source: trunk/source/digits_hits/scorer/src/G4PSCylinderSurfaceCurrent.cc @ 1340

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27// $Id: G4PSCylinderSurfaceCurrent.cc,v 1.5 2010/07/23 04:35:38 taso Exp $
28// GEANT4 tag $Name:  $
29//
30// G4PSCylinderSurfaceCurrent
31#include "G4PSCylinderSurfaceCurrent.hh"
32#include "G4StepStatus.hh"
33#include "G4Track.hh"
34#include "G4VSolid.hh"
35#include "G4VPhysicalVolume.hh"
36#include "G4VPVParameterisation.hh"
37#include "G4UnitsTable.hh"
38#include "G4GeometryTolerance.hh"
39////////////////////////////////////////////////////////////////////////////////
40// (Description)
41//   This is a primitive scorer class for scoring only Surface Current.
42//  Current version assumes only for G4Tubs shape.
43//
44// Surface is defined at the inner surface of the tube.
45// Direction                   R    R+dR
46//   0  IN || OUT            ->|<-  |
47//   1  IN                   ->|    |
48//   2  OUT                    |<-  |
49//
50// Created: 2007-03-21  Tsukasa ASO
51// 2010-07-22   Introduce Unit specification.
52//
53///////////////////////////////////////////////////////////////////////////////
54
55
56G4PSCylinderSurfaceCurrent::G4PSCylinderSurfaceCurrent(G4String name, 
57                                         G4int direction, G4int depth)
58  :G4VPrimitiveScorer(name,depth),HCID(-1),fDirection(direction),
59   weighted(true),divideByArea(true)
60{
61    DefineUnitAndCategory();
62    SetUnit("percm2");
63}
64
65G4PSCylinderSurfaceCurrent::G4PSCylinderSurfaceCurrent(G4String name, 
66                                                       G4int direction, 
67                                                       const G4String& unit,
68                                                       G4int depth)
69  :G4VPrimitiveScorer(name,depth),HCID(-1),fDirection(direction),
70   weighted(true),divideByArea(true)
71{
72    DefineUnitAndCategory();
73    SetUnit(unit);
74}
75
76G4PSCylinderSurfaceCurrent::~G4PSCylinderSurfaceCurrent()
77{;}
78
79G4bool G4PSCylinderSurfaceCurrent::ProcessHits(G4Step* aStep,G4TouchableHistory*)
80{
81  G4StepPoint* preStep = aStep->GetPreStepPoint();
82  G4VPhysicalVolume* physVol = preStep->GetPhysicalVolume();
83  G4VPVParameterisation* physParam = physVol->GetParameterisation();
84  G4VSolid * solid = 0;
85  if(physParam)
86  { // for parameterized volume
87    G4int idx = ((G4TouchableHistory*)(aStep->GetPreStepPoint()->GetTouchable()))
88                ->GetReplicaNumber(indexDepth);
89    solid = physParam->ComputeSolid(idx, physVol);
90    solid->ComputeDimensions(physParam,idx,physVol);
91  }
92  else
93  { // for ordinary volume
94    solid = physVol->GetLogicalVolume()->GetSolid();
95  }
96
97  G4Tubs* tubsSolid = (G4Tubs*)(solid);
98
99  G4int dirFlag =IsSelectedSurface(aStep,tubsSolid);
100  G4cout << " pos " << preStep->GetPosition() <<" dirFlag " << G4endl;
101  if ( dirFlag > 0 ) {
102    if ( fDirection == fCurrent_InOut || fDirection == dirFlag ){
103      G4TouchableHandle theTouchable = preStep->GetTouchableHandle();
104      //
105      G4double current = 1.0;
106      if ( weighted ) current = preStep->GetWeight(); // Current (Particle Weight)
107      //
108      if ( divideByArea ){
109        G4double square = 2.*tubsSolid->GetZHalfLength()
110          *tubsSolid->GetInnerRadius()* tubsSolid->GetDeltaPhiAngle()/radian;
111        current = current/square;  // Current normalized by Area
112      }
113
114      G4int index = GetIndex(aStep);
115      EvtMap->add(index,current);
116    }
117
118  }
119
120  return TRUE;
121}
122
123G4int G4PSCylinderSurfaceCurrent::IsSelectedSurface(G4Step* aStep, G4Tubs* tubsSolid){
124
125  G4TouchableHandle theTouchable = 
126    aStep->GetPreStepPoint()->GetTouchableHandle();
127  G4double kCarTolerance = G4GeometryTolerance::GetInstance()->GetSurfaceTolerance(); 
128
129  if (aStep->GetPreStepPoint()->GetStepStatus() == fGeomBoundary ){
130    // Entering Geometry
131    G4ThreeVector stppos1= aStep->GetPreStepPoint()->GetPosition();
132    G4ThreeVector localpos1 = 
133      theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos1);
134    if ( std::fabs(localpos1.z()) > tubsSolid->GetZHalfLength() ) return -1;
135    G4double localR2 = localpos1.x()*localpos1.x()+localpos1.y()*localpos1.y();
136    G4double InsideRadius = tubsSolid->GetInnerRadius();
137    if (localR2 > (InsideRadius-kCarTolerance)*(InsideRadius-kCarTolerance)
138        &&localR2 < (InsideRadius+kCarTolerance)*(InsideRadius+kCarTolerance)){
139      return fCurrent_In;
140    }
141  }
142
143  if (aStep->GetPostStepPoint()->GetStepStatus() == fGeomBoundary ){
144    // Exiting Geometry
145    G4ThreeVector stppos2= aStep->GetPostStepPoint()->GetPosition();
146    G4ThreeVector localpos2 = 
147      theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos2);
148    if ( std::fabs(localpos2.z()) > tubsSolid->GetZHalfLength() ) return -1;
149    G4double localR2 = localpos2.x()*localpos2.x()+localpos2.y()*localpos2.y();
150    G4double InsideRadius = tubsSolid->GetInnerRadius();
151    if (localR2 > (InsideRadius-kCarTolerance)*(InsideRadius-kCarTolerance)
152        &&localR2 < (InsideRadius+kCarTolerance)*(InsideRadius+kCarTolerance)){
153      return fCurrent_Out;
154    }
155  }
156
157  return -1;
158}
159
160void G4PSCylinderSurfaceCurrent::Initialize(G4HCofThisEvent* HCE)
161{
162  EvtMap = new G4THitsMap<G4double>(detector->GetName(), GetName());
163  if ( HCID < 0 ) HCID = GetCollectionID(0);
164  HCE->AddHitsCollection(HCID, (G4VHitsCollection*)EvtMap);
165}
166
167void G4PSCylinderSurfaceCurrent::EndOfEvent(G4HCofThisEvent*)
168{;}
169
170void G4PSCylinderSurfaceCurrent::clear(){
171  EvtMap->clear();
172}
173
174void G4PSCylinderSurfaceCurrent::DrawAll()
175{;}
176
177void G4PSCylinderSurfaceCurrent::PrintAll()
178{
179  G4cout << " MultiFunctionalDet  " << detector->GetName() << G4endl;
180  G4cout << " PrimitiveScorer " << GetName() <<G4endl; 
181  G4cout << " Number of entries " << EvtMap->entries() << G4endl;
182  std::map<G4int,G4double*>::iterator itr = EvtMap->GetMap()->begin();
183  for(; itr != EvtMap->GetMap()->end(); itr++) {
184    G4cout << "  copy no.: " << itr->first
185           << "  current  : " ;
186    if ( divideByArea ) {
187        G4cout << *(itr->second)/GetUnitValue() 
188               << " ["<<GetUnit()<<"]";
189    } else {
190        G4cout << *(itr->second) << " [tracks]";
191    }
192    G4cout << G4endl;
193  }
194}
195
196void G4PSCylinderSurfaceCurrent::SetUnit(const G4String& unit)
197{
198    if ( divideByArea ) {
199        CheckAndSetUnit(unit,"Per Unit Surface");
200    } else {
201        if (unit == "" ){
202            unitName = unit;
203            unitValue = 1.0;
204        }else{
205            G4String msg = "Invalid unit ["+unit+"] (Current  unit is [" +GetUnit()+"] )";
206            G4Exception(GetName(),"DetScorer0000",JustWarning,msg);
207        }
208    }
209}
210
211void G4PSCylinderSurfaceCurrent::DefineUnitAndCategory(){
212   // Per Unit Surface
213   new G4UnitDefinition("percentimeter2","percm2","Per Unit Surface",(1./cm2));
214   new G4UnitDefinition("permillimeter2","permm2","Per Unit Surface",(1./mm2));
215   new G4UnitDefinition("permeter2","perm2","Per Unit Surface",(1./m2));
216}
217
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