openfoam/applications/utilities/postProcessing/dataConversion/foamToEnsight/writeDimFields.H
Mark Olesen a97628121c ENH: overhaul ensight handling (#1579)
- includes restructuring and simplification of low-level ensight part
  handling and refactor of backends to improve code reuse.

foamToEnsight
-------------

  * new cellZone support.
    This was previously only possible via a separate foamToEnsightParts
    utility that was not parallelized.

  * support for point fields.

  * `-nearCellValue` option (as per foamToVTK)

  * data indexing now uses values from the time index.
    This is consistent with the ensightWrite function object and
    can help with restarts.

  * existing ensight directories are removed, unless the -no-overwrite
    option is supplied

foamToEnsightParts
------------------
  * now redundant and removed.

ensightOutputSurface (new class)
--------------------------------
  * a lightweight wrapper for point/face references that is tailored
    for the ensightSurfaceWriter. It uses compact face/point information
    and is serial only, since this is the format requirements from the
    surfaceWriter class.

ensightMesh (revised class)
---------------------------
  * now only holds a polyMesh reference, which removes its dependency
    on finiteVolume and allows it to be relocated under fileFormats
    instead of conversion.

Removed classes: ensightParts, ensighPartFaces, ensightPartCells

- these were used by foamToEnsightParts, but not needed anymore.
2020-02-18 11:09:43 +00:00

146 lines
3.7 KiB
C++

/*---------------------------------------------------------------------------*\
========= |
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\\ / O peration |
\\ / A nd | www.openfoam.com
\\/ M anipulation |
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Copyright (C) 2018-2020 OpenCFD Ltd.
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License
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InNamespace
Foam
Description
Read dimensioned fields from disk and write with ensightMesh
SourceFiles
\*---------------------------------------------------------------------------*/
#ifndef ensight_writeDimFields_H
#define ensight_writeDimFields_H
#include "writeVolFields.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
template<class Type>
bool writeDimField
(
ensightCase& ensCase,
const ensightMesh& ensMesh,
const tmp<DimensionedField<Type, volMesh>>& tdf
)
{
if (!tdf.valid())
{
return false;
}
auto tfield = makeZeroGradientField<Type>(tdf);
// Now a volField with zero-gradient boundaries
return writeVolField<Type>
(
ensCase,
ensMesh,
tfield,
false // No nearCellValue, we already have zero-gradient
);
}
template<class Type>
label writeDimFields
(
ensightCase& ensCase,
const ensightMesh& ensMesh,
const IOobjectList& objects
)
{
typedef typename
GeometricField
<
Type, fvPatchField, volMesh
>::Internal DimField;
const fvMesh& mesh = dynamicCast<const fvMesh>(ensMesh.mesh());
label count = 0;
for (const word& fieldName : objects.sortedNames<DimField>())
{
if
(
writeDimField<Type>
(
ensCase,
ensMesh,
getField<DimField>(objects.findObject(fieldName), mesh)
)
)
{
Info<< ' ' << fieldName;
++count;
}
}
return count;
}
label writeAllDimFields
(
ensightCase& ensCase,
const ensightMesh& ensMesh,
const IOobjectList& objects
)
{
#undef ensight_WRITE_FIELD
#define ensight_WRITE_FIELD(PrimitiveType) \
writeDimFields<PrimitiveType> \
( \
ensCase, \
ensMesh, \
objects \
)
label count = 0;
count += ensight_WRITE_FIELD(scalar);
count += ensight_WRITE_FIELD(vector);
count += ensight_WRITE_FIELD(sphericalTensor);
count += ensight_WRITE_FIELD(symmTensor);
count += ensight_WRITE_FIELD(tensor);
#undef ensight_WRITE_FIELD
return count;
}
} // End namespace Foam
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#endif
// ************************************************************************* //