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rumpuser_pth.c revision 1.25
      1  1.25  pooka /*	$NetBSD: rumpuser_pth.c,v 1.25 2013/05/02 21:35:19 pooka Exp $	*/
      2   1.1  pooka 
      3   1.1  pooka /*
      4   1.1  pooka  * Copyright (c) 2007-2010 Antti Kantee.  All Rights Reserved.
      5   1.1  pooka  *
      6   1.1  pooka  * Redistribution and use in source and binary forms, with or without
      7   1.1  pooka  * modification, are permitted provided that the following conditions
      8   1.1  pooka  * are met:
      9   1.1  pooka  * 1. Redistributions of source code must retain the above copyright
     10   1.1  pooka  *    notice, this list of conditions and the following disclaimer.
     11   1.1  pooka  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.1  pooka  *    notice, this list of conditions and the following disclaimer in the
     13   1.1  pooka  *    documentation and/or other materials provided with the distribution.
     14   1.1  pooka  *
     15   1.1  pooka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     16   1.1  pooka  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     17   1.1  pooka  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     18   1.1  pooka  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     19   1.1  pooka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     20   1.1  pooka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     21   1.1  pooka  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     22   1.1  pooka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     23   1.1  pooka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24   1.1  pooka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25   1.1  pooka  * SUCH DAMAGE.
     26   1.1  pooka  */
     27   1.1  pooka 
     28   1.8  pooka #include "rumpuser_port.h"
     29   1.8  pooka 
     30   1.1  pooka #if !defined(lint)
     31  1.25  pooka __RCSID("$NetBSD: rumpuser_pth.c,v 1.25 2013/05/02 21:35:19 pooka Exp $");
     32   1.1  pooka #endif /* !lint */
     33   1.1  pooka 
     34  1.23  pooka #include <sys/queue.h>
     35  1.23  pooka 
     36   1.1  pooka #include <assert.h>
     37   1.1  pooka #include <errno.h>
     38   1.8  pooka #include <fcntl.h>
     39   1.1  pooka #include <pthread.h>
     40   1.1  pooka #include <stdlib.h>
     41   1.1  pooka #include <stdio.h>
     42   1.1  pooka #include <string.h>
     43   1.1  pooka #include <stdint.h>
     44   1.1  pooka #include <unistd.h>
     45   1.1  pooka 
     46   1.1  pooka #include <rump/rumpuser.h>
     47   1.1  pooka 
     48   1.1  pooka #include "rumpuser_int.h"
     49   1.1  pooka 
     50   1.1  pooka static pthread_key_t curlwpkey;
     51   1.1  pooka 
     52   1.1  pooka struct rumpuser_mtx {
     53   1.1  pooka 	pthread_mutex_t pthmtx;
     54   1.4  pooka 	struct lwp *owner;
     55  1.13  pooka 	int flags;
     56   1.1  pooka };
     57   1.1  pooka 
     58  1.23  pooka #define RURW_AMWRITER(rw) (rw->writer == rumpuser_curlwp()		\
     59   1.1  pooka 				&& rw->readers == -1)
     60   1.1  pooka #define RURW_HASREAD(rw)  (rw->readers > 0)
     61   1.1  pooka 
     62   1.1  pooka #define RURW_SETWRITE(rw)						\
     63   1.1  pooka do {									\
     64   1.1  pooka 	assert(rw->readers == 0);					\
     65  1.23  pooka 	rw->writer = rumpuser_curlwp();					\
     66   1.1  pooka 	rw->readers = -1;						\
     67   1.1  pooka } while (/*CONSTCOND*/0)
     68   1.1  pooka #define RURW_CLRWRITE(rw)						\
     69   1.1  pooka do {									\
     70  1.22  pooka 	assert(RURW_AMWRITER(rw));					\
     71   1.1  pooka 	rw->readers = 0;						\
     72  1.22  pooka 	rw->writer = NULL;						\
     73   1.1  pooka } while (/*CONSTCOND*/0)
     74   1.1  pooka #define RURW_INCREAD(rw)						\
     75   1.1  pooka do {									\
     76   1.1  pooka 	pthread_spin_lock(&rw->spin);					\
     77   1.1  pooka 	assert(rw->readers >= 0);					\
     78   1.1  pooka 	++(rw)->readers;						\
     79   1.1  pooka 	pthread_spin_unlock(&rw->spin);					\
     80   1.1  pooka } while (/*CONSTCOND*/0)
     81   1.1  pooka #define RURW_DECREAD(rw)						\
     82   1.1  pooka do {									\
     83   1.1  pooka 	pthread_spin_lock(&rw->spin);					\
     84   1.1  pooka 	assert(rw->readers > 0);					\
     85   1.1  pooka 	--(rw)->readers;						\
     86   1.1  pooka 	pthread_spin_unlock(&rw->spin);					\
     87   1.1  pooka } while (/*CONSTCOND*/0)
     88   1.1  pooka 
     89   1.1  pooka struct rumpuser_rw {
     90   1.1  pooka 	pthread_rwlock_t pthrw;
     91   1.1  pooka 	pthread_spinlock_t spin;
     92   1.1  pooka 	int readers;
     93   1.4  pooka 	struct lwp *writer;
     94   1.1  pooka };
     95   1.1  pooka 
     96   1.1  pooka struct rumpuser_cv {
     97   1.1  pooka 	pthread_cond_t pthcv;
     98   1.1  pooka 	int nwaiters;
     99   1.1  pooka };
    100   1.1  pooka 
    101  1.14  pooka void
    102  1.14  pooka rumpuser__thrinit(void)
    103  1.14  pooka {
    104  1.14  pooka 
    105  1.14  pooka 	pthread_key_create(&curlwpkey, NULL);
    106  1.14  pooka }
    107   1.1  pooka 
    108   1.1  pooka int
    109   1.3  pooka rumpuser_thread_create(void *(*f)(void *), void *arg, const char *thrname,
    110  1.21  pooka 	int joinable, int priority, int cpuidx, void **ptcookie)
    111   1.1  pooka {
    112   1.1  pooka 	pthread_t ptid;
    113   1.3  pooka 	pthread_t *ptidp;
    114   1.3  pooka 	pthread_attr_t pattr;
    115   1.1  pooka 	int rv;
    116   1.1  pooka 
    117   1.3  pooka 	if ((rv = pthread_attr_init(&pattr)) != 0)
    118   1.3  pooka 		return rv;
    119   1.3  pooka 
    120   1.3  pooka 	if (joinable) {
    121   1.3  pooka 		NOFAIL(ptidp = malloc(sizeof(*ptidp)));
    122   1.3  pooka 		pthread_attr_setdetachstate(&pattr, PTHREAD_CREATE_JOINABLE);
    123   1.3  pooka 	} else {
    124   1.3  pooka 		ptidp = &ptid;
    125   1.3  pooka 		pthread_attr_setdetachstate(&pattr, PTHREAD_CREATE_DETACHED);
    126   1.3  pooka 	}
    127   1.3  pooka 
    128   1.3  pooka 	rv = pthread_create(ptidp, &pattr, f, arg);
    129   1.9  pooka #if defined(__NetBSD__)
    130   1.1  pooka 	if (rv == 0 && thrname)
    131   1.1  pooka 		pthread_setname_np(ptid, thrname, NULL);
    132   1.9  pooka #elif defined(__linux__)
    133  1.12  pooka 	/*
    134  1.12  pooka 	 * The pthread_setname_np() call varies from one Linux distro to
    135  1.12  pooka 	 * another.  Comment out the call pending autoconf support.
    136  1.12  pooka 	 */
    137  1.12  pooka #if 0
    138   1.9  pooka 	if (rv == 0 && thrname)
    139   1.9  pooka 		pthread_setname_np(ptid, thrname);
    140   1.1  pooka #endif
    141  1.12  pooka #endif
    142   1.1  pooka 
    143   1.3  pooka 	if (joinable) {
    144   1.3  pooka 		assert(ptcookie);
    145   1.3  pooka 		*ptcookie = ptidp;
    146   1.3  pooka 	}
    147   1.3  pooka 
    148   1.3  pooka 	pthread_attr_destroy(&pattr);
    149   1.3  pooka 
    150  1.20  pooka 	ET(rv);
    151   1.1  pooka }
    152   1.1  pooka 
    153   1.1  pooka __dead void
    154   1.1  pooka rumpuser_thread_exit(void)
    155   1.1  pooka {
    156   1.1  pooka 
    157   1.1  pooka 	pthread_exit(NULL);
    158   1.1  pooka }
    159   1.1  pooka 
    160   1.3  pooka int
    161   1.3  pooka rumpuser_thread_join(void *ptcookie)
    162   1.3  pooka {
    163   1.3  pooka 	pthread_t *pt = ptcookie;
    164   1.3  pooka 	int rv;
    165   1.3  pooka 
    166   1.3  pooka 	KLOCK_WRAP((rv = pthread_join(*pt, NULL)));
    167   1.3  pooka 	if (rv == 0)
    168   1.3  pooka 		free(pt);
    169   1.3  pooka 
    170  1.20  pooka 	ET(rv);
    171   1.3  pooka }
    172   1.3  pooka 
    173   1.1  pooka void
    174  1.15  pooka rumpuser_mutex_init(struct rumpuser_mtx **mtx, int flags)
    175   1.1  pooka {
    176   1.1  pooka 	pthread_mutexattr_t att;
    177   1.1  pooka 
    178   1.1  pooka 	NOFAIL(*mtx = malloc(sizeof(struct rumpuser_mtx)));
    179   1.1  pooka 
    180   1.1  pooka 	pthread_mutexattr_init(&att);
    181   1.1  pooka 	pthread_mutexattr_settype(&att, PTHREAD_MUTEX_ERRORCHECK);
    182   1.1  pooka 	NOFAIL_ERRNO(pthread_mutex_init(&((*mtx)->pthmtx), &att));
    183   1.1  pooka 	pthread_mutexattr_destroy(&att);
    184   1.1  pooka 
    185   1.1  pooka 	(*mtx)->owner = NULL;
    186  1.15  pooka 	assert(flags != 0);
    187  1.15  pooka 	(*mtx)->flags = flags;
    188   1.4  pooka }
    189   1.4  pooka 
    190   1.1  pooka static void
    191   1.1  pooka mtxenter(struct rumpuser_mtx *mtx)
    192   1.1  pooka {
    193   1.1  pooka 
    194  1.15  pooka 	if (!(mtx->flags & RUMPUSER_MTX_KMUTEX))
    195   1.4  pooka 		return;
    196   1.4  pooka 
    197   1.4  pooka 	assert(mtx->owner == NULL);
    198  1.23  pooka 	mtx->owner = rumpuser_curlwp();
    199   1.1  pooka }
    200   1.1  pooka 
    201   1.1  pooka static void
    202   1.1  pooka mtxexit(struct rumpuser_mtx *mtx)
    203   1.1  pooka {
    204   1.1  pooka 
    205  1.15  pooka 	if (!(mtx->flags & RUMPUSER_MTX_KMUTEX))
    206   1.4  pooka 		return;
    207   1.4  pooka 
    208   1.1  pooka 	assert(mtx->owner != NULL);
    209   1.4  pooka 	mtx->owner = NULL;
    210   1.1  pooka }
    211   1.1  pooka 
    212   1.1  pooka void
    213   1.1  pooka rumpuser_mutex_enter(struct rumpuser_mtx *mtx)
    214   1.1  pooka {
    215   1.1  pooka 
    216  1.15  pooka 	if (mtx->flags & RUMPUSER_MTX_SPIN) {
    217  1.13  pooka 		rumpuser_mutex_enter_nowrap(mtx);
    218  1.13  pooka 		return;
    219  1.13  pooka 	}
    220  1.13  pooka 
    221  1.15  pooka 	assert(mtx->flags & RUMPUSER_MTX_KMUTEX);
    222   1.1  pooka 	if (pthread_mutex_trylock(&mtx->pthmtx) != 0)
    223   1.1  pooka 		KLOCK_WRAP(NOFAIL_ERRNO(pthread_mutex_lock(&mtx->pthmtx)));
    224   1.1  pooka 	mtxenter(mtx);
    225   1.1  pooka }
    226   1.1  pooka 
    227   1.1  pooka void
    228   1.1  pooka rumpuser_mutex_enter_nowrap(struct rumpuser_mtx *mtx)
    229   1.1  pooka {
    230   1.1  pooka 
    231  1.15  pooka 	assert(mtx->flags & RUMPUSER_MTX_SPIN);
    232   1.1  pooka 	NOFAIL_ERRNO(pthread_mutex_lock(&mtx->pthmtx));
    233   1.1  pooka 	mtxenter(mtx);
    234   1.1  pooka }
    235   1.1  pooka 
    236   1.1  pooka int
    237   1.1  pooka rumpuser_mutex_tryenter(struct rumpuser_mtx *mtx)
    238   1.1  pooka {
    239   1.1  pooka 	int rv;
    240   1.1  pooka 
    241   1.1  pooka 	rv = pthread_mutex_trylock(&mtx->pthmtx);
    242   1.1  pooka 	if (rv == 0) {
    243   1.1  pooka 		mtxenter(mtx);
    244   1.1  pooka 	}
    245   1.1  pooka 
    246  1.20  pooka 	ET(rv);
    247   1.1  pooka }
    248   1.1  pooka 
    249   1.1  pooka void
    250   1.1  pooka rumpuser_mutex_exit(struct rumpuser_mtx *mtx)
    251   1.1  pooka {
    252   1.1  pooka 
    253   1.1  pooka 	mtxexit(mtx);
    254   1.1  pooka 	NOFAIL_ERRNO(pthread_mutex_unlock(&mtx->pthmtx));
    255   1.1  pooka }
    256   1.1  pooka 
    257   1.1  pooka void
    258   1.1  pooka rumpuser_mutex_destroy(struct rumpuser_mtx *mtx)
    259   1.1  pooka {
    260   1.1  pooka 
    261   1.1  pooka 	NOFAIL_ERRNO(pthread_mutex_destroy(&mtx->pthmtx));
    262   1.1  pooka 	free(mtx);
    263   1.1  pooka }
    264   1.1  pooka 
    265  1.19  pooka void
    266  1.19  pooka rumpuser_mutex_owner(struct rumpuser_mtx *mtx, struct lwp **lp)
    267   1.1  pooka {
    268   1.1  pooka 
    269  1.15  pooka 	if (__predict_false(!(mtx->flags & RUMPUSER_MTX_KMUTEX))) {
    270   1.4  pooka 		printf("panic: rumpuser_mutex_held unsupported on non-kmtx\n");
    271   1.4  pooka 		abort();
    272   1.4  pooka 	}
    273   1.4  pooka 
    274  1.19  pooka 	*lp = mtx->owner;
    275   1.1  pooka }
    276   1.1  pooka 
    277   1.1  pooka void
    278   1.1  pooka rumpuser_rw_init(struct rumpuser_rw **rw)
    279   1.1  pooka {
    280   1.1  pooka 
    281   1.1  pooka 	NOFAIL(*rw = malloc(sizeof(struct rumpuser_rw)));
    282   1.1  pooka 	NOFAIL_ERRNO(pthread_rwlock_init(&((*rw)->pthrw), NULL));
    283  1.10  pooka 	NOFAIL_ERRNO(pthread_spin_init(&((*rw)->spin),PTHREAD_PROCESS_PRIVATE));
    284   1.1  pooka 	(*rw)->readers = 0;
    285   1.1  pooka 	(*rw)->writer = NULL;
    286   1.1  pooka }
    287   1.1  pooka 
    288   1.1  pooka void
    289  1.25  pooka rumpuser_rw_enter(struct rumpuser_rw *rw, const enum rumprwlock lk)
    290   1.1  pooka {
    291   1.1  pooka 
    292  1.25  pooka 	switch (lk) {
    293  1.25  pooka 	case RUMPUSER_RW_WRITER:
    294   1.1  pooka 		if (pthread_rwlock_trywrlock(&rw->pthrw) != 0)
    295   1.1  pooka 			KLOCK_WRAP(NOFAIL_ERRNO(
    296   1.1  pooka 			    pthread_rwlock_wrlock(&rw->pthrw)));
    297   1.1  pooka 		RURW_SETWRITE(rw);
    298  1.25  pooka 		break;
    299  1.25  pooka 	case RUMPUSER_RW_READER:
    300   1.1  pooka 		if (pthread_rwlock_tryrdlock(&rw->pthrw) != 0)
    301   1.1  pooka 			KLOCK_WRAP(NOFAIL_ERRNO(
    302   1.1  pooka 			    pthread_rwlock_rdlock(&rw->pthrw)));
    303   1.1  pooka 		RURW_INCREAD(rw);
    304  1.25  pooka 		break;
    305   1.1  pooka 	}
    306   1.1  pooka }
    307   1.1  pooka 
    308   1.1  pooka int
    309  1.25  pooka rumpuser_rw_tryenter(struct rumpuser_rw *rw, const enum rumprwlock lk)
    310   1.1  pooka {
    311   1.1  pooka 	int rv;
    312   1.1  pooka 
    313  1.25  pooka 	switch (lk) {
    314  1.25  pooka 	case RUMPUSER_RW_WRITER:
    315   1.1  pooka 		rv = pthread_rwlock_trywrlock(&rw->pthrw);
    316   1.1  pooka 		if (rv == 0)
    317   1.1  pooka 			RURW_SETWRITE(rw);
    318  1.25  pooka 		break;
    319  1.25  pooka 	case RUMPUSER_RW_READER:
    320   1.1  pooka 		rv = pthread_rwlock_tryrdlock(&rw->pthrw);
    321   1.1  pooka 		if (rv == 0)
    322   1.1  pooka 			RURW_INCREAD(rw);
    323  1.25  pooka 		break;
    324  1.25  pooka 	default:
    325  1.25  pooka 		rv = EINVAL;
    326  1.25  pooka 		break;
    327   1.1  pooka 	}
    328   1.1  pooka 
    329  1.20  pooka 	ET(rv);
    330   1.1  pooka }
    331   1.1  pooka 
    332  1.25  pooka int
    333  1.25  pooka rumpuser_rw_tryupgrade(struct rumpuser_rw *rw)
    334  1.25  pooka {
    335  1.25  pooka 
    336  1.25  pooka 	/* not supported by pthreads */
    337  1.25  pooka 	ET(EBUSY);
    338  1.25  pooka }
    339  1.25  pooka 
    340  1.25  pooka void
    341  1.25  pooka rumpuser_rw_downgrade(struct rumpuser_rw *rw)
    342  1.25  pooka {
    343  1.25  pooka 
    344  1.25  pooka 	/*
    345  1.25  pooka 	 * I guess this is not strictly speaking correct,
    346  1.25  pooka 	 * but the option is to provide a complete implementation
    347  1.25  pooka 	 * of rwlocks here, or at least wrap acquiry in 1) lock
    348  1.25  pooka 	 * 2) check if someone is downgrading. if not, we're done
    349  1.25  pooka 	 * 3) unlock 4) yield 5) goto 1.
    350  1.25  pooka 	 */
    351  1.25  pooka 	rumpuser_rw_exit(rw);
    352  1.25  pooka 	rumpuser_rw_enter(rw, RUMPUSER_RW_READER);
    353  1.25  pooka }
    354  1.25  pooka 
    355   1.1  pooka void
    356   1.1  pooka rumpuser_rw_exit(struct rumpuser_rw *rw)
    357   1.1  pooka {
    358   1.1  pooka 
    359   1.1  pooka 	if (RURW_HASREAD(rw))
    360   1.1  pooka 		RURW_DECREAD(rw);
    361   1.1  pooka 	else
    362   1.1  pooka 		RURW_CLRWRITE(rw);
    363   1.1  pooka 	NOFAIL_ERRNO(pthread_rwlock_unlock(&rw->pthrw));
    364   1.1  pooka }
    365   1.1  pooka 
    366   1.1  pooka void
    367   1.1  pooka rumpuser_rw_destroy(struct rumpuser_rw *rw)
    368   1.1  pooka {
    369   1.1  pooka 
    370   1.1  pooka 	NOFAIL_ERRNO(pthread_rwlock_destroy(&rw->pthrw));
    371   1.1  pooka 	NOFAIL_ERRNO(pthread_spin_destroy(&rw->spin));
    372   1.1  pooka 	free(rw);
    373   1.1  pooka }
    374   1.1  pooka 
    375  1.19  pooka void
    376  1.25  pooka rumpuser_rw_held(struct rumpuser_rw *rw, const enum rumprwlock lk, int *rv)
    377   1.1  pooka {
    378   1.1  pooka 
    379  1.25  pooka 	switch (lk) {
    380  1.25  pooka 	case RUMPUSER_RW_WRITER:
    381  1.25  pooka 		*rv = RURW_AMWRITER(rw);
    382  1.25  pooka 		break;
    383  1.25  pooka 	case RUMPUSER_RW_READER:
    384  1.25  pooka 		*rv = RURW_HASREAD(rw);
    385  1.25  pooka 		break;
    386  1.25  pooka 	}
    387   1.1  pooka }
    388   1.1  pooka 
    389   1.1  pooka void
    390   1.1  pooka rumpuser_cv_init(struct rumpuser_cv **cv)
    391   1.1  pooka {
    392   1.1  pooka 
    393   1.1  pooka 	NOFAIL(*cv = malloc(sizeof(struct rumpuser_cv)));
    394   1.1  pooka 	NOFAIL_ERRNO(pthread_cond_init(&((*cv)->pthcv), NULL));
    395   1.1  pooka 	(*cv)->nwaiters = 0;
    396   1.1  pooka }
    397   1.1  pooka 
    398   1.1  pooka void
    399   1.1  pooka rumpuser_cv_destroy(struct rumpuser_cv *cv)
    400   1.1  pooka {
    401   1.1  pooka 
    402   1.1  pooka 	NOFAIL_ERRNO(pthread_cond_destroy(&cv->pthcv));
    403   1.1  pooka 	free(cv);
    404   1.1  pooka }
    405   1.1  pooka 
    406  1.24  pooka static void
    407  1.24  pooka cv_unschedule(struct rumpuser_mtx *mtx, int *nlocks)
    408  1.24  pooka {
    409  1.24  pooka 
    410  1.24  pooka 	rumpkern_unsched(nlocks, mtx);
    411  1.24  pooka 	mtxexit(mtx);
    412  1.24  pooka }
    413  1.24  pooka 
    414  1.24  pooka static void
    415  1.24  pooka cv_reschedule(struct rumpuser_mtx *mtx, int nlocks)
    416  1.24  pooka {
    417  1.24  pooka 
    418  1.24  pooka 	/*
    419  1.24  pooka 	 * If the cv interlock is a spin mutex, we must first release
    420  1.24  pooka 	 * the mutex that was reacquired by pthread_cond_wait(),
    421  1.24  pooka 	 * acquire the CPU context and only then relock the mutex.
    422  1.24  pooka 	 * This is to preserve resource allocation order so that
    423  1.24  pooka 	 * we don't deadlock.  Non-spinning mutexes don't have this
    424  1.24  pooka 	 * problem since they don't use a hold-and-wait approach
    425  1.24  pooka 	 * to acquiring the mutex wrt the rump kernel CPU context.
    426  1.24  pooka 	 *
    427  1.24  pooka 	 * The more optimal solution would be to rework rumpkern_sched()
    428  1.24  pooka 	 * so that it's possible to tell the scheduler
    429  1.24  pooka 	 * "if you need to block, drop this lock first", but I'm not
    430  1.24  pooka 	 * going poking there without some numbers on how often this
    431  1.24  pooka 	 * path is taken for spin mutexes.
    432  1.24  pooka 	 */
    433  1.24  pooka 	if ((mtx->flags & (RUMPUSER_MTX_SPIN | RUMPUSER_MTX_KMUTEX)) ==
    434  1.24  pooka 	    (RUMPUSER_MTX_SPIN | RUMPUSER_MTX_KMUTEX)) {
    435  1.24  pooka 		NOFAIL_ERRNO(pthread_mutex_unlock(&mtx->pthmtx));
    436  1.24  pooka 		rumpkern_sched(nlocks, mtx);
    437  1.24  pooka 		rumpuser_mutex_enter_nowrap(mtx);
    438  1.24  pooka 	} else {
    439  1.24  pooka 		mtxenter(mtx);
    440  1.24  pooka 		rumpkern_sched(nlocks, mtx);
    441  1.24  pooka 	}
    442  1.24  pooka }
    443  1.24  pooka 
    444   1.1  pooka void
    445   1.1  pooka rumpuser_cv_wait(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx)
    446   1.1  pooka {
    447   1.2  pooka 	int nlocks;
    448   1.1  pooka 
    449   1.1  pooka 	cv->nwaiters++;
    450  1.24  pooka 	cv_unschedule(mtx, &nlocks);
    451   1.2  pooka 	NOFAIL_ERRNO(pthread_cond_wait(&cv->pthcv, &mtx->pthmtx));
    452  1.24  pooka 	cv_reschedule(mtx, nlocks);
    453   1.1  pooka 	cv->nwaiters--;
    454   1.1  pooka }
    455   1.1  pooka 
    456   1.1  pooka void
    457   1.1  pooka rumpuser_cv_wait_nowrap(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx)
    458   1.1  pooka {
    459   1.1  pooka 
    460   1.1  pooka 	cv->nwaiters++;
    461   1.1  pooka 	mtxexit(mtx);
    462   1.1  pooka 	NOFAIL_ERRNO(pthread_cond_wait(&cv->pthcv, &mtx->pthmtx));
    463   1.1  pooka 	mtxenter(mtx);
    464   1.1  pooka 	cv->nwaiters--;
    465   1.1  pooka }
    466   1.1  pooka 
    467   1.1  pooka int
    468   1.1  pooka rumpuser_cv_timedwait(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx,
    469   1.1  pooka 	int64_t sec, int64_t nsec)
    470   1.1  pooka {
    471   1.1  pooka 	struct timespec ts;
    472   1.2  pooka 	int rv, nlocks;
    473   1.1  pooka 
    474  1.16  pooka 	/*
    475  1.16  pooka 	 * Get clock already here, just in case we will be put to sleep
    476  1.16  pooka 	 * after releasing the kernel context.
    477  1.16  pooka 	 *
    478  1.16  pooka 	 * The condition variables should use CLOCK_MONOTONIC, but since
    479  1.16  pooka 	 * that's not available everywhere, leave it for another day.
    480  1.16  pooka 	 */
    481  1.16  pooka 	clock_gettime(CLOCK_REALTIME, &ts);
    482   1.1  pooka 
    483   1.1  pooka 	cv->nwaiters++;
    484  1.24  pooka 	cv_unschedule(mtx, &nlocks);
    485  1.16  pooka 
    486  1.16  pooka 	ts.tv_sec += sec;
    487  1.16  pooka 	ts.tv_nsec += nsec;
    488  1.16  pooka 	if (ts.tv_nsec >= 1000*1000*1000) {
    489  1.16  pooka 		ts.tv_sec++;
    490  1.16  pooka 		ts.tv_nsec -= 1000*1000*1000;
    491  1.16  pooka 	}
    492   1.2  pooka 	rv = pthread_cond_timedwait(&cv->pthcv, &mtx->pthmtx, &ts);
    493  1.24  pooka 
    494  1.24  pooka 	cv_reschedule(mtx, nlocks);
    495   1.1  pooka 	cv->nwaiters--;
    496   1.1  pooka 
    497  1.20  pooka 	ET(rv);
    498   1.1  pooka }
    499   1.1  pooka 
    500   1.1  pooka void
    501   1.1  pooka rumpuser_cv_signal(struct rumpuser_cv *cv)
    502   1.1  pooka {
    503   1.1  pooka 
    504   1.1  pooka 	NOFAIL_ERRNO(pthread_cond_signal(&cv->pthcv));
    505   1.1  pooka }
    506   1.1  pooka 
    507   1.1  pooka void
    508   1.1  pooka rumpuser_cv_broadcast(struct rumpuser_cv *cv)
    509   1.1  pooka {
    510   1.1  pooka 
    511   1.1  pooka 	NOFAIL_ERRNO(pthread_cond_broadcast(&cv->pthcv));
    512   1.1  pooka }
    513   1.1  pooka 
    514  1.19  pooka void
    515  1.19  pooka rumpuser_cv_has_waiters(struct rumpuser_cv *cv, int *nwaiters)
    516   1.1  pooka {
    517   1.1  pooka 
    518  1.19  pooka 	*nwaiters = cv->nwaiters;
    519   1.1  pooka }
    520   1.1  pooka 
    521   1.1  pooka /*
    522   1.1  pooka  * curlwp
    523   1.1  pooka  */
    524   1.1  pooka 
    525  1.23  pooka /*
    526  1.23  pooka  * the if0'd curlwp implementation is not used by this hypervisor,
    527  1.23  pooka  * but serves as test code to check that the intended usage works.
    528  1.23  pooka  */
    529  1.23  pooka #if 0
    530  1.23  pooka struct rumpuser_lwp {
    531  1.23  pooka 	struct lwp *l;
    532  1.23  pooka 	LIST_ENTRY(rumpuser_lwp) l_entries;
    533  1.23  pooka };
    534  1.23  pooka static LIST_HEAD(, rumpuser_lwp) lwps = LIST_HEAD_INITIALIZER(lwps);
    535  1.23  pooka static pthread_mutex_t lwplock = PTHREAD_MUTEX_INITIALIZER;
    536  1.23  pooka 
    537   1.1  pooka void
    538  1.23  pooka rumpuser_curlwpop(enum rumplwpop op, struct lwp *l)
    539   1.1  pooka {
    540  1.23  pooka 	struct rumpuser_lwp *rl, *rliter;
    541   1.1  pooka 
    542  1.23  pooka 	switch (op) {
    543  1.23  pooka 	case RUMPUSER_LWP_CREATE:
    544  1.23  pooka 		rl = malloc(sizeof(*rl));
    545  1.23  pooka 		rl->l = l;
    546  1.23  pooka 		pthread_mutex_lock(&lwplock);
    547  1.23  pooka 		LIST_FOREACH(rliter, &lwps, l_entries) {
    548  1.23  pooka 			if (rliter->l == l) {
    549  1.23  pooka 				fprintf(stderr, "LWP_CREATE: %p exists\n", l);
    550  1.23  pooka 				abort();
    551  1.23  pooka 			}
    552  1.23  pooka 		}
    553  1.23  pooka 		LIST_INSERT_HEAD(&lwps, rl, l_entries);
    554  1.23  pooka 		pthread_mutex_unlock(&lwplock);
    555  1.23  pooka 		break;
    556  1.23  pooka 	case RUMPUSER_LWP_DESTROY:
    557  1.23  pooka 		pthread_mutex_lock(&lwplock);
    558  1.23  pooka 		LIST_FOREACH(rl, &lwps, l_entries) {
    559  1.23  pooka 			if (rl->l == l)
    560  1.23  pooka 				break;
    561  1.23  pooka 		}
    562  1.23  pooka 		if (!rl) {
    563  1.23  pooka 			fprintf(stderr, "LWP_DESTROY: %p does not exist\n", l);
    564  1.23  pooka 			abort();
    565  1.23  pooka 		}
    566  1.23  pooka 		LIST_REMOVE(rl, l_entries);
    567  1.23  pooka 		pthread_mutex_unlock(&lwplock);
    568  1.23  pooka 		free(rl);
    569  1.23  pooka 		break;
    570  1.23  pooka 	case RUMPUSER_LWP_SET:
    571  1.23  pooka 		assert(pthread_getspecific(curlwpkey) == NULL || l == NULL);
    572  1.23  pooka 
    573  1.23  pooka 		if (l) {
    574  1.23  pooka 			pthread_mutex_lock(&lwplock);
    575  1.23  pooka 			LIST_FOREACH(rl, &lwps, l_entries) {
    576  1.23  pooka 				if (rl->l == l)
    577  1.23  pooka 					break;
    578  1.23  pooka 			}
    579  1.23  pooka 			if (!rl) {
    580  1.23  pooka 				fprintf(stderr,
    581  1.23  pooka 				    "LWP_SET: %p does not exist\n", l);
    582  1.23  pooka 				abort();
    583  1.23  pooka 			}
    584  1.23  pooka 			pthread_mutex_unlock(&lwplock);
    585  1.23  pooka 		} else {
    586  1.23  pooka 			rl = NULL;
    587  1.23  pooka 		}
    588  1.23  pooka 
    589  1.23  pooka 		pthread_setspecific(curlwpkey, rl);
    590  1.23  pooka 		break;
    591  1.23  pooka 	}
    592   1.1  pooka }
    593   1.1  pooka 
    594   1.1  pooka struct lwp *
    595  1.23  pooka rumpuser_curlwp(void)
    596  1.23  pooka {
    597  1.23  pooka 	struct rumpuser_lwp *rl;
    598  1.23  pooka 
    599  1.23  pooka 	rl = pthread_getspecific(curlwpkey);
    600  1.23  pooka 	return rl ? rl->l : NULL;
    601  1.23  pooka }
    602  1.23  pooka 
    603  1.23  pooka #else
    604  1.23  pooka 
    605  1.23  pooka void
    606  1.23  pooka rumpuser_curlwpop(enum rumplwpop op, struct lwp *l)
    607  1.23  pooka {
    608  1.23  pooka 
    609  1.23  pooka 	switch (op) {
    610  1.23  pooka 	case RUMPUSER_LWP_CREATE:
    611  1.23  pooka 		break;
    612  1.23  pooka 	case RUMPUSER_LWP_DESTROY:
    613  1.23  pooka 		break;
    614  1.23  pooka 	case RUMPUSER_LWP_SET:
    615  1.23  pooka 		assert(pthread_getspecific(curlwpkey) == NULL || l == NULL);
    616  1.23  pooka 		pthread_setspecific(curlwpkey, l);
    617  1.23  pooka 		break;
    618  1.23  pooka 	}
    619  1.23  pooka }
    620  1.23  pooka 
    621  1.23  pooka struct lwp *
    622  1.23  pooka rumpuser_curlwp(void)
    623   1.1  pooka {
    624   1.1  pooka 
    625   1.1  pooka 	return pthread_getspecific(curlwpkey);
    626   1.1  pooka }
    627  1.23  pooka #endif
    628