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/*
* Copyright ( C ) 2002 USAGI / WIDE Project
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*
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* 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 .
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*
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* This program is distributed in the hope that it will be useful ,
* but WITHOUT ANY WARRANTY ; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
* GNU General Public License for more details .
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*
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* You should have received a copy of the GNU General Public License
* along with this program ; if not , write to the Free Software
* Foundation , Inc . , 59 Temple Place , Suite 330 , Boston , MA 02111 - 1307 USA
*
* Authors
*
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* Mitsuru KANDA @ USAGI : IPv6 Support
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* Kazunori MIYAZAWA @ USAGI :
* Kunihiro Ishiguro < kunihiro @ ipinfusion . com >
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*
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* This file is derived from net / ipv4 / esp . c
*/
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# include <crypto/aead.h>
# include <crypto/authenc.h>
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# include <linux/err.h>
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# include <linux/module.h>
# include <net/ip.h>
# include <net/xfrm.h>
# include <net/esp.h>
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# include <linux/scatterlist.h>
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# include <linux/kernel.h>
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# include <linux/pfkeyv2.h>
# include <linux/random.h>
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# include <linux/slab.h>
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# include <linux/spinlock.h>
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# include <net/icmp.h>
# include <net/ipv6.h>
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# include <net/protocol.h>
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# include <linux/icmpv6.h>
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struct esp_skb_cb {
struct xfrm_skb_cb xfrm ;
void * tmp ;
} ;
# define ESP_SKB_CB(__skb) ((struct esp_skb_cb *)&((__skb)->cb[0]))
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static u32 esp6_get_mtu ( struct xfrm_state * x , int mtu ) ;
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/*
* Allocate an AEAD request structure with extra space for SG and IV .
*
* For alignment considerations the IV is placed at the front , followed
* by the request and finally the SG list .
*
* TODO : Use spare space in skb for this where possible .
*/
static void * esp_alloc_tmp ( struct crypto_aead * aead , int nfrags )
{
unsigned int len ;
len = crypto_aead_ivsize ( aead ) ;
if ( len ) {
len + = crypto_aead_alignmask ( aead ) &
~ ( crypto_tfm_ctx_alignment ( ) - 1 ) ;
len = ALIGN ( len , crypto_tfm_ctx_alignment ( ) ) ;
}
len + = sizeof ( struct aead_givcrypt_request ) + crypto_aead_reqsize ( aead ) ;
len = ALIGN ( len , __alignof__ ( struct scatterlist ) ) ;
len + = sizeof ( struct scatterlist ) * nfrags ;
return kmalloc ( len , GFP_ATOMIC ) ;
}
static inline u8 * esp_tmp_iv ( struct crypto_aead * aead , void * tmp )
{
return crypto_aead_ivsize ( aead ) ?
PTR_ALIGN ( ( u8 * ) tmp , crypto_aead_alignmask ( aead ) + 1 ) : tmp ;
}
static inline struct aead_givcrypt_request * esp_tmp_givreq (
struct crypto_aead * aead , u8 * iv )
{
struct aead_givcrypt_request * req ;
req = ( void * ) PTR_ALIGN ( iv + crypto_aead_ivsize ( aead ) ,
crypto_tfm_ctx_alignment ( ) ) ;
aead_givcrypt_set_tfm ( req , aead ) ;
return req ;
}
static inline struct aead_request * esp_tmp_req ( struct crypto_aead * aead , u8 * iv )
{
struct aead_request * req ;
req = ( void * ) PTR_ALIGN ( iv + crypto_aead_ivsize ( aead ) ,
crypto_tfm_ctx_alignment ( ) ) ;
aead_request_set_tfm ( req , aead ) ;
return req ;
}
static inline struct scatterlist * esp_req_sg ( struct crypto_aead * aead ,
struct aead_request * req )
{
return ( void * ) ALIGN ( ( unsigned long ) ( req + 1 ) +
crypto_aead_reqsize ( aead ) ,
__alignof__ ( struct scatterlist ) ) ;
}
static inline struct scatterlist * esp_givreq_sg (
struct crypto_aead * aead , struct aead_givcrypt_request * req )
{
return ( void * ) ALIGN ( ( unsigned long ) ( req + 1 ) +
crypto_aead_reqsize ( aead ) ,
__alignof__ ( struct scatterlist ) ) ;
}
static void esp_output_done ( struct crypto_async_request * base , int err )
{
struct sk_buff * skb = base - > data ;
kfree ( ESP_SKB_CB ( skb ) - > tmp ) ;
xfrm_output_resume ( skb , err ) ;
}
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static int esp6_output ( struct xfrm_state * x , struct sk_buff * skb )
{
int err ;
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struct ip_esp_hdr * esph ;
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struct crypto_aead * aead ;
struct aead_givcrypt_request * req ;
struct scatterlist * sg ;
struct scatterlist * asg ;
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struct sk_buff * trailer ;
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void * tmp ;
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int blksize ;
int clen ;
int alen ;
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int plen ;
int tfclen ;
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int nfrags ;
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u8 * iv ;
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u8 * tail ;
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struct esp_data * esp = x - > data ;
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/* skb is pure payload to encrypt */
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err = - ENOMEM ;
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aead = esp - > aead ;
alen = crypto_aead_authsize ( aead ) ;
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tfclen = 0 ;
if ( x - > tfcpad ) {
struct xfrm_dst * dst = ( struct xfrm_dst * ) skb_dst ( skb ) ;
u32 padto ;
padto = min ( x - > tfcpad , esp6_get_mtu ( x , dst - > child_mtu_cached ) ) ;
if ( skb - > len < padto )
tfclen = padto - skb - > len ;
}
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blksize = ALIGN ( crypto_aead_blocksize ( aead ) , 4 ) ;
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clen = ALIGN ( skb - > len + 2 + tfclen , blksize ) ;
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if ( esp - > padlen )
clen = ALIGN ( clen , esp - > padlen ) ;
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plen = clen - skb - > len - tfclen ;
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err = skb_cow_data ( skb , tfclen + plen + alen , & trailer ) ;
if ( err < 0 )
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goto error ;
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nfrags = err ;
tmp = esp_alloc_tmp ( aead , nfrags + 1 ) ;
if ( ! tmp )
goto error ;
iv = esp_tmp_iv ( aead , tmp ) ;
req = esp_tmp_givreq ( aead , iv ) ;
asg = esp_givreq_sg ( aead , req ) ;
sg = asg + 1 ;
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/* Fill padding... */
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tail = skb_tail_pointer ( trailer ) ;
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if ( tfclen ) {
memset ( tail , 0 , tfclen ) ;
tail + = tfclen ;
}
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do {
int i ;
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for ( i = 0 ; i < plen - 2 ; i + + )
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tail [ i ] = i + 1 ;
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} while ( 0 ) ;
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tail [ plen - 2 ] = plen - 2 ;
tail [ plen - 1 ] = * skb_mac_header ( skb ) ;
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pskb_put ( skb , trailer , clen - skb - > len + alen ) ;
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skb_push ( skb , - skb_network_offset ( skb ) ) ;
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esph = ip_esp_hdr ( skb ) ;
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* skb_mac_header ( skb ) = IPPROTO_ESP ;
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esph - > spi = x - > id . spi ;
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esph - > seq_no = htonl ( XFRM_SKB_CB ( skb ) - > seq . output . low ) ;
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sg_init_table ( sg , nfrags ) ;
skb_to_sgvec ( skb , sg ,
esph - > enc_data + crypto_aead_ivsize ( aead ) - skb - > data ,
clen + alen ) ;
sg_init_one ( asg , esph , sizeof ( * esph ) ) ;
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aead_givcrypt_set_callback ( req , 0 , esp_output_done , skb ) ;
aead_givcrypt_set_crypt ( req , sg , sg , clen , iv ) ;
aead_givcrypt_set_assoc ( req , asg , sizeof ( * esph ) ) ;
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aead_givcrypt_set_giv ( req , esph - > enc_data ,
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XFRM_SKB_CB ( skb ) - > seq . output . low ) ;
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ESP_SKB_CB ( skb ) - > tmp = tmp ;
err = crypto_aead_givencrypt ( req ) ;
if ( err = = - EINPROGRESS )
goto error ;
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if ( err = = - EBUSY )
err = NET_XMIT_DROP ;
kfree ( tmp ) ;
error :
return err ;
}
static int esp_input_done2 ( struct sk_buff * skb , int err )
{
struct xfrm_state * x = xfrm_input_state ( skb ) ;
struct esp_data * esp = x - > data ;
struct crypto_aead * aead = esp - > aead ;
int alen = crypto_aead_authsize ( aead ) ;
int hlen = sizeof ( struct ip_esp_hdr ) + crypto_aead_ivsize ( aead ) ;
int elen = skb - > len - hlen ;
int hdr_len = skb_network_header_len ( skb ) ;
int padlen ;
u8 nexthdr [ 2 ] ;
kfree ( ESP_SKB_CB ( skb ) - > tmp ) ;
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if ( unlikely ( err ) )
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goto out ;
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if ( skb_copy_bits ( skb , skb - > len - alen - 2 , nexthdr , 2 ) )
BUG ( ) ;
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err = - EINVAL ;
padlen = nexthdr [ 0 ] ;
if ( padlen + 2 + alen > = elen ) {
LIMIT_NETDEBUG ( KERN_WARNING " ipsec esp packet is garbage "
" padlen=%d, elen=%d \n " , padlen + 2 , elen - alen ) ;
goto out ;
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}
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/* ... check padding bits here. Silly. :-) */
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pskb_trim ( skb , skb - > len - alen - padlen - 2 ) ;
__skb_pull ( skb , hlen ) ;
skb_set_transport_header ( skb , - hdr_len ) ;
err = nexthdr [ 1 ] ;
/* RFC4303: Drop dummy packets without any error */
if ( err = = IPPROTO_NONE )
err = - EINVAL ;
out :
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return err ;
}
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static void esp_input_done ( struct crypto_async_request * base , int err )
{
struct sk_buff * skb = base - > data ;
xfrm_input_resume ( skb , esp_input_done2 ( skb , err ) ) ;
}
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static int esp6_input ( struct xfrm_state * x , struct sk_buff * skb )
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{
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struct ip_esp_hdr * esph ;
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struct esp_data * esp = x - > data ;
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struct crypto_aead * aead = esp - > aead ;
struct aead_request * req ;
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struct sk_buff * trailer ;
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int elen = skb - > len - sizeof ( * esph ) - crypto_aead_ivsize ( aead ) ;
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int nfrags ;
int ret = 0 ;
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void * tmp ;
u8 * iv ;
struct scatterlist * sg ;
struct scatterlist * asg ;
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if ( ! pskb_may_pull ( skb , sizeof ( * esph ) + crypto_aead_ivsize ( aead ) ) ) {
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ret = - EINVAL ;
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goto out ;
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}
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if ( elen < = 0 ) {
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ret = - EINVAL ;
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goto out ;
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}
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if ( ( nfrags = skb_cow_data ( skb , 0 , & trailer ) ) < 0 ) {
ret = - EINVAL ;
goto out ;
}
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ret = - ENOMEM ;
tmp = esp_alloc_tmp ( aead , nfrags + 1 ) ;
if ( ! tmp )
goto out ;
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ESP_SKB_CB ( skb ) - > tmp = tmp ;
iv = esp_tmp_iv ( aead , tmp ) ;
req = esp_tmp_req ( aead , iv ) ;
asg = esp_req_sg ( aead , req ) ;
sg = asg + 1 ;
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skb - > ip_summed = CHECKSUM_NONE ;
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esph = ( struct ip_esp_hdr * ) skb - > data ;
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/* Get ivec. This can be wrong, check against another impls. */
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iv = esph - > enc_data ;
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sg_init_table ( sg , nfrags ) ;
skb_to_sgvec ( skb , sg , sizeof ( * esph ) + crypto_aead_ivsize ( aead ) , elen ) ;
sg_init_one ( asg , esph , sizeof ( * esph ) ) ;
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aead_request_set_callback ( req , 0 , esp_input_done , skb ) ;
aead_request_set_crypt ( req , sg , sg , elen , iv ) ;
aead_request_set_assoc ( req , asg , sizeof ( * esph ) ) ;
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ret = crypto_aead_decrypt ( req ) ;
if ( ret = = - EINPROGRESS )
goto out ;
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ret = esp_input_done2 ( skb , ret ) ;
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out :
return ret ;
}
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static u32 esp6_get_mtu ( struct xfrm_state * x , int mtu )
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{
struct esp_data * esp = x - > data ;
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u32 blksize = ALIGN ( crypto_aead_blocksize ( esp - > aead ) , 4 ) ;
u32 align = max_t ( u32 , blksize , esp - > padlen ) ;
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u32 rem ;
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mtu - = x - > props . header_len + crypto_aead_authsize ( esp - > aead ) ;
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rem = mtu & ( align - 1 ) ;
mtu & = ~ ( align - 1 ) ;
if ( x - > props . mode ! = XFRM_MODE_TUNNEL ) {
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u32 padsize = ( ( blksize - 1 ) & 7 ) + 1 ;
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mtu - = blksize - padsize ;
mtu + = min_t ( u32 , blksize - padsize , rem ) ;
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}
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return mtu - 2 ;
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}
static void esp6_err ( struct sk_buff * skb , struct inet6_skb_parm * opt ,
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u8 type , u8 code , int offset , __be32 info )
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{
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struct net * net = dev_net ( skb - > dev ) ;
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struct ipv6hdr * iph = ( struct ipv6hdr * ) skb - > data ;
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struct ip_esp_hdr * esph = ( struct ip_esp_hdr * ) ( skb - > data + offset ) ;
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struct xfrm_state * x ;
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if ( type ! = ICMPV6_DEST_UNREACH & &
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type ! = ICMPV6_PKT_TOOBIG )
return ;
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x = xfrm_state_lookup ( net , skb - > mark , ( xfrm_address_t * ) & iph - > daddr , esph - > spi , IPPROTO_ESP , AF_INET6 ) ;
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if ( ! x )
return ;
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printk ( KERN_DEBUG " pmtu discovery on SA ESP/%08x/%pI6 \n " ,
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ntohl ( esph - > spi ) , & iph - > daddr ) ;
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xfrm_state_put ( x ) ;
}
static void esp6_destroy ( struct xfrm_state * x )
{
struct esp_data * esp = x - > data ;
if ( ! esp )
return ;
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crypto_free_aead ( esp - > aead ) ;
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kfree ( esp ) ;
}
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static int esp_init_aead ( struct xfrm_state * x )
{
struct esp_data * esp = x - > data ;
struct crypto_aead * aead ;
int err ;
aead = crypto_alloc_aead ( x - > aead - > alg_name , 0 , 0 ) ;
err = PTR_ERR ( aead ) ;
if ( IS_ERR ( aead ) )
goto error ;
esp - > aead = aead ;
err = crypto_aead_setkey ( aead , x - > aead - > alg_key ,
( x - > aead - > alg_key_len + 7 ) / 8 ) ;
if ( err )
goto error ;
err = crypto_aead_setauthsize ( aead , x - > aead - > alg_icv_len / 8 ) ;
if ( err )
goto error ;
error :
return err ;
}
static int esp_init_authenc ( struct xfrm_state * x )
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{
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struct esp_data * esp = x - > data ;
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struct crypto_aead * aead ;
struct crypto_authenc_key_param * param ;
struct rtattr * rta ;
char * key ;
char * p ;
char authenc_name [ CRYPTO_MAX_ALG_NAME ] ;
unsigned int keylen ;
int err ;
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err = - EINVAL ;
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if ( x - > ealg = = NULL )
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goto error ;
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err = - ENAMETOOLONG ;
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if ( snprintf ( authenc_name , CRYPTO_MAX_ALG_NAME , " authenc(%s,%s) " ,
x - > aalg ? x - > aalg - > alg_name : " digest_null " ,
x - > ealg - > alg_name ) > = CRYPTO_MAX_ALG_NAME )
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goto error ;
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aead = crypto_alloc_aead ( authenc_name , 0 , 0 ) ;
err = PTR_ERR ( aead ) ;
if ( IS_ERR ( aead ) )
goto error ;
esp - > aead = aead ;
keylen = ( x - > aalg ? ( x - > aalg - > alg_key_len + 7 ) / 8 : 0 ) +
( x - > ealg - > alg_key_len + 7 ) / 8 + RTA_SPACE ( sizeof ( * param ) ) ;
err = - ENOMEM ;
key = kmalloc ( keylen , GFP_KERNEL ) ;
if ( ! key )
goto error ;
p = key ;
rta = ( void * ) p ;
rta - > rta_type = CRYPTO_AUTHENC_KEYA_PARAM ;
rta - > rta_len = RTA_LENGTH ( sizeof ( * param ) ) ;
param = RTA_DATA ( rta ) ;
p + = RTA_SPACE ( sizeof ( * param ) ) ;
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if ( x - > aalg ) {
struct xfrm_algo_desc * aalg_desc ;
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memcpy ( p , x - > aalg - > alg_key , ( x - > aalg - > alg_key_len + 7 ) / 8 ) ;
p + = ( x - > aalg - > alg_key_len + 7 ) / 8 ;
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aalg_desc = xfrm_aalg_get_byname ( x - > aalg - > alg_name , 0 ) ;
BUG_ON ( ! aalg_desc ) ;
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err = - EINVAL ;
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if ( aalg_desc - > uinfo . auth . icv_fullbits / 8 ! =
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crypto_aead_authsize ( aead ) ) {
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NETDEBUG ( KERN_INFO " ESP: %s digestsize %u != %hu \n " ,
x - > aalg - > alg_name ,
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crypto_aead_authsize ( aead ) ,
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aalg_desc - > uinfo . auth . icv_fullbits / 8 ) ;
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goto free_key ;
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}
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err = crypto_aead_setauthsize (
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aead , x - > aalg - > alg_trunc_len / 8 ) ;
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if ( err )
goto free_key ;
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}
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param - > enckeylen = cpu_to_be32 ( ( x - > ealg - > alg_key_len + 7 ) / 8 ) ;
memcpy ( p , x - > ealg - > alg_key , ( x - > ealg - > alg_key_len + 7 ) / 8 ) ;
err = crypto_aead_setkey ( aead , key , keylen ) ;
free_key :
kfree ( key ) ;
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error :
return err ;
}
static int esp6_init_state ( struct xfrm_state * x )
{
struct esp_data * esp ;
struct crypto_aead * aead ;
u32 align ;
int err ;
if ( x - > encap )
return - EINVAL ;
esp = kzalloc ( sizeof ( * esp ) , GFP_KERNEL ) ;
if ( esp = = NULL )
return - ENOMEM ;
x - > data = esp ;
if ( x - > aead )
err = esp_init_aead ( x ) ;
else
err = esp_init_authenc ( x ) ;
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if ( err )
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goto error ;
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aead = esp - > aead ;
esp - > padlen = 0 ;
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x - > props . header_len = sizeof ( struct ip_esp_hdr ) +
crypto_aead_ivsize ( aead ) ;
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switch ( x - > props . mode ) {
case XFRM_MODE_BEET :
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if ( x - > sel . family ! = AF_INET6 )
x - > props . header_len + = IPV4_BEET_PHMAXLEN +
( sizeof ( struct ipv6hdr ) - sizeof ( struct iphdr ) ) ;
break ;
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case XFRM_MODE_TRANSPORT :
break ;
case XFRM_MODE_TUNNEL :
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x - > props . header_len + = sizeof ( struct ipv6hdr ) ;
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break ;
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default :
goto error ;
}
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align = ALIGN ( crypto_aead_blocksize ( aead ) , 4 ) ;
if ( esp - > padlen )
align = max_t ( u32 , align , esp - > padlen ) ;
x - > props . trailer_len = align + 1 + crypto_aead_authsize ( esp - > aead ) ;
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error :
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return err ;
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}
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static const struct xfrm_type esp6_type =
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{
. description = " ESP6 " ,
. owner = THIS_MODULE ,
. proto = IPPROTO_ESP ,
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. flags = XFRM_TYPE_REPLAY_PROT ,
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. init_state = esp6_init_state ,
. destructor = esp6_destroy ,
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. get_mtu = esp6_get_mtu ,
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. input = esp6_input ,
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. output = esp6_output ,
. hdr_offset = xfrm6_find_1stfragopt ,
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} ;
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static const struct inet6_protocol esp6_protocol = {
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. handler = xfrm6_rcv ,
. err_handler = esp6_err ,
. flags = INET6_PROTO_NOPOLICY ,
} ;
static int __init esp6_init ( void )
{
if ( xfrm_register_type ( & esp6_type , AF_INET6 ) < 0 ) {
printk ( KERN_INFO " ipv6 esp init: can't add xfrm type \n " ) ;
return - EAGAIN ;
}
if ( inet6_add_protocol ( & esp6_protocol , IPPROTO_ESP ) < 0 ) {
printk ( KERN_INFO " ipv6 esp init: can't add protocol \n " ) ;
xfrm_unregister_type ( & esp6_type , AF_INET6 ) ;
return - EAGAIN ;
}
return 0 ;
}
static void __exit esp6_fini ( void )
{
if ( inet6_del_protocol ( & esp6_protocol , IPPROTO_ESP ) < 0 )
printk ( KERN_INFO " ipv6 esp close: can't remove protocol \n " ) ;
if ( xfrm_unregister_type ( & esp6_type , AF_INET6 ) < 0 )
printk ( KERN_INFO " ipv6 esp close: can't remove xfrm type \n " ) ;
}
module_init ( esp6_init ) ;
module_exit ( esp6_fini ) ;
MODULE_LICENSE ( " GPL " ) ;
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MODULE_ALIAS_XFRM_TYPE ( AF_INET6 , XFRM_PROTO_ESP ) ;