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Eric Fiselier5be45122015-07-14 20:16:15 +00001//===----------------------------------------------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is dual licensed under the MIT and the University of Illinois Open
6// Source Licenses. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10// UNSUPPORTED: c++98, c++03, c++11, c++14
11
12// <functional>
13
14// template <class F, class ...Args>
15// result_of_t<F&&(Args&&...)> invoke(F&&, Args&&...);
16
17/// C++14 [func.def] 20.9.0
18/// (1) The following definitions apply to this Clause:
19/// (2) A call signature is the name of a return type followed by a parenthesized
20/// comma-separated list of zero or more argument types.
21/// (3) A callable type is a function object type (20.9) or a pointer to member.
22/// (4) A callable object is an object of a callable type.
23/// (5) A call wrapper type is a type that holds a callable object and supports
24/// a call operation that forwards to that object.
25/// (6) A call wrapper is an object of a call wrapper type.
26/// (7) A target object is the callable object held by a call wrapper.
27
28/// C++14 [func.require] 20.9.1
29///
30/// Define INVOKE (f, t1, t2, ..., tN) as follows:
Eric Fiselier16270a02015-07-14 20:45:48 +000031/// (1.1) - (t1.*f)(t2, ..., tN) when f is a pointer to a member function of a class T and t1 is an object of
Eric Fiselier5be45122015-07-14 20:16:15 +000032/// type T or a reference to an object of type T or a reference to an object of a type derived from T;
Eric Fiselier16270a02015-07-14 20:45:48 +000033/// (1.2) - ((*t1).*f)(t2, ..., tN) when f is a pointer to a member function of a class T and t1 is not one of
Eric Fiselier5be45122015-07-14 20:16:15 +000034/// the types described in the previous item;
Eric Fiselier16270a02015-07-14 20:45:48 +000035/// (1.3) - t1.*f when N == 1 and f is a pointer to member data of a class T and t1 is an object of type T or a
Eric Fiselier5be45122015-07-14 20:16:15 +000036/// reference to an object of type T or a reference to an object of a type derived from T;
Eric Fiselier16270a02015-07-14 20:45:48 +000037/// (1.4) - (*t1).*f when N == 1 and f is a pointer to member data of a class T and t1 is not one of the types
Eric Fiselier5be45122015-07-14 20:16:15 +000038/// described in the previous item;
Eric Fiselier16270a02015-07-14 20:45:48 +000039/// (1.5) - f(t1, t2, ..., tN) in all other cases.
Eric Fiselier5be45122015-07-14 20:16:15 +000040
41#include <functional>
42#include <type_traits>
Marshall Clowbfba9682015-11-10 15:22:08 +000043#include <utilty> // for std::move
Eric Fiselier5be45122015-07-14 20:16:15 +000044#include <cassert>
45
46struct NonCopyable {
47 NonCopyable() {}
48private:
49 NonCopyable(NonCopyable const&) = delete;
50 NonCopyable& operator=(NonCopyable const&) = delete;
51};
52
53struct TestClass {
54 explicit TestClass(int x) : data(x) {}
55
56 int& operator()(NonCopyable&&) & { return data; }
57 int const& operator()(NonCopyable&&) const & { return data; }
58 int volatile& operator()(NonCopyable&&) volatile & { return data; }
59 int const volatile& operator()(NonCopyable&&) const volatile & { return data; }
60
61 int&& operator()(NonCopyable&&) && { return std::move(data); }
62 int const&& operator()(NonCopyable&&) const && { return std::move(data); }
63 int volatile&& operator()(NonCopyable&&) volatile && { return std::move(data); }
64 int const volatile&& operator()(NonCopyable&&) const volatile && { return std::move(data); }
65
66 int data;
67private:
68 TestClass(TestClass const&) = delete;
69 TestClass& operator=(TestClass const&) = delete;
70};
71
72struct DerivedFromTestClass : public TestClass {
73 explicit DerivedFromTestClass(int x) : TestClass(x) {}
74};
75
76int& foo(NonCopyable&&) {
77 static int data = 42;
78 return data;
79}
80
81template <class Signature, class Expect, class Functor>
82void test_b12(Functor&& f) {
83 // Create the callable object.
84 typedef Signature TestClass::*ClassFunc;
85 ClassFunc func_ptr = &TestClass::operator();
86
87 // Create the dummy arg.
88 NonCopyable arg;
89
90 // Check that the deduced return type of invoke is what is expected.
91 typedef decltype(
92 std::invoke(func_ptr, std::forward<Functor>(f), std::move(arg))
93 ) DeducedReturnType;
94 static_assert((std::is_same<DeducedReturnType, Expect>::value), "");
95
96 // Check that result_of_t matches Expect.
97 typedef typename std::result_of<ClassFunc&&(Functor&&, NonCopyable&&)>::type
98 ResultOfReturnType;
99 static_assert((std::is_same<ResultOfReturnType, Expect>::value), "");
100
101 // Run invoke and check the return value.
102 DeducedReturnType ret =
103 std::invoke(func_ptr, std::forward<Functor>(f), std::move(arg));
104 assert(ret == 42);
105}
106
107template <class Expect, class Functor>
108void test_b34(Functor&& f) {
109 // Create the callable object.
110 typedef int TestClass::*ClassFunc;
111 ClassFunc func_ptr = &TestClass::data;
112
113 // Check that the deduced return type of invoke is what is expected.
114 typedef decltype(
115 std::invoke(func_ptr, std::forward<Functor>(f))
116 ) DeducedReturnType;
117 static_assert((std::is_same<DeducedReturnType, Expect>::value), "");
118
119 // Check that result_of_t matches Expect.
120 typedef typename std::result_of<ClassFunc&&(Functor&&)>::type
121 ResultOfReturnType;
122 static_assert((std::is_same<ResultOfReturnType, Expect>::value), "");
123
124 // Run invoke and check the return value.
125 DeducedReturnType ret =
126 std::invoke(func_ptr, std::forward<Functor>(f));
127 assert(ret == 42);
128}
129
130template <class Expect, class Functor>
131void test_b5(Functor&& f) {
132 NonCopyable arg;
133
134 // Check that the deduced return type of invoke is what is expected.
135 typedef decltype(
136 std::invoke(std::forward<Functor>(f), std::move(arg))
137 ) DeducedReturnType;
138 static_assert((std::is_same<DeducedReturnType, Expect>::value), "");
139
140 // Check that result_of_t matches Expect.
141 typedef typename std::result_of<Functor&&(NonCopyable&&)>::type
142 ResultOfReturnType;
143 static_assert((std::is_same<ResultOfReturnType, Expect>::value), "");
144
145 // Run invoke and check the return value.
146 DeducedReturnType ret = std::invoke(std::forward<Functor>(f), std::move(arg));
147 assert(ret == 42);
148}
149
150void bullet_one_two_tests() {
151 {
152 TestClass cl(42);
153 test_b12<int&(NonCopyable&&) &, int&>(cl);
154 test_b12<int const&(NonCopyable&&) const &, int const&>(cl);
155 test_b12<int volatile&(NonCopyable&&) volatile &, int volatile&>(cl);
156 test_b12<int const volatile&(NonCopyable&&) const volatile &, int const volatile&>(cl);
157
158 test_b12<int&&(NonCopyable&&) &&, int&&>(std::move(cl));
159 test_b12<int const&&(NonCopyable&&) const &&, int const&&>(std::move(cl));
160 test_b12<int volatile&&(NonCopyable&&) volatile &&, int volatile&&>(std::move(cl));
161 test_b12<int const volatile&&(NonCopyable&&) const volatile &&, int const volatile&&>(std::move(cl));
162 }
163 {
164 DerivedFromTestClass cl(42);
165 test_b12<int&(NonCopyable&&) &, int&>(cl);
166 test_b12<int const&(NonCopyable&&) const &, int const&>(cl);
167 test_b12<int volatile&(NonCopyable&&) volatile &, int volatile&>(cl);
168 test_b12<int const volatile&(NonCopyable&&) const volatile &, int const volatile&>(cl);
169
170 test_b12<int&&(NonCopyable&&) &&, int&&>(std::move(cl));
171 test_b12<int const&&(NonCopyable&&) const &&, int const&&>(std::move(cl));
172 test_b12<int volatile&&(NonCopyable&&) volatile &&, int volatile&&>(std::move(cl));
173 test_b12<int const volatile&&(NonCopyable&&) const volatile &&, int const volatile&&>(std::move(cl));
174 }
175 {
176 TestClass cl_obj(42);
177 TestClass *cl = &cl_obj;
178 test_b12<int&(NonCopyable&&) &, int&>(cl);
179 test_b12<int const&(NonCopyable&&) const &, int const&>(cl);
180 test_b12<int volatile&(NonCopyable&&) volatile &, int volatile&>(cl);
181 test_b12<int const volatile&(NonCopyable&&) const volatile &, int const volatile&>(cl);
182 }
183 {
184 DerivedFromTestClass cl_obj(42);
185 DerivedFromTestClass *cl = &cl_obj;
186 test_b12<int&(NonCopyable&&) &, int&>(cl);
187 test_b12<int const&(NonCopyable&&) const &, int const&>(cl);
188 test_b12<int volatile&(NonCopyable&&) volatile &, int volatile&>(cl);
189 test_b12<int const volatile&(NonCopyable&&) const volatile &, int const volatile&>(cl);
190 }
191}
192
193void bullet_three_four_tests() {
194 {
195 typedef TestClass Fn;
196 Fn cl(42);
197 test_b34<int&>(cl);
198 test_b34<int const&>(static_cast<Fn const&>(cl));
199 test_b34<int volatile&>(static_cast<Fn volatile&>(cl));
200 test_b34<int const volatile&>(static_cast<Fn const volatile &>(cl));
201
202 test_b34<int&&>(static_cast<Fn &&>(cl));
203 test_b34<int const&&>(static_cast<Fn const&&>(cl));
204 test_b34<int volatile&&>(static_cast<Fn volatile&&>(cl));
205 test_b34<int const volatile&&>(static_cast<Fn const volatile&&>(cl));
206 }
207 {
208 typedef DerivedFromTestClass Fn;
209 Fn cl(42);
210 test_b34<int&>(cl);
211 test_b34<int const&>(static_cast<Fn const&>(cl));
212 test_b34<int volatile&>(static_cast<Fn volatile&>(cl));
213 test_b34<int const volatile&>(static_cast<Fn const volatile &>(cl));
214
215 test_b34<int&&>(static_cast<Fn &&>(cl));
216 test_b34<int const&&>(static_cast<Fn const&&>(cl));
217 test_b34<int volatile&&>(static_cast<Fn volatile&&>(cl));
218 test_b34<int const volatile&&>(static_cast<Fn const volatile&&>(cl));
219 }
220 {
221 typedef TestClass Fn;
222 Fn cl_obj(42);
223 Fn* cl = &cl_obj;
224 test_b34<int&>(cl);
225 test_b34<int const&>(static_cast<Fn const*>(cl));
226 test_b34<int volatile&>(static_cast<Fn volatile*>(cl));
227 test_b34<int const volatile&>(static_cast<Fn const volatile *>(cl));
228 }
229 {
230 typedef DerivedFromTestClass Fn;
231 Fn cl_obj(42);
232 Fn* cl = &cl_obj;
233 test_b34<int&>(cl);
234 test_b34<int const&>(static_cast<Fn const*>(cl));
235 test_b34<int volatile&>(static_cast<Fn volatile*>(cl));
236 test_b34<int const volatile&>(static_cast<Fn const volatile *>(cl));
237 }
238}
239
240void bullet_five_tests() {
241 using FooType = int&(NonCopyable&&);
242 {
243 FooType& fn = foo;
244 test_b5<int &>(fn);
245 }
246 {
247 FooType* fn = foo;
248 test_b5<int &>(fn);
249 }
250 {
251 typedef TestClass Fn;
252 Fn cl(42);
253 test_b5<int&>(cl);
254 test_b5<int const&>(static_cast<Fn const&>(cl));
255 test_b5<int volatile&>(static_cast<Fn volatile&>(cl));
256 test_b5<int const volatile&>(static_cast<Fn const volatile &>(cl));
257
258 test_b5<int&&>(static_cast<Fn &&>(cl));
259 test_b5<int const&&>(static_cast<Fn const&&>(cl));
260 test_b5<int volatile&&>(static_cast<Fn volatile&&>(cl));
261 test_b5<int const volatile&&>(static_cast<Fn const volatile&&>(cl));
262 }
263}
264
265int main() {
266 bullet_one_two_tests();
267 bullet_three_four_tests();
268 bullet_five_tests();
269}