source: trunk/source/processes/hadronic/management/include/G4HadronicProcessStore.hh @ 1350

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26// $Id: G4HadronicProcessStore.hh,v 1.7 2010/07/05 14:50:15 vnivanch Exp $
27// GEANT4 tag $Name: hadr-man-V09-03-04 $
28//
29//
30// -------------------------------------------------------------------
31//
32// GEANT4 Class header file
33//
34//
35// File name:     G4HadronicProcessStore
36//
37// Author:        Vladimir Ivanchenko
38//
39// Creation date: 09.05.2008
40//
41// Modifications:
42//
43//
44// Class Description:
45//
46
47// -------------------------------------------------------------------
48//
49
50#ifndef G4HadronicProcessStore_h
51#define G4HadronicProcessStore_h 1
52
53
54#include "globals.hh"
55#include "G4DynamicParticle.hh"
56#include "G4ThreeVector.hh"
57#include "G4HadronicProcess.hh"
58#include "G4HadronicInteraction.hh"
59#include "G4ParticleDefinition.hh"
60#include "G4HadronicProcessType.hh"
61#include <map>
62#include <vector>
63
64class G4Element;
65class G4HadronicEPTestMessenger;
66
67
68class G4HadronicProcessStore
69{
70
71public:
72
73  static G4HadronicProcessStore* Instance();
74
75  ~G4HadronicProcessStore();
76
77  void Clean();
78
79  G4double GetInelasticCrossSectionPerVolume(
80    const G4ParticleDefinition *aParticle,
81    G4double kineticEnergy,
82    const G4Material *material);
83
84  G4double GetInelasticCrossSectionPerAtom(
85    const G4ParticleDefinition *aParticle,
86    G4double kineticEnergy,
87    const G4Element *anElement);
88
89  G4double GetInelasticCrossSectionPerIsotope(
90    const G4ParticleDefinition *aParticle,
91    G4double kineticEnergy,
92    G4int Z, G4int A);
93
94  G4double GetElasticCrossSectionPerVolume(
95    const G4ParticleDefinition *aParticle,
96    G4double kineticEnergy,
97    const G4Material *material);
98
99  G4double GetElasticCrossSectionPerAtom(
100    const G4ParticleDefinition *aParticle,
101    G4double kineticEnergy,
102    const G4Element *anElement);
103
104  G4double GetElasticCrossSectionPerIsotope(
105    const G4ParticleDefinition *aParticle,
106    G4double kineticEnergy,
107    G4int Z, G4int A);
108
109  G4double GetCaptureCrossSectionPerVolume(
110    const G4ParticleDefinition *aParticle,
111    G4double kineticEnergy,
112    const G4Material *material);
113
114  G4double GetCaptureCrossSectionPerAtom(
115    const G4ParticleDefinition *aParticle,
116    G4double kineticEnergy,
117    const G4Element *anElement);
118
119  G4double GetCaptureCrossSectionPerIsotope(
120    const G4ParticleDefinition *aParticle,
121    G4double kineticEnergy,
122    G4int Z, G4int A);
123
124  G4double GetFissionCrossSectionPerVolume(
125    const G4ParticleDefinition *aParticle,
126    G4double kineticEnergy,
127    const G4Material *material);
128
129  G4double GetFissionCrossSectionPerAtom(
130    const G4ParticleDefinition *aParticle,
131    G4double kineticEnergy,
132    const G4Element *anElement);
133
134  G4double GetFissionCrossSectionPerIsotope(
135    const G4ParticleDefinition *aParticle,
136    G4double kineticEnergy,
137    G4int Z, G4int A);
138
139  G4double GetChargeExchangeCrossSectionPerVolume(
140    const G4ParticleDefinition *aParticle,
141    G4double kineticEnergy,
142    const G4Material *material);
143
144  G4double GetChargeExchangeCrossSectionPerAtom(
145    const G4ParticleDefinition *aParticle,
146    G4double kineticEnergy,
147    const G4Element *anElement);
148
149  G4double GetChargeExchangeCrossSectionPerIsotope(
150    const G4ParticleDefinition *aParticle,
151    G4double kineticEnergy,
152    G4int Z, G4int A);
153
154  // register/deregister processes following G4HadronicProcess interface
155  void Register(G4HadronicProcess*); 
156
157  void RegisterParticle(G4HadronicProcess*,
158                        const G4ParticleDefinition*); 
159
160  void RegisterInteraction(G4HadronicProcess*,
161                           G4HadronicInteraction*); 
162
163  void DeRegister(G4HadronicProcess*); 
164
165  // register/deregister processes following only G4VProcess interface
166  void RegisterExtraProcess(G4VProcess*); 
167
168  void RegisterParticleForExtraProcess(G4VProcess*,
169                                       const G4ParticleDefinition*); 
170
171  void DeRegisterExtraProcess(G4VProcess*); 
172
173  void PrintInfo(const G4ParticleDefinition*); 
174
175  void Dump(G4int level);
176
177  void SetVerbose(G4int val);
178
179  G4int GetVerbose();
180
181  G4HadronicProcess* FindProcess(const G4ParticleDefinition*, 
182                                 G4HadronicProcessType subType);
183
184  // Energy-momentum non-conservation limits and reporting
185  void SetEpReportLevel(G4int level);
186
187  void SetProcessAbsLevel(G4double absoluteLevel);
188
189  void SetProcessRelLevel(G4double relativeLevel);
190
191private:
192
193  // constructor
194  G4HadronicProcessStore();
195
196  // print process info
197  void Print(G4int idxProcess, G4int idxParticle);
198
199  static G4HadronicProcessStore* theInstance;
200
201  typedef const G4ParticleDefinition* PD;
202  typedef G4HadronicProcess* HP;
203  typedef G4HadronicInteraction* HI;
204
205  // hadronic processes following G4HadronicProcess interface
206  std::vector<G4HadronicProcess*> process;
207  std::vector<G4HadronicInteraction*> model;
208  std::vector<G4String> modelName;
209  std::vector<PD> particle;
210  std::vector<G4int> wasPrinted;
211
212  std::multimap<PD,HP> p_map;
213  std::multimap<HP,HI> m_map;
214
215  // hadronic processes following only G4VProcess interface
216  std::vector<G4VProcess*> extraProcess;
217  std::multimap<PD,G4VProcess*> ep_map;
218
219  // counters and options
220  G4int n_proc;
221  G4int n_model;
222  G4int n_part;
223  G4int n_extra;
224
225  G4int  verbose;
226  G4bool buildTableStart;
227
228  // cash
229  HP   currentProcess;
230  PD   currentParticle;
231
232  G4DynamicParticle localDP;
233
234  G4HadronicEPTestMessenger* theEPTestMessenger;
235};
236
237
238#endif
239
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