Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4ParameterisationTubs.hh
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25//
26//
27// $Id$
28//
29// classes G4ParameterisationTubsRho
30// G4ParameterisationTubsPhi
31// G4ParameterisationTubsZ
32//
33// Class description:
34//
35// This class represents the parameterised positioning equivalent to
36// dividing a G4Tubs along one of each axis Rho, Phi, Z.
37
38// History:
39// -------
40// 09.05.01 - P.Arce, Initial version
41// 08.04.04 - I.Hrivnacova, Implemented reflection
42// --------------------------------------------------------------------
43#ifndef G4ParameterisationTubsRho_H
44#define G4ParameterisationTubsRho_H 1
45
47
49
50// Dummy declarations to get rid of warnings ...
51//
52class G4Trd;
53class G4Trap;
54class G4Cons;
55class G4Sphere;
56class G4Orb;
57class G4Torus;
58class G4Para;
59class G4Hype;
60class G4Polycone;
61class G4Polyhedra;
62
64{
65 public: // with description
66
67 G4VParameterisationTubs( EAxis axis, G4int nCopies,
68 G4double offset, G4double step,
69 G4VSolid* msolid, DivisionType divType );
70
72};
73
75{
76 public: // with description
77
79 G4double offset, G4double step,
80 G4VSolid* motherSolid, DivisionType divType );
82
84
85 void ComputeTransformation(const G4int copyNo,
86 G4VPhysicalVolume* physVol) const;
87 void ComputeDimensions(G4Tubs& tubs, const G4int copyNo,
88 const G4VPhysicalVolume* physVol) const;
89
90 private: // Dummy declarations to get rid of warnings ...
91
92 void ComputeDimensions (G4Trd&,const G4int,
93 const G4VPhysicalVolume*) const {}
94 void ComputeDimensions (G4Trap&,const G4int,
95 const G4VPhysicalVolume*) const {}
96 void ComputeDimensions (G4Box&,const G4int,
97 const G4VPhysicalVolume*) const {}
98 void ComputeDimensions (G4Sphere&,const G4int,
99 const G4VPhysicalVolume*) const {}
100 void ComputeDimensions (G4Orb&,const G4int,
101 const G4VPhysicalVolume*) const {}
102 void ComputeDimensions (G4Torus&,const G4int,
103 const G4VPhysicalVolume*) const {}
104 void ComputeDimensions (G4Para&,const G4int,
105 const G4VPhysicalVolume*) const {}
106 void ComputeDimensions (G4Hype&,const G4int,
107 const G4VPhysicalVolume*) const {}
108 void ComputeDimensions (G4Cons&,const G4int,
109 const G4VPhysicalVolume*) const {}
111 const G4VPhysicalVolume*) const {}
113 const G4VPhysicalVolume*) const {}
114};
115
116
118{
119 public: // with description
120
122 G4double offset, G4double step,
123 G4VSolid* motherSolid, DivisionType divType );
125
127
128 void ComputeTransformation(const G4int copyNo,
129 G4VPhysicalVolume* physVol) const;
130 void ComputeDimensions(G4Tubs& tubs, const G4int copyNo,
131 const G4VPhysicalVolume* physVol) const;
132
133 private: // Dummy declarations to get rid of warnings ...
134
135 void ComputeDimensions (G4Trd&,const G4int,
136 const G4VPhysicalVolume*) const {}
137 void ComputeDimensions (G4Trap&,const G4int,
138 const G4VPhysicalVolume*) const {}
139 void ComputeDimensions (G4Box&,const G4int,
140 const G4VPhysicalVolume*) const {}
141 void ComputeDimensions (G4Sphere&,const G4int,
142 const G4VPhysicalVolume*) const {}
143 void ComputeDimensions (G4Orb&,const G4int,
144 const G4VPhysicalVolume*) const {}
145 void ComputeDimensions (G4Torus&,const G4int,
146 const G4VPhysicalVolume*) const {}
147 void ComputeDimensions (G4Para&,const G4int,
148 const G4VPhysicalVolume*) const {}
149 void ComputeDimensions (G4Hype&,const G4int,
150 const G4VPhysicalVolume*) const {}
151 void ComputeDimensions (G4Cons&,const G4int,
152 const G4VPhysicalVolume*) const {}
154 const G4VPhysicalVolume*) const {}
156 const G4VPhysicalVolume*) const {}
157};
158
159
161{
162 public: // with description
163
164 G4ParameterisationTubsZ( EAxis axis, G4int nCopies,
165 G4double offset, G4double step,
166 G4VSolid* motherSolid, DivisionType divType );
168
170
171 void ComputeTransformation(const G4int copyNo,
172 G4VPhysicalVolume* physVol) const;
173 void ComputeDimensions(G4Tubs& tubs, const G4int copyNo,
174 const G4VPhysicalVolume* physVol) const;
175
176 private: // Dummy declarations to get rid of warnings ...
177
178 void ComputeDimensions (G4Trd&,const G4int,
179 const G4VPhysicalVolume*) const {}
180 void ComputeDimensions (G4Trap&,const G4int,
181 const G4VPhysicalVolume*) const {}
182 void ComputeDimensions (G4Box&,const G4int,
183 const G4VPhysicalVolume*) const {}
184 void ComputeDimensions (G4Sphere&,const G4int,
185 const G4VPhysicalVolume*) const {}
186 void ComputeDimensions (G4Orb&,const G4int,
187 const G4VPhysicalVolume*) const {}
188 void ComputeDimensions (G4Torus&,const G4int,
189 const G4VPhysicalVolume*) const {}
190 void ComputeDimensions (G4Para&,const G4int,
191 const G4VPhysicalVolume*) const {}
192 void ComputeDimensions (G4Hype&,const G4int,
193 const G4VPhysicalVolume*) const {}
194 void ComputeDimensions (G4Cons&,const G4int,
195 const G4VPhysicalVolume*) const {}
197 const G4VPhysicalVolume*) const {}
199 const G4VPhysicalVolume*) const {}
200};
201
202#endif
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
Definition: G4Box.hh:55
Definition: G4Cons.hh:75
Definition: G4Hype.hh:67
Definition: G4Orb.hh:52
Definition: G4Para.hh:77
void ComputeDimensions(G4Tubs &tubs, const G4int copyNo, const G4VPhysicalVolume *physVol) const
void ComputeTransformation(const G4int copyNo, G4VPhysicalVolume *physVol) const
void ComputeDimensions(G4Tubs &tubs, const G4int copyNo, const G4VPhysicalVolume *physVol) const
void ComputeTransformation(const G4int copyNo, G4VPhysicalVolume *physVol) const
void ComputeTransformation(const G4int copyNo, G4VPhysicalVolume *physVol) const
void ComputeDimensions(G4Tubs &tubs, const G4int copyNo, const G4VPhysicalVolume *physVol) const
Definition: G4Trd.hh:63
Definition: G4Tubs.hh:77
EAxis
Definition: geomdefs.hh:54