Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4VTrajectoryPoint.hh
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1//
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25//
26//
27// $Id$
28//
29//---------------------------------------------------------------
30//
31// G4VTrajectoryPoint.hh
32//
33// class description:
34// This class is the abstract base class which represents the point
35// which consists of a trajectory.
36// It includes information of a the point.
37//
38// ---------------------------------------------------------------
39
40#ifndef G4VTrajectoryPoint_h
41#define G4VTrajectoryPoint_h 1
42
43#include "globals.hh"
44#include <vector>
45#include <map>
46#include "G4ThreeVector.hh"
47
48class G4AttDef;
49class G4AttValue;
50
52{
53 public: // with description
54
55 // Constructor/Destructor
57 virtual ~G4VTrajectoryPoint();
58
59 // Operators
60 G4bool operator==(const G4VTrajectoryPoint& right) const;
61
62 // Get/Set functions
63 virtual const G4ThreeVector GetPosition() const = 0;
64
65 // Get method for a vector of auxiliary points
66 virtual const std::vector<G4ThreeVector>* GetAuxiliaryPoints() const
67 { return 0; }
68 // If implemented by a derived class, returns a pointer to a list
69 // of auxiliary points, e.g., intermediate points used during the
70 // calculation of the step that can be used for drawing a smoother
71 // trajectory. The user must test the validity of this pointer.
72
73 // Get method for HEPRep style attribute definitions
74 virtual const std::map<G4String,G4AttDef>* GetAttDefs() const
75 { return 0; }
76 // If implemented by a derived class, returns a pointer to a map of
77 // attribute definitions for the attribute values below. The user
78 // must test the validity of this pointer. See G4Trajectory for an
79 // example of a concrete implementation of this method.
80
81 // Get method for HEPRep style attribute values
82 virtual std::vector<G4AttValue>* CreateAttValues() const
83 { return 0; }
84 // If implemented by a derived class, returns a pointer to a list
85 // of attribute values suitable, e.g., for picking. Each must
86 // refer to an attribute definition in the above map; its name is
87 // the key. The user must test the validity of this pointer (it
88 // must be non-zero and conform to the G4AttDefs, which may be
89 // checked with G4AttCheck) and delete the list after use. See
90 // G4Trajectory for an example of a concrete implementation of this
91 // method and G4VTrajectory::ShowTrajectory for an example of its
92 // use.
93
94};
95
96#endif
97
bool G4bool
Definition: G4Types.hh:67
virtual std::vector< G4AttValue > * CreateAttValues() const
virtual const std::vector< G4ThreeVector > * GetAuxiliaryPoints() const
virtual const G4ThreeVector GetPosition() const =0
G4bool operator==(const G4VTrajectoryPoint &right) const
virtual const std::map< G4String, G4AttDef > * GetAttDefs() const