source: trunk/source/geometry/management/include/G4VNestedParameterisation.hh @ 1202

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27// $Id: G4VNestedParameterisation.hh,v 1.6 2006/06/29 18:32:29 gunter Exp $
28// GEANT4 tag $Name: geant4-09-02-ref-02 $
29//
30// class G4VNestedParameterisation
31//
32// Class description:
33//
34// Base class for parameterisations that use information from the parent
35// volume to compute the material of a copy/instance of this volume.
36// This is in addition to using the current replication number.
37//
38// Notes:
39//  - Such a volume can be nested inside a placement volume or a parameterised 
40//    volume.
41//  - The user can modify the solid type, size or transformation using only
42//    the replication number of this parameterised volume.
43//    He/she is NOT allowed to change these attributes using information of
44//    parent volumes - otherwise incorrect results will occur.
45//  Also note that the usual restrictions apply:
46//   - the mother volume, in which these copies are placed, must always be
47//     of the same dimensions
48
49// History:
50// 24.02.05 - J.Apostolakis - First created version.
51// --------------------------------------------------------------------
52#ifndef G4VNESTEDPARAMETERISATION_HH
53#define G4VNESTEDPARAMETERISATION_HH
54
55#include "G4Types.hh"
56#include "G4VPVParameterisation.hh"
57#include "G4VVolumeMaterialScanner.hh"
58
59class G4VPhysicalVolume;
60class G4VTouchable; 
61class G4VSolid;
62class G4Material;
63
64// CSG Entities which may be parameterised/replicated
65//
66class G4Box;
67class G4Tubs;
68class G4Trd;
69class G4Trap;
70class G4Cons;
71class G4Sphere;
72class G4Orb;
73class G4Torus;
74class G4Para;
75class G4Polycone;
76class G4Polyhedra;
77class G4Hype;
78
79class G4VNestedParameterisation: public G4VPVParameterisation, 
80                                 public G4VVolumeMaterialScanner
81{
82  public:  // with description
83
84    G4VNestedParameterisation(); 
85    virtual ~G4VNestedParameterisation(); 
86
87    // Methods required in derived classes
88    // -----------------------------------
89
90    virtual G4Material* ComputeMaterial(G4VPhysicalVolume* currentVol,
91                                        const G4int repNo, 
92                                        const G4VTouchable* parentTouch=0) = 0;
93      // Required method, as it is the reason for this class.
94      // Must cope with parentTouch=0 for navigator's SetupHierarchy.
95
96    virtual G4int       GetNumberOfMaterials() const=0;
97    virtual G4Material* GetMaterial(G4int idx) const=0;
98      // Needed to define materials for instances of Nested Parameterisation
99      // Current convention: each call should return the materials
100      // of all instances with the same mother/ancestor volume.
101
102    virtual void ComputeTransformation(const G4int no,
103                                       G4VPhysicalVolume* currentPV) const = 0;
104
105    // Methods optional in derived classes
106    // -----------------------------------
107
108    virtual G4VSolid* ComputeSolid(const G4int no, G4VPhysicalVolume *thisVol);
109      // Additional standard parameterisation methods,
110      // which can be optionally defined, in case solid is used.
111
112    virtual void ComputeDimensions(G4Box &,
113                                   const G4int,
114                                   const G4VPhysicalVolume *) const {}
115
116    virtual void ComputeDimensions(G4Tubs &,
117                                   const G4int,
118                                   const G4VPhysicalVolume *) const {}
119
120    virtual void ComputeDimensions(G4Trd &,
121                                   const G4int,
122                                   const G4VPhysicalVolume *) const {}
123
124    virtual void ComputeDimensions(G4Trap &,
125                                   const G4int,
126                                   const G4VPhysicalVolume *) const {}
127
128    virtual void ComputeDimensions(G4Cons &,
129                                   const G4int,
130                                   const G4VPhysicalVolume *) const {}
131
132    virtual void ComputeDimensions(G4Sphere &,
133                                   const G4int,
134                                   const G4VPhysicalVolume *) const {}
135
136    virtual void ComputeDimensions(G4Orb &,
137                                   const G4int,
138                                   const G4VPhysicalVolume *) const {}
139
140    virtual void ComputeDimensions(G4Torus &,
141                                   const G4int,
142                                   const G4VPhysicalVolume *) const {}
143
144    virtual void ComputeDimensions(G4Para &,
145                                   const G4int,
146                                   const G4VPhysicalVolume *) const {}
147
148    virtual void ComputeDimensions(G4Polycone &,
149                                   const G4int,
150                                   const G4VPhysicalVolume *) const {}
151
152    virtual void ComputeDimensions(G4Polyhedra &,
153                                   const G4int,
154                                   const G4VPhysicalVolume *) const {}
155
156    virtual void ComputeDimensions(G4Hype &,
157                                   const G4int,
158                                   const G4VPhysicalVolume *) const {}
159 
160
161    G4Material* ComputeMaterial(const G4int repNo, 
162                                      G4VPhysicalVolume *currentVol,
163                                const G4VTouchable *parentTouch=0);
164      // Method implemented in this class in terms of the above
165      // ComputeMaterial() method.
166
167    virtual G4bool IsNested() const;
168    virtual G4VVolumeMaterialScanner* GetMaterialScanner(); 
169      // Methods to identify nested parameterisations. Required in order
170      // to enable material scan for nested parameterisations.
171};
172
173#endif
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