Import Geant4 11.4.0 source tree
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@@ -30,8 +30,8 @@
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// These classes represent the parameterised positioning equivalent to
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// dividing a G4Cons along one of each axis Rho, Phi, Z.
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// 09.05.01 - P.Arce, Initial version
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// 08.04.04 - I.Hrivnacova, Implemented reflection
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// Author: Pedro Arce (CIEMAT), 09.05.2001 - Initial version
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// Ivana Hrivnacova (Orsay), 08.04.2004 - Implemented reflection
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// --------------------------------------------------------------------
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#ifndef G4PARAMETERISATIONCONS_HH
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#define G4PARAMETERISATIONCONS_HH 1
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@@ -56,28 +56,72 @@ class G4Tubs;
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class G4Polycone;
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class G4Polyhedra;
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/**
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* @brief G4VParameterisationCons is the base class for the parameterised
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* positioning equivalent to dividing a G4Cons along one of each axis Rho,
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* Phi, Z.
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*/
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class G4VParameterisationCons : public G4VDivisionParameterisation
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{
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public: // with description
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public:
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/**
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* Initialises a parameterised cons, given the axis of parameterisation
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* 'axis' and the number of divided slices 'nCopies'.
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* @param[in] axis The axis along which apply the parameterisation.
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* @param[in] nCopies The total number of divided slices.
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* @param[in] offset Potential initial offset along the axis.
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* @param[in] step The width of the divided slice.
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* @param[in] pSolid Pointer to the original shape to parameterise.
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* @param[in] divType String identifier for the kind of division.
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*/
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G4VParameterisationCons( EAxis axis, G4int nCopies,
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G4double offset, G4double step,
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G4VSolid* msolid, DivisionType divType );
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G4double offset, G4double step,
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G4VSolid* pSolid, DivisionType divType );
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/**
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* Default Destructor.
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*/
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~G4VParameterisationCons() override;
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};
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/**
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* @brief G4ParameterisationConsRho represents the parameterised positioning
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* equivalent to dividing a G4Cons along Rho axis.
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*/
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class G4ParameterisationConsRho : public G4VParameterisationCons
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{
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public: // with description
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public:
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/**
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* Initialises a parameterised cons, along the Rho axis.
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* @param[in] axis The axis along which apply the parameterisation.
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* @param[in] nCopies The total number of divided slices.
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* @param[in] offset Potential initial offset along the axis.
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* @param[in] step The width of the divided slice.
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* @param[in] pSolid Pointer to the original shape to parameterise.
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* @param[in] divType String identifier for the kind of division.
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*/
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G4ParameterisationConsRho( EAxis axis, G4int nCopies,
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G4double offset, G4double step,
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G4VSolid* motherSolid, DivisionType divType );
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G4VSolid* pSolid, DivisionType divType );
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/**
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* Default Destructor.
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*/
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~G4ParameterisationConsRho() override;
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/**
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* Returns the max width along Rho.
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* @returns The maximum width of the solid to divide along the Rho axis.
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*/
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G4double GetMaxParameter() const override;
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/**
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* Concrete methods implementing the parameterisation.
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*/
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void ComputeTransformation( const G4int copyNo,
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G4VPhysicalVolume* physVol ) const override;
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void ComputeDimensions( G4Cons& tubs, const G4int copyNo,
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@@ -111,17 +155,42 @@ class G4ParameterisationConsRho : public G4VParameterisationCons
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const G4VPhysicalVolume*) const override {}
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};
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/**
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* @brief G4ParameterisationConsPhi represents the parameterised positioning
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* equivalent to dividing a G4Cons along Phi axis.
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*/
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class G4ParameterisationConsPhi : public G4VParameterisationCons
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{
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public: // with description
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public:
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/**
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* Initialises a parameterised cons, along the Phi axis.
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* @param[in] axis The axis along which apply the parameterisation.
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* @param[in] nCopies The total number of divided slices.
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* @param[in] offset Potential initial offset along the axis.
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* @param[in] step The width of the divided slice.
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* @param[in] pSolid Pointer to the original shape to parameterise.
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* @param[in] divType String identifier for the kind of division.
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*/
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G4ParameterisationConsPhi( EAxis axis, G4int nCopies,
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G4double offset, G4double step,
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G4VSolid* motherSolid, DivisionType divType );
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G4VSolid* pSolid, DivisionType divType );
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/**
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* Default Destructor.
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*/
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~G4ParameterisationConsPhi() override;
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/**
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* Returns the max width along Phi.
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* @returns The maximum width of the solid to divide along the Phi axis.
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*/
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G4double GetMaxParameter() const override;
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/**
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* Concrete methods implementing the parameterisation.
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*/
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void ComputeTransformation( const G4int copyNo,
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G4VPhysicalVolume* physVol ) const override;
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void ComputeDimensions( G4Cons& tubs, const G4int copyNo,
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@@ -155,17 +224,42 @@ class G4ParameterisationConsPhi : public G4VParameterisationCons
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const G4VPhysicalVolume*) const override {}
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};
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/**
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* @brief G4ParameterisationConsZ represents the parameterised positioning
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* equivalent to dividing a G4Cons along Z axis.
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*/
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class G4ParameterisationConsZ : public G4VParameterisationCons
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{
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public: // with description
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public:
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/**
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* Initialises a parameterised cons, along the Z axis.
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* @param[in] axis The axis along which apply the parameterisation.
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* @param[in] nCopies The total number of divided slices.
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* @param[in] offset Potential initial offset along the axis.
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* @param[in] step The width of the divided slice.
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* @param[in] pSolid Pointer to the original shape to parameterise.
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* @param[in] divType String identifier for the kind of division.
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*/
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G4ParameterisationConsZ( EAxis axis, G4int nCopies,
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G4double offset, G4double step,
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G4VSolid* motherSolid, DivisionType divType );
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G4VSolid* pSolid, DivisionType divType );
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/**
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* Default Destructor.
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*/
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~G4ParameterisationConsZ() override;
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/**
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* Returns the max width along Z.
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* @returns The maximum width of the solid to divide along the Z axis.
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*/
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G4double GetMaxParameter() const override;
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/**
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* Concrete methods implementing the parameterisation.
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*/
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void ComputeTransformation( const G4int copyNo,
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G4VPhysicalVolume* physVol ) const override;
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void ComputeDimensions( G4Cons& tubs, const G4int copyNo,
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