xref: /freebsd/sys/kern/kern_time.c (revision 7995dae9d3f58abf38ef0001cee24131f3c9054b)
19454b2d8SWarner Losh /*-
251369649SPedro F. Giffuni  * SPDX-License-Identifier: BSD-3-Clause
351369649SPedro F. Giffuni  *
4df8bae1dSRodney W. Grimes  * Copyright (c) 1982, 1986, 1989, 1993
5df8bae1dSRodney W. Grimes  *	The Regents of the University of California.  All rights reserved.
6df8bae1dSRodney W. Grimes  *
7df8bae1dSRodney W. Grimes  * Redistribution and use in source and binary forms, with or without
8df8bae1dSRodney W. Grimes  * modification, are permitted provided that the following conditions
9df8bae1dSRodney W. Grimes  * are met:
10df8bae1dSRodney W. Grimes  * 1. Redistributions of source code must retain the above copyright
11df8bae1dSRodney W. Grimes  *    notice, this list of conditions and the following disclaimer.
12df8bae1dSRodney W. Grimes  * 2. Redistributions in binary form must reproduce the above copyright
13df8bae1dSRodney W. Grimes  *    notice, this list of conditions and the following disclaimer in the
14df8bae1dSRodney W. Grimes  *    documentation and/or other materials provided with the distribution.
1569a28758SEd Maste  * 3. Neither the name of the University nor the names of its contributors
16df8bae1dSRodney W. Grimes  *    may be used to endorse or promote products derived from this software
17df8bae1dSRodney W. Grimes  *    without specific prior written permission.
18df8bae1dSRodney W. Grimes  *
19df8bae1dSRodney W. Grimes  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20df8bae1dSRodney W. Grimes  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21df8bae1dSRodney W. Grimes  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22df8bae1dSRodney W. Grimes  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23df8bae1dSRodney W. Grimes  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24df8bae1dSRodney W. Grimes  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25df8bae1dSRodney W. Grimes  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26df8bae1dSRodney W. Grimes  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27df8bae1dSRodney W. Grimes  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28df8bae1dSRodney W. Grimes  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29df8bae1dSRodney W. Grimes  * SUCH DAMAGE.
30df8bae1dSRodney W. Grimes  *
31df8bae1dSRodney W. Grimes  *	@(#)kern_time.c	8.1 (Berkeley) 6/10/93
32df8bae1dSRodney W. Grimes  */
33df8bae1dSRodney W. Grimes 
34677b542eSDavid E. O'Brien #include <sys/cdefs.h>
35677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$");
36677b542eSDavid E. O'Brien 
37de56aee0SKonstantin Belousov #include "opt_ktrace.h"
38de56aee0SKonstantin Belousov 
39df8bae1dSRodney W. Grimes #include <sys/param.h>
40e96c1fdcSPeter Wemm #include <sys/systm.h>
41aff5bcb1SDavid Xu #include <sys/limits.h>
42f645b0b5SPoul-Henning Kamp #include <sys/clock.h>
43fb919e4dSMark Murray #include <sys/lock.h>
44fb919e4dSMark Murray #include <sys/mutex.h>
45d2d3e875SBruce Evans #include <sys/sysproto.h>
46df8bae1dSRodney W. Grimes #include <sys/resourcevar.h>
47797f2d22SPoul-Henning Kamp #include <sys/signalvar.h>
48df8bae1dSRodney W. Grimes #include <sys/kernel.h>
49098176f0SDavide Italiano #include <sys/sleepqueue.h>
50efa42cbcSPaul Saab #include <sys/syscallsubr.h>
5177e718f7SDavid Xu #include <sys/sysctl.h>
5294c8fcd8SPeter Wemm #include <sys/sysent.h>
53acd3428bSRobert Watson #include <sys/priv.h>
54df8bae1dSRodney W. Grimes #include <sys/proc.h>
556aeb05d7STom Rhodes #include <sys/posix4.h>
56708e7684SPeter Wemm #include <sys/time.h>
5786857b36SDavid Xu #include <sys/timers.h>
5891266b96SPoul-Henning Kamp #include <sys/timetc.h>
59df8bae1dSRodney W. Grimes #include <sys/vnode.h>
60de56aee0SKonstantin Belousov #ifdef KTRACE
61de56aee0SKonstantin Belousov #include <sys/ktrace.h>
62de56aee0SKonstantin Belousov #endif
63fb919e4dSMark Murray 
645b870b7bSPeter Wemm #include <vm/vm.h>
655b870b7bSPeter Wemm #include <vm/vm_extern.h>
66df8bae1dSRodney W. Grimes 
6786857b36SDavid Xu #define MAX_CLOCKS 	(CLOCK_MONOTONIC+1)
68d65f1abcSDavid Xu #define CPUCLOCK_BIT		0x80000000
69d65f1abcSDavid Xu #define CPUCLOCK_PROCESS_BIT	0x40000000
70d65f1abcSDavid Xu #define CPUCLOCK_ID_MASK	(~(CPUCLOCK_BIT|CPUCLOCK_PROCESS_BIT))
71d65f1abcSDavid Xu #define MAKE_THREAD_CPUCLOCK(tid)	(CPUCLOCK_BIT|(tid))
72d65f1abcSDavid Xu #define MAKE_PROCESS_CPUCLOCK(pid)	\
73d65f1abcSDavid Xu 	(CPUCLOCK_BIT|CPUCLOCK_PROCESS_BIT|(pid))
7486857b36SDavid Xu 
7586857b36SDavid Xu static struct kclock	posix_clocks[MAX_CLOCKS];
7686857b36SDavid Xu static uma_zone_t	itimer_zone = NULL;
7786857b36SDavid Xu 
78df8bae1dSRodney W. Grimes /*
79df8bae1dSRodney W. Grimes  * Time of day and interval timer support.
80df8bae1dSRodney W. Grimes  *
81df8bae1dSRodney W. Grimes  * These routines provide the kernel entry points to get and set
82df8bae1dSRodney W. Grimes  * the time-of-day and per-process interval timers.  Subroutines
83df8bae1dSRodney W. Grimes  * here provide support for adding and subtracting timeval structures
84df8bae1dSRodney W. Grimes  * and decrementing interval timers, optionally reloading the interval
85df8bae1dSRodney W. Grimes  * timers when they expire.
86df8bae1dSRodney W. Grimes  */
87df8bae1dSRodney W. Grimes 
887edfb592SJohn Baldwin static int	settime(struct thread *, struct timeval *);
894d77a549SAlfred Perlstein static void	timevalfix(struct timeval *);
903f8455b0SEric van Gyzen static int	user_clock_nanosleep(struct thread *td, clockid_t clock_id,
913f8455b0SEric van Gyzen 		    int flags, const struct timespec *ua_rqtp,
923f8455b0SEric van Gyzen 		    struct timespec *ua_rmtp);
9394c8fcd8SPeter Wemm 
9486857b36SDavid Xu static void	itimer_start(void);
9586857b36SDavid Xu static int	itimer_init(void *, int, int);
9686857b36SDavid Xu static void	itimer_fini(void *, int);
9786857b36SDavid Xu static void	itimer_enter(struct itimer *);
9886857b36SDavid Xu static void	itimer_leave(struct itimer *);
99843b99c6SDavid Xu static struct itimer *itimer_find(struct proc *, int);
10086857b36SDavid Xu static void	itimers_alloc(struct proc *);
10186857b36SDavid Xu static int	realtimer_create(struct itimer *);
10286857b36SDavid Xu static int	realtimer_gettime(struct itimer *, struct itimerspec *);
10386857b36SDavid Xu static int	realtimer_settime(struct itimer *, int,
10486857b36SDavid Xu 			struct itimerspec *, struct itimerspec *);
10586857b36SDavid Xu static int	realtimer_delete(struct itimer *);
10656c06c4bSDavid Xu static void	realtimer_clocktime(clockid_t, struct timespec *);
10786857b36SDavid Xu static void	realtimer_expire(void *);
10886857b36SDavid Xu 
109e68c6191SKonstantin Belousov static int	register_posix_clock(int, const struct kclock *);
1108ff2b41cSMark Johnston static void	itimer_fire(struct itimer *it);
1118ff2b41cSMark Johnston static int	itimespecfix(struct timespec *ts);
11286857b36SDavid Xu 
11386857b36SDavid Xu #define CLOCK_CALL(clock, call, arglist)		\
11486857b36SDavid Xu 	((*posix_clocks[clock].call) arglist)
11586857b36SDavid Xu 
11686857b36SDavid Xu SYSINIT(posix_timer, SI_SUB_P1003_1B, SI_ORDER_FIRST+4, itimer_start, NULL);
11786857b36SDavid Xu 
11894c8fcd8SPeter Wemm static int
11991afe087SPoul-Henning Kamp settime(struct thread *td, struct timeval *tv)
12094c8fcd8SPeter Wemm {
121fcae3aa6SNick Sayer 	struct timeval delta, tv1, tv2;
122c0bd94a7SNick Sayer 	static struct timeval maxtime, laststep;
1237ec73f64SPoul-Henning Kamp 	struct timespec ts;
12494c8fcd8SPeter Wemm 
1259c8fff87SBruce Evans 	microtime(&tv1);
12600af9731SPoul-Henning Kamp 	delta = *tv;
12700af9731SPoul-Henning Kamp 	timevalsub(&delta, &tv1);
12894c8fcd8SPeter Wemm 
12994c8fcd8SPeter Wemm 	/*
1309c8fff87SBruce Evans 	 * If the system is secure, we do not allow the time to be
131fcae3aa6SNick Sayer 	 * set to a value earlier than 1 second less than the highest
132fcae3aa6SNick Sayer 	 * time we have yet seen. The worst a miscreant can do in
133fcae3aa6SNick Sayer 	 * this circumstance is "freeze" time. He couldn't go
134fcae3aa6SNick Sayer 	 * back to the past.
135c0bd94a7SNick Sayer 	 *
136c0bd94a7SNick Sayer 	 * We similarly do not allow the clock to be stepped more
137c0bd94a7SNick Sayer 	 * than one second, nor more than once per second. This allows
138c0bd94a7SNick Sayer 	 * a miscreant to make the clock march double-time, but no worse.
13994c8fcd8SPeter Wemm 	 */
1407edfb592SJohn Baldwin 	if (securelevel_gt(td->td_ucred, 1) != 0) {
141fcae3aa6SNick Sayer 		if (delta.tv_sec < 0 || delta.tv_usec < 0) {
1423f92429aSMatt Jacob 			/*
143c0bd94a7SNick Sayer 			 * Update maxtime to latest time we've seen.
1443f92429aSMatt Jacob 			 */
145fcae3aa6SNick Sayer 			if (tv1.tv_sec > maxtime.tv_sec)
146fcae3aa6SNick Sayer 				maxtime = tv1;
147fcae3aa6SNick Sayer 			tv2 = *tv;
148fcae3aa6SNick Sayer 			timevalsub(&tv2, &maxtime);
149fcae3aa6SNick Sayer 			if (tv2.tv_sec < -1) {
1503f92429aSMatt Jacob 				tv->tv_sec = maxtime.tv_sec - 1;
151fcae3aa6SNick Sayer 				printf("Time adjustment clamped to -1 second\n");
152fcae3aa6SNick Sayer 			}
1533f92429aSMatt Jacob 		} else {
1541822421cSKonstantin Belousov 			if (tv1.tv_sec == laststep.tv_sec)
155c0bd94a7SNick Sayer 				return (EPERM);
156c0bd94a7SNick Sayer 			if (delta.tv_sec > 1) {
157c0bd94a7SNick Sayer 				tv->tv_sec = tv1.tv_sec + 1;
158c0bd94a7SNick Sayer 				printf("Time adjustment clamped to +1 second\n");
159c0bd94a7SNick Sayer 			}
160c0bd94a7SNick Sayer 			laststep = *tv;
161fcae3aa6SNick Sayer 		}
1629c8fff87SBruce Evans 	}
1639c8fff87SBruce Evans 
1647ec73f64SPoul-Henning Kamp 	ts.tv_sec = tv->tv_sec;
1657ec73f64SPoul-Henning Kamp 	ts.tv_nsec = tv->tv_usec * 1000;
16691266b96SPoul-Henning Kamp 	tc_setclock(&ts);
16794c8fcd8SPeter Wemm 	resettodr();
16894c8fcd8SPeter Wemm 	return (0);
16994c8fcd8SPeter Wemm }
17094c8fcd8SPeter Wemm 
17194c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
172d65f1abcSDavid Xu struct clock_getcpuclockid2_args {
173d65f1abcSDavid Xu 	id_t id;
174d65f1abcSDavid Xu 	int which,
175d65f1abcSDavid Xu 	clockid_t *clock_id;
176d65f1abcSDavid Xu };
177d65f1abcSDavid Xu #endif
178d65f1abcSDavid Xu /* ARGSUSED */
179d65f1abcSDavid Xu int
180d65f1abcSDavid Xu sys_clock_getcpuclockid2(struct thread *td, struct clock_getcpuclockid2_args *uap)
181d65f1abcSDavid Xu {
182d65f1abcSDavid Xu 	clockid_t clk_id;
183d31e4b3aSKonstantin Belousov 	int error;
184d31e4b3aSKonstantin Belousov 
185d31e4b3aSKonstantin Belousov 	error = kern_clock_getcpuclockid2(td, uap->id, uap->which, &clk_id);
186d31e4b3aSKonstantin Belousov 	if (error == 0)
187d31e4b3aSKonstantin Belousov 		error = copyout(&clk_id, uap->clock_id, sizeof(clockid_t));
188d31e4b3aSKonstantin Belousov 	return (error);
189d31e4b3aSKonstantin Belousov }
190d31e4b3aSKonstantin Belousov 
191d31e4b3aSKonstantin Belousov int
192d31e4b3aSKonstantin Belousov kern_clock_getcpuclockid2(struct thread *td, id_t id, int which,
193d31e4b3aSKonstantin Belousov     clockid_t *clk_id)
194d31e4b3aSKonstantin Belousov {
195d65f1abcSDavid Xu 	struct proc *p;
196d65f1abcSDavid Xu 	pid_t pid;
197d65f1abcSDavid Xu 	lwpid_t tid;
198d65f1abcSDavid Xu 	int error;
199d65f1abcSDavid Xu 
200d31e4b3aSKonstantin Belousov 	switch (which) {
201d65f1abcSDavid Xu 	case CPUCLOCK_WHICH_PID:
202d31e4b3aSKonstantin Belousov 		if (id != 0) {
20347ce3e53SDmitry Chagin 			error = pget(id, PGET_CANSEE | PGET_NOTID, &p);
204d31e4b3aSKonstantin Belousov 			if (error != 0)
205d65f1abcSDavid Xu 				return (error);
20647ce3e53SDmitry Chagin 			PROC_UNLOCK(p);
207d31e4b3aSKonstantin Belousov 			pid = id;
208d65f1abcSDavid Xu 		} else {
209d65f1abcSDavid Xu 			pid = td->td_proc->p_pid;
210d65f1abcSDavid Xu 		}
211d31e4b3aSKonstantin Belousov 		*clk_id = MAKE_PROCESS_CPUCLOCK(pid);
212d31e4b3aSKonstantin Belousov 		return (0);
213d65f1abcSDavid Xu 	case CPUCLOCK_WHICH_TID:
214d31e4b3aSKonstantin Belousov 		tid = id == 0 ? td->td_tid : id;
215d31e4b3aSKonstantin Belousov 		*clk_id = MAKE_THREAD_CPUCLOCK(tid);
216d31e4b3aSKonstantin Belousov 		return (0);
217d65f1abcSDavid Xu 	default:
218d65f1abcSDavid Xu 		return (EINVAL);
219d65f1abcSDavid Xu 	}
220d65f1abcSDavid Xu }
221d65f1abcSDavid Xu 
222d65f1abcSDavid Xu #ifndef _SYS_SYSPROTO_H_
22394c8fcd8SPeter Wemm struct clock_gettime_args {
22494c8fcd8SPeter Wemm 	clockid_t clock_id;
22594c8fcd8SPeter Wemm 	struct	timespec *tp;
22694c8fcd8SPeter Wemm };
22794c8fcd8SPeter Wemm #endif
22894c8fcd8SPeter Wemm /* ARGSUSED */
22994c8fcd8SPeter Wemm int
2308451d0ddSKip Macy sys_clock_gettime(struct thread *td, struct clock_gettime_args *uap)
23194c8fcd8SPeter Wemm {
23294c8fcd8SPeter Wemm 	struct timespec ats;
233f0b479cdSPaul Saab 	int error;
234f0b479cdSPaul Saab 
235f0b479cdSPaul Saab 	error = kern_clock_gettime(td, uap->clock_id, &ats);
236f0b479cdSPaul Saab 	if (error == 0)
237f0b479cdSPaul Saab 		error = copyout(&ats, uap->tp, sizeof(ats));
238f0b479cdSPaul Saab 
239f0b479cdSPaul Saab 	return (error);
240f0b479cdSPaul Saab }
241f0b479cdSPaul Saab 
242d65f1abcSDavid Xu static inline void
243d65f1abcSDavid Xu cputick2timespec(uint64_t runtime, struct timespec *ats)
244d65f1abcSDavid Xu {
245d65f1abcSDavid Xu 	runtime = cputick2usec(runtime);
246d65f1abcSDavid Xu 	ats->tv_sec = runtime / 1000000;
247d65f1abcSDavid Xu 	ats->tv_nsec = runtime % 1000000 * 1000;
248d65f1abcSDavid Xu }
249d65f1abcSDavid Xu 
250cbc10891SDmitry Chagin void
251cbc10891SDmitry Chagin kern_thread_cputime(struct thread *targettd, struct timespec *ats)
252d65f1abcSDavid Xu {
253d65f1abcSDavid Xu 	uint64_t runtime, curtime, switchtime;
254d65f1abcSDavid Xu 
255d65f1abcSDavid Xu 	if (targettd == NULL) { /* current thread */
256d65f1abcSDavid Xu 		critical_enter();
257d65f1abcSDavid Xu 		switchtime = PCPU_GET(switchtime);
258d65f1abcSDavid Xu 		curtime = cpu_ticks();
259d65f1abcSDavid Xu 		runtime = curthread->td_runtime;
260d65f1abcSDavid Xu 		critical_exit();
261d65f1abcSDavid Xu 		runtime += curtime - switchtime;
262d65f1abcSDavid Xu 	} else {
2630783b709SKonstantin Belousov 		PROC_LOCK_ASSERT(targettd->td_proc, MA_OWNED);
264d65f1abcSDavid Xu 		thread_lock(targettd);
265d65f1abcSDavid Xu 		runtime = targettd->td_runtime;
266d65f1abcSDavid Xu 		thread_unlock(targettd);
267d65f1abcSDavid Xu 	}
268d65f1abcSDavid Xu 	cputick2timespec(runtime, ats);
269d65f1abcSDavid Xu }
270d65f1abcSDavid Xu 
271cbc10891SDmitry Chagin void
272cbc10891SDmitry Chagin kern_process_cputime(struct proc *targetp, struct timespec *ats)
273d65f1abcSDavid Xu {
274d65f1abcSDavid Xu 	uint64_t runtime;
275d65f1abcSDavid Xu 	struct rusage ru;
276d65f1abcSDavid Xu 
277cbc10891SDmitry Chagin 	PROC_LOCK_ASSERT(targetp, MA_OWNED);
2785c7bebf9SKonstantin Belousov 	PROC_STATLOCK(targetp);
279d65f1abcSDavid Xu 	rufetch(targetp, &ru);
280d65f1abcSDavid Xu 	runtime = targetp->p_rux.rux_runtime;
2817e8db781SColin Percival 	if (curthread->td_proc == targetp)
2827e8db781SColin Percival 		runtime += cpu_ticks() - PCPU_GET(switchtime);
2835c7bebf9SKonstantin Belousov 	PROC_STATUNLOCK(targetp);
284d65f1abcSDavid Xu 	cputick2timespec(runtime, ats);
285d65f1abcSDavid Xu }
286d65f1abcSDavid Xu 
287d65f1abcSDavid Xu static int
288d65f1abcSDavid Xu get_cputime(struct thread *td, clockid_t clock_id, struct timespec *ats)
289d65f1abcSDavid Xu {
290d65f1abcSDavid Xu 	struct proc *p, *p2;
291d65f1abcSDavid Xu 	struct thread *td2;
292d65f1abcSDavid Xu 	lwpid_t tid;
293d65f1abcSDavid Xu 	pid_t pid;
294d65f1abcSDavid Xu 	int error;
295d65f1abcSDavid Xu 
296d65f1abcSDavid Xu 	p = td->td_proc;
297d65f1abcSDavid Xu 	if ((clock_id & CPUCLOCK_PROCESS_BIT) == 0) {
298d65f1abcSDavid Xu 		tid = clock_id & CPUCLOCK_ID_MASK;
299d65f1abcSDavid Xu 		td2 = tdfind(tid, p->p_pid);
300d65f1abcSDavid Xu 		if (td2 == NULL)
301d65f1abcSDavid Xu 			return (EINVAL);
302cbc10891SDmitry Chagin 		kern_thread_cputime(td2, ats);
303d65f1abcSDavid Xu 		PROC_UNLOCK(td2->td_proc);
304d65f1abcSDavid Xu 	} else {
305d65f1abcSDavid Xu 		pid = clock_id & CPUCLOCK_ID_MASK;
306c7c536c7SKonstantin Belousov 		error = pget(pid, PGET_CANSEE, &p2);
307c7c536c7SKonstantin Belousov 		if (error != 0)
308d65f1abcSDavid Xu 			return (EINVAL);
309cbc10891SDmitry Chagin 		kern_process_cputime(p2, ats);
310d65f1abcSDavid Xu 		PROC_UNLOCK(p2);
311d65f1abcSDavid Xu 	}
312d65f1abcSDavid Xu 	return (0);
313d65f1abcSDavid Xu }
314d65f1abcSDavid Xu 
315f0b479cdSPaul Saab int
316f0b479cdSPaul Saab kern_clock_gettime(struct thread *td, clockid_t clock_id, struct timespec *ats)
317f0b479cdSPaul Saab {
318de0a9241SKelly Yancey 	struct timeval sys, user;
31978c85e8dSJohn Baldwin 	struct proc *p;
32094c8fcd8SPeter Wemm 
32178c85e8dSJohn Baldwin 	p = td->td_proc;
322f0b479cdSPaul Saab 	switch (clock_id) {
3235e758b95SRobert Watson 	case CLOCK_REALTIME:		/* Default to precise. */
3245e758b95SRobert Watson 	case CLOCK_REALTIME_PRECISE:
325f0b479cdSPaul Saab 		nanotime(ats);
326b8817154SKelly Yancey 		break;
3275e758b95SRobert Watson 	case CLOCK_REALTIME_FAST:
3285e758b95SRobert Watson 		getnanotime(ats);
3295e758b95SRobert Watson 		break;
330b8817154SKelly Yancey 	case CLOCK_VIRTUAL:
33178c85e8dSJohn Baldwin 		PROC_LOCK(p);
3325c7bebf9SKonstantin Belousov 		PROC_STATLOCK(p);
33378c85e8dSJohn Baldwin 		calcru(p, &user, &sys);
3345c7bebf9SKonstantin Belousov 		PROC_STATUNLOCK(p);
33578c85e8dSJohn Baldwin 		PROC_UNLOCK(p);
336f0b479cdSPaul Saab 		TIMEVAL_TO_TIMESPEC(&user, ats);
337b8817154SKelly Yancey 		break;
338b8817154SKelly Yancey 	case CLOCK_PROF:
33978c85e8dSJohn Baldwin 		PROC_LOCK(p);
3405c7bebf9SKonstantin Belousov 		PROC_STATLOCK(p);
34178c85e8dSJohn Baldwin 		calcru(p, &user, &sys);
3425c7bebf9SKonstantin Belousov 		PROC_STATUNLOCK(p);
34378c85e8dSJohn Baldwin 		PROC_UNLOCK(p);
344de0a9241SKelly Yancey 		timevaladd(&user, &sys);
345f0b479cdSPaul Saab 		TIMEVAL_TO_TIMESPEC(&user, ats);
346de0a9241SKelly Yancey 		break;
3475e758b95SRobert Watson 	case CLOCK_MONOTONIC:		/* Default to precise. */
3485e758b95SRobert Watson 	case CLOCK_MONOTONIC_PRECISE:
3495eefd889SAndre Oppermann 	case CLOCK_UPTIME:
3505e758b95SRobert Watson 	case CLOCK_UPTIME_PRECISE:
351f0b479cdSPaul Saab 		nanouptime(ats);
352b8817154SKelly Yancey 		break;
3535e758b95SRobert Watson 	case CLOCK_UPTIME_FAST:
3545e758b95SRobert Watson 	case CLOCK_MONOTONIC_FAST:
3555e758b95SRobert Watson 		getnanouptime(ats);
3565e758b95SRobert Watson 		break;
3575e758b95SRobert Watson 	case CLOCK_SECOND:
3585e758b95SRobert Watson 		ats->tv_sec = time_second;
3595e758b95SRobert Watson 		ats->tv_nsec = 0;
3605e758b95SRobert Watson 		break;
36100d6ac63SDavid Xu 	case CLOCK_THREAD_CPUTIME_ID:
362cbc10891SDmitry Chagin 		kern_thread_cputime(NULL, ats);
363d65f1abcSDavid Xu 		break;
364d65f1abcSDavid Xu 	case CLOCK_PROCESS_CPUTIME_ID:
365d65f1abcSDavid Xu 		PROC_LOCK(p);
366cbc10891SDmitry Chagin 		kern_process_cputime(p, ats);
367d65f1abcSDavid Xu 		PROC_UNLOCK(p);
36800d6ac63SDavid Xu 		break;
369b8817154SKelly Yancey 	default:
370d65f1abcSDavid Xu 		if ((int)clock_id >= 0)
3715cb3dc8fSPoul-Henning Kamp 			return (EINVAL);
372d65f1abcSDavid Xu 		return (get_cputime(td, clock_id, ats));
373b8817154SKelly Yancey 	}
374f0b479cdSPaul Saab 	return (0);
37594c8fcd8SPeter Wemm }
37694c8fcd8SPeter Wemm 
37794c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
37894c8fcd8SPeter Wemm struct clock_settime_args {
37994c8fcd8SPeter Wemm 	clockid_t clock_id;
38094c8fcd8SPeter Wemm 	const struct	timespec *tp;
38194c8fcd8SPeter Wemm };
38294c8fcd8SPeter Wemm #endif
38394c8fcd8SPeter Wemm /* ARGSUSED */
38494c8fcd8SPeter Wemm int
3858451d0ddSKip Macy sys_clock_settime(struct thread *td, struct clock_settime_args *uap)
38694c8fcd8SPeter Wemm {
38794c8fcd8SPeter Wemm 	struct timespec ats;
38894c8fcd8SPeter Wemm 	int error;
38994c8fcd8SPeter Wemm 
390f0b479cdSPaul Saab 	if ((error = copyin(uap->tp, &ats, sizeof(ats))) != 0)
391f0b479cdSPaul Saab 		return (error);
392f0b479cdSPaul Saab 	return (kern_clock_settime(td, uap->clock_id, &ats));
393f0b479cdSPaul Saab }
394f0b479cdSPaul Saab 
39590a79ac5SConrad Meyer static int allow_insane_settime = 0;
39690a79ac5SConrad Meyer SYSCTL_INT(_debug, OID_AUTO, allow_insane_settime, CTLFLAG_RWTUN,
39790a79ac5SConrad Meyer     &allow_insane_settime, 0,
39890a79ac5SConrad Meyer     "do not perform possibly restrictive checks on settime(2) args");
39990a79ac5SConrad Meyer 
400f0b479cdSPaul Saab int
401f0b479cdSPaul Saab kern_clock_settime(struct thread *td, clockid_t clock_id, struct timespec *ats)
402f0b479cdSPaul Saab {
403f0b479cdSPaul Saab 	struct timeval atv;
404f0b479cdSPaul Saab 	int error;
405f0b479cdSPaul Saab 
406acd3428bSRobert Watson 	if ((error = priv_check(td, PRIV_CLOCK_SETTIME)) != 0)
4077edfb592SJohn Baldwin 		return (error);
408f0b479cdSPaul Saab 	if (clock_id != CLOCK_REALTIME)
4097edfb592SJohn Baldwin 		return (EINVAL);
4103e18d701SDmitry Chagin 	if (ats->tv_nsec < 0 || ats->tv_nsec >= 1000000000 ||
4113e18d701SDmitry Chagin 	    ats->tv_sec < 0)
4127edfb592SJohn Baldwin 		return (EINVAL);
413bc79b41cSMark Johnston 	if (!allow_insane_settime &&
414bc79b41cSMark Johnston 	    (ats->tv_sec > 8000ULL * 365 * 24 * 60 * 60 ||
415bc79b41cSMark Johnston 	    ats->tv_sec < utc_offset()))
41690a79ac5SConrad Meyer 		return (EINVAL);
417a0502b19SPoul-Henning Kamp 	/* XXX Don't convert nsec->usec and back */
418f0b479cdSPaul Saab 	TIMESPEC_TO_TIMEVAL(&atv, ats);
4197edfb592SJohn Baldwin 	error = settime(td, &atv);
42094c8fcd8SPeter Wemm 	return (error);
42194c8fcd8SPeter Wemm }
42294c8fcd8SPeter Wemm 
42394c8fcd8SPeter Wemm #ifndef _SYS_SYSPROTO_H_
42494c8fcd8SPeter Wemm struct clock_getres_args {
42594c8fcd8SPeter Wemm 	clockid_t clock_id;
42694c8fcd8SPeter Wemm 	struct	timespec *tp;
42794c8fcd8SPeter Wemm };
42894c8fcd8SPeter Wemm #endif
42994c8fcd8SPeter Wemm int
4308451d0ddSKip Macy sys_clock_getres(struct thread *td, struct clock_getres_args *uap)
43194c8fcd8SPeter Wemm {
43294c8fcd8SPeter Wemm 	struct timespec ts;
433f0b479cdSPaul Saab 	int error;
43494c8fcd8SPeter Wemm 
435f0b479cdSPaul Saab 	if (uap->tp == NULL)
436f0b479cdSPaul Saab 		return (0);
437f0b479cdSPaul Saab 
438f0b479cdSPaul Saab 	error = kern_clock_getres(td, uap->clock_id, &ts);
439f0b479cdSPaul Saab 	if (error == 0)
440f0b479cdSPaul Saab 		error = copyout(&ts, uap->tp, sizeof(ts));
441f0b479cdSPaul Saab 	return (error);
442f0b479cdSPaul Saab }
443f0b479cdSPaul Saab 
444f0b479cdSPaul Saab int
445f0b479cdSPaul Saab kern_clock_getres(struct thread *td, clockid_t clock_id, struct timespec *ts)
446f0b479cdSPaul Saab {
447f0b479cdSPaul Saab 
448f0b479cdSPaul Saab 	ts->tv_sec = 0;
449f0b479cdSPaul Saab 	switch (clock_id) {
450b8817154SKelly Yancey 	case CLOCK_REALTIME:
4515e758b95SRobert Watson 	case CLOCK_REALTIME_FAST:
4525e758b95SRobert Watson 	case CLOCK_REALTIME_PRECISE:
453b8817154SKelly Yancey 	case CLOCK_MONOTONIC:
4545e758b95SRobert Watson 	case CLOCK_MONOTONIC_FAST:
4555e758b95SRobert Watson 	case CLOCK_MONOTONIC_PRECISE:
4565eefd889SAndre Oppermann 	case CLOCK_UPTIME:
4575e758b95SRobert Watson 	case CLOCK_UPTIME_FAST:
4585e758b95SRobert Watson 	case CLOCK_UPTIME_PRECISE:
459ac0653dcSBruce Evans 		/*
460ac0653dcSBruce Evans 		 * Round up the result of the division cheaply by adding 1.
461ac0653dcSBruce Evans 		 * Rounding up is especially important if rounding down
462ac0653dcSBruce Evans 		 * would give 0.  Perfect rounding is unimportant.
463ac0653dcSBruce Evans 		 */
464f0b479cdSPaul Saab 		ts->tv_nsec = 1000000000 / tc_getfrequency() + 1;
465b8817154SKelly Yancey 		break;
466b8817154SKelly Yancey 	case CLOCK_VIRTUAL:
467b8817154SKelly Yancey 	case CLOCK_PROF:
468b8817154SKelly Yancey 		/* Accurately round up here because we can do so cheaply. */
46955e0987aSPedro F. Giffuni 		ts->tv_nsec = howmany(1000000000, hz);
470b8817154SKelly Yancey 		break;
4715e758b95SRobert Watson 	case CLOCK_SECOND:
4725e758b95SRobert Watson 		ts->tv_sec = 1;
4735e758b95SRobert Watson 		ts->tv_nsec = 0;
4745e758b95SRobert Watson 		break;
47500d6ac63SDavid Xu 	case CLOCK_THREAD_CPUTIME_ID:
476d65f1abcSDavid Xu 	case CLOCK_PROCESS_CPUTIME_ID:
477d65f1abcSDavid Xu 	cputime:
47800d6ac63SDavid Xu 		/* sync with cputick2usec */
47900d6ac63SDavid Xu 		ts->tv_nsec = 1000000 / cpu_tickrate();
48000d6ac63SDavid Xu 		if (ts->tv_nsec == 0)
48100d6ac63SDavid Xu 			ts->tv_nsec = 1000;
48200d6ac63SDavid Xu 		break;
483b8817154SKelly Yancey 	default:
484d65f1abcSDavid Xu 		if ((int)clock_id < 0)
485d65f1abcSDavid Xu 			goto cputime;
486b8817154SKelly Yancey 		return (EINVAL);
48794c8fcd8SPeter Wemm 	}
488de0a9241SKelly Yancey 	return (0);
48994c8fcd8SPeter Wemm }
49094c8fcd8SPeter Wemm 
4917fdf2c85SPaul Saab int
4927fdf2c85SPaul Saab kern_nanosleep(struct thread *td, struct timespec *rqt, struct timespec *rmt)
4935b870b7bSPeter Wemm {
4943f8455b0SEric van Gyzen 
4953f8455b0SEric van Gyzen 	return (kern_clock_nanosleep(td, CLOCK_REALTIME, TIMER_RELTIME, rqt,
4963f8455b0SEric van Gyzen 	    rmt));
4973f8455b0SEric van Gyzen }
4983f8455b0SEric van Gyzen 
4993f8455b0SEric van Gyzen static uint8_t nanowait[MAXCPU];
5003f8455b0SEric van Gyzen 
5013f8455b0SEric van Gyzen int
5023f8455b0SEric van Gyzen kern_clock_nanosleep(struct thread *td, clockid_t clock_id, int flags,
5033f8455b0SEric van Gyzen     const struct timespec *rqt, struct timespec *rmt)
5043f8455b0SEric van Gyzen {
5053f8455b0SEric van Gyzen 	struct timespec ts, now;
506098176f0SDavide Italiano 	sbintime_t sbt, sbtt, prec, tmp;
507980c545dSAlexander Motin 	time_t over;
50833841826SPoul-Henning Kamp 	int error;
5093f8455b0SEric van Gyzen 	bool is_abs_real;
5105b870b7bSPeter Wemm 
5117d7fb492SBruce Evans 	if (rqt->tv_nsec < 0 || rqt->tv_nsec >= 1000000000)
512708e7684SPeter Wemm 		return (EINVAL);
5133f8455b0SEric van Gyzen 	if ((flags & ~TIMER_ABSTIME) != 0)
5143f8455b0SEric van Gyzen 		return (EINVAL);
5153f8455b0SEric van Gyzen 	switch (clock_id) {
5163f8455b0SEric van Gyzen 	case CLOCK_REALTIME:
5173f8455b0SEric van Gyzen 	case CLOCK_REALTIME_PRECISE:
5183f8455b0SEric van Gyzen 	case CLOCK_REALTIME_FAST:
5193f8455b0SEric van Gyzen 	case CLOCK_SECOND:
5203f8455b0SEric van Gyzen 		is_abs_real = (flags & TIMER_ABSTIME) != 0;
5213f8455b0SEric van Gyzen 		break;
5223f8455b0SEric van Gyzen 	case CLOCK_MONOTONIC:
5233f8455b0SEric van Gyzen 	case CLOCK_MONOTONIC_PRECISE:
5243f8455b0SEric van Gyzen 	case CLOCK_MONOTONIC_FAST:
5253f8455b0SEric van Gyzen 	case CLOCK_UPTIME:
5263f8455b0SEric van Gyzen 	case CLOCK_UPTIME_PRECISE:
5273f8455b0SEric van Gyzen 	case CLOCK_UPTIME_FAST:
5283f8455b0SEric van Gyzen 		is_abs_real = false;
5293f8455b0SEric van Gyzen 		break;
5303f8455b0SEric van Gyzen 	case CLOCK_VIRTUAL:
5313f8455b0SEric van Gyzen 	case CLOCK_PROF:
5323f8455b0SEric van Gyzen 	case CLOCK_PROCESS_CPUTIME_ID:
5333f8455b0SEric van Gyzen 		return (ENOTSUP);
5343f8455b0SEric van Gyzen 	case CLOCK_THREAD_CPUTIME_ID:
5353f8455b0SEric van Gyzen 	default:
5363f8455b0SEric van Gyzen 		return (EINVAL);
5373f8455b0SEric van Gyzen 	}
5383f8455b0SEric van Gyzen 	do {
539980c545dSAlexander Motin 		ts = *rqt;
5403f8455b0SEric van Gyzen 		if ((flags & TIMER_ABSTIME) != 0) {
5413f8455b0SEric van Gyzen 			if (is_abs_real)
5423f8455b0SEric van Gyzen 				td->td_rtcgen =
5433f8455b0SEric van Gyzen 				    atomic_load_acq_int(&rtc_generation);
5443f8455b0SEric van Gyzen 			error = kern_clock_gettime(td, clock_id, &now);
5453f8455b0SEric van Gyzen 			KASSERT(error == 0, ("kern_clock_gettime: %d", error));
5466040822cSAlan Somers 			timespecsub(&ts, &now, &ts);
5473f8455b0SEric van Gyzen 		}
5483f8455b0SEric van Gyzen 		if (ts.tv_sec < 0 || (ts.tv_sec == 0 && ts.tv_nsec == 0)) {
5493f8455b0SEric van Gyzen 			error = EWOULDBLOCK;
5503f8455b0SEric van Gyzen 			break;
5513f8455b0SEric van Gyzen 		}
552980c545dSAlexander Motin 		if (ts.tv_sec > INT32_MAX / 2) {
553980c545dSAlexander Motin 			over = ts.tv_sec - INT32_MAX / 2;
554980c545dSAlexander Motin 			ts.tv_sec -= over;
555980c545dSAlexander Motin 		} else
556980c545dSAlexander Motin 			over = 0;
557980c545dSAlexander Motin 		tmp = tstosbt(ts);
558098176f0SDavide Italiano 		prec = tmp;
559098176f0SDavide Italiano 		prec >>= tc_precexp;
560098176f0SDavide Italiano 		if (TIMESEL(&sbt, tmp))
561098176f0SDavide Italiano 			sbt += tc_tick_sbt;
562098176f0SDavide Italiano 		sbt += tmp;
5630dbf17e6SAlexander Motin 		error = tsleep_sbt(&nanowait[curcpu], PWAIT | PCATCH, "nanslp",
5640dbf17e6SAlexander Motin 		    sbt, prec, C_ABSOLUTE);
5653f8455b0SEric van Gyzen 	} while (error == 0 && is_abs_real && td->td_rtcgen == 0);
5663f8455b0SEric van Gyzen 	td->td_rtcgen = 0;
56733841826SPoul-Henning Kamp 	if (error != EWOULDBLOCK) {
56870c144dcSBryan Drewery 		if (TIMESEL(&sbtt, tmp))
56970c144dcSBryan Drewery 			sbtt += tc_tick_sbt;
5703f8455b0SEric van Gyzen 		if (sbtt >= sbt)
5713f8455b0SEric van Gyzen 			return (0);
57233841826SPoul-Henning Kamp 		if (error == ERESTART)
57394c8fcd8SPeter Wemm 			error = EINTR;
5743f8455b0SEric van Gyzen 		if ((flags & TIMER_ABSTIME) == 0 && rmt != NULL) {
575098176f0SDavide Italiano 			ts = sbttots(sbt - sbtt);
576980c545dSAlexander Motin 			ts.tv_sec += over;
57733841826SPoul-Henning Kamp 			if (ts.tv_sec < 0)
57833841826SPoul-Henning Kamp 				timespecclear(&ts);
57900af9731SPoul-Henning Kamp 			*rmt = ts;
58000af9731SPoul-Henning Kamp 		}
58133841826SPoul-Henning Kamp 		return (error);
58233841826SPoul-Henning Kamp 	}
58333841826SPoul-Henning Kamp 	return (0);
5845b870b7bSPeter Wemm }
58594c8fcd8SPeter Wemm 
5865b870b7bSPeter Wemm #ifndef _SYS_SYSPROTO_H_
5875b870b7bSPeter Wemm struct nanosleep_args {
5885b870b7bSPeter Wemm 	struct	timespec *rqtp;
5895b870b7bSPeter Wemm 	struct	timespec *rmtp;
5905b870b7bSPeter Wemm };
5915b870b7bSPeter Wemm #endif
5925b870b7bSPeter Wemm /* ARGSUSED */
5935b870b7bSPeter Wemm int
5948451d0ddSKip Macy sys_nanosleep(struct thread *td, struct nanosleep_args *uap)
5955b870b7bSPeter Wemm {
5963f8455b0SEric van Gyzen 
5973f8455b0SEric van Gyzen 	return (user_clock_nanosleep(td, CLOCK_REALTIME, TIMER_RELTIME,
5983f8455b0SEric van Gyzen 	    uap->rqtp, uap->rmtp));
5993f8455b0SEric van Gyzen }
6003f8455b0SEric van Gyzen 
6013f8455b0SEric van Gyzen #ifndef _SYS_SYSPROTO_H_
6023f8455b0SEric van Gyzen struct clock_nanosleep_args {
6033f8455b0SEric van Gyzen 	clockid_t clock_id;
6043f8455b0SEric van Gyzen 	int 	  flags;
6053f8455b0SEric van Gyzen 	struct	timespec *rqtp;
6063f8455b0SEric van Gyzen 	struct	timespec *rmtp;
6073f8455b0SEric van Gyzen };
6083f8455b0SEric van Gyzen #endif
6093f8455b0SEric van Gyzen /* ARGSUSED */
6103f8455b0SEric van Gyzen int
6113f8455b0SEric van Gyzen sys_clock_nanosleep(struct thread *td, struct clock_nanosleep_args *uap)
6123f8455b0SEric van Gyzen {
6133f8455b0SEric van Gyzen 	int error;
6143f8455b0SEric van Gyzen 
6153f8455b0SEric van Gyzen 	error = user_clock_nanosleep(td, uap->clock_id, uap->flags, uap->rqtp,
6163f8455b0SEric van Gyzen 	    uap->rmtp);
6173f8455b0SEric van Gyzen 	return (kern_posix_error(td, error));
6183f8455b0SEric van Gyzen }
6193f8455b0SEric van Gyzen 
6203f8455b0SEric van Gyzen static int
6213f8455b0SEric van Gyzen user_clock_nanosleep(struct thread *td, clockid_t clock_id, int flags,
6223f8455b0SEric van Gyzen     const struct timespec *ua_rqtp, struct timespec *ua_rmtp)
6233f8455b0SEric van Gyzen {
6245b870b7bSPeter Wemm 	struct timespec rmt, rqt;
625618a20d4SBrooks Davis 	int error, error2;
6265b870b7bSPeter Wemm 
6273f8455b0SEric van Gyzen 	error = copyin(ua_rqtp, &rqt, sizeof(rqt));
6285b870b7bSPeter Wemm 	if (error)
6295b870b7bSPeter Wemm 		return (error);
6303f8455b0SEric van Gyzen 	error = kern_clock_nanosleep(td, clock_id, flags, &rqt, &rmt);
6313f8455b0SEric van Gyzen 	if (error == EINTR && ua_rmtp != NULL && (flags & TIMER_ABSTIME) == 0) {
6323f8455b0SEric van Gyzen 		error2 = copyout(&rmt, ua_rmtp, sizeof(rmt));
633618a20d4SBrooks Davis 		if (error2 != 0)
634fb99ab88SMatthew Dillon 			error = error2;
635708e7684SPeter Wemm 	}
636708e7684SPeter Wemm 	return (error);
63794c8fcd8SPeter Wemm }
63894c8fcd8SPeter Wemm 
6395b870b7bSPeter Wemm #ifndef _SYS_SYSPROTO_H_
640df8bae1dSRodney W. Grimes struct gettimeofday_args {
641df8bae1dSRodney W. Grimes 	struct	timeval *tp;
642df8bae1dSRodney W. Grimes 	struct	timezone *tzp;
643df8bae1dSRodney W. Grimes };
644d2d3e875SBruce Evans #endif
645df8bae1dSRodney W. Grimes /* ARGSUSED */
64626f9a767SRodney W. Grimes int
6478451d0ddSKip Macy sys_gettimeofday(struct thread *td, struct gettimeofday_args *uap)
648df8bae1dSRodney W. Grimes {
649df8bae1dSRodney W. Grimes 	struct timeval atv;
650411c25edSTim J. Robbins 	struct timezone rtz;
651df8bae1dSRodney W. Grimes 	int error = 0;
652df8bae1dSRodney W. Grimes 
653df8bae1dSRodney W. Grimes 	if (uap->tp) {
654df8bae1dSRodney W. Grimes 		microtime(&atv);
65501609114SAlfred Perlstein 		error = copyout(&atv, uap->tp, sizeof (atv));
656df8bae1dSRodney W. Grimes 	}
65721dcdb38SPoul-Henning Kamp 	if (error == 0 && uap->tzp != NULL) {
658329f0aa9SWarner Losh 		rtz.tz_minuteswest = 0;
659329f0aa9SWarner Losh 		rtz.tz_dsttime = 0;
660411c25edSTim J. Robbins 		error = copyout(&rtz, uap->tzp, sizeof (rtz));
66121dcdb38SPoul-Henning Kamp 	}
662df8bae1dSRodney W. Grimes 	return (error);
663df8bae1dSRodney W. Grimes }
664df8bae1dSRodney W. Grimes 
665d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
666df8bae1dSRodney W. Grimes struct settimeofday_args {
667df8bae1dSRodney W. Grimes 	struct	timeval *tv;
668df8bae1dSRodney W. Grimes 	struct	timezone *tzp;
669df8bae1dSRodney W. Grimes };
670d2d3e875SBruce Evans #endif
671df8bae1dSRodney W. Grimes /* ARGSUSED */
67226f9a767SRodney W. Grimes int
6738451d0ddSKip Macy sys_settimeofday(struct thread *td, struct settimeofday_args *uap)
674df8bae1dSRodney W. Grimes {
675b88ec951SJohn Baldwin 	struct timeval atv, *tvp;
676b88ec951SJohn Baldwin 	struct timezone atz, *tzp;
677b88ec951SJohn Baldwin 	int error;
678b88ec951SJohn Baldwin 
679b88ec951SJohn Baldwin 	if (uap->tv) {
680b88ec951SJohn Baldwin 		error = copyin(uap->tv, &atv, sizeof(atv));
681b88ec951SJohn Baldwin 		if (error)
682b88ec951SJohn Baldwin 			return (error);
683b88ec951SJohn Baldwin 		tvp = &atv;
684b88ec951SJohn Baldwin 	} else
685b88ec951SJohn Baldwin 		tvp = NULL;
686b88ec951SJohn Baldwin 	if (uap->tzp) {
687b88ec951SJohn Baldwin 		error = copyin(uap->tzp, &atz, sizeof(atz));
688b88ec951SJohn Baldwin 		if (error)
689b88ec951SJohn Baldwin 			return (error);
690b88ec951SJohn Baldwin 		tzp = &atz;
691b88ec951SJohn Baldwin 	} else
692b88ec951SJohn Baldwin 		tzp = NULL;
693b88ec951SJohn Baldwin 	return (kern_settimeofday(td, tvp, tzp));
694b88ec951SJohn Baldwin }
695b88ec951SJohn Baldwin 
696b88ec951SJohn Baldwin int
697b88ec951SJohn Baldwin kern_settimeofday(struct thread *td, struct timeval *tv, struct timezone *tzp)
698b88ec951SJohn Baldwin {
699b88ec951SJohn Baldwin 	int error;
700fb99ab88SMatthew Dillon 
701acd3428bSRobert Watson 	error = priv_check(td, PRIV_SETTIMEOFDAY);
702b88ec951SJohn Baldwin 	if (error)
7037edfb592SJohn Baldwin 		return (error);
704df8bae1dSRodney W. Grimes 	/* Verify all parameters before changing time. */
705b88ec951SJohn Baldwin 	if (tv) {
7063e18d701SDmitry Chagin 		if (tv->tv_usec < 0 || tv->tv_usec >= 1000000 ||
7073e18d701SDmitry Chagin 		    tv->tv_sec < 0)
7087edfb592SJohn Baldwin 			return (EINVAL);
709b88ec951SJohn Baldwin 		error = settime(td, tv);
710708e7684SPeter Wemm 	}
7117edfb592SJohn Baldwin 	return (error);
712b88ec951SJohn Baldwin }
7137edfb592SJohn Baldwin 
714df8bae1dSRodney W. Grimes /*
715873fbcd7SRobert Watson  * Get value of an interval timer.  The process virtual and profiling virtual
716873fbcd7SRobert Watson  * time timers are kept in the p_stats area, since they can be swapped out.
717873fbcd7SRobert Watson  * These are kept internally in the way they are specified externally: in
718873fbcd7SRobert Watson  * time until they expire.
719df8bae1dSRodney W. Grimes  *
720873fbcd7SRobert Watson  * The real time interval timer is kept in the process table slot for the
721873fbcd7SRobert Watson  * process, and its value (it_value) is kept as an absolute time rather than
722873fbcd7SRobert Watson  * as a delta, so that it is easy to keep periodic real-time signals from
723873fbcd7SRobert Watson  * drifting.
724df8bae1dSRodney W. Grimes  *
725df8bae1dSRodney W. Grimes  * Virtual time timers are processed in the hardclock() routine of
726873fbcd7SRobert Watson  * kern_clock.c.  The real time timer is processed by a timeout routine,
727873fbcd7SRobert Watson  * called from the softclock() routine.  Since a callout may be delayed in
728873fbcd7SRobert Watson  * real time due to interrupt processing in the system, it is possible for
729873fbcd7SRobert Watson  * the real time timeout routine (realitexpire, given below), to be delayed
730873fbcd7SRobert Watson  * in real time past when it is supposed to occur.  It does not suffice,
731873fbcd7SRobert Watson  * therefore, to reload the real timer .it_value from the real time timers
732873fbcd7SRobert Watson  * .it_interval.  Rather, we compute the next time in absolute time the timer
733873fbcd7SRobert Watson  * should go off.
734df8bae1dSRodney W. Grimes  */
735d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
736df8bae1dSRodney W. Grimes struct getitimer_args {
737df8bae1dSRodney W. Grimes 	u_int	which;
738df8bae1dSRodney W. Grimes 	struct	itimerval *itv;
739df8bae1dSRodney W. Grimes };
740d2d3e875SBruce Evans #endif
74126f9a767SRodney W. Grimes int
7428451d0ddSKip Macy sys_getitimer(struct thread *td, struct getitimer_args *uap)
743df8bae1dSRodney W. Grimes {
744df8bae1dSRodney W. Grimes 	struct itimerval aitv;
745c90110d6SJohn Baldwin 	int error;
746df8bae1dSRodney W. Grimes 
747cfa0efe7SMaxim Sobolev 	error = kern_getitimer(td, uap->which, &aitv);
748cfa0efe7SMaxim Sobolev 	if (error != 0)
749cfa0efe7SMaxim Sobolev 		return (error);
750cfa0efe7SMaxim Sobolev 	return (copyout(&aitv, uap->itv, sizeof (struct itimerval)));
751cfa0efe7SMaxim Sobolev }
752cfa0efe7SMaxim Sobolev 
753cfa0efe7SMaxim Sobolev int
754cfa0efe7SMaxim Sobolev kern_getitimer(struct thread *td, u_int which, struct itimerval *aitv)
755cfa0efe7SMaxim Sobolev {
756cfa0efe7SMaxim Sobolev 	struct proc *p = td->td_proc;
757cfa0efe7SMaxim Sobolev 	struct timeval ctv;
758cfa0efe7SMaxim Sobolev 
759cfa0efe7SMaxim Sobolev 	if (which > ITIMER_PROF)
760df8bae1dSRodney W. Grimes 		return (EINVAL);
761fb99ab88SMatthew Dillon 
762cfa0efe7SMaxim Sobolev 	if (which == ITIMER_REAL) {
763df8bae1dSRodney W. Grimes 		/*
764ee002b68SBruce Evans 		 * Convert from absolute to relative time in .it_value
765df8bae1dSRodney W. Grimes 		 * part of real time timer.  If time for real time timer
766df8bae1dSRodney W. Grimes 		 * has passed return 0, else return difference between
767df8bae1dSRodney W. Grimes 		 * current time and time for the timer to go off.
768df8bae1dSRodney W. Grimes 		 */
76996d7f8efSTim J. Robbins 		PROC_LOCK(p);
770cfa0efe7SMaxim Sobolev 		*aitv = p->p_realtimer;
77196d7f8efSTim J. Robbins 		PROC_UNLOCK(p);
772cfa0efe7SMaxim Sobolev 		if (timevalisset(&aitv->it_value)) {
773b5ea3779SAlexander Motin 			microuptime(&ctv);
774cfa0efe7SMaxim Sobolev 			if (timevalcmp(&aitv->it_value, &ctv, <))
775cfa0efe7SMaxim Sobolev 				timevalclear(&aitv->it_value);
776df8bae1dSRodney W. Grimes 			else
777cfa0efe7SMaxim Sobolev 				timevalsub(&aitv->it_value, &ctv);
778227ee8a1SPoul-Henning Kamp 		}
779fb99ab88SMatthew Dillon 	} else {
7805c7bebf9SKonstantin Belousov 		PROC_ITIMLOCK(p);
781cfa0efe7SMaxim Sobolev 		*aitv = p->p_stats->p_timer[which];
7825c7bebf9SKonstantin Belousov 		PROC_ITIMUNLOCK(p);
783fb99ab88SMatthew Dillon 	}
784de56aee0SKonstantin Belousov #ifdef KTRACE
785de56aee0SKonstantin Belousov 	if (KTRPOINT(td, KTR_STRUCT))
786de56aee0SKonstantin Belousov 		ktritimerval(aitv);
787de56aee0SKonstantin Belousov #endif
788cfa0efe7SMaxim Sobolev 	return (0);
789df8bae1dSRodney W. Grimes }
790df8bae1dSRodney W. Grimes 
791d2d3e875SBruce Evans #ifndef _SYS_SYSPROTO_H_
792df8bae1dSRodney W. Grimes struct setitimer_args {
793df8bae1dSRodney W. Grimes 	u_int	which;
794df8bae1dSRodney W. Grimes 	struct	itimerval *itv, *oitv;
795df8bae1dSRodney W. Grimes };
796d2d3e875SBruce Evans #endif
79726f9a767SRodney W. Grimes int
7988451d0ddSKip Macy sys_setitimer(struct thread *td, struct setitimer_args *uap)
799df8bae1dSRodney W. Grimes {
800cfa0efe7SMaxim Sobolev 	struct itimerval aitv, oitv;
801c90110d6SJohn Baldwin 	int error;
80296d7f8efSTim J. Robbins 
80396d7f8efSTim J. Robbins 	if (uap->itv == NULL) {
80496d7f8efSTim J. Robbins 		uap->itv = uap->oitv;
8058451d0ddSKip Macy 		return (sys_getitimer(td, (struct getitimer_args *)uap));
80696d7f8efSTim J. Robbins 	}
807df8bae1dSRodney W. Grimes 
80896d7f8efSTim J. Robbins 	if ((error = copyin(uap->itv, &aitv, sizeof(struct itimerval))))
809df8bae1dSRodney W. Grimes 		return (error);
810cfa0efe7SMaxim Sobolev 	error = kern_setitimer(td, uap->which, &aitv, &oitv);
811cfa0efe7SMaxim Sobolev 	if (error != 0 || uap->oitv == NULL)
812cfa0efe7SMaxim Sobolev 		return (error);
813cfa0efe7SMaxim Sobolev 	return (copyout(&oitv, uap->oitv, sizeof(struct itimerval)));
814cfa0efe7SMaxim Sobolev }
815cfa0efe7SMaxim Sobolev 
816cfa0efe7SMaxim Sobolev int
817c90110d6SJohn Baldwin kern_setitimer(struct thread *td, u_int which, struct itimerval *aitv,
818c90110d6SJohn Baldwin     struct itimerval *oitv)
819cfa0efe7SMaxim Sobolev {
820cfa0efe7SMaxim Sobolev 	struct proc *p = td->td_proc;
821cfa0efe7SMaxim Sobolev 	struct timeval ctv;
822b5ea3779SAlexander Motin 	sbintime_t sbt, pr;
823cfa0efe7SMaxim Sobolev 
8245e85ac17SJohn Baldwin 	if (aitv == NULL)
8255e85ac17SJohn Baldwin 		return (kern_getitimer(td, which, oitv));
8265e85ac17SJohn Baldwin 
827cfa0efe7SMaxim Sobolev 	if (which > ITIMER_PROF)
82896d7f8efSTim J. Robbins 		return (EINVAL);
829de56aee0SKonstantin Belousov #ifdef KTRACE
830de56aee0SKonstantin Belousov 	if (KTRPOINT(td, KTR_STRUCT))
831de56aee0SKonstantin Belousov 		ktritimerval(aitv);
832de56aee0SKonstantin Belousov #endif
833b5ea3779SAlexander Motin 	if (itimerfix(&aitv->it_value) ||
834b5ea3779SAlexander Motin 	    aitv->it_value.tv_sec > INT32_MAX / 2)
835cfa0efe7SMaxim Sobolev 		return (EINVAL);
836cfa0efe7SMaxim Sobolev 	if (!timevalisset(&aitv->it_value))
837cfa0efe7SMaxim Sobolev 		timevalclear(&aitv->it_interval);
838b5ea3779SAlexander Motin 	else if (itimerfix(&aitv->it_interval) ||
839b5ea3779SAlexander Motin 	    aitv->it_interval.tv_sec > INT32_MAX / 2)
84096d7f8efSTim J. Robbins 		return (EINVAL);
84196d7f8efSTim J. Robbins 
842cfa0efe7SMaxim Sobolev 	if (which == ITIMER_REAL) {
84396d7f8efSTim J. Robbins 		PROC_LOCK(p);
8444cf41af3SPoul-Henning Kamp 		if (timevalisset(&p->p_realtimer.it_value))
8454f559836SJake Burkholder 			callout_stop(&p->p_itcallout);
846b5ea3779SAlexander Motin 		microuptime(&ctv);
847cfa0efe7SMaxim Sobolev 		if (timevalisset(&aitv->it_value)) {
848b5ea3779SAlexander Motin 			pr = tvtosbt(aitv->it_value) >> tc_precexp;
849cfa0efe7SMaxim Sobolev 			timevaladd(&aitv->it_value, &ctv);
850b5ea3779SAlexander Motin 			sbt = tvtosbt(aitv->it_value);
851b5ea3779SAlexander Motin 			callout_reset_sbt(&p->p_itcallout, sbt, pr,
852b5ea3779SAlexander Motin 			    realitexpire, p, C_ABSOLUTE);
85325b4d3a8SJohn Baldwin 		}
854cfa0efe7SMaxim Sobolev 		*oitv = p->p_realtimer;
855cfa0efe7SMaxim Sobolev 		p->p_realtimer = *aitv;
85696d7f8efSTim J. Robbins 		PROC_UNLOCK(p);
857cfa0efe7SMaxim Sobolev 		if (timevalisset(&oitv->it_value)) {
858cfa0efe7SMaxim Sobolev 			if (timevalcmp(&oitv->it_value, &ctv, <))
859cfa0efe7SMaxim Sobolev 				timevalclear(&oitv->it_value);
86096d7f8efSTim J. Robbins 			else
861cfa0efe7SMaxim Sobolev 				timevalsub(&oitv->it_value, &ctv);
862fb99ab88SMatthew Dillon 		}
86396d7f8efSTim J. Robbins 	} else {
864d10a1df8SAlexander Motin 		if (aitv->it_interval.tv_sec == 0 &&
865d10a1df8SAlexander Motin 		    aitv->it_interval.tv_usec != 0 &&
866d10a1df8SAlexander Motin 		    aitv->it_interval.tv_usec < tick)
867d10a1df8SAlexander Motin 			aitv->it_interval.tv_usec = tick;
868d10a1df8SAlexander Motin 		if (aitv->it_value.tv_sec == 0 &&
869d10a1df8SAlexander Motin 		    aitv->it_value.tv_usec != 0 &&
870d10a1df8SAlexander Motin 		    aitv->it_value.tv_usec < tick)
871d10a1df8SAlexander Motin 			aitv->it_value.tv_usec = tick;
8725c7bebf9SKonstantin Belousov 		PROC_ITIMLOCK(p);
873cfa0efe7SMaxim Sobolev 		*oitv = p->p_stats->p_timer[which];
874cfa0efe7SMaxim Sobolev 		p->p_stats->p_timer[which] = *aitv;
8755c7bebf9SKonstantin Belousov 		PROC_ITIMUNLOCK(p);
87696d7f8efSTim J. Robbins 	}
877de56aee0SKonstantin Belousov #ifdef KTRACE
878de56aee0SKonstantin Belousov 	if (KTRPOINT(td, KTR_STRUCT))
879de56aee0SKonstantin Belousov 		ktritimerval(oitv);
880de56aee0SKonstantin Belousov #endif
88196d7f8efSTim J. Robbins 	return (0);
882df8bae1dSRodney W. Grimes }
883df8bae1dSRodney W. Grimes 
884df8bae1dSRodney W. Grimes /*
885df8bae1dSRodney W. Grimes  * Real interval timer expired:
886df8bae1dSRodney W. Grimes  * send process whose timer expired an alarm signal.
887df8bae1dSRodney W. Grimes  * If time is not set up to reload, then just return.
888df8bae1dSRodney W. Grimes  * Else compute next time timer should go off which is > current time.
889df8bae1dSRodney W. Grimes  * This is where delay in processing this timeout causes multiple
890df8bae1dSRodney W. Grimes  * SIGALRM calls to be compressed into one.
891c8b47828SBruce Evans  * tvtohz() always adds 1 to allow for the time until the next clock
8929207f00aSBruce Evans  * interrupt being strictly less than 1 clock tick, but we don't want
8939207f00aSBruce Evans  * that here since we want to appear to be in sync with the clock
8949207f00aSBruce Evans  * interrupt even when we're delayed.
895df8bae1dSRodney W. Grimes  */
896df8bae1dSRodney W. Grimes void
89791afe087SPoul-Henning Kamp realitexpire(void *arg)
898df8bae1dSRodney W. Grimes {
89991afe087SPoul-Henning Kamp 	struct proc *p;
900b5ea3779SAlexander Motin 	struct timeval ctv;
901b5ea3779SAlexander Motin 	sbintime_t isbt;
902df8bae1dSRodney W. Grimes 
903df8bae1dSRodney W. Grimes 	p = (struct proc *)arg;
9048451d0ddSKip Macy 	kern_psignal(p, SIGALRM);
9054cf41af3SPoul-Henning Kamp 	if (!timevalisset(&p->p_realtimer.it_interval)) {
9064cf41af3SPoul-Henning Kamp 		timevalclear(&p->p_realtimer.it_value);
9075499ea01SJohn Baldwin 		if (p->p_flag & P_WEXIT)
9085499ea01SJohn Baldwin 			wakeup(&p->p_itcallout);
909df8bae1dSRodney W. Grimes 		return;
910df8bae1dSRodney W. Grimes 	}
911b5ea3779SAlexander Motin 	isbt = tvtosbt(p->p_realtimer.it_interval);
912b5ea3779SAlexander Motin 	if (isbt >= sbt_timethreshold)
913b5ea3779SAlexander Motin 		getmicrouptime(&ctv);
914b5ea3779SAlexander Motin 	else
915b5ea3779SAlexander Motin 		microuptime(&ctv);
916b5ea3779SAlexander Motin 	do {
917df8bae1dSRodney W. Grimes 		timevaladd(&p->p_realtimer.it_value,
918df8bae1dSRodney W. Grimes 		    &p->p_realtimer.it_interval);
919b5ea3779SAlexander Motin 	} while (timevalcmp(&p->p_realtimer.it_value, &ctv, <=));
920b5ea3779SAlexander Motin 	callout_reset_sbt(&p->p_itcallout, tvtosbt(p->p_realtimer.it_value),
921b5ea3779SAlexander Motin 	    isbt >> tc_precexp, realitexpire, p, C_ABSOLUTE);
922df8bae1dSRodney W. Grimes }
923df8bae1dSRodney W. Grimes 
924df8bae1dSRodney W. Grimes /*
925df8bae1dSRodney W. Grimes  * Check that a proposed value to load into the .it_value or
926df8bae1dSRodney W. Grimes  * .it_interval part of an interval timer is acceptable, and
927df8bae1dSRodney W. Grimes  * fix it to have at least minimal value (i.e. if it is less
928df8bae1dSRodney W. Grimes  * than the resolution of the clock, round it up.)
929df8bae1dSRodney W. Grimes  */
93026f9a767SRodney W. Grimes int
93191afe087SPoul-Henning Kamp itimerfix(struct timeval *tv)
932df8bae1dSRodney W. Grimes {
933df8bae1dSRodney W. Grimes 
93486857b36SDavid Xu 	if (tv->tv_sec < 0 || tv->tv_usec < 0 || tv->tv_usec >= 1000000)
935df8bae1dSRodney W. Grimes 		return (EINVAL);
936b5ea3779SAlexander Motin 	if (tv->tv_sec == 0 && tv->tv_usec != 0 &&
937b5ea3779SAlexander Motin 	    tv->tv_usec < (u_int)tick / 16)
938b5ea3779SAlexander Motin 		tv->tv_usec = (u_int)tick / 16;
939df8bae1dSRodney W. Grimes 	return (0);
940df8bae1dSRodney W. Grimes }
941df8bae1dSRodney W. Grimes 
942df8bae1dSRodney W. Grimes /*
943df8bae1dSRodney W. Grimes  * Decrement an interval timer by a specified number
944df8bae1dSRodney W. Grimes  * of microseconds, which must be less than a second,
945df8bae1dSRodney W. Grimes  * i.e. < 1000000.  If the timer expires, then reload
946df8bae1dSRodney W. Grimes  * it.  In this case, carry over (usec - old value) to
947df8bae1dSRodney W. Grimes  * reduce the value reloaded into the timer so that
948df8bae1dSRodney W. Grimes  * the timer does not drift.  This routine assumes
949df8bae1dSRodney W. Grimes  * that it is called in a context where the timers
950df8bae1dSRodney W. Grimes  * on which it is operating cannot change in value.
951df8bae1dSRodney W. Grimes  */
95226f9a767SRodney W. Grimes int
95391afe087SPoul-Henning Kamp itimerdecr(struct itimerval *itp, int usec)
954df8bae1dSRodney W. Grimes {
955df8bae1dSRodney W. Grimes 
956df8bae1dSRodney W. Grimes 	if (itp->it_value.tv_usec < usec) {
957df8bae1dSRodney W. Grimes 		if (itp->it_value.tv_sec == 0) {
958df8bae1dSRodney W. Grimes 			/* expired, and already in next interval */
959df8bae1dSRodney W. Grimes 			usec -= itp->it_value.tv_usec;
960df8bae1dSRodney W. Grimes 			goto expire;
961df8bae1dSRodney W. Grimes 		}
962df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec += 1000000;
963df8bae1dSRodney W. Grimes 		itp->it_value.tv_sec--;
964df8bae1dSRodney W. Grimes 	}
965df8bae1dSRodney W. Grimes 	itp->it_value.tv_usec -= usec;
966df8bae1dSRodney W. Grimes 	usec = 0;
9674cf41af3SPoul-Henning Kamp 	if (timevalisset(&itp->it_value))
968df8bae1dSRodney W. Grimes 		return (1);
969df8bae1dSRodney W. Grimes 	/* expired, exactly at end of interval */
970df8bae1dSRodney W. Grimes expire:
9714cf41af3SPoul-Henning Kamp 	if (timevalisset(&itp->it_interval)) {
972df8bae1dSRodney W. Grimes 		itp->it_value = itp->it_interval;
973df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec -= usec;
974df8bae1dSRodney W. Grimes 		if (itp->it_value.tv_usec < 0) {
975df8bae1dSRodney W. Grimes 			itp->it_value.tv_usec += 1000000;
976df8bae1dSRodney W. Grimes 			itp->it_value.tv_sec--;
977df8bae1dSRodney W. Grimes 		}
978df8bae1dSRodney W. Grimes 	} else
979df8bae1dSRodney W. Grimes 		itp->it_value.tv_usec = 0;		/* sec is already 0 */
980df8bae1dSRodney W. Grimes 	return (0);
981df8bae1dSRodney W. Grimes }
982df8bae1dSRodney W. Grimes 
983df8bae1dSRodney W. Grimes /*
984df8bae1dSRodney W. Grimes  * Add and subtract routines for timevals.
985df8bae1dSRodney W. Grimes  * N.B.: subtract routine doesn't deal with
986df8bae1dSRodney W. Grimes  * results which are before the beginning,
987df8bae1dSRodney W. Grimes  * it just gets very confused in this case.
988df8bae1dSRodney W. Grimes  * Caveat emptor.
989df8bae1dSRodney W. Grimes  */
99026f9a767SRodney W. Grimes void
9916ff7636eSAlfred Perlstein timevaladd(struct timeval *t1, const struct timeval *t2)
992df8bae1dSRodney W. Grimes {
993df8bae1dSRodney W. Grimes 
994df8bae1dSRodney W. Grimes 	t1->tv_sec += t2->tv_sec;
995df8bae1dSRodney W. Grimes 	t1->tv_usec += t2->tv_usec;
996df8bae1dSRodney W. Grimes 	timevalfix(t1);
997df8bae1dSRodney W. Grimes }
998df8bae1dSRodney W. Grimes 
99926f9a767SRodney W. Grimes void
10006ff7636eSAlfred Perlstein timevalsub(struct timeval *t1, const struct timeval *t2)
1001df8bae1dSRodney W. Grimes {
1002df8bae1dSRodney W. Grimes 
1003df8bae1dSRodney W. Grimes 	t1->tv_sec -= t2->tv_sec;
1004df8bae1dSRodney W. Grimes 	t1->tv_usec -= t2->tv_usec;
1005df8bae1dSRodney W. Grimes 	timevalfix(t1);
1006df8bae1dSRodney W. Grimes }
1007df8bae1dSRodney W. Grimes 
100887b6de2bSPoul-Henning Kamp static void
100991afe087SPoul-Henning Kamp timevalfix(struct timeval *t1)
1010df8bae1dSRodney W. Grimes {
1011df8bae1dSRodney W. Grimes 
1012df8bae1dSRodney W. Grimes 	if (t1->tv_usec < 0) {
1013df8bae1dSRodney W. Grimes 		t1->tv_sec--;
1014df8bae1dSRodney W. Grimes 		t1->tv_usec += 1000000;
1015df8bae1dSRodney W. Grimes 	}
1016df8bae1dSRodney W. Grimes 	if (t1->tv_usec >= 1000000) {
1017df8bae1dSRodney W. Grimes 		t1->tv_sec++;
1018df8bae1dSRodney W. Grimes 		t1->tv_usec -= 1000000;
1019df8bae1dSRodney W. Grimes 	}
1020df8bae1dSRodney W. Grimes }
102191974ce1SSam Leffler 
102291974ce1SSam Leffler /*
1023addea9d4SSam Leffler  * ratecheck(): simple time-based rate-limit checking.
102491974ce1SSam Leffler  */
102591974ce1SSam Leffler int
102691974ce1SSam Leffler ratecheck(struct timeval *lasttime, const struct timeval *mininterval)
102791974ce1SSam Leffler {
102891974ce1SSam Leffler 	struct timeval tv, delta;
102991974ce1SSam Leffler 	int rv = 0;
103091974ce1SSam Leffler 
1031addea9d4SSam Leffler 	getmicrouptime(&tv);		/* NB: 10ms precision */
1032addea9d4SSam Leffler 	delta = tv;
1033addea9d4SSam Leffler 	timevalsub(&delta, lasttime);
103491974ce1SSam Leffler 
103591974ce1SSam Leffler 	/*
103691974ce1SSam Leffler 	 * check for 0,0 is so that the message will be seen at least once,
103791974ce1SSam Leffler 	 * even if interval is huge.
103891974ce1SSam Leffler 	 */
103991974ce1SSam Leffler 	if (timevalcmp(&delta, mininterval, >=) ||
104091974ce1SSam Leffler 	    (lasttime->tv_sec == 0 && lasttime->tv_usec == 0)) {
104191974ce1SSam Leffler 		*lasttime = tv;
104291974ce1SSam Leffler 		rv = 1;
104391974ce1SSam Leffler 	}
104491974ce1SSam Leffler 
104591974ce1SSam Leffler 	return (rv);
104691974ce1SSam Leffler }
104791974ce1SSam Leffler 
104891974ce1SSam Leffler /*
104991974ce1SSam Leffler  * ppsratecheck(): packets (or events) per second limitation.
1050addea9d4SSam Leffler  *
1051addea9d4SSam Leffler  * Return 0 if the limit is to be enforced (e.g. the caller
1052addea9d4SSam Leffler  * should drop a packet because of the rate limitation).
1053addea9d4SSam Leffler  *
1054893bec80SSam Leffler  * maxpps of 0 always causes zero to be returned.  maxpps of -1
1055893bec80SSam Leffler  * always causes 1 to be returned; this effectively defeats rate
1056893bec80SSam Leffler  * limiting.
1057893bec80SSam Leffler  *
1058addea9d4SSam Leffler  * Note that we maintain the struct timeval for compatibility
1059addea9d4SSam Leffler  * with other bsd systems.  We reuse the storage and just monitor
1060addea9d4SSam Leffler  * clock ticks for minimal overhead.
106191974ce1SSam Leffler  */
106291974ce1SSam Leffler int
106391974ce1SSam Leffler ppsratecheck(struct timeval *lasttime, int *curpps, int maxpps)
106491974ce1SSam Leffler {
1065addea9d4SSam Leffler 	int now;
106691974ce1SSam Leffler 
106791974ce1SSam Leffler 	/*
1068addea9d4SSam Leffler 	 * Reset the last time and counter if this is the first call
1069addea9d4SSam Leffler 	 * or more than a second has passed since the last update of
1070addea9d4SSam Leffler 	 * lasttime.
107191974ce1SSam Leffler 	 */
1072addea9d4SSam Leffler 	now = ticks;
1073addea9d4SSam Leffler 	if (lasttime->tv_sec == 0 || (u_int)(now - lasttime->tv_sec) >= hz) {
1074addea9d4SSam Leffler 		lasttime->tv_sec = now;
1075addea9d4SSam Leffler 		*curpps = 1;
1076893bec80SSam Leffler 		return (maxpps != 0);
1077addea9d4SSam Leffler 	} else {
1078addea9d4SSam Leffler 		(*curpps)++;		/* NB: ignore potential overflow */
1079f8f02928SIan Lepore 		return (maxpps < 0 || *curpps <= maxpps);
1080addea9d4SSam Leffler 	}
108191974ce1SSam Leffler }
108286857b36SDavid Xu 
108386857b36SDavid Xu static void
108486857b36SDavid Xu itimer_start(void)
108586857b36SDavid Xu {
1086e68c6191SKonstantin Belousov 	static const struct kclock rt_clock = {
108786857b36SDavid Xu 		.timer_create  = realtimer_create,
108886857b36SDavid Xu 		.timer_delete  = realtimer_delete,
108986857b36SDavid Xu 		.timer_settime = realtimer_settime,
109086857b36SDavid Xu 		.timer_gettime = realtimer_gettime,
109186857b36SDavid Xu 	};
109286857b36SDavid Xu 
109386857b36SDavid Xu 	itimer_zone = uma_zcreate("itimer", sizeof(struct itimer),
109486857b36SDavid Xu 		NULL, NULL, itimer_init, itimer_fini, UMA_ALIGN_PTR, 0);
109586857b36SDavid Xu 	register_posix_clock(CLOCK_REALTIME,  &rt_clock);
109686857b36SDavid Xu 	register_posix_clock(CLOCK_MONOTONIC, &rt_clock);
109777e718f7SDavid Xu 	p31b_setcfg(CTL_P1003_1B_TIMERS, 200112L);
109877e718f7SDavid Xu 	p31b_setcfg(CTL_P1003_1B_DELAYTIMER_MAX, INT_MAX);
109977e718f7SDavid Xu 	p31b_setcfg(CTL_P1003_1B_TIMER_MAX, TIMER_MAX);
110086857b36SDavid Xu }
110186857b36SDavid Xu 
1102e68c6191SKonstantin Belousov static int
1103e68c6191SKonstantin Belousov register_posix_clock(int clockid, const struct kclock *clk)
110486857b36SDavid Xu {
110586857b36SDavid Xu 	if ((unsigned)clockid >= MAX_CLOCKS) {
110686857b36SDavid Xu 		printf("%s: invalid clockid\n", __func__);
110786857b36SDavid Xu 		return (0);
110886857b36SDavid Xu 	}
110986857b36SDavid Xu 	posix_clocks[clockid] = *clk;
111086857b36SDavid Xu 	return (1);
111186857b36SDavid Xu }
111286857b36SDavid Xu 
111386857b36SDavid Xu static int
111486857b36SDavid Xu itimer_init(void *mem, int size, int flags)
111586857b36SDavid Xu {
111686857b36SDavid Xu 	struct itimer *it;
111786857b36SDavid Xu 
111886857b36SDavid Xu 	it = (struct itimer *)mem;
111986857b36SDavid Xu 	mtx_init(&it->it_mtx, "itimer lock", NULL, MTX_DEF);
112086857b36SDavid Xu 	return (0);
112186857b36SDavid Xu }
112286857b36SDavid Xu 
112386857b36SDavid Xu static void
112486857b36SDavid Xu itimer_fini(void *mem, int size)
112586857b36SDavid Xu {
112686857b36SDavid Xu 	struct itimer *it;
112786857b36SDavid Xu 
112886857b36SDavid Xu 	it = (struct itimer *)mem;
112986857b36SDavid Xu 	mtx_destroy(&it->it_mtx);
113086857b36SDavid Xu }
113186857b36SDavid Xu 
113286857b36SDavid Xu static void
113386857b36SDavid Xu itimer_enter(struct itimer *it)
113486857b36SDavid Xu {
113586857b36SDavid Xu 
113686857b36SDavid Xu 	mtx_assert(&it->it_mtx, MA_OWNED);
113786857b36SDavid Xu 	it->it_usecount++;
113886857b36SDavid Xu }
113986857b36SDavid Xu 
114086857b36SDavid Xu static void
114186857b36SDavid Xu itimer_leave(struct itimer *it)
114286857b36SDavid Xu {
114386857b36SDavid Xu 
114486857b36SDavid Xu 	mtx_assert(&it->it_mtx, MA_OWNED);
114586857b36SDavid Xu 	KASSERT(it->it_usecount > 0, ("invalid it_usecount"));
114686857b36SDavid Xu 
114786857b36SDavid Xu 	if (--it->it_usecount == 0 && (it->it_flags & ITF_WANTED) != 0)
114886857b36SDavid Xu 		wakeup(it);
114986857b36SDavid Xu }
115086857b36SDavid Xu 
115186857b36SDavid Xu #ifndef _SYS_SYSPROTO_H_
115261d3a4efSDavid Xu struct ktimer_create_args {
115386857b36SDavid Xu 	clockid_t clock_id;
115486857b36SDavid Xu 	struct sigevent * evp;
115561d3a4efSDavid Xu 	int * timerid;
115686857b36SDavid Xu };
115786857b36SDavid Xu #endif
115886857b36SDavid Xu int
11598451d0ddSKip Macy sys_ktimer_create(struct thread *td, struct ktimer_create_args *uap)
116086857b36SDavid Xu {
1161643ee871SKonstantin Belousov 	struct sigevent *evp, ev;
116261d3a4efSDavid Xu 	int id;
116386857b36SDavid Xu 	int error;
116486857b36SDavid Xu 
1165643ee871SKonstantin Belousov 	if (uap->evp == NULL) {
1166643ee871SKonstantin Belousov 		evp = NULL;
1167643ee871SKonstantin Belousov 	} else {
116886857b36SDavid Xu 		error = copyin(uap->evp, &ev, sizeof(ev));
116986857b36SDavid Xu 		if (error != 0)
117086857b36SDavid Xu 			return (error);
1171643ee871SKonstantin Belousov 		evp = &ev;
1172643ee871SKonstantin Belousov 	}
1173643ee871SKonstantin Belousov 	error = kern_ktimer_create(td, uap->clock_id, evp, &id, -1);
117486857b36SDavid Xu 	if (error == 0) {
117561d3a4efSDavid Xu 		error = copyout(&id, uap->timerid, sizeof(int));
117686857b36SDavid Xu 		if (error != 0)
1177643ee871SKonstantin Belousov 			kern_ktimer_delete(td, id);
117886857b36SDavid Xu 	}
117986857b36SDavid Xu 	return (error);
118086857b36SDavid Xu }
118186857b36SDavid Xu 
1182643ee871SKonstantin Belousov int
1183643ee871SKonstantin Belousov kern_ktimer_create(struct thread *td, clockid_t clock_id, struct sigevent *evp,
1184643ee871SKonstantin Belousov     int *timerid, int preset_id)
118586857b36SDavid Xu {
118686857b36SDavid Xu 	struct proc *p = td->td_proc;
118786857b36SDavid Xu 	struct itimer *it;
118886857b36SDavid Xu 	int id;
118986857b36SDavid Xu 	int error;
119086857b36SDavid Xu 
119186857b36SDavid Xu 	if (clock_id < 0 || clock_id >= MAX_CLOCKS)
119286857b36SDavid Xu 		return (EINVAL);
119386857b36SDavid Xu 
119486857b36SDavid Xu 	if (posix_clocks[clock_id].timer_create == NULL)
119586857b36SDavid Xu 		return (EINVAL);
119686857b36SDavid Xu 
119786857b36SDavid Xu 	if (evp != NULL) {
119886857b36SDavid Xu 		if (evp->sigev_notify != SIGEV_NONE &&
119956c06c4bSDavid Xu 		    evp->sigev_notify != SIGEV_SIGNAL &&
120056c06c4bSDavid Xu 		    evp->sigev_notify != SIGEV_THREAD_ID)
120186857b36SDavid Xu 			return (EINVAL);
120256c06c4bSDavid Xu 		if ((evp->sigev_notify == SIGEV_SIGNAL ||
120356c06c4bSDavid Xu 		     evp->sigev_notify == SIGEV_THREAD_ID) &&
120486857b36SDavid Xu 			!_SIG_VALID(evp->sigev_signo))
120586857b36SDavid Xu 			return (EINVAL);
120686857b36SDavid Xu 	}
120786857b36SDavid Xu 
120860354683SDavid Xu 	if (p->p_itimers == NULL)
120986857b36SDavid Xu 		itimers_alloc(p);
121086857b36SDavid Xu 
121186857b36SDavid Xu 	it = uma_zalloc(itimer_zone, M_WAITOK);
121286857b36SDavid Xu 	it->it_flags = 0;
121386857b36SDavid Xu 	it->it_usecount = 0;
121486857b36SDavid Xu 	it->it_active = 0;
121556c06c4bSDavid Xu 	timespecclear(&it->it_time.it_value);
121656c06c4bSDavid Xu 	timespecclear(&it->it_time.it_interval);
121786857b36SDavid Xu 	it->it_overrun = 0;
121886857b36SDavid Xu 	it->it_overrun_last = 0;
121986857b36SDavid Xu 	it->it_clockid = clock_id;
122086857b36SDavid Xu 	it->it_timerid = -1;
122186857b36SDavid Xu 	it->it_proc = p;
122286857b36SDavid Xu 	ksiginfo_init(&it->it_ksi);
122386857b36SDavid Xu 	it->it_ksi.ksi_flags |= KSI_INS | KSI_EXT;
122486857b36SDavid Xu 	error = CLOCK_CALL(clock_id, timer_create, (it));
122586857b36SDavid Xu 	if (error != 0)
122686857b36SDavid Xu 		goto out;
122786857b36SDavid Xu 
122886857b36SDavid Xu 	PROC_LOCK(p);
122986857b36SDavid Xu 	if (preset_id != -1) {
123086857b36SDavid Xu 		KASSERT(preset_id >= 0 && preset_id < 3, ("invalid preset_id"));
123186857b36SDavid Xu 		id = preset_id;
123260354683SDavid Xu 		if (p->p_itimers->its_timers[id] != NULL) {
123386857b36SDavid Xu 			PROC_UNLOCK(p);
123486857b36SDavid Xu 			error = 0;
123586857b36SDavid Xu 			goto out;
123686857b36SDavid Xu 		}
123786857b36SDavid Xu 	} else {
123886857b36SDavid Xu 		/*
123986857b36SDavid Xu 		 * Find a free timer slot, skipping those reserved
124086857b36SDavid Xu 		 * for setitimer().
124186857b36SDavid Xu 		 */
124286857b36SDavid Xu 		for (id = 3; id < TIMER_MAX; id++)
124360354683SDavid Xu 			if (p->p_itimers->its_timers[id] == NULL)
124486857b36SDavid Xu 				break;
124586857b36SDavid Xu 		if (id == TIMER_MAX) {
124686857b36SDavid Xu 			PROC_UNLOCK(p);
124786857b36SDavid Xu 			error = EAGAIN;
124886857b36SDavid Xu 			goto out;
124986857b36SDavid Xu 		}
125086857b36SDavid Xu 	}
125186857b36SDavid Xu 	it->it_timerid = id;
125260354683SDavid Xu 	p->p_itimers->its_timers[id] = it;
125386857b36SDavid Xu 	if (evp != NULL)
125486857b36SDavid Xu 		it->it_sigev = *evp;
125586857b36SDavid Xu 	else {
125686857b36SDavid Xu 		it->it_sigev.sigev_notify = SIGEV_SIGNAL;
125786857b36SDavid Xu 		switch (clock_id) {
125886857b36SDavid Xu 		default:
125986857b36SDavid Xu 		case CLOCK_REALTIME:
126086857b36SDavid Xu 			it->it_sigev.sigev_signo = SIGALRM;
126186857b36SDavid Xu 			break;
126286857b36SDavid Xu 		case CLOCK_VIRTUAL:
126386857b36SDavid Xu  			it->it_sigev.sigev_signo = SIGVTALRM;
126486857b36SDavid Xu 			break;
126586857b36SDavid Xu 		case CLOCK_PROF:
126686857b36SDavid Xu 			it->it_sigev.sigev_signo = SIGPROF;
126786857b36SDavid Xu 			break;
126886857b36SDavid Xu 		}
12698f0371f1SDavid Xu 		it->it_sigev.sigev_value.sival_int = id;
127086857b36SDavid Xu 	}
127186857b36SDavid Xu 
127256c06c4bSDavid Xu 	if (it->it_sigev.sigev_notify == SIGEV_SIGNAL ||
127356c06c4bSDavid Xu 	    it->it_sigev.sigev_notify == SIGEV_THREAD_ID) {
127486857b36SDavid Xu 		it->it_ksi.ksi_signo = it->it_sigev.sigev_signo;
127586857b36SDavid Xu 		it->it_ksi.ksi_code = SI_TIMER;
127686857b36SDavid Xu 		it->it_ksi.ksi_value = it->it_sigev.sigev_value;
127786857b36SDavid Xu 		it->it_ksi.ksi_timerid = id;
127886857b36SDavid Xu 	}
127986857b36SDavid Xu 	PROC_UNLOCK(p);
128086857b36SDavid Xu 	*timerid = id;
128186857b36SDavid Xu 	return (0);
128286857b36SDavid Xu 
128386857b36SDavid Xu out:
128486857b36SDavid Xu 	ITIMER_LOCK(it);
128586857b36SDavid Xu 	CLOCK_CALL(it->it_clockid, timer_delete, (it));
128686857b36SDavid Xu 	ITIMER_UNLOCK(it);
128786857b36SDavid Xu 	uma_zfree(itimer_zone, it);
128886857b36SDavid Xu 	return (error);
128986857b36SDavid Xu }
129086857b36SDavid Xu 
129186857b36SDavid Xu #ifndef _SYS_SYSPROTO_H_
129261d3a4efSDavid Xu struct ktimer_delete_args {
129361d3a4efSDavid Xu 	int timerid;
129486857b36SDavid Xu };
129586857b36SDavid Xu #endif
129686857b36SDavid Xu int
12978451d0ddSKip Macy sys_ktimer_delete(struct thread *td, struct ktimer_delete_args *uap)
129886857b36SDavid Xu {
1299643ee871SKonstantin Belousov 
1300643ee871SKonstantin Belousov 	return (kern_ktimer_delete(td, uap->timerid));
130186857b36SDavid Xu }
130286857b36SDavid Xu 
130386857b36SDavid Xu static struct itimer *
1304843b99c6SDavid Xu itimer_find(struct proc *p, int timerid)
130586857b36SDavid Xu {
130686857b36SDavid Xu 	struct itimer *it;
130786857b36SDavid Xu 
130886857b36SDavid Xu 	PROC_LOCK_ASSERT(p, MA_OWNED);
13093f935cf3SColin Percival 	if ((p->p_itimers == NULL) ||
13103f935cf3SColin Percival 	    (timerid < 0) || (timerid >= TIMER_MAX) ||
131160354683SDavid Xu 	    (it = p->p_itimers->its_timers[timerid]) == NULL) {
131286857b36SDavid Xu 		return (NULL);
131386857b36SDavid Xu 	}
131486857b36SDavid Xu 	ITIMER_LOCK(it);
1315843b99c6SDavid Xu 	if ((it->it_flags & ITF_DELETING) != 0) {
131686857b36SDavid Xu 		ITIMER_UNLOCK(it);
131786857b36SDavid Xu 		it = NULL;
131886857b36SDavid Xu 	}
131986857b36SDavid Xu 	return (it);
132086857b36SDavid Xu }
132186857b36SDavid Xu 
1322643ee871SKonstantin Belousov int
1323643ee871SKonstantin Belousov kern_ktimer_delete(struct thread *td, int timerid)
132486857b36SDavid Xu {
132586857b36SDavid Xu 	struct proc *p = td->td_proc;
132686857b36SDavid Xu 	struct itimer *it;
132786857b36SDavid Xu 
132886857b36SDavid Xu 	PROC_LOCK(p);
1329843b99c6SDavid Xu 	it = itimer_find(p, timerid);
133086857b36SDavid Xu 	if (it == NULL) {
133186857b36SDavid Xu 		PROC_UNLOCK(p);
133286857b36SDavid Xu 		return (EINVAL);
133386857b36SDavid Xu 	}
133486857b36SDavid Xu 	PROC_UNLOCK(p);
133586857b36SDavid Xu 
133686857b36SDavid Xu 	it->it_flags |= ITF_DELETING;
133786857b36SDavid Xu 	while (it->it_usecount > 0) {
133886857b36SDavid Xu 		it->it_flags |= ITF_WANTED;
133986857b36SDavid Xu 		msleep(it, &it->it_mtx, PPAUSE, "itimer", 0);
134086857b36SDavid Xu 	}
134186857b36SDavid Xu 	it->it_flags &= ~ITF_WANTED;
134286857b36SDavid Xu 	CLOCK_CALL(it->it_clockid, timer_delete, (it));
134386857b36SDavid Xu 	ITIMER_UNLOCK(it);
134486857b36SDavid Xu 
134586857b36SDavid Xu 	PROC_LOCK(p);
134686857b36SDavid Xu 	if (KSI_ONQ(&it->it_ksi))
134786857b36SDavid Xu 		sigqueue_take(&it->it_ksi);
134860354683SDavid Xu 	p->p_itimers->its_timers[timerid] = NULL;
134986857b36SDavid Xu 	PROC_UNLOCK(p);
135086857b36SDavid Xu 	uma_zfree(itimer_zone, it);
135186857b36SDavid Xu 	return (0);
135286857b36SDavid Xu }
135386857b36SDavid Xu 
135486857b36SDavid Xu #ifndef _SYS_SYSPROTO_H_
135561d3a4efSDavid Xu struct ktimer_settime_args {
135661d3a4efSDavid Xu 	int timerid;
135786857b36SDavid Xu 	int flags;
135886857b36SDavid Xu 	const struct itimerspec * value;
135986857b36SDavid Xu 	struct itimerspec * ovalue;
136086857b36SDavid Xu };
136186857b36SDavid Xu #endif
136286857b36SDavid Xu int
13638451d0ddSKip Macy sys_ktimer_settime(struct thread *td, struct ktimer_settime_args *uap)
136486857b36SDavid Xu {
136586857b36SDavid Xu 	struct itimerspec val, oval, *ovalp;
136686857b36SDavid Xu 	int error;
136786857b36SDavid Xu 
136886857b36SDavid Xu 	error = copyin(uap->value, &val, sizeof(val));
136986857b36SDavid Xu 	if (error != 0)
137086857b36SDavid Xu 		return (error);
1371643ee871SKonstantin Belousov 	ovalp = uap->ovalue != NULL ? &oval : NULL;
1372643ee871SKonstantin Belousov 	error = kern_ktimer_settime(td, uap->timerid, uap->flags, &val, ovalp);
1373643ee871SKonstantin Belousov 	if (error == 0 && uap->ovalue != NULL)
1374643ee871SKonstantin Belousov 		error = copyout(ovalp, uap->ovalue, sizeof(*ovalp));
1375643ee871SKonstantin Belousov 	return (error);
1376643ee871SKonstantin Belousov }
137786857b36SDavid Xu 
1378643ee871SKonstantin Belousov int
1379643ee871SKonstantin Belousov kern_ktimer_settime(struct thread *td, int timer_id, int flags,
1380643ee871SKonstantin Belousov     struct itimerspec *val, struct itimerspec *oval)
1381643ee871SKonstantin Belousov {
1382643ee871SKonstantin Belousov 	struct proc *p;
1383643ee871SKonstantin Belousov 	struct itimer *it;
1384643ee871SKonstantin Belousov 	int error;
138586857b36SDavid Xu 
1386643ee871SKonstantin Belousov 	p = td->td_proc;
138786857b36SDavid Xu 	PROC_LOCK(p);
1388643ee871SKonstantin Belousov 	if (timer_id < 3 || (it = itimer_find(p, timer_id)) == NULL) {
138986857b36SDavid Xu 		PROC_UNLOCK(p);
139086857b36SDavid Xu 		error = EINVAL;
139186857b36SDavid Xu 	} else {
139286857b36SDavid Xu 		PROC_UNLOCK(p);
139386857b36SDavid Xu 		itimer_enter(it);
1394643ee871SKonstantin Belousov 		error = CLOCK_CALL(it->it_clockid, timer_settime, (it,
1395643ee871SKonstantin Belousov 		    flags, val, oval));
139686857b36SDavid Xu 		itimer_leave(it);
139786857b36SDavid Xu 		ITIMER_UNLOCK(it);
139886857b36SDavid Xu 	}
139986857b36SDavid Xu 	return (error);
140086857b36SDavid Xu }
140186857b36SDavid Xu 
140286857b36SDavid Xu #ifndef _SYS_SYSPROTO_H_
140361d3a4efSDavid Xu struct ktimer_gettime_args {
140461d3a4efSDavid Xu 	int timerid;
140586857b36SDavid Xu 	struct itimerspec * value;
140686857b36SDavid Xu };
140786857b36SDavid Xu #endif
140886857b36SDavid Xu int
14098451d0ddSKip Macy sys_ktimer_gettime(struct thread *td, struct ktimer_gettime_args *uap)
141086857b36SDavid Xu {
141186857b36SDavid Xu 	struct itimerspec val;
141286857b36SDavid Xu 	int error;
141386857b36SDavid Xu 
1414643ee871SKonstantin Belousov 	error = kern_ktimer_gettime(td, uap->timerid, &val);
1415643ee871SKonstantin Belousov 	if (error == 0)
1416643ee871SKonstantin Belousov 		error = copyout(&val, uap->value, sizeof(val));
1417643ee871SKonstantin Belousov 	return (error);
1418643ee871SKonstantin Belousov }
1419643ee871SKonstantin Belousov 
1420643ee871SKonstantin Belousov int
1421643ee871SKonstantin Belousov kern_ktimer_gettime(struct thread *td, int timer_id, struct itimerspec *val)
1422643ee871SKonstantin Belousov {
1423643ee871SKonstantin Belousov 	struct proc *p;
1424643ee871SKonstantin Belousov 	struct itimer *it;
1425643ee871SKonstantin Belousov 	int error;
1426643ee871SKonstantin Belousov 
1427643ee871SKonstantin Belousov 	p = td->td_proc;
142886857b36SDavid Xu 	PROC_LOCK(p);
1429643ee871SKonstantin Belousov 	if (timer_id < 3 || (it = itimer_find(p, timer_id)) == NULL) {
143086857b36SDavid Xu 		PROC_UNLOCK(p);
143186857b36SDavid Xu 		error = EINVAL;
143286857b36SDavid Xu 	} else {
143386857b36SDavid Xu 		PROC_UNLOCK(p);
143486857b36SDavid Xu 		itimer_enter(it);
1435643ee871SKonstantin Belousov 		error = CLOCK_CALL(it->it_clockid, timer_gettime, (it, val));
143686857b36SDavid Xu 		itimer_leave(it);
143786857b36SDavid Xu 		ITIMER_UNLOCK(it);
143886857b36SDavid Xu 	}
143986857b36SDavid Xu 	return (error);
144086857b36SDavid Xu }
144186857b36SDavid Xu 
144286857b36SDavid Xu #ifndef _SYS_SYSPROTO_H_
144386857b36SDavid Xu struct timer_getoverrun_args {
144461d3a4efSDavid Xu 	int timerid;
144586857b36SDavid Xu };
144686857b36SDavid Xu #endif
144786857b36SDavid Xu int
14488451d0ddSKip Macy sys_ktimer_getoverrun(struct thread *td, struct ktimer_getoverrun_args *uap)
144986857b36SDavid Xu {
1450e346f8c4SBjoern A. Zeeb 
1451e346f8c4SBjoern A. Zeeb 	return (kern_ktimer_getoverrun(td, uap->timerid));
1452e346f8c4SBjoern A. Zeeb }
1453e346f8c4SBjoern A. Zeeb 
1454e346f8c4SBjoern A. Zeeb int
1455e346f8c4SBjoern A. Zeeb kern_ktimer_getoverrun(struct thread *td, int timer_id)
1456e346f8c4SBjoern A. Zeeb {
145786857b36SDavid Xu 	struct proc *p = td->td_proc;
145886857b36SDavid Xu 	struct itimer *it;
145986857b36SDavid Xu 	int error ;
146086857b36SDavid Xu 
146186857b36SDavid Xu 	PROC_LOCK(p);
1462e346f8c4SBjoern A. Zeeb 	if (timer_id < 3 ||
1463e346f8c4SBjoern A. Zeeb 	    (it = itimer_find(p, timer_id)) == NULL) {
146486857b36SDavid Xu 		PROC_UNLOCK(p);
146586857b36SDavid Xu 		error = EINVAL;
146686857b36SDavid Xu 	} else {
146786857b36SDavid Xu 		td->td_retval[0] = it->it_overrun_last;
146886857b36SDavid Xu 		ITIMER_UNLOCK(it);
146956c06c4bSDavid Xu 		PROC_UNLOCK(p);
147086857b36SDavid Xu 		error = 0;
147186857b36SDavid Xu 	}
147286857b36SDavid Xu 	return (error);
147386857b36SDavid Xu }
147486857b36SDavid Xu 
147586857b36SDavid Xu static int
147686857b36SDavid Xu realtimer_create(struct itimer *it)
147786857b36SDavid Xu {
147886857b36SDavid Xu 	callout_init_mtx(&it->it_callout, &it->it_mtx, 0);
147986857b36SDavid Xu 	return (0);
148086857b36SDavid Xu }
148186857b36SDavid Xu 
148286857b36SDavid Xu static int
148386857b36SDavid Xu realtimer_delete(struct itimer *it)
148486857b36SDavid Xu {
148586857b36SDavid Xu 	mtx_assert(&it->it_mtx, MA_OWNED);
1486843b99c6SDavid Xu 
1487d6b6592eSDavid Xu 	/*
1488d6b6592eSDavid Xu 	 * clear timer's value and interval to tell realtimer_expire
1489d6b6592eSDavid Xu 	 * to not rearm the timer.
1490d6b6592eSDavid Xu 	 */
1491d6b6592eSDavid Xu 	timespecclear(&it->it_time.it_value);
1492d6b6592eSDavid Xu 	timespecclear(&it->it_time.it_interval);
1493843b99c6SDavid Xu 	ITIMER_UNLOCK(it);
1494843b99c6SDavid Xu 	callout_drain(&it->it_callout);
1495843b99c6SDavid Xu 	ITIMER_LOCK(it);
149686857b36SDavid Xu 	return (0);
149786857b36SDavid Xu }
149886857b36SDavid Xu 
149986857b36SDavid Xu static int
150086857b36SDavid Xu realtimer_gettime(struct itimer *it, struct itimerspec *ovalue)
150186857b36SDavid Xu {
150256c06c4bSDavid Xu 	struct timespec cts;
150386857b36SDavid Xu 
150486857b36SDavid Xu 	mtx_assert(&it->it_mtx, MA_OWNED);
150586857b36SDavid Xu 
150656c06c4bSDavid Xu 	realtimer_clocktime(it->it_clockid, &cts);
150756c06c4bSDavid Xu 	*ovalue = it->it_time;
150886857b36SDavid Xu 	if (ovalue->it_value.tv_sec != 0 || ovalue->it_value.tv_nsec != 0) {
15096040822cSAlan Somers 		timespecsub(&ovalue->it_value, &cts, &ovalue->it_value);
151086857b36SDavid Xu 		if (ovalue->it_value.tv_sec < 0 ||
151186857b36SDavid Xu 		    (ovalue->it_value.tv_sec == 0 &&
151286857b36SDavid Xu 		     ovalue->it_value.tv_nsec == 0)) {
151386857b36SDavid Xu 			ovalue->it_value.tv_sec  = 0;
151486857b36SDavid Xu 			ovalue->it_value.tv_nsec = 1;
151586857b36SDavid Xu 		}
151686857b36SDavid Xu 	}
151786857b36SDavid Xu 	return (0);
151886857b36SDavid Xu }
151986857b36SDavid Xu 
152086857b36SDavid Xu static int
152160d12ef9SMark Johnston realtimer_settime(struct itimer *it, int flags, struct itimerspec *value,
152260d12ef9SMark Johnston     struct itimerspec *ovalue)
152386857b36SDavid Xu {
152456c06c4bSDavid Xu 	struct timespec cts, ts;
152556c06c4bSDavid Xu 	struct timeval tv;
152656c06c4bSDavid Xu 	struct itimerspec val;
152786857b36SDavid Xu 
152886857b36SDavid Xu 	mtx_assert(&it->it_mtx, MA_OWNED);
152986857b36SDavid Xu 
153056c06c4bSDavid Xu 	val = *value;
153156c06c4bSDavid Xu 	if (itimespecfix(&val.it_value))
153286857b36SDavid Xu 		return (EINVAL);
153386857b36SDavid Xu 
153456c06c4bSDavid Xu 	if (timespecisset(&val.it_value)) {
153556c06c4bSDavid Xu 		if (itimespecfix(&val.it_interval))
153686857b36SDavid Xu 			return (EINVAL);
153786857b36SDavid Xu 	} else {
153856c06c4bSDavid Xu 		timespecclear(&val.it_interval);
153986857b36SDavid Xu 	}
154086857b36SDavid Xu 
154186857b36SDavid Xu 	if (ovalue != NULL)
154286857b36SDavid Xu 		realtimer_gettime(it, ovalue);
154386857b36SDavid Xu 
154486857b36SDavid Xu 	it->it_time = val;
154556c06c4bSDavid Xu 	if (timespecisset(&val.it_value)) {
154656c06c4bSDavid Xu 		realtimer_clocktime(it->it_clockid, &cts);
154756c06c4bSDavid Xu 		ts = val.it_value;
154886857b36SDavid Xu 		if ((flags & TIMER_ABSTIME) == 0) {
154986857b36SDavid Xu 			/* Convert to absolute time. */
15506040822cSAlan Somers 			timespecadd(&it->it_time.it_value, &cts,
15516040822cSAlan Somers 			    &it->it_time.it_value);
155286857b36SDavid Xu 		} else {
15536040822cSAlan Somers 			timespecsub(&ts, &cts, &ts);
155486857b36SDavid Xu 			/*
155556c06c4bSDavid Xu 			 * We don't care if ts is negative, tztohz will
155686857b36SDavid Xu 			 * fix it.
155786857b36SDavid Xu 			 */
155886857b36SDavid Xu 		}
155956c06c4bSDavid Xu 		TIMESPEC_TO_TIMEVAL(&tv, &ts);
156060d12ef9SMark Johnston 		callout_reset(&it->it_callout, tvtohz(&tv), realtimer_expire,
156160d12ef9SMark Johnston 		    it);
156286857b36SDavid Xu 	} else {
156386857b36SDavid Xu 		callout_stop(&it->it_callout);
156486857b36SDavid Xu 	}
156586857b36SDavid Xu 
156686857b36SDavid Xu 	return (0);
156786857b36SDavid Xu }
156886857b36SDavid Xu 
156986857b36SDavid Xu static void
157056c06c4bSDavid Xu realtimer_clocktime(clockid_t id, struct timespec *ts)
157186857b36SDavid Xu {
157286857b36SDavid Xu 	if (id == CLOCK_REALTIME)
157356c06c4bSDavid Xu 		getnanotime(ts);
157486857b36SDavid Xu 	else	/* CLOCK_MONOTONIC */
157556c06c4bSDavid Xu 		getnanouptime(ts);
157656c06c4bSDavid Xu }
157756c06c4bSDavid Xu 
157856c06c4bSDavid Xu int
157961d3a4efSDavid Xu itimer_accept(struct proc *p, int timerid, ksiginfo_t *ksi)
158056c06c4bSDavid Xu {
158156c06c4bSDavid Xu 	struct itimer *it;
158256c06c4bSDavid Xu 
158356c06c4bSDavid Xu 	PROC_LOCK_ASSERT(p, MA_OWNED);
1584843b99c6SDavid Xu 	it = itimer_find(p, timerid);
158556c06c4bSDavid Xu 	if (it != NULL) {
158656c06c4bSDavid Xu 		ksi->ksi_overrun = it->it_overrun;
158756c06c4bSDavid Xu 		it->it_overrun_last = it->it_overrun;
158856c06c4bSDavid Xu 		it->it_overrun = 0;
158956c06c4bSDavid Xu 		ITIMER_UNLOCK(it);
159056c06c4bSDavid Xu 		return (0);
159156c06c4bSDavid Xu 	}
159256c06c4bSDavid Xu 	return (EINVAL);
159356c06c4bSDavid Xu }
159456c06c4bSDavid Xu 
15958ff2b41cSMark Johnston static int
159656c06c4bSDavid Xu itimespecfix(struct timespec *ts)
159756c06c4bSDavid Xu {
159856c06c4bSDavid Xu 
159956c06c4bSDavid Xu 	if (ts->tv_sec < 0 || ts->tv_nsec < 0 || ts->tv_nsec >= 1000000000)
160056c06c4bSDavid Xu 		return (EINVAL);
160156c06c4bSDavid Xu 	if (ts->tv_sec == 0 && ts->tv_nsec != 0 && ts->tv_nsec < tick * 1000)
160256c06c4bSDavid Xu 		ts->tv_nsec = tick * 1000;
160356c06c4bSDavid Xu 	return (0);
160486857b36SDavid Xu }
160586857b36SDavid Xu 
1606*7995dae9SMark Johnston #define	timespectons(tsp)			\
1607*7995dae9SMark Johnston 	((uint64_t)(tsp)->tv_sec * 1000000000 + (tsp)->tv_nsec)
1608*7995dae9SMark Johnston #define	timespecfromns(ns) (struct timespec){	\
1609*7995dae9SMark Johnston 	.tv_sec = (ns) / 1000000000,		\
1610*7995dae9SMark Johnston 	.tv_nsec = (ns) % 1000000000		\
1611*7995dae9SMark Johnston }
1612*7995dae9SMark Johnston 
161386857b36SDavid Xu /* Timeout callback for realtime timer */
161486857b36SDavid Xu static void
161586857b36SDavid Xu realtimer_expire(void *arg)
161686857b36SDavid Xu {
161756c06c4bSDavid Xu 	struct timespec cts, ts;
161856c06c4bSDavid Xu 	struct timeval tv;
161986857b36SDavid Xu 	struct itimer *it;
1620*7995dae9SMark Johnston 	uint64_t interval, now, overruns, value;
162186857b36SDavid Xu 
162286857b36SDavid Xu 	it = (struct itimer *)arg;
162386857b36SDavid Xu 
162456c06c4bSDavid Xu 	realtimer_clocktime(it->it_clockid, &cts);
162586857b36SDavid Xu 	/* Only fire if time is reached. */
162656c06c4bSDavid Xu 	if (timespeccmp(&cts, &it->it_time.it_value, >=)) {
162756c06c4bSDavid Xu 		if (timespecisset(&it->it_time.it_interval)) {
162856c06c4bSDavid Xu 			timespecadd(&it->it_time.it_value,
16296040822cSAlan Somers 			    &it->it_time.it_interval,
16306040822cSAlan Somers 			    &it->it_time.it_value);
1631*7995dae9SMark Johnston 
1632*7995dae9SMark Johnston 			interval = timespectons(&it->it_time.it_interval);
1633*7995dae9SMark Johnston 			value = timespectons(&it->it_time.it_value);
1634*7995dae9SMark Johnston 			now = timespectons(&cts);
1635*7995dae9SMark Johnston 
1636*7995dae9SMark Johnston 			if (now >= value) {
1637*7995dae9SMark Johnston 				/*
1638*7995dae9SMark Johnston 				 * We missed at least one period.
1639*7995dae9SMark Johnston 				 */
1640*7995dae9SMark Johnston 				overruns = howmany(now - value + 1, interval);
1641*7995dae9SMark Johnston 				if (it->it_overrun + overruns >=
1642*7995dae9SMark Johnston 				    it->it_overrun &&
1643*7995dae9SMark Johnston 				    it->it_overrun + overruns <= INT_MAX) {
1644*7995dae9SMark Johnston 					it->it_overrun += (int)overruns;
1645*7995dae9SMark Johnston 				} else {
1646*7995dae9SMark Johnston 					it->it_overrun = INT_MAX;
164777e718f7SDavid Xu 					it->it_ksi.ksi_errno = ERANGE;
1648*7995dae9SMark Johnston 				}
1649*7995dae9SMark Johnston 				value =
1650*7995dae9SMark Johnston 				    now + interval - (now - value) % interval;
1651*7995dae9SMark Johnston 				it->it_time.it_value = timespecfromns(value);
165286857b36SDavid Xu 			}
165386857b36SDavid Xu 		} else {
165486857b36SDavid Xu 			/* single shot timer ? */
165556c06c4bSDavid Xu 			timespecclear(&it->it_time.it_value);
165686857b36SDavid Xu 		}
165756c06c4bSDavid Xu 		if (timespecisset(&it->it_time.it_value)) {
16586040822cSAlan Somers 			timespecsub(&it->it_time.it_value, &cts, &ts);
165956c06c4bSDavid Xu 			TIMESPEC_TO_TIMEVAL(&tv, &ts);
166056c06c4bSDavid Xu 			callout_reset(&it->it_callout, tvtohz(&tv),
166186857b36SDavid Xu 			    realtimer_expire, it);
166286857b36SDavid Xu 		}
1663d6b6592eSDavid Xu 		itimer_enter(it);
166486857b36SDavid Xu 		ITIMER_UNLOCK(it);
166586857b36SDavid Xu 		itimer_fire(it);
166686857b36SDavid Xu 		ITIMER_LOCK(it);
1667d6b6592eSDavid Xu 		itimer_leave(it);
166856c06c4bSDavid Xu 	} else if (timespecisset(&it->it_time.it_value)) {
166956c06c4bSDavid Xu 		ts = it->it_time.it_value;
16706040822cSAlan Somers 		timespecsub(&ts, &cts, &ts);
167156c06c4bSDavid Xu 		TIMESPEC_TO_TIMEVAL(&tv, &ts);
167256c06c4bSDavid Xu 		callout_reset(&it->it_callout, tvtohz(&tv), realtimer_expire,
167386857b36SDavid Xu 		    it);
167486857b36SDavid Xu 	}
167586857b36SDavid Xu }
167686857b36SDavid Xu 
16778ff2b41cSMark Johnston static void
167886857b36SDavid Xu itimer_fire(struct itimer *it)
167986857b36SDavid Xu {
168086857b36SDavid Xu 	struct proc *p = it->it_proc;
1681cf7d9a8cSDavid Xu 	struct thread *td;
168286857b36SDavid Xu 
168356c06c4bSDavid Xu 	if (it->it_sigev.sigev_notify == SIGEV_SIGNAL ||
168456c06c4bSDavid Xu 	    it->it_sigev.sigev_notify == SIGEV_THREAD_ID) {
1685cf7d9a8cSDavid Xu 		if (sigev_findtd(p, &it->it_sigev, &td) != 0) {
168656c06c4bSDavid Xu 			ITIMER_LOCK(it);
168756c06c4bSDavid Xu 			timespecclear(&it->it_time.it_value);
168856c06c4bSDavid Xu 			timespecclear(&it->it_time.it_interval);
168956c06c4bSDavid Xu 			callout_stop(&it->it_callout);
169056c06c4bSDavid Xu 			ITIMER_UNLOCK(it);
1691cf7d9a8cSDavid Xu 			return;
16926d7b314bSDavid Xu 		}
1693cf7d9a8cSDavid Xu 		if (!KSI_ONQ(&it->it_ksi)) {
1694cf7d9a8cSDavid Xu 			it->it_ksi.ksi_errno = 0;
1695cf7d9a8cSDavid Xu 			ksiginfo_set_sigev(&it->it_ksi, &it->it_sigev);
1696cf7d9a8cSDavid Xu 			tdsendsignal(p, td, it->it_ksi.ksi_signo, &it->it_ksi);
169756c06c4bSDavid Xu 		} else {
169877e718f7SDavid Xu 			if (it->it_overrun < INT_MAX)
16996d7b314bSDavid Xu 				it->it_overrun++;
170077e718f7SDavid Xu 			else
170177e718f7SDavid Xu 				it->it_ksi.ksi_errno = ERANGE;
170256c06c4bSDavid Xu 		}
170386857b36SDavid Xu 		PROC_UNLOCK(p);
170486857b36SDavid Xu 	}
170586857b36SDavid Xu }
170686857b36SDavid Xu 
170786857b36SDavid Xu static void
170886857b36SDavid Xu itimers_alloc(struct proc *p)
170986857b36SDavid Xu {
171060354683SDavid Xu 	struct itimers *its;
171160354683SDavid Xu 	int i;
171286857b36SDavid Xu 
171360354683SDavid Xu 	its = malloc(sizeof (struct itimers), M_SUBPROC, M_WAITOK | M_ZERO);
171486857b36SDavid Xu 	LIST_INIT(&its->its_virtual);
171586857b36SDavid Xu 	LIST_INIT(&its->its_prof);
171686857b36SDavid Xu 	TAILQ_INIT(&its->its_worklist);
171760354683SDavid Xu 	for (i = 0; i < TIMER_MAX; i++)
171860354683SDavid Xu 		its->its_timers[i] = NULL;
171960354683SDavid Xu 	PROC_LOCK(p);
172060354683SDavid Xu 	if (p->p_itimers == NULL) {
172160354683SDavid Xu 		p->p_itimers = its;
172260354683SDavid Xu 		PROC_UNLOCK(p);
172360354683SDavid Xu 	}
172460354683SDavid Xu 	else {
172560354683SDavid Xu 		PROC_UNLOCK(p);
172660354683SDavid Xu 		free(its, M_SUBPROC);
172760354683SDavid Xu 	}
172886857b36SDavid Xu }
172986857b36SDavid Xu 
173086857b36SDavid Xu /* Clean up timers when some process events are being triggered. */
1731d26b1a1fSDavid Xu static void
1732e68c6191SKonstantin Belousov itimers_event_exit_exec(int start_idx, struct proc *p)
173386857b36SDavid Xu {
173486857b36SDavid Xu 	struct itimers *its;
173586857b36SDavid Xu 	struct itimer *it;
173686857b36SDavid Xu 	int i;
173786857b36SDavid Xu 
173860354683SDavid Xu 	its = p->p_itimers;
1739e68c6191SKonstantin Belousov 	if (its == NULL)
1740e68c6191SKonstantin Belousov 		return;
1741e68c6191SKonstantin Belousov 
1742e68c6191SKonstantin Belousov 	for (i = start_idx; i < TIMER_MAX; ++i) {
1743843b99c6SDavid Xu 		if ((it = its->its_timers[i]) != NULL)
1744643ee871SKonstantin Belousov 			kern_ktimer_delete(curthread, i);
174586857b36SDavid Xu 	}
1746e68c6191SKonstantin Belousov 	if (its->its_timers[0] == NULL && its->its_timers[1] == NULL &&
174786857b36SDavid Xu 	    its->its_timers[2] == NULL) {
174860354683SDavid Xu 		free(its, M_SUBPROC);
174960354683SDavid Xu 		p->p_itimers = NULL;
175086857b36SDavid Xu 	}
175186857b36SDavid Xu }
1752e68c6191SKonstantin Belousov 
1753e68c6191SKonstantin Belousov void
1754e68c6191SKonstantin Belousov itimers_exec(struct proc *p)
1755e68c6191SKonstantin Belousov {
1756e68c6191SKonstantin Belousov 	/*
1757e68c6191SKonstantin Belousov 	 * According to susv3, XSI interval timers should be inherited
1758e68c6191SKonstantin Belousov 	 * by new image.
1759e68c6191SKonstantin Belousov 	 */
1760e68c6191SKonstantin Belousov 	itimers_event_exit_exec(3, p);
1761e68c6191SKonstantin Belousov }
1762e68c6191SKonstantin Belousov 
1763e68c6191SKonstantin Belousov void
1764e68c6191SKonstantin Belousov itimers_exit(struct proc *p)
1765e68c6191SKonstantin Belousov {
1766e68c6191SKonstantin Belousov 	itimers_event_exit_exec(0, p);
176786857b36SDavid Xu }
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