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1 /*
2     tests/test_multiple_inheritance.cpp -- multiple inheritance,
3     implicit MI casts
4 
5     Copyright (c) 2016 Wenzel Jakob <wenzel.jakob@epfl.ch>
6 
7     All rights reserved. Use of this source code is governed by a
8     BSD-style license that can be found in the LICENSE file.
9 */
10 
11 #include "pybind11_tests.h"
12 #include "constructor_stats.h"
13 
14 // Many bases for testing that multiple inheritance from many classes (i.e. requiring extra
15 // space for holder constructed flags) works.
16 template <int N> struct BaseN {
BaseNBaseN17     BaseN(int i) : i(i) { }
18     int i;
19 };
20 
21 // test_mi_static_properties
22 struct Vanilla {
vanillaVanilla23     std::string vanilla() { return "Vanilla"; };
24 };
25 struct WithStatic1 {
static_func1WithStatic126     static std::string static_func1() { return "WithStatic1"; };
27     static int static_value1;
28 };
29 struct WithStatic2 {
static_func2WithStatic230     static std::string static_func2() { return "WithStatic2"; };
31     static int static_value2;
32 };
33 struct VanillaStaticMix1 : Vanilla, WithStatic1, WithStatic2 {
static_funcVanillaStaticMix134     static std::string static_func() { return "VanillaStaticMix1"; }
35     static int static_value;
36 };
37 struct VanillaStaticMix2 : WithStatic1, Vanilla, WithStatic2 {
static_funcVanillaStaticMix238     static std::string static_func() { return "VanillaStaticMix2"; }
39     static int static_value;
40 };
41 int WithStatic1::static_value1 = 1;
42 int WithStatic2::static_value2 = 2;
43 int VanillaStaticMix1::static_value = 12;
44 int VanillaStaticMix2::static_value = 12;
45 
TEST_SUBMODULE(multiple_inheritance,m)46 TEST_SUBMODULE(multiple_inheritance, m) {
47 
48     // test_multiple_inheritance_mix1
49     // test_multiple_inheritance_mix2
50     struct Base1 {
51         Base1(int i) : i(i) { }
52         int foo() { return i; }
53         int i;
54     };
55     py::class_<Base1> b1(m, "Base1");
56     b1.def(py::init<int>())
57       .def("foo", &Base1::foo);
58 
59     struct Base2 {
60         Base2(int i) : i(i) { }
61         int bar() { return i; }
62         int i;
63     };
64     py::class_<Base2> b2(m, "Base2");
65     b2.def(py::init<int>())
66       .def("bar", &Base2::bar);
67 
68 
69     // test_multiple_inheritance_cpp
70     struct Base12 : Base1, Base2 {
71         Base12(int i, int j) : Base1(i), Base2(j) { }
72     };
73     struct MIType : Base12 {
74         MIType(int i, int j) : Base12(i, j) { }
75     };
76     py::class_<Base12, Base1, Base2>(m, "Base12");
77     py::class_<MIType, Base12>(m, "MIType")
78         .def(py::init<int, int>());
79 
80 
81     // test_multiple_inheritance_python_many_bases
82     #define PYBIND11_BASEN(N) py::class_<BaseN<N>>(m, "BaseN" #N).def(py::init<int>()).def("f" #N, [](BaseN<N> &b) { return b.i + N; })
83     PYBIND11_BASEN( 1); PYBIND11_BASEN( 2); PYBIND11_BASEN( 3); PYBIND11_BASEN( 4);
84     PYBIND11_BASEN( 5); PYBIND11_BASEN( 6); PYBIND11_BASEN( 7); PYBIND11_BASEN( 8);
85     PYBIND11_BASEN( 9); PYBIND11_BASEN(10); PYBIND11_BASEN(11); PYBIND11_BASEN(12);
86     PYBIND11_BASEN(13); PYBIND11_BASEN(14); PYBIND11_BASEN(15); PYBIND11_BASEN(16);
87     PYBIND11_BASEN(17);
88 
89     // Uncommenting this should result in a compile time failure (MI can only be specified via
90     // template parameters because pybind has to know the types involved; see discussion in #742 for
91     // details).
92 //    struct Base12v2 : Base1, Base2 {
93 //        Base12v2(int i, int j) : Base1(i), Base2(j) { }
94 //    };
95 //    py::class_<Base12v2>(m, "Base12v2", b1, b2)
96 //        .def(py::init<int, int>());
97 
98 
99     // test_multiple_inheritance_virtbase
100     // Test the case where not all base classes are specified, and where pybind11 requires the
101     // py::multiple_inheritance flag to perform proper casting between types.
102     struct Base1a {
103         Base1a(int i) : i(i) { }
104         int foo() { return i; }
105         int i;
106     };
107     py::class_<Base1a, std::shared_ptr<Base1a>>(m, "Base1a")
108         .def(py::init<int>())
109         .def("foo", &Base1a::foo);
110 
111     struct Base2a {
112         Base2a(int i) : i(i) { }
113         int bar() { return i; }
114         int i;
115     };
116     py::class_<Base2a, std::shared_ptr<Base2a>>(m, "Base2a")
117         .def(py::init<int>())
118         .def("bar", &Base2a::bar);
119 
120     struct Base12a : Base1a, Base2a {
121         Base12a(int i, int j) : Base1a(i), Base2a(j) { }
122     };
123     py::class_<Base12a, /* Base1 missing */ Base2a,
124                std::shared_ptr<Base12a>>(m, "Base12a", py::multiple_inheritance())
125         .def(py::init<int, int>());
126 
127     m.def("bar_base2a", [](Base2a *b) { return b->bar(); });
128     m.def("bar_base2a_sharedptr", [](std::shared_ptr<Base2a> b) { return b->bar(); });
129 
130     // test_mi_unaligned_base
131     // test_mi_base_return
132     // Issue #801: invalid casting to derived type with MI bases
133     struct I801B1 { int a = 1; I801B1() = default; I801B1(const I801B1 &) = default; virtual ~I801B1() = default; };
134     struct I801B2 { int b = 2; I801B2() = default; I801B2(const I801B2 &) = default; virtual ~I801B2() = default; };
135     struct I801C : I801B1, I801B2 {};
136     struct I801D : I801C {}; // Indirect MI
137     // Unregistered classes:
138     struct I801B3 { int c = 3; virtual ~I801B3() = default; };
139     struct I801E : I801B3, I801D {};
140 
141     py::class_<I801B1, std::shared_ptr<I801B1>>(m, "I801B1").def(py::init<>()).def_readonly("a", &I801B1::a);
142     py::class_<I801B2, std::shared_ptr<I801B2>>(m, "I801B2").def(py::init<>()).def_readonly("b", &I801B2::b);
143     py::class_<I801C, I801B1, I801B2, std::shared_ptr<I801C>>(m, "I801C").def(py::init<>());
144     py::class_<I801D, I801C, std::shared_ptr<I801D>>(m, "I801D").def(py::init<>());
145 
146     // Two separate issues here: first, we want to recognize a pointer to a base type as being a
147     // known instance even when the pointer value is unequal (i.e. due to a non-first
148     // multiple-inheritance base class):
149     m.def("i801b1_c", [](I801C *c) { return static_cast<I801B1 *>(c); });
150     m.def("i801b2_c", [](I801C *c) { return static_cast<I801B2 *>(c); });
151     m.def("i801b1_d", [](I801D *d) { return static_cast<I801B1 *>(d); });
152     m.def("i801b2_d", [](I801D *d) { return static_cast<I801B2 *>(d); });
153 
154     // Second, when returned a base class pointer to a derived instance, we cannot assume that the
155     // pointer is `reinterpret_cast`able to the derived pointer because, like above, the base class
156     // pointer could be offset.
157     m.def("i801c_b1", []() -> I801B1 * { return new I801C(); });
158     m.def("i801c_b2", []() -> I801B2 * { return new I801C(); });
159     m.def("i801d_b1", []() -> I801B1 * { return new I801D(); });
160     m.def("i801d_b2", []() -> I801B2 * { return new I801D(); });
161 
162     // Return a base class pointer to a pybind-registered type when the actual derived type
163     // isn't pybind-registered (and uses multiple-inheritance to offset the pybind base)
164     m.def("i801e_c", []() -> I801C * { return new I801E(); });
165     m.def("i801e_b2", []() -> I801B2 * { return new I801E(); });
166 
167 
168     // test_mi_static_properties
169     py::class_<Vanilla>(m, "Vanilla")
170         .def(py::init<>())
171         .def("vanilla", &Vanilla::vanilla);
172 
173     py::class_<WithStatic1>(m, "WithStatic1")
174         .def(py::init<>())
175         .def_static("static_func1", &WithStatic1::static_func1)
176         .def_readwrite_static("static_value1", &WithStatic1::static_value1);
177 
178     py::class_<WithStatic2>(m, "WithStatic2")
179         .def(py::init<>())
180         .def_static("static_func2", &WithStatic2::static_func2)
181         .def_readwrite_static("static_value2", &WithStatic2::static_value2);
182 
183     py::class_<VanillaStaticMix1, Vanilla, WithStatic1, WithStatic2>(
184         m, "VanillaStaticMix1")
185         .def(py::init<>())
186         .def_static("static_func", &VanillaStaticMix1::static_func)
187         .def_readwrite_static("static_value", &VanillaStaticMix1::static_value);
188 
189     py::class_<VanillaStaticMix2, WithStatic1, Vanilla, WithStatic2>(
190         m, "VanillaStaticMix2")
191         .def(py::init<>())
192         .def_static("static_func", &VanillaStaticMix2::static_func)
193         .def_readwrite_static("static_value", &VanillaStaticMix2::static_value);
194 
195 
196     struct WithDict { };
197     struct VanillaDictMix1 : Vanilla, WithDict { };
198     struct VanillaDictMix2 : WithDict, Vanilla { };
199     py::class_<WithDict>(m, "WithDict", py::dynamic_attr()).def(py::init<>());
200     py::class_<VanillaDictMix1, Vanilla, WithDict>(m, "VanillaDictMix1").def(py::init<>());
201     py::class_<VanillaDictMix2, WithDict, Vanilla>(m, "VanillaDictMix2").def(py::init<>());
202 
203     // test_diamond_inheritance
204     // Issue #959: segfault when constructing diamond inheritance instance
205     // All of these have int members so that there will be various unequal pointers involved.
206     struct B { int b; B() = default; B(const B&) = default; virtual ~B() = default; };
207     struct C0 : public virtual B { int c0; };
208     struct C1 : public virtual B { int c1; };
209     struct D : public C0, public C1 { int d; };
210     py::class_<B>(m, "B")
211         .def("b", [](B *self) { return self; });
212     py::class_<C0, B>(m, "C0")
213         .def("c0", [](C0 *self) { return self; });
214     py::class_<C1, B>(m, "C1")
215         .def("c1", [](C1 *self) { return self; });
216     py::class_<D, C0, C1>(m, "D")
217         .def(py::init<>());
218 }
219