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371 lines
9.1 KiB
C
371 lines
9.1 KiB
C
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration |
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\\ / A nd | Copyright (C) 1991-2008 OpenCFD Ltd.
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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OpenFOAM is free software; you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by the
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Free Software Foundation; either version 2 of the License, or (at your
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option) any later version.
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OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with OpenFOAM; if not, write to the Free Software Foundation,
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Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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\*---------------------------------------------------------------------------*/
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#include "sampledSets.H"
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#include "dictionary.H"
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#include "Time.H"
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#include "volFields.H"
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#include "ListListOps.H"
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#include "SortableList.H"
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#include "volPointInterpolation.H"
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// * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
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namespace Foam
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{
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defineTypeNameAndDebug(sampledSets, 0);
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}
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bool Foam::sampledSets::verbose_ = false;
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// * * * * * * * * * * * * * Private Member Functions * * * * * * * * * * * //
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bool Foam::sampledSets::checkFieldTypes()
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{
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wordList fieldTypes(fieldNames_.size());
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// check files for a particular time
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if (loadFromFiles_)
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{
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forAll(fieldNames_, fieldi)
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{
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IOobject io
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(
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fieldNames_[fieldi],
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mesh_.time().timeName(),
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mesh_,
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IOobject::MUST_READ,
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IOobject::NO_WRITE,
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false
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);
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if (io.headerOk())
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{
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fieldTypes[fieldi] = io.headerClassName();
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}
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else
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{
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fieldTypes[fieldi] = "(notFound)";
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}
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}
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}
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else
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{
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// check objectRegistry
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forAll(fieldNames_, fieldi)
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{
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objectRegistry::const_iterator iter =
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mesh_.find(fieldNames_[fieldi]);
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if (iter != mesh_.objectRegistry::end())
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{
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fieldTypes[fieldi] = iter()->type();
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}
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else
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{
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fieldTypes[fieldi] = "(notFound)";
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}
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}
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}
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label nFields = 0;
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// classify fieldTypes
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nFields += grep(scalarFields_, fieldTypes);
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nFields += grep(vectorFields_, fieldTypes);
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nFields += grep(sphericalTensorFields_, fieldTypes);
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nFields += grep(symmTensorFields_, fieldTypes);
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nFields += grep(tensorFields_, fieldTypes);
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if (Pstream::master())
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{
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if (debug)
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{
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Pout<< "timeName = " << mesh_.time().timeName() << nl
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<< "scalarFields " << scalarFields_ << nl
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<< "vectorFields " << vectorFields_ << nl
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<< "sphTensorFields " << sphericalTensorFields_ << nl
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<< "symTensorFields " << symmTensorFields_ <<nl
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<< "tensorFields " << tensorFields_ <<nl;
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}
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if (nFields > 0)
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{
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if (debug)
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{
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Pout<< "Creating directory "
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<< outputPath_/mesh_.time().timeName()
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<< nl << endl;
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}
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mkDir(outputPath_/mesh_.time().timeName());
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}
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}
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return nFields > 0;
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}
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void Foam::sampledSets::combineSampledSets
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(
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PtrList<coordSet>& masterSampledSets,
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labelListList& indexSets
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)
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{
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// Combine sampleSets from processors. Sort by curveDist. Return
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// ordering in indexSets.
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// Note: only master results are valid
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masterSampledSets_.clear();
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masterSampledSets_.setSize(size());
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indexSets_.setSize(size());
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const PtrList<sampledSet>& sampledSets = *this;
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forAll(sampledSets, seti)
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{
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const sampledSet& samplePts = sampledSets[seti];
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// Collect data from all processors
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List<List<point> > gatheredPts(Pstream::nProcs());
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gatheredPts[Pstream::myProcNo()] = samplePts;
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Pstream::gatherList(gatheredPts);
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List<labelList> gatheredSegments(Pstream::nProcs());
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gatheredSegments[Pstream::myProcNo()] = samplePts.segments();
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Pstream::gatherList(gatheredSegments);
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List<scalarList> gatheredDist(Pstream::nProcs());
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gatheredDist[Pstream::myProcNo()] = samplePts.curveDist();
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Pstream::gatherList(gatheredDist);
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// Combine processor lists into one big list.
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List<point> allPts
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(
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ListListOps::combine<List<point> >
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(
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gatheredPts, accessOp<List<point> >()
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)
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);
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labelList allSegments
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(
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ListListOps::combine<labelList>
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(
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gatheredSegments, accessOp<labelList>()
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)
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);
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scalarList allCurveDist
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(
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ListListOps::combine<scalarList>
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(
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gatheredDist, accessOp<scalarList>()
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)
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);
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// Sort curveDist and use to fill masterSamplePts
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SortableList<scalar> sortedDist(allCurveDist);
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indexSets[seti] = sortedDist.indices();
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// Get reference point (note: only master has all points)
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point refPt;
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if (allPts.size() > 0)
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{
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refPt = samplePts.getRefPoint(allPts);
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}
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else
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{
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refPt = vector::zero;
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}
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masterSampledSets.set
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(
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seti,
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new coordSet
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(
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samplePts.name(),
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samplePts.axis(),
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IndirectList<point>(allPts, indexSets[seti]),
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refPt
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)
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);
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}
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}
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// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
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Foam::sampledSets::sampledSets
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(
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const word& name,
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const objectRegistry& obr,
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const dictionary& dict,
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const bool loadFromFiles
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)
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:
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PtrList<sampledSet>(),
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name_(name),
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mesh_(refCast<const fvMesh>(obr)),
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loadFromFiles_(loadFromFiles),
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outputPath_(fileName::null),
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searchEngine_(mesh_, true),
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// pMeshPtr_(NULL),
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// pInterpPtr_(NULL),
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fieldNames_(),
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interpolationScheme_(word::null),
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writeFormat_(word::null)
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{
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if (Pstream::parRun())
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{
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outputPath_ = mesh_.time().path()/".."/name_;
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}
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else
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{
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outputPath_ = mesh_.time().path()/name_;
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}
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read(dict);
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}
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// * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * * //
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Foam::sampledSets::~sampledSets()
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{}
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// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
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void Foam::sampledSets::verbose(const bool verbosity)
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{
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verbose_ = verbosity;
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}
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void Foam::sampledSets::execute()
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{
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// Do nothing - only valid on write
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}
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void Foam::sampledSets::write()
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{
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if (size() && checkFieldTypes())
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{
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sampleAndWrite(scalarFields_);
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sampleAndWrite(vectorFields_);
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sampleAndWrite(sphericalTensorFields_);
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sampleAndWrite(symmTensorFields_);
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sampleAndWrite(tensorFields_);
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}
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}
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void Foam::sampledSets::read(const dictionary& dict)
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{
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dict_ = dict;
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fieldNames_ = wordList(dict_.lookup("fields"));
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interpolationScheme_ = "cell";
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dict_.readIfPresent("interpolationScheme", interpolationScheme_);
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writeFormat_ = "null";
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dict_.readIfPresent("setFormat", writeFormat_);
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scalarFields_.clear();
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vectorFields_.clear();
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sphericalTensorFields_.clear();
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symmTensorFields_.clear();
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tensorFields_.clear();
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PtrList<sampledSet> newList
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(
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dict_.lookup("sets"),
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sampledSet::iNew(mesh_, searchEngine_)
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);
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transfer(newList);
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combineSampledSets(masterSampledSets_, indexSets_);
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if (Pstream::master() && debug)
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{
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Pout<< "sample fields:" << fieldNames_ << nl
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<< "sample sets:" << nl << "(" << nl;
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forAll(*this, si)
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{
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Pout << " " << operator[](si) << endl;
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}
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Pout << ")" << endl;
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}
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}
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void Foam::sampledSets::correct()
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{
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// reset interpolation
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pointMesh::Delete(mesh_);
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volPointInterpolation::Delete(mesh_);
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searchEngine_.correct();
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PtrList<sampledSet> newList
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(
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dict_.lookup("sets"),
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sampledSet::iNew(mesh_, searchEngine_)
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);
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transfer(newList);
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combineSampledSets(masterSampledSets_, indexSets_);
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}
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void Foam::sampledSets::updateMesh(const mapPolyMesh&)
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{
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correct();
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}
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void Foam::sampledSets::movePoints(const pointField&)
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{
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correct();
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}
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void Foam::sampledSets::readUpdate(const polyMesh::readUpdateState state)
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{
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if (state != polyMesh::UNCHANGED)
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{
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correct();
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}
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}
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// ************************************************************************* //
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