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00026 #include "interpolate.H"
00027 #include <OpenFOAM/addToRunTimeSelectionTable.H>
00028
00029
00030
00031 namespace Foam
00032 {
00033 namespace calcTypes
00034 {
00035 defineTypeNameAndDebug(interpolate, 0);
00036 addToRunTimeSelectionTable(calcType, interpolate, dictionary);
00037 }
00038 }
00039
00040
00041
00042
00043 Foam::calcTypes::interpolate::interpolate()
00044 :
00045 calcType()
00046 {}
00047
00048
00049
00050
00051 Foam::calcTypes::interpolate::~interpolate()
00052 {}
00053
00054
00055
00056
00057 void Foam::calcTypes::interpolate::init()
00058 {
00059 Foam::argList::validArgs.append("interpolate");
00060 argList::validArgs.append("fieldName");
00061 }
00062
00063
00064 void Foam::calcTypes::interpolate::preCalc
00065 (
00066 const argList& args,
00067 const Time& runTime,
00068 const fvMesh& mesh
00069 )
00070 {}
00071
00072
00073 void Foam::calcTypes::interpolate::calc
00074 (
00075 const argList& args,
00076 const Time& runTime,
00077 const fvMesh& mesh
00078 )
00079 {
00080 const word& fieldName = args.additionalArgs()[1];
00081
00082 IOobject fieldHeader
00083 (
00084 fieldName,
00085 runTime.timeName(),
00086 mesh,
00087 IOobject::MUST_READ
00088 );
00089
00090
00091 if (fieldHeader.headerOk())
00092 {
00093 bool processed = false;
00094
00095 writeInterpolateField<scalar>(fieldHeader, mesh, processed);
00096 writeInterpolateField<vector>(fieldHeader, mesh, processed);
00097 writeInterpolateField<sphericalTensor>(fieldHeader, mesh, processed);
00098 writeInterpolateField<symmTensor>(fieldHeader, mesh, processed);
00099 writeInterpolateField<tensor>(fieldHeader, mesh, processed);
00100
00101 if (!processed)
00102 {
00103 FatalError
00104 << "Unable to process " << fieldName << nl
00105 << "No call to interpolate for fields of type "
00106 << fieldHeader.headerClassName() << nl << nl
00107 << exit(FatalError);
00108 }
00109 }
00110 else
00111 {
00112 Info<< " No " << fieldName << endl;
00113 }
00114 }
00115
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