/* tests/test_multiple_inheritance.cpp -- multiple inheritance, implicit MI casts Copyright (c) 2016 Wenzel Jakob All rights reserved. Use of this source code is governed by a BSD-style license that can be found in the LICENSE file. */ #include "pybind11_tests.h" struct Base1 { Base1(int i) : i(i) { } int foo() { return i; } int i; }; struct Base2 { Base2(int i) : i(i) { } int bar() { return i; } int i; }; struct Base12 : Base1, Base2 { Base12(int i, int j) : Base1(i), Base2(j) { } }; struct MIType : Base12 { MIType(int i, int j) : Base12(i, j) { } }; test_initializer multiple_inheritance([](py::module &m) { py::class_ b1(m, "Base1"); b1.def(py::init()) .def("foo", &Base1::foo); py::class_ b2(m, "Base2"); b2.def(py::init()) .def("bar", &Base2::bar); py::class_(m, "Base12"); py::class_(m, "MIType") .def(py::init()); // Uncommenting this should result in a compile time failure (MI can only be specified via // template parameters because pybind has to know the types involved; see discussion in #742 for // details). // struct Base12v2 : Base1, Base2 { // Base12v2(int i, int j) : Base1(i), Base2(j) { } // }; // py::class_(m, "Base12v2", b1, b2) // .def(py::init()); }); /* Test the case where not all base classes are specified, and where pybind11 requires the py::multiple_inheritance flag to perform proper casting between types */ struct Base1a { Base1a(int i) : i(i) { } int foo() { return i; } int i; }; struct Base2a { Base2a(int i) : i(i) { } int bar() { return i; } int i; }; struct Base12a : Base1a, Base2a { Base12a(int i, int j) : Base1a(i), Base2a(j) { } }; test_initializer multiple_inheritance_nonexplicit([](py::module &m) { py::class_>(m, "Base1a") .def(py::init()) .def("foo", &Base1a::foo); py::class_>(m, "Base2a") .def(py::init()) .def("bar", &Base2a::bar); py::class_>(m, "Base12a", py::multiple_inheritance()) .def(py::init()); m.def("bar_base2a", [](Base2a *b) { return b->bar(); }); m.def("bar_base2a_sharedptr", [](std::shared_ptr b) { return b->bar(); }); }); struct Vanilla { std::string vanilla() { return "Vanilla"; }; }; struct WithStatic1 { static std::string static_func1() { return "WithStatic1"; }; static int static_value1; }; struct WithStatic2 { static std::string static_func2() { return "WithStatic2"; }; static int static_value2; }; struct WithDict { }; struct VanillaStaticMix1 : Vanilla, WithStatic1, WithStatic2 { static std::string static_func() { return "VanillaStaticMix1"; } static int static_value; }; struct VanillaStaticMix2 : WithStatic1, Vanilla, WithStatic2 { static std::string static_func() { return "VanillaStaticMix2"; } static int static_value; }; struct VanillaDictMix1 : Vanilla, WithDict { }; struct VanillaDictMix2 : WithDict, Vanilla { }; int WithStatic1::static_value1 = 1; int WithStatic2::static_value2 = 2; int VanillaStaticMix1::static_value = 12; int VanillaStaticMix2::static_value = 12; test_initializer mi_static_properties([](py::module &pm) { auto m = pm.def_submodule("mi"); py::class_(m, "Vanilla") .def(py::init<>()) .def("vanilla", &Vanilla::vanilla); py::class_(m, "WithStatic1") .def(py::init<>()) .def_static("static_func1", &WithStatic1::static_func1) .def_readwrite_static("static_value1", &WithStatic1::static_value1); py::class_(m, "WithStatic2") .def(py::init<>()) .def_static("static_func2", &WithStatic2::static_func2) .def_readwrite_static("static_value2", &WithStatic2::static_value2); py::class_( m, "VanillaStaticMix1") .def(py::init<>()) .def_static("static_func", &VanillaStaticMix1::static_func) .def_readwrite_static("static_value", &VanillaStaticMix1::static_value); py::class_( m, "VanillaStaticMix2") .def(py::init<>()) .def_static("static_func", &VanillaStaticMix2::static_func) .def_readwrite_static("static_value", &VanillaStaticMix2::static_value); #if !defined(PYPY_VERSION) py::class_(m, "WithDict", py::dynamic_attr()).def(py::init<>()); py::class_(m, "VanillaDictMix1").def(py::init<>()); py::class_(m, "VanillaDictMix2").def(py::init<>()); #endif });