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#ifndef NOX_STATUS_MAXITERS_H
#define NOX_STATUS_MAXITERS_H
#include "NOX_StatusTest_Generic.H" // base class
#include "NOX_Utils.H" // class data element
namespace NOX {
namespace StatusTest {
//! Failure test based on the maximum number of nonlinear solver iterations.
/*!
Let \f$k\f$ denote the current number of iterations (accessed via
NOX::Solver::getNumIterations) and \f$k_{\max}\f$ denote the
tolerance set in the constructor of this status test.
This test returns NOX::StatusTest::Failed if
\f$
k \geq k_{\rm max}.
\f$
Otherwise, it returns NOX::StatusTest::Unconverged.
\note If checkStatus is called with the type set to
NOX::StatusTest::None, it then the status is set to to
NOX::Status::Unevaluated and returned. (Also #niters is set to -1.)
*/
class MaxIters : public Generic {
public:
//! Constructor. Specify the maximum number of nonlinear solver iterations, \f$k_{\max}\f$ ands optinally an error stream for printing errors.
MaxIters(int maxIterations, const NOX::Utils* u = NULL);
//! Destructor.
virtual ~MaxIters();
virtual NOX::StatusTest::StatusType
checkStatus(const NOX::Solver::Generic& problem,
NOX::StatusTest::CheckType checkType);
virtual NOX::StatusTest::StatusType getStatus() const;
virtual std::ostream& print(std::ostream& stream, int indent = 0) const;
//! Returns the Maximum number of iterations set in the constructor.
virtual int getMaxIters() const;
/*!
\brief Returns the current number of iterations taken by the solver.
Returns -1 if the status of this test is NOX::StatusTest::Unevaluated.
*/
virtual int getNumIters() const;
private:
//! Maximum number of iterations
int maxiters;
//! Current number of iterations (if known)
int niters;
//! %Status
NOX::StatusTest::StatusType status;
//! Ostream used to print errors
NOX::Utils utils;
};
} // namespace Status
} // namespace NOX
#endif
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