Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4LogicalBorderSurface.cc
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27// $Id$
28//
29// --------------------------------------------------------------------
30// G4LogicalBorderSurface Implementation
31// --------------------------------------------------------------------
32//
33// A Logical Surface class for surfaces defined by the boundary
34// of two physical volumes.
35//
36// Created: 1997-06-26
37// Author: John Apostolakis (John.Apostolakis@cern.ch)
38//
39// ----------------------------------------------------------------------
40
42#include "G4VPhysicalVolume.hh"
43
44G4LogicalBorderSurfaceTable G4LogicalBorderSurface::theBorderSurfaceTable;
45
46//
47// Constructor & destructor
48//
49
51 G4VPhysicalVolume* vol1,
53 G4SurfaceProperty* surfaceProperty)
54 : G4LogicalSurface(name, surfaceProperty),
55 Volume1(vol1), Volume2(vol2)
56{
57 // Store in the table of Surfaces
58 //
59 theBorderSurfaceTable.push_back(this);
60}
61
64 : G4LogicalSurface(right.GetName(), right.GetSurfaceProperty())
65{
67 Volume1 = right.Volume1;
68 Volume2 = right.Volume2;
69 theBorderSurfaceTable = right.theBorderSurfaceTable;
70}
71
73{
74}
75
76//
77// Operators
78//
79
81G4LogicalBorderSurface::operator=(const G4LogicalBorderSurface &right)
82{
83 if (&right == this) return *this;
84 if (&right)
85 {
87 SetName(right.GetName());
89 Volume1 = right.Volume1;
90 Volume2 = right.Volume2;
91 theBorderSurfaceTable = right.theBorderSurfaceTable;
92 }
93 return *this;
94}
95
98{
99 return (this == (G4LogicalBorderSurface *) &right);
100}
101
102G4int
104{
105 return (this != (G4LogicalBorderSurface *) &right);
106}
107
108//
109// Methods
110//
111
113{
114 return &theBorderSurfaceTable;
115}
116
118{
119 return theBorderSurfaceTable.size();
120}
121
124 const G4VPhysicalVolume* vol2)
125{
126 for (size_t i=0; i<theBorderSurfaceTable.size(); i++)
127 {
128 if( (theBorderSurfaceTable[i]->GetVolume1() == vol1) &&
129 (theBorderSurfaceTable[i]->GetVolume2() == vol2) )
130 return theBorderSurfaceTable[i];
131 }
132 return NULL;
133}
134
135// Dump info for known surfaces
136//
138{
139 G4cout << "***** Surface Table : Nb of Surfaces = "
140 << GetNumberOfBorderSurfaces() << " *****" << G4endl;
141
142 for (size_t i=0; i<theBorderSurfaceTable.size(); i++)
143 {
144 G4LogicalBorderSurface* pBorderSurface = theBorderSurfaceTable[i];
145 G4cout << pBorderSurface->GetName() << " : " << G4endl
146 << " Border of volumes "
147 << pBorderSurface->GetVolume1()->GetName() << " and "
148 << pBorderSurface->GetVolume2()->GetName()
149 << G4endl;
150 }
151 G4cout << G4endl;
152}
153
155{
156 G4LogicalBorderSurfaceTable::iterator pos;
157 for(pos=theBorderSurfaceTable.begin();
158 pos!=theBorderSurfaceTable.end(); pos++)
159 {
160 if (*pos) delete *pos;
161 }
162 theBorderSurfaceTable.clear();
163}
std::vector< G4LogicalBorderSurface * > G4LogicalBorderSurfaceTable
int G4int
Definition: G4Types.hh:66
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout
G4int operator==(const G4LogicalBorderSurface &right) const
static G4LogicalBorderSurface * GetSurface(const G4VPhysicalVolume *vol1, const G4VPhysicalVolume *vol2)
static const G4LogicalBorderSurfaceTable * GetSurfaceTable()
const G4VPhysicalVolume * GetVolume2() const
G4LogicalBorderSurface(const G4String &name, G4VPhysicalVolume *vol1, G4VPhysicalVolume *vol2, G4SurfaceProperty *surfaceProperty)
const G4VPhysicalVolume * GetVolume1() const
static size_t GetNumberOfBorderSurfaces()
G4int operator!=(const G4LogicalBorderSurface &right) const
const G4String & GetName() const
void SetName(const G4String &name)
G4SurfaceProperty * GetSurfaceProperty() const
G4TransitionRadiationSurface * GetTransitionRadiationSurface() const
void SetTransitionRadiationSurface(G4TransitionRadiationSurface *tRadSurf)
void SetSurfaceProperty(G4SurfaceProperty *ptrSurfaceProperty)
const G4String & GetName() const