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// NOX: An Object-Oriented Nonlinear Solver Package
// Copyright (2002) Sandia Corporation
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#ifndef NOX_DIRECTION_GENERIC_H
#define NOX_DIRECTION_GENERIC_H
#include "Teuchos_RCP.hpp"
// Forward declarations
namespace Teuchos {
class ParameterList;
}
namespace NOX {
class GlobalData;
namespace Abstract {
class Vector;
class Group;
}
namespace Solver {
class Generic;
class LineSearchBased;
}
}
namespace NOX {
//! Search direction strategies
/*!
The Generic class spells out the interface. The Manager class can
instantiate any other concrete implementation. The remaining classes
are concrete implementations.
*/
namespace Direction {
//! %Generic direction interface
/*!
%Generic interface for calculating a search direction, \f$d\f$, to
be used in updating the iterate.
*/
class Generic {
public:
//! Constructor.
/*!
Constructors of derived objects should look like reset().
*/
Generic() {};
//! Destructor
virtual ~Generic() {};
//! Reset direction based on possibly new parameters.
virtual bool reset(const Teuchos::RCP<NOX::GlobalData>& gd,
Teuchos::ParameterList& params) = 0;
/*!
\brief Compute the direction vector, \c dir, for a specific method given
the current group, \c grp.
The \c grp is not const so that we can compute the F vector, the
Jacobian matrix, the %Newton vector, and so on.
Const access to the solver is used for getting additional
information such as the past solution, the iteration number, and
so on.
*/
virtual bool compute(NOX::Abstract::Vector& dir, NOX::Abstract::Group& grp,
const NOX::Solver::Generic& solver) = 0;
/*!
\brief Same as compute(NOX::Abstract::Vector&,
NOX::Abstract::Group&, const NOX::Solver::Generic&)
Enables direct support for line search based solvers for the
purpose of efficiency since the LineSearchBased object has a
getStep() function that some directions require.
If it is not redefined in the derived class, it will just call the
compute with the NOX::Solver::Generic argument.
*/
virtual bool compute(NOX::Abstract::Vector& dir, NOX::Abstract::Group& grp,
const NOX::Solver::LineSearchBased& solver);
};
} // namespace Direction
} // namespace NOX
#endif
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