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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // 26 // 26 // >> 27 // $Id: G4Transportation.icc,v 1.9 2006/06/29 21:10:34 gunter Exp $ >> 28 // GEANT4 tag $Name: geant4-08-02 $ 27 // 29 // >> 30 28 // 31 // 29 // 32 // 30 // Inline function implementation. 33 // Inline function implementation. 31 << 34 // 32 // =========================================== 35 // ======================================================================= 33 // Created: 9 June 1998, J. Apostolakis 36 // Created: 9 June 1998, J. Apostolakis 34 // =========================================== 37 // ======================================================================= 35 << 38 // 36 #include <CLHEP/Units/SystemOfUnits.h> << 37 #include "G4TransportationLogger.hh" << 38 39 39 inline void 40 inline void 40 G4Transportation::SetPropagatorInField( G4Prop 41 G4Transportation::SetPropagatorInField( G4PropagatorInField* pFieldPropagator) 41 { 42 { 42 fFieldPropagator= pFieldPropagator; 43 fFieldPropagator= pFieldPropagator; 43 } 44 } 44 45 45 inline G4PropagatorInField* G4Transportation:: 46 inline G4PropagatorInField* G4Transportation::GetPropagatorInField() 46 { 47 { 47 return fFieldPropagator; 48 return fFieldPropagator; 48 } 49 } 49 50 >> 51 inline G4bool G4Transportation::DoesGlobalFieldExist() >> 52 { >> 53 G4TransportationManager* transportMgr; >> 54 transportMgr= G4TransportationManager::GetTransportationManager(); >> 55 >> 56 // fFieldExists= transportMgr->GetFieldManager()->DoesFieldExist(); >> 57 // return fFieldExists; >> 58 return transportMgr->GetFieldManager()->DoesFieldExist(); >> 59 } >> 60 >> 61 inline void G4Transportation::SetVerboseLevel( G4int verboseLev ) >> 62 { >> 63 fVerboseLevel= verboseLev; >> 64 } >> 65 >> 66 inline G4int G4Transportation::GetVerboseLevel( ) const >> 67 { >> 68 return fVerboseLevel; >> 69 } >> 70 50 inline G4double G4Transportation::GetThreshold 71 inline G4double G4Transportation::GetThresholdWarningEnergy() const 51 { 72 { 52 return fThreshold_Warning_Energy; 73 return fThreshold_Warning_Energy; 53 } 74 } 54 75 55 inline G4double G4Transportation::GetThreshold 76 inline G4double G4Transportation::GetThresholdImportantEnergy() const 56 { 77 { 57 return fThreshold_Important_Energy; 78 return fThreshold_Important_Energy; 58 } 79 } 59 80 60 inline G4int G4Transportation::GetThresholdTri 81 inline G4int G4Transportation::GetThresholdTrials() const 61 { 82 { 62 return fThresholdTrials; 83 return fThresholdTrials; 63 } 84 } 64 85 65 inline void G4Transportation::SetThresholdWarn 86 inline void G4Transportation::SetThresholdWarningEnergy( G4double newEnWarn ) 66 { 87 { 67 fThreshold_Warning_Energy= newEnWarn; 88 fThreshold_Warning_Energy= newEnWarn; 68 if( fpLogger ) { << 69 fpLogger->SetThresholdWarningEnergy( newE << 70 } else { << 71 ReportMissingLogger("SetThresholdWarningE << 72 } << 73 // Update the information for correct report << 74 } 89 } 75 90 76 inline void G4Transportation::SetThresholdImpo 91 inline void G4Transportation::SetThresholdImportantEnergy( G4double newEnImp ) 77 { 92 { 78 fThreshold_Important_Energy = newEnImp; << 93 fThreshold_Important_Energy = newEnImp; 79 if( fpLogger ) { << 80 fpLogger->SetThresholdImportantEnergy( ne << 81 // Update the information for correct repo << 82 } else { << 83 ReportMissingLogger("SetThresholdImportan << 84 } << 85 } 94 } 86 95 87 inline void G4Transportation::SetThresholdTria 96 inline void G4Transportation::SetThresholdTrials(G4int newMaxTrials ) 88 { 97 { 89 fThresholdTrials = newMaxTrials; << 98 fThresholdTrials = newMaxTrials; 90 if( fpLogger ) { << 91 fpLogger->SetThresholdTrials(newMaxTrials << 92 // Update the information for correct rep << 93 } else { << 94 ReportMissingLogger("SetThresholdTrials") << 95 } << 96 } 99 } 97 100 >> 101 // Get/Set parameters for killing loopers: >> 102 // Above 'important' energy a 'looping' particle in field will >> 103 // *NOT* be abandoned, except after fThresholdTrials attempts. >> 104 // Below Warning energy, no verbosity for looping particles is issued >> 105 98 inline G4double G4Transportation::GetMaxEnergy 106 inline G4double G4Transportation::GetMaxEnergyKilled() const 99 { 107 { 100 return fMaxEnergyKilled; 108 return fMaxEnergyKilled; 101 } 109 } 102 110 103 inline G4double G4Transportation::GetSumEnergy 111 inline G4double G4Transportation::GetSumEnergyKilled() const 104 { 112 { 105 return fSumEnergyKilled; 113 return fSumEnergyKilled; 106 } 114 } 107 115 108 inline void G4Transportation::ResetKilledStati 116 inline void G4Transportation::ResetKilledStatistics(G4int report) 109 { 117 { 110 // Statistics for tracks killed (currently d << 118 if( report ) { 111 << 119 G4cout << " G4Transportation: Statistics for looping particles " << G4endl; 112 if( report ) << 120 G4cout << " Sum of energy of loopers killed: " << fSumEnergyKilled << G4endl; 113 { << 121 G4cout << " Max energy of loopers killed: " << fMaxEnergyKilled << G4endl; 114 G4cout << " G4Transportation: Statistics f << 115 << G4endl; << 116 G4cout << " Sum of energy of loopers kil << 117 << G4endl; << 118 G4cout << " Max energy of loopers killed << 119 << G4endl; << 120 } 122 } 121 123 122 fSumEnergyKilled= 0; 124 fSumEnergyKilled= 0; 123 fMaxEnergyKilled= -1.0*CLHEP::GeV; << 125 fMaxEnergyKilled= -1.0*GeV; 124 } << 125 << 126 inline void << 127 G4Transportation::EnableShortStepOptimisation( << 128 { << 129 fShortStepOptimisation=optimiseShortStep; << 130 } << 131 << 132 inline void << 133 G4Transportation::PushThresholdsToLogger() << 134 { << 135 if( fpLogger ) << 136 fpLogger->SetThresholds( GetThresholdWarn << 137 GetThresholdImpo << 138 GetThresholdTria << 139 else << 140 ReportMissingLogger("PushThresholdsToLogg << 141 } 126 } >> 127 // Statistics for tracks killed (currently due to looping in field) 142 128 143 129