d11e59088f
Was introduced in commit
a4196fc3cf
"fdo#46808, Convert XMultiServiceFactory in xmlsecurity module"
Change-Id: Ie06a3c89e3a8b4cf43e68afd575a0e86b48d6bc2
260 lines
7.4 KiB
C++
260 lines
7.4 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#include "encryptorimpl.hxx"
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#include <com/sun/star/xml/crypto/XXMLEncryptionTemplate.hpp>
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#include <com/sun/star/xml/wrapper/XXMLElementWrapper.hpp>
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#include <com/sun/star/lang/XMultiServiceFactory.hpp>
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#include <comphelper/processfactory.hxx>
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using namespace com::sun::star::uno;
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namespace cssl = com::sun::star::lang;
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namespace cssxc = com::sun::star::xml::crypto;
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namespace cssxw = com::sun::star::xml::wrapper;
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#define SERVICE_NAME "com.sun.star.xml.crypto.sax.Encryptor"
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#define IMPLEMENTATION_NAME "com.sun.star.xml.security.framework.EncryptorImpl"
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EncryptorImpl::EncryptorImpl(const Reference<XComponentContext> & xContext) : EncryptorImpl_Base(xContext)
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{
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m_nReferenceId = -1;
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}
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EncryptorImpl::~EncryptorImpl()
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{
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}
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bool EncryptorImpl::checkReady() const
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/****** EncryptorImpl/checkReady *********************************************
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*
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* NAME
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* checkReady -- checks the conditions for the encryption.
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*
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* SYNOPSIS
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* bReady = checkReady( );
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*
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* FUNCTION
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* checks whether all following conditions are satisfied:
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* 1. the result listener is ready;
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* 2. the EncryptionEngine is ready.
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*
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* INPUTS
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* empty
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*
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* RESULT
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* bReady - true if all conditions are satisfied, false otherwise
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*
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* AUTHOR
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* Michael Mi
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* Email: michael.mi@sun.com
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******************************************************************************/
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{
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sal_Int32 nKeyInc = 0;
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if (m_nIdOfKeyEC != 0)
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{
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nKeyInc = 1;
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}
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return (m_xResultListener.is() &&
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(m_nReferenceId != -1) &&
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(2+nKeyInc == m_nNumOfResolvedReferences) &&
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EncryptionEngine::checkReady());
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}
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void EncryptorImpl::notifyResultListener() const
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throw (Exception, RuntimeException)
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/****** DecryptorImpl/notifyResultListener ***********************************
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*
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* NAME
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* notifyResultListener -- notifies the listener about the encryption
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* result.
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*
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* SYNOPSIS
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* notifyResultListener( );
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*
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* FUNCTION
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* see NAME.
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*
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* INPUTS
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* empty
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*
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* RESULT
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* empty
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*
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* AUTHOR
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* Michael Mi
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* Email: michael.mi@sun.com
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******************************************************************************/
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{
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Reference< cssxc::sax::XEncryptionResultListener >
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xEncryptionResultListener ( m_xResultListener , UNO_QUERY ) ;
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xEncryptionResultListener->encrypted( m_nSecurityId, m_nStatus );
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}
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void EncryptorImpl::startEngine( const Reference<
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cssxc::XXMLEncryptionTemplate >&
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xEncryptionTemplate)
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throw (Exception, RuntimeException)
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/****** EncryptorImpl/startEngine ********************************************
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*
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* NAME
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* startEngine -- generates the encryption.
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*
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* SYNOPSIS
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* startEngine( xEncryptionTemplate );
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*
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* FUNCTION
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* generates the encryption element, then if succeeds, updates the link
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* of old template element to the new encryption element in
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* SAXEventKeeper.
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*
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* INPUTS
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* xEncryptionTemplate - the encryption template to be encrypted.
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*
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* RESULT
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* empty
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*
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* AUTHOR
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* Michael Mi
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* Email: michael.mi@sun.com
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******************************************************************************/
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{
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Reference < cssxc::XXMLEncryptionTemplate > xResultTemplate;
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Reference< cssxw::XXMLElementWrapper >
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xXMLElement = m_xSAXEventKeeper->getElement( m_nReferenceId );
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xEncryptionTemplate->setTarget(xXMLElement);
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try
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{
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xResultTemplate = m_xXMLEncryption->encrypt(
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xEncryptionTemplate, m_xSecurityEnvironment);
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m_nStatus = xResultTemplate->getStatus();
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}
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catch( Exception& )
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{
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m_nStatus = cssxc::SecurityOperationStatus_RUNTIMEERROR_FAILED;
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}
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if (m_nStatus == cssxc::SecurityOperationStatus_OPERATION_SUCCEEDED)
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{
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Reference < cssxw::XXMLElementWrapper > xResultEncryption
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= xResultTemplate->getTemplate();
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m_xSAXEventKeeper->setElement(m_nIdOfTemplateEC, xResultEncryption);
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m_xSAXEventKeeper->setElement(m_nReferenceId, NULL);
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}
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}
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/* XReferenceCollector */
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void SAL_CALL EncryptorImpl::setReferenceCount(sal_Int32)
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throw (Exception, RuntimeException)
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{
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/*
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* dummp method, because there is only one reference in
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* encryption, different from signature.
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* so the referenceNumber is always 1
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*/
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}
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void SAL_CALL EncryptorImpl::setReferenceId( sal_Int32 id )
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throw (Exception, RuntimeException)
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{
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m_nReferenceId = id;
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}
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/* XEncryptionResultBroadcaster */
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void SAL_CALL EncryptorImpl::addEncryptionResultListener( const Reference< cssxc::sax::XEncryptionResultListener >& listener )
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throw (Exception, RuntimeException)
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{
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m_xResultListener = listener;
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tryToPerform();
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}
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void SAL_CALL EncryptorImpl::removeEncryptionResultListener( const Reference< cssxc::sax::XEncryptionResultListener >&)
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throw (RuntimeException)
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{
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}
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/* XInitialization */
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void SAL_CALL EncryptorImpl::initialize( const Sequence< Any >& aArguments )
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throw (Exception, RuntimeException)
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{
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OSL_ASSERT(aArguments.getLength() == 5);
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OUString ouTempString;
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aArguments[0] >>= ouTempString;
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m_nSecurityId = ouTempString.toInt32();
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aArguments[1] >>= m_xSAXEventKeeper;
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aArguments[2] >>= ouTempString;
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m_nIdOfTemplateEC = ouTempString.toInt32();
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aArguments[3] >>= m_xSecurityEnvironment;
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aArguments[4] >>= m_xXMLEncryption;
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}
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OUString EncryptorImpl_getImplementationName ()
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throw (RuntimeException)
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{
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return OUString ( IMPLEMENTATION_NAME );
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}
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sal_Bool SAL_CALL EncryptorImpl_supportsService( const OUString& ServiceName )
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throw (RuntimeException)
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{
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return ServiceName == SERVICE_NAME;
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}
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Sequence< OUString > SAL_CALL EncryptorImpl_getSupportedServiceNames( )
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throw (RuntimeException)
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{
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Sequence < OUString > aRet(1);
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OUString* pArray = aRet.getArray();
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pArray[0] = OUString ( SERVICE_NAME );
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return aRet;
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}
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#undef SERVICE_NAME
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Reference< XInterface > SAL_CALL EncryptorImpl_createInstance(
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const Reference< cssl::XMultiServiceFactory >& xMSF)
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throw( Exception )
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{
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return (cppu::OWeakObject*) new EncryptorImpl( comphelper::getComponentContext( xMSF ) );
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}
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/* XServiceInfo */
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OUString SAL_CALL EncryptorImpl::getImplementationName( )
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throw (RuntimeException)
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{
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return EncryptorImpl_getImplementationName();
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}
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sal_Bool SAL_CALL EncryptorImpl::supportsService( const OUString& rServiceName )
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throw (RuntimeException)
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{
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return EncryptorImpl_supportsService( rServiceName );
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}
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Sequence< OUString > SAL_CALL EncryptorImpl::getSupportedServiceNames( )
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throw (RuntimeException)
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{
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return EncryptorImpl_getSupportedServiceNames();
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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