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53e1b683 1/* SPDX-License-Identifier: LGPL-2.1+ */
40ca29a1
LP
2/***
3 This file is part of systemd.
4
5 Copyright 2013 Lennart Poettering
6
7 systemd is free software; you can redistribute it and/or modify it
8 under the terms of the GNU Lesser General Public License as published by
9 the Free Software Foundation; either version 2.1 of the License, or
10 (at your option) any later version.
11
12 systemd is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 Lesser General Public License for more details.
16
17 You should have received a copy of the GNU Lesser General Public License
18 along with systemd; If not, see <http://www.gnu.org/licenses/>.
19***/
20
a8fbdf54
TA
21#include <errno.h>
22#include <fcntl.h>
23#include <inttypes.h>
24#include <stdio.h>
25#include <stdlib.h>
26#include <string.h>
27#include <sys/ioctl.h>
28#include <sys/resource.h>
0c842e0a 29#include <sys/socket.h>
a8fbdf54 30#include <unistd.h>
0c842e0a 31
a8fbdf54 32#include "sd-bus-protocol.h"
4f5dd394 33#include "sd-bus.h"
ebd011d9
LP
34#include "sd-daemon.h"
35#include "sd-event.h"
a8fbdf54 36#include "sd-id128.h"
d53d9474 37
b5efdb8a 38#include "alloc-util.h"
d53d9474
LP
39#include "bus-internal.h"
40#include "bus-label.h"
41#include "bus-message.h"
3ffd4af2 42#include "bus-util.h"
52610b02 43#include "cap-list.h"
21771f33 44#include "cgroup-util.h"
40ca29a1 45#include "def.h"
4f5dd394 46#include "escape.h"
3ffd4af2 47#include "fd-util.h"
2bba9a57 48#include "missing.h"
21771f33 49#include "mount-util.h"
73186d53 50#include "nsflags.h"
6bedfcbb 51#include "parse-util.h"
ee104e11 52#include "proc-cmdline.h"
78f22b97 53#include "rlimit-util.h"
15a5e950 54#include "stdio-util.h"
d53d9474 55#include "strv.h"
ee104e11 56#include "user-util.h"
40ca29a1 57
19070062 58static int name_owner_change_callback(sd_bus_message *m, void *userdata, sd_bus_error *ret_error) {
40ca29a1
LP
59 sd_event *e = userdata;
60
40ca29a1
LP
61 assert(m);
62 assert(e);
63
19070062 64 sd_bus_close(sd_bus_message_get_bus(m));
6203e07a 65 sd_event_exit(e, 0);
b27adf35 66
40ca29a1
LP
67 return 1;
68}
69
6203e07a 70int bus_async_unregister_and_exit(sd_event *e, sd_bus *bus, const char *name) {
75152a4d 71 const char *match;
11846aa7 72 const char *unique;
40ca29a1
LP
73 int r;
74
75 assert(e);
76 assert(bus);
77 assert(name);
78
6203e07a
LP
79 /* We unregister the name here and then wait for the
80 * NameOwnerChanged signal for this event to arrive before we
81 * quit. We do this in order to make sure that any queued
82 * requests are still processed before we really exit. */
83
11846aa7 84 r = sd_bus_get_unique_name(bus, &unique);
40ca29a1
LP
85 if (r < 0)
86 return r;
87
75152a4d
LP
88 match = strjoina(
89 "sender='org.freedesktop.DBus',"
90 "type='signal',"
91 "interface='org.freedesktop.DBus',"
92 "member='NameOwnerChanged',"
93 "path='/org/freedesktop/DBus',"
94 "arg0='", name, "',",
95 "arg1='", unique, "',",
96 "arg2=''");
97
98 r = sd_bus_add_match_async(bus, NULL, match, name_owner_change_callback, NULL, e);
40ca29a1
LP
99 if (r < 0)
100 return r;
101
75152a4d 102 r = sd_bus_release_name_async(bus, NULL, name, NULL, NULL);
40ca29a1
LP
103 if (r < 0)
104 return r;
105
40ca29a1
LP
106 return 0;
107}
108
37224a5f
LP
109int bus_event_loop_with_idle(
110 sd_event *e,
111 sd_bus *bus,
112 const char *name,
113 usec_t timeout,
114 check_idle_t check_idle,
115 void *userdata) {
40ca29a1 116 bool exiting = false;
6203e07a 117 int r, code;
40ca29a1
LP
118
119 assert(e);
120 assert(bus);
121 assert(name);
122
123 for (;;) {
37224a5f
LP
124 bool idle;
125
40ca29a1
LP
126 r = sd_event_get_state(e);
127 if (r < 0)
128 return r;
40ca29a1
LP
129 if (r == SD_EVENT_FINISHED)
130 break;
131
37224a5f
LP
132 if (check_idle)
133 idle = check_idle(userdata);
134 else
135 idle = true;
136
137 r = sd_event_run(e, exiting || !idle ? (uint64_t) -1 : timeout);
40ca29a1
LP
138 if (r < 0)
139 return r;
140
a8ba6cd1 141 if (r == 0 && !exiting && idle) {
b27adf35
LP
142
143 r = sd_bus_try_close(bus);
144 if (r == -EBUSY)
145 continue;
146
430e21c2
LP
147 /* Fallback for dbus1 connections: we
148 * unregister the name and wait for the
149 * response to come through for it */
15411c0c 150 if (r == -EOPNOTSUPP) {
430e21c2
LP
151
152 /* Inform the service manager that we
153 * are going down, so that it will
154 * queue all further start requests,
155 * instead of assuming we are already
156 * running. */
157 sd_notify(false, "STOPPING=1");
b27adf35
LP
158
159 r = bus_async_unregister_and_exit(e, bus, name);
160 if (r < 0)
161 return r;
162
163 exiting = true;
164 continue;
165 }
166
40ca29a1
LP
167 if (r < 0)
168 return r;
169
b27adf35
LP
170 sd_event_exit(e, 0);
171 break;
40ca29a1
LP
172 }
173 }
174
6203e07a
LP
175 r = sd_event_get_exit_code(e, &code);
176 if (r < 0)
177 return r;
178
179 return code;
40ca29a1
LP
180}
181
5fd38859 182int bus_name_has_owner(sd_bus *c, const char *name, sd_bus_error *error) {
4afd3348 183 _cleanup_(sd_bus_message_unrefp) sd_bus_message *rep = NULL;
5fd38859
DH
184 int r, has_owner = 0;
185
186 assert(c);
187 assert(name);
188
189 r = sd_bus_call_method(c,
190 "org.freedesktop.DBus",
191 "/org/freedesktop/dbus",
192 "org.freedesktop.DBus",
193 "NameHasOwner",
194 error,
195 &rep,
196 "s",
197 name);
198 if (r < 0)
199 return r;
200
201 r = sd_bus_message_read_basic(rep, 'b', &has_owner);
202 if (r < 0)
203 return sd_bus_error_set_errno(error, r);
204
205 return has_owner;
206}
207
c529695e 208static int check_good_user(sd_bus_message *m, uid_t good_user) {
4afd3348 209 _cleanup_(sd_bus_creds_unrefp) sd_bus_creds *creds = NULL;
c529695e
LP
210 uid_t sender_uid;
211 int r;
212
213 assert(m);
214
215 if (good_user == UID_INVALID)
216 return 0;
217
218 r = sd_bus_query_sender_creds(m, SD_BUS_CREDS_EUID, &creds);
219 if (r < 0)
220 return r;
221
0f514420
LP
222 /* Don't trust augmented credentials for authorization */
223 assert_return((sd_bus_creds_get_augmented_mask(creds) & SD_BUS_CREDS_EUID) == 0, -EPERM);
224
c529695e
LP
225 r = sd_bus_creds_get_euid(creds, &sender_uid);
226 if (r < 0)
227 return r;
228
229 return sender_uid == good_user;
230}
231
ceb24229 232int bus_test_polkit(
f3885791 233 sd_bus_message *call,
def9a7aa 234 int capability,
40ca29a1 235 const char *action,
403ed0e5 236 const char **details,
c529695e 237 uid_t good_user,
40ca29a1
LP
238 bool *_challenge,
239 sd_bus_error *e) {
240
40ca29a1
LP
241 int r;
242
f3885791 243 assert(call);
40ca29a1
LP
244 assert(action);
245
ceb24229
LP
246 /* Tests non-interactively! */
247
c529695e
LP
248 r = check_good_user(call, good_user);
249 if (r != 0)
250 return r;
251
f3885791 252 r = sd_bus_query_sender_privilege(call, capability);
5b12334d
LP
253 if (r < 0)
254 return r;
f3885791 255 else if (r > 0)
40ca29a1 256 return 1;
349cc4a5 257#if ENABLE_POLKIT
40ca29a1 258 else {
4afd3348
LP
259 _cleanup_(sd_bus_message_unrefp) sd_bus_message *request = NULL;
260 _cleanup_(sd_bus_message_unrefp) sd_bus_message *reply = NULL;
ceb24229 261 int authorized = false, challenge = false;
403ed0e5 262 const char *sender, **k, **v;
5b12334d 263
f3885791 264 sender = sd_bus_message_get_sender(call);
5b12334d
LP
265 if (!sender)
266 return -EBADMSG;
40ca29a1 267
403ed0e5 268 r = sd_bus_message_new_method_call(
f3885791 269 call->bus,
403ed0e5 270 &request,
40ca29a1
LP
271 "org.freedesktop.PolicyKit1",
272 "/org/freedesktop/PolicyKit1/Authority",
273 "org.freedesktop.PolicyKit1.Authority",
403ed0e5
MC
274 "CheckAuthorization");
275 if (r < 0)
276 return r;
277
278 r = sd_bus_message_append(
279 request,
280 "(sa{sv})s",
40ca29a1 281 "system-bus-name", 1, "name", "s", sender,
403ed0e5
MC
282 action);
283 if (r < 0)
284 return r;
285
286 r = sd_bus_message_open_container(request, 'a', "{ss}");
287 if (r < 0)
288 return r;
40ca29a1 289
403ed0e5
MC
290 STRV_FOREACH_PAIR(k, v, details) {
291 r = sd_bus_message_append(request, "{ss}", *k, *v);
292 if (r < 0)
293 return r;
294 }
295
296 r = sd_bus_message_close_container(request);
297 if (r < 0)
298 return r;
299
300 r = sd_bus_message_append(request, "us", 0, NULL);
301 if (r < 0)
302 return r;
303
304 r = sd_bus_call(call->bus, request, 0, e, &reply);
40ca29a1
LP
305 if (r < 0) {
306 /* Treat no PK available as access denied */
307 if (sd_bus_error_has_name(e, SD_BUS_ERROR_SERVICE_UNKNOWN)) {
308 sd_bus_error_free(e);
309 return -EACCES;
310 }
311
312 return r;
313 }
314
313333b4 315 r = sd_bus_message_enter_container(reply, 'r', "bba{ss}");
2b49a470
TA
316 if (r < 0)
317 return r;
318
319 r = sd_bus_message_read(reply, "bb", &authorized, &challenge);
320 if (r < 0)
321 return r;
40ca29a1
LP
322
323 if (authorized)
324 return 1;
325
326 if (_challenge) {
327 *_challenge = challenge;
328 return 0;
329 }
330 }
331#endif
332
333 return -EACCES;
334}
335
349cc4a5 336#if ENABLE_POLKIT
40ca29a1
LP
337
338typedef struct AsyncPolkitQuery {
339 sd_bus_message *request, *reply;
340 sd_bus_message_handler_t callback;
341 void *userdata;
19befb2d 342 sd_bus_slot *slot;
ebcf1f97 343 Hashmap *registry;
40ca29a1
LP
344} AsyncPolkitQuery;
345
19befb2d 346static void async_polkit_query_free(AsyncPolkitQuery *q) {
ebcf1f97
LP
347
348 if (!q)
349 return;
350
19befb2d 351 sd_bus_slot_unref(q->slot);
ebcf1f97
LP
352
353 if (q->registry && q->request)
354 hashmap_remove(q->registry, q->request);
355
356 sd_bus_message_unref(q->request);
357 sd_bus_message_unref(q->reply);
358
359 free(q);
360}
361
19070062 362static int async_polkit_callback(sd_bus_message *reply, void *userdata, sd_bus_error *error) {
4afd3348 363 _cleanup_(sd_bus_error_free) sd_bus_error error_buffer = SD_BUS_ERROR_NULL;
ebcf1f97 364 AsyncPolkitQuery *q = userdata;
40ca29a1
LP
365 int r;
366
40ca29a1
LP
367 assert(reply);
368 assert(q);
369
19befb2d 370 q->slot = sd_bus_slot_unref(q->slot);
40ca29a1 371 q->reply = sd_bus_message_ref(reply);
40ca29a1 372
ebcf1f97
LP
373 r = sd_bus_message_rewind(q->request, true);
374 if (r < 0) {
375 r = sd_bus_reply_method_errno(q->request, r, NULL);
376 goto finish;
377 }
40ca29a1 378
19070062 379 r = q->callback(q->request, q->userdata, &error_buffer);
ebcf1f97 380 r = bus_maybe_reply_error(q->request, r, &error_buffer);
40ca29a1 381
ebcf1f97 382finish:
19befb2d
LP
383 async_polkit_query_free(q);
384
ebcf1f97 385 return r;
40ca29a1
LP
386}
387
388#endif
389
390int bus_verify_polkit_async(
f3885791 391 sd_bus_message *call,
def9a7aa 392 int capability,
40ca29a1 393 const char *action,
403ed0e5 394 const char **details,
40ca29a1 395 bool interactive,
c529695e 396 uid_t good_user,
f3885791
LP
397 Hashmap **registry,
398 sd_bus_error *error) {
40ca29a1 399
349cc4a5 400#if ENABLE_POLKIT
4afd3348 401 _cleanup_(sd_bus_message_unrefp) sd_bus_message *pk = NULL;
40ca29a1 402 AsyncPolkitQuery *q;
403ed0e5 403 const char *sender, **k, **v;
f3885791
LP
404 sd_bus_message_handler_t callback;
405 void *userdata;
b911eb15 406 int c;
5b12334d 407#endif
40ca29a1
LP
408 int r;
409
f3885791 410 assert(call);
40ca29a1 411 assert(action);
f3885791 412 assert(registry);
40ca29a1 413
c529695e
LP
414 r = check_good_user(call, good_user);
415 if (r != 0)
416 return r;
417
349cc4a5 418#if ENABLE_POLKIT
f3885791 419 q = hashmap_get(*registry, call);
40ca29a1 420 if (q) {
102d8f81 421 int authorized, challenge;
40ca29a1
LP
422
423 /* This is the second invocation of this function, and
424 * there's already a response from polkit, let's
425 * process it */
426 assert(q->reply);
427
428 if (sd_bus_message_is_method_error(q->reply, NULL)) {
429 const sd_bus_error *e;
430
ebcf1f97 431 /* Copy error from polkit reply */
40ca29a1
LP
432 e = sd_bus_message_get_error(q->reply);
433 sd_bus_error_copy(error, e);
40ca29a1 434
ebcf1f97
LP
435 /* Treat no PK available as access denied */
436 if (sd_bus_error_has_name(e, SD_BUS_ERROR_SERVICE_UNKNOWN))
437 return -EACCES;
438
5958d089 439 return -sd_bus_error_get_errno(e);
40ca29a1
LP
440 }
441
442 r = sd_bus_message_enter_container(q->reply, 'r', "bba{ss}");
443 if (r >= 0)
444 r = sd_bus_message_read(q->reply, "bb", &authorized, &challenge);
445
40ca29a1
LP
446 if (r < 0)
447 return r;
448
449 if (authorized)
450 return 1;
451
f2288cc6
LP
452 if (challenge)
453 return sd_bus_error_set(error, SD_BUS_ERROR_INTERACTIVE_AUTHORIZATION_REQUIRED, "Interactive authentication required.");
454
40ca29a1
LP
455 return -EACCES;
456 }
457#endif
458
f3885791 459 r = sd_bus_query_sender_privilege(call, capability);
5b12334d
LP
460 if (r < 0)
461 return r;
f3885791 462 else if (r > 0)
40ca29a1 463 return 1;
5b12334d 464
349cc4a5 465#if ENABLE_POLKIT
f3885791
LP
466 if (sd_bus_get_current_message(call->bus) != call)
467 return -EINVAL;
468
469 callback = sd_bus_get_current_handler(call->bus);
470 if (!callback)
471 return -EINVAL;
472
473 userdata = sd_bus_get_current_userdata(call->bus);
474
475 sender = sd_bus_message_get_sender(call);
5b12334d
LP
476 if (!sender)
477 return -EBADMSG;
40ca29a1 478
b911eb15
LP
479 c = sd_bus_message_get_allow_interactive_authorization(call);
480 if (c < 0)
481 return c;
482 if (c > 0)
483 interactive = true;
484
d5099efc 485 r = hashmap_ensure_allocated(registry, NULL);
40ca29a1
LP
486 if (r < 0)
487 return r;
488
489 r = sd_bus_message_new_method_call(
f3885791 490 call->bus,
151b9b96 491 &pk,
40ca29a1
LP
492 "org.freedesktop.PolicyKit1",
493 "/org/freedesktop/PolicyKit1/Authority",
494 "org.freedesktop.PolicyKit1.Authority",
151b9b96 495 "CheckAuthorization");
40ca29a1
LP
496 if (r < 0)
497 return r;
498
499 r = sd_bus_message_append(
500 pk,
403ed0e5 501 "(sa{sv})s",
40ca29a1 502 "system-bus-name", 1, "name", "s", sender,
403ed0e5
MC
503 action);
504 if (r < 0)
505 return r;
506
507 r = sd_bus_message_open_container(pk, 'a', "{ss}");
508 if (r < 0)
509 return r;
510
511 STRV_FOREACH_PAIR(k, v, details) {
512 r = sd_bus_message_append(pk, "{ss}", *k, *v);
513 if (r < 0)
514 return r;
515 }
516
517 r = sd_bus_message_close_container(pk);
518 if (r < 0)
519 return r;
520
521 r = sd_bus_message_append(pk, "us", !!interactive, NULL);
40ca29a1
LP
522 if (r < 0)
523 return r;
524
525 q = new0(AsyncPolkitQuery, 1);
526 if (!q)
527 return -ENOMEM;
528
f3885791 529 q->request = sd_bus_message_ref(call);
40ca29a1
LP
530 q->callback = callback;
531 q->userdata = userdata;
532
f3885791 533 r = hashmap_put(*registry, call, q);
40ca29a1 534 if (r < 0) {
19befb2d 535 async_polkit_query_free(q);
40ca29a1
LP
536 return r;
537 }
538
ebcf1f97
LP
539 q->registry = *registry;
540
f3885791 541 r = sd_bus_call_async(call->bus, &q->slot, pk, async_polkit_callback, q, 0);
ebcf1f97 542 if (r < 0) {
19befb2d 543 async_polkit_query_free(q);
40ca29a1 544 return r;
ebcf1f97 545 }
40ca29a1
LP
546
547 return 0;
548#endif
549
550 return -EACCES;
551}
552
36e34057 553void bus_verify_polkit_async_registry_free(Hashmap *registry) {
349cc4a5 554#if ENABLE_POLKIT
224b0e7a 555 hashmap_free_with_destructor(registry, async_polkit_query_free);
40ca29a1
LP
556#endif
557}
0c842e0a 558
718db961 559int bus_check_peercred(sd_bus *c) {
0c842e0a 560 struct ucred ucred;
3e641e36 561 int fd, r;
0c842e0a
TG
562
563 assert(c);
564
565 fd = sd_bus_get_fd(c);
0f8bd8de
LP
566 if (fd < 0)
567 return fd;
0c842e0a 568
3e641e36
LP
569 r = getpeercred(fd, &ucred);
570 if (r < 0)
571 return r;
0c842e0a
TG
572
573 if (ucred.uid != 0 && ucred.uid != geteuid())
574 return -EPERM;
575
576 return 1;
577}
578
266f3e26 579int bus_connect_system_systemd(sd_bus **_bus) {
4afd3348 580 _cleanup_(sd_bus_unrefp) sd_bus *bus = NULL;
0c842e0a 581 int r;
0c842e0a
TG
582
583 assert(_bus);
584
0f8bd8de 585 if (geteuid() != 0)
266f3e26 586 return sd_bus_default_system(_bus);
a1da8583 587
a132bef0
ZJS
588 /* If we are root then let's talk directly to the system
589 * instance, instead of going via the bus */
a6aa8912
LP
590
591 r = sd_bus_new(&bus);
0f8bd8de
LP
592 if (r < 0)
593 return r;
a1da8583 594
a6aa8912
LP
595 r = sd_bus_set_address(bus, "unix:path=/run/systemd/private");
596 if (r < 0)
597 return r;
598
599 r = sd_bus_start(bus);
600 if (r < 0)
266f3e26 601 return sd_bus_default_system(_bus);
a6aa8912 602
0f8bd8de 603 r = bus_check_peercred(bus);
a1da8583
TG
604 if (r < 0)
605 return r;
606
607 *_bus = bus;
0f8bd8de
LP
608 bus = NULL;
609
a1da8583
TG
610 return 0;
611}
612
266f3e26 613int bus_connect_user_systemd(sd_bus **_bus) {
4afd3348 614 _cleanup_(sd_bus_unrefp) sd_bus *bus = NULL;
a6aa8912 615 _cleanup_free_ char *ee = NULL;
41dd15e4
LP
616 const char *e;
617 int r;
618
41dd15e4
LP
619 assert(_bus);
620
621 e = secure_getenv("XDG_RUNTIME_DIR");
537220d9 622 if (!e)
266f3e26 623 return sd_bus_default_user(_bus);
537220d9 624
a6aa8912
LP
625 ee = bus_address_escape(e);
626 if (!ee)
537220d9 627 return -ENOMEM;
41dd15e4
LP
628
629 r = sd_bus_new(&bus);
630 if (r < 0)
631 return r;
632
605405c6 633 bus->address = strjoin("unix:path=", ee, "/systemd/private");
a6aa8912
LP
634 if (!bus->address)
635 return -ENOMEM;
41dd15e4
LP
636
637 r = sd_bus_start(bus);
638 if (r < 0)
266f3e26 639 return sd_bus_default_user(_bus);
41dd15e4
LP
640
641 r = bus_check_peercred(bus);
642 if (r < 0)
643 return r;
644
645 *_bus = bus;
646 bus = NULL;
647
648 return 0;
649}
650
4f9a9105
ZJS
651#define print_property(name, fmt, ...) \
652 do { \
653 if (value) \
654 printf(fmt "\n", __VA_ARGS__); \
655 else \
656 printf("%s=" fmt "\n", name, __VA_ARGS__); \
508f63b4 657 } while (0)
4f9a9105 658
07636114 659int bus_print_property(const char *name, sd_bus_message *m, bool value, bool all) {
a1da8583
TG
660 char type;
661 const char *contents;
9f6eb1cd 662 int r;
a1da8583
TG
663
664 assert(name);
07636114 665 assert(m);
a1da8583 666
07636114 667 r = sd_bus_message_peek_type(m, &type, &contents);
9f6eb1cd
KS
668 if (r < 0)
669 return r;
a1da8583
TG
670
671 switch (type) {
672
673 case SD_BUS_TYPE_STRING: {
674 const char *s;
9f6eb1cd 675
07636114 676 r = sd_bus_message_read_basic(m, type, &s);
9f6eb1cd
KS
677 if (r < 0)
678 return r;
a1da8583 679
5993d46a
ZJS
680 if (all || !isempty(s)) {
681 bool good;
682
683 /* This property has a single value, so we need to take
684 * care not to print a new line, everything else is OK. */
685 good = !strchr(s, '\n');
686 print_property(name, "%s", good ? s : "[unprintable]");
687 }
a1da8583
TG
688
689 return 1;
690 }
691
692 case SD_BUS_TYPE_BOOLEAN: {
c2fa048c 693 int b;
a1da8583 694
07636114 695 r = sd_bus_message_read_basic(m, type, &b);
9f6eb1cd
KS
696 if (r < 0)
697 return r;
698
4f9a9105 699 print_property(name, "%s", yes_no(b));
a1da8583
TG
700
701 return 1;
702 }
703
704 case SD_BUS_TYPE_UINT64: {
705 uint64_t u;
706
07636114 707 r = sd_bus_message_read_basic(m, type, &u);
9f6eb1cd
KS
708 if (r < 0)
709 return r;
a1da8583
TG
710
711 /* Yes, heuristics! But we can change this check
712 * should it turn out to not be sufficient */
713
68a4b89c 714 if (endswith(name, "Timestamp") || STR_IN_SET(name, "NextElapseUSecRealtime", "LastTriggerUSec")) {
a1da8583
TG
715 char timestamp[FORMAT_TIMESTAMP_MAX], *t;
716
717 t = format_timestamp(timestamp, sizeof(timestamp), u);
718 if (t || all)
4f9a9105 719 print_property(name, "%s", strempty(t));
a1da8583
TG
720
721 } else if (strstr(name, "USec")) {
722 char timespan[FORMAT_TIMESPAN_MAX];
723
4f9a9105 724 print_property(name, "%s", format_timespan(timespan, sizeof(timespan), u, 0));
73186d53
DH
725 } else if (streq(name, "RestrictNamespaces")) {
726 _cleanup_free_ char *s = NULL;
ae978b9f 727 const char *result;
73186d53
DH
728
729 if ((u & NAMESPACE_FLAGS_ALL) == 0)
730 result = "yes";
731 else if ((u & NAMESPACE_FLAGS_ALL) == NAMESPACE_FLAGS_ALL)
732 result = "no";
733 else {
734 r = namespace_flag_to_string_many(u, &s);
735 if (r < 0)
736 return r;
737
738 result = s;
739 }
740
741 print_property(name, "%s", result);
21771f33
YW
742
743 } else if (streq(name, "MountFlags")) {
ae978b9f 744 const char *result;
21771f33
YW
745
746 result = mount_propagation_flags_to_string(u);
747 if (!result)
748 return -EINVAL;
749
750 print_property(name, "%s", result);
751
52610b02
YW
752 } else if (STR_IN_SET(name, "CapabilityBoundingSet", "AmbientCapabilities")) {
753 _cleanup_free_ char *s = NULL;
754
755 r = capability_set_to_string_alloc(u, &s);
756 if (r < 0)
757 return r;
758
759 print_property(name, "%s", s);
760
21771f33
YW
761 } else if ((STR_IN_SET(name, "CPUWeight", "StartupCPUWeight", "IOWeight", "StartupIOWeight") && u == CGROUP_WEIGHT_INVALID) ||
762 (STR_IN_SET(name, "CPUShares", "StartupCPUShares") && u == CGROUP_CPU_SHARES_INVALID) ||
763 (STR_IN_SET(name, "BlockIOWeight", "StartupBlockIOWeight") && u == CGROUP_BLKIO_WEIGHT_INVALID) ||
764 (STR_IN_SET(name, "MemoryCurrent", "TasksCurrent") && u == (uint64_t) -1) ||
765 (endswith(name, "NSec") && u == (uint64_t) -1))
766
767 print_property(name, "%s", "[not set]");
768
769 else if ((STR_IN_SET(name, "MemoryLow", "MemoryHigh", "MemoryMax", "MemorySwapMax", "MemoryLimit") && u == CGROUP_LIMIT_MAX) ||
770 (STR_IN_SET(name, "TasksMax", "DefaultTasksMax") && u == (uint64_t) -1) ||
771 (startswith(name, "Limit") && u == (uint64_t) -1) ||
772 (startswith(name, "DefaultLimit") && u == (uint64_t) -1))
773
774 print_property(name, "%s", "infinity");
775 else
4f9a9105 776 print_property(name, "%"PRIu64, u);
a1da8583
TG
777
778 return 1;
779 }
780
d7161865
DM
781 case SD_BUS_TYPE_INT64: {
782 int64_t i;
783
07636114 784 r = sd_bus_message_read_basic(m, type, &i);
d7161865
DM
785 if (r < 0)
786 return r;
787
4f9a9105 788 print_property(name, "%"PRIi64, i);
d7161865
DM
789
790 return 1;
791 }
792
a1da8583
TG
793 case SD_BUS_TYPE_UINT32: {
794 uint32_t u;
795
07636114 796 r = sd_bus_message_read_basic(m, type, &u);
9f6eb1cd
KS
797 if (r < 0)
798 return r;
a1da8583
TG
799
800 if (strstr(name, "UMask") || strstr(name, "Mode"))
4f9a9105 801 print_property(name, "%04o", u);
c533658a
ZJS
802 else if (streq(name, "UID")) {
803 if (u == UID_INVALID)
804 print_property(name, "%s", "[not set]");
805 else
806 print_property(name, "%"PRIu32, u);
807 } else if (streq(name, "GID")) {
808 if (u == GID_INVALID)
809 print_property(name, "%s", "[not set]");
810 else
811 print_property(name, "%"PRIu32, u);
812 } else
4f9a9105 813 print_property(name, "%"PRIu32, u);
a1da8583
TG
814
815 return 1;
816 }
817
818 case SD_BUS_TYPE_INT32: {
819 int32_t i;
820
07636114 821 r = sd_bus_message_read_basic(m, type, &i);
9f6eb1cd
KS
822 if (r < 0)
823 return r;
a1da8583 824
4f9a9105 825 print_property(name, "%"PRIi32, i);
a1da8583
TG
826 return 1;
827 }
828
829 case SD_BUS_TYPE_DOUBLE: {
830 double d;
831
07636114 832 r = sd_bus_message_read_basic(m, type, &d);
9f6eb1cd
KS
833 if (r < 0)
834 return r;
a1da8583 835
4f9a9105 836 print_property(name, "%g", d);
a1da8583
TG
837 return 1;
838 }
839
840 case SD_BUS_TYPE_ARRAY:
a1da8583 841 if (streq(contents, "s")) {
261afec5
MAP
842 bool first = true;
843 const char *str;
a1da8583 844
07636114 845 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_ARRAY, contents);
9f6eb1cd
KS
846 if (r < 0)
847 return r;
848
07636114 849 while ((r = sd_bus_message_read_basic(m, SD_BUS_TYPE_STRING, &str)) > 0) {
5993d46a
ZJS
850 bool good;
851
4f9a9105 852 if (first && !value)
261afec5
MAP
853 printf("%s=", name);
854
ed88a900 855 /* This property has multiple space-separated values, so
5993d46a
ZJS
856 * neither spaces not newlines can be allowed in a value. */
857 good = str[strcspn(str, " \n")] == '\0';
858
859 printf("%s%s", first ? "" : " ", good ? str : "[unprintable]");
261afec5
MAP
860
861 first = false;
862 }
9f6eb1cd
KS
863 if (r < 0)
864 return r;
a1da8583 865
4f9a9105 866 if (first && all && !value)
a1da8583 867 printf("%s=", name);
261afec5 868 if (!first || all)
a1da8583 869 puts("");
a1da8583 870
07636114 871 r = sd_bus_message_exit_container(m);
9f6eb1cd
KS
872 if (r < 0)
873 return r;
a1da8583
TG
874
875 return 1;
876
877 } else if (streq(contents, "y")) {
878 const uint8_t *u;
879 size_t n;
880
07636114 881 r = sd_bus_message_read_array(m, SD_BUS_TYPE_BYTE, (const void**) &u, &n);
9f6eb1cd
KS
882 if (r < 0)
883 return r;
884
a1da8583
TG
885 if (all || n > 0) {
886 unsigned int i;
887
4f9a9105
ZJS
888 if (!value)
889 printf("%s=", name);
a1da8583
TG
890
891 for (i = 0; i < n; i++)
892 printf("%02x", u[i]);
893
894 puts("");
895 }
896
897 return 1;
898
899 } else if (streq(contents, "u")) {
900 uint32_t *u;
901 size_t n;
902
07636114 903 r = sd_bus_message_read_array(m, SD_BUS_TYPE_UINT32, (const void**) &u, &n);
9f6eb1cd
KS
904 if (r < 0)
905 return r;
906
a1da8583
TG
907 if (all || n > 0) {
908 unsigned int i;
909
4f9a9105
ZJS
910 if (!value)
911 printf("%s=", name);
a1da8583
TG
912
913 for (i = 0; i < n; i++)
914 printf("%08x", u[i]);
915
916 puts("");
917 }
918
919 return 1;
920 }
921
922 break;
923 }
924
925 return 0;
926}
d21ed1ea 927
07636114
YW
928int bus_message_print_all_properties(
929 sd_bus_message *m,
930 bus_message_print_t func,
931 char **filter,
932 bool value,
933 bool all,
934 Set **found_properties) {
ffc06c35 935
07636114 936 int r;
9f6eb1cd 937
07636114 938 assert(m);
ffc06c35 939
07636114 940 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_ARRAY, "{sv}");
ffc06c35
KS
941 if (r < 0)
942 return r;
943
07636114 944 while ((r = sd_bus_message_enter_container(m, SD_BUS_TYPE_DICT_ENTRY, "sv")) > 0) {
ffc06c35 945 const char *name;
ffc06c35 946 const char *contents;
ffc06c35 947
07636114 948 r = sd_bus_message_read_basic(m, SD_BUS_TYPE_STRING, &name);
ffc06c35
KS
949 if (r < 0)
950 return r;
951
07636114
YW
952 if (found_properties) {
953 r = set_ensure_allocated(found_properties, &string_hash_ops);
954 if (r < 0)
955 return log_oom();
956
957 r = set_put(*found_properties, name);
958 if (r < 0 && r != EEXIST)
959 return log_oom();
960 }
961
9f6eb1cd 962 if (!filter || strv_find(filter, name)) {
07636114 963 r = sd_bus_message_peek_type(m, NULL, &contents);
9f6eb1cd
KS
964 if (r < 0)
965 return r;
966
07636114 967 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_VARIANT, contents);
9f6eb1cd
KS
968 if (r < 0)
969 return r;
ffc06c35 970
07636114
YW
971 if (func)
972 r = func(name, m, value, all);
973 if (!func || r == 0)
974 r = bus_print_property(name, m, value, all);
9f6eb1cd
KS
975 if (r < 0)
976 return r;
27e72d6b
SP
977 if (r == 0) {
978 if (all)
979 printf("%s=[unprintable]\n", name);
980 /* skip what we didn't read */
07636114 981 r = sd_bus_message_skip(m, contents);
27e72d6b
SP
982 if (r < 0)
983 return r;
984 }
9f6eb1cd 985
07636114 986 r = sd_bus_message_exit_container(m);
9f6eb1cd
KS
987 if (r < 0)
988 return r;
989 } else {
07636114 990 r = sd_bus_message_skip(m, "v");
9f6eb1cd
KS
991 if (r < 0)
992 return r;
993 }
994
07636114 995 r = sd_bus_message_exit_container(m);
ffc06c35
KS
996 if (r < 0)
997 return r;
9f6eb1cd
KS
998 }
999 if (r < 0)
1000 return r;
ffc06c35 1001
07636114 1002 r = sd_bus_message_exit_container(m);
9f6eb1cd
KS
1003 if (r < 0)
1004 return r;
ffc06c35 1005
9f6eb1cd
KS
1006 return 0;
1007}
ffc06c35 1008
07636114
YW
1009int bus_print_all_properties(
1010 sd_bus *bus,
1011 const char *dest,
1012 const char *path,
1013 bus_message_print_t func,
1014 char **filter,
1015 bool value,
1016 bool all,
1017 Set **found_properties) {
1018
1019 _cleanup_(sd_bus_message_unrefp) sd_bus_message *reply = NULL;
1020 _cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
1021 int r;
1022
1023 assert(bus);
1024 assert(path);
1025
1026 r = sd_bus_call_method(bus,
1027 dest,
1028 path,
1029 "org.freedesktop.DBus.Properties",
1030 "GetAll",
1031 &error,
1032 &reply,
1033 "s", "");
1034 if (r < 0)
1035 return r;
1036
1037 return bus_message_print_all_properties(reply, func, filter, value, all, found_properties);
1038}
1039
9f6eb1cd
KS
1040int bus_map_id128(sd_bus *bus, const char *member, sd_bus_message *m, sd_bus_error *error, void *userdata) {
1041 sd_id128_t *p = userdata;
1042 const void *v;
1043 size_t n;
1044 int r;
ffc06c35 1045
9f6eb1cd
KS
1046 r = sd_bus_message_read_array(m, SD_BUS_TYPE_BYTE, &v, &n);
1047 if (r < 0)
1048 return r;
ffc06c35 1049
9f6eb1cd
KS
1050 if (n == 0)
1051 *p = SD_ID128_NULL;
1052 else if (n == 16)
1053 memcpy((*p).bytes, v, n);
1054 else
1055 return -EINVAL;
ffc06c35 1056
9f6eb1cd
KS
1057 return 0;
1058}
ffc06c35 1059
a7e4861c 1060static int map_basic(sd_bus *bus, const char *member, sd_bus_message *m, unsigned flags, sd_bus_error *error, void *userdata) {
9f6eb1cd
KS
1061 char type;
1062 int r;
ffc06c35 1063
9f6eb1cd
KS
1064 r = sd_bus_message_peek_type(m, &type, NULL);
1065 if (r < 0)
1066 return r;
ffc06c35 1067
9f6eb1cd 1068 switch (type) {
8b3b6f58 1069
9f6eb1cd 1070 case SD_BUS_TYPE_STRING: {
f37f8a61 1071 const char **p = userdata;
8b3b6f58 1072 const char *s;
ffc06c35 1073
9f6eb1cd
KS
1074 r = sd_bus_message_read_basic(m, type, &s);
1075 if (r < 0)
8b3b6f58 1076 return r;
ffc06c35 1077
9f6eb1cd 1078 if (isempty(s))
0b83b8a4 1079 s = NULL;
ffc06c35 1080
a7e4861c 1081 if (flags & BUS_MAP_STRDUP)
f37f8a61
YW
1082 return free_and_strdup((char **) userdata, s);
1083
1084 *p = s;
1085 return 0;
9f6eb1cd 1086 }
ffc06c35 1087
9f6eb1cd 1088 case SD_BUS_TYPE_ARRAY: {
7d6884b6
TA
1089 _cleanup_strv_free_ char **l = NULL;
1090 char ***p = userdata;
ffc06c35 1091
9f6eb1cd
KS
1092 r = bus_message_read_strv_extend(m, &l);
1093 if (r < 0)
8b3b6f58 1094 return r;
ffc06c35 1095
9f6eb1cd 1096 strv_free(*p);
ae2a15bc 1097 *p = TAKE_PTR(l);
8b3b6f58 1098 return 0;
9f6eb1cd 1099 }
ffc06c35 1100
9f6eb1cd 1101 case SD_BUS_TYPE_BOOLEAN: {
a7e4861c 1102 int b;
ffc06c35 1103
9f6eb1cd
KS
1104 r = sd_bus_message_read_basic(m, type, &b);
1105 if (r < 0)
8b3b6f58 1106 return r;
ffc06c35 1107
a7e4861c
YW
1108 if (flags & BUS_MAP_BOOLEAN_AS_BOOL)
1109 * (bool*) userdata = !!b;
1110 else
1111 * (int*) userdata = b;
1112
8b3b6f58 1113 return 0;
9f6eb1cd 1114 }
ffc06c35 1115
bdf97b8a 1116 case SD_BUS_TYPE_INT32:
9f6eb1cd 1117 case SD_BUS_TYPE_UINT32: {
bdf97b8a 1118 uint32_t u, *p = userdata;
9f6eb1cd
KS
1119
1120 r = sd_bus_message_read_basic(m, type, &u);
1121 if (r < 0)
8b3b6f58 1122 return r;
ffc06c35 1123
9f6eb1cd 1124 *p = u;
8b3b6f58 1125 return 0;
9f6eb1cd
KS
1126 }
1127
bdf97b8a 1128 case SD_BUS_TYPE_INT64:
9f6eb1cd 1129 case SD_BUS_TYPE_UINT64: {
bdf97b8a 1130 uint64_t t, *p = userdata;
9f6eb1cd
KS
1131
1132 r = sd_bus_message_read_basic(m, type, &t);
1133 if (r < 0)
8b3b6f58 1134 return r;
ffc06c35 1135
9f6eb1cd 1136 *p = t;
8b3b6f58 1137 return 0;
9f6eb1cd
KS
1138 }
1139
52e045f9 1140 case SD_BUS_TYPE_DOUBLE: {
8b3b6f58 1141 double d, *p = userdata;
52e045f9
SS
1142
1143 r = sd_bus_message_read_basic(m, type, &d);
1144 if (r < 0)
8b3b6f58 1145 return r;
52e045f9
SS
1146
1147 *p = d;
8b3b6f58
LP
1148 return 0;
1149 }}
52e045f9 1150
8b3b6f58 1151 return -EOPNOTSUPP;
9f6eb1cd
KS
1152}
1153
fe506d56
LP
1154int bus_message_map_all_properties(
1155 sd_bus_message *m,
1156 const struct bus_properties_map *map,
a7e4861c 1157 unsigned flags,
f9e0eefc 1158 sd_bus_error *error,
fe506d56
LP
1159 void *userdata) {
1160
9f6eb1cd
KS
1161 int r;
1162
aae2b488 1163 assert(m);
9f6eb1cd
KS
1164 assert(map);
1165
9f6eb1cd
KS
1166 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_ARRAY, "{sv}");
1167 if (r < 0)
1168 return r;
1169
1170 while ((r = sd_bus_message_enter_container(m, SD_BUS_TYPE_DICT_ENTRY, "sv")) > 0) {
1171 const struct bus_properties_map *prop;
1172 const char *member;
1173 const char *contents;
1174 void *v;
1175 unsigned i;
1176
1177 r = sd_bus_message_read_basic(m, SD_BUS_TYPE_STRING, &member);
ffc06c35
KS
1178 if (r < 0)
1179 return r;
1180
9f6eb1cd
KS
1181 for (i = 0, prop = NULL; map[i].member; i++)
1182 if (streq(map[i].member, member)) {
1183 prop = &map[i];
1184 break;
1185 }
1186
1187 if (prop) {
1188 r = sd_bus_message_peek_type(m, NULL, &contents);
1189 if (r < 0)
1190 return r;
1191
1192 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_VARIANT, contents);
1193 if (r < 0)
1194 return r;
1195
1196 v = (uint8_t *)userdata + prop->offset;
27e72d6b 1197 if (map[i].set)
f9e0eefc 1198 r = prop->set(sd_bus_message_get_bus(m), member, m, error, v);
9f6eb1cd 1199 else
a7e4861c 1200 r = map_basic(sd_bus_message_get_bus(m), member, m, flags, error, v);
2b49a470
TA
1201 if (r < 0)
1202 return r;
9f6eb1cd
KS
1203
1204 r = sd_bus_message_exit_container(m);
1205 if (r < 0)
1206 return r;
1207 } else {
1208 r = sd_bus_message_skip(m, "v");
1209 if (r < 0)
6c1508b8 1210 return r;
9f6eb1cd
KS
1211 }
1212
ffc06c35
KS
1213 r = sd_bus_message_exit_container(m);
1214 if (r < 0)
1215 return r;
1216 }
fe506d56
LP
1217 if (r < 0)
1218 return r;
ffc06c35 1219
aae2b488
DH
1220 return sd_bus_message_exit_container(m);
1221}
1222
fe506d56
LP
1223int bus_message_map_properties_changed(
1224 sd_bus_message *m,
1225 const struct bus_properties_map *map,
a7e4861c 1226 unsigned flags,
f9e0eefc 1227 sd_bus_error *error,
fe506d56
LP
1228 void *userdata) {
1229
aae2b488
DH
1230 const char *member;
1231 int r, invalidated, i;
1232
aae2b488
DH
1233 assert(m);
1234 assert(map);
1235
a7e4861c 1236 r = bus_message_map_all_properties(m, map, flags, error, userdata);
aae2b488
DH
1237 if (r < 0)
1238 return r;
1239
1240 r = sd_bus_message_enter_container(m, SD_BUS_TYPE_ARRAY, "s");
1241 if (r < 0)
1242 return r;
1243
1244 invalidated = 0;
1245 while ((r = sd_bus_message_read_basic(m, SD_BUS_TYPE_STRING, &member)) > 0)
1246 for (i = 0; map[i].member; i++)
1247 if (streq(map[i].member, member)) {
1248 ++invalidated;
1249 break;
1250 }
fe506d56
LP
1251 if (r < 0)
1252 return r;
aae2b488
DH
1253
1254 r = sd_bus_message_exit_container(m);
1255 if (r < 0)
1256 return r;
1257
1258 return invalidated;
1259}
1260
fe506d56
LP
1261int bus_map_all_properties(
1262 sd_bus *bus,
1263 const char *destination,
1264 const char *path,
1265 const struct bus_properties_map *map,
a7e4861c 1266 unsigned flags,
f9e0eefc 1267 sd_bus_error *error,
f37f8a61 1268 sd_bus_message **reply,
fe506d56
LP
1269 void *userdata) {
1270
4afd3348 1271 _cleanup_(sd_bus_message_unrefp) sd_bus_message *m = NULL;
aae2b488
DH
1272 int r;
1273
1274 assert(bus);
1275 assert(destination);
1276 assert(path);
1277 assert(map);
a7e4861c 1278 assert(reply || (flags & BUS_MAP_STRDUP));
aae2b488
DH
1279
1280 r = sd_bus_call_method(
1281 bus,
1282 destination,
1283 path,
1284 "org.freedesktop.DBus.Properties",
1285 "GetAll",
f9e0eefc 1286 error,
aae2b488
DH
1287 &m,
1288 "s", "");
1289 if (r < 0)
1290 return r;
1291
a7e4861c 1292 r = bus_message_map_all_properties(m, map, flags, error, userdata);
f37f8a61
YW
1293 if (r < 0)
1294 return r;
1295
1296 if (reply)
1297 *reply = sd_bus_message_ref(m);
1298
1299 return r;
ffc06c35
KS
1300}
1301
38303498
LP
1302int bus_connect_transport(BusTransport transport, const char *host, bool user, sd_bus **ret) {
1303 _cleanup_(sd_bus_unrefp) sd_bus *bus = NULL;
d21ed1ea
LP
1304 int r;
1305
1306 assert(transport >= 0);
1307 assert(transport < _BUS_TRANSPORT_MAX);
38303498 1308 assert(ret);
d21ed1ea
LP
1309
1310 assert_return((transport == BUS_TRANSPORT_LOCAL) == !host, -EINVAL);
15411c0c 1311 assert_return(transport == BUS_TRANSPORT_LOCAL || !user, -EOPNOTSUPP);
d21ed1ea
LP
1312
1313 switch (transport) {
1314
1315 case BUS_TRANSPORT_LOCAL:
1316 if (user)
38303498 1317 r = sd_bus_default_user(&bus);
d21ed1ea 1318 else
38303498 1319 r = sd_bus_default_system(&bus);
d21ed1ea
LP
1320
1321 break;
1322
1323 case BUS_TRANSPORT_REMOTE:
38303498 1324 r = sd_bus_open_system_remote(&bus, host);
41dd15e4
LP
1325 break;
1326
de33fc62 1327 case BUS_TRANSPORT_MACHINE:
38303498 1328 r = sd_bus_open_system_machine(&bus, host);
41dd15e4
LP
1329 break;
1330
1331 default:
1332 assert_not_reached("Hmm, unknown transport type.");
1333 }
38303498
LP
1334 if (r < 0)
1335 return r;
41dd15e4 1336
38303498
LP
1337 r = sd_bus_set_exit_on_disconnect(bus, true);
1338 if (r < 0)
1339 return r;
1340
1341 *ret = bus;
1342 bus = NULL;
1343
1344 return 0;
41dd15e4
LP
1345}
1346
266f3e26 1347int bus_connect_transport_systemd(BusTransport transport, const char *host, bool user, sd_bus **bus) {
41dd15e4
LP
1348 int r;
1349
1350 assert(transport >= 0);
1351 assert(transport < _BUS_TRANSPORT_MAX);
1352 assert(bus);
1353
1354 assert_return((transport == BUS_TRANSPORT_LOCAL) == !host, -EINVAL);
15411c0c 1355 assert_return(transport == BUS_TRANSPORT_LOCAL || !user, -EOPNOTSUPP);
41dd15e4
LP
1356
1357 switch (transport) {
1358
1359 case BUS_TRANSPORT_LOCAL:
1360 if (user)
266f3e26 1361 r = bus_connect_user_systemd(bus);
41dd15e4 1362 else
266f3e26 1363 r = bus_connect_system_systemd(bus);
41dd15e4
LP
1364
1365 break;
1366
1367 case BUS_TRANSPORT_REMOTE:
3db729cb 1368 r = sd_bus_open_system_remote(bus, host);
d21ed1ea
LP
1369 break;
1370
de33fc62
LP
1371 case BUS_TRANSPORT_MACHINE:
1372 r = sd_bus_open_system_machine(bus, host);
d21ed1ea
LP
1373 break;
1374
1375 default:
1376 assert_not_reached("Hmm, unknown transport type.");
1377 }
1378
1379 return r;
1380}
e6504030
LP
1381
1382int bus_property_get_bool(
1383 sd_bus *bus,
1384 const char *path,
1385 const char *interface,
1386 const char *property,
1387 sd_bus_message *reply,
ebcf1f97
LP
1388 void *userdata,
1389 sd_bus_error *error) {
e6504030
LP
1390
1391 int b = *(bool*) userdata;
1392
1393 return sd_bus_message_append_basic(reply, 'b', &b);
1394}
1395
43ce15ac
JK
1396int bus_property_set_bool(
1397 sd_bus *bus,
1398 const char *path,
1399 const char *interface,
1400 const char *property,
1401 sd_bus_message *value,
1402 void *userdata,
1403 sd_bus_error *error) {
1404
1405 int b, r;
1406
1407 r = sd_bus_message_read(value, "b", &b);
1408 if (r < 0)
1409 return r;
1410
1411 *(bool *) userdata = !!b;
1412 return 0;
1413}
1414
766c94ad
LP
1415int bus_property_get_id128(
1416 sd_bus *bus,
1417 const char *path,
1418 const char *interface,
1419 const char *property,
1420 sd_bus_message *reply,
1421 void *userdata,
1422 sd_bus_error *error) {
1423
1424 sd_id128_t *id = userdata;
1425
1426 if (sd_id128_is_null(*id)) /* Add an empty array if the ID is zero */
1427 return sd_bus_message_append(reply, "ay", 0);
1428 else
4b58153d 1429 return sd_bus_message_append_array(reply, 'y', id->bytes, 16);
766c94ad
LP
1430}
1431
718db961
LP
1432#if __SIZEOF_SIZE_T__ != 8
1433int bus_property_get_size(
e6504030
LP
1434 sd_bus *bus,
1435 const char *path,
1436 const char *interface,
1437 const char *property,
1438 sd_bus_message *reply,
ebcf1f97
LP
1439 void *userdata,
1440 sd_bus_error *error) {
e6504030 1441
718db961 1442 uint64_t sz = *(size_t*) userdata;
e6504030 1443
718db961 1444 return sd_bus_message_append_basic(reply, 't', &sz);
e6504030 1445}
718db961
LP
1446#endif
1447
1448#if __SIZEOF_LONG__ != 8
1449int bus_property_get_long(
1450 sd_bus *bus,
1451 const char *path,
1452 const char *interface,
1453 const char *property,
1454 sd_bus_message *reply,
ebcf1f97
LP
1455 void *userdata,
1456 sd_bus_error *error) {
718db961
LP
1457
1458 int64_t l = *(long*) userdata;
1459
1460 return sd_bus_message_append_basic(reply, 'x', &l);
1461}
1462
1463int bus_property_get_ulong(
1464 sd_bus *bus,
1465 const char *path,
1466 const char *interface,
1467 const char *property,
1468 sd_bus_message *reply,
ebcf1f97
LP
1469 void *userdata,
1470 sd_bus_error *error) {
718db961
LP
1471
1472 uint64_t ul = *(unsigned long*) userdata;
1473
1474 return sd_bus_message_append_basic(reply, 't', &ul);
1475}
1476#endif
5b30bef8
LP
1477
1478int bus_log_parse_error(int r) {
23bbb0de 1479 return log_error_errno(r, "Failed to parse bus message: %m");
5b30bef8 1480}
f459b602
MAP
1481
1482int bus_log_create_error(int r) {
23bbb0de 1483 return log_error_errno(r, "Failed to create bus message: %m");
f459b602
MAP
1484}
1485
98a4c30b
DH
1486/**
1487 * bus_path_encode_unique() - encode unique object path
1488 * @b: bus connection or NULL
1489 * @prefix: object path prefix
1490 * @sender_id: unique-name of client, or NULL
1491 * @external_id: external ID to be chosen by client, or NULL
1492 * @ret_path: storage for encoded object path pointer
1493 *
1494 * Whenever we provide a bus API that allows clients to create and manage
1495 * server-side objects, we need to provide a unique name for these objects. If
1496 * we let the server choose the name, we suffer from a race condition: If a
1497 * client creates an object asynchronously, it cannot destroy that object until
1498 * it received the method reply. It cannot know the name of the new object,
1499 * thus, it cannot destroy it. Furthermore, it enforces a round-trip.
1500 *
1501 * Therefore, many APIs allow the client to choose the unique name for newly
1502 * created objects. There're two problems to solve, though:
1503 * 1) Object names are usually defined via dbus object paths, which are
1504 * usually globally namespaced. Therefore, multiple clients must be able
1505 * to choose unique object names without interference.
1506 * 2) If multiple libraries share the same bus connection, they must be
1507 * able to choose unique object names without interference.
1508 * The first problem is solved easily by prefixing a name with the
1509 * unique-bus-name of a connection. The server side must enforce this and
1510 * reject any other name. The second problem is solved by providing unique
1511 * suffixes from within sd-bus.
1512 *
1513 * This helper allows clients to create unique object-paths. It uses the
1514 * template '/prefix/sender_id/external_id' and returns the new path in
1515 * @ret_path (must be freed by the caller).
1516 * If @sender_id is NULL, the unique-name of @b is used. If @external_id is
1517 * NULL, this function allocates a unique suffix via @b (by requesting a new
1518 * cookie). If both @sender_id and @external_id are given, @b can be passed as
1519 * NULL.
1520 *
1521 * Returns: 0 on success, negative error code on failure.
1522 */
1523int bus_path_encode_unique(sd_bus *b, const char *prefix, const char *sender_id, const char *external_id, char **ret_path) {
1524 _cleanup_free_ char *sender_label = NULL, *external_label = NULL;
1525 char external_buf[DECIMAL_STR_MAX(uint64_t)], *p;
1526 int r;
1527
1528 assert_return(b || (sender_id && external_id), -EINVAL);
1529 assert_return(object_path_is_valid(prefix), -EINVAL);
1530 assert_return(ret_path, -EINVAL);
1531
1532 if (!sender_id) {
1533 r = sd_bus_get_unique_name(b, &sender_id);
1534 if (r < 0)
1535 return r;
1536 }
1537
1538 if (!external_id) {
1539 xsprintf(external_buf, "%"PRIu64, ++b->cookie);
1540 external_id = external_buf;
1541 }
1542
1543 sender_label = bus_label_escape(sender_id);
1544 if (!sender_label)
1545 return -ENOMEM;
1546
1547 external_label = bus_label_escape(external_id);
1548 if (!external_label)
1549 return -ENOMEM;
1550
605405c6 1551 p = strjoin(prefix, "/", sender_label, "/", external_label);
98a4c30b
DH
1552 if (!p)
1553 return -ENOMEM;
1554
1555 *ret_path = p;
1556 return 0;
1557}
1558
1559/**
1560 * bus_path_decode_unique() - decode unique object path
1561 * @path: object path to decode
1562 * @prefix: object path prefix
1563 * @ret_sender: output parameter for sender-id label
1564 * @ret_external: output parameter for external-id label
1565 *
1566 * This does the reverse of bus_path_encode_unique() (see its description for
1567 * details). Both trailing labels, sender-id and external-id, are unescaped and
1568 * returned in the given output parameters (the caller must free them).
1569 *
1570 * Note that this function returns 0 if the path does not match the template
1571 * (see bus_path_encode_unique()), 1 if it matched.
1572 *
1573 * Returns: Negative error code on failure, 0 if the given object path does not
1574 * match the template (return parameters are set to NULL), 1 if it was
1575 * parsed successfully (return parameters contain allocated labels).
1576 */
1577int bus_path_decode_unique(const char *path, const char *prefix, char **ret_sender, char **ret_external) {
1578 const char *p, *q;
1579 char *sender, *external;
1580
1581 assert(object_path_is_valid(path));
1582 assert(object_path_is_valid(prefix));
1583 assert(ret_sender);
1584 assert(ret_external);
1585
1586 p = object_path_startswith(path, prefix);
1587 if (!p) {
1588 *ret_sender = NULL;
1589 *ret_external = NULL;
1590 return 0;
1591 }
1592
1593 q = strchr(p, '/');
1594 if (!q) {
1595 *ret_sender = NULL;
1596 *ret_external = NULL;
1597 return 0;
1598 }
1599
1600 sender = bus_label_unescape_n(p, q - p);
1601 external = bus_label_unescape(q + 1);
1602 if (!sender || !external) {
1603 free(sender);
1604 free(external);
1605 return -ENOMEM;
1606 }
1607
1608 *ret_sender = sender;
1609 *ret_external = external;
1610 return 1;
1611}
057171ef 1612
c9d031c3
EV
1613int bus_property_get_rlimit(
1614 sd_bus *bus,
1615 const char *path,
1616 const char *interface,
1617 const char *property,
1618 sd_bus_message *reply,
1619 void *userdata,
1620 sd_bus_error *error) {
1621
1622 struct rlimit *rl;
1623 uint64_t u;
1624 rlim_t x;
147f6858 1625 const char *is_soft;
c9d031c3
EV
1626
1627 assert(bus);
1628 assert(reply);
1629 assert(userdata);
1630
147f6858 1631 is_soft = endswith(property, "Soft");
c9d031c3
EV
1632 rl = *(struct rlimit**) userdata;
1633 if (rl)
147f6858 1634 x = is_soft ? rl->rlim_cur : rl->rlim_max;
c9d031c3
EV
1635 else {
1636 struct rlimit buf = {};
1637 int z;
147f6858
EV
1638 const char *s;
1639
1640 s = is_soft ? strndupa(property, is_soft - property) : property;
c9d031c3 1641
147f6858 1642 z = rlimit_from_string(strstr(s, "Limit"));
c9d031c3
EV
1643 assert(z >= 0);
1644
1645 getrlimit(z, &buf);
147f6858 1646 x = is_soft ? buf.rlim_cur : buf.rlim_max;
c9d031c3
EV
1647 }
1648
1649 /* rlim_t might have different sizes, let's map
1650 * RLIMIT_INFINITY to (uint64_t) -1, so that it is the same on
1651 * all archs */
1652 u = x == RLIM_INFINITY ? (uint64_t) -1 : (uint64_t) x;
1653
1654 return sd_bus_message_append(reply, "t", u);
1655}
984794ba
LP
1656
1657int bus_track_add_name_many(sd_bus_track *t, char **l) {
1658 int r = 0;
1659 char **i;
1660
1661 assert(t);
1662
1663 /* Continues adding after failure, and returns the first failure. */
1664
1665 STRV_FOREACH(i, l) {
1666 int k;
1667
1668 k = sd_bus_track_add_name(t, *i);
1669 if (k < 0 && r >= 0)
1670 r = k;
1671 }
1672
1673 return r;
1674}
d7afd945
LP
1675
1676int bus_open_system_watch_bind(sd_bus **ret) {
1677 _cleanup_(sd_bus_unrefp) sd_bus *bus = NULL;
1678 const char *e;
1679 int r;
1680
1681 assert(ret);
1682
1683 /* Match like sd_bus_open_system(), but with the "watch_bind" feature and the Connected() signal turned on. */
1684
1685 r = sd_bus_new(&bus);
1686 if (r < 0)
1687 return r;
1688
1689 e = secure_getenv("DBUS_SYSTEM_BUS_ADDRESS");
1690 if (!e)
1691 e = DEFAULT_SYSTEM_BUS_ADDRESS;
1692
1693 r = sd_bus_set_address(bus, e);
1694 if (r < 0)
1695 return r;
1696
1697 r = sd_bus_set_bus_client(bus, true);
1698 if (r < 0)
1699 return r;
1700
1701 r = sd_bus_set_trusted(bus, true);
1702 if (r < 0)
1703 return r;
1704
1705 r = sd_bus_negotiate_creds(bus, true, SD_BUS_CREDS_UID|SD_BUS_CREDS_EUID|SD_BUS_CREDS_EFFECTIVE_CAPS);
1706 if (r < 0)
1707 return r;
1708
1709 r = sd_bus_set_watch_bind(bus, true);
1710 if (r < 0)
1711 return r;
1712
1713 r = sd_bus_set_connected_signal(bus, true);
1714 if (r < 0)
1715 return r;
1716
1717 r = sd_bus_start(bus);
1718 if (r < 0)
1719 return r;
1720
1721 *ret = bus;
1722 bus = NULL;
1723
1724 return 0;
1725}