npf_alg_icmp.c revision 1.9 1 1.9 rmind /* $NetBSD: npf_alg_icmp.c,v 1.9 2012/02/20 00:18:19 rmind Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.1 rmind * Copyright (c) 2010 The NetBSD Foundation, Inc.
5 1.1 rmind * All rights reserved.
6 1.1 rmind *
7 1.1 rmind * This material is based upon work partially supported by The
8 1.1 rmind * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
9 1.1 rmind *
10 1.1 rmind * Redistribution and use in source and binary forms, with or without
11 1.1 rmind * modification, are permitted provided that the following conditions
12 1.1 rmind * are met:
13 1.1 rmind * 1. Redistributions of source code must retain the above copyright
14 1.1 rmind * notice, this list of conditions and the following disclaimer.
15 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 rmind * notice, this list of conditions and the following disclaimer in the
17 1.1 rmind * documentation and/or other materials provided with the distribution.
18 1.1 rmind *
19 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 rmind * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 rmind * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 rmind * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 rmind * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 rmind * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 rmind * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 rmind * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 rmind * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 rmind * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 rmind * POSSIBILITY OF SUCH DAMAGE.
30 1.1 rmind */
31 1.1 rmind
32 1.1 rmind /*
33 1.1 rmind * NPF ALG for ICMP and traceroute translations.
34 1.1 rmind */
35 1.1 rmind
36 1.1 rmind #include <sys/cdefs.h>
37 1.9 rmind __KERNEL_RCSID(0, "$NetBSD: npf_alg_icmp.c,v 1.9 2012/02/20 00:18:19 rmind Exp $");
38 1.1 rmind
39 1.1 rmind #include <sys/param.h>
40 1.1 rmind #include <sys/module.h>
41 1.1 rmind #include <sys/pool.h>
42 1.1 rmind
43 1.1 rmind #include <netinet/in_systm.h>
44 1.1 rmind #include <netinet/in.h>
45 1.1 rmind #include <netinet/ip.h>
46 1.1 rmind #include <netinet/tcp.h>
47 1.1 rmind #include <netinet/udp.h>
48 1.1 rmind #include <netinet/ip_icmp.h>
49 1.1 rmind #include <net/pfil.h>
50 1.1 rmind
51 1.1 rmind #include "npf_impl.h"
52 1.1 rmind
53 1.1 rmind MODULE(MODULE_CLASS_MISC, npf_alg_icmp, "npf");
54 1.1 rmind
55 1.1 rmind /*
56 1.1 rmind * Traceroute criteria.
57 1.1 rmind *
58 1.1 rmind * IANA assigned base port: 33434. However, common practice is to increase
59 1.1 rmind * the port, thus monitor [33434-33484] range. Additional filter is TTL < 50.
60 1.1 rmind */
61 1.1 rmind
62 1.1 rmind #define TR_BASE_PORT 33434
63 1.1 rmind #define TR_PORT_RANGE 33484
64 1.1 rmind #define TR_MAX_TTL 50
65 1.1 rmind
66 1.6 rmind static npf_alg_t * alg_icmp __read_mostly;
67 1.1 rmind
68 1.1 rmind static bool npfa_icmp_match(npf_cache_t *, nbuf_t *, void *);
69 1.1 rmind static bool npfa_icmp_natin(npf_cache_t *, nbuf_t *, void *);
70 1.1 rmind static bool npfa_icmp_session(npf_cache_t *, nbuf_t *, void *);
71 1.1 rmind
72 1.1 rmind /*
73 1.1 rmind * npf_alg_icmp_{init,fini,modcmd}: ICMP ALG initialization, destruction
74 1.1 rmind * and module interface.
75 1.1 rmind */
76 1.1 rmind
77 1.1 rmind static int
78 1.1 rmind npf_alg_icmp_init(void)
79 1.1 rmind {
80 1.1 rmind
81 1.1 rmind alg_icmp = npf_alg_register(npfa_icmp_match, NULL,
82 1.1 rmind npfa_icmp_natin, npfa_icmp_session);
83 1.1 rmind KASSERT(alg_icmp != NULL);
84 1.1 rmind return 0;
85 1.1 rmind }
86 1.1 rmind
87 1.1 rmind static int
88 1.1 rmind npf_alg_icmp_fini(void)
89 1.1 rmind {
90 1.1 rmind
91 1.1 rmind KASSERT(alg_icmp != NULL);
92 1.1 rmind return npf_alg_unregister(alg_icmp);
93 1.1 rmind }
94 1.1 rmind
95 1.1 rmind static int
96 1.1 rmind npf_alg_icmp_modcmd(modcmd_t cmd, void *arg)
97 1.1 rmind {
98 1.1 rmind
99 1.1 rmind switch (cmd) {
100 1.1 rmind case MODULE_CMD_INIT:
101 1.1 rmind return npf_alg_icmp_init();
102 1.1 rmind case MODULE_CMD_FINI:
103 1.1 rmind return npf_alg_icmp_fini();
104 1.1 rmind default:
105 1.1 rmind return ENOTTY;
106 1.1 rmind }
107 1.1 rmind return 0;
108 1.1 rmind }
109 1.1 rmind
110 1.1 rmind /*
111 1.4 rmind * npfa_icmp_match: ALG matching inspector - determines ALG case and
112 1.4 rmind * associates ALG with NAT entry.
113 1.1 rmind */
114 1.1 rmind static bool
115 1.1 rmind npfa_icmp_match(npf_cache_t *npc, nbuf_t *nbuf, void *ntptr)
116 1.1 rmind {
117 1.4 rmind const int proto = npf_cache_ipproto(npc);
118 1.4 rmind struct ip *ip = &npc->npc_ip.v4;
119 1.4 rmind in_port_t dport;
120 1.4 rmind
121 1.7 zoltan KASSERT(npf_iscached(npc, NPC_IP46));
122 1.7 zoltan KASSERT(npf_iscached(npc, NPC_LAYER4));
123 1.4 rmind
124 1.6 rmind /* Check for low TTL. */
125 1.6 rmind if (ip->ip_ttl > TR_MAX_TTL) {
126 1.6 rmind return false;
127 1.6 rmind }
128 1.6 rmind
129 1.4 rmind if (proto == IPPROTO_TCP) {
130 1.4 rmind struct tcphdr *th = &npc->npc_l4.tcp;
131 1.4 rmind dport = ntohs(th->th_dport);
132 1.4 rmind } else if (proto == IPPROTO_UDP) {
133 1.4 rmind struct udphdr *uh = &npc->npc_l4.udp;
134 1.4 rmind dport = ntohs(uh->uh_dport);
135 1.4 rmind } else {
136 1.4 rmind return false;
137 1.4 rmind }
138 1.1 rmind
139 1.1 rmind /* Handle TCP/UDP traceroute - check for port range. */
140 1.1 rmind if (dport < TR_BASE_PORT || dport > TR_PORT_RANGE) {
141 1.1 rmind return false;
142 1.1 rmind }
143 1.1 rmind
144 1.1 rmind /* Associate ALG with translation entry. */
145 1.1 rmind npf_nat_t *nt = ntptr;
146 1.1 rmind npf_nat_setalg(nt, alg_icmp, 0);
147 1.1 rmind return true;
148 1.1 rmind }
149 1.1 rmind
150 1.1 rmind /*
151 1.1 rmind * npf_icmp_uniqid: retrieve unique identifiers - either ICMP query ID
152 1.1 rmind * or TCP/UDP ports of the original packet, which is embedded.
153 1.1 rmind */
154 1.5 rmind static bool
155 1.1 rmind npf_icmp_uniqid(const int type, npf_cache_t *npc, nbuf_t *nbuf, void *n_ptr)
156 1.1 rmind {
157 1.4 rmind struct icmp *ic;
158 1.1 rmind u_int offby;
159 1.1 rmind
160 1.1 rmind /* Per RFC 792. */
161 1.1 rmind switch (type) {
162 1.1 rmind case ICMP_UNREACH:
163 1.1 rmind case ICMP_SOURCEQUENCH:
164 1.1 rmind case ICMP_REDIRECT:
165 1.1 rmind case ICMP_TIMXCEED:
166 1.1 rmind case ICMP_PARAMPROB:
167 1.1 rmind /* Should contain original IP header. */
168 1.1 rmind offby = offsetof(struct icmp, icmp_ip);
169 1.1 rmind if ((n_ptr = nbuf_advance(&nbuf, n_ptr, offby)) == NULL) {
170 1.1 rmind return false;
171 1.1 rmind }
172 1.1 rmind /* Fetch into the cache. */
173 1.4 rmind if (!npf_fetch_ip(npc, nbuf, n_ptr)) {
174 1.1 rmind return false;
175 1.1 rmind }
176 1.4 rmind switch (npf_cache_ipproto(npc)) {
177 1.4 rmind case IPPROTO_TCP:
178 1.4 rmind return npf_fetch_tcp(npc, nbuf, n_ptr);
179 1.4 rmind case IPPROTO_UDP:
180 1.4 rmind return npf_fetch_udp(npc, nbuf, n_ptr);
181 1.4 rmind default:
182 1.1 rmind return false;
183 1.1 rmind }
184 1.1 rmind return true;
185 1.1 rmind
186 1.1 rmind case ICMP_ECHOREPLY:
187 1.1 rmind case ICMP_ECHO:
188 1.1 rmind case ICMP_TSTAMP:
189 1.1 rmind case ICMP_TSTAMPREPLY:
190 1.1 rmind case ICMP_IREQ:
191 1.1 rmind case ICMP_IREQREPLY:
192 1.1 rmind /* Should contain ICMP query ID. */
193 1.4 rmind ic = &npc->npc_l4.icmp;
194 1.1 rmind offby = offsetof(struct icmp, icmp_id);
195 1.4 rmind if (nbuf_advfetch(&nbuf, &n_ptr, offby,
196 1.4 rmind sizeof(uint16_t), &ic->icmp_id)) {
197 1.1 rmind return false;
198 1.1 rmind }
199 1.1 rmind npc->npc_info |= NPC_ICMP_ID;
200 1.1 rmind return true;
201 1.1 rmind default:
202 1.1 rmind break;
203 1.1 rmind }
204 1.1 rmind /* No unique IDs. */
205 1.1 rmind return false;
206 1.1 rmind }
207 1.1 rmind
208 1.6 rmind static void
209 1.6 rmind npfa_srcdst_invert(npf_cache_t *npc)
210 1.6 rmind {
211 1.6 rmind const int proto = npf_cache_ipproto(npc);
212 1.6 rmind npf_addr_t *tmp_ip;
213 1.6 rmind
214 1.6 rmind if (proto == IPPROTO_TCP) {
215 1.6 rmind struct tcphdr *th = &npc->npc_l4.tcp;
216 1.6 rmind in_port_t tmp_sport = th->th_sport;
217 1.6 rmind th->th_sport = th->th_dport;
218 1.6 rmind th->th_dport = tmp_sport;
219 1.6 rmind
220 1.6 rmind } else if (proto == IPPROTO_UDP) {
221 1.6 rmind struct udphdr *uh = &npc->npc_l4.udp;
222 1.6 rmind in_port_t tmp_sport = uh->uh_sport;
223 1.6 rmind uh->uh_sport = uh->uh_dport;
224 1.6 rmind uh->uh_dport = tmp_sport;
225 1.6 rmind }
226 1.6 rmind tmp_ip = npc->npc_srcip;
227 1.6 rmind npc->npc_srcip = npc->npc_dstip;
228 1.6 rmind npc->npc_dstip = tmp_ip;
229 1.6 rmind }
230 1.6 rmind
231 1.1 rmind /*
232 1.6 rmind * npfa_icmp_session: ALG session inspector, returns unique identifiers.
233 1.1 rmind */
234 1.1 rmind static bool
235 1.1 rmind npfa_icmp_session(npf_cache_t *npc, nbuf_t *nbuf, void *keyptr)
236 1.1 rmind {
237 1.1 rmind npf_cache_t *key = keyptr;
238 1.6 rmind KASSERT(key->npc_info == 0);
239 1.1 rmind
240 1.6 rmind /* IP + ICMP? Get unique identifiers from ICMP packet. */
241 1.6 rmind if (!npf_iscached(npc, NPC_IP4)) {
242 1.6 rmind return false;
243 1.6 rmind }
244 1.4 rmind if (npf_cache_ipproto(npc) != IPPROTO_ICMP) {
245 1.1 rmind return false;
246 1.1 rmind }
247 1.4 rmind KASSERT(npf_iscached(npc, NPC_ICMP));
248 1.1 rmind
249 1.1 rmind /* Advance to ICMP header. */
250 1.4 rmind void *n_ptr = nbuf_dataptr(nbuf);
251 1.8 rmind const u_int hlen = npf_cache_hlen(npc);
252 1.4 rmind
253 1.7 zoltan if ((n_ptr = nbuf_advance(&nbuf, n_ptr, hlen)) == NULL) {
254 1.1 rmind return false;
255 1.1 rmind }
256 1.1 rmind
257 1.4 rmind /* Fetch relevant data into the separate ("key") cache. */
258 1.4 rmind struct icmp *ic = &npc->npc_l4.icmp;
259 1.4 rmind if (!npf_icmp_uniqid(ic->icmp_type, key, nbuf, n_ptr)) {
260 1.1 rmind return false;
261 1.1 rmind }
262 1.1 rmind
263 1.1 rmind if (npf_iscached(key, NPC_ICMP_ID)) {
264 1.4 rmind struct icmp *keyic = &key->npc_l4.icmp;
265 1.4 rmind
266 1.4 rmind /* Copy ICMP ID to the cache and flag it. */
267 1.4 rmind npc->npc_info |= NPC_ICMP_ID;
268 1.4 rmind ic->icmp_id = keyic->icmp_id;
269 1.4 rmind
270 1.6 rmind /* Note: return False, since key is the original cache. */
271 1.4 rmind return false;
272 1.1 rmind }
273 1.4 rmind
274 1.4 rmind /*
275 1.4 rmind * Embedded IP packet is the original of "forwards" stream.
276 1.4 rmind * We should imitate the "backwards" stream for inspection.
277 1.4 rmind */
278 1.4 rmind KASSERT(npf_iscached(key, NPC_IP46));
279 1.4 rmind KASSERT(npf_iscached(key, NPC_LAYER4));
280 1.6 rmind npfa_srcdst_invert(key);
281 1.5 rmind key->npc_ipsz = npc->npc_ipsz;
282 1.4 rmind
283 1.1 rmind return true;
284 1.1 rmind }
285 1.1 rmind
286 1.1 rmind /*
287 1.1 rmind * npfa_icmp_natin: ALG inbound translation inspector, rewrite IP address
288 1.1 rmind * in the IP header, which is embedded in ICMP packet.
289 1.1 rmind */
290 1.1 rmind static bool
291 1.1 rmind npfa_icmp_natin(npf_cache_t *npc, nbuf_t *nbuf, void *ntptr)
292 1.1 rmind {
293 1.6 rmind npf_cache_t enpc = { .npc_info = 0 };
294 1.1 rmind
295 1.6 rmind /* XXX: Duplicated work (done at session inspection). */
296 1.1 rmind if (!npfa_icmp_session(npc, nbuf, &enpc)) {
297 1.1 rmind return false;
298 1.1 rmind }
299 1.6 rmind /* XXX: Restore inversion (inefficient). */
300 1.7 zoltan KASSERT(npf_iscached(&enpc, NPC_IP46));
301 1.7 zoltan KASSERT(npf_iscached(&enpc, NPC_LAYER4));
302 1.6 rmind npfa_srcdst_invert(&enpc);
303 1.1 rmind
304 1.6 rmind /*
305 1.6 rmind * Save ICMP and embedded IP with TCP/UDP header checksums, retrieve
306 1.6 rmind * the original address and port, and calculate ICMP checksum for
307 1.6 rmind * embedded packet changes, while data is not rewritten in the cache.
308 1.6 rmind */
309 1.4 rmind const int proto = npf_cache_ipproto(&enpc);
310 1.7 zoltan const struct ip *eip = &enpc.npc_ip.v4;
311 1.6 rmind const struct icmp * const ic = &npc->npc_l4.icmp;
312 1.6 rmind uint16_t cksum = ic->icmp_cksum, ecksum = eip->ip_sum, l4cksum;
313 1.6 rmind npf_nat_t *nt = ntptr;
314 1.6 rmind npf_addr_t *addr;
315 1.6 rmind in_port_t port;
316 1.6 rmind
317 1.6 rmind npf_nat_getorig(nt, &addr, &port);
318 1.4 rmind
319 1.4 rmind if (proto == IPPROTO_TCP) {
320 1.4 rmind struct tcphdr *th = &enpc.npc_l4.tcp;
321 1.6 rmind cksum = npf_fixup16_cksum(cksum, th->th_sport, port);
322 1.4 rmind l4cksum = th->th_sum;
323 1.4 rmind } else {
324 1.4 rmind struct udphdr *uh = &enpc.npc_l4.udp;
325 1.6 rmind cksum = npf_fixup16_cksum(cksum, uh->uh_sport, port);
326 1.4 rmind l4cksum = uh->uh_sum;
327 1.1 rmind }
328 1.6 rmind cksum = npf_addr_cksum(cksum, enpc.npc_ipsz, enpc.npc_srcip, addr);
329 1.6 rmind
330 1.6 rmind /*
331 1.6 rmind * Save the original pointers to the main IP header and then advance
332 1.6 rmind * to the embedded IP header after ICMP header.
333 1.6 rmind */
334 1.6 rmind void *n_ptr = nbuf_dataptr(nbuf), *cnbuf = nbuf, *cnptr = n_ptr;
335 1.8 rmind u_int offby = npf_cache_hlen(npc) + offsetof(struct icmp, icmp_ip);
336 1.1 rmind
337 1.1 rmind if ((n_ptr = nbuf_advance(&nbuf, n_ptr, offby)) == NULL) {
338 1.1 rmind return false;
339 1.1 rmind }
340 1.1 rmind
341 1.4 rmind /*
342 1.4 rmind * Rewrite source IP address and port of the embedded IP header,
343 1.4 rmind * which represents original packet - therefore passing PFIL_OUT.
344 1.6 rmind * Note: checksums are first, since it uses values from the cache.
345 1.4 rmind */
346 1.4 rmind if (!npf_rwrcksum(&enpc, nbuf, n_ptr, PFIL_OUT, addr, port)) {
347 1.4 rmind return false;
348 1.4 rmind }
349 1.1 rmind if (!npf_rwrip(&enpc, nbuf, n_ptr, PFIL_OUT, addr)) {
350 1.1 rmind return false;
351 1.1 rmind }
352 1.4 rmind if (!npf_rwrport(&enpc, nbuf, n_ptr, PFIL_OUT, port)) {
353 1.1 rmind return false;
354 1.1 rmind }
355 1.1 rmind
356 1.1 rmind /*
357 1.6 rmind * Finish calculation of the ICMP checksum. Update for embedded IP
358 1.6 rmind * and TCP/UDP checksum changes. Finally, rewrite ICMP checksum.
359 1.1 rmind */
360 1.4 rmind if (proto == IPPROTO_TCP) {
361 1.4 rmind struct tcphdr *th = &enpc.npc_l4.tcp;
362 1.4 rmind cksum = npf_fixup16_cksum(cksum, l4cksum, th->th_sum);
363 1.6 rmind } else if (l4cksum) {
364 1.4 rmind struct udphdr *uh = &enpc.npc_l4.udp;
365 1.4 rmind cksum = npf_fixup16_cksum(cksum, l4cksum, uh->uh_sum);
366 1.1 rmind }
367 1.6 rmind cksum = npf_fixup16_cksum(cksum, ecksum, eip->ip_sum);
368 1.4 rmind
369 1.8 rmind offby = npf_cache_hlen(npc) + offsetof(struct icmp, icmp_cksum);
370 1.6 rmind if (nbuf_advstore(&cnbuf, &cnptr, offby, sizeof(uint16_t), &cksum)) {
371 1.6 rmind return false;
372 1.6 rmind }
373 1.6 rmind return true;
374 1.1 rmind }
375