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https://gitlab.isc.org/isc-projects/bind9
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this parameter was added as a (minor) optimization for cases where dns_name_towire() is run repeatedly with the same compression context, as when rendering all of the rdatas in an rdataset. it is currently only used in one place. we now simplify the interface by removing the extra parameter. the compression offset value is now part of the compression context, and can be activated when needed by calling dns_compress_setmultiuse(). multiuse mode is automatically deactivated by any subsequent call to dns_compress_permitted().
244 lines
5.6 KiB
C
244 lines
5.6 KiB
C
/*
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* Copyright (C) Internet Systems Consortium, Inc. ("ISC")
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*
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* SPDX-License-Identifier: MPL-2.0
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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 https://mozilla.org/MPL/2.0/.
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*
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* See the COPYRIGHT file distributed with this work for additional
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* information regarding copyright ownership.
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*/
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/* RFC1348. Obsoleted in RFC 1706 - use PTR instead. */
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#ifndef RDATA_IN_1_NSAP_PTR_23_C
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#define RDATA_IN_1_NSAP_PTR_23_C
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#define RRTYPE_NSAP_PTR_ATTRIBUTES (0)
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static isc_result_t
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fromtext_in_nsap_ptr(ARGS_FROMTEXT) {
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isc_token_t token;
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dns_name_t name;
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isc_buffer_t buffer;
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REQUIRE(type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdclass == dns_rdataclass_in);
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UNUSED(type);
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UNUSED(rdclass);
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UNUSED(callbacks);
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RETERR(isc_lex_getmastertoken(lexer, &token, isc_tokentype_string,
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false));
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dns_name_init(&name);
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buffer_fromregion(&buffer, &token.value.as_region);
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if (origin == NULL) {
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origin = dns_rootname;
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}
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RETTOK(dns_name_fromtext(&name, &buffer, origin, options, target));
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return ISC_R_SUCCESS;
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}
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static isc_result_t
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totext_in_nsap_ptr(ARGS_TOTEXT) {
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isc_region_t region;
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dns_name_t name;
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dns_name_t prefix;
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unsigned int opts;
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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REQUIRE(rdata->length != 0);
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dns_name_init(&name);
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dns_name_init(&prefix);
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dns_rdata_toregion(rdata, ®ion);
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dns_name_fromregion(&name, ®ion);
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opts = name_prefix(&name, tctx->origin, &prefix) ? DNS_NAME_OMITFINALDOT
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: 0;
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return dns_name_totext(&prefix, opts, target);
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}
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static isc_result_t
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fromwire_in_nsap_ptr(ARGS_FROMWIRE) {
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dns_name_t name;
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REQUIRE(type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdclass == dns_rdataclass_in);
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UNUSED(type);
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UNUSED(rdclass);
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dctx = dns_decompress_setpermitted(dctx, false);
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dns_name_init(&name);
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return dns_name_fromwire(&name, source, dctx, target);
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}
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static isc_result_t
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towire_in_nsap_ptr(ARGS_TOWIRE) {
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dns_name_t name;
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isc_region_t region;
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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REQUIRE(rdata->length != 0);
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dns_compress_setpermitted(cctx, false);
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dns_name_init(&name);
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dns_rdata_toregion(rdata, ®ion);
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dns_name_fromregion(&name, ®ion);
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return dns_name_towire(&name, cctx, target);
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}
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static int
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compare_in_nsap_ptr(ARGS_COMPARE) {
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dns_name_t name1;
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dns_name_t name2;
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isc_region_t region1;
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isc_region_t region2;
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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_nsap_ptr);
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REQUIRE(rdata1->rdclass == dns_rdataclass_in);
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REQUIRE(rdata1->length != 0);
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REQUIRE(rdata2->length != 0);
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dns_name_init(&name1);
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dns_name_init(&name2);
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dns_rdata_toregion(rdata1, ®ion1);
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dns_rdata_toregion(rdata2, ®ion2);
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dns_name_fromregion(&name1, ®ion1);
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dns_name_fromregion(&name2, ®ion2);
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return dns_name_rdatacompare(&name1, &name2);
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}
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static isc_result_t
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fromstruct_in_nsap_ptr(ARGS_FROMSTRUCT) {
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dns_rdata_in_nsap_ptr_t *nsap_ptr = source;
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isc_region_t region;
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REQUIRE(type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdclass == dns_rdataclass_in);
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REQUIRE(nsap_ptr != NULL);
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REQUIRE(nsap_ptr->common.rdtype == type);
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REQUIRE(nsap_ptr->common.rdclass == rdclass);
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UNUSED(type);
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UNUSED(rdclass);
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dns_name_toregion(&nsap_ptr->owner, ®ion);
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return isc_buffer_copyregion(target, ®ion);
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}
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static isc_result_t
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tostruct_in_nsap_ptr(ARGS_TOSTRUCT) {
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isc_region_t region;
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dns_rdata_in_nsap_ptr_t *nsap_ptr = target;
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dns_name_t name;
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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REQUIRE(nsap_ptr != NULL);
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REQUIRE(rdata->length != 0);
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nsap_ptr->common.rdclass = rdata->rdclass;
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nsap_ptr->common.rdtype = rdata->type;
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ISC_LINK_INIT(&nsap_ptr->common, link);
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dns_name_init(&name);
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dns_rdata_toregion(rdata, ®ion);
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dns_name_fromregion(&name, ®ion);
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dns_name_init(&nsap_ptr->owner);
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name_duporclone(&name, mctx, &nsap_ptr->owner);
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nsap_ptr->mctx = mctx;
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return ISC_R_SUCCESS;
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}
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static void
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freestruct_in_nsap_ptr(ARGS_FREESTRUCT) {
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dns_rdata_in_nsap_ptr_t *nsap_ptr = source;
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REQUIRE(nsap_ptr != NULL);
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REQUIRE(nsap_ptr->common.rdclass == dns_rdataclass_in);
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REQUIRE(nsap_ptr->common.rdtype == dns_rdatatype_nsap_ptr);
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if (nsap_ptr->mctx == NULL) {
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return;
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}
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dns_name_free(&nsap_ptr->owner, nsap_ptr->mctx);
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nsap_ptr->mctx = NULL;
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}
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static isc_result_t
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additionaldata_in_nsap_ptr(ARGS_ADDLDATA) {
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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UNUSED(rdata);
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UNUSED(owner);
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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 isc_result_t
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digest_in_nsap_ptr(ARGS_DIGEST) {
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isc_region_t r;
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dns_name_t name;
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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dns_rdata_toregion(rdata, &r);
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dns_name_init(&name);
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dns_name_fromregion(&name, &r);
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return dns_name_digest(&name, digest, arg);
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}
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static bool
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checkowner_in_nsap_ptr(ARGS_CHECKOWNER) {
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REQUIRE(type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdclass == dns_rdataclass_in);
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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 true;
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}
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static bool
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checknames_in_nsap_ptr(ARGS_CHECKNAMES) {
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REQUIRE(rdata->type == dns_rdatatype_nsap_ptr);
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REQUIRE(rdata->rdclass == dns_rdataclass_in);
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UNUSED(rdata);
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UNUSED(owner);
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UNUSED(bad);
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return true;
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}
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static int
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casecompare_in_nsap_ptr(ARGS_COMPARE) {
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return compare_in_nsap_ptr(rdata1, rdata2);
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}
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#endif /* RDATA_IN_1_NSAP_PTR_23_C */
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