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uipc_sem.c revision 1.24.10.1
      1  1.24.10.1      yamt /*	$NetBSD: uipc_sem.c,v 1.24.10.1 2008/05/16 02:25:28 yamt Exp $	*/
      2        1.3   thorpej 
      3        1.3   thorpej /*-
      4       1.21        ad  * Copyright (c) 2003, 2007 The NetBSD Foundation, Inc.
      5        1.3   thorpej  * All rights reserved.
      6        1.3   thorpej  *
      7        1.3   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8       1.21        ad  * by Jason R. Thorpe of Wasabi Systems, Inc, and by Andrew Doran.
      9        1.3   thorpej  *
     10        1.3   thorpej  * Redistribution and use in source and binary forms, with or without
     11        1.3   thorpej  * modification, are permitted provided that the following conditions
     12        1.3   thorpej  * are met:
     13        1.3   thorpej  * 1. Redistributions of source code must retain the above copyright
     14        1.3   thorpej  *    notice, this list of conditions and the following disclaimer.
     15        1.3   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     16        1.3   thorpej  *    notice, this list of conditions and the following disclaimer in the
     17        1.3   thorpej  *    documentation and/or other materials provided with the distribution.
     18        1.3   thorpej  *
     19        1.3   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20        1.3   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21        1.3   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22        1.3   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23        1.3   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24        1.3   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25        1.3   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26        1.3   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27        1.3   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28        1.3   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29        1.3   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     30        1.3   thorpej  */
     31        1.1  christos 
     32        1.1  christos /*
     33        1.1  christos  * Copyright (c) 2002 Alfred Perlstein <alfred (at) FreeBSD.org>
     34        1.1  christos  * All rights reserved.
     35        1.1  christos  *
     36        1.1  christos  * Redistribution and use in source and binary forms, with or without
     37        1.1  christos  * modification, are permitted provided that the following conditions
     38        1.1  christos  * are met:
     39        1.1  christos  * 1. Redistributions of source code must retain the above copyright
     40        1.1  christos  *    notice, this list of conditions and the following disclaimer.
     41        1.1  christos  * 2. Redistributions in binary form must reproduce the above copyright
     42        1.1  christos  *    notice, this list of conditions and the following disclaimer in the
     43        1.1  christos  *    documentation and/or other materials provided with the distribution.
     44        1.1  christos  *
     45        1.1  christos  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     46        1.1  christos  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     47        1.1  christos  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     48        1.1  christos  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     49        1.1  christos  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     50        1.1  christos  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     51        1.1  christos  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     52        1.1  christos  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     53        1.1  christos  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     54        1.1  christos  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     55        1.1  christos  * SUCH DAMAGE.
     56        1.1  christos  */
     57        1.9     lukem 
     58        1.9     lukem #include <sys/cdefs.h>
     59  1.24.10.1      yamt __KERNEL_RCSID(0, "$NetBSD: uipc_sem.c,v 1.24.10.1 2008/05/16 02:25:28 yamt Exp $");
     60        1.1  christos 
     61        1.1  christos #include "opt_posix.h"
     62        1.1  christos 
     63        1.1  christos #include <sys/param.h>
     64        1.1  christos #include <sys/systm.h>
     65        1.1  christos #include <sys/kernel.h>
     66        1.1  christos #include <sys/proc.h>
     67        1.1  christos #include <sys/ksem.h>
     68        1.1  christos #include <sys/syscall.h>
     69        1.1  christos #include <sys/stat.h>
     70       1.21        ad #include <sys/kmem.h>
     71        1.1  christos #include <sys/fcntl.h>
     72       1.14      elad #include <sys/kauth.h>
     73       1.22     rmind #include <sys/sysctl.h>
     74        1.1  christos 
     75        1.1  christos #include <sys/mount.h>
     76        1.1  christos 
     77        1.1  christos #include <sys/syscallargs.h>
     78        1.1  christos 
     79       1.22     rmind #define SEM_MAX 128
     80        1.1  christos #define SEM_MAX_NAMELEN	14
     81        1.1  christos #define SEM_VALUE_MAX (~0U)
     82       1.13      cube #define SEM_HASHTBL_SIZE 13
     83        1.1  christos 
     84       1.13      cube #define SEM_TO_ID(x)	(((x)->ks_id))
     85       1.13      cube #define SEM_HASH(id)	((id) % SEM_HASHTBL_SIZE)
     86        1.4   thorpej 
     87        1.4   thorpej MALLOC_DEFINE(M_SEM, "p1003_1b_sem", "p1003_1b semaphores");
     88        1.1  christos 
     89        1.3   thorpej /*
     90        1.3   thorpej  * Note: to read the ks_name member, you need either the ks_interlock
     91        1.3   thorpej  * or the ksem_slock.  To write the ks_name member, you need both.  Make
     92        1.3   thorpej  * sure the order is ksem_slock -> ks_interlock.
     93        1.3   thorpej  */
     94        1.1  christos struct ksem {
     95        1.1  christos 	LIST_ENTRY(ksem) ks_entry;	/* global list entry */
     96       1.13      cube 	LIST_ENTRY(ksem) ks_hash;	/* hash list entry */
     97       1.20        ad 	kmutex_t ks_interlock;		/* lock on this ksem */
     98       1.20        ad 	kcondvar_t ks_cv;		/* condition variable */
     99       1.21        ad 	unsigned int ks_ref;		/* number of references */
    100        1.1  christos 	char *ks_name;			/* if named, this is the name */
    101       1.21        ad 	size_t ks_namelen;		/* length of name */
    102        1.1  christos 	mode_t ks_mode;			/* protection bits */
    103        1.1  christos 	uid_t ks_uid;			/* creator uid */
    104        1.1  christos 	gid_t ks_gid;			/* creator gid */
    105        1.1  christos 	unsigned int ks_value;		/* current value */
    106        1.3   thorpej 	unsigned int ks_waiters;	/* number of waiters */
    107       1.13      cube 	semid_t ks_id;			/* unique identifier */
    108        1.3   thorpej };
    109        1.3   thorpej 
    110        1.3   thorpej struct ksem_ref {
    111        1.3   thorpej 	LIST_ENTRY(ksem_ref) ksr_list;
    112        1.3   thorpej 	struct ksem *ksr_ksem;
    113        1.3   thorpej };
    114        1.3   thorpej 
    115        1.3   thorpej struct ksem_proc {
    116       1.20        ad 	krwlock_t kp_lock;
    117        1.3   thorpej 	LIST_HEAD(, ksem_ref) kp_ksems;
    118        1.1  christos };
    119        1.1  christos 
    120       1.13      cube LIST_HEAD(ksem_list, ksem);
    121       1.13      cube 
    122        1.1  christos /*
    123        1.3   thorpej  * ksem_slock protects ksem_head and nsems.  Only named semaphores go
    124        1.3   thorpej  * onto ksem_head.
    125        1.1  christos  */
    126       1.20        ad static kmutex_t ksem_mutex;
    127       1.13      cube static struct ksem_list ksem_head = LIST_HEAD_INITIALIZER(&ksem_head);
    128       1.13      cube static struct ksem_list ksem_hash[SEM_HASHTBL_SIZE];
    129       1.22     rmind static u_int sem_max = SEM_MAX;
    130        1.3   thorpej static int nsems = 0;
    131        1.1  christos 
    132       1.13      cube /*
    133       1.13      cube  * ksem_counter is the last assigned semid_t.  It needs to be COMPAT_NETBSD32
    134       1.13      cube  * friendly, even though semid_t itself is defined as uintptr_t.
    135       1.13      cube  */
    136       1.13      cube static uint32_t ksem_counter = 1;
    137       1.13      cube 
    138       1.16   thorpej static specificdata_key_t ksem_specificdata_key;
    139       1.13      cube 
    140        1.3   thorpej static void
    141        1.3   thorpej ksem_free(struct ksem *ks)
    142        1.3   thorpej {
    143        1.1  christos 
    144       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    145       1.20        ad 
    146        1.3   thorpej 	/*
    147        1.3   thorpej 	 * If the ksem is anonymous (or has been unlinked), then
    148        1.3   thorpej 	 * this is the end if its life.
    149        1.3   thorpej 	 */
    150        1.3   thorpej 	if (ks->ks_name == NULL) {
    151       1.20        ad 		mutex_exit(&ks->ks_interlock);
    152       1.20        ad 		mutex_destroy(&ks->ks_interlock);
    153       1.20        ad 		cv_destroy(&ks->ks_cv);
    154        1.1  christos 
    155       1.20        ad 		mutex_enter(&ksem_mutex);
    156        1.3   thorpej 		nsems--;
    157       1.13      cube 		LIST_REMOVE(ks, ks_hash);
    158       1.20        ad 		mutex_exit(&ksem_mutex);
    159       1.13      cube 
    160       1.21        ad 		kmem_free(ks, sizeof(*ks));
    161        1.3   thorpej 		return;
    162        1.3   thorpej 	}
    163       1.20        ad 	mutex_exit(&ks->ks_interlock);
    164        1.3   thorpej }
    165        1.1  christos 
    166       1.12     perry static inline void
    167        1.3   thorpej ksem_addref(struct ksem *ks)
    168        1.1  christos {
    169        1.1  christos 
    170       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    171        1.1  christos 	ks->ks_ref++;
    172       1.21        ad 	KASSERT(ks->ks_ref != 0);
    173        1.1  christos }
    174        1.1  christos 
    175       1.12     perry static inline void
    176        1.3   thorpej ksem_delref(struct ksem *ks)
    177        1.1  christos {
    178        1.1  christos 
    179       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    180       1.21        ad 	KASSERT(ks->ks_ref != 0);
    181        1.3   thorpej 	if (--ks->ks_ref == 0) {
    182        1.1  christos 		ksem_free(ks);
    183        1.3   thorpej 		return;
    184        1.3   thorpej 	}
    185       1.20        ad 	mutex_exit(&ks->ks_interlock);
    186        1.3   thorpej }
    187        1.3   thorpej 
    188        1.3   thorpej static struct ksem_proc *
    189        1.3   thorpej ksem_proc_alloc(void)
    190        1.3   thorpej {
    191        1.3   thorpej 	struct ksem_proc *kp;
    192        1.3   thorpej 
    193       1.21        ad 	kp = kmem_alloc(sizeof(*kp), KM_SLEEP);
    194       1.20        ad 	rw_init(&kp->kp_lock);
    195        1.3   thorpej 	LIST_INIT(&kp->kp_ksems);
    196        1.3   thorpej 
    197        1.3   thorpej 	return (kp);
    198        1.1  christos }
    199        1.1  christos 
    200        1.3   thorpej static void
    201       1.16   thorpej ksem_proc_dtor(void *arg)
    202       1.16   thorpej {
    203       1.16   thorpej 	struct ksem_proc *kp = arg;
    204       1.16   thorpej 	struct ksem_ref *ksr;
    205       1.16   thorpej 
    206       1.20        ad 	rw_enter(&kp->kp_lock, RW_WRITER);
    207       1.16   thorpej 
    208       1.16   thorpej 	while ((ksr = LIST_FIRST(&kp->kp_ksems)) != NULL) {
    209       1.16   thorpej 		LIST_REMOVE(ksr, ksr_list);
    210       1.20        ad 		mutex_enter(&ksr->ksr_ksem->ks_interlock);
    211       1.16   thorpej 		ksem_delref(ksr->ksr_ksem);
    212       1.21        ad 		kmem_free(ksr, sizeof(*ksr));
    213       1.16   thorpej 	}
    214       1.16   thorpej 
    215       1.20        ad 	rw_exit(&kp->kp_lock);
    216       1.20        ad 	rw_destroy(&kp->kp_lock);
    217       1.21        ad 	kmem_free(kp, sizeof(*kp));
    218       1.16   thorpej }
    219       1.16   thorpej 
    220       1.16   thorpej static void
    221        1.3   thorpej ksem_add_proc(struct proc *p, struct ksem *ks)
    222        1.3   thorpej {
    223        1.3   thorpej 	struct ksem_proc *kp;
    224        1.3   thorpej 	struct ksem_ref *ksr;
    225        1.3   thorpej 
    226       1.16   thorpej 	kp = proc_getspecific(p, ksem_specificdata_key);
    227       1.16   thorpej 	if (kp == NULL) {
    228        1.3   thorpej 		kp = ksem_proc_alloc();
    229       1.16   thorpej 		proc_setspecific(p, ksem_specificdata_key, kp);
    230       1.16   thorpej 	}
    231        1.3   thorpej 
    232       1.21        ad 	ksr = kmem_alloc(sizeof(*ksr), KM_SLEEP);
    233        1.3   thorpej 	ksr->ksr_ksem = ks;
    234        1.3   thorpej 
    235       1.20        ad 	rw_enter(&kp->kp_lock, RW_WRITER);
    236        1.3   thorpej 	LIST_INSERT_HEAD(&kp->kp_ksems, ksr, ksr_list);
    237       1.20        ad 	rw_exit(&kp->kp_lock);
    238        1.3   thorpej }
    239        1.3   thorpej 
    240        1.3   thorpej /* We MUST have a write lock on the ksem_proc list! */
    241        1.3   thorpej static struct ksem_ref *
    242        1.3   thorpej ksem_drop_proc(struct ksem_proc *kp, struct ksem *ks)
    243        1.1  christos {
    244        1.3   thorpej 	struct ksem_ref *ksr;
    245        1.1  christos 
    246       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    247        1.3   thorpej 	LIST_FOREACH(ksr, &kp->kp_ksems, ksr_list) {
    248        1.3   thorpej 		if (ksr->ksr_ksem == ks) {
    249        1.3   thorpej 			ksem_delref(ks);
    250        1.3   thorpej 			LIST_REMOVE(ksr, ksr_list);
    251        1.3   thorpej 			return (ksr);
    252        1.3   thorpej 		}
    253        1.1  christos 	}
    254        1.3   thorpej #ifdef DIAGNOSTIC
    255        1.3   thorpej 	panic("ksem_drop_proc: ksem_proc %p ksem %p", kp, ks);
    256        1.3   thorpej #endif
    257        1.1  christos 	return (NULL);
    258        1.1  christos }
    259        1.1  christos 
    260        1.3   thorpej static int
    261       1.15        ad ksem_perm(struct lwp *l, struct ksem *ks)
    262        1.3   thorpej {
    263       1.14      elad 	kauth_cred_t uc;
    264        1.3   thorpej 
    265       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    266       1.15        ad 	uc = l->l_cred;
    267       1.14      elad 	if ((kauth_cred_geteuid(uc) == ks->ks_uid && (ks->ks_mode & S_IWUSR) != 0) ||
    268       1.14      elad 	    (kauth_cred_getegid(uc) == ks->ks_gid && (ks->ks_mode & S_IWGRP) != 0) ||
    269       1.14      elad 	    (ks->ks_mode & S_IWOTH) != 0 ||
    270       1.19      elad 	    kauth_authorize_generic(uc, KAUTH_GENERIC_ISSUSER, NULL) == 0)
    271        1.3   thorpej 		return (0);
    272        1.3   thorpej 	return (EPERM);
    273        1.3   thorpej }
    274        1.3   thorpej 
    275        1.1  christos static struct ksem *
    276       1.13      cube ksem_lookup_byid(semid_t id)
    277       1.13      cube {
    278       1.13      cube 	struct ksem *ks;
    279       1.13      cube 
    280       1.21        ad 	KASSERT(mutex_owned(&ksem_mutex));
    281       1.13      cube 	LIST_FOREACH(ks, &ksem_hash[SEM_HASH(id)], ks_hash) {
    282       1.13      cube 		if (ks->ks_id == id)
    283       1.13      cube 			return ks;
    284       1.13      cube 	}
    285       1.13      cube 	return NULL;
    286       1.13      cube }
    287       1.13      cube 
    288       1.13      cube static struct ksem *
    289        1.3   thorpej ksem_lookup_byname(const char *name)
    290        1.1  christos {
    291        1.1  christos 	struct ksem *ks;
    292        1.1  christos 
    293       1.21        ad 	KASSERT(mutex_owned(&ksem_mutex));
    294        1.3   thorpej 	LIST_FOREACH(ks, &ksem_head, ks_entry) {
    295        1.3   thorpej 		if (strcmp(ks->ks_name, name) == 0) {
    296       1.20        ad 			mutex_enter(&ks->ks_interlock);
    297        1.1  christos 			return (ks);
    298        1.3   thorpej 		}
    299        1.3   thorpej 	}
    300        1.1  christos 	return (NULL);
    301        1.1  christos }
    302        1.1  christos 
    303        1.1  christos static int
    304       1.15        ad ksem_create(struct lwp *l, const char *name, struct ksem **ksret,
    305        1.3   thorpej     mode_t mode, unsigned int value)
    306        1.1  christos {
    307        1.1  christos 	struct ksem *ret;
    308       1.14      elad 	kauth_cred_t uc;
    309        1.1  christos 	size_t len;
    310        1.1  christos 
    311       1.15        ad 	uc = l->l_cred;
    312        1.1  christos 	if (value > SEM_VALUE_MAX)
    313        1.1  christos 		return (EINVAL);
    314       1.21        ad 	ret = kmem_zalloc(sizeof(*ret), KM_SLEEP);
    315        1.1  christos 	if (name != NULL) {
    316        1.1  christos 		len = strlen(name);
    317        1.1  christos 		if (len > SEM_MAX_NAMELEN) {
    318       1.21        ad 			kmem_free(ret, sizeof(*ret));
    319        1.1  christos 			return (ENAMETOOLONG);
    320        1.1  christos 		}
    321        1.1  christos 		/* name must start with a '/' but not contain one. */
    322        1.1  christos 		if (*name != '/' || len < 2 || strchr(name + 1, '/') != NULL) {
    323       1.21        ad 			kmem_free(ret, sizeof(*ret));
    324        1.1  christos 			return (EINVAL);
    325        1.1  christos 		}
    326       1.21        ad 		ret->ks_namelen = len + 1;
    327       1.21        ad 		ret->ks_name = kmem_alloc(ret->ks_namelen, KM_SLEEP);
    328        1.6    itojun 		strlcpy(ret->ks_name, name, len + 1);
    329        1.3   thorpej 	} else
    330        1.1  christos 		ret->ks_name = NULL;
    331        1.1  christos 	ret->ks_mode = mode;
    332        1.1  christos 	ret->ks_value = value;
    333        1.1  christos 	ret->ks_ref = 1;
    334        1.1  christos 	ret->ks_waiters = 0;
    335       1.14      elad 	ret->ks_uid = kauth_cred_geteuid(uc);
    336       1.14      elad 	ret->ks_gid = kauth_cred_getegid(uc);
    337       1.20        ad 	mutex_init(&ret->ks_interlock, MUTEX_DEFAULT, IPL_NONE);
    338       1.20        ad 	cv_init(&ret->ks_cv, "psem");
    339        1.3   thorpej 
    340       1.20        ad 	mutex_enter(&ksem_mutex);
    341       1.22     rmind 	if (nsems >= sem_max) {
    342       1.20        ad 		mutex_exit(&ksem_mutex);
    343        1.3   thorpej 		if (ret->ks_name != NULL)
    344       1.21        ad 			kmem_free(ret->ks_name, ret->ks_namelen);
    345       1.21        ad 		kmem_free(ret, sizeof(*ret));
    346        1.3   thorpej 		return (ENFILE);
    347        1.1  christos 	}
    348        1.3   thorpej 	nsems++;
    349       1.13      cube 	while (ksem_lookup_byid(ksem_counter) != NULL) {
    350       1.13      cube 		ksem_counter++;
    351       1.13      cube 		/* 0 is a special value for libpthread */
    352       1.13      cube 		if (ksem_counter == 0)
    353       1.13      cube 			ksem_counter++;
    354       1.13      cube 	}
    355       1.13      cube 	ret->ks_id = ksem_counter;
    356       1.13      cube 	LIST_INSERT_HEAD(&ksem_hash[SEM_HASH(ret->ks_id)], ret, ks_hash);
    357       1.20        ad 	mutex_exit(&ksem_mutex);
    358        1.3   thorpej 
    359        1.3   thorpej 	*ksret = ret;
    360        1.3   thorpej 	return (0);
    361        1.1  christos }
    362        1.1  christos 
    363        1.1  christos int
    364       1.23       dsl sys__ksem_init(struct lwp *l, const struct sys__ksem_init_args *uap, register_t *retval)
    365        1.1  christos {
    366       1.23       dsl 	/* {
    367        1.1  christos 		unsigned int value;
    368        1.1  christos 		semid_t *idp;
    369       1.23       dsl 	} */
    370       1.13      cube 
    371       1.13      cube 	return do_ksem_init(l, SCARG(uap, value), SCARG(uap, idp), copyout);
    372       1.13      cube }
    373       1.13      cube 
    374       1.13      cube int
    375       1.13      cube do_ksem_init(struct lwp *l, unsigned int value, semid_t *idp,
    376       1.13      cube     copyout_t docopyout)
    377       1.13      cube {
    378        1.1  christos 	struct ksem *ks;
    379        1.1  christos 	semid_t id;
    380        1.1  christos 	int error;
    381        1.1  christos 
    382        1.3   thorpej 	/* Note the mode does not matter for anonymous semaphores. */
    383       1.15        ad 	error = ksem_create(l, NULL, &ks, 0, value);
    384        1.1  christos 	if (error)
    385        1.1  christos 		return (error);
    386        1.1  christos 	id = SEM_TO_ID(ks);
    387       1.13      cube 	error = (*docopyout)(&id, idp, sizeof(id));
    388        1.1  christos 	if (error) {
    389       1.20        ad 		mutex_enter(&ks->ks_interlock);
    390        1.3   thorpej 		ksem_delref(ks);
    391        1.1  christos 		return (error);
    392        1.1  christos 	}
    393        1.3   thorpej 
    394        1.3   thorpej 	ksem_add_proc(l->l_proc, ks);
    395        1.3   thorpej 
    396        1.3   thorpej 	return (0);
    397        1.1  christos }
    398        1.1  christos 
    399        1.1  christos int
    400       1.23       dsl sys__ksem_open(struct lwp *l, const struct sys__ksem_open_args *uap, register_t *retval)
    401        1.1  christos {
    402       1.23       dsl 	/* {
    403        1.1  christos 		const char *name;
    404        1.1  christos 		int oflag;
    405        1.1  christos 		mode_t mode;
    406        1.1  christos 		unsigned int value;
    407       1.10     perry 		semid_t *idp;
    408       1.23       dsl 	} */
    409       1.13      cube 
    410       1.13      cube 	return do_ksem_open(l, SCARG(uap, name), SCARG(uap, oflag),
    411       1.13      cube 	    SCARG(uap, mode), SCARG(uap, value), SCARG(uap, idp), copyout);
    412       1.13      cube }
    413       1.13      cube 
    414       1.13      cube int
    415       1.13      cube do_ksem_open(struct lwp *l, const char *semname, int oflag, mode_t mode,
    416       1.13      cube      unsigned int value, semid_t *idp, copyout_t docopyout)
    417       1.13      cube {
    418        1.1  christos 	char name[SEM_MAX_NAMELEN + 1];
    419        1.1  christos 	size_t done;
    420        1.1  christos 	int error;
    421        1.1  christos 	struct ksem *ksnew, *ks;
    422        1.1  christos 	semid_t id;
    423        1.1  christos 
    424       1.13      cube 	error = copyinstr(semname, name, sizeof(name), &done);
    425        1.1  christos 	if (error)
    426        1.1  christos 		return (error);
    427        1.1  christos 
    428        1.1  christos 	ksnew = NULL;
    429       1.20        ad 	mutex_enter(&ksem_mutex);
    430        1.1  christos 	ks = ksem_lookup_byname(name);
    431        1.3   thorpej 
    432        1.3   thorpej 	/* Found one? */
    433        1.3   thorpej 	if (ks != NULL) {
    434        1.3   thorpej 		/* Check for exclusive create. */
    435       1.13      cube 		if (oflag & O_EXCL) {
    436       1.20        ad 			mutex_exit(&ks->ks_interlock);
    437       1.20        ad 			mutex_exit(&ksem_mutex);
    438        1.3   thorpej 			return (EEXIST);
    439        1.1  christos 		}
    440        1.3   thorpej  found_one:
    441        1.1  christos 		/*
    442        1.3   thorpej 		 * Verify permissions.  If we can access it, add
    443        1.3   thorpej 		 * this process's reference.
    444        1.1  christos 		 */
    445       1.21        ad 		KASSERT(mutex_owned(&ks->ks_interlock));
    446       1.15        ad 		error = ksem_perm(l, ks);
    447        1.3   thorpej 		if (error == 0)
    448        1.3   thorpej 			ksem_addref(ks);
    449       1.20        ad 		mutex_exit(&ks->ks_interlock);
    450       1.20        ad 		mutex_exit(&ksem_mutex);
    451        1.1  christos 		if (error)
    452        1.1  christos 			return (error);
    453        1.3   thorpej 
    454        1.1  christos 		id = SEM_TO_ID(ks);
    455       1.13      cube 		error = (*docopyout)(&id, idp, sizeof(id));
    456        1.1  christos 		if (error) {
    457       1.20        ad 			mutex_enter(&ks->ks_interlock);
    458        1.3   thorpej 			ksem_delref(ks);
    459        1.1  christos 			return (error);
    460        1.1  christos 		}
    461        1.3   thorpej 
    462        1.3   thorpej 		ksem_add_proc(l->l_proc, ks);
    463        1.3   thorpej 
    464        1.3   thorpej 		return (0);
    465        1.3   thorpej 	}
    466        1.3   thorpej 
    467        1.3   thorpej 	/*
    468        1.3   thorpej 	 * didn't ask for creation? error.
    469        1.3   thorpej 	 */
    470       1.13      cube 	if ((oflag & O_CREAT) == 0) {
    471       1.20        ad 		mutex_exit(&ksem_mutex);
    472        1.3   thorpej 		return (ENOENT);
    473        1.1  christos 	}
    474        1.1  christos 
    475        1.3   thorpej 	/*
    476        1.3   thorpej 	 * We may block during creation, so drop the lock.
    477        1.3   thorpej 	 */
    478       1.20        ad 	mutex_exit(&ksem_mutex);
    479       1.15        ad 	error = ksem_create(l, name, &ksnew, mode, value);
    480        1.3   thorpej 	if (error != 0)
    481        1.3   thorpej 		return (error);
    482        1.3   thorpej 
    483        1.3   thorpej 	id = SEM_TO_ID(ksnew);
    484       1.13      cube 	error = (*docopyout)(&id, idp, sizeof(id));
    485        1.3   thorpej 	if (error) {
    486       1.21        ad 		kmem_free(ksnew->ks_name, ksnew->ks_namelen);
    487        1.3   thorpej 		ksnew->ks_name = NULL;
    488        1.1  christos 
    489       1.20        ad 		mutex_enter(&ksnew->ks_interlock);
    490        1.3   thorpej 		ksem_delref(ksnew);
    491        1.3   thorpej 		return (error);
    492        1.3   thorpej 	}
    493        1.1  christos 
    494        1.3   thorpej 	/*
    495        1.3   thorpej 	 * We need to make sure we haven't lost a race while
    496        1.3   thorpej 	 * allocating during creation.
    497        1.3   thorpej 	 */
    498       1.20        ad 	mutex_enter(&ksem_mutex);
    499        1.3   thorpej 	if ((ks = ksem_lookup_byname(name)) != NULL) {
    500       1.13      cube 		if (oflag & O_EXCL) {
    501       1.20        ad 			mutex_exit(&ks->ks_interlock);
    502       1.20        ad 			mutex_exit(&ksem_mutex);
    503        1.1  christos 
    504       1.21        ad 			kmem_free(ksnew->ks_name, ksnew->ks_namelen);
    505        1.3   thorpej 			ksnew->ks_name = NULL;
    506        1.1  christos 
    507       1.20        ad 			mutex_enter(&ksnew->ks_interlock);
    508        1.3   thorpej 			ksem_delref(ksnew);
    509        1.3   thorpej 			return (EEXIST);
    510        1.3   thorpej 		}
    511        1.3   thorpej 		goto found_one;
    512        1.3   thorpej 	} else {
    513        1.3   thorpej 		/* ksnew already has its initial reference. */
    514       1.10     perry 		LIST_INSERT_HEAD(&ksem_head, ksnew, ks_entry);
    515       1.20        ad 		mutex_exit(&ksem_mutex);
    516        1.1  christos 
    517        1.3   thorpej 		ksem_add_proc(l->l_proc, ksnew);
    518        1.1  christos 	}
    519        1.3   thorpej 	return (error);
    520        1.1  christos }
    521        1.1  christos 
    522        1.3   thorpej /* We must have a read lock on the ksem_proc list! */
    523        1.3   thorpej static struct ksem *
    524        1.3   thorpej ksem_lookup_proc(struct ksem_proc *kp, semid_t id)
    525        1.1  christos {
    526        1.3   thorpej 	struct ksem_ref *ksr;
    527        1.1  christos 
    528        1.3   thorpej 	LIST_FOREACH(ksr, &kp->kp_ksems, ksr_list) {
    529       1.13      cube 		if (id == SEM_TO_ID(ksr->ksr_ksem)) {
    530       1.20        ad 			mutex_enter(&ksr->ksr_ksem->ks_interlock);
    531        1.3   thorpej 			return (ksr->ksr_ksem);
    532        1.3   thorpej 		}
    533        1.1  christos 	}
    534        1.3   thorpej 
    535        1.3   thorpej 	return (NULL);
    536        1.1  christos }
    537        1.1  christos 
    538        1.1  christos int
    539       1.23       dsl sys__ksem_unlink(struct lwp *l, const struct sys__ksem_unlink_args *uap, register_t *retval)
    540        1.1  christos {
    541       1.23       dsl 	/* {
    542        1.1  christos 		const char *name;
    543       1.23       dsl 	} */
    544        1.3   thorpej 	char name[SEM_MAX_NAMELEN + 1], *cp;
    545       1.21        ad 	size_t done, len;
    546        1.1  christos 	struct ksem *ks;
    547        1.1  christos 	int error;
    548        1.1  christos 
    549        1.1  christos 	error = copyinstr(SCARG(uap, name), name, sizeof(name), &done);
    550        1.1  christos 	if (error)
    551        1.1  christos 		return error;
    552        1.1  christos 
    553       1.20        ad 	mutex_enter(&ksem_mutex);
    554        1.1  christos 	ks = ksem_lookup_byname(name);
    555        1.3   thorpej 	if (ks == NULL) {
    556       1.20        ad 		mutex_exit(&ksem_mutex);
    557        1.3   thorpej 		return (ENOENT);
    558        1.1  christos 	}
    559        1.3   thorpej 
    560       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    561        1.3   thorpej 
    562        1.3   thorpej 	LIST_REMOVE(ks, ks_entry);
    563        1.3   thorpej 	cp = ks->ks_name;
    564       1.21        ad 	len = ks->ks_namelen;
    565        1.3   thorpej 	ks->ks_name = NULL;
    566        1.3   thorpej 
    567       1.20        ad 	mutex_exit(&ksem_mutex);
    568        1.3   thorpej 
    569        1.3   thorpej 	if (ks->ks_ref == 0)
    570        1.3   thorpej 		ksem_free(ks);
    571        1.3   thorpej 	else
    572       1.20        ad 		mutex_exit(&ks->ks_interlock);
    573        1.3   thorpej 
    574       1.21        ad 	kmem_free(cp, len);
    575        1.3   thorpej 
    576        1.3   thorpej 	return (0);
    577        1.1  christos }
    578        1.1  christos 
    579        1.1  christos int
    580       1.23       dsl sys__ksem_close(struct lwp *l, const struct sys__ksem_close_args *uap, register_t *retval)
    581        1.1  christos {
    582       1.23       dsl 	/* {
    583        1.1  christos 		semid_t id;
    584       1.23       dsl 	} */
    585        1.3   thorpej 	struct ksem_proc *kp;
    586        1.3   thorpej 	struct ksem_ref *ksr;
    587        1.1  christos 	struct ksem *ks;
    588        1.1  christos 
    589       1.16   thorpej 	kp = proc_getspecific(l->l_proc, ksem_specificdata_key);
    590       1.16   thorpej 	if (kp == NULL)
    591        1.3   thorpej 		return (EINVAL);
    592        1.3   thorpej 
    593       1.20        ad 	rw_enter(&kp->kp_lock, RW_WRITER);
    594        1.3   thorpej 
    595        1.3   thorpej 	ks = ksem_lookup_proc(kp, SCARG(uap, id));
    596        1.3   thorpej 	if (ks == NULL) {
    597       1.20        ad 		rw_exit(&kp->kp_lock);
    598        1.3   thorpej 		return (EINVAL);
    599        1.3   thorpej 	}
    600        1.3   thorpej 
    601       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    602        1.3   thorpej 	if (ks->ks_name == NULL) {
    603       1.20        ad 		mutex_exit(&ks->ks_interlock);
    604       1.20        ad 		rw_exit(&kp->kp_lock);
    605        1.3   thorpej 		return (EINVAL);
    606        1.3   thorpej 	}
    607        1.3   thorpej 
    608        1.3   thorpej 	ksr = ksem_drop_proc(kp, ks);
    609       1.20        ad 	rw_exit(&kp->kp_lock);
    610       1.21        ad 	kmem_free(ksr, sizeof(*ksr));
    611        1.3   thorpej 
    612        1.3   thorpej 	return (0);
    613        1.1  christos }
    614        1.1  christos 
    615        1.1  christos int
    616       1.23       dsl sys__ksem_post(struct lwp *l, const struct sys__ksem_post_args *uap, register_t *retval)
    617        1.1  christos {
    618       1.23       dsl 	/* {
    619        1.1  christos 		semid_t id;
    620       1.23       dsl 	} */
    621        1.3   thorpej 	struct ksem_proc *kp;
    622        1.1  christos 	struct ksem *ks;
    623        1.1  christos 	int error;
    624        1.1  christos 
    625       1.16   thorpej 	kp = proc_getspecific(l->l_proc, ksem_specificdata_key);
    626       1.16   thorpej 	if (kp == NULL)
    627        1.3   thorpej 		return (EINVAL);
    628        1.3   thorpej 
    629       1.20        ad 	rw_enter(&kp->kp_lock, RW_READER);
    630        1.3   thorpej 	ks = ksem_lookup_proc(kp, SCARG(uap, id));
    631       1.20        ad 	rw_exit(&kp->kp_lock);
    632        1.3   thorpej 	if (ks == NULL)
    633        1.3   thorpej 		return (EINVAL);
    634        1.3   thorpej 
    635       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    636        1.1  christos 	if (ks->ks_value == SEM_VALUE_MAX) {
    637        1.1  christos 		error = EOVERFLOW;
    638        1.3   thorpej 		goto out;
    639        1.1  christos 	}
    640        1.1  christos 	++ks->ks_value;
    641        1.3   thorpej 	if (ks->ks_waiters)
    642       1.20        ad 		cv_broadcast(&ks->ks_cv);
    643        1.1  christos 	error = 0;
    644        1.3   thorpej  out:
    645       1.20        ad 	mutex_exit(&ks->ks_interlock);
    646        1.3   thorpej 	return (error);
    647        1.3   thorpej }
    648        1.3   thorpej 
    649        1.3   thorpej static int
    650        1.3   thorpej ksem_wait(struct lwp *l, semid_t id, int tryflag)
    651        1.3   thorpej {
    652        1.3   thorpej 	struct ksem_proc *kp;
    653        1.3   thorpej 	struct ksem *ks;
    654        1.3   thorpej 	int error;
    655        1.3   thorpej 
    656       1.16   thorpej 	kp = proc_getspecific(l->l_proc, ksem_specificdata_key);
    657       1.16   thorpej 	if (kp == NULL)
    658        1.3   thorpej 		return (EINVAL);
    659        1.3   thorpej 
    660       1.20        ad 	rw_enter(&kp->kp_lock, RW_READER);
    661        1.3   thorpej 	ks = ksem_lookup_proc(kp, id);
    662       1.20        ad 	rw_exit(&kp->kp_lock);
    663        1.3   thorpej 	if (ks == NULL)
    664        1.3   thorpej 		return (EINVAL);
    665        1.3   thorpej 
    666       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    667        1.3   thorpej 	ksem_addref(ks);
    668        1.3   thorpej 	while (ks->ks_value == 0) {
    669        1.3   thorpej 		ks->ks_waiters++;
    670       1.20        ad 		if (tryflag)
    671       1.20        ad 			error = EAGAIN;
    672       1.20        ad 		else
    673       1.20        ad 			error = cv_wait_sig(&ks->ks_cv, &ks->ks_interlock);
    674        1.3   thorpej 		ks->ks_waiters--;
    675        1.3   thorpej 		if (error)
    676        1.3   thorpej 			goto out;
    677        1.3   thorpej 	}
    678        1.3   thorpej 	ks->ks_value--;
    679        1.3   thorpej 	error = 0;
    680        1.3   thorpej  out:
    681        1.3   thorpej 	ksem_delref(ks);
    682        1.1  christos 	return (error);
    683        1.1  christos }
    684        1.1  christos 
    685        1.1  christos int
    686       1.23       dsl sys__ksem_wait(struct lwp *l, const struct sys__ksem_wait_args *uap, register_t *retval)
    687        1.1  christos {
    688       1.23       dsl 	/* {
    689        1.1  christos 		semid_t id;
    690       1.23       dsl 	} */
    691        1.1  christos 
    692        1.1  christos 	return ksem_wait(l, SCARG(uap, id), 0);
    693        1.1  christos }
    694        1.1  christos 
    695        1.1  christos int
    696       1.23       dsl sys__ksem_trywait(struct lwp *l, const struct sys__ksem_trywait_args *uap, register_t *retval)
    697        1.1  christos {
    698       1.23       dsl 	/* {
    699        1.1  christos 		semid_t id;
    700       1.23       dsl 	} */
    701        1.1  christos 
    702        1.1  christos 	return ksem_wait(l, SCARG(uap, id), 1);
    703        1.1  christos }
    704        1.1  christos 
    705        1.1  christos int
    706       1.23       dsl sys__ksem_getvalue(struct lwp *l, const struct sys__ksem_getvalue_args *uap, register_t *retval)
    707        1.1  christos {
    708       1.23       dsl 	/* {
    709        1.1  christos 		semid_t id;
    710        1.1  christos 		unsigned int *value;
    711       1.23       dsl 	} */
    712        1.3   thorpej 	struct ksem_proc *kp;
    713        1.1  christos 	struct ksem *ks;
    714        1.1  christos 	unsigned int val;
    715        1.1  christos 
    716       1.16   thorpej 	kp = proc_getspecific(l->l_proc, ksem_specificdata_key);
    717       1.16   thorpej 	if (kp == NULL)
    718        1.3   thorpej 		return (EINVAL);
    719        1.3   thorpej 
    720       1.20        ad 	rw_enter(&kp->kp_lock, RW_READER);
    721        1.3   thorpej 	ks = ksem_lookup_proc(kp, SCARG(uap, id));
    722       1.20        ad 	rw_exit(&kp->kp_lock);
    723        1.3   thorpej 	if (ks == NULL)
    724        1.1  christos 		return (EINVAL);
    725        1.3   thorpej 
    726       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    727        1.1  christos 	val = ks->ks_value;
    728       1.20        ad 	mutex_exit(&ks->ks_interlock);
    729        1.3   thorpej 
    730        1.3   thorpej 	return (copyout(&val, SCARG(uap, value), sizeof(val)));
    731        1.1  christos }
    732        1.1  christos 
    733        1.1  christos int
    734       1.23       dsl sys__ksem_destroy(struct lwp *l, const struct sys__ksem_destroy_args *uap, register_t *retval)
    735        1.1  christos {
    736       1.23       dsl 	/* {
    737        1.1  christos 		semid_t id;
    738       1.23       dsl 	} */
    739        1.3   thorpej 	struct ksem_proc *kp;
    740        1.3   thorpej 	struct ksem_ref *ksr;
    741        1.1  christos 	struct ksem *ks;
    742        1.1  christos 
    743       1.16   thorpej 	kp = proc_getspecific(l->l_proc, ksem_specificdata_key);
    744       1.16   thorpej 	if (kp == NULL)
    745        1.3   thorpej 		return (EINVAL);
    746        1.3   thorpej 
    747       1.20        ad 	rw_enter(&kp->kp_lock, RW_WRITER);
    748        1.3   thorpej 
    749        1.3   thorpej 	ks = ksem_lookup_proc(kp, SCARG(uap, id));
    750        1.3   thorpej 	if (ks == NULL) {
    751       1.20        ad 		rw_exit(&kp->kp_lock);
    752        1.3   thorpej 		return (EINVAL);
    753        1.3   thorpej 	}
    754        1.3   thorpej 
    755       1.21        ad 	KASSERT(mutex_owned(&ks->ks_interlock));
    756        1.3   thorpej 
    757        1.3   thorpej 	/*
    758        1.3   thorpej 	 * XXX This misses named semaphores which have been unlink'd,
    759        1.3   thorpej 	 * XXX but since behavior of destroying a named semaphore is
    760        1.3   thorpej 	 * XXX undefined, this is technically allowed.
    761        1.3   thorpej 	 */
    762        1.3   thorpej 	if (ks->ks_name != NULL) {
    763       1.20        ad 		mutex_exit(&ks->ks_interlock);
    764       1.20        ad 		rw_exit(&kp->kp_lock);
    765        1.3   thorpej 		return (EINVAL);
    766        1.3   thorpej 	}
    767        1.3   thorpej 
    768        1.3   thorpej 	if (ks->ks_waiters) {
    769       1.20        ad 		mutex_exit(&ks->ks_interlock);
    770       1.20        ad 		rw_exit(&kp->kp_lock);
    771        1.3   thorpej 		return (EBUSY);
    772        1.3   thorpej 	}
    773        1.3   thorpej 
    774        1.3   thorpej 	ksr = ksem_drop_proc(kp, ks);
    775       1.20        ad 	rw_exit(&kp->kp_lock);
    776       1.21        ad 	kmem_free(ksr, sizeof(*ksr));
    777        1.3   thorpej 
    778        1.3   thorpej 	return (0);
    779        1.3   thorpej }
    780        1.3   thorpej 
    781        1.3   thorpej static void
    782        1.3   thorpej ksem_forkhook(struct proc *p2, struct proc *p1)
    783        1.3   thorpej {
    784        1.3   thorpej 	struct ksem_proc *kp1, *kp2;
    785        1.3   thorpej 	struct ksem_ref *ksr, *ksr1;
    786        1.3   thorpej 
    787       1.16   thorpej 	kp1 = proc_getspecific(p1, ksem_specificdata_key);
    788       1.16   thorpej 	if (kp1 == NULL)
    789        1.3   thorpej 		return;
    790        1.3   thorpej 
    791       1.16   thorpej 	kp2 = ksem_proc_alloc();
    792        1.3   thorpej 
    793       1.20        ad 	rw_enter(&kp1->kp_lock, RW_READER);
    794        1.3   thorpej 
    795        1.3   thorpej 	if (!LIST_EMPTY(&kp1->kp_ksems)) {
    796        1.3   thorpej 		LIST_FOREACH(ksr, &kp1->kp_ksems, ksr_list) {
    797       1.21        ad 			ksr1 = kmem_alloc(sizeof(*ksr), KM_SLEEP);
    798        1.3   thorpej 			ksr1->ksr_ksem = ksr->ksr_ksem;
    799       1.20        ad 			mutex_enter(&ksr->ksr_ksem->ks_interlock);
    800        1.3   thorpej 			ksem_addref(ksr->ksr_ksem);
    801       1.20        ad 			mutex_exit(&ksr->ksr_ksem->ks_interlock);
    802        1.3   thorpej 			LIST_INSERT_HEAD(&kp2->kp_ksems, ksr1, ksr_list);
    803        1.3   thorpej 		}
    804        1.1  christos 	}
    805        1.3   thorpej 
    806       1.20        ad 	rw_exit(&kp1->kp_lock);
    807       1.16   thorpej 	proc_setspecific(p2, ksem_specificdata_key, kp2);
    808        1.1  christos }
    809        1.1  christos 
    810        1.1  christos static void
    811       1.18      yamt ksem_exechook(struct proc *p, void *arg)
    812        1.1  christos {
    813        1.3   thorpej 	struct ksem_proc *kp;
    814        1.1  christos 
    815       1.16   thorpej 	kp = proc_getspecific(p, ksem_specificdata_key);
    816       1.16   thorpej 	if (kp != NULL) {
    817       1.16   thorpej 		proc_setspecific(p, ksem_specificdata_key, NULL);
    818       1.16   thorpej 		ksem_proc_dtor(kp);
    819        1.1  christos 	}
    820        1.1  christos }
    821        1.1  christos 
    822        1.1  christos void
    823        1.1  christos ksem_init(void)
    824        1.1  christos {
    825       1.16   thorpej 	int i, error;
    826        1.3   thorpej 
    827       1.20        ad 	mutex_init(&ksem_mutex, MUTEX_DEFAULT, IPL_NONE);
    828       1.16   thorpej 	exechook_establish(ksem_exechook, NULL);
    829        1.3   thorpej 	forkhook_establish(ksem_forkhook);
    830       1.13      cube 
    831       1.13      cube 	for (i = 0; i < SEM_HASHTBL_SIZE; i++)
    832       1.13      cube 		LIST_INIT(&ksem_hash[i]);
    833       1.16   thorpej 
    834       1.16   thorpej 	error = proc_specific_key_create(&ksem_specificdata_key,
    835       1.16   thorpej 					 ksem_proc_dtor);
    836       1.16   thorpej 	KASSERT(error == 0);
    837        1.1  christos }
    838       1.22     rmind 
    839       1.22     rmind /*
    840       1.22     rmind  * Sysctl initialization and nodes.
    841       1.22     rmind  */
    842       1.22     rmind 
    843       1.22     rmind SYSCTL_SETUP(sysctl_posix_sem_setup, "sysctl kern.posix subtree setup")
    844       1.22     rmind {
    845       1.22     rmind 	const struct sysctlnode *node = NULL;
    846       1.22     rmind 
    847       1.22     rmind 	sysctl_createv(clog, 0, NULL, NULL,
    848       1.22     rmind 		CTLFLAG_PERMANENT,
    849       1.22     rmind 		CTLTYPE_NODE, "kern", NULL,
    850       1.22     rmind 		NULL, 0, NULL, 0,
    851       1.22     rmind 		CTL_KERN, CTL_EOL);
    852       1.22     rmind 	sysctl_createv(clog, 0, NULL, &node,
    853       1.22     rmind 		CTLFLAG_PERMANENT,
    854       1.22     rmind 		CTLTYPE_NODE, "posix",
    855       1.22     rmind 		SYSCTL_DESCR("POSIX options"),
    856       1.22     rmind 		NULL, 0, NULL, 0,
    857       1.22     rmind 		CTL_KERN, CTL_CREATE, CTL_EOL);
    858       1.22     rmind 
    859       1.22     rmind 	if (node == NULL)
    860       1.22     rmind 		return;
    861       1.22     rmind 
    862       1.22     rmind 	sysctl_createv(clog, 0, &node, NULL,
    863       1.22     rmind 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
    864       1.22     rmind 		CTLTYPE_INT, "semmax",
    865       1.22     rmind 		SYSCTL_DESCR("Maximal number of semaphores"),
    866       1.22     rmind 		NULL, 0, &sem_max, 0,
    867       1.22     rmind 		CTL_CREATE, CTL_EOL);
    868       1.22     rmind }
    869