Seamless operability between C++11 and Python
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#include <pybind11/native_enum.h>
#include "pybind11_tests.h"
#include <typeindex>
namespace test_native_enum {
// https://en.cppreference.com/w/cpp/language/enum
// enum that takes 16 bits
enum smallenum : std::int16_t { a, b, c };
// color may be red (value 0), yellow (value 1), green (value 20), or blue (value 21)
enum color { red, yellow, green = 20, blue };
// altitude may be altitude::high or altitude::low
enum class altitude : char {
high = 'h',
low = 'l', // trailing comma only allowed after CWG518
};
enum class flags_uchar : unsigned char { bit0 = 0x1u, bit1 = 0x2u, bit2 = 0x4u };
enum class flags_uint : unsigned int { bit0 = 0x1u, bit1 = 0x2u, bit2 = 0x4u };
enum class export_values { exv0, exv1 };
enum class member_doc { mem0, mem1, mem2 };
struct class_with_enum {
enum class in_class { one, two };
in_class nested_value = in_class::one;
};
// https://github.com/protocolbuffers/protobuf/blob/d70b5c5156858132decfdbae0a1103e6a5cb1345/src/google/protobuf/generated_enum_util.h#L52-L53
template <typename T>
struct is_proto_enum : std::false_type {};
enum some_proto_enum : int { Zero, One };
template <>
struct is_proto_enum<some_proto_enum> : std::true_type {};
enum class func_sig_rendering {};
} // namespace test_native_enum
PYBIND11_NAMESPACE_BEGIN(PYBIND11_NAMESPACE)
PYBIND11_NAMESPACE_BEGIN(detail)
// Negate this condition to demonstrate "ambiguous template instantiation" compilation error:
#if defined(PYBIND11_HAS_NATIVE_ENUM)
template <typename ProtoEnumType>
struct type_caster_enum_type_enabled<
ProtoEnumType,
enable_if_t<test_native_enum::is_proto_enum<ProtoEnumType>::value>> : std::false_type {};
#endif
// https://github.com/pybind/pybind11_protobuf/blob/a50899c2eb604fc5f25deeb8901eff6231b8b3c0/pybind11_protobuf/enum_type_caster.h#L101-L105
template <typename ProtoEnumType>
struct type_caster<ProtoEnumType,
detail::enable_if_t<test_native_enum::is_proto_enum<ProtoEnumType>::value>> {
static handle
cast(const ProtoEnumType & /*src*/, return_value_policy /*policy*/, handle /*parent*/) {
return py::none();
}
bool load(handle /*src*/, bool /*convert*/) {
value = static_cast<ProtoEnumType>(0);
return true;
}
PYBIND11_TYPE_CASTER(ProtoEnumType, const_name<ProtoEnumType>());
};
PYBIND11_NAMESPACE_END(detail)
PYBIND11_NAMESPACE_END(PYBIND11_NAMESPACE)
TEST_SUBMODULE(native_enum, m) {
using namespace test_native_enum;
py::native_enum<smallenum>(m, "smallenum", "enum.IntEnum", "doc smallenum")
.value("a", smallenum::a)
.value("b", smallenum::b)
.value("c", smallenum::c)
.finalize();
py::native_enum<color>(m, "color", "enum.IntEnum")
.value("red", color::red)
.value("yellow", color::yellow)
.value("green", color::green)
.value("blue", color::blue)
.finalize();
py::native_enum<altitude>(m, "altitude", "enum.Enum")
.value("high", altitude::high)
.value("low", altitude::low)
.finalize();
py::native_enum<flags_uchar>(m, "flags_uchar", "enum.Flag")
.value("bit0", flags_uchar::bit0)
.value("bit1", flags_uchar::bit1)
.value("bit2", flags_uchar::bit2)
.finalize();
py::native_enum<flags_uint>(m, "flags_uint", "enum.IntFlag")
.value("bit0", flags_uint::bit0)
.value("bit1", flags_uint::bit1)
.value("bit2", flags_uint::bit2)
.finalize();
py::native_enum<export_values>(m, "export_values", "enum.IntEnum")
.value("exv0", export_values::exv0)
.value("exv1", export_values::exv1)
.export_values()
.finalize();
py::native_enum<member_doc>(m, "member_doc", "enum.IntEnum")
.value("mem0", member_doc::mem0, "docA")
.value("mem1", member_doc::mem1)
.value("mem2", member_doc::mem2, "docC")
.finalize();
py::class_<class_with_enum> py_class_with_enum(m, "class_with_enum");
py::native_enum<class_with_enum::in_class>(py_class_with_enum, "in_class", "enum.IntEnum")
.value("one", class_with_enum::in_class::one)
.value("two", class_with_enum::in_class::two)
.finalize();
py_class_with_enum.def(py::init())
.def_readwrite("nested_value", &class_with_enum::nested_value);
m.def("isinstance_color", [](const py::object &obj) { return py::isinstance<color>(obj); });
m.def("pass_color", [](color e) { return static_cast<int>(e); });
m.def("return_color", [](int i) { return static_cast<color>(i); });
py::native_enum<func_sig_rendering>(m, "func_sig_rendering", "enum.Enum").finalize();
m.def(
"pass_and_return_func_sig_rendering",
[](func_sig_rendering e) { return e; },
py::arg("e"));
m.def("pass_some_proto_enum", [](some_proto_enum) { return py::none(); });
m.def("return_some_proto_enum", []() { return some_proto_enum::Zero; });
#if defined(__MINGW32__)
m.attr("obj_cast_color_ptr") = "MinGW: dangling pointer to an unnamed temporary may be used "
"[-Werror=dangling-pointer=]";
#elif defined(NDEBUG)
m.attr("obj_cast_color_ptr") = "NDEBUG disables cast safety check";
#else
m.def("obj_cast_color_ptr", [](const py::object &obj) { obj.cast<color *>(); });
#endif
m.def("py_cast_color_handle", [](py::handle obj) {
// Exercises `if (is_enum_cast && cast_is_temporary_value_reference<T>::value)`
// in `T cast(const handle &handle)`
auto e = py::cast<color>(obj);
return static_cast<int>(e);
});
m.def("exercise_import_or_getattr", [](py::module_ &m, const char *native_type_name) {
enum fake { x };
py::native_enum<fake>(m, "fake_import_or_getattr", native_type_name)
.value("x", fake::x)
.finalize();
});
m.def("native_enum_data_missing_finalize_error_message",
[](const std::string &enum_name_encoded) {
return py::detail::native_enum_missing_finalize_error_message(enum_name_encoded);
});
m.def("native_enum_ctor_malformed_utf8", [](const char *malformed_utf8) {
enum fake { x };
py::native_enum<fake>{py::none(), malformed_utf8, "enum.IntEnum"};
});
m.def("native_enum_double_finalize", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake> ne(m, "fake_native_enum_double_finalize", "enum.IntEnum");
ne.finalize();
ne.finalize();
});
m.def("native_enum_value_after_finalize", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake> ne(m, "fake_native_enum_value_after_finalize", "enum.IntEnum");
ne.finalize();
ne.value("x", fake::x);
});
m.def("native_enum_value_malformed_utf8", [](const char *malformed_utf8) {
enum fake { x };
py::native_enum<fake>(py::none(), "fake", "enum.IntEnum").value(malformed_utf8, fake::x);
});
m.def("double_registration_native_enum", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake>(m, "fake_double_registration_native_enum", "enum.IntEnum")
.value("x", fake::x)
.finalize();
py::native_enum<fake>(m, "fake_double_registration_native_enum", "enum.Enum");
});
m.def("native_enum_name_clash", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake>(m, "fake_native_enum_name_clash", "enum.IntEnum")
.value("x", fake::x)
.finalize();
});
m.def("native_enum_value_name_clash", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake>(m, "fake_native_enum_value_name_clash", "enum.IntEnum")
.value("fake_native_enum_value_name_clash_x", fake::x)
.export_values()
.finalize();
});
m.def("double_registration_enum_before_native_enum", [](py::module_ &m) {
enum fake { x };
py::enum_<fake>(m, "fake_enum_first").value("x", fake::x);
py::native_enum<fake>(m, "fake_enum_first", "enum.IntEnum").value("x", fake::x).finalize();
});
m.def("double_registration_native_enum_before_enum", [](py::module_ &m) {
enum fake { x };
py::native_enum<fake>(m, "fake_native_enum_first", "enum.IntEnum")
.value("x", fake::x)
.finalize();
py::enum_<fake>(m, "name_must_be_different_to_reach_desired_code_path");
});
#if defined(PYBIND11_NEGATE_THIS_CONDITION_FOR_LOCAL_TESTING) && !defined(NDEBUG)
m.def("native_enum_missing_finalize_failure", []() {
enum fake { x };
py::native_enum<fake>(
py::none(), "fake_native_enum_missing_finalize_failure", "enum.IntEnum")
.value("x", fake::x)
// .finalize() missing
;
});
#else
m.attr("native_enum_missing_finalize_failure") = "For local testing only: terminates process";
#endif
}