/*
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* CDDL HEADER START
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*
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* The contents of this file are subject to the terms of the
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* Common Development and Distribution License, Version 1.0 only
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* (the "License"). You may not use this file except in compliance
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* with the License.
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*
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* You can obtain a copy of the license at
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* trunk/opends/resource/legal-notices/OpenDS.LICENSE
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* or https://OpenDS.dev.java.net/OpenDS.LICENSE.
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* See the License for the specific language governing permissions
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* and limitations under the License.
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*
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* When distributing Covered Code, include this CDDL HEADER in each
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* file and include the License file at
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* trunk/opends/resource/legal-notices/OpenDS.LICENSE. If applicable,
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* add the following below this CDDL HEADER, with the fields enclosed
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* by brackets "[]" replaced with your own identifying information:
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* Portions Copyright [yyyy] [name of copyright owner]
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*
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* CDDL HEADER END
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*
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*
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* Portions Copyright 2007 Sun Microsystems, Inc.
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*/
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package org.opends.server.extensions;
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import java.security.MessageDigest;
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import java.security.cert.Certificate;
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import java.security.cert.X509Certificate;
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import javax.security.auth.x500.X500Principal;
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import java.util.ArrayList;
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import java.util.LinkedHashSet;
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import java.util.LinkedList;
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import java.util.List;
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import java.util.Set;
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import org.opends.server.api.CertificateMapper;
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import org.opends.server.api.ConfigurableComponent;
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import org.opends.server.config.ConfigAttribute;
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import org.opends.server.config.ConfigEntry;
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import org.opends.server.config.ConfigException;
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import org.opends.server.config.DNConfigAttribute;
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import org.opends.server.config.MultiChoiceConfigAttribute;
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import org.opends.server.config.StringConfigAttribute;
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import org.opends.server.core.DirectoryServer;
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import org.opends.server.protocols.internal.InternalClientConnection;
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import org.opends.server.protocols.internal.InternalSearchOperation;
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import org.opends.server.types.DirectoryException;
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import org.opends.server.types.AttributeType;
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import org.opends.server.types.AttributeValue;
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import org.opends.server.types.ConfigChangeResult;
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import org.opends.server.types.DN;
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import org.opends.server.types.Entry;
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import org.opends.server.types.InitializationException;
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import org.opends.server.types.ResultCode;
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import org.opends.server.types.SearchFilter;
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import org.opends.server.types.SearchResultEntry;
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import org.opends.server.types.SearchScope;
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import static org.opends.server.config.ConfigConstants.*;
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import static org.opends.server.loggers.debug.DebugLogger.debugCaught;
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import static org.opends.server.loggers.debug.DebugLogger.debugEnabled;
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import org.opends.server.types.DebugLogLevel;
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import static org.opends.server.messages.ExtensionsMessages.*;
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import static org.opends.server.messages.MessageHandler.*;
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import static org.opends.server.util.StaticUtils.*;
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/**
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* This class implements a very simple Directory Server certificate mapper that
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* will map a certificate to a user only if that user's entry contains an
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* attribute with the fingerprint of the client certificate. There must be
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* exactly one matching user entry for the mapping to be successful.
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*/
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public class FingerprintCertificateMapper
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extends CertificateMapper
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implements ConfigurableComponent
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{
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/**
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* The set of allowed fingerprint algorithms.
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*/
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private static final Set<String> FINGERPRINT_ALGORITHMS;
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// The attribute type that will be used to map the certificate's fingerprint.
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private AttributeType fingerprintAttributeType;
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// The DN of the configuration entry for this certificate mapper.
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private DN configEntryDN;
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// The set of base DNs below which the search will be performed.
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private DN[] baseDNs;
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// The algorithm that will be used to generate the fingerprint.
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private String fingerprintAlgorithm;
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static
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{
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LinkedHashSet<String> algorithmSet = new LinkedHashSet<String>(2);
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algorithmSet.add("md5");
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algorithmSet.add("sha1");
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FINGERPRINT_ALGORITHMS = algorithmSet;
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}
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/**
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* Creates a new instance of this certificate mapper. Note that all actual
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* initialization should be done in the
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* <CODE>initializeCertificateMapper</CODE> method.
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*/
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public FingerprintCertificateMapper()
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{
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super();
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}
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/**
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* {@inheritDoc}
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*/
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public void initializeCertificateMapper(ConfigEntry configEntry)
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throws ConfigException, InitializationException
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{
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this.configEntryDN = configEntry.getDN();
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// Get the attribute type that will be used to hold the fingerprint.
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int msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ATTR;
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StringConfigAttribute attrStub =
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new StringConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ATTR,
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getMessage(msgID), true, false, false);
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try
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{
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StringConfigAttribute attrAttr =
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(StringConfigAttribute) configEntry.getConfigAttribute(attrStub);
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if (attrAttr == null)
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{
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msgID = MSGID_FCM_NO_FINGERPRINT_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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ATTR_CERTIFICATE_FINGERPRINT_ATTR);
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throw new ConfigException(msgID, message);
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}
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else
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{
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String attrName = attrAttr.pendingValue();
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String lowerName = toLowerCase(attrName);
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fingerprintAttributeType =
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DirectoryServer.getAttributeType(lowerName, false);
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if (fingerprintAttributeType == null)
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{
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msgID = MSGID_FCM_NO_SUCH_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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attrName);
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throw new ConfigException(msgID, message);
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}
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}
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}
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catch (ConfigException ce)
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{
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throw ce;
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}
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catch (Exception e)
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{
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if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
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}
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msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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stackTraceToSingleLineString(e));
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throw new InitializationException(msgID, message, e);
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}
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// Get the fingerprint algorithm.
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msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ALGORITHM;
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MultiChoiceConfigAttribute algorithmStub =
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new MultiChoiceConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM,
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getMessage(msgID), true, false, false,
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FINGERPRINT_ALGORITHMS);
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try
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{
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MultiChoiceConfigAttribute algorithmAttr =
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(MultiChoiceConfigAttribute)
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configEntry.getConfigAttribute(algorithmStub);
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if (algorithmAttr == null)
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{
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msgID = MSGID_FCM_NO_FINGERPRINT_ALGORITHM;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM);
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throw new ConfigException(msgID, message);
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}
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else
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{
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fingerprintAlgorithm = algorithmAttr.pendingValue();
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}
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}
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catch (Exception e)
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{
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if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
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}
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msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ALGORITHM;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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stackTraceToSingleLineString(e));
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throw new InitializationException(msgID, message, e);
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}
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// Get the set of base DNs below which to perform the searches.
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baseDNs = null;
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msgID = MSGID_FCM_DESCRIPTION_BASE_DN;
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DNConfigAttribute baseStub =
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new DNConfigAttribute(ATTR_CERTIFICATE_SUBJECT_BASEDN,
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getMessage(msgID), false, true, false);
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try
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{
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DNConfigAttribute baseAttr =
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(DNConfigAttribute) configEntry.getConfigAttribute(baseStub);
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if (baseAttr != null)
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{
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List<DN> dnList = baseAttr.activeValues();
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baseDNs = new DN[dnList.size()];
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dnList.toArray(baseDNs);
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}
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}
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catch (Exception e)
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{
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if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
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}
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msgID = MSGID_FCM_CANNOT_GET_BASE_DN;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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stackTraceToSingleLineString(e));
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throw new InitializationException(msgID, message, e);
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}
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DirectoryServer.registerConfigurableComponent(this);
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}
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/**
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* {@inheritDoc}
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*/
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public void finalizeCertificateMapper()
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{
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DirectoryServer.deregisterConfigurableComponent(this);
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}
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/**
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* {@inheritDoc}
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*/
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public Entry mapCertificateToUser(Certificate[] certificateChain)
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throws DirectoryException
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{
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// Make sure that a peer certificate was provided.
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if ((certificateChain == null) || (certificateChain.length == 0))
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{
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int msgID = MSGID_FCM_NO_PEER_CERTIFICATE;
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String message = getMessage(msgID);
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throw new DirectoryException(ResultCode.INVALID_CREDENTIALS, message,
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msgID);
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}
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// Get the first certificate in the chain. It must be an X.509 certificate.
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X509Certificate peerCertificate;
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try
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{
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peerCertificate = (X509Certificate) certificateChain[0];
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}
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catch (Exception e)
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{
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if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
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}
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int msgID = MSGID_FCM_PEER_CERT_NOT_X509;
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String message =
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getMessage(msgID, String.valueOf(certificateChain[0].getType()));
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throw new DirectoryException(ResultCode.INVALID_CREDENTIALS, message,
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msgID);
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}
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// Get the signature from the peer certificate and create a digest of it
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// using the configured algorithm.
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String fingerprintString;
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try
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{
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MessageDigest digest = MessageDigest.getInstance(fingerprintAlgorithm);
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byte[] fingerprintBytes = digest.digest(peerCertificate.getEncoded());
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fingerprintString = bytesToColonDelimitedHex(fingerprintBytes);
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}
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catch (Exception e)
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{
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if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
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}
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String peerSubject = peerCertificate.getSubjectX500Principal().getName(
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X500Principal.RFC2253);
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int msgID = MSGID_FCM_CANNOT_CALCULATE_FINGERPRINT;
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String message = getMessage(msgID, peerSubject,
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stackTraceToSingleLineString(e));
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throw new DirectoryException(ResultCode.INVALID_CREDENTIALS, message,
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msgID);
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}
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// Create the search filter from the fingerprint.
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AttributeValue value =
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new AttributeValue(fingerprintAttributeType, fingerprintString);
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SearchFilter filter =
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SearchFilter.createEqualityFilter(fingerprintAttributeType, value);
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// If we have an explicit set of base DNs, then use it. Otherwise, use the
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// set of public naming contexts in the server.
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DN[] bases = baseDNs;
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if (bases == null)
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{
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bases = new DN[0];
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bases = DirectoryServer.getPublicNamingContexts().keySet().toArray(bases);
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}
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// For each base DN, issue an internal search in an attempt to map the
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// certificate.
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Entry userEntry = null;
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InternalClientConnection conn =
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InternalClientConnection.getRootConnection();
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for (DN baseDN : bases)
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{
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InternalSearchOperation searchOperation =
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conn.processSearch(baseDN, SearchScope.WHOLE_SUBTREE, filter);
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for (SearchResultEntry entry : searchOperation.getSearchEntries())
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{
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if (userEntry == null)
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{
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userEntry = entry;
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}
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else
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{
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int msgID = MSGID_FCM_MULTIPLE_MATCHING_ENTRIES;
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String message = getMessage(msgID, fingerprintString,
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String.valueOf(userEntry.getDN()),
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String.valueOf(entry.getDN()));
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throw new DirectoryException(ResultCode.INVALID_CREDENTIALS, message,
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msgID);
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}
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}
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}
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// If we've gotten here, then we either found exactly one user entry or we
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// didn't find any. Either way, return the entry or null to the caller.
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return userEntry;
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}
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/**
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* Retrieves the DN of the configuration entry with which this
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* component is associated.
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*
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* @return The DN of the configuration entry with which this
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* component is associated.
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*/
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public DN getConfigurableComponentEntryDN()
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{
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return configEntryDN;
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}
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/**
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* Retrieves the set of configuration attributes that are associated
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* with this configurable component.
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*
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* @return The set of configuration attributes that are associated
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* with this configurable component.
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*/
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public List<ConfigAttribute> getConfigurationAttributes()
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{
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LinkedList<ConfigAttribute> attrList = new LinkedList<ConfigAttribute>();
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int msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ATTR;
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attrList.add(new StringConfigAttribute(ATTR_CERTIFICATE_SUBJECT_ATTR,
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getMessage(msgID), true, false, false,
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fingerprintAttributeType.getNameOrOID()));
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msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ALGORITHM;
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attrList.add(new MultiChoiceConfigAttribute(
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ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM,
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getMessage(msgID), true, false, false,
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FINGERPRINT_ALGORITHMS, fingerprintAlgorithm));
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LinkedList<DN> dnList = new LinkedList<DN>();
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if (baseDNs != null)
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{
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for (DN baseDN : baseDNs)
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{
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dnList.add(baseDN);
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}
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}
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msgID = MSGID_FCM_DESCRIPTION_BASE_DN;
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attrList.add(new DNConfigAttribute(ATTR_CERTIFICATE_SUBJECT_BASEDN,
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getMessage(msgID), false, true, false,
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dnList));
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return attrList;
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}
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/**
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* Indicates whether the provided configuration entry has an
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* acceptable configuration for this component. If it does not,
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* then detailed information about the problem(s) should be added to
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* the provided list.
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*
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* @param configEntry The configuration entry for which to
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* make the determination.
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* @param unacceptableReasons A list that can be used to hold
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* messages about why the provided
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* entry does not have an acceptable
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* configuration.
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*
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* @return <CODE>true</CODE> if the provided entry has an
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* acceptable configuration for this component, or
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* <CODE>false</CODE> if not.
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*/
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public boolean hasAcceptableConfiguration(ConfigEntry configEntry,
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List<String> unacceptableReasons)
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{
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DN configEntryDN = configEntry.getDN();
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boolean configAcceptable = true;
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// Get the attribute type that will be used to hold the fingerprint.
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AttributeType newFingerprintType = null;
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int msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ATTR;
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StringConfigAttribute attrStub =
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new StringConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ATTR,
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getMessage(msgID), true, false, false);
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try
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{
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StringConfigAttribute attrAttr =
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(StringConfigAttribute) configEntry.getConfigAttribute(attrStub);
|
if (attrAttr == null)
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{
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msgID = MSGID_FCM_NO_FINGERPRINT_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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ATTR_CERTIFICATE_FINGERPRINT_ATTR);
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unacceptableReasons.add(message);
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configAcceptable = false;
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}
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else
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{
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String attrName = attrAttr.pendingValue();
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String lowerName = toLowerCase(attrName);
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newFingerprintType =
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DirectoryServer.getAttributeType(lowerName, false);
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if (newFingerprintType == null)
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{
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msgID = MSGID_FCM_NO_SUCH_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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attrName);
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unacceptableReasons.add(message);
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configAcceptable = false;
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}
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}
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}
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catch (Exception e)
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{
|
if (debugEnabled())
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{
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debugCaught(DebugLogLevel.ERROR, e);
|
}
|
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msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ATTR;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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stackTraceToSingleLineString(e));
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unacceptableReasons.add(message);
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configAcceptable = false;
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}
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|
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// Get the fingerprint algorithm.
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String newFingerprintAlgorithm = null;
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msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ALGORITHM;
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MultiChoiceConfigAttribute algorithmStub =
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new MultiChoiceConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM,
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getMessage(msgID), true, false, false,
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FINGERPRINT_ALGORITHMS);
|
try
|
{
|
MultiChoiceConfigAttribute algorithmAttr =
|
(MultiChoiceConfigAttribute)
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configEntry.getConfigAttribute(algorithmStub);
|
if (algorithmAttr == null)
|
{
|
msgID = MSGID_FCM_NO_FINGERPRINT_ALGORITHM;
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String message = getMessage(msgID, String.valueOf(configEntryDN),
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ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM);
|
unacceptableReasons.add(message);
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configAcceptable = false;
|
}
|
else
|
{
|
newFingerprintAlgorithm = algorithmAttr.pendingValue();
|
}
|
}
|
catch (Exception e)
|
{
|
if (debugEnabled())
|
{
|
debugCaught(DebugLogLevel.ERROR, e);
|
}
|
|
msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ALGORITHM;
|
String message = getMessage(msgID, String.valueOf(configEntryDN),
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stackTraceToSingleLineString(e));
|
unacceptableReasons.add(message);
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configAcceptable = false;
|
}
|
|
|
// Get the set of base DNs below which to perform the searches.
|
DN[] newBaseDNs = null;
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msgID = MSGID_FCM_DESCRIPTION_BASE_DN;
|
DNConfigAttribute baseStub =
|
new DNConfigAttribute(ATTR_CERTIFICATE_SUBJECT_BASEDN,
|
getMessage(msgID), false, true, false);
|
try
|
{
|
DNConfigAttribute baseAttr =
|
(DNConfigAttribute) configEntry.getConfigAttribute(baseStub);
|
if (baseAttr != null)
|
{
|
List<DN> dnList = baseAttr.activeValues();
|
newBaseDNs = new DN[dnList.size()];
|
dnList.toArray(newBaseDNs);
|
}
|
}
|
catch (Exception e)
|
{
|
if (debugEnabled())
|
{
|
debugCaught(DebugLogLevel.ERROR, e);
|
}
|
|
msgID = MSGID_FCM_CANNOT_GET_BASE_DN;
|
String message = getMessage(msgID, String.valueOf(configEntryDN),
|
stackTraceToSingleLineString(e));
|
unacceptableReasons.add(message);
|
configAcceptable = false;
|
}
|
|
|
return configAcceptable;
|
}
|
|
|
|
/**
|
* Makes a best-effort attempt to apply the configuration contained
|
* in the provided entry. Information about the result of this
|
* processing should be added to the provided message list.
|
* Information should always be added to this list if a
|
* configuration change could not be applied. If detailed results
|
* are requested, then information about the changes applied
|
* successfully (and optionally about parameters that were not
|
* changed) should also be included.
|
*
|
* @param configEntry The entry containing the new
|
* configuration to apply for this
|
* component.
|
* @param detailedResults Indicates whether detailed information
|
* about the processing should be added to
|
* the list.
|
*
|
* @return Information about the result of the configuration
|
* update.
|
*/
|
public ConfigChangeResult applyNewConfiguration(ConfigEntry configEntry,
|
boolean detailedResults)
|
{
|
DN configEntryDN = configEntry.getDN();
|
ResultCode resultCode = ResultCode.SUCCESS;
|
ArrayList<String> messages = new ArrayList<String>();
|
boolean adminActionRequired = false;
|
|
|
// Get the attribute type that will be used to hold the fingerprint.
|
AttributeType newFingerprintType = null;
|
int msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ATTR;
|
StringConfigAttribute attrStub =
|
new StringConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ATTR,
|
getMessage(msgID), true, false, false);
|
try
|
{
|
StringConfigAttribute attrAttr =
|
(StringConfigAttribute) configEntry.getConfigAttribute(attrStub);
|
if (attrAttr == null)
|
{
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = ResultCode.OBJECTCLASS_VIOLATION;
|
}
|
|
msgID = MSGID_FCM_NO_FINGERPRINT_ATTR;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
ATTR_CERTIFICATE_FINGERPRINT_ATTR));
|
}
|
else
|
{
|
String attrName = attrAttr.pendingValue();
|
String lowerName = toLowerCase(attrName);
|
newFingerprintType =
|
DirectoryServer.getAttributeType(lowerName, false);
|
if (newFingerprintType == null)
|
{
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = ResultCode.NO_SUCH_ATTRIBUTE;
|
}
|
|
msgID = MSGID_FCM_NO_SUCH_ATTR;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
attrName));
|
}
|
}
|
}
|
catch (Exception e)
|
{
|
if (debugEnabled())
|
{
|
debugCaught(DebugLogLevel.ERROR, e);
|
}
|
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = DirectoryServer.getServerErrorResultCode();
|
}
|
|
msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ATTR;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
stackTraceToSingleLineString(e)));
|
}
|
|
|
// Get the fingerprint algorithm.
|
String newFingerprintAlgorithm = null;
|
msgID = MSGID_FCM_DESCRIPTION_FINGERPRINT_ALGORITHM;
|
MultiChoiceConfigAttribute algorithmStub =
|
new MultiChoiceConfigAttribute(ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM,
|
getMessage(msgID), true, false, false,
|
FINGERPRINT_ALGORITHMS);
|
try
|
{
|
MultiChoiceConfigAttribute algorithmAttr =
|
(MultiChoiceConfigAttribute)
|
configEntry.getConfigAttribute(algorithmStub);
|
if (algorithmAttr == null)
|
{
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = ResultCode.OBJECTCLASS_VIOLATION;
|
}
|
|
msgID = MSGID_FCM_NO_FINGERPRINT_ALGORITHM;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
ATTR_CERTIFICATE_FINGERPRINT_ALGORITHM));
|
}
|
else
|
{
|
newFingerprintAlgorithm = algorithmAttr.pendingValue();
|
}
|
}
|
catch (Exception e)
|
{
|
if (debugEnabled())
|
{
|
debugCaught(DebugLogLevel.ERROR, e);
|
}
|
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = DirectoryServer.getServerErrorResultCode();
|
}
|
|
msgID = MSGID_FCM_CANNOT_GET_FINGERPRINT_ALGORITHM;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
stackTraceToSingleLineString(e)));
|
}
|
|
|
// Get the set of base DNs below which to perform the searches.
|
DN[] newBaseDNs = null;
|
msgID = MSGID_FCM_DESCRIPTION_BASE_DN;
|
DNConfigAttribute baseStub =
|
new DNConfigAttribute(ATTR_CERTIFICATE_SUBJECT_BASEDN,
|
getMessage(msgID), false, true, false);
|
try
|
{
|
DNConfigAttribute baseAttr =
|
(DNConfigAttribute) configEntry.getConfigAttribute(baseStub);
|
if (baseAttr != null)
|
{
|
List<DN> dnList = baseAttr.activeValues();
|
newBaseDNs = new DN[dnList.size()];
|
dnList.toArray(newBaseDNs);
|
}
|
}
|
catch (Exception e)
|
{
|
if (debugEnabled())
|
{
|
debugCaught(DebugLogLevel.ERROR, e);
|
}
|
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
resultCode = DirectoryServer.getServerErrorResultCode();
|
}
|
|
msgID = MSGID_FCM_CANNOT_GET_BASE_DN;
|
messages.add(getMessage(msgID, String.valueOf(configEntryDN),
|
stackTraceToSingleLineString(e)));
|
}
|
|
|
if (resultCode == ResultCode.SUCCESS)
|
{
|
fingerprintAttributeType = newFingerprintType;
|
fingerprintAlgorithm = newFingerprintAlgorithm;
|
baseDNs = newBaseDNs;
|
}
|
|
return new ConfigChangeResult(resultCode, adminActionRequired, messages);
|
}
|
}
|