (u->load_state == UNIT_STUB)
1389 u->load_state = UNIT_LOADED;
d46de8a1 1390
9e4ea9cc
ZJS
1391 /* Load drop-in directory data */
1392 return unit_load_dropin(unit_follow_merge(u));
87f0e418
LP
1393}
1394
19496554
MS
1395void unit_add_to_target_deps_queue(Unit *u) {
1396 Manager *m = u->manager;
1397
1398 assert(u);
1399
1400 if (u->in_target_deps_queue)
1401 return;
1402
1403 LIST_PREPEND(target_deps_queue, m->target_deps_queue, u);
1404 u->in_target_deps_queue = true;
1405}
1406
bba34eed 1407int unit_add_default_target_dependency(Unit *u, Unit *target) {
98bc2000
LP
1408 assert(u);
1409 assert(target);
1410
ac155bb8 1411 if (target->type != UNIT_TARGET)
98bc2000
LP
1412 return 0;
1413
35b8ca3a 1414 /* Only add the dependency if both units are loaded, so that
bba34eed 1415 * that loop check below is reliable */
ac155bb8
MS
1416 if (u->load_state != UNIT_LOADED ||
1417 target->load_state != UNIT_LOADED)
bba34eed
LP
1418 return 0;
1419
21256a2b
LP
1420 /* If either side wants no automatic dependencies, then let's
1421 * skip this */
ac155bb8
MS
1422 if (!u->default_dependencies ||
1423 !target->default_dependencies)
21256a2b
LP
1424 return 0;
1425
98bc2000 1426 /* Don't create loops */
eef85c4a 1427 if (hashmap_get(target->dependencies[UNIT_BEFORE], u))
98bc2000
LP
1428 return 0;
1429
eef85c4a 1430 return unit_add_dependency(target, UNIT_AFTER, u, true, UNIT_DEPENDENCY_DEFAULT);
98bc2000
LP
1431}
1432
e954c9cf 1433static int unit_add_slice_dependencies(Unit *u) {
eef85c4a 1434 UnitDependencyMask mask;
e954c9cf 1435 assert(u);
b81884e7 1436
35b7ff80 1437 if (!UNIT_HAS_CGROUP_CONTEXT(u))
e954c9cf
LP
1438 return 0;
1439
eef85c4a
LP
1440 /* Slice units are implicitly ordered against their parent slices (as this relationship is encoded in the
1441 name), while all other units are ordered based on configuration (as in their case Slice= configures the
1442 relationship). */
1443 mask = u->type == UNIT_SLICE ? UNIT_DEPENDENCY_IMPLICIT : UNIT_DEPENDENCY_FILE;
1444
e954c9cf 1445 if (UNIT_ISSET(u->slice))
eef85c4a 1446 return unit_add_two_dependencies(u, UNIT_AFTER, UNIT_REQUIRES, UNIT_DEREF(u->slice), true, mask);
e954c9cf 1447
8c8da0e0 1448 if (unit_has_name(u, SPECIAL_ROOT_SLICE))
d1fab3fe
ZJS
1449 return 0;
1450
5a724170 1451 return unit_add_two_dependencies_by_name(u, UNIT_AFTER, UNIT_REQUIRES, SPECIAL_ROOT_SLICE, true, mask);
98bc2000
LP
1452}
1453
e954c9cf 1454static int unit_add_mount_dependencies(Unit *u) {
eef85c4a
LP
1455 UnitDependencyInfo di;
1456 const char *path;
1457 Iterator i;
9588bc32
LP
1458 int r;
1459
1460 assert(u);
1461
eef85c4a
LP
1462 HASHMAP_FOREACH_KEY(di.data, path, u->requires_mounts_for, i) {
1463 char prefix[strlen(path) + 1];
9588bc32 1464
eef85c4a 1465 PATH_FOREACH_PREFIX_MORE(prefix, path) {
c7c89abb 1466 _cleanup_free_ char *p = NULL;
9588bc32
LP
1467 Unit *m;
1468
c7c89abb 1469 r = unit_name_from_path(prefix, ".mount", &p);
9588bc32
LP
1470 if (r < 0)
1471 return r;
c7c89abb
FB
1472
1473 m = manager_get_unit(u->manager, p);
1474 if (!m) {
1475 /* Make sure to load the mount unit if
1476 * it exists. If so the dependencies
1477 * on this unit will be added later
1478 * during the loading of the mount
1479 * unit. */
1480 (void) manager_load_unit_prepare(u->manager, p, NULL, NULL, &m);
9588bc32 1481 continue;
c7c89abb 1482 }
9588bc32
LP
1483 if (m == u)
1484 continue;
1485
1486 if (m->load_state != UNIT_LOADED)
1487 continue;
1488
eef85c4a 1489 r = unit_add_dependency(u, UNIT_AFTER, m, true, di.origin_mask);
9588bc32
LP
1490 if (r < 0)
1491 return r;
1492
1493 if (m->fragment_path) {
eef85c4a 1494 r = unit_add_dependency(u, UNIT_REQUIRES, m, true, di.origin_mask);
9588bc32
LP
1495 if (r < 0)
1496 return r;
1497 }
1498 }
1499 }
1500
1501 return 0;
1502}
1503
95ae05c0
WC
1504static int unit_add_startup_units(Unit *u) {
1505 CGroupContext *c;
5269eb6b 1506 int r;
95ae05c0
WC
1507
1508 c = unit_get_cgroup_context(u);
db785129
LP
1509 if (!c)
1510 return 0;
1511
d53d9474 1512 if (c->startup_cpu_shares == CGROUP_CPU_SHARES_INVALID &&
13c31542 1513 c->startup_io_weight == CGROUP_WEIGHT_INVALID &&
d53d9474 1514 c->startup_blockio_weight == CGROUP_BLKIO_WEIGHT_INVALID)
db785129
LP
1515 return 0;
1516
5269eb6b
LP
1517 r = set_ensure_allocated(&u->manager->startup_units, NULL);
1518 if (r < 0)
1519 return r;
1520
756c09e6 1521 return set_put(u->manager->startup_units, u);
95ae05c0
WC
1522}
1523
87f0e418
LP
1524int unit_load(Unit *u) {
1525 int r;
1526
1527 assert(u);
1528
ac155bb8 1529 if (u->in_load_queue) {
71fda00f 1530 LIST_REMOVE(load_queue, u->manager->load_queue, u);
ac155bb8 1531 u->in_load_queue = false;
87f0e418
LP
1532 }
1533
ac155bb8 1534 if (u->type == _UNIT_TYPE_INVALID)
e537352b
LP
1535 return -EINVAL;
1536
ac155bb8 1537 if (u->load_state != UNIT_STUB)
87f0e418
LP
1538 return 0;
1539
4f4afc88 1540 if (u->transient_file) {
66fa4bdd
LP
1541 /* Finalize transient file: if this is a transient unit file, as soon as we reach unit_load() the setup
1542 * is complete, hence let's synchronize the unit file we just wrote to disk. */
1543
4f4afc88
LP
1544 r = fflush_and_check(u->transient_file);
1545 if (r < 0)
1546 goto fail;
1547
50fb00b7 1548 u->transient_file = safe_fclose(u->transient_file);
f76707da 1549 u->fragment_mtime = now(CLOCK_REALTIME);
4f4afc88
LP
1550 }
1551
c2756a68
LP
1552 if (UNIT_VTABLE(u)->load) {
1553 r = UNIT_VTABLE(u)->load(u);
1554 if (r < 0)
87f0e418 1555 goto fail;
c2756a68 1556 }
23a177ef 1557
ac155bb8 1558 if (u->load_state == UNIT_STUB) {
23a177ef
LP
1559 r = -ENOENT;
1560 goto fail;
1561 }
1562
7c8fa05c 1563 if (u->load_state == UNIT_LOADED) {
19496554 1564 unit_add_to_target_deps_queue(u);
e954c9cf
LP
1565
1566 r = unit_add_slice_dependencies(u);
1567 if (r < 0)
1568 goto fail;
c2756a68 1569
e954c9cf 1570 r = unit_add_mount_dependencies(u);
7c8fa05c 1571 if (r < 0)
c2756a68 1572 goto fail;
7c8fa05c 1573
95ae05c0
WC
1574 r = unit_add_startup_units(u);
1575 if (r < 0)
1576 goto fail;
1577
eef85c4a 1578 if (u->on_failure_job_mode == JOB_ISOLATE && hashmap_size(u->dependencies[UNIT_ON_FAILURE]) > 1) {
f2341e0a 1579 log_unit_error(u, "More than one OnFailure= dependencies specified but OnFailureJobMode=isolate set. Refusing.");
6f40aa45 1580 r = -ENOEXEC;
c2756a68
LP
1581 goto fail;
1582 }
bc432dc7 1583
a2df3ea4
MK
1584 if (u->job_running_timeout != USEC_INFINITY && u->job_running_timeout > u->job_timeout)
1585 log_unit_warning(u, "JobRunningTimeoutSec= is greater than JobTimeoutSec=, it has no effect.");
1586
5af88058
LP
1587 /* We finished loading, let's ensure our parents recalculate the members mask */
1588 unit_invalidate_cgroup_members_masks(u);
f68319bb
LP
1589 }
1590
ac155bb8 1591 assert((u->load_state != UNIT_MERGED) == !u->merged_into);
23a177ef
LP
1592
1593 unit_add_to_dbus_queue(unit_follow_merge(u));
701cc384 1594 unit_add_to_gc_queue(u);
87f0e418 1595
87f0e418
LP
1596 return 0;
1597
1598fail:
c4555ad8
LP
1599 /* We convert ENOEXEC errors to the UNIT_BAD_SETTING load state here. Configuration parsing code should hence
1600 * return ENOEXEC to ensure units are placed in this state after loading */
1601
1602 u->load_state = u->load_state == UNIT_STUB ? UNIT_NOT_FOUND :
1603 r == -ENOEXEC ? UNIT_BAD_SETTING :
1604 UNIT_ERROR;
ac155bb8 1605 u->load_error = r;
c4555ad8 1606
c1e1601e 1607 unit_add_to_dbus_queue(u);
9a46fc3b 1608 unit_add_to_gc_queue(u);
23a177ef 1609
c4555ad8 1610 return log_unit_debug_errno(u, r, "Failed to load configuration: %m");
87f0e418
LP
1611}
1612
f9f88198
YW
1613_printf_(7, 8)
1614static int log_unit_internal(void *userdata, int level, int error, const char *file, int line, const char *func, const char *format, ...) {
1615 Unit *u = userdata;
1616 va_list ap;
1617 int r;
49365733 1618
f9f88198
YW
1619 va_start(ap, format);
1620 if (u)
1621 r = log_object_internalv(level, error, file, line, func,
1622 u->manager->unit_log_field,
1623 u->id,
1624 u->manager->invocation_log_field,
1625 u->invocation_id_string,
1626 format, ap);
1627 else
1628 r = log_internalv(level, error, file, line, func, format, ap);
1629 va_end(ap);
49365733 1630
f9f88198 1631 return r;
49365733
LP
1632}
1633
97a3f4ee 1634static bool unit_test_condition(Unit *u) {
90bbc946
LP
1635 assert(u);
1636
ac155bb8 1637 dual_timestamp_get(&u->condition_timestamp);
f9f88198 1638 u->condition_result = condition_test_list(u->conditions, condition_type_to_string, log_unit_internal, u);
90bbc946 1639
e18f8852
LP
1640 unit_add_to_dbus_queue(u);
1641
ac155bb8 1642 return u->condition_result;
90bbc946
LP
1643}
1644
97a3f4ee 1645static bool unit_test_assert(Unit *u) {
59fccdc5
LP
1646 assert(u);
1647
1648 dual_timestamp_get(&u->assert_timestamp);
f9f88198 1649 u->assert_result = condition_test_list(u->asserts, assert_type_to_string, log_unit_internal, u);
59fccdc5 1650
e18f8852
LP
1651 unit_add_to_dbus_queue(u);
1652
59fccdc5
LP
1653 return u->assert_result;
1654}
1655
df446f96 1656void unit_status_printf(Unit *u, const char *status, const char *unit_status_msg_format) {
5b262f74
LP
1657 const char *d;
1658
2a8f53c6 1659 d = unit_status_string(u);
5b262f74
LP
1660 if (log_get_show_color())
1661 d = strjoina(ANSI_HIGHLIGHT, d, ANSI_NORMAL);
1662
df446f96 1663 DISABLE_WARNING_FORMAT_NONLITERAL;
5b262f74 1664 manager_status_printf(u->manager, STATUS_TYPE_NORMAL, status, unit_status_msg_format, d);
df446f96
LP
1665 REENABLE_WARNING;
1666}
1667
97a3f4ee 1668int unit_test_start_limit(Unit *u) {
429926e9
TR
1669 const char *reason;
1670
6bf0f408
LP
1671 assert(u);
1672
7994ac1d 1673 if (ratelimit_below(&u->start_limit)) {
6bf0f408
LP
1674 u->start_limit_hit = false;
1675 return 0;
1676 }
1677
1678 log_unit_warning(u, "Start request repeated too quickly.");
1679 u->start_limit_hit = true;
1680
429926e9
TR
1681 reason = strjoina("unit ", u->id, " failed");
1682
36c4dc08
LP
1683 emergency_action(u->manager, u->start_limit_action,
1684 EMERGENCY_ACTION_IS_WATCHDOG|EMERGENCY_ACTION_WARN,
1685 u->reboot_arg, -1, reason);
1686
1687 return -ECANCELED;
6bf0f408
LP
1688}
1689
c891efaf 1690bool unit_shall_confirm_spawn(Unit *u) {
631b676b 1691 assert(u);
c891efaf
FB
1692
1693 if (manager_is_confirm_spawn_disabled(u->manager))
1694 return false;
1695
1696 /* For some reasons units remaining in the same process group
1697 * as PID 1 fail to acquire the console even if it's not used
1698 * by any process. So skip the confirmation question for them. */
1699 return !unit_get_exec_context(u)->same_pgrp;
1700}
1701
631b676b
LP
1702static bool unit_verify_deps(Unit *u) {
1703 Unit *other;
1704 Iterator j;
eef85c4a 1705 void *v;
631b676b
LP
1706
1707 assert(u);
1708
1709 /* Checks whether all BindsTo= dependencies of this unit are fulfilled — if they are also combined with
1710 * After=. We do not check Requires= or Requisite= here as they only should have an effect on the job
1711 * processing, but do not have any effect afterwards. We don't check BindsTo= dependencies that are not used in
1712 * conjunction with After= as for them any such check would make things entirely racy. */
1713
eef85c4a 1714 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_BINDS_TO], j) {
631b676b 1715
eef85c4a 1716 if (!hashmap_contains(u->dependencies[UNIT_AFTER], other))
631b676b
LP
1717 continue;
1718
1719 if (!UNIT_IS_ACTIVE_OR_RELOADING(unit_active_state(other))) {
1720 log_unit_notice(u, "Bound to unit %s, but unit isn't active.", other->id);
1721 return false;
1722 }
1723 }
1724
1725 return true;
1726}
1727
9adb6959 1728/* Errors that aren't really errors:
6bf0f408 1729 * -EALREADY: Unit is already started.
9adb6959 1730 * -ECOMM: Condition failed
6bf0f408 1731 * -EAGAIN: An operation is already in progress. Retry later.
9adb6959
LP
1732 *
1733 * Errors that are real errors:
1734 * -EBADR: This unit type does not support starting.
2de9b979 1735 * -ECANCELED: Start limit hit, too many requests for now
6bf0f408
LP
1736 * -EPROTO: Assert failed
1737 * -EINVAL: Unit not loaded
1738 * -EOPNOTSUPP: Unit type not supported
631b676b 1739 * -ENOLINK: The necessary dependencies are not fulfilled.
d4fd1cf2 1740 * -ESTALE: This unit has been started before and can't be started a second time
a4191c9f 1741 * -ENOENT: This is a triggering unit and unit to trigger is not loaded
87f0e418
LP
1742 */
1743int unit_start(Unit *u) {
1744 UnitActiveState state;
92ab323c 1745 Unit *following;
2de9b979 1746 int r;
87f0e418
LP
1747
1748 assert(u);
1749
5766aca8
LP
1750 /* If this is already started, then this will succeed. Note that this will even succeed if this unit
1751 * is not startable by the user. This is relied on to detect when we need to wait for units and when
1752 * waiting is finished. */
87f0e418
LP
1753 state = unit_active_state(u);
1754 if (UNIT_IS_ACTIVE_OR_RELOADING(state))
1755 return -EALREADY;
380dc8b0
LP
1756 if (state == UNIT_MAINTENANCE)
1757 return -EAGAIN;
87f0e418 1758
6bf0f408
LP
1759 /* Units that aren't loaded cannot be started */
1760 if (u->load_state != UNIT_LOADED)
1761 return -EINVAL;
1762
d4fd1cf2
LP
1763 /* Refuse starting scope units more than once */
1764 if (UNIT_VTABLE(u)->once_only && dual_timestamp_is_set(&u->inactive_enter_timestamp))
1765 return -ESTALE;
1766
5766aca8
LP
1767 /* If the conditions failed, don't do anything at all. If we already are activating this call might
1768 * still be useful to speed up activation in case there is some hold-off time, but we don't want to
1769 * recheck the condition in that case. */
a82e5507 1770 if (state != UNIT_ACTIVATING &&
2de9b979
LP
1771 !unit_test_condition(u)) {
1772
1773 /* Let's also check the start limit here. Normally, the start limit is only checked by the
1774 * .start() method of the unit type after it did some additional checks verifying everything
1775 * is in order (so that those other checks can propagate errors properly). However, if a
1776 * condition check doesn't hold we don't get that far but we should still ensure we are not
1777 * called in a tight loop without a rate limit check enforced, hence do the check here. Note
1778 * that ECOMM is generally not a reason for a job to fail, unlike most other errors here,
1779 * hence the chance is big that any triggering unit for us will trigger us again. Note this
1780 * condition check is a bit different from the condition check inside the per-unit .start()
1781 * function, as this one will not change the unit's state in any way (and we shouldn't here,
1782 * after all the condition failed). */
1783
1784 r = unit_test_start_limit(u);
1785 if (r < 0)
1786 return r;
1787
5766aca8 1788 return log_unit_debug_errno(u, SYNTHETIC_ERRNO(ECOMM), "Starting requested but condition failed. Not starting unit.");
2de9b979 1789 }
52661efd 1790
59fccdc5
LP
1791 /* If the asserts failed, fail the entire job */
1792 if (state != UNIT_ACTIVATING &&
5766aca8
LP
1793 !unit_test_assert(u))
1794 return log_unit_notice_errno(u, SYNTHETIC_ERRNO(EPROTO), "Starting requested but asserts failed.");
59fccdc5 1795
5766aca8
LP
1796 /* Units of types that aren't supported cannot be started. Note that we do this test only after the
1797 * condition checks, so that we rather return condition check errors (which are usually not
1798 * considered a true failure) than "not supported" errors (which are considered a failure).
d11a7645
LP
1799 */
1800 if (!unit_supported(u))
1801 return -EOPNOTSUPP;
1802
5766aca8
LP
1803 /* Let's make sure that the deps really are in order before we start this. Normally the job engine
1804 * should have taken care of this already, but let's check this here again. After all, our
1805 * dependencies might not be in effect anymore, due to a reload or due to a failed condition. */
631b676b
LP
1806 if (!unit_verify_deps(u))
1807 return -ENOLINK;
1808
92ab323c 1809 /* Forward to the main object, if we aren't it. */
52990c2e
ZJS
1810 following = unit_following(u);
1811 if (following) {
f2341e0a 1812 log_unit_debug(u, "Redirecting start request from %s to %s.", u->id, following->id);
92ab323c
LP
1813 return unit_start(following);
1814 }
1815
1816 /* If it is stopped, but we cannot start it, then fail */
1817 if (!UNIT_VTABLE(u)->start)
1818 return -EBADR;
1819
5766aca8
LP
1820 /* We don't suppress calls to ->start() here when we are already starting, to allow this request to
1821 * be used as a "hurry up" call, for example when the unit is in some "auto restart" state where it
1822 * waits for a holdoff timer to elapse before it will start again. */
87f0e418 1823
c1e1601e 1824 unit_add_to_dbus_queue(u);
9e58ff9c 1825
d1a34ae9 1826 return UNIT_VTABLE(u)->start(u);
87f0e418
LP
1827}
1828
1829bool unit_can_start(Unit *u) {
1830 assert(u);
1831
8ff4d2ab
LP
1832 if (u->load_state != UNIT_LOADED)
1833 return false;
1834
1835 if (!unit_supported(u))
1836 return false;
1837
d4fd1cf2
LP
1838 /* Scope units may be started only once */
1839 if (UNIT_VTABLE(u)->once_only && dual_timestamp_is_set(&u->inactive_exit_timestamp))
1840 return false;
1841
87f0e418
LP
1842 return !!UNIT_VTABLE(u)->start;
1843}
1844
2528a7a6
LP
1845bool unit_can_isolate(Unit *u) {
1846 assert(u);
1847
1848 return unit_can_start(u) &&
ac155bb8 1849 u->allow_isolate;
2528a7a6
LP
1850}
1851
87f0e418
LP
1852/* Errors:
1853 * -EBADR: This unit type does not support stopping.
1854 * -EALREADY: Unit is already stopped.
1855 * -EAGAIN: An operation is already in progress. Retry later.
1856 */
1857int unit_stop(Unit *u) {
1858 UnitActiveState state;
92ab323c 1859 Unit *following;
87f0e418
LP
1860
1861 assert(u);
1862
87f0e418 1863 state = unit_active_state(u);
fdf20a31 1864 if (UNIT_IS_INACTIVE_OR_FAILED(state))
87f0e418
LP
1865 return -EALREADY;
1866
0faacd47
LP
1867 following = unit_following(u);
1868 if (following) {
f2341e0a 1869 log_unit_debug(u, "Redirecting stop request from %s to %s.", u->id, following->id);
92ab323c
LP
1870 return unit_stop(following);
1871 }
1872
7898b0cf
LP
1873 if (!UNIT_VTABLE(u)->stop)
1874 return -EBADR;
1875
c1e1601e 1876 unit_add_to_dbus_queue(u);
9e58ff9c 1877
d1a34ae9 1878 return UNIT_VTABLE(u)->stop(u);
87f0e418
LP
1879}
1880
f5869324
LP
1881bool unit_can_stop(Unit *u) {
1882 assert(u);
1883
1884 if (!unit_supported(u))
1885 return false;
1886
1887 if (u->perpetual)
1888 return false;
1889
1890 return !!UNIT_VTABLE(u)->stop;
1891}
1892
87f0e418
LP
1893/* Errors:
1894 * -EBADR: This unit type does not support reloading.
1895 * -ENOEXEC: Unit is not started.
1896 * -EAGAIN: An operation is already in progress. Retry later.
1897 */
1898int unit_reload(Unit *u) {
1899 UnitActiveState state;
92ab323c 1900 Unit *following;
87f0e418
LP
1901
1902 assert(u);
1903
ac155bb8 1904 if (u->load_state != UNIT_LOADED)
6124958c
LP
1905 return -EINVAL;
1906
87f0e418
LP
1907 if (!unit_can_reload(u))
1908 return -EBADR;
1909
1910 state = unit_active_state(u);
e364ad06 1911 if (state == UNIT_RELOADING)
6255af75 1912 return -EAGAIN;
87f0e418 1913
6a371e23 1914 if (state != UNIT_ACTIVE) {
f2341e0a 1915 log_unit_warning(u, "Unit cannot be reloaded because it is inactive.");
87f0e418 1916 return -ENOEXEC;
6a371e23 1917 }
87f0e418 1918
e48614c4
ZJS
1919 following = unit_following(u);
1920 if (following) {
f2341e0a 1921 log_unit_debug(u, "Redirecting reload request from %s to %s.", u->id, following->id);
92ab323c
LP
1922 return unit_reload(following);
1923 }
1924
c1e1601e 1925 unit_add_to_dbus_queue(u);
82a2b6bb 1926
f54bcca5
JR
1927 if (!UNIT_VTABLE(u)->reload) {
1928 /* Unit doesn't have a reload function, but we need to propagate the reload anyway */
2ad2e41a 1929 unit_notify(u, unit_active_state(u), unit_active_state(u), 0);
f54bcca5
JR
1930 return 0;
1931 }
1932
d1a34ae9 1933 return UNIT_VTABLE(u)->reload(u);
87f0e418
LP
1934}
1935
1936bool unit_can_reload(Unit *u) {
1937 assert(u);
1938
f54bcca5
JR
1939 if (UNIT_VTABLE(u)->can_reload)
1940 return UNIT_VTABLE(u)->can_reload(u);
87f0e418 1941
eef85c4a 1942 if (!hashmap_isempty(u->dependencies[UNIT_PROPAGATES_RELOAD_TO]))
87f0e418
LP
1943 return true;
1944
f54bcca5 1945 return UNIT_VTABLE(u)->reload;
87f0e418
LP
1946}
1947
a3c1168a
LP
1948bool unit_is_unneeded(Unit *u) {
1949 static const UnitDependency deps[] = {
be7d9ff7 1950 UNIT_REQUIRED_BY,
084918ba 1951 UNIT_REQUISITE_OF,
be7d9ff7
LP
1952 UNIT_WANTED_BY,
1953 UNIT_BOUND_BY,
1954 };
a3c1168a 1955 size_t j;
f3bff0eb
LP
1956
1957 assert(u);
1958
ac155bb8 1959 if (!u->stop_when_unneeded)
a3c1168a 1960 return false;
f3bff0eb 1961
a3c1168a
LP
1962 /* Don't clean up while the unit is transitioning or is even inactive. */
1963 if (!UNIT_IS_ACTIVE_OR_RELOADING(unit_active_state(u)))
1964 return false;
1965 if (u->job)
1966 return false;
f3bff0eb 1967
a3c1168a 1968 for (j = 0; j < ELEMENTSOF(deps); j++) {
eef85c4a
LP
1969 Unit *other;
1970 Iterator i;
1971 void *v;
1972
fda09318 1973 /* If a dependent unit has a job queued, is active or transitioning, or is marked for
a3c1168a 1974 * restart, then don't clean this one up. */
b81884e7 1975
a3c1168a 1976 HASHMAP_FOREACH_KEY(v, other, u->dependencies[deps[j]], i) {
93d4cb09 1977 if (other->job)
a3c1168a
LP
1978 return false;
1979
1980 if (!UNIT_IS_INACTIVE_OR_FAILED(unit_active_state(other)))
1981 return false;
1982
1983 if (unit_will_restart(other))
1984 return false;
1985 }
bea355da
LP
1986 }
1987
a3c1168a
LP
1988 return true;
1989}
f3bff0eb 1990
a3c1168a
LP
1991static void check_unneeded_dependencies(Unit *u) {
1992
1993 static const UnitDependency deps[] = {
1994 UNIT_REQUIRES,
1995 UNIT_REQUISITE,
1996 UNIT_WANTS,
1997 UNIT_BINDS_TO,
1998 };
1999 size_t j;
2000
2001 assert(u);
2002
2003 /* Add all units this unit depends on to the queue that processes StopWhenUnneeded= behaviour. */
2004
2005 for (j = 0; j < ELEMENTSOF(deps); j++) {
2006 Unit *other;
2007 Iterator i;
2008 void *v;
2009
2010 HASHMAP_FOREACH_KEY(v, other, u->dependencies[deps[j]], i)
fda09318 2011 unit_submit_to_stop_when_unneeded_queue(other);
a3c1168a 2012 }
f3bff0eb
LP
2013}
2014
ff502445 2015static void unit_check_binds_to(Unit *u) {
4afd3348 2016 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
ff502445
LP
2017 bool stop = false;
2018 Unit *other;
2019 Iterator i;
eef85c4a 2020 void *v;
67bfdc97 2021 int r;
ff502445
LP
2022
2023 assert(u);
2024
2025 if (u->job)
2026 return;
2027
2028 if (unit_active_state(u) != UNIT_ACTIVE)
2029 return;
2030
eef85c4a 2031 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_BINDS_TO], i) {
ff502445
LP
2032 if (other->job)
2033 continue;
13ddc3fc
ZJS
2034
2035 if (!other->coldplugged)
2036 /* We might yet create a job for the other unit… */
2037 continue;
ff502445
LP
2038
2039 if (!UNIT_IS_INACTIVE_OR_FAILED(unit_active_state(other)))
2040 continue;
2041
2042 stop = true;
98f738b6 2043 break;
ff502445
LP
2044 }
2045
2046 if (!stop)
2047 return;
2048
595bfe7d 2049 /* If stopping a unit fails continuously we might enter a stop
67bfdc97
LP
2050 * loop here, hence stop acting on the service being
2051 * unnecessary after a while. */
7994ac1d 2052 if (!ratelimit_below(&u->auto_stop_ratelimit)) {
67bfdc97
LP
2053 log_unit_warning(u, "Unit is bound to inactive unit %s, but not stopping since we tried this too often recently.", other->id);
2054 return;
2055 }
2056
98f738b6 2057 assert(other);
f2341e0a 2058 log_unit_info(u, "Unit is bound to inactive unit %s. Stopping, too.", other->id);
ff502445
LP
2059
2060 /* A unit we need to run is gone. Sniff. Let's stop this. */
50cbaba4 2061 r = manager_add_job(u->manager, JOB_STOP, u, JOB_FAIL, NULL, &error, NULL);
67bfdc97 2062 if (r < 0)
4bd29fe5 2063 log_unit_warning_errno(u, r, "Failed to enqueue stop job, ignoring: %s", bus_error_message(&error, r));
ff502445
LP
2064}
2065
87f0e418
LP
2066static void retroactively_start_dependencies(Unit *u) {
2067 Iterator i;
2068 Unit *other;
eef85c4a 2069 void *v;
87f0e418
LP
2070
2071 assert(u);
2072 assert(UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(u)));
2073
eef85c4a
LP
2074 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_REQUIRES], i)
2075 if (!hashmap_get(u->dependencies[UNIT_AFTER], other) &&
b81884e7 2076 !UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
50cbaba4 2077 manager_add_job(u->manager, JOB_START, other, JOB_REPLACE, NULL, NULL, NULL);
b81884e7 2078
eef85c4a
LP
2079 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_BINDS_TO], i)
2080 if (!hashmap_get(u->dependencies[UNIT_AFTER], other) &&
b81884e7 2081 !UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
50cbaba4 2082 manager_add_job(u->manager, JOB_START, other, JOB_REPLACE, NULL, NULL, NULL);
87f0e418 2083
eef85c4a
LP
2084 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_WANTS], i)
2085 if (!hashmap_get(u->dependencies[UNIT_AFTER], other) &&
b81884e7 2086 !UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
50cbaba4 2087 manager_add_job(u->manager, JOB_START, other, JOB_FAIL, NULL, NULL, NULL);
87f0e418 2088
eef85c4a 2089 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_CONFLICTS], i)
b81884e7 2090 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
50cbaba4 2091 manager_add_job(u->manager, JOB_STOP, other, JOB_REPLACE, NULL, NULL, NULL);
69dd2852 2092
eef85c4a 2093 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_CONFLICTED_BY], i)
b81884e7 2094 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
50cbaba4 2095 manager_add_job(u->manager, JOB_STOP, other, JOB_REPLACE, NULL, NULL, NULL);
87f0e418
LP
2096}
2097
2098static void retroactively_stop_dependencies(Unit *u) {
87f0e418 2099 Unit *other;
eef85c4a
LP
2100 Iterator i;
2101 void *v;
87f0e418
LP
2102
2103 assert(u);
2104 assert(UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(u)));
2105
b81884e7 2106 /* Pull down units which are bound to us recursively if enabled */
eef85c4a 2107 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_BOUND_BY], i)
b81884e7 2108 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
50cbaba4 2109 manager_add_job(u->manager, JOB_STOP, other, JOB_REPLACE, NULL, NULL, NULL);
cd0504d0
MS
2110}
2111
3ecaa09b 2112void unit_start_on_failure(Unit *u) {
c0daa706
LP
2113 Unit *other;
2114 Iterator i;
eef85c4a 2115 void *v;
7f66b026 2116 int r;
c0daa706
LP
2117
2118 assert(u);
2119
eef85c4a 2120 if (hashmap_size(u->dependencies[UNIT_ON_FAILURE]) <= 0)
222ae6a8
LP
2121 return;
2122
f2341e0a 2123 log_unit_info(u, "Triggering OnFailure= dependencies.");
222ae6a8 2124
eef85c4a 2125 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_ON_FAILURE], i) {
7f66b026 2126 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
222ae6a8 2127
50cbaba4 2128 r = manager_add_job(u->manager, JOB_START, other, u->on_failure_job_mode, NULL, &error, NULL);
c1b6628d 2129 if (r < 0)
7f66b026 2130 log_unit_warning_errno(u, r, "Failed to enqueue OnFailure= job, ignoring: %s", bus_error_message(&error, r));
222ae6a8 2131 }
c0daa706
LP
2132}
2133
3ecaa09b
LP
2134void unit_trigger_notify(Unit *u) {
2135 Unit *other;
2136 Iterator i;
eef85c4a 2137 void *v;
3ecaa09b
LP
2138
2139 assert(u);
2140
eef85c4a 2141 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_TRIGGERED_BY], i)
3ecaa09b
LP
2142 if (UNIT_VTABLE(other)->trigger_notify)
2143 UNIT_VTABLE(other)->trigger_notify(other, u);
2144}
2145
915b1d01 2146static int unit_log_resources(Unit *u) {
bc40a20e
LP
2147 struct iovec iovec[1 + _CGROUP_IP_ACCOUNTING_METRIC_MAX + _CGROUP_IO_ACCOUNTING_METRIC_MAX + 4];
2148 bool any_traffic = false, have_ip_accounting = false, any_io = false, have_io_accounting = false;
2149 _cleanup_free_ char *igress = NULL, *egress = NULL, *rr = NULL, *wr = NULL;
915b1d01 2150 size_t n_message_parts = 0, n_iovec = 0;
bc40a20e 2151 char* message_parts[1 + 2 + 2 + 1], *t;
915b1d01
LP
2152 nsec_t nsec = NSEC_INFINITY;
2153 CGroupIPAccountingMetric m;
2154 size_t i;
2155 int r;
2156 const char* const ip_fields[_CGROUP_IP_ACCOUNTING_METRIC_MAX] = {
2157 [CGROUP_IP_INGRESS_BYTES] = "IP_METRIC_INGRESS_BYTES",
2158 [CGROUP_IP_INGRESS_PACKETS] = "IP_METRIC_INGRESS_PACKETS",
2159 [CGROUP_IP_EGRESS_BYTES] = "IP_METRIC_EGRESS_BYTES",
2160 [CGROUP_IP_EGRESS_PACKETS] = "IP_METRIC_EGRESS_PACKETS",
2161 };
bc40a20e
LP
2162 const char* const io_fields[_CGROUP_IO_ACCOUNTING_METRIC_MAX] = {
2163 [CGROUP_IO_READ_BYTES] = "IO_METRIC_READ_BYTES",
2164 [CGROUP_IO_WRITE_BYTES] = "IO_METRIC_WRITE_BYTES",
2165 [CGROUP_IO_READ_OPERATIONS] = "IO_METRIC_READ_OPERATIONS",
2166 [CGROUP_IO_WRITE_OPERATIONS] = "IO_METRIC_WRITE_OPERATIONS",
2167 };
915b1d01
LP
2168
2169 assert(u);
2170
2171 /* Invoked whenever a unit enters failed or dead state. Logs information about consumed resources if resource
2172 * accounting was enabled for a unit. It does this in two ways: a friendly human readable string with reduced
2173 * information and the complete data in structured fields. */
2174
2175 (void) unit_get_cpu_usage(u, &nsec);
2176 if (nsec != NSEC_INFINITY) {
2177 char buf[FORMAT_TIMESPAN_MAX] = "";
2178
2179 /* Format the CPU time for inclusion in the structured log message */
2180 if (asprintf(&t, "CPU_USAGE_NSEC=%" PRIu64, nsec) < 0) {
2181 r = log_oom();
2182 goto finish;
2183 }
2184 iovec[n_iovec++] = IOVEC_MAKE_STRING(t);
2185
2186 /* Format the CPU time for inclusion in the human language message string */
2187 format_timespan(buf, sizeof(buf), nsec / NSEC_PER_USEC, USEC_PER_MSEC);
ec9d636b 2188 t = strjoin("consumed ", buf, " CPU time");
915b1d01
LP
2189 if (!t) {
2190 r = log_oom();
2191 goto finish;
2192 }
2193
2194 message_parts[n_message_parts++] = t;
2195 }
2196
bc40a20e
LP
2197 for (CGroupIOAccountingMetric k = 0; k < _CGROUP_IO_ACCOUNTING_METRIC_MAX; k++) {
2198 char buf[FORMAT_BYTES_MAX] = "";
2199 uint64_t value = UINT64_MAX;
2200
2201 assert(io_fields[k]);
2202
2203 (void) unit_get_io_accounting(u, k, k > 0, &value);
2204 if (value == UINT64_MAX)
2205 continue;
2206
2207 have_io_accounting = true;
2208 if (value > 0)
2209 any_io = true;
2210
2211 /* Format IO accounting data for inclusion in the structured log message */
2212 if (asprintf(&t, "%s=%" PRIu64, io_fields[k], value) < 0) {
2213 r = log_oom();
2214 goto finish;
2215 }
2216 iovec[n_iovec++] = IOVEC_MAKE_STRING(t);
2217
2218 /* Format the IO accounting data for inclusion in the human language message string, but only
2219 * for the bytes counters (and not for the operations counters) */
2220 if (k == CGROUP_IO_READ_BYTES) {
2221 assert(!rr);
2222 rr = strjoin("read ", format_bytes(buf, sizeof(buf), value), " from disk");
2223 if (!rr) {
2224 r = log_oom();
2225 goto finish;
2226 }
2227 } else if (k == CGROUP_IO_WRITE_BYTES) {
2228 assert(!wr);
2229 wr = strjoin("written ", format_bytes(buf, sizeof(buf), value), " to disk");
2230 if (!wr) {
2231 r = log_oom();
2232 goto finish;
2233 }
2234 }
2235 }
2236
2237 if (have_io_accounting) {
2238 if (any_io) {
2239 if (rr)
2240 message_parts[n_message_parts++] = TAKE_PTR(rr);
2241 if (wr)
2242 message_parts[n_message_parts++] = TAKE_PTR(wr);
2243
2244 } else {
2245 char *k;
2246
2247 k = strdup("no IO");
2248 if (!k) {
2249 r = log_oom();
2250 goto finish;
2251 }
2252
2253 message_parts[n_message_parts++] = k;
2254 }
2255 }
2256
915b1d01
LP
2257 for (m = 0; m < _CGROUP_IP_ACCOUNTING_METRIC_MAX; m++) {
2258 char buf[FORMAT_BYTES_MAX] = "";
2259 uint64_t value = UINT64_MAX;
2260
2261 assert(ip_fields[m]);
2262
2263 (void) unit_get_ip_accounting(u, m, &value);
2264 if (value == UINT64_MAX)
2265 continue;
82044702
LP
2266
2267 have_ip_accounting = true;
a87b1faa
LP
2268 if (value > 0)
2269 any_traffic = true;
915b1d01
LP
2270
2271 /* Format IP accounting data for inclusion in the structured log message */
2272 if (asprintf(&t, "%s=%" PRIu64, ip_fields[m], value) < 0) {
2273 r = log_oom();
2274 goto finish;
2275 }
2276 iovec[n_iovec++] = IOVEC_MAKE_STRING(t);
2277
2278 /* Format the IP accounting data for inclusion in the human language message string, but only for the
2279 * bytes counters (and not for the packets counters) */
a87b1faa
LP
2280 if (m == CGROUP_IP_INGRESS_BYTES) {
2281 assert(!igress);
ec9d636b 2282 igress = strjoin("received ", format_bytes(buf, sizeof(buf), value), " IP traffic");
a87b1faa
LP
2283 if (!igress) {
2284 r = log_oom();
2285 goto finish;
2286 }
2287 } else if (m == CGROUP_IP_EGRESS_BYTES) {
2288 assert(!egress);
ec9d636b 2289 egress = strjoin("sent ", format_bytes(buf, sizeof(buf), value), " IP traffic");
a87b1faa
LP
2290 if (!egress) {
2291 r = log_oom();
2292 goto finish;
2293 }
2294 }
2295 }
2296
82044702
LP
2297 if (have_ip_accounting) {
2298 if (any_traffic) {
2299 if (igress)
2300 message_parts[n_message_parts++] = TAKE_PTR(igress);
2301 if (egress)
2302 message_parts[n_message_parts++] = TAKE_PTR(egress);
a87b1faa 2303
82044702
LP
2304 } else {
2305 char *k;
915b1d01 2306
82044702
LP
2307 k = strdup("no IP traffic");
2308 if (!k) {
2309 r = log_oom();
2310 goto finish;
2311 }
2312
2313 message_parts[n_message_parts++] = k;
2314 }
915b1d01
LP
2315 }
2316
2317 /* Is there any accounting data available at all? */
2318 if (n_iovec == 0) {
2319 r = 0;
2320 goto finish;
2321 }
2322
2323 if (n_message_parts == 0)
a87b1faa 2324 t = strjoina("MESSAGE=", u->id, ": Completed.");
915b1d01
LP
2325 else {
2326 _cleanup_free_ char *joined;
2327
2328 message_parts[n_message_parts] = NULL;
2329
2330 joined = strv_join(message_parts, ", ");
2331 if (!joined) {
2332 r = log_oom();
2333 goto finish;
2334 }
2335
ec9d636b 2336 joined[0] = ascii_toupper(joined[0]);
a87b1faa 2337 t = strjoina("MESSAGE=", u->id, ": ", joined, ".");
915b1d01
LP
2338 }
2339
2340 /* The following four fields we allocate on the stack or are static strings, we hence don't want to free them,
2341 * and hence don't increase n_iovec for them */
2342 iovec[n_iovec] = IOVEC_MAKE_STRING(t);
2343 iovec[n_iovec + 1] = IOVEC_MAKE_STRING("MESSAGE_ID=" SD_MESSAGE_UNIT_RESOURCES_STR);
2344
2345 t = strjoina(u->manager->unit_log_field, u->id);
2346 iovec[n_iovec + 2] = IOVEC_MAKE_STRING(t);
2347
2348 t = strjoina(u->manager->invocation_log_field, u->invocation_id_string);
2349 iovec[n_iovec + 3] = IOVEC_MAKE_STRING(t);
2350
2351 log_struct_iovec(LOG_INFO, iovec, n_iovec + 4);
2352 r = 0;
2353
2354finish:
2355 for (i = 0; i < n_message_parts; i++)
2356 free(message_parts[i]);
2357
2358 for (i = 0; i < n_iovec; i++)
2359 free(iovec[i].iov_base);
2360
2361 return r;
2362
2363}
2364
adefcf28
LP
2365static void unit_update_on_console(Unit *u) {
2366 bool b;
2367
2368 assert(u);
2369
2370 b = unit_needs_console(u);
2371 if (u->on_console == b)
2372 return;
2373
2374 u->on_console = b;
2375 if (b)
2376 manager_ref_console(u->manager);
2377 else
2378 manager_unref_console(u->manager);
adefcf28
LP
2379}
2380
6eb65e7c
LP
2381static void unit_emit_audit_start(Unit *u) {
2382 assert(u);
2383
2384 if (u->type != UNIT_SERVICE)
2385 return;
2386
2387 /* Write audit record if we have just finished starting up */
2388 manager_send_unit_audit(u->manager, u, AUDIT_SERVICE_START, true);
2389 u->in_audit = true;
2390}
2391
2392static void unit_emit_audit_stop(Unit *u, UnitActiveState state) {
2393 assert(u);
2394
2395 if (u->type != UNIT_SERVICE)
2396 return;
2397
2398 if (u->in_audit) {
2399 /* Write audit record if we have just finished shutting down */
2400 manager_send_unit_audit(u->manager, u, AUDIT_SERVICE_STOP, state == UNIT_INACTIVE);
2401 u->in_audit = false;
2402 } else {
2403 /* Hmm, if there was no start record written write it now, so that we always have a nice pair */
2404 manager_send_unit_audit(u->manager, u, AUDIT_SERVICE_START, state == UNIT_INACTIVE);
2405
2406 if (state == UNIT_INACTIVE)
2407 manager_send_unit_audit(u->manager, u, AUDIT_SERVICE_STOP, true);
2408 }
2409}
2410
16c74914
LP
2411static bool unit_process_job(Job *j, UnitActiveState ns, UnitNotifyFlags flags) {
2412 bool unexpected = false;
2413
2414 assert(j);
2415
2416 if (j->state == JOB_WAITING)
2417
2418 /* So we reached a different state for this job. Let's see if we can run it now if it failed previously
2419 * due to EAGAIN. */
2420 job_add_to_run_queue(j);
2421
2422 /* Let's check whether the unit's new state constitutes a finished job, or maybe contradicts a running job and
2423 * hence needs to invalidate jobs. */
2424
2425 switch (j->type) {
2426
2427 case JOB_START:
2428 case JOB_VERIFY_ACTIVE:
2429
2430 if (UNIT_IS_ACTIVE_OR_RELOADING(ns))
2431 job_finish_and_invalidate(j, JOB_DONE, true, false);
2432 else if (j->state == JOB_RUNNING && ns != UNIT_ACTIVATING) {
2433 unexpected = true;
2434
2435 if (UNIT_IS_INACTIVE_OR_FAILED(ns))
2436 job_finish_and_invalidate(j, ns == UNIT_FAILED ? JOB_FAILED : JOB_DONE, true, false);
2437 }
2438
2439 break;
2440
2441 case JOB_RELOAD:
2442 case JOB_RELOAD_OR_START:
2443 case JOB_TRY_RELOAD:
2444
2445 if (j->state == JOB_RUNNING) {
2446 if (ns == UNIT_ACTIVE)
2447 job_finish_and_invalidate(j, (flags & UNIT_NOTIFY_RELOAD_FAILURE) ? JOB_FAILED : JOB_DONE, true, false);
2448 else if (!IN_SET(ns, UNIT_ACTIVATING, UNIT_RELOADING)) {
2449 unexpected = true;
2450
2451 if (UNIT_IS_INACTIVE_OR_FAILED(ns))
2452 job_finish_and_invalidate(j, ns == UNIT_FAILED ? JOB_FAILED : JOB_DONE, true, false);
2453 }
2454 }
2455
2456 break;
2457
2458 case JOB_STOP:
2459 case JOB_RESTART:
2460 case JOB_TRY_RESTART:
2461
2462 if (UNIT_IS_INACTIVE_OR_FAILED(ns))
2463 job_finish_and_invalidate(j, JOB_DONE, true, false);
2464 else if (j->state == JOB_RUNNING && ns != UNIT_DEACTIVATING) {
2465 unexpected = true;
2466 job_finish_and_invalidate(j, JOB_FAILED, true, false);
2467 }
2468
2469 break;
2470
2471 default:
2472 assert_not_reached("Job type unknown");
2473 }
2474
2475 return unexpected;
2476}
2477
2ad2e41a 2478void unit_notify(Unit *u, UnitActiveState os, UnitActiveState ns, UnitNotifyFlags flags) {
429926e9 2479 const char *reason;
8559b3b7 2480 Manager *m;
a096ed36 2481
87f0e418
LP
2482 assert(u);
2483 assert(os < _UNIT_ACTIVE_STATE_MAX);
2484 assert(ns < _UNIT_ACTIVE_STATE_MAX);
87f0e418 2485
8559b3b7
LP
2486 /* Note that this is called for all low-level state changes, even if they might map to the same high-level
2487 * UnitActiveState! That means that ns == os is an expected behavior here. For example: if a mount point is
2488 * remounted this function will be called too! */
87f0e418 2489
546ac4f0
MS
2490 m = u->manager;
2491
3c4832ad
LP
2492 /* Let's enqueue the change signal early. In case this unit has a job associated we want that this unit is in
2493 * the bus queue, so that any job change signal queued will force out the unit change signal first. */
2494 unit_add_to_dbus_queue(u);
2495
f755e3b7 2496 /* Update timestamps for state changes */
2c289ea8 2497 if (!MANAGER_IS_RELOADING(m)) {
a483fb59 2498 dual_timestamp_get(&u->state_change_timestamp);
173e3821 2499
bdbf9951 2500 if (UNIT_IS_INACTIVE_OR_FAILED(os) && !UNIT_IS_INACTIVE_OR_FAILED(ns))
a483fb59 2501 u->inactive_exit_timestamp = u->state_change_timestamp;
bdbf9951 2502 else if (!UNIT_IS_INACTIVE_OR_FAILED(os) && UNIT_IS_INACTIVE_OR_FAILED(ns))
a483fb59 2503 u->inactive_enter_timestamp = u->state_change_timestamp;
bdbf9951
LP
2504
2505 if (!UNIT_IS_ACTIVE_OR_RELOADING(os) && UNIT_IS_ACTIVE_OR_RELOADING(ns))
a483fb59 2506 u->active_enter_timestamp = u->state_change_timestamp;
bdbf9951 2507 else if (UNIT_IS_ACTIVE_OR_RELOADING(os) && !UNIT_IS_ACTIVE_OR_RELOADING(ns))
a483fb59 2508 u->active_exit_timestamp = u->state_change_timestamp;
bdbf9951 2509 }
87f0e418 2510
865cc19a 2511 /* Keep track of failed units */
8724defe 2512 (void) manager_update_failed_units(m, u, ns == UNIT_FAILED);
f755e3b7 2513
d3070fbd
LP
2514 /* Make sure the cgroup and state files are always removed when we become inactive */
2515 if (UNIT_IS_INACTIVE_OR_FAILED(ns)) {
efdb0237 2516 unit_prune_cgroup(u);
d3070fbd
LP
2517 unit_unlink_state_files(u);
2518 }
fb385181 2519
adefcf28 2520 unit_update_on_console(u);
7ed9f6cd 2521
2c289ea8 2522 if (!MANAGER_IS_RELOADING(m)) {
a1c7334b
LP
2523 bool unexpected;
2524
2525 /* Let's propagate state changes to the job */
2526 if (u->job)
2527 unexpected = unit_process_job(u->job, ns, flags);
2528 else
2529 unexpected = true;
f3bff0eb 2530
a1c7334b
LP
2531 /* If this state change happened without being requested by a job, then let's retroactively start or
2532 * stop dependencies. We skip that step when deserializing, since we don't want to create any
2533 * additional jobs just because something is already activated. */
bdbf9951
LP
2534
2535 if (unexpected) {
2536 if (UNIT_IS_INACTIVE_OR_FAILED(os) && UNIT_IS_ACTIVE_OR_ACTIVATING(ns))
2537 retroactively_start_dependencies(u);
2538 else if (UNIT_IS_ACTIVE_OR_ACTIVATING(os) && UNIT_IS_INACTIVE_OR_DEACTIVATING(ns))
2539 retroactively_stop_dependencies(u);
2540 }
5de9682c 2541
cd0504d0 2542 /* stop unneeded units regardless if going down was expected or not */
a3c1168a 2543 if (UNIT_IS_INACTIVE_OR_FAILED(ns))
cd0504d0
MS
2544 check_unneeded_dependencies(u);
2545
bdbf9951 2546 if (ns != os && ns == UNIT_FAILED) {
ed77d407 2547 log_unit_debug(u, "Unit entered failed state.");
2ad2e41a
LP
2548
2549 if (!(flags & UNIT_NOTIFY_WILL_AUTO_RESTART))
2550 unit_start_on_failure(u);
cd6d0a45 2551 }
e537352b 2552
256f65d0
LP
2553 if (UNIT_IS_ACTIVE_OR_RELOADING(ns) && !UNIT_IS_ACTIVE_OR_RELOADING(os)) {
2554 /* This unit just finished starting up */
3b2775c5 2555
6eb65e7c 2556 unit_emit_audit_start(u);
546ac4f0 2557 manager_send_unit_plymouth(m, u);
256f65d0 2558 }
bdbf9951 2559
256f65d0 2560 if (UNIT_IS_INACTIVE_OR_FAILED(ns) && !UNIT_IS_INACTIVE_OR_FAILED(os)) {
915b1d01 2561 /* This unit just stopped/failed. */
256f65d0 2562
6eb65e7c 2563 unit_emit_audit_stop(u, ns);
915b1d01 2564 unit_log_resources(u);
cd6d0a45 2565 }
f278026d
LP
2566 }
2567
31dc1ca3
LP
2568 manager_recheck_journal(m);
2569 manager_recheck_dbus(m);
e63ebf71 2570
3ecaa09b 2571 unit_trigger_notify(u);
3b2775c5 2572
8724defe 2573 if (!MANAGER_IS_RELOADING(m)) {
8559b3b7 2574 /* Maybe we finished startup and are now ready for being stopped because unneeded? */
fda09318 2575 unit_submit_to_stop_when_unneeded_queue(u);
c1e1601e 2576
8559b3b7
LP
2577 /* Maybe we finished startup, but something we needed has vanished? Let's die then. (This happens when
2578 * something BindsTo= to a Type=oneshot unit, as these units go directly from starting to inactive,
ff502445
LP
2579 * without ever entering started.) */
2580 unit_check_binds_to(u);
53c35a76 2581
429926e9
TR
2582 if (os != UNIT_FAILED && ns == UNIT_FAILED) {
2583 reason = strjoina("unit ", u->id, " failed");
36c4dc08 2584 emergency_action(m, u->failure_action, 0, u->reboot_arg, unit_failure_action_exit_status(u), reason);
429926e9
TR
2585 } else if (!UNIT_IS_INACTIVE_OR_FAILED(os) && ns == UNIT_INACTIVE) {
2586 reason = strjoina("unit ", u->id, " succeeded");
36c4dc08 2587 emergency_action(m, u->success_action, 0, u->reboot_arg, unit_success_action_exit_status(u), reason);
429926e9 2588 }
ff502445
LP
2589 }
2590
701cc384 2591 unit_add_to_gc_queue(u);
87f0e418
LP
2592}
2593
f75f613d 2594int unit_watch_pid(Unit *u, pid_t pid, bool exclusive) {
62a76913 2595 int r;
a911bb9a 2596
87f0e418 2597 assert(u);
62a76913 2598 assert(pid_is_valid(pid));
87f0e418 2599
62a76913 2600 /* Watch a specific PID */
5ba6985b 2601
f75f613d
FB
2602 /* Caller might be sure that this PID belongs to this unit only. Let's take this
2603 * opportunity to remove any stalled references to this PID as they can be created
2604 * easily (when watching a process which is not our direct child). */
2605 if (exclusive)
2606 manager_unwatch_pid(u->manager, pid);
2607
d5099efc 2608 r = set_ensure_allocated(&u->pids, NULL);
5ba6985b
LP
2609 if (r < 0)
2610 return r;
2611
62a76913 2612 r = hashmap_ensure_allocated(&u->manager->watch_pids, NULL);
a911bb9a
LP
2613 if (r < 0)
2614 return r;
2615
62a76913
LP
2616 /* First try, let's add the unit keyed by "pid". */
2617 r = hashmap_put(u->manager->watch_pids, PID_TO_PTR(pid), u);
2618 if (r == -EEXIST) {
2619 Unit **array;
2620 bool found = false;
2621 size_t n = 0;
05e343b7 2622
62a76913
LP
2623 /* OK, the "pid" key is already assigned to a different unit. Let's see if the "-pid" key (which points
2624 * to an array of Units rather than just a Unit), lists us already. */
a911bb9a 2625
62a76913
LP
2626 array = hashmap_get(u->manager->watch_pids, PID_TO_PTR(-pid));
2627 if (array)
2628 for (; array[n]; n++)
2629 if (array[n] == u)
2630 found = true;
a911bb9a 2631
62a76913
LP
2632 if (found) /* Found it already? if so, do nothing */
2633 r = 0;
2634 else {
2635 Unit **new_array;
2636
2637 /* Allocate a new array */
2638 new_array = new(Unit*, n + 2);
2639 if (!new_array)
2640 return -ENOMEM;
2641
2642 memcpy_safe(new_array, array, sizeof(Unit*) * n);
2643 new_array[n] = u;
2644 new_array[n+1] = NULL;
2645
2646 /* Add or replace the old array */
2647 r = hashmap_replace(u->manager->watch_pids, PID_TO_PTR(-pid), new_array);
2648 if (r < 0) {
2649 free(new_array);
2650 return r;
2651 }
2652
2653 free(array);
2654 }
2655 } else if (r < 0)
2656 return r;
2657
2658 r = set_put(u->pids, PID_TO_PTR(pid));
2659 if (r < 0)
2660 return r;
2661
2662 return 0;
87f0e418
LP
2663}
2664
2665void unit_unwatch_pid(Unit *u, pid_t pid) {
62a76913
LP
2666 Unit **array;
2667
87f0e418 2668 assert(u);
62a76913
LP
2669 assert(pid_is_valid(pid));
2670
2671 /* First let's drop the unit in case it's keyed as "pid". */
2672 (void) hashmap_remove_value(u->manager->watch_pids, PID_TO_PTR(pid), u);
2673
2674 /* Then, let's also drop the unit, in case it's in the array keyed by -pid */
2675 array = hashmap_get(u->manager->watch_pids, PID_TO_PTR(-pid));
2676 if (array) {
2677 size_t n, m = 0;
2678
2679 /* Let's iterate through the array, dropping our own entry */
2680 for (n = 0; array[n]; n++)
2681 if (array[n] != u)
2682 array[m++] = array[n];
2683 array[m] = NULL;
2684
2685 if (m == 0) {
2686 /* The array is now empty, remove the entire entry */
2687 assert(hashmap_remove(u->manager->watch_pids, PID_TO_PTR(-pid)) == array);
2688 free(array);
2689 }
2690 }
87f0e418 2691
fea72cc0 2692 (void) set_remove(u->pids, PID_TO_PTR(pid));
a911bb9a
LP
2693}
2694
bd44e61b
LP
2695void unit_unwatch_all_pids(Unit *u) {
2696 assert(u);
2697
2698 while (!set_isempty(u->pids))
fea72cc0 2699 unit_unwatch_pid(u, PTR_TO_PID(set_first(u->pids)));
bd44e61b 2700
efdb0237 2701 u->pids = set_free(u->pids);
a911bb9a
LP
2702}
2703
50be4f4a
LP
2704static void unit_tidy_watch_pids(Unit *u) {
2705 pid_t except1, except2;
a911bb9a
LP
2706 Iterator i;
2707 void *e;
2708
2709 assert(u);
2710
2711 /* Cleans dead PIDs from our list */
2712
50be4f4a
LP
2713 except1 = unit_main_pid(u);
2714 except2 = unit_control_pid(u);
2715
a911bb9a 2716 SET_FOREACH(e, u->pids, i) {
fea72cc0 2717 pid_t pid = PTR_TO_PID(e);
a911bb9a
LP
2718
2719 if (pid == except1 || pid == except2)
2720 continue;
2721
9f5650ae 2722 if (!pid_is_unwaited(pid))
bd44e61b 2723 unit_unwatch_pid(u, pid);
a911bb9a 2724 }
87f0e418
LP
2725}
2726
50be4f4a
LP
2727static int on_rewatch_pids_event(sd_event_source *s, void *userdata) {
2728 Unit *u = userdata;
2729
2730 assert(s);
2731 assert(u);
2732
2733 unit_tidy_watch_pids(u);
2734 unit_watch_all_pids(u);
2735
2736 /* If the PID set is empty now, then let's finish this off. */
2737 unit_synthesize_cgroup_empty_event(u);
2738
2739 return 0;
2740}
2741
2742int unit_enqueue_rewatch_pids(Unit *u) {
2743 int r;
2744
2745 assert(u);
2746
2747 if (!u->cgroup_path)
2748 return -ENOENT;
2749
2750 r = cg_unified_controller(SYSTEMD_CGROUP_CONTROLLER);
2751 if (r < 0)
2752 return r;
2753 if (r > 0) /* On unified we can use proper notifications */
2754 return 0;
2755
2756 /* Enqueues a low-priority job that will clean up dead PIDs from our list of PIDs to watch and subscribe to new
2757 * PIDs that might have appeared. We do this in a delayed job because the work might be quite slow, as it
2758 * involves issuing kill(pid, 0) on all processes we watch. */
2759
2760 if (!u->rewatch_pids_event_source) {
2761 _cleanup_(sd_event_source_unrefp) sd_event_source *s = NULL;
2762
2763 r = sd_event_add_defer(u->manager->event, &s, on_rewatch_pids_event, u);
2764 if (r < 0)
2765 return log_error_errno(r, "Failed to allocate event source for tidying watched PIDs: %m");
2766
2767 r = sd_event_source_set_priority(s, SD_EVENT_PRIORITY_IDLE);
2768 if (r < 0)
2769 return log_error_errno(r, "Failed to adjust priority of event source for tidying watched PIDs: m");
2770
2771 (void) sd_event_source_set_description(s, "tidy-watch-pids");
2772
2773 u->rewatch_pids_event_source = TAKE_PTR(s);
2774 }
2775
2776 r = sd_event_source_set_enabled(u->rewatch_pids_event_source, SD_EVENT_ONESHOT);
2777 if (r < 0)
2778 return log_error_errno(r, "Failed to enable event source for tidying watched PIDs: %m");
2779
2780 return 0;
2781}
2782
2783void unit_dequeue_rewatch_pids(Unit *u) {
2784 int r;
2785 assert(u);
2786
2787 if (!u->rewatch_pids_event_source)
2788 return;
2789
2790 r = sd_event_source_set_enabled(u->rewatch_pids_event_source, SD_EVENT_OFF);
2791 if (r < 0)
2792 log_warning_errno(r, "Failed to disable event source for tidying watched PIDs, ignoring: %m");
2793
2794 u->rewatch_pids_event_source = sd_event_source_unref(u->rewatch_pids_event_source);
2795}
2796
87f0e418
LP
2797bool unit_job_is_applicable(Unit *u, JobType j) {
2798 assert(u);
2799 assert(j >= 0 && j < _JOB_TYPE_MAX);
2800
2801 switch (j) {
2802
2803 case JOB_VERIFY_ACTIVE:
2804 case JOB_START:
e0209d83 2805 case JOB_NOP:
f5869324
LP
2806 /* Note that we don't check unit_can_start() here. That's because .device units and suchlike are not
2807 * startable by us but may appear due to external events, and it thus makes sense to permit enqueing
2808 * jobs for it. */
87f0e418
LP
2809 return true;
2810
f5869324
LP
2811 case JOB_STOP:
2812 /* Similar as above. However, perpetual units can never be stopped (neither explicitly nor due to
2813 * external events), hence it makes no sense to permit enqueing such a request either. */
2814 return !u->perpetual;
2815
87f0e418
LP
2816 case JOB_RESTART:
2817 case JOB_TRY_RESTART:
f5869324 2818 return unit_can_stop(u) && unit_can_start(u);
87f0e418
LP
2819
2820 case JOB_RELOAD:
3282591d 2821 case JOB_TRY_RELOAD:
87f0e418
LP
2822 return unit_can_reload(u);
2823
2824 case JOB_RELOAD_OR_START:
2825 return unit_can_reload(u) && unit_can_start(u);
2826
2827 default:
2828 assert_not_reached("Invalid job type");
2829 }
2830}
2831
f2341e0a
LP
2832static void maybe_warn_about_dependency(Unit *u, const char *other, UnitDependency dependency) {
2833 assert(u);
d1fab3fe 2834
f2341e0a
LP
2835 /* Only warn about some unit types */
2836 if (!IN_SET(dependency, UNIT_CONFLICTS, UNIT_CONFLICTED_BY, UNIT_BEFORE, UNIT_AFTER, UNIT_ON_FAILURE, UNIT_TRIGGERS, UNIT_TRIGGERED_BY))
2837 return;
3f3cc397 2838
f2341e0a
LP
2839 if (streq_ptr(u->id, other))
2840 log_unit_warning(u, "Dependency %s=%s dropped", unit_dependency_to_string(dependency), u->id);
2841 else
2842 log_unit_warning(u, "Dependency %s=%s dropped, merged into %s", unit_dependency_to_string(dependency), strna(other), u->id);
d1fab3fe
ZJS
2843}
2844
eef85c4a
LP
2845static int unit_add_dependency_hashmap(
2846 Hashmap **h,
2847 Unit *other,
2848 UnitDependencyMask origin_mask,
2849 UnitDependencyMask destination_mask) {
2850
2851 UnitDependencyInfo info;
2852 int r;
2853
2854 assert(h);
2855 assert(other);
2856 assert(origin_mask < _UNIT_DEPENDENCY_MASK_FULL);
2857 assert(destination_mask < _UNIT_DEPENDENCY_MASK_FULL);
2858 assert(origin_mask > 0 || destination_mask > 0);
2859
2860 r = hashmap_ensure_allocated(h, NULL);
2861 if (r < 0)
2862 return r;
2863
2864 assert_cc(sizeof(void*) == sizeof(info));
2865
2866 info.data = hashmap_get(*h, other);
2867 if (info.data) {
2868 /* Entry already exists. Add in our mask. */
2869
d94a24ca
ZJS
2870 if (FLAGS_SET(origin_mask, info.origin_mask) &&
2871 FLAGS_SET(destination_mask, info.destination_mask))
eef85c4a
LP
2872 return 0; /* NOP */
2873
2874 info.origin_mask |= origin_mask;
2875 info.destination_mask |= destination_mask;
2876
2877 r = hashmap_update(*h, other, info.data);
2878 } else {
2879 info = (UnitDependencyInfo) {
2880 .origin_mask = origin_mask,
2881 .destination_mask = destination_mask,
2882 };
2883
2884 r = hashmap_put(*h, other, info.data);
2885 }
2886 if (r < 0)
2887 return r;
2888
2889 return 1;
2890}
2891
2892int unit_add_dependency(
2893 Unit *u,
2894 UnitDependency d,
2895 Unit *other,
2896 bool add_reference,
2897 UnitDependencyMask mask) {
87f0e418
LP
2898
2899 static const UnitDependency inverse_table[_UNIT_DEPENDENCY_MAX] = {
2900 [UNIT_REQUIRES] = UNIT_REQUIRED_BY,
87f0e418 2901 [UNIT_WANTS] = UNIT_WANTED_BY,
be7d9ff7 2902 [UNIT_REQUISITE] = UNIT_REQUISITE_OF,
7f2cddae 2903 [UNIT_BINDS_TO] = UNIT_BOUND_BY,
60649f17 2904 [UNIT_PART_OF] = UNIT_CONSISTS_OF,
be7d9ff7 2905 [UNIT_REQUIRED_BY] = UNIT_REQUIRES,
be7d9ff7 2906 [UNIT_REQUISITE_OF] = UNIT_REQUISITE,
be7d9ff7 2907 [UNIT_WANTED_BY] = UNIT_WANTS,
7f2cddae 2908 [UNIT_BOUND_BY] = UNIT_BINDS_TO,
60649f17 2909 [UNIT_CONSISTS_OF] = UNIT_PART_OF,
69dd2852
LP
2910 [UNIT_CONFLICTS] = UNIT_CONFLICTED_BY,
2911 [UNIT_CONFLICTED_BY] = UNIT_CONFLICTS,
87f0e418 2912 [UNIT_BEFORE] = UNIT_AFTER,
701cc384 2913 [UNIT_AFTER] = UNIT_BEFORE,
5de9682c 2914 [UNIT_ON_FAILURE] = _UNIT_DEPENDENCY_INVALID,
701cc384 2915 [UNIT_REFERENCES] = UNIT_REFERENCED_BY,
57020a3a
LP
2916 [UNIT_REFERENCED_BY] = UNIT_REFERENCES,
2917 [UNIT_TRIGGERS] = UNIT_TRIGGERED_BY,
4dcc1cb4 2918 [UNIT_TRIGGERED_BY] = UNIT_TRIGGERS,
7f2cddae 2919 [UNIT_PROPAGATES_RELOAD_TO] = UNIT_RELOAD_PROPAGATED_FROM,
85e9a101 2920 [UNIT_RELOAD_PROPAGATED_FROM] = UNIT_PROPAGATES_RELOAD_TO,
613b411c 2921 [UNIT_JOINS_NAMESPACE_OF] = UNIT_JOINS_NAMESPACE_OF,
87f0e418 2922 };
eef85c4a
LP
2923 Unit *original_u = u, *original_other = other;
2924 int r;
87f0e418
LP
2925
2926 assert(u);
2927 assert(d >= 0 && d < _UNIT_DEPENDENCY_MAX);
87f0e418
LP
2928 assert(other);
2929
9f151f29
LP
2930 u = unit_follow_merge(u);
2931 other = unit_follow_merge(other);
2932
87f0e418
LP
2933 /* We won't allow dependencies on ourselves. We will not
2934 * consider them an error however. */
d1fab3fe 2935 if (u == other) {
eef85c4a 2936 maybe_warn_about_dependency(original_u, original_other->id, d);
87f0e418 2937 return 0;
d1fab3fe 2938 }
87f0e418 2939
eef85c4a
LP
2940 if ((d == UNIT_BEFORE && other->type == UNIT_DEVICE) ||
2941 (d == UNIT_AFTER && u->type == UNIT_DEVICE)) {
dd5e7000
ZJS
2942 log_unit_warning(u, "Dependency Before=%s ignored (.device units cannot be delayed)", other->id);
2943 return 0;
2944 }
2945
eef85c4a 2946 r = unit_add_dependency_hashmap(u->dependencies + d, other, mask, 0);
613b411c 2947 if (r < 0)
87f0e418
LP
2948 return r;
2949
eef85c4a
LP
2950 if (inverse_table[d] != _UNIT_DEPENDENCY_INVALID && inverse_table[d] != d) {
2951 r = unit_add_dependency_hashmap(other->dependencies + inverse_table[d], u, 0, mask);
613b411c
LP
2952 if (r < 0)
2953 return r;
2954 }
2955
2956 if (add_reference) {
eef85c4a 2957 r = unit_add_dependency_hashmap(u->dependencies + UNIT_REFERENCES, other, mask, 0);
613b411c 2958 if (r < 0)
5de9682c
LP
2959 return r;
2960
eef85c4a 2961 r = unit_add_dependency_hashmap(other->dependencies + UNIT_REFERENCED_BY, u, 0, mask);
613b411c 2962 if (r < 0)
701cc384 2963 return r;
613b411c 2964 }
87f0e418 2965
c1e1601e 2966 unit_add_to_dbus_queue(u);
87f0e418
LP
2967 return 0;
2968}
0301abf4 2969
eef85c4a 2970int unit_add_two_dependencies(Unit *u, UnitDependency d, UnitDependency e, Unit *other, bool add_reference, UnitDependencyMask mask) {
2c966c03
LP
2971 int r;
2972
2973 assert(u);
2974
eef85c4a 2975 r = unit_add_dependency(u, d, other, add_reference, mask);
3f3cc397 2976 if (r < 0)
2c966c03
LP
2977 return r;
2978
eef85c4a 2979 return unit_add_dependency(u, e, other, add_reference, mask);
2c966c03
LP
2980}
2981
23e8c796 2982static int resolve_template(Unit *u, const char *name, char **buf, const char **ret) {
7410616c 2983 int r;
9e2f7c11
LP
2984
2985 assert(u);
23e8c796 2986 assert(name);
7410616c
LP
2987 assert(buf);
2988 assert(ret);
9e2f7c11 2989
7410616c
LP
2990 if (!unit_name_is_valid(name, UNIT_NAME_TEMPLATE)) {
2991 *buf = NULL;
2992 *ret = name;
2993 return 0;
9e2f7c11
LP
2994 }
2995
ac155bb8 2996 if (u->instance)
7410616c 2997 r = unit_name_replace_instance(name, u->instance, buf);
9e2f7c11 2998 else {
ae018d9b 2999 _cleanup_free_ char *i = NULL;
9e2f7c11 3000
7410616c
LP
3001 r = unit_name_to_prefix(u->id, &i);
3002 if (r < 0)
3003 return r;
9e2f7c11 3004
7410616c 3005 r = unit_name_replace_instance(name, i, buf);
9e2f7c11 3006 }
7410616c
LP
3007 if (r < 0)
3008 return r;
9e2f7c11 3009
7410616c
LP
3010 *ret = *buf;
3011 return 0;
9e2f7c11
LP
3012}
3013
35d8c19a 3014int unit_add_dependency_by_name(Unit *u, UnitDependency d, const char *name, bool add_reference, UnitDependencyMask mask) {
7410616c 3015 _cleanup_free_ char *buf = NULL;
09b6b09f
LP
3016 Unit *other;
3017 int r;
3018
9e2f7c11 3019 assert(u);
35d8c19a 3020 assert(name);
09b6b09f 3021
23e8c796 3022 r = resolve_template(u, name, &buf, &name);
7410616c
LP
3023 if (r < 0)
3024 return r;
09b6b09f 3025
35d8c19a 3026 r = manager_load_unit(u->manager, name, NULL, NULL, &other);
8afbb8e1
LP
3027 if (r < 0)
3028 return r;
9e2f7c11 3029
eef85c4a 3030 return unit_add_dependency(u, d, other, add_reference, mask);
09b6b09f
LP
3031}
3032
5a724170 3033int unit_add_two_dependencies_by_name(Unit *u, UnitDependency d, UnitDependency e, const char *name, bool add_reference, UnitDependencyMask mask) {
7410616c 3034 _cleanup_free_ char *buf = NULL;
2c966c03
LP
3035 Unit *other;
3036 int r;
2c966c03
LP
3037
3038 assert(u);
5a724170 3039 assert(name);
2c966c03 3040
23e8c796 3041 r = resolve_template(u, name, &buf, &name);
7410616c
LP
3042 if (r < 0)
3043 return r;
2c966c03 3044
5a724170 3045 r = manager_load_unit(u->manager, name, NULL, NULL, &other);
3f3cc397 3046 if (r < 0)
68eda4bd 3047 return r;
2c966c03 3048
eef85c4a 3049 return unit_add_two_dependencies(u, d, e, other, add_reference, mask);
2c966c03
LP
3050}
3051
0301abf4 3052int set_unit_path(const char *p) {
0301abf4 3053 /* This is mostly for debug purposes */
cbe46ead 3054 if (setenv("SYSTEMD_UNIT_PATH", p, 1) < 0)
26d04f86 3055 return -errno;
0301abf4
LP
3056
3057 return 0;
3058}
88066b3a 3059
ea430986 3060char *unit_dbus_path(Unit *u) {
ea430986
LP
3061 assert(u);
3062
ac155bb8 3063 if (!u->id)
04ade7d2
LP
3064 return NULL;
3065
48899192 3066 return unit_dbus_path_from_name(u->id);
ea430986
LP
3067}
3068
4b58153d
LP
3069char *unit_dbus_path_invocation_id(Unit *u) {
3070 assert(u);
3071
3072 if (sd_id128_is_null(u->invocation_id))
3073 return NULL;
3074
3075 return unit_dbus_path_from_name(u->invocation_id_string);
3076}
3077
d79200e2
LP
3078int unit_set_slice(Unit *u, Unit *slice) {
3079 assert(u);
3080 assert(slice);
3081
3082 /* Sets the unit slice if it has not been set before. Is extra
3083 * careful, to only allow this for units that actually have a
3084 * cgroup context. Also, we don't allow to set this for slices
3085 * (since the parent slice is derived from the name). Make
3086 * sure the unit we set is actually a slice. */
3087
3088 if (!UNIT_HAS_CGROUP_CONTEXT(u))
3089 return -EOPNOTSUPP;
3090
3091 if (u->type == UNIT_SLICE)
3092 return -EINVAL;
3093
102ef982
LP
3094 if (unit_active_state(u) != UNIT_INACTIVE)
3095 return -EBUSY;
3096
d79200e2
LP
3097 if (slice->type != UNIT_SLICE)
3098 return -EINVAL;
3099
efdb0237
LP
3100 if (unit_has_name(u, SPECIAL_INIT_SCOPE) &&
3101 !unit_has_name(slice, SPECIAL_ROOT_SLICE))
3102 return -EPERM;
3103
d79200e2
LP
3104 if (UNIT_DEREF(u->slice) == slice)
3105 return 0;
3106
99e66921
TH
3107 /* Disallow slice changes if @u is already bound to cgroups */
3108 if (UNIT_ISSET(u->slice) && u->cgroup_realized)
d79200e2
LP
3109 return -EBUSY;
3110
7f7d01ed 3111 unit_ref_set(&u->slice, u, slice);
d79200e2
LP
3112 return 1;
3113}
3114
3115int unit_set_default_slice(Unit *u) {
a8833944 3116 const char *slice_name;
a016b922
LP
3117 Unit *slice;
3118 int r;
3119
3120 assert(u);
3121
9444b1f2 3122 if (UNIT_ISSET(u->slice))
a016b922
LP
3123 return 0;
3124
a8833944
LP
3125 if (u->instance) {
3126 _cleanup_free_ char *prefix = NULL, *escaped = NULL;
68eda4bd 3127
a8833944
LP
3128 /* Implicitly place all instantiated units in their
3129 * own per-template slice */
3130
7410616c
LP
3131 r = unit_name_to_prefix(u->id, &prefix);
3132 if (r < 0)
3133 return r;
a8833944
LP
3134
3135 /* The prefix is already escaped, but it might include
3136 * "-" which has a special meaning for slice units,
3137 * hence escape it here extra. */
7410616c 3138 escaped = unit_name_escape(prefix);
a8833944
LP
3139 if (!escaped)
3140 return -ENOMEM;
3141
463d0d15 3142 if (MANAGER_IS_SYSTEM(u->manager))
00e7b3c8 3143 slice_name = strjoina("system-", escaped, ".slice");
a8833944 3144 else
00e7b3c8 3145 slice_name = strjoina(escaped, ".slice");
a8833944
LP
3146 } else
3147 slice_name =
463d0d15 3148 MANAGER_IS_SYSTEM(u->manager) && !unit_has_name(u, SPECIAL_INIT_SCOPE)
a8833944
LP
3149 ? SPECIAL_SYSTEM_SLICE
3150 : SPECIAL_ROOT_SLICE;
3151
3152 r = manager_load_unit(u->manager, slice_name, NULL, NULL, &slice);
a016b922
LP
3153 if (r < 0)
3154 return r;
3155
d79200e2 3156 return unit_set_slice(u, slice);
a016b922
LP
3157}
3158
9444b1f2
LP
3159const char *unit_slice_name(Unit *u) {
3160 assert(u);
3161
3162 if (!UNIT_ISSET(u->slice))
3163 return NULL;
3164
3165 return UNIT_DEREF(u->slice)->id;
3166}
3167
f6ff8c29 3168int unit_load_related_unit(Unit *u, const char *type, Unit **_found) {
78edb35a 3169 _cleanup_free_ char *t = NULL;
f6ff8c29
LP
3170 int r;
3171
3172 assert(u);
3173 assert(type);
3174 assert(_found);
3175
7410616c
LP
3176 r = unit_name_change_suffix(u->id, type, &t);
3177 if (r < 0)
3178 return r;
3179 if (unit_has_name(u, t))
3180 return -EINVAL;
f6ff8c29 3181
ac155bb8 3182 r = manager_load_unit(u->manager, t, NULL, NULL, _found);
9e2f7c11 3183 assert(r < 0 || *_found != u);
f6ff8c29
LP
3184 return r;
3185}
3186
bbc29086
DM
3187static int signal_name_owner_changed(sd_bus_message *message, void *userdata, sd_bus_error *error) {
3188 const char *name, *old_owner, *new_owner;
3189 Unit *u = userdata;
3190 int r;
3191
3192 assert(message);
3193 assert(u);
3194
3195 r = sd_bus_message_read(message, "sss", &name, &old_owner, &new_owner);
3196 if (r < 0) {
3197 bus_log_parse_error(r);
3198 return 0;
3199 }
3200
a8ea93a5
LP
3201 old_owner = empty_to_null(old_owner);
3202 new_owner = empty_to_null(new_owner);
b0076268 3203
bbc29086
DM
3204 if (UNIT_VTABLE(u)->bus_name_owner_change)
3205 UNIT_VTABLE(u)->bus_name_owner_change(u, name, old_owner, new_owner);
3206
3207 return 0;
3208}
3209
9806e87d
LP
3210int unit_install_bus_match(Unit *u, sd_bus *bus, const char *name) {
3211 const char *match;
bbc29086 3212
9806e87d
LP
3213 assert(u);
3214 assert(bus);
3215 assert(name);
bbc29086
DM
3216
3217 if (u->match_bus_slot)
3218 return -EBUSY;
3219
9806e87d 3220 match = strjoina("type='signal',"
81d62103
ZJS
3221 "sender='org.freedesktop.DBus',"
3222 "path='/org/freedesktop/DBus',"
3223 "interface='org.freedesktop.DBus',"
3224 "member='NameOwnerChanged',"
3225 "arg0='", name, "'");
bbc29086 3226
75152a4d 3227 return sd_bus_add_match_async(bus, &u->match_bus_slot, match, signal_name_owner_changed, NULL, u);
bbc29086
DM
3228}
3229
05e343b7 3230int unit_watch_bus_name(Unit *u, const char *name) {
bbc29086
DM
3231 int r;
3232
05e343b7
LP
3233 assert(u);
3234 assert(name);
3235
3236 /* Watch a specific name on the bus. We only support one unit
3237 * watching each name for now. */
3238
bbc29086
DM
3239 if (u->manager->api_bus) {
3240 /* If the bus is already available, install the match directly.
3241 * Otherwise, just put the name in the list. bus_setup_api() will take care later. */
9806e87d 3242 r = unit_install_bus_match(u, u->manager->api_bus, name);
bbc29086 3243 if (r < 0)
8ea823b6 3244 return log_warning_errno(r, "Failed to subscribe to NameOwnerChanged signal for '%s': %m", name);
bbc29086
DM
3245 }
3246
3247 r = hashmap_put(u->manager->watch_bus, name, u);
3248 if (r < 0) {
3249 u->match_bus_slot = sd_bus_slot_unref(u->match_bus_slot);
3250 return log_warning_errno(r, "Failed to put bus name to hashmap: %m");
3251 }
3252
3253 return 0;
05e343b7
LP
3254}
3255
3256void unit_unwatch_bus_name(Unit *u, const char *name) {
3257 assert(u);
3258 assert(name);
3259
8367fea5 3260 (void) hashmap_remove_value(u->manager->watch_bus, name, u);
bbc29086 3261 u->match_bus_slot = sd_bus_slot_unref(u->match_bus_slot);
05e343b7
LP
3262}
3263
a16e1123
LP
3264bool unit_can_serialize(Unit *u) {
3265 assert(u);
3266
3267 return UNIT_VTABLE(u)->serialize && UNIT_VTABLE(u)->deserialize_item;
3268}
3269
d68c645b 3270static int serialize_cgroup_mask(FILE *f, const char *key, CGroupMask mask) {
8b108bd0 3271 _cleanup_free_ char *s = NULL;
d68c645b 3272 int r;
8b108bd0
FB
3273
3274 assert(f);
3275 assert(key);
3276
d68c645b
LP
3277 if (mask == 0)
3278 return 0;
3279
3280 r = cg_mask_to_string(mask, &s);
3281 if (r < 0)
3282 return log_error_errno(r, "Failed to format cgroup mask: %m");
3283
3284 return serialize_item(f, key, s);
8b108bd0
FB
3285}
3286
b82f71c7 3287static const char *const ip_accounting_metric_field[_CGROUP_IP_ACCOUNTING_METRIC_MAX] = {
6b659ed8
LP
3288 [CGROUP_IP_INGRESS_BYTES] = "ip-accounting-ingress-bytes",
3289 [CGROUP_IP_INGRESS_PACKETS] = "ip-accounting-ingress-packets",
3290 [CGROUP_IP_EGRESS_BYTES] = "ip-accounting-egress-bytes",
3291 [CGROUP_IP_EGRESS_PACKETS] = "ip-accounting-egress-packets",
3292};
3293
fbe14fc9
LP
3294static const char *const io_accounting_metric_field_base[_CGROUP_IO_ACCOUNTING_METRIC_MAX] = {
3295 [CGROUP_IO_READ_BYTES] = "io-accounting-read-bytes-base",
3296 [CGROUP_IO_WRITE_BYTES] = "io-accounting-write-bytes-base",
3297 [CGROUP_IO_READ_OPERATIONS] = "io-accounting-read-operations-base",
3298 [CGROUP_IO_WRITE_OPERATIONS] = "io-accounting-write-operations-base",
3299};
3300
3301static const char *const io_accounting_metric_field_last[_CGROUP_IO_ACCOUNTING_METRIC_MAX] = {
3302 [CGROUP_IO_READ_BYTES] = "io-accounting-read-bytes-last",
3303 [CGROUP_IO_WRITE_BYTES] = "io-accounting-write-bytes-last",
3304 [CGROUP_IO_READ_OPERATIONS] = "io-accounting-read-operations-last",
3305 [CGROUP_IO_WRITE_OPERATIONS] = "io-accounting-write-operations-last",
3306};
3307
6b78f9b4 3308int unit_serialize(Unit *u, FILE *f, FDSet *fds, bool serialize_jobs) {
6b659ed8 3309 CGroupIPAccountingMetric m;
a16e1123
LP
3310 int r;
3311
3312 assert(u);
3313 assert(f);
3314 assert(fds);
3315
9bdb98c5 3316 if (unit_can_serialize(u)) {
9bdb98c5 3317 r = UNIT_VTABLE(u)->serialize(u, f, fds);
613b411c
LP
3318 if (r < 0)
3319 return r;
e0209d83
MS
3320 }
3321
d68c645b 3322 (void) serialize_dual_timestamp(f, "state-change-timestamp", &u->state_change_timestamp);
a483fb59 3323
d68c645b
LP
3324 (void) serialize_dual_timestamp(f, "inactive-exit-timestamp", &u->inactive_exit_timestamp);
3325 (void) serialize_dual_timestamp(f, "active-enter-timestamp", &u->active_enter_timestamp);
3326 (void) serialize_dual_timestamp(f, "active-exit-timestamp", &u->active_exit_timestamp);
3327 (void) serialize_dual_timestamp(f, "inactive-enter-timestamp", &u->inactive_enter_timestamp);
a483fb59 3328
d68c645b
LP
3329 (void) serialize_dual_timestamp(f, "condition-timestamp", &u->condition_timestamp);
3330 (void) serialize_dual_timestamp(f, "assert-timestamp", &u->assert_timestamp);
2791a8f8 3331
ac155bb8 3332 if (dual_timestamp_is_set(&u->condition_timestamp))
d68c645b 3333 (void) serialize_bool(f, "condition-result", u->condition_result);
10717a1a 3334
59fccdc5 3335 if (dual_timestamp_is_set(&u->assert_timestamp))
d68c645b 3336 (void) serialize_bool(f, "assert-result", u->assert_result);
59fccdc5 3337
d68c645b
LP
3338 (void) serialize_bool(f, "transient", u->transient);
3339 (void) serialize_bool(f, "in-audit", u->in_audit);
fe700f46 3340
d68c645b
LP
3341 (void) serialize_bool(f, "exported-invocation-id", u->exported_invocation_id);
3342 (void) serialize_bool(f, "exported-log-level-max", u->exported_log_level_max);
3343 (void) serialize_bool(f, "exported-log-extra-fields", u->exported_log_extra_fields);
3344 (void) serialize_bool(f, "exported-log-rate-limit-interval", u->exported_log_rate_limit_interval);
3345 (void) serialize_bool(f, "exported-log-rate-limit-burst", u->exported_log_rate_limit_burst);
0e699122 3346
d68c645b 3347 (void) serialize_item_format(f, "cpu-usage-base", "%" PRIu64, u->cpu_usage_base);
fe700f46 3348 if (u->cpu_usage_last != NSEC_INFINITY)
d68c645b 3349 (void) serialize_item_format(f, "cpu-usage-last", "%" PRIu64, u->cpu_usage_last);
c2756a68 3350
afcfaa69
LP
3351 if (u->oom_kill_last > 0)
3352 (void) serialize_item_format(f, "oom-kill-last", "%" PRIu64, u->oom_kill_last);
3353
fbe14fc9
LP
3354 for (CGroupIOAccountingMetric im = 0; im < _CGROUP_IO_ACCOUNTING_METRIC_MAX; im++) {
3355 (void) serialize_item_format(f, io_accounting_metric_field_base[im], "%" PRIu64, u->io_accounting_base[im]);
3356
3357 if (u->io_accounting_last[im] != UINT64_MAX)
3358 (void) serialize_item_format(f, io_accounting_metric_field_last[im], "%" PRIu64, u->io_accounting_last[im]);
3359 }
3360
c2756a68 3361 if (u->cgroup_path)
d68c645b
LP
3362 (void) serialize_item(f, "cgroup", u->cgroup_path);
3363
3364 (void) serialize_bool(f, "cgroup-realized", u->cgroup_realized);
3365 (void) serialize_cgroup_mask(f, "cgroup-realized-mask", u->cgroup_realized_mask);
3366 (void) serialize_cgroup_mask(f, "cgroup-enabled-mask", u->cgroup_enabled_mask);
3367 (void) serialize_cgroup_mask(f, "cgroup-invalidated-mask", u->cgroup_invalidated_mask);
c2756a68 3368
00d9ef85 3369 if (uid_is_valid(u->ref_uid))
d68c645b 3370 (void) serialize_item_format(f, "ref-uid", UID_FMT, u->ref_uid);
00d9ef85 3371 if (gid_is_valid(u->ref_gid))
d68c645b 3372 (void) serialize_item_format(f, "ref-gid", GID_FMT, u->ref_gid);
00d9ef85 3373
4b58153d 3374 if (!sd_id128_is_null(u->invocation_id))
d68c645b 3375 (void) serialize_item_format(f, "invocation-id", SD_ID128_FORMAT_STR, SD_ID128_FORMAT_VAL(u->invocation_id));
4b58153d 3376
05a98afd
LP
3377 bus_track_serialize(u->bus_track, f, "ref");
3378
6b659ed8
LP
3379 for (m = 0; m < _CGROUP_IP_ACCOUNTING_METRIC_MAX; m++) {
3380 uint64_t v;
3381
3382 r = unit_get_ip_accounting(u, m, &v);
3383 if (r >= 0)
d68c645b 3384 (void) serialize_item_format(f, ip_accounting_metric_field[m], "%" PRIu64, v);
6b659ed8
LP
3385 }
3386
613b411c
LP
3387 if (serialize_jobs) {
3388 if (u->job) {
d68c645b 3389 fputs("job\n", f);
05a98afd 3390 job_serialize(u->job, f);
613b411c
LP
3391 }
3392
3393 if (u->nop_job) {
d68c645b 3394 fputs("job\n", f);
05a98afd 3395 job_serialize(u->nop_job, f);
613b411c
LP
3396 }
3397 }
3398
a16e1123
LP
3399 /* End marker */
3400 fputc('\n', f);
3401 return 0;
3402}
3403
b17c9620
LP
3404static int unit_deserialize_job(Unit *u, FILE *f) {
3405 _cleanup_(job_freep) Job *j = NULL;
3406 int r;
3407
3408 assert(u);
3409 assert(f);
3410
3411 j = job_new_raw(u);
3412 if (!j)
3413 return log_oom();
3414
3415 r = job_deserialize(j, f);
3416 if (r < 0)
3417 return r;
3418
3419 r = job_install_deserialized(j);
3420 if (r < 0)
3421 return r;
3422
3423 TAKE_PTR(j);
3424 return 0;
3425}
3426
a16e1123
LP
3427int unit_deserialize(Unit *u, FILE *f, FDSet *fds) {
3428 int r;
3429
3430 assert(u);
3431 assert(f);
3432 assert(fds);
3433
a16e1123 3434 for (;;) {
8948b341 3435 _cleanup_free_ char *line = NULL;
8948b341 3436 char *l, *v;
83f18c91 3437 ssize_t m;
a16e1123
LP
3438 size_t k;
3439
8948b341
LP
3440 r = read_line(f, LONG_LINE_MAX, &line);
3441 if (r < 0)
3442 return log_error_errno(r, "Failed to read serialization line: %m");
3443 if (r == 0) /* eof */
3444 break;
a16e1123
LP
3445
3446 l = strstrip(line);
8948b341 3447 if (isempty(l)) /* End marker */
a483fb59 3448 break;
a16e1123
LP
3449
3450 k = strcspn(l, "=");
3451
3452 if (l[k] == '=') {
3453 l[k] = 0;
3454 v = l+k+1;
3455 } else
3456 v = l+k;
3457
cca098b0 3458 if (streq(l, "job")) {
39a18c60 3459 if (v[0] == '\0') {
b17c9620
LP
3460 /* New-style serialized job */
3461 r = unit_deserialize_job(u, f);
3462 if (r < 0)
e0209d83 3463 return r;
b17c9620 3464 } else /* Legacy for pre-44 */
ed10fa8c 3465 log_unit_warning(u, "Update from too old systemd versions are unsupported, cannot deserialize job: %s", v);
cca098b0 3466 continue;
a483fb59 3467 } else if (streq(l, "state-change-timestamp")) {
d68c645b 3468 (void) deserialize_dual_timestamp(v, &u->state_change_timestamp);
a483fb59 3469 continue;
8aaf019b 3470 } else if (streq(l, "inactive-exit-timestamp")) {
d68c645b 3471 (void) deserialize_dual_timestamp(v, &u->inactive_exit_timestamp);
8aaf019b
LP
3472 continue;
3473 } else if (streq(l, "active-enter-timestamp")) {
d68c645b 3474 (void) deserialize_dual_timestamp(v, &u->active_enter_timestamp);
8aaf019b
LP
3475 continue;
3476 } else if (streq(l, "active-exit-timestamp")) {
d68c645b 3477 (void) deserialize_dual_timestamp(v, &u->active_exit_timestamp);
8aaf019b
LP
3478 continue;
3479 } else if (streq(l, "inactive-enter-timestamp")) {
d68c645b 3480 (void) deserialize_dual_timestamp(v, &u->inactive_enter_timestamp);
8aaf019b 3481 continue;
2791a8f8 3482 } else if (streq(l, "condition-timestamp")) {
d68c645b 3483 (void) deserialize_dual_timestamp(v, &u->condition_timestamp);
2791a8f8 3484 continue;
59fccdc5 3485 } else if (streq(l, "assert-timestamp")) {
d68c645b 3486 (void) deserialize_dual_timestamp(v, &u->assert_timestamp);
59fccdc5 3487 continue;
2791a8f8 3488 } else if (streq(l, "condition-result")) {
2791a8f8 3489
e911de99
LP
3490 r = parse_boolean(v);
3491 if (r < 0)
f2341e0a 3492 log_unit_debug(u, "Failed to parse condition result value %s, ignoring.", v);
2791a8f8 3493 else
e911de99 3494 u->condition_result = r;
efbac6d2
LP
3495
3496 continue;
c2756a68 3497
59fccdc5 3498 } else if (streq(l, "assert-result")) {
59fccdc5 3499
e911de99
LP
3500 r = parse_boolean(v);
3501 if (r < 0)
f2341e0a 3502 log_unit_debug(u, "Failed to parse assert result value %s, ignoring.", v);
59fccdc5 3503 else
e911de99 3504 u->assert_result = r;
59fccdc5
LP
3505
3506 continue;
3507
c2756a68 3508 } else if (streq(l, "transient")) {
c2756a68 3509
e911de99
LP
3510 r = parse_boolean(v);
3511 if (r < 0)
f2341e0a 3512 log_unit_debug(u, "Failed to parse transient bool %s, ignoring.", v);
c2756a68 3513 else
e911de99 3514 u->transient = r;
c2756a68
LP
3515
3516 continue;
e911de99 3517
0e699122
LP
3518 } else if (streq(l, "in-audit")) {
3519
3520 r = parse_boolean(v);
3521 if (r < 0)
3522 log_unit_debug(u, "Failed to parse in-audit bool %s, ignoring.", v);
3523 else
3524 u->in_audit = r;
3525
3526 continue;
3527
d3070fbd
LP
3528 } else if (streq(l, "exported-invocation-id")) {
3529
3530 r = parse_boolean(v);
3531 if (r < 0)
3532 log_unit_debug(u, "Failed to parse exported invocation ID bool %s, ignoring.", v);
3533 else
3534 u->exported_invocation_id = r;
3535
3536 continue;
3537
3538 } else if (streq(l, "exported-log-level-max")) {
3539
3540 r = parse_boolean(v);
3541 if (r < 0)
3542 log_unit_debug(u, "Failed to parse exported log level max bool %s, ignoring.", v);
3543 else
3544 u->exported_log_level_max = r;
3545
3546 continue;
3547
3548 } else if (streq(l, "exported-log-extra-fields")) {
3549
3550 r = parse_boolean(v);
3551 if (r < 0)
3552 log_unit_debug(u, "Failed to parse exported log extra fields bool %s, ignoring.", v);
3553 else
3554 u->exported_log_extra_fields = r;
3555
3556 continue;
3557
90fc172e
AZ
3558 } else if (streq(l, "exported-log-rate-limit-interval")) {
3559
3560 r = parse_boolean(v);
3561 if (r < 0)
3562 log_unit_debug(u, "Failed to parse exported log rate limit interval %s, ignoring.", v);
3563 else
3564 u->exported_log_rate_limit_interval = r;
3565
3566 continue;
3567
3568 } else if (streq(l, "exported-log-rate-limit-burst")) {
3569
3570 r = parse_boolean(v);
3571 if (r < 0)
3572 log_unit_debug(u, "Failed to parse exported log rate limit burst %s, ignoring.", v);
3573 else
3574 u->exported_log_rate_limit_burst = r;
3575
3576 continue;
3577
fe700f46 3578 } else if (STR_IN_SET(l, "cpu-usage-base", "cpuacct-usage-base")) {
5ad096b3 3579
66ebf6c0 3580 r = safe_atou64(v, &u->cpu_usage_base);
5ad096b3 3581 if (r < 0)
fe700f46
LP
3582 log_unit_debug(u, "Failed to parse CPU usage base %s, ignoring.", v);
3583
3584 continue;
3585
3586 } else if (streq(l, "cpu-usage-last")) {
3587
3588 r = safe_atou64(v, &u->cpu_usage_last);
3589 if (r < 0)
3590 log_unit_debug(u, "Failed to read CPU usage last %s, ignoring.", v);
5ad096b3 3591
0f908397 3592 continue;
4e595329 3593
afcfaa69
LP
3594 } else if (streq(l, "oom-kill-last")) {
3595
3596 r = safe_atou64(v, &u->oom_kill_last);
3597 if (r < 0)
3598 log_unit_debug(u, "Failed to read OOM kill last %s, ignoring.", v);
3599
3600 continue;
3601
e911de99 3602 } else if (streq(l, "cgroup")) {
72673e86 3603
e911de99
LP
3604 r = unit_set_cgroup_path(u, v);
3605 if (r < 0)
f2341e0a 3606 log_unit_debug_errno(u, r, "Failed to set cgroup path %s, ignoring: %m", v);
4e595329 3607
efdb0237 3608 (void) unit_watch_cgroup(u);
afcfaa69 3609 (void) unit_watch_cgroup_memory(u);
efdb0237 3610
de1d4f9b
WF
3611 continue;
3612 } else if (streq(l, "cgroup-realized")) {
3613 int b;
3614
3615 b = parse_boolean(v);
3616 if (b < 0)
3617 log_unit_debug(u, "Failed to parse cgroup-realized bool %s, ignoring.", v);
3618 else
3619 u->cgroup_realized = b;
3620
c2756a68 3621 continue;
00d9ef85 3622
8b108bd0
FB
3623 } else if (streq(l, "cgroup-realized-mask")) {
3624
3625 r = cg_mask_from_string(v, &u->cgroup_realized_mask);
3626 if (r < 0)
3627 log_unit_debug(u, "Failed to parse cgroup-realized-mask %s, ignoring.", v);
3628 continue;
3629
3630 } else if (streq(l, "cgroup-enabled-mask")) {
3631
3632 r = cg_mask_from_string(v, &u->cgroup_enabled_mask);
3633 if (r < 0)
3634 log_unit_debug(u, "Failed to parse cgroup-enabled-mask %s, ignoring.", v);
3635 continue;
3636
17f14955 3637 } else if (streq(l, "cgroup-invalidated-mask")) {
906c06f6 3638
17f14955 3639 r = cg_mask_from_string(v, &u->cgroup_invalidated_mask);
906c06f6 3640 if (r < 0)
17f14955 3641 log_unit_debug(u, "Failed to parse cgroup-invalidated-mask %s, ignoring.", v);
906c06f6
DM
3642 continue;
3643
00d9ef85
LP
3644 } else if (streq(l, "ref-uid")) {
3645 uid_t uid;
3646
3647 r = parse_uid(v, &uid);
3648 if (r < 0)
3649 log_unit_debug(u, "Failed to parse referenced UID %s, ignoring.", v);
3650 else
3651 unit_ref_uid_gid(u, uid, GID_INVALID);
3652
3653 continue;
3654
3655 } else if (streq(l, "ref-gid")) {
3656 gid_t gid;
3657
3658 r = parse_gid(v, &gid);
3659 if (r < 0)
3660 log_unit_debug(u, "Failed to parse referenced GID %s, ignoring.", v);
3661 else
3662 unit_ref_uid_gid(u, UID_INVALID, gid);
3663
5f616d5f
LP
3664 continue;
3665
05a98afd
LP
3666 } else if (streq(l, "ref")) {
3667
3668 r = strv_extend(&u->deserialized_refs, v);
3669 if (r < 0)
d68c645b 3670 return log_oom();
05a98afd 3671
4b58153d
LP
3672 continue;
3673 } else if (streq(l, "invocation-id")) {
3674 sd_id128_t id;
3675
3676 r = sd_id128_from_string(v, &id);
3677 if (r < 0)
3678 log_unit_debug(u, "Failed to parse invocation id %s, ignoring.", v);
3679 else {
3680 r = unit_set_invocation_id(u, id);
3681 if (r < 0)
3682 log_unit_warning_errno(u, r, "Failed to set invocation ID for unit: %m");
3683 }
3684
00d9ef85 3685 continue;
8aaf019b 3686 }
cca098b0 3687
6b659ed8 3688 /* Check if this is an IP accounting metric serialization field */
83f18c91
LP
3689 m = string_table_lookup(ip_accounting_metric_field, ELEMENTSOF(ip_accounting_metric_field), l);
3690 if (m >= 0) {
6b659ed8
LP
3691 uint64_t c;
3692
3693 r = safe_atou64(v, &c);
3694 if (r < 0)
3695 log_unit_debug(u, "Failed to parse IP accounting value %s, ignoring.", v);
3696 else
3697 u->ip_accounting_extra[m] = c;
3698 continue;
3699 }
3700
fbe14fc9
LP
3701 m = string_table_lookup(io_accounting_metric_field_base, ELEMENTSOF(io_accounting_metric_field_base), l);
3702 if (m >= 0) {
3703 uint64_t c;
3704
3705 r = safe_atou64(v, &c);
3706 if (r < 0)
3707 log_unit_debug(u, "Failed to parse IO accounting base value %s, ignoring.", v);
3708 else
3709 u->io_accounting_base[m] = c;
3710 continue;
3711 }
3712
3713 m = string_table_lookup(io_accounting_metric_field_last, ELEMENTSOF(io_accounting_metric_field_last), l);
3714 if (m >= 0) {
3715 uint64_t c;
3716
3717 r = safe_atou64(v, &c);
3718 if (r < 0)
3719 log_unit_debug(u, "Failed to parse IO accounting last value %s, ignoring.", v);
3720 else
3721 u->io_accounting_last[m] = c;
3722 continue;
3723 }
3724
9bdb98c5 3725 if (unit_can_serialize(u)) {
e8a565cb
YW
3726 r = exec_runtime_deserialize_compat(u, l, v, fds);
3727 if (r < 0) {
3728 log_unit_warning(u, "Failed to deserialize runtime parameter '%s', ignoring.", l);
3729 continue;
9bdb98c5
LP
3730 }
3731
e8a565cb
YW
3732 /* Returns positive if key was handled by the call */
3733 if (r > 0)
3734 continue;
3735
9bdb98c5 3736 r = UNIT_VTABLE(u)->deserialize_item(u, l, v, fds);
613b411c 3737 if (r < 0)
f2341e0a 3738 log_unit_warning(u, "Failed to deserialize unit parameter '%s', ignoring.", l);
613b411c 3739 }
a16e1123 3740 }
a483fb59
LP
3741
3742 /* Versions before 228 did not carry a state change timestamp. In this case, take the current time. This is
3743 * useful, so that timeouts based on this timestamp don't trigger too early, and is in-line with the logic from
1f133e0d 3744 * before 228 where the base for timeouts was not persistent across reboots. */
a483fb59
LP
3745
3746 if (!dual_timestamp_is_set(&u->state_change_timestamp))
3747 dual_timestamp_get(&u->state_change_timestamp);
3748
58d83430
LP
3749 /* Let's make sure that everything that is deserialized also gets any potential new cgroup settings applied
3750 * after we are done. For that we invalidate anything already realized, so that we can realize it again. */
3751 unit_invalidate_cgroup(u, _CGROUP_MASK_ALL);
3752 unit_invalidate_cgroup_bpf(u);
3753
a483fb59 3754 return 0;
a16e1123
LP
3755}
3756
8948b341
LP
3757int unit_deserialize_skip(FILE *f) {
3758 int r;
07429866
ZJS
3759 assert(f);
3760
3761 /* Skip serialized data for this unit. We don't know what it is. */
3762
3763 for (;;) {
8948b341
LP
3764 _cleanup_free_ char *line = NULL;
3765 char *l;
07429866 3766
8948b341
LP
3767 r = read_line(f, LONG_LINE_MAX, &line);
3768 if (r < 0)
3769 return log_error_errno(r, "Failed to read serialization line: %m");
3770 if (r == 0)
3771 return 0;
07429866 3772
07429866
ZJS
3773 l = strstrip(line);
3774
3775 /* End marker */
3776 if (isempty(l))
8948b341 3777 return 1;
07429866
ZJS
3778 }
3779}
3780
eef85c4a 3781int unit_add_node_dependency(Unit *u, const char *what, bool wants, UnitDependency dep, UnitDependencyMask mask) {
6e2ef85b 3782 Unit *device;
68eda4bd 3783 _cleanup_free_ char *e = NULL;
6e2ef85b
LP
3784 int r;
3785
3786 assert(u);
3787
6e2ef85b 3788 /* Adds in links to the device node that this unit is based on */
47bc12e1
LP
3789 if (isempty(what))
3790 return 0;
6e2ef85b 3791
8407a5d0 3792 if (!is_device_path(what))
6e2ef85b
LP
3793 return 0;
3794
47bc12e1
LP
3795 /* When device units aren't supported (such as in a
3796 * container), don't create dependencies on them. */
1c2e9646 3797 if (!unit_type_supported(UNIT_DEVICE))
47bc12e1
LP
3798 return 0;
3799
7410616c
LP
3800 r = unit_name_from_path(what, ".device", &e);
3801 if (r < 0)
3802 return r;
6e2ef85b 3803
ac155bb8 3804 r = manager_load_unit(u->manager, e, NULL, NULL, &device);
6e2ef85b
LP
3805 if (r < 0)
3806 return r;
3807
ebc8968b
FB
3808 if (dep == UNIT_REQUIRES && device_shall_be_bound_by(device, u))
3809 dep = UNIT_BINDS_TO;
3810
9d06297e 3811 r = unit_add_two_dependencies(u, UNIT_AFTER,
463d0d15 3812 MANAGER_IS_SYSTEM(u->manager) ? dep : UNIT_WANTS,
eef85c4a 3813 device, true, mask);
faa368e3 3814 if (r < 0)
6e2ef85b
LP
3815 return r;
3816
faa368e3 3817 if (wants) {
eef85c4a 3818 r = unit_add_dependency(device, UNIT_WANTS, u, false, mask);
faa368e3 3819 if (r < 0)
6e2ef85b 3820 return r;
faa368e3 3821 }
6e2ef85b
LP
3822
3823 return 0;
3824}
a16e1123 3825
be847e82 3826int unit_coldplug(Unit *u) {
05a98afd
LP
3827 int r = 0, q;
3828 char **i;
cca098b0
LP
3829
3830 assert(u);
3831
f0831ed2 3832 /* Make sure we don't enter a loop, when coldplugging recursively. */
f78f265f
LP
3833 if (u->coldplugged)
3834 return 0;
3835
3836 u->coldplugged = true;
3837
05a98afd
LP
3838 STRV_FOREACH(i, u->deserialized_refs) {
3839 q = bus_unit_track_add_name(u, *i);
3840 if (q < 0 && r >= 0)
3841 r = q;
3842 }
3843 u->deserialized_refs = strv_free(u->deserialized_refs);
cca098b0 3844
05a98afd
LP
3845 if (UNIT_VTABLE(u)->coldplug) {
3846 q = UNIT_VTABLE(u)->coldplug(u);
3847 if (q < 0 && r >= 0)
3848 r = q;
3849 }
5a6158b6 3850
05a98afd
LP
3851 if (u->job) {
3852 q = job_coldplug(u->job);
3853 if (q < 0 && r >= 0)
3854 r = q;
3855 }
cca098b0 3856
05a98afd 3857 return r;
cca098b0
LP
3858}
3859
f0831ed2
LP
3860void unit_catchup(Unit *u) {
3861 assert(u);
3862
3863 if (UNIT_VTABLE(u)->catchup)
3864 UNIT_VTABLE(u)->catchup(u);
3865}
3866
ba25d39e 3867static bool fragment_mtime_newer(const char *path, usec_t mtime, bool path_masked) {
21b95806
ZJS
3868 struct stat st;
3869
3870 if (!path)
3871 return false;
3872
77969722
LP
3873 /* If the source is some virtual kernel file system, then we assume we watch it anyway, and hence pretend we
3874 * are never out-of-date. */
3875 if (PATH_STARTSWITH_SET(path, "/proc", "/sys"))
3876 return false;
3877
21b95806
ZJS
3878 if (stat(path, &st) < 0)
3879 /* What, cannot access this anymore? */
3880 return true;
3881
ba25d39e
ZJS
3882 if (path_masked)
3883 /* For masked files check if they are still so */
3884 return !null_or_empty(&st);
3885 else
3a8db9fe 3886 /* For non-empty files check the mtime */
87ec20ef 3887 return timespec_load(&st.st_mtim) > mtime;
21b95806
ZJS
3888
3889 return false;
3890}
3891
45fb0699 3892bool unit_need_daemon_reload(Unit *u) {
ae7a7182
OS
3893 _cleanup_strv_free_ char **t = NULL;
3894 char **path;
1b64d026 3895
45fb0699
LP
3896 assert(u);
3897
ba25d39e
ZJS
3898 /* For unit files, we allow masking… */
3899 if (fragment_mtime_newer(u->fragment_path, u->fragment_mtime,
3900 u->load_state == UNIT_MASKED))
21b95806 3901 return true;
5f4b19f4 3902
ba25d39e
ZJS
3903 /* Source paths should not be masked… */
3904 if (fragment_mtime_newer(u->source_path, u->source_mtime, false))
ab932a62 3905 return true;
ae7a7182 3906
19a44dfe
LR
3907 if (u->load_state == UNIT_LOADED)
3908 (void) unit_find_dropin_paths(u, &t);
ab932a62
LP
3909 if (!strv_equal(u->dropin_paths, t))
3910 return true;
6d10d308 3911
ba25d39e 3912 /* … any drop-ins that are masked are simply omitted from the list. */
ab932a62 3913 STRV_FOREACH(path, u->dropin_paths)
ba25d39e 3914 if (fragment_mtime_newer(*path, u->dropin_mtime, false))
ab932a62 3915 return true;
21b95806 3916
ab932a62 3917 return false;
45fb0699
LP
3918}
3919
fdf20a31 3920void unit_reset_failed(Unit *u) {
5632e374
LP
3921 assert(u);
3922
fdf20a31
MM
3923 if (UNIT_VTABLE(u)->reset_failed)
3924 UNIT_VTABLE(u)->reset_failed(u);
6bf0f408
LP
3925
3926 RATELIMIT_RESET(u->start_limit);
3927 u->start_limit_hit = false;
5632e374
LP
3928}
3929
a7f241db
LP
3930Unit *unit_following(Unit *u) {
3931 assert(u);
3932
3933 if (UNIT_VTABLE(u)->following)
3934 return UNIT_VTABLE(u)->following(u);
3935
3936 return NULL;
3937}
3938
31afa0a4 3939bool unit_stop_pending(Unit *u) {
18ffdfda
LP
3940 assert(u);
3941
31afa0a4
LP
3942 /* This call does check the current state of the unit. It's
3943 * hence useful to be called from state change calls of the
3944 * unit itself, where the state isn't updated yet. This is
3945 * different from unit_inactive_or_pending() which checks both
3946 * the current state and for a queued job. */
18ffdfda 3947
31afa0a4
LP
3948 return u->job && u->job->type == JOB_STOP;
3949}
3950
3951bool unit_inactive_or_pending(Unit *u) {
3952 assert(u);
3953
3954 /* Returns true if the unit is inactive or going down */
18ffdfda 3955
d956ac29
LP
3956 if (UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(u)))
3957 return true;
3958
31afa0a4 3959 if (unit_stop_pending(u))
18ffdfda
LP
3960 return true;
3961
3962 return false;
3963}
3964
31afa0a4 3965bool unit_active_or_pending(Unit *u) {
f976f3f6
LP
3966 assert(u);
3967
f60c2665 3968 /* Returns true if the unit is active or going up */
f976f3f6
LP
3969
3970 if (UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(u)))
3971 return true;
3972
ac155bb8 3973 if (u->job &&
3742095b 3974 IN_SET(u->job->type, JOB_START, JOB_RELOAD_OR_START, JOB_RESTART))
f976f3f6
LP
3975 return true;
3976
3977 return false;
3978}
3979
deb4e708
MK
3980bool unit_will_restart(Unit *u) {
3981 assert(u);
3982
3983 if (!UNIT_VTABLE(u)->will_restart)
3984 return false;
3985
3986 return UNIT_VTABLE(u)->will_restart(u);
3987}
3988
718db961 3989int unit_kill(Unit *u, KillWho w, int signo, sd_bus_error *error) {
8a0867d6
LP
3990 assert(u);
3991 assert(w >= 0 && w < _KILL_WHO_MAX);
6eb7c172 3992 assert(SIGNAL_VALID(signo));
8a0867d6 3993
8a0867d6 3994 if (!UNIT_VTABLE(u)->kill)
15411c0c 3995 return -EOPNOTSUPP;
8a0867d6 3996
c74f17d9 3997 return UNIT_VTABLE(u)->kill(u, w, signo, error);
8a0867d6
LP
3998}
3999
82659fd7 4000static Set *unit_pid_set(pid_t main_pid, pid_t control_pid) {
af4fa99d 4001 _cleanup_set_free_ Set *pid_set = NULL;
82659fd7
LP
4002 int r;
4003
d5099efc 4004 pid_set = set_new(NULL);
82659fd7
LP
4005 if (!pid_set)
4006 return NULL;
4007
4008 /* Exclude the main/control pids from being killed via the cgroup */
4009 if (main_pid > 0) {
fea72cc0 4010 r = set_put(pid_set, PID_TO_PTR(main_pid));
82659fd7 4011 if (r < 0)
95f14a3e 4012 return NULL;
82659fd7
LP
4013 }
4014
4015 if (control_pid > 0) {
fea72cc0 4016 r = set_put(pid_set, PID_TO_PTR(control_pid));
82659fd7 4017 if (r < 0)
95f14a3e 4018 return NULL;
82659fd7
LP
4019 }
4020
95f14a3e 4021 return TAKE_PTR(pid_set);
82659fd7
LP
4022}
4023
d91c34f2
LP
4024int unit_kill_common(
4025 Unit *u,
4026 KillWho who,
4027 int signo,
4028 pid_t main_pid,
4029 pid_t control_pid,
718db961 4030 sd_bus_error *error) {
d91c34f2 4031
814cc562 4032 int r = 0;
ac5e3a50 4033 bool killed = false;
814cc562 4034
ac5e3a50 4035 if (IN_SET(who, KILL_MAIN, KILL_MAIN_FAIL)) {
814cc562 4036 if (main_pid < 0)
7358dc02 4037 return sd_bus_error_setf(error, BUS_ERROR_NO_SUCH_PROCESS, "%s units have no main processes", unit_type_to_string(u->type));
52f448c3 4038 else if (main_pid == 0)
7358dc02 4039 return sd_bus_error_set_const(error, BUS_ERROR_NO_SUCH_PROCESS, "No main process to kill");
814cc562
MS
4040 }
4041
ac5e3a50 4042 if (IN_SET(who, KILL_CONTROL, KILL_CONTROL_FAIL)) {
814cc562 4043 if (control_pid < 0)
7358dc02 4044 return sd_bus_error_setf(error, BUS_ERROR_NO_SUCH_PROCESS, "%s units have no control processes", unit_type_to_string(u->type));
52f448c3 4045 else if (control_pid == 0)
7358dc02 4046 return sd_bus_error_set_const(error, BUS_ERROR_NO_SUCH_PROCESS, "No control process to kill");
814cc562
MS
4047 }
4048
ac5e3a50
JS
4049 if (IN_SET(who, KILL_CONTROL, KILL_CONTROL_FAIL, KILL_ALL, KILL_ALL_FAIL))
4050 if (control_pid > 0) {
814cc562
MS
4051 if (kill(control_pid, signo) < 0)
4052 r = -errno;
ac5e3a50
JS
4053 else
4054 killed = true;
4055 }
814cc562 4056
ac5e3a50
JS
4057 if (IN_SET(who, KILL_MAIN, KILL_MAIN_FAIL, KILL_ALL, KILL_ALL_FAIL))
4058 if (main_pid > 0) {
814cc562
MS
4059 if (kill(main_pid, signo) < 0)
4060 r = -errno;
ac5e3a50
JS
4061 else
4062 killed = true;
4063 }
814cc562 4064
ac5e3a50 4065 if (IN_SET(who, KILL_ALL, KILL_ALL_FAIL) && u->cgroup_path) {
814cc562
MS
4066 _cleanup_set_free_ Set *pid_set = NULL;
4067 int q;
4068
82659fd7
LP
4069 /* Exclude the main/control pids from being killed via the cgroup */
4070 pid_set = unit_pid_set(main_pid, control_pid);
814cc562
MS
4071 if (!pid_set)
4072 return -ENOMEM;
4073
1d98fef1 4074 q = cg_kill_recursive(SYSTEMD_CGROUP_CONTROLLER, u->cgroup_path, signo, 0, pid_set, NULL, NULL);
4c701096 4075 if (q < 0 && !IN_SET(q, -EAGAIN, -ESRCH, -ENOENT))
814cc562 4076 r = q;
ac5e3a50
JS
4077 else
4078 killed = true;
814cc562
MS
4079 }
4080
201f0c91 4081 if (r == 0 && !killed && IN_SET(who, KILL_ALL_FAIL, KILL_CONTROL_FAIL))
ac5e3a50
JS
4082 return -ESRCH;
4083
814cc562
MS
4084 return r;
4085}
4086
6210e7fc
LP
4087int unit_following_set(Unit *u, Set **s) {
4088 assert(u);
4089 assert(s);
4090
4091 if (UNIT_VTABLE(u)->following_set)
4092 return UNIT_VTABLE(u)->following_set(u, s);
4093
4094 *s = NULL;
4095 return 0;
4096}
4097
a4375746 4098UnitFileState unit_get_unit_file_state(Unit *u) {
0ec0deaa
LP
4099 int r;
4100
a4375746
LP
4101 assert(u);
4102
0ec0deaa
LP
4103 if (u->unit_file_state < 0 && u->fragment_path) {
4104 r = unit_file_get_state(
463d0d15 4105 u->manager->unit_file_scope,
0ec0deaa 4106 NULL,
9ea3a0e7 4107 u->id,
0ec0deaa
LP
4108 &u->unit_file_state);
4109 if (r < 0)
4110 u->unit_file_state = UNIT_FILE_BAD;
4111 }
a4375746 4112
ac155bb8 4113 return u->unit_file_state;
a4375746
LP
4114}
4115
d2dc52db
LP
4116int unit_get_unit_file_preset(Unit *u) {
4117 assert(u);
4118
4119 if (u->unit_file_preset < 0 && u->fragment_path)
4120 u->unit_file_preset = unit_file_query_preset(
463d0d15 4121 u->manager->unit_file_scope,
0ec0deaa
LP
4122 NULL,
4123 basename(u->fragment_path));
d2dc52db
LP
4124
4125 return u->unit_file_preset;
4126}
4127
7f7d01ed 4128Unit* unit_ref_set(UnitRef *ref, Unit *source, Unit *target) {
57020a3a 4129 assert(ref);
7f7d01ed
ZJS
4130 assert(source);
4131 assert(target);
57020a3a 4132
7f7d01ed 4133 if (ref->target)
57020a3a
LP
4134 unit_ref_unset(ref);
4135
7f7d01ed
ZJS
4136 ref->source = source;
4137 ref->target = target;
4138 LIST_PREPEND(refs_by_target, target->refs_by_target, ref);
4139 return target;
57020a3a
LP
4140}
4141
4142void unit_ref_unset(UnitRef *ref) {
4143 assert(ref);
4144
7f7d01ed 4145 if (!ref->target)
57020a3a
LP
4146 return;
4147
b75102e5
LP
4148 /* We are about to drop a reference to the unit, make sure the garbage collection has a look at it as it might
4149 * be unreferenced now. */
7f7d01ed 4150 unit_add_to_gc_queue(ref->target);
b75102e5 4151
7f7d01ed
ZJS
4152 LIST_REMOVE(refs_by_target, ref->target->refs_by_target, ref);
4153 ref->source = ref->target = NULL;
57020a3a
LP
4154}
4155
29206d46
LP
4156static int user_from_unit_name(Unit *u, char **ret) {
4157
4158 static const uint8_t hash_key[] = {
4159 0x58, 0x1a, 0xaf, 0xe6, 0x28, 0x58, 0x4e, 0x96,
4160 0xb4, 0x4e, 0xf5, 0x3b, 0x8c, 0x92, 0x07, 0xec
4161 };
4162
4163 _cleanup_free_ char *n = NULL;
4164 int r;
4165
4166 r = unit_name_to_prefix(u->id, &n);
4167 if (r < 0)
4168 return r;
4169
4170 if (valid_user_group_name(n)) {
ae2a15bc 4171 *ret = TAKE_PTR(n);
29206d46
LP
4172 return 0;
4173 }
4174
4175 /* If we can't use the unit name as a user name, then let's hash it and use that */
4176 if (asprintf(ret, "_du%016" PRIx64, siphash24(n, strlen(n), hash_key)) < 0)
4177 return -ENOMEM;
4178
4179 return 0;
4180}
4181
598459ce
LP
4182int unit_patch_contexts(Unit *u) {
4183 CGroupContext *cc;
4184 ExecContext *ec;
cba6e062
LP
4185 unsigned i;
4186 int r;
4187
e06c73cc 4188 assert(u);
e06c73cc 4189
598459ce
LP
4190 /* Patch in the manager defaults into the exec and cgroup
4191 * contexts, _after_ the rest of the settings have been
4192 * initialized */
085afe36 4193
598459ce
LP
4194 ec = unit_get_exec_context(u);
4195 if (ec) {
4196 /* This only copies in the ones that need memory */
4197 for (i = 0; i < _RLIMIT_MAX; i++)
4198 if (u->manager->rlimit[i] && !ec->rlimit[i]) {
4199 ec->rlimit[i] = newdup(struct rlimit, u->manager->rlimit[i], 1);
4200 if (!ec->rlimit[i])
4201 return -ENOMEM;
4202 }
4203
463d0d15 4204 if (MANAGER_IS_USER(u->manager) &&
598459ce
LP
4205 !ec->working_directory) {
4206
4207 r = get_home_dir(&ec->working_directory);
4208 if (r < 0)
4209 return r;
4c08c824
LP
4210
4211 /* Allow user services to run, even if the
4212 * home directory is missing */
4213 ec->working_directory_missing_ok = true;
cba6e062
LP
4214 }
4215
598459ce 4216 if (ec->private_devices)
2cd0a735 4217 ec->capability_bounding_set &= ~((UINT64_C(1) << CAP_MKNOD) | (UINT64_C(1) << CAP_SYS_RAWIO));
502d704e
DH
4218
4219 if (ec->protect_kernel_modules)
4220 ec->capability_bounding_set &= ~(UINT64_C(1) << CAP_SYS_MODULE);
29206d46
LP
4221
4222 if (ec->dynamic_user) {
4223 if (!ec->user) {
4224 r = user_from_unit_name(u, &ec->user);
4225 if (r < 0)
4226 return r;
4227 }
4228
4229 if (!ec->group) {
4230 ec->group = strdup(ec->user);
4231 if (!ec->group)
4232 return -ENOMEM;
4233 }
4234
bf65b7e0
LP
4235 /* If the dynamic user option is on, let's make sure that the unit can't leave its
4236 * UID/GID around in the file system or on IPC objects. Hence enforce a strict
4237 * sandbox. */
63bb64a0 4238
29206d46 4239 ec->private_tmp = true;
00d9ef85 4240 ec->remove_ipc = true;
63bb64a0
LP
4241 ec->protect_system = PROTECT_SYSTEM_STRICT;
4242 if (ec->protect_home == PROTECT_HOME_NO)
4243 ec->protect_home = PROTECT_HOME_READ_ONLY;
bf65b7e0
LP
4244
4245 /* Make sure this service can neither benefit from SUID/SGID binaries nor create
4246 * them. */
4247 ec->no_new_privileges = true;
4248 ec->restrict_suid_sgid = true;
29206d46 4249 }
cba6e062
LP
4250 }
4251
598459ce 4252 cc = unit_get_cgroup_context(u);
fe65e88b 4253 if (cc && ec) {
f513e420 4254
fe65e88b 4255 if (ec->private_devices &&
598459ce
LP
4256 cc->device_policy == CGROUP_AUTO)
4257 cc->device_policy = CGROUP_CLOSED;
fe65e88b
YW
4258
4259 if (ec->root_image &&
4260 (cc->device_policy != CGROUP_AUTO || cc->device_allow)) {
4261
4262 /* When RootImage= is specified, the following devices are touched. */
4263 r = cgroup_add_device_allow(cc, "/dev/loop-control", "rw");
4264 if (r < 0)
4265 return r;
4266
4267 r = cgroup_add_device_allow(cc, "block-loop", "rwm");
4268 if (r < 0)
4269 return r;
4270
4271 r = cgroup_add_device_allow(cc, "block-blkext", "rwm");
4272 if (r < 0)
4273 return r;
4274 }
598459ce 4275 }
f1660f96 4276
cba6e062 4277 return 0;
e06c73cc
LP
4278}
4279
3ef63c31
LP
4280ExecContext *unit_get_exec_context(Unit *u) {
4281 size_t offset;
4282 assert(u);
4283
598459ce
LP
4284 if (u->type < 0)
4285 return NULL;
4286
3ef63c31
LP
4287 offset = UNIT_VTABLE(u)->exec_context_offset;
4288 if (offset <= 0)
4289 return NULL;
4290
4291 return (ExecContext*) ((uint8_t*) u + offset);
4292}
4293
718db961
LP
4294KillContext *unit_get_kill_context(Unit *u) {
4295 size_t offset;
4296 assert(u);
4297
598459ce
LP
4298 if (u->type < 0)
4299 return NULL;
4300
718db961
LP
4301 offset = UNIT_VTABLE(u)->kill_context_offset;
4302 if (offset <= 0)
4303 return NULL;
4304
4305 return (KillContext*) ((uint8_t*) u + offset);
4306}
4307
4ad49000
LP
4308CGroupContext *unit_get_cgroup_context(Unit *u) {
4309 size_t offset;
4310
598459ce
LP
4311 if (u->type < 0)
4312 return NULL;
4313
4ad49000
LP
4314 offset = UNIT_VTABLE(u)->cgroup_context_offset;
4315 if (offset <= 0)
4316 return NULL;
4317
4318 return (CGroupContext*) ((uint8_t*) u + offset);
4319}
4320
613b411c
LP
4321ExecRuntime *unit_get_exec_runtime(Unit *u) {
4322 size_t offset;
4323
598459ce
LP
4324 if (u->type < 0)
4325 return NULL;
4326
613b411c
LP
4327 offset = UNIT_VTABLE(u)->exec_runtime_offset;
4328 if (offset <= 0)
4329 return NULL;
4330
4331 return *(ExecRuntime**) ((uint8_t*) u + offset);
4332}
4333
2e59b241 4334static const char* unit_drop_in_dir(Unit *u, UnitWriteFlags flags) {
3f5e8115
LP
4335 assert(u);
4336
2e59b241 4337 if (UNIT_WRITE_FLAGS_NOOP(flags))
4f4afc88
LP
4338 return NULL;
4339
39591351
LP
4340 if (u->transient) /* Redirect drop-ins for transient units always into the transient directory. */
4341 return u->manager->lookup_paths.transient;
26d04f86 4342
2e59b241 4343 if (flags & UNIT_PERSISTENT)
4f4afc88 4344 return u->manager->lookup_paths.persistent_control;
26d04f86 4345
2e59b241
LP
4346 if (flags & UNIT_RUNTIME)
4347 return u->manager->lookup_paths.runtime_control;
4348
39591351 4349 return NULL;
71645aca
LP
4350}
4351
2e59b241
LP
4352char* unit_escape_setting(const char *s, UnitWriteFlags flags, char **buf) {
4353 char *ret = NULL;
4354
4355 if (!s)
4356 return NULL;
4357
4358 /* Escapes the input string as requested. Returns the escaped string. If 'buf' is specified then the allocated
4359 * return buffer pointer is also written to *buf, except if no escaping was necessary, in which case *buf is
4360 * set to NULL, and the input pointer is returned as-is. This means the return value always contains a properly
4361 * escaped version, but *buf when passed only contains a pointer if an allocation was necessary. If *buf is
4362 * not specified, then the return value always needs to be freed. Callers can use this to optimize memory
4363 * allocations. */
4364
4365 if (flags & UNIT_ESCAPE_SPECIFIERS) {
4366 ret = specifier_escape(s);
4367 if (!ret)
4368 return NULL;
4369
4370 s = ret;
4371 }
4372
4373 if (flags & UNIT_ESCAPE_C) {
4374 char *a;
4375
4376 a = cescape(s);
4377 free(ret);
4378 if (!a)
4379 return NULL;
4380
4381 ret = a;
4382 }
4383
4384 if (buf) {
4385 *buf = ret;
4386 return ret ?: (char*) s;
4387 }
4388
4389 return ret ?: strdup(s);
4390}
4391
4392char* unit_concat_strv(char **l, UnitWriteFlags flags) {
4393 _cleanup_free_ char *result = NULL;
4394 size_t n = 0, allocated = 0;
ae2a15bc 4395 char **i;
2e59b241
LP
4396
4397 /* Takes a list of strings, escapes them, and concatenates them. This may be used to format command lines in a
4398 * way suitable for ExecStart= stanzas */
4399
4400 STRV_FOREACH(i, l) {
4401 _cleanup_free_ char *buf = NULL;
4402 const char *p;
4403 size_t a;
4404 char *q;
4405
4406 p = unit_escape_setting(*i, flags, &buf);
4407 if (!p)
4408 return NULL;
4409
4410 a = (n > 0) + 1 + strlen(p) + 1; /* separating space + " + entry + " */
4411 if (!GREEDY_REALLOC(result, allocated, n + a + 1))
4412 return NULL;
4413
4414 q = result + n;
4415 if (n > 0)
4416 *(q++) = ' ';
4417
4418 *(q++) = '"';
4419 q = stpcpy(q, p);
4420 *(q++) = '"';
4421
4422 n += a;
4423 }
4424
4425 if (!GREEDY_REALLOC(result, allocated, n + 1))
4426 return NULL;
4427
4428 result[n] = 0;
4429
ae2a15bc 4430 return TAKE_PTR(result);
2e59b241
LP
4431}
4432
4433int unit_write_setting(Unit *u, UnitWriteFlags flags, const char *name, const char *data) {
4434 _cleanup_free_ char *p = NULL, *q = NULL, *escaped = NULL;
2a9a6f8a 4435 const char *dir, *wrapped;
26d04f86 4436 int r;
71645aca
LP
4437
4438 assert(u);
2e59b241
LP
4439 assert(name);
4440 assert(data);
4441
4442 if (UNIT_WRITE_FLAGS_NOOP(flags))
4443 return 0;
4444
4445 data = unit_escape_setting(data, flags, &escaped);
4446 if (!data)
4447 return -ENOMEM;
4448
4449 /* Prefix the section header. If we are writing this out as transient file, then let's suppress this if the
4450 * previous section header is the same */
4451
4452 if (flags & UNIT_PRIVATE) {
4453 if (!UNIT_VTABLE(u)->private_section)
4454 return -EINVAL;
4455
4456 if (!u->transient_file || u->last_section_private < 0)
4457 data = strjoina("[", UNIT_VTABLE(u)->private_section, "]\n", data);
4458 else if (u->last_section_private == 0)
4459 data = strjoina("\n[", UNIT_VTABLE(u)->private_section, "]\n", data);
4460 } else {
4461 if (!u->transient_file || u->last_section_private < 0)
4462 data = strjoina("[Unit]\n", data);
4463 else if (u->last_section_private > 0)
4464 data = strjoina("\n[Unit]\n", data);
4465 }
71645aca 4466
4f4afc88
LP
4467 if (u->transient_file) {
4468 /* When this is a transient unit file in creation, then let's not create a new drop-in but instead
4469 * write to the transient unit file. */
4470 fputs(data, u->transient_file);
4f4afc88 4471
2e59b241
LP
4472 if (!endswith(data, "\n"))
4473 fputc('\n', u->transient_file);
4474
4475 /* Remember which section we wrote this entry to */
4476 u->last_section_private = !!(flags & UNIT_PRIVATE);
8e2af478 4477 return 0;
2e59b241 4478 }
8e2af478 4479
2e59b241 4480 dir = unit_drop_in_dir(u, flags);
39591351
LP
4481 if (!dir)
4482 return -EINVAL;
71645aca 4483
2a9a6f8a 4484 wrapped = strjoina("# This is a drop-in unit file extension, created via \"systemctl set-property\"\n"
3f71dec5 4485 "# or an equivalent operation. Do not edit.\n",
2a9a6f8a
ZJS
4486 data,
4487 "\n");
e20b2a86 4488
815b09d3 4489 r = drop_in_file(dir, u->id, 50, name, &p, &q);
adb76a70
WC
4490 if (r < 0)
4491 return r;
4492
45639f1b 4493 (void) mkdir_p_label(p, 0755);
2a9a6f8a 4494 r = write_string_file_atomic_label(q, wrapped);
adb76a70
WC
4495 if (r < 0)
4496 return r;
4497
815b09d3 4498 r = strv_push(&u->dropin_paths, q);
adb76a70
WC
4499 if (r < 0)
4500 return r;
815b09d3 4501 q = NULL;
adb76a70 4502
adb76a70
WC
4503 strv_uniq(u->dropin_paths);
4504
4505 u->dropin_mtime = now(CLOCK_REALTIME);
4506
4507 return 0;
26d04f86 4508}
71645aca 4509
2e59b241 4510int unit_write_settingf(Unit *u, UnitWriteFlags flags, const char *name, const char *format, ...) {
b9ec9359
LP
4511 _cleanup_free_ char *p = NULL;
4512 va_list ap;
4513 int r;
4514
4515 assert(u);
4516 assert(name);
4517 assert(format);
4518
2e59b241 4519 if (UNIT_WRITE_FLAGS_NOOP(flags))
b9ec9359
LP
4520 return 0;
4521
4522 va_start(ap, format);
4523 r = vasprintf(&p, format, ap);
4524 va_end(ap);
4525
4526 if (r < 0)
4527 return -ENOMEM;
4528
2e59b241 4529 return unit_write_setting(u, flags, name, p);
b9ec9359 4530}
71645aca 4531
c2756a68 4532int unit_make_transient(Unit *u) {
0126c8f3 4533 _cleanup_free_ char *path = NULL;
4f4afc88 4534 FILE *f;
4f4afc88 4535
c2756a68
LP
4536 assert(u);
4537
3f5e8115
LP
4538 if (!UNIT_VTABLE(u)->can_transient)
4539 return -EOPNOTSUPP;
4540
45639f1b
LP
4541 (void) mkdir_p_label(u->manager->lookup_paths.transient, 0755);
4542
657ee2d8 4543 path = path_join(u->manager->lookup_paths.transient, u->id);
4f4afc88
LP
4544 if (!path)
4545 return -ENOMEM;
4546
4547 /* Let's open the file we'll write the transient settings into. This file is kept open as long as we are
4548 * creating the transient, and is closed in unit_load(), as soon as we start loading the file. */
4549
78e334b5 4550 RUN_WITH_UMASK(0022) {
4f4afc88 4551 f = fopen(path, "we");
0126c8f3 4552 if (!f)
78e334b5 4553 return -errno;
4f4afc88
LP
4554 }
4555
0126c8f3 4556 safe_fclose(u->transient_file);
4f4afc88
LP
4557 u->transient_file = f;
4558
0126c8f3 4559 free_and_replace(u->fragment_path, path);
7c65093a 4560
7c65093a
LP
4561 u->source_path = mfree(u->source_path);
4562 u->dropin_paths = strv_free(u->dropin_paths);
4563 u->fragment_mtime = u->source_mtime = u->dropin_mtime = 0;
4564
4f4afc88
LP
4565 u->load_state = UNIT_STUB;
4566 u->load_error = 0;
4567 u->transient = true;
4568
7c65093a
LP
4569 unit_add_to_dbus_queue(u);
4570 unit_add_to_gc_queue(u);
c2756a68 4571
4f4afc88
LP
4572 fputs("# This is a transient unit file, created programmatically via the systemd API. Do not edit.\n",
4573 u->transient_file);
4574
3f5e8115 4575 return 0;
c2756a68
LP
4576}
4577
c53d2d54 4578static int log_kill(pid_t pid, int sig, void *userdata) {
1d98fef1
LP
4579 _cleanup_free_ char *comm = NULL;
4580
4581 (void) get_process_comm(pid, &comm);
4582
4583 /* Don't log about processes marked with brackets, under the assumption that these are temporary processes
4584 only, like for example systemd's own PAM stub process. */
4585 if (comm && comm[0] == '(')
c53d2d54 4586 return 0;
1d98fef1
LP
4587
4588 log_unit_notice(userdata,
4589 "Killing process " PID_FMT " (%s) with signal SIG%s.",
4590 pid,
4591 strna(comm),
4592 signal_to_string(sig));
c53d2d54
DB
4593
4594 return 1;
1d98fef1
LP
4595}
4596
4597static int operation_to_signal(KillContext *c, KillOperation k) {
4598 assert(c);
4599
4600 switch (k) {
4601
4602 case KILL_TERMINATE:
4603 case KILL_TERMINATE_AND_LOG:
4604 return c->kill_signal;
4605
4606 case KILL_KILL:
fbb48d4c 4607 return c->final_kill_signal;
1d98fef1 4608
c87700a1
AZ
4609 case KILL_WATCHDOG:
4610 return c->watchdog_signal;
1d98fef1
LP
4611
4612 default:
4613 assert_not_reached("KillOperation unknown");
4614 }
4615}
4616
cd2086fe
LP
4617int unit_kill_context(
4618 Unit *u,
4619 KillContext *c,
db2cb23b 4620 KillOperation k,
cd2086fe
LP
4621 pid_t main_pid,
4622 pid_t control_pid,
4623 bool main_pid_alien) {
4624
1d98fef1 4625 bool wait_for_exit = false, send_sighup;
59ec09a8 4626 cg_kill_log_func_t log_func = NULL;
b821a397 4627 int sig, r;
cd2086fe
LP
4628
4629 assert(u);
4630 assert(c);
4631
59ec09a8
ZJS
4632 /* Kill the processes belonging to this unit, in preparation for shutting the unit down.
4633 * Returns > 0 if we killed something worth waiting for, 0 otherwise. */
1d98fef1 4634
cd2086fe
LP
4635 if (c->kill_mode == KILL_NONE)
4636 return 0;
4637
1d98fef1
LP
4638 sig = operation_to_signal(c, k);
4639
4640 send_sighup =
4641 c->send_sighup &&
4642 IN_SET(k, KILL_TERMINATE, KILL_TERMINATE_AND_LOG) &&
4643 sig != SIGHUP;
4644
59ec09a8
ZJS
4645 if (k != KILL_TERMINATE || IN_SET(sig, SIGKILL, SIGABRT))
4646 log_func = log_kill;
cd2086fe
LP
4647
4648 if (main_pid > 0) {
1d98fef1
LP
4649 if (log_func)
4650 log_func(main_pid, sig, u);
cd2086fe 4651
1d98fef1 4652 r = kill_and_sigcont(main_pid, sig);
cd2086fe
LP
4653 if (r < 0 && r != -ESRCH) {
4654 _cleanup_free_ char *comm = NULL;
1d98fef1 4655 (void) get_process_comm(main_pid, &comm);
cd2086fe 4656
b821a397 4657 log_unit_warning_errno(u, r, "Failed to kill main process " PID_FMT " (%s), ignoring: %m", main_pid, strna(comm));
82659fd7 4658 } else {
bc6aed7b
LP
4659 if (!main_pid_alien)
4660 wait_for_exit = true;
82659fd7 4661
1d98fef1 4662 if (r != -ESRCH && send_sighup)
d0667321 4663 (void) kill(main_pid, SIGHUP);
82659fd7 4664 }
cd2086fe
LP
4665 }
4666
4667 if (control_pid > 0) {
1d98fef1
LP
4668 if (log_func)
4669 log_func(control_pid, sig, u);
cd2086fe 4670
1d98fef1 4671 r = kill_and_sigcont(control_pid, sig);
cd2086fe
LP
4672 if (r < 0 && r != -ESRCH) {
4673 _cleanup_free_ char *comm = NULL;
1d98fef1 4674 (void) get_process_comm(control_pid, &comm);
cd2086fe 4675
b821a397 4676 log_unit_warning_errno(u, r, "Failed to kill control process " PID_FMT " (%s), ignoring: %m", control_pid, strna(comm));
82659fd7 4677 } else {
cd2086fe 4678 wait_for_exit = true;
82659fd7 4679
1d98fef1 4680 if (r != -ESRCH && send_sighup)
d0667321 4681 (void) kill(control_pid, SIGHUP);
82659fd7 4682 }
cd2086fe
LP
4683 }
4684
b821a397
LP
4685 if (u->cgroup_path &&
4686 (c->kill_mode == KILL_CONTROL_GROUP || (c->kill_mode == KILL_MIXED && k == KILL_KILL))) {
cd2086fe
LP
4687 _cleanup_set_free_ Set *pid_set = NULL;
4688
82659fd7
LP
4689 /* Exclude the main/control pids from being killed via the cgroup */
4690 pid_set = unit_pid_set(main_pid, control_pid);
cd2086fe
LP
4691 if (!pid_set)
4692 return -ENOMEM;
4693
1d98fef1
LP
4694 r = cg_kill_recursive(SYSTEMD_CGROUP_CONTROLLER, u->cgroup_path,
4695 sig,
4696 CGROUP_SIGCONT|CGROUP_IGNORE_SELF,
4697 pid_set,
4698 log_func, u);
cd2086fe 4699 if (r < 0) {
4c701096 4700 if (!IN_SET(r, -EAGAIN, -ESRCH, -ENOENT))
b821a397
LP
4701 log_unit_warning_errno(u, r, "Failed to kill control group %s, ignoring: %m", u->cgroup_path);
4702
82659fd7 4703 } else if (r > 0) {
bc6aed7b 4704
1d9cc876
LP
4705 /* FIXME: For now, on the legacy hierarchy, we will not wait for the cgroup members to die if
4706 * we are running in a container or if this is a delegation unit, simply because cgroup
4707 * notification is unreliable in these cases. It doesn't work at all in containers, and outside
4708 * of containers it can be confused easily by left-over directories in the cgroup — which
4709 * however should not exist in non-delegated units. On the unified hierarchy that's different,
4710 * there we get proper events. Hence rely on them. */
efdb0237 4711
c22800e4 4712 if (cg_unified_controller(SYSTEMD_CGROUP_CONTROLLER) > 0 ||
1d9cc876 4713 (detect_container() == 0 && !unit_cgroup_delegate(u)))
e9db43d5 4714 wait_for_exit = true;
58ea275a 4715
1d98fef1 4716 if (send_sighup) {
82659fd7
LP
4717 set_free(pid_set);
4718
4719 pid_set = unit_pid_set(main_pid, control_pid);
4720 if (!pid_set)
4721 return -ENOMEM;
4722
1d98fef1
LP
4723 cg_kill_recursive(SYSTEMD_CGROUP_CONTROLLER, u->cgroup_path,
4724 SIGHUP,
4725 CGROUP_IGNORE_SELF,
4726 pid_set,
4727 NULL, NULL);
82659fd7
LP
4728 }
4729 }
cd2086fe
LP
4730 }
4731
4732 return wait_for_exit;
4733}
4734
eef85c4a 4735int unit_require_mounts_for(Unit *u, const char *path, UnitDependencyMask mask) {
ca8700e9 4736 _cleanup_free_ char *p = NULL;
eef85c4a 4737 UnitDependencyInfo di;
a57f7e2c
LP
4738 int r;
4739
4740 assert(u);
4741 assert(path);
4742
eef85c4a
LP
4743 /* Registers a unit for requiring a certain path and all its prefixes. We keep a hashtable of these paths in
4744 * the unit (from the path to the UnitDependencyInfo structure indicating how to the dependency came to
4745 * be). However, we build a prefix table for all possible prefixes so that new appearing mount units can easily
4746 * determine which units to make themselves a dependency of. */
a57f7e2c 4747
70b64bd3
ZJS
4748 if (!path_is_absolute(path))
4749 return -EINVAL;
4750
548f6937 4751 r = hashmap_ensure_allocated(&u->requires_mounts_for, &path_hash_ops);
eef85c4a
LP
4752 if (r < 0)
4753 return r;
4754
a57f7e2c
LP
4755 p = strdup(path);
4756 if (!p)
4757 return -ENOMEM;
4758
106bf8e4 4759 path = path_simplify(p, true);
a57f7e2c 4760
ca8700e9 4761 if (!path_is_normalized(path))
a57f7e2c 4762 return -EPERM;
a57f7e2c 4763
ca8700e9 4764 if (hashmap_contains(u->requires_mounts_for, path))
a57f7e2c 4765 return 0;
a57f7e2c 4766
eef85c4a
LP
4767 di = (UnitDependencyInfo) {
4768 .origin_mask = mask
4769 };
4770
ca8700e9
ZJS
4771 r = hashmap_put(u->requires_mounts_for, path, di.data);
4772 if (r < 0)
a57f7e2c 4773 return r;
ca8700e9 4774 p = NULL;
a57f7e2c 4775
4cb06c59 4776 char prefix[strlen(path) + 1];
ca8700e9 4777 PATH_FOREACH_PREFIX_MORE(prefix, path) {
a57f7e2c
LP
4778 Set *x;
4779
4780 x = hashmap_get(u->manager->units_requiring_mounts_for, prefix);
4781 if (!x) {
ca8700e9 4782 _cleanup_free_ char *q = NULL;
a57f7e2c 4783
548f6937 4784 r = hashmap_ensure_allocated(&u->manager->units_requiring_mounts_for, &path_hash_ops);
742f41ad
LP
4785 if (r < 0)
4786 return r;
a57f7e2c
LP
4787
4788 q = strdup(prefix);
4789 if (!q)
4790 return -ENOMEM;
4791
d5099efc 4792 x = set_new(NULL);
ca8700e9 4793 if (!x)
a57f7e2c 4794 return -ENOMEM;
a57f7e2c
LP
4795
4796 r = hashmap_put(u->manager->units_requiring_mounts_for, q, x);
4797 if (r < 0) {
a57f7e2c
LP
4798 set_free(x);
4799 return r;
4800 }
ca8700e9 4801 q = NULL;
a57f7e2c
LP
4802 }
4803
4804 r = set_put(x, u);
4805 if (r < 0)
4806 return r;
4807 }
4808
4809 return 0;
4810}
4811
613b411c
LP
4812int unit_setup_exec_runtime(Unit *u) {
4813 ExecRuntime **rt;
4814 size_t offset;
613b411c 4815 Unit *other;
eef85c4a
LP
4816 Iterator i;
4817 void *v;
e8a565cb 4818 int r;
613b411c
LP
4819
4820 offset = UNIT_VTABLE(u)->exec_runtime_offset;
4821 assert(offset > 0);
4822
06b643e7 4823 /* Check if there already is an ExecRuntime for this unit? */
613b411c
LP
4824 rt = (ExecRuntime**) ((uint8_t*) u + offset);
4825 if (*rt)
4826 return 0;
4827
4828 /* Try to get it from somebody else */
eef85c4a 4829 HASHMAP_FOREACH_KEY(v, other, u->dependencies[UNIT_JOINS_NAMESPACE_OF], i) {
e8a565cb
YW
4830 r = exec_runtime_acquire(u->manager, NULL, other->id, false, rt);
4831 if (r == 1)
4832 return 1;
613b411c
LP
4833 }
4834
e8a565cb 4835 return exec_runtime_acquire(u->manager, unit_get_exec_context(u), u->id, true, rt);
613b411c
LP
4836}
4837
29206d46
LP
4838int unit_setup_dynamic_creds(Unit *u) {
4839 ExecContext *ec;
4840 DynamicCreds *dcreds;
4841 size_t offset;
4842
4843 assert(u);
4844
4845 offset = UNIT_VTABLE(u)->dynamic_creds_offset;
4846 assert(offset > 0);
4847 dcreds = (DynamicCreds*) ((uint8_t*) u + offset);
4848
4849 ec = unit_get_exec_context(u);
4850 assert(ec);
4851
4852 if (!ec->dynamic_user)
4853 return 0;
4854
4855 return dynamic_creds_acquire(dcreds, u->manager, ec->user, ec->group);
4856}
4857
1c2e9646
LP
4858bool unit_type_supported(UnitType t) {
4859 if (_unlikely_(t < 0))
4860 return false;
4861 if (_unlikely_(t >= _UNIT_TYPE_MAX))
4862 return false;
4863
4864 if (!unit_vtable[t]->supported)
4865 return true;
4866
4867 return unit_vtable[t]->supported();
4868}
4869
8b4305c7
LP
4870void unit_warn_if_dir_nonempty(Unit *u, const char* where) {
4871 int r;
4872
4873 assert(u);
4874 assert(where);
4875
4876 r = dir_is_empty(where);
3f602115 4877 if (r > 0 || r == -ENOTDIR)
8b4305c7
LP
4878 return;
4879 if (r < 0) {
4880 log_unit_warning_errno(u, r, "Failed to check directory %s: %m", where);
4881 return;
4882 }
4883
4884 log_struct(LOG_NOTICE,
2b044526 4885 "MESSAGE_ID=" SD_MESSAGE_OVERMOUNTING_STR,
8b4305c7 4886 LOG_UNIT_ID(u),
f1c50bec 4887 LOG_UNIT_INVOCATION_ID(u),
8b4305c7 4888 LOG_UNIT_MESSAGE(u, "Directory %s to mount over is not empty, mounting anyway.", where),
a1230ff9 4889 "WHERE=%s", where);
8b4305c7
LP
4890}
4891
25cd4964 4892int unit_fail_if_noncanonical(Unit *u, const char* where) {
58d9d89b 4893 _cleanup_free_ char *canonical_where = NULL;
8b4305c7
LP
4894 int r;
4895
4896 assert(u);
4897 assert(where);
4898
25cd4964 4899 r = chase_symlinks(where, NULL, CHASE_NONEXISTENT, &canonical_where);
8b4305c7 4900 if (r < 0) {
25cd4964 4901 log_unit_debug_errno(u, r, "Failed to check %s for symlinks, ignoring: %m", where);
8b4305c7
LP
4902 return 0;
4903 }
25cd4964
AJ
4904
4905 /* We will happily ignore a trailing slash (or any redundant slashes) */
4906 if (path_equal(where, canonical_where))
8b4305c7
LP
4907 return 0;
4908
25cd4964 4909 /* No need to mention "." or "..", they would already have been rejected by unit_name_from_path() */
8b4305c7 4910 log_struct(LOG_ERR,
2b044526 4911 "MESSAGE_ID=" SD_MESSAGE_OVERMOUNTING_STR,
8b4305c7 4912 LOG_UNIT_ID(u),
f1c50bec 4913 LOG_UNIT_INVOCATION_ID(u),
25cd4964 4914 LOG_UNIT_MESSAGE(u, "Mount path %s is not canonical (contains a symlink).", where),
a1230ff9 4915 "WHERE=%s", where);
8b4305c7
LP
4916
4917 return -ELOOP;
4918}
0f13f3bd
LP
4919
4920bool unit_is_pristine(Unit *u) {
4921 assert(u);
4922
7c65093a 4923 /* Check if the unit already exists or is already around,
0f13f3bd
LP
4924 * in a number of different ways. Note that to cater for unit
4925 * types such as slice, we are generally fine with units that
e9e8cbc8
ZJS
4926 * are marked UNIT_LOADED even though nothing was actually
4927 * loaded, as those unit types don't require a file on disk. */
0f13f3bd
LP
4928
4929 return !(!IN_SET(u->load_state, UNIT_NOT_FOUND, UNIT_LOADED) ||
4930 u->fragment_path ||
4931 u->source_path ||
4932 !strv_isempty(u->dropin_paths) ||
0f13f3bd
LP
4933 u->job ||
4934 u->merged_into);
4935}
291d565a
LP
4936
4937pid_t unit_control_pid(Unit *u) {
4938 assert(u);
4939
4940 if (UNIT_VTABLE(u)->control_pid)
4941 return UNIT_VTABLE(u)->control_pid(u);
4942
4943 return 0;
4944}
4945
4946pid_t unit_main_pid(Unit *u) {
4947 assert(u);
4948
4949 if (UNIT_VTABLE(u)->main_pid)
4950 return UNIT_VTABLE(u)->main_pid(u);
4951
4952 return 0;
4953}
00d9ef85
LP
4954
4955static void unit_unref_uid_internal(
4956 Unit *u,
4957 uid_t *ref_uid,
4958 bool destroy_now,
4959 void (*_manager_unref_uid)(Manager *m, uid_t uid, bool destroy_now)) {
4960
4961 assert(u);
4962 assert(ref_uid);
4963 assert(_manager_unref_uid);
4964
4965 /* Generic implementation of both unit_unref_uid() and unit_unref_gid(), under the assumption that uid_t and
4966 * gid_t are actually the same time, with the same validity rules.
4967 *
4968 * Drops a reference to UID/GID from a unit. */
4969
4970 assert_cc(sizeof(uid_t) == sizeof(gid_t));
4971 assert_cc(UID_INVALID == (uid_t) GID_INVALID);
4972
4973 if (!uid_is_valid(*ref_uid))
4974 return;
4975
4976 _manager_unref_uid(u->manager, *ref_uid, destroy_now);
4977 *ref_uid = UID_INVALID;
4978}
4979
4980void unit_unref_uid(Unit *u, bool destroy_now) {
4981 unit_unref_uid_internal(u, &u->ref_uid, destroy_now, manager_unref_uid);
4982}
4983
4984void unit_unref_gid(Unit *u, bool destroy_now) {
4985 unit_unref_uid_internal(u, (uid_t*) &u->ref_gid, destroy_now, manager_unref_gid);
4986}
4987
4988static int unit_ref_uid_internal(
4989 Unit *u,
4990 uid_t *ref_uid,
4991 uid_t uid,
4992 bool clean_ipc,
4993 int (*_manager_ref_uid)(Manager *m, uid_t uid, bool clean_ipc)) {
4994
4995 int r;
4996
4997 assert(u);
4998 assert(ref_uid);
4999 assert(uid_is_valid(uid));
5000 assert(_manager_ref_uid);
5001
5002 /* Generic implementation of both unit_ref_uid() and unit_ref_guid(), under the assumption that uid_t and gid_t
5003 * are actually the same type, and have the same validity rules.
5004 *
5005 * Adds a reference on a specific UID/GID to this unit. Each unit referencing the same UID/GID maintains a
5006 * reference so that we can destroy the UID/GID's IPC resources as soon as this is requested and the counter
5007 * drops to zero. */
5008
5009 assert_cc(sizeof(uid_t) == sizeof(gid_t));
5010 assert_cc(UID_INVALID == (uid_t) GID_INVALID);
5011
5012 if (*ref_uid == uid)
5013 return 0;
5014
5015 if (uid_is_valid(*ref_uid)) /* Already set? */
5016 return -EBUSY;
5017
5018 r = _manager_ref_uid(u->manager, uid, clean_ipc);
5019 if (r < 0)
5020 return r;
5021
5022 *ref_uid = uid;
5023 return 1;
5024}
5025
5026int unit_ref_uid(Unit *u, uid_t uid, bool clean_ipc) {
5027 return unit_ref_uid_internal(u, &u->ref_uid, uid, clean_ipc, manager_ref_uid);
5028}
5029
5030int unit_ref_gid(Unit *u, gid_t gid, bool clean_ipc) {
5031 return unit_ref_uid_internal(u, (uid_t*) &u->ref_gid, (uid_t) gid, clean_ipc, manager_ref_gid);
5032}
5033
5034static int unit_ref_uid_gid_internal(Unit *u, uid_t uid, gid_t gid, bool clean_ipc) {
5035 int r = 0, q = 0;
5036
5037 assert(u);
5038
5039 /* Reference both a UID and a GID in one go. Either references both, or neither. */
5040
5041 if (uid_is_valid(uid)) {
5042 r = unit_ref_uid(u, uid, clean_ipc);
5043 if (r < 0)
5044 return r;
5045 }
5046
5047 if (gid_is_valid(gid)) {
5048 q = unit_ref_gid(u, gid, clean_ipc);
5049 if (q < 0) {
5050 if (r > 0)
5051 unit_unref_uid(u, false);
5052
5053 return q;
5054 }
5055 }
5056
5057 return r > 0 || q > 0;
5058}
5059
5060int unit_ref_uid_gid(Unit *u, uid_t uid, gid_t gid) {
5061 ExecContext *c;
5062 int r;
5063
5064 assert(u);
5065
5066 c = unit_get_exec_context(u);
5067
5068 r = unit_ref_uid_gid_internal(u, uid, gid, c ? c->remove_ipc : false);
5069 if (r < 0)
5070 return log_unit_warning_errno(u, r, "Couldn't add UID/GID reference to unit, proceeding without: %m");
5071
5072 return r;
5073}
5074
5075void unit_unref_uid_gid(Unit *u, bool destroy_now) {
5076 assert(u);
5077
5078 unit_unref_uid(u, destroy_now);
5079 unit_unref_gid(u, destroy_now);
5080}
5081
5082void unit_notify_user_lookup(Unit *u, uid_t uid, gid_t gid) {
5083 int r;
5084
5085 assert(u);
5086
5087 /* This is invoked whenever one of the forked off processes let's us know the UID/GID its user name/group names
5088 * resolved to. We keep track of which UID/GID is currently assigned in order to be able to destroy its IPC
5089 * objects when no service references the UID/GID anymore. */
5090
5091 r = unit_ref_uid_gid(u, uid, gid);
5092 if (r > 0)
37d0b962 5093 unit_add_to_dbus_queue(u);
00d9ef85 5094}
4b58153d
LP
5095
5096int unit_set_invocation_id(Unit *u, sd_id128_t id) {
5097 int r;
5098
5099 assert(u);
5100
5101 /* Set the invocation ID for this unit. If we cannot, this will not roll back, but reset the whole thing. */
5102
5103 if (sd_id128_equal(u->invocation_id, id))
5104 return 0;
5105
5106 if (!sd_id128_is_null(u->invocation_id))
5107 (void) hashmap_remove_value(u->manager->units_by_invocation_id, &u->invocation_id, u);
5108
5109 if (sd_id128_is_null(id)) {
5110 r = 0;
5111 goto reset;
5112 }
5113
5114 r = hashmap_ensure_allocated(&u->manager->units_by_invocation_id, &id128_hash_ops);
5115 if (r < 0)
5116 goto reset;
5117
5118 u->invocation_id = id;
5119 sd_id128_to_string(id, u->invocation_id_string);
5120
5121 r = hashmap_put(u->manager->units_by_invocation_id, &u->invocation_id, u);
5122 if (r < 0)
5123 goto reset;
5124
5125 return 0;
5126
5127reset:
5128 u->invocation_id = SD_ID128_NULL;
5129 u->invocation_id_string[0] = 0;
5130 return r;
5131}
5132
5133int unit_acquire_invocation_id(Unit *u) {
5134 sd_id128_t id;
5135 int r;
5136
5137 assert(u);
5138
5139 r = sd_id128_randomize(&id);
5140 if (r < 0)
5141 return log_unit_error_errno(u, r, "Failed to generate invocation ID for unit: %m");
5142
5143 r = unit_set_invocation_id(u, id);
5144 if (r < 0)
5145 return log_unit_error_errno(u, r, "Failed to set invocation ID for unit: %m");
5146
af92c603 5147 unit_add_to_dbus_queue(u);
4b58153d
LP
5148 return 0;
5149}
f0d47797 5150
1ad6e8b3
LP
5151int unit_set_exec_params(Unit *u, ExecParameters *p) {
5152 int r;
5153
7960b0c7
LP
5154 assert(u);
5155 assert(p);
f0d47797 5156
004c7f16 5157 /* Copy parameters from manager */
1ad6e8b3
LP
5158 r = manager_get_effective_environment(u->manager, &p->environment);
5159 if (r < 0)
5160 return r;
5161
004c7f16
LP
5162 p->confirm_spawn = manager_get_confirm_spawn(u->manager);
5163 p->cgroup_supported = u->manager->cgroup_supported;
5164 p->prefix = u->manager->prefix;
5165 SET_FLAG(p->flags, EXEC_PASS_LOG_UNIT|EXEC_CHOWN_DIRECTORIES, MANAGER_IS_SYSTEM(u->manager));
5166
5238e957 5167 /* Copy parameters from unit */
7960b0c7 5168 p->cgroup_path = u->cgroup_path;
1d9cc876 5169 SET_FLAG(p->flags, EXEC_CGROUP_DELEGATE, unit_cgroup_delegate(u));
1ad6e8b3
LP
5170
5171 return 0;
f0d47797 5172}
a79279c7 5173
4c253ed1 5174int unit_fork_helper_process(Unit *u, const char *name, pid_t *ret) {
a79279c7
LP
5175 int r;
5176
5177 assert(u);
5178 assert(ret);
5179
5180 /* Forks off a helper process and makes sure it is a member of the unit's cgroup. Returns == 0 in the child,
5181 * and > 0 in the parent. The pid parameter is always filled in with the child's PID. */
5182
5183 (void) unit_realize_cgroup(u);
5184
4c253ed1
LP
5185 r = safe_fork(name, FORK_REOPEN_LOG, ret);
5186 if (r != 0)
5187 return r;
a79279c7 5188
4c253ed1
LP
5189 (void) default_signals(SIGNALS_CRASH_HANDLER, SIGNALS_IGNORE, -1);
5190 (void) ignore_signals(SIGPIPE, -1);
a79279c7 5191
4c253ed1 5192 (void) prctl(PR_SET_PDEATHSIG, SIGTERM);
a79279c7 5193
4c253ed1
LP
5194 if (u->cgroup_path) {
5195 r = cg_attach_everywhere(u->manager->cgroup_supported, u->cgroup_path, 0, NULL, NULL);
5196 if (r < 0) {
5197 log_unit_error_errno(u, r, "Failed to join unit cgroup %s: %m", u->cgroup_path);
5198 _exit(EXIT_CGROUP);
a79279c7 5199 }
a79279c7
LP
5200 }
5201
4c253ed1 5202 return 0;
a79279c7 5203}
c999cf38
LP
5204
5205static void unit_update_dependency_mask(Unit *u, UnitDependency d, Unit *other, UnitDependencyInfo di) {
5206 assert(u);
5207 assert(d >= 0);
5208 assert(d < _UNIT_DEPENDENCY_MAX);
5209 assert(other);
5210
5211 if (di.origin_mask == 0 && di.destination_mask == 0) {
5212 /* No bit set anymore, let's drop the whole entry */
5213 assert_se(hashmap_remove(u->dependencies[d], other));
5214 log_unit_debug(u, "%s lost dependency %s=%s", u->id, unit_dependency_to_string(d), other->id);
5215 } else
5216 /* Mask was reduced, let's update the entry */
5217 assert_se(hashmap_update(u->dependencies[d], other, di.data) == 0);
5218}
5219
5220void unit_remove_dependencies(Unit *u, UnitDependencyMask mask) {
5221 UnitDependency d;
5222
5223 assert(u);
5224
5225 /* Removes all dependencies u has on other units marked for ownership by 'mask'. */
5226
5227 if (mask == 0)
5228 return;
5229
5230 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++) {
5231 bool done;
5232
5233 do {
5234 UnitDependencyInfo di;
5235 Unit *other;
5236 Iterator i;
5237
5238 done = true;
5239
5240 HASHMAP_FOREACH_KEY(di.data, other, u->dependencies[d], i) {
5241 UnitDependency q;
5242
5243 if ((di.origin_mask & ~mask) == di.origin_mask)
5244 continue;
5245 di.origin_mask &= ~mask;
5246 unit_update_dependency_mask(u, d, other, di);
5247
5248 /* We updated the dependency from our unit to the other unit now. But most dependencies
5249 * imply a reverse dependency. Hence, let's delete that one too. For that we go through
5250 * all dependency types on the other unit and delete all those which point to us and
5251 * have the right mask set. */
5252
5253 for (q = 0; q < _UNIT_DEPENDENCY_MAX; q++) {
5254 UnitDependencyInfo dj;
5255
5256 dj.data = hashmap_get(other->dependencies[q], u);
5257 if ((dj.destination_mask & ~mask) == dj.destination_mask)
5258 continue;
5259 dj.destination_mask &= ~mask;
5260
5261 unit_update_dependency_mask(other, q, u, dj);
5262 }
5263
5264 unit_add_to_gc_queue(other);
5265
5266 done = false;
5267 break;
5268 }
5269
5270 } while (!done);
5271 }
5272}
d3070fbd
LP
5273
5274static int unit_export_invocation_id(Unit *u) {
5275 const char *p;
5276 int r;
5277
5278 assert(u);
5279
5280 if (u->exported_invocation_id)
5281 return 0;
5282
5283 if (sd_id128_is_null(u->invocation_id))
5284 return 0;
5285
5286 p = strjoina("/run/systemd/units/invocation:", u->id);
5287 r = symlink_atomic(u->invocation_id_string, p);
5288 if (r < 0)
5289 return log_unit_debug_errno(u, r, "Failed to create invocation ID symlink %s: %m", p);
5290
5291 u->exported_invocation_id = true;
5292 return 0;
5293}
5294
5295static int unit_export_log_level_max(Unit *u, const ExecContext *c) {
5296 const char *p;
5297 char buf[2];
5298 int r;
5299
5300 assert(u);
5301 assert(c);
5302
5303 if (u->exported_log_level_max)
5304 return 0;
5305
5306 if (c->log_level_max < 0)
5307 return 0;
5308
5309 assert(c->log_level_max <= 7);
5310
5311 buf[0] = '0' + c->log_level_max;
5312 buf[1] = 0;
5313
5314 p = strjoina("/run/systemd/units/log-level-max:", u->id);
5315 r = symlink_atomic(buf, p);
5316 if (r < 0)
5317 return log_unit_debug_errno(u, r, "Failed to create maximum log level symlink %s: %m", p);
5318
5319 u->exported_log_level_max = true;
5320 return 0;
5321}
5322
5323static int unit_export_log_extra_fields(Unit *u, const ExecContext *c) {
5324 _cleanup_close_ int fd = -1;
5325 struct iovec *iovec;
5326 const char *p;
5327 char *pattern;
5328 le64_t *sizes;
5329 ssize_t n;
5330 size_t i;
5331 int r;
5332
5333 if (u->exported_log_extra_fields)
5334 return 0;
5335
5336 if (c->n_log_extra_fields <= 0)
5337 return 0;
5338
5339 sizes = newa(le64_t, c->n_log_extra_fields);
5340 iovec = newa(struct iovec, c->n_log_extra_fields * 2);
5341
5342 for (i = 0; i < c->n_log_extra_fields; i++) {
5343 sizes[i] = htole64(c->log_extra_fields[i].iov_len);
5344
5345 iovec[i*2] = IOVEC_MAKE(sizes + i, sizeof(le64_t));
5346 iovec[i*2+1] = c->log_extra_fields[i];
5347 }
5348
5349 p = strjoina("/run/systemd/units/log-extra-fields:", u->id);
5350 pattern = strjoina(p, ".XXXXXX");
5351
5352 fd = mkostemp_safe(pattern);
5353 if (fd < 0)
5354 return log_unit_debug_errno(u, fd, "Failed to create extra fields file %s: %m", p);
5355
5356 n = writev(fd, iovec, c->n_log_extra_fields*2);
5357 if (n < 0) {
5358 r = log_unit_debug_errno(u, errno, "Failed to write extra fields: %m");
5359 goto fail;
5360 }
5361
5362 (void) fchmod(fd, 0644);
5363
5364 if (rename(pattern, p) < 0) {
5365 r = log_unit_debug_errno(u, errno, "Failed to rename extra fields file: %m");
5366 goto fail;
5367 }
5368
5369 u->exported_log_extra_fields = true;
5370 return 0;
5371
5372fail:
5373 (void) unlink(pattern);
5374 return r;
5375}
5376
90fc172e
AZ
5377static int unit_export_log_rate_limit_interval(Unit *u, const ExecContext *c) {
5378 _cleanup_free_ char *buf = NULL;
5379 const char *p;
5380 int r;
5381
5382 assert(u);
5383 assert(c);
5384
5385 if (u->exported_log_rate_limit_interval)
5386 return 0;
5387
5388 if (c->log_rate_limit_interval_usec == 0)
5389 return 0;
5390
5391 p = strjoina("/run/systemd/units/log-rate-limit-interval:", u->id);
5392
5393 if (asprintf(&buf, "%" PRIu64, c->log_rate_limit_interval_usec) < 0)
5394 return log_oom();
5395
5396 r = symlink_atomic(buf, p);
5397 if (r < 0)
5398 return log_unit_debug_errno(u, r, "Failed to create log rate limit interval symlink %s: %m", p);
5399
5400 u->exported_log_rate_limit_interval = true;
5401 return 0;
5402}
5403
5404static int unit_export_log_rate_limit_burst(Unit *u, const ExecContext *c) {
5405 _cleanup_free_ char *buf = NULL;
5406 const char *p;
5407 int r;
5408
5409 assert(u);
5410 assert(c);
5411
5412 if (u->exported_log_rate_limit_burst)
5413 return 0;
5414
5415 if (c->log_rate_limit_burst == 0)
5416 return 0;
5417
5418 p = strjoina("/run/systemd/units/log-rate-limit-burst:", u->id);
5419
5420 if (asprintf(&buf, "%u", c->log_rate_limit_burst) < 0)
5421 return log_oom();
5422
5423 r = symlink_atomic(buf, p);
5424 if (r < 0)
5425 return log_unit_debug_errno(u, r, "Failed to create log rate limit burst symlink %s: %m", p);
5426
5427 u->exported_log_rate_limit_burst = true;
5428 return 0;
5429}
5430
d3070fbd
LP
5431void unit_export_state_files(Unit *u) {
5432 const ExecContext *c;
5433
5434 assert(u);
5435
5436 if (!u->id)
5437 return;
5438
5439 if (!MANAGER_IS_SYSTEM(u->manager))
5440 return;
5441
638cece4 5442 if (MANAGER_IS_TEST_RUN(u->manager))
8f632531
LP
5443 return;
5444
d3070fbd
LP
5445 /* Exports a couple of unit properties to /run/systemd/units/, so that journald can quickly query this data
5446 * from there. Ideally, journald would use IPC to query this, like everybody else, but that's hard, as long as
5447 * the IPC system itself and PID 1 also log to the journal.
5448 *
5449 * Note that these files really shouldn't be considered API for anyone else, as use a runtime file system as
5450 * IPC replacement is not compatible with today's world of file system namespaces. However, this doesn't really
5451 * apply to communication between the journal and systemd, as we assume that these two daemons live in the same
5452 * namespace at least.
5453 *
5454 * Note that some of the "files" exported here are actually symlinks and not regular files. Symlinks work
5455 * better for storing small bits of data, in particular as we can write them with two system calls, and read
5456 * them with one. */
5457
5458 (void) unit_export_invocation_id(u);
5459
5460 c = unit_get_exec_context(u);
5461 if (c) {
5462 (void) unit_export_log_level_max(u, c);
5463 (void) unit_export_log_extra_fields(u, c);
90fc172e
AZ
5464 (void) unit_export_log_rate_limit_interval(u, c);
5465 (void) unit_export_log_rate_limit_burst(u, c);
d3070fbd
LP
5466 }
5467}
5468
5469void unit_unlink_state_files(Unit *u) {
5470 const char *p;
5471
5472 assert(u);
5473
5474 if (!u->id)
5475 return;
5476
5477 if (!MANAGER_IS_SYSTEM(u->manager))
5478 return;
5479
5480 /* Undoes the effect of unit_export_state() */
5481
5482 if (u->exported_invocation_id) {
5483 p = strjoina("/run/systemd/units/invocation:", u->id);
5484 (void) unlink(p);
5485
5486 u->exported_invocation_id = false;
5487 }
5488
5489 if (u->exported_log_level_max) {
5490 p = strjoina("/run/systemd/units/log-level-max:", u->id);
5491 (void) unlink(p);
5492
5493 u->exported_log_level_max = false;
5494 }
5495
5496 if (u->exported_log_extra_fields) {
5497 p = strjoina("/run/systemd/units/extra-fields:", u->id);
5498 (void) unlink(p);
5499
5500 u->exported_log_extra_fields = false;
5501 }
90fc172e
AZ
5502
5503 if (u->exported_log_rate_limit_interval) {
5504 p = strjoina("/run/systemd/units/log-rate-limit-interval:", u->id);
5505 (void) unlink(p);
5506
5507 u->exported_log_rate_limit_interval = false;
5508 }
5509
5510 if (u->exported_log_rate_limit_burst) {
5511 p = strjoina("/run/systemd/units/log-rate-limit-burst:", u->id);
5512 (void) unlink(p);
5513
5514 u->exported_log_rate_limit_burst = false;
5515 }
d3070fbd 5516}
5afe510c 5517
3c7416b6
LP
5518int unit_prepare_exec(Unit *u) {
5519 int r;
5520
5521 assert(u);
5522
fab34748
KL
5523 /* Load any custom firewall BPF programs here once to test if they are existing and actually loadable.
5524 * Fail here early since later errors in the call chain unit_realize_cgroup to cgroup_context_apply are ignored. */
5525 r = bpf_firewall_load_custom(u);
5526 if (r < 0)
5527 return r;
5528
3c7416b6
LP
5529 /* Prepares everything so that we can fork of a process for this unit */
5530
5531 (void) unit_realize_cgroup(u);
5532
5533 if (u->reset_accounting) {
9b2559a1 5534 (void) unit_reset_accounting(u);
3c7416b6
LP
5535 u->reset_accounting = false;
5536 }
5537
5538 unit_export_state_files(u);
5539
5540 r = unit_setup_exec_runtime(u);
5541 if (r < 0)
5542 return r;
5543
5544 r = unit_setup_dynamic_creds(u);
5545 if (r < 0)
5546 return r;
5547
5548 return 0;
5549}
5550
c53d2d54 5551static int log_leftover(pid_t pid, int sig, void *userdata) {
a4634b21
LP
5552 _cleanup_free_ char *comm = NULL;
5553
5554 (void) get_process_comm(pid, &comm);
5555
5556 if (comm && comm[0] == '(') /* Most likely our own helper process (PAM?), ignore */
c53d2d54 5557 return 0;
a4634b21
LP
5558
5559 log_unit_warning(userdata,
5560 "Found left-over process " PID_FMT " (%s) in control group while starting unit. Ignoring.\n"
5561 "This usually indicates unclean termination of a previous run, or service implementation deficiencies.",
5562 pid, strna(comm));
c53d2d54
DB
5563
5564 return 1;
a4634b21
LP
5565}
5566
c53d2d54 5567int unit_warn_leftover_processes(Unit *u) {
a4634b21
LP
5568 assert(u);
5569
5570 (void) unit_pick_cgroup_path(u);
5571
5572 if (!u->cgroup_path)
c53d2d54 5573 return 0;
a4634b21 5574
c53d2d54 5575 return cg_kill_recursive(SYSTEMD_CGROUP_CONTROLLER, u->cgroup_path, 0, 0, NULL, log_leftover, u);
a4634b21
LP
5576}
5577
bb2c7685
LP
5578bool unit_needs_console(Unit *u) {
5579 ExecContext *ec;
5580 UnitActiveState state;
5581
5582 assert(u);
5583
5584 state = unit_active_state(u);
5585
5586 if (UNIT_IS_INACTIVE_OR_FAILED(state))
5587 return false;
5588
5589 if (UNIT_VTABLE(u)->needs_console)
5590 return UNIT_VTABLE(u)->needs_console(u);
5591
5592 /* If this unit type doesn't implement this call, let's use a generic fallback implementation: */
5593 ec = unit_get_exec_context(u);
5594 if (!ec)
5595 return false;
5596
5597 return exec_context_may_touch_console(ec);
5598}
5599
81e9871e
LP
5600const char *unit_label_path(Unit *u) {
5601 const char *p;
5602
5603 /* Returns the file system path to use for MAC access decisions, i.e. the file to read the SELinux label off
5604 * when validating access checks. */
5605
5606 p = u->source_path ?: u->fragment_path;
5607 if (!p)
5608 return NULL;
5609
5610 /* If a unit is masked, then don't read the SELinux label of /dev/null, as that really makes no sense */
5611 if (path_equal(p, "/dev/null"))
5612 return NULL;
5613
5614 return p;
5615}
5616
6592b975
LP
5617int unit_pid_attachable(Unit *u, pid_t pid, sd_bus_error *error) {
5618 int r;
5619
5620 assert(u);
5621
5622 /* Checks whether the specified PID is generally good for attaching, i.e. a valid PID, not our manager itself,
5623 * and not a kernel thread either */
5624
5625 /* First, a simple range check */
5626 if (!pid_is_valid(pid))
5627 return sd_bus_error_setf(error, SD_BUS_ERROR_INVALID_ARGS, "Process identifier " PID_FMT " is not valid.", pid);
5628
5629 /* Some extra safety check */
5630 if (pid == 1 || pid == getpid_cached())
3fe91079 5631 return sd_bus_error_setf(error, SD_BUS_ERROR_INVALID_ARGS, "Process " PID_FMT " is a manager process, refusing.", pid);
6592b975
LP
5632
5633 /* Don't even begin to bother with kernel threads */
5634 r = is_kernel_thread(pid);
5635 if (r == -ESRCH)
5636 return sd_bus_error_setf(error, SD_BUS_ERROR_UNIX_PROCESS_ID_UNKNOWN, "Process with ID " PID_FMT " does not exist.", pid);
5637 if (r < 0)
5638 return sd_bus_error_set_errnof(error, r, "Failed to determine whether process " PID_FMT " is a kernel thread: %m", pid);
5639 if (r > 0)
5640 return sd_bus_error_setf(error, SD_BUS_ERROR_INVALID_ARGS, "Process " PID_FMT " is a kernel thread, refusing.", pid);
5641
5642 return 0;
5643}
5644
523ee2d4
LP
5645void unit_log_success(Unit *u) {
5646 assert(u);
5647
5648 log_struct(LOG_INFO,
5649 "MESSAGE_ID=" SD_MESSAGE_UNIT_SUCCESS_STR,
5650 LOG_UNIT_ID(u),
5651 LOG_UNIT_INVOCATION_ID(u),
5652 LOG_UNIT_MESSAGE(u, "Succeeded."));
5653}
5654
7c047d74
LP
5655void unit_log_failure(Unit *u, const char *result) {
5656 assert(u);
5657 assert(result);
5658
5659 log_struct(LOG_WARNING,
5660 "MESSAGE_ID=" SD_MESSAGE_UNIT_FAILURE_RESULT_STR,
5661 LOG_UNIT_ID(u),
5662 LOG_UNIT_INVOCATION_ID(u),
5663 LOG_UNIT_MESSAGE(u, "Failed with result '%s'.", result),
5664 "UNIT_RESULT=%s", result);
5665}
5666
91bbd9b7
LP
5667void unit_log_process_exit(
5668 Unit *u,
5669 int level,
5670 const char *kind,
5671 const char *command,
5672 int code,
5673 int status) {
5674
5675 assert(u);
5676 assert(kind);
5677
5678 if (code != CLD_EXITED)
5679 level = LOG_WARNING;
5680
5681 log_struct(level,
5682 "MESSAGE_ID=" SD_MESSAGE_UNIT_PROCESS_EXIT_STR,
5683 LOG_UNIT_MESSAGE(u, "%s exited, code=%s, status=%i/%s",
5684 kind,
5685 sigchld_code_to_string(code), status,
5686 strna(code == CLD_EXITED
5687 ? exit_status_to_string(status, EXIT_STATUS_FULL)
5688 : signal_to_string(status))),
5689 "EXIT_CODE=%s", sigchld_code_to_string(code),
5690 "EXIT_STATUS=%i", status,
5691 "COMMAND=%s", strna(command),
5692 LOG_UNIT_ID(u),
5693 LOG_UNIT_INVOCATION_ID(u));
5694}
5695
7af67e9a
LP
5696int unit_exit_status(Unit *u) {
5697 assert(u);
5698
5699 /* Returns the exit status to propagate for the most recent cycle of this unit. Returns a value in the range
5700 * 0…255 if there's something to propagate. EOPNOTSUPP if the concept does not apply to this unit type, ENODATA
5701 * if no data is currently known (for example because the unit hasn't deactivated yet) and EBADE if the main
5702 * service process has exited abnormally (signal/coredump). */
5703
5704 if (!UNIT_VTABLE(u)->exit_status)
5705 return -EOPNOTSUPP;
5706
5707 return UNIT_VTABLE(u)->exit_status(u);
5708}
5709
5710int unit_failure_action_exit_status(Unit *u) {
5711 int r;
5712
5713 assert(u);
5714
5715 /* Returns the exit status to propagate on failure, or an error if there's nothing to propagate */
5716
5717 if (u->failure_action_exit_status >= 0)
5718 return u->failure_action_exit_status;
5719
5720 r = unit_exit_status(u);
5721 if (r == -EBADE) /* Exited, but not cleanly (i.e. by signal or such) */
5722 return 255;
5723
5724 return r;
5725}
5726
5727int unit_success_action_exit_status(Unit *u) {
5728 int r;
5729
5730 assert(u);
5731
5732 /* Returns the exit status to propagate on success, or an error if there's nothing to propagate */
5733
5734 if (u->success_action_exit_status >= 0)
5735 return u->success_action_exit_status;
5736
5737 r = unit_exit_status(u);
5738 if (r == -EBADE) /* Exited, but not cleanly (i.e. by signal or such) */
5739 return 255;
5740
5741 return r;
5742}
5743
a4191c9f
LP
5744int unit_test_trigger_loaded(Unit *u) {
5745 Unit *trigger;
5746
5747 /* Tests whether the unit to trigger is loaded */
5748
5749 trigger = UNIT_TRIGGER(u);
5750 if (!trigger)
5751 return log_unit_error_errno(u, SYNTHETIC_ERRNO(ENOENT), "Refusing to start, unit to trigger not loaded.");
5752 if (trigger->load_state != UNIT_LOADED)
5753 return log_unit_error_errno(u, SYNTHETIC_ERRNO(ENOENT), "Refusing to start, unit %s to trigger not loaded.", u->id);
5754
5755 return 0;
5756}
5757
380dc8b0
LP
5758int unit_clean(Unit *u, ExecCleanMask mask) {
5759 UnitActiveState state;
5760
5761 assert(u);
5762
5763 /* Special return values:
5764 *
5765 * -EOPNOTSUPP → cleaning not supported for this unit type
5766 * -EUNATCH → cleaning not defined for this resource type
5767 * -EBUSY → unit currently can't be cleaned since it's running or not properly loaded, or has
5768 * a job queued or similar
5769 */
5770
5771 if (!UNIT_VTABLE(u)->clean)
5772 return -EOPNOTSUPP;
5773
5774 if (mask == 0)
5775 return -EUNATCH;
5776
5777 if (u->load_state != UNIT_LOADED)
5778 return -EBUSY;
5779
5780 if (u->job)
5781 return -EBUSY;
5782
5783 state = unit_active_state(u);
5784 if (!IN_SET(state, UNIT_INACTIVE))
5785 return -EBUSY;
5786
5787 return UNIT_VTABLE(u)->clean(u, mask);
5788}
5789
5790int unit_can_clean(Unit *u, ExecCleanMask *ret) {
5791 assert(u);
5792
5793 if (!UNIT_VTABLE(u)->clean ||
5794 u->load_state != UNIT_LOADED) {
5795 *ret = 0;
5796 return 0;
5797 }
5798
5799 /* When the clean() method is set, can_clean() really should be set too */
5800 assert(UNIT_VTABLE(u)->can_clean);
5801
5802 return UNIT_VTABLE(u)->can_clean(u, ret);
5803}
5804
5afe510c
LP
5805static const char* const collect_mode_table[_COLLECT_MODE_MAX] = {
5806 [COLLECT_INACTIVE] = "inactive",
5807 [COLLECT_INACTIVE_OR_FAILED] = "inactive-or-failed",
5808};
5809
5810DEFINE_STRING_TABLE_LOOKUP(collect_mode, CollectMode);