| [abae35] | 1 | /*
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 | 2 |  * Project: MoleCuilder
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 | 3 |  * Description: creates and alters molecular systems
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| [0aa122] | 4 |  * Copyright (C)  2010-2012 University of Bonn. All rights reserved.
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| [abae35] | 5 |  * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
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 | 6 |  */
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 | 7 | 
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| [194649] | 8 | /*
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 | 9 |  * GaussianThermostat.cpp
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 | 10 |  *
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 | 11 |  *  Created on: Aug 18, 2010
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 | 12 |  *      Author: crueger
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 | 13 |  */
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 | 14 | 
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| [d2b28f] | 15 | // include config.h
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 | 16 | #ifdef HAVE_CONFIG_H
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 | 17 | #include <config.h>
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 | 18 | #endif
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 | 19 | 
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| [ad011c] | 20 | #include "CodePatterns/MemDebug.hpp"
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| [d2b28f] | 21 | 
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| [194649] | 22 | #include "GaussianThermostat.hpp"
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| [41a467] | 23 | 
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| [6f0841] | 24 | #include "Atom/AtomSet.hpp"
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| [ad011c] | 25 | #include "CodePatterns/Log.hpp"
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| [41a467] | 26 | #include "config.hpp"
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 | 27 | #include "Element/element.hpp"
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| [255829] | 28 | #include "Helpers/defs.hpp"
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 | 29 | #include "LinearAlgebra/Vector.hpp"
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| [41a467] | 30 | #include "Parser/PcpParser_helper.hpp"
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| [579a81] | 31 | #include "World.hpp"
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 | 32 | 
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| [194649] | 33 | #include <set>
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 | 34 | 
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| [579a81] | 35 | GaussianThermostat::GaussianThermostat(int _ScaleTempStep) :
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 | 36 |   E(0),G(0),
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 | 37 |   ScaleTempStep(_ScaleTempStep)
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| [194649] | 38 | {}
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 | 39 | 
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| [3e4162] | 40 | GaussianThermostat::GaussianThermostat() :
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 | 41 |   E(0),G(0),
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 | 42 |   ScaleTempStep(25)
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 | 43 | {}
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 | 44 | 
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| [194649] | 45 | GaussianThermostat::~GaussianThermostat()
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 | 46 | {}
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 | 47 | 
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| [14c57a] | 48 | const char *ThermostatTraits<GaussianThermostat>::name = "Gaussian";
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 | 49 | 
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 | 50 | std::string ThermostatTraits<GaussianThermostat>::getName(){
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 | 51 |   return ThermostatTraits<GaussianThermostat>::name;
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 | 52 | }
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| [579a81] | 53 | 
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| [c0c650] | 54 | Thermostat *ThermostatTraits<GaussianThermostat>::make(class ConfigFileBuffer * const fb){
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 | 55 |   int ScaleTempStep;
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 | 56 |   const int verbose = 0;
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 | 57 |   ParseForParameter(verbose,fb,"Thermostat", 0, 2, 1, int_type, &ScaleTempStep, 1, critical); // read collision rate
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 | 58 |   return new class GaussianThermostat(ScaleTempStep);
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 | 59 | }
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 | 60 | 
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| [579a81] | 61 | double GaussianThermostat::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::list) atoms){
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 | 62 |   return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
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| [194649] | 63 | }
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 | 64 | 
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| [579a81] | 65 | double GaussianThermostat::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::vector) atoms){
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 | 66 |   return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
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| [194649] | 67 | }
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 | 68 | 
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| [579a81] | 69 | double GaussianThermostat::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::set) atoms){
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 | 70 |   return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
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| [194649] | 71 | }
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 | 72 | 
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 | 73 | template <class ForwardIterator>
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| [579a81] | 74 | double GaussianThermostat::doScaleAtoms(unsigned int step,double ActualTemp,ForwardIterator begin, ForwardIterator end){
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| [47d041] | 75 |   LOG(2,  "Applying Gaussian thermostat...");
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| [194649] | 76 |   init(step,begin,end);
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 | 77 |   double G_over_E = G/E;
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| [47d041] | 78 |   LOG(1, "Gaussian Least Constraint constant is " << G_over_E << ".");
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| [194649] | 79 |   double ekin =0;
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 | 80 |   for(ForwardIterator iter=begin;iter!=end;++iter){
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| [056e70] | 81 |     Vector U = (*iter)->getAtomicVelocityAtStep(step);
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| [6625c3] | 82 |     if ((*iter)->getFixedIon() == 0) {// even FixedIon moves, only not by other's forces
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| [579a81] | 83 |       U += World::getInstance().getConfig()->Deltat * G_over_E * U;
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| [51c3e4] | 84 |       ekin += (*iter)->getType()->getMass() * U.NormSquared();
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| [194649] | 85 |     }
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| [056e70] | 86 |     (*iter)->setAtomicVelocityAtStep(step, U);
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| [194649] | 87 |   }
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 | 88 |   return ekin;
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 | 89 | }
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 | 90 | 
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 | 91 | template <class ForwardIterator>
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 | 92 | void GaussianThermostat::init(unsigned int step,ForwardIterator begin, ForwardIterator end){
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 | 93 |   E=0;
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 | 94 |   G=0;
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 | 95 |   for(ForwardIterator iter=begin;iter!=end;++iter){
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| [056e70] | 96 |     const Vector &U = (*iter)->getAtomicVelocityAtStep(step);
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 | 97 |     const Vector &F = (*iter)->getAtomicForceAtStep(step);
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| [6625c3] | 98 |     if ((*iter)->getFixedIon() == 0){ // even FixedIon moves, only not by other's forces
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| [194649] | 99 |       G += U.ScalarProduct(F);
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| [51c3e4] | 100 |       E += U.NormSquared()*(*iter)->getType()->getMass();
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| [194649] | 101 |     }
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 | 102 |   }
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 | 103 | }
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 | 104 | 
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 | 105 | double GaussianThermostat::getE() const{
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 | 106 |   return E;
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 | 107 | }
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 | 108 | 
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 | 109 | double GaussianThermostat::getG() const{
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 | 110 |   return G;
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 | 111 | }
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| [579a81] | 112 | 
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 | 113 | std::string GaussianThermostat::name(){
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| [14c57a] | 114 |   return ThermostatTraits<GaussianThermostat>::name;
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| [579a81] | 115 | }
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 | 116 | 
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 | 117 | std::string GaussianThermostat::writeParams(){
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 | 118 |   std::stringstream sstr;
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 | 119 |   sstr << ScaleTempStep;
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 | 120 |   return sstr.str();
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 | 121 | }
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