*/
#define __CSFLAG_delayed_runq_add 2
#define CSFLAG_delayed_runq_add (1<<__CSFLAG_delayed_runq_add)
+/* CSFLAG_runq_migrate_request: This vcpu is being migrated as a result of a
+ * credit2-initiated runq migrate request; migrate it to the runqueue indicated
+ * in the svc struct.
+ */
+#define __CSFLAG_runq_migrate_request 3
+#define CSFLAG_runq_migrate_request (1<<__CSFLAG_runq_migrate_request)
int opt_migrate_resist=500;
/* Individual contribution to load */
s_time_t load_last_update; /* Last time average was updated */
s_time_t avgload; /* Decaying queue load */
+
+ struct csched_runqueue_data *migrate_rqd; /* Pre-determined rqd to which to migrate */
};
/*
* it seems a bit pointless; especially as we have plenty of
* bits free.
*/
- if ( test_bit(__CSFLAG_delayed_runq_add, &svc->flags) )
+ if ( test_and_clear_bit(__CSFLAG_delayed_runq_add, &svc->flags)
+ && likely(vcpu_runnable(vc)) )
{
BUG_ON(__vcpu_on_runq(svc));
- clear_bit(__CSFLAG_delayed_runq_add, &svc->flags);
runq_insert(ops, vc->processor, svc);
runq_tickle(ops, vc->processor, svc, now);
if ( !spin_trylock(&prv->lock) )
{
+ if ( test_and_clear_bit(__CSFLAG_runq_migrate_request, &svc->flags) )
+ {
+ d2printk("d%dv%d -\n", svc->vcpu->domain->domain_id, svc->vcpu->vcpu_id);
+ clear_bit(__CSFLAG_runq_migrate_request, &svc->flags);
+ }
/* Leave it where it is for now. When we actually pay attention
* to affinity we'll have to figure something out... */
return vc->processor;
}
+ /* First check to see if we're here because someone else suggested a place
+ * for us to move. */
+ if ( test_and_clear_bit(__CSFLAG_runq_migrate_request, &svc->flags) )
+ {
+ if ( unlikely(svc->migrate_rqd->id < 0) )
+ {
+ printk("%s: Runqueue migrate aborted because target runqueue disappeared!\n",
+ __func__);
+ /* Fall-through to normal cpu pick */
+ }
+ else
+ {
+ d2printk("d%dv%d +\n", svc->vcpu->domain->domain_id, svc->vcpu->vcpu_id);
+ new_cpu = first_cpu(svc->migrate_rqd->active);
+ goto out_up;
+ }
+ }
+
/* FIXME: Pay attention to cpu affinity */
min_load = MAX_LOAD;
BUG_ON(cpus_empty(prv->rqd[min_rqi].active));
new_cpu = first_cpu(prv->rqd[min_rqi].active);
}
-
+
+out_up:
spin_unlock(&prv->lock);
return new_cpu;