1 // SPDX-License-Identifier: GPL-2.0-only
3 * (C) 2012-2013 by Pablo Neira Ayuso <pablo@netfilter.org>
5 * This software has been sponsored by Sophos Astaro <http://www.sophos.com>
8 #include <linux/kernel.h>
9 #include <linux/init.h>
10 #include <linux/module.h>
11 #include <linux/netlink.h>
12 #include <linux/netfilter.h>
13 #include <linux/netfilter/nfnetlink.h>
14 #include <linux/netfilter/nf_tables.h>
15 #include <linux/netfilter/nf_tables_compat.h>
16 #include <linux/netfilter/x_tables.h>
17 #include <linux/netfilter_ipv4/ip_tables.h>
18 #include <linux/netfilter_ipv6/ip6_tables.h>
19 #include <linux/netfilter_bridge/ebtables.h>
20 #include <linux/netfilter_arp/arp_tables.h>
21 #include <net/netfilter/nf_tables.h>
23 /* Used for matches where *info is larger than X byte */
24 #define NFT_MATCH_LARGE_THRESH 192
26 struct nft_xt_match_priv
{
30 static int nft_compat_chain_validate_dependency(const struct nft_ctx
*ctx
,
31 const char *tablename
)
33 enum nft_chain_types type
= NFT_CHAIN_T_DEFAULT
;
34 const struct nft_chain
*chain
= ctx
->chain
;
35 const struct nft_base_chain
*basechain
;
38 !nft_is_base_chain(chain
))
41 basechain
= nft_base_chain(chain
);
42 if (strcmp(tablename
, "nat") == 0) {
43 if (ctx
->family
!= NFPROTO_BRIDGE
)
44 type
= NFT_CHAIN_T_NAT
;
45 if (basechain
->type
->type
!= type
)
56 struct arpt_entry arp
;
60 nft_compat_set_par(struct xt_action_param
*par
, void *xt
, const void *xt_info
)
63 par
->targinfo
= xt_info
;
67 static void nft_target_eval_xt(const struct nft_expr
*expr
,
68 struct nft_regs
*regs
,
69 const struct nft_pktinfo
*pkt
)
71 void *info
= nft_expr_priv(expr
);
72 struct xt_target
*target
= expr
->ops
->data
;
73 struct sk_buff
*skb
= pkt
->skb
;
76 nft_compat_set_par((struct xt_action_param
*)&pkt
->xt
, target
, info
);
78 ret
= target
->target(skb
, &pkt
->xt
);
85 regs
->verdict
.code
= NFT_CONTINUE
;
88 regs
->verdict
.code
= ret
;
93 static void nft_target_eval_bridge(const struct nft_expr
*expr
,
94 struct nft_regs
*regs
,
95 const struct nft_pktinfo
*pkt
)
97 void *info
= nft_expr_priv(expr
);
98 struct xt_target
*target
= expr
->ops
->data
;
99 struct sk_buff
*skb
= pkt
->skb
;
102 nft_compat_set_par((struct xt_action_param
*)&pkt
->xt
, target
, info
);
104 ret
= target
->target(skb
, &pkt
->xt
);
111 regs
->verdict
.code
= NF_ACCEPT
;
114 regs
->verdict
.code
= NF_DROP
;
117 regs
->verdict
.code
= NFT_CONTINUE
;
120 regs
->verdict
.code
= NFT_RETURN
;
123 regs
->verdict
.code
= ret
;
128 static const struct nla_policy nft_target_policy
[NFTA_TARGET_MAX
+ 1] = {
129 [NFTA_TARGET_NAME
] = { .type
= NLA_NUL_STRING
},
130 [NFTA_TARGET_REV
] = { .type
= NLA_U32
},
131 [NFTA_TARGET_INFO
] = { .type
= NLA_BINARY
},
135 nft_target_set_tgchk_param(struct xt_tgchk_param
*par
,
136 const struct nft_ctx
*ctx
,
137 struct xt_target
*target
, void *info
,
138 union nft_entry
*entry
, u16 proto
, bool inv
)
141 par
->table
= ctx
->table
->name
;
142 switch (ctx
->family
) {
144 entry
->e4
.ip
.proto
= proto
;
145 entry
->e4
.ip
.invflags
= inv
? IPT_INV_PROTO
: 0;
149 entry
->e6
.ipv6
.flags
|= IP6T_F_PROTO
;
151 entry
->e6
.ipv6
.proto
= proto
;
152 entry
->e6
.ipv6
.invflags
= inv
? IP6T_INV_PROTO
: 0;
155 entry
->ebt
.ethproto
= (__force __be16
)proto
;
156 entry
->ebt
.invflags
= inv
? EBT_IPROTO
: 0;
161 par
->entryinfo
= entry
;
162 par
->target
= target
;
163 par
->targinfo
= info
;
164 if (nft_is_base_chain(ctx
->chain
)) {
165 const struct nft_base_chain
*basechain
=
166 nft_base_chain(ctx
->chain
);
167 const struct nf_hook_ops
*ops
= &basechain
->ops
;
169 par
->hook_mask
= 1 << ops
->hooknum
;
173 par
->family
= ctx
->family
;
174 par
->nft_compat
= true;
177 static void target_compat_from_user(struct xt_target
*t
, void *in
, void *out
)
181 memcpy(out
, in
, t
->targetsize
);
182 pad
= XT_ALIGN(t
->targetsize
) - t
->targetsize
;
184 memset(out
+ t
->targetsize
, 0, pad
);
187 static const struct nla_policy nft_rule_compat_policy
[NFTA_RULE_COMPAT_MAX
+ 1] = {
188 [NFTA_RULE_COMPAT_PROTO
] = { .type
= NLA_U32
},
189 [NFTA_RULE_COMPAT_FLAGS
] = { .type
= NLA_U32
},
192 static int nft_parse_compat(const struct nlattr
*attr
, u16
*proto
, bool *inv
)
194 struct nlattr
*tb
[NFTA_RULE_COMPAT_MAX
+1];
198 err
= nla_parse_nested_deprecated(tb
, NFTA_RULE_COMPAT_MAX
, attr
,
199 nft_rule_compat_policy
, NULL
);
203 if (!tb
[NFTA_RULE_COMPAT_PROTO
] || !tb
[NFTA_RULE_COMPAT_FLAGS
])
206 flags
= ntohl(nla_get_be32(tb
[NFTA_RULE_COMPAT_FLAGS
]));
207 if (flags
& ~NFT_RULE_COMPAT_F_MASK
)
209 if (flags
& NFT_RULE_COMPAT_F_INV
)
212 *proto
= ntohl(nla_get_be32(tb
[NFTA_RULE_COMPAT_PROTO
]));
217 nft_target_init(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
,
218 const struct nlattr
* const tb
[])
220 void *info
= nft_expr_priv(expr
);
221 struct xt_target
*target
= expr
->ops
->data
;
222 struct xt_tgchk_param par
;
223 size_t size
= XT_ALIGN(nla_len(tb
[NFTA_TARGET_INFO
]));
226 union nft_entry e
= {};
229 target_compat_from_user(target
, nla_data(tb
[NFTA_TARGET_INFO
]), info
);
231 if (ctx
->nla
[NFTA_RULE_COMPAT
]) {
232 ret
= nft_parse_compat(ctx
->nla
[NFTA_RULE_COMPAT
], &proto
, &inv
);
237 nft_target_set_tgchk_param(&par
, ctx
, target
, info
, &e
, proto
, inv
);
239 ret
= xt_check_target(&par
, size
, proto
, inv
);
243 /* The standard target cannot be used */
251 nft_target_destroy(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
)
253 struct xt_target
*target
= expr
->ops
->data
;
254 void *info
= nft_expr_priv(expr
);
255 struct module
*me
= target
->me
;
256 struct xt_tgdtor_param par
;
261 par
.family
= ctx
->family
;
262 if (par
.target
->destroy
!= NULL
)
263 par
.target
->destroy(&par
);
269 static int nft_extension_dump_info(struct sk_buff
*skb
, int attr
,
271 unsigned int size
, unsigned int user_size
)
273 unsigned int info_size
, aligned_size
= XT_ALIGN(size
);
276 nla
= nla_reserve(skb
, attr
, aligned_size
);
280 info_size
= user_size
? : size
;
281 memcpy(nla_data(nla
), info
, info_size
);
282 memset(nla_data(nla
) + info_size
, 0, aligned_size
- info_size
);
287 static int nft_target_dump(struct sk_buff
*skb
, const struct nft_expr
*expr
)
289 const struct xt_target
*target
= expr
->ops
->data
;
290 void *info
= nft_expr_priv(expr
);
292 if (nla_put_string(skb
, NFTA_TARGET_NAME
, target
->name
) ||
293 nla_put_be32(skb
, NFTA_TARGET_REV
, htonl(target
->revision
)) ||
294 nft_extension_dump_info(skb
, NFTA_TARGET_INFO
, info
,
295 target
->targetsize
, target
->usersize
))
296 goto nla_put_failure
;
304 static int nft_target_validate(const struct nft_ctx
*ctx
,
305 const struct nft_expr
*expr
,
306 const struct nft_data
**data
)
308 struct xt_target
*target
= expr
->ops
->data
;
309 unsigned int hook_mask
= 0;
312 if (nft_is_base_chain(ctx
->chain
)) {
313 const struct nft_base_chain
*basechain
=
314 nft_base_chain(ctx
->chain
);
315 const struct nf_hook_ops
*ops
= &basechain
->ops
;
317 hook_mask
= 1 << ops
->hooknum
;
318 if (target
->hooks
&& !(hook_mask
& target
->hooks
))
321 ret
= nft_compat_chain_validate_dependency(ctx
, target
->table
);
328 static void __nft_match_eval(const struct nft_expr
*expr
,
329 struct nft_regs
*regs
,
330 const struct nft_pktinfo
*pkt
,
333 struct xt_match
*match
= expr
->ops
->data
;
334 struct sk_buff
*skb
= pkt
->skb
;
337 nft_compat_set_par((struct xt_action_param
*)&pkt
->xt
, match
, info
);
339 ret
= match
->match(skb
, (struct xt_action_param
*)&pkt
->xt
);
341 if (pkt
->xt
.hotdrop
) {
342 regs
->verdict
.code
= NF_DROP
;
346 switch (ret
? 1 : 0) {
348 regs
->verdict
.code
= NFT_CONTINUE
;
351 regs
->verdict
.code
= NFT_BREAK
;
356 static void nft_match_large_eval(const struct nft_expr
*expr
,
357 struct nft_regs
*regs
,
358 const struct nft_pktinfo
*pkt
)
360 struct nft_xt_match_priv
*priv
= nft_expr_priv(expr
);
362 __nft_match_eval(expr
, regs
, pkt
, priv
->info
);
365 static void nft_match_eval(const struct nft_expr
*expr
,
366 struct nft_regs
*regs
,
367 const struct nft_pktinfo
*pkt
)
369 __nft_match_eval(expr
, regs
, pkt
, nft_expr_priv(expr
));
372 static const struct nla_policy nft_match_policy
[NFTA_MATCH_MAX
+ 1] = {
373 [NFTA_MATCH_NAME
] = { .type
= NLA_NUL_STRING
},
374 [NFTA_MATCH_REV
] = { .type
= NLA_U32
},
375 [NFTA_MATCH_INFO
] = { .type
= NLA_BINARY
},
378 /* struct xt_mtchk_param and xt_tgchk_param look very similar */
380 nft_match_set_mtchk_param(struct xt_mtchk_param
*par
, const struct nft_ctx
*ctx
,
381 struct xt_match
*match
, void *info
,
382 union nft_entry
*entry
, u16 proto
, bool inv
)
385 par
->table
= ctx
->table
->name
;
386 switch (ctx
->family
) {
388 entry
->e4
.ip
.proto
= proto
;
389 entry
->e4
.ip
.invflags
= inv
? IPT_INV_PROTO
: 0;
393 entry
->e6
.ipv6
.flags
|= IP6T_F_PROTO
;
395 entry
->e6
.ipv6
.proto
= proto
;
396 entry
->e6
.ipv6
.invflags
= inv
? IP6T_INV_PROTO
: 0;
399 entry
->ebt
.ethproto
= (__force __be16
)proto
;
400 entry
->ebt
.invflags
= inv
? EBT_IPROTO
: 0;
405 par
->entryinfo
= entry
;
407 par
->matchinfo
= info
;
408 if (nft_is_base_chain(ctx
->chain
)) {
409 const struct nft_base_chain
*basechain
=
410 nft_base_chain(ctx
->chain
);
411 const struct nf_hook_ops
*ops
= &basechain
->ops
;
413 par
->hook_mask
= 1 << ops
->hooknum
;
417 par
->family
= ctx
->family
;
418 par
->nft_compat
= true;
421 static void match_compat_from_user(struct xt_match
*m
, void *in
, void *out
)
425 memcpy(out
, in
, m
->matchsize
);
426 pad
= XT_ALIGN(m
->matchsize
) - m
->matchsize
;
428 memset(out
+ m
->matchsize
, 0, pad
);
432 __nft_match_init(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
,
433 const struct nlattr
* const tb
[],
436 struct xt_match
*match
= expr
->ops
->data
;
437 struct xt_mtchk_param par
;
438 size_t size
= XT_ALIGN(nla_len(tb
[NFTA_MATCH_INFO
]));
441 union nft_entry e
= {};
444 match_compat_from_user(match
, nla_data(tb
[NFTA_MATCH_INFO
]), info
);
446 if (ctx
->nla
[NFTA_RULE_COMPAT
]) {
447 ret
= nft_parse_compat(ctx
->nla
[NFTA_RULE_COMPAT
], &proto
, &inv
);
452 nft_match_set_mtchk_param(&par
, ctx
, match
, info
, &e
, proto
, inv
);
454 return xt_check_match(&par
, size
, proto
, inv
);
458 nft_match_init(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
,
459 const struct nlattr
* const tb
[])
461 return __nft_match_init(ctx
, expr
, tb
, nft_expr_priv(expr
));
465 nft_match_large_init(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
,
466 const struct nlattr
* const tb
[])
468 struct nft_xt_match_priv
*priv
= nft_expr_priv(expr
);
469 struct xt_match
*m
= expr
->ops
->data
;
472 priv
->info
= kmalloc(XT_ALIGN(m
->matchsize
), GFP_KERNEL
);
476 ret
= __nft_match_init(ctx
, expr
, tb
, priv
->info
);
483 __nft_match_destroy(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
,
486 struct xt_match
*match
= expr
->ops
->data
;
487 struct module
*me
= match
->me
;
488 struct xt_mtdtor_param par
;
492 par
.matchinfo
= info
;
493 par
.family
= ctx
->family
;
494 if (par
.match
->destroy
!= NULL
)
495 par
.match
->destroy(&par
);
502 nft_match_destroy(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
)
504 __nft_match_destroy(ctx
, expr
, nft_expr_priv(expr
));
508 nft_match_large_destroy(const struct nft_ctx
*ctx
, const struct nft_expr
*expr
)
510 struct nft_xt_match_priv
*priv
= nft_expr_priv(expr
);
512 __nft_match_destroy(ctx
, expr
, priv
->info
);
516 static int __nft_match_dump(struct sk_buff
*skb
, const struct nft_expr
*expr
,
519 struct xt_match
*match
= expr
->ops
->data
;
521 if (nla_put_string(skb
, NFTA_MATCH_NAME
, match
->name
) ||
522 nla_put_be32(skb
, NFTA_MATCH_REV
, htonl(match
->revision
)) ||
523 nft_extension_dump_info(skb
, NFTA_MATCH_INFO
, info
,
524 match
->matchsize
, match
->usersize
))
525 goto nla_put_failure
;
533 static int nft_match_dump(struct sk_buff
*skb
, const struct nft_expr
*expr
)
535 return __nft_match_dump(skb
, expr
, nft_expr_priv(expr
));
538 static int nft_match_large_dump(struct sk_buff
*skb
, const struct nft_expr
*e
)
540 struct nft_xt_match_priv
*priv
= nft_expr_priv(e
);
542 return __nft_match_dump(skb
, e
, priv
->info
);
545 static int nft_match_validate(const struct nft_ctx
*ctx
,
546 const struct nft_expr
*expr
,
547 const struct nft_data
**data
)
549 struct xt_match
*match
= expr
->ops
->data
;
550 unsigned int hook_mask
= 0;
553 if (nft_is_base_chain(ctx
->chain
)) {
554 const struct nft_base_chain
*basechain
=
555 nft_base_chain(ctx
->chain
);
556 const struct nf_hook_ops
*ops
= &basechain
->ops
;
558 hook_mask
= 1 << ops
->hooknum
;
559 if (match
->hooks
&& !(hook_mask
& match
->hooks
))
562 ret
= nft_compat_chain_validate_dependency(ctx
, match
->table
);
570 nfnl_compat_fill_info(struct sk_buff
*skb
, u32 portid
, u32 seq
, u32 type
,
571 int event
, u16 family
, const char *name
,
574 struct nlmsghdr
*nlh
;
575 struct nfgenmsg
*nfmsg
;
576 unsigned int flags
= portid
? NLM_F_MULTI
: 0;
578 event
= nfnl_msg_type(NFNL_SUBSYS_NFT_COMPAT
, event
);
579 nlh
= nlmsg_put(skb
, portid
, seq
, event
, sizeof(*nfmsg
), flags
);
583 nfmsg
= nlmsg_data(nlh
);
584 nfmsg
->nfgen_family
= family
;
585 nfmsg
->version
= NFNETLINK_V0
;
588 if (nla_put_string(skb
, NFTA_COMPAT_NAME
, name
) ||
589 nla_put_be32(skb
, NFTA_COMPAT_REV
, htonl(rev
)) ||
590 nla_put_be32(skb
, NFTA_COMPAT_TYPE
, htonl(target
)))
591 goto nla_put_failure
;
598 nlmsg_cancel(skb
, nlh
);
602 static int nfnl_compat_get_rcu(struct net
*net
, struct sock
*nfnl
,
603 struct sk_buff
*skb
, const struct nlmsghdr
*nlh
,
604 const struct nlattr
* const tb
[],
605 struct netlink_ext_ack
*extack
)
608 struct nfgenmsg
*nfmsg
;
612 struct sk_buff
*skb2
;
614 if (tb
[NFTA_COMPAT_NAME
] == NULL
||
615 tb
[NFTA_COMPAT_REV
] == NULL
||
616 tb
[NFTA_COMPAT_TYPE
] == NULL
)
619 name
= nla_data(tb
[NFTA_COMPAT_NAME
]);
620 rev
= ntohl(nla_get_be32(tb
[NFTA_COMPAT_REV
]));
621 target
= ntohl(nla_get_be32(tb
[NFTA_COMPAT_TYPE
]));
623 nfmsg
= nlmsg_data(nlh
);
625 switch(nfmsg
->nfgen_family
) {
639 pr_err("nft_compat: unsupported protocol %d\n",
640 nfmsg
->nfgen_family
);
644 if (!try_module_get(THIS_MODULE
))
648 try_then_request_module(xt_find_revision(nfmsg
->nfgen_family
, name
,
654 skb2
= nlmsg_new(NLMSG_DEFAULT_SIZE
, GFP_KERNEL
);
660 /* include the best revision for this extension in the message */
661 if (nfnl_compat_fill_info(skb2
, NETLINK_CB(skb
).portid
,
663 NFNL_MSG_TYPE(nlh
->nlmsg_type
),
666 name
, ret
, target
) <= 0) {
671 ret
= netlink_unicast(nfnl
, skb2
, NETLINK_CB(skb
).portid
,
677 module_put(THIS_MODULE
);
678 return ret
== -EAGAIN
? -ENOBUFS
: ret
;
681 static const struct nla_policy nfnl_compat_policy_get
[NFTA_COMPAT_MAX
+1] = {
682 [NFTA_COMPAT_NAME
] = { .type
= NLA_NUL_STRING
,
683 .len
= NFT_COMPAT_NAME_MAX
-1 },
684 [NFTA_COMPAT_REV
] = { .type
= NLA_U32
},
685 [NFTA_COMPAT_TYPE
] = { .type
= NLA_U32
},
688 static const struct nfnl_callback nfnl_nft_compat_cb
[NFNL_MSG_COMPAT_MAX
] = {
689 [NFNL_MSG_COMPAT_GET
] = { .call_rcu
= nfnl_compat_get_rcu
,
690 .attr_count
= NFTA_COMPAT_MAX
,
691 .policy
= nfnl_compat_policy_get
},
694 static const struct nfnetlink_subsystem nfnl_compat_subsys
= {
695 .name
= "nft-compat",
696 .subsys_id
= NFNL_SUBSYS_NFT_COMPAT
,
697 .cb_count
= NFNL_MSG_COMPAT_MAX
,
698 .cb
= nfnl_nft_compat_cb
,
701 static struct nft_expr_type nft_match_type
;
703 static const struct nft_expr_ops
*
704 nft_match_select_ops(const struct nft_ctx
*ctx
,
705 const struct nlattr
* const tb
[])
707 struct nft_expr_ops
*ops
;
708 struct xt_match
*match
;
709 unsigned int matchsize
;
714 if (tb
[NFTA_MATCH_NAME
] == NULL
||
715 tb
[NFTA_MATCH_REV
] == NULL
||
716 tb
[NFTA_MATCH_INFO
] == NULL
)
717 return ERR_PTR(-EINVAL
);
719 mt_name
= nla_data(tb
[NFTA_MATCH_NAME
]);
720 rev
= ntohl(nla_get_be32(tb
[NFTA_MATCH_REV
]));
721 family
= ctx
->family
;
723 match
= xt_request_find_match(family
, mt_name
, rev
);
725 return ERR_PTR(-ENOENT
);
727 if (match
->matchsize
> nla_len(tb
[NFTA_MATCH_INFO
])) {
732 ops
= kzalloc(sizeof(struct nft_expr_ops
), GFP_KERNEL
);
738 ops
->type
= &nft_match_type
;
739 ops
->eval
= nft_match_eval
;
740 ops
->init
= nft_match_init
;
741 ops
->destroy
= nft_match_destroy
;
742 ops
->dump
= nft_match_dump
;
743 ops
->validate
= nft_match_validate
;
746 matchsize
= NFT_EXPR_SIZE(XT_ALIGN(match
->matchsize
));
747 if (matchsize
> NFT_MATCH_LARGE_THRESH
) {
748 matchsize
= NFT_EXPR_SIZE(sizeof(struct nft_xt_match_priv
));
750 ops
->eval
= nft_match_large_eval
;
751 ops
->init
= nft_match_large_init
;
752 ops
->destroy
= nft_match_large_destroy
;
753 ops
->dump
= nft_match_large_dump
;
756 ops
->size
= matchsize
;
760 module_put(match
->me
);
764 static void nft_match_release_ops(const struct nft_expr_ops
*ops
)
766 struct xt_match
*match
= ops
->data
;
768 module_put(match
->me
);
772 static struct nft_expr_type nft_match_type __read_mostly
= {
774 .select_ops
= nft_match_select_ops
,
775 .release_ops
= nft_match_release_ops
,
776 .policy
= nft_match_policy
,
777 .maxattr
= NFTA_MATCH_MAX
,
778 .owner
= THIS_MODULE
,
781 static struct nft_expr_type nft_target_type
;
783 static const struct nft_expr_ops
*
784 nft_target_select_ops(const struct nft_ctx
*ctx
,
785 const struct nlattr
* const tb
[])
787 struct nft_expr_ops
*ops
;
788 struct xt_target
*target
;
793 if (tb
[NFTA_TARGET_NAME
] == NULL
||
794 tb
[NFTA_TARGET_REV
] == NULL
||
795 tb
[NFTA_TARGET_INFO
] == NULL
)
796 return ERR_PTR(-EINVAL
);
798 tg_name
= nla_data(tb
[NFTA_TARGET_NAME
]);
799 rev
= ntohl(nla_get_be32(tb
[NFTA_TARGET_REV
]));
800 family
= ctx
->family
;
802 if (strcmp(tg_name
, XT_ERROR_TARGET
) == 0 ||
803 strcmp(tg_name
, XT_STANDARD_TARGET
) == 0 ||
804 strcmp(tg_name
, "standard") == 0)
805 return ERR_PTR(-EINVAL
);
807 target
= xt_request_find_target(family
, tg_name
, rev
);
809 return ERR_PTR(-ENOENT
);
811 if (!target
->target
) {
816 if (target
->targetsize
> nla_len(tb
[NFTA_TARGET_INFO
])) {
821 ops
= kzalloc(sizeof(struct nft_expr_ops
), GFP_KERNEL
);
827 ops
->type
= &nft_target_type
;
828 ops
->size
= NFT_EXPR_SIZE(XT_ALIGN(target
->targetsize
));
829 ops
->init
= nft_target_init
;
830 ops
->destroy
= nft_target_destroy
;
831 ops
->dump
= nft_target_dump
;
832 ops
->validate
= nft_target_validate
;
835 if (family
== NFPROTO_BRIDGE
)
836 ops
->eval
= nft_target_eval_bridge
;
838 ops
->eval
= nft_target_eval_xt
;
842 module_put(target
->me
);
846 static void nft_target_release_ops(const struct nft_expr_ops
*ops
)
848 struct xt_target
*target
= ops
->data
;
850 module_put(target
->me
);
854 static struct nft_expr_type nft_target_type __read_mostly
= {
856 .select_ops
= nft_target_select_ops
,
857 .release_ops
= nft_target_release_ops
,
858 .policy
= nft_target_policy
,
859 .maxattr
= NFTA_TARGET_MAX
,
860 .owner
= THIS_MODULE
,
863 static int __init
nft_compat_module_init(void)
867 ret
= nft_register_expr(&nft_match_type
);
871 ret
= nft_register_expr(&nft_target_type
);
875 ret
= nfnetlink_subsys_register(&nfnl_compat_subsys
);
877 pr_err("nft_compat: cannot register with nfnetlink.\n");
883 nft_unregister_expr(&nft_target_type
);
885 nft_unregister_expr(&nft_match_type
);
889 static void __exit
nft_compat_module_exit(void)
891 nfnetlink_subsys_unregister(&nfnl_compat_subsys
);
892 nft_unregister_expr(&nft_target_type
);
893 nft_unregister_expr(&nft_match_type
);
896 MODULE_ALIAS_NFNL_SUBSYS(NFNL_SUBSYS_NFT_COMPAT
);
898 module_init(nft_compat_module_init
);
899 module_exit(nft_compat_module_exit
);
901 MODULE_LICENSE("GPL");
902 MODULE_AUTHOR("Pablo Neira Ayuso <pablo@netfilter.org>");
903 MODULE_ALIAS_NFT_EXPR("match");
904 MODULE_ALIAS_NFT_EXPR("target");