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kern_clock.c revision 1.134.4.1
      1  1.134.4.1    bouyer /*	$NetBSD: kern_clock.c,v 1.134.4.1 2017/04/21 16:54:02 bouyer Exp $	*/
      2       1.52   thorpej 
      3       1.52   thorpej /*-
      4      1.118        ad  * Copyright (c) 2000, 2004, 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.52   thorpej  * All rights reserved.
      6       1.52   thorpej  *
      7       1.52   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8       1.52   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9       1.52   thorpej  * NASA Ames Research Center.
     10       1.94   mycroft  * This code is derived from software contributed to The NetBSD Foundation
     11       1.94   mycroft  * by Charles M. Hannum.
     12       1.52   thorpej  *
     13       1.52   thorpej  * Redistribution and use in source and binary forms, with or without
     14       1.52   thorpej  * modification, are permitted provided that the following conditions
     15       1.52   thorpej  * are met:
     16       1.52   thorpej  * 1. Redistributions of source code must retain the above copyright
     17       1.52   thorpej  *    notice, this list of conditions and the following disclaimer.
     18       1.52   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     19       1.52   thorpej  *    notice, this list of conditions and the following disclaimer in the
     20       1.52   thorpej  *    documentation and/or other materials provided with the distribution.
     21       1.52   thorpej  *
     22       1.52   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     23       1.52   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     24       1.52   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     25       1.52   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     26       1.52   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     27       1.52   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     28       1.52   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     29       1.52   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     30       1.52   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     31       1.52   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     32       1.52   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     33       1.52   thorpej  */
     34       1.19       cgd 
     35       1.19       cgd /*-
     36       1.19       cgd  * Copyright (c) 1982, 1986, 1991, 1993
     37       1.19       cgd  *	The Regents of the University of California.  All rights reserved.
     38       1.19       cgd  * (c) UNIX System Laboratories, Inc.
     39       1.19       cgd  * All or some portions of this file are derived from material licensed
     40       1.19       cgd  * to the University of California by American Telephone and Telegraph
     41       1.19       cgd  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     42       1.19       cgd  * the permission of UNIX System Laboratories, Inc.
     43       1.19       cgd  *
     44       1.19       cgd  * Redistribution and use in source and binary forms, with or without
     45       1.19       cgd  * modification, are permitted provided that the following conditions
     46       1.19       cgd  * are met:
     47       1.19       cgd  * 1. Redistributions of source code must retain the above copyright
     48       1.19       cgd  *    notice, this list of conditions and the following disclaimer.
     49       1.19       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     50       1.19       cgd  *    notice, this list of conditions and the following disclaimer in the
     51       1.19       cgd  *    documentation and/or other materials provided with the distribution.
     52       1.87       agc  * 3. Neither the name of the University nor the names of its contributors
     53       1.19       cgd  *    may be used to endorse or promote products derived from this software
     54       1.19       cgd  *    without specific prior written permission.
     55       1.19       cgd  *
     56       1.19       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     57       1.19       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     58       1.19       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     59       1.19       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     60       1.19       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     61       1.19       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     62       1.19       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     63       1.19       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     64       1.19       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     65       1.19       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     66       1.19       cgd  * SUCH DAMAGE.
     67       1.19       cgd  *
     68       1.19       cgd  *	@(#)kern_clock.c	8.5 (Berkeley) 1/21/94
     69       1.19       cgd  */
     70       1.78     lukem 
     71       1.78     lukem #include <sys/cdefs.h>
     72  1.134.4.1    bouyer __KERNEL_RCSID(0, "$NetBSD: kern_clock.c,v 1.134.4.1 2017/04/21 16:54:02 bouyer Exp $");
     73       1.44  jonathan 
     74      1.133     pooka #ifdef _KERNEL_OPT
     75      1.131       chs #include "opt_dtrace.h"
     76       1.80    briggs #include "opt_perfctrs.h"
     77      1.133     pooka #endif
     78       1.19       cgd 
     79       1.19       cgd #include <sys/param.h>
     80       1.19       cgd #include <sys/systm.h>
     81       1.19       cgd #include <sys/callout.h>
     82       1.19       cgd #include <sys/kernel.h>
     83       1.19       cgd #include <sys/proc.h>
     84       1.19       cgd #include <sys/resourcevar.h>
     85       1.25  christos #include <sys/signalvar.h>
     86       1.26  christos #include <sys/sysctl.h>
     87       1.27  jonathan #include <sys/timex.h>
     88       1.45      ross #include <sys/sched.h>
     89       1.82   thorpej #include <sys/time.h>
     90       1.99    kardel #include <sys/timetc.h>
     91      1.109        ad #include <sys/cpu.h>
     92      1.118        ad #include <sys/atomic.h>
     93      1.118        ad 
     94       1.19       cgd #ifdef GPROF
     95       1.19       cgd #include <sys/gmon.h>
     96       1.19       cgd #endif
     97       1.19       cgd 
     98      1.131       chs #ifdef KDTRACE_HOOKS
     99      1.131       chs #include <sys/dtrace_bsd.h>
    100      1.131       chs #include <sys/cpu.h>
    101      1.131       chs 
    102      1.131       chs cyclic_clock_func_t	cyclic_clock_func[MAXCPUS];
    103      1.131       chs #endif
    104      1.131       chs 
    105      1.132     pooka static int sysctl_kern_clockrate(SYSCTLFN_PROTO);
    106      1.132     pooka 
    107       1.19       cgd /*
    108       1.19       cgd  * Clock handling routines.
    109       1.19       cgd  *
    110       1.19       cgd  * This code is written to operate with two timers that run independently of
    111       1.19       cgd  * each other.  The main clock, running hz times per second, is used to keep
    112       1.19       cgd  * track of real time.  The second timer handles kernel and user profiling,
    113       1.19       cgd  * and does resource use estimation.  If the second timer is programmable,
    114       1.19       cgd  * it is randomized to avoid aliasing between the two clocks.  For example,
    115       1.90       wiz  * the randomization prevents an adversary from always giving up the CPU
    116       1.19       cgd  * just before its quantum expires.  Otherwise, it would never accumulate
    117       1.90       wiz  * CPU ticks.  The mean frequency of the second timer is stathz.
    118       1.19       cgd  *
    119       1.19       cgd  * If no second timer exists, stathz will be zero; in this case we drive
    120       1.19       cgd  * profiling and statistics off the main clock.  This WILL NOT be accurate;
    121       1.19       cgd  * do not do it unless absolutely necessary.
    122       1.19       cgd  *
    123       1.19       cgd  * The statistics clock may (or may not) be run at a higher rate while
    124       1.19       cgd  * profiling.  This profile clock runs at profhz.  We require that profhz
    125       1.19       cgd  * be an integral multiple of stathz.
    126       1.19       cgd  *
    127       1.19       cgd  * If the statistics clock is running fast, it must be divided by the ratio
    128       1.19       cgd  * profhz/stathz for statistics.  (For profiling, every tick counts.)
    129       1.19       cgd  */
    130       1.19       cgd 
    131       1.19       cgd int	stathz;
    132       1.19       cgd int	profhz;
    133       1.80    briggs int	profsrc;
    134       1.75    simonb int	schedhz;
    135       1.19       cgd int	profprocs;
    136      1.100  drochner int	hardclock_ticks;
    137      1.114        ad static int hardscheddiv; /* hard => sched divider (used if schedhz == 0) */
    138       1.70  sommerfe static int psdiv;			/* prof => stat divider */
    139       1.22       cgd int	psratio;			/* ratio: prof / stat */
    140       1.19       cgd 
    141       1.99    kardel static u_int get_intr_timecount(struct timecounter *);
    142       1.99    kardel 
    143       1.99    kardel static struct timecounter intr_timecounter = {
    144       1.99    kardel 	get_intr_timecount,	/* get_timecount */
    145       1.99    kardel 	0,			/* no poll_pps */
    146       1.99    kardel 	~0u,			/* counter_mask */
    147       1.99    kardel 	0,		        /* frequency */
    148       1.99    kardel 	"clockinterrupt",	/* name */
    149      1.102  christos 	0,			/* quality - minimum implementation level for a clock */
    150      1.102  christos 	NULL,			/* prev */
    151      1.102  christos 	NULL,			/* next */
    152       1.99    kardel };
    153       1.99    kardel 
    154       1.99    kardel static u_int
    155      1.104      yamt get_intr_timecount(struct timecounter *tc)
    156       1.99    kardel {
    157      1.104      yamt 
    158      1.100  drochner 	return (u_int)hardclock_ticks;
    159       1.99    kardel }
    160       1.73   thorpej 
    161       1.66   thorpej /*
    162       1.19       cgd  * Initialize clock frequencies and start both clocks running.
    163       1.19       cgd  */
    164       1.19       cgd void
    165       1.63   thorpej initclocks(void)
    166       1.19       cgd {
    167      1.132     pooka 	static struct sysctllog *clog;
    168       1.55  augustss 	int i;
    169       1.19       cgd 
    170       1.19       cgd 	/*
    171       1.19       cgd 	 * Set divisors to 1 (normal case) and let the machine-specific
    172       1.19       cgd 	 * code do its bit.
    173       1.19       cgd 	 */
    174       1.70  sommerfe 	psdiv = 1;
    175       1.99    kardel 	/*
    176       1.99    kardel 	 * provide minimum default time counter
    177       1.99    kardel 	 * will only run at interrupt resolution
    178       1.99    kardel 	 */
    179       1.99    kardel 	intr_timecounter.tc_frequency = hz;
    180       1.99    kardel 	tc_init(&intr_timecounter);
    181       1.19       cgd 	cpu_initclocks();
    182       1.19       cgd 
    183       1.19       cgd 	/*
    184      1.108      yamt 	 * Compute profhz and stathz, fix profhz if needed.
    185       1.19       cgd 	 */
    186       1.19       cgd 	i = stathz ? stathz : hz;
    187       1.19       cgd 	if (profhz == 0)
    188       1.19       cgd 		profhz = i;
    189       1.19       cgd 	psratio = profhz / i;
    190       1.91      yamt 	if (schedhz == 0) {
    191       1.91      yamt 		/* 16Hz is best */
    192      1.114        ad 		hardscheddiv = hz / 16;
    193      1.114        ad 		if (hardscheddiv <= 0)
    194      1.114        ad 			panic("hardscheddiv");
    195       1.91      yamt 	}
    196       1.31   mycroft 
    197      1.132     pooka 	sysctl_createv(&clog, 0, NULL, NULL,
    198      1.132     pooka 		       CTLFLAG_PERMANENT,
    199      1.132     pooka 		       CTLTYPE_STRUCT, "clockrate",
    200      1.132     pooka 		       SYSCTL_DESCR("Kernel clock rates"),
    201      1.132     pooka 		       sysctl_kern_clockrate, 0, NULL,
    202      1.132     pooka 		       sizeof(struct clockinfo),
    203      1.132     pooka 		       CTL_KERN, KERN_CLOCKRATE, CTL_EOL);
    204      1.132     pooka 	sysctl_createv(&clog, 0, NULL, NULL,
    205      1.132     pooka 		       CTLFLAG_PERMANENT,
    206      1.132     pooka 		       CTLTYPE_INT, "hardclock_ticks",
    207      1.132     pooka 		       SYSCTL_DESCR("Number of hardclock ticks"),
    208      1.132     pooka 		       NULL, 0, &hardclock_ticks, sizeof(hardclock_ticks),
    209      1.132     pooka 		       CTL_KERN, KERN_HARDCLOCK_TICKS, CTL_EOL);
    210       1.19       cgd }
    211       1.19       cgd 
    212       1.19       cgd /*
    213       1.19       cgd  * The real-time timer, interrupting hz times per second.
    214       1.19       cgd  */
    215       1.19       cgd void
    216       1.63   thorpej hardclock(struct clockframe *frame)
    217       1.19       cgd {
    218       1.82   thorpej 	struct lwp *l;
    219      1.120        ad 	struct cpu_info *ci;
    220       1.19       cgd 
    221      1.120        ad 	ci = curcpu();
    222      1.114        ad 	l = ci->ci_data.cpu_onproc;
    223      1.120        ad 
    224      1.120        ad 	timer_tick(l, CLKF_USERMODE(frame));
    225       1.19       cgd 
    226       1.19       cgd 	/*
    227       1.19       cgd 	 * If no separate statistics clock is available, run it from here.
    228       1.19       cgd 	 */
    229       1.19       cgd 	if (stathz == 0)
    230       1.19       cgd 		statclock(frame);
    231      1.114        ad 	/*
    232      1.114        ad 	 * If no separate schedclock is provided, call it here
    233      1.114        ad 	 * at about 16 Hz.
    234      1.114        ad 	 */
    235      1.114        ad 	if (schedhz == 0) {
    236      1.114        ad 		if ((int)(--ci->ci_schedstate.spc_schedticks) <= 0) {
    237      1.114        ad 			schedclock(l);
    238      1.114        ad 			ci->ci_schedstate.spc_schedticks = hardscheddiv;
    239      1.114        ad 		}
    240      1.114        ad 	}
    241      1.108      yamt 	if ((--ci->ci_schedstate.spc_ticks) <= 0)
    242      1.108      yamt 		sched_tick(ci);
    243       1.93     perry 
    244      1.123        ad 	if (CPU_IS_PRIMARY(ci)) {
    245      1.121        ad 		hardclock_ticks++;
    246      1.121        ad 		tc_ticktock();
    247      1.121        ad 	}
    248       1.19       cgd 
    249       1.19       cgd 	/*
    250      1.126     pooka 	 * Update real-time timeout queue.
    251      1.106        ad 	 */
    252      1.109        ad 	callout_hardclock();
    253      1.131       chs 
    254      1.131       chs #ifdef KDTRACE_HOOKS
    255      1.131       chs 	cyclic_clock_func_t func = cyclic_clock_func[cpu_index(ci)];
    256      1.131       chs 	if (func) {
    257      1.131       chs 		(*func)((struct clockframe *)frame);
    258      1.131       chs 	}
    259      1.131       chs #endif
    260       1.19       cgd }
    261       1.19       cgd 
    262       1.19       cgd /*
    263       1.19       cgd  * Start profiling on a process.
    264       1.19       cgd  *
    265       1.19       cgd  * Kernel profiling passes proc0 which never exits and hence
    266       1.19       cgd  * keeps the profile clock running constantly.
    267       1.19       cgd  */
    268       1.19       cgd void
    269       1.63   thorpej startprofclock(struct proc *p)
    270       1.19       cgd {
    271       1.19       cgd 
    272      1.109        ad 	KASSERT(mutex_owned(&p->p_stmutex));
    273      1.105        ad 
    274      1.105        ad 	if ((p->p_stflag & PST_PROFIL) == 0) {
    275      1.105        ad 		p->p_stflag |= PST_PROFIL;
    276       1.80    briggs 		/*
    277       1.80    briggs 		 * This is only necessary if using the clock as the
    278       1.80    briggs 		 * profiling source.
    279       1.80    briggs 		 */
    280       1.70  sommerfe 		if (++profprocs == 1 && stathz != 0)
    281       1.70  sommerfe 			psdiv = psratio;
    282       1.19       cgd 	}
    283       1.19       cgd }
    284       1.19       cgd 
    285       1.19       cgd /*
    286       1.19       cgd  * Stop profiling on a process.
    287       1.19       cgd  */
    288       1.19       cgd void
    289       1.63   thorpej stopprofclock(struct proc *p)
    290       1.19       cgd {
    291       1.19       cgd 
    292      1.109        ad 	KASSERT(mutex_owned(&p->p_stmutex));
    293      1.105        ad 
    294      1.105        ad 	if (p->p_stflag & PST_PROFIL) {
    295      1.105        ad 		p->p_stflag &= ~PST_PROFIL;
    296       1.80    briggs 		/*
    297       1.80    briggs 		 * This is only necessary if using the clock as the
    298       1.80    briggs 		 * profiling source.
    299       1.80    briggs 		 */
    300       1.70  sommerfe 		if (--profprocs == 0 && stathz != 0)
    301       1.70  sommerfe 			psdiv = 1;
    302       1.19       cgd 	}
    303       1.19       cgd }
    304       1.19       cgd 
    305       1.80    briggs #if defined(PERFCTRS)
    306       1.80    briggs /*
    307       1.80    briggs  * Independent profiling "tick" in case we're using a separate
    308       1.80    briggs  * clock or profiling event source.  Currently, that's just
    309       1.80    briggs  * performance counters--hence the wrapper.
    310       1.80    briggs  */
    311       1.80    briggs void
    312       1.80    briggs proftick(struct clockframe *frame)
    313       1.80    briggs {
    314       1.80    briggs #ifdef GPROF
    315       1.93     perry         struct gmonparam *g;
    316       1.93     perry         intptr_t i;
    317       1.80    briggs #endif
    318      1.105        ad 	struct lwp *l;
    319       1.80    briggs 	struct proc *p;
    320       1.80    briggs 
    321      1.114        ad 	l = curcpu()->ci_data.cpu_onproc;
    322      1.105        ad 	p = (l ? l->l_proc : NULL);
    323       1.80    briggs 	if (CLKF_USERMODE(frame)) {
    324      1.105        ad 		mutex_spin_enter(&p->p_stmutex);
    325      1.105        ad 		if (p->p_stflag & PST_PROFIL)
    326      1.105        ad 			addupc_intr(l, CLKF_PC(frame));
    327      1.105        ad 		mutex_spin_exit(&p->p_stmutex);
    328       1.80    briggs 	} else {
    329       1.80    briggs #ifdef GPROF
    330       1.80    briggs 		g = &_gmonparam;
    331       1.80    briggs 		if (g->state == GMON_PROF_ON) {
    332       1.80    briggs 			i = CLKF_PC(frame) - g->lowpc;
    333       1.80    briggs 			if (i < g->textsize) {
    334       1.80    briggs 				i /= HISTFRACTION * sizeof(*g->kcount);
    335       1.80    briggs 				g->kcount[i]++;
    336       1.80    briggs 			}
    337       1.80    briggs 		}
    338       1.80    briggs #endif
    339      1.111        ad #ifdef LWP_PC
    340      1.111        ad 		if (p != NULL && (p->p_stflag & PST_PROFIL) != 0)
    341      1.112        ad 			addupc_intr(l, LWP_PC(l));
    342       1.93     perry #endif
    343       1.80    briggs 	}
    344       1.80    briggs }
    345       1.80    briggs #endif
    346       1.80    briggs 
    347      1.108      yamt void
    348      1.108      yamt schedclock(struct lwp *l)
    349      1.108      yamt {
    350      1.108      yamt 	if ((l->l_flag & LW_IDLE) != 0)
    351      1.108      yamt 		return;
    352      1.108      yamt 
    353      1.108      yamt 	sched_schedclock(l);
    354      1.108      yamt }
    355      1.108      yamt 
    356       1.19       cgd /*
    357       1.19       cgd  * Statistics clock.  Grab profile sample, and if divider reaches 0,
    358       1.19       cgd  * do process and kernel statistics.
    359       1.19       cgd  */
    360       1.19       cgd void
    361       1.63   thorpej statclock(struct clockframe *frame)
    362       1.19       cgd {
    363       1.19       cgd #ifdef GPROF
    364       1.55  augustss 	struct gmonparam *g;
    365       1.68       eeh 	intptr_t i;
    366       1.19       cgd #endif
    367       1.60   thorpej 	struct cpu_info *ci = curcpu();
    368       1.60   thorpej 	struct schedstate_percpu *spc = &ci->ci_schedstate;
    369       1.55  augustss 	struct proc *p;
    370       1.98  christos 	struct lwp *l;
    371       1.19       cgd 
    372       1.70  sommerfe 	/*
    373       1.70  sommerfe 	 * Notice changes in divisor frequency, and adjust clock
    374       1.70  sommerfe 	 * frequency accordingly.
    375       1.70  sommerfe 	 */
    376       1.70  sommerfe 	if (spc->spc_psdiv != psdiv) {
    377       1.70  sommerfe 		spc->spc_psdiv = psdiv;
    378       1.70  sommerfe 		spc->spc_pscnt = psdiv;
    379       1.70  sommerfe 		if (psdiv == 1) {
    380       1.70  sommerfe 			setstatclockrate(stathz);
    381       1.70  sommerfe 		} else {
    382       1.93     perry 			setstatclockrate(profhz);
    383       1.70  sommerfe 		}
    384       1.70  sommerfe 	}
    385      1.114        ad 	l = ci->ci_data.cpu_onproc;
    386      1.108      yamt 	if ((l->l_flag & LW_IDLE) != 0) {
    387      1.108      yamt 		/*
    388      1.108      yamt 		 * don't account idle lwps as swapper.
    389      1.108      yamt 		 */
    390      1.108      yamt 		p = NULL;
    391      1.108      yamt 	} else {
    392      1.108      yamt 		p = l->l_proc;
    393      1.105        ad 		mutex_spin_enter(&p->p_stmutex);
    394      1.108      yamt 	}
    395      1.108      yamt 
    396       1.19       cgd 	if (CLKF_USERMODE(frame)) {
    397  1.134.4.1    bouyer 		KASSERT(p != NULL);
    398      1.105        ad 		if ((p->p_stflag & PST_PROFIL) && profsrc == PROFSRC_CLOCK)
    399      1.105        ad 			addupc_intr(l, CLKF_PC(frame));
    400      1.105        ad 		if (--spc->spc_pscnt > 0) {
    401      1.105        ad 			mutex_spin_exit(&p->p_stmutex);
    402       1.19       cgd 			return;
    403      1.105        ad 		}
    404      1.105        ad 
    405       1.19       cgd 		/*
    406       1.19       cgd 		 * Came from user mode; CPU was in user state.
    407       1.19       cgd 		 * If this process is being profiled record the tick.
    408       1.19       cgd 		 */
    409       1.19       cgd 		p->p_uticks++;
    410       1.19       cgd 		if (p->p_nice > NZERO)
    411       1.60   thorpej 			spc->spc_cp_time[CP_NICE]++;
    412       1.19       cgd 		else
    413       1.60   thorpej 			spc->spc_cp_time[CP_USER]++;
    414       1.19       cgd 	} else {
    415       1.19       cgd #ifdef GPROF
    416       1.19       cgd 		/*
    417       1.19       cgd 		 * Kernel statistics are just like addupc_intr, only easier.
    418       1.19       cgd 		 */
    419       1.19       cgd 		g = &_gmonparam;
    420       1.80    briggs 		if (profsrc == PROFSRC_CLOCK && g->state == GMON_PROF_ON) {
    421       1.19       cgd 			i = CLKF_PC(frame) - g->lowpc;
    422       1.19       cgd 			if (i < g->textsize) {
    423       1.19       cgd 				i /= HISTFRACTION * sizeof(*g->kcount);
    424       1.19       cgd 				g->kcount[i]++;
    425       1.19       cgd 			}
    426       1.19       cgd 		}
    427       1.19       cgd #endif
    428       1.82   thorpej #ifdef LWP_PC
    429      1.108      yamt 		if (p != NULL && profsrc == PROFSRC_CLOCK &&
    430      1.108      yamt 		    (p->p_stflag & PST_PROFIL)) {
    431      1.105        ad 			addupc_intr(l, LWP_PC(l));
    432      1.108      yamt 		}
    433       1.72   mycroft #endif
    434      1.105        ad 		if (--spc->spc_pscnt > 0) {
    435      1.105        ad 			if (p != NULL)
    436      1.105        ad 				mutex_spin_exit(&p->p_stmutex);
    437       1.19       cgd 			return;
    438      1.105        ad 		}
    439       1.19       cgd 		/*
    440       1.19       cgd 		 * Came from kernel mode, so we were:
    441       1.19       cgd 		 * - handling an interrupt,
    442       1.19       cgd 		 * - doing syscall or trap work on behalf of the current
    443       1.19       cgd 		 *   user process, or
    444       1.19       cgd 		 * - spinning in the idle loop.
    445       1.19       cgd 		 * Whichever it is, charge the time as appropriate.
    446       1.19       cgd 		 * Note that we charge interrupts to the current process,
    447       1.19       cgd 		 * regardless of whether they are ``for'' that process,
    448       1.19       cgd 		 * so that we know how much of its real time was spent
    449       1.19       cgd 		 * in ``non-process'' (i.e., interrupt) work.
    450       1.19       cgd 		 */
    451      1.114        ad 		if (CLKF_INTR(frame) || (curlwp->l_pflag & LP_INTR) != 0) {
    452      1.108      yamt 			if (p != NULL) {
    453       1.19       cgd 				p->p_iticks++;
    454      1.108      yamt 			}
    455       1.60   thorpej 			spc->spc_cp_time[CP_INTR]++;
    456       1.19       cgd 		} else if (p != NULL) {
    457       1.19       cgd 			p->p_sticks++;
    458       1.60   thorpej 			spc->spc_cp_time[CP_SYS]++;
    459      1.108      yamt 		} else {
    460       1.60   thorpej 			spc->spc_cp_time[CP_IDLE]++;
    461      1.108      yamt 		}
    462       1.19       cgd 	}
    463       1.70  sommerfe 	spc->spc_pscnt = psdiv;
    464       1.19       cgd 
    465       1.97      elad 	if (p != NULL) {
    466      1.125     rmind 		atomic_inc_uint(&l->l_cpticks);
    467      1.105        ad 		mutex_spin_exit(&p->p_stmutex);
    468      1.108      yamt 	}
    469       1.19       cgd }
    470      1.132     pooka 
    471      1.132     pooka /*
    472      1.132     pooka  * sysctl helper routine for kern.clockrate. Assembles a struct on
    473      1.132     pooka  * the fly to be returned to the caller.
    474      1.132     pooka  */
    475      1.132     pooka static int
    476      1.132     pooka sysctl_kern_clockrate(SYSCTLFN_ARGS)
    477      1.132     pooka {
    478      1.132     pooka 	struct clockinfo clkinfo;
    479      1.132     pooka 	struct sysctlnode node;
    480      1.132     pooka 
    481      1.132     pooka 	clkinfo.tick = tick;
    482      1.132     pooka 	clkinfo.tickadj = tickadj;
    483      1.132     pooka 	clkinfo.hz = hz;
    484      1.132     pooka 	clkinfo.profhz = profhz;
    485      1.132     pooka 	clkinfo.stathz = stathz ? stathz : hz;
    486      1.132     pooka 
    487      1.132     pooka 	node = *rnode;
    488      1.132     pooka 	node.sysctl_data = &clkinfo;
    489      1.132     pooka 	return (sysctl_lookup(SYSCTLFN_CALL(&node)));
    490      1.132     pooka }
    491