forked from amazingfate/loongoffice
...(for now, from LIBO_INTERNAL_CODE only). See the mail thread starting at <https://lists.freedesktop.org/archives/libreoffice/2017-January/076665.html> "Dynamic Exception Specifications" for details. Most changes have been done automatically by the rewriting loplugin:dynexcspec (after enabling the rewriting mode, to be committed shortly). The way it only removes exception specs from declarations if it also sees a definition, it identified some dead declarations-w/o-definitions (that have been removed manually) and some cases where a definition appeared in multiple include files (which have also been cleaned up manually). There's also been cases of macro paramters (that were used to abstract over exception specs) that have become unused now (and been removed). Furthermore, some code needed to be cleaned up manually (avmedia/source/quicktime/ and connectivity/source/drivers/kab/), as I had no configurations available that would actually build that code. Missing @throws documentation has not been applied in such manual clean-up. Change-Id: I3408691256c9b0c12bc5332de976743626e13960 Reviewed-on: https://gerrit.libreoffice.org/33574 Tested-by: Jenkins <ci@libreoffice.org> Reviewed-by: Stephan Bergmann <sbergman@redhat.com>
371 lines
12 KiB
C++
371 lines
12 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 <ZipOutputStream.hxx>
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#include <com/sun/star/packages/zip/ZipConstants.hpp>
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#include <com/sun/star/io/XInputStream.hpp>
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#include <com/sun/star/io/XOutputStream.hpp>
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#include <comphelper/storagehelper.hxx>
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#include <cppuhelper/exc_hlp.hxx>
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#include <osl/diagnose.h>
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#include <osl/time.h>
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#include <osl/thread.hxx>
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#include <PackageConstants.hxx>
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#include <ZipEntry.hxx>
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#include <ZipOutputEntry.hxx>
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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 write Zip files
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*/
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ZipOutputStream::ZipOutputStream( const uno::Reference < io::XOutputStream > &xOStream )
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: m_xStream(xOStream)
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, mpThreadTaskTag( comphelper::ThreadPool::createThreadTaskTag() )
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, m_aChucker(xOStream)
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, m_pCurrentEntry(nullptr)
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{
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}
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ZipOutputStream::~ZipOutputStream()
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{
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}
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void ZipOutputStream::setEntry( ZipEntry *pEntry )
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{
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if (pEntry->nTime == -1)
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pEntry->nTime = getCurrentDosTime();
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if (pEntry->nMethod == -1)
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pEntry->nMethod = DEFLATED;
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pEntry->nVersion = 20;
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pEntry->nFlag = 1 << 11;
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if (pEntry->nSize == -1 || pEntry->nCompressedSize == -1 ||
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pEntry->nCrc == -1)
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{
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pEntry->nSize = pEntry->nCompressedSize = 0;
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pEntry->nFlag |= 8;
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}
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}
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void ZipOutputStream::addDeflatingThread( ZipOutputEntry *pEntry, comphelper::ThreadTask *pThread )
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{
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comphelper::ThreadPool::getSharedOptimalPool().pushTask(pThread);
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m_aEntries.push_back(pEntry);
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}
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void ZipOutputStream::rawWrite( const Sequence< sal_Int8 >& rBuffer )
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{
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m_aChucker.WriteBytes( rBuffer );
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}
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void ZipOutputStream::rawCloseEntry( bool bEncrypt )
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{
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assert(m_pCurrentEntry && "Forgot to call writeLOC()?");
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if ( m_pCurrentEntry->nMethod == DEFLATED && ( m_pCurrentEntry->nFlag & 8 ) )
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writeEXT(*m_pCurrentEntry);
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if (bEncrypt)
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m_pCurrentEntry->nMethod = STORED;
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m_pCurrentEntry = nullptr;
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}
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void ZipOutputStream::consumeScheduledThreadEntry(ZipOutputEntry* pCandidate)
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{
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//Any exceptions thrown in the threads were caught and stored for now
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::css::uno::Any aCaughtException(pCandidate->getParallelDeflateException());
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if (aCaughtException.hasValue())
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{
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m_aDeflateException = aCaughtException; // store it for later throwing
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// the exception handler in DeflateThread should have cleaned temp file
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delete pCandidate;
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return;
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}
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writeLOC(pCandidate->getZipEntry(), pCandidate->isEncrypt());
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sal_Int32 nRead;
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uno::Sequence< sal_Int8 > aSequence(n_ConstBufferSize);
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uno::Reference< io::XInputStream > xInput = pCandidate->getData();
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do
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{
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nRead = xInput->readBytes(aSequence, n_ConstBufferSize);
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if (nRead < n_ConstBufferSize)
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aSequence.realloc(nRead);
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rawWrite(aSequence);
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}
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while (nRead == n_ConstBufferSize);
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xInput.clear();
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rawCloseEntry(pCandidate->isEncrypt());
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pCandidate->getZipPackageStream()->successfullyWritten(pCandidate->getZipEntry());
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pCandidate->deleteBufferFile();
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delete pCandidate;
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}
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void ZipOutputStream::consumeFinishedScheduledThreadEntries()
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{
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std::vector< ZipOutputEntry* > aNonFinishedEntries;
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for(auto aIter = m_aEntries.begin(); aIter != m_aEntries.end(); ++aIter)
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{
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if((*aIter)->isFinished())
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{
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consumeScheduledThreadEntry(*aIter);
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}
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else
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{
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aNonFinishedEntries.push_back(*aIter);
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}
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}
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// always reset to non-consumed entries
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m_aEntries = aNonFinishedEntries;
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}
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void ZipOutputStream::reduceScheduledThreadsToGivenNumberOrLess(sal_Int32 nThreads)
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{
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while(static_cast< sal_Int32 >(m_aEntries.size()) > nThreads)
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{
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consumeFinishedScheduledThreadEntries();
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if(static_cast< sal_Int32 >(m_aEntries.size()) > nThreads)
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{
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const TimeValue aTimeValue(0, 100000);
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osl_waitThread(&aTimeValue);
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}
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}
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}
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void ZipOutputStream::finish()
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{
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assert(!m_aZipList.empty() && "Zip file must have at least one entry!");
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// Wait for all threads to finish & write
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comphelper::ThreadPool::getSharedOptimalPool().waitUntilDone(mpThreadTaskTag);
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// consume all processed entries
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while(!m_aEntries.empty())
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{
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ZipOutputEntry* pCandidate = m_aEntries.back();
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m_aEntries.pop_back();
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consumeScheduledThreadEntry(pCandidate);
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}
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sal_Int32 nOffset= static_cast < sal_Int32 > (m_aChucker.GetPosition());
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for (ZipEntry* p : m_aZipList)
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{
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writeCEN( *p );
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delete p;
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}
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writeEND( nOffset, static_cast < sal_Int32 > (m_aChucker.GetPosition()) - nOffset);
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m_xStream->flush();
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m_aZipList.clear();
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if (m_aDeflateException.hasValue())
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{ // throw once all threads are finished and m_aEntries can be released
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::cppu::throwException(m_aDeflateException);
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}
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}
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const css::uno::Reference< css::io::XOutputStream >& ZipOutputStream::getStream()
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{
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return m_xStream;
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}
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void ZipOutputStream::writeEND(sal_uInt32 nOffset, sal_uInt32 nLength)
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{
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m_aChucker.WriteInt32( ENDSIG );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt16( m_aZipList.size() );
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m_aChucker.WriteInt16( m_aZipList.size() );
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m_aChucker.WriteUInt32( nLength );
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m_aChucker.WriteUInt32( nOffset );
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m_aChucker.WriteInt16( 0 );
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}
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static sal_uInt32 getTruncated( sal_Int64 nNum, bool *pIsTruncated )
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{
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if( nNum >= 0xffffffff )
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{
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*pIsTruncated = true;
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return 0xffffffff;
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}
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else
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return static_cast< sal_uInt32 >( nNum );
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}
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void ZipOutputStream::writeCEN( const ZipEntry &rEntry )
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{
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if ( !::comphelper::OStorageHelper::IsValidZipEntryFileName( rEntry.sPath, true ) )
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throw IOException("Unexpected character is used in file name." );
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OString sUTF8Name = OUStringToOString( rEntry.sPath, RTL_TEXTENCODING_UTF8 );
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sal_Int16 nNameLength = static_cast < sal_Int16 > ( sUTF8Name.getLength() );
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m_aChucker.WriteInt32( CENSIG );
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m_aChucker.WriteInt16( rEntry.nVersion );
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m_aChucker.WriteInt16( rEntry.nVersion );
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m_aChucker.WriteInt16( rEntry.nFlag );
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m_aChucker.WriteInt16( rEntry.nMethod );
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bool bWrite64Header = false;
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m_aChucker.WriteUInt32( rEntry.nTime );
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m_aChucker.WriteUInt32( rEntry.nCrc );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nCompressedSize, &bWrite64Header ) );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nSize, &bWrite64Header ) );
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m_aChucker.WriteInt16( nNameLength );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt16( 0 );
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m_aChucker.WriteInt32( 0 );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nOffset, &bWrite64Header ) );
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if( bWrite64Header )
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{
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// FIXME64: need to append a ZIP64 header instead of throwing
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// We're about to silently lose people's data - which they are
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// unlikely to appreciate so fail instead:
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throw IOException( "File contains streams that are too large." );
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}
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Sequence < sal_Int8 > aSequence( reinterpret_cast<sal_Int8 const *>(sUTF8Name.getStr()), sUTF8Name.getLength() );
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m_aChucker.WriteBytes( aSequence );
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}
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void ZipOutputStream::writeEXT( const ZipEntry &rEntry )
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{
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bool bWrite64Header = false;
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m_aChucker.WriteInt32( EXTSIG );
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m_aChucker.WriteUInt32( rEntry.nCrc );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nCompressedSize, &bWrite64Header ) );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nSize, &bWrite64Header ) );
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if( bWrite64Header )
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{
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// FIXME64: need to append a ZIP64 header instead of throwing
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// We're about to silently lose people's data - which they are
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// unlikely to appreciate so fail instead:
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throw IOException( "File contains streams that are too large." );
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}
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}
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void ZipOutputStream::writeLOC( ZipEntry *pEntry, bool bEncrypt )
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{
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assert(!m_pCurrentEntry && "Forgot to close an entry with rawCloseEntry()?");
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m_pCurrentEntry = pEntry;
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m_aZipList.push_back( m_pCurrentEntry );
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const ZipEntry &rEntry = *m_pCurrentEntry;
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if ( !::comphelper::OStorageHelper::IsValidZipEntryFileName( rEntry.sPath, true ) )
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throw IOException("Unexpected character is used in file name." );
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OString sUTF8Name = OUStringToOString( rEntry.sPath, RTL_TEXTENCODING_UTF8 );
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sal_Int16 nNameLength = static_cast < sal_Int16 > ( sUTF8Name.getLength() );
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m_aChucker.WriteInt32( LOCSIG );
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m_aChucker.WriteInt16( rEntry.nVersion );
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m_aChucker.WriteInt16( rEntry.nFlag );
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// If it's an encrypted entry, we pretend its stored plain text
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if (bEncrypt)
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m_aChucker.WriteInt16( STORED );
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else
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m_aChucker.WriteInt16( rEntry.nMethod );
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bool bWrite64Header = false;
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m_aChucker.WriteUInt32( rEntry.nTime );
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if ((rEntry.nFlag & 8) == 8 )
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{
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m_aChucker.WriteInt32( 0 );
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m_aChucker.WriteInt32( 0 );
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m_aChucker.WriteInt32( 0 );
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}
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else
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{
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m_aChucker.WriteUInt32( rEntry.nCrc );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nCompressedSize, &bWrite64Header ) );
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m_aChucker.WriteUInt32( getTruncated( rEntry.nSize, &bWrite64Header ) );
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}
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m_aChucker.WriteInt16( nNameLength );
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m_aChucker.WriteInt16( 0 );
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if( bWrite64Header )
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{
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// FIXME64: need to append a ZIP64 header instead of throwing
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// We're about to silently lose people's data - which they are
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// unlikely to appreciate so fail instead:
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throw IOException( "File contains streams that are too large." );
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}
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Sequence < sal_Int8 > aSequence( reinterpret_cast<sal_Int8 const *>(sUTF8Name.getStr()), sUTF8Name.getLength() );
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m_aChucker.WriteBytes( aSequence );
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m_pCurrentEntry->nOffset = m_aChucker.GetPosition() - (LOCHDR + nNameLength);
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}
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sal_uInt32 ZipOutputStream::getCurrentDosTime()
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{
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oslDateTime aDateTime;
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TimeValue aTimeValue;
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osl_getSystemTime ( &aTimeValue );
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osl_getDateTimeFromTimeValue( &aTimeValue, &aDateTime);
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// at year 2108, there is an overflow
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// -> some decision needs to be made
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// how to handle the ZIP file format (just overflow?)
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// if the current system time is before 1980,
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// then the time traveller will have to make a decision
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// how to handle the ZIP file format before it is invented
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// (just underflow?)
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assert(aDateTime.Year > 1980 && aDateTime.Year < 2108);
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sal_uInt32 nYear = static_cast <sal_uInt32> (aDateTime.Year);
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if (nYear>=1980)
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nYear-=1980;
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else if (nYear>=80)
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{
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nYear-=80;
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}
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sal_uInt32 nResult = static_cast < sal_uInt32>( ( ( ( aDateTime.Day) +
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( 32 * (aDateTime.Month)) +
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( 512 * nYear ) ) << 16) |
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( ( aDateTime.Seconds/2) +
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( 32 * aDateTime.Minutes) +
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( 2048 * static_cast <sal_uInt32 > (aDateTime.Hours) ) ) );
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return nResult;
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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