Import Geant4 11.4.0 source tree
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@@ -29,7 +29,7 @@
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//
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// Wrapper class for G4Torus to make use of VecGeom Torus.
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// 19.08.15 Guilherme Lima, FNAL
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// Author: Guilherme Lima (FNAL), 19.08.2015
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// --------------------------------------------------------------------
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#ifndef G4UTORUS_HH
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#define G4UTORUS_HH
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@@ -42,6 +42,10 @@
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#include "G4Polyhedron.hh"
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/**
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* @brief G4UTorus is a wrapper class for G4Torus to make use of VecGeom Torus.
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*/
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class G4UTorus : public G4UAdapter<vecgeom::UnplacedTorus2>
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{
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using Shape_t = vecgeom::UnplacedTorus2;
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@@ -49,19 +53,42 @@ class G4UTorus : public G4UAdapter<vecgeom::UnplacedTorus2>
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public:
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/**
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* Constructs a torus or torus segment with the given name and dimensions.
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* @param[in] pName The name of the solid.
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* @param[in] rmin Inner radius.
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* @param[in] rmax Outer radius.
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* @param[in] rtor Swept radius of torus.
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* @param[in] sPhi Starting Phi angle in radians
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* adjusted such that fSPhi+fDPhi<=2PI, fSPhi>-2PI.
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* @param[in] dPhi Delta angle of the segment in radians.
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*/
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G4UTorus(const G4String& pName,
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G4double rmin, G4double rmax, G4double rtor,
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G4double sphi, G4double dphi);
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// Constructs a torus with name and geometrical parameters
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~G4UTorus() override;
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/**
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* Default destructor.
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*/
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~G4UTorus() override = default;
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/**
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* Dispatch method for parameterisation replication mechanism and
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* dimension computation.
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*/
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void ComputeDimensions(G4VPVParameterisation* p,
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const G4int n,
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const G4VPhysicalVolume* pRep) override;
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/**
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* Makes a clone of the object for use in multi-treading.
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* @returns A pointer to the new cloned allocated solid.
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*/
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G4VSolid* Clone() const override;
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/**
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* Accessors.
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*/
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G4double GetRmin() const;
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G4double GetRmax() const;
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G4double GetRtor() const;
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@@ -72,29 +99,58 @@ class G4UTorus : public G4UAdapter<vecgeom::UnplacedTorus2>
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G4double GetSinEndPhi () const;
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G4double GetCosEndPhi () const;
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/**
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* Modifiers.
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*/
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void SetRmin(G4double arg);
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void SetRmax(G4double arg);
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void SetRtor(G4double arg);
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void SetSPhi(G4double arg);
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void SetDPhi(G4double arg);
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/**
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* Checks and sets all the parameters given in input. Used in constructor.
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*/
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void SetAllParameters(G4double arg1, G4double arg2,
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G4double arg3, G4double arg4, G4double arg5);
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/**
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* Returns the type ID, "G4Torus" of the solid.
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*/
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inline G4GeometryType GetEntityType() const override;
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/**
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* Computes the bounding limits of the solid.
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* @param[out] pMin The minimum bounding limit point.
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* @param[out] pMax The maximum bounding limit point.
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*/
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void BoundingLimits(G4ThreeVector& pMin, G4ThreeVector& pMax) const override;
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/**
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* Calculates the minimum and maximum extent of the solid, when under the
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* specified transform, and within the specified limits.
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* @param[in] pAxis The axis along which compute the extent.
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* @param[in] pVoxelLimit The limiting space dictated by voxels.
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* @param[in] pTransform The internal transformation applied to the solid.
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* @param[out] pMin The minimum extent value.
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* @param[out] pMax The maximum extent value.
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* @returns True if the solid is intersected by the extent region.
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*/
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G4bool CalculateExtent(const EAxis pAxis,
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const G4VoxelLimits& pVoxelLimit,
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const G4AffineTransform& pTransform,
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G4double& pmin, G4double& pmax) const override;
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G4double& pMin, G4double& pMax) const override;
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/**
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* Returns a generated polyhedron as graphical representations.
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*/
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G4Polyhedron* CreatePolyhedron() const override;
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/**
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* Copy constructor and assignment operator.
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*/
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G4UTorus(const G4UTorus& rhs);
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G4UTorus& operator=(const G4UTorus& rhs);
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// Copy constructor and assignment operator.
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};
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// --------------------------------------------------------------------
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