/*
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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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* Copyright 2008-2010 Sun Microsystems, Inc.
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* Portions copyright 2011-2013 ForgeRock AS.
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*/
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package org.opends.quicksetup;
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import java.net.*;
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import java.util.*;
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import java.util.concurrent.CountDownLatch;
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import java.util.concurrent.TimeUnit;
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import org.opends.admin.ads.ServerDescriptor;
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import org.opends.admin.ads.SuffixDescriptor;
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import org.opends.admin.ads.util.ConnectionUtils;
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import org.opends.quicksetup.installer.AuthenticationData;
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import org.opends.quicksetup.installer.DataReplicationOptions;
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import org.opends.quicksetup.installer.NewSuffixOptions;
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import org.opends.quicksetup.installer.SuffixesToReplicateOptions;
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import org.opends.quicksetup.util.Utils;
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/**
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* This class is used to provide a data model for the different parameters
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* that the user can provide in the installation wizard.
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*/
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public class UserData
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{
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private String serverLocation;
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private String hostName;
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private int serverPort;
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private int adminConnectorPort;
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private String directoryManagerDn;
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private String directoryManagerPwd;
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private String globalAdministratorUID;
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private String globalAdministratorPassword;
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private SecurityOptions securityOptions;
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private int serverJMXPort = -1;
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private boolean startServer;
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private boolean stopServer;
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private boolean enableWindowsService;
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private NewSuffixOptions newSuffixOptions;
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private DataReplicationOptions replicationOptions;
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private boolean createAdministrator;
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private SuffixesToReplicateOptions suffixesToReplicateOptions;
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private final Map<ServerDescriptor, AuthenticationData>
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remoteWithNoReplicationPort;
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private boolean quiet;
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private boolean verbose;
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private boolean interactive;
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private boolean forceOnError;
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private Map<String, JavaArguments> hmJavaArguments;
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private Map<String, JavaArguments> hmDefaultJavaArguments;
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private static String defaultHostName;
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private int connectTimeout = ConnectionUtils.getDefaultLDAPTimeout();
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/**
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* The script name to be used to get and set the java arguments for the
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* server runtime.
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*/
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public static String SERVER_SCRIPT_NAME = "start-ds";
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/**
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* The script name to be used to get and set the java arguments for the
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* (off-line) import.
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*/
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public static String IMPORT_SCRIPT_NAME = "import-ldif.offline";
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/**
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* Creates a user data object with default values.
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*/
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public UserData() {
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interactive = true;
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startServer = true;
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enableWindowsService = false;
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forceOnError = true;
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verbose = false;
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LinkedList<String> baseDn = new LinkedList<String>();
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baseDn.add("dc=example,dc=com");
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NewSuffixOptions defaultNewSuffixOptions = NewSuffixOptions.createBaseEntry(
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baseDn);
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setNewSuffixOptions(defaultNewSuffixOptions);
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// See what we can propose as port
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int defaultLdapPort = getDefaultPort();
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if (defaultLdapPort != -1)
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{
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setServerPort(defaultLdapPort);
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}
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// See what we can propose as port
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int defaultAdminPort = getDefaultAdminConnectorPort();
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if (defaultAdminPort != -1)
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{
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setAdminConnectorPort(defaultAdminPort);
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}
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setHostName(getDefaultHostName());
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setDirectoryManagerDn(Constants.DIRECTORY_MANAGER_DN);
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setNewSuffixOptions(defaultNewSuffixOptions);
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DataReplicationOptions repl = DataReplicationOptions.createStandalone();
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setReplicationOptions(repl);
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setGlobalAdministratorUID(Constants.GLOBAL_ADMIN_UID);
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SuffixesToReplicateOptions suffixes =
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new SuffixesToReplicateOptions(
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SuffixesToReplicateOptions.Type.REPLICATE_WITH_EXISTING_SUFFIXES,
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new HashSet<SuffixDescriptor>(),
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new HashSet<SuffixDescriptor>());
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setSuffixesToReplicateOptions(suffixes);
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SecurityOptions sec = SecurityOptions.createNoCertificateOptions();
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sec.setSslPort(getDefaultSslPort(defaultLdapPort));
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setSecurityOptions(sec);
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remoteWithNoReplicationPort =
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new HashMap<ServerDescriptor, AuthenticationData>();
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createDefaultJavaArguments();
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}
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/**
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* Sets the location of the server (installation path).
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* @param serverLocation the new server location (installation path).
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*/
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public void setServerLocation(String serverLocation)
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{
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this.serverLocation = serverLocation;
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}
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/**
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* Returns the location of the server (installation path).
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* @return the location of the server (installation path).
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*/
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public String getServerLocation()
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{
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return serverLocation;
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}
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/**
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* Sets the host name.
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* @param hostName the server host name.
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*/
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public void setHostName(String hostName)
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{
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this.hostName = hostName;
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}
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/**
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* Returns the server host name.
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* @return the server host name.
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*/
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public String getHostName()
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{
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return hostName;
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}
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/**
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* Sets the server LDAP port.
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* @param serverPort the new server LDAP port.
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*/
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public void setServerPort(int serverPort)
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{
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this.serverPort = serverPort;
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}
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/**
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* Returns the server LDAP port.
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* @return the server LDAP port.
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*/
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public int getServerPort()
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{
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return serverPort;
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}
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/**
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* Sets the admin connector port.
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* @param adminConnectorPort the new admin connector port.
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*/
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public void setAdminConnectorPort(int adminConnectorPort)
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{
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this.adminConnectorPort = adminConnectorPort;
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}
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/**
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* Returns the admin connector port.
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* @return the admin connector port.
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*/
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public int getAdminConnectorPort()
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{
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return adminConnectorPort;
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}
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/**
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* Sets the server JMX port.
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* @param serverJMXPort the new server JMX port.
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*/
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public void setServerJMXPort(int serverJMXPort)
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{
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this.serverJMXPort = serverJMXPort;
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}
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/**
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* Returns the server JMX port.
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* @return the server JMX port.
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*/
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public int getServerJMXPort()
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{
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return serverJMXPort;
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}
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/**
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* Returns the Directory Manager DN.
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* @return the Directory Manager DN.
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*/
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public String getDirectoryManagerDn()
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{
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return directoryManagerDn;
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}
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/**
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* Sets the new Directory Manager DN.
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* @param directoryManagerDn the new Directory Manager DN.
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*/
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public void setDirectoryManagerDn(String directoryManagerDn)
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{
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this.directoryManagerDn = directoryManagerDn;
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}
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/**
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* Returns the Directory Manager password.
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* @return the Directory Manager password.
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*/
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public String getDirectoryManagerPwd()
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{
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return directoryManagerPwd;
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}
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/**
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* Sets the new Directory Manager password.
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* @param directoryManagerPwd the new Directory Manager password.
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*/
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public void setDirectoryManagerPwd(String directoryManagerPwd)
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{
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this.directoryManagerPwd = directoryManagerPwd;
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}
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/**
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* Returns <CODE>true</CODE> if the server must be started once the
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* installation is finished, <CODE>false</CODE> if not.
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* @return <CODE>true</CODE> if the server must be started once the
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* installation is finished, <CODE>false</CODE> if not.
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*/
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public boolean getStartServer()
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{
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return startServer;
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}
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/**
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* Sets whether we want to start the server once the installation is finished
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* or not.
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* @param startServer the boolean indicating whether to start the server or
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* not.
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*/
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public void setStartServer(boolean startServer)
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{
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this.startServer = startServer;
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}
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/**
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* Sets whether to stop the server or not.
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* @param stopServer stop the server or not.
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*/
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public void setStopServer(boolean stopServer)
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{
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this.stopServer = stopServer;
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}
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/**
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* Returns whether the user wants to stop the server or not.
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* @return <CODE>true</CODE> if the user wants to stop the server and <CODE>\
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* false</CODE> otherwise.
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*/
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public boolean getStopServer()
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{
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return stopServer;
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}
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/**
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* Returns <CODE>true</CODE> if the windows service must be enabled during
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* installation, <CODE>false</CODE> if not.
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* @return <CODE>true</CODE> if the windows service must be enabled during
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* installation, <CODE>false</CODE> if not.
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*/
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public boolean getEnableWindowsService()
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{
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return enableWindowsService;
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}
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/**
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* Sets whether we want to enable windows service during installation or not.
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* @param enableWindowsService the boolean indicating whether we want to
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* enable windows service during installation or not.
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*/
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public void setEnableWindowsService(boolean enableWindowsService)
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{
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this.enableWindowsService = enableWindowsService;
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}
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/**
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* Returns the NewSuffixOptions object representing the data in the New Suffix
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* Data Options panel.
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* @return the NewSuffixOptions object representing the data in the New Suffix
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* Data Options panel.
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*/
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public NewSuffixOptions getNewSuffixOptions()
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{
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return newSuffixOptions;
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}
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/**
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* Sets the NewSuffixOptions object representing the data in the New Suffix
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* Data Options panel.
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* @param newSuffixOptions the NewSuffixOptions object representing the data
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* in the New Suffix Data Options panel.
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*/
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public void setNewSuffixOptions(NewSuffixOptions newSuffixOptions)
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{
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this.newSuffixOptions = newSuffixOptions;
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}
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/**
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* Returns the DataReplicationOptions object representing the data in the
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* Data Replication panel.
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* @return the DataReplicationOptions object representing the data in the
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* Data Replication panel.
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*/
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public DataReplicationOptions getReplicationOptions()
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{
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return replicationOptions;
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}
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/**
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* Sets the DataReplicationOptions object representing the data in the
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* Data Replication panel.
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* @param replicationOptions the DataReplicationOptions object
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* representing the data in the Data Replication panel.
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*/
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public void setReplicationOptions(
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DataReplicationOptions replicationOptions)
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{
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this.replicationOptions = replicationOptions;
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}
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/**
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* Returns whether must create a global administrator or not.
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* @return <CODE>true</CODE> if we must create a global administrator and
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* <CODE>false</CODE> otherwise.
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*/
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public boolean mustCreateAdministrator()
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{
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return createAdministrator;
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}
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/**
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* Sets whether must create a global administrator or not.
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* @param createAdministrator whether we must create a global administrator or
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* not.
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*/
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public void createAdministrator(boolean createAdministrator)
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{
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this.createAdministrator = createAdministrator;
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}
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/**
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* Returns the UID of the global administrator.
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* @return the UID of the global administrator.
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*/
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public String getGlobalAdministratorUID()
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{
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return globalAdministratorUID;
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}
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/**
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* Sets the UID of the global administrator.
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* @param globalAdministratorUID the UID of the global administrator.
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*/
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public void setGlobalAdministratorUID(String globalAdministratorUID)
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{
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this.globalAdministratorUID = globalAdministratorUID;
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}
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/**
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* Returns the password of the global administrator.
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* @return the password of the global administrator.
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*/
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public String getGlobalAdministratorPassword()
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{
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return globalAdministratorPassword;
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}
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/**
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* Sets the password of the global administrator.
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* @param globalAdministratorPwd the password of the global administrator.
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*/
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public void setGlobalAdministratorPassword(String globalAdministratorPwd)
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{
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this.globalAdministratorPassword = globalAdministratorPwd;
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}
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/**
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* Sets the suffixes to replicate options.
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* @param suffixesToReplicateOptions the suffixes to replicate options
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* object.
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*/
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public void setSuffixesToReplicateOptions(
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SuffixesToReplicateOptions suffixesToReplicateOptions)
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{
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this.suffixesToReplicateOptions = suffixesToReplicateOptions;
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}
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/**
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* Returns the suffixes to replicate options.
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* @return the suffixes to replicate options.
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*/
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public SuffixesToReplicateOptions getSuffixesToReplicateOptions()
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{
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return suffixesToReplicateOptions;
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}
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/**
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* Returns the SecurityOptions representing the SSL/StartTLS configuration
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* chosen by the user.
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* @return the SecurityOptions representing the SSL/StartTLS configuration
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* chosen by the user.
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*/
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public SecurityOptions getSecurityOptions()
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{
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return securityOptions;
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}
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/**
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* Sets the SecurityOptions representing the SSL/StartTLS configuration
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* chosen by the user.
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* @param securityOptions the SecurityOptions representing the SSL/StartTLS
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* configuration chosen by the user.
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*/
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public void setSecurityOptions(SecurityOptions securityOptions)
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{
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this.securityOptions = securityOptions;
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}
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/**
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* Sets whether or not this session should print messages to the
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* console if in CLI mode.
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* @param quiet where true indicates this sesssion should be quiet
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*/
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public void setQuiet(boolean quiet) {
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this.quiet = quiet;
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}
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/**
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* Indicates whether or not the user has requested quiet mode.
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* <p>
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* Quiet mode in the CLI means that nothing is written to output including
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* prompts for information and whether or not to continue an operation
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* experiencing errors.
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*
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* @return boolean where true indicates this session should be quiet.
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*/
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public boolean isQuiet() {
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return this.quiet;
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}
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/**
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* Sets whether or not this session should be verbose.
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* @param verbose where true indicates this sesssion should be verbose
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*/
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public void setVerbose(boolean verbose) {
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this.verbose = verbose;
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}
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/**
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* Indicates whether or not the user has requested verbose mode.
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*
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* @return boolean where true indicates this session should be verbose.
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*/
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public boolean isVerbose() {
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return this.verbose;
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}
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/**
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* Sets whether or not we must continue when there is a non critical error.
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* @param forceOnError where true indicates to continue uninstall if there is
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* a non critical error.
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*/
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public void setForceOnError(boolean forceOnError) {
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this.forceOnError = forceOnError;
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}
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/**
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* Indicates whether or not the user has requested to continue when a non
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* critical error occurs.
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*
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* @return boolean where true indicates to continue uninstall if there is a
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* non critical error.
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*/
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public boolean isForceOnError() {
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return this.forceOnError;
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}
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/**
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* Indicates whether or not the user has requested interactive mode.
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* <p>
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* Interactive mode in the CLI means that the CLI will prompt the user
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* for more information if it is required. Interactivity does NOT
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* affect prompts to the user regarding actions like continuing an operation
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* that is experiencing errors.
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*
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* @return boolean where true indicates this session should be interactive
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*/
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public boolean isInteractive() {
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return this.interactive;
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}
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/**
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* Provides the port that will be proposed to the user in the second page of
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* the installation wizard. It will check whether we can use ports of type
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* X389 and if not it will return -1.
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*
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* @return the free port of type x389 if it is available and we can use and -1
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* if not.
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*/
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static public int getDefaultPort()
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{
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int defaultPort = -1;
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for (int i=0;i<10000 && (defaultPort == -1);i+=1000)
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{
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int port = i + 389;
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if (Utils.canUseAsPort(port))
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{
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defaultPort = port;
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}
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}
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return defaultPort;
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}
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/**
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* Provides the administration port that will be proposed to the user in the
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* second page of the installation wizard. It will check whether we can use
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* ports of type X444 and if not it will return -1.
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*
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* @return the free port of type x444 if it is available and we can use and -1
|
* if not.
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*/
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static public int getDefaultAdminConnectorPort()
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{
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int defaultPort = -1;
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for (int i=0;i<10000 && (defaultPort == -1);i+=1000)
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{
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int port = i + 4444;
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if (Utils.canUseAsPort(port))
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{
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defaultPort = port;
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}
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}
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return defaultPort;
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}
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/**
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* Provides the port that will be proposed to the user in the security dialog
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* of the installation wizard. It will check whether we can use ports of type
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* X636 and if not it will return -1.
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* @param defaultLdapPort the default port used for LDAP.
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*
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* @return the free port of type X636 if it is available and we can use and -1
|
* if not.
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*/
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public static int getDefaultSslPort(int defaultLdapPort)
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{
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int defaultPort = -1;
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int port = defaultLdapPort - 389 + 636;
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// Try first with the correlated port of the default LDAP port.
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if (Utils.canUseAsPort(port))
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{
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defaultPort = port;
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}
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for (int i=0;i<10000 && (defaultPort == -1);i+=1000)
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{
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port = i + 636;
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if (Utils.canUseAsPort(port))
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{
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defaultPort = port;
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}
|
}
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return defaultPort;
|
}
|
|
/**
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* Provides the port that will be used by default for JMX.
|
*
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* @param forbiddenPorts an array of ports that we cannot use.
|
* @return the port X689 if it is available and we can use and -1 if not.
|
*/
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static public int getDefaultJMXPort(int[] forbiddenPorts)
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{
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int defaultJMXPort = -1;
|
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for (int i=0;i<65000 && (defaultJMXPort == -1);i+=1000)
|
{
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int port = i + org.opends.server.util.SetupUtils.getDefaultJMXPort();
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boolean isForbidden = false;
|
if (forbiddenPorts != null)
|
{
|
for (int j=0; j<forbiddenPorts.length && !isForbidden; j++)
|
{
|
isForbidden = forbiddenPorts[j] == port;
|
}
|
}
|
if (!isForbidden && Utils.canUseAsPort(port))
|
{
|
defaultJMXPort = port;
|
}
|
}
|
return defaultJMXPort;
|
}
|
|
/**
|
* Provides the default host name that will be proposed to the user for the
|
* local host.
|
* @return the default host name that will be proposed to the user for the
|
* local host.
|
*/
|
public static String getDefaultHostName()
|
{
|
if (defaultHostName == null)
|
{
|
// Run a thread in the background in order to avoid blocking the
|
// application if reverse DNS lookups take a long time.
|
final CountDownLatch latch = new CountDownLatch(1);
|
Thread t = new Thread(new Runnable()
|
{
|
// Search for a host name of the form host.example.com on each
|
// interface, except the loop back. Prefer interfaces of the form ethX.
|
public void run()
|
{
|
try
|
{
|
SortedMap<String, String> hostNames = new TreeMap<String, String>();
|
Enumeration<NetworkInterface> i = NetworkInterface
|
.getNetworkInterfaces();
|
while (i.hasMoreElements())
|
{
|
NetworkInterface n = i.nextElement();
|
|
// Skip loop back interface.
|
if (n.isLoopback())
|
{
|
continue;
|
}
|
|
// Check each interface address (IPv4 and IPv6).
|
String ipv4HostName = null;
|
String ipv6HostName = null;
|
Enumeration<InetAddress> j = n.getInetAddresses();
|
while (j.hasMoreElements())
|
{
|
InetAddress address = j.nextElement();
|
String hostAddress = address.getHostAddress();
|
String hostName = address.getCanonicalHostName();
|
|
// Ignore hostnames which are IP addresses.
|
if (!hostAddress.equals(hostName))
|
{
|
if (address instanceof Inet4Address)
|
{
|
ipv4HostName = hostName;
|
}
|
else if (address instanceof Inet6Address)
|
{
|
ipv6HostName = hostName;
|
}
|
}
|
}
|
|
// Remember the host name if it looks fully qualified.
|
String fqHostName = null;
|
if (ipv4HostName != null && ipv4HostName.contains("."))
|
{
|
fqHostName = ipv4HostName;
|
}
|
else if (ipv6HostName != null && ipv6HostName.contains("."))
|
{
|
fqHostName = ipv6HostName;
|
}
|
|
if (fqHostName != null)
|
{
|
hostNames.put(n.getName(), fqHostName);
|
|
// This looks like a fully qualified name on a ethX interface,
|
// so
|
// use that and break out.
|
if (n.getName().startsWith("eth"))
|
{
|
defaultHostName = fqHostName;
|
break;
|
}
|
}
|
}
|
|
if (defaultHostName == null && !hostNames.isEmpty())
|
{
|
// No ethX host name, so try any other host name that was found.
|
defaultHostName = hostNames.values().iterator().next();
|
}
|
}
|
catch (Exception e)
|
{
|
// Ignore - we'll default to the loopback address later.
|
}
|
|
latch.countDown();
|
}
|
});
|
|
try
|
{
|
t.setDaemon(true);
|
t.start();
|
latch.await(1, TimeUnit.SECONDS);
|
}
|
catch (Exception e)
|
{
|
// Ignore - we'll default to the loopback address later.
|
}
|
|
if (defaultHostName == null)
|
{
|
// No host names found, so use the loop back.
|
try
|
{
|
defaultHostName = InetAddress.getLocalHost().getHostName();
|
}
|
catch (Exception e)
|
{
|
// Not much we can do here.
|
defaultHostName = "localhost";
|
}
|
}
|
}
|
return defaultHostName;
|
}
|
|
/**
|
* Returns a Map containing as key a ServerDescriptor and as value an Integer
|
* corresponding to the Replication Port chosen by the user.
|
*
|
* Only the servers that have no replication port appear on this map.
|
* @return a Map containing as key a ServerDescriptor and as value an
|
* AuthenticationData corresponding to the Replication Port chosen by the
|
* user.
|
*/
|
public Map<ServerDescriptor, AuthenticationData>
|
getRemoteWithNoReplicationPort()
|
{
|
HashMap<ServerDescriptor, AuthenticationData> copy =
|
new HashMap<ServerDescriptor, AuthenticationData>();
|
copy.putAll(remoteWithNoReplicationPort);
|
return copy;
|
}
|
|
/**
|
* Sets a the Replication Ports chosen by the user in the remote servers.
|
* @param remoteWithNoReplicationPort the Map containing as key a
|
* ServerDescriptor and as value an AuthenticationData corresponding to the
|
* Replication Port chosen by the user.
|
*/
|
public void setRemoteWithNoReplicationPort(
|
Map<ServerDescriptor, AuthenticationData> remoteWithNoReplicationPort)
|
{
|
this.remoteWithNoReplicationPort.clear();
|
this.remoteWithNoReplicationPort.putAll(remoteWithNoReplicationPort);
|
}
|
|
/**
|
* Returns the different script names for which there are java arguments.
|
* @return the different script names for which there are java arguments.
|
*/
|
public Set<String> getScriptNamesForJavaArguments()
|
{
|
return hmJavaArguments.keySet();
|
}
|
|
/**
|
* Returns the java arguments associated with a script name. Returns
|
* <CODE>null</CODE> if no java arguments are defined.
|
* @param scriptName the script name.
|
* @return the java arguments associated with a script name.
|
*/
|
public JavaArguments getJavaArguments(String scriptName)
|
{
|
return hmJavaArguments.get(scriptName);
|
}
|
|
/**
|
* Returns the default java arguments associated with a script name. Returns
|
* <CODE>null</CODE> if no java arguments are defined.
|
* @param scriptName the script name.
|
* @return the default java arguments associated with a script name.
|
*/
|
public JavaArguments getDefaultJavaArguments(String scriptName)
|
{
|
return hmDefaultJavaArguments.get(scriptName);
|
}
|
|
/**
|
* Sets the java arguments associated with a script name.
|
* @param scriptName the script name.
|
* @param args the java arguments associated with a script name.
|
*/
|
public void setJavaArguments(String scriptName, JavaArguments args)
|
{
|
hmJavaArguments.put(scriptName, args);
|
}
|
|
|
|
private void createDefaultJavaArguments()
|
{
|
hmJavaArguments = new HashMap<String, JavaArguments>();
|
int maxMemoryMb = 256;
|
int minMemoryMb = 128;
|
final int maxMemoryBytes = maxMemoryMb * 1024 * 1024;
|
// If the current max memory is bigger than the max heap we want to set,
|
// assume that the JVM ergonomics are going to be able to allocate enough
|
// memory.
|
long currentMaxMemoryBytes = Runtime.getRuntime().maxMemory();
|
if (currentMaxMemoryBytes > maxMemoryBytes)
|
{
|
maxMemoryMb = -1;
|
minMemoryMb = -1;
|
}
|
for (String clientScript : getClientScripts())
|
{
|
JavaArguments javaArgument = new JavaArguments();
|
javaArgument.setInitialMemory(8);
|
javaArgument.setAdditionalArguments(new String[] {"-client"});
|
hmJavaArguments.put(clientScript, javaArgument);
|
}
|
for (String serverScript : getServerScripts())
|
{
|
JavaArguments javaArgument = new JavaArguments();
|
javaArgument.setInitialMemory(minMemoryMb);
|
javaArgument.setMaxMemory(maxMemoryMb);
|
javaArgument.setAdditionalArguments(new String[] {"-server"});
|
hmJavaArguments.put(serverScript, javaArgument);
|
}
|
|
JavaArguments controlPanelJavaArgument = new JavaArguments();
|
controlPanelJavaArgument.setInitialMemory(64);
|
controlPanelJavaArgument.setMaxMemory(128);
|
controlPanelJavaArgument.setAdditionalArguments(new String[] {"-client"});
|
hmJavaArguments.put("control-panel", controlPanelJavaArgument);
|
|
hmDefaultJavaArguments =
|
new HashMap<String, JavaArguments>(hmJavaArguments);
|
}
|
|
private String[] getClientScripts()
|
{
|
return new String[] {
|
"backup.online", "base64", "create-rc-script", "dsconfig",
|
"dsreplication", "dsframework", "export-ldif.online",
|
"import-ldif.online", "ldapcompare", "ldapdelete",
|
"ldapmodify", "ldappasswordmodify", "ldapsearch", "list-backends",
|
"manage-account", "manage-tasks", "restore.online", "stop-ds",
|
"status", "uninstall", "setup"
|
};
|
}
|
|
private String[] getServerScripts()
|
{
|
return new String[]
|
{
|
"backup.offline", "dsreplication.offline",
|
"encode-password", "export-ldif.offline",
|
IMPORT_SCRIPT_NAME, "ldif-diff", "ldifmodify", "ldifsearch",
|
"make-ldif", "rebuild-index", "restore.offline", SERVER_SCRIPT_NAME,
|
"upgrade", "verify-index", "dbtest"
|
};
|
}
|
|
/**
|
* Sets the timeout to be used to establish a connection.
|
* @param connectTimeout the timeout to be used to establish a connection.
|
*/
|
public void setConnectTimeout(int connectTimeout)
|
{
|
this.connectTimeout = connectTimeout;
|
}
|
|
/**
|
* Returns the timeout to be used to connect in milliseconds.
|
* @return the timeout to be used to connect in milliseconds. Returns
|
* {@code 0} if there is no timeout.
|
*/
|
public int getConnectTimeout()
|
{
|
return connectTimeout;
|
}
|
}
|