// SPDX-FileCopyrightText: Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen // SPDX-License-Identifier: BSD-3-Clause #include "vtkDGQuad.h" #include "vtkCellAttribute.h" #include "vtkCellGrid.h" #include "vtkDataSetAttributes.h" #include "vtkObjectFactory.h" #include "vtkStringToken.h" #include "vtkTypeFloat32Array.h" #include "vtkTypeInt32Array.h" VTK_ABI_NAMESPACE_BEGIN using namespace vtk::literals; vtkStandardNewMacro(vtkDGQuad); // TODO: Use IMPLEMENTABLE/IMPLEMENTS and vtkObjectFactory or equivalent. static bool registerType = vtkCellMetadata::RegisterType(); const std::array, 4> vtkDGQuad::Parameters{ { { -1., -1., 0. }, // node 0 { +1., -1., 0. }, // node 1 { +1., +1., 0. }, // node 2 { -1., +1., 0. } // node 3 } }; const std::array, 9> vtkDGQuad::Sides{ { { 0, 1, 2, 3 }, // quadrilateral itself { 0, 1 }, // edge 0 { 1, 2 }, // edge 1 { 3, 2 }, // edge 2 { 0, 3 }, // edge 3 { 0 }, // vertex 0 { 1 }, // vertex 1 { 2 }, // vertex 2 { 3 } // vertex 3 } }; /// SidesOfSides is generated from Sides by TestCellGridSideInfo. const std::array, 9> vtkDGQuad::SidesOfSides{ { { 0, 1, 2, 3 }, { 4, 5 }, { 5, 6 }, { 7, 6 }, { 4, 7 }, {}, {}, {}, {}, } }; const std::array vtkDGQuad::SideOffsets{ { 0, 1, 5, 9 } }; const std::array vtkDGQuad::SideShapes{ { Shape::Quadrilateral, Shape::Edge, Shape::Vertex, Shape::None } }; vtkDGQuad::vtkDGQuad() { this->CellSpec.SourceShape = this->GetShape(); } vtkDGQuad::~vtkDGQuad() = default; void vtkDGQuad::PrintSelf(ostream& os, vtkIndent indent) { this->Superclass::PrintSelf(os, indent); } bool vtkDGQuad::IsInside(const vtkVector3d& rst, double tolerance) { tolerance = std::abs(tolerance); double pb = 1 + tolerance; double nb = -1 - tolerance; return rst[0] >= nb && rst[0] <= pb && rst[1] >= nb && rst[1] <= pb && std::abs(rst[2]) < tolerance; } const std::array& vtkDGQuad::GetCornerParameter(int corner) const { if (corner < 0 || corner >= 4) { static std::array dummy{ 0., 0., 0. }; // Maybe NaN would be better? return dummy; } return this->Parameters[corner]; } int vtkDGQuad::GetNumberOfSideTypes() const { return static_cast(vtkDGQuad::SideOffsets.size() - 2); } std::pair vtkDGQuad::GetSideRangeForType(int sideType) const { if (sideType < -1) { return std::make_pair(SideOffsets[1] - 1, SideOffsets[vtkDGQuad::Dimension + 1] - 1); } if (sideType > vtkDGQuad::Dimension) { return std::make_pair(-1, -1); } return std::make_pair(SideOffsets[sideType + 1] - 1, SideOffsets[sideType + 2] - 1); } int vtkDGQuad::GetNumberOfSidesOfDimension(int dimension) const { if (dimension < -1 || dimension >= this->Dimension) { return 0; } else if (dimension == -1) { return 1; } return this->SideOffsets[Dimension - dimension + 1] - this->SideOffsets[Dimension - dimension]; } const std::vector& vtkDGQuad::GetSideConnectivity(int side) const { if (side < -1 || side >= 8) { static std::vector dummy; return dummy; } return this->Sides[side + 1]; } const std::vector& vtkDGQuad::GetSidesOfSide(int side) const { if (side < -1 || side >= 8) { static std::vector dummy; return dummy; } return this->SidesOfSides[side + 1]; } vtkTypeFloat32Array* vtkDGQuad::GetReferencePoints() const { static vtkNew refPts; if (refPts->GetNumberOfTuples() == 0) { this->FillReferencePoints(refPts); refPts->SetName("QuadReferencePoints"); } return refPts; } vtkTypeInt32Array* vtkDGQuad::GetSideConnectivity() const { static vtkNew sideConn; if (sideConn->GetNumberOfTuples() == 0) { this->FillSideConnectivity(sideConn); sideConn->SetName("QuadSideConn"); } return sideConn; } vtkDGCell::Shape vtkDGQuad::GetSideShape(int side) const { if (side < -1) { return None; } for (std::size_t ii = 0; ii < SideOffsets.size() - 1; ++ii) { if (side + 1 < vtkDGQuad::SideOffsets[ii + 1]) { return vtkDGQuad::SideShapes[ii]; } } return None; } vtkTypeInt32Array* vtkDGQuad::GetSideOffsetsAndShapes() const { static vtkNew sideOffsetsAndShapes; if (sideOffsetsAndShapes->GetNumberOfTuples() == 0) { this->FillSideOffsetsAndShapes(sideOffsetsAndShapes); sideOffsetsAndShapes->SetName("QuadOffsetsAndShapes"); } return sideOffsetsAndShapes; } VTK_ABI_NAMESPACE_END