2011-09-29 21:42:27 +01:00
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/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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2012-11-27 16:10:40 +00:00
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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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2010-01-27 11:41:30 +01:00
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#include "controller/SlsAnimationFunction.hxx"
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#include "model/SlsPageDescriptor.hxx"
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#include "view/SlideSorterView.hxx"
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#include <osl/diagnose.hxx>
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#include <rtl/math.hxx>
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namespace sd { namespace slidesorter { namespace controller {
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//===== AnimationBezierFunction ===============================================
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AnimationBezierFunction::AnimationBezierFunction (
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const double nX1,
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const double nY1)
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: mnX1(nX1),
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mnY1(nY1),
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mnX2(1-nY1),
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mnY2(1-nX1)
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{
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}
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::basegfx::B2DPoint AnimationBezierFunction::operator() (const double nT)
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{
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return ::basegfx::B2DPoint(
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EvaluateComponent(nT, mnX1, mnX2),
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EvaluateComponent(nT, mnY1, mnY2));
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}
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double AnimationBezierFunction::EvaluateComponent (
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const double nT,
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const double nV1,
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const double nV2)
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{
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const double nS (1-nT);
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// While the control point values 1 and 2 are explicitly given the start
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// and end values are implicitly given.
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const double nV0 (0);
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const double nV3 (1);
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const double nV01 (nS*nV0 + nT*nV1);
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const double nV12 (nS*nV1 + nT*nV2);
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const double nV23 (nS*nV2 + nT*nV3);
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const double nV012 (nS*nV01 + nT*nV12);
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const double nV123 (nS*nV12 + nT*nV23);
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const double nV0123 (nS*nV012 + nT*nV123);
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return nV0123;
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}
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//===== AnimationParametricFunction ===========================================
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AnimationParametricFunction::AnimationParametricFunction (const ParametricFunction& rFunction)
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: maY()
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{
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const sal_Int32 nSampleCount (64);
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// Sample the given parametric function.
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::std::vector<basegfx::B2DPoint> aPoints;
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aPoints.reserve(nSampleCount);
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for (sal_Int32 nIndex=0; nIndex<nSampleCount; ++nIndex)
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{
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const double nT (nIndex/double(nSampleCount-1));
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aPoints.push_back(basegfx::B2DPoint(rFunction(nT)));
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}
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// Interpolate at evenly spaced points.
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maY.clear();
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maY.reserve(nSampleCount);
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double nX0 (aPoints[0].getX());
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double nY0 (aPoints[0].getY());
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double nX1 (aPoints[1].getX());
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double nY1 (aPoints[1].getY());
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sal_Int32 nIndex (1);
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for (sal_Int32 nIndex2=0; nIndex2<nSampleCount; ++nIndex2)
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{
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const double nX (nIndex2 / double(nSampleCount-1));
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while (nX > nX1 && nIndex<nSampleCount)
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{
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nX0 = nX1;
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nY0 = nY1;
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nX1 = aPoints[nIndex].getX();
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nY1 = aPoints[nIndex].getY();
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++nIndex;
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}
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const double nU ((nX-nX1) / (nX0 - nX1));
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const double nY (nY0*nU + nY1*(1-nU));
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maY.push_back(nY);
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}
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}
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double AnimationParametricFunction::operator() (const double nX)
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{
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2011-05-16 23:22:50 +02:00
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const sal_Int32 nIndex0 (static_cast<sal_Int32>(nX * maY.size()));
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2010-01-27 11:41:30 +01:00
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const double nX0 (nIndex0 / double(maY.size()-1));
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2010-01-28 13:00:30 +01:00
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const sal_uInt32 nIndex1 (nIndex0 + 1);
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2010-01-27 11:41:30 +01:00
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const double nX1 (nIndex1 / double(maY.size()-1));
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if (nIndex0<=0)
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return maY[0];
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2010-01-28 13:00:30 +01:00
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else if (sal_uInt32(nIndex0)>=maY.size() || nIndex1>=maY.size())
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2010-01-27 11:41:30 +01:00
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return maY[maY.size()-1];
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const double nU ((nX-nX1) / (nX0 - nX1));
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return maY[nIndex0]*nU + maY[nIndex1]*(1-nU);
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}
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} } } // end of namespace ::sd::slidesorter::controller
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2011-09-29 21:42:27 +01:00
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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