forked from OSchip/llvm-project
148 lines
4.6 KiB
C++
148 lines
4.6 KiB
C++
// RUN: %clang_cc1 -std=c++98 %s -verify -fexceptions -fcxx-exceptions -pedantic-errors 2>&1
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// RUN: %clang_cc1 -std=c++11 %s -verify -fexceptions -fcxx-exceptions -pedantic-errors 2>&1 | FileCheck %s
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// RUN: %clang_cc1 -std=c++14 %s -verify -fexceptions -fcxx-exceptions -pedantic-errors 2>&1 | FileCheck %s
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// RUN: %clang_cc1 -std=c++17 %s -verify -fexceptions -fcxx-exceptions -pedantic-errors 2>&1 | FileCheck %s
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// RUN: %clang_cc1 -std=c++2a %s -verify -fexceptions -fcxx-exceptions -pedantic-errors 2>&1 | FileCheck %s
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namespace dr2346 { // dr2346: 11
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void test() {
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const int i2 = 0;
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extern void h2b(int x = i2 + 0); // ok, not odr-use
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}
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}
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namespace dr2352 { // dr2352: 10
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int **p;
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const int *const *const &f1() { return p; }
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int *const *const &f2() { return p; }
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int **const &f3() { return p; }
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const int **const &f4() { return p; } // expected-error {{reference to type 'const int **const' could not bind to an lvalue of type 'int **'}}
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const int *const *&f5() { return p; } // expected-error {{binding reference of type 'const int *const *' to value of type 'int **' not permitted due to incompatible qualifiers}}
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// FIXME: We permit this as a speculative defect resolution, allowing
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// qualification conversions when forming a glvalue conditional expression.
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const int * const * const q = 0;
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__typeof(&(true ? p : q)) x = &(true ? p : q);
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// FIXME: Should we compute the composite pointer type here and produce an
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// lvalue of type 'const int *const * const'?
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const int * const * r;
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void *y = &(true ? p : r); // expected-error {{rvalue of type 'const int *const *'}}
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// FIXME: We order these as a speculative defect resolution.
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void f(const int * const * const &r);
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#if __cplusplus >= 201103L
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constexpr
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#endif
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int *const *const &f(int * const * const &r) { return r; }
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// No temporary is created here.
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int *const *const &check_f = f(p);
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#if __cplusplus >= 201103L
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static_assert(&p == &check_f, "");
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#endif
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}
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namespace dr2353 { // dr2353: 9
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struct X {
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static const int n = 0;
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};
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// CHECK: FunctionDecl {{.*}} use
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int use(X x) {
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// CHECK: MemberExpr {{.*}} .n
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// CHECK-NOT: non_odr_use
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// CHECK: DeclRefExpr {{.*}} 'x'
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// CHECK-NOT: non_odr_use
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return *&x.n;
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}
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#pragma clang __debug dump use
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// CHECK: FunctionDecl {{.*}} not_use
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int not_use(X x) {
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// CHECK: MemberExpr {{.*}} .n {{.*}} non_odr_use_constant
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// CHECK: DeclRefExpr {{.*}} 'x'
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return x.n;
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}
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#pragma clang __debug dump not_use
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// CHECK: FunctionDecl {{.*}} not_use_2
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int not_use_2(X *x) {
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// CHECK: MemberExpr {{.*}} ->n {{.*}} non_odr_use_constant
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// CHECK: DeclRefExpr {{.*}} 'x'
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return x->n;
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}
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#pragma clang __debug dump not_use_2
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}
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#if __cplusplus >= 201707L
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// Otherwise, if the qualified-id std::tuple_size<E> names a complete class
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// type **with a member value**, the expression std::tuple_size<E>::value shall
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// be a well-formed integral constant expression
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namespace dr2386 { // dr2386: 9
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struct Bad1 { int a, b; };
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struct Bad2 { int a, b; };
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} // namespace dr2386
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namespace std {
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template <typename T> struct tuple_size;
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template <> struct std::tuple_size<dr2386::Bad1> {};
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template <> struct std::tuple_size<dr2386::Bad2> {
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static const int value = 42;
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};
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} // namespace std
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namespace dr2386 {
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void no_value() { auto [x, y] = Bad1(); }
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void wrong_value() { auto [x, y] = Bad2(); } // expected-error {{decomposes into 42 elements}}
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} // namespace dr2386
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#endif
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namespace dr2387 { // dr2387: 9
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#if __cplusplus >= 201402L
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template<int> int a = 0;
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extern template int a<0>; // ok
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template<int> static int b = 0;
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extern template int b<0>; // expected-error {{internal linkage}}
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template<int> const int c = 0;
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extern template const int c<0>; // ok, has external linkage despite 'const'
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template<typename T> T d = 0;
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extern template int d<int>;
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extern template const int d<const int>;
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#endif
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}
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#if __cplusplus >= 201103L
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namespace dr2303 { // dr2303: 12
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template <typename... T>
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struct A;
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template <>
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struct A<> {};
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template <typename T, typename... Ts>
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struct A<T, Ts...> : A<Ts...> {};
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struct B : A<int, int> {};
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struct C : A<int, int>, A<int> {}; // expected-warning {{direct base 'A<int>' is inaccessible}}
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struct D : A<int>, A<int, int> {}; // expected-warning {{direct base 'A<int>' is inaccessible}}
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struct E : A<int, int> {};
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struct F : B, E {};
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template <typename... T>
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void f(const A<T...> &) {
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static_assert(sizeof...(T) == 2, "Should only match A<int,int>");
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}
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template <typename... T>
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void f2(const A<T...> *);
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void g() {
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f(B{}); // This is no longer ambiguous.
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B b;
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f2(&b);
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f(C{});
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f(D{});
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f(F{}); // expected-error {{ambiguous conversion from derived class}}
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}
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} //namespace dr2303
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#endif
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