sysv_sem.c revision 1.66 1 1.66 yamt /* $NetBSD: sysv_sem.c,v 1.66 2006/11/01 10:17:59 yamt Exp $ */
2 1.33 thorpej
3 1.33 thorpej /*-
4 1.33 thorpej * Copyright (c) 1999 The NetBSD Foundation, Inc.
5 1.33 thorpej * All rights reserved.
6 1.33 thorpej *
7 1.33 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.33 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.33 thorpej * NASA Ames Research Center.
10 1.33 thorpej *
11 1.33 thorpej * Redistribution and use in source and binary forms, with or without
12 1.33 thorpej * modification, are permitted provided that the following conditions
13 1.33 thorpej * are met:
14 1.33 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.33 thorpej * notice, this list of conditions and the following disclaimer.
16 1.33 thorpej * 2. Redistributions in binary form must reproduce the above copyright
17 1.33 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.33 thorpej * documentation and/or other materials provided with the distribution.
19 1.33 thorpej * 3. All advertising materials mentioning features or use of this software
20 1.33 thorpej * must display the following acknowledgement:
21 1.33 thorpej * This product includes software developed by the NetBSD
22 1.33 thorpej * Foundation, Inc. and its contributors.
23 1.33 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.33 thorpej * contributors may be used to endorse or promote products derived
25 1.33 thorpej * from this software without specific prior written permission.
26 1.33 thorpej *
27 1.33 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.33 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.33 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.33 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.33 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.33 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.33 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.33 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.33 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.33 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.33 thorpej * POSSIBILITY OF SUCH DAMAGE.
38 1.33 thorpej */
39 1.9 cgd
40 1.1 cgd /*
41 1.1 cgd * Implementation of SVID semaphores
42 1.1 cgd *
43 1.33 thorpej * Author: Daniel Boulet
44 1.1 cgd *
45 1.1 cgd * This software is provided ``AS IS'' without any warranties of any kind.
46 1.1 cgd */
47 1.42 lukem
48 1.42 lukem #include <sys/cdefs.h>
49 1.66 yamt __KERNEL_RCSID(0, "$NetBSD: sysv_sem.c,v 1.66 2006/11/01 10:17:59 yamt Exp $");
50 1.31 tron
51 1.32 tron #define SYSVSEM
52 1.1 cgd
53 1.3 mycroft #include <sys/param.h>
54 1.3 mycroft #include <sys/kernel.h>
55 1.3 mycroft #include <sys/sem.h>
56 1.38 simonb #include <sys/sysctl.h>
57 1.57 chs #include <sys/malloc.h>
58 1.38 simonb #include <sys/mount.h> /* XXX for <sys/syscallargs.h> */
59 1.45 thorpej #include <sys/sa.h>
60 1.10 cgd #include <sys/syscallargs.h>
61 1.61 elad #include <sys/kauth.h>
62 1.25 christos
63 1.48 jdolecek static int semtot = 0;
64 1.48 jdolecek struct semid_ds *sema; /* semaphore id pool */
65 1.48 jdolecek static struct __sem *sem; /* semaphore pool */
66 1.48 jdolecek static struct sem_undo *semu_list; /* list of active undo structures */
67 1.48 jdolecek static int *semu; /* undo structure pool */
68 1.1 cgd
69 1.27 christos #ifdef SEM_DEBUG
70 1.28 christos #define SEM_PRINTF(a) printf a
71 1.27 christos #else
72 1.27 christos #define SEM_PRINTF(a)
73 1.27 christos #endif
74 1.27 christos
75 1.53 junyoung struct sem_undo *semu_alloc(struct proc *);
76 1.53 junyoung int semundo_adjust(struct proc *, struct sem_undo **, int, int, int);
77 1.53 junyoung void semundo_clear(int, int);
78 1.25 christos
79 1.37 sommerfe /*
80 1.37 sommerfe * XXXSMP Once we go MP, there needs to be a lock for the semaphore system.
81 1.37 sommerfe * Until then, we're saved by being a non-preemptive kernel.
82 1.37 sommerfe */
83 1.37 sommerfe
84 1.25 christos void
85 1.59 thorpej seminit(void)
86 1.1 cgd {
87 1.48 jdolecek int i, sz;
88 1.48 jdolecek vaddr_t v;
89 1.1 cgd
90 1.48 jdolecek /* Allocate pageable memory for our structures */
91 1.51 enami sz = seminfo.semmni * sizeof(struct semid_ds) +
92 1.51 enami seminfo.semmns * sizeof(struct __sem) +
93 1.51 enami seminfo.semmnu * seminfo.semusz;
94 1.56 yamt v = uvm_km_alloc(kernel_map, round_page(sz), 0,
95 1.56 yamt UVM_KMF_WIRED|UVM_KMF_ZERO);
96 1.56 yamt if (v == 0)
97 1.48 jdolecek panic("sysv_sem: cannot allocate memory");
98 1.48 jdolecek sema = (void *)v;
99 1.48 jdolecek sem = (void *)(sema + seminfo.semmni);
100 1.48 jdolecek semu = (void *)(sem + seminfo.semmns);
101 1.5 mycroft
102 1.5 mycroft for (i = 0; i < seminfo.semmni; i++) {
103 1.33 thorpej sema[i]._sem_base = 0;
104 1.5 mycroft sema[i].sem_perm.mode = 0;
105 1.5 mycroft }
106 1.5 mycroft for (i = 0; i < seminfo.semmnu; i++) {
107 1.35 augustss struct sem_undo *suptr = SEMU(i);
108 1.5 mycroft suptr->un_proc = NULL;
109 1.5 mycroft }
110 1.5 mycroft semu_list = NULL;
111 1.44 christos exithook_establish(semexit, NULL);
112 1.1 cgd }
113 1.1 cgd
114 1.1 cgd /*
115 1.37 sommerfe * Placebo.
116 1.1 cgd */
117 1.1 cgd
118 1.1 cgd int
119 1.66 yamt sys_semconfig(struct lwp *l, void *v, register_t *retval)
120 1.23 thorpej {
121 1.51 enami
122 1.5 mycroft *retval = 0;
123 1.37 sommerfe return 0;
124 1.1 cgd }
125 1.1 cgd
126 1.1 cgd /*
127 1.1 cgd * Allocate a new sem_undo structure for a process
128 1.1 cgd * (returns ptr to structure or NULL if no more room)
129 1.1 cgd */
130 1.1 cgd
131 1.1 cgd struct sem_undo *
132 1.59 thorpej semu_alloc(struct proc *p)
133 1.1 cgd {
134 1.35 augustss int i;
135 1.35 augustss struct sem_undo *suptr;
136 1.35 augustss struct sem_undo **supptr;
137 1.5 mycroft int attempt;
138 1.1 cgd
139 1.1 cgd /*
140 1.5 mycroft * Try twice to allocate something.
141 1.5 mycroft * (we'll purge any empty structures after the first pass so
142 1.5 mycroft * two passes are always enough)
143 1.1 cgd */
144 1.1 cgd
145 1.5 mycroft for (attempt = 0; attempt < 2; attempt++) {
146 1.5 mycroft /*
147 1.5 mycroft * Look for a free structure.
148 1.5 mycroft * Fill it in and return it if we find one.
149 1.5 mycroft */
150 1.5 mycroft
151 1.5 mycroft for (i = 0; i < seminfo.semmnu; i++) {
152 1.5 mycroft suptr = SEMU(i);
153 1.5 mycroft if (suptr->un_proc == NULL) {
154 1.5 mycroft suptr->un_next = semu_list;
155 1.5 mycroft semu_list = suptr;
156 1.5 mycroft suptr->un_cnt = 0;
157 1.5 mycroft suptr->un_proc = p;
158 1.51 enami return (suptr);
159 1.5 mycroft }
160 1.5 mycroft }
161 1.1 cgd
162 1.5 mycroft /*
163 1.5 mycroft * We didn't find a free one, if this is the first attempt
164 1.5 mycroft * then try to free some structures.
165 1.5 mycroft */
166 1.5 mycroft
167 1.5 mycroft if (attempt == 0) {
168 1.5 mycroft /* All the structures are in use - try to free some */
169 1.5 mycroft int did_something = 0;
170 1.5 mycroft
171 1.5 mycroft supptr = &semu_list;
172 1.5 mycroft while ((suptr = *supptr) != NULL) {
173 1.5 mycroft if (suptr->un_cnt == 0) {
174 1.5 mycroft suptr->un_proc = NULL;
175 1.5 mycroft *supptr = suptr->un_next;
176 1.5 mycroft did_something = 1;
177 1.5 mycroft } else
178 1.52 enami supptr = &suptr->un_next;
179 1.5 mycroft }
180 1.5 mycroft
181 1.5 mycroft /* If we didn't free anything then just give-up */
182 1.5 mycroft if (!did_something)
183 1.51 enami return (NULL);
184 1.5 mycroft } else {
185 1.5 mycroft /*
186 1.5 mycroft * The second pass failed even though we freed
187 1.5 mycroft * something after the first pass!
188 1.5 mycroft * This is IMPOSSIBLE!
189 1.5 mycroft */
190 1.5 mycroft panic("semu_alloc - second attempt failed");
191 1.5 mycroft }
192 1.1 cgd }
193 1.25 christos return NULL;
194 1.1 cgd }
195 1.1 cgd
196 1.1 cgd /*
197 1.1 cgd * Adjust a particular entry for a particular proc
198 1.1 cgd */
199 1.1 cgd
200 1.1 cgd int
201 1.59 thorpej semundo_adjust(struct proc *p, struct sem_undo **supptr, int semid, int semnum,
202 1.59 thorpej int adjval)
203 1.1 cgd {
204 1.35 augustss struct sem_undo *suptr;
205 1.35 augustss struct undo *sunptr;
206 1.5 mycroft int i;
207 1.1 cgd
208 1.51 enami /*
209 1.51 enami * Look for and remember the sem_undo if the caller doesn't
210 1.51 enami * provide it
211 1.51 enami */
212 1.1 cgd
213 1.5 mycroft suptr = *supptr;
214 1.4 mycroft if (suptr == NULL) {
215 1.52 enami for (suptr = semu_list; suptr != NULL; suptr = suptr->un_next)
216 1.52 enami if (suptr->un_proc == p)
217 1.5 mycroft break;
218 1.52 enami
219 1.5 mycroft if (suptr == NULL) {
220 1.5 mycroft suptr = semu_alloc(p);
221 1.5 mycroft if (suptr == NULL)
222 1.51 enami return (ENOSPC);
223 1.5 mycroft }
224 1.52 enami *supptr = suptr;
225 1.1 cgd }
226 1.1 cgd
227 1.6 mycroft /*
228 1.51 enami * Look for the requested entry and adjust it (delete if
229 1.51 enami * adjval becomes 0).
230 1.6 mycroft */
231 1.6 mycroft sunptr = &suptr->un_ent[0];
232 1.5 mycroft for (i = 0; i < suptr->un_cnt; i++, sunptr++) {
233 1.6 mycroft if (sunptr->un_id != semid || sunptr->un_num != semnum)
234 1.6 mycroft continue;
235 1.52 enami sunptr->un_adjval += adjval;
236 1.6 mycroft if (sunptr->un_adjval == 0) {
237 1.6 mycroft suptr->un_cnt--;
238 1.6 mycroft if (i < suptr->un_cnt)
239 1.6 mycroft suptr->un_ent[i] =
240 1.6 mycroft suptr->un_ent[suptr->un_cnt];
241 1.5 mycroft }
242 1.51 enami return (0);
243 1.1 cgd }
244 1.1 cgd
245 1.5 mycroft /* Didn't find the right entry - create it */
246 1.11 mycroft if (suptr->un_cnt == SEMUME)
247 1.51 enami return (EINVAL);
248 1.11 mycroft
249 1.11 mycroft sunptr = &suptr->un_ent[suptr->un_cnt];
250 1.11 mycroft suptr->un_cnt++;
251 1.11 mycroft sunptr->un_adjval = adjval;
252 1.11 mycroft sunptr->un_id = semid;
253 1.11 mycroft sunptr->un_num = semnum;
254 1.51 enami return (0);
255 1.1 cgd }
256 1.1 cgd
257 1.1 cgd void
258 1.59 thorpej semundo_clear(int semid, int semnum)
259 1.1 cgd {
260 1.35 augustss struct sem_undo *suptr;
261 1.52 enami struct undo *sunptr, *sunend;
262 1.1 cgd
263 1.52 enami for (suptr = semu_list; suptr != NULL; suptr = suptr->un_next)
264 1.52 enami for (sunptr = &suptr->un_ent[0],
265 1.52 enami sunend = sunptr + suptr->un_cnt; sunptr < sunend;) {
266 1.6 mycroft if (sunptr->un_id == semid) {
267 1.6 mycroft if (semnum == -1 || sunptr->un_num == semnum) {
268 1.6 mycroft suptr->un_cnt--;
269 1.52 enami sunend--;
270 1.52 enami if (sunptr != sunend)
271 1.52 enami *sunptr = *sunend;
272 1.52 enami if (semnum != -1)
273 1.52 enami break;
274 1.52 enami else
275 1.52 enami continue;
276 1.6 mycroft }
277 1.6 mycroft }
278 1.52 enami sunptr++;
279 1.6 mycroft }
280 1.1 cgd }
281 1.1 cgd
282 1.1 cgd int
283 1.59 thorpej sys_____semctl13(struct lwp *l, void *v, register_t *retval)
284 1.23 thorpej {
285 1.34 christos struct sys_____semctl13_args /* {
286 1.10 cgd syscallarg(int) semid;
287 1.10 cgd syscallarg(int) semnum;
288 1.10 cgd syscallarg(int) cmd;
289 1.34 christos syscallarg(union __semun *) arg;
290 1.23 thorpej } */ *uap = v;
291 1.33 thorpej struct semid_ds sembuf;
292 1.33 thorpej int cmd, error;
293 1.34 christos void *pass_arg;
294 1.34 christos union __semun karg;
295 1.33 thorpej
296 1.33 thorpej cmd = SCARG(uap, cmd);
297 1.33 thorpej
298 1.33 thorpej switch (cmd) {
299 1.33 thorpej case IPC_SET:
300 1.33 thorpej case IPC_STAT:
301 1.33 thorpej pass_arg = &sembuf;
302 1.33 thorpej break;
303 1.33 thorpej
304 1.33 thorpej case GETALL:
305 1.33 thorpej case SETVAL:
306 1.33 thorpej case SETALL:
307 1.34 christos pass_arg = &karg;
308 1.34 christos break;
309 1.34 christos default:
310 1.34 christos pass_arg = NULL;
311 1.33 thorpej break;
312 1.33 thorpej }
313 1.33 thorpej
314 1.34 christos if (pass_arg) {
315 1.34 christos error = copyin(SCARG(uap, arg), &karg, sizeof(karg));
316 1.33 thorpej if (error)
317 1.34 christos return error;
318 1.34 christos if (cmd == IPC_SET) {
319 1.34 christos error = copyin(karg.buf, &sembuf, sizeof(sembuf));
320 1.34 christos if (error)
321 1.34 christos return (error);
322 1.34 christos }
323 1.33 thorpej }
324 1.33 thorpej
325 1.63 ad error = semctl1(l, SCARG(uap, semid), SCARG(uap, semnum), cmd,
326 1.33 thorpej pass_arg, retval);
327 1.33 thorpej
328 1.33 thorpej if (error == 0 && cmd == IPC_STAT)
329 1.34 christos error = copyout(&sembuf, karg.buf, sizeof(sembuf));
330 1.33 thorpej
331 1.33 thorpej return (error);
332 1.33 thorpej }
333 1.33 thorpej
334 1.33 thorpej int
335 1.63 ad semctl1(struct lwp *l, int semid, int semnum, int cmd, void *v,
336 1.59 thorpej register_t *retval)
337 1.33 thorpej {
338 1.63 ad kauth_cred_t cred = l->l_cred;
339 1.33 thorpej union __semun *arg = v;
340 1.33 thorpej struct semid_ds *sembuf = v, *semaptr;
341 1.33 thorpej int i, error, ix;
342 1.1 cgd
343 1.27 christos SEM_PRINTF(("call to semctl(%d, %d, %d, %p)\n",
344 1.33 thorpej semid, semnum, cmd, v));
345 1.1 cgd
346 1.33 thorpej ix = IPCID_TO_IX(semid);
347 1.49 jdolecek if (ix < 0 || ix >= seminfo.semmni)
348 1.33 thorpej return (EINVAL);
349 1.6 mycroft
350 1.33 thorpej semaptr = &sema[ix];
351 1.6 mycroft if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0 ||
352 1.33 thorpej semaptr->sem_perm._seq != IPCID_TO_SEQ(semid))
353 1.33 thorpej return (EINVAL);
354 1.1 cgd
355 1.6 mycroft switch (cmd) {
356 1.6 mycroft case IPC_RMID:
357 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_M)) != 0)
358 1.33 thorpej return (error);
359 1.61 elad semaptr->sem_perm.cuid = kauth_cred_geteuid(cred);
360 1.61 elad semaptr->sem_perm.uid = kauth_cred_geteuid(cred);
361 1.6 mycroft semtot -= semaptr->sem_nsems;
362 1.33 thorpej for (i = semaptr->_sem_base - sem; i < semtot; i++)
363 1.6 mycroft sem[i] = sem[i + semaptr->sem_nsems];
364 1.6 mycroft for (i = 0; i < seminfo.semmni; i++) {
365 1.6 mycroft if ((sema[i].sem_perm.mode & SEM_ALLOC) &&
366 1.33 thorpej sema[i]._sem_base > semaptr->_sem_base)
367 1.33 thorpej sema[i]._sem_base -= semaptr->sem_nsems;
368 1.6 mycroft }
369 1.6 mycroft semaptr->sem_perm.mode = 0;
370 1.33 thorpej semundo_clear(ix, -1);
371 1.33 thorpej wakeup(semaptr);
372 1.6 mycroft break;
373 1.1 cgd
374 1.6 mycroft case IPC_SET:
375 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_M)))
376 1.33 thorpej return (error);
377 1.64 christos KASSERT(sembuf != NULL);
378 1.33 thorpej semaptr->sem_perm.uid = sembuf->sem_perm.uid;
379 1.33 thorpej semaptr->sem_perm.gid = sembuf->sem_perm.gid;
380 1.6 mycroft semaptr->sem_perm.mode = (semaptr->sem_perm.mode & ~0777) |
381 1.33 thorpej (sembuf->sem_perm.mode & 0777);
382 1.62 kardel semaptr->sem_ctime = time_second;
383 1.6 mycroft break;
384 1.1 cgd
385 1.6 mycroft case IPC_STAT:
386 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
387 1.33 thorpej return (error);
388 1.64 christos KASSERT(sembuf != NULL);
389 1.33 thorpej memcpy(sembuf, semaptr, sizeof(struct semid_ds));
390 1.6 mycroft break;
391 1.1 cgd
392 1.6 mycroft case GETNCNT:
393 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
394 1.33 thorpej return (error);
395 1.6 mycroft if (semnum < 0 || semnum >= semaptr->sem_nsems)
396 1.33 thorpej return (EINVAL);
397 1.33 thorpej *retval = semaptr->_sem_base[semnum].semncnt;
398 1.6 mycroft break;
399 1.1 cgd
400 1.6 mycroft case GETPID:
401 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
402 1.33 thorpej return (error);
403 1.6 mycroft if (semnum < 0 || semnum >= semaptr->sem_nsems)
404 1.33 thorpej return (EINVAL);
405 1.33 thorpej *retval = semaptr->_sem_base[semnum].sempid;
406 1.6 mycroft break;
407 1.1 cgd
408 1.6 mycroft case GETVAL:
409 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
410 1.33 thorpej return (error);
411 1.6 mycroft if (semnum < 0 || semnum >= semaptr->sem_nsems)
412 1.33 thorpej return (EINVAL);
413 1.33 thorpej *retval = semaptr->_sem_base[semnum].semval;
414 1.6 mycroft break;
415 1.1 cgd
416 1.6 mycroft case GETALL:
417 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
418 1.33 thorpej return (error);
419 1.60 christos KASSERT(arg != NULL);
420 1.6 mycroft for (i = 0; i < semaptr->sem_nsems; i++) {
421 1.33 thorpej error = copyout(&semaptr->_sem_base[i].semval,
422 1.33 thorpej &arg->array[i], sizeof(arg->array[i]));
423 1.33 thorpej if (error != 0)
424 1.6 mycroft break;
425 1.6 mycroft }
426 1.6 mycroft break;
427 1.1 cgd
428 1.6 mycroft case GETZCNT:
429 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
430 1.33 thorpej return (error);
431 1.6 mycroft if (semnum < 0 || semnum >= semaptr->sem_nsems)
432 1.33 thorpej return (EINVAL);
433 1.33 thorpej *retval = semaptr->_sem_base[semnum].semzcnt;
434 1.6 mycroft break;
435 1.1 cgd
436 1.6 mycroft case SETVAL:
437 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
438 1.33 thorpej return (error);
439 1.6 mycroft if (semnum < 0 || semnum >= semaptr->sem_nsems)
440 1.33 thorpej return (EINVAL);
441 1.60 christos KASSERT(arg != NULL);
442 1.33 thorpej semaptr->_sem_base[semnum].semval = arg->val;
443 1.33 thorpej semundo_clear(ix, semnum);
444 1.33 thorpej wakeup(semaptr);
445 1.6 mycroft break;
446 1.1 cgd
447 1.6 mycroft case SETALL:
448 1.33 thorpej if ((error = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
449 1.33 thorpej return (error);
450 1.60 christos KASSERT(arg != NULL);
451 1.6 mycroft for (i = 0; i < semaptr->sem_nsems; i++) {
452 1.33 thorpej error = copyin(&arg->array[i],
453 1.33 thorpej &semaptr->_sem_base[i].semval,
454 1.33 thorpej sizeof(arg->array[i]));
455 1.33 thorpej if (error != 0)
456 1.6 mycroft break;
457 1.6 mycroft }
458 1.33 thorpej semundo_clear(ix, -1);
459 1.33 thorpej wakeup(semaptr);
460 1.6 mycroft break;
461 1.1 cgd
462 1.6 mycroft default:
463 1.33 thorpej return (EINVAL);
464 1.6 mycroft }
465 1.4 mycroft
466 1.33 thorpej return (error);
467 1.1 cgd }
468 1.1 cgd
469 1.1 cgd int
470 1.59 thorpej sys_semget(struct lwp *l, void *v, register_t *retval)
471 1.23 thorpej {
472 1.35 augustss struct sys_semget_args /* {
473 1.10 cgd syscallarg(key_t) key;
474 1.10 cgd syscallarg(int) nsems;
475 1.10 cgd syscallarg(int) semflg;
476 1.23 thorpej } */ *uap = v;
477 1.6 mycroft int semid, eval;
478 1.10 cgd int key = SCARG(uap, key);
479 1.10 cgd int nsems = SCARG(uap, nsems);
480 1.10 cgd int semflg = SCARG(uap, semflg);
481 1.63 ad kauth_cred_t cred = l->l_cred;
482 1.1 cgd
483 1.27 christos SEM_PRINTF(("semget(0x%x, %d, 0%o)\n", key, nsems, semflg));
484 1.1 cgd
485 1.6 mycroft if (key != IPC_PRIVATE) {
486 1.6 mycroft for (semid = 0; semid < seminfo.semmni; semid++) {
487 1.6 mycroft if ((sema[semid].sem_perm.mode & SEM_ALLOC) &&
488 1.33 thorpej sema[semid].sem_perm._key == key)
489 1.6 mycroft break;
490 1.6 mycroft }
491 1.6 mycroft if (semid < seminfo.semmni) {
492 1.27 christos SEM_PRINTF(("found public key\n"));
493 1.7 hpeyerl if ((eval = ipcperm(cred, &sema[semid].sem_perm,
494 1.7 hpeyerl semflg & 0700)))
495 1.51 enami return (eval);
496 1.6 mycroft if (nsems > 0 && sema[semid].sem_nsems < nsems) {
497 1.27 christos SEM_PRINTF(("too small\n"));
498 1.51 enami return (EINVAL);
499 1.6 mycroft }
500 1.6 mycroft if ((semflg & IPC_CREAT) && (semflg & IPC_EXCL)) {
501 1.27 christos SEM_PRINTF(("not exclusive\n"));
502 1.51 enami return (EEXIST);
503 1.6 mycroft }
504 1.6 mycroft goto found;
505 1.6 mycroft }
506 1.6 mycroft }
507 1.6 mycroft
508 1.27 christos SEM_PRINTF(("need to allocate the semid_ds\n"));
509 1.6 mycroft if (key == IPC_PRIVATE || (semflg & IPC_CREAT)) {
510 1.6 mycroft if (nsems <= 0 || nsems > seminfo.semmsl) {
511 1.27 christos SEM_PRINTF(("nsems out of range (0<%d<=%d)\n", nsems,
512 1.27 christos seminfo.semmsl));
513 1.51 enami return (EINVAL);
514 1.6 mycroft }
515 1.6 mycroft if (nsems > seminfo.semmns - semtot) {
516 1.51 enami SEM_PRINTF(("not enough semaphores left "
517 1.51 enami "(need %d, got %d)\n",
518 1.27 christos nsems, seminfo.semmns - semtot));
519 1.51 enami return (ENOSPC);
520 1.6 mycroft }
521 1.6 mycroft for (semid = 0; semid < seminfo.semmni; semid++) {
522 1.6 mycroft if ((sema[semid].sem_perm.mode & SEM_ALLOC) == 0)
523 1.6 mycroft break;
524 1.6 mycroft }
525 1.6 mycroft if (semid == seminfo.semmni) {
526 1.27 christos SEM_PRINTF(("no more semid_ds's available\n"));
527 1.51 enami return (ENOSPC);
528 1.6 mycroft }
529 1.27 christos SEM_PRINTF(("semid %d is available\n", semid));
530 1.33 thorpej sema[semid].sem_perm._key = key;
531 1.61 elad sema[semid].sem_perm.cuid = kauth_cred_geteuid(cred);
532 1.61 elad sema[semid].sem_perm.uid = kauth_cred_geteuid(cred);
533 1.61 elad sema[semid].sem_perm.cgid = kauth_cred_getegid(cred);
534 1.61 elad sema[semid].sem_perm.gid = kauth_cred_getegid(cred);
535 1.6 mycroft sema[semid].sem_perm.mode = (semflg & 0777) | SEM_ALLOC;
536 1.33 thorpej sema[semid].sem_perm._seq =
537 1.33 thorpej (sema[semid].sem_perm._seq + 1) & 0x7fff;
538 1.6 mycroft sema[semid].sem_nsems = nsems;
539 1.6 mycroft sema[semid].sem_otime = 0;
540 1.62 kardel sema[semid].sem_ctime = time_second;
541 1.33 thorpej sema[semid]._sem_base = &sem[semtot];
542 1.6 mycroft semtot += nsems;
543 1.33 thorpej memset(sema[semid]._sem_base, 0,
544 1.51 enami sizeof(sema[semid]._sem_base[0]) * nsems);
545 1.33 thorpej SEM_PRINTF(("sembase = %p, next = %p\n", sema[semid]._sem_base,
546 1.27 christos &sem[semtot]));
547 1.1 cgd } else {
548 1.27 christos SEM_PRINTF(("didn't find it and wasn't asked to create it\n"));
549 1.51 enami return (ENOENT);
550 1.1 cgd }
551 1.1 cgd
552 1.6 mycroft found:
553 1.6 mycroft *retval = IXSEQ_TO_IPCID(semid, sema[semid].sem_perm);
554 1.51 enami return (0);
555 1.1 cgd }
556 1.1 cgd
557 1.57 chs #define SMALL_SOPS 8
558 1.57 chs
559 1.1 cgd int
560 1.59 thorpej sys_semop(struct lwp *l, void *v, register_t *retval)
561 1.23 thorpej {
562 1.35 augustss struct sys_semop_args /* {
563 1.10 cgd syscallarg(int) semid;
564 1.10 cgd syscallarg(struct sembuf *) sops;
565 1.29 kleink syscallarg(size_t) nsops;
566 1.23 thorpej } */ *uap = v;
567 1.45 thorpej struct proc *p = l->l_proc;
568 1.52 enami int semid = SCARG(uap, semid), seq;
569 1.41 jdolecek size_t nsops = SCARG(uap, nsops);
570 1.57 chs struct sembuf small_sops[SMALL_SOPS];
571 1.57 chs struct sembuf *sops;
572 1.35 augustss struct semid_ds *semaptr;
573 1.35 augustss struct sembuf *sopptr = NULL;
574 1.35 augustss struct __sem *semptr = NULL;
575 1.6 mycroft struct sem_undo *suptr = NULL;
576 1.63 ad kauth_cred_t cred = l->l_cred;
577 1.54 enami int i, eval;
578 1.25 christos int do_wakeup, do_undos;
579 1.1 cgd
580 1.58 christos SEM_PRINTF(("call to semop(%d, %p, %zd)\n", semid, SCARG(uap,sops), nsops));
581 1.1 cgd
582 1.6 mycroft semid = IPCID_TO_IX(semid); /* Convert back to zero origin */
583 1.49 jdolecek if (semid < 0 || semid >= seminfo.semmni)
584 1.51 enami return (EINVAL);
585 1.6 mycroft
586 1.6 mycroft semaptr = &sema[semid];
587 1.52 enami seq = IPCID_TO_SEQ(SCARG(uap, semid));
588 1.11 mycroft if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0 ||
589 1.52 enami semaptr->sem_perm._seq != seq)
590 1.51 enami return (EINVAL);
591 1.6 mycroft
592 1.7 hpeyerl if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_W))) {
593 1.27 christos SEM_PRINTF(("eval = %d from ipaccess\n", eval));
594 1.51 enami return (eval);
595 1.6 mycroft }
596 1.1 cgd
597 1.57 chs if (nsops <= SMALL_SOPS) {
598 1.57 chs sops = small_sops;
599 1.57 chs } else if (nsops <= seminfo.semopm) {
600 1.57 chs sops = malloc(nsops * sizeof(*sops), M_TEMP, M_WAITOK);
601 1.57 chs } else {
602 1.57 chs SEM_PRINTF(("too many sops (max=%d, nsops=%zd)\n",
603 1.57 chs seminfo.semopm, nsops));
604 1.51 enami return (E2BIG);
605 1.6 mycroft }
606 1.1 cgd
607 1.51 enami if ((eval = copyin(SCARG(uap, sops),
608 1.51 enami sops, nsops * sizeof(sops[0]))) != 0) {
609 1.57 chs SEM_PRINTF(("eval = %d from copyin(%p, %p, %zd)\n", eval,
610 1.57 chs SCARG(uap, sops), &sops, nsops * sizeof(sops[0])));
611 1.57 chs goto out;
612 1.6 mycroft }
613 1.1 cgd
614 1.52 enami for (i = 0; i < nsops; i++)
615 1.57 chs if (sops[i].sem_num >= semaptr->sem_nsems) {
616 1.57 chs eval = EFBIG;
617 1.57 chs goto out;
618 1.57 chs }
619 1.52 enami
620 1.51 enami /*
621 1.6 mycroft * Loop trying to satisfy the vector of requests.
622 1.6 mycroft * If we reach a point where we must wait, any requests already
623 1.6 mycroft * performed are rolled back and we go to sleep until some other
624 1.6 mycroft * process wakes us up. At this point, we start all over again.
625 1.6 mycroft *
626 1.6 mycroft * This ensures that from the perspective of other tasks, a set
627 1.6 mycroft * of requests is atomic (never partially satisfied).
628 1.6 mycroft */
629 1.6 mycroft do_undos = 0;
630 1.1 cgd
631 1.6 mycroft for (;;) {
632 1.6 mycroft do_wakeup = 0;
633 1.1 cgd
634 1.6 mycroft for (i = 0; i < nsops; i++) {
635 1.6 mycroft sopptr = &sops[i];
636 1.33 thorpej semptr = &semaptr->_sem_base[sopptr->sem_num];
637 1.1 cgd
638 1.51 enami SEM_PRINTF(("semop: semaptr=%p, sem_base=%p, "
639 1.51 enami "semptr=%p, sem[%d]=%d : op=%d, flag=%s\n",
640 1.33 thorpej semaptr, semaptr->_sem_base, semptr,
641 1.6 mycroft sopptr->sem_num, semptr->semval, sopptr->sem_op,
642 1.51 enami (sopptr->sem_flg & IPC_NOWAIT) ?
643 1.51 enami "nowait" : "wait"));
644 1.1 cgd
645 1.6 mycroft if (sopptr->sem_op < 0) {
646 1.25 christos if ((int)(semptr->semval +
647 1.51 enami sopptr->sem_op) < 0) {
648 1.51 enami SEM_PRINTF(("semop: "
649 1.51 enami "can't do it now\n"));
650 1.6 mycroft break;
651 1.6 mycroft } else {
652 1.6 mycroft semptr->semval += sopptr->sem_op;
653 1.6 mycroft if (semptr->semval == 0 &&
654 1.6 mycroft semptr->semzcnt > 0)
655 1.6 mycroft do_wakeup = 1;
656 1.6 mycroft }
657 1.6 mycroft if (sopptr->sem_flg & SEM_UNDO)
658 1.6 mycroft do_undos = 1;
659 1.6 mycroft } else if (sopptr->sem_op == 0) {
660 1.6 mycroft if (semptr->semval > 0) {
661 1.27 christos SEM_PRINTF(("semop: not zero now\n"));
662 1.6 mycroft break;
663 1.6 mycroft }
664 1.6 mycroft } else {
665 1.6 mycroft if (semptr->semncnt > 0)
666 1.6 mycroft do_wakeup = 1;
667 1.6 mycroft semptr->semval += sopptr->sem_op;
668 1.6 mycroft if (sopptr->sem_flg & SEM_UNDO)
669 1.6 mycroft do_undos = 1;
670 1.6 mycroft }
671 1.6 mycroft }
672 1.1 cgd
673 1.6 mycroft /*
674 1.6 mycroft * Did we get through the entire vector?
675 1.6 mycroft */
676 1.6 mycroft if (i >= nsops)
677 1.6 mycroft goto done;
678 1.1 cgd
679 1.6 mycroft /*
680 1.6 mycroft * No ... rollback anything that we've already done
681 1.6 mycroft */
682 1.51 enami SEM_PRINTF(("semop: rollback 0 through %d\n", i - 1));
683 1.52 enami while (i-- > 0)
684 1.52 enami semaptr->_sem_base[sops[i].sem_num].semval -=
685 1.52 enami sops[i].sem_op;
686 1.1 cgd
687 1.6 mycroft /*
688 1.6 mycroft * If the request that we couldn't satisfy has the
689 1.6 mycroft * NOWAIT flag set then return with EAGAIN.
690 1.6 mycroft */
691 1.57 chs if (sopptr->sem_flg & IPC_NOWAIT) {
692 1.57 chs eval = EAGAIN;
693 1.57 chs goto out;
694 1.57 chs }
695 1.1 cgd
696 1.6 mycroft if (sopptr->sem_op == 0)
697 1.6 mycroft semptr->semzcnt++;
698 1.6 mycroft else
699 1.6 mycroft semptr->semncnt++;
700 1.1 cgd
701 1.27 christos SEM_PRINTF(("semop: good night!\n"));
702 1.6 mycroft eval = tsleep((caddr_t)semaptr, (PZERO - 4) | PCATCH,
703 1.6 mycroft "semwait", 0);
704 1.27 christos SEM_PRINTF(("semop: good morning (eval=%d)!\n", eval));
705 1.1 cgd
706 1.6 mycroft /*
707 1.6 mycroft * Make sure that the semaphore still exists
708 1.6 mycroft */
709 1.6 mycroft if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0 ||
710 1.52 enami semaptr->sem_perm._seq != seq) {
711 1.57 chs eval = EIDRM;
712 1.57 chs goto out;
713 1.6 mycroft }
714 1.1 cgd
715 1.6 mycroft /*
716 1.6 mycroft * The semaphore is still alive. Readjust the count of
717 1.6 mycroft * waiting processes.
718 1.6 mycroft */
719 1.51 enami semptr = &semaptr->_sem_base[sopptr->sem_num];
720 1.6 mycroft if (sopptr->sem_op == 0)
721 1.6 mycroft semptr->semzcnt--;
722 1.6 mycroft else
723 1.6 mycroft semptr->semncnt--;
724 1.50 christos /*
725 1.50 christos * Is it really morning, or was our sleep interrupted?
726 1.50 christos * (Delayed check of tsleep() return code because we
727 1.50 christos * need to decrement sem[nz]cnt either way.)
728 1.50 christos */
729 1.57 chs if (eval != 0) {
730 1.57 chs eval = EINTR;
731 1.57 chs goto out;
732 1.57 chs }
733 1.50 christos SEM_PRINTF(("semop: good morning!\n"));
734 1.6 mycroft }
735 1.1 cgd
736 1.6 mycroft done:
737 1.6 mycroft /*
738 1.6 mycroft * Process any SEM_UNDO requests.
739 1.6 mycroft */
740 1.6 mycroft if (do_undos) {
741 1.5 mycroft for (i = 0; i < nsops; i++) {
742 1.6 mycroft /*
743 1.6 mycroft * We only need to deal with SEM_UNDO's for non-zero
744 1.6 mycroft * op's.
745 1.6 mycroft */
746 1.6 mycroft int adjval;
747 1.1 cgd
748 1.6 mycroft if ((sops[i].sem_flg & SEM_UNDO) == 0)
749 1.6 mycroft continue;
750 1.6 mycroft adjval = sops[i].sem_op;
751 1.6 mycroft if (adjval == 0)
752 1.6 mycroft continue;
753 1.6 mycroft eval = semundo_adjust(p, &suptr, semid,
754 1.6 mycroft sops[i].sem_num, -adjval);
755 1.6 mycroft if (eval == 0)
756 1.6 mycroft continue;
757 1.1 cgd
758 1.6 mycroft /*
759 1.6 mycroft * Oh-Oh! We ran out of either sem_undo's or undo's.
760 1.6 mycroft * Rollback the adjustments to this point and then
761 1.6 mycroft * rollback the semaphore ups and down so we can return
762 1.6 mycroft * with an error with all structures restored. We
763 1.6 mycroft * rollback the undo's in the exact reverse order that
764 1.6 mycroft * we applied them. This guarantees that we won't run
765 1.6 mycroft * out of space as we roll things back out.
766 1.6 mycroft */
767 1.52 enami while (i-- > 0) {
768 1.52 enami if ((sops[i].sem_flg & SEM_UNDO) == 0)
769 1.6 mycroft continue;
770 1.52 enami adjval = sops[i].sem_op;
771 1.6 mycroft if (adjval == 0)
772 1.6 mycroft continue;
773 1.6 mycroft if (semundo_adjust(p, &suptr, semid,
774 1.52 enami sops[i].sem_num, adjval) != 0)
775 1.1 cgd panic("semop - can't undo undos");
776 1.6 mycroft }
777 1.1 cgd
778 1.54 enami for (i = 0; i < nsops; i++)
779 1.54 enami semaptr->_sem_base[sops[i].sem_num].semval -=
780 1.54 enami sops[i].sem_op;
781 1.1 cgd
782 1.27 christos SEM_PRINTF(("eval = %d from semundo_adjust\n", eval));
783 1.57 chs goto out;
784 1.1 cgd } /* loop through the sops */
785 1.6 mycroft } /* if (do_undos) */
786 1.1 cgd
787 1.6 mycroft /* We're definitely done - set the sempid's */
788 1.6 mycroft for (i = 0; i < nsops; i++) {
789 1.1 cgd sopptr = &sops[i];
790 1.33 thorpej semptr = &semaptr->_sem_base[sopptr->sem_num];
791 1.1 cgd semptr->sempid = p->p_pid;
792 1.6 mycroft }
793 1.1 cgd
794 1.55 briggs /* Update sem_otime */
795 1.62 kardel semaptr->sem_otime = time_second;
796 1.55 briggs
797 1.6 mycroft /* Do a wakeup if any semaphore was up'd. */
798 1.6 mycroft if (do_wakeup) {
799 1.27 christos SEM_PRINTF(("semop: doing wakeup\n"));
800 1.1 cgd #ifdef SEM_WAKEUP
801 1.4 mycroft sem_wakeup((caddr_t)semaptr);
802 1.1 cgd #else
803 1.4 mycroft wakeup((caddr_t)semaptr);
804 1.1 cgd #endif
805 1.27 christos SEM_PRINTF(("semop: back from wakeup\n"));
806 1.6 mycroft }
807 1.27 christos SEM_PRINTF(("semop: done\n"));
808 1.6 mycroft *retval = 0;
809 1.57 chs
810 1.57 chs out:
811 1.57 chs if (sops != small_sops) {
812 1.57 chs free(sops, M_TEMP);
813 1.57 chs }
814 1.57 chs return eval;
815 1.1 cgd }
816 1.1 cgd
817 1.1 cgd /*
818 1.51 enami * Go through the undo structures for this process and apply the
819 1.51 enami * adjustments to semaphores.
820 1.1 cgd */
821 1.44 christos /*ARGSUSED*/
822 1.25 christos void
823 1.66 yamt semexit(struct proc *p, void *v)
824 1.1 cgd {
825 1.35 augustss struct sem_undo *suptr;
826 1.35 augustss struct sem_undo **supptr;
827 1.1 cgd
828 1.6 mycroft /*
829 1.51 enami * Go through the chain of undo vectors looking for one
830 1.51 enami * associated with this process.
831 1.17 mycroft */
832 1.17 mycroft
833 1.17 mycroft for (supptr = &semu_list; (suptr = *supptr) != NULL;
834 1.17 mycroft supptr = &suptr->un_next) {
835 1.17 mycroft if (suptr->un_proc == p)
836 1.17 mycroft break;
837 1.17 mycroft }
838 1.17 mycroft
839 1.17 mycroft /*
840 1.37 sommerfe * If there is no undo vector, skip to the end.
841 1.14 mycroft */
842 1.14 mycroft
843 1.37 sommerfe if (suptr == NULL)
844 1.37 sommerfe return;
845 1.51 enami
846 1.14 mycroft /*
847 1.37 sommerfe * We now have an undo vector for this process.
848 1.15 mycroft */
849 1.1 cgd
850 1.27 christos SEM_PRINTF(("proc @%p has undo structure with %d entries\n", p,
851 1.27 christos suptr->un_cnt));
852 1.1 cgd
853 1.5 mycroft /*
854 1.5 mycroft * If there are any active undo elements then process them.
855 1.5 mycroft */
856 1.5 mycroft if (suptr->un_cnt > 0) {
857 1.6 mycroft int ix;
858 1.1 cgd
859 1.6 mycroft for (ix = 0; ix < suptr->un_cnt; ix++) {
860 1.6 mycroft int semid = suptr->un_ent[ix].un_id;
861 1.6 mycroft int semnum = suptr->un_ent[ix].un_num;
862 1.6 mycroft int adjval = suptr->un_ent[ix].un_adjval;
863 1.6 mycroft struct semid_ds *semaptr;
864 1.6 mycroft
865 1.6 mycroft semaptr = &sema[semid];
866 1.6 mycroft if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0)
867 1.6 mycroft panic("semexit - semid not allocated");
868 1.6 mycroft if (semnum >= semaptr->sem_nsems)
869 1.6 mycroft panic("semexit - semnum out of range");
870 1.6 mycroft
871 1.51 enami SEM_PRINTF(("semexit: %p id=%d num=%d(adj=%d) ; "
872 1.51 enami "sem=%d\n",
873 1.6 mycroft suptr->un_proc, suptr->un_ent[ix].un_id,
874 1.6 mycroft suptr->un_ent[ix].un_num,
875 1.6 mycroft suptr->un_ent[ix].un_adjval,
876 1.33 thorpej semaptr->_sem_base[semnum].semval));
877 1.6 mycroft
878 1.14 mycroft if (adjval < 0 &&
879 1.33 thorpej semaptr->_sem_base[semnum].semval < -adjval)
880 1.33 thorpej semaptr->_sem_base[semnum].semval = 0;
881 1.14 mycroft else
882 1.33 thorpej semaptr->_sem_base[semnum].semval += adjval;
883 1.1 cgd
884 1.1 cgd #ifdef SEM_WAKEUP
885 1.6 mycroft sem_wakeup((caddr_t)semaptr);
886 1.1 cgd #else
887 1.6 mycroft wakeup((caddr_t)semaptr);
888 1.1 cgd #endif
889 1.27 christos SEM_PRINTF(("semexit: back from wakeup\n"));
890 1.6 mycroft }
891 1.5 mycroft }
892 1.1 cgd
893 1.5 mycroft /*
894 1.5 mycroft * Deallocate the undo vector.
895 1.5 mycroft */
896 1.27 christos SEM_PRINTF(("removing vector\n"));
897 1.5 mycroft suptr->un_proc = NULL;
898 1.5 mycroft *supptr = suptr->un_next;
899 1.1 cgd }
900