regress: New test bogus-sortlist
[adns] / src / types.c
1 /*
2 * types.c
3 * - RR-type-specific code, and the machinery to call it
4 */
5 /*
6 * This file is part of adns, which is
7 * Copyright (C) 1997-2000,2003,2006 Ian Jackson
8 * Copyright (C) 1999-2000,2003,2006 Tony Finch
9 * Copyright (C) 1991 Massachusetts Institute of Technology
10 * (See the file INSTALL for full details.)
11 *
12 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation; either version 2, or (at your option)
15 * any later version.
16 *
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software Foundation,
24 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
25 */
26
27 #include <stddef.h>
28 #include <stdlib.h>
29
30 #include <sys/types.h>
31 #include <sys/socket.h>
32 #include <netinet/in.h>
33 #include <arpa/inet.h>
34
35 #include "internal.h"
36
37 #define R_NOMEM return adns_s_nomemory
38 #define CSP_ADDSTR(s) do { \
39 if (!adns__vbuf_appendstr(vb,(s))) R_NOMEM; \
40 } while (0)
41
42 /*
43 * order of sections:
44 *
45 * _string (pap)
46 * _textdata, _qstring (csp)
47 * _str (mf,cs)
48 * _intstr (mf,csp,cs)
49 * _manyistr (mf,cs)
50 * _txt (pa)
51 * _inaddr (pa,di,cs
52 * +search_sortlist, dip_genaddr, csp_genaddr)
53 * _in6addr (pa,di,cs)
54 * _addr (pap,pa,di,div,csp,cs,gsz,qs
55 * +search_sortlist_sa, dip_sockaddr,
56 * addr_rrtypes, addr_submit, icb_addr)
57 * _domain (pap,csp,cs)
58 * _dom_raw (pa)
59 * _host_raw (pa)
60 * _hostaddr (pap,pa,dip,di,mfp,mf,csp,cs
61 * +pap_findaddrs, icb_hostaddr)
62 * _mx_raw (pa,di)
63 * _mx (pa,di)
64 * _inthostaddr (mf,cs)
65 * _inthost (cs)
66 * _ptr (ckl,pa +icb_ptr)
67 * _strpair (mf)
68 * _intstrpair (mf)
69 * _hinfo (pa)
70 * _mailbox (pap,csp +pap_mailbox822)
71 * _rp (pa,cs)
72 * _soa (pa,mf,cs)
73 * _srv* (ckl,(pap),pa*2,mf*2,di,(csp),cs*2,postsort)
74 * _byteblock (mf)
75 * _opaque (pa,cs)
76 * _flat (mf)
77 *
78 * within each section:
79 * ckl_*
80 * pap_*
81 * pa_*
82 * dip_*
83 * di_*
84 * mfp_*
85 * mf_*
86 * csp_*
87 * cs_*
88 * gsz_*
89 * postsort_*
90 * qs_*
91 */
92
93 /*
94 * _qstring (pap,csp)
95 */
96
97 static adns_status pap_qstring(const parseinfo *pai, int *cbyte_io, int max,
98 int *len_r, char **str_r) {
99 /* Neither len_r nor str_r may be null.
100 * End of datagram (overrun) is indicated by returning adns_s_invaliddata;
101 */
102 const byte *dgram= pai->dgram;
103 int l, cbyte;
104 char *str;
105
106 cbyte= *cbyte_io;
107
108 if (cbyte >= max) return adns_s_invaliddata;
109 GET_B(cbyte,l);
110 if (cbyte+l > max) return adns_s_invaliddata;
111
112 str= adns__alloc_interim(pai->qu, l+1);
113 if (!str) R_NOMEM;
114
115 str[l]= 0;
116 memcpy(str,dgram+cbyte,l);
117
118 *len_r= l;
119 *str_r= str;
120 *cbyte_io= cbyte+l;
121
122 return adns_s_ok;
123 }
124
125 static adns_status csp_qstring(vbuf *vb, const char *dp, int len) {
126 unsigned char ch;
127 char buf[10];
128 int cn;
129
130 CSP_ADDSTR("\"");
131 for (cn=0; cn<len; cn++) {
132 ch= *dp++;
133 if (ch == '\\') {
134 CSP_ADDSTR("\\\\");
135 } else if (ch == '"') {
136 CSP_ADDSTR("\\\"");
137 } else if (ch >= 32 && ch <= 126) {
138 if (!adns__vbuf_append(vb,&ch,1)) R_NOMEM;
139 } else {
140 sprintf(buf,"\\x%02x",ch);
141 CSP_ADDSTR(buf);
142 }
143 }
144 CSP_ADDSTR("\"");
145
146 return adns_s_ok;
147 }
148
149 /*
150 * _str (mf)
151 */
152
153 static void mf_str(adns_query qu, void *datap) {
154 char **rrp= datap;
155
156 adns__makefinal_str(qu,rrp);
157 }
158
159 /*
160 * _intstr (mf)
161 */
162
163 static void mf_intstr(adns_query qu, void *datap) {
164 adns_rr_intstr *rrp= datap;
165
166 adns__makefinal_str(qu,&rrp->str);
167 }
168
169 /*
170 * _manyistr (mf)
171 */
172
173 static void mf_manyistr(adns_query qu, void *datap) {
174 adns_rr_intstr **rrp= datap;
175 adns_rr_intstr *te, *table;
176 void *tablev;
177 int tc;
178
179 for (tc=0, te= *rrp; te->i >= 0; te++, tc++);
180 tablev= *rrp;
181 adns__makefinal_block(qu,&tablev,sizeof(*te)*(tc+1));
182 *rrp= table= tablev;
183 for (te= *rrp; te->i >= 0; te++)
184 adns__makefinal_str(qu,&te->str);
185 }
186
187 /*
188 * _txt (pa,cs)
189 */
190
191 static adns_status pa_txt(const parseinfo *pai, int cbyte,
192 int max, void *datap) {
193 adns_rr_intstr **rrp= datap, *table, *te;
194 const byte *dgram= pai->dgram;
195 int ti, tc, l, startbyte;
196 adns_status st;
197
198 startbyte= cbyte;
199 if (cbyte >= max) return adns_s_invaliddata;
200 tc= 0;
201 while (cbyte < max) {
202 GET_B(cbyte,l);
203 cbyte+= l;
204 tc++;
205 }
206 if (cbyte != max || !tc) return adns_s_invaliddata;
207
208 table= adns__alloc_interim(pai->qu,sizeof(*table)*(tc+1));
209 if (!table) R_NOMEM;
210
211 for (cbyte=startbyte, ti=0, te=table; ti<tc; ti++, te++) {
212 st= pap_qstring(pai, &cbyte, max, &te->i, &te->str);
213 if (st) return st;
214 }
215 assert(cbyte == max);
216
217 te->i= -1;
218 te->str= 0;
219
220 *rrp= table;
221 return adns_s_ok;
222 }
223
224 static adns_status cs_txt(vbuf *vb, const void *datap) {
225 const adns_rr_intstr *const *rrp= datap;
226 const adns_rr_intstr *current;
227 adns_status st;
228 int spc;
229
230 for (current= *rrp, spc=0; current->i >= 0; current++, spc=1) {
231 if (spc) CSP_ADDSTR(" ");
232 st= csp_qstring(vb,current->str,current->i); if (st) return st;
233 }
234 return adns_s_ok;
235 }
236
237 /*
238 * _hinfo (cs)
239 */
240
241 static adns_status cs_hinfo(vbuf *vb, const void *datap) {
242 const adns_rr_intstrpair *rrp= datap;
243 adns_status st;
244
245 st= csp_qstring(vb,rrp->array[0].str,rrp->array[0].i); if (st) return st;
246 CSP_ADDSTR(" ");
247 st= csp_qstring(vb,rrp->array[1].str,rrp->array[1].i); if (st) return st;
248 return adns_s_ok;
249 }
250
251 /*
252 * _inaddr (pa,di,cs +search_sortlist, dip_genaddr, csp_genaddr)
253 */
254
255 static adns_status pa_inaddr(const parseinfo *pai, int cbyte,
256 int max, void *datap) {
257 struct in_addr *storeto= datap;
258
259 if (max-cbyte != 4) return adns_s_invaliddata;
260 memcpy(storeto, pai->dgram + cbyte, 4);
261 return adns_s_ok;
262 }
263
264 static int search_sortlist(adns_state ads, int af, const void *ad) {
265 const struct sortlist *slp;
266 struct in_addr a4;
267 int i;
268 int v6mappedp= 0;
269
270 if (af == AF_INET6) {
271 const struct in6_addr *a6= ad;
272 if (IN6_IS_ADDR_V4MAPPED(a6)) {
273 a4.s_addr= htonl(((unsigned long)a6->s6_addr[12] << 24) |
274 ((unsigned long)a6->s6_addr[13] << 16) |
275 ((unsigned long)a6->s6_addr[14] << 8) |
276 ((unsigned long)a6->s6_addr[15] << 0));
277 v6mappedp= 1;
278 }
279 }
280
281 for (i=0, slp=ads->sortlist;
282 i<ads->nsortlist &&
283 !adns__addr_matches(af,ad, &slp->base,&slp->mask) &&
284 !(v6mappedp &&
285 adns__addr_matches(AF_INET,&a4, &slp->base,&slp->mask));
286 i++, slp++);
287 return i;
288 }
289
290 static int dip_genaddr(adns_state ads, int af, const void *a, const void *b) {
291 int ai, bi;
292
293 if (!ads->nsortlist) return 0;
294
295 ai= search_sortlist(ads,af,a);
296 bi= search_sortlist(ads,af,b);
297 return bi<ai;
298 }
299
300 static int di_inaddr(adns_state ads,
301 const void *datap_a, const void *datap_b) {
302 return dip_genaddr(ads,AF_INET,datap_a,datap_b);
303 }
304
305 static adns_status csp_genaddr(vbuf *vb, int af, const void *p) {
306 char buf[ADNS_ADDR2TEXT_BUFLEN];
307 int len= sizeof(buf);
308 adns_rr_addr a;
309 int err;
310
311 memset(&a, 0, sizeof(a));
312 a.addr.sa.sa_family= af;
313 adns__addr_inject(p, &a.addr);
314 err= adns_addr2text(&a.addr.sa,0, buf,&len, 0); assert(!err);
315 CSP_ADDSTR(buf);
316 return adns_s_ok;
317 }
318
319 static adns_status cs_inaddr(vbuf *vb, const void *datap) {
320 return csp_genaddr(vb, AF_INET,datap);
321 }
322
323 /*
324 * _in6addr (pa,di,cs)
325 */
326
327 static adns_status pa_in6addr(const parseinfo *pai, int cbyte,
328 int max, void *datap) {
329 struct in6_addr *storeto= datap;
330
331 if (max-cbyte != 16) return adns_s_invaliddata;
332 memcpy(storeto->s6_addr, pai->dgram + cbyte, 16);
333 return adns_s_ok;
334 }
335
336 static int di_in6addr(adns_state ads,
337 const void *datap_a, const void *datap_b) {
338 return dip_genaddr(ads,AF_INET6,datap_a,datap_b);
339 }
340
341 static adns_status cs_in6addr(vbuf *vb, const void *datap) {
342 return csp_genaddr(vb,AF_INET6,datap);
343 }
344
345 /*
346 * _addr (pap,pa,di,div,csp,cs,gsz,qs
347 * +search_sortlist_sa, dip_sockaddr, addr_rrtypes,
348 * addr_submit, icb_addr)
349 */
350
351 static const typeinfo tinfo_addrsub;
352
353 #define ADDR_RRTYPES(_) _(a) _(aaaa)
354
355 static const adns_rrtype addr_all_rrtypes[] = {
356 #define RRTY_CODE(ty) adns_r_##ty,
357 ADDR_RRTYPES(RRTY_CODE)
358 #undef RRTY_CODE
359 };
360
361 enum {
362 #define RRTY_INDEX(ty) addr__ri_##ty,
363 ADDR_RRTYPES(RRTY_INDEX)
364 #undef RRTY_INDEX
365 addr_nrrtypes,
366 #define RRTY_FLAG(ty) addr_rf_##ty = 1 << addr__ri_##ty,
367 ADDR_RRTYPES(RRTY_FLAG)
368 addr__rrty_hunoz
369 #undef RRTY_FLAG
370 };
371
372 static unsigned addr_rrtypeflag(adns_rrtype type) {
373 int i;
374
375 type &= adns_rrt_typemask;
376 for (i=0; i<addr_nrrtypes && type!=addr_all_rrtypes[i]; i++);
377 return i < addr_nrrtypes ? 1 << i : 0;
378 }
379
380 /* About CNAME handling in addr queries.
381 *
382 * A user-level addr query is translated into a number of protocol-level
383 * queries, and its job is to reassemble the results. This gets tricky if
384 * the answers aren't consistent. In particular, if the answers report
385 * inconsistent indirection via CNAME records (e.g., different CNAMEs, or
386 * some indirect via a CNAME, and some don't) then we have trouble.
387 *
388 * Once we've received an answer, even if it was NODATA, we set
389 * adns__qf_addr_answer on the parent query. This will let us detect a
390 * conflict between a no-CNAME-with-NODATA reply and a subsequent CNAME.
391 *
392 * If we detect a conflict of any kind, then at least one answer came back
393 * with a CNAME record, so we pick the first such answer (somewhat
394 * arbitrarily) as being the `right' canonical name, and set this in the
395 * parent query's answer->cname slot. We discard address records from the
396 * wrong name. And finally we cancel the outstanding child queries, and
397 * resubmit address queries for the address families we don't yet have, with
398 * adns__qf_addr_cname set so that we know that we're in the fixup state.
399 */
400
401 static adns_status pap_addr(const parseinfo *pai, int rrty, size_t rrsz,
402 int *cbyte_io, int max, adns_rr_addr *storeto) {
403 const byte *dgram= pai->dgram;
404 int af, addrlen, salen;
405 struct in6_addr v6map;
406 const void *oaddr= dgram + *cbyte_io;
407 int avail= max - *cbyte_io;
408 int step= -1;
409 void *addrp= 0;
410
411 switch (rrty) {
412 case adns_r_a:
413 if ((pai->qu->flags & adns_qf_ipv6_mapv4) &&
414 (pai->qu->answer->type & adns__qtf_bigaddr)) {
415 if (avail < 4) return adns_s_invaliddata;
416 memset(v6map.s6_addr + 0, 0x00, 10);
417 memset(v6map.s6_addr + 10, 0xff, 2);
418 memcpy(v6map.s6_addr + 12, oaddr, 4);
419 oaddr= v6map.s6_addr; avail= sizeof(v6map.s6_addr);
420 if (step < 0) step= 4;
421 goto aaaa;
422 }
423 af= AF_INET; addrlen= 4;
424 addrp= &storeto->addr.inet.sin_addr;
425 salen= sizeof(storeto->addr.inet);
426 break;
427 case adns_r_aaaa:
428 aaaa:
429 af= AF_INET6; addrlen= 16;
430 addrp= storeto->addr.inet6.sin6_addr.s6_addr;
431 salen= sizeof(storeto->addr.inet6);
432 break;
433 }
434 assert(addrp);
435
436 assert(offsetof(adns_rr_addr, addr) + salen <= rrsz);
437 if (addrlen < avail) return adns_s_invaliddata;
438 if (step < 0) step= addrlen;
439 *cbyte_io += step;
440 memset(&storeto->addr, 0, salen);
441 storeto->len= salen;
442 storeto->addr.sa.sa_family= af;
443 memcpy(addrp, oaddr, addrlen);
444
445 return adns_s_ok;
446 }
447
448 static adns_status pa_addr(const parseinfo *pai, int cbyte,
449 int max, void *datap) {
450 int err= pap_addr(pai, pai->qu->answer->type & adns_rrt_typemask,
451 pai->qu->answer->rrsz, &cbyte, max, datap);
452 if (err) return err;
453 if (cbyte != max) return adns_s_invaliddata;
454 return adns_s_ok;
455 }
456
457 static int search_sortlist_sa(adns_state ads, const struct sockaddr *sa) {
458 const void *pa = adns__sockaddr_addr(sa);
459 return search_sortlist(ads, sa->sa_family, pa);
460 }
461
462 static int dip_sockaddr(adns_state ads,
463 const struct sockaddr *sa,
464 const struct sockaddr *sb) {
465 if (!ads->sortlist) return 0;
466 return search_sortlist_sa(ads, sa) > search_sortlist_sa(ads, sb);
467 }
468
469 static int di_addr(adns_state ads, const void *datap_a, const void *datap_b) {
470 const adns_rr_addr *ap= datap_a, *bp= datap_b;
471 return dip_sockaddr(ads, &ap->addr.sa, &bp->addr.sa);
472 }
473
474 static int div_addr(void *context, const void *datap_a, const void *datap_b) {
475 const adns_state ads= context;
476
477 return di_addr(ads, datap_a, datap_b);
478 }
479
480 static adns_status csp_addr(vbuf *vb, const adns_rr_addr *rrp) {
481 char buf[ADNS_ADDR2TEXT_BUFLEN];
482 int len= sizeof(buf);
483 int err;
484
485 switch (rrp->addr.inet.sin_family) {
486 case AF_INET:
487 CSP_ADDSTR("INET ");
488 goto a2t;
489 case AF_INET6:
490 CSP_ADDSTR("INET6 ");
491 goto a2t;
492 a2t:
493 err= adns_addr2text(&rrp->addr.sa,0, buf,&len, 0); assert(!err);
494 CSP_ADDSTR(buf);
495 break;
496 default:
497 sprintf(buf,"AF=%u",rrp->addr.sa.sa_family);
498 CSP_ADDSTR(buf);
499 break;
500 }
501 return adns_s_ok;
502 }
503
504 static adns_status cs_addr(vbuf *vb, const void *datap) {
505 const adns_rr_addr *rrp= datap;
506
507 return csp_addr(vb,rrp);
508 }
509
510 static int gsz_addr(const typeinfo *typei, adns_rrtype type) {
511 return type & adns__qtf_bigaddr ?
512 sizeof(adns_rr_addr) : sizeof(adns_rr_addr_v4only);
513 }
514
515 static unsigned addr_rrtypes(adns_state ads, adns_rrtype type,
516 adns_queryflags qf) {
517 /* Return a mask of addr_rf_... flags indicating which address families are
518 * wanted, given a query type and flags.
519 */
520
521 adns_queryflags permitaf= 0;
522 unsigned want= 0;
523
524 if (!(type & adns__qtf_bigaddr))
525 qf= (qf & ~adns_qf_want_allaf) | adns_qf_want_ipv4;
526 else {
527 if (!(qf & adns_qf_want_allaf)) {
528 qf |= (type & adns__qtf_manyaf) ?
529 adns_qf_want_allaf : adns_qf_want_ipv4;
530 }
531 if (ads->iflags & adns_if_permit_ipv4) permitaf |= adns_qf_want_ipv4;
532 if (ads->iflags & adns_if_permit_ipv6) permitaf |= adns_qf_want_ipv6;
533 if (qf & permitaf) qf &= permitaf | ~adns_qf_want_allaf;
534 }
535
536 if (qf & adns_qf_want_ipv4) want |= addr_rf_a;
537 if (qf & adns_qf_want_ipv6) want |= addr_rf_aaaa;
538
539 return want;
540 }
541
542 static void icb_addr(adns_query parent, adns_query child);
543
544 static void addr_subqueries(adns_query qu, struct timeval now,
545 adns_queryflags qf_extra,
546 const byte *qd_dgram, int qd_dglen) {
547 int i, err, id;
548 adns_query cqu;
549 adns_queryflags qf= (qu->flags & ~adns_qf_search) | qf_extra;
550 adns_rrtype qtf= qu->answer->type & adns__qtf_deref;
551 unsigned which= qu->ctx.tinfo.addr.want & ~qu->ctx.tinfo.addr.have;
552 qcontext ctx;
553
554 memset(&ctx, 0, sizeof(ctx));
555 ctx.callback= icb_addr;
556 for (i=0; i<addr_nrrtypes; i++) {
557 if (!(which & (1 << i))) continue;
558 err= adns__mkquery_frdgram(qu->ads, &qu->vb, &id, qd_dgram,qd_dglen,
559 DNS_HDRSIZE, addr_all_rrtypes[i], qf);
560 if (err) goto x_error;
561 err= adns__internal_submit(qu->ads, &cqu, &tinfo_addrsub,
562 addr_all_rrtypes[i] | qtf,
563 &qu->vb, id, qf, now, &ctx);
564 if (err) goto x_error;
565 cqu->answer->rrsz= qu->answer->rrsz;
566 cqu->parent= qu;
567 LIST_LINK_TAIL_PART(qu->children, cqu,siblings.);
568 }
569 qu->state= query_childw;
570 LIST_LINK_TAIL(qu->ads->childw, qu);
571 return;
572
573 x_error:
574 adns__query_fail(qu, err);
575 }
576
577 static adns_status addr_submit(adns_query parent, adns_query *query_r,
578 vbuf *qumsg_vb, int id, unsigned want,
579 adns_queryflags flags, struct timeval now,
580 qcontext *ctx) {
581 /* This is effectively a substitute for adns__internal_submit, intended for
582 * the case where the caller (possibly) only wants a subset of the
583 * available record types. The memory management and callback rules are
584 * the same as for adns__internal_submit.
585 *
586 * Some differences: the query is linked onto the parent's children list
587 * before exit (though the parent's state is not changed, and it is not
588 * linked into the childw list queue); and we fiddle with the `tinfo'
589 * portion of the context structure (yes, modifying *ctx), since this is,
590 * in fact, the main purpose of this function.
591 */
592
593 adns_state ads= parent->ads;
594 adns_query qu;
595 adns_status err;
596 adns_rrtype type= ((adns_r_addr & adns_rrt_reprmask) |
597 (parent->answer->type & ~adns_rrt_reprmask));
598
599 ctx->tinfo.addr.want= want;
600 ctx->tinfo.addr.have= 0;
601 err= adns__internal_submit(ads, &qu, adns__findtype(adns_r_addr),
602 type, qumsg_vb, id, flags, now, ctx);
603 if (err) return err;
604
605 qu->parent= parent;
606 LIST_LINK_TAIL_PART(parent->children, qu, siblings.);
607 *query_r= qu;
608 return adns_s_ok;
609 }
610
611 static adns_status append_addrs(adns_query qu, size_t rrsz,
612 adns_rr_addr **dp, int *dlen,
613 const adns_rr_addr *sp, int slen) {
614 /* Append a vector of slen addr records, each of size rrsz, starting at ap,
615 * to a vector starting at *dp, of length *dlen. On successful completion,
616 * *dp and *dlen are updated.
617 */
618
619 size_t drrsz= *dlen*rrsz, srrsz= slen*rrsz;
620 byte *p;
621
622 if (!slen) return adns_s_ok;
623 p= adns__alloc_interim(qu, drrsz + srrsz);
624 if (!p) R_NOMEM;
625 if (*dlen) {
626 memcpy(p, *dp, drrsz);
627 adns__free_interim(qu, *dp);
628 }
629 memcpy(p + drrsz, sp, srrsz);
630 *dlen += slen;
631 *dp= (adns_rr_addr *)p;
632 return adns_s_ok;
633 }
634
635 static void propagate_ttl(adns_query to, adns_query from)
636 { if (to->expires > from->expires) to->expires= from->expires; }
637
638 static adns_status copy_cname_from_child(adns_query parent, adns_query child) {
639 adns_answer *pans= parent->answer, *cans= child->answer;
640 size_t n= strlen(cans->cname) + 1;
641
642 pans->cname= adns__alloc_preserved(parent, n);
643 if (!pans->cname) R_NOMEM;
644 memcpy(pans->cname, cans->cname, n);
645 return adns_s_ok;
646 }
647
648 static void done_addr_type(adns_query qu, adns_rrtype type) {
649 unsigned f= addr_rrtypeflag(type);
650 assert(f); qu->ctx.tinfo.addr.have |= f;
651 }
652
653 static void icb_addr(adns_query parent, adns_query child) {
654 adns_state ads= parent->ads;
655 adns_answer *pans= parent->answer, *cans= child->answer;
656 struct timeval now;
657 adns_status err;
658 adns_queryflags qf;
659 int id;
660
661 propagate_ttl(parent, child);
662
663 if (!(child->flags & adns__qf_addr_cname) &&
664 (parent->flags & adns__qf_addr_answer) &&
665 (!!pans->cname != !!cans->cname ||
666 (pans->cname && strcmp(pans->cname, cans->cname)))) {
667 /* We've detected an inconsistency in CNAME records, and must deploy
668 * countermeasures.
669 */
670
671 if (!pans->cname) {
672 /* The child has a CNAME record, but the parent doesn't. We must
673 * discard all of the parent's addresses, and substitute the child's.
674 */
675
676 assert(pans->rrsz == cans->rrsz);
677 adns__free_interim(parent, pans->rrs.bytes);
678 adns__transfer_interim(child, parent, cans->rrs.bytes);
679 pans->rrs.bytes= cans->rrs.bytes;
680 pans->nrrs= cans->nrrs;
681 parent->ctx.tinfo.addr.have= 0;
682 done_addr_type(parent, cans->type);
683 err= copy_cname_from_child(parent, child); if (err) goto x_err;
684 }
685
686 /* We've settled on the CNAME (now) associated with the parent, which
687 * already has appropriate address records. Build a query datagram for
688 * this name so that we can issue child queries for the missing address
689 * families. The child's vbuf looks handy for this.
690 */
691 err= adns__mkquery(ads, &child->vb, &id, pans->cname,
692 strlen(pans->cname), &tinfo_addrsub,
693 adns_r_addr, parent->flags);
694 if (err) goto x_err;
695
696 /* Now cancel the remaining children, and try again with the CNAME we've
697 * settled on.
698 */
699 adns__cancel_children(parent);
700 if (gettimeofday(&now, 0)) goto x_gtod;
701 qf= adns__qf_addr_cname;
702 if (!(parent->flags & adns_qf_cname_loose)) qf |= adns_qf_cname_forbid;
703 addr_subqueries(parent, now, qf, child->vb.buf, child->vb.used);
704 return;
705 }
706
707 if (cans->cname && !pans->cname) {
708 err= copy_cname_from_child(parent, child);
709 if (err) goto x_err;
710 }
711
712 if ((parent->flags & adns_qf_search) &&
713 !pans->cname && cans->status == adns_s_nxdomain) {
714 /* We're searching a list of suffixes, and the name doesn't exist. Try
715 * the next one.
716 */
717
718 adns__cancel_children(parent);
719 adns__free_interim(parent, pans->rrs.bytes);
720 pans->rrs.bytes= 0; pans->nrrs= 0;
721 if (gettimeofday(&now, 0)) goto x_gtod;
722 adns__search_next(ads, parent, now);
723 return;
724 }
725
726 if (cans->status && cans->status != adns_s_nodata)
727 { err= cans->status; goto x_err; }
728
729 assert(pans->rrsz == cans->rrsz);
730 err= append_addrs(parent, pans->rrsz,
731 &pans->rrs.addr, &pans->nrrs,
732 cans->rrs.addr, cans->nrrs);
733 if (err) goto x_err;
734 done_addr_type(parent, cans->type);
735
736 if (parent->children.head) LIST_LINK_TAIL(ads->childw, parent);
737 else if (!pans->nrrs) adns__query_fail(parent, adns_s_nodata);
738 else adns__query_done(parent);
739 parent->flags |= adns__qf_addr_answer;
740 return;
741
742 x_gtod:
743 adns__diag(ads, -1, parent, "gettimeofday failed: %s", strerror(errno));
744 err= adns_s_systemfail;
745 goto x_err;
746
747 x_err:
748 adns__query_fail(parent, err);
749 }
750
751 static void qs_addr(adns_query qu, struct timeval now) {
752 if (!qu->ctx.tinfo.addr.want) {
753 qu->ctx.tinfo.addr.want= addr_rrtypes(qu->ads, qu->answer->type,
754 qu->flags);
755 qu->ctx.tinfo.addr.have= 0;
756 }
757 addr_subqueries(qu, now, 0, qu->query_dgram, qu->query_dglen);
758 }
759
760 /*
761 * _domain (pap,csp,cs)
762 * _dom_raw (pa)
763 */
764
765 static adns_status pap_domain(const parseinfo *pai, int *cbyte_io, int max,
766 char **domain_r, parsedomain_flags flags) {
767 adns_status st;
768 char *dm;
769
770 st= adns__parse_domain(pai->qu->ads, pai->serv, pai->qu, &pai->qu->vb, flags,
771 pai->dgram,pai->dglen, cbyte_io, max);
772 if (st) return st;
773 if (!pai->qu->vb.used) return adns_s_invaliddata;
774
775 dm= adns__alloc_interim(pai->qu, pai->qu->vb.used+1);
776 if (!dm) R_NOMEM;
777
778 dm[pai->qu->vb.used]= 0;
779 memcpy(dm,pai->qu->vb.buf,pai->qu->vb.used);
780
781 *domain_r= dm;
782 return adns_s_ok;
783 }
784
785 static adns_status csp_domain(vbuf *vb, const char *domain) {
786 CSP_ADDSTR(domain);
787 if (!*domain) CSP_ADDSTR(".");
788 return adns_s_ok;
789 }
790
791 static adns_status cs_domain(vbuf *vb, const void *datap) {
792 const char *const *domainp= datap;
793 return csp_domain(vb,*domainp);
794 }
795
796 static adns_status pa_dom_raw(const parseinfo *pai, int cbyte,
797 int max, void *datap) {
798 char **rrp= datap;
799 adns_status st;
800
801 st= pap_domain(pai, &cbyte, max, rrp, pdf_quoteok);
802 if (st) return st;
803
804 if (cbyte != max) return adns_s_invaliddata;
805 return adns_s_ok;
806 }
807
808 /*
809 * _host_raw (pa)
810 */
811
812 static adns_status pa_host_raw(const parseinfo *pai, int cbyte,
813 int max, void *datap) {
814 char **rrp= datap;
815 adns_status st;
816
817 st= pap_domain(pai, &cbyte, max, rrp,
818 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
819 if (st) return st;
820
821 if (cbyte != max) return adns_s_invaliddata;
822 return adns_s_ok;
823 }
824
825 /*
826 * _hostaddr (pap,pa,dip,di,mfp,mf,csp,cs +pap_findaddrs, icb_hostaddr)
827 */
828
829 static adns_status pap_findaddrs(const parseinfo *pai, adns_rr_hostaddr *ha,
830 unsigned *want_io, size_t addrsz,
831 int *cbyte_io, int count, int dmstart) {
832 int rri, naddrs;
833 unsigned typef, want= *want_io, need= want;
834 int type, class, rdlen, rdend, rdstart, ownermatched;
835 unsigned long ttl;
836 adns_status st;
837
838 for (rri=0, naddrs=0; rri<count; rri++) {
839 st= adns__findrr_anychk(pai->qu, pai->serv, pai->dgram,
840 pai->dglen, cbyte_io,
841 &type, &class, &ttl, &rdlen, &rdstart,
842 pai->dgram, pai->dglen, dmstart, &ownermatched);
843 if (st) return st;
844 if (!ownermatched || class != DNS_CLASS_IN) continue;
845 typef= addr_rrtypeflag(type);
846 if (!(want & typef)) continue;
847 need &= ~typef;
848 if (!adns__vbuf_ensure(&pai->qu->vb, (naddrs+1)*addrsz)) R_NOMEM;
849 adns__update_expires(pai->qu,ttl,pai->now);
850 rdend= rdstart + rdlen;
851 st= pap_addr(pai, type, addrsz, &rdstart, rdend,
852 (adns_rr_addr *)(pai->qu->vb.buf + naddrs*addrsz));
853 if (st) return st;
854 if (rdstart != rdend) return adns_s_invaliddata;
855 naddrs++;
856 }
857 if (naddrs > 0) {
858 st= append_addrs(pai->qu, addrsz, &ha->addrs, &ha->naddrs,
859 (const adns_rr_addr *)pai->qu->vb.buf, naddrs);
860 if (st) return st;
861 ha->astatus= adns_s_ok;
862
863 if (!need) {
864 adns__isort(ha->addrs, naddrs, addrsz, pai->qu->vb.buf,
865 div_addr, pai->ads);
866 }
867 }
868 *want_io= need;
869 return adns_s_ok;
870 }
871
872 static void icb_hostaddr(adns_query parent, adns_query child) {
873 adns_answer *cans= child->answer;
874 adns_rr_hostaddr *rrp= child->ctx.pinfo.hostaddr;
875 adns_state ads= parent->ads;
876 adns_status st;
877 size_t addrsz= gsz_addr(0, parent->answer->type);
878
879 st= cans->status == adns_s_nodata ? adns_s_ok : cans->status;
880 if (st) goto done;
881 propagate_ttl(parent, child);
882
883 assert(addrsz == cans->rrsz);
884 st= append_addrs(parent, addrsz,
885 &rrp->addrs, &rrp->naddrs,
886 cans->rrs.addr, cans->nrrs);
887 if (st) goto done;
888 if (!rrp->naddrs) { st= adns_s_nodata; goto done; }
889
890 if (!adns__vbuf_ensure(&parent->vb, addrsz))
891 { st= adns_s_nomemory; goto done; }
892 adns__isort(rrp->addrs, rrp->naddrs, addrsz, parent->vb.buf,
893 div_addr, ads);
894
895 done:
896 if (st) {
897 adns__free_interim(parent, rrp->addrs);
898 rrp->naddrs= (st>0 && st<=adns_s_max_tempfail) ? -1 : 0;
899 }
900
901 rrp->astatus= st;
902 if (parent->children.head) {
903 LIST_LINK_TAIL(ads->childw,parent);
904 } else {
905 adns__query_done(parent);
906 }
907 }
908
909 static adns_status pap_hostaddr(const parseinfo *pai, int *cbyte_io,
910 int max, adns_rr_hostaddr *rrp) {
911 adns_status st;
912 int dmstart, cbyte;
913 qcontext ctx;
914 int id;
915 adns_query nqu;
916 adns_queryflags nflags;
917 unsigned want;
918 size_t addrsz= gsz_addr(0, pai->qu->answer->type);
919
920 dmstart= cbyte= *cbyte_io;
921 st= pap_domain(pai, &cbyte, max, &rrp->host,
922 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
923 if (st) return st;
924 *cbyte_io= cbyte;
925
926 rrp->astatus= adns_s_ok;
927 rrp->naddrs= 0;
928 rrp->addrs= 0;
929
930 cbyte= pai->nsstart;
931
932 want= addr_rrtypes(pai->ads, pai->qu->answer->type, pai->qu->flags);
933
934 st= pap_findaddrs(pai, rrp, &want, addrsz, &cbyte, pai->nscount, dmstart);
935 if (st) return st;
936 if (!want) return adns_s_ok;
937
938 st= pap_findaddrs(pai, rrp, &want, addrsz, &cbyte, pai->arcount, dmstart);
939 if (st) return st;
940 if (!want) return adns_s_ok;
941
942 st= adns__mkquery_frdgram(pai->ads, &pai->qu->vb, &id,
943 pai->dgram, pai->dglen, dmstart,
944 adns_r_addr, adns_qf_quoteok_query);
945 if (st) return st;
946
947 ctx.ext= 0;
948 ctx.callback= icb_hostaddr;
949 ctx.pinfo.hostaddr= rrp;
950
951 nflags= adns_qf_quoteok_query | (pai->qu->flags & (adns_qf_want_allaf |
952 adns_qf_ipv6_mapv4));
953 if (!(pai->qu->flags & adns_qf_cname_loose)) nflags |= adns_qf_cname_forbid;
954
955 st= addr_submit(pai->qu, &nqu, &pai->qu->vb, id, want,
956 nflags, pai->now, &ctx);
957 if (st) return st;
958
959 return adns_s_ok;
960 }
961
962 static adns_status pa_hostaddr(const parseinfo *pai, int cbyte,
963 int max, void *datap) {
964 adns_rr_hostaddr *rrp= datap;
965 adns_status st;
966
967 st= pap_hostaddr(pai, &cbyte, max, rrp);
968 if (st) return st;
969 if (cbyte != max) return adns_s_invaliddata;
970
971 return adns_s_ok;
972 }
973
974 static int dip_hostaddr(adns_state ads,
975 const adns_rr_hostaddr *ap, const adns_rr_hostaddr *bp) {
976 if (ap->astatus != bp->astatus) return ap->astatus;
977 if (ap->astatus) return 0;
978
979 return dip_sockaddr(ads, &ap->addrs[0].addr.sa, &bp->addrs[0].addr.sa);
980 }
981
982 static int di_hostaddr(adns_state ads,
983 const void *datap_a, const void *datap_b) {
984 const adns_rr_hostaddr *ap= datap_a, *bp= datap_b;
985
986 return dip_hostaddr(ads, ap,bp);
987 }
988
989 static void mfp_hostaddr(adns_query qu, adns_rr_hostaddr *rrp) {
990 void *tablev;
991 size_t addrsz= gsz_addr(0, qu->answer->type);
992
993 adns__makefinal_str(qu,&rrp->host);
994 tablev= rrp->addrs;
995 adns__makefinal_block(qu, &tablev, rrp->naddrs*addrsz);
996 rrp->addrs= tablev;
997 }
998
999 static void mf_hostaddr(adns_query qu, void *datap) {
1000 adns_rr_hostaddr *rrp= datap;
1001
1002 mfp_hostaddr(qu,rrp);
1003 }
1004
1005 static adns_status csp_hostaddr(vbuf *vb, const adns_rr_hostaddr *rrp) {
1006 const char *errstr;
1007 adns_status st;
1008 char buf[20];
1009 int i;
1010
1011 st= csp_domain(vb,rrp->host); if (st) return st;
1012
1013 CSP_ADDSTR(" ");
1014 CSP_ADDSTR(adns_errtypeabbrev(rrp->astatus));
1015
1016 sprintf(buf," %d ",rrp->astatus);
1017 CSP_ADDSTR(buf);
1018
1019 CSP_ADDSTR(adns_errabbrev(rrp->astatus));
1020 CSP_ADDSTR(" ");
1021
1022 errstr= adns_strerror(rrp->astatus);
1023 st= csp_qstring(vb,errstr,strlen(errstr)); if (st) return st;
1024
1025 if (rrp->naddrs >= 0) {
1026 CSP_ADDSTR(" (");
1027 for (i=0; i<rrp->naddrs; i++) {
1028 CSP_ADDSTR(" ");
1029 st= csp_addr(vb,&rrp->addrs[i]);
1030 }
1031 CSP_ADDSTR(" )");
1032 } else {
1033 CSP_ADDSTR(" ?");
1034 }
1035 return adns_s_ok;
1036 }
1037
1038 static adns_status cs_hostaddr(vbuf *vb, const void *datap) {
1039 const adns_rr_hostaddr *rrp= datap;
1040
1041 return csp_hostaddr(vb,rrp);
1042 }
1043
1044 /*
1045 * _mx_raw (pa,di)
1046 */
1047
1048 static adns_status pa_mx_raw(const parseinfo *pai, int cbyte,
1049 int max, void *datap) {
1050 const byte *dgram= pai->dgram;
1051 adns_rr_intstr *rrp= datap;
1052 adns_status st;
1053 int pref;
1054
1055 if (cbyte+2 > max) return adns_s_invaliddata;
1056 GET_W(cbyte,pref);
1057 rrp->i= pref;
1058 st= pap_domain(pai, &cbyte, max, &rrp->str,
1059 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
1060 if (st) return st;
1061
1062 if (cbyte != max) return adns_s_invaliddata;
1063 return adns_s_ok;
1064 }
1065
1066 static int di_mx_raw(adns_state ads, const void *datap_a, const void *datap_b) {
1067 const adns_rr_intstr *ap= datap_a, *bp= datap_b;
1068
1069 if (ap->i < bp->i) return 0;
1070 if (ap->i > bp->i) return 1;
1071 return 0;
1072 }
1073
1074 /*
1075 * _mx (pa,di)
1076 */
1077
1078 static adns_status pa_mx(const parseinfo *pai, int cbyte,
1079 int max, void *datap) {
1080 const byte *dgram= pai->dgram;
1081 adns_rr_inthostaddr *rrp= datap;
1082 adns_status st;
1083 int pref;
1084
1085 if (cbyte+2 > max) return adns_s_invaliddata;
1086 GET_W(cbyte,pref);
1087 rrp->i= pref;
1088 st= pap_hostaddr(pai, &cbyte, max, &rrp->ha);
1089 if (st) return st;
1090
1091 if (cbyte != max) return adns_s_invaliddata;
1092 return adns_s_ok;
1093 }
1094
1095 static int di_mx(adns_state ads, const void *datap_a, const void *datap_b) {
1096 const adns_rr_inthostaddr *ap= datap_a, *bp= datap_b;
1097
1098 if (ap->i < bp->i) return 0;
1099 if (ap->i > bp->i) return 1;
1100 return dip_hostaddr(ads, &ap->ha, &bp->ha);
1101 }
1102
1103 /*
1104 * _inthostaddr (mf,cs)
1105 */
1106
1107 static void mf_inthostaddr(adns_query qu, void *datap) {
1108 adns_rr_inthostaddr *rrp= datap;
1109
1110 mfp_hostaddr(qu,&rrp->ha);
1111 }
1112
1113 static adns_status cs_inthostaddr(vbuf *vb, const void *datap) {
1114 const adns_rr_inthostaddr *rrp= datap;
1115 char buf[10];
1116
1117 sprintf(buf,"%u ",rrp->i);
1118 CSP_ADDSTR(buf);
1119
1120 return csp_hostaddr(vb,&rrp->ha);
1121 }
1122
1123 /*
1124 * _inthost (cs)
1125 */
1126
1127 static adns_status cs_inthost(vbuf *vb, const void *datap) {
1128 const adns_rr_intstr *rrp= datap;
1129 char buf[10];
1130
1131 sprintf(buf,"%u ",rrp->i);
1132 CSP_ADDSTR(buf);
1133 return csp_domain(vb,rrp->str);
1134 }
1135
1136 /*
1137 * _ptr (ckl,pa +icb_ptr)
1138 */
1139
1140 static adns_status ckl_ptr(adns_state ads, adns_queryflags flags,
1141 union checklabel_state *cls, qcontext *ctx,
1142 int labnum, const char *label, int lablen) {
1143 if (lablen) {
1144 if (adns__revparse_label(&cls->ptr, labnum, label,lablen))
1145 return adns_s_querydomainwrong;
1146 } else {
1147 if (adns__revparse_done(&cls->ptr, labnum,
1148 &ctx->tinfo.ptr.rev_rrtype,
1149 &ctx->tinfo.ptr.addr))
1150 return adns_s_querydomainwrong;
1151 }
1152 return adns_s_ok;
1153 }
1154
1155 static void icb_ptr(adns_query parent, adns_query child) {
1156 adns_answer *cans= child->answer;
1157 const adns_sockaddr *queried;
1158 const unsigned char *found;
1159 adns_state ads= parent->ads;
1160 int i;
1161
1162 if (cans->status == adns_s_nxdomain || cans->status == adns_s_nodata) {
1163 adns__query_fail(parent,adns_s_inconsistent);
1164 return;
1165 } else if (cans->status) {
1166 adns__query_fail(parent,cans->status);
1167 return;
1168 }
1169
1170 queried= &parent->ctx.tinfo.ptr.addr;
1171 for (i=0, found=cans->rrs.bytes; i<cans->nrrs; i++, found+=cans->rrsz) {
1172 if (adns__addrs_equal_raw(&queried->sa,
1173 parent->ctx.tinfo.ptr.addr.sa.sa_family,found)) {
1174 if (!parent->children.head) {
1175 adns__query_done(parent);
1176 return;
1177 } else {
1178 LIST_LINK_TAIL(ads->childw,parent);
1179 return;
1180 }
1181 }
1182 }
1183
1184 adns__query_fail(parent,adns_s_inconsistent);
1185 }
1186
1187 static adns_status pa_ptr(const parseinfo *pai, int dmstart,
1188 int max, void *datap) {
1189 char **rrp= datap;
1190 adns_status st;
1191 adns_rrtype rrtype= pai->qu->ctx.tinfo.ptr.rev_rrtype;
1192 int cbyte, id;
1193 adns_query nqu;
1194 qcontext ctx;
1195
1196 cbyte= dmstart;
1197 st= pap_domain(pai, &cbyte, max, rrp,
1198 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
1199 if (st) return st;
1200 if (cbyte != max) return adns_s_invaliddata;
1201
1202 st= adns__mkquery_frdgram(pai->ads, &pai->qu->vb, &id,
1203 pai->dgram, pai->dglen, dmstart,
1204 rrtype, adns_qf_quoteok_query);
1205 if (st) return st;
1206
1207 ctx.ext= 0;
1208 ctx.callback= icb_ptr;
1209 memset(&ctx.pinfo,0,sizeof(ctx.pinfo));
1210 memset(&ctx.tinfo,0,sizeof(ctx.tinfo));
1211 st= adns__internal_submit(pai->ads, &nqu, adns__findtype(rrtype),
1212 rrtype, &pai->qu->vb, id,
1213 adns_qf_quoteok_query, pai->now, &ctx);
1214 if (st) return st;
1215
1216 nqu->parent= pai->qu;
1217 LIST_LINK_TAIL_PART(pai->qu->children,nqu,siblings.);
1218 return adns_s_ok;
1219 }
1220
1221 /*
1222 * _strpair (mf)
1223 */
1224
1225 static void mf_strpair(adns_query qu, void *datap) {
1226 adns_rr_strpair *rrp= datap;
1227
1228 adns__makefinal_str(qu,&rrp->array[0]);
1229 adns__makefinal_str(qu,&rrp->array[1]);
1230 }
1231
1232 /*
1233 * _intstrpair (mf)
1234 */
1235
1236 static void mf_intstrpair(adns_query qu, void *datap) {
1237 adns_rr_intstrpair *rrp= datap;
1238
1239 adns__makefinal_str(qu,&rrp->array[0].str);
1240 adns__makefinal_str(qu,&rrp->array[1].str);
1241 }
1242
1243 /*
1244 * _hinfo (pa)
1245 */
1246
1247 static adns_status pa_hinfo(const parseinfo *pai, int cbyte,
1248 int max, void *datap) {
1249 adns_rr_intstrpair *rrp= datap;
1250 adns_status st;
1251 int i;
1252
1253 for (i=0; i<2; i++) {
1254 st= pap_qstring(pai, &cbyte, max, &rrp->array[i].i, &rrp->array[i].str);
1255 if (st) return st;
1256 }
1257
1258 if (cbyte != max) return adns_s_invaliddata;
1259
1260 return adns_s_ok;
1261 }
1262
1263 /*
1264 * _mailbox (pap,cs +pap_mailbox822)
1265 */
1266
1267 static adns_status pap_mailbox822(const parseinfo *pai,
1268 int *cbyte_io, int max, char **mb_r) {
1269 int lablen, labstart, i, needquote, c, r, neednorm;
1270 const unsigned char *p;
1271 char *str;
1272 findlabel_state fls;
1273 adns_status st;
1274 vbuf *vb;
1275
1276 vb= &pai->qu->vb;
1277 vb->used= 0;
1278 adns__findlabel_start(&fls, pai->ads,
1279 -1, pai->qu,
1280 pai->dgram, pai->dglen, max,
1281 *cbyte_io, cbyte_io);
1282 st= adns__findlabel_next(&fls,&lablen,&labstart);
1283 if (!lablen) {
1284 adns__vbuf_appendstr(vb,".");
1285 goto x_ok;
1286 }
1287
1288 neednorm= 1;
1289 for (i=0, needquote=0, p= pai->dgram+labstart; i<lablen; i++) {
1290 c= *p++;
1291 if ((c&~128) < 32 || (c&~128) == 127) return adns_s_invaliddata;
1292 if (c == '.' && !neednorm) neednorm= 1;
1293 else if (c==' ' || c>=127 || ctype_822special(c)) needquote++;
1294 else neednorm= 0;
1295 }
1296
1297 if (needquote || neednorm) {
1298 r= adns__vbuf_ensure(vb, lablen+needquote+4); if (!r) R_NOMEM;
1299 adns__vbuf_appendq(vb,"\"",1);
1300 for (i=0, needquote=0, p= pai->dgram+labstart; i<lablen; i++, p++) {
1301 c= *p;
1302 if (c == '"' || c=='\\') adns__vbuf_appendq(vb,"\\",1);
1303 adns__vbuf_appendq(vb,p,1);
1304 }
1305 adns__vbuf_appendq(vb,"\"",1);
1306 } else {
1307 r= adns__vbuf_append(vb, pai->dgram+labstart, lablen); if (!r) R_NOMEM;
1308 }
1309
1310 r= adns__vbuf_appendstr(vb,"@"); if (!r) R_NOMEM;
1311
1312 st= adns__parse_domain_more(&fls,pai->ads, pai->qu,vb,0, pai->dgram);
1313 if (st) return st;
1314
1315 x_ok:
1316 str= adns__alloc_interim(pai->qu, vb->used+1); if (!str) R_NOMEM;
1317 memcpy(str,vb->buf,vb->used);
1318 str[vb->used]= 0;
1319 *mb_r= str;
1320 return adns_s_ok;
1321 }
1322
1323 static adns_status pap_mailbox(const parseinfo *pai, int *cbyte_io, int max,
1324 char **mb_r) {
1325 if (pai->qu->typei->typekey & adns__qtf_mail822) {
1326 return pap_mailbox822(pai, cbyte_io, max, mb_r);
1327 } else {
1328 return pap_domain(pai, cbyte_io, max, mb_r, pdf_quoteok);
1329 }
1330 }
1331
1332 static adns_status csp_mailbox(vbuf *vb, const char *mailbox) {
1333 return csp_domain(vb,mailbox);
1334 }
1335
1336 /*
1337 * _rp (pa,cs)
1338 */
1339
1340 static adns_status pa_rp(const parseinfo *pai, int cbyte,
1341 int max, void *datap) {
1342 adns_rr_strpair *rrp= datap;
1343 adns_status st;
1344
1345 st= pap_mailbox(pai, &cbyte, max, &rrp->array[0]);
1346 if (st) return st;
1347
1348 st= pap_domain(pai, &cbyte, max, &rrp->array[1], pdf_quoteok);
1349 if (st) return st;
1350
1351 if (cbyte != max) return adns_s_invaliddata;
1352 return adns_s_ok;
1353 }
1354
1355 static adns_status cs_rp(vbuf *vb, const void *datap) {
1356 const adns_rr_strpair *rrp= datap;
1357 adns_status st;
1358
1359 st= csp_mailbox(vb,rrp->array[0]); if (st) return st;
1360 CSP_ADDSTR(" ");
1361 st= csp_domain(vb,rrp->array[1]); if (st) return st;
1362
1363 return adns_s_ok;
1364 }
1365
1366 /*
1367 * _soa (pa,mf,cs)
1368 */
1369
1370 static adns_status pa_soa(const parseinfo *pai, int cbyte,
1371 int max, void *datap) {
1372 adns_rr_soa *rrp= datap;
1373 const byte *dgram= pai->dgram;
1374 adns_status st;
1375 int msw, lsw, i;
1376
1377 st= pap_domain(pai, &cbyte, max, &rrp->mname,
1378 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
1379 if (st) return st;
1380
1381 st= pap_mailbox(pai, &cbyte, max, &rrp->rname);
1382 if (st) return st;
1383
1384 if (cbyte+20 != max) return adns_s_invaliddata;
1385
1386 for (i=0; i<5; i++) {
1387 GET_W(cbyte,msw);
1388 GET_W(cbyte,lsw);
1389 (&rrp->serial)[i]= (msw<<16) | lsw;
1390 }
1391
1392 return adns_s_ok;
1393 }
1394
1395 static void mf_soa(adns_query qu, void *datap) {
1396 adns_rr_soa *rrp= datap;
1397
1398 adns__makefinal_str(qu,&rrp->mname);
1399 adns__makefinal_str(qu,&rrp->rname);
1400 }
1401
1402 static adns_status cs_soa(vbuf *vb, const void *datap) {
1403 const adns_rr_soa *rrp= datap;
1404 char buf[20];
1405 int i;
1406 adns_status st;
1407
1408 st= csp_domain(vb,rrp->mname); if (st) return st;
1409 CSP_ADDSTR(" ");
1410 st= csp_mailbox(vb,rrp->rname); if (st) return st;
1411
1412 for (i=0; i<5; i++) {
1413 sprintf(buf," %lu",(&rrp->serial)[i]);
1414 CSP_ADDSTR(buf);
1415 }
1416
1417 return adns_s_ok;
1418 }
1419
1420 /*
1421 * _srv* (ckl,(pap),pa*2,mf*2,di,(csp),cs*2,postsort)
1422 */
1423
1424 static adns_status ckl_srv(adns_state ads, adns_queryflags flags,
1425 union checklabel_state *cls, qcontext *ctx,
1426 int labnum, const char *label, int lablen) {
1427 if (labnum < 2 && !(flags & adns_qf_quoteok_query)) {
1428 if (!lablen || label[0] != '_') return adns_s_querydomaininvalid;
1429 return adns_s_ok;
1430 }
1431 return adns__ckl_hostname(ads, flags, cls, ctx, labnum, label, lablen);
1432 }
1433
1434 static adns_status pap_srv_begin(const parseinfo *pai, int *cbyte_io, int max,
1435 adns_rr_srvha *rrp
1436 /* might be adns_rr_srvraw* */) {
1437 const byte *dgram= pai->dgram;
1438 int ti, cbyte;
1439
1440 cbyte= *cbyte_io;
1441 if ((*cbyte_io += 6) > max) return adns_s_invaliddata;
1442
1443 rrp->priority= GET_W(cbyte, ti);
1444 rrp->weight= GET_W(cbyte, ti);
1445 rrp->port= GET_W(cbyte, ti);
1446 return adns_s_ok;
1447 }
1448
1449 static adns_status pa_srvraw(const parseinfo *pai, int cbyte,
1450 int max, void *datap) {
1451 adns_rr_srvraw *rrp= datap;
1452 adns_status st;
1453
1454 st= pap_srv_begin(pai,&cbyte,max,datap);
1455 if (st) return st;
1456
1457 st= pap_domain(pai, &cbyte, max, &rrp->host,
1458 pai->qu->flags & adns_qf_quoteok_anshost ? pdf_quoteok : 0);
1459 if (st) return st;
1460
1461 if (cbyte != max) return adns_s_invaliddata;
1462 return adns_s_ok;
1463 }
1464
1465 static adns_status pa_srvha(const parseinfo *pai, int cbyte,
1466 int max, void *datap) {
1467 adns_rr_srvha *rrp= datap;
1468 adns_status st;
1469
1470 st= pap_srv_begin(pai,&cbyte,max,datap); if (st) return st;
1471 st= pap_hostaddr(pai, &cbyte, max, &rrp->ha); if (st) return st;
1472 if (cbyte != max) return adns_s_invaliddata;
1473 return adns_s_ok;
1474 }
1475
1476 static void mf_srvraw(adns_query qu, void *datap) {
1477 adns_rr_srvraw *rrp= datap;
1478 adns__makefinal_str(qu, &rrp->host);
1479 }
1480
1481 static void mf_srvha(adns_query qu, void *datap) {
1482 adns_rr_srvha *rrp= datap;
1483 mfp_hostaddr(qu,&rrp->ha);
1484 }
1485
1486 static int di_srv(adns_state ads, const void *datap_a, const void *datap_b) {
1487 const adns_rr_srvraw *ap= datap_a, *bp= datap_b;
1488 /* might be const adns_rr_svhostaddr* */
1489
1490 if (ap->priority < bp->priority) return 0;
1491 if (ap->priority > bp->priority) return 1;
1492 return 0;
1493 }
1494
1495 static adns_status csp_srv_begin(vbuf *vb, const adns_rr_srvha *rrp
1496 /* might be adns_rr_srvraw* */) {
1497 char buf[30];
1498 sprintf(buf,"%u %u %u ", rrp->priority, rrp->weight, rrp->port);
1499 CSP_ADDSTR(buf);
1500 return adns_s_ok;
1501 }
1502
1503 static adns_status cs_srvraw(vbuf *vb, const void *datap) {
1504 const adns_rr_srvraw *rrp= datap;
1505 adns_status st;
1506
1507 st= csp_srv_begin(vb,(const void*)rrp); if (st) return st;
1508 return csp_domain(vb,rrp->host);
1509 }
1510
1511 static adns_status cs_srvha(vbuf *vb, const void *datap) {
1512 const adns_rr_srvha *rrp= datap;
1513 adns_status st;
1514
1515 st= csp_srv_begin(vb,(const void*)datap); if (st) return st;
1516 return csp_hostaddr(vb,&rrp->ha);
1517 }
1518
1519 static void postsort_srv(adns_state ads, void *array, int nrrs,int rrsz,
1520 const struct typeinfo *typei) {
1521 /* we treat everything in the array as if it were an adns_rr_srvha
1522 * even though the array might be of adns_rr_srvraw. That's OK
1523 * because they have the same prefix, which is all we access.
1524 * We use rrsz, too, rather than naive array indexing, of course.
1525 */
1526 char *workbegin, *workend, *search, *arrayend;
1527 const adns_rr_srvha *rr;
1528 union { adns_rr_srvha ha; adns_rr_srvraw raw; } rrtmp;
1529 int cpriority, totalweight, runtotal;
1530 long randval;
1531
1532 assert(rrsz <= sizeof(rrtmp));
1533 for (workbegin= array, arrayend= workbegin + rrsz * nrrs;
1534 workbegin < arrayend;
1535 workbegin= workend) {
1536 cpriority= (rr=(void*)workbegin)->priority;
1537
1538 for (workend= workbegin, totalweight= 0;
1539 workend < arrayend && (rr=(void*)workend)->priority == cpriority;
1540 workend += rrsz) {
1541 totalweight += rr->weight;
1542 }
1543
1544 /* Now workbegin..(workend-1) incl. are exactly all of the RRs of
1545 * cpriority. From now on, workbegin points to the `remaining'
1546 * records: we select one record at a time (RFC2782 `Usage rules'
1547 * and `Format of the SRV RR' subsection `Weight') to place at
1548 * workbegin (swapping with the one that was there, and then
1549 * advance workbegin. */
1550 for (;
1551 workbegin + rrsz < workend; /* don't bother if just one */
1552 workbegin += rrsz) {
1553
1554 randval= nrand48(ads->rand48xsubi);
1555 randval %= (totalweight + 1);
1556 /* makes it into 0..totalweight inclusive; with 2^10 RRs,
1557 * totalweight must be <= 2^26 so probability nonuniformity is
1558 * no worse than 1 in 2^(31-26) ie 1 in 2^5, ie
1559 * abs(log(P_intended(RR_i) / P_actual(RR_i)) <= log(2^-5).
1560 */
1561
1562 for (search=workbegin, runtotal=0;
1563 (runtotal += (rr=(void*)search)->weight) < randval;
1564 search += rrsz);
1565 assert(search < arrayend);
1566 totalweight -= rr->weight;
1567 if (search != workbegin) {
1568 memcpy(&rrtmp, workbegin, rrsz);
1569 memcpy(workbegin, search, rrsz);
1570 memcpy(search, &rrtmp, rrsz);
1571 }
1572 }
1573 }
1574 /* tests:
1575 * dig -t srv _srv._tcp.test.iwj.relativity.greenend.org.uk.
1576 * ./adnshost_s -t srv- _sip._udp.voip.net.cam.ac.uk.
1577 * ./adnshost_s -t srv- _jabber._tcp.jabber.org
1578 */
1579 }
1580
1581 /*
1582 * _byteblock (mf)
1583 */
1584
1585 static void mf_byteblock(adns_query qu, void *datap) {
1586 adns_rr_byteblock *rrp= datap;
1587 void *bytes= rrp->data;
1588 adns__makefinal_block(qu,&bytes,rrp->len);
1589 rrp->data= bytes;
1590 }
1591
1592 /*
1593 * _opaque (pa,cs)
1594 */
1595
1596 static adns_status pa_opaque(const parseinfo *pai, int cbyte,
1597 int max, void *datap) {
1598 adns_rr_byteblock *rrp= datap;
1599
1600 rrp->len= max - cbyte;
1601 rrp->data= adns__alloc_interim(pai->qu, rrp->len);
1602 if (!rrp->data) R_NOMEM;
1603 memcpy(rrp->data, pai->dgram + cbyte, rrp->len);
1604 return adns_s_ok;
1605 }
1606
1607 static adns_status cs_opaque(vbuf *vb, const void *datap) {
1608 const adns_rr_byteblock *rrp= datap;
1609 char buf[10];
1610 int l;
1611 unsigned char *p;
1612
1613 sprintf(buf,"\\# %d",rrp->len);
1614 CSP_ADDSTR(buf);
1615
1616 for (l= rrp->len, p= rrp->data;
1617 l>=4;
1618 l -= 4, p += 4) {
1619 sprintf(buf," %02x%02x%02x%02x",p[0],p[1],p[2],p[3]);
1620 CSP_ADDSTR(buf);
1621 }
1622 for (;
1623 l>0;
1624 l--, p++) {
1625 sprintf(buf," %02x",*p);
1626 CSP_ADDSTR(buf);
1627 }
1628 return adns_s_ok;
1629 }
1630
1631 /*
1632 * _flat (mf)
1633 */
1634
1635 static void mf_flat(adns_query qu, void *data) { }
1636
1637 /*
1638 * Now the table.
1639 */
1640
1641 #define TYPESZ_M(member) (sizeof(*((adns_answer*)0)->rrs.member))
1642
1643 #define DEEP_TYPE(code,rrt,fmt,memb,parser,comparer,/*printer*/...) \
1644 { adns_r_##code&adns_rrt_reprmask, rrt,fmt,TYPESZ_M(memb), mf_##memb, \
1645 GLUE(cs_, CAR(__VA_ARGS__)),pa_##parser,di_##comparer, \
1646 adns__ckl_hostname, 0, adns__getrrsz_default, adns__query_send, \
1647 CDR(__VA_ARGS__) }
1648 #define FLAT_TYPE(code,rrt,fmt,memb,parser,comparer,/*printer*/...) \
1649 { adns_r_##code&adns_rrt_reprmask, rrt,fmt,TYPESZ_M(memb), mf_flat, \
1650 GLUE(cs_, CAR(__VA_ARGS__)),pa_##parser,di_##comparer, \
1651 adns__ckl_hostname, 0, adns__getrrsz_default, adns__query_send, \
1652 CDR(__VA_ARGS__) }
1653
1654 #define di_0 0
1655
1656 static const typeinfo typeinfos[] = {
1657 /* Must be in ascending order of rrtype ! */
1658 /* mem-mgmt code rrt fmt member parser comparer printer */
1659
1660 FLAT_TYPE(a, "A", 0, inaddr, inaddr, inaddr,inaddr ),
1661 DEEP_TYPE(ns_raw, "NS", "raw",str, host_raw,0, domain ),
1662 DEEP_TYPE(cname, "CNAME", 0, str, dom_raw, 0, domain ),
1663 DEEP_TYPE(soa_raw,"SOA", "raw",soa, soa, 0, soa ),
1664 DEEP_TYPE(ptr_raw,"PTR", "raw",str, host_raw,0, domain ),
1665 DEEP_TYPE(hinfo, "HINFO", 0, intstrpair,hinfo, 0, hinfo ),
1666 DEEP_TYPE(mx_raw, "MX", "raw",intstr, mx_raw, mx_raw,inthost ),
1667 DEEP_TYPE(txt, "TXT", 0, manyistr, txt, 0, txt ),
1668 DEEP_TYPE(rp_raw, "RP", "raw",strpair, rp, 0, rp ),
1669 FLAT_TYPE(aaaa, "AAAA", 0, in6addr, in6addr, in6addr,in6addr ),
1670 DEEP_TYPE(srv_raw,"SRV", "raw",srvraw , srvraw, srv, srvraw,
1671 .checklabel= ckl_srv, .postsort= postsort_srv),
1672
1673 FLAT_TYPE(addr, "A", "addr", addr, addr, addr, addr,
1674 .getrrsz= gsz_addr, .query_send= qs_addr),
1675 DEEP_TYPE(ns, "NS", "+addr",hostaddr, hostaddr,hostaddr,hostaddr ),
1676 DEEP_TYPE(ptr, "PTR","checked",str, ptr, 0, domain,
1677 .checklabel= ckl_ptr),
1678 DEEP_TYPE(mx, "MX", "+addr",inthostaddr,mx, mx, inthostaddr, ),
1679 DEEP_TYPE(srv, "SRV","+addr",srvha, srvha, srv, srvha,
1680 .checklabel= ckl_srv, .postsort= postsort_srv),
1681
1682 DEEP_TYPE(soa, "SOA","822", soa, soa, 0, soa ),
1683 DEEP_TYPE(rp, "RP", "822", strpair, rp, 0, rp ),
1684 };
1685
1686 static const typeinfo tinfo_addrsub =
1687 FLAT_TYPE(none, "<addr>","sub",addr, addr, 0, addr,
1688 .getrrsz= gsz_addr);
1689
1690 static const typeinfo typeinfo_unknown=
1691 DEEP_TYPE(unknown,0, "unknown",byteblock,opaque, 0, opaque );
1692
1693 const typeinfo *adns__findtype(adns_rrtype type) {
1694 const typeinfo *begin, *end, *mid;
1695
1696 if (type & adns_r_unknown) return &typeinfo_unknown;
1697 type &= adns_rrt_reprmask;
1698
1699 begin= typeinfos; end= typeinfos+(sizeof(typeinfos)/sizeof(typeinfo));
1700
1701 while (begin < end) {
1702 mid= begin + ((end-begin)>>1);
1703 if (mid->typekey == type) return mid;
1704 if (type > mid->typekey) begin= mid+1;
1705 else end= mid;
1706 }
1707 return 0;
1708 }