msg.c 21.6 KB
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/*
 * linux/ipc/msg.c
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 * Copyright (C) 1992 Krishna Balasubramanian
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 *
 * Removed all the remaining kerneld mess
 * Catch the -EFAULT stuff properly
 * Use GFP_KERNEL for messages as in 1.2
 * Fixed up the unchecked user space derefs
 * Copyright (C) 1998 Alan Cox & Andi Kleen
 *
 * /proc/sysvipc/msg support (c) 1999 Dragos Acostachioaie <dragos@iname.com>
 *
 * mostly rewritten, threaded and wake-one semantics added
 * MSGMAX limit removed, sysctl's added
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 * (c) 1999 Manfred Spraul <manfred@colorfullife.com>
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 *
 * support for audit of ipc object properties and permission changes
 * Dustin Kirkland <dustin.kirkland@us.ibm.com>
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 *
 * namespaces support
 * OpenVZ, SWsoft Inc.
 * Pavel Emelianov <xemul@openvz.org>
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 */

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#include <linux/capability.h>
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#include <linux/slab.h>
#include <linux/msg.h>
#include <linux/spinlock.h>
#include <linux/init.h>
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#include <linux/mm.h>
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#include <linux/proc_fs.h>
#include <linux/list.h>
#include <linux/security.h>
#include <linux/sched.h>
#include <linux/syscalls.h>
#include <linux/audit.h>
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#include <linux/seq_file.h>
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#include <linux/rwsem.h>
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#include <linux/nsproxy.h>
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#include <linux/ipc_namespace.h>
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#include <asm/current.h>
#include <asm/uaccess.h>
#include "util.h"

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/*
 * one msg_receiver structure for each sleeping receiver:
 */
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struct msg_receiver {
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	struct list_head	r_list;
	struct task_struct	*r_tsk;
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	int			r_mode;
	long			r_msgtype;
	long			r_maxsize;
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	struct msg_msg		*volatile r_msg;
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};

/* one msg_sender for each sleeping sender */
struct msg_sender {
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	struct list_head	list;
	struct task_struct	*tsk;
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};

#define SEARCH_ANY		1
#define SEARCH_EQUAL		2
#define SEARCH_NOTEQUAL		3
#define SEARCH_LESSEQUAL	4

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#define msg_ids(ns)	((ns)->ids[IPC_MSG_IDS])
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#define msg_unlock(msq)		ipc_unlock(&(msq)->q_perm)

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static void freeque(struct ipc_namespace *, struct kern_ipc_perm *);
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static int newque(struct ipc_namespace *, struct ipc_params *);
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#ifdef CONFIG_PROC_FS
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static int sysvipc_msg_proc_show(struct seq_file *s, void *it);
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#endif

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/*
 * Scale msgmni with the available lowmem size: the memory dedicated to msg
 * queues should occupy at most 1/MSG_MEM_SCALE of lowmem.
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 * Also take into account the number of nsproxies created so far.
 * This should be done staying within the (MSGMNI , IPCMNI/nr_ipc_ns) range.
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 */
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void recompute_msgmni(struct ipc_namespace *ns)
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{
	struct sysinfo i;
	unsigned long allowed;
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	int nb_ns;
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	si_meminfo(&i);
	allowed = (((i.totalram - i.totalhigh) / MSG_MEM_SCALE) * i.mem_unit)
		/ MSGMNB;
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	nb_ns = atomic_read(&nr_ipc_ns);
	allowed /= nb_ns;
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	if (allowed < MSGMNI) {
		ns->msg_ctlmni = MSGMNI;
		goto out_callback;
	}

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	if (allowed > IPCMNI / nb_ns) {
		ns->msg_ctlmni = IPCMNI / nb_ns;
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		goto out_callback;
	}

	ns->msg_ctlmni = allowed;

out_callback:

	printk(KERN_INFO "msgmni has been set to %d for ipc namespace %p\n",
		ns->msg_ctlmni, ns);
}

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void msg_init_ns(struct ipc_namespace *ns)
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{
	ns->msg_ctlmax = MSGMAX;
	ns->msg_ctlmnb = MSGMNB;
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	recompute_msgmni(ns);

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	atomic_set(&ns->msg_bytes, 0);
	atomic_set(&ns->msg_hdrs, 0);
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	ipc_init_ids(&ns->ids[IPC_MSG_IDS]);
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}

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#ifdef CONFIG_IPC_NS
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void msg_exit_ns(struct ipc_namespace *ns)
{
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	free_ipcs(ns, &msg_ids(ns), freeque);
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}
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#endif
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void __init msg_init(void)
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{
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	msg_init_ns(&init_ipc_ns);
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	ipc_init_proc_interface("sysvipc/msg",
				"       key      msqid perms      cbytes       qnum lspid lrpid   uid   gid  cuid  cgid      stime      rtime      ctime\n",
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				IPC_MSG_IDS, sysvipc_msg_proc_show);
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}

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/*
 * This routine is called in the paths where the rw_mutex is held to protect
 * access to the idr tree.
 */
static inline struct msg_queue *msg_lock_check_down(struct ipc_namespace *ns,
						int id)
{
	struct kern_ipc_perm *ipcp = ipc_lock_check_down(&msg_ids(ns), id);

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	if (IS_ERR(ipcp))
		return (struct msg_queue *)ipcp;

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	return container_of(ipcp, struct msg_queue, q_perm);
}

/*
 * msg_lock_(check_) routines are called in the paths where the rw_mutex
 * is not held.
 */
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static inline struct msg_queue *msg_lock(struct ipc_namespace *ns, int id)
{
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	struct kern_ipc_perm *ipcp = ipc_lock(&msg_ids(ns), id);

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	if (IS_ERR(ipcp))
		return (struct msg_queue *)ipcp;

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	return container_of(ipcp, struct msg_queue, q_perm);
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}

static inline struct msg_queue *msg_lock_check(struct ipc_namespace *ns,
						int id)
{
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	struct kern_ipc_perm *ipcp = ipc_lock_check(&msg_ids(ns), id);

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	if (IS_ERR(ipcp))
		return (struct msg_queue *)ipcp;

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	return container_of(ipcp, struct msg_queue, q_perm);
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}

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static inline void msg_rmid(struct ipc_namespace *ns, struct msg_queue *s)
{
	ipc_rmid(&msg_ids(ns), &s->q_perm);
}

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/**
 * newque - Create a new msg queue
 * @ns: namespace
 * @params: ptr to the structure that contains the key and msgflg
 *
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 * Called with msg_ids.rw_mutex held (writer)
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 */
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static int newque(struct ipc_namespace *ns, struct ipc_params *params)
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{
	struct msg_queue *msq;
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	int id, retval;
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	key_t key = params->key;
	int msgflg = params->flg;
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	msq = ipc_rcu_alloc(sizeof(*msq));
	if (!msq)
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		return -ENOMEM;

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	msq->q_perm.mode = msgflg & S_IRWXUGO;
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	msq->q_perm.key = key;

	msq->q_perm.security = NULL;
	retval = security_msg_queue_alloc(msq);
	if (retval) {
		ipc_rcu_putref(msq);
		return retval;
	}

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	/*
	 * ipc_addid() locks msq
	 */
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	id = ipc_addid(&msg_ids(ns), &msq->q_perm, ns->msg_ctlmni);
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	if (id < 0) {
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		security_msg_queue_free(msq);
		ipc_rcu_putref(msq);
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		return id;
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	}

	msq->q_stime = msq->q_rtime = 0;
	msq->q_ctime = get_seconds();
	msq->q_cbytes = msq->q_qnum = 0;
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	msq->q_qbytes = ns->msg_ctlmnb;
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	msq->q_lspid = msq->q_lrpid = 0;
	INIT_LIST_HEAD(&msq->q_messages);
	INIT_LIST_HEAD(&msq->q_receivers);
	INIT_LIST_HEAD(&msq->q_senders);
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	msg_unlock(msq);

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	return msq->q_perm.id;
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}

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static inline void ss_add(struct msg_queue *msq, struct msg_sender *mss)
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{
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	mss->tsk = current;
	current->state = TASK_INTERRUPTIBLE;
	list_add_tail(&mss->list, &msq->q_senders);
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}

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static inline void ss_del(struct msg_sender *mss)
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{
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	if (mss->list.next != NULL)
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		list_del(&mss->list);
}

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static void ss_wakeup(struct list_head *h, int kill)
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{
	struct list_head *tmp;

	tmp = h->next;
	while (tmp != h) {
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		struct msg_sender *mss;

		mss = list_entry(tmp, struct msg_sender, list);
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		tmp = tmp->next;
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		if (kill)
			mss->list.next = NULL;
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		wake_up_process(mss->tsk);
	}
}

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static void expunge_all(struct msg_queue *msq, int res)
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{
	struct list_head *tmp;

	tmp = msq->q_receivers.next;
	while (tmp != &msq->q_receivers) {
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		struct msg_receiver *msr;

		msr = list_entry(tmp, struct msg_receiver, r_list);
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		tmp = tmp->next;
		msr->r_msg = NULL;
		wake_up_process(msr->r_tsk);
		smp_mb();
		msr->r_msg = ERR_PTR(res);
	}
}
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/*
 * freeque() wakes up waiters on the sender and receiver waiting queue,
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 * removes the message queue from message queue ID IDR, and cleans up all the
 * messages associated with this queue.
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 *
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 * msg_ids.rw_mutex (writer) and the spinlock for this message queue are held
 * before freeque() is called. msg_ids.rw_mutex remains locked on exit.
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 */
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static void freeque(struct ipc_namespace *ns, struct kern_ipc_perm *ipcp)
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{
	struct list_head *tmp;
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	struct msg_queue *msq = container_of(ipcp, struct msg_queue, q_perm);
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	expunge_all(msq, -EIDRM);
	ss_wakeup(&msq->q_senders, 1);
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	msg_rmid(ns, msq);
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	msg_unlock(msq);
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	tmp = msq->q_messages.next;
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	while (tmp != &msq->q_messages) {
		struct msg_msg *msg = list_entry(tmp, struct msg_msg, m_list);

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		tmp = tmp->next;
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		atomic_dec(&ns->msg_hdrs);
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		free_msg(msg);
	}
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	atomic_sub(msq->q_cbytes, &ns->msg_bytes);
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	security_msg_queue_free(msq);
	ipc_rcu_putref(msq);
}

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/*
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 * Called with msg_ids.rw_mutex and ipcp locked.
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 */
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static inline int msg_security(struct kern_ipc_perm *ipcp, int msgflg)
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{
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	struct msg_queue *msq = container_of(ipcp, struct msg_queue, q_perm);

	return security_msg_queue_associate(msq, msgflg);
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}

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asmlinkage long sys_msgget(key_t key, int msgflg)
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{
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	struct ipc_namespace *ns;
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	struct ipc_ops msg_ops;
	struct ipc_params msg_params;
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	ns = current->nsproxy->ipc_ns;
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	msg_ops.getnew = newque;
	msg_ops.associate = msg_security;
	msg_ops.more_checks = NULL;

	msg_params.key = key;
	msg_params.flg = msgflg;
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	return ipcget(ns, &msg_ids(ns), &msg_ops, &msg_params);
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}

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static inline unsigned long
copy_msqid_to_user(void __user *buf, struct msqid64_ds *in, int version)
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{
	switch(version) {
	case IPC_64:
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		return copy_to_user(buf, in, sizeof(*in));
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	case IPC_OLD:
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	{
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		struct msqid_ds out;

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		memset(&out, 0, sizeof(out));
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		ipc64_perm_to_ipc_perm(&in->msg_perm, &out.msg_perm);

		out.msg_stime		= in->msg_stime;
		out.msg_rtime		= in->msg_rtime;
		out.msg_ctime		= in->msg_ctime;

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		if (in->msg_cbytes > USHRT_MAX)
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			out.msg_cbytes	= USHRT_MAX;
		else
			out.msg_cbytes	= in->msg_cbytes;
		out.msg_lcbytes		= in->msg_cbytes;

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		if (in->msg_qnum > USHRT_MAX)
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			out.msg_qnum	= USHRT_MAX;
		else
			out.msg_qnum	= in->msg_qnum;

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		if (in->msg_qbytes > USHRT_MAX)
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			out.msg_qbytes	= USHRT_MAX;
		else
			out.msg_qbytes	= in->msg_qbytes;
		out.msg_lqbytes		= in->msg_qbytes;

		out.msg_lspid		= in->msg_lspid;
		out.msg_lrpid		= in->msg_lrpid;

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		return copy_to_user(buf, &out, sizeof(out));
	}
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	default:
		return -EINVAL;
	}
}

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static inline unsigned long
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copy_msqid_from_user(struct msqid64_ds *out, void __user *buf, int version)
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{
	switch(version) {
	case IPC_64:
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		if (copy_from_user(out, buf, sizeof(*out)))
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			return -EFAULT;
		return 0;
	case IPC_OLD:
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	{
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		struct msqid_ds tbuf_old;

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		if (copy_from_user(&tbuf_old, buf, sizeof(tbuf_old)))
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			return -EFAULT;

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		out->msg_perm.uid      	= tbuf_old.msg_perm.uid;
		out->msg_perm.gid      	= tbuf_old.msg_perm.gid;
		out->msg_perm.mode     	= tbuf_old.msg_perm.mode;
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		if (tbuf_old.msg_qbytes == 0)
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			out->msg_qbytes	= tbuf_old.msg_lqbytes;
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		else
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			out->msg_qbytes	= tbuf_old.msg_qbytes;
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		return 0;
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	}
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	default:
		return -EINVAL;
	}
}

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/*
 * This function handles some msgctl commands which require the rw_mutex
 * to be held in write mode.
 * NOTE: no locks must be held, the rw_mutex is taken inside this function.
 */
static int msgctl_down(struct ipc_namespace *ns, int msqid, int cmd,
		       struct msqid_ds __user *buf, int version)
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{
	struct kern_ipc_perm *ipcp;
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	struct msqid64_ds msqid64;
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	struct msg_queue *msq;
	int err;

	if (cmd == IPC_SET) {
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		if (copy_msqid_from_user(&msqid64, buf, version))
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			return -EFAULT;
	}

	down_write(&msg_ids(ns).rw_mutex);
	msq = msg_lock_check_down(ns, msqid);
	if (IS_ERR(msq)) {
		err = PTR_ERR(msq);
		goto out_up;
	}

	ipcp = &msq->q_perm;

	err = audit_ipc_obj(ipcp);
	if (err)
		goto out_unlock;

	if (cmd == IPC_SET) {
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		err = audit_ipc_set_perm(msqid64.msg_qbytes,
					 msqid64.msg_perm.uid,
					 msqid64.msg_perm.gid,
					 msqid64.msg_perm.mode);
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		if (err)
			goto out_unlock;
	}

	if (current->euid != ipcp->cuid &&
	    current->euid != ipcp->uid &&
	    !capable(CAP_SYS_ADMIN)) {
		/* We _could_ check for CAP_CHOWN above, but we don't */
		err = -EPERM;
		goto out_unlock;
	}

	err = security_msg_queue_msgctl(msq, cmd);
	if (err)
		goto out_unlock;

	switch (cmd) {
	case IPC_RMID:
		freeque(ns, ipcp);
		goto out_up;
	case IPC_SET:
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		if (msqid64.msg_qbytes > ns->msg_ctlmnb &&
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		    !capable(CAP_SYS_RESOURCE)) {
			err = -EPERM;
			goto out_unlock;
		}

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		msq->q_qbytes = msqid64.msg_qbytes;
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		ipc_update_perm(&msqid64.msg_perm, ipcp);
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		msq->q_ctime = get_seconds();
		/* sleeping receivers might be excluded by
		 * stricter permissions.
		 */
		expunge_all(msq, -EAGAIN);
		/* sleeping senders might be able to send
		 * due to a larger queue size.
		 */
		ss_wakeup(&msq->q_senders, 0);
		break;
	default:
		err = -EINVAL;
	}
out_unlock:
	msg_unlock(msq);
out_up:
	up_write(&msg_ids(ns).rw_mutex);
	return err;
}

asmlinkage long sys_msgctl(int msqid, int cmd, struct msqid_ds __user *buf)
{
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	struct msg_queue *msq;
	int err, version;
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	struct ipc_namespace *ns;
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	if (msqid < 0 || cmd < 0)
		return -EINVAL;

	version = ipc_parse_version(&cmd);
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	ns = current->nsproxy->ipc_ns;
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	switch (cmd) {
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	case IPC_INFO:
	case MSG_INFO:
	{
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		struct msginfo msginfo;
		int max_id;
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		if (!buf)
			return -EFAULT;
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		/*
		 * We must not return kernel stack data.
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		 * due to padding, it's not enough
		 * to set all member fields.
		 */
		err = security_msg_queue_msgctl(NULL, cmd);
		if (err)
			return err;

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		memset(&msginfo, 0, sizeof(msginfo));
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		msginfo.msgmni = ns->msg_ctlmni;
		msginfo.msgmax = ns->msg_ctlmax;
		msginfo.msgmnb = ns->msg_ctlmnb;
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		msginfo.msgssz = MSGSSZ;
		msginfo.msgseg = MSGSEG;
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		down_read(&msg_ids(ns).rw_mutex);
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		if (cmd == MSG_INFO) {
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			msginfo.msgpool = msg_ids(ns).in_use;
547 548
			msginfo.msgmap = atomic_read(&ns->msg_hdrs);
			msginfo.msgtql = atomic_read(&ns->msg_bytes);
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		} else {
			msginfo.msgmap = MSGMAP;
			msginfo.msgpool = MSGPOOL;
			msginfo.msgtql = MSGTQL;
		}
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		max_id = ipc_get_maxid(&msg_ids(ns));
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		up_read(&msg_ids(ns).rw_mutex);
556
		if (copy_to_user(buf, &msginfo, sizeof(struct msginfo)))
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			return -EFAULT;
558
		return (max_id < 0) ? 0 : max_id;
L
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	}
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	case MSG_STAT:	/* msqid is an index rather than a msg queue id */
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	case IPC_STAT:
	{
		struct msqid64_ds tbuf;
		int success_return;
565

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		if (!buf)
			return -EFAULT;

569
		if (cmd == MSG_STAT) {
570 571 572
			msq = msg_lock(ns, msqid);
			if (IS_ERR(msq))
				return PTR_ERR(msq);
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			success_return = msq->q_perm.id;
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		} else {
575 576 577
			msq = msg_lock_check(ns, msqid);
			if (IS_ERR(msq))
				return PTR_ERR(msq);
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			success_return = 0;
		}
		err = -EACCES;
581
		if (ipcperms(&msq->q_perm, S_IRUGO))
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			goto out_unlock;

		err = security_msg_queue_msgctl(msq, cmd);
		if (err)
			goto out_unlock;

588 589
		memset(&tbuf, 0, sizeof(tbuf));

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		kernel_to_ipc64_perm(&msq->q_perm, &tbuf.msg_perm);
		tbuf.msg_stime  = msq->q_stime;
		tbuf.msg_rtime  = msq->q_rtime;
		tbuf.msg_ctime  = msq->q_ctime;
		tbuf.msg_cbytes = msq->q_cbytes;
		tbuf.msg_qnum   = msq->q_qnum;
		tbuf.msg_qbytes = msq->q_qbytes;
		tbuf.msg_lspid  = msq->q_lspid;
		tbuf.msg_lrpid  = msq->q_lrpid;
		msg_unlock(msq);
		if (copy_msqid_to_user(buf, &tbuf, version))
			return -EFAULT;
		return success_return;
	}
	case IPC_SET:
	case IPC_RMID:
606 607
		err = msgctl_down(ns, msqid, cmd, buf, version);
		return err;
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	default:
		return  -EINVAL;
	}

out_unlock:
	msg_unlock(msq);
	return err;
}

617
static int testmsg(struct msg_msg *msg, long type, int mode)
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{
	switch(mode)
	{
		case SEARCH_ANY:
			return 1;
		case SEARCH_LESSEQUAL:
624
			if (msg->m_type <=type)
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				return 1;
			break;
		case SEARCH_EQUAL:
628
			if (msg->m_type == type)
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				return 1;
			break;
		case SEARCH_NOTEQUAL:
632
			if (msg->m_type != type)
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				return 1;
			break;
	}
	return 0;
}

639
static inline int pipelined_send(struct msg_queue *msq, struct msg_msg *msg)
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{
641
	struct list_head *tmp;
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	tmp = msq->q_receivers.next;
	while (tmp != &msq->q_receivers) {
645 646 647
		struct msg_receiver *msr;

		msr = list_entry(tmp, struct msg_receiver, r_list);
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		tmp = tmp->next;
649 650 651 652
		if (testmsg(msg, msr->r_msgtype, msr->r_mode) &&
		    !security_msg_queue_msgrcv(msq, msg, msr->r_tsk,
					       msr->r_msgtype, msr->r_mode)) {

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			list_del(&msr->r_list);
654
			if (msr->r_maxsize < msg->m_ts) {
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				msr->r_msg = NULL;
				wake_up_process(msr->r_tsk);
				smp_mb();
				msr->r_msg = ERR_PTR(-E2BIG);
			} else {
				msr->r_msg = NULL;
661
				msq->q_lrpid = task_pid_vnr(msr->r_tsk);
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				msq->q_rtime = get_seconds();
				wake_up_process(msr->r_tsk);
				smp_mb();
				msr->r_msg = msg;
666

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				return 1;
			}
		}
	}
	return 0;
}

674 675
long do_msgsnd(int msqid, long mtype, void __user *mtext,
		size_t msgsz, int msgflg)
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{
	struct msg_queue *msq;
	struct msg_msg *msg;
	int err;
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	struct ipc_namespace *ns;

	ns = current->nsproxy->ipc_ns;
683

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	if (msgsz > ns->msg_ctlmax || (long) msgsz < 0 || msqid < 0)
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		return -EINVAL;
	if (mtype < 1)
		return -EINVAL;

689
	msg = load_msg(mtext, msgsz);
690
	if (IS_ERR(msg))
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		return PTR_ERR(msg);

	msg->m_type = mtype;
	msg->m_ts = msgsz;

696 697 698
	msq = msg_lock_check(ns, msqid);
	if (IS_ERR(msq)) {
		err = PTR_ERR(msq);
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		goto out_free;
700
	}
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701 702 703 704

	for (;;) {
		struct msg_sender s;

705
		err = -EACCES;
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		if (ipcperms(&msq->q_perm, S_IWUGO))
			goto out_unlock_free;

		err = security_msg_queue_msgsnd(msq, msg, msgflg);
		if (err)
			goto out_unlock_free;

713
		if (msgsz + msq->q_cbytes <= msq->q_qbytes &&
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				1 + msq->q_qnum <= msq->q_qbytes) {
			break;
		}

		/* queue full, wait: */
719 720
		if (msgflg & IPC_NOWAIT) {
			err = -EAGAIN;
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			goto out_unlock_free;
		}
		ss_add(msq, &s);
		ipc_rcu_getref(msq);
		msg_unlock(msq);
		schedule();

		ipc_lock_by_ptr(&msq->q_perm);
		ipc_rcu_putref(msq);
		if (msq->q_perm.deleted) {
			err = -EIDRM;
			goto out_unlock_free;
		}
		ss_del(&s);
735

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736
		if (signal_pending(current)) {
737
			err = -ERESTARTNOHAND;
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			goto out_unlock_free;
		}
	}

742
	msq->q_lspid = task_tgid_vnr(current);
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743 744
	msq->q_stime = get_seconds();

745
	if (!pipelined_send(msq, msg)) {
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		/* noone is waiting for this message, enqueue it */
747
		list_add_tail(&msg->m_list, &msq->q_messages);
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		msq->q_cbytes += msgsz;
		msq->q_qnum++;
750 751
		atomic_add(msgsz, &ns->msg_bytes);
		atomic_inc(&ns->msg_hdrs);
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	}
753

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	err = 0;
	msg = NULL;

out_unlock_free:
	msg_unlock(msq);
out_free:
760
	if (msg != NULL)
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		free_msg(msg);
	return err;
}

765 766 767 768 769 770 771 772 773 774
asmlinkage long
sys_msgsnd(int msqid, struct msgbuf __user *msgp, size_t msgsz, int msgflg)
{
	long mtype;

	if (get_user(mtype, &msgp->mtype))
		return -EFAULT;
	return do_msgsnd(msqid, mtype, msgp->mtext, msgsz, msgflg);
}

775
static inline int convert_mode(long *msgtyp, int msgflg)
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{
777
	/*
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	 *  find message of correct type.
	 *  msgtyp = 0 => get first.
	 *  msgtyp > 0 => get first message of matching type.
781
	 *  msgtyp < 0 => get message with least type must be < abs(msgtype).
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	 */
783
	if (*msgtyp == 0)
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		return SEARCH_ANY;
785 786
	if (*msgtyp < 0) {
		*msgtyp = -*msgtyp;
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		return SEARCH_LESSEQUAL;
	}
789
	if (msgflg & MSG_EXCEPT)
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		return SEARCH_NOTEQUAL;
	return SEARCH_EQUAL;
}

794 795
long do_msgrcv(int msqid, long *pmtype, void __user *mtext,
		size_t msgsz, long msgtyp, int msgflg)
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{
	struct msg_queue *msq;
	struct msg_msg *msg;
	int mode;
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	struct ipc_namespace *ns;
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	if (msqid < 0 || (long) msgsz < 0)
		return -EINVAL;
804
	mode = convert_mode(&msgtyp, msgflg);
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	ns = current->nsproxy->ipc_ns;
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807 808 809
	msq = msg_lock_check(ns, msqid);
	if (IS_ERR(msq))
		return PTR_ERR(msq);
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	for (;;) {
		struct msg_receiver msr_d;
813
		struct list_head *tmp;
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		msg = ERR_PTR(-EACCES);
816
		if (ipcperms(&msq->q_perm, S_IRUGO))
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			goto out_unlock;

		msg = ERR_PTR(-EAGAIN);
		tmp = msq->q_messages.next;
		while (tmp != &msq->q_messages) {
			struct msg_msg *walk_msg;
823 824 825 826 827 828

			walk_msg = list_entry(tmp, struct msg_msg, m_list);
			if (testmsg(walk_msg, msgtyp, mode) &&
			    !security_msg_queue_msgrcv(msq, walk_msg, current,
						       msgtyp, mode)) {

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				msg = walk_msg;
830 831 832 833
				if (mode == SEARCH_LESSEQUAL &&
						walk_msg->m_type != 1) {
					msg = walk_msg;
					msgtyp = walk_msg->m_type - 1;
L
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				} else {
835
					msg = walk_msg;
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					break;
				}
			}
			tmp = tmp->next;
		}
841 842 843 844 845
		if (!IS_ERR(msg)) {
			/*
			 * Found a suitable message.
			 * Unlink it from the queue.
			 */
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			if ((msgsz < msg->m_ts) && !(msgflg & MSG_NOERROR)) {
				msg = ERR_PTR(-E2BIG);
				goto out_unlock;
			}
			list_del(&msg->m_list);
			msq->q_qnum--;
			msq->q_rtime = get_seconds();
853
			msq->q_lrpid = task_tgid_vnr(current);
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			msq->q_cbytes -= msg->m_ts;
855 856
			atomic_sub(msg->m_ts, &ns->msg_bytes);
			atomic_dec(&ns->msg_hdrs);
857
			ss_wakeup(&msq->q_senders, 0);
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858 859 860 861 862 863 864 865
			msg_unlock(msq);
			break;
		}
		/* No message waiting. Wait for a message */
		if (msgflg & IPC_NOWAIT) {
			msg = ERR_PTR(-ENOMSG);
			goto out_unlock;
		}
866
		list_add_tail(&msr_d.r_list, &msq->q_receivers);
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867 868 869
		msr_d.r_tsk = current;
		msr_d.r_msgtype = msgtyp;
		msr_d.r_mode = mode;
870
		if (msgflg & MSG_NOERROR)
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871
			msr_d.r_maxsize = INT_MAX;
872
		else
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873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896
			msr_d.r_maxsize = msgsz;
		msr_d.r_msg = ERR_PTR(-EAGAIN);
		current->state = TASK_INTERRUPTIBLE;
		msg_unlock(msq);

		schedule();

		/* Lockless receive, part 1:
		 * Disable preemption.  We don't hold a reference to the queue
		 * and getting a reference would defeat the idea of a lockless
		 * operation, thus the code relies on rcu to guarantee the
		 * existance of msq:
		 * Prior to destruction, expunge_all(-EIRDM) changes r_msg.
		 * Thus if r_msg is -EAGAIN, then the queue not yet destroyed.
		 * rcu_read_lock() prevents preemption between reading r_msg
		 * and the spin_lock() inside ipc_lock_by_ptr().
		 */
		rcu_read_lock();

		/* Lockless receive, part 2:
		 * Wait until pipelined_send or expunge_all are outside of
		 * wake_up_process(). There is a race with exit(), see
		 * ipc/mqueue.c for the details.
		 */
897
		msg = (struct msg_msg*)msr_d.r_msg;
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		while (msg == NULL) {
			cpu_relax();
900
			msg = (struct msg_msg *)msr_d.r_msg;
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901 902 903 904 905 906
		}

		/* Lockless receive, part 3:
		 * If there is a message or an error then accept it without
		 * locking.
		 */
907
		if (msg != ERR_PTR(-EAGAIN)) {
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			rcu_read_unlock();
			break;
		}

		/* Lockless receive, part 3:
		 * Acquire the queue spinlock.
		 */
		ipc_lock_by_ptr(&msq->q_perm);
		rcu_read_unlock();

		/* Lockless receive, part 4:
		 * Repeat test after acquiring the spinlock.
		 */
		msg = (struct msg_msg*)msr_d.r_msg;
922
		if (msg != ERR_PTR(-EAGAIN))
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			goto out_unlock;

		list_del(&msr_d.r_list);
		if (signal_pending(current)) {
			msg = ERR_PTR(-ERESTARTNOHAND);
out_unlock:
			msg_unlock(msq);
			break;
		}
	}
	if (IS_ERR(msg))
934
		return PTR_ERR(msg);
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935 936

	msgsz = (msgsz > msg->m_ts) ? msg->m_ts : msgsz;
937 938
	*pmtype = msg->m_type;
	if (store_msg(mtext, msg, msgsz))
939
		msgsz = -EFAULT;
940

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941
	free_msg(msg);
942

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	return msgsz;
}

946 947 948 949 950 951 952 953 954 955 956 957 958 959 960
asmlinkage long sys_msgrcv(int msqid, struct msgbuf __user *msgp, size_t msgsz,
			   long msgtyp, int msgflg)
{
	long err, mtype;

	err =  do_msgrcv(msqid, &mtype, msgp->mtext, msgsz, msgtyp, msgflg);
	if (err < 0)
		goto out;

	if (put_user(mtype, &msgp->mtype))
		err = -EFAULT;
out:
	return err;
}

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#ifdef CONFIG_PROC_FS
962
static int sysvipc_msg_proc_show(struct seq_file *s, void *it)
L
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963
{
964 965 966
	struct msg_queue *msq = it;

	return seq_printf(s,
967 968
			"%10d %10d  %4o  %10lu %10lu %5u %5u %5u %5u %5u %5u %10lu %10lu %10lu\n",
			msq->q_perm.key,
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			msq->q_perm.id,
970 971 972 973 974 975 976 977 978 979 980 981
			msq->q_perm.mode,
			msq->q_cbytes,
			msq->q_qnum,
			msq->q_lspid,
			msq->q_lrpid,
			msq->q_perm.uid,
			msq->q_perm.gid,
			msq->q_perm.cuid,
			msq->q_perm.cgid,
			msq->q_stime,
			msq->q_rtime,
			msq->q_ctime);
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}
#endif