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john stultz4c7ee8d2006-09-30 23:28:22 -07001/*
john stultz4c7ee8d2006-09-30 23:28:22 -07002 * NTP state machine interfaces and logic.
3 *
4 * This code was mainly moved from kernel/timer.c and kernel/time.c
5 * Please see those files for relevant copyright info and historical
6 * changelogs.
7 */
Alexey Dobriyanaa0ac362007-07-15 23:40:39 -07008#include <linux/capability.h>
Roman Zippel7dffa3c2008-05-01 04:34:41 -07009#include <linux/clocksource.h>
Maciej W. Rozyckieb3f9382008-09-22 14:42:40 -070010#include <linux/workqueue.h>
Ingo Molnar53bbfa92008-02-20 07:58:42 +010011#include <linux/hrtimer.h>
12#include <linux/jiffies.h>
13#include <linux/math64.h>
14#include <linux/timex.h>
15#include <linux/time.h>
16#include <linux/mm.h>
Alexander Gordeev025b40a2011-01-12 17:00:56 -080017#include <linux/module.h>
Jason Gunthorpe023f3332012-12-17 14:30:53 -070018#include <linux/rtc.h>
john stultz4c7ee8d2006-09-30 23:28:22 -070019
Torben Hohne2830b52011-01-27 16:00:32 +010020#include "tick-internal.h"
John Stultzaa6f9c592013-03-22 11:31:29 -070021#include "ntp_internal.h"
Torben Hohne2830b52011-01-27 16:00:32 +010022
Roman Zippelb0ee7552006-09-30 23:28:22 -070023/*
Ingo Molnar53bbfa92008-02-20 07:58:42 +010024 * NTP timekeeping variables:
Roman Zippelb0ee7552006-09-30 23:28:22 -070025 */
Roman Zippelb0ee7552006-09-30 23:28:22 -070026
Thomas Gleixnera6c0c942012-04-10 11:14:55 +020027DEFINE_RAW_SPINLOCK(ntp_lock);
John Stultzbd331262011-11-14 13:48:36 -080028
29
Ingo Molnar53bbfa92008-02-20 07:58:42 +010030/* USER_HZ period (usecs): */
31unsigned long tick_usec = TICK_USEC;
Roman Zippel7dffa3c2008-05-01 04:34:41 -070032
John Stultz02ab20a2012-07-27 14:48:10 -040033/* SHIFTED_HZ period (nsecs): */
Ingo Molnar53bbfa92008-02-20 07:58:42 +010034unsigned long tick_nsec;
35
John Stultzea7cf492011-11-14 13:18:07 -080036static u64 tick_length;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010037static u64 tick_length_base;
38
Ingo Molnarbbd12672009-02-22 12:11:11 +010039#define MAX_TICKADJ 500LL /* usecs */
Ingo Molnar53bbfa92008-02-20 07:58:42 +010040#define MAX_TICKADJ_SCALED \
Ingo Molnarbbd12672009-02-22 12:11:11 +010041 (((MAX_TICKADJ * NSEC_PER_USEC) << NTP_SCALE_SHIFT) / NTP_INTERVAL_FREQ)
john stultz4c7ee8d2006-09-30 23:28:22 -070042
43/*
44 * phase-lock loop variables
45 */
Ingo Molnar53bbfa92008-02-20 07:58:42 +010046
47/*
48 * clock synchronization status
49 *
50 * (TIME_ERROR prevents overwriting the CMOS clock)
51 */
52static int time_state = TIME_OK;
53
54/* clock status bits: */
John Stultz83579292011-11-14 13:06:21 -080055static int time_status = STA_UNSYNC;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010056
Ingo Molnar53bbfa92008-02-20 07:58:42 +010057/* time adjustment (nsecs): */
58static s64 time_offset;
59
60/* pll time constant: */
61static long time_constant = 2;
62
63/* maximum error (usecs): */
john stultz1f5b8f82010-01-28 15:02:41 -080064static long time_maxerror = NTP_PHASE_LIMIT;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010065
66/* estimated error (usecs): */
john stultz1f5b8f82010-01-28 15:02:41 -080067static long time_esterror = NTP_PHASE_LIMIT;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010068
69/* frequency offset (scaled nsecs/secs): */
70static s64 time_freq;
71
72/* time at last adjustment (secs): */
73static long time_reftime;
74
John Stultze1292ba2010-03-18 20:19:27 -070075static long time_adjust;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010076
Ingo Molnar069569e2009-02-22 16:03:37 +010077/* constant (boot-param configurable) NTP tick adjustment (upscaled) */
78static s64 ntp_tick_adj;
Ingo Molnar53bbfa92008-02-20 07:58:42 +010079
Alexander Gordeev025b40a2011-01-12 17:00:56 -080080#ifdef CONFIG_NTP_PPS
81
82/*
83 * The following variables are used when a pulse-per-second (PPS) signal
84 * is available. They establish the engineering parameters of the clock
85 * discipline loop when controlled by the PPS signal.
86 */
87#define PPS_VALID 10 /* PPS signal watchdog max (s) */
88#define PPS_POPCORN 4 /* popcorn spike threshold (shift) */
89#define PPS_INTMIN 2 /* min freq interval (s) (shift) */
90#define PPS_INTMAX 8 /* max freq interval (s) (shift) */
91#define PPS_INTCOUNT 4 /* number of consecutive good intervals to
92 increase pps_shift or consecutive bad
93 intervals to decrease it */
94#define PPS_MAXWANDER 100000 /* max PPS freq wander (ns/s) */
95
96static int pps_valid; /* signal watchdog counter */
97static long pps_tf[3]; /* phase median filter */
98static long pps_jitter; /* current jitter (ns) */
99static struct timespec pps_fbase; /* beginning of the last freq interval */
100static int pps_shift; /* current interval duration (s) (shift) */
101static int pps_intcnt; /* interval counter */
102static s64 pps_freq; /* frequency offset (scaled ns/s) */
103static long pps_stabil; /* current stability (scaled ns/s) */
104
105/*
106 * PPS signal quality monitors
107 */
108static long pps_calcnt; /* calibration intervals */
109static long pps_jitcnt; /* jitter limit exceeded */
110static long pps_stbcnt; /* stability limit exceeded */
111static long pps_errcnt; /* calibration errors */
112
113
114/* PPS kernel consumer compensates the whole phase error immediately.
115 * Otherwise, reduce the offset by a fixed factor times the time constant.
116 */
117static inline s64 ntp_offset_chunk(s64 offset)
118{
119 if (time_status & STA_PPSTIME && time_status & STA_PPSSIGNAL)
120 return offset;
121 else
122 return shift_right(offset, SHIFT_PLL + time_constant);
123}
124
125static inline void pps_reset_freq_interval(void)
126{
127 /* the PPS calibration interval may end
128 surprisingly early */
129 pps_shift = PPS_INTMIN;
130 pps_intcnt = 0;
131}
132
133/**
134 * pps_clear - Clears the PPS state variables
135 *
John Stultzbd331262011-11-14 13:48:36 -0800136 * Must be called while holding a write on the ntp_lock
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800137 */
138static inline void pps_clear(void)
139{
140 pps_reset_freq_interval();
141 pps_tf[0] = 0;
142 pps_tf[1] = 0;
143 pps_tf[2] = 0;
144 pps_fbase.tv_sec = pps_fbase.tv_nsec = 0;
145 pps_freq = 0;
146}
147
148/* Decrease pps_valid to indicate that another second has passed since
149 * the last PPS signal. When it reaches 0, indicate that PPS signal is
150 * missing.
151 *
John Stultzbd331262011-11-14 13:48:36 -0800152 * Must be called while holding a write on the ntp_lock
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800153 */
154static inline void pps_dec_valid(void)
155{
156 if (pps_valid > 0)
157 pps_valid--;
158 else {
159 time_status &= ~(STA_PPSSIGNAL | STA_PPSJITTER |
160 STA_PPSWANDER | STA_PPSERROR);
161 pps_clear();
162 }
163}
164
165static inline void pps_set_freq(s64 freq)
166{
167 pps_freq = freq;
168}
169
170static inline int is_error_status(int status)
171{
172 return (time_status & (STA_UNSYNC|STA_CLOCKERR))
173 /* PPS signal lost when either PPS time or
174 * PPS frequency synchronization requested
175 */
176 || ((time_status & (STA_PPSFREQ|STA_PPSTIME))
177 && !(time_status & STA_PPSSIGNAL))
178 /* PPS jitter exceeded when
179 * PPS time synchronization requested */
180 || ((time_status & (STA_PPSTIME|STA_PPSJITTER))
181 == (STA_PPSTIME|STA_PPSJITTER))
182 /* PPS wander exceeded or calibration error when
183 * PPS frequency synchronization requested
184 */
185 || ((time_status & STA_PPSFREQ)
186 && (time_status & (STA_PPSWANDER|STA_PPSERROR)));
187}
188
189static inline void pps_fill_timex(struct timex *txc)
190{
191 txc->ppsfreq = shift_right((pps_freq >> PPM_SCALE_INV_SHIFT) *
192 PPM_SCALE_INV, NTP_SCALE_SHIFT);
193 txc->jitter = pps_jitter;
194 if (!(time_status & STA_NANO))
195 txc->jitter /= NSEC_PER_USEC;
196 txc->shift = pps_shift;
197 txc->stabil = pps_stabil;
198 txc->jitcnt = pps_jitcnt;
199 txc->calcnt = pps_calcnt;
200 txc->errcnt = pps_errcnt;
201 txc->stbcnt = pps_stbcnt;
202}
203
204#else /* !CONFIG_NTP_PPS */
205
206static inline s64 ntp_offset_chunk(s64 offset)
207{
208 return shift_right(offset, SHIFT_PLL + time_constant);
209}
210
211static inline void pps_reset_freq_interval(void) {}
212static inline void pps_clear(void) {}
213static inline void pps_dec_valid(void) {}
214static inline void pps_set_freq(s64 freq) {}
215
216static inline int is_error_status(int status)
217{
218 return status & (STA_UNSYNC|STA_CLOCKERR);
219}
220
221static inline void pps_fill_timex(struct timex *txc)
222{
223 /* PPS is not implemented, so these are zero */
224 txc->ppsfreq = 0;
225 txc->jitter = 0;
226 txc->shift = 0;
227 txc->stabil = 0;
228 txc->jitcnt = 0;
229 txc->calcnt = 0;
230 txc->errcnt = 0;
231 txc->stbcnt = 0;
232}
233
234#endif /* CONFIG_NTP_PPS */
235
John Stultz83579292011-11-14 13:06:21 -0800236
237/**
238 * ntp_synced - Returns 1 if the NTP status is not UNSYNC
239 *
240 */
241static inline int ntp_synced(void)
242{
243 return !(time_status & STA_UNSYNC);
244}
245
246
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100247/*
248 * NTP methods:
249 */
john stultz4c7ee8d2006-09-30 23:28:22 -0700250
Ingo Molnar9ce616a2009-02-22 12:42:59 +0100251/*
252 * Update (tick_length, tick_length_base, tick_nsec), based
253 * on (tick_usec, ntp_tick_adj, time_freq):
254 */
Adrian Bunk70bc42f2006-09-30 23:28:29 -0700255static void ntp_update_frequency(void)
256{
Ingo Molnar9ce616a2009-02-22 12:42:59 +0100257 u64 second_length;
Ingo Molnarbc26c312009-02-22 12:17:36 +0100258 u64 new_base;
Adrian Bunk70bc42f2006-09-30 23:28:29 -0700259
Ingo Molnar9ce616a2009-02-22 12:42:59 +0100260 second_length = (u64)(tick_usec * NSEC_PER_USEC * USER_HZ)
261 << NTP_SCALE_SHIFT;
262
Ingo Molnar069569e2009-02-22 16:03:37 +0100263 second_length += ntp_tick_adj;
Ingo Molnar9ce616a2009-02-22 12:42:59 +0100264 second_length += time_freq;
265
Ingo Molnar9ce616a2009-02-22 12:42:59 +0100266 tick_nsec = div_u64(second_length, HZ) >> NTP_SCALE_SHIFT;
Ingo Molnarbc26c312009-02-22 12:17:36 +0100267 new_base = div_u64(second_length, NTP_INTERVAL_FREQ);
john stultzfdcedf72009-02-18 16:02:22 -0800268
269 /*
270 * Don't wait for the next second_overflow, apply
Ingo Molnarbc26c312009-02-22 12:17:36 +0100271 * the change to the tick length immediately:
john stultzfdcedf72009-02-18 16:02:22 -0800272 */
Ingo Molnarbc26c312009-02-22 12:17:36 +0100273 tick_length += new_base - tick_length_base;
274 tick_length_base = new_base;
Adrian Bunk70bc42f2006-09-30 23:28:29 -0700275}
276
Ingo Molnar478b7aa2009-02-22 13:22:23 +0100277static inline s64 ntp_update_offset_fll(s64 offset64, long secs)
Ingo Molnarf9398902009-02-22 12:57:49 +0100278{
279 time_status &= ~STA_MODE;
280
281 if (secs < MINSEC)
Ingo Molnar478b7aa2009-02-22 13:22:23 +0100282 return 0;
Ingo Molnarf9398902009-02-22 12:57:49 +0100283
284 if (!(time_status & STA_FLL) && (secs <= MAXSEC))
Ingo Molnar478b7aa2009-02-22 13:22:23 +0100285 return 0;
Ingo Molnarf9398902009-02-22 12:57:49 +0100286
Ingo Molnarf9398902009-02-22 12:57:49 +0100287 time_status |= STA_MODE;
288
Sasha Levina078c6d2012-03-15 12:36:14 -0400289 return div64_long(offset64 << (NTP_SCALE_SHIFT - SHIFT_FLL), secs);
Ingo Molnarf9398902009-02-22 12:57:49 +0100290}
291
Roman Zippelee9851b2008-05-01 04:34:32 -0700292static void ntp_update_offset(long offset)
293{
Roman Zippelee9851b2008-05-01 04:34:32 -0700294 s64 freq_adj;
Ingo Molnarf9398902009-02-22 12:57:49 +0100295 s64 offset64;
296 long secs;
Roman Zippelee9851b2008-05-01 04:34:32 -0700297
298 if (!(time_status & STA_PLL))
299 return;
300
Roman Zippeleea83d82008-05-01 04:34:33 -0700301 if (!(time_status & STA_NANO))
Roman Zippel9f14f662008-05-01 04:34:36 -0700302 offset *= NSEC_PER_USEC;
Roman Zippelee9851b2008-05-01 04:34:32 -0700303
304 /*
305 * Scale the phase adjustment and
306 * clamp to the operating range.
307 */
Roman Zippel9f14f662008-05-01 04:34:36 -0700308 offset = min(offset, MAXPHASE);
309 offset = max(offset, -MAXPHASE);
Roman Zippelee9851b2008-05-01 04:34:32 -0700310
311 /*
312 * Select how the frequency is to be controlled
313 * and in which mode (PLL or FLL).
314 */
John Stultz7e1b5842010-01-28 20:20:44 -0800315 secs = get_seconds() - time_reftime;
Ingo Molnar10dd31a2009-02-22 13:38:40 +0100316 if (unlikely(time_status & STA_FREQHOLD))
Ingo Molnarc7986ac2009-02-22 13:29:09 +0100317 secs = 0;
318
John Stultz7e1b5842010-01-28 20:20:44 -0800319 time_reftime = get_seconds();
Roman Zippelee9851b2008-05-01 04:34:32 -0700320
Ingo Molnarf9398902009-02-22 12:57:49 +0100321 offset64 = offset;
Miroslav Lichvar8af3c152010-09-07 16:43:46 +0200322 freq_adj = ntp_update_offset_fll(offset64, secs);
Roman Zippel9f14f662008-05-01 04:34:36 -0700323
Miroslav Lichvar8af3c152010-09-07 16:43:46 +0200324 /*
325 * Clamp update interval to reduce PLL gain with low
326 * sampling rate (e.g. intermittent network connection)
327 * to avoid instability.
328 */
329 if (unlikely(secs > 1 << (SHIFT_PLL + 1 + time_constant)))
330 secs = 1 << (SHIFT_PLL + 1 + time_constant);
331
332 freq_adj += (offset64 * secs) <<
333 (NTP_SCALE_SHIFT - 2 * (SHIFT_PLL + 2 + time_constant));
Ingo Molnarf9398902009-02-22 12:57:49 +0100334
335 freq_adj = min(freq_adj + time_freq, MAXFREQ_SCALED);
336
337 time_freq = max(freq_adj, -MAXFREQ_SCALED);
338
339 time_offset = div_s64(offset64 << NTP_SCALE_SHIFT, NTP_INTERVAL_FREQ);
Roman Zippelee9851b2008-05-01 04:34:32 -0700340}
341
Roman Zippelb0ee7552006-09-30 23:28:22 -0700342/**
343 * ntp_clear - Clears the NTP state variables
Roman Zippelb0ee7552006-09-30 23:28:22 -0700344 */
345void ntp_clear(void)
346{
John Stultzbd331262011-11-14 13:48:36 -0800347 unsigned long flags;
348
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200349 raw_spin_lock_irqsave(&ntp_lock, flags);
John Stultzbd331262011-11-14 13:48:36 -0800350
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100351 time_adjust = 0; /* stop active adjtime() */
352 time_status |= STA_UNSYNC;
353 time_maxerror = NTP_PHASE_LIMIT;
354 time_esterror = NTP_PHASE_LIMIT;
Roman Zippelb0ee7552006-09-30 23:28:22 -0700355
356 ntp_update_frequency();
357
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100358 tick_length = tick_length_base;
359 time_offset = 0;
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800360
361 /* Clear PPS state variables */
362 pps_clear();
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200363 raw_spin_unlock_irqrestore(&ntp_lock, flags);
John Stultzbd331262011-11-14 13:48:36 -0800364
Roman Zippelb0ee7552006-09-30 23:28:22 -0700365}
366
John Stultzea7cf492011-11-14 13:18:07 -0800367
368u64 ntp_tick_length(void)
369{
John Stultzbd331262011-11-14 13:48:36 -0800370 unsigned long flags;
371 s64 ret;
372
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200373 raw_spin_lock_irqsave(&ntp_lock, flags);
John Stultzbd331262011-11-14 13:48:36 -0800374 ret = tick_length;
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200375 raw_spin_unlock_irqrestore(&ntp_lock, flags);
John Stultzbd331262011-11-14 13:48:36 -0800376 return ret;
John Stultzea7cf492011-11-14 13:18:07 -0800377}
378
379
john stultz4c7ee8d2006-09-30 23:28:22 -0700380/*
381 * this routine handles the overflow of the microsecond field
382 *
383 * The tricky bits of code to handle the accurate clock support
384 * were provided by Dave Mills (Mills@UDEL.EDU) of NTP fame.
385 * They were originally developed for SUN and DEC kernels.
386 * All the kudos should go to Dave for this stuff.
John Stultz6b43ae82012-03-15 13:04:03 -0700387 *
388 * Also handles leap second processing, and returns leap offset
john stultz4c7ee8d2006-09-30 23:28:22 -0700389 */
John Stultz6b43ae82012-03-15 13:04:03 -0700390int second_overflow(unsigned long secs)
john stultz4c7ee8d2006-09-30 23:28:22 -0700391{
Ingo Molnar39854fe2009-02-22 16:06:58 +0100392 s64 delta;
John Stultz6b43ae82012-03-15 13:04:03 -0700393 int leap = 0;
John Stultzbd331262011-11-14 13:48:36 -0800394 unsigned long flags;
395
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200396 raw_spin_lock_irqsave(&ntp_lock, flags);
john stultz4c7ee8d2006-09-30 23:28:22 -0700397
John Stultz6b43ae82012-03-15 13:04:03 -0700398 /*
399 * Leap second processing. If in leap-insert state at the end of the
400 * day, the system clock is set back one second; if in leap-delete
401 * state, the system clock is set ahead one second.
402 */
403 switch (time_state) {
404 case TIME_OK:
405 if (time_status & STA_INS)
406 time_state = TIME_INS;
407 else if (time_status & STA_DEL)
408 time_state = TIME_DEL;
409 break;
410 case TIME_INS:
John Stultz6b1859d2012-07-13 01:21:50 -0400411 if (!(time_status & STA_INS))
412 time_state = TIME_OK;
413 else if (secs % 86400 == 0) {
John Stultz6b43ae82012-03-15 13:04:03 -0700414 leap = -1;
415 time_state = TIME_OOP;
416 printk(KERN_NOTICE
417 "Clock: inserting leap second 23:59:60 UTC\n");
418 }
419 break;
420 case TIME_DEL:
John Stultz6b1859d2012-07-13 01:21:50 -0400421 if (!(time_status & STA_DEL))
422 time_state = TIME_OK;
423 else if ((secs + 1) % 86400 == 0) {
John Stultz6b43ae82012-03-15 13:04:03 -0700424 leap = 1;
John Stultz6b43ae82012-03-15 13:04:03 -0700425 time_state = TIME_WAIT;
426 printk(KERN_NOTICE
427 "Clock: deleting leap second 23:59:59 UTC\n");
428 }
429 break;
430 case TIME_OOP:
John Stultz6b43ae82012-03-15 13:04:03 -0700431 time_state = TIME_WAIT;
432 break;
433
434 case TIME_WAIT:
435 if (!(time_status & (STA_INS | STA_DEL)))
436 time_state = TIME_OK;
437 break;
438 }
439
440
john stultz4c7ee8d2006-09-30 23:28:22 -0700441 /* Bump the maxerror field */
Roman Zippel074b3b82008-05-01 04:34:34 -0700442 time_maxerror += MAXFREQ / NSEC_PER_USEC;
john stultz4c7ee8d2006-09-30 23:28:22 -0700443 if (time_maxerror > NTP_PHASE_LIMIT) {
444 time_maxerror = NTP_PHASE_LIMIT;
445 time_status |= STA_UNSYNC;
446 }
447
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800448 /* Compute the phase adjustment for the next second */
Ingo Molnar39854fe2009-02-22 16:06:58 +0100449 tick_length = tick_length_base;
450
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800451 delta = ntp_offset_chunk(time_offset);
Ingo Molnar39854fe2009-02-22 16:06:58 +0100452 time_offset -= delta;
453 tick_length += delta;
john stultz4c7ee8d2006-09-30 23:28:22 -0700454
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800455 /* Check PPS signal */
456 pps_dec_valid();
457
Ingo Molnar3c972c22009-02-22 12:06:57 +0100458 if (!time_adjust)
John Stultzbd331262011-11-14 13:48:36 -0800459 goto out;
Ingo Molnar3c972c22009-02-22 12:06:57 +0100460
461 if (time_adjust > MAX_TICKADJ) {
462 time_adjust -= MAX_TICKADJ;
463 tick_length += MAX_TICKADJ_SCALED;
John Stultzbd331262011-11-14 13:48:36 -0800464 goto out;
john stultz4c7ee8d2006-09-30 23:28:22 -0700465 }
Ingo Molnar3c972c22009-02-22 12:06:57 +0100466
467 if (time_adjust < -MAX_TICKADJ) {
468 time_adjust += MAX_TICKADJ;
469 tick_length -= MAX_TICKADJ_SCALED;
John Stultzbd331262011-11-14 13:48:36 -0800470 goto out;
Ingo Molnar3c972c22009-02-22 12:06:57 +0100471 }
472
473 tick_length += (s64)(time_adjust * NSEC_PER_USEC / NTP_INTERVAL_FREQ)
474 << NTP_SCALE_SHIFT;
475 time_adjust = 0;
John Stultz6b43ae82012-03-15 13:04:03 -0700476
John Stultzbd331262011-11-14 13:48:36 -0800477out:
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200478 raw_spin_unlock_irqrestore(&ntp_lock, flags);
John Stultz6b43ae82012-03-15 13:04:03 -0700479
480 return leap;
john stultz4c7ee8d2006-09-30 23:28:22 -0700481}
482
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700483#if defined(CONFIG_GENERIC_CMOS_UPDATE) || defined(CONFIG_RTC_SYSTOHC)
Maciej W. Rozyckieb3f9382008-09-22 14:42:40 -0700484static void sync_cmos_clock(struct work_struct *work);
Thomas Gleixner82644452007-07-21 04:37:37 -0700485
Maciej W. Rozyckieb3f9382008-09-22 14:42:40 -0700486static DECLARE_DELAYED_WORK(sync_cmos_work, sync_cmos_clock);
Thomas Gleixner82644452007-07-21 04:37:37 -0700487
Maciej W. Rozyckieb3f9382008-09-22 14:42:40 -0700488static void sync_cmos_clock(struct work_struct *work)
john stultz4c7ee8d2006-09-30 23:28:22 -0700489{
Thomas Gleixner82644452007-07-21 04:37:37 -0700490 struct timespec now, next;
491 int fail = 1;
492
493 /*
494 * If we have an externally synchronized Linux clock, then update
495 * CMOS clock accordingly every ~11 minutes. Set_rtc_mmss() has to be
496 * called as close as possible to 500 ms before the new second starts.
497 * This code is run on a timer. If the clock is set, that timer
498 * may not expire at the correct time. Thus, we adjust...
499 */
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100500 if (!ntp_synced()) {
Thomas Gleixner82644452007-07-21 04:37:37 -0700501 /*
502 * Not synced, exit, do not restart a timer (if one is
503 * running, let it run out).
504 */
505 return;
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100506 }
Thomas Gleixner82644452007-07-21 04:37:37 -0700507
508 getnstimeofday(&now);
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700509 if (abs(now.tv_nsec - (NSEC_PER_SEC / 2)) <= tick_nsec / 2) {
Prarit Bhargava84e345e2013-02-08 17:59:53 -0500510 struct timespec adjust = now;
511
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700512 fail = -ENODEV;
Prarit Bhargava84e345e2013-02-08 17:59:53 -0500513 if (persistent_clock_is_local)
514 adjust.tv_sec -= (sys_tz.tz_minuteswest * 60);
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700515#ifdef CONFIG_GENERIC_CMOS_UPDATE
Prarit Bhargava84e345e2013-02-08 17:59:53 -0500516 fail = update_persistent_clock(adjust);
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700517#endif
518#ifdef CONFIG_RTC_SYSTOHC
519 if (fail == -ENODEV)
Prarit Bhargava84e345e2013-02-08 17:59:53 -0500520 fail = rtc_set_ntp_time(adjust);
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700521#endif
522 }
Thomas Gleixner82644452007-07-21 04:37:37 -0700523
Maciej W. Rozycki4ff4b9e2008-09-05 14:05:31 -0700524 next.tv_nsec = (NSEC_PER_SEC / 2) - now.tv_nsec - (TICK_NSEC / 2);
Thomas Gleixner82644452007-07-21 04:37:37 -0700525 if (next.tv_nsec <= 0)
526 next.tv_nsec += NSEC_PER_SEC;
527
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700528 if (!fail || fail == -ENODEV)
Thomas Gleixner82644452007-07-21 04:37:37 -0700529 next.tv_sec = 659;
530 else
531 next.tv_sec = 0;
532
533 if (next.tv_nsec >= NSEC_PER_SEC) {
534 next.tv_sec++;
535 next.tv_nsec -= NSEC_PER_SEC;
536 }
Maciej W. Rozyckieb3f9382008-09-22 14:42:40 -0700537 schedule_delayed_work(&sync_cmos_work, timespec_to_jiffies(&next));
john stultz4c7ee8d2006-09-30 23:28:22 -0700538}
539
Thomas Gleixner82644452007-07-21 04:37:37 -0700540static void notify_cmos_timer(void)
541{
Cesar Eduardo Barros335dd852012-02-11 17:54:59 -0200542 schedule_delayed_work(&sync_cmos_work, 0);
Thomas Gleixner82644452007-07-21 04:37:37 -0700543}
544
545#else
546static inline void notify_cmos_timer(void) { }
547#endif
548
Ingo Molnar80f22572009-02-22 15:15:32 +0100549
550/*
551 * Propagate a new txc->status value into the NTP state:
552 */
553static inline void process_adj_status(struct timex *txc, struct timespec *ts)
554{
Ingo Molnar80f22572009-02-22 15:15:32 +0100555 if ((time_status & STA_PLL) && !(txc->status & STA_PLL)) {
556 time_state = TIME_OK;
557 time_status = STA_UNSYNC;
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800558 /* restart PPS frequency calibration */
559 pps_reset_freq_interval();
Ingo Molnar80f22572009-02-22 15:15:32 +0100560 }
Ingo Molnar80f22572009-02-22 15:15:32 +0100561
562 /*
563 * If we turn on PLL adjustments then reset the
564 * reference time to current time.
565 */
566 if (!(time_status & STA_PLL) && (txc->status & STA_PLL))
John Stultz7e1b5842010-01-28 20:20:44 -0800567 time_reftime = get_seconds();
Ingo Molnar80f22572009-02-22 15:15:32 +0100568
John Stultza2a5ac82009-02-26 09:46:14 -0800569 /* only set allowed bits */
570 time_status &= STA_RONLY;
Ingo Molnar80f22572009-02-22 15:15:32 +0100571 time_status |= txc->status & ~STA_RONLY;
Ingo Molnar80f22572009-02-22 15:15:32 +0100572}
Richard Cochrancd5398b2012-04-27 10:12:41 +0200573
Ingo Molnar80f22572009-02-22 15:15:32 +0100574/*
Richard Cochrancd5398b2012-04-27 10:12:41 +0200575 * Called with ntp_lock held, so we can access and modify
Ingo Molnar80f22572009-02-22 15:15:32 +0100576 * all the global NTP state:
577 */
John Stultzcc244dd2012-05-03 12:30:07 -0700578static inline void process_adjtimex_modes(struct timex *txc,
579 struct timespec *ts,
580 s32 *time_tai)
Ingo Molnar80f22572009-02-22 15:15:32 +0100581{
582 if (txc->modes & ADJ_STATUS)
583 process_adj_status(txc, ts);
584
585 if (txc->modes & ADJ_NANO)
586 time_status |= STA_NANO;
Ingo Molnare9629162009-02-22 15:35:18 +0100587
Ingo Molnar80f22572009-02-22 15:15:32 +0100588 if (txc->modes & ADJ_MICRO)
589 time_status &= ~STA_NANO;
590
591 if (txc->modes & ADJ_FREQUENCY) {
Ingo Molnar2b9d1492009-02-22 15:48:43 +0100592 time_freq = txc->freq * PPM_SCALE;
Ingo Molnar80f22572009-02-22 15:15:32 +0100593 time_freq = min(time_freq, MAXFREQ_SCALED);
594 time_freq = max(time_freq, -MAXFREQ_SCALED);
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800595 /* update pps_freq */
596 pps_set_freq(time_freq);
Ingo Molnar80f22572009-02-22 15:15:32 +0100597 }
598
599 if (txc->modes & ADJ_MAXERROR)
600 time_maxerror = txc->maxerror;
Ingo Molnare9629162009-02-22 15:35:18 +0100601
Ingo Molnar80f22572009-02-22 15:15:32 +0100602 if (txc->modes & ADJ_ESTERROR)
603 time_esterror = txc->esterror;
604
605 if (txc->modes & ADJ_TIMECONST) {
606 time_constant = txc->constant;
607 if (!(time_status & STA_NANO))
608 time_constant += 4;
609 time_constant = min(time_constant, (long)MAXTC);
610 time_constant = max(time_constant, 0l);
611 }
612
613 if (txc->modes & ADJ_TAI && txc->constant > 0)
John Stultzcc244dd2012-05-03 12:30:07 -0700614 *time_tai = txc->constant;
Ingo Molnar80f22572009-02-22 15:15:32 +0100615
616 if (txc->modes & ADJ_OFFSET)
617 ntp_update_offset(txc->offset);
Ingo Molnare9629162009-02-22 15:35:18 +0100618
Ingo Molnar80f22572009-02-22 15:15:32 +0100619 if (txc->modes & ADJ_TICK)
620 tick_usec = txc->tick;
621
622 if (txc->modes & (ADJ_TICK|ADJ_FREQUENCY|ADJ_OFFSET))
623 ntp_update_frequency();
624}
625
john stultz4c7ee8d2006-09-30 23:28:22 -0700626
John Stultzad460962013-03-22 11:59:04 -0700627
628/**
629 * ntp_validate_timex - Ensures the timex is ok for use in do_adjtimex
630 */
631int ntp_validate_timex(struct timex *txc)
632{
Roman Zippel916c7a82008-08-20 16:46:08 -0700633 if (txc->modes & ADJ_ADJTIME) {
Roman Zippeleea83d82008-05-01 04:34:33 -0700634 /* singleshot must not be used with any other mode bits */
Roman Zippel916c7a82008-08-20 16:46:08 -0700635 if (!(txc->modes & ADJ_OFFSET_SINGLESHOT))
john stultz4c7ee8d2006-09-30 23:28:22 -0700636 return -EINVAL;
Roman Zippel916c7a82008-08-20 16:46:08 -0700637 if (!(txc->modes & ADJ_OFFSET_READONLY) &&
638 !capable(CAP_SYS_TIME))
639 return -EPERM;
640 } else {
641 /* In order to modify anything, you gotta be super-user! */
642 if (txc->modes && !capable(CAP_SYS_TIME))
643 return -EPERM;
Ingo Molnar53bbfa92008-02-20 07:58:42 +0100644 /*
645 * if the quartz is off by more than 10% then
646 * something is VERY wrong!
647 */
Roman Zippel916c7a82008-08-20 16:46:08 -0700648 if (txc->modes & ADJ_TICK &&
649 (txc->tick < 900000/USER_HZ ||
650 txc->tick > 1100000/USER_HZ))
Ingo Molnare9629162009-02-22 15:35:18 +0100651 return -EINVAL;
John Stultz52bfb362007-11-26 20:42:19 +0100652 }
john stultz4c7ee8d2006-09-30 23:28:22 -0700653
John Stultzad460962013-03-22 11:59:04 -0700654 if ((txc->modes & ADJ_SETOFFSET) && (!capable(CAP_SYS_TIME)))
655 return -EPERM;
656
657 return 0;
658}
659
660
661/*
662 * adjtimex mainly allows reading (and writing, if superuser) of
663 * kernel time-keeping variables. used by xntpd.
664 */
John Stultz87ace392013-03-22 12:28:15 -0700665int __do_adjtimex(struct timex *txc, struct timespec *ts, s32 *time_tai)
John Stultzad460962013-03-22 11:59:04 -0700666{
John Stultzad460962013-03-22 11:59:04 -0700667 int result;
668
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200669 raw_spin_lock_irq(&ntp_lock);
john stultz4c7ee8d2006-09-30 23:28:22 -0700670
Roman Zippel916c7a82008-08-20 16:46:08 -0700671 if (txc->modes & ADJ_ADJTIME) {
672 long save_adjust = time_adjust;
673
674 if (!(txc->modes & ADJ_OFFSET_READONLY)) {
675 /* adjtime() is independent from ntp_adjtime() */
676 time_adjust = txc->offset;
677 ntp_update_frequency();
678 }
679 txc->offset = save_adjust;
Ingo Molnare9629162009-02-22 15:35:18 +0100680 } else {
681
682 /* If there are input parameters, then process them: */
683 if (txc->modes)
John Stultz87ace392013-03-22 12:28:15 -0700684 process_adjtimex_modes(txc, ts, time_tai);
Ingo Molnare9629162009-02-22 15:35:18 +0100685
686 txc->offset = shift_right(time_offset * NTP_INTERVAL_FREQ,
687 NTP_SCALE_SHIFT);
688 if (!(time_status & STA_NANO))
689 txc->offset /= NSEC_PER_USEC;
Roman Zippel916c7a82008-08-20 16:46:08 -0700690 }
Roman Zippel916c7a82008-08-20 16:46:08 -0700691
Roman Zippeleea83d82008-05-01 04:34:33 -0700692 result = time_state; /* mostly `TIME_OK' */
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800693 /* check for errors */
694 if (is_error_status(time_status))
john stultz4c7ee8d2006-09-30 23:28:22 -0700695 result = TIME_ERROR;
696
Roman Zippeld40e9442008-09-22 14:42:44 -0700697 txc->freq = shift_right((time_freq >> PPM_SCALE_INV_SHIFT) *
Ingo Molnar2b9d1492009-02-22 15:48:43 +0100698 PPM_SCALE_INV, NTP_SCALE_SHIFT);
john stultz4c7ee8d2006-09-30 23:28:22 -0700699 txc->maxerror = time_maxerror;
700 txc->esterror = time_esterror;
701 txc->status = time_status;
702 txc->constant = time_constant;
Adrian Bunk70bc42f2006-09-30 23:28:29 -0700703 txc->precision = 1;
Roman Zippel074b3b82008-05-01 04:34:34 -0700704 txc->tolerance = MAXFREQ_SCALED / PPM_SCALE;
john stultz4c7ee8d2006-09-30 23:28:22 -0700705 txc->tick = tick_usec;
John Stultz87ace392013-03-22 12:28:15 -0700706 txc->tai = *time_tai;
john stultz4c7ee8d2006-09-30 23:28:22 -0700707
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800708 /* fill PPS status fields */
709 pps_fill_timex(txc);
Ingo Molnare9629162009-02-22 15:35:18 +0100710
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200711 raw_spin_unlock_irq(&ntp_lock);
Roman Zippelee9851b2008-05-01 04:34:32 -0700712
John Stultz87ace392013-03-22 12:28:15 -0700713 txc->time.tv_sec = ts->tv_sec;
714 txc->time.tv_usec = ts->tv_nsec;
Roman Zippeleea83d82008-05-01 04:34:33 -0700715 if (!(time_status & STA_NANO))
716 txc->time.tv_usec /= NSEC_PER_USEC;
Roman Zippelee9851b2008-05-01 04:34:32 -0700717
Thomas Gleixner82644452007-07-21 04:37:37 -0700718 notify_cmos_timer();
Roman Zippelee9851b2008-05-01 04:34:32 -0700719
720 return result;
john stultz4c7ee8d2006-09-30 23:28:22 -0700721}
Roman Zippel10a398d2008-03-04 15:14:26 -0800722
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800723#ifdef CONFIG_NTP_PPS
724
725/* actually struct pps_normtime is good old struct timespec, but it is
726 * semantically different (and it is the reason why it was invented):
727 * pps_normtime.nsec has a range of ( -NSEC_PER_SEC / 2, NSEC_PER_SEC / 2 ]
728 * while timespec.tv_nsec has a range of [0, NSEC_PER_SEC) */
729struct pps_normtime {
730 __kernel_time_t sec; /* seconds */
731 long nsec; /* nanoseconds */
732};
733
734/* normalize the timestamp so that nsec is in the
735 ( -NSEC_PER_SEC / 2, NSEC_PER_SEC / 2 ] interval */
736static inline struct pps_normtime pps_normalize_ts(struct timespec ts)
737{
738 struct pps_normtime norm = {
739 .sec = ts.tv_sec,
740 .nsec = ts.tv_nsec
741 };
742
743 if (norm.nsec > (NSEC_PER_SEC >> 1)) {
744 norm.nsec -= NSEC_PER_SEC;
745 norm.sec++;
746 }
747
748 return norm;
749}
750
751/* get current phase correction and jitter */
752static inline long pps_phase_filter_get(long *jitter)
753{
754 *jitter = pps_tf[0] - pps_tf[1];
755 if (*jitter < 0)
756 *jitter = -*jitter;
757
758 /* TODO: test various filters */
759 return pps_tf[0];
760}
761
762/* add the sample to the phase filter */
763static inline void pps_phase_filter_add(long err)
764{
765 pps_tf[2] = pps_tf[1];
766 pps_tf[1] = pps_tf[0];
767 pps_tf[0] = err;
768}
769
770/* decrease frequency calibration interval length.
771 * It is halved after four consecutive unstable intervals.
772 */
773static inline void pps_dec_freq_interval(void)
774{
775 if (--pps_intcnt <= -PPS_INTCOUNT) {
776 pps_intcnt = -PPS_INTCOUNT;
777 if (pps_shift > PPS_INTMIN) {
778 pps_shift--;
779 pps_intcnt = 0;
780 }
781 }
782}
783
784/* increase frequency calibration interval length.
785 * It is doubled after four consecutive stable intervals.
786 */
787static inline void pps_inc_freq_interval(void)
788{
789 if (++pps_intcnt >= PPS_INTCOUNT) {
790 pps_intcnt = PPS_INTCOUNT;
791 if (pps_shift < PPS_INTMAX) {
792 pps_shift++;
793 pps_intcnt = 0;
794 }
795 }
796}
797
798/* update clock frequency based on MONOTONIC_RAW clock PPS signal
799 * timestamps
800 *
801 * At the end of the calibration interval the difference between the
802 * first and last MONOTONIC_RAW clock timestamps divided by the length
803 * of the interval becomes the frequency update. If the interval was
804 * too long, the data are discarded.
805 * Returns the difference between old and new frequency values.
806 */
807static long hardpps_update_freq(struct pps_normtime freq_norm)
808{
809 long delta, delta_mod;
810 s64 ftemp;
811
812 /* check if the frequency interval was too long */
813 if (freq_norm.sec > (2 << pps_shift)) {
814 time_status |= STA_PPSERROR;
815 pps_errcnt++;
816 pps_dec_freq_interval();
817 pr_err("hardpps: PPSERROR: interval too long - %ld s\n",
818 freq_norm.sec);
819 return 0;
820 }
821
822 /* here the raw frequency offset and wander (stability) is
823 * calculated. If the wander is less than the wander threshold
824 * the interval is increased; otherwise it is decreased.
825 */
826 ftemp = div_s64(((s64)(-freq_norm.nsec)) << NTP_SCALE_SHIFT,
827 freq_norm.sec);
828 delta = shift_right(ftemp - pps_freq, NTP_SCALE_SHIFT);
829 pps_freq = ftemp;
830 if (delta > PPS_MAXWANDER || delta < -PPS_MAXWANDER) {
831 pr_warning("hardpps: PPSWANDER: change=%ld\n", delta);
832 time_status |= STA_PPSWANDER;
833 pps_stbcnt++;
834 pps_dec_freq_interval();
835 } else { /* good sample */
836 pps_inc_freq_interval();
837 }
838
839 /* the stability metric is calculated as the average of recent
840 * frequency changes, but is used only for performance
841 * monitoring
842 */
843 delta_mod = delta;
844 if (delta_mod < 0)
845 delta_mod = -delta_mod;
846 pps_stabil += (div_s64(((s64)delta_mod) <<
847 (NTP_SCALE_SHIFT - SHIFT_USEC),
848 NSEC_PER_USEC) - pps_stabil) >> PPS_INTMIN;
849
850 /* if enabled, the system clock frequency is updated */
851 if ((time_status & STA_PPSFREQ) != 0 &&
852 (time_status & STA_FREQHOLD) == 0) {
853 time_freq = pps_freq;
854 ntp_update_frequency();
855 }
856
857 return delta;
858}
859
860/* correct REALTIME clock phase error against PPS signal */
861static void hardpps_update_phase(long error)
862{
863 long correction = -error;
864 long jitter;
865
866 /* add the sample to the median filter */
867 pps_phase_filter_add(correction);
868 correction = pps_phase_filter_get(&jitter);
869
870 /* Nominal jitter is due to PPS signal noise. If it exceeds the
871 * threshold, the sample is discarded; otherwise, if so enabled,
872 * the time offset is updated.
873 */
874 if (jitter > (pps_jitter << PPS_POPCORN)) {
875 pr_warning("hardpps: PPSJITTER: jitter=%ld, limit=%ld\n",
876 jitter, (pps_jitter << PPS_POPCORN));
877 time_status |= STA_PPSJITTER;
878 pps_jitcnt++;
879 } else if (time_status & STA_PPSTIME) {
880 /* correct the time using the phase offset */
881 time_offset = div_s64(((s64)correction) << NTP_SCALE_SHIFT,
882 NTP_INTERVAL_FREQ);
883 /* cancel running adjtime() */
884 time_adjust = 0;
885 }
886 /* update jitter */
887 pps_jitter += (jitter - pps_jitter) >> PPS_INTMIN;
888}
889
890/*
John Stultzaa6f9c592013-03-22 11:31:29 -0700891 * __hardpps() - discipline CPU clock oscillator to external PPS signal
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800892 *
893 * This routine is called at each PPS signal arrival in order to
894 * discipline the CPU clock oscillator to the PPS signal. It takes two
895 * parameters: REALTIME and MONOTONIC_RAW clock timestamps. The former
896 * is used to correct clock phase error and the latter is used to
897 * correct the frequency.
898 *
899 * This code is based on David Mills's reference nanokernel
900 * implementation. It was mostly rewritten but keeps the same idea.
901 */
John Stultzaa6f9c592013-03-22 11:31:29 -0700902void __hardpps(const struct timespec *phase_ts, const struct timespec *raw_ts)
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800903{
904 struct pps_normtime pts_norm, freq_norm;
905 unsigned long flags;
906
907 pts_norm = pps_normalize_ts(*phase_ts);
908
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200909 raw_spin_lock_irqsave(&ntp_lock, flags);
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800910
911 /* clear the error bits, they will be set again if needed */
912 time_status &= ~(STA_PPSJITTER | STA_PPSWANDER | STA_PPSERROR);
913
914 /* indicate signal presence */
915 time_status |= STA_PPSSIGNAL;
916 pps_valid = PPS_VALID;
917
918 /* when called for the first time,
919 * just start the frequency interval */
920 if (unlikely(pps_fbase.tv_sec == 0)) {
921 pps_fbase = *raw_ts;
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200922 raw_spin_unlock_irqrestore(&ntp_lock, flags);
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800923 return;
924 }
925
926 /* ok, now we have a base for frequency calculation */
927 freq_norm = pps_normalize_ts(timespec_sub(*raw_ts, pps_fbase));
928
929 /* check that the signal is in the range
930 * [1s - MAXFREQ us, 1s + MAXFREQ us], otherwise reject it */
931 if ((freq_norm.sec == 0) ||
932 (freq_norm.nsec > MAXFREQ * freq_norm.sec) ||
933 (freq_norm.nsec < -MAXFREQ * freq_norm.sec)) {
934 time_status |= STA_PPSJITTER;
935 /* restart the frequency calibration interval */
936 pps_fbase = *raw_ts;
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200937 raw_spin_unlock_irqrestore(&ntp_lock, flags);
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800938 pr_err("hardpps: PPSJITTER: bad pulse\n");
939 return;
940 }
941
942 /* signal is ok */
943
944 /* check if the current frequency interval is finished */
945 if (freq_norm.sec >= (1 << pps_shift)) {
946 pps_calcnt++;
947 /* restart the frequency calibration interval */
948 pps_fbase = *raw_ts;
949 hardpps_update_freq(freq_norm);
950 }
951
952 hardpps_update_phase(pts_norm.nsec);
953
Thomas Gleixnera6c0c942012-04-10 11:14:55 +0200954 raw_spin_unlock_irqrestore(&ntp_lock, flags);
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800955}
Alexander Gordeev025b40a2011-01-12 17:00:56 -0800956#endif /* CONFIG_NTP_PPS */
957
Roman Zippel10a398d2008-03-04 15:14:26 -0800958static int __init ntp_tick_adj_setup(char *str)
959{
960 ntp_tick_adj = simple_strtol(str, NULL, 0);
Ingo Molnar069569e2009-02-22 16:03:37 +0100961 ntp_tick_adj <<= NTP_SCALE_SHIFT;
962
Roman Zippel10a398d2008-03-04 15:14:26 -0800963 return 1;
964}
965
966__setup("ntp_tick_adj=", ntp_tick_adj_setup);
Roman Zippel7dffa3c2008-05-01 04:34:41 -0700967
968void __init ntp_init(void)
969{
970 ntp_clear();
Roman Zippel7dffa3c2008-05-01 04:34:41 -0700971}