1 /*	$NetBSD: nattraversal.c,v 1.15 2018/05/19 18:51:59 maxv Exp $	*/
2 
3 /*
4  * Copyright (C) 2004 SuSE Linux AG, Nuernberg, Germany.
5  * Contributed by: Michal Ludvig <mludvig@suse.cz>, SUSE Labs
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice, this list of conditions and the following disclaimer.
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the distribution.
16  * 3. Neither the name of the project nor the names of its contributors
17  *    may be used to endorse or promote products derived from this software
18  *    without specific prior written permission.
19  *
20  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
21  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
24  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30  * SUCH DAMAGE.
31  */
32 
33 #include "config.h"
34 
35 #include <sys/types.h>
36 #include <sys/param.h>
37 
38 #ifdef __linux__
39 #include <linux/udp.h>
40 #endif
41 #if defined(__NetBSD__) || defined (__FreeBSD__)
42 #include <netinet/udp.h>
43 #endif
44 
45 #include <stdlib.h>
46 #include <stdio.h>
47 #include <string.h>
48 #include <errno.h>
49 #include <ctype.h>
50 
51 #include "var.h"
52 #include "misc.h"
53 #include "vmbuf.h"
54 #include "plog.h"
55 #include "debug.h"
56 
57 #include "localconf.h"
58 #include "remoteconf.h"
59 #include "sockmisc.h"
60 #include "isakmp_var.h"
61 #include "isakmp.h"
62 #include "oakley.h"
63 #include "ipsec_doi.h"
64 #include "vendorid.h"
65 #include "handler.h"
66 #include "crypto_openssl.h"
67 #include "schedule.h"
68 #include "nattraversal.h"
69 #include "grabmyaddr.h"
70 
71 struct natt_ka_addrs {
72   struct sockaddr	*src;
73   struct sockaddr	*dst;
74   unsigned		in_use;
75 
76   TAILQ_ENTRY(natt_ka_addrs) chain;
77 };
78 
79 static TAILQ_HEAD(_natt_ka_addrs, natt_ka_addrs) ka_tree;
80 static struct sched sc_natt = SCHED_INITIALIZER();
81 
82 /*
83  * check if the given vid is NAT-T.
84  */
85 int
natt_vendorid(int vid)86 natt_vendorid (int vid)
87 {
88   return (
89 #ifdef ENABLE_NATT_00
90 	  vid == VENDORID_NATT_00 ||
91 #endif
92 #ifdef ENABLE_NATT_01
93 	  vid == VENDORID_NATT_01 ||
94 #endif
95 #ifdef ENABLE_NATT_02
96 	  vid == VENDORID_NATT_02 ||
97 	  vid == VENDORID_NATT_02_N ||
98 #endif
99 #ifdef ENABLE_NATT_03
100 	  vid == VENDORID_NATT_03 ||
101 #endif
102 #ifdef ENABLE_NATT_04
103 	  vid == VENDORID_NATT_04 ||
104 #endif
105 #ifdef ENABLE_NATT_05
106 	  vid == VENDORID_NATT_05 ||
107 #endif
108 #ifdef ENABLE_NATT_06
109 	  vid == VENDORID_NATT_06 ||
110 #endif
111 #ifdef ENABLE_NATT_07
112 	  vid == VENDORID_NATT_07 ||
113 #endif
114 #ifdef ENABLE_NATT_08
115 	  vid == VENDORID_NATT_08 ||
116 #endif
117 	  /* Always enable NATT RFC if ENABLE_NATT
118 	   */
119 	  vid == VENDORID_NATT_RFC);
120 }
121 
122 vchar_t *
natt_hash_addr(struct ph1handle * iph1,struct sockaddr * addr)123 natt_hash_addr (struct ph1handle *iph1, struct sockaddr *addr)
124 {
125   vchar_t *natd;
126   vchar_t *buf;
127   char *ptr;
128   void *addr_ptr, *addr_port;
129   size_t buf_size, addr_size;
130   int natt_force = 0;
131 
132   if (iph1->rmconf != NULL && iph1->rmconf->nat_traversal == NATT_FORCE)
133 	  natt_force = 1;
134 
135   plog (LLV_INFO, LOCATION, addr, "Hashing %s with algo #%d %s\n",
136 	saddr2str(addr), iph1->approval->hashtype,
137 	natt_force?"(NAT-T forced)":"");
138 
139   if (addr->sa_family == AF_INET) {
140     addr_size = sizeof (struct in_addr);	/* IPv4 address */
141     addr_ptr = &((struct sockaddr_in *)addr)->sin_addr;
142     addr_port = &((struct sockaddr_in *)addr)->sin_port;
143   }
144   else if (addr->sa_family == AF_INET6) {
145     addr_size = sizeof (struct in6_addr);	/* IPv6 address */
146     addr_ptr = &((struct sockaddr_in6 *)addr)->sin6_addr;
147     addr_port = &((struct sockaddr_in6 *)addr)->sin6_port;
148   }
149   else {
150     plog (LLV_ERROR, LOCATION, addr, "Unsupported address family #0x%x\n", addr->sa_family);
151     return NULL;
152   }
153 
154   buf_size = 2 * sizeof (cookie_t);	/* CKY-I + CKY+R */
155   buf_size += addr_size + 2;	/* Address + Port */
156 
157   if ((buf = vmalloc (buf_size)) == NULL)
158     return NULL;
159 
160   ptr = buf->v;
161 
162   /* Copy-in CKY-I */
163   memcpy (ptr, iph1->index.i_ck, sizeof (cookie_t));
164   ptr += sizeof (cookie_t);
165 
166   /* Copy-in CKY-I */
167   memcpy (ptr, iph1->index.r_ck, sizeof (cookie_t));
168   ptr += sizeof (cookie_t);
169 
170   /* Copy-in Address (or zeroes if NATT_FORCE) */
171   if (natt_force)
172     memset (ptr, 0, addr_size);
173   else
174     memcpy (ptr, addr_ptr, addr_size);
175   ptr += addr_size;
176 
177   /* Copy-in Port number */
178   memcpy (ptr, addr_port, 2);
179 
180   natd = oakley_hash (buf, iph1);
181   vfree(buf);
182 
183   return natd;
184 }
185 
186 int
natt_compare_addr_hash(struct ph1handle * iph1,vchar_t * natd_received,int natd_seq)187 natt_compare_addr_hash (struct ph1handle *iph1, vchar_t *natd_received,
188 			int natd_seq)
189 {
190   vchar_t *natd_computed;
191   u_int32_t flag;
192   int verified = 0;
193 
194   if (iph1->rmconf != NULL &&
195       iph1->rmconf->nat_traversal == NATT_FORCE)
196     return verified;
197 
198   if (natd_seq == 0) {
199     natd_computed = natt_hash_addr (iph1, iph1->local);
200     flag = NAT_DETECTED_ME;
201   }
202   else {
203     natd_computed = natt_hash_addr (iph1, iph1->remote);
204     flag = NAT_DETECTED_PEER;
205   }
206 
207   if (natd_computed == NULL) {
208 	plog(LLV_ERROR, LOCATION, NULL, "natd_computed allocation failed\n");
209 	return verified; /* XXX should abort */
210   }
211 
212   if (natd_received->l == natd_computed->l &&
213       memcmp (natd_received->v, natd_computed->v, natd_received->l) == 0) {
214     iph1->natt_flags &= ~flag;
215     verified = 1;
216   }
217 
218   vfree (natd_computed);
219 
220   return verified;
221 }
222 
223 int
natt_udp_encap(int encmode)224 natt_udp_encap (int encmode)
225 {
226   return (encmode == IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_RFC ||
227 	  encmode == IPSECDOI_ATTR_ENC_MODE_UDPTRNS_RFC ||
228 	  encmode == IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_DRAFT ||
229 	  encmode == IPSECDOI_ATTR_ENC_MODE_UDPTRNS_DRAFT);
230 }
231 
232 int
natt_fill_options(struct ph1natt_options * opts,int version)233 natt_fill_options(struct ph1natt_options *opts, int version)
234 {
235 	if (!opts)
236 		return -1;
237 
238 	opts->version = version;
239 
240 	switch (version) {
241 	case VENDORID_NATT_00:
242 	case VENDORID_NATT_01:
243 		opts->float_port = 0; /* No port floating for those drafts */
244 		opts->payload_nat_d = ISAKMP_NPTYPE_NATD_DRAFT;
245 		opts->payload_nat_oa = ISAKMP_NPTYPE_NATOA_DRAFT;
246 		opts->mode_udp_tunnel = IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_DRAFT;
247 		opts->mode_udp_transport = IPSECDOI_ATTR_ENC_MODE_UDPTRNS_DRAFT;
248 		opts->encaps_type = UDP_ENCAP_ESPINUDP_NON_IKE;
249 		break;
250 	case VENDORID_NATT_02:
251 	case VENDORID_NATT_02_N:
252 	case VENDORID_NATT_03:
253 		opts->float_port = lcconf->port_isakmp_natt;
254 		opts->payload_nat_d = ISAKMP_NPTYPE_NATD_DRAFT;
255 		opts->payload_nat_oa = ISAKMP_NPTYPE_NATOA_DRAFT;
256 		opts->mode_udp_tunnel = IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_DRAFT;
257 		opts->mode_udp_transport = IPSECDOI_ATTR_ENC_MODE_UDPTRNS_DRAFT;
258 		opts->encaps_type = UDP_ENCAP_ESPINUDP;
259 		break;
260 	case VENDORID_NATT_04:
261 	case VENDORID_NATT_05:
262 	case VENDORID_NATT_06:
263 	case VENDORID_NATT_07:
264 	case VENDORID_NATT_08:
265 		opts->float_port = lcconf->port_isakmp_natt;
266 		opts->payload_nat_d = ISAKMP_NPTYPE_NATD_BADDRAFT;
267 		opts->payload_nat_oa = ISAKMP_NPTYPE_NATOA_BADDRAFT;
268 		opts->mode_udp_tunnel = IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_RFC;
269 		opts->mode_udp_transport = IPSECDOI_ATTR_ENC_MODE_UDPTRNS_RFC;
270 		opts->encaps_type = UDP_ENCAP_ESPINUDP;
271 		break;
272 	case VENDORID_NATT_RFC:
273 		opts->float_port = lcconf->port_isakmp_natt;
274 		opts->payload_nat_d = ISAKMP_NPTYPE_NATD_RFC;
275 		opts->payload_nat_oa = ISAKMP_NPTYPE_NATOA_RFC;
276 		opts->mode_udp_tunnel = IPSECDOI_ATTR_ENC_MODE_UDPTUNNEL_RFC;
277 		opts->mode_udp_transport = IPSECDOI_ATTR_ENC_MODE_UDPTRNS_RFC;
278 		opts->encaps_type = UDP_ENCAP_ESPINUDP;
279 		break;
280 	default:
281 		plog(LLV_ERROR, LOCATION, NULL,
282 		    "unsupported NAT-T version: %s\n",
283 		    vid_string_by_id(version));
284 		return -1;
285 	}
286 
287 	opts->mode_udp_diff = opts->mode_udp_tunnel - IPSECDOI_ATTR_ENC_MODE_TUNNEL;
288 
289 	return 0;
290 }
291 
292 void
natt_float_ports(struct ph1handle * iph1)293 natt_float_ports(struct ph1handle *iph1)
294 {
295 	if (!(iph1->natt_flags & NAT_DETECTED))
296 		return;
297 	if (!iph1->natt_options->float_port) {
298 		/* Drafts 00 / 01, just schedule keepalive */
299 		natt_keepalive_add_ph1 (iph1);
300 		return;
301 	}
302 
303 	set_port(iph1->local, iph1->natt_options->float_port);
304 	set_port(iph1->remote, iph1->natt_options->float_port);
305 	iph1->natt_flags |= NAT_PORTS_CHANGED | NAT_ADD_NON_ESP_MARKER;
306 
307 	natt_keepalive_add_ph1(iph1);
308 }
309 
310 static int
natt_is_enabled(struct remoteconf * rmconf,void * args)311 natt_is_enabled(struct remoteconf *rmconf, void *args)
312 {
313 	if (rmconf->nat_traversal)
314 		return 1;
315 	return 0;
316 }
317 
318 void
natt_handle_vendorid(struct ph1handle * iph1,int vid_numeric)319 natt_handle_vendorid(struct ph1handle *iph1, int vid_numeric)
320 {
321 	if (iph1->rmconf == NULL) {
322 		/* Check if any candidate remote conf allows nat-t */
323 		struct rmconfselector rmconf;
324 		rmconf_selector_from_ph1(&rmconf, iph1);
325 		if (enumrmconf(&rmconf, natt_is_enabled, NULL) == 0)
326 			return;
327 	} else {
328 		if (!iph1->rmconf->nat_traversal)
329 			return;
330 	}
331 
332 	if (!iph1->natt_options)
333 		iph1->natt_options = racoon_calloc(1, sizeof(*iph1->natt_options));
334 
335 	if (!iph1->natt_options) {
336 		plog(LLV_ERROR, LOCATION, NULL,
337 		    "Allocating memory for natt_options failed!\n");
338 		return;
339 	}
340 
341 	if (iph1->natt_options->version < vid_numeric)
342 		if (natt_fill_options(iph1->natt_options, vid_numeric) == 0)
343 			iph1->natt_flags |= NAT_ANNOUNCED;
344 }
345 
346 static void
natt_keepalive_delete(struct natt_ka_addrs * ka)347 natt_keepalive_delete (struct natt_ka_addrs *ka)
348 {
349   TAILQ_REMOVE (&ka_tree, ka, chain);
350   racoon_free (ka->src);
351   racoon_free (ka->dst);
352   racoon_free (ka);
353 }
354 
355 /* NAT keepalive functions */
356 static void
natt_keepalive_send(struct sched * param)357 natt_keepalive_send (struct sched *param)
358 {
359   struct natt_ka_addrs	*ka, *next = NULL;
360   char keepalive_packet[] = { 0xff };
361   size_t len;
362   int s;
363 
364   for (ka = TAILQ_FIRST(&ka_tree); ka; ka = next) {
365     next = TAILQ_NEXT(ka, chain);
366 
367     s = myaddr_getfd(ka->src);
368     if (s == -1) {
369       natt_keepalive_delete(ka);
370       continue;
371     }
372     plog (LLV_DEBUG, LOCATION, NULL, "KA: %s\n",
373 	  saddr2str_fromto("%s->%s", ka->src, ka->dst));
374     len = sendfromto(s, keepalive_packet, sizeof (keepalive_packet),
375 		     ka->src, ka->dst, 1);
376     if (len == -1)
377       plog(LLV_ERROR, LOCATION, NULL, "KA: sendfromto failed: %s\n",
378 	   strerror (errno));
379   }
380 
381   sched_schedule (&sc_natt, lcconf->natt_ka_interval, natt_keepalive_send);
382 }
383 
384 void
natt_keepalive_init(void)385 natt_keepalive_init (void)
386 {
387   TAILQ_INIT(&ka_tree);
388 
389   /* To disable sending KAs set natt_ka_interval=0 */
390   if (lcconf->natt_ka_interval > 0)
391     sched_schedule (&sc_natt, lcconf->natt_ka_interval, natt_keepalive_send);
392 }
393 
394 int
natt_keepalive_add(struct sockaddr * src,struct sockaddr * dst)395 natt_keepalive_add (struct sockaddr *src, struct sockaddr *dst)
396 {
397   struct natt_ka_addrs *ka = NULL, *new_addr;
398 
399   TAILQ_FOREACH (ka, &ka_tree, chain) {
400     if (cmpsaddr(ka->src, src) == CMPSADDR_MATCH &&
401 	cmpsaddr(ka->dst, dst) == CMPSADDR_MATCH) {
402       ka->in_use++;
403       plog (LLV_INFO, LOCATION, NULL, "KA found: %s (in_use=%u)\n",
404 	    saddr2str_fromto("%s->%s", src, dst), ka->in_use);
405       return 0;
406     }
407   }
408 
409   plog (LLV_INFO, LOCATION, NULL, "KA list add: %s\n", saddr2str_fromto("%s->%s", src, dst));
410 
411   new_addr = (struct natt_ka_addrs *)racoon_malloc(sizeof(*new_addr));
412   if (! new_addr) {
413     plog (LLV_ERROR, LOCATION, NULL, "Can't allocate new KA list item\n");
414     return -1;
415   }
416 
417   if ((new_addr->src = dupsaddr(src)) == NULL) {
418 	racoon_free(new_addr);
419     	plog (LLV_ERROR, LOCATION, NULL, "Can't allocate new KA list item\n");
420 	return -1;
421   }
422   if ((new_addr->dst = dupsaddr(dst)) == NULL) {
423 	racoon_free(new_addr);
424     	plog (LLV_ERROR, LOCATION, NULL, "Can't allocate new KA list item\n");
425 	return -1;
426   }
427   new_addr->in_use = 1;
428   TAILQ_INSERT_TAIL(&ka_tree, new_addr, chain);
429 
430   return 0;
431 }
432 
433 int
natt_keepalive_add_ph1(struct ph1handle * iph1)434 natt_keepalive_add_ph1 (struct ph1handle *iph1)
435 {
436   int ret = 0;
437 
438   /* Should only the NATed host send keepalives?
439      If yes, add '(iph1->natt_flags & NAT_DETECTED_ME)'
440      to the following condition. */
441   if (iph1->natt_flags & NAT_DETECTED &&
442       ! (iph1->natt_flags & NAT_KA_QUEUED)) {
443     ret = natt_keepalive_add (iph1->local, iph1->remote);
444     if (ret == 0)
445       iph1->natt_flags |= NAT_KA_QUEUED;
446   }
447 
448   return ret;
449 }
450 
451 void
natt_keepalive_remove(struct sockaddr * src,struct sockaddr * dst)452 natt_keepalive_remove (struct sockaddr *src, struct sockaddr *dst)
453 {
454   struct natt_ka_addrs *ka, *next = NULL;
455 
456   plog (LLV_INFO, LOCATION, NULL, "KA remove: %s\n", saddr2str_fromto("%s->%s", src, dst));
457 
458   for (ka = TAILQ_FIRST(&ka_tree); ka; ka = next) {
459     next = TAILQ_NEXT(ka, chain);
460 
461     plog (LLV_DEBUG, LOCATION, NULL, "KA tree dump: %s (in_use=%u)\n",
462 	  saddr2str_fromto("%s->%s", src, dst), ka->in_use);
463 
464     if (cmpsaddr(ka->src, src) == CMPSADDR_MATCH &&
465 	cmpsaddr(ka->dst, dst) == CMPSADDR_MATCH &&
466 	-- ka->in_use <= 0) {
467 
468       plog (LLV_DEBUG, LOCATION, NULL, "KA removing this one...\n");
469 
470       natt_keepalive_delete (ka);
471       /* Should we break here? Every pair of addresses should
472          be inserted only once, but who knows :-) Lets traverse
473 	 the whole list... */
474     }
475   }
476 }
477 
478 static int
natt_enabled_in_rmconf_stub(struct remoteconf * rmconf,void * data)479 natt_enabled_in_rmconf_stub (struct remoteconf *rmconf, void *data)
480 {
481   return rmconf->nat_traversal ? 1 : 0;
482 }
483 
484 int
natt_enabled_in_rmconf()485 natt_enabled_in_rmconf ()
486 {
487   return enumrmconf(NULL, natt_enabled_in_rmconf_stub, NULL) != 0;
488 }
489 
490 
491 struct payload_list *
isakmp_plist_append_natt_vids(struct payload_list * plist,vchar_t * vid_natt[MAX_NATT_VID_COUNT])492 isakmp_plist_append_natt_vids (struct payload_list *plist, vchar_t *vid_natt[MAX_NATT_VID_COUNT]){
493 	int i, vid_natt_i = 0;
494 
495 	if(vid_natt == NULL)
496 		return NULL;
497 
498 	for (i = 0; i < MAX_NATT_VID_COUNT; i++)
499 		vid_natt[i]=NULL;
500 
501 	/* Puts the olders VIDs last, as some implementations may choose the first
502 	 * NATT VID given
503 	 */
504 
505 	/* Always set RFC VID
506 	 */
507 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_RFC)) != NULL)
508 		vid_natt_i++;
509 #ifdef ENABLE_NATT_08
510 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_08)) != NULL)
511 		vid_natt_i++;
512 #endif
513 #ifdef ENABLE_NATT_07
514 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_07)) != NULL)
515 		vid_natt_i++;
516 #endif
517 #ifdef ENABLE_NATT_06
518 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_06)) != NULL)
519 		vid_natt_i++;
520 #endif
521 #ifdef ENABLE_NATT_05
522 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_05)) != NULL)
523 		vid_natt_i++;
524 #endif
525 #ifdef ENABLE_NATT_04
526 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_04)) != NULL)
527 		vid_natt_i++;
528 #endif
529 #ifdef ENABLE_NATT_03
530 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_03)) != NULL)
531 		vid_natt_i++;
532 #endif
533 #ifdef ENABLE_NATT_02
534 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_02)) != NULL)
535 		vid_natt_i++;
536 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_02_N)) != NULL)
537 		vid_natt_i++;
538 #endif
539 #ifdef ENABLE_NATT_01
540 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_01)) != NULL)
541 		vid_natt_i++;
542 #endif
543 #ifdef ENABLE_NATT_00
544 	if ((vid_natt[vid_natt_i] = set_vendorid(VENDORID_NATT_00)) != NULL)
545 		vid_natt_i++;
546 #endif
547 	/* set VID payload for NAT-T */
548 	for (i = 0; i < vid_natt_i; i++)
549 		plist = isakmp_plist_append(plist, vid_natt[i], ISAKMP_NPTYPE_VID);
550 
551 	return plist;
552 }
553