/usr/include/openturns/UserDefined.hxx is in libopenturns-dev 1.2-2.
This file is owned by root:root, with mode 0o644.
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/**
* @file UserDefined.hxx
* @brief The UserDefined distribution
*
* Copyright (C) 2005-2013 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 3 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
* along with this library. If not, see <http://www.gnu.org/licenses/>.
*
* @author schueller
* @date 2012-07-16 10:12:54 +0200 (Mon, 16 Jul 2012)
*/
#ifndef OPENTURNS_USERDEFINED_HXX
#define OPENTURNS_USERDEFINED_HXX
#include "OTprivate.hxx"
#include "DiscreteDistribution.hxx"
#include "PersistentCollection.hxx"
#include "PersistentObject.hxx"
#include "UserDefinedPair.hxx"
#include "ResourceMap.hxx"
#include "Indices.hxx"
BEGIN_NAMESPACE_OPENTURNS
/**
* @class UserDefined
*
* The UserDefined distribution.
*/
class UserDefined
: public DiscreteDistribution
{
CLASSNAME;
public:
typedef Collection<UserDefinedPair> UserDefinedPairCollection;
typedef PersistentCollection<UserDefinedPair> UserDefinedPairPersistentCollection;
/** Default constructor */
UserDefined();
/** Constructor from PairCollection */
explicit UserDefined(const UserDefinedPairCollection & collection);
/** Constructor from a sample */
explicit UserDefined(const NumericalSample & sample);
/** Constructor from a sample and associated weights */
explicit UserDefined(const NumericalSample & sample,
const NumericalPoint & weights);
/** Comparison operator */
Bool operator ==(const UserDefined & other) const;
/** String converter */
String __repr__() const;
String __str__(const String & offset = "") const;
/* Interface inherited from Distribution */
/** Virtual constructor */
virtual UserDefined * clone() const;
/** Get one realization of the distribution */
NumericalPoint getRealization() const;
/** Get the PDF of the distribution */
using DiscreteDistribution::computePDF;
NumericalScalar computePDF(const NumericalPoint & point) const;
/** Get the CDF of the distribution */
using DiscreteDistribution::computeCDF;
NumericalScalar computeCDF(const NumericalPoint & point) const;
/** Get the PDFGradient of the distribution */
NumericalPoint computePDFGradient(const NumericalPoint & point) const;
/** Get the CDFGradient of the distribution */
NumericalPoint computeCDFGradient(const NumericalPoint & point) const;
/** Compute the numerical range of the distribution given the parameters values */
void computeRange();
/** Get the support of a discrete distribution that intersect a given interval */
using DistributionImplementation::getSupport;
NumericalSample getSupport(const Interval & interval) const;
/** Tell if the distribution is integer valued */
Bool isIntegral() const;
/** Parameters value and description accessor */
NumericalPointWithDescriptionCollection getParametersCollection() const;
/* Interface specific to UserDefined */
/** Pair collection accessor */
void setPairCollection(const UserDefinedPairCollection & collection);
UserDefinedPairCollection getPairCollection() const;
/** Get the i-th marginal distribution */
Implementation getMarginal(const UnsignedLong i) const;
/** Get the distribution of the marginal distribution corresponding to indices dimensions */
Implementation getMarginal(const Indices & indices) const;
/** Merge the identical points of the support */
void compactSupport(const NumericalScalar epsilon = ResourceMap::GetAsNumericalScalar("DiscreteDistribution-SupportEpsilon"));
/** Method save() stores the object through the StorageManager */
void save(Advocate & adv) const;
/** Method load() reloads the object from the StorageManager */
void load(Advocate & adv);
protected:
private:
/** Compute the mean of the distribution */
void computeMean() const;
/** Compute the covariance of the distribution */
void computeCovariance() const;
/** Quantile computation for dimension=1 */
NumericalScalar computeScalarQuantile(const NumericalScalar prob,
const Bool tail = false,
const NumericalScalar precision = ResourceMap::GetAsNumericalScalar("DistributionImplementation-DefaultQuantileEpsilon")) const;
/** The collection of couple (xi,pi) of the UserDefined distribution */
UserDefinedPairPersistentCollection collection_;
/** The cumulative probabilities si = sum(pk, k=0..i) */
NumericalPoint cumulativeProbabilities_;
/** Flag to accelerate computations in case of uniform weights */
mutable Bool hasUniformWeights_;
}; /* class UserDefined */
END_NAMESPACE_OPENTURNS
#endif /* OPENTURNS_USERDEFINED_HXX */
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