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man: document sd-daemon.[ch]
[elogind.git] / src / unit.c
1 /*-*- Mode: C; c-basic-offset: 8 -*-*/
2
3 /***
4   This file is part of systemd.
5
6   Copyright 2010 Lennart Poettering
7
8   systemd is free software; you can redistribute it and/or modify it
9   under the terms of the GNU General Public License as published by
10   the Free Software Foundation; either version 2 of the License, or
11   (at your option) any later version.
12
13   systemd is distributed in the hope that it will be useful, but
14   WITHOUT ANY WARRANTY; without even the implied warranty of
15   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16   General Public License for more details.
17
18   You should have received a copy of the GNU General Public License
19   along with systemd; If not, see <http://www.gnu.org/licenses/>.
20 ***/
21
22 #include <assert.h>
23 #include <errno.h>
24 #include <string.h>
25 #include <sys/epoll.h>
26 #include <sys/timerfd.h>
27 #include <sys/poll.h>
28 #include <stdlib.h>
29 #include <unistd.h>
30
31 #include "set.h"
32 #include "unit.h"
33 #include "macro.h"
34 #include "strv.h"
35 #include "load-fragment.h"
36 #include "load-dropin.h"
37 #include "log.h"
38 #include "unit-name.h"
39 #include "specifier.h"
40 #include "dbus-unit.h"
41 #include "special.h"
42
43 const UnitVTable * const unit_vtable[_UNIT_TYPE_MAX] = {
44         [UNIT_SERVICE] = &service_vtable,
45         [UNIT_TIMER] = &timer_vtable,
46         [UNIT_SOCKET] = &socket_vtable,
47         [UNIT_TARGET] = &target_vtable,
48         [UNIT_DEVICE] = &device_vtable,
49         [UNIT_MOUNT] = &mount_vtable,
50         [UNIT_AUTOMOUNT] = &automount_vtable,
51         [UNIT_SNAPSHOT] = &snapshot_vtable,
52         [UNIT_SWAP] = &swap_vtable,
53         [UNIT_PATH] = &path_vtable
54 };
55
56 Unit *unit_new(Manager *m) {
57         Unit *u;
58
59         assert(m);
60
61         if (!(u = new0(Unit, 1)))
62                 return NULL;
63
64         if (!(u->meta.names = set_new(string_hash_func, string_compare_func))) {
65                 free(u);
66                 return NULL;
67         }
68
69         u->meta.manager = m;
70         u->meta.type = _UNIT_TYPE_INVALID;
71         u->meta.deserialized_job = _JOB_TYPE_INVALID;
72
73         return u;
74 }
75
76 bool unit_has_name(Unit *u, const char *name) {
77         assert(u);
78         assert(name);
79
80         return !!set_get(u->meta.names, (char*) name);
81 }
82
83 int unit_add_name(Unit *u, const char *text) {
84         UnitType t;
85         char *s = NULL, *i = NULL;
86         int r;
87
88         assert(u);
89         assert(text);
90
91         if (unit_name_is_template(text)) {
92                 if (!u->meta.instance)
93                         return -EINVAL;
94
95                 s = unit_name_replace_instance(text, u->meta.instance);
96         } else
97                 s = strdup(text);
98
99         if (!s)
100                 return -ENOMEM;
101
102         if (!unit_name_is_valid(s)) {
103                 r = -EINVAL;
104                 goto fail;
105         }
106
107         assert_se((t = unit_name_to_type(s)) >= 0);
108
109         if (u->meta.type != _UNIT_TYPE_INVALID && t != u->meta.type) {
110                 r = -EINVAL;
111                 goto fail;
112         }
113
114         if ((r = unit_name_to_instance(s, &i)) < 0)
115                 goto fail;
116
117         if (i && unit_vtable[t]->no_instances)
118                 goto fail;
119
120         if (u->meta.type != _UNIT_TYPE_INVALID && !streq_ptr(u->meta.instance, i)) {
121                 r = -EINVAL;
122                 goto fail;
123         }
124
125         if (unit_vtable[t]->no_alias &&
126             !set_isempty(u->meta.names) &&
127             !set_get(u->meta.names, s)) {
128                 r = -EEXIST;
129                 goto fail;
130         }
131
132         if (hashmap_size(u->meta.manager->units) >= MANAGER_MAX_NAMES) {
133                 r = -E2BIG;
134                 goto fail;
135         }
136
137         if ((r = set_put(u->meta.names, s)) < 0) {
138                 if (r == -EEXIST)
139                         r = 0;
140                 goto fail;
141         }
142
143         if ((r = hashmap_put(u->meta.manager->units, s, u)) < 0) {
144                 set_remove(u->meta.names, s);
145                 goto fail;
146         }
147
148         if (u->meta.type == _UNIT_TYPE_INVALID) {
149
150                 u->meta.type = t;
151                 u->meta.id = s;
152                 u->meta.instance = i;
153
154                 LIST_PREPEND(Meta, units_per_type, u->meta.manager->units_per_type[t], &u->meta);
155
156                 if (UNIT_VTABLE(u)->init)
157                         UNIT_VTABLE(u)->init(u);
158         } else
159                 free(i);
160
161         unit_add_to_dbus_queue(u);
162         return 0;
163
164 fail:
165         free(s);
166         free(i);
167
168         return r;
169 }
170
171 int unit_choose_id(Unit *u, const char *name) {
172         char *s, *t = NULL;
173
174         assert(u);
175         assert(name);
176
177         if (unit_name_is_template(name)) {
178
179                 if (!u->meta.instance)
180                         return -EINVAL;
181
182                 if (!(t = unit_name_replace_instance(name, u->meta.instance)))
183                         return -ENOMEM;
184
185                 name = t;
186         }
187
188         /* Selects one of the names of this unit as the id */
189         s = set_get(u->meta.names, (char*) name);
190         free(t);
191
192         if (!s)
193                 return -ENOENT;
194
195         u->meta.id = s;
196         unit_add_to_dbus_queue(u);
197
198         return 0;
199 }
200
201 int unit_set_description(Unit *u, const char *description) {
202         char *s;
203
204         assert(u);
205
206         if (!(s = strdup(description)))
207                 return -ENOMEM;
208
209         free(u->meta.description);
210         u->meta.description = s;
211
212         unit_add_to_dbus_queue(u);
213         return 0;
214 }
215
216 bool unit_check_gc(Unit *u) {
217         assert(u);
218
219         if (u->meta.load_state == UNIT_STUB)
220                 return true;
221
222         if (UNIT_VTABLE(u)->no_gc)
223                 return true;
224
225         if (u->meta.job)
226                 return true;
227
228         if (unit_active_state(u) != UNIT_INACTIVE)
229                 return true;
230
231         if (UNIT_VTABLE(u)->check_gc)
232                 if (UNIT_VTABLE(u)->check_gc(u))
233                         return true;
234
235         return false;
236 }
237
238 void unit_add_to_load_queue(Unit *u) {
239         assert(u);
240         assert(u->meta.type != _UNIT_TYPE_INVALID);
241
242         if (u->meta.load_state != UNIT_STUB || u->meta.in_load_queue)
243                 return;
244
245         LIST_PREPEND(Meta, load_queue, u->meta.manager->load_queue, &u->meta);
246         u->meta.in_load_queue = true;
247 }
248
249 void unit_add_to_cleanup_queue(Unit *u) {
250         assert(u);
251
252         if (u->meta.in_cleanup_queue)
253                 return;
254
255         LIST_PREPEND(Meta, cleanup_queue, u->meta.manager->cleanup_queue, &u->meta);
256         u->meta.in_cleanup_queue = true;
257 }
258
259 void unit_add_to_gc_queue(Unit *u) {
260         assert(u);
261
262         if (u->meta.in_gc_queue || u->meta.in_cleanup_queue)
263                 return;
264
265         if (unit_check_gc(u))
266                 return;
267
268         LIST_PREPEND(Meta, gc_queue, u->meta.manager->gc_queue, &u->meta);
269         u->meta.in_gc_queue = true;
270
271         u->meta.manager->n_in_gc_queue ++;
272
273         if (u->meta.manager->gc_queue_timestamp <= 0)
274                 u->meta.manager->gc_queue_timestamp = now(CLOCK_MONOTONIC);
275 }
276
277 void unit_add_to_dbus_queue(Unit *u) {
278         assert(u);
279         assert(u->meta.type != _UNIT_TYPE_INVALID);
280
281         if (u->meta.load_state == UNIT_STUB || u->meta.in_dbus_queue)
282                 return;
283
284         if (set_isempty(u->meta.manager->subscribed)) {
285                 u->meta.sent_dbus_new_signal = true;
286                 return;
287         }
288
289         LIST_PREPEND(Meta, dbus_queue, u->meta.manager->dbus_unit_queue, &u->meta);
290         u->meta.in_dbus_queue = true;
291 }
292
293 static void bidi_set_free(Unit *u, Set *s) {
294         Iterator i;
295         Unit *other;
296
297         assert(u);
298
299         /* Frees the set and makes sure we are dropped from the
300          * inverse pointers */
301
302         SET_FOREACH(other, s, i) {
303                 UnitDependency d;
304
305                 for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
306                         set_remove(other->meta.dependencies[d], u);
307
308                 unit_add_to_gc_queue(other);
309         }
310
311         set_free(s);
312 }
313
314 void unit_free(Unit *u) {
315         UnitDependency d;
316         Iterator i;
317         char *t;
318
319         assert(u);
320
321         bus_unit_send_removed_signal(u);
322
323         if (u->meta.load_state != UNIT_STUB)
324                 if (UNIT_VTABLE(u)->done)
325                         UNIT_VTABLE(u)->done(u);
326
327         SET_FOREACH(t, u->meta.names, i)
328                 hashmap_remove_value(u->meta.manager->units, t, u);
329
330         if (u->meta.job)
331                 job_free(u->meta.job);
332
333         for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
334                 bidi_set_free(u, u->meta.dependencies[d]);
335
336         if (u->meta.type != _UNIT_TYPE_INVALID)
337                 LIST_REMOVE(Meta, units_per_type, u->meta.manager->units_per_type[u->meta.type], &u->meta);
338
339         if (u->meta.in_load_queue)
340                 LIST_REMOVE(Meta, load_queue, u->meta.manager->load_queue, &u->meta);
341
342         if (u->meta.in_dbus_queue)
343                 LIST_REMOVE(Meta, dbus_queue, u->meta.manager->dbus_unit_queue, &u->meta);
344
345         if (u->meta.in_cleanup_queue)
346                 LIST_REMOVE(Meta, cleanup_queue, u->meta.manager->cleanup_queue, &u->meta);
347
348         if (u->meta.in_gc_queue) {
349                 LIST_REMOVE(Meta, gc_queue, u->meta.manager->gc_queue, &u->meta);
350                 u->meta.manager->n_in_gc_queue--;
351         }
352
353         cgroup_bonding_free_list(u->meta.cgroup_bondings);
354
355         free(u->meta.description);
356         free(u->meta.fragment_path);
357
358         set_free_free(u->meta.names);
359
360         free(u->meta.instance);
361
362         free(u);
363 }
364
365 UnitActiveState unit_active_state(Unit *u) {
366         assert(u);
367
368         if (u->meta.load_state != UNIT_LOADED)
369                 return UNIT_INACTIVE;
370
371         return UNIT_VTABLE(u)->active_state(u);
372 }
373
374 const char* unit_sub_state_to_string(Unit *u) {
375         assert(u);
376
377         return UNIT_VTABLE(u)->sub_state_to_string(u);
378 }
379
380 static void complete_move(Set **s, Set **other) {
381         assert(s);
382         assert(other);
383
384         if (!*other)
385                 return;
386
387         if (*s)
388                 set_move(*s, *other);
389         else {
390                 *s = *other;
391                 *other = NULL;
392         }
393 }
394
395 static void merge_names(Unit *u, Unit *other) {
396         char *t;
397         Iterator i;
398
399         assert(u);
400         assert(other);
401
402         complete_move(&u->meta.names, &other->meta.names);
403
404         set_free_free(other->meta.names);
405         other->meta.names = NULL;
406         other->meta.id = NULL;
407
408         SET_FOREACH(t, u->meta.names, i)
409                 assert_se(hashmap_replace(u->meta.manager->units, t, u) == 0);
410 }
411
412 static void merge_dependencies(Unit *u, Unit *other, UnitDependency d) {
413         Iterator i;
414         Unit *back;
415         int r;
416
417         assert(u);
418         assert(other);
419         assert(d < _UNIT_DEPENDENCY_MAX);
420
421         SET_FOREACH(back, other->meta.dependencies[d], i) {
422                 UnitDependency k;
423
424                 for (k = 0; k < _UNIT_DEPENDENCY_MAX; k++)
425                         if ((r = set_remove_and_put(back->meta.dependencies[k], other, u)) < 0) {
426
427                                 if (r == -EEXIST)
428                                         set_remove(back->meta.dependencies[k], other);
429                                 else
430                                         assert(r == -ENOENT);
431                         }
432         }
433
434         complete_move(&u->meta.dependencies[d], &other->meta.dependencies[d]);
435
436         set_free(other->meta.dependencies[d]);
437         other->meta.dependencies[d] = NULL;
438 }
439
440 int unit_merge(Unit *u, Unit *other) {
441         UnitDependency d;
442
443         assert(u);
444         assert(other);
445         assert(u->meta.manager == other->meta.manager);
446         assert(u->meta.type != _UNIT_TYPE_INVALID);
447
448         other = unit_follow_merge(other);
449
450         if (other == u)
451                 return 0;
452
453         if (u->meta.type != other->meta.type)
454                 return -EINVAL;
455
456         if (!streq_ptr(u->meta.instance, other->meta.instance))
457                 return -EINVAL;
458
459         if (other->meta.load_state != UNIT_STUB &&
460             other->meta.load_state != UNIT_FAILED)
461                 return -EEXIST;
462
463         if (other->meta.job)
464                 return -EEXIST;
465
466         if (unit_active_state(other) != UNIT_INACTIVE)
467                 return -EEXIST;
468
469         /* Merge names */
470         merge_names(u, other);
471
472         /* Merge dependencies */
473         for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++)
474                 merge_dependencies(u, other, d);
475
476         other->meta.load_state = UNIT_MERGED;
477         other->meta.merged_into = u;
478
479         /* If there is still some data attached to the other node, we
480          * don't need it anymore, and can free it. */
481         if (other->meta.load_state != UNIT_STUB)
482                 if (UNIT_VTABLE(other)->done)
483                         UNIT_VTABLE(other)->done(other);
484
485         unit_add_to_dbus_queue(u);
486         unit_add_to_cleanup_queue(other);
487
488         return 0;
489 }
490
491 int unit_merge_by_name(Unit *u, const char *name) {
492         Unit *other;
493         int r;
494         char *s = NULL;
495
496         assert(u);
497         assert(name);
498
499         if (unit_name_is_template(name)) {
500                 if (!u->meta.instance)
501                         return -EINVAL;
502
503                 if (!(s = unit_name_replace_instance(name, u->meta.instance)))
504                         return -ENOMEM;
505
506                 name = s;
507         }
508
509         if (!(other = manager_get_unit(u->meta.manager, name)))
510                 r = unit_add_name(u, name);
511         else
512                 r = unit_merge(u, other);
513
514         free(s);
515         return r;
516 }
517
518 Unit* unit_follow_merge(Unit *u) {
519         assert(u);
520
521         while (u->meta.load_state == UNIT_MERGED)
522                 assert_se(u = u->meta.merged_into);
523
524         return u;
525 }
526
527 int unit_add_exec_dependencies(Unit *u, ExecContext *c) {
528         int r;
529
530         assert(u);
531         assert(c);
532
533         if (c->std_output != EXEC_OUTPUT_KMSG &&
534             c->std_output != EXEC_OUTPUT_SYSLOG &&
535             c->std_error != EXEC_OUTPUT_KMSG &&
536             c->std_error != EXEC_OUTPUT_SYSLOG)
537                 return 0;
538
539         /* If syslog or kernel logging is requested, make sure our own
540          * logging daemon is run first. */
541
542         if ((r = unit_add_dependency_by_name(u, UNIT_AFTER, SPECIAL_LOGGER_SOCKET, NULL, true)) < 0)
543                 return r;
544
545         if (u->meta.manager->running_as == MANAGER_SYSTEM)
546                 if ((r = unit_add_dependency_by_name(u, UNIT_REQUIRES, SPECIAL_LOGGER_SOCKET, NULL, true)) < 0)
547                         return r;
548
549         return 0;
550 }
551
552 const char *unit_description(Unit *u) {
553         assert(u);
554
555         if (u->meta.description)
556                 return u->meta.description;
557
558         return u->meta.id;
559 }
560
561 void unit_dump(Unit *u, FILE *f, const char *prefix) {
562         char *t;
563         UnitDependency d;
564         Iterator i;
565         char *p2;
566         const char *prefix2;
567         CGroupBonding *b;
568         char
569                 timestamp1[FORMAT_TIMESTAMP_MAX],
570                 timestamp2[FORMAT_TIMESTAMP_MAX],
571                 timestamp3[FORMAT_TIMESTAMP_MAX],
572                 timestamp4[FORMAT_TIMESTAMP_MAX];
573
574         assert(u);
575         assert(u->meta.type >= 0);
576
577         if (!prefix)
578                 prefix = "";
579         p2 = strappend(prefix, "\t");
580         prefix2 = p2 ? p2 : prefix;
581
582         fprintf(f,
583                 "%s-> Unit %s:\n"
584                 "%s\tDescription: %s\n"
585                 "%s\tInstance: %s\n"
586                 "%s\tUnit Load State: %s\n"
587                 "%s\tUnit Active State: %s\n"
588                 "%s\tInactive Exit Timestamp: %s\n"
589                 "%s\tActive Enter Timestamp: %s\n"
590                 "%s\tActive Exit Timestamp: %s\n"
591                 "%s\tInactive Enter Timestamp: %s\n"
592                 "%s\tGC Check Good: %s\n"
593                 "%s\tOnly By Dependency: %s\n",
594                 prefix, u->meta.id,
595                 prefix, unit_description(u),
596                 prefix, strna(u->meta.instance),
597                 prefix, unit_load_state_to_string(u->meta.load_state),
598                 prefix, unit_active_state_to_string(unit_active_state(u)),
599                 prefix, strna(format_timestamp(timestamp1, sizeof(timestamp1), u->meta.inactive_exit_timestamp.realtime)),
600                 prefix, strna(format_timestamp(timestamp2, sizeof(timestamp2), u->meta.active_enter_timestamp.realtime)),
601                 prefix, strna(format_timestamp(timestamp3, sizeof(timestamp3), u->meta.active_exit_timestamp.realtime)),
602                 prefix, strna(format_timestamp(timestamp4, sizeof(timestamp4), u->meta.inactive_enter_timestamp.realtime)),
603                 prefix, yes_no(unit_check_gc(u)),
604                 prefix, yes_no(u->meta.only_by_dependency));
605
606         SET_FOREACH(t, u->meta.names, i)
607                 fprintf(f, "%s\tName: %s\n", prefix, t);
608
609         if (u->meta.fragment_path)
610                 fprintf(f, "%s\tFragment Path: %s\n", prefix, u->meta.fragment_path);
611
612         for (d = 0; d < _UNIT_DEPENDENCY_MAX; d++) {
613                 Unit *other;
614
615                 SET_FOREACH(other, u->meta.dependencies[d], i)
616                         fprintf(f, "%s\t%s: %s\n", prefix, unit_dependency_to_string(d), other->meta.id);
617         }
618
619         if (u->meta.load_state == UNIT_LOADED) {
620                 fprintf(f,
621                         "%s\tRecursive Stop: %s\n"
622                         "%s\tStop When Unneeded: %s\n",
623                         prefix, yes_no(u->meta.recursive_stop),
624                         prefix, yes_no(u->meta.stop_when_unneeded));
625
626                 LIST_FOREACH(by_unit, b, u->meta.cgroup_bondings)
627                         fprintf(f, "%s\tControlGroup: %s:%s\n",
628                                 prefix, b->controller, b->path);
629
630                 if (UNIT_VTABLE(u)->dump)
631                         UNIT_VTABLE(u)->dump(u, f, prefix2);
632
633         } else if (u->meta.load_state == UNIT_MERGED)
634                 fprintf(f,
635                         "%s\tMerged into: %s\n",
636                         prefix, u->meta.merged_into->meta.id);
637
638         if (u->meta.job)
639                 job_dump(u->meta.job, f, prefix2);
640
641         free(p2);
642 }
643
644 /* Common implementation for multiple backends */
645 int unit_load_fragment_and_dropin(Unit *u) {
646         int r;
647
648         assert(u);
649
650         /* Load a .service file */
651         if ((r = unit_load_fragment(u)) < 0)
652                 return r;
653
654         if (u->meta.load_state == UNIT_STUB)
655                 return -ENOENT;
656
657         /* Load drop-in directory data */
658         if ((r = unit_load_dropin(unit_follow_merge(u))) < 0)
659                 return r;
660
661         return 0;
662 }
663
664 /* Common implementation for multiple backends */
665 int unit_load_fragment_and_dropin_optional(Unit *u) {
666         int r;
667
668         assert(u);
669
670         /* Same as unit_load_fragment_and_dropin(), but whether
671          * something can be loaded or not doesn't matter. */
672
673         /* Load a .service file */
674         if ((r = unit_load_fragment(u)) < 0)
675                 return r;
676
677         if (u->meta.load_state == UNIT_STUB)
678                 u->meta.load_state = UNIT_LOADED;
679
680         /* Load drop-in directory data */
681         if ((r = unit_load_dropin(unit_follow_merge(u))) < 0)
682                 return r;
683
684         return 0;
685 }
686
687 /* Common implementation for multiple backends */
688 int unit_load_nop(Unit *u) {
689         assert(u);
690
691         if (u->meta.load_state == UNIT_STUB)
692                 u->meta.load_state = UNIT_LOADED;
693
694         return 0;
695 }
696
697 int unit_load(Unit *u) {
698         int r;
699
700         assert(u);
701
702         if (u->meta.in_load_queue) {
703                 LIST_REMOVE(Meta, load_queue, u->meta.manager->load_queue, &u->meta);
704                 u->meta.in_load_queue = false;
705         }
706
707         if (u->meta.type == _UNIT_TYPE_INVALID)
708                 return -EINVAL;
709
710         if (u->meta.load_state != UNIT_STUB)
711                 return 0;
712
713         if (UNIT_VTABLE(u)->load)
714                 if ((r = UNIT_VTABLE(u)->load(u)) < 0)
715                         goto fail;
716
717         if (u->meta.load_state == UNIT_STUB) {
718                 r = -ENOENT;
719                 goto fail;
720         }
721
722         assert((u->meta.load_state != UNIT_MERGED) == !u->meta.merged_into);
723
724         unit_add_to_dbus_queue(unit_follow_merge(u));
725         unit_add_to_gc_queue(u);
726
727         return 0;
728
729 fail:
730         u->meta.load_state = UNIT_FAILED;
731         unit_add_to_dbus_queue(u);
732
733         log_debug("Failed to load configuration for %s: %s", u->meta.id, strerror(-r));
734
735         return r;
736 }
737
738 /* Errors:
739  *         -EBADR:     This unit type does not support starting.
740  *         -EALREADY:  Unit is already started.
741  *         -EAGAIN:    An operation is already in progress. Retry later.
742  *         -ECANCELED: Too many requests for now.
743  */
744 int unit_start(Unit *u) {
745         UnitActiveState state;
746
747         assert(u);
748
749         /* If this is already (being) started, then this will
750          * succeed. Note that this will even succeed if this unit is
751          * not startable by the user. This is relied on to detect when
752          * we need to wait for units and when waiting is finished. */
753         state = unit_active_state(u);
754         if (UNIT_IS_ACTIVE_OR_RELOADING(state))
755                 return -EALREADY;
756
757         /* If it is stopped, but we cannot start it, then fail */
758         if (!UNIT_VTABLE(u)->start)
759                 return -EBADR;
760
761         /* We don't suppress calls to ->start() here when we are
762          * already starting, to allow this request to be used as a
763          * "hurry up" call, for example when the unit is in some "auto
764          * restart" state where it waits for a holdoff timer to elapse
765          * before it will start again. */
766
767         unit_add_to_dbus_queue(u);
768         return UNIT_VTABLE(u)->start(u);
769 }
770
771 bool unit_can_start(Unit *u) {
772         assert(u);
773
774         return !!UNIT_VTABLE(u)->start;
775 }
776
777 /* Errors:
778  *         -EBADR:    This unit type does not support stopping.
779  *         -EALREADY: Unit is already stopped.
780  *         -EAGAIN:   An operation is already in progress. Retry later.
781  */
782 int unit_stop(Unit *u) {
783         UnitActiveState state;
784
785         assert(u);
786
787         state = unit_active_state(u);
788         if (state == UNIT_INACTIVE)
789                 return -EALREADY;
790
791         if (!UNIT_VTABLE(u)->stop)
792                 return -EBADR;
793
794         unit_add_to_dbus_queue(u);
795         return UNIT_VTABLE(u)->stop(u);
796 }
797
798 /* Errors:
799  *         -EBADR:    This unit type does not support reloading.
800  *         -ENOEXEC:  Unit is not started.
801  *         -EAGAIN:   An operation is already in progress. Retry later.
802  */
803 int unit_reload(Unit *u) {
804         UnitActiveState state;
805
806         assert(u);
807
808         if (!unit_can_reload(u))
809                 return -EBADR;
810
811         state = unit_active_state(u);
812         if (unit_active_state(u) == UNIT_ACTIVE_RELOADING)
813                 return -EALREADY;
814
815         if (unit_active_state(u) != UNIT_ACTIVE)
816                 return -ENOEXEC;
817
818         unit_add_to_dbus_queue(u);
819         return UNIT_VTABLE(u)->reload(u);
820 }
821
822 bool unit_can_reload(Unit *u) {
823         assert(u);
824
825         if (!UNIT_VTABLE(u)->reload)
826                 return false;
827
828         if (!UNIT_VTABLE(u)->can_reload)
829                 return true;
830
831         return UNIT_VTABLE(u)->can_reload(u);
832 }
833
834 static void unit_check_uneeded(Unit *u) {
835         Iterator i;
836         Unit *other;
837
838         assert(u);
839
840         /* If this service shall be shut down when unneeded then do
841          * so. */
842
843         if (!u->meta.stop_when_unneeded)
844                 return;
845
846         if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(u)))
847                 return;
848
849         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRED_BY], i)
850                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
851                         return;
852
853         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRED_BY_OVERRIDABLE], i)
854                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
855                         return;
856
857         SET_FOREACH(other, u->meta.dependencies[UNIT_WANTED_BY], i)
858                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
859                         return;
860
861         log_debug("Service %s is not needed anymore. Stopping.", u->meta.id);
862
863         /* Ok, nobody needs us anymore. Sniff. Then let's commit suicide */
864         manager_add_job(u->meta.manager, JOB_STOP, u, JOB_FAIL, true, NULL);
865 }
866
867 static void retroactively_start_dependencies(Unit *u) {
868         Iterator i;
869         Unit *other;
870
871         assert(u);
872         assert(UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(u)));
873
874         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRES], i)
875                 if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
876                         manager_add_job(u->meta.manager, JOB_START, other, JOB_REPLACE, true, NULL);
877
878         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRES_OVERRIDABLE], i)
879                 if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
880                         manager_add_job(u->meta.manager, JOB_START, other, JOB_FAIL, false, NULL);
881
882         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUISITE], i)
883                 if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
884                         manager_add_job(u->meta.manager, JOB_START, other, JOB_REPLACE, true, NULL);
885
886         SET_FOREACH(other, u->meta.dependencies[UNIT_WANTS], i)
887                 if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
888                         manager_add_job(u->meta.manager, JOB_START, other, JOB_FAIL, false, NULL);
889
890         SET_FOREACH(other, u->meta.dependencies[UNIT_CONFLICTS], i)
891                 if (!UNIT_IS_ACTIVE_OR_ACTIVATING(unit_active_state(other)))
892                         manager_add_job(u->meta.manager, JOB_STOP, other, JOB_REPLACE, true, NULL);
893 }
894
895 static void retroactively_stop_dependencies(Unit *u) {
896         Iterator i;
897         Unit *other;
898
899         assert(u);
900         assert(UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(u)));
901
902         if (u->meta.recursive_stop) {
903                 /* Pull down units need us recursively if enabled */
904                 SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRED_BY], i)
905                         if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
906                                 manager_add_job(u->meta.manager, JOB_STOP, other, JOB_REPLACE, true, NULL);
907         }
908
909         /* Garbage collect services that might not be needed anymore, if enabled */
910         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRES], i)
911                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
912                         unit_check_uneeded(other);
913         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUIRES_OVERRIDABLE], i)
914                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
915                         unit_check_uneeded(other);
916         SET_FOREACH(other, u->meta.dependencies[UNIT_WANTS], i)
917                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
918                         unit_check_uneeded(other);
919         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUISITE], i)
920                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
921                         unit_check_uneeded(other);
922         SET_FOREACH(other, u->meta.dependencies[UNIT_REQUISITE_OVERRIDABLE], i)
923                 if (!UNIT_IS_INACTIVE_OR_DEACTIVATING(unit_active_state(other)))
924                         unit_check_uneeded(other);
925 }
926
927 void unit_notify(Unit *u, UnitActiveState os, UnitActiveState ns) {
928         bool unexpected = false;
929         timestamp ts;
930
931         assert(u);
932         assert(os < _UNIT_ACTIVE_STATE_MAX);
933         assert(ns < _UNIT_ACTIVE_STATE_MAX);
934
935         /* Note that this is called for all low-level state changes,
936          * even if they might map to the same high-level
937          * UnitActiveState! That means that ns == os is OK an expected
938          * behaviour here. For example: if a mount point is remounted
939          * this function will be called too and the utmp code below
940          * relies on that! */
941
942         timestamp_get(&ts);
943
944         if (os == UNIT_INACTIVE && ns != UNIT_INACTIVE)
945                 u->meta.inactive_exit_timestamp = ts;
946         else if (os != UNIT_INACTIVE && ns == UNIT_INACTIVE)
947                 u->meta.inactive_enter_timestamp = ts;
948
949         if (!UNIT_IS_ACTIVE_OR_RELOADING(os) && UNIT_IS_ACTIVE_OR_RELOADING(ns))
950                 u->meta.active_enter_timestamp = ts;
951         else if (UNIT_IS_ACTIVE_OR_RELOADING(os) && !UNIT_IS_ACTIVE_OR_RELOADING(ns))
952                 u->meta.active_exit_timestamp = ts;
953
954         timer_unit_notify(u, ns);
955         path_unit_notify(u, ns);
956
957         if (u->meta.job) {
958
959                 if (u->meta.job->state == JOB_WAITING)
960
961                         /* So we reached a different state for this
962                          * job. Let's see if we can run it now if it
963                          * failed previously due to EAGAIN. */
964                         job_add_to_run_queue(u->meta.job);
965
966
967                 /* Let's check whether this state change constitutes a
968                  * finished job, or maybe cotradicts a running job and
969                  * hence needs to invalidate jobs. */
970
971                 switch (u->meta.job->type) {
972
973                 case JOB_START:
974                 case JOB_VERIFY_ACTIVE:
975
976                         if (UNIT_IS_ACTIVE_OR_RELOADING(ns))
977                                 job_finish_and_invalidate(u->meta.job, true);
978                         else if (u->meta.job->state == JOB_RUNNING && ns != UNIT_ACTIVATING) {
979                                 unexpected = true;
980                                 job_finish_and_invalidate(u->meta.job, false);
981                         }
982
983                         break;
984
985                 case JOB_RELOAD:
986                 case JOB_RELOAD_OR_START:
987
988                         if (u->meta.job->state == JOB_RUNNING) {
989                                 if (ns == UNIT_ACTIVE)
990                                         job_finish_and_invalidate(u->meta.job, true);
991                                 else if (ns != UNIT_ACTIVATING && ns != UNIT_ACTIVE_RELOADING) {
992                                         unexpected = true;
993                                         job_finish_and_invalidate(u->meta.job, false);
994                                 }
995                         }
996
997                         break;
998
999                 case JOB_STOP:
1000                 case JOB_RESTART:
1001                 case JOB_TRY_RESTART:
1002
1003                         if (ns == UNIT_INACTIVE)
1004                                 job_finish_and_invalidate(u->meta.job, true);
1005                         else if (u->meta.job->state == JOB_RUNNING && ns != UNIT_DEACTIVATING) {
1006                                 unexpected = true;
1007                                 job_finish_and_invalidate(u->meta.job, false);
1008                         }
1009
1010                         break;
1011
1012                 default:
1013                         assert_not_reached("Job type unknown");
1014                 }
1015         }
1016
1017         /* If this state change happened without being requested by a
1018          * job, then let's retroactively start or stop dependencies */
1019
1020         if (unexpected) {
1021                 if (UNIT_IS_INACTIVE_OR_DEACTIVATING(os) && UNIT_IS_ACTIVE_OR_ACTIVATING(ns))
1022                         retroactively_start_dependencies(u);
1023                 else if (UNIT_IS_ACTIVE_OR_ACTIVATING(os) && UNIT_IS_INACTIVE_OR_DEACTIVATING(ns))
1024                         retroactively_stop_dependencies(u);
1025         }
1026
1027         /* Some names are special */
1028         if (UNIT_IS_ACTIVE_OR_RELOADING(ns)) {
1029                 if (unit_has_name(u, SPECIAL_DBUS_SERVICE)) {
1030                         /* The bus just might have become available,
1031                          * hence try to connect to it, if we aren't
1032                          * yet connected. */
1033                         bus_init(u->meta.manager);
1034                 }
1035
1036                 if (unit_has_name(u, SPECIAL_SYSLOG_SERVICE))
1037                         /* The syslog daemon just might have become
1038                          * available, hence try to connect to it, if
1039                          * we aren't yet connected. */
1040                         log_open();
1041
1042                 if (u->meta.type == UNIT_MOUNT)
1043                         /* Another directory became available, let's
1044                          * check if that is enough to write our utmp
1045                          * entry. */
1046                         manager_write_utmp_reboot(u->meta.manager);
1047
1048                 if (u->meta.type == UNIT_TARGET)
1049                         /* A target got activated, maybe this is a runlevel? */
1050                         manager_write_utmp_runlevel(u->meta.manager, u);
1051
1052         } else if (!UNIT_IS_ACTIVE_OR_RELOADING(ns)) {
1053
1054                 if (unit_has_name(u, SPECIAL_SYSLOG_SERVICE))
1055                         /* The syslog daemon might just have
1056                          * terminated, hence try to disconnect from
1057                          * it. */
1058                         log_close_syslog();
1059
1060                 /* We don't care about D-Bus here, since we'll get an
1061                  * asynchronous notification for it anyway. */
1062         }
1063
1064         /* Maybe we finished startup and are now ready for being
1065          * stopped because unneeded? */
1066         unit_check_uneeded(u);
1067
1068         unit_add_to_dbus_queue(u);
1069         unit_add_to_gc_queue(u);
1070 }
1071
1072 int unit_watch_fd(Unit *u, int fd, uint32_t events, Watch *w) {
1073         struct epoll_event ev;
1074
1075         assert(u);
1076         assert(fd >= 0);
1077         assert(w);
1078         assert(w->type == WATCH_INVALID || (w->type == WATCH_FD && w->fd == fd && w->data.unit == u));
1079
1080         zero(ev);
1081         ev.data.ptr = w;
1082         ev.events = events;
1083
1084         if (epoll_ctl(u->meta.manager->epoll_fd,
1085                       w->type == WATCH_INVALID ? EPOLL_CTL_ADD : EPOLL_CTL_MOD,
1086                       fd,
1087                       &ev) < 0)
1088                 return -errno;
1089
1090         w->fd = fd;
1091         w->type = WATCH_FD;
1092         w->data.unit = u;
1093
1094         return 0;
1095 }
1096
1097 void unit_unwatch_fd(Unit *u, Watch *w) {
1098         assert(u);
1099         assert(w);
1100
1101         if (w->type == WATCH_INVALID)
1102                 return;
1103
1104         assert(w->type == WATCH_FD);
1105         assert(w->data.unit == u);
1106         assert_se(epoll_ctl(u->meta.manager->epoll_fd, EPOLL_CTL_DEL, w->fd, NULL) >= 0);
1107
1108         w->fd = -1;
1109         w->type = WATCH_INVALID;
1110         w->data.unit = NULL;
1111 }
1112
1113 int unit_watch_pid(Unit *u, pid_t pid) {
1114         assert(u);
1115         assert(pid >= 1);
1116
1117         /* Watch a specific PID. We only support one unit watching
1118          * each PID for now. */
1119
1120         return hashmap_put(u->meta.manager->watch_pids, UINT32_TO_PTR(pid), u);
1121 }
1122
1123 void unit_unwatch_pid(Unit *u, pid_t pid) {
1124         assert(u);
1125         assert(pid >= 1);
1126
1127         hashmap_remove_value(u->meta.manager->watch_pids, UINT32_TO_PTR(pid), u);
1128 }
1129
1130 int unit_watch_timer(Unit *u, usec_t delay, Watch *w) {
1131         struct itimerspec its;
1132         int flags, fd;
1133         bool ours;
1134
1135         assert(u);
1136         assert(w);
1137         assert(w->type == WATCH_INVALID || (w->type == WATCH_TIMER && w->data.unit == u));
1138
1139         /* This will try to reuse the old timer if there is one */
1140
1141         if (w->type == WATCH_TIMER) {
1142                 ours = false;
1143                 fd = w->fd;
1144         } else {
1145                 ours = true;
1146                 if ((fd = timerfd_create(CLOCK_MONOTONIC, TFD_NONBLOCK|TFD_CLOEXEC)) < 0)
1147                         return -errno;
1148         }
1149
1150         zero(its);
1151
1152         if (delay <= 0) {
1153                 /* Set absolute time in the past, but not 0, since we
1154                  * don't want to disarm the timer */
1155                 its.it_value.tv_sec = 0;
1156                 its.it_value.tv_nsec = 1;
1157
1158                 flags = TFD_TIMER_ABSTIME;
1159         } else {
1160                 timespec_store(&its.it_value, delay);
1161                 flags = 0;
1162         }
1163
1164         /* This will also flush the elapse counter */
1165         if (timerfd_settime(fd, flags, &its, NULL) < 0)
1166                 goto fail;
1167
1168         if (w->type == WATCH_INVALID) {
1169                 struct epoll_event ev;
1170
1171                 zero(ev);
1172                 ev.data.ptr = w;
1173                 ev.events = EPOLLIN;
1174
1175                 if (epoll_ctl(u->meta.manager->epoll_fd, EPOLL_CTL_ADD, fd, &ev) < 0)
1176                         goto fail;
1177         }
1178
1179         w->fd = fd;
1180         w->type = WATCH_TIMER;
1181         w->data.unit = u;
1182
1183         return 0;
1184
1185 fail:
1186         if (ours)
1187                 close_nointr_nofail(fd);
1188
1189         return -errno;
1190 }
1191
1192 void unit_unwatch_timer(Unit *u, Watch *w) {
1193         assert(u);
1194         assert(w);
1195
1196         if (w->type == WATCH_INVALID)
1197                 return;
1198
1199         assert(w->type == WATCH_TIMER && w->data.unit == u);
1200
1201         assert_se(epoll_ctl(u->meta.manager->epoll_fd, EPOLL_CTL_DEL, w->fd, NULL) >= 0);
1202         close_nointr_nofail(w->fd);
1203
1204         w->fd = -1;
1205         w->type = WATCH_INVALID;
1206         w->data.unit = NULL;
1207 }
1208
1209 bool unit_job_is_applicable(Unit *u, JobType j) {
1210         assert(u);
1211         assert(j >= 0 && j < _JOB_TYPE_MAX);
1212
1213         switch (j) {
1214
1215         case JOB_VERIFY_ACTIVE:
1216         case JOB_START:
1217                 return true;
1218
1219         case JOB_STOP:
1220         case JOB_RESTART:
1221         case JOB_TRY_RESTART:
1222                 return unit_can_start(u);
1223
1224         case JOB_RELOAD:
1225                 return unit_can_reload(u);
1226
1227         case JOB_RELOAD_OR_START:
1228                 return unit_can_reload(u) && unit_can_start(u);
1229
1230         default:
1231                 assert_not_reached("Invalid job type");
1232         }
1233 }
1234
1235 int unit_add_dependency(Unit *u, UnitDependency d, Unit *other, bool add_reference) {
1236
1237         static const UnitDependency inverse_table[_UNIT_DEPENDENCY_MAX] = {
1238                 [UNIT_REQUIRES] = UNIT_REQUIRED_BY,
1239                 [UNIT_REQUIRES_OVERRIDABLE] = UNIT_REQUIRED_BY_OVERRIDABLE,
1240                 [UNIT_WANTS] = UNIT_WANTED_BY,
1241                 [UNIT_REQUISITE] = UNIT_REQUIRED_BY,
1242                 [UNIT_REQUISITE_OVERRIDABLE] = UNIT_REQUIRED_BY_OVERRIDABLE,
1243                 [UNIT_REQUIRED_BY] = _UNIT_DEPENDENCY_INVALID,
1244                 [UNIT_REQUIRED_BY_OVERRIDABLE] = _UNIT_DEPENDENCY_INVALID,
1245                 [UNIT_WANTED_BY] = _UNIT_DEPENDENCY_INVALID,
1246                 [UNIT_CONFLICTS] = UNIT_CONFLICTS,
1247                 [UNIT_BEFORE] = UNIT_AFTER,
1248                 [UNIT_AFTER] = UNIT_BEFORE,
1249                 [UNIT_REFERENCES] = UNIT_REFERENCED_BY,
1250                 [UNIT_REFERENCED_BY] = UNIT_REFERENCES
1251         };
1252         int r, q = 0, v = 0, w = 0;
1253
1254         assert(u);
1255         assert(d >= 0 && d < _UNIT_DEPENDENCY_MAX);
1256         assert(inverse_table[d] != _UNIT_DEPENDENCY_INVALID);
1257         assert(other);
1258
1259         /* We won't allow dependencies on ourselves. We will not
1260          * consider them an error however. */
1261         if (u == other)
1262                 return 0;
1263
1264         if (UNIT_VTABLE(u)->no_requires &&
1265             (d == UNIT_REQUIRES ||
1266              d == UNIT_REQUIRES_OVERRIDABLE ||
1267              d == UNIT_REQUISITE ||
1268              d == UNIT_REQUISITE_OVERRIDABLE)) {
1269                     return -EINVAL;
1270         }
1271
1272         if ((r = set_ensure_allocated(&u->meta.dependencies[d], trivial_hash_func, trivial_compare_func)) < 0 ||
1273             (r = set_ensure_allocated(&other->meta.dependencies[inverse_table[d]], trivial_hash_func, trivial_compare_func)) < 0)
1274                 return r;
1275
1276         if (add_reference)
1277                 if ((r = set_ensure_allocated(&u->meta.dependencies[UNIT_REFERENCES], trivial_hash_func, trivial_compare_func)) < 0 ||
1278                     (r = set_ensure_allocated(&other->meta.dependencies[UNIT_REFERENCED_BY], trivial_hash_func, trivial_compare_func)) < 0)
1279                         return r;
1280
1281         if ((q = set_put(u->meta.dependencies[d], other)) < 0)
1282                 return q;
1283
1284         if ((v = set_put(other->meta.dependencies[inverse_table[d]], u)) < 0) {
1285                 r = v;
1286                 goto fail;
1287         }
1288
1289         if (add_reference) {
1290                 if ((w = set_put(u->meta.dependencies[UNIT_REFERENCES], other)) < 0) {
1291                         r = w;
1292                         goto fail;
1293                 }
1294
1295                 if ((r = set_put(other->meta.dependencies[UNIT_REFERENCED_BY], u)) < 0)
1296                         goto fail;
1297         }
1298
1299         unit_add_to_dbus_queue(u);
1300         return 0;
1301
1302 fail:
1303         if (q > 0)
1304                 set_remove(u->meta.dependencies[d], other);
1305
1306         if (v > 0)
1307                 set_remove(other->meta.dependencies[inverse_table[d]], u);
1308
1309         if (w > 0)
1310                 set_remove(u->meta.dependencies[UNIT_REFERENCES], other);
1311
1312         return r;
1313 }
1314
1315 static const char *resolve_template(Unit *u, const char *name, const char*path, char **p) {
1316         char *s;
1317
1318         assert(u);
1319         assert(name || path);
1320
1321         if (!name)
1322                 name = file_name_from_path(path);
1323
1324         if (!unit_name_is_template(name)) {
1325                 *p = NULL;
1326                 return name;
1327         }
1328
1329         if (u->meta.instance)
1330                 s = unit_name_replace_instance(name, u->meta.instance);
1331         else {
1332                 char *i;
1333
1334                 if (!(i = unit_name_to_prefix(u->meta.id)))
1335                         return NULL;
1336
1337                 s = unit_name_replace_instance(name, i);
1338                 free(i);
1339         }
1340
1341         if (!s)
1342                 return NULL;
1343
1344         *p = s;
1345         return s;
1346 }
1347
1348 int unit_add_dependency_by_name(Unit *u, UnitDependency d, const char *name, const char *path, bool add_reference) {
1349         Unit *other;
1350         int r;
1351         char *s;
1352
1353         assert(u);
1354         assert(name || path);
1355
1356         if (!(name = resolve_template(u, name, path, &s)))
1357                 return -ENOMEM;
1358
1359         if ((r = manager_load_unit(u->meta.manager, name, path, &other)) < 0)
1360                 goto finish;
1361
1362         r = unit_add_dependency(u, d, other, add_reference);
1363
1364 finish:
1365         free(s);
1366         return r;
1367 }
1368
1369 int unit_add_dependency_by_name_inverse(Unit *u, UnitDependency d, const char *name, const char *path, bool add_reference) {
1370         Unit *other;
1371         int r;
1372         char *s;
1373
1374         assert(u);
1375         assert(name || path);
1376
1377         if (!(name = resolve_template(u, name, path, &s)))
1378                 return -ENOMEM;
1379
1380         if ((r = manager_load_unit(u->meta.manager, name, path, &other)) < 0)
1381                 goto finish;
1382
1383         r = unit_add_dependency(other, d, u, add_reference);
1384
1385 finish:
1386         free(s);
1387         return r;
1388 }
1389
1390 int set_unit_path(const char *p) {
1391         char *cwd, *c;
1392         int r;
1393
1394         /* This is mostly for debug purposes */
1395
1396         if (path_is_absolute(p)) {
1397                 if (!(c = strdup(p)))
1398                         return -ENOMEM;
1399         } else {
1400                 if (!(cwd = get_current_dir_name()))
1401                         return -errno;
1402
1403                 r = asprintf(&c, "%s/%s", cwd, p);
1404                 free(cwd);
1405
1406                 if (r < 0)
1407                         return -ENOMEM;
1408         }
1409
1410         if (setenv("SYSTEMD_UNIT_PATH", c, 0) < 0) {
1411                 r = -errno;
1412                 free(c);
1413                 return r;
1414         }
1415
1416         return 0;
1417 }
1418
1419 char *unit_dbus_path(Unit *u) {
1420         char *p, *e;
1421
1422         assert(u);
1423
1424         if (!(e = bus_path_escape(u->meta.id)))
1425                 return NULL;
1426
1427         if (asprintf(&p, "/org/freedesktop/systemd1/unit/%s", e) < 0) {
1428                 free(e);
1429                 return NULL;
1430         }
1431
1432         free(e);
1433         return p;
1434 }
1435
1436 int unit_add_cgroup(Unit *u, CGroupBonding *b) {
1437         CGroupBonding *l;
1438         int r;
1439
1440         assert(u);
1441         assert(b);
1442         assert(b->path);
1443
1444         /* Ensure this hasn't been added yet */
1445         assert(!b->unit);
1446
1447         l = hashmap_get(u->meta.manager->cgroup_bondings, b->path);
1448         LIST_PREPEND(CGroupBonding, by_path, l, b);
1449
1450         if ((r = hashmap_replace(u->meta.manager->cgroup_bondings, b->path, l)) < 0) {
1451                 LIST_REMOVE(CGroupBonding, by_path, l, b);
1452                 return r;
1453         }
1454
1455         LIST_PREPEND(CGroupBonding, by_unit, u->meta.cgroup_bondings, b);
1456         b->unit = u;
1457
1458         return 0;
1459 }
1460
1461 static char *default_cgroup_path(Unit *u) {
1462         char *p;
1463         int r;
1464
1465         assert(u);
1466
1467         if (u->meta.instance) {
1468                 char *t;
1469
1470                 if (!(t = unit_name_template(u->meta.id)))
1471                         return NULL;
1472
1473                 r = asprintf(&p, "%s/%s/%s", u->meta.manager->cgroup_hierarchy, t, u->meta.instance);
1474                 free(t);
1475         } else
1476                 r = asprintf(&p, "%s/%s", u->meta.manager->cgroup_hierarchy, u->meta.id);
1477
1478         return r < 0 ? NULL : p;
1479 }
1480
1481 int unit_add_cgroup_from_text(Unit *u, const char *name) {
1482         size_t n;
1483         char *controller = NULL, *path = NULL;
1484         CGroupBonding *b = NULL;
1485         int r;
1486
1487         assert(u);
1488         assert(name);
1489
1490         /* Detect controller name */
1491         n = strcspn(name, ":");
1492
1493         if (name[n] == 0 ||
1494             (name[n] == ':' && name[n+1] == 0)) {
1495
1496                 /* Only controller name, no path? */
1497
1498                 if (!(path = default_cgroup_path(u)))
1499                         return -ENOMEM;
1500
1501         } else {
1502                 const char *p;
1503
1504                 /* Controller name, and path. */
1505                 p = name+n+1;
1506
1507                 if (!path_is_absolute(p))
1508                         return -EINVAL;
1509
1510                 if (!(path = strdup(p)))
1511                         return -ENOMEM;
1512         }
1513
1514         if (n > 0)
1515                 controller = strndup(name, n);
1516         else
1517                 controller = strdup(u->meta.manager->cgroup_controller);
1518
1519         if (!controller) {
1520                 r = -ENOMEM;
1521                 goto fail;
1522         }
1523
1524         if (cgroup_bonding_find_list(u->meta.cgroup_bondings, controller)) {
1525                 r = -EEXIST;
1526                 goto fail;
1527         }
1528
1529         if (!(b = new0(CGroupBonding, 1))) {
1530                 r = -ENOMEM;
1531                 goto fail;
1532         }
1533
1534         b->controller = controller;
1535         b->path = path;
1536         b->only_us = false;
1537         b->clean_up = false;
1538
1539         if ((r = unit_add_cgroup(u, b)) < 0)
1540                 goto fail;
1541
1542         return 0;
1543
1544 fail:
1545         free(path);
1546         free(controller);
1547         free(b);
1548
1549         return r;
1550 }
1551
1552 int unit_add_default_cgroup(Unit *u) {
1553         CGroupBonding *b;
1554         int r = -ENOMEM;
1555
1556         assert(u);
1557
1558         /* Adds in the default cgroup data, if it wasn't specified yet */
1559
1560         if (unit_get_default_cgroup(u))
1561                 return 0;
1562
1563         if (!(b = new0(CGroupBonding, 1)))
1564                 return -ENOMEM;
1565
1566         if (!(b->controller = strdup(u->meta.manager->cgroup_controller)))
1567                 goto fail;
1568
1569         if (!(b->path = default_cgroup_path(u)))
1570                 goto fail;
1571
1572         b->clean_up = true;
1573         b->only_us = true;
1574
1575         if ((r = unit_add_cgroup(u, b)) < 0)
1576                 goto fail;
1577
1578         return 0;
1579
1580 fail:
1581         free(b->path);
1582         free(b->controller);
1583         free(b);
1584
1585         return r;
1586 }
1587
1588 CGroupBonding* unit_get_default_cgroup(Unit *u) {
1589         assert(u);
1590
1591         return cgroup_bonding_find_list(u->meta.cgroup_bondings, u->meta.manager->cgroup_controller);
1592 }
1593
1594 int unit_load_related_unit(Unit *u, const char *type, Unit **_found) {
1595         char *t;
1596         int r;
1597
1598         assert(u);
1599         assert(type);
1600         assert(_found);
1601
1602         if (!(t = unit_name_change_suffix(u->meta.id, type)))
1603                 return -ENOMEM;
1604
1605         assert(!unit_has_name(u, t));
1606
1607         r = manager_load_unit(u->meta.manager, t, NULL, _found);
1608         free(t);
1609
1610         assert(r < 0 || *_found != u);
1611
1612         return r;
1613 }
1614
1615 int unit_get_related_unit(Unit *u, const char *type, Unit **_found) {
1616         Unit *found;
1617         char *t;
1618
1619         assert(u);
1620         assert(type);
1621         assert(_found);
1622
1623         if (!(t = unit_name_change_suffix(u->meta.id, type)))
1624                 return -ENOMEM;
1625
1626         assert(!unit_has_name(u, t));
1627
1628         found = manager_get_unit(u->meta.manager, t);
1629         free(t);
1630
1631         if (!found)
1632                 return -ENOENT;
1633
1634         *_found = found;
1635         return 0;
1636 }
1637
1638 static char *specifier_prefix_and_instance(char specifier, void *data, void *userdata) {
1639         Unit *u = userdata;
1640         assert(u);
1641
1642         return unit_name_to_prefix_and_instance(u->meta.id);
1643 }
1644
1645 static char *specifier_prefix(char specifier, void *data, void *userdata) {
1646         Unit *u = userdata;
1647         assert(u);
1648
1649         return unit_name_to_prefix(u->meta.id);
1650 }
1651
1652 static char *specifier_prefix_unescaped(char specifier, void *data, void *userdata) {
1653         Unit *u = userdata;
1654         char *p, *r;
1655
1656         assert(u);
1657
1658         if (!(p = unit_name_to_prefix(u->meta.id)))
1659                 return NULL;
1660
1661         r = unit_name_unescape(p);
1662         free(p);
1663
1664         return r;
1665 }
1666
1667 static char *specifier_instance_unescaped(char specifier, void *data, void *userdata) {
1668         Unit *u = userdata;
1669         assert(u);
1670
1671         if (u->meta.instance)
1672                 return unit_name_unescape(u->meta.instance);
1673
1674         return strdup("");
1675 }
1676
1677 char *unit_name_printf(Unit *u, const char* format) {
1678
1679         /*
1680          * This will use the passed string as format string and
1681          * replace the following specifiers:
1682          *
1683          * %n: the full id of the unit                 (foo@bar.waldo)
1684          * %N: the id of the unit without the suffix   (foo@bar)
1685          * %p: the prefix                              (foo)
1686          * %i: the instance                            (bar)
1687          */
1688
1689         const Specifier table[] = {
1690                 { 'n', specifier_string,              u->meta.id },
1691                 { 'N', specifier_prefix_and_instance, NULL },
1692                 { 'p', specifier_prefix,              NULL },
1693                 { 'i', specifier_string,              u->meta.instance },
1694                 { 0, NULL, NULL }
1695         };
1696
1697         assert(u);
1698         assert(format);
1699
1700         return specifier_printf(format, table, u);
1701 }
1702
1703 char *unit_full_printf(Unit *u, const char *format) {
1704
1705         /* This is similar to unit_name_printf() but also supports
1706          * unescaping */
1707
1708         const Specifier table[] = {
1709                 { 'n', specifier_string,              u->meta.id },
1710                 { 'N', specifier_prefix_and_instance, NULL },
1711                 { 'p', specifier_prefix,              NULL },
1712                 { 'P', specifier_prefix_unescaped,    NULL },
1713                 { 'i', specifier_string,              u->meta.instance },
1714                 { 'I', specifier_instance_unescaped,  NULL },
1715                 { 0, NULL, NULL }
1716         };
1717
1718         assert(u);
1719         assert(format);
1720
1721         return specifier_printf(format, table, u);
1722 }
1723
1724 char **unit_full_printf_strv(Unit *u, char **l) {
1725         size_t n;
1726         char **r, **i, **j;
1727
1728         /* Applies unit_full_printf to every entry in l */
1729
1730         assert(u);
1731
1732         n = strv_length(l);
1733         if (!(r = new(char*, n+1)))
1734                 return NULL;
1735
1736         for (i = l, j = r; *i; i++, j++)
1737                 if (!(*j = unit_full_printf(u, *i)))
1738                         goto fail;
1739
1740         *j = NULL;
1741         return r;
1742
1743 fail:
1744         j--;
1745         while (j >= r)
1746                 free(*j);
1747
1748         free(r);
1749
1750         return NULL;
1751 }
1752
1753 int unit_watch_bus_name(Unit *u, const char *name) {
1754         assert(u);
1755         assert(name);
1756
1757         /* Watch a specific name on the bus. We only support one unit
1758          * watching each name for now. */
1759
1760         return hashmap_put(u->meta.manager->watch_bus, name, u);
1761 }
1762
1763 void unit_unwatch_bus_name(Unit *u, const char *name) {
1764         assert(u);
1765         assert(name);
1766
1767         hashmap_remove_value(u->meta.manager->watch_bus, name, u);
1768 }
1769
1770 bool unit_can_serialize(Unit *u) {
1771         assert(u);
1772
1773         return UNIT_VTABLE(u)->serialize && UNIT_VTABLE(u)->deserialize_item;
1774 }
1775
1776 int unit_serialize(Unit *u, FILE *f, FDSet *fds) {
1777         int r;
1778
1779         assert(u);
1780         assert(f);
1781         assert(fds);
1782
1783         if (!unit_can_serialize(u))
1784                 return 0;
1785
1786         if ((r = UNIT_VTABLE(u)->serialize(u, f, fds)) < 0)
1787                 return r;
1788
1789         if (u->meta.job)
1790                 unit_serialize_item(u, f, "job", job_type_to_string(u->meta.job->type));
1791
1792         /* End marker */
1793         fputc('\n', f);
1794         return 0;
1795 }
1796
1797 void unit_serialize_item_format(Unit *u, FILE *f, const char *key, const char *format, ...) {
1798         va_list ap;
1799
1800         assert(u);
1801         assert(f);
1802         assert(key);
1803         assert(format);
1804
1805         fputs(key, f);
1806         fputc('=', f);
1807
1808         va_start(ap, format);
1809         vfprintf(f, format, ap);
1810         va_end(ap);
1811
1812         fputc('\n', f);
1813 }
1814
1815 void unit_serialize_item(Unit *u, FILE *f, const char *key, const char *value) {
1816         assert(u);
1817         assert(f);
1818         assert(key);
1819         assert(value);
1820
1821         fprintf(f, "%s=%s\n", key, value);
1822 }
1823
1824 int unit_deserialize(Unit *u, FILE *f, FDSet *fds) {
1825         int r;
1826
1827         assert(u);
1828         assert(f);
1829         assert(fds);
1830
1831         if (!unit_can_serialize(u))
1832                 return 0;
1833
1834         for (;;) {
1835                 char line[1024], *l, *v;
1836                 size_t k;
1837
1838                 if (!fgets(line, sizeof(line), f)) {
1839                         if (feof(f))
1840                                 return 0;
1841                         return -errno;
1842                 }
1843
1844                 l = strstrip(line);
1845
1846                 /* End marker */
1847                 if (l[0] == 0)
1848                         return 0;
1849
1850                 k = strcspn(l, "=");
1851
1852                 if (l[k] == '=') {
1853                         l[k] = 0;
1854                         v = l+k+1;
1855                 } else
1856                         v = l+k;
1857
1858                 if (streq(l, "job")) {
1859                         JobType type;
1860
1861                         if ((type = job_type_from_string(v)) < 0)
1862                                 log_debug("Failed to parse job type value %s", v);
1863                         else
1864                                 u->meta.deserialized_job = type;
1865
1866                         continue;
1867                 }
1868
1869                 if ((r = UNIT_VTABLE(u)->deserialize_item(u, l, v, fds)) < 0)
1870                         return r;
1871         }
1872 }
1873
1874 int unit_add_node_link(Unit *u, const char *what, bool wants) {
1875         Unit *device;
1876         char *e;
1877         int r;
1878
1879         assert(u);
1880
1881         if (!what)
1882                 return 0;
1883
1884         /* Adds in links to the device node that this unit is based on */
1885
1886         if (!is_device_path(what))
1887                 return 0;
1888
1889         if (!(e = unit_name_build_escape(what+1, NULL, ".device")))
1890                 return -ENOMEM;
1891
1892         r = manager_load_unit(u->meta.manager, e, NULL, &device);
1893         free(e);
1894
1895         if (r < 0)
1896                 return r;
1897
1898         if ((r = unit_add_dependency(u, UNIT_AFTER, device, true)) < 0)
1899                 return r;
1900
1901         if ((r = unit_add_dependency(u, UNIT_REQUIRES, device, true)) < 0)
1902                 return r;
1903
1904         if (wants)
1905                 if ((r = unit_add_dependency(device, UNIT_WANTS, u, false)) < 0)
1906                         return r;
1907
1908         return 0;
1909 }
1910
1911 int unit_coldplug(Unit *u) {
1912         int r;
1913
1914         assert(u);
1915
1916         if (UNIT_VTABLE(u)->coldplug)
1917                 if ((r = UNIT_VTABLE(u)->coldplug(u)) < 0)
1918                         return r;
1919
1920         if (u->meta.deserialized_job >= 0) {
1921                 if ((r = manager_add_job(u->meta.manager, u->meta.deserialized_job, u, JOB_FAIL, false, NULL)) < 0)
1922                         return r;
1923
1924                 u->meta.deserialized_job = _JOB_TYPE_INVALID;
1925         }
1926
1927         return 0;
1928 }
1929
1930 static const char* const unit_type_table[_UNIT_TYPE_MAX] = {
1931         [UNIT_SERVICE] = "service",
1932         [UNIT_TIMER] = "timer",
1933         [UNIT_SOCKET] = "socket",
1934         [UNIT_TARGET] = "target",
1935         [UNIT_DEVICE] = "device",
1936         [UNIT_MOUNT] = "mount",
1937         [UNIT_AUTOMOUNT] = "automount",
1938         [UNIT_SNAPSHOT] = "snapshot",
1939         [UNIT_SWAP] = "swap"
1940 };
1941
1942 DEFINE_STRING_TABLE_LOOKUP(unit_type, UnitType);
1943
1944 static const char* const unit_load_state_table[_UNIT_LOAD_STATE_MAX] = {
1945         [UNIT_STUB] = "stub",
1946         [UNIT_LOADED] = "loaded",
1947         [UNIT_FAILED] = "failed",
1948         [UNIT_MERGED] = "merged"
1949 };
1950
1951 DEFINE_STRING_TABLE_LOOKUP(unit_load_state, UnitLoadState);
1952
1953 static const char* const unit_active_state_table[_UNIT_ACTIVE_STATE_MAX] = {
1954         [UNIT_ACTIVE] = "active",
1955         [UNIT_INACTIVE] = "inactive",
1956         [UNIT_ACTIVATING] = "activating",
1957         [UNIT_DEACTIVATING] = "deactivating"
1958 };
1959
1960 DEFINE_STRING_TABLE_LOOKUP(unit_active_state, UnitActiveState);
1961
1962 static const char* const unit_dependency_table[_UNIT_DEPENDENCY_MAX] = {
1963         [UNIT_REQUIRES] = "Requires",
1964         [UNIT_REQUIRES_OVERRIDABLE] = "RequiresOverridable",
1965         [UNIT_WANTS] = "Wants",
1966         [UNIT_REQUISITE] = "Requisite",
1967         [UNIT_REQUISITE_OVERRIDABLE] = "RequisiteOverridable",
1968         [UNIT_REQUIRED_BY] = "RequiredBy",
1969         [UNIT_REQUIRED_BY_OVERRIDABLE] = "RequiredByOverridable",
1970         [UNIT_WANTED_BY] = "WantedBy",
1971         [UNIT_CONFLICTS] = "Conflicts",
1972         [UNIT_BEFORE] = "Before",
1973         [UNIT_AFTER] = "After",
1974         [UNIT_REFERENCES] = "References",
1975         [UNIT_REFERENCED_BY] = "ReferencedBy"
1976 };
1977
1978 DEFINE_STRING_TABLE_LOOKUP(unit_dependency, UnitDependency);
1979
1980 static const char* const kill_mode_table[_KILL_MODE_MAX] = {
1981         [KILL_CONTROL_GROUP] = "control-group",
1982         [KILL_PROCESS_GROUP] = "process-group",
1983         [KILL_PROCESS] = "process",
1984         [KILL_NONE] = "none"
1985 };
1986
1987 DEFINE_STRING_TABLE_LOOKUP(kill_mode, KillMode);