source: trunk/source/particles/management/include/G4ElectronOccupancy.hh @ 1340

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25//
26//
27// $Id: G4ElectronOccupancy.hh,v 1.12 2010/10/27 07:47:05 gcosmo Exp $
28// GEANT4 tag $Name: particles-V09-03-15 $
29//
30//
31// ------------------------------------------------------------
32//      GEANT 4 class header file
33//
34//      History: first implementation, based on object model of
35//      Hisaya Kurashige, 17 Aug 1999
36// ----------------------------------------------------------------
37// Class Description
38//     This class has information of occupation of electrons
39//     in atomic orbits
40// - 
41//     GetOccupancy(N) gives the number of electron
42//     in N-th orbit
43//       For example : Carbon atom should be
44//          GetOccupancy(0)      --> 2
45//          GetOccupancy(1)      --> 4
46//          GetOccupancy(2..7)   --> 0
47// -
48//     GetTotalOccupancy() gives the total number of electrons
49//
50// ---------------------------------------------------------------
51
52
53
54#ifndef G4ElectronOccupancy_h
55#define G4ElectronOccupancy_h 1
56
57#include "globals.hh"
58#include "G4Allocator.hh"
59#include "G4ios.hh"
60
61class G4ElectronOccupancy 
62{
63 public:
64   enum { MaxSizeOfOrbit = 10};
65
66 public: // With Description
67   G4ElectronOccupancy( G4int sizeOrbit = MaxSizeOfOrbit   );
68   G4ElectronOccupancy( const G4ElectronOccupancy& right );
69
70 public:
71   virtual             ~G4ElectronOccupancy();
72
73  //  new/delete operators are oberloded to use G4Allocator
74     inline void *operator new(size_t);
75     inline void operator delete(void *aElectronOccupancy);
76
77 
78  //- operators
79     G4ElectronOccupancy & operator=(const G4ElectronOccupancy &right);
80     G4int operator==(const G4ElectronOccupancy &right) const;
81     G4int operator!=(const G4ElectronOccupancy &right) const;
82   
83 public: // With Description
84   // The following methods returns
85   //     0:  if the orbit(atom) is vacant
86   //    >0:  number of electrons in orbit
87   G4int  GetTotalOccupancy() const;
88   G4int  GetOccupancy(G4int orbit) const;
89 
90   //
91   G4int  AddElectron(G4int orbit, G4int number = 1);
92   G4int  RemoveElectron(G4int orbit, G4int number = 1);
93   
94   G4int  GetSizeOfOrbit() const;
95   void   DumpInfo() const;
96
97 private:
98   G4int  theSizeOfOrbit;
99   G4int  theTotalOccupancy;
100   G4int* theOccupancies;
101
102};
103
104#if defined G4PARTICLES_ALLOC_EXPORT
105  extern G4DLLEXPORT G4Allocator<G4ElectronOccupancy> aElectronOccupancyAllocator;
106#else
107  extern G4DLLIMPORT G4Allocator<G4ElectronOccupancy> aElectronOccupancyAllocator;
108#endif
109
110// ------------------------
111// Inlined operators
112// ------------------------
113
114inline void * G4ElectronOccupancy::operator new(size_t)
115{
116  void * aElectronOccupancy;
117  aElectronOccupancy = (void *) aElectronOccupancyAllocator.MallocSingle();
118  return aElectronOccupancy;
119}
120
121inline void G4ElectronOccupancy::operator delete(void * aElectronOccupancy)
122{
123  aElectronOccupancyAllocator.FreeSingle((G4ElectronOccupancy *) aElectronOccupancy);
124}
125
126inline
127 G4int  G4ElectronOccupancy::GetSizeOfOrbit() const
128{
129  return  theSizeOfOrbit;
130}
131
132inline
133 G4int G4ElectronOccupancy::GetTotalOccupancy() const
134{
135  return  theTotalOccupancy;
136}
137
138inline
139 G4int  G4ElectronOccupancy::GetOccupancy(G4int orbit) const
140{
141  G4int value = 0;
142  if ((orbit >=0)&&(orbit<theSizeOfOrbit)){
143    value = theOccupancies[orbit];
144  }
145  return value; 
146}
147
148inline 
149 G4int  G4ElectronOccupancy::AddElectron(G4int orbit, G4int number)
150{
151  G4int value =0;
152  if ((orbit >=0)&&(orbit<theSizeOfOrbit)){
153    theOccupancies[orbit] += number;
154    theTotalOccupancy += number; 
155    value = number;   
156  }
157  return value;
158}
159
160inline 
161 G4int  G4ElectronOccupancy::RemoveElectron(G4int orbit, G4int number)
162{
163  G4int value =0;
164  if ((orbit >=0)&&(orbit<theSizeOfOrbit) ){
165    if ( theOccupancies[orbit] < number ) number = theOccupancies[orbit];
166    theOccupancies[orbit] -= number;
167    theTotalOccupancy -= number;   
168    value = number;
169  }
170  return value;
171}
172#endif
173
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178
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