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https://github.com/ONLYOFFICE/core.git
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261 lines
9.1 KiB
C++
261 lines
9.1 KiB
C++
/*
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* (c) Copyright Ascensio System SIA 2010-2019
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*
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* This program is a free software product. You can redistribute it and/or
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* modify it under the terms of the GNU Affero General Public License (AGPL)
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* version 3 as published by the Free Software Foundation. In accordance with
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* Section 7(a) of the GNU AGPL its Section 15 shall be amended to the effect
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* that Ascensio System SIA expressly excludes the warranty of non-infringement
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* of any third-party rights.
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*
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* This program is distributed WITHOUT ANY WARRANTY; without even the implied
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* warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. For
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* details, see the GNU AGPL at: http://www.gnu.org/licenses/agpl-3.0.html
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*
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* You can contact Ascensio System SIA at 20A-12 Ernesta Birznieka-Upisha
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* street, Riga, Latvia, EU, LV-1050.
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*
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* The interactive user interfaces in modified source and object code versions
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* of the Program must display Appropriate Legal Notices, as required under
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* Section 5 of the GNU AGPL version 3.
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*
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* Pursuant to Section 7(b) of the License you must retain the original Product
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* logo when distributing the program. Pursuant to Section 7(e) we decline to
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* grant you any rights under trademark law for use of our trademarks.
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*
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* All the Product's GUI elements, including illustrations and icon sets, as
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* well as technical writing content are licensed under the terms of the
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* Creative Commons Attribution-ShareAlike 4.0 International. See the License
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* terms at http://creativecommons.org/licenses/by-sa/4.0/legalcode
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*
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*/
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#pragma once
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#ifndef PPTX_LOGIC_REFLECTION_INCLUDE_H_
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#define PPTX_LOGIC_REFLECTION_INCLUDE_H_
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#include "./../../WrapperWritingElement.h"
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#include "./../../Limit/RectAlign.h"
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namespace PPTX
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{
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namespace Logic
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{
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class Reflection : public WrapperWritingElement
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{
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public:
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WritingElement_AdditionConstructors(Reflection)
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PPTX_LOGIC_BASE2(Reflection)
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Reflection& operator=(const Reflection& oSrc)
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{
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parentFile = oSrc.parentFile;
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parentElement = oSrc.parentElement;
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algn = oSrc.algn;
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blurRad = oSrc.blurRad;
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stA = oSrc.stA;
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endA = oSrc.endA;
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stPos = oSrc.stPos;
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endPos = oSrc.endPos;
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dir = oSrc.dir;
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fadeDir = oSrc.fadeDir;
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dist = oSrc.dist;
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kx = oSrc.kx;
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ky = oSrc.ky;
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rotWithShape = oSrc.rotWithShape;
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sx = oSrc.sx;
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sy = oSrc.sy;
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return *this;
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}
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virtual OOX::EElementType getType() const
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{
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return OOX::et_a_reflection;
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}
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void fromXML(XmlUtils::CXmlLiteReader& oReader)
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{
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ReadAttributes( oReader );
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}
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void ReadAttributes(XmlUtils::CXmlLiteReader& oReader)
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{
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WritingElement_ReadAttributes_Start_No_NS( oReader )
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WritingElement_ReadAttributes_Read_if ( oReader, _T("blurRad"), blurRad)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("dir"), dir)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("fadeDir"), fadeDir)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("dist"), dist)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("algnt"), algn)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("kx"), kx)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("ky"), ky)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("rotWithShape"), rotWithShape)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("sx"), sx)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("sy"), sy)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("stA"), stA)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("endA"), endA)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("stPos"), stPos)
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WritingElement_ReadAttributes_Read_else_if( oReader, _T("endPos"), endPos)
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WritingElement_ReadAttributes_End_No_NS( oReader )
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Normalize();
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}
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virtual void fromXML(XmlUtils::CXmlNode& node)
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{
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XmlMacroReadAttributeBase(node, L"algn", algn);
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XmlMacroReadAttributeBase(node, L"blurRad", blurRad);
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XmlMacroReadAttributeBase(node, L"dir", dir);
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XmlMacroReadAttributeBase(node, L"dist", dist);
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XmlMacroReadAttributeBase(node, L"kx", kx);
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XmlMacroReadAttributeBase(node, L"ky", ky);
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XmlMacroReadAttributeBase(node, L"rotWithShape", rotWithShape);
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XmlMacroReadAttributeBase(node, L"sx", sx);
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XmlMacroReadAttributeBase(node, L"sy", sy);
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XmlMacroReadAttributeBase(node, L"stA", stA);
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XmlMacroReadAttributeBase(node, L"endA", endA);
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XmlMacroReadAttributeBase(node, L"stPos", stPos);
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XmlMacroReadAttributeBase(node, L"endPos", endPos);
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XmlMacroReadAttributeBase(node, L"fadeDir", fadeDir);
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Normalize();
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}
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virtual std::wstring toXML() const
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{
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XmlUtils::CAttribute oAttr;
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oAttr.Write(_T("blurRad"), blurRad);
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oAttr.Write(_T("stA"), stA);
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oAttr.Write(_T("stPos"), stPos);
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oAttr.Write(_T("endA"), endA);
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oAttr.Write(_T("endPos"), endPos);
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oAttr.Write(_T("dist"), dist);
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oAttr.Write(_T("dir"), dir);
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oAttr.Write(_T("fadeDir"), fadeDir);
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oAttr.Write(_T("sx"), sx);
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oAttr.Write(_T("sy"), sy);
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oAttr.Write(_T("kx"), kx);
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oAttr.Write(_T("ky"), ky);
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oAttr.WriteLimitNullable(_T("algn"), algn);
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oAttr.Write(_T("rotWithShape"), rotWithShape);
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return XmlUtils::CreateNode(_T("a:reflection"), oAttr);
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}
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virtual void toXmlWriter(NSBinPptxRW::CXmlWriter* pWriter) const
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{
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pWriter->StartNode(L"a:reflection");
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pWriter->StartAttributes();
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pWriter->WriteAttribute(L"blurRad", blurRad);
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pWriter->WriteAttribute(L"dist", dist);
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pWriter->WriteAttribute(L"dir", dir);
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pWriter->WriteAttribute(L"kx", kx);
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pWriter->WriteAttribute(L"ky", ky);
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pWriter->WriteAttribute(L"sx", sx);
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pWriter->WriteAttribute(L"sy", sy);
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pWriter->WriteAttribute(L"rotWithShape", rotWithShape);
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pWriter->WriteAttribute(L"fadeDir", fadeDir);
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pWriter->WriteAttribute(L"algn", algn);
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pWriter->WriteAttribute(L"stA", stA);
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pWriter->WriteAttribute(L"stPos", stPos);
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pWriter->WriteAttribute(L"endA", endA);
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pWriter->WriteAttribute(L"endPos", endPos);
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pWriter->EndAttributes();
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pWriter->EndNode(L"a:reflection");
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}
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virtual void toPPTY(NSBinPptxRW::CBinaryFileWriter* pWriter) const
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{
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pWriter->StartRecord(EFFECT_TYPE_REFLECTION);
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pWriter->WriteBYTE(NSBinPptxRW::g_nodeAttributeStart);
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pWriter->WriteLimit2(0, algn);
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pWriter->WriteInt2(1, blurRad);
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pWriter->WriteInt2(2, stA);
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pWriter->WriteInt2(3, endA);
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pWriter->WriteInt2(4, stPos);
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pWriter->WriteInt2(5, endPos);
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pWriter->WriteInt2(6, dir);
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pWriter->WriteInt2(7, fadeDir);
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pWriter->WriteInt2(8, dist);
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pWriter->WriteInt2(9, kx);
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pWriter->WriteInt2(10, ky);
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pWriter->WriteInt2(11, sx);
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pWriter->WriteInt2(12, sy);
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pWriter->WriteBool2(13, rotWithShape);
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pWriter->WriteBYTE(NSBinPptxRW::g_nodeAttributeEnd);
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pWriter->EndRecord();
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}
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virtual void fromPPTY(NSBinPptxRW::CBinaryFileReader* pReader)
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{
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pReader->Skip(4); // len
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BYTE _type = pReader->GetUChar();
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LONG _end_rec = pReader->GetPos() + pReader->GetLong() + 4;
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pReader->Skip(1);
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while (true)
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{
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BYTE _at = pReader->GetUChar_TypeNode();
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if (_at == NSBinPptxRW::g_nodeAttributeEnd)
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break;
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switch (_at)
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{
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case 0:
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{
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algn = new Limit::RectAlign();
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algn->SetBYTECode( pReader->GetChar());
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}break;
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case 1: blurRad = pReader->GetLong(); break;
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case 2: stA = pReader->GetLong(); break;
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case 3: endA = pReader->GetLong(); break;
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case 4: stPos = pReader->GetLong(); break;
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case 5: endPos = pReader->GetLong(); break;
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case 6: dir = pReader->GetLong(); break;
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case 7: fadeDir = pReader->GetLong(); break;
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case 8: dist = pReader->GetLong(); break;
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case 9: kx = pReader->GetLong(); break;
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case 10:ky = pReader->GetLong(); break;
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case 11:sx = pReader->GetLong(); break;
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case 12:sy = pReader->GetLong(); break;
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case 13:rotWithShape = pReader->GetBool(); break;
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}
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}
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pReader->Seek(_end_rec);
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}
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public:
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nullable_limit<Limit::RectAlign> algn;
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nullable_int blurRad;
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nullable_int stA;
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nullable_int endA;
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nullable_int stPos;
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nullable_int endPos;
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nullable_int dir;
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nullable_int fadeDir;
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nullable_int dist;
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nullable_int kx;
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nullable_int ky;
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nullable_bool rotWithShape;
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nullable_int sx;
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nullable_int sy;
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protected:
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virtual void FillParentPointersForChilds(){};
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AVSINLINE void Normalize()
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{
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blurRad.normalize_positive();
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stA.normalize_positive();
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endA.normalize_positive();
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stPos.normalize_positive();
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endPos.normalize_positive();
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dist.normalize_positive();
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dir.normalize(0, 2100000);
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fadeDir.normalize(0, 2100000);
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kx.normalize(-5400000, 5400000);
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ky.normalize(-5400000, 5400000);
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}
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};
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} // namespace Logic
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} // namespace PPTX
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#endif // PPTX_LOGIC_REFLECTION_INCLUDE_H_
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