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There is a need to specify const or non-const access to a non-const object which is not currently possible with the "boundaryField()" access function the const-ness of the return of which is defined by the const-ness of the object for which it is called. For consistency with the latest "tmp" storage class in which non-const access is obtained with the "ref()" function it is proposed to replace the non-const form of "boundaryField()" with "boundaryFieldRef()". Thanks to Mattijs Janssens for starting the process of migration to "boundaryFieldRef()" and providing a patch for the OpenFOAM and finiteVolume libraries.
986 lines
47 KiB
C
986 lines
47 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) 2011-2016 OpenFOAM Foundation
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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
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the Free Software Foundation, either version 3 of the License, or
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(at your 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, see <http://www.gnu.org/licenses/>.
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\*---------------------------------------------------------------------------*/
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#include "GeometricFieldReuseFunctions.H"
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#define TEMPLATE \
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template<class Type, template<class> class PatchField, class GeoMesh>
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#include "GeometricFieldFunctionsM.C"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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namespace Foam
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{
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// * * * * * * * * * * * * * * * Global functions * * * * * * * * * * * * * //
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template<class Type, template<class> class PatchField, class GeoMesh>
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void component
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(
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GeometricField
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<
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typename GeometricField<Type, PatchField, GeoMesh>::cmptType,
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PatchField,
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GeoMesh
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>& gcf,
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const GeometricField<Type, PatchField, GeoMesh>& gf,
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const direction d
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)
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{
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component(gcf.internalField(), gf.internalField(), d);
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component(gcf.boundaryFieldRef(), gf.boundaryField(), d);
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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void T
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(
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GeometricField<Type, PatchField, GeoMesh>& gf,
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const GeometricField<Type, PatchField, GeoMesh>& gf1
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)
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{
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T(gf.internalField(), gf1.internalField());
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T(gf.boundaryFieldRef(), gf1.boundaryField());
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}
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template
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<
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class Type,
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template<class> class PatchField,
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class GeoMesh,
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direction r
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>
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void pow
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(
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GeometricField<typename powProduct<Type, r>::type, PatchField, GeoMesh>& gf,
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const GeometricField<Type, PatchField, GeoMesh>& gf1
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)
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{
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pow(gf.internalField(), gf1.internalField(), r);
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pow(gf.boundaryFieldRef(), gf1.boundaryField(), r);
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}
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template
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<
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class Type,
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template<class> class PatchField,
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class GeoMesh,
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direction r
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>
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tmp<GeometricField<typename powProduct<Type, r>::type, PatchField, GeoMesh>>
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pow
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(
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const GeometricField<Type, PatchField, GeoMesh>& gf,
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typename powProduct<Type, r>::type
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)
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{
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typedef typename powProduct<Type, r>::type powProductType;
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tmp<GeometricField<powProductType, PatchField, GeoMesh>> tPow
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(
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new GeometricField<powProductType, PatchField, GeoMesh>
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(
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IOobject
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(
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"pow(" + gf.name() + ',' + name(r) + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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pow(gf.dimensions(), r)
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)
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);
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pow<Type, r, PatchField, GeoMesh>(tPow.ref(), gf);
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return tPow;
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}
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template
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<
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class Type,
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template<class> class PatchField,
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class GeoMesh,
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direction r
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>
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tmp<GeometricField<typename powProduct<Type, r>::type, PatchField, GeoMesh>>
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pow
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(
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const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf,
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typename powProduct<Type, r>::type
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)
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{
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typedef typename powProduct<Type, r>::type powProductType;
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const GeometricField<Type, PatchField, GeoMesh>& gf = tgf();
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tmp<GeometricField<powProductType, PatchField, GeoMesh>> tPow
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(
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new GeometricField<powProductType, PatchField, GeoMesh>
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(
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IOobject
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(
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"pow(" + gf.name() + ',' + name(r) + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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pow(gf.dimensions(), r)
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)
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);
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pow<Type, r, PatchField, GeoMesh>(tPow.ref(), gf);
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tgf.clear();
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return tPow;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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void sqr
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(
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GeometricField
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<typename outerProduct<Type, Type>::type, PatchField, GeoMesh>& gf,
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const GeometricField<Type, PatchField, GeoMesh>& gf1
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)
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{
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sqr(gf.internalField(), gf1.internalField());
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sqr(gf.boundaryFieldRef(), gf1.boundaryField());
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp
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<
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GeometricField
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<
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typename outerProduct<Type, Type>::type,
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PatchField,
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GeoMesh
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>
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>
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sqr(const GeometricField<Type, PatchField, GeoMesh>& gf)
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{
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typedef typename outerProduct<Type, Type>::type outerProductType;
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tmp<GeometricField<outerProductType, PatchField, GeoMesh>> tSqr
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(
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new GeometricField<outerProductType, PatchField, GeoMesh>
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(
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IOobject
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(
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"sqr(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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sqr(gf.dimensions())
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)
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);
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sqr(tSqr.ref(), gf);
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return tSqr;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp
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<
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GeometricField
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<
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typename outerProduct<Type, Type>::type,
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PatchField,
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GeoMesh
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>
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>
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sqr(const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf)
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{
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typedef typename outerProduct<Type, Type>::type outerProductType;
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const GeometricField<Type, PatchField, GeoMesh>& gf = tgf();
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tmp<GeometricField<outerProductType, PatchField, GeoMesh>> tSqr
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(
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new GeometricField<outerProductType, PatchField, GeoMesh>
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(
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IOobject
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(
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"sqr(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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sqr(gf.dimensions())
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)
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);
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sqr(tSqr.ref(), gf);
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tgf.clear();
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return tSqr;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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void magSqr
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(
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GeometricField<scalar, PatchField, GeoMesh>& gsf,
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const GeometricField<Type, PatchField, GeoMesh>& gf
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)
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{
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magSqr(gsf.internalField(), gf.internalField());
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magSqr(gsf.boundaryFieldRef(), gf.boundaryField());
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp<GeometricField<scalar, PatchField, GeoMesh>> magSqr
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(
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const GeometricField<Type, PatchField, GeoMesh>& gf
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)
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{
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tmp<GeometricField<scalar, PatchField, GeoMesh>> tMagSqr
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
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IOobject
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(
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"magSqr(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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sqr(gf.dimensions())
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)
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);
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magSqr(tMagSqr.ref(), gf);
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return tMagSqr;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp<GeometricField<scalar, PatchField, GeoMesh>> magSqr
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(
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const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf
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)
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{
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const GeometricField<Type, PatchField, GeoMesh>& gf = tgf();
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tmp<GeometricField<scalar, PatchField, GeoMesh>> tMagSqr
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
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IOobject
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(
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"magSqr(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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sqr(gf.dimensions())
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)
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);
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magSqr(tMagSqr.ref(), gf);
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tgf.clear();
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return tMagSqr;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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void mag
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(
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GeometricField<scalar, PatchField, GeoMesh>& gsf,
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const GeometricField<Type, PatchField, GeoMesh>& gf
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)
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{
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mag(gsf.internalField(), gf.internalField());
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mag(gsf.boundaryFieldRef(), gf.boundaryField());
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp<GeometricField<scalar, PatchField, GeoMesh>> mag
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(
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const GeometricField<Type, PatchField, GeoMesh>& gf
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)
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{
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tmp<GeometricField<scalar, PatchField, GeoMesh>> tMag
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
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IOobject
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(
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"mag(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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gf.dimensions()
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)
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);
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mag(tMag.ref(), gf);
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return tMag;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp<GeometricField<scalar, PatchField, GeoMesh>> mag
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(
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const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf
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)
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{
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const GeometricField<Type, PatchField, GeoMesh>& gf = tgf();
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tmp<GeometricField<scalar, PatchField, GeoMesh>> tMag
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
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IOobject
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(
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"mag(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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gf.dimensions()
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)
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);
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mag(tMag.ref(), gf);
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tgf.clear();
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return tMag;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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void cmptAv
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(
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GeometricField
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<
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typename GeometricField<Type, PatchField, GeoMesh>::cmptType,
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PatchField,
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GeoMesh
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>& gcf,
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const GeometricField<Type, PatchField, GeoMesh>& gf
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)
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{
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cmptAv(gcf.internalField(), gf.internalField());
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cmptAv(gcf.boundaryFieldRef(), gf.boundaryField());
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp
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<
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GeometricField
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<
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typename GeometricField<Type, PatchField, GeoMesh>::cmptType,
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PatchField,
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GeoMesh
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>
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>
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cmptAv(const GeometricField<Type, PatchField, GeoMesh>& gf)
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{
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typedef typename GeometricField<Type, PatchField, GeoMesh>::cmptType
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cmptType;
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tmp<GeometricField<cmptType, PatchField, GeoMesh>> CmptAv
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
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IOobject
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(
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"cmptAv(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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gf.mesh(),
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gf.dimensions()
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)
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);
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cmptAv(CmptAv.ref(), gf);
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return CmptAv;
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}
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template<class Type, template<class> class PatchField, class GeoMesh>
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tmp
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<
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GeometricField
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|
<
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typename GeometricField<Type, PatchField, GeoMesh>::cmptType,
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PatchField,
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GeoMesh
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>
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>
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cmptAv(const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf)
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{
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typedef typename GeometricField<Type, PatchField, GeoMesh>::cmptType
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cmptType;
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const GeometricField<Type, PatchField, GeoMesh>& gf = tgf();
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tmp<GeometricField<cmptType, PatchField, GeoMesh>> CmptAv
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(
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new GeometricField<scalar, PatchField, GeoMesh>
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(
|
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IOobject
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(
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"cmptAv(" + gf.name() + ')',
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gf.instance(),
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gf.db(),
|
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IOobject::NO_READ,
|
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IOobject::NO_WRITE
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),
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gf.mesh(),
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gf.dimensions()
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)
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);
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|
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cmptAv(CmptAv.ref(), gf);
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|
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tgf.clear();
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|
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return CmptAv;
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}
|
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|
|
|
|
#define UNARY_REDUCTION_FUNCTION_WITH_BOUNDARY(returnType, func, gFunc) \
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|
\
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|
template<class Type, template<class> class PatchField, class GeoMesh> \
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|
dimensioned<returnType> func \
|
|
( \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf \
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) \
|
|
{ \
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|
return dimensioned<Type> \
|
|
( \
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|
#func "(" + gf.name() + ')', \
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|
gf.dimensions(), \
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Foam::func(gFunc(gf.internalField()), gFunc(gf.boundaryField())) \
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|
); \
|
|
} \
|
|
\
|
|
template<class Type, template<class> class PatchField, class GeoMesh> \
|
|
dimensioned<returnType> func \
|
|
( \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1 \
|
|
) \
|
|
{ \
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dimensioned<returnType> res = func(tgf1()); \
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tgf1.clear(); \
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return res; \
|
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}
|
|
|
|
UNARY_REDUCTION_FUNCTION_WITH_BOUNDARY(Type, max, gMax)
|
|
UNARY_REDUCTION_FUNCTION_WITH_BOUNDARY(Type, min, gMin)
|
|
|
|
#undef UNARY_REDUCTION_FUNCTION_WITH_BOUNDARY
|
|
|
|
|
|
#define UNARY_REDUCTION_FUNCTION(returnType, func, gFunc) \
|
|
\
|
|
template<class Type, template<class> class PatchField, class GeoMesh> \
|
|
dimensioned<returnType> func \
|
|
( \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf \
|
|
) \
|
|
{ \
|
|
return dimensioned<Type> \
|
|
( \
|
|
#func "(" + gf.name() + ')', \
|
|
gf.dimensions(), \
|
|
gFunc(gf.internalField()) \
|
|
); \
|
|
} \
|
|
\
|
|
template<class Type, template<class> class PatchField, class GeoMesh> \
|
|
dimensioned<returnType> func \
|
|
( \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1 \
|
|
) \
|
|
{ \
|
|
dimensioned<returnType> res = func(tgf1()); \
|
|
tgf1.clear(); \
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return res; \
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|
}
|
|
|
|
UNARY_REDUCTION_FUNCTION(Type, sum, gSum)
|
|
UNARY_REDUCTION_FUNCTION(scalar, sumMag, gSumMag)
|
|
UNARY_REDUCTION_FUNCTION(Type, average, gAverage)
|
|
|
|
#undef UNARY_REDUCTION_FUNCTION
|
|
|
|
|
|
BINARY_FUNCTION(Type, Type, Type, max)
|
|
BINARY_FUNCTION(Type, Type, Type, min)
|
|
BINARY_FUNCTION(Type, Type, Type, cmptMultiply)
|
|
BINARY_FUNCTION(Type, Type, Type, cmptDivide)
|
|
|
|
BINARY_TYPE_FUNCTION(Type, Type, Type, max)
|
|
BINARY_TYPE_FUNCTION(Type, Type, Type, min)
|
|
BINARY_TYPE_FUNCTION(Type, Type, Type, cmptMultiply)
|
|
BINARY_TYPE_FUNCTION(Type, Type, Type, cmptDivide)
|
|
|
|
|
|
// * * * * * * * * * * * * * * * Global operators * * * * * * * * * * * * * //
|
|
|
|
UNARY_OPERATOR(Type, Type, -, negate, transform)
|
|
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|
BINARY_OPERATOR(Type, Type, scalar, *, '*', multiply)
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|
BINARY_OPERATOR(Type, scalar, Type, *, '*', multiply)
|
|
BINARY_OPERATOR(Type, Type, scalar, /, '|', divide)
|
|
|
|
BINARY_TYPE_OPERATOR_SF(Type, scalar, Type, *, '*', multiply)
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|
BINARY_TYPE_OPERATOR_FS(Type, Type, scalar, *, '*', multiply)
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|
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BINARY_TYPE_OPERATOR_FS(Type, Type, scalar, /, '|', divide)
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|
|
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|
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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|
#define PRODUCT_OPERATOR(product, op, opFunc) \
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|
\
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|
template \
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|
<class Type1, class Type2, template<class> class PatchField, class GeoMesh> \
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|
void opFunc \
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|
( \
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|
GeometricField \
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|
<typename product<Type1, Type2>::type, PatchField, GeoMesh>& gf, \
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|
const GeometricField<Type1, PatchField, GeoMesh>& gf1, \
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|
const GeometricField<Type2, PatchField, GeoMesh>& gf2 \
|
|
) \
|
|
{ \
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|
Foam::opFunc(gf.internalField(), gf1.internalField(), gf2.internalField());\
|
|
Foam::opFunc \
|
|
( \
|
|
gf.boundaryFieldRef(), \
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|
gf1.boundaryField(), \
|
|
gf2.boundaryField() \
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|
);\
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|
} \
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|
\
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|
template \
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|
<class Type1, class Type2, template<class> class PatchField, class GeoMesh> \
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|
tmp \
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|
< \
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|
GeometricField<typename product<Type1, Type2>::type, PatchField, GeoMesh> \
|
|
> \
|
|
operator op \
|
|
( \
|
|
const GeometricField<Type1, PatchField, GeoMesh>& gf1, \
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|
const GeometricField<Type2, PatchField, GeoMesh>& gf2 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type1, Type2>::type productType; \
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes \
|
|
( \
|
|
new GeometricField<productType, PatchField, GeoMesh> \
|
|
( \
|
|
IOobject \
|
|
( \
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|
'(' + gf1.name() + #op + gf2.name() + ')', \
|
|
gf1.instance(), \
|
|
gf1.db(), \
|
|
IOobject::NO_READ, \
|
|
IOobject::NO_WRITE \
|
|
), \
|
|
gf1.mesh(), \
|
|
gf1.dimensions() op gf2.dimensions() \
|
|
) \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, gf2); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
<class Type1, class Type2, template<class> class PatchField, class GeoMesh> \
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|
tmp \
|
|
< \
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|
GeometricField<typename product<Type1, Type2>::type, PatchField, GeoMesh> \
|
|
> \
|
|
operator op \
|
|
( \
|
|
const GeometricField<Type1, PatchField, GeoMesh>& gf1, \
|
|
const tmp<GeometricField<Type2, PatchField, GeoMesh>>& tgf2 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type1, Type2>::type productType; \
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|
\
|
|
const GeometricField<Type2, PatchField, GeoMesh>& gf2 = tgf2(); \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes = \
|
|
reuseTmpGeometricField<productType, Type2, PatchField, GeoMesh>::New \
|
|
( \
|
|
tgf2, \
|
|
'(' + gf1.name() + #op + gf2.name() + ')', \
|
|
gf1.dimensions() op gf2.dimensions() \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, gf2); \
|
|
\
|
|
tgf2.clear(); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
<class Type1, class Type2, template<class> class PatchField, class GeoMesh> \
|
|
tmp \
|
|
< \
|
|
GeometricField<typename product<Type1, Type2>::type, PatchField, GeoMesh> \
|
|
> \
|
|
operator op \
|
|
( \
|
|
const tmp<GeometricField<Type1, PatchField, GeoMesh>>& tgf1, \
|
|
const GeometricField<Type2, PatchField, GeoMesh>& gf2 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type1, Type2>::type productType; \
|
|
\
|
|
const GeometricField<Type1, PatchField, GeoMesh>& gf1 = tgf1(); \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes = \
|
|
reuseTmpGeometricField<productType, Type1, PatchField, GeoMesh>::New \
|
|
( \
|
|
tgf1, \
|
|
'(' + gf1.name() + #op + gf2.name() + ')', \
|
|
gf1.dimensions() op gf2.dimensions() \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, gf2); \
|
|
\
|
|
tgf1.clear(); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
<class Type1, class Type2, template<class> class PatchField, class GeoMesh> \
|
|
tmp \
|
|
< \
|
|
GeometricField<typename product<Type1, Type2>::type, PatchField, GeoMesh> \
|
|
> \
|
|
operator op \
|
|
( \
|
|
const tmp<GeometricField<Type1, PatchField, GeoMesh>>& tgf1, \
|
|
const tmp<GeometricField<Type2, PatchField, GeoMesh>>& tgf2 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type1, Type2>::type productType; \
|
|
\
|
|
const GeometricField<Type1, PatchField, GeoMesh>& gf1 = tgf1(); \
|
|
const GeometricField<Type2, PatchField, GeoMesh>& gf2 = tgf2(); \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes = \
|
|
reuseTmpTmpGeometricField \
|
|
<productType, Type1, Type1, Type2, PatchField, GeoMesh>::New \
|
|
( \
|
|
tgf1, \
|
|
tgf2, \
|
|
'(' + gf1.name() + #op + gf2.name() + ')', \
|
|
gf1.dimensions() op gf2.dimensions() \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, gf2); \
|
|
\
|
|
tgf1.clear(); \
|
|
tgf2.clear(); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
void opFunc \
|
|
( \
|
|
GeometricField \
|
|
<typename product<Type, Form>::type, PatchField, GeoMesh>& gf, \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1, \
|
|
const dimensioned<Form>& dvs \
|
|
) \
|
|
{ \
|
|
Foam::opFunc(gf.internalField(), gf1.internalField(), dvs.value()); \
|
|
Foam::opFunc(gf.boundaryFieldRef(), gf1.boundaryField(), dvs.value()); \
|
|
} \
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
tmp<GeometricField<typename product<Type, Form>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1, \
|
|
const dimensioned<Form>& dvs \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type, Form>::type productType; \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes \
|
|
( \
|
|
new GeometricField<productType, PatchField, GeoMesh> \
|
|
( \
|
|
IOobject \
|
|
( \
|
|
'(' + gf1.name() + #op + dvs.name() + ')', \
|
|
gf1.instance(), \
|
|
gf1.db(), \
|
|
IOobject::NO_READ, \
|
|
IOobject::NO_WRITE \
|
|
), \
|
|
gf1.mesh(), \
|
|
gf1.dimensions() op dvs.dimensions() \
|
|
) \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, dvs); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
< \
|
|
class Form, \
|
|
class Cmpt, \
|
|
direction nCmpt, \
|
|
class Type, template<class> class PatchField, \
|
|
class GeoMesh \
|
|
> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1, \
|
|
const VectorSpace<Form,Cmpt,nCmpt>& vs \
|
|
) \
|
|
{ \
|
|
return gf1 op dimensioned<Form>(static_cast<const Form&>(vs)); \
|
|
} \
|
|
\
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
tmp<GeometricField<typename product<Type, Form>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1, \
|
|
const dimensioned<Form>& dvs \
|
|
) \
|
|
{ \
|
|
typedef typename product<Type, Form>::type productType; \
|
|
\
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1 = tgf1(); \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes = \
|
|
reuseTmpGeometricField<productType, Type, PatchField, GeoMesh>::New \
|
|
( \
|
|
tgf1, \
|
|
'(' + gf1.name() + #op + dvs.name() + ')', \
|
|
gf1.dimensions() op dvs.dimensions() \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), gf1, dvs); \
|
|
\
|
|
tgf1.clear(); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
< \
|
|
class Form, \
|
|
class Cmpt, \
|
|
direction nCmpt, \
|
|
class Type, template<class> class PatchField, \
|
|
class GeoMesh \
|
|
> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1, \
|
|
const VectorSpace<Form,Cmpt,nCmpt>& vs \
|
|
) \
|
|
{ \
|
|
return tgf1 op dimensioned<Form>(static_cast<const Form&>(vs)); \
|
|
} \
|
|
\
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
void opFunc \
|
|
( \
|
|
GeometricField \
|
|
<typename product<Form, Type>::type, PatchField, GeoMesh>& gf, \
|
|
const dimensioned<Form>& dvs, \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1 \
|
|
) \
|
|
{ \
|
|
Foam::opFunc(gf.internalField(), dvs.value(), gf1.internalField()); \
|
|
Foam::opFunc(gf.boundaryFieldRef(), dvs.value(), gf1.boundaryField()); \
|
|
} \
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const dimensioned<Form>& dvs, \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Form, Type>::type productType; \
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes \
|
|
( \
|
|
new GeometricField<productType, PatchField, GeoMesh> \
|
|
( \
|
|
IOobject \
|
|
( \
|
|
'(' + dvs.name() + #op + gf1.name() + ')', \
|
|
gf1.instance(), \
|
|
gf1.db(), \
|
|
IOobject::NO_READ, \
|
|
IOobject::NO_WRITE \
|
|
), \
|
|
gf1.mesh(), \
|
|
dvs.dimensions() op gf1.dimensions() \
|
|
) \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), dvs, gf1); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
< \
|
|
class Form, \
|
|
class Cmpt, \
|
|
direction nCmpt, \
|
|
class Type, template<class> class PatchField, \
|
|
class GeoMesh \
|
|
> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const VectorSpace<Form,Cmpt,nCmpt>& vs, \
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1 \
|
|
) \
|
|
{ \
|
|
return dimensioned<Form>(static_cast<const Form&>(vs)) op gf1; \
|
|
} \
|
|
\
|
|
template \
|
|
<class Form, class Type, template<class> class PatchField, class GeoMesh> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const dimensioned<Form>& dvs, \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1 \
|
|
) \
|
|
{ \
|
|
typedef typename product<Form, Type>::type productType; \
|
|
\
|
|
const GeometricField<Type, PatchField, GeoMesh>& gf1 = tgf1(); \
|
|
\
|
|
tmp<GeometricField<productType, PatchField, GeoMesh>> tRes = \
|
|
reuseTmpGeometricField<productType, Type, PatchField, GeoMesh>::New \
|
|
( \
|
|
tgf1, \
|
|
'(' + dvs.name() + #op + gf1.name() + ')', \
|
|
dvs.dimensions() op gf1.dimensions() \
|
|
); \
|
|
\
|
|
Foam::opFunc(tRes.ref(), dvs, gf1); \
|
|
\
|
|
tgf1.clear(); \
|
|
\
|
|
return tRes; \
|
|
} \
|
|
\
|
|
template \
|
|
< \
|
|
class Form, \
|
|
class Cmpt, \
|
|
direction nCmpt, \
|
|
class Type, template<class> class PatchField, \
|
|
class GeoMesh \
|
|
> \
|
|
tmp<GeometricField<typename product<Form, Type>::type, PatchField, GeoMesh>> \
|
|
operator op \
|
|
( \
|
|
const VectorSpace<Form,Cmpt,nCmpt>& vs, \
|
|
const tmp<GeometricField<Type, PatchField, GeoMesh>>& tgf1 \
|
|
) \
|
|
{ \
|
|
return dimensioned<Form>(static_cast<const Form&>(vs)) op tgf1; \
|
|
}
|
|
|
|
PRODUCT_OPERATOR(typeOfSum, +, add)
|
|
PRODUCT_OPERATOR(typeOfSum, -, subtract)
|
|
|
|
PRODUCT_OPERATOR(outerProduct, *, outer)
|
|
PRODUCT_OPERATOR(crossProduct, ^, cross)
|
|
PRODUCT_OPERATOR(innerProduct, &, dot)
|
|
PRODUCT_OPERATOR(scalarProduct, &&, dotdot)
|
|
|
|
#undef PRODUCT_OPERATOR
|
|
|
|
|
|
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
|
|
|
|
} // End namespace Foam
|
|
|
|
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
|
|
|
|
#include "undefFieldFunctionsM.H"
|
|
|
|
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
|