/usr/include/trilinos/BelosIteration.hpp is in libtrilinos-belos-dev 12.10.1-3.
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// ************************************************************************
//
// Belos: Block Linear Solvers Package
// Copyright 2004 Sandia Corporation
//
// Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
// the U.S. Government retains certain rights in this software.
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//
// 1. Redistributions of source code must retain the above copyright
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// 2. Redistributions in binary form must reproduce the above copyright
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// documentation and/or other materials provided with the distribution.
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// 3. Neither the name of the Corporation nor the names of the
// contributors may be used to endorse or promote products derived from
// this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY
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//
// ************************************************************************
//@HEADER
#ifndef BELOS_ITERATION_HPP
#define BELOS_ITERATION_HPP
/*! \file BelosIteration.hpp
\brief Pure virtual base class which describes the basic interface to the linear solver iteration.
*/
#include "BelosConfigDefs.hpp"
#include "BelosTypes.hpp"
#include "Teuchos_Array.hpp"
#include "Teuchos_ParameterList.hpp"
#include "Teuchos_RCP.hpp"
#include "Teuchos_ScalarTraits.hpp"
namespace Belos {
template <class ScalarType, class MV, class OP>
class LinearProblem;
template <class ScalarType>
class OutputManager;
template <class ScalarType, class MV, class OP>
class StatusTest;
template <class ScalarType, class MV, class OP>
class MatOrthoManager;
template<class ScalarType, class MV, class OP>
class Iteration {
public:
//! @name Constructors/Destructor
//@{
//! Default Constructor.
Iteration() {};
//! Destructor.
virtual ~Iteration() {};
//@}
//! @name Solver methods
//@{
/*! \brief This method performs linear solver iterations until the status test
indicates the need to stop or an error occurs (in which case, an std::exception is thrown).
*/
virtual void iterate() = 0;
/*! \brief Initialize the solver with the initial vectors from the linear problem
* or random data.
*/
virtual void initialize() = 0;
//@}
//! @name Status methods
//@{
//! \brief Get the current iteration count.
virtual int getNumIters() const = 0;
//! \brief Reset the iteration count to iter.
virtual void resetNumIters( int iter = 0 ) = 0;
//! Get the residuals native to the solver.
//! \return A multivector with blockSize vectors containing the native residuals, else the native residual norm is returned.
virtual Teuchos::RCP<const MV> getNativeResiduals( std::vector<typename Teuchos::ScalarTraits<ScalarType>::magnitudeType> *norms ) const = 0;
//! Get the current update to the linear system.
/*! \note Some solvers, like GMRES, do not compute updates to the solution every iteration.
This method forces the computation of the current update.
*/
virtual Teuchos::RCP<MV> getCurrentUpdate() const = 0;
//@}
//! @name Accessor methods
//@{
//! Get a constant reference to the linear problem.
virtual const LinearProblem<ScalarType,MV,OP>& getProblem() const = 0;
//! Get the blocksize to be used by the iterative solver in solving this linear problem.
virtual int getBlockSize() const = 0;
//! \brief Set the blocksize to be used by the iterative solver in solving this linear problem.
virtual void setBlockSize(int blockSize) = 0;
//! States whether the solver has been initialized or not.
virtual bool isInitialized() = 0;
//@}
};
} // end Belos namespace
#endif /* BELOS_ITERATION_HPP */
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