47cd34a60f
excluding the UDK headers of course Change-Id: Iac7ab83d60265f7d362c860776f1de9d5e444ec0 Reviewed-on: https://gerrit.libreoffice.org/c/core/+/93268 Tested-by: Jenkins Reviewed-by: Noel Grandin <noel.grandin@collabora.co.uk>
208 lines
7.9 KiB
C++
208 lines
7.9 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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#ifndef INCLUDED_OOX_HELPER_BINARYOUTPUTSTREAM_HXX
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#define INCLUDED_OOX_HELPER_BINARYOUTPUTSTREAM_HXX
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#include <cstddef>
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#include <memory>
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#include <com/sun/star/uno/Reference.hxx>
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#include <oox/dllapi.h>
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#include <oox/helper/binarystreambase.hxx>
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#include <oox/helper/helper.hxx>
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#include <rtl/textenc.h>
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#include <rtl/ustring.hxx>
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#include <sal/types.h>
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namespace com::sun::star {
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namespace io { class XOutputStream; }
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}
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namespace oox {
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/** Interface for binary output stream classes.
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The binary data in the stream is written in little-endian format.
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*/
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class BinaryOutputStream : public virtual BinaryStreamBase
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{
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public:
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/** Derived classes implement writing the contents of the passed data
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sequence.
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@param nAtomSize
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The size of the elements in the memory block, if available. Derived
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classes may be interested in this information.
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*/
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virtual void writeData( const StreamDataSequence& rData, size_t nAtomSize = 1 ) = 0;
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/** Derived classes implement writing the contents of the (preallocated!)
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memory buffer pMem.
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@param nAtomSize
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The size of the elements in the memory block, if available. Derived
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classes may be interested in this information.
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*/
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virtual void writeMemory( const void* pMem, sal_Int32 nBytes, size_t nAtomSize = 1 ) = 0;
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template< typename Type >
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void writeArray( Type* opnArray, sal_Int32 nElemCount );
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template< typename Type >
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void writeArray( const Type* opnArray, sal_Int32 nElemCount );
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/** Writes a value to the stream and converts it to platform byte order.
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All data types supported by the ByteOrderConverter class can be used.
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*/
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template< typename Type >
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void writeValue( Type nValue );
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BinaryOutputStream& WriteInt16(sal_Int16 x) { writeValue(x); return *this; }
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BinaryOutputStream& WriteUInt16(sal_uInt16 x) { writeValue(x); return *this; }
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BinaryOutputStream& WriteInt32(sal_Int32 x) { writeValue(x); return *this; }
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BinaryOutputStream& WriteUInt32(sal_uInt32 x) { writeValue(x); return *this; }
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BinaryOutputStream& WriteInt64(sal_Int64 x) { writeValue(x); return *this; }
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void writeCompressedUnicodeArray( const OUString& rString, bool bCompressed );
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void writeCharArrayUC( const OUString& rString, rtl_TextEncoding eTextEnc );
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void writeUnicodeArray( const OUString& rString );
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protected:
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/** This dummy default c'tor will never call the c'tor of the virtual base
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class BinaryStreamBase as this class cannot be instantiated directly. */
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BinaryOutputStream() : BinaryStreamBase( false ) {}
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private:
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BinaryOutputStream( BinaryOutputStream const& ) = delete;
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BinaryOutputStream& operator=( BinaryOutputStream const& ) = delete;
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};
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template< typename Type >
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void BinaryOutputStream::writeArray( Type* opnArray, sal_Int32 nElemCount )
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{
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sal_Int32 nWriteSize = getLimitedValue< sal_Int32, sal_Int32 >( nElemCount, 0, SAL_MAX_INT32 / sizeof( Type ) ) * sizeof( Type );
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ByteOrderConverter::convertLittleEndianArray( opnArray, static_cast< size_t >( nElemCount ) );
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writeMemory( opnArray, nWriteSize, sizeof( Type ) );
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}
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template< typename Type >
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void BinaryOutputStream::writeArray( const Type* opnArray, sal_Int32 nElemCount )
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{
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std::unique_ptr<Type[]> xArray(new Type[nElemCount]);
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std::uninitialized_copy(opnArray, opnArray + nElemCount, xArray.get());
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writeArray(xArray.get(), nElemCount);
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}
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template< typename Type >
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void BinaryOutputStream::writeValue( Type nValue )
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{
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ByteOrderConverter::convertLittleEndian( nValue );
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writeMemory( &nValue, static_cast< sal_Int32 >( sizeof( Type ) ), sizeof( Type ) );
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}
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/** Wraps a UNO output stream and provides convenient access functions.
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The binary data in the stream is written in little-endian format.
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*/
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class OOX_DLLPUBLIC BinaryXOutputStream final : public BinaryXSeekableStream, public BinaryOutputStream
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{
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public:
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/** Constructs the wrapper object for the passed output stream.
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@param rxOutStream
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The com.sun.star.io.XOutputStream interface of the output stream to
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be wrapped.
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@param bAutoClose
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True = automatically close the wrapped output stream on destruction
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of this wrapper or when close() is called.
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*/
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explicit BinaryXOutputStream(
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const css::uno::Reference< css::io::XOutputStream >& rxOutStrm,
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bool bAutoClose );
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virtual ~BinaryXOutputStream() override;
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/** Flushes and closes the output stream. Does also close the wrapped UNO
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output stream if bAutoClose has been set to true in the constructor. */
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void close() override;
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/** Writes the passed data sequence. */
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virtual void writeData( const StreamDataSequence& rData, size_t nAtomSize = 1 ) override;
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/** Write nBytes bytes from the (preallocated!) buffer pMem. */
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virtual void writeMemory( const void* pMem, sal_Int32 nBytes, size_t nAtomSize = 1 ) override;
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private:
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StreamDataSequence maBuffer; ///< Data buffer used in writeMemory() function.
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css::uno::Reference< css::io::XOutputStream >
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mxOutStrm; ///< Reference to the output stream.
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bool mbAutoClose; ///< True = automatically close stream on destruction.
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};
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/** Wraps a StreamDataSequence and provides convenient access functions.
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The binary data in the stream is written in little-endian format. After
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construction, the stream points to the beginning of the passed data
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sequence. The data sequence is expanded automatically while writing to it.
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*/
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class SequenceOutputStream final : public BinaryOutputStream
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{
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public:
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/** Constructs the wrapper object for the passed data sequence.
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@attention
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The passed data sequence MUST live at least as long as this stream
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wrapper. The data sequence MUST NOT be changed from outside as long
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as this stream wrapper is used to write to it.
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*/
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explicit SequenceOutputStream( StreamDataSequence & rData );
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/** Writes the passed data sequence. */
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virtual void writeData( const StreamDataSequence& rData, size_t nAtomSize = 1 ) override;
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/** Write nBytes bytes from the (preallocated!) buffer pMem. */
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virtual void writeMemory( const void* pMem, sal_Int32 nBytes, size_t nAtomSize = 1 ) override;
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/** Returns the size of the wrapped data sequence. */
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virtual sal_Int64 size() const override;
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/** Returns the current stream position. */
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virtual sal_Int64 tell() const override;
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/** Seeks the stream to the passed position. */
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virtual void seek( sal_Int64 nPos ) override;
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/** Releases the reference to the data sequence. */
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virtual void close() override;
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private:
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StreamDataSequence* mpData; ///< Wrapped data sequence.
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sal_Int32 mnPos; ///< Current position in the sequence.
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};
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} // namespace oox
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#endif
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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