mirror of
https://github.com/isc-projects/bind9.git
synced 2026-05-26 11:22:52 -04:00
previously, there were over 40 separate definitions of CHECK macros, of
which most used "goto cleanup", and the rest "goto failure" or "goto
out". there were another 10 definitions of RETERR, of which most were
identical to CHECK, but some simply returned a result code instead of
jumping to a cleanup label.
this has now been standardized throughout the code base: RETERR is for
returning an error code in the case of an error, and CHECK is for jumping
to a cleanup tag, which is now always called "cleanup". both macros are
defined in isc/util.h.
(cherry picked from commit 52bba5cc34)
393 lines
10 KiB
C
393 lines
10 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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#include <stdbool.h>
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#include <isc/base64.h>
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#include <isc/result.h>
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#include <isc/string.h>
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#include <isc/types.h>
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#include <isc/util.h>
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#include <dns/nsec3.h>
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#include <dns/private.h>
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/*
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* We need to build the relevant chain if there exists a NSEC/NSEC3PARAM
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* at the apex; normally only one or the other of NSEC/NSEC3PARAM will exist.
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*
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* If a NSEC3PARAM RRset exists then we will need to build a NSEC chain
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* if all the NSEC3PARAM records (and associated chains) are slated for
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* destruction and we have not been told to NOT build the NSEC chain.
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*
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* If the NSEC set exist then check to see if there is a request to create
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* a NSEC3 chain.
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*
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* If neither NSEC/NSEC3PARAM RRsets exist at the origin and the private
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* type exists then we need to examine it to determine if NSEC3 chain has
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* been requested to be built otherwise a NSEC chain needs to be built.
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*/
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#define REMOVE(x) (((x) & DNS_NSEC3FLAG_REMOVE) != 0)
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#define CREATE(x) (((x) & DNS_NSEC3FLAG_CREATE) != 0)
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#define INITIAL(x) (((x) & DNS_NSEC3FLAG_INITIAL) != 0)
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#define NONSEC(x) (((x) & DNS_NSEC3FLAG_NONSEC) != 0)
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/*
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* Work out if 'param' should be ignored or not (i.e. it is in the process
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* of being removed).
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*
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* Note: we 'belt-and-braces' here by also checking for a CREATE private
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* record and keep the param record in this case.
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*/
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static bool
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ignore(dns_rdata_t *param, dns_rdataset_t *privateset) {
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isc_result_t result;
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for (result = dns_rdataset_first(privateset); result == ISC_R_SUCCESS;
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result = dns_rdataset_next(privateset))
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{
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unsigned char buf[DNS_NSEC3PARAM_BUFFERSIZE];
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dns_rdata_t private = DNS_RDATA_INIT;
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dns_rdata_t rdata = DNS_RDATA_INIT;
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dns_rdataset_current(privateset, &private);
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if (!dns_nsec3param_fromprivate(&private, &rdata, buf,
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sizeof(buf)))
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{
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continue;
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}
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/*
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* We are going to create a new NSEC3 chain so it
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* doesn't matter if we are removing this one.
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*/
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if (CREATE(rdata.data[1])) {
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return false;
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}
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if (rdata.data[0] != param->data[0] ||
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rdata.data[2] != param->data[2] ||
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rdata.data[3] != param->data[3] ||
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rdata.data[4] != param->data[4] ||
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memcmp(&rdata.data[5], ¶m->data[5], param->data[4]))
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{
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continue;
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}
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/*
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* The removal of this NSEC3 chain does NOT cause a
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* NSEC chain to be created so we don't need to tell
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* the caller that it will be removed.
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*/
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if (NONSEC(rdata.data[1])) {
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return false;
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}
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return true;
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}
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return false;
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}
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isc_result_t
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dns_private_chains(dns_db_t *db, dns_dbversion_t *ver,
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dns_rdatatype_t privatetype, bool *build_nsec,
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bool *build_nsec3) {
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dns_dbnode_t *node;
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dns_rdataset_t nsecset, nsec3paramset, privateset;
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bool nsec3chain;
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bool signing;
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isc_result_t result;
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unsigned char buf[DNS_NSEC3PARAM_BUFFERSIZE];
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unsigned int count;
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node = NULL;
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dns_rdataset_init(&nsecset);
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dns_rdataset_init(&nsec3paramset);
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dns_rdataset_init(&privateset);
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CHECK(dns_db_getoriginnode(db, &node));
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result = dns_db_findrdataset(db, node, ver, dns_rdatatype_nsec, 0,
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(isc_stdtime_t)0, &nsecset, NULL);
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if (result != ISC_R_NOTFOUND) {
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CHECK(result);
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}
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result = dns_db_findrdataset(db, node, ver, dns_rdatatype_nsec3param, 0,
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(isc_stdtime_t)0, &nsec3paramset, NULL);
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if (result != ISC_R_NOTFOUND) {
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CHECK(result);
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}
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if (dns_rdataset_isassociated(&nsecset) &&
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dns_rdataset_isassociated(&nsec3paramset))
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{
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SET_IF_NOT_NULL(build_nsec, true);
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SET_IF_NOT_NULL(build_nsec3, true);
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goto success;
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}
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if (privatetype != (dns_rdatatype_t)0) {
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result = dns_db_findrdataset(db, node, ver, privatetype, 0,
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(isc_stdtime_t)0, &privateset,
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NULL);
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if (result != ISC_R_NOTFOUND) {
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CHECK(result);
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}
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}
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/*
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* Look to see if we also need to be creating a NSEC3 chain.
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*/
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if (dns_rdataset_isassociated(&nsecset)) {
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SET_IF_NOT_NULL(build_nsec, true);
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SET_IF_NOT_NULL(build_nsec3, false);
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if (!dns_rdataset_isassociated(&privateset)) {
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goto success;
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}
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for (result = dns_rdataset_first(&privateset);
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result == ISC_R_SUCCESS;
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result = dns_rdataset_next(&privateset))
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{
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dns_rdata_t private = DNS_RDATA_INIT;
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dns_rdata_t rdata = DNS_RDATA_INIT;
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dns_rdataset_current(&privateset, &private);
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if (!dns_nsec3param_fromprivate(&private, &rdata, buf,
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sizeof(buf)))
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{
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continue;
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}
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if (REMOVE(rdata.data[1])) {
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continue;
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}
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if (build_nsec3 != NULL) {
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*build_nsec3 = true;
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}
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break;
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}
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goto success;
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}
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if (dns_rdataset_isassociated(&nsec3paramset)) {
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SET_IF_NOT_NULL(build_nsec3, true);
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SET_IF_NOT_NULL(build_nsec, false);
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if (!dns_rdataset_isassociated(&privateset)) {
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goto success;
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}
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/*
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* If we are in the process of building a new NSEC3 chain
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* then we don't need to build a NSEC chain.
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*/
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for (result = dns_rdataset_first(&privateset);
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result == ISC_R_SUCCESS;
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result = dns_rdataset_next(&privateset))
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{
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dns_rdata_t private = DNS_RDATA_INIT;
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dns_rdata_t rdata = DNS_RDATA_INIT;
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dns_rdataset_current(&privateset, &private);
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if (!dns_nsec3param_fromprivate(&private, &rdata, buf,
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sizeof(buf)))
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{
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continue;
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}
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if (CREATE(rdata.data[1])) {
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goto success;
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}
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}
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/*
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* Check to see if there will be a active NSEC3CHAIN once
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* the changes queued complete.
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*/
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count = 0;
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for (result = dns_rdataset_first(&nsec3paramset);
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result == ISC_R_SUCCESS;
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result = dns_rdataset_next(&nsec3paramset))
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{
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dns_rdata_t rdata = DNS_RDATA_INIT;
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/*
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* If there is more that one NSEC3 chain present then
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* we don't need to construct a NSEC chain.
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*/
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if (++count > 1) {
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goto success;
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}
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dns_rdataset_current(&nsec3paramset, &rdata);
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if (ignore(&rdata, &privateset)) {
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continue;
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}
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/*
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* We still have a good NSEC3 chain or we are
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* not creating a NSEC chain as NONSEC is set.
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*/
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goto success;
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}
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/*
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* The last NSEC3 chain is being removed and does not have
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* have NONSEC set.
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*/
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if (build_nsec != NULL) {
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*build_nsec = true;
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}
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goto success;
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}
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SET_IF_NOT_NULL(build_nsec, false);
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SET_IF_NOT_NULL(build_nsec3, false);
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if (!dns_rdataset_isassociated(&privateset)) {
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goto success;
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}
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signing = false;
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nsec3chain = false;
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for (result = dns_rdataset_first(&privateset); result == ISC_R_SUCCESS;
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result = dns_rdataset_next(&privateset))
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{
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dns_rdata_t rdata = DNS_RDATA_INIT;
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dns_rdata_t private = DNS_RDATA_INIT;
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dns_rdataset_current(&privateset, &private);
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if (!dns_nsec3param_fromprivate(&private, &rdata, buf,
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sizeof(buf)))
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{
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/*
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* Look for record that says we are signing the
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* zone with a key.
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*/
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if (private.length == 5 && private.data[0] != 0 &&
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private.data[3] == 0 && private.data[4] == 0)
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{
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signing = true;
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}
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} else {
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if (CREATE(rdata.data[1])) {
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nsec3chain = true;
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}
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}
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}
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if (signing) {
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if (nsec3chain) {
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if (build_nsec3 != NULL) {
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*build_nsec3 = true;
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}
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} else {
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if (build_nsec != NULL) {
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*build_nsec = true;
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}
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}
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}
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success:
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result = ISC_R_SUCCESS;
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cleanup:
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if (dns_rdataset_isassociated(&nsecset)) {
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dns_rdataset_disassociate(&nsecset);
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}
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if (dns_rdataset_isassociated(&nsec3paramset)) {
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dns_rdataset_disassociate(&nsec3paramset);
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}
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if (dns_rdataset_isassociated(&privateset)) {
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dns_rdataset_disassociate(&privateset);
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}
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if (node != NULL) {
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dns_db_detachnode(db, &node);
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}
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return result;
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}
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isc_result_t
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dns_private_totext(dns_rdata_t *private, isc_buffer_t *buf) {
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isc_result_t result;
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if (private->length < 5) {
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return ISC_R_NOTFOUND;
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}
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if (private->data[0] == 0) {
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unsigned char nsec3buf[DNS_NSEC3PARAM_BUFFERSIZE];
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unsigned char newbuf[DNS_NSEC3PARAM_BUFFERSIZE];
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dns_rdata_t rdata = DNS_RDATA_INIT;
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dns_rdata_nsec3param_t nsec3param;
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bool del, init, nonsec;
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isc_buffer_t b;
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if (!dns_nsec3param_fromprivate(private, &rdata, nsec3buf,
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sizeof(nsec3buf)))
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{
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CHECK(ISC_R_FAILURE);
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}
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CHECK(dns_rdata_tostruct(&rdata, &nsec3param, NULL));
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del = ((nsec3param.flags & DNS_NSEC3FLAG_REMOVE) != 0);
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init = ((nsec3param.flags & DNS_NSEC3FLAG_INITIAL) != 0);
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nonsec = ((nsec3param.flags & DNS_NSEC3FLAG_NONSEC) != 0);
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nsec3param.flags &=
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~(DNS_NSEC3FLAG_CREATE | DNS_NSEC3FLAG_REMOVE |
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DNS_NSEC3FLAG_INITIAL | DNS_NSEC3FLAG_NONSEC);
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if (init) {
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isc_buffer_putstr(buf, "Pending NSEC3 chain ");
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} else if (del) {
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isc_buffer_putstr(buf, "Removing NSEC3 chain ");
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} else {
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isc_buffer_putstr(buf, "Creating NSEC3 chain ");
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}
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dns_rdata_reset(&rdata);
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isc_buffer_init(&b, newbuf, sizeof(newbuf));
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CHECK(dns_rdata_fromstruct(&rdata, dns_rdataclass_in,
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dns_rdatatype_nsec3param,
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&nsec3param, &b));
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CHECK(dns_rdata_totext(&rdata, NULL, buf));
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if (del && !nonsec) {
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isc_buffer_putstr(buf, " / creating NSEC chain");
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}
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} else if (private->length == 5) {
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unsigned char alg = private->data[0];
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dns_keytag_t keyid = (private->data[2] | private->data[1] << 8);
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char keybuf[DNS_SECALG_FORMATSIZE + BUFSIZ],
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algbuf[DNS_SECALG_FORMATSIZE];
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bool del = private->data[3];
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bool complete = private->data[4];
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if (del && complete) {
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isc_buffer_putstr(buf, "Done removing signatures for ");
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} else if (del) {
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isc_buffer_putstr(buf, "Removing signatures for ");
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} else if (complete) {
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isc_buffer_putstr(buf, "Done signing with ");
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} else {
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isc_buffer_putstr(buf, "Signing with ");
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}
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dns_secalg_format(alg, algbuf, sizeof(algbuf));
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snprintf(keybuf, sizeof(keybuf), "key %d/%s", keyid, algbuf);
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isc_buffer_putstr(buf, keybuf);
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} else {
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return ISC_R_NOTFOUND;
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}
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isc_buffer_putuint8(buf, 0);
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result = ISC_R_SUCCESS;
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cleanup:
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return result;
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}
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