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@ -43,6 +43,9 @@ void define_dft(py::module& m) { |
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return dft.getElement(dft.getTopLevelIndex()); |
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}, "Get top level element") |
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.def("get_element", &DFT<double>::getElement, "Get DFT element at index", py::arg("index")) |
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.def("get_element_by_name", [](DFT<double>& dft, std::string const& name) { |
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return dft.getElement(dft.getIndex(name)); |
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}, "Get DFT element by name", py::arg("name")) |
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.def("modularisation", &DFT<double>::topModularisation, "Split DFT into independent modules") |
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.def("symmetries", [](DFT<double>& dft) { |
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return dft.findSymmetries(dft.colourDFT()); |
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@ -59,6 +62,9 @@ void define_dft(py::module& m) { |
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return dft.getElement(dft.getTopLevelIndex()); |
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}, "Get top level element") |
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.def("get_element", &DFT<storm::RationalFunction>::getElement, "Get DFT element at index", py::arg("index")) |
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.def("get_element_by_name", [](DFT<storm::RationalFunction>& dft, std::string const& name) { |
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return dft.getElement(dft.getIndex(name)); |
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}, "Get DFT element by name", py::arg("name")) |
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.def("modularisation", &DFT<storm::RationalFunction>::topModularisation, "Split DFT into independent modules") |
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.def("symmetries", [](DFT<storm::RationalFunction>& dft) { |
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return dft.findSymmetries(dft.colourDFT()); |
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