/*-1* SPDX-License-Identifier: (ISC AND BSD-3-Clause)2*3* Portions Copyright (C) 2004, 2005, 2008, 2009 Internet Systems Consortium, Inc. ("ISC")4* Portions Copyright (C) 1996-2003 Internet Software Consortium.5*6* Permission to use, copy, modify, and/or distribute this software for any7* purpose with or without fee is hereby granted, provided that the above8* copyright notice and this permission notice appear in all copies.9*10* THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES WITH11* REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY12* AND FITNESS. IN NO EVENT SHALL ISC BE LIABLE FOR ANY SPECIAL, DIRECT,13* INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM14* LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE15* OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR16* PERFORMANCE OF THIS SOFTWARE.17*/1819/*-20* Copyright (c) 1983, 1989, 199321* The Regents of the University of California. All rights reserved.22*23* Redistribution and use in source and binary forms, with or without24* modification, are permitted provided that the following conditions25* are met:26* 1. Redistributions of source code must retain the above copyright27* notice, this list of conditions and the following disclaimer.28* 2. Redistributions in binary form must reproduce the above copyright29* notice, this list of conditions and the following disclaimer in the30* documentation and/or other materials provided with the distribution.31* 3. Neither the name of the University nor the names of its contributors32* may be used to endorse or promote products derived from this software33* without specific prior written permission.34*35* THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND36* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE37* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE38* ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE39* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL40* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS41* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)42* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT43* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY44* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF45* SUCH DAMAGE.46*/4748/*49* $Id: nameser.h,v 1.16 2009/03/03 01:52:48 each Exp $50*/5152#ifndef _ARPA_NAMESER_H_53#define _ARPA_NAMESER_H_5455/*! \file */5657#define BIND_4_COMPAT5859#include <sys/param.h>60#include <sys/types.h>61#include <sys/cdefs.h>6263/*%64* Revision information. This is the release date in YYYYMMDD format.65* It can change every day so the right thing to do with it is use it66* in preprocessor commands such as "#if (__NAMESER > 19931104)". Do not67* compare for equality; rather, use it to determine whether your libbind.a68* contains a new enough lib/nameser/ to support the feature you need.69*/7071#define __NAMESER 20090302 /*%< New interface version stamp. */72/*73* Define constants based on RFC0883, RFC1034, RFC 103574*/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 u_int32_t */87#define NS_INT16SZ 2 /*%< #/bytes of data in a u_int16_t */88#define NS_INT8SZ 1 /*%< #/bytes of data in a u_int8_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* These can be expanded with synonyms, just keep ns_parse.c:ns_parserecord()95* in synch with it.96*/97typedef enum __ns_sect {98ns_s_qd = 0, /*%< Query: Question. */99ns_s_zn = 0, /*%< Update: Zone. */100ns_s_an = 1, /*%< Query: Answer. */101ns_s_pr = 1, /*%< Update: Prerequisites. */102ns_s_ns = 2, /*%< Query: Name servers. */103ns_s_ud = 2, /*%< Update: Update. */104ns_s_ar = 3, /*%< Query|Update: Additional records. */105ns_s_max = 4106} ns_sect;107108/*%109* Network name (compressed or not) type. Equivalent to a pointer when used110* in a function prototype. Can be const'd.111*/112typedef u_char ns_nname[NS_MAXNNAME];113typedef const u_char *ns_nname_ct;114typedef u_char *ns_nname_t;115116struct ns_namemap { ns_nname_ct base; int len; };117typedef struct ns_namemap *ns_namemap_t;118typedef const struct ns_namemap *ns_namemap_ct;119120/*%121* This is a message handle. It is caller allocated and has no dynamic data.122* This structure is intended to be opaque to all but ns_parse.c, thus the123* leading _'s on the member names. Use the accessor functions, not the _'s.124*/125typedef struct __ns_msg {126const u_char *_msg, *_eom;127u_int16_t _id, _flags, _counts[ns_s_max];128const u_char *_sections[ns_s_max];129ns_sect _sect;130int _rrnum;131const u_char *_msg_ptr;132} ns_msg;133134/* Private data structure - do not use from outside library. */135struct _ns_flagdata { int mask, shift; };136extern struct _ns_flagdata _ns_flagdata[];137138/* Accessor macros - this is part of the public interface. */139140#define ns_msg_id(handle) ((handle)._id + 0)141#define ns_msg_base(handle) ((handle)._msg + 0)142#define ns_msg_end(handle) ((handle)._eom + 0)143#define ns_msg_size(handle) ((handle)._eom - (handle)._msg)144#define ns_msg_count(handle, section) ((handle)._counts[section] + 0)145146/*%147* This is a parsed record. It is caller allocated and has no dynamic data.148*/149typedef struct __ns_rr {150char name[NS_MAXDNAME];151u_int16_t type;152u_int16_t rr_class;153u_int32_t ttl;154u_int16_t rdlength;155const u_char * rdata;156} ns_rr;157158/*159* Same thing, but using uncompressed network binary names, and real C types.160*/161typedef struct __ns_rr2 {162ns_nname nname;163size_t nnamel;164int type;165int rr_class;166u_int ttl;167int rdlength;168const u_char * rdata;169} ns_rr2;170171/* Accessor macros - this is part of the public interface. */172#define ns_rr_name(rr) (((rr).name[0] != '\0') ? (rr).name : ".")173#define ns_rr_nname(rr) ((const ns_nname_t)(rr).nname)174#define ns_rr_nnamel(rr) ((rr).nnamel + 0)175#define ns_rr_type(rr) ((ns_type)((rr).type + 0))176#define ns_rr_class(rr) ((ns_class)((rr).rr_class + 0))177#define ns_rr_ttl(rr) ((rr).ttl + 0)178#define ns_rr_rdlen(rr) ((rr).rdlength + 0)179#define ns_rr_rdata(rr) ((rr).rdata + 0)180181/*%182* These don't have to be in the same order as in the packet flags word,183* and they can even overlap in some cases, but they will need to be kept184* in synch with ns_parse.c:ns_flagdata[].185*/186typedef enum __ns_flag {187ns_f_qr, /*%< Question/Response. */188ns_f_opcode, /*%< Operation code. */189ns_f_aa, /*%< Authoritative Answer. */190ns_f_tc, /*%< Truncation occurred. */191ns_f_rd, /*%< Recursion Desired. */192ns_f_ra, /*%< Recursion Available. */193ns_f_z, /*%< MBZ. */194ns_f_ad, /*%< Authentic Data (DNSSEC). */195ns_f_cd, /*%< Checking Disabled (DNSSEC). */196ns_f_rcode, /*%< Response code. */197ns_f_max198} ns_flag;199200/*%201* Currently defined opcodes.202*/203typedef enum __ns_opcode {204ns_o_query = 0, /*%< Standard query. */205ns_o_iquery = 1, /*%< Inverse query (deprecated/unsupported). */206ns_o_status = 2, /*%< Name server status query (unsupported). */207/* Opcode 3 is undefined/reserved. */208ns_o_notify = 4, /*%< Zone change notification. */209ns_o_update = 5, /*%< Zone update message. */210ns_o_max = 6211} ns_opcode;212213/*%214* Currently defined response codes.215*/216typedef enum __ns_rcode {217ns_r_noerror = 0, /*%< No error occurred. */218ns_r_formerr = 1, /*%< Format error. */219ns_r_servfail = 2, /*%< Server failure. */220ns_r_nxdomain = 3, /*%< Name error. */221ns_r_notimpl = 4, /*%< Unimplemented. */222ns_r_refused = 5, /*%< Operation refused. */223/* these are for BIND_UPDATE */224ns_r_yxdomain = 6, /*%< Name exists */225ns_r_yxrrset = 7, /*%< RRset exists */226ns_r_nxrrset = 8, /*%< RRset does not exist */227ns_r_notauth = 9, /*%< Not authoritative for zone */228ns_r_notzone = 10, /*%< Zone of record different from zone section */229ns_r_max = 11,230/* The following are EDNS extended rcodes */231ns_r_badvers = 16,232/* The following are TSIG errors */233ns_r_badsig = 16,234ns_r_badkey = 17,235ns_r_badtime = 18236} ns_rcode;237238/* BIND_UPDATE */239typedef enum __ns_update_operation {240ns_uop_delete = 0,241ns_uop_add = 1,242ns_uop_max = 2243} ns_update_operation;244245/*%246* This structure is used for TSIG authenticated messages247*/248struct ns_tsig_key {249char name[NS_MAXDNAME], alg[NS_MAXDNAME];250unsigned char *data;251int len;252};253typedef struct ns_tsig_key ns_tsig_key;254255/*%256* This structure is used for TSIG authenticated TCP messages257*/258struct ns_tcp_tsig_state {259int counter;260struct dst_key *key;261void *ctx;262unsigned char sig[NS_PACKETSZ];263int siglen;264};265typedef struct ns_tcp_tsig_state ns_tcp_tsig_state;266267#define NS_TSIG_FUDGE 300268#define NS_TSIG_TCP_COUNT 100269#define NS_TSIG_ALG_HMAC_MD5 "HMAC-MD5.SIG-ALG.REG.INT"270271#define NS_TSIG_ERROR_NO_TSIG -10272#define NS_TSIG_ERROR_NO_SPACE -11273#define NS_TSIG_ERROR_FORMERR -12274275/*%276* Currently defined type values for resources and queries.277*/278typedef enum __ns_type {279ns_t_invalid = 0, /*%< Cookie. */280ns_t_a = 1, /*%< Host address. */281ns_t_ns = 2, /*%< Authoritative server. */282ns_t_md = 3, /*%< Mail destination. */283ns_t_mf = 4, /*%< Mail forwarder. */284ns_t_cname = 5, /*%< Canonical name. */285ns_t_soa = 6, /*%< Start of authority zone. */286ns_t_mb = 7, /*%< Mailbox domain name. */287ns_t_mg = 8, /*%< Mail group member. */288ns_t_mr = 9, /*%< Mail rename name. */289ns_t_null = 10, /*%< Null resource record. */290ns_t_wks = 11, /*%< Well known service. */291ns_t_ptr = 12, /*%< Domain name pointer. */292ns_t_hinfo = 13, /*%< Host information. */293ns_t_minfo = 14, /*%< Mailbox information. */294ns_t_mx = 15, /*%< Mail routing information. */295ns_t_txt = 16, /*%< Text strings. */296ns_t_rp = 17, /*%< Responsible person. */297ns_t_afsdb = 18, /*%< AFS cell database. */298ns_t_x25 = 19, /*%< X_25 calling address. */299ns_t_isdn = 20, /*%< ISDN calling address. */300ns_t_rt = 21, /*%< Router. */301ns_t_nsap = 22, /*%< NSAP address. */302ns_t_nsap_ptr = 23, /*%< Reverse NSAP lookup (deprecated). */303ns_t_sig = 24, /*%< Security signature. */304ns_t_key = 25, /*%< Security key. */305ns_t_px = 26, /*%< X.400 mail mapping. */306ns_t_gpos = 27, /*%< Geographical position (withdrawn). */307ns_t_aaaa = 28, /*%< IPv6 Address. */308ns_t_loc = 29, /*%< Location Information. */309ns_t_nxt = 30, /*%< Next domain (security). */310ns_t_eid = 31, /*%< Endpoint identifier. */311ns_t_nimloc = 32, /*%< Nimrod Locator. */312ns_t_srv = 33, /*%< Server Selection. */313ns_t_atma = 34, /*%< ATM Address */314ns_t_naptr = 35, /*%< Naming Authority PoinTeR */315ns_t_kx = 36, /*%< Key Exchange */316ns_t_cert = 37, /*%< Certification record */317ns_t_a6 = 38, /*%< IPv6 address (experimental) */318ns_t_dname = 39, /*%< Non-terminal DNAME */319ns_t_sink = 40, /*%< Kitchen sink (experimentatl) */320ns_t_opt = 41, /*%< EDNS0 option (meta-RR) */321ns_t_apl = 42, /*%< Address prefix list (RFC3123) */322ns_t_ds = 43, /*%< Delegation Signer */323ns_t_sshfp = 44, /*%< SSH Fingerprint */324ns_t_ipseckey = 45, /*%< IPSEC Key */325ns_t_rrsig = 46, /*%< RRset Signature */326ns_t_nsec = 47, /*%< Negative security */327ns_t_dnskey = 48, /*%< DNS Key */328ns_t_dhcid = 49, /*%< Dynamic host configuratin identifier */329ns_t_nsec3 = 50, /*%< Negative security type 3 */330ns_t_nsec3param = 51, /*%< Negative security type 3 parameters */331ns_t_hip = 55, /*%< Host Identity Protocol */332ns_t_spf = 99, /*%< Sender Policy Framework */333ns_t_tkey = 249, /*%< Transaction key */334ns_t_tsig = 250, /*%< Transaction signature. */335ns_t_ixfr = 251, /*%< Incremental zone transfer. */336ns_t_axfr = 252, /*%< Transfer zone of authority. */337ns_t_mailb = 253, /*%< Transfer mailbox records. */338ns_t_maila = 254, /*%< Transfer mail agent records. */339ns_t_any = 255, /*%< Wildcard match. */340ns_t_zxfr = 256, /*%< BIND-specific, nonstandard. */341ns_t_dlv = 32769, /*%< DNSSEC look-aside validatation. */342ns_t_max = 65536343} ns_type;344345/* Exclusively a QTYPE? (not also an RTYPE) */346#define ns_t_qt_p(t) (ns_t_xfr_p(t) || (t) == ns_t_any || \347(t) == ns_t_mailb || (t) == ns_t_maila)348/* Some kind of meta-RR? (not a QTYPE, but also not an RTYPE) */349#define ns_t_mrr_p(t) ((t) == ns_t_tsig || (t) == ns_t_opt)350/* Exclusively an RTYPE? (not also a QTYPE or a meta-RR) */351#define ns_t_rr_p(t) (!ns_t_qt_p(t) && !ns_t_mrr_p(t))352#define ns_t_udp_p(t) ((t) != ns_t_axfr && (t) != ns_t_zxfr)353#define ns_t_xfr_p(t) ((t) == ns_t_axfr || (t) == ns_t_ixfr || \354(t) == ns_t_zxfr)355356/*%357* Values for class field358*/359typedef enum __ns_class {360ns_c_invalid = 0, /*%< Cookie. */361ns_c_in = 1, /*%< Internet. */362ns_c_2 = 2, /*%< unallocated/unsupported. */363ns_c_chaos = 3, /*%< MIT Chaos-net. */364ns_c_hs = 4, /*%< MIT Hesiod. */365/* Query class values which do not appear in resource records */366ns_c_none = 254, /*%< for prereq. sections in update requests */367ns_c_any = 255, /*%< Wildcard match. */368ns_c_max = 65536369} ns_class;370371/* DNSSEC constants. */372373typedef enum __ns_key_types {374ns_kt_rsa = 1, /*%< key type RSA/MD5 */375ns_kt_dh = 2, /*%< Diffie Hellman */376ns_kt_dsa = 3, /*%< Digital Signature Standard (MANDATORY) */377ns_kt_private = 254 /*%< Private key type starts with OID */378} ns_key_types;379380typedef enum __ns_cert_types {381cert_t_pkix = 1, /*%< PKIX (X.509v3) */382cert_t_spki = 2, /*%< SPKI */383cert_t_pgp = 3, /*%< PGP */384cert_t_url = 253, /*%< URL private type */385cert_t_oid = 254 /*%< OID private type */386} ns_cert_types;387388/* Flags field of the KEY RR rdata. */389#define NS_KEY_TYPEMASK 0xC000 /*%< Mask for "type" bits */390#define NS_KEY_TYPE_AUTH_CONF 0x0000 /*%< Key usable for both */391#define NS_KEY_TYPE_CONF_ONLY 0x8000 /*%< Key usable for confidentiality */392#define NS_KEY_TYPE_AUTH_ONLY 0x4000 /*%< Key usable for authentication */393#define NS_KEY_TYPE_NO_KEY 0xC000 /*%< No key usable for either; no key */394/* The type bits can also be interpreted independently, as single bits: */395#define NS_KEY_NO_AUTH 0x8000 /*%< Key unusable for authentication */396#define NS_KEY_NO_CONF 0x4000 /*%< Key unusable for confidentiality */397#define NS_KEY_RESERVED2 0x2000 /* Security is *mandatory* if bit=0 */398#define NS_KEY_EXTENDED_FLAGS 0x1000 /*%< reserved - must be zero */399#define NS_KEY_RESERVED4 0x0800 /*%< reserved - must be zero */400#define NS_KEY_RESERVED5 0x0400 /*%< reserved - must be zero */401#define NS_KEY_NAME_TYPE 0x0300 /*%< these bits determine the type */402#define NS_KEY_NAME_USER 0x0000 /*%< key is assoc. with user */403#define NS_KEY_NAME_ENTITY 0x0200 /*%< key is assoc. with entity eg host */404#define NS_KEY_NAME_ZONE 0x0100 /*%< key is zone key */405#define NS_KEY_NAME_RESERVED 0x0300 /*%< reserved meaning */406#define NS_KEY_RESERVED8 0x0080 /*%< reserved - must be zero */407#define NS_KEY_RESERVED9 0x0040 /*%< reserved - must be zero */408#define NS_KEY_RESERVED10 0x0020 /*%< reserved - must be zero */409#define NS_KEY_RESERVED11 0x0010 /*%< reserved - must be zero */410#define NS_KEY_SIGNATORYMASK 0x000F /*%< key can sign RR's of same name */411#define NS_KEY_RESERVED_BITMASK ( NS_KEY_RESERVED2 | \412NS_KEY_RESERVED4 | \413NS_KEY_RESERVED5 | \414NS_KEY_RESERVED8 | \415NS_KEY_RESERVED9 | \416NS_KEY_RESERVED10 | \417NS_KEY_RESERVED11 )418#define NS_KEY_RESERVED_BITMASK2 0xFFFF /*%< no bits defined here */419/* The Algorithm field of the KEY and SIG RR's is an integer, {1..254} */420#define NS_ALG_MD5RSA 1 /*%< MD5 with RSA */421#define NS_ALG_DH 2 /*%< Diffie Hellman KEY */422#define NS_ALG_DSA 3 /*%< DSA KEY */423#define NS_ALG_DSS NS_ALG_DSA424#define NS_ALG_EXPIRE_ONLY 253 /*%< No alg, no security */425#define NS_ALG_PRIVATE_OID 254 /*%< Key begins with OID giving alg */426/* Protocol values */427/* value 0 is reserved */428#define NS_KEY_PROT_TLS 1429#define NS_KEY_PROT_EMAIL 2430#define NS_KEY_PROT_DNSSEC 3431#define NS_KEY_PROT_IPSEC 4432#define NS_KEY_PROT_ANY 255433434/* Signatures */435#define NS_MD5RSA_MIN_BITS 512 /*%< Size of a mod or exp in bits */436#define NS_MD5RSA_MAX_BITS 4096437/* Total of binary mod and exp */438#define NS_MD5RSA_MAX_BYTES ((NS_MD5RSA_MAX_BITS+7/8)*2+3)439/* Max length of text sig block */440#define NS_MD5RSA_MAX_BASE64 (((NS_MD5RSA_MAX_BYTES+2)/3)*4)441#define NS_MD5RSA_MIN_SIZE ((NS_MD5RSA_MIN_BITS+7)/8)442#define NS_MD5RSA_MAX_SIZE ((NS_MD5RSA_MAX_BITS+7)/8)443444#define NS_DSA_SIG_SIZE 41445#define NS_DSA_MIN_SIZE 213446#define NS_DSA_MAX_BYTES 405447448/* Offsets into SIG record rdata to find various values */449#define NS_SIG_TYPE 0 /*%< Type flags */450#define NS_SIG_ALG 2 /*%< Algorithm */451#define NS_SIG_LABELS 3 /*%< How many labels in name */452#define NS_SIG_OTTL 4 /*%< Original TTL */453#define NS_SIG_EXPIR 8 /*%< Expiration time */454#define NS_SIG_SIGNED 12 /*%< Signature time */455#define NS_SIG_FOOT 16 /*%< Key footprint */456#define NS_SIG_SIGNER 18 /*%< Domain name of who signed it */457/* How RR types are represented as bit-flags in NXT records */458#define NS_NXT_BITS 8459#define NS_NXT_BIT_SET( n,p) (p[(n)/NS_NXT_BITS] |= (0x80>>((n)%NS_NXT_BITS)))460#define NS_NXT_BIT_CLEAR(n,p) (p[(n)/NS_NXT_BITS] &= ~(0x80>>((n)%NS_NXT_BITS)))461#define NS_NXT_BIT_ISSET(n,p) (p[(n)/NS_NXT_BITS] & (0x80>>((n)%NS_NXT_BITS)))462#define NS_NXT_MAX 127463464/*%465* EDNS0 extended flags and option codes, host order.466*/467#define NS_OPT_DNSSEC_OK 0x8000U468#define NS_OPT_NSID 3469470/*%471* Inline versions of get/put short/long. Pointer is advanced.472*/473#define NS_GET16(s, cp) do { \474register const u_char *t_cp = (const u_char *)(cp); \475(s) = ((u_int16_t)t_cp[0] << 8) \476| ((u_int16_t)t_cp[1]) \477; \478(cp) += NS_INT16SZ; \479} while (0)480481#define NS_GET32(l, cp) do { \482register const u_char *t_cp = (const u_char *)(cp); \483(l) = ((u_int32_t)t_cp[0] << 24) \484| ((u_int32_t)t_cp[1] << 16) \485| ((u_int32_t)t_cp[2] << 8) \486| ((u_int32_t)t_cp[3]) \487; \488(cp) += NS_INT32SZ; \489} while (0)490491#define NS_PUT16(s, cp) do { \492register u_int16_t t_s = (u_int16_t)(s); \493register u_char *t_cp = (u_char *)(cp); \494*t_cp++ = t_s >> 8; \495*t_cp = t_s; \496(cp) += NS_INT16SZ; \497} while (0)498499#define NS_PUT32(l, cp) do { \500register u_int32_t t_l = (u_int32_t)(l); \501register u_char *t_cp = (u_char *)(cp); \502*t_cp++ = t_l >> 24; \503*t_cp++ = t_l >> 16; \504*t_cp++ = t_l >> 8; \505*t_cp = t_l; \506(cp) += NS_INT32SZ; \507} while (0)508509/*%510* ANSI C identifier hiding for bind's lib/nameser.511*/512#define ns_msg_getflag __ns_msg_getflag513#define ns_get16 __ns_get16514#define ns_get32 __ns_get32515#define ns_put16 __ns_put16516#define ns_put32 __ns_put32517#define ns_initparse __ns_initparse518#define ns_skiprr __ns_skiprr519#define ns_parserr __ns_parserr520#define ns_parserr2 __ns_parserr2521#define ns_sprintrr __ns_sprintrr522#define ns_sprintrrf __ns_sprintrrf523#define ns_format_ttl __ns_format_ttl524#define ns_parse_ttl __ns_parse_ttl525#if 0526#define ns_datetosecs __ns_datetosecs527#endif528#define ns_name_ntol __ns_name_ntol529#define ns_name_ntop __ns_name_ntop530#define ns_name_pton __ns_name_pton531#define ns_name_pton2 __ns_name_pton2532#define ns_name_unpack __ns_name_unpack533#define ns_name_unpack2 __ns_name_unpack2534#define ns_name_pack __ns_name_pack535#define ns_name_compress __ns_name_compress536#define ns_name_uncompress __ns_name_uncompress537#define ns_name_skip __ns_name_skip538#define ns_name_rollback __ns_name_rollback539#define ns_name_length __ns_name_length540#define ns_name_eq __ns_name_eq541#define ns_name_owned __ns_name_owned542#define ns_name_map __ns_name_map543#define ns_name_labels __ns_name_labels544#if 0545#define ns_sign __ns_sign546#define ns_sign2 __ns_sign2547#define ns_sign_tcp __ns_sign_tcp548#define ns_sign_tcp2 __ns_sign_tcp2549#define ns_sign_tcp_init __ns_sign_tcp_init550#define ns_find_tsig __ns_find_tsig551#define ns_verify __ns_verify552#define ns_verify_tcp __ns_verify_tcp553#define ns_verify_tcp_init __ns_verify_tcp_init554#endif555#define ns_samedomain __ns_samedomain556#if 0557#define ns_subdomain __ns_subdomain558#endif559#define ns_makecanon __ns_makecanon560#define ns_samename __ns_samename561562__BEGIN_DECLS563int ns_msg_getflag(ns_msg, int);564u_int ns_get16(const u_char *);565u_long ns_get32(const u_char *);566void ns_put16(u_int, u_char *);567void ns_put32(u_long, u_char *);568int ns_initparse(const u_char *, int, ns_msg *);569int ns_skiprr(const u_char *, const u_char *, ns_sect, int);570int ns_parserr(ns_msg *, ns_sect, int, ns_rr *);571int ns_parserr2(ns_msg *, ns_sect, int, ns_rr2 *);572int ns_sprintrr(const ns_msg *, const ns_rr *,573const char *, const char *, char *, size_t);574int ns_sprintrrf(const u_char *, size_t, const char *,575ns_class, ns_type, u_long, const u_char *,576size_t, const char *, const char *,577char *, size_t);578int ns_format_ttl(u_long, char *, size_t);579int ns_parse_ttl(const char *, u_long *);580#if 0581u_int32_t ns_datetosecs(const char *cp, int *errp);582#endif583int ns_name_ntol(const u_char *, u_char *, size_t);584int ns_name_ntop(const u_char *, char *, size_t);585int ns_name_pton(const char *, u_char *, size_t);586int ns_name_pton2(const char *, u_char *, size_t, size_t *);587int ns_name_unpack(const u_char *, const u_char *,588const u_char *, u_char *, size_t);589int ns_name_unpack2(const u_char *, const u_char *,590const u_char *, u_char *, size_t,591size_t *);592int ns_name_pack(const u_char *, u_char *, int,593const u_char **, const u_char **);594int ns_name_uncompress(const u_char *, const u_char *,595const u_char *, char *, size_t);596int ns_name_compress(const char *, u_char *, size_t,597const u_char **, const u_char **);598int ns_name_skip(const u_char **, const u_char *);599void ns_name_rollback(const u_char *, const u_char **,600const u_char **);601ssize_t ns_name_length(ns_nname_ct, size_t);602int ns_name_eq(ns_nname_ct, size_t, ns_nname_ct, size_t);603int ns_name_owned(ns_namemap_ct, int, ns_namemap_ct, int);604int ns_name_map(ns_nname_ct, size_t, ns_namemap_t, int);605int ns_name_labels(ns_nname_ct, size_t);606#if 0607int ns_sign(u_char *, int *, int, int, void *,608const u_char *, int, u_char *, int *, time_t);609int ns_sign2(u_char *, int *, int, int, void *,610const u_char *, int, u_char *, int *, time_t,611u_char **, u_char **);612int ns_sign_tcp(u_char *, int *, int, int,613ns_tcp_tsig_state *, int);614int ns_sign_tcp2(u_char *, int *, int, int,615ns_tcp_tsig_state *, int,616u_char **, u_char **);617int ns_sign_tcp_init(void *, const u_char *, int,618ns_tcp_tsig_state *);619u_char *ns_find_tsig(u_char *, u_char *);620int ns_verify(u_char *, int *, void *,621const u_char *, int, u_char *, int *,622time_t *, int);623int ns_verify_tcp(u_char *, int *, ns_tcp_tsig_state *, int);624int ns_verify_tcp_init(void *, const u_char *, int,625ns_tcp_tsig_state *);626#endif627int ns_samedomain(const char *, const char *);628#if 0629int ns_subdomain(const char *, const char *);630#endif631int ns_makecanon(const char *, char *, size_t);632int ns_samename(const char *, const char *);633__END_DECLS634635#ifdef BIND_4_COMPAT636#include <arpa/nameser_compat.h>637#endif638639#endif /* !_ARPA_NAMESER_H_ */640/*! \file */641642643