xref: /linux/net/netfilter/ipset/ip_set_hash_netnet.c (revision fab183d632628381b466a41479489541ac0e29a0)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /* Copyright (C) 2003-2013 Jozsef Kadlecsik <kadlec@netfilter.org>
3  * Copyright (C) 2013 Oliver Smith <oliver@8.c.9.b.0.7.4.0.1.0.0.2.ip6.arpa>
4  */
5 
6 /* Kernel module implementing an IP set type: the hash:net type */
7 
8 #include <linux/jhash.h>
9 #include <linux/module.h>
10 #include <linux/ip.h>
11 #include <linux/skbuff.h>
12 #include <linux/errno.h>
13 #include <linux/random.h>
14 #include <net/ip.h>
15 #include <net/ipv6.h>
16 #include <net/netlink.h>
17 
18 #include <linux/netfilter.h>
19 #include <linux/netfilter/ipset/pfxlen.h>
20 #include <linux/netfilter/ipset/ip_set.h>
21 #include <linux/netfilter/ipset/ip_set_hash.h>
22 
23 #define IPSET_TYPE_REV_MIN	0
24 /*				1	   Forceadd support added */
25 /*				2	   skbinfo support added */
26 /*				3	   bucketsize, initval support added */
27 #define IPSET_TYPE_REV_MAX	4	/* bitmask support added */
28 
29 MODULE_LICENSE("GPL");
30 MODULE_AUTHOR("Oliver Smith <oliver@8.c.9.b.0.7.4.0.1.0.0.2.ip6.arpa>");
31 IP_SET_MODULE_DESC("hash:net,net", IPSET_TYPE_REV_MIN, IPSET_TYPE_REV_MAX);
32 MODULE_ALIAS("ip_set_hash:net,net");
33 
34 /* Type specific function prefix */
35 #define HTYPE		hash_netnet
36 #define IP_SET_HASH_WITH_NETS
37 #define IP_SET_HASH_WITH_NETMASK
38 #define IP_SET_HASH_WITH_BITMASK
39 #define IPSET_NET_COUNT 2
40 
41 /* IPv4 variants */
42 
43 /* Member elements  */
44 struct hash_netnet4_elem {
45 	union {
46 		__be32 ip[2];
47 		__be64 ipcmp;
48 	};
49 	u8 nomatch;
50 	u8 padding;
51 	union {
52 		u8 cidr[2];
53 		u16 ccmp;
54 	};
55 };
56 
57 /* Common functions */
58 
59 static bool
hash_netnet4_data_equal(const struct hash_netnet4_elem * ip1,const struct hash_netnet4_elem * ip2,u32 * multi)60 hash_netnet4_data_equal(const struct hash_netnet4_elem *ip1,
61 			const struct hash_netnet4_elem *ip2,
62 			u32 *multi)
63 {
64 	return ip1->ipcmp == ip2->ipcmp &&
65 	       ip1->ccmp == ip2->ccmp;
66 }
67 
68 static int
hash_netnet4_do_data_match(const struct hash_netnet4_elem * elem)69 hash_netnet4_do_data_match(const struct hash_netnet4_elem *elem)
70 {
71 	return elem->nomatch ? -ENOTEMPTY : 1;
72 }
73 
74 static void
hash_netnet4_data_set_flags(struct hash_netnet4_elem * elem,u32 flags)75 hash_netnet4_data_set_flags(struct hash_netnet4_elem *elem, u32 flags)
76 {
77 	elem->nomatch = (flags >> 16) & IPSET_FLAG_NOMATCH;
78 }
79 
80 static void
hash_netnet4_data_reset_flags(struct hash_netnet4_elem * elem,u8 * flags)81 hash_netnet4_data_reset_flags(struct hash_netnet4_elem *elem, u8 *flags)
82 {
83 	swap(*flags, elem->nomatch);
84 }
85 
86 static void
hash_netnet4_data_reset_elem(struct hash_netnet4_elem * elem,struct hash_netnet4_elem * orig)87 hash_netnet4_data_reset_elem(struct hash_netnet4_elem *elem,
88 			     struct hash_netnet4_elem *orig)
89 {
90 	elem->ip[1] = orig->ip[1];
91 }
92 
93 static void
hash_netnet4_data_netmask(struct hash_netnet4_elem * elem,u8 cidr,bool inner)94 hash_netnet4_data_netmask(struct hash_netnet4_elem *elem, u8 cidr, bool inner)
95 {
96 	if (inner) {
97 		elem->ip[1] &= ip_set_netmask(cidr);
98 		elem->cidr[1] = cidr;
99 	} else {
100 		elem->ip[0] &= ip_set_netmask(cidr);
101 		elem->cidr[0] = cidr;
102 	}
103 }
104 
105 static bool
hash_netnet4_data_list(struct sk_buff * skb,const struct hash_netnet4_elem * data)106 hash_netnet4_data_list(struct sk_buff *skb,
107 		       const struct hash_netnet4_elem *data)
108 {
109 	u32 flags = data->nomatch ? IPSET_FLAG_NOMATCH : 0;
110 
111 	if (nla_put_ipaddr4(skb, IPSET_ATTR_IP, data->ip[0]) ||
112 	    nla_put_ipaddr4(skb, IPSET_ATTR_IP2, data->ip[1]) ||
113 	    nla_put_u8(skb, IPSET_ATTR_CIDR, data->cidr[0]) ||
114 	    nla_put_u8(skb, IPSET_ATTR_CIDR2, data->cidr[1]) ||
115 	    (flags &&
116 	     nla_put_net32(skb, IPSET_ATTR_CADT_FLAGS, htonl(flags))))
117 		goto nla_put_failure;
118 	return false;
119 
120 nla_put_failure:
121 	return true;
122 }
123 
124 static void
hash_netnet4_data_next(struct hash_netnet4_elem * next,const struct hash_netnet4_elem * d)125 hash_netnet4_data_next(struct hash_netnet4_elem *next,
126 		       const struct hash_netnet4_elem *d)
127 {
128 	next->ipcmp = d->ipcmp;
129 }
130 
131 #define MTYPE		hash_netnet4
132 #define HOST_MASK	32
133 #include "ip_set_hash_gen.h"
134 
135 static void
hash_netnet4_init(struct hash_netnet4_elem * e)136 hash_netnet4_init(struct hash_netnet4_elem *e)
137 {
138 	e->cidr[0] = HOST_MASK;
139 	e->cidr[1] = HOST_MASK;
140 }
141 
142 static int
hash_netnet4_kadt(struct ip_set * set,const struct sk_buff * skb,const struct xt_action_param * par,enum ipset_adt adt,struct ip_set_adt_opt * opt)143 hash_netnet4_kadt(struct ip_set *set, const struct sk_buff *skb,
144 		  const struct xt_action_param *par,
145 		  enum ipset_adt adt, struct ip_set_adt_opt *opt)
146 {
147 	const struct hash_netnet4 *h = set->data;
148 	ipset_adtfn adtfn = set->variant->adt[adt];
149 	struct hash_netnet4_elem e = { };
150 	struct ip_set_ext ext = IP_SET_INIT_KEXT(skb, opt, set);
151 
152 	rcu_read_lock_bh();
153 	e.cidr[0] = INIT_CIDR(h->rnets[0], HOST_MASK);
154 	e.cidr[1] = INIT_CIDR(h->rnets[1], HOST_MASK);
155 	rcu_read_unlock_bh();
156 	if (adt == IPSET_TEST)
157 		e.ccmp = (HOST_MASK << (sizeof(e.cidr[0]) * 8)) | HOST_MASK;
158 
159 	ip4addrptr(skb, opt->flags & IPSET_DIM_ONE_SRC, &e.ip[0]);
160 	ip4addrptr(skb, opt->flags & IPSET_DIM_TWO_SRC, &e.ip[1]);
161 	e.ip[0] &= (ip_set_netmask(e.cidr[0]) & h->bitmask.ip);
162 	e.ip[1] &= (ip_set_netmask(e.cidr[1]) & h->bitmask.ip);
163 
164 	return adtfn(set, &e, &ext, &opt->ext, opt->cmdflags);
165 }
166 
167 static int
hash_netnet4_uadt(struct ip_set * set,struct nlattr * tb[],enum ipset_adt adt,u32 * lineno,u32 flags,bool retried)168 hash_netnet4_uadt(struct ip_set *set, struct nlattr *tb[],
169 		  enum ipset_adt adt, u32 *lineno, u32 flags, bool retried)
170 {
171 	struct hash_netnet4 *h = set->data;
172 	ipset_adtfn adtfn = set->variant->adt[adt];
173 	struct hash_netnet4_elem e = { };
174 	struct ip_set_ext ext = IP_SET_INIT_UEXT(set);
175 	u32 ip = 0, ip_to = 0;
176 	u32 ip2 = 0, ip2_from = 0, ip2_to = 0, i = 0;
177 	int ret;
178 
179 	if (tb[IPSET_ATTR_LINENO])
180 		*lineno = nla_get_u32(tb[IPSET_ATTR_LINENO]);
181 
182 	hash_netnet4_init(&e);
183 	if (unlikely(!tb[IPSET_ATTR_IP] || !tb[IPSET_ATTR_IP2] ||
184 		     !ip_set_optattr_netorder(tb, IPSET_ATTR_CADT_FLAGS)))
185 		return -IPSET_ERR_PROTOCOL;
186 
187 	ret = ip_set_get_hostipaddr4(tb[IPSET_ATTR_IP], &ip);
188 	if (ret)
189 		return ret;
190 
191 	ret = ip_set_get_hostipaddr4(tb[IPSET_ATTR_IP2], &ip2_from);
192 	if (ret)
193 		return ret;
194 
195 	ret = ip_set_get_extensions(set, tb, &ext);
196 	if (ret)
197 		return ret;
198 
199 	if (tb[IPSET_ATTR_CIDR]) {
200 		e.cidr[0] = nla_get_u8(tb[IPSET_ATTR_CIDR]);
201 		if (!e.cidr[0] || e.cidr[0] > HOST_MASK)
202 			return -IPSET_ERR_INVALID_CIDR;
203 	}
204 
205 	if (tb[IPSET_ATTR_CIDR2]) {
206 		e.cidr[1] = nla_get_u8(tb[IPSET_ATTR_CIDR2]);
207 		if (!e.cidr[1] || e.cidr[1] > HOST_MASK)
208 			return -IPSET_ERR_INVALID_CIDR;
209 	}
210 
211 	if (tb[IPSET_ATTR_CADT_FLAGS]) {
212 		u32 cadt_flags = ip_set_get_h32(tb[IPSET_ATTR_CADT_FLAGS]);
213 
214 		if (cadt_flags & IPSET_FLAG_NOMATCH)
215 			flags |= (IPSET_FLAG_NOMATCH << 16);
216 	}
217 
218 	if (adt == IPSET_TEST || !(tb[IPSET_ATTR_IP_TO] ||
219 				   tb[IPSET_ATTR_IP2_TO])) {
220 		e.ip[0] = htonl(ip & ntohl(h->bitmask.ip) & ip_set_hostmask(e.cidr[0]));
221 		e.ip[1] = htonl(ip2_from & ntohl(h->bitmask.ip) & ip_set_hostmask(e.cidr[1]));
222 		ret = adtfn(set, &e, &ext, &ext, flags);
223 		return ip_set_enomatch(ret, flags, adt, set) ? -ret :
224 		       ip_set_eexist(ret, flags) ? 0 : ret;
225 	}
226 
227 	ip_to = ip;
228 	if (tb[IPSET_ATTR_IP_TO]) {
229 		ret = ip_set_get_hostipaddr4(tb[IPSET_ATTR_IP_TO], &ip_to);
230 		if (ret)
231 			return ret;
232 		if (ip_to < ip)
233 			swap(ip, ip_to);
234 		if (unlikely(ip + UINT_MAX == ip_to))
235 			return -IPSET_ERR_HASH_RANGE;
236 	} else {
237 		ip_set_mask_from_to(ip, ip_to, e.cidr[0]);
238 	}
239 
240 	ip2_to = ip2_from;
241 	if (tb[IPSET_ATTR_IP2_TO]) {
242 		ret = ip_set_get_hostipaddr4(tb[IPSET_ATTR_IP2_TO], &ip2_to);
243 		if (ret)
244 			return ret;
245 		if (ip2_to < ip2_from)
246 			swap(ip2_from, ip2_to);
247 		if (unlikely(ip2_from + UINT_MAX == ip2_to))
248 			return -IPSET_ERR_HASH_RANGE;
249 	} else {
250 		ip_set_mask_from_to(ip2_from, ip2_to, e.cidr[1]);
251 	}
252 
253 	if (retried) {
254 		ip = ntohl(h->next.ip[0]);
255 		ip2 = ntohl(h->next.ip[1]);
256 	} else {
257 		ip2 = ip2_from;
258 	}
259 
260 	do {
261 		e.ip[0] = htonl(ip);
262 		ip = ip_set_range_to_cidr(ip, ip_to, &e.cidr[0]);
263 		do {
264 			i++;
265 			e.ip[1] = htonl(ip2);
266 			if (i > IPSET_MAX_RANGE) {
267 				hash_netnet4_data_next(&h->next, &e);
268 				return -ERANGE;
269 			}
270 			ip2 = ip_set_range_to_cidr(ip2, ip2_to, &e.cidr[1]);
271 			ret = adtfn(set, &e, &ext, &ext, flags);
272 			if (ret && !ip_set_eexist(ret, flags))
273 				return ret;
274 
275 			ret = 0;
276 		} while (ip2++ < ip2_to);
277 		ip2 = ip2_from;
278 	} while (ip++ < ip_to);
279 	return ret;
280 }
281 
282 /* IPv6 variants */
283 
284 struct hash_netnet6_elem {
285 	union nf_inet_addr ip[2];
286 	u8 nomatch;
287 	u8 padding;
288 	union {
289 		u8 cidr[2];
290 		u16 ccmp;
291 	};
292 };
293 
294 /* Common functions */
295 
296 static bool
hash_netnet6_data_equal(const struct hash_netnet6_elem * ip1,const struct hash_netnet6_elem * ip2,u32 * multi)297 hash_netnet6_data_equal(const struct hash_netnet6_elem *ip1,
298 			const struct hash_netnet6_elem *ip2,
299 			u32 *multi)
300 {
301 	return ipv6_addr_equal(&ip1->ip[0].in6, &ip2->ip[0].in6) &&
302 	       ipv6_addr_equal(&ip1->ip[1].in6, &ip2->ip[1].in6) &&
303 	       ip1->ccmp == ip2->ccmp;
304 }
305 
306 static int
hash_netnet6_do_data_match(const struct hash_netnet6_elem * elem)307 hash_netnet6_do_data_match(const struct hash_netnet6_elem *elem)
308 {
309 	return elem->nomatch ? -ENOTEMPTY : 1;
310 }
311 
312 static void
hash_netnet6_data_set_flags(struct hash_netnet6_elem * elem,u32 flags)313 hash_netnet6_data_set_flags(struct hash_netnet6_elem *elem, u32 flags)
314 {
315 	elem->nomatch = (flags >> 16) & IPSET_FLAG_NOMATCH;
316 }
317 
318 static void
hash_netnet6_data_reset_flags(struct hash_netnet6_elem * elem,u8 * flags)319 hash_netnet6_data_reset_flags(struct hash_netnet6_elem *elem, u8 *flags)
320 {
321 	swap(*flags, elem->nomatch);
322 }
323 
324 static void
hash_netnet6_data_reset_elem(struct hash_netnet6_elem * elem,struct hash_netnet6_elem * orig)325 hash_netnet6_data_reset_elem(struct hash_netnet6_elem *elem,
326 			     struct hash_netnet6_elem *orig)
327 {
328 	elem->ip[1] = orig->ip[1];
329 }
330 
331 static void
hash_netnet6_data_netmask(struct hash_netnet6_elem * elem,u8 cidr,bool inner)332 hash_netnet6_data_netmask(struct hash_netnet6_elem *elem, u8 cidr, bool inner)
333 {
334 	if (inner) {
335 		ip6_netmask(&elem->ip[1], cidr);
336 		elem->cidr[1] = cidr;
337 	} else {
338 		ip6_netmask(&elem->ip[0], cidr);
339 		elem->cidr[0] = cidr;
340 	}
341 }
342 
343 static bool
hash_netnet6_data_list(struct sk_buff * skb,const struct hash_netnet6_elem * data)344 hash_netnet6_data_list(struct sk_buff *skb,
345 		       const struct hash_netnet6_elem *data)
346 {
347 	u32 flags = data->nomatch ? IPSET_FLAG_NOMATCH : 0;
348 
349 	if (nla_put_ipaddr6(skb, IPSET_ATTR_IP, &data->ip[0].in6) ||
350 	    nla_put_ipaddr6(skb, IPSET_ATTR_IP2, &data->ip[1].in6) ||
351 	    nla_put_u8(skb, IPSET_ATTR_CIDR, data->cidr[0]) ||
352 	    nla_put_u8(skb, IPSET_ATTR_CIDR2, data->cidr[1]) ||
353 	    (flags &&
354 	     nla_put_net32(skb, IPSET_ATTR_CADT_FLAGS, htonl(flags))))
355 		goto nla_put_failure;
356 	return false;
357 
358 nla_put_failure:
359 	return true;
360 }
361 
362 static void
hash_netnet6_data_next(struct hash_netnet6_elem * next,const struct hash_netnet6_elem * d)363 hash_netnet6_data_next(struct hash_netnet6_elem *next,
364 		       const struct hash_netnet6_elem *d)
365 {
366 }
367 
368 #undef MTYPE
369 #undef HOST_MASK
370 
371 #define MTYPE		hash_netnet6
372 #define HOST_MASK	128
373 #define IP_SET_EMIT_CREATE
374 #include "ip_set_hash_gen.h"
375 
376 static void
hash_netnet6_init(struct hash_netnet6_elem * e)377 hash_netnet6_init(struct hash_netnet6_elem *e)
378 {
379 	e->cidr[0] = HOST_MASK;
380 	e->cidr[1] = HOST_MASK;
381 }
382 
383 static int
hash_netnet6_kadt(struct ip_set * set,const struct sk_buff * skb,const struct xt_action_param * par,enum ipset_adt adt,struct ip_set_adt_opt * opt)384 hash_netnet6_kadt(struct ip_set *set, const struct sk_buff *skb,
385 		  const struct xt_action_param *par,
386 		  enum ipset_adt adt, struct ip_set_adt_opt *opt)
387 {
388 	const struct hash_netnet6 *h = set->data;
389 	ipset_adtfn adtfn = set->variant->adt[adt];
390 	struct hash_netnet6_elem e = { };
391 	struct ip_set_ext ext = IP_SET_INIT_KEXT(skb, opt, set);
392 
393 	rcu_read_lock_bh();
394 	e.cidr[0] = INIT_CIDR(h->rnets[0], HOST_MASK);
395 	e.cidr[1] = INIT_CIDR(h->rnets[1], HOST_MASK);
396 	rcu_read_unlock_bh();
397 	if (adt == IPSET_TEST)
398 		e.ccmp = (HOST_MASK << (sizeof(u8) * 8)) | HOST_MASK;
399 
400 	ip6addrptr(skb, opt->flags & IPSET_DIM_ONE_SRC, &e.ip[0].in6);
401 	ip6addrptr(skb, opt->flags & IPSET_DIM_TWO_SRC, &e.ip[1].in6);
402 	ip6_netmask(&e.ip[0], e.cidr[0]);
403 	ip6_netmask(&e.ip[1], e.cidr[1]);
404 
405 	nf_inet_addr_mask_inplace(&e.ip[0], &h->bitmask);
406 	nf_inet_addr_mask_inplace(&e.ip[1], &h->bitmask);
407 	if (e.cidr[0] == HOST_MASK && ipv6_addr_any(&e.ip[0].in6))
408 		return -EINVAL;
409 
410 	return adtfn(set, &e, &ext, &opt->ext, opt->cmdflags);
411 }
412 
413 static int
hash_netnet6_uadt(struct ip_set * set,struct nlattr * tb[],enum ipset_adt adt,u32 * lineno,u32 flags,bool retried)414 hash_netnet6_uadt(struct ip_set *set, struct nlattr *tb[],
415 		  enum ipset_adt adt, u32 *lineno, u32 flags, bool retried)
416 {
417 	ipset_adtfn adtfn = set->variant->adt[adt];
418 	struct hash_netnet6_elem e = { };
419 	struct ip_set_ext ext = IP_SET_INIT_UEXT(set);
420 	const struct hash_netnet6 *h = set->data;
421 	int ret;
422 
423 	if (tb[IPSET_ATTR_LINENO])
424 		*lineno = nla_get_u32(tb[IPSET_ATTR_LINENO]);
425 
426 	hash_netnet6_init(&e);
427 	if (unlikely(!tb[IPSET_ATTR_IP] || !tb[IPSET_ATTR_IP2] ||
428 		     !ip_set_optattr_netorder(tb, IPSET_ATTR_CADT_FLAGS)))
429 		return -IPSET_ERR_PROTOCOL;
430 	if (unlikely(tb[IPSET_ATTR_IP_TO] || tb[IPSET_ATTR_IP2_TO]))
431 		return -IPSET_ERR_HASH_RANGE_UNSUPPORTED;
432 
433 	ret = ip_set_get_ipaddr6(tb[IPSET_ATTR_IP], &e.ip[0]);
434 	if (ret)
435 		return ret;
436 
437 	ret = ip_set_get_ipaddr6(tb[IPSET_ATTR_IP2], &e.ip[1]);
438 	if (ret)
439 		return ret;
440 
441 	ret = ip_set_get_extensions(set, tb, &ext);
442 	if (ret)
443 		return ret;
444 
445 	if (tb[IPSET_ATTR_CIDR]) {
446 		e.cidr[0] = nla_get_u8(tb[IPSET_ATTR_CIDR]);
447 		if (!e.cidr[0] || e.cidr[0] > HOST_MASK)
448 			return -IPSET_ERR_INVALID_CIDR;
449 	}
450 
451 	if (tb[IPSET_ATTR_CIDR2]) {
452 		e.cidr[1] = nla_get_u8(tb[IPSET_ATTR_CIDR2]);
453 		if (!e.cidr[1] || e.cidr[1] > HOST_MASK)
454 			return -IPSET_ERR_INVALID_CIDR;
455 	}
456 
457 	ip6_netmask(&e.ip[0], e.cidr[0]);
458 	ip6_netmask(&e.ip[1], e.cidr[1]);
459 
460 	nf_inet_addr_mask_inplace(&e.ip[0], &h->bitmask);
461 	nf_inet_addr_mask_inplace(&e.ip[1], &h->bitmask);
462 	if (e.cidr[0] == HOST_MASK && ipv6_addr_any(&e.ip[0].in6))
463 		return -IPSET_ERR_HASH_ELEM;
464 
465 	if (tb[IPSET_ATTR_CADT_FLAGS]) {
466 		u32 cadt_flags = ip_set_get_h32(tb[IPSET_ATTR_CADT_FLAGS]);
467 
468 		if (cadt_flags & IPSET_FLAG_NOMATCH)
469 			flags |= (IPSET_FLAG_NOMATCH << 16);
470 	}
471 
472 	ret = adtfn(set, &e, &ext, &ext, flags);
473 
474 	return ip_set_enomatch(ret, flags, adt, set) ? -ret :
475 	       ip_set_eexist(ret, flags) ? 0 : ret;
476 }
477 
478 static struct ip_set_type hash_netnet_type __read_mostly = {
479 	.name		= "hash:net,net",
480 	.protocol	= IPSET_PROTOCOL,
481 	.features	= IPSET_TYPE_IP | IPSET_TYPE_IP2 | IPSET_TYPE_NOMATCH,
482 	.dimension	= IPSET_DIM_TWO,
483 	.family		= NFPROTO_UNSPEC,
484 	.revision_min	= IPSET_TYPE_REV_MIN,
485 	.revision_max	= IPSET_TYPE_REV_MAX,
486 	.create_flags[IPSET_TYPE_REV_MAX] = IPSET_CREATE_FLAG_BUCKETSIZE,
487 	.create		= hash_netnet_create,
488 	.create_policy	= {
489 		[IPSET_ATTR_HASHSIZE]	= { .type = NLA_U32 },
490 		[IPSET_ATTR_MAXELEM]	= { .type = NLA_U32 },
491 		[IPSET_ATTR_INITVAL]	= { .type = NLA_U32 },
492 		[IPSET_ATTR_BUCKETSIZE]	= { .type = NLA_U8 },
493 		[IPSET_ATTR_RESIZE]	= { .type = NLA_U8  },
494 		[IPSET_ATTR_TIMEOUT]	= { .type = NLA_U32 },
495 		[IPSET_ATTR_CADT_FLAGS]	= { .type = NLA_U32 },
496 		[IPSET_ATTR_NETMASK]    = { .type = NLA_U8 },
497 		[IPSET_ATTR_BITMASK]	= { .type = NLA_NESTED },
498 	},
499 	.adt_policy	= {
500 		[IPSET_ATTR_IP]		= { .type = NLA_NESTED },
501 		[IPSET_ATTR_IP_TO]	= { .type = NLA_NESTED },
502 		[IPSET_ATTR_IP2]	= { .type = NLA_NESTED },
503 		[IPSET_ATTR_IP2_TO]	= { .type = NLA_NESTED },
504 		[IPSET_ATTR_CIDR]	= { .type = NLA_U8 },
505 		[IPSET_ATTR_CIDR2]	= { .type = NLA_U8 },
506 		[IPSET_ATTR_TIMEOUT]	= { .type = NLA_U32 },
507 		[IPSET_ATTR_LINENO]	= { .type = NLA_U32 },
508 		[IPSET_ATTR_CADT_FLAGS]	= { .type = NLA_U32 },
509 		[IPSET_ATTR_BYTES]	= { .type = NLA_U64 },
510 		[IPSET_ATTR_PACKETS]	= { .type = NLA_U64 },
511 		[IPSET_ATTR_COMMENT]	= { .type = NLA_NUL_STRING,
512 					    .len  = IPSET_MAX_COMMENT_SIZE },
513 		[IPSET_ATTR_SKBMARK]	= { .type = NLA_U64 },
514 		[IPSET_ATTR_SKBPRIO]	= { .type = NLA_U32 },
515 		[IPSET_ATTR_SKBQUEUE]	= { .type = NLA_U16 },
516 	},
517 	.me		= THIS_MODULE,
518 };
519 
520 static int __init
hash_netnet_init(void)521 hash_netnet_init(void)
522 {
523 	return ip_set_type_register(&hash_netnet_type);
524 }
525 
526 static void __exit
hash_netnet_fini(void)527 hash_netnet_fini(void)
528 {
529 	rcu_barrier();
530 	ip_set_type_unregister(&hash_netnet_type);
531 }
532 
533 module_init(hash_netnet_init);
534 module_exit(hash_netnet_fini);
535