提交 3d05a3e8 编写于 作者: T Tony Lindgren

omap2+: Use dmtimer macros for clocksource

Use dmtimer macros for clocksource. As with the clockevent,
this allows us to initialize the rest of dmtimer code later on.

Note that eventually we will be initializing the timesource
from init_early so sched_clock will work properly for
CONFIG_PRINTK_TIME.
Signed-off-by: NTony Lindgren <tony@atomide.com>
Reviewed-by: NKevin Hilman <khilman@ti.com>
上级 11a0186f
...@@ -262,20 +262,22 @@ static void __init omap2_gp_clockevent_init(int gptimer_id, ...@@ -262,20 +262,22 @@ static void __init omap2_gp_clockevent_init(int gptimer_id,
* sync counter. See clocksource setup in plat-omap/counter_32k.c * sync counter. See clocksource setup in plat-omap/counter_32k.c
*/ */
static void __init omap2_gp_clocksource_init(void) static void __init omap2_gp_clocksource_init(int unused, const char *dummy)
{ {
omap_init_clocksource_32k(); omap_init_clocksource_32k();
} }
#else #else
static struct omap_dm_timer clksrc;
/* /*
* clocksource * clocksource
*/ */
static DEFINE_CLOCK_DATA(cd); static DEFINE_CLOCK_DATA(cd);
static struct omap_dm_timer *gpt_clocksource;
static cycle_t clocksource_read_cycles(struct clocksource *cs) static cycle_t clocksource_read_cycles(struct clocksource *cs)
{ {
return (cycle_t)omap_dm_timer_read_counter(gpt_clocksource); return (cycle_t)__omap_dm_timer_read_counter(clksrc.io_base, 1);
} }
static struct clocksource clocksource_gpt = { static struct clocksource clocksource_gpt = {
...@@ -290,43 +292,48 @@ static void notrace dmtimer_update_sched_clock(void) ...@@ -290,43 +292,48 @@ static void notrace dmtimer_update_sched_clock(void)
{ {
u32 cyc; u32 cyc;
cyc = omap_dm_timer_read_counter(gpt_clocksource); cyc = __omap_dm_timer_read_counter(clksrc.io_base, 1);
update_sched_clock(&cd, cyc, (u32)~0); update_sched_clock(&cd, cyc, (u32)~0);
} }
/* Setup free-running counter for clocksource */ unsigned long long notrace sched_clock(void)
static void __init omap2_gp_clocksource_init(void)
{ {
static struct omap_dm_timer *gpt; u32 cyc = 0;
u32 tick_rate;
static char err1[] __initdata = KERN_ERR
"%s: failed to request dm-timer\n";
static char err2[] __initdata = KERN_ERR
"%s: can't register clocksource!\n";
gpt = omap_dm_timer_request(); if (clksrc.reserved)
if (!gpt) cyc = __omap_dm_timer_read_counter(clksrc.io_base, 1);
printk(err1, clocksource_gpt.name);
gpt_clocksource = gpt;
omap_dm_timer_set_source(gpt, OMAP_TIMER_SRC_SYS_CLK); return cyc_to_sched_clock(&cd, cyc, (u32)~0);
tick_rate = clk_get_rate(omap_dm_timer_get_fclk(gpt)); }
/* Setup free-running counter for clocksource */
static void __init omap2_gp_clocksource_init(int gptimer_id,
const char *fck_source)
{
int res;
res = omap_dm_timer_init_one(&clksrc, gptimer_id, fck_source);
BUG_ON(res);
omap_dm_timer_set_load_start(gpt, 1, 0); pr_info("OMAP clocksource: GPTIMER%d at %lu Hz\n",
gptimer_id, clksrc.rate);
init_sched_clock(&cd, dmtimer_update_sched_clock, 32, tick_rate); __omap_dm_timer_load_start(clksrc.io_base, OMAP_TIMER_CTRL_ST, 0, 1);
init_sched_clock(&cd, dmtimer_update_sched_clock, 32, clksrc.rate);
if (clocksource_register_hz(&clocksource_gpt, tick_rate)) if (clocksource_register_hz(&clocksource_gpt, clksrc.rate))
printk(err2, clocksource_gpt.name); pr_err("Could not register clocksource %s\n",
clocksource_gpt.name);
} }
#endif #endif
#define OMAP_SYS_TIMER_INIT(name, clkev_nr, clkev_src) \ #define OMAP_SYS_TIMER_INIT(name, clkev_nr, clkev_src, \
clksrc_nr, clksrc_src) \
static void __init omap##name##_timer_init(void) \ static void __init omap##name##_timer_init(void) \
{ \ { \
omap2_gp_clockevent_init((clkev_nr), clkev_src); \ omap2_gp_clockevent_init((clkev_nr), clkev_src); \
omap2_gp_clocksource_init(); \ omap2_gp_clocksource_init((clksrc_nr), clksrc_src); \
} }
#define OMAP_SYS_TIMER(name) \ #define OMAP_SYS_TIMER(name) \
...@@ -335,14 +342,15 @@ struct sys_timer omap##name##_timer = { \ ...@@ -335,14 +342,15 @@ struct sys_timer omap##name##_timer = { \
}; };
#ifdef CONFIG_ARCH_OMAP2 #ifdef CONFIG_ARCH_OMAP2
OMAP_SYS_TIMER_INIT(2, 1, OMAP2_CLKEV_SOURCE) OMAP_SYS_TIMER_INIT(2, 1, OMAP2_CLKEV_SOURCE, 2, OMAP2_MPU_SOURCE)
OMAP_SYS_TIMER(2) OMAP_SYS_TIMER(2)
#endif #endif
#ifdef CONFIG_ARCH_OMAP3 #ifdef CONFIG_ARCH_OMAP3
OMAP_SYS_TIMER_INIT(3, 1, OMAP3_CLKEV_SOURCE) OMAP_SYS_TIMER_INIT(3, 1, OMAP3_CLKEV_SOURCE, 2, OMAP3_MPU_SOURCE)
OMAP_SYS_TIMER(3) OMAP_SYS_TIMER(3)
OMAP_SYS_TIMER_INIT(3_secure, OMAP3_SECURE_TIMER, OMAP3_CLKEV_SOURCE) OMAP_SYS_TIMER_INIT(3_secure, OMAP3_SECURE_TIMER, OMAP3_CLKEV_SOURCE,
2, OMAP3_MPU_SOURCE)
OMAP_SYS_TIMER(3_secure) OMAP_SYS_TIMER(3_secure)
#endif #endif
...@@ -354,7 +362,7 @@ static void __init omap4_timer_init(void) ...@@ -354,7 +362,7 @@ static void __init omap4_timer_init(void)
BUG_ON(!twd_base); BUG_ON(!twd_base);
#endif #endif
omap2_gp_clockevent_init(1, OMAP4_CLKEV_SOURCE); omap2_gp_clockevent_init(1, OMAP4_CLKEV_SOURCE);
omap2_gp_clocksource_init(); omap2_gp_clocksource_init(2, OMAP4_MPU_SOURCE);
} }
OMAP_SYS_TIMER(4) OMAP_SYS_TIMER(4)
#endif #endif
...@@ -126,7 +126,7 @@ static inline unsigned long long notrace _omap_32k_sched_clock(void) ...@@ -126,7 +126,7 @@ static inline unsigned long long notrace _omap_32k_sched_clock(void)
return cyc_to_fixed_sched_clock(&cd, cyc, (u32)~0, SC_MULT, SC_SHIFT); return cyc_to_fixed_sched_clock(&cd, cyc, (u32)~0, SC_MULT, SC_SHIFT);
} }
#ifndef CONFIG_OMAP_MPU_TIMER #if defined(CONFIG_OMAP_32K_TIMER) && !defined(CONFIG_OMAP_MPU_TIMER)
unsigned long long notrace sched_clock(void) unsigned long long notrace sched_clock(void)
{ {
return _omap_32k_sched_clock(); return _omap_32k_sched_clock();
......
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