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db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
a7334b09 2
60918275 3#include <errno.h>
400f1a33
LP
4#include <fcntl.h>
5#include <linux/kd.h>
e46b13c8 6#include <sys/epoll.h>
400f1a33 7#include <sys/inotify.h>
e1414003 8#include <sys/ioctl.h>
400f1a33 9#include <sys/reboot.h>
8742514c 10#include <sys/timerfd.h>
400f1a33
LP
11#include <sys/wait.h>
12#include <unistd.h>
830f6caa 13
349cc4a5 14#if HAVE_AUDIT
4927fcae 15#include <libaudit.h>
830f6caa 16#endif
60918275 17
718db961 18#include "sd-daemon.h"
718db961 19#include "sd-messages.h"
3536f49e 20#include "sd-path.h"
81527be1 21
57b7a260 22#include "all-units.h"
d68c645b 23#include "alloc-util.h"
400f1a33
LP
24#include "audit-fd.h"
25#include "boot-timestamps.h"
26#include "bus-common-errors.h"
27#include "bus-error.h"
28#include "bus-kernel.h"
29#include "bus-util.h"
00d9ef85 30#include "clean-ipc.h"
af6b0ecc 31#include "clock-util.h"
19d22d43 32#include "core-varlink.h"
786d19fd 33#include "creds-util.h"
400f1a33
LP
34#include "dbus-job.h"
35#include "dbus-manager.h"
36#include "dbus-unit.h"
37#include "dbus.h"
0e7f5ad9 38#include "def.h"
d063a527 39#include "dirent-util.h"
400f1a33 40#include "env-util.h"
4f5dd394 41#include "escape.h"
89711996 42#include "exec-util.h"
d3070fbd 43#include "execute.h"
400f1a33 44#include "exit-status.h"
3ffd4af2 45#include "fd-util.h"
0d39fa9c 46#include "fileio.h"
f4f15635 47#include "fs-util.h"
385093b7 48#include "generator-setup.h"
60918275 49#include "hashmap.h"
5cfa33e0 50#include "install.h"
19d22d43 51#include "io-util.h"
d3070fbd 52#include "label.h"
d904afc7 53#include "load-fragment.h"
786d19fd 54#include "locale-setup.h"
16354eff 55#include "log.h"
400f1a33 56#include "macro.h"
3ffd4af2 57#include "manager.h"
2a341bb9 58#include "manager-dump.h"
a01ba4b2 59#include "manager-serialize.h"
0a970718 60#include "memory-util.h"
49e942b2 61#include "mkdir.h"
6bedfcbb 62#include "parse-util.h"
400f1a33
LP
63#include "path-lookup.h"
64#include "path-util.h"
65#include "process-util.h"
ea430986 66#include "ratelimit.h"
31ce987c 67#include "rlimit-util.h"
c6878637 68#include "rm-rf.h"
45ae2f72 69#include "selinux-util.h"
400f1a33 70#include "signal-util.h"
57b7a260 71#include "socket-util.h"
514f4ef5 72#include "special.h"
8fcde012 73#include "stat-util.h"
8b43440b 74#include "string-table.h"
07630cea 75#include "string-util.h"
400f1a33 76#include "strv.h"
dd1db3c2 77#include "strxcpyx.h"
6123dfaa 78#include "sysctl-util.h"
a6ecbf83 79#include "syslog-util.h"
400f1a33
LP
80#include "terminal-util.h"
81#include "time-util.h"
82#include "transaction.h"
affb60b1 83#include "umask-util.h"
400f1a33 84#include "unit-name.h"
00d9ef85 85#include "user-util.h"
5dc4c17f 86#include "virt.h"
e96d6be7 87#include "watchdog.h"
60918275 88
a47806fa 89#define NOTIFY_RCVBUF_SIZE (8*1024*1024)
d8fdc620 90#define CGROUPS_AGENT_RCVBUF_SIZE (8*1024*1024)
a47806fa 91
03b717a3 92/* Initial delay and the interval for printing status messages about running jobs */
1b4154a8
ZJS
93#define JOBS_IN_PROGRESS_WAIT_USEC (2*USEC_PER_SEC)
94#define JOBS_IN_PROGRESS_QUIET_WAIT_USEC (25*USEC_PER_SEC)
fd08a840 95#define JOBS_IN_PROGRESS_PERIOD_USEC (USEC_PER_SEC / 3)
03b717a3
MS
96#define JOBS_IN_PROGRESS_PERIOD_DIVISOR 3
97
5238e957 98/* If there are more than 1K bus messages queue across our API and direct buses, then let's not add more on top until
e0a08581
LP
99 * the queue gets more empty. */
100#define MANAGER_BUS_BUSY_THRESHOLD 1024LU
101
102/* How many units and jobs to process of the bus queue before returning to the event loop. */
103#define MANAGER_BUS_MESSAGE_BUDGET 100U
104
718db961 105static int manager_dispatch_notify_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
d8fdc620 106static int manager_dispatch_cgroups_agent_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
718db961
LP
107static int manager_dispatch_signal_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
108static int manager_dispatch_time_change_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
109static int manager_dispatch_idle_pipe_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
00d9ef85 110static int manager_dispatch_user_lookup_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata);
718db961 111static int manager_dispatch_jobs_in_progress(sd_event_source *source, usec_t usec, void *userdata);
752b5905 112static int manager_dispatch_run_queue(sd_event_source *source, void *userdata);
575b300b 113static int manager_dispatch_sigchld(sd_event_source *source, void *userdata);
bbf5fd8e 114static int manager_dispatch_timezone_change(sd_event_source *source, const struct inotify_event *event, void *userdata);
64691d20 115static int manager_run_environment_generators(Manager *m);
e801700e 116static int manager_run_generators(Manager *m);
06a4eb07 117static void manager_vacuum(Manager *m);
718db961 118
1b4154a8 119static usec_t manager_watch_jobs_next_time(Manager *m) {
3889fc6f
ZJS
120 usec_t timeout;
121
122 if (MANAGER_IS_USER(m))
123 /* Let the user manager without a timeout show status quickly, so the system manager can make
124 * use of it, if it wants to. */
125 timeout = JOBS_IN_PROGRESS_WAIT_USEC * 2 / 3;
126 else if (show_status_on(m->show_status))
127 /* When status is on, just use the usual timeout. */
128 timeout = JOBS_IN_PROGRESS_WAIT_USEC;
129 else
130 timeout = JOBS_IN_PROGRESS_QUIET_WAIT_USEC;
131
132 return usec_add(now(CLOCK_MONOTONIC), timeout);
1b4154a8
ZJS
133}
134
2ae56591 135static void manager_watch_jobs_in_progress(Manager *m) {
e5723c89 136 usec_t next;
cfa9677b 137 int r;
e5723c89 138
718db961 139 assert(m);
03b717a3 140
42bf1ae1
FB
141 /* We do not want to show the cylon animation if the user
142 * needs to confirm service executions otherwise confirmation
143 * messages will be screwed by the cylon animation. */
b0eb2944 144 if (!manager_is_confirm_spawn_disabled(m))
42bf1ae1
FB
145 return;
146
718db961 147 if (m->jobs_in_progress_event_source)
2ae56591 148 return;
03b717a3 149
1b4154a8 150 next = manager_watch_jobs_next_time(m);
cfa9677b 151 r = sd_event_add_time(
6a0f1f6d
LP
152 m->event,
153 &m->jobs_in_progress_event_source,
154 CLOCK_MONOTONIC,
155 next, 0,
156 manager_dispatch_jobs_in_progress, m);
cfa9677b
MM
157 if (r < 0)
158 return;
7dfbe2e3
TG
159
160 (void) sd_event_source_set_description(m->jobs_in_progress_event_source, "manager-jobs-in-progress");
03b717a3
MS
161}
162
fbd0b64f 163#define CYLON_BUFFER_EXTRA (2*STRLEN(ANSI_RED) + STRLEN(ANSI_HIGHLIGHT_RED) + 2*STRLEN(ANSI_NORMAL))
03b717a3 164
03b717a3
MS
165static void draw_cylon(char buffer[], size_t buflen, unsigned width, unsigned pos) {
166 char *p = buffer;
167
168 assert(buflen >= CYLON_BUFFER_EXTRA + width + 1);
169 assert(pos <= width+1); /* 0 or width+1 mean that the center light is behind the corner */
170
171 if (pos > 1) {
6282c859
MS
172 if (pos > 2)
173 p = mempset(p, ' ', pos-2);
64c3610b
FB
174 if (log_get_show_color())
175 p = stpcpy(p, ANSI_RED);
03b717a3
MS
176 *p++ = '*';
177 }
178
179 if (pos > 0 && pos <= width) {
64c3610b
FB
180 if (log_get_show_color())
181 p = stpcpy(p, ANSI_HIGHLIGHT_RED);
03b717a3
MS
182 *p++ = '*';
183 }
184
64c3610b
FB
185 if (log_get_show_color())
186 p = stpcpy(p, ANSI_NORMAL);
03b717a3
MS
187
188 if (pos < width) {
64c3610b
FB
189 if (log_get_show_color())
190 p = stpcpy(p, ANSI_RED);
03b717a3 191 *p++ = '*';
6282c859
MS
192 if (pos < width-1)
193 p = mempset(p, ' ', width-1-pos);
64c3610b
FB
194 if (log_get_show_color())
195 strcpy(p, ANSI_NORMAL);
03b717a3 196 }
03b717a3
MS
197}
198
1addc46c 199static void manager_flip_auto_status(Manager *m, bool enable, const char *reason) {
f755e3b7
LP
200 assert(m);
201
cb8ccb22
ZJS
202 if (enable) {
203 if (m->show_status == SHOW_STATUS_AUTO)
7365a296 204 manager_set_show_status(m, SHOW_STATUS_TEMPORARY, reason);
cb8ccb22
ZJS
205 } else {
206 if (m->show_status == SHOW_STATUS_TEMPORARY)
7365a296 207 manager_set_show_status(m, SHOW_STATUS_AUTO, reason);
cb8ccb22
ZJS
208 }
209}
210
03b717a3 211static void manager_print_jobs_in_progress(Manager *m) {
03b717a3 212 Job *j;
03b717a3
MS
213 unsigned counter = 0, print_nr;
214 char cylon[6 + CYLON_BUFFER_EXTRA + 1];
215 unsigned cylon_pos;
8bb310c3 216 uint64_t x;
03b717a3 217
718db961 218 assert(m);
9c3349e2 219 assert(m->n_running_jobs > 0);
718db961 220
7365a296 221 manager_flip_auto_status(m, true, "delay");
d450b6f2 222
03b717a3
MS
223 print_nr = (m->jobs_in_progress_iteration / JOBS_IN_PROGRESS_PERIOD_DIVISOR) % m->n_running_jobs;
224
90e74a66 225 HASHMAP_FOREACH(j, m->jobs)
03b717a3
MS
226 if (j->state == JOB_RUNNING && counter++ == print_nr)
227 break;
228
e970a72e
MS
229 /* m->n_running_jobs must be consistent with the contents of m->jobs,
230 * so the above loop must have succeeded in finding j. */
231 assert(counter == print_nr + 1);
51d122af 232 assert(j);
5a82a91a 233
03b717a3
MS
234 cylon_pos = m->jobs_in_progress_iteration % 14;
235 if (cylon_pos >= 8)
236 cylon_pos = 14 - cylon_pos;
237 draw_cylon(cylon, sizeof(cylon), 6, cylon_pos);
238
8bb310c3
ZJS
239 m->jobs_in_progress_iteration++;
240
3889fc6f 241 char job_of_n[STRLEN("( of ) ") + DECIMAL_STR_MAX(unsigned)*2] = "";
5291f26d 242 if (m->n_running_jobs > 1)
3889fc6f 243 xsprintf(job_of_n, "(%u of %u) ", counter, m->n_running_jobs);
03b717a3 244
5291f26d 245 bool have_timeout = job_get_timeout(j, &x) > 0;
8bb310c3 246
04d232d8
ZJS
247 /* We want to use enough information for the user to identify previous lines talking about the same
248 * unit, but keep the message as short as possible. So if 'Starting foo.service' or 'Starting
3889fc6f 249 * foo.service - Description' were used, 'foo.service' is enough here. On the other hand, if we used
04d232d8
ZJS
250 * 'Starting Description' before, then we shall also use 'Description' here. So we pass NULL as the
251 * second argument to unit_status_string(). */
252 const char *ident = unit_status_string(j->unit, NULL);
253
3889fc6f
ZJS
254 const char *time = FORMAT_TIMESPAN(now(CLOCK_MONOTONIC) - j->begin_usec, 1*USEC_PER_SEC);
255 const char *limit = have_timeout ? FORMAT_TIMESPAN(x - j->begin_usec, 1*USEC_PER_SEC) : "no limit";
256
257 if (m->status_unit_format == STATUS_UNIT_FORMAT_DESCRIPTION)
258 /* When using 'Description', we effectively don't have enough space to show the nested status
259 * without ellipsization, so let's not even try. */
260 manager_status_printf(m, STATUS_TYPE_EPHEMERAL, cylon,
261 "%sA %s job is running for %s (%s / %s)",
262 job_of_n,
263 job_type_to_string(j->type),
264 ident,
265 time, limit);
266 else {
267 const char *status_text = unit_status_text(j->unit);
268
269 manager_status_printf(m, STATUS_TYPE_EPHEMERAL, cylon,
270 "%sJob %s/%s running (%s / %s)%s%s",
271 job_of_n,
272 ident,
273 job_type_to_string(j->type),
274 time, limit,
275 status_text ? ": " : "",
276 strempty(status_text));
277 }
278
279 sd_notifyf(false,
280 "STATUS=%sUser job %s/%s running (%s / %s)...",
281 job_of_n,
282 ident,
283 job_type_to_string(j->type),
284 time, limit);
285 m->status_ready = false;
03b717a3
MS
286}
287
e46b13c8 288static int have_ask_password(void) {
c2b2df60 289 _cleanup_closedir_ DIR *dir = NULL;
8fb3f009 290 struct dirent *de;
e46b13c8
ZJS
291
292 dir = opendir("/run/systemd/ask-password");
293 if (!dir) {
294 if (errno == ENOENT)
295 return false;
296 else
297 return -errno;
298 }
299
8fb3f009 300 FOREACH_DIRENT_ALL(de, dir, return -errno) {
e46b13c8
ZJS
301 if (startswith(de->d_name, "ask."))
302 return true;
303 }
8fb3f009 304 return false;
e46b13c8
ZJS
305}
306
307static int manager_dispatch_ask_password_fd(sd_event_source *source,
308 int fd, uint32_t revents, void *userdata) {
309 Manager *m = userdata;
310
311 assert(m);
312
665dfe93 313 (void) flush_fd(fd);
e46b13c8
ZJS
314
315 m->have_ask_password = have_ask_password();
316 if (m->have_ask_password < 0)
317 /* Log error but continue. Negative have_ask_password
318 * is treated as unknown status. */
c33b3297 319 log_error_errno(m->have_ask_password, "Failed to list /run/systemd/ask-password: %m");
e46b13c8
ZJS
320
321 return 0;
322}
323
324static void manager_close_ask_password(Manager *m) {
325 assert(m);
326
5dcadb4c 327 m->ask_password_event_source = sd_event_source_disable_unref(m->ask_password_event_source);
90990e28 328 m->ask_password_inotify_fd = safe_close(m->ask_password_inotify_fd);
e46b13c8
ZJS
329 m->have_ask_password = -EINVAL;
330}
331
332static int manager_check_ask_password(Manager *m) {
333 int r;
334
335 assert(m);
336
337 if (!m->ask_password_event_source) {
338 assert(m->ask_password_inotify_fd < 0);
339
17e4b070 340 (void) mkdir_p_label("/run/systemd/ask-password", 0755);
e46b13c8
ZJS
341
342 m->ask_password_inotify_fd = inotify_init1(IN_NONBLOCK|IN_CLOEXEC);
4a62c710 343 if (m->ask_password_inotify_fd < 0)
330b8fb3 344 return log_error_errno(errno, "Failed to create inotify object: %m");
e46b13c8 345
27c3112d
FB
346 r = inotify_add_watch_and_warn(m->ask_password_inotify_fd,
347 "/run/systemd/ask-password",
348 IN_CREATE|IN_DELETE|IN_MOVE);
349 if (r < 0) {
e46b13c8 350 manager_close_ask_password(m);
27c3112d 351 return r;
e46b13c8
ZJS
352 }
353
354 r = sd_event_add_io(m->event, &m->ask_password_event_source,
355 m->ask_password_inotify_fd, EPOLLIN,
356 manager_dispatch_ask_password_fd, m);
357 if (r < 0) {
df3d3bdf 358 log_error_errno(r, "Failed to add event source for /run/systemd/ask-password: %m");
e46b13c8 359 manager_close_ask_password(m);
df3d3bdf 360 return r;
e46b13c8
ZJS
361 }
362
7dfbe2e3
TG
363 (void) sd_event_source_set_description(m->ask_password_event_source, "manager-ask-password");
364
e46b13c8
ZJS
365 /* Queries might have been added meanwhile... */
366 manager_dispatch_ask_password_fd(m->ask_password_event_source,
367 m->ask_password_inotify_fd, EPOLLIN, m);
368 }
369
370 return m->have_ask_password;
371}
372
31a7eb86 373static int manager_watch_idle_pipe(Manager *m) {
31a7eb86
ZJS
374 int r;
375
718db961
LP
376 assert(m);
377
378 if (m->idle_pipe_event_source)
31a7eb86
ZJS
379 return 0;
380
381 if (m->idle_pipe[2] < 0)
382 return 0;
383
151b9b96 384 r = sd_event_add_io(m->event, &m->idle_pipe_event_source, m->idle_pipe[2], EPOLLIN, manager_dispatch_idle_pipe_fd, m);
23bbb0de
MS
385 if (r < 0)
386 return log_error_errno(r, "Failed to watch idle pipe: %m");
31a7eb86 387
7dfbe2e3
TG
388 (void) sd_event_source_set_description(m->idle_pipe_event_source, "manager-idle-pipe");
389
31a7eb86 390 return 0;
31a7eb86
ZJS
391}
392
718db961
LP
393static void manager_close_idle_pipe(Manager *m) {
394 assert(m);
31a7eb86 395
5dcadb4c 396 m->idle_pipe_event_source = sd_event_source_disable_unref(m->idle_pipe_event_source);
cd72bd8a 397
3d94f76c
LP
398 safe_close_pair(m->idle_pipe);
399 safe_close_pair(m->idle_pipe + 2);
31a7eb86
ZJS
400}
401
8742514c 402static int manager_setup_time_change(Manager *m) {
718db961 403 int r;
b92bea5d 404
718db961 405 assert(m);
8742514c 406
638cece4 407 if (MANAGER_IS_TEST_RUN(m))
0d8c31ff
ZJS
408 return 0;
409
5dcadb4c 410 m->time_change_event_source = sd_event_source_disable_unref(m->time_change_event_source);
7feedd18
LP
411 m->time_change_fd = safe_close(m->time_change_fd);
412
4f811d27 413 m->time_change_fd = time_change_fd();
4a62c710 414 if (m->time_change_fd < 0)
4f811d27 415 return log_error_errno(m->time_change_fd, "Failed to create timer change timer fd: %m");
8742514c 416
151b9b96 417 r = sd_event_add_io(m->event, &m->time_change_event_source, m->time_change_fd, EPOLLIN, manager_dispatch_time_change_fd, m);
23bbb0de
MS
418 if (r < 0)
419 return log_error_errno(r, "Failed to create time change event source: %m");
8742514c 420
a5cc7e5a
LP
421 /* Schedule this slightly earlier than the .timer event sources */
422 r = sd_event_source_set_priority(m->time_change_event_source, SD_EVENT_PRIORITY_NORMAL-1);
423 if (r < 0)
424 return log_error_errno(r, "Failed to set priority of time change event sources: %m");
425
7dfbe2e3
TG
426 (void) sd_event_source_set_description(m->time_change_event_source, "manager-time-change");
427
8742514c
LP
428 log_debug("Set up TFD_TIMER_CANCEL_ON_SET timerfd.");
429
430 return 0;
431}
432
bbf5fd8e
LP
433static int manager_read_timezone_stat(Manager *m) {
434 struct stat st;
435 bool changed;
436
437 assert(m);
438
439 /* Read the current stat() data of /etc/localtime so that we detect changes */
440 if (lstat("/etc/localtime", &st) < 0) {
441 log_debug_errno(errno, "Failed to stat /etc/localtime, ignoring: %m");
442 changed = m->etc_localtime_accessible;
443 m->etc_localtime_accessible = false;
444 } else {
445 usec_t k;
446
447 k = timespec_load(&st.st_mtim);
448 changed = !m->etc_localtime_accessible || k != m->etc_localtime_mtime;
449
450 m->etc_localtime_mtime = k;
451 m->etc_localtime_accessible = true;
452 }
453
454 return changed;
455}
456
457static int manager_setup_timezone_change(Manager *m) {
a5cc7e5a 458 _cleanup_(sd_event_source_unrefp) sd_event_source *new_event = NULL;
bbf5fd8e
LP
459 int r;
460
461 assert(m);
462
638cece4 463 if (MANAGER_IS_TEST_RUN(m))
bbf5fd8e
LP
464 return 0;
465
466 /* We watch /etc/localtime for three events: change of the link count (which might mean removal from /etc even
467 * though another link might be kept), renames, and file close operations after writing. Note we don't bother
468 * with IN_DELETE_SELF, as that would just report when the inode is removed entirely, i.e. after the link count
469 * went to zero and all fds to it are closed.
470 *
471 * Note that we never follow symlinks here. This is a simplification, but should cover almost all cases
472 * correctly.
473 *
474 * Note that we create the new event source first here, before releasing the old one. This should optimize
475 * behaviour as this way sd-event can reuse the old watch in case the inode didn't change. */
476
477 r = sd_event_add_inotify(m->event, &new_event, "/etc/localtime",
478 IN_ATTRIB|IN_MOVE_SELF|IN_CLOSE_WRITE|IN_DONT_FOLLOW, manager_dispatch_timezone_change, m);
0cb21d8c
LP
479 if (r == -ENOENT) {
480 /* If the file doesn't exist yet, subscribe to /etc instead, and wait until it is created either by
481 * O_CREATE or by rename() */
482
483 log_debug_errno(r, "/etc/localtime doesn't exist yet, watching /etc instead.");
bbf5fd8e
LP
484 r = sd_event_add_inotify(m->event, &new_event, "/etc",
485 IN_CREATE|IN_MOVED_TO|IN_ONLYDIR, manager_dispatch_timezone_change, m);
0cb21d8c 486 }
bbf5fd8e
LP
487 if (r < 0)
488 return log_error_errno(r, "Failed to create timezone change event source: %m");
489
a5cc7e5a
LP
490 /* Schedule this slightly earlier than the .timer event sources */
491 r = sd_event_source_set_priority(new_event, SD_EVENT_PRIORITY_NORMAL-1);
492 if (r < 0)
493 return log_error_errno(r, "Failed to set priority of timezone change event sources: %m");
494
bbf5fd8e 495 sd_event_source_unref(m->timezone_change_event_source);
a5cc7e5a 496 m->timezone_change_event_source = TAKE_PTR(new_event);
bbf5fd8e
LP
497
498 return 0;
499}
500
80876c20 501static int enable_special_signals(Manager *m) {
718db961 502 _cleanup_close_ int fd = -1;
80876c20
LP
503
504 assert(m);
505
638cece4 506 if (MANAGER_IS_TEST_RUN(m))
37453b3a
EV
507 return 0;
508
a41b539e 509 /* Enable that we get SIGINT on control-alt-del. In containers
c9999773
LP
510 * this will fail with EPERM (older) or EINVAL (newer), so
511 * ignore that. */
4c701096 512 if (reboot(RB_DISABLE_CAD) < 0 && !IN_SET(errno, EPERM, EINVAL))
56f64d95 513 log_warning_errno(errno, "Failed to enable ctrl-alt-del handling: %m");
80876c20 514
a41b539e
LP
515 fd = open_terminal("/dev/tty0", O_RDWR|O_NOCTTY|O_CLOEXEC);
516 if (fd < 0) {
517 /* Support systems without virtual console */
518 if (fd != -ENOENT)
56f64d95 519 log_warning_errno(errno, "Failed to open /dev/tty0: %m");
a41b539e 520 } else {
80876c20
LP
521 /* Enable that we get SIGWINCH on kbrequest */
522 if (ioctl(fd, KDSIGACCEPT, SIGWINCH) < 0)
56f64d95 523 log_warning_errno(errno, "Failed to enable kbrequest handling: %m");
80876c20
LP
524 }
525
526 return 0;
527}
528
8750ac02
ZJS
529#define RTSIG_IF_AVAILABLE(signum) (signum <= SIGRTMAX ? signum : -1)
530
ce578209 531static int manager_setup_signals(Manager *m) {
b92bea5d
ZJS
532 struct sigaction sa = {
533 .sa_handler = SIG_DFL,
534 .sa_flags = SA_NOCLDSTOP|SA_RESTART,
535 };
718db961
LP
536 sigset_t mask;
537 int r;
60918275 538
ce578209
LP
539 assert(m);
540
57c0c30e
LP
541 assert_se(sigaction(SIGCHLD, &sa, NULL) == 0);
542
4dffec14
LP
543 /* We make liberal use of realtime signals here. On
544 * Linux/glibc we have 30 of them (with the exception of Linux
545 * on hppa, see below), between SIGRTMIN+0 ... SIGRTMIN+30
546 * (aka SIGRTMAX). */
7d793605 547
4dffec14 548 assert_se(sigemptyset(&mask) == 0);
7d793605
LP
549 sigset_add_many(&mask,
550 SIGCHLD, /* Child died */
551 SIGTERM, /* Reexecute daemon */
552 SIGHUP, /* Reload configuration */
54d04cd1 553 SIGUSR1, /* systemd: reconnect to D-Bus */
7d793605
LP
554 SIGUSR2, /* systemd: dump status */
555 SIGINT, /* Kernel sends us this on control-alt-del */
556 SIGWINCH, /* Kernel sends us this on kbrequest (alt-arrowup) */
557 SIGPWR, /* Some kernel drivers and upsd send us this on power failure */
4dffec14 558
7d793605 559 SIGRTMIN+0, /* systemd: start default.target */
0003d1ab 560 SIGRTMIN+1, /* systemd: isolate rescue.target */
7d793605
LP
561 SIGRTMIN+2, /* systemd: isolate emergency.target */
562 SIGRTMIN+3, /* systemd: start halt.target */
563 SIGRTMIN+4, /* systemd: start poweroff.target */
564 SIGRTMIN+5, /* systemd: start reboot.target */
0003d1ab 565 SIGRTMIN+6, /* systemd: start kexec.target */
4dffec14
LP
566
567 /* ... space for more special targets ... */
568
0003d1ab
LP
569 SIGRTMIN+13, /* systemd: Immediate halt */
570 SIGRTMIN+14, /* systemd: Immediate poweroff */
571 SIGRTMIN+15, /* systemd: Immediate reboot */
572 SIGRTMIN+16, /* systemd: Immediate kexec */
4dffec14
LP
573
574 /* ... space for more immediate system state changes ... */
575
0658666b
LP
576 SIGRTMIN+20, /* systemd: enable status messages */
577 SIGRTMIN+21, /* systemd: disable status messages */
253ee27a
LP
578 SIGRTMIN+22, /* systemd: set log level to LOG_DEBUG */
579 SIGRTMIN+23, /* systemd: set log level to LOG_INFO */
600b704e 580 SIGRTMIN+24, /* systemd: Immediate exit (--user only) */
463aef23 581 SIGRTMIN+25, /* systemd: reexecute manager */
4dffec14 582
8750ac02
ZJS
583 /* Apparently Linux on hppa had fewer RT signals until v3.18,
584 * SIGRTMAX was SIGRTMIN+25, and then SIGRTMIN was lowered,
585 * see commit v3.17-7614-g1f25df2eff.
586 *
587 * We cannot unconditionally make use of those signals here,
588 * so let's use a runtime check. Since these commands are
589 * accessible by different means and only really a safety
590 * net, the missing functionality on hppa shouldn't matter.
591 */
592
593 RTSIG_IF_AVAILABLE(SIGRTMIN+26), /* systemd: set log target to journal-or-kmsg */
594 RTSIG_IF_AVAILABLE(SIGRTMIN+27), /* systemd: set log target to console */
595 RTSIG_IF_AVAILABLE(SIGRTMIN+28), /* systemd: set log target to kmsg */
596 RTSIG_IF_AVAILABLE(SIGRTMIN+29), /* systemd: set log target to syslog-or-kmsg (obsolete) */
4dffec14
LP
597
598 /* ... one free signal here SIGRTMIN+30 ... */
7d793605 599 -1);
ce578209
LP
600 assert_se(sigprocmask(SIG_SETMASK, &mask, NULL) == 0);
601
718db961
LP
602 m->signal_fd = signalfd(-1, &mask, SFD_NONBLOCK|SFD_CLOEXEC);
603 if (m->signal_fd < 0)
ce578209
LP
604 return -errno;
605
151b9b96 606 r = sd_event_add_io(m->event, &m->signal_event_source, m->signal_fd, EPOLLIN, manager_dispatch_signal_fd, m);
718db961
LP
607 if (r < 0)
608 return r;
ce578209 609
7dfbe2e3
TG
610 (void) sd_event_source_set_description(m->signal_event_source, "manager-signal");
611
d8fdc620
LP
612 /* Process signals a bit earlier than the rest of things, but later than notify_fd processing, so that the
613 * notify processing can still figure out to which process/service a message belongs, before we reap the
614 * process. Also, process this before handling cgroup notifications, so that we always collect child exit
615 * status information before detecting that there's no process in a cgroup. */
616 r = sd_event_source_set_priority(m->signal_event_source, SD_EVENT_PRIORITY_NORMAL-6);
29083707
LP
617 if (r < 0)
618 return r;
619
463d0d15 620 if (MANAGER_IS_SYSTEM(m))
80876c20 621 return enable_special_signals(m);
e1414003 622
ce578209
LP
623 return 0;
624}
625
1ad6e8b3 626static char** sanitize_environment(char **l) {
f069efb4 627
47cf8ff2 628 /* Let's remove some environment variables that we need ourselves to communicate with our clients */
f069efb4 629 strv_env_unset_many(
1ad6e8b3 630 l,
8047ac8f
LP
631 "CACHE_DIRECTORY",
632 "CONFIGURATION_DIRECTORY",
bb0c0d6f 633 "CREDENTIALS_DIRECTORY",
47cf8ff2
LP
634 "EXIT_CODE",
635 "EXIT_STATUS",
636 "INVOCATION_ID",
637 "JOURNAL_STREAM",
638 "LISTEN_FDNAMES",
639 "LISTEN_FDS",
640 "LISTEN_PID",
8047ac8f 641 "LOGS_DIRECTORY",
f069efb4
LP
642 "MAINPID",
643 "MANAGERPID",
47cf8ff2 644 "NOTIFY_SOCKET",
dcf3c3c3 645 "PIDFILE",
47cf8ff2
LP
646 "REMOTE_ADDR",
647 "REMOTE_PORT",
8047ac8f 648 "RUNTIME_DIRECTORY",
47cf8ff2 649 "SERVICE_RESULT",
8047ac8f 650 "STATE_DIRECTORY",
f069efb4
LP
651 "WATCHDOG_PID",
652 "WATCHDOG_USEC",
653 NULL);
47cf8ff2
LP
654
655 /* Let's order the environment alphabetically, just to make it pretty */
305757d8 656 return strv_sort(l);
f069efb4
LP
657}
658
79a224c4 659int manager_default_environment(Manager *m) {
db11487d
ZJS
660 int r;
661
71ecc858
LP
662 assert(m);
663
1ad6e8b3
LP
664 m->transient_environment = strv_free(m->transient_environment);
665
463d0d15 666 if (MANAGER_IS_SYSTEM(m)) {
e21fea24
KS
667 /* The system manager always starts with a clean
668 * environment for its children. It does not import
71cb7d30 669 * the kernel's or the parents' exported variables.
e21fea24 670 *
71cb7d30 671 * The initial passed environment is untouched to keep
e21fea24
KS
672 * /proc/self/environ valid; it is used for tagging
673 * the init process inside containers. */
1ad6e8b3 674 m->transient_environment = strv_new("PATH=" DEFAULT_PATH);
db11487d
ZJS
675 if (!m->transient_environment)
676 return log_oom();
e21fea24
KS
677
678 /* Import locale variables LC_*= from configuration */
1ad6e8b3 679 (void) locale_setup(&m->transient_environment);
db11487d 680 } else {
aaf057c4 681 /* The user manager passes its own environment along to its children, except for $PATH. */
1ad6e8b3 682 m->transient_environment = strv_copy(environ);
db11487d
ZJS
683 if (!m->transient_environment)
684 return log_oom();
685
aaf057c4 686 r = strv_env_replace_strdup(&m->transient_environment, "PATH=" DEFAULT_USER_PATH);
db11487d
ZJS
687 if (r < 0)
688 return log_oom();
db11487d 689 }
8b55b8c4 690
1ad6e8b3 691 sanitize_environment(m->transient_environment);
9d5a3757 692
e21fea24 693 return 0;
71ecc858
LP
694}
695
3536f49e
YW
696static int manager_setup_prefix(Manager *m) {
697 struct table_entry {
698 uint64_t type;
699 const char *suffix;
700 };
701
72fd1768 702 static const struct table_entry paths_system[_EXEC_DIRECTORY_TYPE_MAX] = {
9978e631
ZJS
703 [EXEC_DIRECTORY_RUNTIME] = { SD_PATH_SYSTEM_RUNTIME, NULL },
704 [EXEC_DIRECTORY_STATE] = { SD_PATH_SYSTEM_STATE_PRIVATE, NULL },
705 [EXEC_DIRECTORY_CACHE] = { SD_PATH_SYSTEM_STATE_CACHE, NULL },
706 [EXEC_DIRECTORY_LOGS] = { SD_PATH_SYSTEM_STATE_LOGS, NULL },
3536f49e
YW
707 [EXEC_DIRECTORY_CONFIGURATION] = { SD_PATH_SYSTEM_CONFIGURATION, NULL },
708 };
709
72fd1768 710 static const struct table_entry paths_user[_EXEC_DIRECTORY_TYPE_MAX] = {
9978e631
ZJS
711 [EXEC_DIRECTORY_RUNTIME] = { SD_PATH_USER_RUNTIME, NULL },
712 [EXEC_DIRECTORY_STATE] = { SD_PATH_USER_CONFIGURATION, NULL },
713 [EXEC_DIRECTORY_CACHE] = { SD_PATH_USER_STATE_CACHE, NULL },
714 [EXEC_DIRECTORY_LOGS] = { SD_PATH_USER_CONFIGURATION, "log" },
715 [EXEC_DIRECTORY_CONFIGURATION] = { SD_PATH_USER_CONFIGURATION, NULL },
3536f49e
YW
716 };
717
3536f49e
YW
718 assert(m);
719
24b45970
ZJS
720 const struct table_entry *p = MANAGER_IS_SYSTEM(m) ? paths_system : paths_user;
721 int r;
3536f49e 722
24b45970 723 for (ExecDirectoryType i = 0; i < _EXEC_DIRECTORY_TYPE_MAX; i++) {
51327bcc 724 r = sd_path_lookup(p[i].type, p[i].suffix, &m->prefix[i]);
3536f49e 725 if (r < 0)
998df7ce
ZJS
726 return log_warning_errno(r, "Failed to lookup %s path: %m",
727 exec_directory_type_to_string(i));
3536f49e
YW
728 }
729
730 return 0;
731}
732
e8630e69
ZJS
733static void manager_free_unit_name_maps(Manager *m) {
734 m->unit_id_map = hashmap_free(m->unit_id_map);
735 m->unit_name_map = hashmap_free(m->unit_name_map);
3fb2326f 736 m->unit_path_cache = set_free(m->unit_path_cache);
c2911d48 737 m->unit_cache_timestamp_hash = 0;
e8630e69
ZJS
738}
739
279d81dd
LP
740static int manager_setup_run_queue(Manager *m) {
741 int r;
742
743 assert(m);
744 assert(!m->run_queue_event_source);
745
746 r = sd_event_add_defer(m->event, &m->run_queue_event_source, manager_dispatch_run_queue, m);
747 if (r < 0)
748 return r;
749
750 r = sd_event_source_set_priority(m->run_queue_event_source, SD_EVENT_PRIORITY_IDLE);
751 if (r < 0)
752 return r;
753
754 r = sd_event_source_set_enabled(m->run_queue_event_source, SD_EVENT_OFF);
755 if (r < 0)
756 return r;
757
758 (void) sd_event_source_set_description(m->run_queue_event_source, "manager-run-queue");
759
760 return 0;
761}
762
575b300b
LP
763static int manager_setup_sigchld_event_source(Manager *m) {
764 int r;
765
766 assert(m);
767 assert(!m->sigchld_event_source);
768
769 r = sd_event_add_defer(m->event, &m->sigchld_event_source, manager_dispatch_sigchld, m);
770 if (r < 0)
771 return r;
772
773 r = sd_event_source_set_priority(m->sigchld_event_source, SD_EVENT_PRIORITY_NORMAL-7);
774 if (r < 0)
775 return r;
776
777 r = sd_event_source_set_enabled(m->sigchld_event_source, SD_EVENT_OFF);
778 if (r < 0)
779 return r;
780
781 (void) sd_event_source_set_description(m->sigchld_event_source, "manager-sigchld");
782
783 return 0;
784}
785
638cece4 786int manager_new(UnitFileScope scope, ManagerTestRunFlags test_run_flags, Manager **_m) {
c70cac54 787 _cleanup_(manager_freep) Manager *m = NULL;
bb0c0d6f 788 const char *e;
e3dd987c 789 int r;
8e274523
LP
790
791 assert(_m);
463d0d15 792 assert(IN_SET(scope, UNIT_FILE_SYSTEM, UNIT_FILE_USER));
ce578209 793
3ad228ce 794 m = new(Manager, 1);
915b3753 795 if (!m)
8e274523 796 return -ENOMEM;
60918275 797
3ad228ce
LP
798 *m = (Manager) {
799 .unit_file_scope = scope,
800 .objective = _MANAGER_OBJECTIVE_INVALID,
801
36cf4507
ZJS
802 .status_unit_format = STATUS_UNIT_FORMAT_DEFAULT,
803
3ad228ce
LP
804 .default_timer_accuracy_usec = USEC_PER_MINUTE,
805 .default_memory_accounting = MEMORY_ACCOUNTING_DEFAULT,
806 .default_tasks_accounting = true,
3a0f06c4 807 .default_tasks_max = TASKS_MAX_UNSET,
3ad228ce
LP
808 .default_timeout_start_usec = DEFAULT_TIMEOUT_USEC,
809 .default_timeout_stop_usec = DEFAULT_TIMEOUT_USEC,
810 .default_restart_usec = DEFAULT_RESTART_USEC,
811
812 .original_log_level = -1,
813 .original_log_target = _LOG_TARGET_INVALID,
814
986935cf
FB
815 .watchdog_overridden[WATCHDOG_RUNTIME] = USEC_INFINITY,
816 .watchdog_overridden[WATCHDOG_REBOOT] = USEC_INFINITY,
817 .watchdog_overridden[WATCHDOG_KEXEC] = USEC_INFINITY,
818
44a41954
FB
819 .show_status_overridden = _SHOW_STATUS_INVALID,
820
3ad228ce
LP
821 .notify_fd = -1,
822 .cgroups_agent_fd = -1,
823 .signal_fd = -1,
824 .time_change_fd = -1,
825 .user_lookup_fds = { -1, -1 },
826 .private_listen_fd = -1,
827 .dev_autofs_fd = -1,
828 .cgroup_inotify_fd = -1,
829 .pin_cgroupfs_fd = -1,
830 .ask_password_inotify_fd = -1,
831 .idle_pipe = { -1, -1, -1, -1},
832
833 /* start as id #1, so that we can leave #0 around as "null-like" value */
834 .current_job_id = 1,
835
836 .have_ask_password = -EINVAL, /* we don't know */
837 .first_boot = -1,
838 .test_run_flags = test_run_flags,
afcfaa69
LP
839
840 .default_oom_policy = OOM_STOP,
3ad228ce 841 };
80876c20 842
349cc4a5 843#if ENABLE_EFI
463d0d15 844 if (MANAGER_IS_SYSTEM(m) && detect_container() <= 0)
9f9f0342
LP
845 boot_timestamps(m->timestamps + MANAGER_TIMESTAMP_USERSPACE,
846 m->timestamps + MANAGER_TIMESTAMP_FIRMWARE,
847 m->timestamps + MANAGER_TIMESTAMP_LOADER);
463d0d15
LP
848#endif
849
f2341e0a 850 /* Prepare log fields we can use for structured logging */
463d0d15
LP
851 if (MANAGER_IS_SYSTEM(m)) {
852 m->unit_log_field = "UNIT=";
853 m->unit_log_format_string = "UNIT=%s";
4b58153d
LP
854
855 m->invocation_log_field = "INVOCATION_ID=";
f1c50bec 856 m->invocation_log_format_string = "INVOCATION_ID=%s";
463d0d15
LP
857 } else {
858 m->unit_log_field = "USER_UNIT=";
859 m->unit_log_format_string = "USER_UNIT=%s";
4b58153d
LP
860
861 m->invocation_log_field = "USER_INVOCATION_ID=";
f1c50bec 862 m->invocation_log_format_string = "USER_INVOCATION_ID=%s";
463d0d15 863 }
f2341e0a 864
2e5c94b9 865 /* Reboot immediately if the user hits C-A-D more often than 7x per 2s */
8c227e7f 866 m->ctrl_alt_del_ratelimit = (RateLimit) { .interval = 2 * USEC_PER_SEC, .burst = 7 };
2e5c94b9 867
e21fea24
KS
868 r = manager_default_environment(m);
869 if (r < 0)
c70cac54 870 return r;
1137a57c 871
d5099efc 872 r = hashmap_ensure_allocated(&m->units, &string_hash_ops);
718db961 873 if (r < 0)
c70cac54 874 return r;
60918275 875
548f6937 876 r = hashmap_ensure_allocated(&m->cgroup_unit, &path_hash_ops);
718db961 877 if (r < 0)
c70cac54 878 return r;
9152c765 879
d5099efc 880 r = hashmap_ensure_allocated(&m->watch_bus, &string_hash_ops);
718db961 881 if (r < 0)
c70cac54 882 return r;
05e343b7 883
da8e1782
MO
884 r = prioq_ensure_allocated(&m->run_queue, compare_job_priority);
885 if (r < 0)
886 return r;
887
e8112e67 888 r = manager_setup_prefix(m);
718db961 889 if (r < 0)
c70cac54 890 return r;
8742514c 891
786d19fd
LP
892 r = get_credentials_dir(&e);
893 if (r >= 0) {
bb0c0d6f
LP
894 m->received_credentials = strdup(e);
895 if (!m->received_credentials)
896 return -ENOMEM;
897 }
898
e8112e67 899 r = sd_event_default(&m->event);
8742514c 900 if (r < 0)
c70cac54 901 return r;
9152c765 902
e8112e67 903 r = manager_setup_run_queue(m);
a1d32bac 904 if (r < 0)
c70cac54 905 return r;
8e274523 906
5dd2f5ff 907 if (FLAGS_SET(test_run_flags, MANAGER_TEST_RUN_MINIMAL)) {
e8112e67
ZJS
908 m->cgroup_root = strdup("");
909 if (!m->cgroup_root)
910 return -ENOMEM;
911 } else {
912 r = manager_setup_signals(m);
913 if (r < 0)
914 return r;
8c47c732 915
e8112e67
ZJS
916 r = manager_setup_cgroup(m);
917 if (r < 0)
918 return r;
575b300b 919
e8112e67
ZJS
920 r = manager_setup_time_change(m);
921 if (r < 0)
922 return r;
9670d583 923
bbf5fd8e
LP
924 r = manager_read_timezone_stat(m);
925 if (r < 0)
926 return r;
927
ea5c5f68 928 (void) manager_setup_timezone_change(m);
bbf5fd8e 929
e8112e67
ZJS
930 r = manager_setup_sigchld_event_source(m);
931 if (r < 0)
932 return r;
933 }
e27fe688 934
2f8c48b6
AZ
935 if (test_run_flags == 0) {
936 if (MANAGER_IS_SYSTEM(m))
937 r = mkdir_label("/run/systemd/units", 0755);
938 else {
939 _cleanup_free_ char *units_path = NULL;
940 r = xdg_user_runtime_dir(&units_path, "/systemd/units");
941 if (r < 0)
942 return r;
943 r = mkdir_p_label(units_path, 0755);
944 }
945
d3070fbd 946 if (r < 0 && r != -EEXIST)
c70cac54 947 return r;
d3070fbd
LP
948 }
949
e27fe688
LP
950 m->taint_usr =
951 !in_initrd() &&
952 dir_is_empty("/usr") > 0;
953
232f6754
ZJS
954 /* Note that we do not set up the notify fd here. We do that after deserialization,
955 * since they might have gotten serialized across the reexec. */
3536f49e 956
1cc6c93a
YW
957 *_m = TAKE_PTR(m);
958
8e274523 959 return 0;
60918275
LP
960}
961
d86f9d52 962static int manager_setup_notify(Manager *m) {
7181dbdb 963 int r;
d86f9d52 964
638cece4 965 if (MANAGER_IS_TEST_RUN(m))
0d8c31ff
ZJS
966 return 0;
967
d86f9d52
LP
968 if (m->notify_fd < 0) {
969 _cleanup_close_ int fd = -1;
f36a9d59
ZJS
970 union sockaddr_union sa;
971 socklen_t sa_len;
d86f9d52
LP
972
973 /* First free all secondary fields */
a1e58e8e 974 m->notify_socket = mfree(m->notify_socket);
5dcadb4c 975 m->notify_event_source = sd_event_source_disable_unref(m->notify_event_source);
d86f9d52
LP
976
977 fd = socket(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0);
4a62c710
MS
978 if (fd < 0)
979 return log_error_errno(errno, "Failed to allocate notification socket: %m");
d86f9d52 980
a47806fa
LP
981 fd_inc_rcvbuf(fd, NOTIFY_RCVBUF_SIZE);
982
b910cc72 983 m->notify_socket = path_join(m->prefix[EXEC_DIRECTORY_RUNTIME], "systemd/notify");
498e87d6
LP
984 if (!m->notify_socket)
985 return log_oom();
986
f36a9d59
ZJS
987 r = sockaddr_un_set_path(&sa.un, m->notify_socket);
988 if (r < 0)
989 return log_error_errno(r, "Notify socket '%s' not valid for AF_UNIX socket address, refusing.",
990 m->notify_socket);
991 sa_len = r;
15a3e96f 992
498e87d6 993 (void) mkdir_parents_label(m->notify_socket, 0755);
fbda85b0 994 (void) sockaddr_un_unlink(&sa.un);
7181dbdb 995
45ae2f72 996 r = mac_selinux_bind(fd, &sa.sa, sa_len);
4a62c710 997 if (r < 0)
45ae2f72 998 return log_error_errno(r, "bind(%s) failed: %m", m->notify_socket);
d86f9d52 999
2ff48e98 1000 r = setsockopt_int(fd, SOL_SOCKET, SO_PASSCRED, true);
4a62c710 1001 if (r < 0)
2ff48e98 1002 return log_error_errno(r, "SO_PASSCRED failed: %m");
d86f9d52 1003
c10d6bdb 1004 m->notify_fd = TAKE_FD(fd);
d86f9d52
LP
1005
1006 log_debug("Using notification socket %s", m->notify_socket);
1007 }
1008
1009 if (!m->notify_event_source) {
151b9b96 1010 r = sd_event_add_io(m->event, &m->notify_event_source, m->notify_fd, EPOLLIN, manager_dispatch_notify_fd, m);
895b3a7b
MS
1011 if (r < 0)
1012 return log_error_errno(r, "Failed to allocate notify event source: %m");
d86f9d52 1013
d8fdc620
LP
1014 /* Process notification messages a bit earlier than SIGCHLD, so that we can still identify to which
1015 * service an exit message belongs. */
575b300b 1016 r = sd_event_source_set_priority(m->notify_event_source, SD_EVENT_PRIORITY_NORMAL-8);
23bbb0de
MS
1017 if (r < 0)
1018 return log_error_errno(r, "Failed to set priority of notify event source: %m");
7dfbe2e3
TG
1019
1020 (void) sd_event_source_set_description(m->notify_event_source, "manager-notify");
d86f9d52
LP
1021 }
1022
1023 return 0;
1024}
1025
d8fdc620
LP
1026static int manager_setup_cgroups_agent(Manager *m) {
1027
1028 static const union sockaddr_union sa = {
1029 .un.sun_family = AF_UNIX,
1030 .un.sun_path = "/run/systemd/cgroups-agent",
1031 };
1032 int r;
1033
1034 /* This creates a listening socket we receive cgroups agent messages on. We do not use D-Bus for delivering
1035 * these messages from the cgroups agent binary to PID 1, as the cgroups agent binary is very short-living, and
1036 * each instance of it needs a new D-Bus connection. Since D-Bus connections are SOCK_STREAM/AF_UNIX, on
1037 * overloaded systems the backlog of the D-Bus socket becomes relevant, as not more than the configured number
1038 * of D-Bus connections may be queued until the kernel will start dropping further incoming connections,
1039 * possibly resulting in lost cgroups agent messages. To avoid this, we'll use a private SOCK_DGRAM/AF_UNIX
1040 * socket, where no backlog is relevant as communication may take place without an actual connect() cycle, and
1041 * we thus won't lose messages.
1042 *
1043 * Note that PID 1 will forward the agent message to system bus, so that the user systemd instance may listen
1044 * to it. The system instance hence listens on this special socket, but the user instances listen on the system
1045 * bus for these messages. */
1046
638cece4 1047 if (MANAGER_IS_TEST_RUN(m))
d8fdc620
LP
1048 return 0;
1049
1050 if (!MANAGER_IS_SYSTEM(m))
1051 return 0;
1052
c22800e4 1053 r = cg_unified_controller(SYSTEMD_CGROUP_CONTROLLER);
b4cccbc1
LP
1054 if (r < 0)
1055 return log_error_errno(r, "Failed to determine whether unified cgroups hierarchy is used: %m");
1056 if (r > 0) /* We don't need this anymore on the unified hierarchy */
d8fdc620
LP
1057 return 0;
1058
1059 if (m->cgroups_agent_fd < 0) {
1060 _cleanup_close_ int fd = -1;
1061
1062 /* First free all secondary fields */
5dcadb4c 1063 m->cgroups_agent_event_source = sd_event_source_disable_unref(m->cgroups_agent_event_source);
d8fdc620
LP
1064
1065 fd = socket(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0);
1066 if (fd < 0)
1067 return log_error_errno(errno, "Failed to allocate cgroups agent socket: %m");
1068
1069 fd_inc_rcvbuf(fd, CGROUPS_AGENT_RCVBUF_SIZE);
1070
155b6876 1071 (void) sockaddr_un_unlink(&sa.un);
d8fdc620
LP
1072
1073 /* Only allow root to connect to this socket */
1074 RUN_WITH_UMASK(0077)
fc2fffe7 1075 r = bind(fd, &sa.sa, SOCKADDR_UN_LEN(sa.un));
d8fdc620
LP
1076 if (r < 0)
1077 return log_error_errno(errno, "bind(%s) failed: %m", sa.un.sun_path);
1078
0b7e8b32 1079 m->cgroups_agent_fd = TAKE_FD(fd);
d8fdc620
LP
1080 }
1081
1082 if (!m->cgroups_agent_event_source) {
1083 r = sd_event_add_io(m->event, &m->cgroups_agent_event_source, m->cgroups_agent_fd, EPOLLIN, manager_dispatch_cgroups_agent_fd, m);
1084 if (r < 0)
1085 return log_error_errno(r, "Failed to allocate cgroups agent event source: %m");
1086
cbe83389
LP
1087 /* Process cgroups notifications early. Note that when the agent notification is received
1088 * we'll just enqueue the unit in the cgroup empty queue, hence pick a high priority than
1089 * that. Also see handling of cgroup inotify for the unified cgroup stuff. */
1090 r = sd_event_source_set_priority(m->cgroups_agent_event_source, SD_EVENT_PRIORITY_NORMAL-9);
d8fdc620
LP
1091 if (r < 0)
1092 return log_error_errno(r, "Failed to set priority of cgroups agent event source: %m");
1093
1094 (void) sd_event_source_set_description(m->cgroups_agent_event_source, "manager-cgroups-agent");
1095 }
1096
1097 return 0;
1098}
1099
00d9ef85
LP
1100static int manager_setup_user_lookup_fd(Manager *m) {
1101 int r;
1102
1103 assert(m);
1104
1105 /* Set up the socket pair used for passing UID/GID resolution results from forked off processes to PID
1106 * 1. Background: we can't do name lookups (NSS) from PID 1, since it might involve IPC and thus activation,
1107 * and we might hence deadlock on ourselves. Hence we do all user/group lookups asynchronously from the forked
1108 * off processes right before executing the binaries to start. In order to be able to clean up any IPC objects
1109 * created by a unit (see RemoveIPC=) we need to know in PID 1 the used UID/GID of the executed processes,
1110 * hence we establish this communication channel so that forked off processes can pass their UID/GID
1111 * information back to PID 1. The forked off processes send their resolved UID/GID to PID 1 in a simple
1112 * datagram, along with their unit name, so that we can share one communication socket pair among all units for
1113 * this purpose.
1114 *
1115 * You might wonder why we need a communication channel for this that is independent of the usual notification
1116 * socket scheme (i.e. $NOTIFY_SOCKET). The primary difference is about trust: data sent via the $NOTIFY_SOCKET
1117 * channel is only accepted if it originates from the right unit and if reception was enabled for it. The user
1118 * lookup socket OTOH is only accessible by PID 1 and its children until they exec(), and always available.
1119 *
1120 * Note that this function is called under two circumstances: when we first initialize (in which case we
1121 * allocate both the socket pair and the event source to listen on it), and when we deserialize after a reload
1122 * (in which case the socket pair already exists but we still need to allocate the event source for it). */
1123
1124 if (m->user_lookup_fds[0] < 0) {
1125
1126 /* Free all secondary fields */
1127 safe_close_pair(m->user_lookup_fds);
5dcadb4c 1128 m->user_lookup_event_source = sd_event_source_disable_unref(m->user_lookup_event_source);
00d9ef85
LP
1129
1130 if (socketpair(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC, 0, m->user_lookup_fds) < 0)
1131 return log_error_errno(errno, "Failed to allocate user lookup socket: %m");
1132
1133 (void) fd_inc_rcvbuf(m->user_lookup_fds[0], NOTIFY_RCVBUF_SIZE);
1134 }
1135
1136 if (!m->user_lookup_event_source) {
1137 r = sd_event_add_io(m->event, &m->user_lookup_event_source, m->user_lookup_fds[0], EPOLLIN, manager_dispatch_user_lookup_fd, m);
1138 if (r < 0)
1139 return log_error_errno(errno, "Failed to allocate user lookup event source: %m");
1140
1141 /* Process even earlier than the notify event source, so that we always know first about valid UID/GID
1142 * resolutions */
67ae4e8d 1143 r = sd_event_source_set_priority(m->user_lookup_event_source, SD_EVENT_PRIORITY_NORMAL-11);
00d9ef85 1144 if (r < 0)
5238e957 1145 return log_error_errno(errno, "Failed to set priority of user lookup event source: %m");
00d9ef85
LP
1146
1147 (void) sd_event_source_set_description(m->user_lookup_event_source, "user-lookup");
1148 }
1149
1150 return 0;
1151}
1152
23a177ef 1153static unsigned manager_dispatch_cleanup_queue(Manager *m) {
595ed347 1154 Unit *u;
23a177ef
LP
1155 unsigned n = 0;
1156
1157 assert(m);
1158
595ed347
MS
1159 while ((u = m->cleanup_queue)) {
1160 assert(u->in_cleanup_queue);
23a177ef 1161
595ed347 1162 unit_free(u);
23a177ef
LP
1163 n++;
1164 }
1165
1166 return n;
1167}
1168
eced69b3 1169enum {
35b8ca3a 1170 GC_OFFSET_IN_PATH, /* This one is on the path we were traveling */
eced69b3
LP
1171 GC_OFFSET_UNSURE, /* No clue */
1172 GC_OFFSET_GOOD, /* We still need this unit */
1173 GC_OFFSET_BAD, /* We don't need this unit anymore */
1174 _GC_OFFSET_MAX
1175};
1176
00d9ef85 1177static void unit_gc_mark_good(Unit *u, unsigned gc_marker) {
4892084f
LN
1178 Unit *other;
1179
1180 u->gc_marker = gc_marker + GC_OFFSET_GOOD;
1181
1182 /* Recursively mark referenced units as GOOD as well */
15ed3c3a 1183 UNIT_FOREACH_DEPENDENCY(other, u, UNIT_ATOM_REFERENCES)
4892084f
LN
1184 if (other->gc_marker == gc_marker + GC_OFFSET_UNSURE)
1185 unit_gc_mark_good(other, gc_marker);
1186}
1187
eced69b3 1188static void unit_gc_sweep(Unit *u, unsigned gc_marker) {
701cc384 1189 Unit *other;
eced69b3 1190 bool is_bad;
701cc384
LP
1191
1192 assert(u);
1193
4c701096
YW
1194 if (IN_SET(u->gc_marker - gc_marker,
1195 GC_OFFSET_GOOD, GC_OFFSET_BAD, GC_OFFSET_UNSURE, GC_OFFSET_IN_PATH))
701cc384
LP
1196 return;
1197
ac155bb8 1198 if (u->in_cleanup_queue)
701cc384
LP
1199 goto bad;
1200
f2f725e5 1201 if (!unit_may_gc(u))
701cc384
LP
1202 goto good;
1203
ac155bb8 1204 u->gc_marker = gc_marker + GC_OFFSET_IN_PATH;
eced69b3
LP
1205
1206 is_bad = true;
1207
15ed3c3a 1208 UNIT_FOREACH_DEPENDENCY(other, u, UNIT_ATOM_REFERENCED_BY) {
701cc384
LP
1209 unit_gc_sweep(other, gc_marker);
1210
ac155bb8 1211 if (other->gc_marker == gc_marker + GC_OFFSET_GOOD)
701cc384 1212 goto good;
eced69b3 1213
ac155bb8 1214 if (other->gc_marker != gc_marker + GC_OFFSET_BAD)
eced69b3 1215 is_bad = false;
701cc384
LP
1216 }
1217
ef3fc326
ZJS
1218 const UnitRef *ref;
1219 LIST_FOREACH(refs_by_target, ref, u->refs_by_target) {
1220 unit_gc_sweep(ref->source, gc_marker);
2641f02e 1221
ef3fc326
ZJS
1222 if (ref->source->gc_marker == gc_marker + GC_OFFSET_GOOD)
1223 goto good;
2641f02e 1224
ef3fc326
ZJS
1225 if (ref->source->gc_marker != gc_marker + GC_OFFSET_BAD)
1226 is_bad = false;
2641f02e 1227 }
701cc384 1228
eced69b3
LP
1229 if (is_bad)
1230 goto bad;
1231
1232 /* We were unable to find anything out about this entry, so
1233 * let's investigate it later */
ac155bb8 1234 u->gc_marker = gc_marker + GC_OFFSET_UNSURE;
eced69b3
LP
1235 unit_add_to_gc_queue(u);
1236 return;
1237
701cc384 1238bad:
eced69b3
LP
1239 /* We definitely know that this one is not useful anymore, so
1240 * let's mark it for deletion */
ac155bb8 1241 u->gc_marker = gc_marker + GC_OFFSET_BAD;
eced69b3 1242 unit_add_to_cleanup_queue(u);
701cc384
LP
1243 return;
1244
1245good:
4892084f 1246 unit_gc_mark_good(u, gc_marker);
701cc384
LP
1247}
1248
c5a97ed1
LP
1249static unsigned manager_dispatch_gc_unit_queue(Manager *m) {
1250 unsigned n = 0, gc_marker;
595ed347 1251 Unit *u;
701cc384
LP
1252
1253 assert(m);
1254
cf1265e1 1255 /* log_debug("Running GC..."); */
701cc384 1256
eced69b3
LP
1257 m->gc_marker += _GC_OFFSET_MAX;
1258 if (m->gc_marker + _GC_OFFSET_MAX <= _GC_OFFSET_MAX)
c9c0cadb 1259 m->gc_marker = 1;
701cc384 1260
eced69b3
LP
1261 gc_marker = m->gc_marker;
1262
c5a97ed1 1263 while ((u = m->gc_unit_queue)) {
595ed347 1264 assert(u->in_gc_queue);
701cc384 1265
595ed347 1266 unit_gc_sweep(u, gc_marker);
eced69b3 1267
c5a97ed1 1268 LIST_REMOVE(gc_queue, m->gc_unit_queue, u);
595ed347 1269 u->in_gc_queue = false;
701cc384
LP
1270
1271 n++;
1272
4c701096
YW
1273 if (IN_SET(u->gc_marker - gc_marker,
1274 GC_OFFSET_BAD, GC_OFFSET_UNSURE)) {
cc3bc3e6 1275 if (u->id)
f2341e0a 1276 log_unit_debug(u, "Collecting.");
595ed347
MS
1277 u->gc_marker = gc_marker + GC_OFFSET_BAD;
1278 unit_add_to_cleanup_queue(u);
701cc384
LP
1279 }
1280 }
1281
701cc384
LP
1282 return n;
1283}
1284
c5a97ed1
LP
1285static unsigned manager_dispatch_gc_job_queue(Manager *m) {
1286 unsigned n = 0;
1287 Job *j;
1288
1289 assert(m);
1290
1291 while ((j = m->gc_job_queue)) {
1292 assert(j->in_gc_queue);
1293
1294 LIST_REMOVE(gc_queue, m->gc_job_queue, j);
1295 j->in_gc_queue = false;
1296
1297 n++;
1298
2ab3050f 1299 if (!job_may_gc(j))
c5a97ed1
LP
1300 continue;
1301
1302 log_unit_debug(j->unit, "Collecting job.");
1303 (void) job_finish_and_invalidate(j, JOB_COLLECTED, false, false);
1304 }
1305
1306 return n;
1307}
1308
a3c1168a
LP
1309static unsigned manager_dispatch_stop_when_unneeded_queue(Manager *m) {
1310 unsigned n = 0;
1311 Unit *u;
1312 int r;
1313
1314 assert(m);
1315
1316 while ((u = m->stop_when_unneeded_queue)) {
1317 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
a3c1168a
LP
1318
1319 assert(u->in_stop_when_unneeded_queue);
1320 LIST_REMOVE(stop_when_unneeded_queue, m->stop_when_unneeded_queue, u);
1321 u->in_stop_when_unneeded_queue = false;
1322
1323 n++;
1324
1325 if (!unit_is_unneeded(u))
1326 continue;
1327
1328 log_unit_debug(u, "Unit is not needed anymore.");
1329
1330 /* If stopping a unit fails continuously we might enter a stop loop here, hence stop acting on the
1331 * service being unnecessary after a while. */
1332
0bc488c9 1333 if (!ratelimit_below(&u->auto_start_stop_ratelimit)) {
a3c1168a
LP
1334 log_unit_warning(u, "Unit not needed anymore, but not stopping since we tried this too often recently.");
1335 continue;
1336 }
1337
1338 /* Ok, nobody needs us anymore. Sniff. Then let's commit suicide */
50cbaba4 1339 r = manager_add_job(u->manager, JOB_STOP, u, JOB_FAIL, NULL, &error, NULL);
a3c1168a
LP
1340 if (r < 0)
1341 log_unit_warning_errno(u, r, "Failed to enqueue stop job, ignoring: %s", bus_error_message(&error, r));
1342 }
1343
1344 return n;
1345}
1346
0bc488c9
LP
1347static unsigned manager_dispatch_start_when_upheld_queue(Manager *m) {
1348 unsigned n = 0;
1349 Unit *u;
1350 int r;
1351
1352 assert(m);
1353
1354 while ((u = m->start_when_upheld_queue)) {
1355 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
1356 Unit *culprit = NULL;
1357
1358 assert(u->in_start_when_upheld_queue);
1359 LIST_REMOVE(start_when_upheld_queue, m->start_when_upheld_queue, u);
1360 u->in_start_when_upheld_queue = false;
1361
1362 n++;
1363
1364 if (!unit_is_upheld_by_active(u, &culprit))
1365 continue;
1366
1367 log_unit_debug(u, "Unit is started because upheld by active unit %s.", culprit->id);
1368
1369 /* If stopping a unit fails continuously we might enter a stop loop here, hence stop acting on the
1370 * service being unnecessary after a while. */
1371
1372 if (!ratelimit_below(&u->auto_start_stop_ratelimit)) {
1373 log_unit_warning(u, "Unit needs to be started because active unit %s upholds it, but not starting since we tried this too often recently.", culprit->id);
1374 continue;
1375 }
1376
1377 r = manager_add_job(u->manager, JOB_START, u, JOB_FAIL, NULL, &error, NULL);
1378 if (r < 0)
1379 log_unit_warning_errno(u, r, "Failed to enqueue start job, ignoring: %s", bus_error_message(&error, r));
1380 }
1381
1382 return n;
1383}
1384
56c59592
LP
1385static unsigned manager_dispatch_stop_when_bound_queue(Manager *m) {
1386 unsigned n = 0;
1387 Unit *u;
1388 int r;
1389
1390 assert(m);
1391
1392 while ((u = m->stop_when_bound_queue)) {
1393 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
1394 Unit *culprit = NULL;
1395
1396 assert(u->in_stop_when_bound_queue);
1397 LIST_REMOVE(stop_when_bound_queue, m->stop_when_bound_queue, u);
1398 u->in_stop_when_bound_queue = false;
1399
1400 n++;
1401
1402 if (!unit_is_bound_by_inactive(u, &culprit))
1403 continue;
1404
1405 log_unit_debug(u, "Unit is stopped because bound to inactive unit %s.", culprit->id);
1406
1407 /* If stopping a unit fails continuously we might enter a stop loop here, hence stop acting on the
1408 * service being unnecessary after a while. */
1409
1410 if (!ratelimit_below(&u->auto_start_stop_ratelimit)) {
1411 log_unit_warning(u, "Unit needs to be stopped because it is bound to inactive unit %s it, but not stopping since we tried this too often recently.", culprit->id);
1412 continue;
1413 }
1414
1415 r = manager_add_job(u->manager, JOB_STOP, u, JOB_REPLACE, NULL, &error, NULL);
1416 if (r < 0)
1417 log_unit_warning_errno(u, r, "Failed to enqueue stop job, ignoring: %s", bus_error_message(&error, r));
1418 }
1419
1420 return n;
1421}
1422
a16e1123 1423static void manager_clear_jobs_and_units(Manager *m) {
a16e1123 1424 Unit *u;
60918275
LP
1425
1426 assert(m);
1427
87f0e418
LP
1428 while ((u = hashmap_first(m->units)))
1429 unit_free(u);
964e0949
LP
1430
1431 manager_dispatch_cleanup_queue(m);
1432
1433 assert(!m->load_queue);
da8e1782 1434 assert(prioq_isempty(m->run_queue));
964e0949
LP
1435 assert(!m->dbus_unit_queue);
1436 assert(!m->dbus_job_queue);
1437 assert(!m->cleanup_queue);
c5a97ed1
LP
1438 assert(!m->gc_unit_queue);
1439 assert(!m->gc_job_queue);
a3c1168a 1440 assert(!m->stop_when_unneeded_queue);
0bc488c9 1441 assert(!m->start_when_upheld_queue);
56c59592 1442 assert(!m->stop_when_bound_queue);
964e0949 1443
964e0949
LP
1444 assert(hashmap_isempty(m->jobs));
1445 assert(hashmap_isempty(m->units));
9e9e2b72
MS
1446
1447 m->n_on_console = 0;
1448 m->n_running_jobs = 0;
1e75824c
MK
1449 m->n_installed_jobs = 0;
1450 m->n_failed_jobs = 0;
a16e1123
LP
1451}
1452
06d8d842 1453Manager* manager_free(Manager *m) {
06d8d842
ZJS
1454 if (!m)
1455 return NULL;
a16e1123
LP
1456
1457 manager_clear_jobs_and_units(m);
23a177ef 1458
24b45970 1459 for (UnitType c = 0; c < _UNIT_TYPE_MAX; c++)
7824bbeb
LP
1460 if (unit_vtable[c]->shutdown)
1461 unit_vtable[c]->shutdown(m);
1462
86036b26
LP
1463 /* Keep the cgroup hierarchy in place except when we know we are going down for good */
1464 manager_shutdown_cgroup(m, IN_SET(m->objective, MANAGER_EXIT, MANAGER_REBOOT, MANAGER_POWEROFF, MANAGER_HALT, MANAGER_KEXEC));
8e274523 1465
07a78643 1466 lookup_paths_flush_generator(&m->lookup_paths);
5a1e9937 1467
5e8d1c9a 1468 bus_done(m);
19d22d43 1469 manager_varlink_done(m);
ea430986 1470
e8a565cb
YW
1471 exec_runtime_vacuum(m);
1472 hashmap_free(m->exec_runtime_by_id);
1473
29206d46
LP
1474 dynamic_user_vacuum(m, false);
1475 hashmap_free(m->dynamic_users);
1476
87f0e418 1477 hashmap_free(m->units);
4b58153d 1478 hashmap_free(m->units_by_invocation_id);
60918275 1479 hashmap_free(m->jobs);
62a76913 1480 hashmap_free(m->watch_pids);
05e343b7 1481 hashmap_free(m->watch_bus);
9152c765 1482
da8e1782
MO
1483 prioq_free(m->run_queue);
1484
95ae05c0 1485 set_free(m->startup_units);
f755e3b7
LP
1486 set_free(m->failed_units);
1487
718db961 1488 sd_event_source_unref(m->signal_event_source);
575b300b 1489 sd_event_source_unref(m->sigchld_event_source);
718db961 1490 sd_event_source_unref(m->notify_event_source);
d8fdc620 1491 sd_event_source_unref(m->cgroups_agent_event_source);
718db961 1492 sd_event_source_unref(m->time_change_event_source);
bbf5fd8e 1493 sd_event_source_unref(m->timezone_change_event_source);
718db961 1494 sd_event_source_unref(m->jobs_in_progress_event_source);
752b5905 1495 sd_event_source_unref(m->run_queue_event_source);
00d9ef85 1496 sd_event_source_unref(m->user_lookup_event_source);
718db961 1497
03e334a1
LP
1498 safe_close(m->signal_fd);
1499 safe_close(m->notify_fd);
d8fdc620 1500 safe_close(m->cgroups_agent_fd);
03e334a1 1501 safe_close(m->time_change_fd);
00d9ef85 1502 safe_close_pair(m->user_lookup_fds);
718db961 1503
e46b13c8
ZJS
1504 manager_close_ask_password(m);
1505
718db961
LP
1506 manager_close_idle_pipe(m);
1507
1508 sd_event_unref(m->event);
60918275 1509
c952c6ec
LP
1510 free(m->notify_socket);
1511
84e3543e 1512 lookup_paths_free(&m->lookup_paths);
1ad6e8b3
LP
1513 strv_free(m->transient_environment);
1514 strv_free(m->client_environment);
036643a2 1515
4ad49000 1516 hashmap_free(m->cgroup_unit);
e8630e69 1517 manager_free_unit_name_maps(m);
33be102a 1518
664f88a7
LP
1519 free(m->switch_root);
1520 free(m->switch_root_init);
1521
31ce987c 1522 rlimit_free_all(m->rlimit);
c93ff2e9 1523
a57f7e2c
LP
1524 assert(hashmap_isempty(m->units_requiring_mounts_for));
1525 hashmap_free(m->units_requiring_mounts_for);
1526
00d9ef85
LP
1527 hashmap_free(m->uid_refs);
1528 hashmap_free(m->gid_refs);
1529
24b45970 1530 for (ExecDirectoryType dt = 0; dt < _EXEC_DIRECTORY_TYPE_MAX; dt++)
35aba85a 1531 m->prefix[dt] = mfree(m->prefix[dt]);
bb0c0d6f 1532 free(m->received_credentials);
35aba85a 1533
6b430fdb 1534 return mfree(m);
60918275
LP
1535}
1536
04eb582a 1537static void manager_enumerate_perpetual(Manager *m) {
04eb582a
LP
1538 assert(m);
1539
b1d5246d
ZJS
1540 if (m->test_run_flags == MANAGER_TEST_RUN_MINIMAL)
1541 return;
1542
04eb582a 1543 /* Let's ask every type to load all units from disk/kernel that it might know */
24b45970 1544 for (UnitType c = 0; c < _UNIT_TYPE_MAX; c++) {
04eb582a
LP
1545 if (!unit_type_supported(c)) {
1546 log_debug("Unit type .%s is not supported on this system.", unit_type_to_string(c));
1547 continue;
1548 }
1549
1550 if (unit_vtable[c]->enumerate_perpetual)
1551 unit_vtable[c]->enumerate_perpetual(m);
1552 }
1553}
1554
a1113e08 1555static void manager_enumerate(Manager *m) {
f50e0a01
LP
1556 assert(m);
1557
b1d5246d
ZJS
1558 if (m->test_run_flags == MANAGER_TEST_RUN_MINIMAL)
1559 return;
1560
04eb582a 1561 /* Let's ask every type to load all units from disk/kernel that it might know */
24b45970 1562 for (UnitType c = 0; c < _UNIT_TYPE_MAX; c++) {
1c2e9646 1563 if (!unit_type_supported(c)) {
03afec3c 1564 log_debug("Unit type .%s is not supported on this system.", unit_type_to_string(c));
0faacd47 1565 continue;
a57f7e2c 1566 }
f50e0a01 1567
94b01dae
ZJS
1568 if (unit_vtable[c]->enumerate)
1569 unit_vtable[c]->enumerate(m);
0faacd47
LP
1570 }
1571
f50e0a01 1572 manager_dispatch_load_queue(m);
a16e1123
LP
1573}
1574
007c6337 1575static void manager_coldplug(Manager *m) {
a16e1123
LP
1576 Unit *u;
1577 char *k;
007c6337 1578 int r;
a16e1123
LP
1579
1580 assert(m);
f50e0a01 1581
f0831ed2
LP
1582 log_debug("Invoking unit coldplug() handlers…");
1583
1584 /* Let's place the units back into their deserialized state */
90e74a66 1585 HASHMAP_FOREACH_KEY(u, k, m->units) {
f50e0a01
LP
1586
1587 /* ignore aliases */
ac155bb8 1588 if (u->id != k)
f50e0a01
LP
1589 continue;
1590
007c6337
LP
1591 r = unit_coldplug(u);
1592 if (r < 0)
1593 log_warning_errno(r, "We couldn't coldplug %s, proceeding anyway: %m", u->id);
f50e0a01 1594 }
a16e1123
LP
1595}
1596
f0831ed2 1597static void manager_catchup(Manager *m) {
f0831ed2
LP
1598 Unit *u;
1599 char *k;
1600
1601 assert(m);
1602
1603 log_debug("Invoking unit catchup() handlers…");
1604
1605 /* Let's catch up on any state changes that happened while we were reloading/reexecing */
90e74a66 1606 HASHMAP_FOREACH_KEY(u, k, m->units) {
f0831ed2
LP
1607
1608 /* ignore aliases */
1609 if (u->id != k)
1610 continue;
1611
1612 unit_catchup(u);
1613 }
1614}
1615
9ff1a6f1 1616static void manager_distribute_fds(Manager *m, FDSet *fds) {
9ff1a6f1 1617 Unit *u;
9588bc32
LP
1618
1619 assert(m);
1620
90e74a66 1621 HASHMAP_FOREACH(u, m->units) {
9588bc32
LP
1622
1623 if (fdset_size(fds) <= 0)
1624 break;
1625
9ff1a6f1
LP
1626 if (!UNIT_VTABLE(u)->distribute_fds)
1627 continue;
9588bc32 1628
9ff1a6f1
LP
1629 UNIT_VTABLE(u)->distribute_fds(u, fds);
1630 }
9588bc32
LP
1631}
1632
8559b3b7
LP
1633static bool manager_dbus_is_running(Manager *m, bool deserialized) {
1634 Unit *u;
1635
1636 assert(m);
1637
1638 /* This checks whether the dbus instance we are supposed to expose our APIs on is up. We check both the socket
1639 * and the service unit. If the 'deserialized' parameter is true we'll check the deserialized state of the unit
1640 * rather than the current one. */
1641
638cece4 1642 if (MANAGER_IS_TEST_RUN(m))
8559b3b7
LP
1643 return false;
1644
8559b3b7
LP
1645 u = manager_get_unit(m, SPECIAL_DBUS_SOCKET);
1646 if (!u)
1647 return false;
1648 if ((deserialized ? SOCKET(u)->deserialized_state : SOCKET(u)->state) != SOCKET_RUNNING)
1649 return false;
1650
1651 u = manager_get_unit(m, SPECIAL_DBUS_SERVICE);
1652 if (!u)
1653 return false;
1654 if (!IN_SET((deserialized ? SERVICE(u)->deserialized_state : SERVICE(u)->state), SERVICE_RUNNING, SERVICE_RELOAD))
1655 return false;
1656
1657 return true;
1658}
1659
9d4c195c
LP
1660static void manager_setup_bus(Manager *m) {
1661 assert(m);
1662
1663 /* Let's set up our private bus connection now, unconditionally */
1664 (void) bus_init_private(m);
1665
1666 /* If we are in --user mode also connect to the system bus now */
1667 if (MANAGER_IS_USER(m))
1668 (void) bus_init_system(m);
1669
1670 /* Let's connect to the bus now, but only if the unit is supposed to be up */
1671 if (manager_dbus_is_running(m, MANAGER_IS_RELOADING(m))) {
1672 (void) bus_init_api(m);
1673
1674 if (MANAGER_IS_SYSTEM(m))
1675 (void) bus_init_system(m);
1676 }
1677}
1678
159f1e76
LP
1679static void manager_preset_all(Manager *m) {
1680 int r;
1681
1682 assert(m);
1683
1684 if (m->first_boot <= 0)
1685 return;
1686
1687 if (!MANAGER_IS_SYSTEM(m))
1688 return;
1689
638cece4 1690 if (MANAGER_IS_TEST_RUN(m))
159f1e76
LP
1691 return;
1692
1693 /* If this is the first boot, and we are in the host system, then preset everything */
1694 r = unit_file_preset_all(UNIT_FILE_SYSTEM, 0, NULL, UNIT_FILE_PRESET_ENABLE_ONLY, NULL, 0);
1695 if (r < 0)
1696 log_full_errno(r == -EEXIST ? LOG_NOTICE : LOG_WARNING, r,
1697 "Failed to populate /etc with preset unit settings, ignoring: %m");
1698 else
1699 log_info("Populated /etc with preset unit settings.");
1700}
1701
5ce5e1ad
LP
1702static void manager_ready(Manager *m) {
1703 assert(m);
1704
1705 /* After having loaded everything, do the final round of catching up with what might have changed */
1706
1707 m->objective = MANAGER_OK; /* Tell everyone we are up now */
1708
1709 /* It might be safe to log to the journal now and connect to dbus */
1710 manager_recheck_journal(m);
1711 manager_recheck_dbus(m);
1712
5ce5e1ad
LP
1713 /* Let's finally catch up with any changes that took place while we were reloading/reexecing */
1714 manager_catchup(m);
c6e892bc
YW
1715
1716 m->honor_device_enumeration = true;
5ce5e1ad
LP
1717}
1718
a01ba4b2 1719Manager* manager_reloading_start(Manager *m) {
d147e2b6
ZJS
1720 m->n_reloading++;
1721 return m;
1722}
a01ba4b2 1723void manager_reloading_stopp(Manager **m) {
d147e2b6
ZJS
1724 if (*m) {
1725 assert((*m)->n_reloading > 0);
1726 (*m)->n_reloading--;
1727 }
1728}
1729
a16e1123 1730int manager_startup(Manager *m, FILE *serialization, FDSet *fds) {
17f01ace 1731 int r;
a16e1123
LP
1732
1733 assert(m);
1734
a1f31f47
ZJS
1735 /* If we are running in test mode, we still want to run the generators,
1736 * but we should not touch the real generator directories. */
1737 r = lookup_paths_init(&m->lookup_paths, m->unit_file_scope,
638cece4 1738 MANAGER_IS_TEST_RUN(m) ? LOOKUP_PATHS_TEMPORARY_GENERATED : 0,
a1f31f47 1739 NULL);
e801700e 1740 if (r < 0)
572986ca 1741 return log_error_errno(r, "Failed to initialize path lookup table: %m");
5a1e9937 1742
d4ee7bd8 1743 dual_timestamp_get(m->timestamps + manager_timestamp_initrd_mangle(MANAGER_TIMESTAMP_GENERATORS_START));
eb523bfb
LP
1744 r = manager_run_environment_generators(m);
1745 if (r >= 0)
1746 r = manager_run_generators(m);
d4ee7bd8 1747 dual_timestamp_get(m->timestamps + manager_timestamp_initrd_mangle(MANAGER_TIMESTAMP_GENERATORS_FINISH));
07719a21
LP
1748 if (r < 0)
1749 return r;
1750
159f1e76 1751 manager_preset_all(m);
572986ca 1752
581fef8d 1753 lookup_paths_log(&m->lookup_paths);
572986ca 1754
4df7d537
ZJS
1755 {
1756 /* This block is (optionally) done with the reloading counter bumped */
1757 _cleanup_(manager_reloading_stopp) Manager *reloading = NULL;
1758
1759 /* If we will deserialize make sure that during enumeration this is already known, so we increase the
1760 * counter here already */
1761 if (serialization)
1762 reloading = manager_reloading_start(m);
1763
1764 /* First, enumerate what we can from all config files */
1765 dual_timestamp_get(m->timestamps + manager_timestamp_initrd_mangle(MANAGER_TIMESTAMP_UNITS_LOAD_START));
1766 manager_enumerate_perpetual(m);
1767 manager_enumerate(m);
1768 dual_timestamp_get(m->timestamps + manager_timestamp_initrd_mangle(MANAGER_TIMESTAMP_UNITS_LOAD_FINISH));
1769
1770 /* Second, deserialize if there is something to deserialize */
1771 if (serialization) {
1772 r = manager_deserialize(m, serialization, fds);
1773 if (r < 0)
1774 return log_error_errno(r, "Deserialization failed: %m");
1775 }
01e10de3 1776
4df7d537
ZJS
1777 /* Any fds left? Find some unit which wants them. This is useful to allow container managers to pass
1778 * some file descriptors to us pre-initialized. This enables socket-based activation of entire
1779 * containers. */
1780 manager_distribute_fds(m, fds);
d86f9d52 1781
4df7d537
ZJS
1782 /* We might have deserialized the notify fd, but if we didn't then let's create the bus now */
1783 r = manager_setup_notify(m);
1784 if (r < 0)
1785 /* No sense to continue without notifications, our children would fail anyway. */
1786 return r;
d8fdc620 1787
4df7d537
ZJS
1788 r = manager_setup_cgroups_agent(m);
1789 if (r < 0)
1790 /* Likewise, no sense to continue without empty cgroup notifications. */
1791 return r;
00d9ef85 1792
4df7d537
ZJS
1793 r = manager_setup_user_lookup_fd(m);
1794 if (r < 0)
1795 /* This shouldn't fail, except if things are really broken. */
1796 return r;
8559b3b7 1797
4df7d537
ZJS
1798 /* Connect to the bus if we are good for it */
1799 manager_setup_bus(m);
e3dd987c 1800
5238e957 1801 /* Now that we are connected to all possible buses, let's deserialize who is tracking us. */
4df7d537
ZJS
1802 r = bus_track_coldplug(m, &m->subscribed, false, m->deserialized_subscribed);
1803 if (r < 0)
1804 log_warning_errno(r, "Failed to deserialized tracked clients, ignoring: %m");
1805 m->deserialized_subscribed = strv_free(m->deserialized_subscribed);
a16e1123 1806
19d22d43
LP
1807 r = manager_varlink_init(m);
1808 if (r < 0)
1809 log_warning_errno(r, "Failed to set up Varlink server, ignoring: %m");
1810
4df7d537
ZJS
1811 /* Third, fire things up! */
1812 manager_coldplug(m);
3ad2afb6 1813
4df7d537
ZJS
1814 /* Clean up runtime objects */
1815 manager_vacuum(m);
71445ae7 1816
4df7d537
ZJS
1817 if (serialization)
1818 /* Let's wait for the UnitNew/JobNew messages being sent, before we notify that the
1819 * reload is finished */
1820 m->send_reloading_done = true;
9f611ad8
LP
1821 }
1822
5ce5e1ad 1823 manager_ready(m);
f0831ed2 1824
17f01ace 1825 return 0;
f50e0a01
LP
1826}
1827
50cbaba4
LP
1828int manager_add_job(
1829 Manager *m,
1830 JobType type,
1831 Unit *unit,
1832 JobMode mode,
1833 Set *affected_jobs,
1834 sd_bus_error *error,
1835 Job **ret) {
1836
7527cb52 1837 Transaction *tr;
50cbaba4 1838 int r;
e5b5ae50
LP
1839
1840 assert(m);
1841 assert(type < _JOB_TYPE_MAX);
87f0e418 1842 assert(unit);
e5b5ae50 1843 assert(mode < _JOB_MODE_MAX);
60918275 1844
7358dc02 1845 if (mode == JOB_ISOLATE && type != JOB_START)
1b09b81c 1846 return sd_bus_error_set(error, SD_BUS_ERROR_INVALID_ARGS, "Isolate is only valid for start.");
c497c7a9 1847
7358dc02 1848 if (mode == JOB_ISOLATE && !unit->allow_isolate)
1b09b81c 1849 return sd_bus_error_set(error, BUS_ERROR_NO_ISOLATION, "Operation refused, unit may not be isolated.");
2528a7a6 1850
1f0f9f21 1851 if (mode == JOB_TRIGGERING && type != JOB_STOP)
1b09b81c 1852 return sd_bus_error_set(error, SD_BUS_ERROR_INVALID_ARGS, "--job-mode=triggering is only valid for stop.");
1f0f9f21 1853
f2341e0a 1854 log_unit_debug(unit, "Trying to enqueue job %s/%s/%s", unit->id, job_type_to_string(type), job_mode_to_string(mode));
9f04bd52 1855
c6497ccb 1856 type = job_type_collapse(type, unit);
e0209d83 1857
23ade460 1858 tr = transaction_new(mode == JOB_REPLACE_IRREVERSIBLY);
7527cb52
MS
1859 if (!tr)
1860 return -ENOMEM;
11dd41ce 1861
4bd29fe5 1862 r = transaction_add_job_and_dependencies(tr, type, unit, NULL, true, false,
3742095b 1863 IN_SET(mode, JOB_IGNORE_DEPENDENCIES, JOB_IGNORE_REQUIREMENTS),
50cbaba4 1864 mode == JOB_IGNORE_DEPENDENCIES, error);
7527cb52
MS
1865 if (r < 0)
1866 goto tr_abort;
c497c7a9 1867
7527cb52
MS
1868 if (mode == JOB_ISOLATE) {
1869 r = transaction_add_isolate_jobs(tr, m);
1870 if (r < 0)
1871 goto tr_abort;
1872 }
1873
1f0f9f21
KK
1874 if (mode == JOB_TRIGGERING) {
1875 r = transaction_add_triggering_jobs(tr, unit);
1876 if (r < 0)
1877 goto tr_abort;
1878 }
1879
50cbaba4 1880 r = transaction_activate(tr, m, mode, affected_jobs, error);
7527cb52
MS
1881 if (r < 0)
1882 goto tr_abort;
e5b5ae50 1883
f2341e0a 1884 log_unit_debug(unit,
66870f90
ZJS
1885 "Enqueued job %s/%s as %u", unit->id,
1886 job_type_to_string(type), (unsigned) tr->anchor_job->id);
f50e0a01 1887
50cbaba4
LP
1888 if (ret)
1889 *ret = tr->anchor_job;
60918275 1890
7527cb52 1891 transaction_free(tr);
e5b5ae50 1892 return 0;
7527cb52
MS
1893
1894tr_abort:
1895 transaction_abort(tr);
1896 transaction_free(tr);
1897 return r;
e5b5ae50 1898}
60918275 1899
50cbaba4 1900int manager_add_job_by_name(Manager *m, JobType type, const char *name, JobMode mode, Set *affected_jobs, sd_bus_error *e, Job **ret) {
4440b27d 1901 Unit *unit = NULL; /* just to appease gcc, initialization is not really necessary */
28247076
LP
1902 int r;
1903
1904 assert(m);
1905 assert(type < _JOB_TYPE_MAX);
1906 assert(name);
1907 assert(mode < _JOB_MODE_MAX);
1908
c3090674
LP
1909 r = manager_load_unit(m, name, NULL, NULL, &unit);
1910 if (r < 0)
28247076 1911 return r;
4440b27d 1912 assert(unit);
28247076 1913
50cbaba4 1914 return manager_add_job(m, type, unit, mode, affected_jobs, e, ret);
53f18416
LP
1915}
1916
50cbaba4 1917int manager_add_job_by_name_and_warn(Manager *m, JobType type, const char *name, JobMode mode, Set *affected_jobs, Job **ret) {
4afd3348 1918 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
53f18416
LP
1919 int r;
1920
1921 assert(m);
1922 assert(type < _JOB_TYPE_MAX);
1923 assert(name);
1924 assert(mode < _JOB_MODE_MAX);
1925
50cbaba4 1926 r = manager_add_job_by_name(m, type, name, mode, affected_jobs, &error, ret);
53f18416
LP
1927 if (r < 0)
1928 return log_warning_errno(r, "Failed to enqueue %s job for %s: %s", job_mode_to_string(mode), name, bus_error_message(&error, r));
1929
1930 return r;
28247076
LP
1931}
1932
15d167f8
JW
1933int manager_propagate_reload(Manager *m, Unit *unit, JobMode mode, sd_bus_error *e) {
1934 int r;
1935 Transaction *tr;
1936
1937 assert(m);
1938 assert(unit);
1939 assert(mode < _JOB_MODE_MAX);
1940 assert(mode != JOB_ISOLATE); /* Isolate is only valid for start */
1941
1942 tr = transaction_new(mode == JOB_REPLACE_IRREVERSIBLY);
1943 if (!tr)
1944 return -ENOMEM;
1945
1946 /* We need an anchor job */
1947 r = transaction_add_job_and_dependencies(tr, JOB_NOP, unit, NULL, false, false, true, true, e);
1948 if (r < 0)
1949 goto tr_abort;
1950
1951 /* Failure in adding individual dependencies is ignored, so this always succeeds. */
1952 transaction_add_propagate_reload_jobs(tr, unit, tr->anchor_job, mode == JOB_IGNORE_DEPENDENCIES, e);
1953
50cbaba4 1954 r = transaction_activate(tr, m, mode, NULL, e);
15d167f8
JW
1955 if (r < 0)
1956 goto tr_abort;
1957
1958 transaction_free(tr);
1959 return 0;
1960
1961tr_abort:
1962 transaction_abort(tr);
1963 transaction_free(tr);
1964 return r;
1965}
1966
60918275
LP
1967Job *manager_get_job(Manager *m, uint32_t id) {
1968 assert(m);
1969
1970 return hashmap_get(m->jobs, UINT32_TO_PTR(id));
1971}
1972
87f0e418 1973Unit *manager_get_unit(Manager *m, const char *name) {
60918275
LP
1974 assert(m);
1975 assert(name);
1976
87f0e418 1977 return hashmap_get(m->units, name);
60918275
LP
1978}
1979
19496554
MS
1980static int manager_dispatch_target_deps_queue(Manager *m) {
1981 Unit *u;
19496554
MS
1982 int r = 0;
1983
19496554
MS
1984 assert(m);
1985
1986 while ((u = m->target_deps_queue)) {
15ed3c3a
LP
1987 _cleanup_free_ Unit **targets = NULL;
1988 int n_targets;
1989
19496554
MS
1990 assert(u->in_target_deps_queue);
1991
1992 LIST_REMOVE(target_deps_queue, u->manager->target_deps_queue, u);
1993 u->in_target_deps_queue = false;
1994
15ed3c3a
LP
1995 /* Take an "atomic" snapshot of dependencies here, as the call below will likely modify the
1996 * dependencies, and we can't have it that hash tables we iterate through are modified while
1997 * we are iterating through them. */
1998 n_targets = unit_get_dependency_array(u, UNIT_ATOM_DEFAULT_TARGET_DEPENDENCIES, &targets);
1999 if (n_targets < 0)
2000 return n_targets;
19496554 2001
15ed3c3a
LP
2002 for (int i = 0; i < n_targets; i++) {
2003 r = unit_add_default_target_dependency(u, targets[i]);
2004 if (r < 0)
2005 return r;
19496554
MS
2006 }
2007 }
2008
2009 return r;
2010}
2011
c1e1601e 2012unsigned manager_dispatch_load_queue(Manager *m) {
595ed347 2013 Unit *u;
c1e1601e 2014 unsigned n = 0;
60918275
LP
2015
2016 assert(m);
2017
223dabab
LP
2018 /* Make sure we are not run recursively */
2019 if (m->dispatching_load_queue)
c1e1601e 2020 return 0;
223dabab
LP
2021
2022 m->dispatching_load_queue = true;
2023
87f0e418 2024 /* Dispatches the load queue. Takes a unit from the queue and
60918275
LP
2025 * tries to load its data until the queue is empty */
2026
595ed347
MS
2027 while ((u = m->load_queue)) {
2028 assert(u->in_load_queue);
034c6ed7 2029
595ed347 2030 unit_load(u);
c1e1601e 2031 n++;
60918275
LP
2032 }
2033
223dabab 2034 m->dispatching_load_queue = false;
19496554
MS
2035
2036 /* Dispatch the units waiting for their target dependencies to be added now, as all targets that we know about
2037 * should be loaded and have aliases resolved */
2038 (void) manager_dispatch_target_deps_queue(m);
2039
c1e1601e 2040 return n;
60918275
LP
2041}
2042
81be2388 2043bool manager_unit_cache_should_retry_load(Unit *u) {
cda66772
LB
2044 assert(u);
2045
81be2388
ZJS
2046 /* Automatic reloading from disk only applies to units which were not found sometime in the past, and
2047 * the not-found stub is kept pinned in the unit graph by dependencies. For units that were
2048 * previously loaded, we don't do automatic reloading, and daemon-reload is necessary to update. */
cda66772
LB
2049 if (u->load_state != UNIT_NOT_FOUND)
2050 return false;
2051
81be2388
ZJS
2052 /* The cache has been updated since the last time we tried to load the unit. There might be new
2053 * fragment paths to read. */
c2911d48 2054 if (u->manager->unit_cache_timestamp_hash != u->fragment_not_found_timestamp_hash)
cda66772 2055 return true;
d904afc7 2056
81be2388 2057 /* The cache needs to be updated because there are modifications on disk. */
c2911d48 2058 return !lookup_paths_timestamp_hash_same(&u->manager->lookup_paths, u->manager->unit_cache_timestamp_hash, NULL);
d904afc7
LB
2059}
2060
c2756a68
LP
2061int manager_load_unit_prepare(
2062 Manager *m,
2063 const char *name,
2064 const char *path,
718db961 2065 sd_bus_error *e,
c2756a68
LP
2066 Unit **_ret) {
2067
dc409696 2068 _cleanup_(unit_freep) Unit *cleanup_ret = NULL;
87f0e418 2069 Unit *ret;
7d17cfbc 2070 UnitType t;
60918275
LP
2071 int r;
2072
2073 assert(m);
7a6a095a 2074 assert(_ret);
60918275 2075
526e3cbb 2076 /* This will prepare the unit for loading, but not actually load anything from disk. */
0301abf4 2077
526e3cbb 2078 if (path && !path_is_absolute(path))
718db961 2079 return sd_bus_error_setf(e, SD_BUS_ERROR_INVALID_ARGS, "Path %s is not absolute.", path);
9e2f7c11 2080
08f46856
BR
2081 if (!name) {
2082 /* 'name' and 'path' must not both be null. Check here 'path' using assert_se() to
2083 * workaround a bug in gcc that generates a -Wnonnull warning when calling basename(),
2084 * but this cannot be possible in any code path (See #6119). */
2085 assert_se(path);
2b6bf07d 2086 name = basename(path);
08f46856 2087 }
9e2f7c11 2088
7d17cfbc
MS
2089 t = unit_name_to_type(name);
2090
5d512d54
LN
2091 if (t == _UNIT_TYPE_INVALID || !unit_name_is_valid(name, UNIT_NAME_PLAIN|UNIT_NAME_INSTANCE)) {
2092 if (unit_name_is_valid(name, UNIT_NAME_TEMPLATE))
2093 return sd_bus_error_setf(e, SD_BUS_ERROR_INVALID_ARGS, "Unit name %s is missing the instance name.", name);
2094
718db961 2095 return sd_bus_error_setf(e, SD_BUS_ERROR_INVALID_ARGS, "Unit name %s is not valid.", name);
5d512d54 2096 }
60918275 2097
7d17cfbc
MS
2098 ret = manager_get_unit(m, name);
2099 if (ret) {
d904afc7
LB
2100 /* The time-based cache allows to start new units without daemon-reload,
2101 * but if they are already referenced (because of dependencies or ordering)
2102 * then we have to force a load of the fragment. As an optimization, check
2103 * first if anything in the usual paths was modified since the last time
7233e91a
LB
2104 * the cache was loaded. Also check if the last time an attempt to load the
2105 * unit was made was before the most recent cache refresh, so that we know
81be2388 2106 * we need to try again — even if the cache is current, it might have been
7233e91a
LB
2107 * updated in a different context before we had a chance to retry loading
2108 * this particular unit. */
81be2388 2109 if (manager_unit_cache_should_retry_load(ret))
d904afc7
LB
2110 ret->load_state = UNIT_STUB;
2111 else {
2112 *_ret = ret;
2113 return 1;
2114 }
2115 } else {
2116 ret = cleanup_ret = unit_new(m, unit_vtable[t]->object_size);
2117 if (!ret)
2118 return -ENOMEM;
034c6ed7 2119 }
60918275 2120
7d17cfbc 2121 if (path) {
d904afc7
LB
2122 r = free_and_strdup(&ret->fragment_path, path);
2123 if (r < 0)
2124 return r;
7d17cfbc 2125 }
0301abf4 2126
1058cbf2 2127 r = unit_add_name(ret, name);
dc409696 2128 if (r < 0)
1ffba6fe 2129 return r;
60918275 2130
87f0e418 2131 unit_add_to_load_queue(ret);
c1e1601e 2132 unit_add_to_dbus_queue(ret);
949061f0 2133 unit_add_to_gc_queue(ret);
c1e1601e 2134
7a6a095a 2135 *_ret = ret;
dc409696 2136 cleanup_ret = NULL;
db06e3b6
LP
2137
2138 return 0;
2139}
2140
c2756a68
LP
2141int manager_load_unit(
2142 Manager *m,
2143 const char *name,
2144 const char *path,
718db961 2145 sd_bus_error *e,
c2756a68
LP
2146 Unit **_ret) {
2147
db06e3b6
LP
2148 int r;
2149
2150 assert(m);
7a6a095a 2151 assert(_ret);
db06e3b6
LP
2152
2153 /* This will load the service information files, but not actually
2154 * start any services or anything. */
2155
c3090674
LP
2156 r = manager_load_unit_prepare(m, name, path, e, _ret);
2157 if (r != 0)
db06e3b6
LP
2158 return r;
2159
f50e0a01 2160 manager_dispatch_load_queue(m);
60918275 2161
7a6a095a 2162 *_ret = unit_follow_merge(*_ret);
4109ede7
ZJS
2163 return 0;
2164}
2165
2166int manager_load_startable_unit_or_warn(
2167 Manager *m,
2168 const char *name,
2169 const char *path,
2170 Unit **ret) {
2171
2172 /* Load a unit, make sure it loaded fully and is not masked. */
2173
2174 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
2175 Unit *unit;
2176 int r;
2177
2178 r = manager_load_unit(m, name, path, &error, &unit);
2179 if (r < 0)
2180 return log_error_errno(r, "Failed to load %s %s: %s",
8ace1db7 2181 name ? "unit" : "unit file", name ?: path,
4109ede7 2182 bus_error_message(&error, r));
8ace1db7
LP
2183
2184 r = bus_unit_validate_load_state(unit, &error);
2185 if (r < 0)
2186 return log_error_errno(r, "%s", bus_error_message(&error, r));
9e2f7c11 2187
4109ede7 2188 *ret = unit;
60918275
LP
2189 return 0;
2190}
a66d02c3 2191
7fad411c
LP
2192void manager_clear_jobs(Manager *m) {
2193 Job *j;
2194
2195 assert(m);
2196
7fad411c 2197 while ((j = hashmap_first(m->jobs)))
5273510e 2198 /* No need to recurse. We're cancelling all jobs. */
833f92ad 2199 job_finish_and_invalidate(j, JOB_CANCELED, false, false);
7fad411c 2200}
83c60c9f 2201
f75f613d
FB
2202void manager_unwatch_pid(Manager *m, pid_t pid) {
2203 assert(m);
2204
2205 /* First let's drop the unit keyed as "pid". */
2206 (void) hashmap_remove(m->watch_pids, PID_TO_PTR(pid));
2207
2208 /* Then, let's also drop the array keyed by -pid. */
2209 free(hashmap_remove(m->watch_pids, PID_TO_PTR(-pid)));
2210}
2211
752b5905
LP
2212static int manager_dispatch_run_queue(sd_event_source *source, void *userdata) {
2213 Manager *m = userdata;
83c60c9f 2214 Job *j;
034c6ed7 2215
752b5905
LP
2216 assert(source);
2217 assert(m);
9152c765 2218
da8e1782 2219 while ((j = prioq_peek(m->run_queue))) {
ac1135be 2220 assert(j->installed);
034c6ed7
LP
2221 assert(j->in_run_queue);
2222
6e64994d 2223 (void) job_run_and_invalidate(j);
9152c765 2224 }
034c6ed7 2225
a0b64226 2226 if (m->n_running_jobs > 0)
03b717a3
MS
2227 manager_watch_jobs_in_progress(m);
2228
31a7eb86
ZJS
2229 if (m->n_on_console > 0)
2230 manager_watch_idle_pipe(m);
2231
752b5905 2232 return 1;
c1e1601e
LP
2233}
2234
9588bc32 2235static unsigned manager_dispatch_dbus_queue(Manager *m) {
e0a08581 2236 unsigned n = 0, budget;
595ed347 2237 Unit *u;
e0a08581 2238 Job *j;
c1e1601e
LP
2239
2240 assert(m);
2241
b8d381c4
LP
2242 /* When we are reloading, let's not wait with generating signals, since we need to exit the manager as quickly
2243 * as we can. There's no point in throttling generation of signals in that case. */
2244 if (MANAGER_IS_RELOADING(m) || m->send_reloading_done || m->pending_reload_message)
f5fbe71d 2245 budget = UINT_MAX; /* infinite budget in this case */
b8d381c4
LP
2246 else {
2247 /* Anything to do at all? */
2248 if (!m->dbus_unit_queue && !m->dbus_job_queue)
2249 return 0;
2250
2251 /* Do we have overly many messages queued at the moment? If so, let's not enqueue more on top, let's
2252 * sit this cycle out, and process things in a later cycle when the queues got a bit emptier. */
2253 if (manager_bus_n_queued_write(m) > MANAGER_BUS_BUSY_THRESHOLD)
2254 return 0;
2255
2256 /* Only process a certain number of units/jobs per event loop iteration. Even if the bus queue wasn't
2257 * overly full before this call we shouldn't increase it in size too wildly in one step, and we
2258 * shouldn't monopolize CPU time with generating these messages. Note the difference in counting of
2259 * this "budget" and the "threshold" above: the "budget" is decreased only once per generated message,
5238e957
BB
2260 * regardless how many buses/direct connections it is enqueued on, while the "threshold" is applied to
2261 * each queued instance of bus message, i.e. if the same message is enqueued to five buses/direct
b8d381c4
LP
2262 * connections it will be counted five times. This difference in counting ("references"
2263 * vs. "instances") is primarily a result of the fact that it's easier to implement it this way,
2264 * however it also reflects the thinking that the "threshold" should put a limit on used queue memory,
2265 * i.e. space, while the "budget" should put a limit on time. Also note that the "threshold" is
2266 * currently chosen much higher than the "budget". */
2267 budget = MANAGER_BUS_MESSAGE_BUDGET;
2268 }
e0a08581 2269
b8d381c4 2270 while (budget != 0 && (u = m->dbus_unit_queue)) {
e0a08581 2271
595ed347 2272 assert(u->in_dbus_queue);
c1e1601e 2273
595ed347 2274 bus_unit_send_change_signal(u);
b8d381c4
LP
2275 n++;
2276
f5fbe71d 2277 if (budget != UINT_MAX)
b8d381c4 2278 budget--;
c1e1601e
LP
2279 }
2280
b8d381c4 2281 while (budget != 0 && (j = m->dbus_job_queue)) {
c1e1601e
LP
2282 assert(j->in_dbus_queue);
2283
2284 bus_job_send_change_signal(j);
b8d381c4
LP
2285 n++;
2286
f5fbe71d 2287 if (budget != UINT_MAX)
b8d381c4 2288 budget--;
c1e1601e
LP
2289 }
2290
b8d381c4 2291 if (m->send_reloading_done) {
71445ae7 2292 m->send_reloading_done = false;
718db961 2293 bus_manager_send_reloading(m, false);
b8d381c4 2294 n++;
71445ae7
LP
2295 }
2296
b8d381c4 2297 if (m->pending_reload_message) {
209de525 2298 bus_send_pending_reload_message(m);
e0a08581
LP
2299 n++;
2300 }
718db961 2301
c1e1601e 2302 return n;
9152c765
LP
2303}
2304
d8fdc620
LP
2305static int manager_dispatch_cgroups_agent_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
2306 Manager *m = userdata;
60473f0c 2307 char buf[PATH_MAX];
d8fdc620
LP
2308 ssize_t n;
2309
2310 n = recv(fd, buf, sizeof(buf), 0);
2311 if (n < 0)
2312 return log_error_errno(errno, "Failed to read cgroups agent message: %m");
2313 if (n == 0) {
2314 log_error("Got zero-length cgroups agent message, ignoring.");
2315 return 0;
2316 }
2317 if ((size_t) n >= sizeof(buf)) {
2318 log_error("Got overly long cgroups agent message, ignoring.");
2319 return 0;
2320 }
2321
2322 if (memchr(buf, 0, n)) {
2323 log_error("Got cgroups agent message with embedded NUL byte, ignoring.");
2324 return 0;
2325 }
2326 buf[n] = 0;
2327
2328 manager_notify_cgroup_empty(m, buf);
d5f15326 2329 (void) bus_forward_agent_released(m, buf);
d8fdc620
LP
2330
2331 return 0;
2332}
2333
5151b4cc 2334static bool manager_process_barrier_fd(char * const *tags, FDSet *fds) {
4f07ddfa
KKD
2335
2336 /* nothing else must be sent when using BARRIER=1 */
5151b4cc
BR
2337 if (strv_contains(tags, "BARRIER=1")) {
2338 if (strv_length(tags) == 1) {
2339 if (fdset_size(fds) != 1)
2340 log_warning("Got incorrect number of fds with BARRIER=1, closing them.");
2341 } else
2342 log_warning("Extra notification messages sent with BARRIER=1, ignoring everything.");
2343
2344 /* Drop the message if BARRIER=1 was found */
4f07ddfa 2345 return true;
5151b4cc 2346 }
4f07ddfa
KKD
2347
2348 return false;
2349}
2350
db256aab
LP
2351static void manager_invoke_notify_message(
2352 Manager *m,
2353 Unit *u,
2354 const struct ucred *ucred,
5151b4cc 2355 char * const *tags,
db256aab
LP
2356 FDSet *fds) {
2357
5ba6985b
LP
2358 assert(m);
2359 assert(u);
db256aab 2360 assert(ucred);
5151b4cc 2361 assert(tags);
5ba6985b 2362
62a76913 2363 if (u->notifygen == m->notifygen) /* Already invoked on this same unit in this same iteration? */
5ba6985b 2364 return;
62a76913
LP
2365 u->notifygen = m->notifygen;
2366
5151b4cc 2367 if (UNIT_VTABLE(u)->notify_message)
db256aab 2368 UNIT_VTABLE(u)->notify_message(u, ucred, tags, fds);
62a76913 2369
5151b4cc
BR
2370 else if (DEBUG_LOGGING) {
2371 _cleanup_free_ char *buf = NULL, *x = NULL, *y = NULL;
a86b7675 2372
5151b4cc
BR
2373 buf = strv_join(tags, ", ");
2374 if (buf)
2375 x = ellipsize(buf, 20, 90);
a86b7675 2376 if (x)
da5fb861
LP
2377 y = cescape(x);
2378
a86b7675
ZJS
2379 log_unit_debug(u, "Got notification message \"%s\", ignoring.", strnull(y));
2380 }
5ba6985b
LP
2381}
2382
718db961 2383static int manager_dispatch_notify_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
3d0b8a55 2384
b215b0ed 2385 _cleanup_fdset_free_ FDSet *fds = NULL;
718db961 2386 Manager *m = userdata;
b215b0ed
DH
2387 char buf[NOTIFY_BUFFER_MAX+1];
2388 struct iovec iovec = {
2389 .iov_base = buf,
2390 .iov_len = sizeof(buf)-1,
2391 };
fb29cdbe
LP
2392 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct ucred)) +
2393 CMSG_SPACE(sizeof(int) * NOTIFY_FD_MAX)) control;
b215b0ed
DH
2394 struct msghdr msghdr = {
2395 .msg_iov = &iovec,
2396 .msg_iovlen = 1,
2397 .msg_control = &control,
2398 .msg_controllen = sizeof(control),
2399 };
2400
2401 struct cmsghdr *cmsg;
2402 struct ucred *ucred = NULL;
62a76913 2403 _cleanup_free_ Unit **array_copy = NULL;
5151b4cc 2404 _cleanup_strv_free_ char **tags = NULL;
62a76913 2405 Unit *u1, *u2, **array;
b215b0ed 2406 int r, *fd_array = NULL;
da6053d0 2407 size_t n_fds = 0;
62a76913 2408 bool found = false;
8c47c732
LP
2409 ssize_t n;
2410
2411 assert(m);
718db961
LP
2412 assert(m->notify_fd == fd);
2413
2414 if (revents != EPOLLIN) {
2415 log_warning("Got unexpected poll event for notify fd.");
2416 return 0;
2417 }
8c47c732 2418
3691bcf3
LP
2419 n = recvmsg_safe(m->notify_fd, &msghdr, MSG_DONTWAIT|MSG_CMSG_CLOEXEC|MSG_TRUNC);
2420 if (IN_SET(n, -EAGAIN, -EINTR))
2421 return 0; /* Spurious wakeup, try again */
741bfd7f
LP
2422 if (n == -EXFULL) {
2423 log_warning("Got message with truncated control data (too many fds sent?), ignoring.");
2424 return 0;
2425 }
3691bcf3
LP
2426 if (n < 0)
2427 /* If this is any other, real error, then let's stop processing this socket. This of course
2428 * means we won't take notification messages anymore, but that's still better than busy
2429 * looping around this: being woken up over and over again but being unable to actually read
2430 * the message off the socket. */
2431 return log_error_errno(n, "Failed to receive notification message: %m");
a354329f 2432
b215b0ed
DH
2433 CMSG_FOREACH(cmsg, &msghdr) {
2434 if (cmsg->cmsg_level == SOL_SOCKET && cmsg->cmsg_type == SCM_RIGHTS) {
a354329f 2435
3691bcf3 2436 assert(!fd_array);
b215b0ed
DH
2437 fd_array = (int*) CMSG_DATA(cmsg);
2438 n_fds = (cmsg->cmsg_len - CMSG_LEN(0)) / sizeof(int);
a354329f 2439
b215b0ed
DH
2440 } else if (cmsg->cmsg_level == SOL_SOCKET &&
2441 cmsg->cmsg_type == SCM_CREDENTIALS &&
2442 cmsg->cmsg_len == CMSG_LEN(sizeof(struct ucred))) {
a354329f 2443
3691bcf3 2444 assert(!ucred);
b215b0ed 2445 ucred = (struct ucred*) CMSG_DATA(cmsg);
a354329f 2446 }
b215b0ed 2447 }
a354329f 2448
b215b0ed
DH
2449 if (n_fds > 0) {
2450 assert(fd_array);
a354329f 2451
b215b0ed
DH
2452 r = fdset_new_array(&fds, fd_array, n_fds);
2453 if (r < 0) {
2454 close_many(fd_array, n_fds);
9987750e
FB
2455 log_oom();
2456 return 0;
a354329f 2457 }
b215b0ed 2458 }
8c47c732 2459
15e23e8c 2460 if (!ucred || !pid_is_valid(ucred->pid)) {
b215b0ed
DH
2461 log_warning("Received notify message without valid credentials. Ignoring.");
2462 return 0;
2463 }
8c47c732 2464
045a3d59 2465 if ((size_t) n >= sizeof(buf) || (msghdr.msg_flags & MSG_TRUNC)) {
b215b0ed
DH
2466 log_warning("Received notify message exceeded maximum size. Ignoring.");
2467 return 0;
2468 }
8c47c732 2469
875ca88d
LP
2470 /* As extra safety check, let's make sure the string we get doesn't contain embedded NUL bytes. We permit one
2471 * trailing NUL byte in the message, but don't expect it. */
2472 if (n > 1 && memchr(buf, 0, n-1)) {
2473 log_warning("Received notify message with embedded NUL bytes. Ignoring.");
2474 return 0;
2475 }
2476
5151b4cc 2477 /* Make sure it's NUL-terminated, then parse it to obtain the tags list */
b215b0ed 2478 buf[n] = 0;
5151b4cc
BR
2479 tags = strv_split_newlines(buf);
2480 if (!tags) {
2481 log_oom();
2482 return 0;
2483 }
8c47c732 2484
4f07ddfa 2485 /* possibly a barrier fd, let's see */
5151b4cc 2486 if (manager_process_barrier_fd(tags, fds))
4f07ddfa
KKD
2487 return 0;
2488
62a76913
LP
2489 /* Increase the generation counter used for filtering out duplicate unit invocations. */
2490 m->notifygen++;
2491
2492 /* Notify every unit that might be interested, which might be multiple. */
b215b0ed 2493 u1 = manager_get_unit_by_pid_cgroup(m, ucred->pid);
62a76913
LP
2494 u2 = hashmap_get(m->watch_pids, PID_TO_PTR(ucred->pid));
2495 array = hashmap_get(m->watch_pids, PID_TO_PTR(-ucred->pid));
2496 if (array) {
2497 size_t k = 0;
5ba6985b 2498
62a76913
LP
2499 while (array[k])
2500 k++;
5ba6985b 2501
62a76913
LP
2502 array_copy = newdup(Unit*, array, k+1);
2503 if (!array_copy)
2504 log_oom();
2505 }
2506 /* And now invoke the per-unit callbacks. Note that manager_invoke_notify_message() will handle duplicate units
2507 * make sure we only invoke each unit's handler once. */
2508 if (u1) {
5151b4cc 2509 manager_invoke_notify_message(m, u1, ucred, tags, fds);
62a76913
LP
2510 found = true;
2511 }
2512 if (u2) {
5151b4cc 2513 manager_invoke_notify_message(m, u2, ucred, tags, fds);
62a76913
LP
2514 found = true;
2515 }
2516 if (array_copy)
2517 for (size_t i = 0; array_copy[i]; i++) {
5151b4cc 2518 manager_invoke_notify_message(m, array_copy[i], ucred, tags, fds);
62a76913
LP
2519 found = true;
2520 }
8c47c732 2521
62a76913
LP
2522 if (!found)
2523 log_warning("Cannot find unit for notify message of PID "PID_FMT", ignoring.", ucred->pid);
a354329f 2524
b215b0ed 2525 if (fdset_size(fds) > 0)
5fd2c135 2526 log_warning("Got extra auxiliary fds with notification message, closing them.");
8c47c732
LP
2527
2528 return 0;
2529}
2530
62a76913
LP
2531static void manager_invoke_sigchld_event(
2532 Manager *m,
2533 Unit *u,
2534 const siginfo_t *si) {
36f20ae3 2535
5ba6985b
LP
2536 assert(m);
2537 assert(u);
2538 assert(si);
2539
62a76913
LP
2540 /* Already invoked the handler of this unit in this iteration? Then don't process this again */
2541 if (u->sigchldgen == m->sigchldgen)
2542 return;
2543 u->sigchldgen = m->sigchldgen;
5ba6985b 2544
62a76913 2545 log_unit_debug(u, "Child "PID_FMT" belongs to %s.", si->si_pid, u->id);
5ba6985b 2546 unit_unwatch_pid(u, si->si_pid);
e57051f5 2547
62a76913
LP
2548 if (UNIT_VTABLE(u)->sigchld_event)
2549 UNIT_VTABLE(u)->sigchld_event(u, si->si_pid, si->si_code, si->si_status);
5ba6985b
LP
2550}
2551
575b300b
LP
2552static int manager_dispatch_sigchld(sd_event_source *source, void *userdata) {
2553 Manager *m = userdata;
2554 siginfo_t si = {};
2555 int r;
2556
2557 assert(source);
9152c765
LP
2558 assert(m);
2559
0a51b45c 2560 /* First we call waitid() for a PID and do not reap the zombie. That way we can still access /proc/$PID for it
575b300b 2561 * while it is a zombie. */
9152c765 2562
575b300b 2563 if (waitid(P_ALL, 0, &si, WEXITED|WNOHANG|WNOWAIT) < 0) {
acbb0225 2564
8afabc50
AJ
2565 if (errno != ECHILD)
2566 log_error_errno(errno, "Failed to peek for child with waitid(), ignoring: %m");
acbb0225 2567
8afabc50 2568 goto turn_off;
575b300b 2569 }
4112df16 2570
575b300b
LP
2571 if (si.si_pid <= 0)
2572 goto turn_off;
2573
2574 if (IN_SET(si.si_code, CLD_EXITED, CLD_KILLED, CLD_DUMPED)) {
62a76913 2575 _cleanup_free_ Unit **array_copy = NULL;
575b300b 2576 _cleanup_free_ char *name = NULL;
62a76913 2577 Unit *u1, *u2, **array;
575b300b
LP
2578
2579 (void) get_process_comm(si.si_pid, &name);
2580
2581 log_debug("Child "PID_FMT" (%s) died (code=%s, status=%i/%s)",
2582 si.si_pid, strna(name),
2583 sigchld_code_to_string(si.si_code),
2584 si.si_status,
2585 strna(si.si_code == CLD_EXITED
2586 ? exit_status_to_string(si.si_status, EXIT_STATUS_FULL)
2587 : signal_to_string(si.si_status)));
2588
62a76913
LP
2589 /* Increase the generation counter used for filtering out duplicate unit invocations */
2590 m->sigchldgen++;
2591
2592 /* And now figure out the unit this belongs to, it might be multiple... */
575b300b 2593 u1 = manager_get_unit_by_pid_cgroup(m, si.si_pid);
62a76913
LP
2594 u2 = hashmap_get(m->watch_pids, PID_TO_PTR(si.si_pid));
2595 array = hashmap_get(m->watch_pids, PID_TO_PTR(-si.si_pid));
2596 if (array) {
2597 size_t n = 0;
2598
5238e957 2599 /* Count how many entries the array has */
62a76913
LP
2600 while (array[n])
2601 n++;
2602
2603 /* Make a copy of the array so that we don't trip up on the array changing beneath us */
2604 array_copy = newdup(Unit*, array, n+1);
2605 if (!array_copy)
2606 log_oom();
2607 }
2608
2609 /* Finally, execute them all. Note that u1, u2 and the array might contain duplicates, but
2610 * that's fine, manager_invoke_sigchld_event() will ensure we only invoke the handlers once for
2611 * each iteration. */
2ba6ae6b
ZJS
2612 if (u1) {
2613 /* We check for oom condition, in case we got SIGCHLD before the oom notification.
2614 * We only do this for the cgroup the PID belonged to. */
2615 (void) unit_check_oom(u1);
2616
fe8d22fb
AZ
2617 /* This only logs for now. In the future when the interface for kills/notifications
2618 * is more stable we can extend service results table similar to how kernel oom kills
2619 * are managed. */
2620 (void) unit_check_oomd_kill(u1);
2621
62a76913 2622 manager_invoke_sigchld_event(m, u1, &si);
2ba6ae6b 2623 }
62a76913
LP
2624 if (u2)
2625 manager_invoke_sigchld_event(m, u2, &si);
2626 if (array_copy)
2627 for (size_t i = 0; array_copy[i]; i++)
2628 manager_invoke_sigchld_event(m, array_copy[i], &si);
575b300b 2629 }
9152c765 2630
575b300b
LP
2631 /* And now, we actually reap the zombie. */
2632 if (waitid(P_PID, si.si_pid, &si, WEXITED) < 0) {
2633 log_error_errno(errno, "Failed to dequeue child, ignoring: %m");
2634 return 0;
2635 }
9152c765 2636
575b300b 2637 return 0;
8c47c732 2638
575b300b
LP
2639turn_off:
2640 /* All children processed for now, turn off event source */
4112df16 2641
575b300b
LP
2642 r = sd_event_source_set_enabled(m->sigchld_event_source, SD_EVENT_OFF);
2643 if (r < 0)
2644 return log_error_errno(r, "Failed to disable SIGCHLD event source: %m");
9152c765
LP
2645
2646 return 0;
2647}
2648
5f968096
ZJS
2649static void manager_start_special(Manager *m, const char *name, JobMode mode) {
2650 Job *job;
398ef8ba 2651
5f968096
ZJS
2652 if (manager_add_job_by_name_and_warn(m, JOB_START, name, mode, NULL, &job) < 0)
2653 return;
1e001f52 2654
5f968096
ZJS
2655 const char *s = unit_status_string(job->unit, NULL);
2656
2657 log_info("Activating special unit %s...", s);
3889fc6f
ZJS
2658
2659 sd_notifyf(false,
2660 "STATUS=Activating special unit %s...", s);
2661 m->status_ready = false;
28247076
LP
2662}
2663
24dd31c1
LN
2664static void manager_handle_ctrl_alt_del(Manager *m) {
2665 /* If the user presses C-A-D more than
2666 * 7 times within 2s, we reboot/shutdown immediately,
2667 * unless it was disabled in system.conf */
2668
7994ac1d 2669 if (ratelimit_below(&m->ctrl_alt_del_ratelimit) || m->cad_burst_action == EMERGENCY_ACTION_NONE)
5f968096 2670 manager_start_special(m, SPECIAL_CTRL_ALT_DEL_TARGET, JOB_REPLACE_IRREVERSIBLY);
ae8c7939 2671 else
7af67e9a 2672 emergency_action(m, m->cad_burst_action, EMERGENCY_ACTION_WARN, NULL, -1,
ae8c7939 2673 "Ctrl-Alt-Del was pressed more than 7 times within 2s");
24dd31c1
LN
2674}
2675
718db961
LP
2676static int manager_dispatch_signal_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
2677 Manager *m = userdata;
9152c765
LP
2678 ssize_t n;
2679 struct signalfd_siginfo sfsi;
dacd6cee 2680 int r;
9152c765
LP
2681
2682 assert(m);
718db961
LP
2683 assert(m->signal_fd == fd);
2684
2685 if (revents != EPOLLIN) {
2686 log_warning("Got unexpected events from signal file descriptor.");
2687 return 0;
2688 }
9152c765 2689
575b300b
LP
2690 n = read(m->signal_fd, &sfsi, sizeof(sfsi));
2691 if (n != sizeof(sfsi)) {
2692 if (n >= 0) {
2693 log_warning("Truncated read from signal fd (%zu bytes), ignoring!", n);
2694 return 0;
2695 }
9152c765 2696
575b300b
LP
2697 if (IN_SET(errno, EINTR, EAGAIN))
2698 return 0;
9152c765 2699
575b300b
LP
2700 /* We return an error here, which will kill this handler,
2701 * to avoid a busy loop on read error. */
2702 return log_error_errno(errno, "Reading from signal fd failed: %m");
2703 }
9152c765 2704
575b300b
LP
2705 log_received_signal(sfsi.ssi_signo == SIGCHLD ||
2706 (sfsi.ssi_signo == SIGTERM && MANAGER_IS_USER(m))
2707 ? LOG_DEBUG : LOG_INFO,
2708 &sfsi);
1e001f52 2709
575b300b 2710 switch (sfsi.ssi_signo) {
b9cd2ec1 2711
575b300b
LP
2712 case SIGCHLD:
2713 r = sd_event_source_set_enabled(m->sigchld_event_source, SD_EVENT_ON);
2714 if (r < 0)
8afabc50 2715 log_warning_errno(r, "Failed to enable SIGCHLD event source, ignoring: %m");
b9cd2ec1 2716
575b300b 2717 break;
84e9af1e 2718
575b300b
LP
2719 case SIGTERM:
2720 if (MANAGER_IS_SYSTEM(m)) {
ba0c7754 2721 /* This is for compatibility with the original sysvinit */
c52b19d6
LP
2722 if (verify_run_space_and_log("Refusing to reexecute") < 0)
2723 break;
2724
2725 m->objective = MANAGER_REEXECUTE;
a1b256b0 2726 break;
575b300b 2727 }
84e9af1e 2728
575b300b
LP
2729 _fallthrough_;
2730 case SIGINT:
2731 if (MANAGER_IS_SYSTEM(m))
2732 manager_handle_ctrl_alt_del(m);
2733 else
5f968096 2734 manager_start_special(m, SPECIAL_EXIT_TARGET, JOB_REPLACE_IRREVERSIBLY);
575b300b 2735 break;
84e9af1e 2736
575b300b 2737 case SIGWINCH:
ba0c7754 2738 /* This is a nop on non-init */
575b300b 2739 if (MANAGER_IS_SYSTEM(m))
5f968096 2740 manager_start_special(m, SPECIAL_KBREQUEST_TARGET, JOB_REPLACE);
84e9af1e 2741
575b300b 2742 break;
84e9af1e 2743
575b300b 2744 case SIGPWR:
ba0c7754 2745 /* This is a nop on non-init */
575b300b 2746 if (MANAGER_IS_SYSTEM(m))
5f968096 2747 manager_start_special(m, SPECIAL_SIGPWR_TARGET, JOB_REPLACE);
6632c602 2748
575b300b 2749 break;
57ee42ce 2750
8559b3b7 2751 case SIGUSR1:
8559b3b7 2752 if (manager_dbus_is_running(m, false)) {
575b300b 2753 log_info("Trying to reconnect to bus...");
575b300b 2754
8559b3b7
LP
2755 (void) bus_init_api(m);
2756
2757 if (MANAGER_IS_SYSTEM(m))
2758 (void) bus_init_system(m);
5f968096
ZJS
2759 } else
2760 manager_start_special(m, SPECIAL_DBUS_SERVICE, JOB_REPLACE);
57ee42ce 2761
575b300b 2762 break;
575b300b
LP
2763
2764 case SIGUSR2: {
2765 _cleanup_free_ char *dump = NULL;
2766
2767 r = manager_get_dump_string(m, &dump);
2768 if (r < 0) {
2769 log_warning_errno(errno, "Failed to acquire manager dump: %m");
57ee42ce
LP
2770 break;
2771 }
2772
575b300b
LP
2773 log_dump(LOG_INFO, dump);
2774 break;
2775 }
2149e37c 2776
575b300b 2777 case SIGHUP:
c52b19d6
LP
2778 if (verify_run_space_and_log("Refusing to reload") < 0)
2779 break;
2780
2781 m->objective = MANAGER_RELOAD;
575b300b
LP
2782 break;
2783
2784 default: {
2785
2786 /* Starting SIGRTMIN+0 */
2787 static const struct {
2788 const char *target;
2789 JobMode mode;
2790 } target_table[] = {
2791 [0] = { SPECIAL_DEFAULT_TARGET, JOB_ISOLATE },
2792 [1] = { SPECIAL_RESCUE_TARGET, JOB_ISOLATE },
2793 [2] = { SPECIAL_EMERGENCY_TARGET, JOB_ISOLATE },
2794 [3] = { SPECIAL_HALT_TARGET, JOB_REPLACE_IRREVERSIBLY },
2795 [4] = { SPECIAL_POWEROFF_TARGET, JOB_REPLACE_IRREVERSIBLY },
2796 [5] = { SPECIAL_REBOOT_TARGET, JOB_REPLACE_IRREVERSIBLY },
2797 [6] = { SPECIAL_KEXEC_TARGET, JOB_REPLACE_IRREVERSIBLY },
2798 };
2799
2800 /* Starting SIGRTMIN+13, so that target halt and system halt are 10 apart */
af41e508 2801 static const ManagerObjective objective_table[] = {
575b300b
LP
2802 [0] = MANAGER_HALT,
2803 [1] = MANAGER_POWEROFF,
2804 [2] = MANAGER_REBOOT,
2805 [3] = MANAGER_KEXEC,
2806 };
b2cdc666 2807
575b300b
LP
2808 if ((int) sfsi.ssi_signo >= SIGRTMIN+0 &&
2809 (int) sfsi.ssi_signo < SIGRTMIN+(int) ELEMENTSOF(target_table)) {
2810 int idx = (int) sfsi.ssi_signo - SIGRTMIN;
5f968096 2811 manager_start_special(m, target_table[idx].target, target_table[idx].mode);
1005d14f 2812 break;
2149e37c 2813 }
1005d14f 2814
575b300b 2815 if ((int) sfsi.ssi_signo >= SIGRTMIN+13 &&
af41e508
LP
2816 (int) sfsi.ssi_signo < SIGRTMIN+13+(int) ELEMENTSOF(objective_table)) {
2817 m->objective = objective_table[sfsi.ssi_signo - SIGRTMIN - 13];
575b300b
LP
2818 break;
2819 }
2820
2821 switch (sfsi.ssi_signo - SIGRTMIN) {
2822
2823 case 20:
43bba15a 2824 manager_override_show_status(m, SHOW_STATUS_YES, "signal");
a16e1123
LP
2825 break;
2826
575b300b 2827 case 21:
43bba15a 2828 manager_override_show_status(m, SHOW_STATUS_NO, "signal");
575b300b 2829 break;
7d793605 2830
575b300b 2831 case 22:
a6ecbf83 2832 manager_override_log_level(m, LOG_DEBUG);
575b300b
LP
2833 break;
2834
2835 case 23:
a6ecbf83 2836 manager_restore_original_log_level(m);
575b300b 2837 break;
0003d1ab 2838
575b300b
LP
2839 case 24:
2840 if (MANAGER_IS_USER(m)) {
af41e508 2841 m->objective = MANAGER_EXIT;
575b300b 2842 return 0;
0658666b 2843 }
9152c765 2844
575b300b
LP
2845 /* This is a nop on init */
2846 break;
2847
463aef23
FB
2848 case 25:
2849 m->objective = MANAGER_REEXECUTE;
2850 break;
2851
575b300b
LP
2852 case 26:
2853 case 29: /* compatibility: used to be mapped to LOG_TARGET_SYSLOG_OR_KMSG */
bda7d78b 2854 manager_restore_original_log_target(m);
575b300b
LP
2855 break;
2856
2857 case 27:
bda7d78b 2858 manager_override_log_target(m, LOG_TARGET_CONSOLE);
575b300b
LP
2859 break;
2860
2861 case 28:
bda7d78b 2862 manager_override_log_target(m, LOG_TARGET_KMSG);
575b300b
LP
2863 break;
2864
2865 default:
2866 log_warning("Got unhandled signal <%s>.", signal_to_string(sfsi.ssi_signo));
2867 }
2868 }}
034c6ed7
LP
2869
2870 return 0;
2871}
2872
718db961
LP
2873static int manager_dispatch_time_change_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
2874 Manager *m = userdata;
718db961 2875 Unit *u;
034c6ed7
LP
2876
2877 assert(m);
718db961 2878 assert(m->time_change_fd == fd);
034c6ed7 2879
a80c1575 2880 log_struct(LOG_DEBUG,
2b044526 2881 "MESSAGE_ID=" SD_MESSAGE_TIME_CHANGE_STR,
a1230ff9 2882 LOG_MESSAGE("Time has been changed"));
034c6ed7 2883
718db961 2884 /* Restart the watch */
7feedd18 2885 (void) manager_setup_time_change(m);
4e434314 2886
90e74a66 2887 HASHMAP_FOREACH(u, m->units)
718db961
LP
2888 if (UNIT_VTABLE(u)->time_change)
2889 UNIT_VTABLE(u)->time_change(u);
ea430986 2890
718db961
LP
2891 return 0;
2892}
ea430986 2893
bbf5fd8e
LP
2894static int manager_dispatch_timezone_change(
2895 sd_event_source *source,
2896 const struct inotify_event *e,
2897 void *userdata) {
2898
2899 Manager *m = userdata;
2900 int changed;
bbf5fd8e
LP
2901 Unit *u;
2902
2903 assert(m);
2904
2905 log_debug("inotify event for /etc/localtime");
2906
2907 changed = manager_read_timezone_stat(m);
f20db199 2908 if (changed <= 0)
bbf5fd8e 2909 return changed;
bbf5fd8e
LP
2910
2911 /* Something changed, restart the watch, to ensure we watch the new /etc/localtime if it changed */
2912 (void) manager_setup_timezone_change(m);
2913
2914 /* Read the new timezone */
2915 tzset();
2916
2917 log_debug("Timezone has been changed (now: %s).", tzname[daylight]);
2918
90e74a66 2919 HASHMAP_FOREACH(u, m->units)
bbf5fd8e
LP
2920 if (UNIT_VTABLE(u)->timezone_change)
2921 UNIT_VTABLE(u)->timezone_change(u);
2922
2923 return 0;
2924}
2925
718db961
LP
2926static int manager_dispatch_idle_pipe_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
2927 Manager *m = userdata;
8742514c 2928
718db961
LP
2929 assert(m);
2930 assert(m->idle_pipe[2] == fd);
8742514c 2931
5a69973f
LP
2932 /* There's at least one Type=idle child that just gave up on us waiting for the boot process to complete. Let's
2933 * now turn off any further console output if there's at least one service that needs console access, so that
2934 * from now on our own output should not spill into that service's output anymore. After all, we support
2935 * Type=idle only to beautify console output and it generally is set on services that want to own the console
2936 * exclusively without our interference. */
718db961 2937 m->no_console_output = m->n_on_console > 0;
03b717a3 2938
5a69973f
LP
2939 /* Acknowledge the child's request, and let all all other children know too that they shouldn't wait any longer
2940 * by closing the pipes towards them, which is what they are waiting for. */
718db961 2941 manager_close_idle_pipe(m);
03b717a3 2942
718db961
LP
2943 return 0;
2944}
31a7eb86 2945
718db961
LP
2946static int manager_dispatch_jobs_in_progress(sd_event_source *source, usec_t usec, void *userdata) {
2947 Manager *m = userdata;
fd08a840 2948 int r;
31a7eb86 2949
718db961 2950 assert(m);
fd08a840 2951 assert(source);
9152c765 2952
718db961 2953 manager_print_jobs_in_progress(m);
fd08a840 2954
39cf0351 2955 r = sd_event_source_set_time_relative(source, JOBS_IN_PROGRESS_PERIOD_USEC);
fd08a840
ZJS
2956 if (r < 0)
2957 return r;
2958
2959 return sd_event_source_set_enabled(source, SD_EVENT_ONESHOT);
9152c765
LP
2960}
2961
2962int manager_loop(Manager *m) {
8c227e7f 2963 RateLimit rl = { .interval = 1*USEC_PER_SEC, .burst = 50000 };
9152c765 2964 int r;
9152c765
LP
2965
2966 assert(m);
1fb70e66 2967 assert(m->objective == MANAGER_OK); /* Ensure manager_startup() has been called */
9152c765 2968
b0c918b9
LP
2969 manager_check_finished(m);
2970
575b300b
LP
2971 /* There might still be some zombies hanging around from before we were exec()'ed. Let's reap them. */
2972 r = sd_event_source_set_enabled(m->sigchld_event_source, SD_EVENT_ON);
e96d6be7 2973 if (r < 0)
575b300b 2974 return log_error_errno(r, "Failed to enable SIGCHLD event source: %m");
a4312405 2975
af41e508 2976 while (m->objective == MANAGER_OK) {
986935cf 2977 usec_t wait_usec, watchdog_usec;
9152c765 2978
986935cf 2979 watchdog_usec = manager_get_watchdog(m, WATCHDOG_RUNTIME);
61927b9f 2980 if (m->runtime_watchdog_running)
bfeb927a 2981 (void) watchdog_ping();
61927b9f
MM
2982 else if (timestamp_is_set(watchdog_usec))
2983 manager_retry_runtime_watchdog(m);
e96d6be7 2984
7994ac1d 2985 if (!ratelimit_below(&rl)) {
ea430986
LP
2986 /* Yay, something is going seriously wrong, pause a little */
2987 log_warning("Looping too fast. Throttling execution a little.");
2988 sleep(1);
2989 }
2990
37a8e683 2991 if (manager_dispatch_load_queue(m) > 0)
23a177ef
LP
2992 continue;
2993
c5a97ed1
LP
2994 if (manager_dispatch_gc_job_queue(m) > 0)
2995 continue;
2996
2997 if (manager_dispatch_gc_unit_queue(m) > 0)
701cc384
LP
2998 continue;
2999
cf1265e1 3000 if (manager_dispatch_cleanup_queue(m) > 0)
c1e1601e 3001 continue;
034c6ed7 3002
91a6073e 3003 if (manager_dispatch_cgroup_realize_queue(m) > 0)
c1e1601e
LP
3004 continue;
3005
0bc488c9
LP
3006 if (manager_dispatch_start_when_upheld_queue(m) > 0)
3007 continue;
3008
56c59592
LP
3009 if (manager_dispatch_stop_when_bound_queue(m) > 0)
3010 continue;
3011
a3c1168a
LP
3012 if (manager_dispatch_stop_when_unneeded_queue(m) > 0)
3013 continue;
3014
c1e1601e 3015 if (manager_dispatch_dbus_queue(m) > 0)
ea430986 3016 continue;
ea430986 3017
c5f8a179 3018 /* Sleep for watchdog runtime wait time */
986935cf 3019 if (timestamp_is_set(watchdog_usec))
c5f8a179
AP
3020 wait_usec = watchdog_runtime_wait();
3021 else
3a43da28 3022 wait_usec = USEC_INFINITY;
9152c765 3023
718db961 3024 r = sd_event_run(m->event, wait_usec);
23bbb0de
MS
3025 if (r < 0)
3026 return log_error_errno(r, "Failed to run event loop: %m");
a16e1123 3027 }
957ca890 3028
af41e508 3029 return m->objective;
83c60c9f 3030}
ea430986 3031
718db961 3032int manager_load_unit_from_dbus_path(Manager *m, const char *s, sd_bus_error *e, Unit **_u) {
ede3a796 3033 _cleanup_free_ char *n = NULL;
4b58153d 3034 sd_id128_t invocation_id;
ea430986 3035 Unit *u;
80fbf05e 3036 int r;
ea430986
LP
3037
3038 assert(m);
3039 assert(s);
3040 assert(_u);
3041
ede3a796
LP
3042 r = unit_name_from_dbus_path(s, &n);
3043 if (r < 0)
3044 return r;
ea430986 3045
4b58153d
LP
3046 /* Permit addressing units by invocation ID: if the passed bus path is suffixed by a 128bit ID then we use it
3047 * as invocation ID. */
3048 r = sd_id128_from_string(n, &invocation_id);
3049 if (r >= 0) {
3050 u = hashmap_get(m->units_by_invocation_id, &invocation_id);
3051 if (u) {
3052 *_u = u;
3053 return 0;
3054 }
3055
930c124c
ZJS
3056 return sd_bus_error_setf(e, BUS_ERROR_NO_UNIT_FOR_INVOCATION_ID,
3057 "No unit with the specified invocation ID " SD_ID128_FORMAT_STR " known.",
3058 SD_ID128_FORMAT_VAL(invocation_id));
4b58153d
LP
3059 }
3060
00c83b43 3061 /* If this didn't work, we check if this is a unit name */
930c124c
ZJS
3062 if (!unit_name_is_valid(n, UNIT_NAME_PLAIN|UNIT_NAME_INSTANCE)) {
3063 _cleanup_free_ char *nn = NULL;
3064
3065 nn = cescape(n);
3066 return sd_bus_error_setf(e, SD_BUS_ERROR_INVALID_ARGS,
3067 "Unit name %s is neither a valid invocation ID nor unit name.", strnull(nn));
3068 }
00c83b43 3069
80fbf05e 3070 r = manager_load_unit(m, n, NULL, e, &u);
80fbf05e
MS
3071 if (r < 0)
3072 return r;
ea430986
LP
3073
3074 *_u = u;
ea430986
LP
3075 return 0;
3076}
86fbf370
LP
3077
3078int manager_get_job_from_dbus_path(Manager *m, const char *s, Job **_j) {
718db961 3079 const char *p;
86fbf370 3080 unsigned id;
718db961 3081 Job *j;
86fbf370
LP
3082 int r;
3083
3084 assert(m);
3085 assert(s);
3086 assert(_j);
3087
718db961
LP
3088 p = startswith(s, "/org/freedesktop/systemd1/job/");
3089 if (!p)
86fbf370
LP
3090 return -EINVAL;
3091
718db961 3092 r = safe_atou(p, &id);
8742514c 3093 if (r < 0)
86fbf370
LP
3094 return r;
3095
8742514c
LP
3096 j = manager_get_job(m, id);
3097 if (!j)
86fbf370
LP
3098 return -ENOENT;
3099
3100 *_j = j;
3101
3102 return 0;
3103}
dfcd764e 3104
4927fcae 3105void manager_send_unit_audit(Manager *m, Unit *u, int type, bool success) {
e537352b 3106
349cc4a5 3107#if HAVE_AUDIT
2ba11090 3108 _cleanup_free_ char *p = NULL;
0aa281df 3109 const char *msg;
7410616c 3110 int audit_fd, r;
e537352b 3111
463d0d15 3112 if (!MANAGER_IS_SYSTEM(m))
a1a078ee
LP
3113 return;
3114
c1165f82
LP
3115 audit_fd = get_audit_fd();
3116 if (audit_fd < 0)
e537352b
LP
3117 return;
3118
bbd3a7ba
LP
3119 /* Don't generate audit events if the service was already
3120 * started and we're just deserializing */
2c289ea8 3121 if (MANAGER_IS_RELOADING(m))
bbd3a7ba
LP
3122 return;
3123
ac155bb8 3124 if (u->type != UNIT_SERVICE)
f1dd0c3f
LP
3125 return;
3126
7410616c
LP
3127 r = unit_name_to_prefix_and_instance(u->id, &p);
3128 if (r < 0) {
3129 log_error_errno(r, "Failed to extract prefix and instance of unit name: %m");
e537352b
LP
3130 return;
3131 }
3132
63c372cb 3133 msg = strjoina("unit=", p);
0aa281df
LP
3134 if (audit_log_user_comm_message(audit_fd, type, msg, "systemd", NULL, NULL, NULL, success) < 0) {
3135 if (errno == EPERM)
391ade86 3136 /* We aren't allowed to send audit messages?
44785992 3137 * Then let's not retry again. */
c1165f82 3138 close_audit_fd();
0aa281df 3139 else
56f64d95 3140 log_warning_errno(errno, "Failed to send audit message: %m");
391ade86 3141 }
4927fcae 3142#endif
e537352b 3143
e537352b
LP
3144}
3145
e983b760 3146void manager_send_unit_plymouth(Manager *m, Unit *u) {
fc2fffe7 3147 static const union sockaddr_union sa = PLYMOUTH_SOCKET;
2ba11090
ZJS
3148 _cleanup_free_ char *message = NULL;
3149 _cleanup_close_ int fd = -1;
fc2fffe7 3150 int n = 0;
e983b760
LP
3151
3152 /* Don't generate plymouth events if the service was already
3153 * started and we're just deserializing */
2c289ea8 3154 if (MANAGER_IS_RELOADING(m))
e983b760
LP
3155 return;
3156
463d0d15 3157 if (!MANAGER_IS_SYSTEM(m))
e983b760
LP
3158 return;
3159
75f86906 3160 if (detect_container() > 0)
3772995a
LP
3161 return;
3162
ec2ce0c5 3163 if (!IN_SET(u->type, UNIT_SERVICE, UNIT_MOUNT, UNIT_SWAP))
e983b760
LP
3164 return;
3165
3166 /* We set SOCK_NONBLOCK here so that we rather drop the
3167 * message then wait for plymouth */
e62d8c39
ZJS
3168 fd = socket(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0);
3169 if (fd < 0) {
56f64d95 3170 log_error_errno(errno, "socket() failed: %m");
e983b760
LP
3171 return;
3172 }
3173
fc2fffe7 3174 if (connect(fd, &sa.sa, SOCKADDR_UN_LEN(sa.un)) < 0) {
f60a028a 3175 if (!IN_SET(errno, EAGAIN, ENOENT) && !ERRNO_IS_DISCONNECT(errno))
56f64d95 3176 log_error_errno(errno, "connect() failed: %m");
2ba11090 3177 return;
e983b760
LP
3178 }
3179
305757d8
ZJS
3180 if (asprintf(&message, "U\002%c%s%n", (int) (strlen(u->id) + 1), u->id, &n) < 0)
3181 return (void) log_oom();
e983b760
LP
3182
3183 errno = 0;
2ba11090 3184 if (write(fd, message, n + 1) != n + 1)
f60a028a 3185 if (!IN_SET(errno, EAGAIN, ENOENT) && !ERRNO_IS_DISCONNECT(errno))
56f64d95 3186 log_error_errno(errno, "Failed to write Plymouth message: %m");
e983b760
LP
3187}
3188
986935cf
FB
3189usec_t manager_get_watchdog(Manager *m, WatchdogType t) {
3190 assert(m);
3191
3192 if (MANAGER_IS_USER(m))
3193 return USEC_INFINITY;
3194
3195 if (timestamp_is_set(m->watchdog_overridden[t]))
3196 return m->watchdog_overridden[t];
3197
3198 return m->watchdog[t];
3199}
3200
3201void manager_set_watchdog(Manager *m, WatchdogType t, usec_t timeout) {
3202 int r = 0;
3203
3204 assert(m);
3205
3206 if (MANAGER_IS_USER(m))
3207 return;
3208
3209 if (m->watchdog[t] == timeout)
3210 return;
3211
3212 if (t == WATCHDOG_RUNTIME)
3213 if (!timestamp_is_set(m->watchdog_overridden[WATCHDOG_RUNTIME])) {
61927b9f 3214 if (timestamp_is_set(timeout)) {
986935cf 3215 r = watchdog_set_timeout(&timeout);
61927b9f
MM
3216
3217 if (r >= 0)
3218 m->runtime_watchdog_running = true;
3219 } else {
986935cf 3220 watchdog_close(true);
61927b9f
MM
3221 m->runtime_watchdog_running = false;
3222 }
986935cf
FB
3223 }
3224
61927b9f 3225 m->watchdog[t] = timeout;
986935cf
FB
3226}
3227
43bba15a 3228int manager_override_watchdog(Manager *m, WatchdogType t, usec_t timeout) {
986935cf
FB
3229 int r = 0;
3230
3231 assert(m);
3232
3233 if (MANAGER_IS_USER(m))
3234 return 0;
3235
3236 if (m->watchdog_overridden[t] == timeout)
3237 return 0;
3238
3239 if (t == WATCHDOG_RUNTIME) {
3240 usec_t *p;
3241
3242 p = timestamp_is_set(timeout) ? &timeout : &m->watchdog[t];
61927b9f 3243 if (timestamp_is_set(*p)) {
986935cf 3244 r = watchdog_set_timeout(p);
61927b9f
MM
3245
3246 if (r >= 0)
3247 m->runtime_watchdog_running = true;
3248 } else {
986935cf 3249 watchdog_close(true);
61927b9f
MM
3250 m->runtime_watchdog_running = false;
3251 }
986935cf
FB
3252 }
3253
61927b9f 3254 m->watchdog_overridden[t] = timeout;
986935cf
FB
3255
3256 return 0;
3257}
3258
61927b9f
MM
3259void manager_retry_runtime_watchdog(Manager *m) {
3260 int r = 0;
3261
3262 assert(m);
3263
3264 if (timestamp_is_set(m->watchdog_overridden[WATCHDOG_RUNTIME]))
3265 r = watchdog_set_timeout(&m->watchdog_overridden[WATCHDOG_RUNTIME]);
3266 else
3267 r = watchdog_set_timeout(&m->watchdog[WATCHDOG_RUNTIME]);
3268
3269 if (r >= 0)
3270 m->runtime_watchdog_running = true;
3271}
3272
a16e1123 3273int manager_reload(Manager *m) {
d147e2b6 3274 _cleanup_(manager_reloading_stopp) Manager *reloading = NULL;
51d122af 3275 _cleanup_fdset_free_ FDSet *fds = NULL;
6a33af40
LP
3276 _cleanup_fclose_ FILE *f = NULL;
3277 int r;
a16e1123
LP
3278
3279 assert(m);
3280
07719a21
LP
3281 r = manager_open_serialization(m, &f);
3282 if (r < 0)
6a33af40 3283 return log_error_errno(r, "Failed to create serialization file: %m");
38c52d46 3284
07719a21 3285 fds = fdset_new();
6a33af40
LP
3286 if (!fds)
3287 return log_oom();
3288
d147e2b6
ZJS
3289 /* We are officially in reload mode from here on. */
3290 reloading = manager_reloading_start(m);
a16e1123 3291
b3680f49 3292 r = manager_serialize(m, f, fds, false);
d147e2b6 3293 if (r < 0)
d68c645b 3294 return r;
a16e1123 3295
d147e2b6
ZJS
3296 if (fseeko(f, 0, SEEK_SET) < 0)
3297 return log_error_errno(errno, "Failed to seek to beginning of serialization: %m");
a16e1123 3298
6a33af40 3299 /* 💀 This is the point of no return, from here on there is no way back. 💀 */
d147e2b6 3300 reloading = NULL;
6a33af40
LP
3301
3302 bus_manager_send_reloading(m, true);
3303
3304 /* Start by flushing out all jobs and units, all generated units, all runtime environments, all dynamic users
3305 * and everything else that is worth flushing out. We'll get it all back from the serialization — if we need
7802194a 3306 * it. */
6a33af40 3307
a16e1123 3308 manager_clear_jobs_and_units(m);
07a78643 3309 lookup_paths_flush_generator(&m->lookup_paths);
84e3543e 3310 lookup_paths_free(&m->lookup_paths);
e8a565cb 3311 exec_runtime_vacuum(m);
29206d46 3312 dynamic_user_vacuum(m, false);
00d9ef85
LP
3313 m->uid_refs = hashmap_free(m->uid_refs);
3314 m->gid_refs = hashmap_free(m->gid_refs);
2ded0c04 3315
7c3733d5 3316 r = lookup_paths_init(&m->lookup_paths, m->unit_file_scope, 0, NULL);
6a33af40
LP
3317 if (r < 0)
3318 log_warning_errno(r, "Failed to initialize path lookup table, ignoring: %m");
5a1e9937 3319
6a33af40
LP
3320 (void) manager_run_environment_generators(m);
3321 (void) manager_run_generators(m);
64691d20 3322
581fef8d 3323 lookup_paths_log(&m->lookup_paths);
07719a21 3324
91e0ee5f 3325 /* We flushed out generated files, for which we don't watch mtime, so we should flush the old map. */
e8630e69 3326 manager_free_unit_name_maps(m);
5a1e9937 3327
6a33af40 3328 /* First, enumerate what we can from kernel and suchlike */
3ad2afb6 3329 manager_enumerate_perpetual(m);
ba64af90 3330 manager_enumerate(m);
a16e1123
LP
3331
3332 /* Second, deserialize our stored data */
6a33af40
LP
3333 r = manager_deserialize(m, f, fds);
3334 if (r < 0)
3335 log_warning_errno(r, "Deserialization failed, proceeding anyway: %m");
a16e1123 3336
6a33af40 3337 /* We don't need the serialization anymore */
62b0cbb3 3338 f = safe_fclose(f);
a16e1123 3339
6a33af40
LP
3340 /* Re-register notify_fd as event source, and set up other sockets/communication channels we might need */
3341 (void) manager_setup_notify(m);
3342 (void) manager_setup_cgroups_agent(m);
3343 (void) manager_setup_user_lookup_fd(m);
00d9ef85 3344
a16e1123 3345 /* Third, fire things up! */
007c6337 3346 manager_coldplug(m);
a16e1123 3347
5197be06
LP
3348 /* Clean up runtime objects no longer referenced */
3349 manager_vacuum(m);
e8a565cb 3350
3deed59a
AA
3351 /* Clean up deserialized tracked clients */
3352 m->deserialized_subscribed = strv_free(m->deserialized_subscribed);
3353
6a33af40 3354 /* Consider the reload process complete now. */
31dc1ca3
LP
3355 assert(m->n_reloading > 0);
3356 m->n_reloading--;
3357
c6e892bc
YW
3358 /* On manager reloading, device tag data should exists, thus, we should honor the results of device
3359 * enumeration. The flag should be always set correctly by the serialized data, but it may fail. So,
3360 * let's always set the flag here for safety. */
3361 m->honor_device_enumeration = true;
3362
5ce5e1ad 3363 manager_ready(m);
8936a5e3 3364
71445ae7 3365 m->send_reloading_done = true;
6a33af40 3366 return 0;
a16e1123
LP
3367}
3368
fdf20a31 3369void manager_reset_failed(Manager *m) {
5632e374 3370 Unit *u;
5632e374
LP
3371
3372 assert(m);
3373
90e74a66 3374 HASHMAP_FOREACH(u, m->units)
fdf20a31 3375 unit_reset_failed(u);
5632e374
LP
3376}
3377
31afa0a4 3378bool manager_unit_inactive_or_pending(Manager *m, const char *name) {
8f6df3fa
LP
3379 Unit *u;
3380
3381 assert(m);
3382 assert(name);
3383
3384 /* Returns true if the unit is inactive or going down */
bd0af849
ZJS
3385 u = manager_get_unit(m, name);
3386 if (!u)
8f6df3fa
LP
3387 return true;
3388
31afa0a4 3389 return unit_inactive_or_pending(u);
8f6df3fa
LP
3390}
3391
d8eb10d6
ZJS
3392static void log_taint_string(Manager *m) {
3393 _cleanup_free_ char *taint = NULL;
3394
3395 assert(m);
3396
3397 if (MANAGER_IS_USER(m) || m->taint_logged)
3398 return;
3399
3400 m->taint_logged = true; /* only check for taint once */
3401
3402 taint = manager_taint_string(m);
3403 if (isempty(taint))
3404 return;
3405
3406 log_struct(LOG_NOTICE,
3407 LOG_MESSAGE("System is tainted: %s", taint),
3408 "TAINT=%s", taint,
a1230ff9 3409 "MESSAGE_ID=" SD_MESSAGE_TAINTED_STR);
d8eb10d6
ZJS
3410}
3411
56dacdbc 3412static void manager_notify_finished(Manager *m) {
915b3753 3413 usec_t firmware_usec, loader_usec, kernel_usec, initrd_usec, userspace_usec, total_usec;
b0c918b9 3414
638cece4 3415 if (MANAGER_IS_TEST_RUN(m))
b0c918b9
LP
3416 return;
3417
463d0d15 3418 if (MANAGER_IS_SYSTEM(m) && detect_container() <= 0) {
dc3c9f5e
ZJS
3419 char buf[FORMAT_TIMESPAN_MAX + STRLEN(" (firmware) + ") + FORMAT_TIMESPAN_MAX + STRLEN(" (loader) + ")]
3420 = {};
3421 char *p = buf;
3422 size_t size = sizeof buf;
e03ae661 3423
9f9f0342
LP
3424 /* Note that MANAGER_TIMESTAMP_KERNEL's monotonic value is always at 0, and
3425 * MANAGER_TIMESTAMP_FIRMWARE's and MANAGER_TIMESTAMP_LOADER's monotonic value should be considered
915b3753
LP
3426 * negative values. */
3427
9f9f0342
LP
3428 firmware_usec = m->timestamps[MANAGER_TIMESTAMP_FIRMWARE].monotonic - m->timestamps[MANAGER_TIMESTAMP_LOADER].monotonic;
3429 loader_usec = m->timestamps[MANAGER_TIMESTAMP_LOADER].monotonic - m->timestamps[MANAGER_TIMESTAMP_KERNEL].monotonic;
3430 userspace_usec = m->timestamps[MANAGER_TIMESTAMP_FINISH].monotonic - m->timestamps[MANAGER_TIMESTAMP_USERSPACE].monotonic;
3431 total_usec = m->timestamps[MANAGER_TIMESTAMP_FIRMWARE].monotonic + m->timestamps[MANAGER_TIMESTAMP_FINISH].monotonic;
18fa6b27 3432
dd1db3c2 3433 if (firmware_usec > 0)
5291f26d 3434 size = strpcpyf(&p, size, "%s (firmware) + ", FORMAT_TIMESPAN(firmware_usec, USEC_PER_MSEC));
dd1db3c2 3435 if (loader_usec > 0)
5291f26d 3436 size = strpcpyf(&p, size, "%s (loader) + ", FORMAT_TIMESPAN(loader_usec, USEC_PER_MSEC));
dd1db3c2 3437
9f9f0342 3438 if (dual_timestamp_is_set(&m->timestamps[MANAGER_TIMESTAMP_INITRD])) {
18fa6b27 3439
7802194a 3440 /* The initrd case on bare-metal */
9f9f0342
LP
3441 kernel_usec = m->timestamps[MANAGER_TIMESTAMP_INITRD].monotonic - m->timestamps[MANAGER_TIMESTAMP_KERNEL].monotonic;
3442 initrd_usec = m->timestamps[MANAGER_TIMESTAMP_USERSPACE].monotonic - m->timestamps[MANAGER_TIMESTAMP_INITRD].monotonic;
18fa6b27 3443
e12919e8 3444 log_struct(LOG_INFO,
2b044526 3445 "MESSAGE_ID=" SD_MESSAGE_STARTUP_FINISHED_STR,
e12919e8
LP
3446 "KERNEL_USEC="USEC_FMT, kernel_usec,
3447 "INITRD_USEC="USEC_FMT, initrd_usec,
3448 "USERSPACE_USEC="USEC_FMT, userspace_usec,
dd1db3c2
YW
3449 LOG_MESSAGE("Startup finished in %s%s (kernel) + %s (initrd) + %s (userspace) = %s.",
3450 buf,
5291f26d
ZJS
3451 FORMAT_TIMESPAN(kernel_usec, USEC_PER_MSEC),
3452 FORMAT_TIMESPAN(initrd_usec, USEC_PER_MSEC),
3453 FORMAT_TIMESPAN(userspace_usec, USEC_PER_MSEC),
3454 FORMAT_TIMESPAN(total_usec, USEC_PER_MSEC)));
18fa6b27 3455 } else {
7802194a 3456 /* The initrd-less case on bare-metal */
9f9f0342
LP
3457
3458 kernel_usec = m->timestamps[MANAGER_TIMESTAMP_USERSPACE].monotonic - m->timestamps[MANAGER_TIMESTAMP_KERNEL].monotonic;
18fa6b27
LP
3459 initrd_usec = 0;
3460
81270860 3461 log_struct(LOG_INFO,
2b044526 3462 "MESSAGE_ID=" SD_MESSAGE_STARTUP_FINISHED_STR,
e12919e8 3463 "KERNEL_USEC="USEC_FMT, kernel_usec,
ccd06097 3464 "USERSPACE_USEC="USEC_FMT, userspace_usec,
dd1db3c2
YW
3465 LOG_MESSAGE("Startup finished in %s%s (kernel) + %s (userspace) = %s.",
3466 buf,
5291f26d
ZJS
3467 FORMAT_TIMESPAN(kernel_usec, USEC_PER_MSEC),
3468 FORMAT_TIMESPAN(userspace_usec, USEC_PER_MSEC),
3469 FORMAT_TIMESPAN(total_usec, USEC_PER_MSEC)));
e12919e8
LP
3470 }
3471 } else {
4adf314b 3472 /* The container and --user case */
e12919e8 3473 firmware_usec = loader_usec = initrd_usec = kernel_usec = 0;
9f9f0342 3474 total_usec = userspace_usec = m->timestamps[MANAGER_TIMESTAMP_FINISH].monotonic - m->timestamps[MANAGER_TIMESTAMP_USERSPACE].monotonic;
e12919e8
LP
3475
3476 log_struct(LOG_INFO,
2b044526 3477 "MESSAGE_ID=" SD_MESSAGE_USER_STARTUP_FINISHED_STR,
e12919e8 3478 "USERSPACE_USEC="USEC_FMT, userspace_usec,
e2cc6eca 3479 LOG_MESSAGE("Startup finished in %s.",
5291f26d 3480 FORMAT_TIMESPAN(total_usec, USEC_PER_MSEC)));
18fa6b27 3481 }
b0c918b9 3482
718db961 3483 bus_manager_send_finished(m, firmware_usec, loader_usec, kernel_usec, initrd_usec, userspace_usec, total_usec);
530345e7 3484
d8eb10d6 3485 log_taint_string(m);
b0c918b9
LP
3486}
3487
6d932659 3488static void user_manager_send_ready(Manager *m) {
4adf314b
LP
3489 assert(m);
3490
3491 /* We send READY=1 on reaching basic.target only when running in --user mode. */
3492 if (!MANAGER_IS_USER(m) || m->ready_sent)
3493 return;
3494
4adf314b
LP
3495 sd_notifyf(false,
3496 "READY=1\n"
3497 "STATUS=Reached " SPECIAL_BASIC_TARGET ".");
6d932659
ZJS
3498 m->ready_sent = true;
3499 m->status_ready = false;
3500}
3501
3502static void manager_send_ready(Manager *m) {
3503 if (m->ready_sent && m->status_ready)
3504 /* Skip the notification if nothing changed. */
3505 return;
3506
3507 sd_notifyf(false,
3508 "%sSTATUS=Ready.",
3509 m->ready_sent ? "READY=1\n" : "");
3510 m->ready_sent = m->status_ready = true;
4adf314b
LP
3511}
3512
3513static void manager_check_basic_target(Manager *m) {
3514 Unit *u;
3515
3516 assert(m);
3517
3518 /* Small shortcut */
3519 if (m->ready_sent && m->taint_logged)
3520 return;
3521
3522 u = manager_get_unit(m, SPECIAL_BASIC_TARGET);
3523 if (!u || !UNIT_IS_ACTIVE_OR_RELOADING(unit_active_state(u)))
3524 return;
3525
3526 /* For user managers, send out READY=1 as soon as we reach basic.target */
6d932659 3527 user_manager_send_ready(m);
4adf314b
LP
3528
3529 /* Log the taint string as soon as we reach basic.target */
3530 log_taint_string(m);
3531}
3532
56dacdbc 3533void manager_check_finished(Manager *m) {
56dacdbc
ZJS
3534 assert(m);
3535
2c289ea8 3536 if (MANAGER_IS_RELOADING(m))
aad1976f
LP
3537 return;
3538
4259d202
LP
3539 /* Verify that we have entered the event loop already, and not left it again. */
3540 if (!MANAGER_IS_RUNNING(m))
9771b62d
LP
3541 return;
3542
4adf314b 3543 manager_check_basic_target(m);
0c2826c6 3544
56dacdbc 3545 if (hashmap_size(m->jobs) > 0) {
56dacdbc 3546 if (m->jobs_in_progress_event_source)
2ae56591 3547 /* Ignore any failure, this is only for feedback */
1b4154a8
ZJS
3548 (void) sd_event_source_set_time(m->jobs_in_progress_event_source,
3549 manager_watch_jobs_next_time(m));
56dacdbc
ZJS
3550 return;
3551 }
3552
a4ac27c1
ZJS
3553 /* The jobs hashmap tends to grow a lot during boot, and then it's not reused until shutdown. Let's
3554 kill the hashmap if it is relatively large. */
3555 if (hashmap_buckets(m->jobs) > hashmap_size(m->units) / 10)
3556 m->jobs = hashmap_free(m->jobs);
3557
6d932659
ZJS
3558 manager_send_ready(m);
3559
3560 if (MANAGER_IS_FINISHED(m))
3561 return;
3562
7365a296 3563 manager_flip_auto_status(m, false, "boot finished");
56dacdbc
ZJS
3564
3565 /* Notify Type=idle units that we are done now */
56dacdbc
ZJS
3566 manager_close_idle_pipe(m);
3567
3568 /* Turn off confirm spawn now */
7d5ceb64 3569 m->confirm_spawn = NULL;
56dacdbc
ZJS
3570
3571 /* No need to update ask password status when we're going non-interactive */
3572 manager_close_ask_password(m);
3573
3574 /* This is no longer the first boot */
3575 manager_set_first_boot(m, false);
3576
9f9f0342 3577 dual_timestamp_get(m->timestamps + MANAGER_TIMESTAMP_FINISH);
56dacdbc
ZJS
3578
3579 manager_notify_finished(m);
3580
e7ab4d1a 3581 manager_invalidate_startup_units(m);
56dacdbc
ZJS
3582}
3583
64691d20
ZJS
3584static bool generator_path_any(const char* const* paths) {
3585 char **path;
3586 bool found = false;
3587
3588 /* Optimize by skipping the whole process by not creating output directories
3589 * if no generators are found. */
3590 STRV_FOREACH(path, (char**) paths)
3591 if (access(*path, F_OK) == 0)
3592 found = true;
3593 else if (errno != ENOENT)
3594 log_warning_errno(errno, "Failed to open generator directory %s: %m", *path);
3595
3596 return found;
3597}
3598
64691d20
ZJS
3599static int manager_run_environment_generators(Manager *m) {
3600 char **tmp = NULL; /* this is only used in the forked process, no cleanup here */
cccf5703 3601 _cleanup_strv_free_ char **paths = NULL;
1ad6e8b3
LP
3602 void* args[] = {
3603 [STDOUT_GENERATE] = &tmp,
3604 [STDOUT_COLLECT] = &tmp,
3605 [STDOUT_CONSUME] = &m->transient_environment,
3606 };
e3b8d063 3607 int r;
64691d20 3608
638cece4 3609 if (MANAGER_IS_TEST_RUN(m) && !(m->test_run_flags & MANAGER_TEST_RUN_ENV_GENERATORS))
e0a3da1f
ZJS
3610 return 0;
3611
cccf5703
BB
3612 paths = env_generator_binary_paths(MANAGER_IS_SYSTEM(m));
3613 if (!paths)
3614 return log_oom();
64691d20 3615
cccf5703 3616 if (!generator_path_any((const char* const*) paths))
64691d20
ZJS
3617 return 0;
3618
e3b8d063 3619 RUN_WITH_UMASK(0022)
cccf5703 3620 r = execute_directories((const char* const*) paths, DEFAULT_TIMEOUT_USEC, gather_environment,
43f565c6
YW
3621 args, NULL, m->transient_environment,
3622 EXEC_DIR_PARALLEL | EXEC_DIR_IGNORE_ERRORS | EXEC_DIR_SET_SYSTEMD_EXEC_PID);
e3b8d063 3623 return r;
64691d20
ZJS
3624}
3625
e801700e 3626static int manager_run_generators(Manager *m) {
f42348ac 3627 _cleanup_strv_free_ char **paths = NULL;
07719a21 3628 const char *argv[5];
07719a21 3629 int r;
5a1e9937
LP
3630
3631 assert(m);
3632
638cece4 3633 if (MANAGER_IS_TEST_RUN(m) && !(m->test_run_flags & MANAGER_TEST_RUN_GENERATORS))
e0a3da1f
ZJS
3634 return 0;
3635
9183df70 3636 paths = generator_binary_paths(m->unit_file_scope);
e801700e
ZJS
3637 if (!paths)
3638 return log_oom();
5a1e9937 3639
64691d20
ZJS
3640 if (!generator_path_any((const char* const*) paths))
3641 return 0;
5a1e9937 3642
cd64fd56 3643 r = lookup_paths_mkdir_generator(&m->lookup_paths);
7eb4f326
LP
3644 if (r < 0) {
3645 log_error_errno(r, "Failed to create generator directories: %m");
07719a21 3646 goto finish;
7eb4f326 3647 }
5a1e9937 3648
83cc030f 3649 argv[0] = NULL; /* Leave this empty, execute_directory() will fill something in */
a3c4eb07
LP
3650 argv[1] = m->lookup_paths.generator;
3651 argv[2] = m->lookup_paths.generator_early;
3652 argv[3] = m->lookup_paths.generator_late;
07719a21 3653 argv[4] = NULL;
5a1e9937 3654
718db961 3655 RUN_WITH_UMASK(0022)
4b05f0c9 3656 (void) execute_directories((const char* const*) paths, DEFAULT_TIMEOUT_USEC, NULL, NULL,
43f565c6
YW
3657 (char**) argv, m->transient_environment,
3658 EXEC_DIR_PARALLEL | EXEC_DIR_IGNORE_ERRORS | EXEC_DIR_SET_SYSTEMD_EXEC_PID);
7eb4f326
LP
3659
3660 r = 0;
5a1e9937 3661
718db961 3662finish:
cd64fd56 3663 lookup_paths_trim_generator(&m->lookup_paths);
e801700e 3664 return r;
5a1e9937
LP
3665}
3666
1ad6e8b3
LP
3667int manager_transient_environment_add(Manager *m, char **plus) {
3668 char **a;
3669
3670 assert(m);
3671
3672 if (strv_isempty(plus))
3673 return 0;
3674
3675 a = strv_env_merge(2, m->transient_environment, plus);
3676 if (!a)
2fbbbf9a 3677 return log_oom();
1ad6e8b3
LP
3678
3679 sanitize_environment(a);
3680
3681 return strv_free_and_replace(m->transient_environment, a);
3682}
3683
3684int manager_client_environment_modify(
3685 Manager *m,
3686 char **minus,
3687 char **plus) {
3688
718db961 3689 char **a = NULL, **b = NULL, **l;
1ad6e8b3 3690
97d0e5f8 3691 assert(m);
bcd8e6d1 3692
1ad6e8b3
LP
3693 if (strv_isempty(minus) && strv_isempty(plus))
3694 return 0;
3695
3696 l = m->client_environment;
bcd8e6d1 3697
718db961
LP
3698 if (!strv_isempty(minus)) {
3699 a = strv_env_delete(l, 1, minus);
3700 if (!a)
3701 return -ENOMEM;
3702
3703 l = a;
3704 }
3705
3706 if (!strv_isempty(plus)) {
3707 b = strv_env_merge(2, l, plus);
aa9f8a30
AH
3708 if (!b) {
3709 strv_free(a);
718db961 3710 return -ENOMEM;
aa9f8a30 3711 }
bcd8e6d1 3712
718db961
LP
3713 l = b;
3714 }
3715
1ad6e8b3
LP
3716 if (m->client_environment != l)
3717 strv_free(m->client_environment);
3718
718db961
LP
3719 if (a != l)
3720 strv_free(a);
3721 if (b != l)
3722 strv_free(b);
3723
1ad6e8b3
LP
3724 m->client_environment = sanitize_environment(l);
3725 return 0;
3726}
3727
3728int manager_get_effective_environment(Manager *m, char ***ret) {
3729 char **l;
3730
3731 assert(m);
3732 assert(ret);
3733
3734 l = strv_env_merge(2, m->transient_environment, m->client_environment);
3735 if (!l)
3736 return -ENOMEM;
f069efb4 3737
1ad6e8b3 3738 *ret = l;
97d0e5f8
UTL
3739 return 0;
3740}
3741
c93ff2e9 3742int manager_set_default_rlimits(Manager *m, struct rlimit **default_rlimit) {
c93ff2e9
FC
3743 assert(m);
3744
5b10116e 3745 for (unsigned i = 0; i < _RLIMIT_MAX; i++) {
d9814c76
EV
3746 m->rlimit[i] = mfree(m->rlimit[i]);
3747
07719a21
LP
3748 if (!default_rlimit[i])
3749 continue;
c93ff2e9 3750
07719a21
LP
3751 m->rlimit[i] = newdup(struct rlimit, default_rlimit[i], 1);
3752 if (!m->rlimit[i])
3ce40911 3753 return log_oom();
c93ff2e9
FC
3754 }
3755
3756 return 0;
3757}
3758
8559b3b7
LP
3759void manager_recheck_dbus(Manager *m) {
3760 assert(m);
3761
3762 /* Connects to the bus if the dbus service and socket are running. If we are running in user mode this is all
3763 * it does. In system mode we'll also connect to the system bus (which will most likely just reuse the
3764 * connection of the API bus). That's because the system bus after all runs as service of the system instance,
3765 * while in the user instance we can assume it's already there. */
3766
31dc1ca3
LP
3767 if (MANAGER_IS_RELOADING(m))
3768 return; /* don't check while we are reloading… */
3769
8559b3b7
LP
3770 if (manager_dbus_is_running(m, false)) {
3771 (void) bus_init_api(m);
3772
3773 if (MANAGER_IS_SYSTEM(m))
3774 (void) bus_init_system(m);
3775 } else {
3776 (void) bus_done_api(m);
3777
3778 if (MANAGER_IS_SYSTEM(m))
3779 (void) bus_done_system(m);
3780 }
3781}
3782
d075092f 3783static bool manager_journal_is_running(Manager *m) {
f1dd0c3f
LP
3784 Unit *u;
3785
3786 assert(m);
3787
638cece4 3788 if (MANAGER_IS_TEST_RUN(m))
7d814a19
LP
3789 return false;
3790
d075092f 3791 /* If we are the user manager we can safely assume that the journal is up */
463d0d15 3792 if (!MANAGER_IS_SYSTEM(m))
d075092f 3793 return true;
f1dd0c3f 3794
d075092f 3795 /* Check that the socket is not only up, but in RUNNING state */
731a676c 3796 u = manager_get_unit(m, SPECIAL_JOURNALD_SOCKET);
d075092f
LP
3797 if (!u)
3798 return false;
3799 if (SOCKET(u)->state != SOCKET_RUNNING)
3800 return false;
f1dd0c3f 3801
d075092f 3802 /* Similar, check if the daemon itself is fully up, too */
731a676c 3803 u = manager_get_unit(m, SPECIAL_JOURNALD_SERVICE);
d075092f
LP
3804 if (!u)
3805 return false;
217677ab 3806 if (!IN_SET(SERVICE(u)->state, SERVICE_RELOAD, SERVICE_RUNNING))
d075092f
LP
3807 return false;
3808
3809 return true;
3810}
3811
6123dfaa
ZJS
3812void disable_printk_ratelimit(void) {
3813 /* Disable kernel's printk ratelimit.
3814 *
3815 * Logging to /dev/kmsg is most useful during early boot and shutdown, where normal logging
3816 * mechanisms are not available. The semantics of this sysctl are such that any kernel command-line
3817 * setting takes precedence. */
3818 int r;
3819
3820 r = sysctl_write("kernel/printk_devkmsg", "on");
3821 if (r < 0)
3822 log_debug_errno(r, "Failed to set sysctl kernel.printk_devkmsg=on: %m");
3823}
3824
d075092f
LP
3825void manager_recheck_journal(Manager *m) {
3826
3827 assert(m);
3828
3829 /* Don't bother with this unless we are in the special situation of being PID 1 */
3830 if (getpid_cached() != 1)
731a676c 3831 return;
f1dd0c3f 3832
31dc1ca3
LP
3833 /* Don't check this while we are reloading, things might still change */
3834 if (MANAGER_IS_RELOADING(m))
3835 return;
3836
cedf5088
LP
3837 /* The journal is fully and entirely up? If so, let's permit logging to it, if that's configured. If the
3838 * journal is down, don't ever log to it, otherwise we might end up deadlocking ourselves as we might trigger
3839 * an activation ourselves we can't fulfill. */
3840 log_set_prohibit_ipc(!manager_journal_is_running(m));
cc2b9e6b 3841 log_open();
f1dd0c3f
LP
3842}
3843
44a41954
FB
3844static ShowStatus manager_get_show_status(Manager *m) {
3845 assert(m);
3846
3847 if (MANAGER_IS_USER(m))
3848 return _SHOW_STATUS_INVALID;
3849
3850 if (m->show_status_overridden != _SHOW_STATUS_INVALID)
3851 return m->show_status_overridden;
3852
3853 return m->show_status;
3854}
3855
3856bool manager_get_show_status_on(Manager *m) {
3857 assert(m);
3858
3859 return show_status_on(manager_get_show_status(m));
3860}
b309078a 3861
3ceb3471
FB
3862static void set_show_status_marker(bool b) {
3863 if (b)
3864 (void) touch("/run/systemd/show-status");
3865 else
3866 (void) unlink("/run/systemd/show-status");
3867}
3868
44a41954 3869void manager_set_show_status(Manager *m, ShowStatus mode, const char *reason) {
27d340c7 3870 assert(m);
44a41954 3871 assert(reason);
0d066dd1 3872 assert(mode >= 0 && mode < _SHOW_STATUS_MAX);
27d340c7 3873
44a41954 3874 if (MANAGER_IS_USER(m))
27d340c7
LP
3875 return;
3876
ef15d3e1
ZJS
3877 if (mode == m->show_status)
3878 return;
3879
44a41954
FB
3880 if (m->show_status_overridden == _SHOW_STATUS_INVALID) {
3881 bool enabled;
3882
3883 enabled = show_status_on(mode);
3884 log_debug("%s (%s) showing of status (%s).",
3885 enabled ? "Enabling" : "Disabling",
3886 strna(show_status_to_string(mode)),
3887 reason);
3888
3ceb3471 3889 set_show_status_marker(enabled);
44a41954
FB
3890 }
3891
3892 m->show_status = mode;
3893}
3894
43bba15a 3895void manager_override_show_status(Manager *m, ShowStatus mode, const char *reason) {
44a41954
FB
3896 assert(m);
3897 assert(mode < _SHOW_STATUS_MAX);
3898
3899 if (MANAGER_IS_USER(m))
3900 return;
3901
3902 if (mode == m->show_status_overridden)
3903 return;
3904
3905 m->show_status_overridden = mode;
3906
3907 if (mode == _SHOW_STATUS_INVALID)
3908 mode = m->show_status;
3909
ef15d3e1 3910 log_debug("%s (%s) showing of status (%s).",
44a41954 3911 m->show_status_overridden != _SHOW_STATUS_INVALID ? "Overriding" : "Restoring",
ef15d3e1
ZJS
3912 strna(show_status_to_string(mode)),
3913 reason);
b309078a 3914
3ceb3471 3915 set_show_status_marker(show_status_on(mode));
27d340c7
LP
3916}
3917
7d5ceb64
FB
3918const char *manager_get_confirm_spawn(Manager *m) {
3919 static int last_errno = 0;
7d5ceb64
FB
3920 struct stat st;
3921 int r;
3922
ea758432
LP
3923 assert(m);
3924
7d5ceb64
FB
3925 /* Here's the deal: we want to test the validity of the console but don't want
3926 * PID1 to go through the whole console process which might block. But we also
3927 * want to warn the user only once if something is wrong with the console so we
3928 * cannot do the sanity checks after spawning our children. So here we simply do
3929 * really basic tests to hopefully trap common errors.
3930 *
3931 * If the console suddenly disappear at the time our children will really it
3932 * then they will simply fail to acquire it and a positive answer will be
2aed63f4 3933 * assumed. New children will fall back to /dev/console though.
7d5ceb64
FB
3934 *
3935 * Note: TTYs are devices that can come and go any time, and frequently aren't
3936 * available yet during early boot (consider a USB rs232 dongle...). If for any
2aed63f4 3937 * reason the configured console is not ready, we fall back to the default
7d5ceb64
FB
3938 * console. */
3939
ea758432
LP
3940 if (!m->confirm_spawn || path_equal(m->confirm_spawn, "/dev/console"))
3941 return m->confirm_spawn;
7d5ceb64 3942
ea758432
LP
3943 if (stat(m->confirm_spawn, &st) < 0) {
3944 r = -errno;
7d5ceb64 3945 goto fail;
ea758432 3946 }
7d5ceb64
FB
3947
3948 if (!S_ISCHR(st.st_mode)) {
ea758432 3949 r = -ENOTTY;
7d5ceb64
FB
3950 goto fail;
3951 }
3952
3953 last_errno = 0;
ea758432
LP
3954 return m->confirm_spawn;
3955
7d5ceb64 3956fail:
ea758432
LP
3957 if (last_errno != r)
3958 last_errno = log_warning_errno(r, "Failed to open %s, using default console: %m", m->confirm_spawn);
3959
7d5ceb64
FB
3960 return "/dev/console";
3961}
3962
e2680723
LP
3963void manager_set_first_boot(Manager *m, bool b) {
3964 assert(m);
3965
463d0d15 3966 if (!MANAGER_IS_SYSTEM(m))
e2680723
LP
3967 return;
3968
ae2a2c53
LP
3969 if (m->first_boot != (int) b) {
3970 if (b)
3971 (void) touch("/run/systemd/first-boot");
3972 else
3973 (void) unlink("/run/systemd/first-boot");
3974 }
e2680723 3975
ae2a2c53 3976 m->first_boot = b;
e2680723
LP
3977}
3978
b0eb2944
FB
3979void manager_disable_confirm_spawn(void) {
3980 (void) touch("/run/systemd/confirm_spawn_disabled");
3981}
3982
3983bool manager_is_confirm_spawn_disabled(Manager *m) {
3984 if (!m->confirm_spawn)
3985 return true;
3986
3987 return access("/run/systemd/confirm_spawn_disabled", F_OK) >= 0;
3988}
3989
0d6d3cf0
FB
3990static bool manager_should_show_status(Manager *m, StatusType type) {
3991 assert(m);
3992
3993 if (!MANAGER_IS_SYSTEM(m))
3994 return false;
3995
3996 if (m->no_console_output)
3997 return false;
3998
3999 if (!IN_SET(manager_state(m), MANAGER_INITIALIZING, MANAGER_STARTING, MANAGER_STOPPING))
4000 return false;
4001
4002 /* If we cannot find out the status properly, just proceed. */
4003 if (type != STATUS_TYPE_EMERGENCY && manager_check_ask_password(m) > 0)
4004 return false;
4005
4006 if (type == STATUS_TYPE_NOTICE && m->show_status != SHOW_STATUS_NO)
4007 return true;
4008
44a41954 4009 return manager_get_show_status_on(m);
0d6d3cf0
FB
4010}
4011
127d5fd1 4012void manager_status_printf(Manager *m, StatusType type, const char *status, const char *format, ...) {
25cee550
MS
4013 va_list ap;
4014
cb6531be
ZJS
4015 /* If m is NULL, assume we're after shutdown and let the messages through. */
4016
0d6d3cf0 4017 if (m && !manager_should_show_status(m, type))
25cee550
MS
4018 return;
4019
03b717a3
MS
4020 /* XXX We should totally drop the check for ephemeral here
4021 * and thus effectively make 'Type=idle' pointless. */
cb6531be 4022 if (type == STATUS_TYPE_EPHEMERAL && m && m->n_on_console > 0)
03b717a3
MS
4023 return;
4024
25cee550 4025 va_start(ap, format);
a885727a 4026 status_vprintf(status, SHOW_STATUS_ELLIPSIZE|(type == STATUS_TYPE_EPHEMERAL ? SHOW_STATUS_EPHEMERAL : 0), format, ap);
25cee550
MS
4027 va_end(ap);
4028}
4029
ac19bdd0 4030Set* manager_get_units_requiring_mounts_for(Manager *m, const char *path) {
a57f7e2c
LP
4031 assert(m);
4032 assert(path);
4033
ac19bdd0
ZJS
4034 if (path_equal(path, "/"))
4035 path = "";
a57f7e2c 4036
ac19bdd0 4037 return hashmap_get(m->units_requiring_mounts_for, path);
a57f7e2c 4038}
e66cf1a3 4039
5269eb6b 4040int manager_update_failed_units(Manager *m, Unit *u, bool failed) {
03455c28 4041 unsigned size;
5269eb6b 4042 int r;
03455c28
LDM
4043
4044 assert(m);
4045 assert(u->manager == m);
4046
4047 size = set_size(m->failed_units);
4048
9fff8981 4049 if (failed) {
de7fef4b 4050 r = set_ensure_put(&m->failed_units, NULL, u);
5269eb6b
LP
4051 if (r < 0)
4052 return log_oom();
9fff8981 4053 } else
5269eb6b 4054 (void) set_remove(m->failed_units, u);
03455c28
LDM
4055
4056 if (set_size(m->failed_units) != size)
4057 bus_manager_send_change_signal(m);
5269eb6b
LP
4058
4059 return 0;
03455c28
LDM
4060}
4061
f755e3b7
LP
4062ManagerState manager_state(Manager *m) {
4063 Unit *u;
4064
4065 assert(m);
4066
f9d29f6d
JB
4067 /* Is the special shutdown target active or queued? If so, we are in shutdown state */
4068 u = manager_get_unit(m, SPECIAL_SHUTDOWN_TARGET);
4069 if (u && unit_active_or_pending(u))
4070 return MANAGER_STOPPING;
4071
f755e3b7 4072 /* Did we ever finish booting? If not then we are still starting up */
49d5666c 4073 if (!MANAGER_IS_FINISHED(m)) {
d81afec1
LP
4074
4075 u = manager_get_unit(m, SPECIAL_BASIC_TARGET);
4076 if (!u || !UNIT_IS_ACTIVE_OR_RELOADING(unit_active_state(u)))
4077 return MANAGER_INITIALIZING;
4078
f755e3b7 4079 return MANAGER_STARTING;
d81afec1 4080 }
f755e3b7 4081
45a7b16b
LP
4082 if (MANAGER_IS_SYSTEM(m)) {
4083 /* Are the rescue or emergency targets active or queued? If so we are in maintenance state */
4084 u = manager_get_unit(m, SPECIAL_RESCUE_TARGET);
4085 if (u && unit_active_or_pending(u))
4086 return MANAGER_MAINTENANCE;
f755e3b7 4087
45a7b16b
LP
4088 u = manager_get_unit(m, SPECIAL_EMERGENCY_TARGET);
4089 if (u && unit_active_or_pending(u))
4090 return MANAGER_MAINTENANCE;
4091 }
f755e3b7
LP
4092
4093 /* Are there any failed units? If so, we are in degraded mode */
4094 if (set_size(m->failed_units) > 0)
4095 return MANAGER_DEGRADED;
4096
4097 return MANAGER_RUNNING;
4098}
4099
00d9ef85 4100static void manager_unref_uid_internal(
010becd9 4101 Hashmap *uid_refs,
00d9ef85
LP
4102 uid_t uid,
4103 bool destroy_now,
4104 int (*_clean_ipc)(uid_t uid)) {
4105
4106 uint32_t c, n;
4107
00d9ef85
LP
4108 assert(uid_is_valid(uid));
4109 assert(_clean_ipc);
4110
4111 /* A generic implementation, covering both manager_unref_uid() and manager_unref_gid(), under the assumption
4112 * that uid_t and gid_t are actually defined the same way, with the same validity rules.
4113 *
4114 * We store a hashmap where the UID/GID is they key and the value is a 32bit reference counter, whose highest
4115 * bit is used as flag for marking UIDs/GIDs whose IPC objects to remove when the last reference to the UID/GID
4116 * is dropped. The flag is set to on, once at least one reference from a unit where RemoveIPC= is set is added
4117 * on a UID/GID. It is reset when the UID's/GID's reference counter drops to 0 again. */
4118
4119 assert_cc(sizeof(uid_t) == sizeof(gid_t));
4120 assert_cc(UID_INVALID == (uid_t) GID_INVALID);
4121
4122 if (uid == 0) /* We don't keep track of root, and will never destroy it */
4123 return;
4124
010becd9 4125 c = PTR_TO_UINT32(hashmap_get(uid_refs, UID_TO_PTR(uid)));
00d9ef85
LP
4126
4127 n = c & ~DESTROY_IPC_FLAG;
4128 assert(n > 0);
4129 n--;
4130
4131 if (destroy_now && n == 0) {
010becd9 4132 hashmap_remove(uid_refs, UID_TO_PTR(uid));
00d9ef85
LP
4133
4134 if (c & DESTROY_IPC_FLAG) {
4135 log_debug("%s " UID_FMT " is no longer referenced, cleaning up its IPC.",
4136 _clean_ipc == clean_ipc_by_uid ? "UID" : "GID",
4137 uid);
4138 (void) _clean_ipc(uid);
4139 }
4140 } else {
4141 c = n | (c & DESTROY_IPC_FLAG);
010becd9 4142 assert_se(hashmap_update(uid_refs, UID_TO_PTR(uid), UINT32_TO_PTR(c)) >= 0);
00d9ef85
LP
4143 }
4144}
4145
4146void manager_unref_uid(Manager *m, uid_t uid, bool destroy_now) {
010becd9 4147 manager_unref_uid_internal(m->uid_refs, uid, destroy_now, clean_ipc_by_uid);
00d9ef85
LP
4148}
4149
4150void manager_unref_gid(Manager *m, gid_t gid, bool destroy_now) {
010becd9 4151 manager_unref_uid_internal(m->gid_refs, (uid_t) gid, destroy_now, clean_ipc_by_gid);
00d9ef85
LP
4152}
4153
4154static int manager_ref_uid_internal(
00d9ef85
LP
4155 Hashmap **uid_refs,
4156 uid_t uid,
4157 bool clean_ipc) {
4158
4159 uint32_t c, n;
4160 int r;
4161
00d9ef85
LP
4162 assert(uid_refs);
4163 assert(uid_is_valid(uid));
4164
4165 /* A generic implementation, covering both manager_ref_uid() and manager_ref_gid(), under the assumption
4166 * that uid_t and gid_t are actually defined the same way, with the same validity rules. */
4167
4168 assert_cc(sizeof(uid_t) == sizeof(gid_t));
4169 assert_cc(UID_INVALID == (uid_t) GID_INVALID);
4170
4171 if (uid == 0) /* We don't keep track of root, and will never destroy it */
4172 return 0;
4173
4174 r = hashmap_ensure_allocated(uid_refs, &trivial_hash_ops);
4175 if (r < 0)
4176 return r;
4177
4178 c = PTR_TO_UINT32(hashmap_get(*uid_refs, UID_TO_PTR(uid)));
4179
4180 n = c & ~DESTROY_IPC_FLAG;
4181 n++;
4182
4183 if (n & DESTROY_IPC_FLAG) /* check for overflow */
4184 return -EOVERFLOW;
4185
4186 c = n | (c & DESTROY_IPC_FLAG) | (clean_ipc ? DESTROY_IPC_FLAG : 0);
4187
4188 return hashmap_replace(*uid_refs, UID_TO_PTR(uid), UINT32_TO_PTR(c));
4189}
4190
4191int manager_ref_uid(Manager *m, uid_t uid, bool clean_ipc) {
010becd9 4192 return manager_ref_uid_internal(&m->uid_refs, uid, clean_ipc);
00d9ef85
LP
4193}
4194
4195int manager_ref_gid(Manager *m, gid_t gid, bool clean_ipc) {
010becd9 4196 return manager_ref_uid_internal(&m->gid_refs, (uid_t) gid, clean_ipc);
00d9ef85
LP
4197}
4198
4199static void manager_vacuum_uid_refs_internal(
010becd9 4200 Hashmap *uid_refs,
00d9ef85
LP
4201 int (*_clean_ipc)(uid_t uid)) {
4202
00d9ef85
LP
4203 void *p, *k;
4204
00d9ef85
LP
4205 assert(_clean_ipc);
4206
010becd9 4207 HASHMAP_FOREACH_KEY(p, k, uid_refs) {
00d9ef85
LP
4208 uint32_t c, n;
4209 uid_t uid;
4210
4211 uid = PTR_TO_UID(k);
4212 c = PTR_TO_UINT32(p);
4213
4214 n = c & ~DESTROY_IPC_FLAG;
4215 if (n > 0)
4216 continue;
4217
4218 if (c & DESTROY_IPC_FLAG) {
4219 log_debug("Found unreferenced %s " UID_FMT " after reload/reexec. Cleaning up.",
4220 _clean_ipc == clean_ipc_by_uid ? "UID" : "GID",
4221 uid);
4222 (void) _clean_ipc(uid);
4223 }
4224
010becd9 4225 assert_se(hashmap_remove(uid_refs, k) == p);
00d9ef85
LP
4226 }
4227}
4228
06a4eb07 4229static void manager_vacuum_uid_refs(Manager *m) {
010becd9 4230 manager_vacuum_uid_refs_internal(m->uid_refs, clean_ipc_by_uid);
00d9ef85
LP
4231}
4232
06a4eb07 4233static void manager_vacuum_gid_refs(Manager *m) {
010becd9 4234 manager_vacuum_uid_refs_internal(m->gid_refs, clean_ipc_by_gid);
00d9ef85
LP
4235}
4236
06a4eb07
FB
4237static void manager_vacuum(Manager *m) {
4238 assert(m);
4239
4240 /* Release any dynamic users no longer referenced */
4241 dynamic_user_vacuum(m, true);
4242
4243 /* Release any references to UIDs/GIDs no longer referenced, and destroy any IPC owned by them */
4244 manager_vacuum_uid_refs(m);
4245 manager_vacuum_gid_refs(m);
4246
4247 /* Release any runtimes no longer referenced */
4248 exec_runtime_vacuum(m);
4249}
4250
00d9ef85
LP
4251int manager_dispatch_user_lookup_fd(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
4252 struct buffer {
4253 uid_t uid;
4254 gid_t gid;
4255 char unit_name[UNIT_NAME_MAX+1];
4256 } _packed_ buffer;
4257
4258 Manager *m = userdata;
4259 ssize_t l;
4260 size_t n;
4261 Unit *u;
4262
4263 assert_se(source);
4264 assert_se(m);
4265
4266 /* Invoked whenever a child process succeeded resolving its user/group to use and sent us the resulting UID/GID
4267 * in a datagram. We parse the datagram here and pass it off to the unit, so that it can add a reference to the
4268 * UID/GID so that it can destroy the UID/GID's IPC objects when the reference counter drops to 0. */
4269
4270 l = recv(fd, &buffer, sizeof(buffer), MSG_DONTWAIT);
4271 if (l < 0) {
4c701096 4272 if (IN_SET(errno, EINTR, EAGAIN))
00d9ef85
LP
4273 return 0;
4274
4275 return log_error_errno(errno, "Failed to read from user lookup fd: %m");
4276 }
4277
4278 if ((size_t) l <= offsetof(struct buffer, unit_name)) {
4279 log_warning("Received too short user lookup message, ignoring.");
4280 return 0;
4281 }
4282
4283 if ((size_t) l > offsetof(struct buffer, unit_name) + UNIT_NAME_MAX) {
4284 log_warning("Received too long user lookup message, ignoring.");
4285 return 0;
4286 }
4287
4288 if (!uid_is_valid(buffer.uid) && !gid_is_valid(buffer.gid)) {
4289 log_warning("Got user lookup message with invalid UID/GID pair, ignoring.");
4290 return 0;
4291 }
4292
4293 n = (size_t) l - offsetof(struct buffer, unit_name);
4294 if (memchr(buffer.unit_name, 0, n)) {
4295 log_warning("Received lookup message with embedded NUL character, ignoring.");
4296 return 0;
4297 }
4298
4299 buffer.unit_name[n] = 0;
4300 u = manager_get_unit(m, buffer.unit_name);
4301 if (!u) {
4302 log_debug("Got user lookup message but unit doesn't exist, ignoring.");
4303 return 0;
4304 }
4305
4306 log_unit_debug(u, "User lookup succeeded: uid=" UID_FMT " gid=" GID_FMT, buffer.uid, buffer.gid);
4307
4308 unit_notify_user_lookup(u, buffer.uid, buffer.gid);
4309 return 0;
4310}
4311
af6b0ecc 4312char *manager_taint_string(Manager *m) {
90d7464d 4313 _cleanup_free_ char *destination = NULL, *overflowuid = NULL, *overflowgid = NULL;
af6b0ecc
LP
4314 char *buf, *e;
4315 int r;
4316
198ce932
ZJS
4317 /* Returns a "taint string", e.g. "local-hwclock:var-run-bad".
4318 * Only things that are detected at runtime should be tagged
4319 * here. For stuff that is set during compilation, emit a warning
4320 * in the configuration phase. */
4321
af6b0ecc
LP
4322 assert(m);
4323
4324 buf = new(char, sizeof("split-usr:"
4325 "cgroups-missing:"
82f30632 4326 "cgrousv1:"
af6b0ecc
LP
4327 "local-hwclock:"
4328 "var-run-bad:"
90d7464d
LP
4329 "overflowuid-not-65534:"
4330 "overflowgid-not-65534:"));
af6b0ecc
LP
4331 if (!buf)
4332 return NULL;
4333
4334 e = buf;
0fd402b0 4335 buf[0] = 0;
af6b0ecc
LP
4336
4337 if (m->taint_usr)
4338 e = stpcpy(e, "split-usr:");
4339
4340 if (access("/proc/cgroups", F_OK) < 0)
4341 e = stpcpy(e, "cgroups-missing:");
4342
82f30632
LP
4343 if (cg_all_unified() == 0)
4344 e = stpcpy(e, "cgroupsv1:");
4345
af6b0ecc
LP
4346 if (clock_is_localtime(NULL) > 0)
4347 e = stpcpy(e, "local-hwclock:");
4348
4349 r = readlink_malloc("/var/run", &destination);
4350 if (r < 0 || !PATH_IN_SET(destination, "../run", "/run"))
4351 e = stpcpy(e, "var-run-bad:");
4352
90d7464d
LP
4353 r = read_one_line_file("/proc/sys/kernel/overflowuid", &overflowuid);
4354 if (r >= 0 && !streq(overflowuid, "65534"))
4355 e = stpcpy(e, "overflowuid-not-65534:");
4356
4357 r = read_one_line_file("/proc/sys/kernel/overflowgid", &overflowgid);
4358 if (r >= 0 && !streq(overflowgid, "65534"))
4359 e = stpcpy(e, "overflowgid-not-65534:");
4360
af6b0ecc
LP
4361 /* remove the last ':' */
4362 if (e != buf)
4363 e[-1] = 0;
4364
4365 return buf;
4366}
4367
adefcf28
LP
4368void manager_ref_console(Manager *m) {
4369 assert(m);
4370
4371 m->n_on_console++;
4372}
4373
4374void manager_unref_console(Manager *m) {
4375
4376 assert(m->n_on_console > 0);
4377 m->n_on_console--;
4378
4379 if (m->n_on_console == 0)
4380 m->no_console_output = false; /* unset no_console_output flag, since the console is definitely free now */
4381}
4382
a6ecbf83
FB
4383void manager_override_log_level(Manager *m, int level) {
4384 _cleanup_free_ char *s = NULL;
4385 assert(m);
4386
4387 if (!m->log_level_overridden) {
4388 m->original_log_level = log_get_max_level();
4389 m->log_level_overridden = true;
4390 }
4391
4392 (void) log_level_to_string_alloc(level, &s);
4393 log_info("Setting log level to %s.", strna(s));
4394
4395 log_set_max_level(level);
4396}
4397
4398void manager_restore_original_log_level(Manager *m) {
4399 _cleanup_free_ char *s = NULL;
4400 assert(m);
4401
4402 if (!m->log_level_overridden)
4403 return;
4404
4405 (void) log_level_to_string_alloc(m->original_log_level, &s);
4406 log_info("Restoring log level to original (%s).", strna(s));
4407
4408 log_set_max_level(m->original_log_level);
4409 m->log_level_overridden = false;
4410}
4411
bda7d78b
FB
4412void manager_override_log_target(Manager *m, LogTarget target) {
4413 assert(m);
4414
4415 if (!m->log_target_overridden) {
4416 m->original_log_target = log_get_target();
4417 m->log_target_overridden = true;
4418 }
4419
4420 log_info("Setting log target to %s.", log_target_to_string(target));
4421 log_set_target(target);
4422}
4423
4424void manager_restore_original_log_target(Manager *m) {
4425 assert(m);
4426
4427 if (!m->log_target_overridden)
4428 return;
4429
4430 log_info("Restoring log target to original %s.", log_target_to_string(m->original_log_target));
4431
4432 log_set_target(m->original_log_target);
4433 m->log_target_overridden = false;
4434}
4435
d4ee7bd8
YW
4436ManagerTimestamp manager_timestamp_initrd_mangle(ManagerTimestamp s) {
4437 if (in_initrd() &&
4438 s >= MANAGER_TIMESTAMP_SECURITY_START &&
4439 s <= MANAGER_TIMESTAMP_UNITS_LOAD_FINISH)
4440 return s - MANAGER_TIMESTAMP_SECURITY_START + MANAGER_TIMESTAMP_INITRD_SECURITY_START;
4441 return s;
4442}
4443
f755e3b7 4444static const char *const manager_state_table[_MANAGER_STATE_MAX] = {
d81afec1 4445 [MANAGER_INITIALIZING] = "initializing",
48d83e33
ZJS
4446 [MANAGER_STARTING] = "starting",
4447 [MANAGER_RUNNING] = "running",
4448 [MANAGER_DEGRADED] = "degraded",
4449 [MANAGER_MAINTENANCE] = "maintenance",
4450 [MANAGER_STOPPING] = "stopping",
f755e3b7
LP
4451};
4452
4453DEFINE_STRING_TABLE_LOOKUP(manager_state, ManagerState);
9f9f0342
LP
4454
4455static const char *const manager_timestamp_table[_MANAGER_TIMESTAMP_MAX] = {
48d83e33
ZJS
4456 [MANAGER_TIMESTAMP_FIRMWARE] = "firmware",
4457 [MANAGER_TIMESTAMP_LOADER] = "loader",
4458 [MANAGER_TIMESTAMP_KERNEL] = "kernel",
4459 [MANAGER_TIMESTAMP_INITRD] = "initrd",
4460 [MANAGER_TIMESTAMP_USERSPACE] = "userspace",
4461 [MANAGER_TIMESTAMP_FINISH] = "finish",
4462 [MANAGER_TIMESTAMP_SECURITY_START] = "security-start",
4463 [MANAGER_TIMESTAMP_SECURITY_FINISH] = "security-finish",
4464 [MANAGER_TIMESTAMP_GENERATORS_START] = "generators-start",
4465 [MANAGER_TIMESTAMP_GENERATORS_FINISH] = "generators-finish",
4466 [MANAGER_TIMESTAMP_UNITS_LOAD_START] = "units-load-start",
4467 [MANAGER_TIMESTAMP_UNITS_LOAD_FINISH] = "units-load-finish",
4468 [MANAGER_TIMESTAMP_INITRD_SECURITY_START] = "initrd-security-start",
4469 [MANAGER_TIMESTAMP_INITRD_SECURITY_FINISH] = "initrd-security-finish",
4470 [MANAGER_TIMESTAMP_INITRD_GENERATORS_START] = "initrd-generators-start",
d4ee7bd8 4471 [MANAGER_TIMESTAMP_INITRD_GENERATORS_FINISH] = "initrd-generators-finish",
48d83e33 4472 [MANAGER_TIMESTAMP_INITRD_UNITS_LOAD_START] = "initrd-units-load-start",
d4ee7bd8 4473 [MANAGER_TIMESTAMP_INITRD_UNITS_LOAD_FINISH] = "initrd-units-load-finish",
9f9f0342
LP
4474};
4475
4476DEFINE_STRING_TABLE_LOOKUP(manager_timestamp, ManagerTimestamp);
afcfaa69
LP
4477
4478static const char* const oom_policy_table[_OOM_POLICY_MAX] = {
4479 [OOM_CONTINUE] = "continue",
48d83e33
ZJS
4480 [OOM_STOP] = "stop",
4481 [OOM_KILL] = "kill",
afcfaa69
LP
4482};
4483
4484DEFINE_STRING_TABLE_LOOKUP(oom_policy, OOMPolicy);