]> git.ipfire.org Git - thirdparty/systemd.git/blame - src/resolve/resolved-dns-rr.c
dnssd: don't advertise subtype PTRs to the browsing domain
[thirdparty/systemd.git] / src / resolve / resolved-dns-rr.c
CommitLineData
db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
74b2466e 2
0dae31d4
ZJS
3#include <math.h>
4
b5efdb8a 5#include "alloc-util.h"
4ad7f276 6#include "dns-domain.h"
7263f724 7#include "dns-type.h"
95052df3 8#include "escape.h"
e4e73a63 9#include "hexdecoct.h"
9bd2422a 10#include "memory-util.h"
fc8eec10 11#include "resolved-dns-dnssec.h"
07630cea 12#include "resolved-dns-packet.h"
e4e73a63 13#include "resolved-dns-rr.h"
8730bccf 14#include "string-table.h"
07630cea
LP
15#include "string-util.h"
16#include "strv.h"
d7671a3e 17#include "terminal-util.h"
f0d261a7 18#include "unaligned.h"
74b2466e 19
faa133f3
LP
20DnsResourceKey* dns_resource_key_new(uint16_t class, uint16_t type, const char *name) {
21 DnsResourceKey *k;
22 size_t l;
74b2466e 23
faa133f3
LP
24 assert(name);
25
26 l = strlen(name);
27 k = malloc0(sizeof(DnsResourceKey) + l + 1);
28 if (!k)
29 return NULL;
30
31 k->n_ref = 1;
32 k->class = class;
33 k->type = type;
34
35 strcpy((char*) k + sizeof(DnsResourceKey), name);
36
37 return k;
38}
39
36d9205d 40DnsResourceKey* dns_resource_key_new_redirect(const DnsResourceKey *key, const DnsResourceRecord *cname) {
58db254a
LP
41 int r;
42
36d9205d
TG
43 assert(key);
44 assert(cname);
45
58db254a
LP
46 assert(IN_SET(cname->key->type, DNS_TYPE_CNAME, DNS_TYPE_DNAME));
47
48 if (cname->key->type == DNS_TYPE_CNAME)
49 return dns_resource_key_new(key->class, key->type, cname->cname.name);
50 else {
5afcf89c 51 _cleanup_free_ char *destination = NULL;
58db254a 52 DnsResourceKey *k;
58db254a 53
1c02e7ba 54 r = dns_name_change_suffix(dns_resource_key_name(key), dns_resource_key_name(cname->key), cname->dname.name, &destination);
58db254a
LP
55 if (r < 0)
56 return NULL;
57 if (r == 0)
58 return dns_resource_key_ref((DnsResourceKey*) key);
59
60 k = dns_resource_key_new_consume(key->class, key->type, destination);
6b430fdb 61 if (!k)
5afcf89c 62 return NULL;
58db254a 63
5afcf89c 64 TAKE_PTR(destination);
58db254a
LP
65 return k;
66 }
36d9205d
TG
67}
68
801ad6a6
LP
69int dns_resource_key_new_append_suffix(DnsResourceKey **ret, DnsResourceKey *key, char *name) {
70 DnsResourceKey *new_key;
71 char *joined;
72 int r;
73
74 assert(ret);
75 assert(key);
76 assert(name);
77
dc477e73 78 if (dns_name_is_root(name)) {
801ad6a6
LP
79 *ret = dns_resource_key_ref(key);
80 return 0;
81 }
82
7470cc4c 83 r = dns_name_concat(dns_resource_key_name(key), name, 0, &joined);
801ad6a6
LP
84 if (r < 0)
85 return r;
86
87 new_key = dns_resource_key_new_consume(key->class, key->type, joined);
88 if (!new_key) {
89 free(joined);
90 return -ENOMEM;
91 }
92
93 *ret = new_key;
94 return 0;
95}
96
faa133f3
LP
97DnsResourceKey* dns_resource_key_new_consume(uint16_t class, uint16_t type, char *name) {
98 DnsResourceKey *k;
99
100 assert(name);
101
1ed31408 102 k = new(DnsResourceKey, 1);
faa133f3
LP
103 if (!k)
104 return NULL;
105
1ed31408
LP
106 *k = (DnsResourceKey) {
107 .n_ref = 1,
108 .class = class,
109 .type = type,
110 ._name = name,
111 };
faa133f3
LP
112
113 return k;
114}
115
116DnsResourceKey* dns_resource_key_ref(DnsResourceKey *k) {
117
118 if (!k)
119 return NULL;
120
1b4f6e79
LP
121 /* Static/const keys created with DNS_RESOURCE_KEY_CONST will
122 * set this to -1, they should not be reffed/unreffed */
f5fbe71d 123 assert(k->n_ref != UINT_MAX);
1b4f6e79 124
faa133f3
LP
125 assert(k->n_ref > 0);
126 k->n_ref++;
127
128 return k;
129}
130
131DnsResourceKey* dns_resource_key_unref(DnsResourceKey *k) {
132 if (!k)
133 return NULL;
134
f5fbe71d 135 assert(k->n_ref != UINT_MAX);
faa133f3
LP
136 assert(k->n_ref > 0);
137
138 if (k->n_ref == 1) {
139 free(k->_name);
140 free(k);
141 } else
142 k->n_ref--;
143
144 return NULL;
145}
146
1c02e7ba
ZJS
147const char* dns_resource_key_name(const DnsResourceKey *key) {
148 const char *name;
149
150 if (!key)
151 return NULL;
152
153 if (key->_name)
154 name = key->_name;
155 else
156 name = (char*) key + sizeof(DnsResourceKey);
157
158 if (dns_name_is_root(name))
159 return ".";
160 else
161 return name;
162}
163
28b9b764
LP
164bool dns_resource_key_is_address(const DnsResourceKey *key) {
165 assert(key);
166
167 /* Check if this is an A or AAAA resource key */
168
169 return key->class == DNS_CLASS_IN && IN_SET(key->type, DNS_TYPE_A, DNS_TYPE_AAAA);
170}
171
a2bf8a19
DR
172bool dns_resource_key_is_dnssd_ptr(const DnsResourceKey *key) {
173 assert(key);
174
175 /* Check if this is a PTR resource key used in
176 Service Instance Enumeration as described in RFC6763 p4.1. */
177
178 if (key->type != DNS_TYPE_PTR)
179 return false;
180
181 return dns_name_endswith(dns_resource_key_name(key), "_tcp.local") ||
182 dns_name_endswith(dns_resource_key_name(key), "_udp.local");
183}
184
cd40efc6
RP
185bool dns_resource_key_is_dnssd_two_label_ptr(const DnsResourceKey *key) {
186 assert(key);
187
188 /* Check if this is a PTR resource key used in Service Instance
189 * Enumeration as described in RFC6763 § 4.1, excluding selective
190 * service names described in RFC6763 § 7.1. */
191
192 if (key->type != DNS_TYPE_PTR)
193 return false;
194
195 const char *name = dns_resource_key_name(key);
196 if (dns_name_parent(&name) <= 0)
197 return false;
198
199 return dns_name_equal(name, "_tcp.local") || dns_name_equal(name, "_udp.local");
200}
201
faa133f3
LP
202int dns_resource_key_equal(const DnsResourceKey *a, const DnsResourceKey *b) {
203 int r;
204
4d247a6c
LP
205 if (a == b)
206 return 1;
207
1c02e7ba 208 r = dns_name_equal(dns_resource_key_name(a), dns_resource_key_name(b));
faa133f3
LP
209 if (r <= 0)
210 return r;
211
212 if (a->class != b->class)
213 return 0;
214
215 if (a->type != b->type)
216 return 0;
217
218 return 1;
219}
220
105e1512 221int dns_resource_key_match_rr(const DnsResourceKey *key, DnsResourceRecord *rr, const char *search_domain) {
801ad6a6
LP
222 int r;
223
faa133f3
LP
224 assert(key);
225 assert(rr);
226
4d247a6c
LP
227 if (key == rr->key)
228 return 1;
229
801ad6a6
LP
230 /* Checks if an rr matches the specified key. If a search
231 * domain is specified, it will also be checked if the key
232 * with the search domain suffixed might match the RR. */
233
faa133f3
LP
234 if (rr->key->class != key->class && key->class != DNS_CLASS_ANY)
235 return 0;
236
237 if (rr->key->type != key->type && key->type != DNS_TYPE_ANY)
238 return 0;
239
1c02e7ba 240 r = dns_name_equal(dns_resource_key_name(rr->key), dns_resource_key_name(key));
801ad6a6
LP
241 if (r != 0)
242 return r;
243
244 if (search_domain) {
245 _cleanup_free_ char *joined = NULL;
246
7470cc4c 247 r = dns_name_concat(dns_resource_key_name(key), search_domain, 0, &joined);
801ad6a6
LP
248 if (r < 0)
249 return r;
250
1c02e7ba 251 return dns_name_equal(dns_resource_key_name(rr->key), joined);
801ad6a6
LP
252 }
253
254 return 0;
faa133f3
LP
255}
256
5d27351f 257int dns_resource_key_match_cname_or_dname(const DnsResourceKey *key, const DnsResourceKey *cname, const char *search_domain) {
801ad6a6
LP
258 int r;
259
faa133f3 260 assert(key);
5d27351f 261 assert(cname);
faa133f3 262
5d27351f 263 if (cname->class != key->class && key->class != DNS_CLASS_ANY)
faa133f3
LP
264 return 0;
265
d2995826
LP
266 if (!dns_type_may_redirect(key->type))
267 return 0;
268
5d27351f 269 if (cname->type == DNS_TYPE_CNAME)
1c02e7ba 270 r = dns_name_equal(dns_resource_key_name(key), dns_resource_key_name(cname));
5d27351f 271 else if (cname->type == DNS_TYPE_DNAME)
1c02e7ba 272 r = dns_name_endswith(dns_resource_key_name(key), dns_resource_key_name(cname));
58db254a 273 else
faa133f3 274 return 0;
801ad6a6
LP
275
276 if (r != 0)
277 return r;
278
279 if (search_domain) {
280 _cleanup_free_ char *joined = NULL;
281
7470cc4c 282 r = dns_name_concat(dns_resource_key_name(key), search_domain, 0, &joined);
801ad6a6
LP
283 if (r < 0)
284 return r;
285
5d27351f 286 if (cname->type == DNS_TYPE_CNAME)
1c02e7ba 287 return dns_name_equal(joined, dns_resource_key_name(cname));
5d27351f 288 else if (cname->type == DNS_TYPE_DNAME)
1c02e7ba 289 return dns_name_endswith(joined, dns_resource_key_name(cname));
801ad6a6
LP
290 }
291
292 return 0;
547973de
LP
293}
294
295int dns_resource_key_match_soa(const DnsResourceKey *key, const DnsResourceKey *soa) {
296 assert(soa);
297 assert(key);
298
299 /* Checks whether 'soa' is a SOA record for the specified key. */
300
65b200e7 301 if (soa->class != key->class)
547973de 302 return 0;
801ad6a6 303
547973de
LP
304 if (soa->type != DNS_TYPE_SOA)
305 return 0;
306
1c02e7ba 307 return dns_name_endswith(dns_resource_key_name(key), dns_resource_key_name(soa));
74b2466e
LP
308}
309
7a08d314 310static void dns_resource_key_hash_func(const DnsResourceKey *k, struct siphash *state) {
b826ab58 311 assert(k);
322345fd 312
1c02e7ba 313 dns_name_hash_func(dns_resource_key_name(k), state);
c01a5c05
YW
314 siphash24_compress_typesafe(k->class, state);
315 siphash24_compress_typesafe(k->type, state);
322345fd
LP
316}
317
7a08d314 318static int dns_resource_key_compare_func(const DnsResourceKey *x, const DnsResourceKey *y) {
60086492 319 int r;
322345fd 320
60086492
YW
321 r = dns_name_compare_func(dns_resource_key_name(x), dns_resource_key_name(y));
322 if (r != 0)
323 return r;
322345fd 324
60086492
YW
325 r = CMP(x->type, y->type);
326 if (r != 0)
327 return r;
322345fd 328
60086492 329 return CMP(x->class, y->class);
322345fd
LP
330}
331
7a08d314 332DEFINE_HASH_OPS(dns_resource_key_hash_ops, DnsResourceKey, dns_resource_key_hash_func, dns_resource_key_compare_func);
d5099efc 333
202b76ae 334char* dns_resource_key_to_string(const DnsResourceKey *key, char *buf, size_t buf_size) {
1c02e7ba 335 const char *c, *t;
202b76ae 336 char *ans = buf;
2d4c5cbc 337
6af47493
LP
338 /* If we cannot convert the CLASS/TYPE into a known string,
339 use the format recommended by RFC 3597, Section 5. */
340
2d4c5cbc 341 c = dns_class_to_string(key->class);
2d4c5cbc 342 t = dns_type_to_string(key->type);
2d4c5cbc 343
121ed16c
LB
344 (void) snprintf(buf, buf_size, "%s %s%s%.0u %s%s%.0u",
345 dns_resource_key_name(key),
c0f86d66
JJ
346 strempty(c), c ? "" : "CLASS", c ? 0u : key->class,
347 strempty(t), t ? "" : "TYPE", t ? 0u : key->type);
2d4c5cbc 348
202b76ae 349 return ans;
2d4c5cbc
LP
350}
351
f57e3cd5
LP
352bool dns_resource_key_reduce(DnsResourceKey **a, DnsResourceKey **b) {
353 assert(a);
354 assert(b);
355
356 /* Try to replace one RR key by another if they are identical, thus saving a bit of memory. Note that we do
357 * this only for RR keys, not for RRs themselves, as they carry a lot of additional metadata (where they come
358 * from, validity data, and suchlike), and cannot be replaced so easily by other RRs that have the same
359 * superficial data. */
360
361 if (!*a)
362 return false;
363 if (!*b)
364 return false;
365
366 /* We refuse merging const keys */
f5fbe71d 367 if ((*a)->n_ref == UINT_MAX)
f57e3cd5 368 return false;
f5fbe71d 369 if ((*b)->n_ref == UINT_MAX)
f57e3cd5
LP
370 return false;
371
372 /* Already the same? */
373 if (*a == *b)
374 return true;
375
376 /* Are they really identical? */
377 if (dns_resource_key_equal(*a, *b) <= 0)
378 return false;
379
380 /* Keep the one which already has more references. */
57318441
ZJS
381 if ((*a)->n_ref > (*b)->n_ref)
382 DNS_RESOURCE_KEY_REPLACE(*b, dns_resource_key_ref(*a));
383 else
384 DNS_RESOURCE_KEY_REPLACE(*a, dns_resource_key_ref(*b));
f57e3cd5
LP
385
386 return true;
387}
388
faa133f3 389DnsResourceRecord* dns_resource_record_new(DnsResourceKey *key) {
74b2466e
LP
390 DnsResourceRecord *rr;
391
1ed31408 392 rr = new(DnsResourceRecord, 1);
74b2466e
LP
393 if (!rr)
394 return NULL;
395
1ed31408
LP
396 *rr = (DnsResourceRecord) {
397 .n_ref = 1,
398 .key = dns_resource_key_ref(key),
399 .expiry = USEC_INFINITY,
98e80bf9
ZJS
400 .n_skip_labels_signer = UINT8_MAX,
401 .n_skip_labels_source = UINT8_MAX,
1ed31408 402 };
faa133f3 403
74b2466e
LP
404 return rr;
405}
406
8bf52d3d
LP
407DnsResourceRecord* dns_resource_record_new_full(uint16_t class, uint16_t type, const char *name) {
408 _cleanup_(dns_resource_key_unrefp) DnsResourceKey *key = NULL;
409
410 key = dns_resource_key_new(class, type, name);
411 if (!key)
412 return NULL;
413
414 return dns_resource_record_new(key);
415}
416
8301aa0b
YW
417static DnsResourceRecord* dns_resource_record_free(DnsResourceRecord *rr) {
418 assert(rr);
74b2466e 419
faa133f3 420 if (rr->key) {
79893116 421 switch (rr->key->type) {
9c92ce6d
LP
422
423 case DNS_TYPE_SRV:
424 free(rr->srv.name);
425 break;
426
9de3e329
ZJS
427 case DNS_TYPE_PTR:
428 case DNS_TYPE_NS:
429 case DNS_TYPE_CNAME:
8ac4e9e1 430 case DNS_TYPE_DNAME:
faa133f3 431 free(rr->ptr.name);
9de3e329 432 break;
9c92ce6d 433
9de3e329 434 case DNS_TYPE_HINFO:
faa133f3
LP
435 free(rr->hinfo.cpu);
436 free(rr->hinfo.os);
9de3e329 437 break;
9c92ce6d 438
9de3e329 439 case DNS_TYPE_TXT:
9c92ce6d 440 case DNS_TYPE_SPF:
2001c805 441 dns_txt_item_free_all(rr->txt.items);
9de3e329 442 break;
9c92ce6d 443
9de3e329 444 case DNS_TYPE_SOA:
7e8e0422
LP
445 free(rr->soa.mname);
446 free(rr->soa.rname);
9de3e329 447 break;
9c92ce6d 448
9de3e329 449 case DNS_TYPE_MX:
946c7094 450 free(rr->mx.exchange);
9de3e329 451 break;
9c92ce6d 452
abf126a3
TG
453 case DNS_TYPE_DS:
454 free(rr->ds.digest);
455 break;
456
42cc2eeb 457 case DNS_TYPE_SSHFP:
549c1a25 458 free(rr->sshfp.fingerprint);
42cc2eeb
LP
459 break;
460
8db0d2f5
ZJS
461 case DNS_TYPE_DNSKEY:
462 free(rr->dnskey.key);
463 break;
464
151226ab
ZJS
465 case DNS_TYPE_RRSIG:
466 free(rr->rrsig.signer);
467 free(rr->rrsig.signature);
468 break;
469
50f1e641
TG
470 case DNS_TYPE_NSEC:
471 free(rr->nsec.next_domain_name);
472 bitmap_free(rr->nsec.types);
473 break;
474
5d45a880
TG
475 case DNS_TYPE_NSEC3:
476 free(rr->nsec3.next_hashed_name);
477 free(rr->nsec3.salt);
478 bitmap_free(rr->nsec3.types);
479 break;
480
0dae31d4 481 case DNS_TYPE_LOC:
9de3e329
ZJS
482 case DNS_TYPE_A:
483 case DNS_TYPE_AAAA:
484 break;
9c92ce6d 485
48d45d2b
ZJS
486 case DNS_TYPE_TLSA:
487 free(rr->tlsa.data);
488 break;
489
e7634d6b
RP
490 case DNS_TYPE_SVCB:
491 case DNS_TYPE_HTTPS:
492 free(rr->svcb.target_name);
493 dns_svc_param_free_all(rr->svcb.params);
494 break;
495
95052df3
ZJS
496 case DNS_TYPE_CAA:
497 free(rr->caa.tag);
498 free(rr->caa.value);
499 break;
500
17615676
LP
501 case DNS_TYPE_NAPTR:
502 free(rr->naptr.flags);
503 free(rr->naptr.services);
504 free(rr->naptr.regexp);
505 free(rr->naptr.replacement);
506 break;
507
d93a16b8 508 case DNS_TYPE_OPENPGPKEY:
9de3e329 509 default:
52e085af 510 if (!rr->unparsable)
bfc1d734 511 free(rr->generic.data);
9de3e329 512 }
322345fd 513
52e085af 514 if (rr->unparsable)
bfc1d734
ZJS
515 free(rr->generic.data);
516
a8812dd7 517 free(rr->wire_format);
faa133f3
LP
518 dns_resource_key_unref(rr->key);
519 }
322345fd 520
7b50eb2e 521 free(rr->to_string);
6b430fdb 522 return mfree(rr);
322345fd
LP
523}
524
8301aa0b
YW
525DEFINE_TRIVIAL_REF_UNREF_FUNC(DnsResourceRecord, dns_resource_record, dns_resource_record_free);
526
623a4c97
LP
527int dns_resource_record_new_reverse(DnsResourceRecord **ret, int family, const union in_addr_union *address, const char *hostname) {
528 _cleanup_(dns_resource_key_unrefp) DnsResourceKey *key = NULL;
529 _cleanup_(dns_resource_record_unrefp) DnsResourceRecord *rr = NULL;
530 _cleanup_free_ char *ptr = NULL;
531 int r;
532
533 assert(ret);
534 assert(address);
535 assert(hostname);
536
537 r = dns_name_reverse(family, address, &ptr);
538 if (r < 0)
539 return r;
540
541 key = dns_resource_key_new_consume(DNS_CLASS_IN, DNS_TYPE_PTR, ptr);
542 if (!key)
543 return -ENOMEM;
544
545 ptr = NULL;
546
547 rr = dns_resource_record_new(key);
548 if (!rr)
549 return -ENOMEM;
550
551 rr->ptr.name = strdup(hostname);
552 if (!rr->ptr.name)
553 return -ENOMEM;
554
1cc6c93a 555 *ret = TAKE_PTR(rr);
623a4c97
LP
556
557 return 0;
558}
559
78c6a153
LP
560int dns_resource_record_new_address(DnsResourceRecord **ret, int family, const union in_addr_union *address, const char *name) {
561 DnsResourceRecord *rr;
562
563 assert(ret);
564 assert(address);
565 assert(family);
566
567 if (family == AF_INET) {
568
569 rr = dns_resource_record_new_full(DNS_CLASS_IN, DNS_TYPE_A, name);
570 if (!rr)
571 return -ENOMEM;
572
573 rr->a.in_addr = address->in;
574
575 } else if (family == AF_INET6) {
576
577 rr = dns_resource_record_new_full(DNS_CLASS_IN, DNS_TYPE_AAAA, name);
578 if (!rr)
579 return -ENOMEM;
580
581 rr->aaaa.in6_addr = address->in6;
582 } else
583 return -EAFNOSUPPORT;
584
585 *ret = rr;
586
587 return 0;
588}
589
a43a068a
ZJS
590#define FIELD_EQUAL(a, b, field) \
591 ((a).field ## _size == (b).field ## _size && \
9bd2422a 592 memcmp_safe((a).field, (b).field, (a).field ## _size) == 0)
a43a068a 593
51969a58 594int dns_resource_record_payload_equal(const DnsResourceRecord *a, const DnsResourceRecord *b) {
322345fd
LP
595 int r;
596
51969a58 597 /* Check if a and b are the same, but don't look at their keys */
322345fd 598
52e085af 599 if (a->unparsable != b->unparsable)
fd0b4602
LP
600 return 0;
601
52e085af 602 switch (a->unparsable ? _DNS_TYPE_INVALID : a->key->type) {
2d4c5cbc 603
9c92ce6d
LP
604 case DNS_TYPE_SRV:
605 r = dns_name_equal(a->srv.name, b->srv.name);
606 if (r <= 0)
607 return r;
608
609 return a->srv.priority == b->srv.priority &&
610 a->srv.weight == b->srv.weight &&
611 a->srv.port == b->srv.port;
612
2d4c5cbc
LP
613 case DNS_TYPE_PTR:
614 case DNS_TYPE_NS:
615 case DNS_TYPE_CNAME:
8ac4e9e1 616 case DNS_TYPE_DNAME:
322345fd 617 return dns_name_equal(a->ptr.name, b->ptr.name);
2d4c5cbc
LP
618
619 case DNS_TYPE_HINFO:
620 return strcaseeq(a->hinfo.cpu, b->hinfo.cpu) &&
621 strcaseeq(a->hinfo.os, b->hinfo.os);
622
9de3e329 623 case DNS_TYPE_SPF: /* exactly the same as TXT */
0f84a72e 624 case DNS_TYPE_TXT:
2001c805 625 return dns_txt_item_equal(a->txt.items, b->txt.items);
2e276efc 626
2d4c5cbc 627 case DNS_TYPE_A:
322345fd 628 return memcmp(&a->a.in_addr, &b->a.in_addr, sizeof(struct in_addr)) == 0;
2d4c5cbc
LP
629
630 case DNS_TYPE_AAAA:
322345fd 631 return memcmp(&a->aaaa.in6_addr, &b->aaaa.in6_addr, sizeof(struct in6_addr)) == 0;
2d4c5cbc
LP
632
633 case DNS_TYPE_SOA:
7e8e0422
LP
634 r = dns_name_equal(a->soa.mname, b->soa.mname);
635 if (r <= 0)
636 return r;
637 r = dns_name_equal(a->soa.rname, b->soa.rname);
638 if (r <= 0)
639 return r;
640
641 return a->soa.serial == b->soa.serial &&
642 a->soa.refresh == b->soa.refresh &&
643 a->soa.retry == b->soa.retry &&
644 a->soa.expire == b->soa.expire &&
645 a->soa.minimum == b->soa.minimum;
9c92ce6d 646
946c7094
ZJS
647 case DNS_TYPE_MX:
648 if (a->mx.priority != b->mx.priority)
649 return 0;
650
651 return dns_name_equal(a->mx.exchange, b->mx.exchange);
652
0dae31d4
ZJS
653 case DNS_TYPE_LOC:
654 assert(a->loc.version == b->loc.version);
655
656 return a->loc.size == b->loc.size &&
657 a->loc.horiz_pre == b->loc.horiz_pre &&
658 a->loc.vert_pre == b->loc.vert_pre &&
659 a->loc.latitude == b->loc.latitude &&
660 a->loc.longitude == b->loc.longitude &&
661 a->loc.altitude == b->loc.altitude;
662
abf126a3
TG
663 case DNS_TYPE_DS:
664 return a->ds.key_tag == b->ds.key_tag &&
665 a->ds.algorithm == b->ds.algorithm &&
666 a->ds.digest_type == b->ds.digest_type &&
a43a068a 667 FIELD_EQUAL(a->ds, b->ds, digest);
abf126a3 668
42cc2eeb
LP
669 case DNS_TYPE_SSHFP:
670 return a->sshfp.algorithm == b->sshfp.algorithm &&
671 a->sshfp.fptype == b->sshfp.fptype &&
a43a068a 672 FIELD_EQUAL(a->sshfp, b->sshfp, fingerprint);
42cc2eeb 673
8db0d2f5 674 case DNS_TYPE_DNSKEY:
f91dc240
LP
675 return a->dnskey.flags == b->dnskey.flags &&
676 a->dnskey.protocol == b->dnskey.protocol &&
8db0d2f5 677 a->dnskey.algorithm == b->dnskey.algorithm &&
a43a068a 678 FIELD_EQUAL(a->dnskey, b->dnskey, key);
8db0d2f5 679
151226ab
ZJS
680 case DNS_TYPE_RRSIG:
681 /* do the fast comparisons first */
a43a068a
ZJS
682 return a->rrsig.type_covered == b->rrsig.type_covered &&
683 a->rrsig.algorithm == b->rrsig.algorithm &&
684 a->rrsig.labels == b->rrsig.labels &&
685 a->rrsig.original_ttl == b->rrsig.original_ttl &&
686 a->rrsig.expiration == b->rrsig.expiration &&
687 a->rrsig.inception == b->rrsig.inception &&
688 a->rrsig.key_tag == b->rrsig.key_tag &&
689 FIELD_EQUAL(a->rrsig, b->rrsig, signature) &&
690 dns_name_equal(a->rrsig.signer, b->rrsig.signer);
151226ab 691
50f1e641
TG
692 case DNS_TYPE_NSEC:
693 return dns_name_equal(a->nsec.next_domain_name, b->nsec.next_domain_name) &&
694 bitmap_equal(a->nsec.types, b->nsec.types);
695
5d45a880
TG
696 case DNS_TYPE_NSEC3:
697 return a->nsec3.algorithm == b->nsec3.algorithm &&
a43a068a
ZJS
698 a->nsec3.flags == b->nsec3.flags &&
699 a->nsec3.iterations == b->nsec3.iterations &&
700 FIELD_EQUAL(a->nsec3, b->nsec3, salt) &&
701 FIELD_EQUAL(a->nsec3, b->nsec3, next_hashed_name) &&
702 bitmap_equal(a->nsec3.types, b->nsec3.types);
5d45a880 703
48d45d2b
ZJS
704 case DNS_TYPE_TLSA:
705 return a->tlsa.cert_usage == b->tlsa.cert_usage &&
706 a->tlsa.selector == b->tlsa.selector &&
707 a->tlsa.matching_type == b->tlsa.matching_type &&
a43a068a 708 FIELD_EQUAL(a->tlsa, b->tlsa, data);
48d45d2b 709
e7634d6b
RP
710 case DNS_TYPE_SVCB:
711 case DNS_TYPE_HTTPS:
712 return a->svcb.priority == b->svcb.priority &&
713 dns_name_equal(a->svcb.target_name, b->svcb.target_name) &&
714 dns_svc_params_equal(a->svcb.params, b->svcb.params);
715
95052df3
ZJS
716 case DNS_TYPE_CAA:
717 return a->caa.flags == b->caa.flags &&
718 streq(a->caa.tag, b->caa.tag) &&
719 FIELD_EQUAL(a->caa, b->caa, value);
720
17615676
LP
721 case DNS_TYPE_NAPTR:
722 r = dns_name_equal(a->naptr.replacement, b->naptr.replacement);
723 if (r <= 0)
724 return r;
725
726 return a->naptr.order == b->naptr.order &&
727 a->naptr.preference == b->naptr.preference &&
728 streq(a->naptr.flags, b->naptr.flags) &&
729 streq(a->naptr.services, b->naptr.services) &&
730 streq(a->naptr.regexp, b->naptr.regexp);
731
95052df3 732 case DNS_TYPE_OPENPGPKEY:
2d4c5cbc 733 default:
a43a068a 734 return FIELD_EQUAL(a->generic, b->generic, data);
2d4c5cbc 735 }
322345fd
LP
736}
737
51969a58
ZJS
738int dns_resource_record_equal(const DnsResourceRecord *a, const DnsResourceRecord *b) {
739 int r;
740
741 assert(a);
742 assert(b);
743
744 if (a == b)
745 return 1;
746
747 r = dns_resource_key_equal(a->key, b->key);
748 if (r <= 0)
749 return r;
750
751 return dns_resource_record_payload_equal(a, b);
752}
753
0dae31d4
ZJS
754static char* format_location(uint32_t latitude, uint32_t longitude, uint32_t altitude,
755 uint8_t size, uint8_t horiz_pre, uint8_t vert_pre) {
756 char *s;
757 char NS = latitude >= 1U<<31 ? 'N' : 'S';
758 char EW = longitude >= 1U<<31 ? 'E' : 'W';
759
760 int lat = latitude >= 1U<<31 ? (int) (latitude - (1U<<31)) : (int) ((1U<<31) - latitude);
761 int lon = longitude >= 1U<<31 ? (int) (longitude - (1U<<31)) : (int) ((1U<<31) - longitude);
762 double alt = altitude >= 10000000u ? altitude - 10000000u : -(double)(10000000u - altitude);
763 double siz = (size >> 4) * exp10((double) (size & 0xF));
764 double hor = (horiz_pre >> 4) * exp10((double) (horiz_pre & 0xF));
765 double ver = (vert_pre >> 4) * exp10((double) (vert_pre & 0xF));
766
767 if (asprintf(&s, "%d %d %.3f %c %d %d %.3f %c %.2fm %.2fm %.2fm %.2fm",
768 (lat / 60000 / 60),
769 (lat / 60000) % 60,
770 (lat % 60000) / 1000.,
771 NS,
772 (lon / 60000 / 60),
773 (lon / 60000) % 60,
774 (lon % 60000) / 1000.,
775 EW,
776 alt / 100.,
777 siz / 100.,
778 hor / 100.,
779 ver / 100.) < 0)
780 return NULL;
781
782 return s;
783}
784
7c6423e1
TG
785static int format_timestamp_dns(char *buf, size_t l, time_t sec) {
786 struct tm tm;
787
788 assert(buf);
fbd0b64f 789 assert(l > STRLEN("YYYYMMDDHHmmSS"));
7c6423e1
TG
790
791 if (!gmtime_r(&sec, &tm))
792 return -EINVAL;
793
794 if (strftime(buf, l, "%Y%m%d%H%M%S", &tm) <= 0)
795 return -EINVAL;
796
797 return 0;
798}
799
50f1e641
TG
800static char *format_types(Bitmap *types) {
801 _cleanup_strv_free_ char **strv = NULL;
802 _cleanup_free_ char *str = NULL;
803 unsigned type;
804 int r;
805
90e74a66 806 BITMAP_FOREACH(type, types) {
50f1e641 807 if (dns_type_to_string(type)) {
2c1fb4f7 808 r = strv_extend(&strv, dns_type_to_string(type));
50f1e641
TG
809 if (r < 0)
810 return NULL;
811 } else {
812 char *t;
813
814 r = asprintf(&t, "TYPE%u", type);
815 if (r < 0)
816 return NULL;
817
2c1fb4f7 818 r = strv_consume(&strv, t);
50f1e641
TG
819 if (r < 0)
820 return NULL;
821 }
822 }
823
824 str = strv_join(strv, " ");
825 if (!str)
826 return NULL;
827
605405c6 828 return strjoin("( ", str, " )");
50f1e641
TG
829}
830
2001c805 831static char *format_txt(DnsTxtItem *first) {
2001c805
LP
832 size_t c = 1;
833 char *p, *s;
834
835 LIST_FOREACH(items, i, first)
836 c += i->length * 4 + 3;
837
838 p = s = new(char, c);
839 if (!s)
840 return NULL;
841
842 LIST_FOREACH(items, i, first) {
2001c805
LP
843 if (i != first)
844 *(p++) = ' ';
845
846 *(p++) = '"';
847
6f1d18ae 848 for (size_t j = 0; j < i->length; j++) {
2001c805
LP
849 if (i->data[j] < ' ' || i->data[j] == '"' || i->data[j] >= 127) {
850 *(p++) = '\\';
851 *(p++) = '0' + (i->data[j] / 100);
852 *(p++) = '0' + ((i->data[j] / 10) % 10);
853 *(p++) = '0' + (i->data[j] % 10);
854 } else
855 *(p++) = i->data[j];
856 }
857
858 *(p++) = '"';
859 }
860
861 *p = 0;
862 return s;
863}
864
f0d261a7
RP
865static char *format_svc_param_value(DnsSvcParam *i) {
866 _cleanup_free_ char *value = NULL;
867
868 assert(i);
869
870 switch (i->key) {
871 case DNS_SVC_PARAM_KEY_ALPN: {
872 size_t offset = 0;
873 _cleanup_strv_free_ char **values_strv = NULL;
874 while (offset < i->length) {
875 size_t sz = (uint8_t) i->value[offset++];
876
877 char *alpn = cescape_length((char *)&i->value[offset], sz);
878 if (!alpn)
879 return NULL;
880
881 if (strv_push(&values_strv, alpn) < 0)
882 return NULL;
883
884 offset += sz;
885 }
886 value = strv_join(values_strv, ",");
887 if (!value)
888 return NULL;
889 break;
890
891 }
892 case DNS_SVC_PARAM_KEY_PORT: {
893 uint16_t port = unaligned_read_be16(i->value);
894 if (asprintf(&value, "%" PRIu16, port) < 0)
895 return NULL;
896 return TAKE_PTR(value);
897 }
898 case DNS_SVC_PARAM_KEY_IPV4HINT: {
899 const struct in_addr *addrs = i->value_in_addr;
900 _cleanup_strv_free_ char **values_strv = NULL;
901 for (size_t n = 0; n < i->length / sizeof (struct in_addr); n++) {
902 char *addr;
903 if (in_addr_to_string(AF_INET, (const union in_addr_union*) &addrs[n], &addr) < 0)
904 return NULL;
905 if (strv_push(&values_strv, addr) < 0)
906 return NULL;
907 }
908 return strv_join(values_strv, ",");
909 }
910 case DNS_SVC_PARAM_KEY_IPV6HINT: {
911 const struct in6_addr *addrs = i->value_in6_addr;
912 _cleanup_strv_free_ char **values_strv = NULL;
913 for (size_t n = 0; n < i->length / sizeof (struct in6_addr); n++) {
914 char *addr;
915 if (in_addr_to_string(AF_INET6, (const union in_addr_union*) &addrs[n], &addr) < 0)
916 return NULL;
917 if (strv_push(&values_strv, addr) < 0)
918 return NULL;
919 }
920 return strv_join(values_strv, ",");
921 }
922 default: {
923 value = decescape((char *)&i->value, " ,", i->length);
924 if (!value)
925 return NULL;
926 break;
927 }
928 }
929
930 char *qvalue;
931 if (asprintf(&qvalue, "\"%s\"", value) < 0)
932 return NULL;
933 return qvalue;
934}
935
936static char *format_svc_param(DnsSvcParam *i) {
937 const char *key = FORMAT_DNS_SVC_PARAM_KEY(i->key);
938 _cleanup_free_ char *value = NULL;
939
940 assert(i);
941
942 if (i->length == 0)
943 return strdup(key);
944
945 value = format_svc_param_value(i);
946 if (!value)
947 return NULL;
948
949 return strjoin(key, "=", value);
950}
951
952static char *format_svc_params(DnsSvcParam *first) {
953 _cleanup_strv_free_ char **params = NULL;
954
955 LIST_FOREACH(params, i, first) {
956 char *param = format_svc_param(i);
957 if (!param)
958 return NULL;
959 if (strv_push(&params, param) < 0)
960 return NULL;
961 }
962
963 return strv_join(params, " ");
964}
965
7b50eb2e 966const char *dns_resource_record_to_string(DnsResourceRecord *rr) {
bc833401
DT
967 _cleanup_free_ char *s = NULL, *t = NULL;
968 char k[DNS_RESOURCE_KEY_STRING_MAX];
2d4c5cbc 969 int r;
322345fd 970
2d4c5cbc 971 assert(rr);
322345fd 972
7b50eb2e
LP
973 if (rr->to_string)
974 return rr->to_string;
975
202b76ae 976 dns_resource_key_to_string(rr->key, k, sizeof(k));
322345fd 977
52e085af 978 switch (rr->unparsable ? _DNS_TYPE_INVALID : rr->key->type) {
322345fd 979
9c92ce6d
LP
980 case DNS_TYPE_SRV:
981 r = asprintf(&s, "%s %u %u %u %s",
982 k,
983 rr->srv.priority,
984 rr->srv.weight,
985 rr->srv.port,
986 strna(rr->srv.name));
987 if (r < 0)
7b50eb2e 988 return NULL;
9c92ce6d
LP
989 break;
990
2d4c5cbc
LP
991 case DNS_TYPE_PTR:
992 case DNS_TYPE_NS:
993 case DNS_TYPE_CNAME:
8ac4e9e1 994 case DNS_TYPE_DNAME:
605405c6 995 s = strjoin(k, " ", rr->ptr.name);
2d4c5cbc 996 if (!s)
7b50eb2e 997 return NULL;
322345fd 998
2d4c5cbc 999 break;
322345fd 1000
2d4c5cbc 1001 case DNS_TYPE_HINFO:
605405c6 1002 s = strjoin(k, " ", rr->hinfo.cpu, " ", rr->hinfo.os);
2d4c5cbc 1003 if (!s)
7b50eb2e 1004 return NULL;
2d4c5cbc 1005 break;
322345fd 1006
9de3e329 1007 case DNS_TYPE_SPF: /* exactly the same as TXT */
8db0d2f5 1008 case DNS_TYPE_TXT:
2001c805 1009 t = format_txt(rr->txt.items);
2e276efc 1010 if (!t)
7b50eb2e 1011 return NULL;
2e276efc 1012
605405c6 1013 s = strjoin(k, " ", t);
2e276efc 1014 if (!s)
7b50eb2e 1015 return NULL;
2e276efc 1016 break;
2e276efc 1017
037e5b15
DT
1018 case DNS_TYPE_A:
1019 r = in_addr_to_string(AF_INET, (const union in_addr_union*) &rr->a.in_addr, &t);
2d4c5cbc 1020 if (r < 0)
7b50eb2e 1021 return NULL;
322345fd 1022
037e5b15 1023 s = strjoin(k, " ", t);
2d4c5cbc 1024 if (!s)
7b50eb2e 1025 return NULL;
2d4c5cbc 1026 break;
322345fd 1027
8db0d2f5
ZJS
1028 case DNS_TYPE_AAAA:
1029 r = in_addr_to_string(AF_INET6, (const union in_addr_union*) &rr->aaaa.in6_addr, &t);
2d4c5cbc 1030 if (r < 0)
7b50eb2e 1031 return NULL;
322345fd 1032
605405c6 1033 s = strjoin(k, " ", t);
2d4c5cbc 1034 if (!s)
7b50eb2e 1035 return NULL;
2d4c5cbc 1036 break;
322345fd 1037
2d4c5cbc
LP
1038 case DNS_TYPE_SOA:
1039 r = asprintf(&s, "%s %s %s %u %u %u %u %u",
1040 k,
1041 strna(rr->soa.mname),
1042 strna(rr->soa.rname),
1043 rr->soa.serial,
1044 rr->soa.refresh,
1045 rr->soa.retry,
1046 rr->soa.expire,
1047 rr->soa.minimum);
1048 if (r < 0)
7b50eb2e 1049 return NULL;
2d4c5cbc
LP
1050 break;
1051
946c7094
ZJS
1052 case DNS_TYPE_MX:
1053 r = asprintf(&s, "%s %u %s",
1054 k,
1055 rr->mx.priority,
1056 rr->mx.exchange);
1057 if (r < 0)
7b50eb2e 1058 return NULL;
946c7094
ZJS
1059 break;
1060
8db0d2f5 1061 case DNS_TYPE_LOC:
0dae31d4
ZJS
1062 assert(rr->loc.version == 0);
1063
8db0d2f5
ZJS
1064 t = format_location(rr->loc.latitude,
1065 rr->loc.longitude,
1066 rr->loc.altitude,
1067 rr->loc.size,
1068 rr->loc.horiz_pre,
1069 rr->loc.vert_pre);
1070 if (!t)
7b50eb2e 1071 return NULL;
0dae31d4 1072
605405c6 1073 s = strjoin(k, " ", t);
0dae31d4 1074 if (!s)
7b50eb2e 1075 return NULL;
0dae31d4 1076 break;
0dae31d4 1077
abf126a3
TG
1078 case DNS_TYPE_DS:
1079 t = hexmem(rr->ds.digest, rr->ds.digest_size);
1080 if (!t)
7b50eb2e 1081 return NULL;
abf126a3
TG
1082
1083 r = asprintf(&s, "%s %u %u %u %s",
1084 k,
1085 rr->ds.key_tag,
1086 rr->ds.algorithm,
1087 rr->ds.digest_type,
1088 t);
1089 if (r < 0)
7b50eb2e 1090 return NULL;
abf126a3
TG
1091 break;
1092
8db0d2f5 1093 case DNS_TYPE_SSHFP:
549c1a25 1094 t = hexmem(rr->sshfp.fingerprint, rr->sshfp.fingerprint_size);
8db0d2f5 1095 if (!t)
7b50eb2e 1096 return NULL;
42cc2eeb
LP
1097
1098 r = asprintf(&s, "%s %u %u %s",
1099 k,
1100 rr->sshfp.algorithm,
1101 rr->sshfp.fptype,
8db0d2f5 1102 t);
42cc2eeb 1103 if (r < 0)
7b50eb2e 1104 return NULL;
42cc2eeb 1105 break;
42cc2eeb 1106
ff3d6560 1107 case DNS_TYPE_DNSKEY: {
8e54f5d9 1108 _cleanup_free_ char *alg = NULL;
fc8eec10
ZJS
1109 uint16_t key_tag;
1110
1111 key_tag = dnssec_keytag(rr, true);
ff3d6560 1112
8e54f5d9
LP
1113 r = dnssec_algorithm_to_string_alloc(rr->dnskey.algorithm, &alg);
1114 if (r < 0)
1115 return NULL;
ff3d6560 1116
516a00e9 1117 r = asprintf(&t, "%s %u %u %s",
8db0d2f5 1118 k,
f91dc240
LP
1119 rr->dnskey.flags,
1120 rr->dnskey.protocol,
4bb91a95 1121 alg);
8db0d2f5 1122 if (r < 0)
7b50eb2e 1123 return NULL;
d7671a3e 1124
516a00e9 1125 r = base64_append(&t, r,
d7671a3e
ZJS
1126 rr->dnskey.key, rr->dnskey.key_size,
1127 8, columns());
1128 if (r < 0)
1129 return NULL;
1130
516a00e9 1131 r = asprintf(&s, "%s\n"
718af59e
ZJS
1132 " -- Flags:%s%s%s\n"
1133 " -- Key tag: %u",
516a00e9 1134 t,
99e5ca6d
ZJS
1135 rr->dnskey.flags & DNSKEY_FLAG_SEP ? " SEP" : "",
1136 rr->dnskey.flags & DNSKEY_FLAG_REVOKE ? " REVOKE" : "",
fc8eec10 1137 rr->dnskey.flags & DNSKEY_FLAG_ZONE_KEY ? " ZONE_KEY" : "",
fc8eec10 1138 key_tag);
99e5ca6d
ZJS
1139 if (r < 0)
1140 return NULL;
99e5ca6d 1141
8db0d2f5 1142 break;
ff3d6560 1143 }
2d4c5cbc 1144
151226ab 1145 case DNS_TYPE_RRSIG: {
8e54f5d9 1146 _cleanup_free_ char *alg = NULL;
fbd0b64f 1147 char expiration[STRLEN("YYYYMMDDHHmmSS") + 1], inception[STRLEN("YYYYMMDDHHmmSS") + 1];
8e54f5d9 1148 const char *type;
151226ab
ZJS
1149
1150 type = dns_type_to_string(rr->rrsig.type_covered);
8e54f5d9
LP
1151
1152 r = dnssec_algorithm_to_string_alloc(rr->rrsig.algorithm, &alg);
1153 if (r < 0)
1154 return NULL;
151226ab 1155
7c6423e1
TG
1156 r = format_timestamp_dns(expiration, sizeof(expiration), rr->rrsig.expiration);
1157 if (r < 0)
7b50eb2e 1158 return NULL;
7c6423e1
TG
1159
1160 r = format_timestamp_dns(inception, sizeof(inception), rr->rrsig.inception);
1161 if (r < 0)
7b50eb2e 1162 return NULL;
7c6423e1 1163
151226ab
ZJS
1164 /* TYPE?? follows
1165 * http://tools.ietf.org/html/rfc3597#section-5 */
1166
4bb91a95 1167 r = asprintf(&s, "%s %s%.*u %s %u %u %s %s %u %s",
151226ab
ZJS
1168 k,
1169 type ?: "TYPE",
1170 type ? 0 : 1, type ? 0u : (unsigned) rr->rrsig.type_covered,
8e54f5d9 1171 alg,
151226ab
ZJS
1172 rr->rrsig.labels,
1173 rr->rrsig.original_ttl,
7c6423e1
TG
1174 expiration,
1175 inception,
151226ab 1176 rr->rrsig.key_tag,
4bb91a95 1177 rr->rrsig.signer);
151226ab 1178 if (r < 0)
7b50eb2e 1179 return NULL;
d7671a3e 1180
4bb91a95 1181 r = base64_append(&s, r,
d7671a3e
ZJS
1182 rr->rrsig.signature, rr->rrsig.signature_size,
1183 8, columns());
1184 if (r < 0)
1185 return NULL;
1186
151226ab
ZJS
1187 break;
1188 }
1189
50f1e641
TG
1190 case DNS_TYPE_NSEC:
1191 t = format_types(rr->nsec.types);
1192 if (!t)
7b50eb2e 1193 return NULL;
50f1e641
TG
1194
1195 r = asprintf(&s, "%s %s %s",
1196 k,
1197 rr->nsec.next_domain_name,
1198 t);
1199 if (r < 0)
7b50eb2e 1200 return NULL;
50f1e641
TG
1201 break;
1202
5d45a880
TG
1203 case DNS_TYPE_NSEC3: {
1204 _cleanup_free_ char *salt = NULL, *hash = NULL;
1205
f5430a3e 1206 if (rr->nsec3.salt_size > 0) {
5d45a880
TG
1207 salt = hexmem(rr->nsec3.salt, rr->nsec3.salt_size);
1208 if (!salt)
7b50eb2e 1209 return NULL;
5d45a880
TG
1210 }
1211
1212 hash = base32hexmem(rr->nsec3.next_hashed_name, rr->nsec3.next_hashed_name_size, false);
1213 if (!hash)
7b50eb2e 1214 return NULL;
5d45a880
TG
1215
1216 t = format_types(rr->nsec3.types);
1217 if (!t)
7b50eb2e 1218 return NULL;
5d45a880
TG
1219
1220 r = asprintf(&s, "%s %"PRIu8" %"PRIu8" %"PRIu16" %s %s %s",
1221 k,
1222 rr->nsec3.algorithm,
1223 rr->nsec3.flags,
1224 rr->nsec3.iterations,
f5430a3e 1225 rr->nsec3.salt_size > 0 ? salt : "-",
5d45a880
TG
1226 hash,
1227 t);
1228 if (r < 0)
7b50eb2e 1229 return NULL;
5d45a880
TG
1230
1231 break;
1232 }
1233
411d095d
LP
1234 case DNS_TYPE_TLSA:
1235 t = hexmem(rr->tlsa.data, rr->tlsa.data_size);
236d312b 1236 if (!t)
48d45d2b 1237 return NULL;
cfb90da3 1238
236d312b
ZJS
1239 r = asprintf(&s,
1240 "%s %u %u %u %s\n"
718af59e
ZJS
1241 " -- Cert. usage: %s\n"
1242 " -- Selector: %s\n"
1243 " -- Matching type: %s",
236d312b
ZJS
1244 k,
1245 rr->tlsa.cert_usage,
1246 rr->tlsa.selector,
1247 rr->tlsa.matching_type,
1248 t,
411d095d
LP
1249 tlsa_cert_usage_to_string(rr->tlsa.cert_usage),
1250 tlsa_selector_to_string(rr->tlsa.selector),
1251 tlsa_matching_type_to_string(rr->tlsa.matching_type));
cfb90da3
ZJS
1252 if (r < 0)
1253 return NULL;
cfb90da3 1254
48d45d2b 1255 break;
48d45d2b 1256
037e5b15
DT
1257 case DNS_TYPE_CAA:
1258 t = octescape(rr->caa.value, rr->caa.value_size);
1259 if (!t)
95052df3
ZJS
1260 return NULL;
1261
718af59e 1262 r = asprintf(&s, "%s %u %s \"%s\"%s%s%s%.0u",
95052df3
ZJS
1263 k,
1264 rr->caa.flags,
1265 rr->caa.tag,
037e5b15 1266 t,
718af59e
ZJS
1267 rr->caa.flags ? "\n -- Flags:" : "",
1268 rr->caa.flags & CAA_FLAG_CRITICAL ? " critical" : "",
1269 rr->caa.flags & ~CAA_FLAG_CRITICAL ? " " : "",
1270 rr->caa.flags & ~CAA_FLAG_CRITICAL);
95052df3
ZJS
1271 if (r < 0)
1272 return NULL;
1273
1274 break;
95052df3 1275
f0d261a7
RP
1276 case DNS_TYPE_SVCB:
1277 case DNS_TYPE_HTTPS:
1278 t = format_svc_params(rr->svcb.params);
1279 if (!t)
1280 return NULL;
1281 r = asprintf(&s, "%s %d %s %s", k, rr->svcb.priority,
1282 isempty(rr->svcb.target_name) ? "." : rr->svcb.target_name,
1283 t);
1284 if (r < 0)
1285 return NULL;
1286
1287 break;
1288
eba1eb90 1289 case DNS_TYPE_OPENPGPKEY:
4bb91a95 1290 r = asprintf(&s, "%s", k);
d93a16b8
ZJS
1291 if (r < 0)
1292 return NULL;
1293
4bb91a95 1294 r = base64_append(&s, r,
a43a068a 1295 rr->generic.data, rr->generic.data_size,
d93a16b8
ZJS
1296 8, columns());
1297 if (r < 0)
1298 return NULL;
1299 break;
d93a16b8 1300
17615676
LP
1301 case DNS_TYPE_NAPTR: {
1302 _cleanup_free_ char *tt = NULL, *ttt = NULL;
1303
1304 t = octescape(rr->naptr.flags, SIZE_MAX);
1305 if (!t)
1306 return NULL;
1307
1308 tt = octescape(rr->naptr.services, SIZE_MAX);
1309 if (!tt)
1310 return NULL;
1311
1312 ttt = octescape(rr->naptr.regexp, SIZE_MAX);
1313 if (!ttt)
1314 return NULL;
1315
1316 if (asprintf(&s, "%" PRIu16 " %" PRIu16 " \"%s\" \"%s\" \"%s\" %s.",
1317 rr->naptr.order,
1318 rr->naptr.preference,
1319 t,
1320 tt,
1321 ttt,
1322 rr->naptr.replacement) < 0)
1323 return NULL;
1324 break;
1325 }
8db0d2f5 1326 default:
6af47493 1327 /* Format as documented in RFC 3597, Section 5 */
84f788d6
EV
1328 if (rr->generic.data_size == 0)
1329 r = asprintf(&s, "%s \\# 0", k);
1330 else {
1331 t = hexmem(rr->generic.data, rr->generic.data_size);
1332 if (!t)
1333 return NULL;
1334 r = asprintf(&s, "%s \\# %zu %s", k, rr->generic.data_size, t);
1335 }
d23a27a9 1336 if (r < 0)
7b50eb2e 1337 return NULL;
2d4c5cbc 1338 break;
8db0d2f5 1339 }
2d4c5cbc 1340
7b50eb2e 1341 rr->to_string = s;
bc833401 1342 return TAKE_PTR(s);
2d4c5cbc 1343}
322345fd 1344
2e74028a
ZJS
1345ssize_t dns_resource_record_payload(DnsResourceRecord *rr, void **out) {
1346 assert(rr);
1347 assert(out);
1348
79893116 1349 switch (rr->unparsable ? _DNS_TYPE_INVALID : rr->key->type) {
2e74028a
ZJS
1350 case DNS_TYPE_SRV:
1351 case DNS_TYPE_PTR:
1352 case DNS_TYPE_NS:
1353 case DNS_TYPE_CNAME:
1354 case DNS_TYPE_DNAME:
1355 case DNS_TYPE_HINFO:
1356 case DNS_TYPE_SPF:
1357 case DNS_TYPE_TXT:
1358 case DNS_TYPE_A:
1359 case DNS_TYPE_AAAA:
1360 case DNS_TYPE_SOA:
1361 case DNS_TYPE_MX:
1362 case DNS_TYPE_LOC:
1363 case DNS_TYPE_DS:
2e74028a
ZJS
1364 case DNS_TYPE_DNSKEY:
1365 case DNS_TYPE_RRSIG:
1366 case DNS_TYPE_NSEC:
1367 case DNS_TYPE_NSEC3:
1368 return -EINVAL;
1369
e1caa6e0
ZJS
1370 case DNS_TYPE_SSHFP:
1371 *out = rr->sshfp.fingerprint;
1372 return rr->sshfp.fingerprint_size;
1373
2e74028a
ZJS
1374 case DNS_TYPE_TLSA:
1375 *out = rr->tlsa.data;
1376 return rr->tlsa.data_size;
1377
2e74028a
ZJS
1378 case DNS_TYPE_OPENPGPKEY:
1379 default:
1380 *out = rr->generic.data;
1381 return rr->generic.data_size;
1382 }
1383}
1384
a8812dd7
LP
1385int dns_resource_record_to_wire_format(DnsResourceRecord *rr, bool canonical) {
1386
19038903 1387 _cleanup_(dns_packet_unref) DnsPacket packet = {
a8812dd7
LP
1388 .n_ref = 1,
1389 .protocol = DNS_PROTOCOL_DNS,
1390 .on_stack = true,
1391 .refuse_compression = true,
1392 .canonical_form = canonical,
1393 };
1394
1395 size_t start, rds;
1396 int r;
1397
1398 assert(rr);
1399
1400 /* Generates the RR in wire-format, optionally in the
1401 * canonical form as discussed in the DNSSEC RFC 4034, Section
1402 * 6.2. We allocate a throw-away DnsPacket object on the stack
1403 * here, because we need some book-keeping for memory
1404 * management, and can reuse the DnsPacket serializer, that
1405 * can generate the canonical form, too, but also knows label
1406 * compression and suchlike. */
1407
1408 if (rr->wire_format && rr->wire_format_canonical == canonical)
1409 return 0;
1410
58ab31d5 1411 r = dns_packet_append_rr(&packet, rr, 0, &start, &rds);
19038903 1412 if (r < 0)
a8812dd7
LP
1413 return r;
1414
1415 assert(start == 0);
1416 assert(packet._data);
1417
1418 free(rr->wire_format);
f32e44e4 1419 rr->wire_format = TAKE_PTR(packet._data);
a8812dd7
LP
1420 rr->wire_format_size = packet.size;
1421 rr->wire_format_rdata_offset = rds;
1422 rr->wire_format_canonical = canonical;
1423
a8812dd7
LP
1424 return 0;
1425}
1426
97c67192
LP
1427int dns_resource_record_signer(DnsResourceRecord *rr, const char **ret) {
1428 const char *n;
1429 int r;
1430
1431 assert(rr);
1432 assert(ret);
1433
1434 /* Returns the RRset's signer, if it is known. */
1435
98e80bf9 1436 if (rr->n_skip_labels_signer == UINT8_MAX)
97c67192
LP
1437 return -ENODATA;
1438
1c02e7ba 1439 n = dns_resource_key_name(rr->key);
97c67192
LP
1440 r = dns_name_skip(n, rr->n_skip_labels_signer, &n);
1441 if (r < 0)
1442 return r;
1443 if (r == 0)
1444 return -EINVAL;
1445
1446 *ret = n;
1447 return 0;
1448}
1449
1450int dns_resource_record_source(DnsResourceRecord *rr, const char **ret) {
1451 const char *n;
1452 int r;
1453
1454 assert(rr);
1455 assert(ret);
1456
1457 /* Returns the RRset's synthesizing source, if it is known. */
1458
98e80bf9 1459 if (rr->n_skip_labels_source == UINT8_MAX)
97c67192
LP
1460 return -ENODATA;
1461
1c02e7ba 1462 n = dns_resource_key_name(rr->key);
97c67192
LP
1463 r = dns_name_skip(n, rr->n_skip_labels_source, &n);
1464 if (r < 0)
1465 return r;
1466 if (r == 0)
1467 return -EINVAL;
1468
1469 *ret = n;
1470 return 0;
1471}
1472
1473int dns_resource_record_is_signer(DnsResourceRecord *rr, const char *zone) {
1474 const char *signer;
1475 int r;
1476
ab481675
LP
1477 assert(rr);
1478
97c67192
LP
1479 r = dns_resource_record_signer(rr, &signer);
1480 if (r < 0)
1481 return r;
1482
1483 return dns_name_equal(zone, signer);
1484}
1485
ab481675
LP
1486int dns_resource_record_is_synthetic(DnsResourceRecord *rr) {
1487 int r;
1488
1489 assert(rr);
1490
1491 /* Returns > 0 if the RR is generated from a wildcard, and is not the asterisk name itself */
1492
98e80bf9 1493 if (rr->n_skip_labels_source == UINT8_MAX)
ab481675
LP
1494 return -ENODATA;
1495
1496 if (rr->n_skip_labels_source == 0)
1497 return 0;
1498
1499 if (rr->n_skip_labels_source > 1)
1500 return 1;
1501
1c02e7ba 1502 r = dns_name_startswith(dns_resource_key_name(rr->key), "*");
ab481675
LP
1503 if (r < 0)
1504 return r;
1505
1506 return !r;
1507}
1508
7a08d314 1509void dns_resource_record_hash_func(const DnsResourceRecord *rr, struct siphash *state) {
c9c72065
LP
1510 assert(rr);
1511
1512 dns_resource_key_hash_func(rr->key, state);
1513
52e085af 1514 switch (rr->unparsable ? _DNS_TYPE_INVALID : rr->key->type) {
c9c72065
LP
1515
1516 case DNS_TYPE_SRV:
c01a5c05
YW
1517 siphash24_compress_typesafe(rr->srv.priority, state);
1518 siphash24_compress_typesafe(rr->srv.weight, state);
1519 siphash24_compress_typesafe(rr->srv.port, state);
c9c72065
LP
1520 dns_name_hash_func(rr->srv.name, state);
1521 break;
1522
1523 case DNS_TYPE_PTR:
1524 case DNS_TYPE_NS:
1525 case DNS_TYPE_CNAME:
1526 case DNS_TYPE_DNAME:
1527 dns_name_hash_func(rr->ptr.name, state);
1528 break;
1529
1530 case DNS_TYPE_HINFO:
1531 string_hash_func(rr->hinfo.cpu, state);
1532 string_hash_func(rr->hinfo.os, state);
1533 break;
1534
1535 case DNS_TYPE_TXT:
1536 case DNS_TYPE_SPF: {
c9c72065 1537 LIST_FOREACH(items, j, rr->txt.items) {
b652ccca 1538 siphash24_compress_safe(j->data, j->length, state);
c9c72065 1539
d5115566
LP
1540 /* Add an extra NUL byte, so that "a" followed by "b" doesn't result in the same hash as "ab"
1541 * followed by "". */
1542 siphash24_compress_byte(0, state);
c9c72065
LP
1543 }
1544 break;
1545 }
1546
1547 case DNS_TYPE_A:
c01a5c05 1548 siphash24_compress_typesafe(rr->a.in_addr, state);
c9c72065
LP
1549 break;
1550
1551 case DNS_TYPE_AAAA:
c01a5c05 1552 siphash24_compress_typesafe(rr->aaaa.in6_addr, state);
c9c72065
LP
1553 break;
1554
1555 case DNS_TYPE_SOA:
1556 dns_name_hash_func(rr->soa.mname, state);
1557 dns_name_hash_func(rr->soa.rname, state);
c01a5c05
YW
1558 siphash24_compress_typesafe(rr->soa.serial, state);
1559 siphash24_compress_typesafe(rr->soa.refresh, state);
1560 siphash24_compress_typesafe(rr->soa.retry, state);
1561 siphash24_compress_typesafe(rr->soa.expire, state);
1562 siphash24_compress_typesafe(rr->soa.minimum, state);
c9c72065
LP
1563 break;
1564
1565 case DNS_TYPE_MX:
c01a5c05 1566 siphash24_compress_typesafe(rr->mx.priority, state);
c9c72065
LP
1567 dns_name_hash_func(rr->mx.exchange, state);
1568 break;
1569
1570 case DNS_TYPE_LOC:
c01a5c05
YW
1571 siphash24_compress_typesafe(rr->loc.version, state);
1572 siphash24_compress_typesafe(rr->loc.size, state);
1573 siphash24_compress_typesafe(rr->loc.horiz_pre, state);
1574 siphash24_compress_typesafe(rr->loc.vert_pre, state);
1575 siphash24_compress_typesafe(rr->loc.latitude, state);
1576 siphash24_compress_typesafe(rr->loc.longitude, state);
1577 siphash24_compress_typesafe(rr->loc.altitude, state);
c9c72065
LP
1578 break;
1579
1580 case DNS_TYPE_SSHFP:
c01a5c05
YW
1581 siphash24_compress_typesafe(rr->sshfp.algorithm, state);
1582 siphash24_compress_typesafe(rr->sshfp.fptype, state);
b652ccca 1583 siphash24_compress_safe(rr->sshfp.fingerprint, rr->sshfp.fingerprint_size, state);
c9c72065
LP
1584 break;
1585
1586 case DNS_TYPE_DNSKEY:
c01a5c05
YW
1587 siphash24_compress_typesafe(rr->dnskey.flags, state);
1588 siphash24_compress_typesafe(rr->dnskey.protocol, state);
1589 siphash24_compress_typesafe(rr->dnskey.algorithm, state);
b652ccca 1590 siphash24_compress_safe(rr->dnskey.key, rr->dnskey.key_size, state);
c9c72065
LP
1591 break;
1592
1593 case DNS_TYPE_RRSIG:
c01a5c05
YW
1594 siphash24_compress_typesafe(rr->rrsig.type_covered, state);
1595 siphash24_compress_typesafe(rr->rrsig.algorithm, state);
1596 siphash24_compress_typesafe(rr->rrsig.labels, state);
1597 siphash24_compress_typesafe(rr->rrsig.original_ttl, state);
1598 siphash24_compress_typesafe(rr->rrsig.expiration, state);
1599 siphash24_compress_typesafe(rr->rrsig.inception, state);
1600 siphash24_compress_typesafe(rr->rrsig.key_tag, state);
c9c72065 1601 dns_name_hash_func(rr->rrsig.signer, state);
b652ccca 1602 siphash24_compress_safe(rr->rrsig.signature, rr->rrsig.signature_size, state);
c9c72065
LP
1603 break;
1604
1605 case DNS_TYPE_NSEC:
1606 dns_name_hash_func(rr->nsec.next_domain_name, state);
1607 /* FIXME: we leave out the type bitmap here. Hash
1608 * would be better if we'd take it into account
1609 * too. */
1610 break;
1611
1612 case DNS_TYPE_DS:
c01a5c05
YW
1613 siphash24_compress_typesafe(rr->ds.key_tag, state);
1614 siphash24_compress_typesafe(rr->ds.algorithm, state);
1615 siphash24_compress_typesafe(rr->ds.digest_type, state);
b652ccca 1616 siphash24_compress_safe(rr->ds.digest, rr->ds.digest_size, state);
c9c72065
LP
1617 break;
1618
1619 case DNS_TYPE_NSEC3:
c01a5c05
YW
1620 siphash24_compress_typesafe(rr->nsec3.algorithm, state);
1621 siphash24_compress_typesafe(rr->nsec3.flags, state);
1622 siphash24_compress_typesafe(rr->nsec3.iterations, state);
b652ccca
YW
1623 siphash24_compress_safe(rr->nsec3.salt, rr->nsec3.salt_size, state);
1624 siphash24_compress_safe(rr->nsec3.next_hashed_name, rr->nsec3.next_hashed_name_size, state);
c9c72065
LP
1625 /* FIXME: We leave the bitmaps out */
1626 break;
48d45d2b
ZJS
1627
1628 case DNS_TYPE_TLSA:
c01a5c05
YW
1629 siphash24_compress_typesafe(rr->tlsa.cert_usage, state);
1630 siphash24_compress_typesafe(rr->tlsa.selector, state);
1631 siphash24_compress_typesafe(rr->tlsa.matching_type, state);
b652ccca 1632 siphash24_compress_safe(rr->tlsa.data, rr->tlsa.data_size, state);
48d45d2b 1633 break;
c9c72065 1634
e7634d6b
RP
1635 case DNS_TYPE_SVCB:
1636 case DNS_TYPE_HTTPS:
1637 dns_name_hash_func(rr->svcb.target_name, state);
1638 siphash24_compress_typesafe(rr->svcb.priority, state);
1639 LIST_FOREACH(params, j, rr->svcb.params) {
1640 siphash24_compress_typesafe(j->key, state);
1641 siphash24_compress_safe(j->value, j->length, state);
1642 }
1643 break;
1644
95052df3 1645 case DNS_TYPE_CAA:
c01a5c05 1646 siphash24_compress_typesafe(rr->caa.flags, state);
95052df3 1647 string_hash_func(rr->caa.tag, state);
b652ccca 1648 siphash24_compress_safe(rr->caa.value, rr->caa.value_size, state);
48d45d2b 1649 break;
c9c72065 1650
17615676
LP
1651 case DNS_TYPE_NAPTR:
1652 siphash24_compress_typesafe(rr->naptr.order, state);
1653 siphash24_compress_typesafe(rr->naptr.preference, state);
1654 string_hash_func(rr->naptr.flags, state);
1655 string_hash_func(rr->naptr.services, state);
1656 string_hash_func(rr->naptr.regexp, state);
1657 dns_name_hash_func(rr->naptr.replacement, state);
1658 break;
1659
d93a16b8 1660 case DNS_TYPE_OPENPGPKEY:
c9c72065 1661 default:
b652ccca 1662 siphash24_compress_safe(rr->generic.data, rr->generic.data_size, state);
c9c72065
LP
1663 break;
1664 }
1665}
1666
ae45e1a3 1667int dns_resource_record_compare_func(const DnsResourceRecord *x, const DnsResourceRecord *y) {
7a08d314 1668 int r;
c9c72065 1669
7a08d314
YW
1670 r = dns_resource_key_compare_func(x->key, y->key);
1671 if (r != 0)
1672 return r;
c9c72065 1673
cd70fc37 1674 if (dns_resource_record_payload_equal(x, y) > 0)
c9c72065
LP
1675 return 0;
1676
53c5797f
FB
1677 /* We still use CMP() here, even though don't implement proper
1678 * ordering, since the hashtable doesn't need ordering anyway. */
1679 return CMP(x, y);
c9c72065
LP
1680}
1681
7a08d314 1682DEFINE_HASH_OPS(dns_resource_record_hash_ops, DnsResourceRecord, dns_resource_record_hash_func, dns_resource_record_compare_func);
c9c72065 1683
17c8de63
LP
1684DnsResourceRecord *dns_resource_record_copy(DnsResourceRecord *rr) {
1685 _cleanup_(dns_resource_record_unrefp) DnsResourceRecord *copy = NULL;
1686 DnsResourceRecord *t;
1687
1688 assert(rr);
1689
1690 copy = dns_resource_record_new(rr->key);
1691 if (!copy)
1692 return NULL;
1693
1694 copy->ttl = rr->ttl;
1695 copy->expiry = rr->expiry;
1696 copy->n_skip_labels_signer = rr->n_skip_labels_signer;
1697 copy->n_skip_labels_source = rr->n_skip_labels_source;
52e085af 1698 copy->unparsable = rr->unparsable;
17c8de63 1699
52e085af 1700 switch (rr->unparsable ? _DNS_TYPE_INVALID : rr->key->type) {
17c8de63
LP
1701
1702 case DNS_TYPE_SRV:
1703 copy->srv.priority = rr->srv.priority;
1704 copy->srv.weight = rr->srv.weight;
1705 copy->srv.port = rr->srv.port;
1706 copy->srv.name = strdup(rr->srv.name);
1707 if (!copy->srv.name)
1708 return NULL;
1709 break;
1710
1711 case DNS_TYPE_PTR:
1712 case DNS_TYPE_NS:
1713 case DNS_TYPE_CNAME:
1714 case DNS_TYPE_DNAME:
1715 copy->ptr.name = strdup(rr->ptr.name);
1716 if (!copy->ptr.name)
1717 return NULL;
1718 break;
1719
1720 case DNS_TYPE_HINFO:
1721 copy->hinfo.cpu = strdup(rr->hinfo.cpu);
1722 if (!copy->hinfo.cpu)
1723 return NULL;
1724
1725 copy->hinfo.os = strdup(rr->hinfo.os);
508f63b4 1726 if (!copy->hinfo.os)
17c8de63
LP
1727 return NULL;
1728 break;
1729
1730 case DNS_TYPE_TXT:
1731 case DNS_TYPE_SPF:
1732 copy->txt.items = dns_txt_item_copy(rr->txt.items);
1733 if (!copy->txt.items)
1734 return NULL;
1735 break;
1736
1737 case DNS_TYPE_A:
1738 copy->a = rr->a;
1739 break;
1740
1741 case DNS_TYPE_AAAA:
1742 copy->aaaa = rr->aaaa;
1743 break;
1744
1745 case DNS_TYPE_SOA:
1746 copy->soa.mname = strdup(rr->soa.mname);
1747 if (!copy->soa.mname)
1748 return NULL;
1749 copy->soa.rname = strdup(rr->soa.rname);
1750 if (!copy->soa.rname)
1751 return NULL;
1752 copy->soa.serial = rr->soa.serial;
1753 copy->soa.refresh = rr->soa.refresh;
1754 copy->soa.retry = rr->soa.retry;
1755 copy->soa.expire = rr->soa.expire;
1756 copy->soa.minimum = rr->soa.minimum;
1757 break;
1758
1759 case DNS_TYPE_MX:
1760 copy->mx.priority = rr->mx.priority;
1761 copy->mx.exchange = strdup(rr->mx.exchange);
1762 if (!copy->mx.exchange)
1763 return NULL;
1764 break;
1765
1766 case DNS_TYPE_LOC:
1767 copy->loc = rr->loc;
1768 break;
1769
1770 case DNS_TYPE_SSHFP:
1771 copy->sshfp.algorithm = rr->sshfp.algorithm;
1772 copy->sshfp.fptype = rr->sshfp.fptype;
1773 copy->sshfp.fingerprint = memdup(rr->sshfp.fingerprint, rr->sshfp.fingerprint_size);
1774 if (!copy->sshfp.fingerprint)
1775 return NULL;
1776 copy->sshfp.fingerprint_size = rr->sshfp.fingerprint_size;
1777 break;
1778
1779 case DNS_TYPE_DNSKEY:
1780 copy->dnskey.flags = rr->dnskey.flags;
1781 copy->dnskey.protocol = rr->dnskey.protocol;
1782 copy->dnskey.algorithm = rr->dnskey.algorithm;
1783 copy->dnskey.key = memdup(rr->dnskey.key, rr->dnskey.key_size);
1784 if (!copy->dnskey.key)
1785 return NULL;
1786 copy->dnskey.key_size = rr->dnskey.key_size;
1787 break;
1788
1789 case DNS_TYPE_RRSIG:
1790 copy->rrsig.type_covered = rr->rrsig.type_covered;
1791 copy->rrsig.algorithm = rr->rrsig.algorithm;
1792 copy->rrsig.labels = rr->rrsig.labels;
1793 copy->rrsig.original_ttl = rr->rrsig.original_ttl;
1794 copy->rrsig.expiration = rr->rrsig.expiration;
1795 copy->rrsig.inception = rr->rrsig.inception;
1796 copy->rrsig.key_tag = rr->rrsig.key_tag;
1797 copy->rrsig.signer = strdup(rr->rrsig.signer);
1798 if (!copy->rrsig.signer)
1799 return NULL;
1800 copy->rrsig.signature = memdup(rr->rrsig.signature, rr->rrsig.signature_size);
1801 if (!copy->rrsig.signature)
1802 return NULL;
1803 copy->rrsig.signature_size = rr->rrsig.signature_size;
1804 break;
1805
1806 case DNS_TYPE_NSEC:
1807 copy->nsec.next_domain_name = strdup(rr->nsec.next_domain_name);
1808 if (!copy->nsec.next_domain_name)
1809 return NULL;
1f00a50c
AT
1810 if (rr->nsec.types) {
1811 copy->nsec.types = bitmap_copy(rr->nsec.types);
1812 if (!copy->nsec.types)
1813 return NULL;
1814 }
17c8de63
LP
1815 break;
1816
1817 case DNS_TYPE_DS:
1818 copy->ds.key_tag = rr->ds.key_tag;
1819 copy->ds.algorithm = rr->ds.algorithm;
1820 copy->ds.digest_type = rr->ds.digest_type;
1821 copy->ds.digest = memdup(rr->ds.digest, rr->ds.digest_size);
1822 if (!copy->ds.digest)
1823 return NULL;
1824 copy->ds.digest_size = rr->ds.digest_size;
1825 break;
1826
1827 case DNS_TYPE_NSEC3:
1828 copy->nsec3.algorithm = rr->nsec3.algorithm;
1829 copy->nsec3.flags = rr->nsec3.flags;
1830 copy->nsec3.iterations = rr->nsec3.iterations;
1831 copy->nsec3.salt = memdup(rr->nsec3.salt, rr->nsec3.salt_size);
1832 if (!copy->nsec3.salt)
1833 return NULL;
1834 copy->nsec3.salt_size = rr->nsec3.salt_size;
1835 copy->nsec3.next_hashed_name = memdup(rr->nsec3.next_hashed_name, rr->nsec3.next_hashed_name_size);
a63a1252 1836 if (!copy->nsec3.next_hashed_name)
17c8de63
LP
1837 return NULL;
1838 copy->nsec3.next_hashed_name_size = rr->nsec3.next_hashed_name_size;
1f00a50c
AT
1839 if (rr->nsec3.types) {
1840 copy->nsec3.types = bitmap_copy(rr->nsec3.types);
1841 if (!copy->nsec3.types)
1842 return NULL;
1843 }
17c8de63
LP
1844 break;
1845
1846 case DNS_TYPE_TLSA:
1847 copy->tlsa.cert_usage = rr->tlsa.cert_usage;
1848 copy->tlsa.selector = rr->tlsa.selector;
1849 copy->tlsa.matching_type = rr->tlsa.matching_type;
1850 copy->tlsa.data = memdup(rr->tlsa.data, rr->tlsa.data_size);
1851 if (!copy->tlsa.data)
1852 return NULL;
1853 copy->tlsa.data_size = rr->tlsa.data_size;
1854 break;
1855
1856 case DNS_TYPE_CAA:
1857 copy->caa.flags = rr->caa.flags;
1858 copy->caa.tag = strdup(rr->caa.tag);
1859 if (!copy->caa.tag)
1860 return NULL;
1861 copy->caa.value = memdup(rr->caa.value, rr->caa.value_size);
1862 if (!copy->caa.value)
1863 return NULL;
1864 copy->caa.value_size = rr->caa.value_size;
1865 break;
1866
e7634d6b
RP
1867 case DNS_TYPE_SVCB:
1868 case DNS_TYPE_HTTPS:
1869 copy->svcb.priority = rr->svcb.priority;
1870 copy->svcb.target_name = strdup(rr->svcb.target_name);
1871 if (!copy->svcb.target_name)
1872 return NULL;
1873 copy->svcb.params = dns_svc_params_copy(rr->svcb.params);
1874 if (rr->svcb.params && !copy->svcb.params)
1875 return NULL;
1876 break;
1877
17615676
LP
1878 case DNS_TYPE_NAPTR:
1879 copy->naptr.order = rr->naptr.order;
1880 copy->naptr.preference = rr->naptr.preference;
1881 copy->naptr.flags = strdup(rr->naptr.flags);
1882 if (!copy->naptr.flags)
1883 return NULL;
1884 copy->naptr.services = strdup(rr->naptr.services);
1885 if (!copy->naptr.services)
1886 return NULL;
1887 copy->naptr.regexp = strdup(rr->naptr.regexp);
1888 if (!copy->naptr.regexp)
1889 return NULL;
1890 copy->naptr.replacement = strdup(rr->naptr.replacement);
1891 if (!copy->naptr.replacement)
1892 return NULL;
1893 break;
1894
17c8de63
LP
1895 case DNS_TYPE_OPT:
1896 default:
1897 copy->generic.data = memdup(rr->generic.data, rr->generic.data_size);
1898 if (!copy->generic.data)
1899 return NULL;
1900 copy->generic.data_size = rr->generic.data_size;
1901 break;
1902 }
1903
1cc6c93a 1904 t = TAKE_PTR(copy);
17c8de63
LP
1905
1906 return t;
1907}
1908
1909int dns_resource_record_clamp_ttl(DnsResourceRecord **rr, uint32_t max_ttl) {
1910 DnsResourceRecord *old_rr, *new_rr;
1911 uint32_t new_ttl;
1912
1913 assert(rr);
1914 old_rr = *rr;
1915
1916 if (old_rr->key->type == DNS_TYPE_OPT)
1917 return -EINVAL;
1918
1919 new_ttl = MIN(old_rr->ttl, max_ttl);
1920 if (new_ttl == old_rr->ttl)
1921 return 0;
1922
1923 if (old_rr->n_ref == 1) {
1924 /* Patch in place */
1925 old_rr->ttl = new_ttl;
1926 return 1;
1927 }
1928
1929 new_rr = dns_resource_record_copy(old_rr);
1930 if (!new_rr)
1931 return -ENOMEM;
1932
1933 new_rr->ttl = new_ttl;
1934
7daeec3e 1935 DNS_RR_REPLACE(*rr, new_rr);
17c8de63
LP
1936 return 1;
1937}
1938
48662847 1939bool dns_resource_record_is_link_local_address(DnsResourceRecord *rr) {
d1f8fbea 1940 assert(rr);
48662847
LP
1941
1942 if (rr->key->class != DNS_CLASS_IN)
1943 return false;
1944
1945 if (rr->key->type == DNS_TYPE_A)
1946 return in4_addr_is_link_local(&rr->a.in_addr);
1947
1948 if (rr->key->type == DNS_TYPE_AAAA)
94876904 1949 return in6_addr_is_link_local(&rr->aaaa.in6_addr);
48662847
LP
1950
1951 return false;
1952}
1953
d1f8fbea
LP
1954int dns_resource_record_get_cname_target(DnsResourceKey *key, DnsResourceRecord *cname, char **ret) {
1955 _cleanup_free_ char *d = NULL;
1956 int r;
1957
1958 assert(key);
1959 assert(cname);
1960
d2995826
LP
1961 /* Checks if the RR `cname` is a CNAME/DNAME RR that matches the specified `key`. If so, returns the
1962 * target domain. If not, returns -EUNATCH */
1963
d1f8fbea
LP
1964 if (key->class != cname->key->class && key->class != DNS_CLASS_ANY)
1965 return -EUNATCH;
1966
d2995826
LP
1967 if (!dns_type_may_redirect(key->type)) /* This key type is not subject to CNAME/DNAME redirection?
1968 * Then let's refuse right-away */
1969 return -EUNATCH;
1970
d1f8fbea
LP
1971 if (cname->key->type == DNS_TYPE_CNAME) {
1972 r = dns_name_equal(dns_resource_key_name(key),
1973 dns_resource_key_name(cname->key));
1974 if (r < 0)
1975 return r;
1976 if (r == 0)
1977 return -EUNATCH; /* CNAME RR key doesn't actually match the original key */
1978
1979 d = strdup(cname->cname.name);
1980 if (!d)
1981 return -ENOMEM;
1982
1983 } else if (cname->key->type == DNS_TYPE_DNAME) {
1984
1985 r = dns_name_change_suffix(
1986 dns_resource_key_name(key),
1987 dns_resource_key_name(cname->key),
1988 cname->dname.name,
1989 &d);
1990 if (r < 0)
1991 return r;
1992 if (r == 0)
1993 return -EUNATCH; /* DNAME RR key doesn't actually match the original key */
1994
1995 } else
1996 return -EUNATCH; /* Not a CNAME/DNAME RR, hence doesn't match the proposition either */
1997
1998 *ret = TAKE_PTR(d);
1999 return 0;
2000}
2001
494ef167
YW
2002DnsTxtItem *dns_txt_item_free_all(DnsTxtItem *first) {
2003 LIST_FOREACH(items, i, first)
2004 free(i);
2001c805 2005
494ef167 2006 return NULL;
2001c805
LP
2007}
2008
e7634d6b
RP
2009DnsSvcParam *dns_svc_param_free_all(DnsSvcParam *first) {
2010 LIST_FOREACH(params, i, first)
2011 free(i);
2012
2013 return NULL;
2014}
2015
2001c805 2016bool dns_txt_item_equal(DnsTxtItem *a, DnsTxtItem *b) {
494ef167 2017 DnsTxtItem *bb = b;
2001c805 2018
4d247a6c
LP
2019 if (a == b)
2020 return true;
2021
494ef167
YW
2022 LIST_FOREACH(items, aa, a) {
2023 if (!bb)
2024 return false;
2001c805 2025
494ef167
YW
2026 if (memcmp_nn(aa->data, aa->length, bb->data, bb->length) != 0)
2027 return false;
2001c805 2028
494ef167
YW
2029 bb = bb->items_next;
2030 }
2001c805 2031
494ef167 2032 return !bb;
2001c805 2033}
8730bccf 2034
17c8de63 2035DnsTxtItem *dns_txt_item_copy(DnsTxtItem *first) {
03677889 2036 DnsTxtItem *copy = NULL, *end = NULL;
17c8de63
LP
2037
2038 LIST_FOREACH(items, i, first) {
2039 DnsTxtItem *j;
2040
2041 j = memdup(i, offsetof(DnsTxtItem, data) + i->length + 1);
14822ede
YW
2042 if (!j)
2043 return dns_txt_item_free_all(copy);
17c8de63
LP
2044
2045 LIST_INSERT_AFTER(items, copy, end, j);
2046 end = j;
2047 }
2048
2049 return copy;
2050}
2051
e7634d6b
RP
2052bool dns_svc_params_equal(DnsSvcParam *a, DnsSvcParam *b) {
2053 DnsSvcParam *bb = b;
2054
2055 if (a == b)
2056 return true;
2057
2058 LIST_FOREACH(params, aa, a) {
2059 if (!bb)
2060 return false;
2061
2062 if (aa->key != bb->key)
2063 return false;
2064
2065 if (memcmp_nn(aa->value, aa->length, bb->value, bb->length) != 0)
2066 return false;
2067
2068 bb = bb->params_next;
2069 }
2070
2071 return !bb;
2072}
2073
2074DnsSvcParam *dns_svc_params_copy(DnsSvcParam *first) {
2075 DnsSvcParam *copy = NULL, *end = NULL;
2076
2077 LIST_FOREACH(params, i, first) {
2078 DnsSvcParam *j;
2079
2080 j = memdup(i, offsetof(DnsSvcParam, value) + i->length);
2081 if (!j)
2082 return dns_svc_param_free_all(copy);
2083
2084 LIST_INSERT_AFTER(params, copy, end, j);
2085 end = j;
2086 }
2087
2088 return copy;
2089}
2090
ebb779dc
DR
2091int dns_txt_item_new_empty(DnsTxtItem **ret) {
2092 DnsTxtItem *i;
2093
068ef623
YW
2094 assert(ret);
2095
ebb779dc
DR
2096 /* RFC 6763, section 6.1 suggests to treat
2097 * empty TXT RRs as equivalent to a TXT record
2098 * with a single empty string. */
2099
2100 i = malloc0(offsetof(DnsTxtItem, data) + 1); /* for safety reasons we add an extra NUL byte */
2101 if (!i)
2102 return -ENOMEM;
2103
2104 *ret = i;
ebb779dc
DR
2105 return 0;
2106}
2107
ab26cdf7
LP
2108int dns_resource_record_new_from_raw(DnsResourceRecord **ret, const void *data, size_t size) {
2109 _cleanup_(dns_packet_unrefp) DnsPacket *p = NULL;
2110 int r;
2111
2112 r = dns_packet_new(&p, DNS_PROTOCOL_DNS, 0, DNS_PACKET_SIZE_MAX);
2113 if (r < 0)
2114 return r;
2115
2116 p->refuse_compression = true;
2117
2118 r = dns_packet_append_blob(p, data, size, NULL);
2119 if (r < 0)
2120 return r;
2121
2122 return dns_packet_read_rr(p, ret, NULL, NULL);
2123}
2124
1482c86a
LP
2125int dns_resource_key_to_json(DnsResourceKey *key, JsonVariant **ret) {
2126 assert(key);
2127 assert(ret);
2128
2129 return json_build(ret,
2130 JSON_BUILD_OBJECT(
2131 JSON_BUILD_PAIR("class", JSON_BUILD_INTEGER(key->class)),
2132 JSON_BUILD_PAIR("type", JSON_BUILD_INTEGER(key->type)),
2133 JSON_BUILD_PAIR("name", JSON_BUILD_STRING(dns_resource_key_name(key)))));
2134}
2135
ce74fb09
LP
2136int dns_resource_key_from_json(JsonVariant *v, DnsResourceKey **ret) {
2137 _cleanup_(dns_resource_key_unrefp) DnsResourceKey *key = NULL;
2138 uint16_t type = 0, class = 0;
2139 const char *name = NULL;
2140 int r;
2141
2142 JsonDispatch dispatch_table[] = {
9942f855
LP
2143 { "class", _JSON_VARIANT_TYPE_INVALID, json_dispatch_uint16, PTR_TO_SIZE(&class), JSON_MANDATORY },
2144 { "type", _JSON_VARIANT_TYPE_INVALID, json_dispatch_uint16, PTR_TO_SIZE(&type), JSON_MANDATORY },
2145 { "name", JSON_VARIANT_STRING, json_dispatch_const_string, PTR_TO_SIZE(&name), JSON_MANDATORY },
ce74fb09
LP
2146 {}
2147 };
2148
2149 assert(v);
2150 assert(ret);
2151
f1b622a0 2152 r = json_dispatch(v, dispatch_table, 0, NULL);
ce74fb09
LP
2153 if (r < 0)
2154 return r;
2155
2156 key = dns_resource_key_new(class, type, name);
2157 if (!key)
2158 return -ENOMEM;
2159
2160 *ret = TAKE_PTR(key);
2161 return 0;
2162}
2163
1482c86a
LP
2164static int type_bitmap_to_json(Bitmap *b, JsonVariant **ret) {
2165 _cleanup_(json_variant_unrefp) JsonVariant *l = NULL;
2166 unsigned t;
2167 int r;
2168
1482c86a
LP
2169 assert(ret);
2170
2171 BITMAP_FOREACH(t, b) {
2172 _cleanup_(json_variant_unrefp) JsonVariant *v = NULL;
2173
2174 r = json_variant_new_unsigned(&v, t);
2175 if (r < 0)
2176 return r;
2177
2178 r = json_variant_append_array(&l, v);
2179 if (r < 0)
2180 return r;
2181 }
2182
2183 if (!l)
2184 return json_variant_new_array(ret, NULL, 0);
2185
2186 *ret = TAKE_PTR(l);
2187 return 0;
2188}
2189
b9152f2d
YW
2190static int txt_to_json(DnsTxtItem *items, JsonVariant **ret) {
2191 JsonVariant **elements = NULL;
2192 size_t n = 0;
2193 int r;
2194
2195 assert(ret);
2196
2197 LIST_FOREACH(items, i, items) {
2198 if (!GREEDY_REALLOC(elements, n + 1)) {
2199 r = -ENOMEM;
2200 goto finalize;
2201 }
2202
2203 r = json_variant_new_octescape(elements + n, i->data, i->length);
2204 if (r < 0)
2205 goto finalize;
2206
2207 n++;
2208 }
2209
2210 r = json_variant_new_array(ret, elements, n);
2211
2212finalize:
9c331dc3
RP
2213 json_variant_unref_many(elements, n);
2214 return r;
2215}
2216
2217static int svc_params_to_json(DnsSvcParam *params, JsonVariant **ret) {
2218 JsonVariant **elements = NULL;
2219 size_t n = 0;
2220 int r;
2221
2222 assert(ret);
2223
2224 LIST_FOREACH(params, i, params) {
2225 if (!GREEDY_REALLOC(elements, n + 1)) {
2226 r = -ENOMEM;
2227 goto finalize;
2228 }
2229
2230 r = json_variant_new_base64(elements + n, i->value, i->length);
2231 if (r < 0)
2232 goto finalize;
2233
2234 n++;
2235 }
b9152f2d 2236
9c331dc3
RP
2237 r = json_variant_new_array(ret, elements, n);
2238finalize:
2239 json_variant_unref_many(elements, n);
b9152f2d
YW
2240 return r;
2241}
2242
1482c86a
LP
2243int dns_resource_record_to_json(DnsResourceRecord *rr, JsonVariant **ret) {
2244 _cleanup_(json_variant_unrefp) JsonVariant *k = NULL;
2245 int r;
2246
2247 assert(rr);
2248 assert(ret);
2249
2250 r = dns_resource_key_to_json(rr->key, &k);
2251 if (r < 0)
2252 return r;
2253
2254 switch (rr->unparsable ? _DNS_TYPE_INVALID : rr->key->type) {
2255
2256 case DNS_TYPE_SRV:
2257 return json_build(ret,
2258 JSON_BUILD_OBJECT(
2259 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2260 JSON_BUILD_PAIR("priority", JSON_BUILD_UNSIGNED(rr->srv.priority)),
2261 JSON_BUILD_PAIR("weight", JSON_BUILD_UNSIGNED(rr->srv.weight)),
2262 JSON_BUILD_PAIR("port", JSON_BUILD_UNSIGNED(rr->srv.port)),
2263 JSON_BUILD_PAIR("name", JSON_BUILD_STRING(rr->srv.name))));
2264
2265 case DNS_TYPE_PTR:
2266 case DNS_TYPE_NS:
2267 case DNS_TYPE_CNAME:
2268 case DNS_TYPE_DNAME:
2269 return json_build(ret,
2270 JSON_BUILD_OBJECT(
2271 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2272 JSON_BUILD_PAIR("name", JSON_BUILD_STRING(rr->ptr.name))));
2273
2274 case DNS_TYPE_HINFO:
2275 return json_build(ret,
2276 JSON_BUILD_OBJECT(
2277 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2278 JSON_BUILD_PAIR("cpu", JSON_BUILD_STRING(rr->hinfo.cpu)),
2279 JSON_BUILD_PAIR("os", JSON_BUILD_STRING(rr->hinfo.os))));
2280
2281 case DNS_TYPE_SPF:
2282 case DNS_TYPE_TXT: {
2283 _cleanup_(json_variant_unrefp) JsonVariant *l = NULL;
2284
b9152f2d
YW
2285 r = txt_to_json(rr->txt.items, &l);
2286 if (r < 0)
2287 return r;
1482c86a
LP
2288
2289 return json_build(ret,
2290 JSON_BUILD_OBJECT(
2291 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2292 JSON_BUILD_PAIR("items", JSON_BUILD_VARIANT(l))));
2293 }
2294
2295 case DNS_TYPE_A:
2296 return json_build(ret,
2297 JSON_BUILD_OBJECT(
2298 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2299 JSON_BUILD_PAIR("address", JSON_BUILD_IN4_ADDR(&rr->a.in_addr))));
2300
2301 case DNS_TYPE_AAAA:
2302 return json_build(ret,
2303 JSON_BUILD_OBJECT(
2304 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2305 JSON_BUILD_PAIR("address", JSON_BUILD_IN6_ADDR(&rr->aaaa.in6_addr))));
2306
2307 case DNS_TYPE_SOA:
2308 return json_build(ret,
2309 JSON_BUILD_OBJECT(
2310 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2311 JSON_BUILD_PAIR("mname", JSON_BUILD_STRING(rr->soa.mname)),
2312 JSON_BUILD_PAIR("rname", JSON_BUILD_STRING(rr->soa.rname)),
2313 JSON_BUILD_PAIR("serial", JSON_BUILD_UNSIGNED(rr->soa.serial)),
2314 JSON_BUILD_PAIR("refresh", JSON_BUILD_UNSIGNED(rr->soa.refresh)),
2315 JSON_BUILD_PAIR("expire", JSON_BUILD_UNSIGNED(rr->soa.retry)),
2316 JSON_BUILD_PAIR("minimum", JSON_BUILD_UNSIGNED(rr->soa.minimum))));
2317
2318 case DNS_TYPE_MX:
2319 return json_build(ret,
2320 JSON_BUILD_OBJECT(
2321 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2322 JSON_BUILD_PAIR("priority", JSON_BUILD_UNSIGNED(rr->mx.priority)),
2323 JSON_BUILD_PAIR("exchange", JSON_BUILD_STRING(rr->mx.exchange))));
2324 case DNS_TYPE_LOC:
2325 return json_build(ret,
2326 JSON_BUILD_OBJECT(
2327 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2328 JSON_BUILD_PAIR("version", JSON_BUILD_UNSIGNED(rr->loc.version)),
2329 JSON_BUILD_PAIR("size", JSON_BUILD_UNSIGNED(rr->loc.size)),
2330 JSON_BUILD_PAIR("horiz_pre", JSON_BUILD_UNSIGNED(rr->loc.horiz_pre)),
2331 JSON_BUILD_PAIR("vert_pre", JSON_BUILD_UNSIGNED(rr->loc.vert_pre)),
2332 JSON_BUILD_PAIR("latitude", JSON_BUILD_UNSIGNED(rr->loc.latitude)),
2333 JSON_BUILD_PAIR("longitude", JSON_BUILD_UNSIGNED(rr->loc.longitude)),
2334 JSON_BUILD_PAIR("altitude", JSON_BUILD_UNSIGNED(rr->loc.altitude))));
2335
2336 case DNS_TYPE_DS:
2337 return json_build(ret,
2338 JSON_BUILD_OBJECT(
2339 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2340 JSON_BUILD_PAIR("keyTag", JSON_BUILD_UNSIGNED(rr->ds.key_tag)),
2341 JSON_BUILD_PAIR("algorithm", JSON_BUILD_UNSIGNED(rr->ds.algorithm)),
2342 JSON_BUILD_PAIR("digestType", JSON_BUILD_UNSIGNED(rr->ds.digest_type)),
2343 JSON_BUILD_PAIR("digest", JSON_BUILD_HEX(rr->ds.digest, rr->ds.digest_size))));
2344
2345 case DNS_TYPE_SSHFP:
2346 return json_build(ret,
2347 JSON_BUILD_OBJECT(
2348 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2349 JSON_BUILD_PAIR("algorithm", JSON_BUILD_UNSIGNED(rr->sshfp.algorithm)),
2350 JSON_BUILD_PAIR("fptype", JSON_BUILD_UNSIGNED(rr->sshfp.fptype)),
2351 JSON_BUILD_PAIR("fingerprint", JSON_BUILD_HEX(rr->sshfp.fingerprint, rr->sshfp.fingerprint_size))));
2352
2353 case DNS_TYPE_DNSKEY:
2354 return json_build(ret,
2355 JSON_BUILD_OBJECT(
2356 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2357 JSON_BUILD_PAIR("flags", JSON_BUILD_UNSIGNED(rr->dnskey.flags)),
2358 JSON_BUILD_PAIR("protocol", JSON_BUILD_UNSIGNED(rr->dnskey.protocol)),
2359 JSON_BUILD_PAIR("algorithm", JSON_BUILD_UNSIGNED(rr->dnskey.algorithm)),
2360 JSON_BUILD_PAIR("dnskey", JSON_BUILD_BASE64(rr->dnskey.key, rr->dnskey.key_size))));
2361
2362
2363 case DNS_TYPE_RRSIG:
2364 return json_build(ret,
2365 JSON_BUILD_OBJECT(
2366 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2367 JSON_BUILD_PAIR("signer", JSON_BUILD_STRING(rr->rrsig.signer)),
2368 JSON_BUILD_PAIR("typeCovered", JSON_BUILD_UNSIGNED(rr->rrsig.type_covered)),
2369 JSON_BUILD_PAIR("algorithm", JSON_BUILD_UNSIGNED(rr->rrsig.algorithm)),
2370 JSON_BUILD_PAIR("labels", JSON_BUILD_UNSIGNED(rr->rrsig.labels)),
2371 JSON_BUILD_PAIR("originalTtl", JSON_BUILD_UNSIGNED(rr->rrsig.original_ttl)),
2372 JSON_BUILD_PAIR("expiration", JSON_BUILD_UNSIGNED(rr->rrsig.expiration)),
2373 JSON_BUILD_PAIR("inception", JSON_BUILD_UNSIGNED(rr->rrsig.inception)),
2374 JSON_BUILD_PAIR("keyTag", JSON_BUILD_UNSIGNED(rr->rrsig.key_tag)),
2375 JSON_BUILD_PAIR("signature", JSON_BUILD_BASE64(rr->rrsig.signature, rr->rrsig.signature_size))));
2376
2377 case DNS_TYPE_NSEC: {
2378 _cleanup_(json_variant_unrefp) JsonVariant *bm = NULL;
2379
2380 r = type_bitmap_to_json(rr->nsec.types, &bm);
2381 if (r < 0)
2382 return r;
2383
2384 return json_build(ret,
2385 JSON_BUILD_OBJECT(
2386 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2387 JSON_BUILD_PAIR("nextDomain", JSON_BUILD_STRING(rr->nsec.next_domain_name)),
2388 JSON_BUILD_PAIR("types", JSON_BUILD_VARIANT(bm))));
2389 }
2390
2391 case DNS_TYPE_NSEC3: {
2392 _cleanup_(json_variant_unrefp) JsonVariant *bm = NULL;
2393
2394 r = type_bitmap_to_json(rr->nsec3.types, &bm);
2395 if (r < 0)
2396 return r;
2397
2398 return json_build(ret,
2399 JSON_BUILD_OBJECT(
2400 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2401 JSON_BUILD_PAIR("algorithm", JSON_BUILD_UNSIGNED(rr->nsec3.algorithm)),
2402 JSON_BUILD_PAIR("flags", JSON_BUILD_UNSIGNED(rr->nsec3.flags)),
2403 JSON_BUILD_PAIR("iterations", JSON_BUILD_UNSIGNED(rr->nsec3.iterations)),
2404 JSON_BUILD_PAIR("salt", JSON_BUILD_HEX(rr->nsec3.salt, rr->nsec3.salt_size)),
2405 JSON_BUILD_PAIR("hash", JSON_BUILD_BASE32HEX(rr->nsec3.next_hashed_name, rr->nsec3.next_hashed_name_size)),
2406 JSON_BUILD_PAIR("types", JSON_BUILD_VARIANT(bm))));
2407 }
2408
2409 case DNS_TYPE_TLSA:
2410 return json_build(ret,
2411 JSON_BUILD_OBJECT(
2412 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2413 JSON_BUILD_PAIR("certUsage", JSON_BUILD_UNSIGNED(rr->tlsa.cert_usage)),
2414 JSON_BUILD_PAIR("selector", JSON_BUILD_UNSIGNED(rr->tlsa.selector)),
2415 JSON_BUILD_PAIR("matchingType", JSON_BUILD_UNSIGNED(rr->tlsa.matching_type)),
2416 JSON_BUILD_PAIR("data", JSON_BUILD_HEX(rr->tlsa.data, rr->tlsa.data_size))));
2417
9c331dc3
RP
2418 case DNS_TYPE_SVCB:
2419 case DNS_TYPE_HTTPS: {
2420 _cleanup_(json_variant_unrefp) JsonVariant *p = NULL;
2421 r = svc_params_to_json(rr->svcb.params, &p);
2422 if (r < 0)
2423 return r;
2424
2425 return json_build(ret,
2426 JSON_BUILD_OBJECT(
2427 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2428 JSON_BUILD_PAIR("priority", JSON_BUILD_UNSIGNED(rr->svcb.priority)),
2429 JSON_BUILD_PAIR("target", JSON_BUILD_STRING(rr->svcb.target_name)),
2430 JSON_BUILD_PAIR("params", JSON_BUILD_VARIANT(p))));
2431 }
2432
1482c86a
LP
2433 case DNS_TYPE_CAA:
2434 return json_build(ret,
2435 JSON_BUILD_OBJECT(
2436 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2437 JSON_BUILD_PAIR("flags", JSON_BUILD_UNSIGNED(rr->caa.flags)),
2438 JSON_BUILD_PAIR("tag", JSON_BUILD_STRING(rr->caa.tag)),
2439 JSON_BUILD_PAIR("value", JSON_BUILD_OCTESCAPE(rr->caa.value, rr->caa.value_size))));
2440
17615676
LP
2441 case DNS_TYPE_NAPTR:
2442 return json_build(ret,
2443 JSON_BUILD_OBJECT(
2444 JSON_BUILD_PAIR("key", JSON_BUILD_VARIANT(k)),
2445 JSON_BUILD_PAIR("order", JSON_BUILD_UNSIGNED(rr->naptr.order)),
2446 JSON_BUILD_PAIR("preference", JSON_BUILD_UNSIGNED(rr->naptr.preference)),
2447 /* NB: we name this flags field here naptrFlags, because there's already another "flags" field (for example in CAA) which has a different type */
2448 JSON_BUILD_PAIR("naptrFlags", JSON_BUILD_STRING(rr->naptr.flags)),
2449 JSON_BUILD_PAIR("services", JSON_BUILD_STRING(rr->naptr.services)),
2450 JSON_BUILD_PAIR("regexp", JSON_BUILD_STRING(rr->naptr.regexp)),
2451 JSON_BUILD_PAIR("replacement", JSON_BUILD_STRING(rr->naptr.replacement))));
2452
1482c86a
LP
2453 default:
2454 /* Can't provide broken-down format */
2455 *ret = NULL;
2456 return 0;
2457 }
2458}
2459
8730bccf 2460static const char* const dnssec_algorithm_table[_DNSSEC_ALGORITHM_MAX_DEFINED] = {
6f717d08 2461 /* Mnemonics as listed on https://www.iana.org/assignments/dns-sec-alg-numbers/dns-sec-alg-numbers.xhtml */
8730bccf
LP
2462 [DNSSEC_ALGORITHM_RSAMD5] = "RSAMD5",
2463 [DNSSEC_ALGORITHM_DH] = "DH",
2464 [DNSSEC_ALGORITHM_DSA] = "DSA",
2465 [DNSSEC_ALGORITHM_ECC] = "ECC",
2466 [DNSSEC_ALGORITHM_RSASHA1] = "RSASHA1",
2467 [DNSSEC_ALGORITHM_DSA_NSEC3_SHA1] = "DSA-NSEC3-SHA1",
2468 [DNSSEC_ALGORITHM_RSASHA1_NSEC3_SHA1] = "RSASHA1-NSEC3-SHA1",
2469 [DNSSEC_ALGORITHM_RSASHA256] = "RSASHA256",
2470 [DNSSEC_ALGORITHM_RSASHA512] = "RSASHA512",
6f717d08
LP
2471 [DNSSEC_ALGORITHM_ECC_GOST] = "ECC-GOST",
2472 [DNSSEC_ALGORITHM_ECDSAP256SHA256] = "ECDSAP256SHA256",
2473 [DNSSEC_ALGORITHM_ECDSAP384SHA384] = "ECDSAP384SHA384",
cb9eeb06
MCO
2474 [DNSSEC_ALGORITHM_ED25519] = "ED25519",
2475 [DNSSEC_ALGORITHM_ED448] = "ED448",
8730bccf
LP
2476 [DNSSEC_ALGORITHM_INDIRECT] = "INDIRECT",
2477 [DNSSEC_ALGORITHM_PRIVATEDNS] = "PRIVATEDNS",
2478 [DNSSEC_ALGORITHM_PRIVATEOID] = "PRIVATEOID",
2479};
8e54f5d9 2480DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(dnssec_algorithm, int, 255);
8730bccf
LP
2481
2482static const char* const dnssec_digest_table[_DNSSEC_DIGEST_MAX_DEFINED] = {
6f717d08 2483 /* Names as listed on https://www.iana.org/assignments/ds-rr-types/ds-rr-types.xhtml */
e3e64a1a
ZJS
2484 [DNSSEC_DIGEST_SHA1] = "SHA-1",
2485 [DNSSEC_DIGEST_SHA256] = "SHA-256",
6f717d08 2486 [DNSSEC_DIGEST_GOST_R_34_11_94] = "GOST_R_34.11-94",
e3e64a1a 2487 [DNSSEC_DIGEST_SHA384] = "SHA-384",
8730bccf 2488};
8e54f5d9 2489DEFINE_STRING_TABLE_LOOKUP_WITH_FALLBACK(dnssec_digest, int, 255);