res_debug.c revision 1.12 1 /* $NetBSD: res_debug.c,v 1.12 2012/03/13 21:13:43 christos Exp $ */
2
3 /*
4 * Portions Copyright (C) 2004, 2005, 2008, 2009 Internet Systems Consortium, Inc. ("ISC")
5 * Portions Copyright (C) 1996-2003 Internet Software Consortium.
6 *
7 * Permission to use, copy, modify, and/or distribute this software for any
8 * purpose with or without fee is hereby granted, provided that the above
9 * copyright notice and this permission notice appear in all copies.
10 *
11 * THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES WITH
12 * REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
13 * AND FITNESS. IN NO EVENT SHALL ISC BE LIABLE FOR ANY SPECIAL, DIRECT,
14 * INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
15 * LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE
16 * OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
17 * PERFORMANCE OF THIS SOFTWARE.
18 */
19
20 /*
21 * Copyright (c) 1985
22 * The Regents of the University of California. All rights reserved.
23 *
24 * Redistribution and use in source and binary forms, with or without
25 * modification, are permitted provided that the following conditions
26 * are met:
27 * 1. Redistributions of source code must retain the above copyright
28 * notice, this list of conditions and the following disclaimer.
29 * 2. Redistributions in binary form must reproduce the above copyright
30 * notice, this list of conditions and the following disclaimer in the
31 * documentation and/or other materials provided with the distribution.
32 * 3. All advertising materials mentioning features or use of this software
33 * must display the following acknowledgement:
34 * This product includes software developed by the University of
35 * California, Berkeley and its contributors.
36 * 4. Neither the name of the University nor the names of its contributors
37 * may be used to endorse or promote products derived from this software
38 * without specific prior written permission.
39 *
40 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
41 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
43 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
44 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
45 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
46 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
48 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
49 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
50 * SUCH DAMAGE.
51 */
52
53 /*
54 * Portions Copyright (c) 1993 by Digital Equipment Corporation.
55 *
56 * Permission to use, copy, modify, and distribute this software for any
57 * purpose with or without fee is hereby granted, provided that the above
58 * copyright notice and this permission notice appear in all copies, and that
59 * the name of Digital Equipment Corporation not be used in advertising or
60 * publicity pertaining to distribution of the document or software without
61 * specific, written prior permission.
62 *
63 * THE SOFTWARE IS PROVIDED "AS IS" AND DIGITAL EQUIPMENT CORP. DISCLAIMS ALL
64 * WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES
65 * OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL DIGITAL EQUIPMENT
66 * CORPORATION BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
67 * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
68 * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS
69 * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
70 * SOFTWARE.
71 */
72
73 /*
74 * Portions Copyright (c) 1995 by International Business Machines, Inc.
75 *
76 * International Business Machines, Inc. (hereinafter called IBM) grants
77 * permission under its copyrights to use, copy, modify, and distribute this
78 * Software with or without fee, provided that the above copyright notice and
79 * all paragraphs of this notice appear in all copies, and that the name of IBM
80 * not be used in connection with the marketing of any product incorporating
81 * the Software or modifications thereof, without specific, written prior
82 * permission.
83 *
84 * To the extent it has a right to do so, IBM grants an immunity from suit
85 * under its patents, if any, for the use, sale or manufacture of products to
86 * the extent that such products are used for performing Domain Name System
87 * dynamic updates in TCP/IP networks by means of the Software. No immunity is
88 * granted for any product per se or for any other function of any product.
89 *
90 * THE SOFTWARE IS PROVIDED "AS IS", AND IBM DISCLAIMS ALL WARRANTIES,
91 * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
92 * PARTICULAR PURPOSE. IN NO EVENT SHALL IBM BE LIABLE FOR ANY SPECIAL,
93 * DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER ARISING
94 * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE, EVEN
95 * IF IBM IS APPRISED OF THE POSSIBILITY OF SUCH DAMAGES.
96 */
97
98 #include <sys/cdefs.h>
99 #if defined(LIBC_SCCS) && !defined(lint)
100 #ifdef notdef
101 static const char sccsid[] = "@(#)res_debug.c 8.1 (Berkeley) 6/4/93";
102 static const char rcsid[] = "Id: res_debug.c,v 1.19 2009/02/26 11:20:20 tbox Exp";
103 #else
104 __RCSID("$NetBSD: res_debug.c,v 1.12 2012/03/13 21:13:43 christos Exp $");
105 #endif
106 #endif /* LIBC_SCCS and not lint */
107
108 #include "port_before.h"
109
110 #include "namespace.h"
111 #include <sys/types.h>
112 #include <sys/param.h>
113 #include <sys/socket.h>
114
115 #include <netinet/in.h>
116 #include <arpa/inet.h>
117 #include <arpa/nameser.h>
118
119 #include <assert.h>
120 #include <ctype.h>
121 #include <errno.h>
122 #include <math.h>
123 #include <netdb.h>
124 #include <resolv.h>
125 #include <resolv_mt.h>
126 #include <stdio.h>
127 #include <stdlib.h>
128 #include <string.h>
129 #include <time.h>
130
131 #include "port_after.h"
132
133 #ifdef SPRINTF_CHAR
134 # define SPRINTF(x) strlen(sprintf/**/x)
135 #else
136 # define SPRINTF(x) sprintf x
137 #endif
138
139 extern const char *_res_opcodes[];
140 extern const char *_res_sectioncodes[];
141
142 #if 0
143 #ifdef __weak_alias
144 __weak_alias(res_pquery,__res_pquery)
145 __weak_alias(res_nametoclass,__res_nametoclass)
146 __weak_alias(res_nametotype,__res_nametotype)
147 #endif
148 #endif
149
150 #ifndef _LIBC
151 /*%
152 * Print the current options.
153 */
154 void
155 fp_resstat(const res_state statp, FILE *file) {
156 u_long mask;
157
158 fprintf(file, ";; res options:");
159 for (mask = 1; mask != 0U; mask <<= 1)
160 if (statp->options & mask)
161 fprintf(file, " %s", p_option(mask));
162 putc('\n', file);
163 }
164 #endif
165
166 static void
167 do_section(const res_state statp,
168 ns_msg *handle, ns_sect section,
169 int pflag, FILE *file)
170 {
171 int n, sflag, rrnum;
172 static int buflen = 2048;
173 char *buf;
174 ns_opcode opcode;
175 ns_rr rr;
176
177 /*
178 * Print answer records.
179 */
180 sflag = (int)(statp->pfcode & pflag);
181 if (statp->pfcode && !sflag)
182 return;
183
184 buf = malloc((size_t)buflen);
185 if (buf == NULL) {
186 fprintf(file, ";; memory allocation failure\n");
187 return;
188 }
189
190 opcode = (ns_opcode) ns_msg_getflag(*handle, ns_f_opcode);
191 rrnum = 0;
192 for (;;) {
193 if (ns_parserr(handle, section, rrnum, &rr)) {
194 if (errno != ENODEV)
195 fprintf(file, ";; ns_parserr: %s\n",
196 strerror(errno));
197 else if (rrnum > 0 && sflag != 0 &&
198 (statp->pfcode & RES_PRF_HEAD1))
199 putc('\n', file);
200 goto cleanup;
201 }
202 if (rrnum == 0 && sflag != 0 && (statp->pfcode & RES_PRF_HEAD1))
203 fprintf(file, ";; %s SECTION:\n",
204 p_section(section, opcode));
205 if (section == ns_s_qd)
206 fprintf(file, ";;\t%s, type = %s, class = %s\n",
207 ns_rr_name(rr),
208 p_type(ns_rr_type(rr)),
209 p_class(ns_rr_class(rr)));
210 else if (section == ns_s_ar && ns_rr_type(rr) == ns_t_opt) {
211 size_t rdatalen, ttl;
212 uint16_t optcode, optlen;
213
214 rdatalen = ns_rr_rdlen(rr);
215 ttl = ns_rr_ttl(rr);
216
217 fprintf(file,
218 "; EDNS: version: %zu, udp=%u, flags=%04zx\n",
219 (ttl>>16)&0xff, ns_rr_class(rr), ttl&0xffff);
220
221 while (rdatalen >= 4) {
222 const u_char *cp = ns_rr_rdata(rr);
223 int i;
224
225 GETSHORT(optcode, cp);
226 GETSHORT(optlen, cp);
227
228 if (optcode == NS_OPT_NSID) {
229 fputs("; NSID: ", file);
230 if (optlen == 0) {
231 fputs("; NSID\n", file);
232 } else {
233 fputs("; NSID: ", file);
234 for (i = 0; i < optlen; i++)
235 fprintf(file, "%02x ",
236 cp[i]);
237 fputs(" (",file);
238 for (i = 0; i < optlen; i++)
239 fprintf(file, "%c",
240 isprint(cp[i])?
241 cp[i] : '.');
242 fputs(")\n", file);
243 }
244 } else {
245 if (optlen == 0) {
246 fprintf(file, "; OPT=%u\n",
247 optcode);
248 } else {
249 fprintf(file, "; OPT=%u: ",
250 optcode);
251 for (i = 0; i < optlen; i++)
252 fprintf(file, "%02x ",
253 cp[i]);
254 fputs(" (",file);
255 for (i = 0; i < optlen; i++)
256 fprintf(file, "%c",
257 isprint(cp[i]) ?
258 cp[i] : '.');
259 fputs(")\n", file);
260 }
261 }
262 rdatalen -= 4 + optlen;
263 }
264 } else {
265 n = ns_sprintrr(handle, &rr, NULL, NULL,
266 buf, (u_int)buflen);
267 if (n < 0) {
268 if (errno == ENOSPC) {
269 free(buf);
270 buf = NULL;
271 if (buflen < 131072)
272 buf = malloc((size_t)(buflen += 1024));
273 if (buf == NULL) {
274 fprintf(file,
275 ";; memory allocation failure\n");
276 return;
277 }
278 continue;
279 }
280 fprintf(file, ";; ns_sprintrr: %s\n",
281 strerror(errno));
282 goto cleanup;
283 }
284 fputs(buf, file);
285 fputc('\n', file);
286 }
287 rrnum++;
288 }
289 cleanup:
290 if (buf != NULL)
291 free(buf);
292 }
293
294 /*%
295 * Print the contents of a query.
296 * This is intended to be primarily a debugging routine.
297 */
298 void
299 res_pquery(const res_state statp, const u_char *msg, int len, FILE *file) {
300 ns_msg handle;
301 int qdcount, ancount, nscount, arcount;
302 u_int opcode, rcode, id;
303
304 if (ns_initparse(msg, len, &handle) < 0) {
305 fprintf(file, ";; ns_initparse: %s\n", strerror(errno));
306 return;
307 }
308 opcode = ns_msg_getflag(handle, ns_f_opcode);
309 rcode = ns_msg_getflag(handle, ns_f_rcode);
310 id = ns_msg_id(handle);
311 qdcount = ns_msg_count(handle, ns_s_qd);
312 ancount = ns_msg_count(handle, ns_s_an);
313 nscount = ns_msg_count(handle, ns_s_ns);
314 arcount = ns_msg_count(handle, ns_s_ar);
315
316 /*
317 * Print header fields.
318 */
319 if ((!statp->pfcode) || (statp->pfcode & RES_PRF_HEADX) || rcode)
320 fprintf(file,
321 ";; ->>HEADER<<- opcode: %s, status: %s, id: %d\n",
322 _res_opcodes[opcode], p_rcode((int)rcode), id);
323 if ((!statp->pfcode) || (statp->pfcode & RES_PRF_HEADX))
324 putc(';', file);
325 if ((!statp->pfcode) || (statp->pfcode & RES_PRF_HEAD2)) {
326 fprintf(file, "; flags:");
327 if (ns_msg_getflag(handle, ns_f_qr))
328 fprintf(file, " qr");
329 if (ns_msg_getflag(handle, ns_f_aa))
330 fprintf(file, " aa");
331 if (ns_msg_getflag(handle, ns_f_tc))
332 fprintf(file, " tc");
333 if (ns_msg_getflag(handle, ns_f_rd))
334 fprintf(file, " rd");
335 if (ns_msg_getflag(handle, ns_f_ra))
336 fprintf(file, " ra");
337 if (ns_msg_getflag(handle, ns_f_z))
338 fprintf(file, " ??");
339 if (ns_msg_getflag(handle, ns_f_ad))
340 fprintf(file, " ad");
341 if (ns_msg_getflag(handle, ns_f_cd))
342 fprintf(file, " cd");
343 }
344 if ((!statp->pfcode) || (statp->pfcode & RES_PRF_HEAD1)) {
345 fprintf(file, "; %s: %d",
346 p_section(ns_s_qd, (int)opcode), qdcount);
347 fprintf(file, ", %s: %d",
348 p_section(ns_s_an, (int)opcode), ancount);
349 fprintf(file, ", %s: %d",
350 p_section(ns_s_ns, (int)opcode), nscount);
351 fprintf(file, ", %s: %d",
352 p_section(ns_s_ar, (int)opcode), arcount);
353 }
354 if ((!statp->pfcode) || (statp->pfcode &
355 (RES_PRF_HEADX | RES_PRF_HEAD2 | RES_PRF_HEAD1))) {
356 putc('\n',file);
357 }
358 /*
359 * Print the various sections.
360 */
361 do_section(statp, &handle, ns_s_qd, RES_PRF_QUES, file);
362 do_section(statp, &handle, ns_s_an, RES_PRF_ANS, file);
363 do_section(statp, &handle, ns_s_ns, RES_PRF_AUTH, file);
364 do_section(statp, &handle, ns_s_ar, RES_PRF_ADD, file);
365 if (qdcount == 0 && ancount == 0 &&
366 nscount == 0 && arcount == 0)
367 putc('\n', file);
368 }
369
370 const u_char *
371 p_cdnname(const u_char *cp, const u_char *msg, int len, FILE *file) {
372 char name[MAXDNAME];
373 int n;
374
375 if ((n = dn_expand(msg, msg + len, cp, name, (int)sizeof name)) < 0)
376 return (NULL);
377 if (name[0] == '\0')
378 putc('.', file);
379 else
380 fputs(name, file);
381 return (cp + n);
382 }
383
384 const u_char *
385 p_cdname(const u_char *cp, const u_char *msg, FILE *file) {
386 return (p_cdnname(cp, msg, PACKETSZ, file));
387 }
388
389 /*%
390 * Return a fully-qualified domain name from a compressed name (with
391 length supplied). */
392
393 const u_char *
394 p_fqnname(cp, msg, msglen, name, namelen)
395 const u_char *cp, *msg;
396 int msglen;
397 char *name;
398 int namelen;
399 {
400 int n;
401 size_t newlen;
402
403 if ((n = dn_expand(msg, cp + msglen, cp, name, namelen)) < 0)
404 return (NULL);
405 newlen = strlen(name);
406 if (newlen == 0 || name[newlen - 1] != '.') {
407 if ((int)newlen + 1 >= namelen) /*%< Lack space for final dot */
408 return (NULL);
409 else
410 strcpy(name + newlen, ".");
411 }
412 return (cp + n);
413 }
414
415 /* XXX: the rest of these functions need to become length-limited, too. */
416
417 const u_char *
418 p_fqname(const u_char *cp, const u_char *msg, FILE *file) {
419 char name[MAXDNAME];
420 const u_char *n;
421
422 n = p_fqnname(cp, msg, MAXCDNAME, name, (int)sizeof name);
423 if (n == NULL)
424 return (NULL);
425 fputs(name, file);
426 return (n);
427 }
428
429 /*%
430 * Names of RR classes and qclasses. Classes and qclasses are the same, except
431 * that C_ANY is a qclass but not a class. (You can ask for records of class
432 * C_ANY, but you can't have any records of that class in the database.)
433 */
434 const struct res_sym __p_class_syms[] = {
435 {C_IN, "IN", (char *)0},
436 {C_CHAOS, "CH", (char *)0},
437 {C_CHAOS, "CHAOS", (char *)0},
438 {C_HS, "HS", (char *)0},
439 {C_HS, "HESIOD", (char *)0},
440 {C_ANY, "ANY", (char *)0},
441 {C_NONE, "NONE", (char *)0},
442 {C_IN, (char *)0, (char *)0}
443 };
444
445 /*%
446 * Names of message sections.
447 */
448 const struct res_sym __p_default_section_syms[] = {
449 {ns_s_qd, "QUERY", (char *)0},
450 {ns_s_an, "ANSWER", (char *)0},
451 {ns_s_ns, "AUTHORITY", (char *)0},
452 {ns_s_ar, "ADDITIONAL", (char *)0},
453 {0, (char *)0, (char *)0}
454 };
455
456 const struct res_sym __p_update_section_syms[] = {
457 {S_ZONE, "ZONE", (char *)0},
458 {S_PREREQ, "PREREQUISITE", (char *)0},
459 {S_UPDATE, "UPDATE", (char *)0},
460 {S_ADDT, "ADDITIONAL", (char *)0},
461 {0, (char *)0, (char *)0}
462 };
463
464 const struct res_sym __p_key_syms[] = {
465 {NS_ALG_MD5RSA, "RSA", "RSA KEY with MD5 hash"},
466 {NS_ALG_DH, "DH", "Diffie Hellman"},
467 {NS_ALG_DSA, "DSA", "Digital Signature Algorithm"},
468 {NS_ALG_EXPIRE_ONLY, "EXPIREONLY", "No algorithm"},
469 {NS_ALG_PRIVATE_OID, "PRIVATE", "Algorithm obtained from OID"},
470 {0, NULL, NULL}
471 };
472
473 const struct res_sym __p_cert_syms[] = {
474 {cert_t_pkix, "PKIX", "PKIX (X.509v3) Certificate"},
475 {cert_t_spki, "SPKI", "SPKI certificate"},
476 {cert_t_pgp, "PGP", "PGP certificate"},
477 {cert_t_url, "URL", "URL Private"},
478 {cert_t_oid, "OID", "OID Private"},
479 {0, NULL, NULL}
480 };
481
482 /*%
483 * Names of RR types and qtypes. Types and qtypes are the same, except
484 * that T_ANY is a qtype but not a type. (You can ask for records of type
485 * T_ANY, but you can't have any records of that type in the database.)
486 */
487 const struct res_sym __p_type_syms[] = {
488 {ns_t_a, "A", "address"},
489 {ns_t_ns, "NS", "name server"},
490 {ns_t_md, "MD", "mail destination (deprecated)"},
491 {ns_t_mf, "MF", "mail forwarder (deprecated)"},
492 {ns_t_cname, "CNAME", "canonical name"},
493 {ns_t_soa, "SOA", "start of authority"},
494 {ns_t_mb, "MB", "mailbox"},
495 {ns_t_mg, "MG", "mail group member"},
496 {ns_t_mr, "MR", "mail rename"},
497 {ns_t_null, "NULL", "null"},
498 {ns_t_wks, "WKS", "well-known service (deprecated)"},
499 {ns_t_ptr, "PTR", "domain name pointer"},
500 {ns_t_hinfo, "HINFO", "host information"},
501 {ns_t_minfo, "MINFO", "mailbox information"},
502 {ns_t_mx, "MX", "mail exchanger"},
503 {ns_t_txt, "TXT", "text"},
504 {ns_t_rp, "RP", "responsible person"},
505 {ns_t_afsdb, "AFSDB", "DCE or AFS server"},
506 {ns_t_x25, "X25", "X25 address"},
507 {ns_t_isdn, "ISDN", "ISDN address"},
508 {ns_t_rt, "RT", "router"},
509 {ns_t_nsap, "NSAP", "nsap address"},
510 {ns_t_nsap_ptr, "NSAP_PTR", "domain name pointer"},
511 {ns_t_sig, "SIG", "signature"},
512 {ns_t_key, "KEY", "key"},
513 {ns_t_px, "PX", "mapping information"},
514 {ns_t_gpos, "GPOS", "geographical position (withdrawn)"},
515 {ns_t_aaaa, "AAAA", "IPv6 address"},
516 {ns_t_loc, "LOC", "location"},
517 {ns_t_nxt, "NXT", "next valid name (unimplemented)"},
518 {ns_t_eid, "EID", "endpoint identifier (unimplemented)"},
519 {ns_t_nimloc, "NIMLOC", "NIMROD locator (unimplemented)"},
520 {ns_t_srv, "SRV", "server selection"},
521 {ns_t_atma, "ATMA", "ATM address (unimplemented)"},
522 {ns_t_naptr, "NAPTR", "naptr"},
523 {ns_t_kx, "KX", "key exchange"},
524 {ns_t_cert, "CERT", "certificate"},
525 {ns_t_a6, "A", "IPv6 address (experminental)"},
526 {ns_t_dname, "DNAME", "non-terminal redirection"},
527 {ns_t_opt, "OPT", "opt"},
528 {ns_t_apl, "apl", "apl"},
529 {ns_t_ds, "DS", "delegation signer"},
530 {ns_t_sshfp, "SSFP", "SSH fingerprint"},
531 {ns_t_ipseckey, "IPSECKEY", "IPSEC key"},
532 {ns_t_rrsig, "RRSIG", "rrsig"},
533 {ns_t_nsec, "NSEC", "nsec"},
534 {ns_t_dnskey, "DNSKEY", "DNS key"},
535 {ns_t_dhcid, "DHCID", "dynamic host configuration identifier"},
536 {ns_t_nsec3, "NSEC3", "nsec3"},
537 {ns_t_nsec3param, "NSEC3PARAM", "NSEC3 parameters"},
538 {ns_t_hip, "HIP", "host identity protocol"},
539 {ns_t_spf, "SPF", "sender policy framework"},
540 {ns_t_tkey, "TKEY", "tkey"},
541 {ns_t_tsig, "TSIG", "transaction signature"},
542 {ns_t_ixfr, "IXFR", "incremental zone transfer"},
543 {ns_t_axfr, "AXFR", "zone transfer"},
544 {ns_t_zxfr, "ZXFR", "compressed zone transfer"},
545 {ns_t_mailb, "MAILB", "mailbox-related data (deprecated)"},
546 {ns_t_maila, "MAILA", "mail agent (deprecated)"},
547 {ns_t_naptr, "NAPTR", "URN Naming Authority"},
548 {ns_t_kx, "KX", "Key Exchange"},
549 {ns_t_cert, "CERT", "Certificate"},
550 {ns_t_a6, "A6", "IPv6 Address"},
551 {ns_t_dname, "DNAME", "dname"},
552 {ns_t_sink, "SINK", "Kitchen Sink (experimental)"},
553 {ns_t_opt, "OPT", "EDNS Options"},
554 {ns_t_any, "ANY", "\"any\""},
555 {ns_t_dlv, "DLV", "DNSSEC look-aside validation"},
556 {0, NULL, NULL}
557 };
558
559 /*%
560 * Names of DNS rcodes.
561 */
562 const struct res_sym __p_rcode_syms[] = {
563 {ns_r_noerror, "NOERROR", "no error"},
564 {ns_r_formerr, "FORMERR", "format error"},
565 {ns_r_servfail, "SERVFAIL", "server failed"},
566 {ns_r_nxdomain, "NXDOMAIN", "no such domain name"},
567 {ns_r_notimpl, "NOTIMP", "not implemented"},
568 {ns_r_refused, "REFUSED", "refused"},
569 {ns_r_yxdomain, "YXDOMAIN", "domain name exists"},
570 {ns_r_yxrrset, "YXRRSET", "rrset exists"},
571 {ns_r_nxrrset, "NXRRSET", "rrset doesn't exist"},
572 {ns_r_notauth, "NOTAUTH", "not authoritative"},
573 {ns_r_notzone, "NOTZONE", "Not in zone"},
574 {ns_r_max, "", ""},
575 {ns_r_badsig, "BADSIG", "bad signature"},
576 {ns_r_badkey, "BADKEY", "bad key"},
577 {ns_r_badtime, "BADTIME", "bad time"},
578 {0, NULL, NULL}
579 };
580
581 int
582 sym_ston(const struct res_sym *syms, const char *name, int *success) {
583 for (; syms->name != 0; syms++) {
584 if (strcasecmp (name, syms->name) == 0) {
585 if (success)
586 *success = 1;
587 return (syms->number);
588 }
589 }
590 if (success)
591 *success = 0;
592 return (syms->number); /*%< The default value. */
593 }
594
595 const char *
596 sym_ntos(const struct res_sym *syms, int number, int *success) {
597 char *unname = sym_ntos_unname;
598
599 for (; syms->name != 0; syms++) {
600 if (number == syms->number) {
601 if (success)
602 *success = 1;
603 return (syms->name);
604 }
605 }
606
607 sprintf(unname, "%d", number); /*%< XXX nonreentrant */
608 if (success)
609 *success = 0;
610 return (unname);
611 }
612
613 const char *
614 sym_ntop(const struct res_sym *syms, int number, int *success) {
615 char *unname = sym_ntop_unname;
616
617 for (; syms->name != 0; syms++) {
618 if (number == syms->number) {
619 if (success)
620 *success = 1;
621 return (syms->humanname);
622 }
623 }
624 sprintf(unname, "%d", number); /*%< XXX nonreentrant */
625 if (success)
626 *success = 0;
627 return (unname);
628 }
629
630 /*%
631 * Return a string for the type.
632 */
633 const char *
634 p_type(int type) {
635 int success;
636 const char *result;
637 static char typebuf[20];
638
639 result = sym_ntos(__p_type_syms, type, &success);
640 if (success)
641 return (result);
642 if (type < 0 || type > 0xffff)
643 return ("BADTYPE");
644 sprintf(typebuf, "TYPE%d", type);
645 return (typebuf);
646 }
647
648 /*%
649 * Return a string for the type.
650 */
651 const char *
652 p_section(int section, int opcode) {
653 const struct res_sym *symbols;
654
655 switch (opcode) {
656 case ns_o_update:
657 symbols = __p_update_section_syms;
658 break;
659 default:
660 symbols = __p_default_section_syms;
661 break;
662 }
663 return (sym_ntos(symbols, section, (int *)0));
664 }
665
666 /*%
667 * Return a mnemonic for class.
668 */
669 const char *
670 p_class(int class) {
671 int success;
672 const char *result;
673 static char classbuf[20];
674
675 result = sym_ntos(__p_class_syms, class, &success);
676 if (success)
677 return (result);
678 if (class < 0 || class > 0xffff)
679 return ("BADCLASS");
680 sprintf(classbuf, "CLASS%d", class);
681 return (classbuf);
682 }
683
684 /*%
685 * Return a mnemonic for an option
686 */
687 const char *
688 p_option(u_long option) {
689 char *nbuf = p_option_nbuf;
690
691 switch (option) {
692 case RES_INIT: return "init";
693 case RES_DEBUG: return "debug";
694 case RES_AAONLY: return "aaonly(unimpl)";
695 case RES_USEVC: return "usevc";
696 case RES_PRIMARY: return "primry(unimpl)";
697 case RES_IGNTC: return "igntc";
698 case RES_RECURSE: return "recurs";
699 case RES_DEFNAMES: return "defnam";
700 case RES_STAYOPEN: return "styopn";
701 case RES_DNSRCH: return "dnsrch";
702 case RES_INSECURE1: return "insecure1";
703 case RES_INSECURE2: return "insecure2";
704 case RES_NOALIASES: return "noaliases";
705 case RES_USE_INET6: return "inet6";
706 #ifdef RES_USE_EDNS0 /*%< KAME extension */
707 case RES_USE_EDNS0: return "edns0";
708 case RES_NSID: return "nsid";
709 #endif
710 #ifdef RES_USE_DNAME
711 case RES_USE_DNAME: return "dname";
712 #endif
713 #ifdef RES_USE_DNSSEC
714 case RES_USE_DNSSEC: return "dnssec";
715 #endif
716 #ifdef RES_NOTLDQUERY
717 case RES_NOTLDQUERY: return "no-tld-query";
718 #endif
719 #ifdef RES_NO_NIBBLE2
720 case RES_NO_NIBBLE2: return "no-nibble2";
721 #endif
722 /* XXX nonreentrant */
723 default: sprintf(nbuf, "?0x%lx?", (u_long)option);
724 return (nbuf);
725 }
726 }
727
728 /*%
729 * Return a mnemonic for a time to live.
730 */
731 const char *
732 p_time(u_int32_t value) {
733 char *nbuf = p_time_nbuf;
734
735 if (ns_format_ttl((u_long)value, nbuf, sizeof nbuf) < 0)
736 sprintf(nbuf, "%u", value);
737 return (nbuf);
738 }
739
740 /*%
741 * Return a string for the rcode.
742 */
743 const char *
744 p_rcode(int rcode) {
745 return (sym_ntos(__p_rcode_syms, rcode, (int *)0));
746 }
747
748 /*%
749 * Return a string for a res_sockaddr_union.
750 */
751 const char *
752 p_sockun(union res_sockaddr_union u, char *buf, size_t size) {
753 char ret[sizeof "ffff:ffff:ffff:ffff:ffff:ffff:123.123.123.123"];
754
755 switch (u.sin.sin_family) {
756 case AF_INET:
757 inet_ntop(AF_INET, &u.sin.sin_addr, ret, (socklen_t)sizeof ret);
758 break;
759 #ifdef HAS_INET6_STRUCTS
760 case AF_INET6:
761 inet_ntop(AF_INET6, &u.sin6.sin6_addr, ret, sizeof ret);
762 break;
763 #endif
764 default:
765 sprintf(ret, "[af%d]", u.sin.sin_family);
766 break;
767 }
768 if (size > 0U) {
769 strncpy(buf, ret, size - 1);
770 buf[size - 1] = '0';
771 }
772 return (buf);
773 }
774
775 /*%
776 * routines to convert between on-the-wire RR format and zone file format.
777 * Does not contain conversion to/from decimal degrees; divide or multiply
778 * by 60*60*1000 for that.
779 */
780
781 static unsigned int poweroften[10] = {1, 10, 100, 1000, 10000, 100000,
782 1000000,10000000,100000000,1000000000};
783
784 /*% takes an XeY precision/size value, returns a string representation. */
785 static const char *
786 precsize_ntoa(u_int32_t prec)
787 {
788 char *retbuf = precsize_ntoa_retbuf;
789 unsigned long val;
790 int mantissa, exponent;
791
792 mantissa = (int)((prec >> 4) & 0x0f) % 10;
793 exponent = (int)((prec >> 0) & 0x0f) % 10;
794
795 val = mantissa * poweroften[exponent];
796
797 (void) sprintf(retbuf, "%lu.%.2lu", val/100, val%100);
798 return (retbuf);
799 }
800
801 /*% converts ascii size/precision X * 10**Y(cm) to 0xXY. moves pointer. */
802 static u_int8_t
803 precsize_aton(const char **strptr) {
804 unsigned int mval = 0, cmval = 0;
805 u_int8_t retval = 0;
806 const char *cp;
807 int exponent;
808 int mantissa;
809
810 cp = *strptr;
811
812 while (isdigit((unsigned char)*cp))
813 mval = mval * 10 + (*cp++ - '0');
814
815 if (*cp == '.') { /*%< centimeters */
816 cp++;
817 if (isdigit((unsigned char)*cp)) {
818 cmval = (*cp++ - '0') * 10;
819 if (isdigit((unsigned char)*cp)) {
820 cmval += (*cp++ - '0');
821 }
822 }
823 }
824 cmval = (mval * 100) + cmval;
825
826 for (exponent = 0; exponent < 9; exponent++)
827 if (cmval < poweroften[exponent+1])
828 break;
829
830 mantissa = cmval / poweroften[exponent];
831 if (mantissa > 9)
832 mantissa = 9;
833
834 retval = (mantissa << 4) | exponent;
835
836 *strptr = cp;
837
838 return (retval);
839 }
840
841 /*% converts ascii lat/lon to unsigned encoded 32-bit number. moves pointer. */
842 static u_int32_t
843 latlon2ul(const char **latlonstrptr, int *which) {
844 const char *cp;
845 u_int32_t retval;
846 int deg = 0, min = 0, secs = 0, secsfrac = 0;
847
848 cp = *latlonstrptr;
849
850 while (isdigit((unsigned char)*cp))
851 deg = deg * 10 + (*cp++ - '0');
852
853 while (isspace((unsigned char)*cp))
854 cp++;
855
856 if (!(isdigit((unsigned char)*cp)))
857 goto fndhemi;
858
859 while (isdigit((unsigned char)*cp))
860 min = min * 10 + (*cp++ - '0');
861
862 while (isspace((unsigned char)*cp))
863 cp++;
864
865 if (!(isdigit((unsigned char)*cp)))
866 goto fndhemi;
867
868 while (isdigit((unsigned char)*cp))
869 secs = secs * 10 + (*cp++ - '0');
870
871 if (*cp == '.') { /*%< decimal seconds */
872 cp++;
873 if (isdigit((unsigned char)*cp)) {
874 secsfrac = (*cp++ - '0') * 100;
875 if (isdigit((unsigned char)*cp)) {
876 secsfrac += (*cp++ - '0') * 10;
877 if (isdigit((unsigned char)*cp)) {
878 secsfrac += (*cp++ - '0');
879 }
880 }
881 }
882 }
883
884 while (!isspace((unsigned char)*cp)) /*%< if any trailing garbage */
885 cp++;
886
887 while (isspace((unsigned char)*cp))
888 cp++;
889
890 fndhemi:
891 switch (*cp) {
892 case 'N': case 'n':
893 case 'E': case 'e':
894 retval = ((unsigned)1<<31)
895 + (((((deg * 60) + min) * 60) + secs) * 1000)
896 + secsfrac;
897 break;
898 case 'S': case 's':
899 case 'W': case 'w':
900 retval = ((unsigned)1<<31)
901 - (((((deg * 60) + min) * 60) + secs) * 1000)
902 - secsfrac;
903 break;
904 default:
905 retval = 0; /*%< invalid value -- indicates error */
906 break;
907 }
908
909 switch (*cp) {
910 case 'N': case 'n':
911 case 'S': case 's':
912 *which = 1; /*%< latitude */
913 break;
914 case 'E': case 'e':
915 case 'W': case 'w':
916 *which = 2; /*%< longitude */
917 break;
918 default:
919 *which = 0; /*%< error */
920 break;
921 }
922
923 cp++; /*%< skip the hemisphere */
924 while (!isspace((unsigned char)*cp)) /*%< if any trailing garbage */
925 cp++;
926
927 while (isspace((unsigned char)*cp)) /*%< move to next field */
928 cp++;
929
930 *latlonstrptr = cp;
931
932 return (retval);
933 }
934
935 /*%
936 * converts a zone file representation in a string to an RDATA on-the-wire
937 * representation. */
938 int
939 loc_aton(ascii, binary)
940 const char *ascii;
941 u_char *binary;
942 {
943 const char *cp, *maxcp;
944 u_char *bcp;
945
946 u_int32_t latit = 0, longit = 0, alt = 0;
947 u_int32_t lltemp1 = 0, lltemp2 = 0;
948 int altmeters = 0, altfrac = 0, altsign = 1;
949 u_int8_t hp = 0x16; /*%< default = 1e6 cm = 10000.00m = 10km */
950 u_int8_t vp = 0x13; /*%< default = 1e3 cm = 10.00m */
951 u_int8_t siz = 0x12; /*%< default = 1e2 cm = 1.00m */
952 int which1 = 0, which2 = 0;
953
954 cp = ascii;
955 maxcp = cp + strlen(ascii);
956
957 lltemp1 = latlon2ul(&cp, &which1);
958
959 lltemp2 = latlon2ul(&cp, &which2);
960
961 switch (which1 + which2) {
962 case 3: /*%< 1 + 2, the only valid combination */
963 if ((which1 == 1) && (which2 == 2)) { /*%< normal case */
964 latit = lltemp1;
965 longit = lltemp2;
966 } else if ((which1 == 2) && (which2 == 1)) { /*%< reversed */
967 longit = lltemp1;
968 latit = lltemp2;
969 } else { /*%< some kind of brokenness */
970 return (0);
971 }
972 break;
973 default: /*%< we didn't get one of each */
974 return (0);
975 }
976
977 /* altitude */
978 if (*cp == '-') {
979 altsign = -1;
980 cp++;
981 }
982
983 if (*cp == '+')
984 cp++;
985
986 while (isdigit((unsigned char)*cp))
987 altmeters = altmeters * 10 + (*cp++ - '0');
988
989 if (*cp == '.') { /*%< decimal meters */
990 cp++;
991 if (isdigit((unsigned char)*cp)) {
992 altfrac = (*cp++ - '0') * 10;
993 if (isdigit((unsigned char)*cp)) {
994 altfrac += (*cp++ - '0');
995 }
996 }
997 }
998
999 alt = (10000000 + (altsign * (altmeters * 100 + altfrac)));
1000
1001 while (!isspace((unsigned char)*cp) && (cp < maxcp)) /*%< if trailing garbage or m */
1002 cp++;
1003
1004 while (isspace((unsigned char)*cp) && (cp < maxcp))
1005 cp++;
1006
1007 if (cp >= maxcp)
1008 goto defaults;
1009
1010 siz = precsize_aton(&cp);
1011
1012 while (!isspace((unsigned char)*cp) && (cp < maxcp)) /*%< if trailing garbage or m */
1013 cp++;
1014
1015 while (isspace((unsigned char)*cp) && (cp < maxcp))
1016 cp++;
1017
1018 if (cp >= maxcp)
1019 goto defaults;
1020
1021 hp = precsize_aton(&cp);
1022
1023 while (!isspace((unsigned char)*cp) && (cp < maxcp)) /*%< if trailing garbage or m */
1024 cp++;
1025
1026 while (isspace((unsigned char)*cp) && (cp < maxcp))
1027 cp++;
1028
1029 if (cp >= maxcp)
1030 goto defaults;
1031
1032 vp = precsize_aton(&cp);
1033
1034 defaults:
1035
1036 bcp = binary;
1037 *bcp++ = (u_int8_t) 0; /*%< version byte */
1038 *bcp++ = siz;
1039 *bcp++ = hp;
1040 *bcp++ = vp;
1041 PUTLONG(latit,bcp);
1042 PUTLONG(longit,bcp);
1043 PUTLONG(alt,bcp);
1044
1045 return (16); /*%< size of RR in octets */
1046 }
1047
1048 /*% takes an on-the-wire LOC RR and formats it in a human readable format. */
1049 const char *
1050 loc_ntoa(binary, ascii)
1051 const u_char *binary;
1052 char *ascii;
1053 {
1054 static const char *error = "?";
1055 static char tmpbuf[sizeof
1056 "1000 60 60.000 N 1000 60 60.000 W -12345678.00m 90000000.00m 90000000.00m 90000000.00m"];
1057 const u_char *cp = binary;
1058
1059 int latdeg, latmin, latsec, latsecfrac;
1060 int longdeg, longmin, longsec, longsecfrac;
1061 char northsouth, eastwest;
1062 const char *altsign;
1063 int altmeters, altfrac;
1064
1065 const u_int32_t referencealt = 100000 * 100;
1066
1067 int32_t latval, longval, altval;
1068 u_int32_t templ;
1069 u_int8_t sizeval, hpval, vpval, versionval;
1070
1071 char *sizestr, *hpstr, *vpstr;
1072
1073 versionval = *cp++;
1074
1075 if (ascii == NULL)
1076 ascii = tmpbuf;
1077
1078 if (versionval) {
1079 (void) sprintf(ascii, "; error: unknown LOC RR version");
1080 return (ascii);
1081 }
1082
1083 sizeval = *cp++;
1084
1085 hpval = *cp++;
1086 vpval = *cp++;
1087
1088 GETLONG(templ, cp);
1089 latval = (templ - ((unsigned)1<<31));
1090
1091 GETLONG(templ, cp);
1092 longval = (templ - ((unsigned)1<<31));
1093
1094 GETLONG(templ, cp);
1095 if (templ < referencealt) { /*%< below WGS 84 spheroid */
1096 altval = referencealt - templ;
1097 altsign = "-";
1098 } else {
1099 altval = templ - referencealt;
1100 altsign = "";
1101 }
1102
1103 if (latval < 0) {
1104 northsouth = 'S';
1105 latval = -latval;
1106 } else
1107 northsouth = 'N';
1108
1109 latsecfrac = latval % 1000;
1110 latval = latval / 1000;
1111 latsec = latval % 60;
1112 latval = latval / 60;
1113 latmin = latval % 60;
1114 latval = latval / 60;
1115 latdeg = latval;
1116
1117 if (longval < 0) {
1118 eastwest = 'W';
1119 longval = -longval;
1120 } else
1121 eastwest = 'E';
1122
1123 longsecfrac = longval % 1000;
1124 longval = longval / 1000;
1125 longsec = longval % 60;
1126 longval = longval / 60;
1127 longmin = longval % 60;
1128 longval = longval / 60;
1129 longdeg = longval;
1130
1131 altfrac = altval % 100;
1132 altmeters = (altval / 100);
1133
1134 sizestr = strdup(precsize_ntoa((u_int32_t)sizeval));
1135 hpstr = strdup(precsize_ntoa((u_int32_t)hpval));
1136 vpstr = strdup(precsize_ntoa((u_int32_t)vpval));
1137
1138 sprintf(ascii,
1139 "%d %.2d %.2d.%.3d %c %d %.2d %.2d.%.3d %c %s%d.%.2dm %sm %sm %sm",
1140 latdeg, latmin, latsec, latsecfrac, northsouth,
1141 longdeg, longmin, longsec, longsecfrac, eastwest,
1142 altsign, altmeters, altfrac,
1143 (sizestr != NULL) ? sizestr : error,
1144 (hpstr != NULL) ? hpstr : error,
1145 (vpstr != NULL) ? vpstr : error);
1146
1147 if (sizestr != NULL)
1148 free(sizestr);
1149 if (hpstr != NULL)
1150 free(hpstr);
1151 if (vpstr != NULL)
1152 free(vpstr);
1153
1154 return (ascii);
1155 }
1156
1157
1158 /*% Return the number of DNS hierarchy levels in the name. */
1159 int
1160 dn_count_labels(const char *name) {
1161 size_t len, i, count;
1162
1163 len = strlen(name);
1164 for (i = 0, count = 0; i < len; i++) {
1165 /* XXX need to check for \. or use named's nlabels(). */
1166 if (name[i] == '.')
1167 count++;
1168 }
1169
1170 /* don't count initial wildcard */
1171 if (name[0] == '*')
1172 if (count)
1173 count--;
1174
1175 /* don't count the null label for root. */
1176 /* if terminating '.' not found, must adjust */
1177 /* count to include last label */
1178 if (len > 0 && name[len-1] != '.')
1179 count++;
1180 _DIAGASSERT(__type_fit(int, count));
1181 return (int)count;
1182 }
1183
1184 /*%
1185 * Make dates expressed in seconds-since-Jan-1-1970 easy to read.
1186 * SIG records are required to be printed like this, by the Secure DNS RFC.
1187 */
1188 char *
1189 p_secstodate (u_long secs) {
1190 /* XXX nonreentrant */
1191 char *output = p_secstodate_output;
1192 time_t myclock = secs;
1193 struct tm *mytime;
1194 #ifdef HAVE_TIME_R
1195 struct tm res;
1196
1197 mytime = gmtime_r(&myclock, &res);
1198 #else
1199 mytime = gmtime(&myclock);
1200 #endif
1201 mytime->tm_year += 1900;
1202 mytime->tm_mon += 1;
1203 sprintf(output, "%04d%02d%02d%02d%02d%02d",
1204 mytime->tm_year, mytime->tm_mon, mytime->tm_mday,
1205 mytime->tm_hour, mytime->tm_min, mytime->tm_sec);
1206 return (output);
1207 }
1208
1209 u_int16_t
1210 res_nametoclass(const char *buf, int *successp) {
1211 unsigned long result;
1212 char *endptr;
1213 int success;
1214
1215 result = sym_ston(__p_class_syms, buf, &success);
1216 if (success)
1217 goto done;
1218
1219 if (strncasecmp(buf, "CLASS", 5) != 0 ||
1220 !isdigit((unsigned char)buf[5]))
1221 goto done;
1222 errno = 0;
1223 result = strtoul(buf + 5, &endptr, 10);
1224 if (errno == 0 && *endptr == '\0' && result <= 0xffffU)
1225 success = 1;
1226 done:
1227 if (successp)
1228 *successp = success;
1229 return (u_int16_t)(result);
1230 }
1231
1232 u_int16_t
1233 res_nametotype(const char *buf, int *successp) {
1234 unsigned long result;
1235 char *endptr;
1236 int success;
1237
1238 result = sym_ston(__p_type_syms, buf, &success);
1239 if (success)
1240 goto done;
1241
1242 if (strncasecmp(buf, "type", 4) != 0 ||
1243 !isdigit((unsigned char)buf[4]))
1244 goto done;
1245 errno = 0;
1246 result = strtoul(buf + 4, &endptr, 10);
1247 if (errno == 0 && *endptr == '\0' && result <= 0xffffU)
1248 success = 1;
1249 done:
1250 if (successp)
1251 *successp = success;
1252 return (u_int16_t)(result);
1253 }
1254
1255 /*! \file */
1256