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Expose enum_ entries as "__members__" read-only property. Getters get a copy.
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@ -423,6 +423,12 @@ typed enums.
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>>> int(p.type)
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>>> int(p.type)
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1L
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1L
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The entries defined by the enumeration type are exposed in the ``__members__`` property:
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.. code-block:: pycon
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>>> Pet.Kind.__members__
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{'Dog': Kind.Dog, 'Cat': Kind.Cat}
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.. note::
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.. note::
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@ -1116,24 +1116,32 @@ private:
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template <typename Type> class enum_ : public class_<Type> {
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template <typename Type> class enum_ : public class_<Type> {
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public:
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public:
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using class_<Type>::def;
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using class_<Type>::def;
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using class_<Type>::def_property_readonly_static;
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using Scalar = typename std::underlying_type<Type>::type;
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using Scalar = typename std::underlying_type<Type>::type;
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template <typename T> using arithmetic_tag = std::is_same<T, arithmetic>;
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template <typename T> using arithmetic_tag = std::is_same<T, arithmetic>;
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template <typename... Extra>
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template <typename... Extra>
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enum_(const handle &scope, const char *name, const Extra&... extra)
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enum_(const handle &scope, const char *name, const Extra&... extra)
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: class_<Type>(scope, name, extra...), m_parent(scope) {
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: class_<Type>(scope, name, extra...), m_entries(), m_parent(scope) {
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constexpr bool is_arithmetic =
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constexpr bool is_arithmetic =
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!std::is_same<detail::first_of_t<arithmetic_tag, void, Extra...>,
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!std::is_same<detail::first_of_t<arithmetic_tag, void, Extra...>,
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void>::value;
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void>::value;
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auto entries = new std::unordered_map<Scalar, const char *>();
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auto m_entries_ptr = m_entries.inc_ref().ptr();
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def("__repr__", [name, entries](Type value) -> std::string {
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def("__repr__", [name, m_entries_ptr](Type value) -> pybind11::str {
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auto it = entries->find((Scalar) value);
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for (const auto &kv : reinterpret_borrow<dict>(m_entries_ptr)) {
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return std::string(name) + "." +
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if (pybind11::cast<Type>(kv.second) == value)
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((it == entries->end()) ? std::string("???")
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return pybind11::str("{}.{}").format(name, kv.first);
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: std::string(it->second));
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}
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return pybind11::str("{}.???").format(name);
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});
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});
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def_property_readonly_static("__members__", [m_entries_ptr](object /* self */) {
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dict m;
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for (const auto &kv : reinterpret_borrow<dict>(m_entries_ptr))
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m[kv.first] = kv.second;
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return m;
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}, return_value_policy::copy);
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def("__init__", [](Type& value, Scalar i) { value = (Type)i; });
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def("__init__", [](Type& value, Scalar i) { value = (Type)i; });
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def("__init__", [](Type& value, Scalar i) { new (&value) Type((Type) i); });
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def("__init__", [](Type& value, Scalar i) { new (&value) Type((Type) i); });
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def("__int__", [](Type value) { return (Scalar) value; });
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def("__int__", [](Type value) { return (Scalar) value; });
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@ -1172,26 +1180,25 @@ public:
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// Pickling and unpickling -- needed for use with the 'multiprocessing' module
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// Pickling and unpickling -- needed for use with the 'multiprocessing' module
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def("__getstate__", [](const Type &value) { return pybind11::make_tuple((Scalar) value); });
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def("__getstate__", [](const Type &value) { return pybind11::make_tuple((Scalar) value); });
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def("__setstate__", [](Type &p, tuple t) { new (&p) Type((Type) t[0].cast<Scalar>()); });
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def("__setstate__", [](Type &p, tuple t) { new (&p) Type((Type) t[0].cast<Scalar>()); });
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m_entries = entries;
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}
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}
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/// Export enumeration entries into the parent scope
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/// Export enumeration entries into the parent scope
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enum_ &export_values() {
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enum_& export_values() {
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for (auto item : reinterpret_borrow<dict>(((PyTypeObject *) this->m_ptr)->tp_dict)) {
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for (const auto &kv : m_entries)
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if (isinstance(item.second, this->m_ptr))
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m_parent.attr(kv.first) = kv.second;
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m_parent.attr(item.first) = item.second;
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}
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return *this;
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return *this;
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}
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}
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/// Add an enumeration entry
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/// Add an enumeration entry
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enum_& value(char const* name, Type value) {
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enum_& value(char const* name, Type value) {
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this->attr(name) = pybind11::cast(value, return_value_policy::copy);
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auto v = pybind11::cast(value, return_value_policy::copy);
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(*m_entries)[(Scalar) value] = name;
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this->attr(name) = v;
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m_entries[pybind11::str(name)] = v;
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return *this;
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return *this;
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}
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}
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private:
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private:
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std::unordered_map<Scalar, const char *> *m_entries;
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dict m_entries;
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handle m_parent;
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handle m_parent;
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};
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};
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@ -7,6 +7,15 @@ def test_unscoped_enum():
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assert str(UnscopedEnum.EOne) == "UnscopedEnum.EOne"
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assert str(UnscopedEnum.EOne) == "UnscopedEnum.EOne"
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assert str(UnscopedEnum.ETwo) == "UnscopedEnum.ETwo"
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assert str(UnscopedEnum.ETwo) == "UnscopedEnum.ETwo"
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assert str(EOne) == "UnscopedEnum.EOne"
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assert str(EOne) == "UnscopedEnum.EOne"
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# __members__ property
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assert UnscopedEnum.__members__ == {"EOne": UnscopedEnum.EOne, "ETwo": UnscopedEnum.ETwo}
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# __members__ readonly
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with pytest.raises(AttributeError):
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UnscopedEnum.__members__ = {}
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# __members__ returns a copy
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foo = UnscopedEnum.__members__
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foo["bar"] = "baz"
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assert UnscopedEnum.__members__ == {"EOne": UnscopedEnum.EOne, "ETwo": UnscopedEnum.ETwo}
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# no TypeError exception for unscoped enum ==/!= int comparisons
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# no TypeError exception for unscoped enum ==/!= int comparisons
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y = UnscopedEnum.ETwo
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y = UnscopedEnum.ETwo
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