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> 64af29f399SDmitry Chagin #include <sys/umtxvar.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. */ 199e745d729SAlexander Motin #define TDF_PICKCPU TDF_SCHED0 /* Thread should pick new CPU. */ 2003d7f4117SAlexander Motin #define TDF_SLICEEND TDF_SCHED2 /* Thread time slice is over. */ 2013d7f4117SAlexander Motin 20235e6168fSJeff Roberson /* 203e7d50326SJeff Roberson * tickincr: Converts a stathz tick into a hz domain scaled by 204e7d50326SJeff Roberson * the shift factor. Without the shift the error rate 205e7d50326SJeff Roberson * due to rounding would be unacceptably high. 206e7d50326SJeff Roberson * realstathz: stathz is sometimes 0 and run off of hz. 207e7d50326SJeff Roberson * sched_slice: Runtime of each thread before rescheduling. 208ae7a6b38SJeff Roberson * preempt_thresh: Priority threshold for preemption and remote IPIs. 20935e6168fSJeff Roberson */ 2101c119e17SAlexander Motin static u_int __read_mostly sched_interact = SCHED_INTERACT_THRESH; 21161322a0aSAlexander Motin static int __read_mostly tickincr = 8 << SCHED_TICK_SHIFT; 21261322a0aSAlexander Motin static int __read_mostly realstathz = 127; /* reset during boot. */ 21361322a0aSAlexander Motin static int __read_mostly sched_slice = 10; /* reset during boot. */ 21461322a0aSAlexander Motin static int __read_mostly sched_slice_min = 1; /* reset during boot. */ 21502e2d6b4SJeff Roberson #ifdef PREEMPTION 21602e2d6b4SJeff Roberson #ifdef FULL_PREEMPTION 21761322a0aSAlexander Motin static int __read_mostly preempt_thresh = PRI_MAX_IDLE; 21802e2d6b4SJeff Roberson #else 21961322a0aSAlexander Motin static int __read_mostly preempt_thresh = PRI_MIN_KERN; 22002e2d6b4SJeff Roberson #endif 22102e2d6b4SJeff Roberson #else 22261322a0aSAlexander Motin static int __read_mostly preempt_thresh = 0; 22302e2d6b4SJeff Roberson #endif 22461322a0aSAlexander Motin static int __read_mostly static_boost = PRI_MIN_BATCH; 22561322a0aSAlexander Motin static int __read_mostly sched_idlespins = 10000; 22661322a0aSAlexander Motin static int __read_mostly sched_idlespinthresh = -1; 227ae7a6b38SJeff Roberson 22835e6168fSJeff Roberson /* 229ae7a6b38SJeff Roberson * tdq - per processor runqs and statistics. All fields are protected by the 230ae7a6b38SJeff Roberson * tdq_lock. The load and lowpri may be accessed without to avoid excess 231ae7a6b38SJeff Roberson * locking in sched_pickcpu(); 23235e6168fSJeff Roberson */ 233ad1e7d28SJulian Elischer struct tdq { 23439f819e2SJim Harris /* 23539f819e2SJim Harris * Ordered to improve efficiency of cpu_search() and switch(). 23639f819e2SJim Harris * tdq_lock is padded to avoid false sharing with tdq_load and 23739f819e2SJim Harris * tdq_cpu_idle. 23839f819e2SJim Harris */ 2394ceaf45dSAttilio Rao struct mtx_padalign tdq_lock; /* run queue lock. */ 24073daf66fSJeff Roberson struct cpu_group *tdq_cg; /* Pointer to cpu topology. */ 2411690c6c1SJeff Roberson volatile int tdq_load; /* Aggregate load. */ 2429f9ad565SAlexander Motin volatile int tdq_cpu_idle; /* cpu_idle() is active. */ 24373daf66fSJeff Roberson int tdq_sysload; /* For loadavg, !ITHD load. */ 24497e9382dSDon Lewis volatile int tdq_transferable; /* Transferable thread count. */ 24597e9382dSDon Lewis volatile short tdq_switchcnt; /* Switches this tick. */ 24697e9382dSDon Lewis volatile short tdq_oldswitchcnt; /* Switches last tick. */ 24773daf66fSJeff Roberson u_char tdq_lowpri; /* Lowest priority thread. */ 2487789ab32SMark Johnston u_char tdq_owepreempt; /* Remote preemption pending. */ 24973daf66fSJeff Roberson u_char tdq_idx; /* Current insert index. */ 25073daf66fSJeff Roberson u_char tdq_ridx; /* Current removal index. */ 251018ff686SJeff Roberson int tdq_id; /* cpuid. */ 252e7d50326SJeff Roberson struct runq tdq_realtime; /* real-time run queue. */ 253ae7a6b38SJeff Roberson struct runq tdq_timeshare; /* timeshare run queue. */ 254ae7a6b38SJeff Roberson struct runq tdq_idle; /* Queue of IDLE threads. */ 2558f51ad55SJeff Roberson char tdq_name[TDQ_NAME_LEN]; 2568f51ad55SJeff Roberson #ifdef KTR 2578f51ad55SJeff Roberson char tdq_loadname[TDQ_LOADNAME_LEN]; 2588f51ad55SJeff Roberson #endif 259ae7a6b38SJeff Roberson } __aligned(64); 26035e6168fSJeff Roberson 2611690c6c1SJeff Roberson /* Idle thread states and config. */ 2621690c6c1SJeff Roberson #define TDQ_RUNNING 1 2631690c6c1SJeff Roberson #define TDQ_IDLE 2 2647b8bfa0dSJeff Roberson 26580f86c9fSJeff Roberson #ifdef SMP 26661322a0aSAlexander Motin struct cpu_group __read_mostly *cpu_top; /* CPU topology */ 2677b8bfa0dSJeff Roberson 26862fa74d9SJeff Roberson #define SCHED_AFFINITY_DEFAULT (max(1, hz / 1000)) 26962fa74d9SJeff Roberson #define SCHED_AFFINITY(ts, t) ((ts)->ts_rltick > ticks - ((t) * affinity)) 2707b8bfa0dSJeff Roberson 2717b8bfa0dSJeff Roberson /* 2727b8bfa0dSJeff Roberson * Run-time tunables. 2737b8bfa0dSJeff Roberson */ 27428994a58SJeff Roberson static int rebalance = 1; 2757fcf154aSJeff Roberson static int balance_interval = 128; /* Default set in sched_initticks(). */ 27661322a0aSAlexander Motin static int __read_mostly affinity; 27761322a0aSAlexander Motin static int __read_mostly steal_idle = 1; 27861322a0aSAlexander Motin static int __read_mostly steal_thresh = 2; 27961322a0aSAlexander Motin static int __read_mostly always_steal = 0; 28061322a0aSAlexander Motin static int __read_mostly trysteal_limit = 2; 28180f86c9fSJeff Roberson 28235e6168fSJeff Roberson /* 283d2ad694cSJeff Roberson * One thread queue per processor. 28435e6168fSJeff Roberson */ 28561322a0aSAlexander Motin static struct tdq __read_mostly *balance_tdq; 2867fcf154aSJeff Roberson static int balance_ticks; 287018ff686SJeff Roberson DPCPU_DEFINE_STATIC(struct tdq, tdq); 2882bf95012SAndrew Turner DPCPU_DEFINE_STATIC(uint32_t, randomval); 289dc03363dSJeff Roberson 290018ff686SJeff Roberson #define TDQ_SELF() ((struct tdq *)PCPU_GET(sched)) 291018ff686SJeff Roberson #define TDQ_CPU(x) (DPCPU_ID_PTR((x), tdq)) 292018ff686SJeff Roberson #define TDQ_ID(x) ((x)->tdq_id) 29380f86c9fSJeff Roberson #else /* !SMP */ 294ad1e7d28SJulian Elischer static struct tdq tdq_cpu; 295dc03363dSJeff Roberson 29636b36916SJeff Roberson #define TDQ_ID(x) (0) 297ad1e7d28SJulian Elischer #define TDQ_SELF() (&tdq_cpu) 298ad1e7d28SJulian Elischer #define TDQ_CPU(x) (&tdq_cpu) 2990a016a05SJeff Roberson #endif 30035e6168fSJeff Roberson 301ae7a6b38SJeff Roberson #define TDQ_LOCK_ASSERT(t, type) mtx_assert(TDQ_LOCKPTR((t)), (type)) 302ae7a6b38SJeff Roberson #define TDQ_LOCK(t) mtx_lock_spin(TDQ_LOCKPTR((t))) 303ae7a6b38SJeff Roberson #define TDQ_LOCK_FLAGS(t, f) mtx_lock_spin_flags(TDQ_LOCKPTR((t)), (f)) 3048bb173fbSAlexander Motin #define TDQ_TRYLOCK(t) mtx_trylock_spin(TDQ_LOCKPTR((t))) 3058bb173fbSAlexander Motin #define TDQ_TRYLOCK_FLAGS(t, f) mtx_trylock_spin_flags(TDQ_LOCKPTR((t)), (f)) 306ae7a6b38SJeff Roberson #define TDQ_UNLOCK(t) mtx_unlock_spin(TDQ_LOCKPTR((t))) 3074ceaf45dSAttilio Rao #define TDQ_LOCKPTR(t) ((struct mtx *)(&(t)->tdq_lock)) 308ae7a6b38SJeff Roberson 3098460a577SJohn Birrell static void sched_priority(struct thread *); 31021381d1bSJeff Roberson static void sched_thread_priority(struct thread *, u_char); 3118460a577SJohn Birrell static int sched_interact_score(struct thread *); 3128460a577SJohn Birrell static void sched_interact_update(struct thread *); 3138460a577SJohn Birrell static void sched_interact_fork(struct thread *); 3147295465eSAlexander Motin static void sched_pctcpu_update(struct td_sched *, int); 31535e6168fSJeff Roberson 3165d7ef00cSJeff Roberson /* Operations on per processor queues */ 3179727e637SJeff Roberson static struct thread *tdq_choose(struct tdq *); 318018ff686SJeff Roberson static void tdq_setup(struct tdq *, int i); 3199727e637SJeff Roberson static void tdq_load_add(struct tdq *, struct thread *); 3209727e637SJeff Roberson static void tdq_load_rem(struct tdq *, struct thread *); 3219727e637SJeff Roberson static __inline void tdq_runq_add(struct tdq *, struct thread *, int); 3229727e637SJeff Roberson static __inline void tdq_runq_rem(struct tdq *, struct thread *); 323ff256d9cSJeff Roberson static inline int sched_shouldpreempt(int, int, int); 324ad1e7d28SJulian Elischer void tdq_print(int cpu); 325e7d50326SJeff Roberson static void runq_print(struct runq *rq); 326ae7a6b38SJeff Roberson static void tdq_add(struct tdq *, struct thread *, int); 3275d7ef00cSJeff Roberson #ifdef SMP 32897e9382dSDon Lewis static struct thread *tdq_move(struct tdq *, struct tdq *); 329ad1e7d28SJulian Elischer static int tdq_idled(struct tdq *); 33027ee18adSRyan Stone static void tdq_notify(struct tdq *, struct thread *); 3319727e637SJeff Roberson static struct thread *tdq_steal(struct tdq *, int); 3329727e637SJeff Roberson static struct thread *runq_steal(struct runq *, int); 3339727e637SJeff Roberson static int sched_pickcpu(struct thread *, int); 3347fcf154aSJeff Roberson static void sched_balance(void); 33562fa74d9SJeff Roberson static int sched_balance_pair(struct tdq *, struct tdq *); 3369727e637SJeff Roberson static inline struct tdq *sched_setcpu(struct thread *, int, int); 337ae7a6b38SJeff Roberson static inline void thread_unblock_switch(struct thread *, struct mtx *); 33807095abfSIvan Voras static int sysctl_kern_sched_topology_spec(SYSCTL_HANDLER_ARGS); 33907095abfSIvan Voras static int sysctl_kern_sched_topology_spec_internal(struct sbuf *sb, 34007095abfSIvan Voras struct cpu_group *cg, int indent); 3415d7ef00cSJeff Roberson #endif 3425d7ef00cSJeff Roberson 343e7d50326SJeff Roberson static void sched_setup(void *dummy); 344237fdd78SRobert Watson SYSINIT(sched_setup, SI_SUB_RUN_QUEUE, SI_ORDER_FIRST, sched_setup, NULL); 345e7d50326SJeff Roberson 346e7d50326SJeff Roberson static void sched_initticks(void *dummy); 347237fdd78SRobert Watson SYSINIT(sched_initticks, SI_SUB_CLOCKS, SI_ORDER_THIRD, sched_initticks, 348237fdd78SRobert Watson NULL); 349e7d50326SJeff Roberson 350b3e9e682SRyan Stone SDT_PROVIDER_DEFINE(sched); 351b3e9e682SRyan Stone 352d9fae5abSAndriy Gapon SDT_PROBE_DEFINE3(sched, , , change__pri, "struct thread *", 353b3e9e682SRyan Stone "struct proc *", "uint8_t"); 354d9fae5abSAndriy Gapon SDT_PROBE_DEFINE3(sched, , , dequeue, "struct thread *", 355b3e9e682SRyan Stone "struct proc *", "void *"); 356d9fae5abSAndriy Gapon SDT_PROBE_DEFINE4(sched, , , enqueue, "struct thread *", 357b3e9e682SRyan Stone "struct proc *", "void *", "int"); 358d9fae5abSAndriy Gapon SDT_PROBE_DEFINE4(sched, , , lend__pri, "struct thread *", 359b3e9e682SRyan Stone "struct proc *", "uint8_t", "struct thread *"); 360d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , load__change, "int", "int"); 361d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , off__cpu, "struct thread *", 362b3e9e682SRyan Stone "struct proc *"); 363d9fae5abSAndriy Gapon SDT_PROBE_DEFINE(sched, , , on__cpu); 364d9fae5abSAndriy Gapon SDT_PROBE_DEFINE(sched, , , remain__cpu); 365d9fae5abSAndriy Gapon SDT_PROBE_DEFINE2(sched, , , surrender, "struct thread *", 366b3e9e682SRyan Stone "struct proc *"); 367b3e9e682SRyan Stone 3680567b6ccSWarner Losh /* 369ae7a6b38SJeff Roberson * Print the threads waiting on a run-queue. 370ae7a6b38SJeff Roberson */ 371e7d50326SJeff Roberson static void 372e7d50326SJeff Roberson runq_print(struct runq *rq) 373e7d50326SJeff Roberson { 374e7d50326SJeff Roberson struct rqhead *rqh; 3759727e637SJeff Roberson struct thread *td; 376e7d50326SJeff Roberson int pri; 377e7d50326SJeff Roberson int j; 378e7d50326SJeff Roberson int i; 379e7d50326SJeff Roberson 380e7d50326SJeff Roberson for (i = 0; i < RQB_LEN; i++) { 381e7d50326SJeff Roberson printf("\t\trunq bits %d 0x%zx\n", 382e7d50326SJeff Roberson i, rq->rq_status.rqb_bits[i]); 383e7d50326SJeff Roberson for (j = 0; j < RQB_BPW; j++) 384e7d50326SJeff Roberson if (rq->rq_status.rqb_bits[i] & (1ul << j)) { 385e7d50326SJeff Roberson pri = j + (i << RQB_L2BPW); 386e7d50326SJeff Roberson rqh = &rq->rq_queues[pri]; 3879727e637SJeff Roberson TAILQ_FOREACH(td, rqh, td_runq) { 388e7d50326SJeff Roberson printf("\t\t\ttd %p(%s) priority %d rqindex %d pri %d\n", 3899727e637SJeff Roberson td, td->td_name, td->td_priority, 3909727e637SJeff Roberson td->td_rqindex, pri); 391e7d50326SJeff Roberson } 392e7d50326SJeff Roberson } 393e7d50326SJeff Roberson } 394e7d50326SJeff Roberson } 395e7d50326SJeff Roberson 396ae7a6b38SJeff Roberson /* 397ae7a6b38SJeff Roberson * Print the status of a per-cpu thread queue. Should be a ddb show cmd. 398ae7a6b38SJeff Roberson */ 39915dc847eSJeff Roberson void 400ad1e7d28SJulian Elischer tdq_print(int cpu) 40115dc847eSJeff Roberson { 402ad1e7d28SJulian Elischer struct tdq *tdq; 40315dc847eSJeff Roberson 404ad1e7d28SJulian Elischer tdq = TDQ_CPU(cpu); 40515dc847eSJeff Roberson 406c47f202bSJeff Roberson printf("tdq %d:\n", TDQ_ID(tdq)); 40762fa74d9SJeff Roberson printf("\tlock %p\n", TDQ_LOCKPTR(tdq)); 40862fa74d9SJeff Roberson printf("\tLock name: %s\n", tdq->tdq_name); 409d2ad694cSJeff Roberson printf("\tload: %d\n", tdq->tdq_load); 4101690c6c1SJeff Roberson printf("\tswitch cnt: %d\n", tdq->tdq_switchcnt); 4111690c6c1SJeff Roberson printf("\told switch cnt: %d\n", tdq->tdq_oldswitchcnt); 412e7d50326SJeff Roberson printf("\ttimeshare idx: %d\n", tdq->tdq_idx); 4133f872f85SJeff Roberson printf("\ttimeshare ridx: %d\n", tdq->tdq_ridx); 4141690c6c1SJeff Roberson printf("\tload transferable: %d\n", tdq->tdq_transferable); 4151690c6c1SJeff Roberson printf("\tlowest priority: %d\n", tdq->tdq_lowpri); 416e7d50326SJeff Roberson printf("\trealtime runq:\n"); 417e7d50326SJeff Roberson runq_print(&tdq->tdq_realtime); 418e7d50326SJeff Roberson printf("\ttimeshare runq:\n"); 419e7d50326SJeff Roberson runq_print(&tdq->tdq_timeshare); 420e7d50326SJeff Roberson printf("\tidle runq:\n"); 421e7d50326SJeff Roberson runq_print(&tdq->tdq_idle); 42215dc847eSJeff Roberson } 42315dc847eSJeff Roberson 424ff256d9cSJeff Roberson static inline int 425ff256d9cSJeff Roberson sched_shouldpreempt(int pri, int cpri, int remote) 426ff256d9cSJeff Roberson { 427ff256d9cSJeff Roberson /* 428ff256d9cSJeff Roberson * If the new priority is not better than the current priority there is 429ff256d9cSJeff Roberson * nothing to do. 430ff256d9cSJeff Roberson */ 431ff256d9cSJeff Roberson if (pri >= cpri) 432ff256d9cSJeff Roberson return (0); 433ff256d9cSJeff Roberson /* 434ff256d9cSJeff Roberson * Always preempt idle. 435ff256d9cSJeff Roberson */ 436ff256d9cSJeff Roberson if (cpri >= PRI_MIN_IDLE) 437ff256d9cSJeff Roberson return (1); 438ff256d9cSJeff Roberson /* 439ff256d9cSJeff Roberson * If preemption is disabled don't preempt others. 440ff256d9cSJeff Roberson */ 441ff256d9cSJeff Roberson if (preempt_thresh == 0) 442ff256d9cSJeff Roberson return (0); 443ff256d9cSJeff Roberson /* 444ff256d9cSJeff Roberson * Preempt if we exceed the threshold. 445ff256d9cSJeff Roberson */ 446ff256d9cSJeff Roberson if (pri <= preempt_thresh) 447ff256d9cSJeff Roberson return (1); 448ff256d9cSJeff Roberson /* 44912d56c0fSJohn Baldwin * If we're interactive or better and there is non-interactive 45012d56c0fSJohn Baldwin * or worse running preempt only remote processors. 451ff256d9cSJeff Roberson */ 45212d56c0fSJohn Baldwin if (remote && pri <= PRI_MAX_INTERACT && cpri > PRI_MAX_INTERACT) 453ff256d9cSJeff Roberson return (1); 454ff256d9cSJeff Roberson return (0); 455ff256d9cSJeff Roberson } 456ff256d9cSJeff Roberson 457ae7a6b38SJeff Roberson /* 458ae7a6b38SJeff Roberson * Add a thread to the actual run-queue. Keeps transferable counts up to 459ae7a6b38SJeff Roberson * date with what is actually on the run-queue. Selects the correct 460ae7a6b38SJeff Roberson * queue position for timeshare threads. 461ae7a6b38SJeff Roberson */ 462155b9987SJeff Roberson static __inline void 4639727e637SJeff Roberson tdq_runq_add(struct tdq *tdq, struct thread *td, int flags) 464155b9987SJeff Roberson { 4659727e637SJeff Roberson struct td_sched *ts; 466c143ac21SJeff Roberson u_char pri; 467c143ac21SJeff Roberson 468ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 46961a74c5cSJeff Roberson THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED); 47073daf66fSJeff Roberson 4719727e637SJeff Roberson pri = td->td_priority; 47293ccd6bfSKonstantin Belousov ts = td_get_sched(td); 4739727e637SJeff Roberson TD_SET_RUNQ(td); 4749727e637SJeff Roberson if (THREAD_CAN_MIGRATE(td)) { 475d2ad694cSJeff Roberson tdq->tdq_transferable++; 476ad1e7d28SJulian Elischer ts->ts_flags |= TSF_XFERABLE; 47780f86c9fSJeff Roberson } 47812d56c0fSJohn Baldwin if (pri < PRI_MIN_BATCH) { 479c143ac21SJeff Roberson ts->ts_runq = &tdq->tdq_realtime; 48012d56c0fSJohn Baldwin } else if (pri <= PRI_MAX_BATCH) { 481c143ac21SJeff Roberson ts->ts_runq = &tdq->tdq_timeshare; 48212d56c0fSJohn Baldwin KASSERT(pri <= PRI_MAX_BATCH && pri >= PRI_MIN_BATCH, 483e7d50326SJeff Roberson ("Invalid priority %d on timeshare runq", pri)); 484e7d50326SJeff Roberson /* 485e7d50326SJeff Roberson * This queue contains only priorities between MIN and MAX 486e7d50326SJeff Roberson * realtime. Use the whole queue to represent these values. 487e7d50326SJeff Roberson */ 488c47f202bSJeff Roberson if ((flags & (SRQ_BORROWING|SRQ_PREEMPTED)) == 0) { 48916705791SAndriy Gapon pri = RQ_NQS * (pri - PRI_MIN_BATCH) / PRI_BATCH_RANGE; 490e7d50326SJeff Roberson pri = (pri + tdq->tdq_idx) % RQ_NQS; 4913f872f85SJeff Roberson /* 4923f872f85SJeff Roberson * This effectively shortens the queue by one so we 4933f872f85SJeff Roberson * can have a one slot difference between idx and 4943f872f85SJeff Roberson * ridx while we wait for threads to drain. 4953f872f85SJeff Roberson */ 4963f872f85SJeff Roberson if (tdq->tdq_ridx != tdq->tdq_idx && 4973f872f85SJeff Roberson pri == tdq->tdq_ridx) 4984499aff6SJeff Roberson pri = (unsigned char)(pri - 1) % RQ_NQS; 499e7d50326SJeff Roberson } else 5003f872f85SJeff Roberson pri = tdq->tdq_ridx; 5019727e637SJeff Roberson runq_add_pri(ts->ts_runq, td, pri, flags); 502c143ac21SJeff Roberson return; 503e7d50326SJeff Roberson } else 50473daf66fSJeff Roberson ts->ts_runq = &tdq->tdq_idle; 5059727e637SJeff Roberson runq_add(ts->ts_runq, td, flags); 50673daf66fSJeff Roberson } 50773daf66fSJeff Roberson 50873daf66fSJeff Roberson /* 509ae7a6b38SJeff Roberson * Remove a thread from a run-queue. This typically happens when a thread 510ae7a6b38SJeff Roberson * is selected to run. Running threads are not on the queue and the 511ae7a6b38SJeff Roberson * transferable count does not reflect them. 512ae7a6b38SJeff Roberson */ 513155b9987SJeff Roberson static __inline void 5149727e637SJeff Roberson tdq_runq_rem(struct tdq *tdq, struct thread *td) 515155b9987SJeff Roberson { 5169727e637SJeff Roberson struct td_sched *ts; 5179727e637SJeff Roberson 51893ccd6bfSKonstantin Belousov ts = td_get_sched(td); 519ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 52061a74c5cSJeff Roberson THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED); 521ae7a6b38SJeff Roberson KASSERT(ts->ts_runq != NULL, 5229727e637SJeff Roberson ("tdq_runq_remove: thread %p null ts_runq", td)); 523ad1e7d28SJulian Elischer if (ts->ts_flags & TSF_XFERABLE) { 524d2ad694cSJeff Roberson tdq->tdq_transferable--; 525ad1e7d28SJulian Elischer ts->ts_flags &= ~TSF_XFERABLE; 52680f86c9fSJeff Roberson } 5273f872f85SJeff Roberson if (ts->ts_runq == &tdq->tdq_timeshare) { 5283f872f85SJeff Roberson if (tdq->tdq_idx != tdq->tdq_ridx) 5299727e637SJeff Roberson runq_remove_idx(ts->ts_runq, td, &tdq->tdq_ridx); 530e7d50326SJeff Roberson else 5319727e637SJeff Roberson runq_remove_idx(ts->ts_runq, td, NULL); 5323f872f85SJeff Roberson } else 5339727e637SJeff Roberson runq_remove(ts->ts_runq, td); 534155b9987SJeff Roberson } 535155b9987SJeff Roberson 536ae7a6b38SJeff Roberson /* 537ae7a6b38SJeff Roberson * Load is maintained for all threads RUNNING and ON_RUNQ. Add the load 538ae7a6b38SJeff Roberson * for this thread to the referenced thread queue. 539ae7a6b38SJeff Roberson */ 540a8949de2SJeff Roberson static void 5419727e637SJeff Roberson tdq_load_add(struct tdq *tdq, struct thread *td) 5425d7ef00cSJeff Roberson { 543ae7a6b38SJeff Roberson 544ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 54561a74c5cSJeff Roberson THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED); 54603d17db7SJeff Roberson 547d2ad694cSJeff Roberson tdq->tdq_load++; 5481b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 549d2ad694cSJeff Roberson tdq->tdq_sysload++; 5508f51ad55SJeff Roberson KTR_COUNTER0(KTR_SCHED, "load", tdq->tdq_loadname, tdq->tdq_load); 551d9fae5abSAndriy Gapon SDT_PROBE2(sched, , , load__change, (int)TDQ_ID(tdq), tdq->tdq_load); 5525d7ef00cSJeff Roberson } 55315dc847eSJeff Roberson 554ae7a6b38SJeff Roberson /* 555ae7a6b38SJeff Roberson * Remove the load from a thread that is transitioning to a sleep state or 556ae7a6b38SJeff Roberson * exiting. 557ae7a6b38SJeff Roberson */ 558a8949de2SJeff Roberson static void 5599727e637SJeff Roberson tdq_load_rem(struct tdq *tdq, struct thread *td) 5605d7ef00cSJeff Roberson { 561ae7a6b38SJeff Roberson 562ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 56361a74c5cSJeff Roberson THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED); 564ae7a6b38SJeff Roberson KASSERT(tdq->tdq_load != 0, 565c47f202bSJeff Roberson ("tdq_load_rem: Removing with 0 load on queue %d", TDQ_ID(tdq))); 56603d17db7SJeff Roberson 567d2ad694cSJeff Roberson tdq->tdq_load--; 5681b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 56903d17db7SJeff Roberson tdq->tdq_sysload--; 5708f51ad55SJeff Roberson KTR_COUNTER0(KTR_SCHED, "load", tdq->tdq_loadname, tdq->tdq_load); 571d9fae5abSAndriy Gapon SDT_PROBE2(sched, , , load__change, (int)TDQ_ID(tdq), tdq->tdq_load); 57215dc847eSJeff Roberson } 57315dc847eSJeff Roberson 574356500a3SJeff Roberson /* 5755e5c3873SJeff Roberson * Bound timeshare latency by decreasing slice size as load increases. We 5765e5c3873SJeff Roberson * consider the maximum latency as the sum of the threads waiting to run 5775e5c3873SJeff Roberson * aside from curthread and target no more than sched_slice latency but 5785e5c3873SJeff Roberson * no less than sched_slice_min runtime. 5795e5c3873SJeff Roberson */ 5805e5c3873SJeff Roberson static inline int 5815e5c3873SJeff Roberson tdq_slice(struct tdq *tdq) 5825e5c3873SJeff Roberson { 5835e5c3873SJeff Roberson int load; 5845e5c3873SJeff Roberson 5855e5c3873SJeff Roberson /* 5865e5c3873SJeff Roberson * It is safe to use sys_load here because this is called from 5875e5c3873SJeff Roberson * contexts where timeshare threads are running and so there 5885e5c3873SJeff Roberson * cannot be higher priority load in the system. 5895e5c3873SJeff Roberson */ 5905e5c3873SJeff Roberson load = tdq->tdq_sysload - 1; 5915e5c3873SJeff Roberson if (load >= SCHED_SLICE_MIN_DIVISOR) 5925e5c3873SJeff Roberson return (sched_slice_min); 5935e5c3873SJeff Roberson if (load <= 1) 5945e5c3873SJeff Roberson return (sched_slice); 5955e5c3873SJeff Roberson return (sched_slice / load); 5965e5c3873SJeff Roberson } 5975e5c3873SJeff Roberson 5985e5c3873SJeff Roberson /* 59962fa74d9SJeff Roberson * Set lowpri to its exact value by searching the run-queue and 60062fa74d9SJeff Roberson * evaluating curthread. curthread may be passed as an optimization. 601356500a3SJeff Roberson */ 60222bf7d9aSJeff Roberson static void 60362fa74d9SJeff Roberson tdq_setlowpri(struct tdq *tdq, struct thread *ctd) 60462fa74d9SJeff Roberson { 60562fa74d9SJeff Roberson struct thread *td; 60662fa74d9SJeff Roberson 60762fa74d9SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 60862fa74d9SJeff Roberson if (ctd == NULL) 60962fa74d9SJeff Roberson ctd = pcpu_find(TDQ_ID(tdq))->pc_curthread; 6109727e637SJeff Roberson td = tdq_choose(tdq); 6119727e637SJeff Roberson if (td == NULL || td->td_priority > ctd->td_priority) 61262fa74d9SJeff Roberson tdq->tdq_lowpri = ctd->td_priority; 61362fa74d9SJeff Roberson else 61462fa74d9SJeff Roberson tdq->tdq_lowpri = td->td_priority; 61562fa74d9SJeff Roberson } 61662fa74d9SJeff Roberson 61762fa74d9SJeff Roberson #ifdef SMP 6189129dd59SPedro F. Giffuni /* 6199129dd59SPedro F. Giffuni * We need some randomness. Implement a classic Linear Congruential 6209129dd59SPedro F. Giffuni * Generator X_{n+1}=(aX_n+c) mod m. These values are optimized for 6219129dd59SPedro F. Giffuni * m = 2^32, a = 69069 and c = 5. We only return the upper 16 bits 6229129dd59SPedro F. Giffuni * of the random state (in the low bits of our answer) to keep 6239129dd59SPedro F. Giffuni * the maximum randomness. 6249129dd59SPedro F. Giffuni */ 6259129dd59SPedro F. Giffuni static uint32_t 6269129dd59SPedro F. Giffuni sched_random(void) 6279129dd59SPedro F. Giffuni { 6289129dd59SPedro F. Giffuni uint32_t *rndptr; 6299129dd59SPedro F. Giffuni 6309129dd59SPedro F. Giffuni rndptr = DPCPU_PTR(randomval); 6319129dd59SPedro F. Giffuni *rndptr = *rndptr * 69069 + 5; 6329129dd59SPedro F. Giffuni 6339129dd59SPedro F. Giffuni return (*rndptr >> 16); 6349129dd59SPedro F. Giffuni } 6359129dd59SPedro F. Giffuni 63662fa74d9SJeff Roberson struct cpu_search { 637e745d729SAlexander Motin cpuset_t *cs_mask; /* The mask of allowed CPUs to choose from. */ 638e745d729SAlexander Motin int cs_prefer; /* Prefer this CPU and groups including it. */ 639e745d729SAlexander Motin int cs_running; /* The thread is now running at cs_prefer. */ 64036acfc65SAlexander Motin int cs_pri; /* Min priority for low. */ 64108063e9fSAlexander Motin int cs_load; /* Max load for low, min load for high. */ 64208063e9fSAlexander Motin int cs_trans; /* Min transferable load for high. */ 643aefe0a8cSAlexander Motin }; 644aefe0a8cSAlexander Motin 645aefe0a8cSAlexander Motin struct cpu_search_res { 64608063e9fSAlexander Motin int csr_cpu; /* The best CPU found. */ 64708063e9fSAlexander Motin int csr_load; /* The load of cs_cpu. */ 64862fa74d9SJeff Roberson }; 64962fa74d9SJeff Roberson 65062fa74d9SJeff Roberson /* 651aefe0a8cSAlexander Motin * Search the tree of cpu_groups for the lowest or highest loaded CPU. 652aefe0a8cSAlexander Motin * These routines actually compare the load on all paths through the tree 653aefe0a8cSAlexander Motin * and find the least loaded cpu on the least loaded path, which may differ 654aefe0a8cSAlexander Motin * from the least loaded cpu in the system. This balances work among caches 655aefe0a8cSAlexander Motin * and buses. 65662fa74d9SJeff Roberson */ 657aefe0a8cSAlexander Motin static int 658aefe0a8cSAlexander Motin cpu_search_lowest(const struct cpu_group *cg, const struct cpu_search *s, 659aefe0a8cSAlexander Motin struct cpu_search_res *r) 66062fa74d9SJeff Roberson { 661aefe0a8cSAlexander Motin struct cpu_search_res lr; 66236acfc65SAlexander Motin struct tdq *tdq; 663e745d729SAlexander Motin int c, bload, l, load, p, total; 66462fa74d9SJeff Roberson 66536acfc65SAlexander Motin total = 0; 666aefe0a8cSAlexander Motin bload = INT_MAX; 66708063e9fSAlexander Motin r->csr_cpu = -1; 66836acfc65SAlexander Motin 669aefe0a8cSAlexander Motin /* Loop through children CPU groups if there are any. */ 670aefe0a8cSAlexander Motin if (cg->cg_children > 0) { 671aefe0a8cSAlexander Motin for (c = cg->cg_children - 1; c >= 0; c--) { 672aefe0a8cSAlexander Motin load = cpu_search_lowest(&cg->cg_child[c], s, &lr); 67336acfc65SAlexander Motin total += load; 674e745d729SAlexander Motin 675e745d729SAlexander Motin /* 676e745d729SAlexander Motin * When balancing do not prefer SMT groups with load >1. 677e745d729SAlexander Motin * It allows round-robin between SMT groups with equal 678e745d729SAlexander Motin * load within parent group for more fair scheduling. 679e745d729SAlexander Motin */ 680e745d729SAlexander Motin if (__predict_false(s->cs_running) && 681e745d729SAlexander Motin (cg->cg_child[c].cg_flags & CG_FLAG_THREAD) && 682e745d729SAlexander Motin load >= 128 && (load & 128) != 0) 683e745d729SAlexander Motin load += 128; 684e745d729SAlexander Motin 68508063e9fSAlexander Motin if (lr.csr_cpu >= 0 && (load < bload || 68608063e9fSAlexander Motin (load == bload && lr.csr_load < r->csr_load))) { 687aefe0a8cSAlexander Motin bload = load; 68808063e9fSAlexander Motin r->csr_cpu = lr.csr_cpu; 68908063e9fSAlexander Motin r->csr_load = lr.csr_load; 69036acfc65SAlexander Motin } 69136acfc65SAlexander Motin } 69262fa74d9SJeff Roberson return (total); 69362fa74d9SJeff Roberson } 69462fa74d9SJeff Roberson 695aefe0a8cSAlexander Motin /* Loop through children CPUs otherwise. */ 696aefe0a8cSAlexander Motin for (c = cg->cg_last; c >= cg->cg_first; c--) { 697aefe0a8cSAlexander Motin if (!CPU_ISSET(c, &cg->cg_mask)) 698aefe0a8cSAlexander Motin continue; 699aefe0a8cSAlexander Motin tdq = TDQ_CPU(c); 700aefe0a8cSAlexander Motin l = tdq->tdq_load; 701e745d729SAlexander Motin if (c == s->cs_prefer) { 702e745d729SAlexander Motin if (__predict_false(s->cs_running)) 703e745d729SAlexander Motin l--; 704e745d729SAlexander Motin p = 128; 705e745d729SAlexander Motin } else 706e745d729SAlexander Motin p = 0; 707aefe0a8cSAlexander Motin load = l * 256; 708e745d729SAlexander Motin total += load - p; 709e745d729SAlexander Motin 710e745d729SAlexander Motin /* 711e745d729SAlexander Motin * Check this CPU is acceptable. 712e745d729SAlexander Motin * If the threads is already on the CPU, don't look on the TDQ 713e745d729SAlexander Motin * priority, since it can be the priority of the thread itself. 714e745d729SAlexander Motin */ 71508063e9fSAlexander Motin if (l > s->cs_load || (tdq->tdq_lowpri <= s->cs_pri && 716e745d729SAlexander Motin (!s->cs_running || c != s->cs_prefer)) || 717aefe0a8cSAlexander Motin !CPU_ISSET(c, s->cs_mask)) 718aefe0a8cSAlexander Motin continue; 719e745d729SAlexander Motin 720e745d729SAlexander Motin /* 721e745d729SAlexander Motin * When balancing do not prefer CPUs with load > 1. 722e745d729SAlexander Motin * It allows round-robin between CPUs with equal load 723e745d729SAlexander Motin * within the CPU group for more fair scheduling. 724e745d729SAlexander Motin */ 725e745d729SAlexander Motin if (__predict_false(s->cs_running) && l > 0) 726e745d729SAlexander Motin p = 0; 727e745d729SAlexander Motin 728aefe0a8cSAlexander Motin load -= sched_random() % 128; 729e745d729SAlexander Motin if (bload > load - p) { 730e745d729SAlexander Motin bload = load - p; 73108063e9fSAlexander Motin r->csr_cpu = c; 73208063e9fSAlexander Motin r->csr_load = load; 733aefe0a8cSAlexander Motin } 734aefe0a8cSAlexander Motin } 735aefe0a8cSAlexander Motin return (total); 73662fa74d9SJeff Roberson } 73762fa74d9SJeff Roberson 738aefe0a8cSAlexander Motin static int 739aefe0a8cSAlexander Motin cpu_search_highest(const struct cpu_group *cg, const struct cpu_search *s, 740aefe0a8cSAlexander Motin struct cpu_search_res *r) 74162fa74d9SJeff Roberson { 742aefe0a8cSAlexander Motin struct cpu_search_res lr; 743aefe0a8cSAlexander Motin struct tdq *tdq; 744aefe0a8cSAlexander Motin int c, bload, l, load, total; 745aefe0a8cSAlexander Motin 746aefe0a8cSAlexander Motin total = 0; 747aefe0a8cSAlexander Motin bload = INT_MIN; 74808063e9fSAlexander Motin r->csr_cpu = -1; 749aefe0a8cSAlexander Motin 750aefe0a8cSAlexander Motin /* Loop through children CPU groups if there are any. */ 751aefe0a8cSAlexander Motin if (cg->cg_children > 0) { 752aefe0a8cSAlexander Motin for (c = cg->cg_children - 1; c >= 0; c--) { 753aefe0a8cSAlexander Motin load = cpu_search_highest(&cg->cg_child[c], s, &lr); 754aefe0a8cSAlexander Motin total += load; 75508063e9fSAlexander Motin if (lr.csr_cpu >= 0 && (load > bload || 75608063e9fSAlexander Motin (load == bload && lr.csr_load > r->csr_load))) { 757aefe0a8cSAlexander Motin bload = load; 75808063e9fSAlexander Motin r->csr_cpu = lr.csr_cpu; 75908063e9fSAlexander Motin r->csr_load = lr.csr_load; 760aefe0a8cSAlexander Motin } 761aefe0a8cSAlexander Motin } 762aefe0a8cSAlexander Motin return (total); 76362fa74d9SJeff Roberson } 76462fa74d9SJeff Roberson 765aefe0a8cSAlexander Motin /* Loop through children CPUs otherwise. */ 766aefe0a8cSAlexander Motin for (c = cg->cg_last; c >= cg->cg_first; c--) { 767aefe0a8cSAlexander Motin if (!CPU_ISSET(c, &cg->cg_mask)) 768aefe0a8cSAlexander Motin continue; 769aefe0a8cSAlexander Motin tdq = TDQ_CPU(c); 770aefe0a8cSAlexander Motin l = tdq->tdq_load; 771aefe0a8cSAlexander Motin load = l * 256; 772aefe0a8cSAlexander Motin total += load; 773e745d729SAlexander Motin 774e745d729SAlexander Motin /* 775e745d729SAlexander Motin * Check this CPU is acceptable. 776e745d729SAlexander Motin */ 77708063e9fSAlexander Motin if (l < s->cs_load || (tdq->tdq_transferable < s->cs_trans) || 778aefe0a8cSAlexander Motin !CPU_ISSET(c, s->cs_mask)) 779aefe0a8cSAlexander Motin continue; 780e745d729SAlexander Motin 781ca34553bSAlexander Motin load -= sched_random() % 256; 782aefe0a8cSAlexander Motin if (load > bload) { 783aefe0a8cSAlexander Motin bload = load; 78408063e9fSAlexander Motin r->csr_cpu = c; 785aefe0a8cSAlexander Motin } 786aefe0a8cSAlexander Motin } 78708063e9fSAlexander Motin r->csr_load = bload; 788aefe0a8cSAlexander Motin return (total); 78962fa74d9SJeff Roberson } 79062fa74d9SJeff Roberson 79162fa74d9SJeff Roberson /* 79262fa74d9SJeff Roberson * Find the cpu with the least load via the least loaded path that has a 79362fa74d9SJeff Roberson * lowpri greater than pri pri. A pri of -1 indicates any priority is 79462fa74d9SJeff Roberson * acceptable. 79562fa74d9SJeff Roberson */ 79662fa74d9SJeff Roberson static inline int 797aefe0a8cSAlexander Motin sched_lowest(const struct cpu_group *cg, cpuset_t *mask, int pri, int maxload, 798e745d729SAlexander Motin int prefer, int running) 79962fa74d9SJeff Roberson { 800aefe0a8cSAlexander Motin struct cpu_search s; 801aefe0a8cSAlexander Motin struct cpu_search_res r; 80262fa74d9SJeff Roberson 803aefe0a8cSAlexander Motin s.cs_prefer = prefer; 804e745d729SAlexander Motin s.cs_running = running; 805aefe0a8cSAlexander Motin s.cs_mask = mask; 806aefe0a8cSAlexander Motin s.cs_pri = pri; 80708063e9fSAlexander Motin s.cs_load = maxload; 808aefe0a8cSAlexander Motin cpu_search_lowest(cg, &s, &r); 80908063e9fSAlexander Motin return (r.csr_cpu); 81062fa74d9SJeff Roberson } 81162fa74d9SJeff Roberson 81262fa74d9SJeff Roberson /* 81362fa74d9SJeff Roberson * Find the cpu with the highest load via the highest loaded path. 81462fa74d9SJeff Roberson */ 81562fa74d9SJeff Roberson static inline int 81608063e9fSAlexander Motin sched_highest(const struct cpu_group *cg, cpuset_t *mask, int minload, 81708063e9fSAlexander Motin int mintrans) 81862fa74d9SJeff Roberson { 819aefe0a8cSAlexander Motin struct cpu_search s; 820aefe0a8cSAlexander Motin struct cpu_search_res r; 82162fa74d9SJeff Roberson 822aefe0a8cSAlexander Motin s.cs_mask = mask; 82308063e9fSAlexander Motin s.cs_load = minload; 82408063e9fSAlexander Motin s.cs_trans = mintrans; 825aefe0a8cSAlexander Motin cpu_search_highest(cg, &s, &r); 82608063e9fSAlexander Motin return (r.csr_cpu); 82762fa74d9SJeff Roberson } 82862fa74d9SJeff Roberson 82962fa74d9SJeff Roberson static void 83062fa74d9SJeff Roberson sched_balance_group(struct cpu_group *cg) 83162fa74d9SJeff Roberson { 832018ff686SJeff Roberson struct tdq *tdq; 833e745d729SAlexander Motin struct thread *td; 83436acfc65SAlexander Motin cpuset_t hmask, lmask; 83536acfc65SAlexander Motin int high, low, anylow; 83662fa74d9SJeff Roberson 83736acfc65SAlexander Motin CPU_FILL(&hmask); 83862fa74d9SJeff Roberson for (;;) { 83908063e9fSAlexander Motin high = sched_highest(cg, &hmask, 1, 0); 84036acfc65SAlexander Motin /* Stop if there is no more CPU with transferrable threads. */ 84136acfc65SAlexander Motin if (high == -1) 84262fa74d9SJeff Roberson break; 84336acfc65SAlexander Motin CPU_CLR(high, &hmask); 84436acfc65SAlexander Motin CPU_COPY(&hmask, &lmask); 84536acfc65SAlexander Motin /* Stop if there is no more CPU left for low. */ 84636acfc65SAlexander Motin if (CPU_EMPTY(&lmask)) 84762fa74d9SJeff Roberson break; 848018ff686SJeff Roberson tdq = TDQ_CPU(high); 849e745d729SAlexander Motin if (tdq->tdq_load == 1) { 850e745d729SAlexander Motin /* 851e745d729SAlexander Motin * There is only one running thread. We can't move 852e745d729SAlexander Motin * it from here, so tell it to pick new CPU by itself. 853e745d729SAlexander Motin */ 854e745d729SAlexander Motin TDQ_LOCK(tdq); 855e745d729SAlexander Motin td = pcpu_find(high)->pc_curthread; 856e745d729SAlexander Motin if ((td->td_flags & TDF_IDLETD) == 0 && 857e745d729SAlexander Motin THREAD_CAN_MIGRATE(td)) { 858e745d729SAlexander Motin td->td_flags |= TDF_NEEDRESCHED | TDF_PICKCPU; 859e745d729SAlexander Motin if (high != curcpu) 860e745d729SAlexander Motin ipi_cpu(high, IPI_AST); 861e745d729SAlexander Motin } 862e745d729SAlexander Motin TDQ_UNLOCK(tdq); 863e745d729SAlexander Motin break; 864e745d729SAlexander Motin } 865e745d729SAlexander Motin anylow = 1; 86636acfc65SAlexander Motin nextlow: 867e745d729SAlexander Motin if (tdq->tdq_transferable == 0) 868e745d729SAlexander Motin continue; 869e745d729SAlexander Motin low = sched_lowest(cg, &lmask, -1, tdq->tdq_load - 1, high, 1); 87036acfc65SAlexander Motin /* Stop if we looked well and found no less loaded CPU. */ 87136acfc65SAlexander Motin if (anylow && low == -1) 87236acfc65SAlexander Motin break; 87336acfc65SAlexander Motin /* Go to next high if we found no less loaded CPU. */ 87436acfc65SAlexander Motin if (low == -1) 87536acfc65SAlexander Motin continue; 87636acfc65SAlexander Motin /* Transfer thread from high to low. */ 877018ff686SJeff Roberson if (sched_balance_pair(tdq, TDQ_CPU(low))) { 87836acfc65SAlexander Motin /* CPU that got thread can no longer be a donor. */ 87936acfc65SAlexander Motin CPU_CLR(low, &hmask); 88036acfc65SAlexander Motin } else { 88162fa74d9SJeff Roberson /* 88236acfc65SAlexander Motin * If failed, then there is no threads on high 88336acfc65SAlexander Motin * that can run on this low. Drop low from low 88436acfc65SAlexander Motin * mask and look for different one. 88562fa74d9SJeff Roberson */ 88636acfc65SAlexander Motin CPU_CLR(low, &lmask); 88736acfc65SAlexander Motin anylow = 0; 88836acfc65SAlexander Motin goto nextlow; 88962fa74d9SJeff Roberson } 89036acfc65SAlexander Motin } 89162fa74d9SJeff Roberson } 89262fa74d9SJeff Roberson 89362fa74d9SJeff Roberson static void 89462375ca8SEd Schouten sched_balance(void) 895356500a3SJeff Roberson { 8967fcf154aSJeff Roberson struct tdq *tdq; 897356500a3SJeff Roberson 8980567b6ccSWarner Losh balance_ticks = max(balance_interval / 2, 1) + 899b250ad34SWarner Losh (sched_random() % balance_interval); 9007fcf154aSJeff Roberson tdq = TDQ_SELF(); 9017fcf154aSJeff Roberson TDQ_UNLOCK(tdq); 90262fa74d9SJeff Roberson sched_balance_group(cpu_top); 9037fcf154aSJeff Roberson TDQ_LOCK(tdq); 904cac77d04SJeff Roberson } 90586f8ae96SJeff Roberson 906ae7a6b38SJeff Roberson /* 907ae7a6b38SJeff Roberson * Lock two thread queues using their address to maintain lock order. 908ae7a6b38SJeff Roberson */ 909ae7a6b38SJeff Roberson static void 910ae7a6b38SJeff Roberson tdq_lock_pair(struct tdq *one, struct tdq *two) 911ae7a6b38SJeff Roberson { 912ae7a6b38SJeff Roberson if (one < two) { 913ae7a6b38SJeff Roberson TDQ_LOCK(one); 914ae7a6b38SJeff Roberson TDQ_LOCK_FLAGS(two, MTX_DUPOK); 915ae7a6b38SJeff Roberson } else { 916ae7a6b38SJeff Roberson TDQ_LOCK(two); 917ae7a6b38SJeff Roberson TDQ_LOCK_FLAGS(one, MTX_DUPOK); 918ae7a6b38SJeff Roberson } 919ae7a6b38SJeff Roberson } 920ae7a6b38SJeff Roberson 921ae7a6b38SJeff Roberson /* 9227fcf154aSJeff Roberson * Unlock two thread queues. Order is not important here. 9237fcf154aSJeff Roberson */ 9247fcf154aSJeff Roberson static void 9257fcf154aSJeff Roberson tdq_unlock_pair(struct tdq *one, struct tdq *two) 9267fcf154aSJeff Roberson { 9277fcf154aSJeff Roberson TDQ_UNLOCK(one); 9287fcf154aSJeff Roberson TDQ_UNLOCK(two); 9297fcf154aSJeff Roberson } 9307fcf154aSJeff Roberson 9317fcf154aSJeff Roberson /* 932ae7a6b38SJeff Roberson * Transfer load between two imbalanced thread queues. 933ae7a6b38SJeff Roberson */ 93462fa74d9SJeff Roberson static int 935ad1e7d28SJulian Elischer sched_balance_pair(struct tdq *high, struct tdq *low) 936cac77d04SJeff Roberson { 93797e9382dSDon Lewis struct thread *td; 938880bf8b9SMarius Strobl int cpu; 939cac77d04SJeff Roberson 940ae7a6b38SJeff Roberson tdq_lock_pair(high, low); 94197e9382dSDon Lewis td = NULL; 942155b9987SJeff Roberson /* 94397e9382dSDon Lewis * Transfer a thread from high to low. 944155b9987SJeff Roberson */ 94536acfc65SAlexander Motin if (high->tdq_transferable != 0 && high->tdq_load > low->tdq_load && 94697e9382dSDon Lewis (td = tdq_move(high, low)) != NULL) { 947a5423ea3SJeff Roberson /* 94897e9382dSDon Lewis * In case the target isn't the current cpu notify it of the 94997e9382dSDon Lewis * new load, possibly sending an IPI to force it to reschedule. 950a5423ea3SJeff Roberson */ 951880bf8b9SMarius Strobl cpu = TDQ_ID(low); 952880bf8b9SMarius Strobl if (cpu != PCPU_GET(cpuid)) 95397e9382dSDon Lewis tdq_notify(low, td); 954ae7a6b38SJeff Roberson } 9557fcf154aSJeff Roberson tdq_unlock_pair(high, low); 95697e9382dSDon Lewis return (td != NULL); 957356500a3SJeff Roberson } 958356500a3SJeff Roberson 959ae7a6b38SJeff Roberson /* 960ae7a6b38SJeff Roberson * Move a thread from one thread queue to another. 961ae7a6b38SJeff Roberson */ 96297e9382dSDon Lewis static struct thread * 963ae7a6b38SJeff Roberson tdq_move(struct tdq *from, struct tdq *to) 964356500a3SJeff Roberson { 965ae7a6b38SJeff Roberson struct thread *td; 966ae7a6b38SJeff Roberson int cpu; 967356500a3SJeff Roberson 9687fcf154aSJeff Roberson TDQ_LOCK_ASSERT(from, MA_OWNED); 9697fcf154aSJeff Roberson TDQ_LOCK_ASSERT(to, MA_OWNED); 9707fcf154aSJeff Roberson 971ae7a6b38SJeff Roberson cpu = TDQ_ID(to); 97235dd6d6cSMark Johnston td = tdq_steal(from, cpu); 9739727e637SJeff Roberson if (td == NULL) 97497e9382dSDon Lewis return (NULL); 97561a74c5cSJeff Roberson 976ae7a6b38SJeff Roberson /* 97761a74c5cSJeff Roberson * Although the run queue is locked the thread may be 97861a74c5cSJeff Roberson * blocked. We can not set the lock until it is unblocked. 979ae7a6b38SJeff Roberson */ 98061a74c5cSJeff Roberson thread_lock_block_wait(td); 981ae7a6b38SJeff Roberson sched_rem(td); 98261a74c5cSJeff Roberson THREAD_LOCKPTR_ASSERT(td, TDQ_LOCKPTR(from)); 983ae7a6b38SJeff Roberson td->td_lock = TDQ_LOCKPTR(to); 98461a74c5cSJeff Roberson td_get_sched(td)->ts_cpu = cpu; 985ae7a6b38SJeff Roberson tdq_add(to, td, SRQ_YIELDING); 98661a74c5cSJeff Roberson 98797e9382dSDon Lewis return (td); 988356500a3SJeff Roberson } 98922bf7d9aSJeff Roberson 990ae7a6b38SJeff Roberson /* 991ae7a6b38SJeff Roberson * This tdq has idled. Try to steal a thread from another cpu and switch 992ae7a6b38SJeff Roberson * to it. 993ae7a6b38SJeff Roberson */ 99480f86c9fSJeff Roberson static int 995ad1e7d28SJulian Elischer tdq_idled(struct tdq *tdq) 99622bf7d9aSJeff Roberson { 9972668bb2aSAlexander Motin struct cpu_group *cg, *parent; 998ad1e7d28SJulian Elischer struct tdq *steal; 999c76ee827SJeff Roberson cpuset_t mask; 10002668bb2aSAlexander Motin int cpu, switchcnt, goup; 100180f86c9fSJeff Roberson 100297e9382dSDon Lewis if (smp_started == 0 || steal_idle == 0 || tdq->tdq_cg == NULL) 100388f530ccSJeff Roberson return (1); 1004c76ee827SJeff Roberson CPU_FILL(&mask); 1005c76ee827SJeff Roberson CPU_CLR(PCPU_GET(cpuid), &mask); 100697e9382dSDon Lewis restart: 100797e9382dSDon Lewis switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt; 10082668bb2aSAlexander Motin for (cg = tdq->tdq_cg, goup = 0; ; ) { 100908063e9fSAlexander Motin cpu = sched_highest(cg, &mask, steal_thresh, 1); 101097e9382dSDon Lewis /* 101197e9382dSDon Lewis * We were assigned a thread but not preempted. Returning 101297e9382dSDon Lewis * 0 here will cause our caller to switch to it. 101397e9382dSDon Lewis */ 101497e9382dSDon Lewis if (tdq->tdq_load) 101597e9382dSDon Lewis return (0); 10162668bb2aSAlexander Motin 10172668bb2aSAlexander Motin /* 10182668bb2aSAlexander Motin * We found no CPU to steal from in this group. Escalate to 10192668bb2aSAlexander Motin * the parent and repeat. But if parent has only two children 10202668bb2aSAlexander Motin * groups we can avoid searching this group again by searching 10212668bb2aSAlexander Motin * the other one specifically and then escalating two levels. 10222668bb2aSAlexander Motin */ 102362fa74d9SJeff Roberson if (cpu == -1) { 10242668bb2aSAlexander Motin if (goup) { 102562fa74d9SJeff Roberson cg = cg->cg_parent; 10262668bb2aSAlexander Motin goup = 0; 10272668bb2aSAlexander Motin } 10282668bb2aSAlexander Motin parent = cg->cg_parent; 10292668bb2aSAlexander Motin if (parent == NULL) 103097e9382dSDon Lewis return (1); 10312668bb2aSAlexander Motin if (parent->cg_children == 2) { 10322668bb2aSAlexander Motin if (cg == &parent->cg_child[0]) 10332668bb2aSAlexander Motin cg = &parent->cg_child[1]; 10342668bb2aSAlexander Motin else 10352668bb2aSAlexander Motin cg = &parent->cg_child[0]; 10362668bb2aSAlexander Motin goup = 1; 10372668bb2aSAlexander Motin } else 10382668bb2aSAlexander Motin cg = parent; 103980f86c9fSJeff Roberson continue; 10407b8bfa0dSJeff Roberson } 10417b8bfa0dSJeff Roberson steal = TDQ_CPU(cpu); 104297e9382dSDon Lewis /* 104397e9382dSDon Lewis * The data returned by sched_highest() is stale and 104497e9382dSDon Lewis * the chosen CPU no longer has an eligible thread. 104597e9382dSDon Lewis * 104697e9382dSDon Lewis * Testing this ahead of tdq_lock_pair() only catches 104797e9382dSDon Lewis * this situation about 20% of the time on an 8 core 104897e9382dSDon Lewis * 16 thread Ryzen 7, but it still helps performance. 104997e9382dSDon Lewis */ 105097e9382dSDon Lewis if (steal->tdq_load < steal_thresh || 105197e9382dSDon Lewis steal->tdq_transferable == 0) 105297e9382dSDon Lewis goto restart; 105397e9382dSDon Lewis /* 10548bb173fbSAlexander Motin * Try to lock both queues. If we are assigned a thread while 10558bb173fbSAlexander Motin * waited for the lock, switch to it now instead of stealing. 10568bb173fbSAlexander Motin * If we can't get the lock, then somebody likely got there 10578bb173fbSAlexander Motin * first so continue searching. 105897e9382dSDon Lewis */ 10598bb173fbSAlexander Motin TDQ_LOCK(tdq); 10608bb173fbSAlexander Motin if (tdq->tdq_load > 0) { 10618bb173fbSAlexander Motin mi_switch(SW_VOL | SWT_IDLE); 10628bb173fbSAlexander Motin return (0); 10638bb173fbSAlexander Motin } 10648bb173fbSAlexander Motin if (TDQ_TRYLOCK_FLAGS(steal, MTX_DUPOK) == 0) { 10658bb173fbSAlexander Motin TDQ_UNLOCK(tdq); 10668bb173fbSAlexander Motin CPU_CLR(cpu, &mask); 10678bb173fbSAlexander Motin continue; 10688bb173fbSAlexander Motin } 106997e9382dSDon Lewis /* 107097e9382dSDon Lewis * The data returned by sched_highest() is stale and 107197e9382dSDon Lewis * the chosen CPU no longer has an eligible thread, or 107297e9382dSDon Lewis * we were preempted and the CPU loading info may be out 107397e9382dSDon Lewis * of date. The latter is rare. In either case restart 107497e9382dSDon Lewis * the search. 107597e9382dSDon Lewis */ 107697e9382dSDon Lewis if (steal->tdq_load < steal_thresh || 107797e9382dSDon Lewis steal->tdq_transferable == 0 || 107897e9382dSDon Lewis switchcnt != tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt) { 10797fcf154aSJeff Roberson tdq_unlock_pair(tdq, steal); 108097e9382dSDon Lewis goto restart; 108162fa74d9SJeff Roberson } 108262fa74d9SJeff Roberson /* 108397e9382dSDon Lewis * Steal the thread and switch to it. 108462fa74d9SJeff Roberson */ 108597e9382dSDon Lewis if (tdq_move(steal, tdq) != NULL) 108697e9382dSDon Lewis break; 108797e9382dSDon Lewis /* 108897e9382dSDon Lewis * We failed to acquire a thread even though it looked 108997e9382dSDon Lewis * like one was available. This could be due to affinity 109097e9382dSDon Lewis * restrictions or for other reasons. Loop again after 109197e9382dSDon Lewis * removing this CPU from the set. The restart logic 109297e9382dSDon Lewis * above does not restore this CPU to the set due to the 109397e9382dSDon Lewis * likelyhood of failing here again. 109497e9382dSDon Lewis */ 109597e9382dSDon Lewis CPU_CLR(cpu, &mask); 109662fa74d9SJeff Roberson tdq_unlock_pair(tdq, steal); 109780f86c9fSJeff Roberson } 1098ae7a6b38SJeff Roberson TDQ_UNLOCK(steal); 1099686bcb5cSJeff Roberson mi_switch(SW_VOL | SWT_IDLE); 11007b8bfa0dSJeff Roberson return (0); 110122bf7d9aSJeff Roberson } 110222bf7d9aSJeff Roberson 1103ae7a6b38SJeff Roberson /* 1104ae7a6b38SJeff Roberson * Notify a remote cpu of new work. Sends an IPI if criteria are met. 1105ae7a6b38SJeff Roberson */ 110622bf7d9aSJeff Roberson static void 110727ee18adSRyan Stone tdq_notify(struct tdq *tdq, struct thread *td) 110822bf7d9aSJeff Roberson { 110902f0ff6dSJohn Baldwin struct thread *ctd; 111027ee18adSRyan Stone int pri; 11117b8bfa0dSJeff Roberson int cpu; 111222bf7d9aSJeff Roberson 11137789ab32SMark Johnston if (tdq->tdq_owepreempt) 1114ff256d9cSJeff Roberson return; 111527ee18adSRyan Stone cpu = td_get_sched(td)->ts_cpu; 111627ee18adSRyan Stone pri = td->td_priority; 111702f0ff6dSJohn Baldwin ctd = pcpu_find(cpu)->pc_curthread; 111802f0ff6dSJohn Baldwin if (!sched_shouldpreempt(pri, ctd->td_priority, 1)) 11196b2f763fSJeff Roberson return; 112079654969SAlexander Motin 112179654969SAlexander Motin /* 1122ae9e9b4fSAlexander Motin * Make sure that our caller's earlier update to tdq_load is 1123ae9e9b4fSAlexander Motin * globally visible before we read tdq_cpu_idle. Idle thread 112479654969SAlexander Motin * accesses both of them without locks, and the order is important. 112579654969SAlexander Motin */ 1126e8677f38SKonstantin Belousov atomic_thread_fence_seq_cst(); 112779654969SAlexander Motin 112802f0ff6dSJohn Baldwin if (TD_IS_IDLETHREAD(ctd)) { 11291690c6c1SJeff Roberson /* 11306c47aaaeSJeff Roberson * If the MD code has an idle wakeup routine try that before 11316c47aaaeSJeff Roberson * falling back to IPI. 11326c47aaaeSJeff Roberson */ 11339f9ad565SAlexander Motin if (!tdq->tdq_cpu_idle || cpu_idle_wakeup(cpu)) 11346c47aaaeSJeff Roberson return; 11351690c6c1SJeff Roberson } 11367789ab32SMark Johnston 11377789ab32SMark Johnston /* 11387789ab32SMark Johnston * The run queues have been updated, so any switch on the remote CPU 11397789ab32SMark Johnston * will satisfy the preemption request. 11407789ab32SMark Johnston */ 11417789ab32SMark Johnston tdq->tdq_owepreempt = 1; 1142d9d8d144SJohn Baldwin ipi_cpu(cpu, IPI_PREEMPT); 114322bf7d9aSJeff Roberson } 114422bf7d9aSJeff Roberson 1145ae7a6b38SJeff Roberson /* 1146ae7a6b38SJeff Roberson * Steals load from a timeshare queue. Honors the rotating queue head 1147ae7a6b38SJeff Roberson * index. 1148ae7a6b38SJeff Roberson */ 11499727e637SJeff Roberson static struct thread * 115062fa74d9SJeff Roberson runq_steal_from(struct runq *rq, int cpu, u_char start) 1151ae7a6b38SJeff Roberson { 1152ae7a6b38SJeff Roberson struct rqbits *rqb; 1153ae7a6b38SJeff Roberson struct rqhead *rqh; 115436acfc65SAlexander Motin struct thread *td, *first; 1155ae7a6b38SJeff Roberson int bit; 1156ae7a6b38SJeff Roberson int i; 1157ae7a6b38SJeff Roberson 1158ae7a6b38SJeff Roberson rqb = &rq->rq_status; 1159ae7a6b38SJeff Roberson bit = start & (RQB_BPW -1); 116036acfc65SAlexander Motin first = NULL; 1161ae7a6b38SJeff Roberson again: 1162ae7a6b38SJeff Roberson for (i = RQB_WORD(start); i < RQB_LEN; bit = 0, i++) { 1163ae7a6b38SJeff Roberson if (rqb->rqb_bits[i] == 0) 1164ae7a6b38SJeff Roberson continue; 11658bc713f6SJeff Roberson if (bit == 0) 11668bc713f6SJeff Roberson bit = RQB_FFS(rqb->rqb_bits[i]); 11678bc713f6SJeff Roberson for (; bit < RQB_BPW; bit++) { 11688bc713f6SJeff Roberson if ((rqb->rqb_bits[i] & (1ul << bit)) == 0) 1169ae7a6b38SJeff Roberson continue; 11708bc713f6SJeff Roberson rqh = &rq->rq_queues[bit + (i << RQB_L2BPW)]; 11719727e637SJeff Roberson TAILQ_FOREACH(td, rqh, td_runq) { 1172bd84094aSAlexander Motin if (first) { 1173bd84094aSAlexander Motin if (THREAD_CAN_MIGRATE(td) && 11749727e637SJeff Roberson THREAD_CAN_SCHED(td, cpu)) 11759727e637SJeff Roberson return (td); 1176bd84094aSAlexander Motin } else 117736acfc65SAlexander Motin first = td; 1178ae7a6b38SJeff Roberson } 1179ae7a6b38SJeff Roberson } 11808bc713f6SJeff Roberson } 1181ae7a6b38SJeff Roberson if (start != 0) { 1182ae7a6b38SJeff Roberson start = 0; 1183ae7a6b38SJeff Roberson goto again; 1184ae7a6b38SJeff Roberson } 1185ae7a6b38SJeff Roberson 118636acfc65SAlexander Motin if (first && THREAD_CAN_MIGRATE(first) && 118736acfc65SAlexander Motin THREAD_CAN_SCHED(first, cpu)) 118836acfc65SAlexander Motin return (first); 1189ae7a6b38SJeff Roberson return (NULL); 1190ae7a6b38SJeff Roberson } 1191ae7a6b38SJeff Roberson 1192ae7a6b38SJeff Roberson /* 1193ae7a6b38SJeff Roberson * Steals load from a standard linear queue. 1194ae7a6b38SJeff Roberson */ 11959727e637SJeff Roberson static struct thread * 119662fa74d9SJeff Roberson runq_steal(struct runq *rq, int cpu) 119722bf7d9aSJeff Roberson { 119822bf7d9aSJeff Roberson struct rqhead *rqh; 119922bf7d9aSJeff Roberson struct rqbits *rqb; 12009727e637SJeff Roberson struct thread *td; 120122bf7d9aSJeff Roberson int word; 120222bf7d9aSJeff Roberson int bit; 120322bf7d9aSJeff Roberson 120422bf7d9aSJeff Roberson rqb = &rq->rq_status; 120522bf7d9aSJeff Roberson for (word = 0; word < RQB_LEN; word++) { 120622bf7d9aSJeff Roberson if (rqb->rqb_bits[word] == 0) 120722bf7d9aSJeff Roberson continue; 120822bf7d9aSJeff Roberson for (bit = 0; bit < RQB_BPW; bit++) { 1209a2640c9bSPeter Wemm if ((rqb->rqb_bits[word] & (1ul << bit)) == 0) 121022bf7d9aSJeff Roberson continue; 121122bf7d9aSJeff Roberson rqh = &rq->rq_queues[bit + (word << RQB_L2BPW)]; 12129727e637SJeff Roberson TAILQ_FOREACH(td, rqh, td_runq) 12139727e637SJeff Roberson if (THREAD_CAN_MIGRATE(td) && 12149727e637SJeff Roberson THREAD_CAN_SCHED(td, cpu)) 12159727e637SJeff Roberson return (td); 121622bf7d9aSJeff Roberson } 121722bf7d9aSJeff Roberson } 121822bf7d9aSJeff Roberson return (NULL); 121922bf7d9aSJeff Roberson } 122022bf7d9aSJeff Roberson 1221ae7a6b38SJeff Roberson /* 1222ae7a6b38SJeff Roberson * Attempt to steal a thread in priority order from a thread queue. 1223ae7a6b38SJeff Roberson */ 12249727e637SJeff Roberson static struct thread * 122562fa74d9SJeff Roberson tdq_steal(struct tdq *tdq, int cpu) 122622bf7d9aSJeff Roberson { 12279727e637SJeff Roberson struct thread *td; 122822bf7d9aSJeff Roberson 1229ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 12309727e637SJeff Roberson if ((td = runq_steal(&tdq->tdq_realtime, cpu)) != NULL) 12319727e637SJeff Roberson return (td); 12329727e637SJeff Roberson if ((td = runq_steal_from(&tdq->tdq_timeshare, 12339727e637SJeff Roberson cpu, tdq->tdq_ridx)) != NULL) 12349727e637SJeff Roberson return (td); 123562fa74d9SJeff Roberson return (runq_steal(&tdq->tdq_idle, cpu)); 123622bf7d9aSJeff Roberson } 123780f86c9fSJeff Roberson 1238ae7a6b38SJeff Roberson /* 1239ae7a6b38SJeff Roberson * Sets the thread lock and ts_cpu to match the requested cpu. Unlocks the 12407fcf154aSJeff Roberson * current lock and returns with the assigned queue locked. 1241ae7a6b38SJeff Roberson */ 1242ae7a6b38SJeff Roberson static inline struct tdq * 12439727e637SJeff Roberson sched_setcpu(struct thread *td, int cpu, int flags) 124480f86c9fSJeff Roberson { 12459727e637SJeff Roberson 1246ae7a6b38SJeff Roberson struct tdq *tdq; 124761a74c5cSJeff Roberson struct mtx *mtx; 124880f86c9fSJeff Roberson 12499727e637SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1250ae7a6b38SJeff Roberson tdq = TDQ_CPU(cpu); 125193ccd6bfSKonstantin Belousov td_get_sched(td)->ts_cpu = cpu; 12529727e637SJeff Roberson /* 12539727e637SJeff Roberson * If the lock matches just return the queue. 12549727e637SJeff Roberson */ 125561a74c5cSJeff Roberson if (td->td_lock == TDQ_LOCKPTR(tdq)) { 125661a74c5cSJeff Roberson KASSERT((flags & SRQ_HOLD) == 0, 125761a74c5cSJeff Roberson ("sched_setcpu: Invalid lock for SRQ_HOLD")); 1258ae7a6b38SJeff Roberson return (tdq); 1259ae7a6b38SJeff Roberson } 126061a74c5cSJeff Roberson 126180f86c9fSJeff Roberson /* 1262ae7a6b38SJeff Roberson * The hard case, migration, we need to block the thread first to 1263ae7a6b38SJeff Roberson * prevent order reversals with other cpus locks. 12647b8bfa0dSJeff Roberson */ 1265b0b9dee5SAttilio Rao spinlock_enter(); 126661a74c5cSJeff Roberson mtx = thread_lock_block(td); 126761a74c5cSJeff Roberson if ((flags & SRQ_HOLD) == 0) 126861a74c5cSJeff Roberson mtx_unlock_spin(mtx); 1269ae7a6b38SJeff Roberson TDQ_LOCK(tdq); 1270ae7a6b38SJeff Roberson thread_lock_unblock(td, TDQ_LOCKPTR(tdq)); 1271b0b9dee5SAttilio Rao spinlock_exit(); 1272ae7a6b38SJeff Roberson return (tdq); 127380f86c9fSJeff Roberson } 12742454aaf5SJeff Roberson 12758df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_intrbind, "Soft interrupt binding"); 12768df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_idle_affinity, "Picked idle cpu based on affinity"); 12778df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_affinity, "Picked cpu based on affinity"); 12788df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_lowest, "Selected lowest load"); 12798df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_local, "Migrated to current cpu"); 12808df78c41SJeff Roberson SCHED_STAT_DEFINE(pickcpu_migration, "Selection may have caused migration"); 12818df78c41SJeff Roberson 1282ae7a6b38SJeff Roberson static int 12839727e637SJeff Roberson sched_pickcpu(struct thread *td, int flags) 1284ae7a6b38SJeff Roberson { 128536acfc65SAlexander Motin struct cpu_group *cg, *ccg; 12869727e637SJeff Roberson struct td_sched *ts; 1287ae7a6b38SJeff Roberson struct tdq *tdq; 1288aefe0a8cSAlexander Motin cpuset_t *mask; 1289e745d729SAlexander Motin int cpu, pri, r, self, intr; 12907b8bfa0dSJeff Roberson 129162fa74d9SJeff Roberson self = PCPU_GET(cpuid); 129293ccd6bfSKonstantin Belousov ts = td_get_sched(td); 1293efe67753SNathan Whitehorn KASSERT(!CPU_ABSENT(ts->ts_cpu), ("sched_pickcpu: Start scheduler on " 1294efe67753SNathan Whitehorn "absent CPU %d for thread %s.", ts->ts_cpu, td->td_name)); 12957b8bfa0dSJeff Roberson if (smp_started == 0) 12967b8bfa0dSJeff Roberson return (self); 129728994a58SJeff Roberson /* 129828994a58SJeff Roberson * Don't migrate a running thread from sched_switch(). 129928994a58SJeff Roberson */ 130062fa74d9SJeff Roberson if ((flags & SRQ_OURSELF) || !THREAD_CAN_MIGRATE(td)) 130162fa74d9SJeff Roberson return (ts->ts_cpu); 13027b8bfa0dSJeff Roberson /* 130362fa74d9SJeff Roberson * Prefer to run interrupt threads on the processors that generate 130462fa74d9SJeff Roberson * the interrupt. 13057b8bfa0dSJeff Roberson */ 130662fa74d9SJeff Roberson if (td->td_priority <= PRI_MAX_ITHD && THREAD_CAN_SCHED(td, self) && 1307c9205e35SAlexander Motin curthread->td_intr_nesting_level) { 1308c55dc51cSAlexander Motin tdq = TDQ_SELF(); 1309c55dc51cSAlexander Motin if (tdq->tdq_lowpri >= PRI_MIN_IDLE) { 1310c55dc51cSAlexander Motin SCHED_STAT_INC(pickcpu_idle_affinity); 1311c55dc51cSAlexander Motin return (self); 1312c55dc51cSAlexander Motin } 131362fa74d9SJeff Roberson ts->ts_cpu = self; 1314c9205e35SAlexander Motin intr = 1; 1315c55dc51cSAlexander Motin cg = tdq->tdq_cg; 1316c55dc51cSAlexander Motin goto llc; 1317c55dc51cSAlexander Motin } else { 1318c9205e35SAlexander Motin intr = 0; 1319c55dc51cSAlexander Motin tdq = TDQ_CPU(ts->ts_cpu); 1320c55dc51cSAlexander Motin cg = tdq->tdq_cg; 1321c55dc51cSAlexander Motin } 13227b8bfa0dSJeff Roberson /* 132336acfc65SAlexander Motin * If the thread can run on the last cpu and the affinity has not 13240127914cSEric van Gyzen * expired and it is idle, run it there. 13257b8bfa0dSJeff Roberson */ 132636acfc65SAlexander Motin if (THREAD_CAN_SCHED(td, ts->ts_cpu) && 132736acfc65SAlexander Motin tdq->tdq_lowpri >= PRI_MIN_IDLE && 132836acfc65SAlexander Motin SCHED_AFFINITY(ts, CG_SHARE_L2)) { 1329c55dc51cSAlexander Motin if (cg->cg_flags & CG_FLAG_THREAD) { 1330176dd236SAlexander Motin /* Check all SMT threads for being idle. */ 1331aefe0a8cSAlexander Motin for (cpu = cg->cg_first; cpu <= cg->cg_last; cpu++) { 1332176dd236SAlexander Motin if (CPU_ISSET(cpu, &cg->cg_mask) && 1333176dd236SAlexander Motin TDQ_CPU(cpu)->tdq_lowpri < PRI_MIN_IDLE) 133462fa74d9SJeff Roberson break; 1335aefe0a8cSAlexander Motin } 1336aefe0a8cSAlexander Motin if (cpu > cg->cg_last) { 1337176dd236SAlexander Motin SCHED_STAT_INC(pickcpu_idle_affinity); 1338176dd236SAlexander Motin return (ts->ts_cpu); 133936acfc65SAlexander Motin } 1340176dd236SAlexander Motin } else { 134136acfc65SAlexander Motin SCHED_STAT_INC(pickcpu_idle_affinity); 134236acfc65SAlexander Motin return (ts->ts_cpu); 134336acfc65SAlexander Motin } 134436acfc65SAlexander Motin } 1345c55dc51cSAlexander Motin llc: 134636acfc65SAlexander Motin /* 134736acfc65SAlexander Motin * Search for the last level cache CPU group in the tree. 1348c9205e35SAlexander Motin * Skip SMT, identical groups and caches with expired affinity. 1349c9205e35SAlexander Motin * Interrupt threads affinity is explicit and never expires. 135036acfc65SAlexander Motin */ 135136acfc65SAlexander Motin for (ccg = NULL; cg != NULL; cg = cg->cg_parent) { 135236acfc65SAlexander Motin if (cg->cg_flags & CG_FLAG_THREAD) 135336acfc65SAlexander Motin continue; 1354c9205e35SAlexander Motin if (cg->cg_children == 1 || cg->cg_count == 1) 1355c9205e35SAlexander Motin continue; 1356c9205e35SAlexander Motin if (cg->cg_level == CG_SHARE_NONE || 1357c9205e35SAlexander Motin (!intr && !SCHED_AFFINITY(ts, cg->cg_level))) 135836acfc65SAlexander Motin continue; 135936acfc65SAlexander Motin ccg = cg; 136036acfc65SAlexander Motin } 1361c9205e35SAlexander Motin /* Found LLC shared by all CPUs, so do a global search. */ 1362c9205e35SAlexander Motin if (ccg == cpu_top) 1363c9205e35SAlexander Motin ccg = NULL; 136462fa74d9SJeff Roberson cpu = -1; 1365aefe0a8cSAlexander Motin mask = &td->td_cpuset->cs_mask; 1366c9205e35SAlexander Motin pri = td->td_priority; 1367e745d729SAlexander Motin r = TD_IS_RUNNING(td); 1368c9205e35SAlexander Motin /* 1369c9205e35SAlexander Motin * Try hard to keep interrupts within found LLC. Search the LLC for 1370c9205e35SAlexander Motin * the least loaded CPU we can run now. For NUMA systems it should 1371c9205e35SAlexander Motin * be within target domain, and it also reduces scheduling overhead. 1372c9205e35SAlexander Motin */ 1373c9205e35SAlexander Motin if (ccg != NULL && intr) { 1374e745d729SAlexander Motin cpu = sched_lowest(ccg, mask, pri, INT_MAX, ts->ts_cpu, r); 1375c9205e35SAlexander Motin if (cpu >= 0) 1376c9205e35SAlexander Motin SCHED_STAT_INC(pickcpu_intrbind); 1377c9205e35SAlexander Motin } else 1378c9205e35SAlexander Motin /* Search the LLC for the least loaded idle CPU we can run now. */ 1379c9205e35SAlexander Motin if (ccg != NULL) { 1380c9205e35SAlexander Motin cpu = sched_lowest(ccg, mask, max(pri, PRI_MAX_TIMESHARE), 1381e745d729SAlexander Motin INT_MAX, ts->ts_cpu, r); 1382c9205e35SAlexander Motin if (cpu >= 0) 1383c9205e35SAlexander Motin SCHED_STAT_INC(pickcpu_affinity); 1384c9205e35SAlexander Motin } 1385c9205e35SAlexander Motin /* Search globally for the least loaded CPU we can run now. */ 1386c9205e35SAlexander Motin if (cpu < 0) { 1387e745d729SAlexander Motin cpu = sched_lowest(cpu_top, mask, pri, INT_MAX, ts->ts_cpu, r); 1388c9205e35SAlexander Motin if (cpu >= 0) 1389c9205e35SAlexander Motin SCHED_STAT_INC(pickcpu_lowest); 1390c9205e35SAlexander Motin } 1391c9205e35SAlexander Motin /* Search globally for the least loaded CPU. */ 1392c9205e35SAlexander Motin if (cpu < 0) { 1393e745d729SAlexander Motin cpu = sched_lowest(cpu_top, mask, -1, INT_MAX, ts->ts_cpu, r); 1394c9205e35SAlexander Motin if (cpu >= 0) 1395c9205e35SAlexander Motin SCHED_STAT_INC(pickcpu_lowest); 1396c9205e35SAlexander Motin } 1397bb3dfc6aSAlexander Motin KASSERT(cpu >= 0, ("sched_pickcpu: Failed to find a cpu.")); 1398efe67753SNathan Whitehorn KASSERT(!CPU_ABSENT(cpu), ("sched_pickcpu: Picked absent CPU %d.", cpu)); 139962fa74d9SJeff Roberson /* 140062fa74d9SJeff Roberson * Compare the lowest loaded cpu to current cpu. 140162fa74d9SJeff Roberson */ 1402018ff686SJeff Roberson tdq = TDQ_CPU(cpu); 1403018ff686SJeff Roberson if (THREAD_CAN_SCHED(td, self) && TDQ_SELF()->tdq_lowpri > pri && 1404018ff686SJeff Roberson tdq->tdq_lowpri < PRI_MIN_IDLE && 1405018ff686SJeff Roberson TDQ_SELF()->tdq_load <= tdq->tdq_load + 1) { 14068df78c41SJeff Roberson SCHED_STAT_INC(pickcpu_local); 140762fa74d9SJeff Roberson cpu = self; 1408c9205e35SAlexander Motin } 14098df78c41SJeff Roberson if (cpu != ts->ts_cpu) 14108df78c41SJeff Roberson SCHED_STAT_INC(pickcpu_migration); 1411ae7a6b38SJeff Roberson return (cpu); 141280f86c9fSJeff Roberson } 141362fa74d9SJeff Roberson #endif 141422bf7d9aSJeff Roberson 141522bf7d9aSJeff Roberson /* 141622bf7d9aSJeff Roberson * Pick the highest priority task we have and return it. 14170c0a98b2SJeff Roberson */ 14189727e637SJeff Roberson static struct thread * 1419ad1e7d28SJulian Elischer tdq_choose(struct tdq *tdq) 14205d7ef00cSJeff Roberson { 14219727e637SJeff Roberson struct thread *td; 14225d7ef00cSJeff Roberson 1423ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 14249727e637SJeff Roberson td = runq_choose(&tdq->tdq_realtime); 14259727e637SJeff Roberson if (td != NULL) 14269727e637SJeff Roberson return (td); 14279727e637SJeff Roberson td = runq_choose_from(&tdq->tdq_timeshare, tdq->tdq_ridx); 14289727e637SJeff Roberson if (td != NULL) { 142912d56c0fSJohn Baldwin KASSERT(td->td_priority >= PRI_MIN_BATCH, 1430e7d50326SJeff Roberson ("tdq_choose: Invalid priority on timeshare queue %d", 14319727e637SJeff Roberson td->td_priority)); 14329727e637SJeff Roberson return (td); 143315dc847eSJeff Roberson } 14349727e637SJeff Roberson td = runq_choose(&tdq->tdq_idle); 14359727e637SJeff Roberson if (td != NULL) { 14369727e637SJeff Roberson KASSERT(td->td_priority >= PRI_MIN_IDLE, 1437e7d50326SJeff Roberson ("tdq_choose: Invalid priority on idle queue %d", 14389727e637SJeff Roberson td->td_priority)); 14399727e637SJeff Roberson return (td); 1440e7d50326SJeff Roberson } 1441e7d50326SJeff Roberson 1442e7d50326SJeff Roberson return (NULL); 1443245f3abfSJeff Roberson } 14440a016a05SJeff Roberson 1445ae7a6b38SJeff Roberson /* 1446ae7a6b38SJeff Roberson * Initialize a thread queue. 1447ae7a6b38SJeff Roberson */ 14480a016a05SJeff Roberson static void 1449018ff686SJeff Roberson tdq_setup(struct tdq *tdq, int id) 14500a016a05SJeff Roberson { 1451ae7a6b38SJeff Roberson 1452c47f202bSJeff Roberson if (bootverbose) 1453018ff686SJeff Roberson printf("ULE: setup cpu %d\n", id); 1454e7d50326SJeff Roberson runq_init(&tdq->tdq_realtime); 1455e7d50326SJeff Roberson runq_init(&tdq->tdq_timeshare); 1456d2ad694cSJeff Roberson runq_init(&tdq->tdq_idle); 1457018ff686SJeff Roberson tdq->tdq_id = id; 145862fa74d9SJeff Roberson snprintf(tdq->tdq_name, sizeof(tdq->tdq_name), 145962fa74d9SJeff Roberson "sched lock %d", (int)TDQ_ID(tdq)); 146061a74c5cSJeff Roberson mtx_init(&tdq->tdq_lock, tdq->tdq_name, "sched lock", MTX_SPIN); 14618f51ad55SJeff Roberson #ifdef KTR 14628f51ad55SJeff Roberson snprintf(tdq->tdq_loadname, sizeof(tdq->tdq_loadname), 14638f51ad55SJeff Roberson "CPU %d load", (int)TDQ_ID(tdq)); 14648f51ad55SJeff Roberson #endif 14650a016a05SJeff Roberson } 14660a016a05SJeff Roberson 1467c47f202bSJeff Roberson #ifdef SMP 1468c47f202bSJeff Roberson static void 1469c47f202bSJeff Roberson sched_setup_smp(void) 1470c47f202bSJeff Roberson { 1471c47f202bSJeff Roberson struct tdq *tdq; 1472c47f202bSJeff Roberson int i; 1473c47f202bSJeff Roberson 147462fa74d9SJeff Roberson cpu_top = smp_topo(); 14753aa6d94eSJohn Baldwin CPU_FOREACH(i) { 1476018ff686SJeff Roberson tdq = DPCPU_ID_PTR(i, tdq); 1477018ff686SJeff Roberson tdq_setup(tdq, i); 147862fa74d9SJeff Roberson tdq->tdq_cg = smp_topo_find(cpu_top, i); 147962fa74d9SJeff Roberson if (tdq->tdq_cg == NULL) 148062fa74d9SJeff Roberson panic("Can't find cpu group for %d\n", i); 1481ca34553bSAlexander Motin DPCPU_ID_SET(i, randomval, i * 69069 + 5); 1482c47f202bSJeff Roberson } 1483018ff686SJeff Roberson PCPU_SET(sched, DPCPU_PTR(tdq)); 148462fa74d9SJeff Roberson balance_tdq = TDQ_SELF(); 1485c47f202bSJeff Roberson } 1486c47f202bSJeff Roberson #endif 1487c47f202bSJeff Roberson 1488ae7a6b38SJeff Roberson /* 1489ae7a6b38SJeff Roberson * Setup the thread queues and initialize the topology based on MD 1490ae7a6b38SJeff Roberson * information. 1491ae7a6b38SJeff Roberson */ 149235e6168fSJeff Roberson static void 149335e6168fSJeff Roberson sched_setup(void *dummy) 149435e6168fSJeff Roberson { 1495ae7a6b38SJeff Roberson struct tdq *tdq; 1496c47f202bSJeff Roberson 14970ec896fdSJeff Roberson #ifdef SMP 1498c47f202bSJeff Roberson sched_setup_smp(); 1499749d01b0SJeff Roberson #else 1500018ff686SJeff Roberson tdq_setup(TDQ_SELF(), 0); 1501356500a3SJeff Roberson #endif 1502018ff686SJeff Roberson tdq = TDQ_SELF(); 1503ae7a6b38SJeff Roberson 1504ae7a6b38SJeff Roberson /* Add thread0's load since it's running. */ 1505ae7a6b38SJeff Roberson TDQ_LOCK(tdq); 1506e1504695SJeff Roberson thread0.td_lock = TDQ_LOCKPTR(tdq); 15079727e637SJeff Roberson tdq_load_add(tdq, &thread0); 150862fa74d9SJeff Roberson tdq->tdq_lowpri = thread0.td_priority; 1509ae7a6b38SJeff Roberson TDQ_UNLOCK(tdq); 151035e6168fSJeff Roberson } 151135e6168fSJeff Roberson 1512ae7a6b38SJeff Roberson /* 1513579895dfSAlexander Motin * This routine determines time constants after stathz and hz are setup. 1514ae7a6b38SJeff Roberson */ 1515a1d4fe69SDavid Xu /* ARGSUSED */ 1516a1d4fe69SDavid Xu static void 1517a1d4fe69SDavid Xu sched_initticks(void *dummy) 1518a1d4fe69SDavid Xu { 1519ae7a6b38SJeff Roberson int incr; 1520ae7a6b38SJeff Roberson 1521a1d4fe69SDavid Xu realstathz = stathz ? stathz : hz; 15225e5c3873SJeff Roberson sched_slice = realstathz / SCHED_SLICE_DEFAULT_DIVISOR; 15235e5c3873SJeff Roberson sched_slice_min = sched_slice / SCHED_SLICE_MIN_DIVISOR; 152437f4e025SAlexander Motin hogticks = imax(1, (2 * hz * sched_slice + realstathz / 2) / 152537f4e025SAlexander Motin realstathz); 1526a1d4fe69SDavid Xu 1527a1d4fe69SDavid Xu /* 1528e7d50326SJeff Roberson * tickincr is shifted out by 10 to avoid rounding errors due to 15293f872f85SJeff Roberson * hz not being evenly divisible by stathz on all platforms. 1530e7d50326SJeff Roberson */ 1531ae7a6b38SJeff Roberson incr = (hz << SCHED_TICK_SHIFT) / realstathz; 1532e7d50326SJeff Roberson /* 1533e7d50326SJeff Roberson * This does not work for values of stathz that are more than 1534e7d50326SJeff Roberson * 1 << SCHED_TICK_SHIFT * hz. In practice this does not happen. 1535a1d4fe69SDavid Xu */ 1536ae7a6b38SJeff Roberson if (incr == 0) 1537ae7a6b38SJeff Roberson incr = 1; 1538ae7a6b38SJeff Roberson tickincr = incr; 15397b8bfa0dSJeff Roberson #ifdef SMP 15409862717aSJeff Roberson /* 15417fcf154aSJeff Roberson * Set the default balance interval now that we know 15427fcf154aSJeff Roberson * what realstathz is. 15437fcf154aSJeff Roberson */ 15447fcf154aSJeff Roberson balance_interval = realstathz; 1545290d9060SDon Lewis balance_ticks = balance_interval; 15467b8bfa0dSJeff Roberson affinity = SCHED_AFFINITY_DEFAULT; 15477b8bfa0dSJeff Roberson #endif 1548b3f40a41SAlexander Motin if (sched_idlespinthresh < 0) 15492c27cb3aSAlexander Motin sched_idlespinthresh = 2 * max(10000, 6 * hz) / realstathz; 1550a1d4fe69SDavid Xu } 1551a1d4fe69SDavid Xu 155235e6168fSJeff Roberson /* 1553ae7a6b38SJeff Roberson * This is the core of the interactivity algorithm. Determines a score based 1554ae7a6b38SJeff Roberson * on past behavior. It is the ratio of sleep time to run time scaled to 1555ae7a6b38SJeff Roberson * a [0, 100] integer. This is the voluntary sleep time of a process, which 1556ae7a6b38SJeff Roberson * differs from the cpu usage because it does not account for time spent 1557ae7a6b38SJeff Roberson * waiting on a run-queue. Would be prettier if we had floating point. 155857031f79SGeorge V. Neville-Neil * 155957031f79SGeorge V. Neville-Neil * When a thread's sleep time is greater than its run time the 156057031f79SGeorge V. Neville-Neil * calculation is: 156157031f79SGeorge V. Neville-Neil * 156257031f79SGeorge V. Neville-Neil * scaling factor 156357031f79SGeorge V. Neville-Neil * interactivity score = --------------------- 156457031f79SGeorge V. Neville-Neil * sleep time / run time 156557031f79SGeorge V. Neville-Neil * 156657031f79SGeorge V. Neville-Neil * 156757031f79SGeorge V. Neville-Neil * When a thread's run time is greater than its sleep time the 156857031f79SGeorge V. Neville-Neil * calculation is: 156957031f79SGeorge V. Neville-Neil * 157057031f79SGeorge V. Neville-Neil * scaling factor 157143521b46Swiklam * interactivity score = 2 * scaling factor - --------------------- 157257031f79SGeorge V. Neville-Neil * run time / sleep time 1573ae7a6b38SJeff Roberson */ 1574ae7a6b38SJeff Roberson static int 1575ae7a6b38SJeff Roberson sched_interact_score(struct thread *td) 1576ae7a6b38SJeff Roberson { 1577ae7a6b38SJeff Roberson struct td_sched *ts; 1578ae7a6b38SJeff Roberson int div; 1579ae7a6b38SJeff Roberson 158093ccd6bfSKonstantin Belousov ts = td_get_sched(td); 1581ae7a6b38SJeff Roberson /* 1582ae7a6b38SJeff Roberson * The score is only needed if this is likely to be an interactive 1583ae7a6b38SJeff Roberson * task. Don't go through the expense of computing it if there's 1584ae7a6b38SJeff Roberson * no chance. 1585ae7a6b38SJeff Roberson */ 1586ae7a6b38SJeff Roberson if (sched_interact <= SCHED_INTERACT_HALF && 1587ae7a6b38SJeff Roberson ts->ts_runtime >= ts->ts_slptime) 1588ae7a6b38SJeff Roberson return (SCHED_INTERACT_HALF); 1589ae7a6b38SJeff Roberson 1590ae7a6b38SJeff Roberson if (ts->ts_runtime > ts->ts_slptime) { 1591ae7a6b38SJeff Roberson div = max(1, ts->ts_runtime / SCHED_INTERACT_HALF); 1592ae7a6b38SJeff Roberson return (SCHED_INTERACT_HALF + 1593ae7a6b38SJeff Roberson (SCHED_INTERACT_HALF - (ts->ts_slptime / div))); 1594ae7a6b38SJeff Roberson } 1595ae7a6b38SJeff Roberson if (ts->ts_slptime > ts->ts_runtime) { 1596ae7a6b38SJeff Roberson div = max(1, ts->ts_slptime / SCHED_INTERACT_HALF); 1597ae7a6b38SJeff Roberson return (ts->ts_runtime / div); 1598ae7a6b38SJeff Roberson } 1599ae7a6b38SJeff Roberson /* runtime == slptime */ 1600ae7a6b38SJeff Roberson if (ts->ts_runtime) 1601ae7a6b38SJeff Roberson return (SCHED_INTERACT_HALF); 1602ae7a6b38SJeff Roberson 1603ae7a6b38SJeff Roberson /* 1604ae7a6b38SJeff Roberson * This can happen if slptime and runtime are 0. 1605ae7a6b38SJeff Roberson */ 1606ae7a6b38SJeff Roberson return (0); 1607ae7a6b38SJeff Roberson 1608ae7a6b38SJeff Roberson } 1609ae7a6b38SJeff Roberson 1610ae7a6b38SJeff Roberson /* 161135e6168fSJeff Roberson * Scale the scheduling priority according to the "interactivity" of this 161235e6168fSJeff Roberson * process. 161335e6168fSJeff Roberson */ 161415dc847eSJeff Roberson static void 16158460a577SJohn Birrell sched_priority(struct thread *td) 161635e6168fSJeff Roberson { 16171c119e17SAlexander Motin u_int pri, score; 161835e6168fSJeff Roberson 1619c9a8cba4SJohn Baldwin if (PRI_BASE(td->td_pri_class) != PRI_TIMESHARE) 162015dc847eSJeff Roberson return; 1621e7d50326SJeff Roberson /* 1622e7d50326SJeff Roberson * If the score is interactive we place the thread in the realtime 1623e7d50326SJeff Roberson * queue with a priority that is less than kernel and interrupt 1624e7d50326SJeff Roberson * priorities. These threads are not subject to nice restrictions. 1625e7d50326SJeff Roberson * 1626ae7a6b38SJeff Roberson * Scores greater than this are placed on the normal timeshare queue 1627e7d50326SJeff Roberson * where the priority is partially decided by the most recent cpu 1628e7d50326SJeff Roberson * utilization and the rest is decided by nice value. 1629a5423ea3SJeff Roberson * 1630a5423ea3SJeff Roberson * The nice value of the process has a linear effect on the calculated 1631a5423ea3SJeff Roberson * score. Negative nice values make it easier for a thread to be 1632a5423ea3SJeff Roberson * considered interactive. 1633e7d50326SJeff Roberson */ 1634a0f15352SJohn Baldwin score = imax(0, sched_interact_score(td) + td->td_proc->p_nice); 1635e7d50326SJeff Roberson if (score < sched_interact) { 163612d56c0fSJohn Baldwin pri = PRI_MIN_INTERACT; 16371c119e17SAlexander Motin pri += (PRI_MAX_INTERACT - PRI_MIN_INTERACT + 1) * score / 16381c119e17SAlexander Motin sched_interact; 163912d56c0fSJohn Baldwin KASSERT(pri >= PRI_MIN_INTERACT && pri <= PRI_MAX_INTERACT, 16401c119e17SAlexander Motin ("sched_priority: invalid interactive priority %u score %u", 16419a93305aSJeff Roberson pri, score)); 1642e7d50326SJeff Roberson } else { 1643e7d50326SJeff Roberson pri = SCHED_PRI_MIN; 164493ccd6bfSKonstantin Belousov if (td_get_sched(td)->ts_ticks) 164593ccd6bfSKonstantin Belousov pri += min(SCHED_PRI_TICKS(td_get_sched(td)), 16465457fa23SJohn Baldwin SCHED_PRI_RANGE - 1); 1647e7d50326SJeff Roberson pri += SCHED_PRI_NICE(td->td_proc->p_nice); 164812d56c0fSJohn Baldwin KASSERT(pri >= PRI_MIN_BATCH && pri <= PRI_MAX_BATCH, 16491c119e17SAlexander Motin ("sched_priority: invalid priority %u: nice %d, " 1650ae7a6b38SJeff Roberson "ticks %d ftick %d ltick %d tick pri %d", 165193ccd6bfSKonstantin Belousov pri, td->td_proc->p_nice, td_get_sched(td)->ts_ticks, 165293ccd6bfSKonstantin Belousov td_get_sched(td)->ts_ftick, td_get_sched(td)->ts_ltick, 165393ccd6bfSKonstantin Belousov SCHED_PRI_TICKS(td_get_sched(td)))); 1654e7d50326SJeff Roberson } 16558460a577SJohn Birrell sched_user_prio(td, pri); 165635e6168fSJeff Roberson 165715dc847eSJeff Roberson return; 165835e6168fSJeff Roberson } 165935e6168fSJeff Roberson 166035e6168fSJeff Roberson /* 1661d322132cSJeff Roberson * This routine enforces a maximum limit on the amount of scheduling history 1662ae7a6b38SJeff Roberson * kept. It is called after either the slptime or runtime is adjusted. This 1663ae7a6b38SJeff Roberson * function is ugly due to integer math. 1664d322132cSJeff Roberson */ 16654b60e324SJeff Roberson static void 16668460a577SJohn Birrell sched_interact_update(struct thread *td) 16674b60e324SJeff Roberson { 1668155b6ca1SJeff Roberson struct td_sched *ts; 16699a93305aSJeff Roberson u_int sum; 16703f741ca1SJeff Roberson 167193ccd6bfSKonstantin Belousov ts = td_get_sched(td); 1672ae7a6b38SJeff Roberson sum = ts->ts_runtime + ts->ts_slptime; 1673d322132cSJeff Roberson if (sum < SCHED_SLP_RUN_MAX) 1674d322132cSJeff Roberson return; 1675d322132cSJeff Roberson /* 1676155b6ca1SJeff Roberson * This only happens from two places: 1677155b6ca1SJeff Roberson * 1) We have added an unusual amount of run time from fork_exit. 1678155b6ca1SJeff Roberson * 2) We have added an unusual amount of sleep time from sched_sleep(). 1679155b6ca1SJeff Roberson */ 1680155b6ca1SJeff Roberson if (sum > SCHED_SLP_RUN_MAX * 2) { 1681ae7a6b38SJeff Roberson if (ts->ts_runtime > ts->ts_slptime) { 1682ae7a6b38SJeff Roberson ts->ts_runtime = SCHED_SLP_RUN_MAX; 1683ae7a6b38SJeff Roberson ts->ts_slptime = 1; 1684155b6ca1SJeff Roberson } else { 1685ae7a6b38SJeff Roberson ts->ts_slptime = SCHED_SLP_RUN_MAX; 1686ae7a6b38SJeff Roberson ts->ts_runtime = 1; 1687155b6ca1SJeff Roberson } 1688155b6ca1SJeff Roberson return; 1689155b6ca1SJeff Roberson } 1690155b6ca1SJeff Roberson /* 1691d322132cSJeff Roberson * If we have exceeded by more than 1/5th then the algorithm below 1692d322132cSJeff Roberson * will not bring us back into range. Dividing by two here forces 16932454aaf5SJeff Roberson * us into the range of [4/5 * SCHED_INTERACT_MAX, SCHED_INTERACT_MAX] 1694d322132cSJeff Roberson */ 169537a35e4aSJeff Roberson if (sum > (SCHED_SLP_RUN_MAX / 5) * 6) { 1696ae7a6b38SJeff Roberson ts->ts_runtime /= 2; 1697ae7a6b38SJeff Roberson ts->ts_slptime /= 2; 1698d322132cSJeff Roberson return; 1699d322132cSJeff Roberson } 1700ae7a6b38SJeff Roberson ts->ts_runtime = (ts->ts_runtime / 5) * 4; 1701ae7a6b38SJeff Roberson ts->ts_slptime = (ts->ts_slptime / 5) * 4; 1702d322132cSJeff Roberson } 1703d322132cSJeff Roberson 1704ae7a6b38SJeff Roberson /* 1705ae7a6b38SJeff Roberson * Scale back the interactivity history when a child thread is created. The 1706ae7a6b38SJeff Roberson * history is inherited from the parent but the thread may behave totally 1707ae7a6b38SJeff Roberson * differently. For example, a shell spawning a compiler process. We want 1708ae7a6b38SJeff Roberson * to learn that the compiler is behaving badly very quickly. 1709ae7a6b38SJeff Roberson */ 1710d322132cSJeff Roberson static void 17118460a577SJohn Birrell sched_interact_fork(struct thread *td) 1712d322132cSJeff Roberson { 171393ccd6bfSKonstantin Belousov struct td_sched *ts; 1714d322132cSJeff Roberson int ratio; 1715d322132cSJeff Roberson int sum; 1716d322132cSJeff Roberson 171793ccd6bfSKonstantin Belousov ts = td_get_sched(td); 171893ccd6bfSKonstantin Belousov sum = ts->ts_runtime + ts->ts_slptime; 1719d322132cSJeff Roberson if (sum > SCHED_SLP_RUN_FORK) { 1720d322132cSJeff Roberson ratio = sum / SCHED_SLP_RUN_FORK; 172193ccd6bfSKonstantin Belousov ts->ts_runtime /= ratio; 172293ccd6bfSKonstantin Belousov ts->ts_slptime /= ratio; 17234b60e324SJeff Roberson } 17244b60e324SJeff Roberson } 17254b60e324SJeff Roberson 172615dc847eSJeff Roberson /* 1727ae7a6b38SJeff Roberson * Called from proc0_init() to setup the scheduler fields. 1728ed062c8dSJulian Elischer */ 1729ed062c8dSJulian Elischer void 1730ed062c8dSJulian Elischer schedinit(void) 1731ed062c8dSJulian Elischer { 173293ccd6bfSKonstantin Belousov struct td_sched *ts0; 1733e7d50326SJeff Roberson 1734ed062c8dSJulian Elischer /* 173593ccd6bfSKonstantin Belousov * Set up the scheduler specific parts of thread0. 1736ed062c8dSJulian Elischer */ 173793ccd6bfSKonstantin Belousov ts0 = td_get_sched(&thread0); 173893ccd6bfSKonstantin Belousov ts0->ts_ltick = ticks; 173993ccd6bfSKonstantin Belousov ts0->ts_ftick = ticks; 174093ccd6bfSKonstantin Belousov ts0->ts_slice = 0; 17411408b84aSHans Petter Selasky ts0->ts_cpu = curcpu; /* set valid CPU number */ 1742ed062c8dSJulian Elischer } 1743ed062c8dSJulian Elischer 1744ed062c8dSJulian Elischer /* 1745589aed00SKyle Evans * schedinit_ap() is needed prior to calling sched_throw(NULL) to ensure that 1746589aed00SKyle Evans * the pcpu requirements are met for any calls in the period between curthread 1747589aed00SKyle Evans * initialization and sched_throw(). One can safely add threads to the queue 1748589aed00SKyle Evans * before sched_throw(), for instance, as long as the thread lock is setup 1749589aed00SKyle Evans * correctly. 1750589aed00SKyle Evans * 1751589aed00SKyle Evans * TDQ_SELF() relies on the below sched pcpu setting; it may be used only 1752589aed00SKyle Evans * after schedinit_ap(). 1753589aed00SKyle Evans */ 1754589aed00SKyle Evans void 1755589aed00SKyle Evans schedinit_ap(void) 1756589aed00SKyle Evans { 1757589aed00SKyle Evans 1758589aed00SKyle Evans #ifdef SMP 1759589aed00SKyle Evans PCPU_SET(sched, DPCPU_PTR(tdq)); 1760589aed00SKyle Evans #endif 1761589aed00SKyle Evans PCPU_GET(idlethread)->td_lock = TDQ_LOCKPTR(TDQ_SELF()); 1762589aed00SKyle Evans } 1763589aed00SKyle Evans 1764589aed00SKyle Evans /* 176515dc847eSJeff Roberson * This is only somewhat accurate since given many processes of the same 176615dc847eSJeff Roberson * priority they will switch when their slices run out, which will be 1767e7d50326SJeff Roberson * at most sched_slice stathz ticks. 176815dc847eSJeff Roberson */ 176935e6168fSJeff Roberson int 177035e6168fSJeff Roberson sched_rr_interval(void) 177135e6168fSJeff Roberson { 1772e7d50326SJeff Roberson 1773579895dfSAlexander Motin /* Convert sched_slice from stathz to hz. */ 177437f4e025SAlexander Motin return (imax(1, (sched_slice * hz + realstathz / 2) / realstathz)); 177535e6168fSJeff Roberson } 177635e6168fSJeff Roberson 1777ae7a6b38SJeff Roberson /* 1778ae7a6b38SJeff Roberson * Update the percent cpu tracking information when it is requested or 1779ae7a6b38SJeff Roberson * the total history exceeds the maximum. We keep a sliding history of 1780ae7a6b38SJeff Roberson * tick counts that slowly decays. This is less precise than the 4BSD 1781ae7a6b38SJeff Roberson * mechanism since it happens with less regular and frequent events. 1782ae7a6b38SJeff Roberson */ 178322bf7d9aSJeff Roberson static void 17847295465eSAlexander Motin sched_pctcpu_update(struct td_sched *ts, int run) 178535e6168fSJeff Roberson { 17867295465eSAlexander Motin int t = ticks; 1787e7d50326SJeff Roberson 178878133024SMark Johnston /* 178978133024SMark Johnston * The signed difference may be negative if the thread hasn't run for 179078133024SMark Johnston * over half of the ticks rollover period. 179178133024SMark Johnston */ 179278133024SMark Johnston if ((u_int)(t - ts->ts_ltick) >= SCHED_TICK_TARG) { 1793ad1e7d28SJulian Elischer ts->ts_ticks = 0; 17947295465eSAlexander Motin ts->ts_ftick = t - SCHED_TICK_TARG; 17957295465eSAlexander Motin } else if (t - ts->ts_ftick >= SCHED_TICK_MAX) { 17967295465eSAlexander Motin ts->ts_ticks = (ts->ts_ticks / (ts->ts_ltick - ts->ts_ftick)) * 17977295465eSAlexander Motin (ts->ts_ltick - (t - SCHED_TICK_TARG)); 17987295465eSAlexander Motin ts->ts_ftick = t - SCHED_TICK_TARG; 17997295465eSAlexander Motin } 18007295465eSAlexander Motin if (run) 18017295465eSAlexander Motin ts->ts_ticks += (t - ts->ts_ltick) << SCHED_TICK_SHIFT; 18027295465eSAlexander Motin ts->ts_ltick = t; 180335e6168fSJeff Roberson } 180435e6168fSJeff Roberson 1805ae7a6b38SJeff Roberson /* 1806ae7a6b38SJeff Roberson * Adjust the priority of a thread. Move it to the appropriate run-queue 1807ae7a6b38SJeff Roberson * if necessary. This is the back-end for several priority related 1808ae7a6b38SJeff Roberson * functions. 1809ae7a6b38SJeff Roberson */ 1810e7d50326SJeff Roberson static void 1811f5c157d9SJohn Baldwin sched_thread_priority(struct thread *td, u_char prio) 181235e6168fSJeff Roberson { 181373daf66fSJeff Roberson struct tdq *tdq; 181473daf66fSJeff Roberson int oldpri; 181535e6168fSJeff Roberson 18168f51ad55SJeff Roberson KTR_POINT3(KTR_SCHED, "thread", sched_tdname(td), "prio", 18178f51ad55SJeff Roberson "prio:%d", td->td_priority, "new prio:%d", prio, 18188f51ad55SJeff Roberson KTR_ATTR_LINKED, sched_tdname(curthread)); 1819d9fae5abSAndriy Gapon SDT_PROBE3(sched, , , change__pri, td, td->td_proc, prio); 1820e87fc7cfSAndriy Gapon if (td != curthread && prio < td->td_priority) { 18218f51ad55SJeff Roberson KTR_POINT3(KTR_SCHED, "thread", sched_tdname(curthread), 18228f51ad55SJeff Roberson "lend prio", "prio:%d", td->td_priority, "new prio:%d", 18238f51ad55SJeff Roberson prio, KTR_ATTR_LINKED, sched_tdname(td)); 1824d9fae5abSAndriy Gapon SDT_PROBE4(sched, , , lend__pri, td, td->td_proc, prio, 1825b3e9e682SRyan Stone curthread); 18268f51ad55SJeff Roberson } 18277b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1828f5c157d9SJohn Baldwin if (td->td_priority == prio) 1829f5c157d9SJohn Baldwin return; 18303f741ca1SJeff Roberson /* 18313f741ca1SJeff Roberson * If the priority has been elevated due to priority 18323f741ca1SJeff Roberson * propagation, we may have to move ourselves to a new 1833e7d50326SJeff Roberson * queue. This could be optimized to not re-add in some 1834e7d50326SJeff Roberson * cases. 1835f2b74cbfSJeff Roberson */ 18366d55b3ecSJeff Roberson if (TD_ON_RUNQ(td) && prio < td->td_priority) { 1837e7d50326SJeff Roberson sched_rem(td); 1838e7d50326SJeff Roberson td->td_priority = prio; 183961a74c5cSJeff Roberson sched_add(td, SRQ_BORROWING | SRQ_HOLDTD); 184073daf66fSJeff Roberson return; 184173daf66fSJeff Roberson } 18426d55b3ecSJeff Roberson /* 18436d55b3ecSJeff Roberson * If the thread is currently running we may have to adjust the lowpri 18446d55b3ecSJeff Roberson * information so other cpus are aware of our current priority. 18456d55b3ecSJeff Roberson */ 18466d55b3ecSJeff Roberson if (TD_IS_RUNNING(td)) { 18474aec1984SJohn Baldwin tdq = TDQ_CPU(td_get_sched(td)->ts_cpu); 184862fa74d9SJeff Roberson oldpri = td->td_priority; 18493f741ca1SJeff Roberson td->td_priority = prio; 185062fa74d9SJeff Roberson if (prio < tdq->tdq_lowpri) 185162fa74d9SJeff Roberson tdq->tdq_lowpri = prio; 185262fa74d9SJeff Roberson else if (tdq->tdq_lowpri == oldpri) 185362fa74d9SJeff Roberson tdq_setlowpri(tdq, td); 18546d55b3ecSJeff Roberson return; 185573daf66fSJeff Roberson } 18566d55b3ecSJeff Roberson td->td_priority = prio; 1857ae7a6b38SJeff Roberson } 185835e6168fSJeff Roberson 1859f5c157d9SJohn Baldwin /* 1860f5c157d9SJohn Baldwin * Update a thread's priority when it is lent another thread's 1861f5c157d9SJohn Baldwin * priority. 1862f5c157d9SJohn Baldwin */ 1863f5c157d9SJohn Baldwin void 1864f5c157d9SJohn Baldwin sched_lend_prio(struct thread *td, u_char prio) 1865f5c157d9SJohn Baldwin { 1866f5c157d9SJohn Baldwin 1867f5c157d9SJohn Baldwin td->td_flags |= TDF_BORROWING; 1868f5c157d9SJohn Baldwin sched_thread_priority(td, prio); 1869f5c157d9SJohn Baldwin } 1870f5c157d9SJohn Baldwin 1871f5c157d9SJohn Baldwin /* 1872f5c157d9SJohn Baldwin * Restore a thread's priority when priority propagation is 1873f5c157d9SJohn Baldwin * over. The prio argument is the minimum priority the thread 1874f5c157d9SJohn Baldwin * needs to have to satisfy other possible priority lending 1875f5c157d9SJohn Baldwin * requests. If the thread's regular priority is less 1876f5c157d9SJohn Baldwin * important than prio, the thread will keep a priority boost 1877f5c157d9SJohn Baldwin * of prio. 1878f5c157d9SJohn Baldwin */ 1879f5c157d9SJohn Baldwin void 1880f5c157d9SJohn Baldwin sched_unlend_prio(struct thread *td, u_char prio) 1881f5c157d9SJohn Baldwin { 1882f5c157d9SJohn Baldwin u_char base_pri; 1883f5c157d9SJohn Baldwin 1884f5c157d9SJohn Baldwin if (td->td_base_pri >= PRI_MIN_TIMESHARE && 1885f5c157d9SJohn Baldwin td->td_base_pri <= PRI_MAX_TIMESHARE) 18868460a577SJohn Birrell base_pri = td->td_user_pri; 1887f5c157d9SJohn Baldwin else 1888f5c157d9SJohn Baldwin base_pri = td->td_base_pri; 1889f5c157d9SJohn Baldwin if (prio >= base_pri) { 1890f5c157d9SJohn Baldwin td->td_flags &= ~TDF_BORROWING; 1891f5c157d9SJohn Baldwin sched_thread_priority(td, base_pri); 1892f5c157d9SJohn Baldwin } else 1893f5c157d9SJohn Baldwin sched_lend_prio(td, prio); 1894f5c157d9SJohn Baldwin } 1895f5c157d9SJohn Baldwin 1896ae7a6b38SJeff Roberson /* 1897ae7a6b38SJeff Roberson * Standard entry for setting the priority to an absolute value. 1898ae7a6b38SJeff Roberson */ 1899f5c157d9SJohn Baldwin void 1900f5c157d9SJohn Baldwin sched_prio(struct thread *td, u_char prio) 1901f5c157d9SJohn Baldwin { 1902f5c157d9SJohn Baldwin u_char oldprio; 1903f5c157d9SJohn Baldwin 1904f5c157d9SJohn Baldwin /* First, update the base priority. */ 1905f5c157d9SJohn Baldwin td->td_base_pri = prio; 1906f5c157d9SJohn Baldwin 1907f5c157d9SJohn Baldwin /* 190850aaa791SJohn Baldwin * If the thread is borrowing another thread's priority, don't 1909f5c157d9SJohn Baldwin * ever lower the priority. 1910f5c157d9SJohn Baldwin */ 1911f5c157d9SJohn Baldwin if (td->td_flags & TDF_BORROWING && td->td_priority < prio) 1912f5c157d9SJohn Baldwin return; 1913f5c157d9SJohn Baldwin 1914f5c157d9SJohn Baldwin /* Change the real priority. */ 1915f5c157d9SJohn Baldwin oldprio = td->td_priority; 1916f5c157d9SJohn Baldwin sched_thread_priority(td, prio); 1917f5c157d9SJohn Baldwin 1918f5c157d9SJohn Baldwin /* 1919f5c157d9SJohn Baldwin * If the thread is on a turnstile, then let the turnstile update 1920f5c157d9SJohn Baldwin * its state. 1921f5c157d9SJohn Baldwin */ 1922f5c157d9SJohn Baldwin if (TD_ON_LOCK(td) && oldprio != prio) 1923f5c157d9SJohn Baldwin turnstile_adjust(td, oldprio); 1924f5c157d9SJohn Baldwin } 1925f5c157d9SJohn Baldwin 1926ae7a6b38SJeff Roberson /* 1927ae7a6b38SJeff Roberson * Set the base user priority, does not effect current running priority. 1928ae7a6b38SJeff Roberson */ 192935e6168fSJeff Roberson void 19308460a577SJohn Birrell sched_user_prio(struct thread *td, u_char prio) 19313db720fdSDavid Xu { 19323db720fdSDavid Xu 19338460a577SJohn Birrell td->td_base_user_pri = prio; 1934acbe332aSDavid Xu if (td->td_lend_user_pri <= prio) 1935fc6c30f6SJulian Elischer return; 19368460a577SJohn Birrell td->td_user_pri = prio; 19373db720fdSDavid Xu } 19383db720fdSDavid Xu 19393db720fdSDavid Xu void 19403db720fdSDavid Xu sched_lend_user_prio(struct thread *td, u_char prio) 19413db720fdSDavid Xu { 19423db720fdSDavid Xu 1943435806d3SDavid Xu THREAD_LOCK_ASSERT(td, MA_OWNED); 1944acbe332aSDavid Xu td->td_lend_user_pri = prio; 1945c8e368a9SDavid Xu td->td_user_pri = min(prio, td->td_base_user_pri); 1946c8e368a9SDavid Xu if (td->td_priority > td->td_user_pri) 1947c8e368a9SDavid Xu sched_prio(td, td->td_user_pri); 1948c8e368a9SDavid Xu else if (td->td_priority != td->td_user_pri) 1949c8e368a9SDavid Xu td->td_flags |= TDF_NEEDRESCHED; 1950435806d3SDavid Xu } 19513db720fdSDavid Xu 1952ac97da9aSMateusz Guzik /* 1953ac97da9aSMateusz Guzik * Like the above but first check if there is anything to do. 1954ac97da9aSMateusz Guzik */ 1955ac97da9aSMateusz Guzik void 1956ac97da9aSMateusz Guzik sched_lend_user_prio_cond(struct thread *td, u_char prio) 1957ac97da9aSMateusz Guzik { 1958ac97da9aSMateusz Guzik 1959ac97da9aSMateusz Guzik if (td->td_lend_user_pri != prio) 1960ac97da9aSMateusz Guzik goto lend; 1961ac97da9aSMateusz Guzik if (td->td_user_pri != min(prio, td->td_base_user_pri)) 1962ac97da9aSMateusz Guzik goto lend; 1963b77594bbSMateusz Guzik if (td->td_priority != td->td_user_pri) 1964ac97da9aSMateusz Guzik goto lend; 1965ac97da9aSMateusz Guzik return; 1966ac97da9aSMateusz Guzik 1967ac97da9aSMateusz Guzik lend: 1968ac97da9aSMateusz Guzik thread_lock(td); 1969ac97da9aSMateusz Guzik sched_lend_user_prio(td, prio); 1970ac97da9aSMateusz Guzik thread_unlock(td); 1971ac97da9aSMateusz Guzik } 1972ac97da9aSMateusz Guzik 19734c8a8cfcSKonstantin Belousov #ifdef SMP 1974ae7a6b38SJeff Roberson /* 197597e9382dSDon Lewis * This tdq is about to idle. Try to steal a thread from another CPU before 197697e9382dSDon Lewis * choosing the idle thread. 197797e9382dSDon Lewis */ 197897e9382dSDon Lewis static void 197997e9382dSDon Lewis tdq_trysteal(struct tdq *tdq) 198097e9382dSDon Lewis { 19812668bb2aSAlexander Motin struct cpu_group *cg, *parent; 198297e9382dSDon Lewis struct tdq *steal; 198397e9382dSDon Lewis cpuset_t mask; 19842668bb2aSAlexander Motin int cpu, i, goup; 198597e9382dSDon Lewis 198608063e9fSAlexander Motin if (smp_started == 0 || steal_idle == 0 || trysteal_limit == 0 || 198708063e9fSAlexander Motin tdq->tdq_cg == NULL) 198897e9382dSDon Lewis return; 198997e9382dSDon Lewis CPU_FILL(&mask); 199097e9382dSDon Lewis CPU_CLR(PCPU_GET(cpuid), &mask); 199197e9382dSDon Lewis /* We don't want to be preempted while we're iterating. */ 199297e9382dSDon Lewis spinlock_enter(); 199397e9382dSDon Lewis TDQ_UNLOCK(tdq); 19942668bb2aSAlexander Motin for (i = 1, cg = tdq->tdq_cg, goup = 0; ; ) { 199508063e9fSAlexander Motin cpu = sched_highest(cg, &mask, steal_thresh, 1); 199697e9382dSDon Lewis /* 199797e9382dSDon Lewis * If a thread was added while interrupts were disabled don't 199897e9382dSDon Lewis * steal one here. 199997e9382dSDon Lewis */ 200097e9382dSDon Lewis if (tdq->tdq_load > 0) { 200197e9382dSDon Lewis TDQ_LOCK(tdq); 200297e9382dSDon Lewis break; 200397e9382dSDon Lewis } 20042668bb2aSAlexander Motin 20052668bb2aSAlexander Motin /* 20062668bb2aSAlexander Motin * We found no CPU to steal from in this group. Escalate to 20072668bb2aSAlexander Motin * the parent and repeat. But if parent has only two children 20082668bb2aSAlexander Motin * groups we can avoid searching this group again by searching 20092668bb2aSAlexander Motin * the other one specifically and then escalating two levels. 20102668bb2aSAlexander Motin */ 201197e9382dSDon Lewis if (cpu == -1) { 20122668bb2aSAlexander Motin if (goup) { 201397e9382dSDon Lewis cg = cg->cg_parent; 20142668bb2aSAlexander Motin goup = 0; 20152668bb2aSAlexander Motin } 20162668bb2aSAlexander Motin if (++i > trysteal_limit) { 201797e9382dSDon Lewis TDQ_LOCK(tdq); 201897e9382dSDon Lewis break; 201997e9382dSDon Lewis } 20202668bb2aSAlexander Motin parent = cg->cg_parent; 20212668bb2aSAlexander Motin if (parent == NULL) { 20222668bb2aSAlexander Motin TDQ_LOCK(tdq); 20232668bb2aSAlexander Motin break; 20242668bb2aSAlexander Motin } 20252668bb2aSAlexander Motin if (parent->cg_children == 2) { 20262668bb2aSAlexander Motin if (cg == &parent->cg_child[0]) 20272668bb2aSAlexander Motin cg = &parent->cg_child[1]; 20282668bb2aSAlexander Motin else 20292668bb2aSAlexander Motin cg = &parent->cg_child[0]; 20302668bb2aSAlexander Motin goup = 1; 20312668bb2aSAlexander Motin } else 20322668bb2aSAlexander Motin cg = parent; 203397e9382dSDon Lewis continue; 203497e9382dSDon Lewis } 203597e9382dSDon Lewis steal = TDQ_CPU(cpu); 203697e9382dSDon Lewis /* 203797e9382dSDon Lewis * The data returned by sched_highest() is stale and 203897e9382dSDon Lewis * the chosen CPU no longer has an eligible thread. 203915b5c347SGordon Bergling * At this point unconditionally exit the loop to bound 204008063e9fSAlexander Motin * the time spent in the critcal section. 204197e9382dSDon Lewis */ 204297e9382dSDon Lewis if (steal->tdq_load < steal_thresh || 204397e9382dSDon Lewis steal->tdq_transferable == 0) 204497e9382dSDon Lewis continue; 204597e9382dSDon Lewis /* 20468bb173fbSAlexander Motin * Try to lock both queues. If we are assigned a thread while 20478bb173fbSAlexander Motin * waited for the lock, switch to it now instead of stealing. 20488bb173fbSAlexander Motin * If we can't get the lock, then somebody likely got there 204908063e9fSAlexander Motin * first. 205097e9382dSDon Lewis */ 20518bb173fbSAlexander Motin TDQ_LOCK(tdq); 20528bb173fbSAlexander Motin if (tdq->tdq_load > 0) 205397e9382dSDon Lewis break; 20548bb173fbSAlexander Motin if (TDQ_TRYLOCK_FLAGS(steal, MTX_DUPOK) == 0) 20558bb173fbSAlexander Motin break; 205697e9382dSDon Lewis /* 205797e9382dSDon Lewis * The data returned by sched_highest() is stale and 205897e9382dSDon Lewis * the chosen CPU no longer has an eligible thread. 205997e9382dSDon Lewis */ 206097e9382dSDon Lewis if (steal->tdq_load < steal_thresh || 206197e9382dSDon Lewis steal->tdq_transferable == 0) { 206297e9382dSDon Lewis TDQ_UNLOCK(steal); 206397e9382dSDon Lewis break; 206497e9382dSDon Lewis } 206597e9382dSDon Lewis /* 206697e9382dSDon Lewis * If we fail to acquire one due to affinity restrictions, 206797e9382dSDon Lewis * bail out and let the idle thread to a more complete search 206897e9382dSDon Lewis * outside of a critical section. 206997e9382dSDon Lewis */ 207097e9382dSDon Lewis if (tdq_move(steal, tdq) == NULL) { 207197e9382dSDon Lewis TDQ_UNLOCK(steal); 207297e9382dSDon Lewis break; 207397e9382dSDon Lewis } 207497e9382dSDon Lewis TDQ_UNLOCK(steal); 207597e9382dSDon Lewis break; 207697e9382dSDon Lewis } 207797e9382dSDon Lewis spinlock_exit(); 207897e9382dSDon Lewis } 20794c8a8cfcSKonstantin Belousov #endif 208097e9382dSDon Lewis 208197e9382dSDon Lewis /* 2082c47f202bSJeff Roberson * Handle migration from sched_switch(). This happens only for 2083c47f202bSJeff Roberson * cpu binding. 2084c47f202bSJeff Roberson */ 2085c47f202bSJeff Roberson static struct mtx * 2086c47f202bSJeff Roberson sched_switch_migrate(struct tdq *tdq, struct thread *td, int flags) 2087c47f202bSJeff Roberson { 2088c47f202bSJeff Roberson struct tdq *tdn; 2089c47f202bSJeff Roberson 2090686bcb5cSJeff Roberson KASSERT(THREAD_CAN_MIGRATE(td) || 2091686bcb5cSJeff Roberson (td_get_sched(td)->ts_flags & TSF_BOUND) != 0, 2092686bcb5cSJeff Roberson ("Thread %p shouldn't migrate", td)); 2093efe67753SNathan Whitehorn KASSERT(!CPU_ABSENT(td_get_sched(td)->ts_cpu), ("sched_switch_migrate: " 2094efe67753SNathan Whitehorn "thread %s queued on absent CPU %d.", td->td_name, 2095efe67753SNathan Whitehorn td_get_sched(td)->ts_cpu)); 209693ccd6bfSKonstantin Belousov tdn = TDQ_CPU(td_get_sched(td)->ts_cpu); 2097c47f202bSJeff Roberson #ifdef SMP 20989727e637SJeff Roberson tdq_load_rem(tdq, td); 2099c47f202bSJeff Roberson /* 2100686bcb5cSJeff Roberson * Do the lock dance required to avoid LOR. We have an 2101686bcb5cSJeff Roberson * extra spinlock nesting from sched_switch() which will 2102686bcb5cSJeff Roberson * prevent preemption while we're holding neither run-queue lock. 2103c47f202bSJeff Roberson */ 2104686bcb5cSJeff Roberson TDQ_UNLOCK(tdq); 2105686bcb5cSJeff Roberson TDQ_LOCK(tdn); 2106c47f202bSJeff Roberson tdq_add(tdn, td, flags); 210727ee18adSRyan Stone tdq_notify(tdn, td); 2108c47f202bSJeff Roberson TDQ_UNLOCK(tdn); 2109686bcb5cSJeff Roberson TDQ_LOCK(tdq); 2110c47f202bSJeff Roberson #endif 2111c47f202bSJeff Roberson return (TDQ_LOCKPTR(tdn)); 2112c47f202bSJeff Roberson } 2113c47f202bSJeff Roberson 2114c47f202bSJeff Roberson /* 211561a74c5cSJeff Roberson * thread_lock_unblock() that does not assume td_lock is blocked. 2116ae7a6b38SJeff Roberson */ 2117ae7a6b38SJeff Roberson static inline void 2118ae7a6b38SJeff Roberson thread_unblock_switch(struct thread *td, struct mtx *mtx) 2119ae7a6b38SJeff Roberson { 2120ae7a6b38SJeff Roberson atomic_store_rel_ptr((volatile uintptr_t *)&td->td_lock, 2121ae7a6b38SJeff Roberson (uintptr_t)mtx); 2122ae7a6b38SJeff Roberson } 2123ae7a6b38SJeff Roberson 2124ae7a6b38SJeff Roberson /* 2125ae7a6b38SJeff Roberson * Switch threads. This function has to handle threads coming in while 2126ae7a6b38SJeff Roberson * blocked for some reason, running, or idle. It also must deal with 2127ae7a6b38SJeff Roberson * migrating a thread from one queue to another as running threads may 2128ae7a6b38SJeff Roberson * be assigned elsewhere via binding. 2129ae7a6b38SJeff Roberson */ 21303db720fdSDavid Xu void 2131686bcb5cSJeff Roberson sched_switch(struct thread *td, int flags) 213235e6168fSJeff Roberson { 2133686bcb5cSJeff Roberson struct thread *newtd; 2134c02bbb43SJeff Roberson struct tdq *tdq; 2135ad1e7d28SJulian Elischer struct td_sched *ts; 2136ae7a6b38SJeff Roberson struct mtx *mtx; 2137c47f202bSJeff Roberson int srqflag; 21388db16699SAlexander Motin int cpuid, preempted; 21398db16699SAlexander Motin #ifdef SMP 21408db16699SAlexander Motin int pickcpu; 21418db16699SAlexander Motin #endif 214235e6168fSJeff Roberson 21437b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 214435e6168fSJeff Roberson 2145ae7a6b38SJeff Roberson cpuid = PCPU_GET(cpuid); 2146018ff686SJeff Roberson tdq = TDQ_SELF(); 214793ccd6bfSKonstantin Belousov ts = td_get_sched(td); 21487295465eSAlexander Motin sched_pctcpu_update(ts, 1); 21498db16699SAlexander Motin #ifdef SMP 2150e745d729SAlexander Motin pickcpu = (td->td_flags & TDF_PICKCPU) != 0; 2151e745d729SAlexander Motin if (pickcpu) 2152e745d729SAlexander Motin ts->ts_rltick = ticks - affinity * MAX_CACHE_LEVELS; 2153e745d729SAlexander Motin else 2154ae7a6b38SJeff Roberson ts->ts_rltick = ticks; 21558db16699SAlexander Motin #endif 2156060563ecSJulian Elischer td->td_lastcpu = td->td_oncpu; 2157ad9dadc4SAndriy Gapon preempted = (td->td_flags & TDF_SLICEEND) == 0 && 2158ad9dadc4SAndriy Gapon (flags & SW_PREEMPT) != 0; 2159e745d729SAlexander Motin td->td_flags &= ~(TDF_NEEDRESCHED | TDF_PICKCPU | TDF_SLICEEND); 216077918643SStephan Uphoff td->td_owepreempt = 0; 21617789ab32SMark Johnston tdq->tdq_owepreempt = 0; 21622c27cb3aSAlexander Motin if (!TD_IS_IDLETHREAD(td)) 21631690c6c1SJeff Roberson tdq->tdq_switchcnt++; 21647789ab32SMark Johnston 2165b11fdad0SJeff Roberson /* 2166686bcb5cSJeff Roberson * Always block the thread lock so we can drop the tdq lock early. 2167b11fdad0SJeff Roberson */ 2168686bcb5cSJeff Roberson mtx = thread_lock_block(td); 2169686bcb5cSJeff Roberson spinlock_enter(); 2170486a9414SJulian Elischer if (TD_IS_IDLETHREAD(td)) { 2171686bcb5cSJeff Roberson MPASS(mtx == TDQ_LOCKPTR(tdq)); 2172bf0acc27SJohn Baldwin TD_SET_CAN_RUN(td); 21737b20fb19SJeff Roberson } else if (TD_IS_RUNNING(td)) { 2174686bcb5cSJeff Roberson MPASS(mtx == TDQ_LOCKPTR(tdq)); 21753d7f4117SAlexander Motin srqflag = preempted ? 2176598b368dSJeff Roberson SRQ_OURSELF|SRQ_YIELDING|SRQ_PREEMPTED : 2177c47f202bSJeff Roberson SRQ_OURSELF|SRQ_YIELDING; 2178ba4932b5SMatthew D Fleming #ifdef SMP 2179e745d729SAlexander Motin if (THREAD_CAN_MIGRATE(td) && (!THREAD_CAN_SCHED(td, ts->ts_cpu) 2180e745d729SAlexander Motin || pickcpu)) 21810f7a0ebdSMatthew D Fleming ts->ts_cpu = sched_pickcpu(td, 0); 2182ba4932b5SMatthew D Fleming #endif 2183c47f202bSJeff Roberson if (ts->ts_cpu == cpuid) 21849727e637SJeff Roberson tdq_runq_add(tdq, td, srqflag); 2185686bcb5cSJeff Roberson else 2186c47f202bSJeff Roberson mtx = sched_switch_migrate(tdq, td, srqflag); 2187ae7a6b38SJeff Roberson } else { 2188ae7a6b38SJeff Roberson /* This thread must be going to sleep. */ 218961a74c5cSJeff Roberson if (mtx != TDQ_LOCKPTR(tdq)) { 219061a74c5cSJeff Roberson mtx_unlock_spin(mtx); 219161a74c5cSJeff Roberson TDQ_LOCK(tdq); 219261a74c5cSJeff Roberson } 21939727e637SJeff Roberson tdq_load_rem(tdq, td); 21944c8a8cfcSKonstantin Belousov #ifdef SMP 219597e9382dSDon Lewis if (tdq->tdq_load == 0) 219697e9382dSDon Lewis tdq_trysteal(tdq); 21974c8a8cfcSKonstantin Belousov #endif 2198ae7a6b38SJeff Roberson } 2199afa0a46cSAndriy Gapon 2200afa0a46cSAndriy Gapon #if (KTR_COMPILE & KTR_SCHED) != 0 2201afa0a46cSAndriy Gapon if (TD_IS_IDLETHREAD(td)) 2202afa0a46cSAndriy Gapon KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "idle", 2203afa0a46cSAndriy Gapon "prio:%d", td->td_priority); 2204afa0a46cSAndriy Gapon else 2205afa0a46cSAndriy Gapon KTR_STATE3(KTR_SCHED, "thread", sched_tdname(td), KTDSTATE(td), 2206afa0a46cSAndriy Gapon "prio:%d", td->td_priority, "wmesg:\"%s\"", td->td_wmesg, 2207afa0a46cSAndriy Gapon "lockname:\"%s\"", td->td_lockname); 2208afa0a46cSAndriy Gapon #endif 2209afa0a46cSAndriy Gapon 2210ae7a6b38SJeff Roberson /* 2211ae7a6b38SJeff Roberson * We enter here with the thread blocked and assigned to the 2212ae7a6b38SJeff Roberson * appropriate cpu run-queue or sleep-queue and with the current 2213ae7a6b38SJeff Roberson * thread-queue locked. 2214ae7a6b38SJeff Roberson */ 2215ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED | MA_NOTRECURSED); 22162454aaf5SJeff Roberson newtd = choosethread(); 2217686bcb5cSJeff Roberson sched_pctcpu_update(td_get_sched(newtd), 0); 2218686bcb5cSJeff Roberson TDQ_UNLOCK(tdq); 2219686bcb5cSJeff Roberson 2220ae7a6b38SJeff Roberson /* 2221ae7a6b38SJeff Roberson * Call the MD code to switch contexts if necessary. 2222ae7a6b38SJeff Roberson */ 2223ebccf1e3SJoseph Koshy if (td != newtd) { 2224ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS 2225ebccf1e3SJoseph Koshy if (PMC_PROC_IS_USING_PMCS(td->td_proc)) 2226ebccf1e3SJoseph Koshy PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_OUT); 2227ebccf1e3SJoseph Koshy #endif 2228d9fae5abSAndriy Gapon SDT_PROBE2(sched, , , off__cpu, newtd, newtd->td_proc); 22296f5f25e5SJohn Birrell 22306f5f25e5SJohn Birrell #ifdef KDTRACE_HOOKS 22316f5f25e5SJohn Birrell /* 22326f5f25e5SJohn Birrell * If DTrace has set the active vtime enum to anything 22336f5f25e5SJohn Birrell * other than INACTIVE (0), then it should have set the 22346f5f25e5SJohn Birrell * function to call. 22356f5f25e5SJohn Birrell */ 22366f5f25e5SJohn Birrell if (dtrace_vtime_active) 22376f5f25e5SJohn Birrell (*dtrace_vtime_switch_func)(newtd); 22386f5f25e5SJohn Birrell #endif 2239686bcb5cSJeff Roberson td->td_oncpu = NOCPU; 2240ae7a6b38SJeff Roberson cpu_switch(td, newtd, mtx); 2241a89c2c8cSMark Johnston cpuid = td->td_oncpu = PCPU_GET(cpuid); 2242b3e9e682SRyan Stone 2243d9fae5abSAndriy Gapon SDT_PROBE0(sched, , , on__cpu); 2244ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS 2245ebccf1e3SJoseph Koshy if (PMC_PROC_IS_USING_PMCS(td->td_proc)) 2246ebccf1e3SJoseph Koshy PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_IN); 2247ebccf1e3SJoseph Koshy #endif 2248b3e9e682SRyan Stone } else { 2249ae7a6b38SJeff Roberson thread_unblock_switch(td, mtx); 2250d9fae5abSAndriy Gapon SDT_PROBE0(sched, , , remain__cpu); 2251b3e9e682SRyan Stone } 2252686bcb5cSJeff Roberson KASSERT(curthread->td_md.md_spinlock_count == 1, 2253686bcb5cSJeff Roberson ("invalid count %d", curthread->td_md.md_spinlock_count)); 2254afa0a46cSAndriy Gapon 2255afa0a46cSAndriy Gapon KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "running", 2256afa0a46cSAndriy Gapon "prio:%d", td->td_priority); 225735e6168fSJeff Roberson } 225835e6168fSJeff Roberson 2259ae7a6b38SJeff Roberson /* 2260ae7a6b38SJeff Roberson * Adjust thread priorities as a result of a nice request. 2261ae7a6b38SJeff Roberson */ 226235e6168fSJeff Roberson void 2263fa885116SJulian Elischer sched_nice(struct proc *p, int nice) 226435e6168fSJeff Roberson { 226535e6168fSJeff Roberson struct thread *td; 226635e6168fSJeff Roberson 2267fa885116SJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 2268e7d50326SJeff Roberson 2269fa885116SJulian Elischer p->p_nice = nice; 22708460a577SJohn Birrell FOREACH_THREAD_IN_PROC(p, td) { 22717b20fb19SJeff Roberson thread_lock(td); 22728460a577SJohn Birrell sched_priority(td); 2273e7d50326SJeff Roberson sched_prio(td, td->td_base_user_pri); 22747b20fb19SJeff Roberson thread_unlock(td); 227535e6168fSJeff Roberson } 2276fa885116SJulian Elischer } 227735e6168fSJeff Roberson 2278ae7a6b38SJeff Roberson /* 2279ae7a6b38SJeff Roberson * Record the sleep time for the interactivity scorer. 2280ae7a6b38SJeff Roberson */ 228135e6168fSJeff Roberson void 2282c5aa6b58SJeff Roberson sched_sleep(struct thread *td, int prio) 228335e6168fSJeff Roberson { 2284e7d50326SJeff Roberson 22857b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 228635e6168fSJeff Roberson 228754b0e65fSJeff Roberson td->td_slptick = ticks; 228817c4c356SKonstantin Belousov if (TD_IS_SUSPENDED(td) || prio >= PSOCK) 2289c5aa6b58SJeff Roberson td->td_flags |= TDF_CANSWAP; 22902dc29adbSJohn Baldwin if (PRI_BASE(td->td_pri_class) != PRI_TIMESHARE) 22912dc29adbSJohn Baldwin return; 22920502fe2eSJeff Roberson if (static_boost == 1 && prio) 2293c5aa6b58SJeff Roberson sched_prio(td, prio); 22940502fe2eSJeff Roberson else if (static_boost && td->td_priority > static_boost) 22950502fe2eSJeff Roberson sched_prio(td, static_boost); 229635e6168fSJeff Roberson } 229735e6168fSJeff Roberson 2298ae7a6b38SJeff Roberson /* 2299ae7a6b38SJeff Roberson * Schedule a thread to resume execution and record how long it voluntarily 2300ae7a6b38SJeff Roberson * slept. We also update the pctcpu, interactivity, and priority. 230161a74c5cSJeff Roberson * 230261a74c5cSJeff Roberson * Requires the thread lock on entry, drops on exit. 2303ae7a6b38SJeff Roberson */ 230435e6168fSJeff Roberson void 230561a74c5cSJeff Roberson sched_wakeup(struct thread *td, int srqflags) 230635e6168fSJeff Roberson { 230714618990SJeff Roberson struct td_sched *ts; 2308ae7a6b38SJeff Roberson int slptick; 2309e7d50326SJeff Roberson 23107b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 231193ccd6bfSKonstantin Belousov ts = td_get_sched(td); 2312c5aa6b58SJeff Roberson td->td_flags &= ~TDF_CANSWAP; 231361a74c5cSJeff Roberson 231435e6168fSJeff Roberson /* 2315e7d50326SJeff Roberson * If we slept for more than a tick update our interactivity and 2316e7d50326SJeff Roberson * priority. 231735e6168fSJeff Roberson */ 231854b0e65fSJeff Roberson slptick = td->td_slptick; 231954b0e65fSJeff Roberson td->td_slptick = 0; 2320ae7a6b38SJeff Roberson if (slptick && slptick != ticks) { 23217295465eSAlexander Motin ts->ts_slptime += (ticks - slptick) << SCHED_TICK_SHIFT; 23228460a577SJohn Birrell sched_interact_update(td); 23237295465eSAlexander Motin sched_pctcpu_update(ts, 0); 2324f1e8dc4aSJeff Roberson } 23255e5c3873SJeff Roberson /* 23265e5c3873SJeff Roberson * Reset the slice value since we slept and advanced the round-robin. 23275e5c3873SJeff Roberson */ 23285e5c3873SJeff Roberson ts->ts_slice = 0; 232961a74c5cSJeff Roberson sched_add(td, SRQ_BORING | srqflags); 233035e6168fSJeff Roberson } 233135e6168fSJeff Roberson 233235e6168fSJeff Roberson /* 233335e6168fSJeff Roberson * Penalize the parent for creating a new child and initialize the child's 233435e6168fSJeff Roberson * priority. 233535e6168fSJeff Roberson */ 233635e6168fSJeff Roberson void 23378460a577SJohn Birrell sched_fork(struct thread *td, struct thread *child) 233815dc847eSJeff Roberson { 23397b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 234093ccd6bfSKonstantin Belousov sched_pctcpu_update(td_get_sched(td), 1); 2341ad1e7d28SJulian Elischer sched_fork_thread(td, child); 2342e7d50326SJeff Roberson /* 2343e7d50326SJeff Roberson * Penalize the parent and child for forking. 2344e7d50326SJeff Roberson */ 2345e7d50326SJeff Roberson sched_interact_fork(child); 2346e7d50326SJeff Roberson sched_priority(child); 234793ccd6bfSKonstantin Belousov td_get_sched(td)->ts_runtime += tickincr; 2348e7d50326SJeff Roberson sched_interact_update(td); 2349e7d50326SJeff Roberson sched_priority(td); 2350ad1e7d28SJulian Elischer } 2351ad1e7d28SJulian Elischer 2352ae7a6b38SJeff Roberson /* 2353ae7a6b38SJeff Roberson * Fork a new thread, may be within the same process. 2354ae7a6b38SJeff Roberson */ 2355ad1e7d28SJulian Elischer void 2356ad1e7d28SJulian Elischer sched_fork_thread(struct thread *td, struct thread *child) 2357ad1e7d28SJulian Elischer { 2358ad1e7d28SJulian Elischer struct td_sched *ts; 2359ad1e7d28SJulian Elischer struct td_sched *ts2; 23605e5c3873SJeff Roberson struct tdq *tdq; 23618460a577SJohn Birrell 23625e5c3873SJeff Roberson tdq = TDQ_SELF(); 23638b16c208SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 2364e7d50326SJeff Roberson /* 2365e7d50326SJeff Roberson * Initialize child. 2366e7d50326SJeff Roberson */ 236793ccd6bfSKonstantin Belousov ts = td_get_sched(td); 236893ccd6bfSKonstantin Belousov ts2 = td_get_sched(child); 236992de34dfSJohn Baldwin child->td_oncpu = NOCPU; 237092de34dfSJohn Baldwin child->td_lastcpu = NOCPU; 23715e5c3873SJeff Roberson child->td_lock = TDQ_LOCKPTR(tdq); 23728b16c208SJeff Roberson child->td_cpuset = cpuset_ref(td->td_cpuset); 23733f289c3fSJeff Roberson child->td_domain.dr_policy = td->td_cpuset->cs_domain; 2374ad1e7d28SJulian Elischer ts2->ts_cpu = ts->ts_cpu; 23758b16c208SJeff Roberson ts2->ts_flags = 0; 2376e7d50326SJeff Roberson /* 237722d19207SJohn Baldwin * Grab our parents cpu estimation information. 2378e7d50326SJeff Roberson */ 2379ad1e7d28SJulian Elischer ts2->ts_ticks = ts->ts_ticks; 2380ad1e7d28SJulian Elischer ts2->ts_ltick = ts->ts_ltick; 2381ad1e7d28SJulian Elischer ts2->ts_ftick = ts->ts_ftick; 238222d19207SJohn Baldwin /* 238322d19207SJohn Baldwin * Do not inherit any borrowed priority from the parent. 238422d19207SJohn Baldwin */ 238522d19207SJohn Baldwin child->td_priority = child->td_base_pri; 2386e7d50326SJeff Roberson /* 2387e7d50326SJeff Roberson * And update interactivity score. 2388e7d50326SJeff Roberson */ 2389ae7a6b38SJeff Roberson ts2->ts_slptime = ts->ts_slptime; 2390ae7a6b38SJeff Roberson ts2->ts_runtime = ts->ts_runtime; 23915e5c3873SJeff Roberson /* Attempt to quickly learn interactivity. */ 23925e5c3873SJeff Roberson ts2->ts_slice = tdq_slice(tdq) - sched_slice_min; 23938f51ad55SJeff Roberson #ifdef KTR 23948f51ad55SJeff Roberson bzero(ts2->ts_name, sizeof(ts2->ts_name)); 23958f51ad55SJeff Roberson #endif 239615dc847eSJeff Roberson } 239715dc847eSJeff Roberson 2398ae7a6b38SJeff Roberson /* 2399ae7a6b38SJeff Roberson * Adjust the priority class of a thread. 2400ae7a6b38SJeff Roberson */ 240115dc847eSJeff Roberson void 24028460a577SJohn Birrell sched_class(struct thread *td, int class) 240315dc847eSJeff Roberson { 240415dc847eSJeff Roberson 24057b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 24068460a577SJohn Birrell if (td->td_pri_class == class) 240715dc847eSJeff Roberson return; 24088460a577SJohn Birrell td->td_pri_class = class; 240935e6168fSJeff Roberson } 241035e6168fSJeff Roberson 241135e6168fSJeff Roberson /* 241235e6168fSJeff Roberson * Return some of the child's priority and interactivity to the parent. 241335e6168fSJeff Roberson */ 241435e6168fSJeff Roberson void 2415fc6c30f6SJulian Elischer sched_exit(struct proc *p, struct thread *child) 241635e6168fSJeff Roberson { 2417e7d50326SJeff Roberson struct thread *td; 2418141ad61cSJeff Roberson 24198f51ad55SJeff Roberson KTR_STATE1(KTR_SCHED, "thread", sched_tdname(child), "proc exit", 2420cd39bb09SXin LI "prio:%d", child->td_priority); 2421374ae2a3SJeff Roberson PROC_LOCK_ASSERT(p, MA_OWNED); 2422e7d50326SJeff Roberson td = FIRST_THREAD_IN_PROC(p); 2423e7d50326SJeff Roberson sched_exit_thread(td, child); 2424ad1e7d28SJulian Elischer } 2425ad1e7d28SJulian Elischer 2426ae7a6b38SJeff Roberson /* 2427ae7a6b38SJeff Roberson * Penalize another thread for the time spent on this one. This helps to 2428ae7a6b38SJeff Roberson * worsen the priority and interactivity of processes which schedule batch 2429ae7a6b38SJeff Roberson * jobs such as make. This has little effect on the make process itself but 2430ae7a6b38SJeff Roberson * causes new processes spawned by it to receive worse scores immediately. 2431ae7a6b38SJeff Roberson */ 2432ad1e7d28SJulian Elischer void 2433fc6c30f6SJulian Elischer sched_exit_thread(struct thread *td, struct thread *child) 2434ad1e7d28SJulian Elischer { 2435fc6c30f6SJulian Elischer 24368f51ad55SJeff Roberson KTR_STATE1(KTR_SCHED, "thread", sched_tdname(child), "thread exit", 2437cd39bb09SXin LI "prio:%d", child->td_priority); 2438e7d50326SJeff Roberson /* 2439e7d50326SJeff Roberson * Give the child's runtime to the parent without returning the 2440e7d50326SJeff Roberson * sleep time as a penalty to the parent. This causes shells that 2441e7d50326SJeff Roberson * launch expensive things to mark their children as expensive. 2442e7d50326SJeff Roberson */ 24437b20fb19SJeff Roberson thread_lock(td); 244493ccd6bfSKonstantin Belousov td_get_sched(td)->ts_runtime += td_get_sched(child)->ts_runtime; 2445fc6c30f6SJulian Elischer sched_interact_update(td); 2446e7d50326SJeff Roberson sched_priority(td); 24477b20fb19SJeff Roberson thread_unlock(td); 2448ad1e7d28SJulian Elischer } 2449ad1e7d28SJulian Elischer 2450ff256d9cSJeff Roberson void 2451ff256d9cSJeff Roberson sched_preempt(struct thread *td) 2452ff256d9cSJeff Roberson { 2453ff256d9cSJeff Roberson struct tdq *tdq; 2454686bcb5cSJeff Roberson int flags; 2455ff256d9cSJeff Roberson 2456b3e9e682SRyan Stone SDT_PROBE2(sched, , , surrender, td, td->td_proc); 2457b3e9e682SRyan Stone 2458ff256d9cSJeff Roberson thread_lock(td); 2459ff256d9cSJeff Roberson tdq = TDQ_SELF(); 2460ff256d9cSJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 2461ff256d9cSJeff Roberson if (td->td_priority > tdq->tdq_lowpri) { 2462686bcb5cSJeff Roberson if (td->td_critnest == 1) { 24638df78c41SJeff Roberson flags = SW_INVOL | SW_PREEMPT; 2464686bcb5cSJeff Roberson flags |= TD_IS_IDLETHREAD(td) ? SWT_REMOTEWAKEIDLE : 2465686bcb5cSJeff Roberson SWT_REMOTEPREEMPT; 2466686bcb5cSJeff Roberson mi_switch(flags); 2467686bcb5cSJeff Roberson /* Switch dropped thread lock. */ 2468686bcb5cSJeff Roberson return; 2469686bcb5cSJeff Roberson } 2470ff256d9cSJeff Roberson td->td_owepreempt = 1; 24717789ab32SMark Johnston } else { 24727789ab32SMark Johnston tdq->tdq_owepreempt = 0; 2473ff256d9cSJeff Roberson } 2474ff256d9cSJeff Roberson thread_unlock(td); 2475ff256d9cSJeff Roberson } 2476ff256d9cSJeff Roberson 2477ae7a6b38SJeff Roberson /* 2478ae7a6b38SJeff Roberson * Fix priorities on return to user-space. Priorities may be elevated due 2479ae7a6b38SJeff Roberson * to static priorities in msleep() or similar. 2480ae7a6b38SJeff Roberson */ 2481ad1e7d28SJulian Elischer void 248228240885SMateusz Guzik sched_userret_slowpath(struct thread *td) 2483ad1e7d28SJulian Elischer { 248428240885SMateusz Guzik 24857b20fb19SJeff Roberson thread_lock(td); 2486ad1e7d28SJulian Elischer td->td_priority = td->td_user_pri; 2487ad1e7d28SJulian Elischer td->td_base_pri = td->td_user_pri; 248862fa74d9SJeff Roberson tdq_setlowpri(TDQ_SELF(), td); 24897b20fb19SJeff Roberson thread_unlock(td); 2490ad1e7d28SJulian Elischer } 249135e6168fSJeff Roberson 2492ae7a6b38SJeff Roberson /* 2493ae7a6b38SJeff Roberson * Handle a stathz tick. This is really only relevant for timeshare 2494ae7a6b38SJeff Roberson * threads. 2495ae7a6b38SJeff Roberson */ 249635e6168fSJeff Roberson void 2497c3cccf95SJeff Roberson sched_clock(struct thread *td, int cnt) 249835e6168fSJeff Roberson { 2499ad1e7d28SJulian Elischer struct tdq *tdq; 2500ad1e7d28SJulian Elischer struct td_sched *ts; 250135e6168fSJeff Roberson 2502ae7a6b38SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 25033f872f85SJeff Roberson tdq = TDQ_SELF(); 25047fcf154aSJeff Roberson #ifdef SMP 25057fcf154aSJeff Roberson /* 25067fcf154aSJeff Roberson * We run the long term load balancer infrequently on the first cpu. 25077fcf154aSJeff Roberson */ 2508c3cccf95SJeff Roberson if (balance_tdq == tdq && smp_started != 0 && rebalance != 0 && 2509c3cccf95SJeff Roberson balance_ticks != 0) { 2510c3cccf95SJeff Roberson balance_ticks -= cnt; 2511c3cccf95SJeff Roberson if (balance_ticks <= 0) 25127fcf154aSJeff Roberson sched_balance(); 25137fcf154aSJeff Roberson } 25147fcf154aSJeff Roberson #endif 25153f872f85SJeff Roberson /* 25161690c6c1SJeff Roberson * Save the old switch count so we have a record of the last ticks 25171690c6c1SJeff Roberson * activity. Initialize the new switch count based on our load. 25181690c6c1SJeff Roberson * If there is some activity seed it to reflect that. 25191690c6c1SJeff Roberson */ 25201690c6c1SJeff Roberson tdq->tdq_oldswitchcnt = tdq->tdq_switchcnt; 25216c47aaaeSJeff Roberson tdq->tdq_switchcnt = tdq->tdq_load; 25221690c6c1SJeff Roberson /* 25233f872f85SJeff Roberson * Advance the insert index once for each tick to ensure that all 25243f872f85SJeff Roberson * threads get a chance to run. 25253f872f85SJeff Roberson */ 25263f872f85SJeff Roberson if (tdq->tdq_idx == tdq->tdq_ridx) { 25273f872f85SJeff Roberson tdq->tdq_idx = (tdq->tdq_idx + 1) % RQ_NQS; 25283f872f85SJeff Roberson if (TAILQ_EMPTY(&tdq->tdq_timeshare.rq_queues[tdq->tdq_ridx])) 25293f872f85SJeff Roberson tdq->tdq_ridx = tdq->tdq_idx; 25303f872f85SJeff Roberson } 253193ccd6bfSKonstantin Belousov ts = td_get_sched(td); 25327295465eSAlexander Motin sched_pctcpu_update(ts, 1); 2533c3cccf95SJeff Roberson if ((td->td_pri_class & PRI_FIFO_BIT) || TD_IS_IDLETHREAD(td)) 2534a8949de2SJeff Roberson return; 2535c3cccf95SJeff Roberson 2536c9a8cba4SJohn Baldwin if (PRI_BASE(td->td_pri_class) == PRI_TIMESHARE) { 2537a8949de2SJeff Roberson /* 2538fd0b8c78SJeff Roberson * We used a tick; charge it to the thread so 2539fd0b8c78SJeff Roberson * that we can compute our interactivity. 254015dc847eSJeff Roberson */ 2541c3cccf95SJeff Roberson td_get_sched(td)->ts_runtime += tickincr * cnt; 25428460a577SJohn Birrell sched_interact_update(td); 254373daf66fSJeff Roberson sched_priority(td); 2544fd0b8c78SJeff Roberson } 2545579895dfSAlexander Motin 254635e6168fSJeff Roberson /* 2547579895dfSAlexander Motin * Force a context switch if the current thread has used up a full 2548579895dfSAlexander Motin * time slice (default is 100ms). 254935e6168fSJeff Roberson */ 2550c3cccf95SJeff Roberson ts->ts_slice += cnt; 2551c3cccf95SJeff Roberson if (ts->ts_slice >= tdq_slice(tdq)) { 25525e5c3873SJeff Roberson ts->ts_slice = 0; 25533d7f4117SAlexander Motin td->td_flags |= TDF_NEEDRESCHED | TDF_SLICEEND; 255435e6168fSJeff Roberson } 2555579895dfSAlexander Motin } 255635e6168fSJeff Roberson 2557ccd0ec40SKonstantin Belousov u_int 2558ccd0ec40SKonstantin Belousov sched_estcpu(struct thread *td __unused) 2559ae7a6b38SJeff Roberson { 2560ae7a6b38SJeff Roberson 2561ccd0ec40SKonstantin Belousov return (0); 2562ae7a6b38SJeff Roberson } 2563ae7a6b38SJeff Roberson 2564ae7a6b38SJeff Roberson /* 2565ae7a6b38SJeff Roberson * Return whether the current CPU has runnable tasks. Used for in-kernel 2566ae7a6b38SJeff Roberson * cooperative idle threads. 2567ae7a6b38SJeff Roberson */ 256835e6168fSJeff Roberson int 256935e6168fSJeff Roberson sched_runnable(void) 257035e6168fSJeff Roberson { 2571ad1e7d28SJulian Elischer struct tdq *tdq; 2572b90816f1SJeff Roberson int load; 257335e6168fSJeff Roberson 2574b90816f1SJeff Roberson load = 1; 2575b90816f1SJeff Roberson 2576ad1e7d28SJulian Elischer tdq = TDQ_SELF(); 25773f741ca1SJeff Roberson if ((curthread->td_flags & TDF_IDLETD) != 0) { 2578d2ad694cSJeff Roberson if (tdq->tdq_load > 0) 25793f741ca1SJeff Roberson goto out; 25803f741ca1SJeff Roberson } else 2581d2ad694cSJeff Roberson if (tdq->tdq_load - 1 > 0) 2582b90816f1SJeff Roberson goto out; 2583b90816f1SJeff Roberson load = 0; 2584b90816f1SJeff Roberson out: 2585b90816f1SJeff Roberson return (load); 258635e6168fSJeff Roberson } 258735e6168fSJeff Roberson 2588ae7a6b38SJeff Roberson /* 2589ae7a6b38SJeff Roberson * Choose the highest priority thread to run. The thread is removed from 2590*ef80894cSMark Johnston * the run-queue while running however the load remains. 2591ae7a6b38SJeff Roberson */ 25927a5e5e2aSJeff Roberson struct thread * 2593c9f25d8fSJeff Roberson sched_choose(void) 2594c9f25d8fSJeff Roberson { 25959727e637SJeff Roberson struct thread *td; 2596ae7a6b38SJeff Roberson struct tdq *tdq; 2597ae7a6b38SJeff Roberson 2598ae7a6b38SJeff Roberson tdq = TDQ_SELF(); 2599ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 26009727e637SJeff Roberson td = tdq_choose(tdq); 26019727e637SJeff Roberson if (td) { 26029727e637SJeff Roberson tdq_runq_rem(tdq, td); 26030502fe2eSJeff Roberson tdq->tdq_lowpri = td->td_priority; 26049727e637SJeff Roberson return (td); 260535e6168fSJeff Roberson } 26060502fe2eSJeff Roberson tdq->tdq_lowpri = PRI_MAX_IDLE; 260762fa74d9SJeff Roberson return (PCPU_GET(idlethread)); 26087a5e5e2aSJeff Roberson } 26097a5e5e2aSJeff Roberson 2610ae7a6b38SJeff Roberson /* 2611ae7a6b38SJeff Roberson * Set owepreempt if necessary. Preemption never happens directly in ULE, 2612ae7a6b38SJeff Roberson * we always request it once we exit a critical section. 2613ae7a6b38SJeff Roberson */ 2614ae7a6b38SJeff Roberson static inline void 2615ae7a6b38SJeff Roberson sched_setpreempt(struct thread *td) 26167a5e5e2aSJeff Roberson { 26177a5e5e2aSJeff Roberson struct thread *ctd; 26187a5e5e2aSJeff Roberson int cpri; 26197a5e5e2aSJeff Roberson int pri; 26207a5e5e2aSJeff Roberson 2621ff256d9cSJeff Roberson THREAD_LOCK_ASSERT(curthread, MA_OWNED); 2622ff256d9cSJeff Roberson 26237a5e5e2aSJeff Roberson ctd = curthread; 26247a5e5e2aSJeff Roberson pri = td->td_priority; 26257a5e5e2aSJeff Roberson cpri = ctd->td_priority; 2626ff256d9cSJeff Roberson if (pri < cpri) 2627ff256d9cSJeff Roberson ctd->td_flags |= TDF_NEEDRESCHED; 2628879e0604SMateusz Guzik if (KERNEL_PANICKED() || pri >= cpri || cold || TD_IS_INHIBITED(ctd)) 2629ae7a6b38SJeff Roberson return; 2630ff256d9cSJeff Roberson if (!sched_shouldpreempt(pri, cpri, 0)) 2631ae7a6b38SJeff Roberson return; 26327a5e5e2aSJeff Roberson ctd->td_owepreempt = 1; 263335e6168fSJeff Roberson } 263435e6168fSJeff Roberson 2635ae7a6b38SJeff Roberson /* 263673daf66fSJeff Roberson * Add a thread to a thread queue. Select the appropriate runq and add the 263773daf66fSJeff Roberson * thread to it. This is the internal function called when the tdq is 263873daf66fSJeff Roberson * predetermined. 2639ae7a6b38SJeff Roberson */ 264035e6168fSJeff Roberson void 2641ae7a6b38SJeff Roberson tdq_add(struct tdq *tdq, struct thread *td, int flags) 264235e6168fSJeff Roberson { 2643c9f25d8fSJeff Roberson 2644ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 264561a74c5cSJeff Roberson THREAD_LOCK_BLOCKED_ASSERT(td, MA_OWNED); 26467a5e5e2aSJeff Roberson KASSERT((td->td_inhibitors == 0), 26477a5e5e2aSJeff Roberson ("sched_add: trying to run inhibited thread")); 26487a5e5e2aSJeff Roberson KASSERT((TD_CAN_RUN(td) || TD_IS_RUNNING(td)), 26497a5e5e2aSJeff Roberson ("sched_add: bad thread state")); 2650b61ce5b0SJeff Roberson KASSERT(td->td_flags & TDF_INMEM, 2651b61ce5b0SJeff Roberson ("sched_add: thread swapped out")); 2652ae7a6b38SJeff Roberson 2653ae7a6b38SJeff Roberson if (td->td_priority < tdq->tdq_lowpri) 2654ae7a6b38SJeff Roberson tdq->tdq_lowpri = td->td_priority; 26559727e637SJeff Roberson tdq_runq_add(tdq, td, flags); 26569727e637SJeff Roberson tdq_load_add(tdq, td); 2657ae7a6b38SJeff Roberson } 2658ae7a6b38SJeff Roberson 2659ae7a6b38SJeff Roberson /* 2660ae7a6b38SJeff Roberson * Select the target thread queue and add a thread to it. Request 2661ae7a6b38SJeff Roberson * preemption or IPI a remote processor if required. 266261a74c5cSJeff Roberson * 266361a74c5cSJeff Roberson * Requires the thread lock on entry, drops on exit. 2664ae7a6b38SJeff Roberson */ 2665ae7a6b38SJeff Roberson void 2666ae7a6b38SJeff Roberson sched_add(struct thread *td, int flags) 2667ae7a6b38SJeff Roberson { 2668ae7a6b38SJeff Roberson struct tdq *tdq; 26697b8bfa0dSJeff Roberson #ifdef SMP 2670ae7a6b38SJeff Roberson int cpu; 2671ae7a6b38SJeff Roberson #endif 26728f51ad55SJeff Roberson 26738f51ad55SJeff Roberson KTR_STATE2(KTR_SCHED, "thread", sched_tdname(td), "runq add", 26748f51ad55SJeff Roberson "prio:%d", td->td_priority, KTR_ATTR_LINKED, 26758f51ad55SJeff Roberson sched_tdname(curthread)); 26768f51ad55SJeff Roberson KTR_POINT1(KTR_SCHED, "thread", sched_tdname(curthread), "wokeup", 26778f51ad55SJeff Roberson KTR_ATTR_LINKED, sched_tdname(td)); 2678b3e9e682SRyan Stone SDT_PROBE4(sched, , , enqueue, td, td->td_proc, NULL, 2679b3e9e682SRyan Stone flags & SRQ_PREEMPTED); 2680ae7a6b38SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 2681ae7a6b38SJeff Roberson /* 2682ae7a6b38SJeff Roberson * Recalculate the priority before we select the target cpu or 2683ae7a6b38SJeff Roberson * run-queue. 2684ae7a6b38SJeff Roberson */ 2685ae7a6b38SJeff Roberson if (PRI_BASE(td->td_pri_class) == PRI_TIMESHARE) 2686ae7a6b38SJeff Roberson sched_priority(td); 2687ae7a6b38SJeff Roberson #ifdef SMP 2688ae7a6b38SJeff Roberson /* 2689ae7a6b38SJeff Roberson * Pick the destination cpu and if it isn't ours transfer to the 2690ae7a6b38SJeff Roberson * target cpu. 2691ae7a6b38SJeff Roberson */ 26929727e637SJeff Roberson cpu = sched_pickcpu(td, flags); 26939727e637SJeff Roberson tdq = sched_setcpu(td, cpu, flags); 2694ae7a6b38SJeff Roberson tdq_add(tdq, td, flags); 269561a74c5cSJeff Roberson if (cpu != PCPU_GET(cpuid)) 269627ee18adSRyan Stone tdq_notify(tdq, td); 269761a74c5cSJeff Roberson else if (!(flags & SRQ_YIELDING)) 269861a74c5cSJeff Roberson sched_setpreempt(td); 2699ae7a6b38SJeff Roberson #else 2700ae7a6b38SJeff Roberson tdq = TDQ_SELF(); 2701ae7a6b38SJeff Roberson /* 2702ae7a6b38SJeff Roberson * Now that the thread is moving to the run-queue, set the lock 2703ae7a6b38SJeff Roberson * to the scheduler's lock. 2704ae7a6b38SJeff Roberson */ 2705e4894505SMark Johnston if (td->td_lock != TDQ_LOCKPTR(tdq)) { 2706e4894505SMark Johnston TDQ_LOCK(tdq); 270761a74c5cSJeff Roberson if ((flags & SRQ_HOLD) != 0) 270861a74c5cSJeff Roberson td->td_lock = TDQ_LOCKPTR(tdq); 270961a74c5cSJeff Roberson else 2710ae7a6b38SJeff Roberson thread_lock_set(td, TDQ_LOCKPTR(tdq)); 2711e4894505SMark Johnston } 2712ae7a6b38SJeff Roberson tdq_add(tdq, td, flags); 2713ae7a6b38SJeff Roberson if (!(flags & SRQ_YIELDING)) 2714ae7a6b38SJeff Roberson sched_setpreempt(td); 271561a74c5cSJeff Roberson #endif 271661a74c5cSJeff Roberson if (!(flags & SRQ_HOLDTD)) 271761a74c5cSJeff Roberson thread_unlock(td); 271835e6168fSJeff Roberson } 271935e6168fSJeff Roberson 2720ae7a6b38SJeff Roberson /* 2721ae7a6b38SJeff Roberson * Remove a thread from a run-queue without running it. This is used 2722ae7a6b38SJeff Roberson * when we're stealing a thread from a remote queue. Otherwise all threads 2723ae7a6b38SJeff Roberson * exit by calling sched_exit_thread() and sched_throw() themselves. 2724ae7a6b38SJeff Roberson */ 272535e6168fSJeff Roberson void 27267cf90fb3SJeff Roberson sched_rem(struct thread *td) 272735e6168fSJeff Roberson { 2728ad1e7d28SJulian Elischer struct tdq *tdq; 27297cf90fb3SJeff Roberson 27308f51ad55SJeff Roberson KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "runq rem", 27318f51ad55SJeff Roberson "prio:%d", td->td_priority); 2732b3e9e682SRyan Stone SDT_PROBE3(sched, , , dequeue, td, td->td_proc, NULL); 273393ccd6bfSKonstantin Belousov tdq = TDQ_CPU(td_get_sched(td)->ts_cpu); 2734ae7a6b38SJeff Roberson TDQ_LOCK_ASSERT(tdq, MA_OWNED); 2735ae7a6b38SJeff Roberson MPASS(td->td_lock == TDQ_LOCKPTR(tdq)); 27367a5e5e2aSJeff Roberson KASSERT(TD_ON_RUNQ(td), 2737ad1e7d28SJulian Elischer ("sched_rem: thread not on run queue")); 27389727e637SJeff Roberson tdq_runq_rem(tdq, td); 27399727e637SJeff Roberson tdq_load_rem(tdq, td); 27407a5e5e2aSJeff Roberson TD_SET_CAN_RUN(td); 274162fa74d9SJeff Roberson if (td->td_priority == tdq->tdq_lowpri) 274262fa74d9SJeff Roberson tdq_setlowpri(tdq, NULL); 274335e6168fSJeff Roberson } 274435e6168fSJeff Roberson 2745ae7a6b38SJeff Roberson /* 2746ae7a6b38SJeff Roberson * Fetch cpu utilization information. Updates on demand. 2747ae7a6b38SJeff Roberson */ 274835e6168fSJeff Roberson fixpt_t 27497cf90fb3SJeff Roberson sched_pctcpu(struct thread *td) 275035e6168fSJeff Roberson { 275135e6168fSJeff Roberson fixpt_t pctcpu; 2752ad1e7d28SJulian Elischer struct td_sched *ts; 275335e6168fSJeff Roberson 275435e6168fSJeff Roberson pctcpu = 0; 275593ccd6bfSKonstantin Belousov ts = td_get_sched(td); 275635e6168fSJeff Roberson 27573da35a0aSJohn Baldwin THREAD_LOCK_ASSERT(td, MA_OWNED); 27587295465eSAlexander Motin sched_pctcpu_update(ts, TD_IS_RUNNING(td)); 2759ad1e7d28SJulian Elischer if (ts->ts_ticks) { 276035e6168fSJeff Roberson int rtick; 276135e6168fSJeff Roberson 276235e6168fSJeff Roberson /* How many rtick per second ? */ 2763e7d50326SJeff Roberson rtick = min(SCHED_TICK_HZ(ts) / SCHED_TICK_SECS, hz); 2764e7d50326SJeff Roberson pctcpu = (FSCALE * ((FSCALE * rtick)/hz)) >> FSHIFT; 276535e6168fSJeff Roberson } 276635e6168fSJeff Roberson 276735e6168fSJeff Roberson return (pctcpu); 276835e6168fSJeff Roberson } 276935e6168fSJeff Roberson 277062fa74d9SJeff Roberson /* 277162fa74d9SJeff Roberson * Enforce affinity settings for a thread. Called after adjustments to 277262fa74d9SJeff Roberson * cpumask. 277362fa74d9SJeff Roberson */ 2774885d51a3SJeff Roberson void 2775885d51a3SJeff Roberson sched_affinity(struct thread *td) 2776885d51a3SJeff Roberson { 277762fa74d9SJeff Roberson #ifdef SMP 277862fa74d9SJeff Roberson struct td_sched *ts; 277962fa74d9SJeff Roberson 278062fa74d9SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 278193ccd6bfSKonstantin Belousov ts = td_get_sched(td); 278262fa74d9SJeff Roberson if (THREAD_CAN_SCHED(td, ts->ts_cpu)) 278362fa74d9SJeff Roberson return; 278453a6c8b3SJeff Roberson if (TD_ON_RUNQ(td)) { 278553a6c8b3SJeff Roberson sched_rem(td); 2786d8d5f036SJeff Roberson sched_add(td, SRQ_BORING | SRQ_HOLDTD); 278753a6c8b3SJeff Roberson return; 278853a6c8b3SJeff Roberson } 278962fa74d9SJeff Roberson if (!TD_IS_RUNNING(td)) 279062fa74d9SJeff Roberson return; 279162fa74d9SJeff Roberson /* 27920f7a0ebdSMatthew D Fleming * Force a switch before returning to userspace. If the 27930f7a0ebdSMatthew D Fleming * target thread is not running locally send an ipi to force 27940f7a0ebdSMatthew D Fleming * the issue. 279562fa74d9SJeff Roberson */ 2796a8103ae8SJohn Baldwin td->td_flags |= TDF_NEEDRESCHED; 27970f7a0ebdSMatthew D Fleming if (td != curthread) 27980f7a0ebdSMatthew D Fleming ipi_cpu(ts->ts_cpu, IPI_PREEMPT); 279962fa74d9SJeff Roberson #endif 2800885d51a3SJeff Roberson } 2801885d51a3SJeff Roberson 2802ae7a6b38SJeff Roberson /* 2803ae7a6b38SJeff Roberson * Bind a thread to a target cpu. 2804ae7a6b38SJeff Roberson */ 28059bacd788SJeff Roberson void 28069bacd788SJeff Roberson sched_bind(struct thread *td, int cpu) 28079bacd788SJeff Roberson { 2808ad1e7d28SJulian Elischer struct td_sched *ts; 28099bacd788SJeff Roberson 2810c47f202bSJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED|MA_NOTRECURSED); 28111d7830edSJohn Baldwin KASSERT(td == curthread, ("sched_bind: can only bind curthread")); 281293ccd6bfSKonstantin Belousov ts = td_get_sched(td); 28136b2f763fSJeff Roberson if (ts->ts_flags & TSF_BOUND) 2814c95d2db2SJeff Roberson sched_unbind(td); 28150f7a0ebdSMatthew D Fleming KASSERT(THREAD_CAN_MIGRATE(td), ("%p must be migratable", td)); 2816ad1e7d28SJulian Elischer ts->ts_flags |= TSF_BOUND; 28176b2f763fSJeff Roberson sched_pin(); 281880f86c9fSJeff Roberson if (PCPU_GET(cpuid) == cpu) 28199bacd788SJeff Roberson return; 28206b2f763fSJeff Roberson ts->ts_cpu = cpu; 28219bacd788SJeff Roberson /* When we return from mi_switch we'll be on the correct cpu. */ 2822686bcb5cSJeff Roberson mi_switch(SW_VOL); 2823686bcb5cSJeff Roberson thread_lock(td); 28249bacd788SJeff Roberson } 28259bacd788SJeff Roberson 2826ae7a6b38SJeff Roberson /* 2827ae7a6b38SJeff Roberson * Release a bound thread. 2828ae7a6b38SJeff Roberson */ 28299bacd788SJeff Roberson void 28309bacd788SJeff Roberson sched_unbind(struct thread *td) 28319bacd788SJeff Roberson { 2832e7d50326SJeff Roberson struct td_sched *ts; 2833e7d50326SJeff Roberson 28347b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 28351d7830edSJohn Baldwin KASSERT(td == curthread, ("sched_unbind: can only bind curthread")); 283693ccd6bfSKonstantin Belousov ts = td_get_sched(td); 28376b2f763fSJeff Roberson if ((ts->ts_flags & TSF_BOUND) == 0) 28386b2f763fSJeff Roberson return; 2839e7d50326SJeff Roberson ts->ts_flags &= ~TSF_BOUND; 2840e7d50326SJeff Roberson sched_unpin(); 28419bacd788SJeff Roberson } 28429bacd788SJeff Roberson 284335e6168fSJeff Roberson int 2844ebccf1e3SJoseph Koshy sched_is_bound(struct thread *td) 2845ebccf1e3SJoseph Koshy { 28467b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 284793ccd6bfSKonstantin Belousov return (td_get_sched(td)->ts_flags & TSF_BOUND); 2848ebccf1e3SJoseph Koshy } 2849ebccf1e3SJoseph Koshy 2850ae7a6b38SJeff Roberson /* 2851ae7a6b38SJeff Roberson * Basic yield call. 2852ae7a6b38SJeff Roberson */ 285336ec198bSDavid Xu void 285436ec198bSDavid Xu sched_relinquish(struct thread *td) 285536ec198bSDavid Xu { 28567b20fb19SJeff Roberson thread_lock(td); 2857686bcb5cSJeff Roberson mi_switch(SW_VOL | SWT_RELINQUISH); 285836ec198bSDavid Xu } 285936ec198bSDavid Xu 2860ae7a6b38SJeff Roberson /* 2861ae7a6b38SJeff Roberson * Return the total system load. 2862ae7a6b38SJeff Roberson */ 2863ebccf1e3SJoseph Koshy int 286433916c36SJeff Roberson sched_load(void) 286533916c36SJeff Roberson { 286633916c36SJeff Roberson #ifdef SMP 286733916c36SJeff Roberson int total; 286833916c36SJeff Roberson int i; 286933916c36SJeff Roberson 287033916c36SJeff Roberson total = 0; 28713aa6d94eSJohn Baldwin CPU_FOREACH(i) 287262fa74d9SJeff Roberson total += TDQ_CPU(i)->tdq_sysload; 287333916c36SJeff Roberson return (total); 287433916c36SJeff Roberson #else 2875d2ad694cSJeff Roberson return (TDQ_SELF()->tdq_sysload); 287633916c36SJeff Roberson #endif 287733916c36SJeff Roberson } 287833916c36SJeff Roberson 287933916c36SJeff Roberson int 288035e6168fSJeff Roberson sched_sizeof_proc(void) 288135e6168fSJeff Roberson { 288235e6168fSJeff Roberson return (sizeof(struct proc)); 288335e6168fSJeff Roberson } 288435e6168fSJeff Roberson 288535e6168fSJeff Roberson int 288635e6168fSJeff Roberson sched_sizeof_thread(void) 288735e6168fSJeff Roberson { 288835e6168fSJeff Roberson return (sizeof(struct thread) + sizeof(struct td_sched)); 288935e6168fSJeff Roberson } 2890b41f1452SDavid Xu 289109c8a4ccSJeff Roberson #ifdef SMP 289209c8a4ccSJeff Roberson #define TDQ_IDLESPIN(tdq) \ 289309c8a4ccSJeff Roberson ((tdq)->tdq_cg != NULL && ((tdq)->tdq_cg->cg_flags & CG_FLAG_THREAD) == 0) 289409c8a4ccSJeff Roberson #else 289509c8a4ccSJeff Roberson #define TDQ_IDLESPIN(tdq) 1 289609c8a4ccSJeff Roberson #endif 289709c8a4ccSJeff Roberson 28987a5e5e2aSJeff Roberson /* 28997a5e5e2aSJeff Roberson * The actual idle process. 29007a5e5e2aSJeff Roberson */ 29017a5e5e2aSJeff Roberson void 29027a5e5e2aSJeff Roberson sched_idletd(void *dummy) 29037a5e5e2aSJeff Roberson { 29047a5e5e2aSJeff Roberson struct thread *td; 2905ae7a6b38SJeff Roberson struct tdq *tdq; 29062c27cb3aSAlexander Motin int oldswitchcnt, switchcnt; 29071690c6c1SJeff Roberson int i; 29087a5e5e2aSJeff Roberson 29097b55ab05SJeff Roberson mtx_assert(&Giant, MA_NOTOWNED); 29107a5e5e2aSJeff Roberson td = curthread; 2911ae7a6b38SJeff Roberson tdq = TDQ_SELF(); 2912ba96d2d8SJohn Baldwin THREAD_NO_SLEEPING(); 29132c27cb3aSAlexander Motin oldswitchcnt = -1; 2914ae7a6b38SJeff Roberson for (;;) { 29152c27cb3aSAlexander Motin if (tdq->tdq_load) { 29162c27cb3aSAlexander Motin thread_lock(td); 2917686bcb5cSJeff Roberson mi_switch(SW_VOL | SWT_IDLE); 29182c27cb3aSAlexander Motin } 29192c27cb3aSAlexander Motin switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt; 2920ae7a6b38SJeff Roberson #ifdef SMP 292197e9382dSDon Lewis if (always_steal || switchcnt != oldswitchcnt) { 29222c27cb3aSAlexander Motin oldswitchcnt = switchcnt; 29231690c6c1SJeff Roberson if (tdq_idled(tdq) == 0) 29241690c6c1SJeff Roberson continue; 29252c27cb3aSAlexander Motin } 29261690c6c1SJeff Roberson switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt; 29272fd4047fSAlexander Motin #else 29282fd4047fSAlexander Motin oldswitchcnt = switchcnt; 29292fd4047fSAlexander Motin #endif 29301690c6c1SJeff Roberson /* 29311690c6c1SJeff Roberson * If we're switching very frequently, spin while checking 29321690c6c1SJeff Roberson * for load rather than entering a low power state that 29337b55ab05SJeff Roberson * may require an IPI. However, don't do any busy 29347b55ab05SJeff Roberson * loops while on SMT machines as this simply steals 29357b55ab05SJeff Roberson * cycles from cores doing useful work. 29361690c6c1SJeff Roberson */ 293709c8a4ccSJeff Roberson if (TDQ_IDLESPIN(tdq) && switchcnt > sched_idlespinthresh) { 29381690c6c1SJeff Roberson for (i = 0; i < sched_idlespins; i++) { 29391690c6c1SJeff Roberson if (tdq->tdq_load) 29401690c6c1SJeff Roberson break; 29411690c6c1SJeff Roberson cpu_spinwait(); 29421690c6c1SJeff Roberson } 29431690c6c1SJeff Roberson } 29442c27cb3aSAlexander Motin 29452c27cb3aSAlexander Motin /* If there was context switch during spin, restart it. */ 29466c47aaaeSJeff Roberson switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt; 29472c27cb3aSAlexander Motin if (tdq->tdq_load != 0 || switchcnt != oldswitchcnt) 29482c27cb3aSAlexander Motin continue; 29492c27cb3aSAlexander Motin 29502c27cb3aSAlexander Motin /* Run main MD idle handler. */ 29519f9ad565SAlexander Motin tdq->tdq_cpu_idle = 1; 295279654969SAlexander Motin /* 295379654969SAlexander Motin * Make sure that tdq_cpu_idle update is globally visible 295479654969SAlexander Motin * before cpu_idle() read tdq_load. The order is important 295579654969SAlexander Motin * to avoid race with tdq_notify. 295679654969SAlexander Motin */ 2957e8677f38SKonstantin Belousov atomic_thread_fence_seq_cst(); 295897e9382dSDon Lewis /* 295997e9382dSDon Lewis * Checking for again after the fence picks up assigned 296097e9382dSDon Lewis * threads often enough to make it worthwhile to do so in 296197e9382dSDon Lewis * order to avoid calling cpu_idle(). 296297e9382dSDon Lewis */ 296397e9382dSDon Lewis if (tdq->tdq_load != 0) { 296497e9382dSDon Lewis tdq->tdq_cpu_idle = 0; 296597e9382dSDon Lewis continue; 296697e9382dSDon Lewis } 29672c27cb3aSAlexander Motin cpu_idle(switchcnt * 4 > sched_idlespinthresh); 29689f9ad565SAlexander Motin tdq->tdq_cpu_idle = 0; 29692c27cb3aSAlexander Motin 29702c27cb3aSAlexander Motin /* 29712c27cb3aSAlexander Motin * Account thread-less hardware interrupts and 29722c27cb3aSAlexander Motin * other wakeup reasons equal to context switches. 29732c27cb3aSAlexander Motin */ 29742c27cb3aSAlexander Motin switchcnt = tdq->tdq_switchcnt + tdq->tdq_oldswitchcnt; 29752c27cb3aSAlexander Motin if (switchcnt != oldswitchcnt) 29762c27cb3aSAlexander Motin continue; 29772c27cb3aSAlexander Motin tdq->tdq_switchcnt++; 29782c27cb3aSAlexander Motin oldswitchcnt++; 2979ae7a6b38SJeff Roberson } 2980b41f1452SDavid Xu } 2981e7d50326SJeff Roberson 29827b20fb19SJeff Roberson /* 29836a8ea6d1SKyle Evans * sched_throw_grab() chooses a thread from the queue to switch to 29846a8ea6d1SKyle Evans * next. It returns with the tdq lock dropped in a spinlock section to 29856a8ea6d1SKyle Evans * keep interrupts disabled until the CPU is running in a proper threaded 29866a8ea6d1SKyle Evans * context. 29876a8ea6d1SKyle Evans */ 29886a8ea6d1SKyle Evans static struct thread * 29896a8ea6d1SKyle Evans sched_throw_grab(struct tdq *tdq) 29906a8ea6d1SKyle Evans { 29916a8ea6d1SKyle Evans struct thread *newtd; 29926a8ea6d1SKyle Evans 29936a8ea6d1SKyle Evans newtd = choosethread(); 29946a8ea6d1SKyle Evans spinlock_enter(); 29956a8ea6d1SKyle Evans TDQ_UNLOCK(tdq); 29966a8ea6d1SKyle Evans KASSERT(curthread->td_md.md_spinlock_count == 1, 29976a8ea6d1SKyle Evans ("invalid count %d", curthread->td_md.md_spinlock_count)); 29986a8ea6d1SKyle Evans return (newtd); 29996a8ea6d1SKyle Evans } 30006a8ea6d1SKyle Evans 30016a8ea6d1SKyle Evans /* 30026a8ea6d1SKyle Evans * A CPU is entering for the first time. 30036a8ea6d1SKyle Evans */ 30046a8ea6d1SKyle Evans void 30056a8ea6d1SKyle Evans sched_ap_entry(void) 30066a8ea6d1SKyle Evans { 30076a8ea6d1SKyle Evans struct thread *newtd; 30086a8ea6d1SKyle Evans struct tdq *tdq; 30096a8ea6d1SKyle Evans 30106a8ea6d1SKyle Evans tdq = TDQ_SELF(); 30116a8ea6d1SKyle Evans 30126a8ea6d1SKyle Evans /* This should have been setup in schedinit_ap(). */ 30136a8ea6d1SKyle Evans THREAD_LOCKPTR_ASSERT(curthread, TDQ_LOCKPTR(tdq)); 30146a8ea6d1SKyle Evans 30156a8ea6d1SKyle Evans TDQ_LOCK(tdq); 30166a8ea6d1SKyle Evans /* Correct spinlock nesting. */ 30176a8ea6d1SKyle Evans spinlock_exit(); 30186a8ea6d1SKyle Evans PCPU_SET(switchtime, cpu_ticks()); 30196a8ea6d1SKyle Evans PCPU_SET(switchticks, ticks); 30206a8ea6d1SKyle Evans 30216a8ea6d1SKyle Evans newtd = sched_throw_grab(tdq); 30226a8ea6d1SKyle Evans 30236a8ea6d1SKyle Evans /* doesn't return */ 30246a8ea6d1SKyle Evans cpu_throw(NULL, newtd); 30256a8ea6d1SKyle Evans } 30266a8ea6d1SKyle Evans 30276a8ea6d1SKyle Evans /* 30286a8ea6d1SKyle Evans * A thread is exiting. 30297b20fb19SJeff Roberson */ 30307b20fb19SJeff Roberson void 30317b20fb19SJeff Roberson sched_throw(struct thread *td) 30327b20fb19SJeff Roberson { 303359c68134SJeff Roberson struct thread *newtd; 3034ae7a6b38SJeff Roberson struct tdq *tdq; 3035ae7a6b38SJeff Roberson 3036018ff686SJeff Roberson tdq = TDQ_SELF(); 30376a8ea6d1SKyle Evans 30386a8ea6d1SKyle Evans MPASS(td != NULL); 3039686bcb5cSJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 3040686bcb5cSJeff Roberson THREAD_LOCKPTR_ASSERT(td, TDQ_LOCKPTR(tdq)); 30416a8ea6d1SKyle Evans 30429727e637SJeff Roberson tdq_load_rem(tdq, td); 304392de34dfSJohn Baldwin td->td_lastcpu = td->td_oncpu; 304492de34dfSJohn Baldwin td->td_oncpu = NOCPU; 30451eb13fceSJeff Roberson thread_lock_block(td); 30466a8ea6d1SKyle Evans 30476a8ea6d1SKyle Evans newtd = sched_throw_grab(tdq); 30486a8ea6d1SKyle Evans 30491eb13fceSJeff Roberson /* doesn't return */ 30501eb13fceSJeff Roberson cpu_switch(td, newtd, TDQ_LOCKPTR(tdq)); 30517b20fb19SJeff Roberson } 30527b20fb19SJeff Roberson 3053ae7a6b38SJeff Roberson /* 3054ae7a6b38SJeff Roberson * This is called from fork_exit(). Just acquire the correct locks and 3055ae7a6b38SJeff Roberson * let fork do the rest of the work. 3056ae7a6b38SJeff Roberson */ 30577b20fb19SJeff Roberson void 3058fe54587fSJeff Roberson sched_fork_exit(struct thread *td) 30597b20fb19SJeff Roberson { 3060ae7a6b38SJeff Roberson struct tdq *tdq; 3061ae7a6b38SJeff Roberson int cpuid; 30627b20fb19SJeff Roberson 30637b20fb19SJeff Roberson /* 30647b20fb19SJeff Roberson * Finish setting up thread glue so that it begins execution in a 3065ae7a6b38SJeff Roberson * non-nested critical section with the scheduler lock held. 30667b20fb19SJeff Roberson */ 3067686bcb5cSJeff Roberson KASSERT(curthread->td_md.md_spinlock_count == 1, 3068686bcb5cSJeff Roberson ("invalid count %d", curthread->td_md.md_spinlock_count)); 3069ae7a6b38SJeff Roberson cpuid = PCPU_GET(cpuid); 3070018ff686SJeff Roberson tdq = TDQ_SELF(); 3071686bcb5cSJeff Roberson TDQ_LOCK(tdq); 3072686bcb5cSJeff Roberson spinlock_exit(); 3073ae7a6b38SJeff Roberson MPASS(td->td_lock == TDQ_LOCKPTR(tdq)); 3074ae7a6b38SJeff Roberson td->td_oncpu = cpuid; 307528ef18b8SAndriy Gapon KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "running", 307628ef18b8SAndriy Gapon "prio:%d", td->td_priority); 307728ef18b8SAndriy Gapon SDT_PROBE0(sched, , , on__cpu); 30787b20fb19SJeff Roberson } 30797b20fb19SJeff Roberson 30808f51ad55SJeff Roberson /* 308115b5c347SGordon Bergling * Create on first use to catch odd startup conditions. 30828f51ad55SJeff Roberson */ 30838f51ad55SJeff Roberson char * 30848f51ad55SJeff Roberson sched_tdname(struct thread *td) 30858f51ad55SJeff Roberson { 30868f51ad55SJeff Roberson #ifdef KTR 30878f51ad55SJeff Roberson struct td_sched *ts; 30888f51ad55SJeff Roberson 308993ccd6bfSKonstantin Belousov ts = td_get_sched(td); 30908f51ad55SJeff Roberson if (ts->ts_name[0] == '\0') 30918f51ad55SJeff Roberson snprintf(ts->ts_name, sizeof(ts->ts_name), 30928f51ad55SJeff Roberson "%s tid %d", td->td_name, td->td_tid); 30938f51ad55SJeff Roberson return (ts->ts_name); 30948f51ad55SJeff Roberson #else 30958f51ad55SJeff Roberson return (td->td_name); 30968f51ad55SJeff Roberson #endif 30978f51ad55SJeff Roberson } 30988f51ad55SJeff Roberson 309944ad5475SJohn Baldwin #ifdef KTR 310044ad5475SJohn Baldwin void 310144ad5475SJohn Baldwin sched_clear_tdname(struct thread *td) 310244ad5475SJohn Baldwin { 310344ad5475SJohn Baldwin struct td_sched *ts; 310444ad5475SJohn Baldwin 310593ccd6bfSKonstantin Belousov ts = td_get_sched(td); 310644ad5475SJohn Baldwin ts->ts_name[0] = '\0'; 310744ad5475SJohn Baldwin } 310844ad5475SJohn Baldwin #endif 310944ad5475SJohn Baldwin 311007095abfSIvan Voras #ifdef SMP 311107095abfSIvan Voras 311207095abfSIvan Voras /* 311307095abfSIvan Voras * Build the CPU topology dump string. Is recursively called to collect 311407095abfSIvan Voras * the topology tree. 311507095abfSIvan Voras */ 311607095abfSIvan Voras static int 311707095abfSIvan Voras sysctl_kern_sched_topology_spec_internal(struct sbuf *sb, struct cpu_group *cg, 311807095abfSIvan Voras int indent) 311907095abfSIvan Voras { 312071a19bdcSAttilio Rao char cpusetbuf[CPUSETBUFSIZ]; 312107095abfSIvan Voras int i, first; 312207095abfSIvan Voras 312307095abfSIvan Voras sbuf_printf(sb, "%*s<group level=\"%d\" cache-level=\"%d\">\n", indent, 312419b8a6dbSAndriy Gapon "", 1 + indent / 2, cg->cg_level); 312571a19bdcSAttilio Rao sbuf_printf(sb, "%*s <cpu count=\"%d\" mask=\"%s\">", indent, "", 312671a19bdcSAttilio Rao cg->cg_count, cpusetobj_strprint(cpusetbuf, &cg->cg_mask)); 312707095abfSIvan Voras first = TRUE; 3128aefe0a8cSAlexander Motin for (i = cg->cg_first; i <= cg->cg_last; i++) { 312971a19bdcSAttilio Rao if (CPU_ISSET(i, &cg->cg_mask)) { 313007095abfSIvan Voras if (!first) 313107095abfSIvan Voras sbuf_printf(sb, ", "); 313207095abfSIvan Voras else 313307095abfSIvan Voras first = FALSE; 313407095abfSIvan Voras sbuf_printf(sb, "%d", i); 313507095abfSIvan Voras } 313607095abfSIvan Voras } 313707095abfSIvan Voras sbuf_printf(sb, "</cpu>\n"); 313807095abfSIvan Voras 313907095abfSIvan Voras if (cg->cg_flags != 0) { 3140611daf7eSIvan Voras sbuf_printf(sb, "%*s <flags>", indent, ""); 314107095abfSIvan Voras if ((cg->cg_flags & CG_FLAG_HTT) != 0) 31425368befbSIvan Voras sbuf_printf(sb, "<flag name=\"HTT\">HTT group</flag>"); 3143a401f2d0SIvan Voras if ((cg->cg_flags & CG_FLAG_THREAD) != 0) 3144a401f2d0SIvan Voras sbuf_printf(sb, "<flag name=\"THREAD\">THREAD group</flag>"); 31457b55ab05SJeff Roberson if ((cg->cg_flags & CG_FLAG_SMT) != 0) 3146a401f2d0SIvan Voras sbuf_printf(sb, "<flag name=\"SMT\">SMT group</flag>"); 3147ef50d5fbSAlexander Motin if ((cg->cg_flags & CG_FLAG_NODE) != 0) 3148ef50d5fbSAlexander Motin sbuf_printf(sb, "<flag name=\"NODE\">NUMA node</flag>"); 314907095abfSIvan Voras sbuf_printf(sb, "</flags>\n"); 3150611daf7eSIvan Voras } 315107095abfSIvan Voras 315207095abfSIvan Voras if (cg->cg_children > 0) { 315307095abfSIvan Voras sbuf_printf(sb, "%*s <children>\n", indent, ""); 315407095abfSIvan Voras for (i = 0; i < cg->cg_children; i++) 315507095abfSIvan Voras sysctl_kern_sched_topology_spec_internal(sb, 315607095abfSIvan Voras &cg->cg_child[i], indent+2); 315707095abfSIvan Voras sbuf_printf(sb, "%*s </children>\n", indent, ""); 315807095abfSIvan Voras } 315907095abfSIvan Voras sbuf_printf(sb, "%*s</group>\n", indent, ""); 316007095abfSIvan Voras return (0); 316107095abfSIvan Voras } 316207095abfSIvan Voras 316307095abfSIvan Voras /* 316407095abfSIvan Voras * Sysctl handler for retrieving topology dump. It's a wrapper for 316507095abfSIvan Voras * the recursive sysctl_kern_smp_topology_spec_internal(). 316607095abfSIvan Voras */ 316707095abfSIvan Voras static int 316807095abfSIvan Voras sysctl_kern_sched_topology_spec(SYSCTL_HANDLER_ARGS) 316907095abfSIvan Voras { 317007095abfSIvan Voras struct sbuf *topo; 317107095abfSIvan Voras int err; 317207095abfSIvan Voras 317307095abfSIvan Voras KASSERT(cpu_top != NULL, ("cpu_top isn't initialized")); 317407095abfSIvan Voras 3175b97fa22cSIan Lepore topo = sbuf_new_for_sysctl(NULL, NULL, 512, req); 317607095abfSIvan Voras if (topo == NULL) 317707095abfSIvan Voras return (ENOMEM); 317807095abfSIvan Voras 317907095abfSIvan Voras sbuf_printf(topo, "<groups>\n"); 318007095abfSIvan Voras err = sysctl_kern_sched_topology_spec_internal(topo, cpu_top, 1); 318107095abfSIvan Voras sbuf_printf(topo, "</groups>\n"); 318207095abfSIvan Voras 318307095abfSIvan Voras if (err == 0) { 3184b97fa22cSIan Lepore err = sbuf_finish(topo); 318507095abfSIvan Voras } 318607095abfSIvan Voras sbuf_delete(topo); 318707095abfSIvan Voras return (err); 318807095abfSIvan Voras } 3189b67cc292SDavid Xu 319007095abfSIvan Voras #endif 319107095abfSIvan Voras 3192579895dfSAlexander Motin static int 3193579895dfSAlexander Motin sysctl_kern_quantum(SYSCTL_HANDLER_ARGS) 3194579895dfSAlexander Motin { 3195579895dfSAlexander Motin int error, new_val, period; 3196579895dfSAlexander Motin 3197579895dfSAlexander Motin period = 1000000 / realstathz; 3198579895dfSAlexander Motin new_val = period * sched_slice; 3199579895dfSAlexander Motin error = sysctl_handle_int(oidp, &new_val, 0, req); 3200579895dfSAlexander Motin if (error != 0 || req->newptr == NULL) 3201579895dfSAlexander Motin return (error); 3202579895dfSAlexander Motin if (new_val <= 0) 3203579895dfSAlexander Motin return (EINVAL); 320437f4e025SAlexander Motin sched_slice = imax(1, (new_val + period / 2) / period); 32055e5c3873SJeff Roberson sched_slice_min = sched_slice / SCHED_SLICE_MIN_DIVISOR; 320637f4e025SAlexander Motin hogticks = imax(1, (2 * hz * sched_slice + realstathz / 2) / 320737f4e025SAlexander Motin realstathz); 3208579895dfSAlexander Motin return (0); 3209579895dfSAlexander Motin } 3210579895dfSAlexander Motin 32117029da5cSPawel Biernacki SYSCTL_NODE(_kern, OID_AUTO, sched, CTLFLAG_RW | CTLFLAG_MPSAFE, 0, 32127029da5cSPawel Biernacki "Scheduler"); 3213ae7a6b38SJeff Roberson SYSCTL_STRING(_kern_sched, OID_AUTO, name, CTLFLAG_RD, "ULE", 0, 3214e7d50326SJeff Roberson "Scheduler name"); 32157029da5cSPawel Biernacki SYSCTL_PROC(_kern_sched, OID_AUTO, quantum, 32167029da5cSPawel Biernacki CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE, NULL, 0, 32177029da5cSPawel Biernacki sysctl_kern_quantum, "I", 321837f4e025SAlexander Motin "Quantum for timeshare threads in microseconds"); 3219ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, slice, CTLFLAG_RW, &sched_slice, 0, 322037f4e025SAlexander Motin "Quantum for timeshare threads in stathz ticks"); 32211c119e17SAlexander Motin SYSCTL_UINT(_kern_sched, OID_AUTO, interact, CTLFLAG_RW, &sched_interact, 0, 3222ae7a6b38SJeff Roberson "Interactivity score threshold"); 322337f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, preempt_thresh, CTLFLAG_RW, 322437f4e025SAlexander Motin &preempt_thresh, 0, 322537f4e025SAlexander Motin "Maximal (lowest) priority for preemption"); 322637f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, static_boost, CTLFLAG_RW, &static_boost, 0, 322737f4e025SAlexander Motin "Assign static kernel priorities to sleeping threads"); 322837f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, idlespins, CTLFLAG_RW, &sched_idlespins, 0, 322937f4e025SAlexander Motin "Number of times idle thread will spin waiting for new work"); 323037f4e025SAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, idlespinthresh, CTLFLAG_RW, 323137f4e025SAlexander Motin &sched_idlespinthresh, 0, 323237f4e025SAlexander Motin "Threshold before we will permit idle thread spinning"); 32337b8bfa0dSJeff Roberson #ifdef SMP 3234ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, affinity, CTLFLAG_RW, &affinity, 0, 3235ae7a6b38SJeff Roberson "Number of hz ticks to keep thread affinity for"); 3236ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, balance, CTLFLAG_RW, &rebalance, 0, 3237ae7a6b38SJeff Roberson "Enables the long-term load balancer"); 32387fcf154aSJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, balance_interval, CTLFLAG_RW, 32397fcf154aSJeff Roberson &balance_interval, 0, 3240579895dfSAlexander Motin "Average period in stathz ticks to run the long-term balancer"); 3241ae7a6b38SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, steal_idle, CTLFLAG_RW, &steal_idle, 0, 3242ae7a6b38SJeff Roberson "Attempts to steal work from other cores before idling"); 324328994a58SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, steal_thresh, CTLFLAG_RW, &steal_thresh, 0, 324437f4e025SAlexander Motin "Minimum load on remote CPU before we'll steal"); 324597e9382dSDon Lewis SYSCTL_INT(_kern_sched, OID_AUTO, trysteal_limit, CTLFLAG_RW, &trysteal_limit, 324697e9382dSDon Lewis 0, "Topological distance limit for stealing threads in sched_switch()"); 324797e9382dSDon Lewis SYSCTL_INT(_kern_sched, OID_AUTO, always_steal, CTLFLAG_RW, &always_steal, 0, 324897e9382dSDon Lewis "Always run the stealer from the idle thread"); 324907095abfSIvan Voras SYSCTL_PROC(_kern_sched, OID_AUTO, topology_spec, CTLTYPE_STRING | 3250c69a1a50SMateusz Guzik CTLFLAG_MPSAFE | CTLFLAG_RD, NULL, 0, sysctl_kern_sched_topology_spec, "A", 325107095abfSIvan Voras "XML dump of detected CPU topology"); 32527b8bfa0dSJeff Roberson #endif 3253e7d50326SJeff Roberson 325454b0e65fSJeff Roberson /* ps compat. All cpu percentages from ULE are weighted. */ 3255a5423ea3SJeff Roberson static int ccpu = 0; 3256b05ca429SPawel Biernacki SYSCTL_INT(_kern, OID_AUTO, ccpu, CTLFLAG_RD, &ccpu, 0, 3257b05ca429SPawel Biernacki "Decay factor used for updating %CPU in 4BSD scheduler"); 3258