144 lines
3.5 KiB
C++
144 lines
3.5 KiB
C++
// RUN: %clang_cc1 -fsyntax-only -verify %s
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namespace PR8965 {
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template<typename T>
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struct X {
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typedef int type;
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T field; // expected-note{{in instantiation of member class}}
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};
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template<typename T>
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struct Y {
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struct Inner;
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typedef typename X<Inner>::type // expected-note{{in instantiation of template class}}
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type; // expected-note{{not-yet-instantiated member is declared here}}
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struct Inner {
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typedef type field; // expected-error{{no member 'type' in 'PR8965::Y<int>'; it has not yet been instantiated}}
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};
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};
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Y<int> y; // expected-note{{in instantiation of template class}}
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}
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template<typename T>
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class X {
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public:
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struct C { T &foo(); };
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struct D {
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struct E { T &bar(); }; // expected-error{{cannot form a reference to 'void'}}
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struct F; // expected-note{{member is declared here}}
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};
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};
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X<int>::C *c1;
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X<float>::C *c2;
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X<int>::X *xi; // expected-error{{qualified reference to 'X' is a constructor name rather than a type wherever a constructor can be declared}}
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X<float>::X *xf; // expected-error{{qualified reference to 'X' is a constructor name rather than a type wherever a constructor can be declared}}
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void test_naming() {
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c1 = c2; // expected-error{{assigning to 'X<int>::C *' from incompatible type 'X<float>::C *'}}
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xi = xf; // expected-error{{assigning to 'X<int>::X<int> *' from incompatible type 'X<float>::X<float> *'}}
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// FIXME: error above doesn't print the type X<int>::X cleanly!
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}
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void test_instantiation(X<double>::C *x,
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X<float>::D::E *e,
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X<float>::D::F *f) {
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double &dr = x->foo();
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float &fr = e->bar();
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f->foo(); // expected-error{{implicit instantiation of undefined member 'X<float>::D::F'}}
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}
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X<void>::C *c3; // okay
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X<void>::D::E *e1; // okay
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X<void>::D::E e2; // expected-note{{in instantiation of member class 'X<void>::D::E' requested here}}
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// Redeclarations.
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namespace test1 {
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template <typename T> struct Registry {
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struct node;
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static node *Head;
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struct node {
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node(int v) { Head = this; }
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};
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};
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void test() {
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Registry<int>::node node(0);
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}
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}
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// Redeclarations during explicit instantiations.
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namespace test2 {
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template <typename T> class A {
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class Foo;
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class Foo {
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int foo();
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};
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};
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template class A<int>;
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template <typename T> class B {
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class Foo;
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class Foo {
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public:
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typedef int X;
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};
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typename Foo::X x;
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class Foo;
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};
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template class B<int>;
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template <typename T> class C {
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class Foo;
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class Foo;
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};
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template <typename T> class C<T>::Foo {
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int x;
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};
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template class C<int>;
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}
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namespace AliasTagDef {
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template<typename T>
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struct F {
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using S = struct U { // expected-warning {{C++11}}
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T g() {
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return T();
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}
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};
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};
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int m = F<int>::S().g();
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int n = F<int>::U().g();
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}
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namespace rdar10397846 {
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template<int I> struct A
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{
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struct B
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{
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struct C { C() { int *ptr = I; } }; // expected-error{{cannot initialize a variable of type 'int *' with an rvalue of type 'int'}} \
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expected-warning{{expression which evaluates to zero treated as a null pointer constant of type 'int *'}}
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};
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};
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template<int N> void foo()
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{
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class A<N>::B::C X; // expected-note 2 {{in instantiation of member function}}
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int A<N+1>::B::C::*member = 0;
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}
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void bar()
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{
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foo<0>(); // expected-note{{in instantiation of function template}}
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foo<1>(); // expected-note{{in instantiation of function template}}
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}
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}
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