/*========================================================================= * * Copyright NumFOCUS * * 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. * *=========================================================================*/ #include "itkFEMSolver.h" #include "itkFEMObject.h" #include "itkFEMObjectSpatialObject.h" #include "itkGroupSpatialObject.h" #include "itkSpatialObject.h" #include "itkFEMSpatialObjectReader.h" #include "itkFEMSpatialObjectWriter.h" int itkFEMSolverTest2D(int argc, char * argv[]) { // Need to register default FEM object types, // and setup SpatialReader to recognize FEM types // which is all currently done as a HACK in // the initialization of the itk::FEMFactoryBase::GetFactory() itk::FEMFactoryBase::GetFactory()->RegisterDefaultTypes(); using Solver2DType = itk::fem::Solver<2>; Solver2DType::Pointer solver = Solver2DType::New(); using SpatialObjectType = itk::SpatialObject<2>; using SpatialObjectPointer = SpatialObjectType::Pointer; SpatialObjectPointer Spatial = SpatialObjectType::New(); using FEMSpatialObjectReaderType = itk::FEMSpatialObjectReader<2>; using FEMSpatialObjectReaderPointer = FEMSpatialObjectReaderType::Pointer; FEMSpatialObjectReaderPointer SpatialReader = FEMSpatialObjectReaderType::New(); SpatialReader->SetFileName(argv[1]); SpatialReader->Update(); FEMSpatialObjectReaderType::ScenePointer myScene = SpatialReader->GetScene(); if (!myScene) { std::cout << "No Scene : [FAILED]" << std::endl; return EXIT_FAILURE; } std::cout << " [PASSED]" << std::endl; // Testing the FE mesh validity using FEMObjectSpatialObjectType = itk::FEMObjectSpatialObject<2>; using FEMObjectSpatialObjectPointer = FEMObjectSpatialObjectType::Pointer; FEMObjectSpatialObjectType::ChildrenListType * children = SpatialReader->GetGroup()->GetChildren(); if (strcmp((*(children->begin()))->GetTypeName(), "FEMObjectSpatialObject")) { std::cout << " [FAILED]" << std::endl; return EXIT_FAILURE; } FEMObjectSpatialObjectType::Pointer femSO = dynamic_cast((*(children->begin())).GetPointer()); if (!femSO) { std::cout << " dynamic_cast [FAILED]" << std::endl; return EXIT_FAILURE; } delete children; femSO->GetFEMObject()->Solve(); solver->SetInput(femSO->GetFEMObject()); solver->Update(); int numDOF = femSO->GetFEMObject()->GetNumberOfDegreesOfFreedom(); vnl_vector soln(numDOF); for (int i = 0; i < numDOF; i++) { soln[i] = femSO->GetFEMObject()->GetSolution(i); std::cout << "Solution[" << i << "]:" << soln[i] << std::endl; } using FEMSpatialObjectWriterType = itk::FEMSpatialObjectWriter<2>; using FEMSpatialObjectWriterPointer = FEMSpatialObjectWriterType::Pointer; FEMSpatialObjectWriterPointer SpatialWriter = FEMSpatialObjectWriterType::New(); SpatialWriter->SetInput(SpatialReader->GetScene()); SpatialWriter->SetFileName(argv[2]); SpatialWriter->Update(); std::cout << "Test PASSED!" << std::endl; return EXIT_SUCCESS; }