]> git.ipfire.org Git - thirdparty/systemd.git/blame - src/resolve/resolved-manager.c
resolve: refuse mdns scope for ipv4 broadcast addresses
[thirdparty/systemd.git] / src / resolve / resolved-manager.c
CommitLineData
db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
091a364c 2
ca78ad1d 3#include <fcntl.h>
07630cea
LP
4#include <netinet/in.h>
5#include <poll.h>
74b2466e 6#include <sys/ioctl.h>
ca78ad1d
ZJS
7#include <sys/stat.h>
8#include <sys/types.h>
9#include <unistd.h>
091a364c 10
a2a416f7 11#include "af-list.h"
b5efdb8a 12#include "alloc-util.h"
269e4d2d 13#include "bus-polkit.h"
943ef07c 14#include "dirent-util.h"
07630cea 15#include "dns-domain.h"
ec75e8e0 16#include "event-util.h"
3ffd4af2 17#include "fd-util.h"
ee228be1 18#include "fileio.h"
07630cea 19#include "hostname-util.h"
4917e7c7 20#include "idn-util.h"
c004493c 21#include "io-util.h"
ef118d00 22#include "missing_network.h"
20a001bd 23#include "missing_socket.h"
07630cea 24#include "netlink-util.h"
822db23c 25#include "ordered-set.h"
6bedfcbb 26#include "parse-util.h"
3df3e884 27#include "random-util.h"
39d8db04 28#include "resolved-bus.h"
07630cea 29#include "resolved-conf.h"
b30bf55d 30#include "resolved-dns-stub.h"
cb310866 31#include "resolved-dnssd.h"
dd0bc0f1 32#include "resolved-etc-hosts.h"
5f402ae8 33#include "resolved-llmnr.h"
07630cea 34#include "resolved-manager.h"
bc7702b0 35#include "resolved-mdns.h"
dd0bc0f1 36#include "resolved-resolv-conf.h"
75c9d6b5 37#include "resolved-util.h"
9581bb84 38#include "resolved-varlink.h"
07630cea 39#include "socket-util.h"
8b43440b 40#include "string-table.h"
07630cea
LP
41#include "string-util.h"
42#include "utf8.h"
74b2466e
LP
43
44#define SEND_TIMEOUT_USEC (200 * USEC_PER_MSEC)
45
1c4baffc 46static int manager_process_link(sd_netlink *rtnl, sd_netlink_message *mm, void *userdata) {
99534007 47 Manager *m = ASSERT_PTR(userdata);
74b2466e
LP
48 uint16_t type;
49 Link *l;
50 int ifindex, r;
51
52 assert(rtnl);
74b2466e
LP
53 assert(mm);
54
1c4baffc 55 r = sd_netlink_message_get_type(mm, &type);
74b2466e
LP
56 if (r < 0)
57 goto fail;
58
59 r = sd_rtnl_message_link_get_ifindex(mm, &ifindex);
60 if (r < 0)
61 goto fail;
62
63 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
64
65 switch (type) {
66
a2a416f7
LP
67 case RTM_NEWLINK:{
68 bool is_new = !l;
74b2466e 69
a2a416f7 70 if (!l) {
74b2466e
LP
71 r = link_new(m, &l, ifindex);
72 if (r < 0)
73 goto fail;
74 }
75
943ef07c 76 r = link_process_rtnl(l, mm);
74b2466e
LP
77 if (r < 0)
78 goto fail;
79
943ef07c 80 r = link_update(l);
21d73c87
LP
81 if (r < 0)
82 goto fail;
83
a2a416f7 84 if (is_new)
6ff79f76 85 log_debug("Found new link %i/%s", ifindex, l->ifname);
a2a416f7 86
74b2466e 87 break;
a2a416f7 88 }
74b2466e
LP
89
90 case RTM_DELLINK:
91 if (l) {
6ff79f76 92 log_debug("Removing link %i/%s", l->ifindex, l->ifname);
943ef07c 93 link_remove_user(l);
74b2466e
LP
94 link_free(l);
95 }
96
97 break;
98 }
99
100 return 0;
101
102fail:
da927ba9 103 log_warning_errno(r, "Failed to process RTNL link message: %m");
74b2466e
LP
104 return 0;
105}
106
1c4baffc 107static int manager_process_address(sd_netlink *rtnl, sd_netlink_message *mm, void *userdata) {
99534007 108 Manager *m = ASSERT_PTR(userdata);
cad0fc7a 109 union in_addr_union address, broadcast = {};
74b2466e 110 uint16_t type;
0dd25fb9 111 int r, ifindex, family;
74b2466e
LP
112 LinkAddress *a;
113 Link *l;
114
115 assert(rtnl);
116 assert(mm);
74b2466e 117
1c4baffc 118 r = sd_netlink_message_get_type(mm, &type);
74b2466e
LP
119 if (r < 0)
120 goto fail;
121
122 r = sd_rtnl_message_addr_get_ifindex(mm, &ifindex);
123 if (r < 0)
124 goto fail;
125
126 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
127 if (!l)
128 return 0;
129
130 r = sd_rtnl_message_addr_get_family(mm, &family);
131 if (r < 0)
132 goto fail;
133
134 switch (family) {
135
136 case AF_INET:
cad0fc7a 137 sd_netlink_message_read_in_addr(mm, IFA_BROADCAST, &broadcast.in);
1c4baffc 138 r = sd_netlink_message_read_in_addr(mm, IFA_LOCAL, &address.in);
74b2466e 139 if (r < 0) {
1c4baffc 140 r = sd_netlink_message_read_in_addr(mm, IFA_ADDRESS, &address.in);
74b2466e
LP
141 if (r < 0)
142 goto fail;
143 }
144
145 break;
146
147 case AF_INET6:
1c4baffc 148 r = sd_netlink_message_read_in6_addr(mm, IFA_LOCAL, &address.in6);
74b2466e 149 if (r < 0) {
1c4baffc 150 r = sd_netlink_message_read_in6_addr(mm, IFA_ADDRESS, &address.in6);
74b2466e
LP
151 if (r < 0)
152 goto fail;
153 }
154
155 break;
156
157 default:
158 return 0;
159 }
160
161 a = link_find_address(l, family, &address);
162
163 switch (type) {
164
165 case RTM_NEWADDR:
166
167 if (!a) {
cad0fc7a 168 r = link_address_new(l, &a, family, &address, &broadcast);
74b2466e
LP
169 if (r < 0)
170 return r;
171 }
172
173 r = link_address_update_rtnl(a, mm);
174 if (r < 0)
175 return r;
176
177 break;
178
179 case RTM_DELADDR:
3e044c49 180 link_address_free(a);
74b2466e
LP
181 break;
182 }
183
184 return 0;
185
186fail:
da927ba9 187 log_warning_errno(r, "Failed to process RTNL address message: %m");
74b2466e
LP
188 return 0;
189}
190
74b2466e 191static int manager_rtnl_listen(Manager *m) {
4afd3348 192 _cleanup_(sd_netlink_message_unrefp) sd_netlink_message *req = NULL, *reply = NULL;
74b2466e
LP
193 int r;
194
195 assert(m);
196
cc98b302 197 /* First, subscribe to interfaces coming and going */
1c4baffc 198 r = sd_netlink_open(&m->rtnl);
74b2466e
LP
199 if (r < 0)
200 return r;
201
2d895038 202 r = sd_netlink_attach_event(m->rtnl, m->event, SD_EVENT_PRIORITY_IMPORTANT);
74b2466e
LP
203 if (r < 0)
204 return r;
205
8190a388 206 r = sd_netlink_add_match(m->rtnl, NULL, RTM_NEWLINK, manager_process_link, NULL, m, "resolve-NEWLINK");
74b2466e
LP
207 if (r < 0)
208 return r;
209
8190a388 210 r = sd_netlink_add_match(m->rtnl, NULL, RTM_DELLINK, manager_process_link, NULL, m, "resolve-DELLINK");
74b2466e
LP
211 if (r < 0)
212 return r;
213
8190a388 214 r = sd_netlink_add_match(m->rtnl, NULL, RTM_NEWADDR, manager_process_address, NULL, m, "resolve-NEWADDR");
74b2466e
LP
215 if (r < 0)
216 return r;
091a364c 217
8190a388 218 r = sd_netlink_add_match(m->rtnl, NULL, RTM_DELADDR, manager_process_address, NULL, m, "resolve-DELADDR");
74b2466e
LP
219 if (r < 0)
220 return r;
221
222 /* Then, enumerate all links */
223 r = sd_rtnl_message_new_link(m->rtnl, &req, RTM_GETLINK, 0);
224 if (r < 0)
225 return r;
226
24c0f385 227 r = sd_netlink_message_set_request_dump(req, true);
74b2466e
LP
228 if (r < 0)
229 return r;
230
1c4baffc 231 r = sd_netlink_call(m->rtnl, req, 0, &reply);
74b2466e
LP
232 if (r < 0)
233 return r;
234
d856e1a7 235 for (sd_netlink_message *i = reply; i; i = sd_netlink_message_next(i)) {
74b2466e
LP
236 r = manager_process_link(m->rtnl, i, m);
237 if (r < 0)
238 return r;
239 }
240
1c4baffc
TG
241 req = sd_netlink_message_unref(req);
242 reply = sd_netlink_message_unref(reply);
74b2466e
LP
243
244 /* Finally, enumerate all addresses, too */
245 r = sd_rtnl_message_new_addr(m->rtnl, &req, RTM_GETADDR, 0, AF_UNSPEC);
246 if (r < 0)
247 return r;
248
24c0f385 249 r = sd_netlink_message_set_request_dump(req, true);
74b2466e
LP
250 if (r < 0)
251 return r;
252
1c4baffc 253 r = sd_netlink_call(m->rtnl, req, 0, &reply);
74b2466e
LP
254 if (r < 0)
255 return r;
256
d856e1a7 257 for (sd_netlink_message *i = reply; i; i = sd_netlink_message_next(i)) {
74b2466e
LP
258 r = manager_process_address(m->rtnl, i, m);
259 if (r < 0)
260 return r;
261 }
262
263 return r;
264}
265
266static int on_network_event(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
99534007 267 Manager *m = ASSERT_PTR(userdata);
74b2466e
LP
268 Link *l;
269 int r;
270
74b2466e
LP
271 sd_network_monitor_flush(m->network_monitor);
272
90e74a66 273 HASHMAP_FOREACH(l, m->links) {
943ef07c 274 r = link_update(l);
74b2466e 275 if (r < 0)
da927ba9 276 log_warning_errno(r, "Failed to update monitor information for %i: %m", l->ifindex);
74b2466e
LP
277 }
278
7207052d 279 (void) manager_write_resolv_conf(m);
5f3340ca 280 (void) manager_send_changed(m, "DNS");
74b2466e
LP
281
282 return 0;
283}
284
285static int manager_network_monitor_listen(Manager *m) {
286 int r, fd, events;
287
288 assert(m);
289
0014a4ad 290 r = sd_network_monitor_new(&m->network_monitor, NULL);
74b2466e
LP
291 if (r < 0)
292 return r;
293
294 fd = sd_network_monitor_get_fd(m->network_monitor);
295 if (fd < 0)
296 return fd;
297
298 events = sd_network_monitor_get_events(m->network_monitor);
299 if (events < 0)
300 return events;
301
302 r = sd_event_add_io(m->event, &m->network_event_source, fd, events, &on_network_event, m);
303 if (r < 0)
2d895038
LP
304 return r;
305
306 r = sd_event_source_set_priority(m->network_event_source, SD_EVENT_PRIORITY_IMPORTANT+5);
307 if (r < 0)
74b2466e
LP
308 return r;
309
aa4a9deb
LP
310 (void) sd_event_source_set_description(m->network_event_source, "network-monitor");
311
74b2466e
LP
312 return 0;
313}
314
90df0fbe
LP
315static int manager_clock_change_listen(Manager *m);
316
317static int on_clock_change(sd_event_source *source, int fd, uint32_t revents, void *userdata) {
99534007 318 Manager *m = ASSERT_PTR(userdata);
90df0fbe
LP
319
320 /* The clock has changed, let's flush all caches. Why that? That's because DNSSEC validation takes
321 * the system clock into consideration, and if the clock changes the old validations might have been
322 * wrong. Let's redo all validation with the new, correct time.
323 *
324 * (Also, this is triggered after system suspend, which is also a good reason to drop caches, since
325 * we might be connected to a different network now without this being visible in a dropped link
326 * carrier or so.) */
327
328 log_info("Clock change detected. Flushing caches.");
329 manager_flush_caches(m, LOG_DEBUG /* downgrade the functions own log message, since we already logged here at LOG_INFO level */);
330
331 /* The clock change timerfd is unusable after it triggered once, create a new one. */
332 return manager_clock_change_listen(m);
333}
334
335static int manager_clock_change_listen(Manager *m) {
90df0fbe
LP
336 int r;
337
338 assert(m);
339
97935302 340 m->clock_change_event_source = sd_event_source_disable_unref(m->clock_change_event_source);
90df0fbe 341
ec75e8e0 342 r = event_add_time_change(m->event, &m->clock_change_event_source, on_clock_change, m);
90df0fbe
LP
343 if (r < 0)
344 return log_error_errno(r, "Failed to create clock change event source: %m");
345
90df0fbe
LP
346 return 0;
347}
348
75c9d6b5 349static int determine_hostnames(char **full_hostname, char **llmnr_hostname, char **mdns_hostname) {
eb60f9cd 350 _cleanup_free_ char *h = NULL, *n = NULL;
87057e24 351 int r;
eb60f9cd 352
e96de0ce 353 assert(full_hostname);
78c6a153
LP
354 assert(llmnr_hostname);
355 assert(mdns_hostname);
356
75c9d6b5 357 r = resolve_system_hostname(&h, &n);
78c6a153 358 if (r < 0)
75c9d6b5 359 return r;
eb60f9cd 360
7470cc4c 361 r = dns_name_concat(n, "local", 0, mdns_hostname);
78c6a153
LP
362 if (r < 0)
363 return log_error_errno(r, "Failed to determine mDNS hostname: %m");
364
ae2a15bc
LP
365 *llmnr_hostname = TAKE_PTR(n);
366 *full_hostname = TAKE_PTR(h);
e96de0ce 367
eb60f9cd
LP
368 return 0;
369}
370
05c6f341 371static char* fallback_hostname(void) {
a25b0dc8 372
05c6f341
ZJS
373 /* Determine the fall back hostname. For exposing this system to the outside world, we cannot have it
374 * to be "localhost" even if that's the default hostname. In this case, let's revert to "linux"
375 * instead. */
a25b0dc8 376
05c6f341
ZJS
377 _cleanup_free_ char *n = get_default_hostname();
378 if (!n)
379 return NULL;
a25b0dc8 380
05c6f341
ZJS
381 if (is_localhost(n))
382 return strdup("linux");
383
384 return TAKE_PTR(n);
a25b0dc8
LP
385}
386
387static int make_fallback_hostnames(char **full_hostname, char **llmnr_hostname, char **mdns_hostname) {
05c6f341
ZJS
388 _cleanup_free_ char *h = NULL, *n = NULL, *m = NULL;
389 char label[DNS_LABEL_MAX];
a25b0dc8
LP
390 const char *p;
391 int r;
392
393 assert(full_hostname);
394 assert(llmnr_hostname);
395 assert(mdns_hostname);
396
05c6f341
ZJS
397 p = h = fallback_hostname();
398 if (!h)
399 return log_oom();
400
7470cc4c 401 r = dns_label_unescape(&p, label, sizeof label, 0);
a25b0dc8 402 if (r < 0)
38b38500 403 return log_error_errno(r, "Failed to unescape fallback hostname: %m");
a25b0dc8
LP
404
405 assert(r > 0); /* The fallback hostname must have at least one label */
406
407 r = dns_label_escape_new(label, r, &n);
408 if (r < 0)
409 return log_error_errno(r, "Failed to escape fallback hostname: %m");
410
7470cc4c 411 r = dns_name_concat(n, "local", 0, &m);
a25b0dc8
LP
412 if (r < 0)
413 return log_error_errno(r, "Failed to concatenate mDNS hostname: %m");
414
ae2a15bc
LP
415 *llmnr_hostname = TAKE_PTR(n);
416 *mdns_hostname = TAKE_PTR(m);
05c6f341 417 *full_hostname = TAKE_PTR(h);
a25b0dc8
LP
418
419 return 0;
420}
421
eb60f9cd 422static int on_hostname_change(sd_event_source *es, int fd, uint32_t revents, void *userdata) {
e96de0ce 423 _cleanup_free_ char *full_hostname = NULL, *llmnr_hostname = NULL, *mdns_hostname = NULL;
99534007 424 Manager *m = ASSERT_PTR(userdata);
86c0411e 425 bool llmnr_hostname_changed;
eb60f9cd
LP
426 int r;
427
75c9d6b5
ZJS
428 r = determine_hostnames(&full_hostname, &llmnr_hostname, &mdns_hostname);
429 if (r < 0) {
430 log_warning_errno(r, "Failed to determine the local hostname and LLMNR/mDNS names, ignoring: %m");
eb60f9cd 431 return 0; /* ignore invalid hostnames */
75c9d6b5 432 }
eb60f9cd 433
86c0411e 434 llmnr_hostname_changed = !streq(llmnr_hostname, m->llmnr_hostname);
e96de0ce 435 if (streq(full_hostname, m->full_hostname) &&
86c0411e 436 !llmnr_hostname_changed &&
e96de0ce 437 streq(mdns_hostname, m->mdns_hostname))
eb60f9cd
LP
438 return 0;
439
e96de0ce 440 log_info("System hostname changed to '%s'.", full_hostname);
78c6a153 441
e96de0ce
LP
442 free_and_replace(m->full_hostname, full_hostname);
443 free_and_replace(m->llmnr_hostname, llmnr_hostname);
444 free_and_replace(m->mdns_hostname, mdns_hostname);
eb60f9cd
LP
445
446 manager_refresh_rrs(m);
86c0411e 447 (void) manager_send_changed(m, "LLMNRHostname");
eb60f9cd
LP
448
449 return 0;
450}
451
452static int manager_watch_hostname(Manager *m) {
eb60f9cd
LP
453 int r;
454
455 assert(m);
456
db4a47e9
LP
457 m->hostname_fd = open("/proc/sys/kernel/hostname",
458 O_RDONLY|O_CLOEXEC|O_NONBLOCK|O_NOCTTY);
eb60f9cd 459 if (m->hostname_fd < 0) {
56f64d95 460 log_warning_errno(errno, "Failed to watch hostname: %m");
eb60f9cd
LP
461 return 0;
462 }
463
464 r = sd_event_add_io(m->event, &m->hostname_event_source, m->hostname_fd, 0, on_hostname_change, m);
465 if (r < 0) {
466 if (r == -EPERM)
467 /* kernels prior to 3.2 don't support polling this file. Ignore the failure. */
468 m->hostname_fd = safe_close(m->hostname_fd);
8d3d7072
MS
469 else
470 return log_error_errno(r, "Failed to add hostname event source: %m");
eb60f9cd
LP
471 }
472
aa4a9deb
LP
473 (void) sd_event_source_set_description(m->hostname_event_source, "hostname");
474
75c9d6b5 475 r = determine_hostnames(&m->full_hostname, &m->llmnr_hostname, &m->mdns_hostname);
eb60f9cd 476 if (r < 0) {
999c2486
LP
477 _cleanup_free_ char *d = NULL;
478
479 d = fallback_hostname();
480 if (!d)
481 return log_oom();
482
483 log_info("Defaulting to hostname '%s'.", d);
78c6a153 484
a25b0dc8
LP
485 r = make_fallback_hostnames(&m->full_hostname, &m->llmnr_hostname, &m->mdns_hostname);
486 if (r < 0)
487 return r;
eb60f9cd 488 } else
e96de0ce 489 log_info("Using system hostname '%s'.", m->full_hostname);
eb60f9cd
LP
490
491 return 0;
492}
493
4d506d6b
LP
494static int manager_sigusr1(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
495 _cleanup_free_ char *buffer = NULL;
496 _cleanup_fclose_ FILE *f = NULL;
99534007 497 Manager *m = ASSERT_PTR(userdata);
4d506d6b 498 size_t size = 0;
cf84484a 499 Link *l;
4d506d6b
LP
500
501 assert(s);
502 assert(si);
4d506d6b 503
2fe21124 504 f = open_memstream_unlocked(&buffer, &size);
4d506d6b
LP
505 if (!f)
506 return log_oom();
507
508 LIST_FOREACH(scopes, scope, m->dns_scopes)
509 dns_scope_dump(scope, f);
510
cf84484a
LP
511 LIST_FOREACH(servers, server, m->dns_servers)
512 dns_server_dump(server, f);
513 LIST_FOREACH(servers, server, m->fallback_dns_servers)
514 dns_server_dump(server, f);
90e74a66 515 HASHMAP_FOREACH(l, m->links)
cf84484a
LP
516 LIST_FOREACH(servers, server, l->dns_servers)
517 dns_server_dump(server, f);
518
4d506d6b
LP
519 if (fflush_and_check(f) < 0)
520 return log_oom();
521
522 log_dump(LOG_INFO, buffer);
523 return 0;
524}
525
bc81447e 526static int manager_sigusr2(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
99534007 527 Manager *m = ASSERT_PTR(userdata);
bc81447e
LP
528
529 assert(s);
530 assert(si);
bc81447e 531
90df0fbe 532 manager_flush_caches(m, LOG_INFO);
ba35662f 533
bc81447e
LP
534 return 0;
535}
536
d55b0463 537static int manager_sigrtmin1(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
99534007 538 Manager *m = ASSERT_PTR(userdata);
d55b0463
LP
539
540 assert(s);
541 assert(si);
d55b0463
LP
542
543 manager_reset_server_features(m);
544 return 0;
545}
546
bb351718
LP
547static int manager_memory_pressure(sd_event_source *s, void *userdata) {
548 Manager *m = ASSERT_PTR(userdata);
549
550 log_info("Under memory pressure, flushing caches.");
551
552 manager_flush_caches(m, LOG_INFO);
553 sd_event_trim_memory();
554
555 return 0;
556}
557
558static int manager_memory_pressure_listen(Manager *m) {
559 int r;
560
561 assert(m);
562
563 r = sd_event_add_memory_pressure(m->event, NULL, manager_memory_pressure, m);
564 if (r < 0)
565 log_full_errno(ERRNO_IS_NOT_SUPPORTED(r) || ERRNO_IS_PRIVILEGE(r) || (r == -EHOSTDOWN )? LOG_DEBUG : LOG_NOTICE, r,
566 "Failed to install memory pressure event source, ignoring: %m");
567
568 return 0;
569}
570
091a364c 571int manager_new(Manager **ret) {
74b2466e 572 _cleanup_(manager_freep) Manager *m = NULL;
091a364c
TG
573 int r;
574
c92e531c
LP
575 assert(ret);
576
f55f2dce 577 m = new(Manager, 1);
091a364c
TG
578 if (!m)
579 return -ENOMEM;
580
f55f2dce 581 *m = (Manager) {
254d1313
ZJS
582 .llmnr_ipv4_udp_fd = -EBADF,
583 .llmnr_ipv6_udp_fd = -EBADF,
584 .llmnr_ipv4_tcp_fd = -EBADF,
585 .llmnr_ipv6_tcp_fd = -EBADF,
586 .mdns_ipv4_fd = -EBADF,
587 .mdns_ipv6_fd = -EBADF,
588 .hostname_fd = -EBADF,
f55f2dce 589
3614df05
ZJS
590 .llmnr_support = DEFAULT_LLMNR_MODE,
591 .mdns_support = DEFAULT_MDNS_MODE,
f55f2dce
YW
592 .dnssec_mode = DEFAULT_DNSSEC_MODE,
593 .dns_over_tls_mode = DEFAULT_DNS_OVER_TLS_MODE,
37d7a7d9 594 .enable_cache = DNS_CACHE_MODE_YES,
4b987478 595 .dns_stub_listener_mode = DNS_STUB_LISTENER_YES,
f55f2dce
YW
596 .read_resolv_conf = true,
597 .need_builtin_fallbacks = true,
598 .etc_hosts_last = USEC_INFINITY,
f55f2dce 599 .read_etc_hosts = true,
bb351718
LP
600
601 .sigrtmin18_info.memory_pressure_handler = manager_memory_pressure,
602 .sigrtmin18_info.memory_pressure_userdata = m,
f55f2dce 603 };
091a364c 604
0d2cd476
LP
605 r = dns_trust_anchor_load(&m->trust_anchor);
606 if (r < 0)
607 return r;
608
ad6c0475
LP
609 r = manager_parse_config_file(m);
610 if (r < 0)
5ce497b5 611 log_warning_errno(r, "Failed to parse configuration file: %m");
ad6c0475 612
e22c5b20 613#if ENABLE_DNS_OVER_TLS
71a681ae
IT
614 r = dnstls_manager_init(m);
615 if (r < 0)
616 return r;
e22c5b20
IT
617#endif
618
091a364c
TG
619 r = sd_event_default(&m->event);
620 if (r < 0)
621 return r;
622
1ae17292
YW
623 (void) sd_event_add_signal(m->event, NULL, SIGTERM, NULL, NULL);
624 (void) sd_event_add_signal(m->event, NULL, SIGINT, NULL, NULL);
091a364c 625
1ae17292 626 (void) sd_event_set_watchdog(m->event, true);
091a364c 627
eb60f9cd
LP
628 r = manager_watch_hostname(m);
629 if (r < 0)
630 return r;
631
6501dd31
DR
632 r = dnssd_load(m);
633 if (r < 0)
634 log_warning_errno(r, "Failed to load DNS-SD configuration files: %m");
635
1716f6dc 636 r = dns_scope_new(m, &m->unicast_scope, NULL, DNS_PROTOCOL_DNS, AF_UNSPEC);
74b2466e
LP
637 if (r < 0)
638 return r;
639
640 r = manager_network_monitor_listen(m);
641 if (r < 0)
642 return r;
643
644 r = manager_rtnl_listen(m);
645 if (r < 0)
646 return r;
647
90df0fbe
LP
648 r = manager_clock_change_listen(m);
649 if (r < 0)
650 return r;
651
bb351718
LP
652 r = manager_memory_pressure_listen(m);
653 if (r < 0)
654 return r;
655
74b2466e
LP
656 r = manager_connect_bus(m);
657 if (r < 0)
658 return r;
659
4d506d6b 660 (void) sd_event_add_signal(m->event, &m->sigusr1_event_source, SIGUSR1, manager_sigusr1, m);
bc81447e 661 (void) sd_event_add_signal(m->event, &m->sigusr2_event_source, SIGUSR2, manager_sigusr2, m);
d55b0463 662 (void) sd_event_add_signal(m->event, &m->sigrtmin1_event_source, SIGRTMIN+1, manager_sigrtmin1, m);
bb351718 663 (void) sd_event_add_signal(m->event, NULL, SIGRTMIN+18, sigrtmin18_handler, &m->sigrtmin18_info);
4d506d6b 664
943ef07c
LP
665 manager_cleanup_saved_user(m);
666
1cc6c93a 667 *ret = TAKE_PTR(m);
091a364c
TG
668
669 return 0;
670}
671
edc501d4
LP
672int manager_start(Manager *m) {
673 int r;
674
675 assert(m);
676
b30bf55d
LP
677 r = manager_dns_stub_start(m);
678 if (r < 0)
679 return r;
680
9581bb84
LP
681 r = manager_varlink_init(m);
682 if (r < 0)
683 return r;
684
edc501d4
LP
685 return 0;
686}
687
74b2466e
LP
688Manager *manager_free(Manager *m) {
689 Link *l;
6501dd31 690 DnssdService *s;
091a364c
TG
691
692 if (!m)
74b2466e
LP
693 return NULL;
694
4b95f179
LP
695 dns_server_unlink_all(m->dns_servers);
696 dns_server_unlink_all(m->fallback_dns_servers);
a51c1048
LP
697 dns_search_domain_unlink_all(m->search_domains);
698
74b2466e
LP
699 while ((l = hashmap_first(m->links)))
700 link_free(l);
f0e15467
LP
701
702 while (m->dns_queries)
703 dns_query_free(m->dns_queries);
74b2466e 704
bde69bbd
LP
705 m->stub_queries_by_packet = hashmap_free(m->stub_queries_by_packet);
706
cab5b059
LP
707 dns_scope_free(m->unicast_scope);
708
b30bf55d
LP
709 /* At this point only orphaned streams should remain. All others should have been freed already by their
710 * owners */
711 while (m->dns_streams)
712 dns_stream_unref(m->dns_streams);
713
e22c5b20
IT
714#if ENABLE_DNS_OVER_TLS
715 dnstls_manager_free(m);
716#endif
717
f0e15467
LP
718 hashmap_free(m->links);
719 hashmap_free(m->dns_transactions);
720
096b6773
LP
721 sd_event_source_unref(m->network_event_source);
722 sd_network_monitor_unref(m->network_monitor);
091a364c 723
a564ca2f
LP
724 sd_netlink_unref(m->rtnl);
725 sd_event_source_unref(m->rtnl_event_source);
90df0fbe 726 sd_event_source_unref(m->clock_change_event_source);
a564ca2f 727
edc501d4 728 manager_llmnr_stop(m);
bc7702b0 729 manager_mdns_stop(m);
b30bf55d 730 manager_dns_stub_stop(m);
9581bb84 731 manager_varlink_done(m);
623a4c97 732
80710ade
LP
733 manager_socket_graveyard_clear(m);
734
46505826 735 ordered_set_free(m->dns_extra_stub_listeners);
1f05101f 736
2400ae29
YW
737 bus_verify_polkit_async_registry_free(m->polkit_registry);
738
92e31da1 739 sd_bus_flush_close_unref(m->bus);
091a364c 740
4d506d6b 741 sd_event_source_unref(m->sigusr1_event_source);
bc81447e 742 sd_event_source_unref(m->sigusr2_event_source);
d55b0463 743 sd_event_source_unref(m->sigrtmin1_event_source);
4d506d6b 744
78c6a153
LP
745 dns_resource_key_unref(m->llmnr_host_ipv4_key);
746 dns_resource_key_unref(m->llmnr_host_ipv6_key);
400cb36e
DR
747 dns_resource_key_unref(m->mdns_host_ipv4_key);
748 dns_resource_key_unref(m->mdns_host_ipv6_key);
eb60f9cd 749
eb60f9cd 750 sd_event_source_unref(m->hostname_event_source);
d9fcf2ba 751 safe_close(m->hostname_fd);
e96de0ce 752
f2ec080e
ZJS
753 sd_event_unref(m->event);
754
e96de0ce 755 free(m->full_hostname);
78c6a153
LP
756 free(m->llmnr_hostname);
757 free(m->mdns_hostname);
eb60f9cd 758
6501dd31
DR
759 while ((s = hashmap_first(m->dnssd_services)))
760 dnssd_service_free(s);
761 hashmap_free(m->dnssd_services);
762
0d2cd476 763 dns_trust_anchor_flush(&m->trust_anchor);
dd0bc0f1 764 manager_etc_hosts_flush(m);
0d2cd476 765
6b430fdb 766 return mfree(m);
091a364c
TG
767}
768
1716f6dc 769int manager_recv(Manager *m, int fd, DnsProtocol protocol, DnsPacket **ret) {
74b2466e 770 _cleanup_(dns_packet_unrefp) DnsPacket *p = NULL;
fb29cdbe
LP
771 CMSG_BUFFER_TYPE(CMSG_SPACE(MAXSIZE(struct in_pktinfo, struct in6_pktinfo))
772 + CMSG_SPACE(int) /* ttl/hoplimit */
773 + EXTRA_CMSG_SPACE /* kernel appears to require extra buffer space */) control;
1716f6dc 774 union sockaddr_union sa;
74b2466e 775 struct iovec iov;
f55f2dce
YW
776 struct msghdr mh = {
777 .msg_name = &sa.sa,
778 .msg_namelen = sizeof(sa),
779 .msg_iov = &iov,
780 .msg_iovlen = 1,
781 .msg_control = &control,
782 .msg_controllen = sizeof(control),
783 };
784 struct cmsghdr *cmsg;
4edc2c9b
LP
785 ssize_t ms, l;
786 int r;
74b2466e
LP
787
788 assert(m);
1716f6dc 789 assert(fd >= 0);
74b2466e
LP
790 assert(ret);
791
4edc2c9b 792 ms = next_datagram_size_fd(fd);
74b2466e 793 if (ms < 0)
4edc2c9b 794 return ms;
74b2466e 795
51027656 796 r = dns_packet_new(&p, protocol, ms, DNS_PACKET_SIZE_MAX);
74b2466e
LP
797 if (r < 0)
798 return r;
799
cb310866 800 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->allocated);
74b2466e 801
3691bcf3 802 l = recvmsg_safe(fd, &mh, 0);
8add30a0
YW
803 if (l < 0) {
804 if (ERRNO_IS_TRANSIENT(l))
805 return 0;
3691bcf3 806 return l;
8add30a0
YW
807 }
808 if (l == 0)
809 return 0;
091a364c 810
1716f6dc
LP
811 assert(!(mh.msg_flags & MSG_TRUNC));
812
74b2466e 813 p->size = (size_t) l;
091a364c 814
1716f6dc 815 p->family = sa.sa.sa_family;
623a4c97
LP
816 p->ipproto = IPPROTO_UDP;
817 if (p->family == AF_INET) {
1716f6dc 818 p->sender.in = sa.in.sin_addr;
623a4c97
LP
819 p->sender_port = be16toh(sa.in.sin_port);
820 } else if (p->family == AF_INET6) {
1716f6dc 821 p->sender.in6 = sa.in6.sin6_addr;
623a4c97
LP
822 p->sender_port = be16toh(sa.in6.sin6_port);
823 p->ifindex = sa.in6.sin6_scope_id;
824 } else
1716f6dc 825 return -EAFNOSUPPORT;
74b2466e 826
ba4e0427 827 p->timestamp = now(CLOCK_BOOTTIME);
5777c613 828
2a1288ff 829 CMSG_FOREACH(cmsg, &mh) {
74b2466e 830
1716f6dc
LP
831 if (cmsg->cmsg_level == IPPROTO_IPV6) {
832 assert(p->family == AF_INET6);
74b2466e 833
1716f6dc 834 switch (cmsg->cmsg_type) {
74b2466e 835
1716f6dc
LP
836 case IPV6_PKTINFO: {
837 struct in6_pktinfo *i = (struct in6_pktinfo*) CMSG_DATA(cmsg);
74b2466e 838
623a4c97
LP
839 if (p->ifindex <= 0)
840 p->ifindex = i->ipi6_ifindex;
841
1716f6dc
LP
842 p->destination.in6 = i->ipi6_addr;
843 break;
844 }
74b2466e 845
1716f6dc
LP
846 case IPV6_HOPLIMIT:
847 p->ttl = *(int *) CMSG_DATA(cmsg);
848 break;
74b2466e 849
20a001bd
LP
850 case IPV6_RECVFRAGSIZE:
851 p->fragsize = *(int *) CMSG_DATA(cmsg);
852 break;
1716f6dc
LP
853 }
854 } else if (cmsg->cmsg_level == IPPROTO_IP) {
855 assert(p->family == AF_INET);
74b2466e 856
1716f6dc 857 switch (cmsg->cmsg_type) {
74b2466e 858
1716f6dc
LP
859 case IP_PKTINFO: {
860 struct in_pktinfo *i = (struct in_pktinfo*) CMSG_DATA(cmsg);
091a364c 861
623a4c97
LP
862 if (p->ifindex <= 0)
863 p->ifindex = i->ipi_ifindex;
864
1716f6dc
LP
865 p->destination.in = i->ipi_addr;
866 break;
867 }
74b2466e 868
623a4c97 869 case IP_TTL:
1716f6dc
LP
870 p->ttl = *(int *) CMSG_DATA(cmsg);
871 break;
20a001bd
LP
872
873 case IP_RECVFRAGSIZE:
874 p->fragsize = *(int *) CMSG_DATA(cmsg);
875 break;
1716f6dc
LP
876 }
877 }
878 }
74b2466e 879
623a4c97
LP
880 /* The Linux kernel sets the interface index to the loopback
881 * device if the packet came from the local host since it
882 * avoids the routing table in such a case. Let's unset the
883 * interface index in such a case. */
a5f03596 884 if (p->ifindex == LOOPBACK_IFINDEX)
623a4c97
LP
885 p->ifindex = 0;
886
86ad4cd7
TG
887 if (protocol != DNS_PROTOCOL_DNS) {
888 /* If we don't know the interface index still, we look for the
889 * first local interface with a matching address. Yuck! */
890 if (p->ifindex <= 0)
891 p->ifindex = manager_find_ifindex(m, p->family, &p->destination);
892 }
623a4c97 893
c0f86d66 894 log_debug("Received %s UDP packet of size %zu, ifindex=%i, ttl=%u, fragsize=%zu, sender=%s, destination=%s",
84dbb3fd
ZJS
895 dns_protocol_to_string(protocol), p->size, p->ifindex, p->ttl, p->fragsize,
896 IN_ADDR_TO_STRING(p->family, &p->sender),
897 IN_ADDR_TO_STRING(p->family, &p->destination));
74b2466e 898
f7155840 899 *ret = TAKE_PTR(p);
74b2466e
LP
900 return 1;
901}
902
74b2466e 903static int sendmsg_loop(int fd, struct msghdr *mh, int flags) {
6d66a221 904 usec_t end;
74b2466e
LP
905 int r;
906
907 assert(fd >= 0);
908 assert(mh);
909
6d66a221
LP
910 end = usec_add(now(CLOCK_MONOTONIC), SEND_TIMEOUT_USEC);
911
74b2466e
LP
912 for (;;) {
913 if (sendmsg(fd, mh, flags) >= 0)
914 return 0;
74b2466e
LP
915 if (errno == EINTR)
916 continue;
74b2466e
LP
917 if (errno != EAGAIN)
918 return -errno;
919
6d66a221
LP
920 r = fd_wait_for_event(fd, POLLOUT, LESS_BY(end, now(CLOCK_MONOTONIC)));
921 if (r < 0) {
922 if (ERRNO_IS_TRANSIENT(r))
923 continue;
74b2466e 924 return r;
6d66a221 925 }
74b2466e
LP
926 if (r == 0)
927 return -ETIMEDOUT;
928 }
929}
930
72290734 931static int write_loop(int fd, void *message, size_t length) {
6d66a221 932 usec_t end;
72290734
TG
933 int r;
934
935 assert(fd >= 0);
936 assert(message);
937
6d66a221
LP
938 end = usec_add(now(CLOCK_MONOTONIC), SEND_TIMEOUT_USEC);
939
72290734
TG
940 for (;;) {
941 if (write(fd, message, length) >= 0)
942 return 0;
72290734
TG
943 if (errno == EINTR)
944 continue;
72290734
TG
945 if (errno != EAGAIN)
946 return -errno;
947
6d66a221
LP
948 r = fd_wait_for_event(fd, POLLOUT, LESS_BY(end, now(CLOCK_MONOTONIC)));
949 if (r < 0) {
950 if (ERRNO_IS_TRANSIENT(r))
951 continue;
72290734 952 return r;
6d66a221 953 }
72290734
TG
954 if (r == 0)
955 return -ETIMEDOUT;
956 }
957}
958
959int manager_write(Manager *m, int fd, DnsPacket *p) {
960 int r;
961
76f77229
LP
962 log_debug("Sending %s%s packet with id %" PRIu16 " of size %zu.",
963 DNS_PACKET_TC(p) ? "truncated (!) " : "",
964 DNS_PACKET_QR(p) ? "response" : "query",
965 DNS_PACKET_ID(p),
966 p->size);
72290734
TG
967
968 r = write_loop(fd, DNS_PACKET_DATA(p), p->size);
969 if (r < 0)
970 return r;
971
972 return 0;
973}
974
b30bf55d
LP
975static int manager_ipv4_send(
976 Manager *m,
977 int fd,
978 int ifindex,
979 const struct in_addr *destination,
980 uint16_t port,
981 const struct in_addr *source,
982 DnsPacket *p) {
fb29cdbe
LP
983
984 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct in_pktinfo))) control = {};
f55f2dce 985 union sockaddr_union sa;
74b2466e 986 struct iovec iov;
f55f2dce
YW
987 struct msghdr mh = {
988 .msg_iov = &iov,
989 .msg_iovlen = 1,
990 .msg_name = &sa.sa,
991 .msg_namelen = sizeof(sa.in),
992 };
74b2466e
LP
993
994 assert(m);
1716f6dc 995 assert(fd >= 0);
b30bf55d 996 assert(destination);
1716f6dc 997 assert(port > 0);
74b2466e
LP
998 assert(p);
999
cb310866 1000 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->size);
091a364c 1001
f55f2dce
YW
1002 sa = (union sockaddr_union) {
1003 .in.sin_family = AF_INET,
1004 .in.sin_addr = *destination,
1005 .in.sin_port = htobe16(port),
1006 };
091a364c 1007
74b2466e
LP
1008 if (ifindex > 0) {
1009 struct cmsghdr *cmsg;
1010 struct in_pktinfo *pi;
1011
1716f6dc 1012 mh.msg_control = &control;
a258f491 1013 mh.msg_controllen = sizeof(control);
74b2466e
LP
1014
1015 cmsg = CMSG_FIRSTHDR(&mh);
a258f491 1016 cmsg->cmsg_len = CMSG_LEN(sizeof(struct in_pktinfo));
74b2466e
LP
1017 cmsg->cmsg_level = IPPROTO_IP;
1018 cmsg->cmsg_type = IP_PKTINFO;
1019
1020 pi = (struct in_pktinfo*) CMSG_DATA(cmsg);
1021 pi->ipi_ifindex = ifindex;
b30bf55d
LP
1022
1023 if (source)
1024 pi->ipi_spec_dst = *source;
74b2466e
LP
1025 }
1026
1027 return sendmsg_loop(fd, &mh, 0);
1028}
1029
b30bf55d
LP
1030static int manager_ipv6_send(
1031 Manager *m,
1032 int fd,
1033 int ifindex,
1034 const struct in6_addr *destination,
1035 uint16_t port,
1036 const struct in6_addr *source,
1037 DnsPacket *p) {
1038
fb29cdbe 1039 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct in6_pktinfo))) control = {};
f55f2dce 1040 union sockaddr_union sa;
74b2466e 1041 struct iovec iov;
f55f2dce
YW
1042 struct msghdr mh = {
1043 .msg_iov = &iov,
1044 .msg_iovlen = 1,
1045 .msg_name = &sa.sa,
1046 .msg_namelen = sizeof(sa.in6),
1047 };
74b2466e
LP
1048
1049 assert(m);
1716f6dc 1050 assert(fd >= 0);
b30bf55d 1051 assert(destination);
1716f6dc 1052 assert(port > 0);
74b2466e
LP
1053 assert(p);
1054
cb310866 1055 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->size);
74b2466e 1056
f55f2dce
YW
1057 sa = (union sockaddr_union) {
1058 .in6.sin6_family = AF_INET6,
1059 .in6.sin6_addr = *destination,
1060 .in6.sin6_port = htobe16(port),
1061 .in6.sin6_scope_id = ifindex,
1062 };
74b2466e
LP
1063
1064 if (ifindex > 0) {
1065 struct cmsghdr *cmsg;
1066 struct in6_pktinfo *pi;
1067
1716f6dc 1068 mh.msg_control = &control;
a258f491 1069 mh.msg_controllen = sizeof(control);
74b2466e
LP
1070
1071 cmsg = CMSG_FIRSTHDR(&mh);
a258f491 1072 cmsg->cmsg_len = CMSG_LEN(sizeof(struct in6_pktinfo));
74b2466e
LP
1073 cmsg->cmsg_level = IPPROTO_IPV6;
1074 cmsg->cmsg_type = IPV6_PKTINFO;
1075
1076 pi = (struct in6_pktinfo*) CMSG_DATA(cmsg);
1077 pi->ipi6_ifindex = ifindex;
b30bf55d
LP
1078
1079 if (source)
1080 pi->ipi6_addr = *source;
74b2466e
LP
1081 }
1082
1083 return sendmsg_loop(fd, &mh, 0);
1084}
1085
72c2d39e
LP
1086static int dns_question_to_json(DnsQuestion *q, JsonVariant **ret) {
1087 _cleanup_(json_variant_unrefp) JsonVariant *l = NULL;
1088 DnsResourceKey *key;
1089 int r;
1090
1091 assert(ret);
1092
1093 DNS_QUESTION_FOREACH(key, q) {
1094 _cleanup_(json_variant_unrefp) JsonVariant *v = NULL;
1095
1096 r = dns_resource_key_to_json(key, &v);
1097 if (r < 0)
1098 return r;
1099
1100 r = json_variant_append_array(&l, v);
1101 if (r < 0)
1102 return r;
1103 }
1104
1105 *ret = TAKE_PTR(l);
1106 return 0;
1107}
1108
1109int manager_monitor_send(
1110 Manager *m,
1111 int state,
1112 int rcode,
1113 int error,
1114 DnsQuestion *question_idna,
1115 DnsQuestion *question_utf8,
1116 DnsQuestion *collected_questions,
1117 DnsAnswer *answer) {
1118
1119 _cleanup_(json_variant_unrefp) JsonVariant *jquestion = NULL, *jcollected_questions = NULL, *janswer = NULL;
1120 _cleanup_(dns_question_unrefp) DnsQuestion *merged = NULL;
cb456374 1121 Varlink *connection;
72c2d39e
LP
1122 DnsAnswerItem *rri;
1123 int r;
cb456374
SK
1124
1125 assert(m);
1126
1127 if (set_isempty(m->varlink_subscription))
1128 return 0;
1129
72c2d39e
LP
1130 /* Merge both questions format into one */
1131 r = dns_question_merge(question_idna, question_utf8, &merged);
1132 if (r < 0)
1133 return log_error_errno(r, "Failed to merge UTF8/IDNA questions: %m");
1134
1135 /* Convert the current primary question to JSON */
1136 r = dns_question_to_json(merged, &jquestion);
1137 if (r < 0)
1138 return log_error_errno(r, "Failed to convert question to JSON: %m");
cb456374 1139
64ebc0da 1140 /* Generate a JSON array of the questions preceding the current one in the CNAME chain */
72c2d39e
LP
1141 r = dns_question_to_json(collected_questions, &jcollected_questions);
1142 if (r < 0)
1143 return log_error_errno(r, "Failed to convert question to JSON: %m");
1144
1145 DNS_ANSWER_FOREACH_ITEM(rri, answer) {
1146 _cleanup_(json_variant_unrefp) JsonVariant *v = NULL, *w = NULL;
1147
1148 r = dns_resource_record_to_json(rri->rr, &v);
cb456374 1149 if (r < 0)
72c2d39e 1150 return log_error_errno(r, "Failed to convert answer resource record to JSON: %m");
cb456374 1151
72c2d39e
LP
1152 r = dns_resource_record_to_wire_format(rri->rr, /* canonical= */ false); /* don't use DNSSEC canonical format, since it removes casing, but we want that for DNS_SD compat */
1153 if (r < 0)
1154 return log_error_errno(r, "Failed to generate RR wire format: %m");
cb456374 1155
72c2d39e
LP
1156 r = json_build(&w, JSON_BUILD_OBJECT(
1157 JSON_BUILD_PAIR_CONDITION(v, "rr", JSON_BUILD_VARIANT(v)),
1158 JSON_BUILD_PAIR("raw", JSON_BUILD_BASE64(rri->rr->wire_format, rri->rr->wire_format_size)),
1159 JSON_BUILD_PAIR_CONDITION(rri->ifindex > 0, "ifindex", JSON_BUILD_INTEGER(rri->ifindex))));
1160 if (r < 0)
1161 return log_error_errno(r, "Failed to make answer RR object: %m");
1162
1163 r = json_variant_append_array(&janswer, w);
1164 if (r < 0)
1165 return log_debug_errno(r, "Failed to append notification entry to array: %m");
1166 }
cb456374
SK
1167
1168 SET_FOREACH(connection, m->varlink_subscription) {
1169 r = varlink_notifyb(connection,
72c2d39e
LP
1170 JSON_BUILD_OBJECT(JSON_BUILD_PAIR("state", JSON_BUILD_STRING(dns_transaction_state_to_string(state))),
1171 JSON_BUILD_PAIR_CONDITION(state == DNS_TRANSACTION_RCODE_FAILURE, "rcode", JSON_BUILD_INTEGER(rcode)),
1172 JSON_BUILD_PAIR_CONDITION(state == DNS_TRANSACTION_ERRNO, "errno", JSON_BUILD_INTEGER(error)),
1173 JSON_BUILD_PAIR("question", JSON_BUILD_VARIANT(jquestion)),
1174 JSON_BUILD_PAIR_CONDITION(jcollected_questions, "collectedQuestions", JSON_BUILD_VARIANT(jcollected_questions)),
1175 JSON_BUILD_PAIR_CONDITION(janswer, "answer", JSON_BUILD_VARIANT(janswer))));
cb456374 1176 if (r < 0)
72c2d39e 1177 log_debug_errno(r, "Failed to send monitor event, ignoring: %m");
cb456374 1178 }
72c2d39e 1179
cb456374
SK
1180 return 0;
1181}
1182
b30bf55d
LP
1183int manager_send(
1184 Manager *m,
1185 int fd,
1186 int ifindex,
1187 int family,
1188 const union in_addr_union *destination,
1189 uint16_t port,
1190 const union in_addr_union *source,
1191 DnsPacket *p) {
1192
1716f6dc
LP
1193 assert(m);
1194 assert(fd >= 0);
b30bf55d 1195 assert(destination);
1716f6dc
LP
1196 assert(port > 0);
1197 assert(p);
1198
76f77229
LP
1199 log_debug("Sending %s%s packet with id %" PRIu16 " on interface %i/%s of size %zu.",
1200 DNS_PACKET_TC(p) ? "truncated (!) " : "",
1201 DNS_PACKET_QR(p) ? "response" : "query",
1202 DNS_PACKET_ID(p),
1203 ifindex, af_to_name(family),
1204 p->size);
a2a416f7 1205
1716f6dc 1206 if (family == AF_INET)
25270cf3 1207 return manager_ipv4_send(m, fd, ifindex, &destination->in, port, source ? &source->in : NULL, p);
2817157b 1208 if (family == AF_INET6)
25270cf3 1209 return manager_ipv6_send(m, fd, ifindex, &destination->in6, port, source ? &source->in6 : NULL, p);
1716f6dc
LP
1210
1211 return -EAFNOSUPPORT;
1212}
1213
e1c95994
LP
1214uint32_t manager_find_mtu(Manager *m) {
1215 uint32_t mtu = 0;
1216 Link *l;
e1c95994 1217
5a0d0b8f 1218 /* If we don't know on which link a DNS packet would be delivered, let's find the largest MTU that
4301cb32 1219 * works on all interfaces we know of that have an IP address associated */
e1c95994 1220
90e74a66 1221 HASHMAP_FOREACH(l, m->links) {
5a0d0b8f
LP
1222 /* Let's filter out links without IP addresses (e.g. AF_CAN links and suchlike) */
1223 if (!l->addresses)
1224 continue;
1225
1226 /* Safety check: MTU shorter than what we need for the absolutely shortest DNS request? Then
1227 * let's ignore this link. */
1228 if (l->mtu < MIN(UDP4_PACKET_HEADER_SIZE + DNS_PACKET_HEADER_SIZE,
1229 UDP6_PACKET_HEADER_SIZE + DNS_PACKET_HEADER_SIZE))
e1c95994
LP
1230 continue;
1231
1232 if (mtu <= 0 || l->mtu < mtu)
1233 mtu = l->mtu;
1234 }
1235
5a0d0b8f
LP
1236 if (mtu == 0) /* found nothing? then let's assume the typical Ethernet MTU for lack of anything more precise */
1237 return 1500;
1238
e1c95994
LP
1239 return mtu;
1240}
1716f6dc 1241
623a4c97 1242int manager_find_ifindex(Manager *m, int family, const union in_addr_union *in_addr) {
ec2c5e43
LP
1243 LinkAddress *a;
1244
1245 assert(m);
1246
bb3b08ad
YW
1247 if (!IN_SET(family, AF_INET, AF_INET6))
1248 return 0;
1249
1250 if (!in_addr)
1251 return 0;
1252
4e945a6f 1253 a = manager_find_link_address(m, family, in_addr);
ec2c5e43
LP
1254 if (a)
1255 return a->link->ifindex;
1256
1257 return 0;
1258}
1259
eb60f9cd 1260void manager_refresh_rrs(Manager *m) {
eb60f9cd 1261 Link *l;
6db6a464 1262 DnssdService *s;
eb60f9cd
LP
1263
1264 assert(m);
1265
78c6a153
LP
1266 m->llmnr_host_ipv4_key = dns_resource_key_unref(m->llmnr_host_ipv4_key);
1267 m->llmnr_host_ipv6_key = dns_resource_key_unref(m->llmnr_host_ipv6_key);
400cb36e
DR
1268 m->mdns_host_ipv4_key = dns_resource_key_unref(m->mdns_host_ipv4_key);
1269 m->mdns_host_ipv6_key = dns_resource_key_unref(m->mdns_host_ipv6_key);
eb60f9cd 1270
ee3713b7
RB
1271 HASHMAP_FOREACH(l, m->links)
1272 link_add_rrs(l, true);
1273
6db6a464 1274 if (m->mdns_support == RESOLVE_SUPPORT_YES)
90e74a66 1275 HASHMAP_FOREACH(s, m->dnssd_services)
6db6a464
DR
1276 if (dnssd_update_rrs(s) < 0)
1277 log_warning("Failed to refresh DNS-SD service '%s'", s->name);
1278
ee3713b7 1279 HASHMAP_FOREACH(l, m->links)
eb60f9cd 1280 link_add_rrs(l, false);
eb60f9cd
LP
1281}
1282
e7c1b0e4 1283static int manager_next_random_name(const char *old, char **ret_new) {
ec2c5e43 1284 const char *p;
556a2294 1285 uint64_t u, a;
e7c1b0e4 1286 char *n;
623a4c97 1287
e7c1b0e4 1288 p = strchr(old, 0);
ec2c5e43
LP
1289 assert(p);
1290
e7c1b0e4 1291 while (p > old) {
ff25d338 1292 if (!ascii_isdigit(p[-1]))
ec2c5e43
LP
1293 break;
1294
1295 p--;
1296 }
1297
1298 if (*p == 0 || safe_atou64(p, &u) < 0 || u <= 0)
1299 u = 1;
1300
556a2294
LP
1301 /* Add a random number to the old value. This way we can avoid
1302 * that two hosts pick the same hostname, win on IPv4 and lose
1303 * on IPv6 (or vice versa), and pick the same hostname
1304 * replacement hostname, ad infinitum. We still want the
1305 * numbers to go up monotonically, hence we just add a random
1306 * value 1..10 */
1307
1308 random_bytes(&a, sizeof(a));
1309 u += 1 + a % 10;
ec2c5e43 1310
e7c1b0e4 1311 if (asprintf(&n, "%.*s%" PRIu64, (int) (p - old), old, u) < 0)
ec2c5e43
LP
1312 return -ENOMEM;
1313
e7c1b0e4
DR
1314 *ret_new = n;
1315
1316 return 0;
1317}
1318
1319int manager_next_hostname(Manager *m) {
1320 _cleanup_free_ char *h = NULL, *k = NULL;
1321 int r;
1322
1323 assert(m);
1324
1325 r = manager_next_random_name(m->llmnr_hostname, &h);
1326 if (r < 0)
1327 return r;
1328
7470cc4c 1329 r = dns_name_concat(h, "local", 0, &k);
e7c1b0e4 1330 if (r < 0)
78c6a153 1331 return r;
78c6a153
LP
1332
1333 log_info("Hostname conflict, changing published hostname from '%s' to '%s'.", m->llmnr_hostname, h);
1334
e7c1b0e4
DR
1335 free_and_replace(m->llmnr_hostname, h);
1336 free_and_replace(m->mdns_hostname, k);
ec2c5e43 1337
eb60f9cd 1338 manager_refresh_rrs(m);
86c0411e 1339 (void) manager_send_changed(m, "LLMNRHostname");
623a4c97
LP
1340
1341 return 0;
1342}
ec2c5e43 1343
4e945a6f 1344LinkAddress* manager_find_link_address(Manager *m, int family, const union in_addr_union *in_addr) {
ec2c5e43
LP
1345 Link *l;
1346
1347 assert(m);
1348
bb3b08ad
YW
1349 if (!IN_SET(family, AF_INET, AF_INET6))
1350 return NULL;
1351
1352 if (!in_addr)
1353 return NULL;
1354
90e74a66 1355 HASHMAP_FOREACH(l, m->links) {
ec2c5e43
LP
1356 LinkAddress *a;
1357
1358 a = link_find_address(l, family, in_addr);
1359 if (a)
1360 return a;
1361 }
1362
1363 return NULL;
1364}
1365
94378145 1366bool manager_packet_from_local_address(Manager *m, DnsPacket *p) {
ec2c5e43
LP
1367 assert(m);
1368 assert(p);
1369
94378145
LP
1370 /* Let's see if this packet comes from an IP address we have on any local interface */
1371
4e945a6f 1372 return !!manager_find_link_address(m, p->family, &p->sender);
ec2c5e43 1373}
4e945a6f 1374
a9fd8837
LP
1375bool manager_packet_from_our_transaction(Manager *m, DnsPacket *p) {
1376 DnsTransaction *t;
1377
1378 assert(m);
1379 assert(p);
1380
1381 /* Let's see if we have a transaction with a query message with the exact same binary contents as the
1382 * one we just got. If so, it's almost definitely a packet loop of some kind. */
1383
1384 t = hashmap_get(m->dns_transactions, UINT_TO_PTR(DNS_PACKET_ID(p)));
1385 if (!t)
1386 return false;
1387
1388 return t->sent && dns_packet_equal(t->sent, p);
1389}
1390
a4076574
LP
1391DnsScope* manager_find_scope(Manager *m, DnsPacket *p) {
1392 Link *l;
1393
1394 assert(m);
1395 assert(p);
1396
1397 l = hashmap_get(m->links, INT_TO_PTR(p->ifindex));
1398 if (!l)
1399 return NULL;
1400
b4f1862d
DM
1401 switch (p->protocol) {
1402 case DNS_PROTOCOL_LLMNR:
a4076574
LP
1403 if (p->family == AF_INET)
1404 return l->llmnr_ipv4_scope;
1405 else if (p->family == AF_INET6)
1406 return l->llmnr_ipv6_scope;
b4f1862d
DM
1407
1408 break;
1409
1410 case DNS_PROTOCOL_MDNS:
1411 if (p->family == AF_INET)
1412 return l->mdns_ipv4_scope;
1413 else if (p->family == AF_INET6)
1414 return l->mdns_ipv6_scope;
1415
1416 break;
1417
1418 default:
1419 break;
a4076574
LP
1420 }
1421
1422 return NULL;
1423}
1424
902bb5d8 1425void manager_verify_all(Manager *m) {
902bb5d8
LP
1426 assert(m);
1427
1428 LIST_FOREACH(scopes, s, m->dns_scopes)
1429 dns_zone_verify_all(&s->zone);
1430}
1431
78c6a153 1432int manager_is_own_hostname(Manager *m, const char *name) {
78c6a153
LP
1433 int r;
1434
1435 assert(m);
1436 assert(name);
1437
1438 if (m->llmnr_hostname) {
1439 r = dns_name_equal(name, m->llmnr_hostname);
1440 if (r != 0)
1441 return r;
1442 }
1443
e96de0ce
LP
1444 if (m->mdns_hostname) {
1445 r = dns_name_equal(name, m->mdns_hostname);
1446 if (r != 0)
1447 return r;
1448 }
1449
1450 if (m->full_hostname)
1451 return dns_name_equal(name, m->full_hostname);
78c6a153
LP
1452
1453 return 0;
1454}
1455
9176a57c 1456int manager_compile_dns_servers(Manager *m, OrderedSet **dns) {
9176a57c
LP
1457 Link *l;
1458 int r;
1459
1460 assert(m);
1461 assert(dns);
1462
1463 r = ordered_set_ensure_allocated(dns, &dns_server_hash_ops);
1464 if (r < 0)
1465 return r;
1466
1467 /* First add the system-wide servers and domains */
1468 LIST_FOREACH(servers, s, m->dns_servers) {
1469 r = ordered_set_put(*dns, s);
1470 if (r == -EEXIST)
1471 continue;
1472 if (r < 0)
1473 return r;
1474 }
1475
1476 /* Then, add the per-link servers */
90e74a66 1477 HASHMAP_FOREACH(l, m->links) {
9176a57c
LP
1478 LIST_FOREACH(servers, s, l->dns_servers) {
1479 r = ordered_set_put(*dns, s);
1480 if (r == -EEXIST)
1481 continue;
1482 if (r < 0)
1483 return r;
1484 }
1485 }
1486
1487 /* If we found nothing, add the fallback servers */
1488 if (ordered_set_isempty(*dns)) {
1489 LIST_FOREACH(servers, s, m->fallback_dns_servers) {
1490 r = ordered_set_put(*dns, s);
1491 if (r == -EEXIST)
1492 continue;
1493 if (r < 0)
1494 return r;
1495 }
1496 }
1497
1498 return 0;
1499}
1500
94363cbb
MP
1501/* filter_route is a tri-state:
1502 * < 0: no filtering
1503 * = 0 or false: return only domains which should be used for searching
1504 * > 0 or true: return only domains which are for routing only
1505 */
6f7da49d 1506int manager_compile_search_domains(Manager *m, OrderedSet **domains, int filter_route) {
9176a57c
LP
1507 Link *l;
1508 int r;
1509
1510 assert(m);
1511 assert(domains);
1512
1513 r = ordered_set_ensure_allocated(domains, &dns_name_hash_ops);
1514 if (r < 0)
1515 return r;
1516
1517 LIST_FOREACH(domains, d, m->search_domains) {
6f7da49d
LP
1518
1519 if (filter_route >= 0 &&
1520 d->route_only != !!filter_route)
1521 continue;
1522
9176a57c
LP
1523 r = ordered_set_put(*domains, d->name);
1524 if (r == -EEXIST)
1525 continue;
1526 if (r < 0)
1527 return r;
1528 }
1529
90e74a66 1530 HASHMAP_FOREACH(l, m->links) {
9176a57c
LP
1531
1532 LIST_FOREACH(domains, d, l->search_domains) {
6f7da49d
LP
1533
1534 if (filter_route >= 0 &&
1535 d->route_only != !!filter_route)
1536 continue;
1537
9176a57c
LP
1538 r = ordered_set_put(*domains, d->name);
1539 if (r == -EEXIST)
1540 continue;
1541 if (r < 0)
1542 return r;
1543 }
1544 }
1545
1546 return 0;
1547}
c69fa7e3
LP
1548
1549DnssecMode manager_get_dnssec_mode(Manager *m) {
1550 assert(m);
1551
1552 if (m->dnssec_mode != _DNSSEC_MODE_INVALID)
1553 return m->dnssec_mode;
1554
1555 return DNSSEC_NO;
1556}
1557
1558bool manager_dnssec_supported(Manager *m) {
1559 DnsServer *server;
c69fa7e3
LP
1560 Link *l;
1561
1562 assert(m);
1563
1564 if (manager_get_dnssec_mode(m) == DNSSEC_NO)
1565 return false;
1566
1567 server = manager_get_dns_server(m);
1568 if (server && !dns_server_dnssec_supported(server))
1569 return false;
1570
90e74a66 1571 HASHMAP_FOREACH(l, m->links)
c69fa7e3
LP
1572 if (!link_dnssec_supported(l))
1573 return false;
1574
1575 return true;
1576}
59c5b597 1577
c9299be2 1578DnsOverTlsMode manager_get_dns_over_tls_mode(Manager *m) {
5d67a7ae
IT
1579 assert(m);
1580
c9299be2
IT
1581 if (m->dns_over_tls_mode != _DNS_OVER_TLS_MODE_INVALID)
1582 return m->dns_over_tls_mode;
5d67a7ae 1583
c9299be2 1584 return DNS_OVER_TLS_NO;
5d67a7ae
IT
1585}
1586
59c5b597
LP
1587void manager_dnssec_verdict(Manager *m, DnssecVerdict verdict, const DnsResourceKey *key) {
1588
1589 assert(verdict >= 0);
1590 assert(verdict < _DNSSEC_VERDICT_MAX);
1591
f1d34068 1592 if (DEBUG_LOGGING) {
202b76ae 1593 char s[DNS_RESOURCE_KEY_STRING_MAX];
59c5b597 1594
202b76ae
ZJS
1595 log_debug("Found verdict for lookup %s: %s",
1596 dns_resource_key_to_string(key, s, sizeof s),
1597 dnssec_verdict_to_string(verdict));
59c5b597
LP
1598 }
1599
1600 m->n_dnssec_verdict[verdict]++;
1601}
011696f7 1602
de4a0138 1603bool manager_routable(Manager *m) {
011696f7
LP
1604 Link *l;
1605
1606 assert(m);
1607
de4a0138 1608 /* Returns true if the host has at least one interface with a routable address (regardless if IPv4 or IPv6) */
011696f7 1609
90e74a66 1610 HASHMAP_FOREACH(l, m->links)
de4a0138 1611 if (link_relevant(l, AF_UNSPEC, false))
011696f7
LP
1612 return true;
1613
1614 return false;
1615}
ba35662f 1616
90df0fbe 1617void manager_flush_caches(Manager *m, int log_level) {
ba35662f
LP
1618 assert(m);
1619
1620 LIST_FOREACH(scopes, scope, m->dns_scopes)
1621 dns_cache_flush(&scope->cache);
aac57b35 1622
90df0fbe 1623 log_full(log_level, "Flushed all caches.");
ba35662f 1624}
943ef07c 1625
59c0fd0e 1626void manager_reset_server_features(Manager *m) {
59c0fd0e
LP
1627 Link *l;
1628
1629 dns_server_reset_features_all(m->dns_servers);
1630 dns_server_reset_features_all(m->fallback_dns_servers);
1631
90e74a66 1632 HASHMAP_FOREACH(l, m->links)
59c0fd0e
LP
1633 dns_server_reset_features_all(l->dns_servers);
1634
1635 log_info("Resetting learnt feature levels on all servers.");
1636}
1637
943ef07c
LP
1638void manager_cleanup_saved_user(Manager *m) {
1639 _cleanup_closedir_ DIR *d = NULL;
943ef07c
LP
1640
1641 assert(m);
1642
1643 /* Clean up all saved per-link files in /run/systemd/resolve/netif/ that don't have a matching interface
1644 * anymore. These files are created to persist settings pushed in by the user via the bus, so that resolved can
1645 * be restarted without losing this data. */
1646
1647 d = opendir("/run/systemd/resolve/netif/");
1648 if (!d) {
1649 if (errno == ENOENT)
1650 return;
1651
1652 log_warning_errno(errno, "Failed to open interface directory: %m");
1653 return;
1654 }
1655
1656 FOREACH_DIRENT_ALL(de, d, log_error_errno(errno, "Failed to read interface directory: %m")) {
1657 _cleanup_free_ char *p = NULL;
1658 int ifindex;
1659 Link *l;
1660
1661 if (!IN_SET(de->d_type, DT_UNKNOWN, DT_REG))
1662 continue;
1663
49bfc877 1664 if (dot_or_dot_dot(de->d_name))
943ef07c
LP
1665 continue;
1666
597da51b
ZJS
1667 ifindex = parse_ifindex(de->d_name);
1668 if (ifindex < 0) /* Probably some temporary file from a previous run. Delete it */
943ef07c
LP
1669 goto rm;
1670
1671 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
1672 if (!l) /* link vanished */
1673 goto rm;
1674
1675 if (l->is_managed) /* now managed by networkd, hence the bus settings are useless */
1676 goto rm;
1677
1678 continue;
1679
1680 rm:
b910cc72 1681 p = path_join("/run/systemd/resolve/netif", de->d_name);
943ef07c
LP
1682 if (!p) {
1683 log_oom();
1684 return;
1685 }
1686
1687 (void) unlink(p);
1688 }
1689}
e7c1b0e4
DR
1690
1691bool manager_next_dnssd_names(Manager *m) {
e7c1b0e4
DR
1692 DnssdService *s;
1693 bool tried = false;
1694 int r;
1695
1696 assert(m);
1697
90e74a66 1698 HASHMAP_FOREACH(s, m->dnssd_services) {
e7c1b0e4
DR
1699 _cleanup_free_ char * new_name = NULL;
1700
1701 if (!s->withdrawn)
1702 continue;
1703
1704 r = manager_next_random_name(s->name_template, &new_name);
1705 if (r < 0) {
1706 log_warning_errno(r, "Failed to get new name for service '%s': %m", s->name);
1707 continue;
1708 }
1709
1710 free_and_replace(s->name_template, new_name);
1711
1712 s->withdrawn = false;
1713
1714 tried = true;
1715 }
1716
1717 if (tried)
1718 manager_refresh_rrs(m);
1719
1720 return tried;
1721}
49ef064c 1722
281df579 1723bool manager_server_is_stub(Manager *m, DnsServer *s) {
49ef064c
LP
1724 DnsStubListenerExtra *l;
1725
1726 assert(m);
281df579 1727 assert(s);
49ef064c
LP
1728
1729 /* Safety check: we generally already skip the main stub when parsing configuration. But let's be
1730 * extra careful, and check here again */
281df579
LP
1731 if (s->family == AF_INET &&
1732 s->address.in.s_addr == htobe32(INADDR_DNS_STUB) &&
1733 dns_server_port(s) == 53)
49ef064c
LP
1734 return true;
1735
1736 /* Main reason to call this is to check server data against the extra listeners, and filter things
1737 * out. */
1738 ORDERED_SET_FOREACH(l, m->dns_extra_stub_listeners)
281df579
LP
1739 if (s->family == l->family &&
1740 in_addr_equal(s->family, &s->address, &l->address) &&
1741 dns_server_port(s) == dns_stub_listener_extra_port(l))
49ef064c
LP
1742 return true;
1743
1744 return false;
1745}
eb170e75
LP
1746
1747int socket_disable_pmtud(int fd, int af) {
1748 int r;
1749
1750 assert(fd >= 0);
1751
1752 if (af == AF_UNSPEC) {
5f64d2bf
LP
1753 af = socket_get_family(fd);
1754 if (af < 0)
1755 return af;
eb170e75
LP
1756 }
1757
1758 switch (af) {
1759
1760 case AF_INET: {
1761 /* Turn off path MTU discovery, let's rather fragment on the way than to open us up against
1762 * PMTU forgery vulnerabilities.
1763 *
1764 * There appears to be no documentation about IP_PMTUDISC_OMIT, but it has the effect that
1765 * the "Don't Fragment" bit in the IPv4 header is turned off, thus enforcing fragmentation if
1766 * our datagram size exceeds the MTU of a router in the path, and turning off path MTU
1767 * discovery.
1768 *
1769 * This helps mitigating the PMTUD vulnerability described here:
1770 *
1771 * https://blog.apnic.net/2019/07/12/its-time-to-consider-avoiding-ip-fragmentation-in-the-dns/
1772 *
1773 * Similar logic is in place in most DNS servers.
1774 *
1775 * There are multiple conflicting goals: we want to allow the largest datagrams possible (for
1776 * efficiency reasons), but not have fragmentation (for security reasons), nor use PMTUD (for
1777 * security reasons, too). Our strategy to deal with this is: use large packets, turn off
1778 * PMTUD, but watch fragmentation taking place, and then size our packets to the max of the
1779 * fragments seen — and if we need larger packets always go to TCP.
1780 */
1781
1782 r = setsockopt_int(fd, IPPROTO_IP, IP_MTU_DISCOVER, IP_PMTUDISC_OMIT);
1783 if (r < 0)
1784 return r;
1785
1786 return 0;
1787 }
1788
1789 case AF_INET6: {
1790 /* On IPv6 fragmentation only is done by the sender — never by routers on the path. PMTUD is
1791 * mandatory. If we want to turn off PMTUD, the only way is by sending with minimal MTU only,
1792 * so that we apply maximum fragmentation locally already, and thus PMTUD doesn't happen
1793 * because there's nothing that could be fragmented further anymore. */
1794
1795 r = setsockopt_int(fd, IPPROTO_IPV6, IPV6_MTU, IPV6_MIN_MTU);
1796 if (r < 0)
1797 return r;
1798
1799 return 0;
1800 }
1801
1802 default:
1803 return -EAFNOSUPPORT;
1804 }
1805}