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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // >> 26 // >> 27 // $Id:$ >> 28 // >> 29 // >> 30 // -------------------------------------------------------------------- >> 31 // GEANT 4 class header file >> 32 // >> 33 // 26 // G4UTubs 34 // G4UTubs 27 // 35 // 28 // Class description: 36 // Class description: 29 // 37 // 30 // Wrapper class for G4Tubs to make use of Vec << 38 // Wrapper class for UTubs to make use of UTubs from USolids module. 31 39 >> 40 // History: 32 // 30.10.13 G.Cosmo, CERN/PH 41 // 30.10.13 G.Cosmo, CERN/PH 33 // ------------------------------------------- 42 // -------------------------------------------------------------------- >> 43 34 #ifndef G4UTUBS_HH 44 #ifndef G4UTUBS_HH 35 #define G4UTUBS_HH 45 #define G4UTUBS_HH 36 46 37 #include "G4UAdapter.hh" << 47 #include "G4USolid.hh" 38 << 39 #if ( defined(G4GEOM_USE_USOLIDS) || defined(G << 40 48 41 #include <VecGeom/volumes/UnplacedTube.h> << 49 #if defined(G4GEOM_USE_USOLIDS) 42 50 >> 51 #include "" 43 #include "G4Polyhedron.hh" 52 #include "G4Polyhedron.hh" 44 53 45 class G4UTubs : public G4UAdapter<vecgeom::Gen << 54 class G4UTubs : public G4USolid 46 { 55 { 47 using Shape_t = vecgeom::GenericUnplacedTube << 48 using Base_t = G4UAdapter<vecgeom::GenericUn << 49 << 50 public: // with description 56 public: // with description 51 57 52 G4UTubs( const G4String& pName, 58 G4UTubs( const G4String& pName, 53 G4double pRMin, 59 G4double pRMin, 54 G4double pRMax, 60 G4double pRMax, 55 G4double pDz, 61 G4double pDz, 56 G4double pSPhi, 62 G4double pSPhi, 57 G4double pDPhi ); 63 G4double pDPhi ); 58 // Constructs a tubs with the given name 64 // Constructs a tubs with the given name and dimensions 59 65 60 ~G4UTubs() override; << 66 ~G4UTubs(); 61 67 62 void ComputeDimensions( G4VPVParamet 68 void ComputeDimensions( G4VPVParameterisation* p, 63 const G4int n, 69 const G4int n, 64 const G4VPhysicalV << 70 const G4VPhysicalVolume* pRep ); 65 << 66 G4VSolid* Clone() const override; << 67 71 68 G4double GetInnerRadius () const; << 72 G4VSolid* Clone() const; 69 G4double GetOuterRadius () const; << 70 G4double GetZHalfLength () const; << 71 G4double GetStartPhiAngle () const; << 72 G4double GetDeltaPhiAngle () const; << 73 G4double GetSinStartPhi () const; << 74 G4double GetCosStartPhi () const; << 75 G4double GetSinEndPhi () const; << 76 G4double GetCosEndPhi () const; << 77 << 78 void SetInnerRadius (G4double newRMin); << 79 void SetOuterRadius (G4double newRMax); << 80 void SetZHalfLength (G4double newDz); << 81 void SetStartPhiAngle (G4double newSPhi, G << 82 void SetDeltaPhiAngle (G4double newDPhi); << 83 << 84 inline G4GeometryType GetEntityType() cons << 85 << 86 void BoundingLimits(G4ThreeVector& pMin, G << 87 << 88 G4bool CalculateExtent(const EAxis pAxis, << 89 const G4VoxelLimits << 90 const G4AffineTrans << 91 G4double& pMin, G4d << 92 73 93 G4Polyhedron* CreatePolyhedron() const ove << 74 inline UTubs* GetShape() const; 94 75 >> 76 inline G4double GetInnerRadius () const; >> 77 inline G4double GetOuterRadius () const; >> 78 inline G4double GetZHalfLength () const; >> 79 inline G4double GetStartPhiAngle () const; >> 80 inline G4double GetDeltaPhiAngle () const; >> 81 >> 82 inline void SetInnerRadius (G4double newRMin); >> 83 inline void SetOuterRadius (G4double newRMax); >> 84 inline void SetZHalfLength (G4double newDz); >> 85 inline void SetStartPhiAngle (G4double newSPhi, G4bool trig=true); >> 86 inline void SetDeltaPhiAngle (G4double newDPhi); >> 87 95 public: // without description 88 public: // without description 96 89 97 G4UTubs(__void__&); 90 G4UTubs(__void__&); 98 // Fake default constructor for usage re 91 // Fake default constructor for usage restricted to direct object 99 // persistency for clients requiring pre 92 // persistency for clients requiring preallocation of memory for 100 // persistifiable objects. 93 // persistifiable objects. 101 94 102 G4UTubs(const G4UTubs& rhs); 95 G4UTubs(const G4UTubs& rhs); 103 G4UTubs& operator=(const G4UTubs& rhs); << 96 G4UTubs& operator=(const G4UTubs& rhs); 104 // Copy constructor and assignment opera 97 // Copy constructor and assignment operator. 105 << 98 106 }; 99 }; 107 100 108 // ------------------------------------------- 101 // -------------------------------------------------------------------- 109 // Inline methods 102 // Inline methods 110 // ------------------------------------------- 103 // -------------------------------------------------------------------- 111 104 112 inline G4GeometryType G4UTubs::GetEntityType() << 105 inline UTubs* G4UTubs::GetShape() const >> 106 { >> 107 return (UTubs*) fShape; >> 108 } >> 109 >> 110 inline G4double G4UTubs::GetInnerRadius() const >> 111 { >> 112 return GetShape()->GetInnerRadius(); >> 113 } >> 114 inline G4double G4UTubs::GetOuterRadius() const >> 115 { >> 116 return GetShape()->GetOuterRadius(); >> 117 } >> 118 inline G4double G4UTubs::GetZHalfLength() const >> 119 { >> 120 return GetShape()->GetZHalfLength(); >> 121 } >> 122 inline G4double G4UTubs::GetStartPhiAngle() const >> 123 { >> 124 return GetShape()->GetStartPhiAngle(); >> 125 } >> 126 inline G4double G4UTubs::GetDeltaPhiAngle() const >> 127 { >> 128 return GetShape()->GetDeltaPhiAngle(); >> 129 } >> 130 >> 131 inline void G4UTubs::SetInnerRadius(G4double newRMin) >> 132 { >> 133 GetShape()->SetInnerRadius(newRMin); >> 134 fRebuildPolyhedron = true; >> 135 } >> 136 inline void G4UTubs::SetOuterRadius(G4double newRMax) >> 137 { >> 138 GetShape()->SetOuterRadius(newRMax); >> 139 fRebuildPolyhedron = true; >> 140 } >> 141 inline void G4UTubs::SetZHalfLength(G4double newDz) >> 142 { >> 143 GetShape()->SetZHalfLength(newDz); >> 144 fRebuildPolyhedron = true; >> 145 } >> 146 inline void G4UTubs::SetStartPhiAngle(G4double newSPhi, G4bool trig) >> 147 { >> 148 GetShape()->SetStartPhiAngle(newSPhi, trig); >> 149 fRebuildPolyhedron = true; >> 150 } >> 151 inline void G4UTubs::SetDeltaPhiAngle(G4double newDPhi) 113 { 152 { 114 return "G4Tubs"; << 153 GetShape()->SetDeltaPhiAngle(newDPhi); >> 154 fRebuildPolyhedron = true; 115 } 155 } 116 156 117 #endif // G4GEOM_USE_USOLIDS 157 #endif // G4GEOM_USE_USOLIDS 118 158 119 #endif 159 #endif 120 160