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Thomas Gleixner35728b82018-10-31 19:21:09 +01001// SPDX-License-Identifier: GPL-2.0
john stultz85240702007-05-08 00:27:59 -07002/*
Thomas Gleixner58c5fc22018-10-31 19:21:08 +01003 * Kernel timekeeping code and accessor functions. Based on code from
4 * timer.c, moved in commit 8524070b7982.
john stultz85240702007-05-08 00:27:59 -07005 */
John Stultzd7b42022012-09-04 15:12:07 -04006#include <linux/timekeeper_internal.h>
john stultz85240702007-05-08 00:27:59 -07007#include <linux/module.h>
8#include <linux/interrupt.h>
9#include <linux/percpu.h>
10#include <linux/init.h>
11#include <linux/mm.h>
Ingo Molnar38b8d202017-02-08 18:51:31 +010012#include <linux/nmi.h>
Alexey Dobriyand43c36d2009-10-07 17:09:06 +040013#include <linux/sched.h>
Ingo Molnar4f177222017-02-08 08:45:17 +010014#include <linux/sched/loadavg.h>
Pavel Tatashin3eca9932018-07-19 16:55:34 -040015#include <linux/sched/clock.h>
Rafael J. Wysockie1a85b22011-03-23 22:16:04 +010016#include <linux/syscore_ops.h>
john stultz85240702007-05-08 00:27:59 -070017#include <linux/clocksource.h>
18#include <linux/jiffies.h>
19#include <linux/time.h>
20#include <linux/tick.h>
Martin Schwidefsky75c51582009-08-14 15:47:30 +020021#include <linux/stop_machine.h>
Marcelo Tosattie0b306f2012-11-27 23:28:59 -020022#include <linux/pvclock_gtod.h>
Gideon Israel Dsouza52f5684c2014-04-07 15:39:20 -070023#include <linux/compiler.h>
Ondrej Mosnacek2d87a062019-04-10 11:14:19 +020024#include <linux/audit.h>
john stultz85240702007-05-08 00:27:59 -070025
Thomas Gleixnereb93e4d2013-02-21 22:51:36 +000026#include "tick-internal.h"
John Stultzaa6f9c592013-03-22 11:31:29 -070027#include "ntp_internal.h"
Colin Cross5c835452013-05-21 22:32:14 -070028#include "timekeeping_internal.h"
Martin Schwidefsky155ec602009-08-14 15:47:26 +020029
David Vrabel04397fe92013-06-27 11:35:45 +010030#define TK_CLEAR_NTP (1 << 0)
31#define TK_MIRROR (1 << 1)
David Vrabel780427f2013-06-27 11:35:46 +010032#define TK_CLOCK_WAS_SET (1 << 2)
David Vrabel04397fe92013-06-27 11:35:45 +010033
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +020034enum timekeeping_adv_mode {
35 /* Update timekeeper when a tick has passed */
36 TK_ADV_TICK,
37
38 /* Update timekeeper on a direct frequency change */
39 TK_ADV_FREQ
40};
41
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +000042/*
43 * The most important data for readout fits into a single 64 byte
44 * cache line.
45 */
46static struct {
47 seqcount_t seq;
48 struct timekeeper timekeeper;
Bart Van Asschece10a5b2018-11-28 15:43:09 -080049} tk_core ____cacheline_aligned = {
50 .seq = SEQCNT_ZERO(tk_core.seq),
51};
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +000052
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +000053static DEFINE_RAW_SPINLOCK(timekeeper_lock);
Thomas Gleixner48cdc132013-02-21 22:51:40 +000054static struct timekeeper shadow_timekeeper;
Martin Schwidefsky155ec602009-08-14 15:47:26 +020055
Thomas Gleixner4396e052014-07-16 21:05:23 +000056/**
57 * struct tk_fast - NMI safe timekeeper
58 * @seq: Sequence counter for protecting updates. The lowest bit
59 * is the index for the tk_read_base array
60 * @base: tk_read_base array. Access is indexed by the lowest bit of
61 * @seq.
62 *
63 * See @update_fast_timekeeper() below.
64 */
65struct tk_fast {
66 seqcount_t seq;
67 struct tk_read_base base[2];
68};
69
Prarit Bhargava5df32102017-08-28 08:21:53 -040070/* Suspend-time cycles value for halted fast timekeeper. */
71static u64 cycles_at_suspend;
72
73static u64 dummy_clock_read(struct clocksource *cs)
74{
75 return cycles_at_suspend;
76}
77
78static struct clocksource dummy_clock = {
79 .read = dummy_clock_read,
80};
81
82static struct tk_fast tk_fast_mono ____cacheline_aligned = {
83 .base[0] = { .clock = &dummy_clock, },
84 .base[1] = { .clock = &dummy_clock, },
85};
86
87static struct tk_fast tk_fast_raw ____cacheline_aligned = {
88 .base[0] = { .clock = &dummy_clock, },
89 .base[1] = { .clock = &dummy_clock, },
90};
Thomas Gleixner4396e052014-07-16 21:05:23 +000091
John Stultz8fcce542011-11-14 11:46:39 -080092/* flag for if timekeeping is suspended */
93int __read_mostly timekeeping_suspended;
94
John Stultz1e75fa82012-07-13 01:21:53 -040095static inline void tk_normalize_xtime(struct timekeeper *tk)
96{
Peter Zijlstra876e7882015-03-19 10:09:06 +010097 while (tk->tkr_mono.xtime_nsec >= ((u64)NSEC_PER_SEC << tk->tkr_mono.shift)) {
98 tk->tkr_mono.xtime_nsec -= (u64)NSEC_PER_SEC << tk->tkr_mono.shift;
John Stultz1e75fa82012-07-13 01:21:53 -040099 tk->xtime_sec++;
100 }
John Stultzfc6eead72017-05-22 17:20:20 -0700101 while (tk->tkr_raw.xtime_nsec >= ((u64)NSEC_PER_SEC << tk->tkr_raw.shift)) {
102 tk->tkr_raw.xtime_nsec -= (u64)NSEC_PER_SEC << tk->tkr_raw.shift;
103 tk->raw_sec++;
104 }
John Stultz1e75fa82012-07-13 01:21:53 -0400105}
John Stultz8fcce542011-11-14 11:46:39 -0800106
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200107static inline struct timespec64 tk_xtime(const struct timekeeper *tk)
Thomas Gleixnerc905fae2014-07-16 21:04:05 +0000108{
109 struct timespec64 ts;
110
111 ts.tv_sec = tk->xtime_sec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100112 ts.tv_nsec = (long)(tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift);
Thomas Gleixnerc905fae2014-07-16 21:04:05 +0000113 return ts;
114}
115
John Stultz7d489d12014-07-16 21:04:01 +0000116static void tk_set_xtime(struct timekeeper *tk, const struct timespec64 *ts)
John Stultz1e75fa82012-07-13 01:21:53 -0400117{
118 tk->xtime_sec = ts->tv_sec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100119 tk->tkr_mono.xtime_nsec = (u64)ts->tv_nsec << tk->tkr_mono.shift;
John Stultz1e75fa82012-07-13 01:21:53 -0400120}
121
John Stultz7d489d12014-07-16 21:04:01 +0000122static void tk_xtime_add(struct timekeeper *tk, const struct timespec64 *ts)
John Stultz1e75fa82012-07-13 01:21:53 -0400123{
124 tk->xtime_sec += ts->tv_sec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100125 tk->tkr_mono.xtime_nsec += (u64)ts->tv_nsec << tk->tkr_mono.shift;
John Stultz784ffcb2012-08-21 20:30:46 -0400126 tk_normalize_xtime(tk);
John Stultz1e75fa82012-07-13 01:21:53 -0400127}
John Stultz8fcce542011-11-14 11:46:39 -0800128
John Stultz7d489d12014-07-16 21:04:01 +0000129static void tk_set_wall_to_mono(struct timekeeper *tk, struct timespec64 wtm)
John Stultz6d0ef902012-07-27 14:48:12 -0400130{
John Stultz7d489d12014-07-16 21:04:01 +0000131 struct timespec64 tmp;
John Stultz6d0ef902012-07-27 14:48:12 -0400132
133 /*
134 * Verify consistency of: offset_real = -wall_to_monotonic
135 * before modifying anything
136 */
John Stultz7d489d12014-07-16 21:04:01 +0000137 set_normalized_timespec64(&tmp, -tk->wall_to_monotonic.tv_sec,
John Stultz6d0ef902012-07-27 14:48:12 -0400138 -tk->wall_to_monotonic.tv_nsec);
Thomas Gleixner2456e852016-12-25 11:38:40 +0100139 WARN_ON_ONCE(tk->offs_real != timespec64_to_ktime(tmp));
John Stultz6d0ef902012-07-27 14:48:12 -0400140 tk->wall_to_monotonic = wtm;
John Stultz7d489d12014-07-16 21:04:01 +0000141 set_normalized_timespec64(&tmp, -wtm.tv_sec, -wtm.tv_nsec);
142 tk->offs_real = timespec64_to_ktime(tmp);
John Stultz04005f62013-12-10 17:13:35 -0800143 tk->offs_tai = ktime_add(tk->offs_real, ktime_set(tk->tai_offset, 0));
John Stultz6d0ef902012-07-27 14:48:12 -0400144}
145
Thomas Gleixner47da70d2014-07-16 21:05:00 +0000146static inline void tk_update_sleep_time(struct timekeeper *tk, ktime_t delta)
John Stultz6d0ef902012-07-27 14:48:12 -0400147{
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +0200148 tk->offs_boot = ktime_add(tk->offs_boot, delta);
Thomas Gleixnerb99328a2019-08-22 13:00:15 +0200149 /*
150 * Timespec representation for VDSO update to avoid 64bit division
151 * on every update.
152 */
153 tk->monotonic_to_boot = ktime_to_timespec64(tk->offs_boot);
John Stultz6d0ef902012-07-27 14:48:12 -0400154}
155
John Stultzceea5e32017-06-08 16:44:20 -0700156/*
157 * tk_clock_read - atomic clocksource read() helper
158 *
159 * This helper is necessary to use in the read paths because, while the
160 * seqlock ensures we don't return a bad value while structures are updated,
161 * it doesn't protect from potential crashes. There is the possibility that
162 * the tkr's clocksource may change between the read reference, and the
163 * clock reference passed to the read function. This can cause crashes if
164 * the wrong clocksource is passed to the wrong read function.
165 * This isn't necessary to use when holding the timekeeper_lock or doing
166 * a read of the fast-timekeeper tkrs (which is protected by its own locking
167 * and update logic).
168 */
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200169static inline u64 tk_clock_read(const struct tk_read_base *tkr)
John Stultzceea5e32017-06-08 16:44:20 -0700170{
171 struct clocksource *clock = READ_ONCE(tkr->clock);
172
173 return clock->read(clock);
174}
175
John Stultz3c17ad12015-03-11 21:16:32 -0700176#ifdef CONFIG_DEBUG_TIMEKEEPING
John Stultz4ca22c22015-03-11 21:16:35 -0700177#define WARNING_FREQ (HZ*300) /* 5 minute rate-limiting */
John Stultz4ca22c22015-03-11 21:16:35 -0700178
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100179static void timekeeping_check_update(struct timekeeper *tk, u64 offset)
John Stultz3c17ad12015-03-11 21:16:32 -0700180{
181
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100182 u64 max_cycles = tk->tkr_mono.clock->max_cycles;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100183 const char *name = tk->tkr_mono.clock->name;
John Stultz3c17ad12015-03-11 21:16:32 -0700184
185 if (offset > max_cycles) {
John Stultza558cd02015-03-11 21:16:33 -0700186 printk_deferred("WARNING: timekeeping: Cycle offset (%lld) is larger than allowed by the '%s' clock's max_cycles value (%lld): time overflow danger\n",
John Stultz3c17ad12015-03-11 21:16:32 -0700187 offset, name, max_cycles);
John Stultza558cd02015-03-11 21:16:33 -0700188 printk_deferred(" timekeeping: Your kernel is sick, but tries to cope by capping time updates\n");
John Stultz3c17ad12015-03-11 21:16:32 -0700189 } else {
190 if (offset > (max_cycles >> 1)) {
Masanari Iidafc4fa6e2015-12-13 15:26:11 +0900191 printk_deferred("INFO: timekeeping: Cycle offset (%lld) is larger than the '%s' clock's 50%% safety margin (%lld)\n",
John Stultz3c17ad12015-03-11 21:16:32 -0700192 offset, name, max_cycles >> 1);
193 printk_deferred(" timekeeping: Your kernel is still fine, but is feeling a bit nervous\n");
194 }
195 }
John Stultz4ca22c22015-03-11 21:16:35 -0700196
John Stultz57d05a92015-05-13 16:04:47 -0700197 if (tk->underflow_seen) {
198 if (jiffies - tk->last_warning > WARNING_FREQ) {
John Stultz4ca22c22015-03-11 21:16:35 -0700199 printk_deferred("WARNING: Underflow in clocksource '%s' observed, time update ignored.\n", name);
200 printk_deferred(" Please report this, consider using a different clocksource, if possible.\n");
201 printk_deferred(" Your kernel is probably still fine.\n");
John Stultz57d05a92015-05-13 16:04:47 -0700202 tk->last_warning = jiffies;
John Stultz4ca22c22015-03-11 21:16:35 -0700203 }
John Stultz57d05a92015-05-13 16:04:47 -0700204 tk->underflow_seen = 0;
John Stultz4ca22c22015-03-11 21:16:35 -0700205 }
206
John Stultz57d05a92015-05-13 16:04:47 -0700207 if (tk->overflow_seen) {
208 if (jiffies - tk->last_warning > WARNING_FREQ) {
John Stultz4ca22c22015-03-11 21:16:35 -0700209 printk_deferred("WARNING: Overflow in clocksource '%s' observed, time update capped.\n", name);
210 printk_deferred(" Please report this, consider using a different clocksource, if possible.\n");
211 printk_deferred(" Your kernel is probably still fine.\n");
John Stultz57d05a92015-05-13 16:04:47 -0700212 tk->last_warning = jiffies;
John Stultz4ca22c22015-03-11 21:16:35 -0700213 }
John Stultz57d05a92015-05-13 16:04:47 -0700214 tk->overflow_seen = 0;
John Stultz4ca22c22015-03-11 21:16:35 -0700215 }
John Stultz3c17ad12015-03-11 21:16:32 -0700216}
John Stultza558cd02015-03-11 21:16:33 -0700217
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200218static inline u64 timekeeping_get_delta(const struct tk_read_base *tkr)
John Stultza558cd02015-03-11 21:16:33 -0700219{
John Stultz57d05a92015-05-13 16:04:47 -0700220 struct timekeeper *tk = &tk_core.timekeeper;
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100221 u64 now, last, mask, max, delta;
John Stultz4ca22c22015-03-11 21:16:35 -0700222 unsigned int seq;
John Stultza558cd02015-03-11 21:16:33 -0700223
John Stultz4ca22c22015-03-11 21:16:35 -0700224 /*
225 * Since we're called holding a seqlock, the data may shift
226 * under us while we're doing the calculation. This can cause
227 * false positives, since we'd note a problem but throw the
228 * results away. So nest another seqlock here to atomically
229 * grab the points we are checking with.
230 */
231 do {
232 seq = read_seqcount_begin(&tk_core.seq);
John Stultzceea5e32017-06-08 16:44:20 -0700233 now = tk_clock_read(tkr);
John Stultz4ca22c22015-03-11 21:16:35 -0700234 last = tkr->cycle_last;
235 mask = tkr->mask;
236 max = tkr->clock->max_cycles;
237 } while (read_seqcount_retry(&tk_core.seq, seq));
John Stultza558cd02015-03-11 21:16:33 -0700238
John Stultz4ca22c22015-03-11 21:16:35 -0700239 delta = clocksource_delta(now, last, mask);
John Stultza558cd02015-03-11 21:16:33 -0700240
John Stultz057b87e2015-03-11 21:16:34 -0700241 /*
242 * Try to catch underflows by checking if we are seeing small
243 * mask-relative negative values.
244 */
John Stultz4ca22c22015-03-11 21:16:35 -0700245 if (unlikely((~delta & mask) < (mask >> 3))) {
John Stultz57d05a92015-05-13 16:04:47 -0700246 tk->underflow_seen = 1;
John Stultz057b87e2015-03-11 21:16:34 -0700247 delta = 0;
John Stultz4ca22c22015-03-11 21:16:35 -0700248 }
John Stultz057b87e2015-03-11 21:16:34 -0700249
John Stultza558cd02015-03-11 21:16:33 -0700250 /* Cap delta value to the max_cycles values to avoid mult overflows */
John Stultz4ca22c22015-03-11 21:16:35 -0700251 if (unlikely(delta > max)) {
John Stultz57d05a92015-05-13 16:04:47 -0700252 tk->overflow_seen = 1;
John Stultza558cd02015-03-11 21:16:33 -0700253 delta = tkr->clock->max_cycles;
John Stultz4ca22c22015-03-11 21:16:35 -0700254 }
John Stultza558cd02015-03-11 21:16:33 -0700255
256 return delta;
257}
John Stultz3c17ad12015-03-11 21:16:32 -0700258#else
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100259static inline void timekeeping_check_update(struct timekeeper *tk, u64 offset)
John Stultz3c17ad12015-03-11 21:16:32 -0700260{
261}
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200262static inline u64 timekeeping_get_delta(const struct tk_read_base *tkr)
John Stultza558cd02015-03-11 21:16:33 -0700263{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100264 u64 cycle_now, delta;
John Stultza558cd02015-03-11 21:16:33 -0700265
266 /* read clocksource */
John Stultzceea5e32017-06-08 16:44:20 -0700267 cycle_now = tk_clock_read(tkr);
John Stultza558cd02015-03-11 21:16:33 -0700268
269 /* calculate the delta since the last update_wall_time */
270 delta = clocksource_delta(cycle_now, tkr->cycle_last, tkr->mask);
271
272 return delta;
273}
John Stultz3c17ad12015-03-11 21:16:32 -0700274#endif
275
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200276/**
Yijing Wangd26e4fe2013-11-28 16:28:55 +0800277 * tk_setup_internals - Set up internals to use clocksource clock.
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200278 *
Yijing Wangd26e4fe2013-11-28 16:28:55 +0800279 * @tk: The target timekeeper to setup.
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200280 * @clock: Pointer to clocksource.
281 *
282 * Calculates a fixed cycle/nsec interval for a given clocksource/adjustment
283 * pair and interval request.
284 *
285 * Unless you're the timekeeping code, you should not be using this!
286 */
John Stultzf726a692012-07-13 01:21:57 -0400287static void tk_setup_internals(struct timekeeper *tk, struct clocksource *clock)
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200288{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100289 u64 interval;
Kasper Pedersena386b5a2010-10-20 15:55:15 -0700290 u64 tmp, ntpinterval;
John Stultz1e75fa82012-07-13 01:21:53 -0400291 struct clocksource *old_clock;
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200292
Christopher S. Hall2c756fe2016-02-22 03:15:23 -0800293 ++tk->cs_was_changed_seq;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100294 old_clock = tk->tkr_mono.clock;
295 tk->tkr_mono.clock = clock;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100296 tk->tkr_mono.mask = clock->mask;
John Stultzceea5e32017-06-08 16:44:20 -0700297 tk->tkr_mono.cycle_last = tk_clock_read(&tk->tkr_mono);
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200298
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100299 tk->tkr_raw.clock = clock;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100300 tk->tkr_raw.mask = clock->mask;
301 tk->tkr_raw.cycle_last = tk->tkr_mono.cycle_last;
302
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200303 /* Do the ns -> cycle conversion first, using original mult */
304 tmp = NTP_INTERVAL_LENGTH;
305 tmp <<= clock->shift;
Kasper Pedersena386b5a2010-10-20 15:55:15 -0700306 ntpinterval = tmp;
Martin Schwidefsky0a544192009-08-14 15:47:28 +0200307 tmp += clock->mult/2;
308 do_div(tmp, clock->mult);
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200309 if (tmp == 0)
310 tmp = 1;
311
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100312 interval = (u64) tmp;
John Stultzf726a692012-07-13 01:21:57 -0400313 tk->cycle_interval = interval;
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200314
315 /* Go back from cycles -> shifted ns */
Thomas Gleixnercbd99e32016-12-08 20:49:36 +0000316 tk->xtime_interval = interval * clock->mult;
John Stultzf726a692012-07-13 01:21:57 -0400317 tk->xtime_remainder = ntpinterval - tk->xtime_interval;
John Stultz3d88d562017-06-08 16:44:21 -0700318 tk->raw_interval = interval * clock->mult;
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200319
John Stultz1e75fa82012-07-13 01:21:53 -0400320 /* if changing clocks, convert xtime_nsec shift units */
321 if (old_clock) {
322 int shift_change = clock->shift - old_clock->shift;
John Stultzfc6eead72017-05-22 17:20:20 -0700323 if (shift_change < 0) {
Peter Zijlstra876e7882015-03-19 10:09:06 +0100324 tk->tkr_mono.xtime_nsec >>= -shift_change;
John Stultzfc6eead72017-05-22 17:20:20 -0700325 tk->tkr_raw.xtime_nsec >>= -shift_change;
326 } else {
Peter Zijlstra876e7882015-03-19 10:09:06 +0100327 tk->tkr_mono.xtime_nsec <<= shift_change;
John Stultzfc6eead72017-05-22 17:20:20 -0700328 tk->tkr_raw.xtime_nsec <<= shift_change;
329 }
John Stultz1e75fa82012-07-13 01:21:53 -0400330 }
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100331
Peter Zijlstra876e7882015-03-19 10:09:06 +0100332 tk->tkr_mono.shift = clock->shift;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100333 tk->tkr_raw.shift = clock->shift;
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200334
John Stultzf726a692012-07-13 01:21:57 -0400335 tk->ntp_error = 0;
336 tk->ntp_error_shift = NTP_SCALE_SHIFT - clock->shift;
John Stultz375f45b2014-04-23 20:53:29 -0700337 tk->ntp_tick = ntpinterval << tk->ntp_error_shift;
Martin Schwidefsky0a544192009-08-14 15:47:28 +0200338
339 /*
340 * The timekeeper keeps its own mult values for the currently
341 * active clocksource. These value will be adjusted via NTP
342 * to counteract clock drifting.
343 */
Peter Zijlstra876e7882015-03-19 10:09:06 +0100344 tk->tkr_mono.mult = clock->mult;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100345 tk->tkr_raw.mult = clock->mult;
John Stultzdc491592013-12-06 17:25:21 -0800346 tk->ntp_err_mult = 0;
Miroslav Lichvar78b98e32018-03-09 10:42:48 -0800347 tk->skip_second_overflow = 0;
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200348}
john stultz85240702007-05-08 00:27:59 -0700349
Martin Schwidefsky2ba2a302009-08-14 15:47:29 +0200350/* Timekeeper helper functions. */
Stephen Warren7b1f6202012-11-07 17:58:54 -0700351
352#ifdef CONFIG_ARCH_USES_GETTIMEOFFSET
Thomas Gleixnere06fde32014-07-16 21:03:50 +0000353static u32 default_arch_gettimeoffset(void) { return 0; }
354u32 (*arch_gettimeoffset)(void) = default_arch_gettimeoffset;
Stephen Warren7b1f6202012-11-07 17:58:54 -0700355#else
Thomas Gleixnere06fde32014-07-16 21:03:50 +0000356static inline u32 arch_gettimeoffset(void) { return 0; }
Stephen Warren7b1f6202012-11-07 17:58:54 -0700357#endif
358
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200359static inline u64 timekeeping_delta_to_ns(const struct tk_read_base *tkr, u64 delta)
Martin Schwidefsky2ba2a302009-08-14 15:47:29 +0200360{
Thomas Gleixner9c164572016-12-08 20:49:32 +0000361 u64 nsec;
Martin Schwidefsky2ba2a302009-08-14 15:47:29 +0200362
Christopher S. Hall6bd58f02016-02-22 03:15:19 -0800363 nsec = delta * tkr->mult + tkr->xtime_nsec;
364 nsec >>= tkr->shift;
John Stultzf2a5a082012-07-13 01:21:55 -0400365
Stephen Warren7b1f6202012-11-07 17:58:54 -0700366 /* If arch requires, add in get_arch_timeoffset() */
Thomas Gleixnere06fde32014-07-16 21:03:50 +0000367 return nsec + arch_gettimeoffset();
Martin Schwidefsky2ba2a302009-08-14 15:47:29 +0200368}
369
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200370static inline u64 timekeeping_get_ns(const struct tk_read_base *tkr)
Christopher S. Hall6bd58f02016-02-22 03:15:19 -0800371{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100372 u64 delta;
Christopher S. Hall6bd58f02016-02-22 03:15:19 -0800373
374 delta = timekeeping_get_delta(tkr);
375 return timekeeping_delta_to_ns(tkr, delta);
376}
377
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200378static inline u64 timekeeping_cycles_to_ns(const struct tk_read_base *tkr, u64 cycles)
Christopher S. Hall6bd58f02016-02-22 03:15:19 -0800379{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100380 u64 delta;
Christopher S. Hall6bd58f02016-02-22 03:15:19 -0800381
382 /* calculate the delta since the last update_wall_time */
383 delta = clocksource_delta(cycles, tkr->cycle_last, tkr->mask);
384 return timekeeping_delta_to_ns(tkr, delta);
385}
386
Thomas Gleixner4396e052014-07-16 21:05:23 +0000387/**
388 * update_fast_timekeeper - Update the fast and NMI safe monotonic timekeeper.
Rafael J. Wysockiaffe3e82015-02-11 05:01:52 +0100389 * @tkr: Timekeeping readout base from which we take the update
Thomas Gleixner4396e052014-07-16 21:05:23 +0000390 *
391 * We want to use this from any context including NMI and tracing /
392 * instrumenting the timekeeping code itself.
393 *
Peter Zijlstra6695b922015-05-27 11:09:36 +0930394 * Employ the latch technique; see @raw_write_seqcount_latch.
Thomas Gleixner4396e052014-07-16 21:05:23 +0000395 *
396 * So if a NMI hits the update of base[0] then it will use base[1]
397 * which is still consistent. In the worst case this can result is a
398 * slightly wrong timestamp (a few nanoseconds). See
399 * @ktime_get_mono_fast_ns.
400 */
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200401static void update_fast_timekeeper(const struct tk_read_base *tkr,
402 struct tk_fast *tkf)
Thomas Gleixner4396e052014-07-16 21:05:23 +0000403{
Peter Zijlstra4498e742015-03-19 09:36:19 +0100404 struct tk_read_base *base = tkf->base;
Thomas Gleixner4396e052014-07-16 21:05:23 +0000405
406 /* Force readers off to base[1] */
Peter Zijlstra4498e742015-03-19 09:36:19 +0100407 raw_write_seqcount_latch(&tkf->seq);
Thomas Gleixner4396e052014-07-16 21:05:23 +0000408
409 /* Update base[0] */
Rafael J. Wysockiaffe3e82015-02-11 05:01:52 +0100410 memcpy(base, tkr, sizeof(*base));
Thomas Gleixner4396e052014-07-16 21:05:23 +0000411
412 /* Force readers back to base[0] */
Peter Zijlstra4498e742015-03-19 09:36:19 +0100413 raw_write_seqcount_latch(&tkf->seq);
Thomas Gleixner4396e052014-07-16 21:05:23 +0000414
415 /* Update base[1] */
416 memcpy(base + 1, base, sizeof(*base));
417}
418
419/**
420 * ktime_get_mono_fast_ns - Fast NMI safe access to clock monotonic
421 *
422 * This timestamp is not guaranteed to be monotonic across an update.
423 * The timestamp is calculated by:
424 *
425 * now = base_mono + clock_delta * slope
426 *
427 * So if the update lowers the slope, readers who are forced to the
428 * not yet updated second array are still using the old steeper slope.
429 *
430 * tmono
431 * ^
432 * | o n
433 * | o n
434 * | u
435 * | o
436 * |o
437 * |12345678---> reader order
438 *
439 * o = old slope
440 * u = update
441 * n = new slope
442 *
443 * So reader 6 will observe time going backwards versus reader 5.
444 *
445 * While other CPUs are likely to be able observe that, the only way
446 * for a CPU local observation is when an NMI hits in the middle of
447 * the update. Timestamps taken from that NMI context might be ahead
448 * of the following timestamps. Callers need to be aware of that and
449 * deal with it.
450 */
Peter Zijlstra4498e742015-03-19 09:36:19 +0100451static __always_inline u64 __ktime_get_fast_ns(struct tk_fast *tkf)
Thomas Gleixner4396e052014-07-16 21:05:23 +0000452{
453 struct tk_read_base *tkr;
454 unsigned int seq;
455 u64 now;
456
457 do {
Peter Zijlstra7fc26322015-05-27 11:09:36 +0930458 seq = raw_read_seqcount_latch(&tkf->seq);
Peter Zijlstra4498e742015-03-19 09:36:19 +0100459 tkr = tkf->base + (seq & 0x01);
John Stultz27727df2016-08-23 16:08:21 -0700460 now = ktime_to_ns(tkr->base);
461
John Stultz58bfea92016-10-04 19:55:48 -0700462 now += timekeeping_delta_to_ns(tkr,
463 clocksource_delta(
John Stultzceea5e32017-06-08 16:44:20 -0700464 tk_clock_read(tkr),
John Stultz58bfea92016-10-04 19:55:48 -0700465 tkr->cycle_last,
466 tkr->mask));
Peter Zijlstra4498e742015-03-19 09:36:19 +0100467 } while (read_seqcount_retry(&tkf->seq, seq));
Thomas Gleixner4396e052014-07-16 21:05:23 +0000468
Thomas Gleixner4396e052014-07-16 21:05:23 +0000469 return now;
470}
Peter Zijlstra4498e742015-03-19 09:36:19 +0100471
472u64 ktime_get_mono_fast_ns(void)
473{
474 return __ktime_get_fast_ns(&tk_fast_mono);
475}
Thomas Gleixner4396e052014-07-16 21:05:23 +0000476EXPORT_SYMBOL_GPL(ktime_get_mono_fast_ns);
477
Peter Zijlstraf09cb9a2015-03-19 09:39:08 +0100478u64 ktime_get_raw_fast_ns(void)
479{
480 return __ktime_get_fast_ns(&tk_fast_raw);
481}
482EXPORT_SYMBOL_GPL(ktime_get_raw_fast_ns);
483
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +0200484/**
485 * ktime_get_boot_fast_ns - NMI safe and fast access to boot clock.
486 *
487 * To keep it NMI safe since we're accessing from tracing, we're not using a
488 * separate timekeeper with updates to monotonic clock and boot offset
489 * protected with seqlocks. This has the following minor side effects:
490 *
491 * (1) Its possible that a timestamp be taken after the boot offset is updated
492 * but before the timekeeper is updated. If this happens, the new boot offset
493 * is added to the old timekeeping making the clock appear to update slightly
494 * earlier:
495 * CPU 0 CPU 1
496 * timekeeping_inject_sleeptime64()
497 * __timekeeping_inject_sleeptime(tk, delta);
498 * timestamp();
499 * timekeeping_update(tk, TK_CLEAR_NTP...);
500 *
501 * (2) On 32-bit systems, the 64-bit boot offset (tk->offs_boot) may be
502 * partially updated. Since the tk->offs_boot update is a rare event, this
503 * should be a rare occurrence which postprocessing should be able to handle.
504 */
505u64 notrace ktime_get_boot_fast_ns(void)
506{
507 struct timekeeper *tk = &tk_core.timekeeper;
508
509 return (ktime_get_mono_fast_ns() + ktime_to_ns(tk->offs_boot));
510}
511EXPORT_SYMBOL_GPL(ktime_get_boot_fast_ns);
512
513
Thomas Gleixner4c3711d2017-08-31 17:12:48 +0200514/*
515 * See comment for __ktime_get_fast_ns() vs. timestamp ordering
516 */
517static __always_inline u64 __ktime_get_real_fast_ns(struct tk_fast *tkf)
518{
519 struct tk_read_base *tkr;
520 unsigned int seq;
521 u64 now;
522
523 do {
524 seq = raw_read_seqcount_latch(&tkf->seq);
525 tkr = tkf->base + (seq & 0x01);
526 now = ktime_to_ns(tkr->base_real);
527
528 now += timekeeping_delta_to_ns(tkr,
529 clocksource_delta(
530 tk_clock_read(tkr),
531 tkr->cycle_last,
532 tkr->mask));
533 } while (read_seqcount_retry(&tkf->seq, seq));
534
535 return now;
536}
537
538/**
539 * ktime_get_real_fast_ns: - NMI safe and fast access to clock realtime.
540 */
541u64 ktime_get_real_fast_ns(void)
542{
543 return __ktime_get_real_fast_ns(&tk_fast_mono);
544}
Arnd Bergmanndf270672017-11-10 16:25:04 +0100545EXPORT_SYMBOL_GPL(ktime_get_real_fast_ns);
Thomas Gleixner4c3711d2017-08-31 17:12:48 +0200546
Rafael J. Wysocki060407a2015-02-13 14:49:02 +0100547/**
548 * halt_fast_timekeeper - Prevent fast timekeeper from accessing clocksource.
549 * @tk: Timekeeper to snapshot.
550 *
551 * It generally is unsafe to access the clocksource after timekeeping has been
552 * suspended, so take a snapshot of the readout base of @tk and use it as the
553 * fast timekeeper's readout base while suspended. It will return the same
554 * number of cycles every time until timekeeping is resumed at which time the
555 * proper readout base for the fast timekeeper will be restored automatically.
556 */
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200557static void halt_fast_timekeeper(const struct timekeeper *tk)
Rafael J. Wysocki060407a2015-02-13 14:49:02 +0100558{
559 static struct tk_read_base tkr_dummy;
Ondrej Mosnacek985e6952018-07-13 14:06:42 +0200560 const struct tk_read_base *tkr = &tk->tkr_mono;
Rafael J. Wysocki060407a2015-02-13 14:49:02 +0100561
562 memcpy(&tkr_dummy, tkr, sizeof(tkr_dummy));
John Stultzceea5e32017-06-08 16:44:20 -0700563 cycles_at_suspend = tk_clock_read(tkr);
564 tkr_dummy.clock = &dummy_clock;
Thomas Gleixner4c3711d2017-08-31 17:12:48 +0200565 tkr_dummy.base_real = tkr->base + tk->offs_real;
Peter Zijlstra4498e742015-03-19 09:36:19 +0100566 update_fast_timekeeper(&tkr_dummy, &tk_fast_mono);
Peter Zijlstraf09cb9a2015-03-19 09:39:08 +0100567
568 tkr = &tk->tkr_raw;
569 memcpy(&tkr_dummy, tkr, sizeof(tkr_dummy));
John Stultzceea5e32017-06-08 16:44:20 -0700570 tkr_dummy.clock = &dummy_clock;
Peter Zijlstraf09cb9a2015-03-19 09:39:08 +0100571 update_fast_timekeeper(&tkr_dummy, &tk_fast_raw);
Rafael J. Wysocki060407a2015-02-13 14:49:02 +0100572}
573
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200574static RAW_NOTIFIER_HEAD(pvclock_gtod_chain);
575
David Vrabel780427f2013-06-27 11:35:46 +0100576static void update_pvclock_gtod(struct timekeeper *tk, bool was_set)
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200577{
David Vrabel780427f2013-06-27 11:35:46 +0100578 raw_notifier_call_chain(&pvclock_gtod_chain, was_set, tk);
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200579}
580
581/**
582 * pvclock_gtod_register_notifier - register a pvclock timedata update listener
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200583 */
584int pvclock_gtod_register_notifier(struct notifier_block *nb)
585{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000586 struct timekeeper *tk = &tk_core.timekeeper;
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200587 unsigned long flags;
588 int ret;
589
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +0000590 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200591 ret = raw_notifier_chain_register(&pvclock_gtod_chain, nb);
David Vrabel780427f2013-06-27 11:35:46 +0100592 update_pvclock_gtod(tk, true);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +0000593 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200594
595 return ret;
596}
597EXPORT_SYMBOL_GPL(pvclock_gtod_register_notifier);
598
599/**
600 * pvclock_gtod_unregister_notifier - unregister a pvclock
601 * timedata update listener
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200602 */
603int pvclock_gtod_unregister_notifier(struct notifier_block *nb)
604{
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200605 unsigned long flags;
606 int ret;
607
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +0000608 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200609 ret = raw_notifier_chain_unregister(&pvclock_gtod_chain, nb);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +0000610 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
Marcelo Tosattie0b306f2012-11-27 23:28:59 -0200611
612 return ret;
613}
614EXPORT_SYMBOL_GPL(pvclock_gtod_unregister_notifier);
615
Thomas Gleixner7c032df2014-07-16 21:04:10 +0000616/*
John Stultz833f32d2015-06-11 15:54:55 -0700617 * tk_update_leap_state - helper to update the next_leap_ktime
618 */
619static inline void tk_update_leap_state(struct timekeeper *tk)
620{
621 tk->next_leap_ktime = ntp_get_next_leap();
Thomas Gleixner2456e852016-12-25 11:38:40 +0100622 if (tk->next_leap_ktime != KTIME_MAX)
John Stultz833f32d2015-06-11 15:54:55 -0700623 /* Convert to monotonic time */
624 tk->next_leap_ktime = ktime_sub(tk->next_leap_ktime, tk->offs_real);
625}
626
627/*
Thomas Gleixner7c032df2014-07-16 21:04:10 +0000628 * Update the ktime_t based scalar nsec members of the timekeeper
629 */
630static inline void tk_update_ktime_data(struct timekeeper *tk)
631{
Heena Sirwani9e3680b2014-10-29 16:01:16 +0530632 u64 seconds;
633 u32 nsec;
Thomas Gleixner7c032df2014-07-16 21:04:10 +0000634
635 /*
636 * The xtime based monotonic readout is:
637 * nsec = (xtime_sec + wtm_sec) * 1e9 + wtm_nsec + now();
638 * The ktime based monotonic readout is:
639 * nsec = base_mono + now();
640 * ==> base_mono = (xtime_sec + wtm_sec) * 1e9 + wtm_nsec
641 */
Heena Sirwani9e3680b2014-10-29 16:01:16 +0530642 seconds = (u64)(tk->xtime_sec + tk->wall_to_monotonic.tv_sec);
643 nsec = (u32) tk->wall_to_monotonic.tv_nsec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100644 tk->tkr_mono.base = ns_to_ktime(seconds * NSEC_PER_SEC + nsec);
Thomas Gleixnerf519b1a2014-07-16 21:05:04 +0000645
Heena Sirwani9e3680b2014-10-29 16:01:16 +0530646 /*
647 * The sum of the nanoseconds portions of xtime and
648 * wall_to_monotonic can be greater/equal one second. Take
649 * this into account before updating tk->ktime_sec.
650 */
Peter Zijlstra876e7882015-03-19 10:09:06 +0100651 nsec += (u32)(tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift);
Heena Sirwani9e3680b2014-10-29 16:01:16 +0530652 if (nsec >= NSEC_PER_SEC)
653 seconds++;
654 tk->ktime_sec = seconds;
John Stultzfc6eead72017-05-22 17:20:20 -0700655
656 /* Update the monotonic raw base */
John Stultz0bcdc092017-08-25 15:57:04 -0700657 tk->tkr_raw.base = ns_to_ktime(tk->raw_sec * NSEC_PER_SEC);
Thomas Gleixner7c032df2014-07-16 21:04:10 +0000658}
659
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +0000660/* must hold timekeeper_lock */
David Vrabel04397fe92013-06-27 11:35:45 +0100661static void timekeeping_update(struct timekeeper *tk, unsigned int action)
Thomas Gleixnercc062682011-11-13 23:19:49 +0000662{
David Vrabel04397fe92013-06-27 11:35:45 +0100663 if (action & TK_CLEAR_NTP) {
John Stultzf726a692012-07-13 01:21:57 -0400664 tk->ntp_error = 0;
Thomas Gleixnercc062682011-11-13 23:19:49 +0000665 ntp_clear();
666 }
Thomas Gleixner48cdc132013-02-21 22:51:40 +0000667
John Stultz833f32d2015-06-11 15:54:55 -0700668 tk_update_leap_state(tk);
Thomas Gleixner7c032df2014-07-16 21:04:10 +0000669 tk_update_ktime_data(tk);
670
Thomas Gleixner9bf24192014-09-06 12:24:49 +0200671 update_vsyscall(tk);
672 update_pvclock_gtod(tk, action & TK_CLOCK_WAS_SET);
673
Thomas Gleixner4c3711d2017-08-31 17:12:48 +0200674 tk->tkr_mono.base_real = tk->tkr_mono.base + tk->offs_real;
Peter Zijlstra4498e742015-03-19 09:36:19 +0100675 update_fast_timekeeper(&tk->tkr_mono, &tk_fast_mono);
Peter Zijlstraf09cb9a2015-03-19 09:39:08 +0100676 update_fast_timekeeper(&tk->tkr_raw, &tk_fast_raw);
Thomas Gleixner868a3e92015-04-14 21:08:37 +0000677
678 if (action & TK_CLOCK_WAS_SET)
679 tk->clock_was_set_seq++;
John Stultzd1518322015-06-11 15:54:53 -0700680 /*
681 * The mirroring of the data to the shadow-timekeeper needs
682 * to happen last here to ensure we don't over-write the
683 * timekeeper structure on the next update with stale data
684 */
685 if (action & TK_MIRROR)
686 memcpy(&shadow_timekeeper, &tk_core.timekeeper,
687 sizeof(tk_core.timekeeper));
Thomas Gleixnercc062682011-11-13 23:19:49 +0000688}
689
john stultz85240702007-05-08 00:27:59 -0700690/**
Martin Schwidefsky155ec602009-08-14 15:47:26 +0200691 * timekeeping_forward_now - update clock to the current time
john stultz85240702007-05-08 00:27:59 -0700692 *
Roman Zippel9a055112008-08-20 16:37:28 -0700693 * Forward the current clock to update its state since the last call to
694 * update_wall_time(). This is useful before significant clock changes,
695 * as it avoids having to deal with this time offset explicitly.
john stultz85240702007-05-08 00:27:59 -0700696 */
John Stultzf726a692012-07-13 01:21:57 -0400697static void timekeeping_forward_now(struct timekeeper *tk)
john stultz85240702007-05-08 00:27:59 -0700698{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100699 u64 cycle_now, delta;
john stultz85240702007-05-08 00:27:59 -0700700
John Stultzceea5e32017-06-08 16:44:20 -0700701 cycle_now = tk_clock_read(&tk->tkr_mono);
Peter Zijlstra876e7882015-03-19 10:09:06 +0100702 delta = clocksource_delta(cycle_now, tk->tkr_mono.cycle_last, tk->tkr_mono.mask);
703 tk->tkr_mono.cycle_last = cycle_now;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100704 tk->tkr_raw.cycle_last = cycle_now;
john stultz85240702007-05-08 00:27:59 -0700705
Peter Zijlstra876e7882015-03-19 10:09:06 +0100706 tk->tkr_mono.xtime_nsec += delta * tk->tkr_mono.mult;
john stultz7d275582009-05-01 13:10:26 -0700707
Stephen Warren7b1f6202012-11-07 17:58:54 -0700708 /* If arch requires, add in get_arch_timeoffset() */
Peter Zijlstra876e7882015-03-19 10:09:06 +0100709 tk->tkr_mono.xtime_nsec += (u64)arch_gettimeoffset() << tk->tkr_mono.shift;
john stultz7d275582009-05-01 13:10:26 -0700710
John Stultz2d422442008-08-20 16:37:30 -0700711
John Stultzfc6eead72017-05-22 17:20:20 -0700712 tk->tkr_raw.xtime_nsec += delta * tk->tkr_raw.mult;
713
714 /* If arch requires, add in get_arch_timeoffset() */
715 tk->tkr_raw.xtime_nsec += (u64)arch_gettimeoffset() << tk->tkr_raw.shift;
716
717 tk_normalize_xtime(tk);
john stultz85240702007-05-08 00:27:59 -0700718}
719
720/**
Arnd Bergmannedca71f2018-04-27 15:40:13 +0200721 * ktime_get_real_ts64 - Returns the time of day in a timespec64.
john stultz85240702007-05-08 00:27:59 -0700722 * @ts: pointer to the timespec to be set
723 *
Arnd Bergmannedca71f2018-04-27 15:40:13 +0200724 * Returns the time of day in a timespec64 (WARN if suspended).
john stultz85240702007-05-08 00:27:59 -0700725 */
Arnd Bergmannedca71f2018-04-27 15:40:13 +0200726void ktime_get_real_ts64(struct timespec64 *ts)
john stultz85240702007-05-08 00:27:59 -0700727{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000728 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +0100729 unsigned int seq;
Thomas Gleixneracc89612016-12-08 20:49:34 +0000730 u64 nsecs;
john stultz85240702007-05-08 00:27:59 -0700731
Arnd Bergmannedca71f2018-04-27 15:40:13 +0200732 WARN_ON(timekeeping_suspended);
733
john stultz85240702007-05-08 00:27:59 -0700734 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000735 seq = read_seqcount_begin(&tk_core.seq);
john stultz85240702007-05-08 00:27:59 -0700736
John Stultz4e250fd2012-07-27 14:48:13 -0400737 ts->tv_sec = tk->xtime_sec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100738 nsecs = timekeeping_get_ns(&tk->tkr_mono);
john stultz85240702007-05-08 00:27:59 -0700739
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000740 } while (read_seqcount_retry(&tk_core.seq, seq));
john stultz85240702007-05-08 00:27:59 -0700741
John Stultzec145ba2012-09-11 19:26:03 -0400742 ts->tv_nsec = 0;
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000743 timespec64_add_ns(ts, nsecs);
Kees Cook1e817fb2012-11-19 10:26:16 -0800744}
Arnd Bergmannedca71f2018-04-27 15:40:13 +0200745EXPORT_SYMBOL(ktime_get_real_ts64);
john stultz85240702007-05-08 00:27:59 -0700746
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200747ktime_t ktime_get(void)
748{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000749 struct timekeeper *tk = &tk_core.timekeeper;
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200750 unsigned int seq;
Thomas Gleixnera016a5b2014-07-16 21:04:12 +0000751 ktime_t base;
Thomas Gleixneracc89612016-12-08 20:49:34 +0000752 u64 nsecs;
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200753
754 WARN_ON(timekeeping_suspended);
755
756 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000757 seq = read_seqcount_begin(&tk_core.seq);
Peter Zijlstra876e7882015-03-19 10:09:06 +0100758 base = tk->tkr_mono.base;
759 nsecs = timekeeping_get_ns(&tk->tkr_mono);
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200760
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000761 } while (read_seqcount_retry(&tk_core.seq, seq));
John Stultz24e4a8c2014-07-16 21:03:53 +0000762
Thomas Gleixnera016a5b2014-07-16 21:04:12 +0000763 return ktime_add_ns(base, nsecs);
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200764}
765EXPORT_SYMBOL_GPL(ktime_get);
766
Harald Geyer6374f912015-04-07 11:12:35 +0000767u32 ktime_get_resolution_ns(void)
768{
769 struct timekeeper *tk = &tk_core.timekeeper;
770 unsigned int seq;
771 u32 nsecs;
772
773 WARN_ON(timekeeping_suspended);
774
775 do {
776 seq = read_seqcount_begin(&tk_core.seq);
777 nsecs = tk->tkr_mono.mult >> tk->tkr_mono.shift;
778 } while (read_seqcount_retry(&tk_core.seq, seq));
779
780 return nsecs;
781}
782EXPORT_SYMBOL_GPL(ktime_get_resolution_ns);
783
Thomas Gleixner0077dc62014-07-16 21:04:13 +0000784static ktime_t *offsets[TK_OFFS_MAX] = {
785 [TK_OFFS_REAL] = &tk_core.timekeeper.offs_real,
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +0200786 [TK_OFFS_BOOT] = &tk_core.timekeeper.offs_boot,
Thomas Gleixner0077dc62014-07-16 21:04:13 +0000787 [TK_OFFS_TAI] = &tk_core.timekeeper.offs_tai,
788};
789
790ktime_t ktime_get_with_offset(enum tk_offsets offs)
791{
792 struct timekeeper *tk = &tk_core.timekeeper;
793 unsigned int seq;
794 ktime_t base, *offset = offsets[offs];
Thomas Gleixneracc89612016-12-08 20:49:34 +0000795 u64 nsecs;
Thomas Gleixner0077dc62014-07-16 21:04:13 +0000796
797 WARN_ON(timekeeping_suspended);
798
799 do {
800 seq = read_seqcount_begin(&tk_core.seq);
Peter Zijlstra876e7882015-03-19 10:09:06 +0100801 base = ktime_add(tk->tkr_mono.base, *offset);
802 nsecs = timekeeping_get_ns(&tk->tkr_mono);
Thomas Gleixner0077dc62014-07-16 21:04:13 +0000803
804 } while (read_seqcount_retry(&tk_core.seq, seq));
805
806 return ktime_add_ns(base, nsecs);
807
808}
809EXPORT_SYMBOL_GPL(ktime_get_with_offset);
810
Arnd Bergmannb9ff6042018-04-27 15:40:15 +0200811ktime_t ktime_get_coarse_with_offset(enum tk_offsets offs)
812{
813 struct timekeeper *tk = &tk_core.timekeeper;
814 unsigned int seq;
815 ktime_t base, *offset = offsets[offs];
Thomas Gleixnere3ff9c32019-06-13 21:40:45 +0200816 u64 nsecs;
Arnd Bergmannb9ff6042018-04-27 15:40:15 +0200817
818 WARN_ON(timekeeping_suspended);
819
820 do {
821 seq = read_seqcount_begin(&tk_core.seq);
822 base = ktime_add(tk->tkr_mono.base, *offset);
Thomas Gleixnere3ff9c32019-06-13 21:40:45 +0200823 nsecs = tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift;
Arnd Bergmannb9ff6042018-04-27 15:40:15 +0200824
825 } while (read_seqcount_retry(&tk_core.seq, seq));
826
Jason A. Donenfeld0354c1a32019-06-21 22:32:47 +0200827 return ktime_add_ns(base, nsecs);
Arnd Bergmannb9ff6042018-04-27 15:40:15 +0200828}
829EXPORT_SYMBOL_GPL(ktime_get_coarse_with_offset);
830
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200831/**
Thomas Gleixner9a6b5192014-07-16 21:04:22 +0000832 * ktime_mono_to_any() - convert mononotic time to any other time
833 * @tmono: time to convert.
834 * @offs: which offset to use
835 */
836ktime_t ktime_mono_to_any(ktime_t tmono, enum tk_offsets offs)
837{
838 ktime_t *offset = offsets[offs];
Rasmus Villemoese1e41b62019-03-18 20:55:56 +0100839 unsigned int seq;
Thomas Gleixner9a6b5192014-07-16 21:04:22 +0000840 ktime_t tconv;
841
842 do {
843 seq = read_seqcount_begin(&tk_core.seq);
844 tconv = ktime_add(tmono, *offset);
845 } while (read_seqcount_retry(&tk_core.seq, seq));
846
847 return tconv;
848}
849EXPORT_SYMBOL_GPL(ktime_mono_to_any);
850
851/**
Thomas Gleixnerf519b1a2014-07-16 21:05:04 +0000852 * ktime_get_raw - Returns the raw monotonic time in ktime_t format
853 */
854ktime_t ktime_get_raw(void)
855{
856 struct timekeeper *tk = &tk_core.timekeeper;
857 unsigned int seq;
858 ktime_t base;
Thomas Gleixneracc89612016-12-08 20:49:34 +0000859 u64 nsecs;
Thomas Gleixnerf519b1a2014-07-16 21:05:04 +0000860
861 do {
862 seq = read_seqcount_begin(&tk_core.seq);
Peter Zijlstra4a4ad802015-03-19 09:28:44 +0100863 base = tk->tkr_raw.base;
864 nsecs = timekeeping_get_ns(&tk->tkr_raw);
Thomas Gleixnerf519b1a2014-07-16 21:05:04 +0000865
866 } while (read_seqcount_retry(&tk_core.seq, seq));
867
868 return ktime_add_ns(base, nsecs);
869}
870EXPORT_SYMBOL_GPL(ktime_get_raw);
871
872/**
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000873 * ktime_get_ts64 - get the monotonic clock in timespec64 format
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200874 * @ts: pointer to timespec variable
875 *
876 * The function calculates the monotonic clock from the realtime
877 * clock and the wall_to_monotonic offset and stores the result
John Stultz5322e4c2014-11-07 13:13:04 -0800878 * in normalized timespec64 format in the variable pointed to by @ts.
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200879 */
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000880void ktime_get_ts64(struct timespec64 *ts)
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200881{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000882 struct timekeeper *tk = &tk_core.timekeeper;
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000883 struct timespec64 tomono;
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200884 unsigned int seq;
Thomas Gleixneracc89612016-12-08 20:49:34 +0000885 u64 nsec;
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200886
887 WARN_ON(timekeeping_suspended);
888
889 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000890 seq = read_seqcount_begin(&tk_core.seq);
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000891 ts->tv_sec = tk->xtime_sec;
Peter Zijlstra876e7882015-03-19 10:09:06 +0100892 nsec = timekeeping_get_ns(&tk->tkr_mono);
John Stultz4e250fd2012-07-27 14:48:13 -0400893 tomono = tk->wall_to_monotonic;
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200894
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +0000895 } while (read_seqcount_retry(&tk_core.seq, seq));
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200896
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000897 ts->tv_sec += tomono.tv_sec;
898 ts->tv_nsec = 0;
899 timespec64_add_ns(ts, nsec + tomono.tv_nsec);
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200900}
Thomas Gleixnerd6d29892014-07-16 21:04:04 +0000901EXPORT_SYMBOL_GPL(ktime_get_ts64);
Martin Schwidefsky951ed4d2009-07-07 11:27:28 +0200902
Heena Sirwani9e3680b2014-10-29 16:01:16 +0530903/**
904 * ktime_get_seconds - Get the seconds portion of CLOCK_MONOTONIC
905 *
906 * Returns the seconds portion of CLOCK_MONOTONIC with a single non
907 * serialized read. tk->ktime_sec is of type 'unsigned long' so this
908 * works on both 32 and 64 bit systems. On 32 bit systems the readout
909 * covers ~136 years of uptime which should be enough to prevent
910 * premature wrap arounds.
911 */
912time64_t ktime_get_seconds(void)
913{
914 struct timekeeper *tk = &tk_core.timekeeper;
915
916 WARN_ON(timekeeping_suspended);
917 return tk->ktime_sec;
918}
919EXPORT_SYMBOL_GPL(ktime_get_seconds);
920
Heena Sirwanidbe7aa62014-10-29 16:01:50 +0530921/**
922 * ktime_get_real_seconds - Get the seconds portion of CLOCK_REALTIME
923 *
924 * Returns the wall clock seconds since 1970. This replaces the
925 * get_seconds() interface which is not y2038 safe on 32bit systems.
926 *
927 * For 64bit systems the fast access to tk->xtime_sec is preserved. On
928 * 32bit systems the access must be protected with the sequence
929 * counter to provide "atomic" access to the 64bit tk->xtime_sec
930 * value.
931 */
932time64_t ktime_get_real_seconds(void)
933{
934 struct timekeeper *tk = &tk_core.timekeeper;
935 time64_t seconds;
936 unsigned int seq;
937
938 if (IS_ENABLED(CONFIG_64BIT))
939 return tk->xtime_sec;
940
941 do {
942 seq = read_seqcount_begin(&tk_core.seq);
943 seconds = tk->xtime_sec;
944
945 } while (read_seqcount_retry(&tk_core.seq, seq));
946
947 return seconds;
948}
949EXPORT_SYMBOL_GPL(ktime_get_real_seconds);
950
DengChaodee36652015-12-13 12:24:18 +0800951/**
952 * __ktime_get_real_seconds - The same as ktime_get_real_seconds
953 * but without the sequence counter protect. This internal function
954 * is called just when timekeeping lock is already held.
955 */
956time64_t __ktime_get_real_seconds(void)
957{
958 struct timekeeper *tk = &tk_core.timekeeper;
959
960 return tk->xtime_sec;
961}
962
Christopher S. Hall9da0f492016-02-22 03:15:20 -0800963/**
964 * ktime_get_snapshot - snapshots the realtime/monotonic raw clocks with counter
965 * @systime_snapshot: pointer to struct receiving the system time snapshot
966 */
967void ktime_get_snapshot(struct system_time_snapshot *systime_snapshot)
968{
969 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +0100970 unsigned int seq;
Christopher S. Hall9da0f492016-02-22 03:15:20 -0800971 ktime_t base_raw;
972 ktime_t base_real;
Thomas Gleixneracc89612016-12-08 20:49:34 +0000973 u64 nsec_raw;
974 u64 nsec_real;
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100975 u64 now;
Christopher S. Hall9da0f492016-02-22 03:15:20 -0800976
Christopher S. Hallba266212016-02-22 03:15:21 -0800977 WARN_ON_ONCE(timekeeping_suspended);
978
Christopher S. Hall9da0f492016-02-22 03:15:20 -0800979 do {
980 seq = read_seqcount_begin(&tk_core.seq);
John Stultzceea5e32017-06-08 16:44:20 -0700981 now = tk_clock_read(&tk->tkr_mono);
Christopher S. Hall2c756fe2016-02-22 03:15:23 -0800982 systime_snapshot->cs_was_changed_seq = tk->cs_was_changed_seq;
983 systime_snapshot->clock_was_set_seq = tk->clock_was_set_seq;
Christopher S. Hall9da0f492016-02-22 03:15:20 -0800984 base_real = ktime_add(tk->tkr_mono.base,
985 tk_core.timekeeper.offs_real);
986 base_raw = tk->tkr_raw.base;
987 nsec_real = timekeeping_cycles_to_ns(&tk->tkr_mono, now);
988 nsec_raw = timekeeping_cycles_to_ns(&tk->tkr_raw, now);
989 } while (read_seqcount_retry(&tk_core.seq, seq));
990
991 systime_snapshot->cycles = now;
992 systime_snapshot->real = ktime_add_ns(base_real, nsec_real);
993 systime_snapshot->raw = ktime_add_ns(base_raw, nsec_raw);
994}
995EXPORT_SYMBOL_GPL(ktime_get_snapshot);
DengChaodee36652015-12-13 12:24:18 +0800996
Christopher S. Hall2c756fe2016-02-22 03:15:23 -0800997/* Scale base by mult/div checking for overflow */
998static int scale64_check_overflow(u64 mult, u64 div, u64 *base)
999{
1000 u64 tmp, rem;
1001
1002 tmp = div64_u64_rem(*base, div, &rem);
1003
1004 if (((int)sizeof(u64)*8 - fls64(mult) < fls64(tmp)) ||
1005 ((int)sizeof(u64)*8 - fls64(mult) < fls64(rem)))
1006 return -EOVERFLOW;
1007 tmp *= mult;
1008 rem *= mult;
1009
1010 do_div(rem, div);
1011 *base = tmp + rem;
1012 return 0;
1013}
1014
1015/**
1016 * adjust_historical_crosststamp - adjust crosstimestamp previous to current interval
1017 * @history: Snapshot representing start of history
1018 * @partial_history_cycles: Cycle offset into history (fractional part)
1019 * @total_history_cycles: Total history length in cycles
1020 * @discontinuity: True indicates clock was set on history period
1021 * @ts: Cross timestamp that should be adjusted using
1022 * partial/total ratio
1023 *
1024 * Helper function used by get_device_system_crosststamp() to correct the
1025 * crosstimestamp corresponding to the start of the current interval to the
1026 * system counter value (timestamp point) provided by the driver. The
1027 * total_history_* quantities are the total history starting at the provided
1028 * reference point and ending at the start of the current interval. The cycle
1029 * count between the driver timestamp point and the start of the current
1030 * interval is partial_history_cycles.
1031 */
1032static int adjust_historical_crosststamp(struct system_time_snapshot *history,
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01001033 u64 partial_history_cycles,
1034 u64 total_history_cycles,
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001035 bool discontinuity,
1036 struct system_device_crosststamp *ts)
1037{
1038 struct timekeeper *tk = &tk_core.timekeeper;
1039 u64 corr_raw, corr_real;
1040 bool interp_forward;
1041 int ret;
1042
1043 if (total_history_cycles == 0 || partial_history_cycles == 0)
1044 return 0;
1045
1046 /* Interpolate shortest distance from beginning or end of history */
Nicholas Mc Guire5fc63f92017-03-24 20:03:35 +01001047 interp_forward = partial_history_cycles > total_history_cycles / 2;
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001048 partial_history_cycles = interp_forward ?
1049 total_history_cycles - partial_history_cycles :
1050 partial_history_cycles;
1051
1052 /*
1053 * Scale the monotonic raw time delta by:
1054 * partial_history_cycles / total_history_cycles
1055 */
1056 corr_raw = (u64)ktime_to_ns(
1057 ktime_sub(ts->sys_monoraw, history->raw));
1058 ret = scale64_check_overflow(partial_history_cycles,
1059 total_history_cycles, &corr_raw);
1060 if (ret)
1061 return ret;
1062
1063 /*
1064 * If there is a discontinuity in the history, scale monotonic raw
1065 * correction by:
1066 * mult(real)/mult(raw) yielding the realtime correction
1067 * Otherwise, calculate the realtime correction similar to monotonic
1068 * raw calculation
1069 */
1070 if (discontinuity) {
1071 corr_real = mul_u64_u32_div
1072 (corr_raw, tk->tkr_mono.mult, tk->tkr_raw.mult);
1073 } else {
1074 corr_real = (u64)ktime_to_ns(
1075 ktime_sub(ts->sys_realtime, history->real));
1076 ret = scale64_check_overflow(partial_history_cycles,
1077 total_history_cycles, &corr_real);
1078 if (ret)
1079 return ret;
1080 }
1081
1082 /* Fixup monotonic raw and real time time values */
1083 if (interp_forward) {
1084 ts->sys_monoraw = ktime_add_ns(history->raw, corr_raw);
1085 ts->sys_realtime = ktime_add_ns(history->real, corr_real);
1086 } else {
1087 ts->sys_monoraw = ktime_sub_ns(ts->sys_monoraw, corr_raw);
1088 ts->sys_realtime = ktime_sub_ns(ts->sys_realtime, corr_real);
1089 }
1090
1091 return 0;
1092}
1093
1094/*
1095 * cycle_between - true if test occurs chronologically between before and after
1096 */
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01001097static bool cycle_between(u64 before, u64 test, u64 after)
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001098{
1099 if (test > before && test < after)
1100 return true;
1101 if (test < before && before > after)
1102 return true;
1103 return false;
1104}
1105
john stultz85240702007-05-08 00:27:59 -07001106/**
Christopher S. Hall8006c242016-02-22 03:15:22 -08001107 * get_device_system_crosststamp - Synchronously capture system/device timestamp
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001108 * @get_time_fn: Callback to get simultaneous device time and
Christopher S. Hall8006c242016-02-22 03:15:22 -08001109 * system counter from the device driver
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001110 * @ctx: Context passed to get_time_fn()
1111 * @history_begin: Historical reference point used to interpolate system
1112 * time when counter provided by the driver is before the current interval
Christopher S. Hall8006c242016-02-22 03:15:22 -08001113 * @xtstamp: Receives simultaneously captured system and device time
1114 *
1115 * Reads a timestamp from a device and correlates it to system time
1116 */
1117int get_device_system_crosststamp(int (*get_time_fn)
1118 (ktime_t *device_time,
1119 struct system_counterval_t *sys_counterval,
1120 void *ctx),
1121 void *ctx,
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001122 struct system_time_snapshot *history_begin,
Christopher S. Hall8006c242016-02-22 03:15:22 -08001123 struct system_device_crosststamp *xtstamp)
1124{
1125 struct system_counterval_t system_counterval;
1126 struct timekeeper *tk = &tk_core.timekeeper;
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01001127 u64 cycles, now, interval_start;
Ingo Molnar64362572016-03-08 11:09:53 +01001128 unsigned int clock_was_set_seq = 0;
Christopher S. Hall8006c242016-02-22 03:15:22 -08001129 ktime_t base_real, base_raw;
Thomas Gleixneracc89612016-12-08 20:49:34 +00001130 u64 nsec_real, nsec_raw;
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001131 u8 cs_was_changed_seq;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01001132 unsigned int seq;
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001133 bool do_interp;
Christopher S. Hall8006c242016-02-22 03:15:22 -08001134 int ret;
1135
1136 do {
1137 seq = read_seqcount_begin(&tk_core.seq);
1138 /*
1139 * Try to synchronously capture device time and a system
1140 * counter value calling back into the device driver
1141 */
1142 ret = get_time_fn(&xtstamp->device, &system_counterval, ctx);
1143 if (ret)
1144 return ret;
1145
1146 /*
1147 * Verify that the clocksource associated with the captured
1148 * system counter value is the same as the currently installed
1149 * timekeeper clocksource
1150 */
1151 if (tk->tkr_mono.clock != system_counterval.cs)
1152 return -ENODEV;
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001153 cycles = system_counterval.cycles;
1154
1155 /*
1156 * Check whether the system counter value provided by the
1157 * device driver is on the current timekeeping interval.
1158 */
John Stultzceea5e32017-06-08 16:44:20 -07001159 now = tk_clock_read(&tk->tkr_mono);
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001160 interval_start = tk->tkr_mono.cycle_last;
1161 if (!cycle_between(interval_start, cycles, now)) {
1162 clock_was_set_seq = tk->clock_was_set_seq;
1163 cs_was_changed_seq = tk->cs_was_changed_seq;
1164 cycles = interval_start;
1165 do_interp = true;
1166 } else {
1167 do_interp = false;
1168 }
Christopher S. Hall8006c242016-02-22 03:15:22 -08001169
1170 base_real = ktime_add(tk->tkr_mono.base,
1171 tk_core.timekeeper.offs_real);
1172 base_raw = tk->tkr_raw.base;
1173
1174 nsec_real = timekeeping_cycles_to_ns(&tk->tkr_mono,
1175 system_counterval.cycles);
1176 nsec_raw = timekeeping_cycles_to_ns(&tk->tkr_raw,
1177 system_counterval.cycles);
1178 } while (read_seqcount_retry(&tk_core.seq, seq));
1179
1180 xtstamp->sys_realtime = ktime_add_ns(base_real, nsec_real);
1181 xtstamp->sys_monoraw = ktime_add_ns(base_raw, nsec_raw);
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001182
1183 /*
1184 * Interpolate if necessary, adjusting back from the start of the
1185 * current interval
1186 */
1187 if (do_interp) {
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01001188 u64 partial_history_cycles, total_history_cycles;
Christopher S. Hall2c756fe2016-02-22 03:15:23 -08001189 bool discontinuity;
1190
1191 /*
1192 * Check that the counter value occurs after the provided
1193 * history reference and that the history doesn't cross a
1194 * clocksource change
1195 */
1196 if (!history_begin ||
1197 !cycle_between(history_begin->cycles,
1198 system_counterval.cycles, cycles) ||
1199 history_begin->cs_was_changed_seq != cs_was_changed_seq)
1200 return -EINVAL;
1201 partial_history_cycles = cycles - system_counterval.cycles;
1202 total_history_cycles = cycles - history_begin->cycles;
1203 discontinuity =
1204 history_begin->clock_was_set_seq != clock_was_set_seq;
1205
1206 ret = adjust_historical_crosststamp(history_begin,
1207 partial_history_cycles,
1208 total_history_cycles,
1209 discontinuity, xtstamp);
1210 if (ret)
1211 return ret;
1212 }
1213
Christopher S. Hall8006c242016-02-22 03:15:22 -08001214 return 0;
1215}
1216EXPORT_SYMBOL_GPL(get_device_system_crosststamp);
1217
1218/**
pang.xunlei21f7eca2014-11-18 19:15:16 +08001219 * do_settimeofday64 - Sets the time of day.
1220 * @ts: pointer to the timespec64 variable containing the new time
john stultz85240702007-05-08 00:27:59 -07001221 *
1222 * Sets the time of day to the new time and update NTP and notify hrtimers
1223 */
pang.xunlei21f7eca2014-11-18 19:15:16 +08001224int do_settimeofday64(const struct timespec64 *ts)
john stultz85240702007-05-08 00:27:59 -07001225{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001226 struct timekeeper *tk = &tk_core.timekeeper;
pang.xunlei21f7eca2014-11-18 19:15:16 +08001227 struct timespec64 ts_delta, xt;
John Stultz92c1d3e2011-11-14 14:05:44 -08001228 unsigned long flags;
Wang YanQinge1d7ba82015-06-23 18:38:54 +08001229 int ret = 0;
john stultz85240702007-05-08 00:27:59 -07001230
Thomas Gleixner7a8e61f2019-03-23 11:36:19 +01001231 if (!timespec64_valid_settod(ts))
john stultz85240702007-05-08 00:27:59 -07001232 return -EINVAL;
1233
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001234 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001235 write_seqcount_begin(&tk_core.seq);
john stultz85240702007-05-08 00:27:59 -07001236
John Stultz4e250fd2012-07-27 14:48:13 -04001237 timekeeping_forward_now(tk);
john stultz85240702007-05-08 00:27:59 -07001238
John Stultz4e250fd2012-07-27 14:48:13 -04001239 xt = tk_xtime(tk);
pang.xunlei21f7eca2014-11-18 19:15:16 +08001240 ts_delta.tv_sec = ts->tv_sec - xt.tv_sec;
1241 ts_delta.tv_nsec = ts->tv_nsec - xt.tv_nsec;
John Stultz1e75fa82012-07-13 01:21:53 -04001242
Wang YanQinge1d7ba82015-06-23 18:38:54 +08001243 if (timespec64_compare(&tk->wall_to_monotonic, &ts_delta) > 0) {
1244 ret = -EINVAL;
1245 goto out;
1246 }
1247
John Stultz7d489d12014-07-16 21:04:01 +00001248 tk_set_wall_to_mono(tk, timespec64_sub(tk->wall_to_monotonic, ts_delta));
john stultz85240702007-05-08 00:27:59 -07001249
pang.xunlei21f7eca2014-11-18 19:15:16 +08001250 tk_set_xtime(tk, ts);
Wang YanQinge1d7ba82015-06-23 18:38:54 +08001251out:
David Vrabel780427f2013-06-27 11:35:46 +01001252 timekeeping_update(tk, TK_CLEAR_NTP | TK_MIRROR | TK_CLOCK_WAS_SET);
john stultz85240702007-05-08 00:27:59 -07001253
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001254 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001255 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
john stultz85240702007-05-08 00:27:59 -07001256
1257 /* signal hrtimers about time change */
1258 clock_was_set();
1259
Ondrej Mosnacek2d87a062019-04-10 11:14:19 +02001260 if (!ret)
1261 audit_tk_injoffset(ts_delta);
1262
Wang YanQinge1d7ba82015-06-23 18:38:54 +08001263 return ret;
john stultz85240702007-05-08 00:27:59 -07001264}
pang.xunlei21f7eca2014-11-18 19:15:16 +08001265EXPORT_SYMBOL(do_settimeofday64);
john stultz85240702007-05-08 00:27:59 -07001266
John Stultzc528f7c2011-02-01 13:52:17 +00001267/**
1268 * timekeeping_inject_offset - Adds or subtracts from the current time.
1269 * @tv: pointer to the timespec variable containing the offset
1270 *
1271 * Adds or subtracts an offset value from the current time.
1272 */
Ondrej Mosnacek985e6952018-07-13 14:06:42 +02001273static int timekeeping_inject_offset(const struct timespec64 *ts)
John Stultzc528f7c2011-02-01 13:52:17 +00001274{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001275 struct timekeeper *tk = &tk_core.timekeeper;
John Stultz92c1d3e2011-11-14 14:05:44 -08001276 unsigned long flags;
Arnd Bergmann1572fa02017-10-19 13:14:45 +02001277 struct timespec64 tmp;
John Stultz4e8b1452012-08-08 15:36:20 -04001278 int ret = 0;
John Stultzc528f7c2011-02-01 13:52:17 +00001279
Arnd Bergmann1572fa02017-10-19 13:14:45 +02001280 if (ts->tv_nsec < 0 || ts->tv_nsec >= NSEC_PER_SEC)
John Stultzc528f7c2011-02-01 13:52:17 +00001281 return -EINVAL;
1282
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001283 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001284 write_seqcount_begin(&tk_core.seq);
John Stultzc528f7c2011-02-01 13:52:17 +00001285
John Stultz4e250fd2012-07-27 14:48:13 -04001286 timekeeping_forward_now(tk);
John Stultzc528f7c2011-02-01 13:52:17 +00001287
John Stultz4e8b1452012-08-08 15:36:20 -04001288 /* Make sure the proposed value is valid */
Arnd Bergmann1572fa02017-10-19 13:14:45 +02001289 tmp = timespec64_add(tk_xtime(tk), *ts);
1290 if (timespec64_compare(&tk->wall_to_monotonic, ts) > 0 ||
Thomas Gleixner7a8e61f2019-03-23 11:36:19 +01001291 !timespec64_valid_settod(&tmp)) {
John Stultz4e8b1452012-08-08 15:36:20 -04001292 ret = -EINVAL;
1293 goto error;
1294 }
John Stultz1e75fa82012-07-13 01:21:53 -04001295
Arnd Bergmann1572fa02017-10-19 13:14:45 +02001296 tk_xtime_add(tk, ts);
1297 tk_set_wall_to_mono(tk, timespec64_sub(tk->wall_to_monotonic, *ts));
John Stultzc528f7c2011-02-01 13:52:17 +00001298
John Stultz4e8b1452012-08-08 15:36:20 -04001299error: /* even if we error out, we forwarded the time, so call update */
David Vrabel780427f2013-06-27 11:35:46 +01001300 timekeeping_update(tk, TK_CLEAR_NTP | TK_MIRROR | TK_CLOCK_WAS_SET);
John Stultzc528f7c2011-02-01 13:52:17 +00001301
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001302 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001303 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
John Stultzc528f7c2011-02-01 13:52:17 +00001304
1305 /* signal hrtimers about time change */
1306 clock_was_set();
1307
John Stultz4e8b1452012-08-08 15:36:20 -04001308 return ret;
John Stultzc528f7c2011-02-01 13:52:17 +00001309}
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02001310
1311/*
1312 * Indicates if there is an offset between the system clock and the hardware
1313 * clock/persistent clock/rtc.
1314 */
1315int persistent_clock_is_local;
1316
1317/*
1318 * Adjust the time obtained from the CMOS to be UTC time instead of
1319 * local time.
1320 *
1321 * This is ugly, but preferable to the alternatives. Otherwise we
1322 * would either need to write a program to do it in /etc/rc (and risk
1323 * confusion if the program gets run more than once; it would also be
1324 * hard to make the program warp the clock precisely n hours) or
1325 * compile in the timezone information into the kernel. Bad, bad....
1326 *
1327 * - TYT, 1992-01-01
1328 *
1329 * The best thing to do is to keep the CMOS clock in universal time (UTC)
1330 * as real UNIX machines always do it. This avoids all headaches about
1331 * daylight saving times and warping kernel clocks.
1332 */
1333void timekeeping_warp_clock(void)
1334{
1335 if (sys_tz.tz_minuteswest != 0) {
Arnd Bergmann1572fa02017-10-19 13:14:45 +02001336 struct timespec64 adjust;
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02001337
1338 persistent_clock_is_local = 1;
1339 adjust.tv_sec = sys_tz.tz_minuteswest * 60;
1340 adjust.tv_nsec = 0;
1341 timekeeping_inject_offset(&adjust);
1342 }
1343}
John Stultzc528f7c2011-02-01 13:52:17 +00001344
John Stultzcc244dd2012-05-03 12:30:07 -07001345/**
Stephen Boyd40d9f822016-12-07 14:33:23 -08001346 * __timekeeping_set_tai_offset - Sets the TAI offset from UTC and monotonic
John Stultzcc244dd2012-05-03 12:30:07 -07001347 *
1348 */
Fengguang Wudd5d70e82013-03-25 12:24:24 -07001349static void __timekeeping_set_tai_offset(struct timekeeper *tk, s32 tai_offset)
John Stultzcc244dd2012-05-03 12:30:07 -07001350{
1351 tk->tai_offset = tai_offset;
John Stultz04005f62013-12-10 17:13:35 -08001352 tk->offs_tai = ktime_add(tk->offs_real, ktime_set(tai_offset, 0));
John Stultzcc244dd2012-05-03 12:30:07 -07001353}
1354
1355/**
john stultz85240702007-05-08 00:27:59 -07001356 * change_clocksource - Swaps clocksources if a new one is available
1357 *
1358 * Accumulates current time interval and initializes new clocksource
1359 */
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001360static int change_clocksource(void *data)
john stultz85240702007-05-08 00:27:59 -07001361{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001362 struct timekeeper *tk = &tk_core.timekeeper;
Magnus Damm4614e6a2009-04-21 12:24:02 -07001363 struct clocksource *new, *old;
John Stultzf695cf92012-03-14 16:38:15 -07001364 unsigned long flags;
john stultz85240702007-05-08 00:27:59 -07001365
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001366 new = (struct clocksource *) data;
john stultz85240702007-05-08 00:27:59 -07001367
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001368 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001369 write_seqcount_begin(&tk_core.seq);
John Stultzf695cf92012-03-14 16:38:15 -07001370
John Stultz4e250fd2012-07-27 14:48:13 -04001371 timekeeping_forward_now(tk);
Thomas Gleixner09ac3692013-04-25 20:31:44 +00001372 /*
1373 * If the cs is in module, get a module reference. Succeeds
1374 * for built-in code (owner == NULL) as well.
1375 */
1376 if (try_module_get(new->owner)) {
1377 if (!new->enable || new->enable(new) == 0) {
Peter Zijlstra876e7882015-03-19 10:09:06 +01001378 old = tk->tkr_mono.clock;
Thomas Gleixner09ac3692013-04-25 20:31:44 +00001379 tk_setup_internals(tk, new);
1380 if (old->disable)
1381 old->disable(old);
1382 module_put(old->owner);
1383 } else {
1384 module_put(new->owner);
1385 }
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001386 }
David Vrabel780427f2013-06-27 11:35:46 +01001387 timekeeping_update(tk, TK_CLEAR_NTP | TK_MIRROR | TK_CLOCK_WAS_SET);
John Stultzf695cf92012-03-14 16:38:15 -07001388
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001389 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001390 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
John Stultzf695cf92012-03-14 16:38:15 -07001391
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001392 return 0;
1393}
john stultz85240702007-05-08 00:27:59 -07001394
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001395/**
1396 * timekeeping_notify - Install a new clock source
1397 * @clock: pointer to the clock source
1398 *
1399 * This function is called from clocksource.c after a new, better clock
1400 * source has been registered. The caller holds the clocksource_mutex.
1401 */
Thomas Gleixnerba919d12013-04-25 20:31:44 +00001402int timekeeping_notify(struct clocksource *clock)
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001403{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001404 struct timekeeper *tk = &tk_core.timekeeper;
John Stultz4e250fd2012-07-27 14:48:13 -04001405
Peter Zijlstra876e7882015-03-19 10:09:06 +01001406 if (tk->tkr_mono.clock == clock)
Thomas Gleixnerba919d12013-04-25 20:31:44 +00001407 return 0;
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001408 stop_machine(change_clocksource, clock, NULL);
john stultz85240702007-05-08 00:27:59 -07001409 tick_clock_notify();
Peter Zijlstra876e7882015-03-19 10:09:06 +01001410 return tk->tkr_mono.clock == clock ? 0 : -1;
john stultz85240702007-05-08 00:27:59 -07001411}
Martin Schwidefsky75c51582009-08-14 15:47:30 +02001412
Thomas Gleixnera40f2622009-07-07 13:00:31 +02001413/**
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02001414 * ktime_get_raw_ts64 - Returns the raw monotonic time in a timespec
John Stultzcdba2ec2014-11-07 11:03:20 -08001415 * @ts: pointer to the timespec64 to be set
John Stultz2d422442008-08-20 16:37:30 -07001416 *
1417 * Returns the raw monotonic time (completely un-modified by ntp)
1418 */
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02001419void ktime_get_raw_ts64(struct timespec64 *ts)
John Stultz2d422442008-08-20 16:37:30 -07001420{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001421 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01001422 unsigned int seq;
Thomas Gleixneracc89612016-12-08 20:49:34 +00001423 u64 nsecs;
John Stultz2d422442008-08-20 16:37:30 -07001424
1425 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001426 seq = read_seqcount_begin(&tk_core.seq);
John Stultzfc6eead72017-05-22 17:20:20 -07001427 ts->tv_sec = tk->raw_sec;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +01001428 nsecs = timekeeping_get_ns(&tk->tkr_raw);
John Stultz2d422442008-08-20 16:37:30 -07001429
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001430 } while (read_seqcount_retry(&tk_core.seq, seq));
John Stultz2d422442008-08-20 16:37:30 -07001431
John Stultzfc6eead72017-05-22 17:20:20 -07001432 ts->tv_nsec = 0;
1433 timespec64_add_ns(ts, nsecs);
John Stultz2d422442008-08-20 16:37:30 -07001434}
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02001435EXPORT_SYMBOL(ktime_get_raw_ts64);
John Stultzcdba2ec2014-11-07 11:03:20 -08001436
John Stultz2d422442008-08-20 16:37:30 -07001437
John Stultz2d422442008-08-20 16:37:30 -07001438/**
Li Zefancf4fc6c2008-02-08 04:19:24 -08001439 * timekeeping_valid_for_hres - Check if timekeeping is suitable for hres
john stultz85240702007-05-08 00:27:59 -07001440 */
Li Zefancf4fc6c2008-02-08 04:19:24 -08001441int timekeeping_valid_for_hres(void)
john stultz85240702007-05-08 00:27:59 -07001442{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001443 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01001444 unsigned int seq;
john stultz85240702007-05-08 00:27:59 -07001445 int ret;
1446
1447 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001448 seq = read_seqcount_begin(&tk_core.seq);
john stultz85240702007-05-08 00:27:59 -07001449
Peter Zijlstra876e7882015-03-19 10:09:06 +01001450 ret = tk->tkr_mono.clock->flags & CLOCK_SOURCE_VALID_FOR_HRES;
john stultz85240702007-05-08 00:27:59 -07001451
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001452 } while (read_seqcount_retry(&tk_core.seq, seq));
john stultz85240702007-05-08 00:27:59 -07001453
1454 return ret;
1455}
1456
1457/**
Jon Hunter98962462009-08-18 12:45:10 -05001458 * timekeeping_max_deferment - Returns max time the clocksource can be deferred
Jon Hunter98962462009-08-18 12:45:10 -05001459 */
1460u64 timekeeping_max_deferment(void)
1461{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001462 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01001463 unsigned int seq;
John Stultz70471f22011-11-14 12:48:10 -08001464 u64 ret;
John Stultz42e71e82012-07-13 01:21:51 -04001465
John Stultz70471f22011-11-14 12:48:10 -08001466 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001467 seq = read_seqcount_begin(&tk_core.seq);
John Stultz70471f22011-11-14 12:48:10 -08001468
Peter Zijlstra876e7882015-03-19 10:09:06 +01001469 ret = tk->tkr_mono.clock->max_idle_ns;
John Stultz70471f22011-11-14 12:48:10 -08001470
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001471 } while (read_seqcount_retry(&tk_core.seq, seq));
John Stultz70471f22011-11-14 12:48:10 -08001472
1473 return ret;
Jon Hunter98962462009-08-18 12:45:10 -05001474}
1475
1476/**
Arnd Bergmann92661782018-08-14 14:15:23 +02001477 * read_persistent_clock64 - Return time from the persistent clock.
john stultz85240702007-05-08 00:27:59 -07001478 *
1479 * Weak dummy function for arches that do not yet support it.
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +02001480 * Reads the time from the battery backed persistent clock.
1481 * Returns a timespec with tv_sec=0 and tv_nsec=0 if unsupported.
john stultz85240702007-05-08 00:27:59 -07001482 *
1483 * XXX - Do be sure to remove it once all arches implement it.
1484 */
Arnd Bergmann92661782018-08-14 14:15:23 +02001485void __weak read_persistent_clock64(struct timespec64 *ts)
john stultz85240702007-05-08 00:27:59 -07001486{
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +02001487 ts->tv_sec = 0;
1488 ts->tv_nsec = 0;
john stultz85240702007-05-08 00:27:59 -07001489}
1490
Martin Schwidefsky23970e32009-08-14 15:47:32 +02001491/**
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001492 * read_persistent_wall_and_boot_offset - Read persistent clock, and also offset
1493 * from the boot.
Martin Schwidefsky23970e32009-08-14 15:47:32 +02001494 *
1495 * Weak dummy function for arches that do not yet support it.
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001496 * wall_time - current time as returned by persistent clock
1497 * boot_offset - offset that is defined as wall_time - boot_time
Pavel Tatashin4b1b7f82018-07-19 16:55:35 -04001498 * The default function calculates offset based on the current value of
1499 * local_clock(). This way architectures that support sched_clock() but don't
1500 * support dedicated boot time clock will provide the best estimate of the
1501 * boot time.
Martin Schwidefsky23970e32009-08-14 15:47:32 +02001502 */
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001503void __weak __init
1504read_persistent_wall_and_boot_offset(struct timespec64 *wall_time,
1505 struct timespec64 *boot_offset)
Martin Schwidefsky23970e32009-08-14 15:47:32 +02001506{
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001507 read_persistent_clock64(wall_time);
Pavel Tatashin4b1b7f82018-07-19 16:55:35 -04001508 *boot_offset = ns_to_timespec64(local_clock());
Martin Schwidefsky23970e32009-08-14 15:47:32 +02001509}
1510
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301511/*
1512 * Flag reflecting whether timekeeping_resume() has injected sleeptime.
1513 *
1514 * The flag starts of false and is only set when a suspend reaches
1515 * timekeeping_suspend(), timekeeping_resume() sets it to false when the
1516 * timekeeper clocksource is not stopping across suspend and has been
1517 * used to update sleep time. If the timekeeper clocksource has stopped
1518 * then the flag stays true and is used by the RTC resume code to decide
1519 * whether sleeptime must be injected and if so the flag gets false then.
1520 *
1521 * If a suspend fails before reaching timekeeping_resume() then the flag
1522 * stays false and prevents erroneous sleeptime injection.
1523 */
1524static bool suspend_timing_needed;
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001525
1526/* Flag for if there is a persistent clock on this platform */
1527static bool persistent_clock_exists;
1528
john stultz85240702007-05-08 00:27:59 -07001529/*
1530 * timekeeping_init - Initializes the clocksource and common timekeeping values
1531 */
1532void __init timekeeping_init(void)
1533{
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001534 struct timespec64 wall_time, boot_offset, wall_to_mono;
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001535 struct timekeeper *tk = &tk_core.timekeeper;
Martin Schwidefsky155ec602009-08-14 15:47:26 +02001536 struct clocksource *clock;
john stultz85240702007-05-08 00:27:59 -07001537 unsigned long flags;
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +02001538
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001539 read_persistent_wall_and_boot_offset(&wall_time, &boot_offset);
Thomas Gleixner7a8e61f2019-03-23 11:36:19 +01001540 if (timespec64_valid_settod(&wall_time) &&
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001541 timespec64_to_ns(&wall_time) > 0) {
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001542 persistent_clock_exists = true;
Pavel Tatashin684ad532018-07-25 16:00:18 -04001543 } else if (timespec64_to_ns(&wall_time) != 0) {
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001544 pr_warn("Persistent clock returned invalid value");
1545 wall_time = (struct timespec64){0};
John Stultz4e8b1452012-08-08 15:36:20 -04001546 }
john stultz85240702007-05-08 00:27:59 -07001547
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001548 if (timespec64_compare(&wall_time, &boot_offset) < 0)
1549 boot_offset = (struct timespec64){0};
1550
1551 /*
1552 * We want set wall_to_mono, so the following is true:
1553 * wall time + wall_to_mono = boot time
1554 */
1555 wall_to_mono = timespec64_sub(boot_offset, wall_time);
1556
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001557 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001558 write_seqcount_begin(&tk_core.seq);
John Stultz06c017f2013-03-22 11:37:28 -07001559 ntp_init();
1560
Martin Schwidefskyf1b82742009-08-14 15:47:21 +02001561 clock = clocksource_default_clock();
Martin Schwidefskya0f7d482009-08-14 15:47:19 +02001562 if (clock->enable)
1563 clock->enable(clock);
John Stultz4e250fd2012-07-27 14:48:13 -04001564 tk_setup_internals(tk, clock);
john stultz85240702007-05-08 00:27:59 -07001565
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001566 tk_set_xtime(tk, &wall_time);
John Stultzfc6eead72017-05-22 17:20:20 -07001567 tk->raw_sec = 0;
John Stultz1e75fa82012-07-13 01:21:53 -04001568
Pavel Tatashin3eca9932018-07-19 16:55:34 -04001569 tk_set_wall_to_mono(tk, wall_to_mono);
John Stultz6d0ef902012-07-27 14:48:12 -04001570
Thomas Gleixner56fd16c2015-10-16 15:50:22 +02001571 timekeeping_update(tk, TK_MIRROR | TK_CLOCK_WAS_SET);
Thomas Gleixner48cdc132013-02-21 22:51:40 +00001572
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001573 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001574 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
john stultz85240702007-05-08 00:27:59 -07001575}
1576
Xunlei Pang264bb3f2015-04-01 20:34:37 -07001577/* time in seconds when suspend began for persistent clock */
John Stultz7d489d12014-07-16 21:04:01 +00001578static struct timespec64 timekeeping_suspend_time;
john stultz85240702007-05-08 00:27:59 -07001579
1580/**
John Stultz304529b2011-04-01 14:32:09 -07001581 * __timekeeping_inject_sleeptime - Internal function to add sleep interval
1582 * @delta: pointer to a timespec delta value
1583 *
1584 * Takes a timespec offset measuring a suspend interval and properly
1585 * adds the sleep offset to the timekeeping variables.
1586 */
John Stultzf726a692012-07-13 01:21:57 -04001587static void __timekeeping_inject_sleeptime(struct timekeeper *tk,
Ondrej Mosnacek985e6952018-07-13 14:06:42 +02001588 const struct timespec64 *delta)
John Stultz304529b2011-04-01 14:32:09 -07001589{
John Stultz7d489d12014-07-16 21:04:01 +00001590 if (!timespec64_valid_strict(delta)) {
John Stultz6d9bcb62014-06-04 16:11:43 -07001591 printk_deferred(KERN_WARNING
1592 "__timekeeping_inject_sleeptime: Invalid "
1593 "sleep delta value!\n");
John Stultzcb5de2f8d2011-06-01 18:18:09 -07001594 return;
1595 }
John Stultzf726a692012-07-13 01:21:57 -04001596 tk_xtime_add(tk, delta);
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +02001597 tk_set_wall_to_mono(tk, timespec64_sub(tk->wall_to_monotonic, *delta));
Thomas Gleixner47da70d2014-07-16 21:05:00 +00001598 tk_update_sleep_time(tk, timespec64_to_ktime(*delta));
Colin Cross5c835452013-05-21 22:32:14 -07001599 tk_debug_account_sleep_time(delta);
John Stultz304529b2011-04-01 14:32:09 -07001600}
1601
Xunlei Pang7f298132015-04-01 20:34:35 -07001602#if defined(CONFIG_PM_SLEEP) && defined(CONFIG_RTC_HCTOSYS_DEVICE)
John Stultz304529b2011-04-01 14:32:09 -07001603/**
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001604 * We have three kinds of time sources to use for sleep time
1605 * injection, the preference order is:
1606 * 1) non-stop clocksource
1607 * 2) persistent clock (ie: RTC accessible when irqs are off)
1608 * 3) RTC
1609 *
1610 * 1) and 2) are used by timekeeping, 3) by RTC subsystem.
1611 * If system has neither 1) nor 2), 3) will be used finally.
1612 *
1613 *
1614 * If timekeeping has injected sleeptime via either 1) or 2),
1615 * 3) becomes needless, so in this case we don't need to call
1616 * rtc_resume(), and this is what timekeeping_rtc_skipresume()
1617 * means.
1618 */
1619bool timekeeping_rtc_skipresume(void)
1620{
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301621 return !suspend_timing_needed;
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001622}
1623
1624/**
1625 * 1) can be determined whether to use or not only when doing
1626 * timekeeping_resume() which is invoked after rtc_suspend(),
1627 * so we can't skip rtc_suspend() surely if system has 1).
1628 *
1629 * But if system has 2), 2) will definitely be used, so in this
1630 * case we don't need to call rtc_suspend(), and this is what
1631 * timekeeping_rtc_skipsuspend() means.
1632 */
1633bool timekeeping_rtc_skipsuspend(void)
1634{
1635 return persistent_clock_exists;
1636}
1637
1638/**
pang.xunlei04d90892014-11-18 19:15:17 +08001639 * timekeeping_inject_sleeptime64 - Adds suspend interval to timeekeeping values
1640 * @delta: pointer to a timespec64 delta value
John Stultz304529b2011-04-01 14:32:09 -07001641 *
Xunlei Pang2ee96632015-04-01 20:34:22 -07001642 * This hook is for architectures that cannot support read_persistent_clock64
John Stultz304529b2011-04-01 14:32:09 -07001643 * because their RTC/persistent clock is only accessible when irqs are enabled.
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001644 * and also don't have an effective nonstop clocksource.
John Stultz304529b2011-04-01 14:32:09 -07001645 *
1646 * This function should only be called by rtc_resume(), and allows
1647 * a suspend offset to be injected into the timekeeping values.
1648 */
Ondrej Mosnacek985e6952018-07-13 14:06:42 +02001649void timekeeping_inject_sleeptime64(const struct timespec64 *delta)
John Stultz304529b2011-04-01 14:32:09 -07001650{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001651 struct timekeeper *tk = &tk_core.timekeeper;
John Stultz92c1d3e2011-11-14 14:05:44 -08001652 unsigned long flags;
John Stultz304529b2011-04-01 14:32:09 -07001653
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001654 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001655 write_seqcount_begin(&tk_core.seq);
John Stultz70471f22011-11-14 12:48:10 -08001656
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301657 suspend_timing_needed = false;
1658
John Stultz4e250fd2012-07-27 14:48:13 -04001659 timekeeping_forward_now(tk);
John Stultz304529b2011-04-01 14:32:09 -07001660
pang.xunlei04d90892014-11-18 19:15:17 +08001661 __timekeeping_inject_sleeptime(tk, delta);
John Stultz304529b2011-04-01 14:32:09 -07001662
David Vrabel780427f2013-06-27 11:35:46 +01001663 timekeeping_update(tk, TK_CLEAR_NTP | TK_MIRROR | TK_CLOCK_WAS_SET);
John Stultz304529b2011-04-01 14:32:09 -07001664
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001665 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001666 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
John Stultz304529b2011-04-01 14:32:09 -07001667
1668 /* signal hrtimers about time change */
1669 clock_was_set();
1670}
Xunlei Pang7f298132015-04-01 20:34:35 -07001671#endif
John Stultz304529b2011-04-01 14:32:09 -07001672
John Stultz304529b2011-04-01 14:32:09 -07001673/**
john stultz85240702007-05-08 00:27:59 -07001674 * timekeeping_resume - Resumes the generic timekeeping subsystem.
john stultz85240702007-05-08 00:27:59 -07001675 */
Rafael J. Wysocki124cf9112015-02-13 23:50:43 +01001676void timekeeping_resume(void)
john stultz85240702007-05-08 00:27:59 -07001677{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001678 struct timekeeper *tk = &tk_core.timekeeper;
Peter Zijlstra876e7882015-03-19 10:09:06 +01001679 struct clocksource *clock = tk->tkr_mono.clock;
John Stultz92c1d3e2011-11-14 14:05:44 -08001680 unsigned long flags;
John Stultz7d489d12014-07-16 21:04:01 +00001681 struct timespec64 ts_new, ts_delta;
Baolin Wang39232ed2018-07-17 15:55:16 +08001682 u64 cycle_now, nsec;
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301683 bool inject_sleeptime = false;
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +02001684
Xunlei Pang2ee96632015-04-01 20:34:22 -07001685 read_persistent_clock64(&ts_new);
john stultz85240702007-05-08 00:27:59 -07001686
Rafael J. Wysockiadc78e62012-08-06 01:40:41 +02001687 clockevents_resume();
Thomas Gleixnerd10ff3f2007-05-14 11:10:02 +02001688 clocksource_resume();
1689
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001690 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001691 write_seqcount_begin(&tk_core.seq);
john stultz85240702007-05-08 00:27:59 -07001692
Feng Tange445cf12013-03-12 11:56:48 +08001693 /*
1694 * After system resumes, we need to calculate the suspended time and
1695 * compensate it for the OS time. There are 3 sources that could be
1696 * used: Nonstop clocksource during suspend, persistent clock and rtc
1697 * device.
1698 *
1699 * One specific platform may have 1 or 2 or all of them, and the
1700 * preference will be:
1701 * suspend-nonstop clocksource -> persistent clock -> rtc
1702 * The less preferred source will only be tried if there is no better
1703 * usable source. The rtc part is handled separately in rtc core code.
1704 */
John Stultzceea5e32017-06-08 16:44:20 -07001705 cycle_now = tk_clock_read(&tk->tkr_mono);
Baolin Wang39232ed2018-07-17 15:55:16 +08001706 nsec = clocksource_stop_suspend_timing(clock, cycle_now);
1707 if (nsec > 0) {
John Stultz7d489d12014-07-16 21:04:01 +00001708 ts_delta = ns_to_timespec64(nsec);
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301709 inject_sleeptime = true;
John Stultz7d489d12014-07-16 21:04:01 +00001710 } else if (timespec64_compare(&ts_new, &timekeeping_suspend_time) > 0) {
1711 ts_delta = timespec64_sub(ts_new, timekeeping_suspend_time);
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301712 inject_sleeptime = true;
john stultz85240702007-05-08 00:27:59 -07001713 }
Feng Tange445cf12013-03-12 11:56:48 +08001714
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301715 if (inject_sleeptime) {
1716 suspend_timing_needed = false;
Feng Tange445cf12013-03-12 11:56:48 +08001717 __timekeeping_inject_sleeptime(tk, &ts_delta);
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301718 }
Feng Tange445cf12013-03-12 11:56:48 +08001719
1720 /* Re-base the last cycle value */
Peter Zijlstra876e7882015-03-19 10:09:06 +01001721 tk->tkr_mono.cycle_last = cycle_now;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +01001722 tk->tkr_raw.cycle_last = cycle_now;
1723
John Stultz4e250fd2012-07-27 14:48:13 -04001724 tk->ntp_error = 0;
john stultz85240702007-05-08 00:27:59 -07001725 timekeeping_suspended = 0;
David Vrabel780427f2013-06-27 11:35:46 +01001726 timekeeping_update(tk, TK_MIRROR | TK_CLOCK_WAS_SET);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001727 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001728 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
john stultz85240702007-05-08 00:27:59 -07001729
1730 touch_softlockup_watchdog();
1731
Thomas Gleixner4ffee522015-03-25 13:09:16 +01001732 tick_resume();
Thomas Gleixnerb12a03c2011-05-02 16:48:57 +02001733 hrtimers_resume();
john stultz85240702007-05-08 00:27:59 -07001734}
1735
Rafael J. Wysocki124cf9112015-02-13 23:50:43 +01001736int timekeeping_suspend(void)
john stultz85240702007-05-08 00:27:59 -07001737{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001738 struct timekeeper *tk = &tk_core.timekeeper;
John Stultz92c1d3e2011-11-14 14:05:44 -08001739 unsigned long flags;
John Stultz7d489d12014-07-16 21:04:01 +00001740 struct timespec64 delta, delta_delta;
1741 static struct timespec64 old_delta;
Baolin Wang39232ed2018-07-17 15:55:16 +08001742 struct clocksource *curr_clock;
1743 u64 cycle_now;
john stultz85240702007-05-08 00:27:59 -07001744
Xunlei Pang2ee96632015-04-01 20:34:22 -07001745 read_persistent_clock64(&timekeeping_suspend_time);
Thomas Gleixner3be90952007-09-16 15:36:43 +02001746
Zoran Markovic0d6bd992013-05-17 11:24:05 -07001747 /*
1748 * On some systems the persistent_clock can not be detected at
1749 * timekeeping_init by its return value, so if we see a valid
1750 * value returned, update the persistent_clock_exists flag.
1751 */
1752 if (timekeeping_suspend_time.tv_sec || timekeeping_suspend_time.tv_nsec)
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001753 persistent_clock_exists = true;
Zoran Markovic0d6bd992013-05-17 11:24:05 -07001754
Mukesh Ojhaf473e5f2018-07-17 12:01:29 +05301755 suspend_timing_needed = true;
1756
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001757 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001758 write_seqcount_begin(&tk_core.seq);
John Stultz4e250fd2012-07-27 14:48:13 -04001759 timekeeping_forward_now(tk);
john stultz85240702007-05-08 00:27:59 -07001760 timekeeping_suspended = 1;
John Stultzcb332172011-05-31 22:53:23 -07001761
Baolin Wang39232ed2018-07-17 15:55:16 +08001762 /*
1763 * Since we've called forward_now, cycle_last stores the value
1764 * just read from the current clocksource. Save this to potentially
1765 * use in suspend timing.
1766 */
1767 curr_clock = tk->tkr_mono.clock;
1768 cycle_now = tk->tkr_mono.cycle_last;
1769 clocksource_start_suspend_timing(curr_clock, cycle_now);
1770
Xunlei Pang0fa88cb2015-04-01 20:34:38 -07001771 if (persistent_clock_exists) {
John Stultzcb332172011-05-31 22:53:23 -07001772 /*
Xunlei Pang264bb3f2015-04-01 20:34:37 -07001773 * To avoid drift caused by repeated suspend/resumes,
1774 * which each can add ~1 second drift error,
1775 * try to compensate so the difference in system time
1776 * and persistent_clock time stays close to constant.
John Stultzcb332172011-05-31 22:53:23 -07001777 */
Xunlei Pang264bb3f2015-04-01 20:34:37 -07001778 delta = timespec64_sub(tk_xtime(tk), timekeeping_suspend_time);
1779 delta_delta = timespec64_sub(delta, old_delta);
1780 if (abs(delta_delta.tv_sec) >= 2) {
1781 /*
1782 * if delta_delta is too large, assume time correction
1783 * has occurred and set old_delta to the current delta.
1784 */
1785 old_delta = delta;
1786 } else {
1787 /* Otherwise try to adjust old_system to compensate */
1788 timekeeping_suspend_time =
1789 timespec64_add(timekeeping_suspend_time, delta_delta);
1790 }
John Stultzcb332172011-05-31 22:53:23 -07001791 }
John Stultz330a1612013-12-11 19:10:36 -08001792
1793 timekeeping_update(tk, TK_MIRROR);
Rafael J. Wysocki060407a2015-02-13 14:49:02 +01001794 halt_fast_timekeeper(tk);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00001795 write_seqcount_end(&tk_core.seq);
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00001796 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
john stultz85240702007-05-08 00:27:59 -07001797
Thomas Gleixner4ffee522015-03-25 13:09:16 +01001798 tick_suspend();
Magnus Dammc54a42b2010-02-02 14:41:41 -08001799 clocksource_suspend();
Rafael J. Wysockiadc78e62012-08-06 01:40:41 +02001800 clockevents_suspend();
john stultz85240702007-05-08 00:27:59 -07001801
1802 return 0;
1803}
1804
1805/* sysfs resume/suspend bits for timekeeping */
Rafael J. Wysockie1a85b22011-03-23 22:16:04 +01001806static struct syscore_ops timekeeping_syscore_ops = {
john stultz85240702007-05-08 00:27:59 -07001807 .resume = timekeeping_resume,
1808 .suspend = timekeeping_suspend,
john stultz85240702007-05-08 00:27:59 -07001809};
1810
Rafael J. Wysockie1a85b22011-03-23 22:16:04 +01001811static int __init timekeeping_init_ops(void)
john stultz85240702007-05-08 00:27:59 -07001812{
Rafael J. Wysockie1a85b22011-03-23 22:16:04 +01001813 register_syscore_ops(&timekeeping_syscore_ops);
1814 return 0;
john stultz85240702007-05-08 00:27:59 -07001815}
Rafael J. Wysockie1a85b22011-03-23 22:16:04 +01001816device_initcall(timekeeping_init_ops);
john stultz85240702007-05-08 00:27:59 -07001817
1818/*
John Stultzdc491592013-12-06 17:25:21 -08001819 * Apply a multiplier adjustment to the timekeeper
john stultz85240702007-05-08 00:27:59 -07001820 */
John Stultzdc491592013-12-06 17:25:21 -08001821static __always_inline void timekeeping_apply_adjustment(struct timekeeper *tk,
1822 s64 offset,
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001823 s32 mult_adj)
john stultz85240702007-05-08 00:27:59 -07001824{
John Stultzdc491592013-12-06 17:25:21 -08001825 s64 interval = tk->cycle_interval;
john stultz85240702007-05-08 00:27:59 -07001826
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001827 if (mult_adj == 0) {
1828 return;
1829 } else if (mult_adj == -1) {
John Stultzdc491592013-12-06 17:25:21 -08001830 interval = -interval;
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001831 offset = -offset;
1832 } else if (mult_adj != 1) {
1833 interval *= mult_adj;
1834 offset *= mult_adj;
john stultz85240702007-05-08 00:27:59 -07001835 }
john stultz85240702007-05-08 00:27:59 -07001836
John Stultzc2bc1112011-10-27 18:12:42 -07001837 /*
1838 * So the following can be confusing.
1839 *
John Stultzdc491592013-12-06 17:25:21 -08001840 * To keep things simple, lets assume mult_adj == 1 for now.
John Stultzc2bc1112011-10-27 18:12:42 -07001841 *
John Stultzdc491592013-12-06 17:25:21 -08001842 * When mult_adj != 1, remember that the interval and offset values
John Stultzc2bc1112011-10-27 18:12:42 -07001843 * have been appropriately scaled so the math is the same.
1844 *
1845 * The basic idea here is that we're increasing the multiplier
1846 * by one, this causes the xtime_interval to be incremented by
1847 * one cycle_interval. This is because:
1848 * xtime_interval = cycle_interval * mult
1849 * So if mult is being incremented by one:
1850 * xtime_interval = cycle_interval * (mult + 1)
1851 * Its the same as:
1852 * xtime_interval = (cycle_interval * mult) + cycle_interval
1853 * Which can be shortened to:
1854 * xtime_interval += cycle_interval
1855 *
1856 * So offset stores the non-accumulated cycles. Thus the current
1857 * time (in shifted nanoseconds) is:
1858 * now = (offset * adj) + xtime_nsec
1859 * Now, even though we're adjusting the clock frequency, we have
1860 * to keep time consistent. In other words, we can't jump back
1861 * in time, and we also want to avoid jumping forward in time.
1862 *
1863 * So given the same offset value, we need the time to be the same
1864 * both before and after the freq adjustment.
1865 * now = (offset * adj_1) + xtime_nsec_1
1866 * now = (offset * adj_2) + xtime_nsec_2
1867 * So:
1868 * (offset * adj_1) + xtime_nsec_1 =
1869 * (offset * adj_2) + xtime_nsec_2
1870 * And we know:
1871 * adj_2 = adj_1 + 1
1872 * So:
1873 * (offset * adj_1) + xtime_nsec_1 =
1874 * (offset * (adj_1+1)) + xtime_nsec_2
1875 * (offset * adj_1) + xtime_nsec_1 =
1876 * (offset * adj_1) + offset + xtime_nsec_2
1877 * Canceling the sides:
1878 * xtime_nsec_1 = offset + xtime_nsec_2
1879 * Which gives us:
1880 * xtime_nsec_2 = xtime_nsec_1 - offset
1881 * Which simplfies to:
1882 * xtime_nsec -= offset
John Stultzc2bc1112011-10-27 18:12:42 -07001883 */
Peter Zijlstra876e7882015-03-19 10:09:06 +01001884 if ((mult_adj > 0) && (tk->tkr_mono.mult + mult_adj < mult_adj)) {
pang.xunlei6067dc52014-10-08 15:03:34 +08001885 /* NTP adjustment caused clocksource mult overflow */
1886 WARN_ON_ONCE(1);
1887 return;
1888 }
1889
Peter Zijlstra876e7882015-03-19 10:09:06 +01001890 tk->tkr_mono.mult += mult_adj;
John Stultzf726a692012-07-13 01:21:57 -04001891 tk->xtime_interval += interval;
Peter Zijlstra876e7882015-03-19 10:09:06 +01001892 tk->tkr_mono.xtime_nsec -= offset;
John Stultzdc491592013-12-06 17:25:21 -08001893}
John Stultz2a8c0882012-07-13 01:21:56 -04001894
John Stultzdc491592013-12-06 17:25:21 -08001895/*
John Stultzdc491592013-12-06 17:25:21 -08001896 * Adjust the timekeeper's multiplier to the correct frequency
1897 * and also to reduce the accumulated error value.
1898 */
1899static void timekeeping_adjust(struct timekeeper *tk, s64 offset)
1900{
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001901 u32 mult;
John Stultzdc491592013-12-06 17:25:21 -08001902
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001903 /*
1904 * Determine the multiplier from the current NTP tick length.
1905 * Avoid expensive division when the tick length doesn't change.
1906 */
1907 if (likely(tk->ntp_tick == ntp_tick_length())) {
1908 mult = tk->tkr_mono.mult - tk->ntp_err_mult;
1909 } else {
1910 tk->ntp_tick = ntp_tick_length();
1911 mult = div64_u64((tk->ntp_tick >> tk->ntp_error_shift) -
1912 tk->xtime_remainder, tk->cycle_interval);
John Stultzdc491592013-12-06 17:25:21 -08001913 }
1914
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001915 /*
1916 * If the clock is behind the NTP time, increase the multiplier by 1
1917 * to catch up with it. If it's ahead and there was a remainder in the
1918 * tick division, the clock will slow down. Otherwise it will stay
1919 * ahead until the tick length changes to a non-divisible value.
1920 */
1921 tk->ntp_err_mult = tk->ntp_error > 0 ? 1 : 0;
1922 mult += tk->ntp_err_mult;
1923
1924 timekeeping_apply_adjustment(tk, offset, mult - tk->tkr_mono.mult);
1925
Peter Zijlstra876e7882015-03-19 10:09:06 +01001926 if (unlikely(tk->tkr_mono.clock->maxadj &&
1927 (abs(tk->tkr_mono.mult - tk->tkr_mono.clock->mult)
1928 > tk->tkr_mono.clock->maxadj))) {
John Stultzdc491592013-12-06 17:25:21 -08001929 printk_once(KERN_WARNING
1930 "Adjusting %s more than 11%% (%ld vs %ld)\n",
Peter Zijlstra876e7882015-03-19 10:09:06 +01001931 tk->tkr_mono.clock->name, (long)tk->tkr_mono.mult,
1932 (long)tk->tkr_mono.clock->mult + tk->tkr_mono.clock->maxadj);
John Stultzdc491592013-12-06 17:25:21 -08001933 }
1934
John Stultz2a8c0882012-07-13 01:21:56 -04001935 /*
1936 * It may be possible that when we entered this function, xtime_nsec
1937 * was very small. Further, if we're slightly speeding the clocksource
1938 * in the code above, its possible the required corrective factor to
1939 * xtime_nsec could cause it to underflow.
1940 *
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001941 * Now, since we have already accumulated the second and the NTP
1942 * subsystem has been notified via second_overflow(), we need to skip
1943 * the next update.
John Stultz2a8c0882012-07-13 01:21:56 -04001944 */
Peter Zijlstra876e7882015-03-19 10:09:06 +01001945 if (unlikely((s64)tk->tkr_mono.xtime_nsec < 0)) {
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001946 tk->tkr_mono.xtime_nsec += (u64)NSEC_PER_SEC <<
1947 tk->tkr_mono.shift;
1948 tk->xtime_sec--;
1949 tk->skip_second_overflow = 1;
John Stultz2a8c0882012-07-13 01:21:56 -04001950 }
john stultz85240702007-05-08 00:27:59 -07001951}
1952
1953/**
John Stultz1f4f9482012-07-13 01:21:54 -04001954 * accumulate_nsecs_to_secs - Accumulates nsecs into secs
1955 *
Zhen Lei571af552015-08-25 14:42:53 +08001956 * Helper function that accumulates the nsecs greater than a second
John Stultz1f4f9482012-07-13 01:21:54 -04001957 * from the xtime_nsec field to the xtime_secs field.
1958 * It also calls into the NTP code to handle leapsecond processing.
1959 *
1960 */
David Vrabel780427f2013-06-27 11:35:46 +01001961static inline unsigned int accumulate_nsecs_to_secs(struct timekeeper *tk)
John Stultz1f4f9482012-07-13 01:21:54 -04001962{
Peter Zijlstra876e7882015-03-19 10:09:06 +01001963 u64 nsecps = (u64)NSEC_PER_SEC << tk->tkr_mono.shift;
John Stultz5258d3f2013-12-11 20:07:49 -08001964 unsigned int clock_set = 0;
John Stultz1f4f9482012-07-13 01:21:54 -04001965
Peter Zijlstra876e7882015-03-19 10:09:06 +01001966 while (tk->tkr_mono.xtime_nsec >= nsecps) {
John Stultz1f4f9482012-07-13 01:21:54 -04001967 int leap;
1968
Peter Zijlstra876e7882015-03-19 10:09:06 +01001969 tk->tkr_mono.xtime_nsec -= nsecps;
John Stultz1f4f9482012-07-13 01:21:54 -04001970 tk->xtime_sec++;
1971
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08001972 /*
1973 * Skip NTP update if this second was accumulated before,
1974 * i.e. xtime_nsec underflowed in timekeeping_adjust()
1975 */
1976 if (unlikely(tk->skip_second_overflow)) {
1977 tk->skip_second_overflow = 0;
1978 continue;
1979 }
1980
John Stultz1f4f9482012-07-13 01:21:54 -04001981 /* Figure out if its a leap sec and apply if needed */
1982 leap = second_overflow(tk->xtime_sec);
John Stultz6d0ef902012-07-27 14:48:12 -04001983 if (unlikely(leap)) {
John Stultz7d489d12014-07-16 21:04:01 +00001984 struct timespec64 ts;
John Stultz1f4f9482012-07-13 01:21:54 -04001985
John Stultz6d0ef902012-07-27 14:48:12 -04001986 tk->xtime_sec += leap;
1987
1988 ts.tv_sec = leap;
1989 ts.tv_nsec = 0;
1990 tk_set_wall_to_mono(tk,
John Stultz7d489d12014-07-16 21:04:01 +00001991 timespec64_sub(tk->wall_to_monotonic, ts));
John Stultz6d0ef902012-07-27 14:48:12 -04001992
John Stultzcc244dd2012-05-03 12:30:07 -07001993 __timekeeping_set_tai_offset(tk, tk->tai_offset - leap);
1994
John Stultz5258d3f2013-12-11 20:07:49 -08001995 clock_set = TK_CLOCK_WAS_SET;
John Stultz6d0ef902012-07-27 14:48:12 -04001996 }
John Stultz1f4f9482012-07-13 01:21:54 -04001997 }
John Stultz5258d3f2013-12-11 20:07:49 -08001998 return clock_set;
John Stultz1f4f9482012-07-13 01:21:54 -04001999}
2000
John Stultz1f4f9482012-07-13 01:21:54 -04002001/**
john stultza092ff02009-10-02 16:17:53 -07002002 * logarithmic_accumulation - shifted accumulation of cycles
2003 *
2004 * This functions accumulates a shifted interval of cycles into
2005 * into a shifted interval nanoseconds. Allows for O(log) accumulation
2006 * loop.
2007 *
2008 * Returns the unconsumed cycles.
2009 */
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01002010static u64 logarithmic_accumulation(struct timekeeper *tk, u64 offset,
2011 u32 shift, unsigned int *clock_set)
john stultza092ff02009-10-02 16:17:53 -07002012{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01002013 u64 interval = tk->cycle_interval << shift;
John Stultz3d88d562017-06-08 16:44:21 -07002014 u64 snsec_per_sec;
john stultza092ff02009-10-02 16:17:53 -07002015
Zhen Lei571af552015-08-25 14:42:53 +08002016 /* If the offset is smaller than a shifted interval, do nothing */
Thomas Gleixner23a95372013-02-21 22:51:36 +00002017 if (offset < interval)
john stultza092ff02009-10-02 16:17:53 -07002018 return offset;
2019
2020 /* Accumulate one shifted interval */
Thomas Gleixner23a95372013-02-21 22:51:36 +00002021 offset -= interval;
Peter Zijlstra876e7882015-03-19 10:09:06 +01002022 tk->tkr_mono.cycle_last += interval;
Peter Zijlstra4a4ad802015-03-19 09:28:44 +01002023 tk->tkr_raw.cycle_last += interval;
john stultza092ff02009-10-02 16:17:53 -07002024
Peter Zijlstra876e7882015-03-19 10:09:06 +01002025 tk->tkr_mono.xtime_nsec += tk->xtime_interval << shift;
John Stultz5258d3f2013-12-11 20:07:49 -08002026 *clock_set |= accumulate_nsecs_to_secs(tk);
john stultza092ff02009-10-02 16:17:53 -07002027
Jason Wesseldeda2e82010-08-09 14:20:09 -07002028 /* Accumulate raw time */
John Stultz3d88d562017-06-08 16:44:21 -07002029 tk->tkr_raw.xtime_nsec += tk->raw_interval << shift;
2030 snsec_per_sec = (u64)NSEC_PER_SEC << tk->tkr_raw.shift;
2031 while (tk->tkr_raw.xtime_nsec >= snsec_per_sec) {
2032 tk->tkr_raw.xtime_nsec -= snsec_per_sec;
John Stultzfc6eead72017-05-22 17:20:20 -07002033 tk->raw_sec++;
john stultza092ff02009-10-02 16:17:53 -07002034 }
2035
2036 /* Accumulate error between NTP and clock interval */
John Stultz375f45b2014-04-23 20:53:29 -07002037 tk->ntp_error += tk->ntp_tick << shift;
John Stultzf726a692012-07-13 01:21:57 -04002038 tk->ntp_error -= (tk->xtime_interval + tk->xtime_remainder) <<
2039 (tk->ntp_error_shift + shift);
john stultza092ff02009-10-02 16:17:53 -07002040
2041 return offset;
2042}
2043
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002044/*
2045 * timekeeping_advance - Updates the timekeeper to the current time and
2046 * current NTP tick length
john stultz85240702007-05-08 00:27:59 -07002047 */
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002048static void timekeeping_advance(enum timekeeping_adv_mode mode)
john stultz85240702007-05-08 00:27:59 -07002049{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002050 struct timekeeper *real_tk = &tk_core.timekeeper;
Thomas Gleixner48cdc132013-02-21 22:51:40 +00002051 struct timekeeper *tk = &shadow_timekeeper;
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +01002052 u64 offset;
john stultza092ff02009-10-02 16:17:53 -07002053 int shift = 0, maxshift;
John Stultz5258d3f2013-12-11 20:07:49 -08002054 unsigned int clock_set = 0;
John Stultz70471f22011-11-14 12:48:10 -08002055 unsigned long flags;
2056
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00002057 raw_spin_lock_irqsave(&timekeeper_lock, flags);
john stultz85240702007-05-08 00:27:59 -07002058
2059 /* Make sure we're fully resumed: */
2060 if (unlikely(timekeeping_suspended))
John Stultz70471f22011-11-14 12:48:10 -08002061 goto out;
john stultz85240702007-05-08 00:27:59 -07002062
John Stultz592913e2010-07-13 17:56:20 -07002063#ifdef CONFIG_ARCH_USES_GETTIMEOFFSET
Thomas Gleixner48cdc132013-02-21 22:51:40 +00002064 offset = real_tk->cycle_interval;
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002065
2066 if (mode != TK_ADV_TICK)
2067 goto out;
John Stultz592913e2010-07-13 17:56:20 -07002068#else
John Stultzceea5e32017-06-08 16:44:20 -07002069 offset = clocksource_delta(tk_clock_read(&tk->tkr_mono),
Peter Zijlstra876e7882015-03-19 10:09:06 +01002070 tk->tkr_mono.cycle_last, tk->tkr_mono.mask);
john stultz85240702007-05-08 00:27:59 -07002071
John Stultzbf2ac312012-08-21 20:30:49 -04002072 /* Check if there's really nothing to do */
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002073 if (offset < real_tk->cycle_interval && mode == TK_ADV_TICK)
John Stultzbf2ac312012-08-21 20:30:49 -04002074 goto out;
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002075#endif
John Stultzbf2ac312012-08-21 20:30:49 -04002076
John Stultz3c17ad12015-03-11 21:16:32 -07002077 /* Do some additional sanity checking */
Stafford Hornea529bea2017-06-28 22:21:35 +09002078 timekeeping_check_update(tk, offset);
John Stultz3c17ad12015-03-11 21:16:32 -07002079
john stultza092ff02009-10-02 16:17:53 -07002080 /*
2081 * With NO_HZ we may have to accumulate many cycle_intervals
2082 * (think "ticks") worth of time at once. To do this efficiently,
2083 * we calculate the largest doubling multiple of cycle_intervals
Jim Cromie88b28ad2012-03-14 21:28:56 -06002084 * that is smaller than the offset. We then accumulate that
john stultza092ff02009-10-02 16:17:53 -07002085 * chunk in one go, and then try to consume the next smaller
2086 * doubled multiple.
john stultz85240702007-05-08 00:27:59 -07002087 */
John Stultz4e250fd2012-07-27 14:48:13 -04002088 shift = ilog2(offset) - ilog2(tk->cycle_interval);
john stultza092ff02009-10-02 16:17:53 -07002089 shift = max(0, shift);
Jim Cromie88b28ad2012-03-14 21:28:56 -06002090 /* Bound shift to one less than what overflows tick_length */
John Stultzea7cf492011-11-14 13:18:07 -08002091 maxshift = (64 - (ilog2(ntp_tick_length())+1)) - 1;
john stultza092ff02009-10-02 16:17:53 -07002092 shift = min(shift, maxshift);
John Stultz4e250fd2012-07-27 14:48:13 -04002093 while (offset >= tk->cycle_interval) {
John Stultz5258d3f2013-12-11 20:07:49 -08002094 offset = logarithmic_accumulation(tk, offset, shift,
2095 &clock_set);
John Stultz4e250fd2012-07-27 14:48:13 -04002096 if (offset < tk->cycle_interval<<shift)
John Stultz830ec042010-03-18 14:47:30 -07002097 shift--;
john stultz85240702007-05-08 00:27:59 -07002098 }
2099
Miroslav Lichvar78b98e32018-03-09 10:42:48 -08002100 /* Adjust the multiplier to correct NTP error */
John Stultz4e250fd2012-07-27 14:48:13 -04002101 timekeeping_adjust(tk, offset);
john stultz85240702007-05-08 00:27:59 -07002102
John Stultz6a867a32010-04-06 14:30:51 -07002103 /*
John Stultz6a867a32010-04-06 14:30:51 -07002104 * Finally, make sure that after the rounding
John Stultz1e75fa82012-07-13 01:21:53 -04002105 * xtime_nsec isn't larger than NSEC_PER_SEC
John Stultz6a867a32010-04-06 14:30:51 -07002106 */
John Stultz5258d3f2013-12-11 20:07:49 -08002107 clock_set |= accumulate_nsecs_to_secs(tk);
Linus Torvalds83f57a12009-12-22 14:10:37 -08002108
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002109 write_seqcount_begin(&tk_core.seq);
Thomas Gleixner48cdc132013-02-21 22:51:40 +00002110 /*
2111 * Update the real timekeeper.
2112 *
2113 * We could avoid this memcpy by switching pointers, but that
2114 * requires changes to all other timekeeper usage sites as
2115 * well, i.e. move the timekeeper pointer getter into the
2116 * spinlocked/seqcount protected sections. And we trade this
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002117 * memcpy under the tk_core.seq against one before we start
Thomas Gleixner48cdc132013-02-21 22:51:40 +00002118 * updating.
2119 */
John Stultz906c5552015-06-17 10:05:53 -07002120 timekeeping_update(tk, clock_set);
Thomas Gleixner48cdc132013-02-21 22:51:40 +00002121 memcpy(real_tk, tk, sizeof(*tk));
John Stultz906c5552015-06-17 10:05:53 -07002122 /* The memcpy must come last. Do not put anything here! */
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002123 write_seqcount_end(&tk_core.seq);
Thomas Gleixnerca4523c2013-02-21 22:51:40 +00002124out:
Thomas Gleixner9a7a71b2013-02-21 22:51:38 +00002125 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
John Stultz47a1b7962013-12-12 13:10:55 -08002126 if (clock_set)
John Stultzcab5e122014-03-27 16:30:49 -07002127 /* Have to call _delayed version, since in irq context*/
2128 clock_was_set_delayed();
john stultz85240702007-05-08 00:27:59 -07002129}
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002130
2131/**
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002132 * update_wall_time - Uses the current clocksource to increment the wall time
2133 *
2134 */
2135void update_wall_time(void)
2136{
2137 timekeeping_advance(TK_ADV_TICK);
2138}
2139
2140/**
John Stultzd08c0cd2014-12-08 12:00:09 -08002141 * getboottime64 - Return the real time of system boot.
2142 * @ts: pointer to the timespec64 to be set
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002143 *
John Stultzd08c0cd2014-12-08 12:00:09 -08002144 * Returns the wall-time of boot in a timespec64.
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002145 *
2146 * This is based on the wall_to_monotonic offset and the total suspend
2147 * time. Calls to settimeofday will affect the value returned (which
2148 * basically means that however wrong your real time clock is at boot time,
2149 * you get the right time here).
2150 */
John Stultzd08c0cd2014-12-08 12:00:09 -08002151void getboottime64(struct timespec64 *ts)
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002152{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002153 struct timekeeper *tk = &tk_core.timekeeper;
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +02002154 ktime_t t = ktime_sub(tk->offs_real, tk->offs_boot);
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +02002155
John Stultzd08c0cd2014-12-08 12:00:09 -08002156 *ts = ktime_to_timespec64(t);
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002157}
John Stultzd08c0cd2014-12-08 12:00:09 -08002158EXPORT_SYMBOL_GPL(getboottime64);
Tomas Janousek7c3f1a52007-07-15 23:39:41 -07002159
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002160void ktime_get_coarse_real_ts64(struct timespec64 *ts)
john stultz2c6b47d2007-07-24 17:47:43 -07002161{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002162 struct timekeeper *tk = &tk_core.timekeeper;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01002163 unsigned int seq;
john stultz2c6b47d2007-07-24 17:47:43 -07002164
2165 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002166 seq = read_seqcount_begin(&tk_core.seq);
Linus Torvalds83f57a12009-12-22 14:10:37 -08002167
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002168 *ts = tk_xtime(tk);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002169 } while (read_seqcount_retry(&tk_core.seq, seq));
john stultz2c6b47d2007-07-24 17:47:43 -07002170}
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002171EXPORT_SYMBOL(ktime_get_coarse_real_ts64);
john stultzda15cfd2009-08-19 19:13:34 -07002172
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002173void ktime_get_coarse_ts64(struct timespec64 *ts)
john stultzda15cfd2009-08-19 19:13:34 -07002174{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002175 struct timekeeper *tk = &tk_core.timekeeper;
John Stultz7d489d12014-07-16 21:04:01 +00002176 struct timespec64 now, mono;
Rasmus Villemoese1e41b62019-03-18 20:55:56 +01002177 unsigned int seq;
john stultzda15cfd2009-08-19 19:13:34 -07002178
2179 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002180 seq = read_seqcount_begin(&tk_core.seq);
Linus Torvalds83f57a12009-12-22 14:10:37 -08002181
John Stultz4e250fd2012-07-27 14:48:13 -04002182 now = tk_xtime(tk);
2183 mono = tk->wall_to_monotonic;
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002184 } while (read_seqcount_retry(&tk_core.seq, seq));
john stultzda15cfd2009-08-19 19:13:34 -07002185
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002186 set_normalized_timespec64(ts, now.tv_sec + mono.tv_sec,
john stultzda15cfd2009-08-19 19:13:34 -07002187 now.tv_nsec + mono.tv_nsec);
john stultzda15cfd2009-08-19 19:13:34 -07002188}
Arnd Bergmannfb7fcc92018-04-27 15:40:14 +02002189EXPORT_SYMBOL(ktime_get_coarse_ts64);
Torben Hohn871cf1e2011-01-27 15:58:55 +01002190
2191/*
John Stultzd6ad4182012-02-28 16:50:11 -08002192 * Must hold jiffies_lock
Torben Hohn871cf1e2011-01-27 15:58:55 +01002193 */
2194void do_timer(unsigned long ticks)
2195{
2196 jiffies_64 += ticks;
Torben Hohn871cf1e2011-01-27 15:58:55 +01002197 calc_global_load(ticks);
2198}
Torben Hohn48cf76f72011-01-27 15:59:05 +01002199
2200/**
John Stultz76f41082014-07-16 21:03:52 +00002201 * ktime_get_update_offsets_now - hrtimer helper
Thomas Gleixner868a3e92015-04-14 21:08:37 +00002202 * @cwsseq: pointer to check and store the clock was set sequence number
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002203 * @offs_real: pointer to storage for monotonic -> realtime offset
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +02002204 * @offs_boot: pointer to storage for monotonic -> boottime offset
Xie XiuQib7bc50e2013-10-18 09:13:30 +08002205 * @offs_tai: pointer to storage for monotonic -> clock tai offset
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002206 *
Thomas Gleixner868a3e92015-04-14 21:08:37 +00002207 * Returns current monotonic time and updates the offsets if the
2208 * sequence number in @cwsseq and timekeeper.clock_was_set_seq are
2209 * different.
2210 *
Xie XiuQib7bc50e2013-10-18 09:13:30 +08002211 * Called from hrtimer_interrupt() or retrigger_next_event()
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002212 */
Thomas Gleixner868a3e92015-04-14 21:08:37 +00002213ktime_t ktime_get_update_offsets_now(unsigned int *cwsseq, ktime_t *offs_real,
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +02002214 ktime_t *offs_boot, ktime_t *offs_tai)
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002215{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002216 struct timekeeper *tk = &tk_core.timekeeper;
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002217 unsigned int seq;
Thomas Gleixnera37c0aa2014-07-16 21:04:19 +00002218 ktime_t base;
2219 u64 nsecs;
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002220
2221 do {
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002222 seq = read_seqcount_begin(&tk_core.seq);
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002223
Peter Zijlstra876e7882015-03-19 10:09:06 +01002224 base = tk->tkr_mono.base;
2225 nsecs = timekeeping_get_ns(&tk->tkr_mono);
John Stultz833f32d2015-06-11 15:54:55 -07002226 base = ktime_add_ns(base, nsecs);
2227
Thomas Gleixner868a3e92015-04-14 21:08:37 +00002228 if (*cwsseq != tk->clock_was_set_seq) {
2229 *cwsseq = tk->clock_was_set_seq;
2230 *offs_real = tk->offs_real;
Thomas Gleixnera3ed0e432018-04-25 15:33:38 +02002231 *offs_boot = tk->offs_boot;
Thomas Gleixner868a3e92015-04-14 21:08:37 +00002232 *offs_tai = tk->offs_tai;
2233 }
John Stultz833f32d2015-06-11 15:54:55 -07002234
2235 /* Handle leapsecond insertion adjustments */
Thomas Gleixner2456e852016-12-25 11:38:40 +01002236 if (unlikely(base >= tk->next_leap_ktime))
John Stultz833f32d2015-06-11 15:54:55 -07002237 *offs_real = ktime_sub(tk->offs_real, ktime_set(1, 0));
2238
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002239 } while (read_seqcount_retry(&tk_core.seq, seq));
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002240
John Stultz833f32d2015-06-11 15:54:55 -07002241 return base;
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002242}
Thomas Gleixnerf6c06ab2012-07-10 18:43:24 -04002243
Torben Hohnf0af911a92011-01-27 15:59:10 +01002244/**
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002245 * timekeeping_validate_timex - Ensures the timex is ok for use in do_adjtimex
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002246 */
Deepa Dinamaniead25412018-07-02 22:44:21 -07002247static int timekeeping_validate_timex(const struct __kernel_timex *txc)
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002248{
2249 if (txc->modes & ADJ_ADJTIME) {
2250 /* singleshot must not be used with any other mode bits */
2251 if (!(txc->modes & ADJ_OFFSET_SINGLESHOT))
2252 return -EINVAL;
2253 if (!(txc->modes & ADJ_OFFSET_READONLY) &&
2254 !capable(CAP_SYS_TIME))
2255 return -EPERM;
2256 } else {
2257 /* In order to modify anything, you gotta be super-user! */
2258 if (txc->modes && !capable(CAP_SYS_TIME))
2259 return -EPERM;
2260 /*
2261 * if the quartz is off by more than 10% then
2262 * something is VERY wrong!
2263 */
2264 if (txc->modes & ADJ_TICK &&
2265 (txc->tick < 900000/USER_HZ ||
2266 txc->tick > 1100000/USER_HZ))
2267 return -EINVAL;
2268 }
2269
2270 if (txc->modes & ADJ_SETOFFSET) {
2271 /* In order to inject time, you gotta be super-user! */
2272 if (!capable(CAP_SYS_TIME))
2273 return -EPERM;
2274
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002275 /*
2276 * Validate if a timespec/timeval used to inject a time
2277 * offset is valid. Offsets can be postive or negative, so
2278 * we don't check tv_sec. The value of the timeval/timespec
2279 * is the sum of its fields,but *NOTE*:
2280 * The field tv_usec/tv_nsec must always be non-negative and
2281 * we can't have more nanoseconds/microseconds than a second.
2282 */
2283 if (txc->time.tv_usec < 0)
2284 return -EINVAL;
2285
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002286 if (txc->modes & ADJ_NANO) {
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002287 if (txc->time.tv_usec >= NSEC_PER_SEC)
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002288 return -EINVAL;
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002289 } else {
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002290 if (txc->time.tv_usec >= USEC_PER_SEC)
Arnd Bergmanne0956dc2017-10-19 13:14:44 +02002291 return -EINVAL;
2292 }
2293 }
2294
2295 /*
2296 * Check for potential multiplication overflows that can
2297 * only happen on 64-bit systems:
2298 */
2299 if ((txc->modes & ADJ_FREQUENCY) && (BITS_PER_LONG == 64)) {
2300 if (LLONG_MIN / PPM_SCALE > txc->freq)
2301 return -EINVAL;
2302 if (LLONG_MAX / PPM_SCALE < txc->freq)
2303 return -EINVAL;
2304 }
2305
2306 return 0;
2307}
2308
2309
2310/**
John Stultzaa6f9c592013-03-22 11:31:29 -07002311 * do_adjtimex() - Accessor function to NTP __do_adjtimex function
2312 */
Deepa Dinamaniead25412018-07-02 22:44:21 -07002313int do_adjtimex(struct __kernel_timex *txc)
John Stultzaa6f9c592013-03-22 11:31:29 -07002314{
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002315 struct timekeeper *tk = &tk_core.timekeeper;
Ondrej Mosnacek7e8eda72019-04-10 11:14:20 +02002316 struct audit_ntp_data ad;
John Stultz06c017f2013-03-22 11:37:28 -07002317 unsigned long flags;
John Stultz7d489d12014-07-16 21:04:01 +00002318 struct timespec64 ts;
John Stultz4e8f8b32013-04-10 12:41:49 -07002319 s32 orig_tai, tai;
John Stultze4085692013-03-22 12:08:52 -07002320 int ret;
2321
2322 /* Validate the data before disabling interrupts */
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002323 ret = timekeeping_validate_timex(txc);
John Stultze4085692013-03-22 12:08:52 -07002324 if (ret)
2325 return ret;
2326
John Stultzcef90372013-03-22 15:04:13 -07002327 if (txc->modes & ADJ_SETOFFSET) {
Arnd Bergmann1572fa02017-10-19 13:14:45 +02002328 struct timespec64 delta;
John Stultzcef90372013-03-22 15:04:13 -07002329 delta.tv_sec = txc->time.tv_sec;
2330 delta.tv_nsec = txc->time.tv_usec;
2331 if (!(txc->modes & ADJ_NANO))
2332 delta.tv_nsec *= 1000;
2333 ret = timekeeping_inject_offset(&delta);
2334 if (ret)
2335 return ret;
Ondrej Mosnacek2d87a062019-04-10 11:14:19 +02002336
2337 audit_tk_injoffset(delta);
John Stultzcef90372013-03-22 15:04:13 -07002338 }
2339
Ondrej Mosnacek7e8eda72019-04-10 11:14:20 +02002340 audit_ntp_init(&ad);
2341
Arnd Bergmannd30faff2018-06-18 16:08:01 +02002342 ktime_get_real_ts64(&ts);
John Stultzaa6f9c592013-03-22 11:31:29 -07002343
John Stultz06c017f2013-03-22 11:37:28 -07002344 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002345 write_seqcount_begin(&tk_core.seq);
John Stultz06c017f2013-03-22 11:37:28 -07002346
John Stultz4e8f8b32013-04-10 12:41:49 -07002347 orig_tai = tai = tk->tai_offset;
Ondrej Mosnacek7e8eda72019-04-10 11:14:20 +02002348 ret = __do_adjtimex(txc, &ts, &tai, &ad);
John Stultz87ace392013-03-22 12:28:15 -07002349
John Stultz4e8f8b32013-04-10 12:41:49 -07002350 if (tai != orig_tai) {
2351 __timekeeping_set_tai_offset(tk, tai);
John Stultzf55c0762013-12-11 18:50:25 -08002352 timekeeping_update(tk, TK_MIRROR | TK_CLOCK_WAS_SET);
John Stultz4e8f8b32013-04-10 12:41:49 -07002353 }
John Stultz833f32d2015-06-11 15:54:55 -07002354 tk_update_leap_state(tk);
2355
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002356 write_seqcount_end(&tk_core.seq);
John Stultz06c017f2013-03-22 11:37:28 -07002357 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
2358
Ondrej Mosnacek7e8eda72019-04-10 11:14:20 +02002359 audit_ntp_log(&ad);
2360
Miroslav Lichvarb061c7a2018-06-04 15:34:21 +02002361 /* Update the multiplier immediately if frequency was set directly */
2362 if (txc->modes & (ADJ_FREQUENCY | ADJ_TICK))
2363 timekeeping_advance(TK_ADV_FREQ);
2364
John Stultz6fdda9a2013-12-10 17:18:18 -08002365 if (tai != orig_tai)
2366 clock_was_set();
2367
John Stultz7bd36012013-09-11 16:50:56 -07002368 ntp_notify_cmos_timer();
2369
John Stultz87ace392013-03-22 12:28:15 -07002370 return ret;
2371}
John Stultzaa6f9c592013-03-22 11:31:29 -07002372
2373#ifdef CONFIG_NTP_PPS
2374/**
2375 * hardpps() - Accessor function to NTP __hardpps function
2376 */
Arnd Bergmann7ec88e42015-09-28 22:21:28 +02002377void hardpps(const struct timespec64 *phase_ts, const struct timespec64 *raw_ts)
John Stultzaa6f9c592013-03-22 11:31:29 -07002378{
John Stultz06c017f2013-03-22 11:37:28 -07002379 unsigned long flags;
2380
2381 raw_spin_lock_irqsave(&timekeeper_lock, flags);
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002382 write_seqcount_begin(&tk_core.seq);
John Stultz06c017f2013-03-22 11:37:28 -07002383
John Stultzaa6f9c592013-03-22 11:31:29 -07002384 __hardpps(phase_ts, raw_ts);
John Stultz06c017f2013-03-22 11:37:28 -07002385
Thomas Gleixner3fdb14f2014-07-16 21:04:07 +00002386 write_seqcount_end(&tk_core.seq);
John Stultz06c017f2013-03-22 11:37:28 -07002387 raw_spin_unlock_irqrestore(&timekeeper_lock, flags);
John Stultzaa6f9c592013-03-22 11:31:29 -07002388}
2389EXPORT_SYMBOL(hardpps);
Robert P. J. Daya2d81802017-09-08 16:17:19 -07002390#endif /* CONFIG_NTP_PPS */
John Stultzaa6f9c592013-03-22 11:31:29 -07002391
2392/**
Torben Hohnf0af911a92011-01-27 15:59:10 +01002393 * xtime_update() - advances the timekeeping infrastructure
2394 * @ticks: number of ticks, that have elapsed since the last call.
2395 *
2396 * Must be called with interrupts disabled.
2397 */
2398void xtime_update(unsigned long ticks)
2399{
John Stultzd6ad4182012-02-28 16:50:11 -08002400 write_seqlock(&jiffies_lock);
Torben Hohnf0af911a92011-01-27 15:59:10 +01002401 do_timer(ticks);
John Stultzd6ad4182012-02-28 16:50:11 -08002402 write_sequnlock(&jiffies_lock);
John Stultz47a1b7962013-12-12 13:10:55 -08002403 update_wall_time();
Torben Hohnf0af911a92011-01-27 15:59:10 +01002404}