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155 lines
5.4 KiB
C
155 lines
5.4 KiB
C
2 years ago
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/***************************************************************************
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* Copyright (C) gempa GmbH *
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* All rights reserved. *
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* Contact: gempa GmbH (seiscomp-dev@gempa.de) *
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* *
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* GNU Affero General Public License Usage *
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* This file may be used under the terms of the GNU Affero *
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* Public License version 3.0 as published by the Free Software Foundation *
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* and appearing in the file LICENSE included in the packaging of this *
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* file. Please review the following information to ensure the GNU Affero *
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* Public License version 3.0 requirements will be met: *
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* https://www.gnu.org/licenses/agpl-3.0.html. *
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* *
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* Other Usage *
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* Alternatively, this file may be used in accordance with the terms and *
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* conditions contained in a signed written agreement between you and *
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* gempa GmbH. *
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***************************************************************************/
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#ifndef SEISCOMP_DATAMODEL_REALQUANTITY_H
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#define SEISCOMP_DATAMODEL_REALQUANTITY_H
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#include <seiscomp/datamodel/realpdf1d.h>
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#include <seiscomp/core/baseobject.h>
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#include <seiscomp/core.h>
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#include <seiscomp/core/exceptions.h>
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namespace Seiscomp {
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namespace DataModel {
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DEFINE_SMARTPOINTER(RealQuantity);
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/**
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* \brief Physical quantities expressed as floating point numbers are
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* \brief represented by their
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* \brief measured or computed values and optional values for
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* \brief symmetric or upper
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* \brief and lower uncertainties. The interpretation of these
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* \brief uncertainties is
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* \brief not defined in the standard. They can contain statistically
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* \brief well-defined
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* \brief error measures, but the mechanism can also be used to
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* \brief simply describe a
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* \brief possible value range. If the confidence level of the
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* \brief uncertainty is known,
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* \brief it can be listed in the optional attribute confidenceLevel.
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* \brief Note that uncertainty, upperUncertainty, and
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* \brief lowerUncertainty are given as absolute values of the
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* \brief deviation
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* \brief from the main value.
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*/
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class SC_SYSTEM_CORE_API RealQuantity : public Core::BaseObject {
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DECLARE_SC_CLASS(RealQuantity)
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DECLARE_SERIALIZATION;
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DECLARE_METAOBJECT;
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// ------------------------------------------------------------------
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// Xstruction
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// ------------------------------------------------------------------
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public:
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//! Constructor
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RealQuantity();
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//! Copy constructor
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RealQuantity(const RealQuantity& other);
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//! Custom constructor
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RealQuantity(double value,
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const OPT(double)& uncertainty = Seiscomp::Core::None,
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const OPT(double)& lowerUncertainty = Seiscomp::Core::None,
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const OPT(double)& upperUncertainty = Seiscomp::Core::None,
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const OPT(double)& confidenceLevel = Seiscomp::Core::None,
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const OPT(RealPDF1D)& pdf = Seiscomp::Core::None);
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//! Destructor
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~RealQuantity() override;
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// ------------------------------------------------------------------
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// Operators
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// ------------------------------------------------------------------
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public:
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operator double&();
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operator double() const;
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//! Copies the metadata of other to this
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RealQuantity& operator=(const RealQuantity& other);
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//! Checks for equality of two objects. Child objects
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//! are not part of the check.
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bool operator==(const RealQuantity& other) const;
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bool operator!=(const RealQuantity& other) const;
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//! Wrapper that calls operator==
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bool equal(const RealQuantity& other) const;
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// ------------------------------------------------------------------
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// Setters/Getters
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// ------------------------------------------------------------------
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public:
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//! Value of the quantity. The unit is implicitly defined and
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//! depends on the context.
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void setValue(double value);
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double value() const;
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//! Uncertainty as the absolute value of symmetric deviation
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//! from the main value.
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void setUncertainty(const OPT(double)& uncertainty);
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double uncertainty() const;
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//! Uncertainty as the absolute value of deviation from the
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//! main value towards smaller values.
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void setLowerUncertainty(const OPT(double)& lowerUncertainty);
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double lowerUncertainty() const;
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//! Uncertainty as the absolute value of deviation from the
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//! main value towards larger values.
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void setUpperUncertainty(const OPT(double)& upperUncertainty);
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double upperUncertainty() const;
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//! Confidence level of the uncertainty, given in percent.
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void setConfidenceLevel(const OPT(double)& confidenceLevel);
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double confidenceLevel() const;
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//! Probability density function of the quantity.
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void setPdf(const OPT(RealPDF1D)& pdf);
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RealPDF1D& pdf();
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const RealPDF1D& pdf() const;
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// ------------------------------------------------------------------
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// Implementation
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// ------------------------------------------------------------------
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private:
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// Attributes
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double _value;
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OPT(double) _uncertainty;
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OPT(double) _lowerUncertainty;
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OPT(double) _upperUncertainty;
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OPT(double) _confidenceLevel;
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OPT(RealPDF1D) _pdf;
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};
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}
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}
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#endif
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