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// RUN: %clang_cc1 -fsyntax-only -std=c++20 -verify %s
// RUN: %clang_cc1 -fsyntax-only -std=c++20 -verify %s -fexperimental-new-constant-interpreter
template <typename Iterator> class normal_iterator {};
template <typename From, typename To> struct is_convertible {};
template <typename From, typename To>
inline constexpr bool is_convertible_v = is_convertible<From, To>::value; // expected-error {{no member named 'value' in 'is_convertible<bool, bool>'}}
template <typename From, typename To>
concept convertible_to = is_convertible_v<From, To>; // #1
template <typename IteratorL, typename IteratorR>
requires requires(IteratorL lhs, IteratorR rhs) { // #2
{ lhs == rhs } -> convertible_to<bool>; // #3
}
constexpr bool compare(normal_iterator<IteratorL> lhs, normal_iterator<IteratorR> rhs) { // #4
return false;
}
class Object;
void function() {
normal_iterator<Object *> begin, end;
compare(begin, end); // expected-error {{no matching function for call to 'compare'}} #5
}
// expected-note@#1 {{in instantiation of variable template specialization 'is_convertible_v<bool, bool>' requested here}}
// expected-note@#1 {{substituting template arguments into constraint expression here}}
// expected-note@#3 {{checking the satisfaction of concept 'convertible_to<bool, bool>'}}
// expected-note@#2 {{substituting template arguments into constraint expression here}}
// expected-note@#5 {{checking constraint satisfaction for template 'compare<Object *, Object *>'}}
// expected-note@#5 {{while substituting deduced template arguments into function template 'compare' [with IteratorL = Object *, IteratorR = Object *]}}
// expected-note@#4 {{candidate template ignored: constraints not satisfied [with IteratorL = Object *, IteratorR = Object *]}}
// We don't know exactly the substituted type for `lhs == rhs`, thus a placeholder 'expr-type' is emitted.
// expected-note@#3 {{because 'convertible_to<expr-type, bool>' would be invalid}}
namespace GH131530 {
class foo {
struct bar {}; // expected-note {{implicitly declared private}}
};
template <typename T>
concept is_foo_concept = __is_same(foo::bar, T);
// expected-error@-1 {{'bar' is a private member of 'GH131530::foo'}}
}
namespace GH138820 {
int a;
template<typename T>
concept atomicish = requires() {
{ // expected-note {{to match this '{'}}
a
... // expected-error {{expected '}'}}
};
};
atomicish<int> f(); // expected-error {{expected 'auto' or 'decltype(auto)' after concept name}}
} // namespace GH138820
namespace GH138823 {
template <typename T> void foo();
template <class... Ts>
concept ConceptA = requires { foo<Ts>(); };
// expected-error@-1 {{expression contains unexpanded parameter pack 'Ts'}}
template <class>
concept ConceptB = ConceptA<int>;
template <ConceptB Foo> void bar(Foo);
void test() { bar(1); }
}