Geant4-11
G4tgbVolume.hh
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25//
26// G4tgbVolume
27//
28// Class description:
29//
30// Class to manage the geometry info of any detector unit. The detector units
31// created in this class are essentially transient copies of Geant4 physical
32// volumes. Thus, they are characterized by a name and the parameters of a
33// Geant4 physical volume.
34// They have associated several detector positions, that can be instances of
35// G4tgrPlace, G4tgrPlaceDivRep or G4tgrPlaceParameterisation.
36// Each detector positioning is done inside a parent. As there can be several
37// parents, we will write one parent for each detector position, even if that
38// means that parents are repeated.
39
40// Author: P.Arce, CIEMAT (November 2007)
41// --------------------------------------------------------------------
42#ifndef G4tgbVolume_hh
43#define G4tgbVolume_hh 1
44
45#include <map>
46
47#include "globals.hh"
48#include "G4tgrVolume.hh"
49#include "geomdefs.hh"
50
51class G4tgrPlace;
52class G4tgrSolid;
53class G4VSolid;
54class G4LogicalVolume;
57
59{
60 public:
61
65
66 void ConstructG4Volumes(const G4tgrPlace* place,
67 const G4LogicalVolume* parentLV);
68 // Construct the G4VSolid, G4LogicalVolume and the G4VPhysicalVolume
69 // of copy 'copyNo'
70
72 // Construct the G4VSolid from the data of the corresponding G4tgrVolume.
73 // Allow to use data from another G4tgrVolume, needed by Boolean solids
74 // (that have to construct two solids and then do the Boolean operation)
75
77 // Construct the G4LogicalVolume and then call the construction of
78 // volumes that are positioned inside this LV
79
81 const G4LogicalVolume* currentLV,
82 const G4LogicalVolume* parentLV);
83 // Construct the G4VPhysicalVolume placing 'curentLV' with position
84 // given by the G4tgrPlace 'copyNo' inside 'parentLV'
85
87 std::map<G4String, G4double> cuts);
89 std::map<G4String, G4double> cuts);
90
91 void CheckNoSolidParams(const G4String& solidType,
92 const unsigned int NoParamExpected,
93 const unsigned int NoParam);
94 // Before building a solid of type 'solydType', check if the number
95 // of paramenters is the expected one
96
97 G4VSolid* BuildSolidForDivision(G4VSolid* parentSolid, EAxis axis);
98
99 const G4String& GetName() const { return theTgrVolume->GetName(); }
101 const G4double* GetColour() const { return theTgrVolume->GetColour(); }
102
103 private:
104
106 // The G4tgrVolume to which it corresponds
107
109};
110
111#endif
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
G4VPhysicalVolume * ConstructG4PhysVol(const G4tgrPlace *place, const G4LogicalVolume *currentLV, const G4LogicalVolume *parentLV)
Definition: G4tgbVolume.cc:896
const G4String & GetName() const
Definition: G4tgbVolume.hh:99
void SetCutsInEnergy(G4LogicalVolume *logvol, std::map< G4String, G4double > cuts)
G4VSolid * FindOrConstructG4Solid(const G4tgrSolid *vol)
Definition: G4tgbVolume.cc:205
void CheckNoSolidParams(const G4String &solidType, const unsigned int NoParamExpected, const unsigned int NoParam)
Definition: G4tgbVolume.cc:789
G4VSolid * BuildSolidForDivision(G4VSolid *parentSolid, EAxis axis)
void SetCutsInRange(G4LogicalVolume *logvol, std::map< G4String, G4double > cuts)
G4LogicalVolume * ConstructG4LogVol(const G4VSolid *solid)
Definition: G4tgbVolume.cc:807
const G4double * GetColour() const
Definition: G4tgbVolume.hh:101
G4AssemblyVolume * theG4AssemblyVolume
Definition: G4tgbVolume.hh:108
void ConstructG4Volumes(const G4tgrPlace *place, const G4LogicalVolume *parentLV)
Definition: G4tgbVolume.cc:125
G4bool GetVisibility() const
Definition: G4tgbVolume.hh:100
G4tgrVolume * theTgrVolume
Definition: G4tgbVolume.hh:105
G4bool GetVisibility() const
Definition: G4tgrVolume.hh:90
const G4String & GetName() const
Definition: G4tgrVolume.hh:83
G4double * GetColour() const
Definition: G4tgrVolume.hh:91
EAxis
Definition: geomdefs.hh:54