source: trunk/source/processes/hadronic/models/management/src/G4HadronicInteraction.cc@ 1350

Last change on this file since 1350 was 1340, checked in by garnier, 15 years ago

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[819]1//
2// ********************************************************************
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
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19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
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24// ********************************************************************
25//
[1315]26// $Id: G4HadronicInteraction.cc,v 1.7 2010/04/03 00:40:57 dennis Exp $
[1340]27// GEANT4 tag $Name: geant4-09-03-ref-09 $
[819]28//
[1055]29// Hadronic Interaction base class
30// original by H.P. Wellisch
31// modified by J.L. Chuma, TRIUMF, 21-Mar-1997
32// Last modified: 04-Apr-1997
33// reimplemented 1.11.2003 JPW.
34// 23-Jan-2009 V.Ivanchenko move constructor and destructor to the body
35
[819]36#include "G4HadronicInteraction.hh"
[1055]37#include "G4HadronicInteractionRegistry.hh"
38#include "G4HadronicException.hh"
39
40G4HadronicInteraction::G4HadronicInteraction(const G4String& modelName) :
[1196]41 verboseLevel(0), theMinEnergy(0.0), theMaxEnergy(25.0*GeV),
[1315]42 isBlocked(false), recoilEnergyThreshold(0.0), theModelName(modelName),
43 epCheckLevels(DBL_MAX, DBL_MAX)
[1055]44{
45 G4HadronicInteractionRegistry::Instance()->RegisterMe(this);
46}
[1315]47
48
[1055]49G4HadronicInteraction::~G4HadronicInteraction()
50{
51 G4HadronicInteractionRegistry::Instance()->RemoveMe(this);
52}
[1196]53
[1315]54
[1196]55G4double
56G4HadronicInteraction::SampleInvariantT(const G4ParticleDefinition*,
57 G4double, G4int, G4int)
58{
59 return 0.0;
60}
[819]61
[1055]62G4double G4HadronicInteraction::GetMinEnergy(
[819]63 const G4Material *aMaterial, const G4Element *anElement ) const
[1055]64{
65 size_t i;
66 if( IsBlocked(aMaterial) )return 0.*GeV;
67 if( IsBlocked(anElement) )return 0.*GeV;
68 for( i=0; i<theMinEnergyListElements.size(); ++i )
[819]69 {
[1055]70 if( anElement == theMinEnergyListElements[i].second )
71 return theMinEnergyListElements[i].first;
[819]72 }
73 for( i=0; i<theMinEnergyList.size(); ++i )
74 {
[1055]75 if( aMaterial == theMinEnergyList[i].second )
76 return theMinEnergyList[i].first;
[819]77 }
78 if(IsBlocked()) return 0.*GeV;
79 if( verboseLevel > 0 )
80 G4cout << "*** Warning from HadronicInteraction::GetMinEnergy" << G4endl
81 << " material " << aMaterial->GetName()
82 << " not found in min energy List" << G4endl;
83 return theMinEnergy;
[1055]84}
[819]85
[1055]86void G4HadronicInteraction::SetMinEnergy(G4double anEnergy,
[1196]87 const G4Element *anElement )
[1055]88{
89 if( IsBlocked(anElement) )
90 G4cout << "*** Warning from HadronicInteraction::SetMinEnergy" << G4endl
[819]91 << " The model is not active for the Element "
92 << anElement->GetName() << "." << G4endl;
93
[1055]94 for( size_t i=0; i<theMinEnergyListElements.size(); ++i )
[819]95 {
96 if( anElement == theMinEnergyListElements[i].second )
97 {
98 theMinEnergyListElements[i].first = anEnergy;
99 return;
100 }
101 }
[1196]102 theMinEnergyListElements.push_back(std::pair<G4double, const G4Element *>(anEnergy, anElement));
[1055]103}
[819]104
[1055]105void G4HadronicInteraction::SetMinEnergy(G4double anEnergy,
[1196]106 const G4Material *aMaterial )
[1055]107{
108 if( IsBlocked(aMaterial) )
109 G4cout << "*** Warning from HadronicInteraction::SetMinEnergy" << G4endl
[819]110 << " The model is not active for the Material "
111 << aMaterial->GetName() << "." << G4endl;
112
[1055]113 for( size_t i=0; i<theMinEnergyList.size(); ++i )
[819]114 {
115 if( aMaterial == theMinEnergyList[i].second )
[1055]116 {
117 theMinEnergyList[i].first = anEnergy;
118 return;
119 }
[819]120 }
[1196]121 theMinEnergyList.push_back(std::pair<G4double, const G4Material *>(anEnergy, aMaterial));
[1055]122}
[819]123
[1055]124G4double G4HadronicInteraction::GetMaxEnergy(const G4Material *aMaterial,
125 const G4Element *anElement ) const
126{
127 size_t i;
[1196]128 if( IsBlocked(aMaterial) )return 0.0;
129 if( IsBlocked(anElement) )return 0.0;
[1055]130 for( i=0; i<theMaxEnergyListElements.size(); ++i )
[819]131 {
[1055]132 if( anElement == theMaxEnergyListElements[i].second )
133 return theMaxEnergyListElements[i].first;
[819]134 }
[1196]135 for( i=0; i<theMaxEnergyList.size(); ++i )
[819]136 {
[1055]137 if( aMaterial == theMaxEnergyList[i].second )
138 return theMaxEnergyList[i].first;
[819]139 }
[1196]140 if(IsBlocked()) return 0.*GeV;
141 if( verboseLevel > 0 ) {
[819]142 G4cout << "*** Warning from HadronicInteraction::GetMaxEnergy" << G4endl
[1055]143 << " material " << aMaterial->GetName()
144 << " not found in min energy List" << G4endl;
[1196]145 }
146 return theMaxEnergy;
[1055]147}
[819]148
[1055]149void G4HadronicInteraction::SetMaxEnergy(G4double anEnergy,
[1196]150 const G4Element *anElement )
[1055]151{
[1196]152 if( IsBlocked(anElement) ) {
[1055]153 G4cout << "*** Warning from HadronicInteraction::SetMaxEnergy" << G4endl
[819]154 << "Warning: The model is not active for the Element "
155 << anElement->GetName() << "." << G4endl;
[1196]156 }
[1055]157 for( size_t i=0; i<theMaxEnergyListElements.size(); ++i )
[819]158 {
159 if( anElement == theMaxEnergyListElements[i].second )
160 {
161 theMaxEnergyListElements[i].first = anEnergy;
162 return;
163 }
164 }
[1196]165 theMaxEnergyListElements.push_back(std::pair<G4double, const G4Element *>(anEnergy, anElement));
[1055]166}
[819]167
[1055]168void G4HadronicInteraction::SetMaxEnergy(G4double anEnergy,
[1196]169 const G4Material *aMaterial )
[1055]170{
[1196]171 if( IsBlocked(aMaterial) ) {
[1055]172 G4cout << "*** Warning from HadronicInteraction::SetMaxEnergy" << G4endl
[819]173 << "Warning: The model is not active for the Material "
174 << aMaterial->GetName() << "." << G4endl;
[1196]175 }
[1055]176 for( size_t i=0; i<theMaxEnergyList.size(); ++i )
[819]177 {
178 if( aMaterial == theMaxEnergyList[i].second )
[1055]179 {
[1196]180 theMaxEnergyList[i].first = anEnergy;
181 return;
[1055]182 }
[819]183 }
[1196]184 theMaxEnergyList.push_back(std::pair<G4double, const G4Material *>(anEnergy, aMaterial));
[1055]185}
[819]186
[1196]187void G4HadronicInteraction::DeActivateFor( const G4Material *aMaterial )
[1055]188{
189 theBlockedList.push_back(aMaterial);
190}
[819]191
[1196]192void G4HadronicInteraction::DeActivateFor( const G4Element *anElement )
[1055]193{
194 theBlockedListElements.push_back(anElement);
195}
[819]196
[1055]197G4bool G4HadronicInteraction::IsBlocked( const G4Material *aMaterial ) const
198{
199 for( size_t i=0; i<theBlockedList.size(); ++i )
[819]200 {
201 if( aMaterial == theBlockedList[i] )
[1055]202 {
203 return true;
204 }
[819]205 }
[1055]206 return false;
207}
[819]208
[1055]209G4bool G4HadronicInteraction::IsBlocked( const G4Element *anElement ) const
210{
211 for( size_t i=0; i<theBlockedListElements.size(); ++i )
[819]212 {
213 if( anElement == theBlockedListElements[i] )
[1055]214 {
215 return true;
216 }
[819]217 }
[1055]218 return false;
219}
220
221G4HadronicInteraction::G4HadronicInteraction(const G4HadronicInteraction &right )
222{
223 *this = right;
224}
225
226const G4HadronicInteraction&
227G4HadronicInteraction::operator=(const G4HadronicInteraction &right )
228{
229 G4String text = "unintended use of G4HadronicInteraction::operator=";
230 throw G4HadronicException(__FILE__, __LINE__, text);
231 return right;
232}
[819]233
[1055]234/* end of file */
[819]235
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