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locks.c revision 1.44
      1 /*	$NetBSD: locks.c,v 1.44 2010/12/01 17:22:51 pooka Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2007, 2008 Antti Kantee.  All Rights Reserved.
      5  *
      6  * Development of this software was supported by the
      7  * Finnish Cultural Foundation.
      8  *
      9  * Redistribution and use in source and binary forms, with or without
     10  * modification, are permitted provided that the following conditions
     11  * are met:
     12  * 1. Redistributions of source code must retain the above copyright
     13  *    notice, this list of conditions and the following disclaimer.
     14  * 2. Redistributions in binary form must reproduce the above copyright
     15  *    notice, this list of conditions and the following disclaimer in the
     16  *    documentation and/or other materials provided with the distribution.
     17  *
     18  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     19  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     20  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     21  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     22  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     23  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     24  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     25  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     26  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     27  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     28  * SUCH DAMAGE.
     29  */
     30 
     31 #include <sys/cdefs.h>
     32 __KERNEL_RCSID(0, "$NetBSD: locks.c,v 1.44 2010/12/01 17:22:51 pooka Exp $");
     33 
     34 #include <sys/param.h>
     35 #include <sys/kmem.h>
     36 #include <sys/mutex.h>
     37 #include <sys/rwlock.h>
     38 
     39 #include <rump/rumpuser.h>
     40 
     41 #include "rump_private.h"
     42 
     43 /*
     44  * We map locks to pthread routines.  The difference between kernel
     45  * and rumpuser routines is that while the kernel uses static
     46  * storage, rumpuser allocates the object from the heap.  This
     47  * indirection is necessary because we don't know the size of
     48  * pthread objects here.  It is also beneficial, since we can
     49  * be easily compatible with the kernel ABI because all kernel
     50  * objects regardless of machine architecture are always at least
     51  * the size of a pointer.  The downside, of course, is a performance
     52  * penalty.
     53  */
     54 
     55 #define RUMPMTX(mtx) (*(struct rumpuser_mtx **)(mtx))
     56 
     57 void
     58 mutex_init(kmutex_t *mtx, kmutex_type_t type, int ipl)
     59 {
     60 
     61 	CTASSERT(sizeof(kmutex_t) >= sizeof(void *));
     62 
     63 	rumpuser_mutex_init_kmutex((struct rumpuser_mtx **)mtx);
     64 }
     65 
     66 void
     67 mutex_destroy(kmutex_t *mtx)
     68 {
     69 
     70 	rumpuser_mutex_destroy(RUMPMTX(mtx));
     71 }
     72 
     73 void
     74 mutex_enter(kmutex_t *mtx)
     75 {
     76 
     77 	rumpuser_mutex_enter(RUMPMTX(mtx));
     78 }
     79 
     80 void
     81 mutex_spin_enter(kmutex_t *mtx)
     82 {
     83 
     84 	mutex_enter(mtx);
     85 }
     86 
     87 int
     88 mutex_tryenter(kmutex_t *mtx)
     89 {
     90 
     91 	return rumpuser_mutex_tryenter(RUMPMTX(mtx));
     92 }
     93 
     94 void
     95 mutex_exit(kmutex_t *mtx)
     96 {
     97 
     98 	rumpuser_mutex_exit(RUMPMTX(mtx));
     99 }
    100 
    101 void
    102 mutex_spin_exit(kmutex_t *mtx)
    103 {
    104 
    105 	mutex_exit(mtx);
    106 }
    107 
    108 int
    109 mutex_owned(kmutex_t *mtx)
    110 {
    111 
    112 	return mutex_owner(mtx) == curlwp;
    113 }
    114 
    115 struct lwp *
    116 mutex_owner(kmutex_t *mtx)
    117 {
    118 
    119 	return rumpuser_mutex_owner(RUMPMTX(mtx));
    120 }
    121 
    122 #define RUMPRW(rw) (*(struct rumpuser_rw **)(rw))
    123 
    124 /* reader/writer locks */
    125 
    126 void
    127 rw_init(krwlock_t *rw)
    128 {
    129 
    130 	CTASSERT(sizeof(krwlock_t) >= sizeof(void *));
    131 
    132 	rumpuser_rw_init((struct rumpuser_rw **)rw);
    133 }
    134 
    135 void
    136 rw_destroy(krwlock_t *rw)
    137 {
    138 
    139 	rumpuser_rw_destroy(RUMPRW(rw));
    140 }
    141 
    142 void
    143 rw_enter(krwlock_t *rw, const krw_t op)
    144 {
    145 
    146 	rumpuser_rw_enter(RUMPRW(rw), op == RW_WRITER);
    147 }
    148 
    149 int
    150 rw_tryenter(krwlock_t *rw, const krw_t op)
    151 {
    152 
    153 	return rumpuser_rw_tryenter(RUMPRW(rw), op == RW_WRITER);
    154 }
    155 
    156 void
    157 rw_exit(krwlock_t *rw)
    158 {
    159 
    160 	rumpuser_rw_exit(RUMPRW(rw));
    161 }
    162 
    163 /* always fails */
    164 int
    165 rw_tryupgrade(krwlock_t *rw)
    166 {
    167 
    168 	return 0;
    169 }
    170 
    171 int
    172 rw_write_held(krwlock_t *rw)
    173 {
    174 
    175 	return rumpuser_rw_wrheld(RUMPRW(rw));
    176 }
    177 
    178 int
    179 rw_read_held(krwlock_t *rw)
    180 {
    181 
    182 	return rumpuser_rw_rdheld(RUMPRW(rw));
    183 }
    184 
    185 int
    186 rw_lock_held(krwlock_t *rw)
    187 {
    188 
    189 	return rumpuser_rw_held(RUMPRW(rw));
    190 }
    191 
    192 /* curriculum vitaes */
    193 
    194 #define RUMPCV(cv) (*(struct rumpuser_cv **)(cv))
    195 
    196 void
    197 cv_init(kcondvar_t *cv, const char *msg)
    198 {
    199 
    200 	CTASSERT(sizeof(kcondvar_t) >= sizeof(void *));
    201 
    202 	rumpuser_cv_init((struct rumpuser_cv **)cv);
    203 }
    204 
    205 void
    206 cv_destroy(kcondvar_t *cv)
    207 {
    208 
    209 	rumpuser_cv_destroy(RUMPCV(cv));
    210 }
    211 
    212 void
    213 cv_wait(kcondvar_t *cv, kmutex_t *mtx)
    214 {
    215 
    216 	if (__predict_false(rump_threads == 0))
    217 		panic("cv_wait without threads");
    218 	rumpuser_cv_wait(RUMPCV(cv), RUMPMTX(mtx));
    219 }
    220 
    221 int
    222 cv_wait_sig(kcondvar_t *cv, kmutex_t *mtx)
    223 {
    224 
    225 	if (__predict_false(rump_threads == 0))
    226 		panic("cv_wait without threads");
    227 	rumpuser_cv_wait(RUMPCV(cv), RUMPMTX(mtx));
    228 	return 0;
    229 }
    230 
    231 int
    232 cv_timedwait(kcondvar_t *cv, kmutex_t *mtx, int ticks)
    233 {
    234 	struct timespec ts, tick;
    235 	extern int hz;
    236 
    237 	if (ticks == 0) {
    238 		cv_wait(cv, mtx);
    239 		return 0;
    240 	} else {
    241 		/*
    242 		 * XXX: this fetches rump kernel time, but
    243 		 * rumpuser_cv_timedwait uses host time.
    244 		 */
    245 		nanotime(&ts);
    246 		tick.tv_sec = ticks / hz;
    247 		tick.tv_nsec = (ticks % hz) * (1000000000/hz);
    248 		timespecadd(&ts, &tick, &ts);
    249 
    250 		if (rumpuser_cv_timedwait(RUMPCV(cv), RUMPMTX(mtx),
    251 		    ts.tv_sec, ts.tv_nsec))
    252 			return EWOULDBLOCK;
    253 		else
    254 			return 0;
    255 	}
    256 }
    257 
    258 int
    259 cv_timedwait_sig(kcondvar_t *cv, kmutex_t *mtx, int ticks)
    260 {
    261 
    262 	return cv_timedwait(cv, mtx, ticks);
    263 }
    264 
    265 void
    266 cv_signal(kcondvar_t *cv)
    267 {
    268 
    269 	rumpuser_cv_signal(RUMPCV(cv));
    270 }
    271 
    272 void
    273 cv_broadcast(kcondvar_t *cv)
    274 {
    275 
    276 	rumpuser_cv_broadcast(RUMPCV(cv));
    277 }
    278 
    279 bool
    280 cv_has_waiters(kcondvar_t *cv)
    281 {
    282 
    283 	return rumpuser_cv_has_waiters(RUMPCV(cv));
    284 }
    285 
    286 /* this is not much of an attempt, but ... */
    287 bool
    288 cv_is_valid(kcondvar_t *cv)
    289 {
    290 
    291 	return RUMPCV(cv) != NULL;
    292 }
    293