util.c 24.6 KB
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/*
 * linux/ipc/util.c
 * Copyright (C) 1992 Krishna Balasubramanian
 *
 * Sep 1997 - Call suser() last after "normal" permission checks so we
 *            get BSD style process accounting right.
 *            Occurs in several places in the IPC code.
 *            Chris Evans, <chris@ferret.lmh.ox.ac.uk>
 * Nov 1999 - ipc helper functions, unified SMP locking
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 *	      Manfred Spraul <manfred@colorfullife.com>
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 * Oct 2002 - One lock per IPC id. RCU ipc_free for lock-free grow_ary().
 *            Mingming Cao <cmm@us.ibm.com>
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 * Mar 2006 - support for audit of ipc object properties
 *            Dustin Kirkland <dustin.kirkland@us.ibm.com>
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 * Jun 2006 - namespaces ssupport
 *            OpenVZ, SWsoft Inc.
 *            Pavel Emelianov <xemul@openvz.org>
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 */

#include <linux/mm.h>
#include <linux/shm.h>
#include <linux/init.h>
#include <linux/msg.h>
#include <linux/vmalloc.h>
#include <linux/slab.h>
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#include <linux/notifier.h>
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#include <linux/capability.h>
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#include <linux/highuid.h>
#include <linux/security.h>
#include <linux/rcupdate.h>
#include <linux/workqueue.h>
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#include <linux/seq_file.h>
#include <linux/proc_fs.h>
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#include <linux/audit.h>
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#include <linux/nsproxy.h>
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#include <linux/rwsem.h>
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#include <linux/memory.h>
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#include <linux/ipc_namespace.h>
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#include <asm/unistd.h>

#include "util.h"

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struct ipc_proc_iface {
	const char *path;
	const char *header;
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	int ids;
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	int (*show)(struct seq_file *, void *);
};

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static void ipc_memory_notifier(struct work_struct *work)
{
	ipcns_notify(IPCNS_MEMCHANGED);
}

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static int ipc_memory_callback(struct notifier_block *self,
				unsigned long action, void *arg)
{
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	static DECLARE_WORK(ipc_memory_wq, ipc_memory_notifier);

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	switch (action) {
	case MEM_ONLINE:    /* memory successfully brought online */
	case MEM_OFFLINE:   /* or offline: it's time to recompute msgmni */
		/*
		 * This is done by invoking the ipcns notifier chain with the
		 * IPC_MEMCHANGED event.
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		 * In order not to keep the lock on the hotplug memory chain
		 * for too long, queue a work item that will, when waken up,
		 * activate the ipcns notification chain.
		 * No need to keep several ipc work items on the queue.
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		 */
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		if (!work_pending(&ipc_memory_wq))
			schedule_work(&ipc_memory_wq);
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		break;
	case MEM_GOING_ONLINE:
	case MEM_GOING_OFFLINE:
	case MEM_CANCEL_ONLINE:
	case MEM_CANCEL_OFFLINE:
	default:
		break;
	}

	return NOTIFY_OK;
}

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static struct notifier_block ipc_memory_nb = {
	.notifier_call = ipc_memory_callback,
	.priority = IPC_CALLBACK_PRI,
};
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/**
 *	ipc_init	-	initialise IPC subsystem
 *
 *	The various system5 IPC resources (semaphores, messages and shared
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 *	memory) are initialised
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 *	A callback routine is registered into the memory hotplug notifier
 *	chain: since msgmni scales to lowmem this callback routine will be
 *	called upon successful memory add / remove to recompute msmgni.
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 */
 
static int __init ipc_init(void)
{
	sem_init();
	msg_init();
	shm_init();
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	register_hotmemory_notifier(&ipc_memory_nb);
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	register_ipcns_notifier(&init_ipc_ns);
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	return 0;
}
__initcall(ipc_init);

/**
 *	ipc_init_ids		-	initialise IPC identifiers
 *	@ids: Identifier set
 *
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 *	Set up the sequence range to use for the ipc identifier range (limited
 *	below IPCMNI) then initialise the ids idr.
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 */
 
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void ipc_init_ids(struct ipc_ids *ids)
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{
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	init_rwsem(&ids->rw_mutex);
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	ids->in_use = 0;
	ids->seq = 0;
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	ids->next_id = -1;
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	{
		int seq_limit = INT_MAX/SEQ_MULTIPLIER;
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		if (seq_limit > USHRT_MAX)
			ids->seq_max = USHRT_MAX;
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		 else
		 	ids->seq_max = seq_limit;
	}

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	idr_init(&ids->ipcs_idr);
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}

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#ifdef CONFIG_PROC_FS
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static const struct file_operations sysvipc_proc_fops;
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/**
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 *	ipc_init_proc_interface	-  Create a proc interface for sysipc types using a seq_file interface.
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 *	@path: Path in procfs
 *	@header: Banner to be printed at the beginning of the file.
 *	@ids: ipc id table to iterate.
 *	@show: show routine.
 */
void __init ipc_init_proc_interface(const char *path, const char *header,
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		int ids, int (*show)(struct seq_file *, void *))
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{
	struct proc_dir_entry *pde;
	struct ipc_proc_iface *iface;

	iface = kmalloc(sizeof(*iface), GFP_KERNEL);
	if (!iface)
		return;
	iface->path	= path;
	iface->header	= header;
	iface->ids	= ids;
	iface->show	= show;

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	pde = proc_create_data(path,
			       S_IRUGO,        /* world readable */
			       NULL,           /* parent dir */
			       &sysvipc_proc_fops,
			       iface);
	if (!pde) {
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		kfree(iface);
	}
}
#endif

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/**
 *	ipc_findkey	-	find a key in an ipc identifier set	
 *	@ids: Identifier set
 *	@key: The key to find
 *	
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 *	Requires ipc_ids.rw_mutex locked.
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 *	Returns the LOCKED pointer to the ipc structure if found or NULL
 *	if not.
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 *	If key is found ipc points to the owning ipc structure
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 */
 
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static struct kern_ipc_perm *ipc_findkey(struct ipc_ids *ids, key_t key)
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{
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	struct kern_ipc_perm *ipc;
	int next_id;
	int total;
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	for (total = 0, next_id = 0; total < ids->in_use; next_id++) {
		ipc = idr_find(&ids->ipcs_idr, next_id);

		if (ipc == NULL)
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			continue;
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		if (ipc->key != key) {
			total++;
			continue;
		}

		ipc_lock_by_ptr(ipc);
		return ipc;
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	}
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	return NULL;
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}

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/**
 *	ipc_get_maxid 	-	get the last assigned id
 *	@ids: IPC identifier set
 *
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 *	Called with ipc_ids.rw_mutex held.
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 */

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int ipc_get_maxid(struct ipc_ids *ids)
{
	struct kern_ipc_perm *ipc;
	int max_id = -1;
	int total, id;

	if (ids->in_use == 0)
		return -1;
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	if (ids->in_use == IPCMNI)
		return IPCMNI - 1;

	/* Look for the last assigned id */
	total = 0;
	for (id = 0; id < IPCMNI && total < ids->in_use; id++) {
		ipc = idr_find(&ids->ipcs_idr, id);
		if (ipc != NULL) {
			max_id = id;
			total++;
		}
	}
	return max_id;
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}

/**
 *	ipc_addid 	-	add an IPC identifier
 *	@ids: IPC identifier set
 *	@new: new IPC permission set
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 *	@size: limit for the number of used ids
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 *
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 *	Add an entry 'new' to the IPC ids idr. The permissions object is
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 *	initialised and the first free entry is set up and the id assigned
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 *	is returned. The 'new' entry is returned in a locked state on success.
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 *	On failure the entry is not locked and a negative err-code is returned.
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 *
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 *	Called with ipc_ids.rw_mutex held as a writer.
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 */
 
int ipc_addid(struct ipc_ids* ids, struct kern_ipc_perm* new, int size)
{
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	kuid_t euid;
	kgid_t egid;
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	int id;
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	int next_id = ids->next_id;
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	if (size > IPCMNI)
		size = IPCMNI;

	if (ids->in_use >= size)
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		return -ENOSPC;
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	idr_preload(GFP_KERNEL);

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	spin_lock_init(&new->lock);
	new->deleted = 0;
	rcu_read_lock();
	spin_lock(&new->lock);

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	id = idr_alloc(&ids->ipcs_idr, new,
		       (next_id < 0) ? 0 : ipcid_to_idx(next_id), 0,
		       GFP_NOWAIT);
	idr_preload_end();
	if (id < 0) {
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		spin_unlock(&new->lock);
		rcu_read_unlock();
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		return id;
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	}
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	ids->in_use++;

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	current_euid_egid(&euid, &egid);
	new->cuid = new->uid = euid;
	new->gid = new->cgid = egid;
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	if (next_id < 0) {
		new->seq = ids->seq++;
		if (ids->seq > ids->seq_max)
			ids->seq = 0;
	} else {
		new->seq = ipcid_to_seqx(next_id);
		ids->next_id = -1;
	}
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	new->id = ipc_buildid(id, new->seq);
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	return id;
}

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/**
 *	ipcget_new	-	create a new ipc object
 *	@ns: namespace
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 *	@ids: IPC identifer set
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 *	@ops: the actual creation routine to call
 *	@params: its parameters
 *
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 *	This routine is called by sys_msgget, sys_semget() and sys_shmget()
 *	when the key is IPC_PRIVATE.
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 */
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static int ipcget_new(struct ipc_namespace *ns, struct ipc_ids *ids,
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		struct ipc_ops *ops, struct ipc_params *params)
{
	int err;

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	down_write(&ids->rw_mutex);
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	err = ops->getnew(ns, params);
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	up_write(&ids->rw_mutex);
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	return err;
}

/**
 *	ipc_check_perms	-	check security and permissions for an IPC
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 *	@ns: IPC namespace
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 *	@ipcp: ipc permission set
 *	@ops: the actual security routine to call
 *	@params: its parameters
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 *
 *	This routine is called by sys_msgget(), sys_semget() and sys_shmget()
 *      when the key is not IPC_PRIVATE and that key already exists in the
 *      ids IDR.
 *
 *	On success, the IPC id is returned.
 *
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 *	It is called with ipc_ids.rw_mutex and ipcp->lock held.
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 */
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static int ipc_check_perms(struct ipc_namespace *ns,
			   struct kern_ipc_perm *ipcp,
			   struct ipc_ops *ops,
			   struct ipc_params *params)
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{
	int err;

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	if (ipcperms(ns, ipcp, params->flg))
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		err = -EACCES;
	else {
		err = ops->associate(ipcp, params->flg);
		if (!err)
			err = ipcp->id;
	}

	return err;
}

/**
 *	ipcget_public	-	get an ipc object or create a new one
 *	@ns: namespace
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 *	@ids: IPC identifer set
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 *	@ops: the actual creation routine to call
 *	@params: its parameters
 *
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 *	This routine is called by sys_msgget, sys_semget() and sys_shmget()
 *	when the key is not IPC_PRIVATE.
 *	It adds a new entry if the key is not found and does some permission
 *      / security checkings if the key is found.
 *
 *	On success, the ipc id is returned.
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 */
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static int ipcget_public(struct ipc_namespace *ns, struct ipc_ids *ids,
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		struct ipc_ops *ops, struct ipc_params *params)
{
	struct kern_ipc_perm *ipcp;
	int flg = params->flg;
	int err;

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	/*
	 * Take the lock as a writer since we are potentially going to add
	 * a new entry + read locks are not "upgradable"
	 */
	down_write(&ids->rw_mutex);
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	ipcp = ipc_findkey(ids, params->key);
	if (ipcp == NULL) {
		/* key not used */
		if (!(flg & IPC_CREAT))
			err = -ENOENT;
		else
			err = ops->getnew(ns, params);
	} else {
		/* ipc object has been locked by ipc_findkey() */

		if (flg & IPC_CREAT && flg & IPC_EXCL)
			err = -EEXIST;
		else {
			err = 0;
			if (ops->more_checks)
				err = ops->more_checks(ipcp, params);
			if (!err)
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				/*
				 * ipc_check_perms returns the IPC id on
				 * success
				 */
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				err = ipc_check_perms(ns, ipcp, ops, params);
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		}
		ipc_unlock(ipcp);
	}
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	up_write(&ids->rw_mutex);
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	return err;
}


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/**
 *	ipc_rmid	-	remove an IPC identifier
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 *	@ids: IPC identifier set
 *	@ipcp: ipc perm structure containing the identifier to remove
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 *
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 *	ipc_ids.rw_mutex (as a writer) and the spinlock for this ID are held
 *	before this function is called, and remain locked on the exit.
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 */
 
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void ipc_rmid(struct ipc_ids *ids, struct kern_ipc_perm *ipcp)
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{
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	int lid = ipcid_to_idx(ipcp->id);
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	idr_remove(&ids->ipcs_idr, lid);
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	ids->in_use--;

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	ipcp->deleted = 1;

	return;
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}

/**
 *	ipc_alloc	-	allocate ipc space
 *	@size: size desired
 *
 *	Allocate memory from the appropriate pools and return a pointer to it.
 *	NULL is returned if the allocation fails
 */
 
void* ipc_alloc(int size)
{
	void* out;
	if(size > PAGE_SIZE)
		out = vmalloc(size);
	else
		out = kmalloc(size, GFP_KERNEL);
	return out;
}

/**
 *	ipc_free        -       free ipc space
 *	@ptr: pointer returned by ipc_alloc
 *	@size: size of block
 *
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 *	Free a block created with ipc_alloc(). The caller must know the size
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 *	used in the allocation call.
 */

void ipc_free(void* ptr, int size)
{
	if(size > PAGE_SIZE)
		vfree(ptr);
	else
		kfree(ptr);
}

/*
 * rcu allocations:
 * There are three headers that are prepended to the actual allocation:
 * - during use: ipc_rcu_hdr.
 * - during the rcu grace period: ipc_rcu_grace.
 * - [only if vmalloc]: ipc_rcu_sched.
 * Their lifetime doesn't overlap, thus the headers share the same memory.
 * Unlike a normal union, they are right-aligned, thus some container_of
 * forward/backward casting is necessary:
 */
struct ipc_rcu_hdr
{
	int refcount;
	int is_vmalloc;
	void *data[0];
};


struct ipc_rcu_grace
{
	struct rcu_head rcu;
	/* "void *" makes sure alignment of following data is sane. */
	void *data[0];
};

struct ipc_rcu_sched
{
	struct work_struct work;
	/* "void *" makes sure alignment of following data is sane. */
	void *data[0];
};

#define HDRLEN_KMALLOC		(sizeof(struct ipc_rcu_grace) > sizeof(struct ipc_rcu_hdr) ? \
					sizeof(struct ipc_rcu_grace) : sizeof(struct ipc_rcu_hdr))
#define HDRLEN_VMALLOC		(sizeof(struct ipc_rcu_sched) > HDRLEN_KMALLOC ? \
					sizeof(struct ipc_rcu_sched) : HDRLEN_KMALLOC)

static inline int rcu_use_vmalloc(int size)
{
	/* Too big for a single page? */
	if (HDRLEN_KMALLOC + size > PAGE_SIZE)
		return 1;
	return 0;
}

/**
 *	ipc_rcu_alloc	-	allocate ipc and rcu space 
 *	@size: size desired
 *
 *	Allocate memory for the rcu header structure +  the object.
 *	Returns the pointer to the object.
 *	NULL is returned if the allocation fails. 
 */
 
void* ipc_rcu_alloc(int size)
{
	void* out;
	/* 
	 * We prepend the allocation with the rcu struct, and
	 * workqueue if necessary (for vmalloc). 
	 */
	if (rcu_use_vmalloc(size)) {
		out = vmalloc(HDRLEN_VMALLOC + size);
		if (out) {
			out += HDRLEN_VMALLOC;
			container_of(out, struct ipc_rcu_hdr, data)->is_vmalloc = 1;
			container_of(out, struct ipc_rcu_hdr, data)->refcount = 1;
		}
	} else {
		out = kmalloc(HDRLEN_KMALLOC + size, GFP_KERNEL);
		if (out) {
			out += HDRLEN_KMALLOC;
			container_of(out, struct ipc_rcu_hdr, data)->is_vmalloc = 0;
			container_of(out, struct ipc_rcu_hdr, data)->refcount = 1;
		}
	}

	return out;
}

void ipc_rcu_getref(void *ptr)
{
	container_of(ptr, struct ipc_rcu_hdr, data)->refcount++;
}

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static void ipc_do_vfree(struct work_struct *work)
{
	vfree(container_of(work, struct ipc_rcu_sched, work));
}

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/**
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 * ipc_schedule_free - free ipc + rcu space
 * @head: RCU callback structure for queued work
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 * 
 * Since RCU callback function is called in bh,
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 * we need to defer the vfree to schedule_work().
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 */
static void ipc_schedule_free(struct rcu_head *head)
{
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	struct ipc_rcu_grace *grace;
	struct ipc_rcu_sched *sched;

	grace = container_of(head, struct ipc_rcu_grace, rcu);
	sched = container_of(&(grace->data[0]), struct ipc_rcu_sched,
				data[0]);
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	INIT_WORK(&sched->work, ipc_do_vfree);
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	schedule_work(&sched->work);
}

void ipc_rcu_putref(void *ptr)
{
	if (--container_of(ptr, struct ipc_rcu_hdr, data)->refcount > 0)
		return;

	if (container_of(ptr, struct ipc_rcu_hdr, data)->is_vmalloc) {
		call_rcu(&container_of(ptr, struct ipc_rcu_grace, data)->rcu,
				ipc_schedule_free);
	} else {
588
		kfree_rcu(container_of(ptr, struct ipc_rcu_grace, data), rcu);
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	}
}

/**
 *	ipcperms	-	check IPC permissions
594
 *	@ns: IPC namespace
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 *	@ipcp: IPC permission set
 *	@flag: desired permission set.
 *
 *	Check user, group, other permissions for access
 *	to ipc resources. return 0 if allowed
600 601
 *
 * 	@flag will most probably be 0 or S_...UGO from <linux/stat.h>
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 */
 
604 605
int ipcperms(struct ipc_namespace *ns, struct kern_ipc_perm *ipcp, short flag)
{
606
	kuid_t euid = current_euid();
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	int requested_mode, granted_mode;
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	audit_ipc_obj(ipcp);
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	requested_mode = (flag >> 6) | (flag >> 3) | flag;
	granted_mode = ipcp->mode;
612 613
	if (uid_eq(euid, ipcp->cuid) ||
	    uid_eq(euid, ipcp->uid))
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		granted_mode >>= 6;
	else if (in_group_p(ipcp->cgid) || in_group_p(ipcp->gid))
		granted_mode >>= 3;
	/* is there some bit set in requested_mode but not in granted_mode? */
	if ((requested_mode & ~granted_mode & 0007) && 
619
	    !ns_capable(ns->user_ns, CAP_IPC_OWNER))
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		return -1;

	return security_ipc_permission(ipcp, flag);
}

/*
 * Functions to convert between the kern_ipc_perm structure and the
 * old/new ipc_perm structures
 */

/**
 *	kernel_to_ipc64_perm	-	convert kernel ipc permissions to user
 *	@in: kernel permissions
 *	@out: new style IPC permissions
 *
635 636
 *	Turn the kernel object @in into a set of permissions descriptions
 *	for returning to userspace (@out).
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 */
 

void kernel_to_ipc64_perm (struct kern_ipc_perm *in, struct ipc64_perm *out)
{
	out->key	= in->key;
643 644 645 646
	out->uid	= from_kuid_munged(current_user_ns(), in->uid);
	out->gid	= from_kgid_munged(current_user_ns(), in->gid);
	out->cuid	= from_kuid_munged(current_user_ns(), in->cuid);
	out->cgid	= from_kgid_munged(current_user_ns(), in->cgid);
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	out->mode	= in->mode;
	out->seq	= in->seq;
}

/**
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 *	ipc64_perm_to_ipc_perm	-	convert new ipc permissions to old
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 *	@in: new style IPC permissions
 *	@out: old style IPC permissions
 *
656 657
 *	Turn the new style permissions object @in into a compatibility
 *	object and store it into the @out pointer.
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 */
 
void ipc64_perm_to_ipc_perm (struct ipc64_perm *in, struct ipc_perm *out)
{
	out->key	= in->key;
	SET_UID(out->uid, in->uid);
	SET_GID(out->gid, in->gid);
	SET_UID(out->cuid, in->cuid);
	SET_GID(out->cgid, in->cgid);
	out->mode	= in->mode;
	out->seq	= in->seq;
}

671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692
/**
 * ipc_obtain_object
 * @ids: ipc identifier set
 * @id: ipc id to look for
 *
 * Look for an id in the ipc ids idr and return associated ipc object.
 *
 * Call inside the RCU critical section.
 * The ipc object is *not* locked on exit.
 */
struct kern_ipc_perm *ipc_obtain_object(struct ipc_ids *ids, int id)
{
	struct kern_ipc_perm *out;
	int lid = ipcid_to_idx(id);

	out = idr_find(&ids->ipcs_idr, lid);
	if (!out)
		return ERR_PTR(-EINVAL);

	return out;
}

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/**
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 * ipc_lock - Lock an ipc structure without rw_mutex held
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 * @ids: IPC identifier set
 * @id: ipc id to look for
 *
 * Look for an id in the ipc ids idr and lock the associated ipc object.
 *
700
 * The ipc object is locked on successful exit.
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 */
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struct kern_ipc_perm *ipc_lock(struct ipc_ids *ids, int id)
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{
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	struct kern_ipc_perm *out;
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	rcu_read_lock();
707 708 709
	out = ipc_obtain_object(ids, id);
	if (IS_ERR(out))
		goto err1;
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	spin_lock(&out->lock);
712

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	/* ipc_rmid() may have already freed the ID while ipc_lock
	 * was spinning: here verify that the structure is still valid
	 */
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	if (!out->deleted)
		return out;

	spin_unlock(&out->lock);
	out = ERR_PTR(-EINVAL);
err1:
	rcu_read_unlock();
	return out;
}
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/**
 * ipc_obtain_object_check
 * @ids: ipc identifier set
 * @id: ipc id to look for
 *
 * Similar to ipc_obtain_object() but also checks
 * the ipc object reference counter.
 *
 * Call inside the RCU critical section.
 * The ipc object is *not* locked on exit.
 */
struct kern_ipc_perm *ipc_obtain_object_check(struct ipc_ids *ids, int id)
{
	struct kern_ipc_perm *out = ipc_obtain_object(ids, id);

	if (IS_ERR(out))
		goto out;

	if (ipc_checkid(out, id))
		return ERR_PTR(-EIDRM);
out:
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	return out;
}

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struct kern_ipc_perm *ipc_lock_check(struct ipc_ids *ids, int id)
{
	struct kern_ipc_perm *out;

	out = ipc_lock(ids, id);
	if (IS_ERR(out))
		return out;

	if (ipc_checkid(out, id)) {
		ipc_unlock(out);
		return ERR_PTR(-EIDRM);
	}

	return out;
}

/**
 * ipcget - Common sys_*get() code
 * @ns : namsepace
 * @ids : IPC identifier set
 * @ops : operations to be called on ipc object creation, permission checks
 *        and further checks
 * @params : the parameters needed by the previous operations.
 *
 * Common routine called by sys_msgget(), sys_semget() and sys_shmget().
 */
int ipcget(struct ipc_namespace *ns, struct ipc_ids *ids,
			struct ipc_ops *ops, struct ipc_params *params)
{
	if (params->key == IPC_PRIVATE)
		return ipcget_new(ns, ids, ops, params);
	else
		return ipcget_public(ns, ids, ops, params);
}

785 786 787 788 789
/**
 * ipc_update_perm - update the permissions of an IPC.
 * @in:  the permission given as input.
 * @out: the permission of the ipc to set.
 */
790
int ipc_update_perm(struct ipc64_perm *in, struct kern_ipc_perm *out)
791
{
792 793 794 795 796 797 798
	kuid_t uid = make_kuid(current_user_ns(), in->uid);
	kgid_t gid = make_kgid(current_user_ns(), in->gid);
	if (!uid_valid(uid) || !gid_valid(gid))
		return -EINVAL;

	out->uid = uid;
	out->gid = gid;
799 800
	out->mode = (out->mode & ~S_IRWXUGO)
		| (in->mode & S_IRWXUGO);
801 802

	return 0;
803 804
}

805 806
/**
 * ipcctl_pre_down - retrieve an ipc and check permissions for some IPC_XXX cmd
807
 * @ns:  the ipc namespace
808 809 810 811 812 813 814 815 816 817 818 819 820 821
 * @ids:  the table of ids where to look for the ipc
 * @id:   the id of the ipc to retrieve
 * @cmd:  the cmd to check
 * @perm: the permission to set
 * @extra_perm: one extra permission parameter used by msq
 *
 * This function does some common audit and permissions check for some IPC_XXX
 * cmd and is called from semctl_down, shmctl_down and msgctl_down.
 * It must be called without any lock held and
 *  - retrieves the ipc with the given id in the given table.
 *  - performs some audit and permission check, depending on the given cmd
 *  - returns the ipc with both ipc and rw_mutex locks held in case of success
 *    or an err-code without any lock held otherwise.
 */
822 823
struct kern_ipc_perm *ipcctl_pre_down(struct ipc_namespace *ns,
				      struct ipc_ids *ids, int id, int cmd,
824 825 826
				      struct ipc64_perm *perm, int extra_perm)
{
	struct kern_ipc_perm *ipcp;
827 828 829 830 831 832 833 834 835 836 837 838 839 840

	ipcp = ipcctl_pre_down_nolock(ns, ids, id, cmd, perm, extra_perm);
	if (IS_ERR(ipcp))
		goto out;

	spin_lock(&ipcp->lock);
out:
	return ipcp;
}

struct kern_ipc_perm *ipcctl_pre_down_nolock(struct ipc_namespace *ns,
					     struct ipc_ids *ids, int id, int cmd,
					     struct ipc64_perm *perm, int extra_perm)
{
841
	kuid_t euid;
842 843
	int err = -EPERM;
	struct kern_ipc_perm *ipcp;
844 845

	down_write(&ids->rw_mutex);
846 847 848
	rcu_read_lock();

	ipcp = ipc_obtain_object_check(ids, id);
849 850 851 852 853
	if (IS_ERR(ipcp)) {
		err = PTR_ERR(ipcp);
		goto out_up;
	}

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	audit_ipc_obj(ipcp);
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	if (cmd == IPC_SET)
		audit_ipc_set_perm(extra_perm, perm->uid,
857
				   perm->gid, perm->mode);
858 859

	euid = current_euid();
860
	if (uid_eq(euid, ipcp->cuid) || uid_eq(euid, ipcp->uid)  ||
861
	    ns_capable(ns->user_ns, CAP_SYS_ADMIN))
862 863 864
		return ipcp;

out_up:
865 866 867 868 869
	/*
	 * Unsuccessful lookup, unlock and return
	 * the corresponding error.
	 */
	rcu_read_unlock();
870
	up_write(&ids->rw_mutex);
871

872 873 874
	return ERR_PTR(err);
}

875
#ifdef CONFIG_ARCH_WANT_IPC_PARSE_VERSION
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/**
 *	ipc_parse_version	-	IPC call version
 *	@cmd: pointer to command
 *
 *	Return IPC_64 for new style IPC and IPC_OLD for old style IPC. 
883
 *	The @cmd value is turned from an encoding command and version into
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 *	just the command code.
 */
 
int ipc_parse_version (int *cmd)
{
	if (*cmd & IPC_64) {
		*cmd ^= IPC_64;
		return IPC_64;
	} else {
		return IPC_OLD;
	}
}

897
#endif /* CONFIG_ARCH_WANT_IPC_PARSE_VERSION */
898 899

#ifdef CONFIG_PROC_FS
900 901 902 903 904
struct ipc_proc_iter {
	struct ipc_namespace *ns;
	struct ipc_proc_iface *iface;
};

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/*
 * This routine locks the ipc structure found at least at position pos.
 */
908 909
static struct kern_ipc_perm *sysvipc_find_ipc(struct ipc_ids *ids, loff_t pos,
					      loff_t *new_pos)
910
{
N
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911 912
	struct kern_ipc_perm *ipc;
	int total, id;
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913

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914 915 916 917 918 919
	total = 0;
	for (id = 0; id < pos && total < ids->in_use; id++) {
		ipc = idr_find(&ids->ipcs_idr, id);
		if (ipc != NULL)
			total++;
	}
920

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921 922
	if (total >= ids->in_use)
		return NULL;
923

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924 925 926 927 928
	for ( ; pos < IPCMNI; pos++) {
		ipc = idr_find(&ids->ipcs_idr, pos);
		if (ipc != NULL) {
			*new_pos = pos + 1;
			ipc_lock_by_ptr(ipc);
929 930 931 932 933 934 935 936
			return ipc;
		}
	}

	/* Out of range - return NULL to terminate iteration */
	return NULL;
}

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static void *sysvipc_proc_next(struct seq_file *s, void *it, loff_t *pos)
{
	struct ipc_proc_iter *iter = s->private;
	struct ipc_proc_iface *iface = iter->iface;
	struct kern_ipc_perm *ipc = it;

	/* If we had an ipc id locked before, unlock it */
	if (ipc && ipc != SEQ_START_TOKEN)
		ipc_unlock(ipc);

947
	return sysvipc_find_ipc(&iter->ns->ids[iface->ids], *pos, pos);
N
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948 949
}

950
/*
N
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951 952
 * File positions: pos 0 -> header, pos n -> ipc id = n - 1.
 * SeqFile iterator: iterator value locked ipc pointer or SEQ_TOKEN_START.
953 954 955
 */
static void *sysvipc_proc_start(struct seq_file *s, loff_t *pos)
{
956 957
	struct ipc_proc_iter *iter = s->private;
	struct ipc_proc_iface *iface = iter->iface;
K
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958 959
	struct ipc_ids *ids;

960
	ids = &iter->ns->ids[iface->ids];
961 962 963 964 965

	/*
	 * Take the lock - this will be released by the corresponding
	 * call to stop().
	 */
N
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966
	down_read(&ids->rw_mutex);
967 968 969 970 971 972 973 974 975 976

	/* pos < 0 is invalid */
	if (*pos < 0)
		return NULL;

	/* pos == 0 means header */
	if (*pos == 0)
		return SEQ_START_TOKEN;

	/* Find the (pos-1)th ipc */
N
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977
	return sysvipc_find_ipc(ids, *pos - 1, pos);
978 979 980 981 982
}

static void sysvipc_proc_stop(struct seq_file *s, void *it)
{
	struct kern_ipc_perm *ipc = it;
983 984
	struct ipc_proc_iter *iter = s->private;
	struct ipc_proc_iface *iface = iter->iface;
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985
	struct ipc_ids *ids;
986

N
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987
	/* If we had a locked structure, release it */
988 989 990
	if (ipc && ipc != SEQ_START_TOKEN)
		ipc_unlock(ipc);

991
	ids = &iter->ns->ids[iface->ids];
992
	/* Release the lock we took in start() */
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993
	up_read(&ids->rw_mutex);
994 995 996 997
}

static int sysvipc_proc_show(struct seq_file *s, void *it)
{
998 999
	struct ipc_proc_iter *iter = s->private;
	struct ipc_proc_iface *iface = iter->iface;
1000 1001 1002 1003 1004 1005 1006

	if (it == SEQ_START_TOKEN)
		return seq_puts(s, iface->header);

	return iface->show(s, it);
}

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1007
static const struct seq_operations sysvipc_proc_seqops = {
1008 1009 1010 1011 1012 1013
	.start = sysvipc_proc_start,
	.stop  = sysvipc_proc_stop,
	.next  = sysvipc_proc_next,
	.show  = sysvipc_proc_show,
};

1014 1015
static int sysvipc_proc_open(struct inode *inode, struct file *file)
{
1016 1017
	int ret;
	struct seq_file *seq;
1018 1019 1020 1021 1022 1023
	struct ipc_proc_iter *iter;

	ret = -ENOMEM;
	iter = kmalloc(sizeof(*iter), GFP_KERNEL);
	if (!iter)
		goto out;
1024 1025

	ret = seq_open(file, &sysvipc_proc_seqops);
1026 1027 1028 1029 1030 1031 1032 1033 1034
	if (ret)
		goto out_kfree;

	seq = file->private_data;
	seq->private = iter;

	iter->iface = PDE(inode)->data;
	iter->ns    = get_ipc_ns(current->nsproxy->ipc_ns);
out:
1035
	return ret;
1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046
out_kfree:
	kfree(iter);
	goto out;
}

static int sysvipc_proc_release(struct inode *inode, struct file *file)
{
	struct seq_file *seq = file->private_data;
	struct ipc_proc_iter *iter = seq->private;
	put_ipc_ns(iter->ns);
	return seq_release_private(inode, file);
1047 1048
}

1049
static const struct file_operations sysvipc_proc_fops = {
1050 1051 1052
	.open    = sysvipc_proc_open,
	.read    = seq_read,
	.llseek  = seq_lseek,
1053
	.release = sysvipc_proc_release,
1054 1055
};
#endif /* CONFIG_PROC_FS */