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https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
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293 lines
7.8 KiB
C++
293 lines
7.8 KiB
C++
// NeL - MMORPG Framework <http://dev.ryzom.com/projects/nel/>
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// Copyright (C) 2010 Winch Gate Property Limited
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as
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// published by the Free Software Foundation, either version 3 of the
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// License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include "std3d.h"
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#include "nel/3d/seg_remanence_shape.h"
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#include "nel/3d/seg_remanence.h"
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#include "nel/3d/driver.h"
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#include "nel/3d/scene.h"
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//
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#include "nel/misc/bsphere.h"
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namespace NL3D
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{
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//===========================================================
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CSegRemanenceShape::CSegRemanenceShape() : _GeomTouched(true),
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_MatTouched(true),
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_TextureShifting(true),
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_NumSlices(8),
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_SliceTime(0.05f),
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_RollUpRatio(1.f),
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_AnimatedMat(NULL)
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{
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_BBox.setCenter(NLMISC::CVector::Null);
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_BBox.setHalfSize(NLMISC::CVector(3, 3, 3));
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setNumCorners(2);
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}
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//===========================================================
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void CSegRemanenceShape::serial(NLMISC::IStream &f) throw(NLMISC::EStream)
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{
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// version 2 : added default tracks
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// version 1 : rollup ratio
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// version 0 : base version
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sint ver = f.serialVersion(2);
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f.serial(_NumSlices);
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f.serial(_SliceTime);
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f.serialCont(_Corners);
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f.serial(_Mat);
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f.serial(_BBox);
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f.serial(_TextureShifting);
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f.serialPtr(_AnimatedMat);
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if (f.isReading())
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{
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_GeomTouched = true;
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_MatTouched = true;
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}
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if (ver >= 1)
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{
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f.serial(_RollUpRatio);
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}
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if (ver >= 2)
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{
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f.serial(_DefaultPos);
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f.serial(_DefaultRotQuat);
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f.serial(_DefaultScale);
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}
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}
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//===========================================================
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void CSegRemanenceShape::setSliceTime(float sliceTime)
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{
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nlassert(sliceTime > 0);
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_SliceTime = sliceTime;
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}
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//===========================================================
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void CSegRemanenceShape::setCorner(uint corner, const NLMISC::CVector &value)
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{
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nlassert(corner < _Corners.size());
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_Corners[corner] = value;
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}
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//===========================================================
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void CSegRemanenceShape::setNumSlices(uint32 numSlices)
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{
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nlassert(numSlices >= 2);
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_NumSlices = numSlices;
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_GeomTouched = true;
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}
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//===========================================================
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NLMISC::CVector CSegRemanenceShape::getCorner(uint corner) const
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{
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nlassert(corner < _Corners.size());
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return _Corners[corner];
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}
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//===========================================================
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void CSegRemanenceShape::setNumCorners(uint numCorners)
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{
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nlassert(numCorners >= 2);
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_Corners.resize(numCorners);
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std::fill(_Corners.begin(), _Corners.end(), NLMISC::CVector::Null);
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_GeomTouched = true;
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}
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//===========================================================
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void CSegRemanenceShape::render(IDriver *drv, CTransformShape *trans, bool opaquePass)
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{
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if ((!opaquePass && _Mat.getBlend())
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|| (opaquePass && !_Mat.getBlend())
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)
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{
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CSegRemanence *sr = NLMISC::safe_cast<CSegRemanence *>(trans);
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#ifndef DEBUG_SEG_REMANENCE_DISPLAY
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if (!sr->isStarted()) return;
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#endif
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setupMaterial();
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//
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sr->render(drv, _Mat);
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}
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}
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//===========================================================
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void CSegRemanenceShape::flushTextures(IDriver &driver, uint selectedTexture)
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{
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_Mat.flushTextures(driver, selectedTexture);
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}
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//===========================================================
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CTransformShape *CSegRemanenceShape::createInstance(CScene &scene)
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{
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CSegRemanence *sr = NLMISC::safe_cast<CSegRemanence *>(scene.createModel(NL3D::SegRemanenceShapeId) );
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sr->Shape = this;
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CAnimatedMaterial *aniMat = NULL;
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if (_AnimatedMat)
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{
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aniMat = new CAnimatedMaterial(_AnimatedMat);
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aniMat->setMaterial(&_Mat);
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}
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sr->setAnimatedMaterial(aniMat);
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sr->setupFromShape();
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// SegRemanence are added to the "Fx" Load Balancing Group.
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sr->setLoadBalancingGroup("Fx");
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sr->ITransformable::setPos( _DefaultPos.getDefaultValue() );
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sr->ITransformable::setRotQuat( _DefaultRotQuat.getDefaultValue() );
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sr->ITransformable::setScale( _DefaultScale.getDefaultValue() );
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sr->setSliceTime(_SliceTime);
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return sr;
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}
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//===========================================================
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float CSegRemanenceShape::getNumTriangles(float distance)
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{
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return (float) (_NumSlices * 2);
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}
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//===========================================================
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void CSegRemanenceShape::setBBox(const NLMISC::CAABBox &bbox)
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{
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_BBox = bbox;
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}
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//===========================================================
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void CSegRemanenceShape::setMaterial(const CMaterial &mat)
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{
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_Mat = mat;
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_MatTouched = true;
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}
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//===========================================================
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void CSegRemanenceShape::setTextureShifting(bool on /*=true*/)
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{
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_TextureShifting = on;
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_MatTouched = true;
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}
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//===========================================================
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void CSegRemanenceShape::setRollupRatio(float ratio)
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{
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nlassert(ratio > 0);
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_RollUpRatio = ratio;
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}
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//===========================================================
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void CSegRemanenceShape::setupMaterial()
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{
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if (!_MatTouched) return;
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_Mat.enableUserTexMat(0);
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if (_Mat.getTexture(0))
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{
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_Mat.getTexture(0)->setWrapS(ITexture::Clamp);
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_Mat.getTexture(0)->setWrapT(ITexture::Clamp);
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}
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_Mat.setDoubleSided(true);
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_Mat.setLighting(false); // lighting not supported (the vb has no normals anyway..)
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_MatTouched = false;
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}
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//===========================================================
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void CSegRemanenceShape::setAnimatedMaterial(const std::string &name)
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{
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nlassert(!name.empty());
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nlassert(_AnimatedMat == NULL);
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_AnimatedMat = new CMaterialBase;
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_AnimatedMat->Name = name;
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}
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//===========================================================
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CSegRemanenceShape::CSegRemanenceShape(const CSegRemanenceShape &other) : IShape(other), _AnimatedMat(NULL)
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{
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copyFromOther(other);
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}
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//===========================================================
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CSegRemanenceShape &CSegRemanenceShape::operator = (const CSegRemanenceShape &other)
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{
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if (&other != this)
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{
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copyFromOther(other);
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(IShape &) *this = (IShape &) other; // copy base part
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}
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return *this;
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}
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//===========================================================
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CSegRemanenceShape::~CSegRemanenceShape()
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{
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delete _AnimatedMat;
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}
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//===========================================================
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void CSegRemanenceShape::copyFromOther(const CSegRemanenceShape &other)
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{
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if (&other == this) return;
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CMaterialBase *otherAnimatedMat = other._AnimatedMat != NULL ? new CMaterialBase(*other._AnimatedMat)
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: NULL;
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delete _AnimatedMat;
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_AnimatedMat = otherAnimatedMat;
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_GeomTouched = other._GeomTouched;
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_MatTouched = other._MatTouched;
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_TextureShifting = other._TextureShifting;
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_NumSlices = other._NumSlices;
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_SliceTime = other._SliceTime;
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_Corners = other._Corners;
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_Mat = other._Mat;
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_BBox = other._BBox;
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_RollUpRatio = other._RollUpRatio;
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}
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//===========================================================
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bool CSegRemanenceShape::clip(const std::vector<CPlane> &pyramid, const CMatrix &worldMatrix)
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{
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// Speed Clip: clip just the sphere.
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NLMISC::CBSphere localSphere(_BBox.getCenter(), _BBox.getRadius());
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NLMISC::CBSphere worldSphere;
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// transform the sphere in WorldMatrix (with nearly good scale info).
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localSphere.applyTransform(worldMatrix, worldSphere);
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// if out of only plane, entirely out.
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for(sint i=0;i<(sint)pyramid.size();i++)
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{
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// We are sure that pyramid has normalized plane normals.
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// if SpherMax OUT return false.
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float d= pyramid[i]*worldSphere.Center;
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if(d>worldSphere.Radius)
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return false;
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}
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return true;
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}
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}
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