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#pragma once |
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#include "pybind11.h" |
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#include "detail/common.h" |
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#include "detail/descr.h" |
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#include "detail/type_caster_base.h" |
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#include <deque> |
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#include <initializer_list> |
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#include <list> |
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#include <map> |
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#include <memory> |
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#include <ostream> |
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#include <set> |
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#include <unordered_map> |
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#include <unordered_set> |
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#include <valarray> |
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#if defined(PYBIND11_HAS_OPTIONAL) |
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# include <optional> |
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#elif defined(PYBIND11_HAS_EXP_OPTIONAL) |
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# include <experimental/optional> |
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#endif |
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#if defined(PYBIND11_HAS_VARIANT) |
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# include <variant> |
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#endif |
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PYBIND11_NAMESPACE_BEGIN(PYBIND11_NAMESPACE) |
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PYBIND11_NAMESPACE_BEGIN(detail) |
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inline bool object_is_instance_with_one_of_tp_names(PyObject *obj, |
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std::initializer_list<const char *> tp_names) { |
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if (PyType_Check(obj)) { |
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return false; |
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} |
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const char *obj_tp_name = Py_TYPE(obj)->tp_name; |
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for (const auto *tp_name : tp_names) { |
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if (std::strcmp(obj_tp_name, tp_name) == 0) { |
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return true; |
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} |
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} |
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return false; |
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} |
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inline bool object_is_convertible_to_std_vector(const handle &src) { |
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if (PySequence_Check(src.ptr()) != 0) { |
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return !PyUnicode_Check(src.ptr()) && !PyBytes_Check(src.ptr()); |
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} |
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return (PyGen_Check(src.ptr()) != 0) || (PyAnySet_Check(src.ptr()) != 0) |
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|| object_is_instance_with_one_of_tp_names( |
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src.ptr(), {"dict_keys", "dict_values", "dict_items", "map", "zip"}); |
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} |
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inline bool object_is_convertible_to_std_set(const handle &src, bool convert) { |
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return ((PyAnySet_Check(src.ptr()) != 0) |
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|| object_is_instance_with_one_of_tp_names(src.ptr(), {"dict_keys"})) |
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|| (convert && isinstance(src, module_::import("collections.abc").attr("Set"))); |
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} |
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inline bool object_is_convertible_to_std_map(const handle &src, bool convert) { |
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if (PyDict_Check(src.ptr())) { |
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return true; |
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} |
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if (PyMapping_Check(src.ptr()) != 0) { |
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PyObject *items = PyObject_GetAttrString(src.ptr(), "items"); |
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if (items != nullptr) { |
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bool is_convertible = (PyCallable_Check(items) != 0); |
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Py_DECREF(items); |
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if (is_convertible) { |
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return true; |
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} |
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} else { |
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PyErr_Clear(); |
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} |
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} |
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return convert && isinstance(src, module_::import("collections.abc").attr("Mapping")); |
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} |
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template <typename T, typename U> |
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using forwarded_type = conditional_t<std::is_lvalue_reference<T>::value, |
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remove_reference_t<U> &, |
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remove_reference_t<U> &&>; |
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template <typename T, typename U> |
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constexpr forwarded_type<T, U> forward_like(U &&u) { |
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return std::forward<detail::forwarded_type<T, U>>(std::forward<U>(u)); |
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} |
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template <typename C> |
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using has_reserve_method = std::is_same<decltype(std::declval<C>().reserve(0)), void>; |
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template <typename Type, typename Key> |
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struct set_caster { |
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using type = Type; |
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using key_conv = make_caster<Key>; |
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private: |
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template <typename T = Type, enable_if_t<has_reserve_method<T>::value, int> = 0> |
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void reserve_maybe(const anyset &s, Type *) { |
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value.reserve(s.size()); |
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} |
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void reserve_maybe(const anyset &, void *) {} |
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bool convert_iterable(const iterable &itbl, bool convert) { |
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for (const auto &it : itbl) { |
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key_conv conv; |
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if (!conv.load(it, convert)) { |
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return false; |
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} |
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value.insert(cast_op<Key &&>(std::move(conv))); |
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} |
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return true; |
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} |
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bool convert_anyset(const anyset &s, bool convert) { |
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value.clear(); |
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reserve_maybe(s, &value); |
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return convert_iterable(s, convert); |
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} |
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public: |
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bool load(handle src, bool convert) { |
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if (!object_is_convertible_to_std_set(src, convert)) { |
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return false; |
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} |
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if (isinstance<anyset>(src)) { |
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value.clear(); |
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return convert_anyset(reinterpret_borrow<anyset>(src), convert); |
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} |
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if (!convert) { |
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return false; |
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} |
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|
assert(isinstance<iterable>(src)); |
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value.clear(); |
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return convert_iterable(reinterpret_borrow<iterable>(src), convert); |
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} |
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template <typename T> |
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static handle cast(T &&src, return_value_policy policy, handle parent) { |
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if (!std::is_lvalue_reference<T>::value) { |
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policy = return_value_policy_override<Key>::policy(policy); |
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} |
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pybind11::set s; |
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for (auto &&value : src) { |
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auto value_ = reinterpret_steal<object>( |
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key_conv::cast(detail::forward_like<T>(value), policy, parent)); |
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if (!value_ || !s.add(std::move(value_))) { |
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return handle(); |
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} |
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} |
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return s.release(); |
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} |
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PYBIND11_TYPE_CASTER(type, |
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io_name("collections.abc.Set", "set") + const_name("[") + key_conv::name |
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+ const_name("]")); |
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}; |
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template <typename Type, typename Key, typename Value> |
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struct map_caster { |
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using key_conv = make_caster<Key>; |
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using value_conv = make_caster<Value>; |
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private: |
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template <typename T = Type, enable_if_t<has_reserve_method<T>::value, int> = 0> |
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void reserve_maybe(const dict &d, Type *) { |
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value.reserve(d.size()); |
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} |
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void reserve_maybe(const dict &, void *) {} |
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bool convert_elements(const dict &d, bool convert) { |
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value.clear(); |
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reserve_maybe(d, &value); |
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for (const auto &it : d) { |
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key_conv kconv; |
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value_conv vconv; |
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if (!kconv.load(it.first.ptr(), convert) || !vconv.load(it.second.ptr(), convert)) { |
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return false; |
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} |
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value.emplace(cast_op<Key &&>(std::move(kconv)), cast_op<Value &&>(std::move(vconv))); |
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} |
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return true; |
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} |
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public: |
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bool load(handle src, bool convert) { |
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if (!object_is_convertible_to_std_map(src, convert)) { |
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return false; |
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} |
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|
if (isinstance<dict>(src)) { |
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|
return convert_elements(reinterpret_borrow<dict>(src), convert); |
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|
} |
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|
if (!convert) { |
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return false; |
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|
} |
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|
auto items = reinterpret_steal<object>(PyMapping_Items(src.ptr())); |
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|
if (!items) { |
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|
throw error_already_set(); |
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|
} |
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|
assert(isinstance<iterable>(items)); |
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|
return convert_elements(dict(reinterpret_borrow<iterable>(items)), convert); |
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} |
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template <typename T> |
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static handle cast(T &&src, return_value_policy policy, handle parent) { |
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dict d; |
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return_value_policy policy_key = policy; |
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return_value_policy policy_value = policy; |
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if (!std::is_lvalue_reference<T>::value) { |
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policy_key = return_value_policy_override<Key>::policy(policy_key); |
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policy_value = return_value_policy_override<Value>::policy(policy_value); |
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} |
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for (auto &&kv : src) { |
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auto key = reinterpret_steal<object>( |
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key_conv::cast(detail::forward_like<T>(kv.first), policy_key, parent)); |
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auto value = reinterpret_steal<object>( |
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value_conv::cast(detail::forward_like<T>(kv.second), policy_value, parent)); |
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|
if (!key || !value) { |
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|
return handle(); |
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|
} |
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|
d[std::move(key)] = std::move(value); |
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|
} |
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|
return d.release(); |
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} |
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PYBIND11_TYPE_CASTER(Type, |
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io_name("collections.abc.Mapping", "dict") + const_name("[") |
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|
+ key_conv::name + const_name(", ") + value_conv::name |
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|
+ const_name("]")); |
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}; |
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template <typename Type, typename Value> |
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struct list_caster { |
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|
using value_conv = make_caster<Value>; |
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bool load(handle src, bool convert) { |
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if (!object_is_convertible_to_std_vector(src)) { |
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return false; |
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|
} |
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|
if (isinstance<sequence>(src)) { |
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|
return convert_elements(src, convert); |
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|
} |
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|
if (!convert) { |
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|
return false; |
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} |
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assert(isinstance<iterable>(src)); |
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return convert_elements(tuple(reinterpret_borrow<iterable>(src)), convert); |
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} |
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private: |
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template <typename T = Type, enable_if_t<has_reserve_method<T>::value, int> = 0> |
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void reserve_maybe(const sequence &s, Type *) { |
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|
value.reserve(s.size()); |
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|
} |
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|
void reserve_maybe(const sequence &, void *) {} |
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|
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bool convert_elements(handle seq, bool convert) { |
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|
auto s = reinterpret_borrow<sequence>(seq); |
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|
value.clear(); |
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reserve_maybe(s, &value); |
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for (const auto &it : seq) { |
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value_conv conv; |
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if (!conv.load(it, convert)) { |
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|
return false; |
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|
} |
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|
value.push_back(cast_op<Value &&>(std::move(conv))); |
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|
} |
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|
return true; |
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|
} |
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public: |
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template <typename T> |
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static handle cast(T &&src, return_value_policy policy, handle parent) { |
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if (!std::is_lvalue_reference<T>::value) { |
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policy = return_value_policy_override<Value>::policy(policy); |
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|
} |
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list l(src.size()); |
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ssize_t index = 0; |
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for (auto &&value : src) { |
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auto value_ = reinterpret_steal<object>( |
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|
value_conv::cast(detail::forward_like<T>(value), policy, parent)); |
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|
if (!value_) { |
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|
return handle(); |
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|
} |
|
|
PyList_SET_ITEM(l.ptr(), index++, value_.release().ptr()); |
|
|
} |
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|
return l.release(); |
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|
} |
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|
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PYBIND11_TYPE_CASTER(Type, |
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io_name("collections.abc.Sequence", "list") + const_name("[") |
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|
+ value_conv::name + const_name("]")); |
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|
}; |
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template <typename Type, typename Alloc> |
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struct type_caster<std::vector<Type, Alloc>> : list_caster<std::vector<Type, Alloc>, Type> {}; |
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template <typename Type, typename Alloc> |
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struct type_caster<std::deque<Type, Alloc>> : list_caster<std::deque<Type, Alloc>, Type> {}; |
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template <typename Type, typename Alloc> |
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struct type_caster<std::list<Type, Alloc>> : list_caster<std::list<Type, Alloc>, Type> {}; |
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template <typename ArrayType, typename V, size_t... I> |
|
|
ArrayType vector_to_array_impl(V &&v, index_sequence<I...>) { |
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|
return {{std::move(v[I])...}}; |
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} |
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template <typename ArrayType, size_t N, typename V> |
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ArrayType vector_to_array(V &&v) { |
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|
return vector_to_array_impl<ArrayType, V>(std::forward<V>(v), make_index_sequence<N>{}); |
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|
} |
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template <typename ArrayType, typename Value, bool Resizable, size_t Size = 0> |
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struct array_caster { |
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using value_conv = make_caster<Value>; |
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private: |
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std::unique_ptr<ArrayType> value; |
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template <bool R = Resizable, enable_if_t<R, int> = 0> |
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bool convert_elements(handle seq, bool convert) { |
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auto l = reinterpret_borrow<sequence>(seq); |
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value.reset(new ArrayType{}); |
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value->resize(l.size()); |
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size_t ctr = 0; |
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for (const auto &it : l) { |
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value_conv conv; |
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if (!conv.load(it, convert)) { |
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return false; |
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} |
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|
(*value)[ctr++] = cast_op<Value &&>(std::move(conv)); |
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|
} |
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|
return true; |
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} |
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|
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template <bool R = Resizable, enable_if_t<!R, int> = 0> |
|
|
bool convert_elements(handle seq, bool convert) { |
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|
auto l = reinterpret_borrow<sequence>(seq); |
|
|
if (l.size() != Size) { |
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|
return false; |
|
|
} |
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|
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std::vector<Value> temp; |
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|
temp.reserve(l.size()); |
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|
for (auto it : l) { |
|
|
value_conv conv; |
|
|
if (!conv.load(it, convert)) { |
|
|
return false; |
|
|
} |
|
|
temp.emplace_back(cast_op<Value &&>(std::move(conv))); |
|
|
} |
|
|
value.reset(new ArrayType(vector_to_array<ArrayType, Size>(std::move(temp)))); |
|
|
return true; |
|
|
} |
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|
|
public: |
|
|
bool load(handle src, bool convert) { |
|
|
if (!object_is_convertible_to_std_vector(src)) { |
|
|
return false; |
|
|
} |
|
|
if (isinstance<sequence>(src)) { |
|
|
return convert_elements(src, convert); |
|
|
} |
|
|
if (!convert) { |
|
|
return false; |
|
|
} |
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|
|
assert(isinstance<iterable>(src)); |
|
|
return convert_elements(tuple(reinterpret_borrow<iterable>(src)), convert); |
|
|
} |
|
|
|
|
|
template <typename T> |
|
|
static handle cast(T &&src, return_value_policy policy, handle parent) { |
|
|
list l(src.size()); |
|
|
ssize_t index = 0; |
|
|
for (auto &&value : src) { |
|
|
auto value_ = reinterpret_steal<object>( |
|
|
value_conv::cast(detail::forward_like<T>(value), policy, parent)); |
|
|
if (!value_) { |
|
|
return handle(); |
|
|
} |
|
|
PyList_SET_ITEM(l.ptr(), index++, value_.release().ptr()); |
|
|
} |
|
|
return l.release(); |
|
|
} |
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|
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|
|
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|
|
|
template <typename T_, enable_if_t<std::is_same<ArrayType, remove_cv_t<T_>>::value, int> = 0> |
|
|
static handle cast(T_ *src, return_value_policy policy, handle parent) { |
|
|
if (!src) { |
|
|
return none().release(); |
|
|
} |
|
|
if (policy == return_value_policy::take_ownership) { |
|
|
auto h = cast(std::move(*src), policy, parent); |
|
|
delete src; |
|
|
return h; |
|
|
} |
|
|
return cast(*src, policy, parent); |
|
|
} |
|
|
|
|
|
|
|
|
operator ArrayType *() { return &(*value); } |
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|
|
|
operator ArrayType &() { return *value; } |
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|
|
|
|
operator ArrayType &&() && { return std::move(*value); } |
|
|
|
|
|
template <typename T_> |
|
|
using cast_op_type = movable_cast_op_type<T_>; |
|
|
|
|
|
static constexpr auto name |
|
|
= const_name<Resizable>(const_name(""), const_name("typing.Annotated[")) |
|
|
+ io_name("collections.abc.Sequence", "list") + const_name("[") + value_conv::name |
|
|
+ const_name("]") |
|
|
+ const_name<Resizable>(const_name(""), |
|
|
const_name(", \"FixedSize(") + const_name<Size>() |
|
|
+ const_name(")\"]")); |
|
|
}; |
|
|
|
|
|
template <typename Type, size_t Size> |
|
|
struct type_caster<std::array<Type, Size>> |
|
|
: array_caster<std::array<Type, Size>, Type, false, Size> {}; |
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|
|
|
|
template <typename Type> |
|
|
struct type_caster<std::valarray<Type>> : array_caster<std::valarray<Type>, Type, true> {}; |
|
|
|
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template <typename Key, typename Compare, typename Alloc> |
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struct type_caster<std::set<Key, Compare, Alloc>> |
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: set_caster<std::set<Key, Compare, Alloc>, Key> {}; |
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template <typename Key, typename Hash, typename Equal, typename Alloc> |
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struct type_caster<std::unordered_set<Key, Hash, Equal, Alloc>> |
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: set_caster<std::unordered_set<Key, Hash, Equal, Alloc>, Key> {}; |
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template <typename Key, typename Value, typename Compare, typename Alloc> |
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struct type_caster<std::map<Key, Value, Compare, Alloc>> |
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: map_caster<std::map<Key, Value, Compare, Alloc>, Key, Value> {}; |
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template <typename Key, typename Value, typename Hash, typename Equal, typename Alloc> |
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struct type_caster<std::unordered_map<Key, Value, Hash, Equal, Alloc>> |
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: map_caster<std::unordered_map<Key, Value, Hash, Equal, Alloc>, Key, Value> {}; |
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template <typename Type, typename Value = typename Type::value_type> |
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struct optional_caster { |
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using value_conv = make_caster<Value>; |
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template <typename T> |
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static handle cast(T &&src, return_value_policy policy, handle parent) { |
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if (!src) { |
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return none().release(); |
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} |
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if (!std::is_lvalue_reference<T>::value) { |
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policy = return_value_policy_override<Value>::policy(policy); |
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} |
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return value_conv::cast(*std::forward<T>(src), policy, parent); |
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} |
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bool load(handle src, bool convert) { |
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if (!src) { |
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return false; |
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} |
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if (src.is_none()) { |
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return true; |
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} |
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value_conv inner_caster; |
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if (!inner_caster.load(src, convert)) { |
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return false; |
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} |
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value.emplace(cast_op<Value &&>(std::move(inner_caster))); |
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return true; |
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} |
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PYBIND11_TYPE_CASTER(Type, value_conv::name | make_caster<none>::name); |
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}; |
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#if defined(PYBIND11_HAS_OPTIONAL) |
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template <typename T> |
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struct type_caster<std::optional<T>> : public optional_caster<std::optional<T>> {}; |
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template <> |
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struct type_caster<std::nullopt_t> : public void_caster<std::nullopt_t> {}; |
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#endif |
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#if defined(PYBIND11_HAS_EXP_OPTIONAL) |
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template <typename T> |
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struct type_caster<std::experimental::optional<T>> |
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: public optional_caster<std::experimental::optional<T>> {}; |
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template <> |
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struct type_caster<std::experimental::nullopt_t> |
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: public void_caster<std::experimental::nullopt_t> {}; |
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#endif |
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struct variant_caster_visitor { |
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return_value_policy policy; |
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handle parent; |
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using result_type = handle; |
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template <typename T> |
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result_type operator()(T &&src) const { |
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return make_caster<T>::cast(std::forward<T>(src), policy, parent); |
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} |
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}; |
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template <template <typename...> class Variant> |
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struct visit_helper { |
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template <typename... Args> |
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static auto call(Args &&...args) -> decltype(visit(std::forward<Args>(args)...)) { |
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return visit(std::forward<Args>(args)...); |
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} |
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}; |
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template <typename Variant> |
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struct variant_caster; |
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template <template <typename...> class V, typename... Ts> |
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struct variant_caster<V<Ts...>> { |
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static_assert(sizeof...(Ts) > 0, "Variant must consist of at least one alternative."); |
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template <typename U, typename... Us> |
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bool load_alternative(handle src, bool convert, type_list<U, Us...>) { |
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auto caster = make_caster<U>(); |
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if (caster.load(src, convert)) { |
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value = cast_op<U>(std::move(caster)); |
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return true; |
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} |
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|
return load_alternative(src, convert, type_list<Us...>{}); |
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} |
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bool load_alternative(handle, bool, type_list<>) { return false; } |
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bool load(handle src, bool convert) { |
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if (convert && load_alternative(src, false, type_list<Ts...>{})) { |
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return true; |
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|
} |
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|
return load_alternative(src, convert, type_list<Ts...>{}); |
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|
} |
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template <typename Variant> |
|
|
static handle cast(Variant &&src, return_value_policy policy, handle parent) { |
|
|
return visit_helper<V>::call(variant_caster_visitor{policy, parent}, |
|
|
std::forward<Variant>(src)); |
|
|
} |
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|
using Type = V<Ts...>; |
|
|
PYBIND11_TYPE_CASTER(Type, ::pybind11::detail::union_concat(make_caster<Ts>::name...)); |
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|
}; |
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#if defined(PYBIND11_HAS_VARIANT) |
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template <typename... Ts> |
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|
struct type_caster<std::variant<Ts...>> : variant_caster<std::variant<Ts...>> {}; |
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template <> |
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|
struct type_caster<std::monostate> : public void_caster<std::monostate> {}; |
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|
#endif |
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PYBIND11_NAMESPACE_END(detail) |
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inline std::ostream &operator<<(std::ostream &os, const handle &obj) { |
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|
#ifdef PYBIND11_HAS_STRING_VIEW |
|
|
os << str(obj).cast<std::string_view>(); |
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|
#else |
|
|
os << (std::string) str(obj); |
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|
#endif |
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|
return os; |
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|
} |
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PYBIND11_NAMESPACE_END(PYBIND11_NAMESPACE) |
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