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0001 //
0002 // ********************************************************************
0003 // * License and Disclaimer                                           *
0004 // *                                                                  *
0005 // * The  Geant4 software  is  copyright of the Copyright Holders  of *
0006 // * the Geant4 Collaboration.  It is provided  under  the terms  and *
0007 // * conditions of the Geant4 Software License,  included in the file *
0008 // * LICENSE and available at  http://cern.ch/geant4/license .  These *
0009 // * include a list of copyright holders.                             *
0010 // *                                                                  *
0011 // * Neither the authors of this software system, nor their employing *
0012 // * institutes,nor the agencies providing financial support for this *
0013 // * work  make  any representation or  warranty, express or implied, *
0014 // * regarding  this  software system or assume any liability for its *
0015 // * use.  Please see the license in the file  LICENSE  and URL above *
0016 // * for the full disclaimer and the limitation of liability.         *
0017 // *                                                                  *
0018 // * This  code  implementation is the result of  the  scientific and *
0019 // * technical work of the GEANT4 collaboration.                      *
0020 // * By using,  copying,  modifying or  distributing the software (or *
0021 // * any work based  on the software)  you  agree  to acknowledge its *
0022 // * use  in  resulting  scientific  publications,  and indicate your *
0023 // * acceptance of all terms of the Geant4 Software license.          *
0024 // ********************************************************************
0025 //
0026 // This example is provided by the Geant4-DNA collaboration
0027 // Any report or published results obtained using the Geant4-DNA software
0028 // shall cite the following Geant4-DNA collaboration publications:
0029 // Med. Phys. 45 (2018) e722-e739
0030 // Phys. Med. 31 (2015) 861-874
0031 // Med. Phys. 37 (2010) 4692-4708
0032 // Int. J. Model. Simul. Sci. Comput. 1 (2010) 157–178
0033 //
0034 // The Geant4-DNA web site is available at http://geant4-dna.org
0035 //
0036 /// \file SteppingVerbose.cc
0037 /// \brief Implementation of the SteppingVerbose class
0038 
0039 #include "SteppingVerbose.hh"
0040 
0041 #include "G4UnitsTable.hh"
0042 
0043 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
0044 
0045 SteppingVerbose::SteppingVerbose() : G4SteppingVerbose() {}
0046 
0047 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
0048 
0049 SteppingVerbose::~SteppingVerbose() {}
0050 
0051 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
0052 
0053 void SteppingVerbose::TrackingStarted()
0054 {
0055   CopyState();
0056 
0057   G4int prec = G4cout.precision(3);
0058 
0059   // Step zero
0060   if (verboseLevel > 0) {
0061     G4cout << std::setw(5) << "Step#"
0062            << " " << std::setw(6) << "X"
0063            << "    " << std::setw(6) << "Y"
0064            << "    " << std::setw(6) << "Z"
0065            << "    " << std::setw(9) << "KineE"
0066            << " " << std::setw(9) << "dEStep"
0067            << " " << std::setw(10) << "StepLeng" << std::setw(10) << "TrakLeng" << std::setw(10)
0068            << "Volume"
0069            << "  " << std::setw(10) << "Process" << G4endl;
0070 
0071     G4cout << std::setw(5) << fTrack->GetCurrentStepNumber() << " " << std::setw(6)
0072            << G4BestUnit(fTrack->GetPosition().x(), "Length") << std::setw(6)
0073            << G4BestUnit(fTrack->GetPosition().y(), "Length") << std::setw(6)
0074            << G4BestUnit(fTrack->GetPosition().z(), "Length") << std::setw(6)
0075            << G4BestUnit(fTrack->GetKineticEnergy(), "Energy") << std::setw(6)
0076            << G4BestUnit(fStep->GetTotalEnergyDeposit(), "Energy") << std::setw(6)
0077            << G4BestUnit(fStep->GetStepLength(), "Length") << std::setw(6)
0078            << G4BestUnit(fTrack->GetTrackLength(), "Length") << std::setw(10)
0079            << fTrack->GetVolume()->GetName() << "   initStep" << G4endl;
0080   }
0081   G4cout.precision(prec);
0082 }
0083 
0084 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
0085 
0086 void SteppingVerbose::StepInfo()
0087 {
0088   CopyState();
0089 
0090   G4int prec = G4cout.precision(3);
0091 
0092   if (verboseLevel >= 1) {
0093     if (verboseLevel >= 4) VerboseTrack();
0094     if (verboseLevel >= 3) {
0095       G4cout << G4endl;
0096       G4cout << std::setw(5) << "#Step#"
0097              << " " << std::setw(6) << "X"
0098              << "    " << std::setw(6) << "Y"
0099              << "    " << std::setw(6) << "Z"
0100              << "    " << std::setw(9) << "KineE"
0101              << " " << std::setw(9) << "dEStep"
0102              << " " << std::setw(10) << "StepLeng" << std::setw(10) << "TrakLeng" << std::setw(10)
0103              << "Volume"
0104              << "  " << std::setw(10) << "Process" << G4endl;
0105     }
0106 
0107     G4cout << std::setw(5) << fTrack->GetCurrentStepNumber() << " " << std::setw(6)
0108            << G4BestUnit(fTrack->GetPosition().x(), "Length") << std::setw(6)
0109            << G4BestUnit(fTrack->GetPosition().y(), "Length") << std::setw(6)
0110            << G4BestUnit(fTrack->GetPosition().z(), "Length") << std::setw(6)
0111            << G4BestUnit(fTrack->GetKineticEnergy(), "Energy") << std::setw(6)
0112            << G4BestUnit(fStep->GetTotalEnergyDeposit(), "Energy") << std::setw(6)
0113            << G4BestUnit(fStep->GetStepLength(), "Length") << std::setw(6)
0114            << G4BestUnit(fTrack->GetTrackLength(), "Length") << std::setw(10)
0115            << fTrack->GetVolume()->GetName();
0116 
0117     const G4VProcess* process = fStep->GetPostStepPoint()->GetProcessDefinedStep();
0118     G4String procName = " UserLimit";
0119     if (process) procName = process->GetProcessName();
0120     if (fStepStatus == fWorldBoundary) procName = "OutOfWorld";
0121     G4cout << "   " << std::setw(10) << procName;
0122     G4cout << G4endl;
0123 
0124     if (verboseLevel == 2) {
0125       const std::vector<const G4Track*>* secondary = fStep->GetSecondaryInCurrentStep();
0126       size_t nbtrk = (*secondary).size();
0127       if (nbtrk) {
0128         G4cout << "\n    :----- List of secondaries ----------------" << G4endl;
0129         G4cout.precision(4);
0130         for (size_t lp = 0; lp < (*secondary).size(); lp++) {
0131           G4cout << "   " << std::setw(13) << (*secondary)[lp]->GetDefinition()->GetParticleName()
0132                  << ":  energy =" << std::setw(6)
0133                  << G4BestUnit((*secondary)[lp]->GetKineticEnergy(), "Energy")
0134                  << "  time =" << std::setw(6)
0135                  << G4BestUnit((*secondary)[lp]->GetGlobalTime(), "Time");
0136           G4cout << G4endl;
0137         }
0138 
0139         G4cout << "    :------------------------------------------\n" << G4endl;
0140       }
0141     }
0142   }
0143   G4cout.precision(prec);
0144 }