/*========================================================================= Program: Visualization Toolkit Module: TestGPURayCastMIPToComposite.cxx Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen All rights reserved. See Copyright.txt or http://www.kitware.com/Copyright.htm for details. This software is distributed WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the above copyright notice for more information. =========================================================================*/ // This test covers vtkFixedPointVolumeRayCastMapper with a light where // diffuse and specular components are different. // This test volume renders a synthetic dataset with unsigned char values, // with the composite method. The diffuse light component is gray, the // light specular component is blue. #include "vtkSphere.h" #include "vtkSampleFunction.h" #include "vtkTestUtilities.h" #include "vtkColorTransferFunction.h" #include "vtkPiecewiseFunction.h" #include "vtkRenderer.h" #include "vtkRenderWindow.h" #include "vtkRenderWindowInteractor.h" #include "vtkVolumeProperty.h" #include "vtkCamera.h" #include "vtkRegressionTestImage.h" #include "vtkImageShiftScale.h" #include "vtkImageData.h" #include "vtkPointData.h" #include "vtkDataArray.h" #include "vtkLight.h" #include "vtkLightCollection.h" #include #include "vtkFixedPointVolumeRayCastMapper.h" int TestFixedPointRayCastLightComponents(int argc, char *argv[]) { cout << "CTEST_FULL_OUTPUT (Avoid ctest truncation of output)" << endl; // Create a spherical implicit function. vtkSphere *shape=vtkSphere::New(); shape->SetRadius(0.1); shape->SetCenter(0.0,0.0,0.0); vtkSampleFunction *source=vtkSampleFunction::New(); source->SetImplicitFunction(shape); shape->Delete(); source->SetOutputScalarTypeToDouble(); source->SetSampleDimensions(127,127,127); // intentional NPOT dimensions. source->SetModelBounds(-100.0,100.0,-100.0,100.0,-100.0,100.0); source->SetCapping(false); source->SetComputeNormals(false); source->SetScalarArrayName("values"); source->Update(); vtkDataArray *a=source->GetOutput()->GetPointData()->GetScalars("values"); double range[2]; a->GetRange(range); vtkImageShiftScale *t=vtkImageShiftScale::New(); t->SetInputConnection(source->GetOutputPort()); source->Delete(); t->SetShift(-range[0]); double magnitude=range[1]-range[0]; if(magnitude==0.0) { magnitude=1.0; } t->SetScale(255.0/magnitude); t->SetOutputScalarTypeToUnsignedChar(); t->Update(); vtkRenderWindow *renWin=vtkRenderWindow::New(); vtkRenderer *ren1=vtkRenderer::New(); ren1->SetBackground(0.1,0.4,0.2); renWin->AddRenderer(ren1); ren1->Delete(); renWin->SetSize(301,300); // intentional odd and NPOT width/height vtkRenderWindowInteractor *iren=vtkRenderWindowInteractor::New(); iren->SetRenderWindow(renWin); renWin->Delete(); vtkLightCollection *lights=ren1->GetLights(); assert("check: lights_empty" && lights->GetNumberOfItems()==0); vtkLight *light=vtkLight::New(); light->SetAmbientColor(0.0,0.0,0.0); light->SetDiffuseColor(0.5,0.5,0.5); light->SetSpecularColor(0.0,0.0,1.0); light->SetIntensity(1.0); // positional light is not supported by vtkFixedPointVolumeRayCastMapper light->SetLightTypeToHeadlight(); lights->AddItem(light); light->Delete(); vtkVolumeProperty *volumeProperty; vtkVolume *volume; vtkFixedPointVolumeRayCastMapper *volumeMapper=vtkFixedPointVolumeRayCastMapper::New(); volumeMapper->SetSampleDistance(1.0); volumeMapper->SetNumberOfThreads(1); volumeMapper->SetInputConnection( t->GetOutputPort()); volumeProperty=vtkVolumeProperty::New(); volumeMapper->SetBlendModeToComposite(); volumeProperty->ShadeOn(); volumeProperty->SetSpecularPower(128.0); volumeProperty->SetInterpolationType(VTK_LINEAR_INTERPOLATION); vtkPiecewiseFunction *compositeOpacity = vtkPiecewiseFunction::New(); compositeOpacity->AddPoint(0.0,1.0); // 1.0 compositeOpacity->AddPoint(80.0,1.0); // 1.0 compositeOpacity->AddPoint(80.1,0.0); // 0.0 compositeOpacity->AddPoint(255.0,0.0); // 0.0 volumeProperty->SetScalarOpacity(compositeOpacity); vtkColorTransferFunction *color=vtkColorTransferFunction::New(); color->AddRGBPoint(0.0 ,1.0,1.0,1.0); // blue color->AddRGBPoint(40.0 ,1.0,1.0,1.0); // red color->AddRGBPoint(255.0,1.0,1.0,1.0); // white volumeProperty->SetColor(color); color->Delete(); volume=vtkVolume::New(); volume->SetMapper(volumeMapper); volume->SetProperty(volumeProperty); ren1->AddViewProp(volume); int retVal; ren1->ResetCamera(); renWin->Render(); retVal = vtkTesting::Test(argc, argv, renWin, 75); if (retVal == vtkRegressionTester::DO_INTERACTOR) { iren->Start(); } volumeMapper->Delete(); volumeProperty->Delete(); volume->Delete(); iren->Delete(); t->Delete(); compositeOpacity->Delete(); return !((retVal == vtkTesting::PASSED) || (retVal == vtkTesting::DO_INTERACTOR)); }