Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4AdjointInterpolator.hh
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1//
2// ********************************************************************
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5// * The Geant4 software is copyright of the Copyright Holders of *
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25//
26//
27/////////////////////////////////////////////////////////////////////////////////
28// Module: G4AdjointInterpolator
29// Author: L. Desorgher
30// Organisation: SpaceIT GmbH
31// Contract: ESA contract 21435/08/NL/AT
32// Customer: ESA/ESTEC
33/////////////////////////////////////////////////////////////////////////////////
34//
35// CHANGE HISTORY
36// --------------
37// ChangeHistory:
38// 1st April 2007 creation by L. Desorgher
39//
40//-------------------------------------------------------------
41// Documentation:
42// Used by G4AdjointCSManager for interpolation purpose.
43//
44#ifndef G4AdjointInterpolator_h
45#define G4AdjointInterpolator_h 1
46
47#include"globals.hh"
48#include<vector>
49
50////////////////////////////////////////////////////////////////////////////////
51//
53{
54
55 public:
58
59 public:
60
61 ////////////////////////////////
62 // Constructors and Destructor
63 ////////////////////////////////
64
65
67
68 ////////////
69 // Methods
70 ////////////
71
72 //Caution everywher it is considere thta x_vec increase monotically
73
77 G4double Interpolation(G4double& x,G4double& x1,G4double& x2,G4double& y1,G4double &y2,G4String InterPolMethod="Log");
78
79
80 size_t FindPosition(G4double& x,std::vector<G4double>& x_vec,size_t ind_min=0, size_t ind_max=0);
81
82 size_t FindPositionForLogVector(G4double& x,std::vector<G4double>& x_vec);
83
84 G4double Interpolate(G4double& x,std::vector<G4double>& x_vec,std::vector<G4double>& y_vec,G4String InterPolMethod="Log"); //xvec should monotically increase
85
86 G4double InterpolateWithIndexVector(G4double& x,std::vector<G4double>& x_vec,std::vector<G4double>& y_vec,
87 std::vector<size_t>& index_vec, G4double x0,G4double dx); //xvec should monotically increase
88
89
90 G4double InterpolateForLogVector(G4double& x,std::vector<G4double>& x_vec,std::vector<G4double>& y_vec);
91
92 private:
93 static G4ThreadLocal G4AdjointInterpolator* theInstance;
94
95 private:
97
98};
99#endif
double G4double
Definition: G4Types.hh:83
G4double Interpolation(G4double &x, G4double &x1, G4double &x2, G4double &y1, G4double &y2, G4String InterPolMethod="Log")
G4double LinearInterpolation(G4double &x, G4double &x1, G4double &x2, G4double &y1, G4double &y2)
G4double ExponentialInterpolation(G4double &x, G4double &x1, G4double &x2, G4double &y1, G4double &y2)
G4double Interpolate(G4double &x, std::vector< G4double > &x_vec, std::vector< G4double > &y_vec, G4String InterPolMethod="Log")
static G4AdjointInterpolator * GetInstance()
size_t FindPosition(G4double &x, std::vector< G4double > &x_vec, size_t ind_min=0, size_t ind_max=0)
size_t FindPositionForLogVector(G4double &x, std::vector< G4double > &x_vec)
static G4AdjointInterpolator * GetAdjointInterpolator()
G4double InterpolateWithIndexVector(G4double &x, std::vector< G4double > &x_vec, std::vector< G4double > &y_vec, std::vector< size_t > &index_vec, G4double x0, G4double dx)
G4double LogarithmicInterpolation(G4double &x, G4double &x1, G4double &x2, G4double &y1, G4double &y2)
G4double InterpolateForLogVector(G4double &x, std::vector< G4double > &x_vec, std::vector< G4double > &y_vec)
#define G4ThreadLocal
Definition: tls.hh:77