source: trunk/source/processes/electromagnetic/lowenergy/src/G4SemiLogInterpolation.cc @ 1347

Last change on this file since 1347 was 1347, checked in by garnier, 13 years ago

geant4 tag 9.4

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26//
27// $Id: G4SemiLogInterpolation.cc,v 1.8 2009/09/25 07:41:34 sincerti Exp $
28// GEANT4 tag $Name: geant4-09-04-ref-00 $
29//
30// Author: Maria Grazia Pia (Maria.Grazia.Pia@cern.ch)
31//
32// History:
33// -----------
34// 31 Jul 2001   MGP        Created
35//
36// -------------------------------------------------------------------
37
38#include "G4SemiLogInterpolation.hh"
39
40// Constructor
41
42G4SemiLogInterpolation::G4SemiLogInterpolation()
43{ }
44
45
46// Destructor
47
48G4SemiLogInterpolation::~G4SemiLogInterpolation()
49{ }
50
51G4VDataSetAlgorithm* G4SemiLogInterpolation::Clone() const 
52{ return new G4SemiLogInterpolation; }
53
54
55G4double G4SemiLogInterpolation::Calculate(G4double x, G4int bin, 
56                                          const G4DataVector& points, 
57                                          const G4DataVector& data) const
58{
59  //G4cout << "G4SemiLogInterpolation is performed(2 arguments) " << G4endl;
60  G4int nBins = data.size() - 1;
61  G4double value = 0.;
62  if (x < points[0])
63    {
64      value = 0.;
65    }
66  else if (bin < nBins)
67    {
68      G4double e1 = points[bin];
69      G4double e2 = points[bin+1];
70      G4double d1 = data[bin];
71      G4double d2 = data[bin+1];
72      value = (d1*std::log10(e2/x) + d2*std::log10(x/e1)) / std::log10(e2/e1);
73    }
74  else
75    {
76      value = data[nBins];
77    }
78  return value;
79}
80
81G4double G4SemiLogInterpolation::Calculate(G4double x, G4int bin, 
82                                           const G4DataVector& points,
83                                           const G4DataVector& data,
84                                           const G4DataVector& log_points, 
85                                           const G4DataVector& /*log_data*/) const
86{
87//A combination of logarithmic interpolation on energy set and
88//linear Interpolation on data set
89  //G4cout << "G4SemiLogInterpolation is performed (4 arguments)" << G4endl;
90  G4int nBins = data.size() - 1;
91  G4double value = 0.;
92  G4double log_x = std::log10(x);
93  if (x < points[0])
94    {
95      value = 0.;
96    }
97  else if (bin < nBins)
98    {
99      G4double e1 = points[bin];
100      G4double e2 = points[bin+1];
101      G4double d1 = data[bin];
102      G4double d2 = data[bin+1];     
103      G4double log_e1 = log_points[bin];
104      G4double log_e2 = log_points[bin+1];
105      //G4double log_d1 = log_data[bin];
106      //G4double log_d2 = log_data[bin+1];
107      //G4cout << "x = " << x << " , log_x = " << log_x << " , bin = " << bin << G4endl;
108      //G4cout << "e1 = " << e1 << " , d1 = " << d1 << G4endl;
109      //G4cout << "e2 = " << e2 << " , d2 = " << d2 << G4endl;
110// Values log_e1 and log_e2 are the log values of the corresponding
111// original energy actual values. Original d1 and d2 values are used.
112// Simple linear interpolation performed on loagarithmic data
113// should be equivalent to semi log-log interpolation
114      if (e1 == 0.0) log_e1 = -300;
115      if (e2 == 0.0) log_e2 = -300;
116      value = d1 + (d2 - d1)*(log_x - log_e1)/(log_e2 - log_e1);
117      //G4cout << "G4SemiLogInterpolation - Final Interpolated Value: " << value << G4endl << G4endl;
118   }
119 else
120   {
121     value = data[nBins];
122   }
123  return value;
124}
125
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