xref: /titanic_52/usr/src/uts/common/os/clock.c (revision 4c06356b0f0fffb4fc1b6eccc8e5d8e2254a84d6)
17c478bd9Sstevel@tonic-gate /*
27c478bd9Sstevel@tonic-gate  * CDDL HEADER START
37c478bd9Sstevel@tonic-gate  *
47c478bd9Sstevel@tonic-gate  * The contents of this file are subject to the terms of the
53c431bb5Swentaoy  * Common Development and Distribution License (the "License").
63c431bb5Swentaoy  * You may not use this file except in compliance with the License.
77c478bd9Sstevel@tonic-gate  *
87c478bd9Sstevel@tonic-gate  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
97c478bd9Sstevel@tonic-gate  * or http://www.opensolaris.org/os/licensing.
107c478bd9Sstevel@tonic-gate  * See the License for the specific language governing permissions
117c478bd9Sstevel@tonic-gate  * and limitations under the License.
127c478bd9Sstevel@tonic-gate  *
137c478bd9Sstevel@tonic-gate  * When distributing Covered Code, include this CDDL HEADER in each
147c478bd9Sstevel@tonic-gate  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
157c478bd9Sstevel@tonic-gate  * If applicable, add the following below this CDDL HEADER, with the
167c478bd9Sstevel@tonic-gate  * fields enclosed by brackets "[]" replaced with your own identifying
177c478bd9Sstevel@tonic-gate  * information: Portions Copyright [yyyy] [name of copyright owner]
187c478bd9Sstevel@tonic-gate  *
197c478bd9Sstevel@tonic-gate  * CDDL HEADER END
207c478bd9Sstevel@tonic-gate  */
217c478bd9Sstevel@tonic-gate /*	Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T	*/
227c478bd9Sstevel@tonic-gate /*	  All Rights Reserved	*/
237c478bd9Sstevel@tonic-gate 
247c478bd9Sstevel@tonic-gate 
257c478bd9Sstevel@tonic-gate /*
26454ab202SMadhavan Venkataraman  * Copyright 2009 Sun Microsystems, Inc.  All rights reserved.
277c478bd9Sstevel@tonic-gate  * Use is subject to license terms.
287c478bd9Sstevel@tonic-gate  */
297c478bd9Sstevel@tonic-gate 
307c478bd9Sstevel@tonic-gate 
317c478bd9Sstevel@tonic-gate #include <sys/param.h>
327c478bd9Sstevel@tonic-gate #include <sys/t_lock.h>
337c478bd9Sstevel@tonic-gate #include <sys/types.h>
347c478bd9Sstevel@tonic-gate #include <sys/tuneable.h>
357c478bd9Sstevel@tonic-gate #include <sys/sysmacros.h>
367c478bd9Sstevel@tonic-gate #include <sys/systm.h>
377c478bd9Sstevel@tonic-gate #include <sys/cpuvar.h>
387c478bd9Sstevel@tonic-gate #include <sys/lgrp.h>
397c478bd9Sstevel@tonic-gate #include <sys/user.h>
407c478bd9Sstevel@tonic-gate #include <sys/proc.h>
417c478bd9Sstevel@tonic-gate #include <sys/callo.h>
427c478bd9Sstevel@tonic-gate #include <sys/kmem.h>
437c478bd9Sstevel@tonic-gate #include <sys/var.h>
447c478bd9Sstevel@tonic-gate #include <sys/cmn_err.h>
457c478bd9Sstevel@tonic-gate #include <sys/swap.h>
467c478bd9Sstevel@tonic-gate #include <sys/vmsystm.h>
477c478bd9Sstevel@tonic-gate #include <sys/class.h>
487c478bd9Sstevel@tonic-gate #include <sys/time.h>
497c478bd9Sstevel@tonic-gate #include <sys/debug.h>
507c478bd9Sstevel@tonic-gate #include <sys/vtrace.h>
517c478bd9Sstevel@tonic-gate #include <sys/spl.h>
527c478bd9Sstevel@tonic-gate #include <sys/atomic.h>
537c478bd9Sstevel@tonic-gate #include <sys/dumphdr.h>
547c478bd9Sstevel@tonic-gate #include <sys/archsystm.h>
557c478bd9Sstevel@tonic-gate #include <sys/fs/swapnode.h>
567c478bd9Sstevel@tonic-gate #include <sys/panic.h>
577c478bd9Sstevel@tonic-gate #include <sys/disp.h>
587c478bd9Sstevel@tonic-gate #include <sys/msacct.h>
597c478bd9Sstevel@tonic-gate #include <sys/mem_cage.h>
607c478bd9Sstevel@tonic-gate 
617c478bd9Sstevel@tonic-gate #include <vm/page.h>
627c478bd9Sstevel@tonic-gate #include <vm/anon.h>
637c478bd9Sstevel@tonic-gate #include <vm/rm.h>
647c478bd9Sstevel@tonic-gate #include <sys/cyclic.h>
657c478bd9Sstevel@tonic-gate #include <sys/cpupart.h>
667c478bd9Sstevel@tonic-gate #include <sys/rctl.h>
677c478bd9Sstevel@tonic-gate #include <sys/task.h>
687c478bd9Sstevel@tonic-gate #include <sys/sdt.h>
69dd4eeefdSeota #include <sys/ddi_timer.h>
70*4c06356bSdh142964 #include <sys/random.h>
71*4c06356bSdh142964 #include <sys/modctl.h>
727c478bd9Sstevel@tonic-gate 
737c478bd9Sstevel@tonic-gate /*
747c478bd9Sstevel@tonic-gate  * for NTP support
757c478bd9Sstevel@tonic-gate  */
767c478bd9Sstevel@tonic-gate #include <sys/timex.h>
777c478bd9Sstevel@tonic-gate #include <sys/inttypes.h>
787c478bd9Sstevel@tonic-gate 
797c478bd9Sstevel@tonic-gate /*
80c97ad5cdSakolb  * clock() is called straight from the clock cyclic; see clock_init().
817c478bd9Sstevel@tonic-gate  *
827c478bd9Sstevel@tonic-gate  * Functions:
837c478bd9Sstevel@tonic-gate  *	reprime clock
847c478bd9Sstevel@tonic-gate  *	maintain date
857c478bd9Sstevel@tonic-gate  *	jab the scheduler
867c478bd9Sstevel@tonic-gate  */
877c478bd9Sstevel@tonic-gate 
887c478bd9Sstevel@tonic-gate extern kcondvar_t	fsflush_cv;
897c478bd9Sstevel@tonic-gate extern sysinfo_t	sysinfo;
907c478bd9Sstevel@tonic-gate extern vminfo_t	vminfo;
917c478bd9Sstevel@tonic-gate extern int	idleswtch;	/* flag set while idle in pswtch() */
92*4c06356bSdh142964 extern hrtime_t volatile devinfo_freeze;
937c478bd9Sstevel@tonic-gate 
947c478bd9Sstevel@tonic-gate /*
957c478bd9Sstevel@tonic-gate  * high-precision avenrun values.  These are needed to make the
967c478bd9Sstevel@tonic-gate  * regular avenrun values accurate.
977c478bd9Sstevel@tonic-gate  */
987c478bd9Sstevel@tonic-gate static uint64_t hp_avenrun[3];
997c478bd9Sstevel@tonic-gate int	avenrun[3];		/* FSCALED average run queue lengths */
1007c478bd9Sstevel@tonic-gate time_t	time;	/* time in seconds since 1970 - for compatibility only */
1017c478bd9Sstevel@tonic-gate 
1027c478bd9Sstevel@tonic-gate static struct loadavg_s loadavg;
1037c478bd9Sstevel@tonic-gate /*
1047c478bd9Sstevel@tonic-gate  * Phase/frequency-lock loop (PLL/FLL) definitions
1057c478bd9Sstevel@tonic-gate  *
1067c478bd9Sstevel@tonic-gate  * The following variables are read and set by the ntp_adjtime() system
1077c478bd9Sstevel@tonic-gate  * call.
1087c478bd9Sstevel@tonic-gate  *
1097c478bd9Sstevel@tonic-gate  * time_state shows the state of the system clock, with values defined
1107c478bd9Sstevel@tonic-gate  * in the timex.h header file.
1117c478bd9Sstevel@tonic-gate  *
1127c478bd9Sstevel@tonic-gate  * time_status shows the status of the system clock, with bits defined
1137c478bd9Sstevel@tonic-gate  * in the timex.h header file.
1147c478bd9Sstevel@tonic-gate  *
1157c478bd9Sstevel@tonic-gate  * time_offset is used by the PLL/FLL to adjust the system time in small
1167c478bd9Sstevel@tonic-gate  * increments.
1177c478bd9Sstevel@tonic-gate  *
1187c478bd9Sstevel@tonic-gate  * time_constant determines the bandwidth or "stiffness" of the PLL.
1197c478bd9Sstevel@tonic-gate  *
1207c478bd9Sstevel@tonic-gate  * time_tolerance determines maximum frequency error or tolerance of the
1217c478bd9Sstevel@tonic-gate  * CPU clock oscillator and is a property of the architecture; however,
1227c478bd9Sstevel@tonic-gate  * in principle it could change as result of the presence of external
1237c478bd9Sstevel@tonic-gate  * discipline signals, for instance.
1247c478bd9Sstevel@tonic-gate  *
1257c478bd9Sstevel@tonic-gate  * time_precision is usually equal to the kernel tick variable; however,
1267c478bd9Sstevel@tonic-gate  * in cases where a precision clock counter or external clock is
1277c478bd9Sstevel@tonic-gate  * available, the resolution can be much less than this and depend on
1287c478bd9Sstevel@tonic-gate  * whether the external clock is working or not.
1297c478bd9Sstevel@tonic-gate  *
1307c478bd9Sstevel@tonic-gate  * time_maxerror is initialized by a ntp_adjtime() call and increased by
1317c478bd9Sstevel@tonic-gate  * the kernel once each second to reflect the maximum error bound
1327c478bd9Sstevel@tonic-gate  * growth.
1337c478bd9Sstevel@tonic-gate  *
1347c478bd9Sstevel@tonic-gate  * time_esterror is set and read by the ntp_adjtime() call, but
1357c478bd9Sstevel@tonic-gate  * otherwise not used by the kernel.
1367c478bd9Sstevel@tonic-gate  */
1377c478bd9Sstevel@tonic-gate int32_t time_state = TIME_OK;	/* clock state */
1387c478bd9Sstevel@tonic-gate int32_t time_status = STA_UNSYNC;	/* clock status bits */
1397c478bd9Sstevel@tonic-gate int32_t time_offset = 0;		/* time offset (us) */
1407c478bd9Sstevel@tonic-gate int32_t time_constant = 0;		/* pll time constant */
1417c478bd9Sstevel@tonic-gate int32_t time_tolerance = MAXFREQ;	/* frequency tolerance (scaled ppm) */
1427c478bd9Sstevel@tonic-gate int32_t time_precision = 1;	/* clock precision (us) */
1437c478bd9Sstevel@tonic-gate int32_t time_maxerror = MAXPHASE;	/* maximum error (us) */
1447c478bd9Sstevel@tonic-gate int32_t time_esterror = MAXPHASE;	/* estimated error (us) */
1457c478bd9Sstevel@tonic-gate 
1467c478bd9Sstevel@tonic-gate /*
1477c478bd9Sstevel@tonic-gate  * The following variables establish the state of the PLL/FLL and the
1487c478bd9Sstevel@tonic-gate  * residual time and frequency offset of the local clock. The scale
1497c478bd9Sstevel@tonic-gate  * factors are defined in the timex.h header file.
1507c478bd9Sstevel@tonic-gate  *
1517c478bd9Sstevel@tonic-gate  * time_phase and time_freq are the phase increment and the frequency
1527c478bd9Sstevel@tonic-gate  * increment, respectively, of the kernel time variable.
1537c478bd9Sstevel@tonic-gate  *
1547c478bd9Sstevel@tonic-gate  * time_freq is set via ntp_adjtime() from a value stored in a file when
1557c478bd9Sstevel@tonic-gate  * the synchronization daemon is first started. Its value is retrieved
1567c478bd9Sstevel@tonic-gate  * via ntp_adjtime() and written to the file about once per hour by the
1577c478bd9Sstevel@tonic-gate  * daemon.
1587c478bd9Sstevel@tonic-gate  *
1597c478bd9Sstevel@tonic-gate  * time_adj is the adjustment added to the value of tick at each timer
1607c478bd9Sstevel@tonic-gate  * interrupt and is recomputed from time_phase and time_freq at each
1617c478bd9Sstevel@tonic-gate  * seconds rollover.
1627c478bd9Sstevel@tonic-gate  *
1637c478bd9Sstevel@tonic-gate  * time_reftime is the second's portion of the system time at the last
1647c478bd9Sstevel@tonic-gate  * call to ntp_adjtime(). It is used to adjust the time_freq variable
1657c478bd9Sstevel@tonic-gate  * and to increase the time_maxerror as the time since last update
1667c478bd9Sstevel@tonic-gate  * increases.
1677c478bd9Sstevel@tonic-gate  */
1687c478bd9Sstevel@tonic-gate int32_t time_phase = 0;		/* phase offset (scaled us) */
1697c478bd9Sstevel@tonic-gate int32_t time_freq = 0;		/* frequency offset (scaled ppm) */
1707c478bd9Sstevel@tonic-gate int32_t time_adj = 0;		/* tick adjust (scaled 1 / hz) */
1717c478bd9Sstevel@tonic-gate int32_t time_reftime = 0;		/* time at last adjustment (s) */
1727c478bd9Sstevel@tonic-gate 
1737c478bd9Sstevel@tonic-gate /*
1747c478bd9Sstevel@tonic-gate  * The scale factors of the following variables are defined in the
1757c478bd9Sstevel@tonic-gate  * timex.h header file.
1767c478bd9Sstevel@tonic-gate  *
1777c478bd9Sstevel@tonic-gate  * pps_time contains the time at each calibration interval, as read by
1787c478bd9Sstevel@tonic-gate  * microtime(). pps_count counts the seconds of the calibration
1797c478bd9Sstevel@tonic-gate  * interval, the duration of which is nominally pps_shift in powers of
1807c478bd9Sstevel@tonic-gate  * two.
1817c478bd9Sstevel@tonic-gate  *
1827c478bd9Sstevel@tonic-gate  * pps_offset is the time offset produced by the time median filter
1837c478bd9Sstevel@tonic-gate  * pps_tf[], while pps_jitter is the dispersion (jitter) measured by
1847c478bd9Sstevel@tonic-gate  * this filter.
1857c478bd9Sstevel@tonic-gate  *
1867c478bd9Sstevel@tonic-gate  * pps_freq is the frequency offset produced by the frequency median
1877c478bd9Sstevel@tonic-gate  * filter pps_ff[], while pps_stabil is the dispersion (wander) measured
1887c478bd9Sstevel@tonic-gate  * by this filter.
1897c478bd9Sstevel@tonic-gate  *
1907c478bd9Sstevel@tonic-gate  * pps_usec is latched from a high resolution counter or external clock
1917c478bd9Sstevel@tonic-gate  * at pps_time. Here we want the hardware counter contents only, not the
1927c478bd9Sstevel@tonic-gate  * contents plus the time_tv.usec as usual.
1937c478bd9Sstevel@tonic-gate  *
1947c478bd9Sstevel@tonic-gate  * pps_valid counts the number of seconds since the last PPS update. It
1957c478bd9Sstevel@tonic-gate  * is used as a watchdog timer to disable the PPS discipline should the
1967c478bd9Sstevel@tonic-gate  * PPS signal be lost.
1977c478bd9Sstevel@tonic-gate  *
1987c478bd9Sstevel@tonic-gate  * pps_glitch counts the number of seconds since the beginning of an
1997c478bd9Sstevel@tonic-gate  * offset burst more than tick/2 from current nominal offset. It is used
2007c478bd9Sstevel@tonic-gate  * mainly to suppress error bursts due to priority conflicts between the
2017c478bd9Sstevel@tonic-gate  * PPS interrupt and timer interrupt.
2027c478bd9Sstevel@tonic-gate  *
2037c478bd9Sstevel@tonic-gate  * pps_intcnt counts the calibration intervals for use in the interval-
2047c478bd9Sstevel@tonic-gate  * adaptation algorithm. It's just too complicated for words.
2057c478bd9Sstevel@tonic-gate  */
2067c478bd9Sstevel@tonic-gate struct timeval pps_time;	/* kernel time at last interval */
2077c478bd9Sstevel@tonic-gate int32_t pps_tf[] = {0, 0, 0};	/* pps time offset median filter (us) */
2087c478bd9Sstevel@tonic-gate int32_t pps_offset = 0;		/* pps time offset (us) */
2097c478bd9Sstevel@tonic-gate int32_t pps_jitter = MAXTIME;	/* time dispersion (jitter) (us) */
2107c478bd9Sstevel@tonic-gate int32_t pps_ff[] = {0, 0, 0};	/* pps frequency offset median filter */
2117c478bd9Sstevel@tonic-gate int32_t pps_freq = 0;		/* frequency offset (scaled ppm) */
2127c478bd9Sstevel@tonic-gate int32_t pps_stabil = MAXFREQ;	/* frequency dispersion (scaled ppm) */
2137c478bd9Sstevel@tonic-gate int32_t pps_usec = 0;		/* microsec counter at last interval */
2147c478bd9Sstevel@tonic-gate int32_t pps_valid = PPS_VALID;	/* pps signal watchdog counter */
2157c478bd9Sstevel@tonic-gate int32_t pps_glitch = 0;		/* pps signal glitch counter */
2167c478bd9Sstevel@tonic-gate int32_t pps_count = 0;		/* calibration interval counter (s) */
2177c478bd9Sstevel@tonic-gate int32_t pps_shift = PPS_SHIFT;	/* interval duration (s) (shift) */
2187c478bd9Sstevel@tonic-gate int32_t pps_intcnt = 0;		/* intervals at current duration */
2197c478bd9Sstevel@tonic-gate 
2207c478bd9Sstevel@tonic-gate /*
2217c478bd9Sstevel@tonic-gate  * PPS signal quality monitors
2227c478bd9Sstevel@tonic-gate  *
2237c478bd9Sstevel@tonic-gate  * pps_jitcnt counts the seconds that have been discarded because the
2247c478bd9Sstevel@tonic-gate  * jitter measured by the time median filter exceeds the limit MAXTIME
2257c478bd9Sstevel@tonic-gate  * (100 us).
2267c478bd9Sstevel@tonic-gate  *
2277c478bd9Sstevel@tonic-gate  * pps_calcnt counts the frequency calibration intervals, which are
2287c478bd9Sstevel@tonic-gate  * variable from 4 s to 256 s.
2297c478bd9Sstevel@tonic-gate  *
2307c478bd9Sstevel@tonic-gate  * pps_errcnt counts the calibration intervals which have been discarded
2317c478bd9Sstevel@tonic-gate  * because the wander exceeds the limit MAXFREQ (100 ppm) or where the
2327c478bd9Sstevel@tonic-gate  * calibration interval jitter exceeds two ticks.
2337c478bd9Sstevel@tonic-gate  *
2347c478bd9Sstevel@tonic-gate  * pps_stbcnt counts the calibration intervals that have been discarded
2357c478bd9Sstevel@tonic-gate  * because the frequency wander exceeds the limit MAXFREQ / 4 (25 us).
2367c478bd9Sstevel@tonic-gate  */
2377c478bd9Sstevel@tonic-gate int32_t pps_jitcnt = 0;		/* jitter limit exceeded */
2387c478bd9Sstevel@tonic-gate int32_t pps_calcnt = 0;		/* calibration intervals */
2397c478bd9Sstevel@tonic-gate int32_t pps_errcnt = 0;		/* calibration errors */
2407c478bd9Sstevel@tonic-gate int32_t pps_stbcnt = 0;		/* stability limit exceeded */
2417c478bd9Sstevel@tonic-gate 
2427c478bd9Sstevel@tonic-gate /* The following variables require no explicit locking */
2437c478bd9Sstevel@tonic-gate volatile clock_t lbolt;		/* time in Hz since last boot */
2447c478bd9Sstevel@tonic-gate volatile int64_t lbolt64;	/* lbolt64 won't wrap for 2.9 billion yrs */
2457c478bd9Sstevel@tonic-gate 
2467c478bd9Sstevel@tonic-gate kcondvar_t lbolt_cv;
2477c478bd9Sstevel@tonic-gate int one_sec = 1; /* turned on once every second */
2487c478bd9Sstevel@tonic-gate static int fsflushcnt;	/* counter for t_fsflushr */
2497c478bd9Sstevel@tonic-gate int	dosynctodr = 1;	/* patchable; enable/disable sync to TOD chip */
2507c478bd9Sstevel@tonic-gate int	tod_needsync = 0;	/* need to sync tod chip with software time */
2517c478bd9Sstevel@tonic-gate static int tod_broken = 0;	/* clock chip doesn't work */
2527c478bd9Sstevel@tonic-gate time_t	boot_time = 0;		/* Boot time in seconds since 1970 */
2537c478bd9Sstevel@tonic-gate cyclic_id_t clock_cyclic;	/* clock()'s cyclic_id */
2547c478bd9Sstevel@tonic-gate cyclic_id_t deadman_cyclic;	/* deadman()'s cyclic_id */
2553db6d5a2Seota cyclic_id_t ddi_timer_cyclic;	/* cyclic_timer()'s cyclic_id */
2567c478bd9Sstevel@tonic-gate 
2572850d85bSmv143129 extern void	clock_tick_schedule(int);
2582850d85bSmv143129 
2597c478bd9Sstevel@tonic-gate static int lgrp_ticks;		/* counter to schedule lgrp load calcs */
2607c478bd9Sstevel@tonic-gate 
2617c478bd9Sstevel@tonic-gate /*
2627c478bd9Sstevel@tonic-gate  * for tod fault detection
2637c478bd9Sstevel@tonic-gate  */
2647c478bd9Sstevel@tonic-gate #define	TOD_REF_FREQ		((longlong_t)(NANOSEC))
2657c478bd9Sstevel@tonic-gate #define	TOD_STALL_THRESHOLD	(TOD_REF_FREQ * 3 / 2)
2667c478bd9Sstevel@tonic-gate #define	TOD_JUMP_THRESHOLD	(TOD_REF_FREQ / 2)
2677c478bd9Sstevel@tonic-gate #define	TOD_FILTER_N		4
2687c478bd9Sstevel@tonic-gate #define	TOD_FILTER_SETTLE	(4 * TOD_FILTER_N)
2697c478bd9Sstevel@tonic-gate static int tod_faulted = TOD_NOFAULT;
2707c478bd9Sstevel@tonic-gate static int tod_fault_reset_flag = 0;
2717c478bd9Sstevel@tonic-gate 
2727c478bd9Sstevel@tonic-gate /* patchable via /etc/system */
2737c478bd9Sstevel@tonic-gate int tod_validate_enable = 1;
2747c478bd9Sstevel@tonic-gate 
275*4c06356bSdh142964 /* Diagnose/Limit messages about delay(9F) called from interrupt context */
276*4c06356bSdh142964 int			delay_from_interrupt_diagnose = 0;
277*4c06356bSdh142964 volatile uint32_t	delay_from_interrupt_msg = 20;
278*4c06356bSdh142964 
2797c478bd9Sstevel@tonic-gate /*
2802c891a87Ssethg  * On non-SPARC systems, TOD validation must be deferred until gethrtime
2812c891a87Ssethg  * returns non-zero values (after mach_clkinit's execution).
2822c891a87Ssethg  * On SPARC systems, it must be deferred until after hrtime_base
2832c891a87Ssethg  * and hres_last_tick are set (in the first invocation of hres_tick).
2842c891a87Ssethg  * Since in both cases the prerequisites occur before the invocation of
2852c891a87Ssethg  * tod_get() in clock(), the deferment is lifted there.
2862c891a87Ssethg  */
2872c891a87Ssethg static boolean_t tod_validate_deferred = B_TRUE;
2882c891a87Ssethg 
2892c891a87Ssethg /*
2907c478bd9Sstevel@tonic-gate  * tod_fault_table[] must be aligned with
2917c478bd9Sstevel@tonic-gate  * enum tod_fault_type in systm.h
2927c478bd9Sstevel@tonic-gate  */
2937c478bd9Sstevel@tonic-gate static char *tod_fault_table[] = {
2947c478bd9Sstevel@tonic-gate 	"Reversed",			/* TOD_REVERSED */
2957c478bd9Sstevel@tonic-gate 	"Stalled",			/* TOD_STALLED */
2967c478bd9Sstevel@tonic-gate 	"Jumped",			/* TOD_JUMPED */
297843e1988Sjohnlev 	"Changed in Clock Rate",	/* TOD_RATECHANGED */
298843e1988Sjohnlev 	"Is Read-Only"			/* TOD_RDONLY */
2997c478bd9Sstevel@tonic-gate 	/*
3007c478bd9Sstevel@tonic-gate 	 * no strings needed for TOD_NOFAULT
3017c478bd9Sstevel@tonic-gate 	 */
3027c478bd9Sstevel@tonic-gate };
3037c478bd9Sstevel@tonic-gate 
3047c478bd9Sstevel@tonic-gate /*
3057c478bd9Sstevel@tonic-gate  * test hook for tod broken detection in tod_validate
3067c478bd9Sstevel@tonic-gate  */
3077c478bd9Sstevel@tonic-gate int tod_unit_test = 0;
3087c478bd9Sstevel@tonic-gate time_t tod_test_injector;
3097c478bd9Sstevel@tonic-gate 
3107c478bd9Sstevel@tonic-gate #define	CLOCK_ADJ_HIST_SIZE	4
3117c478bd9Sstevel@tonic-gate 
3127c478bd9Sstevel@tonic-gate static int	adj_hist_entry;
3137c478bd9Sstevel@tonic-gate 
3147c478bd9Sstevel@tonic-gate int64_t clock_adj_hist[CLOCK_ADJ_HIST_SIZE];
3157c478bd9Sstevel@tonic-gate 
3167c478bd9Sstevel@tonic-gate static void calcloadavg(int, uint64_t *);
3177c478bd9Sstevel@tonic-gate static int genloadavg(struct loadavg_s *);
3187c478bd9Sstevel@tonic-gate static void loadavg_update();
3197c478bd9Sstevel@tonic-gate 
3207c478bd9Sstevel@tonic-gate void (*cmm_clock_callout)() = NULL;
321c97ad5cdSakolb void (*cpucaps_clock_callout)() = NULL;
3227c478bd9Sstevel@tonic-gate 
3232850d85bSmv143129 extern clock_t clock_tick_proc_max;
3242850d85bSmv143129 
3257c478bd9Sstevel@tonic-gate static void
3267c478bd9Sstevel@tonic-gate clock(void)
3277c478bd9Sstevel@tonic-gate {
3287c478bd9Sstevel@tonic-gate 	kthread_t	*t;
3292850d85bSmv143129 	uint_t	nrunnable;
3307c478bd9Sstevel@tonic-gate 	uint_t	w_io;
3317c478bd9Sstevel@tonic-gate 	cpu_t	*cp;
3327c478bd9Sstevel@tonic-gate 	cpupart_t *cpupart;
3337c478bd9Sstevel@tonic-gate 	extern void set_anoninfo();
3347c478bd9Sstevel@tonic-gate 	extern	void	set_freemem();
3357c478bd9Sstevel@tonic-gate 	void	(*funcp)();
3367c478bd9Sstevel@tonic-gate 	int32_t ltemp;
3377c478bd9Sstevel@tonic-gate 	int64_t lltemp;
3387c478bd9Sstevel@tonic-gate 	int s;
3397c478bd9Sstevel@tonic-gate 	int do_lgrp_load;
3407c478bd9Sstevel@tonic-gate 	int i;
3417c478bd9Sstevel@tonic-gate 
3427c478bd9Sstevel@tonic-gate 	if (panicstr)
3437c478bd9Sstevel@tonic-gate 		return;
3447c478bd9Sstevel@tonic-gate 
3457c478bd9Sstevel@tonic-gate 	set_anoninfo();
3467c478bd9Sstevel@tonic-gate 	/*
3477c478bd9Sstevel@tonic-gate 	 * Make sure that 'freemem' do not drift too far from the truth
3487c478bd9Sstevel@tonic-gate 	 */
3497c478bd9Sstevel@tonic-gate 	set_freemem();
3507c478bd9Sstevel@tonic-gate 
3517c478bd9Sstevel@tonic-gate 
3527c478bd9Sstevel@tonic-gate 	/*
3537c478bd9Sstevel@tonic-gate 	 * Before the section which is repeated is executed, we do
3547c478bd9Sstevel@tonic-gate 	 * the time delta processing which occurs every clock tick
3557c478bd9Sstevel@tonic-gate 	 *
3567c478bd9Sstevel@tonic-gate 	 * There is additional processing which happens every time
3577c478bd9Sstevel@tonic-gate 	 * the nanosecond counter rolls over which is described
3587c478bd9Sstevel@tonic-gate 	 * below - see the section which begins with : if (one_sec)
3597c478bd9Sstevel@tonic-gate 	 *
3607c478bd9Sstevel@tonic-gate 	 * This section marks the beginning of the precision-kernel
3617c478bd9Sstevel@tonic-gate 	 * code fragment.
3627c478bd9Sstevel@tonic-gate 	 *
3637c478bd9Sstevel@tonic-gate 	 * First, compute the phase adjustment. If the low-order bits
3647c478bd9Sstevel@tonic-gate 	 * (time_phase) of the update overflow, bump the higher order
3657c478bd9Sstevel@tonic-gate 	 * bits (time_update).
3667c478bd9Sstevel@tonic-gate 	 */
3677c478bd9Sstevel@tonic-gate 	time_phase += time_adj;
3687c478bd9Sstevel@tonic-gate 	if (time_phase <= -FINEUSEC) {
3697c478bd9Sstevel@tonic-gate 		ltemp = -time_phase / SCALE_PHASE;
3707c478bd9Sstevel@tonic-gate 		time_phase += ltemp * SCALE_PHASE;
3717c478bd9Sstevel@tonic-gate 		s = hr_clock_lock();
3727c478bd9Sstevel@tonic-gate 		timedelta -= ltemp * (NANOSEC/MICROSEC);
3737c478bd9Sstevel@tonic-gate 		hr_clock_unlock(s);
3747c478bd9Sstevel@tonic-gate 	} else if (time_phase >= FINEUSEC) {
3757c478bd9Sstevel@tonic-gate 		ltemp = time_phase / SCALE_PHASE;
3767c478bd9Sstevel@tonic-gate 		time_phase -= ltemp * SCALE_PHASE;
3777c478bd9Sstevel@tonic-gate 		s = hr_clock_lock();
3787c478bd9Sstevel@tonic-gate 		timedelta += ltemp * (NANOSEC/MICROSEC);
3797c478bd9Sstevel@tonic-gate 		hr_clock_unlock(s);
3807c478bd9Sstevel@tonic-gate 	}
3817c478bd9Sstevel@tonic-gate 
3827c478bd9Sstevel@tonic-gate 	/*
3837c478bd9Sstevel@tonic-gate 	 * End of precision-kernel code fragment which is processed
3847c478bd9Sstevel@tonic-gate 	 * every timer interrupt.
3857c478bd9Sstevel@tonic-gate 	 *
3867c478bd9Sstevel@tonic-gate 	 * Continue with the interrupt processing as scheduled.
3877c478bd9Sstevel@tonic-gate 	 */
3887c478bd9Sstevel@tonic-gate 	/*
3897c478bd9Sstevel@tonic-gate 	 * Count the number of runnable threads and the number waiting
3907c478bd9Sstevel@tonic-gate 	 * for some form of I/O to complete -- gets added to
3917c478bd9Sstevel@tonic-gate 	 * sysinfo.waiting.  To know the state of the system, must add
3927c478bd9Sstevel@tonic-gate 	 * wait counts from all CPUs.  Also add up the per-partition
3937c478bd9Sstevel@tonic-gate 	 * statistics.
3947c478bd9Sstevel@tonic-gate 	 */
3957c478bd9Sstevel@tonic-gate 	w_io = 0;
3967c478bd9Sstevel@tonic-gate 	nrunnable = 0;
3977c478bd9Sstevel@tonic-gate 
3987c478bd9Sstevel@tonic-gate 	/*
3997c478bd9Sstevel@tonic-gate 	 * keep track of when to update lgrp/part loads
4007c478bd9Sstevel@tonic-gate 	 */
4017c478bd9Sstevel@tonic-gate 
4027c478bd9Sstevel@tonic-gate 	do_lgrp_load = 0;
4037c478bd9Sstevel@tonic-gate 	if (lgrp_ticks++ >= hz / 10) {
4047c478bd9Sstevel@tonic-gate 		lgrp_ticks = 0;
4057c478bd9Sstevel@tonic-gate 		do_lgrp_load = 1;
4067c478bd9Sstevel@tonic-gate 	}
4077c478bd9Sstevel@tonic-gate 
4087c478bd9Sstevel@tonic-gate 	if (one_sec)
4097c478bd9Sstevel@tonic-gate 		loadavg_update();
4107c478bd9Sstevel@tonic-gate 
4117c478bd9Sstevel@tonic-gate 	/*
4127c478bd9Sstevel@tonic-gate 	 * First count the threads waiting on kpreempt queues in each
4137c478bd9Sstevel@tonic-gate 	 * CPU partition.
4147c478bd9Sstevel@tonic-gate 	 */
4157c478bd9Sstevel@tonic-gate 
4167c478bd9Sstevel@tonic-gate 	cpupart = cp_list_head;
4177c478bd9Sstevel@tonic-gate 	do {
4187c478bd9Sstevel@tonic-gate 		uint_t cpupart_nrunnable = cpupart->cp_kp_queue.disp_nrunnable;
4197c478bd9Sstevel@tonic-gate 
4207c478bd9Sstevel@tonic-gate 		cpupart->cp_updates++;
4217c478bd9Sstevel@tonic-gate 		nrunnable += cpupart_nrunnable;
4227c478bd9Sstevel@tonic-gate 		cpupart->cp_nrunnable_cum += cpupart_nrunnable;
4237c478bd9Sstevel@tonic-gate 		if (one_sec) {
4247c478bd9Sstevel@tonic-gate 			cpupart->cp_nrunning = 0;
4257c478bd9Sstevel@tonic-gate 			cpupart->cp_nrunnable = cpupart_nrunnable;
4267c478bd9Sstevel@tonic-gate 		}
4277c478bd9Sstevel@tonic-gate 	} while ((cpupart = cpupart->cp_next) != cp_list_head);
4287c478bd9Sstevel@tonic-gate 
4297c478bd9Sstevel@tonic-gate 
4307c478bd9Sstevel@tonic-gate 	/* Now count the per-CPU statistics. */
4317c478bd9Sstevel@tonic-gate 	cp = cpu_list;
4327c478bd9Sstevel@tonic-gate 	do {
4337c478bd9Sstevel@tonic-gate 		uint_t cpu_nrunnable = cp->cpu_disp->disp_nrunnable;
4347c478bd9Sstevel@tonic-gate 
4357c478bd9Sstevel@tonic-gate 		nrunnable += cpu_nrunnable;
4367c478bd9Sstevel@tonic-gate 		cpupart = cp->cpu_part;
4377c478bd9Sstevel@tonic-gate 		cpupart->cp_nrunnable_cum += cpu_nrunnable;
438ae115bc7Smrj 		if (one_sec) {
4397c478bd9Sstevel@tonic-gate 			cpupart->cp_nrunnable += cpu_nrunnable;
440ae115bc7Smrj 			/*
4412850d85bSmv143129 			 * Update user, system, and idle cpu times.
4422850d85bSmv143129 			 */
4432850d85bSmv143129 			cpupart->cp_nrunning++;
4442850d85bSmv143129 			/*
445ae115bc7Smrj 			 * w_io is used to update sysinfo.waiting during
446ae115bc7Smrj 			 * one_second processing below.  Only gather w_io
447ae115bc7Smrj 			 * information when we walk the list of cpus if we're
448ae115bc7Smrj 			 * going to perform one_second processing.
449ae115bc7Smrj 			 */
450ae115bc7Smrj 			w_io += CPU_STATS(cp, sys.iowait);
451ae115bc7Smrj 		}
4523aedfe0bSmishra 
4533aedfe0bSmishra 		if (one_sec && (cp->cpu_flags & CPU_EXISTS)) {
4543aedfe0bSmishra 			int i, load, change;
4553aedfe0bSmishra 			hrtime_t intracct, intrused;
4563aedfe0bSmishra 			const hrtime_t maxnsec = 1000000000;
4573aedfe0bSmishra 			const int precision = 100;
4583aedfe0bSmishra 
4593aedfe0bSmishra 			/*
4603aedfe0bSmishra 			 * Estimate interrupt load on this cpu each second.
4613aedfe0bSmishra 			 * Computes cpu_intrload as %utilization (0-99).
4623aedfe0bSmishra 			 */
4633aedfe0bSmishra 
4643aedfe0bSmishra 			/* add up interrupt time from all micro states */
4653aedfe0bSmishra 			for (intracct = 0, i = 0; i < NCMSTATES; i++)
4663aedfe0bSmishra 				intracct += cp->cpu_intracct[i];
4673aedfe0bSmishra 			scalehrtime(&intracct);
4683aedfe0bSmishra 
4693aedfe0bSmishra 			/* compute nsec used in the past second */
4703aedfe0bSmishra 			intrused = intracct - cp->cpu_intrlast;
4713aedfe0bSmishra 			cp->cpu_intrlast = intracct;
4723aedfe0bSmishra 
4733aedfe0bSmishra 			/* limit the value for safety (and the first pass) */
4743aedfe0bSmishra 			if (intrused >= maxnsec)
4753aedfe0bSmishra 				intrused = maxnsec - 1;
4763aedfe0bSmishra 
4773aedfe0bSmishra 			/* calculate %time in interrupt */
4783aedfe0bSmishra 			load = (precision * intrused) / maxnsec;
4793aedfe0bSmishra 			ASSERT(load >= 0 && load < precision);
4803aedfe0bSmishra 			change = cp->cpu_intrload - load;
4813aedfe0bSmishra 
4823aedfe0bSmishra 			/* jump to new max, or decay the old max */
4833aedfe0bSmishra 			if (change < 0)
4843aedfe0bSmishra 				cp->cpu_intrload = load;
4853aedfe0bSmishra 			else if (change > 0)
4863aedfe0bSmishra 				cp->cpu_intrload -= (change + 3) / 4;
4873aedfe0bSmishra 
4883aedfe0bSmishra 			DTRACE_PROBE3(cpu_intrload,
4893aedfe0bSmishra 			    cpu_t *, cp,
4903aedfe0bSmishra 			    hrtime_t, intracct,
4913aedfe0bSmishra 			    hrtime_t, intrused);
4923aedfe0bSmishra 		}
4933aedfe0bSmishra 
4947c478bd9Sstevel@tonic-gate 		if (do_lgrp_load &&
4957c478bd9Sstevel@tonic-gate 		    (cp->cpu_flags & CPU_EXISTS)) {
4967c478bd9Sstevel@tonic-gate 			/*
4977c478bd9Sstevel@tonic-gate 			 * When updating the lgroup's load average,
4987c478bd9Sstevel@tonic-gate 			 * account for the thread running on the CPU.
4997c478bd9Sstevel@tonic-gate 			 * If the CPU is the current one, then we need
5007c478bd9Sstevel@tonic-gate 			 * to account for the underlying thread which
5017c478bd9Sstevel@tonic-gate 			 * got the clock interrupt not the thread that is
5027c478bd9Sstevel@tonic-gate 			 * handling the interrupt and caculating the load
5037c478bd9Sstevel@tonic-gate 			 * average
5047c478bd9Sstevel@tonic-gate 			 */
5057c478bd9Sstevel@tonic-gate 			t = cp->cpu_thread;
5067c478bd9Sstevel@tonic-gate 			if (CPU == cp)
5077c478bd9Sstevel@tonic-gate 				t = t->t_intr;
5087c478bd9Sstevel@tonic-gate 
5097c478bd9Sstevel@tonic-gate 			/*
5107c478bd9Sstevel@tonic-gate 			 * Account for the load average for this thread if
5117c478bd9Sstevel@tonic-gate 			 * it isn't the idle thread or it is on the interrupt
5127c478bd9Sstevel@tonic-gate 			 * stack and not the current CPU handling the clock
5137c478bd9Sstevel@tonic-gate 			 * interrupt
5147c478bd9Sstevel@tonic-gate 			 */
5157c478bd9Sstevel@tonic-gate 			if ((t && t != cp->cpu_idle_thread) || (CPU != cp &&
5167c478bd9Sstevel@tonic-gate 			    CPU_ON_INTR(cp))) {
5177c478bd9Sstevel@tonic-gate 				if (t->t_lpl == cp->cpu_lpl) {
5187c478bd9Sstevel@tonic-gate 					/* local thread */
5197c478bd9Sstevel@tonic-gate 					cpu_nrunnable++;
5207c478bd9Sstevel@tonic-gate 				} else {
5217c478bd9Sstevel@tonic-gate 					/*
5227c478bd9Sstevel@tonic-gate 					 * This is a remote thread, charge it
5237c478bd9Sstevel@tonic-gate 					 * against its home lgroup.  Note that
5247c478bd9Sstevel@tonic-gate 					 * we notice that a thread is remote
5257c478bd9Sstevel@tonic-gate 					 * only if it's currently executing.
5267c478bd9Sstevel@tonic-gate 					 * This is a reasonable approximation,
5277c478bd9Sstevel@tonic-gate 					 * since queued remote threads are rare.
5287c478bd9Sstevel@tonic-gate 					 * Note also that if we didn't charge
5297c478bd9Sstevel@tonic-gate 					 * it to its home lgroup, remote
5307c478bd9Sstevel@tonic-gate 					 * execution would often make a system
5317c478bd9Sstevel@tonic-gate 					 * appear balanced even though it was
5327c478bd9Sstevel@tonic-gate 					 * not, and thread placement/migration
5337c478bd9Sstevel@tonic-gate 					 * would often not be done correctly.
5347c478bd9Sstevel@tonic-gate 					 */
5357c478bd9Sstevel@tonic-gate 					lgrp_loadavg(t->t_lpl,
5367c478bd9Sstevel@tonic-gate 					    LGRP_LOADAVG_IN_THREAD_MAX, 0);
5377c478bd9Sstevel@tonic-gate 				}
5387c478bd9Sstevel@tonic-gate 			}
5397c478bd9Sstevel@tonic-gate 			lgrp_loadavg(cp->cpu_lpl,
5407c478bd9Sstevel@tonic-gate 			    cpu_nrunnable * LGRP_LOADAVG_IN_THREAD_MAX, 1);
5417c478bd9Sstevel@tonic-gate 		}
5427c478bd9Sstevel@tonic-gate 	} while ((cp = cp->cpu_next) != cpu_list);
5437c478bd9Sstevel@tonic-gate 
5442850d85bSmv143129 	clock_tick_schedule(one_sec);
5457c478bd9Sstevel@tonic-gate 
5467c478bd9Sstevel@tonic-gate 	/*
5477c478bd9Sstevel@tonic-gate 	 * bump time in ticks
5487c478bd9Sstevel@tonic-gate 	 *
5497c478bd9Sstevel@tonic-gate 	 * We rely on there being only one clock thread and hence
5507c478bd9Sstevel@tonic-gate 	 * don't need a lock to protect lbolt.
5517c478bd9Sstevel@tonic-gate 	 */
5527c478bd9Sstevel@tonic-gate 	lbolt++;
5537c478bd9Sstevel@tonic-gate 	atomic_add_64((uint64_t *)&lbolt64, (int64_t)1);
5547c478bd9Sstevel@tonic-gate 
5557c478bd9Sstevel@tonic-gate 	/*
5567c478bd9Sstevel@tonic-gate 	 * Check for a callout that needs be called from the clock
5577c478bd9Sstevel@tonic-gate 	 * thread to support the membership protocol in a clustered
5587c478bd9Sstevel@tonic-gate 	 * system.  Copy the function pointer so that we can reset
5597c478bd9Sstevel@tonic-gate 	 * this to NULL if needed.
5607c478bd9Sstevel@tonic-gate 	 */
5617c478bd9Sstevel@tonic-gate 	if ((funcp = cmm_clock_callout) != NULL)
5627c478bd9Sstevel@tonic-gate 		(*funcp)();
5637c478bd9Sstevel@tonic-gate 
564c97ad5cdSakolb 	if ((funcp = cpucaps_clock_callout) != NULL)
565c97ad5cdSakolb 		(*funcp)();
566c97ad5cdSakolb 
5677c478bd9Sstevel@tonic-gate 	/*
5687c478bd9Sstevel@tonic-gate 	 * Wakeup the cageout thread waiters once per second.
5697c478bd9Sstevel@tonic-gate 	 */
5707c478bd9Sstevel@tonic-gate 	if (one_sec)
5717c478bd9Sstevel@tonic-gate 		kcage_tick();
5727c478bd9Sstevel@tonic-gate 
5737c478bd9Sstevel@tonic-gate 	if (one_sec) {
5747c478bd9Sstevel@tonic-gate 
5757c478bd9Sstevel@tonic-gate 		int drift, absdrift;
5767c478bd9Sstevel@tonic-gate 		timestruc_t tod;
5777c478bd9Sstevel@tonic-gate 		int s;
5787c478bd9Sstevel@tonic-gate 
5797c478bd9Sstevel@tonic-gate 		/*
5807c478bd9Sstevel@tonic-gate 		 * Beginning of precision-kernel code fragment executed
5817c478bd9Sstevel@tonic-gate 		 * every second.
5827c478bd9Sstevel@tonic-gate 		 *
5837c478bd9Sstevel@tonic-gate 		 * On rollover of the second the phase adjustment to be
5847c478bd9Sstevel@tonic-gate 		 * used for the next second is calculated.  Also, the
5857c478bd9Sstevel@tonic-gate 		 * maximum error is increased by the tolerance.  If the
5867c478bd9Sstevel@tonic-gate 		 * PPS frequency discipline code is present, the phase is
5877c478bd9Sstevel@tonic-gate 		 * increased to compensate for the CPU clock oscillator
5887c478bd9Sstevel@tonic-gate 		 * frequency error.
5897c478bd9Sstevel@tonic-gate 		 *
5907c478bd9Sstevel@tonic-gate 		 * On a 32-bit machine and given parameters in the timex.h
5917c478bd9Sstevel@tonic-gate 		 * header file, the maximum phase adjustment is +-512 ms
5927c478bd9Sstevel@tonic-gate 		 * and maximum frequency offset is (a tad less than)
5937c478bd9Sstevel@tonic-gate 		 * +-512 ppm. On a 64-bit machine, you shouldn't need to ask.
5947c478bd9Sstevel@tonic-gate 		 */
5957c478bd9Sstevel@tonic-gate 		time_maxerror += time_tolerance / SCALE_USEC;
5967c478bd9Sstevel@tonic-gate 
5977c478bd9Sstevel@tonic-gate 		/*
5987c478bd9Sstevel@tonic-gate 		 * Leap second processing. If in leap-insert state at
5997c478bd9Sstevel@tonic-gate 		 * the end of the day, the system clock is set back one
6007c478bd9Sstevel@tonic-gate 		 * second; if in leap-delete state, the system clock is
6017c478bd9Sstevel@tonic-gate 		 * set ahead one second. The microtime() routine or
6027c478bd9Sstevel@tonic-gate 		 * external clock driver will insure that reported time
6037c478bd9Sstevel@tonic-gate 		 * is always monotonic. The ugly divides should be
6047c478bd9Sstevel@tonic-gate 		 * replaced.
6057c478bd9Sstevel@tonic-gate 		 */
6067c478bd9Sstevel@tonic-gate 		switch (time_state) {
6077c478bd9Sstevel@tonic-gate 
6087c478bd9Sstevel@tonic-gate 		case TIME_OK:
6097c478bd9Sstevel@tonic-gate 			if (time_status & STA_INS)
6107c478bd9Sstevel@tonic-gate 				time_state = TIME_INS;
6117c478bd9Sstevel@tonic-gate 			else if (time_status & STA_DEL)
6127c478bd9Sstevel@tonic-gate 				time_state = TIME_DEL;
6137c478bd9Sstevel@tonic-gate 			break;
6147c478bd9Sstevel@tonic-gate 
6157c478bd9Sstevel@tonic-gate 		case TIME_INS:
6167c478bd9Sstevel@tonic-gate 			if (hrestime.tv_sec % 86400 == 0) {
6177c478bd9Sstevel@tonic-gate 				s = hr_clock_lock();
6187c478bd9Sstevel@tonic-gate 				hrestime.tv_sec--;
6197c478bd9Sstevel@tonic-gate 				hr_clock_unlock(s);
6207c478bd9Sstevel@tonic-gate 				time_state = TIME_OOP;
6217c478bd9Sstevel@tonic-gate 			}
6227c478bd9Sstevel@tonic-gate 			break;
6237c478bd9Sstevel@tonic-gate 
6247c478bd9Sstevel@tonic-gate 		case TIME_DEL:
6257c478bd9Sstevel@tonic-gate 			if ((hrestime.tv_sec + 1) % 86400 == 0) {
6267c478bd9Sstevel@tonic-gate 				s = hr_clock_lock();
6277c478bd9Sstevel@tonic-gate 				hrestime.tv_sec++;
6287c478bd9Sstevel@tonic-gate 				hr_clock_unlock(s);
6297c478bd9Sstevel@tonic-gate 				time_state = TIME_WAIT;
6307c478bd9Sstevel@tonic-gate 			}
6317c478bd9Sstevel@tonic-gate 			break;
6327c478bd9Sstevel@tonic-gate 
6337c478bd9Sstevel@tonic-gate 		case TIME_OOP:
6347c478bd9Sstevel@tonic-gate 			time_state = TIME_WAIT;
6357c478bd9Sstevel@tonic-gate 			break;
6367c478bd9Sstevel@tonic-gate 
6377c478bd9Sstevel@tonic-gate 		case TIME_WAIT:
6387c478bd9Sstevel@tonic-gate 			if (!(time_status & (STA_INS | STA_DEL)))
6397c478bd9Sstevel@tonic-gate 				time_state = TIME_OK;
6407c478bd9Sstevel@tonic-gate 		default:
6417c478bd9Sstevel@tonic-gate 			break;
6427c478bd9Sstevel@tonic-gate 		}
6437c478bd9Sstevel@tonic-gate 
6447c478bd9Sstevel@tonic-gate 		/*
6457c478bd9Sstevel@tonic-gate 		 * Compute the phase adjustment for the next second. In
6467c478bd9Sstevel@tonic-gate 		 * PLL mode, the offset is reduced by a fixed factor
6477c478bd9Sstevel@tonic-gate 		 * times the time constant. In FLL mode the offset is
6487c478bd9Sstevel@tonic-gate 		 * used directly. In either mode, the maximum phase
6497c478bd9Sstevel@tonic-gate 		 * adjustment for each second is clamped so as to spread
6507c478bd9Sstevel@tonic-gate 		 * the adjustment over not more than the number of
6517c478bd9Sstevel@tonic-gate 		 * seconds between updates.
6527c478bd9Sstevel@tonic-gate 		 */
6537c478bd9Sstevel@tonic-gate 		if (time_offset == 0)
6547c478bd9Sstevel@tonic-gate 			time_adj = 0;
6557c478bd9Sstevel@tonic-gate 		else if (time_offset < 0) {
6567c478bd9Sstevel@tonic-gate 			lltemp = -time_offset;
6577c478bd9Sstevel@tonic-gate 			if (!(time_status & STA_FLL)) {
6587c478bd9Sstevel@tonic-gate 				if ((1 << time_constant) >= SCALE_KG)
6597c478bd9Sstevel@tonic-gate 					lltemp *= (1 << time_constant) /
6607c478bd9Sstevel@tonic-gate 					    SCALE_KG;
6617c478bd9Sstevel@tonic-gate 				else
6627c478bd9Sstevel@tonic-gate 					lltemp = (lltemp / SCALE_KG) >>
6637c478bd9Sstevel@tonic-gate 					    time_constant;
6647c478bd9Sstevel@tonic-gate 			}
6657c478bd9Sstevel@tonic-gate 			if (lltemp > (MAXPHASE / MINSEC) * SCALE_UPDATE)
6667c478bd9Sstevel@tonic-gate 				lltemp = (MAXPHASE / MINSEC) * SCALE_UPDATE;
6677c478bd9Sstevel@tonic-gate 			time_offset += lltemp;
6687c478bd9Sstevel@tonic-gate 			time_adj = -(lltemp * SCALE_PHASE) / hz / SCALE_UPDATE;
6697c478bd9Sstevel@tonic-gate 		} else {
6707c478bd9Sstevel@tonic-gate 			lltemp = time_offset;
6717c478bd9Sstevel@tonic-gate 			if (!(time_status & STA_FLL)) {
6727c478bd9Sstevel@tonic-gate 				if ((1 << time_constant) >= SCALE_KG)
6737c478bd9Sstevel@tonic-gate 					lltemp *= (1 << time_constant) /
6747c478bd9Sstevel@tonic-gate 					    SCALE_KG;
6757c478bd9Sstevel@tonic-gate 				else
6767c478bd9Sstevel@tonic-gate 					lltemp = (lltemp / SCALE_KG) >>
6777c478bd9Sstevel@tonic-gate 					    time_constant;
6787c478bd9Sstevel@tonic-gate 			}
6797c478bd9Sstevel@tonic-gate 			if (lltemp > (MAXPHASE / MINSEC) * SCALE_UPDATE)
6807c478bd9Sstevel@tonic-gate 				lltemp = (MAXPHASE / MINSEC) * SCALE_UPDATE;
6817c478bd9Sstevel@tonic-gate 			time_offset -= lltemp;
6827c478bd9Sstevel@tonic-gate 			time_adj = (lltemp * SCALE_PHASE) / hz / SCALE_UPDATE;
6837c478bd9Sstevel@tonic-gate 		}
6847c478bd9Sstevel@tonic-gate 
6857c478bd9Sstevel@tonic-gate 		/*
6867c478bd9Sstevel@tonic-gate 		 * Compute the frequency estimate and additional phase
6877c478bd9Sstevel@tonic-gate 		 * adjustment due to frequency error for the next
6887c478bd9Sstevel@tonic-gate 		 * second. When the PPS signal is engaged, gnaw on the
6897c478bd9Sstevel@tonic-gate 		 * watchdog counter and update the frequency computed by
6907c478bd9Sstevel@tonic-gate 		 * the pll and the PPS signal.
6917c478bd9Sstevel@tonic-gate 		 */
6927c478bd9Sstevel@tonic-gate 		pps_valid++;
6937c478bd9Sstevel@tonic-gate 		if (pps_valid == PPS_VALID) {
6947c478bd9Sstevel@tonic-gate 			pps_jitter = MAXTIME;
6957c478bd9Sstevel@tonic-gate 			pps_stabil = MAXFREQ;
6967c478bd9Sstevel@tonic-gate 			time_status &= ~(STA_PPSSIGNAL | STA_PPSJITTER |
6977c478bd9Sstevel@tonic-gate 			    STA_PPSWANDER | STA_PPSERROR);
6987c478bd9Sstevel@tonic-gate 		}
6997c478bd9Sstevel@tonic-gate 		lltemp = time_freq + pps_freq;
7007c478bd9Sstevel@tonic-gate 
7017c478bd9Sstevel@tonic-gate 		if (lltemp)
7027c478bd9Sstevel@tonic-gate 			time_adj += (lltemp * SCALE_PHASE) / (SCALE_USEC * hz);
7037c478bd9Sstevel@tonic-gate 
7047c478bd9Sstevel@tonic-gate 		/*
7057c478bd9Sstevel@tonic-gate 		 * End of precision kernel-code fragment
7067c478bd9Sstevel@tonic-gate 		 *
7077c478bd9Sstevel@tonic-gate 		 * The section below should be modified if we are planning
7087c478bd9Sstevel@tonic-gate 		 * to use NTP for synchronization.
7097c478bd9Sstevel@tonic-gate 		 *
7107c478bd9Sstevel@tonic-gate 		 * Note: the clock synchronization code now assumes
7117c478bd9Sstevel@tonic-gate 		 * the following:
7127c478bd9Sstevel@tonic-gate 		 *   - if dosynctodr is 1, then compute the drift between
7137c478bd9Sstevel@tonic-gate 		 *	the tod chip and software time and adjust one or
7147c478bd9Sstevel@tonic-gate 		 *	the other depending on the circumstances
7157c478bd9Sstevel@tonic-gate 		 *
7167c478bd9Sstevel@tonic-gate 		 *   - if dosynctodr is 0, then the tod chip is independent
7177c478bd9Sstevel@tonic-gate 		 *	of the software clock and should not be adjusted,
7187c478bd9Sstevel@tonic-gate 		 *	but allowed to free run.  this allows NTP to sync.
7197c478bd9Sstevel@tonic-gate 		 *	hrestime without any interference from the tod chip.
7207c478bd9Sstevel@tonic-gate 		 */
7217c478bd9Sstevel@tonic-gate 
7222c891a87Ssethg 		tod_validate_deferred = B_FALSE;
7237c478bd9Sstevel@tonic-gate 		mutex_enter(&tod_lock);
7247c478bd9Sstevel@tonic-gate 		tod = tod_get();
7257c478bd9Sstevel@tonic-gate 		drift = tod.tv_sec - hrestime.tv_sec;
7267c478bd9Sstevel@tonic-gate 		absdrift = (drift >= 0) ? drift : -drift;
7277c478bd9Sstevel@tonic-gate 		if (tod_needsync || absdrift > 1) {
7287c478bd9Sstevel@tonic-gate 			int s;
7297c478bd9Sstevel@tonic-gate 			if (absdrift > 2) {
7307c478bd9Sstevel@tonic-gate 				if (!tod_broken && tod_faulted == TOD_NOFAULT) {
7317c478bd9Sstevel@tonic-gate 					s = hr_clock_lock();
7327c478bd9Sstevel@tonic-gate 					hrestime = tod;
7337c478bd9Sstevel@tonic-gate 					membar_enter();	/* hrestime visible */
7347c478bd9Sstevel@tonic-gate 					timedelta = 0;
7353348528fSdm120769 					timechanged++;
7367c478bd9Sstevel@tonic-gate 					tod_needsync = 0;
7377c478bd9Sstevel@tonic-gate 					hr_clock_unlock(s);
73887a18d3fSMadhavan Venkataraman 					callout_hrestime();
73987a18d3fSMadhavan Venkataraman 
7407c478bd9Sstevel@tonic-gate 				}
7417c478bd9Sstevel@tonic-gate 			} else {
7427c478bd9Sstevel@tonic-gate 				if (tod_needsync || !dosynctodr) {
7437c478bd9Sstevel@tonic-gate 					gethrestime(&tod);
7447c478bd9Sstevel@tonic-gate 					tod_set(tod);
7457c478bd9Sstevel@tonic-gate 					s = hr_clock_lock();
7467c478bd9Sstevel@tonic-gate 					if (timedelta == 0)
7477c478bd9Sstevel@tonic-gate 						tod_needsync = 0;
7487c478bd9Sstevel@tonic-gate 					hr_clock_unlock(s);
7497c478bd9Sstevel@tonic-gate 				} else {
7507c478bd9Sstevel@tonic-gate 					/*
7517c478bd9Sstevel@tonic-gate 					 * If the drift is 2 seconds on the
7527c478bd9Sstevel@tonic-gate 					 * money, then the TOD is adjusting
7537c478bd9Sstevel@tonic-gate 					 * the clock;  record that.
7547c478bd9Sstevel@tonic-gate 					 */
7557c478bd9Sstevel@tonic-gate 					clock_adj_hist[adj_hist_entry++ %
7567c478bd9Sstevel@tonic-gate 					    CLOCK_ADJ_HIST_SIZE] = lbolt64;
7577c478bd9Sstevel@tonic-gate 					s = hr_clock_lock();
7587c478bd9Sstevel@tonic-gate 					timedelta = (int64_t)drift*NANOSEC;
7597c478bd9Sstevel@tonic-gate 					hr_clock_unlock(s);
7607c478bd9Sstevel@tonic-gate 				}
7617c478bd9Sstevel@tonic-gate 			}
7627c478bd9Sstevel@tonic-gate 		}
7637c478bd9Sstevel@tonic-gate 		one_sec = 0;
7647c478bd9Sstevel@tonic-gate 		time = gethrestime_sec();  /* for crusty old kmem readers */
7657c478bd9Sstevel@tonic-gate 		mutex_exit(&tod_lock);
7667c478bd9Sstevel@tonic-gate 
7677c478bd9Sstevel@tonic-gate 		/*
7687c478bd9Sstevel@tonic-gate 		 * Some drivers still depend on this... XXX
7697c478bd9Sstevel@tonic-gate 		 */
7707c478bd9Sstevel@tonic-gate 		cv_broadcast(&lbolt_cv);
7717c478bd9Sstevel@tonic-gate 
7727c478bd9Sstevel@tonic-gate 		sysinfo.updates++;
7737c478bd9Sstevel@tonic-gate 		vminfo.freemem += freemem;
7747c478bd9Sstevel@tonic-gate 		{
7757c478bd9Sstevel@tonic-gate 			pgcnt_t maxswap, resv, free;
7767c478bd9Sstevel@tonic-gate 			pgcnt_t avail =
7777c478bd9Sstevel@tonic-gate 			    MAX((spgcnt_t)(availrmem - swapfs_minfree), 0);
7787c478bd9Sstevel@tonic-gate 
7793aedfe0bSmishra 			maxswap = k_anoninfo.ani_mem_resv +
7803aedfe0bSmishra 			    k_anoninfo.ani_max +avail;
7817c478bd9Sstevel@tonic-gate 			free = k_anoninfo.ani_free + avail;
7827c478bd9Sstevel@tonic-gate 			resv = k_anoninfo.ani_phys_resv +
7837c478bd9Sstevel@tonic-gate 			    k_anoninfo.ani_mem_resv;
7847c478bd9Sstevel@tonic-gate 
7857c478bd9Sstevel@tonic-gate 			vminfo.swap_resv += resv;
7867c478bd9Sstevel@tonic-gate 			/* number of reserved and allocated pages */
7877c478bd9Sstevel@tonic-gate #ifdef	DEBUG
7887c478bd9Sstevel@tonic-gate 			if (maxswap < free)
7897c478bd9Sstevel@tonic-gate 				cmn_err(CE_WARN, "clock: maxswap < free");
7907c478bd9Sstevel@tonic-gate 			if (maxswap < resv)
7917c478bd9Sstevel@tonic-gate 				cmn_err(CE_WARN, "clock: maxswap < resv");
7927c478bd9Sstevel@tonic-gate #endif
7937c478bd9Sstevel@tonic-gate 			vminfo.swap_alloc += maxswap - free;
7947c478bd9Sstevel@tonic-gate 			vminfo.swap_avail += maxswap - resv;
7957c478bd9Sstevel@tonic-gate 			vminfo.swap_free += free;
7967c478bd9Sstevel@tonic-gate 		}
7977c478bd9Sstevel@tonic-gate 		if (nrunnable) {
7987c478bd9Sstevel@tonic-gate 			sysinfo.runque += nrunnable;
7997c478bd9Sstevel@tonic-gate 			sysinfo.runocc++;
8007c478bd9Sstevel@tonic-gate 		}
8017c478bd9Sstevel@tonic-gate 		if (nswapped) {
8027c478bd9Sstevel@tonic-gate 			sysinfo.swpque += nswapped;
8037c478bd9Sstevel@tonic-gate 			sysinfo.swpocc++;
8047c478bd9Sstevel@tonic-gate 		}
8057c478bd9Sstevel@tonic-gate 		sysinfo.waiting += w_io;
8067c478bd9Sstevel@tonic-gate 
8077c478bd9Sstevel@tonic-gate 		/*
8087c478bd9Sstevel@tonic-gate 		 * Wake up fsflush to write out DELWRI
8097c478bd9Sstevel@tonic-gate 		 * buffers, dirty pages and other cached
8107c478bd9Sstevel@tonic-gate 		 * administrative data, e.g. inodes.
8117c478bd9Sstevel@tonic-gate 		 */
8127c478bd9Sstevel@tonic-gate 		if (--fsflushcnt <= 0) {
8137c478bd9Sstevel@tonic-gate 			fsflushcnt = tune.t_fsflushr;
8147c478bd9Sstevel@tonic-gate 			cv_signal(&fsflush_cv);
8157c478bd9Sstevel@tonic-gate 		}
8167c478bd9Sstevel@tonic-gate 
8177c478bd9Sstevel@tonic-gate 		vmmeter();
8187c478bd9Sstevel@tonic-gate 		calcloadavg(genloadavg(&loadavg), hp_avenrun);
8197c478bd9Sstevel@tonic-gate 		for (i = 0; i < 3; i++)
8207c478bd9Sstevel@tonic-gate 			/*
8217c478bd9Sstevel@tonic-gate 			 * At the moment avenrun[] can only hold 31
8227c478bd9Sstevel@tonic-gate 			 * bits of load average as it is a signed
8237c478bd9Sstevel@tonic-gate 			 * int in the API. We need to ensure that
8247c478bd9Sstevel@tonic-gate 			 * hp_avenrun[i] >> (16 - FSHIFT) will not be
8257c478bd9Sstevel@tonic-gate 			 * too large. If it is, we put the largest value
8267c478bd9Sstevel@tonic-gate 			 * that we can use into avenrun[i]. This is
8277c478bd9Sstevel@tonic-gate 			 * kludgey, but about all we can do until we
8287c478bd9Sstevel@tonic-gate 			 * avenrun[] is declared as an array of uint64[]
8297c478bd9Sstevel@tonic-gate 			 */
8307c478bd9Sstevel@tonic-gate 			if (hp_avenrun[i] < ((uint64_t)1<<(31+16-FSHIFT)))
8317c478bd9Sstevel@tonic-gate 				avenrun[i] = (int32_t)(hp_avenrun[i] >>
8327c478bd9Sstevel@tonic-gate 				    (16 - FSHIFT));
8337c478bd9Sstevel@tonic-gate 			else
8347c478bd9Sstevel@tonic-gate 				avenrun[i] = 0x7fffffff;
8357c478bd9Sstevel@tonic-gate 
8367c478bd9Sstevel@tonic-gate 		cpupart = cp_list_head;
8377c478bd9Sstevel@tonic-gate 		do {
8387c478bd9Sstevel@tonic-gate 			calcloadavg(genloadavg(&cpupart->cp_loadavg),
8397c478bd9Sstevel@tonic-gate 			    cpupart->cp_hp_avenrun);
8407c478bd9Sstevel@tonic-gate 		} while ((cpupart = cpupart->cp_next) != cp_list_head);
8417c478bd9Sstevel@tonic-gate 
8427c478bd9Sstevel@tonic-gate 		/*
8437c478bd9Sstevel@tonic-gate 		 * Wake up the swapper thread if necessary.
8447c478bd9Sstevel@tonic-gate 		 */
8457c478bd9Sstevel@tonic-gate 		if (runin ||
8467c478bd9Sstevel@tonic-gate 		    (runout && (avefree < desfree || wake_sched_sec))) {
8477c478bd9Sstevel@tonic-gate 			t = &t0;
8487c478bd9Sstevel@tonic-gate 			thread_lock(t);
8497c478bd9Sstevel@tonic-gate 			if (t->t_state == TS_STOPPED) {
8507c478bd9Sstevel@tonic-gate 				runin = runout = 0;
8517c478bd9Sstevel@tonic-gate 				wake_sched_sec = 0;
8527c478bd9Sstevel@tonic-gate 				t->t_whystop = 0;
8537c478bd9Sstevel@tonic-gate 				t->t_whatstop = 0;
8547c478bd9Sstevel@tonic-gate 				t->t_schedflag &= ~TS_ALLSTART;
8557c478bd9Sstevel@tonic-gate 				THREAD_TRANSITION(t);
8567c478bd9Sstevel@tonic-gate 				setfrontdq(t);
8577c478bd9Sstevel@tonic-gate 			}
8587c478bd9Sstevel@tonic-gate 			thread_unlock(t);
8597c478bd9Sstevel@tonic-gate 		}
8607c478bd9Sstevel@tonic-gate 	}
8617c478bd9Sstevel@tonic-gate 
8627c478bd9Sstevel@tonic-gate 	/*
8637c478bd9Sstevel@tonic-gate 	 * Wake up the swapper if any high priority swapped-out threads
8647c478bd9Sstevel@tonic-gate 	 * became runable during the last tick.
8657c478bd9Sstevel@tonic-gate 	 */
8667c478bd9Sstevel@tonic-gate 	if (wake_sched) {
8677c478bd9Sstevel@tonic-gate 		t = &t0;
8687c478bd9Sstevel@tonic-gate 		thread_lock(t);
8697c478bd9Sstevel@tonic-gate 		if (t->t_state == TS_STOPPED) {
8707c478bd9Sstevel@tonic-gate 			runin = runout = 0;
8717c478bd9Sstevel@tonic-gate 			wake_sched = 0;
8727c478bd9Sstevel@tonic-gate 			t->t_whystop = 0;
8737c478bd9Sstevel@tonic-gate 			t->t_whatstop = 0;
8747c478bd9Sstevel@tonic-gate 			t->t_schedflag &= ~TS_ALLSTART;
8757c478bd9Sstevel@tonic-gate 			THREAD_TRANSITION(t);
8767c478bd9Sstevel@tonic-gate 			setfrontdq(t);
8777c478bd9Sstevel@tonic-gate 		}
8787c478bd9Sstevel@tonic-gate 		thread_unlock(t);
8797c478bd9Sstevel@tonic-gate 	}
8807c478bd9Sstevel@tonic-gate }
8817c478bd9Sstevel@tonic-gate 
8827c478bd9Sstevel@tonic-gate void
8837c478bd9Sstevel@tonic-gate clock_init(void)
8847c478bd9Sstevel@tonic-gate {
8857c478bd9Sstevel@tonic-gate 	cyc_handler_t hdlr;
8867c478bd9Sstevel@tonic-gate 	cyc_time_t when;
8877c478bd9Sstevel@tonic-gate 
8887c478bd9Sstevel@tonic-gate 	hdlr.cyh_func = (cyc_func_t)clock;
8897c478bd9Sstevel@tonic-gate 	hdlr.cyh_level = CY_LOCK_LEVEL;
8907c478bd9Sstevel@tonic-gate 	hdlr.cyh_arg = NULL;
8917c478bd9Sstevel@tonic-gate 
8927c478bd9Sstevel@tonic-gate 	when.cyt_when = 0;
8937c478bd9Sstevel@tonic-gate 	when.cyt_interval = nsec_per_tick;
8947c478bd9Sstevel@tonic-gate 
8957c478bd9Sstevel@tonic-gate 	mutex_enter(&cpu_lock);
8967c478bd9Sstevel@tonic-gate 	clock_cyclic = cyclic_add(&hdlr, &when);
8977c478bd9Sstevel@tonic-gate 	mutex_exit(&cpu_lock);
898dd4eeefdSeota 
899dd4eeefdSeota 	/*
900dd4eeefdSeota 	 * cyclic_timer is dedicated to the ddi interface, which
901dd4eeefdSeota 	 * uses the same clock resolution as the system one.
902dd4eeefdSeota 	 */
903dd4eeefdSeota 	hdlr.cyh_func = (cyc_func_t)cyclic_timer;
904dd4eeefdSeota 	hdlr.cyh_level = CY_LOCK_LEVEL;
905dd4eeefdSeota 	hdlr.cyh_arg = NULL;
906dd4eeefdSeota 
907dd4eeefdSeota 	mutex_enter(&cpu_lock);
9083db6d5a2Seota 	ddi_timer_cyclic = cyclic_add(&hdlr, &when);
909dd4eeefdSeota 	mutex_exit(&cpu_lock);
9107c478bd9Sstevel@tonic-gate }
9117c478bd9Sstevel@tonic-gate 
9127c478bd9Sstevel@tonic-gate /*
9137c478bd9Sstevel@tonic-gate  * Called before calcloadavg to get 10-sec moving loadavg together
9147c478bd9Sstevel@tonic-gate  */
9157c478bd9Sstevel@tonic-gate 
9167c478bd9Sstevel@tonic-gate static int
9177c478bd9Sstevel@tonic-gate genloadavg(struct loadavg_s *avgs)
9187c478bd9Sstevel@tonic-gate {
9197c478bd9Sstevel@tonic-gate 	int avg;
9207c478bd9Sstevel@tonic-gate 	int spos; /* starting position */
9217c478bd9Sstevel@tonic-gate 	int cpos; /* moving current position */
9227c478bd9Sstevel@tonic-gate 	int i;
9237c478bd9Sstevel@tonic-gate 	int slen;
9247c478bd9Sstevel@tonic-gate 	hrtime_t hr_avg;
9257c478bd9Sstevel@tonic-gate 
9267c478bd9Sstevel@tonic-gate 	/* 10-second snapshot, calculate first positon */
9277c478bd9Sstevel@tonic-gate 	if (avgs->lg_len == 0) {
9287c478bd9Sstevel@tonic-gate 		return (0);
9297c478bd9Sstevel@tonic-gate 	}
9307c478bd9Sstevel@tonic-gate 	slen = avgs->lg_len < S_MOVAVG_SZ ? avgs->lg_len : S_MOVAVG_SZ;
9317c478bd9Sstevel@tonic-gate 
9327c478bd9Sstevel@tonic-gate 	spos = (avgs->lg_cur - 1) >= 0 ? avgs->lg_cur - 1 :
9337c478bd9Sstevel@tonic-gate 	    S_LOADAVG_SZ + (avgs->lg_cur - 1);
9347c478bd9Sstevel@tonic-gate 	for (i = hr_avg = 0; i < slen; i++) {
9357c478bd9Sstevel@tonic-gate 		cpos = (spos - i) >= 0 ? spos - i : S_LOADAVG_SZ + (spos - i);
9367c478bd9Sstevel@tonic-gate 		hr_avg += avgs->lg_loads[cpos];
9377c478bd9Sstevel@tonic-gate 	}
9387c478bd9Sstevel@tonic-gate 
9397c478bd9Sstevel@tonic-gate 	hr_avg = hr_avg / slen;
9407c478bd9Sstevel@tonic-gate 	avg = hr_avg / (NANOSEC / LGRP_LOADAVG_IN_THREAD_MAX);
9417c478bd9Sstevel@tonic-gate 
9427c478bd9Sstevel@tonic-gate 	return (avg);
9437c478bd9Sstevel@tonic-gate }
9447c478bd9Sstevel@tonic-gate 
9457c478bd9Sstevel@tonic-gate /*
9467c478bd9Sstevel@tonic-gate  * Run every second from clock () to update the loadavg count available to the
9477c478bd9Sstevel@tonic-gate  * system and cpu-partitions.
9487c478bd9Sstevel@tonic-gate  *
9497c478bd9Sstevel@tonic-gate  * This works by sampling the previous usr, sys, wait time elapsed,
9507c478bd9Sstevel@tonic-gate  * computing a delta, and adding that delta to the elapsed usr, sys,
9517c478bd9Sstevel@tonic-gate  * wait increase.
9527c478bd9Sstevel@tonic-gate  */
9537c478bd9Sstevel@tonic-gate 
9547c478bd9Sstevel@tonic-gate static void
9557c478bd9Sstevel@tonic-gate loadavg_update()
9567c478bd9Sstevel@tonic-gate {
9577c478bd9Sstevel@tonic-gate 	cpu_t *cp;
9587c478bd9Sstevel@tonic-gate 	cpupart_t *cpupart;
9597c478bd9Sstevel@tonic-gate 	hrtime_t cpu_total;
9607c478bd9Sstevel@tonic-gate 	int prev;
9617c478bd9Sstevel@tonic-gate 
9627c478bd9Sstevel@tonic-gate 	cp = cpu_list;
9637c478bd9Sstevel@tonic-gate 	loadavg.lg_total = 0;
9647c478bd9Sstevel@tonic-gate 
9657c478bd9Sstevel@tonic-gate 	/*
9667c478bd9Sstevel@tonic-gate 	 * first pass totals up per-cpu statistics for system and cpu
9677c478bd9Sstevel@tonic-gate 	 * partitions
9687c478bd9Sstevel@tonic-gate 	 */
9697c478bd9Sstevel@tonic-gate 
9707c478bd9Sstevel@tonic-gate 	do {
9717c478bd9Sstevel@tonic-gate 		struct loadavg_s *lavg;
9727c478bd9Sstevel@tonic-gate 
9737c478bd9Sstevel@tonic-gate 		lavg = &cp->cpu_loadavg;
9747c478bd9Sstevel@tonic-gate 
9757c478bd9Sstevel@tonic-gate 		cpu_total = cp->cpu_acct[CMS_USER] +
9767c478bd9Sstevel@tonic-gate 		    cp->cpu_acct[CMS_SYSTEM] + cp->cpu_waitrq;
9777c478bd9Sstevel@tonic-gate 		/* compute delta against last total */
9787c478bd9Sstevel@tonic-gate 		scalehrtime(&cpu_total);
9797c478bd9Sstevel@tonic-gate 		prev = (lavg->lg_cur - 1) >= 0 ? lavg->lg_cur - 1 :
9807c478bd9Sstevel@tonic-gate 		    S_LOADAVG_SZ + (lavg->lg_cur - 1);
9817c478bd9Sstevel@tonic-gate 		if (lavg->lg_loads[prev] <= 0) {
9827c478bd9Sstevel@tonic-gate 			lavg->lg_loads[lavg->lg_cur] = cpu_total;
9837c478bd9Sstevel@tonic-gate 			cpu_total = 0;
9847c478bd9Sstevel@tonic-gate 		} else {
9857c478bd9Sstevel@tonic-gate 			lavg->lg_loads[lavg->lg_cur] = cpu_total;
9867c478bd9Sstevel@tonic-gate 			cpu_total = cpu_total - lavg->lg_loads[prev];
9877c478bd9Sstevel@tonic-gate 			if (cpu_total < 0)
9887c478bd9Sstevel@tonic-gate 				cpu_total = 0;
9897c478bd9Sstevel@tonic-gate 		}
9907c478bd9Sstevel@tonic-gate 
9917c478bd9Sstevel@tonic-gate 		lavg->lg_cur = (lavg->lg_cur + 1) % S_LOADAVG_SZ;
9927c478bd9Sstevel@tonic-gate 		lavg->lg_len = (lavg->lg_len + 1) < S_LOADAVG_SZ ?
9937c478bd9Sstevel@tonic-gate 		    lavg->lg_len + 1 : S_LOADAVG_SZ;
9947c478bd9Sstevel@tonic-gate 
9957c478bd9Sstevel@tonic-gate 		loadavg.lg_total += cpu_total;
9967c478bd9Sstevel@tonic-gate 		cp->cpu_part->cp_loadavg.lg_total += cpu_total;
9977c478bd9Sstevel@tonic-gate 
9987c478bd9Sstevel@tonic-gate 	} while ((cp = cp->cpu_next) != cpu_list);
9997c478bd9Sstevel@tonic-gate 
10007c478bd9Sstevel@tonic-gate 	loadavg.lg_loads[loadavg.lg_cur] = loadavg.lg_total;
10017c478bd9Sstevel@tonic-gate 	loadavg.lg_cur = (loadavg.lg_cur + 1) % S_LOADAVG_SZ;
10027c478bd9Sstevel@tonic-gate 	loadavg.lg_len = (loadavg.lg_len + 1) < S_LOADAVG_SZ ?
10037c478bd9Sstevel@tonic-gate 	    loadavg.lg_len + 1 : S_LOADAVG_SZ;
10047c478bd9Sstevel@tonic-gate 	/*
10057c478bd9Sstevel@tonic-gate 	 * Second pass updates counts
10067c478bd9Sstevel@tonic-gate 	 */
10077c478bd9Sstevel@tonic-gate 	cpupart = cp_list_head;
10087c478bd9Sstevel@tonic-gate 
10097c478bd9Sstevel@tonic-gate 	do {
10107c478bd9Sstevel@tonic-gate 		struct loadavg_s *lavg;
10117c478bd9Sstevel@tonic-gate 
10127c478bd9Sstevel@tonic-gate 		lavg = &cpupart->cp_loadavg;
10137c478bd9Sstevel@tonic-gate 		lavg->lg_loads[lavg->lg_cur] = lavg->lg_total;
10147c478bd9Sstevel@tonic-gate 		lavg->lg_total = 0;
10157c478bd9Sstevel@tonic-gate 		lavg->lg_cur = (lavg->lg_cur + 1) % S_LOADAVG_SZ;
10167c478bd9Sstevel@tonic-gate 		lavg->lg_len = (lavg->lg_len + 1) < S_LOADAVG_SZ ?
10177c478bd9Sstevel@tonic-gate 		    lavg->lg_len + 1 : S_LOADAVG_SZ;
10187c478bd9Sstevel@tonic-gate 
10197c478bd9Sstevel@tonic-gate 	} while ((cpupart = cpupart->cp_next) != cp_list_head);
10207c478bd9Sstevel@tonic-gate 
10217c478bd9Sstevel@tonic-gate }
10227c478bd9Sstevel@tonic-gate 
10237c478bd9Sstevel@tonic-gate /*
10247c478bd9Sstevel@tonic-gate  * clock_update() - local clock update
10257c478bd9Sstevel@tonic-gate  *
10267c478bd9Sstevel@tonic-gate  * This routine is called by ntp_adjtime() to update the local clock
10277c478bd9Sstevel@tonic-gate  * phase and frequency. The implementation is of an
10287c478bd9Sstevel@tonic-gate  * adaptive-parameter, hybrid phase/frequency-lock loop (PLL/FLL). The
10297c478bd9Sstevel@tonic-gate  * routine computes new time and frequency offset estimates for each
10307c478bd9Sstevel@tonic-gate  * call.  The PPS signal itself determines the new time offset,
10317c478bd9Sstevel@tonic-gate  * instead of the calling argument.  Presumably, calls to
10327c478bd9Sstevel@tonic-gate  * ntp_adjtime() occur only when the caller believes the local clock
10337c478bd9Sstevel@tonic-gate  * is valid within some bound (+-128 ms with NTP). If the caller's
10347c478bd9Sstevel@tonic-gate  * time is far different than the PPS time, an argument will ensue,
10357c478bd9Sstevel@tonic-gate  * and it's not clear who will lose.
10367c478bd9Sstevel@tonic-gate  *
10377c478bd9Sstevel@tonic-gate  * For uncompensated quartz crystal oscillatores and nominal update
10387c478bd9Sstevel@tonic-gate  * intervals less than 1024 s, operation should be in phase-lock mode
10397c478bd9Sstevel@tonic-gate  * (STA_FLL = 0), where the loop is disciplined to phase. For update
10407c478bd9Sstevel@tonic-gate  * intervals greater than this, operation should be in frequency-lock
10417c478bd9Sstevel@tonic-gate  * mode (STA_FLL = 1), where the loop is disciplined to frequency.
10427c478bd9Sstevel@tonic-gate  *
10437c478bd9Sstevel@tonic-gate  * Note: mutex(&tod_lock) is in effect.
10447c478bd9Sstevel@tonic-gate  */
10457c478bd9Sstevel@tonic-gate void
10467c478bd9Sstevel@tonic-gate clock_update(int offset)
10477c478bd9Sstevel@tonic-gate {
10487c478bd9Sstevel@tonic-gate 	int ltemp, mtemp, s;
10497c478bd9Sstevel@tonic-gate 
10507c478bd9Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&tod_lock));
10517c478bd9Sstevel@tonic-gate 
10527c478bd9Sstevel@tonic-gate 	if (!(time_status & STA_PLL) && !(time_status & STA_PPSTIME))
10537c478bd9Sstevel@tonic-gate 		return;
10547c478bd9Sstevel@tonic-gate 	ltemp = offset;
10557c478bd9Sstevel@tonic-gate 	if ((time_status & STA_PPSTIME) && (time_status & STA_PPSSIGNAL))
10567c478bd9Sstevel@tonic-gate 		ltemp = pps_offset;
10577c478bd9Sstevel@tonic-gate 
10587c478bd9Sstevel@tonic-gate 	/*
10597c478bd9Sstevel@tonic-gate 	 * Scale the phase adjustment and clamp to the operating range.
10607c478bd9Sstevel@tonic-gate 	 */
10617c478bd9Sstevel@tonic-gate 	if (ltemp > MAXPHASE)
10627c478bd9Sstevel@tonic-gate 		time_offset = MAXPHASE * SCALE_UPDATE;
10637c478bd9Sstevel@tonic-gate 	else if (ltemp < -MAXPHASE)
10647c478bd9Sstevel@tonic-gate 		time_offset = -(MAXPHASE * SCALE_UPDATE);
10657c478bd9Sstevel@tonic-gate 	else
10667c478bd9Sstevel@tonic-gate 		time_offset = ltemp * SCALE_UPDATE;
10677c478bd9Sstevel@tonic-gate 
10687c478bd9Sstevel@tonic-gate 	/*
10697c478bd9Sstevel@tonic-gate 	 * Select whether the frequency is to be controlled and in which
10707c478bd9Sstevel@tonic-gate 	 * mode (PLL or FLL). Clamp to the operating range. Ugly
10717c478bd9Sstevel@tonic-gate 	 * multiply/divide should be replaced someday.
10727c478bd9Sstevel@tonic-gate 	 */
10737c478bd9Sstevel@tonic-gate 	if (time_status & STA_FREQHOLD || time_reftime == 0)
10747c478bd9Sstevel@tonic-gate 		time_reftime = hrestime.tv_sec;
10757c478bd9Sstevel@tonic-gate 
10767c478bd9Sstevel@tonic-gate 	mtemp = hrestime.tv_sec - time_reftime;
10777c478bd9Sstevel@tonic-gate 	time_reftime = hrestime.tv_sec;
10787c478bd9Sstevel@tonic-gate 
10797c478bd9Sstevel@tonic-gate 	if (time_status & STA_FLL) {
10807c478bd9Sstevel@tonic-gate 		if (mtemp >= MINSEC) {
10817c478bd9Sstevel@tonic-gate 			ltemp = ((time_offset / mtemp) * (SCALE_USEC /
10827c478bd9Sstevel@tonic-gate 			    SCALE_UPDATE));
10837c478bd9Sstevel@tonic-gate 			if (ltemp)
10847c478bd9Sstevel@tonic-gate 				time_freq += ltemp / SCALE_KH;
10857c478bd9Sstevel@tonic-gate 		}
10867c478bd9Sstevel@tonic-gate 	} else {
10877c478bd9Sstevel@tonic-gate 		if (mtemp < MAXSEC) {
10887c478bd9Sstevel@tonic-gate 			ltemp *= mtemp;
10897c478bd9Sstevel@tonic-gate 			if (ltemp)
10907c478bd9Sstevel@tonic-gate 				time_freq += (int)(((int64_t)ltemp *
10917c478bd9Sstevel@tonic-gate 				    SCALE_USEC) / SCALE_KF)
10927c478bd9Sstevel@tonic-gate 				    / (1 << (time_constant * 2));
10937c478bd9Sstevel@tonic-gate 		}
10947c478bd9Sstevel@tonic-gate 	}
10957c478bd9Sstevel@tonic-gate 	if (time_freq > time_tolerance)
10967c478bd9Sstevel@tonic-gate 		time_freq = time_tolerance;
10977c478bd9Sstevel@tonic-gate 	else if (time_freq < -time_tolerance)
10987c478bd9Sstevel@tonic-gate 		time_freq = -time_tolerance;
10997c478bd9Sstevel@tonic-gate 
11007c478bd9Sstevel@tonic-gate 	s = hr_clock_lock();
11017c478bd9Sstevel@tonic-gate 	tod_needsync = 1;
11027c478bd9Sstevel@tonic-gate 	hr_clock_unlock(s);
11037c478bd9Sstevel@tonic-gate }
11047c478bd9Sstevel@tonic-gate 
11057c478bd9Sstevel@tonic-gate /*
11067c478bd9Sstevel@tonic-gate  * ddi_hardpps() - discipline CPU clock oscillator to external PPS signal
11077c478bd9Sstevel@tonic-gate  *
11087c478bd9Sstevel@tonic-gate  * This routine is called at each PPS interrupt in order to discipline
11097c478bd9Sstevel@tonic-gate  * the CPU clock oscillator to the PPS signal. It measures the PPS phase
11107c478bd9Sstevel@tonic-gate  * and leaves it in a handy spot for the clock() routine. It
11117c478bd9Sstevel@tonic-gate  * integrates successive PPS phase differences and calculates the
11127c478bd9Sstevel@tonic-gate  * frequency offset. This is used in clock() to discipline the CPU
11137c478bd9Sstevel@tonic-gate  * clock oscillator so that intrinsic frequency error is cancelled out.
11147c478bd9Sstevel@tonic-gate  * The code requires the caller to capture the time and hardware counter
11157c478bd9Sstevel@tonic-gate  * value at the on-time PPS signal transition.
11167c478bd9Sstevel@tonic-gate  *
11177c478bd9Sstevel@tonic-gate  * Note that, on some Unix systems, this routine runs at an interrupt
11187c478bd9Sstevel@tonic-gate  * priority level higher than the timer interrupt routine clock().
11197c478bd9Sstevel@tonic-gate  * Therefore, the variables used are distinct from the clock()
11207c478bd9Sstevel@tonic-gate  * variables, except for certain exceptions: The PPS frequency pps_freq
11217c478bd9Sstevel@tonic-gate  * and phase pps_offset variables are determined by this routine and
11227c478bd9Sstevel@tonic-gate  * updated atomically. The time_tolerance variable can be considered a
11237c478bd9Sstevel@tonic-gate  * constant, since it is infrequently changed, and then only when the
11247c478bd9Sstevel@tonic-gate  * PPS signal is disabled. The watchdog counter pps_valid is updated
11257c478bd9Sstevel@tonic-gate  * once per second by clock() and is atomically cleared in this
11267c478bd9Sstevel@tonic-gate  * routine.
11277c478bd9Sstevel@tonic-gate  *
11287c478bd9Sstevel@tonic-gate  * tvp is the time of the last tick; usec is a microsecond count since the
11297c478bd9Sstevel@tonic-gate  * last tick.
11307c478bd9Sstevel@tonic-gate  *
11317c478bd9Sstevel@tonic-gate  * Note: In Solaris systems, the tick value is actually given by
11327c478bd9Sstevel@tonic-gate  *       usec_per_tick.  This is called from the serial driver cdintr(),
11337c478bd9Sstevel@tonic-gate  *	 or equivalent, at a high PIL.  Because the kernel keeps a
11347c478bd9Sstevel@tonic-gate  *	 highresolution time, the following code can accept either
11357c478bd9Sstevel@tonic-gate  *	 the traditional argument pair, or the current highres timestamp
11367c478bd9Sstevel@tonic-gate  *       in tvp and zero in usec.
11377c478bd9Sstevel@tonic-gate  */
11387c478bd9Sstevel@tonic-gate void
11397c478bd9Sstevel@tonic-gate ddi_hardpps(struct timeval *tvp, int usec)
11407c478bd9Sstevel@tonic-gate {
11417c478bd9Sstevel@tonic-gate 	int u_usec, v_usec, bigtick;
11427c478bd9Sstevel@tonic-gate 	time_t cal_sec;
11437c478bd9Sstevel@tonic-gate 	int cal_usec;
11447c478bd9Sstevel@tonic-gate 
11457c478bd9Sstevel@tonic-gate 	/*
11467c478bd9Sstevel@tonic-gate 	 * An occasional glitch can be produced when the PPS interrupt
11477c478bd9Sstevel@tonic-gate 	 * occurs in the clock() routine before the time variable is
11487c478bd9Sstevel@tonic-gate 	 * updated. Here the offset is discarded when the difference
11497c478bd9Sstevel@tonic-gate 	 * between it and the last one is greater than tick/2, but not
11507c478bd9Sstevel@tonic-gate 	 * if the interval since the first discard exceeds 30 s.
11517c478bd9Sstevel@tonic-gate 	 */
11527c478bd9Sstevel@tonic-gate 	time_status |= STA_PPSSIGNAL;
11537c478bd9Sstevel@tonic-gate 	time_status &= ~(STA_PPSJITTER | STA_PPSWANDER | STA_PPSERROR);
11547c478bd9Sstevel@tonic-gate 	pps_valid = 0;
11557c478bd9Sstevel@tonic-gate 	u_usec = -tvp->tv_usec;
11567c478bd9Sstevel@tonic-gate 	if (u_usec < -(MICROSEC/2))
11577c478bd9Sstevel@tonic-gate 		u_usec += MICROSEC;
11587c478bd9Sstevel@tonic-gate 	v_usec = pps_offset - u_usec;
11597c478bd9Sstevel@tonic-gate 	if (v_usec < 0)
11607c478bd9Sstevel@tonic-gate 		v_usec = -v_usec;
11617c478bd9Sstevel@tonic-gate 	if (v_usec > (usec_per_tick >> 1)) {
11627c478bd9Sstevel@tonic-gate 		if (pps_glitch > MAXGLITCH) {
11637c478bd9Sstevel@tonic-gate 			pps_glitch = 0;
11647c478bd9Sstevel@tonic-gate 			pps_tf[2] = u_usec;
11657c478bd9Sstevel@tonic-gate 			pps_tf[1] = u_usec;
11667c478bd9Sstevel@tonic-gate 		} else {
11677c478bd9Sstevel@tonic-gate 			pps_glitch++;
11687c478bd9Sstevel@tonic-gate 			u_usec = pps_offset;
11697c478bd9Sstevel@tonic-gate 		}
11707c478bd9Sstevel@tonic-gate 	} else
11717c478bd9Sstevel@tonic-gate 		pps_glitch = 0;
11727c478bd9Sstevel@tonic-gate 
11737c478bd9Sstevel@tonic-gate 	/*
11747c478bd9Sstevel@tonic-gate 	 * A three-stage median filter is used to help deglitch the pps
11757c478bd9Sstevel@tonic-gate 	 * time. The median sample becomes the time offset estimate; the
11767c478bd9Sstevel@tonic-gate 	 * difference between the other two samples becomes the time
11777c478bd9Sstevel@tonic-gate 	 * dispersion (jitter) estimate.
11787c478bd9Sstevel@tonic-gate 	 */
11797c478bd9Sstevel@tonic-gate 	pps_tf[2] = pps_tf[1];
11807c478bd9Sstevel@tonic-gate 	pps_tf[1] = pps_tf[0];
11817c478bd9Sstevel@tonic-gate 	pps_tf[0] = u_usec;
11827c478bd9Sstevel@tonic-gate 	if (pps_tf[0] > pps_tf[1]) {
11837c478bd9Sstevel@tonic-gate 		if (pps_tf[1] > pps_tf[2]) {
11847c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[1];		/* 0 1 2 */
11857c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[0] - pps_tf[2];
11867c478bd9Sstevel@tonic-gate 		} else if (pps_tf[2] > pps_tf[0]) {
11877c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[0];		/* 2 0 1 */
11887c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[2] - pps_tf[1];
11897c478bd9Sstevel@tonic-gate 		} else {
11907c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[2];		/* 0 2 1 */
11917c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[0] - pps_tf[1];
11927c478bd9Sstevel@tonic-gate 		}
11937c478bd9Sstevel@tonic-gate 	} else {
11947c478bd9Sstevel@tonic-gate 		if (pps_tf[1] < pps_tf[2]) {
11957c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[1];		/* 2 1 0 */
11967c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[2] - pps_tf[0];
11977c478bd9Sstevel@tonic-gate 		} else  if (pps_tf[2] < pps_tf[0]) {
11987c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[0];		/* 1 0 2 */
11997c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[1] - pps_tf[2];
12007c478bd9Sstevel@tonic-gate 		} else {
12017c478bd9Sstevel@tonic-gate 			pps_offset = pps_tf[2];		/* 1 2 0 */
12027c478bd9Sstevel@tonic-gate 			v_usec = pps_tf[1] - pps_tf[0];
12037c478bd9Sstevel@tonic-gate 		}
12047c478bd9Sstevel@tonic-gate 	}
12057c478bd9Sstevel@tonic-gate 	if (v_usec > MAXTIME)
12067c478bd9Sstevel@tonic-gate 		pps_jitcnt++;
12077c478bd9Sstevel@tonic-gate 	v_usec = (v_usec << PPS_AVG) - pps_jitter;
12087c478bd9Sstevel@tonic-gate 	pps_jitter += v_usec / (1 << PPS_AVG);
12097c478bd9Sstevel@tonic-gate 	if (pps_jitter > (MAXTIME >> 1))
12107c478bd9Sstevel@tonic-gate 		time_status |= STA_PPSJITTER;
12117c478bd9Sstevel@tonic-gate 
12127c478bd9Sstevel@tonic-gate 	/*
12137c478bd9Sstevel@tonic-gate 	 * During the calibration interval adjust the starting time when
12147c478bd9Sstevel@tonic-gate 	 * the tick overflows. At the end of the interval compute the
12157c478bd9Sstevel@tonic-gate 	 * duration of the interval and the difference of the hardware
12167c478bd9Sstevel@tonic-gate 	 * counters at the beginning and end of the interval. This code
12177c478bd9Sstevel@tonic-gate 	 * is deliciously complicated by the fact valid differences may
12187c478bd9Sstevel@tonic-gate 	 * exceed the value of tick when using long calibration
12197c478bd9Sstevel@tonic-gate 	 * intervals and small ticks. Note that the counter can be
12207c478bd9Sstevel@tonic-gate 	 * greater than tick if caught at just the wrong instant, but
12217c478bd9Sstevel@tonic-gate 	 * the values returned and used here are correct.
12227c478bd9Sstevel@tonic-gate 	 */
12237c478bd9Sstevel@tonic-gate 	bigtick = (int)usec_per_tick * SCALE_USEC;
12247c478bd9Sstevel@tonic-gate 	pps_usec -= pps_freq;
12257c478bd9Sstevel@tonic-gate 	if (pps_usec >= bigtick)
12267c478bd9Sstevel@tonic-gate 		pps_usec -= bigtick;
12277c478bd9Sstevel@tonic-gate 	if (pps_usec < 0)
12287c478bd9Sstevel@tonic-gate 		pps_usec += bigtick;
12297c478bd9Sstevel@tonic-gate 	pps_time.tv_sec++;
12307c478bd9Sstevel@tonic-gate 	pps_count++;
12317c478bd9Sstevel@tonic-gate 	if (pps_count < (1 << pps_shift))
12327c478bd9Sstevel@tonic-gate 		return;
12337c478bd9Sstevel@tonic-gate 	pps_count = 0;
12347c478bd9Sstevel@tonic-gate 	pps_calcnt++;
12357c478bd9Sstevel@tonic-gate 	u_usec = usec * SCALE_USEC;
12367c478bd9Sstevel@tonic-gate 	v_usec = pps_usec - u_usec;
12377c478bd9Sstevel@tonic-gate 	if (v_usec >= bigtick >> 1)
12387c478bd9Sstevel@tonic-gate 		v_usec -= bigtick;
12397c478bd9Sstevel@tonic-gate 	if (v_usec < -(bigtick >> 1))
12407c478bd9Sstevel@tonic-gate 		v_usec += bigtick;
12417c478bd9Sstevel@tonic-gate 	if (v_usec < 0)
12427c478bd9Sstevel@tonic-gate 		v_usec = -(-v_usec >> pps_shift);
12437c478bd9Sstevel@tonic-gate 	else
12447c478bd9Sstevel@tonic-gate 		v_usec = v_usec >> pps_shift;
12457c478bd9Sstevel@tonic-gate 	pps_usec = u_usec;
12467c478bd9Sstevel@tonic-gate 	cal_sec = tvp->tv_sec;
12477c478bd9Sstevel@tonic-gate 	cal_usec = tvp->tv_usec;
12487c478bd9Sstevel@tonic-gate 	cal_sec -= pps_time.tv_sec;
12497c478bd9Sstevel@tonic-gate 	cal_usec -= pps_time.tv_usec;
12507c478bd9Sstevel@tonic-gate 	if (cal_usec < 0) {
12517c478bd9Sstevel@tonic-gate 		cal_usec += MICROSEC;
12527c478bd9Sstevel@tonic-gate 		cal_sec--;
12537c478bd9Sstevel@tonic-gate 	}
12547c478bd9Sstevel@tonic-gate 	pps_time = *tvp;
12557c478bd9Sstevel@tonic-gate 
12567c478bd9Sstevel@tonic-gate 	/*
12577c478bd9Sstevel@tonic-gate 	 * Check for lost interrupts, noise, excessive jitter and
12587c478bd9Sstevel@tonic-gate 	 * excessive frequency error. The number of timer ticks during
12597c478bd9Sstevel@tonic-gate 	 * the interval may vary +-1 tick. Add to this a margin of one
12607c478bd9Sstevel@tonic-gate 	 * tick for the PPS signal jitter and maximum frequency
12617c478bd9Sstevel@tonic-gate 	 * deviation. If the limits are exceeded, the calibration
12627c478bd9Sstevel@tonic-gate 	 * interval is reset to the minimum and we start over.
12637c478bd9Sstevel@tonic-gate 	 */
12647c478bd9Sstevel@tonic-gate 	u_usec = (int)usec_per_tick << 1;
12657c478bd9Sstevel@tonic-gate 	if (!((cal_sec == -1 && cal_usec > (MICROSEC - u_usec)) ||
12667c478bd9Sstevel@tonic-gate 	    (cal_sec == 0 && cal_usec < u_usec)) ||
12677c478bd9Sstevel@tonic-gate 	    v_usec > time_tolerance || v_usec < -time_tolerance) {
12687c478bd9Sstevel@tonic-gate 		pps_errcnt++;
12697c478bd9Sstevel@tonic-gate 		pps_shift = PPS_SHIFT;
12707c478bd9Sstevel@tonic-gate 		pps_intcnt = 0;
12717c478bd9Sstevel@tonic-gate 		time_status |= STA_PPSERROR;
12727c478bd9Sstevel@tonic-gate 		return;
12737c478bd9Sstevel@tonic-gate 	}
12747c478bd9Sstevel@tonic-gate 
12757c478bd9Sstevel@tonic-gate 	/*
12767c478bd9Sstevel@tonic-gate 	 * A three-stage median filter is used to help deglitch the pps
12777c478bd9Sstevel@tonic-gate 	 * frequency. The median sample becomes the frequency offset
12787c478bd9Sstevel@tonic-gate 	 * estimate; the difference between the other two samples
12797c478bd9Sstevel@tonic-gate 	 * becomes the frequency dispersion (stability) estimate.
12807c478bd9Sstevel@tonic-gate 	 */
12817c478bd9Sstevel@tonic-gate 	pps_ff[2] = pps_ff[1];
12827c478bd9Sstevel@tonic-gate 	pps_ff[1] = pps_ff[0];
12837c478bd9Sstevel@tonic-gate 	pps_ff[0] = v_usec;
12847c478bd9Sstevel@tonic-gate 	if (pps_ff[0] > pps_ff[1]) {
12857c478bd9Sstevel@tonic-gate 		if (pps_ff[1] > pps_ff[2]) {
12867c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[1];		/* 0 1 2 */
12877c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[0] - pps_ff[2];
12887c478bd9Sstevel@tonic-gate 		} else if (pps_ff[2] > pps_ff[0]) {
12897c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[0];		/* 2 0 1 */
12907c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[2] - pps_ff[1];
12917c478bd9Sstevel@tonic-gate 		} else {
12927c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[2];		/* 0 2 1 */
12937c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[0] - pps_ff[1];
12947c478bd9Sstevel@tonic-gate 		}
12957c478bd9Sstevel@tonic-gate 	} else {
12967c478bd9Sstevel@tonic-gate 		if (pps_ff[1] < pps_ff[2]) {
12977c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[1];		/* 2 1 0 */
12987c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[2] - pps_ff[0];
12997c478bd9Sstevel@tonic-gate 		} else  if (pps_ff[2] < pps_ff[0]) {
13007c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[0];		/* 1 0 2 */
13017c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[1] - pps_ff[2];
13027c478bd9Sstevel@tonic-gate 		} else {
13037c478bd9Sstevel@tonic-gate 			u_usec = pps_ff[2];		/* 1 2 0 */
13047c478bd9Sstevel@tonic-gate 			v_usec = pps_ff[1] - pps_ff[0];
13057c478bd9Sstevel@tonic-gate 		}
13067c478bd9Sstevel@tonic-gate 	}
13077c478bd9Sstevel@tonic-gate 
13087c478bd9Sstevel@tonic-gate 	/*
13097c478bd9Sstevel@tonic-gate 	 * Here the frequency dispersion (stability) is updated. If it
13107c478bd9Sstevel@tonic-gate 	 * is less than one-fourth the maximum (MAXFREQ), the frequency
13117c478bd9Sstevel@tonic-gate 	 * offset is updated as well, but clamped to the tolerance. It
13127c478bd9Sstevel@tonic-gate 	 * will be processed later by the clock() routine.
13137c478bd9Sstevel@tonic-gate 	 */
13147c478bd9Sstevel@tonic-gate 	v_usec = (v_usec >> 1) - pps_stabil;
13157c478bd9Sstevel@tonic-gate 	if (v_usec < 0)
13167c478bd9Sstevel@tonic-gate 		pps_stabil -= -v_usec >> PPS_AVG;
13177c478bd9Sstevel@tonic-gate 	else
13187c478bd9Sstevel@tonic-gate 		pps_stabil += v_usec >> PPS_AVG;
13197c478bd9Sstevel@tonic-gate 	if (pps_stabil > MAXFREQ >> 2) {
13207c478bd9Sstevel@tonic-gate 		pps_stbcnt++;
13217c478bd9Sstevel@tonic-gate 		time_status |= STA_PPSWANDER;
13227c478bd9Sstevel@tonic-gate 		return;
13237c478bd9Sstevel@tonic-gate 	}
13247c478bd9Sstevel@tonic-gate 	if (time_status & STA_PPSFREQ) {
13257c478bd9Sstevel@tonic-gate 		if (u_usec < 0) {
13267c478bd9Sstevel@tonic-gate 			pps_freq -= -u_usec >> PPS_AVG;
13277c478bd9Sstevel@tonic-gate 			if (pps_freq < -time_tolerance)
13287c478bd9Sstevel@tonic-gate 				pps_freq = -time_tolerance;
13297c478bd9Sstevel@tonic-gate 			u_usec = -u_usec;
13307c478bd9Sstevel@tonic-gate 		} else {
13317c478bd9Sstevel@tonic-gate 			pps_freq += u_usec >> PPS_AVG;
13327c478bd9Sstevel@tonic-gate 			if (pps_freq > time_tolerance)
13337c478bd9Sstevel@tonic-gate 				pps_freq = time_tolerance;
13347c478bd9Sstevel@tonic-gate 		}
13357c478bd9Sstevel@tonic-gate 	}
13367c478bd9Sstevel@tonic-gate 
13377c478bd9Sstevel@tonic-gate 	/*
13387c478bd9Sstevel@tonic-gate 	 * Here the calibration interval is adjusted. If the maximum
13397c478bd9Sstevel@tonic-gate 	 * time difference is greater than tick / 4, reduce the interval
13407c478bd9Sstevel@tonic-gate 	 * by half. If this is not the case for four consecutive
13417c478bd9Sstevel@tonic-gate 	 * intervals, double the interval.
13427c478bd9Sstevel@tonic-gate 	 */
13437c478bd9Sstevel@tonic-gate 	if (u_usec << pps_shift > bigtick >> 2) {
13447c478bd9Sstevel@tonic-gate 		pps_intcnt = 0;
13457c478bd9Sstevel@tonic-gate 		if (pps_shift > PPS_SHIFT)
13467c478bd9Sstevel@tonic-gate 			pps_shift--;
13477c478bd9Sstevel@tonic-gate 	} else if (pps_intcnt >= 4) {
13487c478bd9Sstevel@tonic-gate 		pps_intcnt = 0;
13497c478bd9Sstevel@tonic-gate 		if (pps_shift < PPS_SHIFTMAX)
13507c478bd9Sstevel@tonic-gate 			pps_shift++;
13517c478bd9Sstevel@tonic-gate 	} else
13527c478bd9Sstevel@tonic-gate 		pps_intcnt++;
13537c478bd9Sstevel@tonic-gate 
13547c478bd9Sstevel@tonic-gate 	/*
13557c478bd9Sstevel@tonic-gate 	 * If recovering from kmdb, then make sure the tod chip gets resynced.
13567c478bd9Sstevel@tonic-gate 	 * If we took an early exit above, then we don't yet have a stable
13577c478bd9Sstevel@tonic-gate 	 * calibration signal to lock onto, so don't mark the tod for sync
13587c478bd9Sstevel@tonic-gate 	 * until we get all the way here.
13597c478bd9Sstevel@tonic-gate 	 */
13607c478bd9Sstevel@tonic-gate 	{
13617c478bd9Sstevel@tonic-gate 		int s = hr_clock_lock();
13627c478bd9Sstevel@tonic-gate 
13637c478bd9Sstevel@tonic-gate 		tod_needsync = 1;
13647c478bd9Sstevel@tonic-gate 		hr_clock_unlock(s);
13657c478bd9Sstevel@tonic-gate 	}
13667c478bd9Sstevel@tonic-gate }
13677c478bd9Sstevel@tonic-gate 
13687c478bd9Sstevel@tonic-gate /*
13697c478bd9Sstevel@tonic-gate  * Handle clock tick processing for a thread.
13707c478bd9Sstevel@tonic-gate  * Check for timer action, enforce CPU rlimit, do profiling etc.
13717c478bd9Sstevel@tonic-gate  */
13727c478bd9Sstevel@tonic-gate void
13732850d85bSmv143129 clock_tick(kthread_t *t, int pending)
13747c478bd9Sstevel@tonic-gate {
13757c478bd9Sstevel@tonic-gate 	struct proc *pp;
13767c478bd9Sstevel@tonic-gate 	klwp_id_t    lwp;
13777c478bd9Sstevel@tonic-gate 	struct as *as;
13782850d85bSmv143129 	clock_t	ticks;
13797c478bd9Sstevel@tonic-gate 	int	poke = 0;		/* notify another CPU */
13807c478bd9Sstevel@tonic-gate 	int	user_mode;
13817c478bd9Sstevel@tonic-gate 	size_t	 rss;
13822850d85bSmv143129 	int i, total_usec, usec;
13832850d85bSmv143129 	rctl_qty_t secs;
13842850d85bSmv143129 
13852850d85bSmv143129 	ASSERT(pending > 0);
13867c478bd9Sstevel@tonic-gate 
13877c478bd9Sstevel@tonic-gate 	/* Must be operating on a lwp/thread */
13887c478bd9Sstevel@tonic-gate 	if ((lwp = ttolwp(t)) == NULL) {
13897c478bd9Sstevel@tonic-gate 		panic("clock_tick: no lwp");
13907c478bd9Sstevel@tonic-gate 		/*NOTREACHED*/
13917c478bd9Sstevel@tonic-gate 	}
13927c478bd9Sstevel@tonic-gate 
13932850d85bSmv143129 	for (i = 0; i < pending; i++) {
13947c478bd9Sstevel@tonic-gate 		CL_TICK(t);	/* Class specific tick processing */
13957c478bd9Sstevel@tonic-gate 		DTRACE_SCHED1(tick, kthread_t *, t);
13962850d85bSmv143129 	}
13977c478bd9Sstevel@tonic-gate 
13987c478bd9Sstevel@tonic-gate 	pp = ttoproc(t);
13997c478bd9Sstevel@tonic-gate 
14007c478bd9Sstevel@tonic-gate 	/* pp->p_lock makes sure that the thread does not exit */
14017c478bd9Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&pp->p_lock));
14027c478bd9Sstevel@tonic-gate 
14037c478bd9Sstevel@tonic-gate 	user_mode = (lwp->lwp_state == LWP_USER);
14047c478bd9Sstevel@tonic-gate 
14052850d85bSmv143129 	ticks = (pp->p_utime + pp->p_stime) % hz;
14067c478bd9Sstevel@tonic-gate 	/*
14077c478bd9Sstevel@tonic-gate 	 * Update process times. Should use high res clock and state
14087c478bd9Sstevel@tonic-gate 	 * changes instead of statistical sampling method. XXX
14097c478bd9Sstevel@tonic-gate 	 */
14107c478bd9Sstevel@tonic-gate 	if (user_mode) {
14112850d85bSmv143129 		pp->p_utime += pending;
14127c478bd9Sstevel@tonic-gate 	} else {
14132850d85bSmv143129 		pp->p_stime += pending;
14147c478bd9Sstevel@tonic-gate 	}
14152850d85bSmv143129 
14162850d85bSmv143129 	pp->p_ttime += pending;
14177c478bd9Sstevel@tonic-gate 	as = pp->p_as;
14187c478bd9Sstevel@tonic-gate 
14197c478bd9Sstevel@tonic-gate 	/*
14207c478bd9Sstevel@tonic-gate 	 * Update user profiling statistics. Get the pc from the
14217c478bd9Sstevel@tonic-gate 	 * lwp when the AST happens.
14227c478bd9Sstevel@tonic-gate 	 */
14237c478bd9Sstevel@tonic-gate 	if (pp->p_prof.pr_scale) {
14242850d85bSmv143129 		atomic_add_32(&lwp->lwp_oweupc, (int32_t)pending);
14257c478bd9Sstevel@tonic-gate 		if (user_mode) {
14267c478bd9Sstevel@tonic-gate 			poke = 1;
14277c478bd9Sstevel@tonic-gate 			aston(t);
14287c478bd9Sstevel@tonic-gate 		}
14297c478bd9Sstevel@tonic-gate 	}
14307c478bd9Sstevel@tonic-gate 
14317c478bd9Sstevel@tonic-gate 	/*
14327c478bd9Sstevel@tonic-gate 	 * If CPU was in user state, process lwp-virtual time
14332850d85bSmv143129 	 * interval timer. The value passed to itimerdecr() has to be
14342850d85bSmv143129 	 * in microseconds and has to be less than one second. Hence
14352850d85bSmv143129 	 * this loop.
14367c478bd9Sstevel@tonic-gate 	 */
14372850d85bSmv143129 	total_usec = usec_per_tick * pending;
14382850d85bSmv143129 	while (total_usec > 0) {
14392850d85bSmv143129 		usec = MIN(total_usec, (MICROSEC - 1));
14407c478bd9Sstevel@tonic-gate 		if (user_mode &&
14417c478bd9Sstevel@tonic-gate 		    timerisset(&lwp->lwp_timer[ITIMER_VIRTUAL].it_value) &&
14422850d85bSmv143129 		    itimerdecr(&lwp->lwp_timer[ITIMER_VIRTUAL], usec) == 0) {
14437c478bd9Sstevel@tonic-gate 			poke = 1;
14447c478bd9Sstevel@tonic-gate 			sigtoproc(pp, t, SIGVTALRM);
14457c478bd9Sstevel@tonic-gate 		}
14462850d85bSmv143129 		total_usec -= usec;
14472850d85bSmv143129 	}
14487c478bd9Sstevel@tonic-gate 
14492850d85bSmv143129 	/*
14502850d85bSmv143129 	 * If CPU was in user state, process lwp-profile
14512850d85bSmv143129 	 * interval timer.
14522850d85bSmv143129 	 */
14532850d85bSmv143129 	total_usec = usec_per_tick * pending;
14542850d85bSmv143129 	while (total_usec > 0) {
14552850d85bSmv143129 		usec = MIN(total_usec, (MICROSEC - 1));
14567c478bd9Sstevel@tonic-gate 		if (timerisset(&lwp->lwp_timer[ITIMER_PROF].it_value) &&
14572850d85bSmv143129 		    itimerdecr(&lwp->lwp_timer[ITIMER_PROF], usec) == 0) {
14587c478bd9Sstevel@tonic-gate 			poke = 1;
14597c478bd9Sstevel@tonic-gate 			sigtoproc(pp, t, SIGPROF);
14607c478bd9Sstevel@tonic-gate 		}
14612850d85bSmv143129 		total_usec -= usec;
14622850d85bSmv143129 	}
14637c478bd9Sstevel@tonic-gate 
14647c478bd9Sstevel@tonic-gate 	/*
14657c478bd9Sstevel@tonic-gate 	 * Enforce CPU resource controls:
14667c478bd9Sstevel@tonic-gate 	 *   (a) process.max-cpu-time resource control
14672850d85bSmv143129 	 *
14682850d85bSmv143129 	 * Perform the check only if we have accumulated more a second.
14697c478bd9Sstevel@tonic-gate 	 */
14702850d85bSmv143129 	if ((ticks + pending) >= hz) {
14717c478bd9Sstevel@tonic-gate 		(void) rctl_test(rctlproc_legacy[RLIMIT_CPU], pp->p_rctls, pp,
14722850d85bSmv143129 		    (pp->p_utime + pp->p_stime)/hz, RCA_UNSAFE_SIGINFO);
14732850d85bSmv143129 	}
14747c478bd9Sstevel@tonic-gate 
14757c478bd9Sstevel@tonic-gate 	/*
14767c478bd9Sstevel@tonic-gate 	 *   (b) task.max-cpu-time resource control
14772850d85bSmv143129 	 *
14782850d85bSmv143129 	 * If we have accumulated enough ticks, increment the task CPU
14792850d85bSmv143129 	 * time usage and test for the resource limit. This minimizes the
14802850d85bSmv143129 	 * number of calls to the rct_test(). The task CPU time mutex
14812850d85bSmv143129 	 * is highly contentious as many processes can be sharing a task.
14827c478bd9Sstevel@tonic-gate 	 */
14832850d85bSmv143129 	if (pp->p_ttime >= clock_tick_proc_max) {
14842850d85bSmv143129 		secs = task_cpu_time_incr(pp->p_task, pp->p_ttime);
14852850d85bSmv143129 		pp->p_ttime = 0;
14862850d85bSmv143129 		if (secs) {
14872850d85bSmv143129 			(void) rctl_test(rc_task_cpu_time, pp->p_task->tk_rctls,
14882850d85bSmv143129 			    pp, secs, RCA_UNSAFE_SIGINFO);
14892850d85bSmv143129 		}
14902850d85bSmv143129 	}
14917c478bd9Sstevel@tonic-gate 
14927c478bd9Sstevel@tonic-gate 	/*
14937c478bd9Sstevel@tonic-gate 	 * Update memory usage for the currently running process.
14947c478bd9Sstevel@tonic-gate 	 */
14957c478bd9Sstevel@tonic-gate 	rss = rm_asrss(as);
14967c478bd9Sstevel@tonic-gate 	PTOU(pp)->u_mem += rss;
14977c478bd9Sstevel@tonic-gate 	if (rss > PTOU(pp)->u_mem_max)
14987c478bd9Sstevel@tonic-gate 		PTOU(pp)->u_mem_max = rss;
14997c478bd9Sstevel@tonic-gate 
15007c478bd9Sstevel@tonic-gate 	/*
15017c478bd9Sstevel@tonic-gate 	 * Notify the CPU the thread is running on.
15027c478bd9Sstevel@tonic-gate 	 */
15037c478bd9Sstevel@tonic-gate 	if (poke && t->t_cpu != CPU)
15047c478bd9Sstevel@tonic-gate 		poke_cpu(t->t_cpu->cpu_id);
15057c478bd9Sstevel@tonic-gate }
15067c478bd9Sstevel@tonic-gate 
15077c478bd9Sstevel@tonic-gate void
15087c478bd9Sstevel@tonic-gate profil_tick(uintptr_t upc)
15097c478bd9Sstevel@tonic-gate {
15107c478bd9Sstevel@tonic-gate 	int ticks;
15117c478bd9Sstevel@tonic-gate 	proc_t *p = ttoproc(curthread);
15127c478bd9Sstevel@tonic-gate 	klwp_t *lwp = ttolwp(curthread);
15137c478bd9Sstevel@tonic-gate 	struct prof *pr = &p->p_prof;
15147c478bd9Sstevel@tonic-gate 
15157c478bd9Sstevel@tonic-gate 	do {
15167c478bd9Sstevel@tonic-gate 		ticks = lwp->lwp_oweupc;
15177c478bd9Sstevel@tonic-gate 	} while (cas32(&lwp->lwp_oweupc, ticks, 0) != ticks);
15187c478bd9Sstevel@tonic-gate 
15197c478bd9Sstevel@tonic-gate 	mutex_enter(&p->p_pflock);
15207c478bd9Sstevel@tonic-gate 	if (pr->pr_scale >= 2 && upc >= pr->pr_off) {
15217c478bd9Sstevel@tonic-gate 		/*
15227c478bd9Sstevel@tonic-gate 		 * Old-style profiling
15237c478bd9Sstevel@tonic-gate 		 */
15247c478bd9Sstevel@tonic-gate 		uint16_t *slot = pr->pr_base;
15257c478bd9Sstevel@tonic-gate 		uint16_t old, new;
15267c478bd9Sstevel@tonic-gate 		if (pr->pr_scale != 2) {
15277c478bd9Sstevel@tonic-gate 			uintptr_t delta = upc - pr->pr_off;
15287c478bd9Sstevel@tonic-gate 			uintptr_t byteoff = ((delta >> 16) * pr->pr_scale) +
15297c478bd9Sstevel@tonic-gate 			    (((delta & 0xffff) * pr->pr_scale) >> 16);
15307c478bd9Sstevel@tonic-gate 			if (byteoff >= (uintptr_t)pr->pr_size) {
15317c478bd9Sstevel@tonic-gate 				mutex_exit(&p->p_pflock);
15327c478bd9Sstevel@tonic-gate 				return;
15337c478bd9Sstevel@tonic-gate 			}
15347c478bd9Sstevel@tonic-gate 			slot += byteoff / sizeof (uint16_t);
15357c478bd9Sstevel@tonic-gate 		}
15367c478bd9Sstevel@tonic-gate 		if (fuword16(slot, &old) < 0 ||
15377c478bd9Sstevel@tonic-gate 		    (new = old + ticks) > SHRT_MAX ||
15387c478bd9Sstevel@tonic-gate 		    suword16(slot, new) < 0) {
15397c478bd9Sstevel@tonic-gate 			pr->pr_scale = 0;
15407c478bd9Sstevel@tonic-gate 		}
15417c478bd9Sstevel@tonic-gate 	} else if (pr->pr_scale == 1) {
15427c478bd9Sstevel@tonic-gate 		/*
15437c478bd9Sstevel@tonic-gate 		 * PC Sampling
15447c478bd9Sstevel@tonic-gate 		 */
15457c478bd9Sstevel@tonic-gate 		model_t model = lwp_getdatamodel(lwp);
15467c478bd9Sstevel@tonic-gate 		int result;
15477c478bd9Sstevel@tonic-gate #ifdef __lint
15487c478bd9Sstevel@tonic-gate 		model = model;
15497c478bd9Sstevel@tonic-gate #endif
15507c478bd9Sstevel@tonic-gate 		while (ticks-- > 0) {
15517c478bd9Sstevel@tonic-gate 			if (pr->pr_samples == pr->pr_size) {
15527c478bd9Sstevel@tonic-gate 				/* buffer full, turn off sampling */
15537c478bd9Sstevel@tonic-gate 				pr->pr_scale = 0;
15547c478bd9Sstevel@tonic-gate 				break;
15557c478bd9Sstevel@tonic-gate 			}
15567c478bd9Sstevel@tonic-gate 			switch (SIZEOF_PTR(model)) {
15577c478bd9Sstevel@tonic-gate 			case sizeof (uint32_t):
15587c478bd9Sstevel@tonic-gate 				result = suword32(pr->pr_base, (uint32_t)upc);
15597c478bd9Sstevel@tonic-gate 				break;
15607c478bd9Sstevel@tonic-gate #ifdef _LP64
15617c478bd9Sstevel@tonic-gate 			case sizeof (uint64_t):
15627c478bd9Sstevel@tonic-gate 				result = suword64(pr->pr_base, (uint64_t)upc);
15637c478bd9Sstevel@tonic-gate 				break;
15647c478bd9Sstevel@tonic-gate #endif
15657c478bd9Sstevel@tonic-gate 			default:
15667c478bd9Sstevel@tonic-gate 				cmn_err(CE_WARN, "profil_tick: unexpected "
15677c478bd9Sstevel@tonic-gate 				    "data model");
15687c478bd9Sstevel@tonic-gate 				result = -1;
15697c478bd9Sstevel@tonic-gate 				break;
15707c478bd9Sstevel@tonic-gate 			}
15717c478bd9Sstevel@tonic-gate 			if (result != 0) {
15727c478bd9Sstevel@tonic-gate 				pr->pr_scale = 0;
15737c478bd9Sstevel@tonic-gate 				break;
15747c478bd9Sstevel@tonic-gate 			}
15757c478bd9Sstevel@tonic-gate 			pr->pr_base = (caddr_t)pr->pr_base + SIZEOF_PTR(model);
15767c478bd9Sstevel@tonic-gate 			pr->pr_samples++;
15777c478bd9Sstevel@tonic-gate 		}
15787c478bd9Sstevel@tonic-gate 	}
15797c478bd9Sstevel@tonic-gate 	mutex_exit(&p->p_pflock);
15807c478bd9Sstevel@tonic-gate }
15817c478bd9Sstevel@tonic-gate 
15827c478bd9Sstevel@tonic-gate static void
15837c478bd9Sstevel@tonic-gate delay_wakeup(void *arg)
15847c478bd9Sstevel@tonic-gate {
15857c478bd9Sstevel@tonic-gate 	kthread_t	*t = arg;
15867c478bd9Sstevel@tonic-gate 
15877c478bd9Sstevel@tonic-gate 	mutex_enter(&t->t_delay_lock);
15887c478bd9Sstevel@tonic-gate 	cv_signal(&t->t_delay_cv);
15897c478bd9Sstevel@tonic-gate 	mutex_exit(&t->t_delay_lock);
15907c478bd9Sstevel@tonic-gate }
15917c478bd9Sstevel@tonic-gate 
1592*4c06356bSdh142964 /*
1593*4c06356bSdh142964  * The delay(9F) man page indicates that it can only be called from user or
1594*4c06356bSdh142964  * kernel context - detect and diagnose bad calls. The following macro will
1595*4c06356bSdh142964  * produce a limited number of messages identifying bad callers.  This is done
1596*4c06356bSdh142964  * in a macro so that caller() is meaningful. When a bad caller is identified,
1597*4c06356bSdh142964  * switching to 'drv_usecwait(TICK_TO_USEC(ticks));' may be appropriate.
1598*4c06356bSdh142964  */
1599*4c06356bSdh142964 #define	DELAY_CONTEXT_CHECK()	{					\
1600*4c06356bSdh142964 	uint32_t	m;						\
1601*4c06356bSdh142964 	char		*f;						\
1602*4c06356bSdh142964 	ulong_t		off;						\
1603*4c06356bSdh142964 									\
1604*4c06356bSdh142964 	m = delay_from_interrupt_msg;					\
1605*4c06356bSdh142964 	if (delay_from_interrupt_diagnose && servicing_interrupt() &&	\
1606*4c06356bSdh142964 	    !panicstr && !devinfo_freeze &&				\
1607*4c06356bSdh142964 	    atomic_cas_32(&delay_from_interrupt_msg, m ? m : 1, m-1)) {	\
1608*4c06356bSdh142964 		f = modgetsymname((uintptr_t)caller(), &off);		\
1609*4c06356bSdh142964 		cmn_err(CE_WARN, "delay(9F) called from "		\
1610*4c06356bSdh142964 		    "interrupt context: %s`%s",				\
1611*4c06356bSdh142964 		    mod_containing_pc(caller()), f ? f : "...");	\
1612*4c06356bSdh142964 	}								\
1613*4c06356bSdh142964 }
1614*4c06356bSdh142964 
1615*4c06356bSdh142964 /*
1616*4c06356bSdh142964  * delay_common: common delay code.
1617*4c06356bSdh142964  */
1618*4c06356bSdh142964 static void
1619*4c06356bSdh142964 delay_common(clock_t ticks)
16207c478bd9Sstevel@tonic-gate {
16217c478bd9Sstevel@tonic-gate 	kthread_t	*t = curthread;
1622*4c06356bSdh142964 	clock_t		deadline;
16237c478bd9Sstevel@tonic-gate 	clock_t		timeleft;
1624*4c06356bSdh142964 	callout_id_t	id;
16257c478bd9Sstevel@tonic-gate 
1626*4c06356bSdh142964 	/* If timeouts aren't running all we can do is spin. */
1627*4c06356bSdh142964 	if (panicstr || devinfo_freeze) {
1628*4c06356bSdh142964 		/* Convert delay(9F) call into drv_usecwait(9F) call. */
1629*4c06356bSdh142964 		if (ticks > 0)
16307c478bd9Sstevel@tonic-gate 			drv_usecwait(TICK_TO_USEC(ticks));
16317c478bd9Sstevel@tonic-gate 		return;
16327c478bd9Sstevel@tonic-gate 	}
16337c478bd9Sstevel@tonic-gate 
1634*4c06356bSdh142964 	deadline = lbolt + ticks;
16357c478bd9Sstevel@tonic-gate 	while ((timeleft = deadline - lbolt) > 0) {
16367c478bd9Sstevel@tonic-gate 		mutex_enter(&t->t_delay_lock);
1637*4c06356bSdh142964 		id = timeout_default(delay_wakeup, t, timeleft);
16387c478bd9Sstevel@tonic-gate 		cv_wait(&t->t_delay_cv, &t->t_delay_lock);
16397c478bd9Sstevel@tonic-gate 		mutex_exit(&t->t_delay_lock);
1640*4c06356bSdh142964 		(void) untimeout_default(id, 0);
16417c478bd9Sstevel@tonic-gate 	}
16427c478bd9Sstevel@tonic-gate }
16437c478bd9Sstevel@tonic-gate 
16447c478bd9Sstevel@tonic-gate /*
1645*4c06356bSdh142964  * Delay specified number of clock ticks.
1646*4c06356bSdh142964  */
1647*4c06356bSdh142964 void
1648*4c06356bSdh142964 delay(clock_t ticks)
1649*4c06356bSdh142964 {
1650*4c06356bSdh142964 	DELAY_CONTEXT_CHECK();
1651*4c06356bSdh142964 
1652*4c06356bSdh142964 	delay_common(ticks);
1653*4c06356bSdh142964 }
1654*4c06356bSdh142964 
1655*4c06356bSdh142964 /*
1656*4c06356bSdh142964  * Delay a random number of clock ticks between 1 and ticks.
1657*4c06356bSdh142964  */
1658*4c06356bSdh142964 void
1659*4c06356bSdh142964 delay_random(clock_t ticks)
1660*4c06356bSdh142964 {
1661*4c06356bSdh142964 	int	r;
1662*4c06356bSdh142964 
1663*4c06356bSdh142964 	DELAY_CONTEXT_CHECK();
1664*4c06356bSdh142964 
1665*4c06356bSdh142964 	(void) random_get_pseudo_bytes((void *)&r, sizeof (r));
1666*4c06356bSdh142964 	if (ticks == 0)
1667*4c06356bSdh142964 		ticks = 1;
1668*4c06356bSdh142964 	ticks = (r % ticks) + 1;
1669*4c06356bSdh142964 	delay_common(ticks);
1670*4c06356bSdh142964 }
1671*4c06356bSdh142964 
1672*4c06356bSdh142964 /*
16737c478bd9Sstevel@tonic-gate  * Like delay, but interruptible by a signal.
16747c478bd9Sstevel@tonic-gate  */
16757c478bd9Sstevel@tonic-gate int
16767c478bd9Sstevel@tonic-gate delay_sig(clock_t ticks)
16777c478bd9Sstevel@tonic-gate {
1678*4c06356bSdh142964 	kthread_t	*t = curthread;
1679*4c06356bSdh142964 	clock_t		deadline;
16807c478bd9Sstevel@tonic-gate 	clock_t		rc;
16817c478bd9Sstevel@tonic-gate 
1682*4c06356bSdh142964 	/* If timeouts aren't running all we can do is spin. */
1683*4c06356bSdh142964 	if (panicstr || devinfo_freeze) {
1684*4c06356bSdh142964 		if (ticks > 0)
1685*4c06356bSdh142964 			drv_usecwait(TICK_TO_USEC(ticks));
1686*4c06356bSdh142964 		return (0);
1687*4c06356bSdh142964 	}
1688*4c06356bSdh142964 
1689*4c06356bSdh142964 	deadline = lbolt + ticks;
1690*4c06356bSdh142964 	mutex_enter(&t->t_delay_lock);
16917c478bd9Sstevel@tonic-gate 	do {
1692*4c06356bSdh142964 		rc = cv_timedwait_sig(&t->t_delay_cv,
1693*4c06356bSdh142964 		    &t->t_delay_lock, deadline);
1694*4c06356bSdh142964 		/* loop until past deadline or signaled */
16957c478bd9Sstevel@tonic-gate 	} while (rc > 0);
1696*4c06356bSdh142964 	mutex_exit(&t->t_delay_lock);
16977c478bd9Sstevel@tonic-gate 	if (rc == 0)
16987c478bd9Sstevel@tonic-gate 		return (EINTR);
16997c478bd9Sstevel@tonic-gate 	return (0);
17007c478bd9Sstevel@tonic-gate }
17017c478bd9Sstevel@tonic-gate 
1702*4c06356bSdh142964 
17037c478bd9Sstevel@tonic-gate #define	SECONDS_PER_DAY 86400
17047c478bd9Sstevel@tonic-gate 
17057c478bd9Sstevel@tonic-gate /*
17067c478bd9Sstevel@tonic-gate  * Initialize the system time based on the TOD chip.  approx is used as
17077c478bd9Sstevel@tonic-gate  * an approximation of time (e.g. from the filesystem) in the event that
17087c478bd9Sstevel@tonic-gate  * the TOD chip has been cleared or is unresponsive.  An approx of -1
17097c478bd9Sstevel@tonic-gate  * means the filesystem doesn't keep time.
17107c478bd9Sstevel@tonic-gate  */
17117c478bd9Sstevel@tonic-gate void
17127c478bd9Sstevel@tonic-gate clkset(time_t approx)
17137c478bd9Sstevel@tonic-gate {
17147c478bd9Sstevel@tonic-gate 	timestruc_t ts;
17157c478bd9Sstevel@tonic-gate 	int spl;
17167c478bd9Sstevel@tonic-gate 	int set_clock = 0;
17177c478bd9Sstevel@tonic-gate 
17187c478bd9Sstevel@tonic-gate 	mutex_enter(&tod_lock);
17197c478bd9Sstevel@tonic-gate 	ts = tod_get();
17207c478bd9Sstevel@tonic-gate 
17217c478bd9Sstevel@tonic-gate 	if (ts.tv_sec > 365 * SECONDS_PER_DAY) {
17227c478bd9Sstevel@tonic-gate 		/*
17237c478bd9Sstevel@tonic-gate 		 * If the TOD chip is reporting some time after 1971,
17247c478bd9Sstevel@tonic-gate 		 * then it probably didn't lose power or become otherwise
17257c478bd9Sstevel@tonic-gate 		 * cleared in the recent past;  check to assure that
17267c478bd9Sstevel@tonic-gate 		 * the time coming from the filesystem isn't in the future
17277c478bd9Sstevel@tonic-gate 		 * according to the TOD chip.
17287c478bd9Sstevel@tonic-gate 		 */
17297c478bd9Sstevel@tonic-gate 		if (approx != -1 && approx > ts.tv_sec) {
17307c478bd9Sstevel@tonic-gate 			cmn_err(CE_WARN, "Last shutdown is later "
17317c478bd9Sstevel@tonic-gate 			    "than time on time-of-day chip; check date.");
17327c478bd9Sstevel@tonic-gate 		}
17337c478bd9Sstevel@tonic-gate 	} else {
17347c478bd9Sstevel@tonic-gate 		/*
1735a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		 * If the TOD chip isn't giving correct time, set it to the
1736a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		 * greater of i) approx and ii) 1987. That way if approx
1737a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		 * is negative or is earlier than 1987, we set the clock
1738a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		 * back to a time when Oliver North, ALF and Dire Straits
1739a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		 * were all on the collective brain:  1987.
17407c478bd9Sstevel@tonic-gate 		 */
17417c478bd9Sstevel@tonic-gate 		timestruc_t tmp;
1742a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		time_t diagnose_date = (1987 - 1970) * 365 * SECONDS_PER_DAY;
1743a07a2431SKrishnendu Sadhukhan - Sun Microsystems 		ts.tv_sec = (approx > diagnose_date ? approx : diagnose_date);
17447c478bd9Sstevel@tonic-gate 		ts.tv_nsec = 0;
17457c478bd9Sstevel@tonic-gate 
17467c478bd9Sstevel@tonic-gate 		/*
17477c478bd9Sstevel@tonic-gate 		 * Attempt to write the new time to the TOD chip.  Set spl high
17487c478bd9Sstevel@tonic-gate 		 * to avoid getting preempted between the tod_set and tod_get.
17497c478bd9Sstevel@tonic-gate 		 */
17507c478bd9Sstevel@tonic-gate 		spl = splhi();
17517c478bd9Sstevel@tonic-gate 		tod_set(ts);
17527c478bd9Sstevel@tonic-gate 		tmp = tod_get();
17537c478bd9Sstevel@tonic-gate 		splx(spl);
17547c478bd9Sstevel@tonic-gate 
17557c478bd9Sstevel@tonic-gate 		if (tmp.tv_sec != ts.tv_sec && tmp.tv_sec != ts.tv_sec + 1) {
17567c478bd9Sstevel@tonic-gate 			tod_broken = 1;
17577c478bd9Sstevel@tonic-gate 			dosynctodr = 0;
1758a07a2431SKrishnendu Sadhukhan - Sun Microsystems 			cmn_err(CE_WARN, "Time-of-day chip unresponsive.");
17597c478bd9Sstevel@tonic-gate 		} else {
17607c478bd9Sstevel@tonic-gate 			cmn_err(CE_WARN, "Time-of-day chip had "
17617c478bd9Sstevel@tonic-gate 			    "incorrect date; check and reset.");
17627c478bd9Sstevel@tonic-gate 		}
17637c478bd9Sstevel@tonic-gate 		set_clock = 1;
17647c478bd9Sstevel@tonic-gate 	}
17657c478bd9Sstevel@tonic-gate 
17667c478bd9Sstevel@tonic-gate 	if (!boot_time) {
17677c478bd9Sstevel@tonic-gate 		boot_time = ts.tv_sec;
17687c478bd9Sstevel@tonic-gate 		set_clock = 1;
17697c478bd9Sstevel@tonic-gate 	}
17707c478bd9Sstevel@tonic-gate 
17717c478bd9Sstevel@tonic-gate 	if (set_clock)
17727c478bd9Sstevel@tonic-gate 		set_hrestime(&ts);
17737c478bd9Sstevel@tonic-gate 
17747c478bd9Sstevel@tonic-gate 	mutex_exit(&tod_lock);
17757c478bd9Sstevel@tonic-gate }
17767c478bd9Sstevel@tonic-gate 
17773348528fSdm120769 int	timechanged;	/* for testing if the system time has been reset */
17787c478bd9Sstevel@tonic-gate 
17797c478bd9Sstevel@tonic-gate void
17807c478bd9Sstevel@tonic-gate set_hrestime(timestruc_t *ts)
17817c478bd9Sstevel@tonic-gate {
17827c478bd9Sstevel@tonic-gate 	int spl = hr_clock_lock();
17837c478bd9Sstevel@tonic-gate 	hrestime = *ts;
17843348528fSdm120769 	membar_enter();	/* hrestime must be visible before timechanged++ */
17857c478bd9Sstevel@tonic-gate 	timedelta = 0;
17863348528fSdm120769 	timechanged++;
17877c478bd9Sstevel@tonic-gate 	hr_clock_unlock(spl);
178887a18d3fSMadhavan Venkataraman 	callout_hrestime();
17897c478bd9Sstevel@tonic-gate }
17907c478bd9Sstevel@tonic-gate 
17917c478bd9Sstevel@tonic-gate static uint_t deadman_seconds;
17927c478bd9Sstevel@tonic-gate static uint32_t deadman_panics;
17937c478bd9Sstevel@tonic-gate static int deadman_enabled = 0;
17947c478bd9Sstevel@tonic-gate static int deadman_panic_timers = 1;
17957c478bd9Sstevel@tonic-gate 
17967c478bd9Sstevel@tonic-gate static void
17977c478bd9Sstevel@tonic-gate deadman(void)
17987c478bd9Sstevel@tonic-gate {
17997c478bd9Sstevel@tonic-gate 	if (panicstr) {
18007c478bd9Sstevel@tonic-gate 		/*
18017c478bd9Sstevel@tonic-gate 		 * During panic, other CPUs besides the panic
18027c478bd9Sstevel@tonic-gate 		 * master continue to handle cyclics and some other
18037c478bd9Sstevel@tonic-gate 		 * interrupts.  The code below is intended to be
18047c478bd9Sstevel@tonic-gate 		 * single threaded, so any CPU other than the master
18057c478bd9Sstevel@tonic-gate 		 * must keep out.
18067c478bd9Sstevel@tonic-gate 		 */
18077c478bd9Sstevel@tonic-gate 		if (CPU->cpu_id != panic_cpu.cpu_id)
18087c478bd9Sstevel@tonic-gate 			return;
18097c478bd9Sstevel@tonic-gate 
18107c478bd9Sstevel@tonic-gate 		/*
18117c478bd9Sstevel@tonic-gate 		 * If we're panicking, the deadman cyclic continues to increase
18127c478bd9Sstevel@tonic-gate 		 * lbolt in case the dump device driver relies on this for
18137c478bd9Sstevel@tonic-gate 		 * timeouts.  Note that we rely on deadman() being invoked once
18147c478bd9Sstevel@tonic-gate 		 * per second, and credit lbolt and lbolt64 with hz ticks each.
18157c478bd9Sstevel@tonic-gate 		 */
18167c478bd9Sstevel@tonic-gate 		lbolt += hz;
18177c478bd9Sstevel@tonic-gate 		lbolt64 += hz;
18187c478bd9Sstevel@tonic-gate 
18197c478bd9Sstevel@tonic-gate 		if (!deadman_panic_timers)
18207c478bd9Sstevel@tonic-gate 			return; /* allow all timers to be manually disabled */
18217c478bd9Sstevel@tonic-gate 
18227c478bd9Sstevel@tonic-gate 		/*
18237c478bd9Sstevel@tonic-gate 		 * If we are generating a crash dump or syncing filesystems and
18247c478bd9Sstevel@tonic-gate 		 * the corresponding timer is set, decrement it and re-enter
18257c478bd9Sstevel@tonic-gate 		 * the panic code to abort it and advance to the next state.
18267c478bd9Sstevel@tonic-gate 		 * The panic states and triggers are explained in panic.c.
18277c478bd9Sstevel@tonic-gate 		 */
18287c478bd9Sstevel@tonic-gate 		if (panic_dump) {
18297c478bd9Sstevel@tonic-gate 			if (dump_timeleft && (--dump_timeleft == 0)) {
18307c478bd9Sstevel@tonic-gate 				panic("panic dump timeout");
18317c478bd9Sstevel@tonic-gate 				/*NOTREACHED*/
18327c478bd9Sstevel@tonic-gate 			}
18337c478bd9Sstevel@tonic-gate 		} else if (panic_sync) {
18347c478bd9Sstevel@tonic-gate 			if (sync_timeleft && (--sync_timeleft == 0)) {
18357c478bd9Sstevel@tonic-gate 				panic("panic sync timeout");
18367c478bd9Sstevel@tonic-gate 				/*NOTREACHED*/
18377c478bd9Sstevel@tonic-gate 			}
18387c478bd9Sstevel@tonic-gate 		}
18397c478bd9Sstevel@tonic-gate 
18407c478bd9Sstevel@tonic-gate 		return;
18417c478bd9Sstevel@tonic-gate 	}
18427c478bd9Sstevel@tonic-gate 
18437c478bd9Sstevel@tonic-gate 	if (lbolt != CPU->cpu_deadman_lbolt) {
18447c478bd9Sstevel@tonic-gate 		CPU->cpu_deadman_lbolt = lbolt;
18457c478bd9Sstevel@tonic-gate 		CPU->cpu_deadman_countdown = deadman_seconds;
18467c478bd9Sstevel@tonic-gate 		return;
18477c478bd9Sstevel@tonic-gate 	}
18487c478bd9Sstevel@tonic-gate 
184971368153Svb160487 	if (--CPU->cpu_deadman_countdown > 0)
18507c478bd9Sstevel@tonic-gate 		return;
18517c478bd9Sstevel@tonic-gate 
18527c478bd9Sstevel@tonic-gate 	/*
18537c478bd9Sstevel@tonic-gate 	 * Regardless of whether or not we actually bring the system down,
18547c478bd9Sstevel@tonic-gate 	 * bump the deadman_panics variable.
18557c478bd9Sstevel@tonic-gate 	 *
18567c478bd9Sstevel@tonic-gate 	 * N.B. deadman_panics is incremented once for each CPU that
18577c478bd9Sstevel@tonic-gate 	 * passes through here.  It's expected that all the CPUs will
18587c478bd9Sstevel@tonic-gate 	 * detect this condition within one second of each other, so
18597c478bd9Sstevel@tonic-gate 	 * when deadman_enabled is off, deadman_panics will
18607c478bd9Sstevel@tonic-gate 	 * typically be a multiple of the total number of CPUs in
18617c478bd9Sstevel@tonic-gate 	 * the system.
18627c478bd9Sstevel@tonic-gate 	 */
18637c478bd9Sstevel@tonic-gate 	atomic_add_32(&deadman_panics, 1);
18647c478bd9Sstevel@tonic-gate 
18657c478bd9Sstevel@tonic-gate 	if (!deadman_enabled) {
18667c478bd9Sstevel@tonic-gate 		CPU->cpu_deadman_countdown = deadman_seconds;
18677c478bd9Sstevel@tonic-gate 		return;
18687c478bd9Sstevel@tonic-gate 	}
18697c478bd9Sstevel@tonic-gate 
18707c478bd9Sstevel@tonic-gate 	/*
18717c478bd9Sstevel@tonic-gate 	 * If we're here, we want to bring the system down.
18727c478bd9Sstevel@tonic-gate 	 */
18737c478bd9Sstevel@tonic-gate 	panic("deadman: timed out after %d seconds of clock "
18747c478bd9Sstevel@tonic-gate 	    "inactivity", deadman_seconds);
18757c478bd9Sstevel@tonic-gate 	/*NOTREACHED*/
18767c478bd9Sstevel@tonic-gate }
18777c478bd9Sstevel@tonic-gate 
18787c478bd9Sstevel@tonic-gate /*ARGSUSED*/
18797c478bd9Sstevel@tonic-gate static void
18807c478bd9Sstevel@tonic-gate deadman_online(void *arg, cpu_t *cpu, cyc_handler_t *hdlr, cyc_time_t *when)
18817c478bd9Sstevel@tonic-gate {
18827c478bd9Sstevel@tonic-gate 	cpu->cpu_deadman_lbolt = 0;
18837c478bd9Sstevel@tonic-gate 	cpu->cpu_deadman_countdown = deadman_seconds;
18847c478bd9Sstevel@tonic-gate 
18857c478bd9Sstevel@tonic-gate 	hdlr->cyh_func = (cyc_func_t)deadman;
18867c478bd9Sstevel@tonic-gate 	hdlr->cyh_level = CY_HIGH_LEVEL;
18877c478bd9Sstevel@tonic-gate 	hdlr->cyh_arg = NULL;
18887c478bd9Sstevel@tonic-gate 
18897c478bd9Sstevel@tonic-gate 	/*
18907c478bd9Sstevel@tonic-gate 	 * Stagger the CPUs so that they don't all run deadman() at
18917c478bd9Sstevel@tonic-gate 	 * the same time.  Simplest reason to do this is to make it
18927c478bd9Sstevel@tonic-gate 	 * more likely that only one CPU will panic in case of a
18937c478bd9Sstevel@tonic-gate 	 * timeout.  This is (strictly speaking) an aesthetic, not a
18947c478bd9Sstevel@tonic-gate 	 * technical consideration.
18957c478bd9Sstevel@tonic-gate 	 *
18967c478bd9Sstevel@tonic-gate 	 * The interval must be one second in accordance with the
18977c478bd9Sstevel@tonic-gate 	 * code in deadman() above to increase lbolt during panic.
18987c478bd9Sstevel@tonic-gate 	 */
18997c478bd9Sstevel@tonic-gate 	when->cyt_when = cpu->cpu_id * (NANOSEC / NCPU);
19007c478bd9Sstevel@tonic-gate 	when->cyt_interval = NANOSEC;
19017c478bd9Sstevel@tonic-gate }
19027c478bd9Sstevel@tonic-gate 
19037c478bd9Sstevel@tonic-gate 
19047c478bd9Sstevel@tonic-gate void
19057c478bd9Sstevel@tonic-gate deadman_init(void)
19067c478bd9Sstevel@tonic-gate {
19077c478bd9Sstevel@tonic-gate 	cyc_omni_handler_t hdlr;
19087c478bd9Sstevel@tonic-gate 
19097c478bd9Sstevel@tonic-gate 	if (deadman_seconds == 0)
19107c478bd9Sstevel@tonic-gate 		deadman_seconds = snoop_interval / MICROSEC;
19117c478bd9Sstevel@tonic-gate 
19127c478bd9Sstevel@tonic-gate 	if (snooping)
19137c478bd9Sstevel@tonic-gate 		deadman_enabled = 1;
19147c478bd9Sstevel@tonic-gate 
19157c478bd9Sstevel@tonic-gate 	hdlr.cyo_online = deadman_online;
19167c478bd9Sstevel@tonic-gate 	hdlr.cyo_offline = NULL;
19177c478bd9Sstevel@tonic-gate 	hdlr.cyo_arg = NULL;
19187c478bd9Sstevel@tonic-gate 
19197c478bd9Sstevel@tonic-gate 	mutex_enter(&cpu_lock);
19207c478bd9Sstevel@tonic-gate 	deadman_cyclic = cyclic_add_omni(&hdlr);
19217c478bd9Sstevel@tonic-gate 	mutex_exit(&cpu_lock);
19227c478bd9Sstevel@tonic-gate }
19237c478bd9Sstevel@tonic-gate 
19247c478bd9Sstevel@tonic-gate /*
19257c478bd9Sstevel@tonic-gate  * tod_fault() is for updating tod validate mechanism state:
19267c478bd9Sstevel@tonic-gate  * (1) TOD_NOFAULT: for resetting the state to 'normal'.
19277c478bd9Sstevel@tonic-gate  *     currently used for debugging only
19287c478bd9Sstevel@tonic-gate  * (2) The following four cases detected by tod validate mechanism:
19297c478bd9Sstevel@tonic-gate  *       TOD_REVERSED: current tod value is less than previous value.
19307c478bd9Sstevel@tonic-gate  *       TOD_STALLED: current tod value hasn't advanced.
19317c478bd9Sstevel@tonic-gate  *       TOD_JUMPED: current tod value advanced too far from previous value.
19327c478bd9Sstevel@tonic-gate  *       TOD_RATECHANGED: the ratio between average tod delta and
19337c478bd9Sstevel@tonic-gate  *       average tick delta has changed.
1934843e1988Sjohnlev  * (3) TOD_RDONLY: when the TOD clock is not writeable e.g. because it is
1935843e1988Sjohnlev  *     a virtual TOD provided by a hypervisor.
19367c478bd9Sstevel@tonic-gate  */
19377c478bd9Sstevel@tonic-gate enum tod_fault_type
19387c478bd9Sstevel@tonic-gate tod_fault(enum tod_fault_type ftype, int off)
19397c478bd9Sstevel@tonic-gate {
19407c478bd9Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&tod_lock));
19417c478bd9Sstevel@tonic-gate 
19427c478bd9Sstevel@tonic-gate 	if (tod_faulted != ftype) {
19437c478bd9Sstevel@tonic-gate 		switch (ftype) {
19447c478bd9Sstevel@tonic-gate 		case TOD_NOFAULT:
19457c478bd9Sstevel@tonic-gate 			plat_tod_fault(TOD_NOFAULT);
19467c478bd9Sstevel@tonic-gate 			cmn_err(CE_NOTE, "Restarted tracking "
19477c478bd9Sstevel@tonic-gate 			    "Time of Day clock.");
19487c478bd9Sstevel@tonic-gate 			tod_faulted = ftype;
19497c478bd9Sstevel@tonic-gate 			break;
19507c478bd9Sstevel@tonic-gate 		case TOD_REVERSED:
19517c478bd9Sstevel@tonic-gate 		case TOD_JUMPED:
19527c478bd9Sstevel@tonic-gate 			if (tod_faulted == TOD_NOFAULT) {
19537c478bd9Sstevel@tonic-gate 				plat_tod_fault(ftype);
19547c478bd9Sstevel@tonic-gate 				cmn_err(CE_WARN, "Time of Day clock error: "
19557c478bd9Sstevel@tonic-gate 				    "reason [%s by 0x%x]. -- "
19567c478bd9Sstevel@tonic-gate 				    " Stopped tracking Time Of Day clock.",
19577c478bd9Sstevel@tonic-gate 				    tod_fault_table[ftype], off);
19587c478bd9Sstevel@tonic-gate 				tod_faulted = ftype;
19597c478bd9Sstevel@tonic-gate 			}
19607c478bd9Sstevel@tonic-gate 			break;
19617c478bd9Sstevel@tonic-gate 		case TOD_STALLED:
19627c478bd9Sstevel@tonic-gate 		case TOD_RATECHANGED:
19637c478bd9Sstevel@tonic-gate 			if (tod_faulted == TOD_NOFAULT) {
19647c478bd9Sstevel@tonic-gate 				plat_tod_fault(ftype);
19657c478bd9Sstevel@tonic-gate 				cmn_err(CE_WARN, "Time of Day clock error: "
19667c478bd9Sstevel@tonic-gate 				    "reason [%s]. -- "
19677c478bd9Sstevel@tonic-gate 				    " Stopped tracking Time Of Day clock.",
19687c478bd9Sstevel@tonic-gate 				    tod_fault_table[ftype]);
19697c478bd9Sstevel@tonic-gate 				tod_faulted = ftype;
19707c478bd9Sstevel@tonic-gate 			}
19717c478bd9Sstevel@tonic-gate 			break;
1972843e1988Sjohnlev 		case TOD_RDONLY:
1973843e1988Sjohnlev 			if (tod_faulted == TOD_NOFAULT) {
1974843e1988Sjohnlev 				plat_tod_fault(ftype);
1975843e1988Sjohnlev 				cmn_err(CE_NOTE, "!Time of Day clock is "
1976843e1988Sjohnlev 				    "Read-Only; set of Date/Time will not "
1977843e1988Sjohnlev 				    "persist across reboot.");
1978843e1988Sjohnlev 				tod_faulted = ftype;
1979843e1988Sjohnlev 			}
1980843e1988Sjohnlev 			break;
19817c478bd9Sstevel@tonic-gate 		default:
19827c478bd9Sstevel@tonic-gate 			break;
19837c478bd9Sstevel@tonic-gate 		}
19847c478bd9Sstevel@tonic-gate 	}
19857c478bd9Sstevel@tonic-gate 	return (tod_faulted);
19867c478bd9Sstevel@tonic-gate }
19877c478bd9Sstevel@tonic-gate 
19887c478bd9Sstevel@tonic-gate void
19897c478bd9Sstevel@tonic-gate tod_fault_reset()
19907c478bd9Sstevel@tonic-gate {
19917c478bd9Sstevel@tonic-gate 	tod_fault_reset_flag = 1;
19927c478bd9Sstevel@tonic-gate }
19937c478bd9Sstevel@tonic-gate 
19947c478bd9Sstevel@tonic-gate 
19957c478bd9Sstevel@tonic-gate /*
19967c478bd9Sstevel@tonic-gate  * tod_validate() is used for checking values returned by tod_get().
19977c478bd9Sstevel@tonic-gate  * Four error cases can be detected by this routine:
19987c478bd9Sstevel@tonic-gate  *   TOD_REVERSED: current tod value is less than previous.
19997c478bd9Sstevel@tonic-gate  *   TOD_STALLED: current tod value hasn't advanced.
20007c478bd9Sstevel@tonic-gate  *   TOD_JUMPED: current tod value advanced too far from previous value.
20017c478bd9Sstevel@tonic-gate  *   TOD_RATECHANGED: the ratio between average tod delta and
20027c478bd9Sstevel@tonic-gate  *   average tick delta has changed.
20037c478bd9Sstevel@tonic-gate  */
20047c478bd9Sstevel@tonic-gate time_t
20057c478bd9Sstevel@tonic-gate tod_validate(time_t tod)
20067c478bd9Sstevel@tonic-gate {
20077c478bd9Sstevel@tonic-gate 	time_t diff_tod;
20087c478bd9Sstevel@tonic-gate 	hrtime_t diff_tick;
20097c478bd9Sstevel@tonic-gate 
20107c478bd9Sstevel@tonic-gate 	long dtick;
20117c478bd9Sstevel@tonic-gate 	int dtick_delta;
20127c478bd9Sstevel@tonic-gate 
20137c478bd9Sstevel@tonic-gate 	int off = 0;
20147c478bd9Sstevel@tonic-gate 	enum tod_fault_type tod_bad = TOD_NOFAULT;
20157c478bd9Sstevel@tonic-gate 
20167c478bd9Sstevel@tonic-gate 	static int firsttime = 1;
20177c478bd9Sstevel@tonic-gate 
20187c478bd9Sstevel@tonic-gate 	static time_t prev_tod = 0;
20197c478bd9Sstevel@tonic-gate 	static hrtime_t prev_tick = 0;
20207c478bd9Sstevel@tonic-gate 	static long dtick_avg = TOD_REF_FREQ;
20217c478bd9Sstevel@tonic-gate 
20227c478bd9Sstevel@tonic-gate 	hrtime_t tick = gethrtime();
20237c478bd9Sstevel@tonic-gate 
20247c478bd9Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&tod_lock));
20257c478bd9Sstevel@tonic-gate 
20267c478bd9Sstevel@tonic-gate 	/*
20277c478bd9Sstevel@tonic-gate 	 * tod_validate_enable is patchable via /etc/system.
20282c891a87Ssethg 	 * If TOD is already faulted, or if TOD validation is deferred,
20292c891a87Ssethg 	 * there is nothing to do.
20307c478bd9Sstevel@tonic-gate 	 */
20312c891a87Ssethg 	if ((tod_validate_enable == 0) || (tod_faulted != TOD_NOFAULT) ||
20322c891a87Ssethg 	    tod_validate_deferred) {
20337c478bd9Sstevel@tonic-gate 		return (tod);
20347c478bd9Sstevel@tonic-gate 	}
20357c478bd9Sstevel@tonic-gate 
20367c478bd9Sstevel@tonic-gate 	/*
20377c478bd9Sstevel@tonic-gate 	 * Update prev_tod and prev_tick values for first run
20387c478bd9Sstevel@tonic-gate 	 */
20397c478bd9Sstevel@tonic-gate 	if (firsttime) {
20407c478bd9Sstevel@tonic-gate 		firsttime = 0;
20417c478bd9Sstevel@tonic-gate 		prev_tod = tod;
20427c478bd9Sstevel@tonic-gate 		prev_tick = tick;
20437c478bd9Sstevel@tonic-gate 		return (tod);
20447c478bd9Sstevel@tonic-gate 	}
20457c478bd9Sstevel@tonic-gate 
20467c478bd9Sstevel@tonic-gate 	/*
20477c478bd9Sstevel@tonic-gate 	 * For either of these conditions, we need to reset ourself
20487c478bd9Sstevel@tonic-gate 	 * and start validation from zero since each condition
20497c478bd9Sstevel@tonic-gate 	 * indicates that the TOD will be updated with new value
20507c478bd9Sstevel@tonic-gate 	 * Also, note that tod_needsync will be reset in clock()
20517c478bd9Sstevel@tonic-gate 	 */
20527c478bd9Sstevel@tonic-gate 	if (tod_needsync || tod_fault_reset_flag) {
20537c478bd9Sstevel@tonic-gate 		firsttime = 1;
20547c478bd9Sstevel@tonic-gate 		prev_tod = 0;
20557c478bd9Sstevel@tonic-gate 		prev_tick = 0;
20567c478bd9Sstevel@tonic-gate 		dtick_avg = TOD_REF_FREQ;
20577c478bd9Sstevel@tonic-gate 
20587c478bd9Sstevel@tonic-gate 		if (tod_fault_reset_flag)
20597c478bd9Sstevel@tonic-gate 			tod_fault_reset_flag = 0;
20607c478bd9Sstevel@tonic-gate 
20617c478bd9Sstevel@tonic-gate 		return (tod);
20627c478bd9Sstevel@tonic-gate 	}
20637c478bd9Sstevel@tonic-gate 
20647c478bd9Sstevel@tonic-gate 	/* test hook */
20657c478bd9Sstevel@tonic-gate 	switch (tod_unit_test) {
20667c478bd9Sstevel@tonic-gate 	case 1: /* for testing jumping tod */
20677c478bd9Sstevel@tonic-gate 		tod += tod_test_injector;
20687c478bd9Sstevel@tonic-gate 		tod_unit_test = 0;
20697c478bd9Sstevel@tonic-gate 		break;
20707c478bd9Sstevel@tonic-gate 	case 2:	/* for testing stuck tod bit */
20717c478bd9Sstevel@tonic-gate 		tod |= 1 << tod_test_injector;
20727c478bd9Sstevel@tonic-gate 		tod_unit_test = 0;
20737c478bd9Sstevel@tonic-gate 		break;
20747c478bd9Sstevel@tonic-gate 	case 3:	/* for testing stalled tod */
20757c478bd9Sstevel@tonic-gate 		tod = prev_tod;
20767c478bd9Sstevel@tonic-gate 		tod_unit_test = 0;
20777c478bd9Sstevel@tonic-gate 		break;
20787c478bd9Sstevel@tonic-gate 	case 4:	/* reset tod fault status */
20797c478bd9Sstevel@tonic-gate 		(void) tod_fault(TOD_NOFAULT, 0);
20807c478bd9Sstevel@tonic-gate 		tod_unit_test = 0;
20817c478bd9Sstevel@tonic-gate 		break;
20827c478bd9Sstevel@tonic-gate 	default:
20837c478bd9Sstevel@tonic-gate 		break;
20847c478bd9Sstevel@tonic-gate 	}
20857c478bd9Sstevel@tonic-gate 
20867c478bd9Sstevel@tonic-gate 	diff_tod = tod - prev_tod;
20877c478bd9Sstevel@tonic-gate 	diff_tick = tick - prev_tick;
20887c478bd9Sstevel@tonic-gate 
20897c478bd9Sstevel@tonic-gate 	ASSERT(diff_tick >= 0);
20907c478bd9Sstevel@tonic-gate 
20917c478bd9Sstevel@tonic-gate 	if (diff_tod < 0) {
20927c478bd9Sstevel@tonic-gate 		/* ERROR - tod reversed */
20937c478bd9Sstevel@tonic-gate 		tod_bad = TOD_REVERSED;
20947c478bd9Sstevel@tonic-gate 		off = (int)(prev_tod - tod);
20957c478bd9Sstevel@tonic-gate 	} else if (diff_tod == 0) {
20967c478bd9Sstevel@tonic-gate 		/* tod did not advance */
20977c478bd9Sstevel@tonic-gate 		if (diff_tick > TOD_STALL_THRESHOLD) {
20987c478bd9Sstevel@tonic-gate 			/* ERROR - tod stalled */
20997c478bd9Sstevel@tonic-gate 			tod_bad = TOD_STALLED;
21007c478bd9Sstevel@tonic-gate 		} else {
21017c478bd9Sstevel@tonic-gate 			/*
21027c478bd9Sstevel@tonic-gate 			 * Make sure we don't update prev_tick
21037c478bd9Sstevel@tonic-gate 			 * so that diff_tick is calculated since
21047c478bd9Sstevel@tonic-gate 			 * the first diff_tod == 0
21057c478bd9Sstevel@tonic-gate 			 */
21067c478bd9Sstevel@tonic-gate 			return (tod);
21077c478bd9Sstevel@tonic-gate 		}
21087c478bd9Sstevel@tonic-gate 	} else {
21097c478bd9Sstevel@tonic-gate 		/* calculate dtick */
21107c478bd9Sstevel@tonic-gate 		dtick = diff_tick / diff_tod;
21117c478bd9Sstevel@tonic-gate 
21127c478bd9Sstevel@tonic-gate 		/* update dtick averages */
21137c478bd9Sstevel@tonic-gate 		dtick_avg += ((dtick - dtick_avg) / TOD_FILTER_N);
21147c478bd9Sstevel@tonic-gate 
21157c478bd9Sstevel@tonic-gate 		/*
21167c478bd9Sstevel@tonic-gate 		 * Calculate dtick_delta as
21177c478bd9Sstevel@tonic-gate 		 * variation from reference freq in quartiles
21187c478bd9Sstevel@tonic-gate 		 */
21197c478bd9Sstevel@tonic-gate 		dtick_delta = (dtick_avg - TOD_REF_FREQ) /
21207c478bd9Sstevel@tonic-gate 		    (TOD_REF_FREQ >> 2);
21217c478bd9Sstevel@tonic-gate 
21227c478bd9Sstevel@tonic-gate 		/*
21237c478bd9Sstevel@tonic-gate 		 * Even with a perfectly functioning TOD device,
21247c478bd9Sstevel@tonic-gate 		 * when the number of elapsed seconds is low the
21257c478bd9Sstevel@tonic-gate 		 * algorithm can calculate a rate that is beyond
21267c478bd9Sstevel@tonic-gate 		 * tolerance, causing an error.  The algorithm is
21277c478bd9Sstevel@tonic-gate 		 * inaccurate when elapsed time is low (less than
21287c478bd9Sstevel@tonic-gate 		 * 5 seconds).
21297c478bd9Sstevel@tonic-gate 		 */
21307c478bd9Sstevel@tonic-gate 		if (diff_tod > 4) {
21317c478bd9Sstevel@tonic-gate 			if (dtick < TOD_JUMP_THRESHOLD) {
21327c478bd9Sstevel@tonic-gate 				/* ERROR - tod jumped */
21337c478bd9Sstevel@tonic-gate 				tod_bad = TOD_JUMPED;
21347c478bd9Sstevel@tonic-gate 				off = (int)diff_tod;
21357c478bd9Sstevel@tonic-gate 			} else if (dtick_delta) {
21367c478bd9Sstevel@tonic-gate 				/* ERROR - change in clock rate */
21377c478bd9Sstevel@tonic-gate 				tod_bad = TOD_RATECHANGED;
21387c478bd9Sstevel@tonic-gate 			}
21397c478bd9Sstevel@tonic-gate 		}
21407c478bd9Sstevel@tonic-gate 	}
21417c478bd9Sstevel@tonic-gate 
21427c478bd9Sstevel@tonic-gate 	if (tod_bad != TOD_NOFAULT) {
21437c478bd9Sstevel@tonic-gate 		(void) tod_fault(tod_bad, off);
21447c478bd9Sstevel@tonic-gate 
21457c478bd9Sstevel@tonic-gate 		/*
21467c478bd9Sstevel@tonic-gate 		 * Disable dosynctodr since we are going to fault
21477c478bd9Sstevel@tonic-gate 		 * the TOD chip anyway here
21487c478bd9Sstevel@tonic-gate 		 */
21497c478bd9Sstevel@tonic-gate 		dosynctodr = 0;
21507c478bd9Sstevel@tonic-gate 
21517c478bd9Sstevel@tonic-gate 		/*
21527c478bd9Sstevel@tonic-gate 		 * Set tod to the correct value from hrestime
21537c478bd9Sstevel@tonic-gate 		 */
21547c478bd9Sstevel@tonic-gate 		tod = hrestime.tv_sec;
21557c478bd9Sstevel@tonic-gate 	}
21567c478bd9Sstevel@tonic-gate 
21577c478bd9Sstevel@tonic-gate 	prev_tod = tod;
21587c478bd9Sstevel@tonic-gate 	prev_tick = tick;
21597c478bd9Sstevel@tonic-gate 	return (tod);
21607c478bd9Sstevel@tonic-gate }
21617c478bd9Sstevel@tonic-gate 
21627c478bd9Sstevel@tonic-gate static void
21637c478bd9Sstevel@tonic-gate calcloadavg(int nrun, uint64_t *hp_ave)
21647c478bd9Sstevel@tonic-gate {
21657c478bd9Sstevel@tonic-gate 	static int64_t f[3] = { 135, 27, 9 };
21667c478bd9Sstevel@tonic-gate 	uint_t i;
21677c478bd9Sstevel@tonic-gate 	int64_t q, r;
21687c478bd9Sstevel@tonic-gate 
21697c478bd9Sstevel@tonic-gate 	/*
21707c478bd9Sstevel@tonic-gate 	 * Compute load average over the last 1, 5, and 15 minutes
21717c478bd9Sstevel@tonic-gate 	 * (60, 300, and 900 seconds).  The constants in f[3] are for
21727c478bd9Sstevel@tonic-gate 	 * exponential decay:
21737c478bd9Sstevel@tonic-gate 	 * (1 - exp(-1/60)) << 13 = 135,
21747c478bd9Sstevel@tonic-gate 	 * (1 - exp(-1/300)) << 13 = 27,
21757c478bd9Sstevel@tonic-gate 	 * (1 - exp(-1/900)) << 13 = 9.
21767c478bd9Sstevel@tonic-gate 	 */
21777c478bd9Sstevel@tonic-gate 
21787c478bd9Sstevel@tonic-gate 	/*
21797c478bd9Sstevel@tonic-gate 	 * a little hoop-jumping to avoid integer overflow
21807c478bd9Sstevel@tonic-gate 	 */
21817c478bd9Sstevel@tonic-gate 	for (i = 0; i < 3; i++) {
21827c478bd9Sstevel@tonic-gate 		q = (hp_ave[i]  >> 16) << 7;
21837c478bd9Sstevel@tonic-gate 		r = (hp_ave[i]  & 0xffff) << 7;
21847c478bd9Sstevel@tonic-gate 		hp_ave[i] += ((nrun - q) * f[i] - ((r * f[i]) >> 16)) >> 4;
21857c478bd9Sstevel@tonic-gate 	}
21867c478bd9Sstevel@tonic-gate }
2187