/*------------------------------- phasicFlow --------------------------------- O C enter of O O E ngineering and O O M ultiscale modeling of OOOOOOO F luid flow ------------------------------------------------------------------------------ Copyright (C): www.cemf.ir email: hamid.r.norouzi AT gmail.com ------------------------------------------------------------------------------ Licence: This file is part of phasicFlow code. It is a free software for simulating granular and multiphase flows. You can redistribute it and/or modify it under the terms of GNU General Public License v3 or any other later versions. phasicFlow is distributed to help others in their research in the field of granular and multiphase flows, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. -----------------------------------------------------------------------------*/ #include "positionParticles.hpp" #include "vocabs.hpp" #include "dictionary.hpp" #include "systemControl.hpp" pFlow::realx3Vector pFlow::positionParticles::sortByMortonCode( const realx3Vector& position)const { struct indexMorton { uint64 morton; uint64 index; }; /*realx3 minP = min(position); realx3 maxP = max(position); real cellsize = maxDiameter(); cells allCells( box(minP, maxP), cellsize); Vector indMor(position.size(),RESERVE()); indMor.clear(); uint64 ind=0; for(const auto& p:position) { auto cellInd = allCells.pointIndex(p); indMor.push_back( { xyzToMortonCode64(cellInd.x(), cellInd.y(), cellInd.z()), ind++}); } INFORMATION<<"Performing morton sorting."<("regionType", "domain")), maxNumberOfParticles_(dict.getValOrSet( "maxNumberOfParticles", static_cast(10000))), mortonSorting_(dict.getValOrSet("mortonSorting", Logical("Yes"))) { if( regionType_ != "domain" ) { pRegion_ = peakableRegion::create( regionType_, dict.subDict(regionType_+"Info")); } else { fileDictionary domainDict ( objectFile { domainFile__, "", objectFile::READ_ALWAYS, objectFile::WRITE_NEVER }, &control.settings() ); pRegion_ = peakableRegion::create(regionType_,domainDict.subDict("globalBox")); } } pFlow::realx3Vector pFlow::positionParticles::getFinalPosition() { if(mortonSorting_) { return sortByMortonCode(position()); } else { realx3Vector vec("final position",position().capacity(), 0 , RESERVE()); vec.assign( position().begin(), position().end()); return vec; } } pFlow::uniquePtr pFlow::positionParticles::create ( systemControl& control, const dictionary & dict ) { word method = dict.getVal("method"); if( dictionaryvCtorSelector_.search(method) ) { return dictionaryvCtorSelector_[method] (control, dict); } else { printKeys ( fatalError << "Ctor Selector "<< method << " dose not exist. \n" <<"Avaiable ones are: \n\n" , dictionaryvCtorSelector_ ); fatalExit; } return nullptr; }