785 lines
41 KiB
C++
785 lines
41 KiB
C++
/*
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# <<BEGIN-copyright>>
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# <<END-copyright>>
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*/
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#ifndef MCGIDI_h_included
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#define MCGIDI_h_included
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#define MCGIDI_VERSION_MAJOR 1
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#define MCGIDI_VERSION_MINOR 0
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#define MCGIDI_VERSION_PATCHLEVEL 0
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#ifdef WIN32
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#define M_PI 3.141592653589793238463
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#endif
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#include <GIDI_settings.hh>
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#include <map>
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#include <vector>
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#include <statusMessageReporting.h>
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#include <ptwXY.h>
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#include <xDataTOM.h>
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#include "MCGIDI_mass.h"
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#include "MCGIDI_map.h"
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/* Disable Effective C++ warnings in GIDI code. */
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#if __INTEL_COMPILER > 1399
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#pragma warning( disable:2021 )
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#pragma warning( disable:593 )
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#pragma warning( disable:111 )
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#elif __INTEL_COMPILER > 1199
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#pragma warning( disable:2304 )
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#endif
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#if defined __cplusplus
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extern "C" {
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namespace GIDI {
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#endif
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typedef struct MCGIDI_GammaBranching_s MCGIDI_GammaBranching;
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typedef struct MCGIDI_POP_s MCGIDI_POP;
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typedef struct MCGIDI_POPs_s MCGIDI_POPs;
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typedef struct MCGIDI_particle_s MCGIDI_particle;
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typedef struct MCGIDI_target_s MCGIDI_target;
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typedef struct MCGIDI_target_heated_info_s MCGIDI_target_heated_info;
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typedef struct MCGIDI_target_heated_sorted_s MCGIDI_target_heated_sorted;
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typedef struct MCGIDI_target_heated_s MCGIDI_target_heated;
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typedef struct MCGIDI_reaction_s MCGIDI_reaction;
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typedef struct MCGIDI_outputChannel_s MCGIDI_outputChannel;
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typedef struct MCGIDI_product_s MCGIDI_product;
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typedef struct MCGIDI_distribution_s MCGIDI_distribution;
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typedef struct MCGIDI_KalbachMann_s MCGIDI_KalbachMann;
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typedef struct MCGIDI_KalbachMann_ras_s MCGIDI_KalbachMann_ras;
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typedef struct MCGIDI_pdfOfX_s MCGIDI_pdfOfX;
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typedef struct MCGIDI_pdfsOfXGivenW_s MCGIDI_pdfsOfXGivenW;
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typedef struct MCGIDI_pdfsOfXGivenW_sampled_s MCGIDI_pdfsOfXGivenW_sampled;
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typedef struct MCGIDI_angular_s MCGIDI_angular;
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typedef struct MCGIDI_energyWeightedFunctional_s MCGIDI_energyWeightedFunctional;
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typedef struct MCGIDI_energyWeightedFunctionals_s MCGIDI_energyWeightedFunctionals;
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typedef struct MCGIDI_energyNBodyPhaseSpace_s MCGIDI_energyNBodyPhaseSpace;
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typedef struct MCGIDI_energy_s MCGIDI_energy;
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typedef struct MCGIDI_energyAngular_s MCGIDI_energyAngular;
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typedef struct MCGIDI_angularEnergy_s MCGIDI_angularEnergy;
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typedef struct MCGIDI_decaySamplingInfo_s MCGIDI_decaySamplingInfo;
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typedef struct MCGIDI_productsInfo_s MCGIDI_productsInfo;
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typedef struct MCGIDI_productInfo_s MCGIDI_productInfo;
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typedef struct MCGIDI_sampledProductsData_s MCGIDI_sampledProductsData;
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typedef struct MCGIDI_sampledProductsDatas_s MCGIDI_sampledProductsDatas;
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#if defined __cplusplus
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}
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}
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#endif
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enum MCGIDI_quantityLookupMode {
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MCGIDI_quantityLookupMode_pointwise /**< Pointwise data are used to determine a quantity's value an energy E. */,
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MCGIDI_quantityLookupMode_grouped /**< Grouped data are used to determine a quantity's value an energy E. */
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};
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class MCGIDI_quantitiesLookupModes {
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private:
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int mProjectilesPOPID;
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double mProjectileEnergy;
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int mGroupIndex;
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double mProjectileEnergyForGroupIndex;
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double mTemperature;
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enum MCGIDI_quantityLookupMode mCrossSectionMode;
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enum MCGIDI_quantityLookupMode mMultiplicityMode;
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public:
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MCGIDI_quantitiesLookupModes( int projectilesPOPID );
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~MCGIDI_quantitiesLookupModes( );
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inline double getProjectileEnergy( void ) const { return( mProjectileEnergy ); }
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void setProjectileEnergy( double e_in ) { mProjectileEnergy = e_in; }
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inline int getGroupIndex( void ) const { return( mGroupIndex ); }
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int setGroupIndex( GIDI_settings const &settings, bool encloseOutOfRange );
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inline double getTemperature( void ) const { return( mTemperature ); }
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void setTemperature( double temperature ) { mTemperature = temperature; }
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enum MCGIDI_quantityLookupMode getMode( std::string const &quantity ) const;
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enum MCGIDI_quantityLookupMode getCrossSectionMode( void ) const { return( mCrossSectionMode ); };
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std::vector<std::string> getListOfLookupQuanities( ) const;
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void setMode( std::string const &quantity, enum MCGIDI_quantityLookupMode mode );
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void setCrossSectionMode( enum MCGIDI_quantityLookupMode mode ) { mCrossSectionMode = mode; };
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void setModeAll( enum MCGIDI_quantityLookupMode mode );
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};
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typedef struct MCGIDI_samplingMultiplicityBias_s MCGIDI_samplingMultiplicityBias;
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struct MCGIDI_samplingMultiplicityBias_s {
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int PoPID;
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double multiplicityFactor;
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};
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class MCGIDI_samplingMethods {
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public:
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MCGIDI_samplingMethods( );
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~MCGIDI_samplingMethods( );
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};
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class MCGIDI_samplingSettings {
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private: // This is user input.
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enum GIDI::xDataTOM_frame mWantFrame;
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bool mWantVelocities;
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double (*mRng)( void * );
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void *mRngState;
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std::vector<struct MCGIDI_samplingMultiplicityBias_s> mSamplingMultiplicityBiases;
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public: // Temporary variables used in MCGIDI sampling routines.
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enum GIDI::xDataTOM_frame mGotFrame;
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GIDI::MCGIDI_POP *mPoP;
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double mMu;
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double mEp;
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public:
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MCGIDI_samplingSettings( enum GIDI::xDataTOM_frame frame, bool wantVelocities, double (*rng)( void * ), void *rngState );
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~MCGIDI_samplingSettings( );
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inline double getProductMultiplicityBias( int PoPID ) const {
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for( int i1 = 0; i1 < (int) mSamplingMultiplicityBiases.size( ); ++i1 ) {
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if( PoPID == mSamplingMultiplicityBiases[i1].PoPID ) return( mSamplingMultiplicityBiases[i1].multiplicityFactor );
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}
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return( 1. ); }
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int setProductMultiplicityBias( GIDI::statusMessageReporting *smr, int PoPID, double fractor );
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};
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#if defined __cplusplus
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extern "C" {
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namespace GIDI {
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#endif
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enum MCGIDI_transportability { /**< This enum is used to give the transportability status for a particle in a reaction or target. */
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MCGIDI_transportability_unknown, /**< Particle is not a product of this reaction or target. */
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MCGIDI_transportability_none, /**< Particle is a product but has not distribution data. */
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MCGIDI_transportability_partial, /**< Particle is a product and has some distribution data. */
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MCGIDI_transportability_full }; /**< Particle is a product and all needed distribution data. */
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#if defined __cplusplus
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}
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}
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#endif
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typedef std::map<int, enum GIDI::MCGIDI_transportability> transportabilitiesMap;
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#if defined __cplusplus
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extern "C" {
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namespace GIDI {
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#endif
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#define MCGIDI_crossSectionType_grouped 1
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#define MCGIDI_crossSectionType_pointwise 2
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#define MCGIDI_nullReaction -10001
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#define MCGIDI_speedOfLight_cm_sec 2.99792458e10
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#define MCGIDI_AMU2MeV 931.494028
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enum MCGIDI_reactionType {
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MCGIDI_reactionType_unknown_e, /* This should never happen. */
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MCGIDI_reactionType_null_e, /* Only occurs when sampling with from grouped cross sections and the projectile is below threshold. */
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MCGIDI_reactionType_elastic_e, /* A nuclear elastic reaction. */
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MCGIDI_reactionType_scattering_e, /* A nuclear reaction where the projectile and target are products as well as gammas,
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excluding reactions that are MCGIDI_reactionType_elastic_e and
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MCGIDI_reactionType_nuclearLevelTransition_e. */
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MCGIDI_reactionType_nuclearIsomerTransmutation_e, /* A nuclear that changes N or Z and is not one of the others.*/
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MCGIDI_reactionType_nuclearLevelTransition_e, /* Reaction in which the residual is the same isotope as the target but in a
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different nuclear level. Mainly for meta-stables. */
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MCGIDI_reactionType_capture_e, /* A nuclear capture reaction. */
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MCGIDI_reactionType_fission_e, /* A nuclear fission reaction. */
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MCGIDI_reactionType_sumOfRemainingOutputChannels_e, /* ENDF MT 5 reactions. */
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MCGIDI_reactionType_atomic_e
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};
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enum MCGIDI_channelGenre { MCGIDI_channelGenre_undefined_e, MCGIDI_channelGenre_twoBody_e, MCGIDI_channelGenre_uncorrelated_e,
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MCGIDI_channelGenre_sumOfRemaining_e, MCGIDI_channelGenre_twoBodyDecay_e, MCGIDI_channelGenre_uncorrelatedDecay_e };
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enum MCGIDI_productMultiplicityType { MCGIDI_productMultiplicityType_invalid_e, MCGIDI_productMultiplicityType_unknown_e, MCGIDI_productMultiplicityType_integer_e,
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MCGIDI_productMultiplicityType_energyDependent_e, MCGIDI_productMultiplicityType_gammaBranching_e, MCGIDI_productMultiplicityType_mixed_e };
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enum MCGIDI_distributionType { MCGIDI_distributionType_none_e, MCGIDI_distributionType_unknown_e, MCGIDI_distributionType_angular_e,
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MCGIDI_distributionType_KalbachMann_e, MCGIDI_distributionType_uncorrelated_e, MCGIDI_distributionType_energyAngular_e,
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MCGIDI_distributionType_angularEnergy_e };
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enum MCGIDI_angularType { MCGIDI_angularType_isotropic, MCGIDI_angularType_recoil, MCGIDI_angularType_linear };
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enum MCGIDI_energyType { MCGIDI_energyType_unknown, MCGIDI_energyType_primaryGamma, MCGIDI_energyType_discreteGamma,
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MCGIDI_energyType_linear, MCGIDI_energyType_generalEvaporation, MCGIDI_energyType_simpleMaxwellianFission, MCGIDI_energyType_evaporation,
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MCGIDI_energyType_Watt, MCGIDI_energyType_MadlandNix, MCGIDI_energyType_NBodyPhaseSpace, MCGIDI_energyType_weightedFunctional };
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extern const char *MCGIDI_productGenre_unknown, *MCGIDI_productGenre_twoBody_angular, *MCGIDI_productGenre_twoBody_formFactor,
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*MCGIDI_productGenre_NBody_angular_energy, *MCGIDI_productGenre_NBody_pairProduction;
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#define MCGIDI_particleLevel_continuum -1
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#define MCGIDI_particleLevel_sum -2
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struct MCGIDI_GammaBranching_s {
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MCGIDI_POP *finalLevel;
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double probability;
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};
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struct MCGIDI_POP_s {
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MCGIDI_POP *next;
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MCGIDI_POP *parent;
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char *name;
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int globalPoPsIndex; /* Index of particle in the PoPs library if particle can be return to packages using */
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int Z, A, level, m; /* this library. Otherwise, -1. */
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double mass_MeV;
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double level_MeV;
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int numberOfGammaBranchs;
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MCGIDI_GammaBranching *gammas;
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};
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struct MCGIDI_POPs_s {
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int numberOfPOPs, size, increment;
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MCGIDI_POP *first, *last, **sorted;
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};
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struct MCGIDI_particle_s {
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MCGIDI_particle *prior;
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MCGIDI_particle *next;
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int ordinal;
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int Z, A, m;
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double mass_MeV;
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char *name;
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};
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struct MCGIDI_decaySamplingInfo_s {
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enum xDataTOM_frame frame; /* The frame the product data are in. */
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int isVelocity; /* See struct MCGIDI_sampledProductsData_s for meaning. This is user input. */
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double (*rng)( void * ); /* User supplied rng. */
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void *rngState; /* User supplied rng state. */
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MCGIDI_POP *pop; /* pop for the sampled product. */
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double mu; /* mu = cos( theta ) for the sampled product. Frame is given by frame member. */
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double Ep; /* Energy of the product. Frame is given by frame member. */
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};
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struct MCGIDI_productInfo_s {
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int globalPoPsIndex;
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enum MCGIDI_productMultiplicityType productMultiplicityType;
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int multiplicity;
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int transportable;
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};
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struct MCGIDI_productsInfo_s {
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int numberOfProducts;
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int numberOfAllocatedProducts;
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MCGIDI_productInfo *productInfo;
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};
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struct MCGIDI_sampledProductsData_s {
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int isVelocity; /* If true, px_vx, py_vy and pz_vz are velocities otherwise momenta. */
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MCGIDI_POP *pop;
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double kineticEnergy;
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double px_vx;
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double py_vy;
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double pz_vz;
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int delayedNeutronIndex;
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double delayedNeutronRate;
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double birthTimeSec; /* Some products, like delayed fission neutrons, are to appear (be born) later. */
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};
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struct MCGIDI_sampledProductsDatas_s {
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int numberOfProducts;
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int numberAllocated;
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int incrementSize;
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MCGIDI_sampledProductsData *products;
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};
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struct MCGIDI_pdfOfX_s {
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int numberOfXs;
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double *Xs;
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double *pdf;
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double *cdf;
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};
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struct MCGIDI_pdfsOfXGivenW_s {
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int numberOfWs;
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ptwXY_interpolation interpolationWY, interpolationXY;
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double *Ws;
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MCGIDI_pdfOfX *dist;
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};
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struct MCGIDI_pdfsOfXGivenW_sampled_s {
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statusMessageReporting *smr;
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ptwXY_interpolation interpolationWY, interpolationXY;
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int iW, iX1, iX2;
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double x, w, frac;
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};
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struct MCGIDI_angular_s {
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enum xDataTOM_frame frame;
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enum MCGIDI_angularType type;
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MCGIDI_angular *recoilProduct;
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MCGIDI_pdfsOfXGivenW dists;
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double projectileMass_MeV, targetMass_MeV, productMass_MeV, residualMass_MeV;
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};
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struct MCGIDI_energyWeightedFunctional_s {
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ptwXYPoints *weight;
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MCGIDI_energy *energy;
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};
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struct MCGIDI_energyWeightedFunctionals_s {
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int numberOfWeights;
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MCGIDI_energyWeightedFunctional weightedFunctional[4]; /* ??????????? Hardwired for no good reason. Will handle up to a (z,4n) reaction. */
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};
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struct MCGIDI_energyNBodyPhaseSpace_s {
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int numberOfProducts;
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double mass, massFactor, e_inCOMFactor, Q_MeV;
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};
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struct MCGIDI_energy_s {
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enum xDataTOM_frame frame;
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enum MCGIDI_energyType type;
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double gammaEnergy_MeV;
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double primaryGammaMassFactor;
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double e_inCOMFactor;
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MCGIDI_pdfsOfXGivenW dists;
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double U;
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ptwXYPoints *theta, *Watt_a, *Watt_b;
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ptwXY_interpolation gInterpolation;
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MCGIDI_pdfOfX g;
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MCGIDI_energyWeightedFunctionals weightedFunctionals;
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MCGIDI_energyNBodyPhaseSpace NBodyPhaseSpace;
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};
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struct MCGIDI_energyAngular_s {
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enum xDataTOM_frame frame;
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MCGIDI_pdfsOfXGivenW pdfOfEpGivenE;
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MCGIDI_pdfsOfXGivenW *pdfOfMuGivenEAndEp; /* The number of MCGIDI_pdfsOfXGivenW allocated is given by pdfOfEpGivenE.numberOfWs. */
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};
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struct MCGIDI_angularEnergy_s {
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enum xDataTOM_frame frame;
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MCGIDI_pdfsOfXGivenW pdfOfMuGivenE;
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MCGIDI_pdfsOfXGivenW *pdfOfEpGivenEAndMu; /* The number of MCGIDI_pdfsOfXGivenW allocated is given by pdfOfMuGivenE.numberOfWs. */
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};
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struct MCGIDI_KalbachMann_ras_s {
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double *rs;
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double *as;
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};
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struct MCGIDI_KalbachMann_s {
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enum xDataTOM_frame frame;
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double energyToMeVFactor, massFactor, Sa, Sb, Ma, mb; /* Needed if a(E,E') is caluclated from the formula. */
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MCGIDI_pdfsOfXGivenW dists; /* Sa currently not used. */
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MCGIDI_KalbachMann_ras *ras;
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};
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struct MCGIDI_distribution_s {
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MCGIDI_product *product;
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enum MCGIDI_distributionType type;
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MCGIDI_angular *angular; /* All distribution forms must have a frame member. */
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MCGIDI_energy *energy;
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MCGIDI_energyAngular *energyAngular;
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MCGIDI_angularEnergy *angularEnergy;
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MCGIDI_KalbachMann *KalbachMann;
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};
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struct MCGIDI_outputChannel_s {
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enum MCGIDI_channelGenre genre;
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MCGIDI_reaction *reaction; /* This is only used for output channels. */
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MCGIDI_product *parent; /* This is only used for decay channels. */
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int QIsFloat;
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double Q;
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int numberOfProducts;
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MCGIDI_product *products;
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};
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struct MCGIDI_product_s {
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MCGIDI_POP *pop;
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char *label;
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MCGIDI_outputChannel *outputChannel;
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int multiplicity; /* If 0, the multiplicity is either 'energyDependent' or 'partialProduction'. */
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int delayedNeutronIndex;
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double delayedNeutronRate;
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ptwXYPoints *multiplicityVsEnergy;
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ptwXYPoints *norms;
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int numberOfPiecewiseMultiplicities;
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ptwXYPoints **piecewiseMultiplicities;
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MCGIDI_distribution distribution;
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MCGIDI_outputChannel decayChannel;
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};
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struct MCGIDI_reaction_s {
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MCGIDI_target_heated *target;
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int ENDF_MT, ENDL_C, ENDL_S;
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enum MCGIDI_reactionType reactionType;
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char const *outputChannelStr;
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xDataTOM_attributionList attributes; /* Do not free, owned by attributes. */
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int domainValuesPresent; /* True if cross section data defined so EMin and EMax are value. */
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int thresholdGroupIndex; /* For grouped data, the group index where threshold starts. */
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double thresholdGroupDomain; /* This is groupEnergy[thresholdGroupIndex+1] - EMin. */
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double thresholdGroupedDeltaCrossSection; /* The adjusted group cross section in group thresholdGroupIndex. */
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double EMin, EMax, finalQ; /* BRB, EMin is used as threshold. However, some reactions, especially charged particle */
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ptwXYPoints *crossSection; /* have effective thresholds much higher than EMin, may need to handle these differently??????? */
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ptwXPoints *crossSectionGrouped;
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MCGIDI_outputChannel outputChannel;
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MCGIDI_productsInfo productsInfo; /* See MCGIDI_reaction_ParseDetermineReactionProducts for description. */
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transportabilitiesMap *transportabilities;
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};
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struct MCGIDI_target_heated_s {
|
|
int ordinal;
|
|
char *path; /* Partial path of input file. */
|
|
char *absPath; /* Full absolute path of input file. */
|
|
MCGIDI_POPs pops;
|
|
MCGIDI_POP *projectilePOP;
|
|
MCGIDI_POP *targetPOP;
|
|
xDataTOM_attributionList attributes;
|
|
char *contents;
|
|
double temperature_MeV;
|
|
double EMin, EMax;
|
|
ptwXYPoints *crossSection;
|
|
ptwXPoints *crossSectionGrouped;
|
|
ptwXPoints *crossSectionGroupedForSampling;
|
|
int numberOfReactions;
|
|
MCGIDI_reaction *reactions;
|
|
transportabilitiesMap *transportabilities;
|
|
};
|
|
|
|
struct MCGIDI_target_heated_info_s {
|
|
int ordinal;
|
|
double temperature;
|
|
char *path; /* Full path of input file. */
|
|
char *contents;
|
|
MCGIDI_target_heated *heatedTarget;
|
|
};
|
|
|
|
struct MCGIDI_target_s {
|
|
char *path; /* Full path of input file. */
|
|
char *absPath; /* Full absolute path of input file. */
|
|
MCGIDI_POP *projectilePOP;
|
|
MCGIDI_POP *targetPOP;
|
|
xDataTOM_attributionList attributes;
|
|
int nHeatedTargets, nReadHeatedTargets;
|
|
MCGIDI_target_heated *baseHeatedTarget; /* The lowest temperature whose contents is "all" data, (e.g, not just "crossSection"). */
|
|
MCGIDI_target_heated_info *heatedTargets; /* List of heated targets in order by temperature. */
|
|
MCGIDI_target_heated_info **readHeatedTargets; /* List of "read in" heated targets in order by temperature. */
|
|
};
|
|
|
|
char const *MCGIDI_version( void );
|
|
int MCGIDI_versionMajor( void );
|
|
int MCGIDI_versionMinor( void );
|
|
int MCGIDI_versionPatchLevel( void );
|
|
|
|
/*
|
|
* Routines in MCGIDI_target.c
|
|
*/
|
|
MCGIDI_target *MCGIDI_target_new( statusMessageReporting *smr );
|
|
int MCGIDI_target_initialize( statusMessageReporting *smr, MCGIDI_target *target );
|
|
MCGIDI_target *MCGIDI_target_newRead( statusMessageReporting *smr, const char *fileName );
|
|
int MCGIDI_target_readFromMapViaPoPIDs( statusMessageReporting *smr, MCGIDI_target *target, MCGIDI_map *map, const char *evaluation,
|
|
int projectile_PoPID, int target_PoPID );
|
|
int MCGIDI_target_readFromMap( statusMessageReporting *smr, MCGIDI_target *target, MCGIDI_map *map, const char *evaluation, const char *projectileName,
|
|
const char *targetName );
|
|
MCGIDI_target *MCGIDI_target_newReadFromMapViaPoPIDs( statusMessageReporting *smr, MCGIDI_map *map, const char *evaluation,
|
|
int projectile_PoPID, int target_PoPID );
|
|
MCGIDI_target *MCGIDI_target_newReadFromMap( statusMessageReporting *smr, MCGIDI_map *map, const char *evaluation, const char *projectileName,
|
|
const char *targetName );
|
|
MCGIDI_target *MCGIDI_target_free( statusMessageReporting *smr, MCGIDI_target *target );
|
|
int MCGIDI_target_release( statusMessageReporting *smr, MCGIDI_target *target );
|
|
int MCGIDI_target_read( statusMessageReporting *smr, MCGIDI_target *target, const char *fileName );
|
|
char const *MCGIDI_target_getAttributesValue( statusMessageReporting *smr, MCGIDI_target *target, char const *name );
|
|
int MCGIDI_target_getTemperatures( statusMessageReporting *smr, MCGIDI_target *target, double *temperatures );
|
|
int MCGIDI_target_readHeatedTarget( statusMessageReporting *smr, MCGIDI_target *target, int index );
|
|
MCGIDI_target_heated *MCGIDI_target_getHeatedTargetAtIndex_ReadIfNeeded( statusMessageReporting *smr, MCGIDI_target *target, int index );
|
|
MCGIDI_target_heated *MCGIDI_target_getHeatedTargetAtTIndex( statusMessageReporting *smr, MCGIDI_target *target, int index );
|
|
|
|
int MCGIDI_target_numberOfReactions( statusMessageReporting *smr, MCGIDI_target *target );
|
|
enum MCGIDI_reactionType MCGIDI_target_getReactionTypeAtIndex( statusMessageReporting *smr, MCGIDI_target *target, int index );
|
|
MCGIDI_reaction *MCGIDI_target_getReactionAtIndex( MCGIDI_target *target, int index );
|
|
MCGIDI_reaction *MCGIDI_target_getReactionAtIndex_smr( statusMessageReporting *smr, MCGIDI_target *target, int index );
|
|
int MCGIDI_target_numberOfProductionReactions( statusMessageReporting *smr, MCGIDI_target *target );
|
|
|
|
transportabilitiesMap const *MCGIDI_target_getUniqueProducts( statusMessageReporting *smr, MCGIDI_target *target );
|
|
int MCGIDI_target_recast( statusMessageReporting *smr, MCGIDI_target *target, GIDI_settings &settings );
|
|
|
|
int MCGIDI_target_getDomain( statusMessageReporting *smr, MCGIDI_target *target, double *EMin, double *EMax );
|
|
double MCGIDI_target_getTotalCrossSectionAtTAndE( statusMessageReporting *smr, MCGIDI_target *target, MCGIDI_quantitiesLookupModes &modes,
|
|
bool sampling );
|
|
double MCGIDI_target_getIndexReactionCrossSectionAtE( statusMessageReporting *smr, MCGIDI_target *target, int index, MCGIDI_quantitiesLookupModes &modes,
|
|
bool sampling );
|
|
int MCGIDI_target_sampleReaction( statusMessageReporting *smr, MCGIDI_target *target, MCGIDI_quantitiesLookupModes &modes, double totalXSec,
|
|
double (*userrng)( void * ), void *rngState );
|
|
int MCGIDI_target_sampleNullReactionProductsAtE( statusMessageReporting *smr, MCGIDI_target *target,
|
|
MCGIDI_quantitiesLookupModes &modes, MCGIDI_decaySamplingInfo *decaySamplingInfo, MCGIDI_sampledProductsDatas *productDatas );
|
|
int MCGIDI_target_sampleIndexReactionProductsAtE( statusMessageReporting *smr, MCGIDI_target *target, int index,
|
|
MCGIDI_quantitiesLookupModes &modes, MCGIDI_decaySamplingInfo *decaySamplingInfo, MCGIDI_sampledProductsDatas *productData );
|
|
double MCGIDI_target_getIndexReactionFinalQ( statusMessageReporting *smr, MCGIDI_target *target, int index, MCGIDI_quantitiesLookupModes &modes );
|
|
|
|
/*
|
|
* Routines in MCGIDI_target_heated.c
|
|
*/
|
|
MCGIDI_target_heated *MCGIDI_target_heated_new( statusMessageReporting *smr );
|
|
int MCGIDI_target_heated_initialize( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
MCGIDI_target_heated *MCGIDI_target_heated_newRead( statusMessageReporting *smr, const char *fileName );
|
|
MCGIDI_target_heated *MCGIDI_target_heated_free( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
int MCGIDI_target_heated_release( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
int MCGIDI_target_heated_read( statusMessageReporting *smr, MCGIDI_target_heated *target, const char *fileName );
|
|
int MCGIDI_target_heated_numberOfReactions( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
int MCGIDI_target_heated_numberOfProductionReactions( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
MCGIDI_reaction *MCGIDI_target_heated_getReactionAtIndex( MCGIDI_target_heated *target, int index );
|
|
MCGIDI_reaction *MCGIDI_target_heated_getReactionAtIndex_smr( statusMessageReporting *smr, MCGIDI_target_heated *target, int index );
|
|
#if 0
|
|
MCGIDI_reaction *MCGIDI_target_heated_getProductionReactionAtIndex( MCGIDI_target_heated *target, int index );
|
|
#endif
|
|
MCGIDI_POP *MCGIDI_target_heated_getPOPForProjectile( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
MCGIDI_POP *MCGIDI_target_heated_getPOPForTarget( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
double MCGIDI_target_heated_getProjectileMass_MeV( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
double MCGIDI_target_heated_getTargetMass_MeV( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
int MCGIDI_target_heated_getEnergyGrid( statusMessageReporting *smr, MCGIDI_target_heated *target, double **energyGrid );
|
|
double MCGIDI_target_heated_getTotalCrossSectionAtE( statusMessageReporting *smr, MCGIDI_target_heated *target, MCGIDI_quantitiesLookupModes &modes,
|
|
bool sampling );
|
|
double MCGIDI_target_heated_getIndexReactionCrossSectionAtE( statusMessageReporting *smr, MCGIDI_target_heated *target, int index,
|
|
MCGIDI_quantitiesLookupModes &modes, bool sampling );
|
|
int MCGIDI_target_heated_sampleIndexReactionProductsAtE( statusMessageReporting *smr, MCGIDI_target_heated *target, int index,
|
|
MCGIDI_quantitiesLookupModes &modes, MCGIDI_decaySamplingInfo *decaySamplingInfo, MCGIDI_sampledProductsDatas *productData );
|
|
double MCGIDI_target_heated_getReactionsThreshold( statusMessageReporting *smr, MCGIDI_target_heated *target, int index );
|
|
int MCGIDI_target_heated_getReactionsDomain( statusMessageReporting *smr, MCGIDI_target_heated *target, int index, double *EMin, double *EMax );
|
|
double MCGIDI_target_heated_getIndexReactionFinalQ( statusMessageReporting *smr, MCGIDI_target_heated *target, int index,
|
|
MCGIDI_quantitiesLookupModes &modes );
|
|
|
|
transportabilitiesMap const *MCGIDI_target_heated_getUniqueProducts( statusMessageReporting *smr, MCGIDI_target_heated *target );
|
|
int MCGIDI_target_heated_recast( statusMessageReporting *smr, MCGIDI_target_heated *target, GIDI_settings &settings );
|
|
|
|
/*
|
|
* Routines in MCGIDI_reaction.c
|
|
*/
|
|
MCGIDI_reaction *MCGIDI_reaction_new( statusMessageReporting *smr );
|
|
int MCGIDI_reaction_initialize( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
MCGIDI_reaction *MCGIDI_reaction_free( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
int MCGIDI_reaction_release( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
int MCGIDI_reaction_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_target_heated *target,
|
|
MCGIDI_POPs *pops, MCGIDI_reaction *reaction );
|
|
enum MCGIDI_reactionType MCGIDI_reaction_getReactionType( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
MCGIDI_target_heated *MCGIDI_reaction_getTargetHeated( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
double MCGIDI_reaction_getProjectileMass_MeV( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
double MCGIDI_reaction_getTargetMass_MeV( statusMessageReporting *smr, MCGIDI_reaction *reaction );
|
|
int MCGIDI_reaction_getDomain( statusMessageReporting *smr, MCGIDI_reaction *reaction, double *EMin, double *EMax );
|
|
int MCGIDI_reaction_fixDomains( statusMessageReporting *smr, MCGIDI_reaction *reaction, double EMin, double EMax, nfu_status *status );
|
|
double MCGIDI_reaction_getCrossSectionAtE( statusMessageReporting *smr, MCGIDI_reaction *reaction, MCGIDI_quantitiesLookupModes &modes, bool sampling );
|
|
double MCGIDI_reaction_getFinalQ( statusMessageReporting *smr, MCGIDI_reaction *reaction, MCGIDI_quantitiesLookupModes &modes );
|
|
int MCGIDI_reaction_getENDF_MTNumber( MCGIDI_reaction *reaction );
|
|
int MCGIDI_reaction_getENDL_CSNumbers( MCGIDI_reaction *reaction, int *S );
|
|
int MCGIDI_reaction_recast( statusMessageReporting *smr, MCGIDI_reaction *reaction, GIDI_settings &settings,
|
|
GIDI_settings_particle const *projectileSettings, double temperature_MeV, ptwXPoints *totalGroupedCrossSection );
|
|
|
|
MCGIDI_productsInfo *MCGIDI_reaction_getProductsInfo( MCGIDI_reaction *reaction );
|
|
int MCGIDI_productsInfo_getNumberOfUniqueProducts( MCGIDI_productsInfo *productsInfo );
|
|
int MCGIDI_productsInfo_getPoPsIndexAtIndex( MCGIDI_productsInfo *productsInfo, int index );
|
|
enum MCGIDI_productMultiplicityType MCGIDI_productsInfo_getMultiplicityTypeAtIndex( MCGIDI_productsInfo *productsInfo, int index );
|
|
int MCGIDI_productsInfo_getIntegerMultiplicityAtIndex( MCGIDI_productsInfo *productsInfo, int index );
|
|
int MCGIDI_productsInfo_getTransportableAtIndex( MCGIDI_productsInfo *productsInfo, int index );
|
|
|
|
/*
|
|
* Routines in MCGIDI_pop.c
|
|
*/
|
|
MCGIDI_POPs *MCGIDI_POPs_new( statusMessageReporting *smr, int size );
|
|
int MCGIDI_POPs_initial( statusMessageReporting *smr, MCGIDI_POPs *pops, int size );
|
|
void *MCGIDI_POPs_free( MCGIDI_POPs *pops );
|
|
int MCGIDI_POPs_release( MCGIDI_POPs *pops );
|
|
MCGIDI_POP *MCGIDI_POPs_addParticleIfNeeded( statusMessageReporting *smr, MCGIDI_POPs *pops, char const *name, double mass_MeV,
|
|
double level_MeV, MCGIDI_POP *parent, int globalParticle );
|
|
int MCGIDI_POPs_findParticleIndex( MCGIDI_POPs *pops, char const *name );
|
|
MCGIDI_POP *MCGIDI_POPs_findParticle( MCGIDI_POPs *pops, char const *name );
|
|
void MCGIDI_POPs_writeSortedList( MCGIDI_POPs *pops, FILE *f );
|
|
void MCGIDI_POPs_printSortedList( MCGIDI_POPs *pops );
|
|
|
|
MCGIDI_POP *MCGIDI_POP_new( statusMessageReporting *smr, char const *name, double mass_MeV, double level_MeV, MCGIDI_POP *parent );
|
|
MCGIDI_POP *MCGIDI_POP_free( MCGIDI_POP *pop );
|
|
MCGIDI_POP *MCGIDI_POP_release( MCGIDI_POP *pop );
|
|
double MCGIDI_POP_getMass_MeV( MCGIDI_POP *pop );
|
|
|
|
/*
|
|
* Routines in MCGIDI_particle.c
|
|
*/
|
|
MCGIDI_particle *MCGIDI_particle_new( statusMessageReporting *smr );
|
|
int MCGIDI_particle_initialize( statusMessageReporting *smr, MCGIDI_particle *particle );
|
|
MCGIDI_particle *MCGIDI_particle_free( statusMessageReporting *smr, MCGIDI_particle *particle );
|
|
int MCGIDI_particle_release( statusMessageReporting *smr, MCGIDI_particle *particle );
|
|
int MCGIDI_particle_freeInternalList( statusMessageReporting *smr );
|
|
MCGIDI_particle *MCGIDI_particle_getInternalID( statusMessageReporting *smr, const char * const name, MCGIDI_POPs *pops );
|
|
int MCGIDI_particle_printInternalSortedList( statusMessageReporting *smr );
|
|
|
|
/*
|
|
* Routines in MCGIDI_outputChannel.c
|
|
*/
|
|
MCGIDI_outputChannel *MCGIDI_outputChannel_new( statusMessageReporting *smr );
|
|
int MCGIDI_outputChannel_initialize( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
MCGIDI_outputChannel *MCGIDI_outputChannel_free( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
int MCGIDI_outputChannel_release( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
int MCGIDI_outputChannel_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_POPs *pops, MCGIDI_outputChannel *outputChannel,
|
|
MCGIDI_reaction *reaction, MCGIDI_product *parent );
|
|
int MCGIDI_outputChannel_numberOfProducts( MCGIDI_outputChannel *outputChannel );
|
|
MCGIDI_product *MCGIDI_outputChannel_getProductAtIndex( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel, int i );
|
|
int MCGIDI_outputChannel_getDomain( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel, double *EMin, double *EMax );
|
|
MCGIDI_target_heated *MCGIDI_outputChannel_getTargetHeated( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
double MCGIDI_outputChannel_getProjectileMass_MeV( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
double MCGIDI_outputChannel_getTargetMass_MeV( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel );
|
|
double MCGIDI_outputChannel_getQ_MeV( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel, double e_in );
|
|
double MCGIDI_outputChannel_getFinalQ( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel, double e_in );
|
|
int MCGIDI_outputChannel_sampleProductsAtE( statusMessageReporting *smr, MCGIDI_outputChannel *outputChannel, MCGIDI_quantitiesLookupModes &modes,
|
|
MCGIDI_decaySamplingInfo *decaySamplingInfo, MCGIDI_sampledProductsDatas *productDatas, double *masses );
|
|
|
|
/*
|
|
* Routines in MCGIDI_product.c
|
|
*/
|
|
MCGIDI_product *MCGIDI_product_new( statusMessageReporting *smr );
|
|
int MCGIDI_product_initialize( statusMessageReporting *smr, MCGIDI_product *product );
|
|
MCGIDI_product *MCGIDI_product_free( statusMessageReporting *smr, MCGIDI_product *product );
|
|
int MCGIDI_product_release( statusMessageReporting *smr, MCGIDI_product *product );
|
|
int MCGIDI_product_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_outputChannel *outputChannel,
|
|
MCGIDI_POPs *pops, MCGIDI_product *product, int *delayedNeutronIndex );
|
|
int MCGIDI_product_getDomain( statusMessageReporting *smr, MCGIDI_product *product, double *EMin, double *EMax );
|
|
int MCGIDI_product_setTwoBodyMasses( statusMessageReporting *smr, MCGIDI_product *product, double projectileMass_MeV, double targetMass_MeV,
|
|
double productMass_MeV, double residualMass_MeV );
|
|
double MCGIDI_product_getMass_MeV( statusMessageReporting *smr, MCGIDI_product *product );
|
|
MCGIDI_target_heated *MCGIDI_product_getTargetHeated( statusMessageReporting *smr, MCGIDI_product *product );
|
|
double MCGIDI_product_getProjectileMass_MeV( statusMessageReporting *smr, MCGIDI_product *product );
|
|
double MCGIDI_product_getTargetMass_MeV( statusMessageReporting *smr, MCGIDI_product *product );
|
|
int MCGIDI_product_sampleMultiplicity( statusMessageReporting *smr, MCGIDI_product *product, double e_in, double r );
|
|
int MCGIDI_product_sampleMu( statusMessageReporting *smr, MCGIDI_product *product, MCGIDI_quantitiesLookupModes &modes,
|
|
MCGIDI_decaySamplingInfo *decaySamplingInfo );
|
|
|
|
int MCGIDI_sampledProducts_initialize( statusMessageReporting *smr, MCGIDI_sampledProductsDatas *sampledProductsDatas, int incrementSize );
|
|
int MCGIDI_sampledProducts_release( statusMessageReporting *smr, MCGIDI_sampledProductsDatas *sampledProductsDatas );
|
|
int MCGIDI_sampledProducts_remalloc( statusMessageReporting *smr, MCGIDI_sampledProductsDatas *sampledProductsDatas );
|
|
int MCGIDI_sampledProducts_addProduct( statusMessageReporting *smr, MCGIDI_sampledProductsDatas *sampledProductsDatas,
|
|
MCGIDI_sampledProductsData *sampledProductsData );
|
|
int MCGIDI_sampledProducts_number( MCGIDI_sampledProductsDatas *sampledProductsDatas );
|
|
MCGIDI_sampledProductsData *MCGIDI_sampledProducts_getProductAtIndex( MCGIDI_sampledProductsDatas *sampledProductsDatas, int index );
|
|
|
|
/*
|
|
* Routines in MCGIDI_distribution.c
|
|
*/
|
|
MCGIDI_distribution *MCGIDI_distribution_new( statusMessageReporting *smr );
|
|
int MCGIDI_distribution_initialize( statusMessageReporting *smr, MCGIDI_distribution *distribution );
|
|
MCGIDI_distribution *MCGIDI_distribution_free( statusMessageReporting *smr, MCGIDI_distribution *distribution );
|
|
int MCGIDI_distribution_release( statusMessageReporting *smr, MCGIDI_distribution *distribution );
|
|
int MCGIDI_distribution_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_product *product, MCGIDI_POPs *pops, ptwXYPoints *norms );
|
|
|
|
/*
|
|
* Routines in MCGIDI_angular.c
|
|
*/
|
|
MCGIDI_angular *MCGIDI_angular_new( statusMessageReporting *smr );
|
|
int MCGIDI_angular_initialize( statusMessageReporting *smr, MCGIDI_angular *angular );
|
|
MCGIDI_angular *MCGIDI_angular_free( statusMessageReporting *smr, MCGIDI_angular *angular );
|
|
int MCGIDI_angular_release( statusMessageReporting *smr, MCGIDI_angular *angular );
|
|
int MCGIDI_angular_setTwoBodyMasses( statusMessageReporting *smr, MCGIDI_angular *angular, double projectileMass_MeV, double targetMass_MeV,
|
|
double productMass_MeV, double residualMass_MeV );
|
|
int MCGIDI_angular_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution, ptwXYPoints *norms );
|
|
int MCGIDI_angular_sampleMu( statusMessageReporting *smr, MCGIDI_angular *angular, MCGIDI_quantitiesLookupModes &modes,
|
|
MCGIDI_decaySamplingInfo *decaySamplingInfo );
|
|
|
|
/*
|
|
* Routines in MCGIDI_energy.c
|
|
*/
|
|
MCGIDI_energy *MCGIDI_energy_new( statusMessageReporting *smr );
|
|
int MCGIDI_energy_initialize( statusMessageReporting *smr, MCGIDI_energy *energy );
|
|
MCGIDI_energy *MCGIDI_energy_free( statusMessageReporting *smr, MCGIDI_energy *energy );
|
|
int MCGIDI_energy_release( statusMessageReporting *smr, MCGIDI_energy *energy );
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int MCGIDI_energy_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution, ptwXYPoints *norms,
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enum MCGIDI_energyType energyType, double gammaEnergy_MeV );
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int MCGIDI_energy_sampleEnergy( statusMessageReporting *smr, MCGIDI_energy *energy, MCGIDI_quantitiesLookupModes &modes,
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MCGIDI_decaySamplingInfo *decaySamplingInfo );
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/*
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* Routines in MCGIDI_energyAngular.c
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*/
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int MCGIDI_energyAngular_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution );
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MCGIDI_energyAngular *MCGIDI_energyAngular_new( statusMessageReporting *smr );
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int MCGIDI_energyAngular_initialize( statusMessageReporting *smr, MCGIDI_energyAngular *energyAngular );
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MCGIDI_energyAngular *MCGIDI_energyAngular_free( statusMessageReporting *smr, MCGIDI_energyAngular *energyAngular );
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int MCGIDI_energyAngular_release( statusMessageReporting *smr, MCGIDI_energyAngular *energyAngular );
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int MCGIDI_energyAngular_sampleDistribution( statusMessageReporting *smr, MCGIDI_distribution *distribution, MCGIDI_quantitiesLookupModes &modes,
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MCGIDI_decaySamplingInfo *decaySamplingInfo );
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/*
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* Routines in MCGIDI_angularEnergy.c
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*/
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MCGIDI_angularEnergy *MCGIDI_angularEnergy_new( statusMessageReporting *smr );
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int MCGIDI_angularEnergy_initialize( statusMessageReporting *smr, MCGIDI_angularEnergy *energyAngular );
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MCGIDI_angularEnergy *MCGIDI_angularEnergy_free( statusMessageReporting *smr, MCGIDI_angularEnergy *energyAngular );
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int MCGIDI_angularEnergy_release( statusMessageReporting *smr, MCGIDI_angularEnergy *energyAngular );
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int MCGIDI_angularEnergy_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution );
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int MCGIDI_angularEnergy_sampleDistribution( statusMessageReporting *smr, MCGIDI_angularEnergy *angularEnergy, MCGIDI_quantitiesLookupModes &modes,
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MCGIDI_decaySamplingInfo *decaySamplingInfo );
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/*
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* Routines in MCGIDI_KalbachMann.c
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*/
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MCGIDI_KalbachMann *MCGIDI_KalbachMann_new( statusMessageReporting *smr, ptwXY_interpolation interpolationWY, ptwXY_interpolation interpolationXY );
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int MCGIDI_KalbachMann_initialize( statusMessageReporting *smr, MCGIDI_KalbachMann *KalbachMann, ptwXY_interpolation interpolationWY, ptwXY_interpolation interpolationXY );
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MCGIDI_KalbachMann *MCGIDI_KalbachMann_free( statusMessageReporting *smr, MCGIDI_KalbachMann *KalbachMann );
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int MCGIDI_KalbachMann_release( statusMessageReporting *smr, MCGIDI_KalbachMann *KalbachMann );
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int MCGIDI_KalbachMann_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution );
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int MCGIDI_KalbachMann_sampleEp( statusMessageReporting *smr, MCGIDI_KalbachMann *KalbachMann, MCGIDI_quantitiesLookupModes &modes,
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MCGIDI_decaySamplingInfo *decaySamplingInfo );
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/*
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* Routines in MCGIDI_uncorrelated.c
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*/
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int MCGIDI_uncorrelated_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution, ptwXYPoints *norms,
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enum MCGIDI_energyType energyType, double gammaEnergy_MeV );
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int MCGIDI_uncorrelated_sampleDistribution( statusMessageReporting *smr, MCGIDI_distribution *distribution, MCGIDI_quantitiesLookupModes &modes,
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MCGIDI_decaySamplingInfo *decaySamplingInfo );
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/*
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* Routines in MCGIDI_LLNLAngular_angularEnergy.c
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*/
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int MCGIDI_LLNLAngular_angularEnergy_parseFromTOM( statusMessageReporting *smr, xDataTOM_element *element, MCGIDI_distribution *distribution );
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/*
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* Routines in MCGIDI_kinetics.c
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*/
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int MCGIDI_kinetics_2BodyReaction( statusMessageReporting *smr, MCGIDI_angular *angular, double K, double mu, double phi,
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MCGIDI_sampledProductsData *outgoingData );
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int MCGIDI_kinetics_COMKineticEnergy2LabEnergyAndMomentum( statusMessageReporting *smr, double beta, double e_kinetic_com, double mu, double phi,
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double m3cc, double m4cc, MCGIDI_sampledProductsData *outgoingData );
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int MCGIDI_kinetics_COM2Lab( statusMessageReporting *smr, MCGIDI_quantitiesLookupModes &modes, MCGIDI_decaySamplingInfo *decaySamplingInfo, double masses[3] );
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/*
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* Routines in MCGIDI_sampling.c
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*/
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int MCGIDI_sampling_pdfsOfXGivenW_initialize( statusMessageReporting *smr, MCGIDI_pdfsOfXGivenW *dists );
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int MCGIDI_sampling_pdfsOfXGivenW_release( statusMessageReporting *smr, MCGIDI_pdfsOfXGivenW *dists );
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int MCGIDI_sampling_pdfsOfX_release( statusMessageReporting *smr, MCGIDI_pdfOfX *dist );
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int MCGIDI_sampling_sampleX_from_pdfsOfXGivenW( MCGIDI_pdfsOfXGivenW *dists, MCGIDI_pdfsOfXGivenW_sampled *sampled, double r );
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int MCGIDI_sampling_sampleX_from_pdfOfX( MCGIDI_pdfOfX *dist, MCGIDI_pdfsOfXGivenW_sampled *sampled, double r );
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int MCGIDI_sampling_doubleDistribution( statusMessageReporting *smr, MCGIDI_pdfsOfXGivenW *pdfOfWGivenV, MCGIDI_pdfsOfXGivenW *pdfOfXGivenVAndW,
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MCGIDI_quantitiesLookupModes &modes, MCGIDI_decaySamplingInfo *decaySamplingInfo );
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int MCGIDI_sampling_interpolationValues( statusMessageReporting *smr, ptwXY_interpolation interpolation, double *ws, double y1, double y2, double *y );
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double MCGIDI_sampling_ptwXY_getValueAtX( ptwXYPoints *ptwXY, double x1 );
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/*
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* Routines in MCGIDI_misc.c
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*/
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int MCGIDI_misc_NumberOfZSymbols( void );
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const char *MCGIDI_misc_ZToSymbol( int iZ );
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int MCGIDI_misc_symbolToZ( const char *Z );
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int MCGIDI_miscNameToZAm( statusMessageReporting *smr, const char *name, int *Z, int *A, int *m, int *level );
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xDataTOM_Int MCGIDI_misc_binarySearch( xDataTOM_Int n, double *ds, double d );
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int MCGIDI_misc_PQUStringToDouble( statusMessageReporting *smr, char const *str, char const *unit, double conversion, double *value );
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int MCGIDI_misc_PQUStringToDoubleInUnitOf( statusMessageReporting *smr, char const *str, char const *toUnit, double *value );
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void MCGIDI_misc_updateTransportabilitiesMap( transportabilitiesMap *transportabilities, int PoPID, enum MCGIDI_transportability transportability );
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void MCGIDI_misc_updateTransportabilitiesMap2( transportabilitiesMap *transportabilities, int PoPID, int transportable );
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#if defined __cplusplus
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}
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}
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#endif
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#endif /* End of MCGIDI_h_included. */
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