Chaste Release::3.1
Hdf5ToMeshalyzerConverter.cpp
00001 /*
00002 
00003 Copyright (c) 2005-2012, University of Oxford.
00004 All rights reserved.
00005 
00006 University of Oxford means the Chancellor, Masters and Scholars of the
00007 University of Oxford, having an administrative office at Wellington
00008 Square, Oxford OX1 2JD, UK.
00009 
00010 This file is part of Chaste.
00011 
00012 Redistribution and use in source and binary forms, with or without
00013 modification, are permitted provided that the following conditions are met:
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00015    this list of conditions and the following disclaimer.
00016  * Redistributions in binary form must reproduce the above copyright notice,
00017    this list of conditions and the following disclaimer in the documentation
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00022 
00023 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
00024 AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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00026 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
00027 LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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00033 
00034 */
00035 
00036 #include "Hdf5ToMeshalyzerConverter.hpp"
00037 #include "MeshalyzerMeshWriter.hpp"
00038 #include "GenericMeshReader.hpp"
00039 #include "UblasCustomFunctions.hpp"
00040 #include "HeartConfig.hpp"
00041 #include "PetscTools.hpp"
00042 #include "Exception.hpp"
00043 #include "ReplicatableVector.hpp"
00044 #include "DistributedVector.hpp"
00045 #include "DistributedVectorFactory.hpp"
00046 #include "Version.hpp"
00047 
00048 template <unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00049 void Hdf5ToMeshalyzerConverter<ELEMENT_DIM,SPACE_DIM>::Write(std::string type)
00050 {
00051     out_stream p_file = out_stream(NULL);
00052     if (PetscTools::AmMaster())
00053     {
00054         p_file = this->mpOutputFileHandler->OpenOutputFile(this->mFileBaseName + "_" + type + ".dat");
00055 
00056         // Check how many digits are to be output in the solution (0 goes to default value of digits)
00057         unsigned num_digits = HeartConfig::Instance()->GetVisualizerOutputPrecision();
00058         if (num_digits != 0)
00059         {
00060            p_file->precision(num_digits);
00061         }
00062     }
00063 
00064     unsigned num_nodes = this->mpReader->GetNumberOfRows();
00065     unsigned num_timesteps = this->mpReader->GetUnlimitedDimensionValues().size();
00066 
00067     DistributedVectorFactory factory(num_nodes);
00068 
00069     Vec data = factory.CreateVec();
00070     ReplicatableVector repl_data(num_nodes);
00071     for (unsigned time_step=0; time_step<num_timesteps; time_step++)
00072     {
00073         this->mpReader->GetVariableOverNodes(data, type, time_step);
00074         repl_data.ReplicatePetscVector(data);
00075 
00076         assert(repl_data.GetSize() == num_nodes);
00077 
00078         if (PetscTools::AmMaster())
00079         {
00080             for (unsigned i=0; i<num_nodes; i++)
00081             {
00082                 *p_file << repl_data[i] << "\n";
00083             }
00084         }
00085     }
00086     PetscTools::Destroy(data);
00087     if (PetscTools::AmMaster())
00088     {
00089         std::string comment = "# " + ChasteBuildInfo::GetProvenanceString();
00090         *p_file << comment;
00091         p_file->close();
00092     }
00093 }
00094 
00095 template <unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00096 Hdf5ToMeshalyzerConverter<ELEMENT_DIM,SPACE_DIM>::Hdf5ToMeshalyzerConverter(std::string inputDirectory,
00097                                                                             std::string fileBaseName,
00098                                                                             AbstractTetrahedralMesh<ELEMENT_DIM,SPACE_DIM>* pMesh,
00099                                                                             bool usingOriginalNodeOrdering)
00100     : AbstractHdf5Converter<ELEMENT_DIM,SPACE_DIM>(inputDirectory, fileBaseName, pMesh, "output")
00101 {
00102     std::vector<std::string> variable_names = this->mpReader->GetVariableNames();
00103     for (unsigned i=0; i<variable_names.size(); i++)
00104     {
00105         Write(variable_names[i]);
00106     }
00107 
00108     // Write mesh in a suitable form for meshalyzer
00109     std::string output_directory = inputDirectory + "/" + this->mRelativeSubdirectory;
00110     MeshalyzerMeshWriter<ELEMENT_DIM,SPACE_DIM> mesh_writer(output_directory, fileBaseName+"_mesh", false);
00111 
00112     // Normal case is that the in-memory mesh is converted
00113     if (!usingOriginalNodeOrdering)
00114     {
00115         // The second argument tells the writer to not follow original element ordering for performance reasons.
00116         mesh_writer.WriteFilesUsingMesh(*(this->mpMesh), false);
00117     }
00118     else
00119     {
00120         // In this case we expect the mesh to have been read in from file
00122         // Note that the next line will throw if the mesh has not been read from file
00123         std::string original_file = this->mpMesh->GetMeshFileBaseName();
00124         std::auto_ptr<AbstractMeshReader<ELEMENT_DIM, SPACE_DIM> > p_original_mesh_reader
00125             = GenericMeshReader<ELEMENT_DIM, SPACE_DIM>(original_file);
00126         mesh_writer.WriteFilesUsingMeshReader(*p_original_mesh_reader);
00127     }
00128     PetscTools::Barrier("Hdf5ToMeshalyzerConverter");
00129 }
00130 
00132 // Explicit instantiation
00134 
00135 template class Hdf5ToMeshalyzerConverter<1,1>;
00136 template class Hdf5ToMeshalyzerConverter<1,2>;
00137 template class Hdf5ToMeshalyzerConverter<2,2>;
00138 template class Hdf5ToMeshalyzerConverter<1,3>;
00139 template class Hdf5ToMeshalyzerConverter<2,3>;
00140 template class Hdf5ToMeshalyzerConverter<3,3>;