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geant4/source/geometry/biasing/include/G4ParallelNavigator.hh
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//
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// $Id: G4ParallelNavigator.hh,v 1.10 2006/06/29 18:16:23 gunter Exp $
// GEANT4 tag $Name: geant4-08-01 $
//
// ----------------------------------------------------------------------
// Class G4ParallelNavigator
//
// Class description:
//
// Used internaly for importance sampling and scoring in a "parallel"
// geometry.
// It implements the interface G4VPGeoDriver (see G4VPGeoDriver.hh).
// It uses a G4Navigator.
// Author: Michael Dressel (Michael.Dressel@cern.ch)
// ----------------------------------------------------------------------
#ifndef G4ParallelNavigator_hh
#define G4ParallelNavigator_hh G4ParallelNavigator_hh
#include "G4VPGeoDriver.hh"
#include "geomdefs.hh"
#include "G4TouchableHandle.hh"
#include "G4Navigator.hh"
class G4GeometryCell ;
class G4VPhysicalVolume;
class G4ParallelNavigator : public G4VPGeoDriver
{
public: // with description
explicit G4ParallelNavigator(G4VPhysicalVolume &aWorldVolume);
// initialise and create G4Navigator and a TouchableHistory
virtual ~G4ParallelNavigator();
// delete Touchable and Navigator
virtual G4GeometryCell
LocateOnBoundary(const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
// The location of a track according to it's position
// and direction in case the track crosses a boundary
// of a "parallel" geometry.
// Must be called in the PostDOIT of the ParallelTransportation.
// (The track crosses the boundary if PostDOIT gets called.)
virtual G4GeometryCell GetCurrentGeometryCell() const;
// get the current G4GeometryCell of the "parallel" geometry
virtual G4double
ComputeStepLengthInit(const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
// compute step length for a starting track.
virtual G4double
ComputeStepLengthCrossBoundary(const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
// compute the step length after a track crossed a boundary
// in a "parallel" geometry
virtual G4double
ComputeStepLengthInVolume(const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
// compute step length when track moves inside a volume.
void SetVerboseity(G4int v);
private:
G4ParallelNavigator(const G4ParallelNavigator &);
G4ParallelNavigator &operator=(const G4ParallelNavigator &);
G4double ComputeStepLengthShifted(const G4String &m,
const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
G4double GetStepLength(const G4String &methodname,
const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
G4double GetStepLengthUseLocate(const G4String &methodname,
const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection);
void Locate(const G4ThreeVector &aPosition,
const G4ThreeVector &aDirection,
G4bool historysearch,
G4bool useDirection);
void Error(const G4String &m,
const G4ThreeVector &pos,
const G4ThreeVector &dir);
G4double Shift(G4double d);
private:
G4Navigator fNavigator;
G4int fNlocated;
G4int fMaxShiftedTrys;
G4TouchableHandle fCurrentTouchableH;
G4int fVerbose;
};
#endif