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734efb46
JS
1/*
2 * linux/kernel/time/clocksource.c
3 *
4 * This file contains the functions which manage clocksource drivers.
5 *
6 * Copyright (C) 2004, 2005 IBM, John Stultz (johnstul@us.ibm.com)
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 *
22 * TODO WishList:
23 * o Allow clocksource drivers to be unregistered
734efb46
JS
24 */
25
45bbfe64
JP
26#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
27
d369a5d8 28#include <linux/device.h>
734efb46 29#include <linux/clocksource.h>
734efb46
JS
30#include <linux/init.h>
31#include <linux/module.h>
dc29a365 32#include <linux/sched.h> /* for spin_unlock_irq() using preempt_count() m68k */
79bf2bb3 33#include <linux/tick.h>
01548f4d 34#include <linux/kthread.h>
734efb46 35
c1797baf 36#include "tick-internal.h"
3a978377 37#include "timekeeping_internal.h"
03e13cf5 38
7d2f944a
TG
39/**
40 * clocks_calc_mult_shift - calculate mult/shift factors for scaled math of clocks
41 * @mult: pointer to mult variable
42 * @shift: pointer to shift variable
43 * @from: frequency to convert from
44 * @to: frequency to convert to
5fdade95 45 * @maxsec: guaranteed runtime conversion range in seconds
7d2f944a
TG
46 *
47 * The function evaluates the shift/mult pair for the scaled math
48 * operations of clocksources and clockevents.
49 *
50 * @to and @from are frequency values in HZ. For clock sources @to is
51 * NSEC_PER_SEC == 1GHz and @from is the counter frequency. For clock
52 * event @to is the counter frequency and @from is NSEC_PER_SEC.
53 *
5fdade95 54 * The @maxsec conversion range argument controls the time frame in
7d2f944a
TG
55 * seconds which must be covered by the runtime conversion with the
56 * calculated mult and shift factors. This guarantees that no 64bit
57 * overflow happens when the input value of the conversion is
58 * multiplied with the calculated mult factor. Larger ranges may
59 * reduce the conversion accuracy by chosing smaller mult and shift
60 * factors.
61 */
62void
5fdade95 63clocks_calc_mult_shift(u32 *mult, u32 *shift, u32 from, u32 to, u32 maxsec)
7d2f944a
TG
64{
65 u64 tmp;
66 u32 sft, sftacc= 32;
67
68 /*
69 * Calculate the shift factor which is limiting the conversion
70 * range:
71 */
5fdade95 72 tmp = ((u64)maxsec * from) >> 32;
7d2f944a
TG
73 while (tmp) {
74 tmp >>=1;
75 sftacc--;
76 }
77
78 /*
79 * Find the conversion shift/mult pair which has the best
80 * accuracy and fits the maxsec conversion range:
81 */
82 for (sft = 32; sft > 0; sft--) {
83 tmp = (u64) to << sft;
b5776c4a 84 tmp += from / 2;
7d2f944a
TG
85 do_div(tmp, from);
86 if ((tmp >> sftacc) == 0)
87 break;
88 }
89 *mult = tmp;
90 *shift = sft;
91}
5304121a 92EXPORT_SYMBOL_GPL(clocks_calc_mult_shift);
7d2f944a 93
734efb46
JS
94/*[Clocksource internal variables]---------
95 * curr_clocksource:
f1b82746 96 * currently selected clocksource.
734efb46
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97 * clocksource_list:
98 * linked list with the registered clocksources
75c5158f
MS
99 * clocksource_mutex:
100 * protects manipulations to curr_clocksource and the clocksource_list
734efb46
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101 * override_name:
102 * Name of the user-specified clocksource.
103 */
f1b82746 104static struct clocksource *curr_clocksource;
734efb46 105static LIST_HEAD(clocksource_list);
75c5158f 106static DEFINE_MUTEX(clocksource_mutex);
29b54078 107static char override_name[CS_NAME_LEN];
54a6bc0b 108static int finished_booting;
734efb46 109
5d8b34fd 110#ifdef CONFIG_CLOCKSOURCE_WATCHDOG
f79e0258 111static void clocksource_watchdog_work(struct work_struct *work);
332962f2 112static void clocksource_select(void);
f79e0258 113
5d8b34fd
TG
114static LIST_HEAD(watchdog_list);
115static struct clocksource *watchdog;
116static struct timer_list watchdog_timer;
f79e0258 117static DECLARE_WORK(watchdog_work, clocksource_watchdog_work);
5d8b34fd 118static DEFINE_SPINLOCK(watchdog_lock);
fb63a0eb 119static int watchdog_running;
9fb60336 120static atomic_t watchdog_reset_pending;
b52f52a0 121
01548f4d 122static int clocksource_watchdog_kthread(void *data);
d0981a1b 123static void __clocksource_change_rating(struct clocksource *cs, int rating);
c55c87c8 124
5d8b34fd 125/*
35c35d1a 126 * Interval: 0.5sec Threshold: 0.0625s
5d8b34fd
TG
127 */
128#define WATCHDOG_INTERVAL (HZ >> 1)
35c35d1a 129#define WATCHDOG_THRESHOLD (NSEC_PER_SEC >> 4)
5d8b34fd 130
01548f4d
MS
131static void clocksource_watchdog_work(struct work_struct *work)
132{
133 /*
134 * If kthread_run fails the next watchdog scan over the
135 * watchdog_list will find the unstable clock again.
136 */
137 kthread_run(clocksource_watchdog_kthread, NULL, "kwatchdog");
138}
139
7285dd7f 140static void __clocksource_unstable(struct clocksource *cs)
5d8b34fd 141{
5d8b34fd 142 cs->flags &= ~(CLOCK_SOURCE_VALID_FOR_HRES | CLOCK_SOURCE_WATCHDOG);
c55c87c8 143 cs->flags |= CLOCK_SOURCE_UNSTABLE;
12907fbb
TG
144
145 if (cs->mark_unstable)
146 cs->mark_unstable(cs);
147
54a6bc0b
TG
148 if (finished_booting)
149 schedule_work(&watchdog_work);
5d8b34fd
TG
150}
151
7285dd7f
TG
152/**
153 * clocksource_mark_unstable - mark clocksource unstable via watchdog
154 * @cs: clocksource to be marked unstable
155 *
156 * This function is called instead of clocksource_change_rating from
157 * cpu hotplug code to avoid a deadlock between the clocksource mutex
158 * and the cpu hotplug mutex. It defers the update of the clocksource
159 * to the watchdog thread.
160 */
161void clocksource_mark_unstable(struct clocksource *cs)
162{
163 unsigned long flags;
164
165 spin_lock_irqsave(&watchdog_lock, flags);
166 if (!(cs->flags & CLOCK_SOURCE_UNSTABLE)) {
167 if (list_empty(&cs->wd_list))
168 list_add(&cs->wd_list, &watchdog_list);
169 __clocksource_unstable(cs);
170 }
171 spin_unlock_irqrestore(&watchdog_lock, flags);
172}
173
5d8b34fd
TG
174static void clocksource_watchdog(unsigned long data)
175{
c55c87c8 176 struct clocksource *cs;
a5a1d1c2 177 u64 csnow, wdnow, cslast, wdlast, delta;
5d8b34fd 178 int64_t wd_nsec, cs_nsec;
9fb60336 179 int next_cpu, reset_pending;
5d8b34fd
TG
180
181 spin_lock(&watchdog_lock);
fb63a0eb
MS
182 if (!watchdog_running)
183 goto out;
5d8b34fd 184
9fb60336
TG
185 reset_pending = atomic_read(&watchdog_reset_pending);
186
c55c87c8
MS
187 list_for_each_entry(cs, &watchdog_list, wd_list) {
188
189 /* Clocksource already marked unstable? */
01548f4d 190 if (cs->flags & CLOCK_SOURCE_UNSTABLE) {
54a6bc0b
TG
191 if (finished_booting)
192 schedule_work(&watchdog_work);
c55c87c8 193 continue;
01548f4d 194 }
c55c87c8 195
b5199515 196 local_irq_disable();
8e19608e 197 csnow = cs->read(cs);
b5199515
TG
198 wdnow = watchdog->read(watchdog);
199 local_irq_enable();
b52f52a0 200
8cf4e750 201 /* Clocksource initialized ? */
9fb60336
TG
202 if (!(cs->flags & CLOCK_SOURCE_WATCHDOG) ||
203 atomic_read(&watchdog_reset_pending)) {
8cf4e750 204 cs->flags |= CLOCK_SOURCE_WATCHDOG;
b5199515
TG
205 cs->wd_last = wdnow;
206 cs->cs_last = csnow;
b52f52a0
TG
207 continue;
208 }
209
3a978377
TG
210 delta = clocksource_delta(wdnow, cs->wd_last, watchdog->mask);
211 wd_nsec = clocksource_cyc2ns(delta, watchdog->mult,
212 watchdog->shift);
b5199515 213
3a978377
TG
214 delta = clocksource_delta(csnow, cs->cs_last, cs->mask);
215 cs_nsec = clocksource_cyc2ns(delta, cs->mult, cs->shift);
0b046b21
JS
216 wdlast = cs->wd_last; /* save these in case we print them */
217 cslast = cs->cs_last;
b5199515
TG
218 cs->cs_last = csnow;
219 cs->wd_last = wdnow;
220
9fb60336
TG
221 if (atomic_read(&watchdog_reset_pending))
222 continue;
223
b5199515 224 /* Check the deviation from the watchdog clocksource. */
79211c8e 225 if (abs(cs_nsec - wd_nsec) > WATCHDOG_THRESHOLD) {
390dd67c
SI
226 pr_warn("timekeeping watchdog on CPU%d: Marking clocksource '%s' as unstable because the skew is too large:\n",
227 smp_processor_id(), cs->name);
45bbfe64 228 pr_warn(" '%s' wd_now: %llx wd_last: %llx mask: %llx\n",
0b046b21 229 watchdog->name, wdnow, wdlast, watchdog->mask);
45bbfe64 230 pr_warn(" '%s' cs_now: %llx cs_last: %llx mask: %llx\n",
0b046b21
JS
231 cs->name, csnow, cslast, cs->mask);
232 __clocksource_unstable(cs);
8cf4e750
MS
233 continue;
234 }
235
b421b22b
PZ
236 if (cs == curr_clocksource && cs->tick_stable)
237 cs->tick_stable(cs);
238
8cf4e750
MS
239 if (!(cs->flags & CLOCK_SOURCE_VALID_FOR_HRES) &&
240 (cs->flags & CLOCK_SOURCE_IS_CONTINUOUS) &&
241 (watchdog->flags & CLOCK_SOURCE_IS_CONTINUOUS)) {
332962f2 242 /* Mark it valid for high-res. */
8cf4e750 243 cs->flags |= CLOCK_SOURCE_VALID_FOR_HRES;
332962f2
TG
244
245 /*
246 * clocksource_done_booting() will sort it if
247 * finished_booting is not set yet.
248 */
249 if (!finished_booting)
250 continue;
251
8cf4e750 252 /*
332962f2
TG
253 * If this is not the current clocksource let
254 * the watchdog thread reselect it. Due to the
255 * change to high res this clocksource might
256 * be preferred now. If it is the current
257 * clocksource let the tick code know about
258 * that change.
8cf4e750 259 */
332962f2
TG
260 if (cs != curr_clocksource) {
261 cs->flags |= CLOCK_SOURCE_RESELECT;
262 schedule_work(&watchdog_work);
263 } else {
264 tick_clock_notify();
265 }
5d8b34fd
TG
266 }
267 }
268
9fb60336
TG
269 /*
270 * We only clear the watchdog_reset_pending, when we did a
271 * full cycle through all clocksources.
272 */
273 if (reset_pending)
274 atomic_dec(&watchdog_reset_pending);
275
c55c87c8
MS
276 /*
277 * Cycle through CPUs to check if the CPUs stay synchronized
278 * to each other.
279 */
280 next_cpu = cpumask_next(raw_smp_processor_id(), cpu_online_mask);
281 if (next_cpu >= nr_cpu_ids)
282 next_cpu = cpumask_first(cpu_online_mask);
283 watchdog_timer.expires += WATCHDOG_INTERVAL;
284 add_timer_on(&watchdog_timer, next_cpu);
fb63a0eb 285out:
5d8b34fd
TG
286 spin_unlock(&watchdog_lock);
287}
0f8e8ef7 288
fb63a0eb
MS
289static inline void clocksource_start_watchdog(void)
290{
291 if (watchdog_running || !watchdog || list_empty(&watchdog_list))
292 return;
293 init_timer(&watchdog_timer);
294 watchdog_timer.function = clocksource_watchdog;
fb63a0eb
MS
295 watchdog_timer.expires = jiffies + WATCHDOG_INTERVAL;
296 add_timer_on(&watchdog_timer, cpumask_first(cpu_online_mask));
297 watchdog_running = 1;
298}
299
300static inline void clocksource_stop_watchdog(void)
301{
302 if (!watchdog_running || (watchdog && !list_empty(&watchdog_list)))
303 return;
304 del_timer(&watchdog_timer);
305 watchdog_running = 0;
306}
307
0f8e8ef7
MS
308static inline void clocksource_reset_watchdog(void)
309{
310 struct clocksource *cs;
311
312 list_for_each_entry(cs, &watchdog_list, wd_list)
313 cs->flags &= ~CLOCK_SOURCE_WATCHDOG;
314}
315
b52f52a0
TG
316static void clocksource_resume_watchdog(void)
317{
9fb60336 318 atomic_inc(&watchdog_reset_pending);
b52f52a0
TG
319}
320
fb63a0eb 321static void clocksource_enqueue_watchdog(struct clocksource *cs)
5d8b34fd 322{
5d8b34fd
TG
323 unsigned long flags;
324
325 spin_lock_irqsave(&watchdog_lock, flags);
326 if (cs->flags & CLOCK_SOURCE_MUST_VERIFY) {
fb63a0eb 327 /* cs is a clocksource to be watched. */
5d8b34fd 328 list_add(&cs->wd_list, &watchdog_list);
fb63a0eb 329 cs->flags &= ~CLOCK_SOURCE_WATCHDOG;
948ac6d7 330 } else {
fb63a0eb 331 /* cs is a watchdog. */
948ac6d7 332 if (cs->flags & CLOCK_SOURCE_IS_CONTINUOUS)
5d8b34fd 333 cs->flags |= CLOCK_SOURCE_VALID_FOR_HRES;
bbf66d89
VK
334 }
335 spin_unlock_irqrestore(&watchdog_lock, flags);
336}
337
338static void clocksource_select_watchdog(bool fallback)
339{
340 struct clocksource *cs, *old_wd;
341 unsigned long flags;
342
343 spin_lock_irqsave(&watchdog_lock, flags);
344 /* save current watchdog */
345 old_wd = watchdog;
346 if (fallback)
347 watchdog = NULL;
348
349 list_for_each_entry(cs, &clocksource_list, list) {
350 /* cs is a clocksource to be watched. */
351 if (cs->flags & CLOCK_SOURCE_MUST_VERIFY)
352 continue;
353
354 /* Skip current if we were requested for a fallback. */
355 if (fallback && cs == old_wd)
356 continue;
357
fb63a0eb 358 /* Pick the best watchdog. */
bbf66d89 359 if (!watchdog || cs->rating > watchdog->rating)
5d8b34fd 360 watchdog = cs;
5d8b34fd 361 }
bbf66d89
VK
362 /* If we failed to find a fallback restore the old one. */
363 if (!watchdog)
364 watchdog = old_wd;
365
366 /* If we changed the watchdog we need to reset cycles. */
367 if (watchdog != old_wd)
368 clocksource_reset_watchdog();
369
fb63a0eb
MS
370 /* Check if the watchdog timer needs to be started. */
371 clocksource_start_watchdog();
5d8b34fd
TG
372 spin_unlock_irqrestore(&watchdog_lock, flags);
373}
fb63a0eb
MS
374
375static void clocksource_dequeue_watchdog(struct clocksource *cs)
376{
fb63a0eb
MS
377 unsigned long flags;
378
379 spin_lock_irqsave(&watchdog_lock, flags);
a89c7edb
TG
380 if (cs != watchdog) {
381 if (cs->flags & CLOCK_SOURCE_MUST_VERIFY) {
382 /* cs is a watched clocksource. */
383 list_del_init(&cs->wd_list);
384 /* Check if the watchdog timer needs to be stopped. */
385 clocksource_stop_watchdog();
fb63a0eb
MS
386 }
387 }
fb63a0eb
MS
388 spin_unlock_irqrestore(&watchdog_lock, flags);
389}
390
332962f2 391static int __clocksource_watchdog_kthread(void)
c55c87c8
MS
392{
393 struct clocksource *cs, *tmp;
394 unsigned long flags;
6ea41d25 395 LIST_HEAD(unstable);
332962f2 396 int select = 0;
c55c87c8
MS
397
398 spin_lock_irqsave(&watchdog_lock, flags);
332962f2 399 list_for_each_entry_safe(cs, tmp, &watchdog_list, wd_list) {
c55c87c8
MS
400 if (cs->flags & CLOCK_SOURCE_UNSTABLE) {
401 list_del_init(&cs->wd_list);
6ea41d25 402 list_add(&cs->wd_list, &unstable);
332962f2
TG
403 select = 1;
404 }
405 if (cs->flags & CLOCK_SOURCE_RESELECT) {
406 cs->flags &= ~CLOCK_SOURCE_RESELECT;
407 select = 1;
c55c87c8 408 }
332962f2 409 }
c55c87c8
MS
410 /* Check if the watchdog timer needs to be stopped. */
411 clocksource_stop_watchdog();
6ea41d25
TG
412 spin_unlock_irqrestore(&watchdog_lock, flags);
413
414 /* Needs to be done outside of watchdog lock */
415 list_for_each_entry_safe(cs, tmp, &unstable, wd_list) {
416 list_del_init(&cs->wd_list);
d0981a1b 417 __clocksource_change_rating(cs, 0);
6ea41d25 418 }
332962f2
TG
419 return select;
420}
421
422static int clocksource_watchdog_kthread(void *data)
423{
424 mutex_lock(&clocksource_mutex);
425 if (__clocksource_watchdog_kthread())
426 clocksource_select();
d0981a1b 427 mutex_unlock(&clocksource_mutex);
01548f4d 428 return 0;
c55c87c8
MS
429}
430
7eaeb343
TG
431static bool clocksource_is_watchdog(struct clocksource *cs)
432{
433 return cs == watchdog;
434}
435
fb63a0eb
MS
436#else /* CONFIG_CLOCKSOURCE_WATCHDOG */
437
438static void clocksource_enqueue_watchdog(struct clocksource *cs)
5d8b34fd
TG
439{
440 if (cs->flags & CLOCK_SOURCE_IS_CONTINUOUS)
441 cs->flags |= CLOCK_SOURCE_VALID_FOR_HRES;
442}
b52f52a0 443
bbf66d89 444static void clocksource_select_watchdog(bool fallback) { }
fb63a0eb 445static inline void clocksource_dequeue_watchdog(struct clocksource *cs) { }
b52f52a0 446static inline void clocksource_resume_watchdog(void) { }
332962f2 447static inline int __clocksource_watchdog_kthread(void) { return 0; }
7eaeb343 448static bool clocksource_is_watchdog(struct clocksource *cs) { return false; }
397bbf6d 449void clocksource_mark_unstable(struct clocksource *cs) { }
fb63a0eb
MS
450
451#endif /* CONFIG_CLOCKSOURCE_WATCHDOG */
5d8b34fd 452
c54a42b1
MD
453/**
454 * clocksource_suspend - suspend the clocksource(s)
455 */
456void clocksource_suspend(void)
457{
458 struct clocksource *cs;
459
460 list_for_each_entry_reverse(cs, &clocksource_list, list)
461 if (cs->suspend)
462 cs->suspend(cs);
463}
464
b52f52a0
TG
465/**
466 * clocksource_resume - resume the clocksource(s)
467 */
468void clocksource_resume(void)
469{
2e197586 470 struct clocksource *cs;
b52f52a0 471
75c5158f 472 list_for_each_entry(cs, &clocksource_list, list)
b52f52a0 473 if (cs->resume)
17622339 474 cs->resume(cs);
b52f52a0
TG
475
476 clocksource_resume_watchdog();
b52f52a0
TG
477}
478
7c3078b6
JW
479/**
480 * clocksource_touch_watchdog - Update watchdog
481 *
482 * Update the watchdog after exception contexts such as kgdb so as not
7b7422a5
TG
483 * to incorrectly trip the watchdog. This might fail when the kernel
484 * was stopped in code which holds watchdog_lock.
7c3078b6
JW
485 */
486void clocksource_touch_watchdog(void)
487{
488 clocksource_resume_watchdog();
489}
490
d65670a7
JS
491/**
492 * clocksource_max_adjustment- Returns max adjustment amount
493 * @cs: Pointer to clocksource
494 *
495 */
496static u32 clocksource_max_adjustment(struct clocksource *cs)
497{
498 u64 ret;
499 /*
88b28adf 500 * We won't try to correct for more than 11% adjustments (110,000 ppm),
d65670a7
JS
501 */
502 ret = (u64)cs->mult * 11;
503 do_div(ret,100);
504 return (u32)ret;
505}
506
98962465 507/**
87d8b9eb
SB
508 * clocks_calc_max_nsecs - Returns maximum nanoseconds that can be converted
509 * @mult: cycle to nanosecond multiplier
510 * @shift: cycle to nanosecond divisor (power of two)
511 * @maxadj: maximum adjustment value to mult (~11%)
512 * @mask: bitmask for two's complement subtraction of non 64 bit counters
fb82fe2f
JS
513 * @max_cyc: maximum cycle value before potential overflow (does not include
514 * any safety margin)
362fde04 515 *
8e56f33f
JS
516 * NOTE: This function includes a safety margin of 50%, in other words, we
517 * return half the number of nanoseconds the hardware counter can technically
518 * cover. This is done so that we can potentially detect problems caused by
519 * delayed timers or bad hardware, which might result in time intervals that
571af55a 520 * are larger than what the math used can handle without overflows.
98962465 521 */
fb82fe2f 522u64 clocks_calc_max_nsecs(u32 mult, u32 shift, u32 maxadj, u64 mask, u64 *max_cyc)
98962465
JH
523{
524 u64 max_nsecs, max_cycles;
525
526 /*
527 * Calculate the maximum number of cycles that we can pass to the
6086e346 528 * cyc2ns() function without overflowing a 64-bit result.
98962465 529 */
6086e346
JS
530 max_cycles = ULLONG_MAX;
531 do_div(max_cycles, mult+maxadj);
98962465
JH
532
533 /*
534 * The actual maximum number of cycles we can defer the clocksource is
87d8b9eb 535 * determined by the minimum of max_cycles and mask.
d65670a7
JS
536 * Note: Here we subtract the maxadj to make sure we don't sleep for
537 * too long if there's a large negative adjustment.
98962465 538 */
87d8b9eb
SB
539 max_cycles = min(max_cycles, mask);
540 max_nsecs = clocksource_cyc2ns(max_cycles, mult - maxadj, shift);
541
fb82fe2f
JS
542 /* return the max_cycles value as well if requested */
543 if (max_cyc)
544 *max_cyc = max_cycles;
545
362fde04
JS
546 /* Return 50% of the actual maximum, so we can detect bad values */
547 max_nsecs >>= 1;
548
87d8b9eb
SB
549 return max_nsecs;
550}
551
552/**
fb82fe2f
JS
553 * clocksource_update_max_deferment - Updates the clocksource max_idle_ns & max_cycles
554 * @cs: Pointer to clocksource to be updated
87d8b9eb
SB
555 *
556 */
fb82fe2f 557static inline void clocksource_update_max_deferment(struct clocksource *cs)
87d8b9eb 558{
fb82fe2f
JS
559 cs->max_idle_ns = clocks_calc_max_nsecs(cs->mult, cs->shift,
560 cs->maxadj, cs->mask,
561 &cs->max_cycles);
98962465
JH
562}
563
592913ec 564#ifndef CONFIG_ARCH_USES_GETTIMEOFFSET
734efb46 565
f5a2e343 566static struct clocksource *clocksource_find_best(bool oneshot, bool skipcur)
5d33b883
TG
567{
568 struct clocksource *cs;
569
570 if (!finished_booting || list_empty(&clocksource_list))
571 return NULL;
572
573 /*
574 * We pick the clocksource with the highest rating. If oneshot
575 * mode is active, we pick the highres valid clocksource with
576 * the best rating.
577 */
578 list_for_each_entry(cs, &clocksource_list, list) {
f5a2e343
TG
579 if (skipcur && cs == curr_clocksource)
580 continue;
5d33b883
TG
581 if (oneshot && !(cs->flags & CLOCK_SOURCE_VALID_FOR_HRES))
582 continue;
583 return cs;
584 }
585 return NULL;
586}
587
f5a2e343 588static void __clocksource_select(bool skipcur)
734efb46 589{
5d33b883 590 bool oneshot = tick_oneshot_mode_active();
f1b82746 591 struct clocksource *best, *cs;
5d8b34fd 592
5d33b883 593 /* Find the best suitable clocksource */
f5a2e343 594 best = clocksource_find_best(oneshot, skipcur);
5d33b883 595 if (!best)
f1b82746 596 return;
5d33b883 597
f1b82746
MS
598 /* Check for the override clocksource. */
599 list_for_each_entry(cs, &clocksource_list, list) {
f5a2e343
TG
600 if (skipcur && cs == curr_clocksource)
601 continue;
f1b82746
MS
602 if (strcmp(cs->name, override_name) != 0)
603 continue;
604 /*
605 * Check to make sure we don't switch to a non-highres
606 * capable clocksource if the tick code is in oneshot
607 * mode (highres or nohz)
608 */
5d33b883 609 if (!(cs->flags & CLOCK_SOURCE_VALID_FOR_HRES) && oneshot) {
f1b82746 610 /* Override clocksource cannot be used. */
36374583
KW
611 if (cs->flags & CLOCK_SOURCE_UNSTABLE) {
612 pr_warn("Override clocksource %s is unstable and not HRT compatible - cannot switch while in HRT/NOHZ mode\n",
613 cs->name);
614 override_name[0] = 0;
615 } else {
616 /*
617 * The override cannot be currently verified.
618 * Deferring to let the watchdog check.
619 */
620 pr_info("Override clocksource %s is not currently HRT compatible - deferring\n",
621 cs->name);
622 }
f1b82746
MS
623 } else
624 /* Override clocksource can be used. */
625 best = cs;
626 break;
627 }
ba919d1c
TG
628
629 if (curr_clocksource != best && !timekeeping_notify(best)) {
630 pr_info("Switched to clocksource %s\n", best->name);
75c5158f 631 curr_clocksource = best;
75c5158f 632 }
f1b82746 633}
734efb46 634
f5a2e343
TG
635/**
636 * clocksource_select - Select the best clocksource available
637 *
638 * Private function. Must hold clocksource_mutex when called.
639 *
640 * Select the clocksource with the best rating, or the clocksource,
641 * which is selected by userspace override.
642 */
643static void clocksource_select(void)
644{
cfed432d 645 __clocksource_select(false);
f5a2e343
TG
646}
647
7eaeb343
TG
648static void clocksource_select_fallback(void)
649{
cfed432d 650 __clocksource_select(true);
7eaeb343
TG
651}
652
592913ec 653#else /* !CONFIG_ARCH_USES_GETTIMEOFFSET */
54a6bc0b 654static inline void clocksource_select(void) { }
1eaff672 655static inline void clocksource_select_fallback(void) { }
54a6bc0b
TG
656
657#endif
658
75c5158f
MS
659/*
660 * clocksource_done_booting - Called near the end of core bootup
661 *
662 * Hack to avoid lots of clocksource churn at boot time.
663 * We use fs_initcall because we want this to start before
664 * device_initcall but after subsys_initcall.
665 */
666static int __init clocksource_done_booting(void)
667{
ad6759fb
JS
668 mutex_lock(&clocksource_mutex);
669 curr_clocksource = clocksource_default_clock();
75c5158f 670 finished_booting = 1;
54a6bc0b
TG
671 /*
672 * Run the watchdog first to eliminate unstable clock sources
673 */
332962f2 674 __clocksource_watchdog_kthread();
75c5158f 675 clocksource_select();
e6c73305 676 mutex_unlock(&clocksource_mutex);
75c5158f
MS
677 return 0;
678}
679fs_initcall(clocksource_done_booting);
680
92c7e002
TG
681/*
682 * Enqueue the clocksource sorted by rating
734efb46 683 */
f1b82746 684static void clocksource_enqueue(struct clocksource *cs)
734efb46 685{
f1b82746
MS
686 struct list_head *entry = &clocksource_list;
687 struct clocksource *tmp;
92c7e002 688
0fb71d34 689 list_for_each_entry(tmp, &clocksource_list, list) {
92c7e002 690 /* Keep track of the place, where to insert */
0fb71d34
MH
691 if (tmp->rating < cs->rating)
692 break;
693 entry = &tmp->list;
694 }
f1b82746 695 list_add(&cs->list, entry);
734efb46
JS
696}
697
d7e81c26 698/**
fba9e072 699 * __clocksource_update_freq_scale - Used update clocksource with new freq
b1b73d09 700 * @cs: clocksource to be registered
d7e81c26
JS
701 * @scale: Scale factor multiplied against freq to get clocksource hz
702 * @freq: clocksource frequency (cycles per second) divided by scale
703 *
852db46d 704 * This should only be called from the clocksource->enable() method.
d7e81c26
JS
705 *
706 * This *SHOULD NOT* be called directly! Please use the
fba9e072
JS
707 * __clocksource_update_freq_hz() or __clocksource_update_freq_khz() helper
708 * functions.
d7e81c26 709 */
fba9e072 710void __clocksource_update_freq_scale(struct clocksource *cs, u32 scale, u32 freq)
d7e81c26 711{
c0e299b1 712 u64 sec;
f8935983 713
d7e81c26 714 /*
f8935983
JS
715 * Default clocksources are *special* and self-define their mult/shift.
716 * But, you're not special, so you should specify a freq value.
d7e81c26 717 */
f8935983
JS
718 if (freq) {
719 /*
720 * Calc the maximum number of seconds which we can run before
721 * wrapping around. For clocksources which have a mask > 32-bit
722 * we need to limit the max sleep time to have a good
723 * conversion precision. 10 minutes is still a reasonable
724 * amount. That results in a shift value of 24 for a
725 * clocksource with mask >= 40-bit and f >= 4GHz. That maps to
726 * ~ 0.06ppm granularity for NTP.
727 */
728 sec = cs->mask;
729 do_div(sec, freq);
730 do_div(sec, scale);
731 if (!sec)
732 sec = 1;
733 else if (sec > 600 && cs->mask > UINT_MAX)
734 sec = 600;
735
736 clocks_calc_mult_shift(&cs->mult, &cs->shift, freq,
737 NSEC_PER_SEC / scale, sec * scale);
738 }
d65670a7 739 /*
362fde04
JS
740 * Ensure clocksources that have large 'mult' values don't overflow
741 * when adjusted.
d65670a7
JS
742 */
743 cs->maxadj = clocksource_max_adjustment(cs);
f8935983
JS
744 while (freq && ((cs->mult + cs->maxadj < cs->mult)
745 || (cs->mult - cs->maxadj > cs->mult))) {
d65670a7
JS
746 cs->mult >>= 1;
747 cs->shift--;
748 cs->maxadj = clocksource_max_adjustment(cs);
749 }
750
f8935983
JS
751 /*
752 * Only warn for *special* clocksources that self-define
753 * their mult/shift values and don't specify a freq.
754 */
755 WARN_ONCE(cs->mult + cs->maxadj < cs->mult,
756 "timekeeping: Clocksource %s might overflow on 11%% adjustment\n",
757 cs->name);
758
fb82fe2f 759 clocksource_update_max_deferment(cs);
8cc8c525 760
45bbfe64
JP
761 pr_info("%s: mask: 0x%llx max_cycles: 0x%llx, max_idle_ns: %lld ns\n",
762 cs->name, cs->mask, cs->max_cycles, cs->max_idle_ns);
852db46d 763}
fba9e072 764EXPORT_SYMBOL_GPL(__clocksource_update_freq_scale);
852db46d
JS
765
766/**
767 * __clocksource_register_scale - Used to install new clocksources
b1b73d09 768 * @cs: clocksource to be registered
852db46d
JS
769 * @scale: Scale factor multiplied against freq to get clocksource hz
770 * @freq: clocksource frequency (cycles per second) divided by scale
771 *
772 * Returns -EBUSY if registration fails, zero otherwise.
773 *
774 * This *SHOULD NOT* be called directly! Please use the
775 * clocksource_register_hz() or clocksource_register_khz helper functions.
776 */
777int __clocksource_register_scale(struct clocksource *cs, u32 scale, u32 freq)
778{
779
b595076a 780 /* Initialize mult/shift and max_idle_ns */
fba9e072 781 __clocksource_update_freq_scale(cs, scale, freq);
d7e81c26 782
be278e98 783 /* Add clocksource to the clocksource list */
d7e81c26
JS
784 mutex_lock(&clocksource_mutex);
785 clocksource_enqueue(cs);
d7e81c26 786 clocksource_enqueue_watchdog(cs);
e05b2efb 787 clocksource_select();
bbf66d89 788 clocksource_select_watchdog(false);
d7e81c26
JS
789 mutex_unlock(&clocksource_mutex);
790 return 0;
791}
792EXPORT_SYMBOL_GPL(__clocksource_register_scale);
793
d0981a1b
TG
794static void __clocksource_change_rating(struct clocksource *cs, int rating)
795{
796 list_del(&cs->list);
797 cs->rating = rating;
798 clocksource_enqueue(cs);
d0981a1b
TG
799}
800
734efb46 801/**
92c7e002 802 * clocksource_change_rating - Change the rating of a registered clocksource
b1b73d09
KK
803 * @cs: clocksource to be changed
804 * @rating: new rating
734efb46 805 */
92c7e002 806void clocksource_change_rating(struct clocksource *cs, int rating)
734efb46 807{
75c5158f 808 mutex_lock(&clocksource_mutex);
d0981a1b 809 __clocksource_change_rating(cs, rating);
332962f2 810 clocksource_select();
bbf66d89 811 clocksource_select_watchdog(false);
75c5158f 812 mutex_unlock(&clocksource_mutex);
734efb46 813}
fb63a0eb 814EXPORT_SYMBOL(clocksource_change_rating);
734efb46 815
7eaeb343
TG
816/*
817 * Unbind clocksource @cs. Called with clocksource_mutex held
818 */
819static int clocksource_unbind(struct clocksource *cs)
820{
bbf66d89
VK
821 if (clocksource_is_watchdog(cs)) {
822 /* Select and try to install a replacement watchdog. */
823 clocksource_select_watchdog(true);
824 if (clocksource_is_watchdog(cs))
825 return -EBUSY;
826 }
7eaeb343
TG
827
828 if (cs == curr_clocksource) {
829 /* Select and try to install a replacement clock source */
830 clocksource_select_fallback();
831 if (curr_clocksource == cs)
832 return -EBUSY;
833 }
834 clocksource_dequeue_watchdog(cs);
835 list_del_init(&cs->list);
836 return 0;
837}
838
4713e22c
TG
839/**
840 * clocksource_unregister - remove a registered clocksource
b1b73d09 841 * @cs: clocksource to be unregistered
4713e22c 842 */
a89c7edb 843int clocksource_unregister(struct clocksource *cs)
4713e22c 844{
a89c7edb
TG
845 int ret = 0;
846
75c5158f 847 mutex_lock(&clocksource_mutex);
a89c7edb
TG
848 if (!list_empty(&cs->list))
849 ret = clocksource_unbind(cs);
75c5158f 850 mutex_unlock(&clocksource_mutex);
a89c7edb 851 return ret;
4713e22c 852}
fb63a0eb 853EXPORT_SYMBOL(clocksource_unregister);
4713e22c 854
2b013700 855#ifdef CONFIG_SYSFS
734efb46
JS
856/**
857 * sysfs_show_current_clocksources - sysfs interface for current clocksource
858 * @dev: unused
b1b73d09 859 * @attr: unused
734efb46
JS
860 * @buf: char buffer to be filled with clocksource list
861 *
862 * Provides sysfs interface for listing current clocksource.
863 */
864static ssize_t
d369a5d8
KS
865sysfs_show_current_clocksources(struct device *dev,
866 struct device_attribute *attr, char *buf)
734efb46 867{
5e2cb101 868 ssize_t count = 0;
734efb46 869
75c5158f 870 mutex_lock(&clocksource_mutex);
5e2cb101 871 count = snprintf(buf, PAGE_SIZE, "%s\n", curr_clocksource->name);
75c5158f 872 mutex_unlock(&clocksource_mutex);
734efb46 873
5e2cb101 874 return count;
734efb46
JS
875}
876
891292a7 877ssize_t sysfs_get_uname(const char *buf, char *dst, size_t cnt)
29b54078
TG
878{
879 size_t ret = cnt;
880
881 /* strings from sysfs write are not 0 terminated! */
882 if (!cnt || cnt >= CS_NAME_LEN)
883 return -EINVAL;
884
885 /* strip of \n: */
886 if (buf[cnt-1] == '\n')
887 cnt--;
888 if (cnt > 0)
889 memcpy(dst, buf, cnt);
890 dst[cnt] = 0;
891 return ret;
892}
893
734efb46
JS
894/**
895 * sysfs_override_clocksource - interface for manually overriding clocksource
896 * @dev: unused
b1b73d09 897 * @attr: unused
734efb46
JS
898 * @buf: name of override clocksource
899 * @count: length of buffer
900 *
901 * Takes input from sysfs interface for manually overriding the default
b71a8eb0 902 * clocksource selection.
734efb46 903 */
d369a5d8
KS
904static ssize_t sysfs_override_clocksource(struct device *dev,
905 struct device_attribute *attr,
734efb46
JS
906 const char *buf, size_t count)
907{
233bcb41 908 ssize_t ret;
734efb46 909
75c5158f 910 mutex_lock(&clocksource_mutex);
734efb46 911
03e13cf5 912 ret = sysfs_get_uname(buf, override_name, count);
29b54078
TG
913 if (ret >= 0)
914 clocksource_select();
734efb46 915
75c5158f 916 mutex_unlock(&clocksource_mutex);
734efb46
JS
917
918 return ret;
919}
920
7eaeb343
TG
921/**
922 * sysfs_unbind_current_clocksource - interface for manually unbinding clocksource
923 * @dev: unused
924 * @attr: unused
925 * @buf: unused
926 * @count: length of buffer
927 *
928 * Takes input from sysfs interface for manually unbinding a clocksource.
929 */
930static ssize_t sysfs_unbind_clocksource(struct device *dev,
931 struct device_attribute *attr,
932 const char *buf, size_t count)
933{
934 struct clocksource *cs;
935 char name[CS_NAME_LEN];
233bcb41 936 ssize_t ret;
7eaeb343 937
03e13cf5 938 ret = sysfs_get_uname(buf, name, count);
7eaeb343
TG
939 if (ret < 0)
940 return ret;
941
942 ret = -ENODEV;
943 mutex_lock(&clocksource_mutex);
944 list_for_each_entry(cs, &clocksource_list, list) {
945 if (strcmp(cs->name, name))
946 continue;
947 ret = clocksource_unbind(cs);
948 break;
949 }
950 mutex_unlock(&clocksource_mutex);
951
952 return ret ? ret : count;
953}
954
734efb46
JS
955/**
956 * sysfs_show_available_clocksources - sysfs interface for listing clocksource
957 * @dev: unused
b1b73d09 958 * @attr: unused
734efb46
JS
959 * @buf: char buffer to be filled with clocksource list
960 *
961 * Provides sysfs interface for listing registered clocksources
962 */
963static ssize_t
d369a5d8
KS
964sysfs_show_available_clocksources(struct device *dev,
965 struct device_attribute *attr,
4a0b2b4d 966 char *buf)
734efb46 967{
2e197586 968 struct clocksource *src;
5e2cb101 969 ssize_t count = 0;
734efb46 970
75c5158f 971 mutex_lock(&clocksource_mutex);
2e197586 972 list_for_each_entry(src, &clocksource_list, list) {
cd6d95d8
TG
973 /*
974 * Don't show non-HRES clocksource if the tick code is
975 * in one shot mode (highres=on or nohz=on)
976 */
977 if (!tick_oneshot_mode_active() ||
978 (src->flags & CLOCK_SOURCE_VALID_FOR_HRES))
3f68535a 979 count += snprintf(buf + count,
5e2cb101
MX
980 max((ssize_t)PAGE_SIZE - count, (ssize_t)0),
981 "%s ", src->name);
734efb46 982 }
75c5158f 983 mutex_unlock(&clocksource_mutex);
734efb46 984
5e2cb101
MX
985 count += snprintf(buf + count,
986 max((ssize_t)PAGE_SIZE - count, (ssize_t)0), "\n");
734efb46 987
5e2cb101 988 return count;
734efb46
JS
989}
990
991/*
992 * Sysfs setup bits:
993 */
d369a5d8 994static DEVICE_ATTR(current_clocksource, 0644, sysfs_show_current_clocksources,
f5f1a24a 995 sysfs_override_clocksource);
734efb46 996
7eaeb343
TG
997static DEVICE_ATTR(unbind_clocksource, 0200, NULL, sysfs_unbind_clocksource);
998
d369a5d8 999static DEVICE_ATTR(available_clocksource, 0444,
f5f1a24a 1000 sysfs_show_available_clocksources, NULL);
734efb46 1001
d369a5d8 1002static struct bus_type clocksource_subsys = {
af5ca3f4 1003 .name = "clocksource",
d369a5d8 1004 .dev_name = "clocksource",
734efb46
JS
1005};
1006
d369a5d8 1007static struct device device_clocksource = {
734efb46 1008 .id = 0,
d369a5d8 1009 .bus = &clocksource_subsys,
734efb46
JS
1010};
1011
ad596171 1012static int __init init_clocksource_sysfs(void)
734efb46 1013{
d369a5d8 1014 int error = subsys_system_register(&clocksource_subsys, NULL);
734efb46
JS
1015
1016 if (!error)
d369a5d8 1017 error = device_register(&device_clocksource);
734efb46 1018 if (!error)
d369a5d8 1019 error = device_create_file(
734efb46 1020 &device_clocksource,
d369a5d8 1021 &dev_attr_current_clocksource);
7eaeb343
TG
1022 if (!error)
1023 error = device_create_file(&device_clocksource,
1024 &dev_attr_unbind_clocksource);
734efb46 1025 if (!error)
d369a5d8 1026 error = device_create_file(
734efb46 1027 &device_clocksource,
d369a5d8 1028 &dev_attr_available_clocksource);
734efb46
JS
1029 return error;
1030}
1031
1032device_initcall(init_clocksource_sysfs);
2b013700 1033#endif /* CONFIG_SYSFS */
734efb46
JS
1034
1035/**
1036 * boot_override_clocksource - boot clock override
1037 * @str: override name
1038 *
1039 * Takes a clocksource= boot argument and uses it
1040 * as the clocksource override name.
1041 */
1042static int __init boot_override_clocksource(char* str)
1043{
75c5158f 1044 mutex_lock(&clocksource_mutex);
734efb46
JS
1045 if (str)
1046 strlcpy(override_name, str, sizeof(override_name));
75c5158f 1047 mutex_unlock(&clocksource_mutex);
734efb46
JS
1048 return 1;
1049}
1050
1051__setup("clocksource=", boot_override_clocksource);
1052
1053/**
1054 * boot_override_clock - Compatibility layer for deprecated boot option
1055 * @str: override name
1056 *
1057 * DEPRECATED! Takes a clock= boot argument and uses it
1058 * as the clocksource override name
1059 */
1060static int __init boot_override_clock(char* str)
1061{
5d0cf410 1062 if (!strcmp(str, "pmtmr")) {
45bbfe64 1063 pr_warn("clock=pmtmr is deprecated - use clocksource=acpi_pm\n");
5d0cf410
JS
1064 return boot_override_clocksource("acpi_pm");
1065 }
45bbfe64 1066 pr_warn("clock= boot option is deprecated - use clocksource=xyz\n");
734efb46
JS
1067 return boot_override_clocksource(str);
1068}
1069
1070__setup("clock=", boot_override_clock);