Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4PVParameterised.hh
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27// $Id$
28//
29//
30// class G4PVParameterised
31//
32// Class description:
33//
34// Represents many touchable detector elements differing in their
35// positioning and dimensions. Both are calculated by means
36// of a G4VParameterisation object. The positioning is assumed to
37// be dominant along a cartesian axis (specified).
38
39// History:
40// 29.07.95 P.Kent First non-stub version
41// ----------------------------------------------------------------------
42#ifndef G4PVPARAMETERISED_HH
43#define G4PVPARAMETERISED_HH
44
45#include "G4PVReplica.hh"
46
48{
49 public: // with description
50
51 G4PVParameterised(const G4String& pName,
52 G4LogicalVolume* pLogical,
53 G4LogicalVolume* pMotherLogical,
54 const EAxis pAxis,
55 const G4int nReplicas,
57 G4bool pSurfChk=false);
58 // Replicate the volume nReplicas Times using the paramaterisation pParam,
59 // within the mother volume pMotherLogical.
60 // The positioning of the replicas is dominant along the specified axis.
61 // pSurfChk if true activates check for overlaps with existing volumes.
62
63 public: // without description
64
65 G4PVParameterised(const G4String& pName,
66 G4LogicalVolume* pLogical,
67 G4VPhysicalVolume* pMother,
68 const EAxis pAxis,
69 const G4int nReplicas,
71 G4bool pSurfChk=false);
72 // Almost exactly similar to first constructor, changing only mother
73 // pointer's type to PhysicalVolume.
74
75 G4PVParameterised(__void__&);
76 // Fake default constructor for usage restricted to direct object
77 // persistency for clients requiring preallocation of memory for
78 // persistifiable objects.
79
80 public: // with description
81
82 virtual ~G4PVParameterised();
83 // Virtual empty destructor.
84
85 G4bool IsParameterised() const;
86 // Returns true to identify it is a parameterised physical volume.
87
89 // Returns the current pointer to the parameterisation.
90
91 void GetReplicationData(EAxis& axis,
92 G4int& nReplicas,
93 G4double& width,
94 G4double& offset,
95 G4bool& consuming) const;
96 // Fills arguments with the attributes from the base replica.
97 virtual void SetRegularStructureId( G4int Code );
98 // Method sets code and can prepare for special type of regular volumes.
99
100 G4bool CheckOverlaps(G4int res=1000, G4double tol=0., G4bool verbose=true);
101 // Verifies if each instance of the parameterised volume is overlapping
102 // with other instances or with the mother volume. Provides default
103 // resolution for the number of points to be generated and verified.
104 // A tolerance for the precision of the overlap check can be specified,
105 // by default it is set to maximum precision.
106 // Returns true if an overlap occurs.
107
108 private:
109
110 G4VPVParameterisation *fparam;
111};
112
113#endif
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
bool G4bool
Definition: G4Types.hh:67
G4bool CheckOverlaps(G4int res=1000, G4double tol=0., G4bool verbose=true)
G4bool IsParameterised() const
void GetReplicationData(EAxis &axis, G4int &nReplicas, G4double &width, G4double &offset, G4bool &consuming) const
G4VPVParameterisation * GetParameterisation() const
virtual void SetRegularStructureId(G4int Code)
#define Code
Definition: deflate.h:70
EAxis
Definition: geomdefs.hh:54