1df8bae1dSRodney W. Grimes /*-
251369649SPedro F. Giffuni * SPDX-License-Identifier: BSD-3-Clause
351369649SPedro F. Giffuni *
4df8bae1dSRodney W. Grimes * Copyright (c) 1982, 1986, 1991, 1993
5df8bae1dSRodney W. Grimes * The Regents of the University of California. All rights reserved.
6df8bae1dSRodney W. Grimes * (c) UNIX System Laboratories, Inc.
7df8bae1dSRodney W. Grimes * All or some portions of this file are derived from material licensed
8df8bae1dSRodney W. Grimes * to the University of California by American Telephone and Telegraph
9df8bae1dSRodney W. Grimes * Co. or Unix System Laboratories, Inc. and are reproduced herein with
10df8bae1dSRodney W. Grimes * the permission of UNIX System Laboratories, Inc.
11df8bae1dSRodney W. Grimes *
12df8bae1dSRodney W. Grimes * Redistribution and use in source and binary forms, with or without
13df8bae1dSRodney W. Grimes * modification, are permitted provided that the following conditions
14df8bae1dSRodney W. Grimes * are met:
15df8bae1dSRodney W. Grimes * 1. Redistributions of source code must retain the above copyright
16df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer.
17df8bae1dSRodney W. Grimes * 2. Redistributions in binary form must reproduce the above copyright
18df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer in the
19df8bae1dSRodney W. Grimes * documentation and/or other materials provided with the distribution.
2069a28758SEd Maste * 3. Neither the name of the University nor the names of its contributors
21df8bae1dSRodney W. Grimes * may be used to endorse or promote products derived from this software
22df8bae1dSRodney W. Grimes * without specific prior written permission.
23df8bae1dSRodney W. Grimes *
24df8bae1dSRodney W. Grimes * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25df8bae1dSRodney W. Grimes * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26df8bae1dSRodney W. Grimes * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27df8bae1dSRodney W. Grimes * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28df8bae1dSRodney W. Grimes * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29df8bae1dSRodney W. Grimes * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30df8bae1dSRodney W. Grimes * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31df8bae1dSRodney W. Grimes * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32df8bae1dSRodney W. Grimes * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33df8bae1dSRodney W. Grimes * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34df8bae1dSRodney W. Grimes * SUCH DAMAGE.
35df8bae1dSRodney W. Grimes */
36df8bae1dSRodney W. Grimes
37677b542eSDavid E. O'Brien #include <sys/cdefs.h>
385b999a6bSDavide Italiano #include "opt_callout_profiling.h"
393af72c11SBjoern A. Zeeb #include "opt_ddb.h"
40c445c3c7SAdrian Chadd #include "opt_rss.h"
4191dd9aaeSRobert Watson
42df8bae1dSRodney W. Grimes #include <sys/param.h>
43df8bae1dSRodney W. Grimes #include <sys/systm.h>
448d809d50SJeff Roberson #include <sys/bus.h>
4515b7a470SPoul-Henning Kamp #include <sys/callout.h>
4636d151a2SAlexander Motin #include <sys/domainset.h>
47f8ccf82aSAndre Oppermann #include <sys/file.h>
488d809d50SJeff Roberson #include <sys/interrupt.h>
49df8bae1dSRodney W. Grimes #include <sys/kernel.h>
50ff7ec58aSRobert Watson #include <sys/ktr.h>
5174cf7caeSJohn Baldwin #include <sys/kthread.h>
52f34fa851SJohn Baldwin #include <sys/lock.h>
538d809d50SJeff Roberson #include <sys/malloc.h>
54cb799bfeSJohn Baldwin #include <sys/mutex.h>
5521f9e816SJohn Baldwin #include <sys/proc.h>
56642701abSKyle Evans #include <sys/random.h>
5774cf7caeSJohn Baldwin #include <sys/sched.h>
5891dd9aaeSRobert Watson #include <sys/sdt.h>
596a0ce57dSAttilio Rao #include <sys/sleepqueue.h>
6022ee8c4fSPoul-Henning Kamp #include <sys/sysctl.h>
618d809d50SJeff Roberson #include <sys/smp.h>
6274cf7caeSJohn Baldwin #include <sys/unistd.h>
63df8bae1dSRodney W. Grimes
643af72c11SBjoern A. Zeeb #ifdef DDB
653af72c11SBjoern A. Zeeb #include <ddb/ddb.h>
668c5a9161SEric van Gyzen #include <ddb/db_sym.h>
673af72c11SBjoern A. Zeeb #include <machine/_inttypes.h>
683af72c11SBjoern A. Zeeb #endif
693af72c11SBjoern A. Zeeb
701283e9cdSAttilio Rao #ifdef SMP
711283e9cdSAttilio Rao #include <machine/cpu.h>
721283e9cdSAttilio Rao #endif
731283e9cdSAttilio Rao
745b999a6bSDavide Italiano DPCPU_DECLARE(sbintime_t, hardclocktime);
755b999a6bSDavide Italiano
7691dd9aaeSRobert Watson SDT_PROVIDER_DEFINE(callout_execute);
7736160958SMark Johnston SDT_PROBE_DEFINE1(callout_execute, , , callout__start, "struct callout *");
7836160958SMark Johnston SDT_PROBE_DEFINE1(callout_execute, , , callout__end, "struct callout *");
7991dd9aaeSRobert Watson
8074cf7caeSJohn Baldwin static void softclock_thread(void *arg);
8174cf7caeSJohn Baldwin
825b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
8322ee8c4fSPoul-Henning Kamp static int avg_depth;
8422ee8c4fSPoul-Henning Kamp SYSCTL_INT(_debug, OID_AUTO, to_avg_depth, CTLFLAG_RD, &avg_depth, 0,
8522ee8c4fSPoul-Henning Kamp "Average number of items examined per softclock call. Units = 1/1000");
8622ee8c4fSPoul-Henning Kamp static int avg_gcalls;
8722ee8c4fSPoul-Henning Kamp SYSCTL_INT(_debug, OID_AUTO, to_avg_gcalls, CTLFLAG_RD, &avg_gcalls, 0,
8822ee8c4fSPoul-Henning Kamp "Average number of Giant callouts made per softclock call. Units = 1/1000");
8964b9ee20SAttilio Rao static int avg_lockcalls;
9064b9ee20SAttilio Rao SYSCTL_INT(_debug, OID_AUTO, to_avg_lockcalls, CTLFLAG_RD, &avg_lockcalls, 0,
9164b9ee20SAttilio Rao "Average number of lock callouts made per softclock call. Units = 1/1000");
9222ee8c4fSPoul-Henning Kamp static int avg_mpcalls;
9322ee8c4fSPoul-Henning Kamp SYSCTL_INT(_debug, OID_AUTO, to_avg_mpcalls, CTLFLAG_RD, &avg_mpcalls, 0,
9422ee8c4fSPoul-Henning Kamp "Average number of MP callouts made per softclock call. Units = 1/1000");
955b999a6bSDavide Italiano static int avg_depth_dir;
965b999a6bSDavide Italiano SYSCTL_INT(_debug, OID_AUTO, to_avg_depth_dir, CTLFLAG_RD, &avg_depth_dir, 0,
975b999a6bSDavide Italiano "Average number of direct callouts examined per callout_process call. "
985b999a6bSDavide Italiano "Units = 1/1000");
995b999a6bSDavide Italiano static int avg_lockcalls_dir;
1005b999a6bSDavide Italiano SYSCTL_INT(_debug, OID_AUTO, to_avg_lockcalls_dir, CTLFLAG_RD,
1015b999a6bSDavide Italiano &avg_lockcalls_dir, 0, "Average number of lock direct callouts made per "
1025b999a6bSDavide Italiano "callout_process call. Units = 1/1000");
1035b999a6bSDavide Italiano static int avg_mpcalls_dir;
1045b999a6bSDavide Italiano SYSCTL_INT(_debug, OID_AUTO, to_avg_mpcalls_dir, CTLFLAG_RD, &avg_mpcalls_dir,
1055b999a6bSDavide Italiano 0, "Average number of MP direct callouts made per callout_process call. "
1065b999a6bSDavide Italiano "Units = 1/1000");
1075b999a6bSDavide Italiano #endif
108f8ccf82aSAndre Oppermann
109f8ccf82aSAndre Oppermann static int ncallout;
110af3b2549SHans Petter Selasky SYSCTL_INT(_kern, OID_AUTO, ncallout, CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &ncallout, 0,
111f8ccf82aSAndre Oppermann "Number of entries in callwheel and size of timeout() preallocation");
112f8ccf82aSAndre Oppermann
113c445c3c7SAdrian Chadd #ifdef RSS
114c445c3c7SAdrian Chadd static int pin_default_swi = 1;
115c445c3c7SAdrian Chadd static int pin_pcpu_swi = 1;
116c445c3c7SAdrian Chadd #else
117ac75ee9fSAdrian Chadd static int pin_default_swi = 0;
118ac75ee9fSAdrian Chadd static int pin_pcpu_swi = 0;
119c445c3c7SAdrian Chadd #endif
120ac75ee9fSAdrian Chadd
121af3b2549SHans Petter Selasky SYSCTL_INT(_kern, OID_AUTO, pin_default_swi, CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &pin_default_swi,
122ac75ee9fSAdrian Chadd 0, "Pin the default (non-per-cpu) swi (shared with PCPU 0 swi)");
123af3b2549SHans Petter Selasky SYSCTL_INT(_kern, OID_AUTO, pin_pcpu_swi, CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &pin_pcpu_swi,
124a212f56dSPiotr Pawel Stefaniak 0, "Pin the per-CPU swis (except PCPU 0, which is also default)");
125ac75ee9fSAdrian Chadd
12615b7a470SPoul-Henning Kamp /*
12715b7a470SPoul-Henning Kamp * TODO:
12815b7a470SPoul-Henning Kamp * allocate more timeout table slots when table overflows.
12915b7a470SPoul-Henning Kamp */
13061322a0aSAlexander Motin static u_int __read_mostly callwheelsize;
13161322a0aSAlexander Motin static u_int __read_mostly callwheelmask;
132f23b4c91SGarrett Wollman
13320c510f8SLuigi Rizzo /*
134a115fb62SHans Petter Selasky * The callout cpu exec entities represent informations necessary for
135a115fb62SHans Petter Selasky * describing the state of callouts currently running on the CPU and the ones
136a115fb62SHans Petter Selasky * necessary for migrating callouts to the new callout cpu. In particular,
137a115fb62SHans Petter Selasky * the first entry of the array cc_exec_entity holds informations for callout
138a115fb62SHans Petter Selasky * running in SWI thread context, while the second one holds informations
139a115fb62SHans Petter Selasky * for callout running directly from hardware interrupt context.
140a115fb62SHans Petter Selasky * The cached informations are very important for deferring migration when
141a115fb62SHans Petter Selasky * the migrating callout is already running.
1421283e9cdSAttilio Rao */
1435b999a6bSDavide Italiano struct cc_exec {
1445b999a6bSDavide Italiano struct callout *cc_curr;
1458c5a9161SEric van Gyzen void *cc_last_func;
1468c5a9161SEric van Gyzen void *cc_last_arg;
147a115fb62SHans Petter Selasky #ifdef SMP
148a8a03706SJohn Baldwin callout_func_t *ce_migration_func;
149a115fb62SHans Petter Selasky void *ce_migration_arg;
150a115fb62SHans Petter Selasky sbintime_t ce_migration_time;
151a115fb62SHans Petter Selasky sbintime_t ce_migration_prec;
1528c5a9161SEric van Gyzen int ce_migration_cpu;
153a115fb62SHans Petter Selasky #endif
154a4a3ce99SDavide Italiano bool cc_cancel;
155a115fb62SHans Petter Selasky bool cc_waiting;
1561283e9cdSAttilio Rao };
1571283e9cdSAttilio Rao
1581283e9cdSAttilio Rao /*
159a115fb62SHans Petter Selasky * There is one struct callout_cpu per cpu, holding all relevant
16020c510f8SLuigi Rizzo * state for the callout processing thread on the individual CPU.
16120c510f8SLuigi Rizzo */
1628d809d50SJeff Roberson struct callout_cpu {
1634ceaf45dSAttilio Rao struct mtx_padalign cc_lock;
1645b999a6bSDavide Italiano struct cc_exec cc_exec_entity[2];
16566525b2dSRandall Stewart struct callout *cc_next;
1665b999a6bSDavide Italiano struct callout_list *cc_callwheel;
1675b999a6bSDavide Italiano struct callout_tailq cc_expireq;
1685b999a6bSDavide Italiano sbintime_t cc_firstevent;
1695b999a6bSDavide Italiano sbintime_t cc_lastscan;
17074cf7caeSJohn Baldwin struct thread *cc_thread;
1715b999a6bSDavide Italiano u_int cc_bucket;
172329377f4SGleb Smirnoff #ifdef KTR
173232e8b52SJohn Baldwin char cc_ktr_event_name[20];
174329377f4SGleb Smirnoff #endif
1758d809d50SJeff Roberson };
1768d809d50SJeff Roberson
177403df7a6SRandall Stewart #define callout_migrating(c) ((c)->c_iflags & CALLOUT_DFRMIGRATION)
178403df7a6SRandall Stewart
179d2854fa4SRandall Stewart #define cc_exec_curr(cc, dir) cc->cc_exec_entity[dir].cc_curr
1808c5a9161SEric van Gyzen #define cc_exec_last_func(cc, dir) cc->cc_exec_entity[dir].cc_last_func
1818c5a9161SEric van Gyzen #define cc_exec_last_arg(cc, dir) cc->cc_exec_entity[dir].cc_last_arg
18266525b2dSRandall Stewart #define cc_exec_next(cc) cc->cc_next
183d2854fa4SRandall Stewart #define cc_exec_cancel(cc, dir) cc->cc_exec_entity[dir].cc_cancel
184d2854fa4SRandall Stewart #define cc_exec_waiting(cc, dir) cc->cc_exec_entity[dir].cc_waiting
1858d809d50SJeff Roberson #ifdef SMP
186d2854fa4SRandall Stewart #define cc_migration_func(cc, dir) cc->cc_exec_entity[dir].ce_migration_func
187d2854fa4SRandall Stewart #define cc_migration_arg(cc, dir) cc->cc_exec_entity[dir].ce_migration_arg
188d2854fa4SRandall Stewart #define cc_migration_cpu(cc, dir) cc->cc_exec_entity[dir].ce_migration_cpu
189d2854fa4SRandall Stewart #define cc_migration_time(cc, dir) cc->cc_exec_entity[dir].ce_migration_time
190d2854fa4SRandall Stewart #define cc_migration_prec(cc, dir) cc->cc_exec_entity[dir].ce_migration_prec
191a115fb62SHans Petter Selasky
19278cfa762SMark Johnston DPCPU_DEFINE_STATIC(struct callout_cpu, cc_cpu);
1931283e9cdSAttilio Rao #define CPUBLOCK MAXCPU
19478cfa762SMark Johnston #define CC_CPU(cpu) DPCPU_ID_PTR(cpu, cc_cpu)
1958d809d50SJeff Roberson #define CC_SELF() CC_CPU(PCPU_GET(cpuid))
1968d809d50SJeff Roberson #else
197c1aff72cSMark Johnston static struct callout_cpu cc_cpu;
198c1aff72cSMark Johnston #define CC_CPU(cpu) (&cc_cpu)
199c1aff72cSMark Johnston #define CC_SELF() (&cc_cpu)
2008d809d50SJeff Roberson #endif
2018d809d50SJeff Roberson #define CC_LOCK(cc) mtx_lock_spin(&(cc)->cc_lock)
2028d809d50SJeff Roberson #define CC_UNLOCK(cc) mtx_unlock_spin(&(cc)->cc_lock)
2031283e9cdSAttilio Rao #define CC_LOCK_ASSERT(cc) mtx_assert(&(cc)->cc_lock, MA_OWNED)
2048d809d50SJeff Roberson
2054b28d96eSJohn Baldwin static int __read_mostly cc_default_cpu;
2065b999a6bSDavide Italiano
207232e8b52SJohn Baldwin static void callout_cpu_init(struct callout_cpu *cc, int cpu);
2085b999a6bSDavide Italiano static void softclock_call_cc(struct callout *c, struct callout_cpu *cc,
2095b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
2105b999a6bSDavide Italiano int *mpcalls, int *lockcalls, int *gcalls,
2115b999a6bSDavide Italiano #endif
2125b999a6bSDavide Italiano int direct);
2138d809d50SJeff Roberson
214d745c852SEd Schouten static MALLOC_DEFINE(M_CALLOUT, "callout", "Callout datastructures");
21549a74476SColin Percival
216a115fb62SHans Petter Selasky /**
217a115fb62SHans Petter Selasky * Locked by cc_lock:
218a115fb62SHans Petter Selasky * cc_curr - If a callout is in progress, it is cc_curr.
219a115fb62SHans Petter Selasky * If cc_curr is non-NULL, threads waiting in
220a115fb62SHans Petter Selasky * callout_drain() will be woken up as soon as the
221a115fb62SHans Petter Selasky * relevant callout completes.
222a115fb62SHans Petter Selasky * cc_cancel - Changing to 1 with both callout_lock and cc_lock held
223a115fb62SHans Petter Selasky * guarantees that the current callout will not run.
22474cf7caeSJohn Baldwin * The softclock_call_cc() function sets this to 0 before it
225a115fb62SHans Petter Selasky * drops callout_lock to acquire c_lock, and it calls
226a115fb62SHans Petter Selasky * the handler only if curr_cancelled is still 0 after
227a115fb62SHans Petter Selasky * cc_lock is successfully acquired.
228a115fb62SHans Petter Selasky * cc_waiting - If a thread is waiting in callout_drain(), then
229a115fb62SHans Petter Selasky * callout_wait is nonzero. Set only when
230a115fb62SHans Petter Selasky * cc_curr is non-NULL.
231a115fb62SHans Petter Selasky */
232a115fb62SHans Petter Selasky
233df8bae1dSRodney W. Grimes /*
234a115fb62SHans Petter Selasky * Resets the execution entity tied to a specific callout cpu.
235a115fb62SHans Petter Selasky */
236a115fb62SHans Petter Selasky static void
cc_cce_cleanup(struct callout_cpu * cc,int direct)237a115fb62SHans Petter Selasky cc_cce_cleanup(struct callout_cpu *cc, int direct)
238a115fb62SHans Petter Selasky {
239a115fb62SHans Petter Selasky
240d2854fa4SRandall Stewart cc_exec_curr(cc, direct) = NULL;
241d2854fa4SRandall Stewart cc_exec_cancel(cc, direct) = false;
242d2854fa4SRandall Stewart cc_exec_waiting(cc, direct) = false;
243a115fb62SHans Petter Selasky #ifdef SMP
244d2854fa4SRandall Stewart cc_migration_cpu(cc, direct) = CPUBLOCK;
245d2854fa4SRandall Stewart cc_migration_time(cc, direct) = 0;
246d2854fa4SRandall Stewart cc_migration_prec(cc, direct) = 0;
247d2854fa4SRandall Stewart cc_migration_func(cc, direct) = NULL;
248d2854fa4SRandall Stewart cc_migration_arg(cc, direct) = NULL;
249a115fb62SHans Petter Selasky #endif
250a115fb62SHans Petter Selasky }
251a115fb62SHans Petter Selasky
252a115fb62SHans Petter Selasky /*
253a115fb62SHans Petter Selasky * Checks if migration is requested by a specific callout cpu.
254a115fb62SHans Petter Selasky */
255a115fb62SHans Petter Selasky static int
cc_cce_migrating(struct callout_cpu * cc,int direct)256a115fb62SHans Petter Selasky cc_cce_migrating(struct callout_cpu *cc, int direct)
257a115fb62SHans Petter Selasky {
258a115fb62SHans Petter Selasky
259a115fb62SHans Petter Selasky #ifdef SMP
260d2854fa4SRandall Stewart return (cc_migration_cpu(cc, direct) != CPUBLOCK);
261a115fb62SHans Petter Selasky #else
262a115fb62SHans Petter Selasky return (0);
263a115fb62SHans Petter Selasky #endif
264a115fb62SHans Petter Selasky }
265a115fb62SHans Petter Selasky
266a115fb62SHans Petter Selasky /*
267a115fb62SHans Petter Selasky * Kernel low level callwheel initialization
268efe67753SNathan Whitehorn * called on the BSP during kernel startup.
269219d632cSMatthew Dillon */
27015ae0c9aSAndre Oppermann static void
callout_callwheel_init(void * dummy)27115ae0c9aSAndre Oppermann callout_callwheel_init(void *dummy)
272219d632cSMatthew Dillon {
2738d809d50SJeff Roberson struct callout_cpu *cc;
2744b28d96eSJohn Baldwin int cpu;
2758d809d50SJeff Roberson
276f8ccf82aSAndre Oppermann /*
277f8ccf82aSAndre Oppermann * Calculate the size of the callout wheel and the preallocated
278f8ccf82aSAndre Oppermann * timeout() structures.
279a7aea132SAndre Oppermann * XXX: Clip callout to result of previous function of maxusers
280a7aea132SAndre Oppermann * maximum 384. This is still huge, but acceptable.
281f8ccf82aSAndre Oppermann */
282f8ccf82aSAndre Oppermann ncallout = imin(16 + maxproc + maxfiles, 18508);
283f8ccf82aSAndre Oppermann TUNABLE_INT_FETCH("kern.ncallout", &ncallout);
284f8ccf82aSAndre Oppermann
285219d632cSMatthew Dillon /*
286922314f0SAlfred Perlstein * Calculate callout wheel size, should be next power of two higher
287922314f0SAlfred Perlstein * than 'ncallout'.
288219d632cSMatthew Dillon */
289922314f0SAlfred Perlstein callwheelsize = 1 << fls(ncallout);
290219d632cSMatthew Dillon callwheelmask = callwheelsize - 1;
291219d632cSMatthew Dillon
29215ae0c9aSAndre Oppermann /*
293ac75ee9fSAdrian Chadd * Fetch whether we're pinning the swi's or not.
294ac75ee9fSAdrian Chadd */
295ac75ee9fSAdrian Chadd TUNABLE_INT_FETCH("kern.pin_default_swi", &pin_default_swi);
296ac75ee9fSAdrian Chadd TUNABLE_INT_FETCH("kern.pin_pcpu_swi", &pin_pcpu_swi);
297ac75ee9fSAdrian Chadd
298ac75ee9fSAdrian Chadd /*
2994b28d96eSJohn Baldwin * Initialize callout wheels. The software interrupt threads
3004b28d96eSJohn Baldwin * are created later.
30115ae0c9aSAndre Oppermann */
3024b28d96eSJohn Baldwin cc_default_cpu = PCPU_GET(cpuid);
3034b28d96eSJohn Baldwin CPU_FOREACH(cpu) {
3044b28d96eSJohn Baldwin cc = CC_CPU(cpu);
3054b28d96eSJohn Baldwin callout_cpu_init(cc, cpu);
3064b28d96eSJohn Baldwin }
307219d632cSMatthew Dillon }
30815ae0c9aSAndre Oppermann SYSINIT(callwheel_init, SI_SUB_CPU, SI_ORDER_ANY, callout_callwheel_init, NULL);
309219d632cSMatthew Dillon
31015ae0c9aSAndre Oppermann /*
31115ae0c9aSAndre Oppermann * Initialize the per-cpu callout structures.
31215ae0c9aSAndre Oppermann */
3138d809d50SJeff Roberson static void
callout_cpu_init(struct callout_cpu * cc,int cpu)314232e8b52SJohn Baldwin callout_cpu_init(struct callout_cpu *cc, int cpu)
3158d809d50SJeff Roberson {
3168d809d50SJeff Roberson int i;
3178d809d50SJeff Roberson
3182c0209a2SMark Johnston mtx_init(&cc->cc_lock, "callout", NULL, MTX_SPIN);
31936d151a2SAlexander Motin cc->cc_callwheel = malloc_domainset(sizeof(struct callout_list) *
32036d151a2SAlexander Motin callwheelsize, M_CALLOUT,
32136d151a2SAlexander Motin DOMAINSET_PREF(pcpu_find(cpu)->pc_domain), M_WAITOK);
3225b999a6bSDavide Italiano for (i = 0; i < callwheelsize; i++)
3235b999a6bSDavide Italiano LIST_INIT(&cc->cc_callwheel[i]);
3245b999a6bSDavide Italiano TAILQ_INIT(&cc->cc_expireq);
3254bc38a5aSDavide Italiano cc->cc_firstevent = SBT_MAX;
326a115fb62SHans Petter Selasky for (i = 0; i < 2; i++)
327a115fb62SHans Petter Selasky cc_cce_cleanup(cc, i);
328329377f4SGleb Smirnoff #ifdef KTR
329232e8b52SJohn Baldwin snprintf(cc->cc_ktr_event_name, sizeof(cc->cc_ktr_event_name),
330232e8b52SJohn Baldwin "callwheel cpu %d", cpu);
331329377f4SGleb Smirnoff #endif
3328d809d50SJeff Roberson }
3338d809d50SJeff Roberson
334a115fb62SHans Petter Selasky #ifdef SMP
335a115fb62SHans Petter Selasky /*
336a115fb62SHans Petter Selasky * Switches the cpu tied to a specific callout.
337a115fb62SHans Petter Selasky * The function expects a locked incoming callout cpu and returns with
338a115fb62SHans Petter Selasky * locked outcoming callout cpu.
339a115fb62SHans Petter Selasky */
340a115fb62SHans Petter Selasky static struct callout_cpu *
callout_cpu_switch(struct callout * c,struct callout_cpu * cc,int new_cpu)341a115fb62SHans Petter Selasky callout_cpu_switch(struct callout *c, struct callout_cpu *cc, int new_cpu)
342a115fb62SHans Petter Selasky {
343a115fb62SHans Petter Selasky struct callout_cpu *new_cc;
344a115fb62SHans Petter Selasky
345a115fb62SHans Petter Selasky MPASS(c != NULL && cc != NULL);
346a115fb62SHans Petter Selasky CC_LOCK_ASSERT(cc);
347a115fb62SHans Petter Selasky
348a115fb62SHans Petter Selasky /*
349a115fb62SHans Petter Selasky * Avoid interrupts and preemption firing after the callout cpu
350a115fb62SHans Petter Selasky * is blocked in order to avoid deadlocks as the new thread
351a115fb62SHans Petter Selasky * may be willing to acquire the callout cpu lock.
352a115fb62SHans Petter Selasky */
353a115fb62SHans Petter Selasky c->c_cpu = CPUBLOCK;
354a115fb62SHans Petter Selasky spinlock_enter();
355a115fb62SHans Petter Selasky CC_UNLOCK(cc);
356a115fb62SHans Petter Selasky new_cc = CC_CPU(new_cpu);
357a115fb62SHans Petter Selasky CC_LOCK(new_cc);
358a115fb62SHans Petter Selasky spinlock_exit();
359a115fb62SHans Petter Selasky c->c_cpu = new_cpu;
360a115fb62SHans Petter Selasky return (new_cc);
361a115fb62SHans Petter Selasky }
362a115fb62SHans Petter Selasky #endif
363a115fb62SHans Petter Selasky
364219d632cSMatthew Dillon /*
3654b28d96eSJohn Baldwin * Start softclock threads.
3668d809d50SJeff Roberson */
3678d809d50SJeff Roberson static void
start_softclock(void * dummy)3688d809d50SJeff Roberson start_softclock(void *dummy)
3698d809d50SJeff Roberson {
37074cf7caeSJohn Baldwin struct proc *p;
37174cf7caeSJohn Baldwin struct thread *td;
3728d809d50SJeff Roberson struct callout_cpu *cc;
37374cf7caeSJohn Baldwin int cpu, error;
3744b28d96eSJohn Baldwin bool pin_swi;
3758d809d50SJeff Roberson
37674cf7caeSJohn Baldwin p = NULL;
3773aa6d94eSJohn Baldwin CPU_FOREACH(cpu) {
3788d809d50SJeff Roberson cc = CC_CPU(cpu);
37974cf7caeSJohn Baldwin error = kproc_kthread_add(softclock_thread, cc, &p, &td,
38074cf7caeSJohn Baldwin RFSTOPPED, 0, "clock", "clock (%d)", cpu);
38174cf7caeSJohn Baldwin if (error != 0)
38274cf7caeSJohn Baldwin panic("failed to create softclock thread for cpu %d: %d",
38374cf7caeSJohn Baldwin cpu, error);
38474cf7caeSJohn Baldwin CC_LOCK(cc);
38574cf7caeSJohn Baldwin cc->cc_thread = td;
38674cf7caeSJohn Baldwin thread_lock(td);
38774cf7caeSJohn Baldwin sched_class(td, PRI_ITHD);
388fea89a28SJohn Baldwin sched_ithread_prio(td, PI_SOFTCLOCK);
38974cf7caeSJohn Baldwin TD_SET_IWAIT(td);
39074cf7caeSJohn Baldwin thread_lock_set(td, (struct mtx *)&cc->cc_lock);
39174cf7caeSJohn Baldwin thread_unlock(td);
3924b28d96eSJohn Baldwin if (cpu == cc_default_cpu)
3934b28d96eSJohn Baldwin pin_swi = pin_default_swi;
3944b28d96eSJohn Baldwin else
3954b28d96eSJohn Baldwin pin_swi = pin_pcpu_swi;
39674cf7caeSJohn Baldwin if (pin_swi) {
39774cf7caeSJohn Baldwin error = cpuset_setithread(td->td_tid, cpu);
39874cf7caeSJohn Baldwin if (error != 0)
39974cf7caeSJohn Baldwin printf("%s: %s clock couldn't be pinned to cpu %d: %d\n",
40074cf7caeSJohn Baldwin __func__, cpu == cc_default_cpu ?
40174cf7caeSJohn Baldwin "default" : "per-cpu", cpu, error);
402ac75ee9fSAdrian Chadd }
403219d632cSMatthew Dillon }
404219d632cSMatthew Dillon }
4058d809d50SJeff Roberson SYSINIT(start_softclock, SI_SUB_SOFTINTR, SI_ORDER_FIRST, start_softclock, NULL);
4068d809d50SJeff Roberson
4075b999a6bSDavide Italiano #define CC_HASH_SHIFT 8
4088d809d50SJeff Roberson
4095b999a6bSDavide Italiano static inline u_int
callout_hash(sbintime_t sbt)4105b999a6bSDavide Italiano callout_hash(sbintime_t sbt)
4115b999a6bSDavide Italiano {
4125b999a6bSDavide Italiano
4135b999a6bSDavide Italiano return (sbt >> (32 - CC_HASH_SHIFT));
4145b999a6bSDavide Italiano }
4155b999a6bSDavide Italiano
4165b999a6bSDavide Italiano static inline u_int
callout_get_bucket(sbintime_t sbt)4175b999a6bSDavide Italiano callout_get_bucket(sbintime_t sbt)
4185b999a6bSDavide Italiano {
4195b999a6bSDavide Italiano
4205b999a6bSDavide Italiano return (callout_hash(sbt) & callwheelmask);
4215b999a6bSDavide Italiano }
4225b999a6bSDavide Italiano
4235b999a6bSDavide Italiano void
callout_process(sbintime_t now)4245b999a6bSDavide Italiano callout_process(sbintime_t now)
4255b999a6bSDavide Italiano {
426642701abSKyle Evans struct callout_entropy {
427642701abSKyle Evans struct callout_cpu *cc;
428642701abSKyle Evans struct thread *td;
429642701abSKyle Evans sbintime_t now;
430642701abSKyle Evans } entropy;
43146eab860SMark Johnston struct callout *c, *next;
4325b999a6bSDavide Italiano struct callout_cpu *cc;
4335b999a6bSDavide Italiano struct callout_list *sc;
43474cf7caeSJohn Baldwin struct thread *td;
435cb1f5d11SAlexander Motin sbintime_t first, last, lookahead, max, tmp_max;
4365b999a6bSDavide Italiano u_int firstb, lastb, nowb;
4375b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
4385b999a6bSDavide Italiano int depth_dir = 0, mpcalls_dir = 0, lockcalls_dir = 0;
4395b999a6bSDavide Italiano #endif
440a115fb62SHans Petter Selasky
4418d809d50SJeff Roberson cc = CC_SELF();
442a115fb62SHans Petter Selasky mtx_lock_spin_flags(&cc->cc_lock, MTX_QUIET);
4435b999a6bSDavide Italiano
4445b999a6bSDavide Italiano /* Compute the buckets of the last scan and present times. */
4455b999a6bSDavide Italiano firstb = callout_hash(cc->cc_lastscan);
4465b999a6bSDavide Italiano cc->cc_lastscan = now;
4475b999a6bSDavide Italiano nowb = callout_hash(now);
4485b999a6bSDavide Italiano
4495b999a6bSDavide Italiano /* Compute the last bucket and minimum time of the bucket after it. */
4505b999a6bSDavide Italiano if (nowb == firstb)
4515b999a6bSDavide Italiano lookahead = (SBT_1S / 16);
4525b999a6bSDavide Italiano else if (nowb - firstb == 1)
4535b999a6bSDavide Italiano lookahead = (SBT_1S / 8);
4545b999a6bSDavide Italiano else
455cb1f5d11SAlexander Motin lookahead = SBT_1S;
4565b999a6bSDavide Italiano first = last = now;
4575b999a6bSDavide Italiano first += (lookahead / 2);
4585b999a6bSDavide Italiano last += lookahead;
4595b999a6bSDavide Italiano last &= (0xffffffffffffffffLLU << (32 - CC_HASH_SHIFT));
4605b999a6bSDavide Italiano lastb = callout_hash(last) - 1;
4615b999a6bSDavide Italiano max = last;
4625b999a6bSDavide Italiano
4635b999a6bSDavide Italiano /*
4645b999a6bSDavide Italiano * Check if we wrapped around the entire wheel from the last scan.
4655b999a6bSDavide Italiano * In case, we need to scan entirely the wheel for pending callouts.
4665b999a6bSDavide Italiano */
4675b999a6bSDavide Italiano if (lastb - firstb >= callwheelsize) {
4685b999a6bSDavide Italiano lastb = firstb + callwheelsize - 1;
4695b999a6bSDavide Italiano if (nowb - firstb >= callwheelsize)
4705b999a6bSDavide Italiano nowb = lastb;
4719fc51b0bSJeff Roberson }
4725b999a6bSDavide Italiano
4735b999a6bSDavide Italiano /* Iterate callwheel from firstb to nowb and then up to lastb. */
4745b999a6bSDavide Italiano do {
4755b999a6bSDavide Italiano sc = &cc->cc_callwheel[firstb & callwheelmask];
47646eab860SMark Johnston LIST_FOREACH_SAFE(c, sc, c_links.le, next) {
4775b999a6bSDavide Italiano /* Run the callout if present time within allowed. */
47846eab860SMark Johnston if (c->c_time <= now) {
4795b999a6bSDavide Italiano /*
4805b999a6bSDavide Italiano * Consumer told us the callout may be run
4815b999a6bSDavide Italiano * directly from hardware interrupt context.
4825b999a6bSDavide Italiano */
48346eab860SMark Johnston if (c->c_iflags & CALLOUT_DIRECT) {
4845b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
4855b999a6bSDavide Italiano ++depth_dir;
4865b999a6bSDavide Italiano #endif
48746eab860SMark Johnston cc_exec_next(cc) = next;
4885b999a6bSDavide Italiano cc->cc_bucket = firstb & callwheelmask;
48946eab860SMark Johnston LIST_REMOVE(c, c_links.le);
49046eab860SMark Johnston softclock_call_cc(c, cc,
4915b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
4925b999a6bSDavide Italiano &mpcalls_dir, &lockcalls_dir, NULL,
4935b999a6bSDavide Italiano #endif
4945b999a6bSDavide Italiano 1);
49546eab860SMark Johnston next = cc_exec_next(cc);
49666525b2dSRandall Stewart cc_exec_next(cc) = NULL;
4975b999a6bSDavide Italiano } else {
49846eab860SMark Johnston LIST_REMOVE(c, c_links.le);
4995b999a6bSDavide Italiano TAILQ_INSERT_TAIL(&cc->cc_expireq,
50046eab860SMark Johnston c, c_links.tqe);
50146eab860SMark Johnston c->c_iflags |= CALLOUT_PROCESSED;
5029fc51b0bSJeff Roberson }
50346eab860SMark Johnston } else if (c->c_time >= max) {
5045b999a6bSDavide Italiano /*
50546eab860SMark Johnston * Skip events in the distant future.
5065b999a6bSDavide Italiano */
50746eab860SMark Johnston ;
50846eab860SMark Johnston } else if (c->c_time > last) {
50946eab860SMark Johnston /*
51046eab860SMark Johnston * Event minimal time is bigger than present
51146eab860SMark Johnston * maximal time, so it cannot be aggregated.
51246eab860SMark Johnston */
5135b999a6bSDavide Italiano lastb = nowb;
51446eab860SMark Johnston } else {
51546eab860SMark Johnston /*
51646eab860SMark Johnston * Update first and last time, respecting this
51746eab860SMark Johnston * event.
51846eab860SMark Johnston */
51946eab860SMark Johnston if (c->c_time < first)
52046eab860SMark Johnston first = c->c_time;
52146eab860SMark Johnston tmp_max = c->c_time + c->c_precision;
5225b999a6bSDavide Italiano if (tmp_max < last)
5235b999a6bSDavide Italiano last = tmp_max;
52446eab860SMark Johnston }
5255b999a6bSDavide Italiano }
5265b999a6bSDavide Italiano /* Proceed with the next bucket. */
5275b999a6bSDavide Italiano firstb++;
5285b999a6bSDavide Italiano /*
5295b999a6bSDavide Italiano * Stop if we looked after present time and found
5305b999a6bSDavide Italiano * some event we can't execute at now.
5315b999a6bSDavide Italiano * Stop if we looked far enough into the future.
5325b999a6bSDavide Italiano */
5335b999a6bSDavide Italiano } while (((int)(firstb - lastb)) <= 0);
5345b999a6bSDavide Italiano cc->cc_firstevent = last;
5355b999a6bSDavide Italiano cpu_new_callout(curcpu, last, first);
536a28c28e6SMark Johnston
5375b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
5385b999a6bSDavide Italiano avg_depth_dir += (depth_dir * 1000 - avg_depth_dir) >> 8;
5395b999a6bSDavide Italiano avg_mpcalls_dir += (mpcalls_dir * 1000 - avg_mpcalls_dir) >> 8;
5405b999a6bSDavide Italiano avg_lockcalls_dir += (lockcalls_dir * 1000 - avg_lockcalls_dir) >> 8;
5415b999a6bSDavide Italiano #endif
54274cf7caeSJohn Baldwin if (!TAILQ_EMPTY(&cc->cc_expireq)) {
543642701abSKyle Evans entropy.cc = cc;
544642701abSKyle Evans entropy.td = curthread;
545642701abSKyle Evans entropy.now = now;
546642701abSKyle Evans random_harvest_queue(&entropy, sizeof(entropy), RANDOM_CALLOUT);
547642701abSKyle Evans
54874cf7caeSJohn Baldwin td = cc->cc_thread;
54974cf7caeSJohn Baldwin if (TD_AWAITING_INTR(td)) {
5506b95cf5bSMark Johnston thread_lock_block_wait(td);
5516b95cf5bSMark Johnston THREAD_LOCK_ASSERT(td, MA_OWNED);
55274cf7caeSJohn Baldwin TD_CLR_IWAIT(td);
553ed998d1cSJohn Baldwin sched_wakeup(td, SRQ_INTR);
55474cf7caeSJohn Baldwin } else
555a115fb62SHans Petter Selasky mtx_unlock_spin_flags(&cc->cc_lock, MTX_QUIET);
55674cf7caeSJohn Baldwin } else
55774cf7caeSJohn Baldwin mtx_unlock_spin_flags(&cc->cc_lock, MTX_QUIET);
5588d809d50SJeff Roberson }
5598d809d50SJeff Roberson
5608d809d50SJeff Roberson static struct callout_cpu *
callout_lock(struct callout * c)5618d809d50SJeff Roberson callout_lock(struct callout *c)
5628d809d50SJeff Roberson {
5638d809d50SJeff Roberson struct callout_cpu *cc;
564a115fb62SHans Petter Selasky int cpu;
565a115fb62SHans Petter Selasky
566a115fb62SHans Petter Selasky for (;;) {
567a115fb62SHans Petter Selasky cpu = c->c_cpu;
568a115fb62SHans Petter Selasky #ifdef SMP
569a115fb62SHans Petter Selasky if (cpu == CPUBLOCK) {
570a115fb62SHans Petter Selasky while (c->c_cpu == CPUBLOCK)
571a115fb62SHans Petter Selasky cpu_spinwait();
572a115fb62SHans Petter Selasky continue;
573a115fb62SHans Petter Selasky }
574a115fb62SHans Petter Selasky #endif
575a115fb62SHans Petter Selasky cc = CC_CPU(cpu);
5768d809d50SJeff Roberson CC_LOCK(cc);
577a115fb62SHans Petter Selasky if (cpu == c->c_cpu)
578a115fb62SHans Petter Selasky break;
579a115fb62SHans Petter Selasky CC_UNLOCK(cc);
580a115fb62SHans Petter Selasky }
5818d809d50SJeff Roberson return (cc);
582219d632cSMatthew Dillon }
583219d632cSMatthew Dillon
584a115fb62SHans Petter Selasky static void
callout_cc_add(struct callout * c,struct callout_cpu * cc,sbintime_t sbt,sbintime_t precision,void (* func)(void *),void * arg,int flags)585a115fb62SHans Petter Selasky callout_cc_add(struct callout *c, struct callout_cpu *cc,
586a115fb62SHans Petter Selasky sbintime_t sbt, sbintime_t precision, void (*func)(void *),
587aac7c7acSMark Johnston void *arg, int flags)
5881283e9cdSAttilio Rao {
5895b999a6bSDavide Italiano int bucket;
5901283e9cdSAttilio Rao
5911283e9cdSAttilio Rao CC_LOCK_ASSERT(cc);
592a115fb62SHans Petter Selasky if (sbt < cc->cc_lastscan)
593a115fb62SHans Petter Selasky sbt = cc->cc_lastscan;
594a115fb62SHans Petter Selasky c->c_arg = arg;
59515b1eb14SRandall Stewart c->c_iflags |= CALLOUT_PENDING;
59615b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_PROCESSED;
59715b1eb14SRandall Stewart c->c_flags |= CALLOUT_ACTIVE;
59807a2df5dSRandall Stewart if (flags & C_DIRECT_EXEC)
599b132edb5SRandall Stewart c->c_iflags |= CALLOUT_DIRECT;
600a115fb62SHans Petter Selasky c->c_func = func;
601a115fb62SHans Petter Selasky c->c_time = sbt;
602a115fb62SHans Petter Selasky c->c_precision = precision;
6035b999a6bSDavide Italiano bucket = callout_get_bucket(c->c_time);
6045b999a6bSDavide Italiano CTR3(KTR_CALLOUT, "precision set for %p: %d.%08x",
6055b999a6bSDavide Italiano c, (int)(c->c_precision >> 32),
6065b999a6bSDavide Italiano (u_int)(c->c_precision & 0xffffffff));
6075b999a6bSDavide Italiano LIST_INSERT_HEAD(&cc->cc_callwheel[bucket], c, c_links.le);
6085b999a6bSDavide Italiano if (cc->cc_bucket == bucket)
60966525b2dSRandall Stewart cc_exec_next(cc) = c;
610a28c28e6SMark Johnston
6115b999a6bSDavide Italiano /*
6125b999a6bSDavide Italiano * Inform the eventtimers(4) subsystem there's a new callout
6135b999a6bSDavide Italiano * that has been inserted, but only if really required.
6145b999a6bSDavide Italiano */
6154bc38a5aSDavide Italiano if (SBT_MAX - c->c_time < c->c_precision)
6164bc38a5aSDavide Italiano c->c_precision = SBT_MAX - c->c_time;
6175b999a6bSDavide Italiano sbt = c->c_time + c->c_precision;
6185b999a6bSDavide Italiano if (sbt < cc->cc_firstevent) {
6195b999a6bSDavide Italiano cc->cc_firstevent = sbt;
620aac7c7acSMark Johnston cpu_new_callout(c->c_cpu, sbt, c->c_time);
6211283e9cdSAttilio Rao }
6221283e9cdSAttilio Rao }
6231283e9cdSAttilio Rao
6246098e7acSKonstantin Belousov static void
softclock_call_cc(struct callout * c,struct callout_cpu * cc,int * mpcalls,int * lockcalls,int * gcalls,int direct)6255b999a6bSDavide Italiano softclock_call_cc(struct callout *c, struct callout_cpu *cc,
6265b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
6275b999a6bSDavide Italiano int *mpcalls, int *lockcalls, int *gcalls,
6285b999a6bSDavide Italiano #endif
6295b999a6bSDavide Italiano int direct)
6306098e7acSKonstantin Belousov {
631a115fb62SHans Petter Selasky struct rm_priotracker tracker;
6325fc3104aSGleb Smirnoff callout_func_t *c_func;
6336098e7acSKonstantin Belousov void *c_arg;
634a115fb62SHans Petter Selasky struct lock_class *class;
6356098e7acSKonstantin Belousov struct lock_object *c_lock;
636a115fb62SHans Petter Selasky uintptr_t lock_status;
63715b1eb14SRandall Stewart int c_iflags;
638a115fb62SHans Petter Selasky #ifdef SMP
639a115fb62SHans Petter Selasky struct callout_cpu *new_cc;
640a8a03706SJohn Baldwin callout_func_t *new_func;
641a115fb62SHans Petter Selasky void *new_arg;
642a115fb62SHans Petter Selasky int flags, new_cpu;
643a115fb62SHans Petter Selasky sbintime_t new_prec, new_time;
644a115fb62SHans Petter Selasky #endif
6455b999a6bSDavide Italiano #if defined(DIAGNOSTIC) || defined(CALLOUT_PROFILING)
64603763781SDavide Italiano sbintime_t sbt1, sbt2;
6476098e7acSKonstantin Belousov struct timespec ts2;
6485b999a6bSDavide Italiano static sbintime_t maxdt = 2 * SBT_1MS; /* 2 msec */
649a8a03706SJohn Baldwin static callout_func_t *lastfunc;
6506098e7acSKonstantin Belousov #endif
6516098e7acSKonstantin Belousov
652*efcb2ec8SGleb Smirnoff CC_LOCK_ASSERT(cc);
65315b1eb14SRandall Stewart KASSERT((c->c_iflags & CALLOUT_PENDING) == CALLOUT_PENDING,
65415b1eb14SRandall Stewart ("softclock_call_cc: pend %p %x", c, c->c_iflags));
65515b1eb14SRandall Stewart KASSERT((c->c_flags & CALLOUT_ACTIVE) == CALLOUT_ACTIVE,
65615b1eb14SRandall Stewart ("softclock_call_cc: act %p %x", c, c->c_flags));
657a115fb62SHans Petter Selasky class = (c->c_lock != NULL) ? LOCK_CLASS(c->c_lock) : NULL;
658a115fb62SHans Petter Selasky lock_status = 0;
659a879e40cSKristof Provost if (c->c_iflags & CALLOUT_SHAREDLOCK) {
660a115fb62SHans Petter Selasky if (class == &lock_class_rm)
661a115fb62SHans Petter Selasky lock_status = (uintptr_t)&tracker;
662a115fb62SHans Petter Selasky else
663a115fb62SHans Petter Selasky lock_status = 1;
664a115fb62SHans Petter Selasky }
6656098e7acSKonstantin Belousov c_lock = c->c_lock;
6666098e7acSKonstantin Belousov c_func = c->c_func;
6676098e7acSKonstantin Belousov c_arg = c->c_arg;
66815b1eb14SRandall Stewart c_iflags = c->c_iflags;
66915b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_PENDING;
670d2854fa4SRandall Stewart
671d2854fa4SRandall Stewart cc_exec_curr(cc, direct) = c;
6728c5a9161SEric van Gyzen cc_exec_last_func(cc, direct) = c_func;
6738c5a9161SEric van Gyzen cc_exec_last_arg(cc, direct) = c_arg;
674d2854fa4SRandall Stewart cc_exec_cancel(cc, direct) = false;
675a115fb62SHans Petter Selasky if (c_lock != NULL) {
676*efcb2ec8SGleb Smirnoff if (c_iflags & CALLOUT_TRYLOCK) {
677*efcb2ec8SGleb Smirnoff if (__predict_false(class->lc_trylock(c_lock,
678*efcb2ec8SGleb Smirnoff lock_status) == 0)) {
679*efcb2ec8SGleb Smirnoff cc_exec_curr(cc, direct) = NULL;
680*efcb2ec8SGleb Smirnoff callout_cc_add(c, cc,
681*efcb2ec8SGleb Smirnoff cc->cc_lastscan + c->c_precision / 2,
682*efcb2ec8SGleb Smirnoff qmax(c->c_precision / 2, 1), c_func, c_arg,
683*efcb2ec8SGleb Smirnoff (direct) ? C_DIRECT_EXEC : 0);
684*efcb2ec8SGleb Smirnoff return;
685*efcb2ec8SGleb Smirnoff }
686*efcb2ec8SGleb Smirnoff CC_UNLOCK(cc);
687*efcb2ec8SGleb Smirnoff } else {
688*efcb2ec8SGleb Smirnoff CC_UNLOCK(cc);
689a115fb62SHans Petter Selasky class->lc_lock(c_lock, lock_status);
6906098e7acSKonstantin Belousov /*
691a115fb62SHans Petter Selasky * The callout may have been cancelled
692a115fb62SHans Petter Selasky * while we switched locks.
6936098e7acSKonstantin Belousov */
694d2854fa4SRandall Stewart if (cc_exec_cancel(cc, direct)) {
695a115fb62SHans Petter Selasky class->lc_unlock(c_lock);
696a115fb62SHans Petter Selasky goto skip;
6976098e7acSKonstantin Belousov }
698*efcb2ec8SGleb Smirnoff }
699a115fb62SHans Petter Selasky /* The callout cannot be stopped now. */
700d2854fa4SRandall Stewart cc_exec_cancel(cc, direct) = true;
7016098e7acSKonstantin Belousov if (c_lock == &Giant.lock_object) {
7025b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
7036098e7acSKonstantin Belousov (*gcalls)++;
7045b999a6bSDavide Italiano #endif
7055b999a6bSDavide Italiano CTR3(KTR_CALLOUT, "callout giant %p func %p arg %p",
7066098e7acSKonstantin Belousov c, c_func, c_arg);
7076098e7acSKonstantin Belousov } else {
7085b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
7096098e7acSKonstantin Belousov (*lockcalls)++;
7105b999a6bSDavide Italiano #endif
7116098e7acSKonstantin Belousov CTR3(KTR_CALLOUT, "callout lock %p func %p arg %p",
7126098e7acSKonstantin Belousov c, c_func, c_arg);
7136098e7acSKonstantin Belousov }
7146098e7acSKonstantin Belousov } else {
715*efcb2ec8SGleb Smirnoff CC_UNLOCK(cc);
7165b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
7176098e7acSKonstantin Belousov (*mpcalls)++;
7185b999a6bSDavide Italiano #endif
7195b999a6bSDavide Italiano CTR3(KTR_CALLOUT, "callout %p func %p arg %p",
7206098e7acSKonstantin Belousov c, c_func, c_arg);
7216098e7acSKonstantin Belousov }
722232e8b52SJohn Baldwin KTR_STATE3(KTR_SCHED, "callout", cc->cc_ktr_event_name, "running",
723232e8b52SJohn Baldwin "func:%p", c_func, "arg:%p", c_arg, "direct:%d", direct);
72403763781SDavide Italiano #if defined(DIAGNOSTIC) || defined(CALLOUT_PROFILING)
7255b999a6bSDavide Italiano sbt1 = sbinuptime();
7266098e7acSKonstantin Belousov #endif
7276098e7acSKonstantin Belousov THREAD_NO_SLEEPING();
72836160958SMark Johnston SDT_PROBE1(callout_execute, , , callout__start, c);
7296098e7acSKonstantin Belousov c_func(c_arg);
73036160958SMark Johnston SDT_PROBE1(callout_execute, , , callout__end, c);
7316098e7acSKonstantin Belousov THREAD_SLEEPING_OK();
73203763781SDavide Italiano #if defined(DIAGNOSTIC) || defined(CALLOUT_PROFILING)
73303763781SDavide Italiano sbt2 = sbinuptime();
73403763781SDavide Italiano sbt2 -= sbt1;
73503763781SDavide Italiano if (sbt2 > maxdt) {
73603763781SDavide Italiano if (lastfunc != c_func || sbt2 > maxdt * 2) {
73703763781SDavide Italiano ts2 = sbttots(sbt2);
7386098e7acSKonstantin Belousov printf(
7398965b303SMitchell Horne "Expensive callout(9) function: %p(%p) %jd.%09ld s\n",
7406098e7acSKonstantin Belousov c_func, c_arg, (intmax_t)ts2.tv_sec, ts2.tv_nsec);
7416098e7acSKonstantin Belousov }
74203763781SDavide Italiano maxdt = sbt2;
7436098e7acSKonstantin Belousov lastfunc = c_func;
7446098e7acSKonstantin Belousov }
7456098e7acSKonstantin Belousov #endif
746232e8b52SJohn Baldwin KTR_STATE0(KTR_SCHED, "callout", cc->cc_ktr_event_name, "idle");
7476098e7acSKonstantin Belousov CTR1(KTR_CALLOUT, "callout %p finished", c);
74815b1eb14SRandall Stewart if ((c_iflags & CALLOUT_RETURNUNLOCKED) == 0)
749a115fb62SHans Petter Selasky class->lc_unlock(c_lock);
750a115fb62SHans Petter Selasky skip:
7516098e7acSKonstantin Belousov CC_LOCK(cc);
752d2854fa4SRandall Stewart KASSERT(cc_exec_curr(cc, direct) == c, ("mishandled cc_curr"));
753d2854fa4SRandall Stewart cc_exec_curr(cc, direct) = NULL;
754d2854fa4SRandall Stewart if (cc_exec_waiting(cc, direct)) {
755bdf9120cSAttilio Rao /*
756a115fb62SHans Petter Selasky * There is someone waiting for the
757a115fb62SHans Petter Selasky * callout to complete.
758a115fb62SHans Petter Selasky * If the callout was scheduled for
759a115fb62SHans Petter Selasky * migration just cancel it.
760bdf9120cSAttilio Rao */
761a115fb62SHans Petter Selasky if (cc_cce_migrating(cc, direct)) {
762a115fb62SHans Petter Selasky cc_cce_cleanup(cc, direct);
763a115fb62SHans Petter Selasky
764a115fb62SHans Petter Selasky /*
765a115fb62SHans Petter Selasky * It should be assert here that the callout is not
766a115fb62SHans Petter Selasky * destroyed but that is not easy.
767a115fb62SHans Petter Selasky */
76815b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_DFRMIGRATION;
7696098e7acSKonstantin Belousov }
770d2854fa4SRandall Stewart cc_exec_waiting(cc, direct) = false;
771a115fb62SHans Petter Selasky CC_UNLOCK(cc);
772d2854fa4SRandall Stewart wakeup(&cc_exec_waiting(cc, direct));
773a115fb62SHans Petter Selasky CC_LOCK(cc);
774a115fb62SHans Petter Selasky } else if (cc_cce_migrating(cc, direct)) {
775a115fb62SHans Petter Selasky #ifdef SMP
776a115fb62SHans Petter Selasky /*
777a115fb62SHans Petter Selasky * If the callout was scheduled for
778a115fb62SHans Petter Selasky * migration just perform it now.
779a115fb62SHans Petter Selasky */
780d2854fa4SRandall Stewart new_cpu = cc_migration_cpu(cc, direct);
781d2854fa4SRandall Stewart new_time = cc_migration_time(cc, direct);
782d2854fa4SRandall Stewart new_prec = cc_migration_prec(cc, direct);
783d2854fa4SRandall Stewart new_func = cc_migration_func(cc, direct);
784d2854fa4SRandall Stewart new_arg = cc_migration_arg(cc, direct);
785a115fb62SHans Petter Selasky cc_cce_cleanup(cc, direct);
786a115fb62SHans Petter Selasky
787a115fb62SHans Petter Selasky /*
788a115fb62SHans Petter Selasky * It should be assert here that the callout is not destroyed
789a115fb62SHans Petter Selasky * but that is not easy.
790a115fb62SHans Petter Selasky *
791a115fb62SHans Petter Selasky * As first thing, handle deferred callout stops.
792a115fb62SHans Petter Selasky */
793d2854fa4SRandall Stewart if (!callout_migrating(c)) {
794a115fb62SHans Petter Selasky CTR3(KTR_CALLOUT,
795a115fb62SHans Petter Selasky "deferred cancelled %p func %p arg %p",
796a115fb62SHans Petter Selasky c, new_func, new_arg);
797a115fb62SHans Petter Selasky return;
798a115fb62SHans Petter Selasky }
79915b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_DFRMIGRATION;
800a115fb62SHans Petter Selasky
801a115fb62SHans Petter Selasky new_cc = callout_cpu_switch(c, cc, new_cpu);
802a115fb62SHans Petter Selasky flags = (direct) ? C_DIRECT_EXEC : 0;
803a115fb62SHans Petter Selasky callout_cc_add(c, new_cc, new_time, new_prec, new_func,
804aac7c7acSMark Johnston new_arg, flags);
805a115fb62SHans Petter Selasky CC_UNLOCK(new_cc);
806a115fb62SHans Petter Selasky CC_LOCK(cc);
807a115fb62SHans Petter Selasky #else
808a115fb62SHans Petter Selasky panic("migration should not happen");
809a115fb62SHans Petter Selasky #endif
810a115fb62SHans Petter Selasky }
8116098e7acSKonstantin Belousov }
8126098e7acSKonstantin Belousov
813219d632cSMatthew Dillon /*
814ab36c067SJustin T. Gibbs * The callout mechanism is based on the work of Adam M. Costello and
815ab36c067SJustin T. Gibbs * George Varghese, published in a technical report entitled "Redesigning
816ab36c067SJustin T. Gibbs * the BSD Callout and Timer Facilities" and modified slightly for inclusion
817ab36c067SJustin T. Gibbs * in FreeBSD by Justin T. Gibbs. The original work on the data structures
818024035e8SHiten Pandya * used in this implementation was published by G. Varghese and T. Lauck in
819ab36c067SJustin T. Gibbs * the paper "Hashed and Hierarchical Timing Wheels: Data Structures for
820ab36c067SJustin T. Gibbs * the Efficient Implementation of a Timer Facility" in the Proceedings of
821ab36c067SJustin T. Gibbs * the 11th ACM Annual Symposium on Operating Systems Principles,
822ab36c067SJustin T. Gibbs * Austin, Texas Nov 1987.
823ab36c067SJustin T. Gibbs */
824a50ec505SPoul-Henning Kamp
825ab36c067SJustin T. Gibbs /*
82674cf7caeSJohn Baldwin * Software (low priority) clock interrupt thread handler.
827df8bae1dSRodney W. Grimes * Run periodic events from timeout queue.
828df8bae1dSRodney W. Grimes */
82974cf7caeSJohn Baldwin static void
softclock_thread(void * arg)83074cf7caeSJohn Baldwin softclock_thread(void *arg)
831df8bae1dSRodney W. Grimes {
83274cf7caeSJohn Baldwin struct thread *td = curthread;
8338d809d50SJeff Roberson struct callout_cpu *cc;
834b336df68SPoul-Henning Kamp struct callout *c;
8355b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
83674cf7caeSJohn Baldwin int depth, gcalls, lockcalls, mpcalls;
8375b999a6bSDavide Italiano #endif
838df8bae1dSRodney W. Grimes
8398d809d50SJeff Roberson cc = (struct callout_cpu *)arg;
8408d809d50SJeff Roberson CC_LOCK(cc);
84174cf7caeSJohn Baldwin for (;;) {
84274cf7caeSJohn Baldwin while (TAILQ_EMPTY(&cc->cc_expireq)) {
84374cf7caeSJohn Baldwin /*
84474cf7caeSJohn Baldwin * Use CC_LOCK(cc) as the thread_lock while
84574cf7caeSJohn Baldwin * idle.
84674cf7caeSJohn Baldwin */
84774cf7caeSJohn Baldwin thread_lock(td);
84874cf7caeSJohn Baldwin thread_lock_set(td, (struct mtx *)&cc->cc_lock);
84974cf7caeSJohn Baldwin TD_SET_IWAIT(td);
85074cf7caeSJohn Baldwin mi_switch(SW_VOL | SWT_IWAIT);
85174cf7caeSJohn Baldwin
85274cf7caeSJohn Baldwin /* mi_switch() drops thread_lock(). */
85374cf7caeSJohn Baldwin CC_LOCK(cc);
85474cf7caeSJohn Baldwin }
85574cf7caeSJohn Baldwin
85674cf7caeSJohn Baldwin #ifdef CALLOUT_PROFILING
85774cf7caeSJohn Baldwin depth = gcalls = lockcalls = mpcalls = 0;
85874cf7caeSJohn Baldwin #endif
8595b999a6bSDavide Italiano while ((c = TAILQ_FIRST(&cc->cc_expireq)) != NULL) {
8605b999a6bSDavide Italiano TAILQ_REMOVE(&cc->cc_expireq, c, c_links.tqe);
8615b999a6bSDavide Italiano softclock_call_cc(c, cc,
8625b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
8635b999a6bSDavide Italiano &mpcalls, &lockcalls, &gcalls,
8645b999a6bSDavide Italiano #endif
8655b999a6bSDavide Italiano 0);
8665b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
8675b999a6bSDavide Italiano ++depth;
8685b999a6bSDavide Italiano #endif
869df8bae1dSRodney W. Grimes }
8705b999a6bSDavide Italiano #ifdef CALLOUT_PROFILING
87122ee8c4fSPoul-Henning Kamp avg_depth += (depth * 1000 - avg_depth) >> 8;
87222ee8c4fSPoul-Henning Kamp avg_mpcalls += (mpcalls * 1000 - avg_mpcalls) >> 8;
87364b9ee20SAttilio Rao avg_lockcalls += (lockcalls * 1000 - avg_lockcalls) >> 8;
87422ee8c4fSPoul-Henning Kamp avg_gcalls += (gcalls * 1000 - avg_gcalls) >> 8;
8755b999a6bSDavide Italiano #endif
87674cf7caeSJohn Baldwin }
877df8bae1dSRodney W. Grimes }
878df8bae1dSRodney W. Grimes
879a9e182e8SKonstantin Belousov void
callout_when(sbintime_t sbt,sbintime_t precision,int flags,sbintime_t * res,sbintime_t * prec_res)880a9e182e8SKonstantin Belousov callout_when(sbintime_t sbt, sbintime_t precision, int flags,
881a9e182e8SKonstantin Belousov sbintime_t *res, sbintime_t *prec_res)
882acc8326dSGarrett Wollman {
883a9e182e8SKonstantin Belousov sbintime_t to_sbt, to_pr;
884acc8326dSGarrett Wollman
885a9e182e8SKonstantin Belousov if ((flags & (C_ABSOLUTE | C_PRECALC)) != 0) {
886a9e182e8SKonstantin Belousov *res = sbt;
887a9e182e8SKonstantin Belousov *prec_res = precision;
888a9e182e8SKonstantin Belousov return;
88915b1eb14SRandall Stewart }
890a9e182e8SKonstantin Belousov if ((flags & C_HARDCLOCK) != 0 && sbt < tick_sbt)
8915b999a6bSDavide Italiano sbt = tick_sbt;
892a28c28e6SMark Johnston if ((flags & C_HARDCLOCK) != 0 || sbt >= sbt_tickthreshold) {
8935b999a6bSDavide Italiano /*
8945b999a6bSDavide Italiano * Obtain the time of the last hardclock() call on
8955b999a6bSDavide Italiano * this CPU directly from the kern_clocksource.c.
8965b999a6bSDavide Italiano * This value is per-CPU, but it is equal for all
8975b999a6bSDavide Italiano * active ones.
8985b999a6bSDavide Italiano */
8995b999a6bSDavide Italiano #ifdef __LP64__
900a115fb62SHans Petter Selasky to_sbt = DPCPU_GET(hardclocktime);
9015b999a6bSDavide Italiano #else
9025b999a6bSDavide Italiano spinlock_enter();
903a115fb62SHans Petter Selasky to_sbt = DPCPU_GET(hardclocktime);
9045b999a6bSDavide Italiano spinlock_exit();
9055b999a6bSDavide Italiano #endif
9069f3aabb9SJohn Baldwin if (cold && to_sbt == 0)
9079f3aabb9SJohn Baldwin to_sbt = sbinuptime();
908a115fb62SHans Petter Selasky if ((flags & C_HARDCLOCK) == 0)
909a115fb62SHans Petter Selasky to_sbt += tick_sbt;
9105b999a6bSDavide Italiano } else
911a115fb62SHans Petter Selasky to_sbt = sbinuptime();
912a115fb62SHans Petter Selasky if (SBT_MAX - to_sbt < sbt)
913a115fb62SHans Petter Selasky to_sbt = SBT_MAX;
9141b0c144fSDavide Italiano else
915a115fb62SHans Petter Selasky to_sbt += sbt;
916a9e182e8SKonstantin Belousov *res = to_sbt;
917a9e182e8SKonstantin Belousov to_pr = ((C_PRELGET(flags) < 0) ? sbt >> tc_precexp :
918a115fb62SHans Petter Selasky sbt >> C_PRELGET(flags));
919a9e182e8SKonstantin Belousov *prec_res = to_pr > precision ? to_pr : precision;
920a115fb62SHans Petter Selasky }
921a9e182e8SKonstantin Belousov
922a9e182e8SKonstantin Belousov /*
923a9e182e8SKonstantin Belousov * New interface; clients allocate their own callout structures.
924a9e182e8SKonstantin Belousov *
925a9e182e8SKonstantin Belousov * callout_reset() - establish or change a timeout
926a9e182e8SKonstantin Belousov * callout_stop() - disestablish a timeout
927a9e182e8SKonstantin Belousov * callout_init() - initialize a callout structure so that it can
928a9e182e8SKonstantin Belousov * safely be passed to callout_reset() and callout_stop()
929a9e182e8SKonstantin Belousov *
930a9e182e8SKonstantin Belousov * <sys/callout.h> defines three convenience macros:
931a9e182e8SKonstantin Belousov *
932a9e182e8SKonstantin Belousov * callout_active() - returns truth if callout has not been stopped,
933a9e182e8SKonstantin Belousov * drained, or deactivated since the last time the callout was
934a9e182e8SKonstantin Belousov * reset.
935a9e182e8SKonstantin Belousov * callout_pending() - returns truth if callout is still waiting for timeout
936a9e182e8SKonstantin Belousov * callout_deactivate() - marks the callout as having been serviced
937a9e182e8SKonstantin Belousov */
938a9e182e8SKonstantin Belousov int
callout_reset_sbt_on(struct callout * c,sbintime_t sbt,sbintime_t prec,callout_func_t * ftn,void * arg,int cpu,int flags)939a9e182e8SKonstantin Belousov callout_reset_sbt_on(struct callout *c, sbintime_t sbt, sbintime_t prec,
940a8a03706SJohn Baldwin callout_func_t *ftn, void *arg, int cpu, int flags)
941a9e182e8SKonstantin Belousov {
942a9e182e8SKonstantin Belousov sbintime_t to_sbt, precision;
943a9e182e8SKonstantin Belousov struct callout_cpu *cc;
944a9e182e8SKonstantin Belousov int cancelled, direct;
945a9e182e8SKonstantin Belousov
946a9e182e8SKonstantin Belousov cancelled = 0;
947a9e182e8SKonstantin Belousov callout_when(sbt, prec, flags, &to_sbt, &precision);
948a9e182e8SKonstantin Belousov
949a115fb62SHans Petter Selasky /*
95066525b2dSRandall Stewart * This flag used to be added by callout_cc_add, but the
95166525b2dSRandall Stewart * first time you call this we could end up with the
95266525b2dSRandall Stewart * wrong direct flag if we don't do it before we add.
95366525b2dSRandall Stewart */
95466525b2dSRandall Stewart if (flags & C_DIRECT_EXEC) {
95515b1eb14SRandall Stewart direct = 1;
95615b1eb14SRandall Stewart } else {
95715b1eb14SRandall Stewart direct = 0;
95866525b2dSRandall Stewart }
9594730a897SAlexander Motin KASSERT(!direct || c->c_lock == NULL ||
9604730a897SAlexander Motin (LOCK_CLASS(c->c_lock)->lc_flags & LC_SPINLOCK),
9614730a897SAlexander Motin ("%s: direct callout %p has non-spin lock", __func__, c));
96238e1d32dSMark Johnston
963a115fb62SHans Petter Selasky cc = callout_lock(c);
96438e1d32dSMark Johnston if (cpu == -1)
96515b1eb14SRandall Stewart cpu = c->c_cpu;
96638e1d32dSMark Johnston KASSERT(cpu >= 0 && cpu <= mp_maxid && !CPU_ABSENT(cpu),
96738e1d32dSMark Johnston ("%s: invalid cpu %d", __func__, cpu));
96815b1eb14SRandall Stewart
969d2854fa4SRandall Stewart if (cc_exec_curr(cc, direct) == c) {
970a115fb62SHans Petter Selasky /*
971a115fb62SHans Petter Selasky * We're being asked to reschedule a callout which is
972a115fb62SHans Petter Selasky * currently in progress. If there is a lock then we
973a115fb62SHans Petter Selasky * can cancel the callout if it has not really started.
974a115fb62SHans Petter Selasky */
975378d5c6cSAndriy Gapon if (c->c_lock != NULL && !cc_exec_cancel(cc, direct))
976d2854fa4SRandall Stewart cancelled = cc_exec_cancel(cc, direct) = true;
9775fc3104aSGleb Smirnoff if (cc_exec_waiting(cc, direct)) {
978a115fb62SHans Petter Selasky /*
979a115fb62SHans Petter Selasky * Someone has called callout_drain to kill this
980a115fb62SHans Petter Selasky * callout. Don't reschedule.
981a115fb62SHans Petter Selasky */
982a115fb62SHans Petter Selasky CTR4(KTR_CALLOUT, "%s %p func %p arg %p",
983a115fb62SHans Petter Selasky cancelled ? "cancelled" : "failed to cancel",
984a115fb62SHans Petter Selasky c, c->c_func, c->c_arg);
985a115fb62SHans Petter Selasky CC_UNLOCK(cc);
986a115fb62SHans Petter Selasky return (cancelled);
987a115fb62SHans Petter Selasky }
988d2854fa4SRandall Stewart #ifdef SMP
989d2854fa4SRandall Stewart if (callout_migrating(c)) {
990d2854fa4SRandall Stewart /*
991d2854fa4SRandall Stewart * This only occurs when a second callout_reset_sbt_on
992d2854fa4SRandall Stewart * is made after a previous one moved it into
993d2854fa4SRandall Stewart * deferred migration (below). Note we do *not* change
994d2854fa4SRandall Stewart * the prev_cpu even though the previous target may
995d2854fa4SRandall Stewart * be different.
996d2854fa4SRandall Stewart */
997d2854fa4SRandall Stewart cc_migration_cpu(cc, direct) = cpu;
998d2854fa4SRandall Stewart cc_migration_time(cc, direct) = to_sbt;
999d2854fa4SRandall Stewart cc_migration_prec(cc, direct) = precision;
1000d2854fa4SRandall Stewart cc_migration_func(cc, direct) = ftn;
1001d2854fa4SRandall Stewart cc_migration_arg(cc, direct) = arg;
1002d2854fa4SRandall Stewart cancelled = 1;
1003d2854fa4SRandall Stewart CC_UNLOCK(cc);
1004d2854fa4SRandall Stewart return (cancelled);
1005d2854fa4SRandall Stewart }
1006d2854fa4SRandall Stewart #endif
1007a115fb62SHans Petter Selasky }
100815b1eb14SRandall Stewart if (c->c_iflags & CALLOUT_PENDING) {
100915b1eb14SRandall Stewart if ((c->c_iflags & CALLOUT_PROCESSED) == 0) {
101066525b2dSRandall Stewart if (cc_exec_next(cc) == c)
101166525b2dSRandall Stewart cc_exec_next(cc) = LIST_NEXT(c, c_links.le);
1012a115fb62SHans Petter Selasky LIST_REMOVE(c, c_links.le);
101315b1eb14SRandall Stewart } else {
1014a115fb62SHans Petter Selasky TAILQ_REMOVE(&cc->cc_expireq, c, c_links.tqe);
101515b1eb14SRandall Stewart }
1016a115fb62SHans Petter Selasky cancelled = 1;
101715b1eb14SRandall Stewart c->c_iflags &= ~ CALLOUT_PENDING;
101815b1eb14SRandall Stewart c->c_flags &= ~ CALLOUT_ACTIVE;
10198d809d50SJeff Roberson }
10201283e9cdSAttilio Rao
1021a115fb62SHans Petter Selasky #ifdef SMP
1022a115fb62SHans Petter Selasky /*
1023a115fb62SHans Petter Selasky * If the callout must migrate try to perform it immediately.
1024a115fb62SHans Petter Selasky * If the callout is currently running, just defer the migration
1025a115fb62SHans Petter Selasky * to a more appropriate moment.
1026a115fb62SHans Petter Selasky */
1027a115fb62SHans Petter Selasky if (c->c_cpu != cpu) {
1028d2854fa4SRandall Stewart if (cc_exec_curr(cc, direct) == c) {
1029d2854fa4SRandall Stewart /*
1030d2854fa4SRandall Stewart * Pending will have been removed since we are
1031d2854fa4SRandall Stewart * actually executing the callout on another
1032d2854fa4SRandall Stewart * CPU. That callout should be waiting on the
1033d2854fa4SRandall Stewart * lock the caller holds. If we set both
1034d2854fa4SRandall Stewart * active/and/pending after we return and the
1035d2854fa4SRandall Stewart * lock on the executing callout proceeds, it
1036d2854fa4SRandall Stewart * will then see pending is true and return.
1037d2854fa4SRandall Stewart * At the return from the actual callout execution
1038d2854fa4SRandall Stewart * the migration will occur in softclock_call_cc
1039d2854fa4SRandall Stewart * and this new callout will be placed on the
1040d2854fa4SRandall Stewart * new CPU via a call to callout_cpu_switch() which
1041d2854fa4SRandall Stewart * will get the lock on the right CPU followed
1042d2854fa4SRandall Stewart * by a call callout_cc_add() which will add it there.
1043d2854fa4SRandall Stewart * (see above in softclock_call_cc()).
1044d2854fa4SRandall Stewart */
1045d2854fa4SRandall Stewart cc_migration_cpu(cc, direct) = cpu;
1046d2854fa4SRandall Stewart cc_migration_time(cc, direct) = to_sbt;
1047d2854fa4SRandall Stewart cc_migration_prec(cc, direct) = precision;
1048d2854fa4SRandall Stewart cc_migration_func(cc, direct) = ftn;
1049d2854fa4SRandall Stewart cc_migration_arg(cc, direct) = arg;
105015b1eb14SRandall Stewart c->c_iflags |= (CALLOUT_DFRMIGRATION | CALLOUT_PENDING);
105115b1eb14SRandall Stewart c->c_flags |= CALLOUT_ACTIVE;
1052a115fb62SHans Petter Selasky CTR6(KTR_CALLOUT,
1053a115fb62SHans Petter Selasky "migration of %p func %p arg %p in %d.%08x to %u deferred",
1054a115fb62SHans Petter Selasky c, c->c_func, c->c_arg, (int)(to_sbt >> 32),
1055a115fb62SHans Petter Selasky (u_int)(to_sbt & 0xffffffff), cpu);
1056a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1057a115fb62SHans Petter Selasky return (cancelled);
1058a115fb62SHans Petter Selasky }
1059a115fb62SHans Petter Selasky cc = callout_cpu_switch(c, cc, cpu);
1060a115fb62SHans Petter Selasky }
1061a115fb62SHans Petter Selasky #endif
1062a115fb62SHans Petter Selasky
1063aac7c7acSMark Johnston callout_cc_add(c, cc, to_sbt, precision, ftn, arg, flags);
1064a115fb62SHans Petter Selasky CTR6(KTR_CALLOUT, "%sscheduled %p func %p arg %p in %d.%08x",
1065a115fb62SHans Petter Selasky cancelled ? "re" : "", c, c->c_func, c->c_arg, (int)(to_sbt >> 32),
1066a115fb62SHans Petter Selasky (u_int)(to_sbt & 0xffffffff));
1067a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1068a115fb62SHans Petter Selasky
1069a115fb62SHans Petter Selasky return (cancelled);
1070acc8326dSGarrett Wollman }
1071acc8326dSGarrett Wollman
10726e0186d5SSam Leffler /*
10736e0186d5SSam Leffler * Common idioms that can be optimized in the future.
10746e0186d5SSam Leffler */
10756e0186d5SSam Leffler int
callout_schedule_on(struct callout * c,int to_ticks,int cpu)10766e0186d5SSam Leffler callout_schedule_on(struct callout *c, int to_ticks, int cpu)
10776e0186d5SSam Leffler {
10786e0186d5SSam Leffler return callout_reset_on(c, to_ticks, c->c_func, c->c_arg, cpu);
10796e0186d5SSam Leffler }
10806e0186d5SSam Leffler
10816e0186d5SSam Leffler int
callout_schedule(struct callout * c,int to_ticks)10826e0186d5SSam Leffler callout_schedule(struct callout *c, int to_ticks)
10836e0186d5SSam Leffler {
10846e0186d5SSam Leffler return callout_reset_on(c, to_ticks, c->c_func, c->c_arg, c->c_cpu);
10856e0186d5SSam Leffler }
10866e0186d5SSam Leffler
10872c1bb207SColin Percival int
_callout_stop_safe(struct callout * c,int flags)10885fc3104aSGleb Smirnoff _callout_stop_safe(struct callout *c, int flags)
10892c1bb207SColin Percival {
1090a115fb62SHans Petter Selasky struct callout_cpu *cc, *old_cc;
1091a115fb62SHans Petter Selasky struct lock_class *class;
1092a115fb62SHans Petter Selasky int direct, sq_locked, use_lock;
109347e42809SGleb Smirnoff int cancelled, not_on_a_list;
10941283e9cdSAttilio Rao
10955db9ed80SKonstantin Belousov if ((flags & CS_DRAIN) != 0)
10969500dd9fSAdrian Chadd WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, c->c_lock,
10979500dd9fSAdrian Chadd "calling %s", __func__);
10989500dd9fSAdrian Chadd
10991283e9cdSAttilio Rao /*
1100a115fb62SHans Petter Selasky * Some old subsystems don't hold Giant while running a callout_stop(),
1101a115fb62SHans Petter Selasky * so just discard this check for the moment.
11021283e9cdSAttilio Rao */
11035db9ed80SKonstantin Belousov if ((flags & CS_DRAIN) == 0 && c->c_lock != NULL) {
1104a115fb62SHans Petter Selasky if (c->c_lock == &Giant.lock_object)
1105a115fb62SHans Petter Selasky use_lock = mtx_owned(&Giant);
1106a115fb62SHans Petter Selasky else {
1107a115fb62SHans Petter Selasky use_lock = 1;
1108a115fb62SHans Petter Selasky class = LOCK_CLASS(c->c_lock);
1109a115fb62SHans Petter Selasky class->lc_assert(c->c_lock, LA_XLOCKED);
11101283e9cdSAttilio Rao }
1111a115fb62SHans Petter Selasky } else
1112a115fb62SHans Petter Selasky use_lock = 0;
111315b1eb14SRandall Stewart if (c->c_iflags & CALLOUT_DIRECT) {
111415b1eb14SRandall Stewart direct = 1;
111515b1eb14SRandall Stewart } else {
111615b1eb14SRandall Stewart direct = 0;
111715b1eb14SRandall Stewart }
1118a115fb62SHans Petter Selasky sq_locked = 0;
1119a115fb62SHans Petter Selasky old_cc = NULL;
1120a115fb62SHans Petter Selasky again:
1121a115fb62SHans Petter Selasky cc = callout_lock(c);
1122a115fb62SHans Petter Selasky
112315b1eb14SRandall Stewart if ((c->c_iflags & (CALLOUT_DFRMIGRATION | CALLOUT_PENDING)) ==
112415b1eb14SRandall Stewart (CALLOUT_DFRMIGRATION | CALLOUT_PENDING) &&
112515b1eb14SRandall Stewart ((c->c_flags & CALLOUT_ACTIVE) == CALLOUT_ACTIVE)) {
1126d2854fa4SRandall Stewart /*
1127d2854fa4SRandall Stewart * Special case where this slipped in while we
1128d2854fa4SRandall Stewart * were migrating *as* the callout is about to
1129d2854fa4SRandall Stewart * execute. The caller probably holds the lock
1130d2854fa4SRandall Stewart * the callout wants.
1131d2854fa4SRandall Stewart *
1132d2854fa4SRandall Stewart * Get rid of the migration first. Then set
1133d2854fa4SRandall Stewart * the flag that tells this code *not* to
1134d2854fa4SRandall Stewart * try to remove it from any lists (its not
1135d2854fa4SRandall Stewart * on one yet). When the callout wheel runs,
1136d2854fa4SRandall Stewart * it will ignore this callout.
1137d2854fa4SRandall Stewart */
113815b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_PENDING;
113915b1eb14SRandall Stewart c->c_flags &= ~CALLOUT_ACTIVE;
1140d2854fa4SRandall Stewart not_on_a_list = 1;
1141d2854fa4SRandall Stewart } else {
1142d2854fa4SRandall Stewart not_on_a_list = 0;
1143d2854fa4SRandall Stewart }
1144d2854fa4SRandall Stewart
1145a115fb62SHans Petter Selasky /*
1146a115fb62SHans Petter Selasky * If the callout was migrating while the callout cpu lock was
1147a115fb62SHans Petter Selasky * dropped, just drop the sleepqueue lock and check the states
1148a115fb62SHans Petter Selasky * again.
1149a115fb62SHans Petter Selasky */
1150a115fb62SHans Petter Selasky if (sq_locked != 0 && cc != old_cc) {
1151a115fb62SHans Petter Selasky #ifdef SMP
1152a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1153d2854fa4SRandall Stewart sleepq_release(&cc_exec_waiting(old_cc, direct));
1154a115fb62SHans Petter Selasky sq_locked = 0;
1155a115fb62SHans Petter Selasky old_cc = NULL;
1156a115fb62SHans Petter Selasky goto again;
1157a115fb62SHans Petter Selasky #else
1158a115fb62SHans Petter Selasky panic("migration should not happen");
1159a115fb62SHans Petter Selasky #endif
1160a115fb62SHans Petter Selasky }
116147e42809SGleb Smirnoff
1162a115fb62SHans Petter Selasky /*
116347e42809SGleb Smirnoff * If the callout is running, try to stop it or drain it.
1164a115fb62SHans Petter Selasky */
116547e42809SGleb Smirnoff if (cc_exec_curr(cc, direct) == c) {
1166a115fb62SHans Petter Selasky /*
116747e42809SGleb Smirnoff * Succeed we to stop it or not, we must clear the
11687d88be4cSMark Johnston * active flag - this is what API users expect. If we're
11697d88be4cSMark Johnston * draining and the callout is currently executing, first wait
11707d88be4cSMark Johnston * until it finishes.
1171a115fb62SHans Petter Selasky */
11727d88be4cSMark Johnston if ((flags & CS_DRAIN) == 0)
117318b4fd62SRandall Stewart c->c_flags &= ~CALLOUT_ACTIVE;
117447e42809SGleb Smirnoff
11755db9ed80SKonstantin Belousov if ((flags & CS_DRAIN) != 0) {
1176a115fb62SHans Petter Selasky /*
1177a115fb62SHans Petter Selasky * The current callout is running (or just
1178a115fb62SHans Petter Selasky * about to run) and blocking is allowed, so
1179a115fb62SHans Petter Selasky * just wait for the current invocation to
1180a115fb62SHans Petter Selasky * finish.
1181a115fb62SHans Petter Selasky */
1182a33fef5eSMark Johnston if (cc_exec_curr(cc, direct) == c) {
1183a115fb62SHans Petter Selasky /*
1184a115fb62SHans Petter Selasky * Use direct calls to sleepqueue interface
1185a115fb62SHans Petter Selasky * instead of cv/msleep in order to avoid
1186a115fb62SHans Petter Selasky * a LOR between cc_lock and sleepqueue
1187a115fb62SHans Petter Selasky * chain spinlocks. This piece of code
1188a115fb62SHans Petter Selasky * emulates a msleep_spin() call actually.
1189a115fb62SHans Petter Selasky *
1190a115fb62SHans Petter Selasky * If we already have the sleepqueue chain
1191a115fb62SHans Petter Selasky * locked, then we can safely block. If we
1192a115fb62SHans Petter Selasky * don't already have it locked, however,
1193a115fb62SHans Petter Selasky * we have to drop the cc_lock to lock
1194a115fb62SHans Petter Selasky * it. This opens several races, so we
1195a115fb62SHans Petter Selasky * restart at the beginning once we have
1196a115fb62SHans Petter Selasky * both locks. If nothing has changed, then
1197a115fb62SHans Petter Selasky * we will end up back here with sq_locked
1198a115fb62SHans Petter Selasky * set.
1199a115fb62SHans Petter Selasky */
1200a115fb62SHans Petter Selasky if (!sq_locked) {
1201a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1202a115fb62SHans Petter Selasky sleepq_lock(
1203d2854fa4SRandall Stewart &cc_exec_waiting(cc, direct));
1204a115fb62SHans Petter Selasky sq_locked = 1;
1205a115fb62SHans Petter Selasky old_cc = cc;
1206a115fb62SHans Petter Selasky goto again;
1207a115fb62SHans Petter Selasky }
120847e42809SGleb Smirnoff
1209a115fb62SHans Petter Selasky /*
1210a115fb62SHans Petter Selasky * Migration could be cancelled here, but
1211a115fb62SHans Petter Selasky * as long as it is still not sure when it
1212a115fb62SHans Petter Selasky * will be packed up, just let softclock()
1213a115fb62SHans Petter Selasky * take care of it.
1214a115fb62SHans Petter Selasky */
1215d2854fa4SRandall Stewart cc_exec_waiting(cc, direct) = true;
1216a115fb62SHans Petter Selasky DROP_GIANT();
1217a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1218a115fb62SHans Petter Selasky sleepq_add(
1219d2854fa4SRandall Stewart &cc_exec_waiting(cc, direct),
1220a115fb62SHans Petter Selasky &cc->cc_lock.lock_object, "codrain",
1221a115fb62SHans Petter Selasky SLEEPQ_SLEEP, 0);
1222a115fb62SHans Petter Selasky sleepq_wait(
1223d2854fa4SRandall Stewart &cc_exec_waiting(cc, direct),
1224a115fb62SHans Petter Selasky 0);
1225a115fb62SHans Petter Selasky sq_locked = 0;
1226a115fb62SHans Petter Selasky old_cc = NULL;
1227a115fb62SHans Petter Selasky
1228a115fb62SHans Petter Selasky /* Reacquire locks previously released. */
1229a115fb62SHans Petter Selasky PICKUP_GIANT();
1230a33fef5eSMark Johnston goto again;
1231a115fb62SHans Petter Selasky }
12327d88be4cSMark Johnston c->c_flags &= ~CALLOUT_ACTIVE;
12335fc3104aSGleb Smirnoff } else if (use_lock && !cc_exec_cancel(cc, direct)) {
1234d2854fa4SRandall Stewart
1235a115fb62SHans Petter Selasky /*
1236a115fb62SHans Petter Selasky * The current callout is waiting for its
1237a115fb62SHans Petter Selasky * lock which we hold. Cancel the callout
1238a115fb62SHans Petter Selasky * and return. After our caller drops the
1239a115fb62SHans Petter Selasky * lock, the callout will be skipped in
124018b4fd62SRandall Stewart * softclock(). This *only* works with a
12415fc3104aSGleb Smirnoff * callout_stop() *not* with callout_drain().
1242a115fb62SHans Petter Selasky */
1243d2854fa4SRandall Stewart cc_exec_cancel(cc, direct) = true;
1244a115fb62SHans Petter Selasky CTR3(KTR_CALLOUT, "cancelled %p func %p arg %p",
1245a115fb62SHans Petter Selasky c, c->c_func, c->c_arg);
1246a115fb62SHans Petter Selasky KASSERT(!cc_cce_migrating(cc, direct),
1247a115fb62SHans Petter Selasky ("callout wrongly scheduled for migration"));
124815b1eb14SRandall Stewart if (callout_migrating(c)) {
124915b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_DFRMIGRATION;
125015b1eb14SRandall Stewart #ifdef SMP
125115b1eb14SRandall Stewart cc_migration_cpu(cc, direct) = CPUBLOCK;
125215b1eb14SRandall Stewart cc_migration_time(cc, direct) = 0;
125315b1eb14SRandall Stewart cc_migration_prec(cc, direct) = 0;
125415b1eb14SRandall Stewart cc_migration_func(cc, direct) = NULL;
125515b1eb14SRandall Stewart cc_migration_arg(cc, direct) = NULL;
125615b1eb14SRandall Stewart #endif
125715b1eb14SRandall Stewart }
1258a115fb62SHans Petter Selasky CC_UNLOCK(cc);
1259a115fb62SHans Petter Selasky KASSERT(!sq_locked, ("sleepqueue chain locked"));
1260a115fb62SHans Petter Selasky return (1);
1261d2854fa4SRandall Stewart } else if (callout_migrating(c)) {
1262d2854fa4SRandall Stewart /*
1263d2854fa4SRandall Stewart * The callout is currently being serviced
1264d2854fa4SRandall Stewart * and the "next" callout is scheduled at
1265d2854fa4SRandall Stewart * its completion with a migration. We remove
1266d2854fa4SRandall Stewart * the migration flag so it *won't* get rescheduled,
1267d2854fa4SRandall Stewart * but we can't stop the one thats running so
1268d2854fa4SRandall Stewart * we return 0.
1269d2854fa4SRandall Stewart */
127015b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_DFRMIGRATION;
1271d2854fa4SRandall Stewart #ifdef SMP
1272d2854fa4SRandall Stewart /*
1273d2854fa4SRandall Stewart * We can't call cc_cce_cleanup here since
1274d2854fa4SRandall Stewart * if we do it will remove .ce_curr and
1275d2854fa4SRandall Stewart * its still running. This will prevent a
1276d2854fa4SRandall Stewart * reschedule of the callout when the
1277d2854fa4SRandall Stewart * execution completes.
1278d2854fa4SRandall Stewart */
1279d2854fa4SRandall Stewart cc_migration_cpu(cc, direct) = CPUBLOCK;
1280d2854fa4SRandall Stewart cc_migration_time(cc, direct) = 0;
1281d2854fa4SRandall Stewart cc_migration_prec(cc, direct) = 0;
1282d2854fa4SRandall Stewart cc_migration_func(cc, direct) = NULL;
1283d2854fa4SRandall Stewart cc_migration_arg(cc, direct) = NULL;
1284d2854fa4SRandall Stewart #endif
1285a115fb62SHans Petter Selasky CTR3(KTR_CALLOUT, "postponing stop %p func %p arg %p",
1286a115fb62SHans Petter Selasky c, c->c_func, c->c_arg);
1287a115fb62SHans Petter Selasky CC_UNLOCK(cc);
12887524994dSMark Johnston return (0);
12890d0053d7SHans Petter Selasky } else {
1290a115fb62SHans Petter Selasky CTR3(KTR_CALLOUT, "failed to stop %p func %p arg %p",
1291a115fb62SHans Petter Selasky c, c->c_func, c->c_arg);
12920d0053d7SHans Petter Selasky }
12933d84a188SRandall Stewart KASSERT(!sq_locked, ("sleepqueue chain still locked"));
12947524994dSMark Johnston cancelled = 0;
129547e42809SGleb Smirnoff } else
129647e42809SGleb Smirnoff cancelled = 1;
129747e42809SGleb Smirnoff
12983d84a188SRandall Stewart if (sq_locked)
12993d84a188SRandall Stewart sleepq_release(&cc_exec_waiting(cc, direct));
1300d153eeeeSGleb Smirnoff
130147e42809SGleb Smirnoff if ((c->c_iflags & CALLOUT_PENDING) == 0) {
130247e42809SGleb Smirnoff CTR3(KTR_CALLOUT, "failed to stop %p func %p arg %p",
130347e42809SGleb Smirnoff c, c->c_func, c->c_arg);
13049f339124SGleb Smirnoff /*
13059f339124SGleb Smirnoff * For not scheduled and not executing callout return
13069f339124SGleb Smirnoff * negative value.
13079f339124SGleb Smirnoff */
13089f339124SGleb Smirnoff if (cc_exec_curr(cc, direct) != c)
13099f339124SGleb Smirnoff cancelled = -1;
131047e42809SGleb Smirnoff CC_UNLOCK(cc);
13119f339124SGleb Smirnoff return (cancelled);
131247e42809SGleb Smirnoff }
131347e42809SGleb Smirnoff
131415b1eb14SRandall Stewart c->c_iflags &= ~CALLOUT_PENDING;
131515b1eb14SRandall Stewart c->c_flags &= ~CALLOUT_ACTIVE;
13161283e9cdSAttilio Rao
131768a57ebfSGleb Smirnoff CTR3(KTR_CALLOUT, "cancelled %p func %p arg %p",
131868a57ebfSGleb Smirnoff c, c->c_func, c->c_arg);
1319d2854fa4SRandall Stewart if (not_on_a_list == 0) {
132015b1eb14SRandall Stewart if ((c->c_iflags & CALLOUT_PROCESSED) == 0) {
132166525b2dSRandall Stewart if (cc_exec_next(cc) == c)
132266525b2dSRandall Stewart cc_exec_next(cc) = LIST_NEXT(c, c_links.le);
1323a115fb62SHans Petter Selasky LIST_REMOVE(c, c_links.le);
132415b1eb14SRandall Stewart } else {
1325a115fb62SHans Petter Selasky TAILQ_REMOVE(&cc->cc_expireq, c, c_links.tqe);
1326d2854fa4SRandall Stewart }
132715b1eb14SRandall Stewart }
1328a115fb62SHans Petter Selasky CC_UNLOCK(cc);
132947e42809SGleb Smirnoff return (cancelled);
1330acc8326dSGarrett Wollman }
1331acc8326dSGarrett Wollman
1332acc8326dSGarrett Wollman void
callout_init(struct callout * c,int mpsafe)1333e392e44cSDavide Italiano callout_init(struct callout *c, int mpsafe)
1334acc8326dSGarrett Wollman {
1335a115fb62SHans Petter Selasky bzero(c, sizeof *c);
133698c926b2SIan Dowse if (mpsafe) {
1337a115fb62SHans Petter Selasky c->c_lock = NULL;
133815b1eb14SRandall Stewart c->c_iflags = CALLOUT_RETURNUNLOCKED;
133998c926b2SIan Dowse } else {
1340a115fb62SHans Petter Selasky c->c_lock = &Giant.lock_object;
134115b1eb14SRandall Stewart c->c_iflags = 0;
134298c926b2SIan Dowse }
13434b28d96eSJohn Baldwin c->c_cpu = cc_default_cpu;
134498c926b2SIan Dowse }
134598c926b2SIan Dowse
134698c926b2SIan Dowse void
_callout_init_lock(struct callout * c,struct lock_object * lock,int flags)1347e392e44cSDavide Italiano _callout_init_lock(struct callout *c, struct lock_object *lock, int flags)
134898c926b2SIan Dowse {
13493beb43ddSGleb Smirnoff KASSERT(lock != NULL, ("%s: no lock", __func__));
1350*efcb2ec8SGleb Smirnoff KASSERT((flags & ~(CALLOUT_RETURNUNLOCKED | CALLOUT_SHAREDLOCK |
1351*efcb2ec8SGleb Smirnoff CALLOUT_TRYLOCK)) == 0,
135239afff09SGleb Smirnoff ("%s: bad flags %d", __func__, flags));
13533beb43ddSGleb Smirnoff KASSERT(!(LOCK_CLASS(lock)->lc_flags & LC_SLEEPABLE),
13544730a897SAlexander Motin ("%s: callout %p has sleepable lock", __func__, c));
1355*efcb2ec8SGleb Smirnoff KASSERT(!(flags & CALLOUT_TRYLOCK) ||
1356*efcb2ec8SGleb Smirnoff (LOCK_CLASS(lock)->lc_trylock != NULL),
1357*efcb2ec8SGleb Smirnoff ("%s: CALLOUT_TRYLOCK requested for %s",
1358*efcb2ec8SGleb Smirnoff __func__, LOCK_CLASS(lock)->lc_name));
135939afff09SGleb Smirnoff
136039afff09SGleb Smirnoff *c = (struct callout ){
136139afff09SGleb Smirnoff .c_lock = lock,
136239afff09SGleb Smirnoff .c_iflags = flags,
136339afff09SGleb Smirnoff .c_cpu = cc_default_cpu,
136439afff09SGleb Smirnoff };
1365acc8326dSGarrett Wollman }
1366acc8326dSGarrett Wollman
13675b999a6bSDavide Italiano static int
flssbt(sbintime_t sbt)13685b999a6bSDavide Italiano flssbt(sbintime_t sbt)
13695b999a6bSDavide Italiano {
13705b999a6bSDavide Italiano
13715b999a6bSDavide Italiano sbt += (uint64_t)sbt >> 1;
13725b999a6bSDavide Italiano if (sizeof(long) >= sizeof(sbintime_t))
13735b999a6bSDavide Italiano return (flsl(sbt));
13745b999a6bSDavide Italiano if (sbt >= SBT_1S)
13755b999a6bSDavide Italiano return (flsl(((uint64_t)sbt) >> 32) + 32);
13765b999a6bSDavide Italiano return (flsl(sbt));
13775b999a6bSDavide Italiano }
13785b999a6bSDavide Italiano
13795b999a6bSDavide Italiano /*
13805b999a6bSDavide Italiano * Dump immediate statistic snapshot of the scheduled callouts.
13815b999a6bSDavide Italiano */
13825b999a6bSDavide Italiano static int
sysctl_kern_callout_stat(SYSCTL_HANDLER_ARGS)13835b999a6bSDavide Italiano sysctl_kern_callout_stat(SYSCTL_HANDLER_ARGS)
13845b999a6bSDavide Italiano {
13855b999a6bSDavide Italiano struct callout *tmp;
13865b999a6bSDavide Italiano struct callout_cpu *cc;
13875b999a6bSDavide Italiano struct callout_list *sc;
13885b999a6bSDavide Italiano sbintime_t maxpr, maxt, medpr, medt, now, spr, st, t;
13895b999a6bSDavide Italiano int ct[64], cpr[64], ccpbk[32];
13905b999a6bSDavide Italiano int error, val, i, count, tcum, pcum, maxc, c, medc;
13915b999a6bSDavide Italiano int cpu;
13925b999a6bSDavide Italiano
13935b999a6bSDavide Italiano val = 0;
13945b999a6bSDavide Italiano error = sysctl_handle_int(oidp, &val, 0, req);
13955b999a6bSDavide Italiano if (error != 0 || req->newptr == NULL)
13965b999a6bSDavide Italiano return (error);
13975b999a6bSDavide Italiano count = maxc = 0;
13985b999a6bSDavide Italiano st = spr = maxt = maxpr = 0;
13995b999a6bSDavide Italiano bzero(ccpbk, sizeof(ccpbk));
14005b999a6bSDavide Italiano bzero(ct, sizeof(ct));
14015b999a6bSDavide Italiano bzero(cpr, sizeof(cpr));
14025b999a6bSDavide Italiano now = sbinuptime();
14035b999a6bSDavide Italiano CPU_FOREACH(cpu) {
14045b999a6bSDavide Italiano cc = CC_CPU(cpu);
14055b999a6bSDavide Italiano CC_LOCK(cc);
14065b999a6bSDavide Italiano for (i = 0; i < callwheelsize; i++) {
14075b999a6bSDavide Italiano sc = &cc->cc_callwheel[i];
14085b999a6bSDavide Italiano c = 0;
14095b999a6bSDavide Italiano LIST_FOREACH(tmp, sc, c_links.le) {
14105b999a6bSDavide Italiano c++;
14115b999a6bSDavide Italiano t = tmp->c_time - now;
14125b999a6bSDavide Italiano if (t < 0)
14135b999a6bSDavide Italiano t = 0;
14145b999a6bSDavide Italiano st += t / SBT_1US;
14155b999a6bSDavide Italiano spr += tmp->c_precision / SBT_1US;
14165b999a6bSDavide Italiano if (t > maxt)
14175b999a6bSDavide Italiano maxt = t;
14185b999a6bSDavide Italiano if (tmp->c_precision > maxpr)
14195b999a6bSDavide Italiano maxpr = tmp->c_precision;
14205b999a6bSDavide Italiano ct[flssbt(t)]++;
14215b999a6bSDavide Italiano cpr[flssbt(tmp->c_precision)]++;
14225b999a6bSDavide Italiano }
14235b999a6bSDavide Italiano if (c > maxc)
14245b999a6bSDavide Italiano maxc = c;
14255b999a6bSDavide Italiano ccpbk[fls(c + c / 2)]++;
14265b999a6bSDavide Italiano count += c;
14275b999a6bSDavide Italiano }
14285b999a6bSDavide Italiano CC_UNLOCK(cc);
14295b999a6bSDavide Italiano }
14305b999a6bSDavide Italiano
14315b999a6bSDavide Italiano for (i = 0, tcum = 0; i < 64 && tcum < count / 2; i++)
14325b999a6bSDavide Italiano tcum += ct[i];
14335b999a6bSDavide Italiano medt = (i >= 2) ? (((sbintime_t)1) << (i - 2)) : 0;
14345b999a6bSDavide Italiano for (i = 0, pcum = 0; i < 64 && pcum < count / 2; i++)
14355b999a6bSDavide Italiano pcum += cpr[i];
14365b999a6bSDavide Italiano medpr = (i >= 2) ? (((sbintime_t)1) << (i - 2)) : 0;
14375b999a6bSDavide Italiano for (i = 0, c = 0; i < 32 && c < count / 2; i++)
14385b999a6bSDavide Italiano c += ccpbk[i];
14395b999a6bSDavide Italiano medc = (i >= 2) ? (1 << (i - 2)) : 0;
14405b999a6bSDavide Italiano
14415b999a6bSDavide Italiano printf("Scheduled callouts statistic snapshot:\n");
14425b999a6bSDavide Italiano printf(" Callouts: %6d Buckets: %6d*%-3d Bucket size: 0.%06ds\n",
14435b999a6bSDavide Italiano count, callwheelsize, mp_ncpus, 1000000 >> CC_HASH_SHIFT);
14445b999a6bSDavide Italiano printf(" C/Bk: med %5d avg %6d.%06jd max %6d\n",
14455b999a6bSDavide Italiano medc,
14465b999a6bSDavide Italiano count / callwheelsize / mp_ncpus,
14475b999a6bSDavide Italiano (uint64_t)count * 1000000 / callwheelsize / mp_ncpus % 1000000,
14485b999a6bSDavide Italiano maxc);
14495b999a6bSDavide Italiano printf(" Time: med %5jd.%06jds avg %6jd.%06jds max %6jd.%06jds\n",
14505b999a6bSDavide Italiano medt / SBT_1S, (medt & 0xffffffff) * 1000000 >> 32,
14515b999a6bSDavide Italiano (st / count) / 1000000, (st / count) % 1000000,
14525b999a6bSDavide Italiano maxt / SBT_1S, (maxt & 0xffffffff) * 1000000 >> 32);
14535b999a6bSDavide Italiano printf(" Prec: med %5jd.%06jds avg %6jd.%06jds max %6jd.%06jds\n",
14545b999a6bSDavide Italiano medpr / SBT_1S, (medpr & 0xffffffff) * 1000000 >> 32,
14555b999a6bSDavide Italiano (spr / count) / 1000000, (spr / count) % 1000000,
14565b999a6bSDavide Italiano maxpr / SBT_1S, (maxpr & 0xffffffff) * 1000000 >> 32);
14575b999a6bSDavide Italiano printf(" Distribution: \tbuckets\t time\t tcum\t"
14585b999a6bSDavide Italiano " prec\t pcum\n");
14595b999a6bSDavide Italiano for (i = 0, tcum = pcum = 0; i < 64; i++) {
14605b999a6bSDavide Italiano if (ct[i] == 0 && cpr[i] == 0)
14615b999a6bSDavide Italiano continue;
14625b999a6bSDavide Italiano t = (i != 0) ? (((sbintime_t)1) << (i - 1)) : 0;
14635b999a6bSDavide Italiano tcum += ct[i];
14645b999a6bSDavide Italiano pcum += cpr[i];
14655b999a6bSDavide Italiano printf(" %10jd.%06jds\t 2**%d\t%7d\t%7d\t%7d\t%7d\n",
14665b999a6bSDavide Italiano t / SBT_1S, (t & 0xffffffff) * 1000000 >> 32,
14675b999a6bSDavide Italiano i - 1 - (32 - CC_HASH_SHIFT),
14685b999a6bSDavide Italiano ct[i], tcum, cpr[i], pcum);
14695b999a6bSDavide Italiano }
14705b999a6bSDavide Italiano return (error);
14715b999a6bSDavide Italiano }
14725b999a6bSDavide Italiano SYSCTL_PROC(_kern, OID_AUTO, callout_stat,
14735b999a6bSDavide Italiano CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
14745b999a6bSDavide Italiano 0, 0, sysctl_kern_callout_stat, "I",
14755b999a6bSDavide Italiano "Dump immediate statistic snapshot of the scheduled callouts");
147647e42809SGleb Smirnoff
14773af72c11SBjoern A. Zeeb #ifdef DDB
14783af72c11SBjoern A. Zeeb static void
_show_callout(struct callout * c)14793af72c11SBjoern A. Zeeb _show_callout(struct callout *c)
14803af72c11SBjoern A. Zeeb {
14813af72c11SBjoern A. Zeeb
14823af72c11SBjoern A. Zeeb db_printf("callout %p\n", c);
14833af72c11SBjoern A. Zeeb #define C_DB_PRINTF(f, e) db_printf(" %s = " f "\n", #e, c->e);
14843af72c11SBjoern A. Zeeb db_printf(" &c_links = %p\n", &(c->c_links));
14853af72c11SBjoern A. Zeeb C_DB_PRINTF("%" PRId64, c_time);
14863af72c11SBjoern A. Zeeb C_DB_PRINTF("%" PRId64, c_precision);
14873af72c11SBjoern A. Zeeb C_DB_PRINTF("%p", c_arg);
14883af72c11SBjoern A. Zeeb C_DB_PRINTF("%p", c_func);
14893af72c11SBjoern A. Zeeb C_DB_PRINTF("%p", c_lock);
14903af72c11SBjoern A. Zeeb C_DB_PRINTF("%#x", c_flags);
14913af72c11SBjoern A. Zeeb C_DB_PRINTF("%#x", c_iflags);
14923af72c11SBjoern A. Zeeb C_DB_PRINTF("%d", c_cpu);
14933af72c11SBjoern A. Zeeb #undef C_DB_PRINTF
14943af72c11SBjoern A. Zeeb }
14953af72c11SBjoern A. Zeeb
DB_SHOW_COMMAND(callout,db_show_callout)14963af72c11SBjoern A. Zeeb DB_SHOW_COMMAND(callout, db_show_callout)
14973af72c11SBjoern A. Zeeb {
14983af72c11SBjoern A. Zeeb
14993af72c11SBjoern A. Zeeb if (!have_addr) {
15003af72c11SBjoern A. Zeeb db_printf("usage: show callout <struct callout *>\n");
15013af72c11SBjoern A. Zeeb return;
15023af72c11SBjoern A. Zeeb }
15033af72c11SBjoern A. Zeeb
15043af72c11SBjoern A. Zeeb _show_callout((struct callout *)addr);
15053af72c11SBjoern A. Zeeb }
15068c5a9161SEric van Gyzen
15078c5a9161SEric van Gyzen static void
_show_last_callout(int cpu,int direct,const char * dirstr)15088c5a9161SEric van Gyzen _show_last_callout(int cpu, int direct, const char *dirstr)
15098c5a9161SEric van Gyzen {
15108c5a9161SEric van Gyzen struct callout_cpu *cc;
15118c5a9161SEric van Gyzen void *func, *arg;
15128c5a9161SEric van Gyzen
15138c5a9161SEric van Gyzen cc = CC_CPU(cpu);
15148c5a9161SEric van Gyzen func = cc_exec_last_func(cc, direct);
15158c5a9161SEric van Gyzen arg = cc_exec_last_arg(cc, direct);
15168c5a9161SEric van Gyzen db_printf("cpu %d last%s callout function: %p ", cpu, dirstr, func);
15178c5a9161SEric van Gyzen db_printsym((db_expr_t)func, DB_STGY_ANY);
15188c5a9161SEric van Gyzen db_printf("\ncpu %d last%s callout argument: %p\n", cpu, dirstr, arg);
15198c5a9161SEric van Gyzen }
15208c5a9161SEric van Gyzen
DB_SHOW_COMMAND_FLAGS(callout_last,db_show_callout_last,DB_CMD_MEMSAFE)1521c84c5e00SMitchell Horne DB_SHOW_COMMAND_FLAGS(callout_last, db_show_callout_last, DB_CMD_MEMSAFE)
15228c5a9161SEric van Gyzen {
15238c5a9161SEric van Gyzen int cpu, last;
15248c5a9161SEric van Gyzen
15258c5a9161SEric van Gyzen if (have_addr) {
15268c5a9161SEric van Gyzen if (addr < 0 || addr > mp_maxid || CPU_ABSENT(addr)) {
15278c5a9161SEric van Gyzen db_printf("no such cpu: %d\n", (int)addr);
15288c5a9161SEric van Gyzen return;
15298c5a9161SEric van Gyzen }
15308c5a9161SEric van Gyzen cpu = last = addr;
15318c5a9161SEric van Gyzen } else {
15328c5a9161SEric van Gyzen cpu = 0;
15338c5a9161SEric van Gyzen last = mp_maxid;
15348c5a9161SEric van Gyzen }
15358c5a9161SEric van Gyzen
15368c5a9161SEric van Gyzen while (cpu <= last) {
15378c5a9161SEric van Gyzen if (!CPU_ABSENT(cpu)) {
15388c5a9161SEric van Gyzen _show_last_callout(cpu, 0, "");
15398c5a9161SEric van Gyzen _show_last_callout(cpu, 1, " direct");
15408c5a9161SEric van Gyzen }
15418c5a9161SEric van Gyzen cpu++;
15428c5a9161SEric van Gyzen }
15438c5a9161SEric van Gyzen }
15443af72c11SBjoern A. Zeeb #endif /* DDB */
1545