clockevents/drivers/timer-sp804: Migrate to new 'set-state' interface
Migrate timer-sp driver to the new 'set-state' interface provided by clockevents core, the earlier 'set-mode' interface is marked obsolete now. This also enables us to implement callbacks for new states of clockevent devices, for example: ONESHOT_STOPPED. There are few more changes worth noticing: - The clockevent device was disabled by writing: 'TIMER_CTRL_32BIT | TIMER_CTRL_IE' to ctrl register earlier. i.e. by un-setting the TIMER_CTRL_ENABLE bit. Its done by writing zero now and should have the same effect. - For shutdown and resume we were writing the same value twice to the register (to disable the timer), which is fixed now. - Switching to oneshot mode was divided into two parts earlier: - Firstly set_mode() was writing: 'TIMER_CTRL_32BIT | TIMER_CTRL_IE | TIMER_CTRL_ONESHOT' to ctrl register (device not enabled yet) - Then sp804_set_next_event() was enabling the device by writing 'readl(ctrl) | TIMER_CTRL_ENABLE' to the ctrl register. This was unnecessarily complicated. - Change this to: Stop device on set_state_oneshot and configure it in sp804_set_next_event(). Cc: Daniel Lezcano <daniel.lezcano@linaro.org> Cc: Russell King <rmk+kernel@arm.linux.org.uk> Cc: Sudeep Holla <sudeep.holla@arm.com> Cc: Arnd Bergmann <arnd@arndb.de> Cc: Catalin Marinas <catalin.marinas@arm.com> Cc: Olof Johansson <olof@lixom.net> Signed-off-by: Viresh Kumar <viresh.kumar@linaro.org> Signed-off-by: Daniel Lezcano <daniel.lezcano@linaro.org>
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26b91f043a
Коммит
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@ -133,50 +133,50 @@ static irqreturn_t sp804_timer_interrupt(int irq, void *dev_id)
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return IRQ_HANDLED;
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return IRQ_HANDLED;
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}
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}
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static void sp804_set_mode(enum clock_event_mode mode,
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static inline void timer_shutdown(struct clock_event_device *evt)
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struct clock_event_device *evt)
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{
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{
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unsigned long ctrl = TIMER_CTRL_32BIT | TIMER_CTRL_IE;
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writel(0, clkevt_base + TIMER_CTRL);
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}
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writel(ctrl, clkevt_base + TIMER_CTRL);
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switch (mode) {
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case CLOCK_EVT_MODE_PERIODIC:
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writel(clkevt_reload, clkevt_base + TIMER_LOAD);
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ctrl |= TIMER_CTRL_PERIODIC | TIMER_CTRL_ENABLE;
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break;
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case CLOCK_EVT_MODE_ONESHOT:
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/* period set, and timer enabled in 'next_event' hook */
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ctrl |= TIMER_CTRL_ONESHOT;
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break;
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case CLOCK_EVT_MODE_UNUSED:
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case CLOCK_EVT_MODE_SHUTDOWN:
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default:
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break;
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}
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static int sp804_shutdown(struct clock_event_device *evt)
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{
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timer_shutdown(evt);
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return 0;
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}
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static int sp804_set_periodic(struct clock_event_device *evt)
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{
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unsigned long ctrl = TIMER_CTRL_32BIT | TIMER_CTRL_IE |
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TIMER_CTRL_PERIODIC | TIMER_CTRL_ENABLE;
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timer_shutdown(evt);
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writel(clkevt_reload, clkevt_base + TIMER_LOAD);
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writel(ctrl, clkevt_base + TIMER_CTRL);
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writel(ctrl, clkevt_base + TIMER_CTRL);
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return 0;
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}
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}
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static int sp804_set_next_event(unsigned long next,
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static int sp804_set_next_event(unsigned long next,
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struct clock_event_device *evt)
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struct clock_event_device *evt)
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{
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{
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unsigned long ctrl = readl(clkevt_base + TIMER_CTRL);
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unsigned long ctrl = TIMER_CTRL_32BIT | TIMER_CTRL_IE |
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TIMER_CTRL_ONESHOT | TIMER_CTRL_ENABLE;
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writel(next, clkevt_base + TIMER_LOAD);
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writel(next, clkevt_base + TIMER_LOAD);
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writel(ctrl | TIMER_CTRL_ENABLE, clkevt_base + TIMER_CTRL);
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writel(ctrl, clkevt_base + TIMER_CTRL);
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return 0;
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return 0;
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}
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}
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static struct clock_event_device sp804_clockevent = {
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static struct clock_event_device sp804_clockevent = {
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.features = CLOCK_EVT_FEAT_PERIODIC | CLOCK_EVT_FEAT_ONESHOT |
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.features = CLOCK_EVT_FEAT_PERIODIC |
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CLOCK_EVT_FEAT_DYNIRQ,
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CLOCK_EVT_FEAT_ONESHOT |
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.set_mode = sp804_set_mode,
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CLOCK_EVT_FEAT_DYNIRQ,
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.set_next_event = sp804_set_next_event,
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.set_state_shutdown = sp804_shutdown,
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.rating = 300,
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.set_state_periodic = sp804_set_periodic,
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.set_state_oneshot = sp804_shutdown,
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.tick_resume = sp804_shutdown,
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.set_next_event = sp804_set_next_event,
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.rating = 300,
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};
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};
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static struct irqaction sp804_timer_irq = {
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static struct irqaction sp804_timer_irq = {
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