source: trunk/source/global/management/include/G4PhysicsFreeVector.hh @ 1315

Last change on this file since 1315 was 1315, checked in by garnier, 14 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

File size: 5.1 KB
Line 
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26//
27// $Id: G4PhysicsFreeVector.hh,v 1.15 2010/05/28 05:13:43 kurasige Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
29//
30//
31//--------------------------------------------------------------------
32//      GEANT 4 class header file
33//
34//  G4PhysicsFreeVector.hh
35//
36//  Class description:
37//
38//    A physics vector which has values of energy-loss, cross-section,
39//    and other physics values of a particle in matter in a given
40//    range of the energy, momentum, etc. The scale of energy/momentum
41//    bins is in free, ie. it is NOT need to be linear or log. Only
42//    restrication is that bin values alway have to increase from
43//    a lower bin to a higher bin. This is necessary for the binary
44//    search to work correctly.
45
46//  History:
47//    02 Dec. 1995, G.Cosmo : Structure created based on object model
48//    06 Jun. 1996, K.Amako : Implemented the 1st version
49//    01 Jul. 1996, K.Amako : Cache mechanism and hidden bin from the
50//                            user introduced
51//    26 Sep. 1996, K.Amako : Constructor with only 'bin size' added
52//    11 Nov. 2000, H.Kurashige : Use STL vector for dataVector and binVector
53//
54//--------------------------------------------------------------------
55
56#ifndef G4PhysicsFreeVector_h
57#define G4PhysicsFreeVector_h 1
58
59#include "globals.hh"
60#include "G4PhysicsVector.hh"
61#include "G4DataVector.hh"
62
63class G4PhysicsFreeVector : public G4PhysicsVector 
64{
65  public: // with description
66
67    G4PhysicsFreeVector();
68    explicit G4PhysicsFreeVector(size_t theNbin);
69    G4PhysicsFreeVector(const G4DataVector& binVector, 
70                        const G4DataVector& dataVector);
71         // Constructors:
72         // 'binVector' has the low edge value of each scale bin.
73         // 'dataVector' has the cross-section/energy-loss/etc at
74         // the energy/momenturm of the corresponding a bin of
75         // 'binVector'. 'binVector' and 'dataVector' need to have
76         // the same vector length.
77 
78    virtual ~G4PhysicsFreeVector();
79         // Destructor
80
81    void PutValue( size_t binNumber, G4double binValue, 
82                                     G4double dataValue );   
83         // To use this method to fill a PhysicsFreeVector, you have
84         // to Construct a PhysicsFreeVector of the size you need
85         // using G4PhysicsFreeVector(size_t theNbin). Also take
86         // note that you have to fill all bin values and data
87         // values before you the PhysicsFreeVector.
88
89  protected:
90
91    size_t FindBinLocation(G4double theEnergy) const;
92         // Find bin# in which theEnergy belongs - virtual function
93};
94
95
96inline 
97size_t G4PhysicsFreeVector::FindBinLocation(G4double theEnergy) const
98{
99  // For G4PhysicsFreeVector, FindBinLocation is implemented using
100  // the binary search algorithm.
101  //
102  // Because this is a virtual function, it is accessed through a
103  // pointer to the G4PhysicsVector object for most usages. In this
104  // case, 'inline' will not be invoked. However, there is a possibility
105  // that the user access to the G4PhysicsFreeVector object directly and
106  // not through pointers or references. In this case, the 'inline' will
107  // be invoked. (See R.B.Murray, "C++ Strategies and Tactics", Chap.6.6)
108
109  size_t lowerBound = 0;
110  size_t upperBound = numberOfNodes-2;
111
112  while (lowerBound <= upperBound)
113  {
114    size_t midBin = (lowerBound + upperBound)/2;
115    if( theEnergy < binVector[midBin] )
116       { upperBound = midBin-1; }
117    else
118       { lowerBound = midBin+1; }
119  }
120
121  return upperBound;
122}
123
124#endif
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