1b43179fbSJeff Roberson /*- 2b43179fbSJeff Roberson * Copyright (c) 1982, 1986, 1990, 1991, 1993 3b43179fbSJeff Roberson * The Regents of the University of California. All rights reserved. 4b43179fbSJeff Roberson * (c) UNIX System Laboratories, Inc. 5b43179fbSJeff Roberson * All or some portions of this file are derived from material licensed 6b43179fbSJeff Roberson * to the University of California by American Telephone and Telegraph 7b43179fbSJeff Roberson * Co. or Unix System Laboratories, Inc. and are reproduced herein with 8b43179fbSJeff Roberson * the permission of UNIX System Laboratories, Inc. 9b43179fbSJeff Roberson * 10b43179fbSJeff Roberson * Redistribution and use in source and binary forms, with or without 11b43179fbSJeff Roberson * modification, are permitted provided that the following conditions 12b43179fbSJeff Roberson * are met: 13b43179fbSJeff Roberson * 1. Redistributions of source code must retain the above copyright 14b43179fbSJeff Roberson * notice, this list of conditions and the following disclaimer. 15b43179fbSJeff Roberson * 2. Redistributions in binary form must reproduce the above copyright 16b43179fbSJeff Roberson * notice, this list of conditions and the following disclaimer in the 17b43179fbSJeff Roberson * documentation and/or other materials provided with the distribution. 18b43179fbSJeff Roberson * 4. Neither the name of the University nor the names of its contributors 19b43179fbSJeff Roberson * may be used to endorse or promote products derived from this software 20b43179fbSJeff Roberson * without specific prior written permission. 21b43179fbSJeff Roberson * 22b43179fbSJeff Roberson * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 23b43179fbSJeff Roberson * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 24b43179fbSJeff Roberson * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 25b43179fbSJeff Roberson * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 26b43179fbSJeff Roberson * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 27b43179fbSJeff Roberson * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 28b43179fbSJeff Roberson * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 29b43179fbSJeff Roberson * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 30b43179fbSJeff Roberson * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 31b43179fbSJeff Roberson * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 32b43179fbSJeff Roberson * SUCH DAMAGE. 33b43179fbSJeff Roberson */ 34b43179fbSJeff Roberson 35677b542eSDavid E. O'Brien #include <sys/cdefs.h> 36677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$"); 37677b542eSDavid E. O'Brien 384da0d332SPeter Wemm #include "opt_hwpmc_hooks.h" 39a564bfc7SJeff Roberson #include "opt_sched.h" 406f5f25e5SJohn Birrell #include "opt_kdtrace.h" 414da0d332SPeter Wemm 42b43179fbSJeff Roberson #include <sys/param.h> 43b43179fbSJeff Roberson #include <sys/systm.h> 44f5a3ef99SMarcel Moolenaar #include <sys/cpuset.h> 45b43179fbSJeff Roberson #include <sys/kernel.h> 46b43179fbSJeff Roberson #include <sys/ktr.h> 47b43179fbSJeff Roberson #include <sys/lock.h> 48c55bbb6cSJohn Baldwin #include <sys/kthread.h> 49b43179fbSJeff Roberson #include <sys/mutex.h> 50b43179fbSJeff Roberson #include <sys/proc.h> 51b43179fbSJeff Roberson #include <sys/resourcevar.h> 52b43179fbSJeff Roberson #include <sys/sched.h> 53b3e9e682SRyan Stone #include <sys/sdt.h> 54b43179fbSJeff Roberson #include <sys/smp.h> 55b43179fbSJeff Roberson #include <sys/sysctl.h> 56b43179fbSJeff Roberson #include <sys/sx.h> 57f5c157d9SJohn Baldwin #include <sys/turnstile.h> 583db720fdSDavid Xu #include <sys/umtx.h> 592e4db89cSDavid E. O'Brien #include <machine/pcb.h> 60293968d8SJulian Elischer #include <machine/smp.h> 61b43179fbSJeff Roberson 62ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS 63ebccf1e3SJoseph Koshy #include <sys/pmckern.h> 64ebccf1e3SJoseph Koshy #endif 65ebccf1e3SJoseph Koshy 666f5f25e5SJohn Birrell #ifdef KDTRACE_HOOKS 676f5f25e5SJohn Birrell #include <sys/dtrace_bsd.h> 686f5f25e5SJohn Birrell int dtrace_vtime_active; 696f5f25e5SJohn Birrell dtrace_vtime_switch_func_t dtrace_vtime_switch_func; 706f5f25e5SJohn Birrell #endif 716f5f25e5SJohn Birrell 7206439a04SJeff Roberson /* 7306439a04SJeff Roberson * INVERSE_ESTCPU_WEIGHT is only suitable for statclock() frequencies in 7406439a04SJeff Roberson * the range 100-256 Hz (approximately). 7506439a04SJeff Roberson */ 7606439a04SJeff Roberson #define ESTCPULIM(e) \ 7706439a04SJeff Roberson min((e), INVERSE_ESTCPU_WEIGHT * (NICE_WEIGHT * (PRIO_MAX - PRIO_MIN) - \ 7806439a04SJeff Roberson RQ_PPQ) + INVERSE_ESTCPU_WEIGHT - 1) 79b698380fSBruce Evans #ifdef SMP 80b698380fSBruce Evans #define INVERSE_ESTCPU_WEIGHT (8 * smp_cpus) 81b698380fSBruce Evans #else 8206439a04SJeff Roberson #define INVERSE_ESTCPU_WEIGHT 8 /* 1 / (priorities per estcpu level). */ 83b698380fSBruce Evans #endif 8406439a04SJeff Roberson #define NICE_WEIGHT 1 /* Priorities per nice level. */ 8506439a04SJeff Roberson 860d2cf837SJeff Roberson #define TS_NAME_LEN (MAXCOMLEN + sizeof(" td ") + sizeof(__XSTRING(UINT_MAX))) 878f51ad55SJeff Roberson 888460a577SJohn Birrell /* 898460a577SJohn Birrell * The schedulable entity that runs a context. 90ad1e7d28SJulian Elischer * This is an extension to the thread structure and is tailored to 91ad1e7d28SJulian Elischer * the requirements of this scheduler 928460a577SJohn Birrell */ 93ad1e7d28SJulian Elischer struct td_sched { 94ad1e7d28SJulian Elischer fixpt_t ts_pctcpu; /* (j) %cpu during p_swtime. */ 95ad1e7d28SJulian Elischer int ts_cpticks; /* (j) Ticks of cpu time. */ 9654b0e65fSJeff Roberson int ts_slptime; /* (j) Seconds !RUNNING. */ 97*48317e9eSAlexander Motin int ts_slice; /* Remaining part of time slice. */ 98f200843bSJohn Baldwin int ts_flags; 99ad1e7d28SJulian Elischer struct runq *ts_runq; /* runq the thread is currently on */ 1008f51ad55SJeff Roberson #ifdef KTR 1018f51ad55SJeff Roberson char ts_name[TS_NAME_LEN]; 1028f51ad55SJeff Roberson #endif 103bcb06d59SJeff Roberson }; 104ed062c8dSJulian Elischer 105ed062c8dSJulian Elischer /* flags kept in td_flags */ 106ad1e7d28SJulian Elischer #define TDF_DIDRUN TDF_SCHED0 /* thread actually ran. */ 1079727e637SJeff Roberson #define TDF_BOUND TDF_SCHED1 /* Bound to one CPU. */ 108bcb06d59SJeff Roberson 109f200843bSJohn Baldwin /* flags kept in ts_flags */ 110f200843bSJohn Baldwin #define TSF_AFFINITY 0x0001 /* Has a non-"full" CPU set. */ 111f200843bSJohn Baldwin 112ad1e7d28SJulian Elischer #define SKE_RUNQ_PCPU(ts) \ 113ad1e7d28SJulian Elischer ((ts)->ts_runq != 0 && (ts)->ts_runq != &runq) 114e17c57b1SJeff Roberson 115f200843bSJohn Baldwin #define THREAD_CAN_SCHED(td, cpu) \ 116f200843bSJohn Baldwin CPU_ISSET((cpu), &(td)->td_cpuset->cs_mask) 117f200843bSJohn Baldwin 118ad1e7d28SJulian Elischer static struct td_sched td_sched0; 1196ea38de8SJeff Roberson struct mtx sched_lock; 120b43179fbSJeff Roberson 121*48317e9eSAlexander Motin static int realstathz; /* stathz is sometimes 0 and run off of hz. */ 122ca59f152SJeff Roberson static int sched_tdcnt; /* Total runnable threads in the system. */ 123*48317e9eSAlexander Motin static int sched_slice = 1; /* Thread run time before rescheduling. */ 124b43179fbSJeff Roberson 125e17c57b1SJeff Roberson static void setup_runqs(void); 126c55bbb6cSJohn Baldwin static void schedcpu(void); 127e17c57b1SJeff Roberson static void schedcpu_thread(void); 128f5c157d9SJohn Baldwin static void sched_priority(struct thread *td, u_char prio); 129b43179fbSJeff Roberson static void sched_setup(void *dummy); 130b43179fbSJeff Roberson static void maybe_resched(struct thread *td); 1318460a577SJohn Birrell static void updatepri(struct thread *td); 1328460a577SJohn Birrell static void resetpriority(struct thread *td); 1338460a577SJohn Birrell static void resetpriority_thread(struct thread *td); 13400b0483dSJulian Elischer #ifdef SMP 135f200843bSJohn Baldwin static int sched_pickcpu(struct thread *td); 13682a1dfc1SJulian Elischer static int forward_wakeup(int cpunum); 1378aa3d7ffSJohn Baldwin static void kick_other_cpu(int pri, int cpuid); 13800b0483dSJulian Elischer #endif 139b43179fbSJeff Roberson 140e17c57b1SJeff Roberson static struct kproc_desc sched_kp = { 141e17c57b1SJeff Roberson "schedcpu", 142e17c57b1SJeff Roberson schedcpu_thread, 143e17c57b1SJeff Roberson NULL 144e17c57b1SJeff Roberson }; 145237fdd78SRobert Watson SYSINIT(schedcpu, SI_SUB_RUN_SCHEDULER, SI_ORDER_FIRST, kproc_start, 146237fdd78SRobert Watson &sched_kp); 147237fdd78SRobert Watson SYSINIT(sched_setup, SI_SUB_RUN_QUEUE, SI_ORDER_FIRST, sched_setup, NULL); 148b43179fbSJeff Roberson 149*48317e9eSAlexander Motin static void sched_initticks(void *dummy); 150*48317e9eSAlexander Motin SYSINIT(sched_initticks, SI_SUB_CLOCKS, SI_ORDER_THIRD, sched_initticks, 151*48317e9eSAlexander Motin NULL); 152*48317e9eSAlexander Motin 153b43179fbSJeff Roberson /* 154b43179fbSJeff Roberson * Global run queue. 155b43179fbSJeff Roberson */ 156b43179fbSJeff Roberson static struct runq runq; 157e17c57b1SJeff Roberson 158e17c57b1SJeff Roberson #ifdef SMP 159e17c57b1SJeff Roberson /* 160e17c57b1SJeff Roberson * Per-CPU run queues 161e17c57b1SJeff Roberson */ 162e17c57b1SJeff Roberson static struct runq runq_pcpu[MAXCPU]; 163f200843bSJohn Baldwin long runq_length[MAXCPU]; 1643121f534SAttilio Rao 16571a19bdcSAttilio Rao static cpuset_t idle_cpus_mask; 166e17c57b1SJeff Roberson #endif 167e17c57b1SJeff Roberson 168b722ad00SAlexander Motin struct pcpuidlestat { 169b722ad00SAlexander Motin u_int idlecalls; 170b722ad00SAlexander Motin u_int oldidlecalls; 171b722ad00SAlexander Motin }; 1723e288e62SDimitry Andric static DPCPU_DEFINE(struct pcpuidlestat, idlestat); 173b722ad00SAlexander Motin 174e17c57b1SJeff Roberson static void 175e17c57b1SJeff Roberson setup_runqs(void) 176e17c57b1SJeff Roberson { 177e17c57b1SJeff Roberson #ifdef SMP 178e17c57b1SJeff Roberson int i; 179e17c57b1SJeff Roberson 180e17c57b1SJeff Roberson for (i = 0; i < MAXCPU; ++i) 181e17c57b1SJeff Roberson runq_init(&runq_pcpu[i]); 182e17c57b1SJeff Roberson #endif 183e17c57b1SJeff Roberson 184e17c57b1SJeff Roberson runq_init(&runq); 185e17c57b1SJeff Roberson } 186b43179fbSJeff Roberson 187e038d354SScott Long SYSCTL_NODE(_kern, OID_AUTO, sched, CTLFLAG_RD, 0, "Scheduler"); 188dc095794SScott Long 189e038d354SScott Long SYSCTL_STRING(_kern_sched, OID_AUTO, name, CTLFLAG_RD, "4BSD", 0, 190e038d354SScott Long "Scheduler name"); 191*48317e9eSAlexander Motin SYSCTL_INT(_kern_sched, OID_AUTO, slice, CTLFLAG_RW, &sched_slice, 0, 192*48317e9eSAlexander Motin "Slice size for timeshare threads"); 19337c28a02SJulian Elischer #ifdef SMP 19482a1dfc1SJulian Elischer /* Enable forwarding of wakeups to all other cpus */ 1956472ac3dSEd Schouten static SYSCTL_NODE(_kern_sched, OID_AUTO, ipiwakeup, CTLFLAG_RD, NULL, 1966472ac3dSEd Schouten "Kernel SMP"); 19782a1dfc1SJulian Elischer 198a90f3f25SJeff Roberson static int runq_fuzz = 1; 199a90f3f25SJeff Roberson SYSCTL_INT(_kern_sched, OID_AUTO, runq_fuzz, CTLFLAG_RW, &runq_fuzz, 0, ""); 200a90f3f25SJeff Roberson 201bce73aedSJulian Elischer static int forward_wakeup_enabled = 1; 20282a1dfc1SJulian Elischer SYSCTL_INT(_kern_sched_ipiwakeup, OID_AUTO, enabled, CTLFLAG_RW, 20382a1dfc1SJulian Elischer &forward_wakeup_enabled, 0, 20482a1dfc1SJulian Elischer "Forwarding of wakeup to idle CPUs"); 20582a1dfc1SJulian Elischer 20682a1dfc1SJulian Elischer static int forward_wakeups_requested = 0; 20782a1dfc1SJulian Elischer SYSCTL_INT(_kern_sched_ipiwakeup, OID_AUTO, requested, CTLFLAG_RD, 20882a1dfc1SJulian Elischer &forward_wakeups_requested, 0, 20982a1dfc1SJulian Elischer "Requests for Forwarding of wakeup to idle CPUs"); 21082a1dfc1SJulian Elischer 21182a1dfc1SJulian Elischer static int forward_wakeups_delivered = 0; 21282a1dfc1SJulian Elischer SYSCTL_INT(_kern_sched_ipiwakeup, OID_AUTO, delivered, CTLFLAG_RD, 21382a1dfc1SJulian Elischer &forward_wakeups_delivered, 0, 21482a1dfc1SJulian Elischer "Completed Forwarding of wakeup to idle CPUs"); 21582a1dfc1SJulian Elischer 216bce73aedSJulian Elischer static int forward_wakeup_use_mask = 1; 21782a1dfc1SJulian Elischer SYSCTL_INT(_kern_sched_ipiwakeup, OID_AUTO, usemask, CTLFLAG_RW, 21882a1dfc1SJulian Elischer &forward_wakeup_use_mask, 0, 21982a1dfc1SJulian Elischer "Use the mask of idle cpus"); 22082a1dfc1SJulian Elischer 22182a1dfc1SJulian Elischer static int forward_wakeup_use_loop = 0; 22282a1dfc1SJulian Elischer SYSCTL_INT(_kern_sched_ipiwakeup, OID_AUTO, useloop, CTLFLAG_RW, 22382a1dfc1SJulian Elischer &forward_wakeup_use_loop, 0, 22482a1dfc1SJulian Elischer "Use a loop to find idle cpus"); 22582a1dfc1SJulian Elischer 22637c28a02SJulian Elischer #endif 227ad1e7d28SJulian Elischer #if 0 2283389af30SJulian Elischer static int sched_followon = 0; 2293389af30SJulian Elischer SYSCTL_INT(_kern_sched, OID_AUTO, followon, CTLFLAG_RW, 2303389af30SJulian Elischer &sched_followon, 0, 2313389af30SJulian Elischer "allow threads to share a quantum"); 2328460a577SJohn Birrell #endif 23382a1dfc1SJulian Elischer 234b3e9e682SRyan Stone SDT_PROVIDER_DEFINE(sched); 235b3e9e682SRyan Stone 236b3e9e682SRyan Stone SDT_PROBE_DEFINE3(sched, , , change_pri, change-pri, "struct thread *", 237b3e9e682SRyan Stone "struct proc *", "uint8_t"); 238b3e9e682SRyan Stone SDT_PROBE_DEFINE3(sched, , , dequeue, dequeue, "struct thread *", 239b3e9e682SRyan Stone "struct proc *", "void *"); 240b3e9e682SRyan Stone SDT_PROBE_DEFINE4(sched, , , enqueue, enqueue, "struct thread *", 241b3e9e682SRyan Stone "struct proc *", "void *", "int"); 242b3e9e682SRyan Stone SDT_PROBE_DEFINE4(sched, , , lend_pri, lend-pri, "struct thread *", 243b3e9e682SRyan Stone "struct proc *", "uint8_t", "struct thread *"); 244b3e9e682SRyan Stone SDT_PROBE_DEFINE2(sched, , , load_change, load-change, "int", "int"); 245b3e9e682SRyan Stone SDT_PROBE_DEFINE2(sched, , , off_cpu, off-cpu, "struct thread *", 246b3e9e682SRyan Stone "struct proc *"); 247b3e9e682SRyan Stone SDT_PROBE_DEFINE(sched, , , on_cpu, on-cpu); 248b3e9e682SRyan Stone SDT_PROBE_DEFINE(sched, , , remain_cpu, remain-cpu); 249b3e9e682SRyan Stone SDT_PROBE_DEFINE2(sched, , , surrender, surrender, "struct thread *", 250b3e9e682SRyan Stone "struct proc *"); 251b3e9e682SRyan Stone 252907bdbc2SJeff Roberson static __inline void 253907bdbc2SJeff Roberson sched_load_add(void) 254907bdbc2SJeff Roberson { 2558f51ad55SJeff Roberson 256907bdbc2SJeff Roberson sched_tdcnt++; 2578f51ad55SJeff Roberson KTR_COUNTER0(KTR_SCHED, "load", "global load", sched_tdcnt); 258b3e9e682SRyan Stone SDT_PROBE2(sched, , , load_change, NOCPU, sched_tdcnt); 259907bdbc2SJeff Roberson } 260907bdbc2SJeff Roberson 261907bdbc2SJeff Roberson static __inline void 262907bdbc2SJeff Roberson sched_load_rem(void) 263907bdbc2SJeff Roberson { 2648f51ad55SJeff Roberson 265907bdbc2SJeff Roberson sched_tdcnt--; 2668f51ad55SJeff Roberson KTR_COUNTER0(KTR_SCHED, "load", "global load", sched_tdcnt); 267b3e9e682SRyan Stone SDT_PROBE2(sched, , , load_change, NOCPU, sched_tdcnt); 268907bdbc2SJeff Roberson } 269b43179fbSJeff Roberson /* 270b43179fbSJeff Roberson * Arrange to reschedule if necessary, taking the priorities and 271b43179fbSJeff Roberson * schedulers into account. 272b43179fbSJeff Roberson */ 273b43179fbSJeff Roberson static void 274b43179fbSJeff Roberson maybe_resched(struct thread *td) 275b43179fbSJeff Roberson { 276b43179fbSJeff Roberson 2777b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 278ed062c8dSJulian Elischer if (td->td_priority < curthread->td_priority) 2794a338afdSJulian Elischer curthread->td_flags |= TDF_NEEDRESCHED; 280b43179fbSJeff Roberson } 281b43179fbSJeff Roberson 282b43179fbSJeff Roberson /* 283a90f3f25SJeff Roberson * This function is called when a thread is about to be put on run queue 284a90f3f25SJeff Roberson * because it has been made runnable or its priority has been adjusted. It 285a90f3f25SJeff Roberson * determines if the new thread should be immediately preempted to. If so, 286a90f3f25SJeff Roberson * it switches to it and eventually returns true. If not, it returns false 287a90f3f25SJeff Roberson * so that the caller may place the thread on an appropriate run queue. 288a90f3f25SJeff Roberson */ 289a90f3f25SJeff Roberson int 290a90f3f25SJeff Roberson maybe_preempt(struct thread *td) 291a90f3f25SJeff Roberson { 292a90f3f25SJeff Roberson #ifdef PREEMPTION 293a90f3f25SJeff Roberson struct thread *ctd; 294a90f3f25SJeff Roberson int cpri, pri; 295a90f3f25SJeff Roberson 296a90f3f25SJeff Roberson /* 297a90f3f25SJeff Roberson * The new thread should not preempt the current thread if any of the 298a90f3f25SJeff Roberson * following conditions are true: 299a90f3f25SJeff Roberson * 300a90f3f25SJeff Roberson * - The kernel is in the throes of crashing (panicstr). 301a90f3f25SJeff Roberson * - The current thread has a higher (numerically lower) or 302a90f3f25SJeff Roberson * equivalent priority. Note that this prevents curthread from 303a90f3f25SJeff Roberson * trying to preempt to itself. 304a90f3f25SJeff Roberson * - It is too early in the boot for context switches (cold is set). 305a90f3f25SJeff Roberson * - The current thread has an inhibitor set or is in the process of 306a90f3f25SJeff Roberson * exiting. In this case, the current thread is about to switch 307a90f3f25SJeff Roberson * out anyways, so there's no point in preempting. If we did, 308a90f3f25SJeff Roberson * the current thread would not be properly resumed as well, so 309a90f3f25SJeff Roberson * just avoid that whole landmine. 310a90f3f25SJeff Roberson * - If the new thread's priority is not a realtime priority and 311a90f3f25SJeff Roberson * the current thread's priority is not an idle priority and 312a90f3f25SJeff Roberson * FULL_PREEMPTION is disabled. 313a90f3f25SJeff Roberson * 314a90f3f25SJeff Roberson * If all of these conditions are false, but the current thread is in 315a90f3f25SJeff Roberson * a nested critical section, then we have to defer the preemption 316a90f3f25SJeff Roberson * until we exit the critical section. Otherwise, switch immediately 317a90f3f25SJeff Roberson * to the new thread. 318a90f3f25SJeff Roberson */ 319a90f3f25SJeff Roberson ctd = curthread; 320a90f3f25SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 321a90f3f25SJeff Roberson KASSERT((td->td_inhibitors == 0), 322a90f3f25SJeff Roberson ("maybe_preempt: trying to run inhibited thread")); 323a90f3f25SJeff Roberson pri = td->td_priority; 324a90f3f25SJeff Roberson cpri = ctd->td_priority; 325a90f3f25SJeff Roberson if (panicstr != NULL || pri >= cpri || cold /* || dumping */ || 326a90f3f25SJeff Roberson TD_IS_INHIBITED(ctd)) 327a90f3f25SJeff Roberson return (0); 328a90f3f25SJeff Roberson #ifndef FULL_PREEMPTION 329a90f3f25SJeff Roberson if (pri > PRI_MAX_ITHD && cpri < PRI_MIN_IDLE) 330a90f3f25SJeff Roberson return (0); 331a90f3f25SJeff Roberson #endif 332a90f3f25SJeff Roberson 333a90f3f25SJeff Roberson if (ctd->td_critnest > 1) { 334a90f3f25SJeff Roberson CTR1(KTR_PROC, "maybe_preempt: in critical section %d", 335a90f3f25SJeff Roberson ctd->td_critnest); 336a90f3f25SJeff Roberson ctd->td_owepreempt = 1; 337a90f3f25SJeff Roberson return (0); 338a90f3f25SJeff Roberson } 339a90f3f25SJeff Roberson /* 340a90f3f25SJeff Roberson * Thread is runnable but not yet put on system run queue. 341a90f3f25SJeff Roberson */ 342a90f3f25SJeff Roberson MPASS(ctd->td_lock == td->td_lock); 343a90f3f25SJeff Roberson MPASS(TD_ON_RUNQ(td)); 344a90f3f25SJeff Roberson TD_SET_RUNNING(td); 345a90f3f25SJeff Roberson CTR3(KTR_PROC, "preempting to thread %p (pid %d, %s)\n", td, 346a90f3f25SJeff Roberson td->td_proc->p_pid, td->td_name); 3478df78c41SJeff Roberson mi_switch(SW_INVOL | SW_PREEMPT | SWT_PREEMPT, td); 348a90f3f25SJeff Roberson /* 349a90f3f25SJeff Roberson * td's lock pointer may have changed. We have to return with it 350a90f3f25SJeff Roberson * locked. 351a90f3f25SJeff Roberson */ 352a90f3f25SJeff Roberson spinlock_enter(); 353a90f3f25SJeff Roberson thread_unlock(ctd); 354a90f3f25SJeff Roberson thread_lock(td); 355a90f3f25SJeff Roberson spinlock_exit(); 356a90f3f25SJeff Roberson return (1); 357a90f3f25SJeff Roberson #else 358a90f3f25SJeff Roberson return (0); 359a90f3f25SJeff Roberson #endif 360a90f3f25SJeff Roberson } 361a90f3f25SJeff Roberson 362a90f3f25SJeff Roberson /* 363b43179fbSJeff Roberson * Constants for digital decay and forget: 3648460a577SJohn Birrell * 90% of (td_estcpu) usage in 5 * loadav time 365ad1e7d28SJulian Elischer * 95% of (ts_pctcpu) usage in 60 seconds (load insensitive) 366b43179fbSJeff Roberson * Note that, as ps(1) mentions, this can let percentages 367b43179fbSJeff Roberson * total over 100% (I've seen 137.9% for 3 processes). 368b43179fbSJeff Roberson * 3698460a577SJohn Birrell * Note that schedclock() updates td_estcpu and p_cpticks asynchronously. 370b43179fbSJeff Roberson * 3718460a577SJohn Birrell * We wish to decay away 90% of td_estcpu in (5 * loadavg) seconds. 372b43179fbSJeff Roberson * That is, the system wants to compute a value of decay such 373b43179fbSJeff Roberson * that the following for loop: 374b43179fbSJeff Roberson * for (i = 0; i < (5 * loadavg); i++) 3758460a577SJohn Birrell * td_estcpu *= decay; 376b43179fbSJeff Roberson * will compute 3778460a577SJohn Birrell * td_estcpu *= 0.1; 378b43179fbSJeff Roberson * for all values of loadavg: 379b43179fbSJeff Roberson * 380b43179fbSJeff Roberson * Mathematically this loop can be expressed by saying: 381b43179fbSJeff Roberson * decay ** (5 * loadavg) ~= .1 382b43179fbSJeff Roberson * 383b43179fbSJeff Roberson * The system computes decay as: 384b43179fbSJeff Roberson * decay = (2 * loadavg) / (2 * loadavg + 1) 385b43179fbSJeff Roberson * 386b43179fbSJeff Roberson * We wish to prove that the system's computation of decay 387b43179fbSJeff Roberson * will always fulfill the equation: 388b43179fbSJeff Roberson * decay ** (5 * loadavg) ~= .1 389b43179fbSJeff Roberson * 390b43179fbSJeff Roberson * If we compute b as: 391b43179fbSJeff Roberson * b = 2 * loadavg 392b43179fbSJeff Roberson * then 393b43179fbSJeff Roberson * decay = b / (b + 1) 394b43179fbSJeff Roberson * 395b43179fbSJeff Roberson * We now need to prove two things: 396b43179fbSJeff Roberson * 1) Given factor ** (5 * loadavg) ~= .1, prove factor == b/(b+1) 397b43179fbSJeff Roberson * 2) Given b/(b+1) ** power ~= .1, prove power == (5 * loadavg) 398b43179fbSJeff Roberson * 399b43179fbSJeff Roberson * Facts: 400b43179fbSJeff Roberson * For x close to zero, exp(x) =~ 1 + x, since 401b43179fbSJeff Roberson * exp(x) = 0! + x**1/1! + x**2/2! + ... . 402b43179fbSJeff Roberson * therefore exp(-1/b) =~ 1 - (1/b) = (b-1)/b. 403b43179fbSJeff Roberson * For x close to zero, ln(1+x) =~ x, since 404b43179fbSJeff Roberson * ln(1+x) = x - x**2/2 + x**3/3 - ... -1 < x < 1 405b43179fbSJeff Roberson * therefore ln(b/(b+1)) = ln(1 - 1/(b+1)) =~ -1/(b+1). 406b43179fbSJeff Roberson * ln(.1) =~ -2.30 407b43179fbSJeff Roberson * 408b43179fbSJeff Roberson * Proof of (1): 409b43179fbSJeff Roberson * Solve (factor)**(power) =~ .1 given power (5*loadav): 410b43179fbSJeff Roberson * solving for factor, 411b43179fbSJeff Roberson * ln(factor) =~ (-2.30/5*loadav), or 412b43179fbSJeff Roberson * factor =~ exp(-1/((5/2.30)*loadav)) =~ exp(-1/(2*loadav)) = 413b43179fbSJeff Roberson * exp(-1/b) =~ (b-1)/b =~ b/(b+1). QED 414b43179fbSJeff Roberson * 415b43179fbSJeff Roberson * Proof of (2): 416b43179fbSJeff Roberson * Solve (factor)**(power) =~ .1 given factor == (b/(b+1)): 417b43179fbSJeff Roberson * solving for power, 418b43179fbSJeff Roberson * power*ln(b/(b+1)) =~ -2.30, or 419b43179fbSJeff Roberson * power =~ 2.3 * (b + 1) = 4.6*loadav + 2.3 =~ 5*loadav. QED 420b43179fbSJeff Roberson * 421b43179fbSJeff Roberson * Actual power values for the implemented algorithm are as follows: 422b43179fbSJeff Roberson * loadav: 1 2 3 4 423b43179fbSJeff Roberson * power: 5.68 10.32 14.94 19.55 424b43179fbSJeff Roberson */ 425b43179fbSJeff Roberson 426b43179fbSJeff Roberson /* calculations for digital decay to forget 90% of usage in 5*loadav sec */ 427b43179fbSJeff Roberson #define loadfactor(loadav) (2 * (loadav)) 428b43179fbSJeff Roberson #define decay_cpu(loadfac, cpu) (((loadfac) * (cpu)) / ((loadfac) + FSCALE)) 429b43179fbSJeff Roberson 430ad1e7d28SJulian Elischer /* decay 95% of `ts_pctcpu' in 60 seconds; see CCPU_SHIFT before changing */ 431b43179fbSJeff Roberson static fixpt_t ccpu = 0.95122942450071400909 * FSCALE; /* exp(-1/20) */ 43252c0b557SMatthew D Fleming SYSCTL_UINT(_kern, OID_AUTO, ccpu, CTLFLAG_RD, &ccpu, 0, ""); 433b43179fbSJeff Roberson 434b43179fbSJeff Roberson /* 435b43179fbSJeff Roberson * If `ccpu' is not equal to `exp(-1/20)' and you still want to use the 436b43179fbSJeff Roberson * faster/more-accurate formula, you'll have to estimate CCPU_SHIFT below 437b43179fbSJeff Roberson * and possibly adjust FSHIFT in "param.h" so that (FSHIFT >= CCPU_SHIFT). 438b43179fbSJeff Roberson * 439b43179fbSJeff Roberson * To estimate CCPU_SHIFT for exp(-1/20), the following formula was used: 440b43179fbSJeff Roberson * 1 - exp(-1/20) ~= 0.0487 ~= 0.0488 == 1 (fixed pt, *11* bits). 441b43179fbSJeff Roberson * 442b43179fbSJeff Roberson * If you don't want to bother with the faster/more-accurate formula, you 443b43179fbSJeff Roberson * can set CCPU_SHIFT to (FSHIFT + 1) which will use a slower/less-accurate 444b43179fbSJeff Roberson * (more general) method of calculating the %age of CPU used by a process. 445b43179fbSJeff Roberson */ 446b43179fbSJeff Roberson #define CCPU_SHIFT 11 447b43179fbSJeff Roberson 448b43179fbSJeff Roberson /* 449b43179fbSJeff Roberson * Recompute process priorities, every hz ticks. 450b43179fbSJeff Roberson * MP-safe, called without the Giant mutex. 451b43179fbSJeff Roberson */ 452b43179fbSJeff Roberson /* ARGSUSED */ 453b43179fbSJeff Roberson static void 454c55bbb6cSJohn Baldwin schedcpu(void) 455b43179fbSJeff Roberson { 456b43179fbSJeff Roberson register fixpt_t loadfac = loadfactor(averunnable.ldavg[0]); 457b43179fbSJeff Roberson struct thread *td; 458b43179fbSJeff Roberson struct proc *p; 459ad1e7d28SJulian Elischer struct td_sched *ts; 460*48317e9eSAlexander Motin int awake; 461b43179fbSJeff Roberson 462b43179fbSJeff Roberson sx_slock(&allproc_lock); 463b43179fbSJeff Roberson FOREACH_PROC_IN_SYSTEM(p) { 464374ae2a3SJeff Roberson PROC_LOCK(p); 465e806d352SJohn Baldwin if (p->p_state == PRS_NEW) { 466e806d352SJohn Baldwin PROC_UNLOCK(p); 467e806d352SJohn Baldwin continue; 468e806d352SJohn Baldwin } 4698460a577SJohn Birrell FOREACH_THREAD_IN_PROC(p, td) { 470b43179fbSJeff Roberson awake = 0; 4717b20fb19SJeff Roberson thread_lock(td); 472ad1e7d28SJulian Elischer ts = td->td_sched; 473b43179fbSJeff Roberson /* 47470fca427SJohn Baldwin * Increment sleep time (if sleeping). We 47570fca427SJohn Baldwin * ignore overflow, as above. 476b43179fbSJeff Roberson */ 477b43179fbSJeff Roberson /* 478ad1e7d28SJulian Elischer * The td_sched slptimes are not touched in wakeup 479ad1e7d28SJulian Elischer * because the thread may not HAVE everything in 480ad1e7d28SJulian Elischer * memory? XXX I think this is out of date. 481b43179fbSJeff Roberson */ 482f0393f06SJeff Roberson if (TD_ON_RUNQ(td)) { 483b43179fbSJeff Roberson awake = 1; 4849727e637SJeff Roberson td->td_flags &= ~TDF_DIDRUN; 485f0393f06SJeff Roberson } else if (TD_IS_RUNNING(td)) { 486b43179fbSJeff Roberson awake = 1; 4879727e637SJeff Roberson /* Do not clear TDF_DIDRUN */ 4889727e637SJeff Roberson } else if (td->td_flags & TDF_DIDRUN) { 489b43179fbSJeff Roberson awake = 1; 4909727e637SJeff Roberson td->td_flags &= ~TDF_DIDRUN; 491b43179fbSJeff Roberson } 492b43179fbSJeff Roberson 493b43179fbSJeff Roberson /* 494ad1e7d28SJulian Elischer * ts_pctcpu is only for ps and ttyinfo(). 495b43179fbSJeff Roberson */ 496ad1e7d28SJulian Elischer ts->ts_pctcpu = (ts->ts_pctcpu * ccpu) >> FSHIFT; 497b43179fbSJeff Roberson /* 498ad1e7d28SJulian Elischer * If the td_sched has been idle the entire second, 499b43179fbSJeff Roberson * stop recalculating its priority until 500b43179fbSJeff Roberson * it wakes up. 501b43179fbSJeff Roberson */ 502ad1e7d28SJulian Elischer if (ts->ts_cpticks != 0) { 503b43179fbSJeff Roberson #if (FSHIFT >= CCPU_SHIFT) 504ad1e7d28SJulian Elischer ts->ts_pctcpu += (realstathz == 100) 505ad1e7d28SJulian Elischer ? ((fixpt_t) ts->ts_cpticks) << 506b43179fbSJeff Roberson (FSHIFT - CCPU_SHIFT) : 507ad1e7d28SJulian Elischer 100 * (((fixpt_t) ts->ts_cpticks) 508bcb06d59SJeff Roberson << (FSHIFT - CCPU_SHIFT)) / realstathz; 509b43179fbSJeff Roberson #else 510ad1e7d28SJulian Elischer ts->ts_pctcpu += ((FSCALE - ccpu) * 511ad1e7d28SJulian Elischer (ts->ts_cpticks * 512bcb06d59SJeff Roberson FSCALE / realstathz)) >> FSHIFT; 513b43179fbSJeff Roberson #endif 514ad1e7d28SJulian Elischer ts->ts_cpticks = 0; 5158460a577SJohn Birrell } 5168460a577SJohn Birrell /* 5178460a577SJohn Birrell * If there are ANY running threads in this process, 518b43179fbSJeff Roberson * then don't count it as sleeping. 5198aa3d7ffSJohn Baldwin * XXX: this is broken. 520b43179fbSJeff Roberson */ 521b43179fbSJeff Roberson if (awake) { 52254b0e65fSJeff Roberson if (ts->ts_slptime > 1) { 523b43179fbSJeff Roberson /* 524b43179fbSJeff Roberson * In an ideal world, this should not 525b43179fbSJeff Roberson * happen, because whoever woke us 526b43179fbSJeff Roberson * up from the long sleep should have 527b43179fbSJeff Roberson * unwound the slptime and reset our 528b43179fbSJeff Roberson * priority before we run at the stale 529b43179fbSJeff Roberson * priority. Should KASSERT at some 530b43179fbSJeff Roberson * point when all the cases are fixed. 531b43179fbSJeff Roberson */ 5328460a577SJohn Birrell updatepri(td); 5338460a577SJohn Birrell } 53454b0e65fSJeff Roberson ts->ts_slptime = 0; 5358460a577SJohn Birrell } else 53654b0e65fSJeff Roberson ts->ts_slptime++; 53754b0e65fSJeff Roberson if (ts->ts_slptime > 1) { 5387b20fb19SJeff Roberson thread_unlock(td); 5398460a577SJohn Birrell continue; 5407b20fb19SJeff Roberson } 5418460a577SJohn Birrell td->td_estcpu = decay_cpu(loadfac, td->td_estcpu); 5428460a577SJohn Birrell resetpriority(td); 5438460a577SJohn Birrell resetpriority_thread(td); 5447b20fb19SJeff Roberson thread_unlock(td); 5458aa3d7ffSJohn Baldwin } 546374ae2a3SJeff Roberson PROC_UNLOCK(p); 5478aa3d7ffSJohn Baldwin } 548b43179fbSJeff Roberson sx_sunlock(&allproc_lock); 549c55bbb6cSJohn Baldwin } 550c55bbb6cSJohn Baldwin 551c55bbb6cSJohn Baldwin /* 552c55bbb6cSJohn Baldwin * Main loop for a kthread that executes schedcpu once a second. 553c55bbb6cSJohn Baldwin */ 554c55bbb6cSJohn Baldwin static void 555e17c57b1SJeff Roberson schedcpu_thread(void) 556c55bbb6cSJohn Baldwin { 557c55bbb6cSJohn Baldwin 558c55bbb6cSJohn Baldwin for (;;) { 559c55bbb6cSJohn Baldwin schedcpu(); 5604d70511aSJohn Baldwin pause("-", hz); 561c55bbb6cSJohn Baldwin } 562b43179fbSJeff Roberson } 563b43179fbSJeff Roberson 564b43179fbSJeff Roberson /* 565b43179fbSJeff Roberson * Recalculate the priority of a process after it has slept for a while. 5668460a577SJohn Birrell * For all load averages >= 1 and max td_estcpu of 255, sleeping for at 5678460a577SJohn Birrell * least six times the loadfactor will decay td_estcpu to zero. 568b43179fbSJeff Roberson */ 569b43179fbSJeff Roberson static void 5708460a577SJohn Birrell updatepri(struct thread *td) 571b43179fbSJeff Roberson { 57254b0e65fSJeff Roberson struct td_sched *ts; 57354b0e65fSJeff Roberson fixpt_t loadfac; 57454b0e65fSJeff Roberson unsigned int newcpu; 575b43179fbSJeff Roberson 57654b0e65fSJeff Roberson ts = td->td_sched; 57770fca427SJohn Baldwin loadfac = loadfactor(averunnable.ldavg[0]); 57854b0e65fSJeff Roberson if (ts->ts_slptime > 5 * loadfac) 5798460a577SJohn Birrell td->td_estcpu = 0; 580b43179fbSJeff Roberson else { 5818460a577SJohn Birrell newcpu = td->td_estcpu; 58254b0e65fSJeff Roberson ts->ts_slptime--; /* was incremented in schedcpu() */ 58354b0e65fSJeff Roberson while (newcpu && --ts->ts_slptime) 584b43179fbSJeff Roberson newcpu = decay_cpu(loadfac, newcpu); 5858460a577SJohn Birrell td->td_estcpu = newcpu; 586b43179fbSJeff Roberson } 587b43179fbSJeff Roberson } 588b43179fbSJeff Roberson 589b43179fbSJeff Roberson /* 590b43179fbSJeff Roberson * Compute the priority of a process when running in user mode. 591b43179fbSJeff Roberson * Arrange to reschedule if the resulting priority is better 592b43179fbSJeff Roberson * than that of the current process. 593b43179fbSJeff Roberson */ 594b43179fbSJeff Roberson static void 5958460a577SJohn Birrell resetpriority(struct thread *td) 596b43179fbSJeff Roberson { 597b43179fbSJeff Roberson register unsigned int newpriority; 598b43179fbSJeff Roberson 5998460a577SJohn Birrell if (td->td_pri_class == PRI_TIMESHARE) { 6008460a577SJohn Birrell newpriority = PUSER + td->td_estcpu / INVERSE_ESTCPU_WEIGHT + 6018460a577SJohn Birrell NICE_WEIGHT * (td->td_proc->p_nice - PRIO_MIN); 602b43179fbSJeff Roberson newpriority = min(max(newpriority, PRI_MIN_TIMESHARE), 603b43179fbSJeff Roberson PRI_MAX_TIMESHARE); 6048460a577SJohn Birrell sched_user_prio(td, newpriority); 605b43179fbSJeff Roberson } 606b43179fbSJeff Roberson } 607f5c157d9SJohn Baldwin 608f5c157d9SJohn Baldwin /* 609ad1e7d28SJulian Elischer * Update the thread's priority when the associated process's user 610f5c157d9SJohn Baldwin * priority changes. 611f5c157d9SJohn Baldwin */ 612f5c157d9SJohn Baldwin static void 6138460a577SJohn Birrell resetpriority_thread(struct thread *td) 614f5c157d9SJohn Baldwin { 615f5c157d9SJohn Baldwin 616f5c157d9SJohn Baldwin /* Only change threads with a time sharing user priority. */ 617f5c157d9SJohn Baldwin if (td->td_priority < PRI_MIN_TIMESHARE || 618f5c157d9SJohn Baldwin td->td_priority > PRI_MAX_TIMESHARE) 619f5c157d9SJohn Baldwin return; 620f5c157d9SJohn Baldwin 621f5c157d9SJohn Baldwin /* XXX the whole needresched thing is broken, but not silly. */ 622f5c157d9SJohn Baldwin maybe_resched(td); 623f5c157d9SJohn Baldwin 6248460a577SJohn Birrell sched_prio(td, td->td_user_pri); 625b43179fbSJeff Roberson } 626b43179fbSJeff Roberson 627b43179fbSJeff Roberson /* ARGSUSED */ 628b43179fbSJeff Roberson static void 629b43179fbSJeff Roberson sched_setup(void *dummy) 630b43179fbSJeff Roberson { 631e17c57b1SJeff Roberson setup_runqs(); 63270fca427SJohn Baldwin 633*48317e9eSAlexander Motin /* 634*48317e9eSAlexander Motin * To avoid divide-by-zero, we set realstathz a dummy value 635*48317e9eSAlexander Motin * in case which sched_clock() called before sched_initticks(). 636*48317e9eSAlexander Motin */ 637*48317e9eSAlexander Motin realstathz = hz; 638*48317e9eSAlexander Motin sched_slice = realstathz / 10; /* ~100ms */ 639b43179fbSJeff Roberson 640ca59f152SJeff Roberson /* Account for thread0. */ 641907bdbc2SJeff Roberson sched_load_add(); 642b43179fbSJeff Roberson } 643b43179fbSJeff Roberson 644*48317e9eSAlexander Motin /* 645*48317e9eSAlexander Motin * This routine determines the sched_slice after stathz and hz are setup. 646*48317e9eSAlexander Motin */ 647*48317e9eSAlexander Motin static void 648*48317e9eSAlexander Motin sched_initticks(void *dummy) 649*48317e9eSAlexander Motin { 650*48317e9eSAlexander Motin 651*48317e9eSAlexander Motin realstathz = stathz ? stathz : hz; 652*48317e9eSAlexander Motin sched_slice = realstathz / 10; /* ~100ms */ 653*48317e9eSAlexander Motin } 654*48317e9eSAlexander Motin 655b43179fbSJeff Roberson /* External interfaces start here */ 6568aa3d7ffSJohn Baldwin 657ed062c8dSJulian Elischer /* 658ed062c8dSJulian Elischer * Very early in the boot some setup of scheduler-specific 659f3050486SMaxim Konovalov * parts of proc0 and of some scheduler resources needs to be done. 660ed062c8dSJulian Elischer * Called from: 661ed062c8dSJulian Elischer * proc0_init() 662ed062c8dSJulian Elischer */ 663ed062c8dSJulian Elischer void 664ed062c8dSJulian Elischer schedinit(void) 665ed062c8dSJulian Elischer { 666ed062c8dSJulian Elischer /* 667ed062c8dSJulian Elischer * Set up the scheduler specific parts of proc0. 668ed062c8dSJulian Elischer */ 669ed062c8dSJulian Elischer proc0.p_sched = NULL; /* XXX */ 670ad1e7d28SJulian Elischer thread0.td_sched = &td_sched0; 6717b20fb19SJeff Roberson thread0.td_lock = &sched_lock; 672*48317e9eSAlexander Motin td_sched0.ts_slice = sched_slice; 6736ea38de8SJeff Roberson mtx_init(&sched_lock, "sched lock", NULL, MTX_SPIN | MTX_RECURSE); 674ed062c8dSJulian Elischer } 675ed062c8dSJulian Elischer 676b43179fbSJeff Roberson int 677b43179fbSJeff Roberson sched_runnable(void) 678b43179fbSJeff Roberson { 679e17c57b1SJeff Roberson #ifdef SMP 680e17c57b1SJeff Roberson return runq_check(&runq) + runq_check(&runq_pcpu[PCPU_GET(cpuid)]); 681e17c57b1SJeff Roberson #else 682b43179fbSJeff Roberson return runq_check(&runq); 683e17c57b1SJeff Roberson #endif 684b43179fbSJeff Roberson } 685b43179fbSJeff Roberson 686b43179fbSJeff Roberson int 687b43179fbSJeff Roberson sched_rr_interval(void) 688b43179fbSJeff Roberson { 689*48317e9eSAlexander Motin 690*48317e9eSAlexander Motin /* Convert sched_slice from stathz to hz. */ 691*48317e9eSAlexander Motin return (hz / (realstathz / sched_slice)); 692b43179fbSJeff Roberson } 693b43179fbSJeff Roberson 694b43179fbSJeff Roberson /* 695b43179fbSJeff Roberson * We adjust the priority of the current process. The priority of 696b43179fbSJeff Roberson * a process gets worse as it accumulates CPU time. The cpu usage 6978460a577SJohn Birrell * estimator (td_estcpu) is increased here. resetpriority() will 6988460a577SJohn Birrell * compute a different priority each time td_estcpu increases by 699b43179fbSJeff Roberson * INVERSE_ESTCPU_WEIGHT 700b43179fbSJeff Roberson * (until MAXPRI is reached). The cpu usage estimator ramps up 701b43179fbSJeff Roberson * quite quickly when the process is running (linearly), and decays 702b43179fbSJeff Roberson * away exponentially, at a rate which is proportionally slower when 703b43179fbSJeff Roberson * the system is busy. The basic principle is that the system will 704b43179fbSJeff Roberson * 90% forget that the process used a lot of CPU time in 5 * loadav 705b43179fbSJeff Roberson * seconds. This causes the system to favor processes which haven't 706b43179fbSJeff Roberson * run much recently, and to round-robin among other processes. 707b43179fbSJeff Roberson */ 708b43179fbSJeff Roberson void 7097cf90fb3SJeff Roberson sched_clock(struct thread *td) 710b43179fbSJeff Roberson { 711b722ad00SAlexander Motin struct pcpuidlestat *stat; 712ad1e7d28SJulian Elischer struct td_sched *ts; 713b43179fbSJeff Roberson 7147b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 715ad1e7d28SJulian Elischer ts = td->td_sched; 716f7f9e7f3SJeff Roberson 717ad1e7d28SJulian Elischer ts->ts_cpticks++; 7188460a577SJohn Birrell td->td_estcpu = ESTCPULIM(td->td_estcpu + 1); 7198460a577SJohn Birrell if ((td->td_estcpu % INVERSE_ESTCPU_WEIGHT) == 0) { 7208460a577SJohn Birrell resetpriority(td); 7218460a577SJohn Birrell resetpriority_thread(td); 722b43179fbSJeff Roberson } 7239dddab6fSJohn Baldwin 7249dddab6fSJohn Baldwin /* 7259dddab6fSJohn Baldwin * Force a context switch if the current thread has used up a full 7269dddab6fSJohn Baldwin * quantum (default quantum is 100ms). 7279dddab6fSJohn Baldwin */ 728*48317e9eSAlexander Motin if (!TD_IS_IDLETHREAD(td) && (--ts->ts_slice <= 0)) { 729*48317e9eSAlexander Motin ts->ts_slice = sched_slice; 7309dddab6fSJohn Baldwin td->td_flags |= TDF_NEEDRESCHED; 731*48317e9eSAlexander Motin } 732b722ad00SAlexander Motin 733b722ad00SAlexander Motin stat = DPCPU_PTR(idlestat); 734b722ad00SAlexander Motin stat->oldidlecalls = stat->idlecalls; 735b722ad00SAlexander Motin stat->idlecalls = 0; 736b43179fbSJeff Roberson } 73770fca427SJohn Baldwin 7388460a577SJohn Birrell /* 7398aa3d7ffSJohn Baldwin * Charge child's scheduling CPU usage to parent. 7408460a577SJohn Birrell */ 741b43179fbSJeff Roberson void 74255d44f79SJulian Elischer sched_exit(struct proc *p, struct thread *td) 743f7f9e7f3SJeff Roberson { 7448460a577SJohn Birrell 7458f51ad55SJeff Roberson KTR_STATE1(KTR_SCHED, "thread", sched_tdname(td), "proc exit", 746cd39bb09SXin LI "prio:%d", td->td_priority); 7478f51ad55SJeff Roberson 748374ae2a3SJeff Roberson PROC_LOCK_ASSERT(p, MA_OWNED); 749ad1e7d28SJulian Elischer sched_exit_thread(FIRST_THREAD_IN_PROC(p), td); 750b43179fbSJeff Roberson } 751b43179fbSJeff Roberson 752b43179fbSJeff Roberson void 753f7f9e7f3SJeff Roberson sched_exit_thread(struct thread *td, struct thread *child) 754b43179fbSJeff Roberson { 755ad1e7d28SJulian Elischer 7568f51ad55SJeff Roberson KTR_STATE1(KTR_SCHED, "thread", sched_tdname(child), "exit", 757cd39bb09SXin LI "prio:%d", child->td_priority); 7587b20fb19SJeff Roberson thread_lock(td); 759ad1e7d28SJulian Elischer td->td_estcpu = ESTCPULIM(td->td_estcpu + child->td_estcpu); 7607b20fb19SJeff Roberson thread_unlock(td); 7611b9d701fSAttilio Rao thread_lock(child); 7621b9d701fSAttilio Rao if ((child->td_flags & TDF_NOLOAD) == 0) 763907bdbc2SJeff Roberson sched_load_rem(); 7641b9d701fSAttilio Rao thread_unlock(child); 765f7f9e7f3SJeff Roberson } 766bcb06d59SJeff Roberson 767f7f9e7f3SJeff Roberson void 768ed062c8dSJulian Elischer sched_fork(struct thread *td, struct thread *childtd) 769f7f9e7f3SJeff Roberson { 770ed062c8dSJulian Elischer sched_fork_thread(td, childtd); 771f7f9e7f3SJeff Roberson } 772bcb06d59SJeff Roberson 773f7f9e7f3SJeff Roberson void 774ed062c8dSJulian Elischer sched_fork_thread(struct thread *td, struct thread *childtd) 775f7f9e7f3SJeff Roberson { 7768b16c208SJeff Roberson struct td_sched *ts; 7778b16c208SJeff Roberson 778ad1e7d28SJulian Elischer childtd->td_estcpu = td->td_estcpu; 7797b20fb19SJeff Roberson childtd->td_lock = &sched_lock; 780f5a3ef99SMarcel Moolenaar childtd->td_cpuset = cpuset_ref(td->td_cpuset); 78122d19207SJohn Baldwin childtd->td_priority = childtd->td_base_pri; 7828b16c208SJeff Roberson ts = childtd->td_sched; 7838b16c208SJeff Roberson bzero(ts, sizeof(*ts)); 784f200843bSJohn Baldwin ts->ts_flags |= (td->td_sched->ts_flags & TSF_AFFINITY); 785*48317e9eSAlexander Motin ts->ts_slice = 1; 786b43179fbSJeff Roberson } 787b43179fbSJeff Roberson 788b43179fbSJeff Roberson void 789fa885116SJulian Elischer sched_nice(struct proc *p, int nice) 790b43179fbSJeff Roberson { 791f5c157d9SJohn Baldwin struct thread *td; 7920b5318c8SJohn Baldwin 793fa885116SJulian Elischer PROC_LOCK_ASSERT(p, MA_OWNED); 794fa885116SJulian Elischer p->p_nice = nice; 7958460a577SJohn Birrell FOREACH_THREAD_IN_PROC(p, td) { 7967b20fb19SJeff Roberson thread_lock(td); 7978460a577SJohn Birrell resetpriority(td); 7988460a577SJohn Birrell resetpriority_thread(td); 7997b20fb19SJeff Roberson thread_unlock(td); 8008460a577SJohn Birrell } 801fa885116SJulian Elischer } 802b43179fbSJeff Roberson 803f7f9e7f3SJeff Roberson void 8048460a577SJohn Birrell sched_class(struct thread *td, int class) 805f7f9e7f3SJeff Roberson { 8067b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 8078460a577SJohn Birrell td->td_pri_class = class; 808f7f9e7f3SJeff Roberson } 809f7f9e7f3SJeff Roberson 8108460a577SJohn Birrell /* 8118460a577SJohn Birrell * Adjust the priority of a thread. 8128460a577SJohn Birrell */ 813f5c157d9SJohn Baldwin static void 814f5c157d9SJohn Baldwin sched_priority(struct thread *td, u_char prio) 815b43179fbSJeff Roberson { 816b43179fbSJeff Roberson 8178f51ad55SJeff Roberson 8188f51ad55SJeff Roberson KTR_POINT3(KTR_SCHED, "thread", sched_tdname(td), "priority change", 8198f51ad55SJeff Roberson "prio:%d", td->td_priority, "new prio:%d", prio, KTR_ATTR_LINKED, 8208f51ad55SJeff Roberson sched_tdname(curthread)); 821b3e9e682SRyan Stone SDT_PROBE3(sched, , , change_pri, td, td->td_proc, prio); 8228f51ad55SJeff Roberson if (td != curthread && prio > td->td_priority) { 8238f51ad55SJeff Roberson KTR_POINT3(KTR_SCHED, "thread", sched_tdname(curthread), 8248f51ad55SJeff Roberson "lend prio", "prio:%d", td->td_priority, "new prio:%d", 8258f51ad55SJeff Roberson prio, KTR_ATTR_LINKED, sched_tdname(td)); 826b3e9e682SRyan Stone SDT_PROBE4(sched, , , lend_pri, td, td->td_proc, prio, 827b3e9e682SRyan Stone curthread); 8288f51ad55SJeff Roberson } 8297b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 830f5c157d9SJohn Baldwin if (td->td_priority == prio) 831f5c157d9SJohn Baldwin return; 8321f955e2dSJulian Elischer td->td_priority = prio; 8339727e637SJeff Roberson if (TD_ON_RUNQ(td) && td->td_rqindex != (prio / RQ_PPQ)) { 834f0393f06SJeff Roberson sched_rem(td); 835f0393f06SJeff Roberson sched_add(td, SRQ_BORING); 836b43179fbSJeff Roberson } 837b43179fbSJeff Roberson } 838b43179fbSJeff Roberson 839f5c157d9SJohn Baldwin /* 840f5c157d9SJohn Baldwin * Update a thread's priority when it is lent another thread's 841f5c157d9SJohn Baldwin * priority. 842f5c157d9SJohn Baldwin */ 843f5c157d9SJohn Baldwin void 844f5c157d9SJohn Baldwin sched_lend_prio(struct thread *td, u_char prio) 845f5c157d9SJohn Baldwin { 846f5c157d9SJohn Baldwin 847f5c157d9SJohn Baldwin td->td_flags |= TDF_BORROWING; 848f5c157d9SJohn Baldwin sched_priority(td, prio); 849f5c157d9SJohn Baldwin } 850f5c157d9SJohn Baldwin 851f5c157d9SJohn Baldwin /* 852f5c157d9SJohn Baldwin * Restore a thread's priority when priority propagation is 853f5c157d9SJohn Baldwin * over. The prio argument is the minimum priority the thread 854f5c157d9SJohn Baldwin * needs to have to satisfy other possible priority lending 855f5c157d9SJohn Baldwin * requests. If the thread's regulary priority is less 856f5c157d9SJohn Baldwin * important than prio the thread will keep a priority boost 857f5c157d9SJohn Baldwin * of prio. 858f5c157d9SJohn Baldwin */ 859f5c157d9SJohn Baldwin void 860f5c157d9SJohn Baldwin sched_unlend_prio(struct thread *td, u_char prio) 861f5c157d9SJohn Baldwin { 862f5c157d9SJohn Baldwin u_char base_pri; 863f5c157d9SJohn Baldwin 864f5c157d9SJohn Baldwin if (td->td_base_pri >= PRI_MIN_TIMESHARE && 865f5c157d9SJohn Baldwin td->td_base_pri <= PRI_MAX_TIMESHARE) 8668460a577SJohn Birrell base_pri = td->td_user_pri; 867f5c157d9SJohn Baldwin else 868f5c157d9SJohn Baldwin base_pri = td->td_base_pri; 869f5c157d9SJohn Baldwin if (prio >= base_pri) { 870f5c157d9SJohn Baldwin td->td_flags &= ~TDF_BORROWING; 871f5c157d9SJohn Baldwin sched_prio(td, base_pri); 872f5c157d9SJohn Baldwin } else 873f5c157d9SJohn Baldwin sched_lend_prio(td, prio); 874f5c157d9SJohn Baldwin } 875f5c157d9SJohn Baldwin 876f5c157d9SJohn Baldwin void 877f5c157d9SJohn Baldwin sched_prio(struct thread *td, u_char prio) 878f5c157d9SJohn Baldwin { 879f5c157d9SJohn Baldwin u_char oldprio; 880f5c157d9SJohn Baldwin 881f5c157d9SJohn Baldwin /* First, update the base priority. */ 882f5c157d9SJohn Baldwin td->td_base_pri = prio; 883f5c157d9SJohn Baldwin 884f5c157d9SJohn Baldwin /* 885f5c157d9SJohn Baldwin * If the thread is borrowing another thread's priority, don't ever 886f5c157d9SJohn Baldwin * lower the priority. 887f5c157d9SJohn Baldwin */ 888f5c157d9SJohn Baldwin if (td->td_flags & TDF_BORROWING && td->td_priority < prio) 889f5c157d9SJohn Baldwin return; 890f5c157d9SJohn Baldwin 891f5c157d9SJohn Baldwin /* Change the real priority. */ 892f5c157d9SJohn Baldwin oldprio = td->td_priority; 893f5c157d9SJohn Baldwin sched_priority(td, prio); 894f5c157d9SJohn Baldwin 895f5c157d9SJohn Baldwin /* 896f5c157d9SJohn Baldwin * If the thread is on a turnstile, then let the turnstile update 897f5c157d9SJohn Baldwin * its state. 898f5c157d9SJohn Baldwin */ 899f5c157d9SJohn Baldwin if (TD_ON_LOCK(td) && oldprio != prio) 900f5c157d9SJohn Baldwin turnstile_adjust(td, oldprio); 901f5c157d9SJohn Baldwin } 902f5c157d9SJohn Baldwin 903b43179fbSJeff Roberson void 9048460a577SJohn Birrell sched_user_prio(struct thread *td, u_char prio) 9053db720fdSDavid Xu { 9063db720fdSDavid Xu 907435806d3SDavid Xu THREAD_LOCK_ASSERT(td, MA_OWNED); 9088460a577SJohn Birrell td->td_base_user_pri = prio; 909acbe332aSDavid Xu if (td->td_lend_user_pri <= prio) 9105a215147SDavid Xu return; 9118460a577SJohn Birrell td->td_user_pri = prio; 9123db720fdSDavid Xu } 9133db720fdSDavid Xu 9143db720fdSDavid Xu void 9153db720fdSDavid Xu sched_lend_user_prio(struct thread *td, u_char prio) 9163db720fdSDavid Xu { 9173db720fdSDavid Xu 918435806d3SDavid Xu THREAD_LOCK_ASSERT(td, MA_OWNED); 919acbe332aSDavid Xu td->td_lend_user_pri = prio; 920c8e368a9SDavid Xu td->td_user_pri = min(prio, td->td_base_user_pri); 921c8e368a9SDavid Xu if (td->td_priority > td->td_user_pri) 922c8e368a9SDavid Xu sched_prio(td, td->td_user_pri); 923c8e368a9SDavid Xu else if (td->td_priority != td->td_user_pri) 924c8e368a9SDavid Xu td->td_flags |= TDF_NEEDRESCHED; 925435806d3SDavid Xu } 9263db720fdSDavid Xu 9273db720fdSDavid Xu void 928c5aa6b58SJeff Roberson sched_sleep(struct thread *td, int pri) 929b43179fbSJeff Roberson { 9302056d0a1SJohn Baldwin 9317b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 93254b0e65fSJeff Roberson td->td_slptick = ticks; 93354b0e65fSJeff Roberson td->td_sched->ts_slptime = 0; 9342dc29adbSJohn Baldwin if (pri != 0 && PRI_BASE(td->td_pri_class) == PRI_TIMESHARE) 935c5aa6b58SJeff Roberson sched_prio(td, pri); 93617c4c356SKonstantin Belousov if (TD_IS_SUSPENDED(td) || pri >= PSOCK) 937c5aa6b58SJeff Roberson td->td_flags |= TDF_CANSWAP; 938b43179fbSJeff Roberson } 939b43179fbSJeff Roberson 940b43179fbSJeff Roberson void 9413389af30SJulian Elischer sched_switch(struct thread *td, struct thread *newtd, int flags) 942b43179fbSJeff Roberson { 943b0b9dee5SAttilio Rao struct mtx *tmtx; 944ad1e7d28SJulian Elischer struct td_sched *ts; 945b43179fbSJeff Roberson struct proc *p; 946b43179fbSJeff Roberson 947b0b9dee5SAttilio Rao tmtx = NULL; 948ad1e7d28SJulian Elischer ts = td->td_sched; 949b43179fbSJeff Roberson p = td->td_proc; 950b43179fbSJeff Roberson 9517b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 9528aa3d7ffSJohn Baldwin 9537b20fb19SJeff Roberson /* 9547b20fb19SJeff Roberson * Switch to the sched lock to fix things up and pick 9557b20fb19SJeff Roberson * a new thread. 956b0b9dee5SAttilio Rao * Block the td_lock in order to avoid breaking the critical path. 9577b20fb19SJeff Roberson */ 9587b20fb19SJeff Roberson if (td->td_lock != &sched_lock) { 9597b20fb19SJeff Roberson mtx_lock_spin(&sched_lock); 960b0b9dee5SAttilio Rao tmtx = thread_lock_block(td); 9617b20fb19SJeff Roberson } 962b43179fbSJeff Roberson 9631b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 964907bdbc2SJeff Roberson sched_load_rem(); 9653389af30SJulian Elischer 966060563ecSJulian Elischer td->td_lastcpu = td->td_oncpu; 967586cb6ecSFabien Thomas if (!(flags & SW_PREEMPT)) 96852eb8464SJohn Baldwin td->td_flags &= ~TDF_NEEDRESCHED; 96977918643SStephan Uphoff td->td_owepreempt = 0; 970ca59f152SJeff Roberson td->td_oncpu = NOCPU; 9718aa3d7ffSJohn Baldwin 972b43179fbSJeff Roberson /* 973b43179fbSJeff Roberson * At the last moment, if this thread is still marked RUNNING, 974b43179fbSJeff Roberson * then put it back on the run queue as it has not been suspended 975bf0acc27SJohn Baldwin * or stopped or any thing else similar. We never put the idle 976bf0acc27SJohn Baldwin * threads on the run queue, however. 977b43179fbSJeff Roberson */ 978c6226eeaSJulian Elischer if (td->td_flags & TDF_IDLETD) { 979bf0acc27SJohn Baldwin TD_SET_CAN_RUN(td); 980c6226eeaSJulian Elischer #ifdef SMP 981a38f1f26SAttilio Rao CPU_CLR(PCPU_GET(cpuid), &idle_cpus_mask); 982c6226eeaSJulian Elischer #endif 983c6226eeaSJulian Elischer } else { 984ed062c8dSJulian Elischer if (TD_IS_RUNNING(td)) { 985ad1e7d28SJulian Elischer /* Put us back on the run queue. */ 986f0393f06SJeff Roberson sched_add(td, (flags & SW_PREEMPT) ? 987c20c691bSJulian Elischer SRQ_OURSELF|SRQ_YIELDING|SRQ_PREEMPTED : 988c20c691bSJulian Elischer SRQ_OURSELF|SRQ_YIELDING); 989ed062c8dSJulian Elischer } 990b43179fbSJeff Roberson } 991c20c691bSJulian Elischer if (newtd) { 992c20c691bSJulian Elischer /* 993c20c691bSJulian Elischer * The thread we are about to run needs to be counted 994c20c691bSJulian Elischer * as if it had been added to the run queue and selected. 995c20c691bSJulian Elischer * It came from: 996c20c691bSJulian Elischer * * A preemption 997c20c691bSJulian Elischer * * An upcall 998c20c691bSJulian Elischer * * A followon 999c20c691bSJulian Elischer */ 1000c20c691bSJulian Elischer KASSERT((newtd->td_inhibitors == 0), 10012da78e38SRobert Watson ("trying to run inhibited thread")); 10029727e637SJeff Roberson newtd->td_flags |= TDF_DIDRUN; 1003c20c691bSJulian Elischer TD_SET_RUNNING(newtd); 10041b9d701fSAttilio Rao if ((newtd->td_flags & TDF_NOLOAD) == 0) 1005907bdbc2SJeff Roberson sched_load_add(); 1006c20c691bSJulian Elischer } else { 1007ae53b483SJeff Roberson newtd = choosethread(); 10087b20fb19SJeff Roberson MPASS(newtd->td_lock == &sched_lock); 100958060789SAttilio Rao } 1010c20c691bSJulian Elischer 1011ebccf1e3SJoseph Koshy if (td != newtd) { 1012ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS 1013ebccf1e3SJoseph Koshy if (PMC_PROC_IS_USING_PMCS(td->td_proc)) 1014ebccf1e3SJoseph Koshy PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_OUT); 1015ebccf1e3SJoseph Koshy #endif 1016b3e9e682SRyan Stone 1017b3e9e682SRyan Stone SDT_PROBE2(sched, , , off_cpu, td, td->td_proc); 1018b3e9e682SRyan Stone 1019c6226eeaSJulian Elischer /* I feel sleepy */ 1020eea4f254SJeff Roberson lock_profile_release_lock(&sched_lock.lock_object); 10216f5f25e5SJohn Birrell #ifdef KDTRACE_HOOKS 10226f5f25e5SJohn Birrell /* 10236f5f25e5SJohn Birrell * If DTrace has set the active vtime enum to anything 10246f5f25e5SJohn Birrell * other than INACTIVE (0), then it should have set the 10256f5f25e5SJohn Birrell * function to call. 10266f5f25e5SJohn Birrell */ 10276f5f25e5SJohn Birrell if (dtrace_vtime_active) 10286f5f25e5SJohn Birrell (*dtrace_vtime_switch_func)(newtd); 10296f5f25e5SJohn Birrell #endif 10306f5f25e5SJohn Birrell 1031b0b9dee5SAttilio Rao cpu_switch(td, newtd, tmtx != NULL ? tmtx : td->td_lock); 1032eea4f254SJeff Roberson lock_profile_obtain_lock_success(&sched_lock.lock_object, 1033eea4f254SJeff Roberson 0, 0, __FILE__, __LINE__); 1034c6226eeaSJulian Elischer /* 1035c6226eeaSJulian Elischer * Where am I? What year is it? 1036c6226eeaSJulian Elischer * We are in the same thread that went to sleep above, 10378aa3d7ffSJohn Baldwin * but any amount of time may have passed. All our context 1038c6226eeaSJulian Elischer * will still be available as will local variables. 1039c6226eeaSJulian Elischer * PCPU values however may have changed as we may have 1040c6226eeaSJulian Elischer * changed CPU so don't trust cached values of them. 1041c6226eeaSJulian Elischer * New threads will go to fork_exit() instead of here 1042c6226eeaSJulian Elischer * so if you change things here you may need to change 1043c6226eeaSJulian Elischer * things there too. 10448aa3d7ffSJohn Baldwin * 1045c6226eeaSJulian Elischer * If the thread above was exiting it will never wake 1046c6226eeaSJulian Elischer * up again here, so either it has saved everything it 1047c6226eeaSJulian Elischer * needed to, or the thread_wait() or wait() will 1048c6226eeaSJulian Elischer * need to reap it. 1049c6226eeaSJulian Elischer */ 1050b3e9e682SRyan Stone 1051b3e9e682SRyan Stone SDT_PROBE0(sched, , , on_cpu); 1052ebccf1e3SJoseph Koshy #ifdef HWPMC_HOOKS 1053ebccf1e3SJoseph Koshy if (PMC_PROC_IS_USING_PMCS(td->td_proc)) 1054ebccf1e3SJoseph Koshy PMC_SWITCH_CONTEXT(td, PMC_FN_CSW_IN); 1055ebccf1e3SJoseph Koshy #endif 1056b3e9e682SRyan Stone } else 1057b3e9e682SRyan Stone SDT_PROBE0(sched, , , remain_cpu); 1058ebccf1e3SJoseph Koshy 1059c6226eeaSJulian Elischer #ifdef SMP 1060c6226eeaSJulian Elischer if (td->td_flags & TDF_IDLETD) 1061a38f1f26SAttilio Rao CPU_SET(PCPU_GET(cpuid), &idle_cpus_mask); 1062c6226eeaSJulian Elischer #endif 1063ae53b483SJeff Roberson sched_lock.mtx_lock = (uintptr_t)td; 1064ae53b483SJeff Roberson td->td_oncpu = PCPU_GET(cpuid); 10657b20fb19SJeff Roberson MPASS(td->td_lock == &sched_lock); 1066b43179fbSJeff Roberson } 1067b43179fbSJeff Roberson 1068b43179fbSJeff Roberson void 1069b43179fbSJeff Roberson sched_wakeup(struct thread *td) 1070b43179fbSJeff Roberson { 107154b0e65fSJeff Roberson struct td_sched *ts; 107254b0e65fSJeff Roberson 10737b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 107454b0e65fSJeff Roberson ts = td->td_sched; 1075c5aa6b58SJeff Roberson td->td_flags &= ~TDF_CANSWAP; 107654b0e65fSJeff Roberson if (ts->ts_slptime > 1) { 10778460a577SJohn Birrell updatepri(td); 10788460a577SJohn Birrell resetpriority(td); 10798460a577SJohn Birrell } 10806eac7e57SAttilio Rao td->td_slptick = 0; 108154b0e65fSJeff Roberson ts->ts_slptime = 0; 1082*48317e9eSAlexander Motin ts->ts_slice = sched_slice; 1083f0393f06SJeff Roberson sched_add(td, SRQ_BORING); 1084b43179fbSJeff Roberson } 1085b43179fbSJeff Roberson 108637c28a02SJulian Elischer #ifdef SMP 108782a1dfc1SJulian Elischer static int 108882a1dfc1SJulian Elischer forward_wakeup(int cpunum) 108982a1dfc1SJulian Elischer { 109082a1dfc1SJulian Elischer struct pcpu *pc; 1091a38f1f26SAttilio Rao cpuset_t dontuse, map, map2; 1092a38f1f26SAttilio Rao u_int id, me; 109371a19bdcSAttilio Rao int iscpuset; 109482a1dfc1SJulian Elischer 109582a1dfc1SJulian Elischer mtx_assert(&sched_lock, MA_OWNED); 109682a1dfc1SJulian Elischer 1097ed062c8dSJulian Elischer CTR0(KTR_RUNQ, "forward_wakeup()"); 109882a1dfc1SJulian Elischer 109982a1dfc1SJulian Elischer if ((!forward_wakeup_enabled) || 110082a1dfc1SJulian Elischer (forward_wakeup_use_mask == 0 && forward_wakeup_use_loop == 0)) 110182a1dfc1SJulian Elischer return (0); 110282a1dfc1SJulian Elischer if (!smp_started || cold || panicstr) 110382a1dfc1SJulian Elischer return (0); 110482a1dfc1SJulian Elischer 110582a1dfc1SJulian Elischer forward_wakeups_requested++; 110682a1dfc1SJulian Elischer 110782a1dfc1SJulian Elischer /* 11088aa3d7ffSJohn Baldwin * Check the idle mask we received against what we calculated 11098aa3d7ffSJohn Baldwin * before in the old version. 111082a1dfc1SJulian Elischer */ 1111a38f1f26SAttilio Rao me = PCPU_GET(cpuid); 11128aa3d7ffSJohn Baldwin 11138aa3d7ffSJohn Baldwin /* Don't bother if we should be doing it ourself. */ 1114a38f1f26SAttilio Rao if (CPU_ISSET(me, &idle_cpus_mask) && 1115a38f1f26SAttilio Rao (cpunum == NOCPU || me == cpunum)) 111682a1dfc1SJulian Elischer return (0); 111782a1dfc1SJulian Elischer 1118a38f1f26SAttilio Rao CPU_SETOF(me, &dontuse); 111971a19bdcSAttilio Rao CPU_OR(&dontuse, &stopped_cpus); 112071a19bdcSAttilio Rao CPU_OR(&dontuse, &hlt_cpus_mask); 112171a19bdcSAttilio Rao CPU_ZERO(&map2); 112282a1dfc1SJulian Elischer if (forward_wakeup_use_loop) { 1123d098f930SNathan Whitehorn STAILQ_FOREACH(pc, &cpuhead, pc_allcpu) { 1124a38f1f26SAttilio Rao id = pc->pc_cpuid; 1125a38f1f26SAttilio Rao if (!CPU_ISSET(id, &dontuse) && 112682a1dfc1SJulian Elischer pc->pc_curthread == pc->pc_idlethread) { 1127a38f1f26SAttilio Rao CPU_SET(id, &map2); 112882a1dfc1SJulian Elischer } 112982a1dfc1SJulian Elischer } 113082a1dfc1SJulian Elischer } 113182a1dfc1SJulian Elischer 113282a1dfc1SJulian Elischer if (forward_wakeup_use_mask) { 113371a19bdcSAttilio Rao map = idle_cpus_mask; 113471a19bdcSAttilio Rao CPU_NAND(&map, &dontuse); 113582a1dfc1SJulian Elischer 11368aa3d7ffSJohn Baldwin /* If they are both on, compare and use loop if different. */ 113782a1dfc1SJulian Elischer if (forward_wakeup_use_loop) { 113871a19bdcSAttilio Rao if (CPU_CMP(&map, &map2)) { 1139f0283a73SAttilio Rao printf("map != map2, loop method preferred\n"); 1140f0283a73SAttilio Rao map = map2; 114182a1dfc1SJulian Elischer } 114282a1dfc1SJulian Elischer } 114382a1dfc1SJulian Elischer } else { 1144f0283a73SAttilio Rao map = map2; 114582a1dfc1SJulian Elischer } 11468aa3d7ffSJohn Baldwin 11478aa3d7ffSJohn Baldwin /* If we only allow a specific CPU, then mask off all the others. */ 114882a1dfc1SJulian Elischer if (cpunum != NOCPU) { 114982a1dfc1SJulian Elischer KASSERT((cpunum <= mp_maxcpus),("forward_wakeup: bad cpunum.")); 115071a19bdcSAttilio Rao iscpuset = CPU_ISSET(cpunum, &map); 115171a19bdcSAttilio Rao if (iscpuset == 0) 115271a19bdcSAttilio Rao CPU_ZERO(&map); 115371a19bdcSAttilio Rao else 115471a19bdcSAttilio Rao CPU_SETOF(cpunum, &map); 115582a1dfc1SJulian Elischer } 115671a19bdcSAttilio Rao if (!CPU_EMPTY(&map)) { 115782a1dfc1SJulian Elischer forward_wakeups_delivered++; 1158d098f930SNathan Whitehorn STAILQ_FOREACH(pc, &cpuhead, pc_allcpu) { 1159a38f1f26SAttilio Rao id = pc->pc_cpuid; 1160a38f1f26SAttilio Rao if (!CPU_ISSET(id, &map)) 1161b722ad00SAlexander Motin continue; 1162b722ad00SAlexander Motin if (cpu_idle_wakeup(pc->pc_cpuid)) 1163a38f1f26SAttilio Rao CPU_CLR(id, &map); 1164b722ad00SAlexander Motin } 116571a19bdcSAttilio Rao if (!CPU_EMPTY(&map)) 116682a1dfc1SJulian Elischer ipi_selected(map, IPI_AST); 116782a1dfc1SJulian Elischer return (1); 116882a1dfc1SJulian Elischer } 116982a1dfc1SJulian Elischer if (cpunum == NOCPU) 117082a1dfc1SJulian Elischer printf("forward_wakeup: Idle processor not found\n"); 117182a1dfc1SJulian Elischer return (0); 117282a1dfc1SJulian Elischer } 1173f3a0f873SStephan Uphoff 1174f3a0f873SStephan Uphoff static void 1175f3a0f873SStephan Uphoff kick_other_cpu(int pri, int cpuid) 1176f3a0f873SStephan Uphoff { 11778aa3d7ffSJohn Baldwin struct pcpu *pcpu; 11788aa3d7ffSJohn Baldwin int cpri; 1179f3a0f873SStephan Uphoff 11808aa3d7ffSJohn Baldwin pcpu = pcpu_find(cpuid); 1181a38f1f26SAttilio Rao if (CPU_ISSET(cpuid, &idle_cpus_mask)) { 1182f3a0f873SStephan Uphoff forward_wakeups_delivered++; 1183b722ad00SAlexander Motin if (!cpu_idle_wakeup(cpuid)) 1184d9d8d144SJohn Baldwin ipi_cpu(cpuid, IPI_AST); 1185f3a0f873SStephan Uphoff return; 1186f3a0f873SStephan Uphoff } 1187f3a0f873SStephan Uphoff 11888aa3d7ffSJohn Baldwin cpri = pcpu->pc_curthread->td_priority; 1189f3a0f873SStephan Uphoff if (pri >= cpri) 1190f3a0f873SStephan Uphoff return; 1191f3a0f873SStephan Uphoff 1192f3a0f873SStephan Uphoff #if defined(IPI_PREEMPTION) && defined(PREEMPTION) 1193f3a0f873SStephan Uphoff #if !defined(FULL_PREEMPTION) 1194f3a0f873SStephan Uphoff if (pri <= PRI_MAX_ITHD) 1195f3a0f873SStephan Uphoff #endif /* ! FULL_PREEMPTION */ 1196f3a0f873SStephan Uphoff { 1197d9d8d144SJohn Baldwin ipi_cpu(cpuid, IPI_PREEMPT); 1198f3a0f873SStephan Uphoff return; 1199f3a0f873SStephan Uphoff } 1200f3a0f873SStephan Uphoff #endif /* defined(IPI_PREEMPTION) && defined(PREEMPTION) */ 1201f3a0f873SStephan Uphoff 1202f3a0f873SStephan Uphoff pcpu->pc_curthread->td_flags |= TDF_NEEDRESCHED; 1203d9d8d144SJohn Baldwin ipi_cpu(cpuid, IPI_AST); 1204f3a0f873SStephan Uphoff return; 1205f3a0f873SStephan Uphoff } 1206f3a0f873SStephan Uphoff #endif /* SMP */ 1207f3a0f873SStephan Uphoff 1208f200843bSJohn Baldwin #ifdef SMP 1209f200843bSJohn Baldwin static int 1210f200843bSJohn Baldwin sched_pickcpu(struct thread *td) 1211f200843bSJohn Baldwin { 1212f200843bSJohn Baldwin int best, cpu; 1213f200843bSJohn Baldwin 1214f200843bSJohn Baldwin mtx_assert(&sched_lock, MA_OWNED); 1215f200843bSJohn Baldwin 1216c3ea3378SJohn Baldwin if (THREAD_CAN_SCHED(td, td->td_lastcpu)) 1217c3ea3378SJohn Baldwin best = td->td_lastcpu; 1218c3ea3378SJohn Baldwin else 1219f200843bSJohn Baldwin best = NOCPU; 12203aa6d94eSJohn Baldwin CPU_FOREACH(cpu) { 1221f200843bSJohn Baldwin if (!THREAD_CAN_SCHED(td, cpu)) 1222f200843bSJohn Baldwin continue; 1223f200843bSJohn Baldwin 1224f200843bSJohn Baldwin if (best == NOCPU) 1225f200843bSJohn Baldwin best = cpu; 1226f200843bSJohn Baldwin else if (runq_length[cpu] < runq_length[best]) 1227f200843bSJohn Baldwin best = cpu; 1228f200843bSJohn Baldwin } 1229f200843bSJohn Baldwin KASSERT(best != NOCPU, ("no valid CPUs")); 1230f200843bSJohn Baldwin 1231f200843bSJohn Baldwin return (best); 1232f200843bSJohn Baldwin } 1233f200843bSJohn Baldwin #endif 1234f200843bSJohn Baldwin 1235b43179fbSJeff Roberson void 12362630e4c9SJulian Elischer sched_add(struct thread *td, int flags) 12376804a3abSJulian Elischer #ifdef SMP 1238f3a0f873SStephan Uphoff { 1239a38f1f26SAttilio Rao cpuset_t tidlemsk; 1240ad1e7d28SJulian Elischer struct td_sched *ts; 1241a38f1f26SAttilio Rao u_int cpu, cpuid; 12426804a3abSJulian Elischer int forwarded = 0; 1243f3a0f873SStephan Uphoff int single_cpu = 0; 12447cf90fb3SJeff Roberson 1245ad1e7d28SJulian Elischer ts = td->td_sched; 12467b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1247f0393f06SJeff Roberson KASSERT((td->td_inhibitors == 0), 1248f0393f06SJeff Roberson ("sched_add: trying to run inhibited thread")); 1249f0393f06SJeff Roberson KASSERT((TD_CAN_RUN(td) || TD_IS_RUNNING(td)), 1250f0393f06SJeff Roberson ("sched_add: bad thread state")); 1251b61ce5b0SJeff Roberson KASSERT(td->td_flags & TDF_INMEM, 1252b61ce5b0SJeff Roberson ("sched_add: thread swapped out")); 12538f51ad55SJeff Roberson 12548f51ad55SJeff Roberson KTR_STATE2(KTR_SCHED, "thread", sched_tdname(td), "runq add", 12558f51ad55SJeff Roberson "prio:%d", td->td_priority, KTR_ATTR_LINKED, 12568f51ad55SJeff Roberson sched_tdname(curthread)); 12578f51ad55SJeff Roberson KTR_POINT1(KTR_SCHED, "thread", sched_tdname(curthread), "wokeup", 12588f51ad55SJeff Roberson KTR_ATTR_LINKED, sched_tdname(td)); 1259b3e9e682SRyan Stone SDT_PROBE4(sched, , , enqueue, td, td->td_proc, NULL, 1260b3e9e682SRyan Stone flags & SRQ_PREEMPTED); 12618f51ad55SJeff Roberson 12628aa3d7ffSJohn Baldwin 12637b20fb19SJeff Roberson /* 12647b20fb19SJeff Roberson * Now that the thread is moving to the run-queue, set the lock 12657b20fb19SJeff Roberson * to the scheduler's lock. 12667b20fb19SJeff Roberson */ 12677b20fb19SJeff Roberson if (td->td_lock != &sched_lock) { 12687b20fb19SJeff Roberson mtx_lock_spin(&sched_lock); 12697b20fb19SJeff Roberson thread_lock_set(td, &sched_lock); 12707b20fb19SJeff Roberson } 1271f0393f06SJeff Roberson TD_SET_RUNQ(td); 1272f3a0f873SStephan Uphoff 127360dd73b7SRyan Stone /* 127460dd73b7SRyan Stone * If SMP is started and the thread is pinned or otherwise limited to 127560dd73b7SRyan Stone * a specific set of CPUs, queue the thread to a per-CPU run queue. 127660dd73b7SRyan Stone * Otherwise, queue the thread to the global run queue. 127760dd73b7SRyan Stone * 127860dd73b7SRyan Stone * If SMP has not yet been started we must use the global run queue 127960dd73b7SRyan Stone * as per-CPU state may not be initialized yet and we may crash if we 128060dd73b7SRyan Stone * try to access the per-CPU run queues. 128160dd73b7SRyan Stone */ 128260dd73b7SRyan Stone if (smp_started && (td->td_pinned != 0 || td->td_flags & TDF_BOUND || 128360dd73b7SRyan Stone ts->ts_flags & TSF_AFFINITY)) { 128460dd73b7SRyan Stone if (td->td_pinned != 0) 1285f3a0f873SStephan Uphoff cpu = td->td_lastcpu; 128660dd73b7SRyan Stone else if (td->td_flags & TDF_BOUND) { 12878aa3d7ffSJohn Baldwin /* Find CPU from bound runq. */ 12888aa3d7ffSJohn Baldwin KASSERT(SKE_RUNQ_PCPU(ts), 12898aa3d7ffSJohn Baldwin ("sched_add: bound td_sched not on cpu runq")); 1290ad1e7d28SJulian Elischer cpu = ts->ts_runq - &runq_pcpu[0]; 129160dd73b7SRyan Stone } else 1292f200843bSJohn Baldwin /* Find a valid CPU for our cpuset */ 1293f200843bSJohn Baldwin cpu = sched_pickcpu(td); 1294f200843bSJohn Baldwin ts->ts_runq = &runq_pcpu[cpu]; 1295f200843bSJohn Baldwin single_cpu = 1; 1296f200843bSJohn Baldwin CTR3(KTR_RUNQ, 1297f200843bSJohn Baldwin "sched_add: Put td_sched:%p(td:%p) on cpu%d runq", ts, td, 1298f200843bSJohn Baldwin cpu); 1299f3a0f873SStephan Uphoff } else { 13006804a3abSJulian Elischer CTR2(KTR_RUNQ, 13018aa3d7ffSJohn Baldwin "sched_add: adding td_sched:%p (td:%p) to gbl runq", ts, 13028aa3d7ffSJohn Baldwin td); 13036804a3abSJulian Elischer cpu = NOCPU; 1304ad1e7d28SJulian Elischer ts->ts_runq = &runq; 1305e17c57b1SJeff Roberson } 1306f3a0f873SStephan Uphoff 1307a38f1f26SAttilio Rao cpuid = PCPU_GET(cpuid); 1308a38f1f26SAttilio Rao if (single_cpu && cpu != cpuid) { 1309f3a0f873SStephan Uphoff kick_other_cpu(td->td_priority, cpu); 1310f3a0f873SStephan Uphoff } else { 1311f3a0f873SStephan Uphoff if (!single_cpu) { 1312a38f1f26SAttilio Rao tidlemsk = idle_cpus_mask; 1313a38f1f26SAttilio Rao CPU_NAND(&tidlemsk, &hlt_cpus_mask); 1314a38f1f26SAttilio Rao CPU_CLR(cpuid, &tidlemsk); 1315f3a0f873SStephan Uphoff 1316a38f1f26SAttilio Rao if (!CPU_ISSET(cpuid, &idle_cpus_mask) && 1317a38f1f26SAttilio Rao ((flags & SRQ_INTR) == 0) && 131871a19bdcSAttilio Rao !CPU_EMPTY(&tidlemsk)) 1319f3a0f873SStephan Uphoff forwarded = forward_wakeup(cpu); 1320f3a0f873SStephan Uphoff } 1321f3a0f873SStephan Uphoff 1322f3a0f873SStephan Uphoff if (!forwarded) { 1323a3f2d842SStephan Uphoff if ((flags & SRQ_YIELDING) == 0 && maybe_preempt(td)) 1324f3a0f873SStephan Uphoff return; 1325f3a0f873SStephan Uphoff else 1326f3a0f873SStephan Uphoff maybe_resched(td); 1327f3a0f873SStephan Uphoff } 1328f3a0f873SStephan Uphoff } 1329f3a0f873SStephan Uphoff 13301b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 1331f3a0f873SStephan Uphoff sched_load_add(); 13329727e637SJeff Roberson runq_add(ts->ts_runq, td, flags); 1333f200843bSJohn Baldwin if (cpu != NOCPU) 1334f200843bSJohn Baldwin runq_length[cpu]++; 1335f3a0f873SStephan Uphoff } 1336f3a0f873SStephan Uphoff #else /* SMP */ 1337f3a0f873SStephan Uphoff { 1338ad1e7d28SJulian Elischer struct td_sched *ts; 1339f200843bSJohn Baldwin 1340ad1e7d28SJulian Elischer ts = td->td_sched; 13417b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 1342f0393f06SJeff Roberson KASSERT((td->td_inhibitors == 0), 1343f0393f06SJeff Roberson ("sched_add: trying to run inhibited thread")); 1344f0393f06SJeff Roberson KASSERT((TD_CAN_RUN(td) || TD_IS_RUNNING(td)), 1345f0393f06SJeff Roberson ("sched_add: bad thread state")); 1346b61ce5b0SJeff Roberson KASSERT(td->td_flags & TDF_INMEM, 1347b61ce5b0SJeff Roberson ("sched_add: thread swapped out")); 13488f51ad55SJeff Roberson KTR_STATE2(KTR_SCHED, "thread", sched_tdname(td), "runq add", 13498f51ad55SJeff Roberson "prio:%d", td->td_priority, KTR_ATTR_LINKED, 13508f51ad55SJeff Roberson sched_tdname(curthread)); 13518f51ad55SJeff Roberson KTR_POINT1(KTR_SCHED, "thread", sched_tdname(curthread), "wokeup", 13528f51ad55SJeff Roberson KTR_ATTR_LINKED, sched_tdname(td)); 13532aaae99dSSergey Kandaurov SDT_PROBE4(sched, , , enqueue, td, td->td_proc, NULL, 1354b3e9e682SRyan Stone flags & SRQ_PREEMPTED); 13558aa3d7ffSJohn Baldwin 13567b20fb19SJeff Roberson /* 13577b20fb19SJeff Roberson * Now that the thread is moving to the run-queue, set the lock 13587b20fb19SJeff Roberson * to the scheduler's lock. 13597b20fb19SJeff Roberson */ 13607b20fb19SJeff Roberson if (td->td_lock != &sched_lock) { 13617b20fb19SJeff Roberson mtx_lock_spin(&sched_lock); 13627b20fb19SJeff Roberson thread_lock_set(td, &sched_lock); 13637b20fb19SJeff Roberson } 1364f0393f06SJeff Roberson TD_SET_RUNQ(td); 1365ad1e7d28SJulian Elischer CTR2(KTR_RUNQ, "sched_add: adding td_sched:%p (td:%p) to runq", ts, td); 1366ad1e7d28SJulian Elischer ts->ts_runq = &runq; 13676804a3abSJulian Elischer 13686804a3abSJulian Elischer /* 13698aa3d7ffSJohn Baldwin * If we are yielding (on the way out anyhow) or the thread 13708aa3d7ffSJohn Baldwin * being saved is US, then don't try be smart about preemption 13718aa3d7ffSJohn Baldwin * or kicking off another CPU as it won't help and may hinder. 13728aa3d7ffSJohn Baldwin * In the YIEDLING case, we are about to run whoever is being 13738aa3d7ffSJohn Baldwin * put in the queue anyhow, and in the OURSELF case, we are 13748aa3d7ffSJohn Baldwin * puting ourself on the run queue which also only happens 13758aa3d7ffSJohn Baldwin * when we are about to yield. 13766804a3abSJulian Elischer */ 13776804a3abSJulian Elischer if ((flags & SRQ_YIELDING) == 0) { 13786804a3abSJulian Elischer if (maybe_preempt(td)) 13796804a3abSJulian Elischer return; 13806804a3abSJulian Elischer } 13811b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 1382907bdbc2SJeff Roberson sched_load_add(); 13839727e637SJeff Roberson runq_add(ts->ts_runq, td, flags); 13846942d433SJohn Baldwin maybe_resched(td); 1385b43179fbSJeff Roberson } 1386f3a0f873SStephan Uphoff #endif /* SMP */ 1387f3a0f873SStephan Uphoff 1388b43179fbSJeff Roberson void 13897cf90fb3SJeff Roberson sched_rem(struct thread *td) 1390b43179fbSJeff Roberson { 1391ad1e7d28SJulian Elischer struct td_sched *ts; 13927cf90fb3SJeff Roberson 1393ad1e7d28SJulian Elischer ts = td->td_sched; 1394b61ce5b0SJeff Roberson KASSERT(td->td_flags & TDF_INMEM, 1395b61ce5b0SJeff Roberson ("sched_rem: thread swapped out")); 1396f0393f06SJeff Roberson KASSERT(TD_ON_RUNQ(td), 1397ad1e7d28SJulian Elischer ("sched_rem: thread not on run queue")); 1398b43179fbSJeff Roberson mtx_assert(&sched_lock, MA_OWNED); 13998f51ad55SJeff Roberson KTR_STATE2(KTR_SCHED, "thread", sched_tdname(td), "runq rem", 14008f51ad55SJeff Roberson "prio:%d", td->td_priority, KTR_ATTR_LINKED, 14018f51ad55SJeff Roberson sched_tdname(curthread)); 1402b3e9e682SRyan Stone SDT_PROBE3(sched, , , dequeue, td, td->td_proc, NULL); 1403b43179fbSJeff Roberson 14041b9d701fSAttilio Rao if ((td->td_flags & TDF_NOLOAD) == 0) 1405907bdbc2SJeff Roberson sched_load_rem(); 1406f200843bSJohn Baldwin #ifdef SMP 1407f200843bSJohn Baldwin if (ts->ts_runq != &runq) 1408f200843bSJohn Baldwin runq_length[ts->ts_runq - runq_pcpu]--; 1409f200843bSJohn Baldwin #endif 14109727e637SJeff Roberson runq_remove(ts->ts_runq, td); 1411f0393f06SJeff Roberson TD_SET_CAN_RUN(td); 1412b43179fbSJeff Roberson } 1413b43179fbSJeff Roberson 141414f0e2e9SJulian Elischer /* 14158aa3d7ffSJohn Baldwin * Select threads to run. Note that running threads still consume a 14168aa3d7ffSJohn Baldwin * slot. 141714f0e2e9SJulian Elischer */ 1418f0393f06SJeff Roberson struct thread * 1419b43179fbSJeff Roberson sched_choose(void) 1420b43179fbSJeff Roberson { 14219727e637SJeff Roberson struct thread *td; 1422e17c57b1SJeff Roberson struct runq *rq; 1423b43179fbSJeff Roberson 14247b20fb19SJeff Roberson mtx_assert(&sched_lock, MA_OWNED); 1425e17c57b1SJeff Roberson #ifdef SMP 14269727e637SJeff Roberson struct thread *tdcpu; 1427e17c57b1SJeff Roberson 1428e17c57b1SJeff Roberson rq = &runq; 14299727e637SJeff Roberson td = runq_choose_fuzz(&runq, runq_fuzz); 14309727e637SJeff Roberson tdcpu = runq_choose(&runq_pcpu[PCPU_GET(cpuid)]); 1431e17c57b1SJeff Roberson 14329727e637SJeff Roberson if (td == NULL || 14339727e637SJeff Roberson (tdcpu != NULL && 14349727e637SJeff Roberson tdcpu->td_priority < td->td_priority)) { 14359727e637SJeff Roberson CTR2(KTR_RUNQ, "choosing td %p from pcpu runq %d", tdcpu, 1436e17c57b1SJeff Roberson PCPU_GET(cpuid)); 14379727e637SJeff Roberson td = tdcpu; 1438e17c57b1SJeff Roberson rq = &runq_pcpu[PCPU_GET(cpuid)]; 1439e17c57b1SJeff Roberson } else { 14409727e637SJeff Roberson CTR1(KTR_RUNQ, "choosing td_sched %p from main runq", td); 1441e17c57b1SJeff Roberson } 1442e17c57b1SJeff Roberson 1443e17c57b1SJeff Roberson #else 1444e17c57b1SJeff Roberson rq = &runq; 14459727e637SJeff Roberson td = runq_choose(&runq); 1446e17c57b1SJeff Roberson #endif 1447b43179fbSJeff Roberson 14489727e637SJeff Roberson if (td) { 1449f200843bSJohn Baldwin #ifdef SMP 1450f200843bSJohn Baldwin if (td == tdcpu) 1451f200843bSJohn Baldwin runq_length[PCPU_GET(cpuid)]--; 1452f200843bSJohn Baldwin #endif 14539727e637SJeff Roberson runq_remove(rq, td); 14549727e637SJeff Roberson td->td_flags |= TDF_DIDRUN; 1455b43179fbSJeff Roberson 14569727e637SJeff Roberson KASSERT(td->td_flags & TDF_INMEM, 1457b61ce5b0SJeff Roberson ("sched_choose: thread swapped out")); 14589727e637SJeff Roberson return (td); 1459b43179fbSJeff Roberson } 1460f0393f06SJeff Roberson return (PCPU_GET(idlethread)); 1461b43179fbSJeff Roberson } 1462b43179fbSJeff Roberson 1463b43179fbSJeff Roberson void 14641e24c28fSJeff Roberson sched_preempt(struct thread *td) 14651e24c28fSJeff Roberson { 1466b3e9e682SRyan Stone 1467b3e9e682SRyan Stone SDT_PROBE2(sched, , , surrender, td, td->td_proc); 14681e24c28fSJeff Roberson thread_lock(td); 14691e24c28fSJeff Roberson if (td->td_critnest > 1) 14701e24c28fSJeff Roberson td->td_owepreempt = 1; 14711e24c28fSJeff Roberson else 14728df78c41SJeff Roberson mi_switch(SW_INVOL | SW_PREEMPT | SWT_PREEMPT, NULL); 14731e24c28fSJeff Roberson thread_unlock(td); 14741e24c28fSJeff Roberson } 14751e24c28fSJeff Roberson 14761e24c28fSJeff Roberson void 1477b43179fbSJeff Roberson sched_userret(struct thread *td) 1478b43179fbSJeff Roberson { 1479b43179fbSJeff Roberson /* 1480b43179fbSJeff Roberson * XXX we cheat slightly on the locking here to avoid locking in 1481b43179fbSJeff Roberson * the usual case. Setting td_priority here is essentially an 1482b43179fbSJeff Roberson * incomplete workaround for not setting it properly elsewhere. 1483b43179fbSJeff Roberson * Now that some interrupt handlers are threads, not setting it 1484b43179fbSJeff Roberson * properly elsewhere can clobber it in the window between setting 1485b43179fbSJeff Roberson * it here and returning to user mode, so don't waste time setting 1486b43179fbSJeff Roberson * it perfectly here. 1487b43179fbSJeff Roberson */ 1488f5c157d9SJohn Baldwin KASSERT((td->td_flags & TDF_BORROWING) == 0, 1489f5c157d9SJohn Baldwin ("thread with borrowed priority returning to userland")); 14908460a577SJohn Birrell if (td->td_priority != td->td_user_pri) { 14917b20fb19SJeff Roberson thread_lock(td); 14928460a577SJohn Birrell td->td_priority = td->td_user_pri; 14938460a577SJohn Birrell td->td_base_pri = td->td_user_pri; 14947b20fb19SJeff Roberson thread_unlock(td); 14958460a577SJohn Birrell } 1496b43179fbSJeff Roberson } 1497de028f5aSJeff Roberson 1498e17c57b1SJeff Roberson void 1499e17c57b1SJeff Roberson sched_bind(struct thread *td, int cpu) 1500e17c57b1SJeff Roberson { 1501ad1e7d28SJulian Elischer struct td_sched *ts; 1502e17c57b1SJeff Roberson 15031d7830edSJohn Baldwin THREAD_LOCK_ASSERT(td, MA_OWNED|MA_NOTRECURSED); 15041d7830edSJohn Baldwin KASSERT(td == curthread, ("sched_bind: can only bind curthread")); 1505e17c57b1SJeff Roberson 1506ad1e7d28SJulian Elischer ts = td->td_sched; 1507e17c57b1SJeff Roberson 15089727e637SJeff Roberson td->td_flags |= TDF_BOUND; 1509e17c57b1SJeff Roberson #ifdef SMP 1510ad1e7d28SJulian Elischer ts->ts_runq = &runq_pcpu[cpu]; 1511e17c57b1SJeff Roberson if (PCPU_GET(cpuid) == cpu) 1512e17c57b1SJeff Roberson return; 1513e17c57b1SJeff Roberson 1514bf0acc27SJohn Baldwin mi_switch(SW_VOL, NULL); 1515e17c57b1SJeff Roberson #endif 1516e17c57b1SJeff Roberson } 1517e17c57b1SJeff Roberson 1518e17c57b1SJeff Roberson void 1519e17c57b1SJeff Roberson sched_unbind(struct thread* td) 1520e17c57b1SJeff Roberson { 15217b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 15221d7830edSJohn Baldwin KASSERT(td == curthread, ("sched_unbind: can only bind curthread")); 15239727e637SJeff Roberson td->td_flags &= ~TDF_BOUND; 1524e17c57b1SJeff Roberson } 1525e17c57b1SJeff Roberson 1526de028f5aSJeff Roberson int 1527ebccf1e3SJoseph Koshy sched_is_bound(struct thread *td) 1528ebccf1e3SJoseph Koshy { 15297b20fb19SJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED); 15309727e637SJeff Roberson return (td->td_flags & TDF_BOUND); 1531ebccf1e3SJoseph Koshy } 1532ebccf1e3SJoseph Koshy 153336ec198bSDavid Xu void 153436ec198bSDavid Xu sched_relinquish(struct thread *td) 153536ec198bSDavid Xu { 15367b20fb19SJeff Roberson thread_lock(td); 15378df78c41SJeff Roberson mi_switch(SW_VOL | SWT_RELINQUISH, NULL); 15387b20fb19SJeff Roberson thread_unlock(td); 153936ec198bSDavid Xu } 154036ec198bSDavid Xu 1541ebccf1e3SJoseph Koshy int 1542ca59f152SJeff Roberson sched_load(void) 1543ca59f152SJeff Roberson { 1544ca59f152SJeff Roberson return (sched_tdcnt); 1545ca59f152SJeff Roberson } 1546ca59f152SJeff Roberson 1547de028f5aSJeff Roberson int 1548de028f5aSJeff Roberson sched_sizeof_proc(void) 1549de028f5aSJeff Roberson { 1550de028f5aSJeff Roberson return (sizeof(struct proc)); 1551de028f5aSJeff Roberson } 155236ec198bSDavid Xu 1553de028f5aSJeff Roberson int 1554de028f5aSJeff Roberson sched_sizeof_thread(void) 1555de028f5aSJeff Roberson { 1556ad1e7d28SJulian Elischer return (sizeof(struct thread) + sizeof(struct td_sched)); 1557de028f5aSJeff Roberson } 155879acfc49SJeff Roberson 155979acfc49SJeff Roberson fixpt_t 15607cf90fb3SJeff Roberson sched_pctcpu(struct thread *td) 156179acfc49SJeff Roberson { 1562ad1e7d28SJulian Elischer struct td_sched *ts; 156355f2099aSJeff Roberson 15643da35a0aSJohn Baldwin THREAD_LOCK_ASSERT(td, MA_OWNED); 1565ad1e7d28SJulian Elischer ts = td->td_sched; 1566ad1e7d28SJulian Elischer return (ts->ts_pctcpu); 156779acfc49SJeff Roberson } 1568b41f1452SDavid Xu 1569b41f1452SDavid Xu void 1570a157e425SAlexander Motin sched_tick(int cnt) 1571b41f1452SDavid Xu { 1572b41f1452SDavid Xu } 1573f0393f06SJeff Roberson 1574f0393f06SJeff Roberson /* 1575f0393f06SJeff Roberson * The actual idle process. 1576f0393f06SJeff Roberson */ 1577f0393f06SJeff Roberson void 1578f0393f06SJeff Roberson sched_idletd(void *dummy) 1579f0393f06SJeff Roberson { 1580b722ad00SAlexander Motin struct pcpuidlestat *stat; 1581f0393f06SJeff Roberson 1582b722ad00SAlexander Motin stat = DPCPU_PTR(idlestat); 1583f0393f06SJeff Roberson for (;;) { 1584f0393f06SJeff Roberson mtx_assert(&Giant, MA_NOTOWNED); 1585f0393f06SJeff Roberson 1586b722ad00SAlexander Motin while (sched_runnable() == 0) { 1587b722ad00SAlexander Motin cpu_idle(stat->idlecalls + stat->oldidlecalls > 64); 1588b722ad00SAlexander Motin stat->idlecalls++; 1589b722ad00SAlexander Motin } 1590f0393f06SJeff Roberson 1591f0393f06SJeff Roberson mtx_lock_spin(&sched_lock); 15928df78c41SJeff Roberson mi_switch(SW_VOL | SWT_IDLE, NULL); 1593f0393f06SJeff Roberson mtx_unlock_spin(&sched_lock); 1594f0393f06SJeff Roberson } 1595f0393f06SJeff Roberson } 1596f0393f06SJeff Roberson 15977b20fb19SJeff Roberson /* 15987b20fb19SJeff Roberson * A CPU is entering for the first time or a thread is exiting. 15997b20fb19SJeff Roberson */ 16007b20fb19SJeff Roberson void 16017b20fb19SJeff Roberson sched_throw(struct thread *td) 16027b20fb19SJeff Roberson { 16037b20fb19SJeff Roberson /* 16047b20fb19SJeff Roberson * Correct spinlock nesting. The idle thread context that we are 16057b20fb19SJeff Roberson * borrowing was created so that it would start out with a single 16067b20fb19SJeff Roberson * spin lock (sched_lock) held in fork_trampoline(). Since we've 16077b20fb19SJeff Roberson * explicitly acquired locks in this function, the nesting count 16087b20fb19SJeff Roberson * is now 2 rather than 1. Since we are nested, calling 16097b20fb19SJeff Roberson * spinlock_exit() will simply adjust the counts without allowing 16107b20fb19SJeff Roberson * spin lock using code to interrupt us. 16117b20fb19SJeff Roberson */ 16127b20fb19SJeff Roberson if (td == NULL) { 16137b20fb19SJeff Roberson mtx_lock_spin(&sched_lock); 16147b20fb19SJeff Roberson spinlock_exit(); 16157e3a96eaSJohn Baldwin PCPU_SET(switchtime, cpu_ticks()); 16167e3a96eaSJohn Baldwin PCPU_SET(switchticks, ticks); 16177b20fb19SJeff Roberson } else { 1618eea4f254SJeff Roberson lock_profile_release_lock(&sched_lock.lock_object); 16197b20fb19SJeff Roberson MPASS(td->td_lock == &sched_lock); 16207b20fb19SJeff Roberson } 16217b20fb19SJeff Roberson mtx_assert(&sched_lock, MA_OWNED); 16227b20fb19SJeff Roberson KASSERT(curthread->td_md.md_spinlock_count == 1, ("invalid count")); 16237b20fb19SJeff Roberson cpu_throw(td, choosethread()); /* doesn't return */ 16247b20fb19SJeff Roberson } 16257b20fb19SJeff Roberson 16267b20fb19SJeff Roberson void 1627fe54587fSJeff Roberson sched_fork_exit(struct thread *td) 16287b20fb19SJeff Roberson { 16297b20fb19SJeff Roberson 16307b20fb19SJeff Roberson /* 16317b20fb19SJeff Roberson * Finish setting up thread glue so that it begins execution in a 16327b20fb19SJeff Roberson * non-nested critical section with sched_lock held but not recursed. 16337b20fb19SJeff Roberson */ 1634fe54587fSJeff Roberson td->td_oncpu = PCPU_GET(cpuid); 1635fe54587fSJeff Roberson sched_lock.mtx_lock = (uintptr_t)td; 1636eea4f254SJeff Roberson lock_profile_obtain_lock_success(&sched_lock.lock_object, 1637eea4f254SJeff Roberson 0, 0, __FILE__, __LINE__); 1638fe54587fSJeff Roberson THREAD_LOCK_ASSERT(td, MA_OWNED | MA_NOTRECURSED); 16397b20fb19SJeff Roberson } 16407b20fb19SJeff Roberson 16418f51ad55SJeff Roberson char * 16428f51ad55SJeff Roberson sched_tdname(struct thread *td) 16438f51ad55SJeff Roberson { 16448f51ad55SJeff Roberson #ifdef KTR 16458f51ad55SJeff Roberson struct td_sched *ts; 16468f51ad55SJeff Roberson 16478f51ad55SJeff Roberson ts = td->td_sched; 16488f51ad55SJeff Roberson if (ts->ts_name[0] == '\0') 16498f51ad55SJeff Roberson snprintf(ts->ts_name, sizeof(ts->ts_name), 16508f51ad55SJeff Roberson "%s tid %d", td->td_name, td->td_tid); 16518f51ad55SJeff Roberson return (ts->ts_name); 16528f51ad55SJeff Roberson #else 16538f51ad55SJeff Roberson return (td->td_name); 16548f51ad55SJeff Roberson #endif 16558f51ad55SJeff Roberson } 16568f51ad55SJeff Roberson 165744ad5475SJohn Baldwin #ifdef KTR 165844ad5475SJohn Baldwin void 165944ad5475SJohn Baldwin sched_clear_tdname(struct thread *td) 166044ad5475SJohn Baldwin { 166144ad5475SJohn Baldwin struct td_sched *ts; 166244ad5475SJohn Baldwin 166344ad5475SJohn Baldwin ts = td->td_sched; 166444ad5475SJohn Baldwin ts->ts_name[0] = '\0'; 166544ad5475SJohn Baldwin } 166644ad5475SJohn Baldwin #endif 166744ad5475SJohn Baldwin 1668885d51a3SJeff Roberson void 1669885d51a3SJeff Roberson sched_affinity(struct thread *td) 1670885d51a3SJeff Roberson { 1671f200843bSJohn Baldwin #ifdef SMP 1672f200843bSJohn Baldwin struct td_sched *ts; 1673f200843bSJohn Baldwin int cpu; 1674f200843bSJohn Baldwin 1675f200843bSJohn Baldwin THREAD_LOCK_ASSERT(td, MA_OWNED); 1676f200843bSJohn Baldwin 1677f200843bSJohn Baldwin /* 1678f200843bSJohn Baldwin * Set the TSF_AFFINITY flag if there is at least one CPU this 1679f200843bSJohn Baldwin * thread can't run on. 1680f200843bSJohn Baldwin */ 1681f200843bSJohn Baldwin ts = td->td_sched; 1682f200843bSJohn Baldwin ts->ts_flags &= ~TSF_AFFINITY; 16833aa6d94eSJohn Baldwin CPU_FOREACH(cpu) { 1684f200843bSJohn Baldwin if (!THREAD_CAN_SCHED(td, cpu)) { 1685f200843bSJohn Baldwin ts->ts_flags |= TSF_AFFINITY; 1686f200843bSJohn Baldwin break; 1687f200843bSJohn Baldwin } 1688f200843bSJohn Baldwin } 1689f200843bSJohn Baldwin 1690f200843bSJohn Baldwin /* 1691f200843bSJohn Baldwin * If this thread can run on all CPUs, nothing else to do. 1692f200843bSJohn Baldwin */ 1693f200843bSJohn Baldwin if (!(ts->ts_flags & TSF_AFFINITY)) 1694f200843bSJohn Baldwin return; 1695f200843bSJohn Baldwin 1696f200843bSJohn Baldwin /* Pinned threads and bound threads should be left alone. */ 1697f200843bSJohn Baldwin if (td->td_pinned != 0 || td->td_flags & TDF_BOUND) 1698f200843bSJohn Baldwin return; 1699f200843bSJohn Baldwin 1700f200843bSJohn Baldwin switch (td->td_state) { 1701f200843bSJohn Baldwin case TDS_RUNQ: 1702f200843bSJohn Baldwin /* 1703f200843bSJohn Baldwin * If we are on a per-CPU runqueue that is in the set, 1704f200843bSJohn Baldwin * then nothing needs to be done. 1705f200843bSJohn Baldwin */ 1706f200843bSJohn Baldwin if (ts->ts_runq != &runq && 1707f200843bSJohn Baldwin THREAD_CAN_SCHED(td, ts->ts_runq - runq_pcpu)) 1708f200843bSJohn Baldwin return; 1709f200843bSJohn Baldwin 1710f200843bSJohn Baldwin /* Put this thread on a valid per-CPU runqueue. */ 1711f200843bSJohn Baldwin sched_rem(td); 1712f200843bSJohn Baldwin sched_add(td, SRQ_BORING); 1713f200843bSJohn Baldwin break; 1714f200843bSJohn Baldwin case TDS_RUNNING: 1715f200843bSJohn Baldwin /* 1716f200843bSJohn Baldwin * See if our current CPU is in the set. If not, force a 1717f200843bSJohn Baldwin * context switch. 1718f200843bSJohn Baldwin */ 1719f200843bSJohn Baldwin if (THREAD_CAN_SCHED(td, td->td_oncpu)) 1720f200843bSJohn Baldwin return; 1721f200843bSJohn Baldwin 1722f200843bSJohn Baldwin td->td_flags |= TDF_NEEDRESCHED; 1723f200843bSJohn Baldwin if (td != curthread) 1724d9d8d144SJohn Baldwin ipi_cpu(cpu, IPI_AST); 1725f200843bSJohn Baldwin break; 1726f200843bSJohn Baldwin default: 1727f200843bSJohn Baldwin break; 1728f200843bSJohn Baldwin } 1729f200843bSJohn Baldwin #endif 1730885d51a3SJeff Roberson } 1731