xref: /freebsd/sys/kern/kern_time.c (revision 3f92429a245fb220df18459a27c61e646d676514)
1df8bae1dSRodney W. Grimes /*
2df8bae1dSRodney W. Grimes  * Copyright (c) 1982, 1986, 1989, 1993
3df8bae1dSRodney W. Grimes  *	The Regents of the University of California.  All rights reserved.
4df8bae1dSRodney W. Grimes  *
5df8bae1dSRodney W. Grimes  * Redistribution and use in source and binary forms, with or without
6df8bae1dSRodney W. Grimes  * modification, are permitted provided that the following conditions
7df8bae1dSRodney W. Grimes  * are met:
8df8bae1dSRodney W. Grimes  * 1. Redistributions of source code must retain the above copyright
9df8bae1dSRodney W. Grimes  *    notice, this list of conditions and the following disclaimer.
10df8bae1dSRodney W. Grimes  * 2. Redistributions in binary form must reproduce the above copyright
11df8bae1dSRodney W. Grimes  *    notice, this list of conditions and the following disclaimer in the
12df8bae1dSRodney W. Grimes  *    documentation and/or other materials provided with the distribution.
13df8bae1dSRodney W. Grimes  * 3. All advertising materials mentioning features or use of this software
14df8bae1dSRodney W. Grimes  *    must display the following acknowledgement:
15df8bae1dSRodney W. Grimes  *	This product includes software developed by the University of
16df8bae1dSRodney W. Grimes  *	California, Berkeley and its contributors.
17df8bae1dSRodney W. Grimes  * 4. Neither the name of the University nor the names of its contributors
18df8bae1dSRodney W. Grimes  *    may be used to endorse or promote products derived from this software
19df8bae1dSRodney W. Grimes  *    without specific prior written permission.
20df8bae1dSRodney W. Grimes  *
21df8bae1dSRodney W. Grimes  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22df8bae1dSRodney W. Grimes  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23df8bae1dSRodney W. Grimes  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24df8bae1dSRodney W. Grimes  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25df8bae1dSRodney W. Grimes  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26df8bae1dSRodney W. Grimes  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27df8bae1dSRodney W. Grimes  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28df8bae1dSRodney W. Grimes  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29df8bae1dSRodney W. Grimes  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30df8bae1dSRodney W. Grimes  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31df8bae1dSRodney W. Grimes  * SUCH DAMAGE.
32df8bae1dSRodney W. Grimes  *
33df8bae1dSRodney W. Grimes  *	@(#)kern_time.c	8.1 (Berkeley) 6/10/93
343f92429aSMatt Jacob  * $Id: kern_time.c,v 1.62 1999/04/07 16:36:56 nsayer Exp $
35df8bae1dSRodney W. Grimes  */
36df8bae1dSRodney W. Grimes 
37df8bae1dSRodney W. Grimes #include <sys/param.h>
38a5c9bce7SBruce Evans #include <sys/buf.h>
39d2d3e875SBruce Evans #include <sys/sysproto.h>
40df8bae1dSRodney W. Grimes #include <sys/resourcevar.h>
41797f2d22SPoul-Henning Kamp #include <sys/signalvar.h>
42df8bae1dSRodney W. Grimes #include <sys/kernel.h>
43df8bae1dSRodney W. Grimes #include <sys/systm.h>
4494c8fcd8SPeter Wemm #include <sys/sysent.h>
45df8bae1dSRodney W. Grimes #include <sys/proc.h>
46708e7684SPeter Wemm #include <sys/time.h>
47df8bae1dSRodney W. Grimes #include <sys/vnode.h>
485b870b7bSPeter Wemm #include <vm/vm.h>
495b870b7bSPeter Wemm #include <vm/vm_extern.h>
50df8bae1dSRodney W. Grimes 
51ac7e6123SDavid Greenman struct timezone tz;
52ac7e6123SDavid Greenman 
53df8bae1dSRodney W. Grimes /*
54df8bae1dSRodney W. Grimes  * Time of day and interval timer support.
55df8bae1dSRodney W. Grimes  *
56df8bae1dSRodney W. Grimes  * These routines provide the kernel entry points to get and set
57df8bae1dSRodney W. Grimes  * the time-of-day and per-process interval timers.  Subroutines
58df8bae1dSRodney W. Grimes  * here provide support for adding and subtracting timeval structures
59df8bae1dSRodney W. Grimes  * and decrementing interval timers, optionally reloading the interval
60df8bae1dSRodney W. Grimes  * timers when they expire.
61df8bae1dSRodney W. Grimes  */
62df8bae1dSRodney W. Grimes 
635b870b7bSPeter Wemm static int	nanosleep1 __P((struct proc *p, struct timespec *rqt,
645b870b7bSPeter Wemm 		    struct timespec *rmt));
657d7fb492SBruce Evans static int	settime __P((struct timeval *));
667d7fb492SBruce Evans static void	timevalfix __P((struct timeval *));
67cb226aaaSPoul-Henning Kamp static void	no_lease_updatetime __P((int));
6894c8fcd8SPeter Wemm 
691b09ae77SPoul-Henning Kamp static void
701b09ae77SPoul-Henning Kamp no_lease_updatetime(deltat)
711b09ae77SPoul-Henning Kamp 	int deltat;
721b09ae77SPoul-Henning Kamp {
731b09ae77SPoul-Henning Kamp }
741b09ae77SPoul-Henning Kamp 
751b09ae77SPoul-Henning Kamp void (*lease_updatetime) __P((int))  = no_lease_updatetime;
761b09ae77SPoul-Henning Kamp 
7794c8fcd8SPeter Wemm static int
7894c8fcd8SPeter Wemm settime(tv)
7994c8fcd8SPeter Wemm 	struct timeval *tv;
8094c8fcd8SPeter Wemm {
81fcae3aa6SNick Sayer 	struct timeval delta, tv1, tv2;
82fcae3aa6SNick Sayer 	static struct timeval maxtime;
837ec73f64SPoul-Henning Kamp 	struct timespec ts;
8494c8fcd8SPeter Wemm 	int s;
8594c8fcd8SPeter Wemm 
86708e7684SPeter Wemm 	s = splclock();
879c8fff87SBruce Evans 	microtime(&tv1);
8800af9731SPoul-Henning Kamp 	delta = *tv;
8900af9731SPoul-Henning Kamp 	timevalsub(&delta, &tv1);
9094c8fcd8SPeter Wemm 
9194c8fcd8SPeter Wemm 	/*
929c8fff87SBruce Evans 	 * If the system is secure, we do not allow the time to be
93fcae3aa6SNick Sayer 	 * set to a value earlier than 1 second less than the highest
94fcae3aa6SNick Sayer 	 * time we have yet seen. The worst a miscreant can do in
95fcae3aa6SNick Sayer 	 * this circumstance is "freeze" time. He couldn't go
96fcae3aa6SNick Sayer 	 * back to the past.
9794c8fcd8SPeter Wemm 	 */
98fcae3aa6SNick Sayer 	if (securelevel > 1) {
99fcae3aa6SNick Sayer 		if (delta.tv_sec < 0 || delta.tv_usec < 0) {
1003f92429aSMatt Jacob 			/*
1013f92429aSMatt Jacob 			 * Initialize maxtime if we've not seen it before.
1023f92429aSMatt Jacob 			 */
103fcae3aa6SNick Sayer 			if (tv1.tv_sec > maxtime.tv_sec)
104fcae3aa6SNick Sayer 				maxtime = tv1;
105fcae3aa6SNick Sayer 			tv2 = *tv;
106fcae3aa6SNick Sayer 			timevalsub(&tv2, &maxtime);
107fcae3aa6SNick Sayer 			if (tv2.tv_sec < -1) {
1083f92429aSMatt Jacob 				tv->tv_sec = maxtime.tv_sec - 1;
109fcae3aa6SNick Sayer 				printf("Time adjustment clamped to -1 second\n");
110fcae3aa6SNick Sayer 			}
1113f92429aSMatt Jacob 		} else {
1123f92429aSMatt Jacob 			/*
1133f92429aSMatt Jacob 			 * XXX
114fcae3aa6SNick Sayer 			 * We have to figure out how to be secure
115fcae3aa6SNick Sayer 			 * in this case. Allowing arbitrary
116fcae3aa6SNick Sayer 			 * positive increases allows a miscreant
117fcae3aa6SNick Sayer 			 * to simply wrap time around the end
118fcae3aa6SNick Sayer 			 * of time.
119fcae3aa6SNick Sayer 			 */
120fcae3aa6SNick Sayer 		}
1219c8fff87SBruce Evans 	}
1229c8fff87SBruce Evans 
1237ec73f64SPoul-Henning Kamp 	ts.tv_sec = tv->tv_sec;
1247ec73f64SPoul-Henning Kamp 	ts.tv_nsec = tv->tv_usec * 1000;
1257ec73f64SPoul-Henning Kamp 	set_timecounter(&ts);
12694c8fcd8SPeter Wemm 	(void) splsoftclock();
12794c8fcd8SPeter Wemm 	lease_updatetime(delta.tv_sec);
12894c8fcd8SPeter Wemm 	splx(s);
12994c8fcd8SPeter Wemm 	resettodr();
13094c8fcd8SPeter Wemm 	return (0);
13194c8fcd8SPeter Wemm }
13294c8fcd8SPeter Wemm 
13394c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
13494c8fcd8SPeter Wemm struct clock_gettime_args {
13594c8fcd8SPeter Wemm 	clockid_t clock_id;
13694c8fcd8SPeter Wemm 	struct	timespec *tp;
13794c8fcd8SPeter Wemm };
13894c8fcd8SPeter Wemm #endif
139708e7684SPeter Wemm 
14094c8fcd8SPeter Wemm /* ARGSUSED */
14194c8fcd8SPeter Wemm int
142cb226aaaSPoul-Henning Kamp clock_gettime(p, uap)
14394c8fcd8SPeter Wemm 	struct proc *p;
14494c8fcd8SPeter Wemm 	struct clock_gettime_args *uap;
14594c8fcd8SPeter Wemm {
14694c8fcd8SPeter Wemm 	struct timespec ats;
14794c8fcd8SPeter Wemm 
148708e7684SPeter Wemm 	if (SCARG(uap, clock_id) != CLOCK_REALTIME)
14994c8fcd8SPeter Wemm 		return (EINVAL);
1507ec73f64SPoul-Henning Kamp 	nanotime(&ats);
151708e7684SPeter Wemm 	return (copyout(&ats, SCARG(uap, tp), sizeof(ats)));
15294c8fcd8SPeter Wemm }
15394c8fcd8SPeter Wemm 
15494c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
15594c8fcd8SPeter Wemm struct clock_settime_args {
15694c8fcd8SPeter Wemm 	clockid_t clock_id;
15794c8fcd8SPeter Wemm 	const struct	timespec *tp;
15894c8fcd8SPeter Wemm };
15994c8fcd8SPeter Wemm #endif
160708e7684SPeter Wemm 
16194c8fcd8SPeter Wemm /* ARGSUSED */
16294c8fcd8SPeter Wemm int
163cb226aaaSPoul-Henning Kamp clock_settime(p, uap)
16494c8fcd8SPeter Wemm 	struct proc *p;
16594c8fcd8SPeter Wemm 	struct clock_settime_args *uap;
16694c8fcd8SPeter Wemm {
16794c8fcd8SPeter Wemm 	struct timeval atv;
16894c8fcd8SPeter Wemm 	struct timespec ats;
16994c8fcd8SPeter Wemm 	int error;
17094c8fcd8SPeter Wemm 
17194c8fcd8SPeter Wemm 	if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
17294c8fcd8SPeter Wemm 		return (error);
173708e7684SPeter Wemm 	if (SCARG(uap, clock_id) != CLOCK_REALTIME)
17494c8fcd8SPeter Wemm 		return (EINVAL);
17594c8fcd8SPeter Wemm 	if ((error = copyin(SCARG(uap, tp), &ats, sizeof(ats))) != 0)
17694c8fcd8SPeter Wemm 		return (error);
1773fc9295dSBruce Evans 	if (ats.tv_nsec < 0 || ats.tv_nsec >= 1000000000)
178708e7684SPeter Wemm 		return (EINVAL);
179a0502b19SPoul-Henning Kamp 	/* XXX Don't convert nsec->usec and back */
18094c8fcd8SPeter Wemm 	TIMESPEC_TO_TIMEVAL(&atv, &ats);
18194c8fcd8SPeter Wemm 	if ((error = settime(&atv)))
18294c8fcd8SPeter Wemm 		return (error);
183708e7684SPeter Wemm 	return (0);
18494c8fcd8SPeter Wemm }
18594c8fcd8SPeter Wemm 
18694c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
18794c8fcd8SPeter Wemm struct clock_getres_args {
18894c8fcd8SPeter Wemm 	clockid_t clock_id;
18994c8fcd8SPeter Wemm 	struct	timespec *tp;
19094c8fcd8SPeter Wemm };
19194c8fcd8SPeter Wemm #endif
192708e7684SPeter Wemm 
19394c8fcd8SPeter Wemm int
194cb226aaaSPoul-Henning Kamp clock_getres(p, uap)
19594c8fcd8SPeter Wemm 	struct proc *p;
19694c8fcd8SPeter Wemm 	struct clock_getres_args *uap;
19794c8fcd8SPeter Wemm {
19894c8fcd8SPeter Wemm 	struct timespec ts;
199708e7684SPeter Wemm 	int error;
20094c8fcd8SPeter Wemm 
201708e7684SPeter Wemm 	if (SCARG(uap, clock_id) != CLOCK_REALTIME)
20294c8fcd8SPeter Wemm 		return (EINVAL);
203708e7684SPeter Wemm 	error = 0;
20494c8fcd8SPeter Wemm 	if (SCARG(uap, tp)) {
20594c8fcd8SPeter Wemm 		ts.tv_sec = 0;
206a58f0f8eSPoul-Henning Kamp 		ts.tv_nsec = 1000000000 / timecounter->tc_frequency;
20794c8fcd8SPeter Wemm 		error = copyout(&ts, SCARG(uap, tp), sizeof(ts));
20894c8fcd8SPeter Wemm 	}
209708e7684SPeter Wemm 	return (error);
21094c8fcd8SPeter Wemm }
21194c8fcd8SPeter Wemm 
21294c8fcd8SPeter Wemm static int nanowait;
21394c8fcd8SPeter Wemm 
2145b870b7bSPeter Wemm static int
2155b870b7bSPeter Wemm nanosleep1(p, rqt, rmt)
2165b870b7bSPeter Wemm 	struct proc *p;
2175b870b7bSPeter Wemm 	struct timespec *rqt, *rmt;
2185b870b7bSPeter Wemm {
2195704ba6aSPoul-Henning Kamp 	struct timespec ts, ts2, ts3;
22033841826SPoul-Henning Kamp 	struct timeval tv;
22133841826SPoul-Henning Kamp 	int error;
2225b870b7bSPeter Wemm 
2237d7fb492SBruce Evans 	if (rqt->tv_nsec < 0 || rqt->tv_nsec >= 1000000000)
224708e7684SPeter Wemm 		return (EINVAL);
225d254af07SMatthew Dillon 	if (rqt->tv_sec < 0 || (rqt->tv_sec == 0 && rqt->tv_nsec == 0))
2267d7fb492SBruce Evans 		return (0);
227c21410e1SPoul-Henning Kamp 	getnanouptime(&ts);
22800af9731SPoul-Henning Kamp 	timespecadd(&ts, rqt);
22933841826SPoul-Henning Kamp 	TIMESPEC_TO_TIMEVAL(&tv, rqt);
23033841826SPoul-Henning Kamp 	for (;;) {
23133841826SPoul-Henning Kamp 		error = tsleep(&nanowait, PWAIT | PCATCH, "nanslp",
23233841826SPoul-Henning Kamp 		    tvtohz(&tv));
233c21410e1SPoul-Henning Kamp 		getnanouptime(&ts2);
23433841826SPoul-Henning Kamp 		if (error != EWOULDBLOCK) {
23533841826SPoul-Henning Kamp 			if (error == ERESTART)
23694c8fcd8SPeter Wemm 				error = EINTR;
23733841826SPoul-Henning Kamp 			if (rmt != NULL) {
23833841826SPoul-Henning Kamp 				timespecsub(&ts, &ts2);
23933841826SPoul-Henning Kamp 				if (ts.tv_sec < 0)
24033841826SPoul-Henning Kamp 					timespecclear(&ts);
24100af9731SPoul-Henning Kamp 				*rmt = ts;
24200af9731SPoul-Henning Kamp 			}
24333841826SPoul-Henning Kamp 			return (error);
24433841826SPoul-Henning Kamp 		}
24533841826SPoul-Henning Kamp 		if (timespeccmp(&ts2, &ts, >=))
24633841826SPoul-Henning Kamp 			return (0);
2475704ba6aSPoul-Henning Kamp 		ts3 = ts;
2485704ba6aSPoul-Henning Kamp 		timespecsub(&ts3, &ts2);
2495704ba6aSPoul-Henning Kamp 		TIMESPEC_TO_TIMEVAL(&tv, &ts3);
25033841826SPoul-Henning Kamp 	}
2515b870b7bSPeter Wemm }
25294c8fcd8SPeter Wemm 
2535b870b7bSPeter Wemm #ifndef _SYS_SYSPROTO_H_
2545b870b7bSPeter Wemm struct nanosleep_args {
2555b870b7bSPeter Wemm 	struct	timespec *rqtp;
2565b870b7bSPeter Wemm 	struct	timespec *rmtp;
2575b870b7bSPeter Wemm };
2585b870b7bSPeter Wemm #endif
2595b870b7bSPeter Wemm 
2605b870b7bSPeter Wemm /* ARGSUSED */
2615b870b7bSPeter Wemm int
262cb226aaaSPoul-Henning Kamp nanosleep(p, uap)
2635b870b7bSPeter Wemm 	struct proc *p;
2645b870b7bSPeter Wemm 	struct nanosleep_args *uap;
2655b870b7bSPeter Wemm {
2665b870b7bSPeter Wemm 	struct timespec rmt, rqt;
2675b870b7bSPeter Wemm 	int error, error2;
2685b870b7bSPeter Wemm 
2695b870b7bSPeter Wemm 	error = copyin(SCARG(uap, rqtp), &rqt, sizeof(rqt));
2705b870b7bSPeter Wemm 	if (error)
2715b870b7bSPeter Wemm 		return (error);
272bf5acbf5SPeter Wemm 	if (SCARG(uap, rmtp))
2735b870b7bSPeter Wemm 		if (!useracc((caddr_t)SCARG(uap, rmtp), sizeof(rmt), B_WRITE))
2745b870b7bSPeter Wemm 			return (EFAULT);
2755b870b7bSPeter Wemm 	error = nanosleep1(p, &rqt, &rmt);
276d59fbbf6SPeter Wemm 	if (error && SCARG(uap, rmtp)) {
277708e7684SPeter Wemm 		error2 = copyout(&rmt, SCARG(uap, rmtp), sizeof(rmt));
2785b870b7bSPeter Wemm 		if (error2)	/* XXX shouldn't happen, did useracc() above */
279708e7684SPeter Wemm 			return (error2);
280708e7684SPeter Wemm 	}
281708e7684SPeter Wemm 	return (error);
28294c8fcd8SPeter Wemm }
28394c8fcd8SPeter Wemm 
2845b870b7bSPeter Wemm #ifndef _SYS_SYSPROTO_H_
285df8bae1dSRodney W. Grimes struct gettimeofday_args {
286df8bae1dSRodney W. Grimes 	struct	timeval *tp;
287df8bae1dSRodney W. Grimes 	struct	timezone *tzp;
288df8bae1dSRodney W. Grimes };
289d2d3e875SBruce Evans #endif
290df8bae1dSRodney W. Grimes /* ARGSUSED */
29126f9a767SRodney W. Grimes int
292cb226aaaSPoul-Henning Kamp gettimeofday(p, uap)
293df8bae1dSRodney W. Grimes 	struct proc *p;
294df8bae1dSRodney W. Grimes 	register struct gettimeofday_args *uap;
295df8bae1dSRodney W. Grimes {
296df8bae1dSRodney W. Grimes 	struct timeval atv;
297df8bae1dSRodney W. Grimes 	int error = 0;
298df8bae1dSRodney W. Grimes 
299df8bae1dSRodney W. Grimes 	if (uap->tp) {
300df8bae1dSRodney W. Grimes 		microtime(&atv);
301bb56ec4aSPoul-Henning Kamp 		if ((error = copyout((caddr_t)&atv, (caddr_t)uap->tp,
302bb56ec4aSPoul-Henning Kamp 		    sizeof (atv))))
303df8bae1dSRodney W. Grimes 			return (error);
304df8bae1dSRodney W. Grimes 	}
305df8bae1dSRodney W. Grimes 	if (uap->tzp)
306df8bae1dSRodney W. Grimes 		error = copyout((caddr_t)&tz, (caddr_t)uap->tzp,
307df8bae1dSRodney W. Grimes 		    sizeof (tz));
308df8bae1dSRodney W. Grimes 	return (error);
309df8bae1dSRodney W. Grimes }
310df8bae1dSRodney W. Grimes 
311d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
312df8bae1dSRodney W. Grimes struct settimeofday_args {
313df8bae1dSRodney W. Grimes 	struct	timeval *tv;
314df8bae1dSRodney W. Grimes 	struct	timezone *tzp;
315df8bae1dSRodney W. Grimes };
316d2d3e875SBruce Evans #endif
317df8bae1dSRodney W. Grimes /* ARGSUSED */
31826f9a767SRodney W. Grimes int
319cb226aaaSPoul-Henning Kamp settimeofday(p, uap)
320df8bae1dSRodney W. Grimes 	struct proc *p;
321df8bae1dSRodney W. Grimes 	struct settimeofday_args *uap;
322df8bae1dSRodney W. Grimes {
323708e7684SPeter Wemm 	struct timeval atv;
324df8bae1dSRodney W. Grimes 	struct timezone atz;
325708e7684SPeter Wemm 	int error;
326df8bae1dSRodney W. Grimes 
327bb56ec4aSPoul-Henning Kamp 	if ((error = suser(p->p_ucred, &p->p_acflag)))
328df8bae1dSRodney W. Grimes 		return (error);
329df8bae1dSRodney W. Grimes 	/* Verify all parameters before changing time. */
330708e7684SPeter Wemm 	if (uap->tv) {
331708e7684SPeter Wemm 		if ((error = copyin((caddr_t)uap->tv, (caddr_t)&atv,
332708e7684SPeter Wemm 		    sizeof(atv))))
333df8bae1dSRodney W. Grimes 			return (error);
3340808c591SBruce Evans 		if (atv.tv_usec < 0 || atv.tv_usec >= 1000000)
3350808c591SBruce Evans 			return (EINVAL);
336708e7684SPeter Wemm 	}
337df8bae1dSRodney W. Grimes 	if (uap->tzp &&
338df8bae1dSRodney W. Grimes 	    (error = copyin((caddr_t)uap->tzp, (caddr_t)&atz, sizeof(atz))))
339df8bae1dSRodney W. Grimes 		return (error);
34094c8fcd8SPeter Wemm 	if (uap->tv && (error = settime(&atv)))
34194c8fcd8SPeter Wemm 		return (error);
342df8bae1dSRodney W. Grimes 	if (uap->tzp)
343df8bae1dSRodney W. Grimes 		tz = atz;
344df8bae1dSRodney W. Grimes 	return (0);
345df8bae1dSRodney W. Grimes }
346df8bae1dSRodney W. Grimes 
347df8bae1dSRodney W. Grimes int	tickdelta;			/* current clock skew, us. per tick */
348df8bae1dSRodney W. Grimes long	timedelta;			/* unapplied time correction, us. */
34987b6de2bSPoul-Henning Kamp static long	bigadj = 1000000;	/* use 10x skew above bigadj us. */
350df8bae1dSRodney W. Grimes 
351d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
352df8bae1dSRodney W. Grimes struct adjtime_args {
353df8bae1dSRodney W. Grimes 	struct timeval *delta;
354df8bae1dSRodney W. Grimes 	struct timeval *olddelta;
355df8bae1dSRodney W. Grimes };
356d2d3e875SBruce Evans #endif
357df8bae1dSRodney W. Grimes /* ARGSUSED */
35826f9a767SRodney W. Grimes int
359cb226aaaSPoul-Henning Kamp adjtime(p, uap)
360df8bae1dSRodney W. Grimes 	struct proc *p;
361df8bae1dSRodney W. Grimes 	register struct adjtime_args *uap;
362df8bae1dSRodney W. Grimes {
363df8bae1dSRodney W. Grimes 	struct timeval atv;
364df8bae1dSRodney W. Grimes 	register long ndelta, ntickdelta, odelta;
365df8bae1dSRodney W. Grimes 	int s, error;
366df8bae1dSRodney W. Grimes 
367bb56ec4aSPoul-Henning Kamp 	if ((error = suser(p->p_ucred, &p->p_acflag)))
368df8bae1dSRodney W. Grimes 		return (error);
369bb56ec4aSPoul-Henning Kamp 	if ((error =
370bb56ec4aSPoul-Henning Kamp 	    copyin((caddr_t)uap->delta, (caddr_t)&atv, sizeof(struct timeval))))
371df8bae1dSRodney W. Grimes 		return (error);
372df8bae1dSRodney W. Grimes 
373df8bae1dSRodney W. Grimes 	/*
374df8bae1dSRodney W. Grimes 	 * Compute the total correction and the rate at which to apply it.
375df8bae1dSRodney W. Grimes 	 * Round the adjustment down to a whole multiple of the per-tick
376df8bae1dSRodney W. Grimes 	 * delta, so that after some number of incremental changes in
377df8bae1dSRodney W. Grimes 	 * hardclock(), tickdelta will become zero, lest the correction
378df8bae1dSRodney W. Grimes 	 * overshoot and start taking us away from the desired final time.
379df8bae1dSRodney W. Grimes 	 */
380df8bae1dSRodney W. Grimes 	ndelta = atv.tv_sec * 1000000 + atv.tv_usec;
3810cd97b20SBruce Evans 	if (ndelta > bigadj || ndelta < -bigadj)
382df8bae1dSRodney W. Grimes 		ntickdelta = 10 * tickadj;
383df8bae1dSRodney W. Grimes 	else
384df8bae1dSRodney W. Grimes 		ntickdelta = tickadj;
385df8bae1dSRodney W. Grimes 	if (ndelta % ntickdelta)
386df8bae1dSRodney W. Grimes 		ndelta = ndelta / ntickdelta * ntickdelta;
387df8bae1dSRodney W. Grimes 
388df8bae1dSRodney W. Grimes 	/*
389df8bae1dSRodney W. Grimes 	 * To make hardclock()'s job easier, make the per-tick delta negative
390df8bae1dSRodney W. Grimes 	 * if we want time to run slower; then hardclock can simply compute
391df8bae1dSRodney W. Grimes 	 * tick + tickdelta, and subtract tickdelta from timedelta.
392df8bae1dSRodney W. Grimes 	 */
393df8bae1dSRodney W. Grimes 	if (ndelta < 0)
394df8bae1dSRodney W. Grimes 		ntickdelta = -ntickdelta;
395df8bae1dSRodney W. Grimes 	s = splclock();
396df8bae1dSRodney W. Grimes 	odelta = timedelta;
397df8bae1dSRodney W. Grimes 	timedelta = ndelta;
398df8bae1dSRodney W. Grimes 	tickdelta = ntickdelta;
399df8bae1dSRodney W. Grimes 	splx(s);
400df8bae1dSRodney W. Grimes 
401df8bae1dSRodney W. Grimes 	if (uap->olddelta) {
402df8bae1dSRodney W. Grimes 		atv.tv_sec = odelta / 1000000;
403df8bae1dSRodney W. Grimes 		atv.tv_usec = odelta % 1000000;
404df8bae1dSRodney W. Grimes 		(void) copyout((caddr_t)&atv, (caddr_t)uap->olddelta,
405df8bae1dSRodney W. Grimes 		    sizeof(struct timeval));
406df8bae1dSRodney W. Grimes 	}
407df8bae1dSRodney W. Grimes 	return (0);
408df8bae1dSRodney W. Grimes }
409df8bae1dSRodney W. Grimes 
410df8bae1dSRodney W. Grimes /*
411df8bae1dSRodney W. Grimes  * Get value of an interval timer.  The process virtual and
412df8bae1dSRodney W. Grimes  * profiling virtual time timers are kept in the p_stats area, since
413df8bae1dSRodney W. Grimes  * they can be swapped out.  These are kept internally in the
414df8bae1dSRodney W. Grimes  * way they are specified externally: in time until they expire.
415df8bae1dSRodney W. Grimes  *
416df8bae1dSRodney W. Grimes  * The real time interval timer is kept in the process table slot
417df8bae1dSRodney W. Grimes  * for the process, and its value (it_value) is kept as an
418df8bae1dSRodney W. Grimes  * absolute time rather than as a delta, so that it is easy to keep
419df8bae1dSRodney W. Grimes  * periodic real-time signals from drifting.
420df8bae1dSRodney W. Grimes  *
421df8bae1dSRodney W. Grimes  * Virtual time timers are processed in the hardclock() routine of
422df8bae1dSRodney W. Grimes  * kern_clock.c.  The real time timer is processed by a timeout
423df8bae1dSRodney W. Grimes  * routine, called from the softclock() routine.  Since a callout
424df8bae1dSRodney W. Grimes  * may be delayed in real time due to interrupt processing in the system,
425df8bae1dSRodney W. Grimes  * it is possible for the real time timeout routine (realitexpire, given below),
426df8bae1dSRodney W. Grimes  * to be delayed in real time past when it is supposed to occur.  It
427df8bae1dSRodney W. Grimes  * does not suffice, therefore, to reload the real timer .it_value from the
428df8bae1dSRodney W. Grimes  * real time timers .it_interval.  Rather, we compute the next time in
429df8bae1dSRodney W. Grimes  * absolute time the timer should go off.
430df8bae1dSRodney W. Grimes  */
431d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
432df8bae1dSRodney W. Grimes struct getitimer_args {
433df8bae1dSRodney W. Grimes 	u_int	which;
434df8bae1dSRodney W. Grimes 	struct	itimerval *itv;
435df8bae1dSRodney W. Grimes };
436d2d3e875SBruce Evans #endif
437df8bae1dSRodney W. Grimes /* ARGSUSED */
43826f9a767SRodney W. Grimes int
439cb226aaaSPoul-Henning Kamp getitimer(p, uap)
440df8bae1dSRodney W. Grimes 	struct proc *p;
441df8bae1dSRodney W. Grimes 	register struct getitimer_args *uap;
442df8bae1dSRodney W. Grimes {
443227ee8a1SPoul-Henning Kamp 	struct timeval ctv;
444df8bae1dSRodney W. Grimes 	struct itimerval aitv;
445df8bae1dSRodney W. Grimes 	int s;
446df8bae1dSRodney W. Grimes 
447df8bae1dSRodney W. Grimes 	if (uap->which > ITIMER_PROF)
448df8bae1dSRodney W. Grimes 		return (EINVAL);
449227ee8a1SPoul-Henning Kamp 	s = splclock(); /* XXX still needed ? */
450df8bae1dSRodney W. Grimes 	if (uap->which == ITIMER_REAL) {
451df8bae1dSRodney W. Grimes 		/*
452ee002b68SBruce Evans 		 * Convert from absolute to relative time in .it_value
453df8bae1dSRodney W. Grimes 		 * part of real time timer.  If time for real time timer
454df8bae1dSRodney W. Grimes 		 * has passed return 0, else return difference between
455df8bae1dSRodney W. Grimes 		 * current time and time for the timer to go off.
456df8bae1dSRodney W. Grimes 		 */
457df8bae1dSRodney W. Grimes 		aitv = p->p_realtimer;
4584cf41af3SPoul-Henning Kamp 		if (timevalisset(&aitv.it_value)) {
459c21410e1SPoul-Henning Kamp 			getmicrouptime(&ctv);
4604cf41af3SPoul-Henning Kamp 			if (timevalcmp(&aitv.it_value, &ctv, <))
4614cf41af3SPoul-Henning Kamp 				timevalclear(&aitv.it_value);
462df8bae1dSRodney W. Grimes 			else
463227ee8a1SPoul-Henning Kamp 				timevalsub(&aitv.it_value, &ctv);
464227ee8a1SPoul-Henning Kamp 		}
465df8bae1dSRodney W. Grimes 	} else
466df8bae1dSRodney W. Grimes 		aitv = p->p_stats->p_timer[uap->which];
467df8bae1dSRodney W. Grimes 	splx(s);
468df8bae1dSRodney W. Grimes 	return (copyout((caddr_t)&aitv, (caddr_t)uap->itv,
469df8bae1dSRodney W. Grimes 	    sizeof (struct itimerval)));
470df8bae1dSRodney W. Grimes }
471df8bae1dSRodney W. Grimes 
472d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
473df8bae1dSRodney W. Grimes struct setitimer_args {
474df8bae1dSRodney W. Grimes 	u_int	which;
475df8bae1dSRodney W. Grimes 	struct	itimerval *itv, *oitv;
476df8bae1dSRodney W. Grimes };
477d2d3e875SBruce Evans #endif
478df8bae1dSRodney W. Grimes /* ARGSUSED */
47926f9a767SRodney W. Grimes int
480cb226aaaSPoul-Henning Kamp setitimer(p, uap)
481df8bae1dSRodney W. Grimes 	struct proc *p;
482df8bae1dSRodney W. Grimes 	register struct setitimer_args *uap;
483df8bae1dSRodney W. Grimes {
484df8bae1dSRodney W. Grimes 	struct itimerval aitv;
485227ee8a1SPoul-Henning Kamp 	struct timeval ctv;
486df8bae1dSRodney W. Grimes 	register struct itimerval *itvp;
487df8bae1dSRodney W. Grimes 	int s, error;
488df8bae1dSRodney W. Grimes 
489df8bae1dSRodney W. Grimes 	if (uap->which > ITIMER_PROF)
490df8bae1dSRodney W. Grimes 		return (EINVAL);
491df8bae1dSRodney W. Grimes 	itvp = uap->itv;
492df8bae1dSRodney W. Grimes 	if (itvp && (error = copyin((caddr_t)itvp, (caddr_t)&aitv,
493df8bae1dSRodney W. Grimes 	    sizeof(struct itimerval))))
494df8bae1dSRodney W. Grimes 		return (error);
4950808c591SBruce Evans 	if ((uap->itv = uap->oitv) &&
496cb226aaaSPoul-Henning Kamp 	    (error = getitimer(p, (struct getitimer_args *)uap)))
497df8bae1dSRodney W. Grimes 		return (error);
498df8bae1dSRodney W. Grimes 	if (itvp == 0)
499df8bae1dSRodney W. Grimes 		return (0);
500cd9f713dSAndrey A. Chernov 	if (itimerfix(&aitv.it_value))
501cd9f713dSAndrey A. Chernov 		return (EINVAL);
5024cf41af3SPoul-Henning Kamp 	if (!timevalisset(&aitv.it_value))
5034cf41af3SPoul-Henning Kamp 		timevalclear(&aitv.it_interval);
504cd9f713dSAndrey A. Chernov 	else if (itimerfix(&aitv.it_interval))
505df8bae1dSRodney W. Grimes 		return (EINVAL);
506227ee8a1SPoul-Henning Kamp 	s = splclock(); /* XXX: still needed ? */
507df8bae1dSRodney W. Grimes 	if (uap->which == ITIMER_REAL) {
5084cf41af3SPoul-Henning Kamp 		if (timevalisset(&p->p_realtimer.it_value))
509ab36c067SJustin T. Gibbs 			untimeout(realitexpire, (caddr_t)p, p->p_ithandle);
5104cf41af3SPoul-Henning Kamp 		if (timevalisset(&aitv.it_value))
511ab36c067SJustin T. Gibbs 			p->p_ithandle = timeout(realitexpire, (caddr_t)p,
51291ad39c6SPoul-Henning Kamp 						tvtohz(&aitv.it_value));
513c21410e1SPoul-Henning Kamp 		getmicrouptime(&ctv);
514bfe6c9faSPoul-Henning Kamp 		timevaladd(&aitv.it_value, &ctv);
515df8bae1dSRodney W. Grimes 		p->p_realtimer = aitv;
516df8bae1dSRodney W. Grimes 	} else
517df8bae1dSRodney W. Grimes 		p->p_stats->p_timer[uap->which] = aitv;
518df8bae1dSRodney W. Grimes 	splx(s);
519df8bae1dSRodney W. Grimes 	return (0);
520df8bae1dSRodney W. Grimes }
521df8bae1dSRodney W. Grimes 
522df8bae1dSRodney W. Grimes /*
523df8bae1dSRodney W. Grimes  * Real interval timer expired:
524df8bae1dSRodney W. Grimes  * send process whose timer expired an alarm signal.
525df8bae1dSRodney W. Grimes  * If time is not set up to reload, then just return.
526df8bae1dSRodney W. Grimes  * Else compute next time timer should go off which is > current time.
527df8bae1dSRodney W. Grimes  * This is where delay in processing this timeout causes multiple
528df8bae1dSRodney W. Grimes  * SIGALRM calls to be compressed into one.
529c8b47828SBruce Evans  * tvtohz() always adds 1 to allow for the time until the next clock
5309207f00aSBruce Evans  * interrupt being strictly less than 1 clock tick, but we don't want
5319207f00aSBruce Evans  * that here since we want to appear to be in sync with the clock
5329207f00aSBruce Evans  * interrupt even when we're delayed.
533df8bae1dSRodney W. Grimes  */
534df8bae1dSRodney W. Grimes void
535df8bae1dSRodney W. Grimes realitexpire(arg)
536df8bae1dSRodney W. Grimes 	void *arg;
537df8bae1dSRodney W. Grimes {
538df8bae1dSRodney W. Grimes 	register struct proc *p;
539bfe6c9faSPoul-Henning Kamp 	struct timeval ctv, ntv;
540df8bae1dSRodney W. Grimes 	int s;
541df8bae1dSRodney W. Grimes 
542df8bae1dSRodney W. Grimes 	p = (struct proc *)arg;
543df8bae1dSRodney W. Grimes 	psignal(p, SIGALRM);
5444cf41af3SPoul-Henning Kamp 	if (!timevalisset(&p->p_realtimer.it_interval)) {
5454cf41af3SPoul-Henning Kamp 		timevalclear(&p->p_realtimer.it_value);
546df8bae1dSRodney W. Grimes 		return;
547df8bae1dSRodney W. Grimes 	}
548df8bae1dSRodney W. Grimes 	for (;;) {
549227ee8a1SPoul-Henning Kamp 		s = splclock(); /* XXX: still neeeded ? */
550df8bae1dSRodney W. Grimes 		timevaladd(&p->p_realtimer.it_value,
551df8bae1dSRodney W. Grimes 		    &p->p_realtimer.it_interval);
552c21410e1SPoul-Henning Kamp 		getmicrouptime(&ctv);
5534cf41af3SPoul-Henning Kamp 		if (timevalcmp(&p->p_realtimer.it_value, &ctv, >)) {
554bfe6c9faSPoul-Henning Kamp 			ntv = p->p_realtimer.it_value;
555bfe6c9faSPoul-Henning Kamp 			timevalsub(&ntv, &ctv);
556ee002b68SBruce Evans 			p->p_ithandle = timeout(realitexpire, (caddr_t)p,
557ee002b68SBruce Evans 			    tvtohz(&ntv) - 1);
558df8bae1dSRodney W. Grimes 			splx(s);
559df8bae1dSRodney W. Grimes 			return;
560df8bae1dSRodney W. Grimes 		}
561df8bae1dSRodney W. Grimes 		splx(s);
562df8bae1dSRodney W. Grimes 	}
563df8bae1dSRodney W. Grimes }
564df8bae1dSRodney W. Grimes 
565df8bae1dSRodney W. Grimes /*
566df8bae1dSRodney W. Grimes  * Check that a proposed value to load into the .it_value or
567df8bae1dSRodney W. Grimes  * .it_interval part of an interval timer is acceptable, and
568df8bae1dSRodney W. Grimes  * fix it to have at least minimal value (i.e. if it is less
569df8bae1dSRodney W. Grimes  * than the resolution of the clock, round it up.)
570df8bae1dSRodney W. Grimes  */
57126f9a767SRodney W. Grimes int
572df8bae1dSRodney W. Grimes itimerfix(tv)
573df8bae1dSRodney W. Grimes 	struct timeval *tv;
574df8bae1dSRodney W. Grimes {
575df8bae1dSRodney W. Grimes 
576df8bae1dSRodney W. Grimes 	if (tv->tv_sec < 0 || tv->tv_sec > 100000000 ||
577df8bae1dSRodney W. Grimes 	    tv->tv_usec < 0 || tv->tv_usec >= 1000000)
578df8bae1dSRodney W. Grimes 		return (EINVAL);
579df8bae1dSRodney W. Grimes 	if (tv->tv_sec == 0 && tv->tv_usec != 0 && tv->tv_usec < tick)
580df8bae1dSRodney W. Grimes 		tv->tv_usec = tick;
581df8bae1dSRodney W. Grimes 	return (0);
582df8bae1dSRodney W. Grimes }
583df8bae1dSRodney W. Grimes 
584df8bae1dSRodney W. Grimes /*
585df8bae1dSRodney W. Grimes  * Decrement an interval timer by a specified number
586df8bae1dSRodney W. Grimes  * of microseconds, which must be less than a second,
587df8bae1dSRodney W. Grimes  * i.e. < 1000000.  If the timer expires, then reload
588df8bae1dSRodney W. Grimes  * it.  In this case, carry over (usec - old value) to
589df8bae1dSRodney W. Grimes  * reduce the value reloaded into the timer so that
590df8bae1dSRodney W. Grimes  * the timer does not drift.  This routine assumes
591df8bae1dSRodney W. Grimes  * that it is called in a context where the timers
592df8bae1dSRodney W. Grimes  * on which it is operating cannot change in value.
593df8bae1dSRodney W. Grimes  */
59426f9a767SRodney W. Grimes int
595df8bae1dSRodney W. Grimes itimerdecr(itp, usec)
596df8bae1dSRodney W. Grimes 	register struct itimerval *itp;
597df8bae1dSRodney W. Grimes 	int usec;
598df8bae1dSRodney W. Grimes {
599df8bae1dSRodney W. Grimes 
600df8bae1dSRodney W. Grimes 	if (itp->it_value.tv_usec < usec) {
601df8bae1dSRodney W. Grimes 		if (itp->it_value.tv_sec == 0) {
602df8bae1dSRodney W. Grimes 			/* expired, and already in next interval */
603df8bae1dSRodney W. Grimes 			usec -= itp->it_value.tv_usec;
604df8bae1dSRodney W. Grimes 			goto expire;
605df8bae1dSRodney W. Grimes 		}
606df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec += 1000000;
607df8bae1dSRodney W. Grimes 		itp->it_value.tv_sec--;
608df8bae1dSRodney W. Grimes 	}
609df8bae1dSRodney W. Grimes 	itp->it_value.tv_usec -= usec;
610df8bae1dSRodney W. Grimes 	usec = 0;
6114cf41af3SPoul-Henning Kamp 	if (timevalisset(&itp->it_value))
612df8bae1dSRodney W. Grimes 		return (1);
613df8bae1dSRodney W. Grimes 	/* expired, exactly at end of interval */
614df8bae1dSRodney W. Grimes expire:
6154cf41af3SPoul-Henning Kamp 	if (timevalisset(&itp->it_interval)) {
616df8bae1dSRodney W. Grimes 		itp->it_value = itp->it_interval;
617df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec -= usec;
618df8bae1dSRodney W. Grimes 		if (itp->it_value.tv_usec < 0) {
619df8bae1dSRodney W. Grimes 			itp->it_value.tv_usec += 1000000;
620df8bae1dSRodney W. Grimes 			itp->it_value.tv_sec--;
621df8bae1dSRodney W. Grimes 		}
622df8bae1dSRodney W. Grimes 	} else
623df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec = 0;		/* sec is already 0 */
624df8bae1dSRodney W. Grimes 	return (0);
625df8bae1dSRodney W. Grimes }
626df8bae1dSRodney W. Grimes 
627df8bae1dSRodney W. Grimes /*
628df8bae1dSRodney W. Grimes  * Add and subtract routines for timevals.
629df8bae1dSRodney W. Grimes  * N.B.: subtract routine doesn't deal with
630df8bae1dSRodney W. Grimes  * results which are before the beginning,
631df8bae1dSRodney W. Grimes  * it just gets very confused in this case.
632df8bae1dSRodney W. Grimes  * Caveat emptor.
633df8bae1dSRodney W. Grimes  */
63426f9a767SRodney W. Grimes void
635df8bae1dSRodney W. Grimes timevaladd(t1, t2)
636df8bae1dSRodney W. Grimes 	struct timeval *t1, *t2;
637df8bae1dSRodney W. Grimes {
638df8bae1dSRodney W. Grimes 
639df8bae1dSRodney W. Grimes 	t1->tv_sec += t2->tv_sec;
640df8bae1dSRodney W. Grimes 	t1->tv_usec += t2->tv_usec;
641df8bae1dSRodney W. Grimes 	timevalfix(t1);
642df8bae1dSRodney W. Grimes }
643df8bae1dSRodney W. Grimes 
64426f9a767SRodney W. Grimes void
645df8bae1dSRodney W. Grimes timevalsub(t1, t2)
646df8bae1dSRodney W. Grimes 	struct timeval *t1, *t2;
647df8bae1dSRodney W. Grimes {
648df8bae1dSRodney W. Grimes 
649df8bae1dSRodney W. Grimes 	t1->tv_sec -= t2->tv_sec;
650df8bae1dSRodney W. Grimes 	t1->tv_usec -= t2->tv_usec;
651df8bae1dSRodney W. Grimes 	timevalfix(t1);
652df8bae1dSRodney W. Grimes }
653df8bae1dSRodney W. Grimes 
65487b6de2bSPoul-Henning Kamp static void
655df8bae1dSRodney W. Grimes timevalfix(t1)
656df8bae1dSRodney W. Grimes 	struct timeval *t1;
657df8bae1dSRodney W. Grimes {
658df8bae1dSRodney W. Grimes 
659df8bae1dSRodney W. Grimes 	if (t1->tv_usec < 0) {
660df8bae1dSRodney W. Grimes 		t1->tv_sec--;
661df8bae1dSRodney W. Grimes 		t1->tv_usec += 1000000;
662df8bae1dSRodney W. Grimes 	}
663df8bae1dSRodney W. Grimes 	if (t1->tv_usec >= 1000000) {
664df8bae1dSRodney W. Grimes 		t1->tv_sec++;
665df8bae1dSRodney W. Grimes 		t1->tv_usec -= 1000000;
666df8bae1dSRodney W. Grimes 	}
667df8bae1dSRodney W. Grimes }
668