re PR c++/26261 (Rejects template with const static data member used in return type)

PR c++/26261
	PR c++/43101
	* pt.c (tsubst_qualified_id): Do normal lookup in non-dependent scope.
	(maybe_update_decl_type): New fn.
	* parser.c (cp_parser_init_declarator): Use it.

From-SVN: r156865
This commit is contained in:
Jason Merrill 2010-02-18 11:27:18 -05:00 committed by Jason Merrill
parent 935c0a5d24
commit 04daa92ba7
6 changed files with 84 additions and 8 deletions

View file

@ -1,5 +1,11 @@
2010-02-18 Jason Merrill <jason@redhat.com>
PR c++/26261
PR c++/43101
* pt.c (tsubst_qualified_id): Do normal lookup in non-dependent scope.
(maybe_update_decl_type): New fn.
* parser.c (cp_parser_init_declarator): Use it.
PR c++/43109
* semantics.c (begin_class_definition): Don't crash on unnamed ns.

View file

@ -4896,6 +4896,7 @@ extern tree process_template_parm (tree, location_t, tree,
bool, bool);
extern tree end_template_parm_list (tree);
extern void end_template_decl (void);
extern tree maybe_update_decl_type (tree, tree);
extern bool check_default_tmpl_args (tree, tree, int, int, int);
extern tree push_template_decl (tree);
extern tree push_template_decl_real (tree, bool);

View file

@ -13477,6 +13477,11 @@ cp_parser_init_declarator (cp_parser* parser,
we compute it now. */
scope = get_scope_of_declarator (declarator);
/* Perform any lookups in the declared type which were thought to be
dependent, but are not in the scope of the declarator. */
decl_specifiers->type
= maybe_update_decl_type (decl_specifiers->type, scope);
/* If we're allowing GNU extensions, look for an asm-specification
and attributes. */
if (cp_parser_allow_gnu_extensions_p (parser))

View file

@ -3672,6 +3672,55 @@ current_template_args (void)
return args;
}
/* Update the declared TYPE by doing any lookups which were thought to be
dependent, but are not now that we know the SCOPE of the declarator. */
tree
maybe_update_decl_type (tree orig_type, tree scope)
{
tree type = orig_type;
if (type == NULL_TREE)
return type;
if (TREE_CODE (orig_type) == TYPE_DECL)
type = TREE_TYPE (type);
if (scope && TYPE_P (scope) && dependent_type_p (scope)
&& dependent_type_p (type)
/* Don't bother building up the args in this case. */
&& TREE_CODE (type) != TEMPLATE_TYPE_PARM)
{
/* tsubst in the args corresponding to the template parameters,
including auto if present. Most things will be unchanged, but
make_typename_type and tsubst_qualified_id will resolve
TYPENAME_TYPEs and SCOPE_REFs that were previously dependent. */
tree args = current_template_args ();
tree auto_node = type_uses_auto (type);
if (auto_node)
{
tree auto_vec = make_tree_vec (1);
TREE_VEC_ELT (auto_vec, 0) = auto_node;
args = add_to_template_args (args, auto_vec);
}
push_scope (scope);
type = tsubst (type, args, tf_warning_or_error, NULL_TREE);
pop_scope (scope);
}
if (type == error_mark_node)
return orig_type;
if (TREE_CODE (orig_type) == TYPE_DECL)
{
if (same_type_p (type, TREE_TYPE (orig_type)))
type = orig_type;
else
type = TYPE_NAME (type);
}
return type;
}
/* Return a TEMPLATE_DECL corresponding to DECL, using the indicated
template PARMS. If MEMBER_TEMPLATE_P is true, the new template is
a member template. Used by push_template_decl below. */
@ -10609,14 +10658,9 @@ tsubst_qualified_id (tree qualified_id, tree args,
else
expr = name;
if (dependent_type_p (scope))
{
tree type = NULL_TREE;
if (DECL_P (expr) && !dependent_scope_p (scope))
type = TREE_TYPE (expr);
return build_qualified_name (type, scope, expr,
QUALIFIED_NAME_IS_TEMPLATE (qualified_id));
}
if (dependent_scope_p (scope))
return build_qualified_name (NULL_TREE, scope, expr,
QUALIFIED_NAME_IS_TEMPLATE (qualified_id));
if (!BASELINK_P (name) && !DECL_P (expr))
{

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@ -1,5 +1,8 @@
2010-02-18 Jason Merrill <jason@redhat.com>
PR c++/26261
* g++.dg/template/dependent-name6.C: New.
PR c++/43109
* g++.dg/parse/namespace12.C: New.

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@ -0,0 +1,17 @@
// PR c++/26261
// { dg-final { scan-assembler "_ZN1YIiE1fIiEE1XILi1EEv" } }
template <int dim> class X {};
template <class T> struct Y {
static const unsigned int dim = 1;
template <class U> X<Y<T>::dim> f();
};
template <class T> template <class U>
X<Y<T>::dim> Y<T>::f() { return X<dim>(); }
int main()
{
Y<int>().f<int>();
}