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c7232c99
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1/*
2 * (C) 1999-2001 Paul `Rusty' Russell
5b1158e9 3 * (C) 2002-2006 Netfilter Core Team <coreteam@netfilter.org>
c7232c99 4 * (C) 2011 Patrick McHardy <kaber@trash.net>
5b1158e9
JK
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 */
10
11#include <linux/module.h>
12#include <linux/types.h>
13#include <linux/timer.h>
14#include <linux/skbuff.h>
5a0e3ad6 15#include <linux/gfp.h>
c7232c99 16#include <net/xfrm.h>
5b1158e9 17#include <linux/jhash.h>
c7232c99 18#include <linux/rtnetlink.h>
5b1158e9 19
5b1158e9
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20#include <net/netfilter/nf_conntrack.h>
21#include <net/netfilter/nf_conntrack_core.h>
22#include <net/netfilter/nf_nat.h>
c7232c99
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23#include <net/netfilter/nf_nat_l3proto.h>
24#include <net/netfilter/nf_nat_l4proto.h>
5b1158e9
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25#include <net/netfilter/nf_nat_core.h>
26#include <net/netfilter/nf_nat_helper.h>
27#include <net/netfilter/nf_conntrack_helper.h>
28#include <net/netfilter/nf_conntrack_l3proto.h>
5d0aa2cc 29#include <net/netfilter/nf_conntrack_zones.h>
c7232c99 30#include <linux/netfilter/nf_nat.h>
5b1158e9 31
02502f62 32static DEFINE_SPINLOCK(nf_nat_lock);
5b1158e9 33
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34static DEFINE_MUTEX(nf_nat_proto_mutex);
35static const struct nf_nat_l3proto __rcu *nf_nat_l3protos[NFPROTO_NUMPROTO]
36 __read_mostly;
37static const struct nf_nat_l4proto __rcu **nf_nat_l4protos[NFPROTO_NUMPROTO]
ce4b1ceb 38 __read_mostly;
5b1158e9 39
c7232c99
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40
41inline const struct nf_nat_l3proto *
42__nf_nat_l3proto_find(u8 family)
5b1158e9 43{
c7232c99 44 return rcu_dereference(nf_nat_l3protos[family]);
5b1158e9
JK
45}
46
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47inline const struct nf_nat_l4proto *
48__nf_nat_l4proto_find(u8 family, u8 protonum)
49{
50 return rcu_dereference(nf_nat_l4protos[family][protonum]);
51}
52EXPORT_SYMBOL_GPL(__nf_nat_l4proto_find);
53
54#ifdef CONFIG_XFRM
55static void __nf_nat_decode_session(struct sk_buff *skb, struct flowi *fl)
56{
57 const struct nf_nat_l3proto *l3proto;
58 const struct nf_conn *ct;
59 enum ip_conntrack_info ctinfo;
60 enum ip_conntrack_dir dir;
61 unsigned long statusbit;
62 u8 family;
63
64 ct = nf_ct_get(skb, &ctinfo);
65 if (ct == NULL)
66 return;
67
68 family = ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple.src.l3num;
69 rcu_read_lock();
70 l3proto = __nf_nat_l3proto_find(family);
71 if (l3proto == NULL)
72 goto out;
73
74 dir = CTINFO2DIR(ctinfo);
75 if (dir == IP_CT_DIR_ORIGINAL)
76 statusbit = IPS_DST_NAT;
77 else
78 statusbit = IPS_SRC_NAT;
79
80 l3proto->decode_session(skb, ct, dir, statusbit, fl);
81out:
82 rcu_read_unlock();
83}
84
85int nf_xfrm_me_harder(struct sk_buff *skb, unsigned int family)
86{
87 struct flowi fl;
88 unsigned int hh_len;
89 struct dst_entry *dst;
90
91 if (xfrm_decode_session(skb, &fl, family) < 0)
92 return -1;
93
94 dst = skb_dst(skb);
95 if (dst->xfrm)
96 dst = ((struct xfrm_dst *)dst)->route;
97 dst_hold(dst);
98
99 dst = xfrm_lookup(dev_net(dst->dev), dst, &fl, skb->sk, 0);
100 if (IS_ERR(dst))
101 return -1;
102
103 skb_dst_drop(skb);
104 skb_dst_set(skb, dst);
105
106 /* Change in oif may mean change in hh_len. */
107 hh_len = skb_dst(skb)->dev->hard_header_len;
108 if (skb_headroom(skb) < hh_len &&
109 pskb_expand_head(skb, hh_len - skb_headroom(skb), 0, GFP_ATOMIC))
110 return -1;
111 return 0;
112}
113EXPORT_SYMBOL(nf_xfrm_me_harder);
114#endif /* CONFIG_XFRM */
115
5b1158e9
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116/* We keep an extra hash for each conntrack, for fast searching. */
117static inline unsigned int
5d0aa2cc
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118hash_by_src(const struct net *net, u16 zone,
119 const struct nf_conntrack_tuple *tuple)
5b1158e9 120{
34498825
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121 unsigned int hash;
122
5b1158e9 123 /* Original src, to ensure we map it consistently if poss. */
c7232c99
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124 hash = jhash2((u32 *)&tuple->src, sizeof(tuple->src) / sizeof(u32),
125 tuple->dst.protonum ^ zone ^ nf_conntrack_hash_rnd);
126 return ((u64)hash * net->ct.nat_htable_size) >> 32;
5b1158e9
JK
127}
128
5b1158e9
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129/* Is this tuple already taken? (not by us) */
130int
131nf_nat_used_tuple(const struct nf_conntrack_tuple *tuple,
132 const struct nf_conn *ignored_conntrack)
133{
134 /* Conntrack tracking doesn't keep track of outgoing tuples; only
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135 * incoming ones. NAT means they don't have a fixed mapping,
136 * so we invert the tuple and look for the incoming reply.
137 *
138 * We could keep a separate hash if this proves too slow.
139 */
5b1158e9
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140 struct nf_conntrack_tuple reply;
141
142 nf_ct_invert_tuplepr(&reply, tuple);
143 return nf_conntrack_tuple_taken(&reply, ignored_conntrack);
144}
145EXPORT_SYMBOL(nf_nat_used_tuple);
146
147/* If we source map this tuple so reply looks like reply_tuple, will
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148 * that meet the constraints of range.
149 */
150static int in_range(const struct nf_nat_l3proto *l3proto,
151 const struct nf_nat_l4proto *l4proto,
152 const struct nf_conntrack_tuple *tuple,
153 const struct nf_nat_range *range)
5b1158e9 154{
5b1158e9 155 /* If we are supposed to map IPs, then we must be in the
c7232c99
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156 * range specified, otherwise let this drag us onto a new src IP.
157 */
158 if (range->flags & NF_NAT_RANGE_MAP_IPS &&
159 !l3proto->in_range(tuple, range))
160 return 0;
5b1158e9 161
cbc9f2f4 162 if (!(range->flags & NF_NAT_RANGE_PROTO_SPECIFIED) ||
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163 l4proto->in_range(tuple, NF_NAT_MANIP_SRC,
164 &range->min_proto, &range->max_proto))
165 return 1;
5b1158e9 166
c7232c99 167 return 0;
5b1158e9
JK
168}
169
170static inline int
171same_src(const struct nf_conn *ct,
172 const struct nf_conntrack_tuple *tuple)
173{
174 const struct nf_conntrack_tuple *t;
175
176 t = &ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple;
177 return (t->dst.protonum == tuple->dst.protonum &&
c7232c99 178 nf_inet_addr_cmp(&t->src.u3, &tuple->src.u3) &&
5b1158e9
JK
179 t->src.u.all == tuple->src.u.all);
180}
181
182/* Only called for SRC manip */
183static int
5d0aa2cc 184find_appropriate_src(struct net *net, u16 zone,
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185 const struct nf_nat_l3proto *l3proto,
186 const struct nf_nat_l4proto *l4proto,
0c4c9288 187 const struct nf_conntrack_tuple *tuple,
5b1158e9 188 struct nf_conntrack_tuple *result,
c7232c99 189 const struct nf_nat_range *range)
5b1158e9 190{
5d0aa2cc 191 unsigned int h = hash_by_src(net, zone, tuple);
72b72949
JE
192 const struct nf_conn_nat *nat;
193 const struct nf_conn *ct;
194 const struct hlist_node *n;
5b1158e9 195
c7232c99 196 hlist_for_each_entry_rcu(nat, n, &net->ct.nat_bysource[h], bysource) {
b6b84d4a 197 ct = nat->ct;
5d0aa2cc 198 if (same_src(ct, tuple) && nf_ct_zone(ct) == zone) {
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199 /* Copy source part from reply tuple. */
200 nf_ct_invert_tuplepr(result,
201 &ct->tuplehash[IP_CT_DIR_REPLY].tuple);
202 result->dst = tuple->dst;
203
c7232c99 204 if (in_range(l3proto, l4proto, result, range)) {
4d354c57 205 rcu_read_unlock();
5b1158e9
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206 return 1;
207 }
208 }
209 }
5b1158e9
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210 return 0;
211}
212
213/* For [FUTURE] fragmentation handling, we want the least-used
c7232c99
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214 * src-ip/dst-ip/proto triple. Fairness doesn't come into it. Thus
215 * if the range specifies 1.2.3.4 ports 10000-10005 and 1.2.3.5 ports
216 * 1-65535, we don't do pro-rata allocation based on ports; we choose
217 * the ip with the lowest src-ip/dst-ip/proto usage.
218 */
5b1158e9 219static void
5d0aa2cc 220find_best_ips_proto(u16 zone, struct nf_conntrack_tuple *tuple,
c7232c99 221 const struct nf_nat_range *range,
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222 const struct nf_conn *ct,
223 enum nf_nat_manip_type maniptype)
224{
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225 union nf_inet_addr *var_ipp;
226 unsigned int i, max;
5b1158e9 227 /* Host order */
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228 u32 minip, maxip, j, dist;
229 bool full_range;
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230
231 /* No IP mapping? Do nothing. */
cbc9f2f4 232 if (!(range->flags & NF_NAT_RANGE_MAP_IPS))
5b1158e9
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233 return;
234
cbc9f2f4 235 if (maniptype == NF_NAT_MANIP_SRC)
c7232c99 236 var_ipp = &tuple->src.u3;
5b1158e9 237 else
c7232c99 238 var_ipp = &tuple->dst.u3;
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239
240 /* Fast path: only one choice. */
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241 if (nf_inet_addr_cmp(&range->min_addr, &range->max_addr)) {
242 *var_ipp = range->min_addr;
5b1158e9
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243 return;
244 }
245
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246 if (nf_ct_l3num(ct) == NFPROTO_IPV4)
247 max = sizeof(var_ipp->ip) / sizeof(u32) - 1;
248 else
249 max = sizeof(var_ipp->ip6) / sizeof(u32) - 1;
250
5b1158e9
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251 /* Hashing source and destination IPs gives a fairly even
252 * spread in practice (if there are a small number of IPs
253 * involved, there usually aren't that many connections
254 * anyway). The consistency means that servers see the same
255 * client coming from the same IP (some Internet Banking sites
c7232c99
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256 * like this), even across reboots.
257 */
258 j = jhash2((u32 *)&tuple->src.u3, sizeof(tuple->src.u3),
259 range->flags & NF_NAT_RANGE_PERSISTENT ?
260 0 : (__force u32)tuple->dst.u3.all[max] ^ zone);
261
262 full_range = false;
263 for (i = 0; i <= max; i++) {
264 /* If first bytes of the address are at the maximum, use the
265 * distance. Otherwise use the full range.
266 */
267 if (!full_range) {
268 minip = ntohl((__force __be32)range->min_addr.all[i]);
269 maxip = ntohl((__force __be32)range->max_addr.all[i]);
270 dist = maxip - minip + 1;
271 } else {
272 minip = 0;
273 dist = ~0;
274 }
275
276 var_ipp->all[i] = (__force __u32)
277 htonl(minip + (((u64)j * dist) >> 32));
278 if (var_ipp->all[i] != range->max_addr.all[i])
279 full_range = true;
280
281 if (!(range->flags & NF_NAT_RANGE_PERSISTENT))
282 j ^= (__force u32)tuple->dst.u3.all[i];
283 }
5b1158e9
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284}
285
c7232c99
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286/* Manipulate the tuple into the range given. For NF_INET_POST_ROUTING,
287 * we change the source to map into the range. For NF_INET_PRE_ROUTING
6e23ae2a 288 * and NF_INET_LOCAL_OUT, we change the destination to map into the
c7232c99 289 * range. It might not be possible to get a unique tuple, but we try.
5b1158e9
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290 * At worst (or if we race), we will end up with a final duplicate in
291 * __ip_conntrack_confirm and drop the packet. */
292static void
293get_unique_tuple(struct nf_conntrack_tuple *tuple,
294 const struct nf_conntrack_tuple *orig_tuple,
c7232c99 295 const struct nf_nat_range *range,
5b1158e9
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296 struct nf_conn *ct,
297 enum nf_nat_manip_type maniptype)
298{
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299 const struct nf_nat_l3proto *l3proto;
300 const struct nf_nat_l4proto *l4proto;
0c4c9288 301 struct net *net = nf_ct_net(ct);
5d0aa2cc 302 u16 zone = nf_ct_zone(ct);
5b1158e9 303
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304 rcu_read_lock();
305 l3proto = __nf_nat_l3proto_find(orig_tuple->src.l3num);
306 l4proto = __nf_nat_l4proto_find(orig_tuple->src.l3num,
307 orig_tuple->dst.protonum);
5b1158e9 308
c7232c99
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309 /* 1) If this srcip/proto/src-proto-part is currently mapped,
310 * and that same mapping gives a unique tuple within the given
311 * range, use that.
312 *
313 * This is only required for source (ie. NAT/masq) mappings.
314 * So far, we don't do local source mappings, so multiple
315 * manips not an issue.
316 */
cbc9f2f4
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317 if (maniptype == NF_NAT_MANIP_SRC &&
318 !(range->flags & NF_NAT_RANGE_PROTO_RANDOM)) {
41a7cab6 319 /* try the original tuple first */
c7232c99 320 if (in_range(l3proto, l4proto, orig_tuple, range)) {
41a7cab6
CG
321 if (!nf_nat_used_tuple(orig_tuple, ct)) {
322 *tuple = *orig_tuple;
c7232c99 323 goto out;
41a7cab6 324 }
c7232c99
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325 } else if (find_appropriate_src(net, zone, l3proto, l4proto,
326 orig_tuple, tuple, range)) {
0d53778e 327 pr_debug("get_unique_tuple: Found current src map\n");
0dbff689 328 if (!nf_nat_used_tuple(tuple, ct))
c7232c99 329 goto out;
5b1158e9
JK
330 }
331 }
332
c7232c99 333 /* 2) Select the least-used IP/proto combination in the given range */
5b1158e9 334 *tuple = *orig_tuple;
5d0aa2cc 335 find_best_ips_proto(zone, tuple, range, ct, maniptype);
5b1158e9
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336
337 /* 3) The per-protocol part of the manip is made to map into
c7232c99
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338 * the range to make a unique tuple.
339 */
5b1158e9
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340
341 /* Only bother mapping if it's not already in range and unique */
cbc9f2f4
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342 if (!(range->flags & NF_NAT_RANGE_PROTO_RANDOM)) {
343 if (range->flags & NF_NAT_RANGE_PROTO_SPECIFIED) {
c7232c99
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344 if (l4proto->in_range(tuple, maniptype,
345 &range->min_proto,
346 &range->max_proto) &&
347 (range->min_proto.all == range->max_proto.all ||
99ad3c53
CG
348 !nf_nat_used_tuple(tuple, ct)))
349 goto out;
350 } else if (!nf_nat_used_tuple(tuple, ct)) {
351 goto out;
352 }
353 }
5b1158e9
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354
355 /* Last change: get protocol to try to obtain unique tuple. */
c7232c99 356 l4proto->unique_tuple(l3proto, tuple, range, maniptype, ct);
e22a0548
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357out:
358 rcu_read_unlock();
5b1158e9
JK
359}
360
361unsigned int
362nf_nat_setup_info(struct nf_conn *ct,
c7232c99 363 const struct nf_nat_range *range,
cc01dcbd 364 enum nf_nat_manip_type maniptype)
5b1158e9 365{
0c4c9288 366 struct net *net = nf_ct_net(ct);
5b1158e9 367 struct nf_conntrack_tuple curr_tuple, new_tuple;
2d59e5ca 368 struct nf_conn_nat *nat;
5b1158e9 369
2d59e5ca
YK
370 /* nat helper or nfctnetlink also setup binding */
371 nat = nfct_nat(ct);
372 if (!nat) {
373 nat = nf_ct_ext_add(ct, NF_CT_EXT_NAT, GFP_ATOMIC);
374 if (nat == NULL) {
0d53778e 375 pr_debug("failed to add NAT extension\n");
2d59e5ca
YK
376 return NF_ACCEPT;
377 }
378 }
379
cbc9f2f4
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380 NF_CT_ASSERT(maniptype == NF_NAT_MANIP_SRC ||
381 maniptype == NF_NAT_MANIP_DST);
5b1158e9
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382 BUG_ON(nf_nat_initialized(ct, maniptype));
383
384 /* What we've got will look like inverse of reply. Normally
c7232c99
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385 * this is what is in the conntrack, except for prior
386 * manipulations (future optimization: if num_manips == 0,
387 * orig_tp = ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple)
388 */
5b1158e9
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389 nf_ct_invert_tuplepr(&curr_tuple,
390 &ct->tuplehash[IP_CT_DIR_REPLY].tuple);
391
392 get_unique_tuple(&new_tuple, &curr_tuple, range, ct, maniptype);
393
394 if (!nf_ct_tuple_equal(&new_tuple, &curr_tuple)) {
395 struct nf_conntrack_tuple reply;
396
397 /* Alter conntrack table so will recognize replies. */
398 nf_ct_invert_tuplepr(&reply, &new_tuple);
399 nf_conntrack_alter_reply(ct, &reply);
400
401 /* Non-atomic: we own this at the moment. */
cbc9f2f4 402 if (maniptype == NF_NAT_MANIP_SRC)
5b1158e9
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403 ct->status |= IPS_SRC_NAT;
404 else
405 ct->status |= IPS_DST_NAT;
406 }
407
cbc9f2f4 408 if (maniptype == NF_NAT_MANIP_SRC) {
5b1158e9
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409 unsigned int srchash;
410
5d0aa2cc
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411 srchash = hash_by_src(net, nf_ct_zone(ct),
412 &ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple);
02502f62 413 spin_lock_bh(&nf_nat_lock);
c7232c99 414 /* nf_conntrack_alter_reply might re-allocate extension aera */
b6b84d4a
YK
415 nat = nfct_nat(ct);
416 nat->ct = ct;
0c4c9288 417 hlist_add_head_rcu(&nat->bysource,
c7232c99 418 &net->ct.nat_bysource[srchash]);
02502f62 419 spin_unlock_bh(&nf_nat_lock);
5b1158e9
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420 }
421
422 /* It's done. */
cbc9f2f4 423 if (maniptype == NF_NAT_MANIP_DST)
a7c2f4d7 424 ct->status |= IPS_DST_NAT_DONE;
5b1158e9 425 else
a7c2f4d7 426 ct->status |= IPS_SRC_NAT_DONE;
5b1158e9
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427
428 return NF_ACCEPT;
429}
430EXPORT_SYMBOL(nf_nat_setup_info);
431
5b1158e9
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432/* Do packet manipulations according to nf_nat_setup_info. */
433unsigned int nf_nat_packet(struct nf_conn *ct,
434 enum ip_conntrack_info ctinfo,
435 unsigned int hooknum,
3db05fea 436 struct sk_buff *skb)
5b1158e9 437{
c7232c99
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438 const struct nf_nat_l3proto *l3proto;
439 const struct nf_nat_l4proto *l4proto;
5b1158e9
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440 enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
441 unsigned long statusbit;
442 enum nf_nat_manip_type mtype = HOOK2MANIP(hooknum);
443
cbc9f2f4 444 if (mtype == NF_NAT_MANIP_SRC)
5b1158e9
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445 statusbit = IPS_SRC_NAT;
446 else
447 statusbit = IPS_DST_NAT;
448
449 /* Invert if this is reply dir. */
450 if (dir == IP_CT_DIR_REPLY)
451 statusbit ^= IPS_NAT_MASK;
452
453 /* Non-atomic: these bits don't change. */
454 if (ct->status & statusbit) {
455 struct nf_conntrack_tuple target;
456
457 /* We are aiming to look like inverse of other direction. */
458 nf_ct_invert_tuplepr(&target, &ct->tuplehash[!dir].tuple);
459
c7232c99
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460 l3proto = __nf_nat_l3proto_find(target.src.l3num);
461 l4proto = __nf_nat_l4proto_find(target.src.l3num,
462 target.dst.protonum);
463 if (!l3proto->manip_pkt(skb, 0, l4proto, &target, mtype))
5b1158e9
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464 return NF_DROP;
465 }
466 return NF_ACCEPT;
467}
468EXPORT_SYMBOL_GPL(nf_nat_packet);
469
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470struct nf_nat_proto_clean {
471 u8 l3proto;
472 u8 l4proto;
473 bool hash;
474};
475
476/* Clear NAT section of all conntracks, in case we're loaded again. */
477static int nf_nat_proto_clean(struct nf_conn *i, void *data)
5b1158e9 478{
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479 const struct nf_nat_proto_clean *clean = data;
480 struct nf_conn_nat *nat = nfct_nat(i);
5b1158e9 481
c7232c99 482 if (!nat)
5b1158e9 483 return 0;
c7232c99
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484 if ((clean->l3proto && nf_ct_l3num(i) != clean->l3proto) ||
485 (clean->l4proto && nf_ct_protonum(i) != clean->l4proto))
5b1158e9
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486 return 0;
487
c7232c99
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488 if (clean->hash) {
489 spin_lock_bh(&nf_nat_lock);
490 hlist_del_rcu(&nat->bysource);
491 spin_unlock_bh(&nf_nat_lock);
492 } else {
493 memset(nat, 0, sizeof(*nat));
494 i->status &= ~(IPS_NAT_MASK | IPS_NAT_DONE_MASK |
495 IPS_SEQ_ADJUST);
5b1158e9 496 }
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497 return 0;
498}
5b1158e9 499
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500static void nf_nat_l4proto_clean(u8 l3proto, u8 l4proto)
501{
502 struct nf_nat_proto_clean clean = {
503 .l3proto = l3proto,
504 .l4proto = l4proto,
505 };
506 struct net *net;
507
508 rtnl_lock();
509 /* Step 1 - remove from bysource hash */
510 clean.hash = true;
511 for_each_net(net)
512 nf_ct_iterate_cleanup(net, nf_nat_proto_clean, &clean);
513 synchronize_rcu();
5b1158e9 514
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515 /* Step 2 - clean NAT section */
516 clean.hash = false;
517 for_each_net(net)
518 nf_ct_iterate_cleanup(net, nf_nat_proto_clean, &clean);
519 rtnl_unlock();
520}
5b1158e9 521
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522static void nf_nat_l3proto_clean(u8 l3proto)
523{
524 struct nf_nat_proto_clean clean = {
525 .l3proto = l3proto,
526 };
527 struct net *net;
528
529 rtnl_lock();
530 /* Step 1 - remove from bysource hash */
531 clean.hash = true;
532 for_each_net(net)
533 nf_ct_iterate_cleanup(net, nf_nat_proto_clean, &clean);
534 synchronize_rcu();
5b1158e9 535
c7232c99
PM
536 /* Step 2 - clean NAT section */
537 clean.hash = false;
538 for_each_net(net)
539 nf_ct_iterate_cleanup(net, nf_nat_proto_clean, &clean);
540 rtnl_unlock();
5b1158e9 541}
5b1158e9
JK
542
543/* Protocol registration. */
c7232c99 544int nf_nat_l4proto_register(u8 l3proto, const struct nf_nat_l4proto *l4proto)
5b1158e9 545{
c7232c99
PM
546 const struct nf_nat_l4proto **l4protos;
547 unsigned int i;
5b1158e9
JK
548 int ret = 0;
549
c7232c99
PM
550 mutex_lock(&nf_nat_proto_mutex);
551 if (nf_nat_l4protos[l3proto] == NULL) {
552 l4protos = kmalloc(IPPROTO_MAX * sizeof(struct nf_nat_l4proto *),
553 GFP_KERNEL);
554 if (l4protos == NULL) {
555 ret = -ENOMEM;
556 goto out;
557 }
558
559 for (i = 0; i < IPPROTO_MAX; i++)
560 RCU_INIT_POINTER(l4protos[i], &nf_nat_l4proto_unknown);
561
562 /* Before making proto_array visible to lockless readers,
563 * we must make sure its content is committed to memory.
564 */
565 smp_wmb();
566
567 nf_nat_l4protos[l3proto] = l4protos;
568 }
569
eb733162 570 if (rcu_dereference_protected(
c7232c99
PM
571 nf_nat_l4protos[l3proto][l4proto->l4proto],
572 lockdep_is_held(&nf_nat_proto_mutex)
573 ) != &nf_nat_l4proto_unknown) {
5b1158e9
JK
574 ret = -EBUSY;
575 goto out;
576 }
c7232c99 577 RCU_INIT_POINTER(nf_nat_l4protos[l3proto][l4proto->l4proto], l4proto);
5b1158e9 578 out:
c7232c99 579 mutex_unlock(&nf_nat_proto_mutex);
5b1158e9
JK
580 return ret;
581}
c7232c99 582EXPORT_SYMBOL_GPL(nf_nat_l4proto_register);
5b1158e9 583
25985edc 584/* No one stores the protocol anywhere; simply delete it. */
c7232c99 585void nf_nat_l4proto_unregister(u8 l3proto, const struct nf_nat_l4proto *l4proto)
5b1158e9 586{
c7232c99
PM
587 mutex_lock(&nf_nat_proto_mutex);
588 RCU_INIT_POINTER(nf_nat_l4protos[l3proto][l4proto->l4proto],
589 &nf_nat_l4proto_unknown);
590 mutex_unlock(&nf_nat_proto_mutex);
e22a0548 591 synchronize_rcu();
c7232c99
PM
592
593 nf_nat_l4proto_clean(l3proto, l4proto->l4proto);
5b1158e9 594}
c7232c99
PM
595EXPORT_SYMBOL_GPL(nf_nat_l4proto_unregister);
596
597int nf_nat_l3proto_register(const struct nf_nat_l3proto *l3proto)
598{
599 int err;
600
601 err = nf_ct_l3proto_try_module_get(l3proto->l3proto);
602 if (err < 0)
603 return err;
604
605 mutex_lock(&nf_nat_proto_mutex);
606 RCU_INIT_POINTER(nf_nat_l4protos[l3proto->l3proto][IPPROTO_TCP],
607 &nf_nat_l4proto_tcp);
608 RCU_INIT_POINTER(nf_nat_l4protos[l3proto->l3proto][IPPROTO_UDP],
609 &nf_nat_l4proto_udp);
610 mutex_unlock(&nf_nat_proto_mutex);
611
612 RCU_INIT_POINTER(nf_nat_l3protos[l3proto->l3proto], l3proto);
613 return 0;
614}
615EXPORT_SYMBOL_GPL(nf_nat_l3proto_register);
616
617void nf_nat_l3proto_unregister(const struct nf_nat_l3proto *l3proto)
618{
619 mutex_lock(&nf_nat_proto_mutex);
620 RCU_INIT_POINTER(nf_nat_l3protos[l3proto->l3proto], NULL);
621 mutex_unlock(&nf_nat_proto_mutex);
622 synchronize_rcu();
623
624 nf_nat_l3proto_clean(l3proto->l3proto);
625 nf_ct_l3proto_module_put(l3proto->l3proto);
626}
627EXPORT_SYMBOL_GPL(nf_nat_l3proto_unregister);
5b1158e9 628
25985edc 629/* No one using conntrack by the time this called. */
d8a0509a
YK
630static void nf_nat_cleanup_conntrack(struct nf_conn *ct)
631{
632 struct nf_conn_nat *nat = nf_ct_ext_find(ct, NF_CT_EXT_NAT);
633
b6b84d4a 634 if (nat == NULL || nat->ct == NULL)
d8a0509a
YK
635 return;
636
41a7cab6 637 NF_CT_ASSERT(nat->ct->status & IPS_SRC_NAT_DONE);
d8a0509a 638
02502f62 639 spin_lock_bh(&nf_nat_lock);
4d354c57 640 hlist_del_rcu(&nat->bysource);
02502f62 641 spin_unlock_bh(&nf_nat_lock);
d8a0509a
YK
642}
643
86577c66 644static void nf_nat_move_storage(void *new, void *old)
2d59e5ca 645{
86577c66
PM
646 struct nf_conn_nat *new_nat = new;
647 struct nf_conn_nat *old_nat = old;
b6b84d4a 648 struct nf_conn *ct = old_nat->ct;
2d59e5ca 649
41a7cab6 650 if (!ct || !(ct->status & IPS_SRC_NAT_DONE))
2d59e5ca
YK
651 return;
652
02502f62 653 spin_lock_bh(&nf_nat_lock);
68b80f11 654 hlist_replace_rcu(&old_nat->bysource, &new_nat->bysource);
02502f62 655 spin_unlock_bh(&nf_nat_lock);
2d59e5ca
YK
656}
657
61eb3107 658static struct nf_ct_ext_type nat_extend __read_mostly = {
d8a0509a
YK
659 .len = sizeof(struct nf_conn_nat),
660 .align = __alignof__(struct nf_conn_nat),
661 .destroy = nf_nat_cleanup_conntrack,
662 .move = nf_nat_move_storage,
663 .id = NF_CT_EXT_NAT,
664 .flags = NF_CT_EXT_F_PREALLOC,
2d59e5ca
YK
665};
666
e6a7d3c0
PNA
667#if defined(CONFIG_NF_CT_NETLINK) || defined(CONFIG_NF_CT_NETLINK_MODULE)
668
669#include <linux/netfilter/nfnetlink.h>
670#include <linux/netfilter/nfnetlink_conntrack.h>
671
672static const struct nla_policy protonat_nla_policy[CTA_PROTONAT_MAX+1] = {
673 [CTA_PROTONAT_PORT_MIN] = { .type = NLA_U16 },
674 [CTA_PROTONAT_PORT_MAX] = { .type = NLA_U16 },
675};
676
677static int nfnetlink_parse_nat_proto(struct nlattr *attr,
678 const struct nf_conn *ct,
c7232c99 679 struct nf_nat_range *range)
e6a7d3c0
PNA
680{
681 struct nlattr *tb[CTA_PROTONAT_MAX+1];
c7232c99 682 const struct nf_nat_l4proto *l4proto;
e6a7d3c0
PNA
683 int err;
684
685 err = nla_parse_nested(tb, CTA_PROTONAT_MAX, attr, protonat_nla_policy);
686 if (err < 0)
687 return err;
688
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PM
689 l4proto = __nf_nat_l4proto_find(nf_ct_l3num(ct), nf_ct_protonum(ct));
690 if (l4proto->nlattr_to_range)
691 err = l4proto->nlattr_to_range(tb, range);
692
e6a7d3c0
PNA
693 return err;
694}
695
696static const struct nla_policy nat_nla_policy[CTA_NAT_MAX+1] = {
c7232c99
PM
697 [CTA_NAT_V4_MINIP] = { .type = NLA_U32 },
698 [CTA_NAT_V4_MAXIP] = { .type = NLA_U32 },
329fb58a 699 [CTA_NAT_PROTO] = { .type = NLA_NESTED },
e6a7d3c0
PNA
700};
701
702static int
39938324 703nfnetlink_parse_nat(const struct nlattr *nat,
c7232c99 704 const struct nf_conn *ct, struct nf_nat_range *range)
e6a7d3c0 705{
c7232c99 706 const struct nf_nat_l3proto *l3proto;
e6a7d3c0
PNA
707 struct nlattr *tb[CTA_NAT_MAX+1];
708 int err;
709
710 memset(range, 0, sizeof(*range));
711
712 err = nla_parse_nested(tb, CTA_NAT_MAX, nat, nat_nla_policy);
713 if (err < 0)
714 return err;
715
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716 rcu_read_lock();
717 l3proto = __nf_nat_l3proto_find(nf_ct_l3num(ct));
718 if (l3proto == NULL) {
719 err = -EAGAIN;
720 goto out;
721 }
722 err = l3proto->nlattr_to_range(tb, range);
723 if (err < 0)
724 goto out;
e6a7d3c0
PNA
725
726 if (!tb[CTA_NAT_PROTO])
c7232c99 727 goto out;
e6a7d3c0
PNA
728
729 err = nfnetlink_parse_nat_proto(tb[CTA_NAT_PROTO], ct, range);
c7232c99
PM
730out:
731 rcu_read_unlock();
732 return err;
e6a7d3c0
PNA
733}
734
735static int
736nfnetlink_parse_nat_setup(struct nf_conn *ct,
737 enum nf_nat_manip_type manip,
39938324 738 const struct nlattr *attr)
e6a7d3c0 739{
c7232c99
PM
740 struct nf_nat_range range;
741 int err;
e6a7d3c0 742
c7232c99
PM
743 err = nfnetlink_parse_nat(attr, ct, &range);
744 if (err < 0)
745 return err;
e6a7d3c0
PNA
746 if (nf_nat_initialized(ct, manip))
747 return -EEXIST;
748
749 return nf_nat_setup_info(ct, &range, manip);
750}
751#else
752static int
753nfnetlink_parse_nat_setup(struct nf_conn *ct,
754 enum nf_nat_manip_type manip,
39938324 755 const struct nlattr *attr)
e6a7d3c0
PNA
756{
757 return -EOPNOTSUPP;
758}
759#endif
760
0c4c9288
AD
761static int __net_init nf_nat_net_init(struct net *net)
762{
d696c7bd 763 /* Leave them the same for the moment. */
c7232c99
PM
764 net->ct.nat_htable_size = net->ct.htable_size;
765 net->ct.nat_bysource = nf_ct_alloc_hashtable(&net->ct.nat_htable_size, 0);
766 if (!net->ct.nat_bysource)
0c4c9288
AD
767 return -ENOMEM;
768 return 0;
769}
770
0c4c9288
AD
771static void __net_exit nf_nat_net_exit(struct net *net)
772{
c7232c99
PM
773 struct nf_nat_proto_clean clean = {};
774
775 nf_ct_iterate_cleanup(net, &nf_nat_proto_clean, &clean);
0c4c9288 776 synchronize_rcu();
c7232c99 777 nf_ct_free_hashtable(net->ct.nat_bysource, net->ct.nat_htable_size);
0c4c9288
AD
778}
779
780static struct pernet_operations nf_nat_net_ops = {
781 .init = nf_nat_net_init,
782 .exit = nf_nat_net_exit,
783};
784
544d5c7d
PNA
785static struct nf_ct_helper_expectfn follow_master_nat = {
786 .name = "nat-follow-master",
787 .expectfn = nf_nat_follow_master,
788};
789
d584a61a
PNA
790static struct nfq_ct_nat_hook nfq_ct_nat = {
791 .seq_adjust = nf_nat_tcp_seq_adjust,
792};
793
5b1158e9
JK
794static int __init nf_nat_init(void)
795{
2d59e5ca
YK
796 int ret;
797
798 ret = nf_ct_extend_register(&nat_extend);
799 if (ret < 0) {
800 printk(KERN_ERR "nf_nat_core: Unable to register extension\n");
801 return ret;
802 }
5b1158e9 803
0c4c9288
AD
804 ret = register_pernet_subsys(&nf_nat_net_ops);
805 if (ret < 0)
2d59e5ca 806 goto cleanup_extend;
5b1158e9 807
c7232c99 808 nf_ct_helper_expectfn_register(&follow_master_nat);
5b1158e9 809
5b1158e9 810 /* Initialize fake conntrack so that NAT will skip it */
5bfddbd4 811 nf_ct_untracked_status_or(IPS_NAT_DONE_MASK);
5b1158e9 812
dd13b010 813 BUG_ON(nf_nat_seq_adjust_hook != NULL);
a9b3cd7f 814 RCU_INIT_POINTER(nf_nat_seq_adjust_hook, nf_nat_seq_adjust);
e6a7d3c0 815 BUG_ON(nfnetlink_parse_nat_setup_hook != NULL);
a9b3cd7f 816 RCU_INIT_POINTER(nfnetlink_parse_nat_setup_hook,
e6a7d3c0 817 nfnetlink_parse_nat_setup);
f9dd09c7 818 BUG_ON(nf_ct_nat_offset != NULL);
a9b3cd7f 819 RCU_INIT_POINTER(nf_ct_nat_offset, nf_nat_get_offset);
d584a61a 820 RCU_INIT_POINTER(nfq_ct_nat_hook, &nfq_ct_nat);
c7232c99
PM
821#ifdef CONFIG_XFRM
822 BUG_ON(nf_nat_decode_session_hook != NULL);
823 RCU_INIT_POINTER(nf_nat_decode_session_hook, __nf_nat_decode_session);
824#endif
5b1158e9 825 return 0;
2d59e5ca
YK
826
827 cleanup_extend:
828 nf_ct_extend_unregister(&nat_extend);
829 return ret;
5b1158e9
JK
830}
831
5b1158e9
JK
832static void __exit nf_nat_cleanup(void)
833{
c7232c99
PM
834 unsigned int i;
835
0c4c9288 836 unregister_pernet_subsys(&nf_nat_net_ops);
2d59e5ca 837 nf_ct_extend_unregister(&nat_extend);
544d5c7d 838 nf_ct_helper_expectfn_unregister(&follow_master_nat);
a9b3cd7f
SH
839 RCU_INIT_POINTER(nf_nat_seq_adjust_hook, NULL);
840 RCU_INIT_POINTER(nfnetlink_parse_nat_setup_hook, NULL);
841 RCU_INIT_POINTER(nf_ct_nat_offset, NULL);
d584a61a 842 RCU_INIT_POINTER(nfq_ct_nat_hook, NULL);
c7232c99
PM
843#ifdef CONFIG_XFRM
844 RCU_INIT_POINTER(nf_nat_decode_session_hook, NULL);
845#endif
846 for (i = 0; i < NFPROTO_NUMPROTO; i++)
847 kfree(nf_nat_l4protos[i]);
dd13b010 848 synchronize_net();
5b1158e9
JK
849}
850
851MODULE_LICENSE("GPL");
852
853module_init(nf_nat_init);
854module_exit(nf_nat_cleanup);