Geant4  9.6.p02
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CexmcProductionModelMessenger.cc
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26 /*
27  * ============================================================================
28  *
29  * Filename: CexmcProductionModelMessenger.cc
30  *
31  * Description: set various production model aspects
32  *
33  * Version: 1.0
34  * Created: 03.11.2009 16:01:24
35  * Revision: none
36  * Compiler: gcc
37  *
38  * Author: Alexey Radkov (),
39  * Company: PNPI
40  *
41  * ============================================================================
42  */
43 
44 #include <G4UIcmdWithABool.hh>
45 #include <G4UIcmdWith3Vector.hh>
46 #include "CexmcProductionModel.hh"
48 #include "CexmcMessenger.hh"
49 
50 
52  CexmcProductionModel * productionModel ) :
53  productionModel( productionModel ), applyFermiMotion( NULL ),
54  setAngularRange( NULL ), addAngularRange( NULL )
55 {
56  applyFermiMotion = new G4UIcmdWithABool(
57  ( CexmcMessenger::physicsDirName + "applyFermiMotionInTarget" ).c_str(),
58  this );
59  applyFermiMotion->SetGuidance( "Switch on/off fermi motion in target "
60  "nuclei" );
61  applyFermiMotion->SetParameterName( "ApplyFermiMotionInTarget", true );
62  applyFermiMotion->SetDefaultValue( true );
63  applyFermiMotion->AvailableForStates( G4State_PreInit, G4State_Idle );
64 
65  setAngularRange = new G4UIcmdWith3Vector(
66  ( CexmcMessenger::physicsDirName + "setAngularRange" ).c_str(), this );
67  setAngularRange->SetGuidance(
68  "\n Set angular range of interest given in values of cosinus;\n"
69  " first two values give the range (descending or ascending),\n"
70  " third value gives number of equal divisions within the\n"
71  " range." );
72  setAngularRange->SetParameterName( "ARangeTop", "ARangeBottom",
73  "ARangeNmbOfDivisions", false );
74  setAngularRange->SetRange(
75  "ARangeTop >= -1.0 && ARangeTop <= 1.0 && "
76  "ARangeBottom >= -1.0 && ARangeBottom <= 1.0 && "
77  "ARangeNmbOfDivisions >= 1" );
78  setAngularRange->AvailableForStates( G4State_PreInit, G4State_Idle );
79 
80  addAngularRange = new G4UIcmdWith3Vector(
81  ( CexmcMessenger::physicsDirName + "addAngularRange" ).c_str(), this );
82  addAngularRange->SetGuidance(
83  "\n Add angular range of interest given in values of cosinus;\n"
84  " first two values give the range (descending or ascending),\n"
85  " third value gives number of equal divisions within the\n"
86  " range." );
87  addAngularRange->SetParameterName( "ARangeTop", "ARangeBottom",
88  "ARangeNmbOfDivisions", false );
89  addAngularRange->SetRange(
90  "ARangeTop >= -1.0 && ARangeTop <= 1.0 && "
91  "ARangeBottom >= -1.0 && ARangeBottom <= 1.0 && "
92  "ARangeNmbOfDivisions >= 1" );
93  addAngularRange->AvailableForStates( G4State_PreInit, G4State_Idle );
94 }
95 
96 
98 {
99  delete applyFermiMotion;
100  delete setAngularRange;
101  delete addAngularRange;
102 }
103 
104 
106  G4String value )
107 {
108  do
109  {
110  if ( cmd == applyFermiMotion )
111  {
112  productionModel->ApplyFermiMotion(
114  break;
115  }
116  if ( cmd == setAngularRange )
117  {
119  value ) );
120  G4double top( std::max( vec.x(), vec.y() ) );
121  G4double bottom( std::min( vec.x(), vec.y() ) );
122  productionModel->SetAngularRange( top, bottom,
123  static_cast< int >( vec.z() ) );
124  break;
125  }
126  if ( cmd == addAngularRange )
127  {
129  value ) );
130  G4double top( std::max( vec.x(), vec.y() ) );
131  G4double bottom( std::min( vec.x(), vec.y() ) );
132  productionModel->AddAngularRange( top, bottom,
133  static_cast< int >( vec.z() ) );
134  break;
135  }
136  } while ( false );
137 }
138