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//                                               -*- C++ -*-
/**
 *  @file  TNC.hxx
 *  @brief TNC is an actual implementation for a bound-constrained optimization algorithm
 *
 *  (C) Copyright 2005-2011 EDF-EADS-Phimeca
 *
 *  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.
 *
 *  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
 *
 *  @author: $LastChangedBy: dutka $
 *  @date:   $LastChangedDate: 2010-02-04 16:44:49 +0100 (jeu. 04 févr. 2010) $
 *  Id:      $Id: TNC.hxx 1473 2010-02-04 15:44:49Z dutka $
 */
#ifndef OPENTURNS_TNCSPECIFICPARAMETERS_HXX
#define OPENTURNS_TNCSPECIFICPARAMETERS_HXX

#include "OTprivate.hxx"
#include "BoundConstrainedAlgorithmImplementation.hxx"

namespace OpenTURNS
{

  namespace Base
  {

    namespace Optim
    {

      /**
       * @class TNCSpecificParameters
       * Specific parameters of the TNC library
       */
      class TNCSpecificParameters
        : public Common::PersistentObject
      {
        typedef Common::StorageManager StorageManager;

        static const UnsignedLong    DefaultMaxCGit;
        static const NumericalScalar DefaultEta;
        static const NumericalScalar DefaultStepmx;
        static const NumericalScalar DefaultAccuracy;
        static const NumericalScalar DefaultFmin;
        static const NumericalScalar DefaultRescale;

        CLASSNAME;
      public:

        typedef Base::Type::NumericalPoint            NumericalPoint;

        /** Default constructor */
        TNCSpecificParameters();

        /** Parameters constructor */
        TNCSpecificParameters(const NumericalPoint & scale,
                              const NumericalPoint & offset,
                              const UnsignedLong    maxCGit,
                              const NumericalScalar eta,
                              const NumericalScalar stepmx,
                              const NumericalScalar accuracy,
                              const NumericalScalar fmin,
                              const NumericalScalar rescale);

        /** Virtual constructor */
        virtual TNCSpecificParameters * clone() const;

        /** Scale accessor */
        NumericalPoint getScale() const;
        void setScale(const NumericalPoint & scale);

        /** Offset accessor */
        NumericalPoint getOffset() const;
        void setOffset(const NumericalPoint & offset);

        /** MaxCGit accessor */
        UnsignedLong getMaxCGit() const;
        void setMaxCGit(const UnsignedLong maxCGit);

        /** Eta accessor */
        NumericalScalar getEta() const;
        void setEta(const NumericalScalar eta);

        /** Stepmx accessor */
        NumericalScalar getStepmx() const;
        void setStepmx(const NumericalScalar stepmx);

        /** Accuracy accessor */
        NumericalScalar getAccuracy() const;
        void setAccuracy(const NumericalScalar accuracy);

        /** Fmin accessor */
        NumericalScalar getFmin() const;
        void setFmin(const NumericalScalar fmin);

        /** Rescale accessor */
        NumericalScalar getRescale() const;
        void setRescale(const NumericalScalar rescale);

        /** String converter */
        String __repr__() const;

        /** Method save() stores the object through the StorageManager */
        void save(StorageManager::Advocate & adv) const;

        /** Method load() reloads the object from the StorageManager */
        void load(StorageManager::Advocate & adv);

      private:
        NumericalPoint  scale_;
        NumericalPoint  offset_;
        UnsignedLong    maxCGit_;
        NumericalScalar eta_;
        NumericalScalar stepmx_;
        NumericalScalar accuracy_;
        NumericalScalar fmin_;
        NumericalScalar rescale_;
      }; /* class TNCSpecificParameters */


    } /* namespace Optim */
  } /* namespace Base */
} /* namespace OpenTURNS */

#endif /* OPENTURNS_TNCSPECIFICPARAMETERS_HXX */