Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4PSFlatSurfaceCurrent.cc
Go to the documentation of this file.
1//
2// ********************************************************************
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25//
26//
27// $Id$
28//
29// G4PSFlatSurfaceCurrent
31
32#include "G4SystemOfUnits.hh"
33#include "G4StepStatus.hh"
34#include "G4Track.hh"
35#include "G4VSolid.hh"
36#include "G4VPhysicalVolume.hh"
38#include "G4UnitsTable.hh"
40////////////////////////////////////////////////////////////////////////////////
41// (Description)
42// This is a primitive scorer class for scoring only Surface Flux.
43// Current version assumes only for G4Box shape.
44//
45// Surface is defined at the -Z surface.
46// Direction -Z +Z
47// 0 IN || OUT ->|<- |
48// 1 IN ->| |
49// 2 OUT |<- |
50//
51// Created: 2005-11-14 Tsukasa ASO, Akinori Kimura.
52// 17-Nov-2005 T.Aso, Bug fix for area definition.
53// 31-Mar-2007 T.Aso, Add option for normalizing by the area.
54// 2010-07-22 Introduce Unit specification.
55//
56///////////////////////////////////////////////////////////////////////////////
57
58
60 G4int direction, G4int depth)
61 :G4VPrimitiveScorer(name,depth),HCID(-1),fDirection(direction),
62 weighted(true),divideByArea(true)
63{
65 SetUnit("percm2");
66}
67
69 G4int direction,
70 const G4String& unit,
71 G4int depth)
72 :G4VPrimitiveScorer(name,depth),HCID(-1),fDirection(direction),
73 weighted(true),divideByArea(true)
74{
76 SetUnit(unit);
77}
78
80{;}
81
83{
84 G4StepPoint* preStep = aStep->GetPreStepPoint();
85 G4VPhysicalVolume* physVol = preStep->GetPhysicalVolume();
86 G4VPVParameterisation* physParam = physVol->GetParameterisation();
87 G4VSolid * solid = 0;
88 if(physParam)
89 { // for parameterized volume
91 ->GetReplicaNumber(indexDepth);
92 solid = physParam->ComputeSolid(idx, physVol);
93 solid->ComputeDimensions(physParam,idx,physVol);
94 }
95 else
96 { // for ordinary volume
97 solid = physVol->GetLogicalVolume()->GetSolid();
98 }
99
100 G4Box* boxSolid = (G4Box*)(solid);
101
102 G4int dirFlag =IsSelectedSurface(aStep,boxSolid);
103 if ( dirFlag > 0 ) {
104 if ( fDirection == fCurrent_InOut || fDirection == dirFlag ){
105 G4int index = GetIndex(aStep);
106 G4TouchableHandle theTouchable = preStep->GetTouchableHandle();
107 G4double current = 1.0;
108 if ( weighted ) current=preStep->GetWeight(); // Current (Particle Weight)
109 if ( divideByArea ){
110 G4double square = 4.*boxSolid->GetXHalfLength()*boxSolid->GetYHalfLength();
111 current = current/square; // Normalized by Area
112 }
113 EvtMap->add(index,current);
114 }
115 }
116
117 return TRUE;
118}
119
121
122 G4TouchableHandle theTouchable =
125
126 if (aStep->GetPreStepPoint()->GetStepStatus() == fGeomBoundary ){
127 // Entering Geometry
128 G4ThreeVector stppos1= aStep->GetPreStepPoint()->GetPosition();
129 G4ThreeVector localpos1 =
130 theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos1);
131 if(std::fabs( localpos1.z() + boxSolid->GetZHalfLength())<kCarTolerance ){
132 return fCurrent_In;
133 }
134 }
135
136 if (aStep->GetPostStepPoint()->GetStepStatus() == fGeomBoundary ){
137 // Exiting Geometry
138 G4ThreeVector stppos2= aStep->GetPostStepPoint()->GetPosition();
139 G4ThreeVector localpos2 =
140 theTouchable->GetHistory()->GetTopTransform().TransformPoint(stppos2);
141 if(std::fabs( localpos2.z() + boxSolid->GetZHalfLength())<kCarTolerance ){
142 return fCurrent_Out;
143 }
144 }
145
146 return -1;
147}
148
150{
151 EvtMap = new G4THitsMap<G4double>(detector->GetName(), GetName());
152 if ( HCID < 0 ) HCID = GetCollectionID(0);
153 HCE->AddHitsCollection(HCID, (G4VHitsCollection*)EvtMap);
154}
155
157{;}
158
160 EvtMap->clear();
161}
162
164{;}
165
167{
168 G4cout << " MultiFunctionalDet " << detector->GetName() << G4endl;
169 G4cout << " PrimitiveScorer " << GetName() <<G4endl;
170 G4cout << " Number of entries " << EvtMap->entries() << G4endl;
171 std::map<G4int,G4double*>::iterator itr = EvtMap->GetMap()->begin();
172 for(; itr != EvtMap->GetMap()->end(); itr++) {
173 G4cout << " copy no.: " << itr->first << " current : " ;
174 if ( divideByArea ) {
175 G4cout << *(itr->second)/GetUnitValue()
176 << " ["<<GetUnit()<<"]";
177 }else {
178 G4cout << *(itr->second)/GetUnitValue() << " [tracks]";
179 }
180 G4cout << G4endl;
181 }
182}
183
185{
186 if ( divideByArea ) {
187 CheckAndSetUnit(unit,"Per Unit Surface");
188 } else {
189 if (unit == "" ){
190 unitName = unit;
191 unitValue = 1.0;
192 }else{
193 G4String msg = "Invalid unit ["+unit+"] (Current unit is [" +GetUnit()+"] ) for " + GetName();
194 G4Exception("G4PSFlatSurfaceCurrent::SetUnit","DetPS0007",JustWarning,msg);
195 }
196 }
197}
198
200 // Per Unit Surface
201 new G4UnitDefinition("percentimeter2","percm2","Per Unit Surface",(1./cm2));
202 new G4UnitDefinition("permillimeter2","permm2","Per Unit Surface",(1./mm2));
203 new G4UnitDefinition("permeter2","perm2","Per Unit Surface",(1./m2));
204}
205
@ JustWarning
@ fCurrent_Out
@ fCurrent_In
@ fCurrent_InOut
@ fGeomBoundary
Definition: G4StepStatus.hh:54
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
bool G4bool
Definition: G4Types.hh:67
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout
double z() const
G4ThreeVector TransformPoint(const G4ThreeVector &vec) const
Definition: G4Box.hh:55
G4double GetYHalfLength() const
G4double GetZHalfLength() const
G4double GetXHalfLength() const
G4double GetSurfaceTolerance() const
static G4GeometryTolerance * GetInstance()
void AddHitsCollection(G4int HCID, G4VHitsCollection *aHC)
G4VSolid * GetSolid() const
const G4AffineTransform & GetTopTransform() const
G4int IsSelectedSurface(G4Step *, G4Box *)
virtual void EndOfEvent(G4HCofThisEvent *)
virtual void SetUnit(const G4String &unit)
G4PSFlatSurfaceCurrent(G4String name, G4int direction, G4int depth=0)
virtual G4bool ProcessHits(G4Step *, G4TouchableHistory *)
virtual void Initialize(G4HCofThisEvent *)
G4StepStatus GetStepStatus() const
const G4VTouchable * GetTouchable() const
const G4ThreeVector & GetPosition() const
const G4TouchableHandle & GetTouchableHandle() const
G4VPhysicalVolume * GetPhysicalVolume() const
G4double GetWeight() const
Definition: G4Step.hh:78
G4StepPoint * GetPreStepPoint() const
G4StepPoint * GetPostStepPoint() const
G4int add(const G4int &key, T *&aHit) const
Definition: G4THitsMap.hh:138
std::map< G4int, T * > * GetMap() const
Definition: G4THitsMap.hh:68
G4int entries() const
Definition: G4THitsMap.hh:79
void clear()
Definition: G4THitsMap.hh:209
virtual G4VSolid * ComputeSolid(const G4int, G4VPhysicalVolume *)
G4LogicalVolume * GetLogicalVolume() const
virtual G4VPVParameterisation * GetParameterisation() const =0
virtual G4int GetIndex(G4Step *)
G4String GetName() const
const G4String & GetUnit() const
G4MultiFunctionalDetector * detector
G4int GetCollectionID(G4int)
void CheckAndSetUnit(const G4String &unit, const G4String &category)
G4double GetUnitValue() const
virtual void ComputeDimensions(G4VPVParameterisation *p, const G4int n, const G4VPhysicalVolume *pRep)
Definition: G4VSolid.cc:137
virtual const G4NavigationHistory * GetHistory() const
Definition: G4VTouchable.cc:86
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *comments)
Definition: G4Exception.cc:41
#define TRUE
Definition: globals.hh:55