3 * Copyright (C) 1992 Krishna Balasubramanian
5 * Removed all the remaining kerneld mess
6 * Catch the -EFAULT stuff properly
7 * Use GFP_KERNEL for messages as in 1.2
8 * Fixed up the unchecked user space derefs
9 * Copyright (C) 1998 Alan Cox & Andi Kleen
11 * /proc/sysvipc/msg support (c) 1999 Dragos Acostachioaie <dragos@iname.com>
13 * mostly rewritten, threaded and wake-one semantics added
14 * MSGMAX limit removed, sysctl's added
15 * (c) 1999 Manfred Spraul <manfred@colorfullife.com>
17 * support for audit of ipc object properties and permission changes
18 * Dustin Kirkland <dustin.kirkland@us.ibm.com>
22 * Pavel Emelianov <xemul@openvz.org>
25 #include <linux/capability.h>
26 #include <linux/msg.h>
27 #include <linux/spinlock.h>
28 #include <linux/init.h>
30 #include <linux/proc_fs.h>
31 #include <linux/list.h>
32 #include <linux/security.h>
33 #include <linux/sched.h>
34 #include <linux/syscalls.h>
35 #include <linux/audit.h>
36 #include <linux/seq_file.h>
37 #include <linux/rwsem.h>
38 #include <linux/nsproxy.h>
39 #include <linux/ipc_namespace.h>
41 #include <asm/current.h>
42 #include <asm/uaccess.h>
46 * one msg_receiver structure for each sleeping receiver:
49 struct list_head r_list
;
50 struct task_struct
*r_tsk
;
56 struct msg_msg
*volatile r_msg
;
59 /* one msg_sender for each sleeping sender */
61 struct list_head list
;
62 struct task_struct
*tsk
;
66 #define SEARCH_EQUAL 2
67 #define SEARCH_NOTEQUAL 3
68 #define SEARCH_LESSEQUAL 4
69 #define SEARCH_NUMBER 5
71 #define msg_ids(ns) ((ns)->ids[IPC_MSG_IDS])
73 #define msg_unlock(msq) ipc_unlock(&(msq)->q_perm)
75 static void freeque(struct ipc_namespace
*, struct kern_ipc_perm
*);
76 static int newque(struct ipc_namespace
*, struct ipc_params
*);
78 static int sysvipc_msg_proc_show(struct seq_file
*s
, void *it
);
82 * Scale msgmni with the available lowmem size: the memory dedicated to msg
83 * queues should occupy at most 1/MSG_MEM_SCALE of lowmem.
84 * Also take into account the number of nsproxies created so far.
85 * This should be done staying within the (MSGMNI , IPCMNI/nr_ipc_ns) range.
87 void recompute_msgmni(struct ipc_namespace
*ns
)
90 unsigned long allowed
;
94 allowed
= (((i
.totalram
- i
.totalhigh
) / MSG_MEM_SCALE
) * i
.mem_unit
)
96 nb_ns
= atomic_read(&nr_ipc_ns
);
99 if (allowed
< MSGMNI
) {
100 ns
->msg_ctlmni
= MSGMNI
;
104 if (allowed
> IPCMNI
/ nb_ns
) {
105 ns
->msg_ctlmni
= IPCMNI
/ nb_ns
;
109 ns
->msg_ctlmni
= allowed
;
112 void msg_init_ns(struct ipc_namespace
*ns
)
114 ns
->msg_ctlmax
= MSGMAX
;
115 ns
->msg_ctlmnb
= MSGMNB
;
117 recompute_msgmni(ns
);
119 atomic_set(&ns
->msg_bytes
, 0);
120 atomic_set(&ns
->msg_hdrs
, 0);
121 ipc_init_ids(&ns
->ids
[IPC_MSG_IDS
]);
125 void msg_exit_ns(struct ipc_namespace
*ns
)
127 free_ipcs(ns
, &msg_ids(ns
), freeque
);
128 idr_destroy(&ns
->ids
[IPC_MSG_IDS
].ipcs_idr
);
132 void __init
msg_init(void)
134 msg_init_ns(&init_ipc_ns
);
136 printk(KERN_INFO
"msgmni has been set to %d\n",
137 init_ipc_ns
.msg_ctlmni
);
139 ipc_init_proc_interface("sysvipc/msg",
140 " key msqid perms cbytes qnum lspid lrpid uid gid cuid cgid stime rtime ctime\n",
141 IPC_MSG_IDS
, sysvipc_msg_proc_show
);
145 * msg_lock_(check_) routines are called in the paths where the rw_mutex
148 static inline struct msg_queue
*msg_lock(struct ipc_namespace
*ns
, int id
)
150 struct kern_ipc_perm
*ipcp
= ipc_lock(&msg_ids(ns
), id
);
153 return (struct msg_queue
*)ipcp
;
155 return container_of(ipcp
, struct msg_queue
, q_perm
);
158 static inline struct msg_queue
*msg_lock_check(struct ipc_namespace
*ns
,
161 struct kern_ipc_perm
*ipcp
= ipc_lock_check(&msg_ids(ns
), id
);
164 return (struct msg_queue
*)ipcp
;
166 return container_of(ipcp
, struct msg_queue
, q_perm
);
169 static inline void msg_rmid(struct ipc_namespace
*ns
, struct msg_queue
*s
)
171 ipc_rmid(&msg_ids(ns
), &s
->q_perm
);
175 * newque - Create a new msg queue
177 * @params: ptr to the structure that contains the key and msgflg
179 * Called with msg_ids.rw_mutex held (writer)
181 static int newque(struct ipc_namespace
*ns
, struct ipc_params
*params
)
183 struct msg_queue
*msq
;
185 key_t key
= params
->key
;
186 int msgflg
= params
->flg
;
188 msq
= ipc_rcu_alloc(sizeof(*msq
));
192 msq
->q_perm
.mode
= msgflg
& S_IRWXUGO
;
193 msq
->q_perm
.key
= key
;
195 msq
->q_perm
.security
= NULL
;
196 retval
= security_msg_queue_alloc(msq
);
203 * ipc_addid() locks msq
205 id
= ipc_addid(&msg_ids(ns
), &msq
->q_perm
, ns
->msg_ctlmni
);
207 security_msg_queue_free(msq
);
212 msq
->q_stime
= msq
->q_rtime
= 0;
213 msq
->q_ctime
= get_seconds();
214 msq
->q_cbytes
= msq
->q_qnum
= 0;
215 msq
->q_qbytes
= ns
->msg_ctlmnb
;
216 msq
->q_lspid
= msq
->q_lrpid
= 0;
217 INIT_LIST_HEAD(&msq
->q_messages
);
218 INIT_LIST_HEAD(&msq
->q_receivers
);
219 INIT_LIST_HEAD(&msq
->q_senders
);
223 return msq
->q_perm
.id
;
226 static inline void ss_add(struct msg_queue
*msq
, struct msg_sender
*mss
)
229 current
->state
= TASK_INTERRUPTIBLE
;
230 list_add_tail(&mss
->list
, &msq
->q_senders
);
233 static inline void ss_del(struct msg_sender
*mss
)
235 if (mss
->list
.next
!= NULL
)
236 list_del(&mss
->list
);
239 static void ss_wakeup(struct list_head
*h
, int kill
)
241 struct msg_sender
*mss
, *t
;
243 list_for_each_entry_safe(mss
, t
, h
, list
) {
245 mss
->list
.next
= NULL
;
246 wake_up_process(mss
->tsk
);
250 static void expunge_all(struct msg_queue
*msq
, int res
)
252 struct msg_receiver
*msr
, *t
;
254 list_for_each_entry_safe(msr
, t
, &msq
->q_receivers
, r_list
) {
256 wake_up_process(msr
->r_tsk
);
258 msr
->r_msg
= ERR_PTR(res
);
263 * freeque() wakes up waiters on the sender and receiver waiting queue,
264 * removes the message queue from message queue ID IDR, and cleans up all the
265 * messages associated with this queue.
267 * msg_ids.rw_mutex (writer) and the spinlock for this message queue are held
268 * before freeque() is called. msg_ids.rw_mutex remains locked on exit.
270 static void freeque(struct ipc_namespace
*ns
, struct kern_ipc_perm
*ipcp
)
272 struct msg_msg
*msg
, *t
;
273 struct msg_queue
*msq
= container_of(ipcp
, struct msg_queue
, q_perm
);
275 expunge_all(msq
, -EIDRM
);
276 ss_wakeup(&msq
->q_senders
, 1);
280 list_for_each_entry_safe(msg
, t
, &msq
->q_messages
, m_list
) {
281 atomic_dec(&ns
->msg_hdrs
);
284 atomic_sub(msq
->q_cbytes
, &ns
->msg_bytes
);
285 security_msg_queue_free(msq
);
290 * Called with msg_ids.rw_mutex and ipcp locked.
292 static inline int msg_security(struct kern_ipc_perm
*ipcp
, int msgflg
)
294 struct msg_queue
*msq
= container_of(ipcp
, struct msg_queue
, q_perm
);
296 return security_msg_queue_associate(msq
, msgflg
);
299 SYSCALL_DEFINE2(msgget
, key_t
, key
, int, msgflg
)
301 struct ipc_namespace
*ns
;
302 struct ipc_ops msg_ops
;
303 struct ipc_params msg_params
;
305 ns
= current
->nsproxy
->ipc_ns
;
307 msg_ops
.getnew
= newque
;
308 msg_ops
.associate
= msg_security
;
309 msg_ops
.more_checks
= NULL
;
311 msg_params
.key
= key
;
312 msg_params
.flg
= msgflg
;
314 return ipcget(ns
, &msg_ids(ns
), &msg_ops
, &msg_params
);
317 static inline unsigned long
318 copy_msqid_to_user(void __user
*buf
, struct msqid64_ds
*in
, int version
)
322 return copy_to_user(buf
, in
, sizeof(*in
));
327 memset(&out
, 0, sizeof(out
));
329 ipc64_perm_to_ipc_perm(&in
->msg_perm
, &out
.msg_perm
);
331 out
.msg_stime
= in
->msg_stime
;
332 out
.msg_rtime
= in
->msg_rtime
;
333 out
.msg_ctime
= in
->msg_ctime
;
335 if (in
->msg_cbytes
> USHRT_MAX
)
336 out
.msg_cbytes
= USHRT_MAX
;
338 out
.msg_cbytes
= in
->msg_cbytes
;
339 out
.msg_lcbytes
= in
->msg_cbytes
;
341 if (in
->msg_qnum
> USHRT_MAX
)
342 out
.msg_qnum
= USHRT_MAX
;
344 out
.msg_qnum
= in
->msg_qnum
;
346 if (in
->msg_qbytes
> USHRT_MAX
)
347 out
.msg_qbytes
= USHRT_MAX
;
349 out
.msg_qbytes
= in
->msg_qbytes
;
350 out
.msg_lqbytes
= in
->msg_qbytes
;
352 out
.msg_lspid
= in
->msg_lspid
;
353 out
.msg_lrpid
= in
->msg_lrpid
;
355 return copy_to_user(buf
, &out
, sizeof(out
));
362 static inline unsigned long
363 copy_msqid_from_user(struct msqid64_ds
*out
, void __user
*buf
, int version
)
367 if (copy_from_user(out
, buf
, sizeof(*out
)))
372 struct msqid_ds tbuf_old
;
374 if (copy_from_user(&tbuf_old
, buf
, sizeof(tbuf_old
)))
377 out
->msg_perm
.uid
= tbuf_old
.msg_perm
.uid
;
378 out
->msg_perm
.gid
= tbuf_old
.msg_perm
.gid
;
379 out
->msg_perm
.mode
= tbuf_old
.msg_perm
.mode
;
381 if (tbuf_old
.msg_qbytes
== 0)
382 out
->msg_qbytes
= tbuf_old
.msg_lqbytes
;
384 out
->msg_qbytes
= tbuf_old
.msg_qbytes
;
394 * This function handles some msgctl commands which require the rw_mutex
395 * to be held in write mode.
396 * NOTE: no locks must be held, the rw_mutex is taken inside this function.
398 static int msgctl_down(struct ipc_namespace
*ns
, int msqid
, int cmd
,
399 struct msqid_ds __user
*buf
, int version
)
401 struct kern_ipc_perm
*ipcp
;
402 struct msqid64_ds
uninitialized_var(msqid64
);
403 struct msg_queue
*msq
;
406 if (cmd
== IPC_SET
) {
407 if (copy_msqid_from_user(&msqid64
, buf
, version
))
411 ipcp
= ipcctl_pre_down(ns
, &msg_ids(ns
), msqid
, cmd
,
412 &msqid64
.msg_perm
, msqid64
.msg_qbytes
);
414 return PTR_ERR(ipcp
);
416 msq
= container_of(ipcp
, struct msg_queue
, q_perm
);
418 err
= security_msg_queue_msgctl(msq
, cmd
);
427 if (msqid64
.msg_qbytes
> ns
->msg_ctlmnb
&&
428 !capable(CAP_SYS_RESOURCE
)) {
433 err
= ipc_update_perm(&msqid64
.msg_perm
, ipcp
);
437 msq
->q_qbytes
= msqid64
.msg_qbytes
;
439 msq
->q_ctime
= get_seconds();
440 /* sleeping receivers might be excluded by
441 * stricter permissions.
443 expunge_all(msq
, -EAGAIN
);
444 /* sleeping senders might be able to send
445 * due to a larger queue size.
447 ss_wakeup(&msq
->q_senders
, 0);
455 up_write(&msg_ids(ns
).rw_mutex
);
459 SYSCALL_DEFINE3(msgctl
, int, msqid
, int, cmd
, struct msqid_ds __user
*, buf
)
461 struct msg_queue
*msq
;
463 struct ipc_namespace
*ns
;
465 if (msqid
< 0 || cmd
< 0)
468 version
= ipc_parse_version(&cmd
);
469 ns
= current
->nsproxy
->ipc_ns
;
475 struct msginfo msginfo
;
481 * We must not return kernel stack data.
482 * due to padding, it's not enough
483 * to set all member fields.
485 err
= security_msg_queue_msgctl(NULL
, cmd
);
489 memset(&msginfo
, 0, sizeof(msginfo
));
490 msginfo
.msgmni
= ns
->msg_ctlmni
;
491 msginfo
.msgmax
= ns
->msg_ctlmax
;
492 msginfo
.msgmnb
= ns
->msg_ctlmnb
;
493 msginfo
.msgssz
= MSGSSZ
;
494 msginfo
.msgseg
= MSGSEG
;
495 down_read(&msg_ids(ns
).rw_mutex
);
496 if (cmd
== MSG_INFO
) {
497 msginfo
.msgpool
= msg_ids(ns
).in_use
;
498 msginfo
.msgmap
= atomic_read(&ns
->msg_hdrs
);
499 msginfo
.msgtql
= atomic_read(&ns
->msg_bytes
);
501 msginfo
.msgmap
= MSGMAP
;
502 msginfo
.msgpool
= MSGPOOL
;
503 msginfo
.msgtql
= MSGTQL
;
505 max_id
= ipc_get_maxid(&msg_ids(ns
));
506 up_read(&msg_ids(ns
).rw_mutex
);
507 if (copy_to_user(buf
, &msginfo
, sizeof(struct msginfo
)))
509 return (max_id
< 0) ? 0 : max_id
;
511 case MSG_STAT
: /* msqid is an index rather than a msg queue id */
514 struct msqid64_ds tbuf
;
520 if (cmd
== MSG_STAT
) {
521 msq
= msg_lock(ns
, msqid
);
524 success_return
= msq
->q_perm
.id
;
526 msq
= msg_lock_check(ns
, msqid
);
532 if (ipcperms(ns
, &msq
->q_perm
, S_IRUGO
))
535 err
= security_msg_queue_msgctl(msq
, cmd
);
539 memset(&tbuf
, 0, sizeof(tbuf
));
541 kernel_to_ipc64_perm(&msq
->q_perm
, &tbuf
.msg_perm
);
542 tbuf
.msg_stime
= msq
->q_stime
;
543 tbuf
.msg_rtime
= msq
->q_rtime
;
544 tbuf
.msg_ctime
= msq
->q_ctime
;
545 tbuf
.msg_cbytes
= msq
->q_cbytes
;
546 tbuf
.msg_qnum
= msq
->q_qnum
;
547 tbuf
.msg_qbytes
= msq
->q_qbytes
;
548 tbuf
.msg_lspid
= msq
->q_lspid
;
549 tbuf
.msg_lrpid
= msq
->q_lrpid
;
551 if (copy_msqid_to_user(buf
, &tbuf
, version
))
553 return success_return
;
557 err
= msgctl_down(ns
, msqid
, cmd
, buf
, version
);
568 static int testmsg(struct msg_msg
*msg
, long type
, int mode
)
575 case SEARCH_LESSEQUAL
:
576 if (msg
->m_type
<=type
)
580 if (msg
->m_type
== type
)
583 case SEARCH_NOTEQUAL
:
584 if (msg
->m_type
!= type
)
591 static inline int pipelined_send(struct msg_queue
*msq
, struct msg_msg
*msg
)
593 struct msg_receiver
*msr
, *t
;
595 list_for_each_entry_safe(msr
, t
, &msq
->q_receivers
, r_list
) {
596 if (testmsg(msg
, msr
->r_msgtype
, msr
->r_mode
) &&
597 !security_msg_queue_msgrcv(msq
, msg
, msr
->r_tsk
,
598 msr
->r_msgtype
, msr
->r_mode
)) {
600 list_del(&msr
->r_list
);
601 if (msr
->r_maxsize
< msg
->m_ts
) {
603 wake_up_process(msr
->r_tsk
);
605 msr
->r_msg
= ERR_PTR(-E2BIG
);
608 msq
->q_lrpid
= task_pid_vnr(msr
->r_tsk
);
609 msq
->q_rtime
= get_seconds();
610 wake_up_process(msr
->r_tsk
);
621 long do_msgsnd(int msqid
, long mtype
, void __user
*mtext
,
622 size_t msgsz
, int msgflg
)
624 struct msg_queue
*msq
;
627 struct ipc_namespace
*ns
;
629 ns
= current
->nsproxy
->ipc_ns
;
631 if (msgsz
> ns
->msg_ctlmax
|| (long) msgsz
< 0 || msqid
< 0)
636 msg
= load_msg(mtext
, msgsz
);
643 msq
= msg_lock_check(ns
, msqid
);
653 if (ipcperms(ns
, &msq
->q_perm
, S_IWUGO
))
654 goto out_unlock_free
;
656 err
= security_msg_queue_msgsnd(msq
, msg
, msgflg
);
658 goto out_unlock_free
;
660 if (msgsz
+ msq
->q_cbytes
<= msq
->q_qbytes
&&
661 1 + msq
->q_qnum
<= msq
->q_qbytes
) {
665 /* queue full, wait: */
666 if (msgflg
& IPC_NOWAIT
) {
668 goto out_unlock_free
;
672 if (!ipc_rcu_getref(msq
)) {
674 goto out_unlock_free
;
680 ipc_lock_by_ptr(&msq
->q_perm
);
682 if (msq
->q_perm
.deleted
) {
684 goto out_unlock_free
;
688 if (signal_pending(current
)) {
689 err
= -ERESTARTNOHAND
;
690 goto out_unlock_free
;
694 msq
->q_lspid
= task_tgid_vnr(current
);
695 msq
->q_stime
= get_seconds();
697 if (!pipelined_send(msq
, msg
)) {
698 /* no one is waiting for this message, enqueue it */
699 list_add_tail(&msg
->m_list
, &msq
->q_messages
);
700 msq
->q_cbytes
+= msgsz
;
702 atomic_add(msgsz
, &ns
->msg_bytes
);
703 atomic_inc(&ns
->msg_hdrs
);
717 SYSCALL_DEFINE4(msgsnd
, int, msqid
, struct msgbuf __user
*, msgp
, size_t, msgsz
,
722 if (get_user(mtype
, &msgp
->mtype
))
724 return do_msgsnd(msqid
, mtype
, msgp
->mtext
, msgsz
, msgflg
);
727 static inline int convert_mode(long *msgtyp
, int msgflg
)
729 if (msgflg
& MSG_COPY
)
730 return SEARCH_NUMBER
;
732 * find message of correct type.
733 * msgtyp = 0 => get first.
734 * msgtyp > 0 => get first message of matching type.
735 * msgtyp < 0 => get message with least type must be < abs(msgtype).
741 return SEARCH_LESSEQUAL
;
743 if (msgflg
& MSG_EXCEPT
)
744 return SEARCH_NOTEQUAL
;
748 static long do_msg_fill(void __user
*dest
, struct msg_msg
*msg
, size_t bufsz
)
750 struct msgbuf __user
*msgp
= dest
;
753 if (put_user(msg
->m_type
, &msgp
->mtype
))
756 msgsz
= (bufsz
> msg
->m_ts
) ? msg
->m_ts
: bufsz
;
757 if (store_msg(msgp
->mtext
, msg
, msgsz
))
762 #ifdef CONFIG_CHECKPOINT_RESTORE
764 * This function creates new kernel message structure, large enough to store
765 * bufsz message bytes.
767 static inline struct msg_msg
*prepare_copy(void __user
*buf
, size_t bufsz
)
769 struct msg_msg
*copy
;
772 * Create dummy message to copy real message to.
774 copy
= load_msg(buf
, bufsz
);
780 static inline void free_copy(struct msg_msg
*copy
)
786 static inline struct msg_msg
*prepare_copy(void __user
*buf
, size_t bufsz
)
788 return ERR_PTR(-ENOSYS
);
791 static inline void free_copy(struct msg_msg
*copy
)
796 static struct msg_msg
*find_msg(struct msg_queue
*msq
, long *msgtyp
, int mode
)
801 list_for_each_entry(msg
, &msq
->q_messages
, m_list
) {
802 if (testmsg(msg
, *msgtyp
, mode
) &&
803 !security_msg_queue_msgrcv(msq
, msg
, current
,
805 if (mode
== SEARCH_LESSEQUAL
&& msg
->m_type
!= 1) {
806 *msgtyp
= msg
->m_type
- 1;
807 } else if (mode
== SEARCH_NUMBER
) {
808 if (*msgtyp
== count
)
816 return ERR_PTR(-EAGAIN
);
820 long do_msgrcv(int msqid
, void __user
*buf
, size_t bufsz
, long msgtyp
,
822 long (*msg_handler
)(void __user
*, struct msg_msg
*, size_t))
824 struct msg_queue
*msq
;
827 struct ipc_namespace
*ns
;
828 struct msg_msg
*copy
= NULL
;
830 ns
= current
->nsproxy
->ipc_ns
;
832 if (msqid
< 0 || (long) bufsz
< 0)
834 if (msgflg
& MSG_COPY
) {
835 copy
= prepare_copy(buf
, min_t(size_t, bufsz
, ns
->msg_ctlmax
));
837 return PTR_ERR(copy
);
839 mode
= convert_mode(&msgtyp
, msgflg
);
841 msq
= msg_lock_check(ns
, msqid
);
848 struct msg_receiver msr_d
;
850 msg
= ERR_PTR(-EACCES
);
851 if (ipcperms(ns
, &msq
->q_perm
, S_IRUGO
))
854 msg
= find_msg(msq
, &msgtyp
, mode
);
858 * Found a suitable message.
859 * Unlink it from the queue.
861 if ((bufsz
< msg
->m_ts
) && !(msgflg
& MSG_NOERROR
)) {
862 msg
= ERR_PTR(-E2BIG
);
866 * If we are copying, then do not unlink message and do
867 * not update queue parameters.
869 if (msgflg
& MSG_COPY
) {
870 msg
= copy_msg(msg
, copy
);
873 list_del(&msg
->m_list
);
875 msq
->q_rtime
= get_seconds();
876 msq
->q_lrpid
= task_tgid_vnr(current
);
877 msq
->q_cbytes
-= msg
->m_ts
;
878 atomic_sub(msg
->m_ts
, &ns
->msg_bytes
);
879 atomic_dec(&ns
->msg_hdrs
);
880 ss_wakeup(&msq
->q_senders
, 0);
884 /* No message waiting. Wait for a message */
885 if (msgflg
& IPC_NOWAIT
) {
886 msg
= ERR_PTR(-ENOMSG
);
889 list_add_tail(&msr_d
.r_list
, &msq
->q_receivers
);
890 msr_d
.r_tsk
= current
;
891 msr_d
.r_msgtype
= msgtyp
;
893 if (msgflg
& MSG_NOERROR
)
894 msr_d
.r_maxsize
= INT_MAX
;
896 msr_d
.r_maxsize
= bufsz
;
897 msr_d
.r_msg
= ERR_PTR(-EAGAIN
);
898 current
->state
= TASK_INTERRUPTIBLE
;
903 /* Lockless receive, part 1:
904 * Disable preemption. We don't hold a reference to the queue
905 * and getting a reference would defeat the idea of a lockless
906 * operation, thus the code relies on rcu to guarantee the
908 * Prior to destruction, expunge_all(-EIRDM) changes r_msg.
909 * Thus if r_msg is -EAGAIN, then the queue not yet destroyed.
910 * rcu_read_lock() prevents preemption between reading r_msg
911 * and the spin_lock() inside ipc_lock_by_ptr().
915 /* Lockless receive, part 2:
916 * Wait until pipelined_send or expunge_all are outside of
917 * wake_up_process(). There is a race with exit(), see
918 * ipc/mqueue.c for the details.
920 msg
= (struct msg_msg
*)msr_d
.r_msg
;
921 while (msg
== NULL
) {
923 msg
= (struct msg_msg
*)msr_d
.r_msg
;
926 /* Lockless receive, part 3:
927 * If there is a message or an error then accept it without
930 if (msg
!= ERR_PTR(-EAGAIN
)) {
935 /* Lockless receive, part 3:
936 * Acquire the queue spinlock.
938 ipc_lock_by_ptr(&msq
->q_perm
);
941 /* Lockless receive, part 4:
942 * Repeat test after acquiring the spinlock.
944 msg
= (struct msg_msg
*)msr_d
.r_msg
;
945 if (msg
!= ERR_PTR(-EAGAIN
))
948 list_del(&msr_d
.r_list
);
949 if (signal_pending(current
)) {
950 msg
= ERR_PTR(-ERESTARTNOHAND
);
961 bufsz
= msg_handler(buf
, msg
, bufsz
);
967 SYSCALL_DEFINE5(msgrcv
, int, msqid
, struct msgbuf __user
*, msgp
, size_t, msgsz
,
968 long, msgtyp
, int, msgflg
)
970 return do_msgrcv(msqid
, msgp
, msgsz
, msgtyp
, msgflg
, do_msg_fill
);
973 #ifdef CONFIG_PROC_FS
974 static int sysvipc_msg_proc_show(struct seq_file
*s
, void *it
)
976 struct user_namespace
*user_ns
= seq_user_ns(s
);
977 struct msg_queue
*msq
= it
;
980 "%10d %10d %4o %10lu %10lu %5u %5u %5u %5u %5u %5u %10lu %10lu %10lu\n",
988 from_kuid_munged(user_ns
, msq
->q_perm
.uid
),
989 from_kgid_munged(user_ns
, msq
->q_perm
.gid
),
990 from_kuid_munged(user_ns
, msq
->q_perm
.cuid
),
991 from_kgid_munged(user_ns
, msq
->q_perm
.cgid
),