arp.c 34.2 KB
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/* linux/net/ipv4/arp.c
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 *
 * Copyright (C) 1994 by Florian  La Roche
 *
 * This module implements the Address Resolution Protocol ARP (RFC 826),
 * which is used to convert IP addresses (or in the future maybe other
 * high-level addresses) into a low-level hardware address (like an Ethernet
 * address).
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * as published by the Free Software Foundation; either version
 * 2 of the License, or (at your option) any later version.
 *
 * Fixes:
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 *		Alan Cox	:	Removed the Ethernet assumptions in
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 *					Florian's code
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 *		Alan Cox	:	Fixed some small errors in the ARP
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 *					logic
 *		Alan Cox	:	Allow >4K in /proc
 *		Alan Cox	:	Make ARP add its own protocol entry
 *		Ross Martin     :       Rewrote arp_rcv() and arp_get_info()
 *		Stephen Henson	:	Add AX25 support to arp_get_info()
 *		Alan Cox	:	Drop data when a device is downed.
 *		Alan Cox	:	Use init_timer().
 *		Alan Cox	:	Double lock fixes.
 *		Martin Seine	:	Move the arphdr structure
 *					to if_arp.h for compatibility.
 *					with BSD based programs.
 *		Andrew Tridgell :       Added ARP netmask code and
 *					re-arranged proxy handling.
 *		Alan Cox	:	Changed to use notifiers.
 *		Niibe Yutaka	:	Reply for this device or proxies only.
 *		Alan Cox	:	Don't proxy across hardware types!
 *		Jonathan Naylor :	Added support for NET/ROM.
 *		Mike Shaver     :       RFC1122 checks.
 *		Jonathan Naylor :	Only lookup the hardware address for
 *					the correct hardware type.
 *		Germano Caronni	:	Assorted subtle races.
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 *		Craig Schlenter :	Don't modify permanent entry
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 *					during arp_rcv.
 *		Russ Nelson	:	Tidied up a few bits.
 *		Alexey Kuznetsov:	Major changes to caching and behaviour,
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 *					eg intelligent arp probing and
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 *					generation
 *					of host down events.
 *		Alan Cox	:	Missing unlock in device events.
 *		Eckes		:	ARP ioctl control errors.
 *		Alexey Kuznetsov:	Arp free fix.
 *		Manuel Rodriguez:	Gratuitous ARP.
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 *              Jonathan Layes  :       Added arpd support through kerneld
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 *                                      message queue (960314)
 *		Mike Shaver	:	/proc/sys/net/ipv4/arp_* support
 *		Mike McLagan    :	Routing by source
 *		Stuart Cheshire	:	Metricom and grat arp fixes
 *					*** FOR 2.1 clean this up ***
 *		Lawrence V. Stefani: (08/12/96) Added FDDI support.
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 *		Alan Cox	:	Took the AP1000 nasty FDDI hack and
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 *					folded into the mainstream FDDI code.
 *					Ack spit, Linus how did you allow that
 *					one in...
 *		Jes Sorensen	:	Make FDDI work again in 2.1.x and
 *					clean up the APFDDI & gen. FDDI bits.
 *		Alexey Kuznetsov:	new arp state machine;
 *					now it is in net/core/neighbour.c.
 *		Krzysztof Halasa:	Added Frame Relay ARP support.
 *		Arnaldo C. Melo :	convert /proc/net/arp to seq_file
 *		Shmulik Hen:		Split arp_send to arp_create and
 *					arp_xmit so intermediate drivers like
 *					bonding can change the skb before
 *					sending (e.g. insert 8021q tag).
 *		Harald Welte	:	convert to make use of jenkins hash
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 *		Jesper D. Brouer:       Proxy ARP PVLAN RFC 3069 support.
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 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/module.h>
#include <linux/types.h>
#include <linux/string.h>
#include <linux/kernel.h>
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#include <linux/capability.h>
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#include <linux/socket.h>
#include <linux/sockios.h>
#include <linux/errno.h>
#include <linux/in.h>
#include <linux/mm.h>
#include <linux/inet.h>
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#include <linux/inetdevice.h>
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#include <linux/netdevice.h>
#include <linux/etherdevice.h>
#include <linux/fddidevice.h>
#include <linux/if_arp.h>
#include <linux/skbuff.h>
#include <linux/proc_fs.h>
#include <linux/seq_file.h>
#include <linux/stat.h>
#include <linux/init.h>
#include <linux/net.h>
#include <linux/rcupdate.h>
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#include <linux/slab.h>
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#ifdef CONFIG_SYSCTL
#include <linux/sysctl.h>
#endif

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#include <net/net_namespace.h>
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#include <net/ip.h>
#include <net/icmp.h>
#include <net/route.h>
#include <net/protocol.h>
#include <net/tcp.h>
#include <net/sock.h>
#include <net/arp.h>
#include <net/ax25.h>
#include <net/netrom.h>
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#include <net/dst_metadata.h>
#include <net/ip_tunnels.h>
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#include <linux/uaccess.h>
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#include <linux/netfilter_arp.h>

/*
 *	Interface to generic neighbour cache.
 */
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static u32 arp_hash(const void *pkey, const struct net_device *dev, __u32 *hash_rnd);
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static bool arp_key_eq(const struct neighbour *n, const void *pkey);
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static int arp_constructor(struct neighbour *neigh);
static void arp_solicit(struct neighbour *neigh, struct sk_buff *skb);
static void arp_error_report(struct neighbour *neigh, struct sk_buff *skb);
static void parp_redo(struct sk_buff *skb);

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static const struct neigh_ops arp_generic_ops = {
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	.family =		AF_INET,
	.solicit =		arp_solicit,
	.error_report =		arp_error_report,
	.output =		neigh_resolve_output,
	.connected_output =	neigh_connected_output,
};

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static const struct neigh_ops arp_hh_ops = {
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	.family =		AF_INET,
	.solicit =		arp_solicit,
	.error_report =		arp_error_report,
	.output =		neigh_resolve_output,
	.connected_output =	neigh_resolve_output,
};

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static const struct neigh_ops arp_direct_ops = {
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	.family =		AF_INET,
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	.output =		neigh_direct_output,
	.connected_output =	neigh_direct_output,
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};

struct neigh_table arp_tbl = {
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	.family		= AF_INET,
	.key_len	= 4,
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	.protocol	= cpu_to_be16(ETH_P_IP),
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	.hash		= arp_hash,
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	.key_eq		= arp_key_eq,
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	.constructor	= arp_constructor,
	.proxy_redo	= parp_redo,
	.id		= "arp_cache",
	.parms		= {
		.tbl			= &arp_tbl,
		.reachable_time		= 30 * HZ,
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		.data	= {
			[NEIGH_VAR_MCAST_PROBES] = 3,
			[NEIGH_VAR_UCAST_PROBES] = 3,
			[NEIGH_VAR_RETRANS_TIME] = 1 * HZ,
			[NEIGH_VAR_BASE_REACHABLE_TIME] = 30 * HZ,
			[NEIGH_VAR_DELAY_PROBE_TIME] = 5 * HZ,
			[NEIGH_VAR_GC_STALETIME] = 60 * HZ,
			[NEIGH_VAR_QUEUE_LEN_BYTES] = 64 * 1024,
			[NEIGH_VAR_PROXY_QLEN] = 64,
			[NEIGH_VAR_ANYCAST_DELAY] = 1 * HZ,
			[NEIGH_VAR_PROXY_DELAY]	= (8 * HZ) / 10,
			[NEIGH_VAR_LOCKTIME] = 1 * HZ,
		},
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	},
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	.gc_interval	= 30 * HZ,
	.gc_thresh1	= 128,
	.gc_thresh2	= 512,
	.gc_thresh3	= 1024,
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};
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EXPORT_SYMBOL(arp_tbl);
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int arp_mc_map(__be32 addr, u8 *haddr, struct net_device *dev, int dir)
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{
	switch (dev->type) {
	case ARPHRD_ETHER:
	case ARPHRD_FDDI:
	case ARPHRD_IEEE802:
		ip_eth_mc_map(addr, haddr);
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		return 0;
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	case ARPHRD_INFINIBAND:
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		ip_ib_mc_map(addr, dev->broadcast, haddr);
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		return 0;
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	case ARPHRD_IPGRE:
		ip_ipgre_mc_map(addr, dev->broadcast, haddr);
		return 0;
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	default:
		if (dir) {
			memcpy(haddr, dev->broadcast, dev->addr_len);
			return 0;
		}
	}
	return -EINVAL;
}


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static u32 arp_hash(const void *pkey,
		    const struct net_device *dev,
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		    __u32 *hash_rnd)
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{
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	return arp_hashfn(pkey, dev, hash_rnd);
}

static bool arp_key_eq(const struct neighbour *neigh, const void *pkey)
{
	return neigh_key_eq32(neigh, pkey);
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}

static int arp_constructor(struct neighbour *neigh)
{
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	__be32 addr = *(__be32 *)neigh->primary_key;
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	struct net_device *dev = neigh->dev;
	struct in_device *in_dev;
	struct neigh_parms *parms;

	rcu_read_lock();
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	in_dev = __in_dev_get_rcu(dev);
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	if (!in_dev) {
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		rcu_read_unlock();
		return -EINVAL;
	}

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	neigh->type = inet_addr_type_dev_table(dev_net(dev), dev, addr);
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	parms = in_dev->arp_parms;
	__neigh_parms_put(neigh->parms);
	neigh->parms = neigh_parms_clone(parms);
	rcu_read_unlock();

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	if (!dev->header_ops) {
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		neigh->nud_state = NUD_NOARP;
		neigh->ops = &arp_direct_ops;
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		neigh->output = neigh_direct_output;
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	} else {
		/* Good devices (checked by reading texts, but only Ethernet is
		   tested)

		   ARPHRD_ETHER: (ethernet, apfddi)
		   ARPHRD_FDDI: (fddi)
		   ARPHRD_IEEE802: (tr)
		   ARPHRD_METRICOM: (strip)
		   ARPHRD_ARCNET:
		   etc. etc. etc.

		   ARPHRD_IPDDP will also work, if author repairs it.
		   I did not it, because this driver does not work even
		   in old paradigm.
		 */

		if (neigh->type == RTN_MULTICAST) {
			neigh->nud_state = NUD_NOARP;
			arp_mc_map(addr, neigh->ha, dev, 1);
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		} else if (dev->flags & (IFF_NOARP | IFF_LOOPBACK)) {
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			neigh->nud_state = NUD_NOARP;
			memcpy(neigh->ha, dev->dev_addr, dev->addr_len);
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		} else if (neigh->type == RTN_BROADCAST ||
			   (dev->flags & IFF_POINTOPOINT)) {
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			neigh->nud_state = NUD_NOARP;
			memcpy(neigh->ha, dev->broadcast, dev->addr_len);
		}
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		if (dev->header_ops->cache)
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			neigh->ops = &arp_hh_ops;
		else
			neigh->ops = &arp_generic_ops;
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		if (neigh->nud_state & NUD_VALID)
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			neigh->output = neigh->ops->connected_output;
		else
			neigh->output = neigh->ops->output;
	}
	return 0;
}

static void arp_error_report(struct neighbour *neigh, struct sk_buff *skb)
{
	dst_link_failure(skb);
	kfree_skb(skb);
}

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/* Create and send an arp packet. */
static void arp_send_dst(int type, int ptype, __be32 dest_ip,
			 struct net_device *dev, __be32 src_ip,
			 const unsigned char *dest_hw,
			 const unsigned char *src_hw,
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			 const unsigned char *target_hw,
			 struct dst_entry *dst)
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{
	struct sk_buff *skb;

	/* arp on this interface. */
	if (dev->flags & IFF_NOARP)
		return;

	skb = arp_create(type, ptype, dest_ip, dev, src_ip,
			 dest_hw, src_hw, target_hw);
	if (!skb)
		return;

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	skb_dst_set(skb, dst);
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	arp_xmit(skb);
}

void arp_send(int type, int ptype, __be32 dest_ip,
	      struct net_device *dev, __be32 src_ip,
	      const unsigned char *dest_hw, const unsigned char *src_hw,
	      const unsigned char *target_hw)
{
	arp_send_dst(type, ptype, dest_ip, dev, src_ip, dest_hw, src_hw,
		     target_hw, NULL);
}
EXPORT_SYMBOL(arp_send);

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static void arp_solicit(struct neighbour *neigh, struct sk_buff *skb)
{
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	__be32 saddr = 0;
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	u8 dst_ha[MAX_ADDR_LEN], *dst_hw = NULL;
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	struct net_device *dev = neigh->dev;
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	__be32 target = *(__be32 *)neigh->primary_key;
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	int probes = atomic_read(&neigh->probes);
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	struct in_device *in_dev;
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	struct dst_entry *dst = NULL;
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	rcu_read_lock();
	in_dev = __in_dev_get_rcu(dev);
	if (!in_dev) {
		rcu_read_unlock();
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		return;
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	}
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	switch (IN_DEV_ARP_ANNOUNCE(in_dev)) {
	default:
	case 0:		/* By default announce any local IP */
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		if (skb && inet_addr_type_dev_table(dev_net(dev), dev,
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					  ip_hdr(skb)->saddr) == RTN_LOCAL)
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			saddr = ip_hdr(skb)->saddr;
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		break;
	case 1:		/* Restrict announcements of saddr in same subnet */
		if (!skb)
			break;
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		saddr = ip_hdr(skb)->saddr;
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		if (inet_addr_type_dev_table(dev_net(dev), dev,
					     saddr) == RTN_LOCAL) {
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			/* saddr should be known to target */
			if (inet_addr_onlink(in_dev, target, saddr))
				break;
		}
		saddr = 0;
		break;
	case 2:		/* Avoid secondary IPs, get a primary/preferred one */
		break;
	}
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	rcu_read_unlock();
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	if (!saddr)
		saddr = inet_select_addr(dev, target, RT_SCOPE_LINK);

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	probes -= NEIGH_VAR(neigh->parms, UCAST_PROBES);
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	if (probes < 0) {
		if (!(neigh->nud_state & NUD_VALID))
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			pr_debug("trying to ucast probe in NUD_INVALID\n");
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		neigh_ha_snapshot(dst_ha, neigh, dev);
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		dst_hw = dst_ha;
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	} else {
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		probes -= NEIGH_VAR(neigh->parms, APP_PROBES);
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		if (probes < 0) {
			neigh_app_ns(neigh);
			return;
		}
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	}

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	if (skb && !(dev->priv_flags & IFF_XMIT_DST_RELEASE))
		dst = dst_clone(skb_dst(skb));
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	arp_send_dst(ARPOP_REQUEST, ETH_P_ARP, target, dev, saddr,
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		     dst_hw, dev->dev_addr, NULL, dst);
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}

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static int arp_ignore(struct in_device *in_dev, __be32 sip, __be32 tip)
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{
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	struct net *net = dev_net(in_dev->dev);
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	int scope;

	switch (IN_DEV_ARP_IGNORE(in_dev)) {
	case 0:	/* Reply, the tip is already validated */
		return 0;
	case 1:	/* Reply only if tip is configured on the incoming interface */
		sip = 0;
		scope = RT_SCOPE_HOST;
		break;
	case 2:	/*
		 * Reply only if tip is configured on the incoming interface
		 * and is in same subnet as sip
		 */
		scope = RT_SCOPE_HOST;
		break;
	case 3:	/* Do not reply for scope host addresses */
		sip = 0;
		scope = RT_SCOPE_LINK;
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		in_dev = NULL;
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		break;
	case 4:	/* Reserved */
	case 5:
	case 6:
	case 7:
		return 0;
	case 8:	/* Do not reply */
		return 1;
	default:
		return 0;
	}
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	return !inet_confirm_addr(net, in_dev, sip, tip, scope);
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}

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static int arp_filter(__be32 sip, __be32 tip, struct net_device *dev)
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{
	struct rtable *rt;
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	int flag = 0;
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	/*unsigned long now; */
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	struct net *net = dev_net(dev);
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	rt = ip_route_output(net, sip, tip, 0, 0);
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	if (IS_ERR(rt))
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		return 1;
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	if (rt->dst.dev != dev) {
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		NET_INC_STATS_BH(net, LINUX_MIB_ARPFILTER);
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		flag = 1;
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	}
	ip_rt_put(rt);
	return flag;
}
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/*
 * Check if we can use proxy ARP for this path
 */
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static inline int arp_fwd_proxy(struct in_device *in_dev,
				struct net_device *dev,	struct rtable *rt)
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{
	struct in_device *out_dev;
	int imi, omi = -1;

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	if (rt->dst.dev == dev)
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		return 0;

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	if (!IN_DEV_PROXY_ARP(in_dev))
		return 0;
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	imi = IN_DEV_MEDIUM_ID(in_dev);
	if (imi == 0)
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		return 1;
	if (imi == -1)
		return 0;

	/* place to check for proxy_arp for routes */

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	out_dev = __in_dev_get_rcu(rt->dst.dev);
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	if (out_dev)
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		omi = IN_DEV_MEDIUM_ID(out_dev);
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	return omi != imi && omi != -1;
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}

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/*
 * Check for RFC3069 proxy arp private VLAN (allow to send back to same dev)
 *
 * RFC3069 supports proxy arp replies back to the same interface.  This
 * is done to support (ethernet) switch features, like RFC 3069, where
 * the individual ports are not allowed to communicate with each
 * other, BUT they are allowed to talk to the upstream router.  As
 * described in RFC 3069, it is possible to allow these hosts to
 * communicate through the upstream router, by proxy_arp'ing.
 *
 * RFC 3069: "VLAN Aggregation for Efficient IP Address Allocation"
 *
 *  This technology is known by different names:
 *    In RFC 3069 it is called VLAN Aggregation.
 *    Cisco and Allied Telesyn call it Private VLAN.
 *    Hewlett-Packard call it Source-Port filtering or port-isolation.
 *    Ericsson call it MAC-Forced Forwarding (RFC Draft).
 *
 */
static inline int arp_fwd_pvlan(struct in_device *in_dev,
				struct net_device *dev,	struct rtable *rt,
				__be32 sip, __be32 tip)
{
	/* Private VLAN is only concerned about the same ethernet segment */
499
	if (rt->dst.dev != dev)
500 501 502 503 504 505 506 507 508 509 510 511
		return 0;

	/* Don't reply on self probes (often done by windowz boxes)*/
	if (sip == tip)
		return 0;

	if (IN_DEV_PROXY_ARP_PVLAN(in_dev))
		return 1;
	else
		return 0;
}

L
Linus Torvalds 已提交
512 513 514 515 516
/*
 *	Interface to link layer: send routine and receive handler.
 */

/*
517
 *	Create an arp packet. If dest_hw is not set, we create a broadcast
L
Linus Torvalds 已提交
518 519
 *	message.
 */
520 521
struct sk_buff *arp_create(int type, int ptype, __be32 dest_ip,
			   struct net_device *dev, __be32 src_ip,
522 523 524
			   const unsigned char *dest_hw,
			   const unsigned char *src_hw,
			   const unsigned char *target_hw)
L
Linus Torvalds 已提交
525 526 527 528
{
	struct sk_buff *skb;
	struct arphdr *arp;
	unsigned char *arp_ptr;
529 530
	int hlen = LL_RESERVED_SPACE(dev);
	int tlen = dev->needed_tailroom;
L
Linus Torvalds 已提交
531 532 533 534

	/*
	 *	Allocate a buffer
	 */
535

536
	skb = alloc_skb(arp_hdr_len(dev) + hlen + tlen, GFP_ATOMIC);
537
	if (!skb)
L
Linus Torvalds 已提交
538 539
		return NULL;

540
	skb_reserve(skb, hlen);
541
	skb_reset_network_header(skb);
542
	arp = (struct arphdr *) skb_put(skb, arp_hdr_len(dev));
L
Linus Torvalds 已提交
543 544
	skb->dev = dev;
	skb->protocol = htons(ETH_P_ARP);
545
	if (!src_hw)
L
Linus Torvalds 已提交
546
		src_hw = dev->dev_addr;
547
	if (!dest_hw)
L
Linus Torvalds 已提交
548 549 550 551 552
		dest_hw = dev->broadcast;

	/*
	 *	Fill the device header for the ARP frame
	 */
553
	if (dev_hard_header(skb, dev, ptype, dest_hw, src_hw, skb->len) < 0)
L
Linus Torvalds 已提交
554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571
		goto out;

	/*
	 * Fill out the arp protocol part.
	 *
	 * The arp hardware type should match the device type, except for FDDI,
	 * which (according to RFC 1390) should always equal 1 (Ethernet).
	 */
	/*
	 *	Exceptions everywhere. AX.25 uses the AX.25 PID value not the
	 *	DIX code for the protocol. Make these device structure fields.
	 */
	switch (dev->type) {
	default:
		arp->ar_hrd = htons(dev->type);
		arp->ar_pro = htons(ETH_P_IP);
		break;

I
Igor Maravic 已提交
572
#if IS_ENABLED(CONFIG_AX25)
L
Linus Torvalds 已提交
573 574 575 576 577
	case ARPHRD_AX25:
		arp->ar_hrd = htons(ARPHRD_AX25);
		arp->ar_pro = htons(AX25_P_IP);
		break;

I
Igor Maravic 已提交
578
#if IS_ENABLED(CONFIG_NETROM)
L
Linus Torvalds 已提交
579 580 581 582 583 584 585
	case ARPHRD_NETROM:
		arp->ar_hrd = htons(ARPHRD_NETROM);
		arp->ar_pro = htons(AX25_P_IP);
		break;
#endif
#endif

I
Igor Maravic 已提交
586
#if IS_ENABLED(CONFIG_FDDI)
L
Linus Torvalds 已提交
587 588 589 590 591 592 593 594 595 596 597
	case ARPHRD_FDDI:
		arp->ar_hrd = htons(ARPHRD_ETHER);
		arp->ar_pro = htons(ETH_P_IP);
		break;
#endif
	}

	arp->ar_hln = dev->addr_len;
	arp->ar_pln = 4;
	arp->ar_op = htons(type);

C
Changli Gao 已提交
598
	arp_ptr = (unsigned char *)(arp + 1);
L
Linus Torvalds 已提交
599 600

	memcpy(arp_ptr, src_hw, dev->addr_len);
J
Jianjun Kong 已提交
601 602 603
	arp_ptr += dev->addr_len;
	memcpy(arp_ptr, &src_ip, 4);
	arp_ptr += 4;
604 605 606 607 608 609 610

	switch (dev->type) {
#if IS_ENABLED(CONFIG_FIREWIRE_NET)
	case ARPHRD_IEEE1394:
		break;
#endif
	default:
611
		if (target_hw)
612 613 614 615 616
			memcpy(arp_ptr, target_hw, dev->addr_len);
		else
			memset(arp_ptr, 0, dev->addr_len);
		arp_ptr += dev->addr_len;
	}
L
Linus Torvalds 已提交
617 618 619 620 621 622 623 624
	memcpy(arp_ptr, &dest_ip, 4);

	return skb;

out:
	kfree_skb(skb);
	return NULL;
}
E
Eric Dumazet 已提交
625
EXPORT_SYMBOL(arp_create);
L
Linus Torvalds 已提交
626 627 628 629 630 631 632

/*
 *	Send an arp packet.
 */
void arp_xmit(struct sk_buff *skb)
{
	/* Send it off, maybe filter it using firewalling first.  */
633 634
	NF_HOOK(NFPROTO_ARP, NF_ARP_OUT, NULL, skb,
		NULL, skb->dev, dev_queue_xmit_sk);
L
Linus Torvalds 已提交
635
}
E
Eric Dumazet 已提交
636
EXPORT_SYMBOL(arp_xmit);
L
Linus Torvalds 已提交
637 638 639 640 641

/*
 *	Process an arp request.
 */

642
static int arp_process(struct sock *sk, struct sk_buff *skb)
L
Linus Torvalds 已提交
643 644
{
	struct net_device *dev = skb->dev;
E
Eric Dumazet 已提交
645
	struct in_device *in_dev = __in_dev_get_rcu(dev);
L
Linus Torvalds 已提交
646 647 648
	struct arphdr *arp;
	unsigned char *arp_ptr;
	struct rtable *rt;
M
Mark Ryden 已提交
649
	unsigned char *sha;
A
Al Viro 已提交
650
	__be32 sip, tip;
L
Linus Torvalds 已提交
651 652 653
	u16 dev_type = dev->type;
	int addr_type;
	struct neighbour *n;
654
	struct net *net = dev_net(dev);
655
	struct dst_entry *reply_dst = NULL;
656
	bool is_garp = false;
L
Linus Torvalds 已提交
657 658 659 660 661

	/* arp_rcv below verifies the ARP header and verifies the device
	 * is ARP'able.
	 */

662
	if (!in_dev)
L
Linus Torvalds 已提交
663 664
		goto out;

665
	arp = arp_hdr(skb);
L
Linus Torvalds 已提交
666 667

	switch (dev_type) {
668
	default:
L
Linus Torvalds 已提交
669 670 671 672 673 674 675 676
		if (arp->ar_pro != htons(ETH_P_IP) ||
		    htons(dev_type) != arp->ar_hrd)
			goto out;
		break;
	case ARPHRD_ETHER:
	case ARPHRD_FDDI:
	case ARPHRD_IEEE802:
		/*
677
		 * ETHERNET, and Fibre Channel (which are IEEE 802
L
Linus Torvalds 已提交
678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710
		 * devices, according to RFC 2625) devices will accept ARP
		 * hardware types of either 1 (Ethernet) or 6 (IEEE 802.2).
		 * This is the case also of FDDI, where the RFC 1390 says that
		 * FDDI devices should accept ARP hardware of (1) Ethernet,
		 * however, to be more robust, we'll accept both 1 (Ethernet)
		 * or 6 (IEEE 802.2)
		 */
		if ((arp->ar_hrd != htons(ARPHRD_ETHER) &&
		     arp->ar_hrd != htons(ARPHRD_IEEE802)) ||
		    arp->ar_pro != htons(ETH_P_IP))
			goto out;
		break;
	case ARPHRD_AX25:
		if (arp->ar_pro != htons(AX25_P_IP) ||
		    arp->ar_hrd != htons(ARPHRD_AX25))
			goto out;
		break;
	case ARPHRD_NETROM:
		if (arp->ar_pro != htons(AX25_P_IP) ||
		    arp->ar_hrd != htons(ARPHRD_NETROM))
			goto out;
		break;
	}

	/* Understand only these message types */

	if (arp->ar_op != htons(ARPOP_REPLY) &&
	    arp->ar_op != htons(ARPOP_REQUEST))
		goto out;

/*
 *	Extract fields
 */
C
Changli Gao 已提交
711
	arp_ptr = (unsigned char *)(arp + 1);
L
Linus Torvalds 已提交
712 713 714 715
	sha	= arp_ptr;
	arp_ptr += dev->addr_len;
	memcpy(&sip, arp_ptr, 4);
	arp_ptr += 4;
716 717 718 719 720 721 722 723
	switch (dev_type) {
#if IS_ENABLED(CONFIG_FIREWIRE_NET)
	case ARPHRD_IEEE1394:
		break;
#endif
	default:
		arp_ptr += dev->addr_len;
	}
L
Linus Torvalds 已提交
724
	memcpy(&tip, arp_ptr, 4);
725
/*
L
Linus Torvalds 已提交
726 727 728
 *	Check for bad requests for 127.x.x.x and requests for multicast
 *	addresses.  If this is one such, delete it.
 */
729 730
	if (ipv4_is_multicast(tip) ||
	    (!IN_DEV_ROUTE_LOCALNET(in_dev) && ipv4_is_loopback(tip)))
L
Linus Torvalds 已提交
731 732 733 734 735 736 737 738 739 740 741 742
		goto out;

/*
 *     Special case: We must set Frame Relay source Q.922 address
 */
	if (dev_type == ARPHRD_DLCI)
		sha = dev->broadcast;

/*
 *  Process entry.  The idea here is we want to send a reply if it is a
 *  request for us or if it is a request for someone else that we hold
 *  a proxy for.  We want to add an entry to our cache if it is a reply
743 744 745 746
 *  to us or if it is a request for our address.
 *  (The assumption for this last is that if someone is requesting our
 *  address, they are probably intending to talk to us, so it saves time
 *  if we cache their address.  Their address is also probably not in
L
Linus Torvalds 已提交
747
 *  our cache, since ours is not in their cache.)
748
 *
L
Linus Torvalds 已提交
749 750 751
 *  Putting this another way, we only care about replies if they are to
 *  us, in which case we add them to the cache.  For requests, we care
 *  about those for us and those for our proxies.  We reply to both,
752
 *  and in the case of requests for us we add the requester to the arp
L
Linus Torvalds 已提交
753 754 755
 *  cache.
 */

756 757 758 759 760
	if (arp->ar_op == htons(ARPOP_REQUEST) && skb_metadata_dst(skb))
		reply_dst = (struct dst_entry *)
			    iptunnel_metadata_reply(skb_metadata_dst(skb),
						    GFP_ATOMIC);

761 762
	/* Special case: IPv4 duplicate address detection packet (RFC2131) */
	if (sip == 0) {
L
Linus Torvalds 已提交
763
		if (arp->ar_op == htons(ARPOP_REQUEST) &&
D
David Ahern 已提交
764
		    inet_addr_type_dev_table(net, dev, tip) == RTN_LOCAL &&
765
		    !arp_ignore(in_dev, sip, tip))
766 767
			arp_send_dst(ARPOP_REPLY, ETH_P_ARP, sip, dev, tip,
				     sha, dev->dev_addr, sha, reply_dst);
L
Linus Torvalds 已提交
768 769 770 771
		goto out;
	}

	if (arp->ar_op == htons(ARPOP_REQUEST) &&
772
	    ip_route_input_noref(skb, tip, sip, 0, dev) == 0) {
L
Linus Torvalds 已提交
773

E
Eric Dumazet 已提交
774
		rt = skb_rtable(skb);
L
Linus Torvalds 已提交
775 776 777
		addr_type = rt->rt_type;

		if (addr_type == RTN_LOCAL) {
C
Changli Gao 已提交
778
			int dont_send;
779

C
Changli Gao 已提交
780
			dont_send = arp_ignore(in_dev, sip, tip);
781
			if (!dont_send && IN_DEV_ARPFILTER(in_dev))
C
Changli Gao 已提交
782
				dont_send = arp_filter(sip, tip, dev);
783 784 785
			if (!dont_send) {
				n = neigh_event_ns(&arp_tbl, sha, &sip, dev);
				if (n) {
786 787 788 789
					arp_send_dst(ARPOP_REPLY, ETH_P_ARP,
						     sip, dev, tip, sha,
						     dev->dev_addr, sha,
						     reply_dst);
790 791
					neigh_release(n);
				}
L
Linus Torvalds 已提交
792 793 794
			}
			goto out;
		} else if (IN_DEV_FORWARD(in_dev)) {
795 796 797
			if (addr_type == RTN_UNICAST  &&
			    (arp_fwd_proxy(in_dev, dev, rt) ||
			     arp_fwd_pvlan(in_dev, dev, rt, sip, tip) ||
798 799
			     (rt->dst.dev != dev &&
			      pneigh_lookup(&arp_tbl, net, &tip, dev, 0)))) {
L
Linus Torvalds 已提交
800 801 802 803
				n = neigh_event_ns(&arp_tbl, sha, &sip, dev);
				if (n)
					neigh_release(n);

804
				if (NEIGH_CB(skb)->flags & LOCALLY_ENQUEUED ||
L
Linus Torvalds 已提交
805
				    skb->pkt_type == PACKET_HOST ||
J
Jiri Pirko 已提交
806
				    NEIGH_VAR(in_dev->arp_parms, PROXY_DELAY) == 0) {
807 808 809 810
					arp_send_dst(ARPOP_REPLY, ETH_P_ARP,
						     sip, dev, tip, sha,
						     dev->dev_addr, sha,
						     reply_dst);
L
Linus Torvalds 已提交
811
				} else {
C
Changli Gao 已提交
812 813
					pneigh_enqueue(&arp_tbl,
						       in_dev->arp_parms, skb);
L
Linus Torvalds 已提交
814 815 816 817 818 819 820 821 822 823 824
					return 0;
				}
				goto out;
			}
		}
	}

	/* Update our ARP tables */

	n = __neigh_lookup(&arp_tbl, &sip, dev, 0);

825
	if (IN_DEV_ARP_ACCEPT(in_dev)) {
D
David Ahern 已提交
826 827
		unsigned int addr_type = inet_addr_type_dev_table(net, dev, sip);

828 829 830 831
		/* Unsolicited ARP is not accepted by default.
		   It is possible, that this option should be enabled for some
		   devices (strip is candidate)
		 */
832
		is_garp = arp->ar_op == htons(ARPOP_REQUEST) && tip == sip &&
D
David Ahern 已提交
833
			  addr_type == RTN_UNICAST;
834

835
		if (!n &&
836
		    ((arp->ar_op == htons(ARPOP_REPLY)  &&
D
David Ahern 已提交
837
				addr_type == RTN_UNICAST) || is_garp))
838
			n = __neigh_lookup(&arp_tbl, &sip, dev, 1);
839
	}
L
Linus Torvalds 已提交
840 841 842 843 844 845 846 847 848 849

	if (n) {
		int state = NUD_REACHABLE;
		int override;

		/* If several different ARP replies follows back-to-back,
		   use the FIRST one. It is possible, if several proxy
		   agents are active. Taking the first reply prevents
		   arp trashing and chooses the fastest router.
		 */
850 851 852 853
		override = time_after(jiffies,
				      n->updated +
				      NEIGH_VAR(n->parms, LOCKTIME)) ||
			   is_garp;
L
Linus Torvalds 已提交
854 855 856 857 858 859 860

		/* Broadcast replies and request packets
		   do not assert neighbour reachability.
		 */
		if (arp->ar_op != htons(ARPOP_REPLY) ||
		    skb->pkt_type != PACKET_HOST)
			state = NUD_STALE;
C
Changli Gao 已提交
861 862
		neigh_update(n, sha, state,
			     override ? NEIGH_UPDATE_F_OVERRIDE : 0);
L
Linus Torvalds 已提交
863 864 865 866
		neigh_release(n);
	}

out:
867
	consume_skb(skb);
L
Linus Torvalds 已提交
868 869 870
	return 0;
}

H
Herbert Xu 已提交
871 872
static void parp_redo(struct sk_buff *skb)
{
873
	arp_process(NULL, skb);
H
Herbert Xu 已提交
874 875
}

L
Linus Torvalds 已提交
876 877 878 879 880

/*
 *	Receive an arp request from the device layer.
 */

A
Adrian Bunk 已提交
881 882
static int arp_rcv(struct sk_buff *skb, struct net_device *dev,
		   struct packet_type *pt, struct net_device *orig_dev)
L
Linus Torvalds 已提交
883
{
884 885
	const struct arphdr *arp;

886
	/* do not tweak dropwatch on an ARP we will ignore */
887 888 889
	if (dev->flags & IFF_NOARP ||
	    skb->pkt_type == PACKET_OTHERHOST ||
	    skb->pkt_type == PACKET_LOOPBACK)
890
		goto consumeskb;
891 892 893 894

	skb = skb_share_check(skb, GFP_ATOMIC);
	if (!skb)
		goto out_of_mem;
L
Linus Torvalds 已提交
895 896

	/* ARP header, plus 2 device addresses, plus 2 IP addresses.  */
897
	if (!pskb_may_pull(skb, arp_hdr_len(dev)))
L
Linus Torvalds 已提交
898 899
		goto freeskb;

900
	arp = arp_hdr(skb);
901
	if (arp->ar_hln != dev->addr_len || arp->ar_pln != 4)
L
Linus Torvalds 已提交
902 903
		goto freeskb;

904 905
	memset(NEIGH_CB(skb), 0, sizeof(struct neighbour_cb));

906 907
	return NF_HOOK(NFPROTO_ARP, NF_ARP_IN, NULL, skb,
		       dev, NULL, arp_process);
L
Linus Torvalds 已提交
908

909 910 911
consumeskb:
	consume_skb(skb);
	return 0;
L
Linus Torvalds 已提交
912 913 914 915 916 917 918 919 920 921 922 923 924 925
freeskb:
	kfree_skb(skb);
out_of_mem:
	return 0;
}

/*
 *	User level interface (ioctl)
 */

/*
 *	Set (create) an ARP cache entry.
 */

926
static int arp_req_set_proxy(struct net *net, struct net_device *dev, int on)
927
{
928
	if (!dev) {
929
		IPV4_DEVCONF_ALL(net, PROXY_ARP) = on;
930 931
		return 0;
	}
E
Eric Dumazet 已提交
932 933
	if (__in_dev_get_rtnl(dev)) {
		IN_DEV_CONF_SET(__in_dev_get_rtnl(dev), PROXY_ARP, on);
934 935 936 937 938
		return 0;
	}
	return -ENXIO;
}

939 940
static int arp_req_set_public(struct net *net, struct arpreq *r,
		struct net_device *dev)
941 942 943 944 945 946 947
{
	__be32 ip = ((struct sockaddr_in *)&r->arp_pa)->sin_addr.s_addr;
	__be32 mask = ((struct sockaddr_in *)&r->arp_netmask)->sin_addr.s_addr;

	if (mask && mask != htonl(0xFFFFFFFF))
		return -EINVAL;
	if (!dev && (r->arp_flags & ATF_COM)) {
948
		dev = dev_getbyhwaddr_rcu(net, r->arp_ha.sa_family,
C
Changli Gao 已提交
949
				      r->arp_ha.sa_data);
950 951 952 953
		if (!dev)
			return -ENODEV;
	}
	if (mask) {
954
		if (!pneigh_lookup(&arp_tbl, net, &ip, dev, 1))
955 956 957
			return -ENOBUFS;
		return 0;
	}
958

959
	return arp_req_set_proxy(net, dev, 1);
960 961
}

962
static int arp_req_set(struct net *net, struct arpreq *r,
C
Changli Gao 已提交
963
		       struct net_device *dev)
L
Linus Torvalds 已提交
964
{
965
	__be32 ip;
L
Linus Torvalds 已提交
966 967 968
	struct neighbour *neigh;
	int err;

969
	if (r->arp_flags & ATF_PUBL)
970
		return arp_req_set_public(net, r, dev);
L
Linus Torvalds 已提交
971

972
	ip = ((struct sockaddr_in *)&r->arp_pa)->sin_addr.s_addr;
L
Linus Torvalds 已提交
973 974
	if (r->arp_flags & ATF_PERM)
		r->arp_flags |= ATF_COM;
975
	if (!dev) {
976
		struct rtable *rt = ip_route_output(net, ip, 0, RTO_ONLINK, 0);
977 978 979

		if (IS_ERR(rt))
			return PTR_ERR(rt);
980
		dev = rt->dst.dev;
L
Linus Torvalds 已提交
981 982 983 984 985
		ip_rt_put(rt);
		if (!dev)
			return -EINVAL;
	}
	switch (dev->type) {
I
Igor Maravic 已提交
986
#if IS_ENABLED(CONFIG_FDDI)
L
Linus Torvalds 已提交
987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008
	case ARPHRD_FDDI:
		/*
		 * According to RFC 1390, FDDI devices should accept ARP
		 * hardware types of 1 (Ethernet).  However, to be more
		 * robust, we'll accept hardware types of either 1 (Ethernet)
		 * or 6 (IEEE 802.2).
		 */
		if (r->arp_ha.sa_family != ARPHRD_FDDI &&
		    r->arp_ha.sa_family != ARPHRD_ETHER &&
		    r->arp_ha.sa_family != ARPHRD_IEEE802)
			return -EINVAL;
		break;
#endif
	default:
		if (r->arp_ha.sa_family != dev->type)
			return -EINVAL;
		break;
	}

	neigh = __neigh_lookup_errno(&arp_tbl, &ip, dev);
	err = PTR_ERR(neigh);
	if (!IS_ERR(neigh)) {
1009
		unsigned int state = NUD_STALE;
L
Linus Torvalds 已提交
1010 1011
		if (r->arp_flags & ATF_PERM)
			state = NUD_PERMANENT;
C
Changli Gao 已提交
1012
		err = neigh_update(neigh, (r->arp_flags & ATF_COM) ?
1013
				   r->arp_ha.sa_data : NULL, state,
C
Changli Gao 已提交
1014
				   NEIGH_UPDATE_F_OVERRIDE |
L
Linus Torvalds 已提交
1015 1016 1017 1018 1019 1020
				   NEIGH_UPDATE_F_ADMIN);
		neigh_release(neigh);
	}
	return err;
}

1021
static unsigned int arp_state_to_flags(struct neighbour *neigh)
L
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{
	if (neigh->nud_state&NUD_PERMANENT)
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		return ATF_PERM | ATF_COM;
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1025
	else if (neigh->nud_state&NUD_VALID)
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		return ATF_COM;
	else
		return 0;
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}

/*
 *	Get an ARP cache entry.
 */

static int arp_req_get(struct arpreq *r, struct net_device *dev)
{
1037
	__be32 ip = ((struct sockaddr_in *) &r->arp_pa)->sin_addr.s_addr;
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	struct neighbour *neigh;
	int err = -ENXIO;

	neigh = neigh_lookup(&arp_tbl, &ip, dev);
	if (neigh) {
1043 1044 1045 1046 1047 1048 1049 1050 1051
		if (!(neigh->nud_state & NUD_NOARP)) {
			read_lock_bh(&neigh->lock);
			memcpy(r->arp_ha.sa_data, neigh->ha, dev->addr_len);
			r->arp_flags = arp_state_to_flags(neigh);
			read_unlock_bh(&neigh->lock);
			r->arp_ha.sa_family = dev->type;
			strlcpy(r->arp_dev, dev->name, sizeof(r->arp_dev));
			err = 0;
		}
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		neigh_release(neigh);
	}
	return err;
}

1057
static int arp_invalidate(struct net_device *dev, __be32 ip)
1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072
{
	struct neighbour *neigh = neigh_lookup(&arp_tbl, &ip, dev);
	int err = -ENXIO;

	if (neigh) {
		if (neigh->nud_state & ~NUD_NOARP)
			err = neigh_update(neigh, NULL, NUD_FAILED,
					   NEIGH_UPDATE_F_OVERRIDE|
					   NEIGH_UPDATE_F_ADMIN);
		neigh_release(neigh);
	}

	return err;
}

1073 1074
static int arp_req_delete_public(struct net *net, struct arpreq *r,
		struct net_device *dev)
1075 1076 1077 1078 1079
{
	__be32 ip = ((struct sockaddr_in *) &r->arp_pa)->sin_addr.s_addr;
	__be32 mask = ((struct sockaddr_in *)&r->arp_netmask)->sin_addr.s_addr;

	if (mask == htonl(0xFFFFFFFF))
1080
		return pneigh_delete(&arp_tbl, net, &ip, dev);
1081

1082 1083 1084
	if (mask)
		return -EINVAL;

1085
	return arp_req_set_proxy(net, dev, 0);
1086 1087
}

1088
static int arp_req_delete(struct net *net, struct arpreq *r,
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			  struct net_device *dev)
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{
1091
	__be32 ip;
L
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1093
	if (r->arp_flags & ATF_PUBL)
1094
		return arp_req_delete_public(net, r, dev);
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1096
	ip = ((struct sockaddr_in *)&r->arp_pa)->sin_addr.s_addr;
1097
	if (!dev) {
1098
		struct rtable *rt = ip_route_output(net, ip, 0, RTO_ONLINK, 0);
1099 1100
		if (IS_ERR(rt))
			return PTR_ERR(rt);
1101
		dev = rt->dst.dev;
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		ip_rt_put(rt);
		if (!dev)
			return -EINVAL;
	}
1106
	return arp_invalidate(dev, ip);
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}

/*
 *	Handle an ARP layer I/O control request.
 */

1113
int arp_ioctl(struct net *net, unsigned int cmd, void __user *arg)
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{
	int err;
	struct arpreq r;
	struct net_device *dev = NULL;

	switch (cmd) {
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	case SIOCDARP:
	case SIOCSARP:
1122
		if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
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			return -EPERM;
	case SIOCGARP:
		err = copy_from_user(&r, arg, sizeof(struct arpreq));
		if (err)
			return -EFAULT;
		break;
	default:
		return -EINVAL;
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	}

	if (r.arp_pa.sa_family != AF_INET)
		return -EPFNOSUPPORT;

	if (!(r.arp_flags & ATF_PUBL) &&
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	    (r.arp_flags & (ATF_NETMASK | ATF_DONTPUB)))
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		return -EINVAL;
	if (!(r.arp_flags & ATF_NETMASK))
		((struct sockaddr_in *)&r.arp_netmask)->sin_addr.s_addr =
							   htonl(0xFFFFFFFFUL);
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	rtnl_lock();
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	if (r.arp_dev[0]) {
		err = -ENODEV;
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		dev = __dev_get_by_name(net, r.arp_dev);
1146
		if (!dev)
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			goto out;

		/* Mmmm... It is wrong... ARPHRD_NETROM==0 */
		if (!r.arp_ha.sa_family)
			r.arp_ha.sa_family = dev->type;
		err = -EINVAL;
		if ((r.arp_flags & ATF_COM) && r.arp_ha.sa_family != dev->type)
			goto out;
	} else if (cmd == SIOCGARP) {
		err = -ENODEV;
		goto out;
	}

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	switch (cmd) {
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	case SIOCDARP:
1162
		err = arp_req_delete(net, &r, dev);
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		break;
	case SIOCSARP:
1165
		err = arp_req_set(net, &r, dev);
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		break;
	case SIOCGARP:
		err = arp_req_get(&r, dev);
		break;
	}
out:
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	rtnl_unlock();
1173 1174
	if (cmd == SIOCGARP && !err && copy_to_user(arg, &r, sizeof(r)))
		err = -EFAULT;
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	return err;
}

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static int arp_netdev_event(struct notifier_block *this, unsigned long event,
			    void *ptr)
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{
1181
	struct net_device *dev = netdev_notifier_info_to_dev(ptr);
1182
	struct netdev_notifier_change_info *change_info;
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	switch (event) {
	case NETDEV_CHANGEADDR:
		neigh_changeaddr(&arp_tbl, dev);
1187
		rt_cache_flush(dev_net(dev));
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		break;
1189 1190 1191 1192 1193
	case NETDEV_CHANGE:
		change_info = ptr;
		if (change_info->flags_changed & IFF_NOARP)
			neigh_changeaddr(&arp_tbl, dev);
		break;
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	default:
		break;
	}

	return NOTIFY_DONE;
}

static struct notifier_block arp_netdev_notifier = {
	.notifier_call = arp_netdev_event,
};

/* Note, that it is not on notifier chain.
   It is necessary, that this routine was called after route cache will be
   flushed.
 */
void arp_ifdown(struct net_device *dev)
{
	neigh_ifdown(&arp_tbl, dev);
}


/*
 *	Called once on startup.
 */

1219
static struct packet_type arp_packet_type __read_mostly = {
1220
	.type =	cpu_to_be16(ETH_P_ARP),
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	.func =	arp_rcv,
};

static int arp_proc_init(void);

void __init arp_init(void)
{
1228
	neigh_table_init(NEIGH_ARP_TABLE, &arp_tbl);
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	dev_add_pack(&arp_packet_type);
	arp_proc_init();
#ifdef CONFIG_SYSCTL
1233
	neigh_sysctl_register(NULL, &arp_tbl.parms, NULL);
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#endif
	register_netdevice_notifier(&arp_netdev_notifier);
}

#ifdef CONFIG_PROC_FS
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#if IS_ENABLED(CONFIG_AX25)
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/* ------------------------------------------------------------------------ */
/*
 *	ax25 -> ASCII conversion
 */
static char *ax2asc2(ax25_address *a, char *buf)
{
	char c, *s;
	int n;

	for (n = 0, s = buf; n < 6; n++) {
		c = (a->ax25_call[n] >> 1) & 0x7F;

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		if (c != ' ')
			*s++ = c;
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	}
1256

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	*s++ = '-';
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	n = (a->ax25_call[6] >> 1) & 0x0F;
	if (n > 9) {
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		*s++ = '1';
		n -= 10;
	}
1263

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	*s++ = n + '0';
	*s++ = '\0';

	if (*buf == '\0' || *buf == '-')
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		return "*";
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	return buf;
}
#endif /* CONFIG_AX25 */

#define HBUFFERLEN 30

static void arp_format_neigh_entry(struct seq_file *seq,
				   struct neighbour *n)
{
	char hbuffer[HBUFFERLEN];
	int k, j;
	char tbuf[16];
	struct net_device *dev = n->dev;
	int hatype = dev->type;

	read_lock(&n->lock);
	/* Convert hardware address to XX:XX:XX:XX ... form. */
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#if IS_ENABLED(CONFIG_AX25)
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	if (hatype == ARPHRD_AX25 || hatype == ARPHRD_NETROM)
		ax2asc2((ax25_address *)n->ha, hbuffer);
	else {
#endif
	for (k = 0, j = 0; k < HBUFFERLEN - 3 && j < dev->addr_len; j++) {
1293 1294
		hbuffer[k++] = hex_asc_hi(n->ha[j]);
		hbuffer[k++] = hex_asc_lo(n->ha[j]);
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		hbuffer[k++] = ':';
	}
1297 1298 1299
	if (k != 0)
		--k;
	hbuffer[k] = 0;
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#if IS_ENABLED(CONFIG_AX25)
L
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	}
#endif
1303
	sprintf(tbuf, "%pI4", n->primary_key);
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	seq_printf(seq, "%-16s 0x%-10x0x%-10x%s     *        %s\n",
		   tbuf, hatype, arp_state_to_flags(n), hbuffer, dev->name);
	read_unlock(&n->lock);
}

static void arp_format_pneigh_entry(struct seq_file *seq,
				    struct pneigh_entry *n)
{
	struct net_device *dev = n->dev;
	int hatype = dev ? dev->type : 0;
	char tbuf[16];

1316
	sprintf(tbuf, "%pI4", n->key);
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	seq_printf(seq, "%-16s 0x%-10x0x%-10x%s     *        %s\n",
		   tbuf, hatype, ATF_PUBL | ATF_PERM, "00:00:00:00:00:00",
		   dev ? dev->name : "*");
}

static int arp_seq_show(struct seq_file *seq, void *v)
{
	if (v == SEQ_START_TOKEN) {
		seq_puts(seq, "IP address       HW type     Flags       "
			      "HW address            Mask     Device\n");
	} else {
		struct neigh_seq_state *state = seq->private;

		if (state->flags & NEIGH_SEQ_IS_PNEIGH)
			arp_format_pneigh_entry(seq, v);
		else
			arp_format_neigh_entry(seq, v);
	}

	return 0;
}

static void *arp_seq_start(struct seq_file *seq, loff_t *pos)
{
	/* Don't want to confuse "arp -a" w/ magic entries,
	 * so we tell the generic iterator to skip NUD_NOARP.
	 */
	return neigh_seq_start(seq, pos, &arp_tbl, NEIGH_SEQ_SKIP_NOARP);
}

/* ------------------------------------------------------------------------ */

1349
static const struct seq_operations arp_seq_ops = {
C
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	.start	= arp_seq_start,
	.next	= neigh_seq_next,
	.stop	= neigh_seq_stop,
	.show	= arp_seq_show,
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};

static int arp_seq_open(struct inode *inode, struct file *file)
{
1358 1359
	return seq_open_net(inode, file, &arp_seq_ops,
			    sizeof(struct neigh_seq_state));
L
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}

1362
static const struct file_operations arp_seq_fops = {
L
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	.owner		= THIS_MODULE,
	.open           = arp_seq_open,
	.read           = seq_read,
	.llseek         = seq_lseek,
1367
	.release	= seq_release_net,
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};

1370 1371

static int __net_init arp_net_init(struct net *net)
L
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{
1373
	if (!proc_create("arp", S_IRUGO, net->proc_net, &arp_seq_fops))
L
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		return -ENOMEM;
	return 0;
}

1378 1379
static void __net_exit arp_net_exit(struct net *net)
{
1380
	remove_proc_entry("arp", net->proc_net);
1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392
}

static struct pernet_operations arp_net_ops = {
	.init = arp_net_init,
	.exit = arp_net_exit,
};

static int __init arp_proc_init(void)
{
	return register_pernet_subsys(&arp_net_ops);
}

L
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#else /* CONFIG_PROC_FS */

static int __init arp_proc_init(void)
{
	return 0;
}

#endif /* CONFIG_PROC_FS */