Geant4 Cross Reference

Cross-Referencing   Geant4
Geant4/processes/electromagnetic/dna/models/src/G4DNAIndependentReactionTimeModel.cc

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  1 //
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 25 //
 26 
 27 #include "globals.hh"
 28 #include "G4DNAMakeReaction.hh"
 29 #include <G4DNAMolecularReactionTable.hh>
 30 #include <memory>
 31 #include "G4DNAIndependentReactionTimeModel.hh"
 32 #include "G4DNAIndependentReactionTimeStepper.hh"
 33 #include "G4DiffusionControlledReactionModel.hh"
 34 #include "G4Molecule.hh"
 35 #include "G4VDNAReactionModel.hh"
 36 #include "G4ChemicalMoleculeFinder.hh"
 37 
 38 G4DNAIndependentReactionTimeModel::G4DNAIndependentReactionTimeModel(
 39   const G4String& name)
 40   : G4DNAIndependentReactionTimeModel(
 41       name, std::make_unique<G4DNAIndependentReactionTimeStepper>(),
 42       std::make_unique<G4DNAMakeReaction>())
 43 {}
 44 
 45 G4DNAIndependentReactionTimeModel::G4DNAIndependentReactionTimeModel(
 46   const G4String& name, std::unique_ptr<G4VITTimeStepComputer> pTimeStepper,
 47   std::unique_ptr<G4VITReactionProcess> pReactionProcess)
 48   : G4VITStepModel(std::move(pTimeStepper), std::move(pReactionProcess), name)
 49 {
 50   fType1 = G4Molecule::ITType();
 51   fType2 = G4Molecule::ITType();
 52 }
 53 
 54 G4DNAIndependentReactionTimeModel::~G4DNAIndependentReactionTimeModel() =
 55   default;
 56 
 57 void G4DNAIndependentReactionTimeModel::Initialize()
 58 {
 59   if(fpReactionTable == nullptr)
 60   {
 61     SetReactionTable(G4DNAMolecularReactionTable::GetReactionTable());
 62   }
 63 
 64   if(!fpReactionModel)
 65   {
 66     fpReactionModel = std::make_unique<G4DiffusionControlledReactionModel>();
 67   }
 68 
 69   fpReactionModel->SetReactionTable(
 70     (const G4DNAMolecularReactionTable*) fpReactionTable);
 71 
 72   ((G4DNAMakeReaction*) fpReactionProcess.get())
 73     ->SetReactionModel(fpReactionModel.get());
 74 
 75   ((G4DNAMakeReaction*) fpReactionProcess.get())
 76     ->SetTimeStepComputer(fpTimeStepper.get());
 77 
 78   ((G4DNAIndependentReactionTimeStepper*) fpTimeStepper.get())
 79     ->SetReactionModel(fpReactionModel.get());
 80 
 81   ((G4DNAIndependentReactionTimeStepper*) fpTimeStepper.get())
 82     ->SetReactionProcess((fpReactionProcess).get());
 83 
 84   G4ChemicalMoleculeFinder::Instance()->Clear();
 85   G4ChemicalMoleculeFinder::Instance()->SetOctreeUsed(true);
 86   G4VITStepModel::Initialize();
 87 }
 88 void G4DNAIndependentReactionTimeModel::PrintInfo()
 89 {
 90 #ifdef G4VERBOSE
 91   if(G4Threading::IsMultithreadedApplication())
 92   {
 93     if(G4Threading::G4GetThreadId() == 0)
 94     {
 95       G4VITStepModel::PrintInfo();
 96       G4cout << G4endl;
 97       G4cout << fName << " will be used ==========================" << G4endl;
 98       G4cout << G4endl;
 99       G4cout << "==============================="
100                 "========================================"
101              << G4endl;
102       G4cout << G4endl;
103     }
104   }
105   else
106   {
107     G4VITStepModel::PrintInfo();
108     G4cout << G4endl;
109     G4cout << fName << " will be used ==========================" << G4endl;
110     G4cout << G4endl;
111     G4cout << "==============================="
112               "========================================"
113            << G4endl;
114     G4cout << G4endl;
115   }
116 #endif
117 }
118 
119 void G4DNAIndependentReactionTimeModel::SetReactionModel(
120   G4VDNAReactionModel* pReactionModel)
121 {
122   fpReactionModel.reset(pReactionModel);
123 }
124 
125 G4VDNAReactionModel* G4DNAIndependentReactionTimeModel::GetReactionModel()
126 {
127   return fpReactionModel.get();
128 }