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Russell Kingf32f4ce2009-05-16 12:14:21 +01001/*
2 * linux/arch/arm/kernel/smp_twd.c
3 *
4 * Copyright (C) 2002 ARM Ltd.
5 * All Rights Reserved
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
11#include <linux/init.h>
12#include <linux/kernel.h>
Linus Walleij5def51b2011-12-13 12:47:31 +010013#include <linux/clk.h>
Russell Kingf32f4ce2009-05-16 12:14:21 +010014#include <linux/delay.h>
15#include <linux/device.h>
Linus Walleij5def51b2011-12-13 12:47:31 +010016#include <linux/err.h>
Russell Kingf32f4ce2009-05-16 12:14:21 +010017#include <linux/smp.h>
18#include <linux/jiffies.h>
19#include <linux/clockchips.h>
Marc Zyngier92485102012-01-10 23:00:54 +000020#include <linux/interrupt.h>
Russell Kingf32f4ce2009-05-16 12:14:21 +010021#include <linux/io.h>
Marc Zyngierd8e03642012-01-10 22:15:45 +000022#include <linux/of_irq.h>
23#include <linux/of_address.h>
Russell Kingf32f4ce2009-05-16 12:14:21 +010024
25#include <asm/smp_twd.h>
Marc Zyngier28af6902011-07-22 12:52:37 +010026#include <asm/localtimer.h>
Russell Kingf32f4ce2009-05-16 12:14:21 +010027#include <asm/hardware/gic.h>
28
Russell Kingf32f4ce2009-05-16 12:14:21 +010029/* set up by the platform code */
Marc Zyngier92485102012-01-10 23:00:54 +000030static void __iomem *twd_base;
Russell Kingf32f4ce2009-05-16 12:14:21 +010031
Linus Walleij5def51b2011-12-13 12:47:31 +010032static struct clk *twd_clk;
Russell Kingf32f4ce2009-05-16 12:14:21 +010033static unsigned long twd_timer_rate;
34
Marc Zyngier28af6902011-07-22 12:52:37 +010035static struct clock_event_device __percpu **twd_evt;
Marc Zyngier81e46f72012-01-10 19:39:26 +000036static int twd_ppi;
Marc Zyngier28af6902011-07-22 12:52:37 +010037
Russell Kingf32f4ce2009-05-16 12:14:21 +010038static void twd_set_mode(enum clock_event_mode mode,
39 struct clock_event_device *clk)
40{
41 unsigned long ctrl;
42
Russell King4c5158d2009-05-17 10:58:54 +010043 switch (mode) {
Russell Kingf32f4ce2009-05-16 12:14:21 +010044 case CLOCK_EVT_MODE_PERIODIC:
45 /* timer load already set up */
46 ctrl = TWD_TIMER_CONTROL_ENABLE | TWD_TIMER_CONTROL_IT_ENABLE
47 | TWD_TIMER_CONTROL_PERIODIC;
Russell King03399c12011-01-25 10:35:36 +000048 __raw_writel(twd_timer_rate / HZ, twd_base + TWD_TIMER_LOAD);
Russell Kingf32f4ce2009-05-16 12:14:21 +010049 break;
50 case CLOCK_EVT_MODE_ONESHOT:
51 /* period set, and timer enabled in 'next_event' hook */
52 ctrl = TWD_TIMER_CONTROL_IT_ENABLE | TWD_TIMER_CONTROL_ONESHOT;
53 break;
54 case CLOCK_EVT_MODE_UNUSED:
55 case CLOCK_EVT_MODE_SHUTDOWN:
56 default:
57 ctrl = 0;
58 }
59
60 __raw_writel(ctrl, twd_base + TWD_TIMER_CONTROL);
61}
62
63static int twd_set_next_event(unsigned long evt,
64 struct clock_event_device *unused)
65{
66 unsigned long ctrl = __raw_readl(twd_base + TWD_TIMER_CONTROL);
67
Russell King4c5158d2009-05-17 10:58:54 +010068 ctrl |= TWD_TIMER_CONTROL_ENABLE;
69
Russell Kingf32f4ce2009-05-16 12:14:21 +010070 __raw_writel(evt, twd_base + TWD_TIMER_COUNTER);
Russell King4c5158d2009-05-17 10:58:54 +010071 __raw_writel(ctrl, twd_base + TWD_TIMER_CONTROL);
Russell Kingf32f4ce2009-05-16 12:14:21 +010072
73 return 0;
74}
75
76/*
77 * local_timer_ack: checks for a local timer interrupt.
78 *
79 * If a local timer interrupt has occurred, acknowledge and return 1.
80 * Otherwise, return 0.
81 */
Marc Zyngier92485102012-01-10 23:00:54 +000082static int twd_timer_ack(void)
Russell Kingf32f4ce2009-05-16 12:14:21 +010083{
84 if (__raw_readl(twd_base + TWD_TIMER_INTSTAT)) {
85 __raw_writel(1, twd_base + TWD_TIMER_INTSTAT);
86 return 1;
87 }
88
89 return 0;
90}
91
Marc Zyngierabde7102012-01-10 19:07:28 +000092static void twd_timer_stop(struct clock_event_device *clk)
Marc Zyngier28af6902011-07-22 12:52:37 +010093{
94 twd_set_mode(CLOCK_EVT_MODE_UNUSED, clk);
95 disable_percpu_irq(clk->irq);
96}
97
Mike Turquette2b25d9f2012-09-13 22:04:18 +010098#ifdef CONFIG_COMMON_CLK
99
100/*
101 * Updates clockevent frequency when the cpu frequency changes.
102 * Called on the cpu that is changing frequency with interrupts disabled.
103 */
104static void twd_update_frequency(void *new_rate)
105{
106 twd_timer_rate = *((unsigned long *) new_rate);
107
108 clockevents_update_freq(*__this_cpu_ptr(twd_evt), twd_timer_rate);
109}
110
111static int twd_rate_change(struct notifier_block *nb,
112 unsigned long flags, void *data)
113{
114 struct clk_notifier_data *cnd = data;
115
116 /*
117 * The twd clock events must be reprogrammed to account for the new
118 * frequency. The timer is local to a cpu, so cross-call to the
119 * changing cpu.
120 */
121 if (flags == POST_RATE_CHANGE)
122 smp_call_function(twd_update_frequency,
123 (void *)&cnd->new_rate, 1);
124
125 return NOTIFY_OK;
126}
127
128static struct notifier_block twd_clk_nb = {
129 .notifier_call = twd_rate_change,
130};
131
132static int twd_clk_init(void)
133{
134 if (twd_evt && *__this_cpu_ptr(twd_evt) && !IS_ERR(twd_clk))
135 return clk_notifier_register(twd_clk, &twd_clk_nb);
136
137 return 0;
138}
139core_initcall(twd_clk_init);
140
141#elif defined (CONFIG_CPU_FREQ)
142
143#include <linux/cpufreq.h>
Linus Walleij4fd7f9b2011-12-13 12:48:18 +0100144
145/*
146 * Updates clockevent frequency when the cpu frequency changes.
147 * Called on the cpu that is changing frequency with interrupts disabled.
148 */
149static void twd_update_frequency(void *data)
150{
151 twd_timer_rate = clk_get_rate(twd_clk);
152
153 clockevents_update_freq(*__this_cpu_ptr(twd_evt), twd_timer_rate);
154}
155
156static int twd_cpufreq_transition(struct notifier_block *nb,
157 unsigned long state, void *data)
158{
159 struct cpufreq_freqs *freqs = data;
160
161 /*
162 * The twd clock events must be reprogrammed to account for the new
163 * frequency. The timer is local to a cpu, so cross-call to the
164 * changing cpu.
165 */
166 if (state == CPUFREQ_POSTCHANGE || state == CPUFREQ_RESUMECHANGE)
167 smp_call_function_single(freqs->cpu, twd_update_frequency,
Russell King3cd88f92012-04-19 19:35:10 +0100168 NULL, 1);
Linus Walleij4fd7f9b2011-12-13 12:48:18 +0100169
170 return NOTIFY_OK;
171}
172
173static struct notifier_block twd_cpufreq_nb = {
174 .notifier_call = twd_cpufreq_transition,
175};
176
177static int twd_cpufreq_init(void)
178{
Santosh Shilimkar910ba592012-02-21 10:24:22 +0100179 if (twd_evt && *__this_cpu_ptr(twd_evt) && !IS_ERR(twd_clk))
Linus Walleij4fd7f9b2011-12-13 12:48:18 +0100180 return cpufreq_register_notifier(&twd_cpufreq_nb,
181 CPUFREQ_TRANSITION_NOTIFIER);
182
183 return 0;
184}
185core_initcall(twd_cpufreq_init);
186
187#endif
188
Russell Kingf32f4ce2009-05-16 12:14:21 +0100189static void __cpuinit twd_calibrate_rate(void)
190{
Russell King03399c12011-01-25 10:35:36 +0000191 unsigned long count;
Russell Kingf32f4ce2009-05-16 12:14:21 +0100192 u64 waitjiffies;
193
194 /*
195 * If this is the first time round, we need to work out how fast
196 * the timer ticks
197 */
198 if (twd_timer_rate == 0) {
Russell King4c5158d2009-05-17 10:58:54 +0100199 printk(KERN_INFO "Calibrating local timer... ");
Russell Kingf32f4ce2009-05-16 12:14:21 +0100200
201 /* Wait for a tick to start */
202 waitjiffies = get_jiffies_64() + 1;
203
204 while (get_jiffies_64() < waitjiffies)
205 udelay(10);
206
207 /* OK, now the tick has started, let's get the timer going */
208 waitjiffies += 5;
209
210 /* enable, no interrupt or reload */
211 __raw_writel(0x1, twd_base + TWD_TIMER_CONTROL);
212
213 /* maximum value */
214 __raw_writel(0xFFFFFFFFU, twd_base + TWD_TIMER_COUNTER);
215
216 while (get_jiffies_64() < waitjiffies)
217 udelay(10);
218
219 count = __raw_readl(twd_base + TWD_TIMER_COUNTER);
220
221 twd_timer_rate = (0xFFFFFFFFU - count) * (HZ / 5);
222
223 printk("%lu.%02luMHz.\n", twd_timer_rate / 1000000,
Vitaly Kuzmichev90c5ffe2011-07-07 14:56:05 +0100224 (twd_timer_rate / 10000) % 100);
Russell Kingf32f4ce2009-05-16 12:14:21 +0100225 }
Russell Kingf32f4ce2009-05-16 12:14:21 +0100226}
227
Marc Zyngier28af6902011-07-22 12:52:37 +0100228static irqreturn_t twd_handler(int irq, void *dev_id)
229{
230 struct clock_event_device *evt = *(struct clock_event_device **)dev_id;
231
232 if (twd_timer_ack()) {
233 evt->event_handler(evt);
234 return IRQ_HANDLED;
235 }
236
237 return IRQ_NONE;
238}
239
Linus Walleij5def51b2011-12-13 12:47:31 +0100240static struct clk *twd_get_clock(void)
241{
242 struct clk *clk;
243 int err;
244
245 clk = clk_get_sys("smp_twd", NULL);
246 if (IS_ERR(clk)) {
247 pr_err("smp_twd: clock not found: %d\n", (int)PTR_ERR(clk));
248 return clk;
249 }
250
251 err = clk_prepare(clk);
252 if (err) {
253 pr_err("smp_twd: clock failed to prepare: %d\n", err);
254 clk_put(clk);
255 return ERR_PTR(err);
256 }
257
258 err = clk_enable(clk);
259 if (err) {
260 pr_err("smp_twd: clock failed to enable: %d\n", err);
261 clk_unprepare(clk);
262 clk_put(clk);
263 return ERR_PTR(err);
264 }
265
266 return clk;
267}
268
Russell Kingf32f4ce2009-05-16 12:14:21 +0100269/*
270 * Setup the local clock events for a CPU.
271 */
Marc Zyngier92485102012-01-10 23:00:54 +0000272static int __cpuinit twd_timer_setup(struct clock_event_device *clk)
Russell Kingf32f4ce2009-05-16 12:14:21 +0100273{
Marc Zyngier28af6902011-07-22 12:52:37 +0100274 struct clock_event_device **this_cpu_clk;
275
Linus Walleij5def51b2011-12-13 12:47:31 +0100276 if (!twd_clk)
277 twd_clk = twd_get_clock();
278
279 if (!IS_ERR_OR_NULL(twd_clk))
280 twd_timer_rate = clk_get_rate(twd_clk);
281 else
282 twd_calibrate_rate();
Russell Kingf32f4ce2009-05-16 12:14:21 +0100283
Marc Zyngierc2144552012-01-20 12:24:47 +0100284 __raw_writel(0, twd_base + TWD_TIMER_CONTROL);
285
Russell King4c5158d2009-05-17 10:58:54 +0100286 clk->name = "local_timer";
Russell King5388a6b2010-07-26 13:19:43 +0100287 clk->features = CLOCK_EVT_FEAT_PERIODIC | CLOCK_EVT_FEAT_ONESHOT |
288 CLOCK_EVT_FEAT_C3STOP;
Russell King4c5158d2009-05-17 10:58:54 +0100289 clk->rating = 350;
290 clk->set_mode = twd_set_mode;
291 clk->set_next_event = twd_set_next_event;
Marc Zyngier92485102012-01-10 23:00:54 +0000292 clk->irq = twd_ppi;
Russell Kingf32f4ce2009-05-16 12:14:21 +0100293
Marc Zyngier28af6902011-07-22 12:52:37 +0100294 this_cpu_clk = __this_cpu_ptr(twd_evt);
295 *this_cpu_clk = clk;
296
Linus Walleij54d15b12011-12-13 12:46:43 +0100297 clockevents_config_and_register(clk, twd_timer_rate,
298 0xf, 0xffffffff);
Marc Zyngier28af6902011-07-22 12:52:37 +0100299 enable_percpu_irq(clk->irq, 0);
Marc Zyngier81e46f72012-01-10 19:39:26 +0000300
301 return 0;
302}
303
304static struct local_timer_ops twd_lt_ops __cpuinitdata = {
305 .setup = twd_timer_setup,
306 .stop = twd_timer_stop,
307};
308
Marc Zyngierd8e03642012-01-10 22:15:45 +0000309static int __init twd_local_timer_common_register(void)
Marc Zyngier81e46f72012-01-10 19:39:26 +0000310{
311 int err;
312
Marc Zyngier81e46f72012-01-10 19:39:26 +0000313 twd_evt = alloc_percpu(struct clock_event_device *);
Marc Zyngierd8e03642012-01-10 22:15:45 +0000314 if (!twd_evt) {
Marc Zyngier81e46f72012-01-10 19:39:26 +0000315 err = -ENOMEM;
Marc Zyngierd8e03642012-01-10 22:15:45 +0000316 goto out_free;
Marc Zyngier81e46f72012-01-10 19:39:26 +0000317 }
318
319 err = request_percpu_irq(twd_ppi, twd_handler, "twd", twd_evt);
320 if (err) {
321 pr_err("twd: can't register interrupt %d (%d)\n", twd_ppi, err);
Marc Zyngierd8e03642012-01-10 22:15:45 +0000322 goto out_free;
Marc Zyngier81e46f72012-01-10 19:39:26 +0000323 }
324
325 err = local_timer_register(&twd_lt_ops);
326 if (err)
Marc Zyngierd8e03642012-01-10 22:15:45 +0000327 goto out_irq;
Marc Zyngier81e46f72012-01-10 19:39:26 +0000328
329 return 0;
330
Marc Zyngierd8e03642012-01-10 22:15:45 +0000331out_irq:
332 free_percpu_irq(twd_ppi, twd_evt);
333out_free:
Marc Zyngier81e46f72012-01-10 19:39:26 +0000334 iounmap(twd_base);
Marc Zyngierd8e03642012-01-10 22:15:45 +0000335 twd_base = NULL;
Marc Zyngier81e46f72012-01-10 19:39:26 +0000336 free_percpu(twd_evt);
Marc Zyngierd8e03642012-01-10 22:15:45 +0000337
Marc Zyngier81e46f72012-01-10 19:39:26 +0000338 return err;
Russell Kingf32f4ce2009-05-16 12:14:21 +0100339}
Marc Zyngierd8e03642012-01-10 22:15:45 +0000340
341int __init twd_local_timer_register(struct twd_local_timer *tlt)
342{
343 if (twd_base || twd_evt)
344 return -EBUSY;
345
346 twd_ppi = tlt->res[1].start;
347
348 twd_base = ioremap(tlt->res[0].start, resource_size(&tlt->res[0]));
349 if (!twd_base)
350 return -ENOMEM;
351
352 return twd_local_timer_common_register();
353}
354
355#ifdef CONFIG_OF
356const static struct of_device_id twd_of_match[] __initconst = {
357 { .compatible = "arm,cortex-a9-twd-timer", },
358 { .compatible = "arm,cortex-a5-twd-timer", },
359 { .compatible = "arm,arm11mp-twd-timer", },
360 { },
361};
362
363void __init twd_local_timer_of_register(void)
364{
365 struct device_node *np;
366 int err;
367
368 np = of_find_matching_node(NULL, twd_of_match);
369 if (!np) {
370 err = -ENODEV;
371 goto out;
372 }
373
374 twd_ppi = irq_of_parse_and_map(np, 0);
375 if (!twd_ppi) {
376 err = -EINVAL;
377 goto out;
378 }
379
380 twd_base = of_iomap(np, 0);
381 if (!twd_base) {
382 err = -ENOMEM;
383 goto out;
384 }
385
386 err = twd_local_timer_common_register();
387
388out:
389 WARN(err, "twd_local_timer_of_register failed (%d)\n", err);
390}
391#endif