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locks.c revision 1.20.2.2
      1 /*	$NetBSD: locks.c,v 1.20.2.2 2009/03/03 18:34:07 skrll Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2008 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * Redistribution and use in source and binary forms, with or without
      8  * modification, are permitted provided that the following conditions
      9  * are met:
     10  * 1. Redistributions of source code must retain the above copyright
     11  *    notice, this list of conditions and the following disclaimer.
     12  * 2. Redistributions in binary form must reproduce the above copyright
     13  *    notice, this list of conditions and the following disclaimer in the
     14  *    documentation and/or other materials provided with the distribution.
     15  *
     16  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     17  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     18  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     19  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     20  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     21  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     22  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     23  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     24  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     25  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     26  * POSSIBILITY OF SUCH DAMAGE.
     27  */
     28 
     29 /*
     30  * Copyright (c) 2007, 2008 Antti Kantee.  All Rights Reserved.
     31  *
     32  * Development of this software was supported by the
     33  * Finnish Cultural Foundation.
     34  *
     35  * Redistribution and use in source and binary forms, with or without
     36  * modification, are permitted provided that the following conditions
     37  * are met:
     38  * 1. Redistributions of source code must retain the above copyright
     39  *    notice, this list of conditions and the following disclaimer.
     40  * 2. Redistributions in binary form must reproduce the above copyright
     41  *    notice, this list of conditions and the following disclaimer in the
     42  *    documentation and/or other materials provided with the distribution.
     43  *
     44  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     45  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     46  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     47  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     48  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     49  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     50  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     51  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     52  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     53  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     54  * SUCH DAMAGE.
     55  */
     56 
     57 #include <sys/cdefs.h>
     58 __KERNEL_RCSID(0, "$NetBSD: locks.c,v 1.20.2.2 2009/03/03 18:34:07 skrll Exp $");
     59 
     60 #include <sys/param.h>
     61 #include <sys/atomic.h>
     62 #include <sys/kmem.h>
     63 #include <sys/mutex.h>
     64 #include <sys/rwlock.h>
     65 
     66 #include <rump/rumpuser.h>
     67 
     68 #include "rump_private.h"
     69 
     70 /*
     71  * We map locks to pthread routines.  The difference between kernel
     72  * and rumpuser routines is that while the kernel uses static
     73  * storage, rumpuser allocates the object from the heap.  This
     74  * indirection is necessary because we don't know the size of
     75  * pthread objects here.  It is also benefitial, since we can
     76  * be easily compatible with the kernel ABI because all kernel
     77  * objects regardless of machine architecture are always at least
     78  * the size of a pointer.  The downside, of course, is a performance
     79  * penalty.
     80  */
     81 
     82 #define RUMPMTX(mtx) (*(struct rumpuser_mtx **)(mtx))
     83 
     84 void
     85 mutex_init(kmutex_t *mtx, kmutex_type_t type, int ipl)
     86 {
     87 
     88 	CTASSERT(sizeof(kmutex_t) >= sizeof(void *));
     89 
     90 	rumpuser_mutex_init((struct rumpuser_mtx **)mtx);
     91 }
     92 
     93 void
     94 mutex_destroy(kmutex_t *mtx)
     95 {
     96 
     97 	rumpuser_mutex_destroy(RUMPMTX(mtx));
     98 }
     99 
    100 void
    101 mutex_enter(kmutex_t *mtx)
    102 {
    103 
    104 	rumpuser_mutex_enter(RUMPMTX(mtx));
    105 }
    106 
    107 void
    108 mutex_spin_enter(kmutex_t *mtx)
    109 {
    110 
    111 	if (__predict_true(mtx != RUMP_LMUTEX_MAGIC))
    112 		mutex_enter(mtx);
    113 }
    114 
    115 int
    116 mutex_tryenter(kmutex_t *mtx)
    117 {
    118 
    119 	return rumpuser_mutex_tryenter(RUMPMTX(mtx));
    120 }
    121 
    122 void
    123 mutex_exit(kmutex_t *mtx)
    124 {
    125 
    126 	rumpuser_mutex_exit(RUMPMTX(mtx));
    127 }
    128 
    129 void
    130 mutex_spin_exit(kmutex_t *mtx)
    131 {
    132 
    133 	if (__predict_true(mtx != RUMP_LMUTEX_MAGIC))
    134 		mutex_exit(mtx);
    135 }
    136 
    137 int
    138 mutex_owned(kmutex_t *mtx)
    139 {
    140 
    141 	return rumpuser_mutex_held(RUMPMTX(mtx));
    142 }
    143 
    144 #define RUMPRW(rw) (*(struct rumpuser_rw **)(rw))
    145 
    146 /* reader/writer locks */
    147 
    148 void
    149 rw_init(krwlock_t *rw)
    150 {
    151 
    152 	CTASSERT(sizeof(krwlock_t) >= sizeof(void *));
    153 
    154 	rumpuser_rw_init((struct rumpuser_rw **)rw);
    155 }
    156 
    157 void
    158 rw_destroy(krwlock_t *rw)
    159 {
    160 
    161 	rumpuser_rw_destroy(RUMPRW(rw));
    162 }
    163 
    164 void
    165 rw_enter(krwlock_t *rw, const krw_t op)
    166 {
    167 
    168 	rumpuser_rw_enter(RUMPRW(rw), op == RW_WRITER);
    169 }
    170 
    171 int
    172 rw_tryenter(krwlock_t *rw, const krw_t op)
    173 {
    174 
    175 	return rumpuser_rw_tryenter(RUMPRW(rw), op == RW_WRITER);
    176 }
    177 
    178 void
    179 rw_exit(krwlock_t *rw)
    180 {
    181 
    182 	rumpuser_rw_exit(RUMPRW(rw));
    183 }
    184 
    185 /* always fails */
    186 int
    187 rw_tryupgrade(krwlock_t *rw)
    188 {
    189 
    190 	return 0;
    191 }
    192 
    193 int
    194 rw_write_held(krwlock_t *rw)
    195 {
    196 
    197 	return rumpuser_rw_wrheld(RUMPRW(rw));
    198 }
    199 
    200 int
    201 rw_read_held(krwlock_t *rw)
    202 {
    203 
    204 	return rumpuser_rw_rdheld(RUMPRW(rw));
    205 }
    206 
    207 int
    208 rw_lock_held(krwlock_t *rw)
    209 {
    210 
    211 	return rumpuser_rw_held(RUMPRW(rw));
    212 }
    213 
    214 /* curriculum vitaes */
    215 
    216 #define RUMPCV(cv) (*(struct rumpuser_cv **)(cv))
    217 
    218 void
    219 cv_init(kcondvar_t *cv, const char *msg)
    220 {
    221 
    222 	CTASSERT(sizeof(kcondvar_t) >= sizeof(void *));
    223 
    224 	rumpuser_cv_init((struct rumpuser_cv **)cv);
    225 }
    226 
    227 void
    228 cv_destroy(kcondvar_t *cv)
    229 {
    230 
    231 	rumpuser_cv_destroy(RUMPCV(cv));
    232 }
    233 
    234 void
    235 cv_wait(kcondvar_t *cv, kmutex_t *mtx)
    236 {
    237 
    238 	rumpuser_cv_wait(RUMPCV(cv), RUMPMTX(mtx));
    239 }
    240 
    241 int
    242 cv_wait_sig(kcondvar_t *cv, kmutex_t *mtx)
    243 {
    244 
    245 	rumpuser_cv_wait(RUMPCV(cv), RUMPMTX(mtx));
    246 	return 0;
    247 }
    248 
    249 int
    250 cv_timedwait(kcondvar_t *cv, kmutex_t *mtx, int ticks)
    251 {
    252 	struct timespec ts, tick;
    253 	extern int hz;
    254 
    255 	nanotime(&ts);
    256 	tick.tv_sec = ticks / hz;
    257 	tick.tv_nsec = (ticks % hz) * (1000000000/hz);
    258 	timespecadd(&ts, &tick, &ts);
    259 
    260 	if (ticks == 0) {
    261 		cv_wait(cv, mtx);
    262 		return 0;
    263 	} else {
    264 		return rumpuser_cv_timedwait(RUMPCV(cv), RUMPMTX(mtx), &ts);
    265 	}
    266 }
    267 
    268 int
    269 cv_timedwait_sig(kcondvar_t *cv, kmutex_t *mtx, int ticks)
    270 {
    271 
    272 	return cv_timedwait(cv, mtx, ticks);
    273 }
    274 
    275 void
    276 cv_signal(kcondvar_t *cv)
    277 {
    278 
    279 	rumpuser_cv_signal(RUMPCV(cv));
    280 }
    281 
    282 void
    283 cv_broadcast(kcondvar_t *cv)
    284 {
    285 
    286 	rumpuser_cv_broadcast(RUMPCV(cv));
    287 }
    288 
    289 bool
    290 cv_has_waiters(kcondvar_t *cv)
    291 {
    292 
    293 	return rumpuser_cv_has_waiters(RUMPCV(cv));
    294 }
    295 
    296 /*
    297  * giant lock
    298  */
    299 
    300 static volatile int lockcnt;
    301 void
    302 _kernel_lock(int nlocks)
    303 {
    304 
    305 	while (nlocks--) {
    306 		rumpuser_mutex_enter(rump_giantlock);
    307 		lockcnt++;
    308 	}
    309 }
    310 
    311 void
    312 _kernel_unlock(int nlocks, int *countp)
    313 {
    314 
    315 	if (!rumpuser_mutex_held(rump_giantlock)) {
    316 		KASSERT(nlocks == 0);
    317 		if (countp)
    318 			*countp = 0;
    319 		return;
    320 	}
    321 
    322 	if (countp)
    323 		*countp = lockcnt;
    324 	if (nlocks == 0)
    325 		nlocks = lockcnt;
    326 	if (nlocks == -1) {
    327 		KASSERT(lockcnt == 1);
    328 		nlocks = 1;
    329 	}
    330 	KASSERT(nlocks <= lockcnt);
    331 	while (nlocks--) {
    332 		lockcnt--;
    333 		rumpuser_mutex_exit(rump_giantlock);
    334 	}
    335 }
    336 
    337 struct kmutexobj {
    338 	kmutex_t	mo_lock;
    339 	u_int		mo_refcnt;
    340 };
    341 
    342 kmutex_t *
    343 mutex_obj_alloc(kmutex_type_t type, int ipl)
    344 {
    345 	struct kmutexobj *mo;
    346 
    347 	mo = kmem_alloc(sizeof(*mo), KM_SLEEP);
    348 	mutex_init(&mo->mo_lock, type, ipl);
    349 	mo->mo_refcnt = 1;
    350 
    351 	return (kmutex_t *)mo;
    352 }
    353 
    354 void
    355 mutex_obj_hold(kmutex_t *lock)
    356 {
    357 	struct kmutexobj *mo = (struct kmutexobj *)lock;
    358 
    359 	atomic_inc_uint(&mo->mo_refcnt);
    360 }
    361 
    362 bool
    363 mutex_obj_free(kmutex_t *lock)
    364 {
    365 	struct kmutexobj *mo = (struct kmutexobj *)lock;
    366 
    367 	if (atomic_dec_uint_nv(&mo->mo_refcnt) > 0) {
    368 		return false;
    369 	}
    370 	mutex_destroy(&mo->mo_lock);
    371 	kmem_free(mo, sizeof(*mo));
    372 	return true;
    373 }
    374