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G4DoLoMcPriRK34.hh
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25 //
26 // DoLoMcPri4(3) RK method - header
27 // Implements the 6-3-4 non-FSAL method ( 6 stage, 3rd & 4th order embedded RK method )
28 //
29 // RK tableau / method develoed by
30 // Dormand Lockyer McGorrigan Prince
31 // RK4(3)6FD - forced Non-FSAL
32 //
33 // Header, design, implementation by Somnath Banerjee
34 // Supported by Google in Google Summer of Code 2015.
35 // Supervision / code review: John Apostolakis
36 //
37 // First version: 7 July 2015
38 //
39 // This code is made available subject to the Geant4 license, a copy of
40 // which is available at
41 // http://geant4.org/license
42 // G4DoLoMcPriRK34.hh
43 // Geant4
44 //
45 // History
46 // -----------------------------
47 // Created by Somnath on 7 July 2015
48 
49 
50 #ifndef DoLo_McPri_34
51 #define DoLo_McPri_34
52 
54 
56 {
57 public:
58  //Constructor using Equation
60  G4int numberOfVariables = 6,
61  G4bool primary = true);
63 
64  void Stepper( const G4double y[],
65  const G4double dydx[],
66  G4double h,
67  G4double yout[],
68  G4double yerr[] ) ;
69 
70  //For Preparing the Interpolant and calculating the extra stages
71  void SetupInterpolation();
72  void SetupInterpolate( const G4double yInput[],
73  const G4double dydx[],
74  const G4double Step );
75 
76  //For calculating the output at the tau fraction of Step
77  void Interpolate( const G4double yInput[],
78  const G4double dydx[],
79  const G4double Step,
80  G4double yOut[],
81  G4double tau );
82 
83  void Interpolate( G4double tau,
84  G4double yOut[]);
85 
86  void interpolate(const G4double yInput[],
87  const G4double dydx[],
88  G4double yOut[],
89  G4double Step,
90  G4double tau ) ;
91 
92  G4double DistChord() const;
93  G4int IntegratorOrder() const {return 3; }
94 
95 private :
96 
98  //Copy constructor kept private
100  //assignment operator overloaded
101 
102  G4double *ak2, *ak3, *ak4, *ak5, *ak6, *yTemp, *yIn;
103 
107  // for DistChord calculations
108 
110 };
111 
112 #endif /* defined(__Geant4__G4DoLoMcPriRK34__) */
G4double * fLastInitialVector
G4double * fLastDyDx
G4double fLastStepLength
G4DoLoMcPriRK34 & operator=(const G4DoLoMcPriRK34 &)
Float_t y
Definition: compare.C:6
G4double * fMidError
G4double * fMidVector
G4double * fLastFinalVector
void Stepper(const G4double y[], const G4double dydx[], G4double h, G4double yout[], G4double yerr[])
double G4double
Definition: G4Types.hh:76
bool G4bool
Definition: G4Types.hh:79
void Interpolate(const G4double yInput[], const G4double dydx[], const G4double Step, G4double yOut[], G4double tau)
G4double DistChord() const
void interpolate(const G4double yInput[], const G4double dydx[], G4double yOut[], G4double Step, G4double tau)
G4DoLoMcPriRK34 * fAuxStepper
int G4int
Definition: G4Types.hh:78
G4DoLoMcPriRK34(G4EquationOfMotion *EqRhs, G4int numberOfVariables=6, G4bool primary=true)
void SetupInterpolate(const G4double yInput[], const G4double dydx[], const G4double Step)
Definition: Step.hh:41
G4int IntegratorOrder() const