2 * arch/arm/plat-spear/time.c
4 * Copyright (C) 2010 ST Microelectronics
5 * Shiraz Hashim<shiraz.hashim@st.com>
7 * This file is licensed under the terms of the GNU General Public
8 * License version 2. This program is licensed "as is" without any
9 * warranty of any kind, whether express or implied.
12 #include <linux/clk.h>
13 #include <linux/clockchips.h>
14 #include <linux/clocksource.h>
15 #include <linux/err.h>
16 #include <linux/init.h>
17 #include <linux/interrupt.h>
19 #include <linux/kernel.h>
20 #include <linux/time.h>
21 #include <linux/irq.h>
22 #include <asm/mach/time.h>
23 #include <mach/generic.h>
24 #include <mach/hardware.h>
25 #include <mach/irqs.h>
28 * We would use TIMER0 and TIMER1 as clockevent and clocksource.
29 * Timer0 and Timer1 both belong to same gpt block in cpu subbsystem. Further
30 * they share same functional clock. Any change in one's functional clock will
31 * also affect other timer.
34 #define CLKEVT 0 /* gpt0, channel0 as clockevent */
35 #define CLKSRC 1 /* gpt0, channel1 as clocksource */
37 /* Register offsets, x is channel number */
38 #define CR(x) ((x) * 0x80 + 0x80)
39 #define IR(x) ((x) * 0x80 + 0x84)
40 #define LOAD(x) ((x) * 0x80 + 0x88)
41 #define COUNT(x) ((x) * 0x80 + 0x8C)
43 /* Reg bit definitions */
44 #define CTRL_INT_ENABLE 0x0100
45 #define CTRL_ENABLE 0x0020
46 #define CTRL_ONE_SHOT 0x0010
48 #define CTRL_PRESCALER1 0x0
49 #define CTRL_PRESCALER2 0x1
50 #define CTRL_PRESCALER4 0x2
51 #define CTRL_PRESCALER8 0x3
52 #define CTRL_PRESCALER16 0x4
53 #define CTRL_PRESCALER32 0x5
54 #define CTRL_PRESCALER64 0x6
55 #define CTRL_PRESCALER128 0x7
56 #define CTRL_PRESCALER256 0x8
58 #define INT_STATUS 0x1
61 * Minimum clocksource/clockevent timer range in seconds
63 #define SPEAR_MIN_RANGE 4
65 static __iomem
void *gpt_base
;
66 static struct clk
*gpt_clk
;
68 static void clockevent_set_mode(enum clock_event_mode mode
,
69 struct clock_event_device
*clk_event_dev
);
70 static int clockevent_next_event(unsigned long evt
,
71 struct clock_event_device
*clk_event_dev
);
73 static cycle_t
clocksource_read_cycles(struct clocksource
*cs
)
75 return (cycle_t
) readw(gpt_base
+ COUNT(CLKSRC
));
78 static struct clocksource clksrc
= {
80 .rating
= 200, /* its a pretty decent clock */
81 .read
= clocksource_read_cycles
,
82 .mask
= 0xFFFF, /* 16 bits */
83 .flags
= CLOCK_SOURCE_IS_CONTINUOUS
,
86 static void spear_clocksource_init(void)
91 /* program the prescaler (/256)*/
92 writew(CTRL_PRESCALER256
, gpt_base
+ CR(CLKSRC
));
94 /* find out actual clock driving Timer */
95 tick_rate
= clk_get_rate(gpt_clk
);
96 tick_rate
>>= CTRL_PRESCALER256
;
98 writew(0xFFFF, gpt_base
+ LOAD(CLKSRC
));
100 val
= readw(gpt_base
+ CR(CLKSRC
));
101 val
&= ~CTRL_ONE_SHOT
; /* autoreload mode */
103 writew(val
, gpt_base
+ CR(CLKSRC
));
105 /* register the clocksource */
106 clocksource_register_hz(&clksrc
, tick_rate
);
109 static struct clock_event_device clkevt
= {
111 .features
= CLOCK_EVT_FEAT_PERIODIC
| CLOCK_EVT_FEAT_ONESHOT
,
112 .set_mode
= clockevent_set_mode
,
113 .set_next_event
= clockevent_next_event
,
114 .shift
= 0, /* to be computed */
117 static void clockevent_set_mode(enum clock_event_mode mode
,
118 struct clock_event_device
*clk_event_dev
)
124 val
= readw(gpt_base
+ CR(CLKEVT
));
126 writew(val
, gpt_base
+ CR(CLKEVT
));
129 case CLOCK_EVT_MODE_PERIODIC
:
130 period
= clk_get_rate(gpt_clk
) / HZ
;
131 period
>>= CTRL_PRESCALER16
;
132 writew(period
, gpt_base
+ LOAD(CLKEVT
));
134 val
= readw(gpt_base
+ CR(CLKEVT
));
135 val
&= ~CTRL_ONE_SHOT
;
136 val
|= CTRL_ENABLE
| CTRL_INT_ENABLE
;
137 writew(val
, gpt_base
+ CR(CLKEVT
));
140 case CLOCK_EVT_MODE_ONESHOT
:
141 val
= readw(gpt_base
+ CR(CLKEVT
));
142 val
|= CTRL_ONE_SHOT
;
143 writew(val
, gpt_base
+ CR(CLKEVT
));
146 case CLOCK_EVT_MODE_UNUSED
:
147 case CLOCK_EVT_MODE_SHUTDOWN
:
148 case CLOCK_EVT_MODE_RESUME
:
152 pr_err("Invalid mode requested\n");
157 static int clockevent_next_event(unsigned long cycles
,
158 struct clock_event_device
*clk_event_dev
)
162 writew(cycles
, gpt_base
+ LOAD(CLKEVT
));
164 val
= readw(gpt_base
+ CR(CLKEVT
));
165 val
|= CTRL_ENABLE
| CTRL_INT_ENABLE
;
166 writew(val
, gpt_base
+ CR(CLKEVT
));
171 static irqreturn_t
spear_timer_interrupt(int irq
, void *dev_id
)
173 struct clock_event_device
*evt
= &clkevt
;
175 writew(INT_STATUS
, gpt_base
+ IR(CLKEVT
));
177 evt
->event_handler(evt
);
182 static struct irqaction spear_timer_irq
= {
184 .flags
= IRQF_DISABLED
| IRQF_TIMER
,
185 .handler
= spear_timer_interrupt
188 static void __init
spear_clockevent_init(void)
192 /* program the prescaler */
193 writew(CTRL_PRESCALER16
, gpt_base
+ CR(CLKEVT
));
195 tick_rate
= clk_get_rate(gpt_clk
);
196 tick_rate
>>= CTRL_PRESCALER16
;
198 clockevents_calc_mult_shift(&clkevt
, tick_rate
, SPEAR_MIN_RANGE
);
200 clkevt
.max_delta_ns
= clockevent_delta2ns(0xfff0,
202 clkevt
.min_delta_ns
= clockevent_delta2ns(3, &clkevt
);
204 clkevt
.cpumask
= cpumask_of(0);
206 clockevents_register_device(&clkevt
);
208 setup_irq(SPEAR_GPT0_CHAN0_IRQ
, &spear_timer_irq
);
211 void __init
spear_setup_timer(void)
215 if (!request_mem_region(SPEAR_GPT0_BASE
, SZ_1K
, "gpt0")) {
216 pr_err("%s:cannot get IO addr\n", __func__
);
220 gpt_base
= (void __iomem
*)ioremap(SPEAR_GPT0_BASE
, SZ_1K
);
222 pr_err("%s:ioremap failed for gpt\n", __func__
);
226 gpt_clk
= clk_get_sys("gpt0", NULL
);
228 pr_err("%s:couldn't get clk for gpt\n", __func__
);
232 ret
= clk_enable(gpt_clk
);
234 pr_err("%s:couldn't enable gpt clock\n", __func__
);
238 spear_clockevent_init();
239 spear_clocksource_init();
248 release_mem_region(SPEAR_GPT0_BASE
, SZ_1K
);