forked from OSchip/llvm-project
				
			
		
			
				
	
	
		
			179 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			179 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			C++
		
	
	
	
| // RUN: %clang_cc1 -fsyntax-only -std=c++11 -verify %s
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| template<typename T> struct X; // expected-note {{'X' is incomplete}}
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| template<int I> struct Y;
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| 
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| X<X<int>> *x1;
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| 
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| Y<(1 >> 2)> *y1;
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| Y<1 >> 2> *y2; // FIXME: expected-error{{expected unqualified-id}}
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| 
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| X<X<X<X<X<int>>>>> *x2;
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| 
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| template<> struct X<int> { };
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| typedef X<int> X_int;
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| struct Z : X_int { };
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| 
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| void f(const X<int> x) {
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|   (void)reinterpret_cast<X<int>>(x); // expected-error{{reinterpret_cast from}}
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|   (void)reinterpret_cast<X<X<X<int>>>>(x); // expected-error{{reinterpret_cast from}}
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| 
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|   X<X<int>> *x1;
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| }
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| 
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| template<typename T = void> struct X1 { };
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| X1<X1<>> x1a;
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| 
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| 
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| namespace ParameterPackExpansions {
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| 
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| // A template parameter pack that [contains an unexpanded parameter pack] is a
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| // pack expansion.
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| 
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| template<typename...Ts> struct Outer {
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|   // From [temp.variadic]p4:
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|   //   In a template parameter pack that is a pack expansion, the pattern is
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|   //   [...the template-parameter...] without the ellipsis.
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|   // Therefore the resulting sequence of parameters is not a parameter pack,
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|   // so is not required to be the last template parameter.
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|   template<Ts ...As, template<Ts> class ...Bs, typename ...Cs> struct Inner {
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|     struct Check : Bs<As>... {
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|       Check(Cs...);
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|     };
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|   };
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| };
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| 
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| template<int> struct TemplateInt {};
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| template<char> struct TemplateChar {};
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| template<int*> struct TemplateIntPtr {};
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| int x;
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| 
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| Outer<int, char, int*>::
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| Inner<12345, 'x', &x,
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|       TemplateInt, TemplateChar, TemplateIntPtr,
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|       int*>::
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| Check check(&x);
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| 
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| 
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| template<typename...Ts> struct types;
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| 
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| enum place { _ };
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| template<place...> struct places {};
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| 
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| template<typename P1, typename P2> struct append_places;
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| template<place...X1, place...X2>
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| struct append_places<places<X1...>, places<X2...>> {
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|   typedef places<X1...,X2...> type;
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| };
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| 
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| template<unsigned N>
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| struct make_places : append_places<typename make_places<N/2>::type,
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|                                    typename make_places<N-N/2>::type> {};
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| template<> struct make_places<0> { typedef places<> type; };
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| template<> struct make_places<1> { typedef places<_> type; };
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| 
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| template<typename T> struct wrap {
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|   template<place> struct inner { typedef T type; };
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| };
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| 
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| template<typename T> struct takedrop_impl;
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| template<place...X> struct takedrop_impl<places<X...>> {
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|   template<template<decltype(X)> class ...Take,
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|            template<place      > class ...Drop>
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|   struct inner { // expected-note 2{{declared}}
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|     typedef types<typename Take<_>::type...> take;
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|     typedef types<typename Drop<_>::type...> drop;
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|   };
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| };
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| 
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| template<unsigned N, typename...Ts> struct take {
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|   using type = typename takedrop_impl<typename make_places<N>::type>::
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|     template inner<wrap<Ts>::template inner...>::take; // expected-error {{too few template arguments}}
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| };
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| template<unsigned N, typename...Ts> struct drop {
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|   using type = typename takedrop_impl<typename make_places<N>::type>::
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|     template inner<wrap<Ts>::template inner...>::drop; // expected-error {{too few template arguments}}
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| };
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| 
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| using T1 = take<3, int, char, double, long>::type; // expected-note {{previous}}
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| // FIXME: Desguar the types on the RHS in this diagnostic.
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| // desired-error {{'types<void, void, void, void>' vs 'types<int, char, double, (no argument)>'}}
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| using T1 = types<void, void, void, void>; // expected-error {{'types<void, void, void, void>' vs 'types<typename inner<_>::type, typename inner<_>::type, typename inner<_>::type, (no argument)>'}}
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| using D1 = drop<3, int, char, double, long>::type;
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| using D1 = types<long>;
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| 
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| using T2 = take<4, int, char, double, long>::type; // expected-note {{previous}}
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| using T2 = types<int, char, double, long>;
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| // FIXME: Desguar the types on the RHS in this diagnostic.
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| // desired-error {{'types<void, void, void, void>' vs 'types<int, char, double, long>'}}
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| using T2 = types<void, void, void, void>; // expected-error {{'types<void, void, void, void>' vs 'types<typename inner<_>::type, typename inner<_>::type, typename inner<_>::type, typename inner<_>::type>'}}
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| using D2 = drop<4, int, char, double, long>::type;
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| using D2 = types<>;
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| 
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| using T3 = take<5, int, char, double, long>::type; // expected-note {{in instantiation of}}
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| using D3 = drop<5, int, char, double, long>::type; // expected-note {{in instantiation of}}
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| 
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| 
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| // FIXME: We should accept this code. A parameter pack within a default argument
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| // in a template template parameter pack is expanded, because the pack is
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| // implicitly a pack expansion.
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| template<typename ...Default> struct DefArg {
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|   template<template<typename T = Default> class ...Classes> struct Inner { // expected-error {{default argument contains unexpanded parameter pack}} expected-note {{here}}
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|     Inner(Classes<>...); // expected-error {{too few}}
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|   };
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| };
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| template<typename T> struct vector {};
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| template<typename T> struct list {};
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| vector<int> vi;
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| list<char> lc;
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| DefArg<int, char>::Inner<vector, list> defarg(vi, lc);
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| 
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| 
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| // FIXME:
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| // A template parameter pack that is a pack expansion shall not expand a
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| // parameter pack declared in the same template-parameter-list.
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| template<typename...Ts, Ts...Vs> void error(); // desired-error
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| 
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| // This case should not produce an error, because in A's instantiation, Cs is
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| // not a parameter pack.
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| template<typename...Ts> void consume(Ts...);
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| template<typename...Ts> struct A {
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|   template<template<typename, Ts = 0> class ...Cs, Cs<Ts> ...Vs> struct B { // ok
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|     B() {
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|       consume([]{
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|         int arr[Vs]; // expected-error {{negative size}}
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|       }...);
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|     }
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|   };
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| };
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| template<typename, int> using Int = int;
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| template<typename, short> using Char = char;
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| A<int, short>::B<Int, Char, -1, 'x'> b; // expected-note {{here}}
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| 
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| }
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| 
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| namespace PR9023 {
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|   template<typename ...T> struct A {
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|     template<template<T> class ...> struct B {
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|     };
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|   };
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| 
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|   template<int> struct C { };
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|   template<long> struct D { };
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| 
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|   int main() {
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|     A<int, long>::B<C, D> e;
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|   }
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| }
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| 
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| namespace std_examples {
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|   template <class... Types> class Tuple;
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|   template <class T, int... Dims> struct multi_array;
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|   template <class... T> struct value_holder {
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|     template<T... Values> struct apply { };
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|   };
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|   template <class... T, T... Values> struct static_array; // expected-error {{must be the last}}
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| 
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|   int n;
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|   value_holder<int, char, int*>::apply<12345, 'x', &n> test;
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| }
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