Modifying surface extractor test to work with LargeVolume.
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@ -24,9 +24,12 @@ freely, subject to the following restrictions:
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#include "TestSurfaceExtractor.h"
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#include "PolyVoxCore/Density.h"
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#include "PolyVoxCore/FilePager.h"
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#include "PolyVoxCore/MinizBlockCompressor.h"
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#include "PolyVoxCore/MaterialDensityPair.h"
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#include "PolyVoxCore/RawVolume.h"
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#include "PolyVoxCore/SimpleVolume.h"
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#include "PolyVoxCore/LargeVolume.h"
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#include "PolyVoxCore/MarchingCubesSurfaceExtractor.h"
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#include <QtTest>
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@ -95,13 +98,16 @@ void writeMaterialValueToVoxel(int valueToWrite, MaterialDensityPair88& voxel)
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voxel.setMaterial(valueToWrite);
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}
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template <typename VoxelType>
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SimpleVolume<VoxelType>* createAndFillVolume(void)
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template <typename VolumeType>
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VolumeType* createAndFillVolume(void)
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{
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const int32_t uVolumeSideLength = 64;
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MinizBlockCompressor<VolumeType::VoxelType>* compressor = new MinizBlockCompressor<VolumeType::VoxelType>();
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FilePager<VolumeType::VoxelType>* pager = new FilePager<VolumeType::VoxelType>("./");
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//Create empty volume
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SimpleVolume<VoxelType>* volData = new SimpleVolume<VoxelType>(Region(Vector3DInt32(0, 0, 0), Vector3DInt32(uVolumeSideLength - 1, uVolumeSideLength - 1, uVolumeSideLength - 1)));
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VolumeType* volData = new VolumeType(Region(Vector3DInt32(0, 0, 0), Vector3DInt32(uVolumeSideLength - 1, uVolumeSideLength - 1, uVolumeSideLength - 1)), compressor, pager);
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// Fill
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for (int32_t z = 0; z < uVolumeSideLength; z++)
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@ -112,9 +118,9 @@ SimpleVolume<VoxelType>* createAndFillVolume(void)
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{
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// Create a density field which changes throughout the volume. It's
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// zero in the lower corner and increasing as the coordinates increase.
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VoxelType voxelValue;
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writeDensityValueToVoxel<VoxelType>(x + y + z, voxelValue);
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writeMaterialValueToVoxel<VoxelType>(z > uVolumeSideLength / 2 ? 42 : 79, voxelValue);
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VolumeType::VoxelType voxelValue;
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writeDensityValueToVoxel<VolumeType::VoxelType>(x + y + z, voxelValue);
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writeMaterialValueToVoxel<VolumeType::VoxelType>(z > uVolumeSideLength / 2 ? 42 : 79, voxelValue);
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volData->setVoxelAt(x, y, z, voxelValue);
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}
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}
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@ -135,8 +141,11 @@ float randomFloat(float a, float b)
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template <typename VolumeType>
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VolumeType* createAndFillVolumeWithNoise(int32_t iVolumeSideLength, float minValue, float maxValue)
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{
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MinizBlockCompressor<float>* compressor = new MinizBlockCompressor<float>();
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FilePager<float>* pager = new FilePager<float>("./");
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//Create empty volume
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VolumeType* volData = new VolumeType(Region(Vector3DInt32(0, 0, 0), Vector3DInt32(iVolumeSideLength - 1, iVolumeSideLength - 1, iVolumeSideLength - 1)));
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VolumeType* volData = new VolumeType(Region(Vector3DInt32(0, 0, 0), Vector3DInt32(iVolumeSideLength - 1, iVolumeSideLength - 1, iVolumeSideLength - 1)), compressor, pager);
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// Seed generator for consistency between runs.
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srand(12345);
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@ -167,7 +176,7 @@ void TestSurfaceExtractor::testBehaviour()
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// Of course, the use of a custom controller will also make a significant diference, but this probably does need investigating further in the future.
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// This basic test just uses the default controller and automatically generates a mesh of the appropriate type.
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auto uintVol = createAndFillVolume<uint8_t>();
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auto uintVol = createAndFillVolume< LargeVolume<uint8_t> >();
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auto uintMesh = extractMarchingCubesMesh(uintVol, uintVol->getEnclosingRegion());
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QCOMPARE(uintMesh.getNoOfVertices(), uint32_t(12096)); // Verifies size of mesh and that we have 32-bit indices
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QCOMPARE(uintMesh.getNoOfIndices(), uint32_t(35157)); // Verifies size of mesh
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@ -175,7 +184,7 @@ void TestSurfaceExtractor::testBehaviour()
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QCOMPARE(uintMesh.getVertex(100).data, uint8_t(1)); // Not really meaningful for a primative type
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// This test makes use of a custom controller
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auto floatVol = createAndFillVolume<float>();
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auto floatVol = createAndFillVolume< LargeVolume<float> >();
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CustomMarchingCubesController floatCustomController;
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auto floatMesh = extractMarchingCubesMesh(floatVol, floatVol->getEnclosingRegion(), floatCustomController);
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QCOMPARE(floatMesh.getNoOfVertices(), uint32_t(16113)); // Verifies size of mesh and that we have 32-bit indices
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@ -185,7 +194,7 @@ void TestSurfaceExtractor::testBehaviour()
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// This test makes use of a user provided mesh. It uses the default controller, but we have to explicitly provide this because C++ won't let us
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// use a default for the second-to-last parameter but noot use a default for the last parameter.
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auto intVol = createAndFillVolume<int8_t>();
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auto intVol = createAndFillVolume< LargeVolume<int8_t> >();
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Mesh< MarchingCubesVertex< int8_t >, uint16_t > intMesh;
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extractMarchingCubesMeshCustom(intVol, intVol->getEnclosingRegion(), &intMesh);
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QCOMPARE(intMesh.getNoOfVertices(), uint16_t(11718)); // Verifies size of mesh and that we have 16-bit indices
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@ -194,7 +203,7 @@ void TestSurfaceExtractor::testBehaviour()
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QCOMPARE(intMesh.getVertex(100).data, int8_t(1)); // Not really meaningful for a primative type
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// This test makes use of a user-provided mesh and also a custom controller.
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auto doubleVol = createAndFillVolume<double>();
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auto doubleVol = createAndFillVolume< LargeVolume<double> >();
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CustomMarchingCubesController doubleCustomController;
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Mesh< MarchingCubesVertex< double >, uint16_t > doubleMesh;
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extractMarchingCubesMeshCustom(doubleVol, doubleVol->getEnclosingRegion(), &doubleMesh, doubleCustomController);
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@ -204,7 +213,7 @@ void TestSurfaceExtractor::testBehaviour()
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QCOMPARE(doubleMesh.getVertex(100).data, double(1.0f)); // Not really meaningful for a primative type
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// This test ensures the extractor works on a non-primitive voxel type.
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auto materialVol = createAndFillVolume<MaterialDensityPair88>();
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auto materialVol = createAndFillVolume< LargeVolume<MaterialDensityPair88> >();
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auto materialMesh = extractMarchingCubesMesh(materialVol, materialVol->getEnclosingRegion());
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QCOMPARE(materialMesh.getNoOfVertices(), uint32_t(12096)); // Verifies size of mesh and that we have 32-bit indices
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QCOMPARE(materialMesh.getNoOfIndices(), uint32_t(35157)); // Verifies size of mesh
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@ -214,7 +223,7 @@ void TestSurfaceExtractor::testBehaviour()
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void TestSurfaceExtractor::testEmptyVolumePerformance()
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{
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auto emptyVol = createAndFillVolumeWithNoise< SimpleVolume<float> >(128, -2.0f, -1.0f);
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auto emptyVol = createAndFillVolumeWithNoise< LargeVolume<float> >(128, -2.0f, -1.0f);
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Mesh< MarchingCubesVertex< float >, uint16_t > emptyMesh;
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QBENCHMARK{ extractMarchingCubesMeshCustom(emptyVol, Region(32, 32, 32, 63, 63, 63), &emptyMesh); }
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QCOMPARE(emptyMesh.getNoOfVertices(), uint16_t(0));
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@ -222,7 +231,7 @@ void TestSurfaceExtractor::testEmptyVolumePerformance()
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void TestSurfaceExtractor::testNoiseVolumePerformance()
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{
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auto noiseVol = createAndFillVolumeWithNoise< SimpleVolume<float> >(128, -1.0f, 1.0f);
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auto noiseVol = createAndFillVolumeWithNoise< LargeVolume<float> >(128, -1.0f, 1.0f);
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Mesh< MarchingCubesVertex< float >, uint16_t > noiseMesh;
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QBENCHMARK{ extractMarchingCubesMeshCustom(noiseVol, Region(32, 32, 32, 63, 63, 63), &noiseMesh); }
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QCOMPARE(noiseMesh.getNoOfVertices(), uint16_t(48967));
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