41    for(i=0;i<nEnergy;i++)
 
   45      if(theAngular[i].GetEnergy()>anEnergy) 
break;
 
   47      if(theAngular[i].GetEnergy()>=anEnergy) 
break;
 
   50    if( getenv(
"G4PHPTEST") )    
G4cout << i << 
" G4ParticleHPContEnergyAngular dataE " << theAngular[i].
GetEnergy() << 
" > " << anEnergy << 
" it_theAngular " << it << 
" interpolation " << theInterpolation << 
G4endl; 
 
   57      result = theAngular[0].
Sample(anEnergy, massCode, targetMass, 
 
   58                                   theAngularRep, theInterpolation);
 
   78      result = theAngular[it].
Sample(anEnergy, massCode, targetMass, 
 
   79                     theAngularRep, theInterpolation);
 
   82     if( getenv(
"G4PHPTEST") )     
G4cout << i << 
" G4ParticleHPContEnergyAngular To BUILDBYINTERPOLATION " << it << 
" : " << theAngular[it].
GetEnergy()<< 
" , " << theAngular[it].
GetNEnergies() << 
" " << it-1 << 
" : " << theAngular[it-1].
GetEnergy()<< 
" : " << theAngular[it-1].
GetNEnergies() << 
G4endl; 
 
   92      result = angular->
Sample(anEnergy, massCode, targetMass, 
 
   93                  theAngularRep, theInterpolation);
 
G4double G4ParticleHPJENDLHEData::G4double result
 
void SetTargetCode(G4double aTargetCode)
 
G4ReactionProduct * Sample(G4double anEnergy, G4double massCode, G4double mass, G4int angularRep, G4int interpol)
 
void BuildByInterpolation(G4double anEnergy, G4InterpolationScheme aScheme, G4ParticleHPContAngularPar &store1, G4ParticleHPContAngularPar &store2)
 
void SetInterpolation(G4int theInterpolation)
 
G4double MeanEnergyOfThisInteraction()
 
G4GLOB_DLL std::ostream G4cout
 
G4InterpolationScheme GetScheme(G4int index) const 
 
void SetPrimary(G4ReactionProduct *aPrimary)
 
G4ReactionProduct * GetProjectileRP()
 
void Put(const value_type &val) const 
 
G4ReactionProduct * GetTarget()
 
void SetTarget(G4ReactionProduct *aTarget)
 
G4double MeanEnergyOfThisInteraction()
 
G4int GetNEnergies() const