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// This code implementation is the intellectual property of
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// the RD44 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: G4SmartVoxelHeader.hh,v 2.1 1998/11/11 11:34:07 japost Exp $
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// GEANT4 tag $Name: geant4-00 $
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//
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// class G4SmartVoxelHeader
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//
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// Represents set of voxels, created by a single axis of virtual division.
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// Contains the individual voxels, which are potentially further divided
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// along different axes
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//
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// Member functions:
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//
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// G4SmartVoxelHeader(G4LogicalVolume* pVolume,const G4int pSlice=0)
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// Constructor for topmost header, to begin voxel construction at a
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// given logical volume. pSlice is used to set max and min equivalent slice
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// nos for the header - they apply to the level of the header, not its nodes.
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//
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// ~G4SmartVoxelHeader()
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// Delete all referenced nodes [but *not* referenced physical volumes]
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//
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// EAxis GetAxis() const
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// Return the current division axis
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//
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// G4double GetMaxExtent() const
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// Return the maximum coordinate limit along the current axis
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// G4double GetMinExtent() const
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// Return the minimum coordinate limit along the current axis
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//
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// G4int GetNoSlices() const
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// Return the no of slices along the current axis
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// G4SmartVoxelProxy* GetSlice(const G4int n) const
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// Return ptr to the proxy for the nth slice (numbering from 0, no
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// bounds checking)
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//
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//
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// Private functions:
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//
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// G4SmartVoxelHeader(G4LogicalVolume* pVolume,G4VoxelLimits& pLimits,
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// RWTValOrderedVector<G4int>& pCandidates,
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// const G4int pSlice=0)
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// Build and refine voxels between specified limits, considering only
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// the physical volumes numbered `pCandidates'. pSlice is used to set max
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// and min equivalent slice nos for the header - they apply to the level
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// of the header, not its nodes.
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//
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// extra functions...
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// Member data:
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//
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// EAxis faxis
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// The (cartesian) slicing/division axis
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// G4double fmaxExtent
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// G4double fminExtent
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// Minimum and maximum coordiantes along the axis
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// RWTPtrOrderedVector<G4SmartVoxelProxy> fslices
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// The slices along the axis
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//
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// G4int fminEquivalent
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// G4int fmaxEquivalent
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// Minimum and maximum equivalent slice nos. [Applies to the level of
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// the header, not its nodes]
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//
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// History:
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// 13.07.95 P.Kent Initial version
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#ifndef G4SMARTVOXELHEADER_HH
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#define G4SMARTVOXELHEADER_HH
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#include "globals.hh"
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#include "geomdefs.hh"
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#include "voxeldefs.hh"
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#include "G4SmartVoxelProxy.hh"
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#include "G4SmartVoxelNode.hh"
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#include "G4ios.hh"
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#include <rw/tvvector.h>
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#include <rw/tpordvec.h>
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#include <rw/tvordvec.h>
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// Forward declarations
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class G4LogicalVolume;
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class G4VoxelLimits;
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class G4VPhysicalVolume;
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typedef RWTPtrOrderedVector<G4SmartVoxelProxy> G4ProxyVector;
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typedef RWTPtrOrderedVector<G4SmartVoxelNode> G4NodeVector;
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typedef RWTValOrderedVector<G4int> G4VolumeNosVector;
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typedef RWTValVector<G4double> G4VolumeExtentVector;
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class G4SmartVoxelHeader
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{
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public:
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// Constructor for topmost header, to begin voxel construction at a
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// given logical volume
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G4SmartVoxelHeader(G4LogicalVolume* pVolume,const G4int pSlice=0);
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~G4SmartVoxelHeader();
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// Access functions for min/max equivalent slices (nodes & headers)
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G4int GetMaxEquivalentSliceNo() const
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{
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return fmaxEquivalent;
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}
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void SetMaxEquivalentSliceNo(const G4int pMax)
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{
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fmaxEquivalent=pMax;
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}
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G4int GetMinEquivalentSliceNo() const
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{
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return fminEquivalent;
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}
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void SetMinEquivalentSliceNo(const G4int pMin)
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{
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fminEquivalent=pMin;
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}
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// Axis enquiry
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EAxis GetAxis() const
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{
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return faxis;
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}
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// Extent enquiry functions
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G4double GetMaxExtent() const
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{
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return fmaxExtent;
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}
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G4double GetMinExtent() const
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{
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return fminExtent;
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}
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// Slice enquiry functions
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G4int GetNoSlices() const
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{
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return fslices.entries();
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}
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// Slice access
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G4SmartVoxelProxy* GetSlice(const G4int n) const
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{
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return fslices(n);
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}
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// True if all slices equal (after collection)
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G4bool AllSlicesEqual() const;
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G4bool operator == (const G4SmartVoxelHeader& pHead) const;
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friend ostream& operator << (ostream&s, const G4SmartVoxelHeader& h);
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protected:
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G4SmartVoxelHeader(G4LogicalVolume* pVolume,
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const G4VoxelLimits& pLimits,
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const G4VolumeNosVector* pCandidates,
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const G4int pSlice=0);
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// `Worker' / operation functions:
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// Build and refine voxels for daughters of specified volume which
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// DOES NOT contain a REPLICATED daughter
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void BuildVoxels(G4LogicalVolume* pVolume);
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// Build voxels for specified volume containing a single
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// replicated volume
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void BuildReplicaVoxels(G4LogicalVolume* pVolume);
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// Construct nodes in simple consuming case
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void BuildConsumedNodes(const G4int nReplicas);
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// Build and refine voxels between specified limits, considering only
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// the physical volumes `pCandidates'. Main entry point for "construction"
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// Hardwired to stop at third level of refinement, using the xyz cartesian
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// axes in any order
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void BuildVoxelsWithinLimits(G4LogicalVolume* pVolume,
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G4VoxelLimits pLimits,
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const G4VolumeNosVector* pCandidates);
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// Calculate and Store the minimum and maximum equivalent neighbour
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// values for all slices
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void BuildEquivalentSliceNos();
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// Collect common nodes, deleting all but one to save memory, and adjusting
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// stored slice ptrs appropriately.
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void CollectEquivalentNodes();
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// Collect common headers, deleting all but one to save memory, and adjusting
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// stored slice ptrs appropriately.
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void CollectEquivalentHeaders();
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// Build the nodes corresponding to the specified axis, within
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// the specified limits, considering the daughters numbered pCandidates
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// of the logical volume
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G4ProxyVector* BuildNodes(G4LogicalVolume* pVolume,
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G4VoxelLimits pLimits,
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const G4VolumeNosVector* pCandidates,
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EAxis pAxis);
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// Calculate a "quality value" for the specified vector of voxels
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// The value returned should be >0 and such that the smaller the
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// number the higher the quality of the slice.
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//
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// pSlice must consist of smartvoxelnodeproxies only
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G4double CalculateQuality(G4ProxyVector *pSlice);
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// Examined each contained node, refine (create a replacement additional
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// dimension of voxels) when there is more than one voxel in the slice
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void RefineNodes(G4LogicalVolume* pVolume,G4VoxelLimits pLimits);
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// Min and max equivalent slice nos for previous level
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G4int fminEquivalent;
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G4int fmaxEquivalent;
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// Axis for slices
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EAxis faxis;
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// Max and min coordinate along faxis
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G4double fmaxExtent;
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G4double fminExtent;
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// Slices along axis
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G4ProxyVector fslices;
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};
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#endif
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