4 * Copyright (C) 1991, 1992 Linus Torvalds
6 * This file contains the interface functions for the various
7 * time related system calls: time, stime, gettimeofday, settimeofday,
11 * Modification history kernel/time.c
13 * 1993-09-02 Philip Gladstone
14 * Created file with time related functions from sched.c and adjtimex()
15 * 1993-10-08 Torsten Duwe
16 * adjtime interface update and CMOS clock write code
17 * 1995-08-13 Torsten Duwe
18 * kernel PLL updated to 1994-12-13 specs (rfc-1589)
19 * 1999-01-16 Ulrich Windl
20 * Introduced error checking for many cases in adjtimex().
21 * Updated NTP code according to technical memorandum Jan '96
22 * "A Kernel Model for Precision Timekeeping" by Dave Mills
23 * Allow time_constant larger than MAXTC(6) for NTP v4 (MAXTC == 10)
24 * (Even though the technical memorandum forbids it)
27 #include <linux/timex.h>
28 #include <linux/errno.h>
29 #include <linux/smp_lock.h>
31 #include <asm/uaccess.h>
34 * The timezone where the local system is located. Used as a default by some
35 * programs who obtain this value by using gettimeofday.
37 struct timezone sys_tz
;
39 /* The xtime_lock is not only serializing the xtime read/writes but it's also
40 serializing all accesses to the global NTP variables now. */
41 extern rwlock_t xtime_lock
;
42 extern unsigned long last_time_offset
;
44 #if !defined(__alpha__) && !defined(__ia64__)
47 * sys_time() can be implemented in user-level using
48 * sys_gettimeofday(). Is this for backwards compatibility? If so,
49 * why not move it into the appropriate arch directory (for those
50 * architectures that need it).
52 * XXX This function is NOT 64-bit clean!
54 asmlinkage
long sys_time(int * tloc
)
58 /* SMP: This is fairly trivial. We grab CURRENT_TIME and
59 stuff it to user space. No side effects */
69 * sys_stime() can be implemented in user-level using
70 * sys_settimeofday(). Is this for backwards compatibility? If so,
71 * why not move it into the appropriate arch directory (for those
72 * architectures that need it).
75 asmlinkage
long sys_stime(int * tptr
)
79 if (!capable(CAP_SYS_TIME
))
81 if (get_user(value
, tptr
))
83 write_lock_irq(&xtime_lock
);
87 time_adjust
= 0; /* stop active adjtime() */
88 time_status
|= STA_UNSYNC
;
89 time_maxerror
= NTP_PHASE_LIMIT
;
90 time_esterror
= NTP_PHASE_LIMIT
;
91 write_unlock_irq(&xtime_lock
);
97 asmlinkage
long sys_gettimeofday(struct timeval
*tv
, struct timezone
*tz
)
101 do_gettimeofday(&ktv
);
102 if (copy_to_user(tv
, &ktv
, sizeof(ktv
)))
106 if (copy_to_user(tz
, &sys_tz
, sizeof(sys_tz
)))
113 * Adjust the time obtained from the CMOS to be UTC time instead of
116 * This is ugly, but preferable to the alternatives. Otherwise we
117 * would either need to write a program to do it in /etc/rc (and risk
118 * confusion if the program gets run more than once; it would also be
119 * hard to make the program warp the clock precisely n hours) or
120 * compile in the timezone information into the kernel. Bad, bad....
124 * The best thing to do is to keep the CMOS clock in universal time (UTC)
125 * as real UNIX machines always do it. This avoids all headaches about
126 * daylight saving times and warping kernel clocks.
128 inline static void warp_clock(void)
130 write_lock_irq(&xtime_lock
);
131 xtime
.tv_sec
+= sys_tz
.tz_minuteswest
* 60;
132 last_time_offset
= 0;
133 write_unlock_irq(&xtime_lock
);
137 * In case for some reason the CMOS clock has not already been running
138 * in UTC, but in some local time: The first time we set the timezone,
139 * we will warp the clock so that it is ticking UTC time instead of
140 * local time. Presumably, if someone is setting the timezone then we
141 * are running in an environment where the programs understand about
142 * timezones. This should be done at boot time in the /etc/rc script,
143 * as soon as possible, so that the clock can be set right. Otherwise,
144 * various programs will get confused when the clock gets warped.
147 int do_sys_settimeofday(struct timeval
*tv
, struct timezone
*tz
)
149 static int firsttime
= 1;
151 if (!capable(CAP_SYS_TIME
))
155 /* SMP safe, global irq locking makes it work. */
165 /* SMP safe, again the code in arch/foo/time.c should
166 * globally block out interrupts when it runs.
173 asmlinkage
long sys_settimeofday(struct timeval
*tv
, struct timezone
*tz
)
175 struct timeval new_tv
;
176 struct timezone new_tz
;
179 if (copy_from_user(&new_tv
, tv
, sizeof(*tv
)))
183 if (copy_from_user(&new_tz
, tz
, sizeof(*tz
)))
187 return do_sys_settimeofday(tv
? &new_tv
: NULL
, tz
? &new_tz
: NULL
);
190 long pps_offset
; /* pps time offset (us) */
191 long pps_jitter
= MAXTIME
; /* time dispersion (jitter) (us) */
193 long pps_freq
; /* frequency offset (scaled ppm) */
194 long pps_stabil
= MAXFREQ
; /* frequency dispersion (scaled ppm) */
196 long pps_valid
= PPS_VALID
; /* pps signal watchdog counter */
198 int pps_shift
= PPS_SHIFT
; /* interval duration (s) (shift) */
200 long pps_jitcnt
; /* jitter limit exceeded */
201 long pps_calcnt
; /* calibration intervals */
202 long pps_errcnt
; /* calibration errors */
203 long pps_stbcnt
; /* stability limit exceeded */
205 /* hook for a loadable hardpps kernel module */
206 void (*hardpps_ptr
)(struct timeval
*);
208 /* adjtimex mainly allows reading (and writing, if superuser) of
209 * kernel time-keeping variables. used by xntpd.
211 int do_adjtimex(struct timex
*txc
)
213 long ltemp
, mtemp
, save_adjust
;
216 /* In order to modify anything, you gotta be super-user! */
217 if (txc
->modes
&& !capable(CAP_SYS_TIME
))
220 /* Now we validate the data before disabling interrupts */
222 if ((txc
->modes
& ADJ_OFFSET_SINGLESHOT
) == ADJ_OFFSET_SINGLESHOT
)
223 /* singleshot must not be used with any other mode bits */
224 if (txc
->modes
!= ADJ_OFFSET_SINGLESHOT
)
227 if (txc
->modes
!= ADJ_OFFSET_SINGLESHOT
&& (txc
->modes
& ADJ_OFFSET
))
228 /* adjustment Offset limited to +- .512 seconds */
229 if (txc
->offset
<= - MAXPHASE
|| txc
->offset
>= MAXPHASE
)
232 /* if the quartz is off by more than 10% something is VERY wrong ! */
233 if (txc
->modes
& ADJ_TICK
)
234 if (txc
->tick
< 900000/USER_HZ
||
235 txc
->tick
> 1100000/USER_HZ
)
238 write_lock_irq(&xtime_lock
);
239 result
= time_state
; /* mostly `TIME_OK' */
241 /* Save for later - semantics of adjtime is to return old value */
242 save_adjust
= time_adjust
;
244 #if 0 /* STA_CLOCKERR is never set yet */
245 time_status
&= ~STA_CLOCKERR
; /* reset STA_CLOCKERR */
247 /* If there are input parameters, then process them */
250 if (txc
->modes
& ADJ_STATUS
) /* only set allowed bits */
251 time_status
= (txc
->status
& ~STA_RONLY
) |
252 (time_status
& STA_RONLY
);
254 if (txc
->modes
& ADJ_FREQUENCY
) { /* p. 22 */
255 if (txc
->freq
> MAXFREQ
|| txc
->freq
< -MAXFREQ
) {
259 time_freq
= txc
->freq
- pps_freq
;
262 if (txc
->modes
& ADJ_MAXERROR
) {
263 if (txc
->maxerror
< 0 || txc
->maxerror
>= NTP_PHASE_LIMIT
) {
267 time_maxerror
= txc
->maxerror
;
270 if (txc
->modes
& ADJ_ESTERROR
) {
271 if (txc
->esterror
< 0 || txc
->esterror
>= NTP_PHASE_LIMIT
) {
275 time_esterror
= txc
->esterror
;
278 if (txc
->modes
& ADJ_TIMECONST
) { /* p. 24 */
279 if (txc
->constant
< 0) { /* NTP v4 uses values > 6 */
283 time_constant
= txc
->constant
;
286 if (txc
->modes
& ADJ_OFFSET
) { /* values checked earlier */
287 if (txc
->modes
== ADJ_OFFSET_SINGLESHOT
) {
288 /* adjtime() is independent from ntp_adjtime() */
289 time_adjust
= txc
->offset
;
291 else if ( time_status
& (STA_PLL
| STA_PPSTIME
) ) {
292 ltemp
= (time_status
& (STA_PPSTIME
| STA_PPSSIGNAL
)) ==
293 (STA_PPSTIME
| STA_PPSSIGNAL
) ?
294 pps_offset
: txc
->offset
;
297 * Scale the phase adjustment and
298 * clamp to the operating range.
300 if (ltemp
> MAXPHASE
)
301 time_offset
= MAXPHASE
<< SHIFT_UPDATE
;
302 else if (ltemp
< -MAXPHASE
)
303 time_offset
= -(MAXPHASE
<< SHIFT_UPDATE
);
305 time_offset
= ltemp
<< SHIFT_UPDATE
;
308 * Select whether the frequency is to be controlled
309 * and in which mode (PLL or FLL). Clamp to the operating
310 * range. Ugly multiply/divide should be replaced someday.
313 if (time_status
& STA_FREQHOLD
|| time_reftime
== 0)
314 time_reftime
= xtime
.tv_sec
;
315 mtemp
= xtime
.tv_sec
- time_reftime
;
316 time_reftime
= xtime
.tv_sec
;
317 if (time_status
& STA_FLL
) {
318 if (mtemp
>= MINSEC
) {
319 ltemp
= (time_offset
/ mtemp
) << (SHIFT_USEC
-
322 time_freq
-= -ltemp
>> SHIFT_KH
;
324 time_freq
+= ltemp
>> SHIFT_KH
;
325 } else /* calibration interval too short (p. 12) */
327 } else { /* PLL mode */
328 if (mtemp
< MAXSEC
) {
331 time_freq
-= -ltemp
>> (time_constant
+
333 SHIFT_KF
- SHIFT_USEC
);
335 time_freq
+= ltemp
>> (time_constant
+
337 SHIFT_KF
- SHIFT_USEC
);
338 } else /* calibration interval too long (p. 12) */
341 if (time_freq
> time_tolerance
)
342 time_freq
= time_tolerance
;
343 else if (time_freq
< -time_tolerance
)
344 time_freq
= -time_tolerance
;
345 } /* STA_PLL || STA_PPSTIME */
346 } /* txc->modes & ADJ_OFFSET */
347 if (txc
->modes
& ADJ_TICK
) {
348 tick_usec
= txc
->tick
;
349 tick_nsec
= TICK_NSEC(tick_usec
);
352 leave
: if ((time_status
& (STA_UNSYNC
|STA_CLOCKERR
)) != 0
353 || ((time_status
& (STA_PPSFREQ
|STA_PPSTIME
)) != 0
354 && (time_status
& STA_PPSSIGNAL
) == 0)
356 || ((time_status
& (STA_PPSTIME
|STA_PPSJITTER
))
357 == (STA_PPSTIME
|STA_PPSJITTER
))
359 || ((time_status
& STA_PPSFREQ
) != 0
360 && (time_status
& (STA_PPSWANDER
|STA_PPSERROR
)) != 0))
364 if ((txc
->modes
& ADJ_OFFSET_SINGLESHOT
) == ADJ_OFFSET_SINGLESHOT
)
365 txc
->offset
= save_adjust
;
368 txc
->offset
= -(-time_offset
>> SHIFT_UPDATE
);
370 txc
->offset
= time_offset
>> SHIFT_UPDATE
;
372 txc
->freq
= time_freq
+ pps_freq
;
373 txc
->maxerror
= time_maxerror
;
374 txc
->esterror
= time_esterror
;
375 txc
->status
= time_status
;
376 txc
->constant
= time_constant
;
377 txc
->precision
= time_precision
;
378 txc
->tolerance
= time_tolerance
;
379 txc
->tick
= tick_usec
;
380 txc
->ppsfreq
= pps_freq
;
381 txc
->jitter
= pps_jitter
>> PPS_AVG
;
382 txc
->shift
= pps_shift
;
383 txc
->stabil
= pps_stabil
;
384 txc
->jitcnt
= pps_jitcnt
;
385 txc
->calcnt
= pps_calcnt
;
386 txc
->errcnt
= pps_errcnt
;
387 txc
->stbcnt
= pps_stbcnt
;
388 last_time_offset
= 0;
389 write_unlock_irq(&xtime_lock
);
390 do_gettimeofday(&txc
->time
);
394 asmlinkage
long sys_adjtimex(struct timex
*txc_p
)
396 struct timex txc
; /* Local copy of parameter */
399 /* Copy the user data space into the kernel copy
400 * structure. But bear in mind that the structures
403 if(copy_from_user(&txc
, txc_p
, sizeof(struct timex
)))
405 ret
= do_adjtimex(&txc
);
406 return copy_to_user(txc_p
, &txc
, sizeof(struct timex
)) ? -EFAULT
: ret
;