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[v9_9] address TSIG bypass/forgery vulnerabilities
4643. [security] An error in TSIG handling could permit unauthorized zone transfers or zone updates. (CVE-2017-3142) (CVE-2017-3143) [RT #45383] (cherry picked from commit581c1526ab) (cherry picked from commita03f4b1ea4)
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7 changed files with 76 additions and 33 deletions
4
CHANGES
4
CHANGES
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@ -1,5 +1,9 @@
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--- 9.9.11b1 released ---
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4643. [security] An error in TSIG handling could permit unauthorized
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zone transfers or zone updates. (CVE-2017-3142)
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(CVE-2017-3143) [RT #45383]
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4642. [cleanup] Add more logging of RFC 5011 events affecting the
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status of managed keys: newly observed keys,
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deletion of revoked keys, etc. [RT #45354]
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3
README
3
README
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@ -232,7 +232,8 @@ CVE-2017-3137, and CVE-2017-3138.
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BIND 9.9.11
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BIND 9.9.11 is a maintenance release, and addresses the security flaws
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disclosed in CVE-2017-3140 and CVE-2017-3141.
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disclosed in CVE-2017-3140, CVE-2017-3141, CVE-2017-3142 and
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CVE-2017-3143.
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Building BIND
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@ -249,7 +249,7 @@ CVE-2017-3135, CVE-2017-3136, CVE-2017-3137, and CVE-2017-3138.
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#### BIND 9.9.11
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BIND 9.9.11 is a maintenance release, and addresses the security flaws
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disclosed in CVE-2017-3140 and CVE-2017-3141.
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disclosed in CVE-2017-3140, CVE-2017-3141, CVE-2017-3142 and CVE-2017-3143.
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### <a name="build"/> Building BIND
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@ -71,6 +71,13 @@
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<section xml:id="relnotes_security"><info><title>Security Fixes</title></info>
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<itemizedlist>
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<listitem>
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<para>
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An error in TSIG handling could permit unauthorized zone
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transfers or zone updates. These flaws are disclosed in
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CVE-2017-3142 and CVE-2017-3143. [RT #45383]
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</para>
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</listitem>
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<listitem>
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<para>
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The BIND installer on Windows used an unquoted service path,
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@ -976,6 +976,8 @@ dns_dnssec_verifymessage(isc_buffer_t *source, dns_message_t *msg,
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mctx = msg->mctx;
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msg->verify_attempted = 1;
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msg->verified_sig = 0;
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msg->sig0status = dns_tsigerror_badsig;
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if (is_response(msg)) {
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if (msg->query.base == NULL)
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@ -1070,6 +1072,7 @@ dns_dnssec_verifymessage(isc_buffer_t *source, dns_message_t *msg,
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}
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msg->verified_sig = 1;
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msg->sig0status = dns_rcode_noerror;
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dst_context_destroy(&ctx);
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dns_rdata_freestruct(&sig);
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@ -3062,12 +3062,19 @@ dns_message_signer(dns_message_t *msg, dns_name_t *signer) {
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result = dns_rdata_tostruct(&rdata, &tsig, NULL);
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INSIST(result == ISC_R_SUCCESS);
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if (msg->tsigstatus != dns_rcode_noerror)
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result = DNS_R_TSIGVERIFYFAILURE;
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else if (tsig.error != dns_rcode_noerror)
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result = DNS_R_TSIGERRORSET;
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else
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if (msg->verified_sig &&
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msg->tsigstatus == dns_rcode_noerror &&
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tsig.error == dns_rcode_noerror)
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{
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result = ISC_R_SUCCESS;
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} else if ((!msg->verified_sig) ||
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(msg->tsigstatus != dns_rcode_noerror))
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{
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result = DNS_R_TSIGVERIFYFAILURE;
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} else {
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INSIST(tsig.error != dns_rcode_noerror);
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result = DNS_R_TSIGERRORSET;
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}
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dns_rdata_freestruct(&tsig);
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if (msg->tsigkey == NULL) {
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@ -954,9 +954,10 @@ dns_tsig_sign(dns_message_t *msg) {
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return (ret);
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/*
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* If this is a response, digest the query signature.
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* If this is a response and the query's signature
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* validated, digest the query signature.
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*/
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if (response) {
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if (response && (tsig.error == dns_rcode_noerror)) {
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dns_rdata_t querytsigrdata = DNS_RDATA_INIT;
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ret = dns_rdataset_first(msg->querytsig);
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@ -1194,6 +1195,8 @@ dns_tsig_verify(isc_buffer_t *source, dns_message_t *msg,
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REQUIRE(tsigkey == NULL || VALID_TSIG_KEY(tsigkey));
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msg->verify_attempted = 1;
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msg->verified_sig = 0;
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msg->tsigstatus = dns_tsigerror_badsig;
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if (msg->tcp_continuation) {
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if (tsigkey == NULL || msg->querytsig == NULL)
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@ -1313,27 +1316,31 @@ dns_tsig_verify(isc_buffer_t *source, dns_message_t *msg,
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return (ret);
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if (alg == DST_ALG_HMACMD5 || alg == DST_ALG_HMACSHA1 ||
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alg == DST_ALG_HMACSHA224 || alg == DST_ALG_HMACSHA256 ||
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alg == DST_ALG_HMACSHA384 || alg == DST_ALG_HMACSHA512) {
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alg == DST_ALG_HMACSHA384 || alg == DST_ALG_HMACSHA512)
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{
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isc_uint16_t digestbits = dst_key_getbits(key);
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if (tsig.siglen > siglen) {
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tsig_log(msg->tsigkey, 2, "signature length too big");
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return (DNS_R_FORMERR);
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}
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if (tsig.siglen > 0 &&
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(tsig.siglen < 10 || tsig.siglen < ((siglen + 1) / 2))) {
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(tsig.siglen < 10 || tsig.siglen < ((siglen + 1) / 2)))
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{
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tsig_log(msg->tsigkey, 2,
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"signature length below minimum");
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return (DNS_R_FORMERR);
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}
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if (tsig.siglen > 0 && digestbits != 0 &&
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tsig.siglen < ((digestbits + 1) / 8)) {
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tsig.siglen < ((digestbits + 1) / 8))
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{
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msg->tsigstatus = dns_tsigerror_badtrunc;
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tsig_log(msg->tsigkey, 2,
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"truncated signature length too small");
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return (DNS_R_TSIGVERIFYFAILURE);
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}
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if (tsig.siglen > 0 && digestbits == 0 &&
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tsig.siglen < siglen) {
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tsig.siglen < siglen)
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{
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msg->tsigstatus = dns_tsigerror_badtrunc;
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tsig_log(msg->tsigkey, 2, "signature length too small");
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return (DNS_R_TSIGVERIFYFAILURE);
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@ -1351,7 +1358,7 @@ dns_tsig_verify(isc_buffer_t *source, dns_message_t *msg,
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if (ret != ISC_R_SUCCESS)
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return (ret);
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if (response) {
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if (response && (tsig.error == dns_rcode_noerror)) {
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isc_buffer_init(&databuf, data, sizeof(data));
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isc_buffer_putuint16(&databuf, querytsig.siglen);
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isc_buffer_usedregion(&databuf, &r);
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@ -1456,10 +1463,9 @@ dns_tsig_verify(isc_buffer_t *source, dns_message_t *msg,
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tsig_log(msg->tsigkey, 2,
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"signature failed to verify(1)");
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goto cleanup_context;
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} else if (ret != ISC_R_SUCCESS)
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} else if (ret != ISC_R_SUCCESS) {
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goto cleanup_context;
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dst_context_destroy(&ctx);
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}
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} else if (tsig.error != dns_tsigerror_badsig &&
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tsig.error != dns_tsigerror_badkey) {
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msg->tsigstatus = dns_tsigerror_badsig;
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@ -1467,18 +1473,18 @@ dns_tsig_verify(isc_buffer_t *source, dns_message_t *msg,
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return (DNS_R_TSIGVERIFYFAILURE);
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}
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msg->tsigstatus = dns_rcode_noerror;
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if (tsig.error != dns_rcode_noerror) {
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msg->tsigstatus = tsig.error;
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if (tsig.error == dns_tsigerror_badtime)
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return (DNS_R_CLOCKSKEW);
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ret = DNS_R_CLOCKSKEW;
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else
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return (DNS_R_TSIGERRORSET);
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ret = DNS_R_TSIGERRORSET;
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goto cleanup_context;
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}
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msg->tsigstatus = dns_rcode_noerror;
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msg->verified_sig = 1;
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return (ISC_R_SUCCESS);
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ret = ISC_R_SUCCESS;
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cleanup_context:
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if (ctx != NULL)
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@ -1510,6 +1516,9 @@ tsig_verify_tcp(isc_buffer_t *source, dns_message_t *msg) {
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REQUIRE(msg->tcp_continuation == 1);
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REQUIRE(msg->querytsig != NULL);
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msg->verified_sig = 0;
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msg->tsigstatus = dns_tsigerror_badsig;
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if (!is_response(msg))
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return (DNS_R_EXPECTEDRESPONSE);
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@ -1548,7 +1557,8 @@ tsig_verify_tcp(isc_buffer_t *source, dns_message_t *msg) {
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* Do the key name and algorithm match that of the query?
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*/
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if (!dns_name_equal(keyname, &tsigkey->name) ||
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!dns_name_equal(&tsig.algorithm, &querytsig.algorithm)) {
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!dns_name_equal(&tsig.algorithm, &querytsig.algorithm))
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{
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msg->tsigstatus = dns_tsigerror_badkey;
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ret = DNS_R_TSIGVERIFYFAILURE;
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tsig_log(msg->tsigkey, 2,
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@ -1567,7 +1577,8 @@ tsig_verify_tcp(isc_buffer_t *source, dns_message_t *msg) {
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ret = DNS_R_CLOCKSKEW;
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goto cleanup_querystruct;
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} else if (now + msg->timeadjust <
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tsig.timesigned - tsig.fudge) {
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tsig.timesigned - tsig.fudge)
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{
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msg->tsigstatus = dns_tsigerror_badtime;
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tsig_log(msg->tsigkey, 2,
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"signature is in the future");
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@ -1673,10 +1684,12 @@ tsig_verify_tcp(isc_buffer_t *source, dns_message_t *msg) {
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sig_r.length = tsig.siglen;
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if (tsig.siglen == 0) {
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if (tsig.error != dns_rcode_noerror) {
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if (tsig.error == dns_tsigerror_badtime)
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msg->tsigstatus = tsig.error;
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if (tsig.error == dns_tsigerror_badtime) {
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ret = DNS_R_CLOCKSKEW;
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else
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} else {
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ret = DNS_R_TSIGERRORSET;
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}
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} else {
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tsig_log(msg->tsigkey, 2,
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"signature is empty");
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@ -1692,24 +1705,32 @@ tsig_verify_tcp(isc_buffer_t *source, dns_message_t *msg) {
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"signature failed to verify(2)");
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ret = DNS_R_TSIGVERIFYFAILURE;
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goto cleanup_context;
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}
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else if (ret != ISC_R_SUCCESS)
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} else if (ret != ISC_R_SUCCESS) {
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goto cleanup_context;
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}
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dst_context_destroy(&msg->tsigctx);
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if (tsig.error != dns_rcode_noerror) {
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msg->tsigstatus = tsig.error;
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if (tsig.error == dns_tsigerror_badtime)
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ret = DNS_R_CLOCKSKEW;
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else
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ret = DNS_R_TSIGERRORSET;
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goto cleanup_context;
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}
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}
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msg->tsigstatus = dns_rcode_noerror;
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return (ISC_R_SUCCESS);
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msg->verified_sig = 1;
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ret = ISC_R_SUCCESS;
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cleanup_context:
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dst_context_destroy(&msg->tsigctx);
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if (msg->tsigctx != NULL)
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dst_context_destroy(&msg->tsigctx);
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cleanup_querystruct:
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dns_rdata_freestruct(&querytsig);
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return (ret);
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}
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isc_result_t
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