uipc_sem.c revision 1.13.4.1 1 1.13.4.1 elad /* $NetBSD: uipc_sem.c,v 1.13.4.1 2006/03/08 00:53:41 elad Exp $ */
2 1.3 thorpej
3 1.3 thorpej /*-
4 1.3 thorpej * Copyright (c) 2003 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 1.3 thorpej * by Jason R. Thorpe of Wasabi Systems, Inc.
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 * 3. All advertising materials mentioning features or use of this software
19 1.3 thorpej * must display the following acknowledgement:
20 1.3 thorpej * This product includes software developed by the NetBSD
21 1.3 thorpej * Foundation, Inc. and its contributors.
22 1.3 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.3 thorpej * contributors may be used to endorse or promote products derived
24 1.3 thorpej * from this software without specific prior written permission.
25 1.3 thorpej *
26 1.3 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.3 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.3 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.3 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.3 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.3 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.3 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.3 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.3 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.3 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.3 thorpej * POSSIBILITY OF SUCH DAMAGE.
37 1.3 thorpej */
38 1.1 christos
39 1.1 christos /*
40 1.1 christos * Copyright (c) 2002 Alfred Perlstein <alfred (at) FreeBSD.org>
41 1.1 christos * All rights reserved.
42 1.1 christos *
43 1.1 christos * Redistribution and use in source and binary forms, with or without
44 1.1 christos * modification, are permitted provided that the following conditions
45 1.1 christos * are met:
46 1.1 christos * 1. Redistributions of source code must retain the above copyright
47 1.1 christos * notice, this list of conditions and the following disclaimer.
48 1.1 christos * 2. Redistributions in binary form must reproduce the above copyright
49 1.1 christos * notice, this list of conditions and the following disclaimer in the
50 1.1 christos * documentation and/or other materials provided with the distribution.
51 1.1 christos *
52 1.1 christos * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
53 1.1 christos * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
54 1.1 christos * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
55 1.1 christos * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
56 1.1 christos * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
57 1.1 christos * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
58 1.1 christos * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
59 1.1 christos * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
60 1.1 christos * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
61 1.1 christos * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
62 1.1 christos * SUCH DAMAGE.
63 1.1 christos */
64 1.9 lukem
65 1.9 lukem #include <sys/cdefs.h>
66 1.13.4.1 elad __KERNEL_RCSID(0, "$NetBSD: uipc_sem.c,v 1.13.4.1 2006/03/08 00:53:41 elad Exp $");
67 1.1 christos
68 1.1 christos #include "opt_posix.h"
69 1.1 christos
70 1.1 christos #include <sys/param.h>
71 1.1 christos #include <sys/systm.h>
72 1.1 christos #include <sys/kernel.h>
73 1.1 christos #include <sys/proc.h>
74 1.1 christos #include <sys/lock.h>
75 1.1 christos #include <sys/ksem.h>
76 1.5 matt #include <sys/sa.h>
77 1.1 christos #include <sys/syscall.h>
78 1.1 christos #include <sys/stat.h>
79 1.1 christos #include <sys/malloc.h>
80 1.1 christos #include <sys/fcntl.h>
81 1.1 christos
82 1.1 christos #include <sys/mount.h>
83 1.1 christos
84 1.1 christos #include <sys/syscallargs.h>
85 1.1 christos
86 1.1 christos #ifndef SEM_MAX
87 1.1 christos #define SEM_MAX 30
88 1.1 christos #endif
89 1.1 christos
90 1.1 christos #define SEM_MAX_NAMELEN 14
91 1.1 christos #define SEM_VALUE_MAX (~0U)
92 1.13 cube #define SEM_HASHTBL_SIZE 13
93 1.1 christos
94 1.13 cube #define SEM_TO_ID(x) (((x)->ks_id))
95 1.13 cube #define SEM_HASH(id) ((id) % SEM_HASHTBL_SIZE)
96 1.4 thorpej
97 1.4 thorpej MALLOC_DEFINE(M_SEM, "p1003_1b_sem", "p1003_1b semaphores");
98 1.1 christos
99 1.3 thorpej /*
100 1.3 thorpej * Note: to read the ks_name member, you need either the ks_interlock
101 1.3 thorpej * or the ksem_slock. To write the ks_name member, you need both. Make
102 1.3 thorpej * sure the order is ksem_slock -> ks_interlock.
103 1.3 thorpej */
104 1.1 christos struct ksem {
105 1.1 christos LIST_ENTRY(ksem) ks_entry; /* global list entry */
106 1.13 cube LIST_ENTRY(ksem) ks_hash; /* hash list entry */
107 1.3 thorpej struct simplelock ks_interlock; /* lock on this ksem */
108 1.1 christos char *ks_name; /* if named, this is the name */
109 1.3 thorpej unsigned int ks_ref; /* number of references */
110 1.1 christos mode_t ks_mode; /* protection bits */
111 1.1 christos uid_t ks_uid; /* creator uid */
112 1.1 christos gid_t ks_gid; /* creator gid */
113 1.1 christos unsigned int ks_value; /* current value */
114 1.3 thorpej unsigned int ks_waiters; /* number of waiters */
115 1.13 cube semid_t ks_id; /* unique identifier */
116 1.3 thorpej };
117 1.3 thorpej
118 1.3 thorpej struct ksem_ref {
119 1.3 thorpej LIST_ENTRY(ksem_ref) ksr_list;
120 1.3 thorpej struct ksem *ksr_ksem;
121 1.3 thorpej };
122 1.3 thorpej
123 1.3 thorpej struct ksem_proc {
124 1.3 thorpej struct lock kp_lock;
125 1.3 thorpej LIST_HEAD(, ksem_ref) kp_ksems;
126 1.1 christos };
127 1.1 christos
128 1.13 cube LIST_HEAD(ksem_list, ksem);
129 1.13 cube
130 1.1 christos /*
131 1.3 thorpej * ksem_slock protects ksem_head and nsems. Only named semaphores go
132 1.3 thorpej * onto ksem_head.
133 1.1 christos */
134 1.1 christos static struct simplelock ksem_slock;
135 1.13 cube static struct ksem_list ksem_head = LIST_HEAD_INITIALIZER(&ksem_head);
136 1.13 cube static struct ksem_list ksem_hash[SEM_HASHTBL_SIZE];
137 1.3 thorpej static int nsems = 0;
138 1.1 christos
139 1.13 cube /*
140 1.13 cube * ksem_counter is the last assigned semid_t. It needs to be COMPAT_NETBSD32
141 1.13 cube * friendly, even though semid_t itself is defined as uintptr_t.
142 1.13 cube */
143 1.13 cube static uint32_t ksem_counter = 1;
144 1.13 cube
145 1.13 cube
146 1.3 thorpej static void
147 1.3 thorpej ksem_free(struct ksem *ks)
148 1.3 thorpej {
149 1.1 christos
150 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
151 1.3 thorpej /*
152 1.3 thorpej * If the ksem is anonymous (or has been unlinked), then
153 1.3 thorpej * this is the end if its life.
154 1.3 thorpej */
155 1.3 thorpej if (ks->ks_name == NULL) {
156 1.3 thorpej simple_unlock(&ks->ks_interlock);
157 1.1 christos
158 1.3 thorpej simple_lock(&ksem_slock);
159 1.3 thorpej nsems--;
160 1.13 cube LIST_REMOVE(ks, ks_hash);
161 1.3 thorpej simple_unlock(&ksem_slock);
162 1.13 cube
163 1.13 cube free(ks, M_SEM);
164 1.3 thorpej return;
165 1.3 thorpej }
166 1.3 thorpej simple_unlock(&ks->ks_interlock);
167 1.3 thorpej }
168 1.1 christos
169 1.12 perry static inline void
170 1.3 thorpej ksem_addref(struct ksem *ks)
171 1.1 christos {
172 1.1 christos
173 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
174 1.1 christos ks->ks_ref++;
175 1.3 thorpej KASSERT(ks->ks_ref != 0); /* XXX KDASSERT */
176 1.1 christos }
177 1.1 christos
178 1.12 perry static inline void
179 1.3 thorpej ksem_delref(struct ksem *ks)
180 1.1 christos {
181 1.1 christos
182 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
183 1.3 thorpej KASSERT(ks->ks_ref != 0); /* XXX KDASSERT */
184 1.3 thorpej if (--ks->ks_ref == 0) {
185 1.1 christos ksem_free(ks);
186 1.3 thorpej return;
187 1.3 thorpej }
188 1.3 thorpej simple_unlock(&ks->ks_interlock);
189 1.3 thorpej }
190 1.3 thorpej
191 1.3 thorpej static struct ksem_proc *
192 1.3 thorpej ksem_proc_alloc(void)
193 1.3 thorpej {
194 1.3 thorpej struct ksem_proc *kp;
195 1.3 thorpej
196 1.3 thorpej kp = malloc(sizeof(*kp), M_SEM, M_WAITOK);
197 1.3 thorpej lockinit(&kp->kp_lock, PWAIT, "ksproc", 0, 0);
198 1.3 thorpej LIST_INIT(&kp->kp_ksems);
199 1.3 thorpej
200 1.3 thorpej return (kp);
201 1.1 christos }
202 1.1 christos
203 1.3 thorpej static void
204 1.3 thorpej ksem_add_proc(struct proc *p, struct ksem *ks)
205 1.3 thorpej {
206 1.3 thorpej struct ksem_proc *kp;
207 1.3 thorpej struct ksem_ref *ksr;
208 1.3 thorpej
209 1.3 thorpej if (p->p_ksems == NULL) {
210 1.3 thorpej kp = ksem_proc_alloc();
211 1.3 thorpej p->p_ksems = kp;
212 1.3 thorpej } else
213 1.3 thorpej kp = p->p_ksems;
214 1.3 thorpej
215 1.3 thorpej ksr = malloc(sizeof(*ksr), M_SEM, M_WAITOK);
216 1.3 thorpej ksr->ksr_ksem = ks;
217 1.3 thorpej
218 1.3 thorpej lockmgr(&kp->kp_lock, LK_EXCLUSIVE, NULL);
219 1.3 thorpej LIST_INSERT_HEAD(&kp->kp_ksems, ksr, ksr_list);
220 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
221 1.3 thorpej }
222 1.3 thorpej
223 1.3 thorpej /* We MUST have a write lock on the ksem_proc list! */
224 1.3 thorpej static struct ksem_ref *
225 1.3 thorpej ksem_drop_proc(struct ksem_proc *kp, struct ksem *ks)
226 1.1 christos {
227 1.3 thorpej struct ksem_ref *ksr;
228 1.1 christos
229 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
230 1.3 thorpej LIST_FOREACH(ksr, &kp->kp_ksems, ksr_list) {
231 1.3 thorpej if (ksr->ksr_ksem == ks) {
232 1.3 thorpej ksem_delref(ks);
233 1.3 thorpej LIST_REMOVE(ksr, ksr_list);
234 1.3 thorpej return (ksr);
235 1.3 thorpej }
236 1.1 christos }
237 1.3 thorpej #ifdef DIAGNOSTIC
238 1.3 thorpej panic("ksem_drop_proc: ksem_proc %p ksem %p", kp, ks);
239 1.3 thorpej #endif
240 1.1 christos return (NULL);
241 1.1 christos }
242 1.1 christos
243 1.3 thorpej static int
244 1.3 thorpej ksem_perm(struct proc *p, struct ksem *ks)
245 1.3 thorpej {
246 1.13.4.1 elad kauth_cred_t uc;
247 1.3 thorpej
248 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
249 1.13.4.1 elad uc = p->p_cred;
250 1.13.4.1 elad if ((kauth_cred_geteuid(uc) == ks->ks_uid && (ks->ks_mode & S_IWUSR) != 0) ||
251 1.13.4.1 elad (kauth_cred_getegid(uc) == ks->ks_gid && (ks->ks_mode & S_IWGRP) != 0) ||
252 1.13.4.1 elad (ks->ks_mode & S_IWOTH) != 0 ||
253 1.13.4.1 elad generic_authorize(uc, KAUTH_GENERIC_ISSUSER, &p->p_acflag) == 0)
254 1.3 thorpej return (0);
255 1.3 thorpej return (EPERM);
256 1.3 thorpej }
257 1.3 thorpej
258 1.1 christos static struct ksem *
259 1.13 cube ksem_lookup_byid(semid_t id)
260 1.13 cube {
261 1.13 cube struct ksem *ks;
262 1.13 cube
263 1.13 cube LOCK_ASSERT(simple_lock_held(&ksem_slock));
264 1.13 cube LIST_FOREACH(ks, &ksem_hash[SEM_HASH(id)], ks_hash) {
265 1.13 cube if (ks->ks_id == id)
266 1.13 cube return ks;
267 1.13 cube }
268 1.13 cube return NULL;
269 1.13 cube }
270 1.13 cube
271 1.13 cube static struct ksem *
272 1.3 thorpej ksem_lookup_byname(const char *name)
273 1.1 christos {
274 1.1 christos struct ksem *ks;
275 1.1 christos
276 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ksem_slock));
277 1.3 thorpej LIST_FOREACH(ks, &ksem_head, ks_entry) {
278 1.3 thorpej if (strcmp(ks->ks_name, name) == 0) {
279 1.3 thorpej simple_lock(&ks->ks_interlock);
280 1.1 christos return (ks);
281 1.3 thorpej }
282 1.3 thorpej }
283 1.1 christos return (NULL);
284 1.1 christos }
285 1.1 christos
286 1.1 christos static int
287 1.3 thorpej ksem_create(struct proc *p, const char *name, struct ksem **ksret,
288 1.3 thorpej mode_t mode, unsigned int value)
289 1.1 christos {
290 1.1 christos struct ksem *ret;
291 1.13.4.1 elad kauth_cred_t uc;
292 1.1 christos size_t len;
293 1.1 christos
294 1.13.4.1 elad uc = p->p_cred;
295 1.1 christos if (value > SEM_VALUE_MAX)
296 1.1 christos return (EINVAL);
297 1.1 christos ret = malloc(sizeof(*ret), M_SEM, M_WAITOK | M_ZERO);
298 1.1 christos if (name != NULL) {
299 1.1 christos len = strlen(name);
300 1.1 christos if (len > SEM_MAX_NAMELEN) {
301 1.1 christos free(ret, M_SEM);
302 1.1 christos return (ENAMETOOLONG);
303 1.1 christos }
304 1.1 christos /* name must start with a '/' but not contain one. */
305 1.1 christos if (*name != '/' || len < 2 || strchr(name + 1, '/') != NULL) {
306 1.1 christos free(ret, M_SEM);
307 1.1 christos return (EINVAL);
308 1.1 christos }
309 1.1 christos ret->ks_name = malloc(len + 1, M_SEM, M_WAITOK);
310 1.6 itojun strlcpy(ret->ks_name, name, len + 1);
311 1.3 thorpej } else
312 1.1 christos ret->ks_name = NULL;
313 1.1 christos ret->ks_mode = mode;
314 1.1 christos ret->ks_value = value;
315 1.1 christos ret->ks_ref = 1;
316 1.1 christos ret->ks_waiters = 0;
317 1.13.4.1 elad ret->ks_uid = kauth_cred_geteuid(uc);
318 1.13.4.1 elad ret->ks_gid = kauth_cred_getegid(uc);
319 1.3 thorpej simple_lock_init(&ret->ks_interlock);
320 1.3 thorpej
321 1.1 christos simple_lock(&ksem_slock);
322 1.1 christos if (nsems >= SEM_MAX) {
323 1.3 thorpej simple_unlock(&ksem_slock);
324 1.3 thorpej if (ret->ks_name != NULL)
325 1.3 thorpej free(ret->ks_name, M_SEM);
326 1.3 thorpej free(ret, M_SEM);
327 1.3 thorpej return (ENFILE);
328 1.1 christos }
329 1.3 thorpej nsems++;
330 1.13 cube while (ksem_lookup_byid(ksem_counter) != NULL) {
331 1.13 cube ksem_counter++;
332 1.13 cube /* 0 is a special value for libpthread */
333 1.13 cube if (ksem_counter == 0)
334 1.13 cube ksem_counter++;
335 1.13 cube }
336 1.13 cube ret->ks_id = ksem_counter;
337 1.13 cube LIST_INSERT_HEAD(&ksem_hash[SEM_HASH(ret->ks_id)], ret, ks_hash);
338 1.1 christos simple_unlock(&ksem_slock);
339 1.3 thorpej
340 1.3 thorpej *ksret = ret;
341 1.3 thorpej return (0);
342 1.1 christos }
343 1.1 christos
344 1.1 christos int
345 1.2 christos sys__ksem_init(struct lwp *l, void *v, register_t *retval)
346 1.1 christos {
347 1.2 christos struct sys__ksem_init_args /* {
348 1.1 christos unsigned int value;
349 1.1 christos semid_t *idp;
350 1.1 christos } */ *uap = v;
351 1.13 cube
352 1.13 cube return do_ksem_init(l, SCARG(uap, value), SCARG(uap, idp), copyout);
353 1.13 cube }
354 1.13 cube
355 1.13 cube int
356 1.13 cube do_ksem_init(struct lwp *l, unsigned int value, semid_t *idp,
357 1.13 cube copyout_t docopyout)
358 1.13 cube {
359 1.1 christos struct ksem *ks;
360 1.1 christos semid_t id;
361 1.1 christos int error;
362 1.1 christos
363 1.3 thorpej /* Note the mode does not matter for anonymous semaphores. */
364 1.13 cube error = ksem_create(l->l_proc, NULL, &ks, 0, value);
365 1.1 christos if (error)
366 1.1 christos return (error);
367 1.1 christos id = SEM_TO_ID(ks);
368 1.13 cube error = (*docopyout)(&id, idp, sizeof(id));
369 1.1 christos if (error) {
370 1.3 thorpej simple_lock(&ks->ks_interlock);
371 1.3 thorpej ksem_delref(ks);
372 1.1 christos return (error);
373 1.1 christos }
374 1.3 thorpej
375 1.3 thorpej ksem_add_proc(l->l_proc, ks);
376 1.3 thorpej
377 1.3 thorpej return (0);
378 1.1 christos }
379 1.1 christos
380 1.1 christos int
381 1.2 christos sys__ksem_open(struct lwp *l, void *v, register_t *retval)
382 1.1 christos {
383 1.2 christos struct sys__ksem_open_args /* {
384 1.1 christos const char *name;
385 1.1 christos int oflag;
386 1.1 christos mode_t mode;
387 1.1 christos unsigned int value;
388 1.10 perry semid_t *idp;
389 1.1 christos } */ *uap = v;
390 1.13 cube
391 1.13 cube return do_ksem_open(l, SCARG(uap, name), SCARG(uap, oflag),
392 1.13 cube SCARG(uap, mode), SCARG(uap, value), SCARG(uap, idp), copyout);
393 1.13 cube }
394 1.13 cube
395 1.13 cube int
396 1.13 cube do_ksem_open(struct lwp *l, const char *semname, int oflag, mode_t mode,
397 1.13 cube unsigned int value, semid_t *idp, copyout_t docopyout)
398 1.13 cube {
399 1.1 christos char name[SEM_MAX_NAMELEN + 1];
400 1.1 christos size_t done;
401 1.1 christos int error;
402 1.1 christos struct ksem *ksnew, *ks;
403 1.1 christos semid_t id;
404 1.1 christos
405 1.13 cube error = copyinstr(semname, name, sizeof(name), &done);
406 1.1 christos if (error)
407 1.1 christos return (error);
408 1.1 christos
409 1.1 christos ksnew = NULL;
410 1.1 christos simple_lock(&ksem_slock);
411 1.1 christos ks = ksem_lookup_byname(name);
412 1.3 thorpej
413 1.3 thorpej /* Found one? */
414 1.3 thorpej if (ks != NULL) {
415 1.3 thorpej /* Check for exclusive create. */
416 1.13 cube if (oflag & O_EXCL) {
417 1.3 thorpej simple_unlock(&ks->ks_interlock);
418 1.1 christos simple_unlock(&ksem_slock);
419 1.3 thorpej return (EEXIST);
420 1.1 christos }
421 1.3 thorpej found_one:
422 1.1 christos /*
423 1.3 thorpej * Verify permissions. If we can access it, add
424 1.3 thorpej * this process's reference.
425 1.1 christos */
426 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
427 1.1 christos error = ksem_perm(l->l_proc, ks);
428 1.3 thorpej if (error == 0)
429 1.3 thorpej ksem_addref(ks);
430 1.3 thorpej simple_unlock(&ks->ks_interlock);
431 1.1 christos simple_unlock(&ksem_slock);
432 1.1 christos if (error)
433 1.1 christos return (error);
434 1.3 thorpej
435 1.1 christos id = SEM_TO_ID(ks);
436 1.13 cube error = (*docopyout)(&id, idp, sizeof(id));
437 1.1 christos if (error) {
438 1.3 thorpej simple_lock(&ks->ks_interlock);
439 1.3 thorpej ksem_delref(ks);
440 1.1 christos return (error);
441 1.1 christos }
442 1.3 thorpej
443 1.3 thorpej ksem_add_proc(l->l_proc, ks);
444 1.3 thorpej
445 1.3 thorpej return (0);
446 1.3 thorpej }
447 1.3 thorpej
448 1.3 thorpej /*
449 1.3 thorpej * didn't ask for creation? error.
450 1.3 thorpej */
451 1.13 cube if ((oflag & O_CREAT) == 0) {
452 1.1 christos simple_unlock(&ksem_slock);
453 1.3 thorpej return (ENOENT);
454 1.1 christos }
455 1.1 christos
456 1.3 thorpej /*
457 1.3 thorpej * We may block during creation, so drop the lock.
458 1.3 thorpej */
459 1.3 thorpej simple_unlock(&ksem_slock);
460 1.13 cube error = ksem_create(l->l_proc, name, &ksnew, mode, value);
461 1.3 thorpej if (error != 0)
462 1.3 thorpej return (error);
463 1.3 thorpej
464 1.3 thorpej id = SEM_TO_ID(ksnew);
465 1.13 cube error = (*docopyout)(&id, idp, sizeof(id));
466 1.3 thorpej if (error) {
467 1.3 thorpej free(ksnew->ks_name, M_SEM);
468 1.3 thorpej ksnew->ks_name = NULL;
469 1.1 christos
470 1.3 thorpej simple_lock(&ksnew->ks_interlock);
471 1.3 thorpej ksem_delref(ksnew);
472 1.3 thorpej return (error);
473 1.3 thorpej }
474 1.1 christos
475 1.3 thorpej /*
476 1.3 thorpej * We need to make sure we haven't lost a race while
477 1.3 thorpej * allocating during creation.
478 1.3 thorpej */
479 1.3 thorpej simple_lock(&ksem_slock);
480 1.3 thorpej if ((ks = ksem_lookup_byname(name)) != NULL) {
481 1.13 cube if (oflag & O_EXCL) {
482 1.3 thorpej simple_unlock(&ks->ks_interlock);
483 1.3 thorpej simple_unlock(&ksem_slock);
484 1.1 christos
485 1.3 thorpej free(ksnew->ks_name, M_SEM);
486 1.3 thorpej ksnew->ks_name = NULL;
487 1.1 christos
488 1.3 thorpej simple_lock(&ksnew->ks_interlock);
489 1.3 thorpej ksem_delref(ksnew);
490 1.3 thorpej return (EEXIST);
491 1.3 thorpej }
492 1.3 thorpej goto found_one;
493 1.3 thorpej } else {
494 1.3 thorpej /* ksnew already has its initial reference. */
495 1.10 perry LIST_INSERT_HEAD(&ksem_head, ksnew, ks_entry);
496 1.3 thorpej simple_unlock(&ksem_slock);
497 1.1 christos
498 1.3 thorpej ksem_add_proc(l->l_proc, ksnew);
499 1.1 christos }
500 1.3 thorpej return (error);
501 1.1 christos }
502 1.1 christos
503 1.3 thorpej /* We must have a read lock on the ksem_proc list! */
504 1.3 thorpej static struct ksem *
505 1.3 thorpej ksem_lookup_proc(struct ksem_proc *kp, semid_t id)
506 1.1 christos {
507 1.3 thorpej struct ksem_ref *ksr;
508 1.1 christos
509 1.3 thorpej LIST_FOREACH(ksr, &kp->kp_ksems, ksr_list) {
510 1.13 cube if (id == SEM_TO_ID(ksr->ksr_ksem)) {
511 1.3 thorpej simple_lock(&ksr->ksr_ksem->ks_interlock);
512 1.3 thorpej return (ksr->ksr_ksem);
513 1.3 thorpej }
514 1.1 christos }
515 1.3 thorpej
516 1.3 thorpej return (NULL);
517 1.1 christos }
518 1.1 christos
519 1.1 christos int
520 1.2 christos sys__ksem_unlink(struct lwp *l, void *v, register_t *retval)
521 1.1 christos {
522 1.2 christos struct sys__ksem_unlink_args /* {
523 1.1 christos const char *name;
524 1.1 christos } */ *uap = v;
525 1.3 thorpej char name[SEM_MAX_NAMELEN + 1], *cp;
526 1.1 christos size_t done;
527 1.1 christos struct ksem *ks;
528 1.1 christos int error;
529 1.1 christos
530 1.1 christos error = copyinstr(SCARG(uap, name), name, sizeof(name), &done);
531 1.1 christos if (error)
532 1.1 christos return error;
533 1.1 christos
534 1.1 christos simple_lock(&ksem_slock);
535 1.1 christos ks = ksem_lookup_byname(name);
536 1.3 thorpej if (ks == NULL) {
537 1.3 thorpej simple_unlock(&ksem_slock);
538 1.3 thorpej return (ENOENT);
539 1.1 christos }
540 1.3 thorpej
541 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
542 1.3 thorpej
543 1.3 thorpej LIST_REMOVE(ks, ks_entry);
544 1.3 thorpej cp = ks->ks_name;
545 1.3 thorpej ks->ks_name = NULL;
546 1.3 thorpej
547 1.1 christos simple_unlock(&ksem_slock);
548 1.3 thorpej
549 1.3 thorpej if (ks->ks_ref == 0)
550 1.3 thorpej ksem_free(ks);
551 1.3 thorpej else
552 1.3 thorpej simple_unlock(&ks->ks_interlock);
553 1.3 thorpej
554 1.3 thorpej free(cp, M_SEM);
555 1.3 thorpej
556 1.3 thorpej return (0);
557 1.1 christos }
558 1.1 christos
559 1.1 christos int
560 1.2 christos sys__ksem_close(struct lwp *l, void *v, register_t *retval)
561 1.1 christos {
562 1.2 christos struct sys__ksem_close_args /* {
563 1.1 christos semid_t id;
564 1.1 christos } */ *uap = v;
565 1.3 thorpej struct ksem_proc *kp;
566 1.3 thorpej struct ksem_ref *ksr;
567 1.1 christos struct ksem *ks;
568 1.1 christos
569 1.3 thorpej if ((kp = l->l_proc->p_ksems) == NULL)
570 1.3 thorpej return (EINVAL);
571 1.3 thorpej
572 1.3 thorpej lockmgr(&kp->kp_lock, LK_EXCLUSIVE, NULL);
573 1.3 thorpej
574 1.3 thorpej ks = ksem_lookup_proc(kp, SCARG(uap, id));
575 1.3 thorpej if (ks == NULL) {
576 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
577 1.3 thorpej return (EINVAL);
578 1.3 thorpej }
579 1.3 thorpej
580 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
581 1.3 thorpej if (ks->ks_name == NULL) {
582 1.3 thorpej simple_unlock(&ks->ks_interlock);
583 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
584 1.3 thorpej return (EINVAL);
585 1.3 thorpej }
586 1.3 thorpej
587 1.3 thorpej ksr = ksem_drop_proc(kp, ks);
588 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
589 1.3 thorpej free(ksr, M_SEM);
590 1.3 thorpej
591 1.3 thorpej return (0);
592 1.1 christos }
593 1.1 christos
594 1.1 christos int
595 1.2 christos sys__ksem_post(struct lwp *l, void *v, register_t *retval)
596 1.1 christos {
597 1.2 christos struct sys__ksem_post_args /* {
598 1.1 christos semid_t id;
599 1.1 christos } */ *uap = v;
600 1.3 thorpej struct ksem_proc *kp;
601 1.1 christos struct ksem *ks;
602 1.1 christos int error;
603 1.1 christos
604 1.3 thorpej if ((kp = l->l_proc->p_ksems) == NULL)
605 1.3 thorpej return (EINVAL);
606 1.3 thorpej
607 1.3 thorpej lockmgr(&kp->kp_lock, LK_SHARED, NULL);
608 1.3 thorpej ks = ksem_lookup_proc(kp, SCARG(uap, id));
609 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
610 1.3 thorpej if (ks == NULL)
611 1.3 thorpej return (EINVAL);
612 1.3 thorpej
613 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
614 1.1 christos if (ks->ks_value == SEM_VALUE_MAX) {
615 1.1 christos error = EOVERFLOW;
616 1.3 thorpej goto out;
617 1.1 christos }
618 1.1 christos ++ks->ks_value;
619 1.3 thorpej if (ks->ks_waiters)
620 1.1 christos wakeup(ks);
621 1.1 christos error = 0;
622 1.3 thorpej out:
623 1.3 thorpej simple_unlock(&ks->ks_interlock);
624 1.3 thorpej return (error);
625 1.3 thorpej }
626 1.3 thorpej
627 1.3 thorpej static int
628 1.3 thorpej ksem_wait(struct lwp *l, semid_t id, int tryflag)
629 1.3 thorpej {
630 1.3 thorpej struct ksem_proc *kp;
631 1.3 thorpej struct ksem *ks;
632 1.3 thorpej int error;
633 1.3 thorpej
634 1.3 thorpej if ((kp = l->l_proc->p_ksems) == NULL)
635 1.3 thorpej return (EINVAL);
636 1.3 thorpej
637 1.3 thorpej lockmgr(&kp->kp_lock, LK_SHARED, NULL);
638 1.3 thorpej ks = ksem_lookup_proc(kp, id);
639 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
640 1.3 thorpej if (ks == NULL)
641 1.3 thorpej return (EINVAL);
642 1.3 thorpej
643 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
644 1.3 thorpej ksem_addref(ks);
645 1.3 thorpej while (ks->ks_value == 0) {
646 1.3 thorpej ks->ks_waiters++;
647 1.10 perry error = tryflag ? EAGAIN : ltsleep(ks, PCATCH, "psem", 0,
648 1.3 thorpej &ks->ks_interlock);
649 1.3 thorpej ks->ks_waiters--;
650 1.3 thorpej if (error)
651 1.3 thorpej goto out;
652 1.3 thorpej }
653 1.3 thorpej ks->ks_value--;
654 1.3 thorpej error = 0;
655 1.3 thorpej out:
656 1.3 thorpej ksem_delref(ks);
657 1.1 christos return (error);
658 1.1 christos }
659 1.1 christos
660 1.1 christos int
661 1.2 christos sys__ksem_wait(struct lwp *l, void *v, register_t *retval)
662 1.1 christos {
663 1.2 christos struct sys__ksem_wait_args /* {
664 1.1 christos semid_t id;
665 1.1 christos } */ *uap = v;
666 1.1 christos
667 1.1 christos return ksem_wait(l, SCARG(uap, id), 0);
668 1.1 christos }
669 1.1 christos
670 1.1 christos int
671 1.2 christos sys__ksem_trywait(struct lwp *l, void *v, register_t *retval)
672 1.1 christos {
673 1.2 christos struct sys__ksem_trywait_args /* {
674 1.1 christos semid_t id;
675 1.1 christos } */ *uap = v;
676 1.1 christos
677 1.1 christos return ksem_wait(l, SCARG(uap, id), 1);
678 1.1 christos }
679 1.1 christos
680 1.1 christos int
681 1.2 christos sys__ksem_getvalue(struct lwp *l, void *v, register_t *retval)
682 1.1 christos {
683 1.2 christos struct sys__ksem_getvalue_args /* {
684 1.1 christos semid_t id;
685 1.1 christos unsigned int *value;
686 1.1 christos } */ *uap = v;
687 1.3 thorpej struct ksem_proc *kp;
688 1.1 christos struct ksem *ks;
689 1.1 christos unsigned int val;
690 1.1 christos
691 1.3 thorpej if ((kp = l->l_proc->p_ksems) == NULL)
692 1.3 thorpej return (EINVAL);
693 1.3 thorpej
694 1.3 thorpej lockmgr(&kp->kp_lock, LK_SHARED, NULL);
695 1.3 thorpej ks = ksem_lookup_proc(kp, SCARG(uap, id));
696 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
697 1.3 thorpej if (ks == NULL)
698 1.1 christos return (EINVAL);
699 1.3 thorpej
700 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
701 1.1 christos val = ks->ks_value;
702 1.3 thorpej simple_unlock(&ks->ks_interlock);
703 1.3 thorpej
704 1.3 thorpej return (copyout(&val, SCARG(uap, value), sizeof(val)));
705 1.1 christos }
706 1.1 christos
707 1.1 christos int
708 1.2 christos sys__ksem_destroy(struct lwp *l, void *v, register_t *retval)
709 1.1 christos {
710 1.2 christos struct sys__ksem_destroy_args /*{
711 1.1 christos semid_t id;
712 1.1 christos } */ *uap = v;
713 1.3 thorpej struct ksem_proc *kp;
714 1.3 thorpej struct ksem_ref *ksr;
715 1.1 christos struct ksem *ks;
716 1.1 christos
717 1.3 thorpej if ((kp = l->l_proc->p_ksems) == NULL)
718 1.3 thorpej return (EINVAL);
719 1.3 thorpej
720 1.3 thorpej lockmgr(&kp->kp_lock, LK_EXCLUSIVE, NULL);
721 1.3 thorpej
722 1.3 thorpej ks = ksem_lookup_proc(kp, SCARG(uap, id));
723 1.3 thorpej if (ks == NULL) {
724 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
725 1.3 thorpej return (EINVAL);
726 1.3 thorpej }
727 1.3 thorpej
728 1.3 thorpej LOCK_ASSERT(simple_lock_held(&ks->ks_interlock));
729 1.3 thorpej
730 1.3 thorpej /*
731 1.3 thorpej * XXX This misses named semaphores which have been unlink'd,
732 1.3 thorpej * XXX but since behavior of destroying a named semaphore is
733 1.3 thorpej * XXX undefined, this is technically allowed.
734 1.3 thorpej */
735 1.3 thorpej if (ks->ks_name != NULL) {
736 1.3 thorpej simple_unlock(&ks->ks_interlock);
737 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
738 1.3 thorpej return (EINVAL);
739 1.3 thorpej }
740 1.3 thorpej
741 1.3 thorpej if (ks->ks_waiters) {
742 1.3 thorpej simple_unlock(&ks->ks_interlock);
743 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
744 1.3 thorpej return (EBUSY);
745 1.3 thorpej }
746 1.3 thorpej
747 1.3 thorpej ksr = ksem_drop_proc(kp, ks);
748 1.3 thorpej lockmgr(&kp->kp_lock, LK_RELEASE, NULL);
749 1.3 thorpej free(ksr, M_SEM);
750 1.3 thorpej
751 1.3 thorpej return (0);
752 1.3 thorpej }
753 1.3 thorpej
754 1.3 thorpej static void
755 1.3 thorpej ksem_forkhook(struct proc *p2, struct proc *p1)
756 1.3 thorpej {
757 1.3 thorpej struct ksem_proc *kp1, *kp2;
758 1.3 thorpej struct ksem_ref *ksr, *ksr1;
759 1.3 thorpej
760 1.3 thorpej if ((kp1 = p1->p_ksems) == NULL) {
761 1.3 thorpej p2->p_ksems = NULL;
762 1.3 thorpej return;
763 1.3 thorpej }
764 1.3 thorpej
765 1.3 thorpej p2->p_ksems = kp2 = ksem_proc_alloc();
766 1.3 thorpej
767 1.3 thorpej lockmgr(&kp1->kp_lock, LK_SHARED, NULL);
768 1.3 thorpej
769 1.3 thorpej if (!LIST_EMPTY(&kp1->kp_ksems)) {
770 1.3 thorpej LIST_FOREACH(ksr, &kp1->kp_ksems, ksr_list) {
771 1.3 thorpej ksr1 = malloc(sizeof(*ksr), M_SEM, M_WAITOK);
772 1.3 thorpej ksr1->ksr_ksem = ksr->ksr_ksem;
773 1.3 thorpej simple_lock(&ksr->ksr_ksem->ks_interlock);
774 1.3 thorpej ksem_addref(ksr->ksr_ksem);
775 1.3 thorpej simple_unlock(&ksr->ksr_ksem->ks_interlock);
776 1.3 thorpej LIST_INSERT_HEAD(&kp2->kp_ksems, ksr1, ksr_list);
777 1.3 thorpej }
778 1.1 christos }
779 1.3 thorpej
780 1.3 thorpej lockmgr(&kp1->kp_lock, LK_RELEASE, NULL);
781 1.1 christos }
782 1.1 christos
783 1.1 christos static void
784 1.8 fvdl ksem_exithook(struct proc *p, void *arg)
785 1.1 christos {
786 1.3 thorpej struct ksem_proc *kp;
787 1.3 thorpej struct ksem_ref *ksr;
788 1.3 thorpej
789 1.8 fvdl if ((kp = p->p_ksems) == NULL)
790 1.3 thorpej return;
791 1.1 christos
792 1.3 thorpej /* Don't bother locking; process is dying. */
793 1.3 thorpej
794 1.3 thorpej while ((ksr = LIST_FIRST(&kp->kp_ksems)) != NULL) {
795 1.3 thorpej LIST_REMOVE(ksr, ksr_list);
796 1.3 thorpej simple_lock(&ksr->ksr_ksem->ks_interlock);
797 1.3 thorpej ksem_delref(ksr->ksr_ksem);
798 1.3 thorpej free(ksr, M_SEM);
799 1.1 christos }
800 1.1 christos }
801 1.1 christos
802 1.1 christos void
803 1.1 christos ksem_init(void)
804 1.1 christos {
805 1.13 cube int i;
806 1.3 thorpej
807 1.1 christos simple_lock_init(&ksem_slock);
808 1.1 christos exithook_establish(ksem_exithook, NULL);
809 1.1 christos exechook_establish(ksem_exithook, NULL);
810 1.3 thorpej forkhook_establish(ksem_forkhook);
811 1.13 cube
812 1.13 cube for (i = 0; i < SEM_HASHTBL_SIZE; i++)
813 1.13 cube LIST_INIT(&ksem_hash[i]);
814 1.1 christos }
815