ldns  1.9.2
rr.c
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1 /* rr.c
2  *
3  * access functions for ldns_rr -
4  * a Net::DNS like library for C
5  * LibDNS Team @ NLnet Labs
6  *
7  * (c) NLnet Labs, 2004-2006
8  * See the file LICENSE for the license
9  */
10 #include <ldns/config.h>
11 
12 #include <ldns/ldns.h>
13 
14 #include <strings.h>
15 #include <limits.h>
16 
17 #include <errno.h>
18 
19 #define LDNS_SYNTAX_DATALEN 16
20 #define LDNS_TTL_DATALEN 21
21 #define LDNS_RRLIST_INIT 8
22 
23 #define _IS_WHITESPACE(chr) \
24  ( NULL != strchr( LDNS_PARSE_NO_NL, chr) )
25 
26 #define _BUFFER_IS_AT_WHITESPACE(rd_buf) \
27  _IS_WHITESPACE(*(ldns_buffer_current(rd_buf)))
28 
29 ldns_rr *
31 {
32  ldns_rr *rr;
33  rr = LDNS_MALLOC(ldns_rr);
34  if (!rr) {
35  return NULL;
36  }
37 
38  ldns_rr_set_owner(rr, NULL);
39  ldns_rr_set_question(rr, false);
40  ldns_rr_set_rd_count(rr, 0);
41  rr->_rdata_fields = NULL;
44  return rr;
45 }
46 
47 ldns_rr *
49 {
50  ldns_rr *rr;
51  const ldns_rr_descriptor *desc;
52  size_t i;
53 
54  rr = LDNS_MALLOC(ldns_rr);
55  if (!rr) {
56  return NULL;
57  }
58 
59  desc = ldns_rr_descript(t);
60 
62  if(!rr->_rdata_fields) {
63  LDNS_FREE(rr);
64  return NULL;
65  }
66  for (i = 0; i < ldns_rr_descriptor_minimum(desc); i++) {
67  rr->_rdata_fields[i] = NULL;
68  }
69 
70  ldns_rr_set_owner(rr, NULL);
71  ldns_rr_set_question(rr, false);
72  /* set the count to minimum */
76  ldns_rr_set_type(rr, t);
77  return rr;
78 }
79 
80 void
82 {
83  size_t i;
84  if (rr) {
85  if (ldns_rr_owner(rr)) {
87  }
88  for (i = 0; i < ldns_rr_rd_count(rr); i++) {
90  }
92  LDNS_FREE(rr);
93  }
94 }
95 
96 /* Syntactic sugar for ldns_rr_new_frm_str_internal */
97 INLINE bool
98 ldns_rdf_type_maybe_quoted(ldns_rdf_type rdf_type)
99 {
100  return rdf_type == LDNS_RDF_TYPE_STR ||
101  rdf_type == LDNS_RDF_TYPE_LONG_STR;
102 }
103 
104 /*
105  * trailing spaces are allowed
106  * leading spaces are not allowed
107  * allow ttl to be optional
108  * class is optional too
109  * if ttl is missing, and default_ttl is 0, use DEF_TTL
110  * allow ttl to be written as 1d3h
111  * So the RR should look like. e.g.
112  * miek.nl. 3600 IN MX 10 elektron.atoom.net
113  * or
114  * miek.nl. 1h IN MX 10 elektron.atoom.net
115  * or
116  * miek.nl. IN MX 10 elektron.atoom.net
117  */
118 static ldns_status
119 ldns_rr_new_frm_str_internal(ldns_rr **newrr, const char *str,
120  uint32_t default_ttl, const ldns_rdf *origin,
121  ldns_rdf **prev, bool question,
122  bool *explicit_ttl)
123 {
124  ldns_rr *new;
125  const ldns_rr_descriptor *desc;
126  ldns_rr_type rr_type;
127  ldns_buffer *rr_buf = NULL;
128  ldns_buffer *rd_buf = NULL;
129  uint32_t ttl_val;
130  char *owner = NULL;
131  char *ttl = NULL;
132  ldns_rr_class clas_val;
133  char *clas = NULL;
134  char *type = NULL;
135  size_t type_sz;
136  char *rdata = NULL;
137  char *rd = NULL;
138  char *xtok = NULL; /* For RDF types with spaces (i.e. extra tokens) */
139  size_t rd_strlen;
140  const char *delimiters;
141  ssize_t c;
142  ldns_rdf *owner_dname;
143  const char* endptr;
144  int was_unknown_rr_format = 0;
145  ldns_status status = LDNS_STATUS_OK;
146 
147  /* used for types with unknown number of rdatas */
148  bool done;
149  bool quoted;
150 
151  ldns_rdf *r = NULL;
152  uint16_t r_cnt;
153  uint16_t r_min;
154  uint16_t r_max;
155  size_t pre_data_pos;
156 
157  uint16_t hex_data_size;
158  char *hex_data_str = NULL;
159  uint16_t cur_hex_data_size;
160  size_t hex_pos = 0;
161  uint8_t *hex_data = NULL;
162 
163  new = ldns_rr_new();
164 
165  owner = LDNS_XMALLOC(char, LDNS_MAX_DOMAINLEN + 1);
166  ttl = LDNS_XMALLOC(char, LDNS_TTL_DATALEN);
167  clas = LDNS_XMALLOC(char, LDNS_SYNTAX_DATALEN);
168  rdata = LDNS_XMALLOC(char, LDNS_MAX_PACKETLEN + 1);
169  rr_buf = LDNS_MALLOC(ldns_buffer);
170  rd_buf = LDNS_MALLOC(ldns_buffer);
171  rd = LDNS_XMALLOC(char, LDNS_MAX_RDFLEN);
172  xtok = LDNS_XMALLOC(char, LDNS_MAX_RDFLEN);
173  if (rr_buf) {
174  rr_buf->_data = NULL;
175  }
176  if (rd_buf) {
177  rd_buf->_data = NULL;
178  }
179  if (!new || !owner || !ttl || !clas || !rdata ||
180  !rr_buf || !rd_buf || !rd || !xtok) {
181 
182  goto memerror;
183  }
184 
185  ldns_buffer_new_frm_data(rr_buf, (char*)str, strlen(str));
186 
187  /* split the rr in its parts -1 signals trouble */
188  if (ldns_bget_token(rr_buf, owner, "\t\n ", LDNS_MAX_DOMAINLEN) == -1){
189 
190  status = LDNS_STATUS_SYNTAX_ERR;
191  goto error;
192  }
193 
194  if (ldns_bget_token(rr_buf, ttl, "\t\n ", LDNS_TTL_DATALEN) == -1) {
195 
197  goto error;
198  }
199  ttl_val = (uint32_t) ldns_str2period(ttl, &endptr);
200 
201  if (strlen(ttl) > 0 && !isdigit((int) ttl[0])) {
202  /* ah, it's not there or something */
203  if (default_ttl == 0) {
204  ttl_val = LDNS_DEFAULT_TTL;
205  } else {
206  ttl_val = default_ttl;
207  }
208  if (explicit_ttl)
209  *explicit_ttl = false;
210 
211  /* we not ASSUMING the TTL is missing and that
212  * the rest of the RR is still there. That is
213  * CLASS TYPE RDATA
214  * so ttl value we read is actually the class
215  */
216  clas_val = ldns_get_rr_class_by_name(ttl);
217  /* class can be left out too, assume IN, current
218  * token must be type
219  */
220  if (clas_val == 0) {
221  clas_val = LDNS_RR_CLASS_IN;
222  type_sz = strlen(ttl) + 1;
223  type = LDNS_XMALLOC(char, type_sz);
224  if (!type) {
225  goto memerror;
226  }
227  strlcpy(type, ttl, type_sz);
228  }
229  } else {
230  if (explicit_ttl)
231  *explicit_ttl = true;
232 
233  if (-1 == ldns_bget_token(
234  rr_buf, clas, "\t\n ", LDNS_SYNTAX_DATALEN)) {
235 
237  goto error;
238  }
239  clas_val = ldns_get_rr_class_by_name(clas);
240  /* class can be left out too, assume IN, current
241  * token must be type
242  */
243  if (clas_val == 0) {
244  clas_val = LDNS_RR_CLASS_IN;
245  type_sz = strlen(clas) + 1;
246  type = LDNS_XMALLOC(char, type_sz);
247  if (!type) {
248  goto memerror;
249  }
250  strlcpy(type, clas, type_sz);
251  }
252  }
253  /* the rest should still be waiting for us */
254 
255  if (!type) {
256  type = LDNS_XMALLOC(char, LDNS_SYNTAX_DATALEN);
257  if (!type) {
258  goto memerror;
259  }
260  if (-1 == ldns_bget_token(
261  rr_buf, type, "\t\n ", LDNS_SYNTAX_DATALEN)) {
262 
264  goto error;
265  }
266  }
267 
268  if (ldns_bget_token(rr_buf, rdata, "\0", LDNS_MAX_PACKETLEN) == -1) {
269  /* apparently we are done, and it's only a question RR
270  * so do not set status and go to ldnserror here
271  */
272  }
273  ldns_buffer_new_frm_data(rd_buf, rdata, strlen(rdata));
274 
275  if (strncmp(owner, "@", 1) == 0) {
276  if (origin) {
277  ldns_rr_set_owner(new, ldns_rdf_clone(origin));
278  } else if (prev && *prev) {
279  ldns_rr_set_owner(new, ldns_rdf_clone(*prev));
280  } else {
281  /* default to root */
283  }
284 
285  /* @ also overrides prev */
286  if (prev) {
287  ldns_rdf_deep_free(*prev);
288  *prev = ldns_rdf_clone(ldns_rr_owner(new));
289  if (!*prev) {
290  goto memerror;
291  }
292  }
293  } else {
294  if (strlen(owner) == 0) {
295  /* no ownername was given, try prev, if that fails
296  * origin, else default to root */
297  if (prev && *prev) {
298  ldns_rr_set_owner(new, ldns_rdf_clone(*prev));
299  } else if (origin) {
300  ldns_rr_set_owner(new, ldns_rdf_clone(origin));
301  } else {
302  ldns_rr_set_owner(new,
304  }
305  if(!ldns_rr_owner(new)) {
306  goto memerror;
307  }
308  } else {
309  owner_dname = ldns_dname_new_frm_str(owner);
310  if (!owner_dname) {
311  status = LDNS_STATUS_SYNTAX_ERR;
312  goto error;
313  }
314 
315  ldns_rr_set_owner(new, owner_dname);
316  if (!ldns_dname_str_absolute(owner) && origin) {
317  if(ldns_dname_cat(ldns_rr_owner(new), origin)
318  != LDNS_STATUS_OK) {
319 
320  status = LDNS_STATUS_SYNTAX_ERR;
321  goto error;
322  }
323  }
324  if (prev) {
325  ldns_rdf_deep_free(*prev);
326  *prev = ldns_rdf_clone(ldns_rr_owner(new));
327  if (!*prev) {
328  goto error;
329  }
330  }
331  }
332  }
333  LDNS_FREE(owner);
334 
335  ldns_rr_set_question(new, question);
336 
337  ldns_rr_set_ttl(new, ttl_val);
338  LDNS_FREE(ttl);
339 
340  ldns_rr_set_class(new, clas_val);
341  LDNS_FREE(clas);
342 
343  rr_type = ldns_get_rr_type_by_name(type);
344  LDNS_FREE(type);
345 
346  desc = ldns_rr_descript((uint16_t)rr_type);
347  ldns_rr_set_type(new, rr_type);
348  if (desc) {
349  /* only the rdata remains */
350  r_max = ldns_rr_descriptor_maximum(desc);
351  r_min = ldns_rr_descriptor_minimum(desc);
352  } else {
353  r_min = 0;
354  r_max = 1;
355  }
356 
357  for (done = false, r_cnt = 0; !done && r_cnt < r_max; r_cnt++) {
358  quoted = false;
359 
360  switch (ldns_rr_descriptor_field_type(desc, r_cnt)) {
361  case LDNS_RDF_TYPE_B64 :
362  case LDNS_RDF_TYPE_HEX : /* These rdf types may con- */
363  case LDNS_RDF_TYPE_NSEC : /* tain whitespace, only if */
364  case LDNS_RDF_TYPE_LOC : /* it is the last rd field. */
365  case LDNS_RDF_TYPE_WKS :
368  case LDNS_RDF_TYPE_SVCPARAMS : if (r_cnt == r_max - 1) {
369  delimiters = "\n";
370  break;
371  }
372  /* fallthrough */
373  default : delimiters = "\n\t ";
374  }
375 
376  if (ldns_rdf_type_maybe_quoted(
378  desc, r_cnt)) &&
379  ldns_buffer_remaining(rd_buf) > 0){
380 
381  /* skip whitespace */
382  while (ldns_buffer_remaining(rd_buf) > 0 &&
383  _BUFFER_IS_AT_WHITESPACE(rd_buf)) {
384  ldns_buffer_skip(rd_buf, 1);
385  }
386 
387  if (ldns_buffer_remaining(rd_buf) > 0 &&
388  *(ldns_buffer_current(rd_buf)) == '\"') {
389  delimiters = "\"\0";
390  ldns_buffer_skip(rd_buf, 1);
391  quoted = true;
392  }
393  }
394 
395  /* because number of fields can be variable, we can't rely on
396  * _maximum() only
397  */
398 
399  /* skip whitespace */
400  while (ldns_buffer_position(rd_buf) < ldns_buffer_limit(rd_buf)
401  && _BUFFER_IS_AT_WHITESPACE(rd_buf)
402  && !quoted) {
403 
404  ldns_buffer_skip(rd_buf, 1);
405  }
406 
407  pre_data_pos = ldns_buffer_position(rd_buf);
408  if (-1 == ldns_bget_token(
409  rd_buf, rd, delimiters, LDNS_MAX_RDFLEN)) {
410 
411  done = true;
412  (void)done; /* we're breaking, so done not read anymore */
413  break;
414  }
415  /* hmmz, rfc3597 specifies that any type can be represented
416  * with \# method, which can contain spaces...
417  * it does specify size though...
418  */
419  rd_strlen = strlen(rd);
420 
421  /* unknown RR data */
422  if (strncmp(rd, "\\#", 2) == 0 && !quoted &&
423  (rd_strlen == 2 || _IS_WHITESPACE(rd[2]))) {
424 
425  was_unknown_rr_format = 1;
426  /* go back to before \#
427  * and skip it while setting delimiters better
428  */
429  ldns_buffer_set_position(rd_buf, pre_data_pos);
430  delimiters = "\n\t ";
431  (void)ldns_bget_token(rd_buf, rd,
432  delimiters, LDNS_MAX_RDFLEN);
433  /* read rdata octet length */
434  c = ldns_bget_token(rd_buf, rd,
435  delimiters, LDNS_MAX_RDFLEN);
436  if (c == -1) {
437  /* something goes very wrong here */
439  goto error;
440  }
441  hex_data_size = (uint16_t) atoi(rd);
442  /* copy hex chars into hex str (2 chars per byte) */
443  hex_data_str = LDNS_XMALLOC(char, 2*hex_data_size + 1);
444  if (!hex_data_str) {
445  /* malloc error */
446  goto memerror;
447  }
448  cur_hex_data_size = 0;
449  while(cur_hex_data_size < 2 * hex_data_size) {
450  c = ldns_bget_token(rd_buf, rd,
451  delimiters, LDNS_MAX_RDFLEN);
452  if (c == -1) {
454  goto error;
455  }
456  rd_strlen = strlen(rd);
457  if ((size_t)cur_hex_data_size + rd_strlen >
458  2 * (size_t)hex_data_size) {
460  goto error;
461  }
462  strlcpy(hex_data_str + cur_hex_data_size, rd,
463  rd_strlen + 1);
464 
465  cur_hex_data_size += rd_strlen;
466  }
467  hex_data_str[cur_hex_data_size] = '\0';
468 
469  /* correct the rdf type */
470  /* if *we* know the type, interpret it as wireformat */
471  if (desc) {
472  hex_pos = 0;
473  hex_data =
474  LDNS_XMALLOC(uint8_t, hex_data_size+2);
475 
476  if (!hex_data) {
477  goto memerror;
478  }
479  ldns_write_uint16(hex_data, hex_data_size);
481  hex_data + 2, hex_data_str);
482  status = ldns_wire2rdf(new, hex_data,
483  hex_data_size + 2, &hex_pos);
484  if (status != LDNS_STATUS_OK) {
485  goto error;
486  }
487  LDNS_FREE(hex_data);
488  } else {
490  hex_data_str);
491  if (!r) {
492  goto memerror;
493  }
495  if (!ldns_rr_push_rdf(new, r)) {
496  goto memerror;
497  }
498  }
499  LDNS_FREE(hex_data_str);
500 
501  } else if(rd_strlen > 0 || quoted) {
502  /* Normal RR */
503  switch(ldns_rr_descriptor_field_type(desc, r_cnt)) {
504 
505  case LDNS_RDF_TYPE_HEX:
506  case LDNS_RDF_TYPE_B64:
507  /* When this is the last rdata field, then the
508  * rest should be read in (cause then these
509  * rdf types may contain spaces).
510  */
511  if (r_cnt == r_max - 1) {
512  c = ldns_bget_token(rd_buf, xtok,
513  "\n", LDNS_MAX_RDFLEN);
514  if (c != -1) {
515  (void) strncat(rd, xtok,
517  strlen(rd) - 1);
518  }
519  }
522  desc, r_cnt), rd);
523  break;
524 
525  case LDNS_RDF_TYPE_HIP:
526  /*
527  * In presentation format this RDATA type has
528  * three tokens: An algorithm byte, then a
529  * variable length HIT (in hexbytes) and then
530  * a variable length Public Key (in base64).
531  *
532  * We have just read the algorithm, so we need
533  * two more tokens: HIT and Public Key.
534  */
535  do {
536  /* Read and append HIT */
537  if (ldns_bget_token(rd_buf,
538  xtok, delimiters,
539  LDNS_MAX_RDFLEN) == -1)
540  break;
541 
542  (void) strncat(rd, " ",
544  strlen(rd) - 1);
545  (void) strncat(rd, xtok,
547  strlen(rd) - 1);
548 
549  /* Read and append Public Key*/
550  if (ldns_bget_token(rd_buf,
551  xtok, delimiters,
552  LDNS_MAX_RDFLEN) == -1)
553  break;
554 
555  (void) strncat(rd, " ",
557  strlen(rd) - 1);
558  (void) strncat(rd, xtok,
560  strlen(rd) - 1);
561  } while (false);
562 
565  desc, r_cnt), rd);
566  break;
567 
568  case LDNS_RDF_TYPE_DNAME:
571  desc, r_cnt), rd);
572 
573  /* check if the origin should be used
574  * or concatenated
575  */
576  if (r && ldns_rdf_size(r) > 1 &&
577  ldns_rdf_data(r)[0] == 1 &&
578  ldns_rdf_data(r)[1] == '@') {
579 
581 
582  r = origin ? ldns_rdf_clone(origin)
583 
584  : ( rr_type == LDNS_RR_TYPE_SOA ?
585 
587  ldns_rr_owner(new))
588 
590  LDNS_RDF_TYPE_DNAME, ".")
591  );
592 
593  } else if (r && rd_strlen >= 1
594  && (origin || rr_type == LDNS_RR_TYPE_SOA)
595  && !ldns_dname_str_absolute(rd)) {
596 
597  status = ldns_dname_cat(r, origin
598  ? origin : ldns_rr_owner(new));
599  if (status != LDNS_STATUS_OK) {
600  goto error;
601  }
602  }
603  break;
604  default:
607  desc, r_cnt), rd);
608  break;
609  }
610  if (!r) {
612  goto error;
613  }
614  ldns_rr_push_rdf(new, r);
615  }
616  } /* for (done = false, r_cnt = 0; !done && r_cnt < r_max; r_cnt++) */
617  LDNS_FREE(rd);
618  LDNS_FREE(xtok);
619  ldns_buffer_free(rr_buf);
620  LDNS_FREE(rdata);
621  if (ldns_buffer_remaining(rd_buf) > 0) {
622  ldns_buffer_free(rd_buf);
623  ldns_rr_free(new);
625  }
626  ldns_buffer_free(rd_buf);
627 
628  if (!question && desc && !was_unknown_rr_format &&
629  ldns_rr_rd_count(new) < r_min) {
630 
631  ldns_rr_free(new);
633  }
634 
635  if (newrr) {
636  *newrr = new;
637  } else {
638  /* Maybe the caller just wanted to see if it would parse? */
639  ldns_rr_free(new);
640  }
641  return LDNS_STATUS_OK;
642 
643 memerror:
644  status = LDNS_STATUS_MEM_ERR;
645 error:
646  if (rd_buf && rd_buf->_data) {
647  ldns_buffer_free(rd_buf);
648  } else {
649  LDNS_FREE(rd_buf);
650  }
651  if (rr_buf && rr_buf->_data) {
652  ldns_buffer_free(rr_buf);
653  } else {
654  LDNS_FREE(rr_buf);
655  }
656  LDNS_FREE(type);
657  LDNS_FREE(owner);
658  LDNS_FREE(ttl);
659  LDNS_FREE(clas);
660  LDNS_FREE(hex_data);
661  LDNS_FREE(hex_data_str);
662  LDNS_FREE(xtok);
663  LDNS_FREE(rd);
664  LDNS_FREE(rdata);
665  ldns_rr_free(new);
666  return status;
667 }
668 
670 ldns_rr_new_frm_str(ldns_rr **newrr, const char *str,
671  uint32_t default_ttl, const ldns_rdf *origin,
672  ldns_rdf **prev)
673 {
674  return ldns_rr_new_frm_str_internal(newrr,
675  str,
676  default_ttl,
677  origin,
678  prev,
679  false,
680  NULL);
681 }
682 
684 ldns_rr_new_question_frm_str(ldns_rr **newrr, const char *str,
685  const ldns_rdf *origin, ldns_rdf **prev)
686 {
687  return ldns_rr_new_frm_str_internal(newrr,
688  str,
689  0,
690  origin,
691  prev,
692  true,
693  NULL);
694 }
695 
696 /* Strip whitespace from the start and the end of <line>. */
697 static char *
698 ldns_strip_ws(char *line)
699 {
700  char *s = line, *e;
701 
702  for (s = line; *s && isspace((unsigned char)*s); s++)
703  ;
704 
705  for (e = strchr(s, 0); e > s+2 && isspace((unsigned char)e[-1]) && e[-2] != '\\'; e--)
706  ;
707  *e = 0;
708 
709  return s;
710 }
711 
713 ldns_rr_new_frm_fp(ldns_rr **newrr, FILE *fp, uint32_t *ttl, ldns_rdf **origin, ldns_rdf **prev)
714 {
715  return ldns_rr_new_frm_fp_l(newrr, fp, ttl, origin, prev, NULL);
716 }
717 
719 _ldns_rr_new_frm_fp_l_internal(ldns_rr **newrr, FILE *fp,
720  uint32_t *default_ttl, ldns_rdf **origin, ldns_rdf **prev,
721  int *line_nr, bool *explicit_ttl);
724  uint32_t *default_ttl, ldns_rdf **origin, ldns_rdf **prev,
725  int *line_nr, bool *explicit_ttl)
726 {
727  char *line = NULL;
728  size_t limit = 0;
729  const char *endptr; /* unused */
730  ldns_rr *rr;
731  uint32_t ttl;
732  ldns_rdf *tmp;
733  ldns_status s;
734 
735  if (default_ttl) {
736  ttl = *default_ttl;
737  } else {
738  ttl = 0;
739  }
740  /* read an entire line in from the file */
741  if ((s = ldns_fget_token_l_st( fp, &line, &limit, false
742  , LDNS_PARSE_SKIP_SPACE, line_nr))) {
743  LDNS_FREE(line);
744  return s;
745  }
746 
747  if (strncmp(line, "$ORIGIN", 7) == 0 && isspace((unsigned char)line[7])) {
748  if (*origin) {
749  ldns_rdf_deep_free(*origin);
750  *origin = NULL;
751  }
753  ldns_strip_ws(line + 8));
754  if (!tmp) {
755  /* could not parse what next to $ORIGIN */
756  LDNS_FREE(line);
758  }
759  *origin = tmp;
761  } else if (strncmp(line, "$TTL", 4) == 0 && isspace((unsigned char)line[4])) {
762  if (default_ttl) {
763  *default_ttl = ldns_str2period(
764  ldns_strip_ws(line + 5), &endptr);
765  }
767  } else if (strncmp(line, "$INCLUDE", 8) == 0) {
769  } else if (!*ldns_strip_ws(line)) {
770  LDNS_FREE(line);
772  } else {
773  if (origin && *origin) {
774  s = ldns_rr_new_frm_str_internal(&rr, (const char*)line,
775  ttl, *origin, prev, false, explicit_ttl);
776  } else {
777  s = ldns_rr_new_frm_str_internal(&rr, (const char*)line,
778  ttl, NULL, prev, false, explicit_ttl);
779  }
780  }
781  LDNS_FREE(line);
782  if (s == LDNS_STATUS_OK) {
783  if (newrr) {
784  *newrr = rr;
785  } else {
786  /* Just testing if it would parse? */
787  ldns_rr_free(rr);
788  }
789  }
790  return s;
791 }
792 
794 ldns_rr_new_frm_fp_l(ldns_rr **newrr, FILE *fp, uint32_t *default_ttl,
795  ldns_rdf **origin, ldns_rdf **prev, int *line_nr)
796 {
797  return _ldns_rr_new_frm_fp_l_internal(newrr, fp, default_ttl, origin,
798  prev, line_nr, NULL);
799 }
800 
801 void
803 {
804  rr->_owner = owner;
805 }
806 
807 void
808 ldns_rr_set_question(ldns_rr *rr, bool question)
809 {
810  rr->_rr_question = question;
811 }
812 
813 void
814 ldns_rr_set_ttl(ldns_rr *rr, uint32_t ttl)
815 {
816  rr->_ttl = ttl;
817 }
818 
819 void
820 ldns_rr_set_rd_count(ldns_rr *rr, size_t count)
821 {
822  rr->_rd_count = count;
823 }
824 
825 void
827 {
828  rr->_rr_type = rr_type;
829 }
830 
831 void
833 {
834  rr->_rr_class = rr_class;
835 }
836 
837 ldns_rdf *
838 ldns_rr_set_rdf(ldns_rr *rr, const ldns_rdf *f, size_t position)
839 {
840  size_t rd_count;
841  ldns_rdf *pop;
842 
843  rd_count = ldns_rr_rd_count(rr);
844  if (position < rd_count) {
845  /* discard the old one */
846  pop = rr->_rdata_fields[position];
847  rr->_rdata_fields[position] = (ldns_rdf*)f;
848  return pop;
849  } else {
850  return NULL;
851  }
852 }
853 
854 bool
856 {
857  size_t rd_count;
858  ldns_rdf **rdata_fields;
859 
860  rd_count = ldns_rr_rd_count(rr);
861 
862  /* grow the array */
863  rdata_fields = LDNS_XREALLOC(
864  rr->_rdata_fields, ldns_rdf *, rd_count + 1);
865  if (!rdata_fields) {
866  return false;
867  }
868 
869  /* add the new member */
870  rr->_rdata_fields = rdata_fields;
871  rr->_rdata_fields[rd_count] = (ldns_rdf*)f;
872 
873  ldns_rr_set_rd_count(rr, rd_count + 1);
874  return true;
875 }
876 
877 ldns_rdf *
879 {
880  size_t rd_count;
881  ldns_rdf *pop;
882  ldns_rdf** newrd;
883 
884  rd_count = ldns_rr_rd_count(rr);
885 
886  if (rd_count == 0) {
887  return NULL;
888  }
889 
890  pop = rr->_rdata_fields[rd_count - 1];
891 
892  /* try to shrink the array */
893  if(rd_count > 1) {
894  newrd = LDNS_XREALLOC(
895  rr->_rdata_fields, ldns_rdf *, rd_count - 1);
896  if(newrd)
897  rr->_rdata_fields = newrd;
898  } else {
900  }
901 
902  ldns_rr_set_rd_count(rr, rd_count - 1);
903  return pop;
904 }
905 
906 ldns_rdf *
907 ldns_rr_rdf(const ldns_rr *rr, size_t nr)
908 {
909  if (rr && nr < ldns_rr_rd_count(rr)) {
910  return rr->_rdata_fields[nr];
911  } else {
912  return NULL;
913  }
914 }
915 
916 ldns_rdf *
918 {
919  return rr->_owner;
920 }
921 
922 bool
924 {
925  return rr->_rr_question;
926 }
927 
928 uint32_t
930 {
931  return rr->_ttl;
932 }
933 
934 size_t
936 {
937  return rr->_rd_count;
938 }
939 
942 {
943  return rr->_rr_type;
944 }
945 
948 {
949  return rr->_rr_class;
950 }
951 
952 /* rr_lists */
953 
954 size_t
956 {
957  if (rr_list) {
958  return rr_list->_rr_count;
959  } else {
960  return 0;
961  }
962 }
963 
964 ldns_rr *
965 ldns_rr_list_set_rr(ldns_rr_list *rr_list, const ldns_rr *r, size_t count)
966 {
967  ldns_rr *old;
968 
969  if (count > ldns_rr_list_rr_count(rr_list)) {
970  return NULL;
971  }
972 
973  old = ldns_rr_list_rr(rr_list, count);
974 
975  /* overwrite old's pointer */
976  rr_list->_rrs[count] = (ldns_rr*)r;
977  return old;
978 }
979 
980 void
982 {
983  assert(count <= rr_list->_rr_capacity);
984  rr_list->_rr_count = count;
985 }
986 
987 ldns_rr *
988 ldns_rr_list_rr(const ldns_rr_list *rr_list, size_t nr)
989 {
990  if (nr < ldns_rr_list_rr_count(rr_list)) {
991  return rr_list->_rrs[nr];
992  } else {
993  return NULL;
994  }
995 }
996 
997 ldns_rr_list *
999 {
1001  if(!rr_list) return NULL;
1002  rr_list->_rr_count = 0;
1003  rr_list->_rr_capacity = 0;
1004  rr_list->_rrs = NULL;
1005  return rr_list;
1006 }
1007 
1008 void
1010 {
1011  if (rr_list) {
1012  LDNS_FREE(rr_list->_rrs);
1013  LDNS_FREE(rr_list);
1014  }
1015 }
1016 
1017 void
1019 {
1020  size_t i;
1021 
1022  if (rr_list) {
1023  for (i=0; i < ldns_rr_list_rr_count(rr_list); i++) {
1024  ldns_rr_free(ldns_rr_list_rr(rr_list, i));
1025  }
1026  LDNS_FREE(rr_list->_rrs);
1027  LDNS_FREE(rr_list);
1028  }
1029 }
1030 
1031 
1032 /* add right to left. So we modify *left! */
1033 bool
1035 {
1036  size_t r_rr_count;
1037  size_t i;
1038 
1039  if (!left) {
1040  return false;
1041  }
1042 
1043  if (right) {
1044  r_rr_count = ldns_rr_list_rr_count(right);
1045  } else {
1046  r_rr_count = 0;
1047  }
1048 
1049  /* push right to left */
1050  for(i = 0; i < r_rr_count; i++) {
1051  ldns_rr_list_push_rr(left, ldns_rr_list_rr(right, i));
1052  }
1053  return true;
1054 }
1055 
1056 ldns_rr_list *
1058 {
1059  size_t l_rr_count;
1060  size_t r_rr_count;
1061  size_t i;
1062  ldns_rr_list *cat;
1063 
1064  if (left) {
1065  l_rr_count = ldns_rr_list_rr_count(left);
1066  } else {
1067  return ldns_rr_list_clone(right);
1068  }
1069 
1070  if (right) {
1071  r_rr_count = ldns_rr_list_rr_count(right);
1072  } else {
1073  r_rr_count = 0;
1074  }
1075 
1076  cat = ldns_rr_list_new();
1077 
1078  if (!cat) {
1079  return NULL;
1080  }
1081 
1082  /* left */
1083  for(i = 0; i < l_rr_count; i++) {
1085  ldns_rr_clone(ldns_rr_list_rr(left, i)));
1086  }
1087  /* right */
1088  for(i = 0; i < r_rr_count; i++) {
1090  ldns_rr_clone(ldns_rr_list_rr(right, i)));
1091  }
1092  return cat;
1093 }
1094 
1095 ldns_rr_list *
1096 ldns_rr_list_subtype_by_rdf(const ldns_rr_list *l, const ldns_rdf *r, size_t pos)
1097 {
1098  size_t i;
1099  ldns_rr_list *subtyped;
1100  ldns_rdf *list_rdf;
1101 
1102  subtyped = ldns_rr_list_new();
1103 
1104  for(i = 0; i < ldns_rr_list_rr_count(l); i++) {
1105  list_rdf = ldns_rr_rdf(
1106  ldns_rr_list_rr(l, i),
1107  pos);
1108  if (!list_rdf) {
1109  /* pos is too large or any other error */
1110  ldns_rr_list_deep_free(subtyped);
1111  return NULL;
1112  }
1113 
1114  if (ldns_rdf_compare(list_rdf, r) == 0) {
1115  /* a match */
1116  ldns_rr_list_push_rr(subtyped,
1118  }
1119  }
1120 
1121  if (ldns_rr_list_rr_count(subtyped) > 0) {
1122  return subtyped;
1123  } else {
1124  ldns_rr_list_free(subtyped);
1125  return NULL;
1126  }
1127 }
1128 
1129 bool
1131 {
1132  size_t rr_count;
1133  size_t cap;
1134 
1135  rr_count = ldns_rr_list_rr_count(rr_list);
1136  cap = rr_list->_rr_capacity;
1137 
1138  /* grow the array */
1139  if(rr_count+1 > cap) {
1140  ldns_rr **rrs;
1141 
1142  if(cap == 0)
1143  cap = LDNS_RRLIST_INIT; /* initial list size */
1144  else cap *= 2;
1145  rrs = LDNS_XREALLOC(rr_list->_rrs, ldns_rr *, cap);
1146  if (!rrs) {
1147  return false;
1148  }
1149  rr_list->_rrs = rrs;
1150  rr_list->_rr_capacity = cap;
1151  }
1152 
1153  /* add the new member */
1154  rr_list->_rrs[rr_count] = (ldns_rr*)rr;
1155 
1156  ldns_rr_list_set_rr_count(rr_list, rr_count + 1);
1157  return true;
1158 }
1159 
1160 bool
1162 {
1163  size_t i;
1164 
1165  for(i = 0; i < ldns_rr_list_rr_count(push_list); i++) {
1166  if (!ldns_rr_list_push_rr(rr_list,
1167  ldns_rr_list_rr(push_list, i))) {
1168  return false;
1169  }
1170  }
1171  return true;
1172 }
1173 
1174 ldns_rr *
1176 {
1177  size_t rr_count;
1178  size_t cap;
1179  ldns_rr *pop;
1180 
1181  rr_count = ldns_rr_list_rr_count(rr_list);
1182 
1183  if (rr_count == 0) {
1184  return NULL;
1185  }
1186 
1187  cap = rr_list->_rr_capacity;
1188  pop = ldns_rr_list_rr(rr_list, rr_count - 1);
1189 
1190  /* shrink the array */
1191  if(cap > LDNS_RRLIST_INIT && rr_count-1 <= cap/2) {
1192  ldns_rr** a;
1193  cap /= 2;
1194  a = LDNS_XREALLOC(rr_list->_rrs, ldns_rr *, cap);
1195  if(a) {
1196  rr_list->_rrs = a;
1197  rr_list->_rr_capacity = cap;
1198  }
1199  /* if the realloc fails, the capacity for the list remains unchanged */
1200  }
1201 
1202  ldns_rr_list_set_rr_count(rr_list, rr_count - 1);
1203 
1204  return pop;
1205 }
1206 
1207 ldns_rr_list *
1208 ldns_rr_list_pop_rr_list(ldns_rr_list *rr_list, size_t howmany)
1209 {
1210  /* pop a number of rr's and put them in a rr_list */
1211  ldns_rr_list *popped;
1212  ldns_rr *p;
1213  size_t i = howmany;
1214 
1215  popped = ldns_rr_list_new();
1216 
1217  if (!popped) {
1218  return NULL;
1219  }
1220 
1221 
1222  while(i > 0 &&
1223  (p = ldns_rr_list_pop_rr(rr_list)) != NULL) {
1224  ldns_rr_list_push_rr(popped, p);
1225  i--;
1226  }
1227 
1228  if (i == howmany) { /* so i <= 0 */
1229  ldns_rr_list_free(popped);
1230  return NULL;
1231  } else {
1232  return popped;
1233  }
1234 }
1235 
1236 
1237 bool
1239 {
1240  size_t i;
1241 
1242  if (!rr_list || !rr || ldns_rr_list_rr_count(rr_list) == 0) {
1243  return false;
1244  }
1245 
1246  for (i = 0; i < ldns_rr_list_rr_count(rr_list); i++) {
1247  if (rr == ldns_rr_list_rr(rr_list, i)) {
1248  return true;
1249  } else if (ldns_rr_compare(rr, ldns_rr_list_rr(rr_list, i)) == 0) {
1250  return true;
1251  }
1252  }
1253  return false;
1254 }
1255 
1256 bool
1258 {
1259  ldns_rr_type t;
1260  ldns_rr_class c;
1261  ldns_rdf *o;
1262  ldns_rr *tmp;
1263  size_t i;
1264 
1265  if (!rr_list || ldns_rr_list_rr_count(rr_list) == 0) {
1266  return false;
1267  }
1268 
1269  tmp = ldns_rr_list_rr(rr_list, 0);
1270 
1271  t = ldns_rr_get_type(tmp);
1272  c = ldns_rr_get_class(tmp);
1273  o = ldns_rr_owner(tmp);
1274 
1275  /* compare these with the rest of the rr_list, start with 1 */
1276  for (i = 1; i < ldns_rr_list_rr_count(rr_list); i++) {
1277  tmp = ldns_rr_list_rr(rr_list, i);
1278  if (t != ldns_rr_get_type(tmp)) {
1279  return false;
1280  }
1281  if (c != ldns_rr_get_class(tmp)) {
1282  return false;
1283  }
1284  if (ldns_dname_compare(o, ldns_rr_owner(tmp)) != 0) {
1285  return false;
1286  }
1287  }
1288  return true;
1289 }
1290 
1291 bool
1293 {
1294  ldns_rr_type t;
1295  ldns_rr_class c;
1296  uint32_t l;
1297  ldns_rdf *o;
1298  ldns_rr *tmp;
1299  size_t i;
1300 
1301  if (!rr_list || ldns_rr_list_rr_count(rr_list) == 0) {
1302  return false;
1303  }
1304 
1305  tmp = ldns_rr_list_rr(rr_list, 0);
1306 
1307  t = ldns_rr_get_type(tmp);
1308  c = ldns_rr_get_class(tmp);
1309  l = ldns_rr_ttl(tmp);
1310  o = ldns_rr_owner(tmp);
1311 
1312  /* compare these with the rest of the rr_list, start with 1 */
1313  for (i = 1; i < ldns_rr_list_rr_count(rr_list); i++) {
1314  tmp = ldns_rr_list_rr(rr_list, i);
1315  if (t != ldns_rr_get_type(tmp)) {
1316  return false;
1317  }
1318  if (c != ldns_rr_get_class(tmp)) {
1319  return false;
1320  }
1321  if (l != ldns_rr_ttl(tmp)) {
1322  return false;
1323  }
1324  if (ldns_dname_compare(o, ldns_rr_owner(tmp)) != 0) {
1325  return false;
1326  }
1327  }
1328  return true;
1329 }
1330 
1331 bool
1333 {
1334  size_t rr_count;
1335  size_t i;
1336  ldns_rr *last;
1337 
1338  assert(rr != NULL);
1339 
1340  rr_count = ldns_rr_list_rr_count(rr_list);
1341 
1342  if (rr_count == 0) {
1343  /* nothing there, so checking it is
1344  * not needed */
1345  return ldns_rr_list_push_rr(rr_list, rr);
1346  } else {
1347  /* check with the final rr in the rr_list */
1348  last = ldns_rr_list_rr(rr_list, rr_count - 1);
1349 
1350  if (ldns_rr_get_class(last) != ldns_rr_get_class(rr)) {
1351  return false;
1352  }
1353  if (ldns_rr_get_type(last) != ldns_rr_get_type(rr)) {
1354  return false;
1355  }
1356  /* only check if not equal to RRSIG */
1357  if (ldns_rr_get_type(rr) != LDNS_RR_TYPE_RRSIG) {
1358  if (ldns_rr_ttl(last) != ldns_rr_ttl(rr)) {
1359  return false;
1360  }
1361  }
1362  if (ldns_rdf_compare(ldns_rr_owner(last),
1363  ldns_rr_owner(rr)) != 0) {
1364  return false;
1365  }
1366  /* ok, still alive - check if the rr already
1367  * exists - if so, don't add it */
1368  for(i = 0; i < rr_count; i++) {
1369  if(ldns_rr_compare(
1370  ldns_rr_list_rr(rr_list, i), rr) == 0) {
1371  return false;
1372  }
1373  }
1374  /* it's safe, push it */
1375  return ldns_rr_list_push_rr(rr_list, rr);
1376  }
1377 }
1378 
1379 ldns_rr *
1381 {
1382  return ldns_rr_list_pop_rr(rr_list);
1383 }
1384 
1385 ldns_rr_list *
1387 {
1388  ldns_rr_list *rrset;
1389  ldns_rr *last_rr = NULL;
1390  ldns_rr *next_rr;
1391 
1392  if (!rr_list) {
1393  return NULL;
1394  }
1395 
1396  rrset = ldns_rr_list_new();
1397  if (!last_rr) {
1398  last_rr = ldns_rr_list_pop_rr(rr_list);
1399  if (!last_rr) {
1400  ldns_rr_list_free(rrset);
1401  return NULL;
1402  } else {
1403  ldns_rr_list_push_rr(rrset, last_rr);
1404  }
1405  }
1406 
1407  if (ldns_rr_list_rr_count(rr_list) > 0) {
1408  next_rr = ldns_rr_list_rr(rr_list, ldns_rr_list_rr_count(rr_list) - 1);
1409  } else {
1410  next_rr = NULL;
1411  }
1412 
1413  while (next_rr) {
1414  if (
1416  ldns_rr_owner(last_rr)) == 0
1417  &&
1418  ldns_rr_get_type(next_rr) == ldns_rr_get_type(last_rr)
1419  &&
1420  ldns_rr_get_class(next_rr) == ldns_rr_get_class(last_rr)
1421  ) {
1422  ldns_rr_list_push_rr(rrset, ldns_rr_list_pop_rr(rr_list));
1423  if (ldns_rr_list_rr_count(rr_list) > 0) {
1424  last_rr = next_rr;
1425  next_rr = ldns_rr_list_rr(rr_list, ldns_rr_list_rr_count(rr_list) - 1);
1426  } else {
1427  next_rr = NULL;
1428  }
1429  } else {
1430  next_rr = NULL;
1431  }
1432  }
1433 
1434  return rrset;
1435 }
1436 
1437 ldns_rr *
1439 {
1440  size_t i;
1441  ldns_rr *new_rr;
1442 
1443  if (!rr) {
1444  return NULL;
1445  }
1446 
1447  new_rr = ldns_rr_new();
1448  if (!new_rr) {
1449  return NULL;
1450  }
1451  if (ldns_rr_owner(rr)) {
1453  }
1454  ldns_rr_set_ttl(new_rr, ldns_rr_ttl(rr));
1455  ldns_rr_set_type(new_rr, ldns_rr_get_type(rr));
1456  ldns_rr_set_class(new_rr, ldns_rr_get_class(rr));
1458 
1459  for (i = 0; i < ldns_rr_rd_count(rr); i++) {
1460  if (ldns_rr_rdf(rr,i)) {
1461  ldns_rr_push_rdf(new_rr, ldns_rdf_clone(ldns_rr_rdf(rr, i)));
1462  }
1463  }
1464 
1465  return new_rr;
1466 }
1467 
1468 ldns_rr_list *
1470 {
1471  size_t i;
1472  ldns_rr_list *new_list;
1473  ldns_rr *r;
1474 
1475  if (!rrlist) {
1476  return NULL;
1477  }
1478 
1479  new_list = ldns_rr_list_new();
1480  if (!new_list) {
1481  return NULL;
1482  }
1483  for (i = 0; i < ldns_rr_list_rr_count(rrlist); i++) {
1484  r = ldns_rr_clone(
1485  ldns_rr_list_rr(rrlist, i)
1486  );
1487  if (!r) {
1488  /* huh, failure in cloning */
1489  ldns_rr_list_deep_free(new_list);
1490  return NULL;
1491  }
1492  ldns_rr_list_push_rr(new_list, r);
1493  }
1494  return new_list;
1495 }
1496 
1497 
1498 static int
1499 qsort_schwartz_rr_compare(const void *a, const void *b)
1500 {
1501  int result = 0;
1502  ldns_rr *rr1, *rr2;
1503  ldns_buffer *rr1_buf, *rr2_buf;
1506  /* if we are doing 2wire, we need to do lowercasing on the dname (and maybe on the rdata)
1507  * this must be done for comparison only, so we need to have a temp var for both buffers,
1508  * which is only used when the transformed object value isn't there yet
1509  */
1510  ldns_rr *canonical_a, *canonical_b;
1511 
1512  rr1 = (ldns_rr *) sa->original_object;
1513  rr2 = (ldns_rr *) sb->original_object;
1514 
1515  result = ldns_rr_compare_no_rdata(rr1, rr2);
1516 
1517  if (result == 0) {
1518  if (!sa->transformed_object) {
1519  canonical_a = ldns_rr_clone(sa->original_object);
1520  ldns_rr2canonical(canonical_a);
1524  sa->transformed_object = NULL;
1525  ldns_rr_free(canonical_a);
1526  return 0;
1527  }
1528  ldns_rr_free(canonical_a);
1529  }
1530  if (!sb->transformed_object) {
1531  canonical_b = ldns_rr_clone(sb->original_object);
1532  ldns_rr2canonical(canonical_b);
1537  sa->transformed_object = NULL;
1538  sb->transformed_object = NULL;
1539  ldns_rr_free(canonical_b);
1540  return 0;
1541  }
1542  ldns_rr_free(canonical_b);
1543  }
1544  rr1_buf = (ldns_buffer *) sa->transformed_object;
1545  rr2_buf = (ldns_buffer *) sb->transformed_object;
1546 
1547  result = ldns_rr_compare_wire(rr1_buf, rr2_buf);
1548  }
1549 
1550  return result;
1551 }
1552 
1553 void
1555 {
1556  struct ldns_schwartzian_compare_struct **sortables;
1557  size_t item_count;
1558  size_t i;
1559 
1560  if (unsorted) {
1561  item_count = ldns_rr_list_rr_count(unsorted);
1562 
1563  sortables = LDNS_XMALLOC(struct ldns_schwartzian_compare_struct *,
1564  item_count);
1565  if(!sortables) return; /* no way to return error */
1566  for (i = 0; i < item_count; i++) {
1567  sortables[i] = LDNS_XMALLOC(struct ldns_schwartzian_compare_struct, 1);
1568  if(!sortables[i]) {
1569  /* free the allocated parts */
1570  while(i>0) {
1571  i--;
1572  LDNS_FREE(sortables[i]);
1573  }
1574  /* no way to return error */
1575  LDNS_FREE(sortables);
1576  return;
1577  }
1578  sortables[i]->original_object = ldns_rr_list_rr(unsorted, i);
1579  sortables[i]->transformed_object = NULL;
1580  }
1581  qsort(sortables,
1582  item_count,
1583  sizeof(struct ldns_schwartzian_compare_struct *),
1584  qsort_schwartz_rr_compare);
1585  for (i = 0; i < item_count; i++) {
1586  unsorted->_rrs[i] = sortables[i]->original_object;
1587  if (sortables[i]->transformed_object) {
1588  ldns_buffer_free(sortables[i]->transformed_object);
1589  }
1590  LDNS_FREE(sortables[i]);
1591  }
1592  LDNS_FREE(sortables);
1593  }
1594 }
1595 
1596 int
1598 {
1599  size_t rr1_len;
1600  size_t rr2_len;
1601  size_t offset;
1602 
1603  assert(rr1 != NULL);
1604  assert(rr2 != NULL);
1605 
1606  rr1_len = ldns_rr_uncompressed_size(rr1);
1607  rr2_len = ldns_rr_uncompressed_size(rr2);
1608 
1609  if (ldns_dname_compare(ldns_rr_owner(rr1), ldns_rr_owner(rr2)) < 0) {
1610  return -1;
1611  } else if (ldns_dname_compare(ldns_rr_owner(rr1), ldns_rr_owner(rr2)) > 0) {
1612  return 1;
1613  }
1614 
1615  /* should return -1 if rr1 comes before rr2, so need to do rr1 - rr2, not rr2 - rr1 */
1616  if (ldns_rr_get_class(rr1) != ldns_rr_get_class(rr2)) {
1617  return ldns_rr_get_class(rr1) - ldns_rr_get_class(rr2);
1618  }
1619 
1620  /* should return -1 if rr1 comes before rr2, so need to do rr1 - rr2, not rr2 - rr1 */
1621  if (ldns_rr_get_type(rr1) != ldns_rr_get_type(rr2)) {
1622  return ldns_rr_get_type(rr1) - ldns_rr_get_type(rr2);
1623  }
1624 
1625  /* offset is the owername length + ttl + type + class + rdlen == start of wire format rdata */
1626  offset = ldns_rdf_size(ldns_rr_owner(rr1)) + 4 + 2 + 2 + 2;
1627  /* if either record doesn't have any RDATA... */
1628  if (offset > rr1_len || offset > rr2_len) {
1629  if (rr1_len == rr2_len) {
1630  return 0;
1631  }
1632  return ((int) rr2_len - (int) rr1_len);
1633  }
1634 
1635  return 0;
1636 }
1637 
1638 int ldns_rr_compare_wire(const ldns_buffer *rr1_buf, const ldns_buffer *rr2_buf)
1639 {
1640  size_t rr1_len, rr2_len, min_len, i, offset;
1641 
1642  rr1_len = ldns_buffer_capacity(rr1_buf);
1643  rr2_len = ldns_buffer_capacity(rr2_buf);
1644 
1645  /* jump past dname (checked in earlier part)
1646  * and especially past TTL */
1647  offset = 0;
1648  while (offset < rr1_len && *ldns_buffer_at(rr1_buf, offset) != 0) {
1649  offset += *ldns_buffer_at(rr1_buf, offset) + 1;
1650  }
1651  /* jump to rdata section (PAST the rdata length field, otherwise
1652  rrs with different lengths might be sorted erroneously */
1653  offset += 11;
1654  min_len = (rr1_len < rr2_len) ? rr1_len : rr2_len;
1655  /* Compare RRs RDATA byte for byte. */
1656  for(i = offset; i < min_len; i++) {
1657  if (*ldns_buffer_at(rr1_buf,i) < *ldns_buffer_at(rr2_buf,i)) {
1658  return -1;
1659  } else if (*ldns_buffer_at(rr1_buf,i) > *ldns_buffer_at(rr2_buf,i)) {
1660  return +1;
1661  }
1662  }
1663 
1664  /* If both RDATAs are the same up to min_len, then the shorter one sorts first. */
1665  if (rr1_len < rr2_len) {
1666  return -1;
1667  } else if (rr1_len > rr2_len) {
1668  return +1;
1669  }
1670  /* The RDATAs are equal. */
1671  return 0;
1672 
1673 }
1674 
1675 int
1676 ldns_rr_compare(const ldns_rr *rr1, const ldns_rr *rr2)
1677 {
1678  int result;
1679  size_t rr1_len, rr2_len;
1680 
1681  ldns_buffer *rr1_buf;
1682  ldns_buffer *rr2_buf;
1683 
1684  result = ldns_rr_compare_no_rdata(rr1, rr2);
1685  if (result == 0) {
1686  rr1_len = ldns_rr_uncompressed_size(rr1);
1687  rr2_len = ldns_rr_uncompressed_size(rr2);
1688 
1689  rr1_buf = ldns_buffer_new(rr1_len);
1690  rr2_buf = ldns_buffer_new(rr2_len);
1691 
1692  if (ldns_rr2buffer_wire_canonical(rr1_buf,
1693  rr1,
1695  != LDNS_STATUS_OK) {
1696  ldns_buffer_free(rr1_buf);
1697  ldns_buffer_free(rr2_buf);
1698  return 0;
1699  }
1700  if (ldns_rr2buffer_wire_canonical(rr2_buf,
1701  rr2,
1703  != LDNS_STATUS_OK) {
1704  ldns_buffer_free(rr1_buf);
1705  ldns_buffer_free(rr2_buf);
1706  return 0;
1707  }
1708 
1709  result = ldns_rr_compare_wire(rr1_buf, rr2_buf);
1710 
1711  ldns_buffer_free(rr1_buf);
1712  ldns_buffer_free(rr2_buf);
1713  }
1714 
1715  return result;
1716 }
1717 
1718 /* convert (c)dnskey to a (c)ds with the given algorithm,
1719  * then compare the result with the given (c)ds */
1720 static int
1721 ldns_rr_compare_ds_dnskey(ldns_rr *ds,
1722  ldns_rr *dnskey)
1723 {
1724  ldns_rr *ds_gen;
1725  bool result = false;
1726  ldns_hash algo;
1727 
1728  if (!dnskey || !ds ||
1731  (ldns_rr_get_type(dnskey) != LDNS_RR_TYPE_DNSKEY &&
1732  ldns_rr_get_type(dnskey) != LDNS_RR_TYPE_CDNSKEY)) {
1733  return false;
1734  }
1735 
1736  if (ldns_rr_rdf(ds, 2) == NULL) {
1737  return false;
1738  }
1739  algo = ldns_rdf2native_int8(ldns_rr_rdf(ds, 2));
1740 
1741  ds_gen = ldns_key_rr2ds(dnskey, algo);
1742  if (ds_gen) {
1743  result = ldns_rr_compare(ds, ds_gen) == 0;
1744  ldns_rr_free(ds_gen);
1745  }
1746  return result;
1747 }
1748 
1749 bool
1750 ldns_rr_compare_ds(const ldns_rr *orr1, const ldns_rr *orr2)
1751 {
1752  bool result;
1753  ldns_rr *rr1 = ldns_rr_clone(orr1);
1754  ldns_rr *rr2 = ldns_rr_clone(orr2);
1755 
1756  /* set ttls to zero */
1757  ldns_rr_set_ttl(rr1, 0);
1758  ldns_rr_set_ttl(rr2, 0);
1759 
1760  if (ldns_rr_get_type(rr1) == LDNS_RR_TYPE_DS &&
1762  result = ldns_rr_compare_ds_dnskey(rr1, rr2);
1763  } else if (ldns_rr_get_type(rr1) == LDNS_RR_TYPE_DNSKEY &&
1765  result = ldns_rr_compare_ds_dnskey(rr2, rr1);
1766  } else if (ldns_rr_get_type(rr1) == LDNS_RR_TYPE_CDS &&
1768  result = ldns_rr_compare_ds_dnskey(rr1, rr2);
1769  } else if (ldns_rr_get_type(rr1) == LDNS_RR_TYPE_CDNSKEY &&
1771  result = ldns_rr_compare_ds_dnskey(rr2, rr1);
1772  } else {
1773  result = (ldns_rr_compare(rr1, rr2) == 0);
1774  }
1775 
1776  ldns_rr_free(rr1);
1777  ldns_rr_free(rr2);
1778 
1779  return result;
1780 }
1781 
1782 int
1784 {
1785  size_t i = 0;
1786  int rr_cmp;
1787 
1788  assert(rrl1 != NULL);
1789  assert(rrl2 != NULL);
1790 
1791  for (i = 0; i < ldns_rr_list_rr_count(rrl1) && i < ldns_rr_list_rr_count(rrl2); i++) {
1792  rr_cmp = ldns_rr_compare(ldns_rr_list_rr(rrl1, i), ldns_rr_list_rr(rrl2, i));
1793  if (rr_cmp != 0) {
1794  return rr_cmp;
1795  }
1796  }
1797 
1798  if (i == ldns_rr_list_rr_count(rrl1) &&
1799  i != ldns_rr_list_rr_count(rrl2)) {
1800  return 1;
1801  } else if (i == ldns_rr_list_rr_count(rrl2) &&
1802  i != ldns_rr_list_rr_count(rrl1)) {
1803  return -1;
1804  } else {
1805  return 0;
1806  }
1807 }
1808 
1809 size_t
1811 {
1812  size_t rrsize;
1813  size_t i;
1814 
1815  rrsize = 0;
1816  /* add all the rdf sizes */
1817  for(i = 0; i < ldns_rr_rd_count(r); i++) {
1818  rrsize += ldns_rdf_size(ldns_rr_rdf(r, i));
1819  }
1820  /* ownername */
1821  rrsize += ldns_rdf_size(ldns_rr_owner(r));
1822  rrsize += LDNS_RR_OVERHEAD;
1823  return rrsize;
1824 }
1825 
1826 void
1828 {
1829  uint16_t i;
1830 
1831  if (!rr) {
1832  return;
1833  }
1834 
1836 
1837  /*
1838  * lowercase the rdata dnames if the rr type is one
1839  * of the list in chapter 7 of RFC3597
1840  * Also added RRSIG, because a "Signer's Name" should be canonicalized
1841  * too. See dnssec-bis-updates-16. We can add it to this list because
1842  * the "Signer's Name" is the only dname type rdata field in a RRSIG.
1843  */
1844  switch(ldns_rr_get_type(rr)) {
1845  case LDNS_RR_TYPE_NS:
1846  case LDNS_RR_TYPE_MD:
1847  case LDNS_RR_TYPE_MF:
1848  case LDNS_RR_TYPE_CNAME:
1849  case LDNS_RR_TYPE_SOA:
1850  case LDNS_RR_TYPE_MB:
1851  case LDNS_RR_TYPE_MG:
1852  case LDNS_RR_TYPE_MR:
1853  case LDNS_RR_TYPE_PTR:
1854  case LDNS_RR_TYPE_MINFO:
1855  case LDNS_RR_TYPE_MX:
1856  case LDNS_RR_TYPE_RP:
1857  case LDNS_RR_TYPE_AFSDB:
1858  case LDNS_RR_TYPE_RT:
1859  case LDNS_RR_TYPE_SIG:
1860  case LDNS_RR_TYPE_PX:
1861  case LDNS_RR_TYPE_NXT:
1862  case LDNS_RR_TYPE_NAPTR:
1863  case LDNS_RR_TYPE_KX:
1864  case LDNS_RR_TYPE_SRV:
1865  case LDNS_RR_TYPE_DNAME:
1866  case LDNS_RR_TYPE_A6:
1867  case LDNS_RR_TYPE_RRSIG:
1868  for (i = 0; i < ldns_rr_rd_count(rr); i++) {
1870  }
1871  return;
1872  default:
1873  /* do nothing */
1874  return;
1875  }
1876 }
1877 
1878 void
1880 {
1881  size_t i;
1882  for (i = 0; i < ldns_rr_list_rr_count(rr_list); i++) {
1883  ldns_rr2canonical(ldns_rr_list_rr(rr_list, i));
1884  }
1885 }
1886 
1887 uint8_t
1889 {
1890  if (!rr) {
1891  return 0;
1892  }
1893  return ldns_dname_label_count(
1894  ldns_rr_owner(rr));
1895 }
1896 
1898 static const ldns_rdf_type type_0_wireformat[] = { LDNS_RDF_TYPE_UNKNOWN };
1899 static const ldns_rdf_type type_a_wireformat[] = { LDNS_RDF_TYPE_A };
1900 static const ldns_rdf_type type_ns_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1901 static const ldns_rdf_type type_md_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1902 static const ldns_rdf_type type_mf_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1903 static const ldns_rdf_type type_cname_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1904 static const ldns_rdf_type type_soa_wireformat[] = {
1908 };
1909 static const ldns_rdf_type type_mb_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1910 static const ldns_rdf_type type_mg_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1911 static const ldns_rdf_type type_mr_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1912 static const ldns_rdf_type type_wks_wireformat[] = {
1914 };
1915 static const ldns_rdf_type type_ptr_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1916 static const ldns_rdf_type type_hinfo_wireformat[] = {
1918 };
1919 static const ldns_rdf_type type_minfo_wireformat[] = {
1921 };
1922 static const ldns_rdf_type type_mx_wireformat[] = {
1924 };
1925 static const ldns_rdf_type type_rp_wireformat[] = {
1927 };
1928 static const ldns_rdf_type type_afsdb_wireformat[] = {
1930 };
1931 static const ldns_rdf_type type_x25_wireformat[] = { LDNS_RDF_TYPE_STR };
1932 static const ldns_rdf_type type_isdn_wireformat[] = {
1934 };
1935 static const ldns_rdf_type type_rt_wireformat[] = {
1937 };
1938 static const ldns_rdf_type type_nsap_wireformat[] = {
1940 };
1941 static const ldns_rdf_type type_nsap_ptr_wireformat[] = {
1943 };
1944 static const ldns_rdf_type type_sig_wireformat[] = {
1948 };
1949 static const ldns_rdf_type type_key_wireformat[] = {
1951 };
1952 static const ldns_rdf_type type_px_wireformat[] = {
1954 };
1955 static const ldns_rdf_type type_gpos_wireformat[] = {
1957 };
1958 static const ldns_rdf_type type_aaaa_wireformat[] = { LDNS_RDF_TYPE_AAAA };
1959 static const ldns_rdf_type type_loc_wireformat[] = { LDNS_RDF_TYPE_LOC };
1960 static const ldns_rdf_type type_nxt_wireformat[] = {
1962 };
1963 static const ldns_rdf_type type_eid_wireformat[] = {
1965 };
1966 static const ldns_rdf_type type_nimloc_wireformat[] = {
1968 };
1969 static const ldns_rdf_type type_srv_wireformat[] = {
1971 };
1972 static const ldns_rdf_type type_atma_wireformat[] = {
1974 };
1975 static const ldns_rdf_type type_naptr_wireformat[] = {
1977 };
1978 static const ldns_rdf_type type_kx_wireformat[] = {
1980 };
1981 static const ldns_rdf_type type_cert_wireformat[] = {
1983 };
1984 static const ldns_rdf_type type_a6_wireformat[] = { LDNS_RDF_TYPE_UNKNOWN };
1985 static const ldns_rdf_type type_dname_wireformat[] = { LDNS_RDF_TYPE_DNAME };
1986 static const ldns_rdf_type type_sink_wireformat[] = { LDNS_RDF_TYPE_INT8,
1988 };
1989 static const ldns_rdf_type type_apl_wireformat[] = {
1991 };
1992 static const ldns_rdf_type type_ds_wireformat[] = {
1994 };
1995 static const ldns_rdf_type type_sshfp_wireformat[] = {
1997 };
1998 static const ldns_rdf_type type_ipseckey_wireformat[] = {
2000 };
2001 static const ldns_rdf_type type_rrsig_wireformat[] = {
2004 };
2005 static const ldns_rdf_type type_nsec_wireformat[] = {
2007 };
2008 static const ldns_rdf_type type_dhcid_wireformat[] = {
2010 };
2011 static const ldns_rdf_type type_talink_wireformat[] = {
2013 };
2014 #ifdef RRTYPE_OPENPGPKEY
2015 static const ldns_rdf_type type_openpgpkey_wireformat[] = {
2017 };
2018 #endif
2019 static const ldns_rdf_type type_csync_wireformat[] = {
2021 };
2022 static const ldns_rdf_type type_zonemd_wireformat[] = {
2025 };
2026 #ifdef RRTYPE_SVCB_HTTPS
2027 static const ldns_rdf_type type_svcb_wireformat[] = {
2031 };
2032 #endif
2033 #ifdef RRTYPE_DSYNC
2034 static const ldns_rdf_type type_dsync_wireformat[] = {
2039 };
2040 #endif
2041 #ifdef RRTYPE_HHIT_BRID
2042 static const ldns_rdf_type type_hhit_wireformat[] = {
2044 };
2045 static const ldns_rdf_type type_brid_wireformat[] = {
2047 };
2048 #endif
2049 
2050 /* nsec3 is some vars, followed by same type of data of nsec */
2051 static const ldns_rdf_type type_nsec3_wireformat[] = {
2052 /* LDNS_RDF_TYPE_NSEC3_VARS, LDNS_RDF_TYPE_NSEC3_NEXT_OWNER, LDNS_RDF_TYPE_NSEC*/
2054 };
2055 
2056 static const ldns_rdf_type type_nsec3param_wireformat[] = {
2057 /* LDNS_RDF_TYPE_NSEC3_PARAMS_VARS*/
2062 };
2063 
2064 static const ldns_rdf_type type_dnskey_wireformat[] = {
2069 };
2070 static const ldns_rdf_type type_tkey_wireformat[] = {
2078 };
2079 static const ldns_rdf_type type_tsig_wireformat[] = {
2087 };
2088 static const ldns_rdf_type type_tlsa_wireformat[] = {
2093 };
2094 static const ldns_rdf_type type_hip_wireformat[] = {
2096 };
2097 static const ldns_rdf_type type_nid_wireformat[] = {
2100 };
2101 static const ldns_rdf_type type_l32_wireformat[] = {
2104 };
2105 static const ldns_rdf_type type_l64_wireformat[] = {
2108 };
2109 static const ldns_rdf_type type_lp_wireformat[] = {
2112 };
2113 static const ldns_rdf_type type_eui48_wireformat[] = {
2115 };
2116 static const ldns_rdf_type type_eui64_wireformat[] = {
2118 };
2119 static const ldns_rdf_type type_uri_wireformat[] = {
2123 };
2124 static const ldns_rdf_type type_caa_wireformat[] = {
2128 };
2129 #ifdef RRTYPE_DOA
2130 static const ldns_rdf_type type_doa_wireformat[] = {
2136 };
2137 #endif
2138 #ifdef RRTYPE_AMTRELAY
2139 static const ldns_rdf_type type_amtrelay_wireformat[] = {
2141 };
2142 #endif
2143 #ifdef RRTYPE_CLA_IPN
2144 static const ldns_rdf_type type_ipn_wireformat[] = {
2146 };
2147 #endif
2148 
2149 
2150 
2154 /* All RR's defined in 1035 are well known and can thus
2155  * be compressed. See RFC3597. These RR's are:
2156  * CNAME HINFO MB MD MF MG MINFO MR MX NULL NS PTR SOA TXT
2157  */
2158 static ldns_rr_descriptor rdata_field_descriptors[] = {
2159  /* 0 */
2160  { 0, NULL, 0, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2161  /* 1 */
2162  {LDNS_RR_TYPE_A, "A", 1, 1, type_a_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2163  /* 2 */
2164  {LDNS_RR_TYPE_NS, "NS", 1, 1, type_ns_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2165  /* 3 */
2166  {LDNS_RR_TYPE_MD, "MD", 1, 1, type_md_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2167  /* 4 */
2168  {LDNS_RR_TYPE_MF, "MF", 1, 1, type_mf_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2169  /* 5 */
2170  {LDNS_RR_TYPE_CNAME, "CNAME", 1, 1, type_cname_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2171  /* 6 */
2172  {LDNS_RR_TYPE_SOA, "SOA", 7, 7, type_soa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 2 },
2173  /* 7 */
2174  {LDNS_RR_TYPE_MB, "MB", 1, 1, type_mb_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2175  /* 8 */
2176  {LDNS_RR_TYPE_MG, "MG", 1, 1, type_mg_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2177  /* 9 */
2178  {LDNS_RR_TYPE_MR, "MR", 1, 1, type_mr_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2179  /* 10 */
2180  {LDNS_RR_TYPE_NULL, "NULL", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2181  /* 11 */
2182  {LDNS_RR_TYPE_WKS, "WKS", 2, 2, type_wks_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2183  /* 12 */
2184  {LDNS_RR_TYPE_PTR, "PTR", 1, 1, type_ptr_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2185  /* 13 */
2186  {LDNS_RR_TYPE_HINFO, "HINFO", 2, 2, type_hinfo_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2187  /* 14 */
2188  {LDNS_RR_TYPE_MINFO, "MINFO", 2, 2, type_minfo_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 2 },
2189  /* 15 */
2190  {LDNS_RR_TYPE_MX, "MX", 2, 2, type_mx_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_COMPRESS, 1 },
2191  /* 16 */
2192  {LDNS_RR_TYPE_TXT, "TXT", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2193  /* 17 */
2194  {LDNS_RR_TYPE_RP, "RP", 2, 2, type_rp_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 2 },
2195  /* 18 */
2196  {LDNS_RR_TYPE_AFSDB, "AFSDB", 2, 2, type_afsdb_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2197  /* 19 */
2198  {LDNS_RR_TYPE_X25, "X25", 1, 1, type_x25_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2199  /* 20 */
2200  {LDNS_RR_TYPE_ISDN, "ISDN", 1, 2, type_isdn_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2201  /* 21 */
2202  {LDNS_RR_TYPE_RT, "RT", 2, 2, type_rt_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2203  /* 22 */
2204  {LDNS_RR_TYPE_NSAP, "NSAP", 1, 1, type_nsap_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2205  /* 23 */
2206  {LDNS_RR_TYPE_NSAP_PTR, "NSAP-PTR", 1, 1, type_nsap_ptr_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2207  /* 24 */
2208  {LDNS_RR_TYPE_SIG, "SIG", 9, 9, type_sig_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2209  /* 25 */
2210  {LDNS_RR_TYPE_KEY, "KEY", 4, 4, type_key_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2211  /* 26 */
2212  {LDNS_RR_TYPE_PX, "PX", 3, 3, type_px_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 2 },
2213  /* 27 */
2214  {LDNS_RR_TYPE_GPOS, "GPOS", 3, 3, type_gpos_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2215  /* 28 */
2216  {LDNS_RR_TYPE_AAAA, "AAAA", 1, 1, type_aaaa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2217  /* 29 */
2218  {LDNS_RR_TYPE_LOC, "LOC", 1, 1, type_loc_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2219  /* 30 */
2220  {LDNS_RR_TYPE_NXT, "NXT", 2, 2, type_nxt_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2221  /* 31 */
2222  {LDNS_RR_TYPE_EID, "EID", 1, 1, type_eid_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2223  /* 32 */
2224  {LDNS_RR_TYPE_NIMLOC, "NIMLOC", 1, 1, type_nimloc_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2225  /* 33 */
2226  {LDNS_RR_TYPE_SRV, "SRV", 4, 4, type_srv_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2227  /* 34 */
2228  {LDNS_RR_TYPE_ATMA, "ATMA", 1, 1, type_atma_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2229  /* 35 */
2230  {LDNS_RR_TYPE_NAPTR, "NAPTR", 6, 6, type_naptr_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2231  /* 36 */
2232  {LDNS_RR_TYPE_KX, "KX", 2, 2, type_kx_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2233  /* 37 */
2234  {LDNS_RR_TYPE_CERT, "CERT", 4, 4, type_cert_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2235  /* 38 */
2236  {LDNS_RR_TYPE_A6, "A6", 1, 1, type_a6_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2237  /* 39 */
2238  {LDNS_RR_TYPE_DNAME, "DNAME", 1, 1, type_dname_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2239  /* 40 */
2240  {LDNS_RR_TYPE_SINK, "SINK", 1, 1, type_sink_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2241  /* 41 */
2242  {LDNS_RR_TYPE_OPT, "OPT", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2243  /* 42 */
2244  {LDNS_RR_TYPE_APL, "APL", 0, 0, type_apl_wireformat, LDNS_RDF_TYPE_APL, LDNS_RR_NO_COMPRESS, 0 },
2245  /* 43 */
2246  {LDNS_RR_TYPE_DS, "DS", 4, 4, type_ds_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2247  /* 44 */
2248  {LDNS_RR_TYPE_SSHFP, "SSHFP", 3, 3, type_sshfp_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2249  /* 45 */
2250  {LDNS_RR_TYPE_IPSECKEY, "IPSECKEY", 1, 1, type_ipseckey_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2251  /* 46 */
2252  {LDNS_RR_TYPE_RRSIG, "RRSIG", 9, 9, type_rrsig_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2253  /* 47 */
2254  {LDNS_RR_TYPE_NSEC, "NSEC", 1, 2, type_nsec_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2255  /* 48 */
2256  {LDNS_RR_TYPE_DNSKEY, "DNSKEY", 4, 4, type_dnskey_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2257  /* 49 */
2258  {LDNS_RR_TYPE_DHCID, "DHCID", 1, 1, type_dhcid_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2259  /* 50 */
2260  {LDNS_RR_TYPE_NSEC3, "NSEC3", 5, 6, type_nsec3_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2261  /* 51 */
2262  {LDNS_RR_TYPE_NSEC3PARAM, "NSEC3PARAM", 4, 4, type_nsec3param_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2263  /* 52 */
2264  {LDNS_RR_TYPE_TLSA, "TLSA", 4, 4, type_tlsa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2265 
2266  {LDNS_RR_TYPE_SMIMEA, "SMIMEA", 4, 4, type_tlsa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2267 {LDNS_RR_TYPE_NULL, "TYPE54", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2268 
2269  /* 55
2270  * Hip ends with 0 or more Rendezvous Servers represented as dname's.
2271  * Hence the LDNS_RDF_TYPE_DNAME _variable field and the _maximum field
2272  * set to 0.
2273  */
2274  {LDNS_RR_TYPE_HIP, "HIP", 1, 1, type_hip_wireformat, LDNS_RDF_TYPE_DNAME, LDNS_RR_NO_COMPRESS, 0 },
2275 
2276 #ifdef RRTYPE_NINFO
2277  /* 56 */
2278  {LDNS_RR_TYPE_NINFO, "NINFO", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2279 #else
2280 {LDNS_RR_TYPE_NULL, "TYPE56", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2281 #endif
2282 #ifdef RRTYPE_RKEY
2283  /* 57 */
2284  {LDNS_RR_TYPE_RKEY, "RKEY", 4, 4, type_key_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2285 #else
2286 {LDNS_RR_TYPE_NULL, "TYPE57", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2287 #endif
2288  /* 58 */
2289  {LDNS_RR_TYPE_TALINK, "TALINK", 2, 2, type_talink_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 2 },
2290 
2291  /* 59 */
2292  {LDNS_RR_TYPE_CDS, "CDS", 4, 4, type_ds_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2293  /* 60 */
2294  {LDNS_RR_TYPE_CDNSKEY, "CDNSKEY", 4, 4, type_dnskey_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2295 
2296 #ifdef RRTYPE_OPENPGPKEY
2297  /* 61 */
2298  {LDNS_RR_TYPE_OPENPGPKEY, "OPENPGPKEY", 1, 1, type_openpgpkey_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2299 #else
2300 {LDNS_RR_TYPE_NULL, "TYPE61", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2301 #endif
2302  /* 62 */
2303  {LDNS_RR_TYPE_CSYNC, "CSYNC", 3, 3, type_csync_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2304  /* 63 */
2305  {LDNS_RR_TYPE_ZONEMD, "ZONEMD", 4, 4, type_zonemd_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2306 #ifdef RRTYPE_SVCB_HTTPS
2307  /* 64 */
2308  {LDNS_RR_TYPE_SVCB, "SVCB", 2, 3, type_svcb_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2309  /* 65 */
2310  {LDNS_RR_TYPE_HTTPS, "HTTPS", 2, 3, type_svcb_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2311 
2312 #else
2313 {LDNS_RR_TYPE_NULL, "TYPE64", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2314 {LDNS_RR_TYPE_NULL, "TYPE65", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2315 #endif
2316 #ifdef RRTYPE_DSYNC
2317  /* 66 */
2318  {LDNS_RR_TYPE_DSYNC, "DSYNC", 4, 4, type_dsync_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2319 #else
2320 {LDNS_RR_TYPE_NULL, "TYPE66", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2321 #endif
2322 #ifdef RRTYPE_HHIT_BRID
2323  /* 67 */
2324  {LDNS_RR_TYPE_HHIT, "HHIT", 1, 1, type_hhit_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2325  /* 68 */
2326  {LDNS_RR_TYPE_BRID, "BRID", 1, 1, type_brid_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2327 #else
2328 {LDNS_RR_TYPE_NULL, "TYPE67", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2329 {LDNS_RR_TYPE_NULL, "TYPE68", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2330 #endif
2331 {LDNS_RR_TYPE_NULL, "TYPE69", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2332 {LDNS_RR_TYPE_NULL, "TYPE70", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2333 {LDNS_RR_TYPE_NULL, "TYPE71", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2334 {LDNS_RR_TYPE_NULL, "TYPE72", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2335 {LDNS_RR_TYPE_NULL, "TYPE73", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2336 {LDNS_RR_TYPE_NULL, "TYPE74", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2337 {LDNS_RR_TYPE_NULL, "TYPE75", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2338 {LDNS_RR_TYPE_NULL, "TYPE76", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2339 {LDNS_RR_TYPE_NULL, "TYPE77", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2340 {LDNS_RR_TYPE_NULL, "TYPE78", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2341 {LDNS_RR_TYPE_NULL, "TYPE79", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2342 {LDNS_RR_TYPE_NULL, "TYPE80", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2343 {LDNS_RR_TYPE_NULL, "TYPE81", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2344 {LDNS_RR_TYPE_NULL, "TYPE82", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2345 {LDNS_RR_TYPE_NULL, "TYPE83", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2346 {LDNS_RR_TYPE_NULL, "TYPE84", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2347 {LDNS_RR_TYPE_NULL, "TYPE85", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2348 {LDNS_RR_TYPE_NULL, "TYPE86", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2349 {LDNS_RR_TYPE_NULL, "TYPE87", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2350 {LDNS_RR_TYPE_NULL, "TYPE88", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2351 {LDNS_RR_TYPE_NULL, "TYPE89", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2352 {LDNS_RR_TYPE_NULL, "TYPE90", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2353 {LDNS_RR_TYPE_NULL, "TYPE91", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2354 {LDNS_RR_TYPE_NULL, "TYPE92", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2355 {LDNS_RR_TYPE_NULL, "TYPE93", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2356 {LDNS_RR_TYPE_NULL, "TYPE94", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2357 {LDNS_RR_TYPE_NULL, "TYPE95", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2358 {LDNS_RR_TYPE_NULL, "TYPE96", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2359 {LDNS_RR_TYPE_NULL, "TYPE97", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2360 {LDNS_RR_TYPE_NULL, "TYPE98", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2361 
2362  /* 99 */
2363  {LDNS_RR_TYPE_SPF, "SPF", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2364 
2365  /* UINFO [IANA-Reserved] */
2366 {LDNS_RR_TYPE_NULL, "TYPE100", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2367  /* UID [IANA-Reserved] */
2368 {LDNS_RR_TYPE_NULL, "TYPE101", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2369  /* GID [IANA-Reserved] */
2370 {LDNS_RR_TYPE_NULL, "TYPE102", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2371  /* UNSPEC [IANA-Reserved] */
2372 {LDNS_RR_TYPE_NULL, "TYPE103", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2373 
2374  /* 104 */
2375  {LDNS_RR_TYPE_NID, "NID", 2, 2, type_nid_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2376  /* 105 */
2377  {LDNS_RR_TYPE_L32, "L32", 2, 2, type_l32_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2378  /* 106 */
2379  {LDNS_RR_TYPE_L64, "L64", 2, 2, type_l64_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2380  /* 107 */
2381  {LDNS_RR_TYPE_LP, "LP", 2, 2, type_lp_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2382  /* 108 */
2383  {LDNS_RR_TYPE_EUI48, "EUI48", 1, 1, type_eui48_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2384  /* 109 */
2385  {LDNS_RR_TYPE_EUI64, "EUI64", 1, 1, type_eui64_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2386 
2387 {LDNS_RR_TYPE_NULL, "TYPE110", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2388 {LDNS_RR_TYPE_NULL, "TYPE111", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2389 {LDNS_RR_TYPE_NULL, "TYPE112", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2390 {LDNS_RR_TYPE_NULL, "TYPE113", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2391 {LDNS_RR_TYPE_NULL, "TYPE114", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2392 {LDNS_RR_TYPE_NULL, "TYPE115", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2393 {LDNS_RR_TYPE_NULL, "TYPE116", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2394 {LDNS_RR_TYPE_NULL, "TYPE117", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2395 {LDNS_RR_TYPE_NULL, "TYPE118", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2396 {LDNS_RR_TYPE_NULL, "TYPE119", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2397 {LDNS_RR_TYPE_NULL, "TYPE120", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2398 {LDNS_RR_TYPE_NULL, "TYPE121", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2399 {LDNS_RR_TYPE_NULL, "TYPE122", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2400 {LDNS_RR_TYPE_NULL, "TYPE123", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2401 {LDNS_RR_TYPE_NULL, "TYPE124", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2402 {LDNS_RR_TYPE_NULL, "TYPE125", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2403 {LDNS_RR_TYPE_NULL, "TYPE126", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2404 {LDNS_RR_TYPE_NULL, "TYPE127", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2405 {LDNS_RR_TYPE_NXNAME, "NXNAME", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2406 {LDNS_RR_TYPE_NULL, "TYPE129", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2407 {LDNS_RR_TYPE_NULL, "TYPE130", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2408 {LDNS_RR_TYPE_NULL, "TYPE131", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2409 {LDNS_RR_TYPE_NULL, "TYPE132", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2410 {LDNS_RR_TYPE_NULL, "TYPE133", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2411 {LDNS_RR_TYPE_NULL, "TYPE134", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2412 {LDNS_RR_TYPE_NULL, "TYPE135", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2413 {LDNS_RR_TYPE_NULL, "TYPE136", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2414 {LDNS_RR_TYPE_NULL, "TYPE137", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2415 {LDNS_RR_TYPE_NULL, "TYPE138", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2416 {LDNS_RR_TYPE_NULL, "TYPE139", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2417 {LDNS_RR_TYPE_NULL, "TYPE140", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2418 {LDNS_RR_TYPE_NULL, "TYPE141", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2419 {LDNS_RR_TYPE_NULL, "TYPE142", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2420 {LDNS_RR_TYPE_NULL, "TYPE143", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2421 {LDNS_RR_TYPE_NULL, "TYPE144", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2422 {LDNS_RR_TYPE_NULL, "TYPE145", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2423 {LDNS_RR_TYPE_NULL, "TYPE146", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2424 {LDNS_RR_TYPE_NULL, "TYPE147", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2425 {LDNS_RR_TYPE_NULL, "TYPE148", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2426 {LDNS_RR_TYPE_NULL, "TYPE149", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2427 {LDNS_RR_TYPE_NULL, "TYPE150", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2428 {LDNS_RR_TYPE_NULL, "TYPE151", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2429 {LDNS_RR_TYPE_NULL, "TYPE152", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2430 {LDNS_RR_TYPE_NULL, "TYPE153", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2431 {LDNS_RR_TYPE_NULL, "TYPE154", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2432 {LDNS_RR_TYPE_NULL, "TYPE155", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2433 {LDNS_RR_TYPE_NULL, "TYPE156", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2434 {LDNS_RR_TYPE_NULL, "TYPE157", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2435 {LDNS_RR_TYPE_NULL, "TYPE158", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2436 {LDNS_RR_TYPE_NULL, "TYPE159", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2437 {LDNS_RR_TYPE_NULL, "TYPE160", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2438 {LDNS_RR_TYPE_NULL, "TYPE161", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2439 {LDNS_RR_TYPE_NULL, "TYPE162", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2440 {LDNS_RR_TYPE_NULL, "TYPE163", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2441 {LDNS_RR_TYPE_NULL, "TYPE164", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2442 {LDNS_RR_TYPE_NULL, "TYPE165", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2443 {LDNS_RR_TYPE_NULL, "TYPE166", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2444 {LDNS_RR_TYPE_NULL, "TYPE167", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2445 {LDNS_RR_TYPE_NULL, "TYPE168", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2446 {LDNS_RR_TYPE_NULL, "TYPE169", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2447 {LDNS_RR_TYPE_NULL, "TYPE170", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2448 {LDNS_RR_TYPE_NULL, "TYPE171", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2449 {LDNS_RR_TYPE_NULL, "TYPE172", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2450 {LDNS_RR_TYPE_NULL, "TYPE173", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2451 {LDNS_RR_TYPE_NULL, "TYPE174", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2452 {LDNS_RR_TYPE_NULL, "TYPE175", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2453 {LDNS_RR_TYPE_NULL, "TYPE176", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2454 {LDNS_RR_TYPE_NULL, "TYPE177", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2455 {LDNS_RR_TYPE_NULL, "TYPE178", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2456 {LDNS_RR_TYPE_NULL, "TYPE179", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2457 {LDNS_RR_TYPE_NULL, "TYPE180", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2458 {LDNS_RR_TYPE_NULL, "TYPE181", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2459 {LDNS_RR_TYPE_NULL, "TYPE182", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2460 {LDNS_RR_TYPE_NULL, "TYPE183", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2461 {LDNS_RR_TYPE_NULL, "TYPE184", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2462 {LDNS_RR_TYPE_NULL, "TYPE185", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2463 {LDNS_RR_TYPE_NULL, "TYPE186", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2464 {LDNS_RR_TYPE_NULL, "TYPE187", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2465 {LDNS_RR_TYPE_NULL, "TYPE188", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2466 {LDNS_RR_TYPE_NULL, "TYPE189", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2467 {LDNS_RR_TYPE_NULL, "TYPE190", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2468 {LDNS_RR_TYPE_NULL, "TYPE191", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2469 {LDNS_RR_TYPE_NULL, "TYPE192", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2470 {LDNS_RR_TYPE_NULL, "TYPE193", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2471 {LDNS_RR_TYPE_NULL, "TYPE194", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2472 {LDNS_RR_TYPE_NULL, "TYPE195", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2473 {LDNS_RR_TYPE_NULL, "TYPE196", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2474 {LDNS_RR_TYPE_NULL, "TYPE197", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2475 {LDNS_RR_TYPE_NULL, "TYPE198", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2476 {LDNS_RR_TYPE_NULL, "TYPE199", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2477 {LDNS_RR_TYPE_NULL, "TYPE200", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2478 {LDNS_RR_TYPE_NULL, "TYPE201", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2479 {LDNS_RR_TYPE_NULL, "TYPE202", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2480 {LDNS_RR_TYPE_NULL, "TYPE203", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2481 {LDNS_RR_TYPE_NULL, "TYPE204", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2482 {LDNS_RR_TYPE_NULL, "TYPE205", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2483 {LDNS_RR_TYPE_NULL, "TYPE206", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2484 {LDNS_RR_TYPE_NULL, "TYPE207", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2485 {LDNS_RR_TYPE_NULL, "TYPE208", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2486 {LDNS_RR_TYPE_NULL, "TYPE209", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2487 {LDNS_RR_TYPE_NULL, "TYPE210", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2488 {LDNS_RR_TYPE_NULL, "TYPE211", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2489 {LDNS_RR_TYPE_NULL, "TYPE212", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2490 {LDNS_RR_TYPE_NULL, "TYPE213", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2491 {LDNS_RR_TYPE_NULL, "TYPE214", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2492 {LDNS_RR_TYPE_NULL, "TYPE215", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2493 {LDNS_RR_TYPE_NULL, "TYPE216", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2494 {LDNS_RR_TYPE_NULL, "TYPE217", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2495 {LDNS_RR_TYPE_NULL, "TYPE218", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2496 {LDNS_RR_TYPE_NULL, "TYPE219", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2497 {LDNS_RR_TYPE_NULL, "TYPE220", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2498 {LDNS_RR_TYPE_NULL, "TYPE221", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2499 {LDNS_RR_TYPE_NULL, "TYPE222", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2500 {LDNS_RR_TYPE_NULL, "TYPE223", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2501 {LDNS_RR_TYPE_NULL, "TYPE224", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2502 {LDNS_RR_TYPE_NULL, "TYPE225", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2503 {LDNS_RR_TYPE_NULL, "TYPE226", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2504 {LDNS_RR_TYPE_NULL, "TYPE227", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2505 {LDNS_RR_TYPE_NULL, "TYPE228", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2506 {LDNS_RR_TYPE_NULL, "TYPE229", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2507 {LDNS_RR_TYPE_NULL, "TYPE230", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2508 {LDNS_RR_TYPE_NULL, "TYPE231", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2509 {LDNS_RR_TYPE_NULL, "TYPE232", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2510 {LDNS_RR_TYPE_NULL, "TYPE233", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2511 {LDNS_RR_TYPE_NULL, "TYPE234", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2512 {LDNS_RR_TYPE_NULL, "TYPE235", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2513 {LDNS_RR_TYPE_NULL, "TYPE236", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2514 {LDNS_RR_TYPE_NULL, "TYPE237", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2515 {LDNS_RR_TYPE_NULL, "TYPE238", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2516 {LDNS_RR_TYPE_NULL, "TYPE239", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2517 {LDNS_RR_TYPE_NULL, "TYPE240", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2518 {LDNS_RR_TYPE_NULL, "TYPE241", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2519 {LDNS_RR_TYPE_NULL, "TYPE242", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2520 {LDNS_RR_TYPE_NULL, "TYPE243", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2521 {LDNS_RR_TYPE_NULL, "TYPE244", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2522 {LDNS_RR_TYPE_NULL, "TYPE245", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2523 {LDNS_RR_TYPE_NULL, "TYPE246", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2524 {LDNS_RR_TYPE_NULL, "TYPE247", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2525 {LDNS_RR_TYPE_NULL, "TYPE248", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2526 
2527  /* LDNS_RDF_TYPE_INT16_DATA takes two fields (length and data) as one.
2528  * So, unlike RFC 2930 spec, we have 7 min/max rdf's i.s.o. 8/9.
2529  */
2530  /* 249 */
2531  {LDNS_RR_TYPE_TKEY, "TKEY", 7, 7, type_tkey_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2532  /* LDNS_RDF_TYPE_INT16_DATA takes two fields (length and data) as one.
2533  * So, unlike RFC 2930 spec, we have 7 min/max rdf's i.s.o. 8/9.
2534  */
2535  /* 250 */
2536  {LDNS_RR_TYPE_TSIG, "TSIG", 7, 7, type_tsig_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 1 },
2537 
2538  /* IXFR: A request for a transfer of an incremental zone transfer */
2539 {LDNS_RR_TYPE_NULL, "TYPE251", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2540  /* AXFR: A request for a transfer of an entire zone */
2541 {LDNS_RR_TYPE_NULL, "TYPE252", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2542  /* MAILB: A request for mailbox-related records (MB, MG or MR) */
2543 {LDNS_RR_TYPE_NULL, "TYPE253", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2544  /* MAILA: A request for mail agent RRs (Obsolete - see MX) */
2545 {LDNS_RR_TYPE_NULL, "TYPE254", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2546  /* ANY: A request for all (available) records */
2547 {LDNS_RR_TYPE_NULL, "TYPE255", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2548 
2549  /* 256 */
2550  {LDNS_RR_TYPE_URI, "URI", 3, 3, type_uri_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2551  /* 257 */
2552  {LDNS_RR_TYPE_CAA, "CAA", 3, 3, type_caa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2553 
2554 #ifdef RRTYPE_AVC
2555  /* 258 */
2556  {LDNS_RR_TYPE_AVC, "AVC", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2557 #else
2558 {LDNS_RR_TYPE_NULL, "TYPE258", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2559 #endif
2560 #ifdef RRTYPE_DOA
2561  /* 259 */
2562  {LDNS_RR_TYPE_DOA, "DOA", 5, 5, type_doa_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2563 #else
2564 {LDNS_RR_TYPE_NULL, "TYPE259", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2565 #endif
2566 #ifdef RRTYPE_AMTRELAY
2567  /* 260 */
2568  {LDNS_RR_TYPE_AMTRELAY, "AMTRELAY", 1, 1, type_amtrelay_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2569 #else
2570 {LDNS_RR_TYPE_NULL, "TYPE260", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2571 #endif
2572 #ifdef RRTYPE_RESINFO
2573  /* 261 */
2574  {LDNS_RR_TYPE_RESINFO, "RESINFO", 1, 0, NULL, LDNS_RDF_TYPE_UNQUOTED, LDNS_RR_NO_COMPRESS, 0 },
2575 #else
2576 {LDNS_RR_TYPE_NULL, "TYPE261", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2577 #endif
2578  /* 262 */
2579  {LDNS_RR_TYPE_WALLET, "WALLET", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2580 #ifdef RRTYPE_CLA_IPN
2581  /* 263 */
2582  {LDNS_RR_TYPE_CLA, "CLA", 1, 0, NULL, LDNS_RDF_TYPE_STR, LDNS_RR_NO_COMPRESS, 0 },
2583  /* 264 */
2584  {LDNS_RR_TYPE_IPN, "IPN", 1, 1, type_ipn_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2585 #else
2586 {LDNS_RR_TYPE_NULL, "TYPE263", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2587 {LDNS_RR_TYPE_NULL, "TYPE264", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2588 #endif
2589 /* split in array, no longer contiguous */
2590 
2591 #ifdef RRTYPE_TA
2592  /* 32768 */
2593  {LDNS_RR_TYPE_TA, "TA", 4, 4, type_ds_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2594 #else
2595 {LDNS_RR_TYPE_NULL, "TYPE32768", 1, 1, type_0_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 },
2596 #endif
2597  /* 32769 */
2598  {LDNS_RR_TYPE_DLV, "DLV", 4, 4, type_ds_wireformat, LDNS_RDF_TYPE_NONE, LDNS_RR_NO_COMPRESS, 0 }
2599 };
2606 #define LDNS_RDATA_FIELD_DESCRIPTORS_COUNT \
2607  (sizeof(rdata_field_descriptors)/sizeof(rdata_field_descriptors[0]))
2608 
2609 
2610 /*---------------------------------------------------------------------------*
2611  * The functions below return an bitmap RDF with the space required to set
2612  * or unset all known RR types. Arguably these functions are better situated
2613  * in rdata.c, however for the space calculation it is necessary to walk
2614  * through rdata_field_descriptors which is not easily possible from anywhere
2615  * other than rr.c where it is declared static.
2616  *
2617  * Alternatively rr.c could have provided an iterator for rr_type or
2618  * rdf_descriptors, but this seemed overkill for internal use only.
2619  */
2620 static ldns_rr_descriptor* rdata_field_descriptors_end =
2621  &rdata_field_descriptors[LDNS_RDATA_FIELD_DESCRIPTORS_COUNT];
2622 
2623 /* From RFC3845:
2624  *
2625  * 2.1.2. The List of Type Bit Map(s) Field
2626  *
2627  * The RR type space is split into 256 window blocks, each representing
2628  * the low-order 8 bits of the 16-bit RR type space. Each block that
2629  * has at least one active RR type is encoded using a single octet
2630  * window number (from 0 to 255), a single octet bitmap length (from 1
2631  * to 32) indicating the number of octets used for the window block's
2632  * bitmap, and up to 32 octets (256 bits) of bitmap.
2633  *
2634  * Window blocks are present in the NSEC RR RDATA in increasing
2635  * numerical order.
2636  *
2637  * "|" denotes concatenation
2638  *
2639  * Type Bit Map(s) Field = ( Window Block # | Bitmap Length | Bitmap ) +
2640  *
2641  * <cut>
2642  *
2643  * Blocks with no types present MUST NOT be included. Trailing zero
2644  * octets in the bitmap MUST be omitted. The length of each block's
2645  * bitmap is determined by the type code with the largest numerical
2646  * value within that block, among the set of RR types present at the
2647  * NSEC RR's owner name. Trailing zero octets not specified MUST be
2648  * interpreted as zero octets.
2649  */
2650 static ldns_status
2651 ldns_rdf_bitmap_known_rr_types_set(ldns_rdf** rdf, int value)
2652 {
2653  uint8_t window; /* most significant octet of type */
2654  uint8_t subtype; /* least significant octet of type */
2655  uint16_t windows[256] /* Max subtype per window */
2656 #ifndef S_SPLINT_S
2657  = { 0 }
2658 #endif
2659  ;
2660  ldns_rr_descriptor* d; /* used to traverse rdata_field_descriptors */
2661  size_t i; /* used to traverse windows array */
2662 
2663  size_t sz; /* size needed for type bitmap rdf */
2664  uint8_t* data = NULL; /* rdf data */
2665  uint8_t* dptr; /* used to itraverse rdf data */
2666 
2667  assert(rdf != NULL);
2668 
2669  /* Which windows need to be in the bitmap rdf?
2670  */
2671  for (d=rdata_field_descriptors; d < rdata_field_descriptors_end; d++) {
2672  window = d->_type >> 8;
2673  subtype = d->_type & 0xff;
2674 
2675  /* In the code below, windows[window] == 0 means that the
2676  * window is not in use. So subtype == 0 is a problem. The
2677  * easiest solution is to set subtype to 1, that marks the
2678  * window as in use and doesn't have negative effects.
2679  */
2680  if (subtype == 0)
2681  subtype = 1;
2682  if (windows[window] < subtype) {
2683  windows[window] = subtype;
2684  }
2685  }
2686 
2687  /* How much space do we need in the rdf for those windows?
2688  */
2689  sz = 0;
2690  for (i = 0; i < 256; i++) {
2691  if (windows[i]) {
2692  sz += windows[i] / 8 + 3;
2693  }
2694  }
2695  if (sz > 0) {
2696  /* Format rdf data according RFC3845 Section 2.1.2 (see above)
2697  */
2698  dptr = data = LDNS_XMALLOC(uint8_t, sz);
2699  if (!data) {
2700  return LDNS_STATUS_MEM_ERR;
2701  }
2702  memset(data, value, sz);
2703  for (i = 0; i < 256; i++) {
2704  if (windows[i]) {
2705  *dptr++ = (uint8_t)i;
2706  *dptr++ = (uint8_t)(windows[i] / 8 + 1);
2707  dptr += dptr[-1];
2708  }
2709  }
2710  }
2711  /* Allocate and return rdf structure for the data
2712  */
2713  *rdf = ldns_rdf_new(LDNS_RDF_TYPE_BITMAP, sz, data);
2714  if (!*rdf) {
2715  LDNS_FREE(data);
2716  return LDNS_STATUS_MEM_ERR;
2717  }
2718  return LDNS_STATUS_OK;
2719 }
2720 
2723 {
2724  return ldns_rdf_bitmap_known_rr_types_set(rdf, 0);
2725 }
2726 
2729 {
2730  return ldns_rdf_bitmap_known_rr_types_set(rdf, 255);
2731 }
2732 /* End of RDF bitmap functions
2733  *---------------------------------------------------------------------------*/
2734 
2735 
2736 const ldns_rr_descriptor *
2737 ldns_rr_descript(uint16_t type)
2738 {
2739  size_t i;
2741  return &rdata_field_descriptors[type];
2742  } else {
2743  /* because not all array index equals type code */
2746  i++) {
2747  if (rdata_field_descriptors[i]._type == type) {
2748  return &rdata_field_descriptors[i];
2749  }
2750  }
2751  return &rdata_field_descriptors[0];
2752  }
2753 }
2754 
2755 size_t
2757 {
2758  if (descriptor) {
2759  return descriptor->_minimum;
2760  } else {
2761  return 0;
2762  }
2763 }
2764 
2765 size_t
2767 {
2768  if (descriptor) {
2769  if (descriptor->_variable != LDNS_RDF_TYPE_NONE) {
2770  /* Should really be SIZE_MAX... bad FreeBSD. */
2771  return UINT_MAX;
2772  } else {
2773  return descriptor->_maximum;
2774  }
2775  } else {
2776  return 0;
2777  }
2778 }
2779 
2782  size_t index)
2783 {
2784  assert(descriptor != NULL);
2785  assert(index < descriptor->_maximum
2786  || descriptor->_variable != LDNS_RDF_TYPE_NONE);
2787  if (index < descriptor->_maximum) {
2788  return descriptor->_wireformat[index];
2789  } else {
2790  return descriptor->_variable;
2791  }
2792 }
2793 
2795 ldns_get_rr_type_by_name(const char *name)
2796 {
2797  unsigned int i;
2798  const char *desc_name;
2799  const ldns_rr_descriptor *desc;
2800 
2801  /* TYPEXX representation */
2802  if (strlen(name) > 4 && strncasecmp(name, "TYPE", 4) == 0) {
2803  return atoi(name + 4);
2804  }
2805 
2806  /* Normal types */
2807  for (i = 0; i < (unsigned int) LDNS_RDATA_FIELD_DESCRIPTORS_COUNT; i++) {
2808  desc = &rdata_field_descriptors[i];
2809  desc_name = desc->_name;
2810  if(desc_name &&
2811  strlen(name) == strlen(desc_name) &&
2812  strncasecmp(name, desc_name, strlen(desc_name)) == 0) {
2813  /* because not all array index equals type code */
2814  return desc->_type;
2815  }
2816  }
2817 
2818  /* special cases for query types */
2819  if (strlen(name) == 4 && strncasecmp(name, "IXFR", 4) == 0) {
2820  return 251;
2821  } else if (strlen(name) == 4 && strncasecmp(name, "AXFR", 4) == 0) {
2822  return 252;
2823  } else if (strlen(name) == 5 && strncasecmp(name, "MAILB", 5) == 0) {
2824  return 253;
2825  } else if (strlen(name) == 5 && strncasecmp(name, "MAILA", 5) == 0) {
2826  return 254;
2827  } else if (strlen(name) == 3 && strncasecmp(name, "ANY", 3) == 0) {
2828  return 255;
2829  }
2830 
2831  return 0;
2832 }
2833 
2835 ldns_get_rr_class_by_name(const char *name)
2836 {
2837  ldns_lookup_table *lt;
2838 
2839  /* CLASSXX representation */
2840  if (strlen(name) > 5 && strncasecmp(name, "CLASS", 5) == 0) {
2841  return atoi(name + 5);
2842  }
2843 
2844  /* Normal types */
2846 
2847  if (lt) {
2848  return lt->id;
2849  }
2850  return 0;
2851 }
2852 
2853 
2856 {
2857  ldns_rr_type r;
2858 
2859  if (!rd) {
2860  return 0;
2861  }
2862 
2864  return 0;
2865  }
2866 
2868  return r;
2869 }
2870 
2873 {
2874  if (rr_list && ldns_rr_list_rr_count(rr_list) > 0) {
2875  return ldns_rr_get_type(ldns_rr_list_rr(rr_list, 0));
2876  } else {
2877  return 0;
2878  }
2879 }
2880 
2881 ldns_rdf *
2883 {
2884  if (rr_list && ldns_rr_list_rr_count(rr_list) > 0) {
2885  return ldns_rr_owner(ldns_rr_list_rr(rr_list, 0));
2886  } else {
2887  return NULL;
2888  }
2889 }
void ldns_buffer_free(ldns_buffer *buffer)
frees the buffer.
Definition: buffer.c:137
ldns_buffer * ldns_buffer_new(size_t capacity)
creates a new buffer with the specified capacity.
Definition: buffer.c:16
void ldns_buffer_new_frm_data(ldns_buffer *buffer, const void *data, size_t size)
creates a buffer with the specified data.
Definition: buffer.c:41
signed char ldns_dname_str_absolute(const char *dname_str)
Checks whether the given dname string is absolute (i.e.
Definition: dname.c:518
int ldns_dname_compare(const ldns_rdf *dname1, const ldns_rdf *dname2)
Compares the two dname rdf's according to the algorithm for ordering in RFC4034 Section 6.
Definition: dname.c:359
void ldns_dname2canonical(const ldns_rdf *rdf)
Put a dname into canonical fmt - ie.
Definition: dname.c:280
uint8_t ldns_dname_label_count(const ldns_rdf *r)
count the number of labels inside a LDNS_RDF_DNAME type rdf.
Definition: dname.c:214
ldns_status ldns_dname_cat(ldns_rdf *rd1, const ldns_rdf *rd2)
concatenates rd2 after rd1 (rd2 is copied, rd1 is modified)
Definition: dname.c:90
ldns_rdf * ldns_dname_new_frm_str(const char *str)
creates a new dname rdf from a string.
Definition: dname.c:268
ldns_rr * ldns_key_rr2ds(const ldns_rr *key, ldns_hash h)
returns a new DS rr that represents the given key rr.
Definition: dnssec.c:509
@ LDNS_STATUS_SYNTAX_SUPERFLUOUS_TEXT_ERR
Definition: error.h:130
@ LDNS_STATUS_SYNTAX_ERR
Definition: error.h:97
@ LDNS_STATUS_SYNTAX_DNAME_ERR
Definition: error.h:84
@ LDNS_STATUS_MEM_ERR
Definition: error.h:34
@ LDNS_STATUS_SYNTAX_TTL
Definition: error.h:88
@ LDNS_STATUS_SYNTAX_RDATA_ERR
Definition: error.h:83
@ LDNS_STATUS_SYNTAX_TYPE_ERR
Definition: error.h:79
@ LDNS_STATUS_OK
Definition: error.h:26
@ LDNS_STATUS_SYNTAX_MISSING_VALUE_ERR
Definition: error.h:93
@ LDNS_STATUS_SYNTAX_EMPTY
Definition: error.h:91
@ LDNS_STATUS_SYNTAX_CLASS_ERR
Definition: error.h:80
@ LDNS_STATUS_SYNTAX_INCLUDE
Definition: error.h:90
@ LDNS_STATUS_SYNTAX_TTL_ERR
Definition: error.h:81
@ LDNS_STATUS_SYNTAX_ORIGIN
Definition: error.h:89
enum ldns_enum_status ldns_status
Definition: error.h:152
ldns_status ldns_rr2buffer_wire(ldns_buffer *output, const ldns_rr *rr, int section)
Copies the rr data to the buffer in wire format.
Definition: host2wire.c:244
ldns_status ldns_rr2buffer_wire_canonical(ldns_buffer *output, const ldns_rr *rr, int section)
Copies the rr data to the buffer in wire format, in canonical format according to RFC3597 (every dnam...
Definition: host2wire.c:171
enum ldns_enum_hash ldns_hash
Definition: keys.h:76
Including this file will include all ldns files, and define some lookup tables.
#define LDNS_DEFAULT_TTL
Definition: ldns.h:136
ldns_lookup_table ldns_rr_classes[]
rr types
Definition: host2str.c:99
#define LDNS_MAX_PACKETLEN
Definition: packet.h:24
@ LDNS_SECTION_ANY
bogus section, if not interested
Definition: packet.h:283
ldns_status ldns_fget_token_l_st(FILE *f, char **token, size_t *limit, signed char fixed, const char *delim, int *line_nr)
returns a token/char from the stream f.
Definition: parse.c:226
#define LDNS_PARSE_SKIP_SPACE
Definition: parse.h:20
ssize_t ldns_bget_token(ldns_buffer *b, char *token, const char *delim, size_t limit)
returns a token/char from the buffer b.
Definition: parse.c:301
uint32_t ldns_str2period(const char *nptr, const char **endptr)
converts a ttl value (like 5d2h) to a long.
Definition: rdata.c:697
ldns_rdf_type ldns_rdf_get_type(const ldns_rdf *rd)
returns the type of the rdf.
Definition: rdata.c:31
void ldns_rdf_set_type(ldns_rdf *rd, ldns_rdf_type type)
sets the size of the rdf.
Definition: rdata.c:53
void ldns_rdf_deep_free(ldns_rdf *rd)
frees a rdf structure and frees the data.
Definition: rdata.c:230
ldns_rdf * ldns_rdf_new(ldns_rdf_type type, size_t size, void *data)
allocates a new rdf structure and fills it.
Definition: rdata.c:179
#define LDNS_MAX_RDFLEN
Definition: rdata.h:31
uint16_t ldns_rdf2native_int16(const ldns_rdf *rd)
returns the native uint16_t representation from the rdf.
Definition: rdata.c:84
ldns_rdf * ldns_rdf_new_frm_str(ldns_rdf_type type, const char *str)
creates a new rdf from a string.
Definition: rdata.c:249
uint8_t ldns_rdf2native_int8(const ldns_rdf *rd)
returns the native uint8_t representation from the rdf.
Definition: rdata.c:70
@ LDNS_RDF_TYPE_INT32
32 bits
Definition: rdata.h:56
@ LDNS_RDF_TYPE_TAG
A non-zero sequence of US-ASCII letters and numbers in lower case.
Definition: rdata.h:132
@ LDNS_RDF_TYPE_NSAP
NSAP.
Definition: rdata.h:106
@ LDNS_RDF_TYPE_HIP
Represents the Public Key Algorithm, HIT and Public Key fields for the HIP RR types.
Definition: rdata.h:95
@ LDNS_RDF_TYPE_IPN
draft-johnson-dns-ipn-cla-07
Definition: rdata.h:155
@ LDNS_RDF_TYPE_NSEC3_NEXT_OWNER
nsec3 base32 string (with length byte on wire
Definition: rdata.h:114
@ LDNS_RDF_TYPE_CERT_ALG
certificate algorithm
Definition: rdata.h:81
@ LDNS_RDF_TYPE_EUI48
6 * 8 bit hex numbers separated by dashes.
Definition: rdata.h:122
@ LDNS_RDF_TYPE_EUI64
8 * 8 bit hex numbers separated by dashes.
Definition: rdata.h:124
@ LDNS_RDF_TYPE_PERIOD
period
Definition: rdata.h:89
@ LDNS_RDF_TYPE_B64
b64 string
Definition: rdata.h:70
@ LDNS_RDF_TYPE_AAAA
AAAA record.
Definition: rdata.h:62
@ LDNS_RDF_TYPE_UNKNOWN
unknown types
Definition: rdata.h:85
@ LDNS_RDF_TYPE_WKS
well known services
Definition: rdata.h:104
@ LDNS_RDF_TYPE_DNAME
domain name
Definition: rdata.h:50
@ LDNS_RDF_TYPE_TIME
time (32 bits)
Definition: rdata.h:87
@ LDNS_RDF_TYPE_BITMAP
Definition: rdata.h:75
@ LDNS_RDF_TYPE_SVCPARAMS
draft-ietf-dnsop-svcb-https
Definition: rdata.h:152
@ LDNS_RDF_TYPE_NSEC
nsec type codes
Definition: rdata.h:74
@ LDNS_RDF_TYPE_SELECTOR
Definition: rdata.h:145
@ LDNS_RDF_TYPE_NSEC3_SALT
nsec3 hash salt
Definition: rdata.h:112
@ LDNS_RDF_TYPE_APL
apl data
Definition: rdata.h:66
@ LDNS_RDF_TYPE_A
A record.
Definition: rdata.h:60
@ LDNS_RDF_TYPE_LONG_STR
A <character-string> encoding of the value field as specified [RFC1035], Section 5....
Definition: rdata.h:138
@ LDNS_RDF_TYPE_LOC
location data
Definition: rdata.h:102
@ LDNS_RDF_TYPE_INT16_DATA
variable length any type rdata where the length is specified by the first 2 bytes
Definition: rdata.h:98
@ LDNS_RDF_TYPE_ILNP64
4 shorts represented as 4 * 16 bit hex numbers separated by colons.
Definition: rdata.h:119
@ LDNS_RDF_TYPE_ATMA
ATMA.
Definition: rdata.h:108
@ LDNS_RDF_TYPE_HEX
hex string
Definition: rdata.h:72
@ LDNS_RDF_TYPE_NONE
none
Definition: rdata.h:48
@ LDNS_RDF_TYPE_INT8
8 bits
Definition: rdata.h:52
@ LDNS_RDF_TYPE_MATCHING_TYPE
Definition: rdata.h:146
@ LDNS_RDF_TYPE_IPSECKEY
IPSECKEY.
Definition: rdata.h:110
@ LDNS_RDF_TYPE_CERTIFICATE_USAGE
Since RFC7218 TLSA records can be given with mnemonics, hence these rdata field types.
Definition: rdata.h:144
@ LDNS_RDF_TYPE_STR
txt string
Definition: rdata.h:64
@ LDNS_RDF_TYPE_INT16
16 bits
Definition: rdata.h:54
@ LDNS_RDF_TYPE_ALG
a key algorithm
Definition: rdata.h:83
@ LDNS_RDF_TYPE_AMTRELAY
draft-ietf-mboned-driad-amt-discovery
Definition: rdata.h:149
@ LDNS_RDF_TYPE_UNQUOTED
Character string without quotes.
Definition: rdata.h:127
@ LDNS_RDF_TYPE_TSIGTIME
tsig time 48 bits
Definition: rdata.h:91
@ LDNS_RDF_TYPE_TYPE
a RR type
Definition: rdata.h:77
size_t ldns_rdf_size(const ldns_rdf *rd)
returns the size of the rdf.
Definition: rdata.c:24
uint8_t * ldns_rdf_data(const ldns_rdf *rd)
returns the data of the rdf.
Definition: rdata.c:38
int ldns_rdf_compare(const ldns_rdf *rd1, const ldns_rdf *rd2)
compares two rdf's on their wire formats.
Definition: rdata.c:663
enum ldns_enum_rdf_type ldns_rdf_type
Definition: rdata.h:157
ldns_rdf * ldns_rdf_clone(const ldns_rdf *rd)
clones a rdf structure.
Definition: rdata.c:222
void ldns_rr_list_free(ldns_rr_list *rr_list)
frees an rr_list structure.
Definition: rr.c:1009
ldns_rr * ldns_rr_list_rr(const ldns_rr_list *rr_list, size_t nr)
returns a specific rr of an rrlist.
Definition: rr.c:988
ldns_rr * ldns_rr_list_pop_rr(ldns_rr_list *rr_list)
pops the last rr from an rrlist.
Definition: rr.c:1175
ldns_rr_class ldns_get_rr_class_by_name(const char *name)
retrieves a class by looking up its name.
Definition: rr.c:2835
ldns_status ldns_rr_new_frm_str(ldns_rr **newrr, const char *str, uint32_t default_ttl, const ldns_rdf *origin, ldns_rdf **prev)
creates an rr from a string.
Definition: rr.c:670
uint32_t ldns_rr_ttl(const ldns_rr *rr)
returns the ttl of an rr structure.
Definition: rr.c:929
ldns_rdf * ldns_rr_owner(const ldns_rr *rr)
returns the owner name of an rr structure.
Definition: rr.c:917
ldns_rr_type ldns_rdf2rr_type(const ldns_rdf *rd)
convert an rdf of type LDNS_RDF_TYPE_TYPE to an actual LDNS_RR_TYPE.
Definition: rr.c:2855
ldns_status ldns_rr_new_frm_fp_l(ldns_rr **newrr, FILE *fp, uint32_t *default_ttl, ldns_rdf **origin, ldns_rdf **prev, int *line_nr)
creates a new rr from a file containing a string.
Definition: rr.c:794
void ldns_rr_list_deep_free(ldns_rr_list *rr_list)
frees an rr_list structure and all rrs contained therein.
Definition: rr.c:1018
const ldns_rr_descriptor * ldns_rr_descript(uint16_t type)
returns the resource record descriptor for the given rr type.
Definition: rr.c:2737
void ldns_rr_free(ldns_rr *rr)
frees an RR structure
Definition: rr.c:81
ldns_rr * ldns_rr_set_pop_rr(ldns_rr_list *rr_list)
pops the last rr from an rrset.
Definition: rr.c:1380
void ldns_rr_set_owner(ldns_rr *rr, ldns_rdf *owner)
sets the owner in the rr structure.
Definition: rr.c:802
#define _BUFFER_IS_AT_WHITESPACE(rd_buf)
Definition: rr.c:26
ldns_rr_type ldns_rr_list_type(const ldns_rr_list *rr_list)
Returns the type of the first element of the RR If there are no elements present, 0 is returned.
Definition: rr.c:2872
#define LDNS_RDATA_FIELD_DESCRIPTORS_COUNT
computes the number of rdata fields
Definition: rr.c:2606
#define LDNS_TTL_DATALEN
Definition: rr.c:20
#define LDNS_RRLIST_INIT
Definition: rr.c:21
ldns_rr_list * ldns_rr_list_pop_rrset(ldns_rr_list *rr_list)
pops the first rrset from the list, the list must be sorted, so that all rr's from each rrset are nex...
Definition: rr.c:1386
ldns_rr * ldns_rr_new_frm_type(ldns_rr_type t)
creates a new rr structure, based on the given type.
Definition: rr.c:48
signed char ldns_rr_set_push_rr(ldns_rr_list *rr_list, ldns_rr *rr)
pushes an rr to an rrset (which really are rr_list's).
Definition: rr.c:1332
ldns_status ldns_rr_new_frm_fp(ldns_rr **newrr, FILE *fp, uint32_t *ttl, ldns_rdf **origin, ldns_rdf **prev)
creates a new rr from a file containing a string.
Definition: rr.c:713
signed char ldns_rr_list_contains_rr(const ldns_rr_list *rr_list, const ldns_rr *rr)
returns true if the given rr is one of the rrs in the list, or if it is equal to one
Definition: rr.c:1238
void ldns_rr_list_sort(ldns_rr_list *unsorted)
sorts an rr_list (canonical wire format).
Definition: rr.c:1554
#define _IS_WHITESPACE(chr)
Definition: rr.c:23
void ldns_rr_set_type(ldns_rr *rr, ldns_rr_type rr_type)
sets the type in the rr.
Definition: rr.c:826
signed char ldns_rr_list_push_rr(ldns_rr_list *rr_list, const ldns_rr *rr)
pushes an rr to an rrlist.
Definition: rr.c:1130
signed char ldns_rr_list_push_rr_list(ldns_rr_list *rr_list, const ldns_rr_list *push_list)
pushes an rr_list to an rrlist.
Definition: rr.c:1161
signed char ldns_rr_is_question(const ldns_rr *rr)
returns the question flag of an rr structure.
Definition: rr.c:923
void ldns_rr2canonical(ldns_rr *rr)
converts each dname in a rr to its canonical form.
Definition: rr.c:1827
size_t ldns_rr_rd_count(const ldns_rr *rr)
returns the rd_count of an rr structure.
Definition: rr.c:935
uint8_t ldns_rr_label_count(const ldns_rr *rr)
counts the number of labels of the ownername.
Definition: rr.c:1888
ldns_rdf * ldns_rr_set_rdf(ldns_rr *rr, const ldns_rdf *f, size_t position)
sets a rdf member, it will be set on the position given.
Definition: rr.c:838
ldns_rdf_type ldns_rr_descriptor_field_type(const ldns_rr_descriptor *descriptor, size_t index)
returns the rdf type for the given rdata field number of the rr type for the given descriptor.
Definition: rr.c:2781
signed char ldns_rr_compare_ds(const ldns_rr *orr1, const ldns_rr *orr2)
returns true of the given rr's are equal.
Definition: rr.c:1750
size_t ldns_rr_list_rr_count(const ldns_rr_list *rr_list)
returns the number of rr's in an rr_list.
Definition: rr.c:955
#define LDNS_SYNTAX_DATALEN
Definition: rr.c:19
int ldns_rr_compare_wire(const ldns_buffer *rr1_buf, const ldns_buffer *rr2_buf)
compares the wireformat of two rrs, contained in the given buffers.
Definition: rr.c:1638
void ldns_rr_list2canonical(const ldns_rr_list *rr_list)
converts each dname in each rr in a rr_list to its canonical form.
Definition: rr.c:1879
ldns_rr_type ldns_rr_get_type(const ldns_rr *rr)
returns the type of the rr.
Definition: rr.c:941
void ldns_rr_set_ttl(ldns_rr *rr, uint32_t ttl)
sets the ttl in the rr structure.
Definition: rr.c:814
ldns_rdf * ldns_rr_list_owner(const ldns_rr_list *rr_list)
Returns the owner domain name rdf of the first element of the RR If there are no elements present,...
Definition: rr.c:2882
ldns_status _ldns_rr_new_frm_fp_l_internal(ldns_rr **newrr, FILE *fp, uint32_t *default_ttl, ldns_rdf **origin, ldns_rdf **prev, int *line_nr, signed char *explicit_ttl)
Definition: rr.c:723
void ldns_rr_set_question(ldns_rr *rr, signed char question)
sets the question flag in the rr structure.
Definition: rr.c:808
ldns_rr_list * ldns_rr_list_pop_rr_list(ldns_rr_list *rr_list, size_t howmany)
pops an rr_list of size s from an rrlist.
Definition: rr.c:1208
size_t ldns_rr_descriptor_maximum(const ldns_rr_descriptor *descriptor)
returns the maximum number of rdata fields of the rr type this descriptor describes.
Definition: rr.c:2766
int ldns_rr_compare_no_rdata(const ldns_rr *rr1, const ldns_rr *rr2)
compares two rrs, up to the rdata.
Definition: rr.c:1597
ldns_rr_class ldns_rr_get_class(const ldns_rr *rr)
returns the class of the rr.
Definition: rr.c:947
ldns_rr_list * ldns_rr_list_cat_clone(const ldns_rr_list *left, const ldns_rr_list *right)
concatenates two ldns_rr_lists together, but makes clones of the rr's (instead of pointer copying).
Definition: rr.c:1057
void ldns_rr_set_rd_count(ldns_rr *rr, size_t count)
sets the rd_count in the rr.
Definition: rr.c:820
ldns_status ldns_rdf_bitmap_known_rr_types_space(ldns_rdf **rdf)
Create a rr type bitmap rdf providing enough space to set all known (to ldns) rr types.
Definition: rr.c:2722
void ldns_rr_set_class(ldns_rr *rr, ldns_rr_class rr_class)
sets the class in the rr.
Definition: rr.c:832
signed char ldns_is_rrset(const ldns_rr_list *rr_list)
checks if an rr_list is a rrset.
Definition: rr.c:1257
ldns_rr * ldns_rr_list_set_rr(ldns_rr_list *rr_list, const ldns_rr *r, size_t count)
set a rr on a specific index in a ldns_rr_list
Definition: rr.c:965
ldns_rr_list * ldns_rr_list_new(void)
creates a new rr_list structure.
Definition: rr.c:998
ldns_rr_list * ldns_rr_list_subtype_by_rdf(const ldns_rr_list *l, const ldns_rdf *r, size_t pos)
Return the rr_list which matches the rdf at position field.
Definition: rr.c:1096
signed char ldns_rr_list_cat(ldns_rr_list *left, const ldns_rr_list *right)
concatenates two ldns_rr_lists together.
Definition: rr.c:1034
int ldns_rr_list_compare(const ldns_rr_list *rrl1, const ldns_rr_list *rrl2)
compares two rr lists.
Definition: rr.c:1783
signed char ldns_rr_push_rdf(ldns_rr *rr, const ldns_rdf *f)
sets rd_field member, it will be placed in the next available spot.
Definition: rr.c:855
int ldns_rr_compare(const ldns_rr *rr1, const ldns_rr *rr2)
compares two rrs.
Definition: rr.c:1676
void ldns_rr_list_set_rr_count(ldns_rr_list *rr_list, size_t count)
sets the number of rr's in an rr_list.
Definition: rr.c:981
ldns_rr * ldns_rr_clone(const ldns_rr *rr)
clones a rr and all its data
Definition: rr.c:1438
ldns_rr_list * ldns_rr_list_clone(const ldns_rr_list *rrlist)
clones an rrlist.
Definition: rr.c:1469
size_t ldns_rr_descriptor_minimum(const ldns_rr_descriptor *descriptor)
returns the minimum number of rdata fields of the rr type this descriptor describes.
Definition: rr.c:2756
ldns_status ldns_rr_new_question_frm_str(ldns_rr **newrr, const char *str, const ldns_rdf *origin, ldns_rdf **prev)
creates an rr for the question section from a string, i.e.
Definition: rr.c:684
ldns_rdf * ldns_rr_rdf(const ldns_rr *rr, size_t nr)
returns the rdata field member counter.
Definition: rr.c:907
ldns_rr * ldns_rr_new(void)
creates a new rr structure.
Definition: rr.c:30
size_t ldns_rr_uncompressed_size(const ldns_rr *r)
calculates the uncompressed size of an RR.
Definition: rr.c:1810
ldns_rdf * ldns_rr_pop_rdf(ldns_rr *rr)
removes a rd_field member, it will be popped from the last position.
Definition: rr.c:878
ldns_status ldns_rdf_bitmap_known_rr_types(ldns_rdf **rdf)
Create a rr type bitmap rdf with at least all known (to ldns) rr types set.
Definition: rr.c:2728
signed char ldns_is_rrset_strict(const ldns_rr_list *rr_list)
checks if an rr_list is a rrset, including checking for TTL.
Definition: rr.c:1292
ldns_rr_type ldns_get_rr_type_by_name(const char *name)
retrieves a rrtype by looking up its name.
Definition: rr.c:2795
#define LDNS_RDATA_FIELD_DESCRIPTORS_COMMON
Definition: rr.h:263
@ LDNS_RR_NO_COMPRESS
Definition: rr.h:70
@ LDNS_RR_COMPRESS
compression is allowed
Definition: rr.h:69
enum ldns_enum_rr_type ldns_rr_type
Definition: rr.h:260
#define LDNS_RR_OVERHEAD
The bytes TTL, CLASS and length use up in an rr.
Definition: rr.h:37
@ LDNS_RR_TYPE_MF
a mail forwarder (Obsolete - use MX)
Definition: rr.h:86
@ LDNS_RR_TYPE_CERT
RFC2538.
Definition: rr.h:152
@ LDNS_RR_TYPE_RP
RFC1183.
Definition: rr.h:112
@ LDNS_RR_TYPE_KX
RFC2230.
Definition: rr.h:150
@ LDNS_RR_TYPE_DOA
Definition: rr.h:231
@ LDNS_RR_TYPE_SPF
Definition: rr.h:201
@ LDNS_RR_TYPE_DSYNC
Definition: rr.h:197
@ LDNS_RR_TYPE_RESINFO
RFC 9606.
Definition: rr.h:237
@ LDNS_RR_TYPE_OPT
OPT record RFC 6891.
Definition: rr.h:160
@ LDNS_RR_TYPE_RRSIG
DNSSEC.
Definition: rr.h:170
@ LDNS_RR_TYPE_SINK
dnsind-kitchen-sink-02.txt
Definition: rr.h:158
@ LDNS_RR_TYPE_A
a host address
Definition: rr.h:80
@ LDNS_RR_TYPE_HIP
Definition: rr.h:182
@ LDNS_RR_TYPE_LP
Definition: rr.h:211
@ LDNS_RR_TYPE_ISDN
RFC1183.
Definition: rr.h:118
@ LDNS_RR_TYPE_MINFO
mailbox or mail list information
Definition: rr.h:106
@ LDNS_RR_TYPE_L32
Definition: rr.h:209
@ LDNS_RR_TYPE_GPOS
RFC1712.
Definition: rr.h:132
@ LDNS_RR_TYPE_TKEY
Definition: rr.h:218
@ LDNS_RR_TYPE_ZONEMD
Definition: rr.h:194
@ LDNS_RR_TYPE_DNSKEY
Definition: rr.h:172
@ LDNS_RR_TYPE_SOA
marks the start of a zone of authority
Definition: rr.h:90
@ LDNS_RR_TYPE_SSHFP
SSH Key Fingerprint.
Definition: rr.h:166
@ LDNS_RR_TYPE_TSIG
Definition: rr.h:219
@ LDNS_RR_TYPE_X25
RFC1183.
Definition: rr.h:116
@ LDNS_RR_TYPE_WKS
a well known service description
Definition: rr.h:100
@ LDNS_RR_TYPE_TLSA
Definition: rr.h:179
@ LDNS_RR_TYPE_PX
RFC2163.
Definition: rr.h:130
@ LDNS_RR_TYPE_RT
RFC1183.
Definition: rr.h:120
@ LDNS_RR_TYPE_NSEC
Definition: rr.h:171
@ LDNS_RR_TYPE_DNAME
RFC2672.
Definition: rr.h:156
@ LDNS_RR_TYPE_OPENPGPKEY
Definition: rr.h:192
@ LDNS_RR_TYPE_AMTRELAY
RFC 8777.
Definition: rr.h:234
@ LDNS_RR_TYPE_DS
RFC4034, RFC3658.
Definition: rr.h:164
@ LDNS_RR_TYPE_KEY
2535typecode
Definition: rr.h:128
@ LDNS_RR_TYPE_NULL
a null RR (EXPERIMENTAL)
Definition: rr.h:98
@ LDNS_RR_TYPE_NSEC3PARAM
Definition: rr.h:177
@ LDNS_RR_TYPE_RKEY
draft-reid-dnsext-rkey
Definition: rr.h:187
@ LDNS_RR_TYPE_BRID
Definition: rr.h:199
@ LDNS_RR_TYPE_NXT
2535typecode
Definition: rr.h:138
@ LDNS_RR_TYPE_DLV
Definition: rr.h:251
@ LDNS_RR_TYPE_SIG
2535typecode
Definition: rr.h:126
@ LDNS_RR_TYPE_CNAME
the canonical name for an alias
Definition: rr.h:88
@ LDNS_RR_TYPE_NID
Definition: rr.h:208
@ LDNS_RR_TYPE_NSEC3
Definition: rr.h:176
@ LDNS_RR_TYPE_DHCID
Definition: rr.h:174
@ LDNS_RR_TYPE_CDNSKEY
Definition: rr.h:191
@ LDNS_RR_TYPE_TA
DNSSEC Trust Authorities.
Definition: rr.h:249
@ LDNS_RR_TYPE_NXNAME
Definition: rr.h:216
@ LDNS_RR_TYPE_IPN
https://www.iana.org/assignments/dns-parameters/IPN/ipn-completed-template
Definition: rr.h:246
@ LDNS_RR_TYPE_LOC
LOC record RFC1876.
Definition: rr.h:136
@ LDNS_RR_TYPE_TXT
text strings
Definition: rr.h:110
@ LDNS_RR_TYPE_PTR
a domain name pointer
Definition: rr.h:102
@ LDNS_RR_TYPE_AAAA
ipv6 address
Definition: rr.h:134
@ LDNS_RR_TYPE_EUI64
Definition: rr.h:214
@ LDNS_RR_TYPE_MD
a mail destination (Obsolete - use MX)
Definition: rr.h:84
@ LDNS_RR_TYPE_A6
RFC2874.
Definition: rr.h:154
@ LDNS_RR_TYPE_NS
an authoritative name server
Definition: rr.h:82
@ LDNS_RR_TYPE_MR
a mail rename domain name (EXPERIMENTAL)
Definition: rr.h:96
@ LDNS_RR_TYPE_WALLET
https://iana.org/assignments/dns-parameters/WALLET/wallet-completed-template
Definition: rr.h:240
@ LDNS_RR_TYPE_CAA
Definition: rr.h:229
@ LDNS_RR_TYPE_HHIT
Definition: rr.h:198
@ LDNS_RR_TYPE_CLA
https://www.iana.org/assignments/dns-parameters/CLA/cla-completed-template
Definition: rr.h:243
@ LDNS_RR_TYPE_SVCB
Definition: rr.h:195
@ LDNS_RR_TYPE_EUI48
Definition: rr.h:213
@ LDNS_RR_TYPE_HTTPS
Definition: rr.h:196
@ LDNS_RR_TYPE_MB
a mailbox domain name (EXPERIMENTAL)
Definition: rr.h:92
@ LDNS_RR_TYPE_NINFO
draft-reid-dnsext-zs
Definition: rr.h:185
@ LDNS_RR_TYPE_TALINK
draft-ietf-dnsop-trust-history
Definition: rr.h:189
@ LDNS_RR_TYPE_ATMA
http://www.jhsoft.com/rfc/af-saa-0069.000.rtf
Definition: rr.h:146
@ LDNS_RR_TYPE_HINFO
host information
Definition: rr.h:104
@ LDNS_RR_TYPE_CSYNC
Definition: rr.h:193
@ LDNS_RR_TYPE_EID
draft-ietf-nimrod-dns-01.txt
Definition: rr.h:140
@ LDNS_RR_TYPE_AFSDB
RFC1183.
Definition: rr.h:114
@ LDNS_RR_TYPE_L64
Definition: rr.h:210
@ LDNS_RR_TYPE_NSAP
RFC1706.
Definition: rr.h:122
@ LDNS_RR_TYPE_URI
Definition: rr.h:228
@ LDNS_RR_TYPE_AVC
Definition: rr.h:230
@ LDNS_RR_TYPE_CDS
Definition: rr.h:190
@ LDNS_RR_TYPE_NAPTR
RFC2915.
Definition: rr.h:148
@ LDNS_RR_TYPE_SMIMEA
Definition: rr.h:180
@ LDNS_RR_TYPE_SRV
SRV record RFC2782.
Definition: rr.h:144
@ LDNS_RR_TYPE_IPSECKEY
IPsec Key.
Definition: rr.h:168
@ LDNS_RR_TYPE_APL
RFC3123.
Definition: rr.h:162
@ LDNS_RR_TYPE_MX
mail exchange
Definition: rr.h:108
@ LDNS_RR_TYPE_NIMLOC
draft-ietf-nimrod-dns-01.txt
Definition: rr.h:142
@ LDNS_RR_TYPE_MG
a mail group member (EXPERIMENTAL)
Definition: rr.h:94
@ LDNS_RR_TYPE_NSAP_PTR
RFC1348.
Definition: rr.h:124
enum ldns_enum_rr_class ldns_rr_class
Definition: rr.h:61
#define LDNS_MAX_DOMAINLEN
Maximum length of a complete dname.
Definition: rr.h:33
@ LDNS_RR_CLASS_IN
the Internet
Definition: rr.h:47
Structure to do a Schwartzian-like transformation, for instance when sorting.
Definition: util.h:166
implementation of buffers to ease operations
Definition: buffer.h:51
uint8_t * _data
The data contained in the buffer.
Definition: buffer.h:62
A general purpose lookup table.
Definition: util.h:178
Resource record data field.
Definition: rdata.h:203
Contains all information about resource record types.
Definition: rr.h:368
uint8_t _maximum
Maximum number of rdata fields in the RRs of this type.
Definition: rr.h:376
const char * _name
Textual name of the RR type.
Definition: rr.h:372
ldns_rdf_type _variable
Special rdf types.
Definition: rr.h:380
ldns_rr_type _type
Type of the RR that is described here.
Definition: rr.h:370
uint8_t _minimum
Minimum number of rdata fields in the RRs of this type.
Definition: rr.h:374
const ldns_rdf_type * _wireformat
Wireformat specification for the rr, i.e.
Definition: rr.h:378
List or Set of Resource Records.
Definition: rr.h:355
size_t _rr_capacity
Definition: rr.h:357
ldns_rr ** _rrs
Definition: rr.h:358
size_t _rr_count
Definition: rr.h:356
Resource Record.
Definition: rr.h:327
ldns_rr_type _rr_type
the type of the RR.
Definition: rr.h:335
ldns_rdf * _owner
Owner name, uncompressed.
Definition: rr.h:329
ldns_rdf ** _rdata_fields
The array of rdata's.
Definition: rr.h:340
signed char _rr_question
question rr [it would be nicer if thous is after _rd_count] ABI change: Fix this in next major releas...
Definition: rr.h:344
uint32_t _ttl
Time to live
Definition: rr.h:331
ldns_rr_class _rr_class
Class of the resource record.
Definition: rr.h:337
size_t _rd_count
Number of data fields.
Definition: rr.h:333
int ldns_hexstring_to_data(uint8_t *data, const char *str)
Converts a hex string to binary data.
Definition: util.c:138
#define INLINE
splint static inline workaround
Definition: util.h:42
#define LDNS_FREE(ptr)
Definition: util.h:60
ldns_lookup_table * ldns_lookup_by_name(ldns_lookup_table table[], const char *name)
Looks up the table entry by name, returns NULL if not found.
#define LDNS_MALLOC(type)
Memory management macros.
Definition: util.h:49
#define LDNS_XMALLOC(type, count)
Definition: util.h:51
#define LDNS_XREALLOC(ptr, type, count)
Definition: util.h:57
ldns_status ldns_wire2rdf(ldns_rr *rr, const uint8_t *wire, size_t max, size_t *pos)
converts the data on the uint8_t bytearray (in wire format) to DNS rdata fields, and adds them to the...
Definition: wire2host.c:156