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kern_condvar.c revision 1.30.12.1
      1       1.30  uebayasi /*	$NetBSD: kern_condvar.c,v 1.30.12.1 2013/06/23 06:18:57 tls Exp $	*/
      2        1.2        ad 
      3        1.2        ad /*-
      4       1.15        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       1.24        ad  * Kernel condition variable implementation.
     34        1.2        ad  */
     35        1.2        ad 
     36        1.2        ad #include <sys/cdefs.h>
     37       1.30  uebayasi __KERNEL_RCSID(0, "$NetBSD: kern_condvar.c,v 1.30.12.1 2013/06/23 06:18:57 tls Exp $");
     38        1.2        ad 
     39        1.2        ad #include <sys/param.h>
     40        1.2        ad #include <sys/proc.h>
     41        1.2        ad #include <sys/sched.h>
     42        1.2        ad #include <sys/systm.h>
     43        1.2        ad #include <sys/condvar.h>
     44        1.2        ad #include <sys/sleepq.h>
     45       1.20        ad #include <sys/lockdebug.h>
     46       1.24        ad #include <sys/cpu.h>
     47       1.20        ad 
     48       1.26   thorpej /*
     49       1.26   thorpej  * Accessors for the private contents of the kcondvar_t data type.
     50       1.26   thorpej  *
     51       1.26   thorpej  *	cv_opaque[0]	sleepq...
     52       1.26   thorpej  *	cv_opaque[1]	...pointers
     53       1.26   thorpej  *	cv_opaque[2]	description for ps(1)
     54       1.26   thorpej  *
     55       1.26   thorpej  * cv_opaque[0..1] is protected by the interlock passed to cv_wait() (enqueue
     56       1.26   thorpej  * only), and the sleep queue lock acquired with sleeptab_lookup() (enqueue
     57       1.26   thorpej  * and dequeue).
     58       1.26   thorpej  *
     59       1.26   thorpej  * cv_opaque[2] (the wmesg) is static and does not change throughout the life
     60       1.26   thorpej  * of the CV.
     61       1.26   thorpej  */
     62       1.26   thorpej #define	CV_SLEEPQ(cv)		((sleepq_t *)(cv)->cv_opaque)
     63       1.26   thorpej #define	CV_WMESG(cv)		((const char *)(cv)->cv_opaque[2])
     64       1.26   thorpej #define	CV_SET_WMESG(cv, v) 	(cv)->cv_opaque[2] = __UNCONST(v)
     65       1.26   thorpej 
     66       1.26   thorpej #define	CV_DEBUG_P(cv)	(CV_WMESG(cv) != nodebug)
     67       1.20        ad #define	CV_RA		((uintptr_t)__builtin_return_address(0))
     68        1.2        ad 
     69       1.27     rmind static void	cv_unsleep(lwp_t *, bool);
     70       1.20        ad static void	cv_wakeup_one(kcondvar_t *);
     71       1.20        ad static void	cv_wakeup_all(kcondvar_t *);
     72        1.2        ad 
     73       1.10        ad static syncobj_t cv_syncobj = {
     74        1.2        ad 	SOBJ_SLEEPQ_SORTED,
     75        1.2        ad 	cv_unsleep,
     76       1.14        ad 	sleepq_changepri,
     77        1.4      yamt 	sleepq_lendpri,
     78        1.4      yamt 	syncobj_noowner,
     79        1.2        ad };
     80        1.2        ad 
     81       1.20        ad lockops_t cv_lockops = {
     82       1.20        ad 	"Condition variable",
     83       1.20        ad 	LOCKOPS_CV,
     84       1.20        ad 	NULL
     85       1.20        ad };
     86       1.20        ad 
     87       1.10        ad static const char deadcv[] = "deadcv";
     88       1.20        ad static const char nodebug[] = "nodebug";
     89       1.10        ad 
     90        1.2        ad /*
     91        1.2        ad  * cv_init:
     92        1.2        ad  *
     93        1.2        ad  *	Initialize a condition variable for use.
     94        1.2        ad  */
     95        1.2        ad void
     96        1.2        ad cv_init(kcondvar_t *cv, const char *wmesg)
     97        1.2        ad {
     98       1.21        ad #ifdef LOCKDEBUG
     99       1.20        ad 	bool dodebug;
    100        1.2        ad 
    101       1.20        ad 	dodebug = LOCKDEBUG_ALLOC(cv, &cv_lockops,
    102       1.20        ad 	    (uintptr_t)__builtin_return_address(0));
    103       1.21        ad 	if (!dodebug) {
    104       1.20        ad 		/* XXX This will break vfs_lockf. */
    105       1.21        ad 		wmesg = nodebug;
    106       1.20        ad 	}
    107       1.21        ad #endif
    108       1.21        ad 	KASSERT(wmesg != NULL);
    109       1.26   thorpej 	CV_SET_WMESG(cv, wmesg);
    110       1.20        ad 	sleepq_init(CV_SLEEPQ(cv));
    111        1.2        ad }
    112        1.2        ad 
    113        1.2        ad /*
    114        1.2        ad  * cv_destroy:
    115        1.2        ad  *
    116        1.2        ad  *	Tear down a condition variable.
    117        1.2        ad  */
    118        1.2        ad void
    119        1.2        ad cv_destroy(kcondvar_t *cv)
    120        1.2        ad {
    121        1.2        ad 
    122       1.20        ad 	LOCKDEBUG_FREE(CV_DEBUG_P(cv), cv);
    123        1.2        ad #ifdef DIAGNOSTIC
    124       1.15        ad 	KASSERT(cv_is_valid(cv));
    125       1.26   thorpej 	CV_SET_WMESG(cv, deadcv);
    126        1.2        ad #endif
    127        1.2        ad }
    128        1.2        ad 
    129        1.2        ad /*
    130        1.2        ad  * cv_enter:
    131        1.2        ad  *
    132        1.2        ad  *	Look up and lock the sleep queue corresponding to the given
    133        1.2        ad  *	condition variable, and increment the number of waiters.
    134        1.2        ad  */
    135       1.20        ad static inline void
    136        1.6        ad cv_enter(kcondvar_t *cv, kmutex_t *mtx, lwp_t *l)
    137        1.2        ad {
    138        1.2        ad 	sleepq_t *sq;
    139       1.18        ad 	kmutex_t *mp;
    140        1.2        ad 
    141       1.15        ad 	KASSERT(cv_is_valid(cv));
    142       1.24        ad 	KASSERT(!cpu_intr_p());
    143       1.14        ad 	KASSERT((l->l_pflag & LP_INTR) == 0 || panicstr != NULL);
    144        1.2        ad 
    145       1.20        ad 	LOCKDEBUG_LOCKED(CV_DEBUG_P(cv), cv, mtx, CV_RA, 0);
    146       1.20        ad 
    147       1.14        ad 	l->l_kpriority = true;
    148       1.24        ad 	mp = sleepq_hashlock(cv);
    149       1.20        ad 	sq = CV_SLEEPQ(cv);
    150       1.18        ad 	sleepq_enter(sq, l, mp);
    151       1.26   thorpej 	sleepq_enqueue(sq, cv, CV_WMESG(cv), &cv_syncobj);
    152        1.2        ad 	mutex_exit(mtx);
    153       1.24        ad 	KASSERT(cv_has_waiters(cv));
    154        1.2        ad }
    155        1.2        ad 
    156        1.2        ad /*
    157        1.6        ad  * cv_exit:
    158        1.6        ad  *
    159        1.6        ad  *	After resuming execution, check to see if we have been restarted
    160        1.6        ad  *	as a result of cv_signal().  If we have, but cannot take the
    161        1.6        ad  *	wakeup (because of eg a pending Unix signal or timeout) then try
    162        1.6        ad  *	to ensure that another LWP sees it.  This is necessary because
    163        1.6        ad  *	there may be multiple waiters, and at least one should take the
    164        1.6        ad  *	wakeup if possible.
    165        1.6        ad  */
    166        1.6        ad static inline int
    167        1.6        ad cv_exit(kcondvar_t *cv, kmutex_t *mtx, lwp_t *l, const int error)
    168        1.6        ad {
    169        1.6        ad 
    170        1.6        ad 	mutex_enter(mtx);
    171       1.20        ad 	if (__predict_false(error != 0))
    172        1.6        ad 		cv_signal(cv);
    173        1.6        ad 
    174       1.20        ad 	LOCKDEBUG_UNLOCKED(CV_DEBUG_P(cv), cv, CV_RA, 0);
    175       1.15        ad 	KASSERT(cv_is_valid(cv));
    176       1.10        ad 
    177        1.6        ad 	return error;
    178        1.6        ad }
    179        1.6        ad 
    180        1.6        ad /*
    181        1.2        ad  * cv_unsleep:
    182        1.2        ad  *
    183        1.2        ad  *	Remove an LWP from the condition variable and sleep queue.  This
    184        1.2        ad  *	is called when the LWP has not been awoken normally but instead
    185        1.2        ad  *	interrupted: for example, when a signal is received.  Must be
    186        1.2        ad  *	called with the LWP locked, and must return it unlocked.
    187        1.2        ad  */
    188       1.27     rmind static void
    189       1.16        ad cv_unsleep(lwp_t *l, bool cleanup)
    190        1.2        ad {
    191       1.10        ad 	kcondvar_t *cv;
    192        1.2        ad 
    193       1.15        ad 	cv = (kcondvar_t *)(uintptr_t)l->l_wchan;
    194       1.15        ad 
    195       1.20        ad 	KASSERT(l->l_wchan == (wchan_t)cv);
    196       1.20        ad 	KASSERT(l->l_sleepq == CV_SLEEPQ(cv));
    197       1.15        ad 	KASSERT(cv_is_valid(cv));
    198       1.24        ad 	KASSERT(cv_has_waiters(cv));
    199        1.2        ad 
    200       1.27     rmind 	sleepq_unsleep(l, cleanup);
    201        1.2        ad }
    202        1.2        ad 
    203        1.2        ad /*
    204        1.2        ad  * cv_wait:
    205        1.2        ad  *
    206        1.2        ad  *	Wait non-interruptably on a condition variable until awoken.
    207        1.2        ad  */
    208        1.2        ad void
    209        1.2        ad cv_wait(kcondvar_t *cv, kmutex_t *mtx)
    210        1.2        ad {
    211        1.6        ad 	lwp_t *l = curlwp;
    212        1.2        ad 
    213        1.8      yamt 	KASSERT(mutex_owned(mtx));
    214        1.2        ad 
    215       1.20        ad 	cv_enter(cv, mtx, l);
    216        1.8      yamt 	(void)sleepq_block(0, false);
    217        1.6        ad 	(void)cv_exit(cv, mtx, l, 0);
    218        1.2        ad }
    219        1.2        ad 
    220        1.2        ad /*
    221        1.2        ad  * cv_wait_sig:
    222        1.2        ad  *
    223        1.2        ad  *	Wait on a condition variable until a awoken or a signal is received.
    224        1.2        ad  *	Will also return early if the process is exiting.  Returns zero if
    225       1.29       jym  *	awoken normally, ERESTART if a signal was received and the system
    226        1.2        ad  *	call is restartable, or EINTR otherwise.
    227        1.2        ad  */
    228        1.2        ad int
    229        1.2        ad cv_wait_sig(kcondvar_t *cv, kmutex_t *mtx)
    230        1.2        ad {
    231        1.6        ad 	lwp_t *l = curlwp;
    232        1.2        ad 	int error;
    233        1.2        ad 
    234        1.8      yamt 	KASSERT(mutex_owned(mtx));
    235        1.2        ad 
    236       1.20        ad 	cv_enter(cv, mtx, l);
    237        1.8      yamt 	error = sleepq_block(0, true);
    238        1.6        ad 	return cv_exit(cv, mtx, l, error);
    239        1.2        ad }
    240        1.2        ad 
    241        1.2        ad /*
    242        1.2        ad  * cv_timedwait:
    243        1.2        ad  *
    244        1.2        ad  *	Wait on a condition variable until awoken or the specified timeout
    245        1.2        ad  *	expires.  Returns zero if awoken normally or EWOULDBLOCK if the
    246        1.2        ad  *	timeout expired.
    247  1.30.12.1       tls  *
    248  1.30.12.1       tls  *	timo is a timeout in ticks.  timo = 0 specifies an infinite timeout.
    249        1.2        ad  */
    250        1.2        ad int
    251        1.2        ad cv_timedwait(kcondvar_t *cv, kmutex_t *mtx, int timo)
    252        1.2        ad {
    253        1.6        ad 	lwp_t *l = curlwp;
    254        1.2        ad 	int error;
    255        1.2        ad 
    256        1.8      yamt 	KASSERT(mutex_owned(mtx));
    257        1.2        ad 
    258       1.20        ad 	cv_enter(cv, mtx, l);
    259        1.8      yamt 	error = sleepq_block(timo, false);
    260        1.6        ad 	return cv_exit(cv, mtx, l, error);
    261        1.2        ad }
    262        1.2        ad 
    263        1.2        ad /*
    264        1.2        ad  * cv_timedwait_sig:
    265        1.2        ad  *
    266        1.2        ad  *	Wait on a condition variable until a timeout expires, awoken or a
    267        1.2        ad  *	signal is received.  Will also return early if the process is
    268       1.29       jym  *	exiting.  Returns zero if awoken normally, EWOULDBLOCK if the
    269        1.2        ad  *	timeout expires, ERESTART if a signal was received and the system
    270        1.2        ad  *	call is restartable, or EINTR otherwise.
    271  1.30.12.1       tls  *
    272  1.30.12.1       tls  *	timo is a timeout in ticks.  timo = 0 specifies an infinite timeout.
    273        1.2        ad  */
    274        1.2        ad int
    275        1.2        ad cv_timedwait_sig(kcondvar_t *cv, kmutex_t *mtx, int timo)
    276        1.2        ad {
    277        1.6        ad 	lwp_t *l = curlwp;
    278        1.2        ad 	int error;
    279        1.2        ad 
    280        1.8      yamt 	KASSERT(mutex_owned(mtx));
    281        1.2        ad 
    282       1.20        ad 	cv_enter(cv, mtx, l);
    283        1.8      yamt 	error = sleepq_block(timo, true);
    284        1.6        ad 	return cv_exit(cv, mtx, l, error);
    285        1.2        ad }
    286        1.2        ad 
    287        1.2        ad /*
    288        1.2        ad  * cv_signal:
    289        1.2        ad  *
    290        1.2        ad  *	Wake the highest priority LWP waiting on a condition variable.
    291        1.2        ad  *	Must be called with the interlocking mutex held.
    292        1.2        ad  */
    293        1.2        ad void
    294        1.2        ad cv_signal(kcondvar_t *cv)
    295        1.2        ad {
    296       1.20        ad 
    297       1.22        ad 	/* LOCKDEBUG_WAKEUP(CV_DEBUG_P(cv), cv, CV_RA); */
    298       1.20        ad 	KASSERT(cv_is_valid(cv));
    299       1.20        ad 
    300       1.24        ad 	if (__predict_false(!TAILQ_EMPTY(CV_SLEEPQ(cv))))
    301       1.24        ad 		cv_wakeup_one(cv);
    302       1.20        ad }
    303       1.20        ad 
    304       1.20        ad static void __noinline
    305       1.20        ad cv_wakeup_one(kcondvar_t *cv)
    306       1.20        ad {
    307        1.2        ad 	sleepq_t *sq;
    308       1.18        ad 	kmutex_t *mp;
    309       1.20        ad 	lwp_t *l;
    310        1.2        ad 
    311       1.15        ad 	KASSERT(cv_is_valid(cv));
    312       1.15        ad 
    313       1.24        ad 	mp = sleepq_hashlock(cv);
    314       1.20        ad 	sq = CV_SLEEPQ(cv);
    315       1.20        ad 	l = TAILQ_FIRST(sq);
    316       1.20        ad 	if (l == NULL) {
    317       1.20        ad 		mutex_spin_exit(mp);
    318        1.2        ad 		return;
    319       1.20        ad 	}
    320       1.20        ad 	KASSERT(l->l_sleepq == sq);
    321       1.20        ad 	KASSERT(l->l_mutex == mp);
    322       1.20        ad 	KASSERT(l->l_wchan == cv);
    323       1.27     rmind 	sleepq_remove(sq, l);
    324       1.20        ad 	mutex_spin_exit(mp);
    325        1.2        ad 
    326       1.15        ad 	KASSERT(cv_is_valid(cv));
    327        1.2        ad }
    328        1.2        ad 
    329        1.2        ad /*
    330        1.2        ad  * cv_broadcast:
    331        1.2        ad  *
    332        1.2        ad  *	Wake all LWPs waiting on a condition variable.  Must be called
    333        1.2        ad  *	with the interlocking mutex held.
    334        1.2        ad  */
    335        1.2        ad void
    336        1.2        ad cv_broadcast(kcondvar_t *cv)
    337        1.2        ad {
    338       1.20        ad 
    339       1.22        ad 	/* LOCKDEBUG_WAKEUP(CV_DEBUG_P(cv), cv, CV_RA); */
    340       1.20        ad 	KASSERT(cv_is_valid(cv));
    341       1.20        ad 
    342       1.24        ad 	if (__predict_false(!TAILQ_EMPTY(CV_SLEEPQ(cv))))
    343       1.24        ad 		cv_wakeup_all(cv);
    344       1.20        ad }
    345       1.20        ad 
    346       1.20        ad static void __noinline
    347       1.20        ad cv_wakeup_all(kcondvar_t *cv)
    348       1.20        ad {
    349        1.2        ad 	sleepq_t *sq;
    350       1.18        ad 	kmutex_t *mp;
    351       1.20        ad 	lwp_t *l, *next;
    352        1.2        ad 
    353       1.15        ad 	KASSERT(cv_is_valid(cv));
    354       1.15        ad 
    355       1.24        ad 	mp = sleepq_hashlock(cv);
    356       1.20        ad 	sq = CV_SLEEPQ(cv);
    357       1.20        ad 	for (l = TAILQ_FIRST(sq); l != NULL; l = next) {
    358       1.20        ad 		KASSERT(l->l_sleepq == sq);
    359       1.20        ad 		KASSERT(l->l_mutex == mp);
    360       1.20        ad 		KASSERT(l->l_wchan == cv);
    361       1.20        ad 		next = TAILQ_NEXT(l, l_sleepchain);
    362       1.27     rmind 		sleepq_remove(sq, l);
    363       1.20        ad 	}
    364       1.20        ad 	mutex_spin_exit(mp);
    365        1.2        ad 
    366       1.15        ad 	KASSERT(cv_is_valid(cv));
    367        1.2        ad }
    368        1.2        ad 
    369        1.2        ad /*
    370        1.2        ad  * cv_has_waiters:
    371        1.2        ad  *
    372        1.2        ad  *	For diagnostic assertions: return non-zero if a condition
    373        1.2        ad  *	variable has waiters.
    374        1.2        ad  */
    375        1.7        ad bool
    376        1.2        ad cv_has_waiters(kcondvar_t *cv)
    377        1.2        ad {
    378       1.23     chris 
    379       1.25        ad 	return !TAILQ_EMPTY(CV_SLEEPQ(cv));
    380        1.2        ad }
    381       1.15        ad 
    382       1.15        ad /*
    383       1.15        ad  * cv_is_valid:
    384       1.15        ad  *
    385       1.15        ad  *	For diagnostic assertions: return non-zero if a condition
    386       1.15        ad  *	variable appears to be valid.  No locks need be held.
    387       1.15        ad  */
    388       1.15        ad bool
    389       1.15        ad cv_is_valid(kcondvar_t *cv)
    390       1.15        ad {
    391       1.15        ad 
    392       1.26   thorpej 	return CV_WMESG(cv) != deadcv && CV_WMESG(cv) != NULL;
    393       1.15        ad }
    394