sysv_shm.c revision 1.51 1 1.51 mrg /* $NetBSD: sysv_shm.c,v 1.51 1999/03/24 05:51:25 mrg Exp $ */
2 1.22 cgd
3 1.11 hpeyerl /*
4 1.48 mycroft * Copyright (c) 1994 Adam Glass and Charles M. Hannum. All rights reserved.
5 1.11 hpeyerl *
6 1.11 hpeyerl * Redistribution and use in source and binary forms, with or without
7 1.11 hpeyerl * modification, are permitted provided that the following conditions
8 1.11 hpeyerl * are met:
9 1.11 hpeyerl * 1. Redistributions of source code must retain the above copyright
10 1.11 hpeyerl * notice, this list of conditions and the following disclaimer.
11 1.17 mycroft * 2. Redistributions in binary form must reproduce the above copyright
12 1.17 mycroft * notice, this list of conditions and the following disclaimer in the
13 1.17 mycroft * documentation and/or other materials provided with the distribution.
14 1.17 mycroft * 3. All advertising materials mentioning features or use of this software
15 1.17 mycroft * must display the following acknowledgement:
16 1.48 mycroft * This product includes software developed by Adam Glass and Charles M.
17 1.17 mycroft * Hannum.
18 1.17 mycroft * 4. The names of the authors may not be used to endorse or promote products
19 1.11 hpeyerl * derived from this software without specific prior written permission.
20 1.11 hpeyerl *
21 1.17 mycroft * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
22 1.17 mycroft * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.17 mycroft * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.17 mycroft * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.17 mycroft * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.17 mycroft * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.17 mycroft * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.17 mycroft * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.17 mycroft * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.17 mycroft * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.11 hpeyerl */
32 1.43 mrg
33 1.50 tron #define SYSVSHM
34 1.11 hpeyerl
35 1.11 hpeyerl #include <sys/types.h>
36 1.11 hpeyerl #include <sys/param.h>
37 1.11 hpeyerl #include <sys/kernel.h>
38 1.11 hpeyerl #include <sys/shm.h>
39 1.11 hpeyerl #include <sys/proc.h>
40 1.11 hpeyerl #include <sys/uio.h>
41 1.11 hpeyerl #include <sys/time.h>
42 1.11 hpeyerl #include <sys/malloc.h>
43 1.11 hpeyerl #include <sys/mman.h>
44 1.11 hpeyerl #include <sys/systm.h>
45 1.12 mycroft #include <sys/stat.h>
46 1.11 hpeyerl
47 1.26 cgd #include <sys/mount.h>
48 1.26 cgd #include <sys/syscallargs.h>
49 1.26 cgd
50 1.11 hpeyerl #include <vm/vm.h>
51 1.42 mrg #include <uvm/uvm_extern.h>
52 1.35 christos
53 1.35 christos struct shmid_ds *shm_find_segment_by_shmid __P((int));
54 1.35 christos
55 1.11 hpeyerl /*
56 1.11 hpeyerl * Provides the following externally accessible functions:
57 1.11 hpeyerl *
58 1.41 thorpej * shminit(void); initialization
59 1.41 thorpej * shmexit(struct vmspace *) cleanup
60 1.41 thorpej * shmfork(struct vmspace *, struct vmspace *) fork handling
61 1.11 hpeyerl * shmsys(arg1, arg2, arg3, arg4); shm{at,ctl,dt,get}(arg2, arg3, arg4)
62 1.11 hpeyerl *
63 1.11 hpeyerl * Structures:
64 1.11 hpeyerl * shmsegs (an array of 'struct shmid_ds')
65 1.11 hpeyerl * per proc array of 'struct shmmap_state'
66 1.11 hpeyerl */
67 1.12 mycroft
68 1.16 mycroft #define SHMSEG_FREE 0x0200
69 1.16 mycroft #define SHMSEG_REMOVED 0x0400
70 1.16 mycroft #define SHMSEG_ALLOCATED 0x0800
71 1.16 mycroft #define SHMSEG_WANTED 0x1000
72 1.11 hpeyerl
73 1.11 hpeyerl int shm_last_free, shm_nused, shm_committed;
74 1.11 hpeyerl
75 1.11 hpeyerl struct shm_handle {
76 1.42 mrg struct uvm_object *shm_object;
77 1.11 hpeyerl };
78 1.11 hpeyerl
79 1.11 hpeyerl struct shmmap_state {
80 1.47 eeh vaddr_t va;
81 1.11 hpeyerl int shmid;
82 1.11 hpeyerl };
83 1.11 hpeyerl
84 1.35 christos static int shm_find_segment_by_key __P((key_t));
85 1.12 mycroft static void shm_deallocate_segment __P((struct shmid_ds *));
86 1.41 thorpej static int shm_delete_mapping __P((struct vmspace *, struct shmmap_state *));
87 1.35 christos static int shmget_existing __P((struct proc *, struct sys_shmget_args *,
88 1.35 christos int, int, register_t *));
89 1.35 christos static int shmget_allocate_segment __P((struct proc *, struct sys_shmget_args *,
90 1.35 christos int, register_t *));
91 1.11 hpeyerl
92 1.12 mycroft static int
93 1.12 mycroft shm_find_segment_by_key(key)
94 1.11 hpeyerl key_t key;
95 1.11 hpeyerl {
96 1.11 hpeyerl int i;
97 1.11 hpeyerl
98 1.12 mycroft for (i = 0; i < shminfo.shmmni; i++)
99 1.12 mycroft if ((shmsegs[i].shm_perm.mode & SHMSEG_ALLOCATED) &&
100 1.12 mycroft shmsegs[i].shm_perm.key == key)
101 1.12 mycroft return i;
102 1.11 hpeyerl return -1;
103 1.11 hpeyerl }
104 1.11 hpeyerl
105 1.28 christos struct shmid_ds *
106 1.15 mycroft shm_find_segment_by_shmid(shmid)
107 1.11 hpeyerl int shmid;
108 1.11 hpeyerl {
109 1.11 hpeyerl int segnum;
110 1.11 hpeyerl struct shmid_ds *shmseg;
111 1.11 hpeyerl
112 1.11 hpeyerl segnum = IPCID_TO_IX(shmid);
113 1.12 mycroft if (segnum < 0 || segnum >= shminfo.shmmni)
114 1.11 hpeyerl return NULL;
115 1.11 hpeyerl shmseg = &shmsegs[segnum];
116 1.12 mycroft if ((shmseg->shm_perm.mode & (SHMSEG_ALLOCATED | SHMSEG_REMOVED))
117 1.12 mycroft != SHMSEG_ALLOCATED ||
118 1.12 mycroft shmseg->shm_perm.seq != IPCID_TO_SEQ(shmid))
119 1.11 hpeyerl return NULL;
120 1.11 hpeyerl return shmseg;
121 1.11 hpeyerl }
122 1.11 hpeyerl
123 1.12 mycroft static void
124 1.12 mycroft shm_deallocate_segment(shmseg)
125 1.12 mycroft struct shmid_ds *shmseg;
126 1.12 mycroft {
127 1.12 mycroft struct shm_handle *shm_handle;
128 1.14 mycroft size_t size;
129 1.12 mycroft
130 1.12 mycroft shm_handle = shmseg->shm_internal;
131 1.14 mycroft size = (shmseg->shm_segsz + CLOFSET) & ~CLOFSET;
132 1.42 mrg uao_detach(shm_handle->shm_object);
133 1.12 mycroft free((caddr_t)shm_handle, M_SHM);
134 1.12 mycroft shmseg->shm_internal = NULL;
135 1.14 mycroft shm_committed -= btoc(size);
136 1.12 mycroft shmseg->shm_perm.mode = SHMSEG_FREE;
137 1.25 mycroft shm_nused--;
138 1.12 mycroft }
139 1.12 mycroft
140 1.12 mycroft static int
141 1.41 thorpej shm_delete_mapping(vm, shmmap_s)
142 1.41 thorpej struct vmspace *vm;
143 1.11 hpeyerl struct shmmap_state *shmmap_s;
144 1.11 hpeyerl {
145 1.12 mycroft struct shmid_ds *shmseg;
146 1.12 mycroft int segnum, result;
147 1.14 mycroft size_t size;
148 1.11 hpeyerl
149 1.12 mycroft segnum = IPCID_TO_IX(shmmap_s->shmid);
150 1.12 mycroft shmseg = &shmsegs[segnum];
151 1.14 mycroft size = (shmseg->shm_segsz + CLOFSET) & ~CLOFSET;
152 1.45 thorpej result = uvm_deallocate(&vm->vm_map, shmmap_s->va, size);
153 1.11 hpeyerl if (result != KERN_SUCCESS)
154 1.11 hpeyerl return EINVAL;
155 1.12 mycroft shmmap_s->shmid = -1;
156 1.11 hpeyerl shmseg->shm_dtime = time.tv_sec;
157 1.12 mycroft if ((--shmseg->shm_nattch <= 0) &&
158 1.11 hpeyerl (shmseg->shm_perm.mode & SHMSEG_REMOVED)) {
159 1.12 mycroft shm_deallocate_segment(shmseg);
160 1.12 mycroft shm_last_free = segnum;
161 1.11 hpeyerl }
162 1.11 hpeyerl return 0;
163 1.11 hpeyerl }
164 1.11 hpeyerl
165 1.12 mycroft int
166 1.33 mycroft sys_shmdt(p, v, retval)
167 1.11 hpeyerl struct proc *p;
168 1.32 thorpej void *v;
169 1.32 thorpej register_t *retval;
170 1.32 thorpej {
171 1.33 mycroft struct sys_shmdt_args /* {
172 1.44 kleink syscallarg(const void *) shmaddr;
173 1.32 thorpej } */ *uap = v;
174 1.12 mycroft struct shmmap_state *shmmap_s;
175 1.11 hpeyerl int i;
176 1.11 hpeyerl
177 1.12 mycroft shmmap_s = (struct shmmap_state *)p->p_vmspace->vm_shm;
178 1.38 christos if (shmmap_s == NULL)
179 1.38 christos return EINVAL;
180 1.38 christos
181 1.12 mycroft for (i = 0; i < shminfo.shmseg; i++, shmmap_s++)
182 1.12 mycroft if (shmmap_s->shmid != -1 &&
183 1.47 eeh shmmap_s->va == (vaddr_t)SCARG(uap, shmaddr))
184 1.12 mycroft break;
185 1.11 hpeyerl if (i == shminfo.shmseg)
186 1.11 hpeyerl return EINVAL;
187 1.41 thorpej return shm_delete_mapping(p->p_vmspace, shmmap_s);
188 1.11 hpeyerl }
189 1.11 hpeyerl
190 1.12 mycroft int
191 1.33 mycroft sys_shmat(p, v, retval)
192 1.11 hpeyerl struct proc *p;
193 1.32 thorpej void *v;
194 1.32 thorpej register_t *retval;
195 1.32 thorpej {
196 1.33 mycroft struct sys_shmat_args /* {
197 1.26 cgd syscallarg(int) shmid;
198 1.44 kleink syscallarg(const void *) shmaddr;
199 1.35 christos syscallarg(int) shmflg;
200 1.32 thorpej } */ *uap = v;
201 1.12 mycroft int error, i, flags;
202 1.12 mycroft struct ucred *cred = p->p_ucred;
203 1.11 hpeyerl struct shmid_ds *shmseg;
204 1.11 hpeyerl struct shmmap_state *shmmap_s = NULL;
205 1.39 drochner struct shm_handle *shm_handle;
206 1.47 eeh vaddr_t attach_va;
207 1.11 hpeyerl vm_prot_t prot;
208 1.47 eeh vsize_t size;
209 1.39 drochner int rv;
210 1.11 hpeyerl
211 1.12 mycroft shmmap_s = (struct shmmap_state *)p->p_vmspace->vm_shm;
212 1.12 mycroft if (shmmap_s == NULL) {
213 1.12 mycroft size = shminfo.shmseg * sizeof(struct shmmap_state);
214 1.12 mycroft shmmap_s = malloc(size, M_SHM, M_WAITOK);
215 1.18 cgd for (i = 0; i < shminfo.shmseg; i++)
216 1.18 cgd shmmap_s[i].shmid = -1;
217 1.12 mycroft p->p_vmspace->vm_shm = (caddr_t)shmmap_s;
218 1.12 mycroft }
219 1.26 cgd shmseg = shm_find_segment_by_shmid(SCARG(uap, shmid));
220 1.11 hpeyerl if (shmseg == NULL)
221 1.11 hpeyerl return EINVAL;
222 1.35 christos error = ipcperm(cred, &shmseg->shm_perm,
223 1.35 christos (SCARG(uap, shmflg) & SHM_RDONLY) ? IPC_R : IPC_R|IPC_W);
224 1.35 christos if (error)
225 1.12 mycroft return error;
226 1.12 mycroft for (i = 0; i < shminfo.shmseg; i++) {
227 1.12 mycroft if (shmmap_s->shmid == -1)
228 1.12 mycroft break;
229 1.12 mycroft shmmap_s++;
230 1.11 hpeyerl }
231 1.12 mycroft if (i >= shminfo.shmseg)
232 1.12 mycroft return EMFILE;
233 1.14 mycroft size = (shmseg->shm_segsz + CLOFSET) & ~CLOFSET;
234 1.12 mycroft prot = VM_PROT_READ;
235 1.26 cgd if ((SCARG(uap, shmflg) & SHM_RDONLY) == 0)
236 1.12 mycroft prot |= VM_PROT_WRITE;
237 1.12 mycroft flags = MAP_ANON | MAP_SHARED;
238 1.26 cgd if (SCARG(uap, shmaddr)) {
239 1.12 mycroft flags |= MAP_FIXED;
240 1.26 cgd if (SCARG(uap, shmflg) & SHM_RND)
241 1.26 cgd attach_va =
242 1.47 eeh (vaddr_t)SCARG(uap, shmaddr) & ~(SHMLBA-1);
243 1.47 eeh else if (((vaddr_t)SCARG(uap, shmaddr) & (SHMLBA-1)) == 0)
244 1.47 eeh attach_va = (vaddr_t)SCARG(uap, shmaddr);
245 1.11 hpeyerl else
246 1.14 mycroft return EINVAL;
247 1.12 mycroft } else {
248 1.20 mycroft /* This is just a hint to vm_mmap() about where to put it. */
249 1.31 cgd attach_va =
250 1.31 cgd round_page(p->p_vmspace->vm_taddr + MAXTSIZ + MAXDSIZ);
251 1.11 hpeyerl }
252 1.39 drochner shm_handle = shmseg->shm_internal;
253 1.42 mrg uao_reference(shm_handle->shm_object);
254 1.42 mrg rv = uvm_map(&p->p_vmspace->vm_map, &attach_va, size,
255 1.42 mrg shm_handle->shm_object, 0,
256 1.42 mrg UVM_MAPFLAG(prot, prot, UVM_INH_SHARE,
257 1.42 mrg UVM_ADV_RANDOM, 0));
258 1.42 mrg if (rv != KERN_SUCCESS) {
259 1.42 mrg return ENOMEM;
260 1.42 mrg }
261 1.39 drochner
262 1.12 mycroft shmmap_s->va = attach_va;
263 1.26 cgd shmmap_s->shmid = SCARG(uap, shmid);
264 1.11 hpeyerl shmseg->shm_lpid = p->p_pid;
265 1.11 hpeyerl shmseg->shm_atime = time.tv_sec;
266 1.11 hpeyerl shmseg->shm_nattch++;
267 1.12 mycroft *retval = attach_va;
268 1.11 hpeyerl return 0;
269 1.11 hpeyerl }
270 1.11 hpeyerl
271 1.12 mycroft int
272 1.33 mycroft sys_shmctl(p, v, retval)
273 1.11 hpeyerl struct proc *p;
274 1.32 thorpej void *v;
275 1.32 thorpej register_t *retval;
276 1.32 thorpej {
277 1.33 mycroft struct sys_shmctl_args /* {
278 1.26 cgd syscallarg(int) shmid;
279 1.26 cgd syscallarg(int) cmd;
280 1.26 cgd syscallarg(struct shmid_ds *) buf;
281 1.32 thorpej } */ *uap = v;
282 1.35 christos int error;
283 1.12 mycroft struct ucred *cred = p->p_ucred;
284 1.11 hpeyerl struct shmid_ds inbuf;
285 1.11 hpeyerl struct shmid_ds *shmseg;
286 1.11 hpeyerl
287 1.26 cgd shmseg = shm_find_segment_by_shmid(SCARG(uap, shmid));
288 1.11 hpeyerl if (shmseg == NULL)
289 1.11 hpeyerl return EINVAL;
290 1.26 cgd switch (SCARG(uap, cmd)) {
291 1.11 hpeyerl case IPC_STAT:
292 1.35 christos if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_R)) != 0)
293 1.11 hpeyerl return error;
294 1.35 christos error = copyout((caddr_t)shmseg, SCARG(uap, buf),
295 1.35 christos sizeof(inbuf));
296 1.35 christos if (error)
297 1.11 hpeyerl return error;
298 1.11 hpeyerl break;
299 1.11 hpeyerl case IPC_SET:
300 1.35 christos if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0)
301 1.13 mycroft return error;
302 1.35 christos error = copyin(SCARG(uap, buf), (caddr_t)&inbuf,
303 1.35 christos sizeof(inbuf));
304 1.35 christos if (error)
305 1.11 hpeyerl return error;
306 1.11 hpeyerl shmseg->shm_perm.uid = inbuf.shm_perm.uid;
307 1.11 hpeyerl shmseg->shm_perm.gid = inbuf.shm_perm.gid;
308 1.12 mycroft shmseg->shm_perm.mode =
309 1.12 mycroft (shmseg->shm_perm.mode & ~ACCESSPERMS) |
310 1.12 mycroft (inbuf.shm_perm.mode & ACCESSPERMS);
311 1.12 mycroft shmseg->shm_ctime = time.tv_sec;
312 1.11 hpeyerl break;
313 1.11 hpeyerl case IPC_RMID:
314 1.35 christos if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0)
315 1.13 mycroft return error;
316 1.12 mycroft shmseg->shm_perm.key = IPC_PRIVATE;
317 1.12 mycroft shmseg->shm_perm.mode |= SHMSEG_REMOVED;
318 1.12 mycroft if (shmseg->shm_nattch <= 0) {
319 1.12 mycroft shm_deallocate_segment(shmseg);
320 1.26 cgd shm_last_free = IPCID_TO_IX(SCARG(uap, shmid));
321 1.11 hpeyerl }
322 1.11 hpeyerl break;
323 1.11 hpeyerl case SHM_LOCK:
324 1.11 hpeyerl case SHM_UNLOCK:
325 1.11 hpeyerl default:
326 1.11 hpeyerl return EINVAL;
327 1.11 hpeyerl }
328 1.11 hpeyerl return 0;
329 1.11 hpeyerl }
330 1.11 hpeyerl
331 1.12 mycroft static int
332 1.12 mycroft shmget_existing(p, uap, mode, segnum, retval)
333 1.11 hpeyerl struct proc *p;
334 1.33 mycroft struct sys_shmget_args /* {
335 1.26 cgd syscallarg(key_t) key;
336 1.44 kleink syscallarg(size_t) size;
337 1.35 christos syscallarg(int) shmflg;
338 1.26 cgd } */ *uap;
339 1.11 hpeyerl int mode;
340 1.11 hpeyerl int segnum;
341 1.26 cgd register_t *retval;
342 1.11 hpeyerl {
343 1.12 mycroft struct shmid_ds *shmseg;
344 1.12 mycroft struct ucred *cred = p->p_ucred;
345 1.11 hpeyerl int error;
346 1.11 hpeyerl
347 1.11 hpeyerl shmseg = &shmsegs[segnum];
348 1.16 mycroft if (shmseg->shm_perm.mode & SHMSEG_REMOVED) {
349 1.16 mycroft /*
350 1.16 mycroft * This segment is in the process of being allocated. Wait
351 1.16 mycroft * until it's done, and look the key up again (in case the
352 1.16 mycroft * allocation failed or it was freed).
353 1.16 mycroft */
354 1.16 mycroft shmseg->shm_perm.mode |= SHMSEG_WANTED;
355 1.35 christos error = tsleep((caddr_t)shmseg, PLOCK | PCATCH, "shmget", 0);
356 1.35 christos if (error)
357 1.16 mycroft return error;
358 1.16 mycroft return EAGAIN;
359 1.16 mycroft }
360 1.35 christos if ((error = ipcperm(cred, &shmseg->shm_perm, mode)) != 0)
361 1.11 hpeyerl return error;
362 1.26 cgd if (SCARG(uap, size) && SCARG(uap, size) > shmseg->shm_segsz)
363 1.11 hpeyerl return EINVAL;
364 1.37 christos if ((SCARG(uap, shmflg) & (IPC_CREAT | IPC_EXCL)) ==
365 1.26 cgd (IPC_CREAT | IPC_EXCL))
366 1.12 mycroft return EEXIST;
367 1.11 hpeyerl *retval = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm);
368 1.11 hpeyerl return 0;
369 1.11 hpeyerl }
370 1.11 hpeyerl
371 1.14 mycroft static int
372 1.14 mycroft shmget_allocate_segment(p, uap, mode, retval)
373 1.14 mycroft struct proc *p;
374 1.33 mycroft struct sys_shmget_args /* {
375 1.26 cgd syscallarg(key_t) key;
376 1.44 kleink syscallarg(size_t) size;
377 1.35 christos syscallarg(int) shmflg;
378 1.26 cgd } */ *uap;
379 1.14 mycroft int mode;
380 1.26 cgd register_t *retval;
381 1.14 mycroft {
382 1.39 drochner int i, segnum, shmid, size;
383 1.14 mycroft struct ucred *cred = p->p_ucred;
384 1.14 mycroft struct shmid_ds *shmseg;
385 1.14 mycroft struct shm_handle *shm_handle;
386 1.40 drochner int error = 0;
387 1.14 mycroft
388 1.26 cgd if (SCARG(uap, size) < shminfo.shmmin ||
389 1.26 cgd SCARG(uap, size) > shminfo.shmmax)
390 1.14 mycroft return EINVAL;
391 1.14 mycroft if (shm_nused >= shminfo.shmmni) /* any shmids left? */
392 1.14 mycroft return ENOSPC;
393 1.26 cgd size = (SCARG(uap, size) + CLOFSET) & ~CLOFSET;
394 1.14 mycroft if (shm_committed + btoc(size) > shminfo.shmall)
395 1.14 mycroft return ENOMEM;
396 1.14 mycroft if (shm_last_free < 0) {
397 1.14 mycroft for (i = 0; i < shminfo.shmmni; i++)
398 1.14 mycroft if (shmsegs[i].shm_perm.mode & SHMSEG_FREE)
399 1.14 mycroft break;
400 1.14 mycroft if (i == shminfo.shmmni)
401 1.14 mycroft panic("shmseg free count inconsistent");
402 1.14 mycroft segnum = i;
403 1.14 mycroft } else {
404 1.14 mycroft segnum = shm_last_free;
405 1.14 mycroft shm_last_free = -1;
406 1.14 mycroft }
407 1.14 mycroft shmseg = &shmsegs[segnum];
408 1.14 mycroft /*
409 1.14 mycroft * In case we sleep in malloc(), mark the segment present but deleted
410 1.14 mycroft * so that noone else tries to create the same key.
411 1.14 mycroft */
412 1.14 mycroft shmseg->shm_perm.mode = SHMSEG_ALLOCATED | SHMSEG_REMOVED;
413 1.26 cgd shmseg->shm_perm.key = SCARG(uap, key);
414 1.14 mycroft shmseg->shm_perm.seq = (shmseg->shm_perm.seq + 1) & 0x7fff;
415 1.14 mycroft shm_handle = (struct shm_handle *)
416 1.14 mycroft malloc(sizeof(struct shm_handle), M_SHM, M_WAITOK);
417 1.14 mycroft shmid = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm);
418 1.42 mrg
419 1.42 mrg shm_handle->shm_object = uao_create(size, 0);
420 1.42 mrg
421 1.14 mycroft shmseg->shm_internal = shm_handle;
422 1.14 mycroft shmseg->shm_perm.cuid = shmseg->shm_perm.uid = cred->cr_uid;
423 1.14 mycroft shmseg->shm_perm.cgid = shmseg->shm_perm.gid = cred->cr_gid;
424 1.16 mycroft shmseg->shm_perm.mode = (shmseg->shm_perm.mode & SHMSEG_WANTED) |
425 1.16 mycroft (mode & ACCESSPERMS) | SHMSEG_ALLOCATED;
426 1.26 cgd shmseg->shm_segsz = SCARG(uap, size);
427 1.14 mycroft shmseg->shm_cpid = p->p_pid;
428 1.14 mycroft shmseg->shm_lpid = shmseg->shm_nattch = 0;
429 1.14 mycroft shmseg->shm_atime = shmseg->shm_dtime = 0;
430 1.14 mycroft shmseg->shm_ctime = time.tv_sec;
431 1.14 mycroft shm_committed += btoc(size);
432 1.14 mycroft shm_nused++;
433 1.40 drochner
434 1.51 mrg *retval = shmid;
435 1.16 mycroft if (shmseg->shm_perm.mode & SHMSEG_WANTED) {
436 1.16 mycroft /*
437 1.16 mycroft * Somebody else wanted this key while we were asleep. Wake
438 1.16 mycroft * them up now.
439 1.16 mycroft */
440 1.16 mycroft shmseg->shm_perm.mode &= ~SHMSEG_WANTED;
441 1.16 mycroft wakeup((caddr_t)shmseg);
442 1.16 mycroft }
443 1.40 drochner return error;
444 1.14 mycroft }
445 1.14 mycroft
446 1.12 mycroft int
447 1.33 mycroft sys_shmget(p, v, retval)
448 1.11 hpeyerl struct proc *p;
449 1.32 thorpej void *v;
450 1.32 thorpej register_t *retval;
451 1.32 thorpej {
452 1.33 mycroft struct sys_shmget_args /* {
453 1.26 cgd syscallarg(key_t) key;
454 1.26 cgd syscallarg(int) size;
455 1.35 christos syscallarg(int) shmflg;
456 1.32 thorpej } */ *uap = v;
457 1.11 hpeyerl int segnum, mode, error;
458 1.11 hpeyerl
459 1.26 cgd mode = SCARG(uap, shmflg) & ACCESSPERMS;
460 1.26 cgd if (SCARG(uap, key) != IPC_PRIVATE) {
461 1.16 mycroft again:
462 1.26 cgd segnum = shm_find_segment_by_key(SCARG(uap, key));
463 1.16 mycroft if (segnum >= 0) {
464 1.16 mycroft error = shmget_existing(p, uap, mode, segnum, retval);
465 1.16 mycroft if (error == EAGAIN)
466 1.16 mycroft goto again;
467 1.16 mycroft return error;
468 1.16 mycroft }
469 1.26 cgd if ((SCARG(uap, shmflg) & IPC_CREAT) == 0)
470 1.14 mycroft return ENOENT;
471 1.11 hpeyerl }
472 1.14 mycroft return shmget_allocate_segment(p, uap, mode, retval);
473 1.11 hpeyerl }
474 1.11 hpeyerl
475 1.12 mycroft void
476 1.41 thorpej shmfork(vm1, vm2)
477 1.41 thorpej struct vmspace *vm1, *vm2;
478 1.11 hpeyerl {
479 1.11 hpeyerl struct shmmap_state *shmmap_s;
480 1.12 mycroft size_t size;
481 1.11 hpeyerl int i;
482 1.11 hpeyerl
483 1.41 thorpej if (vm1->vm_shm == NULL) {
484 1.41 thorpej vm2->vm_shm = NULL;
485 1.38 christos return;
486 1.38 christos }
487 1.41 thorpej
488 1.12 mycroft size = shminfo.shmseg * sizeof(struct shmmap_state);
489 1.12 mycroft shmmap_s = malloc(size, M_SHM, M_WAITOK);
490 1.46 perry memcpy(shmmap_s, vm1->vm_shm, size);
491 1.41 thorpej vm2->vm_shm = (caddr_t)shmmap_s;
492 1.12 mycroft for (i = 0; i < shminfo.shmseg; i++, shmmap_s++)
493 1.12 mycroft if (shmmap_s->shmid != -1)
494 1.11 hpeyerl shmsegs[IPCID_TO_IX(shmmap_s->shmid)].shm_nattch++;
495 1.11 hpeyerl }
496 1.11 hpeyerl
497 1.12 mycroft void
498 1.41 thorpej shmexit(vm)
499 1.41 thorpej struct vmspace *vm;
500 1.11 hpeyerl {
501 1.12 mycroft struct shmmap_state *shmmap_s;
502 1.11 hpeyerl int i;
503 1.11 hpeyerl
504 1.41 thorpej shmmap_s = (struct shmmap_state *)vm->vm_shm;
505 1.38 christos if (shmmap_s == NULL)
506 1.38 christos return;
507 1.12 mycroft for (i = 0; i < shminfo.shmseg; i++, shmmap_s++)
508 1.12 mycroft if (shmmap_s->shmid != -1)
509 1.41 thorpej shm_delete_mapping(vm, shmmap_s);
510 1.41 thorpej free(vm->vm_shm, M_SHM);
511 1.41 thorpej vm->vm_shm = NULL;
512 1.11 hpeyerl }
513 1.11 hpeyerl
514 1.12 mycroft void
515 1.12 mycroft shminit()
516 1.11 hpeyerl {
517 1.11 hpeyerl int i;
518 1.24 deraadt
519 1.24 deraadt shminfo.shmmax *= NBPG;
520 1.11 hpeyerl
521 1.11 hpeyerl for (i = 0; i < shminfo.shmmni; i++) {
522 1.11 hpeyerl shmsegs[i].shm_perm.mode = SHMSEG_FREE;
523 1.11 hpeyerl shmsegs[i].shm_perm.seq = 0;
524 1.11 hpeyerl }
525 1.11 hpeyerl shm_last_free = 0;
526 1.11 hpeyerl shm_nused = 0;
527 1.11 hpeyerl shm_committed = 0;
528 1.11 hpeyerl }
529