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157 lines (135 loc) · 4.93 KB
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// system includes
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
// local includes
#include "ACEtk/continuous/AngularDistributionData.hpp"
#include "tools/views/views-python.hpp"
#include "definitions.hpp"
// namespace aliases
namespace python = pybind11;
namespace continuous {
void wrapAngularDistributionData( python::module& module, python::module& ) {
// type aliases
using Block = njoy::ACEtk::continuous::AngularDistributionData;
using Distribution = Block::Distribution;
// wrap views created by this block
// create the block
python::class_< Block > block(
module,
"AngularDistributionData",
"Angular distribution data\n\n"
"The AngularDistributionData class contains the angular distribution data\n"
"energy distributions for a set of incident energy values. It is used in\n"
"the AND block."
);
// wrap the block
block
.def(
python::init< std::vector< Distribution >, std::size_t >(),
python::arg( "distributions" ), python::arg( "locb" ) = 1,
"Initialise the block\n\n"
"Arguments:\n"
" self the block\n"
" distributions the angular distributions for each incident energy\n"
" locb the starting xss index with respect to the AND block\n"
" (default = 1, the relative locators get recalculated)"
)
.def_property_readonly(
"NE",
&Block::NE,
"The number of incident energy values"
)
.def_property_readonly(
"number_incident_energies",
&Block::numberIncidentEnergies,
"The number of incident energy values"
)
.def_property_readonly(
"incident_energies",
[] ( const Block& self ) -> DoubleRange
{ return self.incidentEnergies(); },
"The incident energy values"
)
.def(
"incident_energy",
&Block::incidentEnergy,
python::arg( "index" ),
"Return the incident energy for a given index\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
)
.def(
"LOCC",
&Block::LOCC,
python::arg( "index" ),
"Return the the angular distribution locator for an incident energy index\n\n"
"This locator is the value as stored in the XSS array. It is relative to\n"
"the beginning of the AND block. The distribution type is determined from\n"
"the sign of the locator:\n"
" - when the value if negative, it is a tabulated distribution\n"
" - when the value if positive, it is an equiprobable distribution\n"
" - when the value if zero, it is an isotropic distribution\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
)
.def(
"distribution_locator",
&Block::distributionLocator,
python::arg( "index" ),
"Return the angular distribution locator for an incident energy index\n\n"
"This locator is the value as stored in the XSS array. It is relative to\n"
"the beginning of the AND block. The distribution type is determined from\n"
"the sign of the locator:\n"
" - when the value if negative, it is a tabulated distribution\n"
" - when the value if positive, it is an equiprobable distribution\n"
" - when the value if zero, it is an isotropic distribution\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
)
.def(
"relative_distribution_locator",
&Block::relativeDistributionLocator,
python::arg( "index" ),
"Return the relative angular distribution locator for an incident energy index\n\n"
"This is the locator relative to the beginning of the current angular\n"
"distribution block in the AND block. It is always positive.\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
)
.def(
"distribution_type",
&Block::distributionType,
python::arg( "index" ),
"Return the angular distribution type for an incident energy index\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
)
.def_property_readonly(
"distributions",
&Block::distributions,
"The distributions"
)
.def(
"distribution",
&Block::distribution,
python::arg( "index" ),
"Return the angular distribution data for an incident energy index\n\n"
"When the index is out of range an out of range exception is thrown\n"
"(debug mode only).\n\n"
" self the block\n"
" index the index (one-based)"
);
// add standard block definitions
addStandardBlockDefinitions< Block >( block );
}
} // continuous namespace