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/*
* xfrm4_input . c
*
* Changes :
* YOSHIFUJI Hideaki @ USAGI
* Split up af - specific portion
* Derek Atkins < derek @ ihtfp . com >
* Add Encapsulation support
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*
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*/
# include <linux/module.h>
# include <linux/string.h>
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# include <linux/netfilter.h>
# include <linux/netfilter_ipv4.h>
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# include <net/ip.h>
# include <net/xfrm.h>
int xfrm4_rcv ( struct sk_buff * skb )
{
return xfrm4_rcv_encap ( skb , 0 ) ;
}
EXPORT_SYMBOL ( xfrm4_rcv ) ;
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static int xfrm4_parse_spi ( struct sk_buff * skb , u8 nexthdr , __be32 * spi , __be32 * seq )
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{
switch ( nexthdr ) {
case IPPROTO_IPIP :
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case IPPROTO_IPV6 :
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* spi = ip_hdr ( skb ) - > saddr ;
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* seq = 0 ;
return 0 ;
}
return xfrm_parse_spi ( skb , nexthdr , spi , seq ) ;
}
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# ifdef CONFIG_NETFILTER
static inline int xfrm4_rcv_encap_finish ( struct sk_buff * skb )
{
if ( skb - > dst = = NULL ) {
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const struct iphdr * iph = ip_hdr ( skb ) ;
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if ( ip_route_input ( skb , iph - > daddr , iph - > saddr , iph - > tos ,
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skb - > dev ) )
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goto drop ;
}
return dst_input ( skb ) ;
drop :
kfree_skb ( skb ) ;
return NET_RX_DROP ;
}
# endif
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int xfrm4_rcv_encap ( struct sk_buff * skb , __u16 encap_type )
{
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__be32 spi , seq ;
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struct xfrm_state * xfrm_vec [ XFRM_MAX_DEPTH ] ;
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struct xfrm_state * x ;
int xfrm_nr = 0 ;
int decaps = 0 ;
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int err = xfrm4_parse_spi ( skb , ip_hdr ( skb ) - > protocol , & spi , & seq ) ;
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if ( err ! = 0 )
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goto drop ;
do {
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const struct iphdr * iph = ip_hdr ( skb ) ;
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if ( xfrm_nr = = XFRM_MAX_DEPTH )
goto drop ;
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x = xfrm_state_lookup ( ( xfrm_address_t * ) & iph - > daddr , spi ,
iph - > protocol ! = IPPROTO_IPV6 ? iph - > protocol : IPPROTO_IPIP , AF_INET ) ;
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if ( x = = NULL )
goto drop ;
spin_lock ( & x - > lock ) ;
if ( unlikely ( x - > km . state ! = XFRM_STATE_VALID ) )
goto drop_unlock ;
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if ( ( x - > encap ? x - > encap - > encap_type : 0 ) ! = encap_type )
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goto drop_unlock ;
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if ( x - > props . replay_window & & xfrm_replay_check ( x , seq ) )
goto drop_unlock ;
if ( xfrm_state_check_expire ( x ) )
goto drop_unlock ;
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if ( x - > type - > input ( x , skb ) )
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goto drop_unlock ;
/* only the first xfrm gets the encap type */
encap_type = 0 ;
if ( x - > props . replay_window )
xfrm_replay_advance ( x , seq ) ;
x - > curlft . bytes + = skb - > len ;
x - > curlft . packets + + ;
spin_unlock ( & x - > lock ) ;
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xfrm_vec [ xfrm_nr + + ] = x ;
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if ( x - > mode - > input ( x , skb ) )
goto drop ;
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if ( x - > props . mode = = XFRM_MODE_TUNNEL ) {
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decaps = 1 ;
break ;
}
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err = xfrm_parse_spi ( skb , ip_hdr ( skb ) - > protocol , & spi , & seq ) ;
if ( err < 0 )
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goto drop ;
} while ( ! err ) ;
/* Allocate new secpath or COW existing one. */
if ( ! skb - > sp | | atomic_read ( & skb - > sp - > refcnt ) ! = 1 ) {
struct sec_path * sp ;
sp = secpath_dup ( skb - > sp ) ;
if ( ! sp )
goto drop ;
if ( skb - > sp )
secpath_put ( skb - > sp ) ;
skb - > sp = sp ;
}
if ( xfrm_nr + skb - > sp - > len > XFRM_MAX_DEPTH )
goto drop ;
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memcpy ( skb - > sp - > xvec + skb - > sp - > len , xfrm_vec ,
xfrm_nr * sizeof ( xfrm_vec [ 0 ] ) ) ;
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skb - > sp - > len + = xfrm_nr ;
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nf_reset ( skb ) ;
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if ( decaps ) {
if ( ! ( skb - > dev - > flags & IFF_LOOPBACK ) ) {
dst_release ( skb - > dst ) ;
skb - > dst = NULL ;
}
netif_rx ( skb ) ;
return 0 ;
} else {
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# ifdef CONFIG_NETFILTER
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__skb_push ( skb , skb - > data - skb_network_header ( skb ) ) ;
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ip_hdr ( skb ) - > tot_len = htons ( skb - > len ) ;
ip_send_check ( ip_hdr ( skb ) ) ;
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NF_HOOK ( PF_INET , NF_IP_PRE_ROUTING , skb , skb - > dev , NULL ,
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xfrm4_rcv_encap_finish ) ;
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return 0 ;
# else
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return - ip_hdr ( skb ) - > protocol ;
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# endif
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}
drop_unlock :
spin_unlock ( & x - > lock ) ;
xfrm_state_put ( x ) ;
drop :
while ( - - xfrm_nr > = 0 )
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xfrm_state_put ( xfrm_vec [ xfrm_nr ] ) ;
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kfree_skb ( skb ) ;
return 0 ;
}