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subr_lockdebug.c revision 1.52.2.2
      1  1.52.2.2     skrll /*	$NetBSD: subr_lockdebug.c,v 1.52.2.2 2015/12/27 12:10:05 skrll Exp $	*/
      2       1.2        ad 
      3       1.2        ad /*-
      4      1.28        ad  * Copyright (c) 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.2        ad  * All rights reserved.
      6       1.2        ad  *
      7       1.2        ad  * This code is derived from software contributed to The NetBSD Foundation
      8       1.2        ad  * by Andrew Doran.
      9       1.2        ad  *
     10       1.2        ad  * Redistribution and use in source and binary forms, with or without
     11       1.2        ad  * modification, are permitted provided that the following conditions
     12       1.2        ad  * are met:
     13       1.2        ad  * 1. Redistributions of source code must retain the above copyright
     14       1.2        ad  *    notice, this list of conditions and the following disclaimer.
     15       1.2        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.2        ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.2        ad  *    documentation and/or other materials provided with the distribution.
     18       1.2        ad  *
     19       1.2        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.2        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.2        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.2        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.2        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.2        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.2        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.2        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.2        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.2        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.2        ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.2        ad  */
     31       1.2        ad 
     32       1.2        ad /*
     33      1.11        ad  * Basic lock debugging code shared among lock primitives.
     34       1.2        ad  */
     35       1.2        ad 
     36       1.9       dsl #include <sys/cdefs.h>
     37  1.52.2.2     skrll __KERNEL_RCSID(0, "$NetBSD: subr_lockdebug.c,v 1.52.2.2 2015/12/27 12:10:05 skrll Exp $");
     38       1.9       dsl 
     39  1.52.2.2     skrll #ifdef _KERNEL_OPT
     40       1.2        ad #include "opt_ddb.h"
     41  1.52.2.2     skrll #endif
     42       1.2        ad 
     43       1.2        ad #include <sys/param.h>
     44       1.2        ad #include <sys/proc.h>
     45       1.2        ad #include <sys/systm.h>
     46      1.10        ad #include <sys/kernel.h>
     47       1.2        ad #include <sys/kmem.h>
     48       1.2        ad #include <sys/lockdebug.h>
     49       1.2        ad #include <sys/sleepq.h>
     50      1.10        ad #include <sys/cpu.h>
     51      1.22        ad #include <sys/atomic.h>
     52      1.26        ad #include <sys/lock.h>
     53      1.43      matt #include <sys/rbtree.h>
     54      1.16      yamt 
     55      1.25        ad #include <machine/lock.h>
     56      1.25        ad 
     57      1.28        ad unsigned int		ld_panic;
     58      1.28        ad 
     59       1.2        ad #ifdef LOCKDEBUG
     60       1.2        ad 
     61       1.2        ad #define	LD_BATCH_SHIFT	9
     62       1.2        ad #define	LD_BATCH	(1 << LD_BATCH_SHIFT)
     63       1.2        ad #define	LD_BATCH_MASK	(LD_BATCH - 1)
     64       1.2        ad #define	LD_MAX_LOCKS	1048576
     65       1.2        ad #define	LD_SLOP		16
     66       1.2        ad 
     67       1.2        ad #define	LD_LOCKED	0x01
     68       1.2        ad #define	LD_SLEEPER	0x02
     69       1.2        ad 
     70      1.23        ad #define	LD_WRITE_LOCK	0x80000000
     71      1.23        ad 
     72       1.2        ad typedef struct lockdebug {
     73      1.42     rmind 	struct rb_node	ld_rb_node;
     74      1.34        ad 	__cpu_simple_lock_t ld_spinlock;
     75       1.2        ad 	_TAILQ_ENTRY(struct lockdebug, volatile) ld_chain;
     76       1.2        ad 	_TAILQ_ENTRY(struct lockdebug, volatile) ld_achain;
     77       1.2        ad 	volatile void	*ld_lock;
     78       1.2        ad 	lockops_t	*ld_lockops;
     79       1.2        ad 	struct lwp	*ld_lwp;
     80       1.2        ad 	uintptr_t	ld_locked;
     81       1.2        ad 	uintptr_t	ld_unlocked;
     82      1.10        ad 	uintptr_t	ld_initaddr;
     83       1.2        ad 	uint16_t	ld_shares;
     84       1.2        ad 	uint16_t	ld_cpu;
     85       1.2        ad 	uint8_t		ld_flags;
     86       1.2        ad 	uint8_t		ld_shwant;	/* advisory */
     87       1.2        ad 	uint8_t		ld_exwant;	/* advisory */
     88       1.2        ad 	uint8_t		ld_unused;
     89       1.2        ad } volatile lockdebug_t;
     90       1.2        ad 
     91       1.2        ad typedef _TAILQ_HEAD(lockdebuglist, struct lockdebug, volatile) lockdebuglist_t;
     92       1.2        ad 
     93      1.34        ad __cpu_simple_lock_t	ld_mod_lk;
     94      1.13      matt lockdebuglist_t		ld_free = TAILQ_HEAD_INITIALIZER(ld_free);
     95      1.13      matt lockdebuglist_t		ld_all = TAILQ_HEAD_INITIALIZER(ld_all);
     96       1.2        ad int			ld_nfree;
     97       1.2        ad int			ld_freeptr;
     98       1.2        ad int			ld_recurse;
     99       1.5        ad bool			ld_nomore;
    100       1.2        ad lockdebug_t		ld_prime[LD_BATCH];
    101       1.2        ad 
    102      1.34        ad static void	lockdebug_abort1(lockdebug_t *, int, const char *,
    103      1.34        ad 				 const char *, bool);
    104      1.34        ad static int	lockdebug_more(int);
    105       1.5        ad static void	lockdebug_init(void);
    106      1.52  christos static void	lockdebug_dump(lockdebug_t *, void (*)(const char *, ...)
    107      1.52  christos     __printflike(1, 2));
    108       1.2        ad 
    109      1.16      yamt static signed int
    110      1.42     rmind ld_rbto_compare_nodes(void *ctx, const void *n1, const void *n2)
    111      1.16      yamt {
    112      1.42     rmind 	const lockdebug_t *ld1 = n1;
    113      1.42     rmind 	const lockdebug_t *ld2 = n2;
    114      1.20      yamt 	const uintptr_t a = (uintptr_t)ld1->ld_lock;
    115      1.20      yamt 	const uintptr_t b = (uintptr_t)ld2->ld_lock;
    116      1.20      yamt 
    117      1.20      yamt 	if (a < b)
    118      1.42     rmind 		return -1;
    119      1.42     rmind 	if (a > b)
    120      1.20      yamt 		return 1;
    121      1.16      yamt 	return 0;
    122      1.16      yamt }
    123      1.16      yamt 
    124      1.16      yamt static signed int
    125      1.42     rmind ld_rbto_compare_key(void *ctx, const void *n, const void *key)
    126      1.16      yamt {
    127      1.42     rmind 	const lockdebug_t *ld = n;
    128      1.20      yamt 	const uintptr_t a = (uintptr_t)ld->ld_lock;
    129      1.20      yamt 	const uintptr_t b = (uintptr_t)key;
    130      1.20      yamt 
    131      1.20      yamt 	if (a < b)
    132      1.42     rmind 		return -1;
    133      1.42     rmind 	if (a > b)
    134      1.20      yamt 		return 1;
    135      1.16      yamt 	return 0;
    136      1.16      yamt }
    137      1.16      yamt 
    138      1.42     rmind static rb_tree_t ld_rb_tree;
    139      1.16      yamt 
    140      1.42     rmind static const rb_tree_ops_t ld_rb_tree_ops = {
    141      1.37      matt 	.rbto_compare_nodes = ld_rbto_compare_nodes,
    142      1.37      matt 	.rbto_compare_key = ld_rbto_compare_key,
    143      1.42     rmind 	.rbto_node_offset = offsetof(lockdebug_t, ld_rb_node),
    144      1.42     rmind 	.rbto_context = NULL
    145      1.16      yamt };
    146      1.16      yamt 
    147      1.34        ad static inline lockdebug_t *
    148      1.34        ad lockdebug_lookup1(volatile void *lock)
    149      1.23        ad {
    150      1.34        ad 	lockdebug_t *ld;
    151      1.34        ad 	struct cpu_info *ci;
    152      1.23        ad 
    153      1.34        ad 	ci = curcpu();
    154      1.34        ad 	__cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
    155      1.34        ad 	ld = (lockdebug_t *)rb_tree_find_node(&ld_rb_tree, __UNVOLATILE(lock));
    156      1.34        ad 	__cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
    157      1.34        ad 	if (ld == NULL) {
    158      1.34        ad 		return NULL;
    159      1.34        ad 	}
    160      1.34        ad 	__cpu_simple_lock(&ld->ld_spinlock);
    161      1.23        ad 
    162      1.34        ad 	return ld;
    163       1.2        ad }
    164       1.2        ad 
    165      1.23        ad static void
    166      1.34        ad lockdebug_lock_cpus(void)
    167       1.2        ad {
    168      1.34        ad 	CPU_INFO_ITERATOR cii;
    169      1.34        ad 	struct cpu_info *ci;
    170       1.2        ad 
    171      1.34        ad 	for (CPU_INFO_FOREACH(cii, ci)) {
    172      1.34        ad 		__cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
    173      1.34        ad 	}
    174      1.23        ad }
    175      1.23        ad 
    176      1.23        ad static void
    177      1.34        ad lockdebug_unlock_cpus(void)
    178      1.23        ad {
    179      1.34        ad 	CPU_INFO_ITERATOR cii;
    180      1.34        ad 	struct cpu_info *ci;
    181      1.23        ad 
    182      1.34        ad 	for (CPU_INFO_FOREACH(cii, ci)) {
    183      1.34        ad 		__cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
    184      1.34        ad 	}
    185       1.2        ad }
    186       1.2        ad 
    187       1.2        ad /*
    188      1.19      yamt  * lockdebug_lookup:
    189      1.19      yamt  *
    190      1.19      yamt  *	Find a lockdebug structure by a pointer to a lock and return it locked.
    191      1.19      yamt  */
    192      1.19      yamt static inline lockdebug_t *
    193      1.38     rafal lockdebug_lookup(volatile void *lock, uintptr_t where)
    194      1.19      yamt {
    195      1.19      yamt 	lockdebug_t *ld;
    196      1.19      yamt 
    197      1.34        ad 	ld = lockdebug_lookup1(lock);
    198      1.42     rmind 	if (ld == NULL) {
    199      1.42     rmind 		panic("lockdebug_lookup: uninitialized lock "
    200      1.42     rmind 		    "(lock=%p, from=%08"PRIxPTR")", lock, where);
    201      1.42     rmind 	}
    202      1.19      yamt 	return ld;
    203      1.19      yamt }
    204      1.19      yamt 
    205      1.19      yamt /*
    206       1.2        ad  * lockdebug_init:
    207       1.2        ad  *
    208       1.2        ad  *	Initialize the lockdebug system.  Allocate an initial pool of
    209       1.2        ad  *	lockdebug structures before the VM system is up and running.
    210       1.2        ad  */
    211       1.5        ad static void
    212       1.2        ad lockdebug_init(void)
    213       1.2        ad {
    214       1.2        ad 	lockdebug_t *ld;
    215       1.2        ad 	int i;
    216       1.2        ad 
    217      1.34        ad 	TAILQ_INIT(&curcpu()->ci_data.cpu_ld_locks);
    218      1.34        ad 	TAILQ_INIT(&curlwp->l_ld_locks);
    219      1.34        ad 	__cpu_simple_lock_init(&curcpu()->ci_data.cpu_ld_lock);
    220      1.34        ad 	__cpu_simple_lock_init(&ld_mod_lk);
    221      1.15      matt 
    222      1.16      yamt 	rb_tree_init(&ld_rb_tree, &ld_rb_tree_ops);
    223      1.16      yamt 
    224       1.2        ad 	ld = ld_prime;
    225       1.2        ad 	for (i = 1, ld++; i < LD_BATCH; i++, ld++) {
    226      1.34        ad 		__cpu_simple_lock_init(&ld->ld_spinlock);
    227       1.2        ad 		TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
    228       1.2        ad 		TAILQ_INSERT_TAIL(&ld_all, ld, ld_achain);
    229       1.2        ad 	}
    230       1.2        ad 	ld_freeptr = 1;
    231       1.2        ad 	ld_nfree = LD_BATCH - 1;
    232       1.2        ad }
    233       1.2        ad 
    234       1.2        ad /*
    235       1.2        ad  * lockdebug_alloc:
    236       1.2        ad  *
    237       1.2        ad  *	A lock is being initialized, so allocate an associated debug
    238       1.2        ad  *	structure.
    239       1.2        ad  */
    240      1.16      yamt bool
    241      1.10        ad lockdebug_alloc(volatile void *lock, lockops_t *lo, uintptr_t initaddr)
    242       1.2        ad {
    243       1.2        ad 	struct cpu_info *ci;
    244       1.2        ad 	lockdebug_t *ld;
    245      1.34        ad 	int s;
    246       1.2        ad 
    247      1.27        ad 	if (lo == NULL || panicstr != NULL || ld_panic)
    248      1.16      yamt 		return false;
    249       1.5        ad 	if (ld_freeptr == 0)
    250       1.5        ad 		lockdebug_init();
    251       1.2        ad 
    252      1.34        ad 	s = splhigh();
    253      1.34        ad 	__cpu_simple_lock(&ld_mod_lk);
    254      1.34        ad 	if ((ld = lockdebug_lookup1(lock)) != NULL) {
    255      1.34        ad 		__cpu_simple_unlock(&ld_mod_lk);
    256      1.34        ad 		lockdebug_abort1(ld, s, __func__, "already initialized", true);
    257      1.27        ad 		return false;
    258      1.19      yamt 	}
    259      1.19      yamt 
    260       1.2        ad 	/*
    261       1.2        ad 	 * Pinch a new debug structure.  We may recurse because we call
    262       1.2        ad 	 * kmem_alloc(), which may need to initialize new locks somewhere
    263       1.7     skrll 	 * down the path.  If not recursing, we try to maintain at least
    264       1.2        ad 	 * LD_SLOP structures free, which should hopefully be enough to
    265       1.2        ad 	 * satisfy kmem_alloc().  If we can't provide a structure, not to
    266       1.2        ad 	 * worry: we'll just mark the lock as not having an ID.
    267       1.2        ad 	 */
    268      1.23        ad 	ci = curcpu();
    269       1.2        ad 	ci->ci_lkdebug_recurse++;
    270       1.2        ad 	if (TAILQ_EMPTY(&ld_free)) {
    271       1.5        ad 		if (ci->ci_lkdebug_recurse > 1 || ld_nomore) {
    272       1.2        ad 			ci->ci_lkdebug_recurse--;
    273      1.34        ad 			__cpu_simple_unlock(&ld_mod_lk);
    274      1.34        ad 			splx(s);
    275      1.16      yamt 			return false;
    276       1.2        ad 		}
    277      1.34        ad 		s = lockdebug_more(s);
    278      1.34        ad 	} else if (ci->ci_lkdebug_recurse == 1 && ld_nfree < LD_SLOP) {
    279      1.34        ad 		s = lockdebug_more(s);
    280      1.34        ad 	}
    281       1.2        ad 	if ((ld = TAILQ_FIRST(&ld_free)) == NULL) {
    282      1.34        ad 		__cpu_simple_unlock(&ld_mod_lk);
    283      1.34        ad 		splx(s);
    284      1.16      yamt 		return false;
    285       1.2        ad 	}
    286       1.2        ad 	TAILQ_REMOVE(&ld_free, ld, ld_chain);
    287       1.2        ad 	ld_nfree--;
    288       1.2        ad 	ci->ci_lkdebug_recurse--;
    289       1.2        ad 
    290      1.34        ad 	if (ld->ld_lock != NULL) {
    291      1.51      matt 		panic("lockdebug_alloc: corrupt table ld %p", ld);
    292      1.34        ad 	}
    293       1.2        ad 
    294       1.2        ad 	/* Initialise the structure. */
    295       1.2        ad 	ld->ld_lock = lock;
    296       1.2        ad 	ld->ld_lockops = lo;
    297       1.2        ad 	ld->ld_locked = 0;
    298       1.2        ad 	ld->ld_unlocked = 0;
    299       1.2        ad 	ld->ld_lwp = NULL;
    300      1.10        ad 	ld->ld_initaddr = initaddr;
    301      1.35        ad 	ld->ld_flags = (lo->lo_type == LOCKOPS_SLEEP ? LD_SLEEPER : 0);
    302      1.34        ad 	lockdebug_lock_cpus();
    303      1.42     rmind 	(void)rb_tree_insert_node(&ld_rb_tree, __UNVOLATILE(ld));
    304      1.34        ad 	lockdebug_unlock_cpus();
    305      1.34        ad 	__cpu_simple_unlock(&ld_mod_lk);
    306       1.2        ad 
    307      1.34        ad 	splx(s);
    308      1.16      yamt 	return true;
    309       1.2        ad }
    310       1.2        ad 
    311       1.2        ad /*
    312       1.2        ad  * lockdebug_free:
    313       1.2        ad  *
    314       1.2        ad  *	A lock is being destroyed, so release debugging resources.
    315       1.2        ad  */
    316       1.2        ad void
    317      1.16      yamt lockdebug_free(volatile void *lock)
    318       1.2        ad {
    319       1.2        ad 	lockdebug_t *ld;
    320      1.34        ad 	int s;
    321       1.2        ad 
    322      1.27        ad 	if (panicstr != NULL || ld_panic)
    323       1.2        ad 		return;
    324       1.2        ad 
    325      1.34        ad 	s = splhigh();
    326      1.34        ad 	__cpu_simple_lock(&ld_mod_lk);
    327      1.38     rafal 	ld = lockdebug_lookup(lock, (uintptr_t) __builtin_return_address(0));
    328      1.16      yamt 	if (ld == NULL) {
    329      1.34        ad 		__cpu_simple_unlock(&ld_mod_lk);
    330      1.35        ad 		panic("lockdebug_free: destroying uninitialized object %p"
    331      1.16      yamt 		    "(ld_lock=%p)", lock, ld->ld_lock);
    332      1.27        ad 		return;
    333       1.2        ad 	}
    334      1.27        ad 	if ((ld->ld_flags & LD_LOCKED) != 0 || ld->ld_shares != 0) {
    335      1.34        ad 		__cpu_simple_unlock(&ld_mod_lk);
    336      1.35        ad 		lockdebug_abort1(ld, s, __func__, "is locked or in use", true);
    337      1.27        ad 		return;
    338      1.27        ad 	}
    339      1.34        ad 	lockdebug_lock_cpus();
    340      1.42     rmind 	rb_tree_remove_node(&ld_rb_tree, __UNVOLATILE(ld));
    341      1.34        ad 	lockdebug_unlock_cpus();
    342       1.2        ad 	ld->ld_lock = NULL;
    343       1.2        ad 	TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
    344       1.2        ad 	ld_nfree++;
    345      1.34        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    346      1.34        ad 	__cpu_simple_unlock(&ld_mod_lk);
    347      1.34        ad 	splx(s);
    348       1.2        ad }
    349       1.2        ad 
    350       1.2        ad /*
    351       1.2        ad  * lockdebug_more:
    352       1.2        ad  *
    353       1.2        ad  *	Allocate a batch of debug structures and add to the free list.
    354      1.34        ad  *	Must be called with ld_mod_lk held.
    355       1.2        ad  */
    356      1.34        ad static int
    357      1.34        ad lockdebug_more(int s)
    358       1.2        ad {
    359       1.2        ad 	lockdebug_t *ld;
    360       1.2        ad 	void *block;
    361       1.5        ad 	int i, base, m;
    362       1.2        ad 
    363      1.35        ad 	/*
    364      1.35        ad 	 * Can't call kmem_alloc() if in interrupt context.  XXX We could
    365      1.35        ad 	 * deadlock, because we don't know which locks the caller holds.
    366      1.35        ad 	 */
    367      1.35        ad 	if (cpu_intr_p() || (curlwp->l_pflag & LP_INTR) != 0) {
    368      1.35        ad 		return s;
    369      1.35        ad 	}
    370      1.35        ad 
    371       1.2        ad 	while (ld_nfree < LD_SLOP) {
    372      1.34        ad 		__cpu_simple_unlock(&ld_mod_lk);
    373      1.34        ad 		splx(s);
    374       1.2        ad 		block = kmem_zalloc(LD_BATCH * sizeof(lockdebug_t), KM_SLEEP);
    375      1.34        ad 		s = splhigh();
    376      1.34        ad 		__cpu_simple_lock(&ld_mod_lk);
    377       1.2        ad 
    378       1.2        ad 		if (block == NULL)
    379      1.34        ad 			return s;
    380       1.2        ad 
    381       1.2        ad 		if (ld_nfree > LD_SLOP) {
    382       1.2        ad 			/* Somebody beat us to it. */
    383      1.34        ad 			__cpu_simple_unlock(&ld_mod_lk);
    384      1.34        ad 			splx(s);
    385       1.2        ad 			kmem_free(block, LD_BATCH * sizeof(lockdebug_t));
    386      1.34        ad 			s = splhigh();
    387      1.34        ad 			__cpu_simple_lock(&ld_mod_lk);
    388       1.2        ad 			continue;
    389       1.2        ad 		}
    390       1.2        ad 
    391       1.2        ad 		base = ld_freeptr;
    392       1.2        ad 		ld_nfree += LD_BATCH;
    393       1.2        ad 		ld = block;
    394       1.2        ad 		base <<= LD_BATCH_SHIFT;
    395       1.5        ad 		m = min(LD_MAX_LOCKS, base + LD_BATCH);
    396       1.5        ad 
    397       1.5        ad 		if (m == LD_MAX_LOCKS)
    398       1.5        ad 			ld_nomore = true;
    399       1.2        ad 
    400       1.5        ad 		for (i = base; i < m; i++, ld++) {
    401      1.34        ad 			__cpu_simple_lock_init(&ld->ld_spinlock);
    402       1.2        ad 			TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
    403       1.2        ad 			TAILQ_INSERT_TAIL(&ld_all, ld, ld_achain);
    404       1.2        ad 		}
    405       1.2        ad 
    406      1.22        ad 		membar_producer();
    407       1.2        ad 	}
    408      1.34        ad 
    409      1.34        ad 	return s;
    410       1.2        ad }
    411       1.2        ad 
    412       1.2        ad /*
    413       1.2        ad  * lockdebug_wantlock:
    414       1.2        ad  *
    415       1.2        ad  *	Process the preamble to a lock acquire.
    416       1.2        ad  */
    417       1.2        ad void
    418      1.49   mlelstv lockdebug_wantlock(volatile void *lock, uintptr_t where, int shared)
    419       1.2        ad {
    420       1.2        ad 	struct lwp *l = curlwp;
    421       1.2        ad 	lockdebug_t *ld;
    422       1.3   thorpej 	bool recurse;
    423      1.34        ad 	int s;
    424       1.2        ad 
    425       1.2        ad 	(void)shared;
    426       1.4   thorpej 	recurse = false;
    427       1.2        ad 
    428      1.27        ad 	if (panicstr != NULL || ld_panic)
    429       1.2        ad 		return;
    430       1.2        ad 
    431      1.34        ad 	s = splhigh();
    432      1.38     rafal 	if ((ld = lockdebug_lookup(lock, where)) == NULL) {
    433      1.34        ad 		splx(s);
    434       1.2        ad 		return;
    435      1.34        ad 	}
    436      1.32      yamt 	if ((ld->ld_flags & LD_LOCKED) != 0 || ld->ld_shares != 0) {
    437       1.2        ad 		if ((ld->ld_flags & LD_SLEEPER) != 0) {
    438      1.49   mlelstv 			if (ld->ld_lwp == l)
    439       1.4   thorpej 				recurse = true;
    440      1.40     rmind 		} else if (ld->ld_cpu == (uint16_t)cpu_index(curcpu()))
    441       1.4   thorpej 			recurse = true;
    442       1.2        ad 	}
    443      1.10        ad 	if (cpu_intr_p()) {
    444      1.27        ad 		if ((ld->ld_flags & LD_SLEEPER) != 0) {
    445      1.34        ad 			lockdebug_abort1(ld, s, __func__,
    446      1.10        ad 			    "acquiring sleep lock from interrupt context",
    447      1.10        ad 			    true);
    448      1.27        ad 			return;
    449      1.27        ad 		}
    450      1.10        ad 	}
    451       1.2        ad 	if (shared)
    452       1.2        ad 		ld->ld_shwant++;
    453       1.2        ad 	else
    454       1.2        ad 		ld->ld_exwant++;
    455      1.27        ad 	if (recurse) {
    456      1.34        ad 		lockdebug_abort1(ld, s, __func__, "locking against myself",
    457      1.10        ad 		    true);
    458      1.27        ad 		return;
    459      1.27        ad 	}
    460      1.34        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    461      1.34        ad 	splx(s);
    462       1.2        ad }
    463       1.2        ad 
    464       1.2        ad /*
    465       1.2        ad  * lockdebug_locked:
    466       1.2        ad  *
    467       1.2        ad  *	Process a lock acquire operation.
    468       1.2        ad  */
    469       1.2        ad void
    470      1.35        ad lockdebug_locked(volatile void *lock, void *cvlock, uintptr_t where,
    471      1.35        ad 		 int shared)
    472       1.2        ad {
    473       1.2        ad 	struct lwp *l = curlwp;
    474       1.2        ad 	lockdebug_t *ld;
    475      1.34        ad 	int s;
    476       1.2        ad 
    477      1.27        ad 	if (panicstr != NULL || ld_panic)
    478       1.2        ad 		return;
    479       1.2        ad 
    480      1.34        ad 	s = splhigh();
    481      1.38     rafal 	if ((ld = lockdebug_lookup(lock, where)) == NULL) {
    482      1.34        ad 		splx(s);
    483       1.2        ad 		return;
    484      1.34        ad 	}
    485      1.35        ad 	if (cvlock) {
    486      1.35        ad 		KASSERT(ld->ld_lockops->lo_type == LOCKOPS_CV);
    487      1.35        ad 		if (lock == (void *)&lbolt) {
    488      1.35        ad 			/* nothing */
    489      1.35        ad 		} else if (ld->ld_shares++ == 0) {
    490      1.35        ad 			ld->ld_locked = (uintptr_t)cvlock;
    491      1.35        ad 		} else if (cvlock != (void *)ld->ld_locked) {
    492      1.35        ad 			lockdebug_abort1(ld, s, __func__, "multiple locks used"
    493      1.35        ad 			    " with condition variable", true);
    494      1.35        ad 			return;
    495      1.35        ad 		}
    496      1.35        ad 	} else if (shared) {
    497       1.2        ad 		l->l_shlocks++;
    498      1.45      yamt 		ld->ld_locked = where;
    499       1.2        ad 		ld->ld_shares++;
    500       1.2        ad 		ld->ld_shwant--;
    501       1.2        ad 	} else {
    502      1.27        ad 		if ((ld->ld_flags & LD_LOCKED) != 0) {
    503      1.34        ad 			lockdebug_abort1(ld, s, __func__, "already locked",
    504      1.34        ad 			    true);
    505      1.27        ad 			return;
    506      1.27        ad 		}
    507       1.2        ad 		ld->ld_flags |= LD_LOCKED;
    508       1.2        ad 		ld->ld_locked = where;
    509       1.2        ad 		ld->ld_exwant--;
    510       1.2        ad 		if ((ld->ld_flags & LD_SLEEPER) != 0) {
    511      1.34        ad 			TAILQ_INSERT_TAIL(&l->l_ld_locks, ld, ld_chain);
    512       1.2        ad 		} else {
    513      1.34        ad 			TAILQ_INSERT_TAIL(&curcpu()->ci_data.cpu_ld_locks,
    514      1.34        ad 			    ld, ld_chain);
    515       1.2        ad 		}
    516       1.2        ad 	}
    517      1.40     rmind 	ld->ld_cpu = (uint16_t)cpu_index(curcpu());
    518      1.32      yamt 	ld->ld_lwp = l;
    519      1.34        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    520      1.34        ad 	splx(s);
    521       1.2        ad }
    522       1.2        ad 
    523       1.2        ad /*
    524       1.2        ad  * lockdebug_unlocked:
    525       1.2        ad  *
    526       1.2        ad  *	Process a lock release operation.
    527       1.2        ad  */
    528       1.2        ad void
    529      1.16      yamt lockdebug_unlocked(volatile void *lock, uintptr_t where, int shared)
    530       1.2        ad {
    531       1.2        ad 	struct lwp *l = curlwp;
    532       1.2        ad 	lockdebug_t *ld;
    533      1.34        ad 	int s;
    534       1.2        ad 
    535      1.27        ad 	if (panicstr != NULL || ld_panic)
    536       1.2        ad 		return;
    537       1.2        ad 
    538      1.34        ad 	s = splhigh();
    539      1.38     rafal 	if ((ld = lockdebug_lookup(lock, where)) == NULL) {
    540      1.34        ad 		splx(s);
    541       1.2        ad 		return;
    542      1.34        ad 	}
    543      1.35        ad 	if (ld->ld_lockops->lo_type == LOCKOPS_CV) {
    544      1.35        ad 		if (lock == (void *)&lbolt) {
    545      1.35        ad 			/* nothing */
    546      1.35        ad 		} else {
    547      1.35        ad 			ld->ld_shares--;
    548      1.35        ad 		}
    549      1.35        ad 	} else if (shared) {
    550      1.27        ad 		if (l->l_shlocks == 0) {
    551      1.34        ad 			lockdebug_abort1(ld, s, __func__,
    552      1.10        ad 			    "no shared locks held by LWP", true);
    553      1.27        ad 			return;
    554      1.27        ad 		}
    555      1.27        ad 		if (ld->ld_shares == 0) {
    556      1.34        ad 			lockdebug_abort1(ld, s, __func__,
    557      1.10        ad 			    "no shared holds on this lock", true);
    558      1.27        ad 			return;
    559      1.27        ad 		}
    560       1.2        ad 		l->l_shlocks--;
    561       1.2        ad 		ld->ld_shares--;
    562      1.45      yamt 		if (ld->ld_lwp == l) {
    563      1.45      yamt 			ld->ld_unlocked = where;
    564      1.32      yamt 			ld->ld_lwp = NULL;
    565      1.45      yamt 		}
    566      1.40     rmind 		if (ld->ld_cpu == (uint16_t)cpu_index(curcpu()))
    567      1.32      yamt 			ld->ld_cpu = (uint16_t)-1;
    568       1.2        ad 	} else {
    569      1.27        ad 		if ((ld->ld_flags & LD_LOCKED) == 0) {
    570      1.34        ad 			lockdebug_abort1(ld, s, __func__, "not locked", true);
    571      1.27        ad 			return;
    572      1.27        ad 		}
    573       1.2        ad 
    574       1.2        ad 		if ((ld->ld_flags & LD_SLEEPER) != 0) {
    575      1.27        ad 			if (ld->ld_lwp != curlwp) {
    576      1.34        ad 				lockdebug_abort1(ld, s, __func__,
    577      1.10        ad 				    "not held by current LWP", true);
    578      1.27        ad 				return;
    579      1.27        ad 			}
    580      1.34        ad 			TAILQ_REMOVE(&l->l_ld_locks, ld, ld_chain);
    581       1.2        ad 		} else {
    582      1.40     rmind 			if (ld->ld_cpu != (uint16_t)cpu_index(curcpu())) {
    583      1.34        ad 				lockdebug_abort1(ld, s, __func__,
    584      1.10        ad 				    "not held by current CPU", true);
    585      1.27        ad 				return;
    586      1.27        ad 			}
    587      1.34        ad 			TAILQ_REMOVE(&curcpu()->ci_data.cpu_ld_locks, ld,
    588      1.34        ad 			    ld_chain);
    589       1.2        ad 		}
    590      1.44      matt 		ld->ld_flags &= ~LD_LOCKED;
    591      1.44      matt 		ld->ld_unlocked = where;
    592      1.44      matt 		ld->ld_lwp = NULL;
    593       1.2        ad 	}
    594      1.34        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    595      1.34        ad 	splx(s);
    596       1.2        ad }
    597       1.2        ad 
    598       1.2        ad /*
    599      1.35        ad  * lockdebug_wakeup:
    600      1.35        ad  *
    601      1.35        ad  *	Process a wakeup on a condition variable.
    602      1.35        ad  */
    603      1.35        ad void
    604      1.35        ad lockdebug_wakeup(volatile void *lock, uintptr_t where)
    605      1.35        ad {
    606      1.35        ad 	lockdebug_t *ld;
    607      1.35        ad 	int s;
    608      1.35        ad 
    609      1.35        ad 	if (panicstr != NULL || ld_panic || lock == (void *)&lbolt)
    610      1.35        ad 		return;
    611      1.35        ad 
    612      1.35        ad 	s = splhigh();
    613      1.35        ad 	/* Find the CV... */
    614      1.38     rafal 	if ((ld = lockdebug_lookup(lock, where)) == NULL) {
    615      1.35        ad 		splx(s);
    616      1.35        ad 		return;
    617      1.35        ad 	}
    618      1.35        ad 	/*
    619      1.35        ad 	 * If it has any waiters, ensure that they are using the
    620      1.35        ad 	 * same interlock.
    621      1.35        ad 	 */
    622      1.35        ad 	if (ld->ld_shares != 0 && !mutex_owned((kmutex_t *)ld->ld_locked)) {
    623      1.35        ad 		lockdebug_abort1(ld, s, __func__, "interlocking mutex not "
    624      1.35        ad 		    "held during wakeup", true);
    625      1.35        ad 		return;
    626      1.35        ad 	}
    627      1.35        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    628      1.35        ad 	splx(s);
    629      1.35        ad }
    630      1.35        ad 
    631      1.35        ad /*
    632       1.2        ad  * lockdebug_barrier:
    633       1.2        ad  *
    634       1.2        ad  *	Panic if we hold more than one specified spin lock, and optionally,
    635       1.2        ad  *	if we hold sleep locks.
    636       1.2        ad  */
    637       1.2        ad void
    638       1.2        ad lockdebug_barrier(volatile void *spinlock, int slplocks)
    639       1.2        ad {
    640       1.2        ad 	struct lwp *l = curlwp;
    641       1.2        ad 	lockdebug_t *ld;
    642      1.34        ad 	int s;
    643       1.2        ad 
    644      1.27        ad 	if (panicstr != NULL || ld_panic)
    645       1.2        ad 		return;
    646       1.2        ad 
    647      1.34        ad 	s = splhigh();
    648      1.34        ad 	if ((l->l_pflag & LP_INTR) == 0) {
    649      1.34        ad 		TAILQ_FOREACH(ld, &curcpu()->ci_data.cpu_ld_locks, ld_chain) {
    650       1.2        ad 			if (ld->ld_lock == spinlock) {
    651       1.2        ad 				continue;
    652       1.2        ad 			}
    653      1.34        ad 			__cpu_simple_lock(&ld->ld_spinlock);
    654      1.34        ad 			lockdebug_abort1(ld, s, __func__,
    655      1.34        ad 			    "spin lock held", true);
    656      1.34        ad 			return;
    657       1.2        ad 		}
    658       1.2        ad 	}
    659      1.34        ad 	if (slplocks) {
    660      1.34        ad 		splx(s);
    661      1.34        ad 		return;
    662      1.34        ad 	}
    663      1.34        ad 	if ((ld = TAILQ_FIRST(&l->l_ld_locks)) != NULL) {
    664      1.34        ad 		__cpu_simple_lock(&ld->ld_spinlock);
    665      1.34        ad 		lockdebug_abort1(ld, s, __func__, "sleep lock held", true);
    666      1.34        ad 		return;
    667      1.34        ad 	}
    668      1.34        ad 	splx(s);
    669      1.34        ad 	if (l->l_shlocks != 0) {
    670      1.52  christos 		TAILQ_FOREACH(ld, &ld_all, ld_achain) {
    671      1.52  christos 			if (ld->ld_lockops->lo_type == LOCKOPS_CV)
    672      1.52  christos 				continue;
    673      1.52  christos 			if (ld->ld_lwp == l)
    674      1.52  christos 				lockdebug_dump(ld, printf);
    675      1.52  christos 		}
    676      1.52  christos 		panic("%s: holding %d shared locks", __func__, l->l_shlocks);
    677       1.2        ad 	}
    678       1.2        ad }
    679       1.2        ad 
    680       1.2        ad /*
    681      1.10        ad  * lockdebug_mem_check:
    682      1.10        ad  *
    683      1.10        ad  *	Check for in-use locks within a memory region that is
    684      1.16      yamt  *	being freed.
    685      1.10        ad  */
    686      1.10        ad void
    687      1.10        ad lockdebug_mem_check(const char *func, void *base, size_t sz)
    688      1.10        ad {
    689      1.16      yamt 	lockdebug_t *ld;
    690      1.34        ad 	struct cpu_info *ci;
    691      1.23        ad 	int s;
    692      1.10        ad 
    693      1.27        ad 	if (panicstr != NULL || ld_panic)
    694      1.24        ad 		return;
    695      1.24        ad 
    696      1.34        ad 	s = splhigh();
    697      1.34        ad 	ci = curcpu();
    698      1.34        ad 	__cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
    699      1.16      yamt 	ld = (lockdebug_t *)rb_tree_find_node_geq(&ld_rb_tree, base);
    700      1.23        ad 	if (ld != NULL) {
    701      1.23        ad 		const uintptr_t lock = (uintptr_t)ld->ld_lock;
    702      1.23        ad 
    703      1.23        ad 		if ((uintptr_t)base > lock)
    704      1.23        ad 			panic("%s: corrupt tree ld=%p, base=%p, sz=%zu",
    705      1.23        ad 			    __func__, ld, base, sz);
    706      1.23        ad 		if (lock >= (uintptr_t)base + sz)
    707      1.23        ad 			ld = NULL;
    708      1.23        ad 	}
    709      1.34        ad 	__cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
    710      1.34        ad 	if (ld != NULL) {
    711      1.34        ad 		__cpu_simple_lock(&ld->ld_spinlock);
    712      1.34        ad 		lockdebug_abort1(ld, s, func,
    713      1.34        ad 		    "allocation contains active lock", !cold);
    714      1.16      yamt 		return;
    715      1.34        ad 	}
    716      1.34        ad 	splx(s);
    717      1.10        ad }
    718      1.10        ad 
    719      1.10        ad /*
    720       1.2        ad  * lockdebug_dump:
    721       1.2        ad  *
    722       1.2        ad  *	Dump information about a lock on panic, or for DDB.
    723       1.2        ad  */
    724       1.2        ad static void
    725      1.47  christos lockdebug_dump(lockdebug_t *ld, void (*pr)(const char *, ...)
    726      1.47  christos     __printflike(1, 2))
    727       1.2        ad {
    728       1.2        ad 	int sleeper = (ld->ld_flags & LD_SLEEPER);
    729       1.2        ad 
    730       1.2        ad 	(*pr)(
    731       1.2        ad 	    "lock address : %#018lx type     : %18s\n"
    732      1.35        ad 	    "initialized  : %#018lx",
    733       1.2        ad 	    (long)ld->ld_lock, (sleeper ? "sleep/adaptive" : "spin"),
    734      1.10        ad 	    (long)ld->ld_initaddr);
    735       1.2        ad 
    736      1.35        ad 	if (ld->ld_lockops->lo_type == LOCKOPS_CV) {
    737      1.48     njoly 		(*pr)(" interlock: %#018lx\n", (long)ld->ld_locked);
    738      1.35        ad 	} else {
    739      1.35        ad 		(*pr)("\n"
    740      1.35        ad 		    "shared holds : %18u exclusive: %18u\n"
    741      1.35        ad 		    "shares wanted: %18u exclusive: %18u\n"
    742      1.35        ad 		    "current cpu  : %18u last held: %18u\n"
    743      1.35        ad 		    "current lwp  : %#018lx last held: %#018lx\n"
    744      1.44      matt 		    "last locked%c : %#018lx unlocked%c: %#018lx\n",
    745      1.35        ad 		    (unsigned)ld->ld_shares, ((ld->ld_flags & LD_LOCKED) != 0),
    746      1.35        ad 		    (unsigned)ld->ld_shwant, (unsigned)ld->ld_exwant,
    747      1.40     rmind 		    (unsigned)cpu_index(curcpu()), (unsigned)ld->ld_cpu,
    748      1.35        ad 		    (long)curlwp, (long)ld->ld_lwp,
    749      1.44      matt 		    ((ld->ld_flags & LD_LOCKED) ? '*' : ' '),
    750      1.44      matt 		    (long)ld->ld_locked,
    751      1.44      matt 		    ((ld->ld_flags & LD_LOCKED) ? ' ' : '*'),
    752      1.44      matt 		    (long)ld->ld_unlocked);
    753      1.35        ad 	}
    754      1.35        ad 
    755       1.2        ad 	if (ld->ld_lockops->lo_dump != NULL)
    756       1.2        ad 		(*ld->ld_lockops->lo_dump)(ld->ld_lock);
    757       1.2        ad 
    758       1.2        ad 	if (sleeper) {
    759       1.2        ad 		(*pr)("\n");
    760       1.2        ad 		turnstile_print(ld->ld_lock, pr);
    761       1.2        ad 	}
    762       1.2        ad }
    763       1.2        ad 
    764       1.2        ad /*
    765      1.27        ad  * lockdebug_abort1:
    766       1.2        ad  *
    767      1.27        ad  *	An error has been trapped - dump lock info and panic.
    768       1.2        ad  */
    769       1.5        ad static void
    770      1.34        ad lockdebug_abort1(lockdebug_t *ld, int s, const char *func,
    771      1.10        ad 		 const char *msg, bool dopanic)
    772       1.2        ad {
    773       1.2        ad 
    774      1.27        ad 	/*
    775      1.46  christos 	 * Don't make the situation worse if the system is already going
    776      1.27        ad 	 * down in flames.  Once a panic is triggered, lockdebug state
    777      1.27        ad 	 * becomes stale and cannot be trusted.
    778      1.27        ad 	 */
    779      1.27        ad 	if (atomic_inc_uint_nv(&ld_panic) != 1) {
    780      1.34        ad 		__cpu_simple_unlock(&ld->ld_spinlock);
    781      1.34        ad 		splx(s);
    782      1.27        ad 		return;
    783      1.27        ad 	}
    784      1.27        ad 
    785       1.2        ad 	printf_nolog("%s error: %s: %s\n\n", ld->ld_lockops->lo_name,
    786       1.2        ad 	    func, msg);
    787       1.2        ad 	lockdebug_dump(ld, printf_nolog);
    788      1.34        ad 	__cpu_simple_unlock(&ld->ld_spinlock);
    789      1.34        ad 	splx(s);
    790       1.2        ad 	printf_nolog("\n");
    791      1.10        ad 	if (dopanic)
    792      1.50  christos 		panic("LOCKDEBUG: %s error: %s: %s", ld->ld_lockops->lo_name,
    793      1.50  christos 		    func, msg);
    794       1.2        ad }
    795       1.2        ad 
    796       1.2        ad #endif	/* LOCKDEBUG */
    797       1.2        ad 
    798       1.2        ad /*
    799       1.2        ad  * lockdebug_lock_print:
    800       1.2        ad  *
    801       1.2        ad  *	Handle the DDB 'show lock' command.
    802       1.2        ad  */
    803       1.2        ad #ifdef DDB
    804       1.2        ad void
    805       1.2        ad lockdebug_lock_print(void *addr, void (*pr)(const char *, ...))
    806       1.2        ad {
    807       1.2        ad #ifdef LOCKDEBUG
    808       1.2        ad 	lockdebug_t *ld;
    809       1.2        ad 
    810       1.2        ad 	TAILQ_FOREACH(ld, &ld_all, ld_achain) {
    811      1.41    dyoung 		if (ld->ld_lock == NULL)
    812      1.41    dyoung 			continue;
    813      1.41    dyoung 		if (addr == NULL || ld->ld_lock == addr) {
    814       1.2        ad 			lockdebug_dump(ld, pr);
    815      1.41    dyoung 			if (addr != NULL)
    816      1.41    dyoung 				return;
    817       1.2        ad 		}
    818       1.2        ad 	}
    819      1.41    dyoung 	if (addr != NULL) {
    820      1.41    dyoung 		(*pr)("Sorry, no record of a lock with address %p found.\n",
    821      1.41    dyoung 		    addr);
    822      1.41    dyoung 	}
    823       1.2        ad #else
    824       1.2        ad 	(*pr)("Sorry, kernel not built with the LOCKDEBUG option.\n");
    825       1.2        ad #endif	/* LOCKDEBUG */
    826       1.2        ad }
    827       1.2        ad #endif	/* DDB */
    828       1.2        ad 
    829       1.2        ad /*
    830       1.2        ad  * lockdebug_abort:
    831       1.2        ad  *
    832       1.2        ad  *	An error has been trapped - dump lock info and call panic().
    833       1.2        ad  */
    834       1.2        ad void
    835      1.16      yamt lockdebug_abort(volatile void *lock, lockops_t *ops, const char *func,
    836      1.16      yamt 		const char *msg)
    837       1.2        ad {
    838       1.2        ad #ifdef LOCKDEBUG
    839       1.2        ad 	lockdebug_t *ld;
    840      1.34        ad 	int s;
    841       1.2        ad 
    842      1.34        ad 	s = splhigh();
    843      1.38     rafal 	if ((ld = lockdebug_lookup(lock,
    844      1.38     rafal 			(uintptr_t) __builtin_return_address(0))) != NULL) {
    845      1.34        ad 		lockdebug_abort1(ld, s, func, msg, true);
    846      1.34        ad 		return;
    847       1.2        ad 	}
    848      1.34        ad 	splx(s);
    849       1.2        ad #endif	/* LOCKDEBUG */
    850       1.2        ad 
    851      1.27        ad 	/*
    852      1.27        ad 	 * Complain first on the occurrance only.  Otherwise proceeed to
    853      1.27        ad 	 * panic where we will `rendezvous' with other CPUs if the machine
    854      1.27        ad 	 * is going down in flames.
    855      1.27        ad 	 */
    856      1.27        ad 	if (atomic_inc_uint_nv(&ld_panic) == 1) {
    857      1.27        ad 		printf_nolog("%s error: %s: %s\n\n"
    858      1.27        ad 		    "lock address : %#018lx\n"
    859      1.27        ad 		    "current cpu  : %18d\n"
    860      1.27        ad 		    "current lwp  : %#018lx\n",
    861      1.40     rmind 		    ops->lo_name, func, msg, (long)lock,
    862      1.40     rmind 		    (int)cpu_index(curcpu()), (long)curlwp);
    863      1.27        ad 		(*ops->lo_dump)(lock);
    864      1.27        ad 		printf_nolog("\n");
    865      1.27        ad 	}
    866       1.2        ad 
    867  1.52.2.1     skrll 	panic("lock error: %s: %s: %s: lock %p cpu %d lwp %p",
    868  1.52.2.1     skrll 	    ops->lo_name, func, msg, lock, cpu_index(curcpu()), curlwp);
    869       1.2        ad }
    870