304 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			304 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			C++
		
	
	
	
// RUN: %clang_cc1 -fsyntax-only -pedantic -std=c++11 -verify -triple x86_64-apple-darwin %s
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enum class E1 {
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  Val1 = 1L
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};
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enum struct E2 {
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  Val1 = '\0'
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};
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E1 v1 = Val1; // expected-error{{undeclared identifier}}
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E1 v2 = E1::Val1;
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static_assert(sizeof(E1) == sizeof(int), "bad size");
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static_assert(sizeof(E1::Val1) == sizeof(int), "bad size");
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static_assert(sizeof(E2) == sizeof(int), "bad size");
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static_assert(sizeof(E2::Val1) == sizeof(int), "bad size");
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E1 v3 = E2::Val1; // expected-error{{cannot initialize a variable}}
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int x1 = E1::Val1; // expected-error{{cannot initialize a variable}}
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enum E3 : char {
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  Val2 = 1
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};
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E3 v4 = Val2;
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E1 v5 = Val2; // expected-error{{cannot initialize a variable}}
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static_assert(sizeof(E3) == 1, "bad size");
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int x2 = Val2;
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int a1[Val2];
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int a2[E1::Val1]; // expected-error{{size of array has non-integer type}}
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int* p1 = new int[Val2];
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int* p2 = new int[E1::Val1]; // expected-error{{array size expression must have integral or unscoped enumeration type, not 'E1'}}
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enum class E4 {
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  e1 = -2147483648, // ok
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  e2 = 2147483647, // ok
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  e3 = 2147483648 // expected-error{{enumerator value evaluates to 2147483648, which cannot be narrowed to type 'int'}}
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};
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enum class E5 {
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  e1 = 2147483647, // ok
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  e2 // expected-error{{2147483648 is not representable in the underlying}}
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};
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enum class E6 : bool {
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    e1 = false, e2 = true,
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    e3 // expected-error{{2 is not representable in the underlying}}
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};
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enum E7 : bool {
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    e1 = false, e2 = true,
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    e3 // expected-error{{2 is not representable in the underlying}}
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};
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template <class T>
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struct X {
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  enum E : T {
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    e1, e2,
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    e3 // expected-error{{2 is not representable in the underlying}}
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  };
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};
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X<bool> X2; // expected-note{{in instantiation of template}}
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enum Incomplete1; // expected-error{{C++ forbids forward references}}
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enum Complete1 : int;
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Complete1 complete1;
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enum class Complete2;
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Complete2 complete2;
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// All the redeclarations below are done twice on purpose. Tests that the type
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// of the declaration isn't changed.
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enum class Redeclare2; // expected-note{{previous declaration is here}} expected-note{{previous declaration is here}}
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enum Redeclare2; // expected-error{{previously declared as scoped}}
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enum Redeclare2; // expected-error{{previously declared as scoped}}
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enum Redeclare3 : int; // expected-note{{previous declaration is here}} expected-note{{previous declaration is here}}
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enum Redeclare3; // expected-error{{previously declared with fixed underlying type}}
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enum Redeclare3; // expected-error{{previously declared with fixed underlying type}}
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enum class Redeclare5;
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enum class Redeclare5 : int; // ok
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enum Redeclare6 : int;   // expected-note{{previous declaration is here}} expected-note{{previous declaration is here}}
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enum Redeclare6 : short; // expected-error{{redeclared with different underlying type}}
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enum Redeclare6 : short; // expected-error{{redeclared with different underlying type}}
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enum class Redeclare7;         // expected-note{{previous declaration is here}} expected-note{{previous declaration is here}}
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enum class Redeclare7 : short; // expected-error{{redeclared with different underlying type}}
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enum class Redeclare7 : short; // expected-error{{redeclared with different underlying type}}
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enum : long {
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  long_enum_val = 10000
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};
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enum : long x; // expected-error{{unnamed enumeration must be a definition}} \
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// expected-warning{{declaration does not declare anything}}
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void PR9333() {
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  enum class scoped_enum { yes, no, maybe };
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  scoped_enum e = scoped_enum::yes;
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  if (e == scoped_enum::no) { }
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}
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// <rdar://problem/9366066>
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namespace rdar9366066 {
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  enum class X : unsigned { value };
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  void f(X x) {
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    x % X::value; // expected-error{{invalid operands to binary expression ('rdar9366066::X' and 'rdar9366066::X')}}
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    x % 8; // expected-error{{invalid operands to binary expression ('rdar9366066::X' and 'int')}}
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  }
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}
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// Part 1 of PR10264
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namespace test5 {
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  namespace ns {
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    typedef unsigned Atype;
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    enum A : Atype;
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  }
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  enum ns::A : ns::Atype {
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    x, y, z
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  };
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}
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// Part 2 of PR10264
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namespace test6 {
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  enum A : unsigned;
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  struct A::a; // expected-error {{incomplete type 'test6::A' named in nested name specifier}}
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  enum A::b; // expected-error {{incomplete type 'test6::A' named in nested name specifier}}
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  int A::c; // expected-error {{incomplete type 'test6::A' named in nested name specifier}}
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  void A::d(); // expected-error {{incomplete type 'test6::A' named in nested name specifier}}
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  void test() {
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    (void) A::e; // expected-error {{incomplete type 'test6::A' named in nested name specifier}}
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  }
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}
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namespace PR11484 {
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  const int val = 104;
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  enum class test1 { owner_dead = val, };
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}
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namespace N2764 {
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  enum class E { a, b };
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  enum E x1 = E::a; // ok
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  enum class E x2 = E::a; // expected-error {{reference to scoped enumeration must use 'enum' not 'enum class'}}
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  enum F { a, b };
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  enum F y1 = a; // ok
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  enum class F y2 = a; // expected-error {{reference to enumeration must use 'enum' not 'enum class'}}
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  struct S {
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    friend enum class E; // expected-error {{reference to scoped enumeration must use 'enum' not 'enum class'}}
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    friend enum class F; // expected-error {{reference to enumeration must use 'enum' not 'enum class'}}
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    friend enum G {}; // expected-error {{forward reference}} expected-error {{cannot define a type in a friend declaration}}
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    friend enum class H {}; // expected-error {{cannot define a type in a friend declaration}}
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    enum A : int;
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    A a;
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  } s;
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  enum S::A : int {};
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  enum class B;
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}
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enum class N2764::B {};
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namespace PR12106 {
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  template<typename E> struct Enum {
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    Enum() : m_e(E::Last) {}
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    E m_e;
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  };
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  enum eCOLORS { Last };
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  Enum<eCOLORS> e;
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}
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namespace test7 {
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  enum class E { e = (struct S*)0 == (struct S*)0 };
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  S *p;
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}
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namespace test8 {
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  template<typename T> struct S {
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    enum A : int; // expected-note {{here}}
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    enum class B; // expected-note {{here}}
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    enum class C : int; // expected-note {{here}}
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    enum class D : int; // expected-note {{here}}
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  };
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  template<typename T> enum S<T>::A { a }; // expected-error {{previously declared with fixed underlying type}}
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  template<typename T> enum class S<T>::B : char { b }; // expected-error {{redeclared with different underlying}}
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  template<typename T> enum S<T>::C : int { c }; // expected-error {{previously declared as scoped}}
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  template<typename T> enum class S<T>::D : char { d }; // expected-error {{redeclared with different underlying}}
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}
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namespace test9 {
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  template<typename T> struct S {
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    enum class ET : T; // expected-note 2{{here}}
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    enum class Eint : int; // expected-note 2{{here}}
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  };
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  template<> enum class S<int>::ET : int {};
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  template<> enum class S<char>::ET : short {}; // expected-error {{different underlying type}}
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  template<> enum class S<int>::Eint : short {}; // expected-error {{different underlying type}}
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  template<> enum class S<char>::Eint : int {};
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  template<typename T> enum class S<T>::ET : int {}; // expected-error {{different underlying type 'int' (was 'short')}}
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  template<typename T> enum class S<T>::Eint : T {}; // expected-error {{different underlying type 'short' (was 'int')}}
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  // The implicit instantiation of S<short> causes the implicit instantiation of
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  // all declarations of member enumerations, so is ill-formed, even though we
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  // never instantiate the definitions of S<short>::ET nor S<short>::Eint.
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  S<short> s; // expected-note {{in instantiation of}}
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}
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namespace test10 {
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  template<typename T> int f() {
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    enum E : int;
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    enum E : T; // expected-note {{here}}
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    E x;
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    enum E : int { e }; // expected-error {{different underlying}}
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    x = e;
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    return x;
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  }
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  int k = f<int>();
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  int l = f<short>(); // expected-note {{here}}
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  template<typename T> int g() {
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    enum class E : int;
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    enum class E : T; // expected-note {{here}}
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    E x;
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    enum class E : int { e }; // expected-error {{different underlying}}
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    x = E::e;
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    return (int)x;
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  }
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  int m = g<int>();
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  int n = g<short>(); // expected-note {{here}}
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}
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namespace pr13128 {
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  // This should compile cleanly
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  class C {
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    enum class E { C };
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  };
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}
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namespace PR15633 {
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  template<typename T> struct A {
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    struct B {
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      enum class E : T;
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      enum class E2 : T;
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    };
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  };
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  template<typename T> enum class A<T>::B::E { e };
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  template class A<int>;
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  struct B { enum class E; };
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  template<typename T> enum class B::E { e }; // expected-error {{enumeration cannot be a template}}
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}
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namespace PR16900 {
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  enum class A;
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  A f(A a) { return -a; } // expected-error {{invalid argument type 'PR16900::A' to unary expression}}
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}
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namespace PR18551 {
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  enum class A { A };
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  bool f() { return !A::A; } // expected-error {{invalid argument type 'PR18551::A' to unary expression}}
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}
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namespace rdar15124329 {
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  enum class B : bool { F, T };
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  const rdar15124329::B T1 = B::T;
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  typedef B C;  const C T2 = B::T;
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  static_assert(T1 != B::F, "");
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  static_assert(T2 == B::T, "");
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}
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namespace PR18044 {
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  enum class E { a };
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  int E::e = 0; // expected-error {{does not refer into a class}}
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  void E::f() {} // expected-error {{does not refer into a class}}
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  struct E::S {}; // expected-error {{no struct named 'S'}}
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  struct T : E::S {}; // expected-error {{expected class name}}
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  enum E::E {}; // expected-error {{no enum named 'E'}}
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  int E::*p; // expected-error {{does not point into a class}}
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  using E::f; // expected-error {{no member named 'f'}}
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  using E::a; // ok!
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  E b = a;
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}
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