ip_fragment.c 21.4 KB
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/*
 * INET		An implementation of the TCP/IP protocol suite for the LINUX
 *		operating system.  INET is implemented using the  BSD Socket
 *		interface as the means of communication with the user level.
 *
 *		The IP fragmentation functionality.
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 *
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 * Authors:	Fred N. van Kempen <waltje@uWalt.NL.Mugnet.ORG>
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 *		Alan Cox <alan@lxorguk.ukuu.org.uk>
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 *
 * Fixes:
 *		Alan Cox	:	Split from ip.c , see ip_input.c for history.
 *		David S. Miller :	Begin massive cleanup...
 *		Andi Kleen	:	Add sysctls.
 *		xxxx		:	Overlapfrag bug.
 *		Ultima          :       ip_expire() kernel panic.
 *		Bill Hawes	:	Frag accounting and evictor fixes.
 *		John McDonald	:	0 length frag bug.
 *		Alexey Kuznetsov:	SMP races, threading, cleanup.
 *		Patrick McHardy :	LRU queue of frag heads for evictor.
 */

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#define pr_fmt(fmt) "IPv4: " fmt

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#include <linux/compiler.h>
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#include <linux/module.h>
#include <linux/types.h>
#include <linux/mm.h>
#include <linux/jiffies.h>
#include <linux/skbuff.h>
#include <linux/list.h>
#include <linux/ip.h>
#include <linux/icmp.h>
#include <linux/netdevice.h>
#include <linux/jhash.h>
#include <linux/random.h>
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#include <linux/slab.h>
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#include <net/route.h>
#include <net/dst.h>
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#include <net/sock.h>
#include <net/ip.h>
#include <net/icmp.h>
#include <net/checksum.h>
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#include <net/inetpeer.h>
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#include <net/inet_frag.h>
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#include <linux/tcp.h>
#include <linux/udp.h>
#include <linux/inet.h>
#include <linux/netfilter_ipv4.h>
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#include <net/inet_ecn.h>
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/* NOTE. Logic of IP defragmentation is parallel to corresponding IPv6
 * code now. If you change something here, _PLEASE_ update ipv6/reassembly.c
 * as well. Or notify me, at least. --ANK
 */

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static int sysctl_ipfrag_max_dist __read_mostly = 64;
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struct ipfrag_skb_cb
{
	struct inet_skb_parm	h;
	int			offset;
};

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#define FRAG_CB(skb)	((struct ipfrag_skb_cb *)((skb)->cb))
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/* Describe an entry in the "incomplete datagrams" queue. */
struct ipq {
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	struct inet_frag_queue q;

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	u32		user;
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	__be32		saddr;
	__be32		daddr;
	__be16		id;
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	u8		protocol;
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	u8		ecn; /* RFC3168 support */
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	int             iif;
	unsigned int    rid;
	struct inet_peer *peer;
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};

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/* RFC 3168 support :
 * We want to check ECN values of all fragments, do detect invalid combinations.
 * In ipq->ecn, we store the OR value of each ip4_frag_ecn() fragment value.
 */
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#define	IPFRAG_ECN_NOT_ECT	0x01 /* one frag had ECN_NOT_ECT */
#define	IPFRAG_ECN_ECT_1	0x02 /* one frag had ECN_ECT_1 */
#define	IPFRAG_ECN_ECT_0	0x04 /* one frag had ECN_ECT_0 */
#define	IPFRAG_ECN_CE		0x08 /* one frag had ECN_CE */
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static inline u8 ip4_frag_ecn(u8 tos)
{
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	return 1 << (tos & INET_ECN_MASK);
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}

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/* Given the OR values of all fragments, apply RFC 3168 5.3 requirements
 * Value : 0xff if frame should be dropped.
 *         0 or INET_ECN_CE value, to be ORed in to final iph->tos field
 */
static const u8 ip4_frag_ecn_table[16] = {
	/* at least one fragment had CE, and others ECT_0 or ECT_1 */
	[IPFRAG_ECN_CE | IPFRAG_ECN_ECT_0]			= INET_ECN_CE,
	[IPFRAG_ECN_CE | IPFRAG_ECN_ECT_1]			= INET_ECN_CE,
	[IPFRAG_ECN_CE | IPFRAG_ECN_ECT_0 | IPFRAG_ECN_ECT_1]	= INET_ECN_CE,

	/* invalid combinations : drop frame */
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_CE] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_ECT_0] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_ECT_1] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_ECT_0 | IPFRAG_ECN_ECT_1] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_CE | IPFRAG_ECN_ECT_0] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_CE | IPFRAG_ECN_ECT_1] = 0xff,
	[IPFRAG_ECN_NOT_ECT | IPFRAG_ECN_CE | IPFRAG_ECN_ECT_0 | IPFRAG_ECN_ECT_1] = 0xff,
};

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static struct inet_frags ip4_frags;
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int ip_frag_nqueues(struct net *net)
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{
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	return net->ipv4.frags.nqueues;
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}
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int ip_frag_mem(struct net *net)
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{
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	return sum_frag_mem_limit(&net->ipv4.frags);
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}
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static int ip_frag_reasm(struct ipq *qp, struct sk_buff *prev,
			 struct net_device *dev);

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struct ip4_create_arg {
	struct iphdr *iph;
	u32 user;
};

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static unsigned int ipqhashfn(__be16 id, __be32 saddr, __be32 daddr, u8 prot)
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{
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	return jhash_3words((__force u32)id << 16 | prot,
			    (__force u32)saddr, (__force u32)daddr,
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			    ip4_frags.rnd) & (INETFRAGS_HASHSZ - 1);
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}

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static unsigned int ip4_hashfn(struct inet_frag_queue *q)
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{
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	struct ipq *ipq;
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	ipq = container_of(q, struct ipq, q);
	return ipqhashfn(ipq->id, ipq->saddr, ipq->daddr, ipq->protocol);
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}

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static bool ip4_frag_match(struct inet_frag_queue *q, void *a)
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{
	struct ipq *qp;
	struct ip4_create_arg *arg = a;

	qp = container_of(q, struct ipq, q);
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	return	qp->id == arg->iph->id &&
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		qp->saddr == arg->iph->saddr &&
		qp->daddr == arg->iph->daddr &&
		qp->protocol == arg->iph->protocol &&
		qp->user == arg->user;
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}

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static void ip4_frag_init(struct inet_frag_queue *q, void *a)
{
	struct ipq *qp = container_of(q, struct ipq, q);
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	struct netns_ipv4 *ipv4 = container_of(q->net, struct netns_ipv4,
					       frags);
	struct net *net = container_of(ipv4, struct net, ipv4);

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	struct ip4_create_arg *arg = a;

	qp->protocol = arg->iph->protocol;
	qp->id = arg->iph->id;
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	qp->ecn = ip4_frag_ecn(arg->iph->tos);
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	qp->saddr = arg->iph->saddr;
	qp->daddr = arg->iph->daddr;
	qp->user = arg->user;
	qp->peer = sysctl_ipfrag_max_dist ?
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		inet_getpeer_v4(net->ipv4.peers, arg->iph->saddr, 1) : NULL;
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}

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static __inline__ void ip4_frag_free(struct inet_frag_queue *q)
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{
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	struct ipq *qp;

	qp = container_of(q, struct ipq, q);
	if (qp->peer)
		inet_putpeer(qp->peer);
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}


/* Destruction primitives. */

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static __inline__ void ipq_put(struct ipq *ipq)
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{
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	inet_frag_put(&ipq->q, &ip4_frags);
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}

/* Kill ipq entry. It is not destroyed immediately,
 * because caller (and someone more) holds reference count.
 */
static void ipq_kill(struct ipq *ipq)
{
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	inet_frag_kill(&ipq->q, &ip4_frags);
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}

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/* Memory limiting on fragments.  Evictor trashes the oldest
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 * fragment queue until we are back under the threshold.
 */
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static void ip_evictor(struct net *net)
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{
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	int evicted;

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	evicted = inet_frag_evictor(&net->ipv4.frags, &ip4_frags, false);
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	if (evicted)
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		IP_ADD_STATS_BH(net, IPSTATS_MIB_REASMFAILS, evicted);
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}

/*
 * Oops, a fragment queue timed out.  Kill it and send an ICMP reply.
 */
static void ip_expire(unsigned long arg)
{
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	struct ipq *qp;
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	struct net *net;
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	qp = container_of((struct inet_frag_queue *) arg, struct ipq, q);
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	net = container_of(qp->q.net, struct net, ipv4.frags);
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	spin_lock(&qp->q.lock);
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	if (qp->q.last_in & INET_FRAG_COMPLETE)
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		goto out;

	ipq_kill(qp);

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	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMTIMEOUT);
	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMFAILS);
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	if ((qp->q.last_in & INET_FRAG_FIRST_IN) && qp->q.fragments != NULL) {
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		struct sk_buff *head = qp->q.fragments;
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		const struct iphdr *iph;
		int err;
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		rcu_read_lock();
		head->dev = dev_get_by_index_rcu(net, qp->iif);
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		if (!head->dev)
			goto out_rcu_unlock;

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		/* skb dst is stale, drop it, and perform route lookup again */
		skb_dst_drop(head);
		iph = ip_hdr(head);
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		err = ip_route_input_noref(head, iph->daddr, iph->saddr,
					   iph->tos, head->dev);
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		if (err)
			goto out_rcu_unlock;

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		/*
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		 * Only an end host needs to send an ICMP
		 * "Fragment Reassembly Timeout" message, per RFC792.
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		 */
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		if (qp->user == IP_DEFRAG_AF_PACKET ||
		    (qp->user == IP_DEFRAG_CONNTRACK_IN &&
		     skb_rtable(head)->rt_type != RTN_LOCAL))
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			goto out_rcu_unlock;

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		/* Send an ICMP "Fragment Reassembly Timeout" message. */
		icmp_send(head, ICMP_TIME_EXCEEDED, ICMP_EXC_FRAGTIME, 0);
out_rcu_unlock:
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		rcu_read_unlock();
	}
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out:
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	spin_unlock(&qp->q.lock);
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	ipq_put(qp);
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}

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/* Find the correct entry in the "incomplete datagrams" queue for
 * this IP datagram, and create new one, if nothing is found.
 */
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static inline struct ipq *ip_find(struct net *net, struct iphdr *iph, u32 user)
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{
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	struct inet_frag_queue *q;
	struct ip4_create_arg arg;
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	unsigned int hash;
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	arg.iph = iph;
	arg.user = user;
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	read_lock(&ip4_frags.lock);
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	hash = ipqhashfn(iph->id, iph->saddr, iph->daddr, iph->protocol);
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	q = inet_frag_find(&net->ipv4.frags, &ip4_frags, &arg, hash);
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	if (q == NULL)
		goto out_nomem;
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	return container_of(q, struct ipq, q);
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out_nomem:
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	LIMIT_NETDEBUG(KERN_ERR pr_fmt("ip_frag_create: no memory left !\n"));
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	return NULL;
}

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/* Is the fragment too far ahead to be part of ipq? */
static inline int ip_frag_too_far(struct ipq *qp)
{
	struct inet_peer *peer = qp->peer;
	unsigned int max = sysctl_ipfrag_max_dist;
	unsigned int start, end;

	int rc;

	if (!peer || !max)
		return 0;

	start = qp->rid;
	end = atomic_inc_return(&peer->rid);
	qp->rid = end;

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	rc = qp->q.fragments && (end - start) > max;
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	if (rc) {
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		struct net *net;

		net = container_of(qp->q.net, struct net, ipv4.frags);
		IP_INC_STATS_BH(net, IPSTATS_MIB_REASMFAILS);
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	}

	return rc;
}

static int ip_frag_reinit(struct ipq *qp)
{
	struct sk_buff *fp;
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	unsigned int sum_truesize = 0;
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	if (!mod_timer(&qp->q.timer, jiffies + qp->q.net->timeout)) {
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		atomic_inc(&qp->q.refcnt);
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		return -ETIMEDOUT;
	}

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	fp = qp->q.fragments;
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	do {
		struct sk_buff *xp = fp->next;
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		sum_truesize += fp->truesize;
		kfree_skb(fp);
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		fp = xp;
	} while (fp);
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	sub_frag_mem_limit(&qp->q, sum_truesize);
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	qp->q.last_in = 0;
	qp->q.len = 0;
	qp->q.meat = 0;
	qp->q.fragments = NULL;
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	qp->q.fragments_tail = NULL;
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	qp->iif = 0;
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	qp->ecn = 0;
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	return 0;
}

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/* Add new segment to existing queue. */
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static int ip_frag_queue(struct ipq *qp, struct sk_buff *skb)
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{
	struct sk_buff *prev, *next;
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	struct net_device *dev;
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	int flags, offset;
	int ihl, end;
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	int err = -ENOENT;
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	u8 ecn;
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	if (qp->q.last_in & INET_FRAG_COMPLETE)
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		goto err;

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	if (!(IPCB(skb)->flags & IPSKB_FRAG_COMPLETE) &&
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	    unlikely(ip_frag_too_far(qp)) &&
	    unlikely(err = ip_frag_reinit(qp))) {
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		ipq_kill(qp);
		goto err;
	}

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	ecn = ip4_frag_ecn(ip_hdr(skb)->tos);
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	offset = ntohs(ip_hdr(skb)->frag_off);
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	flags = offset & ~IP_OFFSET;
	offset &= IP_OFFSET;
	offset <<= 3;		/* offset is in 8-byte chunks */
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	ihl = ip_hdrlen(skb);
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	/* Determine the position of this fragment. */
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	end = offset + skb->len - ihl;
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	err = -EINVAL;
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	/* Is this the final fragment? */
	if ((flags & IP_MF) == 0) {
		/* If we already have some bits beyond end
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		 * or have different end, the segment is corrupted.
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		 */
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		if (end < qp->q.len ||
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		    ((qp->q.last_in & INET_FRAG_LAST_IN) && end != qp->q.len))
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			goto err;
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		qp->q.last_in |= INET_FRAG_LAST_IN;
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		qp->q.len = end;
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	} else {
		if (end&7) {
			end &= ~7;
			if (skb->ip_summed != CHECKSUM_UNNECESSARY)
				skb->ip_summed = CHECKSUM_NONE;
		}
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		if (end > qp->q.len) {
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			/* Some bits beyond end -> corruption. */
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			if (qp->q.last_in & INET_FRAG_LAST_IN)
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				goto err;
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			qp->q.len = end;
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		}
	}
	if (end == offset)
		goto err;

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	err = -ENOMEM;
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	if (pskb_pull(skb, ihl) == NULL)
		goto err;
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	err = pskb_trim_rcsum(skb, end - offset);
	if (err)
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		goto err;

	/* Find out which fragments are in front and at the back of us
	 * in the chain of fragments so far.  We must know where to put
	 * this fragment, right?
	 */
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	prev = qp->q.fragments_tail;
	if (!prev || FRAG_CB(prev)->offset < offset) {
		next = NULL;
		goto found;
	}
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	prev = NULL;
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	for (next = qp->q.fragments; next != NULL; next = next->next) {
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		if (FRAG_CB(next)->offset >= offset)
			break;	/* bingo! */
		prev = next;
	}

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found:
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	/* We found where to put this one.  Check for overlap with
	 * preceding fragment, and, if needed, align things so that
	 * any overlaps are eliminated.
	 */
	if (prev) {
		int i = (FRAG_CB(prev)->offset + prev->len) - offset;

		if (i > 0) {
			offset += i;
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			err = -EINVAL;
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			if (end <= offset)
				goto err;
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			err = -ENOMEM;
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			if (!pskb_pull(skb, i))
				goto err;
			if (skb->ip_summed != CHECKSUM_UNNECESSARY)
				skb->ip_summed = CHECKSUM_NONE;
		}
	}

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	err = -ENOMEM;

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	while (next && FRAG_CB(next)->offset < end) {
		int i = end - FRAG_CB(next)->offset; /* overlap is 'i' bytes */

		if (i < next->len) {
			/* Eat head of the next overlapped fragment
			 * and leave the loop. The next ones cannot overlap.
			 */
			if (!pskb_pull(next, i))
				goto err;
			FRAG_CB(next)->offset += i;
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			qp->q.meat -= i;
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			if (next->ip_summed != CHECKSUM_UNNECESSARY)
				next->ip_summed = CHECKSUM_NONE;
			break;
		} else {
			struct sk_buff *free_it = next;

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			/* Old fragment is completely overridden with
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			 * new one drop it.
			 */
			next = next->next;

			if (prev)
				prev->next = next;
			else
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				qp->q.fragments = next;
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			qp->q.meat -= free_it->len;
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			sub_frag_mem_limit(&qp->q, free_it->truesize);
			kfree_skb(free_it);
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		}
	}

	FRAG_CB(skb)->offset = offset;

	/* Insert this fragment in the chain of fragments. */
	skb->next = next;
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	if (!next)
		qp->q.fragments_tail = skb;
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	if (prev)
		prev->next = skb;
	else
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		qp->q.fragments = skb;
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	dev = skb->dev;
	if (dev) {
		qp->iif = dev->ifindex;
		skb->dev = NULL;
	}
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	qp->q.stamp = skb->tstamp;
	qp->q.meat += skb->len;
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	qp->ecn |= ecn;
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	add_frag_mem_limit(&qp->q, skb->truesize);
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	if (offset == 0)
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		qp->q.last_in |= INET_FRAG_FIRST_IN;
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	if (ip_hdr(skb)->frag_off & htons(IP_DF) &&
	    skb->len + ihl > qp->q.max_size)
		qp->q.max_size = skb->len + ihl;

528 529
	if (qp->q.last_in == (INET_FRAG_FIRST_IN | INET_FRAG_LAST_IN) &&
	    qp->q.meat == qp->q.len)
530 531
		return ip_frag_reasm(qp, prev, dev);

532
	inet_frag_lru_move(&qp->q);
533
	return -EINPROGRESS;
L
Linus Torvalds 已提交
534 535 536

err:
	kfree_skb(skb);
537
	return err;
L
Linus Torvalds 已提交
538 539 540 541 542
}


/* Build a new IP datagram from all its fragments. */

543 544
static int ip_frag_reasm(struct ipq *qp, struct sk_buff *prev,
			 struct net_device *dev)
L
Linus Torvalds 已提交
545
{
546
	struct net *net = container_of(qp->q.net, struct net, ipv4.frags);
L
Linus Torvalds 已提交
547
	struct iphdr *iph;
548
	struct sk_buff *fp, *head = qp->q.fragments;
L
Linus Torvalds 已提交
549 550
	int len;
	int ihlen;
551
	int err;
552
	int sum_truesize;
553
	u8 ecn;
L
Linus Torvalds 已提交
554 555 556

	ipq_kill(qp);

557 558 559 560 561
	ecn = ip4_frag_ecn_table[qp->ecn];
	if (unlikely(ecn == 0xff)) {
		err = -EINVAL;
		goto out_fail;
	}
562 563 564 565 566 567 568 569
	/* Make the one we just received the head. */
	if (prev) {
		head = prev->next;
		fp = skb_clone(head, GFP_ATOMIC);
		if (!fp)
			goto out_nomem;

		fp->next = head->next;
570 571
		if (!fp->next)
			qp->q.fragments_tail = fp;
572 573
		prev->next = fp;

574 575
		skb_morph(head, qp->q.fragments);
		head->next = qp->q.fragments->next;
576

577
		consume_skb(qp->q.fragments);
578
		qp->q.fragments = head;
579 580
	}

581 582
	WARN_ON(head == NULL);
	WARN_ON(FRAG_CB(head)->offset != 0);
L
Linus Torvalds 已提交
583 584

	/* Allocate a new buffer for the datagram. */
585
	ihlen = ip_hdrlen(head);
586
	len = ihlen + qp->q.len;
L
Linus Torvalds 已提交
587

588
	err = -E2BIG;
S
Stephen Hemminger 已提交
589
	if (len > 65535)
L
Linus Torvalds 已提交
590 591 592 593 594 595 596 597 598
		goto out_oversize;

	/* Head of list must not be cloned. */
	if (skb_cloned(head) && pskb_expand_head(head, 0, 0, GFP_ATOMIC))
		goto out_nomem;

	/* If the first fragment is fragmented itself, we split
	 * it to two chunks: the first with data and paged part
	 * and the second, holding only fragments. */
599
	if (skb_has_frag_list(head)) {
L
Linus Torvalds 已提交
600 601 602 603 604 605 606 607
		struct sk_buff *clone;
		int i, plen = 0;

		if ((clone = alloc_skb(0, GFP_ATOMIC)) == NULL)
			goto out_nomem;
		clone->next = head->next;
		head->next = clone;
		skb_shinfo(clone)->frag_list = skb_shinfo(head)->frag_list;
608
		skb_frag_list_init(head);
E
Eric Dumazet 已提交
609 610
		for (i = 0; i < skb_shinfo(head)->nr_frags; i++)
			plen += skb_frag_size(&skb_shinfo(head)->frags[i]);
L
Linus Torvalds 已提交
611 612 613 614 615
		clone->len = clone->data_len = head->data_len - plen;
		head->data_len -= clone->len;
		head->len -= clone->len;
		clone->csum = 0;
		clone->ip_summed = head->ip_summed;
616
		add_frag_mem_limit(&qp->q, clone->truesize);
L
Linus Torvalds 已提交
617 618
	}

619
	skb_push(head, head->data - skb_network_header(head));
L
Linus Torvalds 已提交
620

621 622 623 624 625 626 627
	sum_truesize = head->truesize;
	for (fp = head->next; fp;) {
		bool headstolen;
		int delta;
		struct sk_buff *next = fp->next;

		sum_truesize += fp->truesize;
L
Linus Torvalds 已提交
628 629
		if (head->ip_summed != fp->ip_summed)
			head->ip_summed = CHECKSUM_NONE;
630
		else if (head->ip_summed == CHECKSUM_COMPLETE)
L
Linus Torvalds 已提交
631
			head->csum = csum_add(head->csum, fp->csum);
632 633 634 635 636 637 638 639 640 641 642

		if (skb_try_coalesce(head, fp, &headstolen, &delta)) {
			kfree_skb_partial(fp, headstolen);
		} else {
			if (!skb_shinfo(head)->frag_list)
				skb_shinfo(head)->frag_list = fp;
			head->data_len += fp->len;
			head->len += fp->len;
			head->truesize += fp->truesize;
		}
		fp = next;
L
Linus Torvalds 已提交
643
	}
644
	sub_frag_mem_limit(&qp->q, sum_truesize);
L
Linus Torvalds 已提交
645 646 647

	head->next = NULL;
	head->dev = dev;
648
	head->tstamp = qp->q.stamp;
649
	IPCB(head)->frag_max_size = qp->q.max_size;
L
Linus Torvalds 已提交
650

651
	iph = ip_hdr(head);
652 653
	/* max_size != 0 implies at least one fragment had IP_DF set */
	iph->frag_off = qp->q.max_size ? htons(IP_DF) : 0;
L
Linus Torvalds 已提交
654
	iph->tot_len = htons(len);
655
	iph->tos |= ecn;
656
	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMOKS);
657
	qp->q.fragments = NULL;
658
	qp->q.fragments_tail = NULL;
659
	return 0;
L
Linus Torvalds 已提交
660 661

out_nomem:
662 663
	LIMIT_NETDEBUG(KERN_ERR pr_fmt("queue_glue: no memory for gluing queue %p\n"),
		       qp);
664
	err = -ENOMEM;
L
Linus Torvalds 已提交
665 666
	goto out_fail;
out_oversize:
667
	net_info_ratelimited("Oversized IP packet from %pI4\n", &qp->saddr);
L
Linus Torvalds 已提交
668
out_fail:
669
	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMFAILS);
670
	return err;
L
Linus Torvalds 已提交
671 672 673
}

/* Process an incoming IP datagram fragment. */
674
int ip_defrag(struct sk_buff *skb, u32 user)
L
Linus Torvalds 已提交
675 676
{
	struct ipq *qp;
677
	struct net *net;
678

E
Eric Dumazet 已提交
679
	net = skb->dev ? dev_net(skb->dev) : dev_net(skb_dst(skb)->dev);
680
	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMREQDS);
L
Linus Torvalds 已提交
681 682

	/* Start by cleaning up the memory. */
683
	ip_evictor(net);
L
Linus Torvalds 已提交
684 685

	/* Lookup (or create) queue header */
686
	if ((qp = ip_find(net, ip_hdr(skb), user)) != NULL) {
687
		int ret;
L
Linus Torvalds 已提交
688

689
		spin_lock(&qp->q.lock);
L
Linus Torvalds 已提交
690

691
		ret = ip_frag_queue(qp, skb);
L
Linus Torvalds 已提交
692

693
		spin_unlock(&qp->q.lock);
694
		ipq_put(qp);
695
		return ret;
L
Linus Torvalds 已提交
696 697
	}

698
	IP_INC_STATS_BH(net, IPSTATS_MIB_REASMFAILS);
L
Linus Torvalds 已提交
699
	kfree_skb(skb);
700
	return -ENOMEM;
L
Linus Torvalds 已提交
701
}
E
Eric Dumazet 已提交
702
EXPORT_SYMBOL(ip_defrag);
L
Linus Torvalds 已提交
703

704 705
struct sk_buff *ip_check_defrag(struct sk_buff *skb, u32 user)
{
706
	struct iphdr iph;
707 708 709 710 711
	u32 len;

	if (skb->protocol != htons(ETH_P_IP))
		return skb;

712
	if (!skb_copy_bits(skb, 0, &iph, sizeof(iph)))
713 714
		return skb;

715
	if (iph.ihl < 5 || iph.version != 4)
716
		return skb;
717 718 719

	len = ntohs(iph.tot_len);
	if (skb->len < len || len < (iph.ihl * 4))
720 721
		return skb;

722
	if (ip_is_fragment(&iph)) {
723 724
		skb = skb_share_check(skb, GFP_ATOMIC);
		if (skb) {
725 726
			if (!pskb_may_pull(skb, iph.ihl*4))
				return skb;
727 728 729 730 731 732 733 734 735 736 737 738
			if (pskb_trim_rcsum(skb, len))
				return skb;
			memset(IPCB(skb), 0, sizeof(struct inet_skb_parm));
			if (ip_defrag(skb, user))
				return NULL;
			skb->rxhash = 0;
		}
	}
	return skb;
}
EXPORT_SYMBOL(ip_check_defrag);

739 740 741
#ifdef CONFIG_SYSCTL
static int zero;

742
static struct ctl_table ip4_frags_ns_ctl_table[] = {
743 744
	{
		.procname	= "ipfrag_high_thresh",
745
		.data		= &init_net.ipv4.frags.high_thresh,
746 747
		.maxlen		= sizeof(int),
		.mode		= 0644,
A
Alexey Dobriyan 已提交
748
		.proc_handler	= proc_dointvec
749 750 751
	},
	{
		.procname	= "ipfrag_low_thresh",
752
		.data		= &init_net.ipv4.frags.low_thresh,
753 754
		.maxlen		= sizeof(int),
		.mode		= 0644,
A
Alexey Dobriyan 已提交
755
		.proc_handler	= proc_dointvec
756 757 758
	},
	{
		.procname	= "ipfrag_time",
759
		.data		= &init_net.ipv4.frags.timeout,
760 761
		.maxlen		= sizeof(int),
		.mode		= 0644,
A
Alexey Dobriyan 已提交
762
		.proc_handler	= proc_dointvec_jiffies,
763
	},
764 765 766 767
	{ }
};

static struct ctl_table ip4_frags_ctl_table[] = {
768 769
	{
		.procname	= "ipfrag_secret_interval",
770
		.data		= &ip4_frags.secret_interval,
771 772
		.maxlen		= sizeof(int),
		.mode		= 0644,
A
Alexey Dobriyan 已提交
773
		.proc_handler	= proc_dointvec_jiffies,
774 775 776 777 778 779
	},
	{
		.procname	= "ipfrag_max_dist",
		.data		= &sysctl_ipfrag_max_dist,
		.maxlen		= sizeof(int),
		.mode		= 0644,
A
Alexey Dobriyan 已提交
780
		.proc_handler	= proc_dointvec_minmax,
781 782 783 784 785
		.extra1		= &zero
	},
	{ }
};

786
static int __net_init ip4_frags_ns_ctl_register(struct net *net)
787
{
788
	struct ctl_table *table;
789 790
	struct ctl_table_header *hdr;

791
	table = ip4_frags_ns_ctl_table;
O
Octavian Purdila 已提交
792
	if (!net_eq(net, &init_net)) {
793
		table = kmemdup(table, sizeof(ip4_frags_ns_ctl_table), GFP_KERNEL);
794 795 796
		if (table == NULL)
			goto err_alloc;

797 798
		table[0].data = &net->ipv4.frags.high_thresh;
		table[1].data = &net->ipv4.frags.low_thresh;
799
		table[2].data = &net->ipv4.frags.timeout;
800 801 802 803

		/* Don't export sysctls to unprivileged users */
		if (net->user_ns != &init_user_ns)
			table[0].procname = NULL;
804 805
	}

806
	hdr = register_net_sysctl(net, "net/ipv4", table);
807 808 809 810 811 812 813
	if (hdr == NULL)
		goto err_reg;

	net->ipv4.frags_hdr = hdr;
	return 0;

err_reg:
O
Octavian Purdila 已提交
814
	if (!net_eq(net, &init_net))
815 816 817 818 819
		kfree(table);
err_alloc:
	return -ENOMEM;
}

820
static void __net_exit ip4_frags_ns_ctl_unregister(struct net *net)
821 822 823 824 825 826
{
	struct ctl_table *table;

	table = net->ipv4.frags_hdr->ctl_table_arg;
	unregister_net_sysctl_table(net->ipv4.frags_hdr);
	kfree(table);
827
}
828 829 830

static void ip4_frags_ctl_register(void)
{
831
	register_net_sysctl(&init_net, "net/ipv4", ip4_frags_ctl_table);
832
}
833
#else
834
static inline int ip4_frags_ns_ctl_register(struct net *net)
835 836 837
{
	return 0;
}
838

839
static inline void ip4_frags_ns_ctl_unregister(struct net *net)
840 841
{
}
842 843 844 845

static inline void ip4_frags_ctl_register(void)
{
}
846 847
#endif

848
static int __net_init ipv4_frags_init_net(struct net *net)
849
{
850 851 852 853 854 855 856 857 858 859 860 861 862
	/* Fragment cache limits.
	 *
	 * The fragment memory accounting code, (tries to) account for
	 * the real memory usage, by measuring both the size of frag
	 * queue struct (inet_frag_queue (ipv4:ipq/ipv6:frag_queue))
	 * and the SKB's truesize.
	 *
	 * A 64K fragment consumes 129736 bytes (44*2944)+200
	 * (1500 truesize == 2944, sizeof(struct ipq) == 200)
	 *
	 * We will commit 4MB at one time. Should we cross that limit
	 * we will prune down to 3MB, making room for approx 8 big 64K
	 * fragments 8x128k.
863
	 */
864 865
	net->ipv4.frags.high_thresh = 4 * 1024 * 1024;
	net->ipv4.frags.low_thresh  = 3 * 1024 * 1024;
866 867 868 869 870 871 872
	/*
	 * Important NOTE! Fragment queue must be destroyed before MSL expires.
	 * RFC791 is wrong proposing to prolongate timer each fragment arrival
	 * by TTL.
	 */
	net->ipv4.frags.timeout = IP_FRAG_TIME;

873 874
	inet_frags_init_net(&net->ipv4.frags);

875
	return ip4_frags_ns_ctl_register(net);
876 877
}

878
static void __net_exit ipv4_frags_exit_net(struct net *net)
879
{
880
	ip4_frags_ns_ctl_unregister(net);
881 882 883 884 885 886 887 888
	inet_frags_exit_net(&net->ipv4.frags, &ip4_frags);
}

static struct pernet_operations ip4_frags_ops = {
	.init = ipv4_frags_init_net,
	.exit = ipv4_frags_exit_net,
};

889
void __init ipfrag_init(void)
L
Linus Torvalds 已提交
890
{
891
	ip4_frags_ctl_register();
892
	register_pernet_subsys(&ip4_frags_ops);
893
	ip4_frags.hashfn = ip4_hashfn;
894
	ip4_frags.constructor = ip4_frag_init;
895 896 897
	ip4_frags.destructor = ip4_frag_free;
	ip4_frags.skb_free = NULL;
	ip4_frags.qsize = sizeof(struct ipq);
898
	ip4_frags.match = ip4_frag_match;
899
	ip4_frags.frag_expire = ip_expire;
900
	ip4_frags.secret_interval = 10 * 60 * HZ;
901
	inet_frags_init(&ip4_frags);
L
Linus Torvalds 已提交
902
}