friend function template, be sure to adjust the computed template argument lists based on the location of the definition of the function template: it's possible that the definition we're instantiating with and the template declaration that we found when creating the specialization are in different contexts, which meant that we would end up using the wrong template arguments for instantiation. Fixes PR7013; all Boost.DynamicBitset tests now pass. llvm-svn: 102974
210 lines
4.3 KiB
C++
210 lines
4.3 KiB
C++
// RUN: %clang_cc1 -fsyntax-only -verify %s
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// PR5057
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namespace test0 {
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namespace std {
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class X {
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public:
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template<typename T> friend struct Y;
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};
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}
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namespace std {
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template<typename T> struct Y {};
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}
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}
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namespace test1 {
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template<typename T> void f1(T) { } // expected-note{{here}}
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class X {
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template<typename T> friend void f0(T);
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template<typename T> friend void f1(T);
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};
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template<typename T> void f0(T) { }
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template<typename T> void f1(T) { } // expected-error{{redefinition}}
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}
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// PR4768
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namespace test2 {
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template<typename T> struct X0 {
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template<typename U> friend struct X0;
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};
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template<typename T> struct X0<T*> {
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template<typename U> friend struct X0;
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};
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template<> struct X0<int> {
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template<typename U> friend struct X0;
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};
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template<typename T> struct X1 {
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template<typename U> friend void f2(U);
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template<typename U> friend void f3(U);
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};
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template<typename U> void f2(U);
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X1<int> x1i;
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X0<int*> x0ip;
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template<> void f2(int);
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// FIXME: Should this declaration of f3 be required for the specialization of
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// f3<int> (further below) to work? GCC and EDG don't require it, we do...
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template<typename U> void f3(U);
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template<> void f3(int);
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}
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// PR5332
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namespace test3 {
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template <typename T> class Foo {
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template <typename U>
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friend class Foo;
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};
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Foo<int> foo;
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template<typename T, T Value> struct X2a;
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template<typename T, int Size> struct X2b;
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template<typename T>
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class X3 {
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template<typename U, U Value> friend struct X2a;
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// FIXME: the redeclaration note ends up here because redeclaration
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// lookup ends up finding the friend target from X3<int>.
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template<typename U, T Value> friend struct X2b; // expected-error {{template non-type parameter has a different type 'long' in template redeclaration}} \
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// expected-note {{previous non-type template parameter with type 'int' is here}}
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};
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X3<int> x3i; // okay
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X3<long> x3l; // expected-note {{in instantiation}}
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}
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// PR5716
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namespace test4 {
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template<typename> struct A {
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template<typename T> friend void f(const A<T>&);
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};
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template<typename T> void f(const A<T>&) {
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int a[sizeof(T) ? -1 : -1]; // expected-error {{array size is negative}}
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}
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void f() {
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f(A<int>()); // expected-note {{in instantiation of function template specialization}}
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}
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}
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namespace test5 {
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class outer {
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class foo;
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template <typename T> friend struct cache;
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};
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class outer::foo {
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template <typename T> friend struct cache;
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};
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}
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// PR6022
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namespace PR6022 {
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template <class T1, class T2 , class T3 > class A;
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namespace inner {
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template<class T1, class T2, class T3, class T>
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A<T1, T2, T3>& f0(A<T1, T2, T3>&, T);
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}
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template<class T1, class T2, class T3>
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class A {
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template<class U1, class U2, class U3, class T>
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friend A<U1, U2, U3>& inner::f0(A<U1, U2, U3>&, T);
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};
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}
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namespace FriendTemplateDefinition {
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template<unsigned > struct int_c { };
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template<typename T>
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struct X {
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template<unsigned N>
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friend void f(X, int_c<N>) {
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int value = N;
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};
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};
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void test_X(X<int> x, int_c<5> i5) {
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f(x, i5);
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}
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}
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namespace PR7013a {
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template<class > struct X0
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{
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typedef int type;
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};
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template<typename > struct X1
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{
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};
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template<typename , typename T> struct X2
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{
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typename T::type e;
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};
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namespace N
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{
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template <typename = int, typename = X1<int> > struct X3
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{
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template <typename T1, typename T2, typename B> friend void op(X2<T1, T2>& , B);
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};
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template <typename Ch, typename Tr, typename B> void op(X2<Ch, Tr>& , B)
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{
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X2<int, Tr> s;
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}
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}
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int n()
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{
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X2<int, X0<int> > ngs;
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N::X3<> b;
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op(ngs, b);
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return 0;
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}
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}
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namespace PR7013b {
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template<class > struct X0
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{
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typedef int type;
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};
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template<typename > struct X1
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{
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};
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template<typename , typename T> struct X2
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{
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typename T::type e;
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};
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namespace N
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{
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template <typename = X1<int> > struct X3
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{
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template <typename T1, typename T2, typename B> friend void op(X2<T1, T2>& , B);
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};
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template <typename Ch, typename Tr, typename B> void op(X2<Ch, Tr>& , B)
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{
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X2<int, Tr> s;
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}
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}
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int n()
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{
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X2<int, X0<int> > ngs;
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N::X3<> b;
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op(ngs, b);
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return 0;
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}
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}
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