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/*---------------------------------------------------------------------------*\
========= |
\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
\\ / O peration | Website: https://openfoam.org
\\ / A nd | Copyright (C) 2024-2026 OpenFOAM Foundation
\\/ M anipulation |
-------------------------------------------------------------------------------
License
This file is part of OpenFOAM.
OpenFOAM is free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
OpenFOAM 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 General Public License
for more details.
You should have received a copy of the GNU General Public License
along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
Class
Foam::unitSet
Description
Unit conversion structure. Contains the associated dimensions and the
multiplier with which to convert values.
SourceFiles
unitSet.C
unitSetIO.C
unitSetI.H
\*---------------------------------------------------------------------------*/
#ifndef unitSet_H
#define unitSet_H
#include "dimensionSet.H"
#include "nil.H"
#include "scalable.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
// Forward declaration of classes
class Istream;
class Ostream;
// Forward declaration of friend functions and operators
class unitSet;
unitSet pow(const unitSet&, const scalar);
const unitSet& operator+(const unitSet&, const unitSet&);
unitSet operator*(const unitSet&, const unitSet&);
unitSet operator/(const unitSet&, const unitSet&);
Istream& operator>>(Istream&, unitSet&);
Ostream& operator<<(Ostream&, const unitSet&);
Ostream& operator<<(Ostream&, const InfoProxy<unitSet>&);
/*---------------------------------------------------------------------------*\
Class unitSet Declaration
\*---------------------------------------------------------------------------*/
class unitSet
{
public:
// Member constants
//- Define an enumeration for the number of dimensionless units
enum
{
nDimlessUnits = 2
};
//- Define an enumeration for the names of the dimensionless unit
// exponents
enum dimlessUnitType
{
FRACTION, // fraction %
ANGLE // angle rad, rot, deg
};
//- Names of the dimensionless units
static const NamedEnum<dimlessUnitType, 2>& dimlessUnitTypeNames_;
// Static Data Members
//- A small exponent with which to perform inexact comparisons
static const scalar smallExponent;
private:
// Private Data
//- The dimensions
dimensionSet dimensions_;
//- Array of dimensionless unit exponents
scalar exponents_[nDimlessUnits];
//- The conversion multiplier with which to multiply quantities
// in this unit in order to recover the quantity in standard units
scalar multiplier_;
// Private Member Functions
//- Compare two unit conversions and return if they are the same.
// An additional control determines whether the multiplier is compared
// as well as the dimensions and dimensionless units.
static bool compare
(
const unitSet&,
const unitSet&,
const bool compareMultiplier
);
public:
// Static Data Members
//- Run time type information
ClassName("unitSet");
// Static Member Functions
//- Return a new "unitless" unit set
inline static unitSet newUnitless();
//- Return a new "any" unit set
inline static unitSet newAny();
//- Return a new "none" unit set
inline static unitSet newNone();
// Constructors
//- Construct from components
unitSet
(
const dimensionSet&,
const scalar fraction,
const scalar angle,
const scalar multiplier
);
//- Construct from a dimension set. No dimensionless units. Unity
// multiplier.
unitSet(const dimensionSet&);
//- Copy constructor
unitSet(const unitSet&) = default;
//- Move constructor
unitSet(unitSet&&) = default;
//- Construct from stream
unitSet(Istream& is);
// Member Functions
//- Access the dimensions
inline const dimensionSet& dimensions() const;
//- Return true if it is dimensionless
inline bool dimensionless() const;
//- Return true if it is unit-less
inline bool unitless() const;
//- Convert a value to standard units
template<class T>
T toStandard(const T&) const;
//- Convert a value to standard units
template<class T>
void makeStandard(T&) const;
//- Convert a value to user units
template<class T>
T toUser(const T&) const;
//- Convert a value to user units
template<class T>
void makeUser(T&) const;
//- Return whether this is the "any" unit. I.e., the case where
// dimensions and dimensionless units are not checked, and any
// conversion is permitted.
inline bool any() const;
//- Return whether this is the "none" unit. I.e., the case where unit
// conversions are prohibited.
inline bool none() const;
//- Return whether this unit is standard. I.e., is its multiplier one?
inline bool standard() const;
//- Reset the unit conversion
void reset(const unitSet&);
//- Update
void read(const word& keyword, const dictionary&);
//- Update
void read(Istream& is);
//- Update
void read(const word& keyword, const dictionary&, Istream& is);
//- Update if found in the dictionary
bool readIfPresent(const word& keyword, const dictionary&);
//- Update if found on the stream
bool readIfPresent(Istream& is);
//- Update if found on the dictionary stream
bool readIfPresent(const word& keyword, const dictionary&, Istream& is);
//- Return info proxy
inline InfoProxy<unitSet> info() const
{
return *this;
}
// Member Operators
//- Access the dimension exponents
inline scalar operator[](const dimensionSet::dimensionType type) const;
//- Access the dimensionless unit exponents
inline scalar operator[](const dimlessUnitType type) const;
//- Disallow default bitwise assignment
void operator=(const unitSet&) = delete;
//- Disallow default bitwise move assignment
void operator=(const unitSet&&) = delete;
// Friend Functions
//- Raise to a power
friend unitSet pow(const unitSet&, const scalar);
// Friend Operators
//- Combine
friend const unitSet& operator+
(
const unitSet&,
const unitSet&
);
//- Multiply
friend unitSet operator*
(
const unitSet&,
const unitSet&
);
//- Divide
friend unitSet operator/
(
const unitSet&,
const unitSet&
);
// IOstream Operators
//- Read from stream
friend Istream& operator>>(Istream&, unitSet&);
//- Write to stream
friend Ostream& operator<<(Ostream&, const unitSet&);
//- Write info to stream
friend Ostream& operator<<(Ostream&, const InfoProxy<unitSet>&);
// Public Types
//- Functor to convert to standard
struct makeStandardOp
{
template<class Type>
inline void operator()(Type& t, const unitSet& units) const
{
units.makeStandard(t);
}
};
//- Functor to convert to user
struct makeUserOp
{
template<class Type>
inline void operator()(Type& t, const unitSet& units) const
{
units.makeUser(t);
}
};
};
// Global Functions
//- Convert a primitive type
template<class Type, class Convert>
enableIfScalarCmptType<Type> convert
(
Type& t,
const unitSet& units,
const Convert&
);
//- Get the units type for a given type. This returns the unit set for
// everything except label, for which it returns nil. This can be used to
// modify the type of the units passed to dictionary, such that a single
// template instantiation can be used for label as well as the field types.
// The label specialisation checks the unit set provided to make sure it is
// both dimensionless and standard.
template<class Type>
struct typeUnitsType { typedef unitSet type; };
template<>
struct typeUnitsType<label> { typedef nil type; };
template<class Type>
const typename typeUnitsType<Type>::type& typeUnits
(
const unitSet&
);
template<class Type>
typename typeUnitsType<Type>::type typeUnits
(
const dimensionSet&
);
template<>
inline const typename typeUnitsType<label>::type& typeUnits<label>
(
const unitSet&
);
template<>
inline typename typeUnitsType<label>::type typeUnits<label>
(
const dimensionSet&
);
//- Read a type which supports unit conversion
template<class Type>
Type readAndConvert(Istream&, const unitSet&);
//- Read a type which supports unit conversion
template<class Type>
Type readAndConvert(Istream&, const dimensionSet&);
//- Read a type which supports unit conversion
template<class Type, class Units>
Type readAndConvert(Istream&, const Units&);
//- Read a type which does not support unit conversion
template<class Type>
Type readAndConvert(Istream&, const nil&);
//- Read a type which may or may not support unit conversion
template<class Type>
enableIfScalable<Type, Type> readAndMaybeConvert(Istream&);
//- Read a type which may or may not support unit conversion
template<class Type>
enableIfNotScalable<Type, Type> readAndMaybeConvert(Istream&);
//- Read a unit set
template<>
inline unitSet readAndMaybeConvert<unitSet>(Istream&);
//- Read a dimension set
template<>
inline dimensionSet readAndMaybeConvert<dimensionSet>(Istream&);
//- Write a type with a given unit conversion
template<class Type>
void writeEntry(Ostream&, const unitSet&, const Type&);
//- Write a type without unit conversion
template<class Type>
void writeEntry(Ostream&, const nil&, const Type&);
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
} // End namespace Foam
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#include "unitSetI.H"
#ifdef NoRepository
#include "unitSetTemplates.C"
#endif
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#endif
// ************************************************************************* //