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authorEzequiel Garcia <ezequiel.garcia@free-electrons.com>2013-08-13 11:43:11 -0300
committerDaniel Lezcano <daniel.lezcano@linaro.org>2013-09-02 21:43:58 +0200
commit3579698e85ef9984e698ac3d8e2257a1adeeb722 (patch)
tree443343811c194656a847c82fbaf1d57c7a1c41da
parentad48bd618f3761922c53f08e05fe00f3c85ca275 (diff)
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clocksource: armada-370-xp: Simplify TIMER_CTRL register access
This commit creates two functions to access the TIMER_CTRL register: one for global one for the per-cpu. This makes the code much more readable. In addition, since the TIMER_CTRL register is also used for watchdog, this is preparation work for future thread-safe improvements. Acked-by: Gregory CLEMENT <gregory.clement@free-electrons.com> Reviewed-by: Andrew Lunn <andrew@lunn.ch> Signed-off-by: Ezequiel Garcia <ezequiel.garcia@free-electrons.com> Signed-off-by: Daniel Lezcano <daniel.lezcano@linaro.org>
-rw-r--r--drivers/clocksource/time-armada-370-xp.c69
1 files changed, 30 insertions, 39 deletions
diff --git a/drivers/clocksource/time-armada-370-xp.c b/drivers/clocksource/time-armada-370-xp.c
index a3d273943bce..abc2c9f04821 100644
--- a/drivers/clocksource/time-armada-370-xp.c
+++ b/drivers/clocksource/time-armada-370-xp.c
@@ -71,6 +71,18 @@ static u32 ticks_per_jiffy;
static struct clock_event_device __percpu **percpu_armada_370_xp_evt;
+static void timer_ctrl_clrset(u32 clr, u32 set)
+{
+ writel((readl(timer_base + TIMER_CTRL_OFF) & ~clr) | set,
+ timer_base + TIMER_CTRL_OFF);
+}
+
+static void local_timer_ctrl_clrset(u32 clr, u32 set)
+{
+ writel((readl(local_base + TIMER_CTRL_OFF) & ~clr) | set,
+ local_base + TIMER_CTRL_OFF);
+}
+
static u32 notrace armada_370_xp_read_sched_clock(void)
{
return ~readl(timer_base + TIMER0_VAL_OFF);
@@ -83,7 +95,6 @@ static int
armada_370_xp_clkevt_next_event(unsigned long delta,
struct clock_event_device *dev)
{
- u32 u;
/*
* Clear clockevent timer interrupt.
*/
@@ -97,11 +108,8 @@ armada_370_xp_clkevt_next_event(unsigned long delta,
/*
* Enable the timer.
*/
- u = readl(local_base + TIMER_CTRL_OFF);
- u = ((u & ~TIMER0_RELOAD_EN) | TIMER0_EN |
- TIMER0_DIV(TIMER_DIVIDER_SHIFT));
- writel(u, local_base + TIMER_CTRL_OFF);
-
+ local_timer_ctrl_clrset(TIMER0_RELOAD_EN,
+ TIMER0_EN | TIMER0_DIV(TIMER_DIVIDER_SHIFT));
return 0;
}
@@ -109,8 +117,6 @@ static void
armada_370_xp_clkevt_mode(enum clock_event_mode mode,
struct clock_event_device *dev)
{
- u32 u;
-
if (mode == CLOCK_EVT_MODE_PERIODIC) {
/*
@@ -122,18 +128,14 @@ armada_370_xp_clkevt_mode(enum clock_event_mode mode,
/*
* Enable timer.
*/
-
- u = readl(local_base + TIMER_CTRL_OFF);
-
- writel((u | TIMER0_EN | TIMER0_RELOAD_EN |
- TIMER0_DIV(TIMER_DIVIDER_SHIFT)),
- local_base + TIMER_CTRL_OFF);
+ local_timer_ctrl_clrset(0, TIMER0_RELOAD_EN |
+ TIMER0_EN |
+ TIMER0_DIV(TIMER_DIVIDER_SHIFT));
} else {
/*
* Disable timer.
*/
- u = readl(local_base + TIMER_CTRL_OFF);
- writel(u & ~TIMER0_EN, local_base + TIMER_CTRL_OFF);
+ local_timer_ctrl_clrset(TIMER0_EN, 0);
/*
* ACK pending timer interrupt.
@@ -169,18 +171,18 @@ static irqreturn_t armada_370_xp_timer_interrupt(int irq, void *dev_id)
*/
static int armada_370_xp_timer_setup(struct clock_event_device *evt)
{
- u32 u;
+ u32 clr = 0, set = 0;
int cpu = smp_processor_id();
/* Use existing clock_event for cpu 0 */
if (!smp_processor_id())
return 0;
- u = readl(local_base + TIMER_CTRL_OFF);
if (timer25Mhz)
- writel(u | TIMER0_25MHZ, local_base + TIMER_CTRL_OFF);
+ set = TIMER0_25MHZ;
else
- writel(u & ~TIMER0_25MHZ, local_base + TIMER_CTRL_OFF);
+ clr = TIMER0_25MHZ;
+ local_timer_ctrl_clrset(clr, set);
evt->name = armada_370_xp_clkevt.name;
evt->irq = armada_370_xp_clkevt.irq;
@@ -212,7 +214,7 @@ static struct local_timer_ops armada_370_xp_local_timer_ops = {
void __init armada_370_xp_timer_init(void)
{
- u32 u;
+ u32 clr = 0, set = 0;
struct device_node *np;
int res;
@@ -223,29 +225,20 @@ void __init armada_370_xp_timer_init(void)
if (of_find_property(np, "marvell,timer-25Mhz", NULL)) {
/* The fixed 25MHz timer is available so let's use it */
- u = readl(local_base + TIMER_CTRL_OFF);
- writel(u | TIMER0_25MHZ,
- local_base + TIMER_CTRL_OFF);
- u = readl(timer_base + TIMER_CTRL_OFF);
- writel(u | TIMER0_25MHZ,
- timer_base + TIMER_CTRL_OFF);
+ set = TIMER0_25MHZ;
timer_clk = 25000000;
} else {
unsigned long rate = 0;
struct clk *clk = of_clk_get(np, 0);
WARN_ON(IS_ERR(clk));
rate = clk_get_rate(clk);
- u = readl(local_base + TIMER_CTRL_OFF);
- writel(u & ~(TIMER0_25MHZ),
- local_base + TIMER_CTRL_OFF);
-
- u = readl(timer_base + TIMER_CTRL_OFF);
- writel(u & ~(TIMER0_25MHZ),
- timer_base + TIMER_CTRL_OFF);
-
timer_clk = rate / TIMER_DIVIDER;
+
+ clr = TIMER0_25MHZ;
timer25Mhz = false;
}
+ timer_ctrl_clrset(clr, set);
+ local_timer_ctrl_clrset(clr, set);
/*
* We use timer 0 as clocksource, and private(local) timer 0
@@ -267,10 +260,8 @@ void __init armada_370_xp_timer_init(void)
writel(0xffffffff, timer_base + TIMER0_VAL_OFF);
writel(0xffffffff, timer_base + TIMER0_RELOAD_OFF);
- u = readl(timer_base + TIMER_CTRL_OFF);
-
- writel((u | TIMER0_EN | TIMER0_RELOAD_EN |
- TIMER0_DIV(TIMER_DIVIDER_SHIFT)), timer_base + TIMER_CTRL_OFF);
+ timer_ctrl_clrset(0, TIMER0_EN | TIMER0_RELOAD_EN |
+ TIMER0_DIV(TIMER_DIVIDER_SHIFT));
clocksource_mmio_init(timer_base + TIMER0_VAL_OFF,
"armada_370_xp_clocksource",