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foam-extend4.1-coherent-io/applications/utilities/postProcessing/graphics/PVReaders/vtkPVFoam/vtkPVFoamFields.C

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/*---------------------------------------------------------------------------*\
========= |
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\\ / F ield | foam-extend: Open Source CFD
2016-06-20 15:00:40 +00:00
\\ / O peration | Version: 4.0
\\ / A nd | Web: http://www.foam-extend.org
\\/ M anipulation | For copyright notice see file Copyright
-------------------------------------------------------------------------------
License
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This file is part of foam-extend.
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foam-extend is free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by the
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Free Software Foundation, either version 3 of the License, or (at your
option) any later version.
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foam-extend is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
General Public License for more details.
You should have received a copy of the GNU General Public License
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along with foam-extend. If not, see <http://www.gnu.org/licenses/>.
Description
\*---------------------------------------------------------------------------*/
#include "vtkPVFoam.H"
// Foam includes
#include "IOobjectList.H"
#include "vtkPVFoamReader.h"
// VTK includes
#include "vtkDataArraySelection.h"
#include "vtkPolyData.h"
#include "vtkUnstructuredGrid.h"
// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
#include "vtkPVFoamVolFields.H"
#include "vtkPVFoamPointFields.H"
#include "vtkPVFoamLagrangianFields.H"
void Foam::vtkPVFoam::pruneObjectList
(
IOobjectList& objects,
const wordHashSet& selected
)
{
// hash all the selected field names
if (!selected.size())
{
objects.clear();
}
// only keep selected fields
forAllIter(IOobjectList, objects, iter)
{
if (!selected.found(iter()->name()))
{
objects.erase(iter);
}
}
}
void Foam::vtkPVFoam::convertVolFields
(
vtkMultiBlockDataSet* output
)
{
const fvMesh& mesh = *meshPtr_;
wordHashSet selectedFields = getSelected
(
reader_->GetVolFieldSelection()
);
if (!selectedFields.size())
{
return;
}
// Get objects (fields) for this time - only keep selected fields
// the region name is already in the mesh db
IOobjectList objects(mesh, dbPtr_().timeName());
pruneObjectList(objects, selectedFields);
if (!objects.size())
{
return;
}
if (debug)
{
Info<< "<beg> Foam::vtkPVFoam::convertVolFields" << nl
<< "converting Foam volume fields" << endl;
forAllConstIter(IOobjectList, objects, iter)
{
Info<< " " << iter()->name()
<< " == " << iter()->objectPath() << nl;
}
printMemory();
}
PtrList<PrimitivePatchInterpolation<primitivePatch> >
ppInterpList(mesh.boundaryMesh().size());
forAll(ppInterpList, i)
{
ppInterpList.set
(
i,
new PrimitivePatchInterpolation<primitivePatch>
(
mesh.boundaryMesh()[i]
)
);
}
convertVolFields<scalar>
(
mesh, ppInterpList, objects, output
);
convertVolFields<vector>
(
mesh, ppInterpList, objects, output
);
convertVolFields<sphericalTensor>
(
mesh, ppInterpList, objects, output
);
convertVolFields<symmTensor>
(
mesh, ppInterpList, objects, output
);
convertVolFields<tensor>
(
mesh, ppInterpList, objects, output
);
if (debug)
{
Info<< "<end> Foam::vtkPVFoam::convertVolFields" << endl;
printMemory();
}
}
void Foam::vtkPVFoam::convertPointFields
(
vtkMultiBlockDataSet* output
)
{
const fvMesh& mesh = *meshPtr_;
wordHashSet selectedFields = getSelected
(
reader_->GetPointFieldSelection()
);
if (!selectedFields.size())
{
return;
}
// Get objects (fields) for this time - only keep selected fields
// the region name is already in the mesh db
IOobjectList objects(mesh, dbPtr_().timeName());
pruneObjectList(objects, selectedFields);
if (!objects.size())
{
return;
}
if (debug)
{
Info<< "<beg> Foam::vtkPVFoam::convertPointFields" << nl
<< "converting Foam volume fields" << endl;
forAllConstIter(IOobjectList, objects, iter)
{
Info<< " " << iter()->name()
<< " == " << iter()->objectPath() << nl;
}
printMemory();
}
// Construct interpolation on the raw mesh
// HJ, bug fix? Point mesh handled by objectRegistry
// HJ, 11/Nov/2010
const pointMesh& pMesh = pointMesh::New(mesh);
// pointMesh pMesh(mesh);
convertPointFields<scalar>
(
mesh, pMesh, objects, output
);
convertPointFields<vector>
(
mesh, pMesh, objects, output
);
convertPointFields<sphericalTensor>
(
mesh, pMesh, objects, output
);
convertPointFields<symmTensor>
(
mesh, pMesh, objects, output
);
convertPointFields<tensor>
(
mesh, pMesh, objects, output
);
if (debug)
{
Info<< "<end> Foam::vtkPVFoam::convertPointFields" << endl;
printMemory();
}
}
void Foam::vtkPVFoam::convertLagrangianFields
(
vtkMultiBlockDataSet* output
)
{
partInfo& selector = partInfoLagrangian_;
const fvMesh& mesh = *meshPtr_;
wordHashSet selectedFields = getSelected
(
reader_->GetLagrangianFieldSelection()
);
if (!selectedFields.size())
{
return;
}
if (debug)
{
Info<< "<beg> Foam::vtkPVFoam::convertLagrangianFields" << endl;
printMemory();
}
for (int partId = selector.start(); partId < selector.end(); ++partId)
{
const word cloudName = getPartName(partId);
const label datasetNo = partDataset_[partId];
if (!partStatus_[partId] || datasetNo < 0)
{
continue;
}
// Get the Lagrangian fields for this time and this cloud
// but only keep selected fields
// the region name is already in the mesh db
IOobjectList objects
(
mesh,
dbPtr_().timeName(),
cloud::prefix/cloudName
);
pruneObjectList(objects, selectedFields);
if (!objects.size())
{
continue;
}
if (debug)
{
Info<< "converting Foam lagrangian fields" << nl;
forAllConstIter(IOobjectList, objects, iter)
{
Info<< " " << iter()->name()
<< " == " << iter()->objectPath() << nl;
}
}
convertLagrangianFields<label>
(
objects, output, datasetNo
);
convertLagrangianFields<scalar>
(
objects, output, datasetNo
);
convertLagrangianFields<vector>
(
objects, output, datasetNo
);
convertLagrangianFields<sphericalTensor>
(
objects, output, datasetNo
);
convertLagrangianFields<symmTensor>
(
objects, output, datasetNo
);
convertLagrangianFields<tensor>
(
objects, output, datasetNo
);
}
if (debug)
{
Info<< "<end> Foam::vtkPVFoam::convertLagrangianFields" << endl;
printMemory();
}
}
// ************************************************************************* //