source: trunk/source/processes/hadronic/models/de_excitation/multifragmentation/include/G4Solver.hh @ 1340

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27// $Id: G4Solver.hh,v 1.4 2006/06/29 20:23:59 gunter Exp $
28// GEANT4 tag $Name: geant4-09-03-ref-09 $
29//
30// Hadronic Process: Nuclear De-excitations
31// by V. Lara
32
33#ifndef G4Solver_h
34#define G4Solver_h 1
35
36#include "globals.hh"
37
38#include <cmath>
39
40#define DefaultTolerance 5.0e-14
41
42template <class Function> class G4Solver 
43{
44public:
45    enum {DefaultMaxIter = 100};
46       
47    // default constructor
48    G4Solver() : MaxIter(DefaultMaxIter), tolerance(DefaultTolerance),
49                 a(0.0), b(0.0), root(0.0) {};
50       
51    G4Solver(const G4int iterations, const G4double tol) :
52        MaxIter(iterations), tolerance(tol),
53        a(0.0), b(0.0), root(0.0) {};
54
55    // copy constructor
56    G4Solver(const G4Solver & right);
57
58    // destructor
59    ~G4Solver() {};
60       
61    // operators
62    G4Solver & operator=(const G4Solver & right);
63    G4bool operator==(const G4Solver & right) const;
64    G4bool operator!=(const G4Solver & right) const;
65               
66    G4int GetMaxIterations(void) const {return MaxIter;}
67    void SetMaxIterations(const G4int iterations) {MaxIter=iterations;}
68       
69    G4double GetTolerance(void) const {return tolerance;}
70    void SetTolerance(const G4double epsilon) {tolerance = epsilon;}
71       
72       
73    G4double GetIntervalLowerLimit(void) const {return a;}
74    G4double GetIntervalUpperLimit(void) const {return b;}
75       
76    void SetIntervalLimits(const G4double Limit1, const G4double Limit2);
77   
78    G4double GetRoot(void) const {return root;}
79   
80    // Calculates the root by the Bisection method
81    G4bool Bisection(Function & theFunction);   
82       
83    // Calculates the root by the Regula-Falsi method
84    G4bool RegulaFalsi(Function & theFunction);
85       
86       
87    // Calculates the root by the Brent's method
88    G4bool Brent(Function & theFunction);
89
90    // Calculates the root by the Inverse Parabolic Interpolation method
91    // due to Jack Crenshaw
92    G4bool Crenshaw(Function & theFunction);
93       
94private:
95
96    // Maximum number of iterations
97    G4int MaxIter;
98
99    //
100    G4double tolerance;
101
102    // interval limits [a,b] which should bracket the root
103    G4double a;
104    G4double b;
105
106    // The root
107    G4double root;
108
109};
110
111#include "G4Solver.icc"
112
113#endif
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