// Copyright 2022 DeepMind Technologies Limited // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. #include #include #include #include #include "util/crossplatform.h" #include "enum_traits.h" #include "util/tuple_tools.h" #include #include namespace mujoco::python { namespace { namespace py = ::pybind11; inline void ZeroDenominatorCheck(double b) { if (b == 0) { PyErr_SetString(PyExc_ZeroDivisionError, "division by zero"); throw py::error_already_set(); } } template inline T FloorDiv(T a, T b) { ZeroDenominatorCheck(b); return std::floor(static_cast(a) / static_cast(b)); } template void DefEnum(py::module_& m) { py::enum_ e(m, Trait::name); for (const auto& [name, enumerator] : Trait::values) { e.value(name, enumerator); } e.def(py::init([](int value) { for (const auto& [name, enumerator] : Trait::values) { if (value == enumerator) { return static_cast(value); } } std::ostringstream err; err << "Invalid int value for " << Trait::name << ": " << value; throw py::value_error(err.str()); }), py::arg("value"), py::prepend()); // Arithmetic operators e.def(-py::self); e.def(py::self + std::int64_t()); e.def(py::self + double()); e.def(std::int64_t() + py::self); e.def(double() + py::self); e.def(py::self - std::int64_t()); e.def(py::self - double()); e.def(std::int64_t() - py::self); e.def(double() - py::self); e.def(py::self * std::int64_t()); e.def(py::self * double()); e.def(std::int64_t() * py::self); e.def(double() * py::self); e.def("__truediv__", [](const typename Trait::type& a, double b) -> double { ZeroDenominatorCheck(b); return static_cast(a) / b; }); e.def("__rtruediv__", [](const typename Trait::type& b, double a) -> double { ZeroDenominatorCheck(b); return a / static_cast(b); }); e.def("__floordiv__", [](const typename Trait::type& a, std::int64_t b) -> std::int64_t { return FloorDiv(a, b); }); e.def("__floordiv__", [](const typename Trait::type& a, double b) -> double { return FloorDiv(a, b); }); e.def("__rfloordiv__", [](const typename Trait::type& b, std::int64_t a) -> std::int64_t { return FloorDiv(a, b); }); e.def("__rfloordiv__", [](const typename Trait::type& b, double a) -> double { return FloorDiv(a, b); }); e.def("__mod__", [](const typename Trait::type& a, std::int64_t b) -> std::int64_t { return a - FloorDiv(a, b) * b; }); e.def("__mod__", [](const typename Trait::type& a, double b) -> double { return a - FloorDiv(a, b) * b; }); e.def("__rmod__", [](const typename Trait::type& b, std::int64_t a) -> std::int64_t { return a - FloorDiv(a, b) * b; }); e.def("__rmod__", [](const typename Trait::type& b, double a) -> double { return a - FloorDiv(a, b) * b; }); // Bitwise operators e.def(py::self & std::int64_t()); e.def(std::int64_t() & py::self); e.def(py::self | std::int64_t()); e.def(std::int64_t() | py::self); e.def(py::self ^ std::int64_t()); e.def(std::int64_t() ^ py::self); // Bit shifts e.def(py::self << std::int64_t()); e.def(py::self >> std::int64_t()); } template void DefAllEnums(py::module_& m, Tuple&& tuple) { using TupleNoRef = std::remove_reference_t; if constexpr (std::tuple_size_v != 0) { using Trait = std::remove_reference_t>; DefEnum(m); DefAllEnums(m, util::tuple_slice<1, void>(tuple)); } } PYBIND11_MODULE(_enums, pymodule) { DefAllEnums(pymodule, python_traits::kAllEnums); } } // namespace } // namespace mujoco::python