2014-10-09 15:22:54 +02:00
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/* -*- 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 <ZipOutputEntry.hxx>
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#include <com/sun/star/packages/zip/ZipConstants.hpp>
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#include <comphelper/storagehelper.hxx>
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#include <osl/time.h>
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#include <PackageConstants.hxx>
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#include <ZipEntry.hxx>
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#include <ZipFile.hxx>
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#include <ZipPackageBuffer.hxx>
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2014-10-09 15:22:54 +02:00
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#include <ZipPackageStream.hxx>
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using namespace com::sun::star;
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using namespace com::sun::star::io;
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using namespace com::sun::star::uno;
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using namespace com::sun::star::packages::zip::ZipConstants;
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/** This class is used to deflate Zip entries
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*/
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ZipOutputEntry::ZipOutputEntry( const uno::Reference< uno::XComponentContext >& rxContext,
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ZipEntry& rEntry,
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ZipPackageStream* pStream,
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bool bEncrypt)
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: m_aDeflateBuffer(n_ConstBufferSize)
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, m_aDeflater(DEFAULT_COMPRESSION, true)
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, m_pBuffer(new ZipPackageBuffer(n_ConstBufferSize))
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, m_pCurrentEntry(&rEntry)
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, m_nDigested(0)
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, m_bEncryptCurrentEntry(bEncrypt)
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, m_pCurrentStream(NULL)
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{
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assert(m_pCurrentEntry->nMethod == DEFLATED && "Use ZipPackageStream::rawWrite() for STORED entries");
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if (m_bEncryptCurrentEntry)
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{
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m_xCipherContext = ZipFile::StaticGetCipher( rxContext, pStream->GetEncryptionData(), true );
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m_xDigestContext = ZipFile::StaticGetDigestContextForChecksum( rxContext, pStream->GetEncryptionData() );
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m_pCurrentStream = pStream;
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}
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}
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ZipOutputEntry::~ZipOutputEntry( void )
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{
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}
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uno::Sequence< sal_Int8 > ZipOutputEntry::getData()
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{
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m_pBuffer->realloc(m_pBuffer->getPosition());
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return m_pBuffer->getSequence();
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}
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void SAL_CALL ZipOutputEntry::closeEntry()
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throw(IOException, RuntimeException)
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{
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m_aDeflater.finish();
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while (!m_aDeflater.finished())
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doDeflate();
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if ((m_pCurrentEntry->nFlag & 8) == 0)
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{
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if (m_pCurrentEntry->nSize != m_aDeflater.getTotalIn())
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{
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OSL_FAIL("Invalid entry size");
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}
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if (m_pCurrentEntry->nCompressedSize != m_aDeflater.getTotalOut())
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{
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// Different compression strategies make the merit of this
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// test somewhat dubious
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m_pCurrentEntry->nCompressedSize = m_aDeflater.getTotalOut();
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}
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if (m_pCurrentEntry->nCrc != m_aCRC.getValue())
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{
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OSL_FAIL("Invalid entry CRC-32");
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}
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}
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else
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{
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if ( !m_bEncryptCurrentEntry )
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{
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m_pCurrentEntry->nSize = m_aDeflater.getTotalIn();
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m_pCurrentEntry->nCompressedSize = m_aDeflater.getTotalOut();
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}
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m_pCurrentEntry->nCrc = m_aCRC.getValue();
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}
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m_aDeflater.reset();
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m_aCRC.reset();
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if (m_bEncryptCurrentEntry)
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{
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m_xCipherContext.clear();
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uno::Sequence< sal_Int8 > aDigestSeq;
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if ( m_xDigestContext.is() )
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{
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aDigestSeq = m_xDigestContext->finalizeDigestAndDispose();
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m_xDigestContext.clear();
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}
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if ( m_pCurrentStream )
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m_pCurrentStream->setDigest( aDigestSeq );
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}
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}
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void SAL_CALL ZipOutputEntry::write( const Sequence< sal_Int8 >& rBuffer, sal_Int32 nNewOffset, sal_Int32 nNewLength )
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throw(IOException, RuntimeException)
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{
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if (!m_aDeflater.finished())
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{
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m_aDeflater.setInputSegment(rBuffer, nNewOffset, nNewLength);
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while (!m_aDeflater.needsInput())
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doDeflate();
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if (!m_bEncryptCurrentEntry)
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m_aCRC.updateSegment(rBuffer, nNewOffset, nNewLength);
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}
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}
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void ZipOutputEntry::doDeflate()
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{
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sal_Int32 nLength = m_aDeflater.doDeflateSegment(m_aDeflateBuffer, 0, m_aDeflateBuffer.getLength());
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if ( nLength > 0 )
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{
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uno::Sequence< sal_Int8 > aTmpBuffer( m_aDeflateBuffer.getConstArray(), nLength );
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if ( m_bEncryptCurrentEntry && m_xDigestContext.is() && m_xCipherContext.is() )
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{
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// Need to update our digest before encryption...
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sal_Int32 nDiff = n_ConstDigestLength - m_nDigested;
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if ( nDiff )
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{
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sal_Int32 nEat = ::std::min( nLength, nDiff );
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uno::Sequence< sal_Int8 > aTmpSeq( aTmpBuffer.getConstArray(), nEat );
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m_xDigestContext->updateDigest( aTmpSeq );
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m_nDigested = m_nDigested + static_cast< sal_Int16 >( nEat );
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}
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// FIXME64: uno::Sequence not 64bit safe.
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uno::Sequence< sal_Int8 > aEncryptionBuffer = m_xCipherContext->convertWithCipherContext( aTmpBuffer );
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m_pBuffer->writeBytes( aEncryptionBuffer );
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// the sizes as well as checksum for encrypted streams is calculated here
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m_pCurrentEntry->nCompressedSize += aEncryptionBuffer.getLength();
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m_pCurrentEntry->nSize = m_pCurrentEntry->nCompressedSize;
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m_aCRC.update( aEncryptionBuffer );
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}
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else
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{
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m_pBuffer->writeBytes ( aTmpBuffer );
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}
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}
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if ( m_aDeflater.finished() && m_bEncryptCurrentEntry && m_xDigestContext.is() && m_xCipherContext.is() )
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{
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// FIXME64: sequence not 64bit safe.
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uno::Sequence< sal_Int8 > aEncryptionBuffer = m_xCipherContext->finalizeCipherContextAndDispose();
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if ( aEncryptionBuffer.getLength() )
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{
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m_pBuffer->writeBytes( aEncryptionBuffer );
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// the sizes as well as checksum for encrypted streams is calculated hier
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m_pCurrentEntry->nCompressedSize += aEncryptionBuffer.getLength();
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m_pCurrentEntry->nSize = m_pCurrentEntry->nCompressedSize;
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m_aCRC.update( aEncryptionBuffer );
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}
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}
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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