mirror of
https://github.com/isc-projects/bind9.git
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438 lines
9.9 KiB
C
438 lines
9.9 KiB
C
/*
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* Copyright (C) 1999-2005, 2007, 2009, 2011-2013, 2015, 2016 Internet Systems Consortium, Inc. ("ISC")
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*/
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/* $Id$ */
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/*
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* Reviewed: Wed Mar 15 16:47:10 PST 2000 by halley.
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*/
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/* RFC2535 */
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#ifndef RDATA_GENERIC_KEY_25_C
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#define RDATA_GENERIC_KEY_25_C
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#include <dst/dst.h>
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#define RRTYPE_KEY_ATTRIBUTES (0)
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static inline isc_result_t
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generic_fromtext_key(ARGS_FROMTEXT) {
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isc_result_t result;
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isc_token_t token;
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dns_secalg_t alg;
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dns_secproto_t proto;
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dns_keyflags_t flags;
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UNUSED(type);
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UNUSED(rdclass);
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UNUSED(origin);
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UNUSED(options);
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UNUSED(callbacks);
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/* flags */
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RETERR(isc_lex_getmastertoken(lexer, &token, isc_tokentype_string,
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ISC_FALSE));
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RETTOK(dns_keyflags_fromtext(&flags, &token.value.as_textregion));
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RETERR(uint16_tobuffer(flags, target));
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/* protocol */
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RETERR(isc_lex_getmastertoken(lexer, &token, isc_tokentype_string,
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ISC_FALSE));
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RETTOK(dns_secproto_fromtext(&proto, &token.value.as_textregion));
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RETERR(mem_tobuffer(target, &proto, 1));
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/* algorithm */
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RETERR(isc_lex_getmastertoken(lexer, &token, isc_tokentype_string,
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ISC_FALSE));
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RETTOK(dns_secalg_fromtext(&alg, &token.value.as_textregion));
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RETERR(mem_tobuffer(target, &alg, 1));
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/* No Key? */
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if ((flags & 0xc000) == 0xc000)
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return (ISC_R_SUCCESS);
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result = isc_base64_tobuffer(lexer, target, -1);
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if (result != ISC_R_SUCCESS)
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return (result);
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/* Ensure there's at least enough data to compute a key ID for MD5 */
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if (alg == DST_ALG_RSAMD5 && isc_buffer_usedlength(target) < 7)
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return (ISC_R_UNEXPECTEDEND);
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return (ISC_R_SUCCESS);
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}
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static inline isc_result_t
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generic_totext_key(ARGS_TOTEXT) {
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isc_region_t sr;
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char buf[sizeof("[key id = 64000]")];
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unsigned int flags;
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unsigned char algorithm;
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char algbuf[DNS_NAME_FORMATSIZE];
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const char *keyinfo;
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isc_region_t tmpr;
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REQUIRE(rdata->length != 0);
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dns_rdata_toregion(rdata, &sr);
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/* flags */
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flags = uint16_fromregion(&sr);
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isc_region_consume(&sr, 2);
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sprintf(buf, "%u", flags);
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RETERR(str_totext(buf, target));
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RETERR(str_totext(" ", target));
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if ((flags & DNS_KEYFLAG_KSK) != 0) {
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if (flags & DNS_KEYFLAG_REVOKE)
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keyinfo = "revoked KSK";
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else
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keyinfo = "KSK";
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} else
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keyinfo = "ZSK";
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/* protocol */
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sprintf(buf, "%u", sr.base[0]);
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isc_region_consume(&sr, 1);
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RETERR(str_totext(buf, target));
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RETERR(str_totext(" ", target));
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/* algorithm */
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algorithm = sr.base[0];
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sprintf(buf, "%u", algorithm);
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isc_region_consume(&sr, 1);
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RETERR(str_totext(buf, target));
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/* No Key? */
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if ((flags & 0xc000) == 0xc000)
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return (ISC_R_SUCCESS);
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if ((tctx->flags & DNS_STYLEFLAG_RRCOMMENT) != 0 &&
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algorithm == DNS_KEYALG_PRIVATEDNS) {
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dns_name_t name;
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dns_name_init(&name, NULL);
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dns_name_fromregion(&name, &sr);
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dns_name_format(&name, algbuf, sizeof(algbuf));
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} else {
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dns_secalg_format((dns_secalg_t) algorithm, algbuf,
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sizeof(algbuf));
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}
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/* key */
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if ((tctx->flags & DNS_STYLEFLAG_MULTILINE) != 0)
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RETERR(str_totext(" (", target));
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RETERR(str_totext(tctx->linebreak, target));
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if ((tctx->flags & DNS_STYLEFLAG_NOCRYPTO) == 0) {
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if (tctx->width == 0) /* No splitting */
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RETERR(isc_base64_totext(&sr, 60, "", target));
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else
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RETERR(isc_base64_totext(&sr, tctx->width - 2,
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tctx->linebreak, target));
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} else {
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dns_rdata_toregion(rdata, &tmpr);
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snprintf(buf, sizeof(buf), "[key id = %u]",
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dst_region_computeid(&tmpr, algorithm));
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RETERR(str_totext(buf, target));
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}
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if ((tctx->flags & DNS_STYLEFLAG_RRCOMMENT) != 0)
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RETERR(str_totext(tctx->linebreak, target));
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else if ((tctx->flags & DNS_STYLEFLAG_MULTILINE) != 0)
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RETERR(str_totext(" ", target));
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if ((tctx->flags & DNS_STYLEFLAG_MULTILINE) != 0)
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RETERR(str_totext(")", target));
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if ((tctx->flags & DNS_STYLEFLAG_RRCOMMENT) != 0) {
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if (rdata->type == dns_rdatatype_dnskey ||
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rdata->type == dns_rdatatype_cdnskey) {
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RETERR(str_totext(" ; ", target));
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RETERR(str_totext(keyinfo, target));
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}
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RETERR(str_totext("; alg = ", target));
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RETERR(str_totext(algbuf, target));
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RETERR(str_totext(" ; key id = ", target));
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dns_rdata_toregion(rdata, &tmpr);
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sprintf(buf, "%u", dst_region_computeid(&tmpr, algorithm));
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RETERR(str_totext(buf, target));
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}
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return (ISC_R_SUCCESS);
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}
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static inline isc_result_t
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generic_fromwire_key(ARGS_FROMWIRE) {
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unsigned char algorithm;
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isc_region_t sr;
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UNUSED(type);
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UNUSED(rdclass);
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UNUSED(dctx);
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UNUSED(options);
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isc_buffer_activeregion(source, &sr);
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if (sr.length < 4)
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return (ISC_R_UNEXPECTEDEND);
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algorithm = sr.base[3];
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RETERR(mem_tobuffer(target, sr.base, 4));
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isc_region_consume(&sr, 4);
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isc_buffer_forward(source, 4);
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if (algorithm == DNS_KEYALG_PRIVATEDNS) {
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dns_name_t name;
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dns_decompress_setmethods(dctx, DNS_COMPRESS_NONE);
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dns_name_init(&name, NULL);
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RETERR(dns_name_fromwire(&name, source, dctx, options, target));
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}
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/*
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* RSAMD5 computes key ID differently from other
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* algorithms: we need to ensure there's enough data
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* present for the computation
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*/
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if (algorithm == DST_ALG_RSAMD5 && sr.length < 3)
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return (ISC_R_UNEXPECTEDEND);
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isc_buffer_activeregion(source, &sr);
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isc_buffer_forward(source, sr.length);
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return (mem_tobuffer(target, sr.base, sr.length));
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}
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static inline isc_result_t
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fromtext_key(ARGS_FROMTEXT) {
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REQUIRE(type == dns_rdatatype_key);
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return (generic_fromtext_key(rdclass, type, lexer, origin,
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options, target, callbacks));
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}
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static inline isc_result_t
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totext_key(ARGS_TOTEXT) {
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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return (generic_totext_key(rdata, tctx, target));
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}
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static inline isc_result_t
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fromwire_key(ARGS_FROMWIRE) {
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REQUIRE(type == dns_rdatatype_key);
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return (generic_fromwire_key(rdclass, type, source, dctx,
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options, target));
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}
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static inline isc_result_t
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towire_key(ARGS_TOWIRE) {
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isc_region_t sr;
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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REQUIRE(rdata->length != 0);
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UNUSED(cctx);
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dns_rdata_toregion(rdata, &sr);
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return (mem_tobuffer(target, sr.base, sr.length));
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}
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static inline int
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compare_key(ARGS_COMPARE) {
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isc_region_t r1;
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isc_region_t r2;
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REQUIRE(rdata1 != NULL);
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REQUIRE(rdata2 != NULL);
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REQUIRE(rdata1->type == rdata2->type);
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REQUIRE(rdata1->rdclass == rdata2->rdclass);
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REQUIRE(rdata1->type == dns_rdatatype_key);
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REQUIRE(rdata1->length != 0);
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REQUIRE(rdata2->length != 0);
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dns_rdata_toregion(rdata1, &r1);
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dns_rdata_toregion(rdata2, &r2);
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return (isc_region_compare(&r1, &r2));
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}
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static inline isc_result_t
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generic_fromstruct_key(ARGS_FROMSTRUCT) {
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dns_rdata_key_t *key = source;
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REQUIRE(key != NULL);
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REQUIRE(key->common.rdtype == type);
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REQUIRE(key->common.rdclass == rdclass);
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UNUSED(type);
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UNUSED(rdclass);
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/* Flags */
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RETERR(uint16_tobuffer(key->flags, target));
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/* Protocol */
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RETERR(uint8_tobuffer(key->protocol, target));
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/* Algorithm */
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RETERR(uint8_tobuffer(key->algorithm, target));
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/* Data */
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return (mem_tobuffer(target, key->data, key->datalen));
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}
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static inline isc_result_t
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generic_tostruct_key(ARGS_TOSTRUCT) {
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dns_rdata_key_t *key = target;
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isc_region_t sr;
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->length != 0);
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REQUIRE(key != NULL);
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REQUIRE(key->common.rdclass == rdata->rdclass);
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REQUIRE(key->common.rdtype == rdata->type);
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REQUIRE(!ISC_LINK_LINKED(&key->common, link));
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dns_rdata_toregion(rdata, &sr);
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/* Flags */
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if (sr.length < 2)
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return (ISC_R_UNEXPECTEDEND);
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key->flags = uint16_fromregion(&sr);
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isc_region_consume(&sr, 2);
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/* Protocol */
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if (sr.length < 1)
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return (ISC_R_UNEXPECTEDEND);
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key->protocol = uint8_fromregion(&sr);
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isc_region_consume(&sr, 1);
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/* Algorithm */
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if (sr.length < 1)
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return (ISC_R_UNEXPECTEDEND);
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key->algorithm = uint8_fromregion(&sr);
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isc_region_consume(&sr, 1);
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/* Data */
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key->datalen = sr.length;
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key->data = mem_maybedup(mctx, sr.base, key->datalen);
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if (key->data == NULL)
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return (ISC_R_NOMEMORY);
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key->mctx = mctx;
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return (ISC_R_SUCCESS);
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}
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static inline void
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generic_freestruct_key(ARGS_FREESTRUCT) {
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dns_rdata_key_t *key = (dns_rdata_key_t *) source;
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REQUIRE(key != NULL);
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if (key->mctx == NULL)
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return;
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if (key->data != NULL)
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isc_mem_free(key->mctx, key->data);
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key->mctx = NULL;
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}
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static inline isc_result_t
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fromstruct_key(ARGS_FROMSTRUCT) {
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REQUIRE(type == dns_rdatatype_key);
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return (generic_fromstruct_key(rdclass, type, source, target));
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}
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static inline isc_result_t
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tostruct_key(ARGS_TOSTRUCT) {
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dns_rdata_key_t *key = target;
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REQUIRE(key != NULL);
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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key->common.rdclass = rdata->rdclass;
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key->common.rdtype = rdata->type;
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ISC_LINK_INIT(&key->common, link);
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return (generic_tostruct_key(rdata, target, mctx));
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}
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static inline void
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freestruct_key(ARGS_FREESTRUCT) {
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dns_rdata_key_t *key = (dns_rdata_key_t *) source;
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REQUIRE(key != NULL);
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REQUIRE(key->common.rdtype == dns_rdatatype_key);
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generic_freestruct_key(source);
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}
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static inline isc_result_t
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additionaldata_key(ARGS_ADDLDATA) {
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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UNUSED(rdata);
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UNUSED(add);
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UNUSED(arg);
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return (ISC_R_SUCCESS);
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}
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static inline isc_result_t
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digest_key(ARGS_DIGEST) {
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isc_region_t r;
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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dns_rdata_toregion(rdata, &r);
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return ((digest)(arg, &r));
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}
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static inline isc_boolean_t
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checkowner_key(ARGS_CHECKOWNER) {
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REQUIRE(type == dns_rdatatype_key);
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UNUSED(name);
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UNUSED(type);
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UNUSED(rdclass);
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UNUSED(wildcard);
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return (ISC_TRUE);
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}
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static inline isc_boolean_t
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checknames_key(ARGS_CHECKNAMES) {
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REQUIRE(rdata != NULL);
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REQUIRE(rdata->type == dns_rdatatype_key);
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UNUSED(rdata);
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UNUSED(owner);
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UNUSED(bad);
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return (ISC_TRUE);
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}
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static inline int
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casecompare_key(ARGS_COMPARE) {
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return (compare_key(rdata1, rdata2));
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}
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#endif /* RDATA_GENERIC_KEY_25_C */
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