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Geant4/processes/hadronic/models/inclxx/interface/src/G4INCLXXInterfaceMessenger.cc

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Diff markup

Differences between /processes/hadronic/models/inclxx/interface/src/G4INCLXXInterfaceMessenger.cc (Version 11.3.0) and /processes/hadronic/models/inclxx/interface/src/G4INCLXXInterfaceMessenger.cc (Version 10.4)


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 25 //                                                 25 //
 26 // INCL++ intra-nuclear cascade model              26 // INCL++ intra-nuclear cascade model
 27 // Alain Boudard, CEA-Saclay, France               27 // Alain Boudard, CEA-Saclay, France
 28 // Joseph Cugnon, University of Liege, Belgium     28 // Joseph Cugnon, University of Liege, Belgium
 29 // Jean-Christophe David, CEA-Saclay, France       29 // Jean-Christophe David, CEA-Saclay, France
 30 // Pekka Kaitaniemi, CEA-Saclay, France, and H     30 // Pekka Kaitaniemi, CEA-Saclay, France, and Helsinki Institute of Physics, Finland
 31 // Sylvie Leray, CEA-Saclay, France                31 // Sylvie Leray, CEA-Saclay, France
 32 // Davide Mancusi, CEA-Saclay, France              32 // Davide Mancusi, CEA-Saclay, France
 33 //                                                 33 //
 34 #define INCLXX_IN_GEANT4_MODE 1                    34 #define INCLXX_IN_GEANT4_MODE 1
 35                                                    35 
 36 #include "globals.hh"                              36 #include "globals.hh"
 37                                                    37 
 38 /** \file G4INCLXXInterfaceMessenger.cc            38 /** \file G4INCLXXInterfaceMessenger.cc
 39  * \brief Messenger class for the Geant4 INCL+     39  * \brief Messenger class for the Geant4 INCL++ interface.
 40  *                                                 40  *
 41  * \date 26th April 2012                           41  * \date 26th April 2012
 42  * \author Davide Mancusi                          42  * \author Davide Mancusi
 43  */                                                43  */
 44                                                    44 
 45 #include "G4INCLXXInterfaceMessenger.hh"           45 #include "G4INCLXXInterfaceMessenger.hh"
 46 #include "G4SystemOfUnits.hh"                      46 #include "G4SystemOfUnits.hh"
 47 #include <sstream>                                 47 #include <sstream>
 48                                                    48 
 49 const G4String G4INCLXXInterfaceMessenger::the     49 const G4String G4INCLXXInterfaceMessenger::theUIDirectory = "/process/had/inclxx/";
 50                                                    50 
 51 G4INCLXXInterfaceMessenger::G4INCLXXInterfaceM     51 G4INCLXXInterfaceMessenger::G4INCLXXInterfaceMessenger(G4INCLXXInterfaceStore *anInterfaceStore) :
 52   theINCLXXInterfaceStore(anInterfaceStore)        52   theINCLXXInterfaceStore(anInterfaceStore)
 53 {                                                  53 {
 54   // Create a directory for the INCL++ command     54   // Create a directory for the INCL++ commands
 55   theINCLXXDirectory = new G4UIdirectory(theUI     55   theINCLXXDirectory = new G4UIdirectory(theUIDirectory);
 56   theINCLXXDirectory->SetGuidance("Parameters      56   theINCLXXDirectory->SetGuidance("Parameters for the INCL++ model");
 57                                                    57 
 58   // This command controls whether nucleus-nuc     58   // This command controls whether nucleus-nucleus reactions should accurately
 59   // describe the projectile or the target nuc     59   // describe the projectile or the target nucleus (default: projectile)
 60   accurateNucleusCmd = new G4UIcmdWithAString(     60   accurateNucleusCmd = new G4UIcmdWithAString((theUIDirectory + "accurateNucleus").data(),this);
 61   accurateNucleusCmd->SetGuidance("Set which n     61   accurateNucleusCmd->SetGuidance("Set which nucleus will be accurately described in nucleus-nucleus reactions.");
 62   accurateNucleusCmd->SetGuidance(" projectile     62   accurateNucleusCmd->SetGuidance(" projectile: accurate description of projectile-related quantities");
 63   accurateNucleusCmd->SetGuidance(" target: ac     63   accurateNucleusCmd->SetGuidance(" target: accurate description of target-related quantities");
 64   accurateNucleusCmd->SetGuidance(" Default: p     64   accurateNucleusCmd->SetGuidance(" Default: projectile");
 65   accurateNucleusCmd->SetParameterName("Accura     65   accurateNucleusCmd->SetParameterName("AccurateNucleus",true);
 66   accurateNucleusCmd->SetDefaultValue("project     66   accurateNucleusCmd->SetDefaultValue("projectile");
 67   accurateNucleusCmd->AvailableForStates(G4Sta     67   accurateNucleusCmd->AvailableForStates(G4State_PreInit, G4State_Idle);
 68                                                    68 
 69   // This command selects the maximum mass num     69   // This command selects the maximum mass number of clusters to be produced in
 70   // the INCL++ cascade                            70   // the INCL++ cascade
 71   maxClusterMassCmd = new G4UIcmdWithAnInteger     71   maxClusterMassCmd = new G4UIcmdWithAnInteger((theUIDirectory + "maxClusterMass").data(),this);
 72   maxClusterMassCmd->SetGuidance("Set the maxi     72   maxClusterMassCmd->SetGuidance("Set the maximum cluster mass.");
 73   maxClusterMassCmd->SetGuidance(" The INCL++      73   maxClusterMassCmd->SetGuidance(" The INCL++ cascade stage will produce clusters with mass up to the value of this parameter (included)");
 74   maxClusterMassCmd->SetGuidance(" Allowed ran     74   maxClusterMassCmd->SetGuidance(" Allowed range: [2,12]");
 75   maxClusterMassCmd->SetParameterName("MaxClus     75   maxClusterMassCmd->SetParameterName("MaxClusterMass",true);
 76   maxClusterMassCmd->SetDefaultValue(8);           76   maxClusterMassCmd->SetDefaultValue(8);
 77   maxClusterMassCmd->SetRange("MaxClusterMass>     77   maxClusterMassCmd->SetRange("MaxClusterMass>=2 && MaxClusterMass<=12");
 78   maxClusterMassCmd->AvailableForStates(G4Stat     78   maxClusterMassCmd->AvailableForStates(G4State_PreInit, G4State_Idle);
 79                                                    79 
 80   // This command sets the energy below which      80   // This command sets the energy below which PreCoumpound will be used
 81   cascadeMinEnergyPerNucleonCmd = new G4UIcmdW     81   cascadeMinEnergyPerNucleonCmd = new G4UIcmdWithADoubleAndUnit((theUIDirectory + "cascadeMinEnergyPerNucleon").data(),this);
 82   cascadeMinEnergyPerNucleonCmd->SetGuidance("     82   cascadeMinEnergyPerNucleonCmd->SetGuidance("Set the minimum energy per nucleon at which cascade will be used.");
 83   cascadeMinEnergyPerNucleonCmd->SetGuidance("     83   cascadeMinEnergyPerNucleonCmd->SetGuidance(" INCL++ will rely on PreCompound for reactions induced by projectiles slower than the given energy (per nucleon, where applicable)");
 84   cascadeMinEnergyPerNucleonCmd->SetParameterN     84   cascadeMinEnergyPerNucleonCmd->SetParameterName("cascadeMinEnergyPerNucleon",true);
 85   cascadeMinEnergyPerNucleonCmd->SetDefaultVal     85   cascadeMinEnergyPerNucleonCmd->SetDefaultValue(1.*MeV);
 86   cascadeMinEnergyPerNucleonCmd->SetRange("cas     86   cascadeMinEnergyPerNucleonCmd->SetRange("cascadeMinEnergyPerNucleon>=0");
 87   cascadeMinEnergyPerNucleonCmd->SetUnitCatego     87   cascadeMinEnergyPerNucleonCmd->SetUnitCategory("Energy");
 88   cascadeMinEnergyPerNucleonCmd->AvailableForS     88   cascadeMinEnergyPerNucleonCmd->AvailableForStates(G4State_PreInit, G4State_Idle);
 89                                                    89 
 90   // This command allows the user to set sever     90   // This command allows the user to set several INCL++ internals in one shot
 91   inclPhysicsCmd = new G4UIcmdWithAString((the     91   inclPhysicsCmd = new G4UIcmdWithAString((theUIDirectory + "setPhysics").data(),this);
 92   inclPhysicsCmd->SetGuidance("Set a global co     92   inclPhysicsCmd->SetGuidance("Set a global configuration for INCL++.");
 93   inclPhysicsCmd->SetGuidance(" default: defau     93   inclPhysicsCmd->SetGuidance(" default: default configuration, most recent options");
 94   inclPhysicsCmd->SetGuidance(" incl42: try to <<  94   inclPhysicsCmd->SetGuidance(" incl42: try to mimick the behaviour from INCL4.2");
 95   inclPhysicsCmd->SetParameterName("type", fal     95   inclPhysicsCmd->SetParameterName("type", false);
 96   inclPhysicsCmd->AvailableForStates(G4State_P     96   inclPhysicsCmd->AvailableForStates(G4State_PreInit, G4State_Idle);
 97                                                    97 
 98   // This command allows the user to change th     98   // This command allows the user to change the de-excitation model to be used
 99   // with INCL++                                   99   // with INCL++
100   useAblaCmd = new G4UIcommand((theUIDirectory    100   useAblaCmd = new G4UIcommand((theUIDirectory + "useAbla").data(),this);
101   useAblaCmd->SetGuidance("Use ABLA++ as de-ex    101   useAblaCmd->SetGuidance("Use ABLA++ as de-excitation model after INCL++.");
102   useAblaCmd->AvailableForStates(G4State_Idle)    102   useAblaCmd->AvailableForStates(G4State_Idle);
103 }                                                 103 }
104                                                   104 
105 G4INCLXXInterfaceMessenger::~G4INCLXXInterface    105 G4INCLXXInterfaceMessenger::~G4INCLXXInterfaceMessenger() {
106   delete theINCLXXDirectory;                      106   delete theINCLXXDirectory;
107   delete accurateNucleusCmd;                      107   delete accurateNucleusCmd;
108   delete maxClusterMassCmd;                       108   delete maxClusterMassCmd;
109   delete cascadeMinEnergyPerNucleonCmd;           109   delete cascadeMinEnergyPerNucleonCmd;
110   delete inclPhysicsCmd;                          110   delete inclPhysicsCmd;
111   delete useAblaCmd;                              111   delete useAblaCmd;
112 }                                                 112 }
113                                                   113 
114 void G4INCLXXInterfaceMessenger::SetNewValue(G    114 void G4INCLXXInterfaceMessenger::SetNewValue(G4UIcommand *command, G4String newValues) {
115   if(command==accurateNucleusCmd) {               115   if(command==accurateNucleusCmd) {
116     G4StrUtil::to_lower(newValues);            << 116     newValues.toLower();
117     if(newValues=="projectile") {                 117     if(newValues=="projectile") {
118       theINCLXXInterfaceStore->SetAccurateProj    118       theINCLXXInterfaceStore->SetAccurateProjectile(true);
119     } else if(newValues=="target") {              119     } else if(newValues=="target") {
120       theINCLXXInterfaceStore->SetAccurateProj    120       theINCLXXInterfaceStore->SetAccurateProjectile(false);
121     }                                             121     }
122   } else if(command==maxClusterMassCmd) {         122   } else if(command==maxClusterMassCmd) {
123     const G4int parameter = maxClusterMassCmd-    123     const G4int parameter = maxClusterMassCmd->GetNewIntValue(newValues);
124     theINCLXXInterfaceStore->SetMaxClusterMass    124     theINCLXXInterfaceStore->SetMaxClusterMass(parameter);
125   } else if(command==cascadeMinEnergyPerNucleo    125   } else if(command==cascadeMinEnergyPerNucleonCmd) {
126     const G4double parameter = cascadeMinEnerg    126     const G4double parameter = cascadeMinEnergyPerNucleonCmd->GetNewDoubleValue(newValues);
127     theINCLXXInterfaceStore->SetCascadeMinEner    127     theINCLXXInterfaceStore->SetCascadeMinEnergyPerNucleon(parameter);
128   } else if(command==inclPhysicsCmd) {            128   } else if(command==inclPhysicsCmd) {
129     theINCLXXInterfaceStore->SetINCLPhysics(ne    129     theINCLXXInterfaceStore->SetINCLPhysics(newValues);
130   } else if(command==useAblaCmd) {                130   } else if(command==useAblaCmd) {
131     theINCLXXInterfaceStore->UseAblaDeExcitati    131     theINCLXXInterfaceStore->UseAblaDeExcitation();
132   }                                               132   }
133 }                                                 133 }
134                                                   134