xref: /freebsd/sys/kern/sched_ule.c (revision 7029da5c36f2d3cf6bb6c81bf551229f416399e8)
135e6168fSJeff Roberson /*-
28a36da99SPedro F. Giffuni  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
38a36da99SPedro F. Giffuni  *
4e7d50326SJeff Roberson  * Copyright (c) 2002-2007, Jeffrey Roberson <jeff@freebsd.org>
535e6168fSJeff Roberson  * All rights reserved.
635e6168fSJeff Roberson  *
735e6168fSJeff Roberson  * Redistribution and use in source and binary forms, with or without
835e6168fSJeff Roberson  * modification, are permitted provided that the following conditions
935e6168fSJeff Roberson  * are met:
1035e6168fSJeff Roberson  * 1. Redistributions of source code must retain the above copyright
1135e6168fSJeff Roberson  *    notice unmodified, this list of conditions, and the following
1235e6168fSJeff Roberson  *    disclaimer.
1335e6168fSJeff Roberson  * 2. Redistributions in binary form must reproduce the above copyright
1435e6168fSJeff Roberson  *    notice, this list of conditions and the following disclaimer in the
1535e6168fSJeff Roberson  *    documentation and/or other materials provided with the distribution.
1635e6168fSJeff Roberson  *
1735e6168fSJeff Roberson  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
1835e6168fSJeff Roberson  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
1935e6168fSJeff Roberson  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
2035e6168fSJeff Roberson  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
2135e6168fSJeff Roberson  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
2235e6168fSJeff Roberson  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
2335e6168fSJeff Roberson  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
2435e6168fSJeff Roberson  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
2535e6168fSJeff Roberson  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
2635e6168fSJeff Roberson  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
2735e6168fSJeff Roberson  */
2835e6168fSJeff Roberson 
29ae7a6b38SJeff Roberson /*
30ae7a6b38SJeff Roberson  * This file implements the ULE scheduler.  ULE supports independent CPU
31ae7a6b38SJeff Roberson  * run queues and fine grain locking.  It has superior interactive
32ae7a6b38SJeff Roberson  * performance under load even on uni-processor systems.
33ae7a6b38SJeff Roberson  *
34ae7a6b38SJeff Roberson  * etymology:
35a5423ea3SJeff Roberson  *   ULE is the last three letters in schedule.  It owes its name to a
36ae7a6b38SJeff Roberson  * generic user created for a scheduling system by Paul Mikesell at
37ae7a6b38SJeff Roberson  * Isilon Systems and a general lack of creativity on the part of the author.
38ae7a6b38SJeff Roberson  */
39ae7a6b38SJeff Roberson 
40677b542eSDavid E. O'Brien #include <sys/cdefs.h>
41113dda8aSJeff Roberson __FBSDID("$FreeBSD$");
42677b542eSDavid E. O'Brien 
434da0d332SPeter Wemm #include "opt_hwpmc_hooks.h"
444da0d332SPeter Wemm #include "opt_sched.h"
459923b511SScott Long 
4635e6168fSJeff Roberson #include <sys/param.h>
4735e6168fSJeff Roberson #include <sys/systm.h>
482c3490b1SMarcel Moolenaar #include <sys/kdb.h>
4935e6168fSJeff Roberson #include <sys/kernel.h>
5035e6168fSJeff Roberson #include <sys/ktr.h>
51c149e542SAttilio Rao #include <sys/limits.h>
5235e6168fSJeff Roberson #include <sys/lock.h>
5335e6168fSJeff Roberson #include <sys/mutex.h>
5435e6168fSJeff Roberson #include <sys/proc.h>
55245f3abfSJeff Roberson #include <sys/resource.h>
569bacd788SJeff Roberson #include <sys/resourcevar.h>
5735e6168fSJeff Roberson #include <sys/sched.h>
58b3e9e682SRyan Stone #include <sys/sdt.h>
5935e6168fSJeff Roberson #include <sys/smp.h>
6035e6168fSJeff Roberson #include <sys/sx.h>
6135e6168fSJeff Roberson #include <sys/sysctl.h>
6235e6168fSJeff Roberson #include <sys/sysproto.h>
63f5c157d9SJohn Baldwin #include <sys/turnstile.h>
643db720fdSDavid Xu #include <sys/umtx.h>
6535e6168fSJeff Roberson #include <sys/vmmeter.h>
6662fa74d9SJeff Roberson #include <sys/cpuset.h>
6707095abfSIvan Voras #include <sys/sbuf.h>
6835e6168fSJeff Roberson 
69ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS
70ebccf1e3SJoseph Koshy #include <sys/pmckern.h>
71ebccf1e3SJoseph Koshy #endif
72ebccf1e3SJoseph Koshy 
736f5f25e5SJohn Birrell #ifdef KDTRACE_HOOKS
746f5f25e5SJohn Birrell #include <sys/dtrace_bsd.h>
7561322a0aSAlexander Motin int __read_mostly		dtrace_vtime_active;
766f5f25e5SJohn Birrell dtrace_vtime_switch_func_t	dtrace_vtime_switch_func;
776f5f25e5SJohn Birrell #endif
786f5f25e5SJohn Birrell 
7935e6168fSJeff Roberson #include <machine/cpu.h>
8022bf7d9aSJeff Roberson #include <machine/smp.h>
8135e6168fSJeff Roberson 
82ae7a6b38SJeff Roberson #define	KTR_ULE	0
8314618990SJeff Roberson 
840d2cf837SJeff Roberson #define	TS_NAME_LEN (MAXCOMLEN + sizeof(" td ") + sizeof(__XSTRING(UINT_MAX)))
850d2cf837SJeff Roberson #define	TDQ_NAME_LEN	(sizeof("sched lock ") + sizeof(__XSTRING(MAXCPU)))
866338c579SAttilio Rao #define	TDQ_LOADNAME_LEN	(sizeof("CPU ") + sizeof(__XSTRING(MAXCPU)) - 1 + sizeof(" load"))
878f51ad55SJeff Roberson 
886b2f763fSJeff Roberson /*
89ae7a6b38SJeff Roberson  * Thread scheduler specific section.  All fields are protected
90ae7a6b38SJeff Roberson  * by the thread lock.
91ed062c8dSJulian Elischer  */
92ad1e7d28SJulian Elischer struct td_sched {
93ae7a6b38SJeff Roberson 	struct runq	*ts_runq;	/* Run-queue we're queued on. */
94ae7a6b38SJeff Roberson 	short		ts_flags;	/* TSF_* flags. */
95e77f9fedSAdrian Chadd 	int		ts_cpu;		/* CPU that we have affinity for. */
9673daf66fSJeff Roberson 	int		ts_rltick;	/* Real last tick, for affinity. */
97ae7a6b38SJeff Roberson 	int		ts_slice;	/* Ticks of slice remaining. */
98ae7a6b38SJeff Roberson 	u_int		ts_slptime;	/* Number of ticks we vol. slept */
99ae7a6b38SJeff Roberson 	u_int		ts_runtime;	/* Number of ticks we were running */
100ad1e7d28SJulian Elischer 	int		ts_ltick;	/* Last tick that we were running on */
101ad1e7d28SJulian Elischer 	int		ts_ftick;	/* First tick that we were running on */
102ad1e7d28SJulian Elischer 	int		ts_ticks;	/* Tick count */
1038f51ad55SJeff Roberson #ifdef KTR
1048f51ad55SJeff Roberson 	char		ts_name[TS_NAME_LEN];
1058f51ad55SJeff Roberson #endif
106ed062c8dSJulian Elischer };
107ad1e7d28SJulian Elischer /* flags kept in ts_flags */
1087b8bfa0dSJeff Roberson #define	TSF_BOUND	0x0001		/* Thread can not migrate. */
1097b8bfa0dSJeff Roberson #define	TSF_XFERABLE	0x0002		/* Thread was added as transferable. */
11035e6168fSJeff Roberson 
11162fa74d9SJeff Roberson #define	THREAD_CAN_MIGRATE(td)	((td)->td_pinned == 0)
11262fa74d9SJeff Roberson #define	THREAD_CAN_SCHED(td, cpu)	\
11362fa74d9SJeff Roberson     CPU_ISSET((cpu), &(td)->td_cpuset->cs_mask)
11462fa74d9SJeff Roberson 
11593ccd6bfSKonstantin Belousov _Static_assert(sizeof(struct thread) + sizeof(struct td_sched) <=
11693ccd6bfSKonstantin Belousov     sizeof(struct thread0_storage),
11793ccd6bfSKonstantin Belousov     "increase struct thread0_storage.t0st_sched size");
11893ccd6bfSKonstantin Belousov 
11935e6168fSJeff Roberson /*
12012d56c0fSJohn Baldwin  * Priority ranges used for interactive and non-interactive timeshare
1212dc29adbSJohn Baldwin  * threads.  The timeshare priorities are split up into four ranges.
1222dc29adbSJohn Baldwin  * The first range handles interactive threads.  The last three ranges
1232dc29adbSJohn Baldwin  * (NHALF, x, and NHALF) handle non-interactive threads with the outer
1242dc29adbSJohn Baldwin  * ranges supporting nice values.
12512d56c0fSJohn Baldwin  */
1262dc29adbSJohn Baldwin #define	PRI_TIMESHARE_RANGE	(PRI_MAX_TIMESHARE - PRI_MIN_TIMESHARE + 1)
1272dc29adbSJohn Baldwin #define	PRI_INTERACT_RANGE	((PRI_TIMESHARE_RANGE - SCHED_PRI_NRESV) / 2)
12816705791SAndriy Gapon #define	PRI_BATCH_RANGE		(PRI_TIMESHARE_RANGE - PRI_INTERACT_RANGE)
1292dc29adbSJohn Baldwin 
1302dc29adbSJohn Baldwin #define	PRI_MIN_INTERACT	PRI_MIN_TIMESHARE
1312dc29adbSJohn Baldwin #define	PRI_MAX_INTERACT	(PRI_MIN_TIMESHARE + PRI_INTERACT_RANGE - 1)
1322dc29adbSJohn Baldwin #define	PRI_MIN_BATCH		(PRI_MIN_TIMESHARE + PRI_INTERACT_RANGE)
13312d56c0fSJohn Baldwin #define	PRI_MAX_BATCH		PRI_MAX_TIMESHARE
13412d56c0fSJohn Baldwin 
13512d56c0fSJohn Baldwin /*
136e7d50326SJeff Roberson  * Cpu percentage computation macros and defines.
137e1f89c22SJeff Roberson  *
138e7d50326SJeff Roberson  * SCHED_TICK_SECS:	Number of seconds to average the cpu usage across.
139e7d50326SJeff Roberson  * SCHED_TICK_TARG:	Number of hz ticks to average the cpu usage across.
1408ab80cf0SJeff Roberson  * SCHED_TICK_MAX:	Maximum number of ticks before scaling back.
141e7d50326SJeff Roberson  * SCHED_TICK_SHIFT:	Shift factor to avoid rounding away results.
142e7d50326SJeff Roberson  * SCHED_TICK_HZ:	Compute the number of hz ticks for a given ticks count.
143e7d50326SJeff Roberson  * SCHED_TICK_TOTAL:	Gives the amount of time we've been recording ticks.
14435e6168fSJeff Roberson  */
145e7d50326SJeff Roberson #define	SCHED_TICK_SECS		10
146e7d50326SJeff Roberson #define	SCHED_TICK_TARG		(hz * SCHED_TICK_SECS)
1478ab80cf0SJeff Roberson #define	SCHED_TICK_MAX		(SCHED_TICK_TARG + hz)
148e7d50326SJeff Roberson #define	SCHED_TICK_SHIFT	10
149e7d50326SJeff Roberson #define	SCHED_TICK_HZ(ts)	((ts)->ts_ticks >> SCHED_TICK_SHIFT)
150eddb4efaSJeff Roberson #define	SCHED_TICK_TOTAL(ts)	(max((ts)->ts_ltick - (ts)->ts_ftick, hz))
15135e6168fSJeff Roberson 
15235e6168fSJeff Roberson /*
153e7d50326SJeff Roberson  * These macros determine priorities for non-interactive threads.  They are
154e7d50326SJeff Roberson  * assigned a priority based on their recent cpu utilization as expressed
155e7d50326SJeff Roberson  * by the ratio of ticks to the tick total.  NHALF priorities at the start
156e7d50326SJeff Roberson  * and end of the MIN to MAX timeshare range are only reachable with negative
157e7d50326SJeff Roberson  * or positive nice respectively.
158e7d50326SJeff Roberson  *
159e7d50326SJeff Roberson  * PRI_RANGE:	Priority range for utilization dependent priorities.
160e7d50326SJeff Roberson  * PRI_NRESV:	Number of nice values.
161e7d50326SJeff Roberson  * PRI_TICKS:	Compute a priority in PRI_RANGE from the ticks count and total.
162e7d50326SJeff Roberson  * PRI_NICE:	Determines the part of the priority inherited from nice.
163e7d50326SJeff Roberson  */
164e7d50326SJeff Roberson #define	SCHED_PRI_NRESV		(PRIO_MAX - PRIO_MIN)
165e7d50326SJeff Roberson #define	SCHED_PRI_NHALF		(SCHED_PRI_NRESV / 2)
16612d56c0fSJohn Baldwin #define	SCHED_PRI_MIN		(PRI_MIN_BATCH + SCHED_PRI_NHALF)
16712d56c0fSJohn Baldwin #define	SCHED_PRI_MAX		(PRI_MAX_BATCH - SCHED_PRI_NHALF)
16878920008SJohn Baldwin #define	SCHED_PRI_RANGE		(SCHED_PRI_MAX - SCHED_PRI_MIN + 1)
169e7d50326SJeff Roberson #define	SCHED_PRI_TICKS(ts)						\
170e7d50326SJeff Roberson     (SCHED_TICK_HZ((ts)) /						\
1711e516cf5SJeff Roberson     (roundup(SCHED_TICK_TOTAL((ts)), SCHED_PRI_RANGE) / SCHED_PRI_RANGE))
172e7d50326SJeff Roberson #define	SCHED_PRI_NICE(nice)	(nice)
173e7d50326SJeff Roberson 
174e7d50326SJeff Roberson /*
175e7d50326SJeff Roberson  * These determine the interactivity of a process.  Interactivity differs from
176e7d50326SJeff Roberson  * cpu utilization in that it expresses the voluntary time slept vs time ran
177e7d50326SJeff Roberson  * while cpu utilization includes all time not running.  This more accurately
178e7d50326SJeff Roberson  * models the intent of the thread.
17935e6168fSJeff Roberson  *
180407b0157SJeff Roberson  * SLP_RUN_MAX:	Maximum amount of sleep time + run time we'll accumulate
181407b0157SJeff Roberson  *		before throttling back.
182d322132cSJeff Roberson  * SLP_RUN_FORK:	Maximum slp+run time to inherit at fork time.
183210491d3SJeff Roberson  * INTERACT_MAX:	Maximum interactivity value.  Smaller is better.
1849f518f20SAttilio Rao  * INTERACT_THRESH:	Threshold for placement on the current runq.
18535e6168fSJeff Roberson  */
186e7d50326SJeff Roberson #define	SCHED_SLP_RUN_MAX	((hz * 5) << SCHED_TICK_SHIFT)
187e7d50326SJeff Roberson #define	SCHED_SLP_RUN_FORK	((hz / 2) << SCHED_TICK_SHIFT)
188210491d3SJeff Roberson #define	SCHED_INTERACT_MAX	(100)
189210491d3SJeff Roberson #define	SCHED_INTERACT_HALF	(SCHED_INTERACT_MAX / 2)
1904c9612c6SJeff Roberson #define	SCHED_INTERACT_THRESH	(30)
191e1f89c22SJeff Roberson 
1925e5c3873SJeff Roberson /*
1935e5c3873SJeff Roberson  * These parameters determine the slice behavior for batch work.
1945e5c3873SJeff Roberson  */
1955e5c3873SJeff Roberson #define	SCHED_SLICE_DEFAULT_DIVISOR	10	/* ~94 ms, 12 stathz ticks. */
1965e5c3873SJeff Roberson #define	SCHED_SLICE_MIN_DIVISOR		6	/* DEFAULT/MIN = ~16 ms. */
1975e5c3873SJeff Roberson 
1983d7f4117SAlexander Motin /* Flags kept in td_flags. */
1993d7f4117SAlexander Motin #define	TDF_SLICEEND	TDF_SCHED2	/* Thread time slice is over. */
2003d7f4117SAlexander Motin 
20135e6168fSJeff Roberson /*
202e7d50326SJeff Roberson  * tickincr:		Converts a stathz tick into a hz domain scaled by
203e7d50326SJeff Roberson  *			the shift factor.  Without the shift the error rate
204e7d50326SJeff Roberson  *			due to rounding would be unacceptably high.
205e7d50326SJeff Roberson  * realstathz:		stathz is sometimes 0 and run off of hz.
206e7d50326SJeff Roberson  * sched_slice:		Runtime of each thread before rescheduling.
207ae7a6b38SJeff Roberson  * preempt_thresh:	Priority threshold for preemption and remote IPIs.
20835e6168fSJeff Roberson  */
20961322a0aSAlexander Motin static int __read_mostly sched_interact = SCHED_INTERACT_THRESH;
21061322a0aSAlexander Motin static int __read_mostly tickincr = 8 << SCHED_TICK_SHIFT;
21161322a0aSAlexander Motin static int __read_mostly realstathz = 127;	/* reset during boot. */
21261322a0aSAlexander Motin static int __read_mostly sched_slice = 10;	/* reset during boot. */
21361322a0aSAlexander Motin static int __read_mostly sched_slice_min = 1;	/* reset during boot. */
21402e2d6b4SJeff Roberson #ifdef PREEMPTION
21502e2d6b4SJeff Roberson #ifdef FULL_PREEMPTION
21661322a0aSAlexander Motin static int __read_mostly preempt_thresh = PRI_MAX_IDLE;
21702e2d6b4SJeff Roberson #else
21861322a0aSAlexander Motin static int __read_mostly preempt_thresh = PRI_MIN_KERN;
21902e2d6b4SJeff Roberson #endif
22002e2d6b4SJeff Roberson #else
22161322a0aSAlexander Motin static int __read_mostly preempt_thresh = 0;
22202e2d6b4SJeff Roberson #endif
22361322a0aSAlexander Motin static int __read_mostly static_boost = PRI_MIN_BATCH;
22461322a0aSAlexander Motin static int __read_mostly sched_idlespins = 10000;
22561322a0aSAlexander Motin static int __read_mostly sched_idlespinthresh = -1;
226ae7a6b38SJeff Roberson 
22735e6168fSJeff Roberson /*
228ae7a6b38SJeff Roberson  * tdq - per processor runqs and statistics.  All fields are protected by the
229ae7a6b38SJeff Roberson  * tdq_lock.  The load and lowpri may be accessed without to avoid excess
230ae7a6b38SJeff Roberson  * locking in sched_pickcpu();
23135e6168fSJeff Roberson  */
232ad1e7d28SJulian Elischer struct tdq {
23339f819e2SJim Harris 	/*
23439f819e2SJim Harris 	 * Ordered to improve efficiency of cpu_search() and switch().
23539f819e2SJim Harris 	 * tdq_lock is padded to avoid false sharing with tdq_load and
23639f819e2SJim Harris 	 * tdq_cpu_idle.
23739f819e2SJim Harris 	 */
2384ceaf45dSAttilio Rao 	struct mtx_padalign tdq_lock;		/* run queue lock. */
23973daf66fSJeff Roberson 	struct cpu_group *tdq_cg;		/* Pointer to cpu topology. */
2401690c6c1SJeff Roberson 	volatile int	tdq_load;		/* Aggregate load. */
2419f9ad565SAlexander Motin 	volatile int	tdq_cpu_idle;		/* cpu_idle() is active. */
24273daf66fSJeff Roberson 	int		tdq_sysload;		/* For loadavg, !ITHD load. */
24397e9382dSDon Lewis 	volatile int	tdq_transferable;	/* Transferable thread count. */
24497e9382dSDon Lewis 	volatile short	tdq_switchcnt;		/* Switches this tick. */
24597e9382dSDon Lewis 	volatile short	tdq_oldswitchcnt;	/* Switches last tick. */
24673daf66fSJeff Roberson 	u_char		tdq_lowpri;		/* Lowest priority thread. */
2477789ab32SMark Johnston 	u_char		tdq_owepreempt;		/* Remote preemption pending. */
24873daf66fSJeff Roberson 	u_char		tdq_idx;		/* Current insert index. */
24973daf66fSJeff Roberson 	u_char		tdq_ridx;		/* Current removal index. */
250018ff686SJeff Roberson 	int		tdq_id;			/* cpuid. */
251e7d50326SJeff Roberson 	struct runq	tdq_realtime;		/* real-time run queue. */
252ae7a6b38SJeff Roberson 	struct runq	tdq_timeshare;		/* timeshare run queue. */
253ae7a6b38SJeff Roberson 	struct runq	tdq_idle;		/* Queue of IDLE threads. */
2548f51ad55SJeff Roberson 	char		tdq_name[TDQ_NAME_LEN];
2558f51ad55SJeff Roberson #ifdef KTR
2568f51ad55SJeff Roberson 	char		tdq_loadname[TDQ_LOADNAME_LEN];
2578f51ad55SJeff Roberson #endif
258ae7a6b38SJeff Roberson } __aligned(64);
25935e6168fSJeff Roberson 
2601690c6c1SJeff Roberson /* Idle thread states and config. */
2611690c6c1SJeff Roberson #define	TDQ_RUNNING	1
2621690c6c1SJeff Roberson #define	TDQ_IDLE	2
2637b8bfa0dSJeff Roberson 
26480f86c9fSJeff Roberson #ifdef SMP
26561322a0aSAlexander Motin struct cpu_group __read_mostly *cpu_top;		/* CPU topology */
2667b8bfa0dSJeff Roberson 
26762fa74d9SJeff Roberson #define	SCHED_AFFINITY_DEFAULT	(max(1, hz / 1000))
26862fa74d9SJeff Roberson #define	SCHED_AFFINITY(ts, t)	((ts)->ts_rltick > ticks - ((t) * affinity))
2697b8bfa0dSJeff Roberson 
2707b8bfa0dSJeff Roberson /*
2717b8bfa0dSJeff Roberson  * Run-time tunables.
2727b8bfa0dSJeff Roberson  */
27328994a58SJeff Roberson static int rebalance = 1;
2747fcf154aSJeff Roberson static int balance_interval = 128;	/* Default set in sched_initticks(). */
27561322a0aSAlexander Motin static int __read_mostly affinity;
27661322a0aSAlexander Motin static int __read_mostly steal_idle = 1;
27761322a0aSAlexander Motin static int __read_mostly steal_thresh = 2;
27861322a0aSAlexander Motin static int __read_mostly always_steal = 0;
27961322a0aSAlexander Motin static int __read_mostly trysteal_limit = 2;
28080f86c9fSJeff Roberson 
28135e6168fSJeff Roberson /*
282d2ad694cSJeff Roberson  * One thread queue per processor.
28335e6168fSJeff Roberson  */
28461322a0aSAlexander Motin static struct tdq __read_mostly *balance_tdq;
2857fcf154aSJeff Roberson static int balance_ticks;
286018ff686SJeff Roberson DPCPU_DEFINE_STATIC(struct tdq, tdq);
2872bf95012SAndrew Turner DPCPU_DEFINE_STATIC(uint32_t, randomval);
288dc03363dSJeff Roberson 
289018ff686SJeff Roberson #define	TDQ_SELF()	((struct tdq *)PCPU_GET(sched))
290018ff686SJeff Roberson #define	TDQ_CPU(x)	(DPCPU_ID_PTR((x), tdq))
291018ff686SJeff Roberson #define	TDQ_ID(x)	((x)->tdq_id)
29280f86c9fSJeff Roberson #else	/* !SMP */
293ad1e7d28SJulian Elischer static struct tdq	tdq_cpu;
294dc03363dSJeff Roberson 
29536b36916SJeff Roberson #define	TDQ_ID(x)	(0)
296ad1e7d28SJulian Elischer #define	TDQ_SELF()	(&tdq_cpu)
297ad1e7d28SJulian Elischer #define	TDQ_CPU(x)	(&tdq_cpu)
2980a016a05SJeff Roberson #endif
29935e6168fSJeff Roberson 
300ae7a6b38SJeff Roberson #define	TDQ_LOCK_ASSERT(t, type)	mtx_assert(TDQ_LOCKPTR((t)), (type))
301ae7a6b38SJeff Roberson #define	TDQ_LOCK(t)		mtx_lock_spin(TDQ_LOCKPTR((t)))
302ae7a6b38SJeff Roberson #define	TDQ_LOCK_FLAGS(t, f)	mtx_lock_spin_flags(TDQ_LOCKPTR((t)), (f))
303ae7a6b38SJeff Roberson #define	TDQ_UNLOCK(t)		mtx_unlock_spin(TDQ_LOCKPTR((t)))
3044ceaf45dSAttilio Rao #define	TDQ_LOCKPTR(t)		((struct mtx *)(&(t)->tdq_lock))
305ae7a6b38SJeff Roberson 
3068460a577SJohn Birrell static void sched_priority(struct thread *);
30721381d1bSJeff Roberson static void sched_thread_priority(struct thread *, u_char);
3088460a577SJohn Birrell static int sched_interact_score(struct thread *);
3098460a577SJohn Birrell static void sched_interact_update(struct thread *);
3108460a577SJohn Birrell static void sched_interact_fork(struct thread *);
3117295465eSAlexander Motin static void sched_pctcpu_update(struct td_sched *, int);
31235e6168fSJeff Roberson 
3135d7ef00cSJeff Roberson /* Operations on per processor queues */
3149727e637SJeff Roberson static struct thread *tdq_choose(struct tdq *);
315018ff686SJeff Roberson static void tdq_setup(struct tdq *, int i);
3169727e637SJeff Roberson static void tdq_load_add(struct tdq *, struct thread *);
3179727e637SJeff Roberson static void tdq_load_rem(struct tdq *, struct thread *);
3189727e637SJeff Roberson static __inline void tdq_runq_add(struct tdq *, struct thread *, int);
3199727e637SJeff Roberson static __inline void tdq_runq_rem(struct tdq *, struct thread *);
320ff256d9cSJeff Roberson static inline int sched_shouldpreempt(int, int, int);
321ad1e7d28SJulian Elischer void tdq_print(int cpu);
322e7d50326SJeff Roberson static void runq_print(struct runq *rq);
323ae7a6b38SJeff Roberson static void tdq_add(struct tdq *, struct thread *, int);
3245d7ef00cSJeff Roberson #ifdef SMP
32597e9382dSDon Lewis static struct thread *tdq_move(struct tdq *, struct tdq *);
326ad1e7d28SJulian Elischer static int tdq_idled(struct tdq *);
32727ee18adSRyan Stone static void tdq_notify(struct tdq *, struct thread *);
3289727e637SJeff Roberson static struct thread *tdq_steal(struct tdq *, int);
3299727e637SJeff Roberson static struct thread *runq_steal(struct runq *, int);
3309727e637SJeff Roberson static int sched_pickcpu(struct thread *, int);
3317fcf154aSJeff Roberson static void sched_balance(void);
33262fa74d9SJeff Roberson static int sched_balance_pair(struct tdq *, struct tdq *);
3339727e637SJeff Roberson static inline struct tdq *sched_setcpu(struct thread *, int, int);
334ae7a6b38SJeff Roberson static inline void thread_unblock_switch(struct thread *, struct mtx *);
33507095abfSIvan Voras static int sysctl_kern_sched_topology_spec(SYSCTL_HANDLER_ARGS);
33607095abfSIvan Voras static int sysctl_kern_sched_topology_spec_internal(struct sbuf *sb,
33707095abfSIvan Voras     struct cpu_group *cg, int indent);
3385d7ef00cSJeff Roberson #endif
3395d7ef00cSJeff Roberson 
340e7d50326SJeff Roberson static void sched_setup(void *dummy);
341237fdd78SRobert Watson SYSINIT(sched_setup, SI_SUB_RUN_QUEUE, SI_ORDER_FIRST, sched_setup, NULL);
342e7d50326SJeff Roberson 
343e7d50326SJeff Roberson static void sched_initticks(void *dummy);
344237fdd78SRobert Watson SYSINIT(sched_initticks, SI_SUB_CLOCKS, SI_ORDER_THIRD, sched_initticks,
345237fdd78SRobert Watson     NULL);
346e7d50326SJeff Roberson 
347b3e9e682SRyan Stone SDT_PROVIDER_DEFINE(sched);
348b3e9e682SRyan Stone 
349d9fae5abSAndriy Gapon SDT_PROBE_DEFINE3(sched, , , change__pri, "struct thread *",
350b3e9e682SRyan Stone     "struct proc *", "uint8_t");
351d9fae5abSAndriy Gapon SDT_PROBE_DEFINE3(sched, , , dequeue, "struct thread *",
352b3e9e682SRyan Stone     "struct proc *", "void *");
353d9fae5abSAndriy Gapon SDT_PROBE_DEFINE4(sched, , , enqueue, "struct thread *",
354b3e9e682SRyan Stone     "struct proc *", "void *", "int");
355d9fae5abSAndriy Gapon SDT_PROBE_DEFINE4(sched, , , lend__pri, "struct thread *",
356b3e9e682SRyan Stone     "struct proc *", "uint8_t", "struct thread *");
357d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , load__change, "int", "int");
358d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , off__cpu, "struct thread *",
359b3e9e682SRyan Stone     "struct proc *");
360d9fae5abSAndriy Gapon SDT_PROBE_DEFINE(sched, , , on__cpu);
361d9fae5abSAndriy Gapon SDT_PROBE_DEFINE(sched, , , remain__cpu);
362d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , surrender, "struct thread *",
363b3e9e682SRyan Stone     "struct proc *");
364b3e9e682SRyan Stone 
3650567b6ccSWarner Losh /*
366ae7a6b38SJeff Roberson  * Print the threads waiting on a run-queue.
367ae7a6b38SJeff Roberson  */
368e7d50326SJeff Roberson static void
369e7d50326SJeff Roberson runq_print(struct runq *rq)
370e7d50326SJeff Roberson {
371e7d50326SJeff Roberson 	struct rqhead *rqh;
3729727e637SJeff Roberson 	struct thread *td;
373e7d50326SJeff Roberson 	int pri;
374e7d50326SJeff Roberson 	int j;
375e7d50326SJeff Roberson 	int i;
376e7d50326SJeff Roberson 
377e7d50326SJeff Roberson 	for (i = 0; i < RQB_LEN; i++) {
378e7d50326SJeff Roberson 		printf("\t\trunq bits %d 0x%zx\n",
379e7d50326SJeff Roberson 		    i, rq->rq_status.rqb_bits[i]);
380e7d50326SJeff Roberson 		for (j = 0; j < RQB_BPW; j++)
381e7d50326SJeff Roberson 			if (rq->rq_status.rqb_bits[i] & (1ul << j)) {
382e7d50326SJeff Roberson 				pri = j + (i << RQB_L2BPW);
383e7d50326SJeff Roberson 				rqh = &rq->rq_queues[pri];
3849727e637SJeff Roberson 				TAILQ_FOREACH(td, rqh, td_runq) {
385e7d50326SJeff Roberson 					printf("\t\t\ttd %p(%s) priority %d rqindex %d pri %d\n",
3869727e637SJeff Roberson 					    td, td->td_name, td->td_priority,
3879727e637SJeff Roberson 					    td->td_rqindex, pri);
388e7d50326SJeff Roberson 				}
389e7d50326SJeff Roberson 			}
390e7d50326SJeff Roberson 	}
391e7d50326SJeff Roberson }
392e7d50326SJeff Roberson 
393ae7a6b38SJeff Roberson /*
394ae7a6b38SJeff Roberson  * Print the status of a per-cpu thread queue.  Should be a ddb show cmd.
395ae7a6b38SJeff Roberson  */
39615dc847eSJeff Roberson void
397ad1e7d28SJulian Elischer tdq_print(int cpu)
39815dc847eSJeff Roberson {
399ad1e7d28SJulian Elischer 	struct tdq *tdq;
40015dc847eSJeff Roberson 
401ad1e7d28SJulian Elischer 	tdq = TDQ_CPU(cpu);
40215dc847eSJeff Roberson 
403c47f202bSJeff Roberson 	printf("tdq %d:\n", TDQ_ID(tdq));
40462fa74d9SJeff Roberson 	printf("\tlock            %p\n", TDQ_LOCKPTR(tdq));
40562fa74d9SJeff Roberson 	printf("\tLock name:      %s\n", tdq->tdq_name);
406d2ad694cSJeff Roberson 	printf("\tload:           %d\n", tdq->tdq_load);
4071690c6c1SJeff Roberson 	printf("\tswitch cnt:     %d\n", tdq->tdq_switchcnt);
4081690c6c1SJeff Roberson 	printf("\told switch cnt: %d\n", tdq->tdq_oldswitchcnt);
409e7d50326SJeff Roberson 	printf("\ttimeshare idx:  %d\n", tdq->tdq_idx);
4103f872f85SJeff Roberson 	printf("\ttimeshare ridx: %d\n", tdq->tdq_ridx);
4111690c6c1SJeff Roberson 	printf("\tload transferable: %d\n", tdq->tdq_transferable);
4121690c6c1SJeff Roberson 	printf("\tlowest priority:   %d\n", tdq->tdq_lowpri);
413e7d50326SJeff Roberson 	printf("\trealtime runq:\n");
414e7d50326SJeff Roberson 	runq_print(&tdq->tdq_realtime);
415e7d50326SJeff Roberson 	printf("\ttimeshare runq:\n");
416e7d50326SJeff Roberson 	runq_print(&tdq->tdq_timeshare);
417e7d50326SJeff Roberson 	printf("\tidle runq:\n");
418e7d50326SJeff Roberson 	runq_print(&tdq->tdq_idle);
41915dc847eSJeff Roberson }
42015dc847eSJeff Roberson 
421ff256d9cSJeff Roberson static inline int
422ff256d9cSJeff Roberson sched_shouldpreempt(int pri, int cpri, int remote)
423ff256d9cSJeff Roberson {
424ff256d9cSJeff Roberson 	/*
425ff256d9cSJeff Roberson 	 * If the new priority is not better than the current priority there is
426ff256d9cSJeff Roberson 	 * nothing to do.
427ff256d9cSJeff Roberson 	 */
428ff256d9cSJeff Roberson 	if (pri >= cpri)
429ff256d9cSJeff Roberson 		return (0);
430ff256d9cSJeff Roberson 	/*
431ff256d9cSJeff Roberson 	 * Always preempt idle.
432ff256d9cSJeff Roberson 	 */
433ff256d9cSJeff Roberson 	if (cpri >= PRI_MIN_IDLE)
434ff256d9cSJeff Roberson 		return (1);
435ff256d9cSJeff Roberson 	/*
436ff256d9cSJeff Roberson 	 * If preemption is disabled don't preempt others.
437ff256d9cSJeff Roberson 	 */
438ff256d9cSJeff Roberson 	if (preempt_thresh == 0)
439ff256d9cSJeff Roberson 		return (0);
440ff256d9cSJeff Roberson 	/*
441ff256d9cSJeff Roberson 	 * Preempt if we exceed the threshold.
442ff256d9cSJeff Roberson 	 */
443ff256d9cSJeff Roberson 	if (pri <= preempt_thresh)
444ff256d9cSJeff Roberson 		return (1);
445ff256d9cSJeff Roberson 	/*
44612d56c0fSJohn Baldwin 	 * If we're interactive or better and there is non-interactive
44712d56c0fSJohn Baldwin 	 * or worse running preempt only remote processors.
448ff256d9cSJeff Roberson 	 */
44912d56c0fSJohn Baldwin 	if (remote && pri <= PRI_MAX_INTERACT && cpri > PRI_MAX_INTERACT)
450ff256d9cSJeff Roberson 		return (1);
451ff256d9cSJeff Roberson 	return (0);
452ff256d9cSJeff Roberson }
453ff256d9cSJeff Roberson 
454ae7a6b38SJeff Roberson /*
455ae7a6b38SJeff Roberson  * Add a thread to the actual run-queue.  Keeps transferable counts up to
456ae7a6b38SJeff Roberson  * date with what is actually on the run-queue.  Selects the correct
457ae7a6b38SJeff Roberson  * queue position for timeshare threads.
458ae7a6b38SJeff Roberson  */
459155b9987SJeff Roberson static __inline void
4609727e637SJeff Roberson tdq_runq_add(struct tdq *tdq, struct thread *td, int flags)
461155b9987SJeff Roberson {
4629727e637SJeff Roberson 	struct td_sched *ts;
463c143ac21SJeff Roberson 	u_char pri;
464c143ac21SJeff Roberson 
465ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
46661a74c5cSJeff Roberson 	THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED);
46773daf66fSJeff Roberson 
4689727e637SJeff Roberson 	pri = td->td_priority;
46993ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
4709727e637SJeff Roberson 	TD_SET_RUNQ(td);
4719727e637SJeff Roberson 	if (THREAD_CAN_MIGRATE(td)) {
472d2ad694cSJeff Roberson 		tdq->tdq_transferable++;
473ad1e7d28SJulian Elischer 		ts->ts_flags |= TSF_XFERABLE;
47480f86c9fSJeff Roberson 	}
47512d56c0fSJohn Baldwin 	if (pri < PRI_MIN_BATCH) {
476c143ac21SJeff Roberson 		ts->ts_runq = &tdq->tdq_realtime;
47712d56c0fSJohn Baldwin 	} else if (pri <= PRI_MAX_BATCH) {
478c143ac21SJeff Roberson 		ts->ts_runq = &tdq->tdq_timeshare;
47912d56c0fSJohn Baldwin 		KASSERT(pri <= PRI_MAX_BATCH && pri >= PRI_MIN_BATCH,
480e7d50326SJeff Roberson 			("Invalid priority %d on timeshare runq", pri));
481e7d50326SJeff Roberson 		/*
482e7d50326SJeff Roberson 		 * This queue contains only priorities between MIN and MAX
483e7d50326SJeff Roberson 		 * realtime.  Use the whole queue to represent these values.
484e7d50326SJeff Roberson 		 */
485c47f202bSJeff Roberson 		if ((flags & (SRQ_BORROWING|SRQ_PREEMPTED)) == 0) {
48616705791SAndriy Gapon 			pri = RQ_NQS * (pri - PRI_MIN_BATCH) / PRI_BATCH_RANGE;
487e7d50326SJeff Roberson 			pri = (pri + tdq->tdq_idx) % RQ_NQS;
4883f872f85SJeff Roberson 			/*
4893f872f85SJeff Roberson 			 * This effectively shortens the queue by one so we
4903f872f85SJeff Roberson 			 * can have a one slot difference between idx and
4913f872f85SJeff Roberson 			 * ridx while we wait for threads to drain.
4923f872f85SJeff Roberson 			 */
4933f872f85SJeff Roberson 			if (tdq->tdq_ridx != tdq->tdq_idx &&
4943f872f85SJeff Roberson 			    pri == tdq->tdq_ridx)
4954499aff6SJeff Roberson 				pri = (unsigned char)(pri - 1) % RQ_NQS;
496e7d50326SJeff Roberson 		} else
4973f872f85SJeff Roberson 			pri = tdq->tdq_ridx;
4989727e637SJeff Roberson 		runq_add_pri(ts->ts_runq, td, pri, flags);
499c143ac21SJeff Roberson 		return;
500e7d50326SJeff Roberson 	} else
50173daf66fSJeff Roberson 		ts->ts_runq = &tdq->tdq_idle;
5029727e637SJeff Roberson 	runq_add(ts->ts_runq, td, flags);
50373daf66fSJeff Roberson }
50473daf66fSJeff Roberson 
50573daf66fSJeff Roberson /*
506ae7a6b38SJeff Roberson  * Remove a thread from a run-queue.  This typically happens when a thread
507ae7a6b38SJeff Roberson  * is selected to run.  Running threads are not on the queue and the
508ae7a6b38SJeff Roberson  * transferable count does not reflect them.
509ae7a6b38SJeff Roberson  */
510155b9987SJeff Roberson static __inline void
5119727e637SJeff Roberson tdq_runq_rem(struct tdq *tdq, struct thread *td)
512155b9987SJeff Roberson {
5139727e637SJeff Roberson 	struct td_sched *ts;
5149727e637SJeff Roberson 
51593ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
516ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
51761a74c5cSJeff Roberson 	THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED);
518ae7a6b38SJeff Roberson 	KASSERT(ts->ts_runq != NULL,
5199727e637SJeff Roberson 	    ("tdq_runq_remove: thread %p null ts_runq", td));
520ad1e7d28SJulian Elischer 	if (ts->ts_flags & TSF_XFERABLE) {
521d2ad694cSJeff Roberson 		tdq->tdq_transferable--;
522ad1e7d28SJulian Elischer 		ts->ts_flags &= ~TSF_XFERABLE;
52380f86c9fSJeff Roberson 	}
5243f872f85SJeff Roberson 	if (ts->ts_runq == &tdq->tdq_timeshare) {
5253f872f85SJeff Roberson 		if (tdq->tdq_idx != tdq->tdq_ridx)
5269727e637SJeff Roberson 			runq_remove_idx(ts->ts_runq, td, &tdq->tdq_ridx);
527e7d50326SJeff Roberson 		else
5289727e637SJeff Roberson 			runq_remove_idx(ts->ts_runq, td, NULL);
5293f872f85SJeff Roberson 	} else
5309727e637SJeff Roberson 		runq_remove(ts->ts_runq, td);
531155b9987SJeff Roberson }
532155b9987SJeff Roberson 
533ae7a6b38SJeff Roberson /*
534ae7a6b38SJeff Roberson  * Load is maintained for all threads RUNNING and ON_RUNQ.  Add the load
535ae7a6b38SJeff Roberson  * for this thread to the referenced thread queue.
536ae7a6b38SJeff Roberson  */
537a8949de2SJeff Roberson static void
5389727e637SJeff Roberson tdq_load_add(struct tdq *tdq, struct thread *td)
5395d7ef00cSJeff Roberson {
540ae7a6b38SJeff Roberson 
541ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
54261a74c5cSJeff Roberson 	THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED);
54303d17db7SJeff Roberson 
544d2ad694cSJeff Roberson 	tdq->tdq_load++;
5451b9d701fSAttilio Rao 	if ((td->td_flags & TDF_NOLOAD) == 0)
546d2ad694cSJeff Roberson 		tdq->tdq_sysload++;
5478f51ad55SJeff Roberson 	KTR_COUNTER0(KTR_SCHED, "load", tdq->tdq_loadname, tdq->tdq_load);
548d9fae5abSAndriy Gapon 	SDT_PROBE2(sched, , , load__change, (int)TDQ_ID(tdq), tdq->tdq_load);
5495d7ef00cSJeff Roberson }
55015dc847eSJeff Roberson 
551ae7a6b38SJeff Roberson /*
552ae7a6b38SJeff Roberson  * Remove the load from a thread that is transitioning to a sleep state or
553ae7a6b38SJeff Roberson  * exiting.
554ae7a6b38SJeff Roberson  */
555a8949de2SJeff Roberson static void
5569727e637SJeff Roberson tdq_load_rem(struct tdq *tdq, struct thread *td)
5575d7ef00cSJeff Roberson {
558ae7a6b38SJeff Roberson 
559ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
56061a74c5cSJeff Roberson 	THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED);
561ae7a6b38SJeff Roberson 	KASSERT(tdq->tdq_load != 0,
562c47f202bSJeff Roberson 	    ("tdq_load_rem: Removing with 0 load on queue %d", TDQ_ID(tdq)));
56303d17db7SJeff Roberson 
564d2ad694cSJeff Roberson 	tdq->tdq_load--;
5651b9d701fSAttilio Rao 	if ((td->td_flags & TDF_NOLOAD) == 0)
56603d17db7SJeff Roberson 		tdq->tdq_sysload--;
5678f51ad55SJeff Roberson 	KTR_COUNTER0(KTR_SCHED, "load", tdq->tdq_loadname, tdq->tdq_load);
568d9fae5abSAndriy Gapon 	SDT_PROBE2(sched, , , load__change, (int)TDQ_ID(tdq), tdq->tdq_load);
56915dc847eSJeff Roberson }
57015dc847eSJeff Roberson 
571356500a3SJeff Roberson /*
5725e5c3873SJeff Roberson  * Bound timeshare latency by decreasing slice size as load increases.  We
5735e5c3873SJeff Roberson  * consider the maximum latency as the sum of the threads waiting to run
5745e5c3873SJeff Roberson  * aside from curthread and target no more than sched_slice latency but
5755e5c3873SJeff Roberson  * no less than sched_slice_min runtime.
5765e5c3873SJeff Roberson  */
5775e5c3873SJeff Roberson static inline int
5785e5c3873SJeff Roberson tdq_slice(struct tdq *tdq)
5795e5c3873SJeff Roberson {
5805e5c3873SJeff Roberson 	int load;
5815e5c3873SJeff Roberson 
5825e5c3873SJeff Roberson 	/*
5835e5c3873SJeff Roberson 	 * It is safe to use sys_load here because this is called from
5845e5c3873SJeff Roberson 	 * contexts where timeshare threads are running and so there
5855e5c3873SJeff Roberson 	 * cannot be higher priority load in the system.
5865e5c3873SJeff Roberson 	 */
5875e5c3873SJeff Roberson 	load = tdq->tdq_sysload - 1;
5885e5c3873SJeff Roberson 	if (load >= SCHED_SLICE_MIN_DIVISOR)
5895e5c3873SJeff Roberson 		return (sched_slice_min);
5905e5c3873SJeff Roberson 	if (load <= 1)
5915e5c3873SJeff Roberson 		return (sched_slice);
5925e5c3873SJeff Roberson 	return (sched_slice / load);
5935e5c3873SJeff Roberson }
5945e5c3873SJeff Roberson 
5955e5c3873SJeff Roberson /*
59662fa74d9SJeff Roberson  * Set lowpri to its exact value by searching the run-queue and
59762fa74d9SJeff Roberson  * evaluating curthread.  curthread may be passed as an optimization.
598356500a3SJeff Roberson  */
59922bf7d9aSJeff Roberson static void
60062fa74d9SJeff Roberson tdq_setlowpri(struct tdq *tdq, struct thread *ctd)
60162fa74d9SJeff Roberson {
60262fa74d9SJeff Roberson 	struct thread *td;
60362fa74d9SJeff Roberson 
60462fa74d9SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
60562fa74d9SJeff Roberson 	if (ctd == NULL)
60662fa74d9SJeff Roberson 		ctd = pcpu_find(TDQ_ID(tdq))->pc_curthread;
6079727e637SJeff Roberson 	td = tdq_choose(tdq);
6089727e637SJeff Roberson 	if (td == NULL || td->td_priority > ctd->td_priority)
60962fa74d9SJeff Roberson 		tdq->tdq_lowpri = ctd->td_priority;
61062fa74d9SJeff Roberson 	else
61162fa74d9SJeff Roberson 		tdq->tdq_lowpri = td->td_priority;
61262fa74d9SJeff Roberson }
61362fa74d9SJeff Roberson 
61462fa74d9SJeff Roberson #ifdef SMP
6159129dd59SPedro F. Giffuni /*
6169129dd59SPedro F. Giffuni  * We need some randomness. Implement a classic Linear Congruential
6179129dd59SPedro F. Giffuni  * Generator X_{n+1}=(aX_n+c) mod m. These values are optimized for
6189129dd59SPedro F. Giffuni  * m = 2^32, a = 69069 and c = 5. We only return the upper 16 bits
6199129dd59SPedro F. Giffuni  * of the random state (in the low bits of our answer) to keep
6209129dd59SPedro F. Giffuni  * the maximum randomness.
6219129dd59SPedro F. Giffuni  */
6229129dd59SPedro F. Giffuni static uint32_t
6239129dd59SPedro F. Giffuni sched_random(void)
6249129dd59SPedro F. Giffuni {
6259129dd59SPedro F. Giffuni 	uint32_t *rndptr;
6269129dd59SPedro F. Giffuni 
6279129dd59SPedro F. Giffuni 	rndptr = DPCPU_PTR(randomval);
6289129dd59SPedro F. Giffuni 	*rndptr = *rndptr * 69069 + 5;
6299129dd59SPedro F. Giffuni 
6309129dd59SPedro F. Giffuni 	return (*rndptr >> 16);
6319129dd59SPedro F. Giffuni }
6329129dd59SPedro F. Giffuni 
63362fa74d9SJeff Roberson struct cpu_search {
634c76ee827SJeff Roberson 	cpuset_t cs_mask;
63536acfc65SAlexander Motin 	u_int	cs_prefer;
63636acfc65SAlexander Motin 	int	cs_pri;		/* Min priority for low. */
63736acfc65SAlexander Motin 	int	cs_limit;	/* Max load for low, min load for high. */
63836acfc65SAlexander Motin 	int	cs_cpu;
63936acfc65SAlexander Motin 	int	cs_load;
64062fa74d9SJeff Roberson };
64162fa74d9SJeff Roberson 
64262fa74d9SJeff Roberson #define	CPU_SEARCH_LOWEST	0x1
64362fa74d9SJeff Roberson #define	CPU_SEARCH_HIGHEST	0x2
64462fa74d9SJeff Roberson #define	CPU_SEARCH_BOTH		(CPU_SEARCH_LOWEST|CPU_SEARCH_HIGHEST)
64562fa74d9SJeff Roberson 
6462499a5ccSKonstantin Belousov static __always_inline int cpu_search(const struct cpu_group *cg,
6472499a5ccSKonstantin Belousov     struct cpu_search *low, struct cpu_search *high, const int match);
6482499a5ccSKonstantin Belousov int __noinline cpu_search_lowest(const struct cpu_group *cg,
6492499a5ccSKonstantin Belousov     struct cpu_search *low);
6502499a5ccSKonstantin Belousov int __noinline cpu_search_highest(const struct cpu_group *cg,
65162fa74d9SJeff Roberson     struct cpu_search *high);
6522499a5ccSKonstantin Belousov int __noinline cpu_search_both(const struct cpu_group *cg,
6532499a5ccSKonstantin Belousov     struct cpu_search *low, struct cpu_search *high);
65462fa74d9SJeff Roberson 
65562fa74d9SJeff Roberson /*
65662fa74d9SJeff Roberson  * Search the tree of cpu_groups for the lowest or highest loaded cpu
65762fa74d9SJeff Roberson  * according to the match argument.  This routine actually compares the
65862fa74d9SJeff Roberson  * load on all paths through the tree and finds the least loaded cpu on
65962fa74d9SJeff Roberson  * the least loaded path, which may differ from the least loaded cpu in
660db4fcadfSConrad Meyer  * the system.  This balances work among caches and buses.
66162fa74d9SJeff Roberson  *
66262fa74d9SJeff Roberson  * This inline is instantiated in three forms below using constants for the
66362fa74d9SJeff Roberson  * match argument.  It is reduced to the minimum set for each case.  It is
66462fa74d9SJeff Roberson  * also recursive to the depth of the tree.
66562fa74d9SJeff Roberson  */
6662499a5ccSKonstantin Belousov static __always_inline int
66736acfc65SAlexander Motin cpu_search(const struct cpu_group *cg, struct cpu_search *low,
66862fa74d9SJeff Roberson     struct cpu_search *high, const int match)
66962fa74d9SJeff Roberson {
67062fa74d9SJeff Roberson 	struct cpu_search lgroup;
67162fa74d9SJeff Roberson 	struct cpu_search hgroup;
67236acfc65SAlexander Motin 	cpuset_t cpumask;
67362fa74d9SJeff Roberson 	struct cpu_group *child;
67436acfc65SAlexander Motin 	struct tdq *tdq;
6750567b6ccSWarner Losh 	int cpu, i, hload, lload, load, total, rnd;
67662fa74d9SJeff Roberson 
67736acfc65SAlexander Motin 	total = 0;
67836acfc65SAlexander Motin 	cpumask = cg->cg_mask;
67962fa74d9SJeff Roberson 	if (match & CPU_SEARCH_LOWEST) {
68036acfc65SAlexander Motin 		lload = INT_MAX;
68162fa74d9SJeff Roberson 		lgroup = *low;
68262fa74d9SJeff Roberson 	}
68362fa74d9SJeff Roberson 	if (match & CPU_SEARCH_HIGHEST) {
68470801abeSAlexander Motin 		hload = INT_MIN;
68562fa74d9SJeff Roberson 		hgroup = *high;
68662fa74d9SJeff Roberson 	}
68736acfc65SAlexander Motin 
68836acfc65SAlexander Motin 	/* Iterate through the child CPU groups and then remaining CPUs. */
68958909b74SAlexander Motin 	for (i = cg->cg_children, cpu = mp_maxid; ; ) {
69070801abeSAlexander Motin 		if (i == 0) {
69158909b74SAlexander Motin #ifdef HAVE_INLINE_FFSL
69258909b74SAlexander Motin 			cpu = CPU_FFS(&cpumask) - 1;
69358909b74SAlexander Motin #else
69470801abeSAlexander Motin 			while (cpu >= 0 && !CPU_ISSET(cpu, &cpumask))
69570801abeSAlexander Motin 				cpu--;
69658909b74SAlexander Motin #endif
69770801abeSAlexander Motin 			if (cpu < 0)
69836acfc65SAlexander Motin 				break;
69936acfc65SAlexander Motin 			child = NULL;
70036acfc65SAlexander Motin 		} else
70170801abeSAlexander Motin 			child = &cg->cg_child[i - 1];
70236acfc65SAlexander Motin 
70370801abeSAlexander Motin 		if (match & CPU_SEARCH_LOWEST)
70470801abeSAlexander Motin 			lgroup.cs_cpu = -1;
70570801abeSAlexander Motin 		if (match & CPU_SEARCH_HIGHEST)
70670801abeSAlexander Motin 			hgroup.cs_cpu = -1;
70736acfc65SAlexander Motin 		if (child) {			/* Handle child CPU group. */
7089825eadfSRyan Libby 			CPU_ANDNOT(&cpumask, &child->cg_mask);
70962fa74d9SJeff Roberson 			switch (match) {
71062fa74d9SJeff Roberson 			case CPU_SEARCH_LOWEST:
71162fa74d9SJeff Roberson 				load = cpu_search_lowest(child, &lgroup);
71262fa74d9SJeff Roberson 				break;
71362fa74d9SJeff Roberson 			case CPU_SEARCH_HIGHEST:
71462fa74d9SJeff Roberson 				load = cpu_search_highest(child, &hgroup);
71562fa74d9SJeff Roberson 				break;
71662fa74d9SJeff Roberson 			case CPU_SEARCH_BOTH:
71762fa74d9SJeff Roberson 				load = cpu_search_both(child, &lgroup, &hgroup);
71862fa74d9SJeff Roberson 				break;
71962fa74d9SJeff Roberson 			}
72036acfc65SAlexander Motin 		} else {			/* Handle child CPU. */
72158909b74SAlexander Motin 			CPU_CLR(cpu, &cpumask);
72236acfc65SAlexander Motin 			tdq = TDQ_CPU(cpu);
72336acfc65SAlexander Motin 			load = tdq->tdq_load * 256;
724b250ad34SWarner Losh 			rnd = sched_random() % 32;
72536acfc65SAlexander Motin 			if (match & CPU_SEARCH_LOWEST) {
72636acfc65SAlexander Motin 				if (cpu == low->cs_prefer)
72736acfc65SAlexander Motin 					load -= 64;
72836acfc65SAlexander Motin 				/* If that CPU is allowed and get data. */
72970801abeSAlexander Motin 				if (tdq->tdq_lowpri > lgroup.cs_pri &&
73070801abeSAlexander Motin 				    tdq->tdq_load <= lgroup.cs_limit &&
73170801abeSAlexander Motin 				    CPU_ISSET(cpu, &lgroup.cs_mask)) {
73236acfc65SAlexander Motin 					lgroup.cs_cpu = cpu;
73336acfc65SAlexander Motin 					lgroup.cs_load = load - rnd;
73436acfc65SAlexander Motin 				}
73562fa74d9SJeff Roberson 			}
73662fa74d9SJeff Roberson 			if (match & CPU_SEARCH_HIGHEST)
73770801abeSAlexander Motin 				if (tdq->tdq_load >= hgroup.cs_limit &&
73870801abeSAlexander Motin 				    tdq->tdq_transferable &&
73970801abeSAlexander Motin 				    CPU_ISSET(cpu, &hgroup.cs_mask)) {
74036acfc65SAlexander Motin 					hgroup.cs_cpu = cpu;
74136acfc65SAlexander Motin 					hgroup.cs_load = load - rnd;
74262fa74d9SJeff Roberson 				}
74362fa74d9SJeff Roberson 		}
74436acfc65SAlexander Motin 		total += load;
74562fa74d9SJeff Roberson 
74636acfc65SAlexander Motin 		/* We have info about child item. Compare it. */
74736acfc65SAlexander Motin 		if (match & CPU_SEARCH_LOWEST) {
74870801abeSAlexander Motin 			if (lgroup.cs_cpu >= 0 &&
7496022f0bcSAlexander Motin 			    (load < lload ||
7506022f0bcSAlexander Motin 			     (load == lload && lgroup.cs_load < low->cs_load))) {
75136acfc65SAlexander Motin 				lload = load;
75236acfc65SAlexander Motin 				low->cs_cpu = lgroup.cs_cpu;
75336acfc65SAlexander Motin 				low->cs_load = lgroup.cs_load;
75436acfc65SAlexander Motin 			}
75536acfc65SAlexander Motin 		}
75636acfc65SAlexander Motin 		if (match & CPU_SEARCH_HIGHEST)
75770801abeSAlexander Motin 			if (hgroup.cs_cpu >= 0 &&
7586022f0bcSAlexander Motin 			    (load > hload ||
7596022f0bcSAlexander Motin 			     (load == hload && hgroup.cs_load > high->cs_load))) {
76036acfc65SAlexander Motin 				hload = load;
76136acfc65SAlexander Motin 				high->cs_cpu = hgroup.cs_cpu;
76236acfc65SAlexander Motin 				high->cs_load = hgroup.cs_load;
76336acfc65SAlexander Motin 			}
76470801abeSAlexander Motin 		if (child) {
76570801abeSAlexander Motin 			i--;
76670801abeSAlexander Motin 			if (i == 0 && CPU_EMPTY(&cpumask))
76770801abeSAlexander Motin 				break;
76858909b74SAlexander Motin 		}
76958909b74SAlexander Motin #ifndef HAVE_INLINE_FFSL
77058909b74SAlexander Motin 		else
77170801abeSAlexander Motin 			cpu--;
77258909b74SAlexander Motin #endif
77362fa74d9SJeff Roberson 	}
77462fa74d9SJeff Roberson 	return (total);
77562fa74d9SJeff Roberson }
77662fa74d9SJeff Roberson 
77762fa74d9SJeff Roberson /*
77862fa74d9SJeff Roberson  * cpu_search instantiations must pass constants to maintain the inline
77962fa74d9SJeff Roberson  * optimization.
78062fa74d9SJeff Roberson  */
78162fa74d9SJeff Roberson int
78236acfc65SAlexander Motin cpu_search_lowest(const struct cpu_group *cg, struct cpu_search *low)
78362fa74d9SJeff Roberson {
78462fa74d9SJeff Roberson 	return cpu_search(cg, low, NULL, CPU_SEARCH_LOWEST);
78562fa74d9SJeff Roberson }
78662fa74d9SJeff Roberson 
78762fa74d9SJeff Roberson int
78836acfc65SAlexander Motin cpu_search_highest(const struct cpu_group *cg, struct cpu_search *high)
78962fa74d9SJeff Roberson {
79062fa74d9SJeff Roberson 	return cpu_search(cg, NULL, high, CPU_SEARCH_HIGHEST);
79162fa74d9SJeff Roberson }
79262fa74d9SJeff Roberson 
79362fa74d9SJeff Roberson int
79436acfc65SAlexander Motin cpu_search_both(const struct cpu_group *cg, struct cpu_search *low,
79562fa74d9SJeff Roberson     struct cpu_search *high)
79662fa74d9SJeff Roberson {
79762fa74d9SJeff Roberson 	return cpu_search(cg, low, high, CPU_SEARCH_BOTH);
79862fa74d9SJeff Roberson }
79962fa74d9SJeff Roberson 
80062fa74d9SJeff Roberson /*
80162fa74d9SJeff Roberson  * Find the cpu with the least load via the least loaded path that has a
80262fa74d9SJeff Roberson  * lowpri greater than pri  pri.  A pri of -1 indicates any priority is
80362fa74d9SJeff Roberson  * acceptable.
80462fa74d9SJeff Roberson  */
80562fa74d9SJeff Roberson static inline int
80636acfc65SAlexander Motin sched_lowest(const struct cpu_group *cg, cpuset_t mask, int pri, int maxload,
80736acfc65SAlexander Motin     int prefer)
80862fa74d9SJeff Roberson {
80962fa74d9SJeff Roberson 	struct cpu_search low;
81062fa74d9SJeff Roberson 
81162fa74d9SJeff Roberson 	low.cs_cpu = -1;
81236acfc65SAlexander Motin 	low.cs_prefer = prefer;
81362fa74d9SJeff Roberson 	low.cs_mask = mask;
81436acfc65SAlexander Motin 	low.cs_pri = pri;
81536acfc65SAlexander Motin 	low.cs_limit = maxload;
81662fa74d9SJeff Roberson 	cpu_search_lowest(cg, &low);
81762fa74d9SJeff Roberson 	return low.cs_cpu;
81862fa74d9SJeff Roberson }
81962fa74d9SJeff Roberson 
82062fa74d9SJeff Roberson /*
82162fa74d9SJeff Roberson  * Find the cpu with the highest load via the highest loaded path.
82262fa74d9SJeff Roberson  */
82362fa74d9SJeff Roberson static inline int
82436acfc65SAlexander Motin sched_highest(const struct cpu_group *cg, cpuset_t mask, int minload)
82562fa74d9SJeff Roberson {
82662fa74d9SJeff Roberson 	struct cpu_search high;
82762fa74d9SJeff Roberson 
82862fa74d9SJeff Roberson 	high.cs_cpu = -1;
82962fa74d9SJeff Roberson 	high.cs_mask = mask;
83062fa74d9SJeff Roberson 	high.cs_limit = minload;
83162fa74d9SJeff Roberson 	cpu_search_highest(cg, &high);
83262fa74d9SJeff Roberson 	return high.cs_cpu;
83362fa74d9SJeff Roberson }
83462fa74d9SJeff Roberson 
83562fa74d9SJeff Roberson static void
83662fa74d9SJeff Roberson sched_balance_group(struct cpu_group *cg)
83762fa74d9SJeff Roberson {
838018ff686SJeff Roberson 	struct tdq *tdq;
83936acfc65SAlexander Motin 	cpuset_t hmask, lmask;
84036acfc65SAlexander Motin 	int high, low, anylow;
84162fa74d9SJeff Roberson 
84236acfc65SAlexander Motin 	CPU_FILL(&hmask);
84362fa74d9SJeff Roberson 	for (;;) {
84497e9382dSDon Lewis 		high = sched_highest(cg, hmask, 2);
84536acfc65SAlexander Motin 		/* Stop if there is no more CPU with transferrable threads. */
84636acfc65SAlexander Motin 		if (high == -1)
84762fa74d9SJeff Roberson 			break;
84836acfc65SAlexander Motin 		CPU_CLR(high, &hmask);
84936acfc65SAlexander Motin 		CPU_COPY(&hmask, &lmask);
85036acfc65SAlexander Motin 		/* Stop if there is no more CPU left for low. */
85136acfc65SAlexander Motin 		if (CPU_EMPTY(&lmask))
85262fa74d9SJeff Roberson 			break;
85336acfc65SAlexander Motin 		anylow = 1;
854018ff686SJeff Roberson 		tdq = TDQ_CPU(high);
85536acfc65SAlexander Motin nextlow:
856018ff686SJeff Roberson 		low = sched_lowest(cg, lmask, -1, tdq->tdq_load - 1, high);
85736acfc65SAlexander Motin 		/* Stop if we looked well and found no less loaded CPU. */
85836acfc65SAlexander Motin 		if (anylow && low == -1)
85936acfc65SAlexander Motin 			break;
86036acfc65SAlexander Motin 		/* Go to next high if we found no less loaded CPU. */
86136acfc65SAlexander Motin 		if (low == -1)
86236acfc65SAlexander Motin 			continue;
86336acfc65SAlexander Motin 		/* Transfer thread from high to low. */
864018ff686SJeff Roberson 		if (sched_balance_pair(tdq, TDQ_CPU(low))) {
86536acfc65SAlexander Motin 			/* CPU that got thread can no longer be a donor. */
86636acfc65SAlexander Motin 			CPU_CLR(low, &hmask);
86736acfc65SAlexander Motin 		} else {
86862fa74d9SJeff Roberson 			/*
86936acfc65SAlexander Motin 			 * If failed, then there is no threads on high
87036acfc65SAlexander Motin 			 * that can run on this low. Drop low from low
87136acfc65SAlexander Motin 			 * mask and look for different one.
87262fa74d9SJeff Roberson 			 */
87336acfc65SAlexander Motin 			CPU_CLR(low, &lmask);
87436acfc65SAlexander Motin 			anylow = 0;
87536acfc65SAlexander Motin 			goto nextlow;
87662fa74d9SJeff Roberson 		}
87736acfc65SAlexander Motin 	}
87862fa74d9SJeff Roberson }
87962fa74d9SJeff Roberson 
88062fa74d9SJeff Roberson static void
88162375ca8SEd Schouten sched_balance(void)
882356500a3SJeff Roberson {
8837fcf154aSJeff Roberson 	struct tdq *tdq;
884356500a3SJeff Roberson 
8850567b6ccSWarner Losh 	balance_ticks = max(balance_interval / 2, 1) +
886b250ad34SWarner Losh 	    (sched_random() % balance_interval);
8877fcf154aSJeff Roberson 	tdq = TDQ_SELF();
8887fcf154aSJeff Roberson 	TDQ_UNLOCK(tdq);
88962fa74d9SJeff Roberson 	sched_balance_group(cpu_top);
8907fcf154aSJeff Roberson 	TDQ_LOCK(tdq);
891cac77d04SJeff Roberson }
89286f8ae96SJeff Roberson 
893ae7a6b38SJeff Roberson /*
894ae7a6b38SJeff Roberson  * Lock two thread queues using their address to maintain lock order.
895ae7a6b38SJeff Roberson  */
896ae7a6b38SJeff Roberson static void
897ae7a6b38SJeff Roberson tdq_lock_pair(struct tdq *one, struct tdq *two)
898ae7a6b38SJeff Roberson {
899ae7a6b38SJeff Roberson 	if (one < two) {
900ae7a6b38SJeff Roberson 		TDQ_LOCK(one);
901ae7a6b38SJeff Roberson 		TDQ_LOCK_FLAGS(two, MTX_DUPOK);
902ae7a6b38SJeff Roberson 	} else {
903ae7a6b38SJeff Roberson 		TDQ_LOCK(two);
904ae7a6b38SJeff Roberson 		TDQ_LOCK_FLAGS(one, MTX_DUPOK);
905ae7a6b38SJeff Roberson 	}
906ae7a6b38SJeff Roberson }
907ae7a6b38SJeff Roberson 
908ae7a6b38SJeff Roberson /*
9097fcf154aSJeff Roberson  * Unlock two thread queues.  Order is not important here.
9107fcf154aSJeff Roberson  */
9117fcf154aSJeff Roberson static void
9127fcf154aSJeff Roberson tdq_unlock_pair(struct tdq *one, struct tdq *two)
9137fcf154aSJeff Roberson {
9147fcf154aSJeff Roberson 	TDQ_UNLOCK(one);
9157fcf154aSJeff Roberson 	TDQ_UNLOCK(two);
9167fcf154aSJeff Roberson }
9177fcf154aSJeff Roberson 
9187fcf154aSJeff Roberson /*
919ae7a6b38SJeff Roberson  * Transfer load between two imbalanced thread queues.
920ae7a6b38SJeff Roberson  */
92162fa74d9SJeff Roberson static int
922ad1e7d28SJulian Elischer sched_balance_pair(struct tdq *high, struct tdq *low)
923cac77d04SJeff Roberson {
92497e9382dSDon Lewis 	struct thread *td;
925880bf8b9SMarius Strobl 	int cpu;
926cac77d04SJeff Roberson 
927ae7a6b38SJeff Roberson 	tdq_lock_pair(high, low);
92897e9382dSDon Lewis 	td = NULL;
929155b9987SJeff Roberson 	/*
93097e9382dSDon Lewis 	 * Transfer a thread from high to low.
931155b9987SJeff Roberson 	 */
93236acfc65SAlexander Motin 	if (high->tdq_transferable != 0 && high->tdq_load > low->tdq_load &&
93397e9382dSDon Lewis 	    (td = tdq_move(high, low)) != NULL) {
934a5423ea3SJeff Roberson 		/*
93597e9382dSDon Lewis 		 * In case the target isn't the current cpu notify it of the
93697e9382dSDon Lewis 		 * new load, possibly sending an IPI to force it to reschedule.
937a5423ea3SJeff Roberson 		 */
938880bf8b9SMarius Strobl 		cpu = TDQ_ID(low);
939880bf8b9SMarius Strobl 		if (cpu != PCPU_GET(cpuid))
94097e9382dSDon Lewis 			tdq_notify(low, td);
941ae7a6b38SJeff Roberson 	}
9427fcf154aSJeff Roberson 	tdq_unlock_pair(high, low);
94397e9382dSDon Lewis 	return (td != NULL);
944356500a3SJeff Roberson }
945356500a3SJeff Roberson 
946ae7a6b38SJeff Roberson /*
947ae7a6b38SJeff Roberson  * Move a thread from one thread queue to another.
948ae7a6b38SJeff Roberson  */
94997e9382dSDon Lewis static struct thread *
950ae7a6b38SJeff Roberson tdq_move(struct tdq *from, struct tdq *to)
951356500a3SJeff Roberson {
952ae7a6b38SJeff Roberson 	struct thread *td;
953ae7a6b38SJeff Roberson 	struct tdq *tdq;
954ae7a6b38SJeff Roberson 	int cpu;
955356500a3SJeff Roberson 
9567fcf154aSJeff Roberson 	TDQ_LOCK_ASSERT(from, MA_OWNED);
9577fcf154aSJeff Roberson 	TDQ_LOCK_ASSERT(to, MA_OWNED);
9587fcf154aSJeff Roberson 
959ad1e7d28SJulian Elischer 	tdq = from;
960ae7a6b38SJeff Roberson 	cpu = TDQ_ID(to);
9619727e637SJeff Roberson 	td = tdq_steal(tdq, cpu);
9629727e637SJeff Roberson 	if (td == NULL)
96397e9382dSDon Lewis 		return (NULL);
96461a74c5cSJeff Roberson 
965ae7a6b38SJeff Roberson 	/*
96661a74c5cSJeff Roberson 	 * Although the run queue is locked the thread may be
96761a74c5cSJeff Roberson 	 * blocked.  We can not set the lock until it is unblocked.
968ae7a6b38SJeff Roberson 	 */
96961a74c5cSJeff Roberson 	thread_lock_block_wait(td);
970ae7a6b38SJeff Roberson 	sched_rem(td);
97161a74c5cSJeff Roberson 	THREAD_LOCKPTR_ASSERT(td, TDQ_LOCKPTR(from));
972ae7a6b38SJeff Roberson 	td->td_lock = TDQ_LOCKPTR(to);
97361a74c5cSJeff Roberson 	td_get_sched(td)->ts_cpu = cpu;
974ae7a6b38SJeff Roberson 	tdq_add(to, td, SRQ_YIELDING);
97561a74c5cSJeff Roberson 
97697e9382dSDon Lewis 	return (td);
977356500a3SJeff Roberson }
97822bf7d9aSJeff Roberson 
979ae7a6b38SJeff Roberson /*
980ae7a6b38SJeff Roberson  * This tdq has idled.  Try to steal a thread from another cpu and switch
981ae7a6b38SJeff Roberson  * to it.
982ae7a6b38SJeff Roberson  */
98380f86c9fSJeff Roberson static int
984ad1e7d28SJulian Elischer tdq_idled(struct tdq *tdq)
98522bf7d9aSJeff Roberson {
98662fa74d9SJeff Roberson 	struct cpu_group *cg;
987ad1e7d28SJulian Elischer 	struct tdq *steal;
988c76ee827SJeff Roberson 	cpuset_t mask;
98997e9382dSDon Lewis 	int cpu, switchcnt;
99080f86c9fSJeff Roberson 
99197e9382dSDon Lewis 	if (smp_started == 0 || steal_idle == 0 || tdq->tdq_cg == NULL)
99288f530ccSJeff Roberson 		return (1);
993c76ee827SJeff Roberson 	CPU_FILL(&mask);
994c76ee827SJeff Roberson 	CPU_CLR(PCPU_GET(cpuid), &mask);
99597e9382dSDon Lewis     restart:
99697e9382dSDon Lewis 	switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt;
99797e9382dSDon Lewis 	for (cg = tdq->tdq_cg; ; ) {
99897e9382dSDon Lewis 		cpu = sched_highest(cg, mask, steal_thresh);
99997e9382dSDon Lewis 		/*
100097e9382dSDon Lewis 		 * We were assigned a thread but not preempted.  Returning
100197e9382dSDon Lewis 		 * 0 here will cause our caller to switch to it.
100297e9382dSDon Lewis 		 */
100397e9382dSDon Lewis 		if (tdq->tdq_load)
100497e9382dSDon Lewis 			return (0);
100562fa74d9SJeff Roberson 		if (cpu == -1) {
100662fa74d9SJeff Roberson 			cg = cg->cg_parent;
100797e9382dSDon Lewis 			if (cg == NULL)
100897e9382dSDon Lewis 				return (1);
100980f86c9fSJeff Roberson 			continue;
10107b8bfa0dSJeff Roberson 		}
10117b8bfa0dSJeff Roberson 		steal = TDQ_CPU(cpu);
101297e9382dSDon Lewis 		/*
101397e9382dSDon Lewis 		 * The data returned by sched_highest() is stale and
101497e9382dSDon Lewis 		 * the chosen CPU no longer has an eligible thread.
101597e9382dSDon Lewis 		 *
101697e9382dSDon Lewis 		 * Testing this ahead of tdq_lock_pair() only catches
101797e9382dSDon Lewis 		 * this situation about 20% of the time on an 8 core
101897e9382dSDon Lewis 		 * 16 thread Ryzen 7, but it still helps performance.
101997e9382dSDon Lewis 		 */
102097e9382dSDon Lewis 		if (steal->tdq_load < steal_thresh ||
102197e9382dSDon Lewis 		    steal->tdq_transferable == 0)
102297e9382dSDon Lewis 			goto restart;
10237fcf154aSJeff Roberson 		tdq_lock_pair(tdq, steal);
102497e9382dSDon Lewis 		/*
102597e9382dSDon Lewis 		 * We were assigned a thread while waiting for the locks.
102697e9382dSDon Lewis 		 * Switch to it now instead of stealing a thread.
102797e9382dSDon Lewis 		 */
102897e9382dSDon Lewis 		if (tdq->tdq_load)
102997e9382dSDon Lewis 			break;
103097e9382dSDon Lewis 		/*
103197e9382dSDon Lewis 		 * The data returned by sched_highest() is stale and
103297e9382dSDon Lewis 		 * the chosen CPU no longer has an eligible thread, or
103397e9382dSDon Lewis 		 * we were preempted and the CPU loading info may be out
103497e9382dSDon Lewis 		 * of date.  The latter is rare.  In either case restart
103597e9382dSDon Lewis 		 * the search.
103697e9382dSDon Lewis 		 */
103797e9382dSDon Lewis 		if (steal->tdq_load < steal_thresh ||
103897e9382dSDon Lewis 		    steal->tdq_transferable == 0 ||
103997e9382dSDon Lewis 		    switchcnt != tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt) {
10407fcf154aSJeff Roberson 			tdq_unlock_pair(tdq, steal);
104197e9382dSDon Lewis 			goto restart;
104262fa74d9SJeff Roberson 		}
104362fa74d9SJeff Roberson 		/*
104497e9382dSDon Lewis 		 * Steal the thread and switch to it.
104562fa74d9SJeff Roberson 		 */
104697e9382dSDon Lewis 		if (tdq_move(steal, tdq) != NULL)
104797e9382dSDon Lewis 			break;
104897e9382dSDon Lewis 		/*
104997e9382dSDon Lewis 		 * We failed to acquire a thread even though it looked
105097e9382dSDon Lewis 		 * like one was available.  This could be due to affinity
105197e9382dSDon Lewis 		 * restrictions or for other reasons.  Loop again after
105297e9382dSDon Lewis 		 * removing this CPU from the set.  The restart logic
105397e9382dSDon Lewis 		 * above does not restore this CPU to the set due to the
105497e9382dSDon Lewis 		 * likelyhood of failing here again.
105597e9382dSDon Lewis 		 */
105697e9382dSDon Lewis 		CPU_CLR(cpu, &mask);
105762fa74d9SJeff Roberson 		tdq_unlock_pair(tdq, steal);
105880f86c9fSJeff Roberson 	}
1059ae7a6b38SJeff Roberson 	TDQ_UNLOCK(steal);
1060686bcb5cSJeff Roberson 	mi_switch(SW_VOL | SWT_IDLE);
10617b8bfa0dSJeff Roberson 	return (0);
106222bf7d9aSJeff Roberson }
106322bf7d9aSJeff Roberson 
1064ae7a6b38SJeff Roberson /*
1065ae7a6b38SJeff Roberson  * Notify a remote cpu of new work.  Sends an IPI if criteria are met.
1066ae7a6b38SJeff Roberson  */
106722bf7d9aSJeff Roberson static void
106827ee18adSRyan Stone tdq_notify(struct tdq *tdq, struct thread *td)
106922bf7d9aSJeff Roberson {
107002f0ff6dSJohn Baldwin 	struct thread *ctd;
107127ee18adSRyan Stone 	int pri;
10727b8bfa0dSJeff Roberson 	int cpu;
107322bf7d9aSJeff Roberson 
10747789ab32SMark Johnston 	if (tdq->tdq_owepreempt)
1075ff256d9cSJeff Roberson 		return;
107627ee18adSRyan Stone 	cpu = td_get_sched(td)->ts_cpu;
107727ee18adSRyan Stone 	pri = td->td_priority;
107802f0ff6dSJohn Baldwin 	ctd = pcpu_find(cpu)->pc_curthread;
107902f0ff6dSJohn Baldwin 	if (!sched_shouldpreempt(pri, ctd->td_priority, 1))
10806b2f763fSJeff Roberson 		return;
108179654969SAlexander Motin 
108279654969SAlexander Motin 	/*
1083ae9e9b4fSAlexander Motin 	 * Make sure that our caller's earlier update to tdq_load is
1084ae9e9b4fSAlexander Motin 	 * globally visible before we read tdq_cpu_idle.  Idle thread
108579654969SAlexander Motin 	 * accesses both of them without locks, and the order is important.
108679654969SAlexander Motin 	 */
1087e8677f38SKonstantin Belousov 	atomic_thread_fence_seq_cst();
108879654969SAlexander Motin 
108902f0ff6dSJohn Baldwin 	if (TD_IS_IDLETHREAD(ctd)) {
10901690c6c1SJeff Roberson 		/*
10916c47aaaeSJeff Roberson 		 * If the MD code has an idle wakeup routine try that before
10926c47aaaeSJeff Roberson 		 * falling back to IPI.
10936c47aaaeSJeff Roberson 		 */
10949f9ad565SAlexander Motin 		if (!tdq->tdq_cpu_idle || cpu_idle_wakeup(cpu))
10956c47aaaeSJeff Roberson 			return;
10961690c6c1SJeff Roberson 	}
10977789ab32SMark Johnston 
10987789ab32SMark Johnston 	/*
10997789ab32SMark Johnston 	 * The run queues have been updated, so any switch on the remote CPU
11007789ab32SMark Johnston 	 * will satisfy the preemption request.
11017789ab32SMark Johnston 	 */
11027789ab32SMark Johnston 	tdq->tdq_owepreempt = 1;
1103d9d8d144SJohn Baldwin 	ipi_cpu(cpu, IPI_PREEMPT);
110422bf7d9aSJeff Roberson }
110522bf7d9aSJeff Roberson 
1106ae7a6b38SJeff Roberson /*
1107ae7a6b38SJeff Roberson  * Steals load from a timeshare queue.  Honors the rotating queue head
1108ae7a6b38SJeff Roberson  * index.
1109ae7a6b38SJeff Roberson  */
11109727e637SJeff Roberson static struct thread *
111162fa74d9SJeff Roberson runq_steal_from(struct runq *rq, int cpu, u_char start)
1112ae7a6b38SJeff Roberson {
1113ae7a6b38SJeff Roberson 	struct rqbits *rqb;
1114ae7a6b38SJeff Roberson 	struct rqhead *rqh;
111536acfc65SAlexander Motin 	struct thread *td, *first;
1116ae7a6b38SJeff Roberson 	int bit;
1117ae7a6b38SJeff Roberson 	int i;
1118ae7a6b38SJeff Roberson 
1119ae7a6b38SJeff Roberson 	rqb = &rq->rq_status;
1120ae7a6b38SJeff Roberson 	bit = start & (RQB_BPW -1);
112136acfc65SAlexander Motin 	first = NULL;
1122ae7a6b38SJeff Roberson again:
1123ae7a6b38SJeff Roberson 	for (i = RQB_WORD(start); i < RQB_LEN; bit = 0, i++) {
1124ae7a6b38SJeff Roberson 		if (rqb->rqb_bits[i] == 0)
1125ae7a6b38SJeff Roberson 			continue;
11268bc713f6SJeff Roberson 		if (bit == 0)
11278bc713f6SJeff Roberson 			bit = RQB_FFS(rqb->rqb_bits[i]);
11288bc713f6SJeff Roberson 		for (; bit < RQB_BPW; bit++) {
11298bc713f6SJeff Roberson 			if ((rqb->rqb_bits[i] & (1ul << bit)) == 0)
1130ae7a6b38SJeff Roberson 				continue;
11318bc713f6SJeff Roberson 			rqh = &rq->rq_queues[bit + (i << RQB_L2BPW)];
11329727e637SJeff Roberson 			TAILQ_FOREACH(td, rqh, td_runq) {
11339727e637SJeff Roberson 				if (first && THREAD_CAN_MIGRATE(td) &&
11349727e637SJeff Roberson 				    THREAD_CAN_SCHED(td, cpu))
11359727e637SJeff Roberson 					return (td);
113636acfc65SAlexander Motin 				first = td;
1137ae7a6b38SJeff Roberson 			}
1138ae7a6b38SJeff Roberson 		}
11398bc713f6SJeff Roberson 	}
1140ae7a6b38SJeff Roberson 	if (start != 0) {
1141ae7a6b38SJeff Roberson 		start = 0;
1142ae7a6b38SJeff Roberson 		goto again;
1143ae7a6b38SJeff Roberson 	}
1144ae7a6b38SJeff Roberson 
114536acfc65SAlexander Motin 	if (first && THREAD_CAN_MIGRATE(first) &&
114636acfc65SAlexander Motin 	    THREAD_CAN_SCHED(first, cpu))
114736acfc65SAlexander Motin 		return (first);
1148ae7a6b38SJeff Roberson 	return (NULL);
1149ae7a6b38SJeff Roberson }
1150ae7a6b38SJeff Roberson 
1151ae7a6b38SJeff Roberson /*
1152ae7a6b38SJeff Roberson  * Steals load from a standard linear queue.
1153ae7a6b38SJeff Roberson  */
11549727e637SJeff Roberson static struct thread *
115562fa74d9SJeff Roberson runq_steal(struct runq *rq, int cpu)
115622bf7d9aSJeff Roberson {
115722bf7d9aSJeff Roberson 	struct rqhead *rqh;
115822bf7d9aSJeff Roberson 	struct rqbits *rqb;
11599727e637SJeff Roberson 	struct thread *td;
116022bf7d9aSJeff Roberson 	int word;
116122bf7d9aSJeff Roberson 	int bit;
116222bf7d9aSJeff Roberson 
116322bf7d9aSJeff Roberson 	rqb = &rq->rq_status;
116422bf7d9aSJeff Roberson 	for (word = 0; word < RQB_LEN; word++) {
116522bf7d9aSJeff Roberson 		if (rqb->rqb_bits[word] == 0)
116622bf7d9aSJeff Roberson 			continue;
116722bf7d9aSJeff Roberson 		for (bit = 0; bit < RQB_BPW; bit++) {
1168a2640c9bSPeter Wemm 			if ((rqb->rqb_bits[word] & (1ul << bit)) == 0)
116922bf7d9aSJeff Roberson 				continue;
117022bf7d9aSJeff Roberson 			rqh = &rq->rq_queues[bit + (word << RQB_L2BPW)];
11719727e637SJeff Roberson 			TAILQ_FOREACH(td, rqh, td_runq)
11729727e637SJeff Roberson 				if (THREAD_CAN_MIGRATE(td) &&
11739727e637SJeff Roberson 				    THREAD_CAN_SCHED(td, cpu))
11749727e637SJeff Roberson 					return (td);
117522bf7d9aSJeff Roberson 		}
117622bf7d9aSJeff Roberson 	}
117722bf7d9aSJeff Roberson 	return (NULL);
117822bf7d9aSJeff Roberson }
117922bf7d9aSJeff Roberson 
1180ae7a6b38SJeff Roberson /*
1181ae7a6b38SJeff Roberson  * Attempt to steal a thread in priority order from a thread queue.
1182ae7a6b38SJeff Roberson  */
11839727e637SJeff Roberson static struct thread *
118462fa74d9SJeff Roberson tdq_steal(struct tdq *tdq, int cpu)
118522bf7d9aSJeff Roberson {
11869727e637SJeff Roberson 	struct thread *td;
118722bf7d9aSJeff Roberson 
1188ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
11899727e637SJeff Roberson 	if ((td = runq_steal(&tdq->tdq_realtime, cpu)) != NULL)
11909727e637SJeff Roberson 		return (td);
11919727e637SJeff Roberson 	if ((td = runq_steal_from(&tdq->tdq_timeshare,
11929727e637SJeff Roberson 	    cpu, tdq->tdq_ridx)) != NULL)
11939727e637SJeff Roberson 		return (td);
119462fa74d9SJeff Roberson 	return (runq_steal(&tdq->tdq_idle, cpu));
119522bf7d9aSJeff Roberson }
119680f86c9fSJeff Roberson 
1197ae7a6b38SJeff Roberson /*
1198ae7a6b38SJeff Roberson  * Sets the thread lock and ts_cpu to match the requested cpu.  Unlocks the
11997fcf154aSJeff Roberson  * current lock and returns with the assigned queue locked.
1200ae7a6b38SJeff Roberson  */
1201ae7a6b38SJeff Roberson static inline struct tdq *
12029727e637SJeff Roberson sched_setcpu(struct thread *td, int cpu, int flags)
120380f86c9fSJeff Roberson {
12049727e637SJeff Roberson 
1205ae7a6b38SJeff Roberson 	struct tdq *tdq;
120661a74c5cSJeff Roberson 	struct mtx *mtx;
120780f86c9fSJeff Roberson 
12089727e637SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
1209ae7a6b38SJeff Roberson 	tdq = TDQ_CPU(cpu);
121093ccd6bfSKonstantin Belousov 	td_get_sched(td)->ts_cpu = cpu;
12119727e637SJeff Roberson 	/*
12129727e637SJeff Roberson 	 * If the lock matches just return the queue.
12139727e637SJeff Roberson 	 */
121461a74c5cSJeff Roberson 	if (td->td_lock == TDQ_LOCKPTR(tdq)) {
121561a74c5cSJeff Roberson 		KASSERT((flags & SRQ_HOLD) == 0,
121661a74c5cSJeff Roberson 		    ("sched_setcpu: Invalid lock for SRQ_HOLD"));
1217ae7a6b38SJeff Roberson 		return (tdq);
1218ae7a6b38SJeff Roberson 	}
121961a74c5cSJeff Roberson 
122080f86c9fSJeff Roberson 	/*
1221ae7a6b38SJeff Roberson 	 * The hard case, migration, we need to block the thread first to
1222ae7a6b38SJeff Roberson 	 * prevent order reversals with other cpus locks.
12237b8bfa0dSJeff Roberson 	 */
1224b0b9dee5SAttilio Rao 	spinlock_enter();
122561a74c5cSJeff Roberson 	mtx = thread_lock_block(td);
122661a74c5cSJeff Roberson 	if ((flags & SRQ_HOLD) == 0)
122761a74c5cSJeff Roberson 		mtx_unlock_spin(mtx);
1228ae7a6b38SJeff Roberson 	TDQ_LOCK(tdq);
1229ae7a6b38SJeff Roberson 	thread_lock_unblock(td, TDQ_LOCKPTR(tdq));
1230b0b9dee5SAttilio Rao 	spinlock_exit();
1231ae7a6b38SJeff Roberson 	return (tdq);
123280f86c9fSJeff Roberson }
12332454aaf5SJeff Roberson 
12348df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_intrbind, "Soft interrupt binding");
12358df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_idle_affinity, "Picked idle cpu based on affinity");
12368df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_affinity, "Picked cpu based on affinity");
12378df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_lowest, "Selected lowest load");
12388df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_local, "Migrated to current cpu");
12398df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_migration, "Selection may have caused migration");
12408df78c41SJeff Roberson 
1241ae7a6b38SJeff Roberson static int
12429727e637SJeff Roberson sched_pickcpu(struct thread *td, int flags)
1243ae7a6b38SJeff Roberson {
124436acfc65SAlexander Motin 	struct cpu_group *cg, *ccg;
12459727e637SJeff Roberson 	struct td_sched *ts;
1246ae7a6b38SJeff Roberson 	struct tdq *tdq;
1247c76ee827SJeff Roberson 	cpuset_t mask;
1248c9205e35SAlexander Motin 	int cpu, pri, self, intr;
12497b8bfa0dSJeff Roberson 
125062fa74d9SJeff Roberson 	self = PCPU_GET(cpuid);
125193ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
1252efe67753SNathan Whitehorn 	KASSERT(!CPU_ABSENT(ts->ts_cpu), ("sched_pickcpu: Start scheduler on "
1253efe67753SNathan Whitehorn 	    "absent CPU %d for thread %s.", ts->ts_cpu, td->td_name));
12547b8bfa0dSJeff Roberson 	if (smp_started == 0)
12557b8bfa0dSJeff Roberson 		return (self);
125628994a58SJeff Roberson 	/*
125728994a58SJeff Roberson 	 * Don't migrate a running thread from sched_switch().
125828994a58SJeff Roberson 	 */
125962fa74d9SJeff Roberson 	if ((flags & SRQ_OURSELF) || !THREAD_CAN_MIGRATE(td))
126062fa74d9SJeff Roberson 		return (ts->ts_cpu);
12617b8bfa0dSJeff Roberson 	/*
126262fa74d9SJeff Roberson 	 * Prefer to run interrupt threads on the processors that generate
126362fa74d9SJeff Roberson 	 * the interrupt.
12647b8bfa0dSJeff Roberson 	 */
126562fa74d9SJeff Roberson 	if (td->td_priority <= PRI_MAX_ITHD && THREAD_CAN_SCHED(td, self) &&
1266c9205e35SAlexander Motin 	    curthread->td_intr_nesting_level) {
1267c55dc51cSAlexander Motin 		tdq = TDQ_SELF();
1268c55dc51cSAlexander Motin 		if (tdq->tdq_lowpri >= PRI_MIN_IDLE) {
1269c55dc51cSAlexander Motin 			SCHED_STAT_INC(pickcpu_idle_affinity);
1270c55dc51cSAlexander Motin 			return (self);
1271c55dc51cSAlexander Motin 		}
127262fa74d9SJeff Roberson 		ts->ts_cpu = self;
1273c9205e35SAlexander Motin 		intr = 1;
1274c55dc51cSAlexander Motin 		cg = tdq->tdq_cg;
1275c55dc51cSAlexander Motin 		goto llc;
1276c55dc51cSAlexander Motin 	} else {
1277c9205e35SAlexander Motin 		intr = 0;
1278c55dc51cSAlexander Motin 		tdq = TDQ_CPU(ts->ts_cpu);
1279c55dc51cSAlexander Motin 		cg = tdq->tdq_cg;
1280c55dc51cSAlexander Motin 	}
12817b8bfa0dSJeff Roberson 	/*
128236acfc65SAlexander Motin 	 * If the thread can run on the last cpu and the affinity has not
12830127914cSEric van Gyzen 	 * expired and it is idle, run it there.
12847b8bfa0dSJeff Roberson 	 */
128536acfc65SAlexander Motin 	if (THREAD_CAN_SCHED(td, ts->ts_cpu) &&
128636acfc65SAlexander Motin 	    tdq->tdq_lowpri >= PRI_MIN_IDLE &&
128736acfc65SAlexander Motin 	    SCHED_AFFINITY(ts, CG_SHARE_L2)) {
1288c55dc51cSAlexander Motin 		if (cg->cg_flags & CG_FLAG_THREAD) {
1289176dd236SAlexander Motin 			/* Check all SMT threads for being idle. */
1290176dd236SAlexander Motin 			for (cpu = CPU_FFS(&cg->cg_mask) - 1; ; cpu++) {
1291176dd236SAlexander Motin 				if (CPU_ISSET(cpu, &cg->cg_mask) &&
1292176dd236SAlexander Motin 				    TDQ_CPU(cpu)->tdq_lowpri < PRI_MIN_IDLE)
129362fa74d9SJeff Roberson 					break;
1294176dd236SAlexander Motin 				if (cpu >= mp_maxid) {
1295176dd236SAlexander Motin 					SCHED_STAT_INC(pickcpu_idle_affinity);
1296176dd236SAlexander Motin 					return (ts->ts_cpu);
129736acfc65SAlexander Motin 				}
1298176dd236SAlexander Motin 			}
1299176dd236SAlexander Motin 		} else {
130036acfc65SAlexander Motin 			SCHED_STAT_INC(pickcpu_idle_affinity);
130136acfc65SAlexander Motin 			return (ts->ts_cpu);
130236acfc65SAlexander Motin 		}
130336acfc65SAlexander Motin 	}
1304c55dc51cSAlexander Motin llc:
130536acfc65SAlexander Motin 	/*
130636acfc65SAlexander Motin 	 * Search for the last level cache CPU group in the tree.
1307c9205e35SAlexander Motin 	 * Skip SMT, identical groups and caches with expired affinity.
1308c9205e35SAlexander Motin 	 * Interrupt threads affinity is explicit and never expires.
130936acfc65SAlexander Motin 	 */
131036acfc65SAlexander Motin 	for (ccg = NULL; cg != NULL; cg = cg->cg_parent) {
131136acfc65SAlexander Motin 		if (cg->cg_flags & CG_FLAG_THREAD)
131236acfc65SAlexander Motin 			continue;
1313c9205e35SAlexander Motin 		if (cg->cg_children == 1 || cg->cg_count == 1)
1314c9205e35SAlexander Motin 			continue;
1315c9205e35SAlexander Motin 		if (cg->cg_level == CG_SHARE_NONE ||
1316c9205e35SAlexander Motin 		    (!intr && !SCHED_AFFINITY(ts, cg->cg_level)))
131736acfc65SAlexander Motin 			continue;
131836acfc65SAlexander Motin 		ccg = cg;
131936acfc65SAlexander Motin 	}
1320c9205e35SAlexander Motin 	/* Found LLC shared by all CPUs, so do a global search. */
1321c9205e35SAlexander Motin 	if (ccg == cpu_top)
1322c9205e35SAlexander Motin 		ccg = NULL;
132362fa74d9SJeff Roberson 	cpu = -1;
1324c76ee827SJeff Roberson 	mask = td->td_cpuset->cs_mask;
1325c9205e35SAlexander Motin 	pri = td->td_priority;
1326c9205e35SAlexander Motin 	/*
1327c9205e35SAlexander Motin 	 * Try hard to keep interrupts within found LLC.  Search the LLC for
1328c9205e35SAlexander Motin 	 * the least loaded CPU we can run now.  For NUMA systems it should
1329c9205e35SAlexander Motin 	 * be within target domain, and it also reduces scheduling overhead.
1330c9205e35SAlexander Motin 	 */
1331c9205e35SAlexander Motin 	if (ccg != NULL && intr) {
1332c9205e35SAlexander Motin 		cpu = sched_lowest(ccg, mask, pri, INT_MAX, ts->ts_cpu);
1333c9205e35SAlexander Motin 		if (cpu >= 0)
1334c9205e35SAlexander Motin 			SCHED_STAT_INC(pickcpu_intrbind);
1335c9205e35SAlexander Motin 	} else
1336c9205e35SAlexander Motin 	/* Search the LLC for the least loaded idle CPU we can run now. */
1337c9205e35SAlexander Motin 	if (ccg != NULL) {
1338c9205e35SAlexander Motin 		cpu = sched_lowest(ccg, mask, max(pri, PRI_MAX_TIMESHARE),
133936acfc65SAlexander Motin 		    INT_MAX, ts->ts_cpu);
1340c9205e35SAlexander Motin 		if (cpu >= 0)
1341c9205e35SAlexander Motin 			SCHED_STAT_INC(pickcpu_affinity);
1342c9205e35SAlexander Motin 	}
1343c9205e35SAlexander Motin 	/* Search globally for the least loaded CPU we can run now. */
1344c9205e35SAlexander Motin 	if (cpu < 0) {
134536acfc65SAlexander Motin 		cpu = sched_lowest(cpu_top, mask, pri, INT_MAX, ts->ts_cpu);
1346c9205e35SAlexander Motin 		if (cpu >= 0)
1347c9205e35SAlexander Motin 			SCHED_STAT_INC(pickcpu_lowest);
1348c9205e35SAlexander Motin 	}
1349c9205e35SAlexander Motin 	/* Search globally for the least loaded CPU. */
1350c9205e35SAlexander Motin 	if (cpu < 0) {
135136acfc65SAlexander Motin 		cpu = sched_lowest(cpu_top, mask, -1, INT_MAX, ts->ts_cpu);
1352c9205e35SAlexander Motin 		if (cpu >= 0)
1353c9205e35SAlexander Motin 			SCHED_STAT_INC(pickcpu_lowest);
1354c9205e35SAlexander Motin 	}
1355bb3dfc6aSAlexander Motin 	KASSERT(cpu >= 0, ("sched_pickcpu: Failed to find a cpu."));
1356efe67753SNathan Whitehorn 	KASSERT(!CPU_ABSENT(cpu), ("sched_pickcpu: Picked absent CPU %d.", cpu));
135762fa74d9SJeff Roberson 	/*
135862fa74d9SJeff Roberson 	 * Compare the lowest loaded cpu to current cpu.
135962fa74d9SJeff Roberson 	 */
1360018ff686SJeff Roberson 	tdq = TDQ_CPU(cpu);
1361018ff686SJeff Roberson 	if (THREAD_CAN_SCHED(td, self) && TDQ_SELF()->tdq_lowpri > pri &&
1362018ff686SJeff Roberson 	    tdq->tdq_lowpri < PRI_MIN_IDLE &&
1363018ff686SJeff Roberson 	    TDQ_SELF()->tdq_load <= tdq->tdq_load + 1) {
13648df78c41SJeff Roberson 		SCHED_STAT_INC(pickcpu_local);
136562fa74d9SJeff Roberson 		cpu = self;
1366c9205e35SAlexander Motin 	}
13678df78c41SJeff Roberson 	if (cpu != ts->ts_cpu)
13688df78c41SJeff Roberson 		SCHED_STAT_INC(pickcpu_migration);
1369ae7a6b38SJeff Roberson 	return (cpu);
137080f86c9fSJeff Roberson }
137162fa74d9SJeff Roberson #endif
137222bf7d9aSJeff Roberson 
137322bf7d9aSJeff Roberson /*
137422bf7d9aSJeff Roberson  * Pick the highest priority task we have and return it.
13750c0a98b2SJeff Roberson  */
13769727e637SJeff Roberson static struct thread *
1377ad1e7d28SJulian Elischer tdq_choose(struct tdq *tdq)
13785d7ef00cSJeff Roberson {
13799727e637SJeff Roberson 	struct thread *td;
13805d7ef00cSJeff Roberson 
1381ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
13829727e637SJeff Roberson 	td = runq_choose(&tdq->tdq_realtime);
13839727e637SJeff Roberson 	if (td != NULL)
13849727e637SJeff Roberson 		return (td);
13859727e637SJeff Roberson 	td = runq_choose_from(&tdq->tdq_timeshare, tdq->tdq_ridx);
13869727e637SJeff Roberson 	if (td != NULL) {
138712d56c0fSJohn Baldwin 		KASSERT(td->td_priority >= PRI_MIN_BATCH,
1388e7d50326SJeff Roberson 		    ("tdq_choose: Invalid priority on timeshare queue %d",
13899727e637SJeff Roberson 		    td->td_priority));
13909727e637SJeff Roberson 		return (td);
139115dc847eSJeff Roberson 	}
13929727e637SJeff Roberson 	td = runq_choose(&tdq->tdq_idle);
13939727e637SJeff Roberson 	if (td != NULL) {
13949727e637SJeff Roberson 		KASSERT(td->td_priority >= PRI_MIN_IDLE,
1395e7d50326SJeff Roberson 		    ("tdq_choose: Invalid priority on idle queue %d",
13969727e637SJeff Roberson 		    td->td_priority));
13979727e637SJeff Roberson 		return (td);
1398e7d50326SJeff Roberson 	}
1399e7d50326SJeff Roberson 
1400e7d50326SJeff Roberson 	return (NULL);
1401245f3abfSJeff Roberson }
14020a016a05SJeff Roberson 
1403ae7a6b38SJeff Roberson /*
1404ae7a6b38SJeff Roberson  * Initialize a thread queue.
1405ae7a6b38SJeff Roberson  */
14060a016a05SJeff Roberson static void
1407018ff686SJeff Roberson tdq_setup(struct tdq *tdq, int id)
14080a016a05SJeff Roberson {
1409ae7a6b38SJeff Roberson 
1410c47f202bSJeff Roberson 	if (bootverbose)
1411018ff686SJeff Roberson 		printf("ULE: setup cpu %d\n", id);
1412e7d50326SJeff Roberson 	runq_init(&tdq->tdq_realtime);
1413e7d50326SJeff Roberson 	runq_init(&tdq->tdq_timeshare);
1414d2ad694cSJeff Roberson 	runq_init(&tdq->tdq_idle);
1415018ff686SJeff Roberson 	tdq->tdq_id = id;
141662fa74d9SJeff Roberson 	snprintf(tdq->tdq_name, sizeof(tdq->tdq_name),
141762fa74d9SJeff Roberson 	    "sched lock %d", (int)TDQ_ID(tdq));
141861a74c5cSJeff Roberson 	mtx_init(&tdq->tdq_lock, tdq->tdq_name, "sched lock", MTX_SPIN);
14198f51ad55SJeff Roberson #ifdef KTR
14208f51ad55SJeff Roberson 	snprintf(tdq->tdq_loadname, sizeof(tdq->tdq_loadname),
14218f51ad55SJeff Roberson 	    "CPU %d load", (int)TDQ_ID(tdq));
14228f51ad55SJeff Roberson #endif
14230a016a05SJeff Roberson }
14240a016a05SJeff Roberson 
1425c47f202bSJeff Roberson #ifdef SMP
1426c47f202bSJeff Roberson static void
1427c47f202bSJeff Roberson sched_setup_smp(void)
1428c47f202bSJeff Roberson {
1429c47f202bSJeff Roberson 	struct tdq *tdq;
1430c47f202bSJeff Roberson 	int i;
1431c47f202bSJeff Roberson 
143262fa74d9SJeff Roberson 	cpu_top = smp_topo();
14333aa6d94eSJohn Baldwin 	CPU_FOREACH(i) {
1434018ff686SJeff Roberson 		tdq = DPCPU_ID_PTR(i, tdq);
1435018ff686SJeff Roberson 		tdq_setup(tdq, i);
143662fa74d9SJeff Roberson 		tdq->tdq_cg = smp_topo_find(cpu_top, i);
143762fa74d9SJeff Roberson 		if (tdq->tdq_cg == NULL)
143862fa74d9SJeff Roberson 			panic("Can't find cpu group for %d\n", i);
1439c47f202bSJeff Roberson 	}
1440018ff686SJeff Roberson 	PCPU_SET(sched, DPCPU_PTR(tdq));
144162fa74d9SJeff Roberson 	balance_tdq = TDQ_SELF();
1442c47f202bSJeff Roberson }
1443c47f202bSJeff Roberson #endif
1444c47f202bSJeff Roberson 
1445ae7a6b38SJeff Roberson /*
1446ae7a6b38SJeff Roberson  * Setup the thread queues and initialize the topology based on MD
1447ae7a6b38SJeff Roberson  * information.
1448ae7a6b38SJeff Roberson  */
144935e6168fSJeff Roberson static void
145035e6168fSJeff Roberson sched_setup(void *dummy)
145135e6168fSJeff Roberson {
1452ae7a6b38SJeff Roberson 	struct tdq *tdq;
1453c47f202bSJeff Roberson 
14540ec896fdSJeff Roberson #ifdef SMP
1455c47f202bSJeff Roberson 	sched_setup_smp();
1456749d01b0SJeff Roberson #else
1457018ff686SJeff Roberson 	tdq_setup(TDQ_SELF(), 0);
1458356500a3SJeff Roberson #endif
1459018ff686SJeff Roberson 	tdq = TDQ_SELF();
1460ae7a6b38SJeff Roberson 
1461ae7a6b38SJeff Roberson 	/* Add thread0's load since it's running. */
1462ae7a6b38SJeff Roberson 	TDQ_LOCK(tdq);
1463e1504695SJeff Roberson 	thread0.td_lock = TDQ_LOCKPTR(tdq);
14649727e637SJeff Roberson 	tdq_load_add(tdq, &thread0);
146562fa74d9SJeff Roberson 	tdq->tdq_lowpri = thread0.td_priority;
1466ae7a6b38SJeff Roberson 	TDQ_UNLOCK(tdq);
146735e6168fSJeff Roberson }
146835e6168fSJeff Roberson 
1469ae7a6b38SJeff Roberson /*
1470579895dfSAlexander Motin  * This routine determines time constants after stathz and hz are setup.
1471ae7a6b38SJeff Roberson  */
1472a1d4fe69SDavid Xu /* ARGSUSED */
1473a1d4fe69SDavid Xu static void
1474a1d4fe69SDavid Xu sched_initticks(void *dummy)
1475a1d4fe69SDavid Xu {
1476ae7a6b38SJeff Roberson 	int incr;
1477ae7a6b38SJeff Roberson 
1478a1d4fe69SDavid Xu 	realstathz = stathz ? stathz : hz;
14795e5c3873SJeff Roberson 	sched_slice = realstathz / SCHED_SLICE_DEFAULT_DIVISOR;
14805e5c3873SJeff Roberson 	sched_slice_min = sched_slice / SCHED_SLICE_MIN_DIVISOR;
148137f4e025SAlexander Motin 	hogticks = imax(1, (2 * hz * sched_slice + realstathz / 2) /
148237f4e025SAlexander Motin 	    realstathz);
1483a1d4fe69SDavid Xu 
1484a1d4fe69SDavid Xu 	/*
1485e7d50326SJeff Roberson 	 * tickincr is shifted out by 10 to avoid rounding errors due to
14863f872f85SJeff Roberson 	 * hz not being evenly divisible by stathz on all platforms.
1487e7d50326SJeff Roberson 	 */
1488ae7a6b38SJeff Roberson 	incr = (hz << SCHED_TICK_SHIFT) / realstathz;
1489e7d50326SJeff Roberson 	/*
1490e7d50326SJeff Roberson 	 * This does not work for values of stathz that are more than
1491e7d50326SJeff Roberson 	 * 1 << SCHED_TICK_SHIFT * hz.  In practice this does not happen.
1492a1d4fe69SDavid Xu 	 */
1493ae7a6b38SJeff Roberson 	if (incr == 0)
1494ae7a6b38SJeff Roberson 		incr = 1;
1495ae7a6b38SJeff Roberson 	tickincr = incr;
14967b8bfa0dSJeff Roberson #ifdef SMP
14979862717aSJeff Roberson 	/*
14987fcf154aSJeff Roberson 	 * Set the default balance interval now that we know
14997fcf154aSJeff Roberson 	 * what realstathz is.
15007fcf154aSJeff Roberson 	 */
15017fcf154aSJeff Roberson 	balance_interval = realstathz;
1502290d9060SDon Lewis 	balance_ticks = balance_interval;
15037b8bfa0dSJeff Roberson 	affinity = SCHED_AFFINITY_DEFAULT;
15047b8bfa0dSJeff Roberson #endif
1505b3f40a41SAlexander Motin 	if (sched_idlespinthresh < 0)
15062c27cb3aSAlexander Motin 		sched_idlespinthresh = 2 * max(10000, 6 * hz) / realstathz;
1507a1d4fe69SDavid Xu }
1508a1d4fe69SDavid Xu 
150935e6168fSJeff Roberson /*
1510ae7a6b38SJeff Roberson  * This is the core of the interactivity algorithm.  Determines a score based
1511ae7a6b38SJeff Roberson  * on past behavior.  It is the ratio of sleep time to run time scaled to
1512ae7a6b38SJeff Roberson  * a [0, 100] integer.  This is the voluntary sleep time of a process, which
1513ae7a6b38SJeff Roberson  * differs from the cpu usage because it does not account for time spent
1514ae7a6b38SJeff Roberson  * waiting on a run-queue.  Would be prettier if we had floating point.
151557031f79SGeorge V. Neville-Neil  *
151657031f79SGeorge V. Neville-Neil  * When a thread's sleep time is greater than its run time the
151757031f79SGeorge V. Neville-Neil  * calculation is:
151857031f79SGeorge V. Neville-Neil  *
151957031f79SGeorge V. Neville-Neil  *                           scaling factor
152057031f79SGeorge V. Neville-Neil  * interactivity score =  ---------------------
152157031f79SGeorge V. Neville-Neil  *                        sleep time / run time
152257031f79SGeorge V. Neville-Neil  *
152357031f79SGeorge V. Neville-Neil  *
152457031f79SGeorge V. Neville-Neil  * When a thread's run time is greater than its sleep time the
152557031f79SGeorge V. Neville-Neil  * calculation is:
152657031f79SGeorge V. Neville-Neil  *
152757031f79SGeorge V. Neville-Neil  *                           scaling factor
152857031f79SGeorge V. Neville-Neil  * interactivity score =  ---------------------    + scaling factor
152957031f79SGeorge V. Neville-Neil  *                        run time / sleep time
1530ae7a6b38SJeff Roberson  */
1531ae7a6b38SJeff Roberson static int
1532ae7a6b38SJeff Roberson sched_interact_score(struct thread *td)
1533ae7a6b38SJeff Roberson {
1534ae7a6b38SJeff Roberson 	struct td_sched *ts;
1535ae7a6b38SJeff Roberson 	int div;
1536ae7a6b38SJeff Roberson 
153793ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
1538ae7a6b38SJeff Roberson 	/*
1539ae7a6b38SJeff Roberson 	 * The score is only needed if this is likely to be an interactive
1540ae7a6b38SJeff Roberson 	 * task.  Don't go through the expense of computing it if there's
1541ae7a6b38SJeff Roberson 	 * no chance.
1542ae7a6b38SJeff Roberson 	 */
1543ae7a6b38SJeff Roberson 	if (sched_interact <= SCHED_INTERACT_HALF &&
1544ae7a6b38SJeff Roberson 		ts->ts_runtime >= ts->ts_slptime)
1545ae7a6b38SJeff Roberson 			return (SCHED_INTERACT_HALF);
1546ae7a6b38SJeff Roberson 
1547ae7a6b38SJeff Roberson 	if (ts->ts_runtime > ts->ts_slptime) {
1548ae7a6b38SJeff Roberson 		div = max(1, ts->ts_runtime / SCHED_INTERACT_HALF);
1549ae7a6b38SJeff Roberson 		return (SCHED_INTERACT_HALF +
1550ae7a6b38SJeff Roberson 		    (SCHED_INTERACT_HALF - (ts->ts_slptime / div)));
1551ae7a6b38SJeff Roberson 	}
1552ae7a6b38SJeff Roberson 	if (ts->ts_slptime > ts->ts_runtime) {
1553ae7a6b38SJeff Roberson 		div = max(1, ts->ts_slptime / SCHED_INTERACT_HALF);
1554ae7a6b38SJeff Roberson 		return (ts->ts_runtime / div);
1555ae7a6b38SJeff Roberson 	}
1556ae7a6b38SJeff Roberson 	/* runtime == slptime */
1557ae7a6b38SJeff Roberson 	if (ts->ts_runtime)
1558ae7a6b38SJeff Roberson 		return (SCHED_INTERACT_HALF);
1559ae7a6b38SJeff Roberson 
1560ae7a6b38SJeff Roberson 	/*
1561ae7a6b38SJeff Roberson 	 * This can happen if slptime and runtime are 0.
1562ae7a6b38SJeff Roberson 	 */
1563ae7a6b38SJeff Roberson 	return (0);
1564ae7a6b38SJeff Roberson 
1565ae7a6b38SJeff Roberson }
1566ae7a6b38SJeff Roberson 
1567ae7a6b38SJeff Roberson /*
156835e6168fSJeff Roberson  * Scale the scheduling priority according to the "interactivity" of this
156935e6168fSJeff Roberson  * process.
157035e6168fSJeff Roberson  */
157115dc847eSJeff Roberson static void
15728460a577SJohn Birrell sched_priority(struct thread *td)
157335e6168fSJeff Roberson {
1574e7d50326SJeff Roberson 	int score;
157535e6168fSJeff Roberson 	int pri;
157635e6168fSJeff Roberson 
1577c9a8cba4SJohn Baldwin 	if (PRI_BASE(td->td_pri_class) != PRI_TIMESHARE)
157815dc847eSJeff Roberson 		return;
1579e7d50326SJeff Roberson 	/*
1580e7d50326SJeff Roberson 	 * If the score is interactive we place the thread in the realtime
1581e7d50326SJeff Roberson 	 * queue with a priority that is less than kernel and interrupt
1582e7d50326SJeff Roberson 	 * priorities.  These threads are not subject to nice restrictions.
1583e7d50326SJeff Roberson 	 *
1584ae7a6b38SJeff Roberson 	 * Scores greater than this are placed on the normal timeshare queue
1585e7d50326SJeff Roberson 	 * where the priority is partially decided by the most recent cpu
1586e7d50326SJeff Roberson 	 * utilization and the rest is decided by nice value.
1587a5423ea3SJeff Roberson 	 *
1588a5423ea3SJeff Roberson 	 * The nice value of the process has a linear effect on the calculated
1589a5423ea3SJeff Roberson 	 * score.  Negative nice values make it easier for a thread to be
1590a5423ea3SJeff Roberson 	 * considered interactive.
1591e7d50326SJeff Roberson 	 */
1592a0f15352SJohn Baldwin 	score = imax(0, sched_interact_score(td) + td->td_proc->p_nice);
1593e7d50326SJeff Roberson 	if (score < sched_interact) {
159412d56c0fSJohn Baldwin 		pri = PRI_MIN_INTERACT;
159512d56c0fSJohn Baldwin 		pri += ((PRI_MAX_INTERACT - PRI_MIN_INTERACT + 1) /
159678920008SJohn Baldwin 		    sched_interact) * score;
159712d56c0fSJohn Baldwin 		KASSERT(pri >= PRI_MIN_INTERACT && pri <= PRI_MAX_INTERACT,
15989a93305aSJeff Roberson 		    ("sched_priority: invalid interactive priority %d score %d",
15999a93305aSJeff Roberson 		    pri, score));
1600e7d50326SJeff Roberson 	} else {
1601e7d50326SJeff Roberson 		pri = SCHED_PRI_MIN;
160293ccd6bfSKonstantin Belousov 		if (td_get_sched(td)->ts_ticks)
160393ccd6bfSKonstantin Belousov 			pri += min(SCHED_PRI_TICKS(td_get_sched(td)),
16045457fa23SJohn Baldwin 			    SCHED_PRI_RANGE - 1);
1605e7d50326SJeff Roberson 		pri += SCHED_PRI_NICE(td->td_proc->p_nice);
160612d56c0fSJohn Baldwin 		KASSERT(pri >= PRI_MIN_BATCH && pri <= PRI_MAX_BATCH,
1607ae7a6b38SJeff Roberson 		    ("sched_priority: invalid priority %d: nice %d, "
1608ae7a6b38SJeff Roberson 		    "ticks %d ftick %d ltick %d tick pri %d",
160993ccd6bfSKonstantin Belousov 		    pri, td->td_proc->p_nice, td_get_sched(td)->ts_ticks,
161093ccd6bfSKonstantin Belousov 		    td_get_sched(td)->ts_ftick, td_get_sched(td)->ts_ltick,
161193ccd6bfSKonstantin Belousov 		    SCHED_PRI_TICKS(td_get_sched(td))));
1612e7d50326SJeff Roberson 	}
16138460a577SJohn Birrell 	sched_user_prio(td, pri);
161435e6168fSJeff Roberson 
161515dc847eSJeff Roberson 	return;
161635e6168fSJeff Roberson }
161735e6168fSJeff Roberson 
161835e6168fSJeff Roberson /*
1619d322132cSJeff Roberson  * This routine enforces a maximum limit on the amount of scheduling history
1620ae7a6b38SJeff Roberson  * kept.  It is called after either the slptime or runtime is adjusted.  This
1621ae7a6b38SJeff Roberson  * function is ugly due to integer math.
1622d322132cSJeff Roberson  */
16234b60e324SJeff Roberson static void
16248460a577SJohn Birrell sched_interact_update(struct thread *td)
16254b60e324SJeff Roberson {
1626155b6ca1SJeff Roberson 	struct td_sched *ts;
16279a93305aSJeff Roberson 	u_int sum;
16283f741ca1SJeff Roberson 
162993ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
1630ae7a6b38SJeff Roberson 	sum = ts->ts_runtime + ts->ts_slptime;
1631d322132cSJeff Roberson 	if (sum < SCHED_SLP_RUN_MAX)
1632d322132cSJeff Roberson 		return;
1633d322132cSJeff Roberson 	/*
1634155b6ca1SJeff Roberson 	 * This only happens from two places:
1635155b6ca1SJeff Roberson 	 * 1) We have added an unusual amount of run time from fork_exit.
1636155b6ca1SJeff Roberson 	 * 2) We have added an unusual amount of sleep time from sched_sleep().
1637155b6ca1SJeff Roberson 	 */
1638155b6ca1SJeff Roberson 	if (sum > SCHED_SLP_RUN_MAX * 2) {
1639ae7a6b38SJeff Roberson 		if (ts->ts_runtime > ts->ts_slptime) {
1640ae7a6b38SJeff Roberson 			ts->ts_runtime = SCHED_SLP_RUN_MAX;
1641ae7a6b38SJeff Roberson 			ts->ts_slptime = 1;
1642155b6ca1SJeff Roberson 		} else {
1643ae7a6b38SJeff Roberson 			ts->ts_slptime = SCHED_SLP_RUN_MAX;
1644ae7a6b38SJeff Roberson 			ts->ts_runtime = 1;
1645155b6ca1SJeff Roberson 		}
1646155b6ca1SJeff Roberson 		return;
1647155b6ca1SJeff Roberson 	}
1648155b6ca1SJeff Roberson 	/*
1649d322132cSJeff Roberson 	 * If we have exceeded by more than 1/5th then the algorithm below
1650d322132cSJeff Roberson 	 * will not bring us back into range.  Dividing by two here forces
16512454aaf5SJeff Roberson 	 * us into the range of [4/5 * SCHED_INTERACT_MAX, SCHED_INTERACT_MAX]
1652d322132cSJeff Roberson 	 */
165337a35e4aSJeff Roberson 	if (sum > (SCHED_SLP_RUN_MAX / 5) * 6) {
1654ae7a6b38SJeff Roberson 		ts->ts_runtime /= 2;
1655ae7a6b38SJeff Roberson 		ts->ts_slptime /= 2;
1656d322132cSJeff Roberson 		return;
1657d322132cSJeff Roberson 	}
1658ae7a6b38SJeff Roberson 	ts->ts_runtime = (ts->ts_runtime / 5) * 4;
1659ae7a6b38SJeff Roberson 	ts->ts_slptime = (ts->ts_slptime / 5) * 4;
1660d322132cSJeff Roberson }
1661d322132cSJeff Roberson 
1662ae7a6b38SJeff Roberson /*
1663ae7a6b38SJeff Roberson  * Scale back the interactivity history when a child thread is created.  The
1664ae7a6b38SJeff Roberson  * history is inherited from the parent but the thread may behave totally
1665ae7a6b38SJeff Roberson  * differently.  For example, a shell spawning a compiler process.  We want
1666ae7a6b38SJeff Roberson  * to learn that the compiler is behaving badly very quickly.
1667ae7a6b38SJeff Roberson  */
1668d322132cSJeff Roberson static void
16698460a577SJohn Birrell sched_interact_fork(struct thread *td)
1670d322132cSJeff Roberson {
167193ccd6bfSKonstantin Belousov 	struct td_sched *ts;
1672d322132cSJeff Roberson 	int ratio;
1673d322132cSJeff Roberson 	int sum;
1674d322132cSJeff Roberson 
167593ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
167693ccd6bfSKonstantin Belousov 	sum = ts->ts_runtime + ts->ts_slptime;
1677d322132cSJeff Roberson 	if (sum > SCHED_SLP_RUN_FORK) {
1678d322132cSJeff Roberson 		ratio = sum / SCHED_SLP_RUN_FORK;
167993ccd6bfSKonstantin Belousov 		ts->ts_runtime /= ratio;
168093ccd6bfSKonstantin Belousov 		ts->ts_slptime /= ratio;
16814b60e324SJeff Roberson 	}
16824b60e324SJeff Roberson }
16834b60e324SJeff Roberson 
168415dc847eSJeff Roberson /*
1685ae7a6b38SJeff Roberson  * Called from proc0_init() to setup the scheduler fields.
1686ed062c8dSJulian Elischer  */
1687ed062c8dSJulian Elischer void
1688ed062c8dSJulian Elischer schedinit(void)
1689ed062c8dSJulian Elischer {
169093ccd6bfSKonstantin Belousov 	struct td_sched *ts0;
1691e7d50326SJeff Roberson 
1692ed062c8dSJulian Elischer 	/*
169393ccd6bfSKonstantin Belousov 	 * Set up the scheduler specific parts of thread0.
1694ed062c8dSJulian Elischer 	 */
169593ccd6bfSKonstantin Belousov 	ts0 = td_get_sched(&thread0);
169693ccd6bfSKonstantin Belousov 	ts0->ts_ltick = ticks;
169793ccd6bfSKonstantin Belousov 	ts0->ts_ftick = ticks;
169893ccd6bfSKonstantin Belousov 	ts0->ts_slice = 0;
16991408b84aSHans Petter Selasky 	ts0->ts_cpu = curcpu;	/* set valid CPU number */
1700ed062c8dSJulian Elischer }
1701ed062c8dSJulian Elischer 
1702ed062c8dSJulian Elischer /*
170315dc847eSJeff Roberson  * This is only somewhat accurate since given many processes of the same
170415dc847eSJeff Roberson  * priority they will switch when their slices run out, which will be
1705e7d50326SJeff Roberson  * at most sched_slice stathz ticks.
170615dc847eSJeff Roberson  */
170735e6168fSJeff Roberson int
170835e6168fSJeff Roberson sched_rr_interval(void)
170935e6168fSJeff Roberson {
1710e7d50326SJeff Roberson 
1711579895dfSAlexander Motin 	/* Convert sched_slice from stathz to hz. */
171237f4e025SAlexander Motin 	return (imax(1, (sched_slice * hz + realstathz / 2) / realstathz));
171335e6168fSJeff Roberson }
171435e6168fSJeff Roberson 
1715ae7a6b38SJeff Roberson /*
1716ae7a6b38SJeff Roberson  * Update the percent cpu tracking information when it is requested or
1717ae7a6b38SJeff Roberson  * the total history exceeds the maximum.  We keep a sliding history of
1718ae7a6b38SJeff Roberson  * tick counts that slowly decays.  This is less precise than the 4BSD
1719ae7a6b38SJeff Roberson  * mechanism since it happens with less regular and frequent events.
1720ae7a6b38SJeff Roberson  */
172122bf7d9aSJeff Roberson static void
17227295465eSAlexander Motin sched_pctcpu_update(struct td_sched *ts, int run)
172335e6168fSJeff Roberson {
17247295465eSAlexander Motin 	int t = ticks;
1725e7d50326SJeff Roberson 
172678133024SMark Johnston 	/*
172778133024SMark Johnston 	 * The signed difference may be negative if the thread hasn't run for
172878133024SMark Johnston 	 * over half of the ticks rollover period.
172978133024SMark Johnston 	 */
173078133024SMark Johnston 	if ((u_int)(t - ts->ts_ltick) >= SCHED_TICK_TARG) {
1731ad1e7d28SJulian Elischer 		ts->ts_ticks = 0;
17327295465eSAlexander Motin 		ts->ts_ftick = t - SCHED_TICK_TARG;
17337295465eSAlexander Motin 	} else if (t - ts->ts_ftick >= SCHED_TICK_MAX) {
17347295465eSAlexander Motin 		ts->ts_ticks = (ts->ts_ticks / (ts->ts_ltick - ts->ts_ftick)) *
17357295465eSAlexander Motin 		    (ts->ts_ltick - (t - SCHED_TICK_TARG));
17367295465eSAlexander Motin 		ts->ts_ftick = t - SCHED_TICK_TARG;
17377295465eSAlexander Motin 	}
17387295465eSAlexander Motin 	if (run)
17397295465eSAlexander Motin 		ts->ts_ticks += (t - ts->ts_ltick) << SCHED_TICK_SHIFT;
17407295465eSAlexander Motin 	ts->ts_ltick = t;
174135e6168fSJeff Roberson }
174235e6168fSJeff Roberson 
1743ae7a6b38SJeff Roberson /*
1744ae7a6b38SJeff Roberson  * Adjust the priority of a thread.  Move it to the appropriate run-queue
1745ae7a6b38SJeff Roberson  * if necessary.  This is the back-end for several priority related
1746ae7a6b38SJeff Roberson  * functions.
1747ae7a6b38SJeff Roberson  */
1748e7d50326SJeff Roberson static void
1749f5c157d9SJohn Baldwin sched_thread_priority(struct thread *td, u_char prio)
175035e6168fSJeff Roberson {
1751ad1e7d28SJulian Elischer 	struct td_sched *ts;
175273daf66fSJeff Roberson 	struct tdq *tdq;
175373daf66fSJeff Roberson 	int oldpri;
175435e6168fSJeff Roberson 
17558f51ad55SJeff Roberson 	KTR_POINT3(KTR_SCHED, "thread", sched_tdname(td), "prio",
17568f51ad55SJeff Roberson 	    "prio:%d", td->td_priority, "new prio:%d", prio,
17578f51ad55SJeff Roberson 	    KTR_ATTR_LINKED, sched_tdname(curthread));
1758d9fae5abSAndriy Gapon 	SDT_PROBE3(sched, , , change__pri, td, td->td_proc, prio);
1759e87fc7cfSAndriy Gapon 	if (td != curthread && prio < td->td_priority) {
17608f51ad55SJeff Roberson 		KTR_POINT3(KTR_SCHED, "thread", sched_tdname(curthread),
17618f51ad55SJeff Roberson 		    "lend prio", "prio:%d", td->td_priority, "new prio:%d",
17628f51ad55SJeff Roberson 		    prio, KTR_ATTR_LINKED, sched_tdname(td));
1763d9fae5abSAndriy Gapon 		SDT_PROBE4(sched, , , lend__pri, td, td->td_proc, prio,
1764b3e9e682SRyan Stone 		    curthread);
17658f51ad55SJeff Roberson 	}
176693ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
17677b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
1768f5c157d9SJohn Baldwin 	if (td->td_priority == prio)
1769f5c157d9SJohn Baldwin 		return;
17703f741ca1SJeff Roberson 	/*
17713f741ca1SJeff Roberson 	 * If the priority has been elevated due to priority
17723f741ca1SJeff Roberson 	 * propagation, we may have to move ourselves to a new
1773e7d50326SJeff Roberson 	 * queue.  This could be optimized to not re-add in some
1774e7d50326SJeff Roberson 	 * cases.
1775f2b74cbfSJeff Roberson 	 */
17766d55b3ecSJeff Roberson 	if (TD_ON_RUNQ(td) && prio < td->td_priority) {
1777e7d50326SJeff Roberson 		sched_rem(td);
1778e7d50326SJeff Roberson 		td->td_priority = prio;
177961a74c5cSJeff Roberson 		sched_add(td, SRQ_BORROWING | SRQ_HOLDTD);
178073daf66fSJeff Roberson 		return;
178173daf66fSJeff Roberson 	}
17826d55b3ecSJeff Roberson 	/*
17836d55b3ecSJeff Roberson 	 * If the thread is currently running we may have to adjust the lowpri
17846d55b3ecSJeff Roberson 	 * information so other cpus are aware of our current priority.
17856d55b3ecSJeff Roberson 	 */
17866d55b3ecSJeff Roberson 	if (TD_IS_RUNNING(td)) {
1787ae7a6b38SJeff Roberson 		tdq = TDQ_CPU(ts->ts_cpu);
178862fa74d9SJeff Roberson 		oldpri = td->td_priority;
17893f741ca1SJeff Roberson 		td->td_priority = prio;
179062fa74d9SJeff Roberson 		if (prio < tdq->tdq_lowpri)
179162fa74d9SJeff Roberson 			tdq->tdq_lowpri = prio;
179262fa74d9SJeff Roberson 		else if (tdq->tdq_lowpri == oldpri)
179362fa74d9SJeff Roberson 			tdq_setlowpri(tdq, td);
17946d55b3ecSJeff Roberson 		return;
179573daf66fSJeff Roberson 	}
17966d55b3ecSJeff Roberson 	td->td_priority = prio;
1797ae7a6b38SJeff Roberson }
179835e6168fSJeff Roberson 
1799f5c157d9SJohn Baldwin /*
1800f5c157d9SJohn Baldwin  * Update a thread's priority when it is lent another thread's
1801f5c157d9SJohn Baldwin  * priority.
1802f5c157d9SJohn Baldwin  */
1803f5c157d9SJohn Baldwin void
1804f5c157d9SJohn Baldwin sched_lend_prio(struct thread *td, u_char prio)
1805f5c157d9SJohn Baldwin {
1806f5c157d9SJohn Baldwin 
1807f5c157d9SJohn Baldwin 	td->td_flags |= TDF_BORROWING;
1808f5c157d9SJohn Baldwin 	sched_thread_priority(td, prio);
1809f5c157d9SJohn Baldwin }
1810f5c157d9SJohn Baldwin 
1811f5c157d9SJohn Baldwin /*
1812f5c157d9SJohn Baldwin  * Restore a thread's priority when priority propagation is
1813f5c157d9SJohn Baldwin  * over.  The prio argument is the minimum priority the thread
1814f5c157d9SJohn Baldwin  * needs to have to satisfy other possible priority lending
1815f5c157d9SJohn Baldwin  * requests.  If the thread's regular priority is less
1816f5c157d9SJohn Baldwin  * important than prio, the thread will keep a priority boost
1817f5c157d9SJohn Baldwin  * of prio.
1818f5c157d9SJohn Baldwin  */
1819f5c157d9SJohn Baldwin void
1820f5c157d9SJohn Baldwin sched_unlend_prio(struct thread *td, u_char prio)
1821f5c157d9SJohn Baldwin {
1822f5c157d9SJohn Baldwin 	u_char base_pri;
1823f5c157d9SJohn Baldwin 
1824f5c157d9SJohn Baldwin 	if (td->td_base_pri >= PRI_MIN_TIMESHARE &&
1825f5c157d9SJohn Baldwin 	    td->td_base_pri <= PRI_MAX_TIMESHARE)
18268460a577SJohn Birrell 		base_pri = td->td_user_pri;
1827f5c157d9SJohn Baldwin 	else
1828f5c157d9SJohn Baldwin 		base_pri = td->td_base_pri;
1829f5c157d9SJohn Baldwin 	if (prio >= base_pri) {
1830f5c157d9SJohn Baldwin 		td->td_flags &= ~TDF_BORROWING;
1831f5c157d9SJohn Baldwin 		sched_thread_priority(td, base_pri);
1832f5c157d9SJohn Baldwin 	} else
1833f5c157d9SJohn Baldwin 		sched_lend_prio(td, prio);
1834f5c157d9SJohn Baldwin }
1835f5c157d9SJohn Baldwin 
1836ae7a6b38SJeff Roberson /*
1837ae7a6b38SJeff Roberson  * Standard entry for setting the priority to an absolute value.
1838ae7a6b38SJeff Roberson  */
1839f5c157d9SJohn Baldwin void
1840f5c157d9SJohn Baldwin sched_prio(struct thread *td, u_char prio)
1841f5c157d9SJohn Baldwin {
1842f5c157d9SJohn Baldwin 	u_char oldprio;
1843f5c157d9SJohn Baldwin 
1844f5c157d9SJohn Baldwin 	/* First, update the base priority. */
1845f5c157d9SJohn Baldwin 	td->td_base_pri = prio;
1846f5c157d9SJohn Baldwin 
1847f5c157d9SJohn Baldwin 	/*
184850aaa791SJohn Baldwin 	 * If the thread is borrowing another thread's priority, don't
1849f5c157d9SJohn Baldwin 	 * ever lower the priority.
1850f5c157d9SJohn Baldwin 	 */
1851f5c157d9SJohn Baldwin 	if (td->td_flags & TDF_BORROWING && td->td_priority < prio)
1852f5c157d9SJohn Baldwin 		return;
1853f5c157d9SJohn Baldwin 
1854f5c157d9SJohn Baldwin 	/* Change the real priority. */
1855f5c157d9SJohn Baldwin 	oldprio = td->td_priority;
1856f5c157d9SJohn Baldwin 	sched_thread_priority(td, prio);
1857f5c157d9SJohn Baldwin 
1858f5c157d9SJohn Baldwin 	/*
1859f5c157d9SJohn Baldwin 	 * If the thread is on a turnstile, then let the turnstile update
1860f5c157d9SJohn Baldwin 	 * its state.
1861f5c157d9SJohn Baldwin 	 */
1862f5c157d9SJohn Baldwin 	if (TD_ON_LOCK(td) && oldprio != prio)
1863f5c157d9SJohn Baldwin 		turnstile_adjust(td, oldprio);
1864f5c157d9SJohn Baldwin }
1865f5c157d9SJohn Baldwin 
1866ae7a6b38SJeff Roberson /*
1867ae7a6b38SJeff Roberson  * Set the base user priority, does not effect current running priority.
1868ae7a6b38SJeff Roberson  */
186935e6168fSJeff Roberson void
18708460a577SJohn Birrell sched_user_prio(struct thread *td, u_char prio)
18713db720fdSDavid Xu {
18723db720fdSDavid Xu 
18738460a577SJohn Birrell 	td->td_base_user_pri = prio;
1874acbe332aSDavid Xu 	if (td->td_lend_user_pri <= prio)
1875fc6c30f6SJulian Elischer 		return;
18768460a577SJohn Birrell 	td->td_user_pri = prio;
18773db720fdSDavid Xu }
18783db720fdSDavid Xu 
18793db720fdSDavid Xu void
18803db720fdSDavid Xu sched_lend_user_prio(struct thread *td, u_char prio)
18813db720fdSDavid Xu {
18823db720fdSDavid Xu 
1883435806d3SDavid Xu 	THREAD_LOCK_ASSERT(td, MA_OWNED);
1884acbe332aSDavid Xu 	td->td_lend_user_pri = prio;
1885c8e368a9SDavid Xu 	td->td_user_pri = min(prio, td->td_base_user_pri);
1886c8e368a9SDavid Xu 	if (td->td_priority > td->td_user_pri)
1887c8e368a9SDavid Xu 		sched_prio(td, td->td_user_pri);
1888c8e368a9SDavid Xu 	else if (td->td_priority != td->td_user_pri)
1889c8e368a9SDavid Xu 		td->td_flags |= TDF_NEEDRESCHED;
1890435806d3SDavid Xu }
18913db720fdSDavid Xu 
1892ac97da9aSMateusz Guzik /*
1893ac97da9aSMateusz Guzik  * Like the above but first check if there is anything to do.
1894ac97da9aSMateusz Guzik  */
1895ac97da9aSMateusz Guzik void
1896ac97da9aSMateusz Guzik sched_lend_user_prio_cond(struct thread *td, u_char prio)
1897ac97da9aSMateusz Guzik {
1898ac97da9aSMateusz Guzik 
1899ac97da9aSMateusz Guzik 	if (td->td_lend_user_pri != prio)
1900ac97da9aSMateusz Guzik 		goto lend;
1901ac97da9aSMateusz Guzik 	if (td->td_user_pri != min(prio, td->td_base_user_pri))
1902ac97da9aSMateusz Guzik 		goto lend;
1903ac97da9aSMateusz Guzik 	if (td->td_priority >= td->td_user_pri)
1904ac97da9aSMateusz Guzik 		goto lend;
1905ac97da9aSMateusz Guzik 	return;
1906ac97da9aSMateusz Guzik 
1907ac97da9aSMateusz Guzik lend:
1908ac97da9aSMateusz Guzik 	thread_lock(td);
1909ac97da9aSMateusz Guzik 	sched_lend_user_prio(td, prio);
1910ac97da9aSMateusz Guzik 	thread_unlock(td);
1911ac97da9aSMateusz Guzik }
1912ac97da9aSMateusz Guzik 
19134c8a8cfcSKonstantin Belousov #ifdef SMP
1914ae7a6b38SJeff Roberson /*
191597e9382dSDon Lewis  * This tdq is about to idle.  Try to steal a thread from another CPU before
191697e9382dSDon Lewis  * choosing the idle thread.
191797e9382dSDon Lewis  */
191897e9382dSDon Lewis static void
191997e9382dSDon Lewis tdq_trysteal(struct tdq *tdq)
192097e9382dSDon Lewis {
192197e9382dSDon Lewis 	struct cpu_group *cg;
192297e9382dSDon Lewis 	struct tdq *steal;
192397e9382dSDon Lewis 	cpuset_t mask;
192497e9382dSDon Lewis 	int cpu, i;
192597e9382dSDon Lewis 
192697e9382dSDon Lewis 	if (smp_started == 0 || trysteal_limit == 0 || tdq->tdq_cg == NULL)
192797e9382dSDon Lewis 		return;
192897e9382dSDon Lewis 	CPU_FILL(&mask);
192997e9382dSDon Lewis 	CPU_CLR(PCPU_GET(cpuid), &mask);
193097e9382dSDon Lewis 	/* We don't want to be preempted while we're iterating. */
193197e9382dSDon Lewis 	spinlock_enter();
193297e9382dSDon Lewis 	TDQ_UNLOCK(tdq);
193397e9382dSDon Lewis 	for (i = 1, cg = tdq->tdq_cg; ; ) {
193497e9382dSDon Lewis 		cpu = sched_highest(cg, mask, steal_thresh);
193597e9382dSDon Lewis 		/*
193697e9382dSDon Lewis 		 * If a thread was added while interrupts were disabled don't
193797e9382dSDon Lewis 		 * steal one here.
193897e9382dSDon Lewis 		 */
193997e9382dSDon Lewis 		if (tdq->tdq_load > 0) {
194097e9382dSDon Lewis 			TDQ_LOCK(tdq);
194197e9382dSDon Lewis 			break;
194297e9382dSDon Lewis 		}
194397e9382dSDon Lewis 		if (cpu == -1) {
194497e9382dSDon Lewis 			i++;
194597e9382dSDon Lewis 			cg = cg->cg_parent;
194697e9382dSDon Lewis 			if (cg == NULL || i > trysteal_limit) {
194797e9382dSDon Lewis 				TDQ_LOCK(tdq);
194897e9382dSDon Lewis 				break;
194997e9382dSDon Lewis 			}
195097e9382dSDon Lewis 			continue;
195197e9382dSDon Lewis 		}
195297e9382dSDon Lewis 		steal = TDQ_CPU(cpu);
195397e9382dSDon Lewis 		/*
195497e9382dSDon Lewis 		 * The data returned by sched_highest() is stale and
195597e9382dSDon Lewis                  * the chosen CPU no longer has an eligible thread.
195697e9382dSDon Lewis 		 */
195797e9382dSDon Lewis 		if (steal->tdq_load < steal_thresh ||
195897e9382dSDon Lewis 		    steal->tdq_transferable == 0)
195997e9382dSDon Lewis 			continue;
196097e9382dSDon Lewis 		tdq_lock_pair(tdq, steal);
196197e9382dSDon Lewis 		/*
196297e9382dSDon Lewis 		 * If we get to this point, unconditonally exit the loop
196397e9382dSDon Lewis 		 * to bound the time spent in the critcal section.
196497e9382dSDon Lewis 		 *
196597e9382dSDon Lewis 		 * If a thread was added while interrupts were disabled don't
196697e9382dSDon Lewis 		 * steal one here.
196797e9382dSDon Lewis 		 */
196897e9382dSDon Lewis 		if (tdq->tdq_load > 0) {
196997e9382dSDon Lewis 			TDQ_UNLOCK(steal);
197097e9382dSDon Lewis 			break;
197197e9382dSDon Lewis 		}
197297e9382dSDon Lewis 		/*
197397e9382dSDon Lewis 		 * The data returned by sched_highest() is stale and
197497e9382dSDon Lewis                  * the chosen CPU no longer has an eligible thread.
197597e9382dSDon Lewis 		 */
197697e9382dSDon Lewis 		if (steal->tdq_load < steal_thresh ||
197797e9382dSDon Lewis 		    steal->tdq_transferable == 0) {
197897e9382dSDon Lewis 			TDQ_UNLOCK(steal);
197997e9382dSDon Lewis 			break;
198097e9382dSDon Lewis 		}
198197e9382dSDon Lewis 		/*
198297e9382dSDon Lewis 		 * If we fail to acquire one due to affinity restrictions,
198397e9382dSDon Lewis 		 * bail out and let the idle thread to a more complete search
198497e9382dSDon Lewis 		 * outside of a critical section.
198597e9382dSDon Lewis 		 */
198697e9382dSDon Lewis 		if (tdq_move(steal, tdq) == NULL) {
198797e9382dSDon Lewis 			TDQ_UNLOCK(steal);
198897e9382dSDon Lewis 			break;
198997e9382dSDon Lewis 		}
199097e9382dSDon Lewis 		TDQ_UNLOCK(steal);
199197e9382dSDon Lewis 		break;
199297e9382dSDon Lewis 	}
199397e9382dSDon Lewis 	spinlock_exit();
199497e9382dSDon Lewis }
19954c8a8cfcSKonstantin Belousov #endif
199697e9382dSDon Lewis 
199797e9382dSDon Lewis /*
1998c47f202bSJeff Roberson  * Handle migration from sched_switch().  This happens only for
1999c47f202bSJeff Roberson  * cpu binding.
2000c47f202bSJeff Roberson  */
2001c47f202bSJeff Roberson static struct mtx *
2002c47f202bSJeff Roberson sched_switch_migrate(struct tdq *tdq, struct thread *td, int flags)
2003c47f202bSJeff Roberson {
2004c47f202bSJeff Roberson 	struct tdq *tdn;
2005c47f202bSJeff Roberson 
2006686bcb5cSJeff Roberson 	KASSERT(THREAD_CAN_MIGRATE(td) ||
2007686bcb5cSJeff Roberson 	    (td_get_sched(td)->ts_flags & TSF_BOUND) != 0,
2008686bcb5cSJeff Roberson 	    ("Thread %p shouldn't migrate", td));
2009efe67753SNathan Whitehorn 	KASSERT(!CPU_ABSENT(td_get_sched(td)->ts_cpu), ("sched_switch_migrate: "
2010efe67753SNathan Whitehorn 	    "thread %s queued on absent CPU %d.", td->td_name,
2011efe67753SNathan Whitehorn 	    td_get_sched(td)->ts_cpu));
201293ccd6bfSKonstantin Belousov 	tdn = TDQ_CPU(td_get_sched(td)->ts_cpu);
2013c47f202bSJeff Roberson #ifdef SMP
20149727e637SJeff Roberson 	tdq_load_rem(tdq, td);
2015c47f202bSJeff Roberson 	/*
2016686bcb5cSJeff Roberson 	 * Do the lock dance required to avoid LOR.  We have an
2017686bcb5cSJeff Roberson 	 * extra spinlock nesting from sched_switch() which will
2018686bcb5cSJeff Roberson 	 * prevent preemption while we're holding neither run-queue lock.
2019c47f202bSJeff Roberson 	 */
2020686bcb5cSJeff Roberson 	TDQ_UNLOCK(tdq);
2021686bcb5cSJeff Roberson 	TDQ_LOCK(tdn);
2022c47f202bSJeff Roberson 	tdq_add(tdn, td, flags);
202327ee18adSRyan Stone 	tdq_notify(tdn, td);
2024c47f202bSJeff Roberson 	TDQ_UNLOCK(tdn);
2025686bcb5cSJeff Roberson 	TDQ_LOCK(tdq);
2026c47f202bSJeff Roberson #endif
2027c47f202bSJeff Roberson 	return (TDQ_LOCKPTR(tdn));
2028c47f202bSJeff Roberson }
2029c47f202bSJeff Roberson 
2030c47f202bSJeff Roberson /*
203161a74c5cSJeff Roberson  * thread_lock_unblock() that does not assume td_lock is blocked.
2032ae7a6b38SJeff Roberson  */
2033ae7a6b38SJeff Roberson static inline void
2034ae7a6b38SJeff Roberson thread_unblock_switch(struct thread *td, struct mtx *mtx)
2035ae7a6b38SJeff Roberson {
2036ae7a6b38SJeff Roberson 	atomic_store_rel_ptr((volatile uintptr_t *)&td->td_lock,
2037ae7a6b38SJeff Roberson 	    (uintptr_t)mtx);
2038ae7a6b38SJeff Roberson }
2039ae7a6b38SJeff Roberson 
2040ae7a6b38SJeff Roberson /*
2041ae7a6b38SJeff Roberson  * Switch threads.  This function has to handle threads coming in while
2042ae7a6b38SJeff Roberson  * blocked for some reason, running, or idle.  It also must deal with
2043ae7a6b38SJeff Roberson  * migrating a thread from one queue to another as running threads may
2044ae7a6b38SJeff Roberson  * be assigned elsewhere via binding.
2045ae7a6b38SJeff Roberson  */
20463db720fdSDavid Xu void
2047686bcb5cSJeff Roberson sched_switch(struct thread *td, int flags)
204835e6168fSJeff Roberson {
2049686bcb5cSJeff Roberson 	struct thread *newtd;
2050c02bbb43SJeff Roberson 	struct tdq *tdq;
2051ad1e7d28SJulian Elischer 	struct td_sched *ts;
2052ae7a6b38SJeff Roberson 	struct mtx *mtx;
2053c47f202bSJeff Roberson 	int srqflag;
20543d7f4117SAlexander Motin 	int cpuid, preempted;
205535e6168fSJeff Roberson 
20567b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
205735e6168fSJeff Roberson 
2058ae7a6b38SJeff Roberson 	cpuid = PCPU_GET(cpuid);
2059018ff686SJeff Roberson 	tdq = TDQ_SELF();
206093ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
20617295465eSAlexander Motin 	sched_pctcpu_update(ts, 1);
2062ae7a6b38SJeff Roberson 	ts->ts_rltick = ticks;
2063060563ecSJulian Elischer 	td->td_lastcpu = td->td_oncpu;
2064ad9dadc4SAndriy Gapon 	preempted = (td->td_flags & TDF_SLICEEND) == 0 &&
2065ad9dadc4SAndriy Gapon 	    (flags & SW_PREEMPT) != 0;
20663d7f4117SAlexander Motin 	td->td_flags &= ~(TDF_NEEDRESCHED | TDF_SLICEEND);
206777918643SStephan Uphoff 	td->td_owepreempt = 0;
20687789ab32SMark Johnston 	tdq->tdq_owepreempt = 0;
20692c27cb3aSAlexander Motin 	if (!TD_IS_IDLETHREAD(td))
20701690c6c1SJeff Roberson 		tdq->tdq_switchcnt++;
20717789ab32SMark Johnston 
2072b11fdad0SJeff Roberson 	/*
2073686bcb5cSJeff Roberson 	 * Always block the thread lock so we can drop the tdq lock early.
2074b11fdad0SJeff Roberson 	 */
2075686bcb5cSJeff Roberson 	mtx = thread_lock_block(td);
2076686bcb5cSJeff Roberson 	spinlock_enter();
2077486a9414SJulian Elischer 	if (TD_IS_IDLETHREAD(td)) {
2078686bcb5cSJeff Roberson 		MPASS(mtx == TDQ_LOCKPTR(tdq));
2079bf0acc27SJohn Baldwin 		TD_SET_CAN_RUN(td);
20807b20fb19SJeff Roberson 	} else if (TD_IS_RUNNING(td)) {
2081686bcb5cSJeff Roberson 		MPASS(mtx == TDQ_LOCKPTR(tdq));
20823d7f4117SAlexander Motin 		srqflag = preempted ?
2083598b368dSJeff Roberson 		    SRQ_OURSELF|SRQ_YIELDING|SRQ_PREEMPTED :
2084c47f202bSJeff Roberson 		    SRQ_OURSELF|SRQ_YIELDING;
2085ba4932b5SMatthew D Fleming #ifdef SMP
20860f7a0ebdSMatthew D Fleming 		if (THREAD_CAN_MIGRATE(td) && !THREAD_CAN_SCHED(td, ts->ts_cpu))
20870f7a0ebdSMatthew D Fleming 			ts->ts_cpu = sched_pickcpu(td, 0);
2088ba4932b5SMatthew D Fleming #endif
2089c47f202bSJeff Roberson 		if (ts->ts_cpu == cpuid)
20909727e637SJeff Roberson 			tdq_runq_add(tdq, td, srqflag);
2091686bcb5cSJeff Roberson 		else
2092c47f202bSJeff Roberson 			mtx = sched_switch_migrate(tdq, td, srqflag);
2093ae7a6b38SJeff Roberson 	} else {
2094ae7a6b38SJeff Roberson 		/* This thread must be going to sleep. */
209561a74c5cSJeff Roberson 		if (mtx != TDQ_LOCKPTR(tdq)) {
209661a74c5cSJeff Roberson 			mtx_unlock_spin(mtx);
209761a74c5cSJeff Roberson 			TDQ_LOCK(tdq);
209861a74c5cSJeff Roberson 		}
20999727e637SJeff Roberson 		tdq_load_rem(tdq, td);
21004c8a8cfcSKonstantin Belousov #ifdef SMP
210197e9382dSDon Lewis 		if (tdq->tdq_load == 0)
210297e9382dSDon Lewis 			tdq_trysteal(tdq);
21034c8a8cfcSKonstantin Belousov #endif
2104ae7a6b38SJeff Roberson 	}
2105afa0a46cSAndriy Gapon 
2106afa0a46cSAndriy Gapon #if (KTR_COMPILE & KTR_SCHED) != 0
2107afa0a46cSAndriy Gapon 	if (TD_IS_IDLETHREAD(td))
2108afa0a46cSAndriy Gapon 		KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "idle",
2109afa0a46cSAndriy Gapon 		    "prio:%d", td->td_priority);
2110afa0a46cSAndriy Gapon 	else
2111afa0a46cSAndriy Gapon 		KTR_STATE3(KTR_SCHED, "thread", sched_tdname(td), KTDSTATE(td),
2112afa0a46cSAndriy Gapon 		    "prio:%d", td->td_priority, "wmesg:\"%s\"", td->td_wmesg,
2113afa0a46cSAndriy Gapon 		    "lockname:\"%s\"", td->td_lockname);
2114afa0a46cSAndriy Gapon #endif
2115afa0a46cSAndriy Gapon 
2116ae7a6b38SJeff Roberson 	/*
2117ae7a6b38SJeff Roberson 	 * We enter here with the thread blocked and assigned to the
2118ae7a6b38SJeff Roberson 	 * appropriate cpu run-queue or sleep-queue and with the current
2119ae7a6b38SJeff Roberson 	 * thread-queue locked.
2120ae7a6b38SJeff Roberson 	 */
2121ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED | MA_NOTRECURSED);
21222454aaf5SJeff Roberson 	newtd = choosethread();
2123686bcb5cSJeff Roberson 	sched_pctcpu_update(td_get_sched(newtd), 0);
2124686bcb5cSJeff Roberson 	TDQ_UNLOCK(tdq);
2125686bcb5cSJeff Roberson 
2126ae7a6b38SJeff Roberson 	/*
2127ae7a6b38SJeff Roberson 	 * Call the MD code to switch contexts if necessary.
2128ae7a6b38SJeff Roberson 	 */
2129ebccf1e3SJoseph Koshy 	if (td != newtd) {
2130ebccf1e3SJoseph Koshy #ifdef	HWPMC_HOOKS
2131ebccf1e3SJoseph Koshy 		if (PMC_PROC_IS_USING_PMCS(td->td_proc))
2132ebccf1e3SJoseph Koshy 			PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_OUT);
2133ebccf1e3SJoseph Koshy #endif
2134d9fae5abSAndriy Gapon 		SDT_PROBE2(sched, , , off__cpu, newtd, newtd->td_proc);
21356f5f25e5SJohn Birrell 
21366f5f25e5SJohn Birrell #ifdef KDTRACE_HOOKS
21376f5f25e5SJohn Birrell 		/*
21386f5f25e5SJohn Birrell 		 * If DTrace has set the active vtime enum to anything
21396f5f25e5SJohn Birrell 		 * other than INACTIVE (0), then it should have set the
21406f5f25e5SJohn Birrell 		 * function to call.
21416f5f25e5SJohn Birrell 		 */
21426f5f25e5SJohn Birrell 		if (dtrace_vtime_active)
21436f5f25e5SJohn Birrell 			(*dtrace_vtime_switch_func)(newtd);
21446f5f25e5SJohn Birrell #endif
2145686bcb5cSJeff Roberson 		td->td_oncpu = NOCPU;
2146ae7a6b38SJeff Roberson 		cpu_switch(td, newtd, mtx);
2147a89c2c8cSMark Johnston 		cpuid = td->td_oncpu = PCPU_GET(cpuid);
2148b3e9e682SRyan Stone 
2149d9fae5abSAndriy Gapon 		SDT_PROBE0(sched, , , on__cpu);
2150ebccf1e3SJoseph Koshy #ifdef	HWPMC_HOOKS
2151ebccf1e3SJoseph Koshy 		if (PMC_PROC_IS_USING_PMCS(td->td_proc))
2152ebccf1e3SJoseph Koshy 			PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_IN);
2153ebccf1e3SJoseph Koshy #endif
2154b3e9e682SRyan Stone 	} else {
2155ae7a6b38SJeff Roberson 		thread_unblock_switch(td, mtx);
2156d9fae5abSAndriy Gapon 		SDT_PROBE0(sched, , , remain__cpu);
2157b3e9e682SRyan Stone 	}
2158686bcb5cSJeff Roberson 	KASSERT(curthread->td_md.md_spinlock_count == 1,
2159686bcb5cSJeff Roberson 	    ("invalid count %d", curthread->td_md.md_spinlock_count));
2160afa0a46cSAndriy Gapon 
2161afa0a46cSAndriy Gapon 	KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "running",
2162afa0a46cSAndriy Gapon 	    "prio:%d", td->td_priority);
216335e6168fSJeff Roberson }
216435e6168fSJeff Roberson 
2165ae7a6b38SJeff Roberson /*
2166ae7a6b38SJeff Roberson  * Adjust thread priorities as a result of a nice request.
2167ae7a6b38SJeff Roberson  */
216835e6168fSJeff Roberson void
2169fa885116SJulian Elischer sched_nice(struct proc *p, int nice)
217035e6168fSJeff Roberson {
217135e6168fSJeff Roberson 	struct thread *td;
217235e6168fSJeff Roberson 
2173fa885116SJulian Elischer 	PROC_LOCK_ASSERT(p, MA_OWNED);
2174e7d50326SJeff Roberson 
2175fa885116SJulian Elischer 	p->p_nice = nice;
21768460a577SJohn Birrell 	FOREACH_THREAD_IN_PROC(p, td) {
21777b20fb19SJeff Roberson 		thread_lock(td);
21788460a577SJohn Birrell 		sched_priority(td);
2179e7d50326SJeff Roberson 		sched_prio(td, td->td_base_user_pri);
21807b20fb19SJeff Roberson 		thread_unlock(td);
218135e6168fSJeff Roberson 	}
2182fa885116SJulian Elischer }
218335e6168fSJeff Roberson 
2184ae7a6b38SJeff Roberson /*
2185ae7a6b38SJeff Roberson  * Record the sleep time for the interactivity scorer.
2186ae7a6b38SJeff Roberson  */
218735e6168fSJeff Roberson void
2188c5aa6b58SJeff Roberson sched_sleep(struct thread *td, int prio)
218935e6168fSJeff Roberson {
2190e7d50326SJeff Roberson 
21917b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
219235e6168fSJeff Roberson 
219354b0e65fSJeff Roberson 	td->td_slptick = ticks;
219417c4c356SKonstantin Belousov 	if (TD_IS_SUSPENDED(td) || prio >= PSOCK)
2195c5aa6b58SJeff Roberson 		td->td_flags |= TDF_CANSWAP;
21962dc29adbSJohn Baldwin 	if (PRI_BASE(td->td_pri_class) != PRI_TIMESHARE)
21972dc29adbSJohn Baldwin 		return;
21980502fe2eSJeff Roberson 	if (static_boost == 1 && prio)
2199c5aa6b58SJeff Roberson 		sched_prio(td, prio);
22000502fe2eSJeff Roberson 	else if (static_boost && td->td_priority > static_boost)
22010502fe2eSJeff Roberson 		sched_prio(td, static_boost);
220235e6168fSJeff Roberson }
220335e6168fSJeff Roberson 
2204ae7a6b38SJeff Roberson /*
2205ae7a6b38SJeff Roberson  * Schedule a thread to resume execution and record how long it voluntarily
2206ae7a6b38SJeff Roberson  * slept.  We also update the pctcpu, interactivity, and priority.
220761a74c5cSJeff Roberson  *
220861a74c5cSJeff Roberson  * Requires the thread lock on entry, drops on exit.
2209ae7a6b38SJeff Roberson  */
221035e6168fSJeff Roberson void
221161a74c5cSJeff Roberson sched_wakeup(struct thread *td, int srqflags)
221235e6168fSJeff Roberson {
221314618990SJeff Roberson 	struct td_sched *ts;
2214ae7a6b38SJeff Roberson 	int slptick;
2215e7d50326SJeff Roberson 
22167b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
221793ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
2218c5aa6b58SJeff Roberson 	td->td_flags &= ~TDF_CANSWAP;
221961a74c5cSJeff Roberson 
222035e6168fSJeff Roberson 	/*
2221e7d50326SJeff Roberson 	 * If we slept for more than a tick update our interactivity and
2222e7d50326SJeff Roberson 	 * priority.
222335e6168fSJeff Roberson 	 */
222454b0e65fSJeff Roberson 	slptick = td->td_slptick;
222554b0e65fSJeff Roberson 	td->td_slptick = 0;
2226ae7a6b38SJeff Roberson 	if (slptick && slptick != ticks) {
22277295465eSAlexander Motin 		ts->ts_slptime += (ticks - slptick) << SCHED_TICK_SHIFT;
22288460a577SJohn Birrell 		sched_interact_update(td);
22297295465eSAlexander Motin 		sched_pctcpu_update(ts, 0);
2230f1e8dc4aSJeff Roberson 	}
22315e5c3873SJeff Roberson 	/*
22325e5c3873SJeff Roberson 	 * Reset the slice value since we slept and advanced the round-robin.
22335e5c3873SJeff Roberson 	 */
22345e5c3873SJeff Roberson 	ts->ts_slice = 0;
223561a74c5cSJeff Roberson 	sched_add(td, SRQ_BORING | srqflags);
223635e6168fSJeff Roberson }
223735e6168fSJeff Roberson 
223835e6168fSJeff Roberson /*
223935e6168fSJeff Roberson  * Penalize the parent for creating a new child and initialize the child's
224035e6168fSJeff Roberson  * priority.
224135e6168fSJeff Roberson  */
224235e6168fSJeff Roberson void
22438460a577SJohn Birrell sched_fork(struct thread *td, struct thread *child)
224415dc847eSJeff Roberson {
22457b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
224693ccd6bfSKonstantin Belousov 	sched_pctcpu_update(td_get_sched(td), 1);
2247ad1e7d28SJulian Elischer 	sched_fork_thread(td, child);
2248e7d50326SJeff Roberson 	/*
2249e7d50326SJeff Roberson 	 * Penalize the parent and child for forking.
2250e7d50326SJeff Roberson 	 */
2251e7d50326SJeff Roberson 	sched_interact_fork(child);
2252e7d50326SJeff Roberson 	sched_priority(child);
225393ccd6bfSKonstantin Belousov 	td_get_sched(td)->ts_runtime += tickincr;
2254e7d50326SJeff Roberson 	sched_interact_update(td);
2255e7d50326SJeff Roberson 	sched_priority(td);
2256ad1e7d28SJulian Elischer }
2257ad1e7d28SJulian Elischer 
2258ae7a6b38SJeff Roberson /*
2259ae7a6b38SJeff Roberson  * Fork a new thread, may be within the same process.
2260ae7a6b38SJeff Roberson  */
2261ad1e7d28SJulian Elischer void
2262ad1e7d28SJulian Elischer sched_fork_thread(struct thread *td, struct thread *child)
2263ad1e7d28SJulian Elischer {
2264ad1e7d28SJulian Elischer 	struct td_sched *ts;
2265ad1e7d28SJulian Elischer 	struct td_sched *ts2;
22665e5c3873SJeff Roberson 	struct tdq *tdq;
22678460a577SJohn Birrell 
22685e5c3873SJeff Roberson 	tdq = TDQ_SELF();
22698b16c208SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
2270e7d50326SJeff Roberson 	/*
2271e7d50326SJeff Roberson 	 * Initialize child.
2272e7d50326SJeff Roberson 	 */
227393ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
227493ccd6bfSKonstantin Belousov 	ts2 = td_get_sched(child);
227592de34dfSJohn Baldwin 	child->td_oncpu = NOCPU;
227692de34dfSJohn Baldwin 	child->td_lastcpu = NOCPU;
22775e5c3873SJeff Roberson 	child->td_lock = TDQ_LOCKPTR(tdq);
22788b16c208SJeff Roberson 	child->td_cpuset = cpuset_ref(td->td_cpuset);
22793f289c3fSJeff Roberson 	child->td_domain.dr_policy = td->td_cpuset->cs_domain;
2280ad1e7d28SJulian Elischer 	ts2->ts_cpu = ts->ts_cpu;
22818b16c208SJeff Roberson 	ts2->ts_flags = 0;
2282e7d50326SJeff Roberson 	/*
228322d19207SJohn Baldwin 	 * Grab our parents cpu estimation information.
2284e7d50326SJeff Roberson 	 */
2285ad1e7d28SJulian Elischer 	ts2->ts_ticks = ts->ts_ticks;
2286ad1e7d28SJulian Elischer 	ts2->ts_ltick = ts->ts_ltick;
2287ad1e7d28SJulian Elischer 	ts2->ts_ftick = ts->ts_ftick;
228822d19207SJohn Baldwin 	/*
228922d19207SJohn Baldwin 	 * Do not inherit any borrowed priority from the parent.
229022d19207SJohn Baldwin 	 */
229122d19207SJohn Baldwin 	child->td_priority = child->td_base_pri;
2292e7d50326SJeff Roberson 	/*
2293e7d50326SJeff Roberson 	 * And update interactivity score.
2294e7d50326SJeff Roberson 	 */
2295ae7a6b38SJeff Roberson 	ts2->ts_slptime = ts->ts_slptime;
2296ae7a6b38SJeff Roberson 	ts2->ts_runtime = ts->ts_runtime;
22975e5c3873SJeff Roberson 	/* Attempt to quickly learn interactivity. */
22985e5c3873SJeff Roberson 	ts2->ts_slice = tdq_slice(tdq) - sched_slice_min;
22998f51ad55SJeff Roberson #ifdef KTR
23008f51ad55SJeff Roberson 	bzero(ts2->ts_name, sizeof(ts2->ts_name));
23018f51ad55SJeff Roberson #endif
230215dc847eSJeff Roberson }
230315dc847eSJeff Roberson 
2304ae7a6b38SJeff Roberson /*
2305ae7a6b38SJeff Roberson  * Adjust the priority class of a thread.
2306ae7a6b38SJeff Roberson  */
230715dc847eSJeff Roberson void
23088460a577SJohn Birrell sched_class(struct thread *td, int class)
230915dc847eSJeff Roberson {
231015dc847eSJeff Roberson 
23117b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
23128460a577SJohn Birrell 	if (td->td_pri_class == class)
231315dc847eSJeff Roberson 		return;
23148460a577SJohn Birrell 	td->td_pri_class = class;
231535e6168fSJeff Roberson }
231635e6168fSJeff Roberson 
231735e6168fSJeff Roberson /*
231835e6168fSJeff Roberson  * Return some of the child's priority and interactivity to the parent.
231935e6168fSJeff Roberson  */
232035e6168fSJeff Roberson void
2321fc6c30f6SJulian Elischer sched_exit(struct proc *p, struct thread *child)
232235e6168fSJeff Roberson {
2323e7d50326SJeff Roberson 	struct thread *td;
2324141ad61cSJeff Roberson 
23258f51ad55SJeff Roberson 	KTR_STATE1(KTR_SCHED, "thread", sched_tdname(child), "proc exit",
2326cd39bb09SXin LI 	    "prio:%d", child->td_priority);
2327374ae2a3SJeff Roberson 	PROC_LOCK_ASSERT(p, MA_OWNED);
2328e7d50326SJeff Roberson 	td = FIRST_THREAD_IN_PROC(p);
2329e7d50326SJeff Roberson 	sched_exit_thread(td, child);
2330ad1e7d28SJulian Elischer }
2331ad1e7d28SJulian Elischer 
2332ae7a6b38SJeff Roberson /*
2333ae7a6b38SJeff Roberson  * Penalize another thread for the time spent on this one.  This helps to
2334ae7a6b38SJeff Roberson  * worsen the priority and interactivity of processes which schedule batch
2335ae7a6b38SJeff Roberson  * jobs such as make.  This has little effect on the make process itself but
2336ae7a6b38SJeff Roberson  * causes new processes spawned by it to receive worse scores immediately.
2337ae7a6b38SJeff Roberson  */
2338ad1e7d28SJulian Elischer void
2339fc6c30f6SJulian Elischer sched_exit_thread(struct thread *td, struct thread *child)
2340ad1e7d28SJulian Elischer {
2341fc6c30f6SJulian Elischer 
23428f51ad55SJeff Roberson 	KTR_STATE1(KTR_SCHED, "thread", sched_tdname(child), "thread exit",
2343cd39bb09SXin LI 	    "prio:%d", child->td_priority);
2344e7d50326SJeff Roberson 	/*
2345e7d50326SJeff Roberson 	 * Give the child's runtime to the parent without returning the
2346e7d50326SJeff Roberson 	 * sleep time as a penalty to the parent.  This causes shells that
2347e7d50326SJeff Roberson 	 * launch expensive things to mark their children as expensive.
2348e7d50326SJeff Roberson 	 */
23497b20fb19SJeff Roberson 	thread_lock(td);
235093ccd6bfSKonstantin Belousov 	td_get_sched(td)->ts_runtime += td_get_sched(child)->ts_runtime;
2351fc6c30f6SJulian Elischer 	sched_interact_update(td);
2352e7d50326SJeff Roberson 	sched_priority(td);
23537b20fb19SJeff Roberson 	thread_unlock(td);
2354ad1e7d28SJulian Elischer }
2355ad1e7d28SJulian Elischer 
2356ff256d9cSJeff Roberson void
2357ff256d9cSJeff Roberson sched_preempt(struct thread *td)
2358ff256d9cSJeff Roberson {
2359ff256d9cSJeff Roberson 	struct tdq *tdq;
2360686bcb5cSJeff Roberson 	int flags;
2361ff256d9cSJeff Roberson 
2362b3e9e682SRyan Stone 	SDT_PROBE2(sched, , , surrender, td, td->td_proc);
2363b3e9e682SRyan Stone 
2364ff256d9cSJeff Roberson 	thread_lock(td);
2365ff256d9cSJeff Roberson 	tdq = TDQ_SELF();
2366ff256d9cSJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
2367ff256d9cSJeff Roberson 	if (td->td_priority > tdq->tdq_lowpri) {
2368686bcb5cSJeff Roberson 		if (td->td_critnest == 1) {
23698df78c41SJeff Roberson 			flags = SW_INVOL | SW_PREEMPT;
2370686bcb5cSJeff Roberson 			flags |= TD_IS_IDLETHREAD(td) ? SWT_REMOTEWAKEIDLE :
2371686bcb5cSJeff Roberson 			    SWT_REMOTEPREEMPT;
2372686bcb5cSJeff Roberson 			mi_switch(flags);
2373686bcb5cSJeff Roberson 			/* Switch dropped thread lock. */
2374686bcb5cSJeff Roberson 			return;
2375686bcb5cSJeff Roberson 		}
2376ff256d9cSJeff Roberson 		td->td_owepreempt = 1;
23777789ab32SMark Johnston 	} else {
23787789ab32SMark Johnston 		tdq->tdq_owepreempt = 0;
2379ff256d9cSJeff Roberson 	}
2380ff256d9cSJeff Roberson 	thread_unlock(td);
2381ff256d9cSJeff Roberson }
2382ff256d9cSJeff Roberson 
2383ae7a6b38SJeff Roberson /*
2384ae7a6b38SJeff Roberson  * Fix priorities on return to user-space.  Priorities may be elevated due
2385ae7a6b38SJeff Roberson  * to static priorities in msleep() or similar.
2386ae7a6b38SJeff Roberson  */
2387ad1e7d28SJulian Elischer void
238828240885SMateusz Guzik sched_userret_slowpath(struct thread *td)
2389ad1e7d28SJulian Elischer {
239028240885SMateusz Guzik 
23917b20fb19SJeff Roberson 	thread_lock(td);
2392ad1e7d28SJulian Elischer 	td->td_priority = td->td_user_pri;
2393ad1e7d28SJulian Elischer 	td->td_base_pri = td->td_user_pri;
239462fa74d9SJeff Roberson 	tdq_setlowpri(TDQ_SELF(), td);
23957b20fb19SJeff Roberson 	thread_unlock(td);
2396ad1e7d28SJulian Elischer }
239735e6168fSJeff Roberson 
2398ae7a6b38SJeff Roberson /*
2399ae7a6b38SJeff Roberson  * Handle a stathz tick.  This is really only relevant for timeshare
2400ae7a6b38SJeff Roberson  * threads.
2401ae7a6b38SJeff Roberson  */
240235e6168fSJeff Roberson void
2403c3cccf95SJeff Roberson sched_clock(struct thread *td, int cnt)
240435e6168fSJeff Roberson {
2405ad1e7d28SJulian Elischer 	struct tdq *tdq;
2406ad1e7d28SJulian Elischer 	struct td_sched *ts;
240735e6168fSJeff Roberson 
2408ae7a6b38SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
24093f872f85SJeff Roberson 	tdq = TDQ_SELF();
24107fcf154aSJeff Roberson #ifdef SMP
24117fcf154aSJeff Roberson 	/*
24127fcf154aSJeff Roberson 	 * We run the long term load balancer infrequently on the first cpu.
24137fcf154aSJeff Roberson 	 */
2414c3cccf95SJeff Roberson 	if (balance_tdq == tdq && smp_started != 0 && rebalance != 0 &&
2415c3cccf95SJeff Roberson 	    balance_ticks != 0) {
2416c3cccf95SJeff Roberson 		balance_ticks -= cnt;
2417c3cccf95SJeff Roberson 		if (balance_ticks <= 0)
24187fcf154aSJeff Roberson 			sched_balance();
24197fcf154aSJeff Roberson 	}
24207fcf154aSJeff Roberson #endif
24213f872f85SJeff Roberson 	/*
24221690c6c1SJeff Roberson 	 * Save the old switch count so we have a record of the last ticks
24231690c6c1SJeff Roberson 	 * activity.   Initialize the new switch count based on our load.
24241690c6c1SJeff Roberson 	 * If there is some activity seed it to reflect that.
24251690c6c1SJeff Roberson 	 */
24261690c6c1SJeff Roberson 	tdq->tdq_oldswitchcnt = tdq->tdq_switchcnt;
24276c47aaaeSJeff Roberson 	tdq->tdq_switchcnt = tdq->tdq_load;
24281690c6c1SJeff Roberson 	/*
24293f872f85SJeff Roberson 	 * Advance the insert index once for each tick to ensure that all
24303f872f85SJeff Roberson 	 * threads get a chance to run.
24313f872f85SJeff Roberson 	 */
24323f872f85SJeff Roberson 	if (tdq->tdq_idx == tdq->tdq_ridx) {
24333f872f85SJeff Roberson 		tdq->tdq_idx = (tdq->tdq_idx + 1) % RQ_NQS;
24343f872f85SJeff Roberson 		if (TAILQ_EMPTY(&tdq->tdq_timeshare.rq_queues[tdq->tdq_ridx]))
24353f872f85SJeff Roberson 			tdq->tdq_ridx = tdq->tdq_idx;
24363f872f85SJeff Roberson 	}
243793ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
24387295465eSAlexander Motin 	sched_pctcpu_update(ts, 1);
2439c3cccf95SJeff Roberson 	if ((td->td_pri_class & PRI_FIFO_BIT) || TD_IS_IDLETHREAD(td))
2440a8949de2SJeff Roberson 		return;
2441c3cccf95SJeff Roberson 
2442c9a8cba4SJohn Baldwin 	if (PRI_BASE(td->td_pri_class) == PRI_TIMESHARE) {
2443a8949de2SJeff Roberson 		/*
2444fd0b8c78SJeff Roberson 		 * We used a tick; charge it to the thread so
2445fd0b8c78SJeff Roberson 		 * that we can compute our interactivity.
244615dc847eSJeff Roberson 		 */
2447c3cccf95SJeff Roberson 		td_get_sched(td)->ts_runtime += tickincr * cnt;
24488460a577SJohn Birrell 		sched_interact_update(td);
244973daf66fSJeff Roberson 		sched_priority(td);
2450fd0b8c78SJeff Roberson 	}
2451579895dfSAlexander Motin 
245235e6168fSJeff Roberson 	/*
2453579895dfSAlexander Motin 	 * Force a context switch if the current thread has used up a full
2454579895dfSAlexander Motin 	 * time slice (default is 100ms).
245535e6168fSJeff Roberson 	 */
2456c3cccf95SJeff Roberson 	ts->ts_slice += cnt;
2457c3cccf95SJeff Roberson 	if (ts->ts_slice >= tdq_slice(tdq)) {
24585e5c3873SJeff Roberson 		ts->ts_slice = 0;
24593d7f4117SAlexander Motin 		td->td_flags |= TDF_NEEDRESCHED | TDF_SLICEEND;
246035e6168fSJeff Roberson 	}
2461579895dfSAlexander Motin }
246235e6168fSJeff Roberson 
2463ccd0ec40SKonstantin Belousov u_int
2464ccd0ec40SKonstantin Belousov sched_estcpu(struct thread *td __unused)
2465ae7a6b38SJeff Roberson {
2466ae7a6b38SJeff Roberson 
2467ccd0ec40SKonstantin Belousov 	return (0);
2468ae7a6b38SJeff Roberson }
2469ae7a6b38SJeff Roberson 
2470ae7a6b38SJeff Roberson /*
2471ae7a6b38SJeff Roberson  * Return whether the current CPU has runnable tasks.  Used for in-kernel
2472ae7a6b38SJeff Roberson  * cooperative idle threads.
2473ae7a6b38SJeff Roberson  */
247435e6168fSJeff Roberson int
247535e6168fSJeff Roberson sched_runnable(void)
247635e6168fSJeff Roberson {
2477ad1e7d28SJulian Elischer 	struct tdq *tdq;
2478b90816f1SJeff Roberson 	int load;
247935e6168fSJeff Roberson 
2480b90816f1SJeff Roberson 	load = 1;
2481b90816f1SJeff Roberson 
2482ad1e7d28SJulian Elischer 	tdq = TDQ_SELF();
24833f741ca1SJeff Roberson 	if ((curthread->td_flags & TDF_IDLETD) != 0) {
2484d2ad694cSJeff Roberson 		if (tdq->tdq_load > 0)
24853f741ca1SJeff Roberson 			goto out;
24863f741ca1SJeff Roberson 	} else
2487d2ad694cSJeff Roberson 		if (tdq->tdq_load - 1 > 0)
2488b90816f1SJeff Roberson 			goto out;
2489b90816f1SJeff Roberson 	load = 0;
2490b90816f1SJeff Roberson out:
2491b90816f1SJeff Roberson 	return (load);
249235e6168fSJeff Roberson }
249335e6168fSJeff Roberson 
2494ae7a6b38SJeff Roberson /*
2495ae7a6b38SJeff Roberson  * Choose the highest priority thread to run.  The thread is removed from
2496ae7a6b38SJeff Roberson  * the run-queue while running however the load remains.  For SMP we set
2497ae7a6b38SJeff Roberson  * the tdq in the global idle bitmask if it idles here.
2498ae7a6b38SJeff Roberson  */
24997a5e5e2aSJeff Roberson struct thread *
2500c9f25d8fSJeff Roberson sched_choose(void)
2501c9f25d8fSJeff Roberson {
25029727e637SJeff Roberson 	struct thread *td;
2503ae7a6b38SJeff Roberson 	struct tdq *tdq;
2504ae7a6b38SJeff Roberson 
2505ae7a6b38SJeff Roberson 	tdq = TDQ_SELF();
2506ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
25079727e637SJeff Roberson 	td = tdq_choose(tdq);
25089727e637SJeff Roberson 	if (td) {
25099727e637SJeff Roberson 		tdq_runq_rem(tdq, td);
25100502fe2eSJeff Roberson 		tdq->tdq_lowpri = td->td_priority;
25119727e637SJeff Roberson 		return (td);
251235e6168fSJeff Roberson 	}
25130502fe2eSJeff Roberson 	tdq->tdq_lowpri = PRI_MAX_IDLE;
251462fa74d9SJeff Roberson 	return (PCPU_GET(idlethread));
25157a5e5e2aSJeff Roberson }
25167a5e5e2aSJeff Roberson 
2517ae7a6b38SJeff Roberson /*
2518ae7a6b38SJeff Roberson  * Set owepreempt if necessary.  Preemption never happens directly in ULE,
2519ae7a6b38SJeff Roberson  * we always request it once we exit a critical section.
2520ae7a6b38SJeff Roberson  */
2521ae7a6b38SJeff Roberson static inline void
2522ae7a6b38SJeff Roberson sched_setpreempt(struct thread *td)
25237a5e5e2aSJeff Roberson {
25247a5e5e2aSJeff Roberson 	struct thread *ctd;
25257a5e5e2aSJeff Roberson 	int cpri;
25267a5e5e2aSJeff Roberson 	int pri;
25277a5e5e2aSJeff Roberson 
2528ff256d9cSJeff Roberson 	THREAD_LOCK_ASSERT(curthread, MA_OWNED);
2529ff256d9cSJeff Roberson 
25307a5e5e2aSJeff Roberson 	ctd = curthread;
25317a5e5e2aSJeff Roberson 	pri = td->td_priority;
25327a5e5e2aSJeff Roberson 	cpri = ctd->td_priority;
2533ff256d9cSJeff Roberson 	if (pri < cpri)
2534ff256d9cSJeff Roberson 		ctd->td_flags |= TDF_NEEDRESCHED;
2535879e0604SMateusz Guzik 	if (KERNEL_PANICKED() || pri >= cpri || cold || TD_IS_INHIBITED(ctd))
2536ae7a6b38SJeff Roberson 		return;
2537ff256d9cSJeff Roberson 	if (!sched_shouldpreempt(pri, cpri, 0))
2538ae7a6b38SJeff Roberson 		return;
25397a5e5e2aSJeff Roberson 	ctd->td_owepreempt = 1;
254035e6168fSJeff Roberson }
254135e6168fSJeff Roberson 
2542ae7a6b38SJeff Roberson /*
254373daf66fSJeff Roberson  * Add a thread to a thread queue.  Select the appropriate runq and add the
254473daf66fSJeff Roberson  * thread to it.  This is the internal function called when the tdq is
254573daf66fSJeff Roberson  * predetermined.
2546ae7a6b38SJeff Roberson  */
254735e6168fSJeff Roberson void
2548ae7a6b38SJeff Roberson tdq_add(struct tdq *tdq, struct thread *td, int flags)
254935e6168fSJeff Roberson {
2550c9f25d8fSJeff Roberson 
2551ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
255261a74c5cSJeff Roberson 	THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED);
25537a5e5e2aSJeff Roberson 	KASSERT((td->td_inhibitors == 0),
25547a5e5e2aSJeff Roberson 	    ("sched_add: trying to run inhibited thread"));
25557a5e5e2aSJeff Roberson 	KASSERT((TD_CAN_RUN(td) || TD_IS_RUNNING(td)),
25567a5e5e2aSJeff Roberson 	    ("sched_add: bad thread state"));
2557b61ce5b0SJeff Roberson 	KASSERT(td->td_flags & TDF_INMEM,
2558b61ce5b0SJeff Roberson 	    ("sched_add: thread swapped out"));
2559ae7a6b38SJeff Roberson 
2560ae7a6b38SJeff Roberson 	if (td->td_priority < tdq->tdq_lowpri)
2561ae7a6b38SJeff Roberson 		tdq->tdq_lowpri = td->td_priority;
25629727e637SJeff Roberson 	tdq_runq_add(tdq, td, flags);
25639727e637SJeff Roberson 	tdq_load_add(tdq, td);
2564ae7a6b38SJeff Roberson }
2565ae7a6b38SJeff Roberson 
2566ae7a6b38SJeff Roberson /*
2567ae7a6b38SJeff Roberson  * Select the target thread queue and add a thread to it.  Request
2568ae7a6b38SJeff Roberson  * preemption or IPI a remote processor if required.
256961a74c5cSJeff Roberson  *
257061a74c5cSJeff Roberson  * Requires the thread lock on entry, drops on exit.
2571ae7a6b38SJeff Roberson  */
2572ae7a6b38SJeff Roberson void
2573ae7a6b38SJeff Roberson sched_add(struct thread *td, int flags)
2574ae7a6b38SJeff Roberson {
2575ae7a6b38SJeff Roberson 	struct tdq *tdq;
25767b8bfa0dSJeff Roberson #ifdef SMP
2577ae7a6b38SJeff Roberson 	int cpu;
2578ae7a6b38SJeff Roberson #endif
25798f51ad55SJeff Roberson 
25808f51ad55SJeff Roberson 	KTR_STATE2(KTR_SCHED, "thread", sched_tdname(td), "runq add",
25818f51ad55SJeff Roberson 	    "prio:%d", td->td_priority, KTR_ATTR_LINKED,
25828f51ad55SJeff Roberson 	    sched_tdname(curthread));
25838f51ad55SJeff Roberson 	KTR_POINT1(KTR_SCHED, "thread", sched_tdname(curthread), "wokeup",
25848f51ad55SJeff Roberson 	    KTR_ATTR_LINKED, sched_tdname(td));
2585b3e9e682SRyan Stone 	SDT_PROBE4(sched, , , enqueue, td, td->td_proc, NULL,
2586b3e9e682SRyan Stone 	    flags & SRQ_PREEMPTED);
2587ae7a6b38SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
2588ae7a6b38SJeff Roberson 	/*
2589ae7a6b38SJeff Roberson 	 * Recalculate the priority before we select the target cpu or
2590ae7a6b38SJeff Roberson 	 * run-queue.
2591ae7a6b38SJeff Roberson 	 */
2592ae7a6b38SJeff Roberson 	if (PRI_BASE(td->td_pri_class) == PRI_TIMESHARE)
2593ae7a6b38SJeff Roberson 		sched_priority(td);
2594ae7a6b38SJeff Roberson #ifdef SMP
2595ae7a6b38SJeff Roberson 	/*
2596ae7a6b38SJeff Roberson 	 * Pick the destination cpu and if it isn't ours transfer to the
2597ae7a6b38SJeff Roberson 	 * target cpu.
2598ae7a6b38SJeff Roberson 	 */
25999727e637SJeff Roberson 	cpu = sched_pickcpu(td, flags);
26009727e637SJeff Roberson 	tdq = sched_setcpu(td, cpu, flags);
2601ae7a6b38SJeff Roberson 	tdq_add(tdq, td, flags);
260261a74c5cSJeff Roberson 	if (cpu != PCPU_GET(cpuid))
260327ee18adSRyan Stone 		tdq_notify(tdq, td);
260461a74c5cSJeff Roberson 	else if (!(flags & SRQ_YIELDING))
260561a74c5cSJeff Roberson 		sched_setpreempt(td);
2606ae7a6b38SJeff Roberson #else
2607ae7a6b38SJeff Roberson 	tdq = TDQ_SELF();
2608ae7a6b38SJeff Roberson 	/*
2609ae7a6b38SJeff Roberson 	 * Now that the thread is moving to the run-queue, set the lock
2610ae7a6b38SJeff Roberson 	 * to the scheduler's lock.
2611ae7a6b38SJeff Roberson 	 */
2612e4894505SMark Johnston 	if (td->td_lock != TDQ_LOCKPTR(tdq)) {
2613e4894505SMark Johnston 		TDQ_LOCK(tdq);
261461a74c5cSJeff Roberson 		if ((flags & SRQ_HOLD) != 0)
261561a74c5cSJeff Roberson 			td->td_lock = TDQ_LOCKPTR(tdq);
261661a74c5cSJeff Roberson 		else
2617ae7a6b38SJeff Roberson 			thread_lock_set(td, TDQ_LOCKPTR(tdq));
2618e4894505SMark Johnston 	}
2619ae7a6b38SJeff Roberson 	tdq_add(tdq, td, flags);
2620ae7a6b38SJeff Roberson 	if (!(flags & SRQ_YIELDING))
2621ae7a6b38SJeff Roberson 		sched_setpreempt(td);
262261a74c5cSJeff Roberson #endif
262361a74c5cSJeff Roberson 	if (!(flags & SRQ_HOLDTD))
262461a74c5cSJeff Roberson 		thread_unlock(td);
262535e6168fSJeff Roberson }
262635e6168fSJeff Roberson 
2627ae7a6b38SJeff Roberson /*
2628ae7a6b38SJeff Roberson  * Remove a thread from a run-queue without running it.  This is used
2629ae7a6b38SJeff Roberson  * when we're stealing a thread from a remote queue.  Otherwise all threads
2630ae7a6b38SJeff Roberson  * exit by calling sched_exit_thread() and sched_throw() themselves.
2631ae7a6b38SJeff Roberson  */
263235e6168fSJeff Roberson void
26337cf90fb3SJeff Roberson sched_rem(struct thread *td)
263435e6168fSJeff Roberson {
2635ad1e7d28SJulian Elischer 	struct tdq *tdq;
26367cf90fb3SJeff Roberson 
26378f51ad55SJeff Roberson 	KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "runq rem",
26388f51ad55SJeff Roberson 	    "prio:%d", td->td_priority);
2639b3e9e682SRyan Stone 	SDT_PROBE3(sched, , , dequeue, td, td->td_proc, NULL);
264093ccd6bfSKonstantin Belousov 	tdq = TDQ_CPU(td_get_sched(td)->ts_cpu);
2641ae7a6b38SJeff Roberson 	TDQ_LOCK_ASSERT(tdq, MA_OWNED);
2642ae7a6b38SJeff Roberson 	MPASS(td->td_lock == TDQ_LOCKPTR(tdq));
26437a5e5e2aSJeff Roberson 	KASSERT(TD_ON_RUNQ(td),
2644ad1e7d28SJulian Elischer 	    ("sched_rem: thread not on run queue"));
26459727e637SJeff Roberson 	tdq_runq_rem(tdq, td);
26469727e637SJeff Roberson 	tdq_load_rem(tdq, td);
26477a5e5e2aSJeff Roberson 	TD_SET_CAN_RUN(td);
264862fa74d9SJeff Roberson 	if (td->td_priority == tdq->tdq_lowpri)
264962fa74d9SJeff Roberson 		tdq_setlowpri(tdq, NULL);
265035e6168fSJeff Roberson }
265135e6168fSJeff Roberson 
2652ae7a6b38SJeff Roberson /*
2653ae7a6b38SJeff Roberson  * Fetch cpu utilization information.  Updates on demand.
2654ae7a6b38SJeff Roberson  */
265535e6168fSJeff Roberson fixpt_t
26567cf90fb3SJeff Roberson sched_pctcpu(struct thread *td)
265735e6168fSJeff Roberson {
265835e6168fSJeff Roberson 	fixpt_t pctcpu;
2659ad1e7d28SJulian Elischer 	struct td_sched *ts;
266035e6168fSJeff Roberson 
266135e6168fSJeff Roberson 	pctcpu = 0;
266293ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
266335e6168fSJeff Roberson 
26643da35a0aSJohn Baldwin 	THREAD_LOCK_ASSERT(td, MA_OWNED);
26657295465eSAlexander Motin 	sched_pctcpu_update(ts, TD_IS_RUNNING(td));
2666ad1e7d28SJulian Elischer 	if (ts->ts_ticks) {
266735e6168fSJeff Roberson 		int rtick;
266835e6168fSJeff Roberson 
266935e6168fSJeff Roberson 		/* How many rtick per second ? */
2670e7d50326SJeff Roberson 		rtick = min(SCHED_TICK_HZ(ts) / SCHED_TICK_SECS, hz);
2671e7d50326SJeff Roberson 		pctcpu = (FSCALE * ((FSCALE * rtick)/hz)) >> FSHIFT;
267235e6168fSJeff Roberson 	}
267335e6168fSJeff Roberson 
267435e6168fSJeff Roberson 	return (pctcpu);
267535e6168fSJeff Roberson }
267635e6168fSJeff Roberson 
267762fa74d9SJeff Roberson /*
267862fa74d9SJeff Roberson  * Enforce affinity settings for a thread.  Called after adjustments to
267962fa74d9SJeff Roberson  * cpumask.
268062fa74d9SJeff Roberson  */
2681885d51a3SJeff Roberson void
2682885d51a3SJeff Roberson sched_affinity(struct thread *td)
2683885d51a3SJeff Roberson {
268462fa74d9SJeff Roberson #ifdef SMP
268562fa74d9SJeff Roberson 	struct td_sched *ts;
268662fa74d9SJeff Roberson 
268762fa74d9SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
268893ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
268962fa74d9SJeff Roberson 	if (THREAD_CAN_SCHED(td, ts->ts_cpu))
269062fa74d9SJeff Roberson 		return;
269153a6c8b3SJeff Roberson 	if (TD_ON_RUNQ(td)) {
269253a6c8b3SJeff Roberson 		sched_rem(td);
2693d8d5f036SJeff Roberson 		sched_add(td, SRQ_BORING | SRQ_HOLDTD);
269453a6c8b3SJeff Roberson 		return;
269553a6c8b3SJeff Roberson 	}
269662fa74d9SJeff Roberson 	if (!TD_IS_RUNNING(td))
269762fa74d9SJeff Roberson 		return;
269862fa74d9SJeff Roberson 	/*
26990f7a0ebdSMatthew D Fleming 	 * Force a switch before returning to userspace.  If the
27000f7a0ebdSMatthew D Fleming 	 * target thread is not running locally send an ipi to force
27010f7a0ebdSMatthew D Fleming 	 * the issue.
270262fa74d9SJeff Roberson 	 */
2703a8103ae8SJohn Baldwin 	td->td_flags |= TDF_NEEDRESCHED;
27040f7a0ebdSMatthew D Fleming 	if (td != curthread)
27050f7a0ebdSMatthew D Fleming 		ipi_cpu(ts->ts_cpu, IPI_PREEMPT);
270662fa74d9SJeff Roberson #endif
2707885d51a3SJeff Roberson }
2708885d51a3SJeff Roberson 
2709ae7a6b38SJeff Roberson /*
2710ae7a6b38SJeff Roberson  * Bind a thread to a target cpu.
2711ae7a6b38SJeff Roberson  */
27129bacd788SJeff Roberson void
27139bacd788SJeff Roberson sched_bind(struct thread *td, int cpu)
27149bacd788SJeff Roberson {
2715ad1e7d28SJulian Elischer 	struct td_sched *ts;
27169bacd788SJeff Roberson 
2717c47f202bSJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED|MA_NOTRECURSED);
27181d7830edSJohn Baldwin 	KASSERT(td == curthread, ("sched_bind: can only bind curthread"));
271993ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
27206b2f763fSJeff Roberson 	if (ts->ts_flags & TSF_BOUND)
2721c95d2db2SJeff Roberson 		sched_unbind(td);
27220f7a0ebdSMatthew D Fleming 	KASSERT(THREAD_CAN_MIGRATE(td), ("%p must be migratable", td));
2723ad1e7d28SJulian Elischer 	ts->ts_flags |= TSF_BOUND;
27246b2f763fSJeff Roberson 	sched_pin();
272580f86c9fSJeff Roberson 	if (PCPU_GET(cpuid) == cpu)
27269bacd788SJeff Roberson 		return;
27276b2f763fSJeff Roberson 	ts->ts_cpu = cpu;
27289bacd788SJeff Roberson 	/* When we return from mi_switch we'll be on the correct cpu. */
2729686bcb5cSJeff Roberson 	mi_switch(SW_VOL);
2730686bcb5cSJeff Roberson 	thread_lock(td);
27319bacd788SJeff Roberson }
27329bacd788SJeff Roberson 
2733ae7a6b38SJeff Roberson /*
2734ae7a6b38SJeff Roberson  * Release a bound thread.
2735ae7a6b38SJeff Roberson  */
27369bacd788SJeff Roberson void
27379bacd788SJeff Roberson sched_unbind(struct thread *td)
27389bacd788SJeff Roberson {
2739e7d50326SJeff Roberson 	struct td_sched *ts;
2740e7d50326SJeff Roberson 
27417b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
27421d7830edSJohn Baldwin 	KASSERT(td == curthread, ("sched_unbind: can only bind curthread"));
274393ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
27446b2f763fSJeff Roberson 	if ((ts->ts_flags & TSF_BOUND) == 0)
27456b2f763fSJeff Roberson 		return;
2746e7d50326SJeff Roberson 	ts->ts_flags &= ~TSF_BOUND;
2747e7d50326SJeff Roberson 	sched_unpin();
27489bacd788SJeff Roberson }
27499bacd788SJeff Roberson 
275035e6168fSJeff Roberson int
2751ebccf1e3SJoseph Koshy sched_is_bound(struct thread *td)
2752ebccf1e3SJoseph Koshy {
27537b20fb19SJeff Roberson 	THREAD_LOCK_ASSERT(td, MA_OWNED);
275493ccd6bfSKonstantin Belousov 	return (td_get_sched(td)->ts_flags & TSF_BOUND);
2755ebccf1e3SJoseph Koshy }
2756ebccf1e3SJoseph Koshy 
2757ae7a6b38SJeff Roberson /*
2758ae7a6b38SJeff Roberson  * Basic yield call.
2759ae7a6b38SJeff Roberson  */
276036ec198bSDavid Xu void
276136ec198bSDavid Xu sched_relinquish(struct thread *td)
276236ec198bSDavid Xu {
27637b20fb19SJeff Roberson 	thread_lock(td);
2764686bcb5cSJeff Roberson 	mi_switch(SW_VOL | SWT_RELINQUISH);
276536ec198bSDavid Xu }
276636ec198bSDavid Xu 
2767ae7a6b38SJeff Roberson /*
2768ae7a6b38SJeff Roberson  * Return the total system load.
2769ae7a6b38SJeff Roberson  */
2770ebccf1e3SJoseph Koshy int
277133916c36SJeff Roberson sched_load(void)
277233916c36SJeff Roberson {
277333916c36SJeff Roberson #ifdef SMP
277433916c36SJeff Roberson 	int total;
277533916c36SJeff Roberson 	int i;
277633916c36SJeff Roberson 
277733916c36SJeff Roberson 	total = 0;
27783aa6d94eSJohn Baldwin 	CPU_FOREACH(i)
277962fa74d9SJeff Roberson 		total += TDQ_CPU(i)->tdq_sysload;
278033916c36SJeff Roberson 	return (total);
278133916c36SJeff Roberson #else
2782d2ad694cSJeff Roberson 	return (TDQ_SELF()->tdq_sysload);
278333916c36SJeff Roberson #endif
278433916c36SJeff Roberson }
278533916c36SJeff Roberson 
278633916c36SJeff Roberson int
278735e6168fSJeff Roberson sched_sizeof_proc(void)
278835e6168fSJeff Roberson {
278935e6168fSJeff Roberson 	return (sizeof(struct proc));
279035e6168fSJeff Roberson }
279135e6168fSJeff Roberson 
279235e6168fSJeff Roberson int
279335e6168fSJeff Roberson sched_sizeof_thread(void)
279435e6168fSJeff Roberson {
279535e6168fSJeff Roberson 	return (sizeof(struct thread) + sizeof(struct td_sched));
279635e6168fSJeff Roberson }
2797b41f1452SDavid Xu 
279809c8a4ccSJeff Roberson #ifdef SMP
279909c8a4ccSJeff Roberson #define	TDQ_IDLESPIN(tdq)						\
280009c8a4ccSJeff Roberson     ((tdq)->tdq_cg != NULL && ((tdq)->tdq_cg->cg_flags & CG_FLAG_THREAD) == 0)
280109c8a4ccSJeff Roberson #else
280209c8a4ccSJeff Roberson #define	TDQ_IDLESPIN(tdq)	1
280309c8a4ccSJeff Roberson #endif
280409c8a4ccSJeff Roberson 
28057a5e5e2aSJeff Roberson /*
28067a5e5e2aSJeff Roberson  * The actual idle process.
28077a5e5e2aSJeff Roberson  */
28087a5e5e2aSJeff Roberson void
28097a5e5e2aSJeff Roberson sched_idletd(void *dummy)
28107a5e5e2aSJeff Roberson {
28117a5e5e2aSJeff Roberson 	struct thread *td;
2812ae7a6b38SJeff Roberson 	struct tdq *tdq;
28132c27cb3aSAlexander Motin 	int oldswitchcnt, switchcnt;
28141690c6c1SJeff Roberson 	int i;
28157a5e5e2aSJeff Roberson 
28167b55ab05SJeff Roberson 	mtx_assert(&Giant, MA_NOTOWNED);
28177a5e5e2aSJeff Roberson 	td = curthread;
2818ae7a6b38SJeff Roberson 	tdq = TDQ_SELF();
2819ba96d2d8SJohn Baldwin 	THREAD_NO_SLEEPING();
28202c27cb3aSAlexander Motin 	oldswitchcnt = -1;
2821ae7a6b38SJeff Roberson 	for (;;) {
28222c27cb3aSAlexander Motin 		if (tdq->tdq_load) {
28232c27cb3aSAlexander Motin 			thread_lock(td);
2824686bcb5cSJeff Roberson 			mi_switch(SW_VOL | SWT_IDLE);
28252c27cb3aSAlexander Motin 		}
28262c27cb3aSAlexander Motin 		switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt;
2827ae7a6b38SJeff Roberson #ifdef SMP
282897e9382dSDon Lewis 		if (always_steal || switchcnt != oldswitchcnt) {
28292c27cb3aSAlexander Motin 			oldswitchcnt = switchcnt;
28301690c6c1SJeff Roberson 			if (tdq_idled(tdq) == 0)
28311690c6c1SJeff Roberson 				continue;
28322c27cb3aSAlexander Motin 		}
28331690c6c1SJeff Roberson 		switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt;
28342fd4047fSAlexander Motin #else
28352fd4047fSAlexander Motin 		oldswitchcnt = switchcnt;
28362fd4047fSAlexander Motin #endif
28371690c6c1SJeff Roberson 		/*
28381690c6c1SJeff Roberson 		 * If we're switching very frequently, spin while checking
28391690c6c1SJeff Roberson 		 * for load rather than entering a low power state that
28407b55ab05SJeff Roberson 		 * may require an IPI.  However, don't do any busy
28417b55ab05SJeff Roberson 		 * loops while on SMT machines as this simply steals
28427b55ab05SJeff Roberson 		 * cycles from cores doing useful work.
28431690c6c1SJeff Roberson 		 */
284409c8a4ccSJeff Roberson 		if (TDQ_IDLESPIN(tdq) && switchcnt > sched_idlespinthresh) {
28451690c6c1SJeff Roberson 			for (i = 0; i < sched_idlespins; i++) {
28461690c6c1SJeff Roberson 				if (tdq->tdq_load)
28471690c6c1SJeff Roberson 					break;
28481690c6c1SJeff Roberson 				cpu_spinwait();
28491690c6c1SJeff Roberson 			}
28501690c6c1SJeff Roberson 		}
28512c27cb3aSAlexander Motin 
28522c27cb3aSAlexander Motin 		/* If there was context switch during spin, restart it. */
28536c47aaaeSJeff Roberson 		switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt;
28542c27cb3aSAlexander Motin 		if (tdq->tdq_load != 0 || switchcnt != oldswitchcnt)
28552c27cb3aSAlexander Motin 			continue;
28562c27cb3aSAlexander Motin 
28572c27cb3aSAlexander Motin 		/* Run main MD idle handler. */
28589f9ad565SAlexander Motin 		tdq->tdq_cpu_idle = 1;
285979654969SAlexander Motin 		/*
286079654969SAlexander Motin 		 * Make sure that tdq_cpu_idle update is globally visible
286179654969SAlexander Motin 		 * before cpu_idle() read tdq_load.  The order is important
286279654969SAlexander Motin 		 * to avoid race with tdq_notify.
286379654969SAlexander Motin 		 */
2864e8677f38SKonstantin Belousov 		atomic_thread_fence_seq_cst();
286597e9382dSDon Lewis 		/*
286697e9382dSDon Lewis 		 * Checking for again after the fence picks up assigned
286797e9382dSDon Lewis 		 * threads often enough to make it worthwhile to do so in
286897e9382dSDon Lewis 		 * order to avoid calling cpu_idle().
286997e9382dSDon Lewis 		 */
287097e9382dSDon Lewis 		if (tdq->tdq_load != 0) {
287197e9382dSDon Lewis 			tdq->tdq_cpu_idle = 0;
287297e9382dSDon Lewis 			continue;
287397e9382dSDon Lewis 		}
28742c27cb3aSAlexander Motin 		cpu_idle(switchcnt * 4 > sched_idlespinthresh);
28759f9ad565SAlexander Motin 		tdq->tdq_cpu_idle = 0;
28762c27cb3aSAlexander Motin 
28772c27cb3aSAlexander Motin 		/*
28782c27cb3aSAlexander Motin 		 * Account thread-less hardware interrupts and
28792c27cb3aSAlexander Motin 		 * other wakeup reasons equal to context switches.
28802c27cb3aSAlexander Motin 		 */
28812c27cb3aSAlexander Motin 		switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt;
28822c27cb3aSAlexander Motin 		if (switchcnt != oldswitchcnt)
28832c27cb3aSAlexander Motin 			continue;
28842c27cb3aSAlexander Motin 		tdq->tdq_switchcnt++;
28852c27cb3aSAlexander Motin 		oldswitchcnt++;
2886ae7a6b38SJeff Roberson 	}
2887b41f1452SDavid Xu }
2888e7d50326SJeff Roberson 
28897b20fb19SJeff Roberson /*
28907b20fb19SJeff Roberson  * A CPU is entering for the first time or a thread is exiting.
28917b20fb19SJeff Roberson  */
28927b20fb19SJeff Roberson void
28937b20fb19SJeff Roberson sched_throw(struct thread *td)
28947b20fb19SJeff Roberson {
289559c68134SJeff Roberson 	struct thread *newtd;
2896ae7a6b38SJeff Roberson 	struct tdq *tdq;
2897ae7a6b38SJeff Roberson 
28981eb13fceSJeff Roberson 	if (__predict_false(td == NULL)) {
2899018ff686SJeff Roberson #ifdef SMP
2900018ff686SJeff Roberson 		PCPU_SET(sched, DPCPU_PTR(tdq));
2901018ff686SJeff Roberson #endif
2902ae7a6b38SJeff Roberson 		/* Correct spinlock nesting and acquire the correct lock. */
2903018ff686SJeff Roberson 		tdq = TDQ_SELF();
2904ae7a6b38SJeff Roberson 		TDQ_LOCK(tdq);
29057b20fb19SJeff Roberson 		spinlock_exit();
29067e3a96eaSJohn Baldwin 		PCPU_SET(switchtime, cpu_ticks());
29077e3a96eaSJohn Baldwin 		PCPU_SET(switchticks, ticks);
2908e1504695SJeff Roberson 		PCPU_GET(idlethread)->td_lock = TDQ_LOCKPTR(tdq);
29097b20fb19SJeff Roberson 	} else {
2910018ff686SJeff Roberson 		tdq = TDQ_SELF();
2911686bcb5cSJeff Roberson 		THREAD_LOCK_ASSERT(td, MA_OWNED);
2912686bcb5cSJeff Roberson 		THREAD_LOCKPTR_ASSERT(td, TDQ_LOCKPTR(tdq));
29139727e637SJeff Roberson 		tdq_load_rem(tdq, td);
291492de34dfSJohn Baldwin 		td->td_lastcpu = td->td_oncpu;
291592de34dfSJohn Baldwin 		td->td_oncpu = NOCPU;
29161eb13fceSJeff Roberson 		thread_lock_block(td);
29177b20fb19SJeff Roberson 	}
291859c68134SJeff Roberson 	newtd = choosethread();
2919686bcb5cSJeff Roberson 	spinlock_enter();
2920686bcb5cSJeff Roberson 	TDQ_UNLOCK(tdq);
2921686bcb5cSJeff Roberson 	KASSERT(curthread->td_md.md_spinlock_count == 1,
2922686bcb5cSJeff Roberson 	    ("invalid count %d", curthread->td_md.md_spinlock_count));
29231eb13fceSJeff Roberson 	/* doesn't return */
29241eb13fceSJeff Roberson 	if (__predict_false(td == NULL))
292559c68134SJeff Roberson 		cpu_throw(td, newtd);		/* doesn't return */
29261eb13fceSJeff Roberson 	else
29271eb13fceSJeff Roberson 		cpu_switch(td, newtd, TDQ_LOCKPTR(tdq));
29287b20fb19SJeff Roberson }
29297b20fb19SJeff Roberson 
2930ae7a6b38SJeff Roberson /*
2931ae7a6b38SJeff Roberson  * This is called from fork_exit().  Just acquire the correct locks and
2932ae7a6b38SJeff Roberson  * let fork do the rest of the work.
2933ae7a6b38SJeff Roberson  */
29347b20fb19SJeff Roberson void
2935fe54587fSJeff Roberson sched_fork_exit(struct thread *td)
29367b20fb19SJeff Roberson {
2937ae7a6b38SJeff Roberson 	struct tdq *tdq;
2938ae7a6b38SJeff Roberson 	int cpuid;
29397b20fb19SJeff Roberson 
29407b20fb19SJeff Roberson 	/*
29417b20fb19SJeff Roberson 	 * Finish setting up thread glue so that it begins execution in a
2942ae7a6b38SJeff Roberson 	 * non-nested critical section with the scheduler lock held.
29437b20fb19SJeff Roberson 	 */
2944686bcb5cSJeff Roberson 	KASSERT(curthread->td_md.md_spinlock_count == 1,
2945686bcb5cSJeff Roberson 	    ("invalid count %d", curthread->td_md.md_spinlock_count));
2946ae7a6b38SJeff Roberson 	cpuid = PCPU_GET(cpuid);
2947018ff686SJeff Roberson 	tdq = TDQ_SELF();
2948686bcb5cSJeff Roberson 	TDQ_LOCK(tdq);
2949686bcb5cSJeff Roberson 	spinlock_exit();
2950ae7a6b38SJeff Roberson 	MPASS(td->td_lock == TDQ_LOCKPTR(tdq));
2951ae7a6b38SJeff Roberson 	td->td_oncpu = cpuid;
295228ef18b8SAndriy Gapon 	KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "running",
295328ef18b8SAndriy Gapon 	    "prio:%d", td->td_priority);
295428ef18b8SAndriy Gapon 	SDT_PROBE0(sched, , , on__cpu);
29557b20fb19SJeff Roberson }
29567b20fb19SJeff Roberson 
29578f51ad55SJeff Roberson /*
29588f51ad55SJeff Roberson  * Create on first use to catch odd startup conditons.
29598f51ad55SJeff Roberson  */
29608f51ad55SJeff Roberson char *
29618f51ad55SJeff Roberson sched_tdname(struct thread *td)
29628f51ad55SJeff Roberson {
29638f51ad55SJeff Roberson #ifdef KTR
29648f51ad55SJeff Roberson 	struct td_sched *ts;
29658f51ad55SJeff Roberson 
296693ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
29678f51ad55SJeff Roberson 	if (ts->ts_name[0] == '\0')
29688f51ad55SJeff Roberson 		snprintf(ts->ts_name, sizeof(ts->ts_name),
29698f51ad55SJeff Roberson 		    "%s tid %d", td->td_name, td->td_tid);
29708f51ad55SJeff Roberson 	return (ts->ts_name);
29718f51ad55SJeff Roberson #else
29728f51ad55SJeff Roberson 	return (td->td_name);
29738f51ad55SJeff Roberson #endif
29748f51ad55SJeff Roberson }
29758f51ad55SJeff Roberson 
297644ad5475SJohn Baldwin #ifdef KTR
297744ad5475SJohn Baldwin void
297844ad5475SJohn Baldwin sched_clear_tdname(struct thread *td)
297944ad5475SJohn Baldwin {
298044ad5475SJohn Baldwin 	struct td_sched *ts;
298144ad5475SJohn Baldwin 
298293ccd6bfSKonstantin Belousov 	ts = td_get_sched(td);
298344ad5475SJohn Baldwin 	ts->ts_name[0] = '\0';
298444ad5475SJohn Baldwin }
298544ad5475SJohn Baldwin #endif
298644ad5475SJohn Baldwin 
298707095abfSIvan Voras #ifdef SMP
298807095abfSIvan Voras 
298907095abfSIvan Voras /*
299007095abfSIvan Voras  * Build the CPU topology dump string. Is recursively called to collect
299107095abfSIvan Voras  * the topology tree.
299207095abfSIvan Voras  */
299307095abfSIvan Voras static int
299407095abfSIvan Voras sysctl_kern_sched_topology_spec_internal(struct sbuf *sb, struct cpu_group *cg,
299507095abfSIvan Voras     int indent)
299607095abfSIvan Voras {
299771a19bdcSAttilio Rao 	char cpusetbuf[CPUSETBUFSIZ];
299807095abfSIvan Voras 	int i, first;
299907095abfSIvan Voras 
300007095abfSIvan Voras 	sbuf_printf(sb, "%*s<group level=\"%d\" cache-level=\"%d\">\n", indent,
300119b8a6dbSAndriy Gapon 	    "", 1 + indent / 2, cg->cg_level);
300271a19bdcSAttilio Rao 	sbuf_printf(sb, "%*s <cpu count=\"%d\" mask=\"%s\">", indent, "",
300371a19bdcSAttilio Rao 	    cg->cg_count, cpusetobj_strprint(cpusetbuf, &cg->cg_mask));
300407095abfSIvan Voras 	first = TRUE;
300507095abfSIvan Voras 	for (i = 0; i < MAXCPU; i++) {
300671a19bdcSAttilio Rao 		if (CPU_ISSET(i, &cg->cg_mask)) {
300707095abfSIvan Voras 			if (!first)
300807095abfSIvan Voras 				sbuf_printf(sb, ", ");
300907095abfSIvan Voras 			else
301007095abfSIvan Voras 				first = FALSE;
301107095abfSIvan Voras 			sbuf_printf(sb, "%d", i);
301207095abfSIvan Voras 		}
301307095abfSIvan Voras 	}
301407095abfSIvan Voras 	sbuf_printf(sb, "</cpu>\n");
301507095abfSIvan Voras 
301607095abfSIvan Voras 	if (cg->cg_flags != 0) {
3017611daf7eSIvan Voras 		sbuf_printf(sb, "%*s <flags>", indent, "");
301807095abfSIvan Voras 		if ((cg->cg_flags & CG_FLAG_HTT) != 0)
30195368befbSIvan Voras 			sbuf_printf(sb, "<flag name=\"HTT\">HTT group</flag>");
3020a401f2d0SIvan Voras 		if ((cg->cg_flags & CG_FLAG_THREAD) != 0)
3021a401f2d0SIvan Voras 			sbuf_printf(sb, "<flag name=\"THREAD\">THREAD group</flag>");
30227b55ab05SJeff Roberson 		if ((cg->cg_flags & CG_FLAG_SMT) != 0)
3023a401f2d0SIvan Voras 			sbuf_printf(sb, "<flag name=\"SMT\">SMT group</flag>");
302407095abfSIvan Voras 		sbuf_printf(sb, "</flags>\n");
3025611daf7eSIvan Voras 	}
302607095abfSIvan Voras 
302707095abfSIvan Voras 	if (cg->cg_children > 0) {
302807095abfSIvan Voras 		sbuf_printf(sb, "%*s <children>\n", indent, "");
302907095abfSIvan Voras 		for (i = 0; i < cg->cg_children; i++)
303007095abfSIvan Voras 			sysctl_kern_sched_topology_spec_internal(sb,
303107095abfSIvan Voras 			    &cg->cg_child[i], indent+2);
303207095abfSIvan Voras 		sbuf_printf(sb, "%*s </children>\n", indent, "");
303307095abfSIvan Voras 	}
303407095abfSIvan Voras 	sbuf_printf(sb, "%*s</group>\n", indent, "");
303507095abfSIvan Voras 	return (0);
303607095abfSIvan Voras }
303707095abfSIvan Voras 
303807095abfSIvan Voras /*
303907095abfSIvan Voras  * Sysctl handler for retrieving topology dump. It's a wrapper for
304007095abfSIvan Voras  * the recursive sysctl_kern_smp_topology_spec_internal().
304107095abfSIvan Voras  */
304207095abfSIvan Voras static int
304307095abfSIvan Voras sysctl_kern_sched_topology_spec(SYSCTL_HANDLER_ARGS)
304407095abfSIvan Voras {
304507095abfSIvan Voras 	struct sbuf *topo;
304607095abfSIvan Voras 	int err;
304707095abfSIvan Voras 
304807095abfSIvan Voras 	KASSERT(cpu_top != NULL, ("cpu_top isn't initialized"));
304907095abfSIvan Voras 
3050b97fa22cSIan Lepore 	topo = sbuf_new_for_sysctl(NULL, NULL, 512, req);
305107095abfSIvan Voras 	if (topo == NULL)
305207095abfSIvan Voras 		return (ENOMEM);
305307095abfSIvan Voras 
305407095abfSIvan Voras 	sbuf_printf(topo, "<groups>\n");
305507095abfSIvan Voras 	err = sysctl_kern_sched_topology_spec_internal(topo, cpu_top, 1);
305607095abfSIvan Voras 	sbuf_printf(topo, "</groups>\n");
305707095abfSIvan Voras 
305807095abfSIvan Voras 	if (err == 0) {
3059b97fa22cSIan Lepore 		err = sbuf_finish(topo);
306007095abfSIvan Voras 	}
306107095abfSIvan Voras 	sbuf_delete(topo);
306207095abfSIvan Voras 	return (err);
306307095abfSIvan Voras }
3064b67cc292SDavid Xu 
306507095abfSIvan Voras #endif
306607095abfSIvan Voras 
3067579895dfSAlexander Motin static int
3068579895dfSAlexander Motin sysctl_kern_quantum(SYSCTL_HANDLER_ARGS)
3069579895dfSAlexander Motin {
3070579895dfSAlexander Motin 	int error, new_val, period;
3071579895dfSAlexander Motin 
3072579895dfSAlexander Motin 	period = 1000000 / realstathz;
3073579895dfSAlexander Motin 	new_val = period * sched_slice;
3074579895dfSAlexander Motin 	error = sysctl_handle_int(oidp, &new_val, 0, req);
3075579895dfSAlexander Motin 	if (error != 0 || req->newptr == NULL)
3076579895dfSAlexander Motin 		return (error);
3077579895dfSAlexander Motin 	if (new_val <= 0)
3078579895dfSAlexander Motin 		return (EINVAL);
307937f4e025SAlexander Motin 	sched_slice = imax(1, (new_val + period / 2) / period);
30805e5c3873SJeff Roberson 	sched_slice_min = sched_slice / SCHED_SLICE_MIN_DIVISOR;
308137f4e025SAlexander Motin 	hogticks = imax(1, (2 * hz * sched_slice + realstathz / 2) /
308237f4e025SAlexander Motin 	    realstathz);
3083579895dfSAlexander Motin 	return (0);
3084579895dfSAlexander Motin }
3085579895dfSAlexander Motin 
3086*7029da5cSPawel Biernacki SYSCTL_NODE(_kern, OID_AUTO, sched, CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
3087*7029da5cSPawel Biernacki     "Scheduler");
3088ae7a6b38SJeff Roberson SYSCTL_STRING(_kern_sched, OID_AUTO, name, CTLFLAG_RD, "ULE", 0,
3089e7d50326SJeff Roberson     "Scheduler name");
3090*7029da5cSPawel Biernacki SYSCTL_PROC(_kern_sched, OID_AUTO, quantum,
3091*7029da5cSPawel Biernacki     CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE, NULL, 0,
3092*7029da5cSPawel Biernacki     sysctl_kern_quantum, "I",
309337f4e025SAlexander Motin     "Quantum for timeshare threads in microseconds");
3094ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, slice, CTLFLAG_RW, &sched_slice, 0,
309537f4e025SAlexander Motin     "Quantum for timeshare threads in stathz ticks");
3096ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, interact, CTLFLAG_RW, &sched_interact, 0,
3097ae7a6b38SJeff Roberson     "Interactivity score threshold");
309837f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, preempt_thresh, CTLFLAG_RW,
309937f4e025SAlexander Motin     &preempt_thresh, 0,
310037f4e025SAlexander Motin     "Maximal (lowest) priority for preemption");
310137f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, static_boost, CTLFLAG_RW, &static_boost, 0,
310237f4e025SAlexander Motin     "Assign static kernel priorities to sleeping threads");
310337f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, idlespins, CTLFLAG_RW, &sched_idlespins, 0,
310437f4e025SAlexander Motin     "Number of times idle thread will spin waiting for new work");
310537f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, idlespinthresh, CTLFLAG_RW,
310637f4e025SAlexander Motin     &sched_idlespinthresh, 0,
310737f4e025SAlexander Motin     "Threshold before we will permit idle thread spinning");
31087b8bfa0dSJeff Roberson #ifdef SMP
3109ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, affinity, CTLFLAG_RW, &affinity, 0,
3110ae7a6b38SJeff Roberson     "Number of hz ticks to keep thread affinity for");
3111ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, balance, CTLFLAG_RW, &rebalance, 0,
3112ae7a6b38SJeff Roberson     "Enables the long-term load balancer");
31137fcf154aSJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, balance_interval, CTLFLAG_RW,
31147fcf154aSJeff Roberson     &balance_interval, 0,
3115579895dfSAlexander Motin     "Average period in stathz ticks to run the long-term balancer");
3116ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, steal_idle, CTLFLAG_RW, &steal_idle, 0,
3117ae7a6b38SJeff Roberson     "Attempts to steal work from other cores before idling");
311828994a58SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, steal_thresh, CTLFLAG_RW, &steal_thresh, 0,
311937f4e025SAlexander Motin     "Minimum load on remote CPU before we'll steal");
312097e9382dSDon Lewis SYSCTL_INT(_kern_sched, OID_AUTO, trysteal_limit, CTLFLAG_RW, &trysteal_limit,
312197e9382dSDon Lewis     0, "Topological distance limit for stealing threads in sched_switch()");
312297e9382dSDon Lewis SYSCTL_INT(_kern_sched, OID_AUTO, always_steal, CTLFLAG_RW, &always_steal, 0,
312397e9382dSDon Lewis     "Always run the stealer from the idle thread");
312407095abfSIvan Voras SYSCTL_PROC(_kern_sched, OID_AUTO, topology_spec, CTLTYPE_STRING |
3125c69a1a50SMateusz Guzik     CTLFLAG_MPSAFE | CTLFLAG_RD, NULL, 0, sysctl_kern_sched_topology_spec, "A",
312607095abfSIvan Voras     "XML dump of detected CPU topology");
31277b8bfa0dSJeff Roberson #endif
3128e7d50326SJeff Roberson 
312954b0e65fSJeff Roberson /* ps compat.  All cpu percentages from ULE are weighted. */
3130a5423ea3SJeff Roberson static int ccpu = 0;
3131e7d50326SJeff Roberson SYSCTL_INT(_kern, OID_AUTO, ccpu, CTLFLAG_RD, &ccpu, 0, "");
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