2 * Copyright (c) 2000-2007 Apple Inc. All rights reserved.
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
28 /* $NetBSD: sysv_shm.c,v 1.23 1994/07/04 23:25:12 glass Exp $ */
31 * Copyright (c) 1994 Adam Glass and Charles Hannum. All rights reserved.
33 * Redistribution and use in source and binary forms, with or without
34 * modification, are permitted provided that the following conditions
36 * 1. Redistributions of source code must retain the above copyright
37 * notice, this list of conditions and the following disclaimer.
38 * 2. Redistributions in binary form must reproduce the above copyright
39 * notice, this list of conditions and the following disclaimer in the
40 * documentation and/or other materials provided with the distribution.
41 * 3. All advertising materials mentioning features or use of this software
42 * must display the following acknowledgement:
43 * This product includes software developed by Adam Glass and Charles
45 * 4. The names of the authors may not be used to endorse or promote products
46 * derived from this software without specific prior written permission.
48 * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
49 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
50 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
51 * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
52 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
53 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
54 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
55 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
56 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
57 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
60 * NOTICE: This file was modified by McAfee Research in 2004 to introduce
61 * support for mandatory and extensible security protections. This notice
62 * is included in support of clause 2.2 (b) of the Apple Public License,
64 * Copyright (c) 2005-2006 SPARTA, Inc.
68 #include <sys/appleapiopts.h>
69 #include <sys/param.h>
70 #include <sys/systm.h>
71 #include <sys/kernel.h>
72 #include <sys/shm_internal.h>
73 #include <sys/proc_internal.h>
74 #include <sys/kauth.h>
75 #include <sys/malloc.h>
78 #include <sys/sysctl.h>
80 #include <sys/sysent.h>
81 #include <sys/sysproto.h>
83 #include <security/mac_framework.h>
86 #include <security/audit/audit.h>
88 #include <mach/mach_types.h>
89 #include <mach/vm_inherit.h>
90 #include <mach/vm_map.h>
92 #include <mach/mach_vm.h>
94 #include <vm/vm_map.h>
95 #include <vm/vm_protos.h>
96 #include <vm/vm_kern.h>
98 #include <kern/locks.h>
100 /* Uncomment this line to see MAC debugging output. */
101 /* #define MAC_DEBUG */
102 #if CONFIG_MACF_DEBUG
103 #define MPRINTF(a) printf a
109 static void shminit(void *);
111 SYSINIT(sysv_shm
, SI_SUB_SYSV_SHM
, SI_ORDER_FIRST
, shminit
, NULL
)
114 static lck_grp_t
*sysv_shm_subsys_lck_grp
;
115 static lck_grp_attr_t
*sysv_shm_subsys_lck_grp_attr
;
116 static lck_attr_t
*sysv_shm_subsys_lck_attr
;
117 static lck_mtx_t sysv_shm_subsys_mutex
;
119 #define SYSV_SHM_SUBSYS_LOCK() lck_mtx_lock(&sysv_shm_subsys_mutex)
120 #define SYSV_SHM_SUBSYS_UNLOCK() lck_mtx_unlock(&sysv_shm_subsys_mutex)
122 static int oshmctl(void *p
, void *uap
, void *retval
);
123 static int shmget_allocate_segment(struct proc
*p
, struct shmget_args
*uap
, int mode
, int * retval
);
124 static int shmget_existing(struct shmget_args
*uap
, int mode
, int segnum
, int * retval
);
125 static void shmid_ds_64to32(struct user_shmid_ds
*in
, struct user32_shmid_ds
*out
);
126 static void shmid_ds_32to64(struct user32_shmid_ds
*in
, struct user_shmid_ds
*out
);
128 /* XXX casting to (sy_call_t *) is bogus, as usual. */
129 static sy_call_t
*shmcalls
[] = {
130 (sy_call_t
*)shmat
, (sy_call_t
*)oshmctl
,
131 (sy_call_t
*)shmdt
, (sy_call_t
*)shmget
,
135 #define SHMSEG_FREE 0x0200
136 #define SHMSEG_REMOVED 0x0400
137 #define SHMSEG_ALLOCATED 0x0800
138 #define SHMSEG_WANTED 0x1000
140 static int shm_last_free
, shm_nused
, shm_committed
;
141 struct shmid_kernel
*shmsegs
; /* 64 bit version */
142 static int shm_inited
= 0;
145 * Since anonymous memory chunks are limited to ANON_MAX_SIZE bytes,
146 * we have to keep a list of chunks when we want to handle a shared memory
147 * segment bigger than ANON_MAX_SIZE.
148 * Each chunk points to a VM named entry of up to ANON_MAX_SIZE bytes
149 * of anonymous memory.
152 void * shm_object
; /* named entry for this chunk*/
153 memory_object_size_t shm_handle_size
; /* size of this chunk */
154 struct shm_handle
*shm_handle_next
; /* next chunk */
157 struct shmmap_state
{
158 mach_vm_address_t va
; /* user address */
159 int shmid
; /* segment id */
162 static void shm_deallocate_segment(struct shmid_kernel
*);
163 static int shm_find_segment_by_key(key_t
);
164 static struct shmid_kernel
*shm_find_segment_by_shmid(int);
165 static int shm_delete_mapping(struct proc
*, struct shmmap_state
*, int);
167 #ifdef __APPLE_API_PRIVATE
168 #define DEFAULT_SHMMAX (4 * 1024 * 1024)
169 #define DEFAULT_SHMMIN 1
170 #define DEFAULT_SHMMNI 32
171 #define DEFAULT_SHMSEG 8
172 #define DEFAULT_SHMALL 1024
174 struct shminfo shminfo
= {
181 #endif /* __APPLE_API_PRIVATE */
183 void sysv_shm_lock_init(void);
185 static __inline__
time_t
194 * This conversion is safe, since if we are converting for a 32 bit process,
195 * then it's value of (struct shmid_ds)->shm_segsz will never exceed 4G.
197 * NOTE: Source and target may *NOT* overlap! (target is smaller)
200 shmid_ds_64to32(struct user_shmid_ds
*in
, struct user32_shmid_ds
*out
)
202 out
->shm_perm
= in
->shm_perm
;
203 out
->shm_segsz
= in
->shm_segsz
;
204 out
->shm_lpid
= in
->shm_lpid
;
205 out
->shm_cpid
= in
->shm_cpid
;
206 out
->shm_nattch
= in
->shm_nattch
;
207 out
->shm_atime
= in
->shm_atime
;
208 out
->shm_dtime
= in
->shm_dtime
;
209 out
->shm_ctime
= in
->shm_ctime
;
210 out
->shm_internal
= CAST_DOWN_EXPLICIT(int,in
->shm_internal
);
214 * NOTE: Source and target may are permitted to overlap! (source is smaller);
215 * this works because we copy fields in order from the end of the struct to
219 shmid_ds_32to64(struct user32_shmid_ds
*in
, struct user_shmid_ds
*out
)
221 out
->shm_internal
= in
->shm_internal
;
222 out
->shm_ctime
= in
->shm_ctime
;
223 out
->shm_dtime
= in
->shm_dtime
;
224 out
->shm_atime
= in
->shm_atime
;
225 out
->shm_nattch
= in
->shm_nattch
;
226 out
->shm_cpid
= in
->shm_cpid
;
227 out
->shm_lpid
= in
->shm_lpid
;
228 out
->shm_segsz
= in
->shm_segsz
;
229 out
->shm_perm
= in
->shm_perm
;
234 shm_find_segment_by_key(key_t key
)
238 for (i
= 0; i
< shminfo
.shmmni
; i
++)
239 if ((shmsegs
[i
].u
.shm_perm
.mode
& SHMSEG_ALLOCATED
) &&
240 shmsegs
[i
].u
.shm_perm
._key
== key
)
245 static struct shmid_kernel
*
246 shm_find_segment_by_shmid(int shmid
)
249 struct shmid_kernel
*shmseg
;
251 segnum
= IPCID_TO_IX(shmid
);
252 if (segnum
< 0 || segnum
>= shminfo
.shmmni
)
254 shmseg
= &shmsegs
[segnum
];
255 if ((shmseg
->u
.shm_perm
.mode
& (SHMSEG_ALLOCATED
| SHMSEG_REMOVED
))
256 != SHMSEG_ALLOCATED
||
257 shmseg
->u
.shm_perm
._seq
!= IPCID_TO_SEQ(shmid
))
263 shm_deallocate_segment(struct shmid_kernel
*shmseg
)
265 struct shm_handle
*shm_handle
, *shm_handle_next
;
268 for (shm_handle
= CAST_DOWN(void *,shmseg
->u
.shm_internal
); /* tunnel */
270 shm_handle
= shm_handle_next
) {
271 shm_handle_next
= shm_handle
->shm_handle_next
;
272 mach_memory_entry_port_release(shm_handle
->shm_object
);
273 FREE((caddr_t
) shm_handle
, M_SHM
);
275 shmseg
->u
.shm_internal
= USER_ADDR_NULL
; /* tunnel */
276 size
= mach_vm_round_page(shmseg
->u
.shm_segsz
);
277 shm_committed
-= btoc(size
);
279 shmseg
->u
.shm_perm
.mode
= SHMSEG_FREE
;
281 /* Reset the MAC label */
282 mac_sysvshm_label_recycle(shmseg
);
287 shm_delete_mapping(__unused
struct proc
*p
, struct shmmap_state
*shmmap_s
,
290 struct shmid_kernel
*shmseg
;
294 segnum
= IPCID_TO_IX(shmmap_s
->shmid
);
295 shmseg
= &shmsegs
[segnum
];
296 size
= mach_vm_round_page(shmseg
->u
.shm_segsz
); /* XXX done for us? */
298 result
= mach_vm_deallocate(current_map(), shmmap_s
->va
, size
);
299 if (result
!= KERN_SUCCESS
)
302 shmmap_s
->shmid
= -1;
303 shmseg
->u
.shm_dtime
= sysv_shmtime();
304 if ((--shmseg
->u
.shm_nattch
<= 0) &&
305 (shmseg
->u
.shm_perm
.mode
& SHMSEG_REMOVED
)) {
306 shm_deallocate_segment(shmseg
);
307 shm_last_free
= segnum
;
313 shmdt(struct proc
*p
, struct shmdt_args
*uap
, int32_t *retval
)
316 struct shmid_kernel
*shmsegptr
;
318 struct shmmap_state
*shmmap_s
;
322 AUDIT_ARG(svipc_addr
, uap
->shmaddr
);
324 SYSV_SHM_SUBSYS_LOCK();
329 shmmap_s
= (struct shmmap_state
*)p
->vm_shm
;
330 if (shmmap_s
== NULL
) {
335 for (i
= 0; i
< shminfo
.shmseg
; i
++, shmmap_s
++)
336 if (shmmap_s
->shmid
!= -1 &&
337 shmmap_s
->va
== (mach_vm_offset_t
)uap
->shmaddr
)
339 if (i
== shminfo
.shmseg
) {
345 * XXX: It might be useful to move this into the shm_delete_mapping
348 shmsegptr
= &shmsegs
[IPCID_TO_IX(shmmap_s
->shmid
)];
349 shmdtret
= mac_sysvshm_check_shmdt(kauth_cred_get(), shmsegptr
);
353 i
= shm_delete_mapping(p
, shmmap_s
, 1);
359 SYSV_SHM_SUBSYS_UNLOCK();
364 shmat(struct proc
*p
, struct shmat_args
*uap
, user_addr_t
*retval
)
367 struct shmid_kernel
*shmseg
;
368 struct shmmap_state
*shmmap_s
= NULL
;
369 struct shm_handle
*shm_handle
;
370 mach_vm_address_t attach_va
; /* attach address in/out */
371 mach_vm_size_t map_size
; /* size of map entry */
372 mach_vm_size_t mapped_size
;
381 AUDIT_ARG(svipc_id
, uap
->shmid
);
382 AUDIT_ARG(svipc_addr
, uap
->shmaddr
);
384 SYSV_SHM_SUBSYS_LOCK();
390 shmmap_s
= (struct shmmap_state
*)p
->vm_shm
;
392 if (shmmap_s
== NULL
) {
393 size
= shminfo
.shmseg
* sizeof(struct shmmap_state
);
394 if (size
== 0 || size
/ shminfo
.shmseg
!= sizeof(struct shmmap_state
)) {
399 MALLOC(shmmap_s
, struct shmmap_state
*, size
, M_SHM
, M_WAITOK
);
400 if (shmmap_s
== NULL
) {
404 for (i
= 0; i
< shminfo
.shmseg
; i
++)
405 shmmap_s
[i
].shmid
= -1;
406 p
->vm_shm
= (caddr_t
)shmmap_s
;
408 shmseg
= shm_find_segment_by_shmid(uap
->shmid
);
409 if (shmseg
== NULL
) {
414 AUDIT_ARG(svipc_perm
, &shmseg
->u
.shm_perm
);
415 error
= ipcperm(kauth_cred_get(), &shmseg
->u
.shm_perm
,
416 (uap
->shmflg
& SHM_RDONLY
) ? IPC_R
: IPC_R
|IPC_W
);
423 error
= mac_sysvshm_check_shmat(kauth_cred_get(), shmseg
, uap
->shmflg
);
429 for (i
= 0; i
< shminfo
.shmseg
; i
++) {
430 if (shmmap_s
->shmid
== -1)
434 if (i
>= shminfo
.shmseg
) {
439 map_size
= mach_vm_round_page(shmseg
->u
.shm_segsz
);
441 if ((uap
->shmflg
& SHM_RDONLY
) == 0)
442 prot
|= VM_PROT_WRITE
;
443 flags
= MAP_ANON
| MAP_SHARED
;
447 attach_va
= (mach_vm_address_t
)uap
->shmaddr
;
448 if (uap
->shmflg
& SHM_RND
)
449 attach_va
&= ~(SHMLBA
-1);
450 else if ((attach_va
& (SHMLBA
-1)) != 0) {
455 if (flags
& MAP_FIXED
) {
456 vm_flags
= VM_FLAGS_FIXED
;
458 vm_flags
= VM_FLAGS_ANYWHERE
;
463 /* first reserve enough space... */
464 rv
= mach_vm_map(current_map(),
475 if (rv
!= KERN_SUCCESS
) {
479 shmmap_s
->va
= attach_va
;
481 /* ... then map the shared memory over the reserved space */
482 for (shm_handle
= CAST_DOWN(void *, shmseg
->u
.shm_internal
);/* tunnel */
484 shm_handle
= shm_handle
->shm_handle_next
) {
486 rv
= vm_map_enter_mem_object(
487 current_map(), /* process map */
488 &attach_va
, /* attach address */
489 shm_handle
->shm_handle_size
, /* segment size */
490 (mach_vm_offset_t
)0, /* alignment mask */
491 VM_FLAGS_FIXED
| VM_FLAGS_OVERWRITE
,
492 shm_handle
->shm_object
,
498 if (rv
!= KERN_SUCCESS
)
501 mapped_size
+= shm_handle
->shm_handle_size
;
502 attach_va
= attach_va
+ shm_handle
->shm_handle_size
;
505 shmmap_s
->shmid
= uap
->shmid
;
506 shmseg
->u
.shm_lpid
= p
->p_pid
;
507 shmseg
->u
.shm_atime
= sysv_shmtime();
508 shmseg
->u
.shm_nattch
++;
509 *retval
= shmmap_s
->va
; /* XXX return -1 on error */
513 if (mapped_size
> 0) {
514 (void) mach_vm_deallocate(current_map(),
519 case KERN_INVALID_ADDRESS
:
523 case KERN_PROTECTION_FAILURE
:
531 SYSV_SHM_SUBSYS_UNLOCK();
536 oshmctl(__unused
void *p
, __unused
void *uap
, __unused
void *retval
)
550 shmctl(__unused
struct proc
*p
, struct shmctl_args
*uap
, int32_t *retval
)
553 kauth_cred_t cred
= kauth_cred_get();
554 struct user_shmid_ds inbuf
;
555 struct shmid_kernel
*shmseg
;
559 AUDIT_ARG(svipc_cmd
, uap
->cmd
);
560 AUDIT_ARG(svipc_id
, uap
->shmid
);
562 SYSV_SHM_SUBSYS_LOCK();
568 shmseg
= shm_find_segment_by_shmid(uap
->shmid
);
569 if (shmseg
== NULL
) {
574 /* XXAUDIT: This is the perms BEFORE any change by this call. This
575 * may not be what is desired.
577 AUDIT_ARG(svipc_perm
, &shmseg
->u
.shm_perm
);
580 error
= mac_sysvshm_check_shmctl(cred
, shmseg
, uap
->cmd
);
588 error
= ipcperm(cred
, &shmseg
->u
.shm_perm
, IPC_R
);
594 if (IS_64BIT_PROCESS(p
)) {
595 struct user_shmid_ds shmid_ds
;
596 memcpy(&shmid_ds
, &shmseg
->u
, sizeof(struct user_shmid_ds
));
598 /* Clear kernel reserved pointer before copying to user space */
599 shmid_ds
.shm_internal
= USER_ADDR_NULL
;
601 error
= copyout(&shmid_ds
, uap
->buf
, sizeof(shmid_ds
));
603 struct user32_shmid_ds shmid_ds32
;
604 shmid_ds_64to32(&shmseg
->u
, &shmid_ds32
);
606 /* Clear kernel reserved pointer before copying to user space */
607 shmid_ds32
.shm_internal
= (user32_addr_t
)0;
609 error
= copyout(&shmid_ds32
, uap
->buf
, sizeof(shmid_ds32
));
617 error
= ipcperm(cred
, &shmseg
->u
.shm_perm
, IPC_M
);
622 if (IS_64BIT_PROCESS(p
)) {
623 error
= copyin(uap
->buf
, &inbuf
, sizeof(struct user_shmid_ds
));
625 struct user32_shmid_ds shmid_ds32
;
626 error
= copyin(uap
->buf
, &shmid_ds32
, sizeof(shmid_ds32
));
627 /* convert in place; ugly, but safe */
628 shmid_ds_32to64(&shmid_ds32
, &inbuf
);
634 shmseg
->u
.shm_perm
.uid
= inbuf
.shm_perm
.uid
;
635 shmseg
->u
.shm_perm
.gid
= inbuf
.shm_perm
.gid
;
636 shmseg
->u
.shm_perm
.mode
=
637 (shmseg
->u
.shm_perm
.mode
& ~ACCESSPERMS
) |
638 (inbuf
.shm_perm
.mode
& ACCESSPERMS
);
639 shmseg
->u
.shm_ctime
= sysv_shmtime();
642 error
= ipcperm(cred
, &shmseg
->u
.shm_perm
, IPC_M
);
647 shmseg
->u
.shm_perm
._key
= IPC_PRIVATE
;
648 shmseg
->u
.shm_perm
.mode
|= SHMSEG_REMOVED
;
649 if (shmseg
->u
.shm_nattch
<= 0) {
650 shm_deallocate_segment(shmseg
);
651 shm_last_free
= IPCID_TO_IX(uap
->shmid
);
665 SYSV_SHM_SUBSYS_UNLOCK();
670 shmget_existing(struct shmget_args
*uap
, int mode
, int segnum
, int *retval
)
672 struct shmid_kernel
*shmseg
;
675 shmseg
= &shmsegs
[segnum
];
676 if (shmseg
->u
.shm_perm
.mode
& SHMSEG_REMOVED
) {
678 * This segment is in the process of being allocated. Wait
679 * until it's done, and look the key up again (in case the
680 * allocation failed or it was freed).
682 shmseg
->u
.shm_perm
.mode
|= SHMSEG_WANTED
;
683 error
= tsleep((caddr_t
)shmseg
, PLOCK
| PCATCH
, "shmget", 0);
690 * The low 9 bits of shmflag are the mode bits being requested, which
691 * are the actual mode bits desired on the segment, and not in IPC_R
692 * form; therefore it would be incorrect to call ipcperm() to validate
693 * them; instead, we AND the existing mode with the requested mode, and
694 * verify that it matches the requested mode; otherwise, we fail with
695 * EACCES (access denied).
697 if ((shmseg
->u
.shm_perm
.mode
& mode
) != mode
)
701 error
= mac_sysvshm_check_shmget(kauth_cred_get(), shmseg
, uap
->shmflg
);
706 if (uap
->size
&& uap
->size
> shmseg
->u
.shm_segsz
)
709 if ((uap
->shmflg
& (IPC_CREAT
| IPC_EXCL
)) == (IPC_CREAT
| IPC_EXCL
))
712 *retval
= IXSEQ_TO_IPCID(segnum
, shmseg
->u
.shm_perm
);
717 shmget_allocate_segment(struct proc
*p
, struct shmget_args
*uap
, int mode
,
720 int i
, segnum
, shmid
;
721 kauth_cred_t cred
= kauth_cred_get();
722 struct shmid_kernel
*shmseg
;
723 struct shm_handle
*shm_handle
;
725 mach_vm_size_t total_size
, size
, alloc_size
;
727 struct shm_handle
*shm_handle_next
, **shm_handle_next_p
;
729 if (uap
->size
< (user_size_t
)shminfo
.shmmin
||
730 uap
->size
> (user_size_t
)shminfo
.shmmax
)
732 if (shm_nused
>= shminfo
.shmmni
) /* any shmids left? */
734 total_size
= mach_vm_round_page(uap
->size
);
735 if ((user_ssize_t
)(shm_committed
+ btoc(total_size
)) > shminfo
.shmall
)
737 if (shm_last_free
< 0) {
738 for (i
= 0; i
< shminfo
.shmmni
; i
++)
739 if (shmsegs
[i
].u
.shm_perm
.mode
& SHMSEG_FREE
)
741 if (i
== shminfo
.shmmni
)
742 panic("shmseg free count inconsistent");
745 segnum
= shm_last_free
;
748 shmseg
= &shmsegs
[segnum
];
751 * In case we sleep in malloc(), mark the segment present but deleted
752 * so that noone else tries to create the same key.
753 * XXX but we don't release the global lock !?
755 shmseg
->u
.shm_perm
.mode
= SHMSEG_ALLOCATED
| SHMSEG_REMOVED
;
756 shmseg
->u
.shm_perm
._key
= uap
->key
;
757 shmseg
->u
.shm_perm
._seq
= (shmseg
->u
.shm_perm
._seq
+ 1) & 0x7fff;
759 shm_handle_next_p
= NULL
;
761 alloc_size
< total_size
;
762 alloc_size
+= size
) {
763 size
= MIN(total_size
- alloc_size
, ANON_MAX_SIZE
);
764 kret
= mach_make_memory_entry_64(
766 (memory_object_size_t
*) &size
,
767 (memory_object_offset_t
) 0,
768 MAP_MEM_NAMED_CREATE
| VM_PROT_DEFAULT
,
769 (ipc_port_t
*) &mem_object
, 0);
770 if (kret
!= KERN_SUCCESS
)
773 MALLOC(shm_handle
, struct shm_handle
*, sizeof(struct shm_handle
), M_SHM
, M_WAITOK
);
774 if (shm_handle
== NULL
) {
775 kret
= KERN_NO_SPACE
;
776 mach_memory_entry_port_release(mem_object
);
780 shm_handle
->shm_object
= mem_object
;
781 shm_handle
->shm_handle_size
= size
;
782 shm_handle
->shm_handle_next
= NULL
;
783 if (shm_handle_next_p
== NULL
) {
784 shmseg
->u
.shm_internal
= CAST_USER_ADDR_T(shm_handle
);/* tunnel */
786 *shm_handle_next_p
= shm_handle
;
788 shm_handle_next_p
= &shm_handle
->shm_handle_next
;
791 shmid
= IXSEQ_TO_IPCID(segnum
, shmseg
->u
.shm_perm
);
793 shmseg
->u
.shm_perm
.cuid
= shmseg
->u
.shm_perm
.uid
= kauth_cred_getuid(cred
);
794 shmseg
->u
.shm_perm
.cgid
= shmseg
->u
.shm_perm
.gid
= kauth_cred_getgid(cred
);
795 shmseg
->u
.shm_perm
.mode
= (shmseg
->u
.shm_perm
.mode
& SHMSEG_WANTED
) |
796 (mode
& ACCESSPERMS
) | SHMSEG_ALLOCATED
;
797 shmseg
->u
.shm_segsz
= uap
->size
;
798 shmseg
->u
.shm_cpid
= p
->p_pid
;
799 shmseg
->u
.shm_lpid
= shmseg
->u
.shm_nattch
= 0;
800 shmseg
->u
.shm_atime
= shmseg
->u
.shm_dtime
= 0;
802 mac_sysvshm_label_associate(cred
, shmseg
);
804 shmseg
->u
.shm_ctime
= sysv_shmtime();
805 shm_committed
+= btoc(size
);
807 AUDIT_ARG(svipc_perm
, &shmseg
->u
.shm_perm
);
808 if (shmseg
->u
.shm_perm
.mode
& SHMSEG_WANTED
) {
810 * Somebody else wanted this key while we were asleep. Wake
813 shmseg
->u
.shm_perm
.mode
&= ~SHMSEG_WANTED
;
814 wakeup((caddr_t
)shmseg
);
817 AUDIT_ARG(svipc_id
, shmid
);
820 if (kret
!= KERN_SUCCESS
) {
821 for (shm_handle
= CAST_DOWN(void *,shmseg
->u
.shm_internal
); /* tunnel */
823 shm_handle
= shm_handle_next
) {
824 shm_handle_next
= shm_handle
->shm_handle_next
;
825 mach_memory_entry_port_release(shm_handle
->shm_object
);
826 FREE((caddr_t
) shm_handle
, M_SHM
);
828 shmseg
->u
.shm_internal
= USER_ADDR_NULL
; /* tunnel */
832 case KERN_INVALID_ADDRESS
:
835 case KERN_PROTECTION_FAILURE
:
844 shmget(struct proc
*p
, struct shmget_args
*uap
, int32_t *retval
)
846 int segnum
, mode
, error
;
849 /* Auditing is actually done in shmget_allocate_segment() */
851 SYSV_SHM_SUBSYS_LOCK();
857 mode
= uap
->shmflg
& ACCESSPERMS
;
858 if (uap
->key
!= IPC_PRIVATE
) {
860 segnum
= shm_find_segment_by_key(uap
->key
);
862 error
= shmget_existing(uap
, mode
, segnum
, retval
);
868 if ((uap
->shmflg
& IPC_CREAT
) == 0) {
873 shmget_ret
= shmget_allocate_segment(p
, uap
, mode
, retval
);
875 SYSV_SHM_SUBSYS_UNLOCK();
884 * Entry point for all SHM calls: shmat, oshmctl, shmdt, shmget, shmctl
886 * Parameters: p Process requesting the call
887 * uap User argument descriptor (see below)
888 * retval Return value of the selected shm call
890 * Indirect parameters: uap->which msg call to invoke (index in array of shm calls)
891 * uap->a2 User argument descriptor
896 * Implicit returns: retval Return value of the selected shm call
898 * DEPRECATED: This interface should not be used to call the other SHM
899 * functions (shmat, oshmctl, shmdt, shmget, shmctl). The correct
900 * usage is to call the other SHM functions directly.
903 shmsys(struct proc
*p
, struct shmsys_args
*uap
, int32_t *retval
)
906 /* The routine that we are dispatching already does this */
908 if (uap
->which
>= sizeof(shmcalls
)/sizeof(shmcalls
[0]))
910 return ((*shmcalls
[uap
->which
])(p
, &uap
->a2
, retval
));
914 * Return 0 on success, 1 on failure.
917 shmfork(struct proc
*p1
, struct proc
*p2
)
919 struct shmmap_state
*shmmap_s
;
924 SYSV_SHM_SUBSYS_LOCK();
929 size
= shminfo
.shmseg
* sizeof(struct shmmap_state
);
930 if (size
== 0 || size
/ shminfo
.shmseg
!= sizeof(struct shmmap_state
)) {
935 MALLOC(shmmap_s
, struct shmmap_state
*, size
, M_SHM
, M_WAITOK
);
936 if (shmmap_s
!= NULL
) {
937 bcopy((caddr_t
)p1
->vm_shm
, (caddr_t
)shmmap_s
, size
);
938 p2
->vm_shm
= (caddr_t
)shmmap_s
;
939 for (i
= 0; i
< shminfo
.shmseg
; i
++, shmmap_s
++)
940 if (shmmap_s
->shmid
!= -1)
941 shmsegs
[IPCID_TO_IX(shmmap_s
->shmid
)].u
.shm_nattch
++;
946 shmfork_ret
= 1; /* failed to copy to child - ENOMEM */
948 SYSV_SHM_SUBSYS_UNLOCK();
953 shmexit(struct proc
*p
)
955 struct shmmap_state
*shmmap_s
;
958 shmmap_s
= (struct shmmap_state
*)p
->vm_shm
;
960 SYSV_SHM_SUBSYS_LOCK();
961 for (i
= 0; i
< shminfo
.shmseg
; i
++, shmmap_s
++)
962 if (shmmap_s
->shmid
!= -1)
964 * XXX: Should the MAC framework enforce
965 * check here as well.
967 shm_delete_mapping(p
, shmmap_s
, 1);
968 FREE((caddr_t
)p
->vm_shm
, M_SHM
);
970 SYSV_SHM_SUBSYS_UNLOCK();
974 * shmexec() is like shmexit(), only it doesn't delete the mappings,
975 * since the old address space has already been destroyed and the new
976 * one instantiated. Instead, it just does the housekeeping work we
977 * need to do to keep the System V shared memory subsystem sane.
979 __private_extern__
void
980 shmexec(struct proc
*p
)
982 struct shmmap_state
*shmmap_s
;
985 shmmap_s
= (struct shmmap_state
*)p
->vm_shm
;
986 SYSV_SHM_SUBSYS_LOCK();
987 for (i
= 0; i
< shminfo
.shmseg
; i
++, shmmap_s
++)
988 if (shmmap_s
->shmid
!= -1)
989 shm_delete_mapping(p
, shmmap_s
, 0);
990 FREE((caddr_t
)p
->vm_shm
, M_SHM
);
992 SYSV_SHM_SUBSYS_UNLOCK();
996 shminit(__unused
void *dummy
)
1003 * we store internally 64 bit, since if we didn't, we would
1004 * be unable to represent a segment size in excess of 32 bits
1005 * with the (struct shmid_ds)->shm_segsz field; also, POSIX
1006 * dictates this filed be a size_t, which is 64 bits when
1007 * running 64 bit binaries.
1009 s
= sizeof(struct shmid_kernel
) * shminfo
.shmmni
;
1011 MALLOC(shmsegs
, struct shmid_kernel
*, s
, M_SHM
, M_WAITOK
);
1012 if (shmsegs
== NULL
) {
1013 /* XXX fail safely: leave shared memory uninited */
1016 for (i
= 0; i
< shminfo
.shmmni
; i
++) {
1017 shmsegs
[i
].u
.shm_perm
.mode
= SHMSEG_FREE
;
1018 shmsegs
[i
].u
.shm_perm
._seq
= 0;
1020 mac_sysvshm_label_init(&shmsegs
[i
]);
1029 /* Initialize the mutex governing access to the SysV shm subsystem */
1030 __private_extern__
void
1031 sysv_shm_lock_init( void )
1034 sysv_shm_subsys_lck_grp_attr
= lck_grp_attr_alloc_init();
1036 sysv_shm_subsys_lck_grp
= lck_grp_alloc_init("sysv_shm_subsys_lock", sysv_shm_subsys_lck_grp_attr
);
1038 sysv_shm_subsys_lck_attr
= lck_attr_alloc_init();
1039 lck_mtx_init(&sysv_shm_subsys_mutex
, sysv_shm_subsys_lck_grp
, sysv_shm_subsys_lck_attr
);
1042 /* (struct sysctl_oid *oidp, void *arg1, int arg2, \
1043 struct sysctl_req *req) */
1045 sysctl_shminfo(__unused
struct sysctl_oid
*oidp
, void *arg1
,
1046 __unused
int arg2
, struct sysctl_req
*req
)
1049 int sysctl_shminfo_ret
= 0;
1050 uint64_t saved_shmmax
;
1051 uint64_t saved_shmseg
;
1052 uint64_t saved_shmmni
;
1053 uint64_t saved_shmall
;
1055 error
= SYSCTL_OUT(req
, arg1
, sizeof(int64_t));
1056 if (error
|| req
->newptr
== USER_ADDR_NULL
)
1059 SYSV_SHM_SUBSYS_LOCK();
1061 /* shmmni can not be changed after SysV SHM has been initialized */
1062 if (shm_inited
&& arg1
== &shminfo
.shmmni
) {
1063 sysctl_shminfo_ret
= EPERM
;
1064 goto sysctl_shminfo_out
;
1066 saved_shmmax
= shminfo
.shmmax
;
1067 saved_shmseg
= shminfo
.shmseg
;
1068 saved_shmmni
= shminfo
.shmmni
;
1069 saved_shmall
= shminfo
.shmall
;
1071 if ((error
= SYSCTL_IN(req
, arg1
, sizeof(int64_t))) != 0) {
1072 sysctl_shminfo_ret
= error
;
1073 goto sysctl_shminfo_out
;
1076 if (arg1
== &shminfo
.shmmax
) {
1077 /* shmmax needs to be page-aligned */
1078 if (shminfo
.shmmax
& PAGE_MASK_64
) {
1079 shminfo
.shmmax
= saved_shmmax
;
1080 sysctl_shminfo_ret
= EINVAL
;
1081 goto sysctl_shminfo_out
;
1084 else if (arg1
== &shminfo
.shmseg
) {
1085 /* add a sanity check - 20847256 */
1086 if (shminfo
.shmseg
> INT32_MAX
|| shminfo
.shmseg
< 0) {
1087 shminfo
.shmseg
= saved_shmseg
;
1088 sysctl_shminfo_ret
= EINVAL
;
1089 goto sysctl_shminfo_out
;
1092 else if (arg1
== &shminfo
.shmmni
) {
1093 /* add a sanity check - 20847256 */
1094 if (shminfo
.shmmni
> INT32_MAX
|| shminfo
.shmmni
< 0) {
1095 shminfo
.shmmni
= saved_shmmni
;
1096 sysctl_shminfo_ret
= EINVAL
;
1097 goto sysctl_shminfo_out
;
1100 else if (arg1
== &shminfo
.shmall
) {
1101 /* add a sanity check - 20847256 */
1102 if (shminfo
.shmall
> INT32_MAX
|| shminfo
.shmall
< 0) {
1103 shminfo
.shmall
= saved_shmall
;
1104 sysctl_shminfo_ret
= EINVAL
;
1105 goto sysctl_shminfo_out
;
1108 sysctl_shminfo_ret
= 0;
1110 SYSV_SHM_SUBSYS_UNLOCK();
1111 return sysctl_shminfo_ret
;
1115 IPCS_shm_sysctl(__unused
struct sysctl_oid
*oidp
, __unused
void *arg1
,
1116 __unused
int arg2
, struct sysctl_req
*req
)
1121 struct user32_IPCS_command u32
;
1122 struct user_IPCS_command u64
;
1124 struct user32_shmid_ds shmid_ds32
; /* post conversion, 32 bit version */
1125 struct user_shmid_ds shmid_ds
; /* 64 bit version */
1127 size_t ipcs_sz
= sizeof(struct user_IPCS_command
);
1128 size_t shmid_ds_sz
= sizeof(struct user_shmid_ds
);
1129 struct proc
*p
= current_proc();
1131 SYSV_SHM_SUBSYS_LOCK();
1137 if (!IS_64BIT_PROCESS(p
)) {
1138 ipcs_sz
= sizeof(struct user32_IPCS_command
);
1139 shmid_ds_sz
= sizeof(struct user32_shmid_ds
);
1142 /* Copy in the command structure */
1143 if ((error
= SYSCTL_IN(req
, &ipcs
, ipcs_sz
)) != 0) {
1144 goto ipcs_shm_sysctl_out
;
1147 if (!IS_64BIT_PROCESS(p
)) /* convert in place */
1148 ipcs
.u64
.ipcs_data
= CAST_USER_ADDR_T(ipcs
.u32
.ipcs_data
);
1150 /* Let us version this interface... */
1151 if (ipcs
.u64
.ipcs_magic
!= IPCS_MAGIC
) {
1153 goto ipcs_shm_sysctl_out
;
1156 switch(ipcs
.u64
.ipcs_op
) {
1157 case IPCS_SHM_CONF
: /* Obtain global configuration data */
1158 if (ipcs
.u64
.ipcs_datalen
!= sizeof(struct shminfo
)) {
1159 if (ipcs
.u64
.ipcs_cursor
!= 0) { /* fwd. compat. */
1166 error
= copyout(&shminfo
, ipcs
.u64
.ipcs_data
, ipcs
.u64
.ipcs_datalen
);
1169 case IPCS_SHM_ITER
: /* Iterate over existing segments */
1170 cursor
= ipcs
.u64
.ipcs_cursor
;
1171 if (cursor
< 0 || cursor
>= shminfo
.shmmni
) {
1175 if (ipcs
.u64
.ipcs_datalen
!= (int)shmid_ds_sz
) {
1179 for( ; cursor
< shminfo
.shmmni
; cursor
++) {
1180 if (shmsegs
[cursor
].u
.shm_perm
.mode
& SHMSEG_ALLOCATED
)
1184 if (cursor
== shminfo
.shmmni
) {
1189 shmid_dsp
= &shmsegs
[cursor
]; /* default: 64 bit */
1192 * If necessary, convert the 64 bit kernel segment
1193 * descriptor to a 32 bit user one.
1195 if (!IS_64BIT_PROCESS(p
)) {
1196 shmid_ds_64to32(shmid_dsp
, &shmid_ds32
);
1198 /* Clear kernel reserved pointer before copying to user space */
1199 shmid_ds32
.shm_internal
= (user32_addr_t
)0;
1201 shmid_dsp
= &shmid_ds32
;
1203 memcpy(&shmid_ds
, shmid_dsp
, sizeof(shmid_ds
));
1205 /* Clear kernel reserved pointer before copying to user space */
1206 shmid_ds
.shm_internal
= USER_ADDR_NULL
;
1208 shmid_dsp
= &shmid_ds
;
1210 error
= copyout(shmid_dsp
, ipcs
.u64
.ipcs_data
, ipcs
.u64
.ipcs_datalen
);
1213 ipcs
.u64
.ipcs_cursor
= cursor
+ 1;
1215 if (!IS_64BIT_PROCESS(p
)) /* convert in place */
1216 ipcs
.u32
.ipcs_data
= CAST_DOWN_EXPLICIT(user32_addr_t
,ipcs
.u64
.ipcs_data
);
1218 error
= SYSCTL_OUT(req
, &ipcs
, ipcs_sz
);
1226 ipcs_shm_sysctl_out
:
1227 SYSV_SHM_SUBSYS_UNLOCK();
1231 SYSCTL_NODE(_kern
, KERN_SYSV
, sysv
, CTLFLAG_RW
| CTLFLAG_LOCKED
| CTLFLAG_ANYBODY
, 0, "SYSV");
1233 SYSCTL_PROC(_kern_sysv
, OID_AUTO
, shmmax
, CTLTYPE_QUAD
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
1234 &shminfo
.shmmax
, 0, &sysctl_shminfo
,"Q","shmmax");
1236 SYSCTL_PROC(_kern_sysv
, OID_AUTO
, shmmin
, CTLTYPE_QUAD
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
1237 &shminfo
.shmmin
, 0, &sysctl_shminfo
,"Q","shmmin");
1239 SYSCTL_PROC(_kern_sysv
, OID_AUTO
, shmmni
, CTLTYPE_QUAD
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
1240 &shminfo
.shmmni
, 0, &sysctl_shminfo
,"Q","shmmni");
1242 SYSCTL_PROC(_kern_sysv
, OID_AUTO
, shmseg
, CTLTYPE_QUAD
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
1243 &shminfo
.shmseg
, 0, &sysctl_shminfo
,"Q","shmseg");
1245 SYSCTL_PROC(_kern_sysv
, OID_AUTO
, shmall
, CTLTYPE_QUAD
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
1246 &shminfo
.shmall
, 0, &sysctl_shminfo
,"Q","shmall");
1248 SYSCTL_NODE(_kern_sysv
, OID_AUTO
, ipcs
, CTLFLAG_RW
| CTLFLAG_LOCKED
| CTLFLAG_ANYBODY
, 0, "SYSVIPCS");
1250 SYSCTL_PROC(_kern_sysv_ipcs
, OID_AUTO
, shm
, CTLFLAG_RW
| CTLFLAG_ANYBODY
| CTLFLAG_LOCKED
,
1251 0, 0, IPCS_shm_sysctl
,
1252 "S,IPCS_shm_command",
1253 "ipcs shm command interface");
1254 #endif /* SYSV_SHM */
1256 /* DSEP Review Done pl-20051108-v02 @2743,@2908,@2913,@3009 */