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162 lines (134 loc) · 3.81 KB
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// system includes
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
// local includes
#include "ACEtk/continuous/TabulatedFissionMultiplicity.hpp"
#include "tools/views/views-python.hpp"
#include "definitions.hpp"
// namespace aliases
namespace python = pybind11;
namespace continuous {
void wrapTabulatedFissionMultiplicity( python::module& module, python::module& ) {
// type aliases
using Block = njoy::ACEtk::continuous::TabulatedFissionMultiplicity;
// wrap views created by this block
// create the block
python::class_< Block > block(
module,
"TabulatedFissionMultiplicity",
"Tabulated fission multiplicity\n\n"
"The TabulatedFissionMultiplicity class contains the tabulated\n"
"representation (LNU = 2) of the fission multiplicity. It is\n"
"used in the NU block."
);
// wrap the block
block
.def(
python::init< std::vector< double >, std::vector< double > >(),
python::arg( "energies" ), python::arg( "multiplicities" ),
"Initialise the block assuming linear interpolation\n\n"
"Arguments:\n"
" self the block\n"
" energies the energy values\n"
" multiplicities the multiplicity values"
)
.def(
python::init< std::vector< long >, std::vector< long >,
std::vector< double >, std::vector< double > >(),
python::arg( "boundaries" ), python::arg( "interpolants" ),
python::arg( "energies" ), python::arg( "multiplicities" ),
"Initialise the block\n\n"
"Arguments:\n"
" self the block\n"
" boundaries the interpolation range boundaries\n"
" interpolants the interpolation types for each range\n"
" energies the energy values\n"
" multiplicities the multiplicity values"
)
.def_property_readonly(
"LNU",
&Block::LNU,
"The representation type (should always be 2)"
)
.def_property_readonly(
"type",
&Block::type,
"The representation type (should always be 2)"
)
.def_property_readonly(
"interpolation_data",
&Block::interpolationData,
"The interpolation data"
)
.def_property_readonly(
"NB",
&Block::NB,
"The number of interpolation regions"
)
.def_property_readonly(
"number_interpolation_regions",
&Block::numberInterpolationRegions,
"The number of interpolation regions"
)
.def_property_readonly(
"NBT",
[] ( const Block& self ) -> LongRange
{ return self.NBT(); },
"The interpolation boundaries"
)
.def_property_readonly(
"boundaries",
[] ( const Block& self ) -> LongRange
{ return self.boundaries(); },
"The interpolation boundaries"
)
.def_property_readonly(
"INT",
[] ( const Block& self ) -> LongRange
{ return self.INT(); },
"The interpolants"
)
.def_property_readonly(
"interpolants",
[] ( const Block& self ) -> LongRange
{ return self.interpolants(); },
"The interpolants"
)
.def_property_readonly(
"NE",
&Block::NE,
"The number of values"
)
.def_property_readonly(
"number_values",
&Block::numberValues,
"The number of values"
)
.def_property_readonly(
"E",
[] ( const Block& self ) -> DoubleRange
{ return self.E(); },
"The energy values"
)
.def_property_readonly(
"energies",
[] ( const Block& self ) -> DoubleRange
{ return self.energies(); },
"The energy values"
)
.def_property_readonly(
"NU",
[] ( const Block& self ) -> DoubleRange
{ return self.NU(); },
"The multiplicities"
)
.def_property_readonly(
"multiplicities",
[] ( const Block& self ) -> DoubleRange
{ return self.multiplicities(); },
"The multiplicities"
);
// add standard block definitions
addStandardBlockDefinitions< Block >( block );
}
} // continuous namespace