1 /*	$NetBSD: nameser.h,v 1.25 2009/04/12 17:07:34 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) 1983, 1989, 1993
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. Neither the name of the University nor the names of its contributors
33  *    may be used to endorse or promote products derived from this software
34  *    without specific prior written permission.
35  *
36  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
37  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
38  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
39  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
40  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
41  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
42  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
43  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
44  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
45  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
46  * SUCH DAMAGE.
47  */
48 
49 /*
50  *	Id: nameser.h,v 1.16 2009/03/03 01:52:48 each Exp
51  */
52 
53 #ifndef _ARPA_NAMESER_H_
54 #define _ARPA_NAMESER_H_
55 
56 #define BIND_4_COMPAT
57 
58 #include <sys/cdefs.h>
59 
60 #include <sys/types.h>
61 
62 /*
63  * Revision information.  This is the release date in YYYYMMDD format.
64  * It can change every day so the right thing to do with it is use it
65  * in preprocessor commands such as "#if (__NAMESER > 19931104)".  Do not
66  * compare for equality; rather, use it to determine whether your libbind.a
67  * contains a new enough lib/nameser/ to support the feature you need.
68  */
69 
70 #define __NAMESER	20090302	/*%< New interface version stamp. */
71 
72 /*
73  * Define constants based on RFC0883, RFC1034, RFC 1035
74  */
75 #define NS_PACKETSZ	512	/* default UDP packet size */
76 #define NS_MAXDNAME	1025	/* maximum domain name (presentation format)*/
77 #define NS_MAXMSG	65535	/* maximum message size */
78 #define NS_MAXCDNAME	255	/* maximum compressed domain name */
79 #define NS_MAXLABEL	63	/* maximum length of domain label */
80 #define NS_MAXLABELS	128	/* theoretical max #/labels per domain name */
81 #define NS_MAXNNAME	256	/* maximum uncompressed (binary) domain name*/
82 #define	NS_MAXPADDR	(sizeof "ffff:ffff:ffff:ffff:ffff:ffff:ffff:ffff")
83 #define NS_HFIXEDSZ	12	/* #/bytes of fixed data in header */
84 #define NS_QFIXEDSZ	4	/* #/bytes of fixed data in query */
85 #define NS_RRFIXEDSZ	10	/* #/bytes of fixed data in r record */
86 #define NS_INT32SZ	4	/* #/bytes of data in a uint32_t */
87 #define NS_INT16SZ	2	/* #/bytes of data in a uint16_t */
88 #define NS_INT8SZ	1	/* #/bytes of data in a uint8_t */
89 #define NS_INADDRSZ	4	/* IPv4 T_A */
90 #define NS_IN6ADDRSZ	16	/* IPv6 T_AAAA */
91 #define NS_CMPRSFLGS	0xc0	/* Flag bits indicating name compression. */
92 #define NS_DEFAULTPORT	53	/* For both TCP and UDP. */
93 
94 /*
95  * These can be expanded with synonyms, just keep ns_parse.c:ns_parserecord()
96  * in synch with it.
97  */
98 typedef enum __ns_sect {
99 	ns_s_qd = 0,		/* Query: Question. */
100 	ns_s_zn = 0,		/* Update: Zone. */
101 	ns_s_an = 1,		/* Query: Answer. */
102 	ns_s_pr = 1,		/* Update: Prerequisites. */
103 	ns_s_ns = 2,		/* Query: Name servers. */
104 	ns_s_ud = 2,		/* Update: Update. */
105 	ns_s_ar = 3,		/* Query|Update: Additional records. */
106 	ns_s_max = 4
107 } ns_sect;
108 
109 /*
110  * Network name (compressed or not) type.  Equivilent to a pointer when used
111  * in a function prototype.  Can be const'd.
112  */
113 typedef u_char ns_nname[NS_MAXNNAME];
114 typedef const u_char *ns_nname_ct;
115 typedef u_char *ns_nname_t;
116 
117 #pragma clang diagnostic push
118 #pragma clang diagnostic ignored "-Wnullability-completeness"
119 struct ns_namemap { ns_nname_ct base; int len; };
120 typedef struct ns_namemap *ns_namemap_t;
121 typedef const struct ns_namemap *ns_namemap_ct;
122 
123 /*
124  * This is a message handle.  It is caller allocated and has no dynamic data.
125  * This structure is intended to be opaque to all but ns_parse.c, thus the
126  * leading _'s on the member names.  Use the accessor functions, not the _'s.
127  */
128 typedef struct __ns_msg {
129 	const u_char	*_msg, *_eom;
130 	uint16_t	_id, _flags, _counts[ns_s_max];
131 	const u_char	*_sections[ns_s_max];
132 	ns_sect		_sect;
133 	int		_rrnum;
134 	const u_char	*_msg_ptr;
135 } ns_msg;
136 /*
137  * This is a newmsg handle, used when constructing new messages with
138  * ns_newmsg_init, et al.
139  */
140 struct ns_newmsg {
141 	ns_msg		msg;
142 	const u_char	*dnptrs[25];
143 	const u_char	**lastdnptr;
144 };
145 typedef struct ns_newmsg ns_newmsg;
146 
147 /* Accessor macros - this is part of the public interface. */
148 
149 #define ns_msg_id(handle) ((handle)._id + 0)
150 #define ns_msg_base(handle) ((handle)._msg + 0)
151 #define ns_msg_end(handle) ((handle)._eom + 0)
152 #define ns_msg_size(handle) ((size_t)((handle)._eom - (handle)._msg))
153 #define ns_msg_count(handle, section) ((handle)._counts[section] + 0)
154 
155 /*
156  * This is a parsed record.  It is caller allocated and has no dynamic data.
157  */
158 typedef	struct __ns_rr {
159 	char		name[NS_MAXDNAME];
160 	uint16_t	type;
161 	uint16_t	rr_class;
162 	uint32_t	ttl;
163 	uint16_t	rdlength;
164 	const u_char *	rdata;
165 } ns_rr;
166 
167 /*
168  * Same thing, but using uncompressed network binary names, and real C types.
169  */
170 typedef	struct __ns_rr2 {
171 	ns_nname	nname;
172 	size_t		nnamel;
173 	int		type;
174 	int		rr_class;
175 	u_int		ttl;
176 	int		rdlength;
177 	const u_char *	rdata;
178 } ns_rr2;
179 /* Accessor macros - this is part of the public interface. */
180 #define ns_rr_name(rr)	(((rr).name[0] != '\0') ? (rr).name : ".")
181 #define ns_rr_nname(rr)	((const ns_nname_t)(rr).nname)
182 #define ns_rr_nnamel(rr) ((rr).nnamel + 0)
183 #define ns_rr_type(rr)	((ns_type)((rr).type + 0))
184 #define ns_rr_class(rr)	((ns_class)((rr).rr_class + 0))
185 #define ns_rr_ttl(rr)	((u_long)(rr).ttl + 0)
186 #define ns_rr_rdlen(rr)	((size_t)(rr).rdlength + 0)
187 #define ns_rr_rdata(rr)	((rr).rdata + 0)
188 
189 /*
190  * These don't have to be in the same order as in the packet flags word,
191  * and they can even overlap in some cases, but they will need to be kept
192  * in synch with ns_parse.c:ns_flagdata[].
193  */
194 typedef enum __ns_flag {
195 	ns_f_qr,		/* Question/Response. */
196 	ns_f_opcode,		/* Operation code. */
197 	ns_f_aa,		/* Authoritative Answer. */
198 	ns_f_tc,		/* Truncation occurred. */
199 	ns_f_rd,		/* Recursion Desired. */
200 	ns_f_ra,		/* Recursion Available. */
201 	ns_f_z,			/* MBZ. */
202 	ns_f_ad,		/* Authentic Data (DNSSEC). */
203 	ns_f_cd,		/* Checking Disabled (DNSSEC). */
204 	ns_f_rcode,		/* Response code. */
205 	ns_f_max
206 } ns_flag;
207 
208 /*
209  * Currently defined opcodes.
210  */
211 typedef enum __ns_opcode {
212 	ns_o_query = 0,		/* Standard query. */
213 	ns_o_iquery = 1,	/* Inverse query (deprecated/unsupported). */
214 	ns_o_status = 2,	/* Name server status query (unsupported). */
215 				/* Opcode 3 is undefined/reserved. */
216 	ns_o_notify = 4,	/* Zone change notification. */
217 	ns_o_update = 5,	/* Zone update message. */
218 	ns_o_max = 6
219 } ns_opcode;
220 
221 /*
222  * Currently defined response codes.
223  */
224 typedef	enum __ns_rcode {
225 	ns_r_noerror = 0,	/* No error occurred. */
226 	ns_r_formerr = 1,	/* Format error. */
227 	ns_r_servfail = 2,	/* Server failure. */
228 	ns_r_nxdomain = 3,	/* Name error. */
229 	ns_r_notimpl = 4,	/* Unimplemented. */
230 	ns_r_refused = 5,	/* Operation refused. */
231 	/* these are for BIND_UPDATE */
232 	ns_r_yxdomain = 6,	/* Name exists */
233 	ns_r_yxrrset = 7,	/* RRset exists */
234 	ns_r_nxrrset = 8,	/* RRset does not exist */
235 	ns_r_notauth = 9,	/* Not authoritative for zone */
236 	ns_r_notzone = 10,	/* Zone of record different from zone section */
237 	ns_r_max = 11,
238 	/* The following are EDNS extended rcodes */
239 	ns_r_badvers = 16,
240 	/* The following are TSIG errors */
241 	ns_r_badsig = 16,
242 	ns_r_badkey = 17,
243 	ns_r_badtime = 18
244 } ns_rcode;
245 
246 /* BIND_UPDATE */
247 typedef enum __ns_update_operation {
248 	ns_uop_delete = 0,
249 	ns_uop_add = 1,
250 	ns_uop_max = 2
251 } ns_update_operation;
252 
253 /*
254  * This structure is used for TSIG authenticated messages
255  */
256 struct ns_tsig_key {
257         char name[NS_MAXDNAME], alg[NS_MAXDNAME];
258         unsigned char *data;
259         int len;
260 };
261 typedef struct ns_tsig_key ns_tsig_key;
262 
263 /*
264  * This structure is used for TSIG authenticated TCP messages
265  */
266 struct ns_tcp_tsig_state {
267 	int counter;
268 	struct dst_key *key;
269 	void *ctx;
270 	unsigned char sig[NS_PACKETSZ];
271 	int siglen;
272 };
273 typedef struct ns_tcp_tsig_state ns_tcp_tsig_state;
274 
275 #pragma clang diagnostic pop
276 
277 #define NS_TSIG_FUDGE 300
278 #define NS_TSIG_TCP_COUNT 100
279 #define NS_TSIG_ALG_HMAC_MD5 "HMAC-MD5.SIG-ALG.REG.INT"
280 
281 #define NS_TSIG_ERROR_NO_TSIG -10
282 #define NS_TSIG_ERROR_NO_SPACE -11
283 #define NS_TSIG_ERROR_FORMERR -12
284 
285 /*
286  * Currently defined type values for resources and queries.
287  */
288 typedef enum __ns_type {
289 	ns_t_invalid = 0,	/* Cookie. */
290 	ns_t_a = 1,		/* Host address. */
291 	ns_t_ns = 2,		/* Authoritative server. */
292 	ns_t_md = 3,		/* Mail destination. */
293 	ns_t_mf = 4,		/* Mail forwarder. */
294 	ns_t_cname = 5,		/* Canonical name. */
295 	ns_t_soa = 6,		/* Start of authority zone. */
296 	ns_t_mb = 7,		/* Mailbox domain name. */
297 	ns_t_mg = 8,		/* Mail group member. */
298 	ns_t_mr = 9,		/* Mail rename name. */
299 	ns_t_null = 10,		/* Null resource record. */
300 	ns_t_wks = 11,		/* Well known service. */
301 	ns_t_ptr = 12,		/* Domain name pointer. */
302 	ns_t_hinfo = 13,	/* Host information. */
303 	ns_t_minfo = 14,	/* Mailbox information. */
304 	ns_t_mx = 15,		/* Mail routing information. */
305 	ns_t_txt = 16,		/* Text strings. */
306 	ns_t_rp = 17,		/* Responsible person. */
307 	ns_t_afsdb = 18,	/* AFS cell database. */
308 	ns_t_x25 = 19,		/* X_25 calling address. */
309 	ns_t_isdn = 20,		/* ISDN calling address. */
310 	ns_t_rt = 21,		/* Router. */
311 	ns_t_nsap = 22,		/* NSAP address. */
312 	ns_t_nsap_ptr = 23,	/* Reverse NSAP lookup (deprecated). */
313 	ns_t_sig = 24,		/* Security signature. */
314 	ns_t_key = 25,		/* Security key. */
315 	ns_t_px = 26,		/* X.400 mail mapping. */
316 	ns_t_gpos = 27,		/* Geographical position (withdrawn). */
317 	ns_t_aaaa = 28,		/* IPv6 Address. */
318 	ns_t_loc = 29,		/* Location Information. */
319 	ns_t_nxt = 30,		/* Next domain (security). */
320 	ns_t_eid = 31,		/* Endpoint identifier. */
321 	ns_t_nimloc = 32,	/* Nimrod Locator. */
322 	ns_t_srv = 33,		/* Server Selection. */
323 	ns_t_atma = 34,		/* ATM Address */
324 	ns_t_naptr = 35,	/* Naming Authority PoinTeR */
325 	ns_t_kx = 36,		/* Key Exchange */
326 	ns_t_cert = 37,		/* Certification record */
327 	ns_t_a6 = 38,		/* IPv6 address (experimental) */
328 	ns_t_dname = 39,	/* Non-terminal DNAME */
329 	ns_t_sink = 40,		/* Kitchen sink (experimentatl) */
330 	ns_t_opt = 41,		/* EDNS0 option (meta-RR) */
331 	ns_t_apl = 42,		/* Address prefix list (RFC 3123) */
332 	ns_t_ds = 43,		/* Delegation Signer */
333 	ns_t_sshfp = 44,	/* SSH Fingerprint */
334 	ns_t_ipseckey = 45,	/* IPSEC Key */
335 	ns_t_rrsig = 46,	/* RRset Signature */
336 	ns_t_nsec = 47,		/* Negative security */
337 	ns_t_dnskey = 48,	/* DNS Key */
338 	ns_t_dhcid = 49,	/* Dynamic host configuratin identifier */
339 	ns_t_nsec3 = 50,	/* Negative security type 3 */
340 	ns_t_nsec3param = 51,	/* Negative security type 3 parameters */
341 	ns_t_hip = 55,		/* Host Identity Protocol */
342 	ns_t_spf = 99,		/* Sender Policy Framework */
343 	ns_t_tkey = 249,	/* Transaction key */
344 	ns_t_tsig = 250,	/* Transaction signature. */
345 	ns_t_ixfr = 251,	/* Incremental zone transfer. */
346 	ns_t_axfr = 252,	/* Transfer zone of authority. */
347 	ns_t_mailb = 253,	/* Transfer mailbox records. */
348 	ns_t_maila = 254,	/* Transfer mail agent records. */
349 	ns_t_any = 255,		/* Wildcard match. */
350 	ns_t_zxfr = 256,	/* BIND-specific, nonstandard. */
351 	ns_t_dlv = 32769,	/* DNSSEC look-aside validatation. */
352 	ns_t_max = 65536
353 } ns_type;
354 
355 /* Exclusively a QTYPE? (not also an RTYPE) */
356 #define	ns_t_qt_p(t) (ns_t_xfr_p(t) || (t) == ns_t_any || \
357 		      (t) == ns_t_mailb || (t) == ns_t_maila)
358 /* Some kind of meta-RR? (not a QTYPE, but also not an RTYPE) */
359 #define	ns_t_mrr_p(t) ((t) == ns_t_tsig || (t) == ns_t_opt)
360 /* Exclusively an RTYPE? (not also a QTYPE or a meta-RR) */
361 #define ns_t_rr_p(t) (!ns_t_qt_p(t) && !ns_t_mrr_p(t))
362 #define ns_t_udp_p(t) ((t) != ns_t_axfr && (t) != ns_t_zxfr)
363 #define ns_t_xfr_p(t) ((t) == ns_t_axfr || (t) == ns_t_ixfr || \
364 		       (t) == ns_t_zxfr)
365 
366 /*
367  * Values for class field
368  */
369 typedef enum __ns_class {
370 	ns_c_invalid = 0,	/* Cookie. */
371 	ns_c_in = 1,		/* Internet. */
372 	ns_c_2 = 2,		/* unallocated/unsupported. */
373 	ns_c_chaos = 3,		/* MIT Chaos-net. */
374 	ns_c_hs = 4,		/* MIT Hesiod. */
375 	/* Query class values which do not appear in resource records */
376 	ns_c_none = 254,	/* for prereq. sections in update requests */
377 	ns_c_any = 255,		/* Wildcard match. */
378 	ns_c_max = 65536
379 } ns_class;
380 
381 /* DNSSEC constants. */
382 
383 typedef enum __ns_key_types {
384 	ns_kt_rsa = 1,		/* key type RSA/MD5 */
385 	ns_kt_dh  = 2,		/* Diffie Hellman */
386 	ns_kt_dsa = 3,		/* Digital Signature Standard (MANDATORY) */
387 	ns_kt_private = 254	/* Private key type starts with OID */
388 } ns_key_types;
389 
390 typedef enum __ns_cert_types {
391 	cert_t_pkix = 1,	/* PKIX (X.509v3) */
392 	cert_t_spki = 2,	/* SPKI */
393 	cert_t_pgp  = 3,	/* PGP */
394 	cert_t_url  = 253,	/* URL private type */
395 	cert_t_oid  = 254	/* OID private type */
396 } ns_cert_types;
397 
398 /* Flags field of the KEY RR rdata. */
399 #define	NS_KEY_TYPEMASK		0xC000	/* Mask for "type" bits */
400 #define	NS_KEY_TYPE_AUTH_CONF	0x0000	/* Key usable for both */
401 #define	NS_KEY_TYPE_CONF_ONLY	0x8000	/* Key usable for confidentiality */
402 #define	NS_KEY_TYPE_AUTH_ONLY	0x4000	/* Key usable for authentication */
403 #define	NS_KEY_TYPE_NO_KEY	0xC000	/* No key usable for either; no key */
404 /* The type bits can also be interpreted independently, as single bits: */
405 #define	NS_KEY_NO_AUTH		0x8000	/* Key unusable for authentication */
406 #define	NS_KEY_NO_CONF		0x4000	/* Key unusable for confidentiality */
407 #define	NS_KEY_RESERVED2	0x2000	/* Security is *mandatory* if bit=0 */
408 #define	NS_KEY_EXTENDED_FLAGS	0x1000	/* reserved - must be zero */
409 #define	NS_KEY_RESERVED4	0x0800  /* reserved - must be zero */
410 #define	NS_KEY_RESERVED5	0x0400  /* reserved - must be zero */
411 #define	NS_KEY_NAME_TYPE	0x0300	/* these bits determine the type */
412 #define	NS_KEY_NAME_USER	0x0000	/* key is assoc. with user */
413 #define	NS_KEY_NAME_ENTITY	0x0200	/* key is assoc. with entity eg host */
414 #define	NS_KEY_NAME_ZONE	0x0100	/* key is zone key */
415 #define	NS_KEY_NAME_RESERVED	0x0300	/* reserved meaning */
416 #define	NS_KEY_RESERVED8	0x0080  /* reserved - must be zero */
417 #define	NS_KEY_RESERVED9	0x0040  /* reserved - must be zero */
418 #define	NS_KEY_RESERVED10	0x0020  /* reserved - must be zero */
419 #define	NS_KEY_RESERVED11	0x0010  /* reserved - must be zero */
420 #define	NS_KEY_SIGNATORYMASK	0x000F	/* key can sign RR's of same name */
421 #define	NS_KEY_RESERVED_BITMASK ( NS_KEY_RESERVED2 | \
422 				  NS_KEY_RESERVED4 | \
423 				  NS_KEY_RESERVED5 | \
424 				  NS_KEY_RESERVED8 | \
425 				  NS_KEY_RESERVED9 | \
426 				  NS_KEY_RESERVED10 | \
427 				  NS_KEY_RESERVED11 )
428 #define NS_KEY_RESERVED_BITMASK2 0xFFFF /* no bits defined here */
429 
430 /* The Algorithm field of the KEY and SIG RR's is an integer, {1..254} */
431 #define	NS_ALG_MD5RSA		1	/* MD5 with RSA */
432 #define	NS_ALG_DH               2	/* Diffie Hellman KEY */
433 #define	NS_ALG_DSA              3	/* DSA KEY */
434 #define	NS_ALG_DSS              NS_ALG_DSA
435 #define	NS_ALG_EXPIRE_ONLY	253	/* No alg, no security */
436 #define	NS_ALG_PRIVATE_OID	254	/* Key begins with OID giving alg */
437 
438 /* Protocol values  */
439 /* value 0 is reserved */
440 #define NS_KEY_PROT_TLS         1
441 #define NS_KEY_PROT_EMAIL       2
442 #define NS_KEY_PROT_DNSSEC      3
443 #define NS_KEY_PROT_IPSEC       4
444 #define NS_KEY_PROT_ANY		255
445 
446 /* Signatures */
447 #define	NS_MD5RSA_MIN_BITS	 512	/* Size of a mod or exp in bits */
448 #define	NS_MD5RSA_MAX_BITS	4096
449 	/* Total of binary mod and exp */
450 #define	NS_MD5RSA_MAX_BYTES	((NS_MD5RSA_MAX_BITS+7/8)*2+3)
451 	/* Max length of text sig block */
452 #define	NS_MD5RSA_MAX_BASE64	(((NS_MD5RSA_MAX_BYTES+2)/3)*4)
453 #define NS_MD5RSA_MIN_SIZE	((NS_MD5RSA_MIN_BITS+7)/8)
454 #define NS_MD5RSA_MAX_SIZE	((NS_MD5RSA_MAX_BITS+7)/8)
455 
456 #define NS_DSA_SIG_SIZE         41
457 #define NS_DSA_MIN_SIZE         213
458 #define NS_DSA_MAX_BYTES        405
459 
460 /* Offsets into SIG record rdata to find various values */
461 #define	NS_SIG_TYPE	0	/* Type flags */
462 #define	NS_SIG_ALG	2	/* Algorithm */
463 #define	NS_SIG_LABELS	3	/* How many labels in name */
464 #define	NS_SIG_OTTL	4	/* Original TTL */
465 #define	NS_SIG_EXPIR	8	/* Expiration time */
466 #define	NS_SIG_SIGNED	12	/* Signature time */
467 #define	NS_SIG_FOOT	16	/* Key footprint */
468 #define	NS_SIG_SIGNER	18	/* Domain name of who signed it */
469 
470 /* How RR types are represented as bit-flags in NXT records */
471 #define	NS_NXT_BITS 8
472 #define	NS_NXT_BIT_SET(  n,p) (p[(n)/NS_NXT_BITS] |=  (0x80>>((n)%NS_NXT_BITS)))
473 #define	NS_NXT_BIT_CLEAR(n,p) (p[(n)/NS_NXT_BITS] &= ~(0x80>>((n)%NS_NXT_BITS)))
474 #define	NS_NXT_BIT_ISSET(n,p) (p[(n)/NS_NXT_BITS] &   (0x80>>((n)%NS_NXT_BITS)))
475 #define NS_NXT_MAX 127
476 
477 /*
478  * EDNS0 extended flags and option codes, host order.
479  */
480 #define NS_OPT_DNSSEC_OK	0x8000U
481 #define NS_OPT_NSID             3
482 #define NS_OPT_PADDING          12
483 
484 /*
485  * Inline versions of get/put short/long.  Pointer is advanced.
486  */
487 #define NS_GET16(s, cp) do { \
488 	const u_char *t_cp = (const u_char *)(cp); \
489 	(s) = ((uint16_t)t_cp[0] << 8) \
490 	    | ((uint16_t)t_cp[1]) \
491 	    ; \
492 	(cp) += NS_INT16SZ; \
493 } while (/*CONSTCOND*/0)
494 
495 #define NS_GET32(l, cp) do { \
496 	const u_char *t_cp = (const u_char *)(cp); \
497 	(l) = ((uint32_t)t_cp[0] << 24) \
498 	    | ((uint32_t)t_cp[1] << 16) \
499 	    | ((uint32_t)t_cp[2] << 8) \
500 	    | ((uint32_t)t_cp[3]) \
501 	    ; \
502 	(cp) += NS_INT32SZ; \
503 } while (/*CONSTCOND*/0)
504 
505 #define NS_PUT16(s, cp) do { \
506 	uint32_t t_s = (uint32_t)(s); \
507 	u_char *t_cp = (u_char *)(cp); \
508 	*t_cp++ = t_s >> 8; \
509 	*t_cp   = t_s; \
510 	(cp) += NS_INT16SZ; \
511 } while (/*CONSTCOND*/0)
512 
513 #define NS_PUT32(l, cp) do { \
514 	uint32_t t_l = (uint32_t)(l); \
515 	u_char *t_cp = (u_char *)(cp); \
516 	*t_cp++ = t_l >> 24; \
517 	*t_cp++ = t_l >> 16; \
518 	*t_cp++ = t_l >> 8; \
519 	*t_cp   = t_l; \
520 	(cp) += NS_INT32SZ; \
521 } while (/*CONSTCOND*/0)
522 
523 __BEGIN_DECLS
524 
525 #if !defined(__LP64__)
526 /* Annoyingly, LP32 shipped with __ names. */
527 #define ns_format_ttl __ns_format_ttl
528 #define ns_get16 __ns_get16
529 #define ns_get32 __ns_get32
530 #define ns_initparse __ns_initparse
531 #define ns_makecanon __ns_makecanon
532 #define ns_msg_getflag __ns_msg_getflag
533 #define ns_name_compress __ns_name_compress
534 #define ns_name_ntol __ns_name_ntol
535 #define ns_name_ntop __ns_name_ntop
536 #define ns_name_pack __ns_name_pack
537 #define ns_name_pton __ns_name_pton
538 #define ns_name_rollback __ns_name_rollback
539 #define ns_name_skip __ns_name_skip
540 #define ns_name_uncompress __ns_name_uncompress
541 #define ns_name_unpack __ns_name_unpack
542 #define ns_parserr __ns_parserr
543 #define ns_put16 __ns_put16
544 #define ns_put32 __ns_put32
545 #define ns_samename __ns_samename
546 #define ns_skiprr __ns_skiprr
547 #define ns_sprintrr __ns_sprintrr
548 #define ns_sprintrrf __ns_sprintrrf
549 #endif
550 
551 
552 #if __BIONIC_AVAILABILITY_GUARD(22)
553 int ns_msg_getflag(ns_msg __handle, int __flag) __INTRODUCED_IN(22);
554 uint16_t ns_get16(const u_char* _Nonnull __src) __INTRODUCED_IN(22);
555 uint32_t ns_get32(const u_char* _Nonnull __src) __INTRODUCED_IN(22);
556 void ns_put16(uint16_t __src, u_char* _Nonnull __dst) __INTRODUCED_IN(22);
557 void ns_put32(uint32_t __src, u_char* _Nonnull __dst) __INTRODUCED_IN(22);
558 int ns_initparse(const u_char* _Nonnull __msg, int __msg_size, ns_msg* _Nonnull __handle) __INTRODUCED_IN(22);
559 int ns_skiprr(const u_char* _Nonnull __ptr, const u_char* _Nonnull __eom, ns_sect __section, int __count) __INTRODUCED_IN(22);
560 int ns_parserr(ns_msg* _Nonnull __handle, ns_sect __section, int __rr_number, ns_rr* _Nonnull __rr) __INTRODUCED_IN(22);
561 int ns_sprintrr(const ns_msg* _Nonnull  __handle, const ns_rr* _Nonnull __rr, const char* _Nullable __name_ctx, const char* _Nullable __origin, char* _Nonnull __buf, size_t __buf_size) __INTRODUCED_IN(22);
562 int ns_sprintrrf(const u_char* _Nonnull __msg, size_t __msg_size, const char* _Nonnull __name, ns_class __class, ns_type __type, u_long __ttl, const u_char* _Nonnull __rdata, size_t __rdata_size, const char* _Nullable __name_ctx, const char* _Nullable __origin, char* _Nonnull __buf, size_t __buf_size) __INTRODUCED_IN(22);
563 int ns_format_ttl(u_long __ttl, char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
564 int ns_name_ntol(const u_char* _Nonnull __src, u_char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
565 int ns_name_ntop(const u_char* _Nonnull __src, char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
566 int ns_name_pton(const char* _Nonnull __src, u_char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
567 int ns_name_unpack(const u_char* _Nonnull __msg, const u_char* _Nonnull __eom, const u_char* _Nonnull __src, u_char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
568 int ns_name_pack(const u_char* _Nonnull __src, u_char* _Nonnull __dst, int __dst_size, const u_char* _Nullable * _Nullable __dn_ptrs, const u_char* _Nullable * _Nullable __last_dn_ptr) __INTRODUCED_IN(22);
569 int ns_name_uncompress(const u_char* _Nonnull __msg, const u_char* _Nonnull __eom, const u_char* _Nonnull __src, char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
570 int ns_name_compress(const char* _Nonnull __src, u_char* _Nonnull __dst, size_t __dst_size, const u_char* _Nullable * _Nullable __dn_ptrs, const u_char* _Nullable * _Nullable __last_dn_ptr) __INTRODUCED_IN(22);
571 int ns_name_skip(const u_char* _Nullable * _Nonnull __ptr_ptr, const u_char* _Nonnull __eom) __INTRODUCED_IN(22);
572 void ns_name_rollback(const u_char* _Nonnull __src, const u_char* _Nullable * _Nonnull __dn_ptrs, const u_char* _Nullable * _Nonnull __last_dn_ptr) __INTRODUCED_IN(22);
573 
574 int ns_makecanon(const char* _Nonnull __src, char* _Nonnull __dst, size_t __dst_size) __INTRODUCED_IN(22);
575 int ns_samename(const char* _Nonnull __lhs, const char* _Nonnull __rhs) __INTRODUCED_IN(22);
576 #endif /* __BIONIC_AVAILABILITY_GUARD(22) */
577 
578 
579 __END_DECLS
580 
581 #ifdef BIND_4_COMPAT
582 #include <arpa/nameser_compat.h>
583 #endif
584 
585 #endif /* !_ARPA_NAMESER_H_ */
586