Merge branch 'vendor/LESS' into less_update
[dragonfly.git] / contrib / bind-9.5.2 / lib / dns / rcode.c
1 /*
2  * Copyright (C) 2004-2007  Internet Systems Consortium, Inc. ("ISC")
3  * Copyright (C) 1998-2003  Internet Software Consortium.
4  *
5  * Permission to use, copy, modify, and/or distribute this software for any
6  * purpose with or without fee is hereby granted, provided that the above
7  * copyright notice and this permission notice appear in all copies.
8  *
9  * THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES WITH
10  * REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
11  * AND FITNESS.  IN NO EVENT SHALL ISC BE LIABLE FOR ANY SPECIAL, DIRECT,
12  * INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
13  * LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE
14  * OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
15  * PERFORMANCE OF THIS SOFTWARE.
16  */
17
18 /* $Id: rcode.c,v 1.6 2007/06/19 23:47:16 tbox Exp $ */
19
20 #include <config.h>
21 #include <ctype.h>
22
23 #include <isc/buffer.h>
24 #include <isc/parseint.h>
25 #include <isc/print.h>
26 #include <isc/region.h>
27 #include <isc/result.h>
28 #include <isc/stdio.h>
29 #include <isc/stdlib.h>
30 #include <isc/string.h>
31 #include <isc/types.h>
32 #include <isc/util.h>
33
34 #include <dns/cert.h>
35 #include <dns/keyflags.h>
36 #include <dns/keyvalues.h>
37 #include <dns/rcode.h>
38 #include <dns/rdataclass.h>
39 #include <dns/result.h>
40 #include <dns/secalg.h>
41 #include <dns/secproto.h>
42
43 #define RETERR(x) \
44         do { \
45                 isc_result_t _r = (x); \
46                 if (_r != ISC_R_SUCCESS) \
47                         return (_r); \
48         } while (0)
49
50 #define NUMBERSIZE sizeof("037777777777") /* 2^32-1 octal + NUL */
51
52 #define RCODENAMES \
53         /* standard rcodes */ \
54         { dns_rcode_noerror, "NOERROR", 0}, \
55         { dns_rcode_formerr, "FORMERR", 0}, \
56         { dns_rcode_servfail, "SERVFAIL", 0}, \
57         { dns_rcode_nxdomain, "NXDOMAIN", 0}, \
58         { dns_rcode_notimp, "NOTIMP", 0}, \
59         { dns_rcode_refused, "REFUSED", 0}, \
60         { dns_rcode_yxdomain, "YXDOMAIN", 0}, \
61         { dns_rcode_yxrrset, "YXRRSET", 0}, \
62         { dns_rcode_nxrrset, "NXRRSET", 0}, \
63         { dns_rcode_notauth, "NOTAUTH", 0}, \
64         { dns_rcode_notzone, "NOTZONE", 0},
65
66 #define ERCODENAMES \
67         /* extended rcodes */ \
68         { dns_rcode_badvers, "BADVERS", 0}, \
69         { 0, NULL, 0 } 
70
71 #define TSIGRCODENAMES \
72         /* extended rcodes */ \
73         { dns_tsigerror_badsig, "BADSIG", 0}, \
74         { dns_tsigerror_badkey, "BADKEY", 0}, \
75         { dns_tsigerror_badtime, "BADTIME", 0}, \
76         { dns_tsigerror_badmode, "BADMODE", 0}, \
77         { dns_tsigerror_badname, "BADNAME", 0}, \
78         { dns_tsigerror_badalg, "BADALG", 0}, \
79         { dns_tsigerror_badtrunc, "BADTRUNC", 0}, \
80         { 0, NULL, 0 }
81
82 /* RFC2538 section 2.1 */
83
84 #define CERTNAMES \
85         { 1, "PKIX", 0}, \
86         { 2, "SPKI", 0}, \
87         { 3, "PGP", 0}, \
88         { 253, "URI", 0}, \
89         { 254, "OID", 0}, \
90         { 0, NULL, 0}
91
92 /* RFC2535 section 7, RFC3110 */
93
94 #define SECALGNAMES \
95         { DNS_KEYALG_RSAMD5, "RSAMD5", 0 }, \
96         { DNS_KEYALG_RSAMD5, "RSA", 0 }, \
97         { DNS_KEYALG_DH, "DH", 0 }, \
98         { DNS_KEYALG_DSA, "DSA", 0 }, \
99         { DNS_KEYALG_ECC, "ECC", 0 }, \
100         { DNS_KEYALG_RSASHA1, "RSASHA1", 0 }, \
101         { DNS_KEYALG_INDIRECT, "INDIRECT", 0 }, \
102         { DNS_KEYALG_PRIVATEDNS, "PRIVATEDNS", 0 }, \
103         { DNS_KEYALG_PRIVATEOID, "PRIVATEOID", 0 }, \
104         { 0, NULL, 0}
105
106 /* RFC2535 section 7.1 */
107
108 #define SECPROTONAMES \
109         {   0,    "NONE", 0 }, \
110         {   1,    "TLS", 0 }, \
111         {   2,    "EMAIL", 0 }, \
112         {   3,    "DNSSEC", 0 }, \
113         {   4,    "IPSEC", 0 }, \
114         { 255,    "ALL", 0 }, \
115         { 0, NULL, 0}
116
117 struct tbl {
118         unsigned int    value;
119         const char      *name;
120         int             flags;
121 };
122
123 static struct tbl rcodes[] = { RCODENAMES ERCODENAMES };
124 static struct tbl tsigrcodes[] = { RCODENAMES TSIGRCODENAMES };
125 static struct tbl certs[] = { CERTNAMES };
126 static struct tbl secalgs[] = { SECALGNAMES };
127 static struct tbl secprotos[] = { SECPROTONAMES };
128
129 static struct keyflag {
130         const char *name;
131         unsigned int value;
132         unsigned int mask;
133 } keyflags[] = {
134         { "NOCONF", 0x4000, 0xC000 },
135         { "NOAUTH", 0x8000, 0xC000 },
136         { "NOKEY",  0xC000, 0xC000 },
137         { "FLAG2",  0x2000, 0x2000 },
138         { "EXTEND", 0x1000, 0x1000 },
139         { "FLAG4",  0x0800, 0x0800 },
140         { "FLAG5",  0x0400, 0x0400 },
141         { "USER",   0x0000, 0x0300 },
142         { "ZONE",   0x0100, 0x0300 },
143         { "HOST",   0x0200, 0x0300 },
144         { "NTYP3",  0x0300, 0x0300 },
145         { "FLAG8",  0x0080, 0x0080 },
146         { "FLAG9",  0x0040, 0x0040 },
147         { "FLAG10", 0x0020, 0x0020 },
148         { "FLAG11", 0x0010, 0x0010 },
149         { "SIG0",   0x0000, 0x000F },
150         { "SIG1",   0x0001, 0x000F },
151         { "SIG2",   0x0002, 0x000F },
152         { "SIG3",   0x0003, 0x000F },
153         { "SIG4",   0x0004, 0x000F },
154         { "SIG5",   0x0005, 0x000F },
155         { "SIG6",   0x0006, 0x000F },
156         { "SIG7",   0x0007, 0x000F },
157         { "SIG8",   0x0008, 0x000F },
158         { "SIG9",   0x0009, 0x000F },
159         { "SIG10",  0x000A, 0x000F },
160         { "SIG11",  0x000B, 0x000F },
161         { "SIG12",  0x000C, 0x000F },
162         { "SIG13",  0x000D, 0x000F },
163         { "SIG14",  0x000E, 0x000F },
164         { "SIG15",  0x000F, 0x000F },
165         { "KSK",  DNS_KEYFLAG_KSK, DNS_KEYFLAG_KSK },
166         { NULL,     0, 0 }
167 };
168
169 static isc_result_t
170 str_totext(const char *source, isc_buffer_t *target) {
171         unsigned int l;
172         isc_region_t region;
173
174         isc_buffer_availableregion(target, &region);
175         l = strlen(source);
176
177         if (l > region.length)
178                 return (ISC_R_NOSPACE);
179
180         memcpy(region.base, source, l);
181         isc_buffer_add(target, l);
182         return (ISC_R_SUCCESS);
183 }
184
185 static isc_result_t
186 maybe_numeric(unsigned int *valuep, isc_textregion_t *source,
187               unsigned int max, isc_boolean_t hex_allowed)
188 {
189         isc_result_t result;
190         isc_uint32_t n;
191         char buffer[NUMBERSIZE];
192
193         if (! isdigit(source->base[0] & 0xff) ||
194             source->length > NUMBERSIZE - 1)
195                 return (ISC_R_BADNUMBER);
196
197         /*
198          * We have a potential number.  Try to parse it with
199          * isc_parse_uint32().  isc_parse_uint32() requires
200          * null termination, so we must make a copy.
201          */
202         strncpy(buffer, source->base, NUMBERSIZE);
203         INSIST(buffer[source->length] == '\0');
204
205         result = isc_parse_uint32(&n, buffer, 10);
206         if (result == ISC_R_BADNUMBER && hex_allowed)
207                 result = isc_parse_uint32(&n, buffer, 16);
208         if (result != ISC_R_SUCCESS)
209                 return (result);
210         if (n > max)
211                 return (ISC_R_RANGE);
212         *valuep = n;
213         return (ISC_R_SUCCESS);
214 }
215
216 static isc_result_t
217 dns_mnemonic_fromtext(unsigned int *valuep, isc_textregion_t *source,
218                       struct tbl *table, unsigned int max)
219 {
220         isc_result_t result;
221         int i;
222
223         result = maybe_numeric(valuep, source, max, ISC_FALSE);
224         if (result != ISC_R_BADNUMBER)
225                 return (result);
226
227         for (i = 0; table[i].name != NULL; i++) {
228                 unsigned int n;
229                 n = strlen(table[i].name);
230                 if (n == source->length &&
231                     strncasecmp(source->base, table[i].name, n) == 0) {
232                         *valuep = table[i].value;
233                         return (ISC_R_SUCCESS);
234                 }
235         }
236         return (DNS_R_UNKNOWN);
237 }
238
239 static isc_result_t
240 dns_mnemonic_totext(unsigned int value, isc_buffer_t *target,
241                     struct tbl *table) 
242 {
243         int i = 0;
244         char buf[sizeof("4294967296")];
245         while (table[i].name != NULL) {
246                 if (table[i].value == value) {
247                         return (str_totext(table[i].name, target));
248                 }
249                 i++;
250         }
251         snprintf(buf, sizeof(buf), "%u", value);
252         return (str_totext(buf, target));
253 }
254
255 isc_result_t
256 dns_rcode_fromtext(dns_rcode_t *rcodep, isc_textregion_t *source) {
257         unsigned int value;
258         RETERR(dns_mnemonic_fromtext(&value, source, rcodes, 0xffff));
259         *rcodep = value;
260         return (ISC_R_SUCCESS);
261 }
262
263 isc_result_t
264 dns_rcode_totext(dns_rcode_t rcode, isc_buffer_t *target) {
265         return (dns_mnemonic_totext(rcode, target, rcodes));
266 }
267
268 isc_result_t
269 dns_tsigrcode_fromtext(dns_rcode_t *rcodep, isc_textregion_t *source) {
270         unsigned int value;
271         RETERR(dns_mnemonic_fromtext(&value, source, tsigrcodes, 0xffff));
272         *rcodep = value;
273         return (ISC_R_SUCCESS);
274
275
276 isc_result_t
277 dns_tsigrcode_totext(dns_rcode_t rcode, isc_buffer_t *target) {
278         return (dns_mnemonic_totext(rcode, target, tsigrcodes));
279 }
280
281 isc_result_t
282 dns_cert_fromtext(dns_cert_t *certp, isc_textregion_t *source) {
283         unsigned int value;
284         RETERR(dns_mnemonic_fromtext(&value, source, certs, 0xffff));
285         *certp = value;
286         return (ISC_R_SUCCESS);
287 }
288
289 isc_result_t
290 dns_cert_totext(dns_cert_t cert, isc_buffer_t *target) {
291         return (dns_mnemonic_totext(cert, target, certs));
292 }
293
294 isc_result_t
295 dns_secalg_fromtext(dns_secalg_t *secalgp, isc_textregion_t *source) {
296         unsigned int value;
297         RETERR(dns_mnemonic_fromtext(&value, source, secalgs, 0xff));
298         *secalgp = value;
299         return (ISC_R_SUCCESS);
300 }
301
302 isc_result_t
303 dns_secalg_totext(dns_secalg_t secalg, isc_buffer_t *target) {
304         return (dns_mnemonic_totext(secalg, target, secalgs));
305 }
306
307 isc_result_t
308 dns_secproto_fromtext(dns_secproto_t *secprotop, isc_textregion_t *source) {
309         unsigned int value;
310         RETERR(dns_mnemonic_fromtext(&value, source, secprotos, 0xff));
311         *secprotop = value;
312         return (ISC_R_SUCCESS);
313 }
314
315 isc_result_t
316 dns_secproto_totext(dns_secproto_t secproto, isc_buffer_t *target) {
317         return (dns_mnemonic_totext(secproto, target, secprotos));
318 }
319
320 isc_result_t
321 dns_keyflags_fromtext(dns_keyflags_t *flagsp, isc_textregion_t *source)
322 {
323         isc_result_t result;
324         char *text, *end;
325         unsigned int value, mask;
326
327         result = maybe_numeric(&value, source, 0xffff, ISC_TRUE);
328         if (result == ISC_R_SUCCESS) {
329                 *flagsp = value;
330                 return (ISC_R_SUCCESS);
331         }
332         if (result != ISC_R_BADNUMBER)
333                 return (result);
334
335         text = source->base;
336         end = source->base + source->length;
337         value = mask = 0;
338
339         while (text < end) {
340                 struct keyflag *p;
341                 unsigned int len;
342                 char *delim = memchr(text, '|', end - text);
343                 if (delim != NULL)
344                         len = delim - text;
345                 else
346                         len = end - text;
347                 for (p = keyflags; p->name != NULL; p++) {
348                         if (strncasecmp(p->name, text, len) == 0)
349                                 break;
350                 }
351                 if (p->name == NULL)
352                         return (DNS_R_UNKNOWNFLAG);
353                 value |= p->value;
354 #ifdef notyet
355                 if ((mask & p->mask) != 0)
356                         warn("overlapping key flags");
357 #endif
358                 mask |= p->mask;
359                 text += len;
360                 if (delim != NULL)
361                         text++; /* Skip "|" */
362         }
363         *flagsp = value;
364         return (ISC_R_SUCCESS);
365 }
366
367 /*
368  * This uses lots of hard coded values, but how often do we actually
369  * add classes?
370  */
371 isc_result_t
372 dns_rdataclass_fromtext(dns_rdataclass_t *classp, isc_textregion_t *source) {
373 #define COMPARE(string, rdclass) \
374         if (((sizeof(string) - 1) == source->length) \
375             && (strncasecmp(source->base, string, source->length) == 0)) { \
376                 *classp = rdclass; \
377                 return (ISC_R_SUCCESS); \
378         }
379
380         switch (tolower((unsigned char)source->base[0])) {
381         case 'a':
382                 COMPARE("any", dns_rdataclass_any);
383                 break;
384         case 'c':
385                 /*
386                  * RFC1035 says the mnemonic for the CHAOS class is CH,
387                  * but historical BIND practice is to call it CHAOS.
388                  * We will accept both forms, but only generate CH.
389                  */
390                 COMPARE("ch", dns_rdataclass_chaos);
391                 COMPARE("chaos", dns_rdataclass_chaos);
392
393                 if (source->length > 5 &&
394                     source->length < (5 + sizeof("65000")) &&
395                     strncasecmp("class", source->base, 5) == 0) {
396                         char buf[sizeof("65000")];
397                         char *endp;
398                         unsigned int val;
399
400                         strncpy(buf, source->base + 5, source->length - 5);
401                         buf[source->length - 5] = '\0';
402                         val = strtoul(buf, &endp, 10);
403                         if (*endp == '\0' && val <= 0xffff) {
404                                 *classp = (dns_rdataclass_t)val;
405                                 return (ISC_R_SUCCESS);
406                         }
407                 }
408                 break;
409         case 'h':
410                 COMPARE("hs", dns_rdataclass_hs);
411                 COMPARE("hesiod", dns_rdataclass_hs);
412                 break;
413         case 'i':
414                 COMPARE("in", dns_rdataclass_in);
415                 break;
416         case 'n':
417                 COMPARE("none", dns_rdataclass_none);
418                 break;
419         case 'r':
420                 COMPARE("reserved0", dns_rdataclass_reserved0);
421                 break;
422         }
423
424 #undef COMPARE
425
426         return (DNS_R_UNKNOWN);
427 }
428
429 isc_result_t
430 dns_rdataclass_totext(dns_rdataclass_t rdclass, isc_buffer_t *target) {
431         char buf[sizeof("CLASS65535")];
432
433         switch (rdclass) {
434         case dns_rdataclass_any:
435                 return (str_totext("ANY", target));
436         case dns_rdataclass_chaos:
437                 return (str_totext("CH", target));
438         case dns_rdataclass_hs:
439                 return (str_totext("HS", target));
440         case dns_rdataclass_in:
441                 return (str_totext("IN", target));
442         case dns_rdataclass_none:
443                 return (str_totext("NONE", target));
444         case dns_rdataclass_reserved0:
445                 return (str_totext("RESERVED0", target));
446         default:
447                 snprintf(buf, sizeof(buf), "CLASS%u", rdclass);
448                 return (str_totext(buf, target));
449         }
450 }
451
452 void
453 dns_rdataclass_format(dns_rdataclass_t rdclass,
454                       char *array, unsigned int size)
455 {
456         isc_result_t result;
457         isc_buffer_t buf;
458
459         isc_buffer_init(&buf, array, size);
460         result = dns_rdataclass_totext(rdclass, &buf);
461         /*
462          * Null terminate.
463          */
464         if (result == ISC_R_SUCCESS) {
465                 if (isc_buffer_availablelength(&buf) >= 1)
466                         isc_buffer_putuint8(&buf, 0);
467                 else
468                         result = ISC_R_NOSPACE;
469         }
470         if (result != ISC_R_SUCCESS) {
471                 snprintf(array, size, "<unknown>");
472                 array[size - 1] = '\0';
473         }
474 }