PR c++/80831 - ICE with -fsyntax-only.

* decl2.c (c_parse_final_cleanups): Use cgraph_node::get_create.

From-SVN: r249330
This commit is contained in:
Jason Merrill 2017-06-16 22:33:51 -04:00 committed by Jason Merrill
parent 5e5932dca5
commit 4f3d690c9b
3 changed files with 53 additions and 5 deletions

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@ -1,5 +1,8 @@
2017-06-16 Jason Merrill <jason@redhat.com>
PR c++/80831 - ICE with -fsyntax-only.
* decl2.c (c_parse_final_cleanups): Use cgraph_node::get_create.
PR c++/80639 - ICE with invalid PMF initialization.
PR c++/80043 - ICE with -fpermissive
* typeck.c (convert_for_assignment): Recurse when instantiate_type

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@ -4661,6 +4661,8 @@ c_parse_final_cleanups (void)
if (!DECL_SAVED_TREE (decl))
continue;
cgraph_node *node = cgraph_node::get_create (decl);
/* We lie to the back end, pretending that some functions
are not defined when they really are. This keeps these
functions from being put out unnecessarily. But, we must
@ -4681,9 +4683,6 @@ c_parse_final_cleanups (void)
&& DECL_INITIAL (decl)
&& decl_needed_p (decl))
{
struct cgraph_node *node, *next;
node = cgraph_node::get (decl);
if (node->cpp_implicit_alias)
node = node->get_alias_target ();
@ -4693,7 +4692,8 @@ c_parse_final_cleanups (void)
group, we need to mark all symbols in the same comdat group
that way. */
if (node->same_comdat_group)
for (next = dyn_cast<cgraph_node *> (node->same_comdat_group);
for (cgraph_node *next
= dyn_cast<cgraph_node *> (node->same_comdat_group);
next != node;
next = dyn_cast<cgraph_node *> (next->same_comdat_group))
next->call_for_symbol_thunks_and_aliases (clear_decl_external,
@ -4707,7 +4707,7 @@ c_parse_final_cleanups (void)
if (!DECL_EXTERNAL (decl)
&& decl_needed_p (decl)
&& !TREE_ASM_WRITTEN (decl)
&& !cgraph_node::get (decl)->definition)
&& !node->definition)
{
/* We will output the function; no longer consider it in this
loop. */

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@ -0,0 +1,45 @@
// PR c++/80831
// { dg-options -fsyntax-only }
// { dg-do compile { target c++11 } }
class A
{
public:
virtual ~A() { }
};
class B { };
class C : public A { };
template<class J>
class D : public C
{
public:
D() { }
~D() { }
};
class E
{
public:
static E& p();
B q();
template<class J>
B q(void (J::*r)())
{
new D<J>();
return q();
}
};
void t()
{
class F
{
public:
virtual void s() { }
};
E& x = E::p();
B y = x.q(&F::s);
}