/usr/include/trilinos/Thyra_LinearOpBase_def.hpp is in libtrilinos-dev 10.4.0.dfsg-1ubuntu2.
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// ***********************************************************************
//
// Thyra: Interfaces and Support for Abstract Numerical Algorithms
// Copyright (2004) Sandia Corporation
//
// Under terms of Contract DE-AC04-94AL85000, there is a non-exclusive
// license for use of this work by or on behalf of the U.S. Government.
//
// This library is free software; you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as
// published by the Free Software Foundation; either version 2.1 of the
// License, or (at your option) any later version.
//
// This library is distributed in the hope that it will be useful, but
// WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public
// License along with this library; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
// USA
// Questions? Contact Michael A. Heroux (maherou@sandia.gov)
//
// ***********************************************************************
// @HEADER
#ifndef THYRA_LINEAR_OP_BASE_DEF_HPP
#define THYRA_LINEAR_OP_BASE_DEF_HPP
#include "Thyra_LinearOpBase_decl.hpp"
#include "Thyra_MultiVectorBase.hpp"
#include "Thyra_VectorSpaceBase.hpp"
namespace Thyra {
// Public interface functions
template<class Scalar>
RCP<const LinearOpBase<Scalar> >
LinearOpBase<Scalar>::clone() const
{
return Teuchos::null;
}
// Deprecated
template<class Scalar>
bool LinearOpBase<Scalar>::applySupports(
const EConj conj
) const
{
return Thyra::opSupported(*this, applyConjToTrans(conj));
}
template<class Scalar>
void LinearOpBase<Scalar>::apply(
const EConj conj,
const MultiVectorBase<Scalar> &X,
MultiVectorBase<Scalar> *Y,
const Scalar alpha,
const Scalar beta
) const
{
Thyra::apply(*this, applyConjToTrans(conj), X, Teuchos::ptr(Y), alpha, beta);
}
template<class Scalar>
bool LinearOpBase<Scalar>::applyTransposeSupports(
const EConj conj
) const
{
return Thyra::opSupported(*this, applyTransposeConjToTrans(conj));
}
template<class Scalar>
void LinearOpBase<Scalar>::applyTranspose(
const EConj conj,
const MultiVectorBase<Scalar> &X,
MultiVectorBase<Scalar> *Y,
const Scalar alpha,
const Scalar beta
) const
{
Thyra::apply(*this, applyTransposeConjToTrans(conj), X, Teuchos::ptr(Y), alpha, beta);
}
} // end namespace Thyra
// ToDo: You can move this back to the decl file after you have refactored
// apply(...) to not use raw pointers. Otherwise the Y.ptr() call needs to have
// the definition of MultiVectorBase.
template<class Scalar>
void Thyra::apply(
const LinearOpBase<Scalar> &M,
const EOpTransp M_trans,
const MultiVectorBase<Scalar> &X,
const Ptr<MultiVectorBase<Scalar> > &Y,
const Scalar alpha,
const Scalar beta
)
{
M.apply(M_trans, X, Y, alpha, beta);
}
//
// Explicit instantiation macro
//
#define THYRA_LINEAR_OP_BASE_INSTANT(SCALAR) \
\
template class LinearOpBase<SCALAR >; \
\
template void apply( \
const LinearOpBase<SCALAR > &M, \
const EOpTransp M_trans, \
const MultiVectorBase<SCALAR > &X, \
const Ptr<MultiVectorBase<SCALAR > > &Y, \
const SCALAR alpha, \
const SCALAR beta \
);
#endif // THYRA_LINEAR_OP_BASE_DEF_HPP
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