subr_lock.c revision 209390
1/*-
2 * Copyright (c) 2006 John Baldwin <jhb@FreeBSD.org>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 * 3. Neither the name of the author nor the names of any co-contributors
14 *    may be used to endorse or promote products derived from this software
15 *    without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 */
29
30/*
31 * This module holds the global variables and functions used to maintain
32 * lock_object structures.
33 */
34
35#include <sys/cdefs.h>
36__FBSDID("$FreeBSD: head/sys/kern/subr_lock.c 209390 2010-06-21 09:55:56Z ed $");
37
38#include "opt_ddb.h"
39#include "opt_mprof.h"
40
41#include <sys/param.h>
42#include <sys/systm.h>
43#include <sys/kernel.h>
44#include <sys/ktr.h>
45#include <sys/linker_set.h>
46#include <sys/lock.h>
47#include <sys/lock_profile.h>
48#include <sys/malloc.h>
49#include <sys/mutex.h>
50#include <sys/pcpu.h>
51#include <sys/proc.h>
52#include <sys/sbuf.h>
53#include <sys/sched.h>
54#include <sys/smp.h>
55#include <sys/sysctl.h>
56
57#ifdef DDB
58#include <ddb/ddb.h>
59#endif
60
61#include <machine/cpufunc.h>
62
63CTASSERT(LOCK_CLASS_MAX == 15);
64
65struct lock_class *lock_classes[LOCK_CLASS_MAX + 1] = {
66	&lock_class_mtx_spin,
67	&lock_class_mtx_sleep,
68	&lock_class_sx,
69	&lock_class_rm,
70	&lock_class_rw,
71	&lock_class_lockmgr,
72};
73
74void
75lock_init(struct lock_object *lock, struct lock_class *class, const char *name,
76    const char *type, int flags)
77{
78	int i;
79
80	/* Check for double-init and zero object. */
81	KASSERT(!lock_initalized(lock), ("lock \"%s\" %p already initialized",
82	    name, lock));
83
84	/* Look up lock class to find its index. */
85	for (i = 0; i < LOCK_CLASS_MAX; i++)
86		if (lock_classes[i] == class) {
87			lock->lo_flags = i << LO_CLASSSHIFT;
88			break;
89		}
90	KASSERT(i < LOCK_CLASS_MAX, ("unknown lock class %p", class));
91
92	/* Initialize the lock object. */
93	lock->lo_name = name;
94	lock->lo_flags |= flags | LO_INITIALIZED;
95	LOCK_LOG_INIT(lock, 0);
96	WITNESS_INIT(lock, (type != NULL) ? type : name);
97}
98
99void
100lock_destroy(struct lock_object *lock)
101{
102
103	KASSERT(lock_initalized(lock), ("lock %p is not initialized", lock));
104	WITNESS_DESTROY(lock);
105	LOCK_LOG_DESTROY(lock, 0);
106	lock->lo_flags &= ~LO_INITIALIZED;
107}
108
109#ifdef DDB
110DB_SHOW_COMMAND(lock, db_show_lock)
111{
112	struct lock_object *lock;
113	struct lock_class *class;
114
115	if (!have_addr)
116		return;
117	lock = (struct lock_object *)addr;
118	if (LO_CLASSINDEX(lock) > LOCK_CLASS_MAX) {
119		db_printf("Unknown lock class: %d\n", LO_CLASSINDEX(lock));
120		return;
121	}
122	class = LOCK_CLASS(lock);
123	db_printf(" class: %s\n", class->lc_name);
124	db_printf(" name: %s\n", lock->lo_name);
125	class->lc_ddb_show(lock);
126}
127#endif
128
129#ifdef LOCK_PROFILING
130
131/*
132 * One object per-thread for each lock the thread owns.  Tracks individual
133 * lock instances.
134 */
135struct lock_profile_object {
136	LIST_ENTRY(lock_profile_object) lpo_link;
137	struct lock_object *lpo_obj;
138	const char	*lpo_file;
139	int		lpo_line;
140	uint16_t	lpo_ref;
141	uint16_t	lpo_cnt;
142	uint64_t	lpo_acqtime;
143	uint64_t	lpo_waittime;
144	u_int		lpo_contest_locking;
145};
146
147/*
148 * One lock_prof for each (file, line, lock object) triple.
149 */
150struct lock_prof {
151	SLIST_ENTRY(lock_prof) link;
152	struct lock_class *class;
153	const char	*file;
154	const char	*name;
155	int		line;
156	int		ticks;
157	uintmax_t	cnt_wait_max;
158	uintmax_t	cnt_max;
159	uintmax_t	cnt_tot;
160	uintmax_t	cnt_wait;
161	uintmax_t	cnt_cur;
162	uintmax_t	cnt_contest_locking;
163};
164
165SLIST_HEAD(lphead, lock_prof);
166
167#define	LPROF_HASH_SIZE		4096
168#define	LPROF_HASH_MASK		(LPROF_HASH_SIZE - 1)
169#define	LPROF_CACHE_SIZE	4096
170
171/*
172 * Array of objects and profs for each type of object for each cpu.  Spinlocks
173 * are handled seperately because a thread may be preempted and acquire a
174 * spinlock while in the lock profiling code of a non-spinlock.  In this way
175 * we only need a critical section to protect the per-cpu lists.
176 */
177struct lock_prof_type {
178	struct lphead		lpt_lpalloc;
179	struct lpohead		lpt_lpoalloc;
180	struct lphead		lpt_hash[LPROF_HASH_SIZE];
181	struct lock_prof	lpt_prof[LPROF_CACHE_SIZE];
182	struct lock_profile_object lpt_objs[LPROF_CACHE_SIZE];
183};
184
185struct lock_prof_cpu {
186	struct lock_prof_type	lpc_types[2]; /* One for spin one for other. */
187};
188
189struct lock_prof_cpu *lp_cpu[MAXCPU];
190
191volatile int lock_prof_enable = 0;
192static volatile int lock_prof_resetting;
193
194/* SWAG: sbuf size = avg stat. line size * number of locks */
195#define LPROF_SBUF_SIZE		256 * 400
196
197static int lock_prof_rejected;
198static int lock_prof_skipspin;
199static int lock_prof_skipcount;
200
201#ifndef USE_CPU_NANOSECONDS
202uint64_t
203nanoseconds(void)
204{
205	struct bintime bt;
206	uint64_t ns;
207
208	binuptime(&bt);
209	/* From bintime2timespec */
210	ns = bt.sec * (uint64_t)1000000000;
211	ns += ((uint64_t)1000000000 * (uint32_t)(bt.frac >> 32)) >> 32;
212	return (ns);
213}
214#endif
215
216static void
217lock_prof_init_type(struct lock_prof_type *type)
218{
219	int i;
220
221	SLIST_INIT(&type->lpt_lpalloc);
222	LIST_INIT(&type->lpt_lpoalloc);
223	for (i = 0; i < LPROF_CACHE_SIZE; i++) {
224		SLIST_INSERT_HEAD(&type->lpt_lpalloc, &type->lpt_prof[i],
225		    link);
226		LIST_INSERT_HEAD(&type->lpt_lpoalloc, &type->lpt_objs[i],
227		    lpo_link);
228	}
229}
230
231static void
232lock_prof_init(void *arg)
233{
234	int cpu;
235
236	for (cpu = 0; cpu <= mp_maxid; cpu++) {
237		lp_cpu[cpu] = malloc(sizeof(*lp_cpu[cpu]), M_DEVBUF,
238		    M_WAITOK | M_ZERO);
239		lock_prof_init_type(&lp_cpu[cpu]->lpc_types[0]);
240		lock_prof_init_type(&lp_cpu[cpu]->lpc_types[1]);
241	}
242}
243SYSINIT(lockprof, SI_SUB_SMP, SI_ORDER_ANY, lock_prof_init, NULL);
244
245/*
246 * To be certain that lock profiling has idled on all cpus before we
247 * reset, we schedule the resetting thread on all active cpus.  Since
248 * all operations happen within critical sections we can be sure that
249 * it is safe to zero the profiling structures.
250 */
251static void
252lock_prof_idle(void)
253{
254	struct thread *td;
255	int cpu;
256
257	td = curthread;
258	thread_lock(td);
259	CPU_FOREACH(cpu) {
260		sched_bind(td, cpu);
261	}
262	sched_unbind(td);
263	thread_unlock(td);
264}
265
266static void
267lock_prof_reset_wait(void)
268{
269
270	/*
271	 * Spin relinquishing our cpu so that lock_prof_idle may
272	 * run on it.
273	 */
274	while (lock_prof_resetting)
275		sched_relinquish(curthread);
276}
277
278static void
279lock_prof_reset(void)
280{
281	struct lock_prof_cpu *lpc;
282	int enabled, i, cpu;
283
284	/*
285	 * We not only race with acquiring and releasing locks but also
286	 * thread exit.  To be certain that threads exit without valid head
287	 * pointers they must see resetting set before enabled is cleared.
288	 * Otherwise a lock may not be removed from a per-thread list due
289	 * to disabled being set but not wait for reset() to remove it below.
290	 */
291	atomic_store_rel_int(&lock_prof_resetting, 1);
292	enabled = lock_prof_enable;
293	lock_prof_enable = 0;
294	lock_prof_idle();
295	/*
296	 * Some objects may have migrated between CPUs.  Clear all links
297	 * before we zero the structures.  Some items may still be linked
298	 * into per-thread lists as well.
299	 */
300	for (cpu = 0; cpu <= mp_maxid; cpu++) {
301		lpc = lp_cpu[cpu];
302		for (i = 0; i < LPROF_CACHE_SIZE; i++) {
303			LIST_REMOVE(&lpc->lpc_types[0].lpt_objs[i], lpo_link);
304			LIST_REMOVE(&lpc->lpc_types[1].lpt_objs[i], lpo_link);
305		}
306	}
307	for (cpu = 0; cpu <= mp_maxid; cpu++) {
308		lpc = lp_cpu[cpu];
309		bzero(lpc, sizeof(*lpc));
310		lock_prof_init_type(&lpc->lpc_types[0]);
311		lock_prof_init_type(&lpc->lpc_types[1]);
312	}
313	atomic_store_rel_int(&lock_prof_resetting, 0);
314	lock_prof_enable = enabled;
315}
316
317static void
318lock_prof_output(struct lock_prof *lp, struct sbuf *sb)
319{
320	const char *p;
321
322	for (p = lp->file; p != NULL && strncmp(p, "../", 3) == 0; p += 3);
323	sbuf_printf(sb,
324	    "%8ju %9ju %11ju %11ju %11ju %6ju %6ju %2ju %6ju %s:%d (%s:%s)\n",
325	    lp->cnt_max / 1000, lp->cnt_wait_max / 1000, lp->cnt_tot / 1000,
326	    lp->cnt_wait / 1000, lp->cnt_cur,
327	    lp->cnt_cur == 0 ? (uintmax_t)0 :
328	    lp->cnt_tot / (lp->cnt_cur * 1000),
329	    lp->cnt_cur == 0 ? (uintmax_t)0 :
330	    lp->cnt_wait / (lp->cnt_cur * 1000),
331	    (uintmax_t)0, lp->cnt_contest_locking,
332	    p, lp->line, lp->class->lc_name, lp->name);
333}
334
335static void
336lock_prof_sum(struct lock_prof *match, struct lock_prof *dst, int hash,
337    int spin, int t)
338{
339	struct lock_prof_type *type;
340	struct lock_prof *l;
341	int cpu;
342
343	dst->file = match->file;
344	dst->line = match->line;
345	dst->class = match->class;
346	dst->name = match->name;
347
348	for (cpu = 0; cpu <= mp_maxid; cpu++) {
349		if (lp_cpu[cpu] == NULL)
350			continue;
351		type = &lp_cpu[cpu]->lpc_types[spin];
352		SLIST_FOREACH(l, &type->lpt_hash[hash], link) {
353			if (l->ticks == t)
354				continue;
355			if (l->file != match->file || l->line != match->line ||
356			    l->name != match->name)
357				continue;
358			l->ticks = t;
359			if (l->cnt_max > dst->cnt_max)
360				dst->cnt_max = l->cnt_max;
361			if (l->cnt_wait_max > dst->cnt_wait_max)
362				dst->cnt_wait_max = l->cnt_wait_max;
363			dst->cnt_tot += l->cnt_tot;
364			dst->cnt_wait += l->cnt_wait;
365			dst->cnt_cur += l->cnt_cur;
366			dst->cnt_contest_locking += l->cnt_contest_locking;
367		}
368	}
369
370}
371
372static void
373lock_prof_type_stats(struct lock_prof_type *type, struct sbuf *sb, int spin,
374    int t)
375{
376	struct lock_prof *l;
377	int i;
378
379	for (i = 0; i < LPROF_HASH_SIZE; ++i) {
380		SLIST_FOREACH(l, &type->lpt_hash[i], link) {
381			struct lock_prof lp = {};
382
383			if (l->ticks == t)
384				continue;
385			lock_prof_sum(l, &lp, i, spin, t);
386			lock_prof_output(&lp, sb);
387			if (sbuf_overflowed(sb))
388				return;
389		}
390	}
391}
392
393static int
394dump_lock_prof_stats(SYSCTL_HANDLER_ARGS)
395{
396	static int multiplier = 1;
397	struct sbuf *sb;
398	int error, cpu, t;
399	int enabled;
400
401retry_sbufops:
402	sb = sbuf_new(NULL, NULL, LPROF_SBUF_SIZE * multiplier, SBUF_FIXEDLEN);
403	sbuf_printf(sb, "\n%8s %9s %11s %11s %11s %6s %6s %2s %6s %s\n",
404	    "max", "wait_max", "total", "wait_total", "count", "avg", "wait_avg", "cnt_hold", "cnt_lock", "name");
405	enabled = lock_prof_enable;
406	lock_prof_enable = 0;
407	lock_prof_idle();
408	t = ticks;
409	for (cpu = 0; cpu <= mp_maxid; cpu++) {
410		if (lp_cpu[cpu] == NULL)
411			continue;
412		lock_prof_type_stats(&lp_cpu[cpu]->lpc_types[0], sb, 0, t);
413		lock_prof_type_stats(&lp_cpu[cpu]->lpc_types[1], sb, 1, t);
414		if (sbuf_overflowed(sb)) {
415			sbuf_delete(sb);
416			multiplier++;
417			goto retry_sbufops;
418		}
419	}
420	lock_prof_enable = enabled;
421
422	sbuf_finish(sb);
423	error = SYSCTL_OUT(req, sbuf_data(sb), sbuf_len(sb) + 1);
424	sbuf_delete(sb);
425	return (error);
426}
427
428static int
429enable_lock_prof(SYSCTL_HANDLER_ARGS)
430{
431	int error, v;
432
433	v = lock_prof_enable;
434	error = sysctl_handle_int(oidp, &v, v, req);
435	if (error)
436		return (error);
437	if (req->newptr == NULL)
438		return (error);
439	if (v == lock_prof_enable)
440		return (0);
441	if (v == 1)
442		lock_prof_reset();
443	lock_prof_enable = !!v;
444
445	return (0);
446}
447
448static int
449reset_lock_prof_stats(SYSCTL_HANDLER_ARGS)
450{
451	int error, v;
452
453	v = 0;
454	error = sysctl_handle_int(oidp, &v, 0, req);
455	if (error)
456		return (error);
457	if (req->newptr == NULL)
458		return (error);
459	if (v == 0)
460		return (0);
461	lock_prof_reset();
462
463	return (0);
464}
465
466static struct lock_prof *
467lock_profile_lookup(struct lock_object *lo, int spin, const char *file,
468    int line)
469{
470	const char *unknown = "(unknown)";
471	struct lock_prof_type *type;
472	struct lock_prof *lp;
473	struct lphead *head;
474	const char *p;
475	u_int hash;
476
477	p = file;
478	if (p == NULL || *p == '\0')
479		p = unknown;
480	hash = (uintptr_t)lo->lo_name * 31 + (uintptr_t)p * 31 + line;
481	hash &= LPROF_HASH_MASK;
482	type = &lp_cpu[PCPU_GET(cpuid)]->lpc_types[spin];
483	head = &type->lpt_hash[hash];
484	SLIST_FOREACH(lp, head, link) {
485		if (lp->line == line && lp->file == p &&
486		    lp->name == lo->lo_name)
487			return (lp);
488
489	}
490	lp = SLIST_FIRST(&type->lpt_lpalloc);
491	if (lp == NULL) {
492		lock_prof_rejected++;
493		return (lp);
494	}
495	SLIST_REMOVE_HEAD(&type->lpt_lpalloc, link);
496	lp->file = p;
497	lp->line = line;
498	lp->class = LOCK_CLASS(lo);
499	lp->name = lo->lo_name;
500	SLIST_INSERT_HEAD(&type->lpt_hash[hash], lp, link);
501	return (lp);
502}
503
504static struct lock_profile_object *
505lock_profile_object_lookup(struct lock_object *lo, int spin, const char *file,
506    int line)
507{
508	struct lock_profile_object *l;
509	struct lock_prof_type *type;
510	struct lpohead *head;
511
512	head = &curthread->td_lprof[spin];
513	LIST_FOREACH(l, head, lpo_link)
514		if (l->lpo_obj == lo && l->lpo_file == file &&
515		    l->lpo_line == line)
516			return (l);
517	type = &lp_cpu[PCPU_GET(cpuid)]->lpc_types[spin];
518	l = LIST_FIRST(&type->lpt_lpoalloc);
519	if (l == NULL) {
520		lock_prof_rejected++;
521		return (NULL);
522	}
523	LIST_REMOVE(l, lpo_link);
524	l->lpo_obj = lo;
525	l->lpo_file = file;
526	l->lpo_line = line;
527	l->lpo_cnt = 0;
528	LIST_INSERT_HEAD(head, l, lpo_link);
529
530	return (l);
531}
532
533void
534lock_profile_obtain_lock_success(struct lock_object *lo, int contested,
535    uint64_t waittime, const char *file, int line)
536{
537	static int lock_prof_count;
538	struct lock_profile_object *l;
539	int spin;
540
541	/* don't reset the timer when/if recursing */
542	if (!lock_prof_enable || (lo->lo_flags & LO_NOPROFILE))
543		return;
544	if (lock_prof_skipcount &&
545	    (++lock_prof_count % lock_prof_skipcount) != 0)
546		return;
547	spin = (LOCK_CLASS(lo)->lc_flags & LC_SPINLOCK) ? 1 : 0;
548	if (spin && lock_prof_skipspin == 1)
549		return;
550	critical_enter();
551	/* Recheck enabled now that we're in a critical section. */
552	if (lock_prof_enable == 0)
553		goto out;
554	l = lock_profile_object_lookup(lo, spin, file, line);
555	if (l == NULL)
556		goto out;
557	l->lpo_cnt++;
558	if (++l->lpo_ref > 1)
559		goto out;
560	l->lpo_contest_locking = contested;
561	l->lpo_acqtime = nanoseconds();
562	if (waittime && (l->lpo_acqtime > waittime))
563		l->lpo_waittime = l->lpo_acqtime - waittime;
564	else
565		l->lpo_waittime = 0;
566out:
567	critical_exit();
568}
569
570void
571lock_profile_thread_exit(struct thread *td)
572{
573#ifdef INVARIANTS
574	struct lock_profile_object *l;
575
576	MPASS(curthread->td_critnest == 0);
577#endif
578	/*
579	 * If lock profiling was disabled we have to wait for reset to
580	 * clear our pointers before we can exit safely.
581	 */
582	lock_prof_reset_wait();
583#ifdef INVARIANTS
584	LIST_FOREACH(l, &td->td_lprof[0], lpo_link)
585		printf("thread still holds lock acquired at %s:%d\n",
586		    l->lpo_file, l->lpo_line);
587	LIST_FOREACH(l, &td->td_lprof[1], lpo_link)
588		printf("thread still holds lock acquired at %s:%d\n",
589		    l->lpo_file, l->lpo_line);
590#endif
591	MPASS(LIST_FIRST(&td->td_lprof[0]) == NULL);
592	MPASS(LIST_FIRST(&td->td_lprof[1]) == NULL);
593}
594
595void
596lock_profile_release_lock(struct lock_object *lo)
597{
598	struct lock_profile_object *l;
599	struct lock_prof_type *type;
600	struct lock_prof *lp;
601	uint64_t curtime, holdtime;
602	struct lpohead *head;
603	int spin;
604
605	if (lo->lo_flags & LO_NOPROFILE)
606		return;
607	spin = (LOCK_CLASS(lo)->lc_flags & LC_SPINLOCK) ? 1 : 0;
608	head = &curthread->td_lprof[spin];
609	if (LIST_FIRST(head) == NULL)
610		return;
611	critical_enter();
612	/* Recheck enabled now that we're in a critical section. */
613	if (lock_prof_enable == 0 && lock_prof_resetting == 1)
614		goto out;
615	/*
616	 * If lock profiling is not enabled we still want to remove the
617	 * lpo from our queue.
618	 */
619	LIST_FOREACH(l, head, lpo_link)
620		if (l->lpo_obj == lo)
621			break;
622	if (l == NULL)
623		goto out;
624	if (--l->lpo_ref > 0)
625		goto out;
626	lp = lock_profile_lookup(lo, spin, l->lpo_file, l->lpo_line);
627	if (lp == NULL)
628		goto release;
629	curtime = nanoseconds();
630	if (curtime < l->lpo_acqtime)
631		goto release;
632	holdtime = curtime - l->lpo_acqtime;
633
634	/*
635	 * Record if the lock has been held longer now than ever
636	 * before.
637	 */
638	if (holdtime > lp->cnt_max)
639		lp->cnt_max = holdtime;
640	if (l->lpo_waittime > lp->cnt_wait_max)
641		lp->cnt_wait_max = l->lpo_waittime;
642	lp->cnt_tot += holdtime;
643	lp->cnt_wait += l->lpo_waittime;
644	lp->cnt_contest_locking += l->lpo_contest_locking;
645	lp->cnt_cur += l->lpo_cnt;
646release:
647	LIST_REMOVE(l, lpo_link);
648	type = &lp_cpu[PCPU_GET(cpuid)]->lpc_types[spin];
649	LIST_INSERT_HEAD(&type->lpt_lpoalloc, l, lpo_link);
650out:
651	critical_exit();
652}
653
654SYSCTL_NODE(_debug, OID_AUTO, lock, CTLFLAG_RD, NULL, "lock debugging");
655SYSCTL_NODE(_debug_lock, OID_AUTO, prof, CTLFLAG_RD, NULL, "lock profiling");
656SYSCTL_INT(_debug_lock_prof, OID_AUTO, skipspin, CTLFLAG_RW,
657    &lock_prof_skipspin, 0, "Skip profiling on spinlocks.");
658SYSCTL_INT(_debug_lock_prof, OID_AUTO, skipcount, CTLFLAG_RW,
659    &lock_prof_skipcount, 0, "Sample approximately every N lock acquisitions.");
660SYSCTL_INT(_debug_lock_prof, OID_AUTO, rejected, CTLFLAG_RD,
661    &lock_prof_rejected, 0, "Number of rejected profiling records");
662SYSCTL_PROC(_debug_lock_prof, OID_AUTO, stats, CTLTYPE_STRING | CTLFLAG_RD,
663    NULL, 0, dump_lock_prof_stats, "A", "Lock profiling statistics");
664SYSCTL_PROC(_debug_lock_prof, OID_AUTO, reset, CTLTYPE_INT | CTLFLAG_RW,
665    NULL, 0, reset_lock_prof_stats, "I", "Reset lock profiling statistics");
666SYSCTL_PROC(_debug_lock_prof, OID_AUTO, enable, CTLTYPE_INT | CTLFLAG_RW,
667    NULL, 0, enable_lock_prof, "I", "Enable lock profiling");
668
669#endif
670