/* Internal data structures and random procedures: */
static LIST_HEAD(gc_candidates);
-static DECLARE_WAIT_QUEUE_HEAD(unix_gc_wait);
static void scan_inflight(struct sock *x, void (*func)(struct unix_sock *),
struct sk_buff_head *hitlist)
}
static bool gc_in_progress;
-#define UNIX_INFLIGHT_TRIGGER_GC 16000
-
-void wait_for_unix_gc(void)
-{
- /* If number of inflight sockets is insane,
- * force a garbage collect right now.
- * Paired with the WRITE_ONCE() in unix_inflight(),
- * unix_notinflight() and gc_in_progress().
- */
- if (READ_ONCE(unix_tot_inflight) > UNIX_INFLIGHT_TRIGGER_GC &&
- !READ_ONCE(gc_in_progress))
- unix_gc();
- wait_event(unix_gc_wait, !READ_ONCE(gc_in_progress));
-}
-/* The external entry point: unix_gc() */
-void unix_gc(void)
+static void __unix_gc(struct work_struct *work)
{
struct sk_buff *next_skb, *skb;
struct unix_sock *u;
spin_lock(&unix_gc_lock);
- /* Avoid a recursive GC. */
- if (gc_in_progress)
- goto out;
-
- /* Paired with READ_ONCE() in wait_for_unix_gc(). */
- WRITE_ONCE(gc_in_progress, true);
-
/* First, select candidates for garbage collection. Only
* in-flight sockets are considered, and from those only ones
* which don't have any external reference.
/* Paired with READ_ONCE() in wait_for_unix_gc(). */
WRITE_ONCE(gc_in_progress, false);
- wake_up(&unix_gc_wait);
-
- out:
spin_unlock(&unix_gc_lock);
}
+
+static DECLARE_WORK(unix_gc_work, __unix_gc);
+
+void unix_gc(void)
+{
+ WRITE_ONCE(gc_in_progress, true);
+ queue_work(system_unbound_wq, &unix_gc_work);
+}
+
+#define UNIX_INFLIGHT_TRIGGER_GC 16000
+
+void wait_for_unix_gc(void)
+{
+ /* If number of inflight sockets is insane,
+ * force a garbage collect right now.
+ *
+ * Paired with the WRITE_ONCE() in unix_inflight(),
+ * unix_notinflight(), and __unix_gc().
+ */
+ if (READ_ONCE(unix_tot_inflight) > UNIX_INFLIGHT_TRIGGER_GC &&
+ !READ_ONCE(gc_in_progress))
+ unix_gc();
+
+ if (READ_ONCE(gc_in_progress))
+ flush_work(&unix_gc_work);
+}