/*========================================================================= * * Copyright Insight Software Consortium * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0.txt * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * *=========================================================================*/ #ifndef itkQuadrilateralCell_h #define itkQuadrilateralCell_h #include "itkLineCell.h" #include "itkQuadrilateralCellTopology.h" namespace itk { /** \class QuadrilateralCell * \brief Represents a quadrilateral for a Mesh. * * \tparam TPixelType The type associated with a point, cell, or boundary * for use in storing its data. * * \tparam TCellTraits Type information of mesh containing cell. * * \ingroup MeshObjects * \ingroup ITKCommon */ template< typename TCellInterface > class ITK_TEMPLATE_EXPORT QuadrilateralCell:public TCellInterface, private QuadrilateralCellTopology { public: /** Standard class typedefs. */ itkCellCommonTypedefs(QuadrilateralCell); itkCellInheritedTypedefs(TCellInterface); /** Standard part of every itk Object. */ itkTypeMacro(QuadrilateralCell, CellInterface); /** The type of boundary for this triangle's vertices. */ typedef VertexCell< TCellInterface > VertexType; typedef typename VertexType::SelfAutoPointer VertexAutoPointer; /** The type of boundary for this triangle's edges. */ typedef LineCell< TCellInterface > EdgeType; typedef typename EdgeType::SelfAutoPointer EdgeAutoPointer; /** Quadrilateral-specific topology numbers. */ itkStaticConstMacro(NumberOfPoints, unsigned int, 4); itkStaticConstMacro(NumberOfVertices, unsigned int, 4); itkStaticConstMacro(NumberOfEdges, unsigned int, 4); itkStaticConstMacro(CellDimension, unsigned int, 2); itkStaticConstMacro(NumberOfDerivatives, unsigned int, 8); /** Implement the standard CellInterface. */ virtual CellGeometry GetType(void) const ITK_OVERRIDE { return Superclass::QUADRILATERAL_CELL; } virtual void MakeCopy(CellAutoPointer &) const ITK_OVERRIDE; virtual unsigned int GetDimension(void) const ITK_OVERRIDE; virtual unsigned int GetNumberOfPoints(void) const ITK_OVERRIDE; virtual CellFeatureCount GetNumberOfBoundaryFeatures(int dimension) const ITK_OVERRIDE; virtual bool GetBoundaryFeature(int dimension, CellFeatureIdentifier, CellAutoPointer &) ITK_OVERRIDE; virtual void SetPointIds(PointIdConstIterator first) ITK_OVERRIDE; virtual void SetPointIds(PointIdConstIterator first, PointIdConstIterator last) ITK_OVERRIDE; virtual void SetPointId(int localId, PointIdentifier) ITK_OVERRIDE; virtual PointIdIterator PointIdsBegin(void) ITK_OVERRIDE; virtual PointIdConstIterator PointIdsBegin(void) const ITK_OVERRIDE; virtual PointIdIterator PointIdsEnd(void) ITK_OVERRIDE; virtual PointIdConstIterator PointIdsEnd(void) const ITK_OVERRIDE; /** Quadrilateral-specific interface. */ virtual CellFeatureCount GetNumberOfVertices() const; virtual CellFeatureCount GetNumberOfEdges() const; virtual bool GetVertex(CellFeatureIdentifier, VertexAutoPointer &); virtual bool GetEdge(CellFeatureIdentifier, EdgeAutoPointer &); /** Evaluate the position inside the cell */ virtual bool EvaluatePosition(CoordRepType * position, PointsContainer * points, CoordRepType * closestPoint, CoordRepType[CellDimension], double * dist2, InterpolationWeightType * weight) ITK_OVERRIDE; /** Visitor interface */ itkCellVisitMacro(Superclass::QUADRILATERAL_CELL); /** Constructor and destructor */ QuadrilateralCell() { for ( PointIdentifier i = 0; i < itkGetStaticConstMacro(NumberOfPoints); i++ ) { m_PointIds[i] = NumericTraits< PointIdentifier >::max(); } } ~QuadrilateralCell() ITK_OVERRIDE {} protected: /** Store the number of points needed for a quadrilateral. */ PointIdentifier m_PointIds[NumberOfPoints]; void InterpolationDerivs(const CoordRepType pointCoords[CellDimension], CoordRepType derivs[NumberOfDerivatives]); void InterpolationFunctions(const CoordRepType pointCoords[CellDimension], InterpolationWeightType weights[NumberOfPoints]); void EvaluateLocation(int &itkNotUsed(subId), const PointsContainer * points, const CoordRepType pointCoords[PointDimension], CoordRepType x[PointDimension], InterpolationWeightType * weights); private: ITK_DISALLOW_COPY_AND_ASSIGN(QuadrilateralCell); }; } // end namespace itk #ifndef ITK_MANUAL_INSTANTIATION #include "itkQuadrilateralCell.hxx" #endif #endif