262 lines
9.9 KiB
C++
262 lines
9.9 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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//
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//
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//
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//
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#include "G4MatScanMessenger.hh"
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#include "G4SystemOfUnits.hh"
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#include "G4UIdirectory.hh"
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#include "G4UIcommand.hh"
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#include "G4UIparameter.hh"
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#include "G4UIcmdWithoutParameter.hh"
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#include "G4UIcmdWithABool.hh"
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#include "G4UIcmdWith3VectorAndUnit.hh"
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#include "G4UIcmdWith3Vector.hh"
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#include "G4UIcmdWithAString.hh"
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#include "G4MaterialScanner.hh"
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#include "G4ThreeVector.hh"
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#include "G4Tokenizer.hh"
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G4MatScanMessenger::G4MatScanMessenger(G4MaterialScanner* p1)
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{
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theScanner = p1;
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G4UIparameter* par;
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msDirectory = new G4UIdirectory("/control/matScan/");
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msDirectory->SetGuidance("Material scanner commands.");
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scanCmd = new G4UIcmdWithoutParameter("/control/matScan/scan",this);
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scanCmd->SetGuidance("Start material scanning.");
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scanCmd->SetGuidance("Scanning range should be defined with");
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scanCmd->SetGuidance("/control/matScan/theta and /control/matSca/phi commands.");
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scanCmd->AvailableForStates(G4State_Idle);
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thetaCmd = new G4UIcommand("/control/matScan/theta",this);
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thetaCmd->SetGuidance("Define theta range.");
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thetaCmd->SetGuidance("Usage : /control/matScan/theta [nbin] [thetaMin] [thetaSpan] [unit]");
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thetaCmd->SetGuidance("Notation of angles :");
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thetaCmd->SetGuidance(" theta --- +Z axis : +90 deg. / X-Y plane : 0 deg. / -Z axis : -90 deg.");
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par = new G4UIparameter("nbin",'i',false);
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par->SetParameterRange("nbin>0");
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thetaCmd->SetParameter(par);
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par = new G4UIparameter("thetaMin",'d',false);
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thetaCmd->SetParameter(par);
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par = new G4UIparameter("thetaSpan",'d',true);
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par->SetParameterRange("thetaSpan>=0.");
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par->SetDefaultValue(0.);
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thetaCmd->SetParameter(par);
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par = new G4UIparameter("unit",'c',true);
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par->SetDefaultValue("deg");
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par->SetParameterCandidates(thetaCmd->UnitsList(thetaCmd->CategoryOf("deg")));
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thetaCmd->SetParameter(par);
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phiCmd = new G4UIcommand("/control/matScan/phi",this);
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phiCmd->SetGuidance("Define phi range.");
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phiCmd->SetGuidance("Usage : /control/matScan/phi [nbin] [phiMin] [phiSpan] [unit]");
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phiCmd->SetGuidance("Notation of angles :");
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phiCmd->SetGuidance(" phi --- +X axis : 0 deg. / +Y axis : 90 deg. / -X axis : 180 deg. / -Y axis : 270 deg.");
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par = new G4UIparameter("nbin",'i',false);
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par->SetParameterRange("nbin>0");
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phiCmd->SetParameter(par);
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par = new G4UIparameter("phiMin",'d',false);
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phiCmd->SetParameter(par);
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par = new G4UIparameter("phiSpan",'d',true);
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par->SetParameterRange("phiSpan>=0.");
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par->SetDefaultValue(0.);
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phiCmd->SetParameter(par);
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par = new G4UIparameter("unit",'c',true);
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par->SetDefaultValue("deg");
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par->SetParameterCandidates(phiCmd->UnitsList(phiCmd->CategoryOf("deg")));
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phiCmd->SetParameter(par);
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singleCmd = new G4UIcommand("/control/matScan/singleMeasure",this);
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singleCmd->SetGuidance("Measure thickness for one particular direction.");
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singleCmd->SetGuidance("Notation of angles :");
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singleCmd->SetGuidance(" theta --- +Z axis : +90 deg. / X-Y plane : 0 deg. / -Z axis : -90 deg.");
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singleCmd->SetGuidance(" phi --- +X axis : 0 deg. / +Y axis : 90 deg. / -X axis : 180 deg. / -Y axis : 270 deg.");
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singleCmd->AvailableForStates(G4State_Idle);
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par = new G4UIparameter("theta",'d',false);
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singleCmd->SetParameter(par);
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par = new G4UIparameter("phi",'d',false);
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singleCmd->SetParameter(par);
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par = new G4UIparameter("unit",'c',true);
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par->SetDefaultValue("deg");
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par->SetParameterCandidates(singleCmd->UnitsList(singleCmd->CategoryOf("deg")));
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singleCmd->SetParameter(par);
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single2Cmd = new G4UIcmdWith3Vector("/control/matScan/singleTo",this);
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single2Cmd->SetGuidance("Measure thickness for one direction defined by a unit vector.");
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single2Cmd->SetParameterName("X","Y","Z",false);
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eyePosCmd = new G4UIcmdWith3VectorAndUnit("/control/matScan/eyePosition",this);
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eyePosCmd->SetGuidance("Define the eye position.");
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eyePosCmd->SetParameterName("X","Y","Z",true);
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eyePosCmd->SetDefaultValue(G4ThreeVector(0.,0.,0.));
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eyePosCmd->SetDefaultUnit("m");
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regSenseCmd = new G4UIcmdWithABool("/control/matScan/regionSensitive",this);
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regSenseCmd->SetGuidance("Set region sensitivity.");
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regSenseCmd->SetGuidance("This command is automatically set to TRUE");
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regSenseCmd->SetGuidance(" if /control/matScan/region command is issued.");
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regSenseCmd->SetParameterName("senseFlag",true);
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regSenseCmd->SetDefaultValue(false);
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regionCmd = new G4UIcmdWithAString("/control/matScan/region",this);
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regionCmd->SetGuidance("Define region name to be scanned.");
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regionCmd->SetGuidance("/control/matScan/regionSensitive command is automatically");
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regionCmd->SetGuidance("set to TRUE with this command.");
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regionCmd->SetParameterName("region",true);
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regionCmd->SetDefaultValue("DefaultRegionForTheWorld");
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}
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G4MatScanMessenger::~G4MatScanMessenger()
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{
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delete scanCmd;
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delete thetaCmd;
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delete phiCmd;
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delete singleCmd;
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delete single2Cmd;
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delete eyePosCmd;
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delete regSenseCmd;
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delete regionCmd;
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delete msDirectory;
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}
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G4String G4MatScanMessenger::GetCurrentValue(G4UIcommand * command)
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{
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G4String currentValue;
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if(command==thetaCmd)
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{
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currentValue = thetaCmd->ConvertToString(theScanner->GetNTheta());
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currentValue += " ";
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currentValue += thetaCmd->ConvertToString((theScanner->GetThetaMin())/deg);
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currentValue += " ";
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currentValue += thetaCmd->ConvertToString((theScanner->GetThetaSpan())/deg);
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}
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else if(command==phiCmd)
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{
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currentValue = phiCmd->ConvertToString(theScanner->GetNPhi());
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currentValue += " ";
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currentValue += phiCmd->ConvertToString((theScanner->GetPhiMin())/deg);
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currentValue += " ";
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currentValue += phiCmd->ConvertToString((theScanner->GetPhiSpan())/deg);
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}
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else if(command==eyePosCmd)
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{ currentValue = eyePosCmd->ConvertToString(theScanner->GetEyePosition(),"m"); }
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else if(command==regSenseCmd)
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{ currentValue = regSenseCmd->ConvertToString(theScanner->GetRegionSensitive()); }
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else if(command==regionCmd)
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{ currentValue = theScanner->GetRegionName(); }
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return currentValue;
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}
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void G4MatScanMessenger::SetNewValue(G4UIcommand * command,G4String newValue)
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{
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if(command==scanCmd)
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{ theScanner->Scan(); }
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else if(command==thetaCmd)
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{
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G4Tokenizer next( newValue );
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G4int nbin = StoI(next());
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G4double thetaMin = StoD(next());
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G4double thetaSpan = StoD(next());
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G4String unit = next();
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thetaMin *= thetaCmd->ValueOf(unit);
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thetaSpan *= thetaCmd->ValueOf(unit);
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theScanner->SetNTheta(nbin);
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theScanner->SetThetaMin(thetaMin);
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theScanner->SetThetaSpan(thetaSpan);
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}
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else if(command==phiCmd)
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{
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G4Tokenizer next( newValue );
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G4int nbin = StoI(next());
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G4double phiMin = StoD(next());
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G4double phiSpan = StoD(next());
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G4String unit = next();
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phiMin *= phiCmd->ValueOf(unit);
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phiSpan *= phiCmd->ValueOf(unit);
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theScanner->SetNPhi(nbin);
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theScanner->SetPhiMin(phiMin);
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theScanner->SetPhiSpan(phiSpan);
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}
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else if(command==eyePosCmd)
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{ theScanner->SetEyePosition(eyePosCmd->GetNew3VectorValue(newValue)); }
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else if(command==regSenseCmd)
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{ theScanner->SetRegionSensitive(regSenseCmd->GetNewBoolValue(newValue)); }
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else if(command==regionCmd)
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{ if(theScanner->SetRegionName(newValue)) theScanner->SetRegionSensitive(true); }
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else if(command==singleCmd || command==single2Cmd)
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{
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G4int ntheta = theScanner->GetNTheta();
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G4double thetaMin = theScanner->GetThetaMin();
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G4double thetaSpan = theScanner->GetThetaSpan();
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G4int nphi = theScanner->GetNPhi();
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G4double phiMin = theScanner->GetPhiMin();
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G4double phiSpan = theScanner->GetPhiSpan();
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G4double theta = 0.;
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G4double phi = 0.;
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if(command==singleCmd)
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{
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G4Tokenizer next( newValue );
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theta = StoD(next());
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phi = StoD(next());
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G4String unit = next();
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theta *= singleCmd->ValueOf(unit);
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phi *= singleCmd->ValueOf(unit);
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}
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else if(command==single2Cmd)
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{
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G4ThreeVector v = single2Cmd->GetNew3VectorValue(newValue);
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theta = 90.*deg - v.theta();
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phi = v.phi();
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}
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theScanner->SetNTheta(1);
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theScanner->SetThetaMin(theta);
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theScanner->SetThetaSpan(0.);
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theScanner->SetNPhi(1);
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theScanner->SetPhiMin(phi);
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theScanner->SetPhiSpan(0.);
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theScanner->Scan();
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theScanner->SetNTheta(ntheta);
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theScanner->SetThetaMin(thetaMin);
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theScanner->SetThetaSpan(thetaSpan);
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theScanner->SetNPhi(nphi);
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theScanner->SetPhiMin(phiMin);
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theScanner->SetPhiSpan(phiSpan);
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}
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}
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