// RUN: %clang_cc1 -std=c++11 -verify -fsyntax-only -emit-llvm-only %s // RUN: %clang_cc1 -std=c++11 -verify -fsyntax-only -fdelayed-template-parsing %s // RUN: %clang_cc1 -std=c++11 -verify -fsyntax-only -fms-extensions %s // RUN: %clang_cc1 -std=c++11 -verify -fsyntax-only -fdelayed-template-parsing -fms-extensions %s template struct is_same { enum { value = false }; }; template struct is_same { enum { value = true }; }; namespace test_sfinae_and_delete { namespace ns1 { template double f(T) = delete; //expected-note{{candidate}} char f(...); //expected-note{{candidate}} static_assert(is_same::value, ""); //expected-error{{call to deleted function}} expected-error{{static_assert failed}} template decltype(f(T{})) g(T); // this one sfinae's out. template int *g(T); void foo() { int *ip = g(3); } } //end ns1 namespace ns2 { template double* f(T); template<> double* f(double) = delete; template decltype(f(T{})) g(T); // expected-note{{candidate}} template int *g(T); //expected-note{{candidate}} void foo() { double *dp = g(3); //expected-error{{ambiguous}} int *ip = g(3.14); // this is OK - because the explicit specialization is deleted and sfinae's out one of the template candidates } } // end ns2 namespace ns3 { template double* f(T) = delete; template<> double* f(double); template decltype(f(T{})) g(T); // expected-note{{candidate}} template int *g(T); //expected-note{{candidate}} void foo() { int *dp = g(3); // this is OK - because the non-double specializations are deleted and sfinae's out one of the template candidates double *ip = g(3.14); //expected-error{{ambiguous}} } } // end ns3 } // end ns test_sfinae_and_delete namespace test_explicit_specialization_of_member { namespace ns1 { template struct X { int* f(T) = delete; }; template<> int* X::f(int) { } template decltype(X{}.f(T{})) g(T); // expected-note{{candidate}} template int *g(T); //expected-note{{candidate}} void foo() { int *ip2 = g(3.14); // this is OK - because the non-int specializations are deleted and sfinae's out one of the template candidates int *ip = g(3); //expected-error{{ambiguous}} } } // end ns1 namespace ns2 { struct X { template double* f(T) = delete; }; template<> double* X::f(int); template decltype(X{}.f(T{})) g(T); // expected-note{{candidate}} template int *g(T); //expected-note{{candidate}} void foo() { int *ip2 = g(3.14); // this is OK - because the non-int specializations are deleted and sfinae's out one of the template candidates int *ip = g(3); //expected-error{{ambiguous}} } } // end ns2 namespace ns3 { template struct X { template double *f1(U, T) = delete; template double *f2(U, T) = delete; }; template<> template<> double* X::f1(int, int); template<> template double* X::f2(U, int); template decltype(X{}.f1(U{}, T{})) g1(U, T); // expected-note{{candidate}} template int *g1(U, T); //expected-note{{candidate}} template decltype(X{}.f2(U{}, T{})) g2(U, T); // expected-note2{{candidate}} template int *g2(U, T); //expected-note2{{candidate}} void foo() { int *ip2 = g1(3.14, 3); // this is OK - because the non-int specializations are deleted and sfinae's out one of the template candidates int *ip = g1(3, 3); //expected-error{{ambiguous}} { int *ip3 = g2(3.14, 3); //expected-error{{ambiguous}} int *ip4 = g2(3, 3); //expected-error{{ambiguous}} } { int *ip3 = g2(3.14, 3.14); int *ip4 = g2(3, 3.14); } } } // end ns3 namespace ns4 { template < typename T> T* foo (T); template <> int* foo(int) = delete; template <> int* foo(int); //expected-note{{candidate}} int *IP = foo(2); //expected-error{{deleted}} double *DP = foo(3.14); } //end ns4 namespace ns5 { template < typename T> T* foo (T); template <> int* foo(int); //expected-note{{previous}} template <> int* foo(int) = delete; //expected-error{{deleted definition must be first declaration}} } //end ns5 } // end test_explicit_specializations_and_delete