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// ***********************************************************************
//
// Moocho: Multi-functional Object-Oriented arCHitecture for Optimization
// Copyright (2003) 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 Roscoe A. Bartlett (rabartl@sandia.gov)
//
// ***********************************************************************
// @HEADER
#ifndef MATRIX_WITH_OP_GET_GMS_MUTABLE_H
#define MATRIX_WITH_OP_GET_GMS_MUTABLE_H
#include "AbstractLinAlgPack_MatrixOpGetGMS.hpp"
namespace AbstractLinAlgPack {
/** \brief Abstract interface that allows the extraction of a non-const <tt>DMatrixSlice</tt>
* view of an abstract matrix.
*
* This interface is ment to be used by <tt>MatrixOp</tt> objects
* that store all of their matrix elements in the local address space or can easily
* access all of the elements from this process and can modify the elements in their
* data structures.
*
* Subclasses that store a Fortran compatible dense dense matrix can implement
* these methods without any dynamic memory allocations. There is no default
* implementation for these methods so subclasses that derive from this interface
* must implement these methods.
*
* These methods should never be called directly. Instead, use the helper
* class type <tt>MatrixDenseMutableEncap</tt>.
*/
class MatrixOpGetGMSMutable : virtual public MatrixOpGetGMS {
public:
/** \brief . */
using MatrixOpGetGMS::get_gms_view;
/** \brief Get a representation of the abstract matrixr in the form <tt>DenseLinAlgPack::DMatrixSlice</tt>.
*
* @return On ouput, \c return will be initialized to point to storage to the dense matrix elements.
* The output from this function <tt>gms_view = this->get_gms_view()</tt> must be passed to
* <tt>this->commit_gms_view(gms)</tt> to commit and free any memory that may have been allocated
* and to ensure the that underlying abstract matrix object has been updated.
* After <tt>this->commit_gms_view(gms_view)</tt> is called, \c gms_view must not be used any longer!
*
* Postconditions:<ul>
* <li> <tt>return.rows() == this->rows()</tt>
* <li> <tt>return.cols() == this->cols()</tt>
* </ul>
*
* Warning! If a subclass overrides this method, it must also override \c commit_gms_view().
*/
virtual DMatrixSlice get_gms_view() = 0;
/** \brief Commit changes to a view of a dense matrix initialized from <tt>this->get_gms_view()</tt>.
*
* @param gms_view
* [in/out] On input, \c gms_view must have been initialized from \c this->get_gms_view().
* On output, \c gms_view will become invalid and must not be used.
*
* Preconditions:<ul>
* <li> \c gms_view must have been initialized by \c this->get_gms_view)
* </ul>
*
* Postconditions:<ul>
* <li> \c this is guaranteed to be updated.
* <li> \c gms_view becomes invalid and must not be used any longer!
* </ul>
*/
virtual void commit_gms_view(DMatrixSlice* gms_view) = 0;
}; // end class MatrixOpGetGMSMutable
/** \brief Helper class type that simplifies the usage of the <tt>MatrixOpGetGMSMutable</tt> interface for clients.
*
* This takes care of worrying about if the <tt>MatrixOpGetGMSMutable</tt> interface is supported or not
* and remembering to free the <tt>DMatrixSlice</tt> view properly.
*
* This class is only to be used on the stack as an automatic variable. For example, to extract a
* <tt>DMatrixSlice</tt> view of an abstract vector and use it to set the matrix to a scalar
* one could write a function like:
\code
void assign( const value_type alpha, MatrixOpGetGMSMutable* mat_inout ) {
MatrixDenseMutableEncap gms_inout(*mat_inout);
gms_inout() = alpha;
}
\endcode
* In the above code, if the underlying <tt>MatrixOpGetGMSMutable</tt> object does not have to
* perform any dynamic memory allocations and copy in the method
* <tt>MatrixOpGetGMSMutable::get_gms_view()</tt> then the above code will only have a constant
* time overhead.
*/
class MatrixDenseMutableEncap {
public:
/** \brief Construct a <tt>DMatrixSlice</tt> view from a <tt>MatrixOpGetGMSMutable</tt> object.
*/
MatrixDenseMutableEncap( MatrixOpGetGMSMutable* mat_get );
/** \brief Construct a <tt>DMatrixSlice</tt> view from a <tt>MatrixOp</tt> object.
*
* If <tt>dynamic_cast<MatrixOpGetGMSMutable*>(mat) == NULL</tt> then a ???
* exception is thrown.
*/
MatrixDenseMutableEncap( MatrixOp* mat );
/// Frees the <tt>DMatrixSlice</tt> view and commits the changes.
~MatrixDenseMutableEncap();
/// Returns a non-const view of the <tt>DMatrixSlice</tt> view.
DMatrixSlice operator()();
/// Returns a const view of the <tt>DMatrixSlice</tt> view.
const DMatrixSlice operator()() const;
private:
MatrixOpGetGMSMutable *mat_get_;
DMatrixSlice gms_view_;
MatrixDenseMutableEncap(); // Not defined and not to be called!
MatrixDenseMutableEncap(const MatrixDenseMutableEncap&); // ""
MatrixDenseMutableEncap& operator=(const MatrixDenseMutableEncap&); // ""
}; // end class MatrixDenseMutableEncap
// ///////////////////////////////////////////
// Inline members
// MatrixDenseMutableEncap
inline
MatrixDenseMutableEncap::MatrixDenseMutableEncap( MatrixOpGetGMSMutable* mat_get )
:mat_get_(mat_get)
,gms_view_(mat_get_->get_gms_view())
{}
inline
MatrixDenseMutableEncap::MatrixDenseMutableEncap( MatrixOp* mat )
:mat_get_(&Teuchos::dyn_cast<MatrixOpGetGMSMutable>(*mat))
,gms_view_(mat_get_->get_gms_view())
{}
inline
MatrixDenseMutableEncap::~MatrixDenseMutableEncap()
{
mat_get_->commit_gms_view(&gms_view_);
}
inline
DMatrixSlice MatrixDenseMutableEncap::operator()()
{
return gms_view_;
}
inline
const DMatrixSlice MatrixDenseMutableEncap::operator()() const
{
return gms_view_;
}
} // end namespace AbstractLinAlgPack
#endif // MATRIX_WITH_OP_GET_GMS_MUTABLE_H
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