]> git.ipfire.org Git - thirdparty/systemd.git/blob - src/resolve/resolved-manager.c
3e63f90dda63aa76fd7e7bf2cda27bf11af31d02
[thirdparty/systemd.git] / src / resolve / resolved-manager.c
1 /* SPDX-License-Identifier: LGPL-2.1+ */
2
3 #include <fcntl.h>
4 #include <netinet/in.h>
5 #include <poll.h>
6 #include <sys/ioctl.h>
7 #include <sys/stat.h>
8 #include <sys/types.h>
9 #include <unistd.h>
10
11 #if HAVE_LIBIDN2
12 #include <idn2.h>
13 #endif
14
15 #include "af-list.h"
16 #include "alloc-util.h"
17 #include "bus-polkit.h"
18 #include "dirent-util.h"
19 #include "dns-domain.h"
20 #include "fd-util.h"
21 #include "fileio.h"
22 #include "hostname-util.h"
23 #include "io-util.h"
24 #include "missing_network.h"
25 #include "netlink-util.h"
26 #include "network-internal.h"
27 #include "ordered-set.h"
28 #include "parse-util.h"
29 #include "random-util.h"
30 #include "resolved-bus.h"
31 #include "resolved-conf.h"
32 #include "resolved-dns-stub.h"
33 #include "resolved-dnssd.h"
34 #include "resolved-etc-hosts.h"
35 #include "resolved-llmnr.h"
36 #include "resolved-manager.h"
37 #include "resolved-mdns.h"
38 #include "resolved-resolv-conf.h"
39 #include "resolved-varlink.h"
40 #include "socket-util.h"
41 #include "string-table.h"
42 #include "string-util.h"
43 #include "utf8.h"
44
45 #define SEND_TIMEOUT_USEC (200 * USEC_PER_MSEC)
46
47 static int manager_process_link(sd_netlink *rtnl, sd_netlink_message *mm, void *userdata) {
48 Manager *m = userdata;
49 uint16_t type;
50 Link *l;
51 int ifindex, r;
52
53 assert(rtnl);
54 assert(m);
55 assert(mm);
56
57 r = sd_netlink_message_get_type(mm, &type);
58 if (r < 0)
59 goto fail;
60
61 r = sd_rtnl_message_link_get_ifindex(mm, &ifindex);
62 if (r < 0)
63 goto fail;
64
65 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
66
67 switch (type) {
68
69 case RTM_NEWLINK:{
70 bool is_new = !l;
71
72 if (!l) {
73 r = link_new(m, &l, ifindex);
74 if (r < 0)
75 goto fail;
76 }
77
78 r = link_process_rtnl(l, mm);
79 if (r < 0)
80 goto fail;
81
82 r = link_update(l);
83 if (r < 0)
84 goto fail;
85
86 if (is_new)
87 log_debug("Found new link %i/%s", ifindex, l->ifname);
88
89 break;
90 }
91
92 case RTM_DELLINK:
93 if (l) {
94 log_debug("Removing link %i/%s", l->ifindex, l->ifname);
95 link_remove_user(l);
96 link_free(l);
97 }
98
99 break;
100 }
101
102 return 0;
103
104 fail:
105 log_warning_errno(r, "Failed to process RTNL link message: %m");
106 return 0;
107 }
108
109 static int manager_process_address(sd_netlink *rtnl, sd_netlink_message *mm, void *userdata) {
110 Manager *m = userdata;
111 union in_addr_union address;
112 uint16_t type;
113 int r, ifindex, family;
114 LinkAddress *a;
115 Link *l;
116
117 assert(rtnl);
118 assert(mm);
119 assert(m);
120
121 r = sd_netlink_message_get_type(mm, &type);
122 if (r < 0)
123 goto fail;
124
125 r = sd_rtnl_message_addr_get_ifindex(mm, &ifindex);
126 if (r < 0)
127 goto fail;
128
129 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
130 if (!l)
131 return 0;
132
133 r = sd_rtnl_message_addr_get_family(mm, &family);
134 if (r < 0)
135 goto fail;
136
137 switch (family) {
138
139 case AF_INET:
140 r = sd_netlink_message_read_in_addr(mm, IFA_LOCAL, &address.in);
141 if (r < 0) {
142 r = sd_netlink_message_read_in_addr(mm, IFA_ADDRESS, &address.in);
143 if (r < 0)
144 goto fail;
145 }
146
147 break;
148
149 case AF_INET6:
150 r = sd_netlink_message_read_in6_addr(mm, IFA_LOCAL, &address.in6);
151 if (r < 0) {
152 r = sd_netlink_message_read_in6_addr(mm, IFA_ADDRESS, &address.in6);
153 if (r < 0)
154 goto fail;
155 }
156
157 break;
158
159 default:
160 return 0;
161 }
162
163 a = link_find_address(l, family, &address);
164
165 switch (type) {
166
167 case RTM_NEWADDR:
168
169 if (!a) {
170 r = link_address_new(l, &a, family, &address);
171 if (r < 0)
172 return r;
173 }
174
175 r = link_address_update_rtnl(a, mm);
176 if (r < 0)
177 return r;
178
179 break;
180
181 case RTM_DELADDR:
182 link_address_free(a);
183 break;
184 }
185
186 return 0;
187
188 fail:
189 log_warning_errno(r, "Failed to process RTNL address message: %m");
190 return 0;
191 }
192
193 static int manager_rtnl_listen(Manager *m) {
194 _cleanup_(sd_netlink_message_unrefp) sd_netlink_message *req = NULL, *reply = NULL;
195 sd_netlink_message *i;
196 int r;
197
198 assert(m);
199
200 /* First, subscribe to interfaces coming and going */
201 r = sd_netlink_open(&m->rtnl);
202 if (r < 0)
203 return r;
204
205 r = sd_netlink_attach_event(m->rtnl, m->event, SD_EVENT_PRIORITY_IMPORTANT);
206 if (r < 0)
207 return r;
208
209 r = sd_netlink_add_match(m->rtnl, NULL, RTM_NEWLINK, manager_process_link, NULL, m, "resolve-NEWLINK");
210 if (r < 0)
211 return r;
212
213 r = sd_netlink_add_match(m->rtnl, NULL, RTM_DELLINK, manager_process_link, NULL, m, "resolve-DELLINK");
214 if (r < 0)
215 return r;
216
217 r = sd_netlink_add_match(m->rtnl, NULL, RTM_NEWADDR, manager_process_address, NULL, m, "resolve-NEWADDR");
218 if (r < 0)
219 return r;
220
221 r = sd_netlink_add_match(m->rtnl, NULL, RTM_DELADDR, manager_process_address, NULL, m, "resolve-DELADDR");
222 if (r < 0)
223 return r;
224
225 /* Then, enumerate all links */
226 r = sd_rtnl_message_new_link(m->rtnl, &req, RTM_GETLINK, 0);
227 if (r < 0)
228 return r;
229
230 r = sd_netlink_message_request_dump(req, true);
231 if (r < 0)
232 return r;
233
234 r = sd_netlink_call(m->rtnl, req, 0, &reply);
235 if (r < 0)
236 return r;
237
238 for (i = reply; i; i = sd_netlink_message_next(i)) {
239 r = manager_process_link(m->rtnl, i, m);
240 if (r < 0)
241 return r;
242 }
243
244 req = sd_netlink_message_unref(req);
245 reply = sd_netlink_message_unref(reply);
246
247 /* Finally, enumerate all addresses, too */
248 r = sd_rtnl_message_new_addr(m->rtnl, &req, RTM_GETADDR, 0, AF_UNSPEC);
249 if (r < 0)
250 return r;
251
252 r = sd_netlink_message_request_dump(req, true);
253 if (r < 0)
254 return r;
255
256 r = sd_netlink_call(m->rtnl, req, 0, &reply);
257 if (r < 0)
258 return r;
259
260 for (i = reply; i; i = sd_netlink_message_next(i)) {
261 r = manager_process_address(m->rtnl, i, m);
262 if (r < 0)
263 return r;
264 }
265
266 return r;
267 }
268
269 static int on_network_event(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
270 Manager *m = userdata;
271 Link *l;
272 int r;
273
274 assert(m);
275
276 sd_network_monitor_flush(m->network_monitor);
277
278 HASHMAP_FOREACH(l, m->links) {
279 r = link_update(l);
280 if (r < 0)
281 log_warning_errno(r, "Failed to update monitor information for %i: %m", l->ifindex);
282 }
283
284 (void) manager_write_resolv_conf(m);
285 (void) manager_send_changed(m, "DNS");
286
287 return 0;
288 }
289
290 static int manager_network_monitor_listen(Manager *m) {
291 int r, fd, events;
292
293 assert(m);
294
295 r = sd_network_monitor_new(&m->network_monitor, NULL);
296 if (r < 0)
297 return r;
298
299 fd = sd_network_monitor_get_fd(m->network_monitor);
300 if (fd < 0)
301 return fd;
302
303 events = sd_network_monitor_get_events(m->network_monitor);
304 if (events < 0)
305 return events;
306
307 r = sd_event_add_io(m->event, &m->network_event_source, fd, events, &on_network_event, m);
308 if (r < 0)
309 return r;
310
311 r = sd_event_source_set_priority(m->network_event_source, SD_EVENT_PRIORITY_IMPORTANT+5);
312 if (r < 0)
313 return r;
314
315 (void) sd_event_source_set_description(m->network_event_source, "network-monitor");
316
317 return 0;
318 }
319
320 static int determine_hostname(char **full_hostname, char **llmnr_hostname, char **mdns_hostname) {
321 _cleanup_free_ char *h = NULL, *n = NULL;
322 #if HAVE_LIBIDN2
323 _cleanup_free_ char *utf8 = NULL;
324 #elif HAVE_LIBIDN
325 int k;
326 #endif
327 char label[DNS_LABEL_MAX];
328 const char *p, *decoded;
329 int r;
330
331 assert(full_hostname);
332 assert(llmnr_hostname);
333 assert(mdns_hostname);
334
335 /* Extract and normalize the first label of the locally configured hostname, and check it's not "localhost". */
336
337 r = gethostname_strict(&h);
338 if (r < 0)
339 return log_debug_errno(r, "Can't determine system hostname: %m");
340
341 p = h;
342 r = dns_label_unescape(&p, label, sizeof label, 0);
343 if (r < 0)
344 return log_error_errno(r, "Failed to unescape hostname: %m");
345 if (r == 0)
346 return log_error_errno(SYNTHETIC_ERRNO(EINVAL),
347 "Couldn't find a single label in hostname.");
348
349 #if HAVE_LIBIDN2
350 r = idn2_to_unicode_8z8z(label, &utf8, 0);
351 if (r != IDN2_OK)
352 return log_error("Failed to undo IDNA: %s", idn2_strerror(r));
353 assert(utf8_is_valid(utf8));
354
355 r = strlen(utf8);
356 decoded = utf8;
357 #elif HAVE_LIBIDN
358 k = dns_label_undo_idna(label, r, label, sizeof label);
359 if (k < 0)
360 return log_error_errno(k, "Failed to undo IDNA: %m");
361 if (k > 0)
362 r = k;
363
364 if (!utf8_is_valid(label))
365 return log_error_errno(SYNTHETIC_ERRNO(EINVAL),
366 "System hostname is not UTF-8 clean.");
367 decoded = label;
368 #else
369 decoded = label; /* no decoding */
370 #endif
371
372 r = dns_label_escape_new(decoded, r, &n);
373 if (r < 0)
374 return log_error_errno(r, "Failed to escape hostname: %m");
375
376 if (is_localhost(n))
377 return log_debug_errno(SYNTHETIC_ERRNO(EINVAL),
378 "System hostname is 'localhost', ignoring.");
379
380 r = dns_name_concat(n, "local", 0, mdns_hostname);
381 if (r < 0)
382 return log_error_errno(r, "Failed to determine mDNS hostname: %m");
383
384 *llmnr_hostname = TAKE_PTR(n);
385 *full_hostname = TAKE_PTR(h);
386
387 return 0;
388 }
389
390 static const char *fallback_hostname(void) {
391
392 /* Determine the fall back hostname. For exposing this system to the outside world, we cannot have it to be
393 * "localhost" even if that's the compiled in hostname. In this case, let's revert to "linux" instead. */
394
395 if (is_localhost(FALLBACK_HOSTNAME))
396 return "linux";
397
398 return FALLBACK_HOSTNAME;
399 }
400
401 static int make_fallback_hostnames(char **full_hostname, char **llmnr_hostname, char **mdns_hostname) {
402 _cleanup_free_ char *n = NULL, *m = NULL;
403 char label[DNS_LABEL_MAX], *h;
404 const char *p;
405 int r;
406
407 assert(full_hostname);
408 assert(llmnr_hostname);
409 assert(mdns_hostname);
410
411 p = fallback_hostname();
412 r = dns_label_unescape(&p, label, sizeof label, 0);
413 if (r < 0)
414 return log_error_errno(r, "Failed to unescape fallback hostname: %m");
415
416 assert(r > 0); /* The fallback hostname must have at least one label */
417
418 r = dns_label_escape_new(label, r, &n);
419 if (r < 0)
420 return log_error_errno(r, "Failed to escape fallback hostname: %m");
421
422 r = dns_name_concat(n, "local", 0, &m);
423 if (r < 0)
424 return log_error_errno(r, "Failed to concatenate mDNS hostname: %m");
425
426 h = strdup(fallback_hostname());
427 if (!h)
428 return log_oom();
429
430 *llmnr_hostname = TAKE_PTR(n);
431 *mdns_hostname = TAKE_PTR(m);
432
433 *full_hostname = h;
434
435 return 0;
436 }
437
438 static int on_hostname_change(sd_event_source *es, int fd, uint32_t revents, void *userdata) {
439 _cleanup_free_ char *full_hostname = NULL, *llmnr_hostname = NULL, *mdns_hostname = NULL;
440 Manager *m = userdata;
441 bool llmnr_hostname_changed;
442 int r;
443
444 assert(m);
445
446 r = determine_hostname(&full_hostname, &llmnr_hostname, &mdns_hostname);
447 if (r < 0)
448 return 0; /* ignore invalid hostnames */
449
450 llmnr_hostname_changed = !streq(llmnr_hostname, m->llmnr_hostname);
451 if (streq(full_hostname, m->full_hostname) &&
452 !llmnr_hostname_changed &&
453 streq(mdns_hostname, m->mdns_hostname))
454 return 0;
455
456 log_info("System hostname changed to '%s'.", full_hostname);
457
458 free_and_replace(m->full_hostname, full_hostname);
459 free_and_replace(m->llmnr_hostname, llmnr_hostname);
460 free_and_replace(m->mdns_hostname, mdns_hostname);
461
462 manager_refresh_rrs(m);
463 (void) manager_send_changed(m, "LLMNRHostname");
464
465 return 0;
466 }
467
468 static int manager_watch_hostname(Manager *m) {
469 int r;
470
471 assert(m);
472
473 m->hostname_fd = open("/proc/sys/kernel/hostname",
474 O_RDONLY|O_CLOEXEC|O_NONBLOCK|O_NOCTTY);
475 if (m->hostname_fd < 0) {
476 log_warning_errno(errno, "Failed to watch hostname: %m");
477 return 0;
478 }
479
480 r = sd_event_add_io(m->event, &m->hostname_event_source, m->hostname_fd, 0, on_hostname_change, m);
481 if (r < 0) {
482 if (r == -EPERM)
483 /* kernels prior to 3.2 don't support polling this file. Ignore the failure. */
484 m->hostname_fd = safe_close(m->hostname_fd);
485 else
486 return log_error_errno(r, "Failed to add hostname event source: %m");
487 }
488
489 (void) sd_event_source_set_description(m->hostname_event_source, "hostname");
490
491 r = determine_hostname(&m->full_hostname, &m->llmnr_hostname, &m->mdns_hostname);
492 if (r < 0) {
493 log_info("Defaulting to hostname '%s'.", fallback_hostname());
494
495 r = make_fallback_hostnames(&m->full_hostname, &m->llmnr_hostname, &m->mdns_hostname);
496 if (r < 0)
497 return r;
498 } else
499 log_info("Using system hostname '%s'.", m->full_hostname);
500
501 return 0;
502 }
503
504 static int manager_sigusr1(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
505 _cleanup_free_ char *buffer = NULL;
506 _cleanup_fclose_ FILE *f = NULL;
507 Manager *m = userdata;
508 DnsServer *server;
509 size_t size = 0;
510 DnsScope *scope;
511 Link *l;
512
513 assert(s);
514 assert(si);
515 assert(m);
516
517 f = open_memstream_unlocked(&buffer, &size);
518 if (!f)
519 return log_oom();
520
521 LIST_FOREACH(scopes, scope, m->dns_scopes)
522 dns_scope_dump(scope, f);
523
524 LIST_FOREACH(servers, server, m->dns_servers)
525 dns_server_dump(server, f);
526 LIST_FOREACH(servers, server, m->fallback_dns_servers)
527 dns_server_dump(server, f);
528 HASHMAP_FOREACH(l, m->links)
529 LIST_FOREACH(servers, server, l->dns_servers)
530 dns_server_dump(server, f);
531
532 if (fflush_and_check(f) < 0)
533 return log_oom();
534
535 log_dump(LOG_INFO, buffer);
536 return 0;
537 }
538
539 static int manager_sigusr2(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
540 Manager *m = userdata;
541
542 assert(s);
543 assert(si);
544 assert(m);
545
546 manager_flush_caches(m);
547
548 return 0;
549 }
550
551 static int manager_sigrtmin1(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
552 Manager *m = userdata;
553
554 assert(s);
555 assert(si);
556 assert(m);
557
558 manager_reset_server_features(m);
559 return 0;
560 }
561
562 int manager_new(Manager **ret) {
563 _cleanup_(manager_freep) Manager *m = NULL;
564 int r;
565
566 assert(ret);
567
568 m = new(Manager, 1);
569 if (!m)
570 return -ENOMEM;
571
572 *m = (Manager) {
573 .llmnr_ipv4_udp_fd = -1,
574 .llmnr_ipv6_udp_fd = -1,
575 .llmnr_ipv4_tcp_fd = -1,
576 .llmnr_ipv6_tcp_fd = -1,
577 .mdns_ipv4_fd = -1,
578 .mdns_ipv6_fd = -1,
579 .hostname_fd = -1,
580
581 .llmnr_support = DEFAULT_LLMNR_MODE,
582 .mdns_support = DEFAULT_MDNS_MODE,
583 .dnssec_mode = DEFAULT_DNSSEC_MODE,
584 .dns_over_tls_mode = DEFAULT_DNS_OVER_TLS_MODE,
585 .enable_cache = DNS_CACHE_MODE_YES,
586 .dns_stub_listener_mode = DNS_STUB_LISTENER_YES,
587 .read_resolv_conf = true,
588 .need_builtin_fallbacks = true,
589 .etc_hosts_last = USEC_INFINITY,
590 .etc_hosts_mtime = USEC_INFINITY,
591 .etc_hosts_ino = 0,
592 .etc_hosts_dev = 0,
593 .read_etc_hosts = true,
594 };
595
596 r = dns_trust_anchor_load(&m->trust_anchor);
597 if (r < 0)
598 return r;
599
600 r = manager_parse_config_file(m);
601 if (r < 0)
602 log_warning_errno(r, "Failed to parse configuration file: %m");
603
604 #if ENABLE_DNS_OVER_TLS
605 r = dnstls_manager_init(m);
606 if (r < 0)
607 return r;
608 #endif
609
610 r = sd_event_default(&m->event);
611 if (r < 0)
612 return r;
613
614 (void) sd_event_add_signal(m->event, NULL, SIGTERM, NULL, NULL);
615 (void) sd_event_add_signal(m->event, NULL, SIGINT, NULL, NULL);
616
617 (void) sd_event_set_watchdog(m->event, true);
618
619 r = manager_watch_hostname(m);
620 if (r < 0)
621 return r;
622
623 r = dnssd_load(m);
624 if (r < 0)
625 log_warning_errno(r, "Failed to load DNS-SD configuration files: %m");
626
627 r = dns_scope_new(m, &m->unicast_scope, NULL, DNS_PROTOCOL_DNS, AF_UNSPEC);
628 if (r < 0)
629 return r;
630
631 r = manager_network_monitor_listen(m);
632 if (r < 0)
633 return r;
634
635 r = manager_rtnl_listen(m);
636 if (r < 0)
637 return r;
638
639 r = manager_connect_bus(m);
640 if (r < 0)
641 return r;
642
643 (void) sd_event_add_signal(m->event, &m->sigusr1_event_source, SIGUSR1, manager_sigusr1, m);
644 (void) sd_event_add_signal(m->event, &m->sigusr2_event_source, SIGUSR2, manager_sigusr2, m);
645 (void) sd_event_add_signal(m->event, &m->sigrtmin1_event_source, SIGRTMIN+1, manager_sigrtmin1, m);
646
647 manager_cleanup_saved_user(m);
648
649 *ret = TAKE_PTR(m);
650
651 return 0;
652 }
653
654 int manager_start(Manager *m) {
655 int r;
656
657 assert(m);
658
659 r = manager_dns_stub_start(m);
660 if (r < 0)
661 return r;
662
663 r = manager_varlink_init(m);
664 if (r < 0)
665 return r;
666
667 return 0;
668 }
669
670 Manager *manager_free(Manager *m) {
671 Link *l;
672 DnssdService *s;
673
674 if (!m)
675 return NULL;
676
677 dns_server_unlink_all(m->dns_servers);
678 dns_server_unlink_all(m->fallback_dns_servers);
679 dns_search_domain_unlink_all(m->search_domains);
680
681 while ((l = hashmap_first(m->links)))
682 link_free(l);
683
684 while (m->dns_queries)
685 dns_query_free(m->dns_queries);
686
687 dns_scope_free(m->unicast_scope);
688
689 /* At this point only orphaned streams should remain. All others should have been freed already by their
690 * owners */
691 while (m->dns_streams)
692 dns_stream_unref(m->dns_streams);
693
694 #if ENABLE_DNS_OVER_TLS
695 dnstls_manager_free(m);
696 #endif
697
698 hashmap_free(m->links);
699 hashmap_free(m->dns_transactions);
700
701 sd_event_source_unref(m->network_event_source);
702 sd_network_monitor_unref(m->network_monitor);
703
704 sd_netlink_unref(m->rtnl);
705 sd_event_source_unref(m->rtnl_event_source);
706
707 manager_llmnr_stop(m);
708 manager_mdns_stop(m);
709 manager_dns_stub_stop(m);
710 manager_varlink_done(m);
711
712 ordered_set_free(m->dns_extra_stub_listeners);
713
714 bus_verify_polkit_async_registry_free(m->polkit_registry);
715
716 sd_bus_flush_close_unref(m->bus);
717
718 sd_event_source_unref(m->sigusr1_event_source);
719 sd_event_source_unref(m->sigusr2_event_source);
720 sd_event_source_unref(m->sigrtmin1_event_source);
721
722 sd_event_unref(m->event);
723
724 dns_resource_key_unref(m->llmnr_host_ipv4_key);
725 dns_resource_key_unref(m->llmnr_host_ipv6_key);
726 dns_resource_key_unref(m->mdns_host_ipv4_key);
727 dns_resource_key_unref(m->mdns_host_ipv6_key);
728
729 sd_event_source_unref(m->hostname_event_source);
730 safe_close(m->hostname_fd);
731
732 free(m->full_hostname);
733 free(m->llmnr_hostname);
734 free(m->mdns_hostname);
735
736 while ((s = hashmap_first(m->dnssd_services)))
737 dnssd_service_free(s);
738 hashmap_free(m->dnssd_services);
739
740 dns_trust_anchor_flush(&m->trust_anchor);
741 manager_etc_hosts_flush(m);
742
743 return mfree(m);
744 }
745
746 int manager_recv(Manager *m, int fd, DnsProtocol protocol, DnsPacket **ret) {
747 _cleanup_(dns_packet_unrefp) DnsPacket *p = NULL;
748 CMSG_BUFFER_TYPE(CMSG_SPACE(MAXSIZE(struct in_pktinfo, struct in6_pktinfo))
749 + CMSG_SPACE(int) /* ttl/hoplimit */
750 + EXTRA_CMSG_SPACE /* kernel appears to require extra buffer space */) control;
751 union sockaddr_union sa;
752 struct iovec iov;
753 struct msghdr mh = {
754 .msg_name = &sa.sa,
755 .msg_namelen = sizeof(sa),
756 .msg_iov = &iov,
757 .msg_iovlen = 1,
758 .msg_control = &control,
759 .msg_controllen = sizeof(control),
760 };
761 struct cmsghdr *cmsg;
762 ssize_t ms, l;
763 int r;
764
765 assert(m);
766 assert(fd >= 0);
767 assert(ret);
768
769 ms = next_datagram_size_fd(fd);
770 if (ms < 0)
771 return ms;
772
773 r = dns_packet_new(&p, protocol, ms, DNS_PACKET_SIZE_MAX);
774 if (r < 0)
775 return r;
776
777 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->allocated);
778
779 l = recvmsg_safe(fd, &mh, 0);
780 if (IN_SET(l, -EAGAIN, -EINTR))
781 return 0;
782 if (l < 0)
783 return l;
784 if (l == 0)
785 return 0;
786
787 assert(!(mh.msg_flags & MSG_TRUNC));
788
789 p->size = (size_t) l;
790
791 p->fd = fd;
792 p->family = sa.sa.sa_family;
793 p->ipproto = IPPROTO_UDP;
794 if (p->family == AF_INET) {
795 p->sender.in = sa.in.sin_addr;
796 p->sender_port = be16toh(sa.in.sin_port);
797 } else if (p->family == AF_INET6) {
798 p->sender.in6 = sa.in6.sin6_addr;
799 p->sender_port = be16toh(sa.in6.sin6_port);
800 p->ifindex = sa.in6.sin6_scope_id;
801 } else
802 return -EAFNOSUPPORT;
803
804 CMSG_FOREACH(cmsg, &mh) {
805
806 if (cmsg->cmsg_level == IPPROTO_IPV6) {
807 assert(p->family == AF_INET6);
808
809 switch (cmsg->cmsg_type) {
810
811 case IPV6_PKTINFO: {
812 struct in6_pktinfo *i = (struct in6_pktinfo*) CMSG_DATA(cmsg);
813
814 if (p->ifindex <= 0)
815 p->ifindex = i->ipi6_ifindex;
816
817 p->destination.in6 = i->ipi6_addr;
818 break;
819 }
820
821 case IPV6_HOPLIMIT:
822 p->ttl = *(int *) CMSG_DATA(cmsg);
823 break;
824
825 }
826 } else if (cmsg->cmsg_level == IPPROTO_IP) {
827 assert(p->family == AF_INET);
828
829 switch (cmsg->cmsg_type) {
830
831 case IP_PKTINFO: {
832 struct in_pktinfo *i = (struct in_pktinfo*) CMSG_DATA(cmsg);
833
834 if (p->ifindex <= 0)
835 p->ifindex = i->ipi_ifindex;
836
837 p->destination.in = i->ipi_addr;
838 break;
839 }
840
841 case IP_TTL:
842 p->ttl = *(int *) CMSG_DATA(cmsg);
843 break;
844 }
845 }
846 }
847
848 /* The Linux kernel sets the interface index to the loopback
849 * device if the packet came from the local host since it
850 * avoids the routing table in such a case. Let's unset the
851 * interface index in such a case. */
852 if (p->ifindex == LOOPBACK_IFINDEX)
853 p->ifindex = 0;
854
855 if (protocol != DNS_PROTOCOL_DNS) {
856 /* If we don't know the interface index still, we look for the
857 * first local interface with a matching address. Yuck! */
858 if (p->ifindex <= 0)
859 p->ifindex = manager_find_ifindex(m, p->family, &p->destination);
860 }
861
862 *ret = TAKE_PTR(p);
863
864 return 1;
865 }
866
867 static int sendmsg_loop(int fd, struct msghdr *mh, int flags) {
868 int r;
869
870 assert(fd >= 0);
871 assert(mh);
872
873 for (;;) {
874 if (sendmsg(fd, mh, flags) >= 0)
875 return 0;
876
877 if (errno == EINTR)
878 continue;
879
880 if (errno != EAGAIN)
881 return -errno;
882
883 r = fd_wait_for_event(fd, POLLOUT, SEND_TIMEOUT_USEC);
884 if (r < 0)
885 return r;
886 if (r == 0)
887 return -ETIMEDOUT;
888 }
889 }
890
891 static int write_loop(int fd, void *message, size_t length) {
892 int r;
893
894 assert(fd >= 0);
895 assert(message);
896
897 for (;;) {
898 if (write(fd, message, length) >= 0)
899 return 0;
900
901 if (errno == EINTR)
902 continue;
903
904 if (errno != EAGAIN)
905 return -errno;
906
907 r = fd_wait_for_event(fd, POLLOUT, SEND_TIMEOUT_USEC);
908 if (r < 0)
909 return r;
910 if (r == 0)
911 return -ETIMEDOUT;
912 }
913 }
914
915 int manager_write(Manager *m, int fd, DnsPacket *p) {
916 int r;
917
918 log_debug("Sending %s packet with id %" PRIu16 ".", DNS_PACKET_QR(p) ? "response" : "query", DNS_PACKET_ID(p));
919
920 r = write_loop(fd, DNS_PACKET_DATA(p), p->size);
921 if (r < 0)
922 return r;
923
924 return 0;
925 }
926
927 static int manager_ipv4_send(
928 Manager *m,
929 int fd,
930 int ifindex,
931 const struct in_addr *destination,
932 uint16_t port,
933 const struct in_addr *source,
934 DnsPacket *p) {
935
936 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct in_pktinfo))) control = {};
937 union sockaddr_union sa;
938 struct iovec iov;
939 struct msghdr mh = {
940 .msg_iov = &iov,
941 .msg_iovlen = 1,
942 .msg_name = &sa.sa,
943 .msg_namelen = sizeof(sa.in),
944 };
945
946 assert(m);
947 assert(fd >= 0);
948 assert(destination);
949 assert(port > 0);
950 assert(p);
951
952 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->size);
953
954 sa = (union sockaddr_union) {
955 .in.sin_family = AF_INET,
956 .in.sin_addr = *destination,
957 .in.sin_port = htobe16(port),
958 };
959
960 if (ifindex > 0) {
961 struct cmsghdr *cmsg;
962 struct in_pktinfo *pi;
963
964 mh.msg_control = &control;
965 mh.msg_controllen = sizeof(control);
966
967 cmsg = CMSG_FIRSTHDR(&mh);
968 cmsg->cmsg_len = CMSG_LEN(sizeof(struct in_pktinfo));
969 cmsg->cmsg_level = IPPROTO_IP;
970 cmsg->cmsg_type = IP_PKTINFO;
971
972 pi = (struct in_pktinfo*) CMSG_DATA(cmsg);
973 pi->ipi_ifindex = ifindex;
974
975 if (source)
976 pi->ipi_spec_dst = *source;
977 }
978
979 return sendmsg_loop(fd, &mh, 0);
980 }
981
982 static int manager_ipv6_send(
983 Manager *m,
984 int fd,
985 int ifindex,
986 const struct in6_addr *destination,
987 uint16_t port,
988 const struct in6_addr *source,
989 DnsPacket *p) {
990
991 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct in6_pktinfo))) control = {};
992 union sockaddr_union sa;
993 struct iovec iov;
994 struct msghdr mh = {
995 .msg_iov = &iov,
996 .msg_iovlen = 1,
997 .msg_name = &sa.sa,
998 .msg_namelen = sizeof(sa.in6),
999 };
1000
1001 assert(m);
1002 assert(fd >= 0);
1003 assert(destination);
1004 assert(port > 0);
1005 assert(p);
1006
1007 iov = IOVEC_MAKE(DNS_PACKET_DATA(p), p->size);
1008
1009 sa = (union sockaddr_union) {
1010 .in6.sin6_family = AF_INET6,
1011 .in6.sin6_addr = *destination,
1012 .in6.sin6_port = htobe16(port),
1013 .in6.sin6_scope_id = ifindex,
1014 };
1015
1016 if (ifindex > 0) {
1017 struct cmsghdr *cmsg;
1018 struct in6_pktinfo *pi;
1019
1020 mh.msg_control = &control;
1021 mh.msg_controllen = sizeof(control);
1022
1023 cmsg = CMSG_FIRSTHDR(&mh);
1024 cmsg->cmsg_len = CMSG_LEN(sizeof(struct in6_pktinfo));
1025 cmsg->cmsg_level = IPPROTO_IPV6;
1026 cmsg->cmsg_type = IPV6_PKTINFO;
1027
1028 pi = (struct in6_pktinfo*) CMSG_DATA(cmsg);
1029 pi->ipi6_ifindex = ifindex;
1030
1031 if (source)
1032 pi->ipi6_addr = *source;
1033 }
1034
1035 return sendmsg_loop(fd, &mh, 0);
1036 }
1037
1038 int manager_send(
1039 Manager *m,
1040 int fd,
1041 int ifindex,
1042 int family,
1043 const union in_addr_union *destination,
1044 uint16_t port,
1045 const union in_addr_union *source,
1046 DnsPacket *p) {
1047
1048 assert(m);
1049 assert(fd >= 0);
1050 assert(destination);
1051 assert(port > 0);
1052 assert(p);
1053
1054 log_debug("Sending %s packet with id %" PRIu16 " on interface %i/%s.", DNS_PACKET_QR(p) ? "response" : "query", DNS_PACKET_ID(p), ifindex, af_to_name(family));
1055
1056 if (family == AF_INET)
1057 return manager_ipv4_send(m, fd, ifindex, &destination->in, port, source ? &source->in : NULL, p);
1058 if (family == AF_INET6)
1059 return manager_ipv6_send(m, fd, ifindex, &destination->in6, port, source ? &source->in6 : NULL, p);
1060
1061 return -EAFNOSUPPORT;
1062 }
1063
1064 uint32_t manager_find_mtu(Manager *m) {
1065 uint32_t mtu = 0;
1066 Link *l;
1067
1068 /* If we don't know on which link a DNS packet would be
1069 * delivered, let's find the largest MTU that works on all
1070 * interfaces we know of */
1071
1072 HASHMAP_FOREACH(l, m->links) {
1073 if (l->mtu <= 0)
1074 continue;
1075
1076 if (mtu <= 0 || l->mtu < mtu)
1077 mtu = l->mtu;
1078 }
1079
1080 return mtu;
1081 }
1082
1083 int manager_find_ifindex(Manager *m, int family, const union in_addr_union *in_addr) {
1084 LinkAddress *a;
1085
1086 assert(m);
1087
1088 a = manager_find_link_address(m, family, in_addr);
1089 if (a)
1090 return a->link->ifindex;
1091
1092 return 0;
1093 }
1094
1095 void manager_refresh_rrs(Manager *m) {
1096 Link *l;
1097 DnssdService *s;
1098
1099 assert(m);
1100
1101 m->llmnr_host_ipv4_key = dns_resource_key_unref(m->llmnr_host_ipv4_key);
1102 m->llmnr_host_ipv6_key = dns_resource_key_unref(m->llmnr_host_ipv6_key);
1103 m->mdns_host_ipv4_key = dns_resource_key_unref(m->mdns_host_ipv4_key);
1104 m->mdns_host_ipv6_key = dns_resource_key_unref(m->mdns_host_ipv6_key);
1105
1106 if (m->mdns_support == RESOLVE_SUPPORT_YES)
1107 HASHMAP_FOREACH(s, m->dnssd_services)
1108 if (dnssd_update_rrs(s) < 0)
1109 log_warning("Failed to refresh DNS-SD service '%s'", s->name);
1110
1111 HASHMAP_FOREACH(l, m->links) {
1112 link_add_rrs(l, true);
1113 link_add_rrs(l, false);
1114 }
1115 }
1116
1117 static int manager_next_random_name(const char *old, char **ret_new) {
1118 const char *p;
1119 uint64_t u, a;
1120 char *n;
1121
1122 p = strchr(old, 0);
1123 assert(p);
1124
1125 while (p > old) {
1126 if (!strchr(DIGITS, p[-1]))
1127 break;
1128
1129 p--;
1130 }
1131
1132 if (*p == 0 || safe_atou64(p, &u) < 0 || u <= 0)
1133 u = 1;
1134
1135 /* Add a random number to the old value. This way we can avoid
1136 * that two hosts pick the same hostname, win on IPv4 and lose
1137 * on IPv6 (or vice versa), and pick the same hostname
1138 * replacement hostname, ad infinitum. We still want the
1139 * numbers to go up monotonically, hence we just add a random
1140 * value 1..10 */
1141
1142 random_bytes(&a, sizeof(a));
1143 u += 1 + a % 10;
1144
1145 if (asprintf(&n, "%.*s%" PRIu64, (int) (p - old), old, u) < 0)
1146 return -ENOMEM;
1147
1148 *ret_new = n;
1149
1150 return 0;
1151 }
1152
1153 int manager_next_hostname(Manager *m) {
1154 _cleanup_free_ char *h = NULL, *k = NULL;
1155 int r;
1156
1157 assert(m);
1158
1159 r = manager_next_random_name(m->llmnr_hostname, &h);
1160 if (r < 0)
1161 return r;
1162
1163 r = dns_name_concat(h, "local", 0, &k);
1164 if (r < 0)
1165 return r;
1166
1167 log_info("Hostname conflict, changing published hostname from '%s' to '%s'.", m->llmnr_hostname, h);
1168
1169 free_and_replace(m->llmnr_hostname, h);
1170 free_and_replace(m->mdns_hostname, k);
1171
1172 manager_refresh_rrs(m);
1173 (void) manager_send_changed(m, "LLMNRHostname");
1174
1175 return 0;
1176 }
1177
1178 LinkAddress* manager_find_link_address(Manager *m, int family, const union in_addr_union *in_addr) {
1179 Link *l;
1180
1181 assert(m);
1182
1183 HASHMAP_FOREACH(l, m->links) {
1184 LinkAddress *a;
1185
1186 a = link_find_address(l, family, in_addr);
1187 if (a)
1188 return a;
1189 }
1190
1191 return NULL;
1192 }
1193
1194 bool manager_our_packet(Manager *m, DnsPacket *p) {
1195 assert(m);
1196 assert(p);
1197
1198 return !!manager_find_link_address(m, p->family, &p->sender);
1199 }
1200
1201 DnsScope* manager_find_scope(Manager *m, DnsPacket *p) {
1202 Link *l;
1203
1204 assert(m);
1205 assert(p);
1206
1207 l = hashmap_get(m->links, INT_TO_PTR(p->ifindex));
1208 if (!l)
1209 return NULL;
1210
1211 switch (p->protocol) {
1212 case DNS_PROTOCOL_LLMNR:
1213 if (p->family == AF_INET)
1214 return l->llmnr_ipv4_scope;
1215 else if (p->family == AF_INET6)
1216 return l->llmnr_ipv6_scope;
1217
1218 break;
1219
1220 case DNS_PROTOCOL_MDNS:
1221 if (p->family == AF_INET)
1222 return l->mdns_ipv4_scope;
1223 else if (p->family == AF_INET6)
1224 return l->mdns_ipv6_scope;
1225
1226 break;
1227
1228 default:
1229 break;
1230 }
1231
1232 return NULL;
1233 }
1234
1235 void manager_verify_all(Manager *m) {
1236 DnsScope *s;
1237
1238 assert(m);
1239
1240 LIST_FOREACH(scopes, s, m->dns_scopes)
1241 dns_zone_verify_all(&s->zone);
1242 }
1243
1244 int manager_is_own_hostname(Manager *m, const char *name) {
1245 int r;
1246
1247 assert(m);
1248 assert(name);
1249
1250 if (m->llmnr_hostname) {
1251 r = dns_name_equal(name, m->llmnr_hostname);
1252 if (r != 0)
1253 return r;
1254 }
1255
1256 if (m->mdns_hostname) {
1257 r = dns_name_equal(name, m->mdns_hostname);
1258 if (r != 0)
1259 return r;
1260 }
1261
1262 if (m->full_hostname)
1263 return dns_name_equal(name, m->full_hostname);
1264
1265 return 0;
1266 }
1267
1268 int manager_compile_dns_servers(Manager *m, OrderedSet **dns) {
1269 DnsServer *s;
1270 Link *l;
1271 int r;
1272
1273 assert(m);
1274 assert(dns);
1275
1276 r = ordered_set_ensure_allocated(dns, &dns_server_hash_ops);
1277 if (r < 0)
1278 return r;
1279
1280 /* First add the system-wide servers and domains */
1281 LIST_FOREACH(servers, s, m->dns_servers) {
1282 r = ordered_set_put(*dns, s);
1283 if (r == -EEXIST)
1284 continue;
1285 if (r < 0)
1286 return r;
1287 }
1288
1289 /* Then, add the per-link servers */
1290 HASHMAP_FOREACH(l, m->links) {
1291 LIST_FOREACH(servers, s, l->dns_servers) {
1292 r = ordered_set_put(*dns, s);
1293 if (r == -EEXIST)
1294 continue;
1295 if (r < 0)
1296 return r;
1297 }
1298 }
1299
1300 /* If we found nothing, add the fallback servers */
1301 if (ordered_set_isempty(*dns)) {
1302 LIST_FOREACH(servers, s, m->fallback_dns_servers) {
1303 r = ordered_set_put(*dns, s);
1304 if (r == -EEXIST)
1305 continue;
1306 if (r < 0)
1307 return r;
1308 }
1309 }
1310
1311 return 0;
1312 }
1313
1314 /* filter_route is a tri-state:
1315 * < 0: no filtering
1316 * = 0 or false: return only domains which should be used for searching
1317 * > 0 or true: return only domains which are for routing only
1318 */
1319 int manager_compile_search_domains(Manager *m, OrderedSet **domains, int filter_route) {
1320 DnsSearchDomain *d;
1321 Link *l;
1322 int r;
1323
1324 assert(m);
1325 assert(domains);
1326
1327 r = ordered_set_ensure_allocated(domains, &dns_name_hash_ops);
1328 if (r < 0)
1329 return r;
1330
1331 LIST_FOREACH(domains, d, m->search_domains) {
1332
1333 if (filter_route >= 0 &&
1334 d->route_only != !!filter_route)
1335 continue;
1336
1337 r = ordered_set_put(*domains, d->name);
1338 if (r == -EEXIST)
1339 continue;
1340 if (r < 0)
1341 return r;
1342 }
1343
1344 HASHMAP_FOREACH(l, m->links) {
1345
1346 LIST_FOREACH(domains, d, l->search_domains) {
1347
1348 if (filter_route >= 0 &&
1349 d->route_only != !!filter_route)
1350 continue;
1351
1352 r = ordered_set_put(*domains, d->name);
1353 if (r == -EEXIST)
1354 continue;
1355 if (r < 0)
1356 return r;
1357 }
1358 }
1359
1360 return 0;
1361 }
1362
1363 DnssecMode manager_get_dnssec_mode(Manager *m) {
1364 assert(m);
1365
1366 if (m->dnssec_mode != _DNSSEC_MODE_INVALID)
1367 return m->dnssec_mode;
1368
1369 return DNSSEC_NO;
1370 }
1371
1372 bool manager_dnssec_supported(Manager *m) {
1373 DnsServer *server;
1374 Link *l;
1375
1376 assert(m);
1377
1378 if (manager_get_dnssec_mode(m) == DNSSEC_NO)
1379 return false;
1380
1381 server = manager_get_dns_server(m);
1382 if (server && !dns_server_dnssec_supported(server))
1383 return false;
1384
1385 HASHMAP_FOREACH(l, m->links)
1386 if (!link_dnssec_supported(l))
1387 return false;
1388
1389 return true;
1390 }
1391
1392 DnsOverTlsMode manager_get_dns_over_tls_mode(Manager *m) {
1393 assert(m);
1394
1395 if (m->dns_over_tls_mode != _DNS_OVER_TLS_MODE_INVALID)
1396 return m->dns_over_tls_mode;
1397
1398 return DNS_OVER_TLS_NO;
1399 }
1400
1401 void manager_dnssec_verdict(Manager *m, DnssecVerdict verdict, const DnsResourceKey *key) {
1402
1403 assert(verdict >= 0);
1404 assert(verdict < _DNSSEC_VERDICT_MAX);
1405
1406 if (DEBUG_LOGGING) {
1407 char s[DNS_RESOURCE_KEY_STRING_MAX];
1408
1409 log_debug("Found verdict for lookup %s: %s",
1410 dns_resource_key_to_string(key, s, sizeof s),
1411 dnssec_verdict_to_string(verdict));
1412 }
1413
1414 m->n_dnssec_verdict[verdict]++;
1415 }
1416
1417 bool manager_routable(Manager *m, int family) {
1418 Link *l;
1419
1420 assert(m);
1421
1422 /* Returns true if the host has at least one interface with a routable address of the specified type */
1423
1424 HASHMAP_FOREACH(l, m->links)
1425 if (link_relevant(l, family, false))
1426 return true;
1427
1428 return false;
1429 }
1430
1431 void manager_flush_caches(Manager *m) {
1432 DnsScope *scope;
1433
1434 assert(m);
1435
1436 LIST_FOREACH(scopes, scope, m->dns_scopes)
1437 dns_cache_flush(&scope->cache);
1438
1439 log_info("Flushed all caches.");
1440 }
1441
1442 void manager_reset_server_features(Manager *m) {
1443 Link *l;
1444
1445 dns_server_reset_features_all(m->dns_servers);
1446 dns_server_reset_features_all(m->fallback_dns_servers);
1447
1448 HASHMAP_FOREACH(l, m->links)
1449 dns_server_reset_features_all(l->dns_servers);
1450
1451 log_info("Resetting learnt feature levels on all servers.");
1452 }
1453
1454 void manager_cleanup_saved_user(Manager *m) {
1455 _cleanup_closedir_ DIR *d = NULL;
1456 struct dirent *de;
1457
1458 assert(m);
1459
1460 /* Clean up all saved per-link files in /run/systemd/resolve/netif/ that don't have a matching interface
1461 * anymore. These files are created to persist settings pushed in by the user via the bus, so that resolved can
1462 * be restarted without losing this data. */
1463
1464 d = opendir("/run/systemd/resolve/netif/");
1465 if (!d) {
1466 if (errno == ENOENT)
1467 return;
1468
1469 log_warning_errno(errno, "Failed to open interface directory: %m");
1470 return;
1471 }
1472
1473 FOREACH_DIRENT_ALL(de, d, log_error_errno(errno, "Failed to read interface directory: %m")) {
1474 _cleanup_free_ char *p = NULL;
1475 int ifindex;
1476 Link *l;
1477
1478 if (!IN_SET(de->d_type, DT_UNKNOWN, DT_REG))
1479 continue;
1480
1481 if (dot_or_dot_dot(de->d_name))
1482 continue;
1483
1484 ifindex = parse_ifindex(de->d_name);
1485 if (ifindex < 0) /* Probably some temporary file from a previous run. Delete it */
1486 goto rm;
1487
1488 l = hashmap_get(m->links, INT_TO_PTR(ifindex));
1489 if (!l) /* link vanished */
1490 goto rm;
1491
1492 if (l->is_managed) /* now managed by networkd, hence the bus settings are useless */
1493 goto rm;
1494
1495 continue;
1496
1497 rm:
1498 p = path_join("/run/systemd/resolve/netif", de->d_name);
1499 if (!p) {
1500 log_oom();
1501 return;
1502 }
1503
1504 (void) unlink(p);
1505 }
1506 }
1507
1508 bool manager_next_dnssd_names(Manager *m) {
1509 DnssdService *s;
1510 bool tried = false;
1511 int r;
1512
1513 assert(m);
1514
1515 HASHMAP_FOREACH(s, m->dnssd_services) {
1516 _cleanup_free_ char * new_name = NULL;
1517
1518 if (!s->withdrawn)
1519 continue;
1520
1521 r = manager_next_random_name(s->name_template, &new_name);
1522 if (r < 0) {
1523 log_warning_errno(r, "Failed to get new name for service '%s': %m", s->name);
1524 continue;
1525 }
1526
1527 free_and_replace(s->name_template, new_name);
1528
1529 s->withdrawn = false;
1530
1531 tried = true;
1532 }
1533
1534 if (tried)
1535 manager_refresh_rrs(m);
1536
1537 return tried;
1538 }