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modify for coupling-cpp and hpp
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170
utilities/particlesPhasicFlow/positionParticles/positionParticles.hpp
Executable file
170
utilities/particlesPhasicFlow/positionParticles/positionParticles.hpp
Executable file
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/*------------------------------- phasicFlow ---------------------------------
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O C enter of
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O O E ngineering and
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O O M ultiscale modeling of
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OOOOOOO F luid flow
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------------------------------------------------------------------------------
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Copyright (C): www.cemf.ir
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email: hamid.r.norouzi AT gmail.com
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------------------------------------------------------------------------------
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Licence:
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This file is part of phasicFlow code. It is a free software for simulating
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granular and multiphase flows. You can redistribute it and/or modify it under
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the terms of GNU General Public License v3 or any other later versions.
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phasicFlow is distributed to help others in their research in the field of
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granular and multiphase flows, but WITHOUT ANY WARRANTY; without even the
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implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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-----------------------------------------------------------------------------*/
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#ifndef __positionParticles_hpp__
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#define __positionParticles_hpp__
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#include "virtualConstructor.hpp"
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#include "Vectors.hpp"
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#include "dictionary.hpp"
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namespace pFlow
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{
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class regionBase
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{
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public:
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regionBase() = default;
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regionBase(const regionBase&) = default;
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regionBase& operator =(const regionBase&) = default;
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virtual ~regionBase() = default;
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virtual bool isInside(const realx3 point)const = 0;
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virtual realx3 minPoint()const =0;
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virtual realx3 maxPoint()const =0;
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virtual word name()const =0;
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};
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template<typename T>
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class region
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:
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public regionBase
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{
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protected:
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T region_;
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public:
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region(const T& rgn)
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:
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region_(rgn)
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{}
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region(const dictionary& dict)
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:
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region_(dict)
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{}
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region(const region&) = default;
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region& operator =(const region&) = default;
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virtual ~region()=default;
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bool isInside(const realx3 point) const override
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{
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return region_.isInside(point);
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}
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realx3 minPoint()const override
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{
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return region_.minPoint();
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}
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realx3 maxPoint()const override
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{
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return region_.maxPoint();
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}
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word name()const override
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{
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return region_.typeName();
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}
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};
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class positionParticles
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{
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protected:
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uniquePtr<regionBase> region_ = nullptr;
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size_t maxNumberOfParticles_ = 10000;
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Logical mortonSorting_;
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static const size_t numReports_ = 40;
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realx3Vector sortByMortonCode(realx3Vector& position)const;
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public:
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// - type Info
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TypeInfo("positionParticles");
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positionParticles(const dictionary& dict);
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create_vCtor
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(
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positionParticles,
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dictionary,
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(const dictionary& dict),
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(dict)
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);
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virtual ~positionParticles() = default;
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//// - Methods
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virtual label numPoints()const = 0;
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virtual label size()const = 0;
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virtual real maxDiameter() const = 0;
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// - const access to position
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virtual const realx3Vector& position()const = 0;
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// - access to position
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virtual realx3Vector& position() = 0;
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virtual realx3Vector getFinalPosition()
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{
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if(mortonSorting_)
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{
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return sortByMortonCode(position());
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}
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else
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{
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return position();
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}
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}
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static
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uniquePtr<positionParticles> create(const dictionary & dict);
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};
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}
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#endif // __positionParticles_hpp__
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