| 1 | //
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| 2 | // ********************************************************************
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| 3 | // * License and Disclaimer *
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| 4 | // * *
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| 5 | // * The Geant4 software is copyright of the Copyright Holders of *
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| 6 | // * the Geant4 Collaboration. It is provided under the terms and *
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| 7 | // * conditions of the Geant4 Software License, included in the file *
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| 8 | // * LICENSE and available at http://cern.ch/geant4/license . These *
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| 9 | // * include a list of copyright holders. *
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| 10 | // * *
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| 11 | // * Neither the authors of this software system, nor their employing *
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| 12 | // * institutes,nor the agencies providing financial support for this *
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| 13 | // * work make any representation or warranty, express or implied, *
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| 14 | // * regarding this software system or assume any liability for its *
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| 15 | // * use. Please see the license in the file LICENSE and URL above *
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| 16 | // * for the full disclaimer and the limitation of liability. *
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| 17 | // * *
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| 18 | // * This code implementation is the result of the scientific and *
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| 19 | // * technical work of the GEANT4 collaboration. *
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| 20 | // * By using, copying, modifying or distributing the software (or *
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| 21 | // * any work based on the software) you agree to acknowledge its *
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| 22 | // * use in resulting scientific publications, and indicate your *
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| 23 | // * acceptance of all terms of the Geant4 Software license. *
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| 24 | // ********************************************************************
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| 25 | //
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| 26 | //
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| 27 | // $Id: G4PSCylinderSurfaceCurrent.cc,v 1.3 2009/11/14 00:01:13 asaim Exp $
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| 28 | // GEANT4 tag $Name: geant4-09-03 $
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| 29 | //
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| 30 | // G4PSCylinderSurfaceCurrent
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| 31 | #include "G4PSCylinderSurfaceCurrent.hh"
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| 32 | #include "G4StepStatus.hh"
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| 33 | #include "G4Track.hh"
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| 34 | #include "G4VSolid.hh"
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| 35 | #include "G4VPhysicalVolume.hh"
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| 36 | #include "G4VPVParameterisation.hh"
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| 37 | #include "G4UnitsTable.hh"
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| 38 | #include "G4GeometryTolerance.hh"
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| 39 | ////////////////////////////////////////////////////////////////////////////////
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| 40 | // (Description)
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| 41 | // This is a primitive scorer class for scoring only Surface Current.
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| 42 | // Current version assumes only for G4Tubs shape.
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| 43 | //
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| 44 | // Surface is defined at the inner surface of the tube.
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| 45 | // Direction R R+dR
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| 46 | // 0 IN || OUT ->|<- |
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| 47 | // 1 IN ->| |
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| 48 | // 2 OUT |<- |
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| 49 | //
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| 50 | // Created: 2007-03-21 Tsukasa ASO
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| 51 | //
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| 52 | ///////////////////////////////////////////////////////////////////////////////
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| 53 |
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| 54 |
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| 55 | G4PSCylinderSurfaceCurrent::G4PSCylinderSurfaceCurrent(G4String name,
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| 56 | G4int direction, G4int depth)
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| 57 | :G4VPrimitiveScorer(name,depth),HCID(-1),fDirection(direction),
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| 58 | weighted(true),divideByArea(true)
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| 59 | {;}
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| 60 |
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| 61 | G4PSCylinderSurfaceCurrent::~G4PSCylinderSurfaceCurrent()
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| 62 | {;}
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| 63 |
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| 64 | G4bool G4PSCylinderSurfaceCurrent::ProcessHits(G4Step* aStep,G4TouchableHistory*)
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| 65 | {
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| 66 | G4StepPoint* preStep = aStep->GetPreStepPoint();
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| 67 | G4VPhysicalVolume* physVol = preStep->GetPhysicalVolume();
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| 68 | G4VPVParameterisation* physParam = physVol->GetParameterisation();
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| 69 | G4VSolid * solid = 0;
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| 70 | if(physParam)
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| 71 | { // for parameterized volume
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| 72 | G4int idx = ((G4TouchableHistory*)(aStep->GetPreStepPoint()->GetTouchable()))
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| 73 | ->GetReplicaNumber(indexDepth);
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| 74 | solid = physParam->ComputeSolid(idx, physVol);
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| 75 | solid->ComputeDimensions(physParam,idx,physVol);
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| 76 | }
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| 77 | else
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| 78 | { // for ordinary volume
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| 79 | solid = physVol->GetLogicalVolume()->GetSolid();
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| 80 | }
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| 81 |
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| 82 | // if( solid->GetEntityType() != "G4Tubs" ){
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| 83 | // G4Exception("G4PSCylinderSurfaceCurrentScorer. - Solid type is not supported.");
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| 84 | // return FALSE;
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| 85 | // }
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| 86 | G4Tubs* tubsSolid = (G4Tubs*)(solid);
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| 87 |
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| 88 | G4int dirFlag =IsSelectedSurface(aStep,tubsSolid);
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| 89 | G4cout << " pos " << preStep->GetPosition() <<" dirFlag " << G4endl;
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| 90 | if ( dirFlag > 0 ) {
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| 91 | if ( fDirection == fCurrent_InOut || fDirection == dirFlag ){
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| 92 | G4TouchableHandle theTouchable = preStep->GetTouchableHandle();
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| 93 | //
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| 94 | G4double current = 1.0;
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| 95 | if ( weighted ) current = preStep->GetWeight(); // Current (Particle Weight)
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| 96 | //
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| 97 | if ( divideByArea ){
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| 98 | G4double square = 2.*tubsSolid->GetZHalfLength()
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| 99 | *tubsSolid->GetInnerRadius()* tubsSolid->GetDeltaPhiAngle()/radian;
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| 100 | current = current/square; // Current normalized by Area
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| 101 | }
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| 102 |
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| 103 | G4int index = GetIndex(aStep);
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| 104 | EvtMap->add(index,current);
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| 105 | }
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| 106 |
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| 107 | }
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| 108 |
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| 109 | return TRUE;
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| 110 | }
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| 111 |
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| 112 | G4int G4PSCylinderSurfaceCurrent::IsSelectedSurface(G4Step* aStep, G4Tubs* tubsSolid){
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| 113 |
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| 114 | G4TouchableHandle theTouchable =
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| 115 | aStep->GetPreStepPoint()->GetTouchableHandle();
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| 116 | G4double kCarTolerance = G4GeometryTolerance::GetInstance()->GetSurfaceTolerance();
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| 117 |
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| 118 | if (aStep->GetPreStepPoint()->GetStepStatus() == fGeomBoundary ){
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| 119 | // Entering Geometry
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| 120 | G4ThreeVector stppos1= aStep->GetPreStepPoint()->GetPosition();
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| 121 | G4ThreeVector localpos1 =
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| 122 | theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos1);
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| 123 | if ( std::fabs(localpos1.z()) > tubsSolid->GetZHalfLength() ) return -1;
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| 124 | //if(std::fabs( localpos1.x()*localpos1.x()+localpos1.y()*localpos1.y()
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| 125 | // -(tubsSolid->GetInnerRadius()*tubsSolid->GetInnerRadius()))
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| 126 | // < kCarTolerance ){
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| 127 | G4double localR2 = localpos1.x()*localpos1.x()+localpos1.y()*localpos1.y();
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| 128 | G4double InsideRadius = tubsSolid->GetInnerRadius();
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| 129 | if (localR2 > (InsideRadius-kCarTolerance)*(InsideRadius-kCarTolerance)
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| 130 | &&localR2 < (InsideRadius+kCarTolerance)*(InsideRadius+kCarTolerance)){
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| 131 | return fCurrent_In;
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| 132 | }
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| 133 | }
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| 134 |
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| 135 | if (aStep->GetPostStepPoint()->GetStepStatus() == fGeomBoundary ){
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| 136 | // Exiting Geometry
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| 137 | G4ThreeVector stppos2= aStep->GetPostStepPoint()->GetPosition();
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| 138 | G4ThreeVector localpos2 =
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| 139 | theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos2);
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| 140 | if ( std::fabs(localpos2.z()) > tubsSolid->GetZHalfLength() ) return -1;
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| 141 | //if(std::fabs( localpos2.x()*localpos2.x()+localpos2.y()*localpos2.y()
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| 142 | // - (tubsSolid->GetInnerRadius()*tubsSolid->GetInnerRadius()))
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| 143 | // <kCarTolerance ){
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| 144 | G4double localR2 = localpos2.x()*localpos2.x()+localpos2.y()*localpos2.y();
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| 145 | G4double InsideRadius = tubsSolid->GetInnerRadius();
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| 146 | if (localR2 > (InsideRadius-kCarTolerance)*(InsideRadius-kCarTolerance)
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| 147 | &&localR2 < (InsideRadius+kCarTolerance)*(InsideRadius+kCarTolerance)){
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| 148 | return fCurrent_Out;
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| 149 | }
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| 150 | }
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| 151 |
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| 152 | return -1;
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| 153 | }
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| 154 |
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| 155 | void G4PSCylinderSurfaceCurrent::Initialize(G4HCofThisEvent* HCE)
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| 156 | {
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| 157 | EvtMap = new G4THitsMap<G4double>(detector->GetName(), GetName());
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| 158 | if ( HCID < 0 ) HCID = GetCollectionID(0);
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| 159 | HCE->AddHitsCollection(HCID, (G4VHitsCollection*)EvtMap);
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| 160 | }
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| 161 |
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| 162 | void G4PSCylinderSurfaceCurrent::EndOfEvent(G4HCofThisEvent*)
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| 163 | {;}
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| 164 |
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| 165 | void G4PSCylinderSurfaceCurrent::clear(){
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| 166 | EvtMap->clear();
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| 167 | }
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| 168 |
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| 169 | void G4PSCylinderSurfaceCurrent::DrawAll()
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| 170 | {;}
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| 171 |
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| 172 | void G4PSCylinderSurfaceCurrent::PrintAll()
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| 173 | {
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| 174 | G4cout << " MultiFunctionalDet " << detector->GetName() << G4endl;
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| 175 | G4cout << " PrimitiveScorer " << GetName() <<G4endl;
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| 176 | G4cout << " Number of entries " << EvtMap->entries() << G4endl;
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| 177 | std::map<G4int,G4double*>::iterator itr = EvtMap->GetMap()->begin();
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| 178 | for(; itr != EvtMap->GetMap()->end(); itr++) {
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| 179 | G4cout << " copy no.: " << itr->first
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| 180 | << " current : " ;
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| 181 | if ( divideByArea ) G4cout << *(itr->second)*cm*cm << " [/cm2]";
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| 182 | else G4cout << *(itr->second) << " [track]";
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| 183 | G4cout << G4endl;
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| 184 | }
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| 185 | }
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| 186 |
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