* bL switcher core code.
*/
-static void bL_do_switch(void *_unused)
+static void bL_do_switch(void *_arg)
{
unsigned ib_mpidr, ib_cpu, ib_cluster;
+ long volatile handshake, **handshake_ptr = _arg;
pr_debug("%s\n", __func__);
ib_cpu = MPIDR_AFFINITY_LEVEL(ib_mpidr, 0);
ib_cluster = MPIDR_AFFINITY_LEVEL(ib_mpidr, 1);
+ /* Advertise our handshake location */
+ if (handshake_ptr) {
+ handshake = 0;
+ *handshake_ptr = &handshake;
+ } else
+ handshake = -1;
+
/*
* Our state has been saved at this point. Let's release our
* inbound CPU.
* we have none.
*/
+ /*
+ * Let's wait until our inbound is alive.
+ */
+ while (!handshake) {
+ wfe();
+ smp_mb();
+ }
+
/* Let's put ourself down. */
mcpm_cpu_power_down();
unsigned int ob_mpidr, ob_cpu, ob_cluster, ib_mpidr, ib_cpu, ib_cluster;
struct tick_device *tdev;
enum clock_event_mode tdev_mode;
+ long volatile *handshake_ptr;
int ret;
this_cpu = smp_processor_id();
cpu_logical_map(that_cpu) = ob_mpidr;
/* Let's do the actual CPU switch. */
- ret = cpu_suspend(0, bL_switchpoint);
+ ret = cpu_suspend((unsigned long)&handshake_ptr, bL_switchpoint);
if (ret > 0)
panic("%s: cpu_suspend() returned %d\n", __func__, ret);
local_fiq_enable();
local_irq_enable();
+ *handshake_ptr = 1;
+ dsb_sev();
+
if (ret)
pr_err("%s exiting with error %d\n", __func__, ret);
return ret;