2 * Checksum updating actions
4 * Copyright (c) 2010 Gregoire Baron <baronchon@n7mm.org>
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the Free
8 * Software Foundation; either version 2 of the License, or (at your option)
13 #include <linux/types.h>
14 #include <linux/init.h>
15 #include <linux/kernel.h>
16 #include <linux/module.h>
17 #include <linux/spinlock.h>
19 #include <linux/netlink.h>
20 #include <net/netlink.h>
21 #include <linux/rtnetlink.h>
23 #include <linux/skbuff.h>
28 #include <linux/icmpv6.h>
29 #include <linux/igmp.h>
32 #include <net/ip6_checksum.h>
34 #include <net/act_api.h>
36 #include <linux/tc_act/tc_csum.h>
37 #include <net/tc_act/tc_csum.h>
39 #define CSUM_TAB_MASK 15
40 static struct tcf_hashinfo csum_hash_info
;
42 static const struct nla_policy csum_policy
[TCA_CSUM_MAX
+ 1] = {
43 [TCA_CSUM_PARMS
] = { .len
= sizeof(struct tc_csum
), },
46 static int tcf_csum_init(struct net
*n
, struct nlattr
*nla
, struct nlattr
*est
,
47 struct tc_action
*a
, int ovr
, int bind
)
49 struct nlattr
*tb
[TCA_CSUM_MAX
+ 1];
51 struct tcf_common
*pc
;
58 err
= nla_parse_nested(tb
, TCA_CSUM_MAX
, nla
, csum_policy
);
62 if (tb
[TCA_CSUM_PARMS
] == NULL
)
64 parm
= nla_data(tb
[TCA_CSUM_PARMS
]);
66 pc
= tcf_hash_check(parm
->index
, a
, bind
);
68 pc
= tcf_hash_create(parm
->index
, est
, a
, sizeof(*p
), bind
);
73 if (bind
)/* dont override defaults */
75 tcf_hash_release(pc
, bind
, a
->ops
->hinfo
);
81 spin_lock_bh(&p
->tcf_lock
);
82 p
->tcf_action
= parm
->action
;
83 p
->update_flags
= parm
->update_flags
;
84 spin_unlock_bh(&p
->tcf_lock
);
86 if (ret
== ACT_P_CREATED
)
87 tcf_hash_insert(pc
, a
->ops
->hinfo
);
92 static int tcf_csum_cleanup(struct tc_action
*a
, int bind
)
94 struct tcf_csum
*p
= a
->priv
;
95 return tcf_hash_release(&p
->common
, bind
, &csum_hash_info
);
99 * tcf_csum_skb_nextlayer - Get next layer pointer
100 * @skb: sk_buff to use
101 * @ihl: previous summed headers length
102 * @ipl: complete packet length
103 * @jhl: next header length
105 * Check the expected next layer availability in the specified sk_buff.
106 * Return the next layer pointer if pass, NULL otherwise.
108 static void *tcf_csum_skb_nextlayer(struct sk_buff
*skb
,
109 unsigned int ihl
, unsigned int ipl
,
112 int ntkoff
= skb_network_offset(skb
);
115 if (!pskb_may_pull(skb
, ipl
+ ntkoff
) || (ipl
< hl
) ||
117 !skb_clone_writable(skb
, hl
+ ntkoff
) &&
118 pskb_expand_head(skb
, 0, 0, GFP_ATOMIC
)))
121 return (void *)(skb_network_header(skb
) + ihl
);
124 static int tcf_csum_ipv4_icmp(struct sk_buff
*skb
,
125 unsigned int ihl
, unsigned int ipl
)
127 struct icmphdr
*icmph
;
129 icmph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*icmph
));
134 skb
->csum
= csum_partial(icmph
, ipl
- ihl
, 0);
135 icmph
->checksum
= csum_fold(skb
->csum
);
137 skb
->ip_summed
= CHECKSUM_NONE
;
142 static int tcf_csum_ipv4_igmp(struct sk_buff
*skb
,
143 unsigned int ihl
, unsigned int ipl
)
145 struct igmphdr
*igmph
;
147 igmph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*igmph
));
152 skb
->csum
= csum_partial(igmph
, ipl
- ihl
, 0);
153 igmph
->csum
= csum_fold(skb
->csum
);
155 skb
->ip_summed
= CHECKSUM_NONE
;
160 static int tcf_csum_ipv6_icmp(struct sk_buff
*skb
,
161 unsigned int ihl
, unsigned int ipl
)
163 struct icmp6hdr
*icmp6h
;
164 const struct ipv6hdr
*ip6h
;
166 icmp6h
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*icmp6h
));
170 ip6h
= ipv6_hdr(skb
);
171 icmp6h
->icmp6_cksum
= 0;
172 skb
->csum
= csum_partial(icmp6h
, ipl
- ihl
, 0);
173 icmp6h
->icmp6_cksum
= csum_ipv6_magic(&ip6h
->saddr
, &ip6h
->daddr
,
174 ipl
- ihl
, IPPROTO_ICMPV6
,
177 skb
->ip_summed
= CHECKSUM_NONE
;
182 static int tcf_csum_ipv4_tcp(struct sk_buff
*skb
,
183 unsigned int ihl
, unsigned int ipl
)
186 const struct iphdr
*iph
;
188 tcph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*tcph
));
194 skb
->csum
= csum_partial(tcph
, ipl
- ihl
, 0);
195 tcph
->check
= tcp_v4_check(ipl
- ihl
,
196 iph
->saddr
, iph
->daddr
, skb
->csum
);
198 skb
->ip_summed
= CHECKSUM_NONE
;
203 static int tcf_csum_ipv6_tcp(struct sk_buff
*skb
,
204 unsigned int ihl
, unsigned int ipl
)
207 const struct ipv6hdr
*ip6h
;
209 tcph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*tcph
));
213 ip6h
= ipv6_hdr(skb
);
215 skb
->csum
= csum_partial(tcph
, ipl
- ihl
, 0);
216 tcph
->check
= csum_ipv6_magic(&ip6h
->saddr
, &ip6h
->daddr
,
217 ipl
- ihl
, IPPROTO_TCP
,
220 skb
->ip_summed
= CHECKSUM_NONE
;
225 static int tcf_csum_ipv4_udp(struct sk_buff
*skb
,
226 unsigned int ihl
, unsigned int ipl
, int udplite
)
229 const struct iphdr
*iph
;
233 * Support both UDP and UDPLITE checksum algorithms, Don't use
234 * udph->len to get the real length without any protocol check,
235 * UDPLITE uses udph->len for another thing,
236 * Use iph->tot_len, or just ipl.
239 udph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*udph
));
244 ul
= ntohs(udph
->len
);
246 if (udplite
|| udph
->check
) {
252 skb
->csum
= csum_partial(udph
, ipl
- ihl
, 0);
253 else if ((ul
>= sizeof(*udph
)) && (ul
<= ipl
- ihl
))
254 skb
->csum
= csum_partial(udph
, ul
, 0);
256 goto ignore_obscure_skb
;
259 goto ignore_obscure_skb
;
261 skb
->csum
= csum_partial(udph
, ul
, 0);
264 udph
->check
= csum_tcpudp_magic(iph
->saddr
, iph
->daddr
,
269 udph
->check
= CSUM_MANGLED_0
;
272 skb
->ip_summed
= CHECKSUM_NONE
;
278 static int tcf_csum_ipv6_udp(struct sk_buff
*skb
,
279 unsigned int ihl
, unsigned int ipl
, int udplite
)
282 const struct ipv6hdr
*ip6h
;
286 * Support both UDP and UDPLITE checksum algorithms, Don't use
287 * udph->len to get the real length without any protocol check,
288 * UDPLITE uses udph->len for another thing,
289 * Use ip6h->payload_len + sizeof(*ip6h) ... , or just ipl.
292 udph
= tcf_csum_skb_nextlayer(skb
, ihl
, ipl
, sizeof(*udph
));
296 ip6h
= ipv6_hdr(skb
);
297 ul
= ntohs(udph
->len
);
303 skb
->csum
= csum_partial(udph
, ipl
- ihl
, 0);
305 else if ((ul
>= sizeof(*udph
)) && (ul
<= ipl
- ihl
))
306 skb
->csum
= csum_partial(udph
, ul
, 0);
309 goto ignore_obscure_skb
;
312 goto ignore_obscure_skb
;
314 skb
->csum
= csum_partial(udph
, ul
, 0);
317 udph
->check
= csum_ipv6_magic(&ip6h
->saddr
, &ip6h
->daddr
, ul
,
318 udplite
? IPPROTO_UDPLITE
: IPPROTO_UDP
,
322 udph
->check
= CSUM_MANGLED_0
;
324 skb
->ip_summed
= CHECKSUM_NONE
;
330 static int tcf_csum_ipv4(struct sk_buff
*skb
, u32 update_flags
)
332 const struct iphdr
*iph
;
335 ntkoff
= skb_network_offset(skb
);
337 if (!pskb_may_pull(skb
, sizeof(*iph
) + ntkoff
))
342 switch (iph
->frag_off
& htons(IP_OFFSET
) ? 0 : iph
->protocol
) {
344 if (update_flags
& TCA_CSUM_UPDATE_FLAG_ICMP
)
345 if (!tcf_csum_ipv4_icmp(skb
, iph
->ihl
* 4,
346 ntohs(iph
->tot_len
)))
350 if (update_flags
& TCA_CSUM_UPDATE_FLAG_IGMP
)
351 if (!tcf_csum_ipv4_igmp(skb
, iph
->ihl
* 4,
352 ntohs(iph
->tot_len
)))
356 if (update_flags
& TCA_CSUM_UPDATE_FLAG_TCP
)
357 if (!tcf_csum_ipv4_tcp(skb
, iph
->ihl
* 4,
358 ntohs(iph
->tot_len
)))
362 if (update_flags
& TCA_CSUM_UPDATE_FLAG_UDP
)
363 if (!tcf_csum_ipv4_udp(skb
, iph
->ihl
* 4,
364 ntohs(iph
->tot_len
), 0))
367 case IPPROTO_UDPLITE
:
368 if (update_flags
& TCA_CSUM_UPDATE_FLAG_UDPLITE
)
369 if (!tcf_csum_ipv4_udp(skb
, iph
->ihl
* 4,
370 ntohs(iph
->tot_len
), 1))
375 if (update_flags
& TCA_CSUM_UPDATE_FLAG_IPV4HDR
) {
376 if (skb_cloned(skb
) &&
377 !skb_clone_writable(skb
, sizeof(*iph
) + ntkoff
) &&
378 pskb_expand_head(skb
, 0, 0, GFP_ATOMIC
))
381 ip_send_check(ip_hdr(skb
));
390 static int tcf_csum_ipv6_hopopts(struct ipv6_opt_hdr
*ip6xh
,
391 unsigned int ixhl
, unsigned int *pl
)
393 int off
, len
, optlen
;
394 unsigned char *xh
= (void *)ip6xh
;
396 off
= sizeof(*ip6xh
);
405 optlen
= xh
[off
+ 1] + 2;
406 if (optlen
!= 6 || len
< 6 || (off
& 3) != 2)
407 /* wrong jumbo option length/alignment */
409 *pl
= ntohl(*(__be32
*)(xh
+ off
+ 2));
412 optlen
= xh
[off
+ 1] + 2;
414 /* ignore obscure options */
426 static int tcf_csum_ipv6(struct sk_buff
*skb
, u32 update_flags
)
428 struct ipv6hdr
*ip6h
;
429 struct ipv6_opt_hdr
*ip6xh
;
430 unsigned int hl
, ixhl
;
435 ntkoff
= skb_network_offset(skb
);
439 if (!pskb_may_pull(skb
, hl
+ ntkoff
))
442 ip6h
= ipv6_hdr(skb
);
444 pl
= ntohs(ip6h
->payload_len
);
445 nexthdr
= ip6h
->nexthdr
;
449 case NEXTHDR_FRAGMENT
:
451 case NEXTHDR_ROUTING
:
454 if (!pskb_may_pull(skb
, hl
+ sizeof(*ip6xh
) + ntkoff
))
456 ip6xh
= (void *)(skb_network_header(skb
) + hl
);
457 ixhl
= ipv6_optlen(ip6xh
);
458 if (!pskb_may_pull(skb
, hl
+ ixhl
+ ntkoff
))
460 ip6xh
= (void *)(skb_network_header(skb
) + hl
);
461 if ((nexthdr
== NEXTHDR_HOP
) &&
462 !(tcf_csum_ipv6_hopopts(ip6xh
, ixhl
, &pl
)))
464 nexthdr
= ip6xh
->nexthdr
;
468 if (update_flags
& TCA_CSUM_UPDATE_FLAG_ICMP
)
469 if (!tcf_csum_ipv6_icmp(skb
,
470 hl
, pl
+ sizeof(*ip6h
)))
474 if (update_flags
& TCA_CSUM_UPDATE_FLAG_TCP
)
475 if (!tcf_csum_ipv6_tcp(skb
,
476 hl
, pl
+ sizeof(*ip6h
)))
480 if (update_flags
& TCA_CSUM_UPDATE_FLAG_UDP
)
481 if (!tcf_csum_ipv6_udp(skb
, hl
,
482 pl
+ sizeof(*ip6h
), 0))
485 case IPPROTO_UDPLITE
:
486 if (update_flags
& TCA_CSUM_UPDATE_FLAG_UDPLITE
)
487 if (!tcf_csum_ipv6_udp(skb
, hl
,
488 pl
+ sizeof(*ip6h
), 1))
494 } while (pskb_may_pull(skb
, hl
+ 1 + ntkoff
));
504 static int tcf_csum(struct sk_buff
*skb
,
505 const struct tc_action
*a
, struct tcf_result
*res
)
507 struct tcf_csum
*p
= a
->priv
;
511 spin_lock(&p
->tcf_lock
);
512 p
->tcf_tm
.lastuse
= jiffies
;
513 bstats_update(&p
->tcf_bstats
, skb
);
514 action
= p
->tcf_action
;
515 update_flags
= p
->update_flags
;
516 spin_unlock(&p
->tcf_lock
);
518 if (unlikely(action
== TC_ACT_SHOT
))
521 switch (skb
->protocol
) {
522 case cpu_to_be16(ETH_P_IP
):
523 if (!tcf_csum_ipv4(skb
, update_flags
))
526 case cpu_to_be16(ETH_P_IPV6
):
527 if (!tcf_csum_ipv6(skb
, update_flags
))
535 spin_lock(&p
->tcf_lock
);
536 p
->tcf_qstats
.drops
++;
537 spin_unlock(&p
->tcf_lock
);
541 static int tcf_csum_dump(struct sk_buff
*skb
,
542 struct tc_action
*a
, int bind
, int ref
)
544 unsigned char *b
= skb_tail_pointer(skb
);
545 struct tcf_csum
*p
= a
->priv
;
546 struct tc_csum opt
= {
547 .update_flags
= p
->update_flags
,
548 .index
= p
->tcf_index
,
549 .action
= p
->tcf_action
,
550 .refcnt
= p
->tcf_refcnt
- ref
,
551 .bindcnt
= p
->tcf_bindcnt
- bind
,
555 if (nla_put(skb
, TCA_CSUM_PARMS
, sizeof(opt
), &opt
))
556 goto nla_put_failure
;
557 t
.install
= jiffies_to_clock_t(jiffies
- p
->tcf_tm
.install
);
558 t
.lastuse
= jiffies_to_clock_t(jiffies
- p
->tcf_tm
.lastuse
);
559 t
.expires
= jiffies_to_clock_t(p
->tcf_tm
.expires
);
560 if (nla_put(skb
, TCA_CSUM_TM
, sizeof(t
), &t
))
561 goto nla_put_failure
;
570 static struct tc_action_ops act_csum_ops
= {
572 .hinfo
= &csum_hash_info
,
573 .type
= TCA_ACT_CSUM
,
574 .owner
= THIS_MODULE
,
576 .dump
= tcf_csum_dump
,
577 .cleanup
= tcf_csum_cleanup
,
578 .init
= tcf_csum_init
,
581 MODULE_DESCRIPTION("Checksum updating actions");
582 MODULE_LICENSE("GPL");
584 static int __init
csum_init_module(void)
586 int err
= tcf_hashinfo_init(&csum_hash_info
, CSUM_TAB_MASK
);
590 return tcf_register_action(&act_csum_ops
);
593 static void __exit
csum_cleanup_module(void)
595 tcf_unregister_action(&act_csum_ops
);
598 module_init(csum_init_module
);
599 module_exit(csum_cleanup_module
);