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core: use ASSERT_PTR(CAST(u)) everywhere
[thirdparty/systemd.git] / src / core / service.c
CommitLineData
db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
a7334b09 2
5cb5a6ff 3#include <errno.h>
be1adc27 4#include <math.h>
ca78ad1d
ZJS
5#include <sys/stat.h>
6#include <sys/types.h>
2c4104f0 7#include <unistd.h>
5cb5a6ff 8
7a0019d3
LP
9#include "sd-messages.h"
10
b5efdb8a 11#include "alloc-util.h"
574634bc 12#include "async.h"
4f5dd394
LP
13#include "bus-error.h"
14#include "bus-kernel.h"
15#include "bus-util.h"
f461a28d 16#include "chase.h"
28db6fbf 17#include "constants.h"
4139c1b2 18#include "dbus-service.h"
6fcbec6f 19#include "dbus-unit.h"
f2eb0c50 20#include "devnum-util.h"
4d1a6904 21#include "env-util.h"
4f5dd394
LP
22#include "escape.h"
23#include "exit-status.h"
3ffd4af2 24#include "fd-util.h"
a5c32cff 25#include "fileio.h"
f97b34a6 26#include "format-util.h"
4f5dd394
LP
27#include "load-dropin.h"
28#include "load-fragment.h"
29#include "log.h"
30#include "manager.h"
d52b8493 31#include "missing_audit.h"
cd48e23f 32#include "open-file.h"
6bedfcbb 33#include "parse-util.h"
4f5dd394 34#include "path-util.h"
0b452006 35#include "process-util.h"
5918a933 36#include "random-util.h"
8017ed7e 37#include "selinux-util.h"
d68c645b 38#include "serialize.h"
3ffd4af2 39#include "service.h"
24882e06 40#include "signal-util.h"
4f5dd394 41#include "special.h"
e266c068 42#include "stdio-util.h"
8b43440b 43#include "string-table.h"
07630cea 44#include "string-util.h"
4f5dd394
LP
45#include "strv.h"
46#include "unit-name.h"
4f5dd394
LP
47#include "unit.h"
48#include "utf8.h"
034c6ed7 49
edbf8984
ZJS
50#define service_spawn(...) service_spawn_internal(__func__, __VA_ARGS__)
51
acbb0225 52static const UnitActiveState state_translation_table[_SERVICE_STATE_MAX] = {
87f0e418 53 [SERVICE_DEAD] = UNIT_INACTIVE,
31cd5f63 54 [SERVICE_CONDITION] = UNIT_ACTIVATING,
87f0e418
LP
55 [SERVICE_START_PRE] = UNIT_ACTIVATING,
56 [SERVICE_START] = UNIT_ACTIVATING,
57 [SERVICE_START_POST] = UNIT_ACTIVATING,
58 [SERVICE_RUNNING] = UNIT_ACTIVE,
80876c20 59 [SERVICE_EXITED] = UNIT_ACTIVE,
032ff4af 60 [SERVICE_RELOAD] = UNIT_RELOADING,
3bd28bf7
LP
61 [SERVICE_RELOAD_SIGNAL] = UNIT_RELOADING,
62 [SERVICE_RELOAD_NOTIFY] = UNIT_RELOADING,
87f0e418 63 [SERVICE_STOP] = UNIT_DEACTIVATING,
c87700a1 64 [SERVICE_STOP_WATCHDOG] = UNIT_DEACTIVATING,
87f0e418
LP
65 [SERVICE_STOP_SIGTERM] = UNIT_DEACTIVATING,
66 [SERVICE_STOP_SIGKILL] = UNIT_DEACTIVATING,
67 [SERVICE_STOP_POST] = UNIT_DEACTIVATING,
bf760801 68 [SERVICE_FINAL_WATCHDOG] = UNIT_DEACTIVATING,
87f0e418
LP
69 [SERVICE_FINAL_SIGTERM] = UNIT_DEACTIVATING,
70 [SERVICE_FINAL_SIGKILL] = UNIT_DEACTIVATING,
fdf20a31 71 [SERVICE_FAILED] = UNIT_FAILED,
a1d31573
LP
72 [SERVICE_DEAD_BEFORE_AUTO_RESTART] = UNIT_INACTIVE,
73 [SERVICE_FAILED_BEFORE_AUTO_RESTART] = UNIT_FAILED,
b9c1883a 74 [SERVICE_DEAD_RESOURCES_PINNED] = UNIT_INACTIVE,
4c2f5842 75 [SERVICE_AUTO_RESTART] = UNIT_ACTIVATING,
09d04ad3 76 [SERVICE_AUTO_RESTART_QUEUED] = UNIT_ACTIVATING,
4c2f5842 77 [SERVICE_CLEANING] = UNIT_MAINTENANCE,
034c6ed7 78};
5cb5a6ff 79
e056b01d
LP
80/* For Type=idle we never want to delay any other jobs, hence we
81 * consider idle jobs active as soon as we start working on them */
82static const UnitActiveState state_translation_table_idle[_SERVICE_STATE_MAX] = {
83 [SERVICE_DEAD] = UNIT_INACTIVE,
31cd5f63 84 [SERVICE_CONDITION] = UNIT_ACTIVE,
e056b01d
LP
85 [SERVICE_START_PRE] = UNIT_ACTIVE,
86 [SERVICE_START] = UNIT_ACTIVE,
87 [SERVICE_START_POST] = UNIT_ACTIVE,
88 [SERVICE_RUNNING] = UNIT_ACTIVE,
89 [SERVICE_EXITED] = UNIT_ACTIVE,
90 [SERVICE_RELOAD] = UNIT_RELOADING,
3bd28bf7
LP
91 [SERVICE_RELOAD_SIGNAL] = UNIT_RELOADING,
92 [SERVICE_RELOAD_NOTIFY] = UNIT_RELOADING,
e056b01d 93 [SERVICE_STOP] = UNIT_DEACTIVATING,
c87700a1 94 [SERVICE_STOP_WATCHDOG] = UNIT_DEACTIVATING,
e056b01d
LP
95 [SERVICE_STOP_SIGTERM] = UNIT_DEACTIVATING,
96 [SERVICE_STOP_SIGKILL] = UNIT_DEACTIVATING,
97 [SERVICE_STOP_POST] = UNIT_DEACTIVATING,
bf760801 98 [SERVICE_FINAL_WATCHDOG] = UNIT_DEACTIVATING,
e056b01d
LP
99 [SERVICE_FINAL_SIGTERM] = UNIT_DEACTIVATING,
100 [SERVICE_FINAL_SIGKILL] = UNIT_DEACTIVATING,
101 [SERVICE_FAILED] = UNIT_FAILED,
a1d31573
LP
102 [SERVICE_DEAD_BEFORE_AUTO_RESTART] = UNIT_INACTIVE,
103 [SERVICE_FAILED_BEFORE_AUTO_RESTART] = UNIT_FAILED,
b9c1883a 104 [SERVICE_DEAD_RESOURCES_PINNED] = UNIT_INACTIVE,
4c2f5842 105 [SERVICE_AUTO_RESTART] = UNIT_ACTIVATING,
09d04ad3 106 [SERVICE_AUTO_RESTART_QUEUED] = UNIT_ACTIVATING,
4c2f5842 107 [SERVICE_CLEANING] = UNIT_MAINTENANCE,
e056b01d
LP
108};
109
5686391b 110static int service_dispatch_inotify_io(sd_event_source *source, int fd, uint32_t events, void *userdata);
718db961
LP
111static int service_dispatch_timer(sd_event_source *source, usec_t usec, void *userdata);
112static int service_dispatch_watchdog(sd_event_source *source, usec_t usec, void *userdata);
5686391b 113static int service_dispatch_exec_io(sd_event_source *source, int fd, uint32_t events, void *userdata);
718db961 114
842129f5 115static void service_enter_signal(Service *s, ServiceState state, ServiceResult f);
308d72dc 116static void service_enter_reload_by_notify(Service *s);
842129f5 117
94114711
YW
118static bool SERVICE_STATE_WITH_MAIN_PROCESS(ServiceState state) {
119 return IN_SET(state,
120 SERVICE_START, SERVICE_START_POST,
121 SERVICE_RUNNING,
122 SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY,
123 SERVICE_STOP, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL, SERVICE_STOP_POST,
124 SERVICE_FINAL_WATCHDOG, SERVICE_FINAL_SIGTERM, SERVICE_FINAL_SIGKILL);
125}
126
127static bool SERVICE_STATE_WITH_CONTROL_PROCESS(ServiceState state) {
128 return IN_SET(state,
129 SERVICE_CONDITION,
130 SERVICE_START_PRE, SERVICE_START, SERVICE_START_POST,
131 SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY,
132 SERVICE_STOP, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL, SERVICE_STOP_POST,
133 SERVICE_FINAL_WATCHDOG, SERVICE_FINAL_SIGTERM, SERVICE_FINAL_SIGKILL,
134 SERVICE_CLEANING);
135}
136
a16e1123
LP
137static void service_init(Unit *u) {
138 Service *s = SERVICE(u);
139
140 assert(u);
ac155bb8 141 assert(u->load_state == UNIT_STUB);
a16e1123 142
c9e120e0
LP
143 s->timeout_start_usec = u->manager->defaults.timeout_start_usec;
144 s->timeout_stop_usec = u->manager->defaults.timeout_stop_usec;
145 s->timeout_abort_usec = u->manager->defaults.timeout_abort_usec;
146 s->timeout_abort_set = u->manager->defaults.timeout_abort_set;
147 s->restart_usec = u->manager->defaults.restart_usec;
e9f17fa8 148 s->restart_max_delay_usec = USEC_INFINITY;
36c16a7c 149 s->runtime_max_usec = USEC_INFINITY;
0b86feac 150 s->type = _SERVICE_TYPE_INVALID;
254d1313
ZJS
151 s->socket_fd = -EBADF;
152 s->stdin_fd = s->stdout_fd = s->stderr_fd = -EBADF;
3185a36b 153 s->guess_main_pid = true;
c79ab77c
LP
154 s->main_pid = PIDREF_NULL;
155 s->control_pid = PIDREF_NULL;
a16e1123 156 s->control_command_id = _SERVICE_EXEC_COMMAND_INVALID;
00f5ad93
LP
157
158 s->exec_context.keyring_mode = MANAGER_IS_SYSTEM(u->manager) ?
159 EXEC_KEYRING_PRIVATE : EXEC_KEYRING_INHERIT;
aa8c4bbf 160
19dff691
MY
161 s->notify_access_override = _NOTIFY_ACCESS_INVALID;
162
aa8c4bbf 163 s->watchdog_original_usec = USEC_INFINITY;
afcfaa69
LP
164
165 s->oom_policy = _OOM_POLICY_INVALID;
3bd28bf7
LP
166 s->reload_begin_usec = USEC_INFINITY;
167 s->reload_signal = SIGHUP;
b9c1883a
LP
168
169 s->fd_store_preserve_mode = EXEC_PRESERVE_RESTART;
a16e1123
LP
170}
171
5e94833f
LP
172static void service_unwatch_control_pid(Service *s) {
173 assert(s);
ea1e0bf1 174 unit_unwatch_pidref_done(UNIT(s), &s->control_pid);
5e94833f
LP
175}
176
177static void service_unwatch_main_pid(Service *s) {
178 assert(s);
ea1e0bf1 179 unit_unwatch_pidref_done(UNIT(s), &s->main_pid);
5e94833f
LP
180}
181
3e52541e 182static void service_unwatch_pid_file(Service *s) {
e9fa1bf7
MY
183 assert(s);
184
3e52541e
MS
185 if (!s->pid_file_pathspec)
186 return;
187
f2341e0a 188 log_unit_debug(UNIT(s), "Stopping watch for PID file %s", s->pid_file_pathspec->path);
718db961 189 path_spec_unwatch(s->pid_file_pathspec);
3e52541e 190 path_spec_done(s->pid_file_pathspec);
a1e58e8e 191 s->pid_file_pathspec = mfree(s->pid_file_pathspec);
3e52541e
MS
192}
193
b1f6901d 194static int service_set_main_pidref(Service *s, PidRef *pidref) {
6774be42
LP
195 int r;
196
5925dd3c
LP
197 assert(s);
198
b1f6901d
LP
199 /* Takes ownership of the specified pidref on success, but not on failure. */
200
201 if (!pidref_is_set(pidref))
202 return -ESRCH;
203
204 if (pidref->pid <= 1)
5925dd3c
LP
205 return -EINVAL;
206
a7a87769 207 if (pidref_is_self(pidref))
5925dd3c
LP
208 return -EINVAL;
209
3b74b495 210 if (pidref_equal(&s->main_pid, pidref) && s->main_pid_known) {
b1f6901d 211 pidref_done(pidref);
7400b9d2 212 return 0;
b1f6901d 213 }
7400b9d2 214
3b74b495 215 if (!pidref_equal(&s->main_pid, pidref)) {
7400b9d2 216 service_unwatch_main_pid(s);
b1f6901d 217 exec_status_start(&s->main_exec_status, pidref->pid);
7400b9d2 218 }
41efeaec 219
b1f6901d 220 s->main_pid = TAKE_PIDREF(*pidref);
6dfa5494
LP
221 s->main_pid_known = true;
222
6774be42
LP
223 r = pidref_is_my_child(&s->main_pid);
224 if (r < 0)
225 log_unit_warning_errno(UNIT(s), r, "Can't determine if process "PID_FMT" is our child, assuming it is not: %m", s->main_pid.pid);
226 else if (r == 0)
b1f6901d 227 log_unit_warning(UNIT(s), "Supervising process "PID_FMT" which is not our child. We'll most likely not notice when it exits.", s->main_pid.pid);
5925dd3c 228
6774be42 229 s->main_pid_alien = r <= 0;
5925dd3c
LP
230 return 0;
231}
232
81a1d6d6 233void service_release_socket_fd(Service *s) {
4f2d528d
LP
234 assert(s);
235
c25fac9a
LP
236 if (s->socket_fd < 0 && !UNIT_ISSET(s->accept_socket) && !s->socket_peer)
237 return;
238
239 log_unit_debug(UNIT(s), "Closing connection socket.");
240
5cc3985e 241 /* Undo the effect of service_set_socket_fd(). */
4f2d528d 242
5cc3985e 243 s->socket_fd = asynchronous_close(s->socket_fd);
6cf6bbc2 244
5cc3985e
LP
245 if (UNIT_ISSET(s->accept_socket)) {
246 socket_connection_unref(SOCKET(UNIT_DEREF(s->accept_socket)));
247 unit_ref_unset(&s->accept_socket);
248 }
3fabebf4
LP
249
250 s->socket_peer = socket_peer_unref(s->socket_peer);
6cf6bbc2
LP
251}
252
19dff691
MY
253static void service_override_notify_access(Service *s, NotifyAccess notify_access_override) {
254 assert(s);
255
256 s->notify_access_override = notify_access_override;
257
258 log_unit_debug(UNIT(s), "notify_access=%s", notify_access_to_string(s->notify_access));
259 log_unit_debug(UNIT(s), "notify_access_override=%s", notify_access_to_string(s->notify_access_override));
260}
261
a6927d7f
MO
262static void service_stop_watchdog(Service *s) {
263 assert(s);
264
5dcadb4c 265 s->watchdog_event_source = sd_event_source_disable_unref(s->watchdog_event_source);
842129f5 266 s->watchdog_timestamp = DUAL_TIMESTAMP_NULL;
a6927d7f
MO
267}
268
842129f5 269static void service_start_watchdog(Service *s) {
2787d83c 270 usec_t watchdog_usec;
9fb1cdb4 271 int r;
bb242b7b
MO
272
273 assert(s);
274
2787d83c 275 watchdog_usec = service_get_watchdog_usec(s);
0da36375 276 if (!timestamp_is_set(watchdog_usec)) {
9fb1cdb4 277 service_stop_watchdog(s);
bb242b7b 278 return;
9fb1cdb4 279 }
bb242b7b 280
718db961 281 if (s->watchdog_event_source) {
2787d83c 282 r = sd_event_source_set_time(s->watchdog_event_source, usec_add(s->watchdog_timestamp.monotonic, watchdog_usec));
718db961 283 if (r < 0) {
f2341e0a 284 log_unit_warning_errno(UNIT(s), r, "Failed to reset watchdog timer: %m");
718db961
LP
285 return;
286 }
287
842129f5 288 r = sd_event_source_set_enabled(s->watchdog_event_source, SD_EVENT_ONESHOT);
c4ef3317 289 } else {
6a0f1f6d
LP
290 r = sd_event_add_time(
291 UNIT(s)->manager->event,
292 &s->watchdog_event_source,
293 CLOCK_MONOTONIC,
2787d83c 294 usec_add(s->watchdog_timestamp.monotonic, watchdog_usec), 0,
6a0f1f6d 295 service_dispatch_watchdog, s);
c4ef3317 296 if (r < 0) {
f2341e0a 297 log_unit_warning_errno(UNIT(s), r, "Failed to add watchdog timer: %m");
c4ef3317
LP
298 return;
299 }
300
7dfbe2e3
TG
301 (void) sd_event_source_set_description(s->watchdog_event_source, "service-watchdog");
302
c4ef3317
LP
303 /* Let's process everything else which might be a sign
304 * of living before we consider a service died. */
d42b61d2 305 r = sd_event_source_set_priority(s->watchdog_event_source, EVENT_PRIORITY_SERVICE_WATCHDOG);
c4ef3317 306 }
bb242b7b 307 if (r < 0)
f2341e0a 308 log_unit_warning_errno(UNIT(s), r, "Failed to install watchdog timer: %m");
bb242b7b
MO
309}
310
5171356e
MY
311usec_t service_restart_usec_next(Service *s) {
312 unsigned n_restarts_next;
be1adc27
MY
313
314 assert(s);
315
0c59d2e4 316 /* When the service state is in SERVICE_*_BEFORE_AUTO_RESTART or SERVICE_AUTO_RESTART, we still need
ba5e342c
MY
317 * to add 1 to s->n_restarts manually, because s->n_restarts is not updated until a restart job is
318 * enqueued, i.e. state has transitioned to SERVICE_AUTO_RESTART_QUEUED. */
319 n_restarts_next = s->n_restarts + (s->state == SERVICE_AUTO_RESTART_QUEUED ? 0 : 1);
be1adc27 320
5171356e 321 if (n_restarts_next <= 1 ||
be1adc27 322 s->restart_steps == 0 ||
ea792cac 323 s->restart_usec == 0 ||
e9f17fa8
MY
324 s->restart_max_delay_usec == USEC_INFINITY ||
325 s->restart_usec >= s->restart_max_delay_usec)
fe3d33c1
MY
326 return s->restart_usec;
327
328 if (n_restarts_next > s->restart_steps)
329 return s->restart_max_delay_usec;
330
331 /* Enforced in service_verify() and above */
332 assert(s->restart_max_delay_usec > s->restart_usec);
333
334 /* r_i / r_0 = (r_n / r_0) ^ (i / n)
335 * where,
336 * r_0 : initial restart usec (s->restart_usec),
337 * r_i : i-th restart usec (value),
338 * r_n : maximum restart usec (s->restart_max_delay_usec),
339 * i : index of the next step (n_restarts_next - 1)
340 * n : num maximum steps (s->restart_steps) */
341 return (usec_t) (s->restart_usec * powl((long double) s->restart_max_delay_usec / s->restart_usec,
342 (long double) (n_restarts_next - 1) / s->restart_steps));
be1adc27
MY
343}
344
ec35a7f6
LP
345static void service_extend_event_source_timeout(Service *s, sd_event_source *source, usec_t extended) {
346 usec_t current;
347 int r;
348
a327431b
DB
349 assert(s);
350
ec35a7f6
LP
351 /* Extends the specified event source timer to at least the specified time, unless it is already later
352 * anyway. */
a327431b 353
ec35a7f6
LP
354 if (!source)
355 return;
a327431b 356
ec35a7f6
LP
357 r = sd_event_source_get_time(source, &current);
358 if (r < 0) {
359 const char *desc;
360 (void) sd_event_source_get_description(s->timer_event_source, &desc);
361 log_unit_warning_errno(UNIT(s), r, "Failed to retrieve timeout time for event source '%s', ignoring: %m", strna(desc));
362 return;
363 }
a327431b 364
ec35a7f6
LP
365 if (current >= extended) /* Current timeout is already longer, ignore this. */
366 return;
a327431b 367
ec35a7f6
LP
368 r = sd_event_source_set_time(source, extended);
369 if (r < 0) {
370 const char *desc;
371 (void) sd_event_source_get_description(s->timer_event_source, &desc);
365c2885 372 log_unit_warning_errno(UNIT(s), r, "Failed to set timeout time for event source '%s', ignoring %m", strna(desc));
a327431b
DB
373 }
374}
375
ec35a7f6
LP
376static void service_extend_timeout(Service *s, usec_t extend_timeout_usec) {
377 usec_t extended;
378
379 assert(s);
380
0da36375 381 if (!timestamp_is_set(extend_timeout_usec))
ec35a7f6
LP
382 return;
383
384 extended = usec_add(now(CLOCK_MONOTONIC), extend_timeout_usec);
385
386 service_extend_event_source_timeout(s, s->timer_event_source, extended);
387 service_extend_event_source_timeout(s, s->watchdog_event_source, extended);
388}
389
a6927d7f
MO
390static void service_reset_watchdog(Service *s) {
391 assert(s);
392
fa5a0251 393 dual_timestamp_now(&s->watchdog_timestamp);
842129f5 394 service_start_watchdog(s);
a6927d7f
MO
395}
396
95d0d8ed 397static void service_override_watchdog_timeout(Service *s, usec_t watchdog_override_usec) {
2787d83c
M
398 assert(s);
399
400 s->watchdog_override_enable = true;
401 s->watchdog_override_usec = watchdog_override_usec;
402 service_reset_watchdog(s);
403
404 log_unit_debug(UNIT(s), "watchdog_usec="USEC_FMT, s->watchdog_usec);
405 log_unit_debug(UNIT(s), "watchdog_override_usec="USEC_FMT, s->watchdog_override_usec);
406}
407
a02287ea 408static ServiceFDStore* service_fd_store_unlink(ServiceFDStore *fs) {
a354329f 409 if (!fs)
a02287ea 410 return NULL;
a354329f
LP
411
412 if (fs->service) {
413 assert(fs->service->n_fd_store > 0);
414 LIST_REMOVE(fd_store, fs->service->fd_store, fs);
415 fs->service->n_fd_store--;
416 }
417
1d3fe304 418 sd_event_source_disable_unref(fs->event_source);
a354329f 419
8dd4c05b 420 free(fs->fdname);
99620f45 421 asynchronous_close(fs->fd);
a02287ea 422 return mfree(fs);
a354329f
LP
423}
424
a02287ea
YW
425DEFINE_TRIVIAL_CLEANUP_FUNC(ServiceFDStore*, service_fd_store_unlink);
426
f0bfbfac
ZJS
427static void service_release_fd_store(Service *s) {
428 assert(s);
429
c25fac9a
LP
430 if (!s->fd_store)
431 return;
432
f0bfbfac 433 log_unit_debug(UNIT(s), "Releasing all stored fds");
c25fac9a 434
f0bfbfac
ZJS
435 while (s->fd_store)
436 service_fd_store_unlink(s->fd_store);
437
438 assert(s->n_fd_store == 0);
439}
440
c25fac9a 441static void service_release_stdio_fd(Service *s) {
a354329f
LP
442 assert(s);
443
c25fac9a 444 if (s->stdin_fd < 0 && s->stdout_fd < 0 && s->stdout_fd < 0)
a354329f
LP
445 return;
446
c25fac9a 447 log_unit_debug(UNIT(s), "Releasing stdin/stdout/stderr file descriptors.");
a354329f 448
99620f45
LP
449 s->stdin_fd = asynchronous_close(s->stdin_fd);
450 s->stdout_fd = asynchronous_close(s->stdout_fd);
451 s->stderr_fd = asynchronous_close(s->stderr_fd);
a354329f 452}
81006ebb 453
87f0e418 454static void service_done(Unit *u) {
e9fa1bf7 455 Service *s = ASSERT_PTR(SERVICE(u));
44d8db9e 456
cd48e23f
RP
457 open_file_free_many(&s->open_files);
458
a1e58e8e
LP
459 s->pid_file = mfree(s->pid_file);
460 s->status_text = mfree(s->status_text);
efe6e7d3 461
28135da3 462 s->exec_runtime = exec_runtime_free(s->exec_runtime);
9cc54544 463
e537352b 464 exec_command_free_array(s->exec_command, _SERVICE_EXEC_COMMAND_MAX);
44d8db9e 465 s->control_command = NULL;
867b3b7d 466 s->main_command = NULL;
44d8db9e 467
37520c1b
LP
468 exit_status_set_free(&s->restart_prevent_status);
469 exit_status_set_free(&s->restart_force_status);
470 exit_status_set_free(&s->success_status);
96342de6 471
c79ab77c 472 /* This will leak a process, but at least no memory or any of our resources */
5e94833f
LP
473 service_unwatch_main_pid(s);
474 service_unwatch_control_pid(s);
3e52541e 475 service_unwatch_pid_file(s);
44d8db9e 476
05e343b7 477 if (s->bus_name) {
ac155bb8 478 unit_unwatch_bus_name(u, s->bus_name);
a1e58e8e 479 s->bus_name = mfree(s->bus_name);
05e343b7
LP
480 }
481
d8ccf5fd
DM
482 s->bus_name_owner = mfree(s->bus_name_owner);
483
064c5938
ZJS
484 s->usb_function_descriptors = mfree(s->usb_function_descriptors);
485 s->usb_function_strings = mfree(s->usb_function_strings);
486
bb242b7b
MO
487 service_stop_watchdog(s);
488
5dcadb4c
ZJS
489 s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
490 s->exec_fd_event_source = sd_event_source_disable_unref(s->exec_fd_event_source);
a354329f 491
e39eb045
LP
492 s->bus_name_pid_lookup_slot = sd_bus_slot_unref(s->bus_name_pid_lookup_slot);
493
81a1d6d6 494 service_release_socket_fd(s);
c25fac9a 495 service_release_stdio_fd(s);
81a1d6d6 496 service_release_fd_store(s);
718db961
LP
497}
498
2339fc93 499static int on_fd_store_io(sd_event_source *e, int fd, uint32_t revents, void *userdata) {
99534007 500 ServiceFDStore *fs = ASSERT_PTR(userdata);
2339fc93
LP
501
502 assert(e);
2339fc93
LP
503
504 /* If we get either EPOLLHUP or EPOLLERR, it's time to remove this entry from the fd store */
16f70d63
ZJS
505 log_unit_debug(UNIT(fs->service),
506 "Received %s on stored fd %d (%s), closing.",
507 revents & EPOLLERR ? "EPOLLERR" : "EPOLLHUP",
508 fs->fd, strna(fs->fdname));
2339fc93
LP
509 service_fd_store_unlink(fs);
510 return 0;
511}
512
a02287ea
YW
513static int service_add_fd_store(Service *s, int fd_in, const char *name, bool do_poll) {
514 _cleanup_(service_fd_store_unlinkp) ServiceFDStore *fs = NULL;
515 _cleanup_(asynchronous_closep) int fd = ASSERT_FD(fd_in);
e8783d76 516 struct stat st;
2339fc93
LP
517 int r;
518
a02287ea 519 /* fd is always consumed even if the function fails. */
9021ff17 520
2339fc93 521 assert(s);
2339fc93 522
e8783d76
LP
523 if (fstat(fd, &st) < 0)
524 return -errno;
525
0578371f
MY
526 log_unit_debug(UNIT(s), "Trying to stash fd for dev=" DEVNUM_FORMAT_STR "/inode=%" PRIu64,
527 DEVNUM_FORMAT_VAL(st.st_dev), (uint64_t) st.st_ino);
e8783d76 528
2339fc93 529 if (s->n_fd_store >= s->n_fd_store_max)
e8783d76
LP
530 /* Our store is full. Use this errno rather than E[NM]FILE to distinguish from the case
531 * where systemd itself hits the file limit. */
532 return log_unit_debug_errno(UNIT(s), SYNTHETIC_ERRNO(EXFULL), "Hit fd store limit.");
2339fc93 533
03677889
YW
534 LIST_FOREACH(fd_store, i, s->fd_store) {
535 r = same_fd(i->fd, fd);
2339fc93
LP
536 if (r < 0)
537 return r;
538 if (r > 0) {
a02287ea 539 log_unit_debug(UNIT(s), "Suppressing duplicate fd %i in fd store.", fd);
9021ff17 540 return 0; /* fd already included */
2339fc93
LP
541 }
542 }
543
b0cea477 544 fs = new(ServiceFDStore, 1);
2339fc93
LP
545 if (!fs)
546 return -ENOMEM;
547
b0cea477 548 *fs = (ServiceFDStore) {
a02287ea 549 .fd = TAKE_FD(fd),
b0cea477
LP
550 .do_poll = do_poll,
551 .fdname = strdup(name ?: "stored"),
552 };
553
a02287ea 554 if (!fs->fdname)
8dd4c05b 555 return -ENOMEM;
2339fc93 556
cb5a46b8 557 if (do_poll) {
a02287ea
YW
558 r = sd_event_add_io(UNIT(s)->manager->event, &fs->event_source, fs->fd, 0, on_fd_store_io, fs);
559 if (r < 0 && r != -EPERM) /* EPERM indicates fds that aren't pollable, which is OK */
cb5a46b8 560 return r;
0578371f 561 if (r >= 0)
cb5a46b8
KL
562 (void) sd_event_source_set_description(fs->event_source, "service-fd-store");
563 }
7dfbe2e3 564
0578371f
MY
565 log_unit_debug(UNIT(s), "Added fd %i (%s) to fd store.", fs->fd, fs->fdname);
566
a02287ea 567 fs->service = s;
0578371f 568 LIST_PREPEND(fd_store, s->fd_store, TAKE_PTR(fs));
2339fc93
LP
569 s->n_fd_store++;
570
9021ff17 571 return 1; /* fd newly stored */
2339fc93
LP
572}
573
cb5a46b8 574static int service_add_fd_store_set(Service *s, FDSet *fds, const char *name, bool do_poll) {
2339fc93
LP
575 int r;
576
577 assert(s);
578
a02287ea
YW
579 for (;;) {
580 int fd;
2339fc93
LP
581
582 fd = fdset_steal_first(fds);
583 if (fd < 0)
584 break;
585
cb5a46b8 586 r = service_add_fd_store(s, fd, name, do_poll);
b0924635
ZJS
587 if (r == -EXFULL)
588 return log_unit_warning_errno(UNIT(s), r,
589 "Cannot store more fds than FileDescriptorStoreMax=%u, closing remaining.",
590 s->n_fd_store_max);
2339fc93 591 if (r < 0)
b0924635 592 return log_unit_error_errno(UNIT(s), r, "Failed to add fd to store: %m");
2339fc93
LP
593 }
594
2339fc93
LP
595 return 0;
596}
597
e78ee06d 598static void service_remove_fd_store(Service *s, const char *name) {
e78ee06d
LP
599 assert(s);
600 assert(name);
601
80a226b2 602 LIST_FOREACH(fd_store, fs, s->fd_store) {
e78ee06d
LP
603 if (!streq(fs->fdname, name))
604 continue;
605
606 log_unit_debug(UNIT(s), "Got explicit request to remove fd %i (%s), closing.", fs->fd, name);
607 service_fd_store_unlink(fs);
608 }
609}
610
ecea250d 611static usec_t service_running_timeout(Service *s) {
5918a933
AB
612 usec_t delta = 0;
613
614 assert(s);
615
616 if (s->runtime_rand_extra_usec != 0) {
617 delta = random_u64_range(s->runtime_rand_extra_usec);
618 log_unit_debug(UNIT(s), "Adding delta of %s sec to timeout", FORMAT_TIMESPAN(delta, USEC_PER_SEC));
619 }
620
621 return usec_add(usec_add(UNIT(s)->active_enter_timestamp.monotonic,
622 s->runtime_max_usec),
623 delta);
624}
625
e5d6dcce 626static int service_arm_timer(Service *s, bool relative, usec_t usec) {
718db961
LP
627 assert(s);
628
e9276800 629 return unit_arm_timer(UNIT(s), &s->timer_event_source, relative, usec, service_dispatch_timer);
44d8db9e
LP
630}
631
243b1432
LP
632static int service_verify(Service *s) {
633 assert(s);
e0cfed4c 634 assert(UNIT(s)->load_state == UNIT_LOADED);
243b1432 635
03677889 636 for (ServiceExecCommand c = 0; c < _SERVICE_EXEC_COMMAND_MAX; c++)
8688a389
YW
637 LIST_FOREACH(command, command, s->exec_command[c]) {
638 if (!path_is_absolute(command->path) && !filename_is_valid(command->path))
639 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC),
640 "Service %s= binary path \"%s\" is neither a valid executable name nor an absolute path. Refusing.",
641 command->path,
642 service_exec_command_to_string(c));
29500cf8
HC
643 if (strv_isempty(command->argv))
644 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC),
645 "Service has an empty argv in %s=. Refusing.",
646 service_exec_command_to_string(c));
8688a389 647 }
29500cf8 648
d85ff944
YW
649 if (!s->exec_command[SERVICE_EXEC_START] && !s->exec_command[SERVICE_EXEC_STOP] &&
650 UNIT(s)->success_action == EMERGENCY_ACTION_NONE)
3f00d379
ZJS
651 /* FailureAction= only makes sense if one of the start or stop commands is specified.
652 * SuccessAction= will be executed unconditionally if no commands are specified. Hence,
653 * either a command or SuccessAction= are required. */
654
d85ff944 655 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has no ExecStart=, ExecStop=, or SuccessAction=. Refusing.");
243b1432 656
d85ff944
YW
657 if (s->type != SERVICE_ONESHOT && !s->exec_command[SERVICE_EXEC_START])
658 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has no ExecStart= setting, which is only allowed for Type=oneshot services. Refusing.");
96fb8242 659
d85ff944
YW
660 if (!s->remain_after_exit && !s->exec_command[SERVICE_EXEC_START] && UNIT(s)->success_action == EMERGENCY_ACTION_NONE)
661 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has no ExecStart= and no SuccessAction= settings and does not have RemainAfterExit=yes set. Refusing.");
96fb8242 662
d85ff944
YW
663 if (s->type != SERVICE_ONESHOT && s->exec_command[SERVICE_EXEC_START]->command_next)
664 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has more than one ExecStart= setting, which is only allowed for Type=oneshot services. Refusing.");
6cf6bbc2 665
d67c51e3 666 if (s->type == SERVICE_ONESHOT && IN_SET(s->restart, SERVICE_RESTART_ALWAYS, SERVICE_RESTART_ON_SUCCESS))
d85ff944 667 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has Restart= set to either always or on-success, which isn't allowed for Type=oneshot services. Refusing.");
37520c1b 668
596e4470
HC
669 if (s->type == SERVICE_ONESHOT && s->exit_type == SERVICE_EXIT_CGROUP)
670 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has ExitType=cgroup set, which isn't allowed for Type=oneshot services. Refusing.");
671
d85ff944
YW
672 if (s->type == SERVICE_DBUS && !s->bus_name)
673 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service is of type D-Bus but no D-Bus service name has been specified. Refusing.");
4d0e5dbd 674
d85ff944
YW
675 if (s->exec_context.pam_name && !IN_SET(s->kill_context.kill_mode, KILL_CONTROL_GROUP, KILL_MIXED))
676 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENOEXEC), "Service has PAM enabled. Kill mode must be set to 'control-group' or 'mixed'. Refusing.");
05e343b7 677
6b7e5923
PS
678 if (s->usb_function_descriptors && !s->usb_function_strings)
679 log_unit_warning(UNIT(s), "Service has USBFunctionDescriptors= setting, but no USBFunctionStrings=. Ignoring.");
680
681 if (!s->usb_function_descriptors && s->usb_function_strings)
682 log_unit_warning(UNIT(s), "Service has USBFunctionStrings= setting, but no USBFunctionDescriptors=. Ignoring.");
683
36c16a7c 684 if (s->runtime_max_usec != USEC_INFINITY && s->type == SERVICE_ONESHOT)
226a08f2 685 log_unit_warning(UNIT(s), "RuntimeMaxSec= has no effect in combination with Type=oneshot. Ignoring.");
36c16a7c 686
5918a933
AB
687 if (s->runtime_max_usec == USEC_INFINITY && s->runtime_rand_extra_usec != 0)
688 log_unit_warning(UNIT(s), "Service has RuntimeRandomizedExtraSec= setting, but no RuntimeMaxSec=. Ignoring.");
689
86838bf0
LB
690 if (s->exit_type == SERVICE_EXIT_CGROUP && cg_unified() < CGROUP_UNIFIED_SYSTEMD)
691 log_unit_warning(UNIT(s), "Service has ExitType=cgroup set, but we are running with legacy cgroups v1, which might not work correctly. Continuing.");
692
e9f17fa8
MY
693 if (s->restart_max_delay_usec == USEC_INFINITY && s->restart_steps > 0)
694 log_unit_warning(UNIT(s), "Service has RestartSteps= but no RestartMaxDelaySec= setting. Ignoring.");
be1adc27 695
e9f17fa8
MY
696 if (s->restart_max_delay_usec != USEC_INFINITY && s->restart_steps == 0)
697 log_unit_warning(UNIT(s), "Service has RestartMaxDelaySec= but no RestartSteps= setting. Ignoring.");
be1adc27 698
e9f17fa8
MY
699 if (s->restart_max_delay_usec < s->restart_usec) {
700 log_unit_warning(UNIT(s), "RestartMaxDelaySec= has a value smaller than RestartSec=, resetting RestartSec= to RestartMaxDelaySec=.");
701 s->restart_usec = s->restart_max_delay_usec;
be1adc27
MY
702 }
703
243b1432
LP
704 return 0;
705}
706
a40eb732
LP
707static int service_add_default_dependencies(Service *s) {
708 int r;
709
710 assert(s);
711
45f06b34
LP
712 if (!UNIT(s)->default_dependencies)
713 return 0;
714
a40eb732
LP
715 /* Add a number of automatic dependencies useful for the
716 * majority of services. */
717
463d0d15 718 if (MANAGER_IS_SYSTEM(UNIT(s)->manager)) {
3835b9aa
LB
719 /* First, pull in the really early boot stuff, and
720 * require it, so that we fail if we can't acquire
721 * it. */
722
723 r = unit_add_two_dependencies_by_name(UNIT(s), UNIT_AFTER, UNIT_REQUIRES, SPECIAL_SYSINIT_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
cb4c247d
LP
724 if (r < 0)
725 return r;
726 } else {
727
728 /* In the --user instance there's no sysinit.target,
729 * in that case require basic.target instead. */
730
35d8c19a 731 r = unit_add_dependency_by_name(UNIT(s), UNIT_REQUIRES, SPECIAL_BASIC_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
cb4c247d
LP
732 if (r < 0)
733 return r;
734 }
735
736 /* Second, if the rest of the base system is in the same
737 * transaction, order us after it, but do not pull it in or
738 * even require it. */
35d8c19a 739 r = unit_add_dependency_by_name(UNIT(s), UNIT_AFTER, SPECIAL_BASIC_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
fccd44ec
KS
740 if (r < 0)
741 return r;
a40eb732 742
cb4c247d 743 /* Third, add us in for normal shutdown. */
3835b9aa 744 return unit_add_two_dependencies_by_name(UNIT(s), UNIT_BEFORE, UNIT_CONFLICTS, SPECIAL_SHUTDOWN_TARGET, true, UNIT_DEPENDENCY_DEFAULT);
a40eb732
LP
745}
746
3b7f79dc 747static void service_fix_stdio(Service *s) {
4dfc092a
LP
748 assert(s);
749
3b7f79dc
LP
750 /* Note that EXEC_INPUT_NULL and EXEC_OUTPUT_INHERIT play a special role here: they are both the
751 * default value that is subject to automatic overriding triggered by other settings and an explicit
162392b7 752 * choice the user can make. We don't distinguish between these cases currently. */
3b7f79dc
LP
753
754 if (s->exec_context.std_input == EXEC_INPUT_NULL &&
755 s->exec_context.stdin_data_size > 0)
756 s->exec_context.std_input = EXEC_INPUT_DATA;
757
758 if (IN_SET(s->exec_context.std_input,
759 EXEC_INPUT_TTY,
760 EXEC_INPUT_TTY_FORCE,
761 EXEC_INPUT_TTY_FAIL,
762 EXEC_INPUT_SOCKET,
763 EXEC_INPUT_NAMED_FD))
764 return;
765
766 /* We assume these listed inputs refer to bidirectional streams, and hence duplicating them from
767 * stdin to stdout/stderr makes sense and hence leaving EXEC_OUTPUT_INHERIT in place makes sense,
768 * too. Outputs such as regular files or sealed data memfds otoh don't really make sense to be
769 * duplicated for both input and output at the same time (since they then would cause a feedback
770 * loop), hence override EXEC_OUTPUT_INHERIT with the default stderr/stdout setting. */
4dfc092a
LP
771
772 if (s->exec_context.std_error == EXEC_OUTPUT_INHERIT &&
3b7f79dc 773 s->exec_context.std_output == EXEC_OUTPUT_INHERIT)
c9e120e0 774 s->exec_context.std_error = UNIT(s)->manager->defaults.std_error;
4dfc092a 775
3b7f79dc 776 if (s->exec_context.std_output == EXEC_OUTPUT_INHERIT)
c9e120e0 777 s->exec_context.std_output = UNIT(s)->manager->defaults.std_output;
4dfc092a
LP
778}
779
45f06b34
LP
780static int service_setup_bus_name(Service *s) {
781 int r;
782
783 assert(s);
784
0f97b7c3 785 /* If s->bus_name is not set, then the unit will be refused by service_verify() later. */
1e8b312e 786 if (!s->bus_name)
45f06b34
LP
787 return 0;
788
1e8b312e
LP
789 if (s->type == SERVICE_DBUS) {
790 r = unit_add_dependency_by_name(UNIT(s), UNIT_REQUIRES, SPECIAL_DBUS_SOCKET, true, UNIT_DEPENDENCY_FILE);
791 if (r < 0)
792 return log_unit_error_errno(UNIT(s), r, "Failed to add dependency on " SPECIAL_DBUS_SOCKET ": %m");
45f06b34 793
1e8b312e
LP
794 /* We always want to be ordered against dbus.socket if both are in the transaction. */
795 r = unit_add_dependency_by_name(UNIT(s), UNIT_AFTER, SPECIAL_DBUS_SOCKET, true, UNIT_DEPENDENCY_FILE);
796 if (r < 0)
797 return log_unit_error_errno(UNIT(s), r, "Failed to add dependency on " SPECIAL_DBUS_SOCKET ": %m");
798 }
45f06b34
LP
799
800 r = unit_watch_bus_name(UNIT(s), s->bus_name);
801 if (r == -EEXIST)
802 return log_unit_error_errno(UNIT(s), r, "Two services allocated for the same bus name %s, refusing operation.", s->bus_name);
803 if (r < 0)
804 return log_unit_error_errno(UNIT(s), r, "Cannot watch bus name %s: %m", s->bus_name);
805
806 return 0;
807}
808
8545f7ce
LP
809static int service_add_extras(Service *s) {
810 int r;
811
812 assert(s);
813
814 if (s->type == _SERVICE_TYPE_INVALID) {
815 /* Figure out a type automatically */
816 if (s->bus_name)
817 s->type = SERVICE_DBUS;
818 else if (s->exec_command[SERVICE_EXEC_START])
819 s->type = SERVICE_SIMPLE;
820 else
821 s->type = SERVICE_ONESHOT;
822 }
823
824 /* Oneshot services have disabled start timeout by default */
825 if (s->type == SERVICE_ONESHOT && !s->start_timeout_defined)
36c16a7c 826 s->timeout_start_usec = USEC_INFINITY;
8545f7ce 827
3b7f79dc 828 service_fix_stdio(s);
8545f7ce
LP
829
830 r = unit_patch_contexts(UNIT(s));
831 if (r < 0)
832 return r;
833
834 r = unit_add_exec_dependencies(UNIT(s), &s->exec_context);
835 if (r < 0)
836 return r;
837
d79200e2 838 r = unit_set_default_slice(UNIT(s));
8545f7ce
LP
839 if (r < 0)
840 return r;
841
4330dc03
AJ
842 /* If the service needs the notify socket, let's enable it automatically. */
843 if (s->notify_access == NOTIFY_NONE &&
3bd28bf7 844 (IN_SET(s->type, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD) || s->watchdog_usec > 0 || s->n_fd_store_max > 0))
8545f7ce
LP
845 s->notify_access = NOTIFY_MAIN;
846
afcfaa69
LP
847 /* If no OOM policy was explicitly set, then default to the configure default OOM policy. Except when
848 * delegation is on, in that case it we assume the payload knows better what to do and can process
5238e957 849 * things in a more focused way. */
afcfaa69 850 if (s->oom_policy < 0)
c9e120e0 851 s->oom_policy = s->cgroup_context.delegate ? OOM_CONTINUE : UNIT(s)->manager->defaults.oom_policy;
afcfaa69
LP
852
853 /* Let the kernel do the killing if that's requested. */
854 s->cgroup_context.memory_oom_group = s->oom_policy == OOM_KILL;
855
45f06b34
LP
856 r = service_add_default_dependencies(s);
857 if (r < 0)
858 return r;
8545f7ce 859
45f06b34
LP
860 r = service_setup_bus_name(s);
861 if (r < 0)
862 return r;
8545f7ce
LP
863
864 return 0;
865}
866
e537352b 867static int service_load(Unit *u) {
e9fa1bf7 868 Service *s = ASSERT_PTR(SERVICE(u));
8bb2d17d 869 int r;
e537352b 870
e0cfed4c 871 r = unit_load_fragment_and_dropin(u, true);
c2756a68 872 if (r < 0)
5cb5a6ff
LP
873 return r;
874
e0cfed4c
ZJS
875 if (u->load_state != UNIT_LOADED)
876 return 0;
034c6ed7 877
23a177ef 878 /* This is a new unit? Then let's add in some extras */
e0cfed4c
ZJS
879 r = service_add_extras(s);
880 if (r < 0)
881 return r;
8e274523 882
243b1432 883 return service_verify(s);
034c6ed7
LP
884}
885
f2eb0c50
LP
886static void service_dump_fdstore(Service *s, FILE *f, const char *prefix) {
887 assert(s);
888 assert(f);
889 assert(prefix);
890
891 LIST_FOREACH(fd_store, i, s->fd_store) {
892 _cleanup_free_ char *path = NULL;
893 struct stat st;
894 int flags;
895
896 if (fstat(i->fd, &st) < 0) {
897 log_debug_errno(errno, "Failed to stat fdstore entry: %m");
898 continue;
899 }
900
901 flags = fcntl(i->fd, F_GETFL);
902 if (flags < 0) {
903 log_debug_errno(errno, "Failed to get fdstore entry flags: %m");
904 continue;
905 }
906
907 (void) fd_get_path(i->fd, &path);
908
909 fprintf(f,
910 "%s%s '%s' (type=%s; dev=" DEVNUM_FORMAT_STR "; inode=%" PRIu64 "; rdev=" DEVNUM_FORMAT_STR "; path=%s; access=%s)\n",
911 prefix, i == s->fd_store ? "File Descriptor Store Entry:" : " ",
912 i->fdname,
8ba11146 913 strna(inode_type_to_string(st.st_mode)),
f2eb0c50
LP
914 DEVNUM_FORMAT_VAL(st.st_dev),
915 (uint64_t) st.st_ino,
916 DEVNUM_FORMAT_VAL(st.st_rdev),
917 strna(path),
8ba11146 918 strna(accmode_to_string(flags)));
f2eb0c50
LP
919 }
920}
921
87f0e418 922static void service_dump(Unit *u, FILE *f, const char *prefix) {
e9fa1bf7 923 Service *s = ASSERT_PTR(SERVICE(u));
47be870b 924 const char *prefix2;
5cb5a6ff 925
4c940960 926 prefix = strempty(prefix);
63c372cb 927 prefix2 = strjoina(prefix, "\t");
44d8db9e 928
5cb5a6ff 929 fprintf(f,
81a2b7ce 930 "%sService State: %s\n"
f42806df
LP
931 "%sResult: %s\n"
932 "%sReload Result: %s\n"
4c2f5842 933 "%sClean Result: %s\n"
81a2b7ce 934 "%sPermissionsStartOnly: %s\n"
8e274523 935 "%sRootDirectoryStartOnly: %s\n"
02ee865a 936 "%sRemainAfterExit: %s\n"
3185a36b 937 "%sGuessMainPID: %s\n"
c952c6ec 938 "%sType: %s\n"
2cf3143a 939 "%sRestart: %s\n"
308d72dc 940 "%sNotifyAccess: %s\n"
afcfaa69 941 "%sNotifyState: %s\n"
3bd28bf7
LP
942 "%sOOMPolicy: %s\n"
943 "%sReloadSignal: %s\n",
81a2b7ce 944 prefix, service_state_to_string(s->state),
f42806df
LP
945 prefix, service_result_to_string(s->result),
946 prefix, service_result_to_string(s->reload_result),
4c2f5842 947 prefix, service_result_to_string(s->clean_result),
81a2b7ce 948 prefix, yes_no(s->permissions_start_only),
8e274523 949 prefix, yes_no(s->root_directory_start_only),
02ee865a 950 prefix, yes_no(s->remain_after_exit),
3185a36b 951 prefix, yes_no(s->guess_main_pid),
c952c6ec 952 prefix, service_type_to_string(s->type),
2cf3143a 953 prefix, service_restart_to_string(s->restart),
19dff691 954 prefix, notify_access_to_string(service_get_notify_access(s)),
afcfaa69 955 prefix, notify_state_to_string(s->notify_state),
3bd28bf7
LP
956 prefix, oom_policy_to_string(s->oom_policy),
957 prefix, signal_to_string(s->reload_signal));
5cb5a6ff 958
c79ab77c 959 if (pidref_is_set(&s->control_pid))
70123e68 960 fprintf(f,
ccd06097 961 "%sControl PID: "PID_FMT"\n",
c79ab77c 962 prefix, s->control_pid.pid);
70123e68 963
c79ab77c 964 if (pidref_is_set(&s->main_pid))
70123e68 965 fprintf(f,
ccd06097 966 "%sMain PID: "PID_FMT"\n"
6dfa5494
LP
967 "%sMain PID Known: %s\n"
968 "%sMain PID Alien: %s\n",
c79ab77c 969 prefix, s->main_pid.pid,
6dfa5494
LP
970 prefix, yes_no(s->main_pid_known),
971 prefix, yes_no(s->main_pid_alien));
70123e68 972
034c6ed7
LP
973 if (s->pid_file)
974 fprintf(f,
975 "%sPIDFile: %s\n",
976 prefix, s->pid_file);
977
05e343b7
LP
978 if (s->bus_name)
979 fprintf(f,
980 "%sBusName: %s\n"
981 "%sBus Name Good: %s\n",
982 prefix, s->bus_name,
983 prefix, yes_no(s->bus_name_good));
984
9dfb64f8
ZJS
985 if (UNIT_ISSET(s->accept_socket))
986 fprintf(f,
987 "%sAccept Socket: %s\n",
988 prefix, UNIT_DEREF(s->accept_socket)->id);
989
c9d41699
YW
990 fprintf(f,
991 "%sRestartSec: %s\n"
be1adc27 992 "%sRestartSteps: %u\n"
e9f17fa8 993 "%sRestartMaxDelaySec: %s\n"
c9d41699 994 "%sTimeoutStartSec: %s\n"
bf760801
JK
995 "%sTimeoutStopSec: %s\n"
996 "%sTimeoutStartFailureMode: %s\n"
997 "%sTimeoutStopFailureMode: %s\n",
5291f26d 998 prefix, FORMAT_TIMESPAN(s->restart_usec, USEC_PER_SEC),
be1adc27 999 prefix, s->restart_steps,
e9f17fa8 1000 prefix, FORMAT_TIMESPAN(s->restart_max_delay_usec, USEC_PER_SEC),
5291f26d
ZJS
1001 prefix, FORMAT_TIMESPAN(s->timeout_start_usec, USEC_PER_SEC),
1002 prefix, FORMAT_TIMESPAN(s->timeout_stop_usec, USEC_PER_SEC),
bf760801
JK
1003 prefix, service_timeout_failure_mode_to_string(s->timeout_start_failure_mode),
1004 prefix, service_timeout_failure_mode_to_string(s->timeout_stop_failure_mode));
dcab85be
YW
1005
1006 if (s->timeout_abort_set)
1007 fprintf(f,
1008 "%sTimeoutAbortSec: %s\n",
5291f26d 1009 prefix, FORMAT_TIMESPAN(s->timeout_abort_usec, USEC_PER_SEC));
dcab85be
YW
1010
1011 fprintf(f,
1012 "%sRuntimeMaxSec: %s\n"
5918a933 1013 "%sRuntimeRandomizedExtraSec: %s\n"
dcab85be 1014 "%sWatchdogSec: %s\n",
5291f26d 1015 prefix, FORMAT_TIMESPAN(s->runtime_max_usec, USEC_PER_SEC),
5918a933 1016 prefix, FORMAT_TIMESPAN(s->runtime_rand_extra_usec, USEC_PER_SEC),
5291f26d 1017 prefix, FORMAT_TIMESPAN(s->watchdog_usec, USEC_PER_SEC));
c9d41699 1018
4819ff03 1019 kill_context_dump(&s->kill_context, f, prefix);
5cb5a6ff
LP
1020 exec_context_dump(&s->exec_context, f, prefix);
1021
68e58ca9 1022 for (ServiceExecCommand c = 0; c < _SERVICE_EXEC_COMMAND_MAX; c++) {
44d8db9e
LP
1023 if (!s->exec_command[c])
1024 continue;
1025
40d50879 1026 fprintf(f, "%s-> %s:\n",
94f04347 1027 prefix, service_exec_command_to_string(c));
44d8db9e
LP
1028
1029 exec_command_dump_list(s->exec_command[c], f, prefix2);
5cb5a6ff 1030 }
44d8db9e 1031
8c47c732
LP
1032 if (s->status_text)
1033 fprintf(f, "%sStatus Text: %s\n",
1034 prefix, s->status_text);
a354329f 1035
ece174c5 1036 if (s->n_fd_store_max > 0)
a354329f
LP
1037 fprintf(f,
1038 "%sFile Descriptor Store Max: %u\n"
b9c1883a 1039 "%sFile Descriptor Store Pin: %s\n"
da6053d0 1040 "%sFile Descriptor Store Current: %zu\n",
a354329f 1041 prefix, s->n_fd_store_max,
b9c1883a 1042 prefix, exec_preserve_mode_to_string(s->fd_store_preserve_mode),
a354329f 1043 prefix, s->n_fd_store);
18f573aa 1044
f2eb0c50
LP
1045 service_dump_fdstore(s, f, prefix);
1046
cd48e23f
RP
1047 if (s->open_files)
1048 LIST_FOREACH(open_files, of, s->open_files) {
1049 _cleanup_free_ char *ofs = NULL;
1050 int r;
1051
1052 r = open_file_to_string(of, &ofs);
1053 if (r < 0) {
1054 log_debug_errno(r,
1055 "Failed to convert OpenFile= setting to string, ignoring: %m");
1056 continue;
1057 }
1058
1059 fprintf(f, "%sOpen File: %s\n", prefix, ofs);
1060 }
1061
bc0623df 1062 cgroup_context_dump(UNIT(s), f, prefix);
5cb5a6ff
LP
1063}
1064
495e75ed 1065static int service_is_suitable_main_pid(Service *s, PidRef *pid, int prio) {
db256aab 1066 Unit *owner;
becdfcb9 1067 int r;
db256aab
LP
1068
1069 assert(s);
495e75ed 1070 assert(pidref_is_set(pid));
db256aab
LP
1071
1072 /* Checks whether the specified PID is suitable as main PID for this service. returns negative if not, 0 if the
1073 * PID is questionnable but should be accepted if the source of configuration is trusted. > 0 if the PID is
1074 * good */
1075
a7a87769 1076 if (pidref_is_self(pid) || pid->pid == 1)
495e75ed 1077 return log_unit_full_errno(UNIT(s), prio, SYNTHETIC_ERRNO(EPERM), "New main PID "PID_FMT" is the manager, refusing.", pid->pid);
db256aab 1078
495e75ed
LP
1079 if (pidref_equal(pid, &s->control_pid))
1080 return log_unit_full_errno(UNIT(s), prio, SYNTHETIC_ERRNO(EPERM), "New main PID "PID_FMT" is the control process, refusing.", pid->pid);
db256aab 1081
becdfcb9 1082 r = pidref_is_alive(pid);
bca08053
MY
1083 if (r < 0)
1084 return log_unit_full_errno(UNIT(s), prio, r, "Failed to check if main PID "PID_FMT" exists or is a zombie: %m", pid->pid);
becdfcb9 1085 if (r == 0)
495e75ed 1086 return log_unit_full_errno(UNIT(s), prio, SYNTHETIC_ERRNO(ESRCH), "New main PID "PID_FMT" does not exist or is a zombie.", pid->pid);
db256aab 1087
495e75ed 1088 owner = manager_get_unit_by_pidref(UNIT(s)->manager, pid);
db256aab 1089 if (owner == UNIT(s)) {
495e75ed 1090 log_unit_debug(UNIT(s), "New main PID "PID_FMT" belongs to service, we are happy.", pid->pid);
db256aab
LP
1091 return 1; /* Yay, it's definitely a good PID */
1092 }
1093
1094 return 0; /* Hmm it's a suspicious PID, let's accept it if configuration source is trusted */
1095}
1096
c5419d42 1097static int service_load_pid_file(Service *s, bool may_warn) {
b1f6901d 1098 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
73969ab6 1099 bool questionable_pid_file = false;
7fd1b19b 1100 _cleanup_free_ char *k = NULL;
254d1313 1101 _cleanup_close_ int fd = -EBADF;
db256aab 1102 int r, prio;
034c6ed7
LP
1103
1104 assert(s);
1105
034c6ed7 1106 if (!s->pid_file)
13230d5d 1107 return -ENOENT;
034c6ed7 1108
db256aab
LP
1109 prio = may_warn ? LOG_INFO : LOG_DEBUG;
1110
f461a28d 1111 r = chase(s->pid_file, NULL, CHASE_SAFE, NULL, &fd);
a5648b80 1112 if (r == -ENOLINK) {
8ed6f81b
YW
1113 log_unit_debug_errno(UNIT(s), r,
1114 "Potentially unsafe symlink chain, will now retry with relaxed checks: %s", s->pid_file);
73969ab6
LP
1115
1116 questionable_pid_file = true;
1117
f461a28d 1118 r = chase(s->pid_file, NULL, 0, NULL, &fd);
73969ab6 1119 }
a5648b80 1120 if (r < 0)
f86a388d 1121 return log_unit_full_errno(UNIT(s), prio, r,
8ed6f81b 1122 "Can't open PID file %s (yet?) after %s: %m", s->pid_file, service_state_to_string(s->state));
db256aab 1123
a5648b80 1124 /* Let's read the PID file now that we chased it down. But we need to convert the O_PATH fd
f461a28d 1125 * chase() returned us into a proper fd first. */
ddb6eeaf 1126 r = read_one_line_file(FORMAT_PROC_FD_PATH(fd), &k);
db256aab 1127 if (r < 0)
a5648b80
ZJS
1128 return log_unit_error_errno(UNIT(s), r,
1129 "Can't convert PID files %s O_PATH file descriptor to proper file descriptor: %m",
1130 s->pid_file);
034c6ed7 1131
495e75ed 1132 r = pidref_set_pidstr(&pidref, k);
db256aab 1133 if (r < 0)
8ed6f81b 1134 return log_unit_full_errno(UNIT(s), prio, r, "Failed to parse PID from file %s: %m", s->pid_file);
db256aab 1135
495e75ed 1136 if (s->main_pid_known && pidref_equal(&pidref, &s->main_pid))
db256aab
LP
1137 return 0;
1138
495e75ed 1139 r = service_is_suitable_main_pid(s, &pidref, prio);
db256aab 1140 if (r < 0)
5925dd3c 1141 return r;
db256aab
LP
1142 if (r == 0) {
1143 struct stat st;
406eaf93 1144
d85ff944
YW
1145 if (questionable_pid_file)
1146 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(EPERM),
1147 "Refusing to accept PID outside of service control group, acquired through unsafe symlink chain: %s", s->pid_file);
73969ab6 1148
db256aab
LP
1149 /* Hmm, it's not clear if the new main PID is safe. Let's allow this if the PID file is owned by root */
1150
1151 if (fstat(fd, &st) < 0)
1152 return log_unit_error_errno(UNIT(s), errno, "Failed to fstat() PID file O_PATH fd: %m");
1153
d85ff944
YW
1154 if (st.st_uid != 0)
1155 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(EPERM),
b1f6901d 1156 "New main PID "PID_FMT" does not belong to service, and PID file is not owned by root. Refusing.", pidref.pid);
db256aab 1157
b1f6901d 1158 log_unit_debug(UNIT(s), "New main PID "PID_FMT" does not belong to service, but we'll accept it since PID file is owned by root.", pidref.pid);
e10c9985
YS
1159 }
1160
db01f8b3 1161 if (s->main_pid_known) {
b1f6901d 1162 log_unit_debug(UNIT(s), "Main PID changing: "PID_FMT" -> "PID_FMT, s->main_pid.pid, pidref.pid);
8bb2d17d 1163
db01f8b3
MS
1164 service_unwatch_main_pid(s);
1165 s->main_pid_known = false;
3a111838 1166 } else
b1f6901d 1167 log_unit_debug(UNIT(s), "Main PID loaded: "PID_FMT, pidref.pid);
db01f8b3 1168
b1f6901d 1169 r = service_set_main_pidref(s, &pidref);
117dcc57 1170 if (r < 0)
16f6025e
LP
1171 return r;
1172
495e75ed 1173 r = unit_watch_pidref(UNIT(s), &s->main_pid, /* exclusive= */ false);
e8b509d3 1174 if (r < 0) /* FIXME: we need to do something here */
b1f6901d 1175 return log_unit_warning_errno(UNIT(s), r, "Failed to watch PID "PID_FMT" for service: %m", s->main_pid.pid);
034c6ed7 1176
db256aab 1177 return 1;
034c6ed7
LP
1178}
1179
783e05d6 1180static void service_search_main_pid(Service *s) {
495e75ed 1181 _cleanup_(pidref_done) PidRef pid = PIDREF_NULL;
4fbf50b3
LP
1182 int r;
1183
1184 assert(s);
1185
c79ab77c 1186 /* If we know it anyway, don't ever fall back to unreliable heuristics */
4fbf50b3 1187 if (s->main_pid_known)
783e05d6 1188 return;
4fbf50b3 1189
3185a36b 1190 if (!s->guess_main_pid)
783e05d6 1191 return;
3185a36b 1192
c79ab77c 1193 assert(!pidref_is_set(&s->main_pid));
4fbf50b3 1194
783e05d6
ZJS
1195 if (unit_search_main_pid(UNIT(s), &pid) < 0)
1196 return;
4fbf50b3 1197
495e75ed
LP
1198 log_unit_debug(UNIT(s), "Main PID guessed: "PID_FMT, pid.pid);
1199 if (service_set_main_pidref(s, &pid) < 0)
783e05d6 1200 return;
4fbf50b3 1201
495e75ed 1202 r = unit_watch_pidref(UNIT(s), &s->main_pid, /* exclusive= */ false);
783e05d6 1203 if (r < 0)
4fbf50b3 1204 /* FIXME: we need to do something here */
b1f6901d 1205 log_unit_warning_errno(UNIT(s), r, "Failed to watch PID "PID_FMT" from: %m", s->main_pid.pid);
4fbf50b3
LP
1206}
1207
034c6ed7
LP
1208static void service_set_state(Service *s, ServiceState state) {
1209 ServiceState old_state;
e056b01d 1210 const UnitActiveState *table;
842129f5 1211
5cb5a6ff
LP
1212 assert(s);
1213
6fcbec6f
LP
1214 if (s->state != state)
1215 bus_unit_send_pending_change_signal(UNIT(s), false);
1216
e056b01d
LP
1217 table = s->type == SERVICE_IDLE ? state_translation_table_idle : state_translation_table;
1218
034c6ed7 1219 old_state = s->state;
5cb5a6ff 1220 s->state = state;
034c6ed7 1221
3a111838
MS
1222 service_unwatch_pid_file(s);
1223
842129f5 1224 if (!IN_SET(state,
31cd5f63 1225 SERVICE_CONDITION, SERVICE_START_PRE, SERVICE_START, SERVICE_START_POST,
36c16a7c 1226 SERVICE_RUNNING,
3bd28bf7 1227 SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY,
c87700a1 1228 SERVICE_STOP, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL, SERVICE_STOP_POST,
bf760801 1229 SERVICE_FINAL_WATCHDOG, SERVICE_FINAL_SIGTERM, SERVICE_FINAL_SIGKILL,
4c2f5842
LP
1230 SERVICE_AUTO_RESTART,
1231 SERVICE_CLEANING))
5dcadb4c 1232 s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
034c6ed7 1233
94114711 1234 if (!SERVICE_STATE_WITH_MAIN_PROCESS(state)) {
5e94833f 1235 service_unwatch_main_pid(s);
867b3b7d
LP
1236 s->main_command = NULL;
1237 }
034c6ed7 1238
94114711 1239 if (!SERVICE_STATE_WITH_CONTROL_PROCESS(state)) {
5e94833f 1240 service_unwatch_control_pid(s);
034c6ed7 1241 s->control_command = NULL;
a16e1123 1242 s->control_command_id = _SERVICE_EXEC_COMMAND_INVALID;
e537352b 1243 }
034c6ed7 1244
a1d31573
LP
1245 if (IN_SET(state,
1246 SERVICE_DEAD, SERVICE_FAILED,
09d04ad3 1247 SERVICE_DEAD_BEFORE_AUTO_RESTART, SERVICE_FAILED_BEFORE_AUTO_RESTART, SERVICE_AUTO_RESTART, SERVICE_AUTO_RESTART_QUEUED,
b9c1883a 1248 SERVICE_DEAD_RESOURCES_PINNED)) {
a911bb9a 1249 unit_unwatch_all_pids(UNIT(s));
50be4f4a
LP
1250 unit_dequeue_rewatch_pids(UNIT(s));
1251 }
a911bb9a 1252
5686391b 1253 if (state != SERVICE_START)
5dcadb4c 1254 s->exec_fd_event_source = sd_event_source_disable_unref(s->exec_fd_event_source);
5686391b 1255
3bd28bf7 1256 if (!IN_SET(state, SERVICE_START_POST, SERVICE_RUNNING, SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY))
a6927d7f
MO
1257 service_stop_watchdog(s);
1258
f6023656
LP
1259 /* For the inactive states unit_notify() will trim the cgroup,
1260 * but for exit we have to do that ourselves... */
2c289ea8 1261 if (state == SERVICE_EXITED && !MANAGER_IS_RELOADING(UNIT(s)->manager))
efdb0237 1262 unit_prune_cgroup(UNIT(s));
f6023656 1263
e537352b 1264 if (old_state != state)
f2341e0a 1265 log_unit_debug(UNIT(s), "Changed %s -> %s", service_state_to_string(old_state), service_state_to_string(state));
acbb0225 1266
96b09de5 1267 unit_notify(UNIT(s), table[old_state], table[state], s->reload_result == SERVICE_SUCCESS);
034c6ed7
LP
1268}
1269
36c16a7c
LP
1270static usec_t service_coldplug_timeout(Service *s) {
1271 assert(s);
1272
1273 switch (s->deserialized_state) {
1274
31cd5f63 1275 case SERVICE_CONDITION:
36c16a7c
LP
1276 case SERVICE_START_PRE:
1277 case SERVICE_START:
1278 case SERVICE_START_POST:
1279 case SERVICE_RELOAD:
3bd28bf7
LP
1280 case SERVICE_RELOAD_SIGNAL:
1281 case SERVICE_RELOAD_NOTIFY:
36c16a7c
LP
1282 return usec_add(UNIT(s)->state_change_timestamp.monotonic, s->timeout_start_usec);
1283
1284 case SERVICE_RUNNING:
5918a933 1285 return service_running_timeout(s);
36c16a7c
LP
1286
1287 case SERVICE_STOP:
36c16a7c
LP
1288 case SERVICE_STOP_SIGTERM:
1289 case SERVICE_STOP_SIGKILL:
1290 case SERVICE_STOP_POST:
1291 case SERVICE_FINAL_SIGTERM:
1292 case SERVICE_FINAL_SIGKILL:
1293 return usec_add(UNIT(s)->state_change_timestamp.monotonic, s->timeout_stop_usec);
1294
dc653bf4 1295 case SERVICE_STOP_WATCHDOG:
bf760801 1296 case SERVICE_FINAL_WATCHDOG:
dc653bf4
JK
1297 return usec_add(UNIT(s)->state_change_timestamp.monotonic, service_timeout_abort_usec(s));
1298
36c16a7c 1299 case SERVICE_AUTO_RESTART:
5171356e 1300 return usec_add(UNIT(s)->inactive_enter_timestamp.monotonic, service_restart_usec_next(s));
36c16a7c 1301
4c2f5842 1302 case SERVICE_CLEANING:
12213aed 1303 return usec_add(UNIT(s)->state_change_timestamp.monotonic, s->exec_context.timeout_clean_usec);
4c2f5842 1304
36c16a7c
LP
1305 default:
1306 return USEC_INFINITY;
1307 }
1308}
1309
be847e82 1310static int service_coldplug(Unit *u) {
a16e1123
LP
1311 Service *s = SERVICE(u);
1312 int r;
1313
1314 assert(s);
1315 assert(s->state == SERVICE_DEAD);
1316
930d2838
LP
1317 if (s->deserialized_state == s->state)
1318 return 0;
6c12b52e 1319
e5d6dcce 1320 r = service_arm_timer(s, /* relative= */ false, service_coldplug_timeout(s));
36c16a7c
LP
1321 if (r < 0)
1322 return r;
a911bb9a 1323
c79ab77c 1324 if (pidref_is_set(&s->main_pid) &&
4d9f092b 1325 pidref_is_unwaited(&s->main_pid) > 0 &&
94114711 1326 SERVICE_STATE_WITH_MAIN_PROCESS(s->deserialized_state)) {
495e75ed 1327 r = unit_watch_pidref(UNIT(s), &s->main_pid, /* exclusive= */ false);
930d2838
LP
1328 if (r < 0)
1329 return r;
1330 }
bb242b7b 1331
c79ab77c 1332 if (pidref_is_set(&s->control_pid) &&
4d9f092b 1333 pidref_is_unwaited(&s->control_pid) > 0 &&
94114711 1334 SERVICE_STATE_WITH_CONTROL_PROCESS(s->deserialized_state)) {
495e75ed 1335 r = unit_watch_pidref(UNIT(s), &s->control_pid, /* exclusive= */ false);
930d2838
LP
1336 if (r < 0)
1337 return r;
a16e1123 1338 }
92c1622e 1339
a1d31573
LP
1340 if (!IN_SET(s->deserialized_state,
1341 SERVICE_DEAD, SERVICE_FAILED,
09d04ad3 1342 SERVICE_DEAD_BEFORE_AUTO_RESTART, SERVICE_FAILED_BEFORE_AUTO_RESTART, SERVICE_AUTO_RESTART, SERVICE_AUTO_RESTART_QUEUED,
b9c1883a
LP
1343 SERVICE_CLEANING,
1344 SERVICE_DEAD_RESOURCES_PINNED)) {
50be4f4a 1345 (void) unit_enqueue_rewatch_pids(u);
e8a565cb 1346 (void) unit_setup_exec_runtime(u);
9cc54544 1347 (void) unit_setup_cgroup_runtime(u);
e8a565cb 1348 }
29206d46 1349
3bd28bf7 1350 if (IN_SET(s->deserialized_state, SERVICE_START_POST, SERVICE_RUNNING, SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY))
50be4f4a
LP
1351 service_start_watchdog(s);
1352
3ebcd323
ZJS
1353 if (UNIT_ISSET(s->accept_socket)) {
1354 Socket* socket = SOCKET(UNIT_DEREF(s->accept_socket));
1355
1356 if (socket->max_connections_per_source > 0) {
1357 SocketPeer *peer;
1358
1359 /* Make a best-effort attempt at bumping the connection count */
1360 if (socket_acquire_peer(socket, s->socket_fd, &peer) > 0) {
3fabebf4
LP
1361 socket_peer_unref(s->socket_peer);
1362 s->socket_peer = peer;
3ebcd323
ZJS
1363 }
1364 }
1365 }
1366
930d2838 1367 service_set_state(s, s->deserialized_state);
a16e1123
LP
1368 return 0;
1369}
1370
25b583d7
LP
1371static int service_collect_fds(
1372 Service *s,
1373 int **fds,
1374 char ***fd_names,
1375 size_t *n_socket_fds,
1376 size_t *n_storage_fds) {
4c47affc 1377
8dd4c05b 1378 _cleanup_strv_free_ char **rfd_names = NULL;
a354329f 1379 _cleanup_free_ int *rfds = NULL;
25b583d7 1380 size_t rn_socket_fds = 0, rn_storage_fds = 0;
4c47affc 1381 int r;
44d8db9e
LP
1382
1383 assert(s);
1384 assert(fds);
8dd4c05b 1385 assert(fd_names);
9b141911 1386 assert(n_socket_fds);
25b583d7 1387 assert(n_storage_fds);
44d8db9e 1388
8dd4c05b 1389 if (s->socket_fd >= 0) {
6cf6bbc2 1390
8dd4c05b 1391 /* Pass the per-connection socket */
57020a3a 1392
aa7c4dd6 1393 rfds = newdup(int, &s->socket_fd, 1);
8dd4c05b
LP
1394 if (!rfds)
1395 return -ENOMEM;
57020a3a 1396
bea1a013 1397 rfd_names = strv_new("connection");
8dd4c05b
LP
1398 if (!rfd_names)
1399 return -ENOMEM;
44d8db9e 1400
4c47affc 1401 rn_socket_fds = 1;
8dd4c05b 1402 } else {
8dd4c05b 1403 Unit *u;
44d8db9e 1404
8dd4c05b 1405 /* Pass all our configured sockets for singleton services */
44d8db9e 1406
15ed3c3a 1407 UNIT_FOREACH_DEPENDENCY(u, UNIT(s), UNIT_ATOM_TRIGGERED_BY) {
8dd4c05b
LP
1408 _cleanup_free_ int *cfds = NULL;
1409 Socket *sock;
1410 int cn_fds;
44d8db9e 1411
8dd4c05b
LP
1412 if (u->type != UNIT_SOCKET)
1413 continue;
44d8db9e 1414
8dd4c05b 1415 sock = SOCKET(u);
a354329f 1416
8dd4c05b
LP
1417 cn_fds = socket_collect_fds(sock, &cfds);
1418 if (cn_fds < 0)
1419 return cn_fds;
44d8db9e 1420
8dd4c05b
LP
1421 if (cn_fds <= 0)
1422 continue;
79c7626d 1423
8dd4c05b 1424 if (!rfds) {
1cc6c93a 1425 rfds = TAKE_PTR(cfds);
4c47affc 1426 rn_socket_fds = cn_fds;
8dd4c05b
LP
1427 } else {
1428 int *t;
1429
62d74c78 1430 t = reallocarray(rfds, rn_socket_fds + cn_fds, sizeof(int));
8dd4c05b
LP
1431 if (!t)
1432 return -ENOMEM;
1433
4c47affc 1434 memcpy(t + rn_socket_fds, cfds, cn_fds * sizeof(int));
8dd4c05b
LP
1435
1436 rfds = t;
4c47affc 1437 rn_socket_fds += cn_fds;
8dd4c05b
LP
1438 }
1439
1440 r = strv_extend_n(&rfd_names, socket_fdname(sock), cn_fds);
1441 if (r < 0)
1442 return r;
44d8db9e
LP
1443 }
1444 }
1445
a354329f 1446 if (s->n_fd_store > 0) {
25b583d7 1447 size_t n_fds;
8dd4c05b 1448 char **nl;
a354329f
LP
1449 int *t;
1450
62d74c78 1451 t = reallocarray(rfds, rn_socket_fds + s->n_fd_store, sizeof(int));
a354329f
LP
1452 if (!t)
1453 return -ENOMEM;
1454
1455 rfds = t;
8dd4c05b 1456
62d74c78 1457 nl = reallocarray(rfd_names, rn_socket_fds + s->n_fd_store + 1, sizeof(char *));
8dd4c05b
LP
1458 if (!nl)
1459 return -ENOMEM;
1460
1461 rfd_names = nl;
4c47affc 1462 n_fds = rn_socket_fds;
8dd4c05b
LP
1463
1464 LIST_FOREACH(fd_store, fs, s->fd_store) {
4c47affc
FB
1465 rfds[n_fds] = fs->fd;
1466 rfd_names[n_fds] = strdup(strempty(fs->fdname));
1467 if (!rfd_names[n_fds])
8dd4c05b
LP
1468 return -ENOMEM;
1469
4c47affc
FB
1470 rn_storage_fds++;
1471 n_fds++;
8dd4c05b
LP
1472 }
1473
4c47affc 1474 rfd_names[n_fds] = NULL;
a354329f
LP
1475 }
1476
1cc6c93a
YW
1477 *fds = TAKE_PTR(rfds);
1478 *fd_names = TAKE_PTR(rfd_names);
9b141911 1479 *n_socket_fds = rn_socket_fds;
4c47affc 1480 *n_storage_fds = rn_storage_fds;
3e33402a 1481
4c47affc 1482 return 0;
44d8db9e
LP
1483}
1484
5686391b
LP
1485static int service_allocate_exec_fd_event_source(
1486 Service *s,
1487 int fd,
1488 sd_event_source **ret_event_source) {
1489
1490 _cleanup_(sd_event_source_unrefp) sd_event_source *source = NULL;
1491 int r;
1492
1493 assert(s);
1494 assert(fd >= 0);
1495 assert(ret_event_source);
1496
1497 r = sd_event_add_io(UNIT(s)->manager->event, &source, fd, 0, service_dispatch_exec_io, s);
1498 if (r < 0)
1499 return log_unit_error_errno(UNIT(s), r, "Failed to allocate exec_fd event source: %m");
1500
f3a269a9
LP
1501 /* This is a bit higher priority than SIGCHLD, to make sure we don't confuse the case "failed to
1502 * start" from the case "succeeded to start, but failed immediately after". */
5686391b 1503
d42b61d2 1504 r = sd_event_source_set_priority(source, EVENT_PRIORITY_EXEC_FD);
5686391b
LP
1505 if (r < 0)
1506 return log_unit_error_errno(UNIT(s), r, "Failed to adjust priority of exec_fd event source: %m");
1507
bc989831 1508 (void) sd_event_source_set_description(source, "service exec_fd");
5686391b
LP
1509
1510 r = sd_event_source_set_io_fd_own(source, true);
1511 if (r < 0)
1512 return log_unit_error_errno(UNIT(s), r, "Failed to pass ownership of fd to event source: %m");
1513
1514 *ret_event_source = TAKE_PTR(source);
1515 return 0;
1516}
1517
1518static int service_allocate_exec_fd(
1519 Service *s,
1520 sd_event_source **ret_event_source,
e78695d4 1521 int *ret_exec_fd) {
5686391b 1522
71136404 1523 _cleanup_close_pair_ int p[] = EBADF_PAIR;
5686391b
LP
1524 int r;
1525
1526 assert(s);
1527 assert(ret_event_source);
1528 assert(ret_exec_fd);
1529
1530 if (pipe2(p, O_CLOEXEC|O_NONBLOCK) < 0)
1531 return log_unit_error_errno(UNIT(s), errno, "Failed to allocate exec_fd pipe: %m");
1532
1533 r = service_allocate_exec_fd_event_source(s, p[0], ret_event_source);
1534 if (r < 0)
1535 return r;
1536
e78695d4 1537 TAKE_FD(p[0]);
5686391b
LP
1538 *ret_exec_fd = TAKE_FD(p[1]);
1539
1540 return 0;
1541}
1542
6375bd20
JW
1543static bool service_exec_needs_notify_socket(Service *s, ExecFlags flags) {
1544 assert(s);
1545
1546 /* Notifications are accepted depending on the process and
1547 * the access setting of the service:
1548 * process: \ access: NONE MAIN EXEC ALL
1549 * main no yes yes yes
1550 * control no no yes yes
1551 * other (forked) no no no yes */
1552
1553 if (flags & EXEC_IS_CONTROL)
1554 /* A control process */
19dff691 1555 return IN_SET(service_get_notify_access(s), NOTIFY_EXEC, NOTIFY_ALL);
6375bd20
JW
1556
1557 /* We only spawn main processes and control processes, so any
1558 * process that is not a control process is a main process */
19dff691 1559 return service_get_notify_access(s) != NOTIFY_NONE;
6375bd20
JW
1560}
1561
95c81c55
LB
1562static Service *service_get_triggering_service(Service *s) {
1563 Unit *candidate = NULL, *other;
cdebedb4 1564
95c81c55 1565 assert(s);
cdebedb4 1566
95c81c55
LB
1567 /* Return the service which triggered service 's', this means dependency
1568 * types which include the UNIT_ATOM_ON_{FAILURE,SUCCESS}_OF atoms.
cdebedb4 1569 *
95c81c55
LB
1570 * N.B. if there are multiple services which could trigger 's' via OnFailure=
1571 * or OnSuccess= then we return NULL. This is since we don't know from which
1572 * one to propagate the exit status. */
1573
1574 UNIT_FOREACH_DEPENDENCY(other, UNIT(s), UNIT_ATOM_ON_FAILURE_OF) {
7a5049c7
ZJS
1575 if (candidate)
1576 goto have_other;
95c81c55
LB
1577 candidate = other;
1578 }
1579
1580 UNIT_FOREACH_DEPENDENCY(other, UNIT(s), UNIT_ATOM_ON_SUCCESS_OF) {
7a5049c7
ZJS
1581 if (candidate)
1582 goto have_other;
95c81c55 1583 candidate = other;
cdebedb4
PM
1584 }
1585
95c81c55 1586 return SERVICE(candidate);
7a5049c7
ZJS
1587
1588 have_other:
1589 log_unit_warning(UNIT(s), "multiple trigger source candidates for exit status propagation (%s, %s), skipping.",
1590 candidate->id, other->id);
1591 return NULL;
cdebedb4
PM
1592}
1593
cfbf7538 1594static ExecFlags service_exec_flags(ServiceExecCommand command_id, ExecFlags cred_flag) {
81006ebb
MY
1595 /* All service main/control processes honor sandboxing and namespacing options (except those
1596 explicitly excluded in service_spawn()) */
1597 ExecFlags flags = EXEC_APPLY_SANDBOXING|EXEC_APPLY_CHROOT;
1598
1599 assert(command_id >= 0);
1600 assert(command_id < _SERVICE_EXEC_COMMAND_MAX);
cfbf7538
MY
1601 assert((cred_flag & ~(EXEC_SETUP_CREDENTIALS_FRESH|EXEC_SETUP_CREDENTIALS)) == 0);
1602 assert((cred_flag != 0) == (command_id == SERVICE_EXEC_START));
81006ebb
MY
1603
1604 /* Control processes spawned before main process also get tty access */
fe760177 1605 if (IN_SET(command_id, SERVICE_EXEC_CONDITION, SERVICE_EXEC_START_PRE, SERVICE_EXEC_START))
81006ebb
MY
1606 flags |= EXEC_APPLY_TTY_STDIN;
1607
cfbf7538
MY
1608 /* All start phases get access to credentials. ExecStartPre= gets a new credential store upon
1609 * every invocation, so that updating credential files through it works. When the first main process
1610 * starts, passed creds become stable. Also see 'cred_flag'. */
1611 if (command_id == SERVICE_EXEC_START_PRE)
1612 flags |= EXEC_SETUP_CREDENTIALS_FRESH;
1613 if (command_id == SERVICE_EXEC_START_POST)
1221ba0f 1614 flags |= EXEC_SETUP_CREDENTIALS;
81006ebb
MY
1615
1616 if (IN_SET(command_id, SERVICE_EXEC_START_PRE, SERVICE_EXEC_START))
1617 flags |= EXEC_SETENV_MONITOR_RESULT;
1618
1619 if (command_id == SERVICE_EXEC_START)
cfbf7538 1620 return flags|cred_flag|EXEC_PASS_FDS|EXEC_SET_WATCHDOG;
81006ebb
MY
1621
1622 flags |= EXEC_IS_CONTROL;
1623
1624 /* Put control processes spawned later than main process under .control sub-cgroup if appropriate */
1625 if (!IN_SET(command_id, SERVICE_EXEC_CONDITION, SERVICE_EXEC_START_PRE))
1626 flags |= EXEC_CONTROL_CGROUP;
1627
1628 if (IN_SET(command_id, SERVICE_EXEC_STOP, SERVICE_EXEC_STOP_POST))
1629 flags |= EXEC_SETENV_RESULT;
1630
1631 return flags;
1632}
1633
edbf8984
ZJS
1634static int service_spawn_internal(
1635 const char *caller,
81a2b7ce
LP
1636 Service *s,
1637 ExecCommand *c,
cfbf7538 1638 ExecFlags flags,
21b2ce39 1639 usec_t timeout,
c79ab77c 1640 PidRef *ret_pid) {
81a2b7ce 1641
cfbf7538 1642 _cleanup_(exec_params_shallow_clear) ExecParameters exec_params = EXEC_PARAMETERS_INIT(flags);
5686391b 1643 _cleanup_(sd_event_source_unrefp) sd_event_source *exec_fd_source = NULL;
c3f8a065 1644 _cleanup_strv_free_ char **final_env = NULL, **our_env = NULL;
c79ab77c 1645 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
c3f8a065 1646 size_t n_env = 0;
8dd4c05b
LP
1647 int r;
1648
edbf8984 1649 assert(caller);
034c6ed7
LP
1650 assert(s);
1651 assert(c);
e78695d4 1652 assert(ret_pid);
034c6ed7 1653
edbf8984
ZJS
1654 log_unit_debug(UNIT(s), "Will spawn child (%s): %s", caller, c->path);
1655
78f93209 1656 r = unit_prepare_exec(UNIT(s)); /* This realizes the cgroup, among other things */
3c7416b6
LP
1657 if (r < 0)
1658 return r;
1659
bc989831
ZJS
1660 assert(!s->exec_fd_event_source);
1661
81006ebb 1662 if (FLAGS_SET(exec_params.flags, EXEC_IS_CONTROL)) {
9c1a61ad
LP
1663 /* If this is a control process, mask the permissions/chroot application if this is requested. */
1664 if (s->permissions_start_only)
1703fa41 1665 exec_params.flags &= ~EXEC_APPLY_SANDBOXING;
9c1a61ad
LP
1666 if (s->root_directory_start_only)
1667 exec_params.flags &= ~EXEC_APPLY_CHROOT;
1668 }
1669
81006ebb 1670 if (FLAGS_SET(exec_params.flags, EXEC_PASS_FDS) ||
6cf6bbc2
LP
1671 s->exec_context.std_input == EXEC_INPUT_SOCKET ||
1672 s->exec_context.std_output == EXEC_OUTPUT_SOCKET ||
1673 s->exec_context.std_error == EXEC_OUTPUT_SOCKET) {
1674
c3f8a065
LP
1675 r = service_collect_fds(s,
1676 &exec_params.fds,
1677 &exec_params.fd_names,
1678 &exec_params.n_socket_fds,
1679 &exec_params.n_storage_fds);
8dd4c05b 1680 if (r < 0)
36c16a7c 1681 return r;
6cf6bbc2 1682
cd48e23f
RP
1683 exec_params.open_files = s->open_files;
1684
c3f8a065 1685 log_unit_debug(UNIT(s), "Passing %zu fds to service", exec_params.n_socket_fds + exec_params.n_storage_fds);
4f2d528d 1686 }
44d8db9e 1687
81006ebb 1688 if (!FLAGS_SET(exec_params.flags, EXEC_IS_CONTROL) && s->type == SERVICE_EXEC) {
c3f8a065 1689 r = service_allocate_exec_fd(s, &exec_fd_source, &exec_params.exec_fd);
5686391b
LP
1690 if (r < 0)
1691 return r;
1692 }
1693
e5d6dcce 1694 r = service_arm_timer(s, /* relative= */ true, timeout);
36c16a7c
LP
1695 if (r < 0)
1696 return r;
034c6ed7 1697
75b29fda 1698 our_env = new0(char*, 13);
36c16a7c
LP
1699 if (!our_env)
1700 return -ENOMEM;
c952c6ec 1701
81006ebb 1702 if (service_exec_needs_notify_socket(s, exec_params.flags)) {
36c16a7c
LP
1703 if (asprintf(our_env + n_env++, "NOTIFY_SOCKET=%s", UNIT(s)->manager->notify_socket) < 0)
1704 return -ENOMEM;
c952c6ec 1705
3bdc25a4 1706 exec_params.notify_socket = UNIT(s)->manager->notify_socket;
75b29fda
LP
1707
1708 if (s->n_fd_store_max > 0)
1709 if (asprintf(our_env + n_env++, "FDSTORE=%u", s->n_fd_store_max) < 0)
1710 return -ENOMEM;
3bdc25a4
LP
1711 }
1712
c79ab77c
LP
1713 if (pidref_is_set(&s->main_pid))
1714 if (asprintf(our_env + n_env++, "MAINPID="PID_FMT, s->main_pid.pid) < 0)
36c16a7c 1715 return -ENOMEM;
2105e76a 1716
c39f1ce2 1717 if (MANAGER_IS_USER(UNIT(s)->manager))
df0ff127 1718 if (asprintf(our_env + n_env++, "MANAGERPID="PID_FMT, getpid_cached()) < 0)
36c16a7c 1719 return -ENOMEM;
97ae63e2 1720
dcf3c3c3
LP
1721 if (s->pid_file)
1722 if (asprintf(our_env + n_env++, "PIDFILE=%s", s->pid_file) < 0)
1723 return -ENOMEM;
1724
8dd4c05b 1725 if (s->socket_fd >= 0) {
3b1c5241
SL
1726 union sockaddr_union sa;
1727 socklen_t salen = sizeof(sa);
1728
f56e7bfe
LP
1729 /* If this is a per-connection service instance, let's set $REMOTE_ADDR and $REMOTE_PORT to something
1730 * useful. Note that we do this only when we are still connected at this point in time, which we might
1731 * very well not be. Hence we ignore all errors when retrieving peer information (as that might result
1732 * in ENOTCONN), and just use whate we can use. */
f2dbd059 1733
f56e7bfe
LP
1734 if (getpeername(s->socket_fd, &sa.sa, &salen) >= 0 &&
1735 IN_SET(sa.sa.sa_family, AF_INET, AF_INET6, AF_VSOCK)) {
3b1c5241
SL
1736 _cleanup_free_ char *addr = NULL;
1737 char *t;
882ac6e7 1738 unsigned port;
3b1c5241
SL
1739
1740 r = sockaddr_pretty(&sa.sa, salen, true, false, &addr);
1741 if (r < 0)
36c16a7c 1742 return r;
3b1c5241 1743
b910cc72 1744 t = strjoin("REMOTE_ADDR=", addr);
36c16a7c
LP
1745 if (!t)
1746 return -ENOMEM;
3b1c5241
SL
1747 our_env[n_env++] = t;
1748
882ac6e7
SH
1749 r = sockaddr_port(&sa.sa, &port);
1750 if (r < 0)
1751 return r;
3b1c5241 1752
36c16a7c
LP
1753 if (asprintf(&t, "REMOTE_PORT=%u", port) < 0)
1754 return -ENOMEM;
3b1c5241
SL
1755 our_env[n_env++] = t;
1756 }
1757 }
1758
95c81c55
LB
1759 Service *env_source = NULL;
1760 const char *monitor_prefix;
81006ebb 1761 if (FLAGS_SET(exec_params.flags, EXEC_SETENV_RESULT)) {
95c81c55
LB
1762 env_source = s;
1763 monitor_prefix = "";
81006ebb 1764 } else if (FLAGS_SET(exec_params.flags, EXEC_SETENV_MONITOR_RESULT)) {
95c81c55
LB
1765 env_source = service_get_triggering_service(s);
1766 monitor_prefix = "MONITOR_";
1767 }
1768
1769 if (env_source) {
1770 if (asprintf(our_env + n_env++, "%sSERVICE_RESULT=%s", monitor_prefix, service_result_to_string(env_source->result)) < 0)
136dc4c4
LP
1771 return -ENOMEM;
1772
95c81c55
LB
1773 if (env_source->main_exec_status.pid > 0 &&
1774 dual_timestamp_is_set(&env_source->main_exec_status.exit_timestamp)) {
1775 if (asprintf(our_env + n_env++, "%sEXIT_CODE=%s", monitor_prefix, sigchld_code_to_string(env_source->main_exec_status.code)) < 0)
136dc4c4
LP
1776 return -ENOMEM;
1777
95c81c55
LB
1778 if (env_source->main_exec_status.code == CLD_EXITED)
1779 r = asprintf(our_env + n_env++, "%sEXIT_STATUS=%i", monitor_prefix, env_source->main_exec_status.status);
136dc4c4 1780 else
95c81c55 1781 r = asprintf(our_env + n_env++, "%sEXIT_STATUS=%s", monitor_prefix, signal_to_string(env_source->main_exec_status.status));
136dc4c4
LP
1782 if (r < 0)
1783 return -ENOMEM;
1784 }
cdebedb4 1785
95c81c55 1786 if (env_source != s) {
81006ebb
MY
1787 if (!sd_id128_is_null(UNIT(env_source)->invocation_id))
1788 if (asprintf(our_env + n_env++, "%sINVOCATION_ID=" SD_ID128_FORMAT_STR,
1789 monitor_prefix, SD_ID128_FORMAT_VAL(UNIT(env_source)->invocation_id)) < 0)
95c81c55 1790 return -ENOMEM;
95c81c55
LB
1791
1792 if (asprintf(our_env + n_env++, "%sUNIT=%s", monitor_prefix, UNIT(env_source)->id) < 0)
1793 return -ENOMEM;
cdebedb4 1794 }
136dc4c4
LP
1795 }
1796
48b92b37
LB
1797 if (UNIT(s)->activation_details) {
1798 r = activation_details_append_env(UNIT(s)->activation_details, &our_env);
1799 if (r < 0)
1800 return r;
1801 /* The number of env vars added here can vary, rather than keeping the allocation block in
1802 * sync manually, these functions simply use the strv methods to append to it, so we need
1803 * to update n_env when we are done in case of future usage. */
1804 n_env += r;
1805 }
1806
1ad6e8b3
LP
1807 r = unit_set_exec_params(UNIT(s), &exec_params);
1808 if (r < 0)
1809 return r;
3536f49e 1810
4ab3d29f 1811 final_env = strv_env_merge(exec_params.environment, our_env);
36c16a7c
LP
1812 if (!final_env)
1813 return -ENOMEM;
c952c6ec 1814
ac647978 1815 /* System D-Bus needs nss-systemd disabled, so that we don't deadlock */
de90700f 1816 SET_FLAG(exec_params.flags, EXEC_NSS_DYNAMIC_BYPASS,
ac647978 1817 MANAGER_IS_SYSTEM(UNIT(s)->manager) && unit_has_name(UNIT(s), SPECIAL_DBUS_SERVICE));
4ad49000 1818
b9c04eaf 1819 strv_free_and_replace(exec_params.environment, final_env);
34b3f625 1820 exec_params.watchdog_usec = service_get_watchdog_usec(s);
a34ceba6 1821 exec_params.selinux_context_net = s->socket_fd_selinux_context_net;
9fa95f85
DM
1822 if (s->type == SERVICE_IDLE)
1823 exec_params.idle_pipe = UNIT(s)->manager->idle_pipe;
a34ceba6
LP
1824 exec_params.stdin_fd = s->stdin_fd;
1825 exec_params.stdout_fd = s->stdout_fd;
1826 exec_params.stderr_fd = s->stderr_fd;
9fa95f85 1827
f2341e0a
LP
1828 r = exec_spawn(UNIT(s),
1829 c,
9e2f7c11 1830 &s->exec_context,
9fa95f85 1831 &exec_params,
613b411c 1832 s->exec_runtime,
6bb00842 1833 &s->cgroup_context,
556d2bc4 1834 &pidref);
9e2f7c11 1835 if (r < 0)
36c16a7c 1836 return r;
034c6ed7 1837
5686391b
LP
1838 s->exec_fd_event_source = TAKE_PTR(exec_fd_source);
1839 s->exec_fd_hot = false;
1840
495e75ed 1841 r = unit_watch_pidref(UNIT(s), &pidref, /* exclusive= */ true);
c79ab77c
LP
1842 if (r < 0)
1843 return r;
034c6ed7 1844
c79ab77c 1845 *ret_pid = TAKE_PIDREF(pidref);
5cb5a6ff 1846 return 0;
034c6ed7
LP
1847}
1848
80876c20
LP
1849static int main_pid_good(Service *s) {
1850 assert(s);
1851
51894d70 1852 /* Returns 0 if the pid is dead, > 0 if it is good, < 0 if we don't know */
80876c20 1853
c79ab77c 1854 /* If we know the pid file, then let's just check if it is still valid */
6dfa5494
LP
1855 if (s->main_pid_known) {
1856
c79ab77c
LP
1857 /* If it's an alien child let's check if it is still alive ... */
1858 if (s->main_pid_alien && pidref_is_set(&s->main_pid))
becdfcb9 1859 return pidref_is_alive(&s->main_pid);
6dfa5494 1860
c79ab77c
LP
1861 /* .. otherwise assume we'll get a SIGCHLD for it, which we really should wait for to collect
1862 * exit status and code */
1863 return pidref_is_set(&s->main_pid);
6dfa5494 1864 }
80876c20
LP
1865
1866 /* We don't know the pid */
1867 return -EAGAIN;
1868}
1869
019be286 1870static int control_pid_good(Service *s) {
80876c20
LP
1871 assert(s);
1872
07697d7e
LP
1873 /* Returns 0 if the control PID is dead, > 0 if it is good. We never actually return < 0 here, but in order to
1874 * make this function as similar as possible to main_pid_good() and cgroup_good(), we pretend that < 0 also
1875 * means: we can't figure it out. */
1876
c79ab77c 1877 return pidref_is_set(&s->control_pid);
80876c20
LP
1878}
1879
cb0e818f
HC
1880static int cgroup_good(Service *s) {
1881 int r;
1882
abaf5edd
ZJS
1883 assert(s);
1884
cb0e818f
HC
1885 /* Returns 0 if the cgroup is empty or doesn't exist, > 0 if it is exists and is populated, < 0 if we can't
1886 * figure it out */
1887
9cc54544 1888 if (!s->cgroup_runtime || !s->cgroup_runtime->cgroup_path)
abaf5edd
ZJS
1889 return 0;
1890
9cc54544 1891 r = cg_is_empty_recursive(SYSTEMD_CGROUP_CONTROLLER, s->cgroup_runtime->cgroup_path);
117dcc57 1892 if (r < 0)
80876c20
LP
1893 return r;
1894
b13ddbbc 1895 return r == 0;
80876c20
LP
1896}
1897
ebc57b89 1898static bool service_shall_restart(Service *s, const char **reason) {
a509f0e6 1899 assert(s);
189a08e8 1900 assert(reason);
a509f0e6
LP
1901
1902 /* Don't restart after manual stops */
ebc57b89
ZJS
1903 if (s->forbid_restart) {
1904 *reason = "manual stop";
a509f0e6 1905 return false;
ebc57b89 1906 }
a509f0e6
LP
1907
1908 /* Never restart if this is configured as special exception */
ebc57b89
ZJS
1909 if (exit_status_set_test(&s->restart_prevent_status, s->main_exec_status.code, s->main_exec_status.status)) {
1910 *reason = "prevented by exit status";
a509f0e6 1911 return false;
ebc57b89 1912 }
a509f0e6
LP
1913
1914 /* Restart if the exit code/status are configured as restart triggers */
ebc57b89 1915 if (exit_status_set_test(&s->restart_force_status, s->main_exec_status.code, s->main_exec_status.status)) {
189a08e8
MY
1916 /* Don't allow Type=oneshot services to restart on success. Note that Restart=always/on-success
1917 * is already rejected in service_verify. */
1918 if (s->type == SERVICE_ONESHOT && s->result == SERVICE_SUCCESS) {
1919 *reason = "service type and exit status";
1920 return false;
1921 }
1922
ebc57b89 1923 *reason = "forced by exit status";
a509f0e6 1924 return true;
ebc57b89 1925 }
a509f0e6 1926
ebc57b89 1927 *reason = "restart setting";
a509f0e6
LP
1928 switch (s->restart) {
1929
1930 case SERVICE_RESTART_NO:
1931 return false;
1932
1933 case SERVICE_RESTART_ALWAYS:
abb99360 1934 return s->result != SERVICE_SKIP_CONDITION;
a509f0e6
LP
1935
1936 case SERVICE_RESTART_ON_SUCCESS:
1937 return s->result == SERVICE_SUCCESS;
1938
1939 case SERVICE_RESTART_ON_FAILURE:
bb924478 1940 return !IN_SET(s->result, SERVICE_SUCCESS, SERVICE_SKIP_CONDITION);
a509f0e6
LP
1941
1942 case SERVICE_RESTART_ON_ABNORMAL:
bb924478 1943 return !IN_SET(s->result, SERVICE_SUCCESS, SERVICE_FAILURE_EXIT_CODE, SERVICE_SKIP_CONDITION);
a509f0e6
LP
1944
1945 case SERVICE_RESTART_ON_WATCHDOG:
1946 return s->result == SERVICE_FAILURE_WATCHDOG;
1947
1948 case SERVICE_RESTART_ON_ABORT:
1949 return IN_SET(s->result, SERVICE_FAILURE_SIGNAL, SERVICE_FAILURE_CORE_DUMP);
1950
1951 default:
04499a70 1952 assert_not_reached();
a509f0e6
LP
1953 }
1954}
1955
deb4e708
MK
1956static bool service_will_restart(Unit *u) {
1957 Service *s = SERVICE(u);
1958
53f47dfc
YW
1959 assert(s);
1960
09d04ad3 1961 if (IN_SET(s->state, SERVICE_DEAD_BEFORE_AUTO_RESTART, SERVICE_FAILED_BEFORE_AUTO_RESTART, SERVICE_AUTO_RESTART, SERVICE_AUTO_RESTART_QUEUED))
53f47dfc 1962 return true;
2ad2e41a 1963
52a12341 1964 return unit_will_restart_default(u);
53f47dfc
YW
1965}
1966
b9c1883a
LP
1967static ServiceState service_determine_dead_state(Service *s) {
1968 assert(s);
1969
1970 return s->fd_store && s->fd_store_preserve_mode == EXEC_PRESERVE_YES ? SERVICE_DEAD_RESOURCES_PINNED : SERVICE_DEAD;
1971}
1972
f42806df 1973static void service_enter_dead(Service *s, ServiceResult f, bool allow_restart) {
a1d31573 1974 ServiceState end_state, restart_state;
034c6ed7 1975 int r;
0f52f8e5 1976
034c6ed7
LP
1977 assert(s);
1978
0f52f8e5
LP
1979 /* If there's a stop job queued before we enter the DEAD state, we shouldn't act on Restart=, in order to not
1980 * undo what has already been enqueued. */
1981 if (unit_stop_pending(UNIT(s)))
1982 allow_restart = false;
1983
a0fef983 1984 if (s->result == SERVICE_SUCCESS)
f42806df 1985 s->result = f;
034c6ed7 1986
31cd5f63
AZ
1987 if (s->result == SERVICE_SUCCESS) {
1988 unit_log_success(UNIT(s));
b9c1883a 1989 end_state = service_determine_dead_state(s);
a1d31573 1990 restart_state = SERVICE_DEAD_BEFORE_AUTO_RESTART;
31cd5f63
AZ
1991 } else if (s->result == SERVICE_SKIP_CONDITION) {
1992 unit_log_skip(UNIT(s), service_result_to_string(s->result));
b9c1883a 1993 end_state = service_determine_dead_state(s);
a1d31573 1994 restart_state = SERVICE_DEAD_BEFORE_AUTO_RESTART;
31cd5f63
AZ
1995 } else {
1996 unit_log_failure(UNIT(s), service_result_to_string(s->result));
1997 end_state = SERVICE_FAILED;
a1d31573 1998 restart_state = SERVICE_FAILED_BEFORE_AUTO_RESTART;
31cd5f63 1999 }
4c425434 2000 unit_warn_leftover_processes(UNIT(s), unit_log_leftover_process_stop);
ed77d407 2001
ebc57b89
ZJS
2002 if (!allow_restart)
2003 log_unit_debug(UNIT(s), "Service restart not allowed.");
2004 else {
2005 const char *reason;
ebc57b89 2006
49b34f75 2007 allow_restart = service_shall_restart(s, &reason);
ebc57b89 2008 log_unit_debug(UNIT(s), "Service will %srestart (%s)",
49b34f75 2009 allow_restart ? "" : "not ",
ebc57b89 2010 reason);
ebc57b89 2011 }
deb4e708 2012
49b34f75 2013 if (allow_restart) {
fe3d33c1
MY
2014 usec_t restart_usec_next;
2015
a1d31573
LP
2016 /* We make two state changes here: one that maps to the high-level UNIT_INACTIVE/UNIT_FAILED
2017 * state (i.e. a state indicating deactivation), and then one that that maps to the
2018 * high-level UNIT_STARTING state (i.e. a state indicating activation). We do this so that
2019 * external software can watch the state changes and see all service failures, even if they
2020 * are only transitionary and followed by an automatic restart. We have fine-grained
2021 * low-level states for this though so that software can distinguish the permanent UNIT_INACTIVE
2022 * state from this transitionary UNIT_INACTIVE state by looking at the low-level states. */
e568fea9
RP
2023 if (s->restart_mode != SERVICE_RESTART_MODE_DIRECT)
2024 service_set_state(s, restart_state);
a1d31573 2025
fe3d33c1
MY
2026 restart_usec_next = service_restart_usec_next(s);
2027
2028 r = service_arm_timer(s, /* relative= */ true, restart_usec_next);
10691b9e
LP
2029 if (r < 0) {
2030 log_unit_warning_errno(UNIT(s), r, "Failed to install restart timer: %m");
2031 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ false);
2032 return;
2033 }
034c6ed7 2034
fe3d33c1
MY
2035 log_unit_debug(UNIT(s), "Next restart interval calculated as: %s", FORMAT_TIMESPAN(restart_usec_next, 0));
2036
034c6ed7 2037 service_set_state(s, SERVICE_AUTO_RESTART);
a1d31573
LP
2038 } else {
2039 service_set_state(s, end_state);
2040
7a0019d3
LP
2041 /* If we shan't restart, then flush out the restart counter. But don't do that immediately, so that the
2042 * user can still introspect the counter. Do so on the next start. */
2043 s->flush_n_restarts = true;
a1d31573 2044 }
034c6ed7 2045
5238e957 2046 /* The new state is in effect, let's decrease the fd store ref counter again. Let's also re-add us to the GC
7eb2a8a1 2047 * queue, so that the fd store is possibly gc'ed again */
7eb2a8a1
LP
2048 unit_add_to_gc_queue(UNIT(s));
2049
f2341e0a 2050 /* The next restart might not be a manual stop, hence reset the flag indicating manual stops */
47342320
LP
2051 s->forbid_restart = false;
2052
19dff691
MY
2053 /* Reset NotifyAccess override */
2054 s->notify_access_override = _NOTIFY_ACCESS_INVALID;
2055
9c0c6701 2056 /* We want fresh tmpdirs and ephemeral snapshots in case the service is started again immediately. */
28135da3 2057 s->exec_runtime = exec_runtime_destroy(s->exec_runtime);
c17ec25e 2058
95939aed 2059 /* Also, remove the runtime directory */
bb0c0d6f 2060 unit_destroy_runtime_data(UNIT(s), &s->exec_context);
e66cf1a3 2061
b9c1883a
LP
2062 /* Also get rid of the fd store, if that's configured. */
2063 if (s->fd_store_preserve_mode == EXEC_PRESERVE_NO)
2064 service_release_fd_store(s);
2065
00d9ef85
LP
2066 /* Get rid of the IPC bits of the user */
2067 unit_unref_uid_gid(UNIT(s), true);
2068
9285c9ff
LN
2069 /* Try to delete the pid file. At this point it will be
2070 * out-of-date, and some software might be confused by it, so
2071 * let's remove it. */
2072 if (s->pid_file)
fabab190 2073 (void) unlink(s->pid_file);
9285c9ff 2074
6f765baf
LP
2075 /* Reset TTY ownership if necessary */
2076 exec_context_revert_tty(&s->exec_context);
034c6ed7
LP
2077}
2078
f42806df 2079static void service_enter_stop_post(Service *s, ServiceResult f) {
034c6ed7
LP
2080 int r;
2081 assert(s);
2082
a0fef983 2083 if (s->result == SERVICE_SUCCESS)
f42806df 2084 s->result = f;
034c6ed7 2085
5e94833f 2086 service_unwatch_control_pid(s);
50be4f4a 2087 (void) unit_enqueue_rewatch_pids(UNIT(s));
5e94833f 2088
117dcc57
ZJS
2089 s->control_command = s->exec_command[SERVICE_EXEC_STOP_POST];
2090 if (s->control_command) {
867b3b7d 2091 s->control_command_id = SERVICE_EXEC_STOP_POST;
c79ab77c 2092 pidref_done(&s->control_pid);
867b3b7d 2093
ecedd90f
LP
2094 r = service_spawn(s,
2095 s->control_command,
cfbf7538 2096 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
21b2ce39 2097 s->timeout_stop_usec,
ecedd90f 2098 &s->control_pid);
10691b9e
LP
2099 if (r < 0) {
2100 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'stop-post' task: %m");
2101 service_enter_signal(s, SERVICE_FINAL_SIGTERM, SERVICE_FAILURE_RESOURCES);
2102 return;
2103 }
034c6ed7 2104
80876c20
LP
2105 service_set_state(s, SERVICE_STOP_POST);
2106 } else
ac84d1fb 2107 service_enter_signal(s, SERVICE_FINAL_SIGTERM, SERVICE_SUCCESS);
034c6ed7
LP
2108}
2109
a232ebcc 2110static int state_to_kill_operation(Service *s, ServiceState state) {
4940c0b0
LP
2111 switch (state) {
2112
c87700a1 2113 case SERVICE_STOP_WATCHDOG:
bf760801 2114 case SERVICE_FINAL_WATCHDOG:
c87700a1 2115 return KILL_WATCHDOG;
4940c0b0
LP
2116
2117 case SERVICE_STOP_SIGTERM:
a232ebcc
ZJS
2118 if (unit_has_job_type(UNIT(s), JOB_RESTART))
2119 return KILL_RESTART;
2120 _fallthrough_;
2121
4940c0b0
LP
2122 case SERVICE_FINAL_SIGTERM:
2123 return KILL_TERMINATE;
2124
2125 case SERVICE_STOP_SIGKILL:
2126 case SERVICE_FINAL_SIGKILL:
2127 return KILL_KILL;
2128
2129 default:
2130 return _KILL_OPERATION_INVALID;
2131 }
2132}
2133
f42806df 2134static void service_enter_signal(Service *s, ServiceState state, ServiceResult f) {
bf760801 2135 int kill_operation, r;
034c6ed7
LP
2136
2137 assert(s);
2138
a0fef983 2139 if (s->result == SERVICE_SUCCESS)
f42806df 2140 s->result = f;
034c6ed7 2141
50be4f4a
LP
2142 /* Before sending any signal, make sure we track all members of this cgroup */
2143 (void) unit_watch_all_pids(UNIT(s));
2144
2145 /* Also, enqueue a job that we recheck all our PIDs a bit later, given that it's likely some processes have
2146 * died now */
2147 (void) unit_enqueue_rewatch_pids(UNIT(s));
a911bb9a 2148
bf760801 2149 kill_operation = state_to_kill_operation(s, state);
b826e317 2150 r = unit_kill_context(UNIT(s), kill_operation);
10691b9e
LP
2151 if (r < 0) {
2152 log_unit_warning_errno(UNIT(s), r, "Failed to kill processes: %m");
cd2086fe 2153 goto fail;
10691b9e 2154 }
034c6ed7 2155
cd2086fe 2156 if (r > 0) {
e5d6dcce
LP
2157 r = service_arm_timer(s, /* relative= */ true,
2158 kill_operation == KILL_WATCHDOG ? service_timeout_abort_usec(s) : s->timeout_stop_usec);
10691b9e
LP
2159 if (r < 0) {
2160 log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
36c16a7c 2161 goto fail;
10691b9e 2162 }
d6ea93e3 2163
80876c20 2164 service_set_state(s, state);
c87700a1 2165 } else if (IN_SET(state, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM) && s->kill_context.send_sigkill)
ac84d1fb 2166 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_SUCCESS);
c87700a1 2167 else if (IN_SET(state, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL))
f42806df 2168 service_enter_stop_post(s, SERVICE_SUCCESS);
bf760801 2169 else if (IN_SET(state, SERVICE_FINAL_WATCHDOG, SERVICE_FINAL_SIGTERM) && s->kill_context.send_sigkill)
ac84d1fb 2170 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_SUCCESS);
80876c20 2171 else
10691b9e 2172 service_enter_dead(s, SERVICE_SUCCESS, /* allow_restart= */ true);
034c6ed7
LP
2173
2174 return;
2175
2176fail:
c87700a1 2177 if (IN_SET(state, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL))
f42806df 2178 service_enter_stop_post(s, SERVICE_FAILURE_RESOURCES);
034c6ed7 2179 else
10691b9e 2180 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ true);
034c6ed7
LP
2181}
2182
308d72dc 2183static void service_enter_stop_by_notify(Service *s) {
3dde96d8
LP
2184 int r;
2185
308d72dc
LP
2186 assert(s);
2187
50be4f4a 2188 (void) unit_enqueue_rewatch_pids(UNIT(s));
308d72dc 2189
3dde96d8
LP
2190 r = service_arm_timer(s, /* relative= */ true, s->timeout_stop_usec);
2191 if (r < 0) {
2192 log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
2193 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_RESOURCES);
2194 return;
2195 }
308d72dc 2196
6041a7ee
MS
2197 /* The service told us it's stopping, so it's as if we SIGTERM'd it. */
2198 service_set_state(s, SERVICE_STOP_SIGTERM);
308d72dc
LP
2199}
2200
f42806df 2201static void service_enter_stop(Service *s, ServiceResult f) {
034c6ed7 2202 int r;
5925dd3c 2203
034c6ed7
LP
2204 assert(s);
2205
a0fef983 2206 if (s->result == SERVICE_SUCCESS)
f42806df 2207 s->result = f;
034c6ed7 2208
5e94833f 2209 service_unwatch_control_pid(s);
50be4f4a 2210 (void) unit_enqueue_rewatch_pids(UNIT(s));
5e94833f 2211
117dcc57
ZJS
2212 s->control_command = s->exec_command[SERVICE_EXEC_STOP];
2213 if (s->control_command) {
867b3b7d 2214 s->control_command_id = SERVICE_EXEC_STOP;
c79ab77c 2215 pidref_done(&s->control_pid);
867b3b7d 2216
ecedd90f
LP
2217 r = service_spawn(s,
2218 s->control_command,
cfbf7538 2219 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
21b2ce39 2220 s->timeout_stop_usec,
ecedd90f 2221 &s->control_pid);
10691b9e
LP
2222 if (r < 0) {
2223 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'stop' task: %m");
2224 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_RESOURCES);
2225 return;
2226 }
034c6ed7 2227
80876c20
LP
2228 service_set_state(s, SERVICE_STOP);
2229 } else
f42806df 2230 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_SUCCESS);
034c6ed7
LP
2231}
2232
957c3cf9
LP
2233static bool service_good(Service *s) {
2234 int main_pid_ok;
e9fa1bf7 2235
957c3cf9
LP
2236 assert(s);
2237
2238 if (s->type == SERVICE_DBUS && !s->bus_name_good)
2239 return false;
2240
2241 main_pid_ok = main_pid_good(s);
2242 if (main_pid_ok > 0) /* It's alive */
2243 return true;
ef430065 2244 if (main_pid_ok == 0 && s->exit_type == SERVICE_EXIT_MAIN) /* It's dead */
957c3cf9
LP
2245 return false;
2246
2247 /* OK, we don't know anything about the main PID, maybe
2248 * because there is none. Let's check the control group
2249 * instead. */
2250
2251 return cgroup_good(s) != 0;
2252}
2253
f42806df 2254static void service_enter_running(Service *s, ServiceResult f) {
3dde96d8
LP
2255 int r;
2256
80876c20
LP
2257 assert(s);
2258
a0fef983 2259 if (s->result == SERVICE_SUCCESS)
f42806df 2260 s->result = f;
80876c20 2261
089b64d5
LP
2262 service_unwatch_control_pid(s);
2263
ec5b1452
LP
2264 if (s->result != SERVICE_SUCCESS)
2265 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
2266 else if (service_good(s)) {
308d72dc 2267
ec5b1452 2268 /* If there are any queued up sd_notify() notifications, process them now */
308d72dc
LP
2269 if (s->notify_state == NOTIFY_RELOADING)
2270 service_enter_reload_by_notify(s);
2271 else if (s->notify_state == NOTIFY_STOPPING)
2272 service_enter_stop_by_notify(s);
36c16a7c 2273 else {
308d72dc 2274 service_set_state(s, SERVICE_RUNNING);
3dde96d8
LP
2275
2276 r = service_arm_timer(s, /* relative= */ false, service_running_timeout(s));
2277 if (r < 0) {
2278 log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
2279 service_enter_running(s, SERVICE_FAILURE_RESOURCES);
2280 return;
2281 }
36c16a7c 2282 }
308d72dc 2283
ec5b1452 2284 } else if (s->remain_after_exit)
80876c20
LP
2285 service_set_state(s, SERVICE_EXITED);
2286 else
f42806df 2287 service_enter_stop(s, SERVICE_SUCCESS);
80876c20
LP
2288}
2289
034c6ed7
LP
2290static void service_enter_start_post(Service *s) {
2291 int r;
e9fa1bf7 2292
034c6ed7
LP
2293 assert(s);
2294
5e94833f 2295 service_unwatch_control_pid(s);
842129f5 2296 service_reset_watchdog(s);
bb242b7b 2297
117dcc57
ZJS
2298 s->control_command = s->exec_command[SERVICE_EXEC_START_POST];
2299 if (s->control_command) {
867b3b7d 2300 s->control_command_id = SERVICE_EXEC_START_POST;
c79ab77c 2301 pidref_done(&s->control_pid);
867b3b7d 2302
ecedd90f
LP
2303 r = service_spawn(s,
2304 s->control_command,
cfbf7538 2305 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
21b2ce39 2306 s->timeout_start_usec,
ecedd90f 2307 &s->control_pid);
10691b9e
LP
2308 if (r < 0) {
2309 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start-post' task: %m");
2310 service_enter_stop(s, SERVICE_FAILURE_RESOURCES);
2311 return;
2312 }
034c6ed7 2313
80876c20
LP
2314 service_set_state(s, SERVICE_START_POST);
2315 } else
f42806df 2316 service_enter_running(s, SERVICE_SUCCESS);
034c6ed7
LP
2317}
2318
e9a4f676 2319static void service_kill_control_process(Service *s) {
a6951a50 2320 int r;
4ad49000 2321
a6951a50
LP
2322 assert(s);
2323
c79ab77c 2324 if (!pidref_is_set(&s->control_pid))
e9a4f676 2325 return;
4ad49000 2326
c79ab77c 2327 r = pidref_kill_and_sigcont(&s->control_pid, SIGKILL);
e9a4f676
LP
2328 if (r < 0) {
2329 _cleanup_free_ char *comm = NULL;
a6951a50 2330
d7d74854 2331 (void) pidref_get_comm(&s->control_pid, &comm);
a6951a50 2332
e9a4f676 2333 log_unit_debug_errno(UNIT(s), r, "Failed to kill control process " PID_FMT " (%s), ignoring: %m",
c79ab77c 2334 s->control_pid.pid, strna(comm));
a6951a50 2335 }
4ad49000
LP
2336}
2337
c53d2d54
DB
2338static int service_adverse_to_leftover_processes(Service *s) {
2339 assert(s);
2340
2341 /* KillMode=mixed and control group are used to indicate that all process should be killed off.
4c425434
LP
2342 * SendSIGKILL= is used for services that require a clean shutdown. These are typically database
2343 * service where a SigKilled process would result in a lengthy recovery and who's shutdown or startup
2344 * time is quite variable (so Timeout settings aren't of use).
c53d2d54
DB
2345 *
2346 * Here we take these two factors and refuse to start a service if there are existing processes
2347 * within a control group. Databases, while generally having some protection against multiple
4c425434 2348 * instances running, lets not stress the rigor of these. Also ExecStartPre= parts of the service
c53d2d54 2349 * aren't as rigoriously written to protect aganst against multiple use. */
4c425434
LP
2350
2351 if (unit_warn_leftover_processes(UNIT(s), unit_log_leftover_process_start) > 0 &&
c53d2d54 2352 IN_SET(s->kill_context.kill_mode, KILL_MIXED, KILL_CONTROL_GROUP) &&
569554d9
ZJS
2353 !s->kill_context.send_sigkill)
2354 return log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(EBUSY),
2355 "Will not start SendSIGKILL=no service of type KillMode=control-group or mixed while processes exist");
2356
c53d2d54
DB
2357 return 0;
2358}
2359
034c6ed7 2360static void service_enter_start(Service *s) {
c79ab77c 2361 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
4ad49000 2362 ExecCommand *c;
36c16a7c 2363 usec_t timeout;
034c6ed7
LP
2364 int r;
2365
2366 assert(s);
2367
41efeaec
LP
2368 service_unwatch_control_pid(s);
2369 service_unwatch_main_pid(s);
80876c20 2370
c53d2d54
DB
2371 r = service_adverse_to_leftover_processes(s);
2372 if (r < 0)
2373 goto fail;
a4634b21 2374
867b3b7d
LP
2375 if (s->type == SERVICE_FORKING) {
2376 s->control_command_id = SERVICE_EXEC_START;
2377 c = s->control_command = s->exec_command[SERVICE_EXEC_START];
2378
2379 s->main_command = NULL;
2380 } else {
2381 s->control_command_id = _SERVICE_EXEC_COMMAND_INVALID;
2382 s->control_command = NULL;
2383
2384 c = s->main_command = s->exec_command[SERVICE_EXEC_START];
2385 }
34e9ba66 2386
96fb8242 2387 if (!c) {
47fffb35 2388 if (s->type != SERVICE_ONESHOT) {
cbc056c8
ZJS
2389 /* There's no command line configured for the main command? Hmm, that is strange.
2390 * This can only happen if the configuration changes at runtime. In this case,
2391 * let's enter a failure state. */
d85ff944 2392 r = log_unit_error_errno(UNIT(s), SYNTHETIC_ERRNO(ENXIO), "There's no 'start' task anymore we could start.");
47fffb35
LP
2393 goto fail;
2394 }
2395
ef5ae8e7
ZJS
2396 /* We force a fake state transition here. Otherwise, the unit would go directly from
2397 * SERVICE_DEAD to SERVICE_DEAD without SERVICE_ACTIVATING or SERVICE_ACTIVE
5238e957 2398 * in between. This way we can later trigger actions that depend on the state
ef5ae8e7
ZJS
2399 * transition, including SuccessAction=. */
2400 service_set_state(s, SERVICE_START);
2401
96fb8242
LP
2402 service_enter_start_post(s);
2403 return;
2404 }
2405
36c16a7c
LP
2406 if (IN_SET(s->type, SERVICE_SIMPLE, SERVICE_IDLE))
2407 /* For simple + idle this is the main process. We don't apply any timeout here, but
2408 * service_enter_running() will later apply the .runtime_max_usec timeout. */
2409 timeout = USEC_INFINITY;
2410 else
2411 timeout = s->timeout_start_usec;
2412
ecedd90f
LP
2413 r = service_spawn(s,
2414 c,
cfbf7538 2415 service_exec_flags(SERVICE_EXEC_START, EXEC_SETUP_CREDENTIALS_FRESH),
36c16a7c 2416 timeout,
c79ab77c 2417 &pidref);
10691b9e
LP
2418 if (r < 0) {
2419 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start' task: %m");
034c6ed7 2420 goto fail;
10691b9e 2421 }
034c6ed7 2422
36c16a7c 2423 if (IN_SET(s->type, SERVICE_SIMPLE, SERVICE_IDLE)) {
034c6ed7
LP
2424 /* For simple services we immediately start
2425 * the START_POST binaries. */
2426
b1f6901d 2427 (void) service_set_main_pidref(s, &pidref);
034c6ed7
LP
2428 service_enter_start_post(s);
2429
2430 } else if (s->type == SERVICE_FORKING) {
2431
2432 /* For forking services we wait until the start
2433 * process exited. */
2434
c79ab77c
LP
2435 pidref_done(&s->control_pid);
2436 s->control_pid = TAKE_PIDREF(pidref);
80876c20
LP
2437 service_set_state(s, SERVICE_START);
2438
3bd28bf7 2439 } else if (IN_SET(s->type, SERVICE_ONESHOT, SERVICE_DBUS, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD, SERVICE_EXEC)) {
7d55e835 2440
5686391b 2441 /* For oneshot services we wait until the start process exited, too, but it is our main process. */
7d55e835 2442
5686391b
LP
2443 /* For D-Bus services we know the main pid right away, but wait for the bus name to appear on the
2444 * bus. 'notify' and 'exec' services are similar. */
05e343b7 2445
b1f6901d 2446 (void) service_set_main_pidref(s, &pidref);
80876c20 2447 service_set_state(s, SERVICE_START);
034c6ed7 2448 } else
04499a70 2449 assert_not_reached();
034c6ed7
LP
2450
2451 return;
2452
2453fail:
c3fda31d 2454 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_RESOURCES);
034c6ed7
LP
2455}
2456
2457static void service_enter_start_pre(Service *s) {
2458 int r;
2459
2460 assert(s);
2461
5e94833f
LP
2462 service_unwatch_control_pid(s);
2463
117dcc57
ZJS
2464 s->control_command = s->exec_command[SERVICE_EXEC_START_PRE];
2465 if (s->control_command) {
8f53a7b8 2466
c53d2d54
DB
2467 r = service_adverse_to_leftover_processes(s);
2468 if (r < 0)
2469 goto fail;
a4634b21 2470
867b3b7d
LP
2471 s->control_command_id = SERVICE_EXEC_START_PRE;
2472
ecedd90f
LP
2473 r = service_spawn(s,
2474 s->control_command,
cfbf7538 2475 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
21b2ce39 2476 s->timeout_start_usec,
ecedd90f 2477 &s->control_pid);
10691b9e
LP
2478 if (r < 0) {
2479 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'start-pre' task: %m");
034c6ed7 2480 goto fail;
10691b9e 2481 }
034c6ed7 2482
80876c20
LP
2483 service_set_state(s, SERVICE_START_PRE);
2484 } else
034c6ed7
LP
2485 service_enter_start(s);
2486
2487 return;
2488
2489fail:
10691b9e 2490 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ true);
034c6ed7
LP
2491}
2492
31cd5f63
AZ
2493static void service_enter_condition(Service *s) {
2494 int r;
2495
2496 assert(s);
2497
2498 service_unwatch_control_pid(s);
2499
2500 s->control_command = s->exec_command[SERVICE_EXEC_CONDITION];
2501 if (s->control_command) {
2502
2503 r = service_adverse_to_leftover_processes(s);
2504 if (r < 0)
2505 goto fail;
2506
2507 s->control_command_id = SERVICE_EXEC_CONDITION;
c79ab77c 2508 pidref_done(&s->control_pid);
31cd5f63
AZ
2509
2510 r = service_spawn(s,
2511 s->control_command,
cfbf7538 2512 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
31cd5f63 2513 s->timeout_start_usec,
31cd5f63
AZ
2514 &s->control_pid);
2515
10691b9e
LP
2516 if (r < 0) {
2517 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'exec-condition' task: %m");
31cd5f63 2518 goto fail;
10691b9e 2519 }
31cd5f63
AZ
2520
2521 service_set_state(s, SERVICE_CONDITION);
2522 } else
2523 service_enter_start_pre(s);
2524
2525 return;
2526
2527fail:
10691b9e 2528 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ true);
31cd5f63
AZ
2529}
2530
034c6ed7 2531static void service_enter_restart(Service *s) {
4afd3348 2532 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
034c6ed7 2533 int r;
398ef8ba 2534
034c6ed7
LP
2535 assert(s);
2536
28a2dfe8 2537 if (unit_has_job_type(UNIT(s), JOB_STOP)) {
a8bb2e65 2538 /* Don't restart things if we are going down anyway */
c9728806 2539 log_unit_info(UNIT(s), "Stop job pending for unit, skipping automatic restart.");
feae8adb 2540 return;
2edfa366
LP
2541 }
2542
09d04ad3
LP
2543 /* Any units that are bound to this service must also be restarted. We use JOB_START for ourselves
2544 * but then set JOB_RESTART_DEPENDENCIES which will enqueue JOB_RESTART for those dependency jobs. */
2545 r = manager_add_job(UNIT(s)->manager, JOB_START, UNIT(s), JOB_RESTART_DEPENDENCIES, NULL, &error, NULL);
10691b9e
LP
2546 if (r < 0) {
2547 log_unit_warning(UNIT(s), "Failed to schedule restart job: %s", bus_error_message(&error, r));
2548 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ false);
2549 return;
2550 }
034c6ed7 2551
0c59d2e4
LP
2552 /* Count the jobs we enqueue for restarting. This counter is maintained as long as the unit isn't
2553 * fully stopped, i.e. as long as it remains up or remains in auto-start states. The user can reset
2554 * the counter explicitly however via the usual "systemctl reset-failure" logic. */
b3a9d980 2555 s->n_restarts++;
7a0019d3
LP
2556 s->flush_n_restarts = false;
2557
19dff691
MY
2558 s->notify_access_override = _NOTIFY_ACCESS_INVALID;
2559
c2503e35
RH
2560 log_unit_struct(UNIT(s), LOG_INFO,
2561 "MESSAGE_ID=" SD_MESSAGE_UNIT_RESTART_SCHEDULED_STR,
2562 LOG_UNIT_INVOCATION_ID(UNIT(s)),
92663a5e
ZJS
2563 LOG_UNIT_MESSAGE(UNIT(s),
2564 "Scheduled restart job, restart counter is at %u.", s->n_restarts),
c2503e35 2565 "N_RESTARTS=%u", s->n_restarts);
7a0019d3 2566
09d04ad3
LP
2567 service_set_state(s, SERVICE_AUTO_RESTART_QUEUED);
2568
7a0019d3
LP
2569 /* Notify clients about changed restart counter */
2570 unit_add_to_dbus_queue(UNIT(s));
034c6ed7
LP
2571}
2572
308d72dc 2573static void service_enter_reload_by_notify(Service *s) {
15d167f8
JW
2574 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
2575 int r;
2576
308d72dc
LP
2577 assert(s);
2578
3dde96d8
LP
2579 r = service_arm_timer(s, /* relative= */ true, s->timeout_start_usec);
2580 if (r < 0) {
2581 log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
2582 s->reload_result = SERVICE_FAILURE_RESOURCES;
2583 service_enter_running(s, SERVICE_SUCCESS);
2584 return;
2585 }
2586
3bd28bf7 2587 service_set_state(s, SERVICE_RELOAD_NOTIFY);
15d167f8
JW
2588
2589 /* service_enter_reload_by_notify is never called during a reload, thus no loops are possible. */
2590 r = manager_propagate_reload(UNIT(s)->manager, UNIT(s), JOB_FAIL, &error);
2591 if (r < 0)
3dde96d8 2592 log_unit_warning(UNIT(s), "Failed to schedule propagation of reload, ignoring: %s", bus_error_message(&error, r));
308d72dc
LP
2593}
2594
034c6ed7 2595static void service_enter_reload(Service *s) {
3bd28bf7 2596 bool killed = false;
034c6ed7
LP
2597 int r;
2598
2599 assert(s);
2600
5e94833f 2601 service_unwatch_control_pid(s);
95c906ae 2602 s->reload_result = SERVICE_SUCCESS;
5e94833f 2603
3bd28bf7
LP
2604 usec_t ts = now(CLOCK_MONOTONIC);
2605
c79ab77c
LP
2606 if (s->type == SERVICE_NOTIFY_RELOAD && pidref_is_set(&s->main_pid)) {
2607 r = pidref_kill_and_sigcont(&s->main_pid, s->reload_signal);
3bd28bf7
LP
2608 if (r < 0) {
2609 log_unit_warning_errno(UNIT(s), r, "Failed to send reload signal: %m");
2610 goto fail;
2611 }
2612
2613 killed = true;
2614 }
2615
117dcc57
ZJS
2616 s->control_command = s->exec_command[SERVICE_EXEC_RELOAD];
2617 if (s->control_command) {
867b3b7d 2618 s->control_command_id = SERVICE_EXEC_RELOAD;
c79ab77c 2619 pidref_done(&s->control_pid);
867b3b7d 2620
ecedd90f
LP
2621 r = service_spawn(s,
2622 s->control_command,
cfbf7538 2623 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
21b2ce39 2624 s->timeout_start_usec,
ecedd90f 2625 &s->control_pid);
3bd28bf7 2626 if (r < 0) {
10691b9e 2627 log_unit_warning_errno(UNIT(s), r, "Failed to spawn 'reload' task: %m");
034c6ed7 2628 goto fail;
3bd28bf7 2629 }
034c6ed7 2630
80876c20 2631 service_set_state(s, SERVICE_RELOAD);
3bd28bf7 2632 } else if (killed) {
3dde96d8
LP
2633 r = service_arm_timer(s, /* relative= */ true, s->timeout_start_usec);
2634 if (r < 0) {
2635 log_unit_warning_errno(UNIT(s), r, "Failed to install timer: %m");
2636 goto fail;
2637 }
2638
3bd28bf7
LP
2639 service_set_state(s, SERVICE_RELOAD_SIGNAL);
2640 } else {
f42806df 2641 service_enter_running(s, SERVICE_SUCCESS);
3bd28bf7
LP
2642 return;
2643 }
034c6ed7 2644
3bd28bf7
LP
2645 /* Store the timestamp when we started reloading: when reloading via SIGHUP we won't leave the reload
2646 * state until we received both RELOADING=1 and READY=1 with MONOTONIC_USEC= set to a value above
2647 * this. Thus we know for sure the reload cycle was executed *after* we requested it, and is not one
2648 * that was already in progress before. */
2649 s->reload_begin_usec = ts;
034c6ed7
LP
2650 return;
2651
2652fail:
f42806df
LP
2653 s->reload_result = SERVICE_FAILURE_RESOURCES;
2654 service_enter_running(s, SERVICE_SUCCESS);
034c6ed7
LP
2655}
2656
f42806df 2657static void service_run_next_control(Service *s) {
36c16a7c 2658 usec_t timeout;
034c6ed7
LP
2659 int r;
2660
2661 assert(s);
2662 assert(s->control_command);
2663 assert(s->control_command->command_next);
2664
34e9ba66 2665 assert(s->control_command_id != SERVICE_EXEC_START);
034c6ed7 2666
34e9ba66 2667 s->control_command = s->control_command->command_next;
5e94833f
LP
2668 service_unwatch_control_pid(s);
2669
31cd5f63 2670 if (IN_SET(s->state, SERVICE_CONDITION, SERVICE_START_PRE, SERVICE_START, SERVICE_START_POST, SERVICE_RUNNING, SERVICE_RELOAD))
36c16a7c
LP
2671 timeout = s->timeout_start_usec;
2672 else
2673 timeout = s->timeout_stop_usec;
2674
c79ab77c
LP
2675 pidref_done(&s->control_pid);
2676
ecedd90f
LP
2677 r = service_spawn(s,
2678 s->control_command,
cfbf7538 2679 service_exec_flags(s->control_command_id, /* cred_flag = */ 0),
36c16a7c 2680 timeout,
ecedd90f 2681 &s->control_pid);
10691b9e
LP
2682 if (r < 0) {
2683 log_unit_warning_errno(UNIT(s), r, "Failed to spawn next control task: %m");
2684
2685 if (IN_SET(s->state, SERVICE_CONDITION, SERVICE_START_PRE, SERVICE_START_POST, SERVICE_STOP))
2686 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_RESOURCES);
2687 else if (s->state == SERVICE_STOP_POST)
2688 service_enter_dead(s, SERVICE_FAILURE_RESOURCES, /* allow_restart= */ true);
2689 else if (s->state == SERVICE_RELOAD) {
2690 s->reload_result = SERVICE_FAILURE_RESOURCES;
2691 service_enter_running(s, SERVICE_SUCCESS);
2692 } else
2693 service_enter_stop(s, SERVICE_FAILURE_RESOURCES);
2694 }
5cb5a6ff
LP
2695}
2696
f42806df 2697static void service_run_next_main(Service *s) {
c79ab77c 2698 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
34e9ba66
LP
2699 int r;
2700
2701 assert(s);
867b3b7d
LP
2702 assert(s->main_command);
2703 assert(s->main_command->command_next);
2704 assert(s->type == SERVICE_ONESHOT);
34e9ba66 2705
867b3b7d 2706 s->main_command = s->main_command->command_next;
34e9ba66
LP
2707 service_unwatch_main_pid(s);
2708
ecedd90f
LP
2709 r = service_spawn(s,
2710 s->main_command,
cfbf7538 2711 service_exec_flags(SERVICE_EXEC_START, EXEC_SETUP_CREDENTIALS),
21b2ce39 2712 s->timeout_start_usec,
c79ab77c 2713 &pidref);
10691b9e
LP
2714 if (r < 0) {
2715 log_unit_warning_errno(UNIT(s), r, "Failed to spawn next main task: %m");
2716 service_enter_stop(s, SERVICE_FAILURE_RESOURCES);
2717 return;
2718 }
34e9ba66 2719
b1f6901d 2720 (void) service_set_main_pidref(s, &pidref);
34e9ba66
LP
2721}
2722
87f0e418
LP
2723static int service_start(Unit *u) {
2724 Service *s = SERVICE(u);
07299350 2725 int r;
5cb5a6ff
LP
2726
2727 assert(s);
2728
034c6ed7
LP
2729 /* We cannot fulfill this request right now, try again later
2730 * please! */
a00973af 2731 if (IN_SET(s->state,
c87700a1 2732 SERVICE_STOP, SERVICE_STOP_WATCHDOG, SERVICE_STOP_SIGTERM, SERVICE_STOP_SIGKILL, SERVICE_STOP_POST,
bf760801 2733 SERVICE_FINAL_WATCHDOG, SERVICE_FINAL_SIGTERM, SERVICE_FINAL_SIGKILL, SERVICE_CLEANING))
5cb5a6ff
LP
2734 return -EAGAIN;
2735
034c6ed7 2736 /* Already on it! */
31cd5f63 2737 if (IN_SET(s->state, SERVICE_CONDITION, SERVICE_START_PRE, SERVICE_START, SERVICE_START_POST))
034c6ed7
LP
2738 return 0;
2739
a1d31573
LP
2740 /* A service that will be restarted must be stopped first to trigger BindsTo and/or OnFailure
2741 * dependencies. If a user does not want to wait for the holdoff time to elapse, the service should
2742 * be manually restarted, not started. We simply return EAGAIN here, so that any start jobs stay
2743 * queued, and assume that the auto restart timer will eventually trigger the restart. */
2744 if (IN_SET(s->state, SERVICE_AUTO_RESTART, SERVICE_DEAD_BEFORE_AUTO_RESTART, SERVICE_FAILED_BEFORE_AUTO_RESTART))
a8bb2e65 2745 return -EAGAIN;
2e9d6c12 2746
09d04ad3 2747 assert(IN_SET(s->state, SERVICE_DEAD, SERVICE_FAILED, SERVICE_DEAD_RESOURCES_PINNED, SERVICE_AUTO_RESTART_QUEUED));
5cb5a6ff 2748
4b58153d
LP
2749 r = unit_acquire_invocation_id(u);
2750 if (r < 0)
2751 return r;
2752
f42806df
LP
2753 s->result = SERVICE_SUCCESS;
2754 s->reload_result = SERVICE_SUCCESS;
034c6ed7 2755 s->main_pid_known = false;
6dfa5494 2756 s->main_pid_alien = false;
47342320 2757 s->forbid_restart = false;
3c7416b6 2758
a1e58e8e 2759 s->status_text = mfree(s->status_text);
8cfdb077
LP
2760 s->status_errno = 0;
2761
19dff691 2762 s->notify_access_override = _NOTIFY_ACCESS_INVALID;
308d72dc
LP
2763 s->notify_state = NOTIFY_UNKNOWN;
2764
aa8c4bbf 2765 s->watchdog_original_usec = s->watchdog_usec;
2787d83c 2766 s->watchdog_override_enable = false;
aa8c4bbf 2767 s->watchdog_override_usec = USEC_INFINITY;
2787d83c 2768
6a1d4d9f
LP
2769 exec_command_reset_status_list_array(s->exec_command, _SERVICE_EXEC_COMMAND_MAX);
2770 exec_status_reset(&s->main_exec_status);
2771
7a0019d3
LP
2772 /* This is not an automatic restart? Flush the restart counter then */
2773 if (s->flush_n_restarts) {
2774 s->n_restarts = 0;
2775 s->flush_n_restarts = false;
2776 }
2777
9cc54544
LP
2778 CGroupRuntime *crt = unit_get_cgroup_runtime(u);
2779 if (crt)
2780 crt->reset_accounting = true;
6a1d4d9f 2781
31cd5f63 2782 service_enter_condition(s);
82a2b6bb 2783 return 1;
5cb5a6ff
LP
2784}
2785
87f0e418 2786static int service_stop(Unit *u) {
e9fa1bf7 2787 Service *s = ASSERT_PTR(SERVICE(u));
5cb5a6ff 2788
a509f0e6 2789 /* Don't create restart jobs from manual stops. */
47342320 2790 s->forbid_restart = true;
034c6ed7 2791
a1d31573
LP
2792 switch (s->state) {
2793
2794 case SERVICE_STOP:
2795 case SERVICE_STOP_SIGTERM:
2796 case SERVICE_STOP_SIGKILL:
2797 case SERVICE_STOP_POST:
2798 case SERVICE_FINAL_WATCHDOG:
2799 case SERVICE_FINAL_SIGTERM:
2800 case SERVICE_FINAL_SIGKILL:
2801 /* Already on it */
e537352b
LP
2802 return 0;
2803
a1d31573 2804 case SERVICE_AUTO_RESTART:
09d04ad3
LP
2805 case SERVICE_AUTO_RESTART_QUEUED:
2806 /* Give up on the auto restart */
b9c1883a 2807 service_set_state(s, service_determine_dead_state(s));
034c6ed7 2808 return 0;
034c6ed7 2809
a1d31573
LP
2810 case SERVICE_CONDITION:
2811 case SERVICE_START_PRE:
2812 case SERVICE_START:
2813 case SERVICE_START_POST:
2814 case SERVICE_RELOAD:
2815 case SERVICE_RELOAD_SIGNAL:
2816 case SERVICE_RELOAD_NOTIFY:
2817 case SERVICE_STOP_WATCHDOG:
2818 /* If there's already something running we go directly into kill mode. */
f42806df 2819 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_SUCCESS);
3f6c78dc 2820 return 0;
5cb5a6ff 2821
a1d31573
LP
2822 case SERVICE_CLEANING:
2823 /* If we are currently cleaning, then abort it, brutally. */
4c2f5842
LP
2824 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_SUCCESS);
2825 return 0;
a1d31573
LP
2826
2827 case SERVICE_RUNNING:
2828 case SERVICE_EXITED:
2829 service_enter_stop(s, SERVICE_SUCCESS);
2830 return 1;
2831
2832 case SERVICE_DEAD_BEFORE_AUTO_RESTART:
2833 case SERVICE_FAILED_BEFORE_AUTO_RESTART:
2834 case SERVICE_DEAD:
2835 case SERVICE_FAILED:
b9c1883a 2836 case SERVICE_DEAD_RESOURCES_PINNED:
a1d31573
LP
2837 default:
2838 /* Unknown state, or unit_stop() should already have handled these */
2839 assert_not_reached();
4c2f5842 2840 }
5cb5a6ff
LP
2841}
2842
87f0e418 2843static int service_reload(Unit *u) {
e9fa1bf7 2844 Service *s = ASSERT_PTR(SERVICE(u));
034c6ed7 2845
3742095b 2846 assert(IN_SET(s->state, SERVICE_RUNNING, SERVICE_EXITED));
034c6ed7
LP
2847
2848 service_enter_reload(s);
2d018ae2 2849 return 1;
5cb5a6ff
LP
2850}
2851
d1e8e8b5 2852static bool service_can_reload(Unit *u) {
e9fa1bf7 2853 Service *s = ASSERT_PTR(SERVICE(u));
034c6ed7 2854
3bd28bf7
LP
2855 return s->exec_command[SERVICE_EXEC_RELOAD] ||
2856 s->type == SERVICE_NOTIFY_RELOAD;
034c6ed7
LP
2857}
2858
502096b5 2859static unsigned service_exec_command_index(Unit *u, ServiceExecCommand id, const ExecCommand *current) {
e266c068
MS
2860 Service *s = SERVICE(u);
2861 unsigned idx = 0;
e266c068
MS
2862
2863 assert(s);
5b99bd5f
LP
2864 assert(id >= 0);
2865 assert(id < _SERVICE_EXEC_COMMAND_MAX);
e266c068 2866
502096b5 2867 const ExecCommand *first = s->exec_command[id];
e266c068
MS
2868
2869 /* Figure out where we are in the list by walking back to the beginning */
502096b5 2870 for (const ExecCommand *c = current; c != first; c = c->command_prev)
e266c068
MS
2871 idx++;
2872
2873 return idx;
2874}
2875
502096b5 2876static int service_serialize_exec_command(Unit *u, FILE *f, const ExecCommand *command) {
e9fa1bf7 2877 Service *s = ASSERT_PTR(SERVICE(u));
d68c645b 2878 _cleanup_free_ char *args = NULL, *p = NULL;
d68c645b 2879 const char *type, *key;
e266c068 2880 ServiceExecCommand id;
319a4f4b 2881 size_t length = 0;
e266c068 2882 unsigned idx;
e266c068 2883
e266c068
MS
2884 assert(f);
2885
2886 if (!command)
2887 return 0;
2888
2889 if (command == s->control_command) {
2890 type = "control";
2891 id = s->control_command_id;
2892 } else {
2893 type = "main";
2894 id = SERVICE_EXEC_START;
2895 }
2896
2897 idx = service_exec_command_index(u, id, command);
2898
2899 STRV_FOREACH(arg, command->argv) {
e266c068 2900 _cleanup_free_ char *e = NULL;
d68c645b 2901 size_t n;
e266c068 2902
d68c645b 2903 e = cescape(*arg);
e266c068 2904 if (!e)
d68c645b 2905 return log_oom();
e266c068
MS
2906
2907 n = strlen(e);
319a4f4b 2908 if (!GREEDY_REALLOC(args, length + 2 + n + 2))
d68c645b 2909 return log_oom();
e266c068
MS
2910
2911 if (length > 0)
2912 args[length++] = ' ';
2913
334c0979 2914 args[length++] = '"';
e266c068
MS
2915 memcpy(args + length, e, n);
2916 length += n;
334c0979 2917 args[length++] = '"';
e266c068
MS
2918 }
2919
319a4f4b 2920 if (!GREEDY_REALLOC(args, length + 1))
d68c645b
LP
2921 return log_oom();
2922
e266c068
MS
2923 args[length++] = 0;
2924
d68c645b 2925 p = cescape(command->path);
e266c068 2926 if (!p)
5b99bd5f 2927 return log_oom();
e266c068 2928
d68c645b 2929 key = strjoina(type, "-command");
a99bd455
ZJS
2930
2931 /* We use '+1234' instead of '1234' to mark the last command in a sequence.
2932 * This is used in service_deserialize_exec_command(). */
2933 (void) serialize_item_format(
2934 f, key,
2935 "%s %s%u %s %s",
2936 service_exec_command_to_string(id),
2937 command->command_next ? "" : "+",
2938 idx,
2939 p, args);
5b99bd5f
LP
2940
2941 return 0;
e266c068
MS
2942}
2943
a16e1123 2944static int service_serialize(Unit *u, FILE *f, FDSet *fds) {
e9fa1bf7 2945 Service *s = ASSERT_PTR(SERVICE(u));
a34ceba6 2946 int r;
a16e1123 2947
a16e1123
LP
2948 assert(f);
2949 assert(fds);
2950
d68c645b
LP
2951 (void) serialize_item(f, "state", service_state_to_string(s->state));
2952 (void) serialize_item(f, "result", service_result_to_string(s->result));
2953 (void) serialize_item(f, "reload-result", service_result_to_string(s->reload_result));
a16e1123 2954
2a7451dc
LP
2955 (void) serialize_pidref(f, fds, "control-pid", &s->control_pid);
2956 if (s->main_pid_known)
2957 (void) serialize_pidref(f, fds, "main-pid", &s->main_pid);
a16e1123 2958
d68c645b
LP
2959 (void) serialize_bool(f, "main-pid-known", s->main_pid_known);
2960 (void) serialize_bool(f, "bus-name-good", s->bus_name_good);
2961 (void) serialize_bool(f, "bus-name-owner", s->bus_name_owner);
a16e1123 2962
d68c645b
LP
2963 (void) serialize_item_format(f, "n-restarts", "%u", s->n_restarts);
2964 (void) serialize_bool(f, "flush-n-restarts", s->flush_n_restarts);
7a0019d3 2965
d68c645b 2966 r = serialize_item_escaped(f, "status-text", s->status_text);
a34ceba6
LP
2967 if (r < 0)
2968 return r;
3a2776bc 2969
e266c068
MS
2970 service_serialize_exec_command(u, f, s->control_command);
2971 service_serialize_exec_command(u, f, s->main_command);
a16e1123 2972
d68c645b 2973 r = serialize_fd(f, fds, "stdin-fd", s->stdin_fd);
a34ceba6
LP
2974 if (r < 0)
2975 return r;
d68c645b 2976 r = serialize_fd(f, fds, "stdout-fd", s->stdout_fd);
a34ceba6
LP
2977 if (r < 0)
2978 return r;
d68c645b 2979 r = serialize_fd(f, fds, "stderr-fd", s->stderr_fd);
a34ceba6
LP
2980 if (r < 0)
2981 return r;
e44da745 2982
5686391b 2983 if (s->exec_fd_event_source) {
d68c645b 2984 r = serialize_fd(f, fds, "exec-fd", sd_event_source_get_io_fd(s->exec_fd_event_source));
5686391b
LP
2985 if (r < 0)
2986 return r;
d68c645b
LP
2987
2988 (void) serialize_bool(f, "exec-fd-hot", s->exec_fd_hot);
5686391b
LP
2989 }
2990
9dfb64f8 2991 if (UNIT_ISSET(s->accept_socket)) {
d68c645b 2992 r = serialize_item(f, "accept-socket", UNIT_DEREF(s->accept_socket)->id);
9dfb64f8
ZJS
2993 if (r < 0)
2994 return r;
2995 }
2996
d68c645b 2997 r = serialize_fd(f, fds, "socket-fd", s->socket_fd);
a34ceba6
LP
2998 if (r < 0)
2999 return r;
e44da745 3000
2339fc93 3001 LIST_FOREACH(fd_store, fs, s->fd_store) {
8dd4c05b 3002 _cleanup_free_ char *c = NULL;
2339fc93
LP
3003 int copy;
3004
3005 copy = fdset_put_dup(fds, fs->fd);
3006 if (copy < 0)
d68c645b 3007 return log_error_errno(copy, "Failed to copy file descriptor for serialization: %m");
2339fc93 3008
8dd4c05b 3009 c = cescape(fs->fdname);
d68c645b
LP
3010 if (!c)
3011 return log_oom();
8dd4c05b 3012
9b85bf02 3013 (void) serialize_item_format(f, "fd-store-fd", "%i \"%s\" %s", copy, c, one_zero(fs->do_poll));
2339fc93
LP
3014 }
3015
ecdbca40 3016 if (s->main_exec_status.pid > 0) {
d68c645b
LP
3017 (void) serialize_item_format(f, "main-exec-status-pid", PID_FMT, s->main_exec_status.pid);
3018 (void) serialize_dual_timestamp(f, "main-exec-status-start", &s->main_exec_status.start_timestamp);
3019 (void) serialize_dual_timestamp(f, "main-exec-status-exit", &s->main_exec_status.exit_timestamp);
ecdbca40 3020
799fd0fd 3021 if (dual_timestamp_is_set(&s->main_exec_status.exit_timestamp)) {
d68c645b
LP
3022 (void) serialize_item_format(f, "main-exec-status-code", "%i", s->main_exec_status.code);
3023 (void) serialize_item_format(f, "main-exec-status-status", "%i", s->main_exec_status.status);
ecdbca40
LP
3024 }
3025 }
f06db334 3026
19dff691
MY
3027 if (s->notify_access_override >= 0)
3028 (void) serialize_item(f, "notify-access-override", notify_access_to_string(s->notify_access_override));
3029
d68c645b
LP
3030 (void) serialize_dual_timestamp(f, "watchdog-timestamp", &s->watchdog_timestamp);
3031 (void) serialize_bool(f, "forbid-restart", s->forbid_restart);
6aca9a58 3032
2787d83c 3033 if (s->watchdog_override_enable)
d68c645b 3034 (void) serialize_item_format(f, "watchdog-override-usec", USEC_FMT, s->watchdog_override_usec);
2787d83c 3035
aa8c4bbf
LP
3036 if (s->watchdog_original_usec != USEC_INFINITY)
3037 (void) serialize_item_format(f, "watchdog-original-usec", USEC_FMT, s->watchdog_original_usec);
3038
3bd28bf7
LP
3039 if (s->reload_begin_usec != USEC_INFINITY)
3040 (void) serialize_item_format(f, "reload-begin-usec", USEC_FMT, s->reload_begin_usec);
3041
a16e1123
LP
3042 return 0;
3043}
3044
35243b77 3045int service_deserialize_exec_command(
5b99bd5f
LP
3046 Unit *u,
3047 const char *key,
3048 const char *value) {
3049
e9fa1bf7 3050 Service *s = ASSERT_PTR(SERVICE(u));
e266c068 3051 ExecCommand *command = NULL;
e9fa1bf7 3052 ServiceExecCommand id = _SERVICE_EXEC_COMMAND_INVALID;
6eeec374 3053 _cleanup_free_ char *path = NULL;
e266c068 3054 _cleanup_strv_free_ char **argv = NULL;
e9fa1bf7
MY
3055 unsigned idx = 0, i;
3056 bool control, found = false, last = false;
3057 int r;
e266c068
MS
3058
3059 enum ExecCommandState {
3060 STATE_EXEC_COMMAND_TYPE,
3061 STATE_EXEC_COMMAND_INDEX,
3062 STATE_EXEC_COMMAND_PATH,
3063 STATE_EXEC_COMMAND_ARGS,
3064 _STATE_EXEC_COMMAND_MAX,
2d93c20e 3065 _STATE_EXEC_COMMAND_INVALID = -EINVAL,
e266c068
MS
3066 } state;
3067
e266c068
MS
3068 assert(key);
3069 assert(value);
3070
3071 control = streq(key, "control-command");
3072
3073 state = STATE_EXEC_COMMAND_TYPE;
3074
3075 for (;;) {
3076 _cleanup_free_ char *arg = NULL;
3077
334c0979 3078 r = extract_first_word(&value, &arg, NULL, EXTRACT_CUNESCAPE | EXTRACT_UNQUOTE);
efa3f34e
LP
3079 if (r < 0)
3080 return r;
e266c068
MS
3081 if (r == 0)
3082 break;
e266c068
MS
3083
3084 switch (state) {
3085 case STATE_EXEC_COMMAND_TYPE:
3086 id = service_exec_command_from_string(arg);
3087 if (id < 0)
7211c853 3088 return id;
e266c068
MS
3089
3090 state = STATE_EXEC_COMMAND_INDEX;
3091 break;
3092 case STATE_EXEC_COMMAND_INDEX:
a99bd455
ZJS
3093 /* PID 1234 is serialized as either '1234' or '+1234'. The second form is used to
3094 * mark the last command in a sequence. We warn if the deserialized command doesn't
3095 * match what we have loaded from the unit, but we don't need to warn if that is the
3096 * last command. */
3097
e266c068
MS
3098 r = safe_atou(arg, &idx);
3099 if (r < 0)
7211c853 3100 return r;
a99bd455 3101 last = arg[0] == '+';
e266c068
MS
3102
3103 state = STATE_EXEC_COMMAND_PATH;
3104 break;
3105 case STATE_EXEC_COMMAND_PATH:
ae2a15bc 3106 path = TAKE_PTR(arg);
e266c068 3107 state = STATE_EXEC_COMMAND_ARGS;
e266c068
MS
3108 break;
3109 case STATE_EXEC_COMMAND_ARGS:
3110 r = strv_extend(&argv, arg);
3111 if (r < 0)
010cd1dc 3112 return r;
e266c068
MS
3113 break;
3114 default:
04499a70 3115 assert_not_reached();
e266c068
MS
3116 }
3117 }
3118
3119 if (state != STATE_EXEC_COMMAND_ARGS)
3120 return -EINVAL;
90204792
ZJS
3121 if (strv_isempty(argv))
3122 return -EINVAL; /* At least argv[0] must be always present. */
e266c068
MS
3123
3124 /* Let's check whether exec command on given offset matches data that we just deserialized */
3125 for (command = s->exec_command[id], i = 0; command; command = command->command_next, i++) {
3126 if (i != idx)
3127 continue;
3128
3129 found = strv_equal(argv, command->argv) && streq(command->path, path);
3130 break;
3131 }
3132
3133 if (!found) {
3134 /* Command at the index we serialized is different, let's look for command that exactly
3135 * matches but is on different index. If there is no such command we will not resume execution. */
3136 for (command = s->exec_command[id]; command; command = command->command_next)
3137 if (strv_equal(command->argv, argv) && streq(command->path, path))
3138 break;
3139 }
3140
e9da62b1 3141 if (command && control) {
e266c068 3142 s->control_command = command;
e9da62b1
LP
3143 s->control_command_id = id;
3144 } else if (command)
e266c068 3145 s->main_command = command;
a99bd455
ZJS
3146 else if (last)
3147 log_unit_debug(u, "Current command vanished from the unit file.");
e266c068
MS
3148 else
3149 log_unit_warning(u, "Current command vanished from the unit file, execution of the command list won't be resumed.");
3150
3151 return 0;
3152}
3153
a16e1123 3154static int service_deserialize_item(Unit *u, const char *key, const char *value, FDSet *fds) {
e9fa1bf7 3155 Service *s = ASSERT_PTR(SERVICE(u));
2339fc93 3156 int r;
a16e1123 3157
a16e1123
LP
3158 assert(key);
3159 assert(value);
3160 assert(fds);
3161
3162 if (streq(key, "state")) {
3163 ServiceState state;
3164
117dcc57
ZJS
3165 state = service_state_from_string(value);
3166 if (state < 0)
f2341e0a 3167 log_unit_debug(u, "Failed to parse state value: %s", value);
a16e1123
LP
3168 else
3169 s->deserialized_state = state;
f42806df
LP
3170 } else if (streq(key, "result")) {
3171 ServiceResult f;
3172
3173 f = service_result_from_string(value);
3174 if (f < 0)
f2341e0a 3175 log_unit_debug(u, "Failed to parse result value: %s", value);
f42806df
LP
3176 else if (f != SERVICE_SUCCESS)
3177 s->result = f;
3178
3179 } else if (streq(key, "reload-result")) {
3180 ServiceResult f;
3181
3182 f = service_result_from_string(value);
3183 if (f < 0)
f2341e0a 3184 log_unit_debug(u, "Failed to parse reload result value: %s", value);
f42806df
LP
3185 else if (f != SERVICE_SUCCESS)
3186 s->reload_result = f;
a16e1123 3187
a16e1123 3188 } else if (streq(key, "control-pid")) {
c79ab77c 3189 pidref_done(&s->control_pid);
2a7451dc
LP
3190
3191 (void) deserialize_pidref(fds, value, &s->control_pid);
3192
a16e1123 3193 } else if (streq(key, "main-pid")) {
2a7451dc
LP
3194 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
3195
3196 if (deserialize_pidref(fds, value, &pidref) >= 0)
3197 (void) service_set_main_pidref(s, &pidref);
a16e1123 3198
a16e1123
LP
3199 } else if (streq(key, "main-pid-known")) {
3200 int b;
3201
117dcc57
ZJS
3202 b = parse_boolean(value);
3203 if (b < 0)
f2341e0a 3204 log_unit_debug(u, "Failed to parse main-pid-known value: %s", value);
a16e1123
LP
3205 else
3206 s->main_pid_known = b;
de1d4f9b
WF
3207 } else if (streq(key, "bus-name-good")) {
3208 int b;
3209
3210 b = parse_boolean(value);
3211 if (b < 0)
3212 log_unit_debug(u, "Failed to parse bus-name-good value: %s", value);
3213 else
3214 s->bus_name_good = b;
d8ccf5fd
DM
3215 } else if (streq(key, "bus-name-owner")) {
3216 r = free_and_strdup(&s->bus_name_owner, value);
3217 if (r < 0)
3218 log_unit_error_errno(u, r, "Unable to deserialize current bus owner %s: %m", value);
3a2776bc
LP
3219 } else if (streq(key, "status-text")) {
3220 char *t;
e437538f 3221 ssize_t l;
3a2776bc 3222
e437538f
ZJS
3223 l = cunescape(value, 0, &t);
3224 if (l < 0)
3225 log_unit_debug_errno(u, l, "Failed to unescape status text '%s': %m", value);
efa3f34e
LP
3226 else
3227 free_and_replace(s->status_text, t);
3a2776bc 3228
9dfb64f8
ZJS
3229 } else if (streq(key, "accept-socket")) {
3230 Unit *socket;
3231
45b10174
FS
3232 if (u->type != UNIT_SOCKET) {
3233 log_unit_debug(u, "Failed to deserialize accept-socket: unit is not a socket");
3234 return 0;
3235 }
3236
9dfb64f8
ZJS
3237 r = manager_load_unit(u->manager, value, NULL, NULL, &socket);
3238 if (r < 0)
5e1ee764 3239 log_unit_debug_errno(u, r, "Failed to load accept-socket unit '%s': %m", value);
9dfb64f8 3240 else {
7f7d01ed 3241 unit_ref_set(&s->accept_socket, u, socket);
9dfb64f8
ZJS
3242 SOCKET(socket)->n_connections++;
3243 }
3244
a16e1123 3245 } else if (streq(key, "socket-fd")) {
dff9808a
LP
3246 asynchronous_close(s->socket_fd);
3247 s->socket_fd = deserialize_fd(fds, value);
a16e1123 3248
2339fc93 3249 } else if (streq(key, "fd-store-fd")) {
30520492 3250 _cleanup_free_ char *fdv = NULL, *fdn = NULL, *fdp = NULL;
dff9808a
LP
3251 _cleanup_close_ int fd = -EBADF;
3252 int do_poll;
2339fc93 3253
9b85bf02
MY
3254 r = extract_many_words(&value, " ", EXTRACT_CUNESCAPE|EXTRACT_UNQUOTE, &fdv, &fdn, &fdp);
3255 if (r < 2 || r > 3) {
3256 log_unit_debug(u, "Failed to deserialize fd-store-fd, ignoring: %s", value);
30520492
KL
3257 return 0;
3258 }
8dd4c05b 3259
dff9808a
LP
3260 fd = deserialize_fd(fds, fdv);
3261 if (fd < 0)
3262 return 0;
3263
9b85bf02
MY
3264 do_poll = r == 3 ? parse_boolean(fdp) : true;
3265 if (do_poll < 0) {
3266 log_unit_debug_errno(u, do_poll,
3267 "Failed to deserialize fd-store-fd do_poll, ignoring: %s", fdp);
30520492 3268 return 0;
2339fc93
LP
3269 }
3270
30520492 3271 r = service_add_fd_store(s, fd, fdn, do_poll);
a02287ea 3272 if (r < 0) {
9b85bf02
MY
3273 log_unit_debug_errno(u, r,
3274 "Failed to store deserialized fd '%s', ignoring: %m", fdn);
a02287ea
YW
3275 return 0;
3276 }
dff9808a
LP
3277
3278 TAKE_FD(fd);
ecdbca40
LP
3279 } else if (streq(key, "main-exec-status-pid")) {
3280 pid_t pid;
3281
e364ad06 3282 if (parse_pid(value, &pid) < 0)
f2341e0a 3283 log_unit_debug(u, "Failed to parse main-exec-status-pid value: %s", value);
ecdbca40
LP
3284 else
3285 s->main_exec_status.pid = pid;
3286 } else if (streq(key, "main-exec-status-code")) {
3287 int i;
3288
e364ad06 3289 if (safe_atoi(value, &i) < 0)
f2341e0a 3290 log_unit_debug(u, "Failed to parse main-exec-status-code value: %s", value);
ecdbca40
LP
3291 else
3292 s->main_exec_status.code = i;
3293 } else if (streq(key, "main-exec-status-status")) {
3294 int i;
3295
e364ad06 3296 if (safe_atoi(value, &i) < 0)
f2341e0a 3297 log_unit_debug(u, "Failed to parse main-exec-status-status value: %s", value);
ecdbca40
LP
3298 else
3299 s->main_exec_status.status = i;
799fd0fd 3300 } else if (streq(key, "main-exec-status-start"))
d68c645b 3301 deserialize_dual_timestamp(value, &s->main_exec_status.start_timestamp);
799fd0fd 3302 else if (streq(key, "main-exec-status-exit"))
d68c645b 3303 deserialize_dual_timestamp(value, &s->main_exec_status.exit_timestamp);
19dff691
MY
3304 else if (streq(key, "notify-access-override")) {
3305 NotifyAccess notify_access;
3306
3307 notify_access = notify_access_from_string(value);
3308 if (notify_access < 0)
3309 log_unit_debug(u, "Failed to parse notify-access-override value: %s", value);
3310 else
3311 s->notify_access_override = notify_access;
3312 } else if (streq(key, "watchdog-timestamp"))
d68c645b 3313 deserialize_dual_timestamp(value, &s->watchdog_timestamp);
613b411c 3314 else if (streq(key, "forbid-restart")) {
6aca9a58
SE
3315 int b;
3316
3317 b = parse_boolean(value);
3318 if (b < 0)
f2341e0a 3319 log_unit_debug(u, "Failed to parse forbid-restart value: %s", value);
6aca9a58
SE
3320 else
3321 s->forbid_restart = b;
a34ceba6 3322 } else if (streq(key, "stdin-fd")) {
a34ceba6 3323
dff9808a
LP
3324 asynchronous_close(s->stdin_fd);
3325 s->stdin_fd = deserialize_fd(fds, value);
3326 if (s->stdin_fd >= 0)
1e22b5cd 3327 s->exec_context.stdio_as_fds = true;
dff9808a 3328
a34ceba6 3329 } else if (streq(key, "stdout-fd")) {
a34ceba6 3330
dff9808a
LP
3331 asynchronous_close(s->stdout_fd);
3332 s->stdout_fd = deserialize_fd(fds, value);
3333 if (s->stdout_fd >= 0)
1e22b5cd 3334 s->exec_context.stdio_as_fds = true;
dff9808a 3335
a34ceba6 3336 } else if (streq(key, "stderr-fd")) {
a34ceba6 3337
dff9808a
LP
3338 asynchronous_close(s->stderr_fd);
3339 s->stderr_fd = deserialize_fd(fds, value);
3340 if (s->stderr_fd >= 0)
1e22b5cd 3341 s->exec_context.stdio_as_fds = true;
dff9808a 3342
5686391b 3343 } else if (streq(key, "exec-fd")) {
dff9808a 3344 _cleanup_close_ int fd = -EBADF;
5686391b 3345
dff9808a
LP
3346 fd = deserialize_fd(fds, value);
3347 if (fd >= 0) {
5dcadb4c 3348 s->exec_fd_event_source = sd_event_source_disable_unref(s->exec_fd_event_source);
5686391b 3349
dff9808a
LP
3350 if (service_allocate_exec_fd_event_source(s, fd, &s->exec_fd_event_source) >= 0)
3351 TAKE_FD(fd);
5686391b 3352 }
dff9808a 3353
2787d83c 3354 } else if (streq(key, "watchdog-override-usec")) {
d68c645b 3355 if (deserialize_usec(value, &s->watchdog_override_usec) < 0)
2787d83c 3356 log_unit_debug(u, "Failed to parse watchdog_override_usec value: %s", value);
d68c645b 3357 else
2787d83c 3358 s->watchdog_override_enable = true;
d68c645b 3359
aa8c4bbf
LP
3360 } else if (streq(key, "watchdog-original-usec")) {
3361 if (deserialize_usec(value, &s->watchdog_original_usec) < 0)
3362 log_unit_debug(u, "Failed to parse watchdog_original_usec value: %s", value);
3363
e266c068
MS
3364 } else if (STR_IN_SET(key, "main-command", "control-command")) {
3365 r = service_deserialize_exec_command(u, key, value);
3366 if (r < 0)
3367 log_unit_debug_errno(u, r, "Failed to parse serialized command \"%s\": %m", value);
7a0019d3
LP
3368
3369 } else if (streq(key, "n-restarts")) {
3370 r = safe_atou(value, &s->n_restarts);
3371 if (r < 0)
3372 log_unit_debug_errno(u, r, "Failed to parse serialized restart counter '%s': %m", value);
3373
3374 } else if (streq(key, "flush-n-restarts")) {
3375 r = parse_boolean(value);
3376 if (r < 0)
3377 log_unit_debug_errno(u, r, "Failed to parse serialized flush restart counter setting '%s': %m", value);
3378 else
3379 s->flush_n_restarts = r;
3bd28bf7
LP
3380 } else if (streq(key, "reload-begin-usec")) {
3381 r = deserialize_usec(value, &s->reload_begin_usec);
3382 if (r < 0)
3383 log_unit_debug_errno(u, r, "Failed to parse serialized reload begin timestamp '%s', ignoring: %m", value);
c17ec25e 3384 } else
f2341e0a 3385 log_unit_debug(u, "Unknown serialization key: %s", key);
a16e1123
LP
3386
3387 return 0;
3388}
3389
d1e8e8b5 3390static UnitActiveState service_active_state(Unit *u) {
e9fa1bf7 3391 Service *s = ASSERT_PTR(SERVICE(u));
e056b01d
LP
3392 const UnitActiveState *table;
3393
e9fa1bf7 3394 table = s->type == SERVICE_IDLE ? state_translation_table_idle : state_translation_table;
e056b01d 3395
e9fa1bf7 3396 return table[s->state];
034c6ed7
LP
3397}
3398
10a94420
LP
3399static const char *service_sub_state_to_string(Unit *u) {
3400 assert(u);
3401
3402 return service_state_to_string(SERVICE(u)->state);
3403}
3404
f2f725e5 3405static bool service_may_gc(Unit *u) {
e9fa1bf7 3406 Service *s = ASSERT_PTR(SERVICE(u));
701cc384 3407
e98b2fbb 3408 /* Never clean up services that still have a process around, even if the service is formally dead. Note that
f2f725e5 3409 * unit_may_gc() already checked our cgroup for us, we just check our two additional PIDs, too, in case they
e98b2fbb
LP
3410 * have moved outside of the cgroup. */
3411
3412 if (main_pid_good(s) > 0 ||
6d55002a 3413 control_pid_good(s) > 0)
f2f725e5 3414 return false;
6d55002a 3415
a1d31573
LP
3416 /* Only allow collection of actually dead services, i.e. not those that are in the transitionary
3417 * SERVICE_DEAD_BEFORE_AUTO_RESTART/SERVICE_FAILED_BEFORE_AUTO_RESTART states. */
b9c1883a 3418 if (!IN_SET(s->state, SERVICE_DEAD, SERVICE_FAILED, SERVICE_DEAD_RESOURCES_PINNED))
a1d31573
LP
3419 return false;
3420
f2f725e5 3421 return true;
6d55002a
LP
3422}
3423
3a111838
MS
3424static int service_retry_pid_file(Service *s) {
3425 int r;
3426
e9fa1bf7 3427 assert(s);
3a111838 3428 assert(s->pid_file);
3742095b 3429 assert(IN_SET(s->state, SERVICE_START, SERVICE_START_POST));
3a111838
MS
3430
3431 r = service_load_pid_file(s, false);
3432 if (r < 0)
3433 return r;
3434
3435 service_unwatch_pid_file(s);
3436
f42806df 3437 service_enter_running(s, SERVICE_SUCCESS);
3a111838
MS
3438 return 0;
3439}
3440
3441static int service_watch_pid_file(Service *s) {
3442 int r;
3443
e9fa1bf7
MY
3444 assert(s);
3445
f2341e0a 3446 log_unit_debug(UNIT(s), "Setting watch for PID file %s", s->pid_file_pathspec->path);
8bb2d17d 3447
5686391b 3448 r = path_spec_watch(s->pid_file_pathspec, service_dispatch_inotify_io);
10691b9e
LP
3449 if (r < 0) {
3450 log_unit_error_errno(UNIT(s), r, "Failed to set a watch for PID file %s: %m", s->pid_file_pathspec->path);
3451 service_unwatch_pid_file(s);
3452 return r;
3453 }
3a111838
MS
3454
3455 /* the pidfile might have appeared just before we set the watch */
f2341e0a 3456 log_unit_debug(UNIT(s), "Trying to read PID file %s in case it changed", s->pid_file_pathspec->path);
3a111838
MS
3457 service_retry_pid_file(s);
3458
3459 return 0;
3a111838
MS
3460}
3461
3462static int service_demand_pid_file(Service *s) {
51339a9a 3463 _cleanup_free_ PathSpec *ps = NULL;
3a111838 3464
e9fa1bf7 3465 assert(s);
3a111838
MS
3466 assert(s->pid_file);
3467 assert(!s->pid_file_pathspec);
3468
51339a9a 3469 ps = new(PathSpec, 1);
3a111838
MS
3470 if (!ps)
3471 return -ENOMEM;
3472
51339a9a
LP
3473 *ps = (PathSpec) {
3474 .unit = UNIT(s),
3475 .path = strdup(s->pid_file),
3476 /* PATH_CHANGED would not be enough. There are daemons (sendmail) that keep their PID file
3477 * open all the time. */
3478 .type = PATH_MODIFIED,
3479 .inotify_fd = -EBADF,
3480 };
3481
3482 if (!ps->path)
3a111838 3483 return -ENOMEM;
3a111838 3484
4ff361cc 3485 path_simplify(ps->path);
3a111838 3486
51339a9a 3487 s->pid_file_pathspec = TAKE_PTR(ps);
3a111838
MS
3488
3489 return service_watch_pid_file(s);
3490}
3491
5686391b 3492static int service_dispatch_inotify_io(sd_event_source *source, int fd, uint32_t events, void *userdata) {
99534007 3493 PathSpec *p = ASSERT_PTR(userdata);
e9fa1bf7 3494 Service *s = ASSERT_PTR(SERVICE(p->unit));
3a111838 3495
3a111838 3496 assert(fd >= 0);
3742095b 3497 assert(IN_SET(s->state, SERVICE_START, SERVICE_START_POST));
3a111838 3498 assert(s->pid_file_pathspec);
57020a3a 3499 assert(path_spec_owns_inotify_fd(s->pid_file_pathspec, fd));
3a111838 3500
f2341e0a 3501 log_unit_debug(UNIT(s), "inotify event");
3a111838 3502
e14c2802 3503 if (path_spec_fd_event(p, events) < 0)
3a111838
MS
3504 goto fail;
3505
3506 if (service_retry_pid_file(s) == 0)
718db961 3507 return 0;
3a111838
MS
3508
3509 if (service_watch_pid_file(s) < 0)
3510 goto fail;
3511
718db961
LP
3512 return 0;
3513
3a111838
MS
3514fail:
3515 service_unwatch_pid_file(s);
f42806df 3516 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_RESOURCES);
718db961 3517 return 0;
3a111838
MS
3518}
3519
5686391b 3520static int service_dispatch_exec_io(sd_event_source *source, int fd, uint32_t events, void *userdata) {
e9fa1bf7 3521 Service *s = ASSERT_PTR(SERVICE(userdata));
5686391b
LP
3522
3523 log_unit_debug(UNIT(s), "got exec-fd event");
3524
3525 /* If Type=exec is set, we'll consider a service started successfully the instant we invoked execve()
3526 * successfully for it. We implement this through a pipe() towards the child, which the kernel automatically
3527 * closes for us due to O_CLOEXEC on execve() in the child, which then triggers EOF on the pipe in the
3528 * parent. We need to be careful however, as there are other reasons that we might cause the child's side of
3529 * the pipe to be closed (for example, a simple exit()). To deal with that we'll ignore EOFs on the pipe unless
3530 * the child signalled us first that it is about to call the execve(). It does so by sending us a simple
3531 * non-zero byte via the pipe. We also provide the child with a way to inform us in case execve() failed: if it
3532 * sends a zero byte we'll ignore POLLHUP on the fd again. */
3533
3534 for (;;) {
3535 uint8_t x;
3536 ssize_t n;
3537
3538 n = read(fd, &x, sizeof(x));
3539 if (n < 0) {
3540 if (errno == EAGAIN) /* O_NONBLOCK in effect → everything queued has now been processed. */
3541 return 0;
3542
3543 return log_unit_error_errno(UNIT(s), errno, "Failed to read from exec_fd: %m");
3544 }
3545 if (n == 0) { /* EOF → the event we are waiting for */
3546
5dcadb4c 3547 s->exec_fd_event_source = sd_event_source_disable_unref(s->exec_fd_event_source);
5686391b
LP
3548
3549 if (s->exec_fd_hot) { /* Did the child tell us to expect EOF now? */
3550 log_unit_debug(UNIT(s), "Got EOF on exec-fd");
3551
3552 s->exec_fd_hot = false;
3553
3554 /* Nice! This is what we have been waiting for. Transition to next state. */
3555 if (s->type == SERVICE_EXEC && s->state == SERVICE_START)
3556 service_enter_start_post(s);
3557 } else
3558 log_unit_debug(UNIT(s), "Got EOF on exec-fd while it was disabled, ignoring.");
3559
3560 return 0;
3561 }
3562
3563 /* A byte was read → this turns on/off the exec fd logic */
3564 assert(n == sizeof(x));
3565 s->exec_fd_hot = x;
3566 }
3567
3568 return 0;
3569}
3570
a911bb9a 3571static void service_notify_cgroup_empty_event(Unit *u) {
e9fa1bf7 3572 Service *s = ASSERT_PTR(SERVICE(u));
a911bb9a 3573
a5b5aece 3574 log_unit_debug(u, "Control group is empty.");
a911bb9a
LP
3575
3576 switch (s->state) {
3577
a1d31573
LP
3578 /* Waiting for SIGCHLD is usually more interesting, because it includes return
3579 * codes/signals. Which is why we ignore the cgroup events for most cases, except when we
3580 * don't know pid which to expect the SIGCHLD for. */
a911bb9a
LP
3581
3582 case SERVICE_START:
3bd28bf7 3583 if (IN_SET(s->type, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD) &&
3c751b1b
LP
3584 main_pid_good(s) == 0 &&
3585 control_pid_good(s) == 0) {
3d474ef7 3586 /* No chance of getting a ready notification anymore */
c3fda31d 3587 service_enter_stop_post(s, SERVICE_FAILURE_PROTOCOL);
71e529fc
JW
3588 break;
3589 }
3590
f52e9ed6
MY
3591 if (s->exit_type == SERVICE_EXIT_CGROUP && main_pid_good(s) <= 0) {
3592 service_enter_stop_post(s, SERVICE_SUCCESS);
3593 break;
3594 }
596e4470 3595
4831981d 3596 _fallthrough_;
71e529fc 3597 case SERVICE_START_POST:
3c751b1b
LP
3598 if (s->pid_file_pathspec &&
3599 main_pid_good(s) == 0 &&
3600 control_pid_good(s) == 0) {
3601
3d474ef7 3602 /* Give up hoping for the daemon to write its PID file */
f2341e0a 3603 log_unit_warning(u, "Daemon never wrote its PID file. Failing.");
8bb2d17d 3604
a911bb9a
LP
3605 service_unwatch_pid_file(s);
3606 if (s->state == SERVICE_START)
c3fda31d 3607 service_enter_stop_post(s, SERVICE_FAILURE_PROTOCOL);
a911bb9a 3608 else
c35755fb 3609 service_enter_stop(s, SERVICE_FAILURE_PROTOCOL);
a911bb9a
LP
3610 }
3611 break;
3612
3613 case SERVICE_RUNNING:
3614 /* service_enter_running() will figure out what to do */
3615 service_enter_running(s, SERVICE_SUCCESS);
3616 break;
3617
c87700a1 3618 case SERVICE_STOP_WATCHDOG:
a911bb9a
LP
3619 case SERVICE_STOP_SIGTERM:
3620 case SERVICE_STOP_SIGKILL:
3621
b13ddbbc 3622 if (main_pid_good(s) <= 0 && control_pid_good(s) <= 0)
a911bb9a
LP
3623 service_enter_stop_post(s, SERVICE_SUCCESS);
3624
3625 break;
3626
3627 case SERVICE_STOP_POST:
bf760801 3628 case SERVICE_FINAL_WATCHDOG:
a911bb9a
LP
3629 case SERVICE_FINAL_SIGTERM:
3630 case SERVICE_FINAL_SIGKILL:
b13ddbbc 3631 if (main_pid_good(s) <= 0 && control_pid_good(s) <= 0)
a911bb9a
LP
3632 service_enter_dead(s, SERVICE_SUCCESS, true);
3633
3634 break;
3635
e08dabfe
AZ
3636 /* If the cgroup empty notification comes when the unit is not active, we must have failed to clean
3637 * up the cgroup earlier and should do it now. */
a1d31573 3638 case SERVICE_AUTO_RESTART:
09d04ad3 3639 case SERVICE_AUTO_RESTART_QUEUED:
e08dabfe
AZ
3640 unit_prune_cgroup(u);
3641 break;
3642
a911bb9a
LP
3643 default:
3644 ;
3645 }
3646}
3647
38c41427 3648static void service_notify_cgroup_oom_event(Unit *u, bool managed_oom) {
e9fa1bf7 3649 Service *s = ASSERT_PTR(SERVICE(u));
afcfaa69 3650
38c41427
NK
3651 if (managed_oom)
3652 log_unit_debug(u, "Process(es) of control group were killed by systemd-oomd.");
3653 else
3654 log_unit_debug(u, "Process of control group was killed by the OOM killer.");
afcfaa69
LP
3655
3656 if (s->oom_policy == OOM_CONTINUE)
3657 return;
3658
3659 switch (s->state) {
3660
31cd5f63 3661 case SERVICE_CONDITION:
afcfaa69
LP
3662 case SERVICE_START_PRE:
3663 case SERVICE_START:
3664 case SERVICE_START_POST:
3665 case SERVICE_STOP:
3666 if (s->oom_policy == OOM_STOP)
3667 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_OOM_KILL);
3668 else if (s->oom_policy == OOM_KILL)
3669 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_OOM_KILL);
3670
3671 break;
3672
3673 case SERVICE_EXITED:
3674 case SERVICE_RUNNING:
3675 if (s->oom_policy == OOM_STOP)
3676 service_enter_stop(s, SERVICE_FAILURE_OOM_KILL);
3677 else if (s->oom_policy == OOM_KILL)
3678 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_OOM_KILL);
3679
3680 break;
3681
3682 case SERVICE_STOP_WATCHDOG:
3683 case SERVICE_STOP_SIGTERM:
3684 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_OOM_KILL);
3685 break;
3686
3687 case SERVICE_STOP_SIGKILL:
3688 case SERVICE_FINAL_SIGKILL:
3689 if (s->result == SERVICE_SUCCESS)
3690 s->result = SERVICE_FAILURE_OOM_KILL;
3691 break;
3692
3693 case SERVICE_STOP_POST:
3694 case SERVICE_FINAL_SIGTERM:
3695 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_FAILURE_OOM_KILL);
3696 break;
3697
3698 default:
3699 ;
3700 }
3701}
3702
87f0e418 3703static void service_sigchld_event(Unit *u, pid_t pid, int code, int status) {
e9fa1bf7 3704 Service *s = ASSERT_PTR(SERVICE(u));
5cdabc8d 3705 bool notify_dbus = true;
f42806df 3706 ServiceResult f;
e5123725 3707 ExitClean clean_mode;
c917a807 3708 int r;
5cb5a6ff 3709
034c6ed7
LP
3710 assert(pid >= 0);
3711
e5123725
AZ
3712 /* Oneshot services and non-SERVICE_EXEC_START commands should not be
3713 * considered daemons as they are typically not long running. */
c79ab77c 3714 if (s->type == SERVICE_ONESHOT || (s->control_pid.pid == pid && s->control_command_id != SERVICE_EXEC_START))
e5123725
AZ
3715 clean_mode = EXIT_CLEAN_COMMAND;
3716 else
3717 clean_mode = EXIT_CLEAN_DAEMON;
3718
3719 if (is_clean_exit(code, status, clean_mode, &s->success_status))
f42806df
LP
3720 f = SERVICE_SUCCESS;
3721 else if (code == CLD_EXITED)
3722 f = SERVICE_FAILURE_EXIT_CODE;
3723 else if (code == CLD_KILLED)
3724 f = SERVICE_FAILURE_SIGNAL;
3725 else if (code == CLD_DUMPED)
3726 f = SERVICE_FAILURE_CORE_DUMP;
d06dacd0 3727 else
04499a70 3728 assert_not_reached();
034c6ed7 3729
c79ab77c 3730 if (s->main_pid.pid == pid) {
13bb1ffb
ZJS
3731 /* Clean up the exec_fd event source. We want to do this here, not later in
3732 * service_set_state(), because service_enter_stop_post() calls service_spawn().
3733 * The source owns its end of the pipe, so this will close that too. */
3734 s->exec_fd_event_source = sd_event_source_disable_unref(s->exec_fd_event_source);
3735
db01f8b3
MS
3736 /* Forking services may occasionally move to a new PID.
3737 * As long as they update the PID file before exiting the old
3738 * PID, they're fine. */
db256aab 3739 if (service_load_pid_file(s, false) > 0)
db01f8b3 3740 return;
034c6ed7 3741
c79ab77c 3742 pidref_done(&s->main_pid);
6ea832a2 3743 exec_status_exit(&s->main_exec_status, &s->exec_context, pid, code, status);
034c6ed7 3744
867b3b7d 3745 if (s->main_command) {
fbeefb45
LP
3746 /* If this is not a forking service than the
3747 * main process got started and hence we copy
3748 * the exit status so that it is recorded both
3749 * as main and as control process exit
3750 * status */
3751
867b3b7d 3752 s->main_command->exec_status = s->main_exec_status;
b708e7ce 3753
3ed0cd26 3754 if (s->main_command->flags & EXEC_COMMAND_IGNORE_FAILURE)
f42806df 3755 f = SERVICE_SUCCESS;
fbeefb45
LP
3756 } else if (s->exec_command[SERVICE_EXEC_START]) {
3757
3758 /* If this is a forked process, then we should
3759 * ignore the return value if this was
3760 * configured for the starter process */
3761
3ed0cd26 3762 if (s->exec_command[SERVICE_EXEC_START]->flags & EXEC_COMMAND_IGNORE_FAILURE)
fbeefb45 3763 f = SERVICE_SUCCESS;
034c6ed7
LP
3764 }
3765
91bbd9b7 3766 unit_log_process_exit(
5cc2cd1c 3767 u,
abaf5edd 3768 "Main process",
91bbd9b7 3769 service_exec_command_to_string(SERVICE_EXEC_START),
5cc2cd1c 3770 f == SERVICE_SUCCESS,
91bbd9b7 3771 code, status);
f42806df 3772
a0fef983 3773 if (s->result == SERVICE_SUCCESS)
f42806df 3774 s->result = f;
034c6ed7 3775
867b3b7d
LP
3776 if (s->main_command &&
3777 s->main_command->command_next &&
b58aeb70 3778 s->type == SERVICE_ONESHOT &&
f42806df 3779 f == SERVICE_SUCCESS) {
034c6ed7 3780
e78695d4 3781 /* There is another command to execute, so let's do that. */
034c6ed7 3782
f2341e0a 3783 log_unit_debug(u, "Running next main command for state %s.", service_state_to_string(s->state));
f42806df 3784 service_run_next_main(s);
034c6ed7 3785
34e9ba66 3786 } else {
867b3b7d 3787 s->main_command = NULL;
34e9ba66 3788
3bd28bf7
LP
3789 /* Services with ExitType=cgroup do not act on main PID exiting, unless the cgroup is
3790 * already empty */
596e4470
HC
3791 if (s->exit_type == SERVICE_EXIT_MAIN || cgroup_good(s) <= 0) {
3792 /* The service exited, so the service is officially gone. */
3793 switch (s->state) {
3794
3795 case SERVICE_START_POST:
3796 case SERVICE_RELOAD:
3bd28bf7
LP
3797 case SERVICE_RELOAD_SIGNAL:
3798 case SERVICE_RELOAD_NOTIFY:
3799 /* If neither main nor control processes are running then the current
3800 * state can never exit cleanly, hence immediately terminate the
3801 * service. */
596e4470
HC
3802 if (control_pid_good(s) <= 0)
3803 service_enter_stop(s, f);
3804
3805 /* Otherwise need to wait until the operation is done. */
3806 break;
bbe19f68 3807
596e4470
HC
3808 case SERVICE_STOP:
3809 /* Need to wait until the operation is done. */
3810 break;
bbe19f68 3811
596e4470
HC
3812 case SERVICE_START:
3813 if (s->type == SERVICE_ONESHOT) {
3814 /* This was our main goal, so let's go on */
3815 if (f == SERVICE_SUCCESS)
3816 service_enter_start_post(s);
3817 else
3818 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
3819 break;
3bd28bf7 3820 } else if (IN_SET(s->type, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD)) {
596e4470
HC
3821 /* Only enter running through a notification, so that the
3822 * SERVICE_START state signifies that no ready notification
3823 * has been received */
3824 if (f != SERVICE_SUCCESS)
3825 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
19dff691 3826 else if (!s->remain_after_exit || service_get_notify_access(s) == NOTIFY_MAIN)
596e4470
HC
3827 /* The service has never been and will never be active */
3828 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_PROTOCOL);
3829 break;
3830 }
7d55e835 3831
596e4470
HC
3832 _fallthrough_;
3833 case SERVICE_RUNNING:
3834 service_enter_running(s, f);
3d474ef7 3835 break;
034c6ed7 3836
596e4470
HC
3837 case SERVICE_STOP_WATCHDOG:
3838 case SERVICE_STOP_SIGTERM:
3839 case SERVICE_STOP_SIGKILL:
5cb5a6ff 3840
596e4470
HC
3841 if (control_pid_good(s) <= 0)
3842 service_enter_stop_post(s, f);
5cb5a6ff 3843
596e4470
HC
3844 /* If there is still a control process, wait for that first */
3845 break;
34e9ba66 3846
596e4470 3847 case SERVICE_STOP_POST:
c1566ef0 3848
596e4470
HC
3849 if (control_pid_good(s) <= 0)
3850 service_enter_signal(s, SERVICE_FINAL_SIGTERM, f);
c1566ef0 3851
596e4470 3852 break;
c1566ef0 3853
596e4470
HC
3854 case SERVICE_FINAL_WATCHDOG:
3855 case SERVICE_FINAL_SIGTERM:
3856 case SERVICE_FINAL_SIGKILL:
bf108e55 3857
596e4470
HC
3858 if (control_pid_good(s) <= 0)
3859 service_enter_dead(s, f, true);
3860 break;
bf108e55 3861
596e4470
HC
3862 default:
3863 assert_not_reached();
3864 }
1651ce09
MY
3865 } else if (s->exit_type == SERVICE_EXIT_CGROUP && s->state == SERVICE_START &&
3866 !IN_SET(s->type, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD, SERVICE_DBUS))
ef430065
FT
3867 /* If a main process exits very quickly, this function might be executed
3868 * before service_dispatch_exec_io(). Since this function disabled IO events
3869 * to monitor the main process above, we need to update the state here too.
1651ce09
MY
3870 * Let's consider the process is successfully launched and exited, but
3871 * only when we're not expecting a readiness notification or dbus name. */
ef430065 3872 service_enter_start_post(s);
034c6ed7 3873 }
5cb5a6ff 3874
c79ab77c 3875 } else if (s->control_pid.pid == pid) {
58441bc1
ZJS
3876 const char *kind;
3877 bool success;
3878
c79ab77c 3879 pidref_done(&s->control_pid);
34e9ba66 3880
b708e7ce 3881 if (s->control_command) {
8bb2d17d 3882 exec_status_exit(&s->control_command->exec_status, &s->exec_context, pid, code, status);
a16e1123 3883
3ed0cd26 3884 if (s->control_command->flags & EXEC_COMMAND_IGNORE_FAILURE)
f42806df 3885 f = SERVICE_SUCCESS;
b708e7ce
LP
3886 }
3887
42e6f549
AZ
3888 /* ExecCondition= calls that exit with (0, 254] should invoke skip-like behavior instead of failing */
3889 if (s->state == SERVICE_CONDITION) {
3890 if (f == SERVICE_FAILURE_EXIT_CODE && status < 255) {
3891 UNIT(s)->condition_result = false;
3892 f = SERVICE_SKIP_CONDITION;
58441bc1
ZJS
3893 success = true;
3894 } else if (f == SERVICE_SUCCESS) {
42e6f549 3895 UNIT(s)->condition_result = true;
58441bc1
ZJS
3896 success = true;
3897 } else
3898 success = false;
3899
3900 kind = "Condition check process";
3901 } else {
3902 kind = "Control process";
3903 success = f == SERVICE_SUCCESS;
42e6f549
AZ
3904 }
3905
91bbd9b7 3906 unit_log_process_exit(
5cc2cd1c 3907 u,
58441bc1 3908 kind,
91bbd9b7 3909 service_exec_command_to_string(s->control_command_id),
58441bc1 3910 success,
91bbd9b7 3911 code, status);
f42806df 3912
d611cfa7 3913 if (s->state != SERVICE_RELOAD && s->result == SERVICE_SUCCESS)
f42806df 3914 s->result = f;
034c6ed7 3915
34e9ba66
LP
3916 if (s->control_command &&
3917 s->control_command->command_next &&
f42806df 3918 f == SERVICE_SUCCESS) {
034c6ed7 3919
81006ebb 3920 /* There is another command to execute, so let's do that. */
034c6ed7 3921
f2341e0a 3922 log_unit_debug(u, "Running next control command for state %s.", service_state_to_string(s->state));
f42806df 3923 service_run_next_control(s);
034c6ed7 3924
80876c20 3925 } else {
3bd28bf7 3926 /* No further commands for this step, so let's figure out what to do next */
034c6ed7 3927
a16e1123
LP
3928 s->control_command = NULL;
3929 s->control_command_id = _SERVICE_EXEC_COMMAND_INVALID;
3930
f2341e0a 3931 log_unit_debug(u, "Got final SIGCHLD for state %s.", service_state_to_string(s->state));
bd982a8b 3932
034c6ed7
LP
3933 switch (s->state) {
3934
31cd5f63
AZ
3935 case SERVICE_CONDITION:
3936 if (f == SERVICE_SUCCESS)
3937 service_enter_start_pre(s);
3938 else
3939 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
3940 break;
3941
034c6ed7 3942 case SERVICE_START_PRE:
f42806df 3943 if (f == SERVICE_SUCCESS)
034c6ed7
LP
3944 service_enter_start(s);
3945 else
c3fda31d 3946 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
034c6ed7
LP
3947 break;
3948
3949 case SERVICE_START:
bfba3256
LP
3950 if (s->type != SERVICE_FORKING)
3951 /* Maybe spurious event due to a reload that changed the type? */
3952 break;
034c6ed7 3953
f42806df 3954 if (f != SERVICE_SUCCESS) {
c3fda31d 3955 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
3a111838
MS
3956 break;
3957 }
034c6ed7 3958
3a111838 3959 if (s->pid_file) {
f42806df 3960 bool has_start_post;
f42806df 3961
3a111838
MS
3962 /* Let's try to load the pid file here if we can.
3963 * The PID file might actually be created by a START_POST
3964 * script. In that case don't worry if the loading fails. */
f42806df 3965
5d904a6a 3966 has_start_post = s->exec_command[SERVICE_EXEC_START_POST];
f42806df 3967 r = service_load_pid_file(s, !has_start_post);
3a111838
MS
3968 if (!has_start_post && r < 0) {
3969 r = service_demand_pid_file(s);
b13ddbbc 3970 if (r < 0 || cgroup_good(s) == 0)
c3fda31d 3971 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_PROTOCOL);
3a111838
MS
3972 break;
3973 }
034c6ed7 3974 } else
783e05d6 3975 service_search_main_pid(s);
034c6ed7 3976
3a111838 3977 service_enter_start_post(s);
034c6ed7
LP
3978 break;
3979
3980 case SERVICE_START_POST:
f42806df 3981 if (f != SERVICE_SUCCESS) {
ce359e98 3982 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
2096e009 3983 break;
034c6ed7
LP
3984 }
3985
2096e009 3986 if (s->pid_file) {
f42806df 3987 r = service_load_pid_file(s, true);
2096e009
MS
3988 if (r < 0) {
3989 r = service_demand_pid_file(s);
b13ddbbc 3990 if (r < 0 || cgroup_good(s) == 0)
c35755fb 3991 service_enter_stop(s, SERVICE_FAILURE_PROTOCOL);
2096e009
MS
3992 break;
3993 }
3994 } else
783e05d6 3995 service_search_main_pid(s);
2096e009 3996
f42806df 3997 service_enter_running(s, SERVICE_SUCCESS);
3185a36b 3998 break;
034c6ed7
LP
3999
4000 case SERVICE_RELOAD:
3bd28bf7
LP
4001 case SERVICE_RELOAD_SIGNAL:
4002 case SERVICE_RELOAD_NOTIFY:
7236ce6e
ZJS
4003 if (f == SERVICE_SUCCESS)
4004 if (service_load_pid_file(s, true) < 0)
4005 service_search_main_pid(s);
3185a36b 4006
f42806df 4007 s->reload_result = f;
3bd28bf7 4008
d09df6b9 4009 /* If the last notification we received from the service process indicates
3bd28bf7
LP
4010 * we are still reloading, then don't leave reloading state just yet, just
4011 * transition into SERVICE_RELOAD_NOTIFY, to wait for the READY=1 coming,
4012 * too. */
4013 if (s->notify_state == NOTIFY_RELOADING)
4014 service_set_state(s, SERVICE_RELOAD_NOTIFY);
4015 else
4016 service_enter_running(s, SERVICE_SUCCESS);
034c6ed7
LP
4017 break;
4018
4019 case SERVICE_STOP:
f42806df 4020 service_enter_signal(s, SERVICE_STOP_SIGTERM, f);
034c6ed7
LP
4021 break;
4022
c87700a1 4023 case SERVICE_STOP_WATCHDOG:
034c6ed7
LP
4024 case SERVICE_STOP_SIGTERM:
4025 case SERVICE_STOP_SIGKILL:
4026 if (main_pid_good(s) <= 0)
f42806df 4027 service_enter_stop_post(s, f);
034c6ed7 4028
846a07b5 4029 /* If there is still a service process around, wait until
034c6ed7
LP
4030 * that one quit, too */
4031 break;
4032
4033 case SERVICE_STOP_POST:
c1566ef0
AZ
4034 if (main_pid_good(s) <= 0)
4035 service_enter_signal(s, SERVICE_FINAL_SIGTERM, f);
4036 break;
4037
bf760801 4038 case SERVICE_FINAL_WATCHDOG:
034c6ed7
LP
4039 case SERVICE_FINAL_SIGTERM:
4040 case SERVICE_FINAL_SIGKILL:
bf108e55
LP
4041 if (main_pid_good(s) <= 0)
4042 service_enter_dead(s, f, true);
034c6ed7
LP
4043 break;
4044
4c2f5842
LP
4045 case SERVICE_CLEANING:
4046
4047 if (s->clean_result == SERVICE_SUCCESS)
4048 s->clean_result = f;
4049
4050 service_enter_dead(s, SERVICE_SUCCESS, false);
4051 break;
4052
034c6ed7 4053 default:
04499a70 4054 assert_not_reached();
034c6ed7
LP
4055 }
4056 }
5cdabc8d
LP
4057 } else /* Neither control nor main PID? If so, don't notify about anything */
4058 notify_dbus = false;
c4e2ceae
LP
4059
4060 /* Notify clients about changed exit status */
5cdabc8d
LP
4061 if (notify_dbus)
4062 unit_add_to_dbus_queue(u);
a911bb9a 4063
846a07b5
FB
4064 /* We watch the main/control process otherwise we can't retrieve the unit they
4065 * belong to with cgroupv1. But if they are not our direct child, we won't get a
4066 * SIGCHLD for them. Therefore we need to look for others to watch so we can
4067 * detect when the cgroup becomes empty. Note that the control process is always
4068 * our child so it's pointless to watch all other processes. */
4069 if (!control_pid_good(s))
4070 if (!s->main_pid_known || s->main_pid_alien)
4071 (void) unit_enqueue_rewatch_pids(u);
034c6ed7
LP
4072}
4073
718db961 4074static int service_dispatch_timer(sd_event_source *source, usec_t usec, void *userdata) {
e9fa1bf7 4075 Service *s = ASSERT_PTR(SERVICE(userdata));
034c6ed7 4076
718db961 4077 assert(source == s->timer_event_source);
034c6ed7
LP
4078
4079 switch (s->state) {
4080
31cd5f63 4081 case SERVICE_CONDITION:
034c6ed7
LP
4082 case SERVICE_START_PRE:
4083 case SERVICE_START:
4084 case SERVICE_START_POST:
bf760801
JK
4085 switch (s->timeout_start_failure_mode) {
4086
4087 case SERVICE_TIMEOUT_TERMINATE:
4088 log_unit_warning(UNIT(s), "%s operation timed out. Terminating.", service_state_to_string(s->state));
4089 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_TIMEOUT);
4090 break;
4091
4092 case SERVICE_TIMEOUT_ABORT:
4093 log_unit_warning(UNIT(s), "%s operation timed out. Aborting.", service_state_to_string(s->state));
4094 service_enter_signal(s, SERVICE_STOP_WATCHDOG, SERVICE_FAILURE_TIMEOUT);
4095 break;
4096
4097 case SERVICE_TIMEOUT_KILL:
4098 if (s->kill_context.send_sigkill) {
4099 log_unit_warning(UNIT(s), "%s operation timed out. Killing.", service_state_to_string(s->state));
4100 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_TIMEOUT);
4101 } else {
4102 log_unit_warning(UNIT(s), "%s operation timed out. Skipping SIGKILL.", service_state_to_string(s->state));
4103 service_enter_stop_post(s, SERVICE_FAILURE_TIMEOUT);
4104 }
4105 break;
4106
4107 default:
04499a70 4108 assert_not_reached();
bf760801 4109 }
034c6ed7
LP
4110 break;
4111
36c16a7c
LP
4112 case SERVICE_RUNNING:
4113 log_unit_warning(UNIT(s), "Service reached runtime time limit. Stopping.");
4114 service_enter_stop(s, SERVICE_FAILURE_TIMEOUT);
4115 break;
4116
e2f3b44c 4117 case SERVICE_RELOAD:
3bd28bf7
LP
4118 case SERVICE_RELOAD_SIGNAL:
4119 case SERVICE_RELOAD_NOTIFY:
089b64d5 4120 log_unit_warning(UNIT(s), "Reload operation timed out. Killing reload process.");
e9a4f676 4121 service_kill_control_process(s);
f42806df
LP
4122 s->reload_result = SERVICE_FAILURE_TIMEOUT;
4123 service_enter_running(s, SERVICE_SUCCESS);
e2f3b44c
LP
4124 break;
4125
034c6ed7 4126 case SERVICE_STOP:
bf760801
JK
4127 switch (s->timeout_stop_failure_mode) {
4128
4129 case SERVICE_TIMEOUT_TERMINATE:
4130 log_unit_warning(UNIT(s), "Stopping timed out. Terminating.");
4131 service_enter_signal(s, SERVICE_STOP_SIGTERM, SERVICE_FAILURE_TIMEOUT);
4132 break;
4133
4134 case SERVICE_TIMEOUT_ABORT:
4135 log_unit_warning(UNIT(s), "Stopping timed out. Aborting.");
4136 service_enter_signal(s, SERVICE_STOP_WATCHDOG, SERVICE_FAILURE_TIMEOUT);
4137 break;
4138
4139 case SERVICE_TIMEOUT_KILL:
4140 if (s->kill_context.send_sigkill) {
4141 log_unit_warning(UNIT(s), "Stopping timed out. Killing.");
4142 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_TIMEOUT);
4143 } else {
4144 log_unit_warning(UNIT(s), "Stopping timed out. Skipping SIGKILL.");
4145 service_enter_stop_post(s, SERVICE_FAILURE_TIMEOUT);
4146 }
4147 break;
4148
4149 default:
04499a70 4150 assert_not_reached();
bf760801 4151 }
034c6ed7
LP
4152 break;
4153
c87700a1 4154 case SERVICE_STOP_WATCHDOG:
bf760801
JK
4155 if (s->kill_context.send_sigkill) {
4156 log_unit_warning(UNIT(s), "State 'stop-watchdog' timed out. Killing.");
4157 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_TIMEOUT);
4158 } else {
4159 log_unit_warning(UNIT(s), "State 'stop-watchdog' timed out. Skipping SIGKILL.");
4160 service_enter_stop_post(s, SERVICE_FAILURE_TIMEOUT);
4161 }
db2cb23b
UTL
4162 break;
4163
034c6ed7 4164 case SERVICE_STOP_SIGTERM:
bf760801
JK
4165 if (s->timeout_stop_failure_mode == SERVICE_TIMEOUT_ABORT) {
4166 log_unit_warning(UNIT(s), "State 'stop-sigterm' timed out. Aborting.");
4167 service_enter_signal(s, SERVICE_STOP_WATCHDOG, SERVICE_FAILURE_TIMEOUT);
4168 } else if (s->kill_context.send_sigkill) {
f2341e0a 4169 log_unit_warning(UNIT(s), "State 'stop-sigterm' timed out. Killing.");
f42806df 4170 service_enter_signal(s, SERVICE_STOP_SIGKILL, SERVICE_FAILURE_TIMEOUT);
ba035df2 4171 } else {
f2341e0a 4172 log_unit_warning(UNIT(s), "State 'stop-sigterm' timed out. Skipping SIGKILL.");
f42806df 4173 service_enter_stop_post(s, SERVICE_FAILURE_TIMEOUT);
ba035df2
LP
4174 }
4175
034c6ed7
LP
4176 break;
4177
4178 case SERVICE_STOP_SIGKILL:
35b8ca3a 4179 /* Uh, we sent a SIGKILL and it is still not gone?
034c6ed7
LP
4180 * Must be something we cannot kill, so let's just be
4181 * weirded out and continue */
4182
f2341e0a 4183 log_unit_warning(UNIT(s), "Processes still around after SIGKILL. Ignoring.");
f42806df 4184 service_enter_stop_post(s, SERVICE_FAILURE_TIMEOUT);
034c6ed7
LP
4185 break;
4186
4187 case SERVICE_STOP_POST:
bf760801
JK
4188 switch (s->timeout_stop_failure_mode) {
4189
4190 case SERVICE_TIMEOUT_TERMINATE:
4191 log_unit_warning(UNIT(s), "State 'stop-post' timed out. Terminating.");
4192 service_enter_signal(s, SERVICE_FINAL_SIGTERM, SERVICE_FAILURE_TIMEOUT);
4193 break;
4194
4195 case SERVICE_TIMEOUT_ABORT:
4196 log_unit_warning(UNIT(s), "State 'stop-post' timed out. Aborting.");
4197 service_enter_signal(s, SERVICE_FINAL_WATCHDOG, SERVICE_FAILURE_TIMEOUT);
4198 break;
4199
4200 case SERVICE_TIMEOUT_KILL:
4201 if (s->kill_context.send_sigkill) {
4202 log_unit_warning(UNIT(s), "State 'stop-post' timed out. Killing.");
4203 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_FAILURE_TIMEOUT);
4204 } else {
4205 log_unit_warning(UNIT(s), "State 'stop-post' timed out. Skipping SIGKILL. Entering failed mode.");
4206 service_enter_dead(s, SERVICE_FAILURE_TIMEOUT, false);
4207 }
4208 break;
4209
4210 default:
04499a70 4211 assert_not_reached();
bf760801 4212 }
034c6ed7
LP
4213 break;
4214
bf760801 4215 case SERVICE_FINAL_WATCHDOG:
4819ff03 4216 if (s->kill_context.send_sigkill) {
bf760801 4217 log_unit_warning(UNIT(s), "State 'final-watchdog' timed out. Killing.");
f42806df 4218 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_FAILURE_TIMEOUT);
ba035df2 4219 } else {
bf760801
JK
4220 log_unit_warning(UNIT(s), "State 'final-watchdog' timed out. Skipping SIGKILL. Entering failed mode.");
4221 service_enter_dead(s, SERVICE_FAILURE_TIMEOUT, false);
4222 }
4223 break;
4224
4225 case SERVICE_FINAL_SIGTERM:
4226 if (s->timeout_stop_failure_mode == SERVICE_TIMEOUT_ABORT) {
4227 log_unit_warning(UNIT(s), "State 'final-sigterm' timed out. Aborting.");
4228 service_enter_signal(s, SERVICE_FINAL_WATCHDOG, SERVICE_FAILURE_TIMEOUT);
4229 } else if (s->kill_context.send_sigkill) {
4230 log_unit_warning(UNIT(s), "State 'final-sigterm' timed out. Killing.");
4231 service_enter_signal(s, SERVICE_FINAL_SIGKILL, SERVICE_FAILURE_TIMEOUT);
4232 } else {
4233 log_unit_warning(UNIT(s), "State 'final-sigterm' timed out. Skipping SIGKILL. Entering failed mode.");
f42806df 4234 service_enter_dead(s, SERVICE_FAILURE_TIMEOUT, false);
ba035df2
LP
4235 }
4236
034c6ed7
LP
4237 break;
4238
4239 case SERVICE_FINAL_SIGKILL:
f2341e0a 4240 log_unit_warning(UNIT(s), "Processes still around after final SIGKILL. Entering failed mode.");
f42806df 4241 service_enter_dead(s, SERVICE_FAILURE_TIMEOUT, true);
034c6ed7
LP
4242 break;
4243
4244 case SERVICE_AUTO_RESTART:
5291f26d 4245 if (s->restart_usec > 0)
868f7d36 4246 log_unit_debug(UNIT(s),
be1adc27 4247 "Service restart interval %s expired, scheduling restart.",
5171356e 4248 FORMAT_TIMESPAN(service_restart_usec_next(s), USEC_PER_SEC));
5291f26d 4249 else
868f7d36
ZJS
4250 log_unit_debug(UNIT(s),
4251 "Service has no hold-off time (RestartSec=0), scheduling restart.");
5ce6e7f5 4252
034c6ed7
LP
4253 service_enter_restart(s);
4254 break;
4255
4c2f5842
LP
4256 case SERVICE_CLEANING:
4257 log_unit_warning(UNIT(s), "Cleaning timed out. killing.");
4258
4259 if (s->clean_result == SERVICE_SUCCESS)
4260 s->clean_result = SERVICE_FAILURE_TIMEOUT;
4261
4262 service_enter_signal(s, SERVICE_FINAL_SIGKILL, 0);
4263 break;
4264
034c6ed7 4265 default:
04499a70 4266 assert_not_reached();
034c6ed7 4267 }
718db961
LP
4268
4269 return 0;
4270}
4271
4272static int service_dispatch_watchdog(sd_event_source *source, usec_t usec, void *userdata) {
e9fa1bf7 4273 Service *s = ASSERT_PTR(SERVICE(userdata));
2787d83c 4274 usec_t watchdog_usec;
718db961 4275
718db961
LP
4276 assert(source == s->watchdog_event_source);
4277
2787d83c
M
4278 watchdog_usec = service_get_watchdog_usec(s);
4279
2a12e32e
JK
4280 if (UNIT(s)->manager->service_watchdogs) {
4281 log_unit_error(UNIT(s), "Watchdog timeout (limit %s)!",
5291f26d 4282 FORMAT_TIMESPAN(watchdog_usec, 1));
8bb2d17d 4283
c87700a1 4284 service_enter_signal(s, SERVICE_STOP_WATCHDOG, SERVICE_FAILURE_WATCHDOG);
2a12e32e
JK
4285 } else
4286 log_unit_warning(UNIT(s), "Watchdog disabled! Ignoring watchdog timeout (limit %s)!",
5291f26d 4287 FORMAT_TIMESPAN(watchdog_usec, 1));
842129f5 4288
718db961 4289 return 0;
5cb5a6ff
LP
4290}
4291
3a45fdfc 4292static void service_force_watchdog(Service *s) {
e9fa1bf7
MY
4293 assert(s);
4294
3a45fdfc
MY
4295 if (!UNIT(s)->manager->service_watchdogs)
4296 return;
4297
4298 log_unit_error(UNIT(s), "Watchdog request (last status: %s)!",
4299 s->status_text ?: "<unset>");
4300
4301 service_enter_signal(s, SERVICE_STOP_WATCHDOG, SERVICE_FAILURE_WATCHDOG);
4302}
4303
f8d66947 4304static bool service_notify_message_authorized(Service *s, pid_t pid) {
e3285237 4305 assert(s);
f8d66947 4306 assert(pid_is_valid(pid));
8c47c732 4307
19dff691
MY
4308 NotifyAccess notify_access = service_get_notify_access(s);
4309
4310 if (notify_access == NOTIFY_NONE) {
5734d5d0 4311 /* Warn level only if no notifications are expected */
f8d66947 4312 log_unit_warning(UNIT(s), "Got notification message from PID "PID_FMT", but reception is disabled", pid);
e3285237
LP
4313 return false;
4314 }
4315
c79ab77c
LP
4316 if (notify_access == NOTIFY_MAIN && pid != s->main_pid.pid) {
4317 if (pidref_is_set(&s->main_pid))
5734d5d0 4318 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for main PID "PID_FMT, pid, s->main_pid.pid);
336c6e46 4319 else
5734d5d0 4320 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for main PID which is currently not known", pid);
e3285237
LP
4321
4322 return false;
4323 }
4324
c79ab77c
LP
4325 if (notify_access == NOTIFY_EXEC && pid != s->main_pid.pid && pid != s->control_pid.pid) {
4326 if (pidref_is_set(&s->main_pid) && pidref_is_set(&s->control_pid))
5734d5d0 4327 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for main PID "PID_FMT" and control PID "PID_FMT,
f8d66947 4328 pid, s->main_pid.pid, s->control_pid.pid);
c79ab77c 4329 else if (pidref_is_set(&s->main_pid))
5734d5d0 4330 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for main PID "PID_FMT, pid, s->main_pid.pid);
c79ab77c 4331 else if (pidref_is_set(&s->control_pid))
5734d5d0 4332 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for control PID "PID_FMT, pid, s->control_pid.pid);
6375bd20 4333 else
5734d5d0 4334 log_unit_debug(UNIT(s), "Got notification message from PID "PID_FMT", but reception only permitted for main PID and control PID which are currently not known", pid);
e3285237
LP
4335
4336 return false;
9711848f
LP
4337 }
4338
e3285237
LP
4339 return true;
4340}
4341
db256aab
LP
4342static void service_notify_message(
4343 Unit *u,
4344 const struct ucred *ucred,
fcee2755 4345 char * const *tags,
db256aab
LP
4346 FDSet *fds) {
4347
b7a22068 4348 Service *s = ASSERT_PTR(SERVICE(u));
db256aab 4349 int r;
e3285237 4350
db256aab 4351 assert(ucred);
e3285237 4352
f8d66947 4353 if (!service_notify_message_authorized(s, ucred->pid))
e3285237
LP
4354 return;
4355
f1d34068 4356 if (DEBUG_LOGGING) {
b7a22068 4357 _cleanup_free_ char *cc = strv_join(tags, ", ");
0964cfb0 4358 log_unit_debug(u, "Got notification message from PID "PID_FMT" (%s)", ucred->pid, empty_to_na(cc));
9711848f 4359 }
c952c6ec 4360
b7a22068
MY
4361 usec_t monotonic_usec = USEC_INFINITY;
4362 bool notify_dbus = false;
4363 const char *e;
4364
8c47c732 4365 /* Interpret MAINPID= */
28849dba 4366 e = strv_find_startswith(tags, "MAINPID=");
3bd28bf7 4367 if (e && IN_SET(s->state, SERVICE_START, SERVICE_START_POST, SERVICE_RUNNING, SERVICE_RELOAD, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY)) {
495e75ed 4368 _cleanup_(pidref_done) PidRef new_main_pid = PIDREF_NULL;
db256aab 4369
495e75ed
LP
4370 r = pidref_set_pidstr(&new_main_pid, e);
4371 if (r < 0)
4372 log_unit_warning_errno(u, r, "Failed to parse MAINPID=%s field in notification message, ignoring: %m", e);
4373 else if (!s->main_pid_known || !pidref_equal(&new_main_pid, &s->main_pid)) {
db256aab 4374
495e75ed 4375 r = service_is_suitable_main_pid(s, &new_main_pid, LOG_WARNING);
db256aab 4376 if (r == 0) {
5238e957 4377 /* The new main PID is a bit suspicious, which is OK if the sender is privileged. */
db256aab
LP
4378
4379 if (ucred->uid == 0) {
495e75ed 4380 log_unit_debug(u, "New main PID "PID_FMT" does not belong to service, but we'll accept it as the request to change it came from a privileged process.", new_main_pid.pid);
db256aab
LP
4381 r = 1;
4382 } else
495e75ed 4383 log_unit_debug(u, "New main PID "PID_FMT" does not belong to service, refusing.", new_main_pid.pid);
db256aab
LP
4384 }
4385 if (r > 0) {
495e75ed 4386 (void) service_set_main_pidref(s, &new_main_pid);
cdc2af3e 4387
495e75ed 4388 r = unit_watch_pidref(UNIT(s), &s->main_pid, /* exclusive= */ false);
cdc2af3e 4389 if (r < 0)
495e75ed 4390 log_unit_warning_errno(UNIT(s), r, "Failed to watch new main PID "PID_FMT" for service: %m", s->main_pid.pid);
cdc2af3e 4391
db256aab
LP
4392 notify_dbus = true;
4393 }
8c47c732
LP
4394 }
4395 }
4396
3bd28bf7
LP
4397 /* Parse MONOTONIC_USEC= */
4398 e = strv_find_startswith(tags, "MONOTONIC_USEC=");
4399 if (e) {
4400 r = safe_atou64(e, &monotonic_usec);
4401 if (r < 0)
4402 log_unit_warning_errno(u, r, "Failed to parse MONOTONIC_USEC= field in notification message, ignoring: %s", e);
4403 }
308d72dc 4404
3bd28bf7
LP
4405 /* Interpret READY=/STOPPING=/RELOADING=. STOPPING= wins over the others, and READY= over RELOADING= */
4406 if (strv_contains(tags, "STOPPING=1")) {
4407 s->notify_state = NOTIFY_STOPPING;
308d72dc 4408
3bd28bf7
LP
4409 if (IN_SET(s->state, SERVICE_RUNNING, SERVICE_RELOAD_SIGNAL, SERVICE_RELOAD_NOTIFY))
4410 service_enter_stop_by_notify(s);
308d72dc 4411
3bd28bf7 4412 notify_dbus = true;
308d72dc 4413
3bd28bf7 4414 } else if (strv_contains(tags, "READY=1")) {
308d72dc 4415
3bd28bf7 4416 s->notify_state = NOTIFY_READY;
308d72dc 4417
3bd28bf7
LP
4418 /* Type=notify services inform us about completed initialization with READY=1 */
4419 if (IN_SET(s->type, SERVICE_NOTIFY, SERVICE_NOTIFY_RELOAD) &&
4420 s->state == SERVICE_START)
4421 service_enter_start_post(s);
308d72dc 4422
3bd28bf7
LP
4423 /* Sending READY=1 while we are reloading informs us that the reloading is complete. */
4424 if (s->state == SERVICE_RELOAD_NOTIFY)
4425 service_enter_running(s, SERVICE_SUCCESS);
308d72dc 4426
3bd28bf7
LP
4427 /* Combined RELOADING=1 and READY=1? Then this is indication that the service started and
4428 * immediately finished reloading. */
4429 if (s->state == SERVICE_RELOAD_SIGNAL &&
4430 strv_contains(tags, "RELOADING=1") &&
4431 monotonic_usec != USEC_INFINITY &&
4432 monotonic_usec >= s->reload_begin_usec) {
4433 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
308d72dc 4434
3bd28bf7
LP
4435 /* Propagate a reload explicitly */
4436 r = manager_propagate_reload(UNIT(s)->manager, UNIT(s), JOB_FAIL, &error);
4437 if (r < 0)
4438 log_unit_warning(UNIT(s), "Failed to schedule propagation of reload, ignoring: %s", bus_error_message(&error, r));
308d72dc 4439
3bd28bf7 4440 service_enter_running(s, SERVICE_SUCCESS);
cc2b7b11 4441 }
3bd28bf7
LP
4442
4443 notify_dbus = true;
4444
4445 } else if (strv_contains(tags, "RELOADING=1")) {
4446
4447 s->notify_state = NOTIFY_RELOADING;
4448
4449 /* Sending RELOADING=1 after we send SIGHUP to request a reload will transition
4450 * things to "reload-notify" state, where we'll wait for READY=1 to let us know the
4451 * reload is done. Note that we insist on a timestamp being sent along here, so that
4452 * we know for sure this is a reload cycle initiated *after* we sent the signal */
4453 if (s->state == SERVICE_RELOAD_SIGNAL &&
4454 monotonic_usec != USEC_INFINITY &&
4455 monotonic_usec >= s->reload_begin_usec)
4456 /* Note, we don't call service_enter_reload_by_notify() here, because we
4457 * don't need reload propagation nor do we want to restart the time-out. */
4458 service_set_state(s, SERVICE_RELOAD_NOTIFY);
4459
4460 if (s->state == SERVICE_RUNNING)
4461 service_enter_reload_by_notify(s);
4462
4463 notify_dbus = true;
8c47c732
LP
4464 }
4465
4466 /* Interpret STATUS= */
28849dba 4467 e = strv_find_startswith(tags, "STATUS=");
7f110ff9 4468 if (e) {
28849dba 4469 _cleanup_free_ char *t = NULL;
8c47c732 4470
28849dba 4471 if (!isempty(e)) {
3eac1bca
LP
4472 /* Note that this size limit check is mostly paranoia: since the datagram size we are willing
4473 * to process is already limited to NOTIFY_BUFFER_MAX, this limit here should never be hit. */
4474 if (strlen(e) > STATUS_TEXT_MAX)
4475 log_unit_warning(u, "Status message overly long (%zu > %u), ignoring.", strlen(e), STATUS_TEXT_MAX);
4476 else if (!utf8_is_valid(e))
4477 log_unit_warning(u, "Status message in notification message is not UTF-8 clean, ignoring.");
28849dba 4478 else {
28849dba
LP
4479 t = strdup(e);
4480 if (!t)
4481 log_oom();
3a2776bc 4482 }
28849dba 4483 }
8c47c732 4484
30b5275a 4485 if (!streq_ptr(s->status_text, t)) {
3b319885 4486 free_and_replace(s->status_text, t);
30b5275a 4487 notify_dbus = true;
28849dba 4488 }
8c47c732 4489 }
842129f5 4490
19dff691
MY
4491 /* Interpret NOTIFYACCESS= */
4492 e = strv_find_startswith(tags, "NOTIFYACCESS=");
4493 if (e) {
4494 NotifyAccess notify_access;
4495
4496 notify_access = notify_access_from_string(e);
4497 if (notify_access < 0)
4498 log_unit_warning_errno(u, notify_access,
4499 "Failed to parse NOTIFYACCESS= field value '%s' in notification message, ignoring: %m", e);
4500
4501 /* We don't need to check whether the new access mode is more strict than what is
4502 * already in use, since only the privileged process is allowed to change it
4503 * in the first place. */
4504 if (service_get_notify_access(s) != notify_access) {
4505 service_override_notify_access(s, notify_access);
4506 notify_dbus = true;
4507 }
4508 }
4509
4774e357 4510 /* Interpret ERRNO= */
28849dba 4511 e = strv_find_startswith(tags, "ERRNO=");
4774e357
MAA
4512 if (e) {
4513 int status_errno;
4514
2fa40742
LP
4515 status_errno = parse_errno(e);
4516 if (status_errno < 0)
4517 log_unit_warning_errno(u, status_errno,
5e1ee764 4518 "Failed to parse ERRNO= field value '%s' in notification message: %m", e);
2fa40742
LP
4519 else if (s->status_errno != status_errno) {
4520 s->status_errno = status_errno;
4521 notify_dbus = true;
4774e357
MAA
4522 }
4523 }
4524
a327431b
DB
4525 /* Interpret EXTEND_TIMEOUT= */
4526 e = strv_find_startswith(tags, "EXTEND_TIMEOUT_USEC=");
4527 if (e) {
4528 usec_t extend_timeout_usec;
4529 if (safe_atou64(e, &extend_timeout_usec) < 0)
4530 log_unit_warning(u, "Failed to parse EXTEND_TIMEOUT_USEC=%s", e);
4531 else
4532 service_extend_timeout(s, extend_timeout_usec);
4533 }
4534
6f285378 4535 /* Interpret WATCHDOG= */
99b43caf
JK
4536 e = strv_find_startswith(tags, "WATCHDOG=");
4537 if (e) {
4538 if (streq(e, "1"))
4539 service_reset_watchdog(s);
4540 else if (streq(e, "trigger"))
4541 service_force_watchdog(s);
4542 else
4543 log_unit_warning(u, "Passed WATCHDOG= field is invalid, ignoring.");
4544 }
c4e2ceae 4545
c45d11cb
LP
4546 e = strv_find_startswith(tags, "WATCHDOG_USEC=");
4547 if (e) {
4548 usec_t watchdog_override_usec;
4549 if (safe_atou64(e, &watchdog_override_usec) < 0)
4550 log_unit_warning(u, "Failed to parse WATCHDOG_USEC=%s", e);
4551 else
95d0d8ed 4552 service_override_watchdog_timeout(s, watchdog_override_usec);
c45d11cb
LP
4553 }
4554
e78ee06d
LP
4555 /* Process FD store messages. Either FDSTOREREMOVE=1 for removal, or FDSTORE=1 for addition. In both cases,
4556 * process FDNAME= for picking the file descriptor name to use. Note that FDNAME= is required when removing
4557 * fds, but optional when pushing in new fds, for compatibility reasons. */
d29cc4d6 4558 if (strv_contains(tags, "FDSTOREREMOVE=1")) {
e78ee06d
LP
4559 const char *name;
4560
4561 name = strv_find_startswith(tags, "FDNAME=");
4562 if (!name || !fdname_is_valid(name))
4563 log_unit_warning(u, "FDSTOREREMOVE=1 requested, but no valid file descriptor name passed, ignoring.");
4564 else
4565 service_remove_fd_store(s, name);
4566
d29cc4d6 4567 } else if (strv_contains(tags, "FDSTORE=1")) {
8dd4c05b
LP
4568 const char *name;
4569
4570 name = strv_find_startswith(tags, "FDNAME=");
4571 if (name && !fdname_is_valid(name)) {
4572 log_unit_warning(u, "Passed FDNAME= name is invalid, ignoring.");
4573 name = NULL;
4574 }
4575
cb5a46b8 4576 (void) service_add_fd_store_set(s, fds, name, !strv_contains(tags, "FDPOLL=0"));
8dd4c05b 4577 }
a354329f 4578
c4e2ceae 4579 /* Notify clients about changed status or main pid */
30b5275a
LP
4580 if (notify_dbus)
4581 unit_add_to_dbus_queue(u);
8c47c732
LP
4582}
4583
7a7821c8 4584static int service_get_timeout(Unit *u, usec_t *timeout) {
e9fa1bf7 4585 Service *s = ASSERT_PTR(SERVICE(u));
7a7821c8 4586 uint64_t t;
68db7a3b
ZJS
4587 int r;
4588
e9fa1bf7
MY
4589 assert(timeout);
4590
68db7a3b
ZJS
4591 if (!s->timer_event_source)
4592 return 0;
4593
7a7821c8 4594 r = sd_event_source_get_time(s->timer_event_source, &t);
68db7a3b
ZJS
4595 if (r < 0)
4596 return r;
7a7821c8
LP
4597 if (t == USEC_INFINITY)
4598 return 0;
68db7a3b 4599
7a7821c8 4600 *timeout = t;
68db7a3b
ZJS
4601 return 1;
4602}
4603
f5a9d2ee 4604static usec_t service_get_timeout_start_usec(Unit *u) {
e9fa1bf7 4605 Service *s = ASSERT_PTR(SERVICE(u));
f5a9d2ee 4606 return s->timeout_start_usec;
4607}
4608
e39eb045
LP
4609static bool pick_up_pid_from_bus_name(Service *s) {
4610 assert(s);
4611
4612 /* If the service is running but we have no main PID yet, get it from the owner of the D-Bus name */
4613
c79ab77c 4614 return !pidref_is_set(&s->main_pid) &&
e39eb045
LP
4615 IN_SET(s->state,
4616 SERVICE_START,
4617 SERVICE_START_POST,
4618 SERVICE_RUNNING,
3bd28bf7
LP
4619 SERVICE_RELOAD,
4620 SERVICE_RELOAD_SIGNAL,
4621 SERVICE_RELOAD_NOTIFY);
e39eb045
LP
4622}
4623
4624static int bus_name_pid_lookup_callback(sd_bus_message *reply, void *userdata, sd_bus_error *ret_error) {
e9fa1bf7 4625 Service *s = ASSERT_PTR(SERVICE(userdata));
495e75ed 4626 _cleanup_(pidref_done) PidRef pidref = PIDREF_NULL;
e39eb045 4627 const sd_bus_error *e;
e39eb045 4628 uint32_t pid;
e39eb045
LP
4629 int r;
4630
4631 assert(reply);
e39eb045 4632
e39eb045
LP
4633 s->bus_name_pid_lookup_slot = sd_bus_slot_unref(s->bus_name_pid_lookup_slot);
4634
4635 if (!s->bus_name || !pick_up_pid_from_bus_name(s))
4636 return 1;
4637
4638 e = sd_bus_message_get_error(reply);
4639 if (e) {
4640 r = sd_bus_error_get_errno(e);
4641 log_warning_errno(r, "GetConnectionUnixProcessID() failed: %s", bus_error_message(e, r));
4642 return 1;
4643 }
4644
4645 r = sd_bus_message_read(reply, "u", &pid);
4646 if (r < 0) {
4647 bus_log_parse_error(r);
4648 return 1;
4649 }
4650
495e75ed
LP
4651 r = pidref_set_pid(&pidref, pid);
4652 if (r < 0) {
4653 log_debug_errno(r, "GetConnectionUnixProcessID() returned invalid PID: %m");
e39eb045
LP
4654 return 1;
4655 }
4656
e9fa1bf7 4657 log_unit_debug(UNIT(s), "D-Bus name %s is now owned by process " PID_FMT, s->bus_name, pidref.pid);
e39eb045 4658
495e75ed
LP
4659 (void) service_set_main_pidref(s, &pidref);
4660 (void) unit_watch_pidref(UNIT(s), &s->main_pid, /* exclusive= */ false);
e39eb045
LP
4661 return 1;
4662}
4663
fc67a943 4664static void service_bus_name_owner_change(Unit *u, const char *new_owner) {
e9fa1bf7 4665 Service *s = ASSERT_PTR(SERVICE(u));
718db961 4666 int r;
05e343b7 4667
fc67a943
LP
4668 if (new_owner)
4669 log_unit_debug(u, "D-Bus name %s now owned by %s", s->bus_name, new_owner);
05e343b7 4670 else
fc67a943 4671 log_unit_debug(u, "D-Bus name %s now not owned by anyone.", s->bus_name);
05e343b7 4672
d7a0f1f4 4673 s->bus_name_good = new_owner;
05e343b7 4674
d8ccf5fd
DM
4675 /* Track the current owner, so we can reconstruct changes after a daemon reload */
4676 r = free_and_strdup(&s->bus_name_owner, new_owner);
4677 if (r < 0) {
4678 log_unit_error_errno(u, r, "Unable to set new bus name owner %s: %m", new_owner);
4679 return;
4680 }
4681
05e343b7
LP
4682 if (s->type == SERVICE_DBUS) {
4683
4684 /* service_enter_running() will figure out what to
4685 * do */
4686 if (s->state == SERVICE_RUNNING)
f42806df 4687 service_enter_running(s, SERVICE_SUCCESS);
05e343b7
LP
4688 else if (s->state == SERVICE_START && new_owner)
4689 service_enter_start_post(s);
4690
e39eb045 4691 } else if (new_owner && pick_up_pid_from_bus_name(s)) {
05e343b7 4692
718db961 4693 /* Try to acquire PID from bus service */
05e343b7 4694
e39eb045
LP
4695 s->bus_name_pid_lookup_slot = sd_bus_slot_unref(s->bus_name_pid_lookup_slot);
4696
4697 r = sd_bus_call_method_async(
4698 u->manager->api_bus,
4699 &s->bus_name_pid_lookup_slot,
4700 "org.freedesktop.DBus",
4701 "/org/freedesktop/DBus",
4702 "org.freedesktop.DBus",
4703 "GetConnectionUnixProcessID",
4704 bus_name_pid_lookup_callback,
4705 s,
4706 "s",
4707 s->bus_name);
4708 if (r < 0)
4709 log_debug_errno(r, "Failed to request owner PID of service name, ignoring: %m");
7400b9d2 4710 }
05e343b7
LP
4711}
4712
3fabebf4
LP
4713int service_set_socket_fd(
4714 Service *s,
4715 int fd,
4716 Socket *sock,
4717 SocketPeer *peer,
4718 bool selinux_context_net) {
4719
4720 _cleanup_free_ char *peer_text = NULL;
79a98c60 4721 int r;
57020a3a 4722
4f2d528d
LP
4723 assert(s);
4724 assert(fd >= 0);
4725
7f2fbbff
LP
4726 /* This is called by the socket code when instantiating a new service for a stream socket and the socket needs
4727 * to be configured. We take ownership of the passed fd on success. */
4f2d528d 4728
1124fe6f 4729 if (UNIT(s)->load_state != UNIT_LOADED)
4f2d528d
LP
4730 return -EINVAL;
4731
4732 if (s->socket_fd >= 0)
4733 return -EBUSY;
4734
3fabebf4
LP
4735 assert(!s->socket_peer);
4736
b9c1883a 4737 if (!IN_SET(s->state, SERVICE_DEAD, SERVICE_DEAD_RESOURCES_PINNED))
4f2d528d
LP
4738 return -EAGAIN;
4739
3fabebf4 4740 if (getpeername_pretty(fd, true, &peer_text) >= 0) {
79a98c60
LP
4741
4742 if (UNIT(s)->description) {
c2b2df60 4743 _cleanup_free_ char *a = NULL;
79a98c60 4744
3fabebf4 4745 a = strjoin(UNIT(s)->description, " (", peer_text, ")");
79a98c60
LP
4746 if (!a)
4747 return -ENOMEM;
4748
4749 r = unit_set_description(UNIT(s), a);
4750 } else
3fabebf4 4751 r = unit_set_description(UNIT(s), peer_text);
79a98c60
LP
4752 if (r < 0)
4753 return r;
4754 }
4755
eef85c4a 4756 r = unit_add_two_dependencies(UNIT(sock), UNIT_BEFORE, UNIT_TRIGGERS, UNIT(s), false, UNIT_DEPENDENCY_IMPLICIT);
7f2fbbff
LP
4757 if (r < 0)
4758 return r;
4759
4f2d528d 4760 s->socket_fd = fd;
3fabebf4 4761 s->socket_peer = socket_peer_ref(peer);
16115b0a 4762 s->socket_fd_selinux_context_net = selinux_context_net;
6cf6bbc2 4763
7f7d01ed 4764 unit_ref_set(&s->accept_socket, UNIT(s), UNIT(sock));
7f2fbbff 4765 return 0;
4f2d528d
LP
4766}
4767
fdf20a31 4768static void service_reset_failed(Unit *u) {
e9fa1bf7 4769 Service *s = ASSERT_PTR(SERVICE(u));
5632e374 4770
fdf20a31 4771 if (s->state == SERVICE_FAILED)
b9c1883a 4772 service_set_state(s, service_determine_dead_state(s));
5632e374 4773
f42806df
LP
4774 s->result = SERVICE_SUCCESS;
4775 s->reload_result = SERVICE_SUCCESS;
4c2f5842 4776 s->clean_result = SERVICE_SUCCESS;
7a0019d3
LP
4777 s->n_restarts = 0;
4778 s->flush_n_restarts = false;
5632e374
LP
4779}
4780
3e22239d
YW
4781static PidRef* service_main_pid(Unit *u, bool *ret_is_alien) {
4782 Service *s = ASSERT_PTR(SERVICE(u));
4783
4784 if (ret_is_alien)
4785 *ret_is_alien = s->main_pid_alien;
4786
4787 return &s->main_pid;
291d565a
LP
4788}
4789
37eb258e
LP
4790static PidRef* service_control_pid(Unit *u) {
4791 return &ASSERT_PTR(SERVICE(u))->control_pid;
291d565a
LP
4792}
4793
bb2c7685 4794static bool service_needs_console(Unit *u) {
e9fa1bf7 4795 Service *s = ASSERT_PTR(SERVICE(u));
bb2c7685
LP
4796
4797 /* We provide our own implementation of this here, instead of relying of the generic implementation
4798 * unit_needs_console() provides, since we want to return false if we are in SERVICE_EXITED state. */
4799
4800 if (!exec_context_may_touch_console(&s->exec_context))
4801 return false;
4802
4803 return IN_SET(s->state,
31cd5f63 4804 SERVICE_CONDITION,
bb2c7685
LP
4805 SERVICE_START_PRE,
4806 SERVICE_START,
4807 SERVICE_START_POST,
4808 SERVICE_RUNNING,
4809 SERVICE_RELOAD,
3bd28bf7
LP
4810 SERVICE_RELOAD_SIGNAL,
4811 SERVICE_RELOAD_NOTIFY,
bb2c7685 4812 SERVICE_STOP,
c87700a1 4813 SERVICE_STOP_WATCHDOG,
bb2c7685
LP
4814 SERVICE_STOP_SIGTERM,
4815 SERVICE_STOP_SIGKILL,
4816 SERVICE_STOP_POST,
bf760801 4817 SERVICE_FINAL_WATCHDOG,
bb2c7685
LP
4818 SERVICE_FINAL_SIGTERM,
4819 SERVICE_FINAL_SIGKILL);
4820}
4821
7af67e9a 4822static int service_exit_status(Unit *u) {
e9fa1bf7 4823 Service *s = ASSERT_PTR(SERVICE(u));
7af67e9a
LP
4824
4825 if (s->main_exec_status.pid <= 0 ||
4826 !dual_timestamp_is_set(&s->main_exec_status.exit_timestamp))
4827 return -ENODATA;
4828
4829 if (s->main_exec_status.code != CLD_EXITED)
4830 return -EBADE;
4831
4832 return s->main_exec_status.status;
4833}
4834
5e1669ff 4835static const char* service_status_text(Unit *u) {
e9fa1bf7 4836 Service *s = ASSERT_PTR(SERVICE(u));
5e1669ff
ZJS
4837
4838 return s->status_text;
4839}
4840
4c2f5842 4841static int service_clean(Unit *u, ExecCleanMask mask) {
e9fa1bf7 4842 Service *s = ASSERT_PTR(SERVICE(u));
4c2f5842 4843 _cleanup_strv_free_ char **l = NULL;
4fb8f1e8 4844 bool may_clean_fdstore = false;
4c2f5842
LP
4845 int r;
4846
4c2f5842
LP
4847 assert(mask != 0);
4848
4fb8f1e8 4849 if (!IN_SET(s->state, SERVICE_DEAD, SERVICE_DEAD_RESOURCES_PINNED))
4c2f5842
LP
4850 return -EBUSY;
4851
4fb8f1e8 4852 /* Determine if there's anything we could potentially clean */
4c2f5842
LP
4853 r = exec_context_get_clean_directories(&s->exec_context, u->manager->prefix, mask, &l);
4854 if (r < 0)
4855 return r;
4856
4fb8f1e8
LP
4857 if (mask & EXEC_CLEAN_FDSTORE)
4858 may_clean_fdstore = s->n_fd_store > 0 || s->n_fd_store_max > 0;
4859
4860 if (strv_isempty(l) && !may_clean_fdstore)
4861 return -EUNATCH; /* Nothing to potentially clean */
4862
4863 /* Let's clean the stuff we can clean quickly */
4864 if (may_clean_fdstore)
4865 service_release_fd_store(s);
4866
4867 /* If we are done, leave quickly */
4868 if (strv_isempty(l)) {
4869 if (s->state == SERVICE_DEAD_RESOURCES_PINNED && !s->fd_store)
4870 service_set_state(s, SERVICE_DEAD);
4871 return 0;
4872 }
4c2f5842 4873
4fb8f1e8 4874 /* We need to clean disk stuff. This is slow, hence do it out of process, and change state */
4c2f5842
LP
4875 service_unwatch_control_pid(s);
4876 s->clean_result = SERVICE_SUCCESS;
4877 s->control_command = NULL;
4878 s->control_command_id = _SERVICE_EXEC_COMMAND_INVALID;
4879
e5d6dcce 4880 r = service_arm_timer(s, /* relative= */ true, s->exec_context.timeout_clean_usec);
10691b9e
LP
4881 if (r < 0) {
4882 log_unit_warning_errno(u, r, "Failed to install timer: %m");
4c2f5842 4883 goto fail;
10691b9e 4884 }
4c2f5842 4885
4775b55d 4886 r = unit_fork_and_watch_rm_rf(u, l, &s->control_pid);
10691b9e
LP
4887 if (r < 0) {
4888 log_unit_warning_errno(u, r, "Failed to spawn cleaning task: %m");
c79ab77c 4889 goto fail;
10691b9e 4890 }
4c2f5842 4891
c79ab77c 4892 service_set_state(s, SERVICE_CLEANING);
4c2f5842
LP
4893 return 0;
4894
4895fail:
4c2f5842 4896 s->clean_result = SERVICE_FAILURE_RESOURCES;
5dcadb4c 4897 s->timer_event_source = sd_event_source_disable_unref(s->timer_event_source);
4c2f5842
LP
4898 return r;
4899}
4900
4901static int service_can_clean(Unit *u, ExecCleanMask *ret) {
e9fa1bf7 4902 Service *s = ASSERT_PTR(SERVICE(u));
4fb8f1e8
LP
4903 ExecCleanMask mask = 0;
4904 int r;
4c2f5842 4905
4fb8f1e8
LP
4906 assert(ret);
4907
4908 r = exec_context_get_clean_mask(&s->exec_context, &mask);
4909 if (r < 0)
4910 return r;
4c2f5842 4911
4fb8f1e8
LP
4912 if (s->n_fd_store_max > 0)
4913 mask |= EXEC_CLEAN_FDSTORE;
4914
4915 *ret = mask;
4916 return 0;
4c2f5842
LP
4917}
4918
e9fa1bf7
MY
4919static const char* service_finished_job(Unit *u, JobType t, JobResult result) {
4920 Service *s = ASSERT_PTR(SERVICE(u));
4921
04d232d8
ZJS
4922 if (t == JOB_START &&
4923 result == JOB_DONE &&
e9fa1bf7 4924 s->type == SERVICE_ONESHOT)
04d232d8 4925 return "Finished %s.";
eda0cbf0
ZJS
4926
4927 /* Fall back to generic */
4928 return NULL;
4929}
4930
705578c3 4931static int service_can_start(Unit *u) {
e9fa1bf7 4932 Service *s = ASSERT_PTR(SERVICE(u));
9727f242
DDM
4933 int r;
4934
9727f242
DDM
4935 /* Make sure we don't enter a busy loop of some kind. */
4936 r = unit_test_start_limit(u);
4937 if (r < 0) {
4938 service_enter_dead(s, SERVICE_FAILURE_START_LIMIT_HIT, false);
4939 return r;
4940 }
4941
705578c3 4942 return 1;
9727f242
DDM
4943}
4944
c25fac9a 4945static void service_release_resources(Unit *u) {
e9fa1bf7 4946 Service *s = ASSERT_PTR(SERVICE(u));
c25fac9a
LP
4947
4948 /* Invoked by the unit state engine, whenever it realizes that unit is dead and there's no job
4949 * anymore for it, and it hence is a good idea to release resources */
4950
4951 /* Don't release resources if this is a transitionary failed/dead state
4952 * (i.e. SERVICE_DEAD_BEFORE_AUTO_RESTART/SERVICE_FAILED_BEFORE_AUTO_RESTART), insist on a permanent
4953 * failure state. */
b9c1883a 4954 if (!IN_SET(s->state, SERVICE_DEAD, SERVICE_FAILED, SERVICE_DEAD_RESOURCES_PINNED))
c25fac9a
LP
4955 return;
4956
4957 log_unit_debug(u, "Releasing resources...");
4958
81a1d6d6 4959 service_release_socket_fd(s);
c25fac9a 4960 service_release_stdio_fd(s);
b9c1883a
LP
4961
4962 if (s->fd_store_preserve_mode != EXEC_PRESERVE_YES)
4963 service_release_fd_store(s);
4964
4965 if (s->state == SERVICE_DEAD_RESOURCES_PINNED && !s->fd_store)
4966 service_set_state(s, SERVICE_DEAD);
c25fac9a
LP
4967}
4968
8017ed7e
LP
4969int service_determine_exec_selinux_label(Service *s, char **ret) {
4970 int r;
4971
4972 assert(s);
4973 assert(ret);
4974
4975 if (!mac_selinux_use())
4976 return -ENODATA;
4977
4978 /* Returns the SELinux label used for execution of the main service binary */
4979
045d9424
ZJS
4980 if (s->exec_context.selinux_context)
4981 /* Prefer the explicitly configured label if there is one */
4982 return strdup_to(ret, s->exec_context.selinux_context);
8017ed7e
LP
4983
4984 if (s->exec_context.root_image ||
4985 s->exec_context.n_extension_images > 0 ||
4986 !strv_isempty(s->exec_context.extension_directories)) /* We cannot chase paths through images */
4987 return log_unit_debug_errno(UNIT(s), SYNTHETIC_ERRNO(ENODATA), "Service with RootImage=, ExtensionImages= or ExtensionDirectories= set, cannot determine socket SELinux label before activation, ignoring.");
4988
4989 ExecCommand *c = s->exec_command[SERVICE_EXEC_START];
4990 if (!c)
4991 return -ENODATA;
4992
4993 _cleanup_free_ char *path = NULL;
4994 r = chase(c->path, s->exec_context.root_directory, CHASE_PREFIX_ROOT, &path, NULL);
4995 if (r < 0) {
4996 log_unit_debug_errno(UNIT(s), r, "Failed to resolve service binary '%s', ignoring.", c->path);
4997 return -ENODATA;
4998 }
4999
5000 r = mac_selinux_get_create_label_from_exe(path, ret);
5001 if (ERRNO_IS_NEG_NOT_SUPPORTED(r)) {
5002 log_unit_debug_errno(UNIT(s), r, "Reading SELinux label off binary '%s' is not supported, ignoring.", path);
5003 return -ENODATA;
5004 }
5005 if (ERRNO_IS_NEG_PRIVILEGE(r)) {
5006 log_unit_debug_errno(UNIT(s), r, "Can't read SELinux label off binary '%s', due to privileges, ignoring.", path);
5007 return -ENODATA;
5008 }
5009 if (r < 0)
5010 return log_unit_debug_errno(UNIT(s), r, "Failed to read SELinux label off binary '%s': %m", path);
5011
5012 return 0;
5013}
5014
94f04347 5015static const char* const service_restart_table[_SERVICE_RESTART_MAX] = {
48d83e33
ZJS
5016 [SERVICE_RESTART_NO] = "no",
5017 [SERVICE_RESTART_ON_SUCCESS] = "on-success",
5018 [SERVICE_RESTART_ON_FAILURE] = "on-failure",
6cfe2fde 5019 [SERVICE_RESTART_ON_ABNORMAL] = "on-abnormal",
dc99a976 5020 [SERVICE_RESTART_ON_WATCHDOG] = "on-watchdog",
48d83e33
ZJS
5021 [SERVICE_RESTART_ON_ABORT] = "on-abort",
5022 [SERVICE_RESTART_ALWAYS] = "always",
94f04347
LP
5023};
5024
5025DEFINE_STRING_TABLE_LOOKUP(service_restart, ServiceRestart);
5026
e568fea9
RP
5027static const char* const service_restart_mode_table[_SERVICE_RESTART_MODE_MAX] = {
5028 [SERVICE_RESTART_MODE_NORMAL] = "normal",
5029 [SERVICE_RESTART_MODE_DIRECT] = "direct",
5030};
5031
5032DEFINE_STRING_TABLE_LOOKUP(service_restart_mode, ServiceRestartMode);
5033
94f04347 5034static const char* const service_type_table[_SERVICE_TYPE_MAX] = {
3bd28bf7
LP
5035 [SERVICE_SIMPLE] = "simple",
5036 [SERVICE_FORKING] = "forking",
5037 [SERVICE_ONESHOT] = "oneshot",
5038 [SERVICE_DBUS] = "dbus",
5039 [SERVICE_NOTIFY] = "notify",
5040 [SERVICE_NOTIFY_RELOAD] = "notify-reload",
5041 [SERVICE_IDLE] = "idle",
5042 [SERVICE_EXEC] = "exec",
94f04347
LP
5043};
5044
5045DEFINE_STRING_TABLE_LOOKUP(service_type, ServiceType);
5046
596e4470 5047static const char* const service_exit_type_table[_SERVICE_EXIT_TYPE_MAX] = {
fb138166 5048 [SERVICE_EXIT_MAIN] = "main",
596e4470
HC
5049 [SERVICE_EXIT_CGROUP] = "cgroup",
5050};
5051
5052DEFINE_STRING_TABLE_LOOKUP(service_exit_type, ServiceExitType);
5053
e537352b 5054static const char* const service_exec_command_table[_SERVICE_EXEC_COMMAND_MAX] = {
48d83e33
ZJS
5055 [SERVICE_EXEC_CONDITION] = "ExecCondition",
5056 [SERVICE_EXEC_START_PRE] = "ExecStartPre",
5057 [SERVICE_EXEC_START] = "ExecStart",
94f04347 5058 [SERVICE_EXEC_START_POST] = "ExecStartPost",
48d83e33
ZJS
5059 [SERVICE_EXEC_RELOAD] = "ExecReload",
5060 [SERVICE_EXEC_STOP] = "ExecStop",
5061 [SERVICE_EXEC_STOP_POST] = "ExecStopPost",
94f04347
LP
5062};
5063
5064DEFINE_STRING_TABLE_LOOKUP(service_exec_command, ServiceExecCommand);
5065
b3d59367 5066static const char* const service_exec_ex_command_table[_SERVICE_EXEC_COMMAND_MAX] = {
48d83e33
ZJS
5067 [SERVICE_EXEC_CONDITION] = "ExecConditionEx",
5068 [SERVICE_EXEC_START_PRE] = "ExecStartPreEx",
5069 [SERVICE_EXEC_START] = "ExecStartEx",
b3d59367 5070 [SERVICE_EXEC_START_POST] = "ExecStartPostEx",
48d83e33
ZJS
5071 [SERVICE_EXEC_RELOAD] = "ExecReloadEx",
5072 [SERVICE_EXEC_STOP] = "ExecStopEx",
5073 [SERVICE_EXEC_STOP_POST] = "ExecStopPostEx",
b3d59367
AZ
5074};
5075
5076DEFINE_STRING_TABLE_LOOKUP(service_exec_ex_command, ServiceExecCommand);
5077
308d72dc 5078static const char* const notify_state_table[_NOTIFY_STATE_MAX] = {
48d83e33
ZJS
5079 [NOTIFY_UNKNOWN] = "unknown",
5080 [NOTIFY_READY] = "ready",
308d72dc 5081 [NOTIFY_RELOADING] = "reloading",
48d83e33 5082 [NOTIFY_STOPPING] = "stopping",
308d72dc
LP
5083};
5084
5085DEFINE_STRING_TABLE_LOOKUP(notify_state, NotifyState);
5086
f42806df 5087static const char* const service_result_table[_SERVICE_RESULT_MAX] = {
48d83e33
ZJS
5088 [SERVICE_SUCCESS] = "success",
5089 [SERVICE_FAILURE_RESOURCES] = "resources",
5090 [SERVICE_FAILURE_PROTOCOL] = "protocol",
5091 [SERVICE_FAILURE_TIMEOUT] = "timeout",
5092 [SERVICE_FAILURE_EXIT_CODE] = "exit-code",
5093 [SERVICE_FAILURE_SIGNAL] = "signal",
5094 [SERVICE_FAILURE_CORE_DUMP] = "core-dump",
5095 [SERVICE_FAILURE_WATCHDOG] = "watchdog",
07299350 5096 [SERVICE_FAILURE_START_LIMIT_HIT] = "start-limit-hit",
48d83e33
ZJS
5097 [SERVICE_FAILURE_OOM_KILL] = "oom-kill",
5098 [SERVICE_SKIP_CONDITION] = "exec-condition",
f42806df
LP
5099};
5100
5101DEFINE_STRING_TABLE_LOOKUP(service_result, ServiceResult);
5102
bf760801
JK
5103static const char* const service_timeout_failure_mode_table[_SERVICE_TIMEOUT_FAILURE_MODE_MAX] = {
5104 [SERVICE_TIMEOUT_TERMINATE] = "terminate",
48d83e33
ZJS
5105 [SERVICE_TIMEOUT_ABORT] = "abort",
5106 [SERVICE_TIMEOUT_KILL] = "kill",
bf760801
JK
5107};
5108
5109DEFINE_STRING_TABLE_LOOKUP(service_timeout_failure_mode, ServiceTimeoutFailureMode);
5110
87f0e418 5111const UnitVTable service_vtable = {
7d17cfbc 5112 .object_size = sizeof(Service),
718db961
LP
5113 .exec_context_offset = offsetof(Service, exec_context),
5114 .cgroup_context_offset = offsetof(Service, cgroup_context),
5115 .kill_context_offset = offsetof(Service, kill_context),
613b411c 5116 .exec_runtime_offset = offsetof(Service, exec_runtime),
9cc54544 5117 .cgroup_runtime_offset = offsetof(Service, cgroup_runtime),
3ef63c31 5118
f975e971
LP
5119 .sections =
5120 "Unit\0"
5121 "Service\0"
5122 "Install\0",
4ad49000 5123 .private_section = "Service",
71645aca 5124
1d9cc876
LP
5125 .can_transient = true,
5126 .can_delegate = true,
c80a9a33 5127 .can_fail = true,
4d824a4e 5128 .can_set_managed_oom = true,
1d9cc876 5129
034c6ed7
LP
5130 .init = service_init,
5131 .done = service_done,
a16e1123 5132 .load = service_load,
a354329f 5133 .release_resources = service_release_resources,
a16e1123
LP
5134
5135 .coldplug = service_coldplug,
034c6ed7 5136
5cb5a6ff
LP
5137 .dump = service_dump,
5138
5139 .start = service_start,
5140 .stop = service_stop,
5141 .reload = service_reload,
5142
034c6ed7
LP
5143 .can_reload = service_can_reload,
5144
4c2f5842
LP
5145 .clean = service_clean,
5146 .can_clean = service_can_clean,
8a0867d6 5147
16b6af6a 5148 .freezer_action = unit_cgroup_freezer_action,
d9e45bc3 5149
a16e1123
LP
5150 .serialize = service_serialize,
5151 .deserialize_item = service_deserialize_item,
5152
5cb5a6ff 5153 .active_state = service_active_state,
10a94420 5154 .sub_state_to_string = service_sub_state_to_string,
5cb5a6ff 5155
deb4e708
MK
5156 .will_restart = service_will_restart,
5157
f2f725e5 5158 .may_gc = service_may_gc,
701cc384 5159
034c6ed7 5160 .sigchld_event = service_sigchld_event,
2c4104f0 5161
fdf20a31 5162 .reset_failed = service_reset_failed,
5632e374 5163
4ad49000 5164 .notify_cgroup_empty = service_notify_cgroup_empty_event,
afcfaa69 5165 .notify_cgroup_oom = service_notify_cgroup_oom_event,
8c47c732 5166 .notify_message = service_notify_message,
8e274523 5167
291d565a
LP
5168 .main_pid = service_main_pid,
5169 .control_pid = service_control_pid,
5170
05e343b7 5171 .bus_name_owner_change = service_bus_name_owner_change,
05e343b7 5172
74c964d3
LP
5173 .bus_set_property = bus_service_set_property,
5174 .bus_commit_properties = bus_service_commit_properties,
4139c1b2 5175
68db7a3b 5176 .get_timeout = service_get_timeout,
f5a9d2ee 5177 .get_timeout_start_usec = service_get_timeout_start_usec,
bb2c7685 5178 .needs_console = service_needs_console,
7af67e9a 5179 .exit_status = service_exit_status,
5e1669ff 5180 .status_text = service_status_text,
718db961 5181
c6918296 5182 .status_message_formats = {
c6918296 5183 .finished_start_job = {
c6918296 5184 [JOB_FAILED] = "Failed to start %s.",
c6918296
MS
5185 },
5186 .finished_stop_job = {
5187 [JOB_DONE] = "Stopped %s.",
5188 [JOB_FAILED] = "Stopped (with error) %s.",
c6918296 5189 },
eda0cbf0 5190 .finished_job = service_finished_job,
c6918296 5191 },
9727f242 5192
705578c3 5193 .can_start = service_can_start,
d52b8493 5194
b2bfd121
LP
5195 .notify_plymouth = true,
5196
d52b8493
LP
5197 .audit_start_message_type = AUDIT_SERVICE_START,
5198 .audit_stop_message_type = AUDIT_SERVICE_STOP,
5cb5a6ff 5199};