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#if defined(__INTEL_COMPILER) && __cplusplus >= 201703L |
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# include <aligned_new> |
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#endif |
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#include <pybind11/stl.h> |
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#include "constructor_stats.h" |
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#include "local_bindings.h" |
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#include "pybind11_tests.h" |
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#include <utility> |
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PYBIND11_WARNING_DISABLE_MSVC(4324) |
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struct NoBraceInitialization { |
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explicit NoBraceInitialization(std::vector<int> v) : vec{std::move(v)} {} |
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template <typename T> |
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NoBraceInitialization(std::initializer_list<T> l) : vec(l) {} |
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std::vector<int> vec; |
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}; |
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namespace test_class { |
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namespace pr4220_tripped_over_this { |
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template <int> |
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struct SoEmpty {}; |
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template <typename T> |
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std::string get_msg(const T &) { |
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return "This is really only meant to exercise successful compilation."; |
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} |
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using Empty0 = SoEmpty<0x0>; |
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void bind_empty0(py::module_ &m) { |
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py::class_<Empty0>(m, "Empty0").def(py::init<>()).def("get_msg", get_msg<Empty0>); |
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} |
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} |
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} |
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TEST_SUBMODULE(class_, m) { |
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m.def("obj_class_name", [](py::handle obj) { return py::detail::obj_class_name(obj.ptr()); }); |
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struct NoConstructor { |
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NoConstructor() = default; |
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NoConstructor(const NoConstructor &) = default; |
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NoConstructor(NoConstructor &&) = default; |
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static NoConstructor *new_instance() { |
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auto *ptr = new NoConstructor(); |
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print_created(ptr, "via new_instance"); |
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return ptr; |
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} |
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~NoConstructor() { print_destroyed(this); } |
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}; |
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struct NoConstructorNew { |
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NoConstructorNew() = default; |
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NoConstructorNew(const NoConstructorNew &) = default; |
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NoConstructorNew(NoConstructorNew &&) = default; |
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static NoConstructorNew *new_instance() { |
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auto *ptr = new NoConstructorNew(); |
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print_created(ptr, "via new_instance"); |
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return ptr; |
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} |
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~NoConstructorNew() { print_destroyed(this); } |
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}; |
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py::class_<NoConstructor>(m, "NoConstructor") |
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.def_static("new_instance", &NoConstructor::new_instance, "Return an instance"); |
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py::class_<NoConstructorNew>(m, "NoConstructorNew") |
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.def(py::init([]() { return nullptr; })) |
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.def_static("__new__", |
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[](const py::object &) { return NoConstructorNew::new_instance(); }); |
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class Pet { |
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public: |
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Pet(const std::string &name, const std::string &species) |
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: m_name(name), m_species(species) {} |
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std::string name() const { return m_name; } |
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std::string species() const { return m_species; } |
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private: |
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std::string m_name; |
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std::string m_species; |
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}; |
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class Dog : public Pet { |
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public: |
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explicit Dog(const std::string &name) : Pet(name, "dog") {} |
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std::string bark() const { return "Woof!"; } |
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}; |
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class Rabbit : public Pet { |
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public: |
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explicit Rabbit(const std::string &name) : Pet(name, "parrot") {} |
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}; |
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class Hamster : public Pet { |
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public: |
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explicit Hamster(const std::string &name) : Pet(name, "rodent") {} |
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}; |
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class Chimera : public Pet { |
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Chimera() : Pet("Kimmy", "chimera") {} |
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}; |
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py::class_<Pet> pet_class(m, "Pet"); |
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pet_class.def(py::init<std::string, std::string>()) |
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.def("name", &Pet::name) |
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.def("species", &Pet::species); |
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py::class_<Dog>(m, "Dog", pet_class).def(py::init<std::string>()); |
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py::class_<Rabbit, Pet>(m, "Rabbit").def(py::init<std::string>()); |
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py::class_<Hamster, Pet>(m, "Hamster").def(py::init<std::string>()); |
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py::class_<Chimera, Pet>(m, "Chimera"); |
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m.def("pet_name_species", |
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[](const Pet &pet) { return pet.name() + " is a " + pet.species(); }); |
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m.def("dog_bark", [](const Dog &dog) { return dog.bark(); }); |
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struct BaseClass { |
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BaseClass() = default; |
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BaseClass(const BaseClass &) = default; |
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BaseClass(BaseClass &&) = default; |
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virtual ~BaseClass() = default; |
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}; |
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struct DerivedClass1 : BaseClass {}; |
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struct DerivedClass2 : BaseClass {}; |
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py::class_<BaseClass>(m, "BaseClass").def(py::init<>()); |
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py::class_<DerivedClass1>(m, "DerivedClass1").def(py::init<>()); |
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py::class_<DerivedClass2>(m, "DerivedClass2").def(py::init<>()); |
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m.def("return_class_1", []() -> BaseClass * { return new DerivedClass1(); }); |
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m.def("return_class_2", []() -> BaseClass * { return new DerivedClass2(); }); |
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m.def("return_class_n", [](int n) -> BaseClass * { |
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if (n == 1) { |
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return new DerivedClass1(); |
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} |
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if (n == 2) { |
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return new DerivedClass2(); |
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} |
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return new BaseClass(); |
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}); |
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m.def("return_none", []() -> BaseClass * { return nullptr; }); |
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m.def("check_instances", [](const py::list &l) { |
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return py::make_tuple(py::isinstance<py::tuple>(l[0]), |
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py::isinstance<py::dict>(l[1]), |
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py::isinstance<Pet>(l[2]), |
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py::isinstance<Pet>(l[3]), |
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py::isinstance<Dog>(l[4]), |
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py::isinstance<Rabbit>(l[5]), |
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py::isinstance<UnregisteredType>(l[6])); |
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}); |
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struct Invalid {}; |
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m.def("check_type", [](int category) { |
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if (category == 1) { |
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return py::type::of<DerivedClass1>(); |
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} |
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return py::type::of<Invalid>(); |
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}); |
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m.def("get_type_of", [](py::object ob) { return py::type::of(std::move(ob)); }); |
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m.def("get_type_classic", [](py::handle h) { return h.get_type(); }); |
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m.def("as_type", [](const py::object &ob) { return py::type(ob); }); |
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struct MismatchBase1 {}; |
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struct MismatchDerived1 : MismatchBase1 {}; |
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struct MismatchBase2 {}; |
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struct MismatchDerived2 : MismatchBase2 {}; |
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m.def("mismatched_holder_1", []() { |
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auto mod = py::module_::import("__main__"); |
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py::class_<MismatchBase1, std::shared_ptr<MismatchBase1>>(mod, "MismatchBase1"); |
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py::class_<MismatchDerived1, MismatchBase1>(mod, "MismatchDerived1"); |
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}); |
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m.def("mismatched_holder_2", []() { |
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auto mod = py::module_::import("__main__"); |
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py::class_<MismatchBase2>(mod, "MismatchBase2"); |
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py::class_<MismatchDerived2, std::shared_ptr<MismatchDerived2>, MismatchBase2>( |
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mod, "MismatchDerived2"); |
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}); |
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struct MyBase { |
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static std::unique_ptr<MyBase> make() { return std::unique_ptr<MyBase>(new MyBase()); } |
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}; |
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struct MyDerived : MyBase { |
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static std::unique_ptr<MyDerived> make() { |
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return std::unique_ptr<MyDerived>(new MyDerived()); |
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} |
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}; |
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py::class_<MyBase>(m, "MyBase").def_static("make", &MyBase::make); |
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py::class_<MyDerived, MyBase>(m, "MyDerived") |
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.def_static("make", &MyDerived::make) |
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.def_static("make2", &MyDerived::make); |
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struct ConvertibleFromUserType { |
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int i; |
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explicit ConvertibleFromUserType(UserType u) : i(u.value()) {} |
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}; |
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py::class_<ConvertibleFromUserType>(m, "AcceptsUserType").def(py::init<UserType>()); |
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py::implicitly_convertible<UserType, ConvertibleFromUserType>(); |
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m.def("implicitly_convert_argument", [](const ConvertibleFromUserType &r) { return r.i; }); |
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m.def("implicitly_convert_variable", [](const py::object &o) { |
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const auto &r = o.cast<const ConvertibleFromUserType &>(); |
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return r.i; |
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}); |
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m.add_object("implicitly_convert_variable_fail", [&] { |
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auto f = [](PyObject *, PyObject *args) -> PyObject * { |
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auto o = py::reinterpret_borrow<py::tuple>(args)[0]; |
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try { |
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o.cast<const ConvertibleFromUserType &>(); |
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} catch (const py::cast_error &e) { |
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return py::str(e.what()).release().ptr(); |
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} |
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return py::str().release().ptr(); |
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}; |
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auto *def = new PyMethodDef{"f", f, METH_VARARGS, nullptr}; |
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py::capsule def_capsule(def, |
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[](void *ptr) { delete reinterpret_cast<PyMethodDef *>(ptr); }); |
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return py::reinterpret_steal<py::object>( |
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PyCFunction_NewEx(def, def_capsule.ptr(), m.ptr())); |
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}()); |
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struct HasOpNewDel { |
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std::uint64_t i; |
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static void *operator new(size_t s) { |
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py::print("A new", s); |
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return ::operator new(s); |
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} |
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static void *operator new(size_t s, void *ptr) { |
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py::print("A placement-new", s); |
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return ptr; |
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} |
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static void operator delete(void *p) { |
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py::print("A delete"); |
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return ::operator delete(p); |
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} |
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}; |
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struct HasOpNewDelSize { |
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std::uint32_t i; |
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static void *operator new(size_t s) { |
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py::print("B new", s); |
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return ::operator new(s); |
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} |
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static void *operator new(size_t s, void *ptr) { |
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py::print("B placement-new", s); |
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return ptr; |
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} |
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static void operator delete(void *p, size_t s) { |
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py::print("B delete", s); |
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return ::operator delete(p); |
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} |
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}; |
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struct AliasedHasOpNewDelSize { |
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std::uint64_t i; |
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static void *operator new(size_t s) { |
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py::print("C new", s); |
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return ::operator new(s); |
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} |
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static void *operator new(size_t s, void *ptr) { |
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py::print("C placement-new", s); |
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return ptr; |
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} |
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static void operator delete(void *p, size_t s) { |
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py::print("C delete", s); |
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return ::operator delete(p); |
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} |
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virtual ~AliasedHasOpNewDelSize() = default; |
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AliasedHasOpNewDelSize() = default; |
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AliasedHasOpNewDelSize(const AliasedHasOpNewDelSize &) = delete; |
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}; |
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struct PyAliasedHasOpNewDelSize : AliasedHasOpNewDelSize { |
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PyAliasedHasOpNewDelSize() = default; |
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explicit PyAliasedHasOpNewDelSize(int) {} |
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std::uint64_t j; |
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}; |
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struct HasOpNewDelBoth { |
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std::uint32_t i[8]; |
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static void *operator new(size_t s) { |
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py::print("D new", s); |
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return ::operator new(s); |
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} |
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static void *operator new(size_t s, void *ptr) { |
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py::print("D placement-new", s); |
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return ptr; |
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} |
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static void operator delete(void *p) { |
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py::print("D delete"); |
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return ::operator delete(p); |
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} |
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static void operator delete(void *p, size_t s) { |
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py::print("D wrong delete", s); |
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return ::operator delete(p); |
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} |
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}; |
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py::class_<HasOpNewDel>(m, "HasOpNewDel").def(py::init<>()); |
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py::class_<HasOpNewDelSize>(m, "HasOpNewDelSize").def(py::init<>()); |
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py::class_<HasOpNewDelBoth>(m, "HasOpNewDelBoth").def(py::init<>()); |
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py::class_<AliasedHasOpNewDelSize, PyAliasedHasOpNewDelSize> aliased(m, |
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"AliasedHasOpNewDelSize"); |
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aliased.def(py::init<>()); |
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aliased.attr("size_noalias") = py::int_(sizeof(AliasedHasOpNewDelSize)); |
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aliased.attr("size_alias") = py::int_(sizeof(PyAliasedHasOpNewDelSize)); |
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bind_local<LocalExternal, 17>(m, "LocalExternal", py::module_local()); |
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class ProtectedA { |
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protected: |
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int foo() const { return value; } |
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private: |
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int value = 42; |
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}; |
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class PublicistA : public ProtectedA { |
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public: |
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using ProtectedA::foo; |
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}; |
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py::class_<ProtectedA>(m, "ProtectedA").def(py::init<>()).def("foo", &PublicistA::foo); |
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class ProtectedB { |
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public: |
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virtual ~ProtectedB() = default; |
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ProtectedB() = default; |
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ProtectedB(const ProtectedB &) = delete; |
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protected: |
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virtual int foo() const { return value; } |
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virtual void *void_foo() { return static_cast<void *>(&value); } |
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virtual void *get_self() { return static_cast<void *>(this); } |
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private: |
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int value = 42; |
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}; |
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class TrampolineB : public ProtectedB { |
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public: |
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int foo() const override { PYBIND11_OVERRIDE(int, ProtectedB, foo, ); } |
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void *void_foo() override { PYBIND11_OVERRIDE(void *, ProtectedB, void_foo, ); } |
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void *get_self() override { PYBIND11_OVERRIDE(void *, ProtectedB, get_self, ); } |
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}; |
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class PublicistB : public ProtectedB { |
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public: |
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~PublicistB() override{}; |
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using ProtectedB::foo; |
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using ProtectedB::get_self; |
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using ProtectedB::void_foo; |
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}; |
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m.def("read_foo", [](const void *original) { |
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const int *ptr = reinterpret_cast<const int *>(original); |
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return *ptr; |
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}); |
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m.def("pointers_equal", |
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[](const void *original, const void *comparison) { return original == comparison; }); |
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py::class_<ProtectedB, TrampolineB>(m, "ProtectedB") |
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.def(py::init<>()) |
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.def("foo", &PublicistB::foo) |
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.def("void_foo", &PublicistB::void_foo) |
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.def("get_self", &PublicistB::get_self); |
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struct BraceInitialization { |
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int field1; |
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std::string field2; |
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}; |
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py::class_<BraceInitialization>(m, "BraceInitialization") |
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.def(py::init<int, const std::string &>()) |
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.def_readwrite("field1", &BraceInitialization::field1) |
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.def_readwrite("field2", &BraceInitialization::field2); |
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py::class_<NoBraceInitialization>(m, "NoBraceInitialization") |
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.def(py::init<std::vector<int>>()) |
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.def_readonly("vec", &NoBraceInitialization::vec); |
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struct BogusImplicitConversion { |
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BogusImplicitConversion(const BogusImplicitConversion &) = default; |
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}; |
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py::class_<BogusImplicitConversion>(m, "BogusImplicitConversion") |
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.def(py::init<const BogusImplicitConversion &>()); |
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py::implicitly_convertible<int, BogusImplicitConversion>(); |
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struct NestBase {}; |
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struct Nested {}; |
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py::class_<NestBase> base(m, "NestBase"); |
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base.def(py::init<>()); |
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py::class_<Nested>(base, "Nested") |
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.def(py::init<>()) |
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.def("fn", [](Nested &, int, NestBase &, Nested &) {}) |
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.def( |
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"fa", [](Nested &, int, NestBase &, Nested &) {}, "a"_a, "b"_a, "c"_a); |
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base.def("g", [](NestBase &, Nested &) {}); |
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base.def("h", []() { return NestBase(); }); |
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struct NotRegistered {}; |
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struct StringWrapper { |
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std::string str; |
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}; |
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m.def("test_error_after_conversions", [](int) {}); |
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m.def("test_error_after_conversions", |
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[](const StringWrapper &) -> NotRegistered { return {}; }); |
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py::class_<StringWrapper>(m, "StringWrapper").def(py::init<std::string>()); |
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py::implicitly_convertible<std::string, StringWrapper>(); |
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#if defined(PYBIND11_CPP17) |
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struct alignas(1024) Aligned { |
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std::uintptr_t ptr() const { return (uintptr_t) this; } |
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}; |
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py::class_<Aligned>(m, "Aligned").def(py::init<>()).def("ptr", &Aligned::ptr); |
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#endif |
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struct IsFinal final {}; |
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py::class_<IsFinal>(m, "IsFinal", py::is_final()); |
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struct IsNonFinalFinal {}; |
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py::class_<IsNonFinalFinal>(m, "IsNonFinalFinal", py::is_final()); |
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struct PyPrintDestructor { |
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PyPrintDestructor() = default; |
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~PyPrintDestructor() { py::print("Print from destructor"); } |
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void throw_something() { throw std::runtime_error("error"); } |
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}; |
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py::class_<PyPrintDestructor>(m, "PyPrintDestructor") |
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.def(py::init<>()) |
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.def("throw_something", &PyPrintDestructor::throw_something); |
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struct SamePointer {}; |
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static SamePointer samePointer; |
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py::class_<SamePointer, std::unique_ptr<SamePointer, py::nodelete>>(m, "SamePointer") |
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.def(py::init([]() { return &samePointer; })); |
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struct Empty {}; |
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py::class_<Empty>(m, "Empty").def(py::init<>()); |
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struct BaseWithNested { |
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struct Nested {}; |
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}; |
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struct DerivedWithNested : BaseWithNested { |
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struct Nested {}; |
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}; |
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py::class_<BaseWithNested> baseWithNested_class(m, "BaseWithNested"); |
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py::class_<DerivedWithNested, BaseWithNested> derivedWithNested_class(m, "DerivedWithNested"); |
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py::class_<BaseWithNested::Nested>(baseWithNested_class, "Nested") |
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.def_static("get_name", []() { return "BaseWithNested::Nested"; }); |
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py::class_<DerivedWithNested::Nested>(derivedWithNested_class, "Nested") |
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.def_static("get_name", []() { return "DerivedWithNested::Nested"; }); |
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struct Duplicate {}; |
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struct OtherDuplicate {}; |
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struct DuplicateNested {}; |
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struct OtherDuplicateNested {}; |
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m.def("register_duplicate_class_name", [](const py::module_ &m) { |
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py::class_<Duplicate>(m, "Duplicate"); |
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py::class_<OtherDuplicate>(m, "Duplicate"); |
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}); |
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m.def("register_duplicate_class_type", [](const py::module_ &m) { |
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py::class_<OtherDuplicate>(m, "OtherDuplicate"); |
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py::class_<OtherDuplicate>(m, "YetAnotherDuplicate"); |
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}); |
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m.def("register_duplicate_nested_class_name", [](const py::object >) { |
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py::class_<DuplicateNested>(gt, "DuplicateNested"); |
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py::class_<OtherDuplicateNested>(gt, "DuplicateNested"); |
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}); |
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m.def("register_duplicate_nested_class_type", [](const py::object >) { |
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py::class_<OtherDuplicateNested>(gt, "OtherDuplicateNested"); |
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py::class_<OtherDuplicateNested>(gt, "YetAnotherDuplicateNested"); |
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}); |
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test_class::pr4220_tripped_over_this::bind_empty0(m); |
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} |
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template <int N> |
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class BreaksBase { |
|
public: |
|
virtual ~BreaksBase() = default; |
|
BreaksBase() = default; |
|
BreaksBase(const BreaksBase &) = delete; |
|
}; |
|
template <int N> |
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class BreaksTramp : public BreaksBase<N> {}; |
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using DoesntBreak1 = py::class_<BreaksBase<1>, std::unique_ptr<BreaksBase<1>>, BreaksTramp<1>>; |
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using DoesntBreak2 = py::class_<BreaksBase<2>, BreaksTramp<2>, std::unique_ptr<BreaksBase<2>>>; |
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using DoesntBreak3 = py::class_<BreaksBase<3>, std::unique_ptr<BreaksBase<3>>>; |
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using DoesntBreak4 = py::class_<BreaksBase<4>, BreaksTramp<4>>; |
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using DoesntBreak5 = py::class_<BreaksBase<5>>; |
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using DoesntBreak6 = py::class_<BreaksBase<6>, std::shared_ptr<BreaksBase<6>>, BreaksTramp<6>>; |
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using DoesntBreak7 = py::class_<BreaksBase<7>, BreaksTramp<7>, std::shared_ptr<BreaksBase<7>>>; |
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using DoesntBreak8 = py::class_<BreaksBase<8>, std::shared_ptr<BreaksBase<8>>>; |
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#define CHECK_BASE(N) \ |
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static_assert(std::is_same<typename DoesntBreak##N::type, BreaksBase<(N)>>::value, \ |
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"DoesntBreak" #N " has wrong type!") |
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CHECK_BASE(1); |
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CHECK_BASE(2); |
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CHECK_BASE(3); |
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CHECK_BASE(4); |
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CHECK_BASE(5); |
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CHECK_BASE(6); |
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CHECK_BASE(7); |
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CHECK_BASE(8); |
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#define CHECK_ALIAS(N) \ |
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static_assert( \ |
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DoesntBreak##N::has_alias \ |
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&& std::is_same<typename DoesntBreak##N::type_alias, BreaksTramp<(N)>>::value, \ |
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"DoesntBreak" #N " has wrong type_alias!") |
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#define CHECK_NOALIAS(N) \ |
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static_assert(!DoesntBreak##N::has_alias \ |
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&& std::is_void<typename DoesntBreak##N::type_alias>::value, \ |
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"DoesntBreak" #N " has type alias, but shouldn't!") |
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CHECK_ALIAS(1); |
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CHECK_ALIAS(2); |
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CHECK_NOALIAS(3); |
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CHECK_ALIAS(4); |
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CHECK_NOALIAS(5); |
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CHECK_ALIAS(6); |
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CHECK_ALIAS(7); |
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CHECK_NOALIAS(8); |
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#define CHECK_HOLDER(N, TYPE) \ |
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static_assert(std::is_same<typename DoesntBreak##N::holder_type, \ |
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std::TYPE##_ptr<BreaksBase<(N)>>>::value, \ |
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"DoesntBreak" #N " has wrong holder_type!") |
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CHECK_HOLDER(1, unique); |
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CHECK_HOLDER(2, unique); |
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CHECK_HOLDER(3, unique); |
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CHECK_HOLDER(4, unique); |
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CHECK_HOLDER(5, unique); |
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CHECK_HOLDER(6, shared); |
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CHECK_HOLDER(7, shared); |
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CHECK_HOLDER(8, shared); |
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#define CHECK_BROKEN(N) \ |
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static_assert(std::is_same<typename Breaks##N::type, BreaksBase<-(N)>>::value, \ |
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"Breaks1 has wrong type!"); |
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#ifdef PYBIND11_NEVER_DEFINED_EVER |
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typedef py:: |
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class_<BreaksBase<-1>, std::unique_ptr<BreaksBase<-1>>, std::unique_ptr<BreaksBase<-1>>> |
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Breaks1; |
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CHECK_BROKEN(1); |
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typedef py::class_<BreaksBase<-2>, BreaksTramp<-2>, BreaksTramp<-2>> Breaks2; |
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CHECK_BROKEN(2); |
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typedef py:: |
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class_<BreaksBase<-3>, std::unique_ptr<BreaksBase<-3>>, BreaksTramp<-3>, BreaksTramp<-3>> |
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Breaks3; |
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CHECK_BROKEN(3); |
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typedef py::class_<BreaksBase<-4>, |
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std::unique_ptr<BreaksBase<-4>>, |
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BreaksTramp<-4>, |
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std::shared_ptr<BreaksBase<-4>>> |
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Breaks4; |
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CHECK_BROKEN(4); |
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typedef py::class_<BreaksBase<-5>, BreaksTramp<-4>> Breaks5; |
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CHECK_BROKEN(5); |
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template <> |
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struct BreaksBase<-8> : BreaksBase<-6>, BreaksBase<-7> {}; |
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typedef py::class_<BreaksBase<-8>, BreaksBase<-6>, BreaksBase<-7>> Breaks8; |
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CHECK_BROKEN(8); |
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#endif |
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