242 lines
9.4 KiB
C++
242 lines
9.4 KiB
C++
// This code implementation is the intellectual property of
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// the GEANT4 collaboration.
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//
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// By copying, distributing or modifying the Program (or any work
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// based on the Program) you indicate your acceptance of this statement,
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// and all its terms.
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//
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// $Id: G4LogicalVolume.hh,v 1.6 2000/11/01 15:39:32 gcosmo Exp $
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// GEANT4 tag $Name: geant4-03-00 $
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//
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//
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// class G4LogicalVolume
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//
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// Class description:
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//
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// Represents a leaf node or unpositioned subtree in the geometry hierarchy.
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// Logical volumes are named, and may have daughters ascribed to them.
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// They are responsible for retrieval of the physical and tracking attributes
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// of the physical volume that it represents: solid, material, magnetic field,
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// and optionally, user limits, sensitive detectors.
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//
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// Get and Set functionality is provided for all attributes, but note that
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// most set functions should not be used when the geometry is `closed'.
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// As a further development, `Guard' checks can be added to ensure
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// only legal operations at tracking time.
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//
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// On construction, solid, material and name must be specified.
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//
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// Daughters are ascribed and managed by means of a simple
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// GetNoDaughters,Get&SetDaughter(n),AddDaughter interface.
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//
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// Smart voxels as used for tracking optimisation are also an attribute.
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//
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// Logical volumes self register to the logical volume Store on construction,
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// and deregister on destruction.
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//
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// NOTE: This class is currently *NOT* subclassed, since not meant to
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// act as a base class. Therefore, the destructor is NOT virtual.
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//
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// Data members:
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//
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// G4RWTPtrOrderedVector<G4VPhysicalVolume> fDaughters
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// - Vector of daughters. Given initial size of 0.
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// G4FieldManager *fFieldManager
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// - Pointer (possibly NULL) to (magnetic or other) field manager object.
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// G4Material *fMaterial
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// - Pointer to material at this node.
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// G4String fName
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// - Name of logical volume.
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// G4VSensitiveDetector *fSensitiveDetector
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// - Pointer (possibly NULL) to `Hit' object.
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// G4VSolid *fSolid
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// - Pointer to solid.
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// G4UserLimits *fUserLimits
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// - Pointer (possibly NULL) to user Step limit object for this node.
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// G4SmartVoxelHeader *fVoxel
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// - Pointer (possibly NULL) to optimisation info objects.
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// G4double fSmartless
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// - Quality for optimisation, average number of voxels to be spent
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// per content.
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// const G4VisAttributes* fVisAttributes
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// - Pointer (possibly NULL) to visualization attributes.
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// G4FastSimulationManager *fFastSimulationManager
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// - Pointer (possibly NULL) to G4FastSimulationManager object.
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// G4bool fIsEnvelope
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// - Flags if the Logical Volume is an envelope for a FastSimulationManager.
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// G4double fBiasWeight
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// - Weight used in the event biasing technique.
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// History:
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// 12.02.99 S.Giani: Added user defined optimisation quality
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// 09.11.98 J. Apostolakis: Changed G4MagneticField to G4FieldManager
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// 09.11.98 M. Verderi & JA. : added BiasWeight member and Get/Set methods
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// 10.20.97 P. MoraDeFreitas : added pointer to a FastSimulation
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// (J.Apostolakis) & flag to indicate if it is an Envelope for it
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// 19.11.96 J.Allison Replaced G4Visible with explicit const G4VisAttributes*.
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// 19.08.96 P.Kent Split -> hh/icc/cc files; G4VSensitiveDetector change
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// 11.07.95 P.Kent Initial version.
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#ifndef G4LOGICALVOLUME_HH
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#define G4LOGICALVOLUME_HH
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#include "globals.hh"
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#include "G4VPhysicalVolume.hh" // Need operator == for vector fdaughters
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#include "g4rw/tpordvec.h"
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#include <assert.h>
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// Forward declarations
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class G4FieldManager;
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class G4Material;
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class G4VSensitiveDetector;
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class G4VSolid;
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class G4UserLimits;
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class G4SmartVoxelHeader;
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class G4VisAttributes;
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class G4FastSimulationManager;
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class G4LogicalVolume
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{
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public: // with description
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G4LogicalVolume(G4VSolid *pSolid, G4Material *pMaterial,
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const G4String& name,
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G4FieldManager *pFieldMgr=0,
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G4VSensitiveDetector *pSDetector=0,
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G4UserLimits *pULimits=0);
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// Constructor. The solid and material pointer must be non null. The
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// parameters for field, detector and user limits are optional.
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// The volume also enters itself into the logical volume Store.
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~G4LogicalVolume();
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// Destructor. Removes the logical volume from the logical volume Store.
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// NOT virtual, since not meant to act as base class.
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inline G4String GetName() const;
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inline void SetName(const G4String& pName);
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// Returns and sets the name of the logical volume.
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inline G4int GetNoDaughters() const;
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// Returns the number of daughters (0 to n).
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inline G4VPhysicalVolume* GetDaughter(const G4int i) const;
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// Return the ith daughter. Note numbering starts from 0,
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// and no bounds checking is performed.
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inline void AddDaughter(G4VPhysicalVolume* p);
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// Add the volume p as a daughter of the current logical volume.
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inline G4bool IsDaughter(const G4VPhysicalVolume* p) const;
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// Returns true is the volume p is a daughter of the current
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// logical volume.
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inline void RemoveDaughter(const G4VPhysicalVolume* p);
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// Remove the volume p from the List of daughter of the current
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// logical volume.
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inline G4VSolid* GetSolid() const;
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inline void SetSolid(G4VSolid *pSolid);
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// Gets and sets the current solid.
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inline G4Material* GetMaterial() const;
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inline void SetMaterial(G4Material *pMaterial);
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// Gets and sets the current material.
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inline G4FieldManager* GetFieldManager() const;
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// Gets current FieldManager.
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void SetFieldManager(G4FieldManager *pFieldMgr, G4bool forceToAllDaughters);
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// Sets FieldManager and propagates it:
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// i) only to daughters with G4FieldManager = 0
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// if forceToAllDaughters=false
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// ii) to all daughters
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// if forceToAllDaughters=true
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inline G4VSensitiveDetector* GetSensitiveDetector() const;
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// Gets current SensitiveDetector.
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inline void SetSensitiveDetector(G4VSensitiveDetector *pSDetector);
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// Sets SensitiveDetector (can be NULL).
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inline G4UserLimits* GetUserLimits() const;
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inline void SetUserLimits(G4UserLimits *pULimits);
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// Gets and sets current UserLimits.
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inline G4SmartVoxelHeader* GetVoxelHeader() const;
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inline void SetVoxelHeader(G4SmartVoxelHeader *pVoxel);
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// Gets and sets current VoxelHeader.
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inline G4double GetSmartless();
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inline void SetSmartless(G4double s);
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// Gets and sets user defined optimisation quality.
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G4bool operator == ( const G4LogicalVolume& lv) const;
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// Equality defined by address only- return true if objects are at
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// same address, else false.
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inline const G4VisAttributes* GetVisAttributes () const;
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inline void SetVisAttributes (const G4VisAttributes* pVA);
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inline void SetVisAttributes (const G4VisAttributes& VA);
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// Gets and sets visualization attributes.
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inline void BecomeEnvelopeForFastSimulation(G4FastSimulationManager* );
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// Makes this an Envelope for given FastSimulationManager.
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// Ensures that all its daughter volumes get it too - unless they
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// have one already.
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void ClearEnvelopeForFastSimulation(G4LogicalVolume* motherLV= 0);
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// Erase volume's Envelope status and propagate the FastSimulationManager
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// of its mother volume to itself and its daughters.
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inline G4FastSimulationManager* GetFastSimulationManager () const;
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// Gets current FastSimulationManager pointer.
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inline void SetBiasWeight (G4double w);
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inline G4double GetBiasWeight() const;
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// Sets and gets bias weight.
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private:
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void SetFastSimulationManager (G4FastSimulationManager* pPA,
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G4bool IsEnvelope);
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// Sets the fast simulation manager. Private method called by the
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// public SetIsEnvelope method with IsEnvelope = TRUE. It is
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// then called recursivaly to the daughters to propagate the
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// FastSimulationManager pointer with IsEnvelope = FALSE.
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G4LogicalVolume* FindMotherLogicalVolumeForEnvelope();
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G4LogicalVolume(const G4LogicalVolume&);
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G4LogicalVolume& operator=(const G4LogicalVolume&);
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// Private copy-constructor and assignment operator.
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private:
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// Data members:
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G4RWTPtrOrderedVector<G4VPhysicalVolume> fDaughters;
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// Vector of daughters. Given initial size of 0.
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G4FieldManager *fFieldManager;
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// Pointer (possibly NULL) to (magnetic or other) field manager object.
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G4Material *fMaterial;
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// Pointer to material at this node.
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G4String fName;
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// Name of logical volume.
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G4VSensitiveDetector *fSensitiveDetector;
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// Pointer (possibly NULL) to `Hit' object.
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G4VSolid *fSolid;
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// Pointer to solid.
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G4UserLimits *fUserLimits;
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// Pointer (possibly NULL) to user Step limit object for this node.
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G4SmartVoxelHeader *fVoxel;
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// Pointer (possibly NULL) to optimisation info objects.
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G4double fSmartless;
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// Quality for optimisation, average number of voxels to be spent
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// per content.
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const G4VisAttributes* fVisAttributes;
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// Pointer (possibly NULL) to visualization attributes.
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G4FastSimulationManager *fFastSimulationManager;
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// Pointer (possibly NULL) to G4FastSimulationManager object.
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G4bool fIsEnvelope;
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// Flags if the Logical Volume is an envelope for a
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// FastSimulationManager.
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G4double fBiasWeight;
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// Weight used in the event biasing technique.
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};
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#include "G4LogicalVolume.icc"
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#endif
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