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// LOCA: Library of Continuation Algorithms Package
// Copyright (2005) Sandia Corporation
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#ifndef LOCA_MULTICONTINUATION_COMPOSITECONSTRAINT_H
#define LOCA_MULTICONTINUATION_COMPOSITECONSTRAINT_H
#include "LOCA_MultiContinuation_ConstraintInterface.H" // base class
#include <vector>
// forward declarations
namespace LOCA {
class GlobalData;
}
namespace LOCA {
namespace MultiContinuation {
/*!
* \brief Implementation of
* LOCA::MultiContinuation::ConstraintInterface for composite
* constraints, i.e., a constraint comprised of multiple, separate
* constraints.
*/
class CompositeConstraint :
public virtual LOCA::MultiContinuation::ConstraintInterface {
public:
//! Constructor
CompositeConstraint(
const Teuchos::RCP<LOCA::GlobalData>& global_data,
const std::vector< Teuchos::RCP<
LOCA::MultiContinuation::ConstraintInterface> >& constraintObjects);
//! Copy constructor
CompositeConstraint(const CompositeConstraint& source,
NOX::CopyType type = NOX::DeepCopy);
//! Destructor
~CompositeConstraint();
/*!
* @name Implementation of LOCA::MultiContinuation::ConstraintInterface
* virtual methods
*/
//@{
//! Copy
virtual void copy(const ConstraintInterface& source);
//! Cloning function
virtual
Teuchos::RCP<LOCA::MultiContinuation::ConstraintInterface>
clone(NOX::CopyType type = NOX::DeepCopy) const;
//! Return number of constraints
virtual int numConstraints() const;
//! Set the solution vector to y.
virtual void setX(const NOX::Abstract::Vector& y);
//! Sets parameter indexed by paramID
virtual void setParam(int paramID, double val);
//! Sets parameters indexed by paramIDs
virtual void setParams(
const std::vector<int>& paramIDs,
const NOX::Abstract::MultiVector::DenseMatrix& vals);
//! Compute continuation constraint equations
virtual NOX::Abstract::Group::ReturnType
computeConstraints();
//! Compute derivative of constraints w.r.t. solution vector x
virtual NOX::Abstract::Group::ReturnType
computeDX();
//! Compute derivative of constraints w.r.t. supplied parameters.
/*!
* The first column of \c dgdp should be filled with the constraint
* residuals \f$g\f$ if \c isValidG is \c false. If \c isValidG is
* \c true, then the \c dgdp contains \f$g\f$ on input.
*/
virtual NOX::Abstract::Group::ReturnType
computeDP(const std::vector<int>& paramIDs,
NOX::Abstract::MultiVector::DenseMatrix& dgdp,
bool isValidG);
//! Return \c true if constraint residuals are valid
virtual bool isConstraints() const;
//! Return \c true if derivatives of constraints w.r.t. x are valid
virtual bool isDX() const;
//! Return constraint residuals
virtual const NOX::Abstract::MultiVector::DenseMatrix&
getConstraints() const;
//! Compute result_p = alpha * dg/dx * input_x
/*!
* Note that if there are n constraints and input_x has m columns,
* result_p should be a n by m matrix and is equivalent to
* \code
* input_x.multiply(alpha, dgdx, result_p).
* \endcode
*/
virtual NOX::Abstract::Group::ReturnType
multiplyDX(double alpha,
const NOX::Abstract::MultiVector& input_x,
NOX::Abstract::MultiVector::DenseMatrix& result_p) const;
//! Compute result_x = alpha * dg/dx^T * op(b) + beta * result_x
/*!
* Note that this should be equivalent to
* \code
* result_x.update(transb, alpha, dgdx, b, beta);
* \endcode
*/
virtual NOX::Abstract::Group::ReturnType
addDX(Teuchos::ETransp transb,
double alpha,
const NOX::Abstract::MultiVector::DenseMatrix& b,
double beta,
NOX::Abstract::MultiVector& result_x) const;
/*!
* \brief Return \c true if solution component of constraint
* derivatives is zero
*/
virtual bool isDXZero() const;
//! Perform any preprocessing before a continuation step starts.
/*!
* The \c stepStatus argument indicates whether the previous step was
* successful. The default implementation is empty.
*/
virtual void
preProcessContinuationStep(
LOCA::Abstract::Iterator::StepStatus stepStatus);
//! Perform any postprocessing after a continuation step finishes.
/*!
* The \c stepStatus argument indicates whether the step was
* successful. The default implementation is empty.
*/
virtual void
postProcessContinuationStep(
LOCA::Abstract::Iterator::StepStatus stepStatus);
//@}
private:
//! Prohibit generation and use of operator=()
CompositeConstraint& operator=(const CompositeConstraint& source);
protected:
//! Default constructor. Used by derived classes
CompositeConstraint();
//! Initialize object when using default constructor
virtual void init(
const Teuchos::RCP<LOCA::GlobalData>& global_data,
const std::vector< Teuchos::RCP<
LOCA::MultiContinuation::ConstraintInterface> >& constraintObjects);
protected:
//! LOCA global data object
Teuchos::RCP<LOCA::GlobalData> globalData;
//! Number of constraint objects
int numConstraintObjects;
//! Array of constraint pointers
std::vector< Teuchos::RCP<
LOCA::MultiContinuation::ConstraintInterface> > constraintPtrs;
//! Indices of each sub-constraint in the composite constraint
std::vector< std::vector<int> > indices;
//! Total number of constraints
int totalNumConstraints;
//! Constraint values
NOX::Abstract::MultiVector::DenseMatrix constraints;
//! Flag indicating whether constraints are valid
bool isValidConstraints;
//! Flag indicating whether dg/dx is valid
bool isValidDX;
}; // Class CompositeConstraint
} // namespace MultiContinuation
} // namespace LOCA
#endif // LOCA_MULTICONTINUATION_COMPOSITECONSTRAINT_H
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