resolv.c 68 KB

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  1. /* resolv.c: DNS Resolver
  2. *
  3. * Copyright (C) 1998 Kenneth Albanowski <kjahds@kjahds.com>,
  4. * The Silver Hammer Group, Ltd.
  5. *
  6. * This library is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Library General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2 of the License, or (at your option) any later version.
  10. */
  11. /*
  12. * Portions Copyright (c) 1985, 1993
  13. * The Regents of the University of California. All rights reserved.
  14. *
  15. * Redistribution and use in source and binary forms, with or without
  16. * modification, are permitted provided that the following conditions
  17. * are met:
  18. * 1. Redistributions of source code must retain the above copyright
  19. * notice, this list of conditions and the following disclaimer.
  20. * 2. Redistributions in binary form must reproduce the above copyright
  21. * notice, this list of conditions and the following disclaimer in the
  22. * documentation and/or other materials provided with the distribution.
  23. * 4. Neither the name of the University nor the names of its contributors
  24. * may be used to endorse or promote products derived from this software
  25. * without specific prior written permission.
  26. *
  27. * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
  28. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  29. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  30. * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
  31. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  32. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  33. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  34. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  35. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  36. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  37. * SUCH DAMAGE.
  38. */
  39. /*
  40. * Portions Copyright (c) 1993 by Digital Equipment Corporation.
  41. *
  42. * Permission to use, copy, modify, and distribute this software for any
  43. * purpose with or without fee is hereby granted, provided that the above
  44. * copyright notice and this permission notice appear in all copies, and that
  45. * the name of Digital Equipment Corporation not be used in advertising or
  46. * publicity pertaining to distribution of the document or software without
  47. * specific, written prior permission.
  48. *
  49. * THE SOFTWARE IS PROVIDED "AS IS" AND DIGITAL EQUIPMENT CORP. DISCLAIMS ALL
  50. * WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES
  51. * OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL DIGITAL EQUIPMENT
  52. * CORPORATION BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  53. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  54. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS
  55. * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
  56. * SOFTWARE.
  57. */
  58. /*
  59. * Portions Copyright (c) 1996-1999 by Internet Software Consortium.
  60. *
  61. * Permission to use, copy, modify, and distribute this software for any
  62. * purpose with or without fee is hereby granted, provided that the above
  63. * copyright notice and this permission notice appear in all copies.
  64. *
  65. * THE SOFTWARE IS PROVIDED "AS IS" AND INTERNET SOFTWARE CONSORTIUM DISCLAIMS
  66. * ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES
  67. * OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL INTERNET SOFTWARE
  68. * CONSORTIUM BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  69. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  70. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS
  71. * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
  72. * SOFTWARE.
  73. */
  74. /*
  75. *
  76. * 5-Oct-2000 W. Greathouse wgreathouse@smva.com
  77. * Fix memory leak and memory corruption.
  78. * -- Every name resolution resulted in
  79. * a new parse of resolv.conf and new
  80. * copy of nameservers allocated by
  81. * strdup.
  82. * -- Every name resolution resulted in
  83. * a new read of resolv.conf without
  84. * resetting index from prior read...
  85. * resulting in exceeding array bounds.
  86. *
  87. * Limit nameservers read from resolv.conf
  88. *
  89. * Add "search" domains from resolv.conf
  90. *
  91. * Some systems will return a security
  92. * signature along with query answer for
  93. * dynamic DNS entries.
  94. * -- skip/ignore this answer
  95. *
  96. * Include arpa/nameser.h for defines.
  97. *
  98. * General cleanup
  99. *
  100. * 20-Jun-2001 Michal Moskal <malekith@pld.org.pl>
  101. * partial IPv6 support (i.e. gethostbyname2() and resolve_address2()
  102. * functions added), IPv6 nameservers are also supported.
  103. *
  104. * 6-Oct-2001 Jari Korva <jari.korva@iki.fi>
  105. * more IPv6 support (IPv6 support for gethostbyaddr();
  106. * address family parameter and improved IPv6 support for get_hosts_byname
  107. * and read_etc_hosts; getnameinfo() port from glibc; defined
  108. * defined ip6addr_any and in6addr_loopback)
  109. *
  110. * 2-Feb-2002 Erik Andersen <andersen@codepoet.org>
  111. * Added gethostent(), sethostent(), and endhostent()
  112. *
  113. * 17-Aug-2002 Manuel Novoa III <mjn3@codepoet.org>
  114. * Fixed __read_etc_hosts_r to return alias list, and modified buffer
  115. * allocation accordingly. See MAX_ALIASES and ALIAS_DIM below.
  116. * This fixes the segfault in the Python 2.2.1 socket test.
  117. *
  118. * 04-Jan-2003 Jay Kulpinski <jskulpin@berkshire.rr.com>
  119. * Fixed __decode_dotted to count the terminating null character
  120. * in a host name.
  121. *
  122. * 02-Oct-2003 Tony J. White <tjw@tjw.org>
  123. * Lifted dn_expand() and dependent ns_name_uncompress(), ns_name_unpack(),
  124. * and ns_name_ntop() from glibc 2.3.2 for compatibility with ipsec-tools
  125. * and openldap.
  126. *
  127. * 7-Sep-2004 Erik Andersen <andersen@codepoet.org>
  128. * Added gethostent_r()
  129. *
  130. */
  131. #define __FORCE_GLIBC
  132. #include <features.h>
  133. #include <string.h>
  134. #include <stdio.h>
  135. #include <signal.h>
  136. #include <errno.h>
  137. #include <sys/poll.h>
  138. #include <sys/socket.h>
  139. #include <sys/types.h>
  140. #include <sys/time.h>
  141. #include <netinet/in.h>
  142. #include <arpa/inet.h>
  143. #include <stdlib.h>
  144. #include <unistd.h>
  145. #include <resolv.h>
  146. #include <netdb.h>
  147. #include <ctype.h>
  148. #include <stdbool.h>
  149. #include <arpa/nameser.h>
  150. #include <sys/utsname.h>
  151. #include <sys/un.h>
  152. #include <bits/uClibc_mutex.h>
  153. /* poll() is not supported in kernel <= 2.0, therefore if __NR_poll is
  154. * not available, we assume an old Linux kernel is in use and we will
  155. * use select() instead. */
  156. #include <sys/syscall.h>
  157. #ifndef __NR_poll
  158. # define USE_SELECT
  159. #endif
  160. __UCLIBC_MUTEX_EXTERN(__resolv_lock);
  161. /* Experimentally off - libc_hidden_proto(memcpy) */
  162. /* Experimentally off - libc_hidden_proto(memset) */
  163. /* Experimentally off - libc_hidden_proto(memmove) */
  164. /* Experimentally off - libc_hidden_proto(strchr) */
  165. /* Experimentally off - libc_hidden_proto(strcmp) */
  166. /* Experimentally off - libc_hidden_proto(strcpy) */
  167. /* Experimentally off - libc_hidden_proto(strdup) */
  168. /* Experimentally off - libc_hidden_proto(strlen) */
  169. /* Experimentally off - libc_hidden_proto(strncat) */
  170. /* Experimentally off - libc_hidden_proto(strncpy) */
  171. /* libc_hidden_proto(strnlen) */
  172. /* Experimentally off - libc_hidden_proto(strstr) */
  173. /* Experimentally off - libc_hidden_proto(strcasecmp) */
  174. libc_hidden_proto(socket)
  175. libc_hidden_proto(close)
  176. libc_hidden_proto(fopen)
  177. libc_hidden_proto(fclose)
  178. libc_hidden_proto(random)
  179. libc_hidden_proto(getservbyport)
  180. libc_hidden_proto(uname)
  181. libc_hidden_proto(inet_addr)
  182. libc_hidden_proto(inet_aton)
  183. libc_hidden_proto(inet_pton)
  184. libc_hidden_proto(inet_ntop)
  185. libc_hidden_proto(connect)
  186. libc_hidden_proto(poll)
  187. libc_hidden_proto(select)
  188. libc_hidden_proto(recv)
  189. libc_hidden_proto(send)
  190. libc_hidden_proto(printf)
  191. libc_hidden_proto(sprintf)
  192. libc_hidden_proto(snprintf)
  193. libc_hidden_proto(fgets)
  194. libc_hidden_proto(gethostbyname)
  195. libc_hidden_proto(gethostbyname_r)
  196. libc_hidden_proto(gethostbyname2_r)
  197. libc_hidden_proto(gethostbyaddr)
  198. libc_hidden_proto(gethostbyaddr_r)
  199. libc_hidden_proto(ns_name_uncompress)
  200. libc_hidden_proto(ns_name_unpack)
  201. libc_hidden_proto(ns_name_ntop)
  202. libc_hidden_proto(res_init)
  203. libc_hidden_proto(res_query)
  204. libc_hidden_proto(res_querydomain)
  205. libc_hidden_proto(gethostent_r)
  206. libc_hidden_proto(fprintf)
  207. libc_hidden_proto(__h_errno_location)
  208. #ifdef __UCLIBC_HAS_XLOCALE__
  209. libc_hidden_proto(__ctype_b_loc)
  210. #elif defined __UCLIBC_HAS_CTYPE_TABLES__
  211. libc_hidden_proto(__ctype_b)
  212. #endif
  213. int __libc_getdomainname(char *name, size_t len);
  214. libc_hidden_proto(__libc_getdomainname)
  215. #define MAX_RECURSE 5
  216. #define REPLY_TIMEOUT 10
  217. #define MAX_RETRIES 3
  218. #define MAX_SERVERS 3
  219. #define MAX_SEARCH 4
  220. #define MAX_ALIASES 5
  221. /* 1:ip + 1:full + MAX_ALIASES:aliases + 1:NULL */
  222. #define ALIAS_DIM (2 + MAX_ALIASES + 1)
  223. #undef DEBUG
  224. /* #define DEBUG */
  225. #ifdef DEBUG
  226. #define DPRINTF(X,args...) fprintf(stderr, X, ##args)
  227. #else
  228. #define DPRINTF(X,args...)
  229. #endif /* DEBUG */
  230. /* Make sure the incoming char * buffer is aligned enough to handle our random
  231. * structures. This define is the same as we use for malloc alignment (which
  232. * has same requirements). The offset is the number of bytes we need to adjust
  233. * in order to attain desired alignment.
  234. */
  235. #define ALIGN_ATTR __alignof__(double __attribute_aligned__ (sizeof(size_t)))
  236. #define ALIGN_BUFFER_OFFSET(buf) ((ALIGN_ATTR - ((size_t)buf % ALIGN_ATTR)) % ALIGN_ATTR)
  237. /* Global stuff (stuff needing to be locked to be thread safe)... */
  238. extern int __nameservers attribute_hidden;
  239. extern char * __nameserver[MAX_SERVERS] attribute_hidden;
  240. extern int __searchdomains attribute_hidden;
  241. extern char * __searchdomain[MAX_SEARCH] attribute_hidden;
  242. /* Structs */
  243. struct resolv_header {
  244. int id;
  245. int qr,opcode,aa,tc,rd,ra,rcode;
  246. int qdcount;
  247. int ancount;
  248. int nscount;
  249. int arcount;
  250. };
  251. struct resolv_question {
  252. char * dotted;
  253. int qtype;
  254. int qclass;
  255. };
  256. struct resolv_answer {
  257. char * dotted;
  258. int atype;
  259. int aclass;
  260. int ttl;
  261. int rdlength;
  262. const unsigned char * rdata;
  263. int rdoffset;
  264. char* buf;
  265. size_t buflen;
  266. size_t add_count;
  267. };
  268. enum etc_hosts_action {
  269. GET_HOSTS_BYNAME = 0,
  270. GETHOSTENT,
  271. GET_HOSTS_BYADDR,
  272. };
  273. /* function prototypes */
  274. extern int __get_hosts_byname_r(const char * name, int type,
  275. struct hostent * result_buf,
  276. char * buf, size_t buflen,
  277. struct hostent ** result,
  278. int * h_errnop) attribute_hidden;
  279. extern int __get_hosts_byaddr_r(const char * addr, int len, int type,
  280. struct hostent * result_buf,
  281. char * buf, size_t buflen,
  282. struct hostent ** result,
  283. int * h_errnop) attribute_hidden;
  284. extern FILE * __open_etc_hosts(void) attribute_hidden;
  285. extern int __read_etc_hosts_r(FILE *fp, const char * name, int type,
  286. enum etc_hosts_action action,
  287. struct hostent * result_buf,
  288. char * buf, size_t buflen,
  289. struct hostent ** result,
  290. int * h_errnop) attribute_hidden;
  291. extern int __dns_lookup(const char * name, int type, int nscount,
  292. char ** nsip, unsigned char ** outpacket, struct resolv_answer * a) attribute_hidden;
  293. extern int __encode_dotted(const char * dotted, unsigned char * dest, int maxlen) attribute_hidden;
  294. extern int __decode_dotted(const unsigned char * const message, int offset,
  295. char * dest, int maxlen) attribute_hidden;
  296. extern int __length_dotted(const unsigned char * const message, int offset) attribute_hidden;
  297. extern int __encode_header(struct resolv_header * h, unsigned char * dest, int maxlen) attribute_hidden;
  298. extern int __decode_header(unsigned char * data, struct resolv_header * h) attribute_hidden;
  299. extern int __encode_question(const struct resolv_question * const q,
  300. unsigned char * dest, int maxlen) attribute_hidden;
  301. extern int __decode_question(const unsigned char * const message, int offset,
  302. struct resolv_question * q) attribute_hidden;
  303. extern int __encode_answer(struct resolv_answer * a,
  304. unsigned char * dest, int maxlen) attribute_hidden;
  305. extern int __decode_answer(const unsigned char * message, int offset,
  306. int len, struct resolv_answer * a) attribute_hidden;
  307. extern int __length_question(const unsigned char * const message, int offset) attribute_hidden;
  308. extern void __open_nameservers(void) attribute_hidden;
  309. extern void __close_nameservers(void) attribute_hidden;
  310. extern int __dn_expand(const u_char *, const u_char *, const u_char *,
  311. char *, int);
  312. #ifdef L_encodeh
  313. int attribute_hidden __encode_header(struct resolv_header *h, unsigned char *dest, int maxlen)
  314. {
  315. if (maxlen < HFIXEDSZ)
  316. return -1;
  317. dest[0] = (h->id & 0xff00) >> 8;
  318. dest[1] = (h->id & 0x00ff) >> 0;
  319. dest[2] = (h->qr ? 0x80 : 0) |
  320. ((h->opcode & 0x0f) << 3) |
  321. (h->aa ? 0x04 : 0) |
  322. (h->tc ? 0x02 : 0) |
  323. (h->rd ? 0x01 : 0);
  324. dest[3] = (h->ra ? 0x80 : 0) | (h->rcode & 0x0f);
  325. dest[4] = (h->qdcount & 0xff00) >> 8;
  326. dest[5] = (h->qdcount & 0x00ff) >> 0;
  327. dest[6] = (h->ancount & 0xff00) >> 8;
  328. dest[7] = (h->ancount & 0x00ff) >> 0;
  329. dest[8] = (h->nscount & 0xff00) >> 8;
  330. dest[9] = (h->nscount & 0x00ff) >> 0;
  331. dest[10] = (h->arcount & 0xff00) >> 8;
  332. dest[11] = (h->arcount & 0x00ff) >> 0;
  333. return HFIXEDSZ;
  334. }
  335. #endif
  336. #ifdef L_decodeh
  337. int attribute_hidden __decode_header(unsigned char *data, struct resolv_header *h)
  338. {
  339. h->id = (data[0] << 8) | data[1];
  340. h->qr = (data[2] & 0x80) ? 1 : 0;
  341. h->opcode = (data[2] >> 3) & 0x0f;
  342. h->aa = (data[2] & 0x04) ? 1 : 0;
  343. h->tc = (data[2] & 0x02) ? 1 : 0;
  344. h->rd = (data[2] & 0x01) ? 1 : 0;
  345. h->ra = (data[3] & 0x80) ? 1 : 0;
  346. h->rcode = data[3] & 0x0f;
  347. h->qdcount = (data[4] << 8) | data[5];
  348. h->ancount = (data[6] << 8) | data[7];
  349. h->nscount = (data[8] << 8) | data[9];
  350. h->arcount = (data[10] << 8) | data[11];
  351. return HFIXEDSZ;
  352. }
  353. #endif
  354. #ifdef L_encoded
  355. /* Encode a dotted string into nameserver transport-level encoding.
  356. This routine is fairly dumb, and doesn't attempt to compress
  357. the data */
  358. int attribute_hidden __encode_dotted(const char *dotted, unsigned char *dest, int maxlen)
  359. {
  360. unsigned used = 0;
  361. while (dotted && *dotted) {
  362. char *c = strchr(dotted, '.');
  363. int l = c ? c - dotted : strlen(dotted);
  364. /* two consecutive dots are not valid */
  365. if (l == 0)
  366. return -1;
  367. if (l >= (maxlen - used - 1))
  368. return -1;
  369. dest[used++] = l;
  370. memcpy(dest + used, dotted, l);
  371. used += l;
  372. if (c)
  373. dotted = c + 1;
  374. else
  375. break;
  376. }
  377. if (maxlen < 1)
  378. return -1;
  379. dest[used++] = 0;
  380. return used;
  381. }
  382. #endif
  383. #ifdef L_decoded
  384. /* Decode a dotted string from nameserver transport-level encoding.
  385. This routine understands compressed data. */
  386. int attribute_hidden __decode_dotted(const unsigned char * const data, int offset,
  387. char *dest, int maxlen)
  388. {
  389. int l;
  390. bool measure = 1;
  391. unsigned total = 0;
  392. unsigned used = 0;
  393. if (!data)
  394. return -1;
  395. while ((l = data[offset++])) {
  396. if (measure)
  397. total++;
  398. if ((l & 0xc0) == (0xc0)) {
  399. if (measure)
  400. total++;
  401. /* compressed item, redirect */
  402. offset = ((l & 0x3f) << 8) | data[offset];
  403. measure = 0;
  404. continue;
  405. }
  406. if ((used + l + 1) >= maxlen)
  407. return -1;
  408. memcpy(dest + used, data + offset, l);
  409. offset += l;
  410. used += l;
  411. if (measure)
  412. total += l;
  413. if (data[offset] != 0)
  414. dest[used++] = '.';
  415. else
  416. dest[used++] = '\0';
  417. }
  418. /* The null byte must be counted too */
  419. if (measure)
  420. total++;
  421. DPRINTF("Total decode len = %d\n", total);
  422. return total;
  423. }
  424. #endif
  425. #ifdef L_lengthd
  426. int attribute_hidden __length_dotted(const unsigned char * const data, int offset)
  427. {
  428. int orig_offset = offset;
  429. int l;
  430. if (!data)
  431. return -1;
  432. while ((l = data[offset++])) {
  433. if ((l & 0xc0) == (0xc0)) {
  434. offset++;
  435. break;
  436. }
  437. offset += l;
  438. }
  439. return offset - orig_offset;
  440. }
  441. #endif
  442. #ifdef L_encodeq
  443. int attribute_hidden __encode_question(const struct resolv_question * const q,
  444. unsigned char *dest, int maxlen)
  445. {
  446. int i;
  447. i = __encode_dotted(q->dotted, dest, maxlen);
  448. if (i < 0)
  449. return i;
  450. dest += i;
  451. maxlen -= i;
  452. if (maxlen < 4)
  453. return -1;
  454. dest[0] = (q->qtype & 0xff00) >> 8;
  455. dest[1] = (q->qtype & 0x00ff) >> 0;
  456. dest[2] = (q->qclass & 0xff00) >> 8;
  457. dest[3] = (q->qclass & 0x00ff) >> 0;
  458. return i + 4;
  459. }
  460. #endif
  461. #ifdef L_decodeq
  462. int attribute_hidden __decode_question(const unsigned char * const message, int offset,
  463. struct resolv_question *q)
  464. {
  465. char temp[256];
  466. int i;
  467. i = __decode_dotted(message, offset, temp, sizeof(temp));
  468. if (i < 0)
  469. return i;
  470. offset += i;
  471. q->dotted = strdup(temp);
  472. //TODO: what if this fails?
  473. q->qtype = (message[offset + 0] << 8) | message[offset + 1];
  474. q->qclass = (message[offset + 2] << 8) | message[offset + 3];
  475. return i + 4;
  476. }
  477. #endif
  478. #ifdef L_lengthq
  479. int attribute_hidden __length_question(const unsigned char * const message, int offset)
  480. {
  481. int i;
  482. i = __length_dotted(message, offset);
  483. if (i < 0)
  484. return i;
  485. return i + 4;
  486. }
  487. #endif
  488. #ifdef L_encodea
  489. int attribute_hidden __encode_answer(struct resolv_answer *a, unsigned char *dest, int maxlen)
  490. {
  491. int i;
  492. i = __encode_dotted(a->dotted, dest, maxlen);
  493. if (i < 0)
  494. return i;
  495. dest += i;
  496. maxlen -= i;
  497. if (maxlen < (RRFIXEDSZ + a->rdlength))
  498. return -1;
  499. *dest++ = (a->atype & 0xff00) >> 8;
  500. *dest++ = (a->atype & 0x00ff) >> 0;
  501. *dest++ = (a->aclass & 0xff00) >> 8;
  502. *dest++ = (a->aclass & 0x00ff) >> 0;
  503. *dest++ = (a->ttl & 0xff000000) >> 24;
  504. *dest++ = (a->ttl & 0x00ff0000) >> 16;
  505. *dest++ = (a->ttl & 0x0000ff00) >> 8;
  506. *dest++ = (a->ttl & 0x000000ff) >> 0;
  507. *dest++ = (a->rdlength & 0xff00) >> 8;
  508. *dest++ = (a->rdlength & 0x00ff) >> 0;
  509. memcpy(dest, a->rdata, a->rdlength);
  510. return i + RRFIXEDSZ + a->rdlength;
  511. }
  512. #endif
  513. #ifdef L_decodea
  514. int attribute_hidden __decode_answer(const unsigned char *message, int offset,
  515. int len, struct resolv_answer *a)
  516. {
  517. char temp[256];
  518. int i;
  519. DPRINTF("decode_answer(start): off %d, len %d\n", offset, len);
  520. i = __decode_dotted(message, offset, temp, sizeof(temp));
  521. if (i < 0)
  522. return i;
  523. message += offset + i;
  524. len -= i + RRFIXEDSZ + offset;
  525. if (len < 0) {
  526. DPRINTF("decode_answer: off %d, len %d, i %d\n", offset, len, i);
  527. return len;
  528. }
  529. // TODO: what if strdup fails?
  530. a->dotted = strdup(temp);
  531. a->atype = (message[0] << 8) | message[1];
  532. message += 2;
  533. a->aclass = (message[0] << 8) | message[1];
  534. message += 2;
  535. a->ttl = (message[0] << 24) |
  536. (message[1] << 16) | (message[2] << 8) | (message[3] << 0);
  537. message += 4;
  538. a->rdlength = (message[0] << 8) | message[1];
  539. message += 2;
  540. a->rdata = message;
  541. a->rdoffset = offset + i + RRFIXEDSZ;
  542. DPRINTF("i=%d,rdlength=%d\n", i, a->rdlength);
  543. if (len < a->rdlength)
  544. return -1;
  545. return i + RRFIXEDSZ + a->rdlength;
  546. }
  547. #endif
  548. #ifdef L_encodep
  549. int __encode_packet(struct resolv_header *h,
  550. struct resolv_question **q,
  551. struct resolv_answer **an,
  552. struct resolv_answer **ns,
  553. struct resolv_answer **ar,
  554. unsigned char *dest, int maxlen) attribute_hidden;
  555. int __encode_packet(struct resolv_header *h,
  556. struct resolv_question **q,
  557. struct resolv_answer **an,
  558. struct resolv_answer **ns,
  559. struct resolv_answer **ar,
  560. unsigned char *dest, int maxlen)
  561. {
  562. int i, total = 0;
  563. unsigned j;
  564. i = __encode_header(h, dest, maxlen);
  565. if (i < 0)
  566. return i;
  567. dest += i;
  568. maxlen -= i;
  569. total += i;
  570. for (j = 0; j < h->qdcount; j++) {
  571. i = __encode_question(q[j], dest, maxlen);
  572. if (i < 0)
  573. return i;
  574. dest += i;
  575. maxlen -= i;
  576. total += i;
  577. }
  578. for (j = 0; j < h->ancount; j++) {
  579. i = __encode_answer(an[j], dest, maxlen);
  580. if (i < 0)
  581. return i;
  582. dest += i;
  583. maxlen -= i;
  584. total += i;
  585. }
  586. for (j = 0; j < h->nscount; j++) {
  587. i = __encode_answer(ns[j], dest, maxlen);
  588. if (i < 0)
  589. return i;
  590. dest += i;
  591. maxlen -= i;
  592. total += i;
  593. }
  594. for (j = 0; j < h->arcount; j++) {
  595. i = __encode_answer(ar[j], dest, maxlen);
  596. if (i < 0)
  597. return i;
  598. dest += i;
  599. maxlen -= i;
  600. total += i;
  601. }
  602. return total;
  603. }
  604. #endif
  605. #ifdef L_decodep
  606. int __decode_packet(unsigned char *data, struct resolv_header *h) attribute_hidden;
  607. int __decode_packet(unsigned char *data, struct resolv_header *h)
  608. {
  609. return __decode_header(data, h);
  610. }
  611. #endif
  612. #ifdef L_formquery
  613. int __form_query(int id, const char *name, int type, unsigned char *packet, int maxlen);
  614. int __form_query(int id, const char *name, int type, unsigned char *packet,
  615. int maxlen)
  616. {
  617. struct resolv_header h;
  618. struct resolv_question q;
  619. int i, j;
  620. memset(&h, 0, sizeof(h));
  621. h.id = id;
  622. h.qdcount = 1;
  623. q.dotted = (char *) name;
  624. q.qtype = type;
  625. q.qclass = C_IN; /* CLASS_IN */
  626. i = __encode_header(&h, packet, maxlen);
  627. if (i < 0)
  628. return i;
  629. j = __encode_question(&q, packet + i, maxlen - i);
  630. if (j < 0)
  631. return j;
  632. return i + j;
  633. }
  634. #endif
  635. #ifdef L_dnslookup
  636. __UCLIBC_MUTEX_STATIC(mylock, PTHREAD_MUTEX_INITIALIZER);
  637. /* Just for the record, having to lock __dns_lookup() just for these two globals
  638. * is pretty lame. I think these two variables can probably be de-global-ized,
  639. * which should eliminate the need for doing locking here... Needs a closer
  640. * look anyways. */
  641. static int static_ns = 0;
  642. /* uint16: minimizing rw data size, even if code grows a tiny bit.
  643. * rw data costs more. */
  644. static uint16_t static_id = 1;
  645. int attribute_hidden __dns_lookup(const char *name, int type, int nscount, char **nsip,
  646. unsigned char **outpacket, struct resolv_answer *a)
  647. {
  648. int i, j, len, fd, pos, rc;
  649. #ifdef USE_SELECT
  650. struct timeval tv;
  651. fd_set fds;
  652. #else
  653. struct pollfd fds;
  654. #endif
  655. struct resolv_header h;
  656. struct resolv_question q;
  657. struct resolv_answer ma;
  658. bool first_answer = 1;
  659. unsigned retries = 0;
  660. unsigned char *packet = malloc(PACKETSZ);
  661. char *dns, *lookup = malloc(MAXDNAME);
  662. int variant = -1; /* search domain to append, -1 - none */
  663. int local_ns = -1, local_id = -1;
  664. bool ends_with_dot;
  665. #ifdef __UCLIBC_HAS_IPV6__
  666. bool v6;
  667. struct sockaddr_in6 sa6;
  668. #endif
  669. #ifdef __UCLIBC_HAS_IPV4__
  670. struct sockaddr_in sa;
  671. #endif
  672. fd = -1;
  673. if (!packet || !lookup || !nscount || !name[0])
  674. goto fail;
  675. DPRINTF("Looking up type %d answer for '%s'\n", type, name);
  676. ends_with_dot = (name[strlen(name) - 1] == '.');
  677. /* Mess with globals while under lock */
  678. __UCLIBC_MUTEX_LOCK(mylock);
  679. local_ns = static_ns % nscount;
  680. local_id = static_id;
  681. __UCLIBC_MUTEX_UNLOCK(mylock);
  682. while (retries < MAX_RETRIES) {
  683. if (fd != -1)
  684. close(fd);
  685. memset(packet, 0, PACKETSZ);
  686. memset(&h, 0, sizeof(h));
  687. ++local_id;
  688. local_id &= 0xffff;
  689. h.id = local_id;
  690. h.qdcount = 1;
  691. h.rd = 1;
  692. DPRINTF("encoding header\n", h.rd);
  693. i = __encode_header(&h, packet, PACKETSZ);
  694. if (i < 0)
  695. goto fail;
  696. strncpy(lookup, name, MAXDNAME);
  697. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  698. /* nsip is really __nameserver[] which is a global that
  699. needs to hold __resolv_lock before access!! */
  700. dns = nsip[local_ns];
  701. /* TODO: all future accesses to 'dns' are guarded by __resolv_lock too.
  702. * Why? We already fetched nsip[local_ns] here,
  703. * future changes to nsip[] by other threads cannot affect us.
  704. * We can use 'dns' without locking. If I'm wrong,
  705. * please explain in comments why locking is needed. */
  706. if (variant >= 0) {
  707. if (variant < __searchdomains) {
  708. strncat(lookup, ".", MAXDNAME);
  709. strncat(lookup, __searchdomain[variant], MAXDNAME);
  710. }
  711. }
  712. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  713. DPRINTF("lookup name: %s\n", lookup);
  714. q.dotted = (char *)lookup;
  715. q.qtype = type;
  716. q.qclass = C_IN; /* CLASS_IN */
  717. j = __encode_question(&q, packet+i, PACKETSZ-i);
  718. if (j < 0)
  719. goto fail;
  720. len = i + j;
  721. DPRINTF("On try %d, sending query to port %d of machine %s\n",
  722. retries+1, NAMESERVER_PORT, dns);
  723. #ifdef __UCLIBC_HAS_IPV6__
  724. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  725. /* 'dns' is really __nameserver[] which is a global that
  726. needs to hold __resolv_lock before access!! */
  727. v6 = inet_pton(AF_INET6, dns, &sa6.sin6_addr) > 0;
  728. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  729. fd = socket(v6 ? AF_INET6 : AF_INET, SOCK_DGRAM, IPPROTO_UDP);
  730. #else
  731. fd = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP);
  732. #endif
  733. if (fd < 0) {
  734. retries++;
  735. continue;
  736. }
  737. /* Connect to the UDP socket so that asyncronous errors are returned */
  738. #ifdef __UCLIBC_HAS_IPV6__
  739. if (v6) {
  740. sa6.sin6_family = AF_INET6;
  741. sa6.sin6_port = htons(NAMESERVER_PORT);
  742. /* sa6.sin6_addr is already here */
  743. rc = connect(fd, (struct sockaddr *) &sa6, sizeof(sa6));
  744. } else {
  745. #endif
  746. #ifdef __UCLIBC_HAS_IPV4__
  747. sa.sin_family = AF_INET;
  748. sa.sin_port = htons(NAMESERVER_PORT);
  749. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  750. /* 'dns' is really __nameserver[] which is a global that
  751. needs to hold __resolv_lock before access!! */
  752. sa.sin_addr.s_addr = inet_addr(dns);
  753. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  754. rc = connect(fd, (struct sockaddr *) &sa, sizeof(sa));
  755. #endif
  756. #ifdef __UCLIBC_HAS_IPV6__
  757. }
  758. #endif
  759. if (rc < 0) {
  760. if (errno == ENETUNREACH) {
  761. /* routing error, presume not transient */
  762. goto tryall;
  763. }
  764. /* retry */
  765. retries++;
  766. continue;
  767. }
  768. DPRINTF("Transmitting packet of length %d, id=%d, qr=%d\n",
  769. len, h.id, h.qr);
  770. send(fd, packet, len, 0);
  771. #ifdef USE_SELECT
  772. FD_ZERO(&fds);
  773. FD_SET(fd, &fds);
  774. tv.tv_sec = REPLY_TIMEOUT;
  775. tv.tv_usec = 0;
  776. if (select(fd + 1, &fds, NULL, NULL, &tv) <= 0) {
  777. DPRINTF("Timeout\n");
  778. /* timed out, so retry send and receive,
  779. * to next nameserver on queue */
  780. goto tryall;
  781. }
  782. #else
  783. fds.fd = fd;
  784. fds.events = POLLIN;
  785. if (poll(&fds, 1, REPLY_TIMEOUT * 1000) <= 0) {
  786. DPRINTF("Timeout\n");
  787. /* timed out, so retry send and receive,
  788. * to next nameserver on queue */
  789. goto tryall;
  790. }
  791. #endif
  792. len = recv(fd, packet, PACKETSZ, 0);
  793. if (len < HFIXEDSZ) {
  794. /* too short ! */
  795. goto again;
  796. }
  797. __decode_header(packet, &h);
  798. DPRINTF("id = %d, qr = %d\n", h.id, h.qr);
  799. if ((h.id != local_id) || (!h.qr)) {
  800. /* unsolicited */
  801. goto again;
  802. }
  803. DPRINTF("Got response %s\n", "(i think)!");
  804. DPRINTF("qrcount=%d,ancount=%d,nscount=%d,arcount=%d\n",
  805. h.qdcount, h.ancount, h.nscount, h.arcount);
  806. DPRINTF("opcode=%d,aa=%d,tc=%d,rd=%d,ra=%d,rcode=%d\n",
  807. h.opcode, h.aa, h.tc, h.rd, h.ra, h.rcode);
  808. if ((h.rcode) || (h.ancount < 1)) {
  809. /* negative result, not present */
  810. goto again;
  811. }
  812. pos = HFIXEDSZ;
  813. for (j = 0; j < h.qdcount; j++) {
  814. DPRINTF("Skipping question %d at %d\n", j, pos);
  815. i = __length_question(packet, pos);
  816. DPRINTF("Length of question %d is %d\n", j, i);
  817. if (i < 0)
  818. goto again;
  819. pos += i;
  820. }
  821. DPRINTF("Decoding answer at pos %d\n", pos);
  822. first_answer = 1;
  823. for (j = 0; j < h.ancount && pos < len; j++, pos += i) {
  824. i = __decode_answer(packet, pos, len, &ma);
  825. if (i < 0) {
  826. DPRINTF("failed decode %d\n", i);
  827. /* if the message was truncated and we have
  828. decoded some answers, pretend it's OK */
  829. if (j && h.tc)
  830. break;
  831. goto again;
  832. }
  833. if (first_answer) {
  834. ma.buf = a->buf;
  835. ma.buflen = a->buflen;
  836. ma.add_count = a->add_count;
  837. memcpy(a, &ma, sizeof(ma));
  838. if (a->atype != T_SIG && (0 == a->buf || (type != T_A && type != T_AAAA)))
  839. break;
  840. if (a->atype != type) {
  841. free(a->dotted);
  842. continue;
  843. }
  844. a->add_count = h.ancount - j - 1;
  845. if ((a->rdlength + sizeof(struct in_addr*)) * a->add_count > a->buflen)
  846. break;
  847. a->add_count = 0;
  848. first_answer = 0;
  849. } else {
  850. free(ma.dotted);
  851. if (ma.atype != type)
  852. continue;
  853. if (a->rdlength != ma.rdlength) {
  854. free(a->dotted);
  855. DPRINTF("Answer address len(%u) differs from original(%u)\n",
  856. ma.rdlength, a->rdlength);
  857. goto again;
  858. }
  859. memcpy(a->buf + (a->add_count * ma.rdlength), ma.rdata, ma.rdlength);
  860. ++a->add_count;
  861. }
  862. }
  863. DPRINTF("Answer name = |%s|\n", a->dotted);
  864. DPRINTF("Answer type = |%d|\n", a->atype);
  865. close(fd);
  866. if (outpacket)
  867. *outpacket = packet;
  868. else
  869. free(packet);
  870. free(lookup);
  871. /* Mess with globals while under lock */
  872. __UCLIBC_MUTEX_LOCK(mylock);
  873. static_ns = local_ns;
  874. static_id = local_id;
  875. __UCLIBC_MUTEX_UNLOCK(mylock);
  876. return len; /* success! */
  877. tryall:
  878. /* if there are other nameservers, give them a go,
  879. otherwise return with error */
  880. variant = -1;
  881. local_ns = (local_ns + 1) % nscount;
  882. if (local_ns == 0)
  883. retries++;
  884. continue;
  885. again:
  886. /* if there are searchdomains, try them or fallback as passed */
  887. if (!ends_with_dot) {
  888. int sdomains;
  889. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  890. sdomains = __searchdomains;
  891. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  892. if (variant < sdomains - 1) {
  893. /* next search */
  894. variant++;
  895. continue;
  896. }
  897. }
  898. /* next server, first search */
  899. local_ns = (local_ns + 1) % nscount;
  900. if (local_ns == 0)
  901. retries++;
  902. variant = -1;
  903. }
  904. fail:
  905. if (fd != -1)
  906. close(fd);
  907. free(lookup);
  908. free(packet);
  909. h_errno = NETDB_INTERNAL;
  910. /* Mess with globals while under lock */
  911. if (local_ns != -1) {
  912. __UCLIBC_MUTEX_LOCK(mylock);
  913. static_ns = local_ns;
  914. static_id = local_id;
  915. __UCLIBC_MUTEX_UNLOCK(mylock);
  916. }
  917. return -1;
  918. }
  919. #endif
  920. #ifdef L_opennameservers
  921. /* We use __resolv_lock to guard access to the
  922. * '__nameservers' and __searchdomains globals */
  923. int __nameservers;
  924. char * __nameserver[MAX_SERVERS];
  925. int __searchdomains;
  926. char * __searchdomain[MAX_SEARCH];
  927. __UCLIBC_MUTEX_INIT(__resolv_lock, PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP);
  928. /*
  929. * we currently read formats not quite the same as that on normal
  930. * unix systems, we can have a list of nameservers after the keyword.
  931. */
  932. void attribute_hidden __open_nameservers(void)
  933. {
  934. FILE *fp;
  935. int i;
  936. #define RESOLV_ARGS 5
  937. char szBuffer[128], *p, *argv[RESOLV_ARGS];
  938. int argc;
  939. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  940. if (__nameservers > 0)
  941. goto DONE;
  942. if ((fp = fopen("/etc/resolv.conf", "r")) ||
  943. (fp = fopen("/etc/config/resolv.conf", "r")))
  944. {
  945. while (fgets(szBuffer, sizeof(szBuffer), fp) != NULL) {
  946. for (p = szBuffer; *p && isspace(*p); p++)
  947. /* skip white space */;
  948. if (*p == '\0' || *p == '\n' || *p == '#') /* skip comments etc */
  949. continue;
  950. argc = 0;
  951. while (*p && argc < RESOLV_ARGS) {
  952. argv[argc++] = p;
  953. while (*p && !isspace(*p) && *p != '\n')
  954. p++;
  955. while (*p && (isspace(*p) || *p == '\n')) /* remove spaces */
  956. *p++ = '\0';
  957. }
  958. if (strcmp(argv[0], "nameserver") == 0) {
  959. for (i = 1; i < argc && __nameservers < MAX_SERVERS; i++) {
  960. __nameserver[__nameservers++] = strdup(argv[i]); /* TODO: what if this fails? */
  961. DPRINTF("adding nameserver %s\n", argv[i]);
  962. }
  963. }
  964. /* domain and search are mutually exclusive, the last one wins */
  965. if (strcmp(argv[0],"domain") == 0 || strcmp(argv[0],"search") == 0) {
  966. while (__searchdomains > 0) {
  967. free(__searchdomain[--__searchdomains]);
  968. __searchdomain[__searchdomains] = NULL;
  969. }
  970. for (i = 1; i < argc && __searchdomains < MAX_SEARCH; i++) {
  971. __searchdomain[__searchdomains++] = strdup(argv[i]); /* TODO: what if this fails? */
  972. DPRINTF("adding search %s\n", argv[i]);
  973. }
  974. }
  975. }
  976. fclose(fp);
  977. DPRINTF("nameservers = %d\n", __nameservers);
  978. goto DONE;
  979. }
  980. DPRINTF("failed to open %s\n", "resolv.conf");
  981. h_errno = NO_RECOVERY;
  982. /* rv = -1; */
  983. DONE:
  984. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  985. /* return rv; */
  986. }
  987. #endif
  988. #ifdef L_closenameservers
  989. void attribute_hidden __close_nameservers(void)
  990. {
  991. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  992. while (__nameservers > 0) {
  993. free(__nameserver[--__nameservers]);
  994. __nameserver[__nameservers] = NULL;
  995. }
  996. while (__searchdomains > 0) {
  997. free(__searchdomain[--__searchdomains]);
  998. __searchdomain[__searchdomains] = NULL;
  999. }
  1000. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1001. }
  1002. #endif
  1003. #ifdef L_gethostbyname
  1004. struct hostent *gethostbyname(const char *name)
  1005. {
  1006. static struct hostent h;
  1007. static char buf[sizeof(struct in_addr) +
  1008. sizeof(struct in_addr *)*2 +
  1009. sizeof(char *)*ALIAS_DIM + 384/*namebuffer*/ + 32/* margin */];
  1010. struct hostent *hp;
  1011. gethostbyname_r(name, &h, buf, sizeof(buf), &hp, &h_errno);
  1012. return hp;
  1013. }
  1014. libc_hidden_def(gethostbyname)
  1015. #endif
  1016. #ifdef L_gethostbyname2
  1017. struct hostent *gethostbyname2(const char *name, int family)
  1018. {
  1019. #ifndef __UCLIBC_HAS_IPV6__
  1020. return family == AF_INET ? gethostbyname(name) : (struct hostent*)0;
  1021. #else /* __UCLIBC_HAS_IPV6__ */
  1022. static struct hostent h;
  1023. static char buf[sizeof(struct in6_addr) +
  1024. sizeof(struct in6_addr *)*2 +
  1025. sizeof(char *)*ALIAS_DIM + 384/*namebuffer*/ + 32/* margin */];
  1026. struct hostent *hp;
  1027. gethostbyname2_r(name, family, &h, buf, sizeof(buf), &hp, &h_errno);
  1028. return hp;
  1029. #endif /* __UCLIBC_HAS_IPV6__ */
  1030. }
  1031. #endif
  1032. #ifdef L_res_init
  1033. /* We use __resolv_lock to guard access to global '_res' */
  1034. struct __res_state _res;
  1035. int res_init(void)
  1036. {
  1037. struct __res_state *rp = &(_res);
  1038. __UCLIBC_MUTEX_LOCK(__resolv_lock); /* must be a recursive lock! */
  1039. __close_nameservers();
  1040. __open_nameservers();
  1041. rp->retrans = RES_TIMEOUT;
  1042. rp->retry = 4;
  1043. rp->options = RES_INIT;
  1044. rp->id = (u_int) random();
  1045. rp->nsaddr.sin_addr.s_addr = INADDR_ANY;
  1046. rp->nsaddr.sin_family = AF_INET;
  1047. rp->nsaddr.sin_port = htons(NAMESERVER_PORT);
  1048. rp->ndots = 1;
  1049. /** rp->pfcode = 0; **/
  1050. rp->_vcsock = -1;
  1051. /** rp->_flags = 0; **/
  1052. /** rp->qhook = NULL; **/
  1053. /** rp->rhook = NULL; **/
  1054. /** rp->_u._ext.nsinit = 0; **/
  1055. if (__searchdomains) {
  1056. int i;
  1057. for (i = 0; i < __searchdomains; i++)
  1058. rp->dnsrch[i] = __searchdomain[i];
  1059. }
  1060. if (__nameservers) {
  1061. int i;
  1062. struct in_addr a;
  1063. for (i = 0; i < __nameservers; i++) {
  1064. if (inet_aton(__nameserver[i], &a)) {
  1065. rp->nsaddr_list[i].sin_addr = a;
  1066. rp->nsaddr_list[i].sin_family = AF_INET;
  1067. rp->nsaddr_list[i].sin_port = htons(NAMESERVER_PORT);
  1068. }
  1069. }
  1070. }
  1071. rp->nscount = __nameservers;
  1072. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1073. return 0;
  1074. }
  1075. libc_hidden_def(res_init)
  1076. #ifdef __UCLIBC_HAS_BSD_RES_CLOSE__
  1077. void res_close(void)
  1078. {
  1079. __close_nameservers();
  1080. memset(&_res, 0, sizeof(_res));
  1081. }
  1082. #endif
  1083. #endif
  1084. #ifdef L_res_query
  1085. #ifndef MIN
  1086. #define MIN(x, y) ((x) < (y) ? (x) : (y))
  1087. #endif
  1088. int res_query(const char *dname, int class, int type,
  1089. unsigned char *answer, int anslen)
  1090. {
  1091. int i;
  1092. unsigned char * packet = 0;
  1093. struct resolv_answer a;
  1094. int __nameserversXX;
  1095. char ** __nameserverXX;
  1096. if (!dname || class != 1 /* CLASS_IN */) {
  1097. h_errno = NO_RECOVERY;
  1098. return -1;
  1099. }
  1100. memset(&a, '\0', sizeof(a));
  1101. __open_nameservers();
  1102. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1103. __nameserversXX = __nameservers;
  1104. __nameserverXX = __nameserver;
  1105. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1106. i = __dns_lookup(dname, type, __nameserversXX, __nameserverXX, &packet, &a);
  1107. if (i < 0) {
  1108. h_errno = TRY_AGAIN;
  1109. return -1;
  1110. }
  1111. free(a.dotted);
  1112. if (a.atype == type) { /* CNAME */
  1113. i = MIN(anslen, i);
  1114. memcpy(answer, packet, i);
  1115. }
  1116. free(packet);
  1117. return i;
  1118. }
  1119. libc_hidden_def(res_query)
  1120. /*
  1121. * Formulate a normal query, send, and retrieve answer in supplied buffer.
  1122. * Return the size of the response on success, -1 on error.
  1123. * If enabled, implement search rules until answer or unrecoverable failure
  1124. * is detected. Error code, if any, is left in h_errno.
  1125. */
  1126. #define __TRAILING_DOT (1<<0)
  1127. #define __GOT_NODATA (1<<1)
  1128. #define __GOT_SERVFAIL (1<<2)
  1129. #define __TRIED_AS_IS (1<<3)
  1130. int res_search(const char *name, int class, int type, u_char *answer,
  1131. int anslen)
  1132. {
  1133. const char *cp, * const *domain;
  1134. HEADER *hp = (HEADER *)(void *)answer;
  1135. u_int dots;
  1136. unsigned _state = 0;
  1137. int ret, saved_herrno;
  1138. u_long _res_options;
  1139. unsigned _res_ndots;
  1140. char **_res_dnsrch;
  1141. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1142. _res_options = _res.options;
  1143. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1144. if ((!name || !answer) || ((_res_options & RES_INIT) == 0 && res_init() == -1)) {
  1145. h_errno = NETDB_INTERNAL;
  1146. return -1;
  1147. }
  1148. errno = 0;
  1149. h_errno = HOST_NOT_FOUND; /* default, if we never query */
  1150. dots = 0;
  1151. for (cp = name; *cp; cp++)
  1152. dots += (*cp == '.');
  1153. if (cp > name && *--cp == '.')
  1154. _state |= __TRAILING_DOT;
  1155. /*
  1156. * If there are dots in the name already, let's just give it a try
  1157. * 'as is'. The threshold can be set with the "ndots" option.
  1158. */
  1159. saved_herrno = -1;
  1160. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1161. _res_ndots = _res.ndots;
  1162. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1163. if (dots >= _res_ndots) {
  1164. ret = res_querydomain(name, NULL, class, type, answer, anslen);
  1165. if (ret > 0)
  1166. return ret;
  1167. saved_herrno = h_errno;
  1168. _state |= __TRIED_AS_IS;
  1169. }
  1170. /*
  1171. * We do at least one level of search if
  1172. * - there is no dot and RES_DEFNAME is set, or
  1173. * - there is at least one dot, there is no trailing dot,
  1174. * and RES_DNSRCH is set.
  1175. */
  1176. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1177. _res_options = _res.options;
  1178. _res_dnsrch = _res.dnsrch;
  1179. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1180. if ((!dots && (_res_options & RES_DEFNAMES)) ||
  1181. (dots && !(_state & __TRAILING_DOT) && (_res_options & RES_DNSRCH))) {
  1182. bool done = 0;
  1183. for (domain = (const char * const *)_res_dnsrch;
  1184. *domain && !done;
  1185. domain++) {
  1186. ret = res_querydomain(name, *domain, class, type,
  1187. answer, anslen);
  1188. if (ret > 0)
  1189. return ret;
  1190. /*
  1191. * If no server present, give up.
  1192. * If name isn't found in this domain,
  1193. * keep trying higher domains in the search list
  1194. * (if that's enabled).
  1195. * On a NO_DATA error, keep trying, otherwise
  1196. * a wildcard entry of another type could keep us
  1197. * from finding this entry higher in the domain.
  1198. * If we get some other error (negative answer or
  1199. * server failure), then stop searching up,
  1200. * but try the input name below in case it's
  1201. * fully-qualified.
  1202. */
  1203. if (errno == ECONNREFUSED) {
  1204. h_errno = TRY_AGAIN;
  1205. return -1;
  1206. }
  1207. switch (h_errno) {
  1208. case NO_DATA:
  1209. _state |= __GOT_NODATA;
  1210. /* FALLTHROUGH */
  1211. case HOST_NOT_FOUND:
  1212. /* keep trying */
  1213. break;
  1214. case TRY_AGAIN:
  1215. if (hp->rcode == SERVFAIL) {
  1216. /* try next search element, if any */
  1217. _state |= __GOT_SERVFAIL;
  1218. break;
  1219. }
  1220. /* FALLTHROUGH */
  1221. default:
  1222. /* anything else implies that we're done */
  1223. done = 1;
  1224. }
  1225. /*
  1226. * if we got here for some reason other than DNSRCH,
  1227. * we only wanted one iteration of the loop, so stop.
  1228. */
  1229. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1230. _res_options = _res.options;
  1231. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1232. if (!(_res_options & RES_DNSRCH))
  1233. done = 1;
  1234. }
  1235. }
  1236. /*
  1237. * if we have not already tried the name "as is", do that now.
  1238. * note that we do this regardless of how many dots were in the
  1239. * name or whether it ends with a dot.
  1240. */
  1241. if (!(_state & __TRIED_AS_IS)) {
  1242. ret = res_querydomain(name, NULL, class, type, answer, anslen);
  1243. if (ret > 0)
  1244. return ret;
  1245. }
  1246. /*
  1247. * if we got here, we didn't satisfy the search.
  1248. * if we did an initial full query, return that query's h_errno
  1249. * (note that we wouldn't be here if that query had succeeded).
  1250. * else if we ever got a nodata, send that back as the reason.
  1251. * else send back meaningless h_errno, that being the one from
  1252. * the last DNSRCH we did.
  1253. */
  1254. if (saved_herrno != -1)
  1255. h_errno = saved_herrno;
  1256. else if (_state & __GOT_NODATA)
  1257. h_errno = NO_DATA;
  1258. else if (_state & __GOT_SERVFAIL)
  1259. h_errno = TRY_AGAIN;
  1260. return -1;
  1261. }
  1262. #undef __TRAILING_DOT
  1263. #undef __GOT_NODATA
  1264. #undef __GOT_SERVFAIL
  1265. #undef __TRIED_AS_IS
  1266. /*
  1267. * Perform a call on res_query on the concatenation of name and domain,
  1268. * removing a trailing dot from name if domain is NULL.
  1269. */
  1270. int res_querydomain(const char *name, const char *domain, int class, int type,
  1271. u_char * answer, int anslen)
  1272. {
  1273. char nbuf[MAXDNAME];
  1274. const char *longname = nbuf;
  1275. size_t n, d;
  1276. u_long _res_options;
  1277. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1278. _res_options = _res.options;
  1279. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1280. if ((!name || !answer) || ((_res_options & RES_INIT) == 0 && res_init() == -1)) {
  1281. h_errno = NETDB_INTERNAL;
  1282. return -1;
  1283. }
  1284. #ifdef DEBUG
  1285. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1286. _res_options = _res.options;
  1287. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1288. if (_res_options & RES_DEBUG)
  1289. printf(";; res_querydomain(%s, %s, %d, %d)\n",
  1290. name, (domain ? domain : "<Nil>"), class, type);
  1291. #endif
  1292. if (domain == NULL) {
  1293. /*
  1294. * Check for trailing '.';
  1295. * copy without '.' if present.
  1296. */
  1297. n = strlen(name);
  1298. if (n + 1 > sizeof(nbuf)) {
  1299. h_errno = NO_RECOVERY;
  1300. return -1;
  1301. }
  1302. if (n > 0 && name[--n] == '.') {
  1303. strncpy(nbuf, name, n);
  1304. nbuf[n] = '\0';
  1305. } else
  1306. longname = name;
  1307. } else {
  1308. n = strlen(name);
  1309. d = strlen(domain);
  1310. if (n + 1 + d + 1 > sizeof(nbuf)) {
  1311. h_errno = NO_RECOVERY;
  1312. return -1;
  1313. }
  1314. snprintf(nbuf, sizeof(nbuf), "%s.%s", name, domain);
  1315. }
  1316. return res_query(longname, class, type, answer, anslen);
  1317. }
  1318. libc_hidden_def(res_querydomain)
  1319. /* res_mkquery */
  1320. /* res_send */
  1321. /* dn_comp */
  1322. /* dn_expand */
  1323. #endif
  1324. #ifdef L_gethostbyaddr
  1325. struct hostent *gethostbyaddr (const void *addr, socklen_t len, int type)
  1326. {
  1327. static struct hostent h;
  1328. static char buf[
  1329. #ifndef __UCLIBC_HAS_IPV6__
  1330. sizeof(struct in_addr) + sizeof(struct in_addr *)*2 +
  1331. #else
  1332. sizeof(struct in6_addr) + sizeof(struct in6_addr *)*2 +
  1333. #endif /* __UCLIBC_HAS_IPV6__ */
  1334. sizeof(char *)*ALIAS_DIM + 384 /*namebuffer*/ + 32 /* margin */];
  1335. struct hostent *hp;
  1336. gethostbyaddr_r(addr, len, type, &h, buf, sizeof(buf), &hp, &h_errno);
  1337. return hp;
  1338. }
  1339. libc_hidden_def(gethostbyaddr)
  1340. #endif
  1341. #ifdef L_read_etc_hosts_r
  1342. FILE * __open_etc_hosts(void)
  1343. {
  1344. FILE * fp;
  1345. if ((fp = fopen("/etc/hosts", "r")) == NULL) {
  1346. fp = fopen("/etc/config/hosts", "r");
  1347. }
  1348. return fp;
  1349. }
  1350. int attribute_hidden __read_etc_hosts_r(FILE * fp, const char * name, int type,
  1351. enum etc_hosts_action action,
  1352. struct hostent * result_buf,
  1353. char * buf, size_t buflen,
  1354. struct hostent ** result,
  1355. int * h_errnop)
  1356. {
  1357. struct in_addr *in = NULL;
  1358. struct in_addr **addr_list = NULL;
  1359. #ifdef __UCLIBC_HAS_IPV6__
  1360. struct in6_addr *in6 = NULL;
  1361. struct in6_addr **addr_list6 = NULL;
  1362. #endif /* __UCLIBC_HAS_IPV6__ */
  1363. char *cp, **alias;
  1364. int aliases, i, ret = HOST_NOT_FOUND;
  1365. /* make sure user char * is aligned */
  1366. i = ALIGN_BUFFER_OFFSET(buf);
  1367. if (unlikely(i)) {
  1368. if (buflen < i)
  1369. return ERANGE;
  1370. buf += i;
  1371. buflen -= i;
  1372. }
  1373. if (buflen < sizeof(char *)*ALIAS_DIM)
  1374. return ERANGE;
  1375. alias = (char **)buf;
  1376. buf += sizeof(char **)*ALIAS_DIM;
  1377. buflen -= sizeof(char **)*ALIAS_DIM;
  1378. if (action != GETHOSTENT) {
  1379. #ifdef __UCLIBC_HAS_IPV6__
  1380. char *p = buf;
  1381. size_t len = buflen;
  1382. #endif /* __UCLIBC_HAS_IPV6__ */
  1383. *h_errnop = NETDB_INTERNAL;
  1384. if (buflen < sizeof(*in))
  1385. return ERANGE;
  1386. in = (struct in_addr*)buf;
  1387. buf += sizeof(*in);
  1388. buflen -= sizeof(*in);
  1389. if (buflen < sizeof(*addr_list)*2)
  1390. return ERANGE;
  1391. addr_list = (struct in_addr **)buf;
  1392. buf += sizeof(*addr_list)*2;
  1393. buflen -= sizeof(*addr_list)*2;
  1394. #ifdef __UCLIBC_HAS_IPV6__
  1395. if (len < sizeof(*in6))
  1396. return ERANGE;
  1397. in6 = (struct in6_addr*)p;
  1398. p += sizeof(*in6);
  1399. len -= sizeof(*in6);
  1400. if (len < sizeof(*addr_list6)*2)
  1401. return ERANGE;
  1402. addr_list6 = (struct in6_addr**)p;
  1403. p += sizeof(*addr_list6)*2;
  1404. len -= sizeof(*addr_list6)*2;
  1405. if (len < buflen) {
  1406. buflen = len;
  1407. buf = p;
  1408. }
  1409. #endif /* __UCLIBC_HAS_IPV6__ */
  1410. if (buflen < 80)
  1411. return ERANGE;
  1412. fp = __open_etc_hosts();
  1413. if (fp == NULL) {
  1414. *result = NULL;
  1415. return errno;
  1416. }
  1417. }
  1418. *h_errnop = HOST_NOT_FOUND;
  1419. while (fgets(buf, buflen, fp)) {
  1420. cp = strchr(buf, '#');
  1421. if (cp)
  1422. *cp = '\0';
  1423. DPRINTF("Looking at: %s\n", buf);
  1424. aliases = 0;
  1425. cp = buf;
  1426. while (*cp) {
  1427. while (*cp && isspace(*cp))
  1428. *cp++ = '\0';
  1429. if (!*cp)
  1430. break;
  1431. if (aliases < (2+MAX_ALIASES))
  1432. alias[aliases++] = cp;
  1433. while (*cp && !isspace(*cp))
  1434. cp++;
  1435. }
  1436. alias[aliases] = 0;
  1437. if (aliases < 2)
  1438. continue; /* syntax error really */
  1439. if (action == GETHOSTENT) {
  1440. /* Return whatever the next entry happens to be. */
  1441. break;
  1442. }
  1443. if (action == GET_HOSTS_BYADDR) {
  1444. if (strcmp(name, alias[0]) != 0)
  1445. continue;
  1446. } else {
  1447. /* GET_HOSTS_BYNAME */
  1448. for (i = 1; i < aliases; i++)
  1449. if (strcasecmp(name, alias[i]) == 0)
  1450. break;
  1451. if (i >= aliases)
  1452. continue;
  1453. }
  1454. if (type == AF_INET && inet_pton(AF_INET, alias[0], in) > 0) {
  1455. DPRINTF("Found INET\n");
  1456. addr_list[0] = in;
  1457. addr_list[1] = 0;
  1458. result_buf->h_name = alias[1];
  1459. result_buf->h_addrtype = AF_INET;
  1460. result_buf->h_length = sizeof(*in);
  1461. result_buf->h_addr_list = (char**) addr_list;
  1462. result_buf->h_aliases = alias + 2;
  1463. *result = result_buf;
  1464. ret = NETDB_SUCCESS;
  1465. #ifdef __UCLIBC_HAS_IPV6__
  1466. } else if (type == AF_INET6 && inet_pton(AF_INET6, alias[0], in6) > 0) {
  1467. DPRINTF("Found INET6\n");
  1468. addr_list6[0] = in6;
  1469. addr_list6[1] = 0;
  1470. result_buf->h_name = alias[1];
  1471. result_buf->h_addrtype = AF_INET6;
  1472. result_buf->h_length = sizeof(*in6);
  1473. result_buf->h_addr_list = (char**) addr_list6;
  1474. result_buf->h_aliases = alias + 2;
  1475. *result = result_buf;
  1476. ret = NETDB_SUCCESS;
  1477. #endif /* __UCLIBC_HAS_IPV6__ */
  1478. } else {
  1479. /* continue parsing in the hope the user has multiple
  1480. * host types listed in the database like so:
  1481. * <ipv4 addr> host
  1482. * <ipv6 addr> host
  1483. * If looking for an IPv6 addr, don't bail when we got the IPv4
  1484. */
  1485. DPRINTF("Error: Found host but diff network type\n");
  1486. /* NB: gethostbyname2_r depends on this feature
  1487. * to avoid looking for IPv6 addr of "localhost" etc */
  1488. ret = TRY_AGAIN;
  1489. continue;
  1490. }
  1491. break;
  1492. }
  1493. if (action != GETHOSTENT)
  1494. fclose(fp);
  1495. return ret;
  1496. }
  1497. #endif
  1498. #ifdef L_gethostent
  1499. __UCLIBC_MUTEX_STATIC(mylock, PTHREAD_MUTEX_INITIALIZER);
  1500. static smallint __stay_open;
  1501. static FILE * __gethostent_fp;
  1502. void endhostent(void)
  1503. {
  1504. __UCLIBC_MUTEX_LOCK(mylock);
  1505. __stay_open = 0;
  1506. if (__gethostent_fp) {
  1507. fclose(__gethostent_fp);
  1508. __gethostent_fp = NULL;
  1509. }
  1510. __UCLIBC_MUTEX_UNLOCK(mylock);
  1511. }
  1512. void sethostent(int stay_open)
  1513. {
  1514. __UCLIBC_MUTEX_LOCK(mylock);
  1515. __stay_open = (stay_open != 0);
  1516. __UCLIBC_MUTEX_UNLOCK(mylock);
  1517. }
  1518. int gethostent_r(struct hostent *result_buf, char *buf, size_t buflen,
  1519. struct hostent **result, int *h_errnop)
  1520. {
  1521. int ret;
  1522. __UCLIBC_MUTEX_LOCK(mylock);
  1523. if (__gethostent_fp == NULL) {
  1524. __gethostent_fp = __open_etc_hosts();
  1525. if (__gethostent_fp == NULL) {
  1526. *result = NULL;
  1527. ret = TRY_AGAIN;
  1528. goto DONE;
  1529. }
  1530. }
  1531. ret = __read_etc_hosts_r(__gethostent_fp, NULL, AF_INET, GETHOSTENT,
  1532. result_buf, buf, buflen, result, h_errnop);
  1533. if (__stay_open == 0) {
  1534. fclose(__gethostent_fp);
  1535. __gethostent_fp = NULL;
  1536. }
  1537. DONE:
  1538. __UCLIBC_MUTEX_UNLOCK(mylock);
  1539. return ret;
  1540. }
  1541. libc_hidden_def(gethostent_r)
  1542. struct hostent *gethostent(void)
  1543. {
  1544. static struct hostent h;
  1545. static char buf[
  1546. #ifndef __UCLIBC_HAS_IPV6__
  1547. sizeof(struct in_addr) + sizeof(struct in_addr *)*2 +
  1548. #else
  1549. sizeof(struct in6_addr) + sizeof(struct in6_addr *)*2 +
  1550. #endif /* __UCLIBC_HAS_IPV6__ */
  1551. sizeof(char *)*ALIAS_DIM +
  1552. 80 /*namebuffer*/ + 2 /* margin */];
  1553. struct hostent *host;
  1554. __UCLIBC_MUTEX_LOCK(mylock);
  1555. gethostent_r(&h, buf, sizeof(buf), &host, &h_errno);
  1556. __UCLIBC_MUTEX_UNLOCK(mylock);
  1557. return host;
  1558. }
  1559. #endif
  1560. #ifdef L_get_hosts_byname_r
  1561. int attribute_hidden __get_hosts_byname_r(const char * name, int type,
  1562. struct hostent * result_buf,
  1563. char * buf, size_t buflen,
  1564. struct hostent ** result,
  1565. int * h_errnop)
  1566. {
  1567. return __read_etc_hosts_r(NULL, name, type, GET_HOSTS_BYNAME,
  1568. result_buf, buf, buflen, result, h_errnop);
  1569. }
  1570. #endif
  1571. #ifdef L_get_hosts_byaddr_r
  1572. int attribute_hidden __get_hosts_byaddr_r(const char * addr, int len, int type,
  1573. struct hostent * result_buf,
  1574. char * buf, size_t buflen,
  1575. struct hostent ** result,
  1576. int * h_errnop)
  1577. {
  1578. #ifndef __UCLIBC_HAS_IPV6__
  1579. char ipaddr[INET_ADDRSTRLEN];
  1580. #else
  1581. char ipaddr[INET6_ADDRSTRLEN];
  1582. #endif /* __UCLIBC_HAS_IPV6__ */
  1583. switch (type) {
  1584. case AF_INET:
  1585. if (len != sizeof(struct in_addr))
  1586. return 0;
  1587. break;
  1588. #ifdef __UCLIBC_HAS_IPV6__
  1589. case AF_INET6:
  1590. if (len != sizeof(struct in6_addr))
  1591. return 0;
  1592. break;
  1593. #endif /* __UCLIBC_HAS_IPV6__ */
  1594. default:
  1595. return 0;
  1596. }
  1597. inet_ntop(type, addr, ipaddr, sizeof(ipaddr));
  1598. return __read_etc_hosts_r(NULL, ipaddr, type, GET_HOSTS_BYADDR,
  1599. result_buf, buf, buflen, result, h_errnop);
  1600. }
  1601. #endif
  1602. #ifdef L_getnameinfo
  1603. #ifndef min
  1604. # define min(x,y) (((x) > (y)) ? (y) : (x))
  1605. #endif /* min */
  1606. libc_hidden_proto(getnameinfo)
  1607. int getnameinfo(const struct sockaddr *sa, socklen_t addrlen, char *host,
  1608. socklen_t hostlen, char *serv, socklen_t servlen,
  1609. unsigned int flags)
  1610. {
  1611. int serrno = errno;
  1612. unsigned ok;
  1613. struct hostent *h = NULL;
  1614. char domain[256];
  1615. if (flags & ~(NI_NUMERICHOST|NI_NUMERICSERV|NI_NOFQDN|NI_NAMEREQD|NI_DGRAM))
  1616. return EAI_BADFLAGS;
  1617. if (sa == NULL || addrlen < sizeof (sa_family_t))
  1618. goto BAD_FAM;
  1619. ok = sa->sa_family;
  1620. if (ok == AF_LOCAL) /* valid */;
  1621. #ifdef __UCLIBC_HAS_IPV4__
  1622. else if (ok == AF_INET) {
  1623. if (addrlen < sizeof (struct sockaddr_in))
  1624. goto BAD_FAM;
  1625. }
  1626. #endif
  1627. #ifdef __UCLIBC_HAS_IPV6__
  1628. else if (ok == AF_INET6) {
  1629. if (addrlen < sizeof (struct sockaddr_in6))
  1630. goto BAD_FAM;
  1631. }
  1632. #endif /* __UCLIBC_HAS_IPV6__ */
  1633. else
  1634. BAD_FAM:
  1635. return EAI_FAMILY;
  1636. ok = 0;
  1637. if (host != NULL && hostlen > 0)
  1638. switch (sa->sa_family) {
  1639. case AF_INET:
  1640. #ifdef __UCLIBC_HAS_IPV6__
  1641. case AF_INET6:
  1642. #endif /* __UCLIBC_HAS_IPV6__ */
  1643. if (!(flags & NI_NUMERICHOST)) {
  1644. #ifdef __UCLIBC_HAS_IPV6__
  1645. if (sa->sa_family == AF_INET6)
  1646. h = gethostbyaddr ((const void *)
  1647. &(((const struct sockaddr_in6 *) sa)->sin6_addr),
  1648. sizeof(struct in6_addr), AF_INET6);
  1649. #endif /* __UCLIBC_HAS_IPV6__ */
  1650. #if defined __UCLIBC_HAS_IPV6__ && defined __UCLIBC_HAS_IPV4__
  1651. else
  1652. #endif
  1653. #ifdef __UCLIBC_HAS_IPV4__
  1654. h = gethostbyaddr ((const void *)
  1655. &(((const struct sockaddr_in *)sa)->sin_addr),
  1656. sizeof(struct in_addr), AF_INET);
  1657. #endif /* __UCLIBC_HAS_IPV4__ */
  1658. if (h) {
  1659. char *c;
  1660. if ((flags & NI_NOFQDN)
  1661. && (__libc_getdomainname (domain, sizeof(domain)) == 0)
  1662. && (c = strstr (h->h_name, domain))
  1663. && (c != h->h_name) && (*(--c) == '.')) {
  1664. strncpy (host, h->h_name,
  1665. min(hostlen, (size_t) (c - h->h_name)));
  1666. host[min(hostlen - 1, (size_t) (c - h->h_name))] = '\0';
  1667. } else {
  1668. strncpy (host, h->h_name, hostlen);
  1669. }
  1670. ok = 1;
  1671. }
  1672. }
  1673. if (!ok) {
  1674. const char *c;
  1675. if (flags & NI_NAMEREQD) {
  1676. errno = serrno;
  1677. return EAI_NONAME;
  1678. }
  1679. #ifdef __UCLIBC_HAS_IPV6__
  1680. if (sa->sa_family == AF_INET6) {
  1681. const struct sockaddr_in6 *sin6p;
  1682. sin6p = (const struct sockaddr_in6 *) sa;
  1683. c = inet_ntop (AF_INET6,
  1684. (const void *) &sin6p->sin6_addr, host, hostlen);
  1685. #if 0
  1686. /* Does scope id need to be supported? */
  1687. uint32_t scopeid;
  1688. scopeid = sin6p->sin6_scope_id;
  1689. if (scopeid != 0) {
  1690. /* Buffer is >= IFNAMSIZ+1. */
  1691. char scopebuf[IFNAMSIZ + 1];
  1692. char *scopeptr;
  1693. int ni_numericscope = 0;
  1694. size_t real_hostlen = strnlen (host, hostlen);
  1695. size_t scopelen = 0;
  1696. scopebuf[0] = SCOPE_DELIMITER;
  1697. scopebuf[1] = '\0';
  1698. scopeptr = &scopebuf[1];
  1699. if (IN6_IS_ADDR_LINKLOCAL (&sin6p->sin6_addr)
  1700. || IN6_IS_ADDR_MC_LINKLOCAL (&sin6p->sin6_addr)) {
  1701. if (if_indextoname (scopeid, scopeptr) == NULL)
  1702. ++ni_numericscope;
  1703. else
  1704. scopelen = strlen (scopebuf);
  1705. } else {
  1706. ++ni_numericscope;
  1707. }
  1708. if (ni_numericscope)
  1709. scopelen = 1 + snprintf (scopeptr,
  1710. (scopebuf
  1711. + sizeof scopebuf
  1712. - scopeptr),
  1713. "%u", scopeid);
  1714. if (real_hostlen + scopelen + 1 > hostlen)
  1715. return EAI_SYSTEM;
  1716. memcpy (host + real_hostlen, scopebuf, scopelen + 1);
  1717. }
  1718. #endif
  1719. }
  1720. #endif /* __UCLIBC_HAS_IPV6__ */
  1721. #if defined __UCLIBC_HAS_IPV6__ && defined __UCLIBC_HAS_IPV4__
  1722. else
  1723. #endif /* __UCLIBC_HAS_IPV6__ && defined __UCLIBC_HAS_IPV4__ */
  1724. #if defined __UCLIBC_HAS_IPV4__
  1725. c = inet_ntop (AF_INET, (const void *)
  1726. &(((const struct sockaddr_in *) sa)->sin_addr),
  1727. host, hostlen);
  1728. #endif /* __UCLIBC_HAS_IPV4__ */
  1729. if (c == NULL) {
  1730. errno = serrno;
  1731. return EAI_SYSTEM;
  1732. }
  1733. ok = 1;
  1734. }
  1735. break;
  1736. case AF_LOCAL:
  1737. if (!(flags & NI_NUMERICHOST)) {
  1738. struct utsname utsname;
  1739. if (!uname (&utsname)) {
  1740. strncpy (host, utsname.nodename, hostlen);
  1741. break;
  1742. };
  1743. };
  1744. if (flags & NI_NAMEREQD) {
  1745. errno = serrno;
  1746. return EAI_NONAME;
  1747. }
  1748. strncpy (host, "localhost", hostlen);
  1749. break;
  1750. /* Already checked above
  1751. default:
  1752. return EAI_FAMILY;
  1753. */
  1754. }
  1755. if (serv && (servlen > 0)) {
  1756. if (sa->sa_family == AF_LOCAL) {
  1757. strncpy (serv, ((const struct sockaddr_un *) sa)->sun_path, servlen);
  1758. } else { /* AF_INET || AF_INET6 */
  1759. if (!(flags & NI_NUMERICSERV)) {
  1760. struct servent *s;
  1761. s = getservbyport (((const struct sockaddr_in *) sa)->sin_port,
  1762. ((flags & NI_DGRAM) ? "udp" : "tcp"));
  1763. if (s) {
  1764. strncpy (serv, s->s_name, servlen);
  1765. goto DONE;
  1766. }
  1767. }
  1768. snprintf (serv, servlen, "%d",
  1769. ntohs (((const struct sockaddr_in *) sa)->sin_port));
  1770. }
  1771. }
  1772. DONE:
  1773. if (host && (hostlen > 0))
  1774. host[hostlen-1] = 0;
  1775. if (serv && (servlen > 0))
  1776. serv[servlen-1] = 0;
  1777. errno = serrno;
  1778. return 0;
  1779. }
  1780. libc_hidden_def(getnameinfo)
  1781. #endif
  1782. #ifdef L_gethostbyname_r
  1783. int gethostbyname_r(const char * name,
  1784. struct hostent * result_buf,
  1785. char * buf, size_t buflen,
  1786. struct hostent ** result,
  1787. int * h_errnop)
  1788. {
  1789. struct in_addr *in;
  1790. struct in_addr **addr_list;
  1791. char **alias;
  1792. unsigned char *packet;
  1793. struct resolv_answer a;
  1794. int i;
  1795. int __nameserversXX;
  1796. char ** __nameserverXX;
  1797. *result = NULL;
  1798. if (!name)
  1799. return EINVAL;
  1800. /* do /etc/hosts first */
  1801. {
  1802. int old_errno = errno; /* save the old errno and reset errno */
  1803. __set_errno(0); /* to check for missing /etc/hosts. */
  1804. i = __get_hosts_byname_r(name, AF_INET, result_buf,
  1805. buf, buflen, result, h_errnop);
  1806. if (i == 0)
  1807. return i;
  1808. switch (*h_errnop) {
  1809. case HOST_NOT_FOUND:
  1810. case NO_ADDRESS:
  1811. break;
  1812. case NETDB_INTERNAL:
  1813. if (errno == ENOENT) {
  1814. break;
  1815. }
  1816. /* else fall through */
  1817. default:
  1818. return i;
  1819. }
  1820. __set_errno(old_errno);
  1821. }
  1822. DPRINTF("Nothing found in /etc/hosts\n");
  1823. /* make sure user char * is aligned */
  1824. i = ALIGN_BUFFER_OFFSET(buf);
  1825. if (unlikely(i)) {
  1826. if (buflen < i)
  1827. return ERANGE;
  1828. buf += i;
  1829. buflen -= i;
  1830. }
  1831. *h_errnop = NETDB_INTERNAL;
  1832. if (buflen < sizeof(*in))
  1833. return ERANGE;
  1834. in = (struct in_addr*)buf;
  1835. buf += sizeof(*in);
  1836. buflen -= sizeof(*in);
  1837. if (buflen < sizeof(*addr_list)*2)
  1838. return ERANGE;
  1839. addr_list = (struct in_addr**)buf;
  1840. buf += sizeof(*addr_list)*2;
  1841. buflen -= sizeof(*addr_list)*2;
  1842. addr_list[0] = in;
  1843. addr_list[1] = 0;
  1844. if (buflen < sizeof(char *)*ALIAS_DIM)
  1845. return ERANGE;
  1846. alias = (char **)buf;
  1847. buf += sizeof(char **)*ALIAS_DIM;
  1848. buflen -= sizeof(char **)*ALIAS_DIM;
  1849. if (buflen < 256)
  1850. return ERANGE;
  1851. strncpy(buf, name, buflen);
  1852. alias[0] = buf;
  1853. alias[1] = NULL;
  1854. /* First check if this is already an address */
  1855. if (inet_aton(name, in)) {
  1856. result_buf->h_name = buf;
  1857. result_buf->h_addrtype = AF_INET;
  1858. result_buf->h_length = sizeof(*in);
  1859. result_buf->h_addr_list = (char **) addr_list;
  1860. result_buf->h_aliases = alias;
  1861. *result = result_buf;
  1862. *h_errnop = NETDB_SUCCESS;
  1863. return NETDB_SUCCESS;
  1864. }
  1865. __open_nameservers();
  1866. /*for (;;)*/ {
  1867. //FIXME: why was it a loop? It never loops...
  1868. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  1869. __nameserversXX = __nameservers;
  1870. __nameserverXX = __nameserver;
  1871. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  1872. a.buf = buf;
  1873. a.buflen = buflen;
  1874. a.add_count = 0;
  1875. i = __dns_lookup(name, T_A, __nameserversXX, __nameserverXX, &packet, &a);
  1876. if (i < 0) {
  1877. *h_errnop = HOST_NOT_FOUND;
  1878. DPRINTF("__dns_lookup\n");
  1879. return TRY_AGAIN;
  1880. }
  1881. if ((a.rdlength + sizeof(struct in_addr*)) * a.add_count + 256 > buflen) {
  1882. free(a.dotted);
  1883. free(packet);
  1884. *h_errnop = NETDB_INTERNAL;
  1885. DPRINTF("buffer too small for all addresses\n");
  1886. return ERANGE;
  1887. }
  1888. if (a.add_count > 0) {
  1889. memmove(buf - sizeof(struct in_addr*)*2, buf, a.add_count * a.rdlength);
  1890. addr_list = (struct in_addr**)(buf + a.add_count * a.rdlength);
  1891. addr_list[0] = in;
  1892. for (i = a.add_count - 1; i >= 0; --i)
  1893. addr_list[i+1] = (struct in_addr*)(buf - sizeof(struct in_addr*)*2 + a.rdlength * i);
  1894. addr_list[a.add_count + 1] = 0;
  1895. buflen -= (((char*)&(addr_list[a.add_count + 2])) - buf);
  1896. buf = (char*)&addr_list[a.add_count + 2];
  1897. }
  1898. strncpy(buf, a.dotted, buflen);
  1899. free(a.dotted);
  1900. if (a.atype == T_A) { /* ADDRESS */
  1901. memcpy(in, a.rdata, sizeof(*in));
  1902. result_buf->h_name = buf;
  1903. result_buf->h_addrtype = AF_INET;
  1904. result_buf->h_length = sizeof(*in);
  1905. result_buf->h_addr_list = (char **) addr_list;
  1906. #ifdef __UCLIBC_MJN3_ONLY__
  1907. #warning TODO -- generate the full list
  1908. #endif
  1909. result_buf->h_aliases = alias; /* TODO: generate the full list */
  1910. free(packet);
  1911. /*was: break;*/
  1912. *result = result_buf;
  1913. *h_errnop = NETDB_SUCCESS;
  1914. return NETDB_SUCCESS;
  1915. }
  1916. free(packet);
  1917. *h_errnop = HOST_NOT_FOUND;
  1918. return TRY_AGAIN;
  1919. }
  1920. /*
  1921. *result = result_buf;
  1922. *h_errnop = NETDB_SUCCESS;
  1923. return NETDB_SUCCESS;
  1924. */
  1925. }
  1926. libc_hidden_def(gethostbyname_r)
  1927. #endif
  1928. #ifdef L_gethostbyname2_r
  1929. int gethostbyname2_r(const char *name, int family,
  1930. struct hostent * result_buf,
  1931. char * buf, size_t buflen,
  1932. struct hostent ** result,
  1933. int * h_errnop)
  1934. {
  1935. #ifndef __UCLIBC_HAS_IPV6__
  1936. return family == (AF_INET)
  1937. ? gethostbyname_r(name, result_buf, buf, buflen, result, h_errnop)
  1938. : HOST_NOT_FOUND;
  1939. #else /* __UCLIBC_HAS_IPV6__ */
  1940. struct in6_addr *in;
  1941. struct in6_addr **addr_list;
  1942. unsigned char *packet;
  1943. struct resolv_answer a;
  1944. int i;
  1945. int nest = 0;
  1946. int __nameserversXX;
  1947. char ** __nameserverXX;
  1948. int wrong_af = 0;
  1949. if (family == AF_INET)
  1950. return gethostbyname_r(name, result_buf, buf, buflen, result, h_errnop);
  1951. if (family != AF_INET6)
  1952. return EINVAL;
  1953. __open_nameservers();
  1954. *result = NULL;
  1955. if (!name)
  1956. return EINVAL;
  1957. /* do /etc/hosts first */
  1958. {
  1959. int old_errno = errno; /* Save the old errno and reset errno */
  1960. __set_errno(0); /* to check for missing /etc/hosts. */
  1961. i = __get_hosts_byname_r(name, family, result_buf,
  1962. buf, buflen, result, h_errnop);
  1963. if (i == NETDB_SUCCESS) {
  1964. //FIXME: restore errno?
  1965. return i;
  1966. }
  1967. switch (*h_errnop) {
  1968. case HOST_NOT_FOUND:
  1969. wrong_af = (i == TRY_AGAIN);
  1970. case NO_ADDRESS:
  1971. break;
  1972. case NETDB_INTERNAL:
  1973. if (errno == ENOENT) {
  1974. break;
  1975. }
  1976. /* else fall through */
  1977. default:
  1978. return i;
  1979. }
  1980. __set_errno(old_errno);
  1981. }
  1982. DPRINTF("Nothing found in /etc/hosts\n");
  1983. *h_errnop = NETDB_INTERNAL;
  1984. if (buflen < sizeof(*in))
  1985. return ERANGE;
  1986. in = (struct in6_addr*)buf;
  1987. buf += sizeof(*in);
  1988. buflen -= sizeof(*in);
  1989. if (buflen < sizeof(*addr_list)*2)
  1990. return ERANGE;
  1991. addr_list = (struct in6_addr**)buf;
  1992. buf += sizeof(*addr_list)*2;
  1993. buflen -= sizeof(*addr_list)*2;
  1994. addr_list[0] = in;
  1995. addr_list[1] = 0;
  1996. if (buflen < 256)
  1997. return ERANGE;
  1998. strncpy(buf, name, buflen);
  1999. /* First check if this is already an address */
  2000. if (inet_pton(AF_INET6, name, in)) {
  2001. result_buf->h_name = buf;
  2002. result_buf->h_addrtype = AF_INET6;
  2003. result_buf->h_length = sizeof(*in);
  2004. result_buf->h_addr_list = (char **) addr_list;
  2005. *result = result_buf;
  2006. *h_errnop = NETDB_SUCCESS;
  2007. return NETDB_SUCCESS;
  2008. }
  2009. /* What if /etc/hosts has it but it's not IPv6?
  2010. * F.e. "127.0.0.1 localhost". We don't do DNS query for such hosts -
  2011. * "ping localhost" should be fast even if DNS server is down! */
  2012. if (wrong_af) {
  2013. *h_errnop = HOST_NOT_FOUND;
  2014. return TRY_AGAIN;
  2015. }
  2016. memset(&a, '\0', sizeof(a));
  2017. for (;;) {
  2018. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  2019. __nameserversXX = __nameservers;
  2020. __nameserverXX = __nameserver;
  2021. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  2022. i = __dns_lookup(buf, T_AAAA, __nameserversXX, __nameserverXX, &packet, &a);
  2023. if (i < 0) {
  2024. *h_errnop = HOST_NOT_FOUND;
  2025. return TRY_AGAIN;
  2026. }
  2027. strncpy(buf, a.dotted, buflen);
  2028. free(a.dotted);
  2029. if (a.atype == T_CNAME) { /* CNAME */
  2030. DPRINTF("Got a CNAME in gethostbyname()\n");
  2031. i = __decode_dotted(packet, a.rdoffset, buf, buflen);
  2032. free(packet);
  2033. if (i < 0) {
  2034. *h_errnop = NO_RECOVERY;
  2035. return -1;
  2036. }
  2037. if (++nest > MAX_RECURSE) {
  2038. *h_errnop = NO_RECOVERY;
  2039. return -1;
  2040. }
  2041. continue;
  2042. }
  2043. if (a.atype == T_AAAA) { /* ADDRESS */
  2044. memcpy(in, a.rdata, sizeof(*in));
  2045. result_buf->h_name = buf;
  2046. result_buf->h_addrtype = AF_INET6;
  2047. result_buf->h_length = sizeof(*in);
  2048. result_buf->h_addr_list = (char **) addr_list;
  2049. free(packet);
  2050. break;
  2051. }
  2052. free(packet);
  2053. *h_errnop = HOST_NOT_FOUND;
  2054. return TRY_AGAIN;
  2055. }
  2056. *result = result_buf;
  2057. *h_errnop = NETDB_SUCCESS;
  2058. return NETDB_SUCCESS;
  2059. #endif /* __UCLIBC_HAS_IPV6__ */
  2060. }
  2061. libc_hidden_def(gethostbyname2_r)
  2062. #endif
  2063. #ifdef L_gethostbyaddr_r
  2064. int gethostbyaddr_r(const void *addr, socklen_t len, int type,
  2065. struct hostent * result_buf,
  2066. char * buf, size_t buflen,
  2067. struct hostent ** result,
  2068. int * h_errnop)
  2069. {
  2070. struct in_addr *in;
  2071. struct in_addr **addr_list;
  2072. #ifdef __UCLIBC_HAS_IPV6__
  2073. char *qp;
  2074. size_t plen;
  2075. struct in6_addr *in6;
  2076. struct in6_addr **addr_list6;
  2077. #endif /* __UCLIBC_HAS_IPV6__ */
  2078. char **alias;
  2079. unsigned char *packet;
  2080. struct resolv_answer a;
  2081. int i;
  2082. int nest = 0;
  2083. int __nameserversXX;
  2084. char ** __nameserverXX;
  2085. *result = NULL;
  2086. if (!addr)
  2087. return EINVAL;
  2088. memset((char *) &a, '\0', sizeof(a));
  2089. switch (type) {
  2090. case AF_INET:
  2091. if (len != sizeof(struct in_addr))
  2092. return EINVAL;
  2093. break;
  2094. #ifdef __UCLIBC_HAS_IPV6__
  2095. case AF_INET6:
  2096. if (len != sizeof(struct in6_addr))
  2097. return EINVAL;
  2098. break;
  2099. #endif /* __UCLIBC_HAS_IPV6__ */
  2100. default:
  2101. return EINVAL;
  2102. }
  2103. /* do /etc/hosts first */
  2104. if ((i = __get_hosts_byaddr_r(addr, len, type, result_buf,
  2105. buf, buflen, result, h_errnop)) == 0)
  2106. return i;
  2107. switch (*h_errnop) {
  2108. case HOST_NOT_FOUND:
  2109. case NO_ADDRESS:
  2110. break;
  2111. default:
  2112. return i;
  2113. }
  2114. __open_nameservers();
  2115. #ifdef __UCLIBC_HAS_IPV6__
  2116. qp = buf;
  2117. plen = buflen;
  2118. #endif /* __UCLIBC_HAS_IPV6__ */
  2119. *h_errnop = NETDB_INTERNAL;
  2120. if (buflen < sizeof(*in))
  2121. return ERANGE;
  2122. in = (struct in_addr*)buf;
  2123. buf += sizeof(*in);
  2124. buflen -= sizeof(*in);
  2125. if (buflen < sizeof(*addr_list)*2)
  2126. return ERANGE;
  2127. addr_list = (struct in_addr**)buf;
  2128. buf += sizeof(*addr_list)*2;
  2129. buflen -= sizeof(*addr_list)*2;
  2130. if (buflen < sizeof(char *)*ALIAS_DIM)
  2131. return ERANGE;
  2132. alias = (char **)buf;
  2133. buf += sizeof(*alias)*ALIAS_DIM;
  2134. buflen -= sizeof(*alias)*ALIAS_DIM;
  2135. #ifdef __UCLIBC_HAS_IPV6__
  2136. if (plen < sizeof(*in6))
  2137. return ERANGE;
  2138. in6 = (struct in6_addr*)qp;
  2139. qp += sizeof(*in6);
  2140. plen -= sizeof(*in6);
  2141. if (plen < sizeof(*addr_list6)*2)
  2142. return ERANGE;
  2143. addr_list6 = (struct in6_addr**)qp;
  2144. qp += sizeof(*addr_list6)*2;
  2145. plen -= sizeof(*addr_list6)*2;
  2146. if (plen < buflen) {
  2147. buflen = plen;
  2148. buf = qp;
  2149. }
  2150. #endif /* __UCLIBC_HAS_IPV6__ */
  2151. if (buflen < 256)
  2152. return ERANGE;
  2153. if (type == AF_INET) {
  2154. unsigned char *tmp_addr = (unsigned char *)addr;
  2155. memcpy(&in->s_addr, addr, len);
  2156. addr_list[0] = in;
  2157. sprintf(buf, "%u.%u.%u.%u.in-addr.arpa",
  2158. tmp_addr[3], tmp_addr[2], tmp_addr[1], tmp_addr[0]);
  2159. #ifdef __UCLIBC_HAS_IPV6__
  2160. } else {
  2161. memcpy(in6->s6_addr, addr, len);
  2162. addr_list6[0] = in6;
  2163. qp = buf;
  2164. for (i = len - 1; i >= 0; i--) {
  2165. qp += sprintf(qp, "%x.%x.", in6->s6_addr[i] & 0xf,
  2166. (in6->s6_addr[i] >> 4) & 0xf);
  2167. }
  2168. strcpy(qp, "ip6.arpa");
  2169. #endif /* __UCLIBC_HAS_IPV6__ */
  2170. }
  2171. addr_list[1] = 0;
  2172. alias[0] = buf;
  2173. alias[1] = 0;
  2174. for (;;) {
  2175. __UCLIBC_MUTEX_LOCK(__resolv_lock);
  2176. __nameserversXX = __nameservers;
  2177. __nameserverXX = __nameserver;
  2178. __UCLIBC_MUTEX_UNLOCK(__resolv_lock);
  2179. i = __dns_lookup(buf, T_PTR, __nameserversXX, __nameserverXX, &packet, &a);
  2180. if (i < 0) {
  2181. *h_errnop = HOST_NOT_FOUND;
  2182. return TRY_AGAIN;
  2183. }
  2184. strncpy(buf, a.dotted, buflen);
  2185. free(a.dotted);
  2186. if (a.atype == T_CNAME) { /* CNAME */
  2187. DPRINTF("Got a CNAME in gethostbyaddr()\n");
  2188. i = __decode_dotted(packet, a.rdoffset, buf, buflen);
  2189. free(packet);
  2190. if (i < 0) {
  2191. *h_errnop = NO_RECOVERY;
  2192. return -1;
  2193. }
  2194. if (++nest > MAX_RECURSE) {
  2195. *h_errnop = NO_RECOVERY;
  2196. return -1;
  2197. }
  2198. continue;
  2199. }
  2200. if (a.atype == T_PTR) { /* ADDRESS */
  2201. i = __decode_dotted(packet, a.rdoffset, buf, buflen);
  2202. free(packet);
  2203. result_buf->h_name = buf;
  2204. result_buf->h_addrtype = type;
  2205. if (type == AF_INET) {
  2206. result_buf->h_length = sizeof(*in);
  2207. #ifdef __UCLIBC_HAS_IPV6__
  2208. } else {
  2209. result_buf->h_length = sizeof(*in6);
  2210. #endif /* __UCLIBC_HAS_IPV6__ */
  2211. }
  2212. result_buf->h_addr_list = (char **) addr_list;
  2213. result_buf->h_aliases = alias;
  2214. break;
  2215. }
  2216. free(packet);
  2217. *h_errnop = NO_ADDRESS;
  2218. return TRY_AGAIN;
  2219. }
  2220. *result = result_buf;
  2221. *h_errnop = NETDB_SUCCESS;
  2222. return NETDB_SUCCESS;
  2223. }
  2224. libc_hidden_def(gethostbyaddr_r)
  2225. #endif
  2226. #ifdef L_res_comp
  2227. /*
  2228. * Expand compressed domain name 'comp_dn' to full domain name.
  2229. * 'msg' is a pointer to the begining of the message,
  2230. * 'eomorig' points to the first location after the message,
  2231. * 'exp_dn' is a pointer to a buffer of size 'length' for the result.
  2232. * Return size of compressed name or -1 if there was an error.
  2233. */
  2234. int __dn_expand(const u_char *msg, const u_char *eom, const u_char *src,
  2235. char *dst, int dstsiz)
  2236. {
  2237. int n = ns_name_uncompress(msg, eom, src, dst, (size_t)dstsiz);
  2238. if (n > 0 && dst[0] == '.')
  2239. dst[0] = '\0';
  2240. return n;
  2241. }
  2242. #endif /* L_res_comp */
  2243. #ifdef L_ns_name
  2244. /*
  2245. * printable(ch)
  2246. * Thinking in noninternationalized USASCII (per the DNS spec),
  2247. * is this character visible and not a space when printed ?
  2248. * return:
  2249. * boolean.
  2250. */
  2251. static int printable(int ch)
  2252. {
  2253. return (ch > 0x20 && ch < 0x7f);
  2254. }
  2255. /*
  2256. * special(ch)
  2257. * Thinking in noninternationalized USASCII (per the DNS spec),
  2258. * is this characted special ("in need of quoting") ?
  2259. * return:
  2260. * boolean.
  2261. */
  2262. static int special(int ch)
  2263. {
  2264. switch (ch) {
  2265. case 0x22: /* '"' */
  2266. case 0x2E: /* '.' */
  2267. case 0x3B: /* ';' */
  2268. case 0x5C: /* '\\' */
  2269. /* Special modifiers in zone files. */
  2270. case 0x40: /* '@' */
  2271. case 0x24: /* '$' */
  2272. return 1;
  2273. default:
  2274. return 0;
  2275. }
  2276. }
  2277. /*
  2278. * ns_name_uncompress(msg, eom, src, dst, dstsiz)
  2279. * Expand compressed domain name to presentation format.
  2280. * return:
  2281. * Number of bytes read out of `src', or -1 (with errno set).
  2282. * note:
  2283. * Root domain returns as "." not "".
  2284. */
  2285. int ns_name_uncompress(const u_char *msg, const u_char *eom,
  2286. const u_char *src, char *dst, size_t dstsiz)
  2287. {
  2288. u_char tmp[NS_MAXCDNAME];
  2289. int n;
  2290. if ((n = ns_name_unpack(msg, eom, src, tmp, sizeof tmp)) == -1)
  2291. return -1;
  2292. if (ns_name_ntop(tmp, dst, dstsiz) == -1)
  2293. return -1;
  2294. return n;
  2295. }
  2296. libc_hidden_def(ns_name_uncompress)
  2297. /*
  2298. * ns_name_ntop(src, dst, dstsiz)
  2299. * Convert an encoded domain name to printable ascii as per RFC1035.
  2300. * return:
  2301. * Number of bytes written to buffer, or -1 (with errno set)
  2302. * notes:
  2303. * The root is returned as "."
  2304. * All other domains are returned in non absolute form
  2305. */
  2306. int ns_name_ntop(const u_char *src, char *dst, size_t dstsiz)
  2307. {
  2308. static const char digits[] = "0123456789";
  2309. const u_char *cp;
  2310. char *dn, *eom;
  2311. u_char c;
  2312. u_int n;
  2313. cp = src;
  2314. dn = dst;
  2315. eom = dst + dstsiz;
  2316. while ((n = *cp++) != 0) {
  2317. if ((n & NS_CMPRSFLGS) != 0) {
  2318. /* Some kind of compression pointer. */
  2319. __set_errno(EMSGSIZE);
  2320. return -1;
  2321. }
  2322. if (dn != dst) {
  2323. if (dn >= eom) {
  2324. __set_errno(EMSGSIZE);
  2325. return -1;
  2326. }
  2327. *dn++ = '.';
  2328. }
  2329. if (dn + n >= eom) {
  2330. __set_errno(EMSGSIZE);
  2331. return -1;
  2332. }
  2333. for ((void)NULL; n > 0; n--) {
  2334. c = *cp++;
  2335. if (special(c)) {
  2336. if (dn + 1 >= eom) {
  2337. __set_errno(EMSGSIZE);
  2338. return -1;
  2339. }
  2340. *dn++ = '\\';
  2341. *dn++ = (char)c;
  2342. } else if (!printable(c)) {
  2343. if (dn + 3 >= eom) {
  2344. __set_errno(EMSGSIZE);
  2345. return -1;
  2346. }
  2347. *dn++ = '\\';
  2348. *dn++ = digits[c / 100];
  2349. *dn++ = digits[(c % 100) / 10];
  2350. *dn++ = digits[c % 10];
  2351. } else {
  2352. if (dn >= eom) {
  2353. __set_errno(EMSGSIZE);
  2354. return -1;
  2355. }
  2356. *dn++ = (char)c;
  2357. }
  2358. }
  2359. }
  2360. if (dn == dst) {
  2361. if (dn >= eom) {
  2362. __set_errno(EMSGSIZE);
  2363. return -1;
  2364. }
  2365. *dn++ = '.';
  2366. }
  2367. if (dn >= eom) {
  2368. __set_errno(EMSGSIZE);
  2369. return -1;
  2370. }
  2371. *dn++ = '\0';
  2372. return (dn - dst);
  2373. }
  2374. libc_hidden_def(ns_name_ntop)
  2375. /*
  2376. * ns_name_unpack(msg, eom, src, dst, dstsiz)
  2377. * Unpack a domain name from a message, source may be compressed.
  2378. * return:
  2379. * -1 if it fails, or consumed octets if it succeeds.
  2380. */
  2381. int ns_name_unpack(const u_char *msg, const u_char *eom, const u_char *src,
  2382. u_char *dst, size_t dstsiz)
  2383. {
  2384. const u_char *srcp, *dstlim;
  2385. u_char *dstp;
  2386. int n, len, checked;
  2387. len = -1;
  2388. checked = 0;
  2389. dstp = dst;
  2390. srcp = src;
  2391. dstlim = dst + dstsiz;
  2392. if (srcp < msg || srcp >= eom) {
  2393. __set_errno(EMSGSIZE);
  2394. return -1;
  2395. }
  2396. /* Fetch next label in domain name. */
  2397. while ((n = *srcp++) != 0) {
  2398. /* Check for indirection. */
  2399. switch (n & NS_CMPRSFLGS) {
  2400. case 0:
  2401. /* Limit checks. */
  2402. if (dstp + n + 1 >= dstlim || srcp + n >= eom) {
  2403. __set_errno(EMSGSIZE);
  2404. return -1;
  2405. }
  2406. checked += n + 1;
  2407. *dstp++ = n;
  2408. memcpy(dstp, srcp, n);
  2409. dstp += n;
  2410. srcp += n;
  2411. break;
  2412. case NS_CMPRSFLGS:
  2413. if (srcp >= eom) {
  2414. __set_errno(EMSGSIZE);
  2415. return -1;
  2416. }
  2417. if (len < 0)
  2418. len = srcp - src + 1;
  2419. srcp = msg + (((n & 0x3f) << 8) | (*srcp & 0xff));
  2420. if (srcp < msg || srcp >= eom) { /* Out of range. */
  2421. __set_errno(EMSGSIZE);
  2422. return -1;
  2423. }
  2424. checked += 2;
  2425. /*
  2426. * Check for loops in the compressed name;
  2427. * if we've looked at the whole message,
  2428. * there must be a loop.
  2429. */
  2430. if (checked >= eom - msg) {
  2431. __set_errno(EMSGSIZE);
  2432. return -1;
  2433. }
  2434. break;
  2435. default:
  2436. __set_errno(EMSGSIZE);
  2437. return -1; /* flag error */
  2438. }
  2439. }
  2440. *dstp = '\0';
  2441. if (len < 0)
  2442. len = srcp - src;
  2443. return len;
  2444. }
  2445. libc_hidden_def(ns_name_unpack)
  2446. #endif /* L_ns_name */
  2447. /* vi: set sw=4 ts=4: */