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kern_lock.c revision 1.110.2.9
      1  1.110.2.9        ad /*	$NetBSD: kern_lock.c,v 1.110.2.9 2007/07/29 11:33:05 ad Exp $	*/
      2       1.19   thorpej 
      3       1.19   thorpej /*-
      4  1.110.2.2        ad  * Copyright (c) 1999, 2000, 2006, 2007 The NetBSD Foundation, Inc.
      5       1.19   thorpej  * All rights reserved.
      6       1.19   thorpej  *
      7       1.19   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8       1.19   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9      1.105        ad  * NASA Ames Research Center, and by Andrew Doran.
     10       1.19   thorpej  *
     11       1.19   thorpej  * This code is derived from software contributed to The NetBSD Foundation
     12       1.19   thorpej  * by Ross Harvey.
     13       1.19   thorpej  *
     14       1.19   thorpej  * Redistribution and use in source and binary forms, with or without
     15       1.19   thorpej  * modification, are permitted provided that the following conditions
     16       1.19   thorpej  * are met:
     17       1.19   thorpej  * 1. Redistributions of source code must retain the above copyright
     18       1.19   thorpej  *    notice, this list of conditions and the following disclaimer.
     19       1.19   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     20       1.19   thorpej  *    notice, this list of conditions and the following disclaimer in the
     21       1.19   thorpej  *    documentation and/or other materials provided with the distribution.
     22       1.19   thorpej  * 3. All advertising materials mentioning features or use of this software
     23       1.19   thorpej  *    must display the following acknowledgement:
     24       1.19   thorpej  *	This product includes software developed by the NetBSD
     25       1.19   thorpej  *	Foundation, Inc. and its contributors.
     26       1.19   thorpej  * 4. Neither the name of The NetBSD Foundation nor the names of its
     27       1.19   thorpej  *    contributors may be used to endorse or promote products derived
     28       1.19   thorpej  *    from this software without specific prior written permission.
     29       1.19   thorpej  *
     30       1.19   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     31       1.19   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     32       1.19   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     33       1.19   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     34       1.19   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     35       1.19   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     36       1.19   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     37       1.19   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     38       1.19   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     39       1.19   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     40       1.19   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     41       1.19   thorpej  */
     42        1.2      fvdl 
     43       1.86     perry /*
     44        1.1      fvdl  * Copyright (c) 1995
     45        1.1      fvdl  *	The Regents of the University of California.  All rights reserved.
     46        1.1      fvdl  *
     47        1.1      fvdl  * This code contains ideas from software contributed to Berkeley by
     48        1.1      fvdl  * Avadis Tevanian, Jr., Michael Wayne Young, and the Mach Operating
     49        1.1      fvdl  * System project at Carnegie-Mellon University.
     50        1.1      fvdl  *
     51        1.1      fvdl  * Redistribution and use in source and binary forms, with or without
     52        1.1      fvdl  * modification, are permitted provided that the following conditions
     53        1.1      fvdl  * are met:
     54        1.1      fvdl  * 1. Redistributions of source code must retain the above copyright
     55        1.1      fvdl  *    notice, this list of conditions and the following disclaimer.
     56        1.1      fvdl  * 2. Redistributions in binary form must reproduce the above copyright
     57        1.1      fvdl  *    notice, this list of conditions and the following disclaimer in the
     58        1.1      fvdl  *    documentation and/or other materials provided with the distribution.
     59       1.72       agc  * 3. Neither the name of the University nor the names of its contributors
     60        1.1      fvdl  *    may be used to endorse or promote products derived from this software
     61        1.1      fvdl  *    without specific prior written permission.
     62        1.1      fvdl  *
     63        1.1      fvdl  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     64        1.1      fvdl  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     65        1.1      fvdl  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     66        1.1      fvdl  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     67        1.1      fvdl  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     68        1.1      fvdl  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     69        1.1      fvdl  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     70        1.1      fvdl  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     71        1.1      fvdl  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     72        1.1      fvdl  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     73        1.1      fvdl  * SUCH DAMAGE.
     74        1.1      fvdl  *
     75        1.1      fvdl  *	@(#)kern_lock.c	8.18 (Berkeley) 5/21/95
     76        1.1      fvdl  */
     77       1.60     lukem 
     78       1.60     lukem #include <sys/cdefs.h>
     79  1.110.2.9        ad __KERNEL_RCSID(0, "$NetBSD: kern_lock.c,v 1.110.2.9 2007/07/29 11:33:05 ad Exp $");
     80        1.7   thorpej 
     81       1.21   thorpej #include "opt_multiprocessor.h"
     82       1.18       chs #include "opt_ddb.h"
     83        1.1      fvdl 
     84      1.105        ad #define	__MUTEX_PRIVATE
     85      1.105        ad 
     86        1.1      fvdl #include <sys/param.h>
     87        1.1      fvdl #include <sys/proc.h>
     88        1.1      fvdl #include <sys/lock.h>
     89        1.2      fvdl #include <sys/systm.h>
     90      1.105        ad #include <sys/lockdebug.h>
     91      1.105        ad 
     92        1.1      fvdl #include <machine/cpu.h>
     93      1.110  christos #include <machine/stdarg.h>
     94        1.1      fvdl 
     95       1.98        ad #include <dev/lockstat.h>
     96       1.98        ad 
     97       1.25   thorpej #if defined(LOCKDEBUG)
     98       1.25   thorpej #include <sys/syslog.h>
     99       1.25   thorpej /*
    100       1.25   thorpej  * note that stdarg.h and the ansi style va_start macro is used for both
    101       1.25   thorpej  * ansi and traditional c compiles.
    102       1.25   thorpej  * XXX: this requires that stdarg.h define: va_alist and va_dcl
    103       1.25   thorpej  */
    104       1.25   thorpej #include <machine/stdarg.h>
    105       1.25   thorpej 
    106       1.36   thorpej void	lock_printf(const char *fmt, ...)
    107       1.37       eeh     __attribute__((__format__(__printf__,1,2)));
    108       1.25   thorpej 
    109      1.105        ad static int acquire(volatile struct lock **, int *, int, int, int, uintptr_t);
    110       1.73      yamt 
    111       1.57  sommerfe int	lock_debug_syslog = 0;	/* defaults to printf, but can be patched */
    112       1.55   thorpej 
    113       1.55   thorpej #ifdef DDB
    114       1.55   thorpej #include <ddb/ddbvar.h>
    115       1.55   thorpej #include <machine/db_machdep.h>
    116       1.55   thorpej #include <ddb/db_command.h>
    117       1.55   thorpej #include <ddb/db_interface.h>
    118       1.55   thorpej #endif
    119       1.85      yamt #endif /* defined(LOCKDEBUG) */
    120       1.85      yamt 
    121       1.85      yamt #if defined(MULTIPROCESSOR)
    122      1.105        ad /*
    123      1.105        ad  * IPL_BIGLOCK: block IPLs which need to grab kernel_mutex.
    124      1.105        ad  * XXX IPL_VM or IPL_AUDIO should be enough.
    125      1.105        ad  */
    126      1.105        ad #if !defined(__HAVE_SPLBIGLOCK)
    127      1.105        ad #define	splbiglock	splclock
    128      1.105        ad #endif
    129      1.105        ad int kernel_lock_id;
    130       1.25   thorpej #endif
    131       1.25   thorpej 
    132  1.110.2.5        ad __cpu_simple_lock_t kernel_lock;
    133  1.110.2.5        ad 
    134        1.1      fvdl /*
    135        1.1      fvdl  * Locking primitives implementation.
    136       1.56       wiz  * Locks provide shared/exclusive synchronization.
    137        1.1      fvdl  */
    138        1.1      fvdl 
    139       1.21   thorpej #if defined(LOCKDEBUG) || defined(DIAGNOSTIC) /* { */
    140  1.110.2.1        ad #define	COUNT(lkp, l, cpu_id, x)	(l)->l_locks += (x)
    141        1.1      fvdl #else
    142       1.22    mellon #define COUNT(lkp, p, cpu_id, x)
    143       1.21   thorpej #endif /* LOCKDEBUG || DIAGNOSTIC */ /* } */
    144        1.1      fvdl 
    145       1.98        ad #define	RETURN_ADDRESS		((uintptr_t)__builtin_return_address(0))
    146       1.98        ad 
    147        1.1      fvdl /*
    148        1.1      fvdl  * Acquire a resource.
    149        1.1      fvdl  */
    150       1.73      yamt static int
    151       1.91     perry acquire(volatile struct lock **lkpp, int *s, int extflags,
    152      1.102      yamt     int drain, int wanted, uintptr_t ra)
    153       1.73      yamt {
    154       1.73      yamt 	int error;
    155       1.91     perry 	volatile struct lock *lkp = *lkpp;
    156       1.98        ad 	LOCKSTAT_TIMER(slptime);
    157      1.105        ad 	LOCKSTAT_FLAG(lsflag);
    158       1.73      yamt 
    159       1.73      yamt 	KASSERT(drain || (wanted & LK_WAIT_NONZERO) == 0);
    160       1.73      yamt 
    161  1.110.2.1        ad 	LOCKSTAT_ENTER(lsflag);
    162       1.73      yamt 
    163  1.110.2.1        ad 	for (error = 0; (lkp->lk_flags & wanted) != 0; ) {
    164  1.110.2.1        ad 		if (drain)
    165  1.110.2.1        ad 			lkp->lk_flags |= LK_WAITDRAIN;
    166  1.110.2.1        ad 		else {
    167       1.73      yamt 			lkp->lk_waitcount++;
    168       1.73      yamt 			lkp->lk_flags |= LK_WAIT_NONZERO;
    169       1.73      yamt 		}
    170  1.110.2.1        ad 		/* XXX Cast away volatile. */
    171  1.110.2.1        ad 		LOCKSTAT_START_TIMER(lsflag, slptime);
    172  1.110.2.1        ad 		error = mtsleep(drain ?
    173  1.110.2.1        ad 		    (volatile const void *)&lkp->lk_flags :
    174  1.110.2.1        ad 		    (volatile const void *)lkp, lkp->lk_prio,
    175  1.110.2.1        ad 		    lkp->lk_wmesg, lkp->lk_timo,
    176  1.110.2.1        ad 		    __UNVOLATILE(&lkp->lk_interlock));
    177  1.110.2.1        ad 		LOCKSTAT_STOP_TIMER(lsflag, slptime);
    178  1.110.2.1        ad 		LOCKSTAT_EVENT_RA(lsflag, (void *)(uintptr_t)lkp,
    179  1.110.2.1        ad 		    LB_LOCKMGR | LB_SLEEP1, 1, slptime, ra);
    180       1.73      yamt 		if (!drain) {
    181       1.73      yamt 			lkp->lk_waitcount--;
    182       1.73      yamt 			if (lkp->lk_waitcount == 0)
    183       1.73      yamt 				lkp->lk_flags &= ~LK_WAIT_NONZERO;
    184       1.73      yamt 		}
    185  1.110.2.1        ad 		if (error)
    186  1.110.2.1        ad 			break;
    187  1.110.2.1        ad 		if (extflags & LK_SLEEPFAIL) {
    188  1.110.2.1        ad 			error = ENOLCK;
    189  1.110.2.1        ad 			break;
    190  1.110.2.1        ad 		}
    191  1.110.2.1        ad 		if (lkp->lk_newlock != NULL) {
    192  1.110.2.1        ad 			mutex_enter(__UNVOLATILE
    193  1.110.2.1        ad 			    (&lkp->lk_newlock->lk_interlock));
    194  1.110.2.1        ad 			mutex_exit(__UNVOLATILE
    195  1.110.2.1        ad 			    (&lkp->lk_interlock));
    196  1.110.2.1        ad 			if (lkp->lk_waitcount == 0)
    197  1.110.2.1        ad 				wakeup(&lkp->lk_newlock);
    198  1.110.2.1        ad 			*lkpp = lkp = lkp->lk_newlock;
    199       1.73      yamt 		}
    200        1.1      fvdl 	}
    201        1.1      fvdl 
    202  1.110.2.1        ad 	LOCKSTAT_EXIT(lsflag);
    203  1.110.2.1        ad 
    204       1.73      yamt 	return error;
    205       1.73      yamt }
    206       1.73      yamt 
    207       1.69   thorpej #define	SETHOLDER(lkp, pid, lid, cpu_id)				\
    208       1.19   thorpej do {									\
    209  1.110.2.1        ad 	(lkp)->lk_lockholder = pid;					\
    210  1.110.2.1        ad 	(lkp)->lk_locklwp = lid;					\
    211       1.30   thorpej } while (/*CONSTCOND*/0)
    212       1.19   thorpej 
    213       1.69   thorpej #define	WEHOLDIT(lkp, pid, lid, cpu_id)					\
    214  1.110.2.1        ad 	 ((lkp)->lk_lockholder == (pid) && (lkp)->lk_locklwp == (lid))
    215       1.19   thorpej 
    216       1.23   thorpej #define	WAKEUP_WAITER(lkp)						\
    217       1.23   thorpej do {									\
    218  1.110.2.1        ad 	if (((lkp)->lk_flags & LK_WAIT_NONZERO) != 0) {			\
    219       1.87  christos 		wakeup((lkp));						\
    220       1.23   thorpej 	}								\
    221       1.30   thorpej } while (/*CONSTCOND*/0)
    222       1.23   thorpej 
    223       1.25   thorpej #if defined(LOCKDEBUG)
    224       1.25   thorpej /*
    225       1.25   thorpej  * Lock debug printing routine; can be configured to print to console
    226       1.25   thorpej  * or log to syslog.
    227       1.25   thorpej  */
    228       1.25   thorpej void
    229       1.25   thorpej lock_printf(const char *fmt, ...)
    230       1.25   thorpej {
    231       1.68        pk 	char b[150];
    232       1.25   thorpej 	va_list ap;
    233       1.25   thorpej 
    234       1.25   thorpej 	va_start(ap, fmt);
    235       1.25   thorpej 	if (lock_debug_syslog)
    236       1.25   thorpej 		vlog(LOG_DEBUG, fmt, ap);
    237       1.68        pk 	else {
    238       1.68        pk 		vsnprintf(b, sizeof(b), fmt, ap);
    239       1.68        pk 		printf_nolog("%s", b);
    240       1.68        pk 	}
    241       1.25   thorpej 	va_end(ap);
    242       1.25   thorpej }
    243       1.25   thorpej #endif /* LOCKDEBUG */
    244       1.25   thorpej 
    245      1.110  christos static void
    246      1.110  christos lockpanic(volatile struct lock *lkp, const char *fmt, ...)
    247      1.110  christos {
    248      1.110  christos 	char s[150], b[150];
    249      1.110  christos #ifdef LOCKDEBUG
    250      1.110  christos 	static const char *locktype[] = {
    251      1.110  christos 	    "*0*", "shared", "exclusive", "upgrade", "exclupgrade",
    252      1.110  christos 	    "downgrade", "release", "drain", "exclother", "*9*",
    253      1.110  christos 	    "*10*", "*11*", "*12*", "*13*", "*14*", "*15*"
    254      1.110  christos 	};
    255      1.110  christos #endif
    256      1.110  christos 
    257      1.110  christos 	va_list ap;
    258      1.110  christos 	va_start(ap, fmt);
    259      1.110  christos 	vsnprintf(s, sizeof(s), fmt, ap);
    260      1.110  christos 	va_end(ap);
    261      1.110  christos 	bitmask_snprintf(lkp->lk_flags, __LK_FLAG_BITS, b, sizeof(b));
    262      1.110  christos 	panic("%s ("
    263      1.110  christos #ifdef LOCKDEBUG
    264      1.110  christos 	    "type %s "
    265      1.110  christos #endif
    266      1.110  christos 	    "flags %s, sharecount %d, exclusivecount %d, "
    267      1.110  christos 	    "recurselevel %d, waitcount %d, wmesg %s"
    268      1.110  christos #ifdef LOCKDEBUG
    269      1.110  christos 	    ", lock_file %s, unlock_file %s, lock_line %d, unlock_line %d"
    270      1.110  christos #endif
    271      1.110  christos 	    ")\n",
    272      1.110  christos 	    s,
    273      1.110  christos #ifdef LOCKDEBUG
    274      1.110  christos 	    locktype[lkp->lk_flags & LK_TYPE_MASK],
    275      1.110  christos #endif
    276      1.110  christos 	    b, lkp->lk_sharecount, lkp->lk_exclusivecount,
    277      1.110  christos 	    lkp->lk_recurselevel, lkp->lk_waitcount, lkp->lk_wmesg
    278      1.110  christos #ifdef LOCKDEBUG
    279      1.110  christos 	    , lkp->lk_lock_file, lkp->lk_unlock_file, lkp->lk_lock_line,
    280      1.110  christos 	    lkp->lk_unlock_line
    281      1.110  christos #endif
    282      1.110  christos 	);
    283      1.110  christos }
    284      1.110  christos 
    285        1.1      fvdl /*
    286       1.78   hannken  * Transfer any waiting processes from one lock to another.
    287       1.78   hannken  */
    288       1.78   hannken void
    289       1.78   hannken transferlockers(struct lock *from, struct lock *to)
    290       1.78   hannken {
    291       1.78   hannken 
    292       1.78   hannken 	KASSERT(from != to);
    293       1.78   hannken 	KASSERT((from->lk_flags & LK_WAITDRAIN) == 0);
    294       1.78   hannken 	if (from->lk_waitcount == 0)
    295       1.78   hannken 		return;
    296       1.78   hannken 	from->lk_newlock = to;
    297       1.78   hannken 	wakeup((void *)from);
    298       1.78   hannken 	tsleep((void *)&from->lk_newlock, from->lk_prio, "lkxfer", 0);
    299       1.78   hannken 	from->lk_newlock = NULL;
    300       1.78   hannken 	from->lk_flags &= ~(LK_WANT_EXCL | LK_WANT_UPGRADE);
    301       1.78   hannken 	KASSERT(from->lk_waitcount == 0);
    302       1.78   hannken }
    303       1.78   hannken 
    304       1.78   hannken 
    305       1.78   hannken /*
    306        1.1      fvdl  * Initialize a lock; required before use.
    307        1.1      fvdl  */
    308        1.1      fvdl void
    309      1.109      yamt lockinit(struct lock *lkp, pri_t prio, const char *wmesg, int timo, int flags)
    310        1.1      fvdl {
    311        1.1      fvdl 
    312        1.8     perry 	memset(lkp, 0, sizeof(struct lock));
    313        1.1      fvdl 	lkp->lk_flags = flags & LK_EXTFLG_MASK;
    314  1.110.2.1        ad 	mutex_init(&lkp->lk_interlock, MUTEX_DEFAULT, IPL_NONE);
    315  1.110.2.1        ad 	lkp->lk_lockholder = LK_NOPROC;
    316  1.110.2.1        ad 	lkp->lk_newlock = NULL;
    317  1.110.2.1        ad 	lkp->lk_prio = prio;
    318  1.110.2.1        ad 	lkp->lk_timo = timo;
    319  1.110.2.1        ad 	lkp->lk_wmesg = wmesg;
    320       1.50   thorpej #if defined(LOCKDEBUG)
    321       1.50   thorpej 	lkp->lk_lock_file = NULL;
    322       1.50   thorpej 	lkp->lk_unlock_file = NULL;
    323       1.50   thorpej #endif
    324        1.1      fvdl }
    325        1.1      fvdl 
    326  1.110.2.9        ad void
    327  1.110.2.9        ad lockdestroy(struct lock *lkp)
    328  1.110.2.9        ad {
    329  1.110.2.9        ad 
    330  1.110.2.9        ad 	mutex_destroy(&lkp->lk_interlock);
    331  1.110.2.9        ad }
    332  1.110.2.9        ad 
    333        1.1      fvdl /*
    334        1.1      fvdl  * Determine the status of a lock.
    335        1.1      fvdl  */
    336        1.1      fvdl int
    337       1.33   thorpej lockstatus(struct lock *lkp)
    338        1.1      fvdl {
    339       1.76      yamt 	int lock_type = 0;
    340       1.76      yamt 	struct lwp *l = curlwp; /* XXX */
    341       1.76      yamt 	pid_t pid;
    342       1.76      yamt 	lwpid_t lid;
    343       1.88     blymn 	cpuid_t cpu_num;
    344       1.76      yamt 
    345  1.110.2.1        ad 	if (l == NULL) {
    346       1.88     blymn 		cpu_num = cpu_number();
    347       1.76      yamt 		pid = LK_KERNPROC;
    348       1.76      yamt 		lid = 0;
    349       1.76      yamt 	} else {
    350       1.88     blymn 		cpu_num = LK_NOCPU;
    351       1.76      yamt 		pid = l->l_proc->p_pid;
    352       1.76      yamt 		lid = l->l_lid;
    353       1.76      yamt 	}
    354        1.1      fvdl 
    355  1.110.2.1        ad 	mutex_enter(&lkp->lk_interlock);
    356       1.76      yamt 	if (lkp->lk_exclusivecount != 0) {
    357       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num))
    358       1.76      yamt 			lock_type = LK_EXCLUSIVE;
    359       1.76      yamt 		else
    360       1.76      yamt 			lock_type = LK_EXCLOTHER;
    361       1.76      yamt 	} else if (lkp->lk_sharecount != 0)
    362        1.1      fvdl 		lock_type = LK_SHARED;
    363      1.103       chs 	else if (lkp->lk_flags & (LK_WANT_EXCL | LK_WANT_UPGRADE))
    364      1.103       chs 		lock_type = LK_EXCLOTHER;
    365  1.110.2.1        ad 	mutex_exit(__UNVOLATILE(&lkp->lk_interlock));
    366        1.1      fvdl 	return (lock_type);
    367        1.1      fvdl }
    368       1.35   thorpej 
    369        1.1      fvdl /*
    370       1.32  sommerfe  * XXX XXX kludge around another kludge..
    371       1.32  sommerfe  *
    372       1.32  sommerfe  * vfs_shutdown() may be called from interrupt context, either as a result
    373       1.32  sommerfe  * of a panic, or from the debugger.   It proceeds to call
    374       1.32  sommerfe  * sys_sync(&proc0, ...), pretending its running on behalf of proc0
    375       1.32  sommerfe  *
    376       1.32  sommerfe  * We would like to make an attempt to sync the filesystems in this case, so
    377       1.32  sommerfe  * if this happens, we treat attempts to acquire locks specially.
    378       1.32  sommerfe  * All locks are acquired on behalf of proc0.
    379       1.32  sommerfe  *
    380       1.32  sommerfe  * If we've already paniced, we don't block waiting for locks, but
    381       1.32  sommerfe  * just barge right ahead since we're already going down in flames.
    382       1.32  sommerfe  */
    383       1.32  sommerfe 
    384       1.32  sommerfe /*
    385        1.1      fvdl  * Set, change, or release a lock.
    386        1.1      fvdl  *
    387        1.1      fvdl  * Shared requests increment the shared count. Exclusive requests set the
    388        1.1      fvdl  * LK_WANT_EXCL flag (preventing further shared locks), and wait for already
    389        1.1      fvdl  * accepted shared locks and shared-to-exclusive upgrades to go away.
    390        1.1      fvdl  */
    391        1.1      fvdl int
    392       1.50   thorpej #if defined(LOCKDEBUG)
    393       1.91     perry _lockmgr(volatile struct lock *lkp, u_int flags,
    394  1.110.2.1        ad     kmutex_t *interlkp, const char *file, int line)
    395       1.50   thorpej #else
    396       1.91     perry lockmgr(volatile struct lock *lkp, u_int flags,
    397  1.110.2.1        ad     kmutex_t *interlkp)
    398       1.50   thorpej #endif
    399        1.1      fvdl {
    400        1.1      fvdl 	int error;
    401        1.1      fvdl 	pid_t pid;
    402       1.69   thorpej 	lwpid_t lid;
    403        1.1      fvdl 	int extflags;
    404       1.88     blymn 	cpuid_t cpu_num;
    405       1.69   thorpej 	struct lwp *l = curlwp;
    406       1.32  sommerfe 	int lock_shutdown_noblock = 0;
    407  1.110.2.1        ad 	kmutex_t *mutex;
    408       1.67       scw 	int s = 0;
    409        1.1      fvdl 
    410        1.1      fvdl 	error = 0;
    411  1.110.2.1        ad 	mutex = __UNVOLATILE(&lkp->lk_interlock);
    412       1.19   thorpej 
    413       1.80      yamt 	/* LK_RETRY is for vn_lock, not for lockmgr. */
    414       1.79      yamt 	KASSERT((flags & LK_RETRY) == 0);
    415  1.110.2.8        ad 	KASSERT((l->l_flag & LW_INTR) == 0 || panicstr != NULL);
    416       1.79      yamt 
    417  1.110.2.1        ad 	mutex_enter(mutex);
    418        1.1      fvdl 	if (flags & LK_INTERLOCK)
    419  1.110.2.1        ad 		mutex_exit(__UNVOLATILE(interlkp));
    420        1.1      fvdl 	extflags = (flags | lkp->lk_flags) & LK_EXTFLG_MASK;
    421       1.19   thorpej 
    422  1.110.2.1        ad 	if (l == NULL) {
    423  1.110.2.1        ad 		if (!doing_shutdown) {
    424  1.110.2.1        ad 			panic("lockmgr: no context");
    425  1.110.2.1        ad 		} else {
    426  1.110.2.1        ad 			l = &lwp0;
    427  1.110.2.1        ad 			if (panicstr && (!(flags & LK_NOWAIT))) {
    428  1.110.2.1        ad 				flags |= LK_NOWAIT;
    429  1.110.2.1        ad 				lock_shutdown_noblock = 1;
    430       1.32  sommerfe 			}
    431       1.32  sommerfe 		}
    432       1.19   thorpej 	}
    433  1.110.2.1        ad 	lid = l->l_lid;
    434  1.110.2.1        ad 	pid = l->l_proc->p_pid;
    435       1.88     blymn 	cpu_num = cpu_number();
    436       1.19   thorpej 
    437        1.1      fvdl 	/*
    438        1.1      fvdl 	 * Once a lock has drained, the LK_DRAINING flag is set and an
    439        1.1      fvdl 	 * exclusive lock is returned. The only valid operation thereafter
    440        1.1      fvdl 	 * is a single release of that exclusive lock. This final release
    441        1.1      fvdl 	 * clears the LK_DRAINING flag and sets the LK_DRAINED flag. Any
    442        1.1      fvdl 	 * further requests of any sort will result in a panic. The bits
    443        1.1      fvdl 	 * selected for these two flags are chosen so that they will be set
    444        1.1      fvdl 	 * in memory that is freed (freed memory is filled with 0xdeadbeef).
    445        1.1      fvdl 	 * The final release is permitted to give a new lease on life to
    446        1.1      fvdl 	 * the lock by specifying LK_REENABLE.
    447        1.1      fvdl 	 */
    448        1.1      fvdl 	if (lkp->lk_flags & (LK_DRAINING|LK_DRAINED)) {
    449       1.28   thorpej #ifdef DIAGNOSTIC /* { */
    450        1.1      fvdl 		if (lkp->lk_flags & LK_DRAINED)
    451      1.110  christos 			lockpanic(lkp, "lockmgr: using decommissioned lock");
    452        1.1      fvdl 		if ((flags & LK_TYPE_MASK) != LK_RELEASE ||
    453       1.88     blymn 		    WEHOLDIT(lkp, pid, lid, cpu_num) == 0)
    454      1.110  christos 			lockpanic(lkp, "lockmgr: non-release on draining lock: %d",
    455        1.1      fvdl 			    flags & LK_TYPE_MASK);
    456       1.28   thorpej #endif /* DIAGNOSTIC */ /* } */
    457        1.1      fvdl 		lkp->lk_flags &= ~LK_DRAINING;
    458        1.1      fvdl 		if ((flags & LK_REENABLE) == 0)
    459        1.1      fvdl 			lkp->lk_flags |= LK_DRAINED;
    460        1.1      fvdl 	}
    461        1.1      fvdl 
    462        1.1      fvdl 	switch (flags & LK_TYPE_MASK) {
    463        1.1      fvdl 
    464        1.1      fvdl 	case LK_SHARED:
    465       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num) == 0) {
    466        1.1      fvdl 			/*
    467        1.1      fvdl 			 * If just polling, check to see if we will block.
    468        1.1      fvdl 			 */
    469        1.1      fvdl 			if ((extflags & LK_NOWAIT) && (lkp->lk_flags &
    470        1.1      fvdl 			    (LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE))) {
    471        1.1      fvdl 				error = EBUSY;
    472        1.1      fvdl 				break;
    473        1.1      fvdl 			}
    474        1.1      fvdl 			/*
    475        1.1      fvdl 			 * Wait for exclusive locks and upgrades to clear.
    476        1.1      fvdl 			 */
    477       1.78   hannken 			error = acquire(&lkp, &s, extflags, 0,
    478       1.98        ad 			    LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE,
    479       1.98        ad 			    RETURN_ADDRESS);
    480        1.1      fvdl 			if (error)
    481        1.1      fvdl 				break;
    482        1.1      fvdl 			lkp->lk_sharecount++;
    483       1.73      yamt 			lkp->lk_flags |= LK_SHARE_NONZERO;
    484       1.88     blymn 			COUNT(lkp, l, cpu_num, 1);
    485        1.1      fvdl 			break;
    486        1.1      fvdl 		}
    487        1.1      fvdl 		/*
    488        1.1      fvdl 		 * We hold an exclusive lock, so downgrade it to shared.
    489        1.1      fvdl 		 * An alternative would be to fail with EDEADLK.
    490        1.1      fvdl 		 */
    491        1.1      fvdl 		lkp->lk_sharecount++;
    492       1.73      yamt 		lkp->lk_flags |= LK_SHARE_NONZERO;
    493       1.88     blymn 		COUNT(lkp, l, cpu_num, 1);
    494        1.1      fvdl 		/* fall into downgrade */
    495        1.1      fvdl 
    496        1.1      fvdl 	case LK_DOWNGRADE:
    497       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num) == 0 ||
    498       1.19   thorpej 		    lkp->lk_exclusivecount == 0)
    499      1.110  christos 			lockpanic(lkp, "lockmgr: not holding exclusive lock");
    500        1.1      fvdl 		lkp->lk_sharecount += lkp->lk_exclusivecount;
    501       1.73      yamt 		lkp->lk_flags |= LK_SHARE_NONZERO;
    502        1.1      fvdl 		lkp->lk_exclusivecount = 0;
    503       1.15      fvdl 		lkp->lk_recurselevel = 0;
    504        1.1      fvdl 		lkp->lk_flags &= ~LK_HAVE_EXCL;
    505       1.69   thorpej 		SETHOLDER(lkp, LK_NOPROC, 0, LK_NOCPU);
    506       1.50   thorpej #if defined(LOCKDEBUG)
    507       1.50   thorpej 		lkp->lk_unlock_file = file;
    508       1.50   thorpej 		lkp->lk_unlock_line = line;
    509       1.50   thorpej #endif
    510       1.23   thorpej 		WAKEUP_WAITER(lkp);
    511        1.1      fvdl 		break;
    512        1.1      fvdl 
    513        1.1      fvdl 	case LK_EXCLUPGRADE:
    514        1.1      fvdl 		/*
    515        1.1      fvdl 		 * If another process is ahead of us to get an upgrade,
    516        1.1      fvdl 		 * then we want to fail rather than have an intervening
    517        1.1      fvdl 		 * exclusive access.
    518        1.1      fvdl 		 */
    519        1.1      fvdl 		if (lkp->lk_flags & LK_WANT_UPGRADE) {
    520        1.1      fvdl 			lkp->lk_sharecount--;
    521       1.73      yamt 			if (lkp->lk_sharecount == 0)
    522       1.73      yamt 				lkp->lk_flags &= ~LK_SHARE_NONZERO;
    523       1.88     blymn 			COUNT(lkp, l, cpu_num, -1);
    524        1.1      fvdl 			error = EBUSY;
    525        1.1      fvdl 			break;
    526        1.1      fvdl 		}
    527        1.1      fvdl 		/* fall into normal upgrade */
    528        1.1      fvdl 
    529        1.1      fvdl 	case LK_UPGRADE:
    530        1.1      fvdl 		/*
    531        1.1      fvdl 		 * Upgrade a shared lock to an exclusive one. If another
    532        1.1      fvdl 		 * shared lock has already requested an upgrade to an
    533        1.1      fvdl 		 * exclusive lock, our shared lock is released and an
    534        1.1      fvdl 		 * exclusive lock is requested (which will be granted
    535        1.1      fvdl 		 * after the upgrade). If we return an error, the file
    536        1.1      fvdl 		 * will always be unlocked.
    537        1.1      fvdl 		 */
    538       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num) || lkp->lk_sharecount <= 0)
    539      1.110  christos 			lockpanic(lkp, "lockmgr: upgrade exclusive lock");
    540        1.1      fvdl 		lkp->lk_sharecount--;
    541       1.73      yamt 		if (lkp->lk_sharecount == 0)
    542       1.73      yamt 			lkp->lk_flags &= ~LK_SHARE_NONZERO;
    543       1.88     blymn 		COUNT(lkp, l, cpu_num, -1);
    544        1.1      fvdl 		/*
    545        1.1      fvdl 		 * If we are just polling, check to see if we will block.
    546        1.1      fvdl 		 */
    547        1.1      fvdl 		if ((extflags & LK_NOWAIT) &&
    548        1.1      fvdl 		    ((lkp->lk_flags & LK_WANT_UPGRADE) ||
    549        1.1      fvdl 		     lkp->lk_sharecount > 1)) {
    550        1.1      fvdl 			error = EBUSY;
    551        1.1      fvdl 			break;
    552        1.1      fvdl 		}
    553        1.1      fvdl 		if ((lkp->lk_flags & LK_WANT_UPGRADE) == 0) {
    554        1.1      fvdl 			/*
    555        1.1      fvdl 			 * We are first shared lock to request an upgrade, so
    556        1.1      fvdl 			 * request upgrade and wait for the shared count to
    557        1.1      fvdl 			 * drop to zero, then take exclusive lock.
    558        1.1      fvdl 			 */
    559        1.1      fvdl 			lkp->lk_flags |= LK_WANT_UPGRADE;
    560       1.98        ad 			error = acquire(&lkp, &s, extflags, 0, LK_SHARE_NONZERO,
    561       1.98        ad 			    RETURN_ADDRESS);
    562        1.1      fvdl 			lkp->lk_flags &= ~LK_WANT_UPGRADE;
    563       1.83      yamt 			if (error) {
    564       1.83      yamt 				WAKEUP_WAITER(lkp);
    565        1.1      fvdl 				break;
    566       1.83      yamt 			}
    567        1.1      fvdl 			lkp->lk_flags |= LK_HAVE_EXCL;
    568       1.88     blymn 			SETHOLDER(lkp, pid, lid, cpu_num);
    569       1.50   thorpej #if defined(LOCKDEBUG)
    570       1.50   thorpej 			lkp->lk_lock_file = file;
    571       1.50   thorpej 			lkp->lk_lock_line = line;
    572       1.50   thorpej #endif
    573        1.1      fvdl 			if (lkp->lk_exclusivecount != 0)
    574      1.110  christos 				lockpanic(lkp, "lockmgr: non-zero exclusive count");
    575        1.1      fvdl 			lkp->lk_exclusivecount = 1;
    576       1.15      fvdl 			if (extflags & LK_SETRECURSE)
    577       1.15      fvdl 				lkp->lk_recurselevel = 1;
    578       1.88     blymn 			COUNT(lkp, l, cpu_num, 1);
    579        1.1      fvdl 			break;
    580        1.1      fvdl 		}
    581        1.1      fvdl 		/*
    582        1.1      fvdl 		 * Someone else has requested upgrade. Release our shared
    583        1.1      fvdl 		 * lock, awaken upgrade requestor if we are the last shared
    584        1.1      fvdl 		 * lock, then request an exclusive lock.
    585        1.1      fvdl 		 */
    586       1.23   thorpej 		if (lkp->lk_sharecount == 0)
    587       1.23   thorpej 			WAKEUP_WAITER(lkp);
    588        1.1      fvdl 		/* fall into exclusive request */
    589        1.1      fvdl 
    590        1.1      fvdl 	case LK_EXCLUSIVE:
    591       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num)) {
    592        1.1      fvdl 			/*
    593       1.19   thorpej 			 * Recursive lock.
    594        1.1      fvdl 			 */
    595       1.15      fvdl 			if ((extflags & LK_CANRECURSE) == 0 &&
    596       1.16  sommerfe 			     lkp->lk_recurselevel == 0) {
    597       1.16  sommerfe 				if (extflags & LK_RECURSEFAIL) {
    598       1.16  sommerfe 					error = EDEADLK;
    599       1.16  sommerfe 					break;
    600       1.16  sommerfe 				} else
    601      1.110  christos 					lockpanic(lkp, "lockmgr: locking against myself");
    602       1.16  sommerfe 			}
    603        1.1      fvdl 			lkp->lk_exclusivecount++;
    604       1.15      fvdl 			if (extflags & LK_SETRECURSE &&
    605       1.15      fvdl 			    lkp->lk_recurselevel == 0)
    606       1.15      fvdl 				lkp->lk_recurselevel = lkp->lk_exclusivecount;
    607       1.88     blymn 			COUNT(lkp, l, cpu_num, 1);
    608        1.1      fvdl 			break;
    609        1.1      fvdl 		}
    610        1.1      fvdl 		/*
    611        1.1      fvdl 		 * If we are just polling, check to see if we will sleep.
    612        1.1      fvdl 		 */
    613       1.73      yamt 		if ((extflags & LK_NOWAIT) && (lkp->lk_flags &
    614       1.73      yamt 		     (LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE |
    615       1.73      yamt 		     LK_SHARE_NONZERO))) {
    616        1.1      fvdl 			error = EBUSY;
    617        1.1      fvdl 			break;
    618        1.1      fvdl 		}
    619        1.1      fvdl 		/*
    620        1.1      fvdl 		 * Try to acquire the want_exclusive flag.
    621        1.1      fvdl 		 */
    622       1.82      yamt 		error = acquire(&lkp, &s, extflags, 0,
    623       1.98        ad 		    LK_HAVE_EXCL | LK_WANT_EXCL, RETURN_ADDRESS);
    624        1.1      fvdl 		if (error)
    625        1.1      fvdl 			break;
    626        1.1      fvdl 		lkp->lk_flags |= LK_WANT_EXCL;
    627        1.1      fvdl 		/*
    628        1.1      fvdl 		 * Wait for shared locks and upgrades to finish.
    629        1.1      fvdl 		 */
    630       1.78   hannken 		error = acquire(&lkp, &s, extflags, 0,
    631       1.98        ad 		    LK_HAVE_EXCL | LK_WANT_UPGRADE | LK_SHARE_NONZERO,
    632       1.98        ad 		    RETURN_ADDRESS);
    633        1.1      fvdl 		lkp->lk_flags &= ~LK_WANT_EXCL;
    634       1.83      yamt 		if (error) {
    635       1.83      yamt 			WAKEUP_WAITER(lkp);
    636        1.1      fvdl 			break;
    637       1.83      yamt 		}
    638        1.1      fvdl 		lkp->lk_flags |= LK_HAVE_EXCL;
    639       1.88     blymn 		SETHOLDER(lkp, pid, lid, cpu_num);
    640       1.50   thorpej #if defined(LOCKDEBUG)
    641       1.50   thorpej 		lkp->lk_lock_file = file;
    642       1.50   thorpej 		lkp->lk_lock_line = line;
    643       1.50   thorpej #endif
    644        1.1      fvdl 		if (lkp->lk_exclusivecount != 0)
    645      1.110  christos 			lockpanic(lkp, "lockmgr: non-zero exclusive count");
    646        1.1      fvdl 		lkp->lk_exclusivecount = 1;
    647       1.15      fvdl 		if (extflags & LK_SETRECURSE)
    648       1.15      fvdl 			lkp->lk_recurselevel = 1;
    649       1.88     blymn 		COUNT(lkp, l, cpu_num, 1);
    650        1.1      fvdl 		break;
    651        1.1      fvdl 
    652        1.1      fvdl 	case LK_RELEASE:
    653        1.1      fvdl 		if (lkp->lk_exclusivecount != 0) {
    654       1.88     blymn 			if (WEHOLDIT(lkp, pid, lid, cpu_num) == 0) {
    655  1.110.2.6        ad 				lockpanic(lkp, "lockmgr: pid %d.%d, not "
    656  1.110.2.6        ad 				    "exclusive lock holder %d.%d "
    657  1.110.2.6        ad 				    "unlocking", pid, lid,
    658  1.110.2.6        ad 				    lkp->lk_lockholder,
    659  1.110.2.6        ad 				    lkp->lk_locklwp);
    660       1.19   thorpej 			}
    661       1.15      fvdl 			if (lkp->lk_exclusivecount == lkp->lk_recurselevel)
    662       1.15      fvdl 				lkp->lk_recurselevel = 0;
    663        1.1      fvdl 			lkp->lk_exclusivecount--;
    664       1.88     blymn 			COUNT(lkp, l, cpu_num, -1);
    665        1.1      fvdl 			if (lkp->lk_exclusivecount == 0) {
    666        1.1      fvdl 				lkp->lk_flags &= ~LK_HAVE_EXCL;
    667       1.69   thorpej 				SETHOLDER(lkp, LK_NOPROC, 0, LK_NOCPU);
    668       1.50   thorpej #if defined(LOCKDEBUG)
    669       1.50   thorpej 				lkp->lk_unlock_file = file;
    670       1.50   thorpej 				lkp->lk_unlock_line = line;
    671       1.50   thorpej #endif
    672        1.1      fvdl 			}
    673        1.1      fvdl 		} else if (lkp->lk_sharecount != 0) {
    674        1.1      fvdl 			lkp->lk_sharecount--;
    675       1.73      yamt 			if (lkp->lk_sharecount == 0)
    676       1.73      yamt 				lkp->lk_flags &= ~LK_SHARE_NONZERO;
    677       1.88     blymn 			COUNT(lkp, l, cpu_num, -1);
    678        1.1      fvdl 		}
    679       1.39   thorpej #ifdef DIAGNOSTIC
    680       1.39   thorpej 		else
    681      1.110  christos 			lockpanic(lkp, "lockmgr: release of unlocked lock!");
    682       1.39   thorpej #endif
    683       1.23   thorpej 		WAKEUP_WAITER(lkp);
    684        1.1      fvdl 		break;
    685        1.1      fvdl 
    686        1.1      fvdl 	case LK_DRAIN:
    687        1.1      fvdl 		/*
    688       1.86     perry 		 * Check that we do not already hold the lock, as it can
    689        1.1      fvdl 		 * never drain if we do. Unfortunately, we have no way to
    690        1.1      fvdl 		 * check for holding a shared lock, but at least we can
    691        1.1      fvdl 		 * check for an exclusive one.
    692        1.1      fvdl 		 */
    693       1.88     blymn 		if (WEHOLDIT(lkp, pid, lid, cpu_num))
    694      1.110  christos 			lockpanic(lkp, "lockmgr: draining against myself");
    695        1.1      fvdl 		/*
    696        1.1      fvdl 		 * If we are just polling, check to see if we will sleep.
    697        1.1      fvdl 		 */
    698       1.73      yamt 		if ((extflags & LK_NOWAIT) && (lkp->lk_flags &
    699       1.73      yamt 		     (LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE |
    700       1.73      yamt 		     LK_SHARE_NONZERO | LK_WAIT_NONZERO))) {
    701        1.1      fvdl 			error = EBUSY;
    702        1.1      fvdl 			break;
    703        1.1      fvdl 		}
    704       1.78   hannken 		error = acquire(&lkp, &s, extflags, 1,
    705       1.73      yamt 		    LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE |
    706       1.98        ad 		    LK_SHARE_NONZERO | LK_WAIT_NONZERO,
    707       1.98        ad 		    RETURN_ADDRESS);
    708       1.23   thorpej 		if (error)
    709       1.23   thorpej 			break;
    710        1.1      fvdl 		lkp->lk_flags |= LK_DRAINING | LK_HAVE_EXCL;
    711       1.88     blymn 		SETHOLDER(lkp, pid, lid, cpu_num);
    712       1.50   thorpej #if defined(LOCKDEBUG)
    713       1.50   thorpej 		lkp->lk_lock_file = file;
    714       1.50   thorpej 		lkp->lk_lock_line = line;
    715       1.50   thorpej #endif
    716        1.1      fvdl 		lkp->lk_exclusivecount = 1;
    717       1.15      fvdl 		/* XXX unlikely that we'd want this */
    718       1.15      fvdl 		if (extflags & LK_SETRECURSE)
    719       1.15      fvdl 			lkp->lk_recurselevel = 1;
    720       1.88     blymn 		COUNT(lkp, l, cpu_num, 1);
    721        1.1      fvdl 		break;
    722        1.1      fvdl 
    723        1.1      fvdl 	default:
    724  1.110.2.1        ad 		mutex_exit(mutex);
    725      1.110  christos 		lockpanic(lkp, "lockmgr: unknown locktype request %d",
    726        1.1      fvdl 		    flags & LK_TYPE_MASK);
    727        1.1      fvdl 		/* NOTREACHED */
    728        1.1      fvdl 	}
    729  1.110.2.1        ad 	if ((lkp->lk_flags & LK_WAITDRAIN) != 0 &&
    730       1.23   thorpej 	    ((lkp->lk_flags &
    731       1.73      yamt 	      (LK_HAVE_EXCL | LK_WANT_EXCL | LK_WANT_UPGRADE |
    732       1.73      yamt 	      LK_SHARE_NONZERO | LK_WAIT_NONZERO)) == 0)) {
    733        1.1      fvdl 		lkp->lk_flags &= ~LK_WAITDRAIN;
    734       1.87  christos 		wakeup(&lkp->lk_flags);
    735        1.1      fvdl 	}
    736       1.32  sommerfe 	/*
    737       1.32  sommerfe 	 * Note that this panic will be a recursive panic, since
    738       1.32  sommerfe 	 * we only set lock_shutdown_noblock above if panicstr != NULL.
    739       1.32  sommerfe 	 */
    740       1.32  sommerfe 	if (error && lock_shutdown_noblock)
    741      1.110  christos 		lockpanic(lkp, "lockmgr: deadlock (see previous panic)");
    742       1.86     perry 
    743  1.110.2.1        ad 	mutex_exit(mutex);
    744        1.1      fvdl 	return (error);
    745        1.1      fvdl }
    746        1.1      fvdl 
    747        1.1      fvdl /*
    748        1.1      fvdl  * Print out information about state of a lock. Used by VOP_PRINT
    749        1.1      fvdl  * routines to display ststus about contained locks.
    750        1.1      fvdl  */
    751        1.2      fvdl void
    752       1.91     perry lockmgr_printinfo(volatile struct lock *lkp)
    753        1.1      fvdl {
    754        1.1      fvdl 
    755        1.1      fvdl 	if (lkp->lk_sharecount)
    756        1.1      fvdl 		printf(" lock type %s: SHARED (count %d)", lkp->lk_wmesg,
    757        1.1      fvdl 		    lkp->lk_sharecount);
    758       1.19   thorpej 	else if (lkp->lk_flags & LK_HAVE_EXCL) {
    759       1.19   thorpej 		printf(" lock type %s: EXCL (count %d) by ",
    760       1.19   thorpej 		    lkp->lk_wmesg, lkp->lk_exclusivecount);
    761  1.110.2.1        ad 		printf("pid %d.%d", lkp->lk_lockholder,
    762  1.110.2.1        ad 		    lkp->lk_locklwp);
    763       1.19   thorpej 	} else
    764       1.19   thorpej 		printf(" not locked");
    765  1.110.2.1        ad 	if (lkp->lk_waitcount > 0)
    766        1.1      fvdl 		printf(" with %d pending", lkp->lk_waitcount);
    767        1.1      fvdl }
    768        1.1      fvdl 
    769  1.110.2.3        ad #if defined(LOCKDEBUG)
    770       1.96      yamt void
    771       1.96      yamt assert_sleepable(struct simplelock *interlock, const char *msg)
    772       1.96      yamt {
    773       1.96      yamt 
    774  1.110.2.4        ad 	LOCKDEBUG_BARRIER(&kernel_lock, 1);
    775  1.110.2.6        ad 	if (CURCPU_IDLE_P()) {
    776  1.110.2.6        ad 		panic("assert_sleepable: idle");
    777       1.97      yamt 	}
    778       1.96      yamt }
    779  1.110.2.3        ad #endif
    780       1.96      yamt 
    781       1.62   thorpej #if defined(MULTIPROCESSOR)
    782      1.105        ad 
    783       1.62   thorpej /*
    784       1.62   thorpej  * Functions for manipulating the kernel_lock.  We put them here
    785       1.62   thorpej  * so that they show up in profiles.
    786       1.62   thorpej  */
    787       1.62   thorpej 
    788      1.105        ad #define	_KERNEL_LOCK_ABORT(msg)						\
    789      1.105        ad     LOCKDEBUG_ABORT(kernel_lock_id, &kernel_lock, &_kernel_lock_ops,	\
    790      1.105        ad         __FUNCTION__, msg)
    791      1.105        ad 
    792      1.105        ad #ifdef LOCKDEBUG
    793      1.105        ad #define	_KERNEL_LOCK_ASSERT(cond)					\
    794      1.105        ad do {									\
    795      1.105        ad 	if (!(cond))							\
    796      1.105        ad 		_KERNEL_LOCK_ABORT("assertion failed: " #cond);		\
    797      1.105        ad } while (/* CONSTCOND */ 0)
    798      1.105        ad #else
    799      1.105        ad #define	_KERNEL_LOCK_ASSERT(cond)	/* nothing */
    800      1.105        ad #endif
    801      1.105        ad 
    802      1.105        ad void	_kernel_lock_dump(volatile void *);
    803      1.105        ad 
    804      1.105        ad lockops_t _kernel_lock_ops = {
    805      1.105        ad 	"Kernel lock",
    806      1.105        ad 	0,
    807      1.105        ad 	_kernel_lock_dump
    808      1.105        ad };
    809      1.105        ad 
    810       1.85      yamt /*
    811      1.105        ad  * Initialize the kernel lock.
    812       1.85      yamt  */
    813       1.62   thorpej void
    814       1.62   thorpej _kernel_lock_init(void)
    815       1.62   thorpej {
    816       1.62   thorpej 
    817      1.105        ad 	__cpu_simple_lock_init(&kernel_lock);
    818      1.105        ad 	kernel_lock_id = LOCKDEBUG_ALLOC(&kernel_lock, &_kernel_lock_ops);
    819       1.62   thorpej }
    820       1.62   thorpej 
    821       1.62   thorpej /*
    822      1.105        ad  * Print debugging information about the kernel lock.
    823       1.62   thorpej  */
    824       1.62   thorpej void
    825      1.105        ad _kernel_lock_dump(volatile void *junk)
    826       1.62   thorpej {
    827       1.85      yamt 	struct cpu_info *ci = curcpu();
    828       1.62   thorpej 
    829      1.105        ad 	(void)junk;
    830       1.85      yamt 
    831      1.105        ad 	printf_nolog("curcpu holds : %18d wanted by: %#018lx\n",
    832      1.105        ad 	    ci->ci_biglock_count, (long)ci->ci_biglock_wanted);
    833       1.62   thorpej }
    834       1.62   thorpej 
    835      1.105        ad /*
    836      1.105        ad  * Acquire 'nlocks' holds on the kernel lock.  If 'l' is non-null, the
    837      1.105        ad  * acquisition is from process context.
    838      1.105        ad  */
    839       1.62   thorpej void
    840      1.105        ad _kernel_lock(int nlocks, struct lwp *l)
    841       1.62   thorpej {
    842       1.85      yamt 	struct cpu_info *ci = curcpu();
    843      1.105        ad 	LOCKSTAT_TIMER(spintime);
    844      1.105        ad 	LOCKSTAT_FLAG(lsflag);
    845      1.105        ad 	struct lwp *owant;
    846      1.105        ad #ifdef LOCKDEBUG
    847      1.105        ad 	u_int spins;
    848      1.105        ad #endif
    849       1.85      yamt 	int s;
    850       1.85      yamt 
    851      1.105        ad 	if (nlocks == 0)
    852      1.105        ad 		return;
    853      1.105        ad 	_KERNEL_LOCK_ASSERT(nlocks > 0);
    854       1.62   thorpej 
    855  1.110.2.7        ad 	l = curlwp;
    856       1.85      yamt 	s = splbiglock();
    857      1.105        ad 
    858      1.105        ad 	if (ci->ci_biglock_count != 0) {
    859      1.105        ad 		_KERNEL_LOCK_ASSERT(kernel_lock == __SIMPLELOCK_LOCKED);
    860      1.105        ad 		ci->ci_biglock_count += nlocks;
    861  1.110.2.7        ad 		l->l_blcnt += nlocks;
    862      1.105        ad 		splx(s);
    863      1.105        ad 		return;
    864      1.105        ad 	}
    865      1.105        ad 
    866  1.110.2.7        ad 	_KERNEL_LOCK_ASSERT(l->l_blcnt == 0);
    867      1.107        ad 	LOCKDEBUG_WANTLOCK(kernel_lock_id,
    868      1.107        ad 	    (uintptr_t)__builtin_return_address(0), 0);
    869      1.107        ad 
    870      1.105        ad 	if (__cpu_simple_lock_try(&kernel_lock)) {
    871      1.105        ad 		ci->ci_biglock_count = nlocks;
    872  1.110.2.7        ad 		l->l_blcnt = nlocks;
    873      1.105        ad 		LOCKDEBUG_LOCKED(kernel_lock_id,
    874      1.105        ad 		    (uintptr_t)__builtin_return_address(0), 0);
    875      1.105        ad 		splx(s);
    876      1.105        ad 		return;
    877      1.105        ad 	}
    878      1.105        ad 
    879      1.105        ad 	LOCKSTAT_ENTER(lsflag);
    880      1.105        ad 	LOCKSTAT_START_TIMER(lsflag, spintime);
    881      1.105        ad 
    882      1.105        ad 	/*
    883      1.105        ad 	 * Before setting ci_biglock_wanted we must post a store
    884      1.105        ad 	 * fence (see kern_mutex.c).  This is accomplished by the
    885      1.105        ad 	 * __cpu_simple_lock_try() above.
    886      1.105        ad 	 */
    887      1.105        ad 	owant = ci->ci_biglock_wanted;
    888      1.105        ad 	ci->ci_biglock_wanted = curlwp;	/* XXXAD */
    889      1.105        ad 
    890      1.105        ad #ifdef LOCKDEBUG
    891      1.105        ad 	spins = 0;
    892      1.105        ad #endif
    893      1.105        ad 
    894      1.105        ad 	do {
    895      1.105        ad 		while (kernel_lock == __SIMPLELOCK_LOCKED) {
    896      1.105        ad #ifdef LOCKDEBUG
    897      1.105        ad 			if (SPINLOCK_SPINOUT(spins))
    898      1.105        ad 				_KERNEL_LOCK_ABORT("spinout");
    899      1.105        ad #endif
    900      1.105        ad 			splx(s);
    901      1.105        ad 			SPINLOCK_SPIN_HOOK;
    902      1.105        ad 			(void)splbiglock();
    903      1.105        ad 		}
    904      1.105        ad 	} while (!__cpu_simple_lock_try(&kernel_lock));
    905      1.105        ad 
    906      1.105        ad 	ci->ci_biglock_wanted = owant;
    907  1.110.2.7        ad 	ci->ci_biglock_count = nlocks;
    908  1.110.2.7        ad 	l->l_blcnt = nlocks;
    909      1.107        ad 	LOCKSTAT_STOP_TIMER(lsflag, spintime);
    910      1.107        ad 	LOCKDEBUG_LOCKED(kernel_lock_id,
    911      1.107        ad 	    (uintptr_t)__builtin_return_address(0), 0);
    912       1.85      yamt 	splx(s);
    913      1.105        ad 
    914      1.105        ad 	/*
    915      1.105        ad 	 * Again, another store fence is required (see kern_mutex.c).
    916      1.105        ad 	 */
    917      1.105        ad 	mb_write();
    918      1.107        ad 	if (owant == NULL) {
    919      1.107        ad 		LOCKSTAT_EVENT(lsflag, &kernel_lock, LB_KERNEL_LOCK | LB_SPIN,
    920      1.107        ad 		    1, spintime);
    921      1.107        ad 	}
    922      1.105        ad 	LOCKSTAT_EXIT(lsflag);
    923       1.62   thorpej }
    924       1.62   thorpej 
    925       1.62   thorpej /*
    926      1.105        ad  * Release 'nlocks' holds on the kernel lock.  If 'nlocks' is zero, release
    927      1.105        ad  * all holds.  If 'l' is non-null, the release is from process context.
    928       1.62   thorpej  */
    929       1.62   thorpej void
    930      1.105        ad _kernel_unlock(int nlocks, struct lwp *l, int *countp)
    931       1.62   thorpej {
    932      1.105        ad 	struct cpu_info *ci = curcpu();
    933      1.105        ad 	u_int olocks;
    934      1.105        ad 	int s;
    935       1.62   thorpej 
    936  1.110.2.7        ad 	l = curlwp;
    937       1.62   thorpej 
    938      1.105        ad 	_KERNEL_LOCK_ASSERT(nlocks < 2);
    939       1.62   thorpej 
    940  1.110.2.7        ad 	olocks = l->l_blcnt;
    941       1.77      yamt 
    942      1.105        ad 	if (olocks == 0) {
    943      1.105        ad 		_KERNEL_LOCK_ASSERT(nlocks <= 0);
    944      1.105        ad 		if (countp != NULL)
    945      1.105        ad 			*countp = 0;
    946      1.105        ad 		return;
    947      1.105        ad 	}
    948       1.77      yamt 
    949      1.105        ad 	_KERNEL_LOCK_ASSERT(kernel_lock == __SIMPLELOCK_LOCKED);
    950       1.85      yamt 
    951      1.105        ad 	if (nlocks == 0)
    952      1.105        ad 		nlocks = olocks;
    953      1.105        ad 	else if (nlocks == -1) {
    954      1.105        ad 		nlocks = 1;
    955      1.105        ad 		_KERNEL_LOCK_ASSERT(olocks == 1);
    956      1.105        ad 	}
    957       1.85      yamt 
    958  1.110.2.7        ad 	_KERNEL_LOCK_ASSERT(ci->ci_biglock_count >= l->l_blcnt);
    959  1.110.2.7        ad 
    960      1.105        ad 	s = splbiglock();
    961  1.110.2.7        ad 	l->l_blcnt -= nlocks;
    962      1.105        ad 	if ((ci->ci_biglock_count -= nlocks) == 0) {
    963      1.105        ad 		LOCKDEBUG_UNLOCKED(kernel_lock_id,
    964      1.105        ad 		    (uintptr_t)__builtin_return_address(0), 0);
    965      1.105        ad 		__cpu_simple_unlock(&kernel_lock);
    966       1.85      yamt 	}
    967      1.105        ad 	splx(s);
    968       1.77      yamt 
    969      1.105        ad 	if (countp != NULL)
    970      1.105        ad 		*countp = olocks;
    971       1.77      yamt }
    972       1.77      yamt 
    973       1.84      yamt #if defined(DEBUG)
    974      1.105        ad /*
    975      1.105        ad  * Assert that the kernel lock is held.
    976      1.105        ad  */
    977       1.84      yamt void
    978      1.105        ad _kernel_lock_assert_locked(void)
    979       1.84      yamt {
    980      1.100      yamt 
    981      1.105        ad 	if (kernel_lock != __SIMPLELOCK_LOCKED ||
    982      1.105        ad 	    curcpu()->ci_biglock_count == 0)
    983      1.105        ad 		_KERNEL_LOCK_ABORT("not locked");
    984       1.84      yamt }
    985      1.100      yamt 
    986      1.100      yamt void
    987      1.100      yamt _kernel_lock_assert_unlocked()
    988      1.100      yamt {
    989      1.100      yamt 
    990      1.105        ad 	if (curcpu()->ci_biglock_count != 0)
    991      1.105        ad 		_KERNEL_LOCK_ABORT("locked");
    992      1.100      yamt }
    993       1.84      yamt #endif
    994       1.94       erh 
    995      1.105        ad #endif	/* MULTIPROCESSOR || LOCKDEBUG */
    996