241 lines
5.8 KiB
C++
241 lines
5.8 KiB
C++
// RUN: %clang_cc1 -fsyntax-only -verify %s
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// RUN: %clang_cc1 -fsyntax-only -verify -std=c++98 %s
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// RUN: %clang_cc1 -fsyntax-only -verify -std=c++11 %s
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// C++03 [namespace.udecl]p4:
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// A using-declaration used as a member-declaration shall refer to a
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// member of a base class of the class being defined, shall refer to
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// a member of an anonymous union that is a member of a base class
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// of the class being defined, or shall refer to an enumerator for
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// an enumeration type that is a member of a base class of the class
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// being defined.
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// There is no directly analogous paragraph in C++0x, and the feature
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// works sufficiently differently there that it needs a separate test.
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namespace test0 {
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namespace NonClass {
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typedef int type;
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struct hiding {};
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int hiding;
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static union { double union_member; };
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enum tagname { enumerator };
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}
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class Test0 {
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using NonClass::type; // expected-error {{not a class}}
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using NonClass::hiding; // expected-error {{not a class}}
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using NonClass::union_member; // expected-error {{not a class}}
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using NonClass::enumerator; // expected-error {{not a class}}
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};
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}
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struct Opaque0 {};
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namespace test1 {
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struct A {
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typedef int type;
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struct hiding {}; // expected-note {{previous use is here}}
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Opaque0 hiding;
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union { double union_member; };
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enum tagname { enumerator };
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};
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struct B : A {
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using A::type;
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using A::hiding;
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using A::union_member;
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using A::enumerator;
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using A::tagname;
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void test0() {
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type t = 0;
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}
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void test1() {
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typedef struct A::hiding local;
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struct hiding _ = local();
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}
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void test2() {
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union hiding _; // expected-error {{tag type that does not match previous}}
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}
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void test3() {
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char array[sizeof(union_member) == sizeof(double) ? 1 : -1];
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}
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void test4() {
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enum tagname _ = enumerator;
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}
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void test5() {
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Opaque0 _ = hiding;
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}
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};
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}
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namespace test2 {
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struct A {
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typedef int type;
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struct hiding {}; // expected-note {{previous use is here}}
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int hiding;
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union { double union_member; };
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enum tagname { enumerator };
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};
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template <class T> struct B : A {
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using A::type;
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using A::hiding;
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using A::union_member;
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using A::enumerator;
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using A::tagname;
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void test0() {
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type t = 0;
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}
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void test1() {
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typedef struct A::hiding local;
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struct hiding _ = local();
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}
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void test2() {
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union hiding _; // expected-error {{tag type that does not match previous}}
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}
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void test3() {
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char array[sizeof(union_member) == sizeof(double) ? 1 : -1];
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}
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void test4() {
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enum tagname _ = enumerator;
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}
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void test5() {
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Opaque0 _ = hiding;
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}
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};
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}
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namespace test3 {
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struct hiding {};
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template <class T> struct A {
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typedef int type; // expected-note {{target of using declaration}}
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struct hiding {};
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Opaque0 hiding; // expected-note {{target of using declaration}}
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union { double union_member; }; // expected-note {{target of using declaration}}
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enum tagname { enumerator }; // expected-note 2 {{target of using declaration}}
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};
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template <class T> struct B : A<T> {
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using A<T>::type; // expected-error {{dependent using declaration resolved to type without 'typename'}}
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using A<T>::hiding;
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using A<T>::union_member;
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using A<T>::enumerator;
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using A<T>::tagname; // expected-error {{dependent using declaration resolved to type without 'typename'}}
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// FIXME: re-enable these when the various bugs involving tags are fixed
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#if 0
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void test1() {
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typedef struct A<T>::hiding local;
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struct hiding _ = local();
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}
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void test2() {
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typedef struct A<T>::hiding local;
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union hiding _ = local();
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}
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#endif
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void test3() {
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char array[sizeof(union_member) == sizeof(double) ? 1 : -1];
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}
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#if 0
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void test4() {
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enum tagname _ = enumerator;
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}
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#endif
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void test5() {
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Opaque0 _ = hiding;
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}
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};
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template struct B<int>; // expected-note {{in instantiation}}
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template <class T> struct C : A<T> {
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using typename A<T>::type;
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using typename A<T>::hiding; // expected-note {{declared here}} \
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// expected-error {{'typename' keyword used on a non-type}}
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using typename A<T>::union_member; // expected-error {{'typename' keyword used on a non-type}}
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using typename A<T>::enumerator; // expected-error {{'typename' keyword used on a non-type}}
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void test6() {
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type t = 0;
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}
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void test7() {
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Opaque0 _ = hiding; // expected-error {{does not refer to a value}}
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}
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};
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template struct C<int>; // expected-note {{in instantiation}}
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}
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namespace test4 {
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struct Base {
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int foo();
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};
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struct Unrelated {
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int foo();
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};
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struct Subclass : Base {
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};
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namespace InnerNS {
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int foo();
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}
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// We should be able to diagnose these without instantiation.
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template <class T> struct C : Base {
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using InnerNS::foo; // expected-error {{not a class}}
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using Base::bar; // expected-error {{no member named 'bar'}}
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using Unrelated::foo; // expected-error {{not a base class}}
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using C::foo; // legal in C++03
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using Subclass::foo; // legal in C++03
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#if __cplusplus >= 201103L
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// expected-error@-3 {{refers to its own class}}
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// expected-error@-3 {{refers into 'Subclass::', which is not a base class}}
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#endif
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int bar();
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#if __cplusplus < 201103L
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// expected-note@-2 {{target of using declaration}}
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#endif
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using C::bar; // expected-error {{refers to its own class}}
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};
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}
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namespace test5 {
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struct B;
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struct A {
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A(const B&);
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B &operator=(const B&);
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};
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struct B : A {
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#if __cplusplus >= 201103L
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using A::A;
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#endif
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using A::operator=;
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};
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void test(B b) {
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B b2(b);
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b2 = b;
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}
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}
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