return container_of(ced, struct sh_mtu2_channel, ced);
}
-static void sh_mtu2_clock_event_mode(enum clock_event_mode mode,
- struct clock_event_device *ced)
+static int sh_mtu2_clock_event_shutdown(struct clock_event_device *ced)
{
struct sh_mtu2_channel *ch = ced_to_sh_mtu2(ced);
- int disabled = 0;
- /* deal with old setting first */
- switch (ced->mode) {
- case CLOCK_EVT_MODE_PERIODIC:
+ sh_mtu2_disable(ch);
+ return 0;
+}
+
+static int sh_mtu2_clock_event_set_periodic(struct clock_event_device *ced)
+{
+ struct sh_mtu2_channel *ch = ced_to_sh_mtu2(ced);
+
+ if (clockevent_state_periodic(ced))
sh_mtu2_disable(ch);
- disabled = 1;
- break;
- default:
- break;
- }
- switch (mode) {
- case CLOCK_EVT_MODE_PERIODIC:
- dev_info(&ch->mtu->pdev->dev,
- "ch%u: used for periodic clock events\n", ch->index);
- sh_mtu2_enable(ch);
- break;
- case CLOCK_EVT_MODE_UNUSED:
- if (!disabled)
- sh_mtu2_disable(ch);
- break;
- case CLOCK_EVT_MODE_SHUTDOWN:
- default:
- break;
- }
+ dev_info(&ch->mtu->pdev->dev, "ch%u: used for periodic clock events\n",
+ ch->index);
+ sh_mtu2_enable(ch);
+ return 0;
}
static void sh_mtu2_clock_event_suspend(struct clock_event_device *ced)
ced->features = CLOCK_EVT_FEAT_PERIODIC;
ced->rating = 200;
ced->cpumask = cpu_possible_mask;
- ced->set_mode = sh_mtu2_clock_event_mode;
+ ced->set_state_shutdown = sh_mtu2_clock_event_shutdown;
+ ced->set_state_periodic = sh_mtu2_clock_event_set_periodic;
ced->suspend = sh_mtu2_clock_event_suspend;
ced->resume = sh_mtu2_clock_event_resume;