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different functions and pick the function at lookup initialization time. In theory we could actually divide the criteria functions into N different functions for the N cases, but it's so not worth it. Among other things, lets us invoke LookupQualifiedName without recomputing IDNS info every time. Do some refactoring in SemaDecl to avoid an awkward special case in LQN that was only necessary for redeclaration testing for anonymous structs/unions --- which could be done more efficiently with a scoped lookup anyway. llvm-svn: 91676
210 lines
5.3 KiB
C++
210 lines
5.3 KiB
C++
// RUN: %clang_cc1 -fsyntax-only -std=c++98 -verify %s
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namespace A {
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struct C {
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static int cx;
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static int cx2;
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static int Ag1();
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static int Ag2();
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};
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int ax;
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void Af();
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}
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A:: ; // expected-error {{expected unqualified-id}}
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::A::ax::undef ex3; // expected-error {{no member named}}
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A::undef1::undef2 ex4; // expected-error {{no member named 'undef1'}}
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int A::C::Ag1() { return 0; }
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static int A::C::Ag2() { return 0; } // expected-error{{'static' can}}
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int A::C::cx = 17;
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static int A::C::cx2 = 17; // expected-error{{'static' can}}
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class C2 {
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void m(); // expected-note{{member declaration nearly matches}}
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void f(const int& parm); // expected-note{{member declaration nearly matches}}
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void f(int) const; // expected-note{{member declaration nearly matches}}
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void f(float);
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int x;
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};
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void C2::m() const { } // expected-error{{out-of-line definition of 'm' does not match any declaration in 'class C2'}}
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void C2::f(int) { } // expected-error{{out-of-line definition of 'f' does not match any declaration in 'class C2'}}
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void C2::m() {
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x = 0;
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}
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namespace B {
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void ::A::Af() {} // expected-error {{definition or redeclaration of 'Af' not in a namespace enclosing 'A'}}
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}
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void f1() {
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void A::Af(); // expected-error {{definition or redeclaration of 'Af' not allowed inside a function}}
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}
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void f2() {
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A:: ; // expected-error {{expected unqualified-id}}
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A::C::undef = 0; // expected-error {{no member named 'undef'}}
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::A::C::cx = 0;
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int x = ::A::ax = A::C::cx;
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x = sizeof(A::C);
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x = sizeof(::A::C::cx);
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}
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A::C c1;
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struct A::C c2;
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struct S : public A::C {};
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struct A::undef; // expected-error {{'undef' does not name a tag member in the specified scope}}
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namespace A2 {
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typedef int INT;
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struct RC;
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struct CC {
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struct NC;
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};
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}
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struct A2::RC {
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INT x;
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};
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struct A2::CC::NC {
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void m() {}
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};
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void f3() {
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N::x = 0; // expected-error {{use of undeclared identifier 'N'}}
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int N;
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N::x = 0; // expected-error {{expected a class or namespace}}
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{ int A; A::ax = 0; }
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{ typedef int A; A::ax = 0; } // expected-error{{expected a class or namespace}}
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{ typedef A::C A; A::ax = 0; } // expected-error {{no member named 'ax'}}
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{ typedef A::C A; A::cx = 0; }
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}
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// make sure the following doesn't hit any asserts
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void f4(undef::C); // expected-error {{use of undeclared identifier 'undef'}} \
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expected-error {{variable has incomplete type 'void'}}
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typedef void C2::f5(int); // expected-error{{typedef declarator cannot be qualified}}
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void f6(int A2::RC::x); // expected-error{{parameter declarator cannot be qualified}}
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int A2::RC::x; // expected-error{{non-static data member defined out-of-line}}
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void A2::CC::NC::m(); // expected-error{{out-of-line declaration of a member must be a definition}}
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namespace E {
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int X = 5;
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namespace Nested {
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enum E {
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X = 0
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};
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void f() {
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return E::X; // expected-error{{expected a class or namespace}}
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}
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}
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}
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class Operators {
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Operators operator+(const Operators&) const; // expected-note{{member declaration nearly matches}}
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operator bool();
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};
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Operators Operators::operator+(const Operators&) { // expected-error{{out-of-line definition of 'operator+' does not match any declaration in 'class Operators'}}
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Operators ops;
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return ops;
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}
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Operators Operators::operator+(const Operators&) const {
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Operators ops;
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return ops;
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}
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Operators::operator bool() {
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return true;
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}
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namespace A {
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void g(int&); // expected-note{{member declaration nearly matches}}
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}
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void A::f() {} // expected-error{{out-of-line definition of 'f' does not match any declaration in namespace 'A'}}
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void A::g(const int&) { } // expected-error{{out-of-line definition of 'g' does not match any declaration in namespace 'A'}}
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struct Struct { };
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void Struct::f() { } // expected-error{{out-of-line definition of 'f' does not match any declaration in 'struct Struct'}}
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void global_func(int);
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void global_func2(int);
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namespace N {
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void ::global_func(int) { } // expected-error{{definition or redeclaration of 'global_func' cannot name the global scope}}
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void f();
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// FIXME: if we move this to a separate definition of N, things break!
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}
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void ::global_func2(int) { } // expected-error{{definition or redeclaration of 'global_func2' cannot name the global scope}}
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void N::f() { } // okay
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struct Y; // expected-note{{forward declaration of 'struct Y'}}
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Y::foo y; // expected-error{{incomplete type 'struct Y' named in nested name specifier}} \
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// expected-error{{no type named 'foo' in}}
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X::X() : a(5) { } // expected-error{{use of undeclared identifier 'X'}} \
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// expected-error{{C++ requires a type specifier for all declarations}} \
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// expected-error{{only constructors take base initializers}}
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struct foo_S {
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static bool value;
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};
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bool (foo_S::value);
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namespace somens {
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struct a { };
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}
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template <typename T>
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class foo {
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};
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// PR4452 / PR4451
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foo<somens:a> a2; // expected-error {{unexpected ':' in nested name specifier}}
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somens::a a3 = a2; // expected-error {{cannot initialize 'a3' with an lvalue of type 'foo<somens::a>'}}
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// typedefs and using declarations.
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namespace test1 {
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namespace ns {
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class Counter { static int count; };
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typedef Counter counter;
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}
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using ns::counter;
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class Test {
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void test1() {
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counter c;
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c.count++;
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counter::count++;
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}
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};
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}
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