blob: 2517b5b8e24443477810d295bf0e4a650da7777a [file] [log] [blame]
Bernie Innocenti55864192018-08-30 04:05:20 +09001/* $NetBSD: res_send.c,v 1.9 2006/01/24 17:41:25 christos Exp $ */
2
3/*
4 * Copyright (c) 1985, 1989, 1993
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by the University of
18 * California, Berkeley and its contributors.
19 * 4. Neither the name of the University nor the names of its contributors
20 * may be used to endorse or promote products derived from this software
21 * without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 * SUCH DAMAGE.
34 */
35
36/*
37 * Portions Copyright (c) 1993 by Digital Equipment Corporation.
38 *
39 * Permission to use, copy, modify, and distribute this software for any
40 * purpose with or without fee is hereby granted, provided that the above
41 * copyright notice and this permission notice appear in all copies, and that
42 * the name of Digital Equipment Corporation not be used in advertising or
43 * publicity pertaining to distribution of the document or software without
44 * specific, written prior permission.
45 *
46 * THE SOFTWARE IS PROVIDED "AS IS" AND DIGITAL EQUIPMENT CORP. DISCLAIMS ALL
47 * WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES
48 * OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL DIGITAL EQUIPMENT
49 * CORPORATION BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
50 * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
51 * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS
52 * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
53 * SOFTWARE.
54 */
55
56/*
57 * Copyright (c) 2004 by Internet Systems Consortium, Inc. ("ISC")
58 * Portions Copyright (c) 1996-1999 by Internet Software Consortium.
59 *
60 * Permission to use, copy, modify, and distribute this software for any
61 * purpose with or without fee is hereby granted, provided that the above
62 * copyright notice and this permission notice appear in all copies.
63 *
64 * THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES
65 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
66 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL ISC BE LIABLE FOR
67 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
68 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
69 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
70 * OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
71 */
72
Bernie Innocenti55864192018-08-30 04:05:20 +090073/*
74 * Send query to name server and wait for reply.
75 */
76
Bernie Innocenti55864192018-08-30 04:05:20 +090077#include <sys/param.h>
Bernie Innocenti55864192018-08-30 04:05:20 +090078#include <sys/socket.h>
Bernie Innocentif12d5bb2018-08-31 14:09:46 +090079#include <sys/time.h>
80#include <sys/types.h>
Bernie Innocenti55864192018-08-30 04:05:20 +090081#include <sys/uio.h>
82
Bernie Innocenti55864192018-08-30 04:05:20 +090083#include <arpa/inet.h>
Bernie Innocentif12d5bb2018-08-31 14:09:46 +090084#include <arpa/nameser.h>
85#include <netinet/in.h>
Bernie Innocenti55864192018-08-30 04:05:20 +090086
87#include <errno.h>
88#include <fcntl.h>
89#include <netdb.h>
90#include <poll.h>
91#ifdef ANDROID_CHANGES
Bernie Innocentif12d5bb2018-08-31 14:09:46 +090092#include "private/android_filesystem_config.h"
Bernie Innocenti55864192018-08-30 04:05:20 +090093#include "resolv_netid.h"
94#include "resolv_private.h"
Bernie Innocenti55864192018-08-30 04:05:20 +090095#else
96#include <resolv.h>
97#endif
98#include <signal.h>
99#include <stdio.h>
100#include <stdlib.h>
101#include <string.h>
102#include <time.h>
103#include <unistd.h>
104
Bernie Innocenti55864192018-08-30 04:05:20 +0900105#include <resolv_cache.h>
106
107#include <async_safe/log.h>
108
109#ifndef DE_CONST
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900110#define DE_CONST(c, v) \
111 v = ((c) ? strchr((const void*) (c), *(const char*) (const void*) (c)) : NULL)
Bernie Innocenti55864192018-08-30 04:05:20 +0900112#endif
113
114/* Options. Leave them on. */
115#ifndef DEBUG
116#define DEBUG
117#endif
118#include "res_debug.h"
119#include "res_private.h"
120#include "resolv_stats.h"
121
122#define EXT(res) ((res)->_u._ext)
123#define DBG 0
124
125/* Forward. */
126
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900127static int get_salen __P((const struct sockaddr*) );
128static struct sockaddr* get_nsaddr __P((res_state, size_t));
129static int send_vc(res_state, struct __res_params* params, const u_char*, int, u_char*, int, int*,
130 int, time_t*, int*, int*);
131static int send_dg(res_state, struct __res_params* params, const u_char*, int, u_char*, int, int*,
132 int, int*, int*, time_t*, int*, int*);
133static void Aerror(const res_state, FILE*, const char*, int, const struct sockaddr*, int);
134static void Perror(const res_state, FILE*, const char*, int);
135static int sock_eq(struct sockaddr*, struct sockaddr*);
136void res_pquery(const res_state, const u_char*, int, FILE*);
137static int connect_with_timeout(int sock, const struct sockaddr* nsap, socklen_t salen,
138 const struct timespec timeout);
Bernie Innocenti55864192018-08-30 04:05:20 +0900139static int retrying_poll(const int sock, short events, const struct timespec* finish);
140
141/* BIONIC-BEGIN: implement source port randomization */
142typedef union {
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900143 struct sockaddr sa;
144 struct sockaddr_in sin;
145 struct sockaddr_in6 sin6;
Bernie Innocenti55864192018-08-30 04:05:20 +0900146} _sockaddr_union;
147
Bernie Innocentif89b3512018-08-30 07:34:37 +0900148// BEGIN: Code copied from ISC eventlib
149// TODO: move away from this code
150
151#define BILLION 1000000000
152
153static struct timespec evConsTime(time_t sec, long nsec) {
154 struct timespec x;
155
156 x.tv_sec = sec;
157 x.tv_nsec = nsec;
158 return (x);
159}
160
161static struct timespec evAddTime(struct timespec addend1, struct timespec addend2) {
162 struct timespec x;
163
164 x.tv_sec = addend1.tv_sec + addend2.tv_sec;
165 x.tv_nsec = addend1.tv_nsec + addend2.tv_nsec;
166 if (x.tv_nsec >= BILLION) {
167 x.tv_sec++;
168 x.tv_nsec -= BILLION;
169 }
170 return (x);
171}
172
173static struct timespec evSubTime(struct timespec minuend, struct timespec subtrahend) {
174 struct timespec x;
175
176 x.tv_sec = minuend.tv_sec - subtrahend.tv_sec;
177 if (minuend.tv_nsec >= subtrahend.tv_nsec)
178 x.tv_nsec = minuend.tv_nsec - subtrahend.tv_nsec;
179 else {
180 x.tv_nsec = BILLION - subtrahend.tv_nsec + minuend.tv_nsec;
181 x.tv_sec--;
182 }
183 return (x);
184}
185
186static int evCmpTime(struct timespec a, struct timespec b) {
187#define SGN(x) ((x) < 0 ? (-1) : (x) > 0 ? (1) : (0));
188 time_t s = a.tv_sec - b.tv_sec;
189 long n;
190
191 if (s != 0) return SGN(s);
192
193 n = a.tv_nsec - b.tv_nsec;
194 return SGN(n);
195}
196
197static struct timespec evTimeSpec(struct timeval tv) {
198 struct timespec ts;
199
200 ts.tv_sec = tv.tv_sec;
201 ts.tv_nsec = tv.tv_usec * 1000;
202 return (ts);
203}
204
205static struct timespec evNowTime(void) {
206 struct timeval now;
207#ifdef CLOCK_REALTIME
208 struct timespec tsnow;
209 int m = CLOCK_REALTIME;
210
211 if (clock_gettime(m, &tsnow) == 0) return (tsnow);
212#endif
213 if (gettimeofday(&now, NULL) < 0) return (evConsTime((time_t) 0, 0L));
214 return (evTimeSpec(now));
215}
216
217static struct iovec evConsIovec(void* buf, size_t cnt) {
218 struct iovec ret;
219
220 memset(&ret, 0xf5, sizeof ret);
221 ret.iov_base = buf;
222 ret.iov_len = cnt;
223 return (ret);
224}
225
226// END: Code copied from ISC eventlib
227
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900228static int random_bind(int s, int family) {
229 _sockaddr_union u;
230 int j;
231 socklen_t slen;
Bernie Innocenti55864192018-08-30 04:05:20 +0900232
233 /* clear all, this also sets the IP4/6 address to 'any' */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900234 memset(&u, 0, sizeof u);
Bernie Innocenti55864192018-08-30 04:05:20 +0900235
236 switch (family) {
237 case AF_INET:
238 u.sin.sin_family = family;
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900239 slen = sizeof u.sin;
Bernie Innocenti55864192018-08-30 04:05:20 +0900240 break;
241 case AF_INET6:
242 u.sin6.sin6_family = family;
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900243 slen = sizeof u.sin6;
Bernie Innocenti55864192018-08-30 04:05:20 +0900244 break;
245 default:
246 errno = EPROTO;
247 return -1;
248 }
249
250 /* first try to bind to a random source port a few times */
251 for (j = 0; j < 10; j++) {
252 /* find a random port between 1025 .. 65534 */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900253 int port = 1025 + (res_randomid() % (65535 - 1025));
Bernie Innocenti55864192018-08-30 04:05:20 +0900254 if (family == AF_INET)
255 u.sin.sin_port = htons(port);
256 else
257 u.sin6.sin6_port = htons(port);
258
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900259 if (!bind(s, &u.sa, slen)) return 0;
Bernie Innocenti55864192018-08-30 04:05:20 +0900260 }
261
262 /* nothing after 10 tries, our network table is probably busy */
263 /* let the system decide which port is best */
264 if (family == AF_INET)
265 u.sin.sin_port = 0;
266 else
267 u.sin6.sin6_port = 0;
268
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900269 return bind(s, &u.sa, slen);
Bernie Innocenti55864192018-08-30 04:05:20 +0900270}
271/* BIONIC-END */
272
273static const int niflags = NI_NUMERICHOST | NI_NUMERICSERV;
274
275/* Public. */
276
277/* int
278 * res_isourserver(ina)
279 * looks up "ina" in _res.ns_addr_list[]
280 * returns:
281 * 0 : not found
282 * >0 : found
283 * author:
284 * paul vixie, 29may94
285 */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900286__LIBC_HIDDEN__ int res_ourserver_p(const res_state statp, const struct sockaddr* sa) {
287 const struct sockaddr_in *inp, *srv;
288 const struct sockaddr_in6 *in6p, *srv6;
289 int ns;
Bernie Innocenti55864192018-08-30 04:05:20 +0900290
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900291 switch (sa->sa_family) {
292 case AF_INET:
293 inp = (const struct sockaddr_in*) (const void*) sa;
294 for (ns = 0; ns < statp->nscount; ns++) {
295 srv = (struct sockaddr_in*) (void*) get_nsaddr(statp, (size_t) ns);
296 if (srv->sin_family == inp->sin_family && srv->sin_port == inp->sin_port &&
297 (srv->sin_addr.s_addr == INADDR_ANY ||
298 srv->sin_addr.s_addr == inp->sin_addr.s_addr))
299 return (1);
300 }
301 break;
302 case AF_INET6:
303 if (EXT(statp).ext == NULL) break;
304 in6p = (const struct sockaddr_in6*) (const void*) sa;
305 for (ns = 0; ns < statp->nscount; ns++) {
306 srv6 = (struct sockaddr_in6*) (void*) get_nsaddr(statp, (size_t) ns);
307 if (srv6->sin6_family == in6p->sin6_family && srv6->sin6_port == in6p->sin6_port &&
Bernie Innocenti55864192018-08-30 04:05:20 +0900308#ifdef HAVE_SIN6_SCOPE_ID
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900309 (srv6->sin6_scope_id == 0 || srv6->sin6_scope_id == in6p->sin6_scope_id) &&
Bernie Innocenti55864192018-08-30 04:05:20 +0900310#endif
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900311 (IN6_IS_ADDR_UNSPECIFIED(&srv6->sin6_addr) ||
312 IN6_ARE_ADDR_EQUAL(&srv6->sin6_addr, &in6p->sin6_addr)))
313 return (1);
314 }
315 break;
316 default:
317 break;
318 }
319 return (0);
Bernie Innocenti55864192018-08-30 04:05:20 +0900320}
321
322/* int
323 * res_nameinquery(name, type, class, buf, eom)
324 * look for (name,type,class) in the query section of packet (buf,eom)
325 * requires:
326 * buf + HFIXEDSZ <= eom
327 * returns:
328 * -1 : format error
329 * 0 : not found
330 * >0 : found
331 * author:
332 * paul vixie, 29may94
333 */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900334int res_nameinquery(const char* name, int type, int class, const u_char* buf, const u_char* eom) {
335 const u_char* cp = buf + HFIXEDSZ;
336 int qdcount = ntohs(((const HEADER*) (const void*) buf)->qdcount);
Bernie Innocenti55864192018-08-30 04:05:20 +0900337
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900338 while (qdcount-- > 0) {
339 char tname[MAXDNAME + 1];
340 int n, ttype, tclass;
Bernie Innocenti55864192018-08-30 04:05:20 +0900341
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900342 n = dn_expand(buf, eom, cp, tname, sizeof tname);
343 if (n < 0) return (-1);
344 cp += n;
345 if (cp + 2 * INT16SZ > eom) return (-1);
346 ttype = ns_get16(cp);
347 cp += INT16SZ;
348 tclass = ns_get16(cp);
349 cp += INT16SZ;
350 if (ttype == type && tclass == class && ns_samename(tname, name) == 1) return (1);
351 }
352 return (0);
Bernie Innocenti55864192018-08-30 04:05:20 +0900353}
354
355/* int
356 * res_queriesmatch(buf1, eom1, buf2, eom2)
357 * is there a 1:1 mapping of (name,type,class)
358 * in (buf1,eom1) and (buf2,eom2)?
359 * returns:
360 * -1 : format error
361 * 0 : not a 1:1 mapping
362 * >0 : is a 1:1 mapping
363 * author:
364 * paul vixie, 29may94
365 */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900366int res_queriesmatch(const u_char* buf1, const u_char* eom1, const u_char* buf2,
367 const u_char* eom2) {
368 const u_char* cp = buf1 + HFIXEDSZ;
369 int qdcount = ntohs(((const HEADER*) (const void*) buf1)->qdcount);
Bernie Innocenti55864192018-08-30 04:05:20 +0900370
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900371 if (buf1 + HFIXEDSZ > eom1 || buf2 + HFIXEDSZ > eom2) return (-1);
Bernie Innocenti55864192018-08-30 04:05:20 +0900372
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900373 /*
374 * Only header section present in replies to
375 * dynamic update packets.
376 */
377 if ((((const HEADER*) (const void*) buf1)->opcode == ns_o_update) &&
378 (((const HEADER*) (const void*) buf2)->opcode == ns_o_update))
379 return (1);
Bernie Innocenti55864192018-08-30 04:05:20 +0900380
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900381 if (qdcount != ntohs(((const HEADER*) (const void*) buf2)->qdcount)) return (0);
382 while (qdcount-- > 0) {
383 char tname[MAXDNAME + 1];
384 int n, ttype, tclass;
Bernie Innocenti55864192018-08-30 04:05:20 +0900385
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900386 n = dn_expand(buf1, eom1, cp, tname, sizeof tname);
387 if (n < 0) return (-1);
388 cp += n;
389 if (cp + 2 * INT16SZ > eom1) return (-1);
390 ttype = ns_get16(cp);
391 cp += INT16SZ;
392 tclass = ns_get16(cp);
393 cp += INT16SZ;
394 if (!res_nameinquery(tname, ttype, tclass, buf2, eom2)) return (0);
395 }
396 return (1);
Bernie Innocenti55864192018-08-30 04:05:20 +0900397}
398
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900399int res_nsend(res_state statp, const u_char* buf, int buflen, u_char* ans, int anssiz) {
400 int gotsomewhere, terrno, try
401 , v_circuit, resplen, ns, n;
402 char abuf[NI_MAXHOST];
403 ResolvCacheStatus cache_status = RESOLV_CACHE_UNSUPPORTED;
Bernie Innocenti55864192018-08-30 04:05:20 +0900404
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900405 if (anssiz < HFIXEDSZ) {
406 errno = EINVAL;
407 return (-1);
408 }
409 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_QUERY),
410 (stdout, ";; res_send()\n"), buf, buflen);
411 v_circuit = (statp->options & RES_USEVC) || buflen > PACKETSZ;
412 gotsomewhere = 0;
413 terrno = ETIMEDOUT;
Bernie Innocenti55864192018-08-30 04:05:20 +0900414
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900415 int anslen = 0;
416 cache_status = _resolv_cache_lookup(statp->netid, buf, buflen, ans, anssiz, &anslen);
Bernie Innocenti55864192018-08-30 04:05:20 +0900417
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900418 if (cache_status == RESOLV_CACHE_FOUND) {
419 return anslen;
420 } else if (cache_status != RESOLV_CACHE_UNSUPPORTED) {
421 // had a cache miss for a known network, so populate the thread private
422 // data so the normal resolve path can do its thing
423 _resolv_populate_res_for_net(statp);
424 }
425 if (statp->nscount == 0) {
426 // We have no nameservers configured, so there's no point trying.
427 // Tell the cache the query failed, or any retries and anyone else asking the same
428 // question will block for PENDING_REQUEST_TIMEOUT seconds instead of failing fast.
429 _resolv_cache_query_failed(statp->netid, buf, buflen);
430 errno = ESRCH;
431 return (-1);
432 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900433
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900434 /*
435 * If the ns_addr_list in the resolver context has changed, then
436 * invalidate our cached copy and the associated timing data.
437 */
438 if (EXT(statp).nscount != 0) {
439 int needclose = 0;
440 struct sockaddr_storage peer;
441 socklen_t peerlen;
Bernie Innocenti55864192018-08-30 04:05:20 +0900442
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900443 if (EXT(statp).nscount != statp->nscount) {
444 needclose++;
445 } else {
446 for (ns = 0; ns < statp->nscount; ns++) {
447 if (statp->nsaddr_list[ns].sin_family &&
448 !sock_eq((struct sockaddr*) (void*) &statp->nsaddr_list[ns],
449 (struct sockaddr*) (void*) &EXT(statp).ext->nsaddrs[ns])) {
450 needclose++;
451 break;
452 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900453
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900454 if (EXT(statp).nssocks[ns] == -1) continue;
455 peerlen = sizeof(peer);
456 if (getpeername(EXT(statp).nssocks[ns], (struct sockaddr*) (void*) &peer,
457 &peerlen) < 0) {
458 needclose++;
459 break;
460 }
461 if (!sock_eq((struct sockaddr*) (void*) &peer, get_nsaddr(statp, (size_t) ns))) {
462 needclose++;
463 break;
464 }
465 }
466 }
467 if (needclose) {
468 res_nclose(statp);
469 EXT(statp).nscount = 0;
470 }
471 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900472
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900473 /*
474 * Maybe initialize our private copy of the ns_addr_list.
475 */
476 if (EXT(statp).nscount == 0) {
477 for (ns = 0; ns < statp->nscount; ns++) {
478 EXT(statp).nstimes[ns] = RES_MAXTIME;
479 EXT(statp).nssocks[ns] = -1;
480 if (!statp->nsaddr_list[ns].sin_family) continue;
481 EXT(statp).ext->nsaddrs[ns].sin = statp->nsaddr_list[ns];
482 }
483 EXT(statp).nscount = statp->nscount;
484 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900485
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900486 /*
487 * Some resolvers want to even out the load on their nameservers.
488 * Note that RES_BLAST overrides RES_ROTATE.
489 */
490 if ((statp->options & RES_ROTATE) != 0U && (statp->options & RES_BLAST) == 0U) {
491 union res_sockaddr_union inu;
492 struct sockaddr_in ina;
493 int lastns = statp->nscount - 1;
494 int fd;
495 u_int16_t nstime;
Bernie Innocenti55864192018-08-30 04:05:20 +0900496
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900497 if (EXT(statp).ext != NULL) inu = EXT(statp).ext->nsaddrs[0];
498 ina = statp->nsaddr_list[0];
499 fd = EXT(statp).nssocks[0];
500 nstime = EXT(statp).nstimes[0];
501 for (ns = 0; ns < lastns; ns++) {
502 if (EXT(statp).ext != NULL)
503 EXT(statp).ext->nsaddrs[ns] = EXT(statp).ext->nsaddrs[ns + 1];
504 statp->nsaddr_list[ns] = statp->nsaddr_list[ns + 1];
505 EXT(statp).nssocks[ns] = EXT(statp).nssocks[ns + 1];
506 EXT(statp).nstimes[ns] = EXT(statp).nstimes[ns + 1];
507 }
508 if (EXT(statp).ext != NULL) EXT(statp).ext->nsaddrs[lastns] = inu;
509 statp->nsaddr_list[lastns] = ina;
510 EXT(statp).nssocks[lastns] = fd;
511 EXT(statp).nstimes[lastns] = nstime;
512 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900513
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900514 /*
515 * Send request, RETRY times, or until successful.
516 */
517 for (try = 0; try < statp->retry; try ++) {
518 struct __res_stats stats[MAXNS];
519 struct __res_params params;
520 int revision_id = _resolv_cache_get_resolver_stats(statp->netid, &params, stats);
521 bool usable_servers[MAXNS];
522 android_net_res_stats_get_usable_servers(&params, stats, statp->nscount, usable_servers);
Bernie Innocenti55864192018-08-30 04:05:20 +0900523
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900524 for (ns = 0; ns < statp->nscount; ns++) {
525 if (!usable_servers[ns]) continue;
526 struct sockaddr* nsap;
527 int nsaplen;
528 time_t now = 0;
529 int rcode = RCODE_INTERNAL_ERROR;
530 int delay = 0;
531 nsap = get_nsaddr(statp, (size_t) ns);
532 nsaplen = get_salen(nsap);
533 statp->_flags &= ~RES_F_LASTMASK;
534 statp->_flags |= (ns << RES_F_LASTSHIFT);
Bernie Innocenti55864192018-08-30 04:05:20 +0900535
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900536 same_ns:
537 if (statp->qhook) {
538 int done = 0, loops = 0;
Bernie Innocenti55864192018-08-30 04:05:20 +0900539
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900540 do {
541 res_sendhookact act;
Bernie Innocenti55864192018-08-30 04:05:20 +0900542
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900543 act = (*statp->qhook)(&nsap, &buf, &buflen, ans, anssiz, &resplen);
544 switch (act) {
545 case res_goahead:
546 done = 1;
547 break;
548 case res_nextns:
549 res_nclose(statp);
550 goto next_ns;
551 case res_done:
552 if (cache_status == RESOLV_CACHE_NOTFOUND) {
553 _resolv_cache_add(statp->netid, buf, buflen, ans, resplen);
554 }
555 return (resplen);
556 case res_modified:
557 /* give the hook another try */
558 if (++loops < 42) /*doug adams*/
559 break;
560 /*FALLTHROUGH*/
561 case res_error:
562 /*FALLTHROUGH*/
563 default:
564 goto fail;
565 }
566 } while (!done);
567 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900568
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900569 Dprint(((statp->options & RES_DEBUG) &&
570 getnameinfo(nsap, (socklen_t) nsaplen, abuf, sizeof(abuf), NULL, 0, niflags) ==
571 0),
572 (stdout, ";; Querying server (# %d) address = %s\n", ns + 1, abuf));
Bernie Innocenti55864192018-08-30 04:05:20 +0900573
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900574 if (v_circuit) {
575 /* Use VC; at most one attempt per server. */
576 try
577 = statp->retry;
Bernie Innocenti55864192018-08-30 04:05:20 +0900578
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900579 n = send_vc(statp, &params, buf, buflen, ans, anssiz, &terrno, ns, &now, &rcode,
580 &delay);
Bernie Innocenti55864192018-08-30 04:05:20 +0900581
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900582 /*
583 * Only record stats the first time we try a query. This ensures that
584 * queries that deterministically fail (e.g., a name that always returns
585 * SERVFAIL or times out) do not unduly affect the stats.
586 */
587 if (try == 0) {
588 struct __res_sample sample;
589 _res_stats_set_sample(&sample, now, rcode, delay);
590 _resolv_cache_add_resolver_stats_sample(statp->netid, revision_id, ns, &sample,
591 params.max_samples);
592 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900593
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900594 if (DBG) {
595 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "used send_vc %d\n", n);
596 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900597
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900598 if (n < 0) goto fail;
599 if (n == 0) goto next_ns;
600 resplen = n;
601 } else {
602 /* Use datagrams. */
603 if (DBG) {
604 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "using send_dg\n");
605 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900606
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900607 n = send_dg(statp, &params, buf, buflen, ans, anssiz, &terrno, ns, &v_circuit,
608 &gotsomewhere, &now, &rcode, &delay);
Bernie Innocenti55864192018-08-30 04:05:20 +0900609
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900610 /* Only record stats the first time we try a query. See above. */
611 if (try == 0) {
612 struct __res_sample sample;
613 _res_stats_set_sample(&sample, now, rcode, delay);
614 _resolv_cache_add_resolver_stats_sample(statp->netid, revision_id, ns, &sample,
615 params.max_samples);
616 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900617
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900618 if (DBG) {
619 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "used send_dg %d\n", n);
620 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900621
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900622 if (n < 0) goto fail;
623 if (n == 0) goto next_ns;
624 if (DBG) {
625 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "time=%ld\n", time(NULL));
626 }
627 if (v_circuit) goto same_ns;
628 resplen = n;
629 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900630
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900631 Dprint((statp->options & RES_DEBUG) ||
632 ((statp->pfcode & RES_PRF_REPLY) && (statp->pfcode & RES_PRF_HEAD1)),
633 (stdout, ";; got answer:\n"));
Bernie Innocenti55864192018-08-30 04:05:20 +0900634
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900635 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_REPLY),
636 (stdout, "%s", ""), ans, (resplen > anssiz) ? anssiz : resplen);
Bernie Innocenti55864192018-08-30 04:05:20 +0900637
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900638 if (cache_status == RESOLV_CACHE_NOTFOUND) {
639 _resolv_cache_add(statp->netid, buf, buflen, ans, resplen);
640 }
641 /*
642 * If we have temporarily opened a virtual circuit,
643 * or if we haven't been asked to keep a socket open,
644 * close the socket.
645 */
646 if ((v_circuit && (statp->options & RES_USEVC) == 0U) ||
647 (statp->options & RES_STAYOPEN) == 0U) {
648 res_nclose(statp);
649 }
650 if (statp->rhook) {
651 int done = 0, loops = 0;
Bernie Innocenti55864192018-08-30 04:05:20 +0900652
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900653 do {
654 res_sendhookact act;
Bernie Innocenti55864192018-08-30 04:05:20 +0900655
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900656 act = (*statp->rhook)(nsap, buf, buflen, ans, anssiz, &resplen);
657 switch (act) {
658 case res_goahead:
659 case res_done:
660 done = 1;
661 break;
662 case res_nextns:
663 res_nclose(statp);
664 goto next_ns;
665 case res_modified:
666 /* give the hook another try */
667 if (++loops < 42) /*doug adams*/
668 break;
669 /*FALLTHROUGH*/
670 case res_error:
671 /*FALLTHROUGH*/
672 default:
673 goto fail;
674 }
675 } while (!done);
676 }
677 return (resplen);
678 next_ns:;
679 } /*foreach ns*/
680 } /*foreach retry*/
681 res_nclose(statp);
682 if (!v_circuit) {
683 if (!gotsomewhere)
684 errno = ECONNREFUSED; /* no nameservers found */
685 else
686 errno = ETIMEDOUT; /* no answer obtained */
687 } else
688 errno = terrno;
Bernie Innocenti55864192018-08-30 04:05:20 +0900689
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900690 _resolv_cache_query_failed(statp->netid, buf, buflen);
Bernie Innocenti55864192018-08-30 04:05:20 +0900691
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900692 return (-1);
693fail:
Bernie Innocenti55864192018-08-30 04:05:20 +0900694
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900695 _resolv_cache_query_failed(statp->netid, buf, buflen);
696 res_nclose(statp);
697 return (-1);
Bernie Innocenti55864192018-08-30 04:05:20 +0900698}
699
700/* Private */
701
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900702static int get_salen(sa) const struct sockaddr* sa;
Bernie Innocenti55864192018-08-30 04:05:20 +0900703{
Bernie Innocenti55864192018-08-30 04:05:20 +0900704#ifdef HAVE_SA_LEN
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900705 /* There are people do not set sa_len. Be forgiving to them. */
706 if (sa->sa_len) return (sa->sa_len);
Bernie Innocenti55864192018-08-30 04:05:20 +0900707#endif
708
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900709 if (sa->sa_family == AF_INET)
710 return (sizeof(struct sockaddr_in));
711 else if (sa->sa_family == AF_INET6)
712 return (sizeof(struct sockaddr_in6));
713 else
714 return (0); /* unknown, die on connect */
Bernie Innocenti55864192018-08-30 04:05:20 +0900715}
716
717/*
718 * pick appropriate nsaddr_list for use. see res_init() for initialization.
719 */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900720static struct sockaddr* get_nsaddr(statp, n) res_state statp;
721size_t n;
Bernie Innocenti55864192018-08-30 04:05:20 +0900722{
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900723 if (!statp->nsaddr_list[n].sin_family && EXT(statp).ext) {
724 /*
725 * - EXT(statp).ext->nsaddrs[n] holds an address that is larger
726 * than struct sockaddr, and
727 * - user code did not update statp->nsaddr_list[n].
728 */
729 return (struct sockaddr*) (void*) &EXT(statp).ext->nsaddrs[n];
730 } else {
731 /*
732 * - user code updated statp->nsaddr_list[n], or
733 * - statp->nsaddr_list[n] has the same content as
734 * EXT(statp).ext->nsaddrs[n].
735 */
736 return (struct sockaddr*) (void*) &statp->nsaddr_list[n];
737 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900738}
739
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900740static struct timespec get_timeout(const res_state statp, const struct __res_params* params,
741 const int ns) {
742 int msec;
743 if (params->base_timeout_msec != 0) {
744 // TODO: scale the timeout by retry attempt and maybe number of servers
745 msec = params->base_timeout_msec;
746 } else {
747 // Legacy algorithm which scales the timeout by nameserver number.
748 // For instance, with 4 nameservers: 5s, 2.5s, 5s, 10s
749 // This has no effect with 1 or 2 nameservers
750 msec = (statp->retrans * 1000) << ns;
751 if (ns > 0) {
752 msec /= statp->nscount;
753 }
754 if (msec < 1000) {
755 msec = 1000; // Use at least 100ms
756 }
757 }
758 if (DBG) {
759 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "using timeout of %d msec\n", msec);
760 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900761
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900762 struct timespec result;
763 result.tv_sec = msec / 1000;
764 result.tv_nsec = (msec % 1000) * 1000000;
765 return result;
Bernie Innocenti55864192018-08-30 04:05:20 +0900766}
767
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900768static int send_vc(res_state statp, struct __res_params* params, const u_char* buf, int buflen,
769 u_char* ans, int anssiz, int* terrno, int ns, time_t* at, int* rcode,
770 int* delay) {
771 *at = time(NULL);
772 *rcode = RCODE_INTERNAL_ERROR;
773 *delay = 0;
774 const HEADER* hp = (const HEADER*) (const void*) buf;
775 HEADER* anhp = (HEADER*) (void*) ans;
776 struct sockaddr* nsap;
777 int nsaplen;
778 int truncating, connreset, resplen, n;
779 struct iovec iov[2];
780 u_short len;
781 u_char* cp;
782 void* tmp;
Bernie Innocenti55864192018-08-30 04:05:20 +0900783
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900784 if (DBG) {
785 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", "using send_vc\n");
786 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900787
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900788 nsap = get_nsaddr(statp, (size_t) ns);
789 nsaplen = get_salen(nsap);
Bernie Innocenti55864192018-08-30 04:05:20 +0900790
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900791 connreset = 0;
792same_ns:
793 truncating = 0;
Bernie Innocenti55864192018-08-30 04:05:20 +0900794
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900795 struct timespec now = evNowTime();
Bernie Innocenti55864192018-08-30 04:05:20 +0900796
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900797 /* Are we still talking to whom we want to talk to? */
798 if (statp->_vcsock >= 0 && (statp->_flags & RES_F_VC) != 0) {
799 struct sockaddr_storage peer;
800 socklen_t size = sizeof peer;
801 unsigned old_mark;
802 socklen_t mark_size = sizeof(old_mark);
803 if (getpeername(statp->_vcsock, (struct sockaddr*) (void*) &peer, &size) < 0 ||
804 !sock_eq((struct sockaddr*) (void*) &peer, nsap) ||
805 getsockopt(statp->_vcsock, SOL_SOCKET, SO_MARK, &old_mark, &mark_size) < 0 ||
806 old_mark != statp->_mark) {
807 res_nclose(statp);
808 statp->_flags &= ~RES_F_VC;
809 }
810 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900811
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900812 if (statp->_vcsock < 0 || (statp->_flags & RES_F_VC) == 0) {
813 if (statp->_vcsock >= 0) res_nclose(statp);
Bernie Innocenti55864192018-08-30 04:05:20 +0900814
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900815 statp->_vcsock = socket(nsap->sa_family, SOCK_STREAM | SOCK_CLOEXEC, 0);
816 if (statp->_vcsock < 0) {
817 switch (errno) {
818 case EPROTONOSUPPORT:
Bernie Innocenti55864192018-08-30 04:05:20 +0900819#ifdef EPFNOSUPPORT
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900820 case EPFNOSUPPORT:
Bernie Innocenti55864192018-08-30 04:05:20 +0900821#endif
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900822 case EAFNOSUPPORT:
823 Perror(statp, stderr, "socket(vc)", errno);
824 return (0);
825 default:
826 *terrno = errno;
827 Perror(statp, stderr, "socket(vc)", errno);
828 return (-1);
829 }
830 }
831 fchown(statp->_vcsock, AID_DNS, -1);
832 if (statp->_mark != MARK_UNSET) {
833 if (setsockopt(statp->_vcsock, SOL_SOCKET, SO_MARK, &statp->_mark,
834 sizeof(statp->_mark)) < 0) {
835 *terrno = errno;
836 Perror(statp, stderr, "setsockopt", errno);
837 return -1;
838 }
839 }
840 errno = 0;
841 if (random_bind(statp->_vcsock, nsap->sa_family) < 0) {
842 *terrno = errno;
843 Aerror(statp, stderr, "bind/vc", errno, nsap, nsaplen);
844 res_nclose(statp);
845 return (0);
846 }
847 if (connect_with_timeout(statp->_vcsock, nsap, (socklen_t) nsaplen,
848 get_timeout(statp, params, ns)) < 0) {
849 *terrno = errno;
850 Aerror(statp, stderr, "connect/vc", errno, nsap, nsaplen);
851 res_nclose(statp);
852 /*
853 * The way connect_with_timeout() is implemented prevents us from reliably
854 * determining whether this was really a timeout or e.g. ECONNREFUSED. Since
855 * currently both cases are handled in the same way, there is no need to
856 * change this (yet). If we ever need to reliably distinguish between these
857 * cases, both connect_with_timeout() and retrying_poll() need to be
858 * modified, though.
859 */
860 *rcode = RCODE_TIMEOUT;
861 return (0);
862 }
863 statp->_flags |= RES_F_VC;
864 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900865
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900866 /*
867 * Send length & message
868 */
869 ns_put16((u_short) buflen, (u_char*) (void*) &len);
870 iov[0] = evConsIovec(&len, INT16SZ);
871 DE_CONST(buf, tmp);
872 iov[1] = evConsIovec(tmp, (size_t) buflen);
873 if (writev(statp->_vcsock, iov, 2) != (INT16SZ + buflen)) {
874 *terrno = errno;
875 Perror(statp, stderr, "write failed", errno);
876 res_nclose(statp);
877 return (0);
878 }
879 /*
880 * Receive length & response
881 */
882read_len:
883 cp = ans;
884 len = INT16SZ;
885 while ((n = read(statp->_vcsock, (char*) cp, (size_t) len)) > 0) {
886 cp += n;
887 if ((len -= n) == 0) break;
888 }
889 if (n <= 0) {
890 *terrno = errno;
891 Perror(statp, stderr, "read failed", errno);
892 res_nclose(statp);
893 /*
894 * A long running process might get its TCP
895 * connection reset if the remote server was
896 * restarted. Requery the server instead of
897 * trying a new one. When there is only one
898 * server, this means that a query might work
899 * instead of failing. We only allow one reset
900 * per query to prevent looping.
901 */
902 if (*terrno == ECONNRESET && !connreset) {
903 connreset = 1;
904 res_nclose(statp);
905 goto same_ns;
906 }
907 res_nclose(statp);
908 return (0);
909 }
910 resplen = ns_get16(ans);
911 if (resplen > anssiz) {
912 Dprint(statp->options & RES_DEBUG, (stdout, ";; response truncated\n"));
913 truncating = 1;
914 len = anssiz;
915 } else
916 len = resplen;
917 if (len < HFIXEDSZ) {
918 /*
919 * Undersized message.
920 */
921 Dprint(statp->options & RES_DEBUG, (stdout, ";; undersized: %d\n", len));
922 *terrno = EMSGSIZE;
923 res_nclose(statp);
924 return (0);
925 }
926 cp = ans;
927 while (len != 0 && (n = read(statp->_vcsock, (char*) cp, (size_t) len)) > 0) {
928 cp += n;
929 len -= n;
930 }
931 if (n <= 0) {
932 *terrno = errno;
933 Perror(statp, stderr, "read(vc)", errno);
934 res_nclose(statp);
935 return (0);
936 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900937
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900938 if (truncating) {
939 /*
940 * Flush rest of answer so connection stays in synch.
941 */
942 anhp->tc = 1;
943 len = resplen - anssiz;
944 while (len != 0) {
945 char junk[PACKETSZ];
Bernie Innocenti55864192018-08-30 04:05:20 +0900946
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900947 n = read(statp->_vcsock, junk, (len > sizeof junk) ? sizeof junk : len);
948 if (n > 0)
949 len -= n;
950 else
951 break;
952 }
953 }
954 /*
955 * If the calling applicating has bailed out of
956 * a previous call and failed to arrange to have
957 * the circuit closed or the server has got
958 * itself confused, then drop the packet and
959 * wait for the correct one.
960 */
961 if (hp->id != anhp->id) {
962 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_REPLY),
963 (stdout, ";; old answer (unexpected):\n"), ans,
964 (resplen > anssiz) ? anssiz : resplen);
965 goto read_len;
966 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900967
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900968 /*
969 * All is well, or the error is fatal. Signal that the
970 * next nameserver ought not be tried.
971 */
972 if (resplen > 0) {
973 struct timespec done = evNowTime();
974 *delay = _res_stats_calculate_rtt(&done, &now);
975 *rcode = anhp->rcode;
976 }
977 return (resplen);
Bernie Innocenti55864192018-08-30 04:05:20 +0900978}
979
980/* return -1 on error (errno set), 0 on success */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900981static int connect_with_timeout(int sock, const struct sockaddr* nsap, socklen_t salen,
982 const struct timespec timeout) {
983 int res, origflags;
Bernie Innocenti55864192018-08-30 04:05:20 +0900984
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900985 origflags = fcntl(sock, F_GETFL, 0);
986 fcntl(sock, F_SETFL, origflags | O_NONBLOCK);
Bernie Innocenti55864192018-08-30 04:05:20 +0900987
Bernie Innocentif89b3512018-08-30 07:34:37 +0900988 res = connect(sock, nsap, salen);
Bernie Innocentif12d5bb2018-08-31 14:09:46 +0900989 if (res < 0 && errno != EINPROGRESS) {
990 res = -1;
991 goto done;
992 }
993 if (res != 0) {
994 struct timespec now = evNowTime();
995 struct timespec finish = evAddTime(now, timeout);
996 if (DBG) {
997 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", " %d send_vc\n", sock);
998 }
Bernie Innocenti55864192018-08-30 04:05:20 +0900999
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001000 res = retrying_poll(sock, POLLIN | POLLOUT, &finish);
1001 if (res <= 0) {
1002 res = -1;
1003 }
1004 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001005done:
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001006 fcntl(sock, F_SETFL, origflags);
1007 if (DBG) {
1008 async_safe_format_log(ANDROID_LOG_DEBUG, "libc",
1009 " %d connect_with_const timeout returning %d\n", sock, res);
1010 }
1011 return res;
Bernie Innocenti55864192018-08-30 04:05:20 +09001012}
1013
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001014static int retrying_poll(const int sock, const short events, const struct timespec* finish) {
1015 struct timespec now, timeout;
Bernie Innocenti55864192018-08-30 04:05:20 +09001016
1017retry:
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001018 if (DBG) {
1019 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", " %d retrying_poll\n", sock);
1020 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001021
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001022 now = evNowTime();
1023 if (evCmpTime(*finish, now) > 0)
1024 timeout = evSubTime(*finish, now);
1025 else
1026 timeout = evConsTime(0L, 0L);
1027 struct pollfd fds = {.fd = sock, .events = events};
1028 int n = ppoll(&fds, 1, &timeout, /*sigmask=*/NULL);
1029 if (n == 0) {
1030 if (DBG) {
1031 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", " %d retrying_poll timeout\n", sock);
1032 }
1033 errno = ETIMEDOUT;
1034 return 0;
1035 }
1036 if (n < 0) {
1037 if (errno == EINTR) goto retry;
1038 if (DBG) {
1039 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", " %d retrying_poll got error %d\n",
1040 sock, n);
1041 }
1042 return n;
1043 }
1044 if (fds.revents & (POLLIN | POLLOUT | POLLERR)) {
1045 int error;
1046 socklen_t len = sizeof(error);
1047 if (getsockopt(sock, SOL_SOCKET, SO_ERROR, &error, &len) < 0 || error) {
1048 errno = error;
1049 if (DBG) {
1050 async_safe_format_log(ANDROID_LOG_DEBUG, "libc",
1051 " %d retrying_poll dot error2 %d\n", sock, errno);
1052 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001053
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001054 return -1;
1055 }
1056 }
1057 if (DBG) {
1058 async_safe_format_log(ANDROID_LOG_DEBUG, "libc", " %d retrying_poll returning %d\n", sock,
1059 n);
1060 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001061
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001062 return n;
Bernie Innocenti55864192018-08-30 04:05:20 +09001063}
1064
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001065static int send_dg(res_state statp, struct __res_params* params, const u_char* buf, int buflen,
1066 u_char* ans, int anssiz, int* terrno, int ns, int* v_circuit, int* gotsomewhere,
1067 time_t* at, int* rcode, int* delay) {
1068 *at = time(NULL);
1069 *rcode = RCODE_INTERNAL_ERROR;
1070 *delay = 0;
1071 const HEADER* hp = (const HEADER*) (const void*) buf;
1072 HEADER* anhp = (HEADER*) (void*) ans;
1073 const struct sockaddr* nsap;
1074 int nsaplen;
1075 struct timespec now, timeout, finish, done;
1076 struct sockaddr_storage from;
1077 socklen_t fromlen;
1078 int resplen, n, s;
Bernie Innocenti55864192018-08-30 04:05:20 +09001079
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001080 nsap = get_nsaddr(statp, (size_t) ns);
1081 nsaplen = get_salen(nsap);
1082 if (EXT(statp).nssocks[ns] == -1) {
1083 EXT(statp).nssocks[ns] = socket(nsap->sa_family, SOCK_DGRAM | SOCK_CLOEXEC, 0);
1084 if (EXT(statp).nssocks[ns] < 0) {
1085 switch (errno) {
1086 case EPROTONOSUPPORT:
Bernie Innocenti55864192018-08-30 04:05:20 +09001087#ifdef EPFNOSUPPORT
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001088 case EPFNOSUPPORT:
Bernie Innocenti55864192018-08-30 04:05:20 +09001089#endif
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001090 case EAFNOSUPPORT:
1091 Perror(statp, stderr, "socket(dg)", errno);
1092 return (0);
1093 default:
1094 *terrno = errno;
1095 Perror(statp, stderr, "socket(dg)", errno);
1096 return (-1);
1097 }
1098 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001099
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001100 fchown(EXT(statp).nssocks[ns], AID_DNS, -1);
1101 if (statp->_mark != MARK_UNSET) {
1102 if (setsockopt(EXT(statp).nssocks[ns], SOL_SOCKET, SO_MARK, &(statp->_mark),
1103 sizeof(statp->_mark)) < 0) {
1104 res_nclose(statp);
1105 return -1;
1106 }
1107 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001108#ifndef CANNOT_CONNECT_DGRAM
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001109 /*
1110 * On a 4.3BSD+ machine (client and server,
1111 * actually), sending to a nameserver datagram
1112 * port with no nameserver will cause an
1113 * ICMP port unreachable message to be returned.
1114 * If our datagram socket is "connected" to the
1115 * server, we get an ECONNREFUSED error on the next
1116 * socket operation, and select returns if the
1117 * error message is received. We can thus detect
1118 * the absence of a nameserver without timing out.
1119 */
1120 if (random_bind(EXT(statp).nssocks[ns], nsap->sa_family) < 0) {
1121 Aerror(statp, stderr, "bind(dg)", errno, nsap, nsaplen);
1122 res_nclose(statp);
1123 return (0);
1124 }
Bernie Innocentif89b3512018-08-30 07:34:37 +09001125 if (connect(EXT(statp).nssocks[ns], nsap, (socklen_t) nsaplen) < 0) {
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001126 Aerror(statp, stderr, "connect(dg)", errno, nsap, nsaplen);
1127 res_nclose(statp);
1128 return (0);
1129 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001130#endif /* !CANNOT_CONNECT_DGRAM */
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001131 Dprint(statp->options & RES_DEBUG, (stdout, ";; new DG socket\n"))
1132 }
1133 s = EXT(statp).nssocks[ns];
Bernie Innocenti55864192018-08-30 04:05:20 +09001134#ifndef CANNOT_CONNECT_DGRAM
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001135 if (send(s, (const char*) buf, (size_t) buflen, 0) != buflen) {
1136 Perror(statp, stderr, "send", errno);
1137 res_nclose(statp);
1138 return (0);
1139 }
1140#else /* !CANNOT_CONNECT_DGRAM */
1141 if (sendto(s, (const char*) buf, buflen, 0, nsap, nsaplen) != buflen) {
1142 Aerror(statp, stderr, "sendto", errno, nsap, nsaplen);
1143 res_nclose(statp);
1144 return (0);
1145 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001146#endif /* !CANNOT_CONNECT_DGRAM */
1147
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001148 /*
1149 * Wait for reply.
1150 */
1151 timeout = get_timeout(statp, params, ns);
1152 now = evNowTime();
1153 finish = evAddTime(now, timeout);
Bernie Innocenti55864192018-08-30 04:05:20 +09001154retry:
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001155 n = retrying_poll(s, POLLIN, &finish);
Bernie Innocenti55864192018-08-30 04:05:20 +09001156
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001157 if (n == 0) {
1158 *rcode = RCODE_TIMEOUT;
1159 Dprint(statp->options & RES_DEBUG, (stdout, ";; timeout\n"));
1160 *gotsomewhere = 1;
1161 return (0);
1162 }
1163 if (n < 0) {
1164 Perror(statp, stderr, "poll", errno);
1165 res_nclose(statp);
1166 return (0);
1167 }
1168 errno = 0;
1169 fromlen = sizeof(from);
1170 resplen = recvfrom(s, (char*) ans, (size_t) anssiz, 0, (struct sockaddr*) (void*) &from,
1171 &fromlen);
1172 if (resplen <= 0) {
1173 Perror(statp, stderr, "recvfrom", errno);
1174 res_nclose(statp);
1175 return (0);
1176 }
1177 *gotsomewhere = 1;
1178 if (resplen < HFIXEDSZ) {
1179 /*
1180 * Undersized message.
1181 */
1182 Dprint(statp->options & RES_DEBUG, (stdout, ";; undersized: %d\n", resplen));
1183 *terrno = EMSGSIZE;
1184 res_nclose(statp);
1185 return (0);
1186 }
1187 if (hp->id != anhp->id) {
1188 /*
1189 * response from old query, ignore it.
1190 * XXX - potential security hazard could
1191 * be detected here.
1192 */
1193 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_REPLY),
1194 (stdout, ";; old answer:\n"), ans, (resplen > anssiz) ? anssiz : resplen);
1195 goto retry;
1196 }
1197 if (!(statp->options & RES_INSECURE1) &&
1198 !res_ourserver_p(statp, (struct sockaddr*) (void*) &from)) {
1199 /*
1200 * response from wrong server? ignore it.
1201 * XXX - potential security hazard could
1202 * be detected here.
1203 */
1204 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_REPLY),
1205 (stdout, ";; not our server:\n"), ans, (resplen > anssiz) ? anssiz : resplen);
1206 goto retry;
1207 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001208#ifdef RES_USE_EDNS0
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001209 if (anhp->rcode == FORMERR && (statp->options & RES_USE_EDNS0) != 0U) {
1210 /*
1211 * Do not retry if the server do not understand EDNS0.
1212 * The case has to be captured here, as FORMERR packet do not
1213 * carry query section, hence res_queriesmatch() returns 0.
1214 */
1215 DprintQ(statp->options & RES_DEBUG, (stdout, "server rejected query with EDNS0:\n"), ans,
1216 (resplen > anssiz) ? anssiz : resplen);
1217 /* record the error */
1218 statp->_flags |= RES_F_EDNS0ERR;
1219 res_nclose(statp);
1220 return (0);
1221 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001222#endif
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001223 if (!(statp->options & RES_INSECURE2) &&
1224 !res_queriesmatch(buf, buf + buflen, ans, ans + anssiz)) {
1225 /*
1226 * response contains wrong query? ignore it.
1227 * XXX - potential security hazard could
1228 * be detected here.
1229 */
1230 DprintQ((statp->options & RES_DEBUG) || (statp->pfcode & RES_PRF_REPLY),
1231 (stdout, ";; wrong query name:\n"), ans, (resplen > anssiz) ? anssiz : resplen);
1232 goto retry;
1233 ;
1234 }
1235 done = evNowTime();
1236 *delay = _res_stats_calculate_rtt(&done, &now);
1237 if (anhp->rcode == SERVFAIL || anhp->rcode == NOTIMP || anhp->rcode == REFUSED) {
1238 DprintQ(statp->options & RES_DEBUG, (stdout, "server rejected query:\n"), ans,
1239 (resplen > anssiz) ? anssiz : resplen);
1240 res_nclose(statp);
1241 /* don't retry if called from dig */
1242 if (!statp->pfcode) {
1243 *rcode = anhp->rcode;
1244 return (0);
1245 }
1246 }
1247 if (!(statp->options & RES_IGNTC) && anhp->tc) {
1248 /*
1249 * To get the rest of answer,
1250 * use TCP with same server.
1251 */
1252 Dprint(statp->options & RES_DEBUG, (stdout, ";; truncated answer\n"));
1253 *v_circuit = 1;
1254 res_nclose(statp);
1255 return (1);
1256 }
1257 /*
1258 * All is well, or the error is fatal. Signal that the
1259 * next nameserver ought not be tried.
1260 */
1261 if (resplen > 0) {
1262 *rcode = anhp->rcode;
1263 }
1264 return (resplen);
Bernie Innocenti55864192018-08-30 04:05:20 +09001265}
1266
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001267static void Aerror(const res_state statp, FILE* file, const char* string, int error,
1268 const struct sockaddr* address, int alen) {
1269 int save = errno;
1270 char hbuf[NI_MAXHOST];
1271 char sbuf[NI_MAXSERV];
Bernie Innocenti55864192018-08-30 04:05:20 +09001272
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001273 if ((statp->options & RES_DEBUG) != 0U) {
1274 if (getnameinfo(address, (socklen_t) alen, hbuf, sizeof(hbuf), sbuf, sizeof(sbuf),
1275 niflags)) {
1276 strncpy(hbuf, "?", sizeof(hbuf) - 1);
1277 hbuf[sizeof(hbuf) - 1] = '\0';
1278 strncpy(sbuf, "?", sizeof(sbuf) - 1);
1279 sbuf[sizeof(sbuf) - 1] = '\0';
1280 }
1281 fprintf(file, "res_send: %s ([%s].%s): %s\n", string, hbuf, sbuf, strerror(error));
1282 }
1283 errno = save;
Bernie Innocenti55864192018-08-30 04:05:20 +09001284}
1285
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001286static void Perror(const res_state statp, FILE* file, const char* string, int error) {
1287 int save = errno;
Bernie Innocenti55864192018-08-30 04:05:20 +09001288
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001289 if ((statp->options & RES_DEBUG) != 0U)
1290 fprintf(file, "res_send: %s: %s\n", string, strerror(error));
1291 errno = save;
Bernie Innocenti55864192018-08-30 04:05:20 +09001292}
1293
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001294static int sock_eq(struct sockaddr* a, struct sockaddr* b) {
1295 struct sockaddr_in *a4, *b4;
1296 struct sockaddr_in6 *a6, *b6;
Bernie Innocenti55864192018-08-30 04:05:20 +09001297
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001298 if (a->sa_family != b->sa_family) return 0;
1299 switch (a->sa_family) {
1300 case AF_INET:
1301 a4 = (struct sockaddr_in*) (void*) a;
1302 b4 = (struct sockaddr_in*) (void*) b;
1303 return a4->sin_port == b4->sin_port && a4->sin_addr.s_addr == b4->sin_addr.s_addr;
1304 case AF_INET6:
1305 a6 = (struct sockaddr_in6*) (void*) a;
1306 b6 = (struct sockaddr_in6*) (void*) b;
1307 return a6->sin6_port == b6->sin6_port &&
Bernie Innocenti55864192018-08-30 04:05:20 +09001308#ifdef HAVE_SIN6_SCOPE_ID
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001309 a6->sin6_scope_id == b6->sin6_scope_id &&
Bernie Innocenti55864192018-08-30 04:05:20 +09001310#endif
Bernie Innocentif12d5bb2018-08-31 14:09:46 +09001311 IN6_ARE_ADDR_EQUAL(&a6->sin6_addr, &b6->sin6_addr);
1312 default:
1313 return 0;
1314 }
Bernie Innocenti55864192018-08-30 04:05:20 +09001315}