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authorStephen Boyd <sboyd@codeaurora.org>2013-06-02 02:39:40 -0400
committerJohn Stultz <john.stultz@linaro.org>2013-06-12 17:02:13 -0400
commit38ff87f77af0b5a93fc8581cff1d6e5692ab8970 (patch)
tree7a157528657400d0486cd4e74da98bad40992c3c /kernel/time
parentffbfb5e316f0db486798ccf1db36a577ffe79637 (diff)
sched_clock: Make ARM's sched_clock generic for all architectures
Nothing about the sched_clock implementation in the ARM port is specific to the architecture. Generalize the code so that other architectures can use it by selecting GENERIC_SCHED_CLOCK. Signed-off-by: Stephen Boyd <sboyd@codeaurora.org> [jstultz: Merge minor collisions with other patches in my tree] Signed-off-by: John Stultz <john.stultz@linaro.org>
Diffstat (limited to 'kernel/time')
-rw-r--r--kernel/time/Makefile1
-rw-r--r--kernel/time/sched_clock.c215
2 files changed, 216 insertions, 0 deletions
diff --git a/kernel/time/Makefile b/kernel/time/Makefile
index d52ac8bf0006..9250130646f5 100644
--- a/kernel/time/Makefile
+++ b/kernel/time/Makefile
@@ -4,6 +4,7 @@ obj-y += timeconv.o posix-clock.o alarmtimer.o
4obj-$(CONFIG_GENERIC_CLOCKEVENTS_BUILD) += clockevents.o 4obj-$(CONFIG_GENERIC_CLOCKEVENTS_BUILD) += clockevents.o
5obj-$(CONFIG_GENERIC_CLOCKEVENTS) += tick-common.o 5obj-$(CONFIG_GENERIC_CLOCKEVENTS) += tick-common.o
6obj-$(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST) += tick-broadcast.o 6obj-$(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST) += tick-broadcast.o
7obj-$(CONFIG_GENERIC_SCHED_CLOCK) += sched_clock.o
7obj-$(CONFIG_TICK_ONESHOT) += tick-oneshot.o 8obj-$(CONFIG_TICK_ONESHOT) += tick-oneshot.o
8obj-$(CONFIG_TICK_ONESHOT) += tick-sched.o 9obj-$(CONFIG_TICK_ONESHOT) += tick-sched.o
9obj-$(CONFIG_TIMER_STATS) += timer_stats.o 10obj-$(CONFIG_TIMER_STATS) += timer_stats.o
diff --git a/kernel/time/sched_clock.c b/kernel/time/sched_clock.c
new file mode 100644
index 000000000000..aad1ae6077ef
--- /dev/null
+++ b/kernel/time/sched_clock.c
@@ -0,0 +1,215 @@
1/*
2 * sched_clock.c: support for extending counters to full 64-bit ns counter
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation.
7 */
8#include <linux/clocksource.h>
9#include <linux/init.h>
10#include <linux/jiffies.h>
11#include <linux/kernel.h>
12#include <linux/moduleparam.h>
13#include <linux/sched.h>
14#include <linux/syscore_ops.h>
15#include <linux/timer.h>
16#include <linux/sched_clock.h>
17
18struct clock_data {
19 u64 epoch_ns;
20 u32 epoch_cyc;
21 u32 epoch_cyc_copy;
22 unsigned long rate;
23 u32 mult;
24 u32 shift;
25 bool suspended;
26};
27
28static void sched_clock_poll(unsigned long wrap_ticks);
29static DEFINE_TIMER(sched_clock_timer, sched_clock_poll, 0, 0);
30static int irqtime = -1;
31
32core_param(irqtime, irqtime, int, 0400);
33
34static struct clock_data cd = {
35 .mult = NSEC_PER_SEC / HZ,
36};
37
38static u32 __read_mostly sched_clock_mask = 0xffffffff;
39
40static u32 notrace jiffy_sched_clock_read(void)
41{
42 return (u32)(jiffies - INITIAL_JIFFIES);
43}
44
45static u32 __read_mostly (*read_sched_clock)(void) = jiffy_sched_clock_read;
46
47static inline u64 notrace cyc_to_ns(u64 cyc, u32 mult, u32 shift)
48{
49 return (cyc * mult) >> shift;
50}
51
52static unsigned long long notrace cyc_to_sched_clock(u32 cyc, u32 mask)
53{
54 u64 epoch_ns;
55 u32 epoch_cyc;
56
57 /*
58 * Load the epoch_cyc and epoch_ns atomically. We do this by
59 * ensuring that we always write epoch_cyc, epoch_ns and
60 * epoch_cyc_copy in strict order, and read them in strict order.
61 * If epoch_cyc and epoch_cyc_copy are not equal, then we're in
62 * the middle of an update, and we should repeat the load.
63 */
64 do {
65 epoch_cyc = cd.epoch_cyc;
66 smp_rmb();
67 epoch_ns = cd.epoch_ns;
68 smp_rmb();
69 } while (epoch_cyc != cd.epoch_cyc_copy);
70
71 return epoch_ns + cyc_to_ns((cyc - epoch_cyc) & mask, cd.mult, cd.shift);
72}
73
74/*
75 * Atomically update the sched_clock epoch.
76 */
77static void notrace update_sched_clock(void)
78{
79 unsigned long flags;
80 u32 cyc;
81 u64 ns;
82
83 cyc = read_sched_clock();
84 ns = cd.epoch_ns +
85 cyc_to_ns((cyc - cd.epoch_cyc) & sched_clock_mask,
86 cd.mult, cd.shift);
87 /*
88 * Write epoch_cyc and epoch_ns in a way that the update is
89 * detectable in cyc_to_fixed_sched_clock().
90 */
91 raw_local_irq_save(flags);
92 cd.epoch_cyc_copy = cyc;
93 smp_wmb();
94 cd.epoch_ns = ns;
95 smp_wmb();
96 cd.epoch_cyc = cyc;
97 raw_local_irq_restore(flags);
98}
99
100static void sched_clock_poll(unsigned long wrap_ticks)
101{
102 mod_timer(&sched_clock_timer, round_jiffies(jiffies + wrap_ticks));
103 update_sched_clock();
104}
105
106void __init setup_sched_clock(u32 (*read)(void), int bits, unsigned long rate)
107{
108 unsigned long r, w;
109 u64 res, wrap;
110 char r_unit;
111
112 if (cd.rate > rate)
113 return;
114
115 BUG_ON(bits > 32);
116 WARN_ON(!irqs_disabled());
117 read_sched_clock = read;
118 sched_clock_mask = (1 << bits) - 1;
119 cd.rate = rate;
120
121 /* calculate the mult/shift to convert counter ticks to ns. */
122 clocks_calc_mult_shift(&cd.mult, &cd.shift, rate, NSEC_PER_SEC, 0);
123
124 r = rate;
125 if (r >= 4000000) {
126 r /= 1000000;
127 r_unit = 'M';
128 } else if (r >= 1000) {
129 r /= 1000;
130 r_unit = 'k';
131 } else
132 r_unit = ' ';
133
134 /* calculate how many ns until we wrap */
135 wrap = cyc_to_ns((1ULL << bits) - 1, cd.mult, cd.shift);
136 do_div(wrap, NSEC_PER_MSEC);
137 w = wrap;
138
139 /* calculate the ns resolution of this counter */
140 res = cyc_to_ns(1ULL, cd.mult, cd.shift);
141 pr_info("sched_clock: %u bits at %lu%cHz, resolution %lluns, wraps every %lums\n",
142 bits, r, r_unit, res, w);
143
144 /*
145 * Start the timer to keep sched_clock() properly updated and
146 * sets the initial epoch.
147 */
148 sched_clock_timer.data = msecs_to_jiffies(w - (w / 10));
149 update_sched_clock();
150
151 /*
152 * Ensure that sched_clock() starts off at 0ns
153 */
154 cd.epoch_ns = 0;
155
156 /* Enable IRQ time accounting if we have a fast enough sched_clock */
157 if (irqtime > 0 || (irqtime == -1 && rate >= 1000000))
158 enable_sched_clock_irqtime();
159
160 pr_debug("Registered %pF as sched_clock source\n", read);
161}
162
163static unsigned long long notrace sched_clock_32(void)
164{
165 u32 cyc = read_sched_clock();
166 return cyc_to_sched_clock(cyc, sched_clock_mask);
167}
168
169unsigned long long __read_mostly (*sched_clock_func)(void) = sched_clock_32;
170
171unsigned long long notrace sched_clock(void)
172{
173 if (cd.suspended)
174 return cd.epoch_ns;
175
176 return sched_clock_func();
177}
178
179void __init sched_clock_postinit(void)
180{
181 /*
182 * If no sched_clock function has been provided at that point,
183 * make it the final one one.
184 */
185 if (read_sched_clock == jiffy_sched_clock_read)
186 setup_sched_clock(jiffy_sched_clock_read, 32, HZ);
187
188 sched_clock_poll(sched_clock_timer.data);
189}
190
191static int sched_clock_suspend(void)
192{
193 sched_clock_poll(sched_clock_timer.data);
194 cd.suspended = true;
195 return 0;
196}
197
198static void sched_clock_resume(void)
199{
200 cd.epoch_cyc = read_sched_clock();
201 cd.epoch_cyc_copy = cd.epoch_cyc;
202 cd.suspended = false;
203}
204
205static struct syscore_ops sched_clock_ops = {
206 .suspend = sched_clock_suspend,
207 .resume = sched_clock_resume,
208};
209
210static int __init sched_clock_syscore_init(void)
211{
212 register_syscore_ops(&sched_clock_ops);
213 return 0;
214}
215device_initcall(sched_clock_syscore_init);