source: trunk/source/processes/transportation/include/G4Transportation.hh @ 847

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27// $Id: G4Transportation.hh,v 1.16 2007/11/08 17:59:38 japost Exp $
28// GEANT4 tag $Name: geant4-09-01-patch-02 $
29//
30//
31// ------------------------------------------------------------
32//        GEANT 4  include file implementation
33// ------------------------------------------------------------
34//
35// Class description:
36//
37// G4Transportation is a process responsible for the transportation of
38// a particle, i.e. the geometrical propagation encountering the
39// geometrical sub-volumes of the detectors.
40// It is also tasked with part of updating the "safety".
41
42// =======================================================================
43// Created:  19 March 1997, J. Apostolakis
44// =======================================================================
45#ifndef G4Transportation_hh
46#define G4Transportation_hh 1
47
48#include "G4VProcess.hh"
49#include "G4FieldManager.hh"
50
51#include "G4Navigator.hh"
52#include "G4TransportationManager.hh"
53#include "G4PropagatorInField.hh"
54#include "G4Track.hh"
55#include "G4Step.hh"
56#include "G4ParticleChangeForTransport.hh"
57
58class G4Transportation : public G4VProcess
59{
60  // Concrete class that does the geometrical transport
61
62  public:  // with description
63
64     G4Transportation( G4int verbosityLevel= 1);
65     ~G4Transportation(); 
66
67     G4double      AlongStepGetPhysicalInteractionLength(
68                             const G4Track& track,
69                                   G4double  previousStepSize,
70                                   G4double  currentMinimumStep, 
71                                   G4double& currentSafety,
72                                   G4GPILSelection* selection
73                            );
74
75     G4VParticleChange* AlongStepDoIt(
76                             const G4Track& track,
77                             const G4Step& stepData
78                            );
79
80     G4VParticleChange* PostStepDoIt(
81                             const G4Track& track,
82                             const G4Step&  stepData
83                            );
84       // Responsible for the relocation.
85
86     G4double PostStepGetPhysicalInteractionLength(
87                             const G4Track& ,
88                             G4double   previousStepSize,
89                             G4ForceCondition* pForceCond
90                            );
91       // Forces the PostStepDoIt action to be called,
92       // but does not limit the step.
93
94     G4PropagatorInField* GetPropagatorInField();
95     void SetPropagatorInField( G4PropagatorInField* pFieldPropagator);
96       // Access/set the assistant class that Propagate in a Field.
97
98     inline void   SetVerboseLevel( G4int verboseLevel );
99     inline G4int  GetVerboseLevel() const;
100       // Level of warnings regarding eg energy conservation
101       // in field integration.
102
103     inline G4double GetThresholdWarningEnergy() const; 
104     inline G4double GetThresholdImportantEnergy() const; 
105     inline G4int GetThresholdTrials() const; 
106
107     inline void SetThresholdWarningEnergy( G4double newEnWarn ); 
108     inline void SetThresholdImportantEnergy( G4double newEnImp ); 
109     inline void SetThresholdTrials(G4int newMaxTrials ); 
110
111     // Get/Set parameters for killing loopers:
112     //   Above 'important' energy a 'looping' particle in field will
113     //   *NOT* be abandoned, except after fThresholdTrials attempts.
114     // Below Warning energy, no verbosity for looping particles is issued
115
116     inline G4double GetMaxEnergyKilled() const; 
117     inline G4double GetSumEnergyKilled() const;
118     inline void ResetKilledStatistics( G4int report = 1);     
119     // Statistics for tracks killed (currently due to looping in field)
120
121     inline void EnableShortStepOptimisation(G4bool optimise=true); 
122     // Whether short steps < safety will avoid to call Navigator (if field=0)
123
124  public:  // without description
125
126     G4double AtRestGetPhysicalInteractionLength(
127                             const G4Track& ,
128                             G4ForceCondition* 
129                            ) { return -1.0; };
130       // No operation in  AtRestDoIt.
131
132     G4VParticleChange* AtRestDoIt(
133                             const G4Track& ,
134                             const G4Step&
135                            ) {return 0;};
136       // No operation in  AtRestDoIt.
137
138  void StartTracking(G4Track* aTrack);
139       // Reset state for new (potentially resumed) track
140
141  protected:
142
143     G4bool               DoesGlobalFieldExist();
144       // Checks whether a field exists for the "global" field manager.
145
146  private:
147
148     G4Navigator*         fLinearNavigator;
149     G4PropagatorInField* fFieldPropagator;
150       // The Propagators used to transport the particle
151
152     // G4FieldManager*      fGlobalFieldMgr;     // Used MagneticField CC
153       // Field Manager for the whole Detector
154
155     G4ThreeVector        fTransportEndPosition;
156     G4ThreeVector        fTransportEndMomentumDir;
157     G4double             fTransportEndKineticEnergy;
158     G4ThreeVector        fTransportEndSpin;
159     G4bool               fMomentumChanged;
160     G4bool               fEnergyChanged;
161     G4bool               fEndGlobalTimeComputed; 
162     G4double             fCandidateEndGlobalTime;
163       // The particle's state after this Step, Store for DoIt
164
165     G4bool               fParticleIsLooping;
166
167     G4TouchableHandle    fCurrentTouchableHandle;
168     
169     // G4bool         fFieldExists;
170       // Whether a magnetic field exists ...
171       // A data member for this is problematic: it is useful only if it
172       // can be initialised and updated -- and a scheme is not yet possible.
173
174     G4bool fGeometryLimitedStep;
175       // Flag to determine whether a boundary was reached.
176
177     G4ThreeVector  fPreviousSftOrigin;
178     G4double       fPreviousSafety; 
179       // Remember last safety origin & value.
180
181     G4ParticleChangeForTransport fParticleChange;
182       // New ParticleChange
183
184     G4double endpointDistance;
185
186  // Thresholds for looping particles:
187  //
188     G4double fThreshold_Warning_Energy;     //  Warn above this energy
189     G4double fThreshold_Important_Energy;   //  Hesitate above this
190     G4int    fThresholdTrials;              //    for this no of trials
191       // Above 'important' energy a 'looping' particle in field will
192       //   *NOT* be abandoned, except after fThresholdTrials attempts.
193     G4double fUnimportant_Energy;
194       //  Below this energy, no verbosity for looping particles is issued
195
196  // Counter for steps in which particle reports 'looping',
197  //   if it is above 'Important' Energy
198     G4int    fNoLooperTrials; 
199  // Statistics for tracks abandoned
200     G4double fSumEnergyKilled;
201     G4double fMaxEnergyKilled;
202
203  // Whether to avoid calling G4Navigator for short step ( < safety)
204  //   If using it, the safety estimate for endpoint will likely be smaller.
205     G4bool   fShortStepOptimisation; 
206
207  // Verbosity
208     G4int    fVerboseLevel;
209       // Verbosity level for warnings
210       // eg about energy non-conservation in magnetic field.
211};
212
213#include "G4Transportation.icc"
214
215#endif 
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