264 lines
10 KiB
C++
264 lines
10 KiB
C++
#ifndef TEST_HALF_EDGE_STRUCTURE_H
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#define TEST_HALF_EDGE_STRUCTURE_H
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// Libraries
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#include "reactphysics3d.h"
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#include "Test.h"
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/// Reactphysics3D namespace
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namespace reactphysics3d {
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// Class TestHalfEdgeStructure
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/**
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* Unit test for the HalfEdgeStructure class.
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*/
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class TestHalfEdgeStructure : public Test {
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private :
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// ---------- Atributes ---------- //
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/// Memory allocator
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DefaultAllocator mAllocator;
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public :
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// ---------- Methods ---------- //
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/// Constructor
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TestHalfEdgeStructure(const std::string& name) : Test(name) {
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}
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/// Destructor
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virtual ~TestHalfEdgeStructure() {
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}
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/// Run the tests
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void run() {
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testCube();
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testTetrahedron();
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}
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void testCube() {
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// Create the half-edge structure for a cube
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rp3d::HalfEdgeStructure cubeStructure(mAllocator, 6, 8, 24);
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rp3d::Vector3 vertices[8] = {
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rp3d::Vector3(-0.5, -0.5, 0.5),
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rp3d::Vector3(0.5, -0.5, 0.5),
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rp3d::Vector3(0.5, 0.5, 0.5),
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rp3d::Vector3(-0.5, 0.5, 0.5),
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rp3d::Vector3(-0.5, -0.5, -0.5),
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rp3d::Vector3(0.5, -0.5, -0.5),
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rp3d::Vector3(0.5, 0.5, -0.5),
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rp3d::Vector3(-0.5, 0.5, -0.5)
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};
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// Vertices
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cubeStructure.addVertex(0);
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cubeStructure.addVertex(1);
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cubeStructure.addVertex(2);
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cubeStructure.addVertex(3);
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cubeStructure.addVertex(4);
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cubeStructure.addVertex(5);
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cubeStructure.addVertex(6);
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cubeStructure.addVertex(7);
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// Faces
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List<uint> face0(mAllocator, 4);
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face0.add(0); face0.add(1); face0.add(2); face0.add(3);
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List<uint> face1(mAllocator, 4);
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face1.add(1); face1.add(5); face1.add(6); face1.add(2);
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List<uint> face2(mAllocator, 4);
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face2.add(5); face2.add(4); face2.add(7); face2.add(6);
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List<uint> face3(mAllocator, 4);
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face3.add(4); face3.add(0); face3.add(3); face3.add(7);
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List<uint> face4(mAllocator, 4);
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face4.add(0); face4.add(4); face4.add(5); face4.add(1);
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List<uint> face5(mAllocator, 4);
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face5.add(2); face5.add(6); face5.add(7); face5.add(3);
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cubeStructure.addFace(face0);
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cubeStructure.addFace(face1);
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cubeStructure.addFace(face2);
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cubeStructure.addFace(face3);
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cubeStructure.addFace(face4);
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cubeStructure.addFace(face5);
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cubeStructure.init();
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// --- Test that the half-edge structure of the cube is valid --- //
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test(cubeStructure.getNbFaces() == 6);
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test(cubeStructure.getNbVertices() == 8);
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test(cubeStructure.getNbHalfEdges() == 24);
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// Test vertices
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test(vertices[cubeStructure.getVertex(0).vertexPointIndex].x == -0.5);
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test(vertices[cubeStructure.getVertex(0).vertexPointIndex].y == -0.5);
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test(vertices[cubeStructure.getVertex(0).vertexPointIndex].z == 0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(0).edgeIndex).vertexIndex == 0);
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test(vertices[cubeStructure.getVertex(1).vertexPointIndex].x == 0.5);
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test(vertices[cubeStructure.getVertex(1).vertexPointIndex].y == -0.5);
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test(vertices[cubeStructure.getVertex(1).vertexPointIndex].z == 0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(1).edgeIndex).vertexIndex == 1);
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test(vertices[cubeStructure.getVertex(2).vertexPointIndex].x == 0.5);
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test(vertices[cubeStructure.getVertex(2).vertexPointIndex].y == 0.5);
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test(vertices[cubeStructure.getVertex(2).vertexPointIndex].z == 0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(2).edgeIndex).vertexIndex == 2);
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test(vertices[cubeStructure.getVertex(3).vertexPointIndex].x == -0.5);
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test(vertices[cubeStructure.getVertex(3).vertexPointIndex].y == 0.5);
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test(vertices[cubeStructure.getVertex(3).vertexPointIndex].z == 0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(3).edgeIndex).vertexIndex == 3);
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test(vertices[cubeStructure.getVertex(4).vertexPointIndex].x == -0.5);
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test(vertices[cubeStructure.getVertex(4).vertexPointIndex].y == -0.5);
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test(vertices[cubeStructure.getVertex(4).vertexPointIndex].z == -0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(4).edgeIndex).vertexIndex == 4);
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test(vertices[cubeStructure.getVertex(5).vertexPointIndex].x == 0.5);
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test(vertices[cubeStructure.getVertex(5).vertexPointIndex].y == -0.5);
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test(vertices[cubeStructure.getVertex(5).vertexPointIndex].z == -0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(5).edgeIndex).vertexIndex == 5);
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test(vertices[cubeStructure.getVertex(6).vertexPointIndex].x == 0.5);
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test(vertices[cubeStructure.getVertex(6).vertexPointIndex].y == 0.5);
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test(vertices[cubeStructure.getVertex(6).vertexPointIndex].z == -0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(6).edgeIndex).vertexIndex == 6);
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test(vertices[cubeStructure.getVertex(7).vertexPointIndex].x == -0.5);
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test(vertices[cubeStructure.getVertex(7).vertexPointIndex].y == 0.5);
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test(vertices[cubeStructure.getVertex(7).vertexPointIndex].z == -0.5);
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test(cubeStructure.getHalfEdge(cubeStructure.getVertex(7).edgeIndex).vertexIndex == 7);
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// Test faces
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for (uint f=0; f<6; f++) {
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test(cubeStructure.getHalfEdge(cubeStructure.getFace(f).edgeIndex).faceIndex == f);
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}
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// Test edges
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for (uint f=0; f<6; f++) {
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uint edgeIndex = cubeStructure.getFace(f).edgeIndex;
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const uint firstEdgeIndex = edgeIndex;
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// For each half-edge of the face
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for (uint e=0; e<4; e++) {
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rp3d::HalfEdgeStructure::Edge edge = cubeStructure.getHalfEdge(edgeIndex);
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test(cubeStructure.getHalfEdge(edge.twinEdgeIndex).twinEdgeIndex == edgeIndex);
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test(edge.faceIndex == f);
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// Go to the next edge
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edgeIndex = edge.nextEdgeIndex;
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}
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test(firstEdgeIndex == edgeIndex);
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}
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}
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void testTetrahedron() {
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// Create the half-edge structure for a tetrahedron
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std::vector<std::vector<uint>> faces;
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rp3d::HalfEdgeStructure tetrahedron(mAllocator, 4, 4, 12);
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// Vertices
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rp3d::Vector3 vertices[4] = {
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rp3d::Vector3(1, -1, -1),
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rp3d::Vector3(-1, -1, -1),
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rp3d::Vector3(0, -1, 1),
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rp3d::Vector3(0, 1, 0)
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};
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tetrahedron.addVertex(0);
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tetrahedron.addVertex(1);
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tetrahedron.addVertex(2);
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tetrahedron.addVertex(3);
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// Faces
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List<uint> face0(mAllocator, 3);
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face0.add(0); face0.add(1); face0.add(2);
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List<uint> face1(mAllocator, 3);
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face1.add(0); face1.add(3); face1.add(1);
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List<uint> face2(mAllocator, 3);
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face2.add(1); face2.add(3); face2.add(2);
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List<uint> face3(mAllocator, 3);
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face3.add(0); face3.add(2); face3.add(3);
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tetrahedron.addFace(face0);
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tetrahedron.addFace(face1);
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tetrahedron.addFace(face2);
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tetrahedron.addFace(face3);
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tetrahedron.init();
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// --- Test that the half-edge structure of the tetrahedron is valid --- //
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test(tetrahedron.getNbFaces() == 4);
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test(tetrahedron.getNbVertices() == 4);
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test(tetrahedron.getNbHalfEdges() == 12);
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// Test vertices
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test(vertices[tetrahedron.getVertex(0).vertexPointIndex].x == 1);
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test(vertices[tetrahedron.getVertex(0).vertexPointIndex].y == -1);
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test(vertices[tetrahedron.getVertex(0).vertexPointIndex].z == -1);
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test(tetrahedron.getHalfEdge(tetrahedron.getVertex(0).edgeIndex).vertexIndex == 0);
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test(vertices[tetrahedron.getVertex(1).vertexPointIndex].x == -1);
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test(vertices[tetrahedron.getVertex(1).vertexPointIndex].y == -1);
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test(vertices[tetrahedron.getVertex(1).vertexPointIndex].z == -1);
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test(tetrahedron.getHalfEdge(tetrahedron.getVertex(1).edgeIndex).vertexIndex == 1);
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test(vertices[tetrahedron.getVertex(2).vertexPointIndex].x == 0);
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test(vertices[tetrahedron.getVertex(2).vertexPointIndex].y == -1);
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test(vertices[tetrahedron.getVertex(2).vertexPointIndex].z == 1);
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test(tetrahedron.getHalfEdge(tetrahedron.getVertex(2).edgeIndex).vertexIndex == 2);
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test(vertices[tetrahedron.getVertex(3).vertexPointIndex].x == 0);
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test(vertices[tetrahedron.getVertex(3).vertexPointIndex].y == 1);
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test(vertices[tetrahedron.getVertex(3).vertexPointIndex].z == 0);
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test(tetrahedron.getHalfEdge(tetrahedron.getVertex(3).edgeIndex).vertexIndex == 3);
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// Test faces
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for (uint f=0; f<4; f++) {
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test(tetrahedron.getHalfEdge(tetrahedron.getFace(f).edgeIndex).faceIndex == f);
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}
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// Test edges
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for (uint f=0; f<4; f++) {
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uint edgeIndex = tetrahedron.getFace(f).edgeIndex;
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const uint firstEdgeIndex = edgeIndex;
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// For each half-edge of the face
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for (uint e=0; e<3; e++) {
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rp3d::HalfEdgeStructure::Edge edge = tetrahedron.getHalfEdge(edgeIndex);
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test(tetrahedron.getHalfEdge(edge.twinEdgeIndex).twinEdgeIndex == edgeIndex);
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test(edge.faceIndex == f);
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// Go to the next edge
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edgeIndex = edge.nextEdgeIndex;
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}
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test(firstEdgeIndex == edgeIndex);
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}
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}
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};
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}
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#endif
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