getaddrinfo.c revision 1.101.2.1 1 /* $NetBSD: getaddrinfo.c,v 1.101.2.1 2013/06/23 06:21:05 tls Exp $ */
2 /* $KAME: getaddrinfo.c,v 1.29 2000/08/31 17:26:57 itojun Exp $ */
3
4 /*
5 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. Neither the name of the project nor the names of its contributors
17 * may be used to endorse or promote products derived from this software
18 * without specific prior written permission.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
24 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 * SUCH DAMAGE.
31 */
32
33 /*
34 * Issues to be discussed:
35 * - Return values. There are nonstandard return values defined and used
36 * in the source code. This is because RFC2553 is silent about which error
37 * code must be returned for which situation.
38 * - IPv4 classful (shortened) form. RFC2553 is silent about it. XNET 5.2
39 * says to use inet_aton() to convert IPv4 numeric to binary (alows
40 * classful form as a result).
41 * current code - disallow classful form for IPv4 (due to use of inet_pton).
42 * - freeaddrinfo(NULL). RFC2553 is silent about it. XNET 5.2 says it is
43 * invalid.
44 * current code - SEGV on freeaddrinfo(NULL)
45 * Note:
46 * - The code filters out AFs that are not supported by the kernel,
47 * when globbing NULL hostname (to loopback, or wildcard). Is it the right
48 * thing to do? What is the relationship with post-RFC2553 AI_ADDRCONFIG
49 * in ai_flags?
50 * - (post-2553) semantics of AI_ADDRCONFIG itself is too vague.
51 * (1) what should we do against numeric hostname (2) what should we do
52 * against NULL hostname (3) what is AI_ADDRCONFIG itself. AF not ready?
53 * non-loopback address configured? global address configured?
54 */
55
56 #include <sys/cdefs.h>
57 #if defined(LIBC_SCCS) && !defined(lint)
58 __RCSID("$NetBSD: getaddrinfo.c,v 1.101.2.1 2013/06/23 06:21:05 tls Exp $");
59 #endif /* LIBC_SCCS and not lint */
60
61 #include "namespace.h"
62 #include <sys/types.h>
63 #include <sys/param.h>
64 #include <sys/socket.h>
65 #include <net/if.h>
66 #include <netinet/in.h>
67 #include <arpa/inet.h>
68 #include <arpa/nameser.h>
69 #include <assert.h>
70 #include <ctype.h>
71 #include <errno.h>
72 #include <netdb.h>
73 #include <resolv.h>
74 #include <stddef.h>
75 #include <stdio.h>
76 #include <stdlib.h>
77 #include <string.h>
78 #include <unistd.h>
79 #include <ifaddrs.h>
80
81 #include <syslog.h>
82 #include <stdarg.h>
83 #include <nsswitch.h>
84
85 #ifdef YP
86 #include <rpc/rpc.h>
87 #include <rpcsvc/yp_prot.h>
88 #include <rpcsvc/ypclnt.h>
89 #endif
90
91 #include "servent.h"
92
93 #ifdef __weak_alias
94 __weak_alias(getaddrinfo,_getaddrinfo)
95 __weak_alias(freeaddrinfo,_freeaddrinfo)
96 __weak_alias(gai_strerror,_gai_strerror)
97 #endif
98
99 #define SUCCESS 0
100 #define ANY 0
101 #define YES 1
102 #define NO 0
103
104 static const char in_addrany[] = { 0, 0, 0, 0 };
105 static const char in_loopback[] = { 127, 0, 0, 1 };
106 #ifdef INET6
107 static const char in6_addrany[] = {
108 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0
109 };
110 static const char in6_loopback[] = {
111 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1
112 };
113 #endif
114
115 static const struct afd {
116 int a_af;
117 int a_addrlen;
118 int a_socklen;
119 int a_off;
120 const char *a_addrany;
121 const char *a_loopback;
122 int a_scoped;
123 } afdl [] = {
124 #ifdef INET6
125 {PF_INET6, sizeof(struct in6_addr),
126 sizeof(struct sockaddr_in6),
127 offsetof(struct sockaddr_in6, sin6_addr),
128 in6_addrany, in6_loopback, 1},
129 #endif
130 {PF_INET, sizeof(struct in_addr),
131 sizeof(struct sockaddr_in),
132 offsetof(struct sockaddr_in, sin_addr),
133 in_addrany, in_loopback, 0},
134 {0, 0, 0, 0, NULL, NULL, 0},
135 };
136
137 struct explore {
138 int e_af;
139 int e_socktype;
140 int e_protocol;
141 const char *e_protostr;
142 int e_wild;
143 #define WILD_AF(ex) ((ex)->e_wild & 0x01)
144 #define WILD_SOCKTYPE(ex) ((ex)->e_wild & 0x02)
145 #define WILD_PROTOCOL(ex) ((ex)->e_wild & 0x04)
146 };
147
148 static const struct explore explore[] = {
149 #if 0
150 { PF_LOCAL, 0, ANY, ANY, NULL, 0x01 },
151 #endif
152 #ifdef INET6
153 { PF_INET6, SOCK_DGRAM, IPPROTO_UDP, "udp", 0x07 },
154 { PF_INET6, SOCK_STREAM, IPPROTO_TCP, "tcp", 0x07 },
155 { PF_INET6, SOCK_RAW, ANY, NULL, 0x05 },
156 #endif
157 { PF_INET, SOCK_DGRAM, IPPROTO_UDP, "udp", 0x07 },
158 { PF_INET, SOCK_STREAM, IPPROTO_TCP, "tcp", 0x07 },
159 { PF_INET, SOCK_RAW, ANY, NULL, 0x05 },
160 { PF_UNSPEC, SOCK_DGRAM, IPPROTO_UDP, "udp", 0x07 },
161 { PF_UNSPEC, SOCK_STREAM, IPPROTO_TCP, "tcp", 0x07 },
162 { PF_UNSPEC, SOCK_RAW, ANY, NULL, 0x05 },
163 { -1, 0, 0, NULL, 0 },
164 };
165
166 #ifdef INET6
167 #define PTON_MAX 16
168 #else
169 #define PTON_MAX 4
170 #endif
171
172 static const ns_src default_dns_files[] = {
173 { NSSRC_FILES, NS_SUCCESS },
174 { NSSRC_DNS, NS_SUCCESS },
175 { 0, 0 }
176 };
177
178 #define MAXPACKET (64*1024)
179
180 typedef union {
181 HEADER hdr;
182 u_char buf[MAXPACKET];
183 } querybuf;
184
185 struct res_target {
186 struct res_target *next;
187 const char *name; /* domain name */
188 int qclass, qtype; /* class and type of query */
189 u_char *answer; /* buffer to put answer */
190 int anslen; /* size of answer buffer */
191 int n; /* result length */
192 };
193
194 struct srvinfo {
195 struct srvinfo *next;
196 char name[MAXDNAME];
197 int port, pri, weight;
198 };
199
200 static int gai_srvok(const char *);
201 static int str2number(const char *);
202 static int explore_fqdn(const struct addrinfo *, const char *,
203 const char *, struct addrinfo **, struct servent_data *);
204 static int explore_null(const struct addrinfo *,
205 const char *, struct addrinfo **, struct servent_data *);
206 static int explore_numeric(const struct addrinfo *, const char *,
207 const char *, struct addrinfo **, const char *, struct servent_data *);
208 static int explore_numeric_scope(const struct addrinfo *, const char *,
209 const char *, struct addrinfo **, struct servent_data *);
210 static int get_canonname(const struct addrinfo *,
211 struct addrinfo *, const char *);
212 static struct addrinfo *get_ai(const struct addrinfo *,
213 const struct afd *, const char *);
214 static int get_portmatch(const struct addrinfo *, const char *,
215 struct servent_data *);
216 static int get_port(const struct addrinfo *, const char *, int,
217 struct servent_data *);
218 static const struct afd *find_afd(int);
219 static int addrconfig(uint64_t *);
220 #ifdef INET6
221 static int ip6_str2scopeid(char *, struct sockaddr_in6 *, u_int32_t *);
222 #endif
223
224 static struct addrinfo *getanswer(const querybuf *, int, const char *, int,
225 const struct addrinfo *);
226 static void aisort(struct addrinfo *s, res_state res);
227 static struct addrinfo * _dns_query(struct res_target *,
228 const struct addrinfo *, res_state, int);
229 static struct addrinfo * _dns_srv_lookup(const char *, const char *,
230 const struct addrinfo *);
231 static struct addrinfo * _dns_host_lookup(const char *,
232 const struct addrinfo *);
233 static int _dns_getaddrinfo(void *, void *, va_list);
234 static void _sethtent(FILE **);
235 static void _endhtent(FILE **);
236 static struct addrinfo *_gethtent(FILE **, const char *,
237 const struct addrinfo *);
238 static int _files_getaddrinfo(void *, void *, va_list);
239 #ifdef YP
240 static struct addrinfo *_yphostent(char *, const struct addrinfo *);
241 static int _yp_getaddrinfo(void *, void *, va_list);
242 #endif
243
244 static int res_queryN(const char *, struct res_target *, res_state);
245 static int res_searchN(const char *, struct res_target *, res_state);
246 static int res_querydomainN(const char *, const char *,
247 struct res_target *, res_state);
248
249 static const char * const ai_errlist[] = {
250 "Success",
251 "Address family for hostname not supported", /* EAI_ADDRFAMILY */
252 "Temporary failure in name resolution", /* EAI_AGAIN */
253 "Invalid value for ai_flags", /* EAI_BADFLAGS */
254 "Non-recoverable failure in name resolution", /* EAI_FAIL */
255 "ai_family not supported", /* EAI_FAMILY */
256 "Memory allocation failure", /* EAI_MEMORY */
257 "No address associated with hostname", /* EAI_NODATA */
258 "hostname nor servname provided, or not known", /* EAI_NONAME */
259 "servname not supported for ai_socktype", /* EAI_SERVICE */
260 "ai_socktype not supported", /* EAI_SOCKTYPE */
261 "System error returned in errno", /* EAI_SYSTEM */
262 "Invalid value for hints", /* EAI_BADHINTS */
263 "Resolved protocol is unknown", /* EAI_PROTOCOL */
264 "Argument buffer overflow", /* EAI_OVERFLOW */
265 "Unknown error", /* EAI_MAX */
266 };
267
268 /* XXX macros that make external reference is BAD. */
269
270 #define GET_AI(ai, afd, addr) \
271 do { \
272 /* external reference: pai, error, and label free */ \
273 (ai) = get_ai(pai, (afd), (addr)); \
274 if ((ai) == NULL) { \
275 error = EAI_MEMORY; \
276 goto free; \
277 } \
278 } while (/*CONSTCOND*/0)
279
280 #define GET_PORT(ai, serv, svd) \
281 do { \
282 /* external reference: error and label free */ \
283 error = get_port((ai), (serv), 0, (svd)); \
284 if (error != 0) \
285 goto free; \
286 } while (/*CONSTCOND*/0)
287
288 #define GET_CANONNAME(ai, str) \
289 do { \
290 /* external reference: pai, error and label free */ \
291 error = get_canonname(pai, (ai), (str)); \
292 if (error != 0) \
293 goto free; \
294 } while (/*CONSTCOND*/0)
295
296 #define ERR(err) \
297 do { \
298 /* external reference: error, and label bad */ \
299 error = (err); \
300 goto bad; \
301 /*NOTREACHED*/ \
302 } while (/*CONSTCOND*/0)
303
304 #define MATCH_FAMILY(x, y, w) \
305 ((x) == (y) || (/*CONSTCOND*/(w) && ((x) == PF_UNSPEC || \
306 (y) == PF_UNSPEC)))
307 #define MATCH(x, y, w) \
308 ((x) == (y) || (/*CONSTCOND*/(w) && ((x) == ANY || (y) == ANY)))
309
310 const char *
311 gai_strerror(int ecode)
312 {
313 if (ecode < 0 || ecode > EAI_MAX)
314 ecode = EAI_MAX;
315 return ai_errlist[ecode];
316 }
317
318 void
319 freeaddrinfo(struct addrinfo *ai)
320 {
321 struct addrinfo *next;
322
323 _DIAGASSERT(ai != NULL);
324
325 do {
326 next = ai->ai_next;
327 if (ai->ai_canonname)
328 free(ai->ai_canonname);
329 /* no need to free(ai->ai_addr) */
330 free(ai);
331 ai = next;
332 } while (ai);
333 }
334
335 /*
336 * We don't want localization to affect us
337 */
338 #define PERIOD '.'
339 #define hyphenchar(c) ((c) == '-')
340 #define periodchar(c) ((c) == PERIOD)
341 #define underschar(c) ((c) == '_')
342 #define alphachar(c) (((c) >= 'a' && (c) <= 'z') || ((c) >= 'A' && (c) <= 'Z'))
343 #define digitchar(c) ((c) >= '0' && (c) <= '9')
344
345 #define firstchar(c) (alphachar(c) || digitchar(c) || underschar(c))
346 #define lastchar(c) (alphachar(c) || digitchar(c))
347 #define middlechar(c) (lastchar(c) || hyphenchar(c))
348
349 static int
350 gai_srvok(const char *dn)
351 {
352 int nch, pch, ch;
353
354 for (pch = PERIOD, nch = ch = *dn++; ch != '\0'; pch = ch, ch = nch) {
355 if (periodchar(ch))
356 continue;
357 if (periodchar(pch)) {
358 if (!firstchar(ch))
359 return 0;
360 } else if (periodchar(nch) || nch == '\0') {
361 if (!lastchar(ch))
362 return 0;
363 } else if (!middlechar(ch))
364 return 0;
365 }
366 return 1;
367 }
368
369 static in_port_t *
370 getport(struct addrinfo *ai) {
371 static in_port_t p;
372
373 switch (ai->ai_family) {
374 case AF_INET:
375 return &((struct sockaddr_in *)(void *)ai->ai_addr)->sin_port;
376 #ifdef INET6
377 case AF_INET6:
378 return &((struct sockaddr_in6 *)(void *)ai->ai_addr)->sin6_port;
379 #endif
380 default:
381 p = 0;
382 /* XXX: abort()? */
383 return &p;
384 }
385 }
386
387 static int
388 str2number(const char *p)
389 {
390 char *ep;
391 unsigned long v;
392
393 _DIAGASSERT(p != NULL);
394
395 if (*p == '\0')
396 return -1;
397 ep = NULL;
398 errno = 0;
399 v = strtoul(p, &ep, 10);
400 if (errno == 0 && ep && *ep == '\0' && v <= INT_MAX)
401 return (int)v;
402 else
403 return -1;
404 }
405
406 int
407 getaddrinfo(const char *hostname, const char *servname,
408 const struct addrinfo *hints, struct addrinfo **res)
409 {
410 struct addrinfo sentinel;
411 struct addrinfo *cur;
412 int error = 0;
413 struct addrinfo ai;
414 struct addrinfo ai0;
415 struct addrinfo *pai;
416 const struct explore *ex;
417 struct servent_data svd;
418 uint64_t mask = (uint64_t)~0ULL;
419
420 /* hostname is allowed to be NULL */
421 /* servname is allowed to be NULL */
422 /* hints is allowed to be NULL */
423 _DIAGASSERT(res != NULL);
424
425 (void)memset(&svd, 0, sizeof(svd));
426 memset(&sentinel, 0, sizeof(sentinel));
427 cur = &sentinel;
428 memset(&ai, 0, sizeof(ai));
429 pai = &ai;
430 pai->ai_flags = 0;
431 pai->ai_family = PF_UNSPEC;
432 pai->ai_socktype = ANY;
433 pai->ai_protocol = ANY;
434 pai->ai_addrlen = 0;
435 pai->ai_canonname = NULL;
436 pai->ai_addr = NULL;
437 pai->ai_next = NULL;
438
439 if (hostname == NULL && servname == NULL)
440 return EAI_NONAME;
441 if (hints) {
442 /* error check for hints */
443 if (hints->ai_addrlen || hints->ai_canonname ||
444 hints->ai_addr || hints->ai_next)
445 ERR(EAI_BADHINTS); /* xxx */
446 if (hints->ai_flags & ~AI_MASK)
447 ERR(EAI_BADFLAGS);
448 switch (hints->ai_family) {
449 case PF_UNSPEC:
450 case PF_INET:
451 #ifdef INET6
452 case PF_INET6:
453 #endif
454 break;
455 default:
456 ERR(EAI_FAMILY);
457 }
458 memcpy(pai, hints, sizeof(*pai));
459
460 /*
461 * if both socktype/protocol are specified, check if they
462 * are meaningful combination.
463 */
464 if (pai->ai_socktype != ANY && pai->ai_protocol != ANY) {
465 for (ex = explore; ex->e_af >= 0; ex++) {
466 if (pai->ai_family != ex->e_af)
467 continue;
468 if (ex->e_socktype == ANY)
469 continue;
470 if (ex->e_protocol == ANY)
471 continue;
472 if (pai->ai_socktype == ex->e_socktype
473 && pai->ai_protocol != ex->e_protocol) {
474 ERR(EAI_BADHINTS);
475 }
476 }
477 }
478 }
479
480 if ((pai->ai_flags & AI_ADDRCONFIG) != 0 && addrconfig(&mask) == -1)
481 ERR(EAI_FAIL);
482
483 /*
484 * check for special cases. (1) numeric servname is disallowed if
485 * socktype/protocol are left unspecified. (2) servname is disallowed
486 * for raw and other inet{,6} sockets.
487 */
488 if (MATCH_FAMILY(pai->ai_family, PF_INET, 1)
489 #ifdef PF_INET6
490 || MATCH_FAMILY(pai->ai_family, PF_INET6, 1)
491 #endif
492 ) {
493 ai0 = *pai; /* backup *pai */
494
495 if (pai->ai_family == PF_UNSPEC) {
496 #ifdef PF_INET6
497 pai->ai_family = PF_INET6;
498 #else
499 pai->ai_family = PF_INET;
500 #endif
501 }
502 error = get_portmatch(pai, servname, &svd);
503 if (error)
504 goto bad;
505
506 *pai = ai0;
507 }
508
509 ai0 = *pai;
510
511 /* NULL hostname, or numeric hostname */
512 for (ex = explore; ex->e_af >= 0; ex++) {
513 *pai = ai0;
514
515 /* ADDRCONFIG check */
516 if ((((uint64_t)1 << ex->e_af) & mask) == 0)
517 continue;
518
519 /* PF_UNSPEC entries are prepared for DNS queries only */
520 if (ex->e_af == PF_UNSPEC)
521 continue;
522
523 if (!MATCH_FAMILY(pai->ai_family, ex->e_af, WILD_AF(ex)))
524 continue;
525 if (!MATCH(pai->ai_socktype, ex->e_socktype, WILD_SOCKTYPE(ex)))
526 continue;
527 if (!MATCH(pai->ai_protocol, ex->e_protocol, WILD_PROTOCOL(ex)))
528 continue;
529 if (pai->ai_family == PF_UNSPEC)
530 pai->ai_family = ex->e_af;
531 if (pai->ai_socktype == ANY && ex->e_socktype != ANY)
532 pai->ai_socktype = ex->e_socktype;
533 if (pai->ai_protocol == ANY && ex->e_protocol != ANY)
534 pai->ai_protocol = ex->e_protocol;
535
536 if (hostname == NULL)
537 error = explore_null(pai, servname, &cur->ai_next,
538 &svd);
539 else
540 error = explore_numeric_scope(pai, hostname, servname,
541 &cur->ai_next, &svd);
542
543 if (error)
544 goto free;
545
546 while (cur->ai_next)
547 cur = cur->ai_next;
548 }
549
550 /*
551 * XXX
552 * If numeric representation of AF1 can be interpreted as FQDN
553 * representation of AF2, we need to think again about the code below.
554 */
555 if (sentinel.ai_next)
556 goto good;
557
558 if (hostname == NULL)
559 ERR(EAI_NODATA);
560 if (pai->ai_flags & AI_NUMERICHOST)
561 ERR(EAI_NONAME);
562
563 /*
564 * hostname as alphabetical name.
565 * we would like to prefer AF_INET6 than AF_INET, so we'll make a
566 * outer loop by AFs.
567 */
568 for (ex = explore; ex->e_af >= 0; ex++) {
569 *pai = ai0;
570
571
572 /* ADDRCONFIG check */
573 /* PF_UNSPEC entries are prepared for DNS queries only */
574 if (ex->e_af != PF_UNSPEC &&
575 (((uint64_t)1 << ex->e_af) & mask) == 0)
576 continue;
577
578 /* require exact match for family field */
579 if (pai->ai_family != ex->e_af)
580 continue;
581
582 if (!MATCH(pai->ai_socktype, ex->e_socktype,
583 WILD_SOCKTYPE(ex))) {
584 continue;
585 }
586 if (!MATCH(pai->ai_protocol, ex->e_protocol,
587 WILD_PROTOCOL(ex))) {
588 continue;
589 }
590
591 if (pai->ai_socktype == ANY && ex->e_socktype != ANY)
592 pai->ai_socktype = ex->e_socktype;
593 if (pai->ai_protocol == ANY && ex->e_protocol != ANY)
594 pai->ai_protocol = ex->e_protocol;
595
596 error = explore_fqdn(pai, hostname, servname, &cur->ai_next,
597 &svd);
598
599 while (cur && cur->ai_next)
600 cur = cur->ai_next;
601 }
602
603 /* XXX */
604 if (sentinel.ai_next)
605 error = 0;
606
607 if (error)
608 goto free;
609
610 if (sentinel.ai_next) {
611 good:
612 endservent_r(&svd);
613 *res = sentinel.ai_next;
614 return SUCCESS;
615 } else
616 error = EAI_FAIL;
617 free:
618 bad:
619 endservent_r(&svd);
620 if (sentinel.ai_next)
621 freeaddrinfo(sentinel.ai_next);
622 *res = NULL;
623 return error;
624 }
625
626 /*
627 * FQDN hostname, DNS lookup
628 */
629 static int
630 explore_fqdn(const struct addrinfo *pai, const char *hostname,
631 const char *servname, struct addrinfo **res, struct servent_data *svd)
632 {
633 struct addrinfo *result;
634 struct addrinfo *cur;
635 int error = 0;
636 static const ns_dtab dtab[] = {
637 NS_FILES_CB(_files_getaddrinfo, NULL)
638 { NSSRC_DNS, _dns_getaddrinfo, NULL }, /* force -DHESIOD */
639 NS_NIS_CB(_yp_getaddrinfo, NULL)
640 NS_NULL_CB
641 };
642
643 _DIAGASSERT(pai != NULL);
644 /* hostname may be NULL */
645 /* servname may be NULL */
646 _DIAGASSERT(res != NULL);
647
648 result = NULL;
649
650 /*
651 * if the servname does not match socktype/protocol, ignore it.
652 */
653 if (get_portmatch(pai, servname, svd) != 0)
654 return 0;
655
656 switch (nsdispatch(&result, dtab, NSDB_HOSTS, "getaddrinfo",
657 default_dns_files, hostname, pai, servname)) {
658 case NS_TRYAGAIN:
659 error = EAI_AGAIN;
660 goto free;
661 case NS_UNAVAIL:
662 error = EAI_FAIL;
663 goto free;
664 case NS_NOTFOUND:
665 error = EAI_NODATA;
666 goto free;
667 case NS_SUCCESS:
668 error = 0;
669 for (cur = result; cur; cur = cur->ai_next) {
670 /* Check for already filled port. */
671 if (*getport(cur))
672 continue;
673 GET_PORT(cur, servname, svd);
674 /* canonname should be filled already */
675 }
676 break;
677 }
678
679 *res = result;
680
681 return 0;
682
683 free:
684 if (result)
685 freeaddrinfo(result);
686 return error;
687 }
688
689 /*
690 * hostname == NULL.
691 * passive socket -> anyaddr (0.0.0.0 or ::)
692 * non-passive socket -> localhost (127.0.0.1 or ::1)
693 */
694 static int
695 explore_null(const struct addrinfo *pai, const char *servname,
696 struct addrinfo **res, struct servent_data *svd)
697 {
698 int s;
699 const struct afd *afd;
700 struct addrinfo *cur;
701 struct addrinfo sentinel;
702 int error;
703
704 _DIAGASSERT(pai != NULL);
705 /* servname may be NULL */
706 _DIAGASSERT(res != NULL);
707
708 *res = NULL;
709 sentinel.ai_next = NULL;
710 cur = &sentinel;
711
712 /*
713 * filter out AFs that are not supported by the kernel
714 * XXX errno?
715 */
716 s = socket(pai->ai_family, SOCK_DGRAM, 0);
717 if (s < 0) {
718 if (errno != EMFILE)
719 return 0;
720 } else
721 close(s);
722
723 /*
724 * if the servname does not match socktype/protocol, ignore it.
725 */
726 if (get_portmatch(pai, servname, svd) != 0)
727 return 0;
728
729 afd = find_afd(pai->ai_family);
730 if (afd == NULL)
731 return 0;
732
733 if (pai->ai_flags & AI_PASSIVE) {
734 GET_AI(cur->ai_next, afd, afd->a_addrany);
735 /* xxx meaningless?
736 * GET_CANONNAME(cur->ai_next, "anyaddr");
737 */
738 GET_PORT(cur->ai_next, servname, svd);
739 } else {
740 GET_AI(cur->ai_next, afd, afd->a_loopback);
741 /* xxx meaningless?
742 * GET_CANONNAME(cur->ai_next, "localhost");
743 */
744 GET_PORT(cur->ai_next, servname, svd);
745 }
746 cur = cur->ai_next;
747
748 *res = sentinel.ai_next;
749 return 0;
750
751 free:
752 if (sentinel.ai_next)
753 freeaddrinfo(sentinel.ai_next);
754 return error;
755 }
756
757 /*
758 * numeric hostname
759 */
760 static int
761 explore_numeric(const struct addrinfo *pai, const char *hostname,
762 const char *servname, struct addrinfo **res, const char *canonname,
763 struct servent_data *svd)
764 {
765 const struct afd *afd;
766 struct addrinfo *cur;
767 struct addrinfo sentinel;
768 int error;
769 char pton[PTON_MAX];
770
771 _DIAGASSERT(pai != NULL);
772 /* hostname may be NULL */
773 /* servname may be NULL */
774 _DIAGASSERT(res != NULL);
775
776 *res = NULL;
777 sentinel.ai_next = NULL;
778 cur = &sentinel;
779
780 /*
781 * if the servname does not match socktype/protocol, ignore it.
782 */
783 if (get_portmatch(pai, servname, svd) != 0)
784 return 0;
785
786 afd = find_afd(pai->ai_family);
787 if (afd == NULL)
788 return 0;
789
790 switch (afd->a_af) {
791 #if 0 /*X/Open spec*/
792 case AF_INET:
793 if (inet_aton(hostname, (struct in_addr *)pton) == 1) {
794 if (pai->ai_family == afd->a_af ||
795 pai->ai_family == PF_UNSPEC /*?*/) {
796 GET_AI(cur->ai_next, afd, pton);
797 GET_PORT(cur->ai_next, servname, svd);
798 if ((pai->ai_flags & AI_CANONNAME)) {
799 /*
800 * Set the numeric address itself as
801 * the canonical name, based on a
802 * clarification in rfc2553bis-03.
803 */
804 GET_CANONNAME(cur->ai_next, canonname);
805 }
806 while (cur && cur->ai_next)
807 cur = cur->ai_next;
808 } else
809 ERR(EAI_FAMILY); /*xxx*/
810 }
811 break;
812 #endif
813 default:
814 if (inet_pton(afd->a_af, hostname, pton) == 1) {
815 if (pai->ai_family == afd->a_af ||
816 pai->ai_family == PF_UNSPEC /*?*/) {
817 GET_AI(cur->ai_next, afd, pton);
818 GET_PORT(cur->ai_next, servname, svd);
819 if ((pai->ai_flags & AI_CANONNAME)) {
820 /*
821 * Set the numeric address itself as
822 * the canonical name, based on a
823 * clarification in rfc2553bis-03.
824 */
825 GET_CANONNAME(cur->ai_next, canonname);
826 }
827 while (cur->ai_next)
828 cur = cur->ai_next;
829 } else
830 ERR(EAI_FAMILY); /*xxx*/
831 }
832 break;
833 }
834
835 *res = sentinel.ai_next;
836 return 0;
837
838 free:
839 bad:
840 if (sentinel.ai_next)
841 freeaddrinfo(sentinel.ai_next);
842 return error;
843 }
844
845 /*
846 * numeric hostname with scope
847 */
848 static int
849 explore_numeric_scope(const struct addrinfo *pai, const char *hostname,
850 const char *servname, struct addrinfo **res, struct servent_data *svd)
851 {
852 #if !defined(SCOPE_DELIMITER) || !defined(INET6)
853 return explore_numeric(pai, hostname, servname, res, hostname, svd);
854 #else
855 const struct afd *afd;
856 struct addrinfo *cur;
857 int error;
858 char *cp, *hostname2 = NULL, *scope, *addr;
859 struct sockaddr_in6 *sin6;
860
861 _DIAGASSERT(pai != NULL);
862 /* hostname may be NULL */
863 /* servname may be NULL */
864 _DIAGASSERT(res != NULL);
865
866 /*
867 * if the servname does not match socktype/protocol, ignore it.
868 */
869 if (get_portmatch(pai, servname, svd) != 0)
870 return 0;
871
872 afd = find_afd(pai->ai_family);
873 if (afd == NULL)
874 return 0;
875
876 if (!afd->a_scoped)
877 return explore_numeric(pai, hostname, servname, res, hostname,
878 svd);
879
880 cp = strchr(hostname, SCOPE_DELIMITER);
881 if (cp == NULL)
882 return explore_numeric(pai, hostname, servname, res, hostname,
883 svd);
884
885 /*
886 * Handle special case of <scoped_address><delimiter><scope id>
887 */
888 hostname2 = strdup(hostname);
889 if (hostname2 == NULL)
890 return EAI_MEMORY;
891 /* terminate at the delimiter */
892 hostname2[cp - hostname] = '\0';
893 addr = hostname2;
894 scope = cp + 1;
895
896 error = explore_numeric(pai, addr, servname, res, hostname, svd);
897 if (error == 0) {
898 u_int32_t scopeid;
899
900 for (cur = *res; cur; cur = cur->ai_next) {
901 if (cur->ai_family != AF_INET6)
902 continue;
903 sin6 = (struct sockaddr_in6 *)(void *)cur->ai_addr;
904 if (ip6_str2scopeid(scope, sin6, &scopeid) == -1) {
905 free(hostname2);
906 return(EAI_NODATA); /* XXX: is return OK? */
907 }
908 sin6->sin6_scope_id = scopeid;
909 }
910 }
911
912 free(hostname2);
913
914 return error;
915 #endif
916 }
917
918 static int
919 get_canonname(const struct addrinfo *pai, struct addrinfo *ai, const char *str)
920 {
921
922 _DIAGASSERT(pai != NULL);
923 _DIAGASSERT(ai != NULL);
924 _DIAGASSERT(str != NULL);
925
926 if ((pai->ai_flags & AI_CANONNAME) != 0) {
927 ai->ai_canonname = strdup(str);
928 if (ai->ai_canonname == NULL)
929 return EAI_MEMORY;
930 }
931 return 0;
932 }
933
934 struct addrinfo *
935 allocaddrinfo(socklen_t addrlen)
936 {
937 struct addrinfo *ai;
938
939 ai = calloc(sizeof(struct addrinfo) + addrlen, 1);
940 if (ai) {
941 ai->ai_addr = (void *)(ai+1);
942 ai->ai_addrlen = ai->ai_addr->sa_len = addrlen;
943 }
944
945 return ai;
946 }
947
948 static struct addrinfo *
949 get_ai(const struct addrinfo *pai, const struct afd *afd, const char *addr)
950 {
951 char *p;
952 struct addrinfo *ai;
953 struct sockaddr *save;
954
955 _DIAGASSERT(pai != NULL);
956 _DIAGASSERT(afd != NULL);
957 _DIAGASSERT(addr != NULL);
958
959 ai = allocaddrinfo((socklen_t)afd->a_socklen);
960 if (ai == NULL)
961 return NULL;
962
963 save = ai->ai_addr;
964 memcpy(ai, pai, sizeof(struct addrinfo));
965
966 /* since we just overwrote all of ai, we have
967 to restore ai_addr and ai_addrlen */
968 ai->ai_addr = save;
969 ai->ai_addrlen = (socklen_t)afd->a_socklen;
970
971 ai->ai_addr->sa_family = ai->ai_family = afd->a_af;
972 p = (char *)(void *)(ai->ai_addr);
973 memcpy(p + afd->a_off, addr, (size_t)afd->a_addrlen);
974 return ai;
975 }
976
977 static int
978 get_portmatch(const struct addrinfo *ai, const char *servname,
979 struct servent_data *svd)
980 {
981
982 _DIAGASSERT(ai != NULL);
983 /* servname may be NULL */
984
985 return get_port(ai, servname, 1, svd);
986 }
987
988 static int
989 get_port(const struct addrinfo *ai, const char *servname, int matchonly,
990 struct servent_data *svd)
991 {
992 const char *proto;
993 struct servent *sp;
994 int port;
995 int allownumeric;
996
997 _DIAGASSERT(ai != NULL);
998 /* servname may be NULL */
999
1000 if (servname == NULL)
1001 return 0;
1002 switch (ai->ai_family) {
1003 case AF_INET:
1004 #ifdef AF_INET6
1005 case AF_INET6:
1006 #endif
1007 break;
1008 default:
1009 return 0;
1010 }
1011
1012 switch (ai->ai_socktype) {
1013 case SOCK_RAW:
1014 return EAI_SERVICE;
1015 case SOCK_DGRAM:
1016 case SOCK_STREAM:
1017 allownumeric = 1;
1018 break;
1019 case ANY:
1020 /*
1021 * This was 0. It is now 1 so that queries specifying
1022 * a NULL hint, or hint without socktype (but, hopefully,
1023 * with protocol) and numeric address actually work.
1024 */
1025 allownumeric = 1;
1026 break;
1027 default:
1028 return EAI_SOCKTYPE;
1029 }
1030
1031 port = str2number(servname);
1032 if (port >= 0) {
1033 if (!allownumeric)
1034 return EAI_SERVICE;
1035 if (port < 0 || port > 65535)
1036 return EAI_SERVICE;
1037 port = htons(port);
1038 } else {
1039 struct servent sv;
1040 if (ai->ai_flags & AI_NUMERICSERV)
1041 return EAI_NONAME;
1042
1043 switch (ai->ai_socktype) {
1044 case SOCK_DGRAM:
1045 proto = "udp";
1046 break;
1047 case SOCK_STREAM:
1048 proto = "tcp";
1049 break;
1050 default:
1051 proto = NULL;
1052 break;
1053 }
1054
1055 sp = getservbyname_r(servname, proto, &sv, svd);
1056 if (sp == NULL)
1057 return EAI_SERVICE;
1058 port = sp->s_port;
1059 }
1060
1061 if (!matchonly)
1062 *getport(__UNCONST(ai)) = port;
1063 return 0;
1064 }
1065
1066 static const struct afd *
1067 find_afd(int af)
1068 {
1069 const struct afd *afd;
1070
1071 if (af == PF_UNSPEC)
1072 return NULL;
1073 for (afd = afdl; afd->a_af; afd++) {
1074 if (afd->a_af == af)
1075 return afd;
1076 }
1077 return NULL;
1078 }
1079
1080 /*
1081 * AI_ADDRCONFIG check: Build a mask containing a bit set for each address
1082 * family configured in the system.
1083 *
1084 */
1085 static int
1086 addrconfig(uint64_t *mask)
1087 {
1088 struct ifaddrs *ifaddrs, *ifa;
1089
1090 if (getifaddrs(&ifaddrs) == -1)
1091 return -1;
1092
1093 *mask = 0;
1094 for (ifa = ifaddrs; ifa != NULL; ifa = ifa->ifa_next)
1095 if (ifa->ifa_addr && (ifa->ifa_flags & IFF_UP)) {
1096 _DIAGASSERT(ifa->ifa_addr->sa_family < 64);
1097 *mask |= (uint64_t)1 << ifa->ifa_addr->sa_family;
1098 }
1099
1100 freeifaddrs(ifaddrs);
1101 return 0;
1102 }
1103
1104 #ifdef INET6
1105 /* convert a string to a scope identifier. XXX: IPv6 specific */
1106 static int
1107 ip6_str2scopeid(char *scope, struct sockaddr_in6 *sin6, u_int32_t *scopeid)
1108 {
1109 u_long lscopeid;
1110 struct in6_addr *a6;
1111 char *ep;
1112
1113 _DIAGASSERT(scope != NULL);
1114 _DIAGASSERT(sin6 != NULL);
1115 _DIAGASSERT(scopeid != NULL);
1116
1117 a6 = &sin6->sin6_addr;
1118
1119 /* empty scopeid portion is invalid */
1120 if (*scope == '\0')
1121 return -1;
1122
1123 if (IN6_IS_ADDR_LINKLOCAL(a6) || IN6_IS_ADDR_MC_LINKLOCAL(a6)) {
1124 /*
1125 * We currently assume a one-to-one mapping between links
1126 * and interfaces, so we simply use interface indices for
1127 * like-local scopes.
1128 */
1129 *scopeid = if_nametoindex(scope);
1130 if (*scopeid == 0)
1131 goto trynumeric;
1132 return 0;
1133 }
1134
1135 /* still unclear about literal, allow numeric only - placeholder */
1136 if (IN6_IS_ADDR_SITELOCAL(a6) || IN6_IS_ADDR_MC_SITELOCAL(a6))
1137 goto trynumeric;
1138 if (IN6_IS_ADDR_MC_ORGLOCAL(a6))
1139 goto trynumeric;
1140 else
1141 goto trynumeric; /* global */
1142
1143 /* try to convert to a numeric id as a last resort */
1144 trynumeric:
1145 errno = 0;
1146 lscopeid = strtoul(scope, &ep, 10);
1147 *scopeid = (u_int32_t)(lscopeid & 0xffffffffUL);
1148 if (errno == 0 && ep && *ep == '\0' && *scopeid == lscopeid)
1149 return 0;
1150 else
1151 return -1;
1152 }
1153 #endif
1154
1155 /* code duplicate with gethnamaddr.c */
1156
1157 static const char AskedForGot[] =
1158 "gethostby*.getanswer: asked for \"%s\", got \"%s\"";
1159
1160 static struct addrinfo *
1161 getanswer(const querybuf *answer, int anslen, const char *qname, int qtype,
1162 const struct addrinfo *pai)
1163 {
1164 struct addrinfo sentinel, *cur;
1165 struct addrinfo ai, *aip;
1166 const struct afd *afd;
1167 char *canonname;
1168 const HEADER *hp;
1169 const u_char *cp;
1170 int n;
1171 const u_char *eom;
1172 char *bp, *ep;
1173 int type, class, ancount, qdcount;
1174 int haveanswer, had_error;
1175 char tbuf[MAXDNAME];
1176 int (*name_ok) (const char *);
1177 char hostbuf[8*1024];
1178 int port, pri, weight;
1179 struct srvinfo *srvlist, *srv, *csrv;
1180
1181 _DIAGASSERT(answer != NULL);
1182 _DIAGASSERT(qname != NULL);
1183 _DIAGASSERT(pai != NULL);
1184
1185 memset(&sentinel, 0, sizeof(sentinel));
1186 cur = &sentinel;
1187
1188 canonname = NULL;
1189 eom = answer->buf + anslen;
1190 switch (qtype) {
1191 case T_A:
1192 case T_AAAA:
1193 case T_ANY: /*use T_ANY only for T_A/T_AAAA lookup*/
1194 name_ok = res_hnok;
1195 break;
1196 case T_SRV:
1197 name_ok = gai_srvok;
1198 break;
1199 default:
1200 return NULL; /* XXX should be abort(); */
1201 }
1202 /*
1203 * find first satisfactory answer
1204 */
1205 hp = &answer->hdr;
1206 ancount = ntohs(hp->ancount);
1207 qdcount = ntohs(hp->qdcount);
1208 bp = hostbuf;
1209 ep = hostbuf + sizeof hostbuf;
1210 cp = answer->buf + HFIXEDSZ;
1211 if (qdcount != 1) {
1212 h_errno = NO_RECOVERY;
1213 return (NULL);
1214 }
1215 n = dn_expand(answer->buf, eom, cp, bp, (int)(ep - bp));
1216 if ((n < 0) || !(*name_ok)(bp)) {
1217 h_errno = NO_RECOVERY;
1218 return (NULL);
1219 }
1220 cp += n + QFIXEDSZ;
1221 if (qtype == T_A || qtype == T_AAAA || qtype == T_ANY) {
1222 /* res_send() has already verified that the query name is the
1223 * same as the one we sent; this just gets the expanded name
1224 * (i.e., with the succeeding search-domain tacked on).
1225 */
1226 n = (int)strlen(bp) + 1; /* for the \0 */
1227 if (n >= MAXHOSTNAMELEN) {
1228 h_errno = NO_RECOVERY;
1229 return (NULL);
1230 }
1231 canonname = bp;
1232 bp += n;
1233 /* The qname can be abbreviated, but h_name is now absolute. */
1234 qname = canonname;
1235 }
1236 haveanswer = 0;
1237 had_error = 0;
1238 srvlist = NULL;
1239 while (ancount-- > 0 && cp < eom && !had_error) {
1240 n = dn_expand(answer->buf, eom, cp, bp, (int)(ep - bp));
1241 if ((n < 0) || !(*name_ok)(bp)) {
1242 had_error++;
1243 continue;
1244 }
1245 cp += n; /* name */
1246 type = _getshort(cp);
1247 cp += INT16SZ; /* type */
1248 class = _getshort(cp);
1249 cp += INT16SZ + INT32SZ; /* class, TTL */
1250 n = _getshort(cp);
1251 cp += INT16SZ; /* len */
1252 if (class != C_IN) {
1253 /* XXX - debug? syslog? */
1254 cp += n;
1255 continue; /* XXX - had_error++ ? */
1256 }
1257 if ((qtype == T_A || qtype == T_AAAA || qtype == T_ANY) &&
1258 type == T_CNAME) {
1259 n = dn_expand(answer->buf, eom, cp, tbuf, (int)sizeof tbuf);
1260 if ((n < 0) || !(*name_ok)(tbuf)) {
1261 had_error++;
1262 continue;
1263 }
1264 cp += n;
1265 /* Get canonical name. */
1266 n = (int)strlen(tbuf) + 1; /* for the \0 */
1267 if (n > ep - bp || n >= MAXHOSTNAMELEN) {
1268 had_error++;
1269 continue;
1270 }
1271 strlcpy(bp, tbuf, (size_t)(ep - bp));
1272 canonname = bp;
1273 bp += n;
1274 continue;
1275 }
1276 if (qtype == T_ANY) {
1277 if (!(type == T_A || type == T_AAAA)) {
1278 cp += n;
1279 continue;
1280 }
1281 } else if (type != qtype) {
1282 if (type != T_KEY && type != T_SIG) {
1283 struct syslog_data sd = SYSLOG_DATA_INIT;
1284 syslog_r(LOG_NOTICE|LOG_AUTH, &sd,
1285 "gethostby*.getanswer: asked for \"%s %s %s\", got type \"%s\"",
1286 qname, p_class(C_IN), p_type(qtype),
1287 p_type(type));
1288 }
1289 cp += n;
1290 continue; /* XXX - had_error++ ? */
1291 }
1292 switch (type) {
1293 case T_A:
1294 case T_AAAA:
1295 if (strcasecmp(canonname, bp) != 0) {
1296 struct syslog_data sd = SYSLOG_DATA_INIT;
1297 syslog_r(LOG_NOTICE|LOG_AUTH, &sd,
1298 AskedForGot, canonname, bp);
1299 cp += n;
1300 continue; /* XXX - had_error++ ? */
1301 }
1302 if (type == T_A && n != INADDRSZ) {
1303 cp += n;
1304 continue;
1305 }
1306 if (type == T_AAAA && n != IN6ADDRSZ) {
1307 cp += n;
1308 continue;
1309 }
1310 if (type == T_AAAA) {
1311 struct in6_addr in6;
1312 memcpy(&in6, cp, IN6ADDRSZ);
1313 if (IN6_IS_ADDR_V4MAPPED(&in6)) {
1314 cp += n;
1315 continue;
1316 }
1317 }
1318 if (!haveanswer) {
1319 int nn;
1320
1321 canonname = bp;
1322 nn = (int)strlen(bp) + 1; /* for the \0 */
1323 bp += nn;
1324 }
1325
1326 /* don't overwrite pai */
1327 ai = *pai;
1328 ai.ai_family = (type == T_A) ? AF_INET : AF_INET6;
1329 afd = find_afd(ai.ai_family);
1330 if (afd == NULL) {
1331 cp += n;
1332 continue;
1333 }
1334 cur->ai_next = get_ai(&ai, afd, (const char *)cp);
1335 if (cur->ai_next == NULL)
1336 had_error++;
1337 while (cur && cur->ai_next)
1338 cur = cur->ai_next;
1339 cp += n;
1340 break;
1341 case T_SRV:
1342 /* Add to SRV list. Insertion sort on priority. */
1343 pri = _getshort(cp);
1344 cp += INT16SZ;
1345 weight = _getshort(cp);
1346 cp += INT16SZ;
1347 port = _getshort(cp);
1348 cp += INT16SZ;
1349 n = dn_expand(answer->buf, eom, cp, tbuf,
1350 (int)sizeof(tbuf));
1351 if ((n < 0) || !res_hnok(tbuf)) {
1352 had_error++;
1353 continue;
1354 }
1355 cp += n;
1356 if (strlen(tbuf) + 1 >= MAXDNAME) {
1357 had_error++;
1358 continue;
1359 }
1360 srv = malloc(sizeof(*srv));
1361 if (!srv) {
1362 had_error++;
1363 continue;
1364 }
1365 strlcpy(srv->name, tbuf, sizeof(srv->name));
1366 srv->pri = pri;
1367 srv->weight = weight;
1368 srv->port = port;
1369 /* Weight 0 is sorted before other weights. */
1370 if (!srvlist
1371 || srv->pri < srvlist->pri
1372 || (srv->pri == srvlist->pri &&
1373 (!srv->weight || srvlist->weight))) {
1374 srv->next = srvlist;
1375 srvlist = srv;
1376 } else {
1377 for (csrv = srvlist;
1378 csrv->next && csrv->next->pri <= srv->pri;
1379 csrv = csrv->next) {
1380 if (csrv->next->pri == srv->pri
1381 && (!srv->weight ||
1382 csrv->next->weight))
1383 break;
1384 }
1385 srv->next = csrv->next;
1386 csrv->next = srv;
1387 }
1388 continue; /* Don't add to haveanswer yet. */
1389 default:
1390 abort();
1391 }
1392 if (!had_error)
1393 haveanswer++;
1394 }
1395
1396 if (srvlist) {
1397 res_state res;
1398 /*
1399 * Check for explicit rejection.
1400 */
1401 if (!srvlist->next && !srvlist->name[0]) {
1402 free(srvlist);
1403 h_errno = HOST_NOT_FOUND;
1404 return NULL;
1405 }
1406 res = __res_get_state();
1407 if (res == NULL) {
1408 while (srvlist != NULL) {
1409 srv = srvlist;
1410 srvlist = srvlist->next;
1411 free(srv);
1412 }
1413 h_errno = NETDB_INTERNAL;
1414 return NULL;
1415 }
1416
1417 while (srvlist) {
1418 struct res_target q, q2;
1419
1420 srv = srvlist;
1421 srvlist = srvlist->next;
1422
1423 /*
1424 * Since res_* doesn't give the additional
1425 * section, we always look up.
1426 */
1427 memset(&q, 0, sizeof(q));
1428 memset(&q2, 0, sizeof(q2));
1429
1430 q.name = srv->name;
1431 q.qclass = C_IN;
1432 q.qtype = T_AAAA;
1433 q.next = &q2;
1434 q2.name = srv->name;
1435 q2.qclass = C_IN;
1436 q2.qtype = T_A;
1437
1438 aip = _dns_query(&q, pai, res, 0);
1439
1440 if (aip != NULL) {
1441 cur->ai_next = aip;
1442 while (cur && cur->ai_next) {
1443 cur = cur->ai_next;
1444 *getport(cur) = htons(srv->port);
1445 haveanswer++;
1446 }
1447 }
1448 free(srv);
1449 }
1450 __res_put_state(res);
1451 }
1452 if (haveanswer) {
1453 if (!sentinel.ai_next->ai_canonname)
1454 (void)get_canonname(pai, sentinel.ai_next,
1455 canonname ? canonname : qname);
1456 h_errno = NETDB_SUCCESS;
1457 return sentinel.ai_next;
1458 }
1459
1460 h_errno = NO_RECOVERY;
1461 return NULL;
1462 }
1463
1464 #define SORTEDADDR(p) (((struct sockaddr_in *)(void *)(p->ai_next->ai_addr))->sin_addr.s_addr)
1465 #define SORTMATCH(p, s) ((SORTEDADDR(p) & (s).mask) == (s).addr.s_addr)
1466
1467 static void
1468 aisort(struct addrinfo *s, res_state res)
1469 {
1470 struct addrinfo head, *t, *p;
1471 int i;
1472
1473 head.ai_next = NULL;
1474 t = &head;
1475
1476 for (i = 0; i < res->nsort; i++) {
1477 p = s;
1478 while (p->ai_next) {
1479 if ((p->ai_next->ai_family != AF_INET)
1480 || SORTMATCH(p, res->sort_list[i])) {
1481 t->ai_next = p->ai_next;
1482 t = t->ai_next;
1483 p->ai_next = p->ai_next->ai_next;
1484 } else {
1485 p = p->ai_next;
1486 }
1487 }
1488 }
1489
1490 /* add rest of list and reset s to the new list*/
1491 t->ai_next = s->ai_next;
1492 s->ai_next = head.ai_next;
1493 }
1494
1495 static struct addrinfo *
1496 _dns_query(struct res_target *q, const struct addrinfo *pai,
1497 res_state res, int dosearch)
1498 {
1499 struct res_target *q2 = q->next;
1500 querybuf *buf, *buf2;
1501 struct addrinfo sentinel, *cur, *ai;
1502
1503 #ifdef DNS_DEBUG
1504 struct res_target *iter;
1505 for (iter = q; iter; iter = iter->next)
1506 printf("Query type %d for %s\n", iter->qtype, iter->name);
1507 #endif
1508
1509 buf = malloc(sizeof(*buf));
1510 if (buf == NULL) {
1511 h_errno = NETDB_INTERNAL;
1512 return NULL;
1513 }
1514 buf2 = malloc(sizeof(*buf2));
1515 if (buf2 == NULL) {
1516 free(buf);
1517 h_errno = NETDB_INTERNAL;
1518 return NULL;
1519 }
1520
1521 memset(&sentinel, 0, sizeof(sentinel));
1522 cur = &sentinel;
1523
1524 q->answer = buf->buf;
1525 q->anslen = sizeof(buf->buf);
1526 if (q2) {
1527 q2->answer = buf2->buf;
1528 q2->anslen = sizeof(buf2->buf);
1529 }
1530
1531 if (dosearch) {
1532 if (res_searchN(q->name, q, res) < 0)
1533 goto out;
1534 } else {
1535 if (res_queryN(q->name, q, res) < 0)
1536 goto out;
1537 }
1538
1539 ai = getanswer(buf, q->n, q->name, q->qtype, pai);
1540 if (ai) {
1541 cur->ai_next = ai;
1542 while (cur && cur->ai_next)
1543 cur = cur->ai_next;
1544 }
1545 if (q2) {
1546 ai = getanswer(buf2, q2->n, q2->name, q2->qtype, pai);
1547 if (ai)
1548 cur->ai_next = ai;
1549 }
1550 free(buf);
1551 free(buf2);
1552 return sentinel.ai_next;
1553 out:
1554 free(buf);
1555 free(buf2);
1556 return NULL;
1557 }
1558
1559 /*ARGSUSED*/
1560 static struct addrinfo *
1561 _dns_srv_lookup(const char *name, const char *servname,
1562 const struct addrinfo *pai)
1563 {
1564 static const char * const srvprotos[] = { "tcp", "udp" };
1565 static const int srvnottype[] = { SOCK_DGRAM, SOCK_STREAM };
1566 static const int nsrvprotos = 2;
1567 struct addrinfo sentinel, *cur, *ai;
1568 struct servent *serv, sv;
1569 struct servent_data svd;
1570 struct res_target q;
1571 res_state res;
1572 char *tname;
1573 int i;
1574
1575 res = __res_get_state();
1576 if (res == NULL)
1577 return NULL;
1578
1579 memset(&svd, 0, sizeof(svd));
1580 memset(&sentinel, 0, sizeof(sentinel));
1581 cur = &sentinel;
1582
1583 /*
1584 * Iterate over supported SRV protocols.
1585 * (currently UDP and TCP only)
1586 */
1587 for (i = 0; i < nsrvprotos; i++) {
1588 /*
1589 * Check that the caller didn't specify a hint
1590 * which precludes this protocol.
1591 */
1592 if (pai->ai_socktype == srvnottype[i])
1593 continue;
1594 /*
1595 * If the caller specified a port,
1596 * then lookup the database for the
1597 * official service name.
1598 */
1599 serv = getservbyname_r(servname, srvprotos[i], &sv, &svd);
1600 if (serv == NULL)
1601 continue;
1602
1603 /*
1604 * Construct service DNS name.
1605 */
1606 if (asprintf(&tname, "_%s._%s.%s", serv->s_name, serv->s_proto,
1607 name) < 0)
1608 continue;
1609
1610 memset(&q, 0, sizeof(q));
1611 q.name = tname;
1612 q.qclass = C_IN;
1613 q.qtype = T_SRV;
1614
1615 /*
1616 * Do SRV query.
1617 */
1618 ai = _dns_query(&q, pai, res, 1);
1619 if (ai) {
1620 cur->ai_next = ai;
1621 while (cur && cur->ai_next)
1622 cur = cur->ai_next;
1623 }
1624 free(tname);
1625 }
1626
1627 if (res->nsort)
1628 aisort(&sentinel, res);
1629
1630 __res_put_state(res);
1631
1632 return sentinel.ai_next;
1633 }
1634
1635 /*ARGSUSED*/
1636 static struct addrinfo *
1637 _dns_host_lookup(const char *name, const struct addrinfo *pai)
1638 {
1639 struct res_target q, q2;
1640 struct addrinfo sentinel, *ai;
1641 res_state res;
1642
1643 res = __res_get_state();
1644 if (res == NULL)
1645 return NULL;
1646
1647 memset(&q, 0, sizeof(q2));
1648 memset(&q2, 0, sizeof(q2));
1649
1650 switch (pai->ai_family) {
1651 case AF_UNSPEC:
1652 /* prefer IPv6 */
1653 q.name = name;
1654 q.qclass = C_IN;
1655 q.qtype = T_AAAA;
1656 q.next = &q2;
1657 q2.name = name;
1658 q2.qclass = C_IN;
1659 q2.qtype = T_A;
1660 break;
1661 case AF_INET:
1662 q.name = name;
1663 q.qclass = C_IN;
1664 q.qtype = T_A;
1665 break;
1666 case AF_INET6:
1667 q.name = name;
1668 q.qclass = C_IN;
1669 q.qtype = T_AAAA;
1670 break;
1671 default:
1672 __res_put_state(res);
1673 h_errno = NETDB_INTERNAL;
1674 return NULL;
1675 }
1676
1677 ai = _dns_query(&q, pai, res, 1);
1678
1679 memset(&sentinel, 0, sizeof(sentinel));
1680 sentinel.ai_next = ai;
1681
1682 if (ai != NULL && res->nsort)
1683 aisort(&sentinel, res);
1684
1685 __res_put_state(res);
1686
1687 return sentinel.ai_next;
1688 }
1689
1690 /*ARGSUSED*/
1691 static int
1692 _dns_getaddrinfo(void *rv, void *cb_data, va_list ap)
1693 {
1694 struct addrinfo *ai = NULL;
1695 const char *name, *servname;
1696 const struct addrinfo *pai;
1697
1698 name = va_arg(ap, char *);
1699 pai = va_arg(ap, const struct addrinfo *);
1700 servname = va_arg(ap, char *);
1701
1702 /*
1703 * Try doing SRV lookup on service first.
1704 */
1705 if (servname
1706 #ifdef AI_SRV
1707 && (pai->ai_flags & AI_SRV)
1708 #endif
1709 && !(pai->ai_flags & AI_NUMERICSERV)
1710 && str2number(servname) == -1) {
1711
1712 #ifdef DNS_DEBUG
1713 printf("%s: try SRV lookup\n", __func__);
1714 #endif
1715 ai = _dns_srv_lookup(name, servname, pai);
1716 }
1717
1718 /*
1719 * Do lookup on name.
1720 */
1721 if (ai == NULL) {
1722
1723 #ifdef DNS_DEBUG
1724 printf("%s: try HOST lookup\n", __func__);
1725 #endif
1726 ai = _dns_host_lookup(name, pai);
1727
1728 if (ai == NULL) {
1729 switch (h_errno) {
1730 case HOST_NOT_FOUND:
1731 return NS_NOTFOUND;
1732 case TRY_AGAIN:
1733 return NS_TRYAGAIN;
1734 default:
1735 return NS_UNAVAIL;
1736 }
1737 }
1738 }
1739
1740 *((struct addrinfo **)rv) = ai;
1741 return NS_SUCCESS;
1742 }
1743
1744 static void
1745 _sethtent(FILE **hostf)
1746 {
1747
1748 if (!*hostf)
1749 *hostf = fopen(_PATH_HOSTS, "re");
1750 else
1751 rewind(*hostf);
1752 }
1753
1754 static void
1755 _endhtent(FILE **hostf)
1756 {
1757
1758 if (*hostf) {
1759 (void) fclose(*hostf);
1760 *hostf = NULL;
1761 }
1762 }
1763
1764 static struct addrinfo *
1765 _gethtent(FILE **hostf, const char *name, const struct addrinfo *pai)
1766 {
1767 char *p;
1768 char *cp, *tname, *cname;
1769 struct addrinfo hints, *res0, *res;
1770 int error;
1771 const char *addr;
1772 char hostbuf[8*1024];
1773
1774 _DIAGASSERT(name != NULL);
1775 _DIAGASSERT(pai != NULL);
1776
1777 if (!*hostf && !(*hostf = fopen(_PATH_HOSTS, "re")))
1778 return (NULL);
1779 again:
1780 if (!(p = fgets(hostbuf, (int)sizeof hostbuf, *hostf)))
1781 return (NULL);
1782 if (*p == '#')
1783 goto again;
1784 if (!(cp = strpbrk(p, "#\n")))
1785 goto again;
1786 *cp = '\0';
1787 if (!(cp = strpbrk(p, " \t")))
1788 goto again;
1789 *cp++ = '\0';
1790 addr = p;
1791 /* if this is not something we're looking for, skip it. */
1792 cname = NULL;
1793 while (cp && *cp) {
1794 if (*cp == ' ' || *cp == '\t') {
1795 cp++;
1796 continue;
1797 }
1798 if (!cname)
1799 cname = cp;
1800 tname = cp;
1801 if ((cp = strpbrk(cp, " \t")) != NULL)
1802 *cp++ = '\0';
1803 if (strcasecmp(name, tname) == 0)
1804 goto found;
1805 }
1806 goto again;
1807
1808 found:
1809 hints = *pai;
1810 hints.ai_flags = AI_NUMERICHOST;
1811 error = getaddrinfo(addr, NULL, &hints, &res0);
1812 if (error)
1813 goto again;
1814 for (res = res0; res; res = res->ai_next) {
1815 /* cover it up */
1816 res->ai_flags = pai->ai_flags;
1817
1818 if (pai->ai_flags & AI_CANONNAME) {
1819 if (get_canonname(pai, res, cname) != 0) {
1820 freeaddrinfo(res0);
1821 goto again;
1822 }
1823 }
1824 }
1825 return res0;
1826 }
1827
1828 /*ARGSUSED*/
1829 static int
1830 _files_getaddrinfo(void *rv, void *cb_data, va_list ap)
1831 {
1832 const char *name;
1833 const struct addrinfo *pai;
1834 struct addrinfo sentinel, *cur;
1835 struct addrinfo *p;
1836 #ifndef _REENTRANT
1837 static
1838 #endif
1839 FILE *hostf = NULL;
1840
1841 name = va_arg(ap, char *);
1842 pai = va_arg(ap, const struct addrinfo *);
1843
1844 memset(&sentinel, 0, sizeof(sentinel));
1845 cur = &sentinel;
1846
1847 _sethtent(&hostf);
1848 while ((p = _gethtent(&hostf, name, pai)) != NULL) {
1849 cur->ai_next = p;
1850 while (cur && cur->ai_next)
1851 cur = cur->ai_next;
1852 }
1853 _endhtent(&hostf);
1854
1855 *((struct addrinfo **)rv) = sentinel.ai_next;
1856 if (sentinel.ai_next == NULL)
1857 return NS_NOTFOUND;
1858 return NS_SUCCESS;
1859 }
1860
1861 #ifdef YP
1862 /*ARGSUSED*/
1863 static struct addrinfo *
1864 _yphostent(char *line, const struct addrinfo *pai)
1865 {
1866 struct addrinfo sentinel, *cur;
1867 struct addrinfo hints, *res, *res0;
1868 int error;
1869 char *p;
1870 const char *addr, *canonname;
1871 char *nextline;
1872 char *cp;
1873
1874 _DIAGASSERT(line != NULL);
1875 _DIAGASSERT(pai != NULL);
1876
1877 p = line;
1878 addr = canonname = NULL;
1879
1880 memset(&sentinel, 0, sizeof(sentinel));
1881 cur = &sentinel;
1882
1883 nextline:
1884 /* terminate line */
1885 cp = strchr(p, '\n');
1886 if (cp) {
1887 *cp++ = '\0';
1888 nextline = cp;
1889 } else
1890 nextline = NULL;
1891
1892 cp = strpbrk(p, " \t");
1893 if (cp == NULL) {
1894 if (canonname == NULL)
1895 return (NULL);
1896 else
1897 goto done;
1898 }
1899 *cp++ = '\0';
1900
1901 addr = p;
1902
1903 while (cp && *cp) {
1904 if (*cp == ' ' || *cp == '\t') {
1905 cp++;
1906 continue;
1907 }
1908 if (!canonname)
1909 canonname = cp;
1910 if ((cp = strpbrk(cp, " \t")) != NULL)
1911 *cp++ = '\0';
1912 }
1913
1914 hints = *pai;
1915 hints.ai_flags = AI_NUMERICHOST;
1916 error = getaddrinfo(addr, NULL, &hints, &res0);
1917 if (error == 0) {
1918 for (res = res0; res; res = res->ai_next) {
1919 /* cover it up */
1920 res->ai_flags = pai->ai_flags;
1921
1922 if (pai->ai_flags & AI_CANONNAME)
1923 (void)get_canonname(pai, res, canonname);
1924 }
1925 } else
1926 res0 = NULL;
1927 if (res0) {
1928 cur->ai_next = res0;
1929 while (cur->ai_next)
1930 cur = cur->ai_next;
1931 }
1932
1933 if (nextline) {
1934 p = nextline;
1935 goto nextline;
1936 }
1937
1938 done:
1939 return sentinel.ai_next;
1940 }
1941
1942 /*ARGSUSED*/
1943 static int
1944 _yp_getaddrinfo(void *rv, void *cb_data, va_list ap)
1945 {
1946 struct addrinfo sentinel, *cur;
1947 struct addrinfo *ai = NULL;
1948 char *ypbuf;
1949 int ypbuflen, r;
1950 const char *name;
1951 const struct addrinfo *pai;
1952 char *ypdomain;
1953
1954 if (_yp_check(&ypdomain) == 0)
1955 return NS_UNAVAIL;
1956
1957 name = va_arg(ap, char *);
1958 pai = va_arg(ap, const struct addrinfo *);
1959
1960 memset(&sentinel, 0, sizeof(sentinel));
1961 cur = &sentinel;
1962
1963 /* hosts.byname is only for IPv4 (Solaris8) */
1964 if (pai->ai_family == PF_UNSPEC || pai->ai_family == PF_INET) {
1965 r = yp_match(ypdomain, "hosts.byname", name,
1966 (int)strlen(name), &ypbuf, &ypbuflen);
1967 if (r == 0) {
1968 struct addrinfo ai4;
1969
1970 ai4 = *pai;
1971 ai4.ai_family = AF_INET;
1972 ai = _yphostent(ypbuf, &ai4);
1973 if (ai) {
1974 cur->ai_next = ai;
1975 while (cur && cur->ai_next)
1976 cur = cur->ai_next;
1977 }
1978 }
1979 free(ypbuf);
1980 }
1981
1982 /* ipnodes.byname can hold both IPv4/v6 */
1983 r = yp_match(ypdomain, "ipnodes.byname", name,
1984 (int)strlen(name), &ypbuf, &ypbuflen);
1985 if (r == 0) {
1986 ai = _yphostent(ypbuf, pai);
1987 if (ai)
1988 cur->ai_next = ai;
1989 free(ypbuf);
1990 }
1991
1992 if (sentinel.ai_next == NULL) {
1993 h_errno = HOST_NOT_FOUND;
1994 return NS_NOTFOUND;
1995 }
1996 *((struct addrinfo **)rv) = sentinel.ai_next;
1997 return NS_SUCCESS;
1998 }
1999 #endif
2000
2001 /* resolver logic */
2002
2003 /*
2004 * Formulate a normal query, send, and await answer.
2005 * Returned answer is placed in supplied buffer "answer".
2006 * Perform preliminary check of answer, returning success only
2007 * if no error is indicated and the answer count is nonzero.
2008 * Return the size of the response on success, -1 on error.
2009 * Error number is left in h_errno.
2010 *
2011 * Caller must parse answer and determine whether it answers the question.
2012 */
2013 static int
2014 res_queryN(const char *name, /* domain name */ struct res_target *target,
2015 res_state res)
2016 {
2017 u_char buf[MAXPACKET];
2018 HEADER *hp;
2019 int n;
2020 struct res_target *t;
2021 int rcode;
2022 int ancount;
2023
2024 _DIAGASSERT(name != NULL);
2025 /* XXX: target may be NULL??? */
2026
2027 rcode = NOERROR;
2028 ancount = 0;
2029
2030 for (t = target; t; t = t->next) {
2031 int class, type;
2032 u_char *answer;
2033 int anslen;
2034
2035 hp = (HEADER *)(void *)t->answer;
2036 hp->rcode = NOERROR; /* default */
2037
2038 /* make it easier... */
2039 class = t->qclass;
2040 type = t->qtype;
2041 answer = t->answer;
2042 anslen = t->anslen;
2043 #ifdef DEBUG
2044 if (res->options & RES_DEBUG)
2045 printf(";; res_nquery(%s, %d, %d)\n", name, class, type);
2046 #endif
2047
2048 n = res_nmkquery(res, QUERY, name, class, type, NULL, 0, NULL,
2049 buf, (int)sizeof(buf));
2050 #ifdef RES_USE_EDNS0
2051 if (n > 0 && (res->options & RES_USE_EDNS0) != 0)
2052 n = res_nopt(res, n, buf, (int)sizeof(buf), anslen);
2053 #endif
2054 if (n <= 0) {
2055 #ifdef DEBUG
2056 if (res->options & RES_DEBUG)
2057 printf(";; res_nquery: mkquery failed\n");
2058 #endif
2059 h_errno = NO_RECOVERY;
2060 return n;
2061 }
2062 n = res_nsend(res, buf, n, answer, anslen);
2063 #if 0
2064 if (n < 0) {
2065 #ifdef DEBUG
2066 if (res->options & RES_DEBUG)
2067 printf(";; res_query: send error\n");
2068 #endif
2069 h_errno = TRY_AGAIN;
2070 return n;
2071 }
2072 #endif
2073
2074 if (n < 0 || hp->rcode != NOERROR || ntohs(hp->ancount) == 0) {
2075 rcode = hp->rcode; /* record most recent error */
2076 #ifdef DEBUG
2077 if (res->options & RES_DEBUG)
2078 printf(";; rcode = %u, ancount=%u\n", hp->rcode,
2079 ntohs(hp->ancount));
2080 #endif
2081 continue;
2082 }
2083
2084 ancount += ntohs(hp->ancount);
2085
2086 t->n = n;
2087 }
2088
2089 if (ancount == 0) {
2090 switch (rcode) {
2091 case NXDOMAIN:
2092 h_errno = HOST_NOT_FOUND;
2093 break;
2094 case SERVFAIL:
2095 h_errno = TRY_AGAIN;
2096 break;
2097 case NOERROR:
2098 h_errno = NO_DATA;
2099 break;
2100 case FORMERR:
2101 case NOTIMP:
2102 case REFUSED:
2103 default:
2104 h_errno = NO_RECOVERY;
2105 break;
2106 }
2107 return -1;
2108 }
2109 return ancount;
2110 }
2111
2112 /*
2113 * Formulate a normal query, send, and retrieve answer in supplied buffer.
2114 * Return the size of the response on success, -1 on error.
2115 * If enabled, implement search rules until answer or unrecoverable failure
2116 * is detected. Error code, if any, is left in h_errno.
2117 */
2118 static int
2119 res_searchN(const char *name, struct res_target *target, res_state res)
2120 {
2121 const char *cp, * const *domain;
2122 HEADER *hp;
2123 u_int dots;
2124 int trailing_dot, ret, saved_herrno;
2125 int got_nodata = 0, got_servfail = 0, tried_as_is = 0;
2126
2127 _DIAGASSERT(name != NULL);
2128 _DIAGASSERT(target != NULL);
2129
2130 hp = (HEADER *)(void *)target->answer; /*XXX*/
2131
2132 errno = 0;
2133 h_errno = HOST_NOT_FOUND; /* default, if we never query */
2134 dots = 0;
2135 for (cp = name; *cp; cp++)
2136 dots += (*cp == '.');
2137 trailing_dot = 0;
2138 if (cp > name && *--cp == '.')
2139 trailing_dot++;
2140
2141 /*
2142 * if there aren't any dots, it could be a user-level alias
2143 */
2144 if (!dots && (cp = __hostalias(name)) != NULL) {
2145 ret = res_queryN(cp, target, res);
2146 return ret;
2147 }
2148
2149 /*
2150 * If there are dots in the name already, let's just give it a try
2151 * 'as is'. The threshold can be set with the "ndots" option.
2152 */
2153 saved_herrno = -1;
2154 if (dots >= res->ndots) {
2155 ret = res_querydomainN(name, NULL, target, res);
2156 if (ret > 0)
2157 return (ret);
2158 saved_herrno = h_errno;
2159 tried_as_is++;
2160 }
2161
2162 /*
2163 * We do at least one level of search if
2164 * - there is no dot and RES_DEFNAME is set, or
2165 * - there is at least one dot, there is no trailing dot,
2166 * and RES_DNSRCH is set.
2167 */
2168 if ((!dots && (res->options & RES_DEFNAMES)) ||
2169 (dots && !trailing_dot && (res->options & RES_DNSRCH))) {
2170 int done = 0;
2171
2172 for (domain = (const char * const *)res->dnsrch;
2173 *domain && !done;
2174 domain++) {
2175
2176 ret = res_querydomainN(name, *domain, target, res);
2177 if (ret > 0)
2178 return ret;
2179
2180 /*
2181 * If no server present, give up.
2182 * If name isn't found in this domain,
2183 * keep trying higher domains in the search list
2184 * (if that's enabled).
2185 * On a NO_DATA error, keep trying, otherwise
2186 * a wildcard entry of another type could keep us
2187 * from finding this entry higher in the domain.
2188 * If we get some other error (negative answer or
2189 * server failure), then stop searching up,
2190 * but try the input name below in case it's
2191 * fully-qualified.
2192 */
2193 if (errno == ECONNREFUSED) {
2194 h_errno = TRY_AGAIN;
2195 return -1;
2196 }
2197
2198 switch (h_errno) {
2199 case NO_DATA:
2200 got_nodata++;
2201 /* FALLTHROUGH */
2202 case HOST_NOT_FOUND:
2203 /* keep trying */
2204 break;
2205 case TRY_AGAIN:
2206 if (hp->rcode == SERVFAIL) {
2207 /* try next search element, if any */
2208 got_servfail++;
2209 break;
2210 }
2211 /* FALLTHROUGH */
2212 default:
2213 /* anything else implies that we're done */
2214 done++;
2215 }
2216 /*
2217 * if we got here for some reason other than DNSRCH,
2218 * we only wanted one iteration of the loop, so stop.
2219 */
2220 if (!(res->options & RES_DNSRCH))
2221 done++;
2222 }
2223 }
2224
2225 /*
2226 * if we have not already tried the name "as is", do that now.
2227 * note that we do this regardless of how many dots were in the
2228 * name or whether it ends with a dot.
2229 */
2230 if (!tried_as_is) {
2231 ret = res_querydomainN(name, NULL, target, res);
2232 if (ret > 0)
2233 return ret;
2234 }
2235
2236 /*
2237 * if we got here, we didn't satisfy the search.
2238 * if we did an initial full query, return that query's h_errno
2239 * (note that we wouldn't be here if that query had succeeded).
2240 * else if we ever got a nodata, send that back as the reason.
2241 * else send back meaningless h_errno, that being the one from
2242 * the last DNSRCH we did.
2243 */
2244 if (saved_herrno != -1)
2245 h_errno = saved_herrno;
2246 else if (got_nodata)
2247 h_errno = NO_DATA;
2248 else if (got_servfail)
2249 h_errno = TRY_AGAIN;
2250 return -1;
2251 }
2252
2253 /*
2254 * Perform a call on res_query on the concatenation of name and domain,
2255 * removing a trailing dot from name if domain is NULL.
2256 */
2257 static int
2258 res_querydomainN(const char *name, const char *domain,
2259 struct res_target *target, res_state res)
2260 {
2261 char nbuf[MAXDNAME];
2262 const char *longname = nbuf;
2263 size_t n, d;
2264
2265 _DIAGASSERT(name != NULL);
2266 /* XXX: target may be NULL??? */
2267
2268 #ifdef DEBUG
2269 if (res->options & RES_DEBUG)
2270 printf(";; res_querydomain(%s, %s)\n",
2271 name, domain?domain:"<Nil>");
2272 #endif
2273 if (domain == NULL) {
2274 /*
2275 * Check for trailing '.';
2276 * copy without '.' if present.
2277 */
2278 n = strlen(name);
2279 if (n + 1 > sizeof(nbuf)) {
2280 h_errno = NO_RECOVERY;
2281 return -1;
2282 }
2283 if (n > 0 && name[--n] == '.') {
2284 strncpy(nbuf, name, n);
2285 nbuf[n] = '\0';
2286 } else
2287 longname = name;
2288 } else {
2289 n = strlen(name);
2290 d = strlen(domain);
2291 if (n + 1 + d + 1 > sizeof(nbuf)) {
2292 h_errno = NO_RECOVERY;
2293 return -1;
2294 }
2295 snprintf(nbuf, sizeof(nbuf), "%s.%s", name, domain);
2296 }
2297 return res_queryN(longname, target, res);
2298 }
2299
2300 #ifdef TEST
2301 int
2302 main(int argc, char *argv[]) {
2303 struct addrinfo *ai, *sai;
2304 int i, e;
2305 char buf[1024];
2306
2307 for (i = 1; i < argc; i++) {
2308 if ((e = getaddrinfo(argv[i], NULL, NULL, &sai)) != 0)
2309 warnx("%s: %s", argv[i], gai_strerror(e));
2310 for (ai = sai; ai; ai = ai->ai_next) {
2311 sockaddr_snprintf(buf, sizeof(buf), "%a", ai->ai_addr);
2312 printf("flags=0x%x family=%d socktype=%d protocol=%d "
2313 "addrlen=%zu addr=%s canonname=%s next=%p\n",
2314 ai->ai_flags,
2315 ai->ai_family,
2316 ai->ai_socktype,
2317 ai->ai_protocol,
2318 (size_t)ai->ai_addrlen,
2319 buf,
2320 ai->ai_canonname,
2321 ai->ai_next);
2322 }
2323 if (sai)
2324 freeaddrinfo(sai);
2325 }
2326 return 0;
2327 }
2328 #endif
2329