openfoam/applications/utilities/preProcessing/mapFieldsPar/MapVolFields.H
Mark Olesen db16d80840 ENH: use objectRegistry/IOobjectList sorted instead of lookupClass
- in most cases a parallel-consistent order is required.
  Even when the order is not important, it will generally require
  fewer allocations to create a UPtrList of entries instead of a
  HashTable or even a wordList.
2023-07-31 20:11:32 +02:00

199 lines
5.5 KiB
C++

/*---------------------------------------------------------------------------*\
========= |
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Copyright (C) 2018-2023 OpenCFD Ltd.
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#ifndef MapConsistentVolFields_H
#define MapConsistentVolFields_H
#include "GeometricField.H"
#include "meshToMesh.H"
#include "IOobjectList.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
template<class Type>
void evaluateConstraintTypes(GeometricField<Type, fvPatchField, volMesh>& fld)
{
auto& fldBf = fld.boundaryFieldRef();
const UPstream::commsTypes commsType = UPstream::defaultCommsType;
const label startOfRequests = UPstream::nRequests();
if
(
commsType == UPstream::commsTypes::blocking
|| commsType == UPstream::commsTypes::nonBlocking
)
{
forAll(fldBf, patchi)
{
fvPatchField<Type>& tgtField = fldBf[patchi];
if
(
tgtField.type() == tgtField.patch().patch().type()
&& polyPatch::constraintType(tgtField.patch().patch().type())
)
{
tgtField.initEvaluate(commsType);
}
}
// Wait for outstanding requests
if (commsType == UPstream::commsTypes::nonBlocking)
{
UPstream::waitRequests(startOfRequests);
}
forAll(fldBf, patchi)
{
fvPatchField<Type>& tgtField = fldBf[patchi];
if
(
tgtField.type() == tgtField.patch().patch().type()
&& polyPatch::constraintType(tgtField.patch().patch().type())
)
{
tgtField.evaluate(commsType);
}
}
}
else if (commsType == UPstream::commsTypes::scheduled)
{
const lduSchedule& patchSchedule =
fld.mesh().globalData().patchSchedule();
for (const auto& schedEval : patchSchedule)
{
const label patchi = schedEval.patch;
fvPatchField<Type>& tgtField = fldBf[patchi];
if
(
tgtField.type() == tgtField.patch().patch().type()
&& polyPatch::constraintType(tgtField.patch().patch().type())
)
{
if (schedEval.init)
{
tgtField.initEvaluate(commsType);
}
else
{
tgtField.evaluate(commsType);
}
}
}
}
}
template<class Type, class CombineOp>
void MapVolFields
(
const IOobjectList& objects,
const wordRes& selectedFields,
const meshToMesh& interp,
const CombineOp& cop
)
{
typedef GeometricField<Type, fvPatchField, volMesh> fieldType;
const fvMesh& meshSource = static_cast<const fvMesh&>(interp.srcRegion());
const fvMesh& meshTarget = static_cast<const fvMesh&>(interp.tgtRegion());
// Available fields, sorted order
for
(
const IOobject& io :
(
selectedFields.empty()
? objects.csorted<fieldType>()
: objects.csorted<fieldType>(selectedFields)
)
)
{
const fieldType fieldSource(io, meshSource, false);
IOobject targetIO
(
io.name(),
meshTarget.time().timeName(),
meshTarget,
IOobject::MUST_READ
);
if (targetIO.typeHeaderOk<fieldType>(true))
{
Info<< " interpolating onto existing field "
<< targetIO.name() << endl;
fieldType fieldTarget(targetIO, meshTarget, false);
interp.mapSrcToTgt(fieldSource, cop, fieldTarget);
evaluateConstraintTypes(fieldTarget);
fieldTarget.write();
}
else
{
Info<< " creating new field "
<< targetIO.name() << endl;
targetIO.readOpt(IOobject::NO_READ);
tmp<fieldType> tfieldTarget
(
interp.mapSrcToTgt(fieldSource, cop)
);
fieldType fieldTarget(targetIO, tfieldTarget);
evaluateConstraintTypes(fieldTarget);
fieldTarget.write();
}
}
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
} // End namespace Foam
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#endif
// ************************************************************************* //